mirror of
https://github.com/phpseclib/phpseclib.git
synced 2024-11-16 02:07:09 +00:00
461 lines
15 KiB
PHP
461 lines
15 KiB
PHP
<?php
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/**
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* @author Andreas Fischer <bantu@phpbb.com>
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* @copyright 2013 Andreas Fischer
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* @license http://www.opensource.org/licenses/mit-license.html MIT License
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*/
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namespace phpseclib3\Tests\Unit\Crypt\AES;
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use phpseclib3\Crypt\AES;
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use phpseclib3\Crypt\Rijndael;
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use phpseclib3\Exception\InconsistentSetupException;
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use phpseclib3\Exception\InsufficientSetupException;
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use phpseclib3\Tests\PhpseclibTestCase;
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abstract class TestCase extends PhpseclibTestCase
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{
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protected $engine;
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private function _checkEngine($aes)
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{
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if ($aes->getEngine() != $this->engine) {
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self::markTestSkipped('Unable to initialize ' . $this->engine . ' engine');
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}
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}
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/**
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* Produces all combinations of test values.
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*
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* @return array
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*/
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public function continuousBufferCombos()
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{
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$modes = [
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'ctr',
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'ofb',
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'cfb',
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'cfb8',
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'ofb8',
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];
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$plaintexts = [
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'',
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'12345678901234567', // https://github.com/phpseclib/phpseclib/issues/39
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"\xDE\xAD\xBE\xAF",
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':-):-):-):-):-):-)', // https://github.com/phpseclib/phpseclib/pull/43
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];
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$ivs = [
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str_repeat("\0", 16),
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str_pad('test123', 16, "\0"),
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];
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$keys = [
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str_repeat("\0", 16),
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str_pad(':-8', 16, "\0"), // https://github.com/phpseclib/phpseclib/pull/43
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str_pad('FOOBARZ', 16, "\0"),
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];
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$result = [];
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foreach ($modes as $mode) {
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foreach ($plaintexts as $plaintext) {
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foreach ($ivs as $iv) {
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foreach ($keys as $key) {
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$result[] = [$mode, $plaintext, $iv, $key];
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}
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}
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}
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}
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return $result;
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}
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/**
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* @dataProvider continuousBufferCombos
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*/
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public function testEncryptDecryptWithContinuousBuffer($mode, $plaintext, $iv, $key)
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{
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$aes = new AES($mode);
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$aes->setPreferredEngine($this->engine);
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$aes->enableContinuousBuffer();
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$aes->setIV($iv);
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$aes->setKey($key);
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$this->_checkEngine($aes);
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$actual = '';
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for ($i = 0, $strlen = strlen($plaintext); $i < $strlen; ++$i) {
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$actual .= $aes->decrypt($aes->encrypt($plaintext[$i]));
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}
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$this->assertEquals($plaintext, $actual);
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}
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/**
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* @group github451
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*/
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public function testKeyPaddingRijndael()
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{
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// this test case is from the following URL:
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// https://web.archive.org/web/20070209120224/http://fp.gladman.plus.com/cryptography_technology/rijndael/aesdvec.zip
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$aes = new Rijndael('cbc');
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$aes->setPreferredEngine($this->engine);
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$aes->disablePadding();
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$aes->setKey(pack('H*', '2b7e151628aed2a6abf7158809cf4f3c762e7160')); // 160-bit key. Valid in Rijndael.
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$aes->setIV(str_repeat("\0", 16));
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//$this->_checkEngine($aes); // should only work in internal mode
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$ciphertext = $aes->encrypt(pack('H*', '3243f6a8885a308d313198a2e0370734'));
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$this->assertEquals($ciphertext, pack('H*', '231d844639b31b412211cfe93712b880'));
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}
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/**
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* @group github451
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*/
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public function testKeyPaddingAES()
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{
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$this->expectException('LengthException');
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// same as the above - just with a different ciphertext
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$aes = new AES('cbc');
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$aes->setPreferredEngine($this->engine);
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$aes->disablePadding();
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$aes->setKey(pack('H*', '2b7e151628aed2a6abf7158809cf4f3c762e7160')); // 160-bit key. supported by Rijndael - not AES
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$aes->setIV(str_repeat("\0", 16));
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$this->_checkEngine($aes);
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$ciphertext = $aes->encrypt(pack('H*', '3243f6a8885a308d313198a2e0370734'));
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$this->assertEquals($ciphertext, pack('H*', 'c109292b173f841b88e0ee49f13db8c0'));
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}
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/**
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* Produces all combinations of test values.
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*
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* @return list<array{string, string, array}>
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*/
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public function continuousBufferBatteryCombos()
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{
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$modes = [
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'ctr',
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'ofb',
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'cfb',
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'cfb8',
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'ofb8',
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];
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$combos = [
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[16],
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[17],
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[1, 16],
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[3, 6, 7], // (3 to test the openssl_encrypt call and the buffer creation, 6 to test the exclusive use of the buffer and 7 to test the buffer's exhaustion and recreation)
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[15, 4], // (15 to test openssl_encrypt call and buffer creation and 4 to test something that spans multpile bloc
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[3, 6, 10, 16], // this is why the strlen check in the buffer-only code was needed
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[16, 16], // two full size blocks
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[3, 6, 7, 16], // partial block + full size block
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[16, 3, 6, 7],
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// a few others just for fun
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[32,32],
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[31,31],
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[17,17],
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[99, 99]
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];
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$result = [];
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foreach ($modes as $mode) {
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foreach ($combos as $combo) {
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foreach (['encrypt', 'decrypt'] as $op) {
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$result[] = [$op, $mode, $combo];
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}
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}
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}
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return $result;
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}
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/**
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* @return array<array{string, string, array}>
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*/
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public function continuousBufferBatteryCombosWithoutSingleCombos()
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{
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return array_filter($this->continuousBufferBatteryCombos(), function (array $continuousBufferBatteryCombo) {
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return count($continuousBufferBatteryCombo[2]) > 1;
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});
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}
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/**
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* @dataProvider continuousBufferBatteryCombos
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*/
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public function testContinuousBufferBattery($op, $mode, $test)
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{
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$iv = str_repeat('x', 16);
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$key = str_repeat('a', 16);
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$aes = new AES($mode);
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$aes->setPreferredEngine($this->engine);
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$aes->setKey($key);
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$aes->setIV($iv);
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$this->_checkEngine($aes);
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$str = '';
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$result = '';
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foreach ($test as $len) {
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$temp = str_repeat('d', $len);
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$str .= $temp;
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}
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$c1 = $aes->$op($str);
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$aes = new AES($mode);
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$aes->setPreferredEngine($this->engine);
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$aes->enableContinuousBuffer();
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$aes->setKey($key);
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$aes->setIV($iv);
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$this->_checkEngine($aes);
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foreach ($test as $len) {
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$temp = str_repeat('d', $len);
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$output = $aes->$op($temp);
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$result .= $output;
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}
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$c2 = $result;
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$this->assertSame(bin2hex($c1), bin2hex($c2));
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}
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/**
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* Pretty much the same as testContinuousBufferBattery with the caveat that continuous mode is not enabled.
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*
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* @dataProvider continuousBufferBatteryCombosWithoutSingleCombos
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*/
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public function testNonContinuousBufferBattery($op, $mode, $test)
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{
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$iv = str_repeat('x', 16);
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$key = str_repeat('a', 16);
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$aes = new AES($mode);
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$aes->setPreferredEngine($this->engine);
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$aes->setKey($key);
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$aes->setIV($iv);
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$this->_checkEngine($aes);
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$str = '';
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$result = '';
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foreach ($test as $len) {
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$temp = str_repeat('d', $len);
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$str .= $temp;
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}
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$c1 = $aes->$op($str);
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$aes = new AES($mode);
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$aes->setPreferredEngine($this->engine);
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$aes->setKey($key);
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$aes->setIV($iv);
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$this->_checkEngine($aes);
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foreach ($test as $len) {
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$temp = str_repeat('d', $len);
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$output = $aes->$op($temp);
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$result .= $output;
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}
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$c2 = $result;
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$this->assertNotSame(bin2hex($c1), bin2hex($c2));
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}
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// from http://csrc.nist.gov/groups/STM/cavp/documents/aes/AESAVS.pdf#page=16
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public function testGFSBox128()
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{
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$aes = new AES('cbc');
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$aes->setKey(pack('H*', '00000000000000000000000000000000'));
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$aes->setIV(pack('H*', '00000000000000000000000000000000'));
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$aes->disablePadding();
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$aes->setPreferredEngine($this->engine);
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$this->_checkEngine($aes);
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$result = bin2hex($aes->encrypt(pack('H*', 'f34481ec3cc627bacd5dc3fb08f273e6')));
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$this->assertSame($result, '0336763e966d92595a567cc9ce537f5e');
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$result = bin2hex($aes->encrypt(pack('H*', '9798c4640bad75c7c3227db910174e72')));
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$this->assertSame($result, 'a9a1631bf4996954ebc093957b234589');
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$result = bin2hex($aes->encrypt(pack('H*', '96ab5c2ff612d9dfaae8c31f30c42168')));
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$this->assertSame($result, 'ff4f8391a6a40ca5b25d23bedd44a597');
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$result = bin2hex($aes->encrypt(pack('H*', '6a118a874519e64e9963798a503f1d35')));
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$this->assertSame($result, 'dc43be40be0e53712f7e2bf5ca707209');
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$result = bin2hex($aes->encrypt(pack('H*', 'cb9fceec81286ca3e989bd979b0cb284')));
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$this->assertSame($result, '92beedab1895a94faa69b632e5cc47ce');
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$result = bin2hex($aes->encrypt(pack('H*', 'b26aeb1874e47ca8358ff22378f09144')));
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$this->assertSame($result, '459264f4798f6a78bacb89c15ed3d601');
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$result = bin2hex($aes->encrypt(pack('H*', '58c8e00b2631686d54eab84b91f0aca1')));
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$this->assertSame($result, '08a4e2efec8a8e3312ca7460b9040bbf');
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}
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public function testGFSBox192()
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{
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$aes = new AES('cbc');
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$aes->setKey(pack('H*', '000000000000000000000000000000000000000000000000'));
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$aes->setIV(pack('H*', '00000000000000000000000000000000'));
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$aes->disablePadding();
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$aes->setPreferredEngine($this->engine);
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$this->_checkEngine($aes);
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$result = bin2hex($aes->encrypt(pack('H*', '1b077a6af4b7f98229de786d7516b639')));
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$this->assertSame($result, '275cfc0413d8ccb70513c3859b1d0f72');
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$result = bin2hex($aes->encrypt(pack('H*', '9c2d8842e5f48f57648205d39a239af1')));
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$this->assertSame($result, 'c9b8135ff1b5adc413dfd053b21bd96d');
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$result = bin2hex($aes->encrypt(pack('H*', 'bff52510095f518ecca60af4205444bb')));
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$this->assertSame($result, '4a3650c3371ce2eb35e389a171427440');
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$result = bin2hex($aes->encrypt(pack('H*', '51719783d3185a535bd75adc65071ce1')));
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$this->assertSame($result, '4f354592ff7c8847d2d0870ca9481b7c');
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$result = bin2hex($aes->encrypt(pack('H*', '26aa49dcfe7629a8901a69a9914e6dfd')));
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$this->assertSame($result, 'd5e08bf9a182e857cf40b3a36ee248cc');
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$result = bin2hex($aes->encrypt(pack('H*', '941a4773058224e1ef66d10e0a6ee782')));
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$this->assertSame($result, '067cd9d3749207791841562507fa9626');
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}
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public function testGFSBox256()
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{
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$aes = new AES('cbc');
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$aes->setKey(pack('H*', '00000000000000000000000000000000' . '00000000000000000000000000000000'));
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$aes->setIV(pack('H*', '00000000000000000000000000000000'));
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$aes->disablePadding();
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$aes->setPreferredEngine($this->engine);
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$this->_checkEngine($aes);
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$result = bin2hex($aes->encrypt(pack('H*', '014730f80ac625fe84f026c60bfd547d')));
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$this->assertSame($result, '5c9d844ed46f9885085e5d6a4f94c7d7');
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$result = bin2hex($aes->encrypt(pack('H*', '0b24af36193ce4665f2825d7b4749c98')));
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$this->assertSame($result, 'a9ff75bd7cf6613d3731c77c3b6d0c04');
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$result = bin2hex($aes->encrypt(pack('H*', '761c1fe41a18acf20d241650611d90f1')));
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$this->assertSame($result, '623a52fcea5d443e48d9181ab32c7421');
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$result = bin2hex($aes->encrypt(pack('H*', '8a560769d605868ad80d819bdba03771')));
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$this->assertSame($result, '38f2c7ae10612415d27ca190d27da8b4');
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$result = bin2hex($aes->encrypt(pack('H*', '91fbef2d15a97816060bee1feaa49afe')));
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$this->assertSame($result, '1bc704f1bce135ceb810341b216d7abe');
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}
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public function testGetKeyLengthDefault()
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{
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$aes = new AES('cbc');
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$this->assertSame($aes->getKeyLength(), 128);
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}
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public function testGetKeyLengthWith192BitKey()
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{
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$aes = new AES('cbc');
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$aes->setKey(str_repeat('a', 24));
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$this->assertSame($aes->getKeyLength(), 192);
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}
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public function testSetKeyLengthWithLargerKey()
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{
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$this->expectException(InconsistentSetupException::class);
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$aes = new AES('cbc');
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$aes->setKeyLength(128);
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$aes->setKey(str_repeat('a', 24));
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$aes->setIV(str_repeat("\0", 16));
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$this->assertSame($aes->getKeyLength(), 128);
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$ciphertext = bin2hex($aes->encrypt('a'));
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$this->assertSame($ciphertext, '82b7b068dfc60ed2a46893b69fecd6c2');
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$this->assertSame($aes->getKeyLength(), 128);
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}
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public function testSetKeyLengthWithSmallerKey()
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{
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$this->expectException(InconsistentSetupException::class);
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$aes = new AES('cbc');
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$aes->setKeyLength(256);
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$aes->setKey(str_repeat('a', 16));
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$aes->setIV(str_repeat("\0", 16));
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$this->assertSame($aes->getKeyLength(), 256);
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$ciphertext = bin2hex($aes->encrypt('a'));
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$this->assertSame($ciphertext, 'fd4250c0d234aa7e1aa592820aa8406b');
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$this->assertSame($aes->getKeyLength(), 256);
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}
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public function testInvalidLengthKeyWithAES()
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{
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$plaintext = str_repeat('x', 16);
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$aes = new Rijndael();
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$aes->setKey(str_repeat('a', 19));
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$this->assertSame($aes->getKeyLength(), 160);
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$ref = new Rijndael();
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$ref->setKey(str_repeat('a', 19) . "\0");
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$this->assertSame(
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bin2hex($aes->encrypt($plaintext)),
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bin2hex($ref->encrypt($plaintext)),
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'actual and expected value do not match for 168 bit Rijndael'
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);
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$aes = new AES();
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$aes->setKey(str_repeat('a', 19));
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$this->assertSame($aes->getKeyLength(), 192);
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$ref = new AES();
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$ref->setKey(str_repeat('a', 19) . "\0\0\0\0\0");
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$this->assertSame(
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bin2hex($aes->encrypt($plaintext)),
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bin2hex($ref->encrypt($plaintext)),
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'actual and expected value do not match for 168 bit AES'
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);
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}
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/**
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* @group github938
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*/
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public function testContinuousBuffer()
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{
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$aes = new AES('cbc');
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$aes->disablePadding();
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$aes->enableContinuousBuffer();
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$aes->setIV(pack('H*', '0457bdb4a6712986688349a29eb82535'));
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$aes->setKey(pack('H*', '00d596e2c8189b2592fac358e7396ad2'));
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$aes->decrypt(pack('H*', '9aa234ea7c750a8109a0f32d768b964e'));
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$plaintext = $aes->decrypt(pack('H*', '0457bdb4a6712986688349a29eb82535'));
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$expected = pack('H*', '6572617574689e1be8d2d8d43c594cf3');
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$this->assertSame($plaintext, $expected);
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}
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public function testECBDecrypt()
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{
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$aes = new AES('ecb');
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$aes->setPreferredEngine($this->engine);
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$aes->setKey(str_repeat('x', 16));
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$this->_checkEngine($aes);
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$plaintext = str_repeat('a', 16);
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$actual = $aes->decrypt($aes->encrypt($plaintext));
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$this->assertEquals($plaintext, $actual);
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}
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public function testNoKey()
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{
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$this->expectException(InsufficientSetupException::class);
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$aes = new AES('cbc');
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$aes->setPreferredEngine($this->engine);
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$aes->setIV(str_repeat('x', 16));
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$aes->encrypt(str_repeat('a', 16));
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}
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}
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