248 lines
9.3 KiB
JavaScript
248 lines
9.3 KiB
JavaScript
"use strict";
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import { arrayify } from "@ethersproject/bytes";
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import { Logger } from "@ethersproject/logger";
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import { version } from "./_version";
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const logger = new Logger(version);
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///////////////////////////////
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export var UnicodeNormalizationForm;
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(function (UnicodeNormalizationForm) {
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UnicodeNormalizationForm["current"] = "";
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UnicodeNormalizationForm["NFC"] = "NFC";
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UnicodeNormalizationForm["NFD"] = "NFD";
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UnicodeNormalizationForm["NFKC"] = "NFKC";
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UnicodeNormalizationForm["NFKD"] = "NFKD";
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})(UnicodeNormalizationForm || (UnicodeNormalizationForm = {}));
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;
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export var Utf8ErrorReason;
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(function (Utf8ErrorReason) {
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// A continuation byte was present where there was nothing to continue
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// - offset = the index the codepoint began in
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Utf8ErrorReason["UNEXPECTED_CONTINUE"] = "unexpected continuation byte";
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// An invalid (non-continuation) byte to start a UTF-8 codepoint was found
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// - offset = the index the codepoint began in
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Utf8ErrorReason["BAD_PREFIX"] = "bad codepoint prefix";
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// The string is too short to process the expected codepoint
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// - offset = the index the codepoint began in
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Utf8ErrorReason["OVERRUN"] = "string overrun";
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// A missing continuation byte was expected but not found
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// - offset = the index the continuation byte was expected at
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Utf8ErrorReason["MISSING_CONTINUE"] = "missing continuation byte";
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// The computed code point is outside the range for UTF-8
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// - offset = start of this codepoint
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// - badCodepoint = the computed codepoint; outside the UTF-8 range
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Utf8ErrorReason["OUT_OF_RANGE"] = "out of UTF-8 range";
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// UTF-8 strings may not contain UTF-16 surrogate pairs
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// - offset = start of this codepoint
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// - badCodepoint = the computed codepoint; inside the UTF-16 surrogate range
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Utf8ErrorReason["UTF16_SURROGATE"] = "UTF-16 surrogate";
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// The string is an overlong reperesentation
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// - offset = start of this codepoint
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// - badCodepoint = the computed codepoint; already bounds checked
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Utf8ErrorReason["OVERLONG"] = "overlong representation";
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})(Utf8ErrorReason || (Utf8ErrorReason = {}));
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;
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function errorFunc(reason, offset, bytes, output, badCodepoint) {
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return logger.throwArgumentError(`invalid codepoint at offset ${offset}; ${reason}`, "bytes", bytes);
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}
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function ignoreFunc(reason, offset, bytes, output, badCodepoint) {
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// If there is an invalid prefix (including stray continuation), skip any additional continuation bytes
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if (reason === Utf8ErrorReason.BAD_PREFIX || reason === Utf8ErrorReason.UNEXPECTED_CONTINUE) {
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let i = 0;
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for (let o = offset + 1; o < bytes.length; o++) {
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if (bytes[o] >> 6 !== 0x02) {
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break;
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}
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i++;
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}
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return i;
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}
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// This byte runs us past the end of the string, so just jump to the end
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// (but the first byte was read already read and therefore skipped)
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if (reason === Utf8ErrorReason.OVERRUN) {
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return bytes.length - offset - 1;
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}
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// Nothing to skip
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return 0;
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}
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function replaceFunc(reason, offset, bytes, output, badCodepoint) {
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// Overlong representations are otherwise "valid" code points; just non-deistingtished
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if (reason === Utf8ErrorReason.OVERLONG) {
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output.push(badCodepoint);
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return 0;
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}
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// Put the replacement character into the output
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output.push(0xfffd);
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// Otherwise, process as if ignoring errors
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return ignoreFunc(reason, offset, bytes, output, badCodepoint);
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}
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// Common error handing strategies
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export const Utf8ErrorFuncs = Object.freeze({
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error: errorFunc,
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ignore: ignoreFunc,
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replace: replaceFunc
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});
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// http://stackoverflow.com/questions/13356493/decode-utf-8-with-javascript#13691499
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function getUtf8CodePoints(bytes, onError) {
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if (onError == null) {
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onError = Utf8ErrorFuncs.error;
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}
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bytes = arrayify(bytes);
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const result = [];
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let i = 0;
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// Invalid bytes are ignored
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while (i < bytes.length) {
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const c = bytes[i++];
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// 0xxx xxxx
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if (c >> 7 === 0) {
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result.push(c);
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continue;
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}
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// Multibyte; how many bytes left for this character?
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let extraLength = null;
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let overlongMask = null;
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// 110x xxxx 10xx xxxx
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if ((c & 0xe0) === 0xc0) {
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extraLength = 1;
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overlongMask = 0x7f;
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// 1110 xxxx 10xx xxxx 10xx xxxx
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}
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else if ((c & 0xf0) === 0xe0) {
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extraLength = 2;
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overlongMask = 0x7ff;
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// 1111 0xxx 10xx xxxx 10xx xxxx 10xx xxxx
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}
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else if ((c & 0xf8) === 0xf0) {
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extraLength = 3;
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overlongMask = 0xffff;
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}
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else {
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if ((c & 0xc0) === 0x80) {
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i += onError(Utf8ErrorReason.UNEXPECTED_CONTINUE, i - 1, bytes, result);
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}
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else {
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i += onError(Utf8ErrorReason.BAD_PREFIX, i - 1, bytes, result);
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}
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continue;
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}
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// Do we have enough bytes in our data?
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if (i - 1 + extraLength >= bytes.length) {
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i += onError(Utf8ErrorReason.OVERRUN, i - 1, bytes, result);
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continue;
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}
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// Remove the length prefix from the char
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let res = c & ((1 << (8 - extraLength - 1)) - 1);
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for (let j = 0; j < extraLength; j++) {
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let nextChar = bytes[i];
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// Invalid continuation byte
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if ((nextChar & 0xc0) != 0x80) {
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i += onError(Utf8ErrorReason.MISSING_CONTINUE, i, bytes, result);
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res = null;
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break;
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}
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;
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res = (res << 6) | (nextChar & 0x3f);
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i++;
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}
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// See above loop for invalid contimuation byte
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if (res === null) {
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continue;
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}
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// Maximum code point
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if (res > 0x10ffff) {
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i += onError(Utf8ErrorReason.OUT_OF_RANGE, i - 1 - extraLength, bytes, result, res);
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continue;
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}
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// Reserved for UTF-16 surrogate halves
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if (res >= 0xd800 && res <= 0xdfff) {
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i += onError(Utf8ErrorReason.UTF16_SURROGATE, i - 1 - extraLength, bytes, result, res);
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continue;
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}
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// Check for overlong sequences (more bytes than needed)
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if (res <= overlongMask) {
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i += onError(Utf8ErrorReason.OVERLONG, i - 1 - extraLength, bytes, result, res);
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continue;
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}
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result.push(res);
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}
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return result;
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}
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// http://stackoverflow.com/questions/18729405/how-to-convert-utf8-string-to-byte-array
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export function toUtf8Bytes(str, form = UnicodeNormalizationForm.current) {
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if (form != UnicodeNormalizationForm.current) {
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logger.checkNormalize();
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str = str.normalize(form);
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}
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let result = [];
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for (let i = 0; i < str.length; i++) {
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const c = str.charCodeAt(i);
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if (c < 0x80) {
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result.push(c);
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}
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else if (c < 0x800) {
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result.push((c >> 6) | 0xc0);
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result.push((c & 0x3f) | 0x80);
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}
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else if ((c & 0xfc00) == 0xd800) {
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i++;
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const c2 = str.charCodeAt(i);
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if (i >= str.length || (c2 & 0xfc00) !== 0xdc00) {
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throw new Error("invalid utf-8 string");
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}
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// Surrogate Pair
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const pair = 0x10000 + ((c & 0x03ff) << 10) + (c2 & 0x03ff);
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result.push((pair >> 18) | 0xf0);
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result.push(((pair >> 12) & 0x3f) | 0x80);
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result.push(((pair >> 6) & 0x3f) | 0x80);
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result.push((pair & 0x3f) | 0x80);
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}
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else {
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result.push((c >> 12) | 0xe0);
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result.push(((c >> 6) & 0x3f) | 0x80);
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result.push((c & 0x3f) | 0x80);
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}
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}
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return arrayify(result);
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}
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;
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function escapeChar(value) {
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const hex = ("0000" + value.toString(16));
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return "\\u" + hex.substring(hex.length - 4);
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}
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export function _toEscapedUtf8String(bytes, onError) {
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return '"' + getUtf8CodePoints(bytes, onError).map((codePoint) => {
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if (codePoint < 256) {
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switch (codePoint) {
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case 8: return "\\b";
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case 9: return "\\t";
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case 10: return "\\n";
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case 13: return "\\r";
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case 34: return "\\\"";
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case 92: return "\\\\";
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}
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if (codePoint >= 32 && codePoint < 127) {
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return String.fromCharCode(codePoint);
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}
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}
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if (codePoint <= 0xffff) {
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return escapeChar(codePoint);
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}
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codePoint -= 0x10000;
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return escapeChar(((codePoint >> 10) & 0x3ff) + 0xd800) + escapeChar((codePoint & 0x3ff) + 0xdc00);
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}).join("") + '"';
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}
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export function _toUtf8String(codePoints) {
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return codePoints.map((codePoint) => {
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if (codePoint <= 0xffff) {
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return String.fromCharCode(codePoint);
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}
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codePoint -= 0x10000;
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return String.fromCharCode((((codePoint >> 10) & 0x3ff) + 0xd800), ((codePoint & 0x3ff) + 0xdc00));
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}).join("");
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}
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export function toUtf8String(bytes, onError) {
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return _toUtf8String(getUtf8CodePoints(bytes, onError));
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}
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export function toUtf8CodePoints(str, form = UnicodeNormalizationForm.current) {
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return getUtf8CodePoints(toUtf8Bytes(str, form));
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}
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//# sourceMappingURL=utf8.js.map
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