1 // Copyright (c) 2012 The Chromium Authors. All rights reserved. 2 // Use of this source code is governed by a BSD-style license that can be 3 // found in the LICENSE file. 4 5 #include "base/files/file_util.h" 6 #include "base/message_loop/message_loop.h" 7 #include "base/path_service.h" 8 #include "base/strings/sys_string_conversions.h" 9 #include "base/strings/utf_string_conversions.h" 10 #include "chrome/common/chrome_paths.h" 11 #include "chrome/common/spellcheck_common.h" 12 #include "chrome/common/spellcheck_result.h" 13 #include "chrome/renderer/spellchecker/hunspell_engine.h" 14 #include "chrome/renderer/spellchecker/spellcheck.h" 15 #include "testing/gtest/include/gtest/gtest.h" 16 #include "third_party/WebKit/public/web/WebTextCheckingCompletion.h" 17 #include "third_party/WebKit/public/web/WebTextCheckingResult.h" 18 19 namespace { 20 21 base::FilePath GetHunspellDirectory() { 22 base::FilePath hunspell_directory; 23 if (!PathService::Get(base::DIR_SOURCE_ROOT, &hunspell_directory)) 24 return base::FilePath(); 25 26 hunspell_directory = hunspell_directory.AppendASCII("third_party"); 27 hunspell_directory = hunspell_directory.AppendASCII("hunspell_dictionaries"); 28 return hunspell_directory; 29 } 30 31 } // namespace 32 33 // TODO(groby): This needs to be a BrowserTest for OSX. 34 class SpellCheckTest : public testing::Test { 35 public: 36 SpellCheckTest() { 37 ReinitializeSpellCheck("en-US"); 38 } 39 40 void ReinitializeSpellCheck(const std::string& language) { 41 spell_check_.reset(new SpellCheck()); 42 InitializeSpellCheck(language); 43 } 44 45 void UninitializeSpellCheck() { 46 spell_check_.reset(new SpellCheck()); 47 } 48 49 bool InitializeIfNeeded() { 50 return spell_check()->InitializeIfNeeded(); 51 } 52 53 void InitializeSpellCheck(const std::string& language) { 54 base::FilePath hunspell_directory = GetHunspellDirectory(); 55 EXPECT_FALSE(hunspell_directory.empty()); 56 base::File file( 57 chrome::spellcheck_common::GetVersionedFileName(language, 58 hunspell_directory), 59 base::File::FLAG_OPEN | base::File::FLAG_READ); 60 #if defined(OS_MACOSX) 61 // TODO(groby): Forcing spellcheck to use hunspell, even on OSX. 62 // Instead, tests should exercise individual spelling engines. 63 spell_check_->spellcheck_.platform_spelling_engine_.reset( 64 new HunspellEngine); 65 #endif 66 spell_check_->Init(file.Pass(), std::set<std::string>(), language); 67 } 68 69 void EnableAutoCorrect(bool enable_autocorrect) { 70 spell_check_->OnEnableAutoSpellCorrect(enable_autocorrect); 71 } 72 73 virtual ~SpellCheckTest() { 74 } 75 76 SpellCheck* spell_check() { return spell_check_.get(); } 77 78 bool CheckSpelling(const std::string& word, int tag) { 79 return spell_check_->spellcheck_.platform_spelling_engine_->CheckSpelling( 80 base::ASCIIToUTF16(word), tag); 81 } 82 83 #if !defined(OS_MACOSX) 84 protected: 85 void TestSpellCheckParagraph( 86 const base::string16& input, 87 const std::vector<SpellCheckResult>& expected) { 88 blink::WebVector<blink::WebTextCheckingResult> results; 89 spell_check()->SpellCheckParagraph(input, 90 &results); 91 92 EXPECT_EQ(results.size(), expected.size()); 93 size_t size = std::min(results.size(), expected.size()); 94 for (size_t j = 0; j < size; ++j) { 95 EXPECT_EQ(results[j].decoration, blink::WebTextDecorationTypeSpelling); 96 EXPECT_EQ(results[j].location, expected[j].location); 97 EXPECT_EQ(results[j].length, expected[j].length); 98 } 99 } 100 #endif 101 102 private: 103 scoped_ptr<SpellCheck> spell_check_; 104 base::MessageLoop loop; 105 }; 106 107 // A fake completion object for verification. 108 class MockTextCheckingCompletion : public blink::WebTextCheckingCompletion { 109 public: 110 MockTextCheckingCompletion() 111 : completion_count_(0) { 112 } 113 114 virtual void didFinishCheckingText( 115 const blink::WebVector<blink::WebTextCheckingResult>& results) 116 OVERRIDE { 117 completion_count_++; 118 last_results_ = results; 119 } 120 121 virtual void didCancelCheckingText() OVERRIDE { 122 completion_count_++; 123 } 124 125 size_t completion_count_; 126 blink::WebVector<blink::WebTextCheckingResult> last_results_; 127 }; 128 129 // Operates unit tests for the content::SpellCheck::SpellCheckWord() function 130 // with the US English dictionary. 131 // The unit tests in this function consist of: 132 // * Tests for the function with empty strings; 133 // * Tests for the function with a valid English word; 134 // * Tests for the function with a valid non-English word; 135 // * Tests for the function with a valid English word with a preceding 136 // space character; 137 // * Tests for the function with a valid English word with a preceding 138 // non-English word; 139 // * Tests for the function with a valid English word with a following 140 // space character; 141 // * Tests for the function with a valid English word with a following 142 // non-English word; 143 // * Tests for the function with two valid English words concatenated 144 // with space characters or non-English words; 145 // * Tests for the function with an invalid English word; 146 // * Tests for the function with an invalid English word with a preceding 147 // space character; 148 // * Tests for the function with an invalid English word with a preceding 149 // non-English word; 150 // * Tests for the function with an invalid English word with a following 151 // space character; 152 // * Tests for the function with an invalid English word with a following 153 // non-English word, and; 154 // * Tests for the function with two invalid English words concatenated 155 // with space characters or non-English words. 156 // A test with a "[ROBUSTNESS]" mark shows it is a robustness test and it uses 157 // grammatically incorrect string. 158 // TODO(groby): Please feel free to add more tests. 159 TEST_F(SpellCheckTest, SpellCheckStrings_EN_US) { 160 static const struct { 161 // A string to be tested. 162 const wchar_t* input; 163 // An expected result for this test case. 164 // * true: the input string does not have any invalid words. 165 // * false: the input string has one or more invalid words. 166 bool expected_result; 167 // The position and the length of the first invalid word. 168 int misspelling_start; 169 int misspelling_length; 170 } kTestCases[] = { 171 // Empty strings. 172 {L"", true}, 173 {L" ", true}, 174 {L"\xA0", true}, 175 {L"\x3000", true}, 176 177 // A valid English word "hello". 178 {L"hello", true}, 179 // A valid Chinese word (meaning "hello") consisting of two CJKV 180 // ideographs 181 {L"\x4F60\x597D", true}, 182 // A valid Korean word (meaning "hello") consisting of five hangul 183 // syllables 184 {L"\xC548\xB155\xD558\xC138\xC694", true}, 185 // A valid Japanese word (meaning "hello") consisting of five Hiragana 186 // letters 187 {L"\x3053\x3093\x306B\x3061\x306F", true}, 188 // A valid Hindi word (meaning ?) consisting of six Devanagari letters 189 // (This word is copied from "http://b/issue?id=857583".) 190 {L"\x0930\x093E\x091C\x0927\x093E\x0928", true}, 191 // A valid English word "affix" using a Latin ligature 'ffi' 192 {L"a\xFB03x", true}, 193 // A valid English word "hello" (fullwidth version) 194 {L"\xFF28\xFF45\xFF4C\xFF4C\xFF4F", true}, 195 // Two valid Greek words (meaning "hello") consisting of seven Greek 196 // letters 197 {L"\x03B3\x03B5\x03B9\x03AC" L" " L"\x03C3\x03BF\x03C5", true}, 198 // A valid Russian word (meaning "hello") consisting of twelve Cyrillic 199 // letters 200 {L"\x0437\x0434\x0440\x0430\x0432\x0441" 201 L"\x0442\x0432\x0443\x0439\x0442\x0435", true}, 202 // A valid English contraction 203 {L"isn't", true}, 204 // A valid English word enclosed with underscores. 205 {L"_hello_", true}, 206 207 // A valid English word with a preceding whitespace 208 {L" " L"hello", true}, 209 // A valid English word with a preceding no-break space 210 {L"\xA0" L"hello", true}, 211 // A valid English word with a preceding ideographic space 212 {L"\x3000" L"hello", true}, 213 // A valid English word with a preceding Chinese word 214 {L"\x4F60\x597D" L"hello", true}, 215 // [ROBUSTNESS] A valid English word with a preceding Korean word 216 {L"\xC548\xB155\xD558\xC138\xC694" L"hello", true}, 217 // A valid English word with a preceding Japanese word 218 {L"\x3053\x3093\x306B\x3061\x306F" L"hello", true}, 219 // [ROBUSTNESS] A valid English word with a preceding Hindi word 220 {L"\x0930\x093E\x091C\x0927\x093E\x0928" L"hello", true}, 221 // [ROBUSTNESS] A valid English word with two preceding Greek words 222 {L"\x03B3\x03B5\x03B9\x03AC" L" " L"\x03C3\x03BF\x03C5" 223 L"hello", true}, 224 // [ROBUSTNESS] A valid English word with a preceding Russian word 225 {L"\x0437\x0434\x0440\x0430\x0432\x0441" 226 L"\x0442\x0432\x0443\x0439\x0442\x0435" L"hello", true}, 227 228 // A valid English word with a following whitespace 229 {L"hello" L" ", true}, 230 // A valid English word with a following no-break space 231 {L"hello" L"\xA0", true}, 232 // A valid English word with a following ideographic space 233 {L"hello" L"\x3000", true}, 234 // A valid English word with a following Chinese word 235 {L"hello" L"\x4F60\x597D", true}, 236 // [ROBUSTNESS] A valid English word with a following Korean word 237 {L"hello" L"\xC548\xB155\xD558\xC138\xC694", true}, 238 // A valid English word with a following Japanese word 239 {L"hello" L"\x3053\x3093\x306B\x3061\x306F", true}, 240 // [ROBUSTNESS] A valid English word with a following Hindi word 241 {L"hello" L"\x0930\x093E\x091C\x0927\x093E\x0928", true}, 242 // [ROBUSTNESS] A valid English word with two following Greek words 243 {L"hello" 244 L"\x03B3\x03B5\x03B9\x03AC" L" " L"\x03C3\x03BF\x03C5", true}, 245 // [ROBUSTNESS] A valid English word with a following Russian word 246 {L"hello" L"\x0437\x0434\x0440\x0430\x0432\x0441" 247 L"\x0442\x0432\x0443\x0439\x0442\x0435", true}, 248 249 // Two valid English words concatenated with a whitespace 250 {L"hello" L" " L"hello", true}, 251 // Two valid English words concatenated with a no-break space 252 {L"hello" L"\xA0" L"hello", true}, 253 // Two valid English words concatenated with an ideographic space 254 {L"hello" L"\x3000" L"hello", true}, 255 // Two valid English words concatenated with a Chinese word 256 {L"hello" L"\x4F60\x597D" L"hello", true}, 257 // [ROBUSTNESS] Two valid English words concatenated with a Korean word 258 {L"hello" L"\xC548\xB155\xD558\xC138\xC694" L"hello", true}, 259 // Two valid English words concatenated with a Japanese word 260 {L"hello" L"\x3053\x3093\x306B\x3061\x306F" L"hello", true}, 261 // [ROBUSTNESS] Two valid English words concatenated with a Hindi word 262 {L"hello" L"\x0930\x093E\x091C\x0927\x093E\x0928" L"hello" , true}, 263 // [ROBUSTNESS] Two valid English words concatenated with two Greek words 264 {L"hello" L"\x03B3\x03B5\x03B9\x03AC" L" " L"\x03C3\x03BF\x03C5" 265 L"hello", true}, 266 // [ROBUSTNESS] Two valid English words concatenated with a Russian word 267 {L"hello" L"\x0437\x0434\x0440\x0430\x0432\x0441" 268 L"\x0442\x0432\x0443\x0439\x0442\x0435" L"hello", true}, 269 // [ROBUSTNESS] Two valid English words concatenated with a contraction 270 // character. 271 {L"hello:hello", true}, 272 273 // An invalid English word 274 {L"ifmmp", false, 0, 5}, 275 // An invalid English word "bffly" containing a Latin ligature 'ffl' 276 {L"b\xFB04y", false, 0, 3}, 277 // An invalid English word "ifmmp" (fullwidth version) 278 {L"\xFF29\xFF46\xFF4D\xFF4D\xFF50", false, 0, 5}, 279 // An invalid English contraction 280 {L"jtm'u", false, 0, 5}, 281 // An invalid English word enclosed with underscores. 282 {L"_ifmmp_", false, 1, 5}, 283 284 // An invalid English word with a preceding whitespace 285 {L" " L"ifmmp", false, 1, 5}, 286 // An invalid English word with a preceding no-break space 287 {L"\xA0" L"ifmmp", false, 1, 5}, 288 // An invalid English word with a preceding ideographic space 289 {L"\x3000" L"ifmmp", false, 1, 5}, 290 // An invalid English word with a preceding Chinese word 291 {L"\x4F60\x597D" L"ifmmp", false, 2, 5}, 292 // [ROBUSTNESS] An invalid English word with a preceding Korean word 293 {L"\xC548\xB155\xD558\xC138\xC694" L"ifmmp", false, 5, 5}, 294 // An invalid English word with a preceding Japanese word 295 {L"\x3053\x3093\x306B\x3061\x306F" L"ifmmp", false, 5, 5}, 296 // [ROBUSTNESS] An invalid English word with a preceding Hindi word 297 {L"\x0930\x093E\x091C\x0927\x093E\x0928" L"ifmmp", false, 6, 5}, 298 // [ROBUSTNESS] An invalid English word with two preceding Greek words 299 {L"\x03B3\x03B5\x03B9\x03AC" L" " L"\x03C3\x03BF\x03C5" 300 L"ifmmp", false, 8, 5}, 301 // [ROBUSTNESS] An invalid English word with a preceding Russian word 302 {L"\x0437\x0434\x0440\x0430\x0432\x0441" 303 L"\x0442\x0432\x0443\x0439\x0442\x0435" L"ifmmp", false, 12, 5}, 304 305 // An invalid English word with a following whitespace 306 {L"ifmmp" L" ", false, 0, 5}, 307 // An invalid English word with a following no-break space 308 {L"ifmmp" L"\xA0", false, 0, 5}, 309 // An invalid English word with a following ideographic space 310 {L"ifmmp" L"\x3000", false, 0, 5}, 311 // An invalid English word with a following Chinese word 312 {L"ifmmp" L"\x4F60\x597D", false, 0, 5}, 313 // [ROBUSTNESS] An invalid English word with a following Korean word 314 {L"ifmmp" L"\xC548\xB155\xD558\xC138\xC694", false, 0, 5}, 315 // An invalid English word with a following Japanese word 316 {L"ifmmp" L"\x3053\x3093\x306B\x3061\x306F", false, 0, 5}, 317 // [ROBUSTNESS] An invalid English word with a following Hindi word 318 {L"ifmmp" L"\x0930\x093E\x091C\x0927\x093E\x0928", false, 0, 5}, 319 // [ROBUSTNESS] An invalid English word with two following Greek words 320 {L"ifmmp" 321 L"\x03B3\x03B5\x03B9\x03AC" L" " L"\x03C3\x03BF\x03C5", false, 0, 5}, 322 // [ROBUSTNESS] An invalid English word with a following Russian word 323 {L"ifmmp" L"\x0437\x0434\x0440\x0430\x0432\x0441" 324 L"\x0442\x0432\x0443\x0439\x0442\x0435", false, 0, 5}, 325 326 // Two invalid English words concatenated with a whitespace 327 {L"ifmmp" L" " L"ifmmp", false, 0, 5}, 328 // Two invalid English words concatenated with a no-break space 329 {L"ifmmp" L"\xA0" L"ifmmp", false, 0, 5}, 330 // Two invalid English words concatenated with an ideographic space 331 {L"ifmmp" L"\x3000" L"ifmmp", false, 0, 5}, 332 // Two invalid English words concatenated with a Chinese word 333 {L"ifmmp" L"\x4F60\x597D" L"ifmmp", false, 0, 5}, 334 // [ROBUSTNESS] Two invalid English words concatenated with a Korean word 335 {L"ifmmp" L"\xC548\xB155\xD558\xC138\xC694" L"ifmmp", false, 0, 5}, 336 // Two invalid English words concatenated with a Japanese word 337 {L"ifmmp" L"\x3053\x3093\x306B\x3061\x306F" L"ifmmp", false, 0, 5}, 338 // [ROBUSTNESS] Two invalid English words concatenated with a Hindi word 339 {L"ifmmp" L"\x0930\x093E\x091C\x0927\x093E\x0928" L"ifmmp" , false, 0, 5}, 340 // [ROBUSTNESS] Two invalid English words concatenated with two Greek words 341 {L"ifmmp" L"\x03B3\x03B5\x03B9\x03AC" L" " L"\x03C3\x03BF\x03C5" 342 L"ifmmp", false, 0, 5}, 343 // [ROBUSTNESS] Two invalid English words concatenated with a Russian word 344 {L"ifmmp" L"\x0437\x0434\x0440\x0430\x0432\x0441" 345 L"\x0442\x0432\x0443\x0439\x0442\x0435" L"ifmmp", false, 0, 5}, 346 // [ROBUSTNESS] Two invalid English words concatenated with a contraction 347 // character. 348 {L"ifmmp:ifmmp", false, 0, 11}, 349 350 // [REGRESSION] Issue 13432: "Any word of 13 or 14 characters is not 351 // spellcheck" <http://crbug.com/13432>. 352 {L"qwertyuiopasd", false, 0, 13}, 353 {L"qwertyuiopasdf", false, 0, 14}, 354 355 // [REGRESSION] Issue 128896: "en_US hunspell dictionary includes 356 // acknowledgement but not acknowledgements" <http://crbug.com/128896> 357 {L"acknowledgement", true}, 358 {L"acknowledgements", true}, 359 360 // Issue 123290: "Spellchecker should treat numbers as word characters" 361 {L"0th", true}, 362 {L"1st", true}, 363 {L"2nd", true}, 364 {L"3rd", true}, 365 {L"4th", true}, 366 {L"5th", true}, 367 {L"6th", true}, 368 {L"7th", true}, 369 {L"8th", true}, 370 {L"9th", true}, 371 {L"10th", true}, 372 {L"100th", true}, 373 {L"1000th", true}, 374 {L"25", true}, 375 {L"2012", true}, 376 {L"100,000,000", true}, 377 {L"3.141592653", true}, 378 379 }; 380 381 for (size_t i = 0; i < ARRAYSIZE_UNSAFE(kTestCases); ++i) { 382 size_t input_length = 0; 383 if (kTestCases[i].input != NULL) { 384 input_length = wcslen(kTestCases[i].input); 385 } 386 int misspelling_start; 387 int misspelling_length; 388 bool result = spell_check()->SpellCheckWord( 389 base::WideToUTF16(kTestCases[i].input).c_str(), 390 static_cast<int>(input_length), 391 0, 392 &misspelling_start, 393 &misspelling_length, NULL); 394 395 EXPECT_EQ(kTestCases[i].expected_result, result); 396 EXPECT_EQ(kTestCases[i].misspelling_start, misspelling_start); 397 EXPECT_EQ(kTestCases[i].misspelling_length, misspelling_length); 398 } 399 } 400 401 TEST_F(SpellCheckTest, SpellCheckSuggestions_EN_US) { 402 static const struct { 403 // A string to be tested. 404 const wchar_t* input; 405 // An expected result for this test case. 406 // * true: the input string does not have any invalid words. 407 // * false: the input string has one or more invalid words. 408 bool expected_result; 409 // The position and the length of the first invalid word. 410 int misspelling_start; 411 int misspelling_length; 412 413 // A suggested word that should occur. 414 const wchar_t* suggested_word; 415 } kTestCases[] = { 416 {L"ello", false, 0, 0, L"hello"}, 417 {L"ello", false, 0, 0, L"cello"}, 418 {L"wate", false, 0, 0, L"water"}, 419 {L"wate", false, 0, 0, L"waste"}, 420 {L"wate", false, 0, 0, L"sate"}, 421 {L"wate", false, 0, 0, L"ate"}, 422 {L"jum", false, 0, 0, L"jump"}, 423 {L"jum", false, 0, 0, L"hum"}, 424 {L"jum", false, 0, 0, L"sum"}, 425 {L"jum", false, 0, 0, L"um"}, 426 // A regression test for Issue 36523. 427 {L"privliged", false, 0, 0, L"privileged"}, 428 // TODO (Sidchat): add many more examples. 429 }; 430 431 for (size_t i = 0; i < ARRAYSIZE_UNSAFE(kTestCases); ++i) { 432 std::vector<base::string16> suggestions; 433 size_t input_length = 0; 434 if (kTestCases[i].input != NULL) { 435 input_length = wcslen(kTestCases[i].input); 436 } 437 int misspelling_start; 438 int misspelling_length; 439 bool result = spell_check()->SpellCheckWord( 440 base::WideToUTF16(kTestCases[i].input).c_str(), 441 static_cast<int>(input_length), 442 0, 443 &misspelling_start, 444 &misspelling_length, 445 &suggestions); 446 447 // Check for spelling. 448 EXPECT_EQ(kTestCases[i].expected_result, result); 449 450 // Check if the suggested words occur. 451 bool suggested_word_is_present = false; 452 for (int j = 0; j < static_cast<int>(suggestions.size()); j++) { 453 if (suggestions.at(j).compare( 454 base::WideToUTF16(kTestCases[i].suggested_word)) == 0) { 455 suggested_word_is_present = true; 456 break; 457 } 458 } 459 460 EXPECT_TRUE(suggested_word_is_present); 461 } 462 } 463 464 // This test verifies our spellchecker can split a text into words and check 465 // the spelling of each word in the text. 466 #if defined(THREAD_SANITIZER) 467 // SpellCheckTest.SpellCheckText fails under ThreadSanitizer v2. 468 // See http://crbug.com/217909. 469 #define MAYBE_SpellCheckText DISABLED_SpellCheckText 470 #else 471 #define MAYBE_SpellCheckText SpellCheckText 472 #endif // THREAD_SANITIZER 473 TEST_F(SpellCheckTest, MAYBE_SpellCheckText) { 474 static const struct { 475 const char* language; 476 const wchar_t* input; 477 } kTestCases[] = { 478 { 479 // Afrikaans 480 "af-ZA", 481 L"Google se missie is om die w\x00EAreld se inligting te organiseer en " 482 L"dit bruikbaar en toeganklik te maak." 483 }, { 484 // Catalan 485 "ca-ES", 486 L"La missi\x00F3 de Google \x00E9s organitzar la informaci\x00F3 " 487 L"del m\x00F3n i fer que sigui \x00FAtil i accessible universalment." 488 }, { 489 // Czech 490 "cs-CZ", 491 L"Posl\x00E1n\x00EDm spole\x010Dnosti Google je " 492 L"uspo\x0159\x00E1\x0064\x0061t informace z cel\x00E9ho sv\x011Bta " 493 L"tak, aby byly v\x0161\x0065obecn\x011B p\x0159\x00EDstupn\x00E9 " 494 L"a u\x017Eite\x010Dn\x00E9." 495 }, { 496 // Danish 497 "da-DK", 498 L"Googles " 499 L"mission er at organisere verdens information og g\x00F8re den " 500 L"almindeligt tilg\x00E6ngelig og nyttig." 501 }, { 502 // German 503 "de-DE", 504 L"Das Ziel von Google besteht darin, die auf der Welt vorhandenen " 505 L"Informationen zu organisieren und allgemein zug\x00E4nglich und " 506 L"nutzbar zu machen." 507 }, { 508 // Greek 509 "el-GR", 510 L"\x0391\x03C0\x03BF\x03C3\x03C4\x03BF\x03BB\x03AE " 511 L"\x03C4\x03B7\x03C2 Google \x03B5\x03AF\x03BD\x03B1\x03B9 " 512 L"\x03BD\x03B1 \x03BF\x03C1\x03B3\x03B1\x03BD\x03CE\x03BD\x03B5\x03B9 " 513 L"\x03C4\x03B9\x03C2 " 514 L"\x03C0\x03BB\x03B7\x03C1\x03BF\x03C6\x03BF\x03C1\x03AF\x03B5\x03C2 " 515 L"\x03C4\x03BF\x03C5 \x03BA\x03CC\x03C3\x03BC\x03BF\x03C5 " 516 L"\x03BA\x03B1\x03B9 \x03BD\x03B1 \x03C4\x03B9\x03C2 " 517 L"\x03BA\x03B1\x03B8\x03B9\x03C3\x03C4\x03AC " 518 L"\x03C0\x03C1\x03BF\x03C3\x03B2\x03AC\x03C3\x03B9\x03BC\x03B5\x03C2 " 519 L"\x03BA\x03B1\x03B9 \x03C7\x03C1\x03AE\x03C3\x03B9\x03BC\x03B5\x03C2." 520 }, { 521 // English (Australia) 522 "en-AU", 523 L"Google's mission is to organise the world's information and make it " 524 L"universally accessible and useful." 525 }, { 526 // English (Canada) 527 "en-CA", 528 L"Google's mission is to organize the world's information and make it " 529 L"universally accessible and useful." 530 }, { 531 // English (United Kingdom) 532 "en-GB", 533 L"Google's mission is to organise the world's information and make it " 534 L"universally accessible and useful." 535 }, { 536 // English (United States) 537 "en-US", 538 L"Google's mission is to organize the world's information and make it " 539 L"universally accessible and useful." 540 }, { 541 // Bulgarian 542 "bg-BG", 543 L"\x041c\x0438\x0441\x0438\x044f\x0442\x0430 " 544 L"\x043d\x0430 Google \x0435 \x0434\x0430 \x043e" 545 L"\x0440\x0433\x0430\x043d\x0438\x0437\x0438\x0440" 546 L"\x0430 \x0441\x0432\x0435\x0442\x043e\x0432" 547 L"\x043d\x0430\x0442\x0430 \x0438\x043d\x0444" 548 L"\x043e\x0440\x043c\x0430\x0446\x0438\x044f " 549 L"\x0438 \x0434\x0430 \x044f \x043d" 550 L"\x0430\x043f\x0440\x0430\x0432\x0438 \x0443" 551 L"\x043d\x0438\x0432\x0435\x0440\x0441\x0430\x043b" 552 L"\x043d\x043e \x0434\x043e\x0441\x0442\x044a" 553 L"\x043f\x043d\x0430 \x0438 \x043f\x043e" 554 L"\x043b\x0435\x0437\x043d\x0430." 555 }, { 556 // Spanish 557 "es-ES", 558 L"La misi\x00F3n de " 559 // L"Google" - to be added. 560 L" es organizar la informaci\x00F3n mundial " 561 L"para que resulte universalmente accesible y \x00FAtil." 562 }, { 563 // Estonian 564 "et-EE", 565 // L"Google'ile " - to be added. 566 L"\x00FClesanne on korraldada maailma teavet ja teeb selle " 567 L"k\x00F5igile k\x00E4ttesaadavaks ja kasulikuks.", 568 }, { 569 // Faroese 570 "fo-FO", 571 L"Google er at samskipa alla vitan \x00ED heiminum og gera hana alment " 572 L"atkomiliga og n\x00FDtiliga." 573 }, { 574 // French 575 "fr-FR", 576 L"Google a pour mission d'organiser les informations \x00E0 " 577 L"l'\x00E9\x0063helle mondiale dans le but de les rendre accessibles " 578 L"et utiles \x00E0 tous." 579 }, { 580 // Hebrew 581 "he-IL", 582 L"\x05D4\x05DE\x05E9\x05D9\x05DE\x05D4 \x05E9\x05DC Google " 583 L"\x05D4\x05D9\x05D0 \x05DC\x05D0\x05E8\x05D2\x05DF " 584 L"\x05D0\x05EA \x05D4\x05DE\x05D9\x05D3\x05E2 " 585 L"\x05D4\x05E2\x05D5\x05DC\x05DE\x05D9 " 586 L"\x05D5\x05DC\x05D4\x05E4\x05D5\x05DA \x05D0\x05D5\x05EA\x05D5 " 587 L"\x05DC\x05D6\x05DE\x05D9\x05DF " 588 L"\x05D5\x05E9\x05D9\x05DE\x05D5\x05E9\x05D9 \x05D1\x05DB\x05DC " 589 L"\x05D4\x05E2\x05D5\x05DC\x05DD. " 590 // Two words with ASCII double/single quoation marks. 591 L"\x05DE\x05E0\x05DB\x0022\x05DC \x05E6\x0027\x05D9\x05E4\x05E1" 592 }, { 593 // Hindi 594 "hi-IN", 595 L"Google \x0915\x093E \x092E\x093F\x0936\x0928 " 596 L"\x0926\x0941\x0928\x093F\x092F\x093E \x0915\x0940 " 597 L"\x091C\x093E\x0928\x0915\x093E\x0930\x0940 \x0915\x094B " 598 L"\x0935\x094D\x092F\x0935\x0938\x094D\x0925\x093F\x0924 " 599 L"\x0915\x0930\x0928\x093E \x0914\x0930 \x0909\x0938\x0947 " 600 L"\x0938\x093E\x0930\x094D\x0935\x092D\x094C\x092E\x093F\x0915 " 601 L"\x0930\x0942\x092A \x0938\x0947 \x092A\x0939\x0941\x0901\x091A " 602 L"\x092E\x0947\x0902 \x0914\x0930 \x0909\x092A\x092F\x094B\x0917\x0940 " 603 L"\x092C\x0928\x093E\x0928\x093E \x0939\x0948." 604 }, { 605 // Hungarian 606 "hu-HU", 607 L"A Google azt a k\x00FCldet\x00E9st v\x00E1llalta mag\x00E1ra, " 608 L"hogy a vil\x00E1gon fellelhet\x0151 inform\x00E1\x0063i\x00F3kat " 609 L"rendszerezze \x00E9s \x00E1ltal\x00E1nosan el\x00E9rhet\x0151v\x00E9, " 610 L"illetve haszn\x00E1lhat\x00F3v\x00E1 tegye." 611 }, { 612 // Croatian 613 "hr-HR", 614 // L"Googleova " - to be added. 615 L"je misija organizirati svjetske informacije i u\x010Diniti ih " 616 // L"univerzalno " - to be added. 617 L"pristupa\x010Dnima i korisnima." 618 }, { 619 // Indonesian 620 "id-ID", 621 L"Misi Google adalah untuk mengelola informasi dunia dan membuatnya " 622 L"dapat diakses dan bermanfaat secara universal." 623 }, { 624 // Italian 625 "it-IT", 626 L"La missione di Google \x00E8 organizzare le informazioni a livello " 627 L"mondiale e renderle universalmente accessibili e fruibili." 628 }, { 629 // Lithuanian 630 "lt-LT", 631 L"\x201EGoogle\x201C tikslas \x2013 rinkti ir sisteminti pasaulio " 632 L"informacij\x0105 bei padaryti j\x0105 prieinam\x0105 ir " 633 L"nauding\x0105 visiems." 634 }, { 635 // Latvian 636 "lv-LV", 637 L"Google uzdevums ir k\x0101rtot pasaules inform\x0101" 638 L"ciju un padar\x012Bt to univers\x0101li pieejamu un noder\x012Bgu." 639 }, { 640 // Norwegian 641 "nb-NO", 642 // L"Googles " - to be added. 643 L"m\x00E5l er \x00E5 organisere informasjonen i verden og " 644 L"gj\x00F8re den tilgjengelig og nyttig for alle." 645 }, { 646 // Dutch 647 "nl-NL", 648 L"Het doel van Google is om alle informatie wereldwijd toegankelijk " 649 L"en bruikbaar te maken." 650 }, { 651 // Polish 652 "pl-PL", 653 L"Misj\x0105 Google jest uporz\x0105" L"dkowanie \x015Bwiatowych " 654 L"zasob\x00F3w informacji, aby sta\x0142y si\x0119 one powszechnie " 655 L"dost\x0119pne i u\x017Cyteczne." 656 }, { 657 // Portuguese (Brazil) 658 "pt-BR", 659 L"A miss\x00E3o do " 660 #if !defined(OS_MACOSX) 661 L"Google " 662 #endif 663 L"\x00E9 organizar as informa\x00E7\x00F5" 664 L"es do mundo todo e " 665 #if !defined(OS_MACOSX) 666 L"torn\x00E1-las " 667 #endif 668 L"acess\x00EDveis e \x00FAteis em car\x00E1ter universal." 669 }, { 670 // Portuguese (Portugal) 671 "pt-PT", 672 L"O " 673 #if !defined(OS_MACOSX) 674 L"Google " 675 #endif 676 L"tem por miss\x00E3o organizar a informa\x00E7\x00E3o do " 677 L"mundo e " 678 #if !defined(OS_MACOSX) 679 L"torn\x00E1-la " 680 #endif 681 L"universalmente acess\x00EDvel e \x00FAtil" 682 }, { 683 // Romanian 684 "ro-RO", 685 L"Misiunea Google este de a organiza informa\x021B3iile lumii \x0219i de " 686 L"a le face accesibile \x0219i utile la nivel universal." 687 }, { 688 // Russian 689 "ru-RU", 690 L"\x041C\x0438\x0441\x0441\x0438\x044F Google " 691 L"\x0441\x043E\x0441\x0442\x043E\x0438\x0442 \x0432 " 692 L"\x043E\x0440\x0433\x0430\x043D\x0438\x0437\x0430\x0446\x0438\x0438 " 693 L"\x043C\x0438\x0440\x043E\x0432\x043E\x0439 " 694 L"\x0438\x043D\x0444\x043E\x0440\x043C\x0430\x0446\x0438\x0438, " 695 L"\x043E\x0431\x0435\x0441\x043F\x0435\x0447\x0435\x043D\x0438\x0438 " 696 L"\x0435\x0435 " 697 L"\x0434\x043E\x0441\x0442\x0443\x043F\x043D\x043E\x0441\x0442\x0438 " 698 L"\x0438 \x043F\x043E\x043B\x044C\x0437\x044B \x0434\x043B\x044F " 699 L"\x0432\x0441\x0435\x0445." 700 // A Russian word including U+0451. (Bug 15558 <http://crbug.com/15558>) 701 L"\x0451\x043B\x043A\x0430" 702 }, { 703 // Serbo-Croatian (Serbian Latin) 704 "sh", 705 L"Google-ova misija je da organizuje sve informacije na svetu i " 706 L"u\x010dini ih univerzal-no dostupnim i korisnim." 707 }, { 708 // Serbian 709 "sr", 710 L"\x0047\x006f\x006f\x0067\x006c\x0065\x002d\x043e\x0432\x0430 " 711 L"\x043c\x0438\x0441\x0438\x0458\x0430 \x0458\x0435 \x0434\x0430 " 712 L"\x043e\x0440\x0433\x0430\x043d\x0438\x0437\x0443\x0458\x0435 " 713 L"\x0441\x0432\x0435 " 714 L"\x0438\x043d\x0444\x043e\x0440\x043c\x0430\x0446\x0438\x0458\x0435 " 715 L"\x043d\x0430 \x0441\x0432\x0435\x0442\x0443 \x0438 " 716 L"\x0443\x0447\x0438\x043d\x0438 \x0438\x0445 " 717 L"\x0443\x043d\x0438\x0432\x0435\x0440\x0437\x0430\x043b\x043d\x043e " 718 L"\x0434\x043e\x0441\x0442\x0443\x043f\x043d\x0438\x043c \x0438 " 719 L"\x043a\x043e\x0440\x0438\x0441\x043d\x0438\x043c." 720 }, { 721 // Slovak 722 "sk-SK", 723 L"Spolo\x010Dnos\x0165 Google si dala za \x00FAlohu usporiada\x0165 " 724 L"inform\x00E1\x0063ie " 725 L"z cel\x00E9ho sveta a zabezpe\x010Di\x0165, " 726 L"aby boli v\x0161eobecne dostupn\x00E9 a u\x017Eito\x010Dn\x00E9." 727 }, { 728 // Slovenian 729 "sl-SI", 730 // L"Googlovo " - to be added. 731 L"poslanstvo je organizirati svetovne informacije in " 732 L"omogo\x010Diti njihovo dostopnost in s tem uporabnost za vse." 733 }, { 734 // Swedish 735 "sv-SE", 736 L"Googles m\x00E5ls\x00E4ttning \x00E4r att ordna v\x00E4rldens " 737 L"samlade information och g\x00F6ra den tillg\x00E4nglig f\x00F6r alla." 738 }, { 739 // Turkish 740 "tr-TR", 741 // L"Google\x2019\x0131n " - to be added. 742 L"misyonu, d\x00FCnyadaki t\x00FCm bilgileri " 743 L"organize etmek ve evrensel olarak eri\x015Filebilir ve " 744 L"kullan\x0131\x015Fl\x0131 k\x0131lmakt\x0131r." 745 }, { 746 // Ukranian 747 "uk-UA", 748 L"\x041c\x0456\x0441\x0456\x044f " 749 L"\x043a\x043e\x043c\x043f\x0430\x043d\x0456\x0457 Google " 750 L"\x043f\x043e\x043b\x044f\x0433\x0430\x0454 \x0432 " 751 L"\x0442\x043e\x043c\x0443, \x0449\x043e\x0431 " 752 L"\x0443\x043f\x043e\x0440\x044f\x0434\x043a\x0443\x0432\x0430\x0442" 753 L"\x0438 \x0456\x043d\x0444\x043e\x0440\x043c\x0430\x0446\x0456\x044e " 754 L"\x0437 \x0443\x0441\x044c\x043e\x0433\x043e " 755 L"\x0441\x0432\x0456\x0442\x0443 \x0442\x0430 " 756 L"\x0437\x0440\x043e\x0431\x0438\x0442\x0438 \x0457\x0457 " 757 L"\x0443\x043d\x0456\x0432\x0435\x0440\x0441\x0430\x043b\x044c\x043d" 758 L"\x043e \x0434\x043e\x0441\x0442\x0443\x043f\x043d\x043e\x044e " 759 L"\x0442\x0430 \x043a\x043e\x0440\x0438\x0441\x043d\x043e\x044e." 760 }, { 761 // Vietnamese 762 "vi-VN", 763 L"Nhi\x1EC7m v\x1EE5 c\x1EE7\x0061 " 764 L"Google la \x0111\x1EC3 t\x1ED5 ch\x1EE9\x0063 " 765 L"c\x00E1\x0063 th\x00F4ng tin c\x1EE7\x0061 " 766 L"th\x1EBF gi\x1EDBi va l\x00E0m cho n\x00F3 universal c\x00F3 " 767 L"th\x1EC3 truy c\x1EADp va h\x1EEFu d\x1EE5ng h\x01A1n." 768 }, { 769 // Korean 770 "ko", 771 L"Google\xC758 \xBAA9\xD45C\xB294 \xC804\xC138\xACC4\xC758 " 772 L"\xC815\xBCF4\xB97C \xCCB4\xACC4\xD654\xD558\xC5EC \xBAA8\xB450\xAC00 " 773 L"\xD3B8\xB9AC\xD558\xAC8C \xC774\xC6A9\xD560 \xC218 " 774 L"\xC788\xB3C4\xB85D \xD558\xB294 \xAC83\xC785\xB2C8\xB2E4." 775 }, { 776 // Albanian 777 "sq", 778 L"Misioni i Google \x00EBsht\x00EB q\x00EB t\x00EB organizoj\x00EB " 779 L"informacionin e bot\x00EBs dhe t\x00EB b\x00EBjn\x00EB at\x00EB " 780 L"universalisht t\x00EB arritshme dhe t\x00EB dobishme." 781 }, { 782 // Tamil 783 "ta", 784 L"Google \x0B87\x0BA9\x0BCD " 785 L"\x0BA8\x0BC7\x0BBE\x0B95\x0BCD\x0B95\x0BAE\x0BCD " 786 L"\x0B89\x0BB2\x0B95\x0BBF\x0BA9\x0BCD \x0BA4\x0B95\x0BB5\x0BB2\x0BCD " 787 L"\x0B8F\x0BB1\x0BCD\x0BAA\x0BBE\x0B9F\x0BC1 \x0B87\x0BA4\x0BC1 " 788 L"\x0B89\x0BB2\x0B95\x0BB3\x0BBE\x0BB5\x0BBF\x0BAF " 789 L"\x0B85\x0BA3\x0BC1\x0B95\x0B95\x0BCD \x0B95\x0BC2\x0B9F\x0BBF\x0BAF " 790 L"\x0BAE\x0BB1\x0BCD\x0BB1\x0BC1\x0BAE\x0BCD " 791 L"\x0BAA\x0BAF\x0BA9\x0BC1\x0BB3\x0BCD\x0BB3 " 792 L"\x0B9A\x0BC6\x0BAF\x0BCD\x0BAF \x0B89\x0BB3\x0BCD\x0BB3\x0BA4\x0BC1." 793 }, { 794 // Tajik 795 "tg", 796 L"\x041c\x0438\x0441\x0441\x0438\x044f\x0438 Google \x0438\x043d " 797 L"\x043c\x0443\x0440\x0430\x0442\x0442\x0430\x0431 " 798 L"\x0441\x043e\x0445\x0442\x0430\x043d\x0438 " 799 L"\x043c\x0430\x044a\x043b\x0443\x043c\x043e\x0442\x04b3\x043e\x0438 " 800 L"\x043c\x0430\x0432\x04b7\x0443\x0434\x0430, \x043e\x0441\x043e\x043d " 801 L"\x043d\x0430\x043c\x0443\x0434\x0430\x043d\x0438 " 802 L"\x0438\x0441\x0442\x0438\x0444\x043e\x0434\x0430\x0431\x0430\x0440" 803 L"\x04e3 \x0432\x0430 \x0434\x0430\x0441\x0442\x0440\x0430\x0441\x0438 " 804 L"\x0443\x043c\x0443\x043c " 805 L"\x0433\x0430\x0440\x0434\x043e\x043d\x0438\x0434\x0430\x043d\x0438 " 806 L"\x043e\x043d\x04b3\x043e \x0430\x0441\x0442." 807 }, 808 }; 809 810 for (size_t i = 0; i < ARRAYSIZE_UNSAFE(kTestCases); ++i) { 811 ReinitializeSpellCheck(kTestCases[i].language); 812 size_t input_length = 0; 813 if (kTestCases[i].input != NULL) 814 input_length = wcslen(kTestCases[i].input); 815 816 int misspelling_start = 0; 817 int misspelling_length = 0; 818 bool result = spell_check()->SpellCheckWord( 819 base::WideToUTF16(kTestCases[i].input).c_str(), 820 static_cast<int>(input_length), 821 0, 822 &misspelling_start, 823 &misspelling_length, NULL); 824 825 EXPECT_TRUE(result) 826 << "\"" 827 << std::wstring(kTestCases[i].input).substr( 828 misspelling_start, misspelling_length) 829 << "\" is misspelled in " 830 << kTestCases[i].language 831 << "."; 832 EXPECT_EQ(0, misspelling_start); 833 EXPECT_EQ(0, misspelling_length); 834 } 835 } 836 837 TEST_F(SpellCheckTest, GetAutoCorrectionWord_EN_US) { 838 static const struct { 839 // A misspelled word. 840 const char* input; 841 842 // An expected result for this test case. 843 // Should be an empty string if there are no suggestions for auto correct. 844 const char* expected_result; 845 } kTestCases[] = { 846 {"teh", "the"}, 847 {"moer", "more"}, 848 {"watre", "water"}, 849 {"noen", ""}, 850 {"what", ""}, 851 }; 852 853 EnableAutoCorrect(true); 854 855 for (size_t i = 0; i < ARRAYSIZE_UNSAFE(kTestCases); ++i) { 856 base::string16 misspelled_word(base::UTF8ToUTF16(kTestCases[i].input)); 857 base::string16 expected_autocorrect_word( 858 base::UTF8ToUTF16(kTestCases[i].expected_result)); 859 base::string16 autocorrect_word = spell_check()->GetAutoCorrectionWord( 860 misspelled_word, 0); 861 862 // Check for spelling. 863 EXPECT_EQ(expected_autocorrect_word, autocorrect_word); 864 } 865 } 866 867 // Verify that our SpellCheck::SpellCheckWord() returns false when it checks 868 // misspelled words. 869 TEST_F(SpellCheckTest, MisspelledWords) { 870 static const struct { 871 const char* language; 872 const wchar_t* input; 873 } kTestCases[] = { 874 { 875 // A misspelled word for English 876 "en-US", 877 L"aaaaaaaaaa", 878 }, { 879 // A misspelled word for Greek. 880 "el-GR", 881 L"\x03B1\x03B1\x03B1\x03B1\x03B1\x03B1\x03B1\x03B1\x03B1\x03B1", 882 }, { 883 // A misspelled word for Hebrew 884 "he-IL", 885 L"\x05D0\x05D0\x05D0\x05D0\x05D0\x05D0\x05D0\x05D0\x05D0\x05D0", 886 }, { 887 // Hindi 888 "hi-IN", 889 L"\x0905\x0905\x0905\x0905\x0905\x0905\x0905\x0905\x0905\x0905", 890 }, { 891 // A misspelled word for Russian 892 "ru-RU", 893 L"\x0430\x0430\x0430\x0430\x0430\x0430\x0430\x0430\x0430\x0430", 894 }, 895 }; 896 897 for (size_t i = 0; i < ARRAYSIZE_UNSAFE(kTestCases); ++i) { 898 ReinitializeSpellCheck(kTestCases[i].language); 899 900 base::string16 word(base::WideToUTF16(kTestCases[i].input)); 901 int word_length = static_cast<int>(word.length()); 902 int misspelling_start = 0; 903 int misspelling_length = 0; 904 bool result = spell_check()->SpellCheckWord(word.c_str(), 905 word_length, 906 0, 907 &misspelling_start, 908 &misspelling_length, 909 NULL); 910 EXPECT_FALSE(result); 911 EXPECT_EQ(0, misspelling_start); 912 EXPECT_EQ(word_length, misspelling_length); 913 } 914 } 915 916 // Since SpellCheck::SpellCheckParagraph is not implemented on Mac, 917 // we skip these SpellCheckParagraph tests on Mac. 918 #if !defined(OS_MACOSX) 919 920 // Make sure SpellCheckParagraph does not crash if the input is empty. 921 TEST_F(SpellCheckTest, SpellCheckParagraphEmptyParagraph) { 922 std::vector<SpellCheckResult> expected; 923 TestSpellCheckParagraph(base::UTF8ToUTF16(""), expected); 924 } 925 926 // A simple test case having no misspellings. 927 TEST_F(SpellCheckTest, SpellCheckParagraphNoMisspellings) { 928 const base::string16 text = base::UTF8ToUTF16("apple"); 929 std::vector<SpellCheckResult> expected; 930 TestSpellCheckParagraph(text, expected); 931 } 932 933 // A simple test case having one misspelling. 934 TEST_F(SpellCheckTest, SpellCheckParagraphSingleMisspellings) { 935 const base::string16 text = base::UTF8ToUTF16("zz"); 936 std::vector<SpellCheckResult> expected; 937 expected.push_back(SpellCheckResult( 938 SpellCheckResult::SPELLING, 0, 2)); 939 940 TestSpellCheckParagraph(text, expected); 941 } 942 943 // A simple test case having multiple misspellings. 944 TEST_F(SpellCheckTest, SpellCheckParagraphMultipleMisspellings) { 945 const base::string16 text = base::UTF8ToUTF16("zz, zz"); 946 std::vector<SpellCheckResult> expected; 947 expected.push_back(SpellCheckResult( 948 SpellCheckResult::SPELLING, 0, 2)); 949 expected.push_back(SpellCheckResult( 950 SpellCheckResult::SPELLING, 4, 2)); 951 952 TestSpellCheckParagraph(text, expected); 953 } 954 955 // Make sure a relatively long (correct) sentence can be spellchecked. 956 TEST_F(SpellCheckTest, SpellCheckParagraphLongSentence) { 957 std::vector<SpellCheckResult> expected; 958 // The text is taken from US constitution preamble. 959 const base::string16 text = base::UTF8ToUTF16( 960 "We the people of the United States, in order to form a more perfect " 961 "union, establish justice, insure domestic tranquility, provide for " 962 "the common defense, promote the general welfare, and secure the " 963 "blessings of liberty to ourselves and our posterity, do ordain and " 964 "establish this Constitution for the United States of America."); 965 966 TestSpellCheckParagraph(text, expected); 967 } 968 969 // Make sure all misspellings can be found in a relatively long sentence. 970 TEST_F(SpellCheckTest, SpellCheckParagraphLongSentenceMultipleMisspellings) { 971 std::vector<SpellCheckResult> expected; 972 973 // All 'the' are converted to 'hte' in US consitition preamble. 974 const base::string16 text = base::UTF8ToUTF16( 975 "We hte people of hte United States, in order to form a more perfect " 976 "union, establish justice, insure domestic tranquility, provide for " 977 "hte common defense, promote hte general welfare, and secure hte " 978 "blessings of liberty to ourselves and our posterity, do ordain and " 979 "establish this Constitution for hte United States of America."); 980 981 expected.push_back(SpellCheckResult( 982 SpellCheckResult::SPELLING, 3, 3)); 983 expected.push_back(SpellCheckResult( 984 SpellCheckResult::SPELLING, 17, 3)); 985 expected.push_back(SpellCheckResult( 986 SpellCheckResult::SPELLING, 135, 3)); 987 expected.push_back(SpellCheckResult( 988 SpellCheckResult::SPELLING, 163, 3)); 989 expected.push_back(SpellCheckResult( 990 SpellCheckResult::SPELLING, 195, 3)); 991 expected.push_back(SpellCheckResult( 992 SpellCheckResult::SPELLING, 298, 3)); 993 994 TestSpellCheckParagraph(text, expected); 995 } 996 997 // We also skip RequestSpellCheck tests on Mac, because a system spellchecker 998 // is used on Mac instead of SpellCheck::RequestTextChecking. 999 1000 // Make sure RequestTextChecking does not crash if input is empty. 1001 TEST_F(SpellCheckTest, RequestSpellCheckWithEmptyString) { 1002 MockTextCheckingCompletion completion; 1003 1004 spell_check()->RequestTextChecking(base::string16(), &completion); 1005 1006 base::MessageLoop::current()->RunUntilIdle(); 1007 1008 EXPECT_EQ(completion.completion_count_, 1U); 1009 } 1010 1011 // A simple test case having no misspellings. 1012 TEST_F(SpellCheckTest, RequestSpellCheckWithoutMisspelling) { 1013 MockTextCheckingCompletion completion; 1014 1015 const base::string16 text = base::ASCIIToUTF16("hello"); 1016 spell_check()->RequestTextChecking(text, &completion); 1017 1018 base::MessageLoop::current()->RunUntilIdle(); 1019 1020 EXPECT_EQ(completion.completion_count_, 1U); 1021 } 1022 1023 // A simple test case having one misspelling. 1024 TEST_F(SpellCheckTest, RequestSpellCheckWithSingleMisspelling) { 1025 MockTextCheckingCompletion completion; 1026 1027 const base::string16 text = base::ASCIIToUTF16("apple, zz"); 1028 spell_check()->RequestTextChecking(text, &completion); 1029 1030 base::MessageLoop::current()->RunUntilIdle(); 1031 1032 EXPECT_EQ(completion.completion_count_, 1U); 1033 EXPECT_EQ(completion.last_results_.size(), 1U); 1034 EXPECT_EQ(completion.last_results_[0].location, 7); 1035 EXPECT_EQ(completion.last_results_[0].length, 2); 1036 } 1037 1038 // A simple test case having a few misspellings. 1039 TEST_F(SpellCheckTest, RequestSpellCheckWithMisspellings) { 1040 MockTextCheckingCompletion completion; 1041 1042 const base::string16 text = base::ASCIIToUTF16("apple, zz, orange, zz"); 1043 spell_check()->RequestTextChecking(text, &completion); 1044 1045 base::MessageLoop::current()->RunUntilIdle(); 1046 1047 EXPECT_EQ(completion.completion_count_, 1U); 1048 EXPECT_EQ(completion.last_results_.size(), 2U); 1049 EXPECT_EQ(completion.last_results_[0].location, 7); 1050 EXPECT_EQ(completion.last_results_[0].length, 2); 1051 EXPECT_EQ(completion.last_results_[1].location, 19); 1052 EXPECT_EQ(completion.last_results_[1].length, 2); 1053 } 1054 1055 // A test case that multiple requests comes at once. Make sure all 1056 // requests are processed. 1057 TEST_F(SpellCheckTest, RequestSpellCheckWithMultipleRequests) { 1058 MockTextCheckingCompletion completion[3]; 1059 1060 const base::string16 text[3] = { 1061 base::ASCIIToUTF16("what, zz"), 1062 base::ASCIIToUTF16("apple, zz"), 1063 base::ASCIIToUTF16("orange, zz") 1064 }; 1065 1066 for (int i = 0; i < 3; ++i) 1067 spell_check()->RequestTextChecking(text[i], &completion[i]); 1068 1069 base::MessageLoop::current()->RunUntilIdle(); 1070 1071 for (int i = 0; i < 3; ++i) { 1072 EXPECT_EQ(completion[i].completion_count_, 1U); 1073 EXPECT_EQ(completion[i].last_results_.size(), 1U); 1074 EXPECT_EQ(completion[i].last_results_[0].location, 6 + i); 1075 EXPECT_EQ(completion[i].last_results_[0].length, 2); 1076 } 1077 } 1078 1079 // A test case that spellchecking is requested before initializing. 1080 // In this case, we postpone to post a request. 1081 TEST_F(SpellCheckTest, RequestSpellCheckWithoutInitialization) { 1082 UninitializeSpellCheck(); 1083 1084 MockTextCheckingCompletion completion; 1085 const base::string16 text = base::ASCIIToUTF16("zz"); 1086 1087 spell_check()->RequestTextChecking(text, &completion); 1088 1089 // The task will not be posted yet. 1090 base::MessageLoop::current()->RunUntilIdle(); 1091 EXPECT_EQ(completion.completion_count_, 0U); 1092 } 1093 1094 // Requests several spellchecking before initializing. Except the last one, 1095 // posting requests is cancelled and text is rendered as correct one. 1096 TEST_F(SpellCheckTest, RequestSpellCheckMultipleTimesWithoutInitialization) { 1097 UninitializeSpellCheck(); 1098 1099 MockTextCheckingCompletion completion[3]; 1100 const base::string16 text[3] = { 1101 base::ASCIIToUTF16("what, zz"), 1102 base::ASCIIToUTF16("apple, zz"), 1103 base::ASCIIToUTF16("orange, zz") 1104 }; 1105 1106 // Calls RequestTextchecking a few times. 1107 for (int i = 0; i < 3; ++i) 1108 spell_check()->RequestTextChecking(text[i], &completion[i]); 1109 1110 // The last task will be posted after initialization, however the other 1111 // requests should be pressed without spellchecking. 1112 base::MessageLoop::current()->RunUntilIdle(); 1113 for (int i = 0; i < 2; ++i) 1114 EXPECT_EQ(completion[i].completion_count_, 1U); 1115 EXPECT_EQ(completion[2].completion_count_, 0U); 1116 1117 // Checks the last request is processed after initialization. 1118 InitializeSpellCheck("en-US"); 1119 1120 // Calls PostDelayedSpellCheckTask instead of OnInit here for simplicity. 1121 spell_check()->PostDelayedSpellCheckTask( 1122 spell_check()->pending_request_param_.release()); 1123 base::MessageLoop::current()->RunUntilIdle(); 1124 for (int i = 0; i < 3; ++i) 1125 EXPECT_EQ(completion[i].completion_count_, 1U); 1126 } 1127 1128 TEST_F(SpellCheckTest, CreateTextCheckingResults) { 1129 // Verify that the SpellCheck class keeps the spelling marker added to a 1130 // misspelled word "zz". 1131 { 1132 base::string16 text = base::ASCIIToUTF16("zz"); 1133 std::vector<SpellCheckResult> spellcheck_results; 1134 spellcheck_results.push_back(SpellCheckResult( 1135 SpellCheckResult::SPELLING, 0, 2, base::string16())); 1136 blink::WebVector<blink::WebTextCheckingResult> textcheck_results; 1137 spell_check()->CreateTextCheckingResults(SpellCheck::USE_NATIVE_CHECKER, 1138 0, 1139 text, 1140 spellcheck_results, 1141 &textcheck_results); 1142 EXPECT_EQ(spellcheck_results.size(), textcheck_results.size()); 1143 EXPECT_EQ(blink::WebTextDecorationTypeSpelling, 1144 textcheck_results[0].decoration); 1145 EXPECT_EQ(spellcheck_results[0].location, textcheck_results[0].location); 1146 EXPECT_EQ(spellcheck_results[0].length, textcheck_results[0].length); 1147 } 1148 1149 // Verify that the SpellCheck class replaces the spelling marker added to a 1150 // contextually-misspelled word "bean" with a grammar marker. 1151 { 1152 base::string16 text = base::ASCIIToUTF16("I have bean to USA."); 1153 std::vector<SpellCheckResult> spellcheck_results; 1154 spellcheck_results.push_back(SpellCheckResult( 1155 SpellCheckResult::SPELLING, 7, 4, base::string16())); 1156 blink::WebVector<blink::WebTextCheckingResult> textcheck_results; 1157 spell_check()->CreateTextCheckingResults(SpellCheck::USE_NATIVE_CHECKER, 1158 0, 1159 text, 1160 spellcheck_results, 1161 &textcheck_results); 1162 EXPECT_EQ(spellcheck_results.size(), textcheck_results.size()); 1163 EXPECT_EQ(blink::WebTextDecorationTypeGrammar, 1164 textcheck_results[0].decoration); 1165 EXPECT_EQ(spellcheck_results[0].location, textcheck_results[0].location); 1166 EXPECT_EQ(spellcheck_results[0].length, textcheck_results[0].length); 1167 } 1168 } 1169 1170 #endif 1171 1172 // Checks some words that should be present in all English dictionaries. 1173 TEST_F(SpellCheckTest, EnglishWords) { 1174 static const struct { 1175 const char* input; 1176 bool should_pass; 1177 } kTestCases[] = { 1178 // Issue 146093: "Chromebook" and "Chromebox" not included in spell-checking 1179 // dictionary. 1180 {"Chromebook", true}, 1181 {"Chromebooks", true}, 1182 {"Chromebox", true}, 1183 {"Chromeboxes", true}, 1184 {"Chromeblade", true}, 1185 {"Chromeblades", true}, 1186 {"Chromebase", true}, 1187 {"Chromebases", true}, 1188 // Issue 94708: Spell-checker incorrectly reports whisky as misspelled. 1189 {"whisky", true}, 1190 {"whiskey", true}, 1191 {"whiskies", true}, 1192 // Issue 98678: "Recency" should be included in client-side dictionary. 1193 {"recency", true}, 1194 {"recencies", false}, 1195 // Issue 140486 1196 {"movie", true}, 1197 {"movies", true}, 1198 }; 1199 1200 static const char* kLocales[] = { "en-GB", "en-US", "en-CA", "en-AU" }; 1201 1202 for (size_t j = 0; j < arraysize(kLocales); ++j) { 1203 ReinitializeSpellCheck(kLocales[j]); 1204 for (size_t i = 0; i < ARRAYSIZE_UNSAFE(kTestCases); ++i) { 1205 size_t input_length = 0; 1206 if (kTestCases[i].input != NULL) 1207 input_length = strlen(kTestCases[i].input); 1208 1209 int misspelling_start = 0; 1210 int misspelling_length = 0; 1211 bool result = spell_check()->SpellCheckWord( 1212 base::ASCIIToUTF16(kTestCases[i].input).c_str(), 1213 static_cast<int>(input_length), 1214 0, 1215 &misspelling_start, 1216 &misspelling_length, NULL); 1217 1218 EXPECT_EQ(kTestCases[i].should_pass, result) << kTestCases[i].input << 1219 " in " << kLocales[j]; 1220 } 1221 } 1222 } 1223 1224 // Checks that NOSUGGEST works in English dictionaries. 1225 TEST_F(SpellCheckTest, NoSuggest) { 1226 static const struct { 1227 const char* input; 1228 const char* suggestion; 1229 const char* locale; 1230 bool should_pass; 1231 } kTestCases[] = { 1232 {"suckerbert", "cocksucker", "en-GB", true}, 1233 {"suckerbert", "cocksucker", "en-US", true}, 1234 {"suckerbert", "cocksucker", "en-CA", true}, 1235 {"suckerbert", "cocksucker", "en-AU", true}, 1236 {"suckerbert", "cocksuckers", "en-GB", true}, 1237 {"suckerbert", "cocksuckers", "en-US", true}, 1238 {"suckerbert", "cocksuckers", "en-CA", true}, 1239 {"suckerbert", "cocksuckers", "en-AU", true}, 1240 {"Batasunaa", "Batasuna", "ca-ES", true}, 1241 {"pornoo", "porno", "it-IT", true}, 1242 {"catass", "catas", "lt-LT", true}, 1243 {"kuracc", "kurac", "sl-SI", true}, 1244 {"pittt", "pitt", "sv-SE", true}, 1245 }; 1246 1247 size_t test_cases_size = ARRAYSIZE_UNSAFE(kTestCases); 1248 for (size_t i = 0; i < test_cases_size; ++i) { 1249 ReinitializeSpellCheck(kTestCases[i].locale); 1250 size_t suggestion_length = 0; 1251 if (kTestCases[i].suggestion != NULL) 1252 suggestion_length = strlen(kTestCases[i].suggestion); 1253 1254 // First check that the NOSUGGEST flag didn't mark this word as not being in 1255 // the dictionary. 1256 int misspelling_start = 0; 1257 int misspelling_length = 0; 1258 bool result = spell_check()->SpellCheckWord( 1259 base::ASCIIToUTF16(kTestCases[i].suggestion).c_str(), 1260 static_cast<int>(suggestion_length), 1261 0, 1262 &misspelling_start, 1263 &misspelling_length, NULL); 1264 1265 EXPECT_EQ(kTestCases[i].should_pass, result) << kTestCases[i].suggestion << 1266 " in " << kTestCases[i].locale; 1267 1268 // Now verify that this test case does not show up as a suggestion. 1269 std::vector<base::string16> suggestions; 1270 size_t input_length = 0; 1271 if (kTestCases[i].input != NULL) 1272 input_length = strlen(kTestCases[i].input); 1273 result = spell_check()->SpellCheckWord( 1274 base::ASCIIToUTF16(kTestCases[i].input).c_str(), 1275 static_cast<int>(input_length), 1276 0, 1277 &misspelling_start, 1278 &misspelling_length, 1279 &suggestions); 1280 // Input word should be a misspelling. 1281 EXPECT_FALSE(result) << kTestCases[i].input 1282 << " is not a misspelling in " 1283 << kTestCases[i].locale; 1284 // Check if the suggested words occur. 1285 for (int j = 0; j < static_cast<int>(suggestions.size()); j++) { 1286 for (size_t t = 0; t < test_cases_size; t++) { 1287 int compare_result = suggestions.at(j).compare( 1288 base::ASCIIToUTF16(kTestCases[t].suggestion)); 1289 EXPECT_FALSE(compare_result == 0) << kTestCases[t].suggestion << 1290 " in " << kTestCases[i].locale; 1291 } 1292 } 1293 } 1294 } 1295 1296 // Check that the correct dictionary files are checked in. 1297 TEST_F(SpellCheckTest, DictionaryFiles) { 1298 std::vector<std::string> spellcheck_languages; 1299 chrome::spellcheck_common::SpellCheckLanguages(&spellcheck_languages); 1300 EXPECT_FALSE(spellcheck_languages.empty()); 1301 1302 base::FilePath hunspell = GetHunspellDirectory(); 1303 for (size_t i = 0; i < spellcheck_languages.size(); ++i) { 1304 base::FilePath dict = chrome::spellcheck_common::GetVersionedFileName( 1305 spellcheck_languages[i], hunspell); 1306 EXPECT_TRUE(base::PathExists(dict)) << dict.value() << " not found"; 1307 } 1308 } 1309 1310 // TODO(groby): Add a test for hunspell itself, when MAXWORDLEN is exceeded. 1311 TEST_F(SpellCheckTest, SpellingEngine_CheckSpelling) { 1312 static const struct { 1313 const char* word; 1314 bool expected_result; 1315 } kTestCases[] = { 1316 { "", true }, 1317 { "automatic", true }, 1318 { "hello", true }, 1319 { "forglobantic", false }, 1320 { "xfdssfsdfaasds", false }, 1321 { // 64 chars are the longest word to check - this should fail checking. 1322 "abcdefghijklmnopqrstuvwxyzabcdefghijklmnopqrstuvwxyzabcdefghijkl", 1323 false 1324 }, 1325 { // Any word longer than 64 chars should be exempt from checking. 1326 "reallylongwordthatabsolutelyexceedsthespecifiedcharacterlimitabit", 1327 true 1328 } 1329 }; 1330 1331 // Initialization magic - call InitializeIfNeeded twice. The first one simply 1332 // flags internal state that a dictionary was requested. The second one will 1333 // take the passed-in file and initialize hunspell with it. (The file was 1334 // passed to hunspell in the ctor for the test fixture). 1335 // This needs to be done since we need to ensure the SpellingEngine object 1336 // contained in |spellcheck_| from the test fixture does get initialized. 1337 // TODO(groby): Clean up this mess. 1338 InitializeIfNeeded(); 1339 ASSERT_FALSE(InitializeIfNeeded()); 1340 1341 for (size_t i = 0; i < ARRAYSIZE_UNSAFE(kTestCases); ++i) { 1342 bool result = CheckSpelling(kTestCases[i].word, 0); 1343 EXPECT_EQ(kTestCases[i].expected_result, result) << 1344 "Failed test for " << kTestCases[i].word; 1345 } 1346 } 1347 1348 // Chrome should not suggest "Othello" for "hellllo" or "identically" for 1349 // "accidently". 1350 TEST_F(SpellCheckTest, LogicalSuggestions) { 1351 static const struct { 1352 const char* misspelled; 1353 const char* suggestion; 1354 } kTestCases[] = { 1355 { "hellllo", "hello" }, 1356 { "accidently", "accidentally" } 1357 }; 1358 1359 for (size_t i = 0; i < ARRAYSIZE_UNSAFE(kTestCases); ++i) { 1360 int misspelling_start = 0; 1361 int misspelling_length = 0; 1362 std::vector<base::string16> suggestions; 1363 EXPECT_FALSE(spell_check()->SpellCheckWord( 1364 base::ASCIIToUTF16(kTestCases[i].misspelled).c_str(), 1365 strlen(kTestCases[i].misspelled), 1366 0, 1367 &misspelling_start, 1368 &misspelling_length, 1369 &suggestions)); 1370 EXPECT_GE(suggestions.size(), static_cast<size_t>(1)); 1371 if (suggestions.size() > 0) 1372 EXPECT_EQ(suggestions[0], base::ASCIIToUTF16(kTestCases[i].suggestion)); 1373 } 1374 } 1375