2 * Simplified MAC Kernel (smack) security module
4 * This file contains the smack hook function implementations.
7 * Casey Schaufler <casey@schaufler-ca.com>
8 * Jarkko Sakkinen <jarkko.sakkinen@intel.com>
10 * Copyright (C) 2007 Casey Schaufler <casey@schaufler-ca.com>
11 * Copyright (C) 2009 Hewlett-Packard Development Company, L.P.
12 * Paul Moore <paul@paul-moore.com>
13 * Copyright (C) 2010 Nokia Corporation
14 * Copyright (C) 2011 Intel Corporation.
16 * This program is free software; you can redistribute it and/or modify
17 * it under the terms of the GNU General Public License version 2,
18 * as published by the Free Software Foundation.
21 #include <linux/xattr.h>
22 #include <linux/pagemap.h>
23 #include <linux/mount.h>
24 #include <linux/stat.h>
26 #include <asm/ioctls.h>
28 #include <linux/tcp.h>
29 #include <linux/udp.h>
30 #include <linux/dccp.h>
31 #include <linux/slab.h>
32 #include <linux/mutex.h>
33 #include <linux/pipe_fs_i.h>
34 #include <net/cipso_ipv4.h>
37 #include <linux/audit.h>
38 #include <linux/magic.h>
39 #include <linux/dcache.h>
40 #include <linux/personality.h>
41 #include <linux/msg.h>
42 #include <linux/shm.h>
43 #include <linux/binfmts.h>
44 #include <linux/parser.h>
47 #define TRANS_TRUE "TRUE"
48 #define TRANS_TRUE_SIZE 4
50 #define SMK_CONNECTING 0
51 #define SMK_RECEIVING 1
54 #ifdef SMACK_IPV6_PORT_LABELING
55 DEFINE_MUTEX(smack_ipv6_lock
);
56 static LIST_HEAD(smk_ipv6_port_list
);
58 static struct kmem_cache
*smack_inode_cache
;
61 static const match_table_t smk_mount_tokens
= {
62 {Opt_fsdefault
, SMK_FSDEFAULT
"%s"},
63 {Opt_fsfloor
, SMK_FSFLOOR
"%s"},
64 {Opt_fshat
, SMK_FSHAT
"%s"},
65 {Opt_fsroot
, SMK_FSROOT
"%s"},
66 {Opt_fstransmute
, SMK_FSTRANS
"%s"},
70 #ifdef CONFIG_SECURITY_SMACK_BRINGUP
71 static char *smk_bu_mess
[] = {
72 "Bringup Error", /* Unused */
73 "Bringup", /* SMACK_BRINGUP_ALLOW */
74 "Unconfined Subject", /* SMACK_UNCONFINED_SUBJECT */
75 "Unconfined Object", /* SMACK_UNCONFINED_OBJECT */
78 static void smk_bu_mode(int mode
, char *s
)
88 if (mode
& MAY_APPEND
)
90 if (mode
& MAY_TRANSMUTE
)
100 #ifdef CONFIG_SECURITY_SMACK_BRINGUP
101 static int smk_bu_note(char *note
, struct smack_known
*sskp
,
102 struct smack_known
*oskp
, int mode
, int rc
)
104 char acc
[SMK_NUM_ACCESS_TYPE
+ 1];
108 if (rc
> SMACK_UNCONFINED_OBJECT
)
111 smk_bu_mode(mode
, acc
);
112 pr_info("Smack %s: (%s %s %s) %s\n", smk_bu_mess
[rc
],
113 sskp
->smk_known
, oskp
->smk_known
, acc
, note
);
117 #define smk_bu_note(note, sskp, oskp, mode, RC) (RC)
120 #ifdef CONFIG_SECURITY_SMACK_BRINGUP
121 static int smk_bu_current(char *note
, struct smack_known
*oskp
,
124 struct task_smack
*tsp
= current_security();
125 char acc
[SMK_NUM_ACCESS_TYPE
+ 1];
129 if (rc
> SMACK_UNCONFINED_OBJECT
)
132 smk_bu_mode(mode
, acc
);
133 pr_info("Smack %s: (%s %s %s) %s %s\n", smk_bu_mess
[rc
],
134 tsp
->smk_task
->smk_known
, oskp
->smk_known
,
135 acc
, current
->comm
, note
);
139 #define smk_bu_current(note, oskp, mode, RC) (RC)
142 #ifdef CONFIG_SECURITY_SMACK_BRINGUP
143 static int smk_bu_task(struct task_struct
*otp
, int mode
, int rc
)
145 struct task_smack
*tsp
= current_security();
146 struct smack_known
*smk_task
= smk_of_task_struct(otp
);
147 char acc
[SMK_NUM_ACCESS_TYPE
+ 1];
151 if (rc
> SMACK_UNCONFINED_OBJECT
)
154 smk_bu_mode(mode
, acc
);
155 pr_info("Smack %s: (%s %s %s) %s to %s\n", smk_bu_mess
[rc
],
156 tsp
->smk_task
->smk_known
, smk_task
->smk_known
, acc
,
157 current
->comm
, otp
->comm
);
161 #define smk_bu_task(otp, mode, RC) (RC)
164 #ifdef CONFIG_SECURITY_SMACK_BRINGUP
165 static int smk_bu_inode(struct inode
*inode
, int mode
, int rc
)
167 struct task_smack
*tsp
= current_security();
168 struct inode_smack
*isp
= inode
->i_security
;
169 char acc
[SMK_NUM_ACCESS_TYPE
+ 1];
171 if (isp
->smk_flags
& SMK_INODE_IMPURE
)
172 pr_info("Smack Unconfined Corruption: inode=(%s %ld) %s\n",
173 inode
->i_sb
->s_id
, inode
->i_ino
, current
->comm
);
177 if (rc
> SMACK_UNCONFINED_OBJECT
)
179 if (rc
== SMACK_UNCONFINED_SUBJECT
&&
180 (mode
& (MAY_WRITE
| MAY_APPEND
)))
181 isp
->smk_flags
|= SMK_INODE_IMPURE
;
183 smk_bu_mode(mode
, acc
);
185 pr_info("Smack %s: (%s %s %s) inode=(%s %ld) %s\n", smk_bu_mess
[rc
],
186 tsp
->smk_task
->smk_known
, isp
->smk_inode
->smk_known
, acc
,
187 inode
->i_sb
->s_id
, inode
->i_ino
, current
->comm
);
191 #define smk_bu_inode(inode, mode, RC) (RC)
194 #ifdef CONFIG_SECURITY_SMACK_BRINGUP
195 static int smk_bu_file(struct file
*file
, int mode
, int rc
)
197 struct task_smack
*tsp
= current_security();
198 struct smack_known
*sskp
= tsp
->smk_task
;
199 struct inode
*inode
= file_inode(file
);
200 struct inode_smack
*isp
= inode
->i_security
;
201 char acc
[SMK_NUM_ACCESS_TYPE
+ 1];
203 if (isp
->smk_flags
& SMK_INODE_IMPURE
)
204 pr_info("Smack Unconfined Corruption: inode=(%s %ld) %s\n",
205 inode
->i_sb
->s_id
, inode
->i_ino
, current
->comm
);
209 if (rc
> SMACK_UNCONFINED_OBJECT
)
212 smk_bu_mode(mode
, acc
);
213 pr_info("Smack %s: (%s %s %s) file=(%s %ld %pD) %s\n", smk_bu_mess
[rc
],
214 sskp
->smk_known
, smk_of_inode(inode
)->smk_known
, acc
,
215 inode
->i_sb
->s_id
, inode
->i_ino
, file
,
220 #define smk_bu_file(file, mode, RC) (RC)
223 #ifdef CONFIG_SECURITY_SMACK_BRINGUP
224 static int smk_bu_credfile(const struct cred
*cred
, struct file
*file
,
227 struct task_smack
*tsp
= cred
->security
;
228 struct smack_known
*sskp
= tsp
->smk_task
;
229 struct inode
*inode
= file_inode(file
);
230 struct inode_smack
*isp
= inode
->i_security
;
231 char acc
[SMK_NUM_ACCESS_TYPE
+ 1];
233 if (isp
->smk_flags
& SMK_INODE_IMPURE
)
234 pr_info("Smack Unconfined Corruption: inode=(%s %ld) %s\n",
235 inode
->i_sb
->s_id
, inode
->i_ino
, current
->comm
);
239 if (rc
> SMACK_UNCONFINED_OBJECT
)
242 smk_bu_mode(mode
, acc
);
243 pr_info("Smack %s: (%s %s %s) file=(%s %ld %pD) %s\n", smk_bu_mess
[rc
],
244 sskp
->smk_known
, smk_of_inode(inode
)->smk_known
, acc
,
245 inode
->i_sb
->s_id
, inode
->i_ino
, file
,
250 #define smk_bu_credfile(cred, file, mode, RC) (RC)
254 * smk_fetch - Fetch the smack label from a file.
255 * @name: type of the label (attribute)
256 * @ip: a pointer to the inode
257 * @dp: a pointer to the dentry
259 * Returns a pointer to the master list entry for the Smack label,
260 * NULL if there was no label to fetch, or an error code.
262 static struct smack_known
*smk_fetch(const char *name
, struct inode
*ip
,
267 struct smack_known
*skp
= NULL
;
269 if (!(ip
->i_opflags
& IOP_XATTR
))
270 return ERR_PTR(-EOPNOTSUPP
);
272 buffer
= kzalloc(SMK_LONGLABEL
, GFP_KERNEL
);
274 return ERR_PTR(-ENOMEM
);
276 rc
= __vfs_getxattr(dp
, ip
, name
, buffer
, SMK_LONGLABEL
);
282 skp
= smk_import_entry(buffer
, rc
);
290 * new_inode_smack - allocate an inode security blob
291 * @skp: a pointer to the Smack label entry to use in the blob
293 * Returns the new blob or NULL if there's no memory available
295 static struct inode_smack
*new_inode_smack(struct smack_known
*skp
)
297 struct inode_smack
*isp
;
299 isp
= kmem_cache_zalloc(smack_inode_cache
, GFP_NOFS
);
303 isp
->smk_inode
= skp
;
305 mutex_init(&isp
->smk_lock
);
311 * new_task_smack - allocate a task security blob
312 * @task: a pointer to the Smack label for the running task
313 * @forked: a pointer to the Smack label for the forked task
314 * @gfp: type of the memory for the allocation
316 * Returns the new blob or NULL if there's no memory available
318 static struct task_smack
*new_task_smack(struct smack_known
*task
,
319 struct smack_known
*forked
, gfp_t gfp
)
321 struct task_smack
*tsp
;
323 tsp
= kzalloc(sizeof(struct task_smack
), gfp
);
327 tsp
->smk_task
= task
;
328 tsp
->smk_forked
= forked
;
329 INIT_LIST_HEAD(&tsp
->smk_rules
);
330 INIT_LIST_HEAD(&tsp
->smk_relabel
);
331 mutex_init(&tsp
->smk_rules_lock
);
337 * smk_copy_rules - copy a rule set
338 * @nhead: new rules header pointer
339 * @ohead: old rules header pointer
340 * @gfp: type of the memory for the allocation
342 * Returns 0 on success, -ENOMEM on error
344 static int smk_copy_rules(struct list_head
*nhead
, struct list_head
*ohead
,
347 struct smack_rule
*nrp
;
348 struct smack_rule
*orp
;
351 list_for_each_entry_rcu(orp
, ohead
, list
) {
352 nrp
= kzalloc(sizeof(struct smack_rule
), gfp
);
358 list_add_rcu(&nrp
->list
, nhead
);
364 * smk_copy_relabel - copy smk_relabel labels list
365 * @nhead: new rules header pointer
366 * @ohead: old rules header pointer
367 * @gfp: type of the memory for the allocation
369 * Returns 0 on success, -ENOMEM on error
371 static int smk_copy_relabel(struct list_head
*nhead
, struct list_head
*ohead
,
374 struct smack_known_list_elem
*nklep
;
375 struct smack_known_list_elem
*oklep
;
377 list_for_each_entry(oklep
, ohead
, list
) {
378 nklep
= kzalloc(sizeof(struct smack_known_list_elem
), gfp
);
380 smk_destroy_label_list(nhead
);
383 nklep
->smk_label
= oklep
->smk_label
;
384 list_add(&nklep
->list
, nhead
);
391 * smk_ptrace_mode - helper function for converting PTRACE_MODE_* into MAY_*
392 * @mode - input mode in form of PTRACE_MODE_*
394 * Returns a converted MAY_* mode usable by smack rules
396 static inline unsigned int smk_ptrace_mode(unsigned int mode
)
398 if (mode
& PTRACE_MODE_ATTACH
)
399 return MAY_READWRITE
;
400 if (mode
& PTRACE_MODE_READ
)
407 * smk_ptrace_rule_check - helper for ptrace access
408 * @tracer: tracer process
409 * @tracee_known: label entry of the process that's about to be traced
410 * @mode: ptrace attachment mode (PTRACE_MODE_*)
411 * @func: name of the function that called us, used for audit
413 * Returns 0 on access granted, -error on error
415 static int smk_ptrace_rule_check(struct task_struct
*tracer
,
416 struct smack_known
*tracee_known
,
417 unsigned int mode
, const char *func
)
420 struct smk_audit_info ad
, *saip
= NULL
;
421 struct task_smack
*tsp
;
422 struct smack_known
*tracer_known
;
424 if ((mode
& PTRACE_MODE_NOAUDIT
) == 0) {
425 smk_ad_init(&ad
, func
, LSM_AUDIT_DATA_TASK
);
426 smk_ad_setfield_u_tsk(&ad
, tracer
);
431 tsp
= __task_cred(tracer
)->security
;
432 tracer_known
= smk_of_task(tsp
);
434 if ((mode
& PTRACE_MODE_ATTACH
) &&
435 (smack_ptrace_rule
== SMACK_PTRACE_EXACT
||
436 smack_ptrace_rule
== SMACK_PTRACE_DRACONIAN
)) {
437 if (tracer_known
->smk_known
== tracee_known
->smk_known
)
439 else if (smack_ptrace_rule
== SMACK_PTRACE_DRACONIAN
)
441 else if (capable(CAP_SYS_PTRACE
))
447 smack_log(tracer_known
->smk_known
,
448 tracee_known
->smk_known
,
455 /* In case of rule==SMACK_PTRACE_DEFAULT or mode==PTRACE_MODE_READ */
456 rc
= smk_tskacc(tsp
, tracee_known
, smk_ptrace_mode(mode
), saip
);
464 * We he, that is fun!
468 * smack_ptrace_access_check - Smack approval on PTRACE_ATTACH
469 * @ctp: child task pointer
470 * @mode: ptrace attachment mode (PTRACE_MODE_*)
472 * Returns 0 if access is OK, an error code otherwise
474 * Do the capability checks.
476 static int smack_ptrace_access_check(struct task_struct
*ctp
, unsigned int mode
)
478 struct smack_known
*skp
;
480 skp
= smk_of_task_struct(ctp
);
482 return smk_ptrace_rule_check(current
, skp
, mode
, __func__
);
486 * smack_ptrace_traceme - Smack approval on PTRACE_TRACEME
487 * @ptp: parent task pointer
489 * Returns 0 if access is OK, an error code otherwise
491 * Do the capability checks, and require PTRACE_MODE_ATTACH.
493 static int smack_ptrace_traceme(struct task_struct
*ptp
)
496 struct smack_known
*skp
;
498 skp
= smk_of_task(current_security());
500 rc
= smk_ptrace_rule_check(ptp
, skp
, PTRACE_MODE_ATTACH
, __func__
);
505 * smack_syslog - Smack approval on syslog
506 * @type: message type
508 * Returns 0 on success, error code otherwise.
510 static int smack_syslog(int typefrom_file
)
513 struct smack_known
*skp
= smk_of_current();
515 if (smack_privileged(CAP_MAC_OVERRIDE
))
518 if (smack_syslog_label
!= NULL
&& smack_syslog_label
!= skp
)
530 * smack_sb_alloc_security - allocate a superblock blob
531 * @sb: the superblock getting the blob
533 * Returns 0 on success or -ENOMEM on error.
535 static int smack_sb_alloc_security(struct super_block
*sb
)
537 struct superblock_smack
*sbsp
;
539 sbsp
= kzalloc(sizeof(struct superblock_smack
), GFP_KERNEL
);
544 sbsp
->smk_root
= &smack_known_floor
;
545 sbsp
->smk_default
= &smack_known_floor
;
546 sbsp
->smk_floor
= &smack_known_floor
;
547 sbsp
->smk_hat
= &smack_known_hat
;
549 * SMK_SB_INITIALIZED will be zero from kzalloc.
551 sb
->s_security
= sbsp
;
557 * smack_sb_free_security - free a superblock blob
558 * @sb: the superblock getting the blob
561 static void smack_sb_free_security(struct super_block
*sb
)
563 kfree(sb
->s_security
);
564 sb
->s_security
= NULL
;
568 * smack_sb_copy_data - copy mount options data for processing
569 * @orig: where to start
570 * @smackopts: mount options string
572 * Returns 0 on success or -ENOMEM on error.
574 * Copy the Smack specific mount options out of the mount
577 static int smack_sb_copy_data(char *orig
, char *smackopts
)
579 char *cp
, *commap
, *otheropts
, *dp
;
581 otheropts
= (char *)get_zeroed_page(GFP_KERNEL
);
582 if (otheropts
== NULL
)
585 for (cp
= orig
, commap
= orig
; commap
!= NULL
; cp
= commap
+ 1) {
586 if (strstr(cp
, SMK_FSDEFAULT
) == cp
)
588 else if (strstr(cp
, SMK_FSFLOOR
) == cp
)
590 else if (strstr(cp
, SMK_FSHAT
) == cp
)
592 else if (strstr(cp
, SMK_FSROOT
) == cp
)
594 else if (strstr(cp
, SMK_FSTRANS
) == cp
)
599 commap
= strchr(cp
, ',');
608 strcpy(orig
, otheropts
);
609 free_page((unsigned long)otheropts
);
615 * smack_parse_opts_str - parse Smack specific mount options
616 * @options: mount options string
617 * @opts: where to store converted mount opts
619 * Returns 0 on success or -ENOMEM on error.
621 * converts Smack specific mount options to generic security option format
623 static int smack_parse_opts_str(char *options
,
624 struct security_mnt_opts
*opts
)
627 char *fsdefault
= NULL
;
628 char *fsfloor
= NULL
;
631 char *fstransmute
= NULL
;
633 int num_mnt_opts
= 0;
636 opts
->num_mnt_opts
= 0;
641 while ((p
= strsep(&options
, ",")) != NULL
) {
642 substring_t args
[MAX_OPT_ARGS
];
647 token
= match_token(p
, smk_mount_tokens
, args
);
653 fsdefault
= match_strdup(&args
[0]);
660 fsfloor
= match_strdup(&args
[0]);
667 fshat
= match_strdup(&args
[0]);
674 fsroot
= match_strdup(&args
[0]);
678 case Opt_fstransmute
:
681 fstransmute
= match_strdup(&args
[0]);
687 pr_warn("Smack: unknown mount option\n");
692 opts
->mnt_opts
= kcalloc(NUM_SMK_MNT_OPTS
, sizeof(char *), GFP_KERNEL
);
696 opts
->mnt_opts_flags
= kcalloc(NUM_SMK_MNT_OPTS
, sizeof(int),
698 if (!opts
->mnt_opts_flags
)
702 opts
->mnt_opts
[num_mnt_opts
] = fsdefault
;
703 opts
->mnt_opts_flags
[num_mnt_opts
++] = FSDEFAULT_MNT
;
706 opts
->mnt_opts
[num_mnt_opts
] = fsfloor
;
707 opts
->mnt_opts_flags
[num_mnt_opts
++] = FSFLOOR_MNT
;
710 opts
->mnt_opts
[num_mnt_opts
] = fshat
;
711 opts
->mnt_opts_flags
[num_mnt_opts
++] = FSHAT_MNT
;
714 opts
->mnt_opts
[num_mnt_opts
] = fsroot
;
715 opts
->mnt_opts_flags
[num_mnt_opts
++] = FSROOT_MNT
;
718 opts
->mnt_opts
[num_mnt_opts
] = fstransmute
;
719 opts
->mnt_opts_flags
[num_mnt_opts
++] = FSTRANS_MNT
;
722 opts
->num_mnt_opts
= num_mnt_opts
;
727 pr_warn("Smack: duplicate mount options\n");
739 * smack_set_mnt_opts - set Smack specific mount options
740 * @sb: the file system superblock
741 * @opts: Smack mount options
742 * @kern_flags: mount option from kernel space or user space
743 * @set_kern_flags: where to store converted mount opts
745 * Returns 0 on success, an error code on failure
747 * Allow filesystems with binary mount data to explicitly set Smack mount
750 static int smack_set_mnt_opts(struct super_block
*sb
,
751 struct security_mnt_opts
*opts
,
752 unsigned long kern_flags
,
753 unsigned long *set_kern_flags
)
755 struct dentry
*root
= sb
->s_root
;
756 struct inode
*inode
= d_backing_inode(root
);
757 struct superblock_smack
*sp
= sb
->s_security
;
758 struct inode_smack
*isp
;
759 struct smack_known
*skp
;
761 int num_opts
= opts
->num_mnt_opts
;
764 if (sp
->smk_flags
& SMK_SB_INITIALIZED
)
767 if (!smack_privileged(CAP_MAC_ADMIN
)) {
769 * Unprivileged mounts don't get to specify Smack values.
774 * Unprivileged mounts get root and default from the caller.
776 skp
= smk_of_current();
778 sp
->smk_default
= skp
;
780 * For a handful of fs types with no user-controlled
781 * backing store it's okay to trust security labels
782 * in the filesystem. The rest are untrusted.
784 if (sb
->s_user_ns
!= &init_user_ns
&&
785 sb
->s_magic
!= SYSFS_MAGIC
&& sb
->s_magic
!= TMPFS_MAGIC
&&
786 sb
->s_magic
!= RAMFS_MAGIC
) {
788 sp
->smk_flags
|= SMK_SB_UNTRUSTED
;
792 sp
->smk_flags
|= SMK_SB_INITIALIZED
;
794 for (i
= 0; i
< num_opts
; i
++) {
795 switch (opts
->mnt_opts_flags
[i
]) {
797 skp
= smk_import_entry(opts
->mnt_opts
[i
], 0);
800 sp
->smk_default
= skp
;
803 skp
= smk_import_entry(opts
->mnt_opts
[i
], 0);
809 skp
= smk_import_entry(opts
->mnt_opts
[i
], 0);
815 skp
= smk_import_entry(opts
->mnt_opts
[i
], 0);
821 skp
= smk_import_entry(opts
->mnt_opts
[i
], 0);
833 * Initialize the root inode.
835 isp
= inode
->i_security
;
837 isp
= new_inode_smack(sp
->smk_root
);
840 inode
->i_security
= isp
;
842 isp
->smk_inode
= sp
->smk_root
;
845 isp
->smk_flags
|= SMK_INODE_TRANSMUTE
;
851 * smack_sb_kern_mount - Smack specific mount processing
852 * @sb: the file system superblock
853 * @flags: the mount flags
854 * @data: the smack mount options
856 * Returns 0 on success, an error code on failure
858 static int smack_sb_kern_mount(struct super_block
*sb
, int flags
, void *data
)
861 char *options
= data
;
862 struct security_mnt_opts opts
;
864 security_init_mnt_opts(&opts
);
869 rc
= smack_parse_opts_str(options
, &opts
);
874 rc
= smack_set_mnt_opts(sb
, &opts
, 0, NULL
);
877 security_free_mnt_opts(&opts
);
882 * smack_sb_statfs - Smack check on statfs
883 * @dentry: identifies the file system in question
885 * Returns 0 if current can read the floor of the filesystem,
886 * and error code otherwise
888 static int smack_sb_statfs(struct dentry
*dentry
)
890 struct superblock_smack
*sbp
= dentry
->d_sb
->s_security
;
892 struct smk_audit_info ad
;
894 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
895 smk_ad_setfield_u_fs_path_dentry(&ad
, dentry
);
897 rc
= smk_curacc(sbp
->smk_floor
, MAY_READ
, &ad
);
898 rc
= smk_bu_current("statfs", sbp
->smk_floor
, MAY_READ
, rc
);
907 * smack_bprm_set_creds - set creds for exec
908 * @bprm: the exec information
910 * Returns 0 if it gets a blob, -EPERM if exec forbidden and -ENOMEM otherwise
912 static int smack_bprm_set_creds(struct linux_binprm
*bprm
)
914 struct inode
*inode
= file_inode(bprm
->file
);
915 struct task_smack
*bsp
= bprm
->cred
->security
;
916 struct inode_smack
*isp
;
917 struct superblock_smack
*sbsp
;
920 if (bprm
->called_set_creds
)
923 isp
= inode
->i_security
;
924 if (isp
->smk_task
== NULL
|| isp
->smk_task
== bsp
->smk_task
)
927 sbsp
= inode
->i_sb
->s_security
;
928 if ((sbsp
->smk_flags
& SMK_SB_UNTRUSTED
) &&
929 isp
->smk_task
!= sbsp
->smk_root
)
932 if (bprm
->unsafe
& LSM_UNSAFE_PTRACE
) {
933 struct task_struct
*tracer
;
937 tracer
= ptrace_parent(current
);
938 if (likely(tracer
!= NULL
))
939 rc
= smk_ptrace_rule_check(tracer
,
947 } else if (bprm
->unsafe
)
950 bsp
->smk_task
= isp
->smk_task
;
951 bprm
->per_clear
|= PER_CLEAR_ON_SETID
;
953 /* Decide if this is a secure exec. */
954 if (bsp
->smk_task
!= bsp
->smk_forked
)
955 bprm
->secureexec
= 1;
965 * smack_inode_alloc_security - allocate an inode blob
966 * @inode: the inode in need of a blob
968 * Returns 0 if it gets a blob, -ENOMEM otherwise
970 static int smack_inode_alloc_security(struct inode
*inode
)
972 struct smack_known
*skp
= smk_of_current();
974 inode
->i_security
= new_inode_smack(skp
);
975 if (inode
->i_security
== NULL
)
981 * smack_inode_free_rcu - Free inode_smack blob from cache
982 * @head: the rcu_head for getting inode_smack pointer
984 * Call back function called from call_rcu() to free
985 * the i_security blob pointer in inode
987 static void smack_inode_free_rcu(struct rcu_head
*head
)
989 struct inode_smack
*issp
;
991 issp
= container_of(head
, struct inode_smack
, smk_rcu
);
992 kmem_cache_free(smack_inode_cache
, issp
);
996 * smack_inode_free_security - free an inode blob using call_rcu()
997 * @inode: the inode with a blob
999 * Clears the blob pointer in inode using RCU
1001 static void smack_inode_free_security(struct inode
*inode
)
1003 struct inode_smack
*issp
= inode
->i_security
;
1006 * The inode may still be referenced in a path walk and
1007 * a call to smack_inode_permission() can be made
1008 * after smack_inode_free_security() is called.
1009 * To avoid race condition free the i_security via RCU
1010 * and leave the current inode->i_security pointer intact.
1011 * The inode will be freed after the RCU grace period too.
1013 call_rcu(&issp
->smk_rcu
, smack_inode_free_rcu
);
1017 * smack_inode_init_security - copy out the smack from an inode
1018 * @inode: the newly created inode
1019 * @dir: containing directory object
1021 * @name: where to put the attribute name
1022 * @value: where to put the attribute value
1023 * @len: where to put the length of the attribute
1025 * Returns 0 if it all works out, -ENOMEM if there's no memory
1027 static int smack_inode_init_security(struct inode
*inode
, struct inode
*dir
,
1028 const struct qstr
*qstr
, const char **name
,
1029 void **value
, size_t *len
)
1031 struct inode_smack
*issp
= inode
->i_security
;
1032 struct smack_known
*skp
= smk_of_current();
1033 struct smack_known
*isp
= smk_of_inode(inode
);
1034 struct smack_known
*dsp
= smk_of_inode(dir
);
1038 *name
= XATTR_SMACK_SUFFIX
;
1042 may
= smk_access_entry(skp
->smk_known
, dsp
->smk_known
,
1047 * If the access rule allows transmutation and
1048 * the directory requests transmutation then
1049 * by all means transmute.
1050 * Mark the inode as changed.
1052 if (may
> 0 && ((may
& MAY_TRANSMUTE
) != 0) &&
1053 smk_inode_transmutable(dir
)) {
1055 issp
->smk_flags
|= SMK_INODE_CHANGED
;
1058 *value
= kstrdup(isp
->smk_known
, GFP_NOFS
);
1062 *len
= strlen(isp
->smk_known
);
1069 * smack_inode_link - Smack check on link
1070 * @old_dentry: the existing object
1072 * @new_dentry: the new object
1074 * Returns 0 if access is permitted, an error code otherwise
1076 static int smack_inode_link(struct dentry
*old_dentry
, struct inode
*dir
,
1077 struct dentry
*new_dentry
)
1079 struct smack_known
*isp
;
1080 struct smk_audit_info ad
;
1083 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
1084 smk_ad_setfield_u_fs_path_dentry(&ad
, old_dentry
);
1086 isp
= smk_of_inode(d_backing_inode(old_dentry
));
1087 rc
= smk_curacc(isp
, MAY_WRITE
, &ad
);
1088 rc
= smk_bu_inode(d_backing_inode(old_dentry
), MAY_WRITE
, rc
);
1090 if (rc
== 0 && d_is_positive(new_dentry
)) {
1091 isp
= smk_of_inode(d_backing_inode(new_dentry
));
1092 smk_ad_setfield_u_fs_path_dentry(&ad
, new_dentry
);
1093 rc
= smk_curacc(isp
, MAY_WRITE
, &ad
);
1094 rc
= smk_bu_inode(d_backing_inode(new_dentry
), MAY_WRITE
, rc
);
1101 * smack_inode_unlink - Smack check on inode deletion
1102 * @dir: containing directory object
1103 * @dentry: file to unlink
1105 * Returns 0 if current can write the containing directory
1106 * and the object, error code otherwise
1108 static int smack_inode_unlink(struct inode
*dir
, struct dentry
*dentry
)
1110 struct inode
*ip
= d_backing_inode(dentry
);
1111 struct smk_audit_info ad
;
1114 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
1115 smk_ad_setfield_u_fs_path_dentry(&ad
, dentry
);
1118 * You need write access to the thing you're unlinking
1120 rc
= smk_curacc(smk_of_inode(ip
), MAY_WRITE
, &ad
);
1121 rc
= smk_bu_inode(ip
, MAY_WRITE
, rc
);
1124 * You also need write access to the containing directory
1126 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_INODE
);
1127 smk_ad_setfield_u_fs_inode(&ad
, dir
);
1128 rc
= smk_curacc(smk_of_inode(dir
), MAY_WRITE
, &ad
);
1129 rc
= smk_bu_inode(dir
, MAY_WRITE
, rc
);
1135 * smack_inode_rmdir - Smack check on directory deletion
1136 * @dir: containing directory object
1137 * @dentry: directory to unlink
1139 * Returns 0 if current can write the containing directory
1140 * and the directory, error code otherwise
1142 static int smack_inode_rmdir(struct inode
*dir
, struct dentry
*dentry
)
1144 struct smk_audit_info ad
;
1147 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
1148 smk_ad_setfield_u_fs_path_dentry(&ad
, dentry
);
1151 * You need write access to the thing you're removing
1153 rc
= smk_curacc(smk_of_inode(d_backing_inode(dentry
)), MAY_WRITE
, &ad
);
1154 rc
= smk_bu_inode(d_backing_inode(dentry
), MAY_WRITE
, rc
);
1157 * You also need write access to the containing directory
1159 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_INODE
);
1160 smk_ad_setfield_u_fs_inode(&ad
, dir
);
1161 rc
= smk_curacc(smk_of_inode(dir
), MAY_WRITE
, &ad
);
1162 rc
= smk_bu_inode(dir
, MAY_WRITE
, rc
);
1169 * smack_inode_rename - Smack check on rename
1170 * @old_inode: unused
1171 * @old_dentry: the old object
1172 * @new_inode: unused
1173 * @new_dentry: the new object
1175 * Read and write access is required on both the old and
1178 * Returns 0 if access is permitted, an error code otherwise
1180 static int smack_inode_rename(struct inode
*old_inode
,
1181 struct dentry
*old_dentry
,
1182 struct inode
*new_inode
,
1183 struct dentry
*new_dentry
)
1186 struct smack_known
*isp
;
1187 struct smk_audit_info ad
;
1189 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
1190 smk_ad_setfield_u_fs_path_dentry(&ad
, old_dentry
);
1192 isp
= smk_of_inode(d_backing_inode(old_dentry
));
1193 rc
= smk_curacc(isp
, MAY_READWRITE
, &ad
);
1194 rc
= smk_bu_inode(d_backing_inode(old_dentry
), MAY_READWRITE
, rc
);
1196 if (rc
== 0 && d_is_positive(new_dentry
)) {
1197 isp
= smk_of_inode(d_backing_inode(new_dentry
));
1198 smk_ad_setfield_u_fs_path_dentry(&ad
, new_dentry
);
1199 rc
= smk_curacc(isp
, MAY_READWRITE
, &ad
);
1200 rc
= smk_bu_inode(d_backing_inode(new_dentry
), MAY_READWRITE
, rc
);
1206 * smack_inode_permission - Smack version of permission()
1207 * @inode: the inode in question
1208 * @mask: the access requested
1210 * This is the important Smack hook.
1212 * Returns 0 if access is permitted, -EACCES otherwise
1214 static int smack_inode_permission(struct inode
*inode
, int mask
)
1216 struct superblock_smack
*sbsp
= inode
->i_sb
->s_security
;
1217 struct smk_audit_info ad
;
1218 int no_block
= mask
& MAY_NOT_BLOCK
;
1221 mask
&= (MAY_READ
|MAY_WRITE
|MAY_EXEC
|MAY_APPEND
);
1223 * No permission to check. Existence test. Yup, it's there.
1228 if (sbsp
->smk_flags
& SMK_SB_UNTRUSTED
) {
1229 if (smk_of_inode(inode
) != sbsp
->smk_root
)
1233 /* May be droppable after audit */
1236 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_INODE
);
1237 smk_ad_setfield_u_fs_inode(&ad
, inode
);
1238 rc
= smk_curacc(smk_of_inode(inode
), mask
, &ad
);
1239 rc
= smk_bu_inode(inode
, mask
, rc
);
1244 * smack_inode_setattr - Smack check for setting attributes
1245 * @dentry: the object
1246 * @iattr: for the force flag
1248 * Returns 0 if access is permitted, an error code otherwise
1250 static int smack_inode_setattr(struct dentry
*dentry
, struct iattr
*iattr
)
1252 struct smk_audit_info ad
;
1256 * Need to allow for clearing the setuid bit.
1258 if (iattr
->ia_valid
& ATTR_FORCE
)
1260 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
1261 smk_ad_setfield_u_fs_path_dentry(&ad
, dentry
);
1263 rc
= smk_curacc(smk_of_inode(d_backing_inode(dentry
)), MAY_WRITE
, &ad
);
1264 rc
= smk_bu_inode(d_backing_inode(dentry
), MAY_WRITE
, rc
);
1269 * smack_inode_getattr - Smack check for getting attributes
1270 * @mnt: vfsmount of the object
1271 * @dentry: the object
1273 * Returns 0 if access is permitted, an error code otherwise
1275 static int smack_inode_getattr(const struct path
*path
)
1277 struct smk_audit_info ad
;
1278 struct inode
*inode
= d_backing_inode(path
->dentry
);
1281 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_PATH
);
1282 smk_ad_setfield_u_fs_path(&ad
, *path
);
1283 rc
= smk_curacc(smk_of_inode(inode
), MAY_READ
, &ad
);
1284 rc
= smk_bu_inode(inode
, MAY_READ
, rc
);
1289 * smack_inode_setxattr - Smack check for setting xattrs
1290 * @dentry: the object
1291 * @name: name of the attribute
1292 * @value: value of the attribute
1293 * @size: size of the value
1296 * This protects the Smack attribute explicitly.
1298 * Returns 0 if access is permitted, an error code otherwise
1300 static int smack_inode_setxattr(struct dentry
*dentry
, const char *name
,
1301 const void *value
, size_t size
, int flags
)
1303 struct smk_audit_info ad
;
1304 struct smack_known
*skp
;
1306 int check_import
= 0;
1311 * Check label validity here so import won't fail in post_setxattr
1313 if (strcmp(name
, XATTR_NAME_SMACK
) == 0 ||
1314 strcmp(name
, XATTR_NAME_SMACKIPIN
) == 0 ||
1315 strcmp(name
, XATTR_NAME_SMACKIPOUT
) == 0) {
1318 } else if (strcmp(name
, XATTR_NAME_SMACKEXEC
) == 0 ||
1319 strcmp(name
, XATTR_NAME_SMACKMMAP
) == 0) {
1323 } else if (strcmp(name
, XATTR_NAME_SMACKTRANSMUTE
) == 0) {
1325 if (size
!= TRANS_TRUE_SIZE
||
1326 strncmp(value
, TRANS_TRUE
, TRANS_TRUE_SIZE
) != 0)
1329 rc
= cap_inode_setxattr(dentry
, name
, value
, size
, flags
);
1331 if (check_priv
&& !smack_privileged(CAP_MAC_ADMIN
))
1334 if (rc
== 0 && check_import
) {
1335 skp
= size
? smk_import_entry(value
, size
) : NULL
;
1338 else if (skp
== NULL
|| (check_star
&&
1339 (skp
== &smack_known_star
|| skp
== &smack_known_web
)))
1343 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
1344 smk_ad_setfield_u_fs_path_dentry(&ad
, dentry
);
1347 rc
= smk_curacc(smk_of_inode(d_backing_inode(dentry
)), MAY_WRITE
, &ad
);
1348 rc
= smk_bu_inode(d_backing_inode(dentry
), MAY_WRITE
, rc
);
1355 * smack_inode_post_setxattr - Apply the Smack update approved above
1357 * @name: attribute name
1358 * @value: attribute value
1359 * @size: attribute size
1362 * Set the pointer in the inode blob to the entry found
1363 * in the master label list.
1365 static void smack_inode_post_setxattr(struct dentry
*dentry
, const char *name
,
1366 const void *value
, size_t size
, int flags
)
1368 struct smack_known
*skp
;
1369 struct inode_smack
*isp
= d_backing_inode(dentry
)->i_security
;
1371 if (strcmp(name
, XATTR_NAME_SMACKTRANSMUTE
) == 0) {
1372 isp
->smk_flags
|= SMK_INODE_TRANSMUTE
;
1376 if (strcmp(name
, XATTR_NAME_SMACK
) == 0) {
1377 skp
= smk_import_entry(value
, size
);
1379 isp
->smk_inode
= skp
;
1380 } else if (strcmp(name
, XATTR_NAME_SMACKEXEC
) == 0) {
1381 skp
= smk_import_entry(value
, size
);
1383 isp
->smk_task
= skp
;
1384 } else if (strcmp(name
, XATTR_NAME_SMACKMMAP
) == 0) {
1385 skp
= smk_import_entry(value
, size
);
1387 isp
->smk_mmap
= skp
;
1394 * smack_inode_getxattr - Smack check on getxattr
1395 * @dentry: the object
1398 * Returns 0 if access is permitted, an error code otherwise
1400 static int smack_inode_getxattr(struct dentry
*dentry
, const char *name
)
1402 struct smk_audit_info ad
;
1405 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
1406 smk_ad_setfield_u_fs_path_dentry(&ad
, dentry
);
1408 rc
= smk_curacc(smk_of_inode(d_backing_inode(dentry
)), MAY_READ
, &ad
);
1409 rc
= smk_bu_inode(d_backing_inode(dentry
), MAY_READ
, rc
);
1414 * smack_inode_removexattr - Smack check on removexattr
1415 * @dentry: the object
1416 * @name: name of the attribute
1418 * Removing the Smack attribute requires CAP_MAC_ADMIN
1420 * Returns 0 if access is permitted, an error code otherwise
1422 static int smack_inode_removexattr(struct dentry
*dentry
, const char *name
)
1424 struct inode_smack
*isp
;
1425 struct smk_audit_info ad
;
1428 if (strcmp(name
, XATTR_NAME_SMACK
) == 0 ||
1429 strcmp(name
, XATTR_NAME_SMACKIPIN
) == 0 ||
1430 strcmp(name
, XATTR_NAME_SMACKIPOUT
) == 0 ||
1431 strcmp(name
, XATTR_NAME_SMACKEXEC
) == 0 ||
1432 strcmp(name
, XATTR_NAME_SMACKTRANSMUTE
) == 0 ||
1433 strcmp(name
, XATTR_NAME_SMACKMMAP
) == 0) {
1434 if (!smack_privileged(CAP_MAC_ADMIN
))
1437 rc
= cap_inode_removexattr(dentry
, name
);
1442 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_DENTRY
);
1443 smk_ad_setfield_u_fs_path_dentry(&ad
, dentry
);
1445 rc
= smk_curacc(smk_of_inode(d_backing_inode(dentry
)), MAY_WRITE
, &ad
);
1446 rc
= smk_bu_inode(d_backing_inode(dentry
), MAY_WRITE
, rc
);
1450 isp
= d_backing_inode(dentry
)->i_security
;
1452 * Don't do anything special for these.
1453 * XATTR_NAME_SMACKIPIN
1454 * XATTR_NAME_SMACKIPOUT
1456 if (strcmp(name
, XATTR_NAME_SMACK
) == 0) {
1457 struct super_block
*sbp
= dentry
->d_sb
;
1458 struct superblock_smack
*sbsp
= sbp
->s_security
;
1460 isp
->smk_inode
= sbsp
->smk_default
;
1461 } else if (strcmp(name
, XATTR_NAME_SMACKEXEC
) == 0)
1462 isp
->smk_task
= NULL
;
1463 else if (strcmp(name
, XATTR_NAME_SMACKMMAP
) == 0)
1464 isp
->smk_mmap
= NULL
;
1465 else if (strcmp(name
, XATTR_NAME_SMACKTRANSMUTE
) == 0)
1466 isp
->smk_flags
&= ~SMK_INODE_TRANSMUTE
;
1472 * smack_inode_getsecurity - get smack xattrs
1473 * @inode: the object
1474 * @name: attribute name
1475 * @buffer: where to put the result
1476 * @alloc: duplicate memory
1478 * Returns the size of the attribute or an error code
1480 static int smack_inode_getsecurity(struct inode
*inode
,
1481 const char *name
, void **buffer
,
1484 struct socket_smack
*ssp
;
1485 struct socket
*sock
;
1486 struct super_block
*sbp
;
1487 struct inode
*ip
= (struct inode
*)inode
;
1488 struct smack_known
*isp
;
1490 if (strcmp(name
, XATTR_SMACK_SUFFIX
) == 0)
1491 isp
= smk_of_inode(inode
);
1494 * The rest of the Smack xattrs are only on sockets.
1497 if (sbp
->s_magic
!= SOCKFS_MAGIC
)
1500 sock
= SOCKET_I(ip
);
1501 if (sock
== NULL
|| sock
->sk
== NULL
)
1504 ssp
= sock
->sk
->sk_security
;
1506 if (strcmp(name
, XATTR_SMACK_IPIN
) == 0)
1508 else if (strcmp(name
, XATTR_SMACK_IPOUT
) == 0)
1515 *buffer
= kstrdup(isp
->smk_known
, GFP_KERNEL
);
1516 if (*buffer
== NULL
)
1520 return strlen(isp
->smk_known
);
1525 * smack_inode_listsecurity - list the Smack attributes
1526 * @inode: the object
1527 * @buffer: where they go
1528 * @buffer_size: size of buffer
1530 static int smack_inode_listsecurity(struct inode
*inode
, char *buffer
,
1533 int len
= sizeof(XATTR_NAME_SMACK
);
1535 if (buffer
!= NULL
&& len
<= buffer_size
)
1536 memcpy(buffer
, XATTR_NAME_SMACK
, len
);
1542 * smack_inode_getsecid - Extract inode's security id
1543 * @inode: inode to extract the info from
1544 * @secid: where result will be saved
1546 static void smack_inode_getsecid(struct inode
*inode
, u32
*secid
)
1548 struct inode_smack
*isp
= inode
->i_security
;
1550 *secid
= isp
->smk_inode
->smk_secid
;
1558 * There is no smack_file_permission hook
1560 * Should access checks be done on each read or write?
1561 * UNICOS and SELinux say yes.
1562 * Trusted Solaris, Trusted Irix, and just about everyone else says no.
1564 * I'll say no for now. Smack does not do the frequent
1565 * label changing that SELinux does.
1569 * smack_file_alloc_security - assign a file security blob
1572 * The security blob for a file is a pointer to the master
1573 * label list, so no allocation is done.
1575 * f_security is the owner security information. It
1576 * isn't used on file access checks, it's for send_sigio.
1580 static int smack_file_alloc_security(struct file
*file
)
1582 struct smack_known
*skp
= smk_of_current();
1584 file
->f_security
= skp
;
1589 * smack_file_free_security - clear a file security blob
1592 * The security blob for a file is a pointer to the master
1593 * label list, so no memory is freed.
1595 static void smack_file_free_security(struct file
*file
)
1597 file
->f_security
= NULL
;
1601 * smack_file_ioctl - Smack check on ioctls
1606 * Relies heavily on the correct use of the ioctl command conventions.
1608 * Returns 0 if allowed, error code otherwise
1610 static int smack_file_ioctl(struct file
*file
, unsigned int cmd
,
1614 struct smk_audit_info ad
;
1615 struct inode
*inode
= file_inode(file
);
1617 if (unlikely(IS_PRIVATE(inode
)))
1620 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_PATH
);
1621 smk_ad_setfield_u_fs_path(&ad
, file
->f_path
);
1623 if (_IOC_DIR(cmd
) & _IOC_WRITE
) {
1624 rc
= smk_curacc(smk_of_inode(inode
), MAY_WRITE
, &ad
);
1625 rc
= smk_bu_file(file
, MAY_WRITE
, rc
);
1628 if (rc
== 0 && (_IOC_DIR(cmd
) & _IOC_READ
)) {
1629 rc
= smk_curacc(smk_of_inode(inode
), MAY_READ
, &ad
);
1630 rc
= smk_bu_file(file
, MAY_READ
, rc
);
1637 * smack_file_lock - Smack check on file locking
1641 * Returns 0 if current has lock access, error code otherwise
1643 static int smack_file_lock(struct file
*file
, unsigned int cmd
)
1645 struct smk_audit_info ad
;
1647 struct inode
*inode
= file_inode(file
);
1649 if (unlikely(IS_PRIVATE(inode
)))
1652 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_PATH
);
1653 smk_ad_setfield_u_fs_path(&ad
, file
->f_path
);
1654 rc
= smk_curacc(smk_of_inode(inode
), MAY_LOCK
, &ad
);
1655 rc
= smk_bu_file(file
, MAY_LOCK
, rc
);
1660 * smack_file_fcntl - Smack check on fcntl
1662 * @cmd: what action to check
1665 * Generally these operations are harmless.
1666 * File locking operations present an obvious mechanism
1667 * for passing information, so they require write access.
1669 * Returns 0 if current has access, error code otherwise
1671 static int smack_file_fcntl(struct file
*file
, unsigned int cmd
,
1674 struct smk_audit_info ad
;
1676 struct inode
*inode
= file_inode(file
);
1678 if (unlikely(IS_PRIVATE(inode
)))
1686 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_PATH
);
1687 smk_ad_setfield_u_fs_path(&ad
, file
->f_path
);
1688 rc
= smk_curacc(smk_of_inode(inode
), MAY_LOCK
, &ad
);
1689 rc
= smk_bu_file(file
, MAY_LOCK
, rc
);
1693 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_PATH
);
1694 smk_ad_setfield_u_fs_path(&ad
, file
->f_path
);
1695 rc
= smk_curacc(smk_of_inode(inode
), MAY_WRITE
, &ad
);
1696 rc
= smk_bu_file(file
, MAY_WRITE
, rc
);
1707 * Check permissions for a mmap operation. The @file may be NULL, e.g.
1708 * if mapping anonymous memory.
1709 * @file contains the file structure for file to map (may be NULL).
1710 * @reqprot contains the protection requested by the application.
1711 * @prot contains the protection that will be applied by the kernel.
1712 * @flags contains the operational flags.
1713 * Return 0 if permission is granted.
1715 static int smack_mmap_file(struct file
*file
,
1716 unsigned long reqprot
, unsigned long prot
,
1717 unsigned long flags
)
1719 struct smack_known
*skp
;
1720 struct smack_known
*mkp
;
1721 struct smack_rule
*srp
;
1722 struct task_smack
*tsp
;
1723 struct smack_known
*okp
;
1724 struct inode_smack
*isp
;
1725 struct superblock_smack
*sbsp
;
1734 if (unlikely(IS_PRIVATE(file_inode(file
))))
1737 isp
= file_inode(file
)->i_security
;
1738 if (isp
->smk_mmap
== NULL
)
1740 sbsp
= file_inode(file
)->i_sb
->s_security
;
1741 if (sbsp
->smk_flags
& SMK_SB_UNTRUSTED
&&
1742 isp
->smk_mmap
!= sbsp
->smk_root
)
1744 mkp
= isp
->smk_mmap
;
1746 tsp
= current_security();
1747 skp
= smk_of_current();
1752 * For each Smack rule associated with the subject
1753 * label verify that the SMACK64MMAP also has access
1754 * to that rule's object label.
1756 list_for_each_entry_rcu(srp
, &skp
->smk_rules
, list
) {
1757 okp
= srp
->smk_object
;
1759 * Matching labels always allows access.
1761 if (mkp
->smk_known
== okp
->smk_known
)
1764 * If there is a matching local rule take
1765 * that into account as well.
1767 may
= smk_access_entry(srp
->smk_subject
->smk_known
,
1771 may
= srp
->smk_access
;
1773 may
&= srp
->smk_access
;
1775 * If may is zero the SMACK64MMAP subject can't
1776 * possibly have less access.
1782 * Fetch the global list entry.
1783 * If there isn't one a SMACK64MMAP subject
1784 * can't have as much access as current.
1786 mmay
= smk_access_entry(mkp
->smk_known
, okp
->smk_known
,
1788 if (mmay
== -ENOENT
) {
1793 * If there is a local entry it modifies the
1794 * potential access, too.
1796 tmay
= smk_access_entry(mkp
->smk_known
, okp
->smk_known
,
1798 if (tmay
!= -ENOENT
)
1802 * If there is any access available to current that is
1803 * not available to a SMACK64MMAP subject
1806 if ((may
| mmay
) != mmay
) {
1818 * smack_file_set_fowner - set the file security blob value
1819 * @file: object in question
1822 static void smack_file_set_fowner(struct file
*file
)
1824 file
->f_security
= smk_of_current();
1828 * smack_file_send_sigiotask - Smack on sigio
1829 * @tsk: The target task
1830 * @fown: the object the signal come from
1833 * Allow a privileged task to get signals even if it shouldn't
1835 * Returns 0 if a subject with the object's smack could
1836 * write to the task, an error code otherwise.
1838 static int smack_file_send_sigiotask(struct task_struct
*tsk
,
1839 struct fown_struct
*fown
, int signum
)
1841 struct smack_known
*skp
;
1842 struct smack_known
*tkp
= smk_of_task(tsk
->cred
->security
);
1845 struct smk_audit_info ad
;
1848 * struct fown_struct is never outside the context of a struct file
1850 file
= container_of(fown
, struct file
, f_owner
);
1852 /* we don't log here as rc can be overriden */
1853 skp
= file
->f_security
;
1854 rc
= smk_access(skp
, tkp
, MAY_DELIVER
, NULL
);
1855 rc
= smk_bu_note("sigiotask", skp
, tkp
, MAY_DELIVER
, rc
);
1856 if (rc
!= 0 && has_capability(tsk
, CAP_MAC_OVERRIDE
))
1859 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_TASK
);
1860 smk_ad_setfield_u_tsk(&ad
, tsk
);
1861 smack_log(skp
->smk_known
, tkp
->smk_known
, MAY_DELIVER
, rc
, &ad
);
1866 * smack_file_receive - Smack file receive check
1869 * Returns 0 if current has access, error code otherwise
1871 static int smack_file_receive(struct file
*file
)
1875 struct smk_audit_info ad
;
1876 struct inode
*inode
= file_inode(file
);
1877 struct socket
*sock
;
1878 struct task_smack
*tsp
;
1879 struct socket_smack
*ssp
;
1881 if (unlikely(IS_PRIVATE(inode
)))
1884 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_PATH
);
1885 smk_ad_setfield_u_fs_path(&ad
, file
->f_path
);
1887 if (inode
->i_sb
->s_magic
== SOCKFS_MAGIC
) {
1888 sock
= SOCKET_I(inode
);
1889 ssp
= sock
->sk
->sk_security
;
1890 tsp
= current_security();
1892 * If the receiving process can't write to the
1893 * passed socket or if the passed socket can't
1894 * write to the receiving process don't accept
1895 * the passed socket.
1897 rc
= smk_access(tsp
->smk_task
, ssp
->smk_out
, MAY_WRITE
, &ad
);
1898 rc
= smk_bu_file(file
, may
, rc
);
1901 rc
= smk_access(ssp
->smk_in
, tsp
->smk_task
, MAY_WRITE
, &ad
);
1902 rc
= smk_bu_file(file
, may
, rc
);
1906 * This code relies on bitmasks.
1908 if (file
->f_mode
& FMODE_READ
)
1910 if (file
->f_mode
& FMODE_WRITE
)
1913 rc
= smk_curacc(smk_of_inode(inode
), may
, &ad
);
1914 rc
= smk_bu_file(file
, may
, rc
);
1919 * smack_file_open - Smack dentry open processing
1921 * @cred: task credential
1923 * Set the security blob in the file structure.
1924 * Allow the open only if the task has read access. There are
1925 * many read operations (e.g. fstat) that you can do with an
1926 * fd even if you have the file open write-only.
1930 static int smack_file_open(struct file
*file
, const struct cred
*cred
)
1932 struct task_smack
*tsp
= cred
->security
;
1933 struct inode
*inode
= file_inode(file
);
1934 struct smk_audit_info ad
;
1937 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_PATH
);
1938 smk_ad_setfield_u_fs_path(&ad
, file
->f_path
);
1939 rc
= smk_tskacc(tsp
, smk_of_inode(inode
), MAY_READ
, &ad
);
1940 rc
= smk_bu_credfile(cred
, file
, MAY_READ
, rc
);
1950 * smack_cred_alloc_blank - "allocate" blank task-level security credentials
1951 * @new: the new credentials
1952 * @gfp: the atomicity of any memory allocations
1954 * Prepare a blank set of credentials for modification. This must allocate all
1955 * the memory the LSM module might require such that cred_transfer() can
1956 * complete without error.
1958 static int smack_cred_alloc_blank(struct cred
*cred
, gfp_t gfp
)
1960 struct task_smack
*tsp
;
1962 tsp
= new_task_smack(NULL
, NULL
, gfp
);
1966 cred
->security
= tsp
;
1973 * smack_cred_free - "free" task-level security credentials
1974 * @cred: the credentials in question
1977 static void smack_cred_free(struct cred
*cred
)
1979 struct task_smack
*tsp
= cred
->security
;
1980 struct smack_rule
*rp
;
1981 struct list_head
*l
;
1982 struct list_head
*n
;
1986 cred
->security
= NULL
;
1988 smk_destroy_label_list(&tsp
->smk_relabel
);
1990 list_for_each_safe(l
, n
, &tsp
->smk_rules
) {
1991 rp
= list_entry(l
, struct smack_rule
, list
);
1992 list_del(&rp
->list
);
1999 * smack_cred_prepare - prepare new set of credentials for modification
2000 * @new: the new credentials
2001 * @old: the original credentials
2002 * @gfp: the atomicity of any memory allocations
2004 * Prepare a new set of credentials for modification.
2006 static int smack_cred_prepare(struct cred
*new, const struct cred
*old
,
2009 struct task_smack
*old_tsp
= old
->security
;
2010 struct task_smack
*new_tsp
;
2013 new_tsp
= new_task_smack(old_tsp
->smk_task
, old_tsp
->smk_task
, gfp
);
2014 if (new_tsp
== NULL
)
2017 new->security
= new_tsp
;
2019 rc
= smk_copy_rules(&new_tsp
->smk_rules
, &old_tsp
->smk_rules
, gfp
);
2023 rc
= smk_copy_relabel(&new_tsp
->smk_relabel
, &old_tsp
->smk_relabel
,
2032 * smack_cred_transfer - Transfer the old credentials to the new credentials
2033 * @new: the new credentials
2034 * @old: the original credentials
2036 * Fill in a set of blank credentials from another set of credentials.
2038 static void smack_cred_transfer(struct cred
*new, const struct cred
*old
)
2040 struct task_smack
*old_tsp
= old
->security
;
2041 struct task_smack
*new_tsp
= new->security
;
2043 new_tsp
->smk_task
= old_tsp
->smk_task
;
2044 new_tsp
->smk_forked
= old_tsp
->smk_task
;
2045 mutex_init(&new_tsp
->smk_rules_lock
);
2046 INIT_LIST_HEAD(&new_tsp
->smk_rules
);
2049 /* cbs copy rule list */
2053 * smack_cred_getsecid - get the secid corresponding to a creds structure
2054 * @c: the object creds
2055 * @secid: where to put the result
2057 * Sets the secid to contain a u32 version of the smack label.
2059 static void smack_cred_getsecid(const struct cred
*c
, u32
*secid
)
2061 struct smack_known
*skp
;
2064 skp
= smk_of_task(c
->security
);
2065 *secid
= skp
->smk_secid
;
2070 * smack_kernel_act_as - Set the subjective context in a set of credentials
2071 * @new: points to the set of credentials to be modified.
2072 * @secid: specifies the security ID to be set
2074 * Set the security data for a kernel service.
2076 static int smack_kernel_act_as(struct cred
*new, u32 secid
)
2078 struct task_smack
*new_tsp
= new->security
;
2080 new_tsp
->smk_task
= smack_from_secid(secid
);
2085 * smack_kernel_create_files_as - Set the file creation label in a set of creds
2086 * @new: points to the set of credentials to be modified
2087 * @inode: points to the inode to use as a reference
2089 * Set the file creation context in a set of credentials to the same
2090 * as the objective context of the specified inode
2092 static int smack_kernel_create_files_as(struct cred
*new,
2093 struct inode
*inode
)
2095 struct inode_smack
*isp
= inode
->i_security
;
2096 struct task_smack
*tsp
= new->security
;
2098 tsp
->smk_forked
= isp
->smk_inode
;
2099 tsp
->smk_task
= tsp
->smk_forked
;
2104 * smk_curacc_on_task - helper to log task related access
2105 * @p: the task object
2106 * @access: the access requested
2107 * @caller: name of the calling function for audit
2109 * Return 0 if access is permitted
2111 static int smk_curacc_on_task(struct task_struct
*p
, int access
,
2114 struct smk_audit_info ad
;
2115 struct smack_known
*skp
= smk_of_task_struct(p
);
2118 smk_ad_init(&ad
, caller
, LSM_AUDIT_DATA_TASK
);
2119 smk_ad_setfield_u_tsk(&ad
, p
);
2120 rc
= smk_curacc(skp
, access
, &ad
);
2121 rc
= smk_bu_task(p
, access
, rc
);
2126 * smack_task_setpgid - Smack check on setting pgid
2127 * @p: the task object
2130 * Return 0 if write access is permitted
2132 static int smack_task_setpgid(struct task_struct
*p
, pid_t pgid
)
2134 return smk_curacc_on_task(p
, MAY_WRITE
, __func__
);
2138 * smack_task_getpgid - Smack access check for getpgid
2139 * @p: the object task
2141 * Returns 0 if current can read the object task, error code otherwise
2143 static int smack_task_getpgid(struct task_struct
*p
)
2145 return smk_curacc_on_task(p
, MAY_READ
, __func__
);
2149 * smack_task_getsid - Smack access check for getsid
2150 * @p: the object task
2152 * Returns 0 if current can read the object task, error code otherwise
2154 static int smack_task_getsid(struct task_struct
*p
)
2156 return smk_curacc_on_task(p
, MAY_READ
, __func__
);
2160 * smack_task_getsecid - get the secid of the task
2161 * @p: the object task
2162 * @secid: where to put the result
2164 * Sets the secid to contain a u32 version of the smack label.
2166 static void smack_task_getsecid(struct task_struct
*p
, u32
*secid
)
2168 struct smack_known
*skp
= smk_of_task_struct(p
);
2170 *secid
= skp
->smk_secid
;
2174 * smack_task_setnice - Smack check on setting nice
2175 * @p: the task object
2178 * Return 0 if write access is permitted
2180 static int smack_task_setnice(struct task_struct
*p
, int nice
)
2182 return smk_curacc_on_task(p
, MAY_WRITE
, __func__
);
2186 * smack_task_setioprio - Smack check on setting ioprio
2187 * @p: the task object
2190 * Return 0 if write access is permitted
2192 static int smack_task_setioprio(struct task_struct
*p
, int ioprio
)
2194 return smk_curacc_on_task(p
, MAY_WRITE
, __func__
);
2198 * smack_task_getioprio - Smack check on reading ioprio
2199 * @p: the task object
2201 * Return 0 if read access is permitted
2203 static int smack_task_getioprio(struct task_struct
*p
)
2205 return smk_curacc_on_task(p
, MAY_READ
, __func__
);
2209 * smack_task_setscheduler - Smack check on setting scheduler
2210 * @p: the task object
2214 * Return 0 if read access is permitted
2216 static int smack_task_setscheduler(struct task_struct
*p
)
2218 return smk_curacc_on_task(p
, MAY_WRITE
, __func__
);
2222 * smack_task_getscheduler - Smack check on reading scheduler
2223 * @p: the task object
2225 * Return 0 if read access is permitted
2227 static int smack_task_getscheduler(struct task_struct
*p
)
2229 return smk_curacc_on_task(p
, MAY_READ
, __func__
);
2233 * smack_task_movememory - Smack check on moving memory
2234 * @p: the task object
2236 * Return 0 if write access is permitted
2238 static int smack_task_movememory(struct task_struct
*p
)
2240 return smk_curacc_on_task(p
, MAY_WRITE
, __func__
);
2244 * smack_task_kill - Smack check on signal delivery
2245 * @p: the task object
2248 * @cred: identifies the cred to use in lieu of current's
2250 * Return 0 if write access is permitted
2253 static int smack_task_kill(struct task_struct
*p
, struct siginfo
*info
,
2254 int sig
, const struct cred
*cred
)
2256 struct smk_audit_info ad
;
2257 struct smack_known
*skp
;
2258 struct smack_known
*tkp
= smk_of_task_struct(p
);
2262 return 0; /* null signal; existence test */
2264 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_TASK
);
2265 smk_ad_setfield_u_tsk(&ad
, p
);
2267 * Sending a signal requires that the sender
2268 * can write the receiver.
2271 rc
= smk_curacc(tkp
, MAY_DELIVER
, &ad
);
2272 rc
= smk_bu_task(p
, MAY_DELIVER
, rc
);
2276 * If the cred isn't NULL we're dealing with some USB IO
2277 * specific behavior. This is not clean. For one thing
2278 * we can't take privilege into account.
2280 skp
= smk_of_task(cred
->security
);
2281 rc
= smk_access(skp
, tkp
, MAY_DELIVER
, &ad
);
2282 rc
= smk_bu_note("USB signal", skp
, tkp
, MAY_DELIVER
, rc
);
2287 * smack_task_to_inode - copy task smack into the inode blob
2288 * @p: task to copy from
2289 * @inode: inode to copy to
2291 * Sets the smack pointer in the inode security blob
2293 static void smack_task_to_inode(struct task_struct
*p
, struct inode
*inode
)
2295 struct inode_smack
*isp
= inode
->i_security
;
2296 struct smack_known
*skp
= smk_of_task_struct(p
);
2298 isp
->smk_inode
= skp
;
2306 * smack_sk_alloc_security - Allocate a socket blob
2309 * @gfp_flags: memory allocation flags
2311 * Assign Smack pointers to current
2313 * Returns 0 on success, -ENOMEM is there's no memory
2315 static int smack_sk_alloc_security(struct sock
*sk
, int family
, gfp_t gfp_flags
)
2317 struct smack_known
*skp
= smk_of_current();
2318 struct socket_smack
*ssp
;
2320 ssp
= kzalloc(sizeof(struct socket_smack
), gfp_flags
);
2325 * Sockets created by kernel threads receive web label.
2327 if (unlikely(current
->flags
& PF_KTHREAD
)) {
2328 ssp
->smk_in
= &smack_known_web
;
2329 ssp
->smk_out
= &smack_known_web
;
2334 ssp
->smk_packet
= NULL
;
2336 sk
->sk_security
= ssp
;
2342 * smack_sk_free_security - Free a socket blob
2345 * Clears the blob pointer
2347 static void smack_sk_free_security(struct sock
*sk
)
2349 #ifdef SMACK_IPV6_PORT_LABELING
2350 struct smk_port_label
*spp
;
2352 if (sk
->sk_family
== PF_INET6
) {
2354 list_for_each_entry_rcu(spp
, &smk_ipv6_port_list
, list
) {
2355 if (spp
->smk_sock
!= sk
)
2357 spp
->smk_can_reuse
= 1;
2363 kfree(sk
->sk_security
);
2367 * smack_ipv4host_label - check host based restrictions
2368 * @sip: the object end
2370 * looks for host based access restrictions
2372 * This version will only be appropriate for really small sets of single label
2373 * hosts. The caller is responsible for ensuring that the RCU read lock is
2374 * taken before calling this function.
2376 * Returns the label of the far end or NULL if it's not special.
2378 static struct smack_known
*smack_ipv4host_label(struct sockaddr_in
*sip
)
2380 struct smk_net4addr
*snp
;
2381 struct in_addr
*siap
= &sip
->sin_addr
;
2383 if (siap
->s_addr
== 0)
2386 list_for_each_entry_rcu(snp
, &smk_net4addr_list
, list
)
2388 * we break after finding the first match because
2389 * the list is sorted from longest to shortest mask
2390 * so we have found the most specific match
2392 if (snp
->smk_host
.s_addr
==
2393 (siap
->s_addr
& snp
->smk_mask
.s_addr
))
2394 return snp
->smk_label
;
2399 #if IS_ENABLED(CONFIG_IPV6)
2401 * smk_ipv6_localhost - Check for local ipv6 host address
2404 * Returns boolean true if this is the localhost address
2406 static bool smk_ipv6_localhost(struct sockaddr_in6
*sip
)
2408 __be16
*be16p
= (__be16
*)&sip
->sin6_addr
;
2409 __be32
*be32p
= (__be32
*)&sip
->sin6_addr
;
2411 if (be32p
[0] == 0 && be32p
[1] == 0 && be32p
[2] == 0 && be16p
[6] == 0 &&
2412 ntohs(be16p
[7]) == 1)
2418 * smack_ipv6host_label - check host based restrictions
2419 * @sip: the object end
2421 * looks for host based access restrictions
2423 * This version will only be appropriate for really small sets of single label
2424 * hosts. The caller is responsible for ensuring that the RCU read lock is
2425 * taken before calling this function.
2427 * Returns the label of the far end or NULL if it's not special.
2429 static struct smack_known
*smack_ipv6host_label(struct sockaddr_in6
*sip
)
2431 struct smk_net6addr
*snp
;
2432 struct in6_addr
*sap
= &sip
->sin6_addr
;
2437 * It's local. Don't look for a host label.
2439 if (smk_ipv6_localhost(sip
))
2442 list_for_each_entry_rcu(snp
, &smk_net6addr_list
, list
) {
2444 * If the label is NULL the entry has
2445 * been renounced. Ignore it.
2447 if (snp
->smk_label
== NULL
)
2450 * we break after finding the first match because
2451 * the list is sorted from longest to shortest mask
2452 * so we have found the most specific match
2454 for (found
= 1, i
= 0; i
< 8; i
++) {
2455 if ((sap
->s6_addr16
[i
] & snp
->smk_mask
.s6_addr16
[i
]) !=
2456 snp
->smk_host
.s6_addr16
[i
]) {
2462 return snp
->smk_label
;
2467 #endif /* CONFIG_IPV6 */
2470 * smack_netlabel - Set the secattr on a socket
2472 * @labeled: socket label scheme
2474 * Convert the outbound smack value (smk_out) to a
2475 * secattr and attach it to the socket.
2477 * Returns 0 on success or an error code
2479 static int smack_netlabel(struct sock
*sk
, int labeled
)
2481 struct smack_known
*skp
;
2482 struct socket_smack
*ssp
= sk
->sk_security
;
2486 * Usually the netlabel code will handle changing the
2487 * packet labeling based on the label.
2488 * The case of a single label host is different, because
2489 * a single label host should never get a labeled packet
2490 * even though the label is usually associated with a packet
2494 bh_lock_sock_nested(sk
);
2496 if (ssp
->smk_out
== smack_net_ambient
||
2497 labeled
== SMACK_UNLABELED_SOCKET
)
2498 netlbl_sock_delattr(sk
);
2501 rc
= netlbl_sock_setattr(sk
, sk
->sk_family
, &skp
->smk_netlabel
);
2511 * smack_netlbel_send - Set the secattr on a socket and perform access checks
2513 * @sap: the destination address
2515 * Set the correct secattr for the given socket based on the destination
2516 * address and perform any outbound access checks needed.
2518 * Returns 0 on success or an error code.
2521 static int smack_netlabel_send(struct sock
*sk
, struct sockaddr_in
*sap
)
2523 struct smack_known
*skp
;
2526 struct smack_known
*hkp
;
2527 struct socket_smack
*ssp
= sk
->sk_security
;
2528 struct smk_audit_info ad
;
2531 hkp
= smack_ipv4host_label(sap
);
2534 struct lsm_network_audit net
;
2536 smk_ad_init_net(&ad
, __func__
, LSM_AUDIT_DATA_NET
, &net
);
2537 ad
.a
.u
.net
->family
= sap
->sin_family
;
2538 ad
.a
.u
.net
->dport
= sap
->sin_port
;
2539 ad
.a
.u
.net
->v4info
.daddr
= sap
->sin_addr
.s_addr
;
2541 sk_lbl
= SMACK_UNLABELED_SOCKET
;
2543 rc
= smk_access(skp
, hkp
, MAY_WRITE
, &ad
);
2544 rc
= smk_bu_note("IPv4 host check", skp
, hkp
, MAY_WRITE
, rc
);
2546 sk_lbl
= SMACK_CIPSO_SOCKET
;
2553 return smack_netlabel(sk
, sk_lbl
);
2556 #if IS_ENABLED(CONFIG_IPV6)
2558 * smk_ipv6_check - check Smack access
2559 * @subject: subject Smack label
2560 * @object: object Smack label
2562 * @act: the action being taken
2564 * Check an IPv6 access
2566 static int smk_ipv6_check(struct smack_known
*subject
,
2567 struct smack_known
*object
,
2568 struct sockaddr_in6
*address
, int act
)
2571 struct lsm_network_audit net
;
2573 struct smk_audit_info ad
;
2577 smk_ad_init_net(&ad
, __func__
, LSM_AUDIT_DATA_NET
, &net
);
2578 ad
.a
.u
.net
->family
= PF_INET6
;
2579 ad
.a
.u
.net
->dport
= ntohs(address
->sin6_port
);
2580 if (act
== SMK_RECEIVING
)
2581 ad
.a
.u
.net
->v6info
.saddr
= address
->sin6_addr
;
2583 ad
.a
.u
.net
->v6info
.daddr
= address
->sin6_addr
;
2585 rc
= smk_access(subject
, object
, MAY_WRITE
, &ad
);
2586 rc
= smk_bu_note("IPv6 check", subject
, object
, MAY_WRITE
, rc
);
2589 #endif /* CONFIG_IPV6 */
2591 #ifdef SMACK_IPV6_PORT_LABELING
2593 * smk_ipv6_port_label - Smack port access table management
2597 * Create or update the port list entry
2599 static void smk_ipv6_port_label(struct socket
*sock
, struct sockaddr
*address
)
2601 struct sock
*sk
= sock
->sk
;
2602 struct sockaddr_in6
*addr6
;
2603 struct socket_smack
*ssp
= sock
->sk
->sk_security
;
2604 struct smk_port_label
*spp
;
2605 unsigned short port
= 0;
2607 if (address
== NULL
) {
2609 * This operation is changing the Smack information
2610 * on the bound socket. Take the changes to the port
2614 list_for_each_entry_rcu(spp
, &smk_ipv6_port_list
, list
) {
2615 if (sk
!= spp
->smk_sock
)
2617 spp
->smk_in
= ssp
->smk_in
;
2618 spp
->smk_out
= ssp
->smk_out
;
2623 * A NULL address is only used for updating existing
2624 * bound entries. If there isn't one, it's OK.
2630 addr6
= (struct sockaddr_in6
*)address
;
2631 port
= ntohs(addr6
->sin6_port
);
2633 * This is a special case that is safely ignored.
2639 * Look for an existing port list entry.
2640 * This is an indication that a port is getting reused.
2643 list_for_each_entry_rcu(spp
, &smk_ipv6_port_list
, list
) {
2644 if (spp
->smk_port
!= port
|| spp
->smk_sock_type
!= sock
->type
)
2646 if (spp
->smk_can_reuse
!= 1) {
2650 spp
->smk_port
= port
;
2652 spp
->smk_in
= ssp
->smk_in
;
2653 spp
->smk_out
= ssp
->smk_out
;
2654 spp
->smk_can_reuse
= 0;
2660 * A new port entry is required.
2662 spp
= kzalloc(sizeof(*spp
), GFP_KERNEL
);
2666 spp
->smk_port
= port
;
2668 spp
->smk_in
= ssp
->smk_in
;
2669 spp
->smk_out
= ssp
->smk_out
;
2670 spp
->smk_sock_type
= sock
->type
;
2671 spp
->smk_can_reuse
= 0;
2673 mutex_lock(&smack_ipv6_lock
);
2674 list_add_rcu(&spp
->list
, &smk_ipv6_port_list
);
2675 mutex_unlock(&smack_ipv6_lock
);
2680 * smk_ipv6_port_check - check Smack port access
2684 * Create or update the port list entry
2686 static int smk_ipv6_port_check(struct sock
*sk
, struct sockaddr_in6
*address
,
2689 struct smk_port_label
*spp
;
2690 struct socket_smack
*ssp
= sk
->sk_security
;
2691 struct smack_known
*skp
= NULL
;
2692 unsigned short port
;
2693 struct smack_known
*object
;
2695 if (act
== SMK_RECEIVING
) {
2696 skp
= smack_ipv6host_label(address
);
2697 object
= ssp
->smk_in
;
2700 object
= smack_ipv6host_label(address
);
2704 * The other end is a single label host.
2706 if (skp
!= NULL
&& object
!= NULL
)
2707 return smk_ipv6_check(skp
, object
, address
, act
);
2709 skp
= smack_net_ambient
;
2711 object
= smack_net_ambient
;
2714 * It's remote, so port lookup does no good.
2716 if (!smk_ipv6_localhost(address
))
2717 return smk_ipv6_check(skp
, object
, address
, act
);
2720 * It's local so the send check has to have passed.
2722 if (act
== SMK_RECEIVING
)
2725 port
= ntohs(address
->sin6_port
);
2727 list_for_each_entry_rcu(spp
, &smk_ipv6_port_list
, list
) {
2728 if (spp
->smk_port
!= port
|| spp
->smk_sock_type
!= sk
->sk_type
)
2730 object
= spp
->smk_in
;
2731 if (act
== SMK_CONNECTING
)
2732 ssp
->smk_packet
= spp
->smk_out
;
2737 return smk_ipv6_check(skp
, object
, address
, act
);
2739 #endif /* SMACK_IPV6_PORT_LABELING */
2742 * smack_inode_setsecurity - set smack xattrs
2743 * @inode: the object
2744 * @name: attribute name
2745 * @value: attribute value
2746 * @size: size of the attribute
2749 * Sets the named attribute in the appropriate blob
2751 * Returns 0 on success, or an error code
2753 static int smack_inode_setsecurity(struct inode
*inode
, const char *name
,
2754 const void *value
, size_t size
, int flags
)
2756 struct smack_known
*skp
;
2757 struct inode_smack
*nsp
= inode
->i_security
;
2758 struct socket_smack
*ssp
;
2759 struct socket
*sock
;
2762 if (value
== NULL
|| size
> SMK_LONGLABEL
|| size
== 0)
2765 skp
= smk_import_entry(value
, size
);
2767 return PTR_ERR(skp
);
2769 if (strcmp(name
, XATTR_SMACK_SUFFIX
) == 0) {
2770 nsp
->smk_inode
= skp
;
2771 nsp
->smk_flags
|= SMK_INODE_INSTANT
;
2775 * The rest of the Smack xattrs are only on sockets.
2777 if (inode
->i_sb
->s_magic
!= SOCKFS_MAGIC
)
2780 sock
= SOCKET_I(inode
);
2781 if (sock
== NULL
|| sock
->sk
== NULL
)
2784 ssp
= sock
->sk
->sk_security
;
2786 if (strcmp(name
, XATTR_SMACK_IPIN
) == 0)
2788 else if (strcmp(name
, XATTR_SMACK_IPOUT
) == 0) {
2790 if (sock
->sk
->sk_family
== PF_INET
) {
2791 rc
= smack_netlabel(sock
->sk
, SMACK_CIPSO_SOCKET
);
2794 "Smack: \"%s\" netlbl error %d.\n",
2800 #ifdef SMACK_IPV6_PORT_LABELING
2801 if (sock
->sk
->sk_family
== PF_INET6
)
2802 smk_ipv6_port_label(sock
, NULL
);
2809 * smack_socket_post_create - finish socket setup
2811 * @family: protocol family
2816 * Sets the netlabel information on the socket
2818 * Returns 0 on success, and error code otherwise
2820 static int smack_socket_post_create(struct socket
*sock
, int family
,
2821 int type
, int protocol
, int kern
)
2823 struct socket_smack
*ssp
;
2825 if (sock
->sk
== NULL
)
2829 * Sockets created by kernel threads receive web label.
2831 if (unlikely(current
->flags
& PF_KTHREAD
)) {
2832 ssp
= sock
->sk
->sk_security
;
2833 ssp
->smk_in
= &smack_known_web
;
2834 ssp
->smk_out
= &smack_known_web
;
2837 if (family
!= PF_INET
)
2840 * Set the outbound netlbl.
2842 return smack_netlabel(sock
->sk
, SMACK_CIPSO_SOCKET
);
2845 #ifdef SMACK_IPV6_PORT_LABELING
2847 * smack_socket_bind - record port binding information.
2849 * @address: the port address
2850 * @addrlen: size of the address
2852 * Records the label bound to a port.
2856 static int smack_socket_bind(struct socket
*sock
, struct sockaddr
*address
,
2859 if (sock
->sk
!= NULL
&& sock
->sk
->sk_family
== PF_INET6
)
2860 smk_ipv6_port_label(sock
, address
);
2863 #endif /* SMACK_IPV6_PORT_LABELING */
2866 * smack_socket_connect - connect access check
2868 * @sap: the other end
2869 * @addrlen: size of sap
2871 * Verifies that a connection may be possible
2873 * Returns 0 on success, and error code otherwise
2875 static int smack_socket_connect(struct socket
*sock
, struct sockaddr
*sap
,
2879 #if IS_ENABLED(CONFIG_IPV6)
2880 struct sockaddr_in6
*sip
= (struct sockaddr_in6
*)sap
;
2882 #ifdef SMACK_IPV6_SECMARK_LABELING
2883 struct smack_known
*rsp
;
2884 struct socket_smack
*ssp
;
2887 if (sock
->sk
== NULL
)
2890 #ifdef SMACK_IPV6_SECMARK_LABELING
2891 ssp
= sock
->sk
->sk_security
;
2894 switch (sock
->sk
->sk_family
) {
2896 if (addrlen
< sizeof(struct sockaddr_in
))
2898 rc
= smack_netlabel_send(sock
->sk
, (struct sockaddr_in
*)sap
);
2901 if (addrlen
< sizeof(struct sockaddr_in6
))
2903 #ifdef SMACK_IPV6_SECMARK_LABELING
2904 rsp
= smack_ipv6host_label(sip
);
2906 rc
= smk_ipv6_check(ssp
->smk_out
, rsp
, sip
,
2909 #ifdef SMACK_IPV6_PORT_LABELING
2910 rc
= smk_ipv6_port_check(sock
->sk
, sip
, SMK_CONNECTING
);
2918 * smack_flags_to_may - convert S_ to MAY_ values
2919 * @flags: the S_ value
2921 * Returns the equivalent MAY_ value
2923 static int smack_flags_to_may(int flags
)
2927 if (flags
& S_IRUGO
)
2929 if (flags
& S_IWUGO
)
2931 if (flags
& S_IXUGO
)
2938 * smack_msg_msg_alloc_security - Set the security blob for msg_msg
2943 static int smack_msg_msg_alloc_security(struct msg_msg
*msg
)
2945 struct smack_known
*skp
= smk_of_current();
2947 msg
->security
= skp
;
2952 * smack_msg_msg_free_security - Clear the security blob for msg_msg
2955 * Clears the blob pointer
2957 static void smack_msg_msg_free_security(struct msg_msg
*msg
)
2959 msg
->security
= NULL
;
2963 * smack_of_ipc - the smack pointer for the ipc
2966 * Returns a pointer to the smack value
2968 static struct smack_known
*smack_of_ipc(struct kern_ipc_perm
*isp
)
2970 return (struct smack_known
*)isp
->security
;
2974 * smack_ipc_alloc_security - Set the security blob for ipc
2979 static int smack_ipc_alloc_security(struct kern_ipc_perm
*isp
)
2981 struct smack_known
*skp
= smk_of_current();
2983 isp
->security
= skp
;
2988 * smack_ipc_free_security - Clear the security blob for ipc
2991 * Clears the blob pointer
2993 static void smack_ipc_free_security(struct kern_ipc_perm
*isp
)
2995 isp
->security
= NULL
;
2999 * smk_curacc_shm : check if current has access on shm
3001 * @access : access requested
3003 * Returns 0 if current has the requested access, error code otherwise
3005 static int smk_curacc_shm(struct kern_ipc_perm
*isp
, int access
)
3007 struct smack_known
*ssp
= smack_of_ipc(isp
);
3008 struct smk_audit_info ad
;
3012 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_IPC
);
3013 ad
.a
.u
.ipc_id
= isp
->id
;
3015 rc
= smk_curacc(ssp
, access
, &ad
);
3016 rc
= smk_bu_current("shm", ssp
, access
, rc
);
3021 * smack_shm_associate - Smack access check for shm
3023 * @shmflg: access requested
3025 * Returns 0 if current has the requested access, error code otherwise
3027 static int smack_shm_associate(struct kern_ipc_perm
*isp
, int shmflg
)
3031 may
= smack_flags_to_may(shmflg
);
3032 return smk_curacc_shm(isp
, may
);
3036 * smack_shm_shmctl - Smack access check for shm
3038 * @cmd: what it wants to do
3040 * Returns 0 if current has the requested access, error code otherwise
3042 static int smack_shm_shmctl(struct kern_ipc_perm
*isp
, int cmd
)
3056 may
= MAY_READWRITE
;
3061 * System level information.
3067 return smk_curacc_shm(isp
, may
);
3071 * smack_shm_shmat - Smack access for shmat
3074 * @shmflg: access requested
3076 * Returns 0 if current has the requested access, error code otherwise
3078 static int smack_shm_shmat(struct kern_ipc_perm
*ipc
, char __user
*shmaddr
,
3083 may
= smack_flags_to_may(shmflg
);
3084 return smk_curacc_shm(ipc
, may
);
3088 * smk_curacc_sem : check if current has access on sem
3090 * @access : access requested
3092 * Returns 0 if current has the requested access, error code otherwise
3094 static int smk_curacc_sem(struct kern_ipc_perm
*isp
, int access
)
3096 struct smack_known
*ssp
= smack_of_ipc(isp
);
3097 struct smk_audit_info ad
;
3101 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_IPC
);
3102 ad
.a
.u
.ipc_id
= isp
->id
;
3104 rc
= smk_curacc(ssp
, access
, &ad
);
3105 rc
= smk_bu_current("sem", ssp
, access
, rc
);
3110 * smack_sem_associate - Smack access check for sem
3112 * @semflg: access requested
3114 * Returns 0 if current has the requested access, error code otherwise
3116 static int smack_sem_associate(struct kern_ipc_perm
*isp
, int semflg
)
3120 may
= smack_flags_to_may(semflg
);
3121 return smk_curacc_sem(isp
, may
);
3125 * smack_sem_shmctl - Smack access check for sem
3127 * @cmd: what it wants to do
3129 * Returns 0 if current has the requested access, error code otherwise
3131 static int smack_sem_semctl(struct kern_ipc_perm
*isp
, int cmd
)
3150 may
= MAY_READWRITE
;
3155 * System level information
3162 return smk_curacc_sem(isp
, may
);
3166 * smack_sem_semop - Smack checks of semaphore operations
3172 * Treated as read and write in all cases.
3174 * Returns 0 if access is allowed, error code otherwise
3176 static int smack_sem_semop(struct kern_ipc_perm
*isp
, struct sembuf
*sops
,
3177 unsigned nsops
, int alter
)
3179 return smk_curacc_sem(isp
, MAY_READWRITE
);
3183 * smk_curacc_msq : helper to check if current has access on msq
3185 * @access : access requested
3187 * return 0 if current has access, error otherwise
3189 static int smk_curacc_msq(struct kern_ipc_perm
*isp
, int access
)
3191 struct smack_known
*msp
= smack_of_ipc(isp
);
3192 struct smk_audit_info ad
;
3196 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_IPC
);
3197 ad
.a
.u
.ipc_id
= isp
->id
;
3199 rc
= smk_curacc(msp
, access
, &ad
);
3200 rc
= smk_bu_current("msq", msp
, access
, rc
);
3205 * smack_msg_queue_associate - Smack access check for msg_queue
3207 * @msqflg: access requested
3209 * Returns 0 if current has the requested access, error code otherwise
3211 static int smack_msg_queue_associate(struct kern_ipc_perm
*isp
, int msqflg
)
3215 may
= smack_flags_to_may(msqflg
);
3216 return smk_curacc_msq(isp
, may
);
3220 * smack_msg_queue_msgctl - Smack access check for msg_queue
3222 * @cmd: what it wants to do
3224 * Returns 0 if current has the requested access, error code otherwise
3226 static int smack_msg_queue_msgctl(struct kern_ipc_perm
*isp
, int cmd
)
3238 may
= MAY_READWRITE
;
3243 * System level information
3250 return smk_curacc_msq(isp
, may
);
3254 * smack_msg_queue_msgsnd - Smack access check for msg_queue
3257 * @msqflg: access requested
3259 * Returns 0 if current has the requested access, error code otherwise
3261 static int smack_msg_queue_msgsnd(struct kern_ipc_perm
*isp
, struct msg_msg
*msg
,
3266 may
= smack_flags_to_may(msqflg
);
3267 return smk_curacc_msq(isp
, may
);
3271 * smack_msg_queue_msgsnd - Smack access check for msg_queue
3278 * Returns 0 if current has read and write access, error code otherwise
3280 static int smack_msg_queue_msgrcv(struct kern_ipc_perm
*isp
, struct msg_msg
*msg
,
3281 struct task_struct
*target
, long type
, int mode
)
3283 return smk_curacc_msq(isp
, MAY_READWRITE
);
3287 * smack_ipc_permission - Smack access for ipc_permission()
3288 * @ipp: the object permissions
3289 * @flag: access requested
3291 * Returns 0 if current has read and write access, error code otherwise
3293 static int smack_ipc_permission(struct kern_ipc_perm
*ipp
, short flag
)
3295 struct smack_known
*iskp
= ipp
->security
;
3296 int may
= smack_flags_to_may(flag
);
3297 struct smk_audit_info ad
;
3301 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_IPC
);
3302 ad
.a
.u
.ipc_id
= ipp
->id
;
3304 rc
= smk_curacc(iskp
, may
, &ad
);
3305 rc
= smk_bu_current("svipc", iskp
, may
, rc
);
3310 * smack_ipc_getsecid - Extract smack security id
3311 * @ipp: the object permissions
3312 * @secid: where result will be saved
3314 static void smack_ipc_getsecid(struct kern_ipc_perm
*ipp
, u32
*secid
)
3316 struct smack_known
*iskp
= ipp
->security
;
3318 *secid
= iskp
->smk_secid
;
3322 * smack_d_instantiate - Make sure the blob is correct on an inode
3323 * @opt_dentry: dentry where inode will be attached
3324 * @inode: the object
3326 * Set the inode's security blob if it hasn't been done already.
3328 static void smack_d_instantiate(struct dentry
*opt_dentry
, struct inode
*inode
)
3330 struct super_block
*sbp
;
3331 struct superblock_smack
*sbsp
;
3332 struct inode_smack
*isp
;
3333 struct smack_known
*skp
;
3334 struct smack_known
*ckp
= smk_of_current();
3335 struct smack_known
*final
;
3336 char trattr
[TRANS_TRUE_SIZE
];
3344 isp
= inode
->i_security
;
3346 mutex_lock(&isp
->smk_lock
);
3348 * If the inode is already instantiated
3349 * take the quick way out
3351 if (isp
->smk_flags
& SMK_INODE_INSTANT
)
3355 sbsp
= sbp
->s_security
;
3357 * We're going to use the superblock default label
3358 * if there's no label on the file.
3360 final
= sbsp
->smk_default
;
3363 * If this is the root inode the superblock
3364 * may be in the process of initialization.
3365 * If that is the case use the root value out
3366 * of the superblock.
3368 if (opt_dentry
->d_parent
== opt_dentry
) {
3369 switch (sbp
->s_magic
) {
3370 case CGROUP_SUPER_MAGIC
:
3371 case CGROUP2_SUPER_MAGIC
:
3373 * The cgroup filesystem is never mounted,
3374 * so there's no opportunity to set the mount
3377 sbsp
->smk_root
= &smack_known_star
;
3378 sbsp
->smk_default
= &smack_known_star
;
3379 isp
->smk_inode
= sbsp
->smk_root
;
3383 * What about shmem/tmpfs anonymous files with dentry
3384 * obtained from d_alloc_pseudo()?
3386 isp
->smk_inode
= smk_of_current();
3389 isp
->smk_inode
= smk_of_current();
3393 * Socket access is controlled by the socket
3394 * structures associated with the task involved.
3396 isp
->smk_inode
= &smack_known_star
;
3399 isp
->smk_inode
= sbsp
->smk_root
;
3402 isp
->smk_flags
|= SMK_INODE_INSTANT
;
3407 * This is pretty hackish.
3408 * Casey says that we shouldn't have to do
3409 * file system specific code, but it does help
3410 * with keeping it simple.
3412 switch (sbp
->s_magic
) {
3414 case CGROUP_SUPER_MAGIC
:
3415 case CGROUP2_SUPER_MAGIC
:
3417 * Casey says that it's a little embarrassing
3418 * that the smack file system doesn't do
3419 * extended attributes.
3421 * Cgroupfs is special
3423 final
= &smack_known_star
;
3425 case DEVPTS_SUPER_MAGIC
:
3427 * devpts seems content with the label of the task.
3428 * Programs that change smack have to treat the
3433 case PROC_SUPER_MAGIC
:
3435 * Casey says procfs appears not to care.
3436 * The superblock default suffices.
3441 * Device labels should come from the filesystem,
3442 * but watch out, because they're volitile,
3443 * getting recreated on every reboot.
3445 final
= &smack_known_star
;
3449 * If a smack value has been set we want to use it,
3450 * but since tmpfs isn't giving us the opportunity
3451 * to set mount options simulate setting the
3452 * superblock default.
3456 * This isn't an understood special case.
3457 * Get the value from the xattr.
3461 * UNIX domain sockets use lower level socket data.
3463 if (S_ISSOCK(inode
->i_mode
)) {
3464 final
= &smack_known_star
;
3468 * No xattr support means, alas, no SMACK label.
3469 * Use the aforeapplied default.
3470 * It would be curious if the label of the task
3471 * does not match that assigned.
3473 if (!(inode
->i_opflags
& IOP_XATTR
))
3476 * Get the dentry for xattr.
3478 dp
= dget(opt_dentry
);
3479 skp
= smk_fetch(XATTR_NAME_SMACK
, inode
, dp
);
3480 if (!IS_ERR_OR_NULL(skp
))
3484 * Transmuting directory
3486 if (S_ISDIR(inode
->i_mode
)) {
3488 * If this is a new directory and the label was
3489 * transmuted when the inode was initialized
3490 * set the transmute attribute on the directory
3491 * and mark the inode.
3493 * If there is a transmute attribute on the
3494 * directory mark the inode.
3496 if (isp
->smk_flags
& SMK_INODE_CHANGED
) {
3497 isp
->smk_flags
&= ~SMK_INODE_CHANGED
;
3498 rc
= __vfs_setxattr(dp
, inode
,
3499 XATTR_NAME_SMACKTRANSMUTE
,
3500 TRANS_TRUE
, TRANS_TRUE_SIZE
,
3503 rc
= __vfs_getxattr(dp
, inode
,
3504 XATTR_NAME_SMACKTRANSMUTE
, trattr
,
3506 if (rc
>= 0 && strncmp(trattr
, TRANS_TRUE
,
3507 TRANS_TRUE_SIZE
) != 0)
3511 transflag
= SMK_INODE_TRANSMUTE
;
3514 * Don't let the exec or mmap label be "*" or "@".
3516 skp
= smk_fetch(XATTR_NAME_SMACKEXEC
, inode
, dp
);
3517 if (IS_ERR(skp
) || skp
== &smack_known_star
||
3518 skp
== &smack_known_web
)
3520 isp
->smk_task
= skp
;
3522 skp
= smk_fetch(XATTR_NAME_SMACKMMAP
, inode
, dp
);
3523 if (IS_ERR(skp
) || skp
== &smack_known_star
||
3524 skp
== &smack_known_web
)
3526 isp
->smk_mmap
= skp
;
3533 isp
->smk_inode
= ckp
;
3535 isp
->smk_inode
= final
;
3537 isp
->smk_flags
|= (SMK_INODE_INSTANT
| transflag
);
3540 mutex_unlock(&isp
->smk_lock
);
3545 * smack_getprocattr - Smack process attribute access
3546 * @p: the object task
3547 * @name: the name of the attribute in /proc/.../attr
3548 * @value: where to put the result
3550 * Places a copy of the task Smack into value
3552 * Returns the length of the smack label or an error code
3554 static int smack_getprocattr(struct task_struct
*p
, char *name
, char **value
)
3556 struct smack_known
*skp
= smk_of_task_struct(p
);
3560 if (strcmp(name
, "current") != 0)
3563 cp
= kstrdup(skp
->smk_known
, GFP_KERNEL
);
3573 * smack_setprocattr - Smack process attribute setting
3574 * @name: the name of the attribute in /proc/.../attr
3575 * @value: the value to set
3576 * @size: the size of the value
3578 * Sets the Smack value of the task. Only setting self
3579 * is permitted and only with privilege
3581 * Returns the length of the smack label or an error code
3583 static int smack_setprocattr(const char *name
, void *value
, size_t size
)
3585 struct task_smack
*tsp
= current_security();
3587 struct smack_known
*skp
;
3588 struct smack_known_list_elem
*sklep
;
3591 if (!smack_privileged(CAP_MAC_ADMIN
) && list_empty(&tsp
->smk_relabel
))
3594 if (value
== NULL
|| size
== 0 || size
>= SMK_LONGLABEL
)
3597 if (strcmp(name
, "current") != 0)
3600 skp
= smk_import_entry(value
, size
);
3602 return PTR_ERR(skp
);
3605 * No process is ever allowed the web ("@") label
3606 * and the star ("*") label.
3608 if (skp
== &smack_known_web
|| skp
== &smack_known_star
)
3611 if (!smack_privileged(CAP_MAC_ADMIN
)) {
3613 list_for_each_entry(sklep
, &tsp
->smk_relabel
, list
)
3614 if (sklep
->smk_label
== skp
) {
3622 new = prepare_creds();
3626 tsp
= new->security
;
3627 tsp
->smk_task
= skp
;
3629 * process can change its label only once
3631 smk_destroy_label_list(&tsp
->smk_relabel
);
3638 * smack_unix_stream_connect - Smack access on UDS
3640 * @other: the other sock
3643 * Return 0 if a subject with the smack of sock could access
3644 * an object with the smack of other, otherwise an error code
3646 static int smack_unix_stream_connect(struct sock
*sock
,
3647 struct sock
*other
, struct sock
*newsk
)
3649 struct smack_known
*skp
;
3650 struct smack_known
*okp
;
3651 struct socket_smack
*ssp
= sock
->sk_security
;
3652 struct socket_smack
*osp
= other
->sk_security
;
3653 struct socket_smack
*nsp
= newsk
->sk_security
;
3654 struct smk_audit_info ad
;
3657 struct lsm_network_audit net
;
3660 if (!smack_privileged(CAP_MAC_OVERRIDE
)) {
3664 smk_ad_init_net(&ad
, __func__
, LSM_AUDIT_DATA_NET
, &net
);
3665 smk_ad_setfield_u_net_sk(&ad
, other
);
3667 rc
= smk_access(skp
, okp
, MAY_WRITE
, &ad
);
3668 rc
= smk_bu_note("UDS connect", skp
, okp
, MAY_WRITE
, rc
);
3672 rc
= smk_access(okp
, skp
, MAY_WRITE
, &ad
);
3673 rc
= smk_bu_note("UDS connect", okp
, skp
,
3679 * Cross reference the peer labels for SO_PEERSEC.
3682 nsp
->smk_packet
= ssp
->smk_out
;
3683 ssp
->smk_packet
= osp
->smk_out
;
3690 * smack_unix_may_send - Smack access on UDS
3692 * @other: the other socket
3694 * Return 0 if a subject with the smack of sock could access
3695 * an object with the smack of other, otherwise an error code
3697 static int smack_unix_may_send(struct socket
*sock
, struct socket
*other
)
3699 struct socket_smack
*ssp
= sock
->sk
->sk_security
;
3700 struct socket_smack
*osp
= other
->sk
->sk_security
;
3701 struct smk_audit_info ad
;
3705 struct lsm_network_audit net
;
3707 smk_ad_init_net(&ad
, __func__
, LSM_AUDIT_DATA_NET
, &net
);
3708 smk_ad_setfield_u_net_sk(&ad
, other
->sk
);
3711 if (smack_privileged(CAP_MAC_OVERRIDE
))
3714 rc
= smk_access(ssp
->smk_out
, osp
->smk_in
, MAY_WRITE
, &ad
);
3715 rc
= smk_bu_note("UDS send", ssp
->smk_out
, osp
->smk_in
, MAY_WRITE
, rc
);
3720 * smack_socket_sendmsg - Smack check based on destination host
3723 * @size: the size of the message
3725 * Return 0 if the current subject can write to the destination host.
3726 * For IPv4 this is only a question if the destination is a single label host.
3727 * For IPv6 this is a check against the label of the port.
3729 static int smack_socket_sendmsg(struct socket
*sock
, struct msghdr
*msg
,
3732 struct sockaddr_in
*sip
= (struct sockaddr_in
*) msg
->msg_name
;
3733 #if IS_ENABLED(CONFIG_IPV6)
3734 struct sockaddr_in6
*sap
= (struct sockaddr_in6
*) msg
->msg_name
;
3736 #ifdef SMACK_IPV6_SECMARK_LABELING
3737 struct socket_smack
*ssp
= sock
->sk
->sk_security
;
3738 struct smack_known
*rsp
;
3743 * Perfectly reasonable for this to be NULL
3748 switch (sock
->sk
->sk_family
) {
3750 rc
= smack_netlabel_send(sock
->sk
, sip
);
3753 #ifdef SMACK_IPV6_SECMARK_LABELING
3754 rsp
= smack_ipv6host_label(sap
);
3756 rc
= smk_ipv6_check(ssp
->smk_out
, rsp
, sap
,
3759 #ifdef SMACK_IPV6_PORT_LABELING
3760 rc
= smk_ipv6_port_check(sock
->sk
, sap
, SMK_SENDING
);
3768 * smack_from_secattr - Convert a netlabel attr.mls.lvl/attr.mls.cat pair to smack
3769 * @sap: netlabel secattr
3770 * @ssp: socket security information
3772 * Returns a pointer to a Smack label entry found on the label list.
3774 static struct smack_known
*smack_from_secattr(struct netlbl_lsm_secattr
*sap
,
3775 struct socket_smack
*ssp
)
3777 struct smack_known
*skp
;
3782 if ((sap
->flags
& NETLBL_SECATTR_MLS_LVL
) != 0) {
3784 * Looks like a CIPSO packet.
3785 * If there are flags but no level netlabel isn't
3786 * behaving the way we expect it to.
3788 * Look it up in the label table
3789 * Without guidance regarding the smack value
3790 * for the packet fall back on the network
3794 list_for_each_entry_rcu(skp
, &smack_known_list
, list
) {
3795 if (sap
->attr
.mls
.lvl
!= skp
->smk_netlabel
.attr
.mls
.lvl
)
3798 * Compare the catsets. Use the netlbl APIs.
3800 if ((sap
->flags
& NETLBL_SECATTR_MLS_CAT
) == 0) {
3801 if ((skp
->smk_netlabel
.flags
&
3802 NETLBL_SECATTR_MLS_CAT
) == 0)
3806 for (acat
= -1, kcat
= -1; acat
== kcat
; ) {
3807 acat
= netlbl_catmap_walk(sap
->attr
.mls
.cat
,
3809 kcat
= netlbl_catmap_walk(
3810 skp
->smk_netlabel
.attr
.mls
.cat
,
3812 if (acat
< 0 || kcat
< 0)
3825 if (ssp
!= NULL
&& ssp
->smk_in
== &smack_known_star
)
3826 return &smack_known_web
;
3827 return &smack_known_star
;
3829 if ((sap
->flags
& NETLBL_SECATTR_SECID
) != 0)
3831 * Looks like a fallback, which gives us a secid.
3833 return smack_from_secid(sap
->attr
.secid
);
3835 * Without guidance regarding the smack value
3836 * for the packet fall back on the network
3839 return smack_net_ambient
;
3842 #if IS_ENABLED(CONFIG_IPV6)
3843 static int smk_skb_to_addr_ipv6(struct sk_buff
*skb
, struct sockaddr_in6
*sip
)
3847 int proto
= -EINVAL
;
3848 struct ipv6hdr _ipv6h
;
3849 struct ipv6hdr
*ip6
;
3851 struct tcphdr _tcph
, *th
;
3852 struct udphdr _udph
, *uh
;
3853 struct dccp_hdr _dccph
, *dh
;
3857 offset
= skb_network_offset(skb
);
3858 ip6
= skb_header_pointer(skb
, offset
, sizeof(_ipv6h
), &_ipv6h
);
3861 sip
->sin6_addr
= ip6
->saddr
;
3863 nexthdr
= ip6
->nexthdr
;
3864 offset
+= sizeof(_ipv6h
);
3865 offset
= ipv6_skip_exthdr(skb
, offset
, &nexthdr
, &frag_off
);
3872 th
= skb_header_pointer(skb
, offset
, sizeof(_tcph
), &_tcph
);
3874 sip
->sin6_port
= th
->source
;
3877 uh
= skb_header_pointer(skb
, offset
, sizeof(_udph
), &_udph
);
3879 sip
->sin6_port
= uh
->source
;
3882 dh
= skb_header_pointer(skb
, offset
, sizeof(_dccph
), &_dccph
);
3884 sip
->sin6_port
= dh
->dccph_sport
;
3889 #endif /* CONFIG_IPV6 */
3892 * smack_socket_sock_rcv_skb - Smack packet delivery access check
3896 * Returns 0 if the packet should be delivered, an error code otherwise
3898 static int smack_socket_sock_rcv_skb(struct sock
*sk
, struct sk_buff
*skb
)
3900 struct netlbl_lsm_secattr secattr
;
3901 struct socket_smack
*ssp
= sk
->sk_security
;
3902 struct smack_known
*skp
= NULL
;
3904 struct smk_audit_info ad
;
3906 struct lsm_network_audit net
;
3908 #if IS_ENABLED(CONFIG_IPV6)
3909 struct sockaddr_in6 sadd
;
3911 #endif /* CONFIG_IPV6 */
3913 switch (sk
->sk_family
) {
3915 #ifdef CONFIG_SECURITY_SMACK_NETFILTER
3917 * If there is a secmark use it rather than the CIPSO label.
3918 * If there is no secmark fall back to CIPSO.
3919 * The secmark is assumed to reflect policy better.
3921 if (skb
&& skb
->secmark
!= 0) {
3922 skp
= smack_from_secid(skb
->secmark
);
3925 #endif /* CONFIG_SECURITY_SMACK_NETFILTER */
3927 * Translate what netlabel gave us.
3929 netlbl_secattr_init(&secattr
);
3931 rc
= netlbl_skbuff_getattr(skb
, sk
->sk_family
, &secattr
);
3933 skp
= smack_from_secattr(&secattr
, ssp
);
3935 skp
= smack_net_ambient
;
3937 netlbl_secattr_destroy(&secattr
);
3939 #ifdef CONFIG_SECURITY_SMACK_NETFILTER
3943 smk_ad_init_net(&ad
, __func__
, LSM_AUDIT_DATA_NET
, &net
);
3944 ad
.a
.u
.net
->family
= sk
->sk_family
;
3945 ad
.a
.u
.net
->netif
= skb
->skb_iif
;
3946 ipv4_skb_to_auditdata(skb
, &ad
.a
, NULL
);
3949 * Receiving a packet requires that the other end
3950 * be able to write here. Read access is not required.
3951 * This is the simplist possible security model
3954 rc
= smk_access(skp
, ssp
->smk_in
, MAY_WRITE
, &ad
);
3955 rc
= smk_bu_note("IPv4 delivery", skp
, ssp
->smk_in
,
3958 netlbl_skbuff_err(skb
, sk
->sk_family
, rc
, 0);
3960 #if IS_ENABLED(CONFIG_IPV6)
3962 proto
= smk_skb_to_addr_ipv6(skb
, &sadd
);
3963 if (proto
!= IPPROTO_UDP
&& proto
!= IPPROTO_TCP
)
3965 #ifdef SMACK_IPV6_SECMARK_LABELING
3966 if (skb
&& skb
->secmark
!= 0)
3967 skp
= smack_from_secid(skb
->secmark
);
3969 skp
= smack_ipv6host_label(&sadd
);
3971 skp
= smack_net_ambient
;
3973 smk_ad_init_net(&ad
, __func__
, LSM_AUDIT_DATA_NET
, &net
);
3974 ad
.a
.u
.net
->family
= sk
->sk_family
;
3975 ad
.a
.u
.net
->netif
= skb
->skb_iif
;
3976 ipv6_skb_to_auditdata(skb
, &ad
.a
, NULL
);
3977 #endif /* CONFIG_AUDIT */
3978 rc
= smk_access(skp
, ssp
->smk_in
, MAY_WRITE
, &ad
);
3979 rc
= smk_bu_note("IPv6 delivery", skp
, ssp
->smk_in
,
3981 #endif /* SMACK_IPV6_SECMARK_LABELING */
3982 #ifdef SMACK_IPV6_PORT_LABELING
3983 rc
= smk_ipv6_port_check(sk
, &sadd
, SMK_RECEIVING
);
3984 #endif /* SMACK_IPV6_PORT_LABELING */
3986 #endif /* CONFIG_IPV6 */
3993 * smack_socket_getpeersec_stream - pull in packet label
3995 * @optval: user's destination
3996 * @optlen: size thereof
3999 * returns zero on success, an error code otherwise
4001 static int smack_socket_getpeersec_stream(struct socket
*sock
,
4002 char __user
*optval
,
4003 int __user
*optlen
, unsigned len
)
4005 struct socket_smack
*ssp
;
4010 ssp
= sock
->sk
->sk_security
;
4011 if (ssp
->smk_packet
!= NULL
) {
4012 rcp
= ssp
->smk_packet
->smk_known
;
4013 slen
= strlen(rcp
) + 1;
4018 else if (copy_to_user(optval
, rcp
, slen
) != 0)
4021 if (put_user(slen
, optlen
) != 0)
4029 * smack_socket_getpeersec_dgram - pull in packet label
4030 * @sock: the peer socket
4032 * @secid: pointer to where to put the secid of the packet
4034 * Sets the netlabel socket state on sk from parent
4036 static int smack_socket_getpeersec_dgram(struct socket
*sock
,
4037 struct sk_buff
*skb
, u32
*secid
)
4040 struct netlbl_lsm_secattr secattr
;
4041 struct socket_smack
*ssp
= NULL
;
4042 struct smack_known
*skp
;
4043 int family
= PF_UNSPEC
;
4044 u32 s
= 0; /* 0 is the invalid secid */
4048 if (skb
->protocol
== htons(ETH_P_IP
))
4050 #if IS_ENABLED(CONFIG_IPV6)
4051 else if (skb
->protocol
== htons(ETH_P_IPV6
))
4053 #endif /* CONFIG_IPV6 */
4055 if (family
== PF_UNSPEC
&& sock
!= NULL
)
4056 family
= sock
->sk
->sk_family
;
4060 ssp
= sock
->sk
->sk_security
;
4061 s
= ssp
->smk_out
->smk_secid
;
4064 #ifdef CONFIG_SECURITY_SMACK_NETFILTER
4070 * Translate what netlabel gave us.
4072 if (sock
!= NULL
&& sock
->sk
!= NULL
)
4073 ssp
= sock
->sk
->sk_security
;
4074 netlbl_secattr_init(&secattr
);
4075 rc
= netlbl_skbuff_getattr(skb
, family
, &secattr
);
4077 skp
= smack_from_secattr(&secattr
, ssp
);
4080 netlbl_secattr_destroy(&secattr
);
4083 #ifdef SMACK_IPV6_SECMARK_LABELING
4095 * smack_sock_graft - Initialize a newly created socket with an existing sock
4097 * @parent: parent socket
4099 * Set the smk_{in,out} state of an existing sock based on the process that
4100 * is creating the new socket.
4102 static void smack_sock_graft(struct sock
*sk
, struct socket
*parent
)
4104 struct socket_smack
*ssp
;
4105 struct smack_known
*skp
= smk_of_current();
4108 (sk
->sk_family
!= PF_INET
&& sk
->sk_family
!= PF_INET6
))
4111 ssp
= sk
->sk_security
;
4114 /* cssp->smk_packet is already set in smack_inet_csk_clone() */
4118 * smack_inet_conn_request - Smack access check on connect
4119 * @sk: socket involved
4123 * Returns 0 if a task with the packet label could write to
4124 * the socket, otherwise an error code
4126 static int smack_inet_conn_request(struct sock
*sk
, struct sk_buff
*skb
,
4127 struct request_sock
*req
)
4129 u16 family
= sk
->sk_family
;
4130 struct smack_known
*skp
;
4131 struct socket_smack
*ssp
= sk
->sk_security
;
4132 struct netlbl_lsm_secattr secattr
;
4133 struct sockaddr_in addr
;
4135 struct smack_known
*hskp
;
4137 struct smk_audit_info ad
;
4139 struct lsm_network_audit net
;
4142 #if IS_ENABLED(CONFIG_IPV6)
4143 if (family
== PF_INET6
) {
4145 * Handle mapped IPv4 packets arriving
4146 * via IPv6 sockets. Don't set up netlabel
4147 * processing on IPv6.
4149 if (skb
->protocol
== htons(ETH_P_IP
))
4154 #endif /* CONFIG_IPV6 */
4156 #ifdef CONFIG_SECURITY_SMACK_NETFILTER
4158 * If there is a secmark use it rather than the CIPSO label.
4159 * If there is no secmark fall back to CIPSO.
4160 * The secmark is assumed to reflect policy better.
4162 if (skb
&& skb
->secmark
!= 0) {
4163 skp
= smack_from_secid(skb
->secmark
);
4166 #endif /* CONFIG_SECURITY_SMACK_NETFILTER */
4168 netlbl_secattr_init(&secattr
);
4169 rc
= netlbl_skbuff_getattr(skb
, family
, &secattr
);
4171 skp
= smack_from_secattr(&secattr
, ssp
);
4173 skp
= &smack_known_huh
;
4174 netlbl_secattr_destroy(&secattr
);
4176 #ifdef CONFIG_SECURITY_SMACK_NETFILTER
4181 smk_ad_init_net(&ad
, __func__
, LSM_AUDIT_DATA_NET
, &net
);
4182 ad
.a
.u
.net
->family
= family
;
4183 ad
.a
.u
.net
->netif
= skb
->skb_iif
;
4184 ipv4_skb_to_auditdata(skb
, &ad
.a
, NULL
);
4187 * Receiving a packet requires that the other end be able to write
4188 * here. Read access is not required.
4190 rc
= smk_access(skp
, ssp
->smk_in
, MAY_WRITE
, &ad
);
4191 rc
= smk_bu_note("IPv4 connect", skp
, ssp
->smk_in
, MAY_WRITE
, rc
);
4196 * Save the peer's label in the request_sock so we can later setup
4197 * smk_packet in the child socket so that SO_PEERCRED can report it.
4199 req
->peer_secid
= skp
->smk_secid
;
4202 * We need to decide if we want to label the incoming connection here
4203 * if we do we only need to label the request_sock and the stack will
4204 * propagate the wire-label to the sock when it is created.
4207 addr
.sin_addr
.s_addr
= hdr
->saddr
;
4209 hskp
= smack_ipv4host_label(&addr
);
4213 rc
= netlbl_req_setattr(req
, &skp
->smk_netlabel
);
4215 netlbl_req_delattr(req
);
4221 * smack_inet_csk_clone - Copy the connection information to the new socket
4222 * @sk: the new socket
4223 * @req: the connection's request_sock
4225 * Transfer the connection's peer label to the newly created socket.
4227 static void smack_inet_csk_clone(struct sock
*sk
,
4228 const struct request_sock
*req
)
4230 struct socket_smack
*ssp
= sk
->sk_security
;
4231 struct smack_known
*skp
;
4233 if (req
->peer_secid
!= 0) {
4234 skp
= smack_from_secid(req
->peer_secid
);
4235 ssp
->smk_packet
= skp
;
4237 ssp
->smk_packet
= NULL
;
4241 * Key management security hooks
4243 * Casey has not tested key support very heavily.
4244 * The permission check is most likely too restrictive.
4245 * If you care about keys please have a look.
4250 * smack_key_alloc - Set the key security blob
4252 * @cred: the credentials to use
4255 * No allocation required
4259 static int smack_key_alloc(struct key
*key
, const struct cred
*cred
,
4260 unsigned long flags
)
4262 struct smack_known
*skp
= smk_of_task(cred
->security
);
4264 key
->security
= skp
;
4269 * smack_key_free - Clear the key security blob
4272 * Clear the blob pointer
4274 static void smack_key_free(struct key
*key
)
4276 key
->security
= NULL
;
4280 * smack_key_permission - Smack access on a key
4281 * @key_ref: gets to the object
4282 * @cred: the credentials to use
4283 * @perm: requested key permissions
4285 * Return 0 if the task has read and write to the object,
4286 * an error code otherwise
4288 static int smack_key_permission(key_ref_t key_ref
,
4289 const struct cred
*cred
, unsigned perm
)
4292 struct smk_audit_info ad
;
4293 struct smack_known
*tkp
= smk_of_task(cred
->security
);
4297 keyp
= key_ref_to_ptr(key_ref
);
4301 * If the key hasn't been initialized give it access so that
4304 if (keyp
->security
== NULL
)
4307 * This should not occur
4312 if (smack_privileged_cred(CAP_MAC_OVERRIDE
, cred
))
4316 smk_ad_init(&ad
, __func__
, LSM_AUDIT_DATA_KEY
);
4317 ad
.a
.u
.key_struct
.key
= keyp
->serial
;
4318 ad
.a
.u
.key_struct
.key_desc
= keyp
->description
;
4320 if (perm
& KEY_NEED_READ
)
4322 if (perm
& (KEY_NEED_WRITE
| KEY_NEED_LINK
| KEY_NEED_SETATTR
))
4323 request
= MAY_WRITE
;
4324 rc
= smk_access(tkp
, keyp
->security
, request
, &ad
);
4325 rc
= smk_bu_note("key access", tkp
, keyp
->security
, request
, rc
);
4330 * smack_key_getsecurity - Smack label tagging the key
4331 * @key points to the key to be queried
4332 * @_buffer points to a pointer that should be set to point to the
4333 * resulting string (if no label or an error occurs).
4334 * Return the length of the string (including terminating NUL) or -ve if
4336 * May also return 0 (and a NULL buffer pointer) if there is no label.
4338 static int smack_key_getsecurity(struct key
*key
, char **_buffer
)
4340 struct smack_known
*skp
= key
->security
;
4344 if (key
->security
== NULL
) {
4349 copy
= kstrdup(skp
->smk_known
, GFP_KERNEL
);
4352 length
= strlen(copy
) + 1;
4358 #endif /* CONFIG_KEYS */
4363 * Audit requires a unique representation of each Smack specific
4364 * rule. This unique representation is used to distinguish the
4365 * object to be audited from remaining kernel objects and also
4366 * works as a glue between the audit hooks.
4368 * Since repository entries are added but never deleted, we'll use
4369 * the smack_known label address related to the given audit rule as
4370 * the needed unique representation. This also better fits the smack
4371 * model where nearly everything is a label.
4376 * smack_audit_rule_init - Initialize a smack audit rule
4377 * @field: audit rule fields given from user-space (audit.h)
4378 * @op: required testing operator (=, !=, >, <, ...)
4379 * @rulestr: smack label to be audited
4380 * @vrule: pointer to save our own audit rule representation
4382 * Prepare to audit cases where (@field @op @rulestr) is true.
4383 * The label to be audited is created if necessay.
4385 static int smack_audit_rule_init(u32 field
, u32 op
, char *rulestr
, void **vrule
)
4387 struct smack_known
*skp
;
4388 char **rule
= (char **)vrule
;
4391 if (field
!= AUDIT_SUBJ_USER
&& field
!= AUDIT_OBJ_USER
)
4394 if (op
!= Audit_equal
&& op
!= Audit_not_equal
)
4397 skp
= smk_import_entry(rulestr
, 0);
4399 return PTR_ERR(skp
);
4401 *rule
= skp
->smk_known
;
4407 * smack_audit_rule_known - Distinguish Smack audit rules
4408 * @krule: rule of interest, in Audit kernel representation format
4410 * This is used to filter Smack rules from remaining Audit ones.
4411 * If it's proved that this rule belongs to us, the
4412 * audit_rule_match hook will be called to do the final judgement.
4414 static int smack_audit_rule_known(struct audit_krule
*krule
)
4416 struct audit_field
*f
;
4419 for (i
= 0; i
< krule
->field_count
; i
++) {
4420 f
= &krule
->fields
[i
];
4422 if (f
->type
== AUDIT_SUBJ_USER
|| f
->type
== AUDIT_OBJ_USER
)
4430 * smack_audit_rule_match - Audit given object ?
4431 * @secid: security id for identifying the object to test
4432 * @field: audit rule flags given from user-space
4433 * @op: required testing operator
4434 * @vrule: smack internal rule presentation
4435 * @actx: audit context associated with the check
4437 * The core Audit hook. It's used to take the decision of
4438 * whether to audit or not to audit a given object.
4440 static int smack_audit_rule_match(u32 secid
, u32 field
, u32 op
, void *vrule
,
4441 struct audit_context
*actx
)
4443 struct smack_known
*skp
;
4446 if (unlikely(!rule
)) {
4447 WARN_ONCE(1, "Smack: missing rule\n");
4451 if (field
!= AUDIT_SUBJ_USER
&& field
!= AUDIT_OBJ_USER
)
4454 skp
= smack_from_secid(secid
);
4457 * No need to do string comparisons. If a match occurs,
4458 * both pointers will point to the same smack_known
4461 if (op
== Audit_equal
)
4462 return (rule
== skp
->smk_known
);
4463 if (op
== Audit_not_equal
)
4464 return (rule
!= skp
->smk_known
);
4470 * There is no need for a smack_audit_rule_free hook.
4471 * No memory was allocated.
4474 #endif /* CONFIG_AUDIT */
4477 * smack_ismaclabel - check if xattr @name references a smack MAC label
4478 * @name: Full xattr name to check.
4480 static int smack_ismaclabel(const char *name
)
4482 return (strcmp(name
, XATTR_SMACK_SUFFIX
) == 0);
4487 * smack_secid_to_secctx - return the smack label for a secid
4488 * @secid: incoming integer
4489 * @secdata: destination
4490 * @seclen: how long it is
4492 * Exists for networking code.
4494 static int smack_secid_to_secctx(u32 secid
, char **secdata
, u32
*seclen
)
4496 struct smack_known
*skp
= smack_from_secid(secid
);
4499 *secdata
= skp
->smk_known
;
4500 *seclen
= strlen(skp
->smk_known
);
4505 * smack_secctx_to_secid - return the secid for a smack label
4506 * @secdata: smack label
4507 * @seclen: how long result is
4508 * @secid: outgoing integer
4510 * Exists for audit and networking code.
4512 static int smack_secctx_to_secid(const char *secdata
, u32 seclen
, u32
*secid
)
4514 struct smack_known
*skp
= smk_find_entry(secdata
);
4517 *secid
= skp
->smk_secid
;
4524 * There used to be a smack_release_secctx hook
4525 * that did nothing back when hooks were in a vector.
4526 * Now that there's a list such a hook adds cost.
4529 static int smack_inode_notifysecctx(struct inode
*inode
, void *ctx
, u32 ctxlen
)
4531 return smack_inode_setsecurity(inode
, XATTR_SMACK_SUFFIX
, ctx
, ctxlen
, 0);
4534 static int smack_inode_setsecctx(struct dentry
*dentry
, void *ctx
, u32 ctxlen
)
4536 return __vfs_setxattr_noperm(dentry
, XATTR_NAME_SMACK
, ctx
, ctxlen
, 0);
4539 static int smack_inode_getsecctx(struct inode
*inode
, void **ctx
, u32
*ctxlen
)
4542 len
= smack_inode_getsecurity(inode
, XATTR_SMACK_SUFFIX
, ctx
, true);
4550 static int smack_inode_copy_up(struct dentry
*dentry
, struct cred
**new)
4553 struct task_smack
*tsp
;
4554 struct smack_known
*skp
;
4555 struct inode_smack
*isp
;
4556 struct cred
*new_creds
= *new;
4558 if (new_creds
== NULL
) {
4559 new_creds
= prepare_creds();
4560 if (new_creds
== NULL
)
4564 tsp
= new_creds
->security
;
4567 * Get label from overlay inode and set it in create_sid
4569 isp
= d_inode(dentry
->d_parent
)->i_security
;
4570 skp
= isp
->smk_inode
;
4571 tsp
->smk_task
= skp
;
4576 static int smack_inode_copy_up_xattr(const char *name
)
4579 * Return 1 if this is the smack access Smack attribute.
4581 if (strcmp(name
, XATTR_NAME_SMACK
) == 0)
4587 static int smack_dentry_create_files_as(struct dentry
*dentry
, int mode
,
4589 const struct cred
*old
,
4592 struct task_smack
*otsp
= old
->security
;
4593 struct task_smack
*ntsp
= new->security
;
4594 struct inode_smack
*isp
;
4598 * Use the process credential unless all of
4599 * the transmuting criteria are met
4601 ntsp
->smk_task
= otsp
->smk_task
;
4604 * the attribute of the containing directory
4606 isp
= d_inode(dentry
->d_parent
)->i_security
;
4608 if (isp
->smk_flags
& SMK_INODE_TRANSMUTE
) {
4610 may
= smk_access_entry(otsp
->smk_task
->smk_known
,
4611 isp
->smk_inode
->smk_known
,
4612 &otsp
->smk_task
->smk_rules
);
4616 * If the directory is transmuting and the rule
4617 * providing access is transmuting use the containing
4618 * directory label instead of the process label.
4620 if (may
> 0 && (may
& MAY_TRANSMUTE
))
4621 ntsp
->smk_task
= isp
->smk_inode
;
4626 static struct security_hook_list smack_hooks
[] __lsm_ro_after_init
= {
4627 LSM_HOOK_INIT(ptrace_access_check
, smack_ptrace_access_check
),
4628 LSM_HOOK_INIT(ptrace_traceme
, smack_ptrace_traceme
),
4629 LSM_HOOK_INIT(syslog
, smack_syslog
),
4631 LSM_HOOK_INIT(sb_alloc_security
, smack_sb_alloc_security
),
4632 LSM_HOOK_INIT(sb_free_security
, smack_sb_free_security
),
4633 LSM_HOOK_INIT(sb_copy_data
, smack_sb_copy_data
),
4634 LSM_HOOK_INIT(sb_kern_mount
, smack_sb_kern_mount
),
4635 LSM_HOOK_INIT(sb_statfs
, smack_sb_statfs
),
4636 LSM_HOOK_INIT(sb_set_mnt_opts
, smack_set_mnt_opts
),
4637 LSM_HOOK_INIT(sb_parse_opts_str
, smack_parse_opts_str
),
4639 LSM_HOOK_INIT(bprm_set_creds
, smack_bprm_set_creds
),
4641 LSM_HOOK_INIT(inode_alloc_security
, smack_inode_alloc_security
),
4642 LSM_HOOK_INIT(inode_free_security
, smack_inode_free_security
),
4643 LSM_HOOK_INIT(inode_init_security
, smack_inode_init_security
),
4644 LSM_HOOK_INIT(inode_link
, smack_inode_link
),
4645 LSM_HOOK_INIT(inode_unlink
, smack_inode_unlink
),
4646 LSM_HOOK_INIT(inode_rmdir
, smack_inode_rmdir
),
4647 LSM_HOOK_INIT(inode_rename
, smack_inode_rename
),
4648 LSM_HOOK_INIT(inode_permission
, smack_inode_permission
),
4649 LSM_HOOK_INIT(inode_setattr
, smack_inode_setattr
),
4650 LSM_HOOK_INIT(inode_getattr
, smack_inode_getattr
),
4651 LSM_HOOK_INIT(inode_setxattr
, smack_inode_setxattr
),
4652 LSM_HOOK_INIT(inode_post_setxattr
, smack_inode_post_setxattr
),
4653 LSM_HOOK_INIT(inode_getxattr
, smack_inode_getxattr
),
4654 LSM_HOOK_INIT(inode_removexattr
, smack_inode_removexattr
),
4655 LSM_HOOK_INIT(inode_getsecurity
, smack_inode_getsecurity
),
4656 LSM_HOOK_INIT(inode_setsecurity
, smack_inode_setsecurity
),
4657 LSM_HOOK_INIT(inode_listsecurity
, smack_inode_listsecurity
),
4658 LSM_HOOK_INIT(inode_getsecid
, smack_inode_getsecid
),
4660 LSM_HOOK_INIT(file_alloc_security
, smack_file_alloc_security
),
4661 LSM_HOOK_INIT(file_free_security
, smack_file_free_security
),
4662 LSM_HOOK_INIT(file_ioctl
, smack_file_ioctl
),
4663 LSM_HOOK_INIT(file_lock
, smack_file_lock
),
4664 LSM_HOOK_INIT(file_fcntl
, smack_file_fcntl
),
4665 LSM_HOOK_INIT(mmap_file
, smack_mmap_file
),
4666 LSM_HOOK_INIT(mmap_addr
, cap_mmap_addr
),
4667 LSM_HOOK_INIT(file_set_fowner
, smack_file_set_fowner
),
4668 LSM_HOOK_INIT(file_send_sigiotask
, smack_file_send_sigiotask
),
4669 LSM_HOOK_INIT(file_receive
, smack_file_receive
),
4671 LSM_HOOK_INIT(file_open
, smack_file_open
),
4673 LSM_HOOK_INIT(cred_alloc_blank
, smack_cred_alloc_blank
),
4674 LSM_HOOK_INIT(cred_free
, smack_cred_free
),
4675 LSM_HOOK_INIT(cred_prepare
, smack_cred_prepare
),
4676 LSM_HOOK_INIT(cred_transfer
, smack_cred_transfer
),
4677 LSM_HOOK_INIT(cred_getsecid
, smack_cred_getsecid
),
4678 LSM_HOOK_INIT(kernel_act_as
, smack_kernel_act_as
),
4679 LSM_HOOK_INIT(kernel_create_files_as
, smack_kernel_create_files_as
),
4680 LSM_HOOK_INIT(task_setpgid
, smack_task_setpgid
),
4681 LSM_HOOK_INIT(task_getpgid
, smack_task_getpgid
),
4682 LSM_HOOK_INIT(task_getsid
, smack_task_getsid
),
4683 LSM_HOOK_INIT(task_getsecid
, smack_task_getsecid
),
4684 LSM_HOOK_INIT(task_setnice
, smack_task_setnice
),
4685 LSM_HOOK_INIT(task_setioprio
, smack_task_setioprio
),
4686 LSM_HOOK_INIT(task_getioprio
, smack_task_getioprio
),
4687 LSM_HOOK_INIT(task_setscheduler
, smack_task_setscheduler
),
4688 LSM_HOOK_INIT(task_getscheduler
, smack_task_getscheduler
),
4689 LSM_HOOK_INIT(task_movememory
, smack_task_movememory
),
4690 LSM_HOOK_INIT(task_kill
, smack_task_kill
),
4691 LSM_HOOK_INIT(task_to_inode
, smack_task_to_inode
),
4693 LSM_HOOK_INIT(ipc_permission
, smack_ipc_permission
),
4694 LSM_HOOK_INIT(ipc_getsecid
, smack_ipc_getsecid
),
4696 LSM_HOOK_INIT(msg_msg_alloc_security
, smack_msg_msg_alloc_security
),
4697 LSM_HOOK_INIT(msg_msg_free_security
, smack_msg_msg_free_security
),
4699 LSM_HOOK_INIT(msg_queue_alloc_security
, smack_ipc_alloc_security
),
4700 LSM_HOOK_INIT(msg_queue_free_security
, smack_ipc_free_security
),
4701 LSM_HOOK_INIT(msg_queue_associate
, smack_msg_queue_associate
),
4702 LSM_HOOK_INIT(msg_queue_msgctl
, smack_msg_queue_msgctl
),
4703 LSM_HOOK_INIT(msg_queue_msgsnd
, smack_msg_queue_msgsnd
),
4704 LSM_HOOK_INIT(msg_queue_msgrcv
, smack_msg_queue_msgrcv
),
4706 LSM_HOOK_INIT(shm_alloc_security
, smack_ipc_alloc_security
),
4707 LSM_HOOK_INIT(shm_free_security
, smack_ipc_free_security
),
4708 LSM_HOOK_INIT(shm_associate
, smack_shm_associate
),
4709 LSM_HOOK_INIT(shm_shmctl
, smack_shm_shmctl
),
4710 LSM_HOOK_INIT(shm_shmat
, smack_shm_shmat
),
4712 LSM_HOOK_INIT(sem_alloc_security
, smack_ipc_alloc_security
),
4713 LSM_HOOK_INIT(sem_free_security
, smack_ipc_free_security
),
4714 LSM_HOOK_INIT(sem_associate
, smack_sem_associate
),
4715 LSM_HOOK_INIT(sem_semctl
, smack_sem_semctl
),
4716 LSM_HOOK_INIT(sem_semop
, smack_sem_semop
),
4718 LSM_HOOK_INIT(d_instantiate
, smack_d_instantiate
),
4720 LSM_HOOK_INIT(getprocattr
, smack_getprocattr
),
4721 LSM_HOOK_INIT(setprocattr
, smack_setprocattr
),
4723 LSM_HOOK_INIT(unix_stream_connect
, smack_unix_stream_connect
),
4724 LSM_HOOK_INIT(unix_may_send
, smack_unix_may_send
),
4726 LSM_HOOK_INIT(socket_post_create
, smack_socket_post_create
),
4727 #ifdef SMACK_IPV6_PORT_LABELING
4728 LSM_HOOK_INIT(socket_bind
, smack_socket_bind
),
4730 LSM_HOOK_INIT(socket_connect
, smack_socket_connect
),
4731 LSM_HOOK_INIT(socket_sendmsg
, smack_socket_sendmsg
),
4732 LSM_HOOK_INIT(socket_sock_rcv_skb
, smack_socket_sock_rcv_skb
),
4733 LSM_HOOK_INIT(socket_getpeersec_stream
, smack_socket_getpeersec_stream
),
4734 LSM_HOOK_INIT(socket_getpeersec_dgram
, smack_socket_getpeersec_dgram
),
4735 LSM_HOOK_INIT(sk_alloc_security
, smack_sk_alloc_security
),
4736 LSM_HOOK_INIT(sk_free_security
, smack_sk_free_security
),
4737 LSM_HOOK_INIT(sock_graft
, smack_sock_graft
),
4738 LSM_HOOK_INIT(inet_conn_request
, smack_inet_conn_request
),
4739 LSM_HOOK_INIT(inet_csk_clone
, smack_inet_csk_clone
),
4741 /* key management security hooks */
4743 LSM_HOOK_INIT(key_alloc
, smack_key_alloc
),
4744 LSM_HOOK_INIT(key_free
, smack_key_free
),
4745 LSM_HOOK_INIT(key_permission
, smack_key_permission
),
4746 LSM_HOOK_INIT(key_getsecurity
, smack_key_getsecurity
),
4747 #endif /* CONFIG_KEYS */
4751 LSM_HOOK_INIT(audit_rule_init
, smack_audit_rule_init
),
4752 LSM_HOOK_INIT(audit_rule_known
, smack_audit_rule_known
),
4753 LSM_HOOK_INIT(audit_rule_match
, smack_audit_rule_match
),
4754 #endif /* CONFIG_AUDIT */
4756 LSM_HOOK_INIT(ismaclabel
, smack_ismaclabel
),
4757 LSM_HOOK_INIT(secid_to_secctx
, smack_secid_to_secctx
),
4758 LSM_HOOK_INIT(secctx_to_secid
, smack_secctx_to_secid
),
4759 LSM_HOOK_INIT(inode_notifysecctx
, smack_inode_notifysecctx
),
4760 LSM_HOOK_INIT(inode_setsecctx
, smack_inode_setsecctx
),
4761 LSM_HOOK_INIT(inode_getsecctx
, smack_inode_getsecctx
),
4762 LSM_HOOK_INIT(inode_copy_up
, smack_inode_copy_up
),
4763 LSM_HOOK_INIT(inode_copy_up_xattr
, smack_inode_copy_up_xattr
),
4764 LSM_HOOK_INIT(dentry_create_files_as
, smack_dentry_create_files_as
),
4768 static __init
void init_smack_known_list(void)
4771 * Initialize rule list locks
4773 mutex_init(&smack_known_huh
.smk_rules_lock
);
4774 mutex_init(&smack_known_hat
.smk_rules_lock
);
4775 mutex_init(&smack_known_floor
.smk_rules_lock
);
4776 mutex_init(&smack_known_star
.smk_rules_lock
);
4777 mutex_init(&smack_known_web
.smk_rules_lock
);
4779 * Initialize rule lists
4781 INIT_LIST_HEAD(&smack_known_huh
.smk_rules
);
4782 INIT_LIST_HEAD(&smack_known_hat
.smk_rules
);
4783 INIT_LIST_HEAD(&smack_known_star
.smk_rules
);
4784 INIT_LIST_HEAD(&smack_known_floor
.smk_rules
);
4785 INIT_LIST_HEAD(&smack_known_web
.smk_rules
);
4787 * Create the known labels list
4789 smk_insert_entry(&smack_known_huh
);
4790 smk_insert_entry(&smack_known_hat
);
4791 smk_insert_entry(&smack_known_star
);
4792 smk_insert_entry(&smack_known_floor
);
4793 smk_insert_entry(&smack_known_web
);
4797 * smack_init - initialize the smack system
4801 static __init
int smack_init(void)
4804 struct task_smack
*tsp
;
4806 if (!security_module_enable("smack"))
4809 smack_inode_cache
= KMEM_CACHE(inode_smack
, 0);
4810 if (!smack_inode_cache
)
4813 tsp
= new_task_smack(&smack_known_floor
, &smack_known_floor
,
4816 kmem_cache_destroy(smack_inode_cache
);
4822 pr_info("Smack: Initializing.\n");
4823 #ifdef CONFIG_SECURITY_SMACK_NETFILTER
4824 pr_info("Smack: Netfilter enabled.\n");
4826 #ifdef SMACK_IPV6_PORT_LABELING
4827 pr_info("Smack: IPv6 port labeling enabled.\n");
4829 #ifdef SMACK_IPV6_SECMARK_LABELING
4830 pr_info("Smack: IPv6 Netfilter enabled.\n");
4834 * Set the security state for the initial task.
4836 cred
= (struct cred
*) current
->cred
;
4837 cred
->security
= tsp
;
4839 /* initialize the smack_known_list */
4840 init_smack_known_list();
4845 security_add_hooks(smack_hooks
, ARRAY_SIZE(smack_hooks
), "smack");
4851 * Smack requires early initialization in order to label
4852 * all processes and objects when they are created.
4854 security_initcall(smack_init
);