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Side by Side Diff: sync/internal_api/public/base/ordinal_unittest.cc

Issue 10920017: [Sync] Generalize StringOrdinal to handle ordinal_in_parent field (Closed) Base URL: svn://svn.chromium.org/chrome/trunk/src
Patch Set: Fix comment location Created 8 years, 3 months ago
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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. ToInternalValue()
204 // should return the original string.
205 TEST(StringOrdinalTest, ToString) {
206 EXPECT_EQ("2", TestOrdinal("2").ToInternalValue());
207 EXPECT_EQ("12345", LongOrdinal("12345").ToInternalValue());
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.ToInternalValue();
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().ToInternalValue());
295 EXPECT_EQ("03", TestOrdinal("11").CreateBefore().ToInternalValue());
296 EXPECT_EQ("03", TestOrdinal("12").CreateBefore().ToInternalValue());
297 EXPECT_EQ("1", TestOrdinal("13").CreateBefore().ToInternalValue());
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().ToInternalValue());
304 EXPECT_EQ("322", TestOrdinal("32").CreateAfter().ToInternalValue());
305 EXPECT_EQ("33322", TestOrdinal("3332").CreateAfter().ToInternalValue());
306 EXPECT_EQ("3", TestOrdinal("22").CreateAfter().ToInternalValue());
307 EXPECT_EQ("3", TestOrdinal("23").CreateAfter().ToInternalValue());
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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