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1 // Copyright (c) 2010 The Chromium Authors. All rights reserved. | 1 // Copyright (c) 2011 The Chromium Authors. All rights reserved. |
2 // Use of this source code is governed by a BSD-style license that can be | 2 // Use of this source code is governed by a BSD-style license that can be |
3 // found in the LICENSE file. | 3 // found in the LICENSE file. |
4 | 4 |
5 #include <time.h> | 5 #include <time.h> |
6 | 6 |
7 #include "base/threading/platform_thread.h" | 7 #include "base/threading/platform_thread.h" |
8 #include "base/time.h" | 8 #include "base/time.h" |
9 #include "build/build_config.h" | 9 #include "build/build_config.h" |
10 #include "testing/gtest/include/gtest/gtest.h" | 10 #include "testing/gtest/include/gtest/gtest.h" |
11 | 11 |
12 using base::Time; | 12 using base::Time; |
13 using base::TimeDelta; | 13 using base::TimeDelta; |
14 using base::TimeTicks; | 14 using base::TimeTicks; |
15 | 15 |
| 16 // Specialized test fixture allowing time strings without timezones to be |
| 17 // tested by comparing them to a known time in the local zone. |
| 18 // See also pr_time_unittests.cc |
| 19 class TimeTest : public testing::Test { |
| 20 protected: |
| 21 virtual void SetUp() { |
| 22 // Use mktime to get a time_t, and turn it into a PRTime by converting |
| 23 // seconds to microseconds. Use 15th Oct 2007 12:45:00 local. This |
| 24 // must be a time guaranteed to be outside of a DST fallback hour in |
| 25 // any timezone. |
| 26 struct tm local_comparison_tm = { |
| 27 0, // second |
| 28 45, // minute |
| 29 12, // hour |
| 30 15, // day of month |
| 31 10 - 1, // month |
| 32 2007 - 1900, // year |
| 33 0, // day of week (ignored, output only) |
| 34 0, // day of year (ignored, output only) |
| 35 -1 // DST in effect, -1 tells mktime to figure it out |
| 36 }; |
| 37 |
| 38 time_t converted_time = mktime(&local_comparison_tm); |
| 39 ASSERT_GT(converted_time, 0); |
| 40 comparison_time_local_ = Time::FromTimeT(converted_time); |
| 41 |
| 42 // time_t representation of 15th Oct 2007 12:45:00 PDT |
| 43 comparison_time_pdt_ = Time::FromTimeT(1192477500); |
| 44 } |
| 45 |
| 46 Time comparison_time_local_; |
| 47 Time comparison_time_pdt_; |
| 48 }; |
| 49 |
| 50 |
16 // Test conversions to/from time_t and exploding/unexploding. | 51 // Test conversions to/from time_t and exploding/unexploding. |
17 TEST(Time, TimeT) { | 52 TEST_F(TimeTest, TimeT) { |
18 // C library time and exploded time. | 53 // C library time and exploded time. |
19 time_t now_t_1 = time(NULL); | 54 time_t now_t_1 = time(NULL); |
20 struct tm tms; | 55 struct tm tms; |
21 #if defined(OS_WIN) | 56 #if defined(OS_WIN) |
22 localtime_s(&tms, &now_t_1); | 57 localtime_s(&tms, &now_t_1); |
23 #elif defined(OS_POSIX) | 58 #elif defined(OS_POSIX) |
24 localtime_r(&now_t_1, &tms); | 59 localtime_r(&now_t_1, &tms); |
25 #endif | 60 #endif |
26 | 61 |
27 // Convert to ours. | 62 // Convert to ours. |
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45 EXPECT_EQ(now_t_1, now_t_2); | 80 EXPECT_EQ(now_t_1, now_t_2); |
46 | 81 |
47 EXPECT_EQ(10, Time().FromTimeT(10).ToTimeT()); | 82 EXPECT_EQ(10, Time().FromTimeT(10).ToTimeT()); |
48 EXPECT_EQ(10.0, Time().FromTimeT(10).ToDoubleT()); | 83 EXPECT_EQ(10.0, Time().FromTimeT(10).ToDoubleT()); |
49 | 84 |
50 // Conversions of 0 should stay 0. | 85 // Conversions of 0 should stay 0. |
51 EXPECT_EQ(0, Time().ToTimeT()); | 86 EXPECT_EQ(0, Time().ToTimeT()); |
52 EXPECT_EQ(0, Time::FromTimeT(0).ToInternalValue()); | 87 EXPECT_EQ(0, Time::FromTimeT(0).ToInternalValue()); |
53 } | 88 } |
54 | 89 |
55 TEST(Time, FromExplodedWithMilliseconds) { | 90 TEST_F(TimeTest, FromExplodedWithMilliseconds) { |
56 // Some platform implementations of FromExploded are liable to drop | 91 // Some platform implementations of FromExploded are liable to drop |
57 // milliseconds if we aren't careful. | 92 // milliseconds if we aren't careful. |
58 Time now = Time::NowFromSystemTime(); | 93 Time now = Time::NowFromSystemTime(); |
59 Time::Exploded exploded1 = {0}; | 94 Time::Exploded exploded1 = {0}; |
60 now.UTCExplode(&exploded1); | 95 now.UTCExplode(&exploded1); |
61 exploded1.millisecond = 500; | 96 exploded1.millisecond = 500; |
62 Time time = Time::FromUTCExploded(exploded1); | 97 Time time = Time::FromUTCExploded(exploded1); |
63 Time::Exploded exploded2 = {0}; | 98 Time::Exploded exploded2 = {0}; |
64 time.UTCExplode(&exploded2); | 99 time.UTCExplode(&exploded2); |
65 EXPECT_EQ(exploded1.millisecond, exploded2.millisecond); | 100 EXPECT_EQ(exploded1.millisecond, exploded2.millisecond); |
66 } | 101 } |
67 | 102 |
68 TEST(Time, ZeroIsSymmetric) { | 103 TEST_F(TimeTest, ZeroIsSymmetric) { |
69 Time zero_time(Time::FromTimeT(0)); | 104 Time zero_time(Time::FromTimeT(0)); |
70 EXPECT_EQ(0, zero_time.ToTimeT()); | 105 EXPECT_EQ(0, zero_time.ToTimeT()); |
71 | 106 |
72 EXPECT_EQ(0.0, zero_time.ToDoubleT()); | 107 EXPECT_EQ(0.0, zero_time.ToDoubleT()); |
73 } | 108 } |
74 | 109 |
75 TEST(Time, LocalExplode) { | 110 TEST_F(TimeTest, LocalExplode) { |
76 Time a = Time::Now(); | 111 Time a = Time::Now(); |
77 Time::Exploded exploded; | 112 Time::Exploded exploded; |
78 a.LocalExplode(&exploded); | 113 a.LocalExplode(&exploded); |
79 | 114 |
80 Time b = Time::FromLocalExploded(exploded); | 115 Time b = Time::FromLocalExploded(exploded); |
81 | 116 |
82 // The exploded structure doesn't have microseconds, and on Mac & Linux, the | 117 // The exploded structure doesn't have microseconds, and on Mac & Linux, the |
83 // internal OS conversion uses seconds, which will cause truncation. So we | 118 // internal OS conversion uses seconds, which will cause truncation. So we |
84 // can only make sure that the delta is within one second. | 119 // can only make sure that the delta is within one second. |
85 EXPECT_TRUE((a - b) < TimeDelta::FromSeconds(1)); | 120 EXPECT_TRUE((a - b) < TimeDelta::FromSeconds(1)); |
86 } | 121 } |
87 | 122 |
88 TEST(Time, UTCExplode) { | 123 TEST_F(TimeTest, UTCExplode) { |
89 Time a = Time::Now(); | 124 Time a = Time::Now(); |
90 Time::Exploded exploded; | 125 Time::Exploded exploded; |
91 a.UTCExplode(&exploded); | 126 a.UTCExplode(&exploded); |
92 | 127 |
93 Time b = Time::FromUTCExploded(exploded); | 128 Time b = Time::FromUTCExploded(exploded); |
94 EXPECT_TRUE((a - b) < TimeDelta::FromSeconds(1)); | 129 EXPECT_TRUE((a - b) < TimeDelta::FromSeconds(1)); |
95 } | 130 } |
96 | 131 |
97 TEST(Time, LocalMidnight) { | 132 TEST_F(TimeTest, LocalMidnight) { |
98 Time::Exploded exploded; | 133 Time::Exploded exploded; |
99 Time::Now().LocalMidnight().LocalExplode(&exploded); | 134 Time::Now().LocalMidnight().LocalExplode(&exploded); |
100 EXPECT_EQ(0, exploded.hour); | 135 EXPECT_EQ(0, exploded.hour); |
101 EXPECT_EQ(0, exploded.minute); | 136 EXPECT_EQ(0, exploded.minute); |
102 EXPECT_EQ(0, exploded.second); | 137 EXPECT_EQ(0, exploded.second); |
103 EXPECT_EQ(0, exploded.millisecond); | 138 EXPECT_EQ(0, exploded.millisecond); |
104 } | 139 } |
105 | 140 |
| 141 TEST_F(TimeTest, ParseTimeTest1) { |
| 142 time_t current_time = 0; |
| 143 time(¤t_time); |
| 144 |
| 145 const int BUFFER_SIZE = 64; |
| 146 struct tm local_time = {0}; |
| 147 char time_buf[BUFFER_SIZE] = {0}; |
| 148 #if defined(OS_WIN) |
| 149 localtime_s(&local_time, ¤t_time); |
| 150 asctime_s(time_buf, arraysize(time_buf), &local_time); |
| 151 #elif defined(OS_POSIX) |
| 152 localtime_r(¤t_time, &local_time); |
| 153 asctime_r(&local_time, time_buf); |
| 154 #endif |
| 155 |
| 156 Time parsed_time; |
| 157 EXPECT_TRUE(Time::FromString(time_buf, &parsed_time)); |
| 158 EXPECT_EQ(current_time, parsed_time.ToTimeT()); |
| 159 } |
| 160 |
| 161 TEST_F(TimeTest, ParseTimeTest2) { |
| 162 Time parsed_time; |
| 163 EXPECT_TRUE(Time::FromString("Mon, 15 Oct 2007 19:45:00 GMT", &parsed_time)); |
| 164 EXPECT_EQ(comparison_time_pdt_, parsed_time); |
| 165 } |
| 166 |
| 167 TEST_F(TimeTest, ParseTimeTest3) { |
| 168 Time parsed_time; |
| 169 EXPECT_TRUE(Time::FromString("15 Oct 07 12:45:00", &parsed_time)); |
| 170 EXPECT_EQ(comparison_time_local_, parsed_time); |
| 171 } |
| 172 |
| 173 TEST_F(TimeTest, ParseTimeTest4) { |
| 174 Time parsed_time; |
| 175 EXPECT_TRUE(Time::FromString("15 Oct 07 19:45 GMT", &parsed_time)); |
| 176 EXPECT_EQ(comparison_time_pdt_, parsed_time); |
| 177 } |
| 178 |
| 179 TEST_F(TimeTest, ParseTimeTest5) { |
| 180 Time parsed_time; |
| 181 EXPECT_TRUE(Time::FromString("Mon Oct 15 12:45 PDT 2007", &parsed_time)); |
| 182 EXPECT_EQ(comparison_time_pdt_, parsed_time); |
| 183 } |
| 184 |
| 185 TEST_F(TimeTest, ParseTimeTest6) { |
| 186 Time parsed_time; |
| 187 EXPECT_TRUE(Time::FromString("Monday, Oct 15, 2007 12:45 PM", &parsed_time)); |
| 188 EXPECT_EQ(comparison_time_local_, parsed_time); |
| 189 } |
| 190 |
| 191 TEST_F(TimeTest, ParseTimeTest7) { |
| 192 Time parsed_time; |
| 193 EXPECT_TRUE(Time::FromString("10/15/07 12:45:00 PM", &parsed_time)); |
| 194 EXPECT_EQ(comparison_time_local_, parsed_time); |
| 195 } |
| 196 |
| 197 TEST_F(TimeTest, ParseTimeTest8) { |
| 198 Time parsed_time; |
| 199 EXPECT_TRUE(Time::FromString("15-OCT-2007 12:45pm", &parsed_time)); |
| 200 EXPECT_EQ(comparison_time_local_, parsed_time); |
| 201 } |
| 202 |
| 203 TEST_F(TimeTest, ParseTimeTest9) { |
| 204 Time parsed_time; |
| 205 EXPECT_TRUE(Time::FromString("16 Oct 2007 4:45-JST (Tuesday)", &parsed_time)); |
| 206 EXPECT_EQ(comparison_time_pdt_, parsed_time); |
| 207 } |
| 208 |
| 209 TEST_F(TimeTest, ParseTimeTest10) { |
| 210 Time parsed_time; |
| 211 EXPECT_TRUE(Time::FromString("15/10/07 12:45", &parsed_time)); |
| 212 EXPECT_EQ(parsed_time, comparison_time_local_); |
| 213 } |
| 214 |
| 215 // Test some of edge cases around epoch, etc. |
| 216 TEST_F(TimeTest, ParseTimeTestEpoch0) { |
| 217 Time parsed_time; |
| 218 |
| 219 // time_t == epoch == 0 |
| 220 EXPECT_TRUE(Time::FromString("Thu Jan 01 01:00:00 +0100 1970", |
| 221 &parsed_time)); |
| 222 EXPECT_EQ(0, parsed_time.ToTimeT()); |
| 223 EXPECT_TRUE(Time::FromString("Thu Jan 01 00:00:00 GMT 1970", |
| 224 &parsed_time)); |
| 225 EXPECT_EQ(0, parsed_time.ToTimeT()); |
| 226 } |
| 227 |
| 228 TEST_F(TimeTest, ParseTimeTestEpoch1) { |
| 229 Time parsed_time; |
| 230 |
| 231 // time_t == 1 second after epoch == 1 |
| 232 EXPECT_TRUE(Time::FromString("Thu Jan 01 01:00:01 +0100 1970", |
| 233 &parsed_time)); |
| 234 EXPECT_EQ(1, parsed_time.ToTimeT()); |
| 235 EXPECT_TRUE(Time::FromString("Thu Jan 01 00:00:01 GMT 1970", |
| 236 &parsed_time)); |
| 237 EXPECT_EQ(1, parsed_time.ToTimeT()); |
| 238 } |
| 239 |
| 240 TEST_F(TimeTest, ParseTimeTestEpoch2) { |
| 241 Time parsed_time; |
| 242 |
| 243 // time_t == 2 seconds after epoch == 2 |
| 244 EXPECT_TRUE(Time::FromString("Thu Jan 01 01:00:02 +0100 1970", |
| 245 &parsed_time)); |
| 246 EXPECT_EQ(2, parsed_time.ToTimeT()); |
| 247 EXPECT_TRUE(Time::FromString("Thu Jan 01 00:00:02 GMT 1970", |
| 248 &parsed_time)); |
| 249 EXPECT_EQ(2, parsed_time.ToTimeT()); |
| 250 } |
| 251 |
| 252 TEST_F(TimeTest, ParseTimeTestEpochNeg1) { |
| 253 Time parsed_time; |
| 254 |
| 255 // time_t == 1 second before epoch == -1 |
| 256 EXPECT_TRUE(Time::FromString("Thu Jan 01 00:59:59 +0100 1970", |
| 257 &parsed_time)); |
| 258 EXPECT_EQ(-1, parsed_time.ToTimeT()); |
| 259 EXPECT_TRUE(Time::FromString("Wed Dec 31 23:59:59 GMT 1969", |
| 260 &parsed_time)); |
| 261 EXPECT_EQ(-1, parsed_time.ToTimeT()); |
| 262 } |
| 263 |
| 264 // If time_t is 32 bits, a date after year 2038 will overflow time_t and |
| 265 // cause timegm() to return -1. The parsed time should not be 1 second |
| 266 // before epoch. |
| 267 TEST_F(TimeTest, ParseTimeTestEpochNotNeg1) { |
| 268 Time parsed_time; |
| 269 |
| 270 EXPECT_TRUE(Time::FromString("Wed Dec 31 23:59:59 GMT 2100", |
| 271 &parsed_time)); |
| 272 EXPECT_NE(-1, parsed_time.ToTimeT()); |
| 273 } |
| 274 |
| 275 TEST_F(TimeTest, ParseTimeTestEpochNeg2) { |
| 276 Time parsed_time; |
| 277 |
| 278 // time_t == 2 seconds before epoch == -2 |
| 279 EXPECT_TRUE(Time::FromString("Thu Jan 01 00:59:58 +0100 1970", |
| 280 &parsed_time)); |
| 281 EXPECT_EQ(-2, parsed_time.ToTimeT()); |
| 282 EXPECT_TRUE(Time::FromString("Wed Dec 31 23:59:58 GMT 1969", |
| 283 &parsed_time)); |
| 284 EXPECT_EQ(-2, parsed_time.ToTimeT()); |
| 285 } |
| 286 |
| 287 TEST_F(TimeTest, ParseTimeTestEpoch1960) { |
| 288 Time parsed_time; |
| 289 |
| 290 // time_t before Epoch, in 1960 |
| 291 EXPECT_TRUE(Time::FromString("Wed Jun 29 19:40:01 +0100 1960", |
| 292 &parsed_time)); |
| 293 EXPECT_EQ(-299999999, parsed_time.ToTimeT()); |
| 294 EXPECT_TRUE(Time::FromString("Wed Jun 29 18:40:01 GMT 1960", |
| 295 &parsed_time)); |
| 296 EXPECT_EQ(-299999999, parsed_time.ToTimeT()); |
| 297 EXPECT_TRUE(Time::FromString("Wed Jun 29 17:40:01 GMT 1960", |
| 298 &parsed_time)); |
| 299 EXPECT_EQ(-300003599, parsed_time.ToTimeT()); |
| 300 } |
| 301 |
| 302 TEST_F(TimeTest, ParseTimeTestEmpty) { |
| 303 Time parsed_time; |
| 304 EXPECT_FALSE(Time::FromString("", &parsed_time)); |
| 305 } |
| 306 |
| 307 TEST_F(TimeTest, ParseTimeTestInvalidString) { |
| 308 Time parsed_time; |
| 309 EXPECT_FALSE(Time::FromString("Monday morning 2000", &parsed_time)); |
| 310 } |
| 311 |
| 312 // This test should not crash when compiled with Visual C++ 2005 (see |
| 313 // http://crbug.com/4387). |
| 314 TEST_F(TimeTest, ParseTimeTestOutOfRange) { |
| 315 // Note the lack of timezone in the time string. The year has to be 3001. |
| 316 // The date has to be after 23:59:59, December 31, 3000, US Pacific Time, so |
| 317 // we use January 2, 3001 to make sure it's after the magic maximum in any |
| 318 // timezone. |
| 319 Time parsed_time; |
| 320 EXPECT_TRUE(Time::FromString("Sun Jan 2 00:00:00 3001", &parsed_time)); |
| 321 } |
| 322 |
| 323 TEST_F(TimeTest, ParseTimeTestNotNormalized1) { |
| 324 Time parsed_time; |
| 325 EXPECT_TRUE(Time::FromString("Mon Oct 15 12:44:60 PDT 2007", |
| 326 &parsed_time)); |
| 327 EXPECT_EQ(comparison_time_pdt_, parsed_time); |
| 328 } |
| 329 |
| 330 TEST_F(TimeTest, ParseTimeTestNotNormalized2) { |
| 331 Time parsed_time; |
| 332 EXPECT_TRUE(Time::FromString("Sun Oct 14 36:45 PDT 2007", |
| 333 &parsed_time)); |
| 334 EXPECT_EQ(comparison_time_pdt_, parsed_time); |
| 335 } |
| 336 |
| 337 |
106 TEST(TimeTicks, Deltas) { | 338 TEST(TimeTicks, Deltas) { |
107 for (int index = 0; index < 50; index++) { | 339 for (int index = 0; index < 50; index++) { |
108 TimeTicks ticks_start = TimeTicks::Now(); | 340 TimeTicks ticks_start = TimeTicks::Now(); |
109 base::PlatformThread::Sleep(10); | 341 base::PlatformThread::Sleep(10); |
110 TimeTicks ticks_stop = TimeTicks::Now(); | 342 TimeTicks ticks_stop = TimeTicks::Now(); |
111 TimeDelta delta = ticks_stop - ticks_start; | 343 TimeDelta delta = ticks_stop - ticks_start; |
112 // Note: Although we asked for a 10ms sleep, if the | 344 // Note: Although we asked for a 10ms sleep, if the |
113 // time clock has a finer granularity than the Sleep() | 345 // time clock has a finer granularity than the Sleep() |
114 // clock, it is quite possible to wakeup early. Here | 346 // clock, it is quite possible to wakeup early. Here |
115 // is how that works: | 347 // is how that works: |
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220 exploded.minute = 0; | 452 exploded.minute = 0; |
221 exploded.second = 0; | 453 exploded.second = 0; |
222 exploded.millisecond = 0; | 454 exploded.millisecond = 0; |
223 Time t = Time::FromUTCExploded(exploded); | 455 Time t = Time::FromUTCExploded(exploded); |
224 // Unix 1970 epoch. | 456 // Unix 1970 epoch. |
225 EXPECT_EQ(GG_INT64_C(11644473600000000), t.ToInternalValue()); | 457 EXPECT_EQ(GG_INT64_C(11644473600000000), t.ToInternalValue()); |
226 | 458 |
227 // We can't test 1601 epoch, since the system time functions on Linux | 459 // We can't test 1601 epoch, since the system time functions on Linux |
228 // only compute years starting from 1900. | 460 // only compute years starting from 1900. |
229 } | 461 } |
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