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11069b8832
Also breaking changes are introduced to support returning the information about used bytes in encoding and decoding
166 lines
3.7 KiB
TypeScript
166 lines
3.7 KiB
TypeScript
// Copyright 2018-2023 the Deno authors. All rights reserved. MIT license.
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// Copyright 2020 Keith Cirkel. All rights reserved. MIT license.
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// This implementation is a port of https://deno.land/x/varint@v2.0.0 by @keithamus
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import { assertEquals, assertThrows } from "../testing/asserts.ts";
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import {
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decode,
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decode32,
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encode,
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MaxUInt64,
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MaxVarIntLen64,
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} from "./varint.ts";
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function encodeDecode(i: number | bigint) {
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const [buf, n] = encode(i, new Uint8Array(MaxVarIntLen64));
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const fn = (typeof i === "bigint") ? decode : decode32;
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const [j, m] = fn(buf);
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assertEquals(i, j, `${fn.name}(encode(${i})): ${i} !== ${j}`);
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assertEquals(n, m, `${fn.name}(encode(${i})): buffer lengths ${n} !== ${m}`);
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}
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Deno.test("VarInt decode manual", () => {
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assertEquals(decode(Uint8Array.of(172, 2)), [300n, 2]);
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});
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Deno.test("VarInt decode max size", () => {
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assertEquals(
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decode(Uint8Array.of(255, 255, 255, 255, 255, 255, 255, 255, 255, 1)),
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[18446744073709551615n, 10],
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);
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});
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Deno.test("VarInt decode overflow", () => {
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assertThrows(
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() => decode(Uint8Array.of(255, 255, 255, 255, 255, 255, 255, 255, 255, 2)),
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RangeError,
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);
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});
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Deno.test("VarInt decode with offset", () => {
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assertEquals(
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decode(
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Uint8Array.of(
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255,
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255,
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255,
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255,
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255,
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255,
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255,
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255,
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255,
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255,
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255,
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255,
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255,
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1,
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),
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4,
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),
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[18446744073709551615n, 14],
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);
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});
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Deno.test("VarInt decode32 manual", () => {
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assertEquals(decode32(Uint8Array.of(172, 2)), [300, 2]);
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});
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Deno.test("VarInt decode32 max size", () => {
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assertEquals(
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decode32(Uint8Array.of(255, 255, 255, 255, 15, 0, 0, 0, 0, 0)),
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[4294967295, 5],
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);
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});
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Deno.test("VarInt decode32 overflow", () => {
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assertThrows(
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() =>
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decode32(Uint8Array.of(255, 255, 255, 255, 255, 255, 255, 255, 15, 0)),
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RangeError,
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);
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});
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Deno.test("VarInt decode32 with offset", () => {
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assertEquals(
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decode32(Uint8Array.of(255, 255, 255, 255, 255, 255, 255, 255, 15, 0), 4),
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[4294967295, 9],
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);
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});
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Deno.test("VarInt encode manual", () => {
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assertEquals(encode(300, new Uint8Array(2)), [Uint8Array.of(172, 2), 2]);
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assertEquals(
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encode(4294967295),
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[Uint8Array.of(255, 255, 255, 255, 15), 5],
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);
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assertEquals(
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encode(18446744073709551615n),
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[Uint8Array.of(255, 255, 255, 255, 255, 255, 255, 255, 255, 1), 10],
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);
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});
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Deno.test("VarInt encode overflow with negative", () => {
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assertThrows(() => encode(-1), RangeError);
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});
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Deno.test("VarInt encode with offset", () => {
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let uint = new Uint8Array(3);
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assertEquals(
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encode(300, uint, 1),
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[Uint8Array.of(172, 2), 3],
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);
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assertEquals(uint, Uint8Array.of(0, 172, 2));
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uint = new Uint8Array(MaxVarIntLen64);
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uint[0] = uint[1] = uint[2] = 12;
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assertEquals(
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encode(4294967295, uint, 3),
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[Uint8Array.of(255, 255, 255, 255, 15), 8],
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);
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assertEquals(uint, Uint8Array.of(12, 12, 12, 255, 255, 255, 255, 15, 0, 0));
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});
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Deno.test("VarInt encode<->decode", () => {
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for (
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const i of [
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0n,
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1n,
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2n,
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10n,
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20n,
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63n,
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64n,
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65n,
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127n,
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128n,
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129n,
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255n,
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256n,
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257n,
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300n,
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18446744073709551615n,
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]
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) {
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encodeDecode(i);
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}
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for (let i = 0x7n; i < MaxUInt64; i <<= 1n) {
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encodeDecode(i);
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}
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});
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Deno.test("VarInt encode<->decode32", () => {
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for (
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const i of [
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0,
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1,
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2,
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10,
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20,
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63,
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64,
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65,
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127,
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128,
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129,
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255,
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256,
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257,
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300,
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4294967295,
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]
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) {
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encodeDecode(i);
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}
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for (let i = 0x7; i > 0; i <<= 1) {
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encodeDecode(i);
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}
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});
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