ima_policy.c 30.5 KB
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/*
 * Copyright (C) 2008 IBM Corporation
 * Author: Mimi Zohar <zohar@us.ibm.com>
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation, version 2 of the License.
 *
 * ima_policy.c
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 *	- initialize default measure policy rules
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 *
 */
#include <linux/module.h>
#include <linux/list.h>
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#include <linux/fs.h>
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#include <linux/security.h>
#include <linux/magic.h>
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#include <linux/parser.h>
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#include <linux/slab.h>
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#include <linux/rculist.h>
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#include <linux/genhd.h>
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#include <linux/seq_file.h>
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#include "ima.h"

/* flags definitions */
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#define IMA_FUNC	0x0001
#define IMA_MASK	0x0002
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#define IMA_FSMAGIC	0x0004
#define IMA_UID		0x0008
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#define IMA_FOWNER	0x0010
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#define IMA_FSUUID	0x0020
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#define IMA_INMASK	0x0040
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#define IMA_EUID	0x0080
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#define IMA_PCR		0x0100
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#define UNKNOWN		0
#define MEASURE		0x0001	/* same as IMA_MEASURE */
#define DONT_MEASURE	0x0002
#define APPRAISE	0x0004	/* same as IMA_APPRAISE */
#define DONT_APPRAISE	0x0008
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#define AUDIT		0x0040
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#define INVALID_PCR(a) (((a) < 0) || \
	(a) >= (FIELD_SIZEOF(struct integrity_iint_cache, measured_pcrs) * 8))

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int ima_policy_flag;
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static int temp_ima_appraise;
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#define MAX_LSM_RULES 6
enum lsm_rule_types { LSM_OBJ_USER, LSM_OBJ_ROLE, LSM_OBJ_TYPE,
	LSM_SUBJ_USER, LSM_SUBJ_ROLE, LSM_SUBJ_TYPE
};
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enum policy_types { ORIGINAL_TCB = 1, DEFAULT_TCB };

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struct ima_rule_entry {
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	struct list_head list;
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	int action;
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	unsigned int flags;
	enum ima_hooks func;
	int mask;
	unsigned long fsmagic;
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	u8 fsuuid[16];
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	kuid_t uid;
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	kuid_t fowner;
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	bool (*uid_op)(kuid_t, kuid_t);    /* Handlers for operators       */
	bool (*fowner_op)(kuid_t, kuid_t); /* uid_eq(), uid_gt(), uid_lt() */
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	int pcr;
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	struct {
		void *rule;	/* LSM file metadata specific */
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		void *args_p;	/* audit value */
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		int type;	/* audit type */
	} lsm[MAX_LSM_RULES];
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};

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/*
 * Without LSM specific knowledge, the default policy can only be
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 * written in terms of .action, .func, .mask, .fsmagic, .uid, and .fowner
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 */
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/*
 * The minimum rule set to allow for full TCB coverage.  Measures all files
 * opened or mmap for exec and everything read by root.  Dangerous because
 * normal users can easily run the machine out of memory simply building
 * and running executables.
 */
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static struct ima_rule_entry dont_measure_rules[] __ro_after_init = {
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	{.action = DONT_MEASURE, .fsmagic = PROC_SUPER_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_MEASURE, .fsmagic = SYSFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_MEASURE, .fsmagic = DEBUGFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_MEASURE, .fsmagic = TMPFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_MEASURE, .fsmagic = DEVPTS_SUPER_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_MEASURE, .fsmagic = BINFMTFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_MEASURE, .fsmagic = SECURITYFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_MEASURE, .fsmagic = SELINUX_MAGIC, .flags = IMA_FSMAGIC},
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	{.action = DONT_MEASURE, .fsmagic = CGROUP_SUPER_MAGIC,
	 .flags = IMA_FSMAGIC},
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	{.action = DONT_MEASURE, .fsmagic = NSFS_MAGIC, .flags = IMA_FSMAGIC}
};

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static struct ima_rule_entry original_measurement_rules[] __ro_after_init = {
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	{.action = MEASURE, .func = MMAP_CHECK, .mask = MAY_EXEC,
	 .flags = IMA_FUNC | IMA_MASK},
	{.action = MEASURE, .func = BPRM_CHECK, .mask = MAY_EXEC,
	 .flags = IMA_FUNC | IMA_MASK},
	{.action = MEASURE, .func = FILE_CHECK, .mask = MAY_READ,
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	 .uid = GLOBAL_ROOT_UID, .uid_op = &uid_eq,
	 .flags = IMA_FUNC | IMA_MASK | IMA_UID},
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	{.action = MEASURE, .func = MODULE_CHECK, .flags = IMA_FUNC},
	{.action = MEASURE, .func = FIRMWARE_CHECK, .flags = IMA_FUNC},
};

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static struct ima_rule_entry default_measurement_rules[] __ro_after_init = {
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	{.action = MEASURE, .func = MMAP_CHECK, .mask = MAY_EXEC,
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	 .flags = IMA_FUNC | IMA_MASK},
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	{.action = MEASURE, .func = BPRM_CHECK, .mask = MAY_EXEC,
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	 .flags = IMA_FUNC | IMA_MASK},
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	{.action = MEASURE, .func = FILE_CHECK, .mask = MAY_READ,
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	 .uid = GLOBAL_ROOT_UID, .uid_op = &uid_eq,
	 .flags = IMA_FUNC | IMA_INMASK | IMA_EUID},
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	{.action = MEASURE, .func = FILE_CHECK, .mask = MAY_READ,
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	 .uid = GLOBAL_ROOT_UID, .uid_op = &uid_eq,
	 .flags = IMA_FUNC | IMA_INMASK | IMA_UID},
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	{.action = MEASURE, .func = MODULE_CHECK, .flags = IMA_FUNC},
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	{.action = MEASURE, .func = FIRMWARE_CHECK, .flags = IMA_FUNC},
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	{.action = MEASURE, .func = POLICY_CHECK, .flags = IMA_FUNC},
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};

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static struct ima_rule_entry default_appraise_rules[] __ro_after_init = {
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	{.action = DONT_APPRAISE, .fsmagic = PROC_SUPER_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_APPRAISE, .fsmagic = SYSFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_APPRAISE, .fsmagic = DEBUGFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_APPRAISE, .fsmagic = TMPFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_APPRAISE, .fsmagic = RAMFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_APPRAISE, .fsmagic = DEVPTS_SUPER_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_APPRAISE, .fsmagic = BINFMTFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_APPRAISE, .fsmagic = SECURITYFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_APPRAISE, .fsmagic = SELINUX_MAGIC, .flags = IMA_FSMAGIC},
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	{.action = DONT_APPRAISE, .fsmagic = NSFS_MAGIC, .flags = IMA_FSMAGIC},
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	{.action = DONT_APPRAISE, .fsmagic = CGROUP_SUPER_MAGIC, .flags = IMA_FSMAGIC},
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#ifdef CONFIG_IMA_WRITE_POLICY
	{.action = APPRAISE, .func = POLICY_CHECK,
	.flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
#endif
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#ifndef CONFIG_IMA_APPRAISE_SIGNED_INIT
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	{.action = APPRAISE, .fowner = GLOBAL_ROOT_UID, .fowner_op = &uid_eq,
	 .flags = IMA_FOWNER},
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#else
	/* force signature */
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	{.action = APPRAISE, .fowner = GLOBAL_ROOT_UID, .fowner_op = &uid_eq,
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	 .flags = IMA_FOWNER | IMA_DIGSIG_REQUIRED},
#endif
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};

static LIST_HEAD(ima_default_rules);
static LIST_HEAD(ima_policy_rules);
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static LIST_HEAD(ima_temp_rules);
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static struct list_head *ima_rules;
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static int ima_policy __initdata;
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static int __init default_measure_policy_setup(char *str)
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{
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	if (ima_policy)
		return 1;

	ima_policy = ORIGINAL_TCB;
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	return 1;
}
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__setup("ima_tcb", default_measure_policy_setup);

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static int __init policy_setup(char *str)
{
	if (ima_policy)
		return 1;

	if (strcmp(str, "tcb") == 0)
		ima_policy = DEFAULT_TCB;

	return 1;
}
__setup("ima_policy=", policy_setup);

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static bool ima_use_appraise_tcb __initdata;
static int __init default_appraise_policy_setup(char *str)
{
	ima_use_appraise_tcb = 1;
	return 1;
}
__setup("ima_appraise_tcb", default_appraise_policy_setup);
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/*
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 * The LSM policy can be reloaded, leaving the IMA LSM based rules referring
 * to the old, stale LSM policy.  Update the IMA LSM based rules to reflect
 * the reloaded LSM policy.  We assume the rules still exist; and BUG_ON() if
 * they don't.
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 */
static void ima_lsm_update_rules(void)
{
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	struct ima_rule_entry *entry;
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	int result;
	int i;

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	list_for_each_entry(entry, &ima_policy_rules, list) {
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		for (i = 0; i < MAX_LSM_RULES; i++) {
			if (!entry->lsm[i].rule)
				continue;
			result = security_filter_rule_init(entry->lsm[i].type,
							   Audit_equal,
							   entry->lsm[i].args_p,
							   &entry->lsm[i].rule);
			BUG_ON(!entry->lsm[i].rule);
		}
	}
}

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/**
 * ima_match_rules - determine whether an inode matches the measure rule.
 * @rule: a pointer to a rule
 * @inode: a pointer to an inode
 * @func: LIM hook identifier
 * @mask: requested action (MAY_READ | MAY_WRITE | MAY_APPEND | MAY_EXEC)
 *
 * Returns true on rule match, false on failure.
 */
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static bool ima_match_rules(struct ima_rule_entry *rule, struct inode *inode,
			    enum ima_hooks func, int mask)
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{
	struct task_struct *tsk = current;
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	const struct cred *cred = current_cred();
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	int i;
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	if ((rule->flags & IMA_FUNC) &&
	    (rule->func != func && func != POST_SETATTR))
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		return false;
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	if ((rule->flags & IMA_MASK) &&
	    (rule->mask != mask && func != POST_SETATTR))
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		return false;
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	if ((rule->flags & IMA_INMASK) &&
	    (!(rule->mask & mask) && func != POST_SETATTR))
		return false;
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	if ((rule->flags & IMA_FSMAGIC)
	    && rule->fsmagic != inode->i_sb->s_magic)
		return false;
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	if ((rule->flags & IMA_FSUUID) &&
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	    memcmp(rule->fsuuid, inode->i_sb->s_uuid, sizeof(rule->fsuuid)))
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		return false;
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	if ((rule->flags & IMA_UID) && !rule->uid_op(cred->uid, rule->uid))
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		return false;
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	if (rule->flags & IMA_EUID) {
		if (has_capability_noaudit(current, CAP_SETUID)) {
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			if (!rule->uid_op(cred->euid, rule->uid)
			    && !rule->uid_op(cred->suid, rule->uid)
			    && !rule->uid_op(cred->uid, rule->uid))
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				return false;
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		} else if (!rule->uid_op(cred->euid, rule->uid))
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			return false;
	}

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	if ((rule->flags & IMA_FOWNER) &&
	    !rule->fowner_op(inode->i_uid, rule->fowner))
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		return false;
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	for (i = 0; i < MAX_LSM_RULES; i++) {
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		int rc = 0;
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		u32 osid, sid;
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		int retried = 0;
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		if (!rule->lsm[i].rule)
			continue;
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retry:
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		switch (i) {
		case LSM_OBJ_USER:
		case LSM_OBJ_ROLE:
		case LSM_OBJ_TYPE:
			security_inode_getsecid(inode, &osid);
			rc = security_filter_rule_match(osid,
							rule->lsm[i].type,
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							Audit_equal,
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							rule->lsm[i].rule,
							NULL);
			break;
		case LSM_SUBJ_USER:
		case LSM_SUBJ_ROLE:
		case LSM_SUBJ_TYPE:
			security_task_getsecid(tsk, &sid);
			rc = security_filter_rule_match(sid,
							rule->lsm[i].type,
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							Audit_equal,
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							rule->lsm[i].rule,
							NULL);
		default:
			break;
		}
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		if ((rc < 0) && (!retried)) {
			retried = 1;
			ima_lsm_update_rules();
			goto retry;
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		}
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		if (!rc)
			return false;
	}
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	return true;
}

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/*
 * In addition to knowing that we need to appraise the file in general,
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 * we need to differentiate between calling hooks, for hook specific rules.
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 */
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static int get_subaction(struct ima_rule_entry *rule, enum ima_hooks func)
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{
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	if (!(rule->flags & IMA_FUNC))
		return IMA_FILE_APPRAISE;

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	switch (func) {
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	case MMAP_CHECK:
		return IMA_MMAP_APPRAISE;
	case BPRM_CHECK:
		return IMA_BPRM_APPRAISE;
	case FILE_CHECK:
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	case POST_SETATTR:
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		return IMA_FILE_APPRAISE;
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	case MODULE_CHECK ... MAX_CHECK - 1:
	default:
		return IMA_READ_APPRAISE;
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	}
}

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/**
 * ima_match_policy - decision based on LSM and other conditions
 * @inode: pointer to an inode for which the policy decision is being made
 * @func: IMA hook identifier
 * @mask: requested action (MAY_READ | MAY_WRITE | MAY_APPEND | MAY_EXEC)
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 * @pcr: set the pcr to extend
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 *
 * Measure decision based on func/mask/fsmagic and LSM(subj/obj/type)
 * conditions.
 *
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 * Since the IMA policy may be updated multiple times we need to lock the
 * list when walking it.  Reads are many orders of magnitude more numerous
 * than writes so ima_match_policy() is classical RCU candidate.
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 */
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int ima_match_policy(struct inode *inode, enum ima_hooks func, int mask,
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		     int flags, int *pcr)
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{
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	struct ima_rule_entry *entry;
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	int action = 0, actmask = flags | (flags << 1);
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	rcu_read_lock();
	list_for_each_entry_rcu(entry, ima_rules, list) {
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		if (!(entry->action & actmask))
			continue;

		if (!ima_match_rules(entry, inode, func, mask))
			continue;
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		action |= entry->flags & IMA_ACTION_FLAGS;

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		action |= entry->action & IMA_DO_MASK;
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		if (entry->action & IMA_APPRAISE)
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			action |= get_subaction(entry, func);
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		if (entry->action & IMA_DO_MASK)
			actmask &= ~(entry->action | entry->action << 1);
		else
			actmask &= ~(entry->action | entry->action >> 1);
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		if ((pcr) && (entry->flags & IMA_PCR))
			*pcr = entry->pcr;

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		if (!actmask)
			break;
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	}
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	rcu_read_unlock();
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	return action;
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}

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/*
 * Initialize the ima_policy_flag variable based on the currently
 * loaded policy.  Based on this flag, the decision to short circuit
 * out of a function or not call the function in the first place
 * can be made earlier.
 */
void ima_update_policy_flag(void)
{
	struct ima_rule_entry *entry;

	list_for_each_entry(entry, ima_rules, list) {
		if (entry->action & IMA_DO_MASK)
			ima_policy_flag |= entry->action;
	}

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	ima_appraise |= temp_ima_appraise;
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	if (!ima_appraise)
		ima_policy_flag &= ~IMA_APPRAISE;
}

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/**
 * ima_init_policy - initialize the default measure rules.
 *
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 * ima_rules points to either the ima_default_rules or the
 * the new ima_policy_rules.
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 */
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void __init ima_init_policy(void)
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{
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	int i, measure_entries, appraise_entries;
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	/* if !ima_policy set entries = 0 so we load NO default rules */
	measure_entries = ima_policy ? ARRAY_SIZE(dont_measure_rules) : 0;
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	appraise_entries = ima_use_appraise_tcb ?
			 ARRAY_SIZE(default_appraise_rules) : 0;
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	for (i = 0; i < measure_entries; i++)
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		list_add_tail(&dont_measure_rules[i].list, &ima_default_rules);

	switch (ima_policy) {
	case ORIGINAL_TCB:
		for (i = 0; i < ARRAY_SIZE(original_measurement_rules); i++)
			list_add_tail(&original_measurement_rules[i].list,
				      &ima_default_rules);
		break;
	case DEFAULT_TCB:
		for (i = 0; i < ARRAY_SIZE(default_measurement_rules); i++)
			list_add_tail(&default_measurement_rules[i].list,
				      &ima_default_rules);
	default:
		break;
	}
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	for (i = 0; i < appraise_entries; i++) {
		list_add_tail(&default_appraise_rules[i].list,
			      &ima_default_rules);
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		if (default_appraise_rules[i].func == POLICY_CHECK)
			temp_ima_appraise |= IMA_APPRAISE_POLICY;
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	}

	ima_rules = &ima_default_rules;
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	ima_update_policy_flag();
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}
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/* Make sure we have a valid policy, at least containing some rules. */
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int ima_check_policy(void)
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{
	if (list_empty(&ima_temp_rules))
		return -EINVAL;
	return 0;
}

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/**
 * ima_update_policy - update default_rules with new measure rules
 *
 * Called on file .release to update the default rules with a complete new
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 * policy.  What we do here is to splice ima_policy_rules and ima_temp_rules so
 * they make a queue.  The policy may be updated multiple times and this is the
 * RCU updater.
 *
 * Policy rules are never deleted so ima_policy_flag gets zeroed only once when
 * we switch from the default policy to user defined.
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 */
void ima_update_policy(void)
{
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	struct list_head *first, *last, *policy;

	/* append current policy with the new rules */
	first = (&ima_temp_rules)->next;
	last = (&ima_temp_rules)->prev;
	policy = &ima_policy_rules;

	synchronize_rcu();

	last->next = policy;
	rcu_assign_pointer(list_next_rcu(policy->prev), first);
	first->prev = policy->prev;
	policy->prev = last;

	/* prepare for the next policy rules addition */
	INIT_LIST_HEAD(&ima_temp_rules);

	if (ima_rules != policy) {
		ima_policy_flag = 0;
		ima_rules = policy;
	}
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	ima_update_policy_flag();
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}

enum {
	Opt_err = -1,
	Opt_measure = 1, Opt_dont_measure,
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	Opt_appraise, Opt_dont_appraise,
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	Opt_audit,
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	Opt_obj_user, Opt_obj_role, Opt_obj_type,
	Opt_subj_user, Opt_subj_role, Opt_subj_type,
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	Opt_func, Opt_mask, Opt_fsmagic,
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	Opt_fsuuid, Opt_uid_eq, Opt_euid_eq, Opt_fowner_eq,
	Opt_uid_gt, Opt_euid_gt, Opt_fowner_gt,
	Opt_uid_lt, Opt_euid_lt, Opt_fowner_lt,
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	Opt_appraise_type, Opt_permit_directio,
	Opt_pcr
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};

static match_table_t policy_tokens = {
	{Opt_measure, "measure"},
	{Opt_dont_measure, "dont_measure"},
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	{Opt_appraise, "appraise"},
	{Opt_dont_appraise, "dont_appraise"},
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	{Opt_audit, "audit"},
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	{Opt_obj_user, "obj_user=%s"},
	{Opt_obj_role, "obj_role=%s"},
	{Opt_obj_type, "obj_type=%s"},
	{Opt_subj_user, "subj_user=%s"},
	{Opt_subj_role, "subj_role=%s"},
	{Opt_subj_type, "subj_type=%s"},
	{Opt_func, "func=%s"},
	{Opt_mask, "mask=%s"},
	{Opt_fsmagic, "fsmagic=%s"},
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	{Opt_fsuuid, "fsuuid=%s"},
519 520 521 522 523 524 525 526 527
	{Opt_uid_eq, "uid=%s"},
	{Opt_euid_eq, "euid=%s"},
	{Opt_fowner_eq, "fowner=%s"},
	{Opt_uid_gt, "uid>%s"},
	{Opt_euid_gt, "euid>%s"},
	{Opt_fowner_gt, "fowner>%s"},
	{Opt_uid_lt, "uid<%s"},
	{Opt_euid_lt, "euid<%s"},
	{Opt_fowner_lt, "fowner<%s"},
528
	{Opt_appraise_type, "appraise_type=%s"},
529
	{Opt_permit_directio, "permit_directio"},
530
	{Opt_pcr, "pcr=%s"},
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	{Opt_err, NULL}
};

534
static int ima_lsm_rule_init(struct ima_rule_entry *entry,
535
			     substring_t *args, int lsm_rule, int audit_type)
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{
	int result;

539 540 541
	if (entry->lsm[lsm_rule].rule)
		return -EINVAL;

542 543 544 545
	entry->lsm[lsm_rule].args_p = match_strdup(args);
	if (!entry->lsm[lsm_rule].args_p)
		return -ENOMEM;

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	entry->lsm[lsm_rule].type = audit_type;
	result = security_filter_rule_init(entry->lsm[lsm_rule].type,
548 549
					   Audit_equal,
					   entry->lsm[lsm_rule].args_p,
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					   &entry->lsm[lsm_rule].rule);
551 552
	if (!entry->lsm[lsm_rule].rule) {
		kfree(entry->lsm[lsm_rule].args_p);
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		return -EINVAL;
554 555
	}

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	return result;
}

559 560
static void ima_log_string_op(struct audit_buffer *ab, char *key, char *value,
			      bool (*rule_operator)(kuid_t, kuid_t))
561
{
562 563 564 565 566 567
	if (rule_operator == &uid_gt)
		audit_log_format(ab, "%s>", key);
	else if (rule_operator == &uid_lt)
		audit_log_format(ab, "%s<", key);
	else
		audit_log_format(ab, "%s=", key);
568 569 570
	audit_log_untrustedstring(ab, value);
	audit_log_format(ab, " ");
}
571 572 573 574
static void ima_log_string(struct audit_buffer *ab, char *key, char *value)
{
	ima_log_string_op(ab, key, value, NULL);
}
575

576
static int ima_parse_rule(char *rule, struct ima_rule_entry *entry)
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{
	struct audit_buffer *ab;
579
	char *from;
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	char *p;
581
	bool uid_token;
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	int result = 0;

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	ab = audit_log_start(NULL, GFP_KERNEL, AUDIT_INTEGRITY_RULE);
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586
	entry->uid = INVALID_UID;
587
	entry->fowner = INVALID_UID;
588 589
	entry->uid_op = &uid_eq;
	entry->fowner_op = &uid_eq;
590
	entry->action = UNKNOWN;
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	while ((p = strsep(&rule, " \t")) != NULL) {
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		substring_t args[MAX_OPT_ARGS];
		int token;
		unsigned long lnum;

		if (result < 0)
			break;
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		if ((*p == '\0') || (*p == ' ') || (*p == '\t'))
			continue;
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		token = match_token(p, policy_tokens, args);
		switch (token) {
		case Opt_measure:
603
			ima_log_string(ab, "action", "measure");
604 605 606 607

			if (entry->action != UNKNOWN)
				result = -EINVAL;

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			entry->action = MEASURE;
			break;
		case Opt_dont_measure:
611
			ima_log_string(ab, "action", "dont_measure");
612 613 614 615

			if (entry->action != UNKNOWN)
				result = -EINVAL;

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			entry->action = DONT_MEASURE;
			break;
618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633
		case Opt_appraise:
			ima_log_string(ab, "action", "appraise");

			if (entry->action != UNKNOWN)
				result = -EINVAL;

			entry->action = APPRAISE;
			break;
		case Opt_dont_appraise:
			ima_log_string(ab, "action", "dont_appraise");

			if (entry->action != UNKNOWN)
				result = -EINVAL;

			entry->action = DONT_APPRAISE;
			break;
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		case Opt_audit:
			ima_log_string(ab, "action", "audit");

			if (entry->action != UNKNOWN)
				result = -EINVAL;

			entry->action = AUDIT;
			break;
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		case Opt_func:
643
			ima_log_string(ab, "func", args[0].from);
644 645

			if (entry->func)
646
				result = -EINVAL;
647

648 649 650 651 652
			if (strcmp(args[0].from, "FILE_CHECK") == 0)
				entry->func = FILE_CHECK;
			/* PATH_CHECK is for backwards compat */
			else if (strcmp(args[0].from, "PATH_CHECK") == 0)
				entry->func = FILE_CHECK;
653 654
			else if (strcmp(args[0].from, "MODULE_CHECK") == 0)
				entry->func = MODULE_CHECK;
655 656
			else if (strcmp(args[0].from, "FIRMWARE_CHECK") == 0)
				entry->func = FIRMWARE_CHECK;
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			else if ((strcmp(args[0].from, "FILE_MMAP") == 0)
				|| (strcmp(args[0].from, "MMAP_CHECK") == 0))
				entry->func = MMAP_CHECK;
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			else if (strcmp(args[0].from, "BPRM_CHECK") == 0)
				entry->func = BPRM_CHECK;
662 663 664 665 666 667
			else if (strcmp(args[0].from, "KEXEC_KERNEL_CHECK") ==
				 0)
				entry->func = KEXEC_KERNEL_CHECK;
			else if (strcmp(args[0].from, "KEXEC_INITRAMFS_CHECK")
				 == 0)
				entry->func = KEXEC_INITRAMFS_CHECK;
668 669
			else if (strcmp(args[0].from, "POLICY_CHECK") == 0)
				entry->func = POLICY_CHECK;
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			else
				result = -EINVAL;
			if (!result)
				entry->flags |= IMA_FUNC;
			break;
		case Opt_mask:
676
			ima_log_string(ab, "mask", args[0].from);
677 678 679 680

			if (entry->mask)
				result = -EINVAL;

681 682 683 684 685
			from = args[0].from;
			if (*from == '^')
				from++;

			if ((strcmp(from, "MAY_EXEC")) == 0)
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				entry->mask = MAY_EXEC;
687
			else if (strcmp(from, "MAY_WRITE") == 0)
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				entry->mask = MAY_WRITE;
689
			else if (strcmp(from, "MAY_READ") == 0)
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				entry->mask = MAY_READ;
691
			else if (strcmp(from, "MAY_APPEND") == 0)
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				entry->mask = MAY_APPEND;
			else
				result = -EINVAL;
			if (!result)
696 697
				entry->flags |= (*args[0].from == '^')
				     ? IMA_INMASK : IMA_MASK;
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			break;
		case Opt_fsmagic:
700
			ima_log_string(ab, "fsmagic", args[0].from);
701 702 703 704 705 706

			if (entry->fsmagic) {
				result = -EINVAL;
				break;
			}

707
			result = kstrtoul(args[0].from, 16, &entry->fsmagic);
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			if (!result)
				entry->flags |= IMA_FSMAGIC;
			break;
711 712 713 714
		case Opt_fsuuid:
			ima_log_string(ab, "fsuuid", args[0].from);

			if (memchr_inv(entry->fsuuid, 0x00,
715
				       sizeof(entry->fsuuid))) {
716 717 718 719
				result = -EINVAL;
				break;
			}

720
			result = uuid_parse(args[0].from, (uuid_t *)&entry->fsuuid);
721 722
			if (!result)
				entry->flags |= IMA_FSUUID;
723
			break;
724 725 726 727 728 729 730 731 732 733 734 735 736 737 738
		case Opt_uid_gt:
		case Opt_euid_gt:
			entry->uid_op = &uid_gt;
		case Opt_uid_lt:
		case Opt_euid_lt:
			if ((token == Opt_uid_lt) || (token == Opt_euid_lt))
				entry->uid_op = &uid_lt;
		case Opt_uid_eq:
		case Opt_euid_eq:
			uid_token = (token == Opt_uid_eq) ||
				    (token == Opt_uid_gt) ||
				    (token == Opt_uid_lt);

			ima_log_string_op(ab, uid_token ? "uid" : "euid",
					  args[0].from, entry->uid_op);
739

740
			if (uid_valid(entry->uid)) {
741 742 743 744
				result = -EINVAL;
				break;
			}

745
			result = kstrtoul(args[0].from, 10, &lnum);
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			if (!result) {
747 748 749 750
				entry->uid = make_kuid(current_user_ns(),
						       (uid_t) lnum);
				if (!uid_valid(entry->uid) ||
				    (uid_t)lnum != lnum)
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					result = -EINVAL;
				else
753
					entry->flags |= uid_token
754
					    ? IMA_UID : IMA_EUID;
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			}
			break;
757 758 759 760 761 762 763 764
		case Opt_fowner_gt:
			entry->fowner_op = &uid_gt;
		case Opt_fowner_lt:
			if (token == Opt_fowner_lt)
				entry->fowner_op = &uid_lt;
		case Opt_fowner_eq:
			ima_log_string_op(ab, "fowner", args[0].from,
					  entry->fowner_op);
765

766
			if (uid_valid(entry->fowner)) {
767 768 769 770
				result = -EINVAL;
				break;
			}

771
			result = kstrtoul(args[0].from, 10, &lnum);
772
			if (!result) {
773 774
				entry->fowner = make_kuid(current_user_ns(), (uid_t)lnum);
				if (!uid_valid(entry->fowner) || (((uid_t)lnum) != lnum))
775 776 777 778 779
					result = -EINVAL;
				else
					entry->flags |= IMA_FOWNER;
			}
			break;
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		case Opt_obj_user:
781
			ima_log_string(ab, "obj_user", args[0].from);
782
			result = ima_lsm_rule_init(entry, args,
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						   LSM_OBJ_USER,
						   AUDIT_OBJ_USER);
			break;
		case Opt_obj_role:
787
			ima_log_string(ab, "obj_role", args[0].from);
788
			result = ima_lsm_rule_init(entry, args,
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						   LSM_OBJ_ROLE,
						   AUDIT_OBJ_ROLE);
			break;
		case Opt_obj_type:
793
			ima_log_string(ab, "obj_type", args[0].from);
794
			result = ima_lsm_rule_init(entry, args,
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						   LSM_OBJ_TYPE,
						   AUDIT_OBJ_TYPE);
			break;
		case Opt_subj_user:
799
			ima_log_string(ab, "subj_user", args[0].from);
800
			result = ima_lsm_rule_init(entry, args,
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						   LSM_SUBJ_USER,
						   AUDIT_SUBJ_USER);
			break;
		case Opt_subj_role:
805
			ima_log_string(ab, "subj_role", args[0].from);
806
			result = ima_lsm_rule_init(entry, args,
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						   LSM_SUBJ_ROLE,
						   AUDIT_SUBJ_ROLE);
			break;
		case Opt_subj_type:
811
			ima_log_string(ab, "subj_type", args[0].from);
812
			result = ima_lsm_rule_init(entry, args,
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						   LSM_SUBJ_TYPE,
						   AUDIT_SUBJ_TYPE);
			break;
816 817 818 819 820 821 822 823 824 825 826 827
		case Opt_appraise_type:
			if (entry->action != APPRAISE) {
				result = -EINVAL;
				break;
			}

			ima_log_string(ab, "appraise_type", args[0].from);
			if ((strcmp(args[0].from, "imasig")) == 0)
				entry->flags |= IMA_DIGSIG_REQUIRED;
			else
				result = -EINVAL;
			break;
828 829
		case Opt_permit_directio:
			entry->flags |= IMA_PERMIT_DIRECTIO;
830 831 832 833 834 835 836 837 838 839 840 841 842 843
			break;
		case Opt_pcr:
			if (entry->action != MEASURE) {
				result = -EINVAL;
				break;
			}
			ima_log_string(ab, "pcr", args[0].from);

			result = kstrtoint(args[0].from, 10, &entry->pcr);
			if (result || INVALID_PCR(entry->pcr))
				result = -EINVAL;
			else
				entry->flags |= IMA_PCR;

844
			break;
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845
		case Opt_err:
846
			ima_log_string(ab, "UNKNOWN", p);
847
			result = -EINVAL;
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848 849 850
			break;
		}
	}
851
	if (!result && (entry->action == UNKNOWN))
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852
		result = -EINVAL;
853
	else if (entry->func == MODULE_CHECK)
854
		temp_ima_appraise |= IMA_APPRAISE_MODULES;
855
	else if (entry->func == FIRMWARE_CHECK)
856
		temp_ima_appraise |= IMA_APPRAISE_FIRMWARE;
857 858
	else if (entry->func == POLICY_CHECK)
		temp_ima_appraise |= IMA_APPRAISE_POLICY;
859
	audit_log_format(ab, "res=%d", !result);
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	audit_log_end(ab);
	return result;
}

/**
865
 * ima_parse_add_rule - add a rule to ima_policy_rules
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866 867
 * @rule - ima measurement policy rule
 *
868
 * Avoid locking by allowing just one writer at a time in ima_write_policy()
869
 * Returns the length of the rule parsed, an error code on failure
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870
 */
871
ssize_t ima_parse_add_rule(char *rule)
M
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872
{
873
	static const char op[] = "update_policy";
874
	char *p;
875
	struct ima_rule_entry *entry;
876
	ssize_t result, len;
M
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877 878
	int audit_info = 0;

879 880
	p = strsep(&rule, "\n");
	len = strlen(p) + 1;
881
	p += strspn(p, " \t");
882

883
	if (*p == '#' || *p == '\0')
884 885
		return len;

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886 887 888 889 890 891 892 893 894
	entry = kzalloc(sizeof(*entry), GFP_KERNEL);
	if (!entry) {
		integrity_audit_msg(AUDIT_INTEGRITY_STATUS, NULL,
				    NULL, op, "-ENOMEM", -ENOMEM, audit_info);
		return -ENOMEM;
	}

	INIT_LIST_HEAD(&entry->list);

895
	result = ima_parse_rule(p, entry);
E
Eric Paris 已提交
896
	if (result) {
M
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897
		kfree(entry);
M
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898
		integrity_audit_msg(AUDIT_INTEGRITY_STATUS, NULL,
899
				    NULL, op, "invalid-policy", result,
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900
				    audit_info);
E
Eric Paris 已提交
901
		return result;
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902
	}
E
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903

904
	list_add_tail(&entry->list, &ima_temp_rules);
E
Eric Paris 已提交
905 906

	return len;
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}

909 910 911 912 913 914
/**
 * ima_delete_rules() called to cleanup invalid in-flight policy.
 * We don't need locking as we operate on the temp list, which is
 * different from the active one.  There is also only one user of
 * ima_delete_rules() at a time.
 */
915
void ima_delete_rules(void)
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916
{
917
	struct ima_rule_entry *entry, *tmp;
918
	int i;
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919

920
	temp_ima_appraise = 0;
921
	list_for_each_entry_safe(entry, tmp, &ima_temp_rules, list) {
922 923 924
		for (i = 0; i < MAX_LSM_RULES; i++)
			kfree(entry->lsm[i].args_p);

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		list_del(&entry->list);
		kfree(entry);
	}
}
929 930 931 932 933 934 935 936 937 938 939 940 941 942 943

#ifdef	CONFIG_IMA_READ_POLICY
enum {
	mask_exec = 0, mask_write, mask_read, mask_append
};

static char *mask_tokens[] = {
	"MAY_EXEC",
	"MAY_WRITE",
	"MAY_READ",
	"MAY_APPEND"
};

enum {
	func_file = 0, func_mmap, func_bprm,
944
	func_module, func_firmware, func_post,
945 946
	func_kexec_kernel, func_kexec_initramfs,
	func_policy
947 948 949 950 951 952 953 954
};

static char *func_tokens[] = {
	"FILE_CHECK",
	"MMAP_CHECK",
	"BPRM_CHECK",
	"MODULE_CHECK",
	"FIRMWARE_CHECK",
955
	"POST_SETATTR",
956 957
	"KEXEC_KERNEL_CHECK",
	"KEXEC_INITRAMFS_CHECK",
958
	"POLICY_CHECK"
959 960 961 962 963 964 965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993 994 995 996
};

void *ima_policy_start(struct seq_file *m, loff_t *pos)
{
	loff_t l = *pos;
	struct ima_rule_entry *entry;

	rcu_read_lock();
	list_for_each_entry_rcu(entry, ima_rules, list) {
		if (!l--) {
			rcu_read_unlock();
			return entry;
		}
	}
	rcu_read_unlock();
	return NULL;
}

void *ima_policy_next(struct seq_file *m, void *v, loff_t *pos)
{
	struct ima_rule_entry *entry = v;

	rcu_read_lock();
	entry = list_entry_rcu(entry->list.next, struct ima_rule_entry, list);
	rcu_read_unlock();
	(*pos)++;

	return (&entry->list == ima_rules) ? NULL : entry;
}

void ima_policy_stop(struct seq_file *m, void *v)
{
}

#define pt(token)	policy_tokens[token + Opt_err].pattern
#define mt(token)	mask_tokens[token]
#define ft(token)	func_tokens[token]

997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022
/*
 * policy_func_show - display the ima_hooks policy rule
 */
static void policy_func_show(struct seq_file *m, enum ima_hooks func)
{
	char tbuf[64] = {0,};

	switch (func) {
	case FILE_CHECK:
		seq_printf(m, pt(Opt_func), ft(func_file));
		break;
	case MMAP_CHECK:
		seq_printf(m, pt(Opt_func), ft(func_mmap));
		break;
	case BPRM_CHECK:
		seq_printf(m, pt(Opt_func), ft(func_bprm));
		break;
	case MODULE_CHECK:
		seq_printf(m, pt(Opt_func), ft(func_module));
		break;
	case FIRMWARE_CHECK:
		seq_printf(m, pt(Opt_func), ft(func_firmware));
		break;
	case POST_SETATTR:
		seq_printf(m, pt(Opt_func), ft(func_post));
		break;
1023 1024 1025 1026 1027 1028
	case KEXEC_KERNEL_CHECK:
		seq_printf(m, pt(Opt_func), ft(func_kexec_kernel));
		break;
	case KEXEC_INITRAMFS_CHECK:
		seq_printf(m, pt(Opt_func), ft(func_kexec_initramfs));
		break;
1029 1030 1031
	case POLICY_CHECK:
		seq_printf(m, pt(Opt_func), ft(func_policy));
		break;
1032 1033 1034 1035 1036 1037 1038 1039
	default:
		snprintf(tbuf, sizeof(tbuf), "%d", func);
		seq_printf(m, pt(Opt_func), tbuf);
		break;
	}
	seq_puts(m, " ");
}

1040 1041 1042
int ima_policy_show(struct seq_file *m, void *v)
{
	struct ima_rule_entry *entry = v;
1043
	int i;
1044 1045 1046 1047 1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060
	char tbuf[64] = {0,};

	rcu_read_lock();

	if (entry->action & MEASURE)
		seq_puts(m, pt(Opt_measure));
	if (entry->action & DONT_MEASURE)
		seq_puts(m, pt(Opt_dont_measure));
	if (entry->action & APPRAISE)
		seq_puts(m, pt(Opt_appraise));
	if (entry->action & DONT_APPRAISE)
		seq_puts(m, pt(Opt_dont_appraise));
	if (entry->action & AUDIT)
		seq_puts(m, pt(Opt_audit));

	seq_puts(m, " ");

1061 1062
	if (entry->flags & IMA_FUNC)
		policy_func_show(m, entry->func);
1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081

	if (entry->flags & IMA_MASK) {
		if (entry->mask & MAY_EXEC)
			seq_printf(m, pt(Opt_mask), mt(mask_exec));
		if (entry->mask & MAY_WRITE)
			seq_printf(m, pt(Opt_mask), mt(mask_write));
		if (entry->mask & MAY_READ)
			seq_printf(m, pt(Opt_mask), mt(mask_read));
		if (entry->mask & MAY_APPEND)
			seq_printf(m, pt(Opt_mask), mt(mask_append));
		seq_puts(m, " ");
	}

	if (entry->flags & IMA_FSMAGIC) {
		snprintf(tbuf, sizeof(tbuf), "0x%lx", entry->fsmagic);
		seq_printf(m, pt(Opt_fsmagic), tbuf);
		seq_puts(m, " ");
	}

1082 1083 1084 1085 1086 1087
	if (entry->flags & IMA_PCR) {
		snprintf(tbuf, sizeof(tbuf), "%d", entry->pcr);
		seq_printf(m, pt(Opt_pcr), tbuf);
		seq_puts(m, " ");
	}

1088
	if (entry->flags & IMA_FSUUID) {
1089
		seq_printf(m, "fsuuid=%pU", entry->fsuuid);
1090 1091 1092 1093 1094
		seq_puts(m, " ");
	}

	if (entry->flags & IMA_UID) {
		snprintf(tbuf, sizeof(tbuf), "%d", __kuid_val(entry->uid));
1095 1096 1097 1098 1099 1100
		if (entry->uid_op == &uid_gt)
			seq_printf(m, pt(Opt_uid_gt), tbuf);
		else if (entry->uid_op == &uid_lt)
			seq_printf(m, pt(Opt_uid_lt), tbuf);
		else
			seq_printf(m, pt(Opt_uid_eq), tbuf);
1101 1102 1103 1104 1105
		seq_puts(m, " ");
	}

	if (entry->flags & IMA_EUID) {
		snprintf(tbuf, sizeof(tbuf), "%d", __kuid_val(entry->uid));
1106 1107 1108 1109 1110 1111
		if (entry->uid_op == &uid_gt)
			seq_printf(m, pt(Opt_euid_gt), tbuf);
		else if (entry->uid_op == &uid_lt)
			seq_printf(m, pt(Opt_euid_lt), tbuf);
		else
			seq_printf(m, pt(Opt_euid_eq), tbuf);
1112 1113 1114 1115 1116
		seq_puts(m, " ");
	}

	if (entry->flags & IMA_FOWNER) {
		snprintf(tbuf, sizeof(tbuf), "%d", __kuid_val(entry->fowner));
1117 1118 1119 1120 1121 1122
		if (entry->fowner_op == &uid_gt)
			seq_printf(m, pt(Opt_fowner_gt), tbuf);
		else if (entry->fowner_op == &uid_lt)
			seq_printf(m, pt(Opt_fowner_lt), tbuf);
		else
			seq_printf(m, pt(Opt_fowner_eq), tbuf);
1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164
		seq_puts(m, " ");
	}

	for (i = 0; i < MAX_LSM_RULES; i++) {
		if (entry->lsm[i].rule) {
			switch (i) {
			case LSM_OBJ_USER:
				seq_printf(m, pt(Opt_obj_user),
					   (char *)entry->lsm[i].args_p);
				break;
			case LSM_OBJ_ROLE:
				seq_printf(m, pt(Opt_obj_role),
					   (char *)entry->lsm[i].args_p);
				break;
			case LSM_OBJ_TYPE:
				seq_printf(m, pt(Opt_obj_type),
					   (char *)entry->lsm[i].args_p);
				break;
			case LSM_SUBJ_USER:
				seq_printf(m, pt(Opt_subj_user),
					   (char *)entry->lsm[i].args_p);
				break;
			case LSM_SUBJ_ROLE:
				seq_printf(m, pt(Opt_subj_role),
					   (char *)entry->lsm[i].args_p);
				break;
			case LSM_SUBJ_TYPE:
				seq_printf(m, pt(Opt_subj_type),
					   (char *)entry->lsm[i].args_p);
				break;
			}
		}
	}
	if (entry->flags & IMA_DIGSIG_REQUIRED)
		seq_puts(m, "appraise_type=imasig ");
	if (entry->flags & IMA_PERMIT_DIRECTIO)
		seq_puts(m, "permit_directio ");
	rcu_read_unlock();
	seq_puts(m, "\n");
	return 0;
}
#endif	/* CONFIG_IMA_READ_POLICY */