2022-01-04 10:21:08 +01:00
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// Copyright (c) 2019-2022 Alexander Medvednikov. All rights reserved.
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2019-06-23 04:21:30 +02:00
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// Use of this source code is governed by an MIT license
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// that can be found in the LICENSE file.
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2019-06-22 20:20:28 +02:00
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module builtin
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2019-09-15 14:36:05 +02:00
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pub fn utf8_char_len(b byte) int {
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2021-03-01 00:18:02 +01:00
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return ((0xe5000000 >> ((b >> 3) & 0x1e)) & 3) + 1
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2019-06-22 20:20:28 +02:00
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}
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// Convert utf32 to utf8
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// utf32 == Codepoint
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2019-06-27 13:14:59 +02:00
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pub fn utf32_to_str(code u32) string {
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2021-02-14 19:31:42 +01:00
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unsafe {
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2021-06-15 13:47:11 +02:00
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mut buffer := malloc_noscan(5)
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2021-08-13 17:37:34 +02:00
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res := utf32_to_str_no_malloc(code, buffer)
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if res.len == 0 {
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// the buffer was not used at all
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free(buffer)
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}
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return res
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2021-02-14 19:31:42 +01:00
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}
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2019-06-22 20:20:28 +02:00
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}
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2021-08-13 17:37:34 +02:00
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[manualfree; unsafe]
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pub fn utf32_to_str_no_malloc(code u32, buf &byte) string {
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2022-01-11 13:41:01 +01:00
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unsafe {
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len := utf32_decode_to_buffer(code, buf)
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if len == 0 {
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return ''
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}
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buf[len] = 0
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return tos(buf, len)
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}
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}
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[manualfree; unsafe]
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pub fn utf32_decode_to_buffer(code u32, buf &byte) int {
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2020-07-22 19:28:53 +02:00
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unsafe {
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2021-08-13 17:37:34 +02:00
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icode := int(code) // Prevents doing casts everywhere
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2022-04-15 13:45:52 +02:00
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mut buffer := &u8(buf)
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2021-03-01 00:18:02 +01:00
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if icode <= 127 {
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// 0x7F
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2022-04-15 13:45:52 +02:00
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buffer[0] = u8(icode)
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2022-01-11 13:41:01 +01:00
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return 1
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2021-03-01 00:18:02 +01:00
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} else if icode <= 2047 {
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// 0x7FF
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2022-04-15 13:45:52 +02:00
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buffer[0] = 192 | u8(icode >> 6) // 0xC0 - 110xxxxx
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buffer[1] = 128 | u8(icode & 63) // 0x80 - 0x3F - 10xxxxxx
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2022-01-11 13:41:01 +01:00
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return 2
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2021-03-01 00:18:02 +01:00
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} else if icode <= 65535 {
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// 0xFFFF
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2022-04-15 13:45:52 +02:00
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buffer[0] = 224 | u8(icode >> 12) // 0xE0 - 1110xxxx
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buffer[1] = 128 | (u8(icode >> 6) & 63) // 0x80 - 0x3F - 10xxxxxx
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buffer[2] = 128 | u8(icode & 63) // 0x80 - 0x3F - 10xxxxxx
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2022-01-11 13:41:01 +01:00
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return 3
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2020-07-22 19:28:53 +02:00
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}
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2021-03-01 00:18:02 +01:00
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// 0x10FFFF
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else if icode <= 1114111 {
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2022-04-15 13:45:52 +02:00
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buffer[0] = 240 | u8(icode >> 18) // 0xF0 - 11110xxx
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buffer[1] = 128 | (u8(icode >> 12) & 63) // 0x80 - 0x3F - 10xxxxxx
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buffer[2] = 128 | (u8(icode >> 6) & 63) // 0x80 - 0x3F - 10xxxxxx
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buffer[3] = 128 | u8(icode & 63) // 0x80 - 0x3F - 10xxxxxx
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2022-01-11 13:41:01 +01:00
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return 4
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2020-07-22 19:28:53 +02:00
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}
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2019-06-27 02:33:49 +02:00
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}
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2022-01-11 13:41:01 +01:00
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return 0
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2019-06-22 20:20:28 +02:00
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}
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// Convert utf8 to utf32
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2022-01-13 21:26:17 +01:00
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// the original implementation did not check for
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// valid utf8 in the string, and could result in
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// values greater than the utf32 spec
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// it has been replaced by `utf8_to_utf32` which
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// has an optional return type.
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//
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// this function is left for backward compatibility
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// it is used in vlib/builtin/string.v,
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// and also in vlib/v/gen/c/cgen.v
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2019-06-27 13:14:59 +02:00
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pub fn (_rune string) utf32_code() int {
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2022-01-13 21:26:17 +01:00
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return int(_rune.bytes().utf8_to_utf32() or {
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// error('more than one utf-8 rune found in this string')
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rune(0)
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})
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}
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// convert array of utf8 bytes to single utf32 value
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// will error if more than 4 bytes are submitted
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pub fn (_bytes []u8) utf8_to_utf32() ?rune {
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2022-01-13 21:26:17 +01:00
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if _bytes.len == 0 {
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2019-06-22 20:20:28 +02:00
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return 0
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}
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2022-01-13 21:26:17 +01:00
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// return ASCII unchanged
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if _bytes.len == 1 {
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return rune(_bytes[0])
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}
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if _bytes.len > 4 {
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return error('attempted to decode too many bytes, utf-8 is limited to four bytes maximum')
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2019-06-22 20:20:28 +02:00
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}
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2022-01-13 21:26:17 +01:00
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2022-04-15 13:45:52 +02:00
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mut b := u8(int(_bytes[0]))
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2022-01-13 21:26:17 +01:00
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b = b << _bytes.len
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mut res := rune(b)
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mut shift := 6 - _bytes.len
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for i := 1; i < _bytes.len; i++ {
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c := rune(_bytes[i])
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res = rune(res) << shift
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2019-11-13 19:14:37 +01:00
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res |= c & 63 // 0x3f
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2019-06-22 20:20:28 +02:00
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shift = 6
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}
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2022-01-13 21:26:17 +01:00
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return res
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2019-06-22 20:20:28 +02:00
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}
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2019-09-15 03:41:24 +02:00
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// Calculate length to read from the first byte
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fn utf8_len(c byte) int {
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2019-12-19 21:52:45 +01:00
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mut b := 0
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mut x := c
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2020-03-27 14:57:19 +01:00
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if (x & 240) != 0 {
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2019-12-19 21:52:45 +01:00
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// 0xF0
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x >>= 4
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2021-03-01 00:18:02 +01:00
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} else {
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2019-12-19 21:52:45 +01:00
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b += 4
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}
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2020-03-27 14:57:19 +01:00
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if (x & 12) != 0 {
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2019-12-19 21:52:45 +01:00
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// 0x0C
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x >>= 2
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2021-03-01 00:18:02 +01:00
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} else {
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2019-12-19 21:52:45 +01:00
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b += 2
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}
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2020-03-27 14:57:19 +01:00
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if (x & 2) == 0 {
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2019-12-19 21:52:45 +01:00
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// 0x02
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b++
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}
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return b
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2019-09-15 03:41:24 +02:00
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}
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2020-05-04 13:21:11 +02:00
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// Calculate string length for in number of codepoints
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2021-04-25 16:57:21 +02:00
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pub fn utf8_str_len(s string) int {
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2020-05-02 00:43:59 +02:00
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mut l := 0
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2021-04-25 16:57:21 +02:00
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mut i := 0
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for i < s.len {
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2020-05-02 00:43:59 +02:00
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l++
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2021-04-25 16:57:21 +02:00
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i += ((0xe5000000 >> ((unsafe { s.str[i] } >> 3) & 0x1e)) & 3) + 1
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2020-05-02 00:43:59 +02:00
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}
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return l
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}
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2020-05-04 13:21:11 +02:00
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// Calculate string length for formatting, i.e. number of "characters"
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2021-03-01 00:18:02 +01:00
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// This is simplified implementation. if you need specification compliant width,
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// use utf8.east_asian.display_width.
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pub fn utf8_str_visible_length(s string) int {
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2020-05-04 13:21:11 +02:00
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mut l := 0
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mut ul := 1
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2021-03-01 00:18:02 +01:00
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for i := 0; i < s.len; i += ul {
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c := unsafe { s.str[i] }
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2021-04-25 16:57:21 +02:00
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ul = ((0xe5000000 >> ((unsafe { s.str[i] } >> 3) & 0x1e)) & 3) + 1
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2020-05-04 13:21:11 +02:00
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if i + ul > s.len { // incomplete UTF-8 sequence
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return l
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}
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l++
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2021-04-25 16:57:21 +02:00
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// avoid the match if not needed
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if ul == 1 {
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continue
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}
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2021-03-01 00:18:02 +01:00
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// recognize combining characters and wide characters
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match ul {
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2 {
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r := u64((u16(c) << 8) | unsafe { s.str[i + 1] })
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if r >= 0xcc80 && r < 0xcdb0 {
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// diacritical marks
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l--
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}
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}
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3 {
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r := u64((u32(c) << 16) | unsafe { (u32(s.str[i + 1]) << 8) | s.str[i + 2] })
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// diacritical marks extended
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// diacritical marks supplement
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// diacritical marks for symbols
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if (r >= 0xe1aab0 && r <= 0xe1ac7f)
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|| (r >= 0xe1b780 && r <= 0xe1b87f)
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|| (r >= 0xe28390 && r <= 0xe2847f)
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|| (r >= 0xefb8a0 && r <= 0xefb8af) {
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// diacritical marks
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l--
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}
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// Hangru
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// CJK Unified Ideographics
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// Hangru
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// CJK
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else if (r >= 0xe18480 && r <= 0xe1859f)
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|| (r >= 0xe2ba80 && r <= 0xe2bf95)
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|| (r >= 0xe38080 && r <= 0xe4b77f)
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|| (r >= 0xe4b880 && r <= 0xea807f)
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|| (r >= 0xeaa5a0 && r <= 0xeaa79f)
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|| (r >= 0xeab080 && r <= 0xed9eaf)
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|| (r >= 0xefa480 && r <= 0xefac7f)
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|| (r >= 0xefb8b8 && r <= 0xefb9af) {
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// half marks
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l++
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}
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2020-05-04 13:21:11 +02:00
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}
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2021-03-01 00:18:02 +01:00
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4 {
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r := u64((u32(c) << 24) | unsafe {
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(u32(s.str[i + 1]) << 16) | (u32(s.str[i + 2]) << 8) | s.str[i + 3]
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})
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// Enclosed Ideographic Supplement
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// Emoji
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// CJK Unified Ideographs Extension B-G
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if (r >= 0x0f9f8880 && r <= 0xf09f8a8f)
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|| (r >= 0xf09f8c80 && r <= 0xf09f9c90)
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|| (r >= 0xf09fa490 && r <= 0xf09fa7af)
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2021-04-15 08:20:53 +02:00
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|| (r >= 0xf0a08080 && r <= 0xf180807f) {
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2021-03-01 00:18:02 +01:00
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l++
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}
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2020-05-04 13:21:11 +02:00
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}
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2021-03-01 00:18:02 +01:00
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else {}
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2020-05-04 13:21:11 +02:00
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}
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}
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return l
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}
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