| 1 |
<?php |
| 2 |
$dist = dirname(__DIR__).'/dist'; |
| 3 |
if (!is_dir($dist)) { |
| 4 |
mkdir($dist, 0755); |
| 5 |
} |
| 6 |
if (file_exists($dist.'/random_compat.phar')) { |
| 7 |
unlink($dist.'/random_compat.phar'); |
| 8 |
} |
| 9 |
$phar = new Phar( |
| 10 |
$dist.'/random_compat.phar', |
| 11 |
FilesystemIterator::CURRENT_AS_FILEINFO | \FilesystemIterator::KEY_AS_FILENAME, |
| 12 |
'random_compat.phar' |
| 13 |
); |
| 14 |
rename( |
| 15 |
dirname(__DIR__).'/lib/random.php', |
| 16 |
dirname(__DIR__).'/lib/index.php' |
| 17 |
); |
| 18 |
$phar->buildFromDirectory(dirname(__DIR__).'/lib'); |
| 19 |
rename( |
| 20 |
dirname(__DIR__).'/lib/index.php', |
| 21 |
dirname(__DIR__).'/lib/random.php' |
| 22 |
); |
| 23 |
|
| 24 |
/** |
| 25 |
* If we pass an (optional) path to a private key as a second argument, we will |
| 26 |
* sign the Phar with OpenSSL. |
| 27 |
* |
| 28 |
* If you leave this out, it will produce an unsigned .phar! |
| 29 |
*/ |
| 30 |
if ($argc > 1) { |
| 31 |
if (!@is_readable($argv[1])) { |
| 32 |
echo 'Could not read the private key file:', $argv[1], "\n"; |
| 33 |
exit(255); |
| 34 |
} |
| 35 |
$pkeyFile = file_get_contents($argv[1]); |
| 36 |
|
| 37 |
$private = openssl_get_privatekey($pkeyFile); |
| 38 |
if ($private !== false) { |
| 39 |
$pkey = ''; |
| 40 |
openssl_pkey_export($private, $pkey); |
| 41 |
$phar->setSignatureAlgorithm(Phar::OPENSSL, $pkey); |
| 42 |
|
| 43 |
/** |
| 44 |
* Save the corresponding public key to the file |
| 45 |
*/ |
| 46 |
if (!@is_readable($dist.'/random_compat.phar.pubkey')) { |
| 47 |
$details = openssl_pkey_get_details($private); |
| 48 |
file_put_contents( |
| 49 |
$dist.'/random_compat.phar.pubkey', |
| 50 |
$details['key'] |
| 51 |
); |
| 52 |
} |
| 53 |
} else { |
| 54 |
echo 'An error occurred reading the private key from OpenSSL.', "\n"; |
| 55 |
exit(255); |
| 56 |
} |
| 57 |
} |
| 58 |
|