commit dc93612024202e651a9cbe4194c1495c823bff12
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 16:24:33 2020 -0700
fix SA1505
commit dc9fdbc4a4fbce7f4362a24e1ff98be4d27e16a8
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 16:24:02 2020 -0700
add ()
commit 16fb7357fcd7e288a4b8fb201fda2b0aae92e5bc
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 16:21:37 2020 -0700
disable SA1117
commit 544a7e5891e853e2e222f855e5446f3fd79ce2ba
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 16:21:16 2020 -0700
fix SA1508
commit 4e998adf440dda4f13512d1e10f8cb5d5fbc6bd9
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 16:08:28 2020 -0700
allow sa1623
commit baf787255c657a00a6074598c6875e0ab4c9d065
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 16:07:23 2020 -0700
fix SA1413
commit 5ef2ca65de62e6c3cbe513902e3954d78f6dc315
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 16:05:45 2020 -0700
fix SA1413
commit 6cb71f08060b8252a18b01a5788eb2ddcee67c3e
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:44:55 2020 -0700
fix throw stack
commit e6ada0b1cb3aa72df5fcaa0b4690aadcbd4bda5a
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:44:35 2020 -0700
allow CA2225
commit 2e79edec5843c20b7e8f8e9ec5b61cf95284466a
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:35:50 2020 -0700
allow SA1507
commit 108f5a6361f4faa211a8e01f783803295fac0453
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:35:31 2020 -0700
force SA1413
commit 20f33b64972bfafeada513ae1a46a030934673fd
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:30:58 2020 -0700
force SA1413
commit 6b0de102d68a116e149868731e155bc374f56cc8
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:28:33 2020 -0700
fix encoding
commit 4bd8892c2f0e0fa3666e59b0b77f5b23a2e4ca50
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:26:00 2020 -0700
fix xunit order
commit e28556b37ecd782df2d740321e782622ecd277ca
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:10:20 2020 -0700
fix spacing SA1012 SA1004
commit e8cf4b1e0be951babe04cc3674e17718319b8476
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:04:44 2020 -0700
fix SA1211
commit b4164446f7f9d82fb872243e59e3f5c46fbb1f3c
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 06:02:34 2020 -0700
fix attribute related warning
commit 2f17ef45947f6ade36593ede6ba4d27bd1991508
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 05:56:53 2020 -0700
allow ca1801 ca1052 ca1054
commit 49b857f3f1b4a44a809c9186108caab0412c101e
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 05:50:07 2020 -0700
fix SA1001
commit 3389662a32cfc481a3fdf50b6fd651e23aadd9dd
Author: Boshi LIAN <bolian@microsoft.com>
Date: Fri Oct 9 06:24:32 2020 -0700
fix dotnet format
commit f9d55fc925e8a7d2f2b403bd3ae35673068134da
Merge: 8e81532 0d68823
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 05:44:30 2020 -0700
Merge branch 'master' into style_fix0
commit 8e815324040837714efb323580cc5dcd79e58310
Author: Boshi Lian <farmer1992@gmail.com>
Date: Fri Oct 9 05:33:02 2020 -0700
fix remaing build err
commit ecf0152f9e989c4c68274b488d4b3ed6ee88daf9
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 05:24:00 2020 -0700
fix SA1707
commit 462d94794848ebfcd102b56a4344ffc33b50f591
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 05:19:38 2020 -0700
fix underscore naming
commit 5271b113603e469021348523f19555e6be22aebc
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 05:19:12 2020 -0700
allow CA1822
commit 602713ce631026e88d8ff7e8803bb12c2addc3c2
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:37:16 2020 -0700
fix CA1822
commit bd4fee4d31c1054eadf6d03aa10f443eee9654c0
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:36:36 2020 -0700
fix CA1822
commit 257d461f21ef7df65fbc787d5c42c59a89d0eced
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:34:25 2020 -0700
introduce dispose pattern
commit 1d668c7926f877ea196edb67acbfe9bfeddb9e15
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:23:09 2020 -0700
allow CA2008
commit e4fa6acaf36b84298c8c2ab125ff8aa9efc097b7
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:20:28 2020 -0700
allow CA1827
commit dd931d99fa3a95f936ed566320fffa85efb22838
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:14:35 2020 -0700
allow SA1314 CA1825
commit 13b6cf11df439be8020e17bc5d30addc62f90c39
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:13:51 2020 -0700
Revert "fix CA1825"
This reverts commit 17e03bcd4e0f129a64e57d54fbe72acb7d1d226b.
commit 368664139c75d61ab5a0c432a7fbbdad956c54cf
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:09:52 2020 -0700
move class to single files
commit 0015631805d6bc31e4695881989058bb3955766f
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:09:27 2020 -0700
disable CA2000 / TODO
commit 0a1241e84ba1247c8ab4ab8d32bd5d800114420b
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:07:23 2020 -0700
allow SA1715
commit 17e03bcd4e0f129a64e57d54fbe72acb7d1d226b
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 04:06:57 2020 -0700
fix CA1825
commit 7baf350ca93cb45e2587d86fb6ab6e4cf665b6da
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 03:42:04 2020 -0700
fix SA1312 SA1306
commit 44ad5934182adfc871215637e9612295bc26e6f2
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 03:30:35 2020 -0700
fix CA2007
commit 325fa2c2d16d541db6e21b791c5170f39f832d43
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 03:25:11 2020 -0700
fix SA1131
commit 8f1f46b065dd7e9b316491676bb0b93ef91d0595
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 03:17:08 2020 -0700
allow SA1119
commit 57c0fe7cc26932cc30b4d7cc75a809746d74d5aa
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 03:14:14 2020 -0700
fix SA1400
commit 0afcbbc09d5ef66fbbd4b291d14e7804a8e5a1d3
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 03:12:18 2020 -0700
fix SA1513
commit 45f2424531d35a2a106e10e788aff1a18d745078
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 03:09:17 2020 -0700
allow ca1720 ca1716 sa1405
commit 3403814130a1bf730c4e275f74e9cf5d03bedb41
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:16:37 2020 -0700
fix model oper not contains generated header
commit 11377d916cf8cd3ad9109388aff6cf989ff4b7b0
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:14:05 2020 -0700
fix SA1649
commit 92b00051a8c80542a63e1dddbb6eed4e98ad26f9
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:11:16 2020 -0700
fix SA1124
commit 901a9dd2426fa316bcc5a3c2fc411e583f0e07df
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:09:27 2020 -0700
save 1122
commit a8f17b6bac1f1c115b7ed9ebb70d16697a3e81b7
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:09:07 2020 -0700
1507 followup
commit a143184921abb38a09e28a7ef07379003fb19563
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:07:38 2020 -0700
fix sa1507
commit 54b56026265cbbbfa6e5b8b4dcfab281ffbfa272
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:06:44 2020 -0700
fix sa1513
commit 53a009205c88a1d63d8daf32599bbc6428619638
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:05:36 2020 -0700
fix SA1649
commit 26d3e78f61ffc381887baaf5c8b56d92aa0ec563
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 02:01:01 2020 -0700
fix ca1816
commit 1ce5a04ce7a32d901cbece3e18d59e3c068cfd27
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed Oct 7 01:56:43 2020 -0700
readable ruleset
commit dafc55f1c2cdc8466919276291333ba46176161a
Author: Boshi Lian <farmer1992@gmail.com>
Date: Wed May 27 19:13:56 2020 -0700
sync none from guideline
509 lines
19 KiB
C#
509 lines
19 KiB
C#
using Nito.AsyncEx;
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using System;
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using System.Security.Cryptography;
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using System.Threading;
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using System.Threading.Tasks;
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using Xunit;
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namespace k8s.Tests
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{
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/// <summary>
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/// Tests the <see cref="ByteBuffer"/> class.
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/// </summary>
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public class ByteBufferTests
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{
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private readonly byte[] writeData = new byte[]
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{
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0xF0, 0xF1, 0xF2, 0xF3, 0xF4, 0xF5, 0xF6, 0xF7, 0xF8, 0xF9, 0xFA, 0xFB, 0xFC, 0xFD, 0xFE, 0xFF,
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};
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/// <summary>
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/// Tests a sequential read and write operation.
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/// </summary>
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[Fact]
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public void LinearReadWriteTest()
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{
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ByteBuffer buffer = new ByteBuffer(bufferSize: 0x10, maximumSize: 0x100);
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// There's no real guarantee that this will be the case because the ArrayPool does not guarantee
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// a specific buffer size. So let's assert this first to make sure the test fails should this
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// assumption not hold.
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Assert.Equal(0x10, buffer.Size);
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// Assert the initial values.
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Assert.Equal(0, buffer.AvailableReadableBytes);
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Assert.Equal(0x10, buffer.AvailableWritableBytes);
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Assert.Equal(0, buffer.ReadWaterMark);
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Assert.Equal(0, buffer.WriteWaterMark);
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// Write two bytes
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buffer.Write(this.writeData, 0, 2);
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Assert.Equal(2, buffer.AvailableReadableBytes);
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Assert.Equal(0x0E, buffer.AvailableWritableBytes);
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Assert.Equal(0, buffer.ReadWaterMark);
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Assert.Equal(2, buffer.WriteWaterMark);
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// Read two bytes, one byte at a time
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byte[] readData = new byte[0x10];
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var read = buffer.Read(readData, 0, 1);
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Assert.Equal(1, read);
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// Verify the result of the read operation.
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Assert.Equal(0xF0, readData[0]);
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Assert.Equal(0, readData[1]); // Make sure no additional data was read
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// Check the state of the buffer
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Assert.Equal(1, buffer.AvailableReadableBytes);
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Assert.Equal(0x0F, buffer.AvailableWritableBytes);
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Assert.Equal(1, buffer.ReadWaterMark);
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Assert.Equal(2, buffer.WriteWaterMark);
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// Read another byte
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read = buffer.Read(readData, 1, 1);
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Assert.Equal(1, read);
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// Verify the result of the read operation.
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Assert.Equal(0xF1, readData[1]);
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Assert.Equal(0, readData[2]); // Make sure no additional data was read
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// Check the state of the buffer
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Assert.Equal(0, buffer.AvailableReadableBytes);
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Assert.Equal(0x10, buffer.AvailableWritableBytes);
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Assert.Equal(2, buffer.ReadWaterMark);
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Assert.Equal(2, buffer.WriteWaterMark);
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}
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/// <summary>
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/// Tests reading a writing which crosses the boundary (end) of the circular buffer.
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/// </summary>
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[Fact]
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public void BoundaryReadWriteTest()
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{
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ByteBuffer buffer = new ByteBuffer(bufferSize: 0x10, maximumSize: 0x100);
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// There's no real guarantee that this will be the case because the ArrayPool does not guarantee
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// a specific buffer size. So let's assert this first to make sure the test fails should this
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// assumption not hold.
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Assert.Equal(0x10, buffer.Size);
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// Write out 0x0A bytes to the buffer, to increase the high water level for writing bytes
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buffer.Write(this.writeData, 0, 0x0A);
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// Assert the initial values.
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Assert.Equal(0x0A, buffer.AvailableReadableBytes);
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Assert.Equal(0x06, buffer.AvailableWritableBytes);
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Assert.Equal(0, buffer.ReadWaterMark);
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Assert.Equal(0x0A, buffer.WriteWaterMark);
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// Read 0x0A bytes, to increase the high water level for reading bytes
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byte[] readData = new byte[0x10];
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var read = buffer.Read(readData, 0, 0x0A);
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Assert.Equal(0x0A, read);
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Assert.Equal(0x00, buffer.AvailableReadableBytes);
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Assert.Equal(0x10, buffer.AvailableWritableBytes);
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Assert.Equal(0x0A, buffer.ReadWaterMark);
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Assert.Equal(0x0A, buffer.WriteWaterMark);
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// Write an additional 0x0A bytes, but now in reverse order. This will cause the data
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// to be wrapped.
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Array.Reverse(this.writeData);
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buffer.Write(this.writeData, 0, 0x0A);
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// Assert the resulting state of the buffer.
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Assert.Equal(0x0A, buffer.AvailableReadableBytes);
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Assert.Equal(0x06, buffer.AvailableWritableBytes);
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Assert.Equal(0x0A, buffer.ReadWaterMark);
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Assert.Equal(0x04, buffer.WriteWaterMark);
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// Read ten bytes, this will be a wrapped read
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read = buffer.Read(readData, 0, 0x0A);
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Assert.Equal(0x0A, read);
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// Verify the result of the read operation.
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Assert.Equal(0xFF, readData[0]);
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Assert.Equal(0xFE, readData[1]);
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Assert.Equal(0xFD, readData[2]);
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Assert.Equal(0xFC, readData[3]);
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Assert.Equal(0xFB, readData[4]);
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Assert.Equal(0xFA, readData[5]);
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Assert.Equal(0xF9, readData[6]);
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Assert.Equal(0xF8, readData[7]);
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Assert.Equal(0xF7, readData[8]);
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Assert.Equal(0xF6, readData[9]);
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Assert.Equal(0, readData[10]); // Make sure no additional data was read
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// Check the state of the buffer
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Assert.Equal(0, buffer.AvailableReadableBytes);
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Assert.Equal(0x10, buffer.AvailableWritableBytes);
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Assert.Equal(4, buffer.ReadWaterMark);
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Assert.Equal(4, buffer.WriteWaterMark);
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}
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/// <summary>
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/// Tests resizing of the <see cref="ByteBuffer"/> class.
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/// </summary>
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[Fact]
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public void ResizeWriteTest()
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{
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ByteBuffer buffer = new ByteBuffer(bufferSize: 0x10, maximumSize: 0x100);
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// There's no real guarantee that this will be the case because the ArrayPool does not guarantee
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// a specific buffer size. So let's assert this first to make sure the test fails should this
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// assumption not hold.
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Assert.Equal(0x10, buffer.Size);
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// Write out 0x0A bytes to the buffer, to increase the high water level for writing bytes
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buffer.Write(this.writeData, 0, 0x0A);
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byte[] readData = new byte[0x20];
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// Read these 0x0A bytes.
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var read = buffer.Read(readData, 0, 0x0A);
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Assert.Equal(0x0A, read);
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// Assert the initial state of the buffer
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Assert.Equal(0x00, buffer.AvailableReadableBytes);
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Assert.Equal(0x10, buffer.AvailableWritableBytes);
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Assert.Equal(0x0A, buffer.ReadWaterMark);
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Assert.Equal(0x0A, buffer.WriteWaterMark);
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// Write out 0x0A bytes to the buffer, this will cause the buffer to wrap
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buffer.Write(this.writeData, 0, 0x0A);
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Assert.Equal(0x0A, buffer.AvailableReadableBytes);
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Assert.Equal(0x06, buffer.AvailableWritableBytes);
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Assert.Equal(0x0A, buffer.ReadWaterMark);
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Assert.Equal(0x04, buffer.WriteWaterMark);
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// Write an additional 0x0A bytes, but now in reverse order. This will cause the buffer to be resized.
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Array.Reverse(this.writeData);
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buffer.Write(this.writeData, 0, 0x0A);
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// Make sure the buffer has been resized.
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Assert.Equal(0x20, buffer.Size);
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Assert.Equal(0x14, buffer.AvailableReadableBytes); // 2 * 0x0A = 0x14
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Assert.Equal(0x0C, buffer.AvailableWritableBytes); // 0x20 - 0x14 = 0x0C
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Assert.Equal(0x1A, buffer.ReadWaterMark);
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Assert.Equal(0x0E, buffer.WriteWaterMark);
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// Read data, and verify the read data
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read = buffer.Read(readData, 0, 0x14);
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Assert.Equal(0xF0, readData[0]);
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Assert.Equal(0xF1, readData[1]);
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Assert.Equal(0xF2, readData[2]);
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Assert.Equal(0xF3, readData[3]);
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Assert.Equal(0xF4, readData[4]);
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Assert.Equal(0xF5, readData[5]);
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Assert.Equal(0xF6, readData[6]);
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Assert.Equal(0xF7, readData[7]);
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Assert.Equal(0xF8, readData[8]);
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Assert.Equal(0xF9, readData[9]);
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Assert.Equal(0xFF, readData[10]);
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Assert.Equal(0xFE, readData[11]);
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Assert.Equal(0xFD, readData[12]);
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Assert.Equal(0xFC, readData[13]);
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Assert.Equal(0xFB, readData[14]);
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Assert.Equal(0xFA, readData[15]);
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Assert.Equal(0xF9, readData[16]);
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Assert.Equal(0xF8, readData[17]);
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Assert.Equal(0xF7, readData[18]);
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Assert.Equal(0xF6, readData[19]);
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}
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/// <summary>
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/// Tests a call to <see cref="ByteBuffer.Read(byte[], int, int)"/> which wants to read more data
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/// than is available.
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/// </summary>
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[Fact]
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public void ReadTooMuchDataTest()
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{
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var buffer = new ByteBuffer();
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var readData = new byte[0x10];
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// Read 0x010 bytes of data when only 0x06 are available
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buffer.Write(this.writeData, 0, 0x06);
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var read = buffer.Read(readData, 0, readData.Length);
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Assert.Equal(0x06, read);
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Assert.Equal(0xF0, readData[0]);
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Assert.Equal(0xF1, readData[1]);
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Assert.Equal(0xF2, readData[2]);
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Assert.Equal(0xF3, readData[3]);
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Assert.Equal(0xF4, readData[4]);
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Assert.Equal(0xF5, readData[5]);
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Assert.Equal(0x00, readData[6]);
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}
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/// <summary>
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/// Tests a call to <see cref="ByteBuffer.Read(byte[], int, int)"/> when no data is available; and makes
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/// sure the call blocks until data is available.
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/// </summary>
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[Fact]
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public async Task ReadBlocksUntilDataAvailableTest()
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{
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// Makes sure that the Read method does not return until data is available.
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var buffer = new ByteBuffer();
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var readData = new byte[0x10];
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var read = 0;
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// Kick off a read operation
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var readTask = Task.Run(() => read = buffer.Read(readData, 0, readData.Length));
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await Task.Delay(250).ConfigureAwait(false);
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Assert.False(readTask.IsCompleted, "Read task completed before data was available.");
|
|
|
|
// Write data to the buffer
|
|
buffer.Write(this.writeData, 0, 0x03);
|
|
|
|
await TaskAssert.Completed(readTask,
|
|
timeout: TimeSpan.FromMilliseconds(1000),
|
|
message: "Timed out waiting for read task to complete.").ConfigureAwait(false);
|
|
|
|
Assert.Equal(3, read);
|
|
Assert.Equal(0xF0, readData[0]);
|
|
Assert.Equal(0xF1, readData[1]);
|
|
Assert.Equal(0xF2, readData[2]);
|
|
Assert.Equal(0x00, readData[3]);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Tests reading until the end of the file.
|
|
/// </summary>
|
|
[Fact]
|
|
public void ReadUntilEndOfFileTest()
|
|
{
|
|
ByteBuffer buffer = new ByteBuffer(bufferSize: 0x10, maximumSize: 0x100);
|
|
|
|
// There's no real guarantee that this will be the case because the ArrayPool does not guarantee
|
|
// a specific buffer size. So let's assert this first to make sure the test fails should this
|
|
// assumption not hold.
|
|
Assert.Equal(0x10, buffer.Size);
|
|
|
|
buffer.Write(this.writeData, 0, 2);
|
|
buffer.Write(this.writeData, 2, 2);
|
|
buffer.WriteEnd();
|
|
|
|
// Assert the initial state of the buffer
|
|
Assert.Equal(0x04, buffer.AvailableReadableBytes);
|
|
Assert.Equal(0x0C, buffer.AvailableWritableBytes);
|
|
Assert.Equal(0x00, buffer.ReadWaterMark);
|
|
Assert.Equal(0x04, buffer.WriteWaterMark);
|
|
|
|
// Read the data on a chunk-by-chunk basis
|
|
byte[] readData = new byte[0x03];
|
|
var read = buffer.Read(readData, 0, 3);
|
|
Assert.Equal(3, read);
|
|
Assert.Equal(0xF0, readData[0]);
|
|
Assert.Equal(0xF1, readData[1]);
|
|
Assert.Equal(0xF2, readData[2]);
|
|
|
|
read = buffer.Read(readData, 0, 3);
|
|
Assert.Equal(1, read);
|
|
Assert.Equal(0xF3, readData[0]);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Tests reading until the end of a file, piecemeal.
|
|
/// </summary>
|
|
[Fact]
|
|
public void ReadUntilEndOfFileTest2()
|
|
{
|
|
ByteBuffer buffer = new ByteBuffer(bufferSize: 0x10, maximumSize: 0x100);
|
|
|
|
// There's no real guarantee that this will be the case because the ArrayPool does not guarantee
|
|
// a specific buffer size. So let's assert this first to make sure the test fails should this
|
|
// assumption not hold.
|
|
Assert.Equal(0x10, buffer.Size);
|
|
|
|
buffer.Write(this.writeData, 0, 2);
|
|
buffer.Write(this.writeData, 2, 2);
|
|
buffer.WriteEnd();
|
|
|
|
// Assert the initial state of the buffer
|
|
Assert.Equal(0x04, buffer.AvailableReadableBytes);
|
|
Assert.Equal(0x0C, buffer.AvailableWritableBytes);
|
|
Assert.Equal(0x00, buffer.ReadWaterMark);
|
|
Assert.Equal(0x04, buffer.WriteWaterMark);
|
|
|
|
// Read the data at once
|
|
byte[] readData = new byte[0x10];
|
|
var read = buffer.Read(readData, 0, 0x10);
|
|
Assert.Equal(4, read);
|
|
Assert.Equal(0xF0, readData[0]);
|
|
Assert.Equal(0xF1, readData[1]);
|
|
Assert.Equal(0xF2, readData[2]);
|
|
Assert.Equal(0xF3, readData[3]);
|
|
Assert.Equal(0x00, readData[4]);
|
|
|
|
read = buffer.Read(readData, 0, 0x10);
|
|
Assert.Equal(0, read);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Tests growing the byte buffer on the first write. This is a special case where
|
|
/// ReadWaterMark = WriteWaterMark = 0
|
|
/// </summary>
|
|
[Fact]
|
|
public void GrowOnFirstWriteTest()
|
|
{
|
|
// In the current implementation, the minimum size of the buffer will be 16 bytes,
|
|
// but that's not guaranteed.
|
|
ByteBuffer buffer = new ByteBuffer(1, 128);
|
|
|
|
byte[] data = new byte[buffer.Size + 1];
|
|
RandomNumberGenerator.Create().GetBytes(data);
|
|
|
|
byte[] output = new byte[buffer.Size + 1];
|
|
|
|
buffer.Write(data, 0, data.Length);
|
|
|
|
Assert.Equal(data.Length, buffer.AvailableReadableBytes);
|
|
buffer.Read(output, 0, output.Length);
|
|
Assert.Equal(data, output);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Tests growing the byte buffer on the second write.
|
|
/// </summary>
|
|
[Fact]
|
|
public void GrowOnSecondFirstWriteTest()
|
|
{
|
|
// In the current implementation, the minimum size of the buffer will be 16 bytes,
|
|
// but that's not guaranteed.
|
|
ByteBuffer buffer = new ByteBuffer(1, 128);
|
|
|
|
byte[] data = new byte[buffer.Size + 1];
|
|
RandomNumberGenerator.Create().GetBytes(data);
|
|
|
|
byte[] output = new byte[buffer.Size + 1];
|
|
|
|
buffer.Write(data, 0, 1);
|
|
buffer.Write(data, 0, data.Length);
|
|
|
|
Assert.Equal(data.Length + 1, buffer.AvailableReadableBytes);
|
|
buffer.Read(output, 0, 1);
|
|
buffer.Read(output, 0, output.Length);
|
|
Assert.Equal(data, output);
|
|
}
|
|
|
|
/// <summary>
|
|
/// Tests reading from the buffer before data has been written, and makes sure
|
|
/// data is read correctly.
|
|
/// </summary>
|
|
/// <returns>
|
|
/// A <see cref="Task"/> which represents the asynchronous operation.
|
|
/// </returns>
|
|
[Fact]
|
|
public async Task ReadFirstTest()
|
|
{
|
|
ByteBuffer buffer = new ByteBuffer(1, 128);
|
|
|
|
byte[] data = new byte[buffer.Size + 1];
|
|
RandomNumberGenerator.Create().GetBytes(data);
|
|
|
|
byte[] output = new byte[buffer.Size + 1];
|
|
|
|
var readTask = Task.Run(() => buffer.Read(output, 0, output.Length));
|
|
await Task.Delay(TimeSpan.FromSeconds(1)).ConfigureAwait(false);
|
|
|
|
buffer.Write(data, 0, data.Length);
|
|
await readTask.ConfigureAwait(false);
|
|
}
|
|
|
|
#if NETCOREAPP2_0
|
|
/// <summary>
|
|
/// A simpel test which will use a random number generator to write lots of data to
|
|
/// the buffer, and read that data using another thread. Makes sure the hashes of the
|
|
/// data written and read matches.
|
|
/// </summary>
|
|
/// <returns>
|
|
/// A <see cref="Task"/> which represents the asynchronous operation.
|
|
/// </returns>
|
|
[Fact]
|
|
public async Task RandomReadWriteTest()
|
|
{
|
|
ByteBuffer buffer
|
|
= new ByteBuffer(1, 1024 * 1024);
|
|
|
|
var generatorTask
|
|
= Task.Run(() => this.Generate(buffer, SHA256.Create()));
|
|
var consumerTask
|
|
= Task.Run(() => this.Consume(buffer, SHA256.Create()));
|
|
|
|
await Task.WhenAll(generatorTask, consumerTask).ConfigureAwait(false);
|
|
|
|
var generatorHash
|
|
= await generatorTask.ConfigureAwait(false);
|
|
var consumerHash
|
|
= await consumerTask.ConfigureAwait(false);
|
|
|
|
Assert.Equal(generatorHash, consumerHash);
|
|
}
|
|
|
|
private byte[] Generate(ByteBuffer buffer, HashAlgorithm hash)
|
|
{
|
|
RandomNumberGenerator g
|
|
= RandomNumberGenerator.Create();
|
|
|
|
byte[] next
|
|
= new byte[32];
|
|
|
|
int iterations
|
|
= 0;
|
|
while (buffer.Size < buffer.MaximumSize)
|
|
{
|
|
iterations++;
|
|
|
|
g.GetBytes(next);
|
|
buffer.Write(next, 0, next.Length);
|
|
hash.TransformBlock(next, 0, next.Length, null, 0);
|
|
}
|
|
|
|
buffer.WriteEnd();
|
|
hash.TransformFinalBlock(next, 0, 0);
|
|
return hash.Hash;
|
|
}
|
|
|
|
private byte[] Consume(ByteBuffer buffer, HashAlgorithm hash)
|
|
{
|
|
byte[] data
|
|
= new byte[32];
|
|
|
|
AsyncAutoResetEvent onBufferResized
|
|
= new AsyncAutoResetEvent();
|
|
buffer.OnResize
|
|
+= (sender, e) => onBufferResized.Set();
|
|
|
|
int read;
|
|
int iterations
|
|
= 0;
|
|
while ((read
|
|
= buffer.Read(data, 0, data.Length)) > 0)
|
|
{
|
|
iterations++;
|
|
|
|
hash.TransformBlock(data, 0, read, null, 0);
|
|
|
|
// The reader task is probably much faster than the writer, as the writer should also generate
|
|
// random data. Wait at specific intervals for the writer to catch up and to force a resize
|
|
// of the buffer.
|
|
if (iterations % 1024 == 0 && buffer.Size < buffer.MaximumSize)
|
|
{
|
|
onBufferResized.Wait();
|
|
}
|
|
}
|
|
|
|
hash.TransformFinalBlock(data, 0, 0);
|
|
return hash.Hash;
|
|
}
|
|
#endif
|
|
}
|
|
}
|