Program.cs 26 KB

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  1. #region Copyright notice and license
  2. // Protocol Buffers - Google's data interchange format
  3. // Copyright 2008 Google Inc. All rights reserved.
  4. // http://github.com/jskeet/dotnet-protobufs/
  5. // Original C++/Java/Python code:
  6. // http://code.google.com/p/protobuf/
  7. //
  8. // Redistribution and use in source and binary forms, with or without
  9. // modification, are permitted provided that the following conditions are
  10. // met:
  11. //
  12. // * Redistributions of source code must retain the above copyright
  13. // notice, this list of conditions and the following disclaimer.
  14. // * Redistributions in binary form must reproduce the above
  15. // copyright notice, this list of conditions and the following disclaimer
  16. // in the documentation and/or other materials provided with the
  17. // distribution.
  18. // * Neither the name of Google Inc. nor the names of its
  19. // contributors may be used to endorse or promote products derived from
  20. // this software without specific prior written permission.
  21. //
  22. // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  23. // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  24. // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
  25. // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  26. // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
  27. // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
  28. // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
  29. // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
  30. // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
  31. // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
  32. // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
  33. #endregion
  34. using System;
  35. using System.Collections.Generic;
  36. using System.Diagnostics;
  37. using System.IO;
  38. using System.Runtime.Serialization.Json;
  39. using System.Text;
  40. using System.Threading;
  41. using System.Xml;
  42. using Google.ProtocolBuffers.Serialization;
  43. using Google.ProtocolBuffers.TestProtos;
  44. namespace Google.ProtocolBuffers.ProtoBench
  45. {
  46. /// <summary>
  47. /// Simple benchmarking of arbitrary messages.
  48. /// </summary>
  49. public sealed class Program
  50. {
  51. private static TimeSpan MinSampleTime = TimeSpan.FromSeconds(2);
  52. private static TimeSpan TargetTime = TimeSpan.FromSeconds(30);
  53. private static bool Verbose = false, FastTest = false, OtherFormats = false;
  54. // Avoid a .NET 3.5 dependency
  55. private delegate void Action();
  56. private delegate void BenchmarkTest(string name, long dataSize, Action action);
  57. private static BenchmarkTest RunBenchmark;
  58. [STAThread]
  59. public static int Main(string[] args)
  60. {
  61. List<string> temp = new List<string>(args);
  62. Verbose = temp.Remove("/verbose") || temp.Remove("-verbose");
  63. OtherFormats = temp.Remove("/formats") || temp.Remove("-formats");
  64. if (true == (FastTest = (temp.Remove("/fast") || temp.Remove("-fast"))))
  65. {
  66. TargetTime = TimeSpan.FromSeconds(10);
  67. }
  68. RunBenchmark = BenchmarkV1;
  69. if (temp.Remove("/v2") || temp.Remove("-v2"))
  70. {
  71. Process.GetCurrentProcess().PriorityClass = ProcessPriorityClass.RealTime;
  72. Process.GetCurrentProcess().ProcessorAffinity = new IntPtr(1);
  73. RunBenchmark = BenchmarkV2;
  74. }
  75. if (temp.Remove("/all") || temp.Remove("-all"))
  76. {
  77. if (FastTest)
  78. {
  79. TargetTime = TimeSpan.FromSeconds(5);
  80. }
  81. foreach (KeyValuePair<string, string> item in MakeTests())
  82. {
  83. temp.Add(item.Key);
  84. temp.Add(item.Value);
  85. }
  86. }
  87. args = temp.ToArray();
  88. if (args.Length < 2 || (args.Length%2) != 0)
  89. {
  90. Console.Error.WriteLine("Usage: ProtoBench [/fast] <descriptor type name> <input data>");
  91. Console.Error.WriteLine("The descriptor type name is the fully-qualified message name,");
  92. Console.Error.WriteLine(
  93. "including assembly - e.g. Google.ProtocolBuffers.BenchmarkProtos.Message1,ProtoBench");
  94. Console.Error.WriteLine("(You can specify multiple pairs of descriptor type name and input data.)");
  95. return 1;
  96. }
  97. bool success = true;
  98. for (int i = 0; i < args.Length; i += 2)
  99. {
  100. success &= RunTest(args[i], args[i + 1], null);
  101. }
  102. return success ? 0 : 1;
  103. }
  104. /// <summary>
  105. /// Runs a single test. Error messages are displayed to Console.Error, and the return value indicates
  106. /// general success/failure.
  107. /// </summary>
  108. public static bool RunTest(string typeName, string file, byte[] inputData)
  109. {
  110. Console.WriteLine("Benchmarking {0} with file {1}", typeName, file);
  111. IMessage defaultMessage;
  112. try
  113. {
  114. defaultMessage = MessageUtil.GetDefaultMessage(typeName);
  115. }
  116. catch (ArgumentException e)
  117. {
  118. Console.Error.WriteLine(e.Message);
  119. return false;
  120. }
  121. try
  122. {
  123. ExtensionRegistry registry = ExtensionRegistry.Empty;
  124. inputData = inputData ?? File.ReadAllBytes(file);
  125. MemoryStream inputStream = new MemoryStream(inputData);
  126. ByteString inputString = ByteString.CopyFrom(inputData);
  127. IMessage sampleMessage =
  128. defaultMessage.WeakCreateBuilderForType().WeakMergeFrom(inputString, registry).WeakBuild();
  129. IDictionary<string, object> dictionary = null;
  130. byte[] jsonBytes = null, xmlBytes = null; /*no pun intended, well... maybe for xml*/
  131. if (OtherFormats)
  132. {
  133. using (MemoryStream temp = new MemoryStream())
  134. {
  135. XmlFormatWriter.CreateInstance(temp).WriteMessage(sampleMessage);
  136. xmlBytes = temp.ToArray();
  137. }
  138. using (MemoryStream temp = new MemoryStream())
  139. {
  140. JsonFormatWriter.CreateInstance(temp).WriteMessage(sampleMessage);
  141. jsonBytes = temp.ToArray();
  142. }
  143. dictionary = new Dictionary<string, object>(StringComparer.Ordinal);
  144. new DictionaryWriter(dictionary).WriteMessage(sampleMessage);
  145. }
  146. //Serializers
  147. if (!FastTest)
  148. {
  149. RunBenchmark("Serialize to byte string", inputData.Length, () => sampleMessage.ToByteString());
  150. }
  151. RunBenchmark("Serialize to byte array", inputData.Length, () => sampleMessage.ToByteArray());
  152. if (!FastTest)
  153. {
  154. RunBenchmark("Serialize to memory stream", inputData.Length,
  155. () => sampleMessage.WriteTo(new MemoryStream()));
  156. }
  157. if (OtherFormats)
  158. {
  159. RunBenchmark("Serialize to xml", xmlBytes.Length,
  160. () =>
  161. {
  162. XmlFormatWriter.CreateInstance(new MemoryStream(), Encoding.UTF8).WriteMessage(sampleMessage);
  163. });
  164. RunBenchmark("Serialize to json", jsonBytes.Length,
  165. () => { JsonFormatWriter.CreateInstance().WriteMessage(sampleMessage); });
  166. RunBenchmark("Serialize to json via xml", jsonBytes.Length,
  167. () =>
  168. XmlFormatWriter.CreateInstance(
  169. JsonReaderWriterFactory.CreateJsonWriter(new MemoryStream(), Encoding.UTF8))
  170. .SetOptions(XmlWriterOptions.OutputJsonTypes)
  171. .WriteMessage(sampleMessage)
  172. );
  173. RunBenchmark("Serialize to dictionary", sampleMessage.SerializedSize,
  174. () => new DictionaryWriter().WriteMessage(sampleMessage));
  175. }
  176. //Deserializers
  177. if (!FastTest)
  178. {
  179. RunBenchmark("Deserialize from byte string", inputData.Length,
  180. () => defaultMessage.WeakCreateBuilderForType()
  181. .WeakMergeFrom(inputString, registry)
  182. .WeakBuild()
  183. );
  184. }
  185. RunBenchmark("Deserialize from byte array", inputData.Length,
  186. () => defaultMessage.WeakCreateBuilderForType()
  187. .WeakMergeFrom(CodedInputStream.CreateInstance(inputData), registry)
  188. .WeakBuild()
  189. );
  190. if (!FastTest)
  191. {
  192. RunBenchmark("Deserialize from memory stream", inputData.Length,
  193. () =>
  194. {
  195. inputStream.Position = 0;
  196. defaultMessage.WeakCreateBuilderForType().WeakMergeFrom(
  197. CodedInputStream.CreateInstance(inputStream), registry)
  198. .WeakBuild();
  199. });
  200. }
  201. if (OtherFormats)
  202. {
  203. RunBenchmark("Deserialize from xml", xmlBytes.Length,
  204. () =>
  205. XmlFormatReader.CreateInstance(xmlBytes).Merge(
  206. defaultMessage.WeakCreateBuilderForType()).WeakBuild());
  207. RunBenchmark("Deserialize from json", jsonBytes.Length,
  208. () =>
  209. JsonFormatReader.CreateInstance(jsonBytes).Merge(
  210. defaultMessage.WeakCreateBuilderForType()).WeakBuild());
  211. RunBenchmark("Deserialize from json via xml", jsonBytes.Length,
  212. () =>
  213. XmlFormatReader.CreateInstance(JsonReaderWriterFactory.CreateJsonReader(jsonBytes, XmlDictionaryReaderQuotas.Max))
  214. .SetOptions(XmlReaderOptions.ReadNestedArrays).Merge(
  215. defaultMessage.WeakCreateBuilderForType()).WeakBuild());
  216. RunBenchmark("Deserialize from dictionary", sampleMessage.SerializedSize,
  217. () =>
  218. new DictionaryReader(dictionary).Merge(defaultMessage.WeakCreateBuilderForType()).
  219. WeakBuild());
  220. }
  221. Console.WriteLine();
  222. return true;
  223. }
  224. catch (Exception e)
  225. {
  226. Console.Error.WriteLine("Error: {0}", e.Message);
  227. Console.Error.WriteLine();
  228. Console.Error.WriteLine("Detailed exception information: {0}", e);
  229. return false;
  230. }
  231. }
  232. private static void BenchmarkV2(string name, long dataSize, Action action)
  233. {
  234. Thread.BeginThreadAffinity();
  235. TimeSpan elapsed = TimeSpan.Zero;
  236. long runs = 0;
  237. long totalCount = 0;
  238. double best = double.MinValue, worst = double.MaxValue;
  239. action();
  240. // Run it progressively more times until we've got a reasonable sample
  241. int iterations = 100;
  242. elapsed = TimeAction(action, iterations);
  243. while (elapsed.TotalMilliseconds < 1000)
  244. {
  245. elapsed += TimeAction(action, iterations);
  246. iterations *= 2;
  247. }
  248. TimeSpan target = TimeSpan.FromSeconds(1);
  249. elapsed = TimeAction(action, iterations);
  250. iterations = (int) ((target.Ticks*iterations)/(double) elapsed.Ticks);
  251. elapsed = TimeAction(action, iterations);
  252. iterations = (int) ((target.Ticks*iterations)/(double) elapsed.Ticks);
  253. elapsed = TimeAction(action, iterations);
  254. iterations = (int) ((target.Ticks*iterations)/(double) elapsed.Ticks);
  255. double first = (iterations*dataSize)/(elapsed.TotalSeconds*1024*1024);
  256. if (Verbose)
  257. {
  258. Console.WriteLine("Round ---: Count = {1,6}, Bps = {2,8:f3}", 0, iterations, first);
  259. }
  260. elapsed = TimeSpan.Zero;
  261. int max = (int) TargetTime.TotalSeconds;
  262. while (runs < max)
  263. {
  264. TimeSpan cycle = TimeAction(action, iterations);
  265. // Accumulate and scale for next cycle.
  266. double bps = (iterations*dataSize)/(cycle.TotalSeconds*1024*1024);
  267. if (Verbose)
  268. {
  269. Console.WriteLine("Round {1,3}: Count = {2,6}, Bps = {3,8:f3}",
  270. 0, runs, iterations, bps);
  271. }
  272. best = Math.Max(best, bps);
  273. worst = Math.Min(worst, bps);
  274. runs++;
  275. elapsed += cycle;
  276. totalCount += iterations;
  277. iterations = (int) ((target.Ticks*totalCount)/(double) elapsed.Ticks);
  278. }
  279. Thread.EndThreadAffinity();
  280. Console.WriteLine(
  281. "{1}: averages {2} per {3:f3}s for {4} runs; avg: {5:f3}mbps; best: {6:f3}mbps; worst: {7:f3}mbps",
  282. 0, name, totalCount/runs, elapsed.TotalSeconds/runs, runs,
  283. (totalCount*dataSize)/(elapsed.TotalSeconds*1024*1024), best, worst);
  284. }
  285. private static void BenchmarkV1(string name, long dataSize, Action action)
  286. {
  287. // Make sure it's JITted
  288. action();
  289. // Run it progressively more times until we've got a reasonable sample
  290. int iterations = 1;
  291. TimeSpan elapsed = TimeAction(action, iterations);
  292. while (elapsed < MinSampleTime)
  293. {
  294. iterations *= 2;
  295. elapsed = TimeAction(action, iterations);
  296. }
  297. // Upscale the sample to the target time. Do this in floating point arithmetic
  298. // to avoid overflow issues.
  299. iterations = (int) ((TargetTime.Ticks/(double) elapsed.Ticks)*iterations);
  300. elapsed = TimeAction(action, iterations);
  301. Console.WriteLine("{0}: {1} iterations in {2:f3}s; {3:f3}MB/s",
  302. name, iterations, elapsed.TotalSeconds,
  303. (iterations*dataSize)/(elapsed.TotalSeconds*1024*1024));
  304. }
  305. private static TimeSpan TimeAction(Action action, int iterations)
  306. {
  307. GC.Collect();
  308. GC.GetTotalMemory(true);
  309. GC.WaitForPendingFinalizers();
  310. Stopwatch sw = Stopwatch.StartNew();
  311. for (int i = 0; i < iterations; i++)
  312. {
  313. action();
  314. }
  315. sw.Stop();
  316. return sw.Elapsed;
  317. }
  318. private static IEnumerable<KeyValuePair<string, string>> MakeTests()
  319. {
  320. //Aggregate Tests
  321. yield return MakeWorkItem("all-types", MakeTestAllTypes());
  322. yield return MakeWorkItem("repeated-100", MakeRepeatedTestAllTypes(100));
  323. yield return MakeWorkItem("packed-100", MakeTestPackedTypes(100));
  324. //Discrete Tests
  325. foreach (KeyValuePair<string, Action<TestAllTypes.Builder>> item in MakeTestAllTypes())
  326. {
  327. yield return MakeWorkItem(item.Key, new[] {item});
  328. }
  329. foreach (KeyValuePair<string, Action<TestAllTypes.Builder>> item in MakeRepeatedTestAllTypes(100))
  330. {
  331. yield return MakeWorkItem(item.Key, new[] {item});
  332. }
  333. foreach (KeyValuePair<string, Action<TestPackedTypes.Builder>> item in MakeTestPackedTypes(100))
  334. {
  335. yield return MakeWorkItem(item.Key, new[] {item});
  336. }
  337. }
  338. private static IEnumerable<KeyValuePair<string, Action<TestAllTypes.Builder>>> MakeTestAllTypes()
  339. {
  340. // Many of the raw type serializers below perform poorly due to the numerous fields defined
  341. // in TestAllTypes.
  342. //single values
  343. yield return MakeItem<TestAllTypes.Builder>("int32", 1, x => x.SetOptionalInt32(1001));
  344. yield return MakeItem<TestAllTypes.Builder>("int64", 1, x => x.SetOptionalInt64(1001));
  345. yield return MakeItem<TestAllTypes.Builder>("uint32", 1, x => x.SetOptionalUint32(1001));
  346. yield return MakeItem<TestAllTypes.Builder>("uint64", 1, x => x.SetOptionalUint64(1001));
  347. yield return MakeItem<TestAllTypes.Builder>("sint32", 1, x => x.SetOptionalSint32(-1001));
  348. yield return MakeItem<TestAllTypes.Builder>("sint64", 1, x => x.SetOptionalSint64(-1001));
  349. yield return MakeItem<TestAllTypes.Builder>("fixed32", 1, x => x.SetOptionalFixed32(1001));
  350. yield return MakeItem<TestAllTypes.Builder>("fixed64", 1, x => x.SetOptionalFixed64(1001));
  351. yield return MakeItem<TestAllTypes.Builder>("sfixed32", 1, x => x.SetOptionalSfixed32(-1001));
  352. yield return MakeItem<TestAllTypes.Builder>("sfixed64", 1, x => x.SetOptionalSfixed64(-1001));
  353. yield return MakeItem<TestAllTypes.Builder>("float", 1, x => x.SetOptionalFloat(1001.1001f));
  354. yield return MakeItem<TestAllTypes.Builder>("double", 1, x => x.SetOptionalDouble(1001.1001));
  355. yield return MakeItem<TestAllTypes.Builder>("bool", 1, x => x.SetOptionalBool(true));
  356. yield return MakeItem<TestAllTypes.Builder>("string", 1, x => x.SetOptionalString("this is a string value"))
  357. ;
  358. yield return
  359. MakeItem<TestAllTypes.Builder>("bytes", 1,
  360. x =>
  361. x.SetOptionalBytes(ByteString.CopyFromUtf8("this is an array of bytes")))
  362. ;
  363. yield return
  364. MakeItem<TestAllTypes.Builder>("group", 1,
  365. x =>
  366. x.SetOptionalGroup(
  367. new TestAllTypes.Types.OptionalGroup.Builder().SetA(1001)));
  368. yield return
  369. MakeItem<TestAllTypes.Builder>("message", 1,
  370. x =>
  371. x.SetOptionalNestedMessage(
  372. new TestAllTypes.Types.NestedMessage.Builder().SetBb(1001)));
  373. yield return
  374. MakeItem<TestAllTypes.Builder>("enum", 1,
  375. x => x.SetOptionalNestedEnum(TestAllTypes.Types.NestedEnum.FOO));
  376. }
  377. private static IEnumerable<KeyValuePair<string, Action<TestAllTypes.Builder>>> MakeRepeatedTestAllTypes(int size)
  378. {
  379. //repeated values
  380. yield return MakeItem<TestAllTypes.Builder>("repeated-int32", size, x => x.AddRepeatedInt32(1001));
  381. yield return MakeItem<TestAllTypes.Builder>("repeated-int64", size, x => x.AddRepeatedInt64(1001));
  382. yield return MakeItem<TestAllTypes.Builder>("repeated-uint32", size, x => x.AddRepeatedUint32(1001));
  383. yield return MakeItem<TestAllTypes.Builder>("repeated-uint64", size, x => x.AddRepeatedUint64(1001));
  384. yield return MakeItem<TestAllTypes.Builder>("repeated-sint32", size, x => x.AddRepeatedSint32(-1001));
  385. yield return MakeItem<TestAllTypes.Builder>("repeated-sint64", size, x => x.AddRepeatedSint64(-1001));
  386. yield return MakeItem<TestAllTypes.Builder>("repeated-fixed32", size, x => x.AddRepeatedFixed32(1001));
  387. yield return MakeItem<TestAllTypes.Builder>("repeated-fixed64", size, x => x.AddRepeatedFixed64(1001));
  388. yield return MakeItem<TestAllTypes.Builder>("repeated-sfixed32", size, x => x.AddRepeatedSfixed32(-1001));
  389. yield return MakeItem<TestAllTypes.Builder>("repeated-sfixed64", size, x => x.AddRepeatedSfixed64(-1001));
  390. yield return MakeItem<TestAllTypes.Builder>("repeated-float", size, x => x.AddRepeatedFloat(1001.1001f));
  391. yield return MakeItem<TestAllTypes.Builder>("repeated-double", size, x => x.AddRepeatedDouble(1001.1001));
  392. yield return MakeItem<TestAllTypes.Builder>("repeated-bool", size, x => x.AddRepeatedBool(true));
  393. yield return
  394. MakeItem<TestAllTypes.Builder>("repeated-string", size,
  395. x => x.AddRepeatedString("this is a string value"));
  396. yield return
  397. MakeItem<TestAllTypes.Builder>("repeated-bytes", size,
  398. x =>
  399. x.AddRepeatedBytes(ByteString.CopyFromUtf8("this is an array of bytes")))
  400. ;
  401. yield return
  402. MakeItem<TestAllTypes.Builder>("repeated-group", size,
  403. x =>
  404. x.AddRepeatedGroup(
  405. new TestAllTypes.Types.RepeatedGroup.Builder().SetA(1001)));
  406. yield return
  407. MakeItem<TestAllTypes.Builder>("repeated-message", size,
  408. x =>
  409. x.AddRepeatedNestedMessage(
  410. new TestAllTypes.Types.NestedMessage.Builder().SetBb(1001)));
  411. yield return
  412. MakeItem<TestAllTypes.Builder>("repeated-enum", size,
  413. x => x.AddRepeatedNestedEnum(TestAllTypes.Types.NestedEnum.FOO));
  414. }
  415. private static IEnumerable<KeyValuePair<string, Action<TestPackedTypes.Builder>>> MakeTestPackedTypes(int size)
  416. {
  417. //packed values
  418. yield return MakeItem<TestPackedTypes.Builder>("packed-int32", size, x => x.AddPackedInt32(1001));
  419. yield return MakeItem<TestPackedTypes.Builder>("packed-int64", size, x => x.AddPackedInt64(1001));
  420. yield return MakeItem<TestPackedTypes.Builder>("packed-uint32", size, x => x.AddPackedUint32(1001));
  421. yield return MakeItem<TestPackedTypes.Builder>("packed-uint64", size, x => x.AddPackedUint64(1001));
  422. yield return MakeItem<TestPackedTypes.Builder>("packed-sint32", size, x => x.AddPackedSint32(-1001));
  423. yield return MakeItem<TestPackedTypes.Builder>("packed-sint64", size, x => x.AddPackedSint64(-1001));
  424. yield return MakeItem<TestPackedTypes.Builder>("packed-fixed32", size, x => x.AddPackedFixed32(1001));
  425. yield return MakeItem<TestPackedTypes.Builder>("packed-fixed64", size, x => x.AddPackedFixed64(1001));
  426. yield return MakeItem<TestPackedTypes.Builder>("packed-sfixed32", size, x => x.AddPackedSfixed32(-1001));
  427. yield return MakeItem<TestPackedTypes.Builder>("packed-sfixed64", size, x => x.AddPackedSfixed64(-1001));
  428. yield return MakeItem<TestPackedTypes.Builder>("packed-float", size, x => x.AddPackedFloat(1001.1001f));
  429. yield return MakeItem<TestPackedTypes.Builder>("packed-double", size, x => x.AddPackedDouble(1001.1001));
  430. yield return MakeItem<TestPackedTypes.Builder>("packed-bool", size, x => x.AddPackedBool(true));
  431. yield return
  432. MakeItem<TestPackedTypes.Builder>("packed-enum", size, x => x.AddPackedEnum(ForeignEnum.FOREIGN_FOO));
  433. }
  434. private static KeyValuePair<string, Action<T>> MakeItem<T>(string name, int repeated, Action<T> build)
  435. where T : IBuilderLite, new()
  436. {
  437. if (repeated == 1)
  438. {
  439. return new KeyValuePair<string, Action<T>>(name, build);
  440. }
  441. return new KeyValuePair<string, Action<T>>(
  442. String.Format("{0}[{1}]", name, repeated),
  443. x =>
  444. {
  445. for (int i = 0; i < repeated; i++)
  446. {
  447. build(x);
  448. }
  449. }
  450. );
  451. }
  452. private static KeyValuePair<string, string> MakeWorkItem<T>(string name,
  453. IEnumerable<KeyValuePair<string, Action<T>>>
  454. builders) where T : IBuilderLite, new()
  455. {
  456. T builder = new T();
  457. foreach (KeyValuePair<string, Action<T>> item in builders)
  458. {
  459. item.Value(builder);
  460. }
  461. IMessageLite msg = builder.WeakBuild();
  462. string fname = Path.Combine(AppDomain.CurrentDomain.BaseDirectory, "unittest_" + name + ".dat");
  463. File.WriteAllBytes(fname, msg.ToByteArray());
  464. return
  465. new KeyValuePair<string, string>(
  466. String.Format("{0},{1}", msg.GetType().FullName, msg.GetType().Assembly.GetName().Name), fname);
  467. }
  468. }
  469. }