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Jon Skeet60c059b2008-10-23 21:17:56 +01001// Protocol Buffers - Google's data interchange format
2// Copyright 2008 Google Inc. All rights reserved.
3// http://github.com/jskeet/dotnet-protobufs/
4// Original C++/Java/Python code:
Jon Skeet68036862008-10-22 13:30:34 +01005// http://code.google.com/p/protobuf/
6//
Jon Skeet60c059b2008-10-23 21:17:56 +01007// Redistribution and use in source and binary forms, with or without
8// modification, are permitted provided that the following conditions are
9// met:
Jon Skeet68036862008-10-22 13:30:34 +010010//
Jon Skeet60c059b2008-10-23 21:17:56 +010011// * Redistributions of source code must retain the above copyright
12// notice, this list of conditions and the following disclaimer.
13// * Redistributions in binary form must reproduce the above
14// copyright notice, this list of conditions and the following disclaimer
15// in the documentation and/or other materials provided with the
16// distribution.
17// * Neither the name of Google Inc. nor the names of its
18// contributors may be used to endorse or promote products derived from
19// this software without specific prior written permission.
Jon Skeet68036862008-10-22 13:30:34 +010020//
Jon Skeet60c059b2008-10-23 21:17:56 +010021// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
22// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
23// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
24// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
25// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
26// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
27// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
28// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
29// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
30// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
31// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
Jon Skeet68036862008-10-22 13:30:34 +010032using System.IO;
33using Google.ProtocolBuffers.TestProtos;
34using NUnit.Framework;
35
36namespace Google.ProtocolBuffers {
37 [TestFixture]
38 public class CodedOutputStreamTest {
39
40 /// <summary>
41 /// Writes the given value using WriteRawVarint32() and WriteRawVarint64() and
42 /// checks that the result matches the given bytes
43 /// </summary>
44 private static void AssertWriteVarint(byte[] data, ulong value) {
45 // Only do 32-bit write if the value fits in 32 bits.
46 if ((value >> 32) == 0) {
47 MemoryStream rawOutput = new MemoryStream();
48 CodedOutputStream output = CodedOutputStream.CreateInstance(rawOutput);
49 output.WriteRawVarint32((uint) value);
50 output.Flush();
51 Assert.AreEqual(data, rawOutput.ToArray());
52 // Also try computing size.
53 Assert.AreEqual(data.Length, CodedOutputStream.ComputeRawVarint32Size((uint) value));
54 }
55
56 {
57 MemoryStream rawOutput = new MemoryStream();
58 CodedOutputStream output = CodedOutputStream.CreateInstance(rawOutput);
59 output.WriteRawVarint64(value);
60 output.Flush();
61 Assert.AreEqual(data, rawOutput.ToArray());
62
63 // Also try computing size.
64 Assert.AreEqual(data.Length, CodedOutputStream.ComputeRawVarint64Size(value));
65 }
66
67 // Try different buffer sizes.
68 for (int bufferSize = 1; bufferSize <= 16; bufferSize *= 2) {
69 // Only do 32-bit write if the value fits in 32 bits.
70 if ((value >> 32) == 0) {
71 MemoryStream rawOutput = new MemoryStream();
72 CodedOutputStream output =
73 CodedOutputStream.CreateInstance(rawOutput, bufferSize);
74 output.WriteRawVarint32((uint) value);
75 output.Flush();
76 Assert.AreEqual(data, rawOutput.ToArray());
77 }
78
79 {
80 MemoryStream rawOutput = new MemoryStream();
81 CodedOutputStream output = CodedOutputStream.CreateInstance(rawOutput, bufferSize);
82 output.WriteRawVarint64(value);
83 output.Flush();
84 Assert.AreEqual(data, rawOutput.ToArray());
85 }
86 }
87 }
88
89 /// <summary>
90 /// Tests WriteRawVarint32() and WriteRawVarint64()
91 /// </summary>
92 [Test]
93 public void WriteVarint() {
94 AssertWriteVarint(new byte[] {0x00}, 0);
95 AssertWriteVarint(new byte[] {0x01}, 1);
96 AssertWriteVarint(new byte[] {0x7f}, 127);
97 // 14882
98 AssertWriteVarint(new byte[] {0xa2, 0x74}, (0x22 << 0) | (0x74 << 7));
99 // 2961488830
100 AssertWriteVarint(new byte[] {0xbe, 0xf7, 0x92, 0x84, 0x0b},
101 (0x3e << 0) | (0x77 << 7) | (0x12 << 14) | (0x04 << 21) |
102 (0x0bL << 28));
103
104 // 64-bit
105 // 7256456126
106 AssertWriteVarint(new byte[] {0xbe, 0xf7, 0x92, 0x84, 0x1b},
107 (0x3e << 0) | (0x77 << 7) | (0x12 << 14) | (0x04 << 21) |
108 (0x1bL << 28));
109 // 41256202580718336
110 AssertWriteVarint(
111 new byte[] {0x80, 0xe6, 0xeb, 0x9c, 0xc3, 0xc9, 0xa4, 0x49},
112 (0x00 << 0) | (0x66 << 7) | (0x6b << 14) | (0x1c << 21) |
113 (0x43UL << 28) | (0x49L << 35) | (0x24UL << 42) | (0x49UL << 49));
114 // 11964378330978735131
115 AssertWriteVarint(
116 new byte[] {0x9b, 0xa8, 0xf9, 0xc2, 0xbb, 0xd6, 0x80, 0x85, 0xa6, 0x01},
117 unchecked((ulong)
118 ((0x1b << 0) | (0x28 << 7) | (0x79 << 14) | (0x42 << 21) |
119 (0x3bL << 28) | (0x56L << 35) | (0x00L << 42) |
120 (0x05L << 49) | (0x26L << 56) | (0x01L << 63))));
121 }
122
123 /// <summary>
124 /// Parses the given bytes using WriteRawLittleEndian32() and checks
125 /// that the result matches the given value.
126 /// </summary>
127 private static void AssertWriteLittleEndian32(byte[] data, uint value) {
128 MemoryStream rawOutput = new MemoryStream();
129 CodedOutputStream output = CodedOutputStream.CreateInstance(rawOutput);
130 output.WriteRawLittleEndian32(value);
131 output.Flush();
132 Assert.AreEqual(data, rawOutput.ToArray());
133
134 // Try different buffer sizes.
135 for (int bufferSize = 1; bufferSize <= 16; bufferSize *= 2) {
136 rawOutput = new MemoryStream();
137 output = CodedOutputStream.CreateInstance(rawOutput, bufferSize);
138 output.WriteRawLittleEndian32(value);
139 output.Flush();
140 Assert.AreEqual(data, rawOutput.ToArray());
141 }
142 }
143
144 /// <summary>
145 /// Parses the given bytes using WriteRawLittleEndian64() and checks
146 /// that the result matches the given value.
147 /// </summary>
148 private static void AssertWriteLittleEndian64(byte[] data, ulong value) {
149 MemoryStream rawOutput = new MemoryStream();
150 CodedOutputStream output = CodedOutputStream.CreateInstance(rawOutput);
151 output.WriteRawLittleEndian64(value);
152 output.Flush();
153 Assert.AreEqual(data, rawOutput.ToArray());
154
155 // Try different block sizes.
156 for (int blockSize = 1; blockSize <= 16; blockSize *= 2) {
157 rawOutput = new MemoryStream();
158 output = CodedOutputStream.CreateInstance(rawOutput, blockSize);
159 output.WriteRawLittleEndian64(value);
160 output.Flush();
161 Assert.AreEqual(data, rawOutput.ToArray());
162 }
163 }
164
165 /// <summary>
166 /// Tests writeRawLittleEndian32() and writeRawLittleEndian64().
167 /// </summary>
168 [Test]
169 public void WriteLittleEndian() {
170 AssertWriteLittleEndian32(new byte[] {0x78, 0x56, 0x34, 0x12}, 0x12345678);
171 AssertWriteLittleEndian32(new byte[] {0xf0, 0xde, 0xbc, 0x9a}, 0x9abcdef0);
172
173 AssertWriteLittleEndian64(
174 new byte[]{0xf0, 0xde, 0xbc, 0x9a, 0x78, 0x56, 0x34, 0x12},
175 0x123456789abcdef0L);
176 AssertWriteLittleEndian64(
177 new byte[]{0x78, 0x56, 0x34, 0x12, 0xf0, 0xde, 0xbc, 0x9a},
178 0x9abcdef012345678UL);
179 }
180
181 [Test]
182 public void WriteWholeMessage() {
183 TestAllTypes message = TestUtil.GetAllSet();
184
185 byte[] rawBytes = message.ToByteArray();
186 TestUtil.AssertEqualBytes(TestUtil.GoldenMessage.ToByteArray(), rawBytes);
187
188 // Try different block sizes.
189 for (int blockSize = 1; blockSize < 256; blockSize *= 2) {
190 MemoryStream rawOutput = new MemoryStream();
191 CodedOutputStream output =
192 CodedOutputStream.CreateInstance(rawOutput, blockSize);
193 message.WriteTo(output);
194 output.Flush();
195 TestUtil.AssertEqualBytes(rawBytes, rawOutput.ToArray());
196 }
197 }
198
Jon Skeet25a28582009-02-18 16:06:22 +0000199 /// <summary>
200 /// Tests writing a whole message with every packed field type. Ensures the
201 /// wire format of packed fields is compatible with C++.
202 /// </summary>
203 [Test]
204 public void WriteWholePackedFieldsMessage() {
205 TestPackedTypes message = TestUtil.GetPackedSet();
206
207 byte[] rawBytes = message.ToByteArray();
208 TestUtil.AssertEqualBytes(TestUtil.GetGoldenPackedFieldsMessage().ToByteArray(),
209 rawBytes);
210 }
Jon Skeet68036862008-10-22 13:30:34 +0100211
212 [Test]
213 public void EncodeZigZag32() {
214 Assert.AreEqual(0, CodedOutputStream.EncodeZigZag32( 0));
215 Assert.AreEqual(1, CodedOutputStream.EncodeZigZag32(-1));
216 Assert.AreEqual(2, CodedOutputStream.EncodeZigZag32( 1));
217 Assert.AreEqual(3, CodedOutputStream.EncodeZigZag32(-2));
218 Assert.AreEqual(0x7FFFFFFE, CodedOutputStream.EncodeZigZag32(0x3FFFFFFF));
219 Assert.AreEqual(0x7FFFFFFF, CodedOutputStream.EncodeZigZag32(unchecked((int)0xC0000000)));
220 Assert.AreEqual(0xFFFFFFFE, CodedOutputStream.EncodeZigZag32(0x7FFFFFFF));
221 Assert.AreEqual(0xFFFFFFFF, CodedOutputStream.EncodeZigZag32(unchecked((int)0x80000000)));
222 }
223
224 [Test]
225 public void EncodeZigZag64() {
226 Assert.AreEqual(0, CodedOutputStream.EncodeZigZag64( 0));
227 Assert.AreEqual(1, CodedOutputStream.EncodeZigZag64(-1));
228 Assert.AreEqual(2, CodedOutputStream.EncodeZigZag64( 1));
229 Assert.AreEqual(3, CodedOutputStream.EncodeZigZag64(-2));
230 Assert.AreEqual(0x000000007FFFFFFEL,
231 CodedOutputStream.EncodeZigZag64(unchecked((long)0x000000003FFFFFFFUL)));
232 Assert.AreEqual(0x000000007FFFFFFFL,
233 CodedOutputStream.EncodeZigZag64(unchecked((long)0xFFFFFFFFC0000000UL)));
234 Assert.AreEqual(0x00000000FFFFFFFEL,
235 CodedOutputStream.EncodeZigZag64(unchecked((long)0x000000007FFFFFFFUL)));
236 Assert.AreEqual(0x00000000FFFFFFFFL,
237 CodedOutputStream.EncodeZigZag64(unchecked((long)0xFFFFFFFF80000000UL)));
238 Assert.AreEqual(0xFFFFFFFFFFFFFFFEL,
239 CodedOutputStream.EncodeZigZag64(unchecked((long)0x7FFFFFFFFFFFFFFFUL)));
240 Assert.AreEqual(0xFFFFFFFFFFFFFFFFL,
241 CodedOutputStream.EncodeZigZag64(unchecked((long)0x8000000000000000UL)));
242 }
243
244 [Test]
245 public void RoundTripZigZag32() {
246 // Some easier-to-verify round-trip tests. The inputs (other than 0, 1, -1)
247 // were chosen semi-randomly via keyboard bashing.
248 Assert.AreEqual(0, CodedInputStream.DecodeZigZag32(CodedOutputStream.EncodeZigZag32(0)));
249 Assert.AreEqual(1, CodedInputStream.DecodeZigZag32(CodedOutputStream.EncodeZigZag32(1)));
250 Assert.AreEqual(-1, CodedInputStream.DecodeZigZag32(CodedOutputStream.EncodeZigZag32(-1)));
251 Assert.AreEqual(14927, CodedInputStream.DecodeZigZag32(CodedOutputStream.EncodeZigZag32(14927)));
252 Assert.AreEqual(-3612, CodedInputStream.DecodeZigZag32(CodedOutputStream.EncodeZigZag32(-3612)));
253 }
254
255 [Test]
256 public void RoundTripZigZag64() {
257 Assert.AreEqual(0, CodedInputStream.DecodeZigZag64(CodedOutputStream.EncodeZigZag64(0)));
258 Assert.AreEqual(1, CodedInputStream.DecodeZigZag64(CodedOutputStream.EncodeZigZag64(1)));
259 Assert.AreEqual(-1, CodedInputStream.DecodeZigZag64(CodedOutputStream.EncodeZigZag64(-1)));
260 Assert.AreEqual(14927, CodedInputStream.DecodeZigZag64(CodedOutputStream.EncodeZigZag64(14927)));
261 Assert.AreEqual(-3612, CodedInputStream.DecodeZigZag64(CodedOutputStream.EncodeZigZag64(-3612)));
262
263 Assert.AreEqual(856912304801416L, CodedInputStream.DecodeZigZag64(CodedOutputStream.EncodeZigZag64(856912304801416L)));
264 Assert.AreEqual(-75123905439571256L, CodedInputStream.DecodeZigZag64(CodedOutputStream.EncodeZigZag64(-75123905439571256L)));
265 }
266 }
267}