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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 "net/websockets/websocket_frame.h" | |
6 | |
7 #include <vector> | |
8 | |
9 #include "base/basictypes.h" | |
10 #include "testing/gtest/include/gtest/gtest.h" | |
11 | |
12 namespace net { | |
13 | |
14 TEST(WebSocketFrameHeaderTest, FrameLengths) { | |
15 struct TestCase { | |
16 const char* frame_header; | |
17 size_t frame_header_length; | |
18 uint64 frame_length; | |
19 }; | |
20 static const TestCase kTests[] = { | |
21 { "\x81\x00", 2, GG_UINT64_C(0) }, | |
22 { "\x81\x7D", 2, GG_UINT64_C(125) }, | |
23 { "\x81\x7E\x00\x7E", 4, GG_UINT64_C(126) }, | |
24 { "\x81\x7E\xFF\xFF", 4, GG_UINT64_C(0xFFFF) }, | |
25 { "\x81\x7F\x00\x00\x00\x00\x00\x01\x00\x00", 10, GG_UINT64_C(0x10000) }, | |
26 { "\x81\x7F\x7F\xFF\xFF\xFF\xFF\xFF\xFF\xFF", 10, | |
27 GG_UINT64_C(0x7FFFFFFFFFFFFFFF) } | |
28 }; | |
29 static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); | |
30 | |
31 for (int i = 0; i < kNumTests; ++i) { | |
32 WebSocketFrameHeader header; | |
33 header.final = true; | |
34 header.reserved1 = false; | |
35 header.reserved2 = false; | |
36 header.reserved3 = false; | |
37 header.opcode = WebSocketFrameHeader::kOpCodeText; | |
38 header.masked = false; | |
39 header.payload_length = kTests[i].frame_length; | |
40 | |
41 std::vector<char> expected_output( | |
42 kTests[i].frame_header, | |
43 kTests[i].frame_header + kTests[i].frame_header_length); | |
44 std::vector<char> output(expected_output.size()); | |
45 EXPECT_TRUE(WriteWebSocketFrameHeader(header, NULL, &output.front(), | |
46 output.size())); | |
47 EXPECT_EQ(expected_output, output); | |
48 } | |
49 } | |
50 | |
51 TEST(WebSocketFrameHeaderTest, FrameLengthsWithMasking) { | |
52 static const char kMaskingKey[] = "\xDE\xAD\xBE\xEF"; | |
53 COMPILE_ASSERT(ARRAYSIZE_UNSAFE(kMaskingKey) - 1 == | |
54 WebSocketFrameHeader::kMaskingKeyLength, | |
55 incorrect_masking_key_size); | |
56 | |
57 struct TestCase { | |
58 const char* frame_header; | |
59 size_t frame_header_length; | |
60 uint64 frame_length; | |
61 }; | |
62 static const TestCase kTests[] = { | |
63 { "\x81\x80\xDE\xAD\xBE\xEF", 6, GG_UINT64_C(0) }, | |
64 { "\x81\xFD\xDE\xAD\xBE\xEF", 6, GG_UINT64_C(125) }, | |
65 { "\x81\xFE\x00\x7E\xDE\xAD\xBE\xEF", 8, GG_UINT64_C(126) }, | |
66 { "\x81\xFE\xFF\xFF\xDE\xAD\xBE\xEF", 8, GG_UINT64_C(0xFFFF) }, | |
67 { "\x81\xFF\x00\x00\x00\x00\x00\x01\x00\x00\xDE\xAD\xBE\xEF", 14, | |
68 GG_UINT64_C(0x10000) }, | |
69 { "\x81\xFF\x7F\xFF\xFF\xFF\xFF\xFF\xFF\xFF\xDE\xAD\xBE\xEF", 14, | |
70 GG_UINT64_C(0x7FFFFFFFFFFFFFFF) } | |
71 }; | |
72 static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); | |
73 | |
74 WebSocketMaskingKey masking_key; | |
75 std::copy(kMaskingKey, kMaskingKey + WebSocketFrameHeader::kMaskingKeyLength, | |
76 masking_key.key); | |
77 | |
78 for (int i = 0; i < kNumTests; ++i) { | |
79 WebSocketFrameHeader header; | |
80 header.final = true; | |
81 header.reserved1 = false; | |
82 header.reserved2 = false; | |
83 header.reserved3 = false; | |
84 header.opcode = WebSocketFrameHeader::kOpCodeText; | |
85 header.masked = true; | |
86 header.payload_length = kTests[i].frame_length; | |
87 | |
88 std::vector<char> expected_output( | |
89 kTests[i].frame_header, | |
90 kTests[i].frame_header + kTests[i].frame_header_length); | |
91 std::vector<char> output(expected_output.size()); | |
92 EXPECT_TRUE(WriteWebSocketFrameHeader(header, &masking_key, | |
93 &output.front(), output.size())); | |
94 EXPECT_EQ(expected_output, output); | |
95 } | |
96 } | |
97 | |
98 TEST(WebSocketFrameHeaderTest, FrameOpCodes) { | |
99 struct TestCase { | |
100 const char* frame_header; | |
101 size_t frame_header_length; | |
102 WebSocketFrameHeader::OpCode opcode; | |
103 }; | |
104 static const TestCase kTests[] = { | |
105 { "\x80\x00", 2, WebSocketFrameHeader::kOpCodeContinuation }, | |
106 { "\x81\x00", 2, WebSocketFrameHeader::kOpCodeText }, | |
107 { "\x82\x00", 2, WebSocketFrameHeader::kOpCodeBinary }, | |
108 { "\x88\x00", 2, WebSocketFrameHeader::kOpCodeClose }, | |
109 { "\x89\x00", 2, WebSocketFrameHeader::kOpCodePing }, | |
110 { "\x8A\x00", 2, WebSocketFrameHeader::kOpCodePong }, | |
111 // These are undefined opcodes, but the builder should accept them anyway. | |
112 { "\x83\x00", 2, 0x3 }, | |
113 { "\x84\x00", 2, 0x4 }, | |
114 { "\x85\x00", 2, 0x5 }, | |
115 { "\x86\x00", 2, 0x6 }, | |
116 { "\x87\x00", 2, 0x7 }, | |
117 { "\x8B\x00", 2, 0xB }, | |
118 { "\x8C\x00", 2, 0xC }, | |
119 { "\x8D\x00", 2, 0xD }, | |
120 { "\x8E\x00", 2, 0xE }, | |
121 { "\x8F\x00", 2, 0xF } | |
122 }; | |
123 static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); | |
124 | |
125 for (int i = 0; i < kNumTests; ++i) { | |
126 WebSocketFrameHeader header; | |
127 header.final = true; | |
128 header.reserved1 = false; | |
129 header.reserved2 = false; | |
130 header.reserved3 = false; | |
131 header.opcode = kTests[i].opcode; | |
132 header.masked = false; | |
133 header.payload_length = 0; | |
134 | |
135 std::vector<char> expected_output( | |
136 kTests[i].frame_header, | |
137 kTests[i].frame_header + kTests[i].frame_header_length); | |
138 std::vector<char> output(expected_output.size()); | |
139 EXPECT_TRUE(WriteWebSocketFrameHeader(header, NULL, | |
140 &output.front(), output.size())); | |
141 EXPECT_EQ(expected_output, output); | |
142 } | |
143 } | |
144 | |
145 TEST(WebSocketFrameHeaderTest, FinalBitAndReservedBits) { | |
146 struct TestCase { | |
147 const char* frame_header; | |
148 size_t frame_header_length; | |
149 bool final; | |
150 bool reserved1; | |
151 bool reserved2; | |
152 bool reserved3; | |
153 }; | |
154 static const TestCase kTests[] = { | |
155 { "\x81\x00", 2, true, false, false, false }, | |
156 { "\x01\x00", 2, false, false, false, false }, | |
157 { "\xC1\x00", 2, true, true, false, false }, | |
158 { "\xA1\x00", 2, true, false, true, false }, | |
159 { "\x91\x00", 2, true, false, false, true }, | |
160 { "\x71\x00", 2, false, true, true, true }, | |
161 { "\xF1\x00", 2, true, true, true, true } | |
162 }; | |
163 static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); | |
164 | |
165 for (int i = 0; i < kNumTests; ++i) { | |
166 WebSocketFrameHeader header; | |
167 header.final = kTests[i].final; | |
168 header.reserved1 = kTests[i].reserved1; | |
169 header.reserved2 = kTests[i].reserved2; | |
170 header.reserved3 = kTests[i].reserved3; | |
171 header.opcode = WebSocketFrameHeader::kOpCodeText; | |
172 header.masked = false; | |
173 header.payload_length = 0; | |
174 | |
175 std::vector<char> expected_output( | |
176 kTests[i].frame_header, | |
177 kTests[i].frame_header + kTests[i].frame_header_length); | |
178 std::vector<char> output(expected_output.size()); | |
179 EXPECT_TRUE(WriteWebSocketFrameHeader(header, NULL, | |
180 &output.front(), output.size())); | |
181 EXPECT_EQ(expected_output, output); | |
182 } | |
183 } | |
184 | |
185 TEST(WebSocketFrameHeaderTest, InsufficientBufferSize) { | |
186 struct TestCase { | |
187 uint64 payload_length; | |
188 bool masked; | |
189 size_t expected_header_size; | |
190 }; | |
191 static const TestCase kTests[] = { | |
192 { GG_UINT64_C(0), false, 2u }, | |
193 { GG_UINT64_C(125), false, 2u }, | |
194 { GG_UINT64_C(126), false, 4u }, | |
195 { GG_UINT64_C(0xFFFF), false, 4u }, | |
196 { GG_UINT64_C(0x10000), false, 10u }, | |
197 { GG_UINT64_C(0x7FFFFFFFFFFFFFFF), false, 10u }, | |
198 { GG_UINT64_C(0), true, 6u }, | |
199 { GG_UINT64_C(125), true, 6u }, | |
200 { GG_UINT64_C(126), true, 8u }, | |
201 { GG_UINT64_C(0xFFFF), true, 8u }, | |
202 { GG_UINT64_C(0x10000), true, 14u }, | |
203 { GG_UINT64_C(0x7FFFFFFFFFFFFFFF), true, 14u } | |
204 }; | |
205 static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); | |
206 | |
207 for (int i = 0; i < kNumTests; ++i) { | |
208 WebSocketFrameHeader header; | |
209 header.final = true; | |
210 header.reserved1 = false; | |
211 header.reserved2 = false; | |
212 header.reserved3 = false; | |
213 header.opcode = WebSocketFrameHeader::kOpCodeText; | |
214 header.masked = kTests[i].masked; | |
215 header.payload_length = kTests[i].payload_length; | |
216 | |
217 char dummy_buffer[14]; | |
218 // Set an insufficient size to |buffer_size|. | |
219 EXPECT_FALSE(WriteWebSocketFrameHeader( | |
220 header, NULL, dummy_buffer, kTests[i].expected_header_size - 1)); | |
221 } | |
222 } | |
223 | |
224 TEST(WebSocketFrameTest, MaskPayload) { | |
225 struct TestCase { | |
226 const char* masking_key; | |
227 uint64 frame_offset; | |
228 const char* input; | |
229 const char* output; | |
230 size_t data_length; | |
231 }; | |
232 static const TestCase kTests[] = { | |
233 { "\xDE\xAD\xBE\xEF", 0, "FooBar", "\x98\xC2\xD1\xAD\xBF\xDF", 6 }, | |
234 { "\xDE\xAD\xBE\xEF", 1, "FooBar", "\xEB\xD1\x80\x9C\xCC\xCC", 6 }, | |
235 { "\xDE\xAD\xBE\xEF", 2, "FooBar", "\xF8\x80\xB1\xEF\xDF\x9D", 6 }, | |
236 { "\xDE\xAD\xBE\xEF", 3, "FooBar", "\xA9\xB1\xC2\xFC\x8E\xAC", 6 }, | |
237 { "\xDE\xAD\xBE\xEF", 4, "FooBar", "\x98\xC2\xD1\xAD\xBF\xDF", 6 }, | |
238 { "\xDE\xAD\xBE\xEF", 42, "FooBar", "\xF8\x80\xB1\xEF\xDF\x9D", 6 }, | |
239 { "\xDE\xAD\xBE\xEF", 0, "", "", 0 }, | |
240 { "\xDE\xAD\xBE\xEF", 0, "\xDE\xAD\xBE\xEF", "\x00\x00\x00\x00", 4 }, | |
241 { "\xDE\xAD\xBE\xEF", 0, "\x00\x00\x00\x00", "\xDE\xAD\xBE\xEF", 4 }, | |
242 { "\x00\x00\x00\x00", 0, "FooBar", "FooBar", 6 }, | |
243 { "\xFF\xFF\xFF\xFF", 0, "FooBar", "\xB9\x90\x90\xBD\x9E\x8D", 6 }, | |
244 }; | |
245 static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); | |
246 | |
247 for (int i = 0; i < kNumTests; ++i) { | |
248 WebSocketMaskingKey masking_key; | |
249 std::copy(kTests[i].masking_key, | |
250 kTests[i].masking_key + WebSocketFrameHeader::kMaskingKeyLength, | |
251 masking_key.key); | |
252 std::vector<char> frame_data(kTests[i].input, | |
253 kTests[i].input + kTests[i].data_length); | |
254 std::vector<char> expected_output(kTests[i].output, | |
255 kTests[i].output + kTests[i].data_length); | |
256 MaskWebSocketFramePayload(masking_key, | |
257 kTests[i].frame_offset, | |
258 &frame_data.front(), | |
Yuta Kitamura
2012/06/07 08:39:18
Win tester bot hangs at this line. We can't call f
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259 frame_data.size()); | |
260 EXPECT_EQ(expected_output, frame_data); | |
261 } | |
262 } | |
263 | |
264 } // namespace net | |
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