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a1f91dfe26
Support unicode better by using custom base64 library for encoding and decoding.
134 lines
4.6 KiB
JavaScript
134 lines
4.6 KiB
JavaScript
/**
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* Created by Jacob Strieb
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* May 2020
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*/
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var b64 = (function() {
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// Generate a dictionary with {key: val} as {character: index in input string}
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function generateIndexDict(a) {
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let result = {}
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for (let i = 0; i < a.length; i++) {
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result[a[i]] = i;
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}
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return result;
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}
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// Decode URL safe even though it is not the primary encoding mechanism
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const _a = "ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/";
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const _aRev = generateIndexDict(_a);
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_aRev["-"] = _aRev["+"];
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_aRev["_"] = _aRev["/"];
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const _enc = new TextEncoder("utf-8");
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const _dec = new TextDecoder("utf-8");
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return {
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// Encode a string as base64
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decode: function(s) {
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return this.binaryToAscii(this.base64ToBinary(s));
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},
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// Decode base64 to a string
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encode: function(s) {
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return this.binaryToBase64(this.asciiToBinary(s));
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},
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// Convert a string to a Uint8Array
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asciiToBinary: function(text) {
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return _enc.encode(text);
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},
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// Convert a Uint8Array to a string
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binaryToAscii: function(binary) {
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return _dec.decode(binary);
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},
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// Return a base64-encoded string from a Uint8Array input
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binaryToBase64: function(originalBytes) {
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// Pad the output array to a multiple of 3 bytes
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let length = originalBytes.length;
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let added = (length % 3 == 0) ? 0 : (3 - length % 3);
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let bytes = new Uint8Array(length + added);
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bytes.set(originalBytes);
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let output = ""
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for (let i = 0; i < bytes.length; i += 3) {
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// Convert 3 8-bit bytes into 4 6-bit indices and get a character from
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// the master list based on each 6-bit index
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// 3 x 8-bit: |------ --|---- ----|-- ------|
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// => 4 x 6-bit: |------|-- ----|---- --|------|
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// Get the first 6 bits of the first byte
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output += _a[ bytes[i] >>> 2 ];
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// Merge the end 2 bits of the first byte with the first 4 of the second
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output += _a[ ((bytes[i] & 0x3) << 4) | (bytes[i + 1] >>> 4) ];
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// Merge the end 4 bits of the second byte with the first 2 of the third
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output += _a[ ((bytes[i + 1] & 0xF) << 2) | (bytes[i + 2] >>> 6) ];
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// Get the last 6 bits of the third byte
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output += _a[ bytes[i + 2] & 0x3F ];
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}
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// Turn the final "A" characters into "=" depending on necessary padding
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if (added > 0) {
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output = output.slice(0, -added) + ("=".repeat(added));
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}
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return output;
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},
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// Takes a Base64 encoded string and returns a decoded Uint8Array. Throws
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// an error if the input string does not appear to be a valid base64
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// encoding. Attempts to add padding to un-padded base64 strings.
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base64ToBinary: function(s) {
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let bytes = []
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// Base64 strings have at most 2 padding characters to make their length
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// a multiple of 4, so they could be missing up to 2 characters and still
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// be valid. But if 3 padding characters would be needed, the input
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// cannot be valid. Try and add padding characters if necessary/possible.
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if (s.length % 4 == 1) {
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throw "Invalid base64 input";
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} else if (s.length % 4 != 0) {
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s += "=".repeat(4 - (s.length % 4));
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}
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for (let i = 0; i <= (s.length - 4); i += 4) {
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// Check that each character in this group of 4 is valid
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for (let j = 0; j < 4; j++) {
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if (s[i + j] != "=" && !(s[i + j] in _aRev)) {
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throw "Invalid base64 input";
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} else if (s[i + j] == "=" && Math.abs(s.length - (i + j)) > 2) {
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throw "Invalid base64 input";
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}
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}
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// Convert 4 6-bit indices into 3 8-bit bytes by finding the index of
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// each 6-bit character in the master list and combining
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// 4 x 6-bit: |------|-- ----|---- --|------|
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// => 3 x 8-bit: |------ --|---- ----|-- ------|
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// Get all 6 bits of the first byte and first 2 bits of the second byte
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bytes.push((_aRev[s[i]] << 2) | (_aRev[s[i + 1]] >>> 4));
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if (s[i + 2] != "=") {
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// If not padding, merge end 4 bits of the second byte and first 4 of
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// the third
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bytes.push(((_aRev[s[i + 1]] & 0xF) << 4) | (_aRev[s[i + 2]] >>> 2));
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}
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if (s[i + 3] != "=") {
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// If not padding, take the last 2 bits of the third byte and all 6 of
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// the fourth. Note that if the fourth byte is padding, then certainly
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// the third byte is, so we only have to check the fourth
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bytes.push(((_aRev[s[i + 2]] & 0x3) << 6) | _aRev[s[i + 3]]);
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}
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}
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return new Uint8Array(bytes);
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}
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}
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})();
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