@@ -59,7 +59,7 @@ |
||
59 | 59 | $cost = self::costEncrypt($cost, $salt, $password); |
60 | 60 | |
61 | 61 | // Return the salt + cost + hmac as a single string |
62 | - return $salt . $cost . $hash; |
|
62 | + return $salt.$cost.$hash; |
|
63 | 63 | } |
64 | 64 | |
65 | 65 | /** |
@@ -57,7 +57,7 @@ discard block |
||
57 | 57 | $cost = \unpack('L', $itr ^ \hash_hmac(static::CHKSUM, $ivr, $pass, true))[1]; |
58 | 58 | |
59 | 59 | // Derive key from password |
60 | - $key = \hash_pbkdf2(static::CHKSUM, ($pass . static::CIPHER), $ivr, $cost, 0, true); |
|
60 | + $key = \hash_pbkdf2(static::CHKSUM, ($pass.static::CIPHER), $ivr, $cost, 0, true); |
|
61 | 61 | |
62 | 62 | // Calculate verification checksum |
63 | 63 | $chk = \hash_hmac(static::CHKSUM, $msg, $key, true); |
@@ -86,7 +86,7 @@ discard block |
||
86 | 86 | |
87 | 87 | // Derive key from password with hash_pbkdf2 function. |
88 | 88 | // Append CIPHER to password beforehand so that cross-method decryptions will fail at checksum step |
89 | - $key = \hash_pbkdf2(static::CHKSUM, ($pass . static::CIPHER), $ivr, $cost, 0, true); |
|
89 | + $key = \hash_pbkdf2(static::CHKSUM, ($pass.static::CIPHER), $ivr, $cost, 0, true); |
|
90 | 90 | |
91 | 91 | // Encrypt the plaintext data |
92 | 92 | $msg = OpensslWrapper::encrypt($data, static::CIPHER, $key, $ivr); |
@@ -98,6 +98,6 @@ discard block |
||
98 | 98 | $chk = \hash_hmac(static::CHKSUM, $msg, $key, true); |
99 | 99 | |
100 | 100 | // Return iv + checksum + iterations + cyphertext |
101 | - return $ivr . $chk . $itr . $msg; |
|
101 | + return $ivr.$chk.$itr.$msg; |
|
102 | 102 | } |
103 | 103 | } |