blob: d2cf0feab2dccf948cbb7067c97177c9cb1d961e [file] [log] [blame]
[email protected]e0f097782013-09-06 14:36:431// Copyright 2013 The Chromium Authors. All rights reserved.
[email protected]bbe30db72012-06-12 08:35:302// 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
tfarina3723da22015-06-03 21:39:307#include <stdint.h>
[email protected]d632a9a2012-12-17 12:00:588#include <algorithm>
[email protected]bbe30db72012-06-12 08:35:309#include <vector>
10
[email protected]d632a9a2012-12-17 12:00:5811#include "base/memory/aligned_memory.h"
Avi Drissman4365a4782018-12-28 19:26:2412#include "base/stl_util.h"
[email protected]bbe30db72012-06-12 08:35:3013#include "net/base/net_errors.h"
14#include "testing/gtest/include/gtest/gtest.h"
15
16namespace net {
17
riceab2ab0062014-09-01 09:59:5918namespace {
19
[email protected]bbe30db72012-06-12 08:35:3020TEST(WebSocketFrameHeaderTest, FrameLengths) {
21 struct TestCase {
22 const char* frame_header;
23 size_t frame_header_length;
tfarina8a2c66c22015-10-13 19:14:4924 uint64_t frame_length;
[email protected]bbe30db72012-06-12 08:35:3025 };
26 static const TestCase kTests[] = {
tfarina3723da22015-06-03 21:39:3027 { "\x81\x00", 2, UINT64_C(0) },
28 { "\x81\x7D", 2, UINT64_C(125) },
29 { "\x81\x7E\x00\x7E", 4, UINT64_C(126) },
30 { "\x81\x7E\xFF\xFF", 4, UINT64_C(0xFFFF) },
31 { "\x81\x7F\x00\x00\x00\x00\x00\x01\x00\x00", 10, UINT64_C(0x10000) },
[email protected]bbe30db72012-06-12 08:35:3032 { "\x81\x7F\x7F\xFF\xFF\xFF\xFF\xFF\xFF\xFF", 10,
tfarina3723da22015-06-03 21:39:3033 UINT64_C(0x7FFFFFFFFFFFFFFF) }
[email protected]bbe30db72012-06-12 08:35:3034 };
Avi Drissman4365a4782018-12-28 19:26:2435 static const int kNumTests = base::size(kTests);
[email protected]bbe30db72012-06-12 08:35:3036
37 for (int i = 0; i < kNumTests; ++i) {
[email protected]40e9c62f2013-05-07 14:59:2138 WebSocketFrameHeader header(WebSocketFrameHeader::kOpCodeText);
[email protected]bbe30db72012-06-12 08:35:3039 header.final = true;
[email protected]bbe30db72012-06-12 08:35:3040 header.payload_length = kTests[i].frame_length;
41
42 std::vector<char> expected_output(
43 kTests[i].frame_header,
44 kTests[i].frame_header + kTests[i].frame_header_length);
45 std::vector<char> output(expected_output.size());
46 EXPECT_EQ(static_cast<int>(expected_output.size()),
David Benjamin739ef112019-11-01 04:21:0947 WriteWebSocketFrameHeader(header, nullptr, output.data(),
Raul Tambre94493c652019-03-11 17:18:3548 output.size()));
[email protected]bbe30db72012-06-12 08:35:3049 EXPECT_EQ(expected_output, output);
50 }
51}
52
53TEST(WebSocketFrameHeaderTest, FrameLengthsWithMasking) {
54 static const char kMaskingKey[] = "\xDE\xAD\xBE\xEF";
mostynb91e0da982015-01-20 19:17:2755 static_assert(
Avi Drissman4365a4782018-12-28 19:26:2456 base::size(kMaskingKey) - 1 == WebSocketFrameHeader::kMaskingKeyLength,
mostynb91e0da982015-01-20 19:17:2757 "incorrect masking key size");
[email protected]bbe30db72012-06-12 08:35:3058
59 struct TestCase {
60 const char* frame_header;
61 size_t frame_header_length;
tfarina8a2c66c22015-10-13 19:14:4962 uint64_t frame_length;
[email protected]bbe30db72012-06-12 08:35:3063 };
64 static const TestCase kTests[] = {
tfarina3723da22015-06-03 21:39:3065 { "\x81\x80\xDE\xAD\xBE\xEF", 6, UINT64_C(0) },
66 { "\x81\xFD\xDE\xAD\xBE\xEF", 6, UINT64_C(125) },
67 { "\x81\xFE\x00\x7E\xDE\xAD\xBE\xEF", 8, UINT64_C(126) },
68 { "\x81\xFE\xFF\xFF\xDE\xAD\xBE\xEF", 8, UINT64_C(0xFFFF) },
[email protected]bbe30db72012-06-12 08:35:3069 { "\x81\xFF\x00\x00\x00\x00\x00\x01\x00\x00\xDE\xAD\xBE\xEF", 14,
tfarina3723da22015-06-03 21:39:3070 UINT64_C(0x10000) },
[email protected]bbe30db72012-06-12 08:35:3071 { "\x81\xFF\x7F\xFF\xFF\xFF\xFF\xFF\xFF\xFF\xDE\xAD\xBE\xEF", 14,
tfarina3723da22015-06-03 21:39:3072 UINT64_C(0x7FFFFFFFFFFFFFFF) }
[email protected]bbe30db72012-06-12 08:35:3073 };
Avi Drissman4365a4782018-12-28 19:26:2474 static const int kNumTests = base::size(kTests);
[email protected]bbe30db72012-06-12 08:35:3075
76 WebSocketMaskingKey masking_key;
[email protected]d6409b72013-05-20 14:40:0677 std::copy(kMaskingKey,
78 kMaskingKey + WebSocketFrameHeader::kMaskingKeyLength,
[email protected]bbe30db72012-06-12 08:35:3079 masking_key.key);
80
81 for (int i = 0; i < kNumTests; ++i) {
[email protected]40e9c62f2013-05-07 14:59:2182 WebSocketFrameHeader header(WebSocketFrameHeader::kOpCodeText);
[email protected]bbe30db72012-06-12 08:35:3083 header.final = true;
[email protected]bbe30db72012-06-12 08:35:3084 header.masked = true;
85 header.payload_length = kTests[i].frame_length;
86
87 std::vector<char> expected_output(
88 kTests[i].frame_header,
89 kTests[i].frame_header + kTests[i].frame_header_length);
90 std::vector<char> output(expected_output.size());
91 EXPECT_EQ(static_cast<int>(expected_output.size()),
David Benjamin739ef112019-11-01 04:21:0992 WriteWebSocketFrameHeader(header, &masking_key, output.data(),
93 output.size()));
[email protected]bbe30db72012-06-12 08:35:3094 EXPECT_EQ(expected_output, output);
95 }
96}
97
98TEST(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 };
Avi Drissman4365a4782018-12-28 19:26:24123 static const int kNumTests = base::size(kTests);
[email protected]bbe30db72012-06-12 08:35:30124
125 for (int i = 0; i < kNumTests; ++i) {
[email protected]40e9c62f2013-05-07 14:59:21126 WebSocketFrameHeader header(kTests[i].opcode);
[email protected]bbe30db72012-06-12 08:35:30127 header.final = true;
[email protected]bbe30db72012-06-12 08:35:30128 header.payload_length = 0;
129
130 std::vector<char> expected_output(
131 kTests[i].frame_header,
132 kTests[i].frame_header + kTests[i].frame_header_length);
133 std::vector<char> output(expected_output.size());
134 EXPECT_EQ(static_cast<int>(expected_output.size()),
David Benjamin739ef112019-11-01 04:21:09135 WriteWebSocketFrameHeader(header, nullptr, output.data(),
Raul Tambre94493c652019-03-11 17:18:35136 output.size()));
[email protected]bbe30db72012-06-12 08:35:30137 EXPECT_EQ(expected_output, output);
138 }
139}
140
141TEST(WebSocketFrameHeaderTest, FinalBitAndReservedBits) {
142 struct TestCase {
143 const char* frame_header;
144 size_t frame_header_length;
145 bool final;
146 bool reserved1;
147 bool reserved2;
148 bool reserved3;
149 };
150 static const TestCase kTests[] = {
151 { "\x81\x00", 2, true, false, false, false },
152 { "\x01\x00", 2, false, false, false, false },
153 { "\xC1\x00", 2, true, true, false, false },
154 { "\xA1\x00", 2, true, false, true, false },
155 { "\x91\x00", 2, true, false, false, true },
156 { "\x71\x00", 2, false, true, true, true },
157 { "\xF1\x00", 2, true, true, true, true }
158 };
Avi Drissman4365a4782018-12-28 19:26:24159 static const int kNumTests = base::size(kTests);
[email protected]bbe30db72012-06-12 08:35:30160
161 for (int i = 0; i < kNumTests; ++i) {
[email protected]40e9c62f2013-05-07 14:59:21162 WebSocketFrameHeader header(WebSocketFrameHeader::kOpCodeText);
[email protected]bbe30db72012-06-12 08:35:30163 header.final = kTests[i].final;
164 header.reserved1 = kTests[i].reserved1;
165 header.reserved2 = kTests[i].reserved2;
166 header.reserved3 = kTests[i].reserved3;
[email protected]bbe30db72012-06-12 08:35:30167 header.payload_length = 0;
168
169 std::vector<char> expected_output(
170 kTests[i].frame_header,
171 kTests[i].frame_header + kTests[i].frame_header_length);
172 std::vector<char> output(expected_output.size());
173 EXPECT_EQ(static_cast<int>(expected_output.size()),
David Benjamin739ef112019-11-01 04:21:09174 WriteWebSocketFrameHeader(header, nullptr, output.data(),
Raul Tambre94493c652019-03-11 17:18:35175 output.size()));
[email protected]bbe30db72012-06-12 08:35:30176 EXPECT_EQ(expected_output, output);
177 }
178}
179
180TEST(WebSocketFrameHeaderTest, InsufficientBufferSize) {
181 struct TestCase {
tfarina8a2c66c22015-10-13 19:14:49182 uint64_t payload_length;
[email protected]bbe30db72012-06-12 08:35:30183 bool masked;
184 size_t expected_header_size;
185 };
186 static const TestCase kTests[] = {
tfarina3723da22015-06-03 21:39:30187 { UINT64_C(0), false, 2u },
188 { UINT64_C(125), false, 2u },
189 { UINT64_C(126), false, 4u },
190 { UINT64_C(0xFFFF), false, 4u },
191 { UINT64_C(0x10000), false, 10u },
192 { UINT64_C(0x7FFFFFFFFFFFFFFF), false, 10u },
193 { UINT64_C(0), true, 6u },
194 { UINT64_C(125), true, 6u },
195 { UINT64_C(126), true, 8u },
196 { UINT64_C(0xFFFF), true, 8u },
197 { UINT64_C(0x10000), true, 14u },
198 { UINT64_C(0x7FFFFFFFFFFFFFFF), true, 14u }
[email protected]bbe30db72012-06-12 08:35:30199 };
Avi Drissman4365a4782018-12-28 19:26:24200 static const int kNumTests = base::size(kTests);
[email protected]bbe30db72012-06-12 08:35:30201
202 for (int i = 0; i < kNumTests; ++i) {
[email protected]40e9c62f2013-05-07 14:59:21203 WebSocketFrameHeader header(WebSocketFrameHeader::kOpCodeText);
[email protected]bbe30db72012-06-12 08:35:30204 header.final = true;
[email protected]bbe30db72012-06-12 08:35:30205 header.opcode = WebSocketFrameHeader::kOpCodeText;
206 header.masked = kTests[i].masked;
207 header.payload_length = kTests[i].payload_length;
208
209 char dummy_buffer[14];
210 // Set an insufficient size to |buffer_size|.
Raul Tambre94493c652019-03-11 17:18:35211 EXPECT_EQ(ERR_INVALID_ARGUMENT,
212 WriteWebSocketFrameHeader(header, nullptr, dummy_buffer,
213 kTests[i].expected_header_size - 1));
[email protected]bbe30db72012-06-12 08:35:30214 }
215}
216
217TEST(WebSocketFrameTest, MaskPayload) {
218 struct TestCase {
219 const char* masking_key;
tfarina8a2c66c22015-10-13 19:14:49220 uint64_t frame_offset;
[email protected]bbe30db72012-06-12 08:35:30221 const char* input;
222 const char* output;
223 size_t data_length;
224 };
225 static const TestCase kTests[] = {
226 { "\xDE\xAD\xBE\xEF", 0, "FooBar", "\x98\xC2\xD1\xAD\xBF\xDF", 6 },
227 { "\xDE\xAD\xBE\xEF", 1, "FooBar", "\xEB\xD1\x80\x9C\xCC\xCC", 6 },
228 { "\xDE\xAD\xBE\xEF", 2, "FooBar", "\xF8\x80\xB1\xEF\xDF\x9D", 6 },
229 { "\xDE\xAD\xBE\xEF", 3, "FooBar", "\xA9\xB1\xC2\xFC\x8E\xAC", 6 },
230 { "\xDE\xAD\xBE\xEF", 4, "FooBar", "\x98\xC2\xD1\xAD\xBF\xDF", 6 },
231 { "\xDE\xAD\xBE\xEF", 42, "FooBar", "\xF8\x80\xB1\xEF\xDF\x9D", 6 },
232 { "\xDE\xAD\xBE\xEF", 0, "", "", 0 },
233 { "\xDE\xAD\xBE\xEF", 0, "\xDE\xAD\xBE\xEF", "\x00\x00\x00\x00", 4 },
234 { "\xDE\xAD\xBE\xEF", 0, "\x00\x00\x00\x00", "\xDE\xAD\xBE\xEF", 4 },
235 { "\x00\x00\x00\x00", 0, "FooBar", "FooBar", 6 },
236 { "\xFF\xFF\xFF\xFF", 0, "FooBar", "\xB9\x90\x90\xBD\x9E\x8D", 6 },
237 };
Avi Drissman4365a4782018-12-28 19:26:24238 static const int kNumTests = base::size(kTests);
[email protected]bbe30db72012-06-12 08:35:30239
240 for (int i = 0; i < kNumTests; ++i) {
241 WebSocketMaskingKey masking_key;
242 std::copy(kTests[i].masking_key,
243 kTests[i].masking_key + WebSocketFrameHeader::kMaskingKeyLength,
244 masking_key.key);
245 std::vector<char> frame_data(kTests[i].input,
246 kTests[i].input + kTests[i].data_length);
247 std::vector<char> expected_output(kTests[i].output,
248 kTests[i].output + kTests[i].data_length);
David Benjamin739ef112019-11-01 04:21:09249 MaskWebSocketFramePayload(masking_key, kTests[i].frame_offset,
250 frame_data.empty() ? nullptr : frame_data.data(),
251 frame_data.size());
[email protected]bbe30db72012-06-12 08:35:30252 EXPECT_EQ(expected_output, frame_data);
253 }
254}
255
[email protected]d632a9a2012-12-17 12:00:58256// Check that all combinations of alignment, frame offset and chunk size work
257// correctly for MaskWebSocketFramePayload(). This is mainly used to ensure that
258// vectorisation optimisations don't break anything. We could take a "white box"
259// approach and only test the edge cases, but since the exhaustive "black box"
260// approach runs in acceptable time, we don't have to take the risk of being
261// clever.
262//
263// This brute-force approach runs in O(N^3) time where N is the size of the
264// maximum vector size we want to test again. This might need reconsidering if
265// MaskWebSocketFramePayload() is ever optimised for a dedicated vector
266// architecture.
267TEST(WebSocketFrameTest, MaskPayloadAlignment) {
268 // This reflects what might be implemented in the future, rather than
269 // the current implementation. FMA3 and FMA4 support 256-bit vector ops.
270 static const size_t kMaxVectorSizeInBits = 256;
271 static const size_t kMaxVectorSize = kMaxVectorSizeInBits / 8;
272 static const size_t kMaxVectorAlignment = kMaxVectorSize;
273 static const size_t kMaskingKeyLength =
274 WebSocketFrameHeader::kMaskingKeyLength;
275 static const size_t kScratchBufferSize =
276 kMaxVectorAlignment + kMaxVectorSize * 2;
277 static const char kTestMask[] = "\xd2\xba\x5a\xbe";
278 // We use 786 bits of random input to reduce the risk of correlated errors.
[email protected]d6409b72013-05-20 14:40:06279 static const char kTestInput[] = {
280 "\x3d\x77\x1d\x1b\x19\x8c\x48\xa3\x19\x6d\xf7\xcc\x39\xe7\x57\x0b"
281 "\x69\x8c\xda\x4b\xfc\xac\x2c\xd3\x49\x96\x6e\x8a\x7b\x5a\x32\x76"
282 "\xd0\x11\x43\xa0\x89\xfc\x76\x2b\x10\x2f\x4c\x7b\x4f\xa6\xdd\xe4"
283 "\xfc\x8e\xd8\x72\xcf\x7e\x37\xcd\x31\xcd\xc1\xc0\x89\x0c\xa7\x4c"
284 "\xda\xa8\x4b\x75\xa1\xcb\xa9\x77\x19\x4d\x6e\xdf\xc8\x08\x1c\xb6"
285 "\x6d\xfb\x38\x04\x44\xd5\xba\x57\x9f\x76\xb0\x2e\x07\x91\xe6\xa8"
286 };
Avi Drissman4365a4782018-12-28 19:26:24287 static const size_t kTestInputSize = base::size(kTestInput) - 1;
[email protected]d6409b72013-05-20 14:40:06288 static const char kTestOutput[] = {
289 "\xef\xcd\x47\xa5\xcb\x36\x12\x1d\xcb\xd7\xad\x72\xeb\x5d\x0d\xb5"
290 "\xbb\x36\x80\xf5\x2e\x16\x76\x6d\x9b\x2c\x34\x34\xa9\xe0\x68\xc8"
291 "\x02\xab\x19\x1e\x5b\x46\x2c\x95\xc2\x95\x16\xc5\x9d\x1c\x87\x5a"
292 "\x2e\x34\x82\xcc\x1d\xc4\x6d\x73\xe3\x77\x9b\x7e\x5b\xb6\xfd\xf2"
293 "\x08\x12\x11\xcb\x73\x71\xf3\xc9\xcb\xf7\x34\x61\x1a\xb2\x46\x08"
294 "\xbf\x41\x62\xba\x96\x6f\xe0\xe9\x4d\xcc\xea\x90\xd5\x2b\xbc\x16"
295 };
Avi Drissman4365a4782018-12-28 19:26:24296 static_assert(base::size(kTestInput) == base::size(kTestOutput),
mostynb91e0da982015-01-20 19:17:27297 "output and input arrays should have the same length");
danakj9c5cab52016-04-16 00:54:33298 std::unique_ptr<char, base::AlignedFreeDeleter> scratch(static_cast<char*>(
299 base::AlignedAlloc(kScratchBufferSize, kMaxVectorAlignment)));
[email protected]d632a9a2012-12-17 12:00:58300 WebSocketMaskingKey masking_key;
301 std::copy(kTestMask, kTestMask + kMaskingKeyLength, masking_key.key);
[email protected]d6409b72013-05-20 14:40:06302 for (size_t frame_offset = 0; frame_offset < kMaskingKeyLength;
[email protected]d632a9a2012-12-17 12:00:58303 ++frame_offset) {
304 for (size_t alignment = 0; alignment < kMaxVectorAlignment; ++alignment) {
305 char* const aligned_scratch = scratch.get() + alignment;
[email protected]d6409b72013-05-20 14:40:06306 const size_t aligned_len = std::min(kScratchBufferSize - alignment,
307 kTestInputSize - frame_offset);
[email protected]d632a9a2012-12-17 12:00:58308 for (size_t chunk_size = 1; chunk_size < kMaxVectorSize; ++chunk_size) {
309 memcpy(aligned_scratch, kTestInput + frame_offset, aligned_len);
[email protected]d6409b72013-05-20 14:40:06310 for (size_t chunk_start = 0; chunk_start < aligned_len;
[email protected]d632a9a2012-12-17 12:00:58311 chunk_start += chunk_size) {
[email protected]d6409b72013-05-20 14:40:06312 const size_t this_chunk_size =
313 std::min(chunk_size, aligned_len - chunk_start);
[email protected]d632a9a2012-12-17 12:00:58314 MaskWebSocketFramePayload(masking_key,
315 frame_offset + chunk_start,
316 aligned_scratch + chunk_start,
317 this_chunk_size);
318 }
319 // Stop the test if it fails, since we don't want to spew thousands of
320 // failures.
[email protected]d6409b72013-05-20 14:40:06321 ASSERT_TRUE(std::equal(aligned_scratch,
322 aligned_scratch + aligned_len,
[email protected]d632a9a2012-12-17 12:00:58323 kTestOutput + frame_offset))
[email protected]d6409b72013-05-20 14:40:06324 << "Output failed to match for frame_offset=" << frame_offset
325 << ", alignment=" << alignment << ", chunk_size=" << chunk_size;
[email protected]d632a9a2012-12-17 12:00:58326 }
327 }
328 }
329}
330
[email protected]d6409b72013-05-20 14:40:06331// "IsKnownDataOpCode" is currently implemented in an "obviously correct"
332// manner, but we test is anyway in case it changes to a more complex
333// implementation in future.
[email protected]40e9c62f2013-05-07 14:59:21334TEST(WebSocketFrameHeaderTest, IsKnownDataOpCode) {
335 // Make the test less verbose.
336 typedef WebSocketFrameHeader Frame;
337
338 // Known opcode, is used for data frames
339 EXPECT_TRUE(Frame::IsKnownDataOpCode(Frame::kOpCodeContinuation));
340 EXPECT_TRUE(Frame::IsKnownDataOpCode(Frame::kOpCodeText));
341 EXPECT_TRUE(Frame::IsKnownDataOpCode(Frame::kOpCodeBinary));
342
343 // Known opcode, is used for control frames
344 EXPECT_FALSE(Frame::IsKnownDataOpCode(Frame::kOpCodeClose));
345 EXPECT_FALSE(Frame::IsKnownDataOpCode(Frame::kOpCodePing));
346 EXPECT_FALSE(Frame::IsKnownDataOpCode(Frame::kOpCodePong));
347
348 // Check that unused opcodes return false
349 EXPECT_FALSE(Frame::IsKnownDataOpCode(Frame::kOpCodeDataUnused));
350 EXPECT_FALSE(Frame::IsKnownDataOpCode(Frame::kOpCodeControlUnused));
351
352 // Check that opcodes with the 4 bit set return false
353 EXPECT_FALSE(Frame::IsKnownDataOpCode(0x6));
354 EXPECT_FALSE(Frame::IsKnownDataOpCode(0xF));
355
356 // Check that out-of-range opcodes return false
357 EXPECT_FALSE(Frame::IsKnownDataOpCode(-1));
358 EXPECT_FALSE(Frame::IsKnownDataOpCode(0xFF));
359}
360
[email protected]d6409b72013-05-20 14:40:06361// "IsKnownControlOpCode" is implemented in an "obviously correct" manner but
362// might be optimised in future.
[email protected]40e9c62f2013-05-07 14:59:21363TEST(WebSocketFrameHeaderTest, IsKnownControlOpCode) {
364 // Make the test less verbose.
365 typedef WebSocketFrameHeader Frame;
366
367 // Known opcode, is used for data frames
368 EXPECT_FALSE(Frame::IsKnownControlOpCode(Frame::kOpCodeContinuation));
369 EXPECT_FALSE(Frame::IsKnownControlOpCode(Frame::kOpCodeText));
370 EXPECT_FALSE(Frame::IsKnownControlOpCode(Frame::kOpCodeBinary));
371
372 // Known opcode, is used for control frames
373 EXPECT_TRUE(Frame::IsKnownControlOpCode(Frame::kOpCodeClose));
374 EXPECT_TRUE(Frame::IsKnownControlOpCode(Frame::kOpCodePing));
375 EXPECT_TRUE(Frame::IsKnownControlOpCode(Frame::kOpCodePong));
376
377 // Check that unused opcodes return false
378 EXPECT_FALSE(Frame::IsKnownControlOpCode(Frame::kOpCodeDataUnused));
379 EXPECT_FALSE(Frame::IsKnownControlOpCode(Frame::kOpCodeControlUnused));
380
381 // Check that opcodes with the 4 bit set return false
382 EXPECT_FALSE(Frame::IsKnownControlOpCode(0x6));
383 EXPECT_FALSE(Frame::IsKnownControlOpCode(0xF));
384
385 // Check that out-of-range opcodes return false
386 EXPECT_FALSE(Frame::IsKnownControlOpCode(-1));
387 EXPECT_FALSE(Frame::IsKnownControlOpCode(0xFF));
388}
389
riceab2ab0062014-09-01 09:59:59390} // namespace
391
[email protected]bbe30db72012-06-12 08:35:30392} // namespace net