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| 1 // Copyright (c) 2014 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 "net/base/ip_pattern.h" |
| 6 |
| 7 #include "testing/gtest/include/gtest/gtest.h" |
| 8 |
| 9 namespace net { |
| 10 |
| 11 namespace { |
| 12 |
| 13 bool IsValidPattern(const std::string& pattern_text) { |
| 14 IPPattern pattern; |
| 15 return pattern.ParsePattern(pattern_text); |
| 16 } |
| 17 |
| 18 bool CheckForMatch(const IPPattern& pattern, std::string address_text) { |
| 19 IPAddressNumber address; |
| 20 EXPECT_TRUE(ParseIPLiteralToNumber(address_text, &address)); |
| 21 return pattern.Match(address); |
| 22 } |
| 23 |
| 24 TEST(IPPatternTest, EmptyPattern) { |
| 25 IPPattern pattern; |
| 26 IPAddressNumber ipv4_address1; |
| 27 EXPECT_TRUE(ParseIPLiteralToNumber("1.2.3.4", &ipv4_address1)); |
| 28 IPAddressNumber ipv6_address1; |
| 29 EXPECT_TRUE(ParseIPLiteralToNumber("1:2:3:4:5:6:7:8", &ipv6_address1)); |
| 30 |
| 31 EXPECT_FALSE(pattern.Match(ipv4_address1)); |
| 32 EXPECT_FALSE(pattern.Match(ipv6_address1)); |
| 33 } |
| 34 |
| 35 TEST(IPPatternTest, PerfectMatchPattern) { |
| 36 IPPattern pattern_v4; |
| 37 std::string ipv4_text1("1.2.3.4"); |
| 38 EXPECT_TRUE(pattern_v4.ParsePattern(ipv4_text1)); |
| 39 EXPECT_TRUE(pattern_v4.is_ipv4()); |
| 40 EXPECT_TRUE(CheckForMatch(pattern_v4, ipv4_text1)); |
| 41 |
| 42 IPPattern pattern_v6; |
| 43 std::string ipv6_text1("1:2:3:4:5:6:7:8"); |
| 44 EXPECT_TRUE(pattern_v6.ParsePattern(ipv6_text1)); |
| 45 EXPECT_FALSE(pattern_v6.is_ipv4()); |
| 46 EXPECT_TRUE(CheckForMatch(pattern_v6, ipv6_text1)); |
| 47 |
| 48 // Also check that there is no confusion betwene v6 and v4, despite having |
| 49 // similar values in some sense. |
| 50 EXPECT_FALSE(CheckForMatch(pattern_v4, ipv6_text1)); |
| 51 EXPECT_FALSE(CheckForMatch(pattern_v6, ipv4_text1)); |
| 52 } |
| 53 |
| 54 TEST(IPPatternTest, AlternativeMatchPattern) { |
| 55 IPPattern pattern_v4; |
| 56 EXPECT_TRUE(pattern_v4.ParsePattern("1.2.[3,5].4")); |
| 57 EXPECT_TRUE(pattern_v4.is_ipv4()); |
| 58 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.2.2.4")); |
| 59 EXPECT_TRUE(CheckForMatch(pattern_v4, "1.2.3.4")); |
| 60 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.2.4.4")); |
| 61 EXPECT_TRUE(CheckForMatch(pattern_v4, "1.2.5.4")); |
| 62 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.2.6.4")); |
| 63 |
| 64 IPPattern pattern_v6; |
| 65 EXPECT_TRUE(pattern_v6.ParsePattern("1:2fab:3:4:5:[6,8]:7:8")); |
| 66 EXPECT_FALSE(pattern_v6.is_ipv4()); |
| 67 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:5:7:8")); |
| 68 EXPECT_TRUE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:6:7:8")); |
| 69 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:7:7:8")); |
| 70 EXPECT_TRUE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:8:7:8")); |
| 71 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:9:7:8")); |
| 72 } |
| 73 |
| 74 TEST(IPPatternTest, RangeMatchPattern) { |
| 75 IPPattern pattern_v4; |
| 76 EXPECT_TRUE(pattern_v4.ParsePattern("1.2.[3-5].4")); |
| 77 EXPECT_TRUE(pattern_v4.is_ipv4()); |
| 78 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.2.2.4")); |
| 79 EXPECT_TRUE(CheckForMatch(pattern_v4, "1.2.3.4")); |
| 80 EXPECT_TRUE(CheckForMatch(pattern_v4, "1.2.4.4")); |
| 81 EXPECT_TRUE(CheckForMatch(pattern_v4, "1.2.5.4")); |
| 82 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.2.6.4")); |
| 83 |
| 84 IPPattern pattern_v6; |
| 85 EXPECT_TRUE(pattern_v6.ParsePattern("1:2fab:3:4:5:[6-8]:7:8")); |
| 86 EXPECT_FALSE(pattern_v6.is_ipv4()); |
| 87 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:5:7:8")); |
| 88 EXPECT_TRUE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:6:7:8")); |
| 89 EXPECT_TRUE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:7:7:8")); |
| 90 EXPECT_TRUE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:8:7:8")); |
| 91 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:9:7:8")); |
| 92 } |
| 93 |
| 94 TEST(IPPatternTest, WildCardMatchPattern) { |
| 95 // Use two ranges, and check that only getting both right is a match. |
| 96 IPPattern pattern_v4; |
| 97 EXPECT_TRUE(pattern_v4.ParsePattern("1.2.*.4")); |
| 98 EXPECT_TRUE(pattern_v4.is_ipv4()); |
| 99 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.2.2.255")); |
| 100 EXPECT_TRUE(CheckForMatch(pattern_v4, "1.2.255.4")); |
| 101 EXPECT_TRUE(CheckForMatch(pattern_v4, "1.2.0.4")); |
| 102 |
| 103 IPPattern pattern_v6; |
| 104 EXPECT_TRUE(pattern_v6.ParsePattern("1:2fab:3:4:5:*:7:8")); |
| 105 EXPECT_FALSE(pattern_v6.is_ipv4()); |
| 106 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:5:7:8888")); |
| 107 EXPECT_TRUE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:FFFF:7:8")); |
| 108 EXPECT_TRUE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:9999:7:8")); |
| 109 } |
| 110 |
| 111 TEST(IPPatternTest, MultiRangeMatchPattern) { |
| 112 // Use two ranges, and check that only getting both right is a match. |
| 113 // This ensures that the right component range is matched against the desired |
| 114 // component. |
| 115 IPPattern pattern_v4; |
| 116 EXPECT_TRUE(pattern_v4.ParsePattern("1.[2-3].3.[4-5]")); |
| 117 EXPECT_TRUE(pattern_v4.is_ipv4()); |
| 118 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.4.3.6")); |
| 119 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.2.3.6")); |
| 120 EXPECT_FALSE(CheckForMatch(pattern_v4, "1.4.3.4")); |
| 121 EXPECT_TRUE(CheckForMatch(pattern_v4, "1.2.3.4")); |
| 122 |
| 123 IPPattern pattern_v6; |
| 124 EXPECT_TRUE(pattern_v6.ParsePattern("1:2fab:3:4:[5-7]:6:7:[8-A]")); |
| 125 EXPECT_FALSE(pattern_v6.is_ipv4()); |
| 126 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:4:5:7:F")); |
| 127 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:5:7:F")); |
| 128 EXPECT_FALSE(CheckForMatch(pattern_v6, "1:2fab:3:4:4:6:7:A")); |
| 129 EXPECT_TRUE(CheckForMatch(pattern_v6, "1:2fab:3:4:5:6:7:A")); |
| 130 } |
| 131 |
| 132 TEST(IPPatternTest, BytoOrderInIPv6Ranges) { |
| 133 IPPattern pattern_v6_low_byte; |
| 134 EXPECT_TRUE(pattern_v6_low_byte.ParsePattern("1:2:3:4:5:6:7:[0-FF]")); |
| 135 EXPECT_TRUE(CheckForMatch(pattern_v6_low_byte, "1:2:3:4:5:6:7:0088")); |
| 136 EXPECT_FALSE(CheckForMatch(pattern_v6_low_byte, "1:2:3:4:5:6:7:8800")); |
| 137 |
| 138 IPPattern pattern_v6_high_byte; |
| 139 EXPECT_TRUE(pattern_v6_high_byte.ParsePattern("1:2:3:4:5:6:7:[0-FF00]")); |
| 140 EXPECT_TRUE(CheckForMatch(pattern_v6_high_byte, "1:2:3:4:5:6:7:0088")); |
| 141 EXPECT_TRUE(CheckForMatch(pattern_v6_high_byte, "1:2:3:4:5:6:7:FF00")); |
| 142 EXPECT_FALSE(CheckForMatch(pattern_v6_high_byte, "1:2:3:4:5:6:7:FF01")); |
| 143 } |
| 144 |
| 145 TEST(IPPatternTest, InvalidPatterns) { |
| 146 EXPECT_FALSE(IsValidPattern("1:2:3:4:5:6:7:8:9")); // Too long. |
| 147 EXPECT_FALSE(IsValidPattern("1:2:3:4:5:6:7")); // Too Short |
| 148 EXPECT_FALSE(IsValidPattern("1:2:3:4:5:6:7:H")); // Non-hex. |
| 149 EXPECT_FALSE(IsValidPattern("1:G:3:4:5:6:7:8")); // Non-hex. |
| 150 |
| 151 EXPECT_FALSE(IsValidPattern("1.2.3.4.5")); // Too long |
| 152 EXPECT_FALSE(IsValidPattern("1.2.3")); // Too short |
| 153 EXPECT_FALSE(IsValidPattern("1.2.3.A")); // Non-decimal. |
| 154 EXPECT_FALSE(IsValidPattern("1.A.3.4")); // Non-decimal |
| 155 EXPECT_FALSE(IsValidPattern("1.256.3.4")); // Out of range |
| 156 } |
| 157 |
| 158 } // namespace |
| 159 |
| 160 } // namespace net |
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