TextFormat.cs 21 KB

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  1. // Protocol Buffers - Google's data interchange format
  2. // Copyright 2008 Google Inc.
  3. // http://code.google.com/p/protobuf/
  4. //
  5. // Licensed under the Apache License, Version 2.0 (the "License");
  6. // you may not use this file except in compliance with the License.
  7. // You may obtain a copy of the License at
  8. //
  9. // http://www.apache.org/licenses/LICENSE-2.0
  10. //
  11. // Unless required by applicable law or agreed to in writing, software
  12. // distributed under the License is distributed on an "AS IS" BASIS,
  13. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  14. // See the License for the specific language governing permissions and
  15. // limitations under the License.
  16. using System;
  17. using System.Collections.Generic;
  18. using System.Globalization;
  19. using System.IO;
  20. using System.Text;
  21. using Google.ProtocolBuffers.Descriptors;
  22. using System.Collections;
  23. namespace Google.ProtocolBuffers {
  24. /// <summary>
  25. /// Provides ASCII text formatting support for messages.
  26. /// TODO(jonskeet): Parsing support.
  27. /// </summary>
  28. public static class TextFormat {
  29. /// <summary>
  30. /// Outputs a textual representation of the Protocol Message supplied into
  31. /// the parameter output.
  32. /// </summary>
  33. public static void Print(IMessage message, TextWriter output) {
  34. TextGenerator generator = new TextGenerator(output);
  35. Print(message, generator);
  36. }
  37. /// <summary>
  38. /// Outputs a textual representation of <paramref name="fields" /> to <paramref name="output"/>.
  39. /// </summary>
  40. /// <param name="fields"></param>
  41. /// <param name="output"></param>
  42. public static void Print(UnknownFieldSet fields, TextWriter output) {
  43. TextGenerator generator = new TextGenerator(output);
  44. PrintUnknownFields(fields, generator);
  45. }
  46. public static string PrintToString(IMessage message) {
  47. StringWriter text = new StringWriter();
  48. Print(message, text);
  49. return text.ToString();
  50. }
  51. public static string PrintToString(UnknownFieldSet fields) {
  52. StringWriter text = new StringWriter();
  53. Print(fields, text);
  54. return text.ToString();
  55. }
  56. private static void Print(IMessage message, TextGenerator generator) {
  57. // TODO(jonskeet): Check why descriptor is never used.
  58. MessageDescriptor descriptor = message.DescriptorForType;
  59. foreach (KeyValuePair<FieldDescriptor, object> entry in message.AllFields) {
  60. PrintField(entry.Key, entry.Value, generator);
  61. }
  62. PrintUnknownFields(message.UnknownFields, generator);
  63. }
  64. internal static void PrintField(FieldDescriptor field, object value, TextGenerator generator) {
  65. if (field.IsRepeated) {
  66. // Repeated field. Print each element.
  67. foreach (object element in (IEnumerable) value) {
  68. PrintSingleField(field, element, generator);
  69. }
  70. } else {
  71. PrintSingleField(field, value, generator);
  72. }
  73. }
  74. private static void PrintSingleField(FieldDescriptor field, Object value, TextGenerator generator) {
  75. if (field.IsExtension) {
  76. generator.Print("[");
  77. // We special-case MessageSet elements for compatibility with proto1.
  78. if (field.ContainingType.Options.MessageSetWireFormat
  79. && field.FieldType == FieldType.Message
  80. && field.IsOptional
  81. // object equality (TODO(jonskeet): Work out what this comment means!)
  82. && field.ExtensionScope == field.MessageType) {
  83. generator.Print(field.MessageType.FullName);
  84. } else {
  85. generator.Print(field.FullName);
  86. }
  87. generator.Print("]");
  88. } else {
  89. if (field.FieldType == FieldType.Group) {
  90. // Groups must be serialized with their original capitalization.
  91. generator.Print(field.MessageType.Name);
  92. } else {
  93. generator.Print(field.Name);
  94. }
  95. }
  96. if (field.MappedType == MappedType.Message) {
  97. generator.Print(" {\n");
  98. generator.Indent();
  99. } else {
  100. generator.Print(": ");
  101. }
  102. PrintFieldValue(field, value, generator);
  103. if (field.MappedType == MappedType.Message) {
  104. generator.Outdent();
  105. generator.Print("}");
  106. }
  107. generator.Print("\n");
  108. }
  109. private static void PrintFieldValue(FieldDescriptor field, object value, TextGenerator generator) {
  110. switch (field.FieldType) {
  111. case FieldType.Int32:
  112. case FieldType.Int64:
  113. case FieldType.SInt32:
  114. case FieldType.SInt64:
  115. case FieldType.SFixed32:
  116. case FieldType.SFixed64:
  117. case FieldType.Float:
  118. case FieldType.Double:
  119. case FieldType.UInt32:
  120. case FieldType.UInt64:
  121. case FieldType.Fixed32:
  122. case FieldType.Fixed64:
  123. // The simple Object.ToString converts using the current culture.
  124. // We want to always use the invariant culture so it's predictable.
  125. generator.Print(((IConvertible) value).ToString(CultureInfo.InvariantCulture));
  126. break;
  127. case FieldType.Bool:
  128. // Explicitly use the Java true/false
  129. generator.Print((bool) value ? "true" : "false");
  130. break;
  131. case FieldType.String:
  132. generator.Print("\"");
  133. generator.Print(EscapeText((string) value));
  134. generator.Print("\"");
  135. break;
  136. case FieldType.Bytes: {
  137. generator.Print("\"");
  138. generator.Print(EscapeBytes((ByteString) value));
  139. generator.Print("\"");
  140. break;
  141. }
  142. case FieldType.Enum: {
  143. generator.Print(((EnumValueDescriptor) value).Name);
  144. break;
  145. }
  146. case FieldType.Message:
  147. case FieldType.Group:
  148. Print((IMessage) value, generator);
  149. break;
  150. }
  151. }
  152. private static void PrintUnknownFields(UnknownFieldSet unknownFields, TextGenerator generator) {
  153. foreach (KeyValuePair<int, UnknownField> entry in unknownFields.FieldDictionary) {
  154. String prefix = entry.Key.ToString() + ": ";
  155. UnknownField field = entry.Value;
  156. foreach (ulong value in field.VarintList) {
  157. generator.Print(prefix);
  158. generator.Print(value.ToString());
  159. generator.Print("\n");
  160. }
  161. foreach (uint value in field.Fixed32List) {
  162. generator.Print(prefix);
  163. generator.Print(string.Format("0x{0:x8}", value));
  164. generator.Print("\n");
  165. }
  166. foreach (ulong value in field.Fixed64List) {
  167. generator.Print(prefix);
  168. generator.Print(string.Format("0x{0:x16}", value));
  169. generator.Print("\n");
  170. }
  171. foreach (ByteString value in field.LengthDelimitedList) {
  172. generator.Print(entry.Key.ToString());
  173. generator.Print(": \"");
  174. generator.Print(EscapeBytes(value));
  175. generator.Print("\"\n");
  176. }
  177. foreach (UnknownFieldSet value in field.GroupList) {
  178. generator.Print(entry.Key.ToString());
  179. generator.Print(" {\n");
  180. generator.Indent();
  181. PrintUnknownFields(value, generator);
  182. generator.Outdent();
  183. generator.Print("}\n");
  184. }
  185. }
  186. }
  187. internal static ulong ParseUInt64(string text) {
  188. return (ulong) ParseInteger(text, false, true);
  189. }
  190. internal static long ParseInt64(string text) {
  191. return ParseInteger(text, true, true);
  192. }
  193. internal static uint ParseUInt32(string text) {
  194. return (uint) ParseInteger(text, false, false);
  195. }
  196. internal static int ParseInt32(string text) {
  197. return (int) ParseInteger(text, true, false);
  198. }
  199. /// <summary>
  200. /// Parses an integer in hex (leading 0x), decimal (no prefix) or octal (leading 0).
  201. /// Only a negative sign is permitted, and it must come before the radix indicator.
  202. /// </summary>
  203. private static long ParseInteger(string text, bool isSigned, bool isLong) {
  204. string original = text;
  205. bool negative = false;
  206. if (text.StartsWith("-")) {
  207. if (!isSigned) {
  208. throw new FormatException("Number must be positive: " + original);
  209. }
  210. negative = true;
  211. text = text.Substring(1);
  212. }
  213. int radix = 10;
  214. if (text.StartsWith("0x")) {
  215. radix = 16;
  216. text = text.Substring(2);
  217. } else if (text.StartsWith("0")) {
  218. radix = 8;
  219. }
  220. ulong result;
  221. try {
  222. // Workaround for https://connect.microsoft.com/VisualStudio/feedback/ViewFeedback.aspx?FeedbackID=278448
  223. // We should be able to use Convert.ToUInt64 for all cases.
  224. result = radix == 10 ? ulong.Parse(text) : Convert.ToUInt64(text, radix);
  225. } catch (OverflowException) {
  226. // Convert OverflowException to FormatException so there's a single exception type this method can throw.
  227. string numberDescription = string.Format("{0}-bit {1}signed integer", isLong ? 64 : 32, isSigned ? "" : "un");
  228. throw new FormatException("Number out of range for " + numberDescription + ": " + original);
  229. }
  230. if (negative) {
  231. ulong max = isLong ? 0x8000000000000000UL : 0x80000000L;
  232. if (result > max) {
  233. string numberDescription = string.Format("{0}-bit signed integer", isLong ? 64 : 32);
  234. throw new FormatException("Number out of range for " + numberDescription + ": " + original);
  235. }
  236. return -((long) result);
  237. } else {
  238. ulong max = isSigned
  239. ? (isLong ? (ulong) long.MaxValue : int.MaxValue)
  240. : (isLong ? ulong.MaxValue : uint.MaxValue);
  241. if (result > max) {
  242. string numberDescription = string.Format("{0}-bit {1}signed integer", isLong ? 64 : 32, isSigned ? "" : "un");
  243. throw new FormatException("Number out of range for " + numberDescription + ": " + original);
  244. }
  245. return (long) result;
  246. }
  247. }
  248. /// <summary>
  249. /// Tests a character to see if it's an octal digit.
  250. /// </summary>
  251. private static bool IsOctal(char c) {
  252. return '0' <= c && c <= '7';
  253. }
  254. /// <summary>
  255. /// Tests a character to see if it's a hex digit.
  256. /// </summary>
  257. private static bool IsHex(char c) {
  258. return ('0' <= c && c <= '9') ||
  259. ('a' <= c && c <= 'f') ||
  260. ('A' <= c && c <= 'F');
  261. }
  262. /// <summary>
  263. /// Interprets a character as a digit (in any base up to 36) and returns the
  264. /// numeric value.
  265. /// </summary>
  266. private static int ParseDigit(char c) {
  267. if ('0' <= c && c <= '9') {
  268. return c - '0';
  269. } else if ('a' <= c && c <= 'z') {
  270. return c - 'a' + 10;
  271. } else {
  272. return c - 'A' + 10;
  273. }
  274. }
  275. /// <summary>
  276. /// Unescapes a text string as escaped using <see cref="EscapeText(string)" />.
  277. /// Two-digit hex escapes (starting with "\x" are also recognised.
  278. /// </summary>
  279. internal static string UnescapeText(string input) {
  280. return UnescapeBytes(input).ToStringUtf8();
  281. }
  282. /// <summary>
  283. /// Like <see cref="EscapeBytes" /> but escapes a text string.
  284. /// The string is first encoded as UTF-8, then each byte escaped individually.
  285. /// The returned value is guaranteed to be entirely ASCII.
  286. /// </summary>
  287. internal static string EscapeText(string input) {
  288. return EscapeBytes(ByteString.CopyFromUtf8(input));
  289. }
  290. /// <summary>
  291. /// Escapes bytes in the format used in protocol buffer text format, which
  292. /// is the same as the format used for C string literals. All bytes
  293. /// that are not printable 7-bit ASCII characters are escaped, as well as
  294. /// backslash, single-quote, and double-quote characters. Characters for
  295. /// which no defined short-hand escape sequence is defined will be escaped
  296. /// using 3-digit octal sequences.
  297. /// The returned value is guaranteed to be entirely ASCII.
  298. /// </summary>
  299. internal static String EscapeBytes(ByteString input) {
  300. StringBuilder builder = new StringBuilder(input.Length);
  301. foreach (byte b in input) {
  302. switch (b) {
  303. // C# does not use \a or \v
  304. case 0x07: builder.Append("\\a" ); break;
  305. case (byte)'\b': builder.Append("\\b" ); break;
  306. case (byte)'\f': builder.Append("\\f" ); break;
  307. case (byte)'\n': builder.Append("\\n" ); break;
  308. case (byte)'\r': builder.Append("\\r" ); break;
  309. case (byte)'\t': builder.Append("\\t" ); break;
  310. case 0x0b: builder.Append("\\v" ); break;
  311. case (byte)'\\': builder.Append("\\\\"); break;
  312. case (byte)'\'': builder.Append("\\\'"); break;
  313. case (byte)'"' : builder.Append("\\\""); break;
  314. default:
  315. if (b >= 0x20 && b < 128) {
  316. builder.Append((char) b);
  317. } else {
  318. builder.Append('\\');
  319. builder.Append((char) ('0' + ((b >> 6) & 3)));
  320. builder.Append((char) ('0' + ((b >> 3) & 7)));
  321. builder.Append((char) ('0' + (b & 7)));
  322. }
  323. break;
  324. }
  325. }
  326. return builder.ToString();
  327. }
  328. /// <summary>
  329. /// Performs string unescaping from C style (octal, hex, form feeds, tab etc) into a byte string.
  330. /// </summary>
  331. internal static ByteString UnescapeBytes(string input) {
  332. byte[] result = new byte[input.Length];
  333. int pos = 0;
  334. for (int i = 0; i < input.Length; i++) {
  335. char c = input[i];
  336. if (c > 127 || c < 32) {
  337. throw new FormatException("Escaped string must only contain ASCII");
  338. }
  339. if (c != '\\') {
  340. result[pos++] = (byte) c;
  341. continue;
  342. }
  343. if (i + 1 >= input.Length) {
  344. throw new FormatException("Invalid escape sequence: '\\' at end of string.");
  345. }
  346. i++;
  347. c = input[i];
  348. if (c >= '0' && c <= '7') {
  349. // Octal escape.
  350. int code = ParseDigit(c);
  351. if (i + 1 < input.Length && IsOctal(input[i+1])) {
  352. i++;
  353. code = code * 8 + ParseDigit(input[i]);
  354. }
  355. if (i + 1 < input.Length && IsOctal(input[i+1])) {
  356. i++;
  357. code = code * 8 + ParseDigit(input[i]);
  358. }
  359. result[pos++] = (byte) code;
  360. } else {
  361. switch (c) {
  362. case 'a': result[pos++] = 0x07; break;
  363. case 'b': result[pos++] = (byte) '\b'; break;
  364. case 'f': result[pos++] = (byte) '\f'; break;
  365. case 'n': result[pos++] = (byte) '\n'; break;
  366. case 'r': result[pos++] = (byte) '\r'; break;
  367. case 't': result[pos++] = (byte) '\t'; break;
  368. case 'v': result[pos++] = 0x0b; break;
  369. case '\\': result[pos++] = (byte) '\\'; break;
  370. case '\'': result[pos++] = (byte) '\''; break;
  371. case '"': result[pos++] = (byte) '\"'; break;
  372. case 'x':
  373. // hex escape
  374. int code;
  375. if (i + 1 < input.Length && IsHex(input[i+1])) {
  376. i++;
  377. code = ParseDigit(input[i]);
  378. } else {
  379. throw new FormatException("Invalid escape sequence: '\\x' with no digits");
  380. }
  381. if (i + 1 < input.Length && IsHex(input[i+1])) {
  382. ++i;
  383. code = code * 16 + ParseDigit(input[i]);
  384. }
  385. result[pos++] = (byte)code;
  386. break;
  387. default:
  388. throw new FormatException("Invalid escape sequence: '\\" + c + "'");
  389. }
  390. }
  391. }
  392. return ByteString.CopyFrom(result, 0, pos);
  393. }
  394. public static void Merge(string text, IBuilder builder) {
  395. Merge(text, ExtensionRegistry.Empty, builder);
  396. }
  397. public static void Merge(TextReader reader, IBuilder builder) {
  398. Merge(reader, ExtensionRegistry.Empty, builder);
  399. }
  400. public static void Merge(TextReader reader, ExtensionRegistry registry, IBuilder builder) {
  401. Merge(reader.ReadToEnd(), registry, builder);
  402. }
  403. public static void Merge(string text, ExtensionRegistry registry, IBuilder builder) {
  404. TextTokenizer tokenizer = new TextTokenizer(text);
  405. while (!tokenizer.AtEnd) {
  406. MergeField(tokenizer, registry, builder);
  407. }
  408. }
  409. /// <summary>
  410. /// Parses a single field from the specified tokenizer and merges it into
  411. /// the builder.
  412. /// </summary>
  413. private static void MergeField(TextTokenizer tokenizer, ExtensionRegistry extensionRegistry,
  414. IBuilder builder) {
  415. FieldDescriptor field;
  416. MessageDescriptor type = builder.DescriptorForType;
  417. ExtensionInfo extension = null;
  418. if (tokenizer.TryConsume("[")) {
  419. // An extension.
  420. StringBuilder name = new StringBuilder(tokenizer.ConsumeIdentifier());
  421. while (tokenizer.TryConsume(".")) {
  422. name.Append(".");
  423. name.Append(tokenizer.ConsumeIdentifier());
  424. }
  425. extension = extensionRegistry[name.ToString()];
  426. if (extension == null) {
  427. throw tokenizer.CreateFormatExceptionPreviousToken("Extension \"" + name + "\" not found in the ExtensionRegistry.");
  428. } else if (extension.Descriptor.ContainingType != type) {
  429. throw tokenizer.CreateFormatExceptionPreviousToken("Extension \"" + name + "\" does not extend message type \"" +
  430. type.FullName + "\".");
  431. }
  432. tokenizer.Consume("]");
  433. field = extension.Descriptor;
  434. } else {
  435. String name = tokenizer.ConsumeIdentifier();
  436. field = type.FindDescriptor<FieldDescriptor>(name);
  437. // Group names are expected to be capitalized as they appear in the
  438. // .proto file, which actually matches their type names, not their field
  439. // names.
  440. if (field == null) {
  441. // Explicitly specify the invariant culture so that this code does not break when
  442. // executing in Turkey.
  443. String lowerName = name.ToLowerInvariant();
  444. field = type.FindDescriptor<FieldDescriptor>(lowerName);
  445. // If the case-insensitive match worked but the field is NOT a group,
  446. // TODO(jonskeet): What? Java comment ends here!
  447. if (field != null && field.FieldType != FieldType.Group) {
  448. field = null;
  449. }
  450. }
  451. // Again, special-case group names as described above.
  452. if (field != null && field.FieldType == FieldType.Group && field.MessageType.Name != name) {
  453. field = null;
  454. }
  455. if (field == null) {
  456. throw tokenizer.CreateFormatExceptionPreviousToken(
  457. "Message type \"" + type.FullName + "\" has no field named \"" + name + "\".");
  458. }
  459. }
  460. object value = null;
  461. if (field.MappedType == MappedType.Message) {
  462. tokenizer.TryConsume(":"); // optional
  463. String endToken;
  464. if (tokenizer.TryConsume("<")) {
  465. endToken = ">";
  466. } else {
  467. tokenizer.Consume("{");
  468. endToken = "}";
  469. }
  470. IBuilder subBuilder;
  471. if (extension == null) {
  472. subBuilder = builder.CreateBuilderForField(field);
  473. } else {
  474. subBuilder = extension.DefaultInstance.WeakCreateBuilderForType();
  475. }
  476. while (!tokenizer.TryConsume(endToken)) {
  477. if (tokenizer.AtEnd) {
  478. throw tokenizer.CreateFormatException("Expected \"" + endToken + "\".");
  479. }
  480. MergeField(tokenizer, extensionRegistry, subBuilder);
  481. }
  482. value = subBuilder.WeakBuild();
  483. } else {
  484. tokenizer.Consume(":");
  485. switch (field.FieldType) {
  486. case FieldType.Int32:
  487. case FieldType.SInt32:
  488. case FieldType.SFixed32:
  489. value = tokenizer.ConsumeInt32();
  490. break;
  491. case FieldType.Int64:
  492. case FieldType.SInt64:
  493. case FieldType.SFixed64:
  494. value = tokenizer.ConsumeInt64();
  495. break;
  496. case FieldType.UInt32:
  497. case FieldType.Fixed32:
  498. value = tokenizer.ConsumeUInt32();
  499. break;
  500. case FieldType.UInt64:
  501. case FieldType.Fixed64:
  502. value = tokenizer.ConsumeUInt64();
  503. break;
  504. case FieldType.Float:
  505. value = tokenizer.consumeFloat();
  506. break;
  507. case FieldType.Double:
  508. value = tokenizer.ConsumeDouble();
  509. break;
  510. case FieldType.Bool:
  511. value = tokenizer.ConsumeBoolean();
  512. break;
  513. case FieldType.String:
  514. value = tokenizer.ConsumeString();
  515. break;
  516. case FieldType.Bytes:
  517. value = tokenizer.ConsumeByteString();
  518. break;
  519. case FieldType.Enum: {
  520. EnumDescriptor enumType = field.EnumType;
  521. if (tokenizer.LookingAtInteger()) {
  522. int number = tokenizer.ConsumeInt32();
  523. value = enumType.FindValueByNumber(number);
  524. if (value == null) {
  525. throw tokenizer.CreateFormatExceptionPreviousToken(
  526. "Enum type \"" + enumType.FullName +
  527. "\" has no value with number " + number + ".");
  528. }
  529. } else {
  530. String id = tokenizer.ConsumeIdentifier();
  531. value = enumType.FindValueByName(id);
  532. if (value == null) {
  533. throw tokenizer.CreateFormatExceptionPreviousToken(
  534. "Enum type \"" + enumType.FullName +
  535. "\" has no value named \"" + id + "\".");
  536. }
  537. }
  538. break;
  539. }
  540. case FieldType.Message:
  541. case FieldType.Group:
  542. throw new InvalidOperationException("Can't get here.");
  543. }
  544. }
  545. if (field.IsRepeated) {
  546. builder.WeakAddRepeatedField(field, value);
  547. } else {
  548. builder.SetField(field, value);
  549. }
  550. }
  551. }
  552. }