| Index: base/pr_time_unittest.cc
|
| diff --git a/base/pr_time_unittest.cc b/base/pr_time_unittest.cc
|
| index 12521a441f27c2fe3d091f0a5f8d3ee188b40cf6..646eb1648e3cef311471eba1e446760c281ea980 100644
|
| --- a/base/pr_time_unittest.cc
|
| +++ b/base/pr_time_unittest.cc
|
| @@ -1,4 +1,4 @@
|
| -// Copyright (c) 2011 The Chromium Authors. All rights reserved.
|
| +// Copyright (c) 2006-2008 The Chromium Authors. All rights reserved.
|
| // Use of this source code is governed by a BSD-style license that can be
|
| // found in the LICENSE file.
|
|
|
| @@ -132,5 +132,149 @@ TEST_F(PRTimeTest, ParseTimeTest9) {
|
| EXPECT_EQ(parsed_time, comparison_time_pdt);
|
| }
|
|
|
| +// This tests the Time::FromString wrapper over PR_ParseTimeString
|
| +TEST_F(PRTimeTest, ParseTimeTest10) {
|
| + Time parsed_time;
|
| + bool result = Time::FromString(L"15/10/07 12:45", &parsed_time);
|
| + EXPECT_TRUE(result);
|
| +
|
| + time_t computed_time = parsed_time.ToTimeT();
|
| + time_t time_to_compare = comparison_time_local_ /
|
| + Time::kMicrosecondsPerSecond;
|
| + EXPECT_EQ(computed_time, time_to_compare);
|
| +}
|
| +
|
| +// This tests the Time::FromString wrapper over PR_ParseTimeString
|
| +TEST_F(PRTimeTest, ParseTimeTest11) {
|
| + Time parsed_time;
|
| + bool result = Time::FromString(L"Mon, 15 Oct 2007 19:45:00 GMT",
|
| + &parsed_time);
|
| + EXPECT_TRUE(result);
|
| +
|
| + time_t computed_time = parsed_time.ToTimeT();
|
| + time_t time_to_compare = comparison_time_pdt / Time::kMicrosecondsPerSecond;
|
| + EXPECT_EQ(computed_time, time_to_compare);
|
| +}
|
| +
|
| +// Test some of edge cases around epoch, etc.
|
| +TEST_F(PRTimeTest, ParseTimeTestEpoch0) {
|
| + Time parsed_time;
|
| +
|
| + // time_t == epoch == 0
|
| + EXPECT_TRUE(Time::FromString(L"Thu Jan 01 01:00:00 +0100 1970",
|
| + &parsed_time));
|
| + EXPECT_EQ(0, parsed_time.ToTimeT());
|
| + EXPECT_TRUE(Time::FromString(L"Thu Jan 01 00:00:00 GMT 1970",
|
| + &parsed_time));
|
| + EXPECT_EQ(0, parsed_time.ToTimeT());
|
| +}
|
| +
|
| +TEST_F(PRTimeTest, ParseTimeTestEpoch1) {
|
| + Time parsed_time;
|
| +
|
| + // time_t == 1 second after epoch == 1
|
| + EXPECT_TRUE(Time::FromString(L"Thu Jan 01 01:00:01 +0100 1970",
|
| + &parsed_time));
|
| + EXPECT_EQ(1, parsed_time.ToTimeT());
|
| + EXPECT_TRUE(Time::FromString(L"Thu Jan 01 00:00:01 GMT 1970",
|
| + &parsed_time));
|
| + EXPECT_EQ(1, parsed_time.ToTimeT());
|
| +}
|
| +
|
| +TEST_F(PRTimeTest, ParseTimeTestEpoch2) {
|
| + Time parsed_time;
|
| +
|
| + // time_t == 2 seconds after epoch == 2
|
| + EXPECT_TRUE(Time::FromString(L"Thu Jan 01 01:00:02 +0100 1970",
|
| + &parsed_time));
|
| + EXPECT_EQ(2, parsed_time.ToTimeT());
|
| + EXPECT_TRUE(Time::FromString(L"Thu Jan 01 00:00:02 GMT 1970",
|
| + &parsed_time));
|
| + EXPECT_EQ(2, parsed_time.ToTimeT());
|
| +}
|
| +
|
| +TEST_F(PRTimeTest, ParseTimeTestEpochNeg1) {
|
| + Time parsed_time;
|
| +
|
| + // time_t == 1 second before epoch == -1
|
| + EXPECT_TRUE(Time::FromString(L"Thu Jan 01 00:59:59 +0100 1970",
|
| + &parsed_time));
|
| + EXPECT_EQ(-1, parsed_time.ToTimeT());
|
| + EXPECT_TRUE(Time::FromString(L"Wed Dec 31 23:59:59 GMT 1969",
|
| + &parsed_time));
|
| + EXPECT_EQ(-1, parsed_time.ToTimeT());
|
| +}
|
| +
|
| +// If time_t is 32 bits, a date after year 2038 will overflow time_t and
|
| +// cause timegm() to return -1. The parsed time should not be 1 second
|
| +// before epoch.
|
| +TEST_F(PRTimeTest, ParseTimeTestEpochNotNeg1) {
|
| + Time parsed_time;
|
| +
|
| + EXPECT_TRUE(Time::FromString(L"Wed Dec 31 23:59:59 GMT 2100",
|
| + &parsed_time));
|
| + EXPECT_NE(-1, parsed_time.ToTimeT());
|
| +}
|
| +
|
| +TEST_F(PRTimeTest, ParseTimeTestEpochNeg2) {
|
| + Time parsed_time;
|
| +
|
| + // time_t == 2 seconds before epoch == -2
|
| + EXPECT_TRUE(Time::FromString(L"Thu Jan 01 00:59:58 +0100 1970",
|
| + &parsed_time));
|
| + EXPECT_EQ(-2, parsed_time.ToTimeT());
|
| + EXPECT_TRUE(Time::FromString(L"Wed Dec 31 23:59:58 GMT 1969",
|
| + &parsed_time));
|
| + EXPECT_EQ(-2, parsed_time.ToTimeT());
|
| +}
|
| +
|
| +TEST_F(PRTimeTest, ParseTimeTestEpoch1960) {
|
| + Time parsed_time;
|
| +
|
| + // time_t before Epoch, in 1960
|
| + EXPECT_TRUE(Time::FromString(L"Wed Jun 29 19:40:01 +0100 1960",
|
| + &parsed_time));
|
| + EXPECT_EQ(-299999999, parsed_time.ToTimeT());
|
| + EXPECT_TRUE(Time::FromString(L"Wed Jun 29 18:40:01 GMT 1960",
|
| + &parsed_time));
|
| + EXPECT_EQ(-299999999, parsed_time.ToTimeT());
|
| + EXPECT_TRUE(Time::FromString(L"Wed Jun 29 17:40:01 GMT 1960",
|
| + &parsed_time));
|
| + EXPECT_EQ(-300003599, parsed_time.ToTimeT());
|
| +}
|
| +
|
| +TEST_F(PRTimeTest, ParseTimeTestEmpty) {
|
| + Time parsed_time;
|
| + EXPECT_FALSE(Time::FromString(L"", &parsed_time));
|
| +}
|
| +
|
| +// This test should not crash when compiled with Visual C++ 2005 (see
|
| +// http://crbug.com/4387).
|
| +TEST_F(PRTimeTest, ParseTimeTestOutOfRange) {
|
| + PRTime parsed_time = 0;
|
| + // Note the lack of timezone in the time string. The year has to be 3001.
|
| + // The date has to be after 23:59:59, December 31, 3000, US Pacific Time, so
|
| + // we use January 2, 3001 to make sure it's after the magic maximum in any
|
| + // timezone.
|
| + PRStatus result = PR_ParseTimeString("Sun Jan 2 00:00:00 3001",
|
| + PR_FALSE, &parsed_time);
|
| + EXPECT_EQ(PR_SUCCESS, result);
|
| +}
|
| +
|
| +TEST_F(PRTimeTest, ParseTimeTestNotNormalized1) {
|
| + PRTime parsed_time = 0;
|
| + PRStatus result = PR_ParseTimeString("Mon Oct 15 12:44:60 PDT 2007",
|
| + PR_FALSE, &parsed_time);
|
| + EXPECT_EQ(PR_SUCCESS, result);
|
| + EXPECT_EQ(comparison_time_pdt, parsed_time);
|
| +}
|
| +
|
| +TEST_F(PRTimeTest, ParseTimeTestNotNormalized2) {
|
| + PRTime parsed_time = 0;
|
| + PRStatus result = PR_ParseTimeString("Sun Oct 14 36:45 PDT 2007",
|
| + PR_FALSE, &parsed_time);
|
| + EXPECT_EQ(PR_SUCCESS, result);
|
| + EXPECT_EQ(comparison_time_pdt, parsed_time);
|
| +}
|
|
|
| } // namespace
|
|
|