Protocol Buffers - Google's data interchange format (grpc依赖)
https://developers.google.com/protocol-buffers/
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378 lines
14 KiB
378 lines
14 KiB
// Protocol Buffers - Google's data interchange format |
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// Copyright 2008 Google Inc. |
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// http://code.google.com/p/protobuf/ |
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// |
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// Licensed under the Apache License, Version 2.0 (the "License"); |
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// you may not use this file except in compliance with the License. |
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// You may obtain a copy of the License at |
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// |
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// http://www.apache.org/licenses/LICENSE-2.0 |
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// |
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// Unless required by applicable law or agreed to in writing, software |
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// distributed under the License is distributed on an "AS IS" BASIS, |
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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// See the License for the specific language governing permissions and |
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// limitations under the License. |
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using System; |
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using System.IO; |
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using NUnit.Framework; |
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namespace Google.ProtocolBuffers { |
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[TestFixture] |
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public class CodedInputStreamTest { |
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/// <summary> |
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/// Helper to construct a byte array from a bunch of bytes. The inputs are |
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/// actually ints so that I can use hex notation and not get stupid errors |
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/// about precision. |
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/// </summary> |
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private static byte[] Bytes(params int[] bytesAsInts) { |
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byte[] bytes = new byte[bytesAsInts.Length]; |
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for (int i = 0; i < bytesAsInts.Length; i++) { |
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bytes[i] = (byte)bytesAsInts[i]; |
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} |
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return bytes; |
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} |
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/// <summary> |
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/// Parses the given bytes using ReadRawVarint32() and ReadRawVarint64() and |
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/// </summary> |
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private static void AssertReadVarint(byte[] data, ulong value) { |
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CodedInputStream input = CodedInputStream.CreateInstance(data); |
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Assert.AreEqual((uint)value, input.ReadRawVarint32()); |
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input = CodedInputStream.CreateInstance(data); |
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Assert.AreEqual(value, input.ReadRawVarint64()); |
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// Try different block sizes. |
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for (int bufferSize = 1; bufferSize <= 16; bufferSize *= 2) { |
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input = CodedInputStream.CreateInstance(new SmallBlockInputStream(data, bufferSize)); |
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Assert.AreEqual((uint)value, input.ReadRawVarint32()); |
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input = CodedInputStream.CreateInstance(new SmallBlockInputStream(data, bufferSize)); |
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Assert.AreEqual(value, input.ReadRawVarint64()); |
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} |
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} |
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/// <summary> |
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/// Parses the given bytes using ReadRawVarint32() and ReadRawVarint64() and |
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/// expects them to fail with an InvalidProtocolBufferException whose |
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/// description matches the given one. |
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/// </summary> |
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private void AssertReadVarintFailure(InvalidProtocolBufferException expected, byte[] data) { |
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CodedInputStream input = CodedInputStream.CreateInstance(data); |
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try { |
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input.ReadRawVarint32(); |
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Assert.Fail("Should have thrown an exception."); |
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} catch (InvalidProtocolBufferException e) { |
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Assert.AreEqual(expected.Message, e.Message); |
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} |
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input = CodedInputStream.CreateInstance(data); |
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try { |
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input.ReadRawVarint64(); |
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Assert.Fail("Should have thrown an exception."); |
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} catch (InvalidProtocolBufferException e) { |
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Assert.AreEqual(expected.Message, e.Message); |
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} |
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} |
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[Test] |
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public void ReadVarint() { |
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AssertReadVarint(Bytes(0x00), 0); |
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AssertReadVarint(Bytes(0x01), 1); |
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AssertReadVarint(Bytes(0x7f), 127); |
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// 14882 |
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AssertReadVarint(Bytes(0xa2, 0x74), (0x22 << 0) | (0x74 << 7)); |
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// 2961488830 |
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AssertReadVarint(Bytes(0xbe, 0xf7, 0x92, 0x84, 0x0b), |
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(0x3e << 0) | (0x77 << 7) | (0x12 << 14) | (0x04 << 21) | |
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(0x0bL << 28)); |
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// 64-bit |
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// 7256456126 |
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AssertReadVarint(Bytes(0xbe, 0xf7, 0x92, 0x84, 0x1b), |
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(0x3e << 0) | (0x77 << 7) | (0x12 << 14) | (0x04 << 21) | |
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(0x1bL << 28)); |
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// 41256202580718336 |
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AssertReadVarint(Bytes(0x80, 0xe6, 0xeb, 0x9c, 0xc3, 0xc9, 0xa4, 0x49), |
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(0x00 << 0) | (0x66 << 7) | (0x6b << 14) | (0x1c << 21) | |
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(0x43L << 28) | (0x49L << 35) | (0x24L << 42) | (0x49L << 49)); |
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// 11964378330978735131 |
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AssertReadVarint(Bytes(0x9b, 0xa8, 0xf9, 0xc2, 0xbb, 0xd6, 0x80, 0x85, 0xa6, 0x01), |
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(0x1b << 0) | (0x28 << 7) | (0x79 << 14) | (0x42 << 21) | |
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(0x3bUL << 28) | (0x56UL << 35) | (0x00UL << 42) | |
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(0x05UL << 49) | (0x26UL << 56) | (0x01UL << 63)); |
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// Failures |
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AssertReadVarintFailure( |
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InvalidProtocolBufferException.MalformedVarint(), |
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Bytes(0x80, 0x80, 0x80, 0x80, 0x80, 0x80, 0x80, 0x80, 0x80, 0x80, |
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0x00)); |
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AssertReadVarintFailure( |
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InvalidProtocolBufferException.TruncatedMessage(), |
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Bytes(0x80)); |
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} |
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/// <summary> |
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/// Parses the given bytes using ReadRawLittleEndian32() and checks |
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/// that the result matches the given value. |
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/// </summary> |
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private static void AssertReadLittleEndian32(byte[] data, uint value) { |
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CodedInputStream input = CodedInputStream.CreateInstance(data); |
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Assert.AreEqual(value, input.ReadRawLittleEndian32()); |
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// Try different block sizes. |
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for (int blockSize = 1; blockSize <= 16; blockSize *= 2) { |
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input = CodedInputStream.CreateInstance( |
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new SmallBlockInputStream(data, blockSize)); |
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Assert.AreEqual(value, input.ReadRawLittleEndian32()); |
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} |
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} |
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/// <summary> |
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/// Parses the given bytes using ReadRawLittleEndian64() and checks |
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/// that the result matches the given value. |
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/// </summary> |
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private static void AssertReadLittleEndian64(byte[] data, ulong value) { |
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CodedInputStream input = CodedInputStream.CreateInstance(data); |
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Assert.AreEqual(value, input.ReadRawLittleEndian64()); |
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// Try different block sizes. |
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for (int blockSize = 1; blockSize <= 16; blockSize *= 2) { |
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input = CodedInputStream.CreateInstance( |
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new SmallBlockInputStream(data, blockSize)); |
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Assert.AreEqual(value, input.ReadRawLittleEndian64()); |
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} |
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} |
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[Test] |
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public void ReadLittleEndian() { |
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AssertReadLittleEndian32(Bytes(0x78, 0x56, 0x34, 0x12), 0x12345678); |
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AssertReadLittleEndian32(Bytes(0xf0, 0xde, 0xbc, 0x9a), 0x9abcdef0); |
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AssertReadLittleEndian64(Bytes(0xf0, 0xde, 0xbc, 0x9a, 0x78, 0x56, 0x34, 0x12), |
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0x123456789abcdef0L); |
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AssertReadLittleEndian64( |
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Bytes(0x78, 0x56, 0x34, 0x12, 0xf0, 0xde, 0xbc, 0x9a), 0x9abcdef012345678UL); |
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} |
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[Test] |
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public void DecodeZigZag32() { |
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Assert.AreEqual(0, CodedInputStream.DecodeZigZag32(0)); |
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Assert.AreEqual(-1, CodedInputStream.DecodeZigZag32(1)); |
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Assert.AreEqual(1, CodedInputStream.DecodeZigZag32(2)); |
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Assert.AreEqual(-2, CodedInputStream.DecodeZigZag32(3)); |
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Assert.AreEqual(0x3FFFFFFF, CodedInputStream.DecodeZigZag32(0x7FFFFFFE)); |
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Assert.AreEqual(unchecked((int)0xC0000000), CodedInputStream.DecodeZigZag32(0x7FFFFFFF)); |
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Assert.AreEqual(0x7FFFFFFF, CodedInputStream.DecodeZigZag32(0xFFFFFFFE)); |
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Assert.AreEqual(unchecked((int)0x80000000), CodedInputStream.DecodeZigZag32(0xFFFFFFFF)); |
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} |
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[Test] |
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public void DecodeZigZag64() { |
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Assert.AreEqual(0, CodedInputStream.DecodeZigZag64(0)); |
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Assert.AreEqual(-1, CodedInputStream.DecodeZigZag64(1)); |
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Assert.AreEqual(1, CodedInputStream.DecodeZigZag64(2)); |
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Assert.AreEqual(-2, CodedInputStream.DecodeZigZag64(3)); |
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Assert.AreEqual(0x000000003FFFFFFFL, CodedInputStream.DecodeZigZag64(0x000000007FFFFFFEL)); |
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Assert.AreEqual(unchecked((long)0xFFFFFFFFC0000000L), CodedInputStream.DecodeZigZag64(0x000000007FFFFFFFL)); |
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Assert.AreEqual(0x000000007FFFFFFFL, CodedInputStream.DecodeZigZag64(0x00000000FFFFFFFEL)); |
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Assert.AreEqual(unchecked((long)0xFFFFFFFF80000000L), CodedInputStream.DecodeZigZag64(0x00000000FFFFFFFFL)); |
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Assert.AreEqual(0x7FFFFFFFFFFFFFFFL, CodedInputStream.DecodeZigZag64(0xFFFFFFFFFFFFFFFEL)); |
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Assert.AreEqual(unchecked((long)0x8000000000000000L), CodedInputStream.DecodeZigZag64(0xFFFFFFFFFFFFFFFFL)); |
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} |
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/* TODO(jonskeet): Reinstate this when protoc is ready |
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public void testReadWholeMessage() throws Exception { |
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TestAllTypes message = TestUtil.getAllSet(); |
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byte[] rawBytes = message.toByteArray(); |
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assertEquals(rawBytes.length, message.getSerializedSize()); |
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TestAllTypes message2 = TestAllTypes.parseFrom(rawBytes); |
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TestUtil.assertAllFieldsSet(message2); |
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// Try different block sizes. |
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for (int blockSize = 1; blockSize < 256; blockSize *= 2) { |
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message2 = TestAllTypes.parseFrom( |
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new SmallBlockInputStream(rawBytes, blockSize)); |
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TestUtil.assertAllFieldsSet(message2); |
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} |
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}*/ |
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/* TODO(jonskeet): Reinstate this when protoc is ready |
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public void testSkipWholeMessage() throws Exception { |
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TestAllTypes message = TestUtil.getAllSet(); |
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byte[] rawBytes = message.toByteArray(); |
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// Create two parallel inputs. Parse one as unknown fields while using |
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// skipField() to skip each field on the other. Expect the same tags. |
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CodedInputStream input1 = CodedInputStream.newInstance(rawBytes); |
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CodedInputStream input2 = CodedInputStream.newInstance(rawBytes); |
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UnknownFieldSet.Builder unknownFields = UnknownFieldSet.newBuilder(); |
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while (true) { |
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int tag = input1.readTag(); |
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assertEquals(tag, input2.readTag()); |
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if (tag == 0) { |
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break; |
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} |
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unknownFields.mergeFieldFrom(tag, input1); |
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input2.skipField(tag); |
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} |
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}*/ |
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/* TODO(jonskeet): Reinstate this when protoc is ready |
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public void testReadHugeBlob() throws Exception { |
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// Allocate and initialize a 1MB blob. |
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byte[] blob = new byte[1 << 20]; |
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for (int i = 0; i < blob.length; i++) { |
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blob[i] = (byte)i; |
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} |
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// Make a message containing it. |
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TestAllTypes.Builder builder = TestAllTypes.newBuilder(); |
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TestUtil.setAllFields(builder); |
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builder.setOptionalBytes(ByteString.copyFrom(blob)); |
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TestAllTypes message = builder.build(); |
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// Serialize and parse it. Make sure to parse from an InputStream, not |
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// directly from a ByteString, so that CodedInputStream uses buffered |
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// reading. |
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TestAllTypes message2 = |
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TestAllTypes.parseFrom(message.toByteString().newInput()); |
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assertEquals(message.getOptionalBytes(), message2.getOptionalBytes()); |
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// Make sure all the other fields were parsed correctly. |
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TestAllTypes message3 = TestAllTypes.newBuilder(message2) |
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.setOptionalBytes(TestUtil.getAllSet().getOptionalBytes()) |
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.build(); |
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TestUtil.assertAllFieldsSet(message3); |
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}*/ |
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[Test] |
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public void ReadMaliciouslyLargeBlob() { |
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MemoryStream ms = new MemoryStream(); |
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CodedOutputStream output = CodedOutputStream.CreateInstance(ms); |
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uint tag = WireFormat.MakeTag(1, WireFormat.WireType.LengthDelimited); |
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output.WriteRawVarint32(tag); |
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output.WriteRawVarint32(0x7FFFFFFF); |
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output.WriteRawBytes(new byte[32]); // Pad with a few random bytes. |
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output.Flush(); |
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ms.Position = 0; |
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CodedInputStream input = CodedInputStream.CreateInstance(ms); |
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Assert.AreEqual(tag, input.ReadTag()); |
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try { |
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input.ReadBytes(); |
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Assert.Fail("Should have thrown an exception!"); |
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} catch (InvalidProtocolBufferException) { |
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// success. |
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} |
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} |
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/* TODO(jonskeet): Reinstate this when protoc is ready |
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private TestRecursiveMessage makeRecursiveMessage(int depth) { |
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if (depth == 0) { |
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return TestRecursiveMessage.newBuilder().setI(5).build(); |
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} else { |
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return TestRecursiveMessage.newBuilder() |
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.setA(makeRecursiveMessage(depth - 1)).build(); |
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} |
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} |
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private void assertMessageDepth(TestRecursiveMessage message, int depth) { |
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if (depth == 0) { |
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assertFalse(message.hasA()); |
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assertEquals(5, message.getI()); |
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} else { |
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assertTrue(message.hasA()); |
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assertMessageDepth(message.getA(), depth - 1); |
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} |
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} |
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public void testMaliciousRecursion() { |
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ByteString data64 = makeRecursiveMessage(64).toByteString(); |
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ByteString data65 = makeRecursiveMessage(65).toByteString(); |
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assertMessageDepth(TestRecursiveMessage.parseFrom(data64), 64); |
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try { |
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TestRecursiveMessage.parseFrom(data65); |
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fail("Should have thrown an exception!"); |
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} catch (InvalidProtocolBufferException e) { |
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// success. |
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} |
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CodedInputStream input = data64.newCodedInput(); |
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input.setRecursionLimit(8); |
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try { |
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TestRecursiveMessage.parseFrom(input); |
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fail("Should have thrown an exception!"); |
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} catch (InvalidProtocolBufferException e) { |
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// success. |
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} |
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} |
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*/ |
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/* TODO(jonskeet): Reinstate this when protoc is ready |
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public void testSizeLimit() throws Exception { |
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CodedInputStream input = CodedInputStream.newInstance( |
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TestUtil.getAllSet().toByteString().newInput()); |
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input.setSizeLimit(16); |
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try { |
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TestAllTypes.parseFrom(input); |
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fail("Should have thrown an exception!"); |
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} catch (InvalidProtocolBufferException e) { |
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// success. |
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} |
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}*/ |
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/// <summary> |
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/// Tests that if we read an string that contains invalid UTF-8, no exception |
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/// is thrown. Instead, the invalid bytes are replaced with the Unicode |
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/// "replacement character" U+FFFD. |
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/// </summary> |
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[Test] |
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public void ReadInvalidUtf8() { |
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MemoryStream ms = new MemoryStream(); |
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CodedOutputStream output = CodedOutputStream.CreateInstance(ms); |
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uint tag = WireFormat.MakeTag(1, WireFormat.WireType.LengthDelimited); |
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output.WriteRawVarint32(tag); |
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output.WriteRawVarint32(1); |
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output.WriteRawBytes(new byte[] { 0x80 }); |
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output.Flush(); |
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ms.Position = 0; |
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CodedInputStream input = CodedInputStream.CreateInstance(ms); |
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Assert.AreEqual(tag, input.ReadTag()); |
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string text = input.ReadString(); |
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Assert.AreEqual('\ufffd', text[0]); |
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} |
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/// <summary> |
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/// A stream which limits the number of bytes it reads at a time. |
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/// We use this to make sure that CodedInputStream doesn't screw up when |
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/// reading in small blocks. |
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/// </summary> |
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private sealed class SmallBlockInputStream : MemoryStream { |
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private readonly int blockSize; |
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public SmallBlockInputStream(byte[] data, int blockSize) |
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: base(data) { |
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this.blockSize = blockSize; |
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} |
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public override int Read(byte[] buffer, int offset, int count) { |
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return base.Read(buffer, offset, Math.Min(count, blockSize)); |
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} |
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} |
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} |
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}
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