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Mimi Zoharf381c272011-03-09 14:13:22 -05001/*
2 * Copyright (C) 2008 IBM Corporation
3 *
4 * Authors:
5 * Mimi Zohar <zohar@us.ibm.com>
6 *
7 * This program is free software; you can redistribute it and/or
8 * modify it under the terms of the GNU General Public License as
9 * published by the Free Software Foundation, version 2 of the
10 * License.
11 *
12 * File: integrity_iint.c
13 * - implements the integrity hooks: integrity_inode_alloc,
14 * integrity_inode_free
15 * - cache integrity information associated with an inode
16 * using a rbtree tree.
17 */
18#include <linux/slab.h>
19#include <linux/module.h>
20#include <linux/spinlock.h>
21#include <linux/rbtree.h>
Dmitry Kasatkine3c4abb2014-11-05 17:01:12 +020022#include <linux/file.h>
23#include <linux/uaccess.h>
Mimi Zoharf381c272011-03-09 14:13:22 -050024#include "integrity.h"
25
26static struct rb_root integrity_iint_tree = RB_ROOT;
Dmitry Kasatkina10bf262012-02-08 14:15:42 -050027static DEFINE_RWLOCK(integrity_iint_lock);
Mimi Zoharf381c272011-03-09 14:13:22 -050028static struct kmem_cache *iint_cache __read_mostly;
29
Mimi Zoharf381c272011-03-09 14:13:22 -050030/*
31 * __integrity_iint_find - return the iint associated with an inode
32 */
33static struct integrity_iint_cache *__integrity_iint_find(struct inode *inode)
34{
35 struct integrity_iint_cache *iint;
36 struct rb_node *n = integrity_iint_tree.rb_node;
37
Mimi Zoharf381c272011-03-09 14:13:22 -050038 while (n) {
39 iint = rb_entry(n, struct integrity_iint_cache, rb_node);
40
41 if (inode < iint->inode)
42 n = n->rb_left;
43 else if (inode > iint->inode)
44 n = n->rb_right;
45 else
46 break;
47 }
48 if (!n)
49 return NULL;
50
51 return iint;
52}
53
54/*
55 * integrity_iint_find - return the iint associated with an inode
56 */
57struct integrity_iint_cache *integrity_iint_find(struct inode *inode)
58{
59 struct integrity_iint_cache *iint;
60
61 if (!IS_IMA(inode))
62 return NULL;
63
Dmitry Kasatkina10bf262012-02-08 14:15:42 -050064 read_lock(&integrity_iint_lock);
Mimi Zoharf381c272011-03-09 14:13:22 -050065 iint = __integrity_iint_find(inode);
Dmitry Kasatkina10bf262012-02-08 14:15:42 -050066 read_unlock(&integrity_iint_lock);
Mimi Zoharf381c272011-03-09 14:13:22 -050067
68 return iint;
69}
70
71static void iint_free(struct integrity_iint_cache *iint)
72{
Dmitry Kasatkina35c3fb2013-04-25 10:44:04 +030073 kfree(iint->ima_hash);
74 iint->ima_hash = NULL;
Mimi Zoharf381c272011-03-09 14:13:22 -050075 iint->version = 0;
76 iint->flags = 0UL;
Mimi Zohar1f898342018-01-23 10:00:41 -050077 iint->atomic_flags = 0UL;
Mimi Zohard79d72e2012-12-03 17:08:11 -050078 iint->ima_file_status = INTEGRITY_UNKNOWN;
79 iint->ima_mmap_status = INTEGRITY_UNKNOWN;
80 iint->ima_bprm_status = INTEGRITY_UNKNOWN;
Mimi Zoharc6af8ef2015-11-19 12:39:22 -050081 iint->ima_read_status = INTEGRITY_UNKNOWN;
Dmitry Kasatkinfb788d82011-08-15 15:30:11 +030082 iint->evm_status = INTEGRITY_UNKNOWN;
Eric Richter96d450b2016-06-01 13:14:00 -050083 iint->measured_pcrs = 0;
Mimi Zoharf381c272011-03-09 14:13:22 -050084 kmem_cache_free(iint_cache, iint);
85}
86
87/**
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +030088 * integrity_inode_get - find or allocate an iint associated with an inode
Mimi Zoharf381c272011-03-09 14:13:22 -050089 * @inode: pointer to the inode
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +030090 * @return: allocated iint
91 *
92 * Caller must lock i_mutex
Mimi Zoharf381c272011-03-09 14:13:22 -050093 */
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +030094struct integrity_iint_cache *integrity_inode_get(struct inode *inode)
Mimi Zoharf381c272011-03-09 14:13:22 -050095{
96 struct rb_node **p;
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +030097 struct rb_node *node, *parent = NULL;
98 struct integrity_iint_cache *iint, *test_iint;
Mimi Zoharf381c272011-03-09 14:13:22 -050099
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +0300100 iint = integrity_iint_find(inode);
101 if (iint)
102 return iint;
Mimi Zoharf381c272011-03-09 14:13:22 -0500103
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +0300104 iint = kmem_cache_alloc(iint_cache, GFP_NOFS);
105 if (!iint)
106 return NULL;
Mimi Zoharf381c272011-03-09 14:13:22 -0500107
Dmitry Kasatkina10bf262012-02-08 14:15:42 -0500108 write_lock(&integrity_iint_lock);
Mimi Zoharf381c272011-03-09 14:13:22 -0500109
110 p = &integrity_iint_tree.rb_node;
111 while (*p) {
112 parent = *p;
113 test_iint = rb_entry(parent, struct integrity_iint_cache,
114 rb_node);
Mimi Zoharf381c272011-03-09 14:13:22 -0500115 if (inode < test_iint->inode)
116 p = &(*p)->rb_left;
Mimi Zoharf381c272011-03-09 14:13:22 -0500117 else
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +0300118 p = &(*p)->rb_right;
Mimi Zoharf381c272011-03-09 14:13:22 -0500119 }
120
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +0300121 iint->inode = inode;
122 node = &iint->rb_node;
Mimi Zoharf381c272011-03-09 14:13:22 -0500123 inode->i_flags |= S_IMA;
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +0300124 rb_link_node(node, parent, p);
125 rb_insert_color(node, &integrity_iint_tree);
Mimi Zoharf381c272011-03-09 14:13:22 -0500126
Dmitry Kasatkina10bf262012-02-08 14:15:42 -0500127 write_unlock(&integrity_iint_lock);
Dmitry Kasatkinbf2276d2011-10-19 12:04:40 +0300128 return iint;
Mimi Zoharf381c272011-03-09 14:13:22 -0500129}
130
131/**
132 * integrity_inode_free - called on security_inode_free
133 * @inode: pointer to the inode
134 *
135 * Free the integrity information(iint) associated with an inode.
136 */
137void integrity_inode_free(struct inode *inode)
138{
139 struct integrity_iint_cache *iint;
140
141 if (!IS_IMA(inode))
142 return;
143
Dmitry Kasatkina10bf262012-02-08 14:15:42 -0500144 write_lock(&integrity_iint_lock);
Mimi Zoharf381c272011-03-09 14:13:22 -0500145 iint = __integrity_iint_find(inode);
146 rb_erase(&iint->rb_node, &integrity_iint_tree);
Dmitry Kasatkina10bf262012-02-08 14:15:42 -0500147 write_unlock(&integrity_iint_lock);
Mimi Zoharf381c272011-03-09 14:13:22 -0500148
149 iint_free(iint);
150}
151
152static void init_once(void *foo)
153{
154 struct integrity_iint_cache *iint = foo;
155
Dmitry Kasatkin2bb930a2014-03-04 18:04:20 +0200156 memset(iint, 0, sizeof(*iint));
Mimi Zoharf381c272011-03-09 14:13:22 -0500157 iint->version = 0;
158 iint->flags = 0UL;
Dmitry Kasatkin166f4542017-12-05 21:06:34 +0200159 iint->atomic_flags = 0;
Mimi Zohard79d72e2012-12-03 17:08:11 -0500160 iint->ima_file_status = INTEGRITY_UNKNOWN;
161 iint->ima_mmap_status = INTEGRITY_UNKNOWN;
162 iint->ima_bprm_status = INTEGRITY_UNKNOWN;
Mimi Zoharc6af8ef2015-11-19 12:39:22 -0500163 iint->ima_read_status = INTEGRITY_UNKNOWN;
Dmitry Kasatkin24e01982011-05-06 11:34:17 +0300164 iint->evm_status = INTEGRITY_UNKNOWN;
Eric Richter96d450b2016-06-01 13:14:00 -0500165 iint->measured_pcrs = 0;
Dmitry Kasatkin166f4542017-12-05 21:06:34 +0200166 mutex_init(&iint->mutex);
Mimi Zoharf381c272011-03-09 14:13:22 -0500167}
168
169static int __init integrity_iintcache_init(void)
170{
171 iint_cache =
172 kmem_cache_create("iint_cache", sizeof(struct integrity_iint_cache),
173 0, SLAB_PANIC, init_once);
Mimi Zoharf381c272011-03-09 14:13:22 -0500174 return 0;
175}
176security_initcall(integrity_iintcache_init);
Dmitry Kasatkine3c4abb2014-11-05 17:01:12 +0200177
178
179/*
180 * integrity_kernel_read - read data from the file
181 *
182 * This is a function for reading file content instead of kernel_read().
183 * It does not perform locking checks to ensure it cannot be blocked.
184 * It does not perform security checks because it is irrelevant for IMA.
185 *
186 */
187int integrity_kernel_read(struct file *file, loff_t offset,
188 char *addr, unsigned long count)
189{
190 mm_segment_t old_fs;
191 char __user *buf = (char __user *)addr;
Dmitry Kasatkin6fb50322014-11-05 17:01:17 +0200192 ssize_t ret;
Dmitry Kasatkine3c4abb2014-11-05 17:01:12 +0200193
194 if (!(file->f_mode & FMODE_READ))
195 return -EBADF;
196
197 old_fs = get_fs();
198 set_fs(get_ds());
Dmitry Kasatkin6fb50322014-11-05 17:01:17 +0200199 ret = __vfs_read(file, buf, count, &offset);
Dmitry Kasatkine3c4abb2014-11-05 17:01:12 +0200200 set_fs(old_fs);
Dmitry Kasatkin6fb50322014-11-05 17:01:17 +0200201
Dmitry Kasatkine3c4abb2014-11-05 17:01:12 +0200202 return ret;
203}
204
205/*
206 * integrity_read_file - read entire file content into the buffer
207 *
208 * This is function opens a file, allocates the buffer of required
209 * size, read entire file content to the buffer and closes the file
210 *
211 * It is used only by init code.
212 *
213 */
214int __init integrity_read_file(const char *path, char **data)
215{
216 struct file *file;
217 loff_t size;
218 char *buf;
219 int rc = -EINVAL;
220
Dmitry Kasatkin9d03a722014-11-26 16:55:00 +0200221 if (!path || !*path)
222 return -EINVAL;
223
Dmitry Kasatkine3c4abb2014-11-05 17:01:12 +0200224 file = filp_open(path, O_RDONLY, 0);
225 if (IS_ERR(file)) {
226 rc = PTR_ERR(file);
227 pr_err("Unable to open file: %s (%d)", path, rc);
228 return rc;
229 }
230
231 size = i_size_read(file_inode(file));
232 if (size <= 0)
233 goto out;
234
235 buf = kmalloc(size, GFP_KERNEL);
236 if (!buf) {
237 rc = -ENOMEM;
238 goto out;
239 }
240
241 rc = integrity_kernel_read(file, 0, buf, size);
Al Virocc4e7192015-12-25 17:59:12 -0500242 if (rc == size) {
Dmitry Kasatkine3c4abb2014-11-05 17:01:12 +0200243 *data = buf;
Al Virocc4e7192015-12-25 17:59:12 -0500244 } else {
245 kfree(buf);
246 if (rc >= 0)
247 rc = -EIO;
248 }
Dmitry Kasatkine3c4abb2014-11-05 17:01:12 +0200249out:
250 fput(file);
251 return rc;
252}
Dmitry Kasatkinc9cd2ce2014-11-05 17:01:15 +0200253
254/*
255 * integrity_load_keys - load integrity keys hook
256 *
257 * Hooks is called from init/main.c:kernel_init_freeable()
258 * when rootfs is ready
259 */
260void __init integrity_load_keys(void)
261{
262 ima_load_x509();
Dmitry Kasatkin2ce523e2015-10-22 21:26:21 +0300263 evm_load_x509();
Dmitry Kasatkinc9cd2ce2014-11-05 17:01:15 +0200264}