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| 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/basictypes.h" |
| 6 #include "sync/internal_api/public/base/ordinal.h" |
| 7 #include "testing/gtest/include/gtest/gtest.h" |
| 8 |
| 9 #include <algorithm> |
| 10 #include <string> |
| 11 #include <vector> |
| 12 |
| 13 namespace syncer { |
| 14 |
| 15 namespace { |
| 16 |
| 17 struct TestOrdinalTraits { |
| 18 static const uint8 kZeroDigit = '0'; |
| 19 static const uint8 kMaxDigit = '3'; |
| 20 static const size_t kMinLength = 1; |
| 21 }; |
| 22 |
| 23 struct LongOrdinalTraits { |
| 24 static const uint8 kZeroDigit = '0'; |
| 25 static const uint8 kMaxDigit = '9'; |
| 26 static const size_t kMinLength = 5; |
| 27 }; |
| 28 |
| 29 struct LargeOrdinalTraits { |
| 30 static const uint8 kZeroDigit = 0; |
| 31 static const uint8 kMaxDigit = kuint8max; |
| 32 static const size_t kMinLength = 1; |
| 33 }; |
| 34 |
| 35 typedef Ordinal<TestOrdinalTraits> TestOrdinal; |
| 36 typedef Ordinal<LongOrdinalTraits> LongOrdinal; |
| 37 typedef Ordinal<LargeOrdinalTraits> LargeOrdinal; |
| 38 |
| 39 COMPILE_ASSERT(TestOrdinal::kZeroDigit == '0', |
| 40 TestOrdinalHasCorrectZeroDigit); |
| 41 COMPILE_ASSERT(TestOrdinal::kOneDigit == '1', |
| 42 TestOrdinalHasCorrectOneDigit); |
| 43 COMPILE_ASSERT(TestOrdinal::kMidDigit == '2', |
| 44 TestOrdinalHasCorrectMidDigit); |
| 45 COMPILE_ASSERT(TestOrdinal::kMaxDigit == '3', |
| 46 TestOrdinalHasCorrectMaxDigit); |
| 47 COMPILE_ASSERT(TestOrdinal::kMidDigitValue == 2, |
| 48 TestOrdinalHasCorrectMidDigitValue); |
| 49 COMPILE_ASSERT(TestOrdinal::kMaxDigitValue == 3, |
| 50 TestOrdinalHasCorrectMaxDigitValue); |
| 51 COMPILE_ASSERT(TestOrdinal::kRadix == 4, |
| 52 TestOrdinalHasCorrectRadix); |
| 53 |
| 54 COMPILE_ASSERT(LongOrdinal::kZeroDigit == '0', |
| 55 LongOrdinalkZeroDigit_incorrect); |
| 56 COMPILE_ASSERT(LongOrdinal::kOneDigit == '1', |
| 57 LongOrdinalkOneDigit_incorrect); |
| 58 COMPILE_ASSERT(LongOrdinal::kMidDigit == '5', |
| 59 LongOrdinalkMidDigit_incorrect); |
| 60 COMPILE_ASSERT(LongOrdinal::kMaxDigit == '9', |
| 61 LongOrdinalkMaxDigit_incorrect); |
| 62 COMPILE_ASSERT(LongOrdinal::kMidDigitValue == 5, |
| 63 LongOrdinalkMidDigitValue_incorrect); |
| 64 COMPILE_ASSERT(LongOrdinal::kMaxDigitValue == 9, |
| 65 LongOrdinalkMaxDigitValue_incorrect); |
| 66 COMPILE_ASSERT(LongOrdinal::kRadix == 10, |
| 67 LongOrdinalkRadix_incorrect); |
| 68 |
| 69 COMPILE_ASSERT(static_cast<char>(LargeOrdinal::kZeroDigit) == '\x00', |
| 70 LargeOrdinalkZeroDigit_incorrect); |
| 71 COMPILE_ASSERT(static_cast<char>(LargeOrdinal::kOneDigit) == '\x01', |
| 72 LargeOrdinalkOneDigit_incorrect); |
| 73 COMPILE_ASSERT(static_cast<char>(LargeOrdinal::kMidDigit) == '\x80', |
| 74 LargeOrdinalkMidDigit_incorrect); |
| 75 COMPILE_ASSERT(static_cast<char>(LargeOrdinal::kMaxDigit) == '\xff', |
| 76 LargeOrdinalkMaxDigit_incorrect); |
| 77 COMPILE_ASSERT(LargeOrdinal::kMidDigitValue == 128, |
| 78 LargeOrdinalkMidDigitValue_incorrect); |
| 79 COMPILE_ASSERT(LargeOrdinal::kMaxDigitValue == 255, |
| 80 LargeOrdinalkMaxDigitValue_incorrect); |
| 81 COMPILE_ASSERT(LargeOrdinal::kRadix == 256, |
| 82 LargeOrdinalkRadix_incorrect); |
| 83 |
| 84 // Create Ordinals that satisfy all but one criterion for validity. |
| 85 // IsValid() should return false for all of them. |
| 86 TEST(Ordinal, Invalid) { |
| 87 // Length criterion. |
| 88 EXPECT_FALSE(TestOrdinal("").IsValid()); |
| 89 EXPECT_FALSE(LongOrdinal("0001").IsValid()); |
| 90 |
| 91 const char kBeforeZero[] = { '0' - 1, '\0' }; |
| 92 const char kAfterNine[] = { '9' + 1, '\0' }; |
| 93 |
| 94 // Character criterion. |
| 95 EXPECT_FALSE(TestOrdinal(kBeforeZero).IsValid()); |
| 96 EXPECT_FALSE(TestOrdinal("4").IsValid()); |
| 97 EXPECT_FALSE(LongOrdinal(std::string("0000") + kBeforeZero).IsValid()); |
| 98 EXPECT_FALSE(LongOrdinal(std::string("0000") + kAfterNine).IsValid()); |
| 99 |
| 100 // Zero criterion. |
| 101 EXPECT_FALSE(TestOrdinal("0").IsValid()); |
| 102 EXPECT_FALSE(TestOrdinal("00000").IsValid()); |
| 103 |
| 104 // Trailing zero criterion. |
| 105 EXPECT_FALSE(TestOrdinal("10").IsValid()); |
| 106 EXPECT_FALSE(TestOrdinal("111110").IsValid()); |
| 107 } |
| 108 |
| 109 // Create Ordinals that satisfy all criteria for validity. |
| 110 // IsValid() should return true for all of them. |
| 111 TEST(Ordinal, Valid) { |
| 112 // Length criterion. |
| 113 EXPECT_TRUE(TestOrdinal("1").IsValid()); |
| 114 EXPECT_TRUE(LongOrdinal("10000").IsValid()); |
| 115 } |
| 116 |
| 117 // Create Ordinals from CreateInitialOrdinal. They should be valid |
| 118 // and close to the middle of the range. |
| 119 TEST(Ordinal, CreateInitialOrdinal) { |
| 120 const TestOrdinal& ordinal1 = TestOrdinal::CreateInitialOrdinal(); |
| 121 const LongOrdinal& ordinal2 = LongOrdinal::CreateInitialOrdinal(); |
| 122 ASSERT_TRUE(ordinal1.IsValid()); |
| 123 ASSERT_TRUE(ordinal2.IsValid()); |
| 124 EXPECT_TRUE(ordinal1.Equals(TestOrdinal("2"))); |
| 125 EXPECT_TRUE(ordinal2.Equals(LongOrdinal("50000"))); |
| 126 } |
| 127 |
| 128 // Create an invalid and a valid Ordinal. EqualsOrBothInvalid should |
| 129 // return true if called reflexively and false otherwise. |
| 130 TEST(Ordinal, EqualsOrBothInvalid) { |
| 131 const TestOrdinal& valid_ordinal = TestOrdinal::CreateInitialOrdinal(); |
| 132 const TestOrdinal invalid_ordinal; |
| 133 |
| 134 EXPECT_TRUE(valid_ordinal.EqualsOrBothInvalid(valid_ordinal)); |
| 135 EXPECT_TRUE(invalid_ordinal.EqualsOrBothInvalid(invalid_ordinal)); |
| 136 EXPECT_FALSE(invalid_ordinal.EqualsOrBothInvalid(valid_ordinal)); |
| 137 EXPECT_FALSE(valid_ordinal.EqualsOrBothInvalid(invalid_ordinal)); |
| 138 } |
| 139 |
| 140 // Create three Ordinals in order. LessThan should return values |
| 141 // consistent with that order. |
| 142 TEST(Ordinal, LessThan) { |
| 143 const TestOrdinal small_ordinal("1"); |
| 144 const TestOrdinal middle_ordinal("2"); |
| 145 const TestOrdinal big_ordinal("3"); |
| 146 |
| 147 EXPECT_FALSE(small_ordinal.LessThan(small_ordinal)); |
| 148 EXPECT_TRUE(small_ordinal.LessThan(middle_ordinal)); |
| 149 EXPECT_TRUE(small_ordinal.LessThan(big_ordinal)); |
| 150 |
| 151 EXPECT_FALSE(middle_ordinal.LessThan(small_ordinal)); |
| 152 EXPECT_FALSE(middle_ordinal.LessThan(middle_ordinal)); |
| 153 EXPECT_TRUE(middle_ordinal.LessThan(big_ordinal)); |
| 154 |
| 155 EXPECT_FALSE(big_ordinal.LessThan(small_ordinal)); |
| 156 EXPECT_FALSE(big_ordinal.LessThan(middle_ordinal)); |
| 157 EXPECT_FALSE(big_ordinal.LessThan(big_ordinal)); |
| 158 } |
| 159 |
| 160 // Create two single-digit ordinals with byte values 0 and 255. The |
| 161 // former should compare as less than the latter, even though the |
| 162 // native char type may be signed. |
| 163 TEST(Ordinal, LessThanLarge) { |
| 164 const LargeOrdinal small_ordinal("\x01"); |
| 165 const LargeOrdinal big_ordinal("\xff"); |
| 166 |
| 167 EXPECT_TRUE(small_ordinal.LessThan(big_ordinal)); |
| 168 } |
| 169 |
| 170 // Create three Ordinals in order. GreaterThan should return values |
| 171 // consistent with that order. |
| 172 TEST(Ordinal, GreaterThan) { |
| 173 const LongOrdinal small_ordinal("10000"); |
| 174 const LongOrdinal middle_ordinal("55555"); |
| 175 const LongOrdinal big_ordinal("99999"); |
| 176 |
| 177 EXPECT_FALSE(small_ordinal.GreaterThan(small_ordinal)); |
| 178 EXPECT_FALSE(small_ordinal.GreaterThan(middle_ordinal)); |
| 179 EXPECT_FALSE(small_ordinal.GreaterThan(big_ordinal)); |
| 180 |
| 181 EXPECT_TRUE(middle_ordinal.GreaterThan(small_ordinal)); |
| 182 EXPECT_FALSE(middle_ordinal.GreaterThan(middle_ordinal)); |
| 183 EXPECT_FALSE(middle_ordinal.GreaterThan(big_ordinal)); |
| 184 |
| 185 EXPECT_TRUE(big_ordinal.GreaterThan(small_ordinal)); |
| 186 EXPECT_TRUE(big_ordinal.GreaterThan(middle_ordinal)); |
| 187 EXPECT_FALSE(big_ordinal.GreaterThan(big_ordinal)); |
| 188 } |
| 189 |
| 190 // Create two valid Ordinals. Equals should return true only when |
| 191 // called reflexively. |
| 192 TEST(Ordinal, Equals) { |
| 193 const TestOrdinal ordinal1("1"); |
| 194 const TestOrdinal ordinal2("2"); |
| 195 |
| 196 EXPECT_TRUE(ordinal1.Equals(ordinal1)); |
| 197 EXPECT_FALSE(ordinal1.Equals(ordinal2)); |
| 198 |
| 199 EXPECT_FALSE(ordinal2.Equals(ordinal1)); |
| 200 EXPECT_TRUE(ordinal2.Equals(ordinal2)); |
| 201 } |
| 202 |
| 203 // Create some valid ordinals from some strings. ToString() should |
| 204 // return the original string. |
| 205 TEST(StringOrdinalTest, ToString) { |
| 206 EXPECT_EQ("2", TestOrdinal("2").ToString()); |
| 207 EXPECT_EQ("12345", LongOrdinal("12345").ToString()); |
| 208 } |
| 209 |
| 210 // Create three Ordinals in order. LessThanFn should return values |
| 211 // consistent with that order. |
| 212 TEST(Ordinal, LessThanFn) { |
| 213 const TestOrdinal small_ordinal("1"); |
| 214 const TestOrdinal middle_ordinal("2"); |
| 215 const TestOrdinal big_ordinal("3"); |
| 216 |
| 217 const TestOrdinal::LessThanFn less_than; |
| 218 |
| 219 EXPECT_FALSE(less_than(small_ordinal, small_ordinal)); |
| 220 EXPECT_TRUE(less_than(small_ordinal, middle_ordinal)); |
| 221 EXPECT_TRUE(less_than(small_ordinal, big_ordinal)); |
| 222 |
| 223 EXPECT_FALSE(less_than(middle_ordinal, small_ordinal)); |
| 224 EXPECT_FALSE(less_than(middle_ordinal, middle_ordinal)); |
| 225 EXPECT_TRUE(less_than(middle_ordinal, big_ordinal)); |
| 226 |
| 227 EXPECT_FALSE(less_than(big_ordinal, small_ordinal)); |
| 228 EXPECT_FALSE(less_than(big_ordinal, middle_ordinal)); |
| 229 EXPECT_FALSE(less_than(big_ordinal, big_ordinal)); |
| 230 } |
| 231 |
| 232 template <typename Traits> |
| 233 std::string GetBetween(const std::string& ordinal_string1, |
| 234 const std::string& ordinal_string2) { |
| 235 const Ordinal<Traits> ordinal1(ordinal_string1); |
| 236 const Ordinal<Traits> ordinal2(ordinal_string2); |
| 237 const Ordinal<Traits> between1 = ordinal1.CreateBetween(ordinal2); |
| 238 const Ordinal<Traits> between2 = ordinal2.CreateBetween(ordinal1); |
| 239 EXPECT_TRUE(between1.Equals(between2)); |
| 240 return between1.ToString(); |
| 241 } |
| 242 |
| 243 // Create some Ordinals from single-digit strings. Given two strings |
| 244 // from this set, CreateBetween should return an Ordinal roughly between |
| 245 // them that are also single-digit when possible. |
| 246 TEST(Ordinal, CreateBetweenSingleDigit) { |
| 247 EXPECT_EQ("2", GetBetween<TestOrdinal>("1", "3")); |
| 248 EXPECT_EQ("12", GetBetween<TestOrdinal>("1", "2")); |
| 249 EXPECT_EQ("22", GetBetween<TestOrdinal>("2", "3")); |
| 250 } |
| 251 |
| 252 // Create some Ordinals from strings of various lengths. Given two |
| 253 // strings from this set, CreateBetween should return an Ordinal roughly |
| 254 // between them that have as few digits as possible. |
| 255 TEST(Ordinal, CreateBetweenDifferentLengths) { |
| 256 EXPECT_EQ("102", GetBetween<TestOrdinal>("1", "11")); |
| 257 EXPECT_EQ("2", GetBetween<TestOrdinal>("1", "31")); |
| 258 EXPECT_EQ("132", GetBetween<TestOrdinal>("13", "2")); |
| 259 EXPECT_EQ("2", GetBetween<TestOrdinal>("10001", "3")); |
| 260 EXPECT_EQ("20000", GetBetween<LongOrdinal>("10001", "30000")); |
| 261 EXPECT_EQ("2", GetBetween<TestOrdinal>("10002", "3")); |
| 262 EXPECT_EQ("20001", GetBetween<LongOrdinal>("10002", "30000")); |
| 263 EXPECT_EQ("2", GetBetween<TestOrdinal>("1", "30002")); |
| 264 EXPECT_EQ("20001", GetBetween<LongOrdinal>("10000", "30002")); |
| 265 } |
| 266 |
| 267 // Create some Ordinals specifically designed to trigger overflow |
| 268 // cases. Given two strings from this set, CreateBetween should |
| 269 // return an Ordinal roughly between them that have as few digits as |
| 270 // possible. |
| 271 TEST(Ordinal, CreateBetweenOverflow) { |
| 272 EXPECT_EQ("03", GetBetween<TestOrdinal>("01", "11")); |
| 273 EXPECT_EQ("13", GetBetween<TestOrdinal>("11", "21")); |
| 274 EXPECT_EQ("113", GetBetween<TestOrdinal>("111", "121")); |
| 275 EXPECT_EQ("2", GetBetween<TestOrdinal>("001", "333")); |
| 276 EXPECT_EQ("31", GetBetween<TestOrdinal>("222", "333")); |
| 277 EXPECT_EQ("3", GetBetween<TestOrdinal>("201", "333")); |
| 278 EXPECT_EQ("2", GetBetween<TestOrdinal>("003", "333")); |
| 279 EXPECT_EQ("2", GetBetween<TestOrdinal>("2223", "1113")); |
| 280 } |
| 281 |
| 282 // Create some Ordinals specifically designed to trigger digit |
| 283 // overflow cases. Given two strings from this set, CreateBetween |
| 284 // should return an Ordinal roughly between them that have as few digits |
| 285 // as possible. |
| 286 TEST(Ordinal, CreateBetweenOverflowLarge) { |
| 287 EXPECT_EQ("\x80", GetBetween<LargeOrdinal>("\x01\xff", "\xff\xff")); |
| 288 EXPECT_EQ("\xff\xfe\x80", GetBetween<LargeOrdinal>("\xff\xfe", "\xff\xff")); |
| 289 } |
| 290 |
| 291 // Create some Ordinals. CreateBefore should return an Ordinal |
| 292 // roughly halfway towards 0. |
| 293 TEST(Ordinal, CreateBefore) { |
| 294 EXPECT_EQ("02", TestOrdinal("1").CreateBefore().ToString()); |
| 295 EXPECT_EQ("03", TestOrdinal("11").CreateBefore().ToString()); |
| 296 EXPECT_EQ("03", TestOrdinal("12").CreateBefore().ToString()); |
| 297 EXPECT_EQ("1", TestOrdinal("13").CreateBefore().ToString()); |
| 298 } |
| 299 |
| 300 // Create some Ordinals. CreateAfter should return an Ordinal |
| 301 // roughly halfway towards 0. |
| 302 TEST(Ordinal, CreateAfter) { |
| 303 EXPECT_EQ("31", TestOrdinal("3").CreateAfter().ToString()); |
| 304 EXPECT_EQ("322", TestOrdinal("32").CreateAfter().ToString()); |
| 305 EXPECT_EQ("33322", TestOrdinal("3332").CreateAfter().ToString()); |
| 306 EXPECT_EQ("3", TestOrdinal("22").CreateAfter().ToString()); |
| 307 EXPECT_EQ("3", TestOrdinal("23").CreateAfter().ToString()); |
| 308 } |
| 309 |
| 310 // Create two valid Ordinals. EqualsFn should return true only when |
| 311 // called reflexively. |
| 312 TEST(Ordinal, EqualsFn) { |
| 313 const TestOrdinal ordinal1("1"); |
| 314 const TestOrdinal ordinal2("2"); |
| 315 |
| 316 const TestOrdinal::EqualsFn equals; |
| 317 |
| 318 EXPECT_TRUE(equals(ordinal1, ordinal1)); |
| 319 EXPECT_FALSE(equals(ordinal1, ordinal2)); |
| 320 |
| 321 EXPECT_FALSE(equals(ordinal2, ordinal1)); |
| 322 EXPECT_TRUE(equals(ordinal2,ordinal2)); |
| 323 } |
| 324 |
| 325 // Create some Ordinals and shuffle them. Sorting them using |
| 326 // LessThanFn should produce the correct order. |
| 327 TEST(Ordinal, Sort) { |
| 328 const LongOrdinal ordinal1("12345"); |
| 329 const LongOrdinal ordinal2("54321"); |
| 330 const LongOrdinal ordinal3("87654"); |
| 331 const LongOrdinal ordinal4("98765"); |
| 332 |
| 333 std::vector<LongOrdinal> sorted_ordinals; |
| 334 sorted_ordinals.push_back(ordinal1); |
| 335 sorted_ordinals.push_back(ordinal2); |
| 336 sorted_ordinals.push_back(ordinal3); |
| 337 sorted_ordinals.push_back(ordinal4); |
| 338 |
| 339 std::vector<LongOrdinal> ordinals = sorted_ordinals; |
| 340 std::random_shuffle(ordinals.begin(), ordinals.end()); |
| 341 std::sort(ordinals.begin(), ordinals.end(), LongOrdinal::LessThanFn()); |
| 342 EXPECT_TRUE(std::equal(ordinals.begin(), ordinals.end(), |
| 343 sorted_ordinals.begin(), LongOrdinal::EqualsFn())); |
| 344 } |
| 345 |
| 346 } // namespace |
| 347 |
| 348 } // namespace syncer |
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