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+<?php
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+/**
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+ * Class Hanzi
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+ *
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+ * @created 19.11.2020
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+ * @author smiley <smiley@chillerlan.net>
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+ * @copyright 2020 smiley
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+ * @license MIT
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+ */
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+
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+namespace chillerlan\QRCode\Data;
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+
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+use chillerlan\QRCode\Common\{BitBuffer, Mode};
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+
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+use function chr, implode, is_string, mb_convert_encoding, mb_detect_encoding,
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+ mb_detect_order, mb_internal_encoding, mb_strlen, ord, sprintf, strlen;
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+
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+/**
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+ * Hanzi (simplified Chinese) mode, GBT18284-2000: double-byte characters from the GB2312/GB18030 character set
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+ *
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+ * Please note that this is not part of the QR Code specification and may not be supported by all readers (ZXing-based ones do).
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+ *
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+ * @see https://en.wikipedia.org/wiki/GB_2312
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+ * @see http://www.herongyang.com/GB2312/Introduction-of-GB2312.html
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+ * @see https://en.wikipedia.org/wiki/GBK_(character_encoding)#Encoding
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+ * @see https://gist.github.com/codemasher/91da33c44bfb48a81a6c1426bb8e4338
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+ * @see https://github.com/zxing/zxing/blob/dfb06fa33b17a9e68321be151c22846c7b78048f/core/src/main/java/com/google/zxing/qrcode/decoder/DecodedBitStreamParser.java#L172-L209
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+ * @see https://www.chinesestandard.net/PDF/English.aspx/GBT18284-2000
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+ */
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+final class Hanzi extends QRDataModeAbstract{
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+
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+ // GB2312, GB18030
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+ public const ENCODING = 'GB18030';
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+
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+ /**
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+ * @inheritDoc
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+ */
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+ protected static int $datamode = Mode::HANZI;
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+
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+ /**
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+ * @inheritDoc
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+ */
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+ protected function getCharCount():int{
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+ return mb_strlen($this->data, self::ENCODING);
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+ }
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+
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+ /**
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+ * @inheritDoc
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+ */
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+ public function getLengthInBits():int{
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+ return $this->getCharCount() * 13;
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+ }
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+
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+ /**
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+ * @inheritDoc
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+ */
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+ public static function convertEncoding(string $string):string{
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+ mb_detect_order([mb_internal_encoding(), 'UTF-8', 'GB2312', 'GB18030', 'CP936', 'EUC-CN', 'HZ']);
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+
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+ $detected = mb_detect_encoding($string, null, true);
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+
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+ if($detected === false){
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+ throw new QRCodeDataException('mb_detect_encoding error');
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+ }
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+
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+ if($detected === self::ENCODING){
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+ return $string;
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+ }
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+
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+ $string = mb_convert_encoding($string, self::ENCODING, $detected);
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+
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+ if(!is_string($string)){
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+ throw new QRCodeDataException('mb_convert_encoding error');
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+ }
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+
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+ return $string;
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+ }
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+
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+ /**
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+ * checks if a string qualifies as Hanzi/GB2312
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+ */
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+ public static function validateString(string $string):bool{
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+ $string = self::convertEncoding($string);
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+ $len = strlen($string);
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+
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+ if($len < 2 || $len % 2 !== 0){
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+ return false;
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+ }
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+
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+ for($i = 0; $i < $len; $i += 2){
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+ $byte1 = ord($string[$i]);
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+ $byte2 = ord($string[$i + 1]);
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+
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+ // byte 1 unused ranges
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+ if($byte1 < 0xa1 || ($byte1 > 0xa9 && $byte1 < 0xb0) || $byte1 > 0xf7){
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+ return false;
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+ }
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+
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+ // byte 2 unused ranges
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+ if($byte2 < 0xa1 || $byte2 > 0xfe){
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+ return false;
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+ }
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+
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+ }
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+
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+ return true;
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+ }
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+
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+ /**
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+ * @inheritDoc
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+ *
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+ * @throws \chillerlan\QRCode\Data\QRCodeDataException on an illegal character occurence
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+ */
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+ public function write(BitBuffer $bitBuffer, int $versionNumber):void{
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+
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+ $bitBuffer
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+ ->put($this::$datamode, 4)
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+ ->put($this->getCharCount(), $this::getLengthBits($versionNumber))
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+ ;
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+
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+ $len = strlen($this->data);
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+
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+ for($i = 0; $i + 1 < $len; $i += 2){
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+ $c = ((0xff & ord($this->data[$i])) << 8) | (0xff & ord($this->data[$i + 1]));
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+
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+ if($c >= 0xa1a1 && $c <= 0xaafe){
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+ $c -= 0x0a1a1;
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+ }
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+ elseif($c >= 0xb0a1 && $c <= 0xfafe){
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+ $c -= 0x0a6a1;
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+ }
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+ else{
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+ throw new QRCodeDataException(sprintf('illegal char at %d [%d]', $i + 1, $c));
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+ }
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+
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+ $bitBuffer->put(((($c >> 8) & 0xff) * 0x060) + ($c & 0xff), 13);
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+ }
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+
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+ if($i < $len){
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+ throw new QRCodeDataException(sprintf('illegal char at %d', $i + 1));
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+ }
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+
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+ }
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+
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+ /**
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+ * See specification GBT 18284-2000
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+ *
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+ * @throws \chillerlan\QRCode\Data\QRCodeDataException
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+ */
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+ public static function decodeSegment(BitBuffer $bitBuffer, int $versionNumber):string{
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+ $length = $bitBuffer->read(self::getLengthBits($versionNumber));
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+
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+ if($bitBuffer->available() < $length * 13){
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+ throw new QRCodeDataException('not enough bits available');
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+ }
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+
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+ // Each character will require 2 bytes. Read the characters as 2-byte pairs and decode as GB2312 afterwards
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+ $buffer = [];
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+ $offset = 0;
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+
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+ while($length > 0){
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+ // Each 13 bits encodes a 2-byte character
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+ $twoBytes = $bitBuffer->read(13);
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+ $assembledTwoBytes = (($twoBytes / 0x060) << 8) | ($twoBytes % 0x060);
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+
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+ $assembledTwoBytes += ($assembledTwoBytes < 0x00a00) // 0x003BF
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+ ? 0x0a1a1 // In the 0xA1A1 to 0xAAFE range
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+ : 0x0a6a1; // In the 0xB0A1 to 0xFAFE range
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+
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+ $buffer[$offset] = chr(0xff & ($assembledTwoBytes >> 8));
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+ $buffer[$offset + 1] = chr(0xff & $assembledTwoBytes);
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+ $offset += 2;
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+ $length--;
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+ }
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+
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+ return mb_convert_encoding(implode($buffer), mb_internal_encoding(), self::ENCODING);
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+ }
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+
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+}
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