Index: tests/corelib/regexp/unicodeCaseInsensitive_test.dart |
diff --git a/tests/corelib/regexp/unicodeCaseInsensitive_test.dart b/tests/corelib/regexp/unicodeCaseInsensitive_test.dart |
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+++ b/tests/corelib/regexp/unicodeCaseInsensitive_test.dart |
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+// Copyright (c) 2014, the Dart project authors. All rights reserved. |
+// Copyright 2013 the V8 project authors. All rights reserved. |
+// Copyright (C) 2005, 2006, 2007, 2008, 2009 Apple Inc. All rights reserved. |
+// |
+// Redistribution and use in source and binary forms, with or without |
+// modification, are permitted provided that the following conditions |
+// are met: |
+// 1. Redistributions of source code must retain the above copyright |
+// notice, this list of conditions and the following disclaimer. |
+// 2. Redistributions in binary form must reproduce the above copyright |
+// notice, this list of conditions and the following disclaimer in the |
+// documentation and/or other materials provided with the distribution. |
+// |
+// THIS SOFTWARE IS PROVIDED BY APPLE INC. AND ITS CONTRIBUTORS ``AS IS'' AND ANY |
+// EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED |
+// WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE |
+// DISCLAIMED. IN NO EVENT SHALL APPLE INC. OR ITS CONTRIBUTORS BE LIABLE FOR ANY |
+// DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES |
+// (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; |
+// LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON |
+// ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT |
+// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS |
+// SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. |
+ |
+import 'v8_regexp_utils.dart'; |
+import 'package:expect/expect.dart'; |
+ |
+void main() { |
+ shouldBeTrue(new RegExp(r"ΣΤΙΓΜΑΣ", caseSensitive: false).hasMatch("στιγμας")); |
+ shouldBeTrue(new RegExp(r"ΔΣΔ", caseSensitive: false).hasMatch("δςδ")); |
+ shouldBeTrue(new RegExp(r"ς", caseSensitive: false).hasMatch("σ")); |
+ shouldBeTrue(new RegExp(r"σ", caseSensitive: false).hasMatch("ς")); |
+ |
+ // Simple case, has no canonical equivalents |
+ shouldBeTrue(new RegExp(r"\u1f16", caseSensitive: false).hasMatch("\u1f16")); |
+ |
+ // Test the sets of USC2 code points that have more than one canonically equivalent value. |
+ dynamic ucs2CodePoint(x) => new String.fromCharCode(x); |
+ dynamic testSet(s) |
+ { |
+ for (var i in s) { |
+ for (var j in s) { |
+ shouldBeTrue(new RegExp(ucs2CodePoint(i), caseSensitive: false).hasMatch(ucs2CodePoint(j))); |
+ shouldBeTrue(new RegExp("[${ucs2CodePoint(i - 1)}-${ucs2CodePoint(i + 1)}]", caseSensitive: false).hasMatch(ucs2CodePoint(j))); |
+ } |
+ } |
+ } |
+ testSet([ 0x01c4, 0x01c5, 0x01c6 ]); |
+ testSet([ 0x01c7, 0x01c8, 0x01c9 ]); |
+ testSet([ 0x01ca, 0x01cb, 0x01cc ]); |
+ testSet([ 0x01f1, 0x01f2, 0x01f3 ]); |
+ testSet([ 0x0392, 0x03b2, 0x03d0 ]); |
+ testSet([ 0x0395, 0x03b5, 0x03f5 ]); |
+ testSet([ 0x0398, 0x03b8, 0x03d1 ]); |
+ testSet([ 0x0345, 0x0399, 0x03b9, 0x1fbe ]); |
+ testSet([ 0x039a, 0x03ba, 0x03f0 ]); |
+ testSet([ 0x00b5, 0x039c, 0x03bc ]); |
+ testSet([ 0x03a0, 0x03c0, 0x03d6 ]); |
+ testSet([ 0x03a1, 0x03c1, 0x03f1 ]); |
+ testSet([ 0x03a3, 0x03c2, 0x03c3 ]); |
+ testSet([ 0x03a6, 0x03c6, 0x03d5 ]); |
+ testSet([ 0x1e60, 0x1e61, 0x1e9b ]); |
+ |
+ // Test a couple of lo/hi pairs |
+ shouldBeTrue(new RegExp(r"\u03cf", caseSensitive: false).hasMatch("\u03cf")); |
+ shouldBeTrue(new RegExp(r"\u03d7", caseSensitive: false).hasMatch("\u03cf")); |
+ shouldBeTrue(new RegExp(r"\u03cf", caseSensitive: false).hasMatch("\u03d7")); |
+ shouldBeTrue(new RegExp(r"\u03d7", caseSensitive: false).hasMatch("\u03d7")); |
+ shouldBeTrue(new RegExp(r"\u1f11", caseSensitive: false).hasMatch("\u1f11")); |
+ shouldBeTrue(new RegExp(r"\u1f19", caseSensitive: false).hasMatch("\u1f11")); |
+ shouldBeTrue(new RegExp(r"\u1f11", caseSensitive: false).hasMatch("\u1f19")); |
+ shouldBeTrue(new RegExp(r"\u1f19", caseSensitive: false).hasMatch("\u1f19")); |
+ |
+ // Test an aligned alternating capitalization pair. |
+ shouldBeFalse(new RegExp(r"\u0489", caseSensitive: false).hasMatch("\u048a")); |
+ shouldBeTrue(new RegExp(r"\u048a", caseSensitive: false).hasMatch("\u048a")); |
+ shouldBeTrue(new RegExp(r"\u048b", caseSensitive: false).hasMatch("\u048a")); |
+ shouldBeFalse(new RegExp(r"\u048c", caseSensitive: false).hasMatch("\u048a")); |
+ shouldBeFalse(new RegExp(r"\u0489", caseSensitive: false).hasMatch("\u048b")); |
+ shouldBeTrue(new RegExp(r"\u048a", caseSensitive: false).hasMatch("\u048b")); |
+ shouldBeTrue(new RegExp(r"\u048b", caseSensitive: false).hasMatch("\u048b")); |
+ shouldBeFalse(new RegExp(r"\u048c", caseSensitive: false).hasMatch("\u048b")); |
+ shouldBeTrue(new RegExp(r"[\u0489-\u048a]", caseSensitive: false).hasMatch("\u048b")); |
+ shouldBeTrue(new RegExp(r"[\u048b-\u048c]", caseSensitive: false).hasMatch("\u048a")); |
+ |
+ // Test an unaligned alternating capitalization pair. |
+ shouldBeFalse(new RegExp(r"\u04c4", caseSensitive: false).hasMatch("\u04c5")); |
+ shouldBeTrue(new RegExp(r"\u04c5", caseSensitive: false).hasMatch("\u04c5")); |
+ shouldBeTrue(new RegExp(r"\u04c6", caseSensitive: false).hasMatch("\u04c5")); |
+ shouldBeFalse(new RegExp(r"\u04c7", caseSensitive: false).hasMatch("\u04c5")); |
+ shouldBeFalse(new RegExp(r"\u04c4", caseSensitive: false).hasMatch("\u04c6")); |
+ shouldBeTrue(new RegExp(r"\u04c5", caseSensitive: false).hasMatch("\u04c6")); |
+ shouldBeTrue(new RegExp(r"\u04c6", caseSensitive: false).hasMatch("\u04c6")); |
+ shouldBeFalse(new RegExp(r"\u04c7", caseSensitive: false).hasMatch("\u04c6")); |
+ shouldBeTrue(new RegExp(r"[\u04c4-\u04c5]", caseSensitive: false).hasMatch("\u04c6")); |
+ shouldBeTrue(new RegExp(r"[\u04c6-\u04c7]", caseSensitive: false).hasMatch("\u04c5")); |
+ |
+ var successfullyParsed = true; |
+} |