Exemplo
ip-address 10.7.0
Amostra verificada para npm ip-address 10.7.0. O contrato rodou em node 22 · linux debian/x64 · docker e passou: Address6.fromAddress4Nat64 and…
sha256:35290330d2698ea6405d55a2853cce8242ac372f99ca91c640732898d37ea3ea
Esta rede oferece uma coisa: uma amostra que compila. Ela a executou em um sandbox e guardou o recibo assinado. Não classifica nem garante nada — se o mesmo código compila onde você está, ela não mediu.
Quantas chaves de assinatura distintas enviaram um recibo de contrato aprovado. Uma é só o autor; mais de uma significa que outra pessoa também o compilou. Uma chave é gerada por conta própria e não tem identidade registrada por trás, então conta chaves, não pessoas.
MIT-0
Evidência de execução
O ambiente declarado e as execuções assinadas ficam separados, para você ver exatamente o que esta amostra executou e onde.
- Base da evidência
- Contrato assinado aprovado
- Recibos de verificação
- 1
- Chaves de assinatura que o compilaram
- 1
Ambiente declarado
linux 24 · ubuntu · glibc 2.39 x64 npm
Ambientes das execuções de verificação
| Ambiente | Contrato | Etapas | Execução |
|---|---|---|---|
| node 22 · linux debian/x64 · docker ed25519:c1973797be207ac4 | PASS | compile:SKIPPED · contract:PASS · load:PASS · resolve:PASS CONTAINER_RUN · node-typescript@1node:22@sha256:8a34c4ab3ea2… |
2026-09-07 |
Caso
HOW- Objetivo
- verify pkg:npm/ip-address@10.7.0
- Pacotes
- Criado
- 2026-09-07T00:21:28Z
Contrato
- Address6.fromAddress4Nat64 and toAddress4Nat64 embed and extract IPv4 addresses with standard and custom NAT64 prefixes
- Address6.fromURL parses bracketed IPv6 host addresses and port numbers from URL strings
- Address4.offset and Address4.nextNetwork calculate sequential host addresses and adjacent subnets
- Address4.fromWildcard and Address4.fromAddressAndWildcardMask construct addresses using Cisco wildcard masks
- Address4.isGlobal determines global reachability while distinguishing private, loopback, and CGNAT blocks
Arquivos
- PROMPT.md
- csx.json
- index.mjs
- package-lock.json
- package.json
- spec.json
- test/contract.mjs
Código-fonte
Clean-room public code sample — generation instructions
Write a brand-new, minimal, self-contained code sample in this clean-room directory.
Do not copy, paraphrase, or reference any existing project source. Work only from this spec.
A csx.json manifest scaffold already exists. Do not recreate it from memory. Preserve its case.goal, packages and symbols; fill its empty case.contract with exact assertions and correct its environment, commands and verifierAdapter for the files you generate.
Goal: verify pkg:npm/ip-address@10.7.0
Kind: HOW
Use EXACTLY these public packages and versions:
- pkg:npm/ip-address@10.7.0
Rules:
- One focused purpose; the smallest project that proves the goal.
- Include a contract test (test/contract.*) that runs OFFLINE and exits 0 exactly when the goal behavior works.
- Pin every dependency with a lockfile so resolution is reproducible.
- No secrets, credentials, or tokens. No real URLs (only example.com or localhost). No absolute paths.
- No personal names, emails, company names, or project identifiers of any kind.
- No binaries and no generated output (node_modules, dist, target, venv, .git, .env).
- Keep it under 200 files and 256KB packed.
{"case":{"caseId":"case:sha256:5fe9bfea02624f6b3815f421a1be250a8de06a6f79d22332859cbfab4e76c2c2","contract":["Address6.fromAddress4Nat64 and toAddress4Nat64 embed and extract IPv4 addresses with standard and custom NAT64 prefixes","Address6.fromURL parses bracketed IPv6 host addresses and port numbers from URL strings","Address4.offset and Address4.nextNetwork calculate sequential host addresses and adjacent subnets","Address4.fromWildcard and Address4.fromAddressAndWildcardMask construct addresses using Cisco wildcard masks","Address4.isGlobal determines global reachability while distinguishing private, loopback, and CGNAT blocks"],"goal":"verify pkg:npm/ip-address@10.7.0","kind":"HOW","packages":["pkg:npm/ip-address@10.7.0"],"schemaVersion":1},"contractCommand":["node","test/contract.mjs"],"environment":{"arch":"x64","distro":"ubuntu","ecosystem":"npm","libc":"glibc","libcVersion":"2.39","os":"linux","osVersionBucket":"24","packageManager":"npm","schemaVersion":1},"license":"MIT-0","packages":["pkg:npm/ip-address@10.7.0"],"schemaVersion":1,"subject":"pkg:npm/ip-address@10.7.0","verifierAdapter":"node-typescript@1"}
import { Address4, Address6 } from 'ip-address';
/**
* Embeds an IPv4 address into a NAT64 IPv6 address.
* @param {string} ipv4String
* @param {string} [prefix]
* @returns {string}
*/
export function embedNat64(ipv4String, prefix) {
const addr6 = Address6.fromAddress4Nat64(ipv4String, prefix);
return addr6.correctForm();
}
/**
* Extracts an embedded IPv4 address from a NAT64 IPv6 address.
* @param {string} ipv6String
* @param {string} [prefix]
* @returns {string|null}
*/
export function extractNat64(ipv6String, prefix) {
const addr6 = new Address6(ipv6String);
const addr4 = addr6.toAddress4Nat64(prefix);
return addr4 ? addr4.correctForm() : null;
}
/**
* Parses an IPv6 address and optional port from a URL.
* @param {string} urlString
* @returns {{ address: string | null, canonical: string | null, port: number | null, error?: string }}
*/
export function parseIPv6URL(urlString) {
const parsed = Address6.fromURL(urlString);
if (parsed.error || !parsed.address) {
return { address: null, canonical: null, port: null, error: parsed.error };
}
return {
address: parsed.address.correctForm(),
canonical: parsed.address.canonicalForm(),
port: parsed.port
};
}
/**
* Steps an IPv4 address by n hosts and calculates the adjacent network.
* @param {string} cidrString
* @param {number} step
* @returns {{ offsetAddress: string, nextNetwork: string }}
*/
export function stepNetwork(cidrString, step) {
const addr4 = new Address4(cidrString);
return {
offsetAddress: addr4.offset(step).correctForm(),
nextNetwork: addr4.nextNetwork().networkForm()
};
}
/**
* Classifies IPv4 address reachability.
* @param {string} ipString
* @returns {{ isGlobal: boolean, isPrivate: boolean, isCGNAT: boolean, isLoopback: boolean }}
*/
export function classifyIPv4(ipString) {
const addr4 = new Address4(ipString);
return {
isGlobal: addr4.isGlobal(),
isPrivate: addr4.isPrivate(),
isCGNAT: addr4.isCGNAT(),
isLoopback: addr4.isLoopback()
};
}
{
"name": "ip-address-sample",
"version": "1.0.0",
"lockfileVersion": 3,
"requires": true,
"packages": {
"": {
"name": "ip-address-sample",
"version": "1.0.0",
"license": "MIT-0",
"dependencies": {
"ip-address": "10.7.0"
}
},
"node_modules/ip-address": {
"version": "10.7.0",
"resolved": "https://registry.npmjs.org/ip-address/-/ip-address-10.7.0.tgz",
"integrity": "sha512-BGFsyJd5mpXp3rK6jIdADLNgpJUK1jnjzvYF8lK+VyDab9JAmqN0YOKDdP17HlgKb2+ehPgDc8EtnRLbGCAMhA==",
"license": "MIT",
"engines": {
"node": ">= 12"
}
}
}
}
{
"name": "ip-address-sample",
"version": "1.0.0",
"type": "module",
"license": "MIT-0",
"dependencies": {
"ip-address": "10.7.0"
},
"scripts": {
"test": "node test/contract.mjs"
}
}
{
"schemaVersion": 1,
"goal": "verify pkg:npm/ip-address@10.7.0",
"kind": "HOW",
"packages": [
"pkg:npm/ip-address@10.7.0"
]
}
import assert from 'node:assert/strict';
import { Address4, Address6 } from 'ip-address';
import {
embedNat64,
extractNat64,
parseIPv6URL,
stepNetwork,
classifyIPv4
} from '../index.mjs';
// Contract 1: Address6.fromAddress4Nat64 and toAddress4Nat64 embed and extract IPv4 addresses with standard and custom NAT64 prefixes
{
// Standard prefix: 64:ff9b::/96
const embedded = embedNat64('192.0.2.33');
assert.equal(embedded, '64:ff9b::c000:221');
const extracted = extractNat64('64:ff9b::c000:221');
assert.equal(extracted, '192.0.2.33');
// Custom prefix: 2001:db8::/32
const customEmbedded = embedNat64('192.0.2.33', '2001:db8::/32');
assert.equal(customEmbedded, '2001:db8:c000:221::');
const customExtracted = extractNat64('2001:db8:c000:221::', '2001:db8::/32');
assert.equal(customExtracted, '192.0.2.33');
// Direct Address6 API
const directNat64 = Address6.fromAddress4Nat64('10.0.0.1');
assert.equal(directNat64.correctForm(), '64:ff9b::a00:1');
assert.equal(directNat64.toAddress4Nat64()?.correctForm(), '10.0.0.1');
// Non-NAT64 address returns null
const nonNat64 = new Address6('2001:db8::1');
assert.equal(nonNat64.toAddress4Nat64(), null);
}
// Contract 2: Address6.fromURL parses bracketed IPv6 host addresses and port numbers from URL strings
{
const withPort = parseIPv6URL('http://[2001:db8::1]:8080/resource');
assert.equal(withPort.address, '2001:db8::1');
assert.equal(withPort.canonical, '2001:0db8:0000:0000:0000:0000:0000:0001');
assert.equal(withPort.port, 8080);
const withoutPort = parseIPv6URL('https://[fe80::1]/index.html');
assert.equal(withoutPort.address, 'fe80::1');
assert.equal(withoutPort.port, null);
const invalidUrl = parseIPv6URL('not-a-valid-url');
assert.equal(invalidUrl.address, null);
assert.equal(invalidUrl.port, null);
// Direct Address6.fromURL API
const directParsed = Address6.fromURL('http://[::1]:3000');
assert.equal(directParsed.address.correctForm(), '::1');
assert.equal(directParsed.port, 3000);
}
// Contract 3: Address4.offset and Address4.nextNetwork calculate sequential host addresses and adjacent subnets
{
const network = stepNetwork('192.168.1.10/24', 5);
assert.equal(network.offsetAddress, '192.168.1.15');
assert.equal(network.nextNetwork, '192.168.2.0/24');
const negativeStep = stepNetwork('192.168.1.10/24', -10);
assert.equal(negativeStep.offsetAddress, '192.168.1.0');
// Direct Address4 offset & nextNetwork
const addr = new Address4('10.0.0.0/16');
assert.equal(addr.offset(1).correctForm(), '10.0.0.1');
assert.equal(addr.nextNetwork().networkForm(), '10.1.0.0/16');
assert.equal(addr.nextNetwork().subnetMask, 16);
}
// Contract 4: Address4.fromWildcard and Address4.fromAddressAndWildcardMask construct addresses using Cisco wildcard masks
{
const wildcard24 = Address4.fromWildcard('192.168.0.*');
assert.equal(wildcard24.subnet, '/24');
assert.equal(wildcard24.subnetMask, 24);
const wildcard16 = Address4.fromWildcard('10.0.*.*');
assert.equal(wildcard16.subnet, '/16');
assert.equal(wildcard16.subnetMask, 16);
const fromMask = Address4.fromAddressAndWildcardMask('172.16.0.1', '0.0.255.255');
assert.equal(fromMask.subnetMask, 16);
assert.equal(fromMask.correctForm(), '172.16.0.1');
}
// Contract 5: Address4.isGlobal determines global reachability while distinguishing private, loopback, and CGNAT blocks
{
const publicIp = classifyIPv4('8.8.8.8');
assert.equal(publicIp.isGlobal, true);
assert.equal(publicIp.isPrivate, false);
assert.equal(publicIp.isCGNAT, false);
assert.equal(publicIp.isLoopback, false);
const privateIp = classifyIPv4('192.168.1.1');
assert.equal(privateIp.isGlobal, false);
assert.equal(privateIp.isPrivate, true);
const cgnatIp = classifyIPv4('100.64.0.1');
assert.equal(cgnatIp.isGlobal, false);
assert.equal(cgnatIp.isCGNAT, true);
const loopbackIp = classifyIPv4('127.0.0.1');
assert.equal(loopbackIp.isGlobal, false);
assert.equal(loopbackIp.isLoopback, true);
}
console.log('All contract assertions verified successfully.');
Seeder de origem
anônimo