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Hyojun Kim63da4202017-10-06 17:10:08 -07001/*
2 * fscrypt_private.h
3 *
4 * Copyright (C) 2015, Google, Inc.
5 *
6 * This contains encryption key functions.
7 *
8 * Written by Michael Halcrow, Ildar Muslukhov, and Uday Savagaonkar, 2015.
9 */
10
11#ifndef _FSCRYPT_PRIVATE_H
12#define _FSCRYPT_PRIVATE_H
13
Jaegeuk Kim8dec0742017-06-22 12:14:40 -070014#define __FS_HAS_ENCRYPTION 1
15#include <linux/fscrypt.h>
Hyojun Kim63da4202017-10-06 17:10:08 -070016#include <crypto/hash.h>
17
18/* Encryption parameters */
19#define FS_IV_SIZE 16
20#define FS_AES_128_ECB_KEY_SIZE 16
21#define FS_AES_128_CBC_KEY_SIZE 16
22#define FS_AES_128_CTS_KEY_SIZE 16
23#define FS_AES_256_GCM_KEY_SIZE 32
24#define FS_AES_256_CBC_KEY_SIZE 32
25#define FS_AES_256_CTS_KEY_SIZE 32
26#define FS_AES_256_XTS_KEY_SIZE 64
27
28#define FS_KEY_DERIVATION_NONCE_SIZE 16
29
30/**
31 * Encryption context for inode
32 *
33 * Protector format:
34 * 1 byte: Protector format (1 = this version)
35 * 1 byte: File contents encryption mode
36 * 1 byte: File names encryption mode
37 * 1 byte: Flags
38 * 8 bytes: Master Key descriptor
39 * 16 bytes: Encryption Key derivation nonce
40 */
41struct fscrypt_context {
42 u8 format;
43 u8 contents_encryption_mode;
44 u8 filenames_encryption_mode;
45 u8 flags;
46 u8 master_key_descriptor[FS_KEY_DESCRIPTOR_SIZE];
47 u8 nonce[FS_KEY_DERIVATION_NONCE_SIZE];
48} __packed;
49
50#define FS_ENCRYPTION_CONTEXT_FORMAT_V1 1
51
Jaegeuk Kimd9197652018-01-05 10:44:52 -080052/**
53 * For encrypted symlinks, the ciphertext length is stored at the beginning
54 * of the string in little-endian format.
55 */
56struct fscrypt_symlink_data {
57 __le16 len;
58 char encrypted_path[1];
59} __packed;
60
Hyojun Kim63da4202017-10-06 17:10:08 -070061/*
62 * A pointer to this structure is stored in the file system's in-core
63 * representation of an inode.
64 */
65struct fscrypt_info {
66 u8 ci_data_mode;
67 u8 ci_filename_mode;
68 u8 ci_flags;
69 struct crypto_skcipher *ci_ctfm;
70 struct crypto_cipher *ci_essiv_tfm;
71 u8 ci_master_key[FS_KEY_DESCRIPTOR_SIZE];
72};
73
74typedef enum {
75 FS_DECRYPT = 0,
76 FS_ENCRYPT,
77} fscrypt_direction_t;
78
79#define FS_CTX_REQUIRES_FREE_ENCRYPT_FL 0x00000001
80#define FS_CTX_HAS_BOUNCE_BUFFER_FL 0x00000002
81
Jaegeuk Kimd9197652018-01-05 10:44:52 -080082static inline bool fscrypt_valid_enc_modes(u32 contents_mode,
83 u32 filenames_mode)
84{
85 if (contents_mode == FS_ENCRYPTION_MODE_AES_128_CBC &&
86 filenames_mode == FS_ENCRYPTION_MODE_AES_128_CTS)
87 return true;
88
89 if (contents_mode == FS_ENCRYPTION_MODE_AES_256_XTS &&
90 filenames_mode == FS_ENCRYPTION_MODE_AES_256_CTS)
91 return true;
92
93 return false;
94}
95
Hyojun Kim63da4202017-10-06 17:10:08 -070096/* crypto.c */
Jaegeuk Kimd9197652018-01-05 10:44:52 -080097extern struct kmem_cache *fscrypt_info_cachep;
Hyojun Kim63da4202017-10-06 17:10:08 -070098extern int fscrypt_initialize(unsigned int cop_flags);
Hyojun Kim63da4202017-10-06 17:10:08 -070099extern int fscrypt_do_page_crypto(const struct inode *inode,
100 fscrypt_direction_t rw, u64 lblk_num,
101 struct page *src_page,
102 struct page *dest_page,
103 unsigned int len, unsigned int offs,
104 gfp_t gfp_flags);
105extern struct page *fscrypt_alloc_bounce_page(struct fscrypt_ctx *ctx,
106 gfp_t gfp_flags);
107
Jaegeuk Kimd9197652018-01-05 10:44:52 -0800108/* fname.c */
109extern int fname_encrypt(struct inode *inode, const struct qstr *iname,
110 u8 *out, unsigned int olen);
111extern bool fscrypt_fname_encrypted_size(const struct inode *inode,
112 u32 orig_len, u32 max_len,
113 u32 *encrypted_len_ret);
114
Hyojun Kim63da4202017-10-06 17:10:08 -0700115/* keyinfo.c */
116extern void __exit fscrypt_essiv_cleanup(void);
117
118#endif /* _FSCRYPT_PRIVATE_H */