mirror of
https://github.com/denoland/deno.git
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133 lines
4.2 KiB
TypeScript
133 lines
4.2 KiB
TypeScript
// Copyright 2018-2020 the Deno authors. All rights reserved. MIT license.
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// This module is browser compatible.
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export type Ascii85Standard = "Adobe" | "btoa" | "RFC 1924" | "Z85";
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/**
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* encoding/decoding options
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* @property standard - characterset and delimiter (if supported and used). Defaults to Adobe
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* @property delimiter - whether to use a delimiter (if supported) - "<~" and "~>" by default
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*/
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export interface Ascii85Options {
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standard?: Ascii85Standard;
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delimiter?: boolean;
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}
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const rfc1924 =
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"0123456789ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz!#$%&()*+-;<=>?@^_`{|}~";
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const Z85 =
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"0123456789abcdefghijklmnopqrstuvwxyzABCDEFGHIJKLMNOPQRSTUVWXYZ.-:+=^!/*?&<>()[]{}@%$#";
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/**
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* Encodes a given Uint8Array into ascii85, supports multiple standards
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* @param uint8 input to encode
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* @param [options] encoding options
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* @param [options.standard=Adobe] encoding standard (Adobe, btoa, RFC 1924 or Z85)
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* @param [options.delimiter] whether to use a delimiter, if supported by encoding standard
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*/
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export function encode(uint8: Uint8Array, options?: Ascii85Options): string {
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const standard = options?.standard ?? "Adobe";
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let output: string[] = [],
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v: number,
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n = 0,
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difference = 0;
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if (uint8.length % 4 !== 0) {
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const tmp = uint8;
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difference = 4 - (tmp.length % 4);
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uint8 = new Uint8Array(tmp.length + difference);
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uint8.set(tmp);
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}
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const view = new DataView(uint8.buffer);
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for (let i = 0, len = uint8.length; i < len; i += 4) {
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v = view.getUint32(i);
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// Adobe and btoa standards compress 4 zeroes to single "z" character
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if (
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(standard === "Adobe" || standard === "btoa") &&
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v === 0 &&
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i < len - difference - 3
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) {
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output[n++] = "z";
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continue;
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}
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// btoa compresses 4 spaces - that is, bytes equal to 32 - into single "y" character
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if (standard === "btoa" && v === 538976288) {
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output[n++] = "y";
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continue;
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}
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for (let j = 4; j >= 0; j--) {
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output[n + j] = String.fromCharCode((v % 85) + 33);
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v = Math.trunc(v / 85);
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}
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n += 5;
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}
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switch (standard) {
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case "Adobe":
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if (options?.delimiter) {
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return `<~${output.slice(0, output.length - difference).join("")}~>`;
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}
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break;
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case "btoa":
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if (options?.delimiter) {
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return `xbtoa Begin\n${
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output
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.slice(0, output.length - difference)
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.join("")
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}\nxbtoa End`;
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}
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break;
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case "RFC 1924":
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output = output.map((val) => rfc1924[val.charCodeAt(0) - 33]);
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break;
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case "Z85":
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output = output.map((val) => Z85[val.charCodeAt(0) - 33]);
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break;
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}
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return output.slice(0, output.length - difference).join("");
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}
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/**
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* Decodes a given ascii85 encoded string.
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* @param ascii85 input to decode
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* @param [options] decoding options
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* @param [options.standard=Adobe] encoding standard used in the input string (Adobe, btoa, RFC 1924 or Z85)
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*/
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export function decode(ascii85: string, options?: Ascii85Options): Uint8Array {
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const encoding = options?.standard ?? "Adobe";
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// translate all encodings to most basic adobe/btoa one and decompress some special characters ("z" and "y")
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switch (encoding) {
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case "Adobe":
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ascii85 = ascii85.replaceAll(/(<~|~>)/g, "").replaceAll("z", "!!!!!");
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break;
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case "btoa":
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ascii85 = ascii85
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.replaceAll(/(xbtoa Begin|xbtoa End|\n)/g, "")
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.replaceAll("z", "!!!!!")
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.replaceAll("y", "+<VdL");
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break;
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case "RFC 1924":
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ascii85 = ascii85.replaceAll(
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/./g,
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(match) => String.fromCharCode(rfc1924.indexOf(match) + 33),
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);
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break;
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case "Z85":
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ascii85 = ascii85.replaceAll(
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/./g,
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(match) => String.fromCharCode(Z85.indexOf(match) + 33),
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);
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break;
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}
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//remove all invalid characters
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ascii85 = ascii85.replaceAll(/[^!-u]/g, "");
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const len = ascii85.length,
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output = new Uint8Array(len + 4 - (len % 4));
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const view = new DataView(output.buffer);
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let v = 0,
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n = 0,
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max = 0;
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for (let i = 0; i < len;) {
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for (max += 5; i < max; i++) {
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v = v * 85 + (i < len ? ascii85.charCodeAt(i) : 117) - 33;
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}
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view.setUint32(n, v);
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v = 0;
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n += 4;
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}
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return output.slice(0, Math.trunc(len * 0.8));
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}
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