| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279 | using System;using System.IO;using System.Threading.Tasks;using Microsoft.VisualStudio.TestTools.UnitTesting;#if !NET && !NETSTANDARD2_1_OR_GREATERusing Renci.SshNet.Abstractions;#endifusing Renci.SshNet.Common;using Renci.SshNet.Tests.Common;namespace Renci.SshNet.Tests.Classes.Common{    [TestClass]    public class PipeStreamTest : TestBase    {        [TestMethod]        [TestCategory("PipeStream")]        public void Test_PipeStream_Write_Read_Buffer()        {            var testBuffer = new byte[1024];            new Random().NextBytes(testBuffer);            var outputBuffer = new byte[1024];            using (var stream = new PipeStream())            {                stream.Write(testBuffer, 0, 512);                Assert.AreEqual(512, stream.Length);                Assert.AreEqual(128, stream.Read(outputBuffer, 64, 128));                Assert.AreEqual(384, stream.Length);                CollectionAssert.AreEqual(new byte[64].Concat(testBuffer.Take(128)).Concat(new byte[832]), outputBuffer);            }        }        [TestMethod]        [TestCategory("PipeStream")]        public void Test_PipeStream_Write_Read_Byte()        {            var testBuffer = new byte[1024];            new Random().NextBytes(testBuffer);            using (var stream = new PipeStream())            {                stream.Write(testBuffer, 0, testBuffer.Length);                Assert.AreEqual(1024, stream.Length);                Assert.AreEqual(testBuffer[0], stream.ReadByte());                Assert.AreEqual(1023, stream.Length);                Assert.AreEqual(testBuffer[1], stream.ReadByte());                Assert.AreEqual(1022, stream.Length);            }        }        [TestMethod]        public void Read()        {            var target = new PipeStream();            target.WriteByte(0x0a);            target.WriteByte(0x0d);            target.WriteByte(0x09);            var readBuffer = new byte[2];            var bytesRead = target.Read(readBuffer, 0, readBuffer.Length);            Assert.AreEqual(2, bytesRead);            Assert.AreEqual(0x0a, readBuffer[0]);            Assert.AreEqual(0x0d, readBuffer[1]);            var writeBuffer = new byte[] { 0x05, 0x03 };            target.Write(writeBuffer, 0, writeBuffer.Length);            readBuffer = new byte[4];            bytesRead = target.Read(readBuffer, 0, readBuffer.Length);            Assert.AreEqual(3, bytesRead);            Assert.AreEqual(0x09, readBuffer[0]);            Assert.AreEqual(0x05, readBuffer[1]);            Assert.AreEqual(0x03, readBuffer[2]);            Assert.AreEqual(0x00, readBuffer[3]);        }        [TestMethod]        public async Task Read_NonEmptyArray_OnlyReturnsZeroAfterDispose()        {            // When there is no data available, a read should block,            // but then unblock (and return 0) after disposal.            var pipeStream = new PipeStream();            Task<int> readTask = pipeStream.ReadAsync(new byte[16], 0, 16);            await Task.Delay(50);            Assert.IsFalse(readTask.IsCompleted);            await pipeStream.DisposeAsync();            Assert.AreEqual(0, await readTask);        }        [TestMethod]        public async Task Read_EmptyArray_OnlyReturnsZeroAfterDispose()        {            // Similarly, zero byte reads should still block until after disposal.            var pipeStream = new PipeStream();            Task<int> readTask = pipeStream.ReadAsync(Array.Empty<byte>(), 0, 0);            await Task.Delay(50);            Assert.IsFalse(readTask.IsCompleted);            await pipeStream.DisposeAsync();            Assert.AreEqual(0, await readTask);        }        [TestMethod]        public async Task Read_EmptyArray_OnlyReturnsZeroWhenDataAvailable()        {            // And zero byte reads should block but then return 0 once data            // is available.            var pipeStream = new PipeStream();            Task<int> readTask = pipeStream.ReadAsync(Array.Empty<byte>(), 0, 0);            await Task.Delay(50);            Assert.IsFalse(readTask.IsCompleted);            // not using WriteAsync here because it deadlocks the test#pragma warning disable S6966 // Awaitable method should be used            pipeStream.Write(new byte[] { 1, 2, 3, 4 }, 0, 4);#pragma warning restore S6966 // Awaitable method should be used            Assert.AreEqual(0, await readTask);        }        [TestMethod]        public void Read_AfterDispose_StillWorks()        {            var pipeStream = new PipeStream();            pipeStream.Write(new byte[] { 1, 2, 3, 4 }, 0, 4);            pipeStream.Dispose();#pragma warning disable S3966 // Objects should not be disposed more than once            pipeStream.Dispose(); // Check that multiple Dispose is OK.#pragma warning restore S3966 // Objects should not be disposed more than once            Assert.AreEqual(4, pipeStream.Read(new byte[5], 0, 5));            Assert.AreEqual(0, pipeStream.Read(new byte[5], 0, 5));        }        [TestMethod]        public void SeekShouldThrowNotSupportedException()        {            const long offset = 0;            const SeekOrigin origin = new SeekOrigin();            var target = new PipeStream();            try            {                _ = target.Seek(offset, origin);                Assert.Fail();            }            catch (NotSupportedException)            {            }        }        [TestMethod]        public void SetLengthShouldThrowNotSupportedException()        {            var target = new PipeStream();            try            {                target.SetLength(1);                Assert.Fail();            }            catch (NotSupportedException)            {            }        }        [TestMethod]        public void WriteTest()        {            var target = new PipeStream();            var writeBuffer = new byte[] { 0x0a, 0x05, 0x0d };            target.Write(writeBuffer, 0, 2);            writeBuffer = new byte[] { 0x02, 0x04, 0x03, 0x06, 0x09 };            target.Write(writeBuffer, 1, 2);            var readBuffer = new byte[6];            var bytesRead = target.Read(readBuffer, 0, 4);            Assert.AreEqual(4, bytesRead);            Assert.AreEqual(0x0a, readBuffer[0]);            Assert.AreEqual(0x05, readBuffer[1]);            Assert.AreEqual(0x04, readBuffer[2]);            Assert.AreEqual(0x03, readBuffer[3]);            Assert.AreEqual(0x00, readBuffer[4]);            Assert.AreEqual(0x00, readBuffer[5]);        }        [TestMethod]        public void CanReadTest()        {            var target = new PipeStream();            Assert.IsTrue(target.CanRead);        }        [TestMethod]        public void CanSeekTest()        {            var target = new PipeStream();            Assert.IsFalse(target.CanSeek);        }        [TestMethod]        public void CanWriteTest()        {            var target = new PipeStream();            Assert.IsTrue(target.CanWrite);        }        [TestMethod]        public void LengthTest()        {            var target = new PipeStream();            Assert.AreEqual(0L, target.Length);            target.Write(new byte[] { 0x0a, 0x05, 0x0d }, 0, 2);            Assert.AreEqual(2L, target.Length);            target.WriteByte(0x0a);            Assert.AreEqual(3L, target.Length);            _ = target.Read(new byte[2], 0, 2);            Assert.AreEqual(1L, target.Length);            _ = target.ReadByte();            Assert.AreEqual(0L, target.Length);        }        [TestMethod]        public void Position_GetterAlwaysReturnsZero()        {            var target = new PipeStream();            Assert.AreEqual(0, target.Position);            target.WriteByte(0x0a);            Assert.AreEqual(0, target.Position);            _ = target.ReadByte();            Assert.AreEqual(0, target.Position);        }        [TestMethod]        public void Position_SetterAlwaysThrowsNotSupportedException()        {            var target = new PipeStream();            try            {                target.Position = 0;                Assert.Fail();            }            catch (NotSupportedException)            {            }        }    }}
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