| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345 | package chardetimport (	"errors"	"math")type recognizerMultiByte struct {	charset     string	language    string	decoder     charDecoder	commonChars []uint16}type charDecoder interface {	DecodeOneChar([]byte) (c uint16, remain []byte, err error)}func (r *recognizerMultiByte) Match(input *recognizerInput) (output recognizerOutput) {	return recognizerOutput{		Charset:    r.charset,		Language:   r.language,		Confidence: r.matchConfidence(input),	}}func (r *recognizerMultiByte) matchConfidence(input *recognizerInput) int {	raw := input.raw	var c uint16	var err error	var totalCharCount, badCharCount, singleByteCharCount, doubleByteCharCount, commonCharCount int	for c, raw, err = r.decoder.DecodeOneChar(raw); len(raw) > 0; c, raw, err = r.decoder.DecodeOneChar(raw) {		totalCharCount++		if err != nil {			badCharCount++		} else if c <= 0xFF {			singleByteCharCount++		} else {			doubleByteCharCount++			if r.commonChars != nil && binarySearch(r.commonChars, c) {				commonCharCount++			}		}		if badCharCount >= 2 && badCharCount*5 >= doubleByteCharCount {			return 0		}	}	if doubleByteCharCount <= 10 && badCharCount == 0 {		if doubleByteCharCount == 0 && totalCharCount < 10 {			return 0		} else {			return 10		}	}	if doubleByteCharCount < 20*badCharCount {		return 0	}	if r.commonChars == nil {		confidence := 30 + doubleByteCharCount - 20*badCharCount		if confidence > 100 {			confidence = 100		}		return confidence	}	maxVal := math.Log(float64(doubleByteCharCount) / 4)	scaleFactor := 90 / maxVal	confidence := int(math.Log(float64(commonCharCount)+1)*scaleFactor + 10)	if confidence > 100 {		confidence = 100	}	if confidence < 0 {		confidence = 0	}	return confidence}func binarySearch(l []uint16, c uint16) bool {	start := 0	end := len(l) - 1	for start <= end {		mid := (start + end) / 2		if c == l[mid] {			return true		} else if c < l[mid] {			end = mid - 1		} else {			start = mid + 1		}	}	return false}var eobError = errors.New("End of input buffer")var badCharError = errors.New("Decode a bad char")type charDecoder_sjis struct {}func (charDecoder_sjis) DecodeOneChar(input []byte) (c uint16, remain []byte, err error) {	if len(input) == 0 {		return 0, nil, eobError	}	first := input[0]	c = uint16(first)	remain = input[1:]	if first <= 0x7F || (first > 0xA0 && first <= 0xDF) {		return	}	if len(remain) == 0 {		return c, remain, badCharError	}	second := remain[0]	remain = remain[1:]	c = c<<8 | uint16(second)	if (second >= 0x40 && second <= 0x7F) || (second >= 0x80 && second <= 0xFE) {	} else {		err = badCharError	}	return}var commonChars_sjis = []uint16{	0x8140, 0x8141, 0x8142, 0x8145, 0x815b, 0x8169, 0x816a, 0x8175, 0x8176, 0x82a0,	0x82a2, 0x82a4, 0x82a9, 0x82aa, 0x82ab, 0x82ad, 0x82af, 0x82b1, 0x82b3, 0x82b5,	0x82b7, 0x82bd, 0x82be, 0x82c1, 0x82c4, 0x82c5, 0x82c6, 0x82c8, 0x82c9, 0x82cc,	0x82cd, 0x82dc, 0x82e0, 0x82e7, 0x82e8, 0x82e9, 0x82ea, 0x82f0, 0x82f1, 0x8341,	0x8343, 0x834e, 0x834f, 0x8358, 0x835e, 0x8362, 0x8367, 0x8375, 0x8376, 0x8389,	0x838a, 0x838b, 0x838d, 0x8393, 0x8e96, 0x93fa, 0x95aa,}func newRecognizer_sjis() *recognizerMultiByte {	return &recognizerMultiByte{		"Shift_JIS",		"ja",		charDecoder_sjis{},		commonChars_sjis,	}}type charDecoder_euc struct {}func (charDecoder_euc) DecodeOneChar(input []byte) (c uint16, remain []byte, err error) {	if len(input) == 0 {		return 0, nil, eobError	}	first := input[0]	remain = input[1:]	c = uint16(first)	if first <= 0x8D {		return uint16(first), remain, nil	}	if len(remain) == 0 {		return 0, nil, eobError	}	second := remain[0]	remain = remain[1:]	c = c<<8 | uint16(second)	if first >= 0xA1 && first <= 0xFE {		if second < 0xA1 {			err = badCharError		}		return	}	if first == 0x8E {		if second < 0xA1 {			err = badCharError		}		return	}	if first == 0x8F {		if len(remain) == 0 {			return 0, nil, eobError		}		third := remain[0]		remain = remain[1:]		c = c<<0 | uint16(third)		if third < 0xa1 {			err = badCharError		}	}	return}var commonChars_euc_jp = []uint16{	0xa1a1, 0xa1a2, 0xa1a3, 0xa1a6, 0xa1bc, 0xa1ca, 0xa1cb, 0xa1d6, 0xa1d7, 0xa4a2,	0xa4a4, 0xa4a6, 0xa4a8, 0xa4aa, 0xa4ab, 0xa4ac, 0xa4ad, 0xa4af, 0xa4b1, 0xa4b3,	0xa4b5, 0xa4b7, 0xa4b9, 0xa4bb, 0xa4bd, 0xa4bf, 0xa4c0, 0xa4c1, 0xa4c3, 0xa4c4,	0xa4c6, 0xa4c7, 0xa4c8, 0xa4c9, 0xa4ca, 0xa4cb, 0xa4ce, 0xa4cf, 0xa4d0, 0xa4de,	0xa4df, 0xa4e1, 0xa4e2, 0xa4e4, 0xa4e8, 0xa4e9, 0xa4ea, 0xa4eb, 0xa4ec, 0xa4ef,	0xa4f2, 0xa4f3, 0xa5a2, 0xa5a3, 0xa5a4, 0xa5a6, 0xa5a7, 0xa5aa, 0xa5ad, 0xa5af,	0xa5b0, 0xa5b3, 0xa5b5, 0xa5b7, 0xa5b8, 0xa5b9, 0xa5bf, 0xa5c3, 0xa5c6, 0xa5c7,	0xa5c8, 0xa5c9, 0xa5cb, 0xa5d0, 0xa5d5, 0xa5d6, 0xa5d7, 0xa5de, 0xa5e0, 0xa5e1,	0xa5e5, 0xa5e9, 0xa5ea, 0xa5eb, 0xa5ec, 0xa5ed, 0xa5f3, 0xb8a9, 0xb9d4, 0xbaee,	0xbbc8, 0xbef0, 0xbfb7, 0xc4ea, 0xc6fc, 0xc7bd, 0xcab8, 0xcaf3, 0xcbdc, 0xcdd1,}var commonChars_euc_kr = []uint16{	0xb0a1, 0xb0b3, 0xb0c5, 0xb0cd, 0xb0d4, 0xb0e6, 0xb0ed, 0xb0f8, 0xb0fa, 0xb0fc,	0xb1b8, 0xb1b9, 0xb1c7, 0xb1d7, 0xb1e2, 0xb3aa, 0xb3bb, 0xb4c2, 0xb4cf, 0xb4d9,	0xb4eb, 0xb5a5, 0xb5b5, 0xb5bf, 0xb5c7, 0xb5e9, 0xb6f3, 0xb7af, 0xb7c2, 0xb7ce,	0xb8a6, 0xb8ae, 0xb8b6, 0xb8b8, 0xb8bb, 0xb8e9, 0xb9ab, 0xb9ae, 0xb9cc, 0xb9ce,	0xb9fd, 0xbab8, 0xbace, 0xbad0, 0xbaf1, 0xbbe7, 0xbbf3, 0xbbfd, 0xbcad, 0xbcba,	0xbcd2, 0xbcf6, 0xbdba, 0xbdc0, 0xbdc3, 0xbdc5, 0xbec6, 0xbec8, 0xbedf, 0xbeee,	0xbef8, 0xbefa, 0xbfa1, 0xbfa9, 0xbfc0, 0xbfe4, 0xbfeb, 0xbfec, 0xbff8, 0xc0a7,	0xc0af, 0xc0b8, 0xc0ba, 0xc0bb, 0xc0bd, 0xc0c7, 0xc0cc, 0xc0ce, 0xc0cf, 0xc0d6,	0xc0da, 0xc0e5, 0xc0fb, 0xc0fc, 0xc1a4, 0xc1a6, 0xc1b6, 0xc1d6, 0xc1df, 0xc1f6,	0xc1f8, 0xc4a1, 0xc5cd, 0xc6ae, 0xc7cf, 0xc7d1, 0xc7d2, 0xc7d8, 0xc7e5, 0xc8ad,}func newRecognizer_euc_jp() *recognizerMultiByte {	return &recognizerMultiByte{		"EUC-JP",		"ja",		charDecoder_euc{},		commonChars_euc_jp,	}}func newRecognizer_euc_kr() *recognizerMultiByte {	return &recognizerMultiByte{		"EUC-KR",		"ko",		charDecoder_euc{},		commonChars_euc_kr,	}}type charDecoder_big5 struct {}func (charDecoder_big5) DecodeOneChar(input []byte) (c uint16, remain []byte, err error) {	if len(input) == 0 {		return 0, nil, eobError	}	first := input[0]	remain = input[1:]	c = uint16(first)	if first <= 0x7F || first == 0xFF {		return	}	if len(remain) == 0 {		return c, nil, eobError	}	second := remain[0]	remain = remain[1:]	c = c<<8 | uint16(second)	if second < 0x40 || second == 0x7F || second == 0xFF {		err = badCharError	}	return}var commonChars_big5 = []uint16{	0xa140, 0xa141, 0xa142, 0xa143, 0xa147, 0xa149, 0xa175, 0xa176, 0xa440, 0xa446,	0xa447, 0xa448, 0xa451, 0xa454, 0xa457, 0xa464, 0xa46a, 0xa46c, 0xa477, 0xa4a3,	0xa4a4, 0xa4a7, 0xa4c1, 0xa4ce, 0xa4d1, 0xa4df, 0xa4e8, 0xa4fd, 0xa540, 0xa548,	0xa558, 0xa569, 0xa5cd, 0xa5e7, 0xa657, 0xa661, 0xa662, 0xa668, 0xa670, 0xa6a8,	0xa6b3, 0xa6b9, 0xa6d3, 0xa6db, 0xa6e6, 0xa6f2, 0xa740, 0xa751, 0xa759, 0xa7da,	0xa8a3, 0xa8a5, 0xa8ad, 0xa8d1, 0xa8d3, 0xa8e4, 0xa8fc, 0xa9c0, 0xa9d2, 0xa9f3,	0xaa6b, 0xaaba, 0xaabe, 0xaacc, 0xaafc, 0xac47, 0xac4f, 0xacb0, 0xacd2, 0xad59,	0xaec9, 0xafe0, 0xb0ea, 0xb16f, 0xb2b3, 0xb2c4, 0xb36f, 0xb44c, 0xb44e, 0xb54c,	0xb5a5, 0xb5bd, 0xb5d0, 0xb5d8, 0xb671, 0xb7ed, 0xb867, 0xb944, 0xbad8, 0xbb44,	0xbba1, 0xbdd1, 0xc2c4, 0xc3b9, 0xc440, 0xc45f,}func newRecognizer_big5() *recognizerMultiByte {	return &recognizerMultiByte{		"Big5",		"zh",		charDecoder_big5{},		commonChars_big5,	}}type charDecoder_gb_18030 struct {}func (charDecoder_gb_18030) DecodeOneChar(input []byte) (c uint16, remain []byte, err error) {	if len(input) == 0 {		return 0, nil, eobError	}	first := input[0]	remain = input[1:]	c = uint16(first)	if first <= 0x80 {		return	}	if len(remain) == 0 {		return 0, nil, eobError	}	second := remain[0]	remain = remain[1:]	c = c<<8 | uint16(second)	if first >= 0x81 && first <= 0xFE {		if (second >= 0x40 && second <= 0x7E) || (second >= 0x80 && second <= 0xFE) {			return		}		if second >= 0x30 && second <= 0x39 {			if len(remain) == 0 {				return 0, nil, eobError			}			third := remain[0]			remain = remain[1:]			if third >= 0x81 && third <= 0xFE {				if len(remain) == 0 {					return 0, nil, eobError				}				fourth := remain[0]				remain = remain[1:]				if fourth >= 0x30 && fourth <= 0x39 {					c = c<<16 | uint16(third)<<8 | uint16(fourth)					return				}			}		}		err = badCharError	}	return}var commonChars_gb_18030 = []uint16{	0xa1a1, 0xa1a2, 0xa1a3, 0xa1a4, 0xa1b0, 0xa1b1, 0xa1f1, 0xa1f3, 0xa3a1, 0xa3ac,	0xa3ba, 0xb1a8, 0xb1b8, 0xb1be, 0xb2bb, 0xb3c9, 0xb3f6, 0xb4f3, 0xb5bd, 0xb5c4,	0xb5e3, 0xb6af, 0xb6d4, 0xb6e0, 0xb7a2, 0xb7a8, 0xb7bd, 0xb7d6, 0xb7dd, 0xb8b4,	0xb8df, 0xb8f6, 0xb9ab, 0xb9c9, 0xb9d8, 0xb9fa, 0xb9fd, 0xbacd, 0xbba7, 0xbbd6,	0xbbe1, 0xbbfa, 0xbcbc, 0xbcdb, 0xbcfe, 0xbdcc, 0xbecd, 0xbedd, 0xbfb4, 0xbfc6,	0xbfc9, 0xc0b4, 0xc0ed, 0xc1cb, 0xc2db, 0xc3c7, 0xc4dc, 0xc4ea, 0xc5cc, 0xc6f7,	0xc7f8, 0xc8ab, 0xc8cb, 0xc8d5, 0xc8e7, 0xc9cf, 0xc9fa, 0xcab1, 0xcab5, 0xcac7,	0xcad0, 0xcad6, 0xcaf5, 0xcafd, 0xccec, 0xcdf8, 0xceaa, 0xcec4, 0xced2, 0xcee5,	0xcfb5, 0xcfc2, 0xcfd6, 0xd0c2, 0xd0c5, 0xd0d0, 0xd0d4, 0xd1a7, 0xd2aa, 0xd2b2,	0xd2b5, 0xd2bb, 0xd2d4, 0xd3c3, 0xd3d0, 0xd3fd, 0xd4c2, 0xd4da, 0xd5e2, 0xd6d0,}func newRecognizer_gb_18030() *recognizerMultiByte {	return &recognizerMultiByte{		"GB18030",		"zh",		charDecoder_gb_18030{},		commonChars_gb_18030,	}}
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