248 lines
7.4 KiB
JavaScript
248 lines
7.4 KiB
JavaScript
/* eslint-env mocha */
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/* eslint prefer-arrow-callback: "off" */
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'use strict';
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const assert = require('./util/assert');
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const {U64, I64} = require('n64');
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const base58 = require('bstring/lib/base58');
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const encoding = require('bufio/lib/encoding');
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const Amount = require('../lib/btc/amount');
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const Validator = require('bval/lib/validator');
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const fixed = require('../lib/utils/fixed');
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const base58Tests = [
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['', ''],
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['61', '2g'],
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['626262', 'a3gV'],
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['636363', 'aPEr'],
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[
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'73696d706c792061206c6f6e6720737472696e67',
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'2cFupjhnEsSn59qHXstmK2ffpLv2'
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],
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[
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'00eb15231dfceb60925886b67d065299925915aeb172c06647',
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'1NS17iag9jJgTHD1VXjvLCEnZuQ3rJDE9L'
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],
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['516b6fcd0f', 'ABnLTmg'],
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['bf4f89001e670274dd', '3SEo3LWLoPntC'],
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['572e4794', '3EFU7m'],
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['ecac89cad93923c02321', 'EJDM8drfXA6uyA'],
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['10c8511e', 'Rt5zm'],
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['00000000000000000000', '1111111111']
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];
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const unsigned = [
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new U64('ffeeffee', 16),
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new U64('001fffeeffeeffee', 16),
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new U64('eeffeeff', 16),
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new U64('001feeffeeffeeff', 16),
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new U64(0),
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new U64(1)
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];
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const signed = [
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new I64('ffeeffee', 16),
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new I64('001fffeeffeeffee', 16),
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new I64('eeffeeff', 16),
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new I64('001feeffeeffeeff', 16),
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new I64(0),
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new I64(1),
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new I64('ffeeffee', 16).ineg(),
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new I64('001fffeeffeeffee', 16).ineg(),
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new I64('eeffeeff', 16).ineg(),
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new I64('001feeffeeffeeff', 16).ineg(),
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new I64(0).ineg(),
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new I64(1).ineg()
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];
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describe('Utils', function() {
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it('should encode/decode base58', () => {
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const buf = Buffer.from('000000deadbeef', 'hex');
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const str = base58.encode(buf);
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assert.strictEqual(str, '1116h8cQN');
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assert.bufferEqual(base58.decode(str), buf);
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for (const [hex, b58] of base58Tests) {
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const data = Buffer.from(hex, 'hex');
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assert.strictEqual(base58.encode(data), b58);
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assert.bufferEqual(base58.decode(b58), data);
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}
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});
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it('should convert satoshi to btc', () => {
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assert.strictEqual(Amount.btc(5460), '0.0000546');
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assert.strictEqual(Amount.btc(54678 * 1000000), '546.78');
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assert.strictEqual(Amount.btc(5460 * 10000000), '546.0');
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});
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it('should convert btc to satoshi', () => {
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assert.strictEqual(Amount.value('0.0000546'), 5460);
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assert.strictEqual(Amount.value('546.78'), 54678 * 1000000);
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assert.strictEqual(Amount.value('546'), 5460 * 10000000);
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assert.strictEqual(Amount.value('546.0'), 5460 * 10000000);
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assert.strictEqual(Amount.value('546.0000'), 5460 * 10000000);
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assert.doesNotThrow(() => {
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Amount.value('546.00000000000000000');
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});
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assert.throws(() => {
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Amount.value('546.00000000000000001');
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});
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assert.doesNotThrow(() => {
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Amount.value('90071992.54740991');
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});
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assert.doesNotThrow(() => {
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Amount.value('090071992.547409910');
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});
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assert.throws(() => {
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Amount.value('90071992.54740992');
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});
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assert.throws(() => {
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Amount.value('190071992.54740991');
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});
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assert.strictEqual(0.15645647 * 1e8, 15645646.999999998);
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assert.strictEqual(parseFloat('0.15645647') * 1e8, 15645646.999999998);
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assert.strictEqual(15645647 / 1e8, 0.15645647);
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assert.strictEqual(fixed.decode('0.15645647', 8), 15645647);
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assert.strictEqual(fixed.encode(15645647, 8), '0.15645647');
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assert.strictEqual(fixed.fromFloat(0.15645647, 8), 15645647);
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assert.strictEqual(fixed.toFloat(15645647, 8), 0.15645647);
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});
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it('should write/read new varints', () => {
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/*
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* 0: [0x00] 256: [0x81 0x00]
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* 1: [0x01] 16383: [0xFE 0x7F]
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* 127: [0x7F] 16384: [0xFF 0x00]
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* 128: [0x80 0x00] 16511: [0x80 0xFF 0x7F]
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* 255: [0x80 0x7F] 65535: [0x82 0xFD 0x7F]
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* 2^32: [0x8E 0xFE 0xFE 0xFF 0x00]
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*/
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let b = Buffer.alloc(1, 0xff);
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encoding.writeVarint2(b, 0, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 0);
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assert.deepEqual(b, [0]);
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b = Buffer.alloc(1, 0xff);
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encoding.writeVarint2(b, 1, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 1);
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assert.deepEqual(b, [1]);
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b = Buffer.alloc(1, 0xff);
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encoding.writeVarint2(b, 127, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 127);
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assert.deepEqual(b, [0x7f]);
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b = Buffer.alloc(2, 0xff);
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encoding.writeVarint2(b, 128, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 128);
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assert.deepEqual(b, [0x80, 0x00]);
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b = Buffer.alloc(2, 0xff);
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encoding.writeVarint2(b, 255, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 255);
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assert.deepEqual(b, [0x80, 0x7f]);
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b = Buffer.alloc(2, 0xff);
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encoding.writeVarint2(b, 16383, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 16383);
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assert.deepEqual(b, [0xfe, 0x7f]);
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b = Buffer.alloc(2, 0xff);
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encoding.writeVarint2(b, 16384, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 16384);
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assert.deepEqual(b, [0xff, 0x00]);
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b = Buffer.alloc(3, 0xff);
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encoding.writeVarint2(b, 16511, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 16511);
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assert.deepEqual(b.slice(0, 2), [0xff, 0x7f]);
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// assert.deepEqual(b, [0x80, 0xff, 0x7f]);
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b = Buffer.alloc(3, 0xff);
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encoding.writeVarint2(b, 65535, 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, 65535);
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assert.deepEqual(b, [0x82, 0xfe, 0x7f]);
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// assert.deepEqual(b, [0x82, 0xfd, 0x7f]);
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b = Buffer.alloc(5, 0xff);
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encoding.writeVarint2(b, Math.pow(2, 32), 0);
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assert.strictEqual(encoding.readVarint2(b, 0).value, Math.pow(2, 32));
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assert.deepEqual(b, [0x8e, 0xfe, 0xfe, 0xff, 0x00]);
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});
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for (const num of unsigned) {
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const bits = num.bitLength();
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it(`should write+read a ${bits} bit unsigned int`, () => {
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const buf1 = Buffer.allocUnsafe(8);
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const buf2 = Buffer.allocUnsafe(8);
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encoding.writeU64N(buf1, num, 0);
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encoding.writeU64(buf2, num.toNumber(), 0);
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assert.bufferEqual(buf1, buf2);
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const n1 = encoding.readU64N(buf1, 0);
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const n2 = encoding.readU64(buf2, 0);
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assert.strictEqual(n1.toNumber(), n2);
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});
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}
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for (const num of signed) {
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const bits = num.bitLength();
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const sign = num.isNeg() ? 'negative' : 'positive';
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it(`should write+read a ${bits} bit ${sign} int`, () => {
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const buf1 = Buffer.allocUnsafe(8);
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const buf2 = Buffer.allocUnsafe(8);
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encoding.writeI64N(buf1, num, 0);
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encoding.writeI64(buf2, num.toNumber(), 0);
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assert.bufferEqual(buf1, buf2);
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const n1 = encoding.readI64N(buf1, 0);
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const n2 = encoding.readI64(buf2, 0);
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assert.strictEqual(n1.toNumber(), n2);
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});
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it(`should write+read a ${bits} bit ${sign} int as unsigned`, () => {
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const buf1 = Buffer.allocUnsafe(8);
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const buf2 = Buffer.allocUnsafe(8);
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encoding.writeU64N(buf1, num.toU64(), 0);
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encoding.writeU64(buf2, num.toNumber(), 0);
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assert.bufferEqual(buf1, buf2);
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const n1 = encoding.readU64N(buf1, 0);
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if (num.isNeg()) {
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assert.throws(() => encoding.readU64(buf2, 0));
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} else {
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const n2 = encoding.readU64(buf2, 0);
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assert.strictEqual(n1.toNumber(), n2);
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}
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});
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}
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it('should validate integers 0 and 1 as booleans', () => {
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const validator = new Validator({
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shouldBeTrue: 1,
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shouldBeFalse: 0
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});
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assert.strictEqual(validator.bool('shouldBeTrue'), true);
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assert.strictEqual(validator.bool('shouldBeFalse'), false);
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});
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});
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