/home/kueuepay/public_html/vendor/symfony/uid/Ulid.php
<?php

/*
 * This file is part of the Symfony package.
 *
 * (c) Fabien Potencier <fabien@symfony.com>
 *
 * For the full copyright and license information, please view the LICENSE
 * file that was distributed with this source code.
 */

namespace Symfony\Component\Uid;

/**
 * A ULID is lexicographically sortable and contains a 48-bit timestamp and 80-bit of crypto-random entropy.
 *
 * @see https://github.com/ulid/spec
 *
 * @author Nicolas Grekas <p@tchwork.com>
 */
class Ulid extends AbstractUid
{
    protected const NIL = '00000000000000000000000000';

    private static string $time = '';
    private static array $rand = [];

    public function __construct(string $ulid = null)
    {
        if (null === $ulid) {
            $this->uid = static::generate();

            return;
        }

        if (self::NIL === $ulid) {
            $this->uid = $ulid;

            return;
        }

        if (!self::isValid($ulid)) {
            throw new \InvalidArgumentException(sprintf('Invalid ULID: "%s".', $ulid));
        }

        $this->uid = strtoupper($ulid);
    }

    public static function isValid(string $ulid): bool
    {
        if (26 !== \strlen($ulid)) {
            return false;
        }

        if (26 !== strspn($ulid, '0123456789ABCDEFGHJKMNPQRSTVWXYZabcdefghjkmnpqrstvwxyz')) {
            return false;
        }

        return $ulid[0] <= '7';
    }

    /**
     * {@inheritdoc}
     */
    public static function fromString(string $ulid): static
    {
        if (36 === \strlen($ulid) && preg_match('{^[0-9a-f]{8}(?:-[0-9a-f]{4}){3}-[0-9a-f]{12}$}Di', $ulid)) {
            $ulid = uuid_parse($ulid);
        } elseif (22 === \strlen($ulid) && 22 === strspn($ulid, BinaryUtil::BASE58[''])) {
            $ulid = str_pad(BinaryUtil::fromBase($ulid, BinaryUtil::BASE58), 16, "\0", \STR_PAD_LEFT);
        }

        if (16 !== \strlen($ulid)) {
            if (self::NIL === $ulid) {
                return new NilUlid();
            }

            return new static($ulid);
        }

        $ulid = bin2hex($ulid);
        $ulid = sprintf('%02s%04s%04s%04s%04s%04s%04s',
            base_convert(substr($ulid, 0, 2), 16, 32),
            base_convert(substr($ulid, 2, 5), 16, 32),
            base_convert(substr($ulid, 7, 5), 16, 32),
            base_convert(substr($ulid, 12, 5), 16, 32),
            base_convert(substr($ulid, 17, 5), 16, 32),
            base_convert(substr($ulid, 22, 5), 16, 32),
            base_convert(substr($ulid, 27, 5), 16, 32)
        );

        if (self::NIL === $ulid) {
            return new NilUlid();
        }

        $u = new static(self::NIL);
        $u->uid = strtr($ulid, 'abcdefghijklmnopqrstuv', 'ABCDEFGHJKMNPQRSTVWXYZ');

        return $u;
    }

    public function toBinary(): string
    {
        $ulid = strtr($this->uid, 'ABCDEFGHJKMNPQRSTVWXYZ', 'abcdefghijklmnopqrstuv');

        $ulid = sprintf('%02s%05s%05s%05s%05s%05s%05s',
            base_convert(substr($ulid, 0, 2), 32, 16),
            base_convert(substr($ulid, 2, 4), 32, 16),
            base_convert(substr($ulid, 6, 4), 32, 16),
            base_convert(substr($ulid, 10, 4), 32, 16),
            base_convert(substr($ulid, 14, 4), 32, 16),
            base_convert(substr($ulid, 18, 4), 32, 16),
            base_convert(substr($ulid, 22, 4), 32, 16)
        );

        return hex2bin($ulid);
    }

    public function toBase32(): string
    {
        return $this->uid;
    }

    public function getDateTime(): \DateTimeImmutable
    {
        $time = strtr(substr($this->uid, 0, 10), 'ABCDEFGHJKMNPQRSTVWXYZ', 'abcdefghijklmnopqrstuv');

        if (\PHP_INT_SIZE >= 8) {
            $time = (string) hexdec(base_convert($time, 32, 16));
        } else {
            $time = sprintf('%02s%05s%05s',
                base_convert(substr($time, 0, 2), 32, 16),
                base_convert(substr($time, 2, 4), 32, 16),
                base_convert(substr($time, 6, 4), 32, 16)
            );
            $time = BinaryUtil::toBase(hex2bin($time), BinaryUtil::BASE10);
        }

        if (4 > \strlen($time)) {
            $time = '000'.$time;
        }

        return \DateTimeImmutable::createFromFormat('U.u', substr_replace($time, '.', -3, 0));
    }

    public static function generate(\DateTimeInterface $time = null): string
    {
        if (null === $mtime = $time) {
            $time = microtime(false);
            $time = substr($time, 11).substr($time, 2, 3);
        } elseif (0 > $time = $time->format('Uv')) {
            throw new \InvalidArgumentException('The timestamp must be positive.');
        }

        if ($time > self::$time || (null !== $mtime && $time !== self::$time)) {
            randomize:
            $r = unpack('nr1/nr2/nr3/nr4/nr', random_bytes(10));
            $r['r1'] |= ($r['r'] <<= 4) & 0xF0000;
            $r['r2'] |= ($r['r'] <<= 4) & 0xF0000;
            $r['r3'] |= ($r['r'] <<= 4) & 0xF0000;
            $r['r4'] |= ($r['r'] <<= 4) & 0xF0000;
            unset($r['r']);
            self::$rand = array_values($r);
            self::$time = $time;
        } elseif ([0xFFFFF, 0xFFFFF, 0xFFFFF, 0xFFFFF] === self::$rand) {
            if (\PHP_INT_SIZE >= 8 || 10 > \strlen($time = self::$time)) {
                $time = (string) (1 + $time);
            } elseif ('999999999' === $mtime = substr($time, -9)) {
                $time = (1 + substr($time, 0, -9)).'000000000';
            } else {
                $time = substr_replace($time, str_pad(++$mtime, 9, '0', \STR_PAD_LEFT), -9);
            }

            goto randomize;
        } else {
            for ($i = 3; $i >= 0 && 0xFFFFF === self::$rand[$i]; --$i) {
                self::$rand[$i] = 0;
            }

            ++self::$rand[$i];
            $time = self::$time;
        }

        if (\PHP_INT_SIZE >= 8) {
            $time = base_convert($time, 10, 32);
        } else {
            $time = str_pad(bin2hex(BinaryUtil::fromBase($time, BinaryUtil::BASE10)), 12, '0', \STR_PAD_LEFT);
            $time = sprintf('%s%04s%04s',
                base_convert(substr($time, 0, 2), 16, 32),
                base_convert(substr($time, 2, 5), 16, 32),
                base_convert(substr($time, 7, 5), 16, 32)
            );
        }

        return strtr(sprintf('%010s%04s%04s%04s%04s',
            $time,
            base_convert(self::$rand[0], 10, 32),
            base_convert(self::$rand[1], 10, 32),
            base_convert(self::$rand[2], 10, 32),
            base_convert(self::$rand[3], 10, 32)
        ), 'abcdefghijklmnopqrstuv', 'ABCDEFGHJKMNPQRSTVWXYZ');
    }
}
Best Practice

Best Practices

To ensure a smooth integration process and optimal performance, follow these best practices:

  1. Use secure HTTPS connections for all API requests.
  2. Implement robust error handling to handle potential issues gracefully.
  3. Regularly update your integration to stay current with any API changes or enhancements.