ima_policy.c 53.7 KB
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// SPDX-License-Identifier: GPL-2.0-only
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/*
 * Copyright (C) 2008 IBM Corporation
 * Author: Mimi Zohar <zohar@us.ibm.com>
 *
 * ima_policy.c
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 *	- initialize default measure policy rules
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 */
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#include <linux/init.h>
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#include <linux/list.h>
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#include <linux/kernel_read_file.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 <linux/ima.h>
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#include "ima.h"
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#include "ima_digest_list.h"
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/* 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 IMA_FSNAME	0x0200
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#define IMA_KEYRINGS	0x0400
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#define IMA_PARSER	0x0800
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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 HASH		0x0100
#define DONT_HASH	0x0200
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#define INVALID_PCR(a) (((a) < 0) || \
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	(a) >= (sizeof_field(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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static int build_ima_appraise __ro_after_init;
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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, EXEC_TCB };
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enum policy_rule_list { IMA_DEFAULT_POLICY = 1, IMA_CUSTOM_POLICY };

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struct ima_rule_opt_list {
	size_t count;
	char *items[];
};

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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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	uuid_t fsuuid;
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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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		char *args_p;	/* audit value */
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		int type;	/* audit type */
	} lsm[MAX_LSM_RULES];
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	char *fsname;
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	struct ima_rule_opt_list *keyrings; /* Measure keys added to these keyrings */
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	struct ima_template_desc *template;
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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 = SMACK_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 = CGROUP2_SUPER_MAGIC,
	 .flags = IMA_FSMAGIC},
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	{.action = DONT_MEASURE, .fsmagic = NSFS_MAGIC, .flags = IMA_FSMAGIC},
	{.action = DONT_MEASURE, .fsmagic = EFIVARFS_MAGIC, .flags = IMA_FSMAGIC}
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};

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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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	{.action = MEASURE, .func = DIGEST_LIST_CHECK, .flags = IMA_FUNC},
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};

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static struct ima_rule_entry ima_parser_measure_rule __ro_after_init = {
	.action = MEASURE, .flags = IMA_PARSER
};

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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 = SMACK_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 = EFIVARFS_MAGIC, .flags = IMA_FSMAGIC},
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	{.action = DONT_APPRAISE, .fsmagic = CGROUP_SUPER_MAGIC, .flags = IMA_FSMAGIC},
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	{.action = DONT_APPRAISE, .fsmagic = CGROUP2_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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};

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static struct ima_rule_entry appraise_exec_rules[] __ro_after_init = {
	{.action = APPRAISE, .func = BPRM_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
	{.action = APPRAISE, .func = MMAP_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
};

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static struct ima_rule_entry build_appraise_rules[] __ro_after_init = {
#ifdef CONFIG_IMA_APPRAISE_REQUIRE_MODULE_SIGS
	{.action = APPRAISE, .func = MODULE_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
#endif
#ifdef CONFIG_IMA_APPRAISE_REQUIRE_FIRMWARE_SIGS
	{.action = APPRAISE, .func = FIRMWARE_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
#endif
#ifdef CONFIG_IMA_APPRAISE_REQUIRE_KEXEC_SIGS
	{.action = APPRAISE, .func = KEXEC_KERNEL_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
#endif
#ifdef CONFIG_IMA_APPRAISE_REQUIRE_POLICY_SIGS
	{.action = APPRAISE, .func = POLICY_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
#endif
};

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static struct ima_rule_entry secure_boot_rules[] __ro_after_init = {
	{.action = APPRAISE, .func = MODULE_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
	{.action = APPRAISE, .func = FIRMWARE_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
	{.action = APPRAISE, .func = KEXEC_KERNEL_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
	{.action = APPRAISE, .func = POLICY_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
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	{.action = APPRAISE, .func = DIGEST_LIST_CHECK,
	 .flags = IMA_FUNC | IMA_DIGSIG_REQUIRED},
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};

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static struct ima_rule_entry ima_parser_appraise_rule __ro_after_init = {
	.action = APPRAISE,
	.flags = IMA_PARSER | IMA_DIGSIG_REQUIRED
};

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/* An array of architecture specific rules */
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static struct ima_rule_entry *arch_policy_entry __ro_after_init;
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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 = &ima_default_rules;
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static int ima_policy __initdata;
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struct ima_policy_setup_data init_policy_setup_data = {
#ifdef CONFIG_IMA_APPRAISE
	.ima_appraise = IMA_APPRAISE_ENFORCE,
#endif
};
struct ima_policy_data init_policy_data = {
	.ima_default_rules = LIST_HEAD_INIT(init_policy_data.ima_default_rules),
	.ima_policy_rules = LIST_HEAD_INIT(init_policy_data.ima_policy_rules),
	.ima_temp_rules = LIST_HEAD_INIT(init_policy_data.ima_temp_rules),
};

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int ima_default_measure_policy_setup(const char *str,
				     struct ima_policy_setup_data *setup_data)
{
	/* Currently unused. It will be implemented after namespacing ima
	 * policy, when global variables are removed.
	 */
	return 1;
}

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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 bool ima_use_appraise_tcb __initdata;
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static bool ima_use_appraise_exec_tcb __initdata;
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static bool ima_use_appraise_exec_immutable __initdata;
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static bool ima_use_secure_boot __initdata;
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static bool ima_fail_unverifiable_sigs __ro_after_init;
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/**
 * ima_policy_setup - parse policy configuration string "ima_policy="
 * @str: string to be parsed
 * @setup_data: pointer to a structure where parsed data is stored
 * @fail_unverifiable_sigs: boolean flag treated separately to preserve
 * __ro_after_init
 */
int ima_policy_setup(char *str,
		     struct ima_policy_setup_data *setup_data,
		     bool *fail_unverifiable_sigs)
{

	/* Currently unused. It will be implemented after namespacing ima
	 * policy, when global variables are removed.
	 */
	return 1;
}

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static int __init policy_setup(char *str)
{
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	char *p;
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	while ((p = strsep(&str, " |\n")) != NULL) {
		if (*p == ' ')
			continue;
		if ((strcmp(p, "tcb") == 0) && !ima_policy)
			ima_policy = DEFAULT_TCB;
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		else if ((strcmp(p, "exec_tcb") == 0) && !ima_policy)
			ima_policy = EXEC_TCB;
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		else if (strcmp(p, "appraise_tcb") == 0)
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			ima_use_appraise_tcb = true;
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		else if (strcmp(p, "appraise_exec_tcb") == 0)
			ima_use_appraise_exec_tcb = true;
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		else if (strcmp(p, "appraise_exec_immutable") == 0)
			ima_use_appraise_exec_immutable = true;
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		else if (strcmp(p, "secure_boot") == 0)
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			ima_use_secure_boot = true;
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		else if (strcmp(p, "fail_securely") == 0)
			ima_fail_unverifiable_sigs = true;
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		else
			pr_err("policy \"%s\" not found", p);
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	}
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	return 1;
}
__setup("ima_policy=", policy_setup);

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int ima_default_appraise_policy_setup(const char *str,
				      struct ima_policy_setup_data *setup_data)
{
	/* Currently unused. It will be implemented after namespacing ima
	 * policy, when global variables are removed.
	 */
	return 1;
}

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static int __init default_appraise_policy_setup(char *str)
{
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	ima_use_appraise_tcb = true;
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	return 1;
}
__setup("ima_appraise_tcb", default_appraise_policy_setup);
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static struct ima_rule_opt_list *ima_alloc_rule_opt_list(const substring_t *src)
{
	struct ima_rule_opt_list *opt_list;
	size_t count = 0;
	char *src_copy;
	char *cur, *next;
	size_t i;

	src_copy = match_strdup(src);
	if (!src_copy)
		return ERR_PTR(-ENOMEM);

	next = src_copy;
	while ((cur = strsep(&next, "|"))) {
		/* Don't accept an empty list item */
		if (!(*cur)) {
			kfree(src_copy);
			return ERR_PTR(-EINVAL);
		}
		count++;
	}

	/* Don't accept an empty list */
	if (!count) {
		kfree(src_copy);
		return ERR_PTR(-EINVAL);
	}

	opt_list = kzalloc(struct_size(opt_list, items, count), GFP_KERNEL);
	if (!opt_list) {
		kfree(src_copy);
		return ERR_PTR(-ENOMEM);
	}

	/*
	 * strsep() has already replaced all instances of '|' with '\0',
	 * leaving a byte sequence of NUL-terminated strings. Reference each
	 * string with the array of items.
	 *
	 * IMPORTANT: Ownership of the allocated buffer is transferred from
	 * src_copy to the first element in the items array. To free the
	 * buffer, kfree() must only be called on the first element of the
	 * array.
	 */
	for (i = 0, cur = src_copy; i < count; i++) {
		opt_list->items[i] = cur;
		cur = strchr(cur, '\0') + 1;
	}
	opt_list->count = count;

	return opt_list;
}

static void ima_free_rule_opt_list(struct ima_rule_opt_list *opt_list)
{
	if (!opt_list)
		return;

	if (opt_list->count) {
		kfree(opt_list->items[0]);
		opt_list->count = 0;
	}

	kfree(opt_list);
}

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static void ima_lsm_free_rule(struct ima_rule_entry *entry)
{
	int i;

	for (i = 0; i < MAX_LSM_RULES; i++) {
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		ima_filter_rule_free(entry->lsm[i].rule);
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		kfree(entry->lsm[i].args_p);
	}
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}

static void ima_free_rule(struct ima_rule_entry *entry)
{
	if (!entry)
		return;

	/*
	 * entry->template->fields may be allocated in ima_parse_rule() but that
	 * reference is owned by the corresponding ima_template_desc element in
	 * the defined_templates list and cannot be freed here
	 */
	kfree(entry->fsname);
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	ima_free_rule_opt_list(entry->keyrings);
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	ima_lsm_free_rule(entry);
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	kfree(entry);
}

static struct ima_rule_entry *ima_lsm_copy_rule(struct ima_rule_entry *entry)
{
	struct ima_rule_entry *nentry;
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	int i;
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	/*
	 * Immutable elements are copied over as pointers and data; only
	 * lsm rules can change
	 */
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	nentry = kmemdup(entry, sizeof(*nentry), GFP_KERNEL);
	if (!nentry)
		return NULL;

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	memset(nentry->lsm, 0, sizeof_field(struct ima_rule_entry, lsm));
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	for (i = 0; i < MAX_LSM_RULES; i++) {
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		if (!entry->lsm[i].args_p)
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			continue;

		nentry->lsm[i].type = entry->lsm[i].type;
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		nentry->lsm[i].args_p = entry->lsm[i].args_p;
		/*
		 * Remove the reference from entry so that the associated
		 * memory will not be freed during a later call to
		 * ima_lsm_free_rule(entry).
		 */
		entry->lsm[i].args_p = NULL;
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		ima_filter_rule_init(nentry->lsm[i].type, Audit_equal,
				     nentry->lsm[i].args_p,
				     &nentry->lsm[i].rule);
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		if (!nentry->lsm[i].rule)
			pr_warn("rule for LSM \'%s\' is undefined\n",
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				nentry->lsm[i].args_p);
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	}
	return nentry;
}

static int ima_lsm_update_rule(struct ima_rule_entry *entry)
{
	struct ima_rule_entry *nentry;

	nentry = ima_lsm_copy_rule(entry);
	if (!nentry)
		return -ENOMEM;

	list_replace_rcu(&entry->list, &nentry->list);
	synchronize_rcu();
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	/*
	 * ima_lsm_copy_rule() shallow copied all references, except for the
	 * LSM references, from entry to nentry so we only want to free the LSM
	 * references and the entry itself. All other memory refrences will now
	 * be owned by nentry.
	 */
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	ima_lsm_free_rule(entry);
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	kfree(entry);
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	return 0;
}

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static bool ima_rule_contains_lsm_cond(struct ima_rule_entry *entry)
{
	int i;

	for (i = 0; i < MAX_LSM_RULES; i++)
		if (entry->lsm[i].args_p)
			return true;

	return false;
}

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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
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 * the reloaded LSM policy.
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 */
static void ima_lsm_update_rules(void)
{
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	struct ima_rule_entry *entry, *e;
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	int result;
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	list_for_each_entry_safe(entry, e, &ima_policy_rules, list) {
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		if (!ima_rule_contains_lsm_cond(entry))
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			continue;

		result = ima_lsm_update_rule(entry);
		if (result) {
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			pr_err("lsm rule update error %d\n", result);
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			return;
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		}
	}
}

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int ima_lsm_policy_change(struct notifier_block *nb, unsigned long event,
			  void *lsm_data)
{
	if (event != LSM_POLICY_CHANGE)
		return NOTIFY_DONE;

	ima_lsm_update_rules();
	return NOTIFY_OK;
}

532
/**
533 534 535 536 537 538 539 540 541 542 543
 * ima_match_keyring - determine whether the keyring matches the measure rule
 * @rule: a pointer to a rule
 * @keyring: name of the keyring to match against the measure rule
 * @cred: a pointer to a credentials structure for user validation
 *
 * Returns true if keyring matches one in the rule, false otherwise.
 */
static bool ima_match_keyring(struct ima_rule_entry *rule,
			      const char *keyring, const struct cred *cred)
{
	bool matched = false;
544
	size_t i;
545 546 547 548 549 550 551 552 553 554

	if ((rule->flags & IMA_UID) && !rule->uid_op(cred->uid, rule->uid))
		return false;

	if (!rule->keyrings)
		return true;

	if (!keyring)
		return false;

555 556
	for (i = 0; i < rule->keyrings->count; i++) {
		if (!strcmp(rule->keyrings->items[i], keyring)) {
557 558 559 560 561 562 563 564
			matched = true;
			break;
		}
	}

	return matched;
}

565
/**
566
 * ima_match_rules - determine whether an inode matches the policy rule.
567 568
 * @rule: a pointer to a rule
 * @inode: a pointer to an inode
569 570
 * @cred: a pointer to a credentials structure for user validation
 * @secid: the secid of the task to be validated
571 572
 * @func: LIM hook identifier
 * @mask: requested action (MAY_READ | MAY_WRITE | MAY_APPEND | MAY_EXEC)
573
 * @keyring: keyring name to check in policy for KEY_CHECK func
574 575 576
 *
 * Returns true on rule match, false on failure.
 */
577
static bool ima_match_rules(struct ima_rule_entry *rule, struct inode *inode,
578
			    const struct cred *cred, u32 secid,
579 580
			    enum ima_hooks func, int mask,
			    const char *keyring)
581
{
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	int i;
583

584 585 586
	if (func == KEY_CHECK) {
		return (rule->flags & IMA_FUNC) && (rule->func == func) &&
		       ima_match_keyring(rule, keyring, cred);
587
	}
588 589
	if ((rule->flags & IMA_FUNC) &&
	    (rule->func != func && func != POST_SETATTR))
590
		return false;
591 592
	if ((rule->flags & IMA_MASK) &&
	    (rule->mask != mask && func != POST_SETATTR))
593
		return false;
594 595 596
	if ((rule->flags & IMA_INMASK) &&
	    (!(rule->mask & mask) && func != POST_SETATTR))
		return false;
597 598 599
	if ((rule->flags & IMA_FSMAGIC)
	    && rule->fsmagic != inode->i_sb->s_magic)
		return false;
600 601 602
	if ((rule->flags & IMA_FSNAME)
	    && strcmp(rule->fsname, inode->i_sb->s_type->name))
		return false;
603
	if ((rule->flags & IMA_FSUUID) &&
604
	    !uuid_equal(&rule->fsuuid, &inode->i_sb->s_uuid))
605
		return false;
606
	if ((rule->flags & IMA_UID) && !rule->uid_op(cred->uid, rule->uid))
607
		return false;
608 609
	if (rule->flags & IMA_EUID) {
		if (has_capability_noaudit(current, CAP_SETUID)) {
610 611 612
			if (!rule->uid_op(cred->euid, rule->uid)
			    && !rule->uid_op(cred->suid, rule->uid)
			    && !rule->uid_op(cred->uid, rule->uid))
613
				return false;
614
		} else if (!rule->uid_op(cred->euid, rule->uid))
615 616 617
			return false;
	}

618 619
	if ((rule->flags & IMA_FOWNER) &&
	    !rule->fowner_op(inode->i_uid, rule->fowner))
620
		return false;
621 622 623
	if ((rule->flags & IMA_PARSER) &&
	    !ima_current_is_parser())
		return false;
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	for (i = 0; i < MAX_LSM_RULES; i++) {
625
		int rc = 0;
626
		u32 osid;
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627

628 629 630 631 632 633
		if (!rule->lsm[i].rule) {
			if (!rule->lsm[i].args_p)
				continue;
			else
				return false;
		}
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		switch (i) {
		case LSM_OBJ_USER:
		case LSM_OBJ_ROLE:
		case LSM_OBJ_TYPE:
			security_inode_getsecid(inode, &osid);
639 640 641
			rc = ima_filter_rule_match(osid, rule->lsm[i].type,
						   Audit_equal,
						   rule->lsm[i].rule);
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			break;
		case LSM_SUBJ_USER:
		case LSM_SUBJ_ROLE:
		case LSM_SUBJ_TYPE:
646 647 648
			rc = ima_filter_rule_match(secid, rule->lsm[i].type,
						   Audit_equal,
						   rule->lsm[i].rule);
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		default:
			break;
		}
		if (!rc)
			return false;
	}
655 656 657
	return true;
}

658 659
/*
 * In addition to knowing that we need to appraise the file in general,
660
 * we need to differentiate between calling hooks, for hook specific rules.
661
 */
662
static int get_subaction(struct ima_rule_entry *rule, enum ima_hooks func)
663
{
664 665 666
	if (!(rule->flags & IMA_FUNC))
		return IMA_FILE_APPRAISE;

667
	switch (func) {
668 669 670 671
	case MMAP_CHECK:
		return IMA_MMAP_APPRAISE;
	case BPRM_CHECK:
		return IMA_BPRM_APPRAISE;
672 673
	case CREDS_CHECK:
		return IMA_CREDS_APPRAISE;
674
	case FILE_CHECK:
675
	case POST_SETATTR:
676
		return IMA_FILE_APPRAISE;
677 678 679
	case MODULE_CHECK ... MAX_CHECK - 1:
	default:
		return IMA_READ_APPRAISE;
680 681 682
	}
}

683 684 685
/**
 * ima_match_policy - decision based on LSM and other conditions
 * @inode: pointer to an inode for which the policy decision is being made
686 687 688
 * @cred: pointer to a credentials structure for which the policy decision is
 *        being made
 * @secid: LSM secid of the task to be validated
689 690
 * @func: IMA hook identifier
 * @mask: requested action (MAY_READ | MAY_WRITE | MAY_APPEND | MAY_EXEC)
691
 * @pcr: set the pcr to extend
692
 * @template_desc: the template that should be used for this rule
693 694
 * @keyring: the keyring name, if given, to be used to check in the policy.
 *           keyring can be NULL if func is anything other than KEY_CHECK.
695
 * @ima_ns: IMA namespace whose policies are being checked
696 697 698 699
 *
 * Measure decision based on func/mask/fsmagic and LSM(subj/obj/type)
 * conditions.
 *
700 701 702
 * 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.
703
 */
704
int ima_match_policy(struct inode *inode, const struct cred *cred, u32 secid,
705
		     enum ima_hooks func, int mask, int flags, int *pcr,
706
		     struct ima_template_desc **template_desc,
707 708
		     const char *keyring,
		     struct ima_namespace *ima_ns)
709
{
710
	struct ima_rule_entry *entry;
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	int action = 0, actmask = flags | (flags << 1);
712

713 714 715
	if (template_desc)
		*template_desc = ima_template_desc_current();

716 717
	rcu_read_lock();
	list_for_each_entry_rcu(entry, ima_rules, list) {
718

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		if (!(entry->action & actmask))
			continue;

722 723
		if (!ima_match_rules(entry, inode, cred, secid, func, mask,
				     keyring))
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			continue;
725

726 727
		action |= entry->flags & IMA_ACTION_FLAGS;

728
		action |= entry->action & IMA_DO_MASK;
729
		if (entry->action & IMA_APPRAISE) {
730
			action |= get_subaction(entry, func);
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			action &= ~IMA_HASH;
732 733
			if (ima_fail_unverifiable_sigs)
				action |= IMA_FAIL_UNVERIFIABLE_SIGS;
734
		}
735

736

737 738 739 740
		if (entry->action & IMA_DO_MASK)
			actmask &= ~(entry->action | entry->action << 1);
		else
			actmask &= ~(entry->action | entry->action >> 1);
741

742 743 744
		if ((pcr) && (entry->flags & IMA_PCR))
			*pcr = entry->pcr;

745 746 747
		if (template_desc && entry->template)
			*template_desc = entry->template;

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		if (!actmask)
			break;
750
	}
751
	rcu_read_unlock();
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	return action;
754 755
}

756 757 758 759 760
/*
 * 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.
761
 * @ima_ns: pointer to the ima namespace whose policy flag is updated
762
 */
763
void ima_update_policy_flag(struct ima_namespace *ima_ns)
764 765 766 767 768 769 770 771
{
	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 |= (build_ima_appraise | temp_ima_appraise);
773 774 775 776
	if (!ima_appraise)
		ima_policy_flag &= ~IMA_APPRAISE;
}

777 778 779 780 781 782 783 784
static int ima_appraise_flag(enum ima_hooks func)
{
	if (func == MODULE_CHECK)
		return IMA_APPRAISE_MODULES;
	else if (func == FIRMWARE_CHECK)
		return IMA_APPRAISE_FIRMWARE;
	else if (func == POLICY_CHECK)
		return IMA_APPRAISE_POLICY;
785 786
	else if (func == KEXEC_KERNEL_CHECK)
		return IMA_APPRAISE_KEXEC;
787 788
	else if (func == DIGEST_LIST_CHECK)
		return IMA_APPRAISE_DIGEST_LIST;
789 790 791
	return 0;
}

792 793
static void __init add_rules(struct ima_policy_data *policy_data,
			     struct ima_rule_entry *entries, int count,
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			     enum policy_rule_list policy_rule)
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{
	int i = 0;

	for (i = 0; i < count; i++) {
		struct ima_rule_entry *entry;

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		if (ima_policy == EXEC_TCB) {
			if (entries == dont_measure_rules)
				if ((entries[i].flags & IMA_FSMAGIC) &&
				    entries[i].fsmagic == TMPFS_MAGIC)
					continue;

			if (entries == default_measurement_rules)
				if ((entries[i].flags & IMA_FUNC) &&
				    entries[i].func == FILE_CHECK)
					continue;
		}

813 814 815 816 817 818 819 820 821
		if (ima_use_appraise_exec_tcb) {
			if (entries == default_appraise_rules) {
				if (entries[i].action != DONT_APPRAISE)
					continue;
				if ((entries[i].flags & IMA_FSMAGIC) &&
				    entries[i].fsmagic == TMPFS_MAGIC)
					continue;
			}
		}
822 823 824 825 826 827 828

		if (ima_use_appraise_exec_immutable)
			if (entries == appraise_exec_rules &&
			    (entries[i].flags & IMA_FUNC) &&
			    entries[i].func == BPRM_CHECK)
				entries[i].flags |= IMA_META_IMMUTABLE_REQUIRED;

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		if (policy_rule & IMA_DEFAULT_POLICY)
			list_add_tail(&entries[i].list, &ima_default_rules);

		if (policy_rule & IMA_CUSTOM_POLICY) {
			entry = kmemdup(&entries[i], sizeof(*entry),
					GFP_KERNEL);
			if (!entry)
				continue;

			list_add_tail(&entry->list, &ima_policy_rules);
		}
840 841 842 843 844 845 846 847
		if (entries[i].action == APPRAISE) {
			if (entries != build_appraise_rules)
				temp_ima_appraise |=
					ima_appraise_flag(entries[i].func);
			else
				build_ima_appraise |=
					ima_appraise_flag(entries[i].func);
		}
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	}
}

851 852 853 854 855 856 857 858 859 860 861 862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886 887 888 889 890 891 892 893
static int ima_parse_rule(char *rule, struct ima_rule_entry *entry);

static int __init ima_init_arch_policy(void)
{
	const char * const *arch_rules;
	const char * const *rules;
	int arch_entries = 0;
	int i = 0;

	arch_rules = arch_get_ima_policy();
	if (!arch_rules)
		return arch_entries;

	/* Get number of rules */
	for (rules = arch_rules; *rules != NULL; rules++)
		arch_entries++;

	arch_policy_entry = kcalloc(arch_entries + 1,
				    sizeof(*arch_policy_entry), GFP_KERNEL);
	if (!arch_policy_entry)
		return 0;

	/* Convert each policy string rules to struct ima_rule_entry format */
	for (rules = arch_rules, i = 0; *rules != NULL; rules++) {
		char rule[255];
		int result;

		result = strlcpy(rule, *rules, sizeof(rule));

		INIT_LIST_HEAD(&arch_policy_entry[i].list);
		result = ima_parse_rule(rule, &arch_policy_entry[i]);
		if (result) {
			pr_warn("Skipping unknown architecture policy rule: %s\n",
				rule);
			memset(&arch_policy_entry[i], 0,
			       sizeof(*arch_policy_entry));
			continue;
		}
		i++;
	}
	return i;
}

894 895 896 897 898 899 900 901 902 903 904 905 906 907 908
/**
 * ima_init_ns_policy - initialize the default measure rules.
 * @ima_ns: pointer to the namespace whose rules are being initialized
 * @setup_data: pointer to the policy setup data
 */
void ima_init_ns_policy(struct ima_namespace *ima_ns,
			const struct ima_policy_setup_data *setup_data)
{
	/* Set policy rules to the empty set of default rules. The rest will be
	 * implemented after namespacing policy.
	 */
	ima_ns->policy_data->ima_rules =
		&ima_ns->policy_data->ima_default_rules;
}

909 910 911
/**
 * ima_init_policy - initialize the default measure rules.
 *
912 913
 * ima_rules points to either the ima_default_rules or the
 * the new ima_policy_rules.
914
 */
915
void __init ima_init_policy(void)
916
{
917
	int build_appraise_entries, arch_entries;
918

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919 920
	/* if !ima_policy, we load NO default rules */
	if (ima_policy)
921 922
		add_rules(NULL,
			  dont_measure_rules, ARRAY_SIZE(dont_measure_rules),
N
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923
			  IMA_DEFAULT_POLICY);
M
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924 925 926

	switch (ima_policy) {
	case ORIGINAL_TCB:
927
		add_rules(NULL, original_measurement_rules,
N
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928 929
			  ARRAY_SIZE(original_measurement_rules),
			  IMA_DEFAULT_POLICY);
M
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930
		break;
R
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931 932
	case EXEC_TCB:
		fallthrough;
M
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933
	case DEFAULT_TCB:
934
		add_rules(NULL, default_measurement_rules,
N
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935 936
			  ARRAY_SIZE(default_measurement_rules),
			  IMA_DEFAULT_POLICY);
M
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937 938 939
	default:
		break;
	}
940

941
	if (ima_policy)
942
		add_rules(NULL, &ima_parser_measure_rule, 1, IMA_DEFAULT_POLICY);
943

944 945 946 947 948 949 950 951 952 953
	/*
	 * Based on runtime secure boot flags, insert arch specific measurement
	 * and appraise rules requiring file signatures for both the initial
	 * and custom policies, prior to other appraise rules.
	 * (Highest priority)
	 */
	arch_entries = ima_init_arch_policy();
	if (!arch_entries)
		pr_info("No architecture policies found\n");
	else
954
		add_rules(NULL, arch_policy_entry, arch_entries,
955 956
			  IMA_DEFAULT_POLICY | IMA_CUSTOM_POLICY);

957
	/*
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958
	 * Insert the builtin "secure_boot" policy rules requiring file
959
	 * signatures, prior to other appraise rules.
960
	 */
961
	if (ima_use_secure_boot || ima_use_appraise_exec_tcb)
962 963
		add_rules(NULL,
			  secure_boot_rules, ARRAY_SIZE(secure_boot_rules),
N
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964
			  IMA_DEFAULT_POLICY);
965

M
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966 967 968
	/*
	 * Insert the build time appraise rules requiring file signatures
	 * for both the initial and custom policies, prior to other appraise
N
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969 970
	 * rules. As the secure boot rules includes all of the build time
	 * rules, include either one or the other set of rules, but not both.
M
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971
	 */
N
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972 973 974
	build_appraise_entries = ARRAY_SIZE(build_appraise_rules);
	if (build_appraise_entries) {
		if (ima_use_secure_boot)
975 976
			add_rules(NULL,
				  build_appraise_rules, build_appraise_entries,
N
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977 978
				  IMA_CUSTOM_POLICY);
		else
979 980
			add_rules(NULL,
				  build_appraise_rules, build_appraise_entries,
N
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981
				  IMA_DEFAULT_POLICY | IMA_CUSTOM_POLICY);
M
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982 983
	}

984
	if (ima_use_appraise_tcb || ima_use_appraise_exec_tcb)
985
		add_rules(NULL, default_appraise_rules,
N
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986 987
			  ARRAY_SIZE(default_appraise_rules),
			  IMA_DEFAULT_POLICY);
988

989
	if (ima_use_appraise_exec_tcb)
990
		add_rules(NULL, appraise_exec_rules,
991 992 993
			  ARRAY_SIZE(appraise_exec_rules),
			  IMA_DEFAULT_POLICY);

994 995
	if (ima_use_secure_boot || ima_use_appraise_tcb ||
	    ima_use_appraise_exec_tcb)
996
		add_rules(NULL, &ima_parser_appraise_rule, 1, IMA_DEFAULT_POLICY);
997

998
	ima_update_policy_flag(NULL);
999
}
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1000

1001
/* Make sure we have a valid policy, at least containing some rules. */
1002
int ima_check_policy(const struct ima_namespace *ima_ns)
1003 1004 1005 1006 1007 1008
{
	if (list_empty(&ima_temp_rules))
		return -EINVAL;
	return 0;
}

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1009 1010 1011 1012
/**
 * ima_update_policy - update default_rules with new measure rules
 *
 * Called on file .release to update the default rules with a complete new
1013 1014 1015 1016 1017 1018
 * 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)
{
1022
	struct list_head *policy = &ima_policy_rules;
1023

1024
	list_splice_tail_init_rcu(&ima_temp_rules, policy, synchronize_rcu);
1025 1026 1027 1028

	if (ima_rules != policy) {
		ima_policy_flag = 0;
		ima_rules = policy;
1029 1030 1031 1032 1033 1034 1035 1036

		/*
		 * IMA architecture specific policy rules are specified
		 * as strings and converted to an array of ima_entry_rules
		 * on boot.  After loading a custom policy, free the
		 * architecture specific rules stored as an array.
		 */
		kfree(arch_policy_entry);
1037
	}
1038
	ima_update_policy_flag(NULL);
1039 1040 1041

	/* Custom IMA policy has been loaded */
	ima_process_queued_keys();
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1042 1043
}

1044
/* Keep the enumeration in sync with the policy_tokens! */
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1045
enum {
1046
	Opt_measure, Opt_dont_measure,
1047
	Opt_appraise, Opt_dont_appraise,
1048
	Opt_audit, Opt_hash, Opt_dont_hash,
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1049 1050
	Opt_obj_user, Opt_obj_role, Opt_obj_type,
	Opt_subj_user, Opt_subj_role, Opt_subj_type,
1051
	Opt_func, Opt_mask, Opt_fsmagic, Opt_fsname,
1052 1053 1054
	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,
1055
	Opt_appraise_type, Opt_appraise_flag,
1056
	Opt_permit_directio, Opt_pcr, Opt_template, Opt_keyrings,
1057
	Opt_parser, Opt_err
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1058 1059
};

1060
static const match_table_t policy_tokens = {
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1061 1062
	{Opt_measure, "measure"},
	{Opt_dont_measure, "dont_measure"},
1063 1064
	{Opt_appraise, "appraise"},
	{Opt_dont_appraise, "dont_appraise"},
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	{Opt_audit, "audit"},
1066 1067
	{Opt_hash, "hash"},
	{Opt_dont_hash, "dont_hash"},
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1068 1069 1070 1071 1072 1073 1074 1075 1076
	{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"},
1077
	{Opt_fsname, "fsname=%s"},
1078
	{Opt_fsuuid, "fsuuid=%s"},
1079 1080 1081 1082 1083 1084 1085 1086 1087
	{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"},
1088
	{Opt_appraise_type, "appraise_type=%s"},
1089
	{Opt_appraise_flag, "appraise_flag=%s"},
1090
	{Opt_permit_directio, "permit_directio"},
1091
	{Opt_pcr, "pcr=%s"},
1092
	{Opt_template, "template=%s"},
1093
	{Opt_keyrings, "keyrings=%s"},
1094
	{Opt_parser, "parser"},
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1095 1096 1097
	{Opt_err, NULL}
};

1098
static int ima_lsm_rule_init(struct ima_rule_entry *entry,
1099
			     substring_t *args, int lsm_rule, int audit_type)
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1100 1101 1102
{
	int result;

1103 1104 1105
	if (entry->lsm[lsm_rule].rule)
		return -EINVAL;

1106 1107 1108 1109
	entry->lsm[lsm_rule].args_p = match_strdup(args);
	if (!entry->lsm[lsm_rule].args_p)
		return -ENOMEM;

M
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1110
	entry->lsm[lsm_rule].type = audit_type;
1111 1112 1113
	result = ima_filter_rule_init(entry->lsm[lsm_rule].type, Audit_equal,
				      entry->lsm[lsm_rule].args_p,
				      &entry->lsm[lsm_rule].rule);
1114
	if (!entry->lsm[lsm_rule].rule) {
1115
		pr_warn("rule for LSM \'%s\' is undefined\n",
1116
			entry->lsm[lsm_rule].args_p);
1117 1118 1119

		if (ima_rules == &ima_default_rules) {
			kfree(entry->lsm[lsm_rule].args_p);
1120
			entry->lsm[lsm_rule].args_p = NULL;
1121 1122 1123
			result = -EINVAL;
		} else
			result = 0;
1124 1125
	}

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	return result;
}

1129 1130
static void ima_log_string_op(struct audit_buffer *ab, char *key, char *value,
			      bool (*rule_operator)(kuid_t, kuid_t))
1131
{
1132 1133 1134
	if (!ab)
		return;

1135 1136 1137 1138 1139 1140
	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);
1141
	audit_log_format(ab, "%s ", value);
1142
}
1143 1144 1145 1146
static void ima_log_string(struct audit_buffer *ab, char *key, char *value)
{
	ima_log_string_op(ab, key, value, NULL);
}
1147

1148 1149 1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178 1179
/*
 * Validating the appended signature included in the measurement list requires
 * the file hash calculated without the appended signature (i.e., the 'd-modsig'
 * field). Therefore, notify the user if they have the 'modsig' field but not
 * the 'd-modsig' field in the template.
 */
static void check_template_modsig(const struct ima_template_desc *template)
{
#define MSG "template with 'modsig' field also needs 'd-modsig' field\n"
	bool has_modsig, has_dmodsig;
	static bool checked;
	int i;

	/* We only need to notify the user once. */
	if (checked)
		return;

	has_modsig = has_dmodsig = false;
	for (i = 0; i < template->num_fields; i++) {
		if (!strcmp(template->fields[i]->field_id, "modsig"))
			has_modsig = true;
		else if (!strcmp(template->fields[i]->field_id, "d-modsig"))
			has_dmodsig = true;
	}

	if (has_modsig && !has_dmodsig)
		pr_notice(MSG);

	checked = true;
#undef MSG
}

1180 1181
static bool ima_validate_rule(struct ima_rule_entry *entry)
{
1182
	/* Ensure that the action is set and is compatible with the flags */
1183 1184 1185
	if (entry->action == UNKNOWN)
		return false;

1186 1187 1188 1189
	if (entry->action != MEASURE && entry->flags & IMA_PCR)
		return false;

	if (entry->action != APPRAISE &&
1190 1191
	    entry->flags & (IMA_DIGSIG_REQUIRED | IMA_MODSIG_ALLOWED |
			    IMA_CHECK_BLACKLIST | IMA_META_IMMUTABLE_REQUIRED))
1192 1193 1194 1195 1196 1197 1198 1199 1200 1201 1202 1203
		return false;

	/*
	 * The IMA_FUNC bit must be set if and only if there's a valid hook
	 * function specified, and vice versa. Enforcing this property allows
	 * for the NONE case below to validate a rule without an explicit hook
	 * function.
	 */
	if (((entry->flags & IMA_FUNC) && entry->func == NONE) ||
	    (!(entry->flags & IMA_FUNC) && entry->func != NONE))
		return false;

1204 1205 1206 1207 1208 1209 1210 1211 1212 1213 1214 1215
	/*
	 * Ensure that the hook function is compatible with the other
	 * components of the rule
	 */
	switch (entry->func) {
	case NONE:
	case FILE_CHECK:
	case MMAP_CHECK:
	case BPRM_CHECK:
	case CREDS_CHECK:
	case POST_SETATTR:
	case FIRMWARE_CHECK:
1216
	case POLICY_CHECK:
1217
	case DIGEST_LIST_CHECK:
1218 1219 1220 1221
		if (entry->flags & ~(IMA_FUNC | IMA_MASK | IMA_FSMAGIC |
				     IMA_UID | IMA_FOWNER | IMA_FSUUID |
				     IMA_INMASK | IMA_EUID | IMA_PCR |
				     IMA_FSNAME | IMA_DIGSIG_REQUIRED |
1222
				     IMA_PERMIT_DIRECTIO |
1223
				     IMA_META_IMMUTABLE_REQUIRED | IMA_PARSER))
1224 1225 1226 1227
			return false;

		break;
	case MODULE_CHECK:
1228 1229
	case KEXEC_KERNEL_CHECK:
	case KEXEC_INITRAMFS_CHECK:
1230 1231 1232 1233 1234
		if (entry->flags & ~(IMA_FUNC | IMA_MASK | IMA_FSMAGIC |
				     IMA_UID | IMA_FOWNER | IMA_FSUUID |
				     IMA_INMASK | IMA_EUID | IMA_PCR |
				     IMA_FSNAME | IMA_DIGSIG_REQUIRED |
				     IMA_PERMIT_DIRECTIO | IMA_MODSIG_ALLOWED |
1235 1236
				     IMA_CHECK_BLACKLIST |
				     IMA_META_IMMUTABLE_REQUIRED))
1237 1238
			return false;

1239 1240
		break;
	case KEXEC_CMDLINE:
1241 1242 1243
		if (entry->action & ~(MEASURE | DONT_MEASURE))
			return false;

1244 1245 1246
		if (entry->flags & ~(IMA_FUNC | IMA_FSMAGIC | IMA_UID |
				     IMA_FOWNER | IMA_FSUUID | IMA_EUID |
				     IMA_PCR | IMA_FSNAME))
1247 1248 1249
			return false;

		break;
1250 1251 1252 1253
	case KEY_CHECK:
		if (entry->action & ~(MEASURE | DONT_MEASURE))
			return false;

1254 1255 1256 1257 1258 1259 1260
		if (entry->flags & ~(IMA_FUNC | IMA_UID | IMA_PCR |
				     IMA_KEYRINGS))
			return false;

		if (ima_rule_contains_lsm_cond(entry))
			return false;

1261 1262 1263 1264 1265
		break;
	default:
		return false;
	}

1266 1267 1268 1269 1270
	/* Ensure that combinations of flags are compatible with each other */
	if (entry->flags & IMA_CHECK_BLACKLIST &&
	    !(entry->flags & IMA_MODSIG_ALLOWED))
		return false;

1271 1272 1273
	return true;
}

1274
static int ima_parse_rule(char *rule, struct ima_rule_entry *entry)
M
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{
	struct audit_buffer *ab;
1277
	char *from;
M
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1278
	char *p;
1279
	bool uid_token;
1280
	struct ima_template_desc *template_desc;
M
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1281 1282
	int result = 0;

1283 1284
	ab = integrity_audit_log_start(audit_context(), GFP_KERNEL,
				       AUDIT_INTEGRITY_POLICY_RULE);
M
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1285

1286
	entry->uid = INVALID_UID;
1287
	entry->fowner = INVALID_UID;
1288 1289
	entry->uid_op = &uid_eq;
	entry->fowner_op = &uid_eq;
1290
	entry->action = UNKNOWN;
E
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1291
	while ((p = strsep(&rule, " \t")) != NULL) {
M
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1292 1293 1294 1295 1296 1297
		substring_t args[MAX_OPT_ARGS];
		int token;
		unsigned long lnum;

		if (result < 0)
			break;
E
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1298 1299
		if ((*p == '\0') || (*p == ' ') || (*p == '\t'))
			continue;
M
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1300 1301 1302
		token = match_token(p, policy_tokens, args);
		switch (token) {
		case Opt_measure:
1303
			ima_log_string(ab, "action", "measure");
1304 1305 1306 1307

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

M
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1308 1309 1310
			entry->action = MEASURE;
			break;
		case Opt_dont_measure:
1311
			ima_log_string(ab, "action", "dont_measure");
1312 1313 1314 1315

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

M
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1316 1317
			entry->action = DONT_MEASURE;
			break;
1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333
		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;
P
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1334 1335 1336 1337 1338 1339 1340 1341
		case Opt_audit:
			ima_log_string(ab, "action", "audit");

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

			entry->action = AUDIT;
			break;
1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352 1353 1354 1355 1356 1357
		case Opt_hash:
			ima_log_string(ab, "action", "hash");

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

			entry->action = HASH;
			break;
		case Opt_dont_hash:
			ima_log_string(ab, "action", "dont_hash");

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

			entry->action = DONT_HASH;
			break;
M
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1358
		case Opt_func:
1359
			ima_log_string(ab, "func", args[0].from);
1360 1361

			if (entry->func)
1362
				result = -EINVAL;
1363

1364 1365 1366 1367 1368
			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;
1369 1370
			else if (strcmp(args[0].from, "MODULE_CHECK") == 0)
				entry->func = MODULE_CHECK;
1371 1372
			else if (strcmp(args[0].from, "FIRMWARE_CHECK") == 0)
				entry->func = FIRMWARE_CHECK;
M
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1373 1374 1375
			else if ((strcmp(args[0].from, "FILE_MMAP") == 0)
				|| (strcmp(args[0].from, "MMAP_CHECK") == 0))
				entry->func = MMAP_CHECK;
M
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1376 1377
			else if (strcmp(args[0].from, "BPRM_CHECK") == 0)
				entry->func = BPRM_CHECK;
1378 1379
			else if (strcmp(args[0].from, "CREDS_CHECK") == 0)
				entry->func = CREDS_CHECK;
1380 1381 1382 1383 1384 1385
			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;
1386 1387
			else if (strcmp(args[0].from, "POLICY_CHECK") == 0)
				entry->func = POLICY_CHECK;
1388 1389
			else if (strcmp(args[0].from, "KEXEC_CMDLINE") == 0)
				entry->func = KEXEC_CMDLINE;
1390 1391
			else if (IS_ENABLED(CONFIG_IMA_MEASURE_ASYMMETRIC_KEYS) &&
				 strcmp(args[0].from, "KEY_CHECK") == 0)
1392
				entry->func = KEY_CHECK;
1393 1394
			else if (strcmp(args[0].from, "DIGEST_LIST_CHECK") == 0)
				entry->func = DIGEST_LIST_CHECK;
M
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1395 1396 1397 1398 1399 1400
			else
				result = -EINVAL;
			if (!result)
				entry->flags |= IMA_FUNC;
			break;
		case Opt_mask:
1401
			ima_log_string(ab, "mask", args[0].from);
1402 1403 1404 1405

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

1406 1407 1408 1409 1410
			from = args[0].from;
			if (*from == '^')
				from++;

			if ((strcmp(from, "MAY_EXEC")) == 0)
M
Mimi Zohar 已提交
1411
				entry->mask = MAY_EXEC;
1412
			else if (strcmp(from, "MAY_WRITE") == 0)
M
Mimi Zohar 已提交
1413
				entry->mask = MAY_WRITE;
1414
			else if (strcmp(from, "MAY_READ") == 0)
M
Mimi Zohar 已提交
1415
				entry->mask = MAY_READ;
1416
			else if (strcmp(from, "MAY_APPEND") == 0)
M
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1417 1418 1419 1420
				entry->mask = MAY_APPEND;
			else
				result = -EINVAL;
			if (!result)
1421 1422
				entry->flags |= (*args[0].from == '^')
				     ? IMA_INMASK : IMA_MASK;
M
Mimi Zohar 已提交
1423 1424
			break;
		case Opt_fsmagic:
1425
			ima_log_string(ab, "fsmagic", args[0].from);
1426 1427 1428 1429 1430 1431

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

1432
			result = kstrtoul(args[0].from, 16, &entry->fsmagic);
M
Mimi Zohar 已提交
1433 1434 1435
			if (!result)
				entry->flags |= IMA_FSMAGIC;
			break;
1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446
		case Opt_fsname:
			ima_log_string(ab, "fsname", args[0].from);

			entry->fsname = kstrdup(args[0].from, GFP_KERNEL);
			if (!entry->fsname) {
				result = -ENOMEM;
				break;
			}
			result = 0;
			entry->flags |= IMA_FSNAME;
			break;
1447 1448 1449
		case Opt_keyrings:
			ima_log_string(ab, "keyrings", args[0].from);

1450 1451
			if (!IS_ENABLED(CONFIG_IMA_MEASURE_ASYMMETRIC_KEYS) ||
			    entry->keyrings) {
1452 1453 1454
				result = -EINVAL;
				break;
			}
1455

1456 1457 1458 1459
			entry->keyrings = ima_alloc_rule_opt_list(args);
			if (IS_ERR(entry->keyrings)) {
				result = PTR_ERR(entry->keyrings);
				entry->keyrings = NULL;
1460 1461
				break;
			}
1462

1463 1464
			entry->flags |= IMA_KEYRINGS;
			break;
1465 1466 1467
		case Opt_fsuuid:
			ima_log_string(ab, "fsuuid", args[0].from);

1468
			if (!uuid_is_null(&entry->fsuuid)) {
1469 1470 1471 1472
				result = -EINVAL;
				break;
			}

1473
			result = uuid_parse(args[0].from, &entry->fsuuid);
1474 1475
			if (!result)
				entry->flags |= IMA_FSUUID;
1476
			break;
1477 1478 1479
		case Opt_uid_gt:
		case Opt_euid_gt:
			entry->uid_op = &uid_gt;
1480
			fallthrough;
1481 1482 1483 1484
		case Opt_uid_lt:
		case Opt_euid_lt:
			if ((token == Opt_uid_lt) || (token == Opt_euid_lt))
				entry->uid_op = &uid_lt;
1485
			fallthrough;
1486 1487 1488 1489 1490 1491 1492 1493
		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);
1494

1495
			if (uid_valid(entry->uid)) {
1496 1497 1498 1499
				result = -EINVAL;
				break;
			}

1500
			result = kstrtoul(args[0].from, 10, &lnum);
M
Mimi Zohar 已提交
1501
			if (!result) {
1502 1503 1504 1505
				entry->uid = make_kuid(current_user_ns(),
						       (uid_t) lnum);
				if (!uid_valid(entry->uid) ||
				    (uid_t)lnum != lnum)
M
Mimi Zohar 已提交
1506 1507
					result = -EINVAL;
				else
1508
					entry->flags |= uid_token
1509
					    ? IMA_UID : IMA_EUID;
M
Mimi Zohar 已提交
1510 1511
			}
			break;
1512 1513
		case Opt_fowner_gt:
			entry->fowner_op = &uid_gt;
1514
			fallthrough;
1515 1516 1517
		case Opt_fowner_lt:
			if (token == Opt_fowner_lt)
				entry->fowner_op = &uid_lt;
1518
			fallthrough;
1519 1520 1521
		case Opt_fowner_eq:
			ima_log_string_op(ab, "fowner", args[0].from,
					  entry->fowner_op);
1522

1523
			if (uid_valid(entry->fowner)) {
1524 1525 1526 1527
				result = -EINVAL;
				break;
			}

1528
			result = kstrtoul(args[0].from, 10, &lnum);
1529
			if (!result) {
1530 1531
				entry->fowner = make_kuid(current_user_ns(), (uid_t)lnum);
				if (!uid_valid(entry->fowner) || (((uid_t)lnum) != lnum))
1532 1533 1534 1535 1536
					result = -EINVAL;
				else
					entry->flags |= IMA_FOWNER;
			}
			break;
M
Mimi Zohar 已提交
1537
		case Opt_obj_user:
1538
			ima_log_string(ab, "obj_user", args[0].from);
1539
			result = ima_lsm_rule_init(entry, args,
M
Mimi Zohar 已提交
1540 1541 1542 1543
						   LSM_OBJ_USER,
						   AUDIT_OBJ_USER);
			break;
		case Opt_obj_role:
1544
			ima_log_string(ab, "obj_role", args[0].from);
1545
			result = ima_lsm_rule_init(entry, args,
M
Mimi Zohar 已提交
1546 1547 1548 1549
						   LSM_OBJ_ROLE,
						   AUDIT_OBJ_ROLE);
			break;
		case Opt_obj_type:
1550
			ima_log_string(ab, "obj_type", args[0].from);
1551
			result = ima_lsm_rule_init(entry, args,
M
Mimi Zohar 已提交
1552 1553 1554 1555
						   LSM_OBJ_TYPE,
						   AUDIT_OBJ_TYPE);
			break;
		case Opt_subj_user:
1556
			ima_log_string(ab, "subj_user", args[0].from);
1557
			result = ima_lsm_rule_init(entry, args,
M
Mimi Zohar 已提交
1558 1559 1560 1561
						   LSM_SUBJ_USER,
						   AUDIT_SUBJ_USER);
			break;
		case Opt_subj_role:
1562
			ima_log_string(ab, "subj_role", args[0].from);
1563
			result = ima_lsm_rule_init(entry, args,
M
Mimi Zohar 已提交
1564 1565 1566 1567
						   LSM_SUBJ_ROLE,
						   AUDIT_SUBJ_ROLE);
			break;
		case Opt_subj_type:
1568
			ima_log_string(ab, "subj_type", args[0].from);
1569
			result = ima_lsm_rule_init(entry, args,
M
Mimi Zohar 已提交
1570 1571 1572
						   LSM_SUBJ_TYPE,
						   AUDIT_SUBJ_TYPE);
			break;
1573 1574 1575 1576
		case Opt_appraise_type:
			ima_log_string(ab, "appraise_type", args[0].from);
			if ((strcmp(args[0].from, "imasig")) == 0)
				entry->flags |= IMA_DIGSIG_REQUIRED;
1577
			else if (IS_ENABLED(CONFIG_IMA_APPRAISE_MODSIG) &&
1578 1579 1580
				 strcmp(args[0].from, "imasig|modsig") == 0)
				entry->flags |= IMA_DIGSIG_REQUIRED |
						IMA_MODSIG_ALLOWED;
1581 1582
			else if (strcmp(args[0].from, "meta_immutable") == 0)
				entry->flags |= IMA_META_IMMUTABLE_REQUIRED;
1583 1584 1585
			else
				result = -EINVAL;
			break;
1586 1587
		case Opt_appraise_flag:
			ima_log_string(ab, "appraise_flag", args[0].from);
1588 1589
			if (IS_ENABLED(CONFIG_IMA_APPRAISE_MODSIG) &&
			    strstr(args[0].from, "blacklist"))
1590
				entry->flags |= IMA_CHECK_BLACKLIST;
1591 1592
			else
				result = -EINVAL;
1593
			break;
1594 1595
		case Opt_permit_directio:
			entry->flags |= IMA_PERMIT_DIRECTIO;
1596 1597 1598 1599 1600
			break;
		case Opt_pcr:
			ima_log_string(ab, "pcr", args[0].from);

			result = kstrtoint(args[0].from, 10, &entry->pcr);
1601 1602
			if (result || INVALID_PCR(entry->pcr) ||
			    entry->pcr == ima_digest_list_pcr)
1603 1604 1605 1606
				result = -EINVAL;
			else
				entry->flags |= IMA_PCR;

1607 1608 1609 1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623 1624 1625 1626 1627 1628
			break;
		case Opt_template:
			ima_log_string(ab, "template", args[0].from);
			if (entry->action != MEASURE) {
				result = -EINVAL;
				break;
			}
			template_desc = lookup_template_desc(args[0].from);
			if (!template_desc || entry->template) {
				result = -EINVAL;
				break;
			}

			/*
			 * template_desc_init_fields() does nothing if
			 * the template is already initialised, so
			 * it's safe to do this unconditionally
			 */
			template_desc_init_fields(template_desc->fmt,
						 &(template_desc->fields),
						 &(template_desc->num_fields));
			entry->template = template_desc;
1629
			break;
1630 1631 1632 1633
		case Opt_parser:
			audit_log_format(ab, "parser ");
			entry->flags |= IMA_PARSER;
			break;
M
Mimi Zohar 已提交
1634
		case Opt_err:
1635
			ima_log_string(ab, "UNKNOWN", p);
1636
			result = -EINVAL;
M
Mimi Zohar 已提交
1637 1638 1639
			break;
		}
	}
1640
	if (!result && !ima_validate_rule(entry))
M
Mimi Zohar 已提交
1641
		result = -EINVAL;
1642 1643 1644
	else if (entry->action == APPRAISE)
		temp_ima_appraise |= ima_appraise_flag(entry->func);

1645 1646 1647 1648 1649 1650
	if (!result && entry->flags & IMA_MODSIG_ALLOWED) {
		template_desc = entry->template ? entry->template :
						  ima_template_desc_current();
		check_template_modsig(template_desc);
	}

1651
	audit_log_format(ab, "res=%d", !result);
M
Mimi Zohar 已提交
1652 1653 1654 1655 1656
	audit_log_end(ab);
	return result;
}

/**
1657
 * ima_parse_add_rule - add a rule to ima_policy_rules
M
Mimi Zohar 已提交
1658 1659
 * @rule - ima measurement policy rule
 *
1660
 * Avoid locking by allowing just one writer at a time in ima_write_policy()
1661
 * Returns the length of the rule parsed, an error code on failure
M
Mimi Zohar 已提交
1662
 */
1663
ssize_t ima_parse_add_rule(char *rule)
M
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1664
{
1665
	static const char op[] = "update_policy";
1666
	char *p;
1667
	struct ima_rule_entry *entry;
1668
	ssize_t result, len;
M
Mimi Zohar 已提交
1669 1670
	int audit_info = 0;

1671 1672
	p = strsep(&rule, "\n");
	len = strlen(p) + 1;
1673
	p += strspn(p, " \t");
1674

1675
	if (*p == '#' || *p == '\0')
1676 1677
		return len;

M
Mimi Zohar 已提交
1678 1679 1680 1681 1682 1683 1684 1685 1686
	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);

1687
	result = ima_parse_rule(p, entry);
E
Eric Paris 已提交
1688
	if (result) {
1689
		ima_free_rule(entry);
M
Mimi Zohar 已提交
1690
		integrity_audit_msg(AUDIT_INTEGRITY_STATUS, NULL,
1691
				    NULL, op, "invalid-policy", result,
M
Mimi Zohar 已提交
1692
				    audit_info);
E
Eric Paris 已提交
1693
		return result;
M
Mimi Zohar 已提交
1694
	}
E
Eric Paris 已提交
1695

1696
	list_add_tail(&entry->list, &ima_temp_rules);
E
Eric Paris 已提交
1697 1698

	return len;
M
Mimi Zohar 已提交
1699 1700
}

1701 1702 1703 1704 1705 1706
/**
 * 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.
 */
1707
void ima_delete_rules(void)
M
Mimi Zohar 已提交
1708
{
1709
	struct ima_rule_entry *entry, *tmp;
M
Mimi Zohar 已提交
1710

1711
	temp_ima_appraise = 0;
1712
	list_for_each_entry_safe(entry, tmp, &ima_temp_rules, list) {
M
Mimi Zohar 已提交
1713
		list_del(&entry->list);
1714
		ima_free_rule(entry);
M
Mimi Zohar 已提交
1715 1716
	}
}
1717

1718
#define __ima_hook_stringify(func, str)	(#func),
1719 1720 1721 1722 1723

const char *const func_tokens[] = {
	__ima_hooks(__ima_hook_stringify)
};

1724 1725 1726 1727 1728
#ifdef	CONFIG_IMA_READ_POLICY
enum {
	mask_exec = 0, mask_write, mask_read, mask_append
};

1729
static const char *const mask_tokens[] = {
1730 1731 1732 1733
	"^MAY_EXEC",
	"^MAY_WRITE",
	"^MAY_READ",
	"^MAY_APPEND"
1734 1735 1736 1737 1738 1739 1740 1741 1742 1743 1744 1745 1746 1747 1748 1749 1750 1751 1752 1753 1754 1755 1756 1757 1758 1759 1760 1761 1762 1763 1764 1765 1766 1767
};

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)
{
}

1768
#define pt(token)	policy_tokens[token].pattern
1769 1770
#define mt(token)	mask_tokens[token]

1771 1772 1773 1774 1775
/*
 * policy_func_show - display the ima_hooks policy rule
 */
static void policy_func_show(struct seq_file *m, enum ima_hooks func)
{
1776 1777 1778 1779
	if (func > 0 && func < MAX_CHECK)
		seq_printf(m, "func=%s ", func_tokens[func]);
	else
		seq_printf(m, "func=%d ", func);
1780 1781
}

1782 1783 1784 1785 1786 1787 1788 1789 1790
static void ima_show_rule_opt_list(struct seq_file *m,
				   const struct ima_rule_opt_list *opt_list)
{
	size_t i;

	for (i = 0; i < opt_list->count; i++)
		seq_printf(m, "%s%s", i ? "|" : "", opt_list->items[i]);
}

1791 1792 1793
int ima_policy_show(struct seq_file *m, void *v)
{
	struct ima_rule_entry *entry = v;
1794
	int i;
1795
	char tbuf[64] = {0,};
1796
	int offset = 0;
1797 1798 1799 1800 1801 1802 1803 1804 1805 1806 1807 1808 1809

	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));
1810 1811 1812 1813
	if (entry->action & HASH)
		seq_puts(m, pt(Opt_hash));
	if (entry->action & DONT_HASH)
		seq_puts(m, pt(Opt_dont_hash));
1814 1815 1816

	seq_puts(m, " ");

1817 1818
	if (entry->flags & IMA_FUNC)
		policy_func_show(m, entry->func);
1819

1820 1821 1822
	if ((entry->flags & IMA_MASK) || (entry->flags & IMA_INMASK)) {
		if (entry->flags & IMA_MASK)
			offset = 1;
1823
		if (entry->mask & MAY_EXEC)
1824
			seq_printf(m, pt(Opt_mask), mt(mask_exec) + offset);
1825
		if (entry->mask & MAY_WRITE)
1826
			seq_printf(m, pt(Opt_mask), mt(mask_write) + offset);
1827
		if (entry->mask & MAY_READ)
1828
			seq_printf(m, pt(Opt_mask), mt(mask_read) + offset);
1829
		if (entry->mask & MAY_APPEND)
1830
			seq_printf(m, pt(Opt_mask), mt(mask_append) + offset);
1831 1832 1833 1834 1835 1836 1837 1838 1839
		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, " ");
	}

1840 1841 1842 1843 1844 1845
	if (entry->flags & IMA_FSNAME) {
		snprintf(tbuf, sizeof(tbuf), "%s", entry->fsname);
		seq_printf(m, pt(Opt_fsname), tbuf);
		seq_puts(m, " ");
	}

1846
	if (entry->flags & IMA_KEYRINGS) {
1847 1848
		seq_puts(m, "keyrings=");
		ima_show_rule_opt_list(m, entry->keyrings);
1849 1850 1851
		seq_puts(m, " ");
	}

1852 1853 1854 1855 1856 1857
	if (entry->flags & IMA_PCR) {
		snprintf(tbuf, sizeof(tbuf), "%d", entry->pcr);
		seq_printf(m, pt(Opt_pcr), tbuf);
		seq_puts(m, " ");
	}

1858
	if (entry->flags & IMA_FSUUID) {
1859
		seq_printf(m, "fsuuid=%pU", &entry->fsuuid);
1860 1861 1862 1863 1864
		seq_puts(m, " ");
	}

	if (entry->flags & IMA_UID) {
		snprintf(tbuf, sizeof(tbuf), "%d", __kuid_val(entry->uid));
1865 1866 1867 1868 1869 1870
		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);
1871 1872 1873 1874 1875
		seq_puts(m, " ");
	}

	if (entry->flags & IMA_EUID) {
		snprintf(tbuf, sizeof(tbuf), "%d", __kuid_val(entry->uid));
1876 1877 1878 1879 1880 1881
		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);
1882 1883 1884 1885 1886
		seq_puts(m, " ");
	}

	if (entry->flags & IMA_FOWNER) {
		snprintf(tbuf, sizeof(tbuf), "%d", __kuid_val(entry->fowner));
1887 1888 1889 1890 1891 1892
		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);
1893 1894 1895
		seq_puts(m, " ");
	}

1896 1897 1898
	if (entry->flags & IMA_PARSER)
		seq_puts(m, "parser ");

1899 1900 1901 1902 1903
	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),
1904
					   entry->lsm[i].args_p);
1905 1906 1907
				break;
			case LSM_OBJ_ROLE:
				seq_printf(m, pt(Opt_obj_role),
1908
					   entry->lsm[i].args_p);
1909 1910 1911
				break;
			case LSM_OBJ_TYPE:
				seq_printf(m, pt(Opt_obj_type),
1912
					   entry->lsm[i].args_p);
1913 1914 1915
				break;
			case LSM_SUBJ_USER:
				seq_printf(m, pt(Opt_subj_user),
1916
					   entry->lsm[i].args_p);
1917 1918 1919
				break;
			case LSM_SUBJ_ROLE:
				seq_printf(m, pt(Opt_subj_role),
1920
					   entry->lsm[i].args_p);
1921 1922 1923
				break;
			case LSM_SUBJ_TYPE:
				seq_printf(m, pt(Opt_subj_type),
1924
					   entry->lsm[i].args_p);
1925 1926
				break;
			}
1927
			seq_puts(m, " ");
1928 1929
		}
	}
1930 1931
	if (entry->template)
		seq_printf(m, "template=%s ", entry->template->name);
1932 1933 1934 1935 1936 1937
	if (entry->flags & IMA_DIGSIG_REQUIRED) {
		if (entry->flags & IMA_MODSIG_ALLOWED)
			seq_puts(m, "appraise_type=imasig|modsig ");
		else
			seq_puts(m, "appraise_type=imasig ");
	}
1938 1939
	if (entry->flags & IMA_CHECK_BLACKLIST)
		seq_puts(m, "appraise_flag=check_blacklist ");
1940 1941
	if (entry->flags & IMA_META_IMMUTABLE_REQUIRED)
		seq_puts(m, "appraise_type=meta_immutable ");
1942 1943 1944 1945 1946 1947 1948
	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 */
1949 1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967 1968 1969 1970 1971 1972 1973 1974 1975 1976 1977 1978 1979 1980 1981 1982 1983 1984 1985 1986 1987 1988 1989 1990 1991 1992 1993 1994 1995 1996 1997 1998

#if defined(CONFIG_IMA_APPRAISE) && defined(CONFIG_INTEGRITY_TRUSTED_KEYRING)
/*
 * ima_appraise_signature: whether IMA will appraise a given function using
 * an IMA digital signature. This is restricted to cases where the kernel
 * has a set of built-in trusted keys in order to avoid an attacker simply
 * loading additional keys.
 */
bool ima_appraise_signature(enum kernel_read_file_id id)
{
	struct ima_rule_entry *entry;
	bool found = false;
	enum ima_hooks func;

	if (id >= READING_MAX_ID)
		return false;

	func = read_idmap[id] ?: FILE_CHECK;

	rcu_read_lock();
	list_for_each_entry_rcu(entry, ima_rules, list) {
		if (entry->action != APPRAISE)
			continue;

		/*
		 * A generic entry will match, but otherwise require that it
		 * match the func we're looking for
		 */
		if (entry->func && entry->func != func)
			continue;

		/*
		 * We require this to be a digital signature, not a raw IMA
		 * hash.
		 */
		if (entry->flags & IMA_DIGSIG_REQUIRED)
			found = true;

		/*
		 * We've found a rule that matches, so break now even if it
		 * didn't require a digital signature - a later rule that does
		 * won't override it, so would be a false positive.
		 */
		break;
	}

	rcu_read_unlock();
	return found;
}
#endif /* CONFIG_IMA_APPRAISE && CONFIG_INTEGRITY_TRUSTED_KEYRING */