using System.Diagnostics;
using System.Net;
using System.Net.Sockets;
using System.Text;
using NewLife;
using NewLife.Data;
using NewLife.Http;
using NewLife.Log;
using Xunit;
#if NET6_0_OR_GREATER
using System.Net.Security;
using System.Security.Authentication;
using System.Security.Cryptography;
using System.Security.Cryptography.X509Certificates;
#endif
namespace XUnitTest.Http;
public class TinyHttpClientTest
{
private readonly TinyHttpClient _Client;
public TinyHttpClientTest()
{
_Client = new TinyHttpClient();
}
/// <summary>检查目标服务器是否可达</summary>
private static Boolean IsServerReachable(String host, Int32 port, Int32 timeoutMs = 2000)
{
try
{
using var client = new TcpClient();
var result = client.BeginConnect(host, port, null, null);
var success = result.AsyncWaitHandle.WaitOne(TimeSpan.FromMilliseconds(timeoutMs));
if (!success) return false;
client.EndConnect(result);
return true;
}
catch
{
return false;
}
}
//[Fact(DisplayName = "同步请求")]
//public void SendTest()
//{
// var uri = new Uri("http://newlifex.com");
// var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(3), Log = XTrace.Log };
// var html = client.Send(uri, null)?.ToStr();
// Assert.True(!html.IsNullOrEmpty() && html.Length > 500);
// Assert.Equal(uri, client.BaseAddress);
//}
[Theory(DisplayName = "HTTP客户端_跟随303/307/308重定向与相对Location")]
[InlineData(303)]
[InlineData(307)]
[InlineData(308)]
public async Task Redirect_303_307_308_Followed(Int32 code)
{
// 只认 301/302 时,303/307/308 会被当成成功响应原样返回(调用方拿到重定向页面却以为成功)
using var server = new HttpServer { Port = 0 };
server.Map("/a", ctx =>
{
ctx.Response.StatusCode = (HttpStatusCode)code;
// 相对 Location:真实服务器常见写法
ctx.Response.Headers["Location"] = "/b";
});
server.Map("/b", () => "B");
server.Start();
var client = new TinyHttpClient();
var res = await client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{server.Port}/a") });
Assert.NotNull(res);
Assert.Equal(HttpStatusCode.OK, res.StatusCode);
Assert.Equal("B", res.Body?.ToStr());
}
[Fact(DisplayName = "异步请求")]
public async Task SendAsyncTest()
{
// 在 CI 环境中跳过,因为目标服务器可能不可达
if (!IsServerReachable("newlifex.com", 80)) return;
var uri = new Uri("http://newlifex.com");
var req = new HttpRequest { RequestUri = uri };
var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(3), Log = XTrace.Log };
var html = (await client.SendAsync(req))?.Body.ToStr();
Assert.True(!html.IsNullOrEmpty() && html.Length > 500);
Assert.Equal(uri, client.BaseAddress);
}
/// <summary>启动本地一次性 HTTP 服务器,返回端口与完成任务</summary>
private static (Int32 Port, Task Server) StartLocalServer(Func<NetworkStream, Task> handler)
{
var listener = new TcpListener(IPAddress.Loopback, 0);
listener.Start();
var port = ((IPEndPoint)listener.LocalEndpoint).Port;
var task = Task.Run(async () =>
{
try
{
using var client = await listener.AcceptTcpClientAsync();
client.NoDelay = true;
using var ns = client.GetStream();
// 读掉请求
var buf = new Byte[1024];
await ns.ReadAsync(buf);
await handler(ns);
}
finally
{
listener.Stop();
}
});
return (port, task);
}
[Fact(DisplayName = "异步请求_响应头跨接收块_累积读取成功")]
public async Task SendAsync_SplitResponseHead()
{
var head = Encoding.ASCII.GetBytes("HTTP/1.1 200 OK\r\nContent-Length: 5\r\n\r\n");
// 先发半截头,停顿后再发余下头与体:模拟服务端头部稍慢,首个数据块拿不到完整头
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(head.AsMemory(0, 10));
await ns.FlushAsync();
await Task.Delay(50);
await ns.WriteAsync(head.AsMemory(10));
await ns.WriteAsync(Encoding.ASCII.GetBytes("hello"));
await ns.FlushAsync();
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
var res = await client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") });
Assert.NotNull(res);
Assert.Equal(5, res!.BodyLength);
Assert.Equal("hello", res.Body!.ToStr());
await server;
}
[Fact(DisplayName = "HTTP客户端_慢滴漏服务端_整次请求超时生效不被无限挂住")]
public async Task SendAsync_SlowDrip_TotalTimeout()
{
// 服务端每隔 50ms 只回 1 个字节,响应头永不补全。
// 超时若按“单次读取”计,每轮读取都在预算内拿到字节,调用方被无限挂住
var (port, _) = StartLocalServer(async ns =>
{
var one = new Byte[] { (Byte)'X' };
try
{
for (var i = 0; i < 300; i++)
{
await ns.WriteAsync(one);
await Task.Delay(50);
}
}
catch { }
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromMilliseconds(200) };
// 整次预算耗尽即取消;旧实现每轮重新计时,永远读不完,只会撞上外层 10s 兜底(TimeoutException)
await Assert.ThrowsAnyAsync<OperationCanceledException>(
() => client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") }).WaitAsync(TimeSpan.FromSeconds(10)));
}
[Fact(DisplayName = "异步请求_错误状态码_抛异常")]
public async Task SendAsync_ErrorStatus_Throws()
{
var resp = Encoding.ASCII.GetBytes("HTTP/1.1 404 Not Found\r\nContent-Length: 0\r\n\r\n");
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(resp);
await ns.FlushAsync();
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
var ex = await Assert.ThrowsAsync<Exception>(() =>
client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") }));
Assert.Contains("404", ex.Message);
await server;
}
[Fact(DisplayName = "HTTP客户端_响应重复Content-Length_报错拒绝")]
public async Task SendAsync_DuplicateContentLength_Throws()
{
// 同名头部就地覆盖只会剩最后一个值,与中间代理(通常取第一个)理解不一致,构成实体长度分歧:
// 本端按 10 读、代理按 5 转发,多出的字节被当成下一条响应(响应队列投毒)。请求侧已拒绝,响应侧同口径
var resp = Encoding.ASCII.GetBytes("HTTP/1.1 200 OK\r\nContent-Length: 5\r\nContent-Length: 10\r\n\r\nhello");
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(resp);
await ns.FlushAsync();
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
await Assert.ThrowsAsync<InvalidDataException>(() =>
client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") }));
await server;
}
[Fact(DisplayName = "HTTP客户端_响应非法Content-Length_报错拒绝")]
public async Task SendAsync_InvalidContentLength_Throws()
{
// 无法解析的长度值旧实现退化成“无体”(ContentLength=-1),实体随首个接收包原样截断,边界不可预期;
// 与请求侧一致按协议错误报错
var resp = Encoding.ASCII.GetBytes("HTTP/1.1 200 OK\r\nContent-Length: abc\r\n\r\nhello");
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(resp);
await ns.FlushAsync();
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
await Assert.ThrowsAsync<InvalidDataException>(() =>
client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") }));
await server;
}
[Fact(DisplayName = "HTTP客户端_传输编码列表末位为chunked_按分块解码")]
public async Task SendAsync_TransferEncodingList_DecodesChunked()
{
// RFC 9112 §6.1:存在传输编码时 chunked 必须位于末位(其前置编码如 gzip 由调用方自理,本端只解分块)。
// 精确匹配旧实现把「gzip, chunked」判成非分块,于是按 Content-Length(或 -1 当无体)读,
// 调用方拿到未解码的分块帧:内容错乱却“成功”返回
var resp = Encoding.ASCII.GetBytes("HTTP/1.1 200 OK\r\nTransfer-Encoding: gzip, chunked\r\n\r\n5\r\nhello\r\n0\r\n\r\n");
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(resp);
await ns.FlushAsync();
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
var res = await client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") });
Assert.NotNull(res);
Assert.Equal("hello", res!.Body!.ToStr());
await server;
}
[Fact(DisplayName = "HTTP客户端_响应头始终无法解析_报错而非静默返回null")]
public async Task SendAsync_UnparsableHead_Throws()
{
// 服务端回了不成形的字节(首行 10 字节内无空格,FastValidHeader 即否)后断开:旧实现静默返回 null,
// 调用方无法区分“服务端没响应”与“响应不成形”,故按协议错误报出
var resp = Encoding.ASCII.GetBytes("garbage-response\r\n\r\n");
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(resp);
await ns.FlushAsync();
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
await Assert.ThrowsAsync<InvalidDataException>(() =>
client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") }));
await server;
}
[Fact(DisplayName = "HTTP客户端_临时响应连续超限_报错而非静默返回null")]
public async Task SendAsync_TooManyInterimResponses_Throws()
{
// 1xx 计数上限用于兜住反复回临时响应却不给最终响应的服务端;触顶时旧实现静默返回 null,
// 调用方无法区分“服务端没响应”与“响应被临时响应吞掉”,故按协议错误报出(与重复/非法 Content-Length 同口径)
var resp = Encoding.ASCII.GetBytes(String.Concat(Enumerable.Repeat("HTTP/1.1 100 Continue\r\n\r\n", 6)));
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(resp);
await ns.FlushAsync();
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
await Assert.ThrowsAsync<InvalidDataException>(() =>
client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") }));
await server;
}
[Fact(DisplayName = "异步请求_204无内容_按成功返回")]
public async Task SendAsync_NoContent_Succeeds()
{
var resp = Encoding.ASCII.GetBytes("HTTP/1.1 204 No Content\r\nContent-Length: 0\r\n\r\n");
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(resp);
await ns.FlushAsync();
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
var res = await client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") });
Assert.NotNull(res);
Assert.Equal(HttpStatusCode.NoContent, res!.StatusCode);
await server;
}
[Fact(DisplayName = "证书校验_默认严格")]
public void IgnoreServerCertificate_DefaultFalse()
{
using var client = new TinyHttpClient();
Assert.False(client.IgnoreServerCertificate);
}
#if NET6_0_OR_GREATER
/// <summary>生成自签服务器证书(含私钥)</summary>
private static X509Certificate2 CreateSelfSignedCert()
{
var rsa = RSA.Create(2048);
var req = new CertificateRequest("CN=localhost", rsa, HashAlgorithmName.SHA256, RSASignaturePadding.Pkcs1);
var cert = req.CreateSelfSigned(DateTimeOffset.Now.AddDays(-1), DateTimeOffset.Now.AddDays(1));
// Windows 的 Schannel 服务端需要可用的持久化私钥,CreateSelfSigned 的临时密钥不足以取凭据。
// 导出为 PFX 再以 UserKeySet 导入,得到 Schannel 可用的证书
var pfx = cert.Export(X509ContentType.Pfx);
#if NET9_0_OR_GREATER
var loaded = X509CertificateLoader.LoadPkcs12(pfx, null, X509KeyStorageFlags.UserKeySet | X509KeyStorageFlags.Exportable);
#else
var loaded = new X509Certificate2(pfx, (String?)null, X509KeyStorageFlags.UserKeySet | X509KeyStorageFlags.Exportable);
#endif
Assert.True(loaded.HasPrivateKey, "自签证书应包含私钥");
return loaded;
}
/// <summary>启动一次性 TLS 服务器:接受一次连接,读掉请求后回一个 200 响应</summary>
/// <param name="cert">服务器证书</param>
/// <param name="expectSuccess">是否预期握手成功。false 时吞掉服务端握手异常(客户端证书校验失败属预期)</param>
private static (Int32 Port, Task Server) StartTlsServer(X509Certificate2 cert, Boolean expectSuccess = false)
{
var listener = new TcpListener(IPAddress.Loopback, 0);
listener.Start();
var port = ((IPEndPoint)listener.LocalEndpoint).Port;
var task = Task.Run(async () =>
{
try
{
using var tc = await listener.AcceptTcpClientAsync();
tc.NoDelay = true;
using var ns = tc.GetStream();
using var ssl = new SslStream(ns, false);
await ssl.AuthenticateAsServerAsync(new SslServerAuthenticationOptions
{
ServerCertificate = cert,
EnabledSslProtocols = SslProtocols.None,
});
var buf = new Byte[1024];
await ssl.ReadAsync(buf);
await ssl.WriteAsync(Encoding.ASCII.GetBytes("HTTP/1.1 200 OK\r\nContent-Length: 2\r\n\r\nok"));
await ssl.FlushAsync();
}
catch (Exception) when (!expectSuccess)
{
// 客户端证书校验失败时,服务端握手报错属预期
}
finally
{
listener.Stop();
}
});
return (port, task);
}
[Fact(DisplayName = "证书校验_自签默认被拒绝")]
public async Task SelfSigned_RejectedByDefault()
{
using var cert = CreateSelfSignedCert();
var (port, server) = StartTlsServer(cert);
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10) };
await Assert.ThrowsAnyAsync<Exception>(() =>
client.SendAsync(new HttpRequest { RequestUri = new Uri($"https://127.0.0.1:{port}/") }));
await server;
}
[Fact(DisplayName = "证书校验_显式忽略后放行自签")]
public async Task SelfSigned_AcceptedWhenIgnored()
{
using var cert = CreateSelfSignedCert();
var (port, server) = StartTlsServer(cert, true);
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(10), IgnoreServerCertificate = true };
var clientTask = client.SendAsync(new HttpRequest { RequestUri = new Uri($"https://127.0.0.1:{port}/") });
// 先等服务端任务:服务端若握手失败,这里会直接抛出真实异常,便于定位
await server;
var res = await clientTask;
Assert.NotNull(res);
Assert.Equal("ok", res!.Body!.ToStr());
}
#endif
//[Fact(DisplayName = "同步字符串")]
//public void GetString()
//{
// var url = "http://x.newlifex.com";
// var client = new TinyHttpClient();
// var html = client.GetString(url);
// Assert.True(!html.IsNullOrEmpty() && html.Length > 500);
//}
[Fact(DisplayName = "异步字符串")]
public async Task GetStringAsync()
{
// 在 CI 环境中跳过,因为目标服务器可能不可达
if (!IsServerReachable("x.newlifex.com", 80)) return;
var url = "http://x.newlifex.com";
var client = new TinyHttpClient();
var html = await client.GetStringAsync(url);
Assert.True(!html.IsNullOrEmpty() && html.Length > 500);
}
[Fact(DisplayName = "https")]
public async Task GetStringHttps()
{
// 在 CI 环境中跳过,因为目标服务器可能不可达
if (!IsServerReachable("newlifex.com", 443)) return;
var url = "https://newlifex.com";
var client = new TinyHttpClient();
var html = await client.GetStringAsync(url);
Assert.True(!html.IsNullOrEmpty() && html.Length > 500);
}
#region 分块传输
/// <summary>分块解析测试替身:按队列供给后续数据包,每个元素模拟一次接收</summary>
private sealed class ChunkFeedClient : TinyHttpClient
{
public Queue<Byte[]> Packets { get; } = new();
public Task<IPacket> ReadChunk(IPacket body) => ReadChunkAsync(body);
protected override Task<IOwnerPacket> SendDataAsync(Uri? uri, IPacket? request)
{
var bytes = Packets.Count > 0 ? Packets.Dequeue() : null;
if (bytes == null) return Task.FromResult<IOwnerPacket>(new OwnerPacket(0));
var pk = new OwnerPacket(bytes.Length);
bytes.CopyTo(pk.GetSpan());
return Task.FromResult<IOwnerPacket>(pk);
}
}
private static async Task<IPacket> ReadChunkAsync(ChunkFeedClient client, Byte[] first, params Byte[][] more)
{
foreach (var item in more) client.Packets.Enqueue(item);
var pk = await client.ReadChunk(new ArrayPacket(first));
return pk;
}
[Fact(DisplayName = "分块传输_长度行跨接收包_后续分块不丢失")]
public async Task Chunk_LengthLineSplitAcrossPackets()
{
var client = new ChunkFeedClient();
// 长度行 "5\r\n" 被拆到两个接收包:旧实现 ParseChunk 找不到 CRLF 即整体跳出,后续分块全部丢失(仍返回“成功”)
var body = await ReadChunkAsync(client, "5".GetBytes(), "\r\nhello\r\n0\r\n\r\n".GetBytes());
Assert.Equal("hello", body.ToStr());
}
[Fact(DisplayName = "分块传输_多分块跨包_逐块还原")]
public async Task Chunk_MultipleChunksAcrossPackets()
{
var client = new ChunkFeedClient();
var body = await ReadChunkAsync(client, "3\r\nab".GetBytes(), "c\r\n".GetBytes(), "5\r\nhello\r\n0\r\n\r\n".GetBytes());
Assert.Equal("abchello", body.ToStr());
}
[Fact(DisplayName = "分块传输_分块扩展_忽略分号后内容")]
public async Task Chunk_Extension_Ignored()
{
var client = new ChunkFeedClient();
// 1ba;ext=1 这类分块扩展:旧实现直接 Int32.Parse 会抛 FormatException 穿透到调用方
var body = await ReadChunkAsync(client, "3;ext=1\r\nabc\r\n0\r\n\r\n".GetBytes());
Assert.Equal("abc", body.ToStr());
}
[Fact(DisplayName = "分块传输_非法长度行_抛异常")]
public async Task Chunk_InvalidLength_Throws()
{
var client = new ChunkFeedClient();
await Assert.ThrowsAsync<InvalidDataException>(() => ReadChunkAsync(client, "xyz\r\nabc\r\n0\r\n\r\n".GetBytes()));
}
[Fact(DisplayName = "分块传输_单块超上限_抛异常")]
public async Task Chunk_ExceedsMaxChunkSize_Throws()
{
var client = new ChunkFeedClient { MaxChunkSize = 4 };
await Assert.ThrowsAsync<InvalidDataException>(() => ReadChunkAsync(client, "5\r\nhello\r\n0\r\n\r\n".GetBytes()));
}
[Fact(DisplayName = "分块传输_总长超上限_抛异常")]
public async Task Chunk_ExceedsMaxBodySize_Throws()
{
var client = new ChunkFeedClient { MaxBodySize = 4 };
await Assert.ThrowsAsync<InvalidDataException>(() => ReadChunkAsync(client, "3\r\nabc\r\n3\r\ndef\r\n0\r\n\r\n".GetBytes()));
}
[Fact(DisplayName = "分块传输_末块后带trailers_一并消费不残留")]
public async Task Chunk_Trailers_Consumed()
{
var client = new ChunkFeedClient();
// 末块后的 trailers 段必须一并消费:残留在连接上会让复用连接的下一个响应错位
var body = await ReadChunkAsync(client, "3\r\nabc\r\n0\r\nX-Trace: 1\r\n\r\n".GetBytes());
Assert.Equal("abc", body.ToStr());
}
[Fact(DisplayName = "分块传输_trailers终止空行跨接收包_仍正确结束")]
public async Task Chunk_TrailerSplitAcrossPackets()
{
var client = new ChunkFeedClient();
var body = await ReadChunkAsync(client, "3\r\nabc\r\n0\r\n".GetBytes(), "\r\n".GetBytes());
Assert.Equal("abc", body.ToStr());
}
[Fact(DisplayName = "分块传输_长度行迟迟不到_残留超上限抛异常")]
public async Task Chunk_UnterminatedData_ExceedsCap_Throws()
{
var client = new ChunkFeedClient { MaxChunkSize = 8 };
// 对端持续发送不含 CRLF 的字节:未解析残留必须有上限,不能无界累积
await Assert.ThrowsAsync<InvalidDataException>(() => ReadChunkAsync(
client, "abcdefghij".GetBytes(), "abcdefghij".GetBytes(), "abcdefghij".GetBytes()));
}
#endregion
#region 响应分帧与建连超时
[Fact(DisplayName = "分块与Content-Length同现_以分块为准_不按CL补读")]
public async Task Chunked_TakesPrecedenceOverContentLength()
{
// RFC 9112 §6.1:Transfer-Encoding 覆盖 Content-Length。
// 旧实现先按 Content-Length 补读再判分块:声明长度大于实际分块体时,一直等不到剩余字节,直到整次超时才失败
var head = "HTTP/1.1 200 OK\r\nContent-Length: 100\r\nTransfer-Encoding: chunked\r\n\r\n".GetBytes();
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(head);
await ns.WriteAsync("5\r\nhello\r\n0\r\n\r\n".GetBytes());
await ns.FlushAsync();
// 保持连接不关:旧实现会一直等 Content-Length 声明的剩余 95 字节
await Task.Delay(1500);
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(1) };
var res = await client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") });
Assert.NotNull(res);
Assert.Equal(HttpStatusCode.OK, res!.StatusCode);
Assert.Equal("hello", res.Body?.ToStr());
await server;
}
[Fact(DisplayName = "1xx临时响应_单独到达_跳过并返回最终响应")]
public async Task InterimResponse_SeparatePacket()
{
// 网关与 Expect 场景会先回 100 Continue。当成最终响应返回会让调用方拿到 1xx 的空体并误判成功
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync("HTTP/1.1 100 Continue\r\n\r\n".GetBytes());
await ns.FlushAsync();
await Task.Delay(50);
await ns.WriteAsync("HTTP/1.1 200 OK\r\nContent-Length: 2\r\n\r\nOK".GetBytes());
await ns.FlushAsync();
await Task.Delay(50);
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(5) };
var res = await client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") });
Assert.NotNull(res);
Assert.Equal(HttpStatusCode.OK, res!.StatusCode);
Assert.Equal("OK", res.Body?.ToStr());
await server;
}
[Fact(DisplayName = "1xx与最终响应同包到达_残留字节不丢弃")]
public async Task InterimResponse_SamePacket()
{
// 服务端两次写入常被合并到同一个接收包:1xx 之后的字节就是最终响应,丢弃即丢失响应并挂到超时
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync("HTTP/1.1 100 Continue\r\n\r\nHTTP/1.1 200 OK\r\nContent-Length: 5\r\n\r\nhello".GetBytes());
await ns.FlushAsync();
await Task.Delay(50);
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(5) };
var res = await client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/") });
Assert.NotNull(res);
Assert.Equal(HttpStatusCode.OK, res!.StatusCode);
Assert.Equal("hello", res.Body?.ToStr());
await server;
}
[Fact(DisplayName = "重定向跨跳_上一跳的Transfer-Encoding不残留")]
public async Task Redirect_HeaderResidue_NotReused()
{
// 解析只覆盖本次出现的头部,跨跳复用同一响应对象会把上一跳的 Transfer-Encoding 残留到第二跳,
// 让带 Content-Length 的最终响应被当成分块解析(旧实现下等不到分块长度行,直到超时)
var hop1 = "HTTP/1.1 302 Found\r\nLocation: /b\r\nContent-Length: 0\r\nTransfer-Encoding: chunked\r\n\r\n".GetBytes();
var hop2 = "HTTP/1.1 200 OK\r\nContent-Length: 5\r\n\r\nhello".GetBytes();
var (port, server) = StartLocalServer(async ns =>
{
await ns.WriteAsync(hop1);
await ns.FlushAsync();
// 第二跳请求(同一连接复用)
var buf = new Byte[1024];
var count = await ns.ReadAsync(buf);
Assert.True(count > 0);
await ns.WriteAsync(hop2);
await ns.FlushAsync();
// 保持连接不关:陈旧 TE 会让旧实现一直等分块数据
await Task.Delay(1500);
});
using var client = new TinyHttpClient { Timeout = TimeSpan.FromSeconds(1) };
var res = await client.SendAsync(new HttpRequest { RequestUri = new Uri($"http://127.0.0.1:{port}/a") });
Assert.NotNull(res);
Assert.Equal(HttpStatusCode.OK, res!.StatusCode);
Assert.Equal("hello", res.Body?.ToStr());
await server;
}
/// <summary>探测地址是否构成“黑洞”:预算内既没连上、也不立刻失败</summary>
private static Boolean IsBlackhole(String host, Int32 port, Int32 budgetMs)
{
try
{
using var tc = new TcpClient();
var task = tc.ConnectAsync(host, port);
return !task.Wait(budgetMs);
}
catch
{
return false; // 立刻失败(拒绝或路由不可达)→ 不是黑洞
}
}
[Fact(DisplayName = "建连_黑洞地址_受整次超时约束")]
public async Task Connect_Blackhole_BoundedByTimeout()
{
// 192.0.2.0/24 为文档保留网段,正常不会被路由。若本机对该地址立刻拒绝(ICMP 或路由不可达),
// 就无从验证建连超时约束,跳过
if (!IsBlackhole("192.0.2.1", 80, 1000)) return;
using var client = new TinyHttpClient { Timeout = TimeSpan.FromMilliseconds(500) };
var sw = Stopwatch.StartNew();
// 没有超时约束时,建连要等操作系统默认 TCP 超时(Windows 约 21 秒)
var ex = await Assert.ThrowsAnyAsync<Exception>(() =>
client.SendAsync(new HttpRequest { RequestUri = new Uri("http://192.0.2.1/") }).WaitAsync(TimeSpan.FromSeconds(10)));
sw.Stop();
Assert.IsType<TimeoutException>(ex);
Assert.True(sw.Elapsed < TimeSpan.FromSeconds(5), $"建连耗时 {sw.Elapsed},未受整次超时约束");
}
#endregion
}
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