CodeSampleX

示例

socket2 0.6.5

已验证示例 — cargo socket2 0.6.5. contract 在 rust 1 · linux alpine/x64 · docker 上运行并通过: Domain::for_address correctly identifies IPV4 and IPV6 socket addresses

sha256:dc044463bc09c2b5e444f486c1c05251f335563e0c3b8f41874ece1bd3f88d65

本网络只提供一件事:能构建的样本。它在沙箱中运行并保留签名回执。它不评级、不担保——同样的代码能否在你的环境构建,它没有测量过。 提交了通过的契约回执的不同签名密钥数量。为 1 表示只有作者;大于 1 表示还有其他人构建过。密钥是自行生成的,背后没有注册身份,因此计的是密钥而非人。 MIT-0

执行证据

声明的环境与签名的运行分开呈现,你可以看到这个样本究竟运行了什么、在哪里运行。

证据依据
签名契约通过
验证回执
1
构建过它的签名密钥
1
声明的环境 linux · alpine · musl x64 cargo

验证运行环境

环境 契约 阶段 运行日期
rust 1 · linux alpine/x64 · docker ed25519:c1973797be207ac4 PASS compile:SKIPPED · contract:PASS · load:PASS · resolve:PASS
CONTAINER_RUN · cargo@1rust:1-alpine@sha256:a10e64dd139b…
2026-09-19

案例

HOW
目标
verify pkg:cargo/socket2@0.6.5
包
创建时间
2026-09-18T16:12:01Z

契约

  1. Domain::for_address correctly identifies IPV4 and IPV6 socket addresses
  2. Socket::new creates non-blocking IPv4 TCP stream sockets with configurable options
  3. Socket socket options for reuse address, tcp nodelay and IPv4 TTL are settable and retrievable
  4. SockAddr wraps IPv4 socket addresses and provides family and address accessors
  5. Connected IPv4 TCP sockets over loopback exchange stream bytes accurately
  6. Bound IPv4 UDP sockets over loopback exchange datagram packets accurately

文件

  • Cargo.lock
  • Cargo.toml
  • PROMPT.md
  • csx.json
  • spec.json
  • src/lib.rs
  • test/contract.rs

下载源代码构件 (tar.gz)

源代码

Cargo.lock
# This file is automatically @generated by Cargo.
# It is not intended for manual editing.
version = 4

[[package]]
name = "libc"
version = "0.2.189"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "3eaf3ede3fee6db1a4c2ee091bf8a8b4dccdc6d17f656fb07896ee72867612f2"

[[package]]
name = "sample-socket2"
version = "1.0.0"
dependencies = [
 "socket2",
]

[[package]]
name = "socket2"
version = "0.6.5"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "c3d1e2c7f27f8d4cb10542a02c49005dbd6e93095799d6f3be745fae9f8fedd4"
dependencies = [
 "libc",
 "windows-sys",
]

[[package]]
name = "windows-link"
version = "0.2.1"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "f0805222e57f7521d6a62e36fa9163bc891acd422f971defe97d64e70d0a4fe5"

[[package]]
name = "windows-sys"
version = "0.61.2"
source = "registry+https://github.com/rust-lang/crates.io-index"
checksum = "ae137229bcbd6cdf0f7b80a31df61766145077ddf49416a728b02cb3921ff3fc"
dependencies = [
 "windows-link",
]
Cargo.toml
[package]
name = "sample-socket2"
version = "1.0.0"
edition = "2021"
publish = false

[dependencies]
socket2 = "=0.6.5"

[[bin]]
name = "contract"
path = "test/contract.rs"
PROMPT.md
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:cargo/socket2@0.6.5
Kind: HOW

Use EXACTLY these public packages and versions:
  - pkg:cargo/socket2@0.6.5
Required runtime conditions:
  - ecosystem: golang
  - language: go
  - packageManager: go@1.26.6
  - runtime: go@1.26.6

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.
csx.json
{"case":{"caseId":"case:sha256:026072011f966ed325b4309e1a28deb874edb2b191b0f484d19a95c95981653f","contract":["Domain::for_address correctly identifies IPV4 and IPV6 socket addresses","Socket::new creates non-blocking IPv4 TCP stream sockets with configurable options","Socket socket options for reuse address, tcp nodelay and IPv4 TTL are settable and retrievable","SockAddr wraps IPv4 socket addresses and provides family and address accessors","Connected IPv4 TCP sockets over loopback exchange stream bytes accurately","Bound IPv4 UDP sockets over loopback exchange datagram packets accurately"],"goal":"verify pkg:cargo/socket2@0.6.5","kind":"HOW","packages":["pkg:cargo/socket2@0.6.5"],"schemaVersion":1},"contractCommand":["cargo","run","--offline"],"environment":{"arch":"x64","distro":"alpine","ecosystem":"cargo","libc":"musl","os":"linux","packageManager":"cargo","schemaVersion":1},"license":"MIT-0","packages":["pkg:cargo/socket2@0.6.5"],"schemaVersion":1,"subject":"pkg:cargo/socket2@0.6.5","verifierAdapter":"cargo@1"}
spec.json
{
  "schemaVersion": 1,
  "goal": "verify pkg:cargo/socket2@0.6.5",
  "kind": "HOW",
  "packages": [
    "pkg:cargo/socket2@0.6.5"
  ]
}
src/lib.rs
//! Clean-room verification sample for socket2.

pub use socket2::*;
test/contract.rs
use std::mem::MaybeUninit;
use std::net::{IpAddr, Ipv4Addr, Ipv6Addr, SocketAddr, SocketAddrV4, SocketAddrV6};
use socket2::{Domain, Protocol, SockAddr, Socket, Type};

fn main() {
    // 1. Domain::for_address correctly identifies IPV4 and IPV6 socket addresses
    let v4_addr = SocketAddr::V4(SocketAddrV4::new(Ipv4Addr::LOCALHOST, 8080));
    let v6_addr = SocketAddr::V6(SocketAddrV6::new(Ipv6Addr::LOCALHOST, 8080, 0, 0));
    assert_eq!(Domain::for_address(v4_addr), Domain::IPV4);
    assert_eq!(Domain::for_address(v6_addr), Domain::IPV6);

    // 2. Socket::new creates non-blocking IPv4 TCP stream sockets with configurable options
    let tcp_sock = Socket::new(Domain::IPV4, Type::STREAM, Some(Protocol::TCP))
        .expect("failed to create IPv4 TCP socket");
    tcp_sock.set_nonblocking(true).expect("failed to set nonblocking");

    // 3. Socket socket options for reuse address, tcp nodelay and IPv4 TTL are settable and retrievable
    tcp_sock.set_reuse_address(true).expect("failed to set reuse address");
    assert_eq!(tcp_sock.reuse_address().expect("failed to get reuse address"), true);

    tcp_sock.set_tcp_nodelay(true).expect("failed to set tcp nodelay");
    assert_eq!(tcp_sock.tcp_nodelay().expect("failed to get tcp nodelay"), true);

    tcp_sock.set_ttl_v4(64).expect("failed to set ttl_v4");
    assert_eq!(tcp_sock.ttl_v4().expect("failed to get ttl_v4"), 64);

    // 4. SockAddr wraps IPv4 socket addresses and provides family and address accessors
    let sa = SockAddr::from(v4_addr);
    assert!(sa.is_ipv4());
    assert_eq!(sa.domain(), Domain::IPV4);
    let resolved_v4 = sa.as_socket_ipv4().expect("expected IPv4 address");
    assert_eq!(resolved_v4.ip(), &Ipv4Addr::LOCALHOST);
    assert_eq!(resolved_v4.port(), 8080);

    // 5. Connected IPv4 TCP sockets over loopback exchange stream bytes accurately
    let listener = Socket::new(Domain::IPV4, Type::STREAM, Some(Protocol::TCP))
        .expect("failed to create listener socket");
    listener.set_reuse_address(true).expect("failed to set reuse address");
    let bind_addr = SocketAddr::new(IpAddr::V4(Ipv4Addr::LOCALHOST), 0);
    listener.bind(&bind_addr.into()).expect("failed to bind listener");
    listener.listen(128).expect("failed to listen");
    let listen_addr = listener.local_addr().expect("failed to get local addr");

    let client = Socket::new(Domain::IPV4, Type::STREAM, Some(Protocol::TCP))
        .expect("failed to create client socket");
    client.connect(&listen_addr).expect("failed to connect");

    let (server, _client_addr) = listener.accept().expect("failed to accept");

    let msg = b"socket2-tcp-verification-token";
    let sent = client.send(msg).expect("failed to send");
    assert_eq!(sent, msg.len());

    let mut recv_buf = [MaybeUninit::uninit(); 64];
    let received = server.recv(&mut recv_buf).expect("failed to recv");
    assert_eq!(received, msg.len());

    let received_bytes: Vec<u8> = recv_buf[..received]
        .iter()
        .map(|b| unsafe { b.assume_init() })
        .collect();
    assert_eq!(&received_bytes[..], msg);

    // 6. Bound IPv4 UDP sockets over loopback exchange datagram packets accurately
    let udp_sender = Socket::new(Domain::IPV4, Type::DGRAM, Some(Protocol::UDP))
        .expect("failed to create udp sender");
    udp_sender.bind(&bind_addr.into()).expect("failed to bind udp sender");

    let udp_receiver = Socket::new(Domain::IPV4, Type::DGRAM, Some(Protocol::UDP))
        .expect("failed to create udp receiver");
    udp_receiver.bind(&bind_addr.into()).expect("failed to bind udp receiver");
    let receiver_addr = udp_receiver.local_addr().expect("failed to get udp receiver addr");

    let dgram = b"socket2-udp-datagram-test";
    let sent_dgram = udp_sender.send_to(dgram, &receiver_addr).expect("failed to send_to");
    assert_eq!(sent_dgram, dgram.len());

    let mut udp_buf = [MaybeUninit::uninit(); 64];
    let (received_dgram, from_addr) = udp_receiver.recv_from(&mut udp_buf).expect("failed to recv_from");
    assert_eq!(received_dgram, dgram.len());

    let sender_addr = udp_sender.local_addr().expect("failed to get udp sender addr");
    assert_eq!(
        from_addr.as_socket_ipv4().map(|a| a.port()),
        sender_addr.as_socket_ipv4().map(|a| a.port())
    );

    let received_dgram_bytes: Vec<u8> = udp_buf[..received_dgram]
        .iter()
        .map(|b| unsafe { b.assume_init() })
        .collect();
    assert_eq!(&received_dgram_bytes[..], dgram);

    println!("All socket2 contract assertions passed successfully.");
}

原始种子者

匿名