| 1 | <?php |
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| 2 | |||||
| 3 | /* |
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| 4 | * This file is part of the PHP EcryptFS library. |
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| 5 | * (c) 2017 by Dennis Birkholz |
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| 6 | * All rights reserved. |
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| 7 | * For the license to use this library, see the provided LICENSE file. |
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| 8 | */ |
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| 9 | |||||
| 10 | namespace Iqb\Ecryptfs; |
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| 11 | |||||
| 12 | abstract class Util |
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| 13 | { |
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| 14 | /** |
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| 15 | * The salt used for creating the file encryption key encryption key from the passphrase, unhex to use it. |
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| 16 | * |
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| 17 | * @link http://bazaar.launchpad.net/~ecryptfs/ecryptfs/trunk/view/head:/src/include/ecryptfs.h#L75 |
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| 18 | * @link http://bazaar.launchpad.net/~ecryptfs/ecryptfs/trunk/view/head:/src/utils/ecryptfs_add_passphrase.c#L83 |
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| 19 | */ |
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| 20 | const DEFAULT_SALT_HEX = "0011223344556677"; |
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| 21 | |||||
| 22 | /** |
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| 23 | * The salt used for creating the file name encryption key from the passphrase. |
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| 24 | * Due to a programming error in the original ecryptfs user space library, |
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| 25 | * the salt is not unhexed before use. |
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| 26 | * |
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| 27 | * As a result only the first half (99887766) is used literally. |
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| 28 | * |
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| 29 | * @link http://bazaar.launchpad.net/~ecryptfs/ecryptfs/trunk/view/head:/src/include/ecryptfs.h#L76 |
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| 30 | * @link http://bazaar.launchpad.net/~ecryptfs/ecryptfs/trunk/view/head:/src/utils/ecryptfs_add_passphrase.c#L108 |
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| 31 | */ |
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| 32 | const DEFAULT_SALT_FNEK_HEX = "9988776655443322"; |
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| 33 | |||||
| 34 | /** |
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| 35 | * Algorith used to generate keys from the supplied passphrase |
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| 36 | * |
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| 37 | * @link http://bazaar.launchpad.net/~ecryptfs/ecryptfs/trunk/view/head:/src/libecryptfs/main.c#L220 |
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| 38 | */ |
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| 39 | const KEY_DERIVATION_ALGO = "sha512"; |
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| 40 | |||||
| 41 | /** |
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| 42 | * Number of iterations when deriving the keys from the passphrase |
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| 43 | * |
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| 44 | * @link http://bazaar.launchpad.net/~ecryptfs/ecryptfs/trunk/view/head:/src/include/ecryptfs.h#L130 |
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| 45 | * @link http://bazaar.launchpad.net/~ecryptfs/ecryptfs/trunk/view/head:/src/libecryptfs/main.c#L223 |
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| 46 | */ |
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| 47 | const DEFAULT_NUM_HASH_ITERATIONS = 65536; |
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| 48 | |||||
| 49 | /** |
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| 50 | * Filename prefix for encrypted file names |
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| 51 | * |
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| 52 | * @link https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux-stable.git/tree/fs/ecryptfs/ecryptfs_kernel.h?h=v4.11.3#n171 |
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| 53 | */ |
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| 54 | const FNEK_ENCRYPTED_FILENAME_PREFIX = 'ECRYPTFS_FNEK_ENCRYPTED.'; |
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| 55 | |||||
| 56 | /** |
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| 57 | * Derive a key from the supplied passphrase and salt |
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| 58 | * |
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| 59 | * @param string $passPhrase |
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| 60 | * @param string $salt |
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| 61 | * @param bool $hexEncode Whether to return the key hex encoded or not |
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| 62 | * @return string |
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| 63 | */ |
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| 64 | 36 | final public static function deriveKey(string $passPhrase, string $salt, bool $hexEncode = false) : string |
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| 65 | { |
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| 66 | 36 | $key = \hash(self::KEY_DERIVATION_ALGO, \substr($salt, 0, ECRYPTFS_SALT_SIZE) . $passPhrase, true); |
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| 67 | |||||
| 68 | 36 | for ($i=1; $i<self::DEFAULT_NUM_HASH_ITERATIONS; $i++) { |
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| 69 | 36 | $key = \hash(self::KEY_DERIVATION_ALGO, $key, true); |
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| 70 | } |
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| 71 | |||||
| 72 | 36 | return ($hexEncode ? \bin2hex($key) : $key); |
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| 73 | } |
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| 74 | |||||
| 75 | /** |
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| 76 | * Derive the file encryption key encrytion key (FEKEK) from the supplied passphrase. |
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| 77 | * |
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| 78 | * @param string $passPhrase |
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| 79 | * @param bool $hexEncode Whether to return the key hex encoded or not |
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| 80 | * @return string Derived key |
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| 81 | */ |
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| 82 | 36 | final public static function deriveFEKEK(string $passPhrase, bool $hexEncode = false) : string |
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| 83 | { |
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| 84 | 36 | return self::deriveKey($passPhrase, \hex2bin(self::DEFAULT_SALT_HEX), $hexEncode); |
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| 85 | } |
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| 86 | |||||
| 87 | /** |
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| 88 | * Derive the file encryption key encrytion key (FEKEK) from the supplied passphrase. |
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| 89 | * |
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| 90 | * @param string $passPhrase |
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| 91 | * @param bool $hexEncode Whether to return the key hex encoded or not |
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| 92 | * @return string Derived key |
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| 93 | */ |
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| 94 | 36 | final public static function deriveFNEK(string $passPhrase, bool $hexEncode = false) : string |
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| 95 | { |
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| 96 | // Due to a programming error in the original Ecryptfs source code |
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| 97 | // the value of the ECRYPTFS_DEFAULT_SALT_FNEK_HEX is not hex decoded |
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| 98 | // but truncated and used without conversion. |
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| 99 | 36 | return self::deriveKey($passPhrase, \substr(self::DEFAULT_SALT_FNEK_HEX, 0, 8), $hexEncode); |
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| 100 | } |
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| 101 | |||||
| 102 | /** |
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| 103 | * Calculate the signature of a key |
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| 104 | * |
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| 105 | * @param string $key Raw binary blob |
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| 106 | * @return string Hex encoded signature |
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| 107 | */ |
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| 108 | 36 | final public static function calculateSignature(string $key) : string |
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| 109 | { |
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| 110 | 36 | return \bin2hex(\substr(\hash(self::KEY_DERIVATION_ALGO, $key, true), 0, ECRYPTFS_SIG_SIZE)); |
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| 111 | } |
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| 112 | |||||
| 113 | |||||
| 114 | /** |
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| 115 | * Try to read the length of a packet from the supplied data. |
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| 116 | * On success, increases $pos to point to the next byte after the length |
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| 117 | * |
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| 118 | * @param string $data |
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| 119 | * @param int $pos |
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| 120 | * @return int |
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| 121 | * @throws ParseException |
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| 122 | */ |
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| 123 | 51 | final public static function parseTagPacketLength(string $data, int &$pos = 0) : int |
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| 124 | { |
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| 125 | 51 | $packetSize = \ord($data[$pos]); |
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| 126 | 51 | if ($packetSize > 224) { |
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| 127 | 1 | throw new ParseException("Error parsing packet length!"); |
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| 128 | } |
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| 129 | 50 | $pos++; |
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| 130 | |||||
| 131 | // Read next byte from data |
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| 132 | 50 | if ($packetSize >= 192) { |
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| 133 | 1 | $packetSize = ($packetSize - 192) * 256; |
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| 134 | 1 | $packetSize += \ord($data[$pos++]); |
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| 135 | } |
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| 136 | |||||
| 137 | 50 | return $packetSize; |
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| 138 | } |
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| 139 | |||||
| 140 | |||||
| 141 | /** |
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| 142 | * Generate the binary string representing the supplied length |
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| 143 | * |
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| 144 | * @param int $length |
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| 145 | * @return string |
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| 146 | */ |
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| 147 | 38 | final public static function generateTagPacketLength(int $length) : string |
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| 148 | { |
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| 149 | 38 | if ($length < 0) { |
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| 150 | throw new \InvalidArgumentException("Length must be an unsigned integer."); |
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| 151 | } |
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| 152 | |||||
| 153 | 38 | if ($length > (32*256 + 255)) { |
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| 154 | throw new \InvalidArgumentException("Length too large."); |
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| 155 | } |
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| 156 | |||||
| 157 | 38 | if ($length < 192) { |
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| 158 | 37 | return \chr($length); |
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| 159 | } |
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| 160 | |||||
| 161 | 1 | $low = $length % 256; |
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| 162 | 1 | $high = \floor($length / 256); |
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| 163 | |||||
| 164 | 1 | return \chr($high + 192) . \chr($low); |
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| 165 | } |
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| 166 | |||||
| 167 | |||||
| 168 | /** |
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| 169 | * Check whether the supplied filename is encrypted |
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| 170 | * |
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| 171 | * @param string $filename |
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| 172 | * @return bool |
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| 173 | */ |
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| 174 | 36 | public static function isEncryptedFilename(string $filename) : bool |
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| 175 | { |
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| 176 | 36 | return (\substr(\basename($filename), 0, \strlen(self::FNEK_ENCRYPTED_FILENAME_PREFIX )) === self::FNEK_ENCRYPTED_FILENAME_PREFIX); |
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| 177 | } |
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| 178 | |||||
| 179 | |||||
| 180 | /** |
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| 181 | * Encrypt the supplied filename |
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| 182 | * |
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| 183 | * @param CryptoEngineInterface $cryptoEngine |
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| 184 | * @param string $filename |
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| 185 | * @param string $fnek |
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| 186 | * @param int $cipherCode |
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| 187 | * @param int|null $cipherKeySize |
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| 188 | * @return string |
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| 189 | * |
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| 190 | * @link https://git.kernel.org/pub/scm/linux/kernel/git/stable/linux-stable.git/tree/fs/ecryptfs/crypto.c?h=v4.11.3#n1498 |
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| 191 | */ |
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| 192 | 36 | public static function encryptFilename(CryptoEngineInterface $cryptoEngine, string $filename, string $fnek, int $cipherCode = Tag70Packet::DEFAULT_CIPHER, int $cipherKeySize = null) : string |
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| 193 | { |
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| 194 | 36 | $tag = Tag70Packet::generate($cryptoEngine, $filename, $fnek, $cipherCode, $cipherKeySize); |
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| 195 | 36 | return self::FNEK_ENCRYPTED_FILENAME_PREFIX . BaseConverter::encode($tag->dump()); |
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| 196 | } |
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| 197 | |||||
| 198 | |||||
| 199 | /** |
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| 200 | * Decrypt the supplied filename |
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| 201 | */ |
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| 202 | 36 | public static function decryptFilename(CryptoEngineInterface $cryptoEngine, string $filename, string $key) : string |
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| 203 | { |
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| 204 | 36 | if (!self::isEncryptedFilename($filename)) { |
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| 205 | return $filename; |
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| 206 | } |
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| 207 | |||||
| 208 | 36 | $dirname = \dirname($filename); |
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| 209 | 36 | $decoded = BaseConverter::decode(\substr(\basename($filename), \strlen(self::FNEK_ENCRYPTED_FILENAME_PREFIX ))); |
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| 210 | 36 | $tag = Tag70Packet::parse($decoded); |
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| 211 | 36 | $tag->decrypt($cryptoEngine, $key); |
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| 212 | |||||
| 213 | 36 | return ($dirname && $dirname != '.' ? $dirname . '/' : '') . $tag->decryptedFilename; |
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| 214 | } |
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| 215 | |||||
| 216 | |||||
| 217 | /** |
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| 218 | * Find the largest possible cipher key size for the given cipher and key length |
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| 219 | * |
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| 220 | * @param int $cipherCode |
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| 221 | * @param int $keyLength |
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| 222 | * @return mixed |
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| 223 | */ |
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| 224 | public static function findCipherKeySize(int $cipherCode, int $keyLength) |
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| 225 | { |
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| 226 | foreach (CryptoEngineInterface::CIPHER_KEY_SIZES[$cipherCode] as $possibleCipherKeySize) { |
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| 227 | if ($possibleCipherKeySize <= $keyLength) { |
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| 228 | $cipherKeySize = $possibleCipherKeySize; |
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| 229 | break; |
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| 230 | } |
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| 231 | } |
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| 232 | |||||
| 233 | if (!isset($cipherKeySize)) { |
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| 234 | throw new \RuntimeException("Supplied key has only %u bytes, not enough for cipher 0x%x", $keyLength, $cipherCode); |
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| 235 | } |
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| 236 | |||||
| 237 | return $cipherKeySize; |
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| 238 | } |
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| 239 | } |
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| 240 |