Index: net/websockets/websocket_frame_parser_unittest.cc |
diff --git a/net/websockets/websocket_frame_parser_unittest.cc b/net/websockets/websocket_frame_parser_unittest.cc |
new file mode 100644 |
index 0000000000000000000000000000000000000000..2eec894ac8f459693b59ddf94c4709c821ea0a82 |
--- /dev/null |
+++ b/net/websockets/websocket_frame_parser_unittest.cc |
@@ -0,0 +1,511 @@ |
+// Copyright (c) 2012 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. |
+ |
+#include "net/websockets/websocket_frame_parser.h" |
+ |
+#include <vector> |
+ |
+#include "base/basictypes.h" |
+#include "base/port.h" |
+#include "base/memory/scoped_vector.h" |
+#include "net/websockets/websocket_frame.h" |
+#include "testing/gtest/include/gtest/gtest.h" |
+ |
+namespace { |
+ |
+const char kHello[] = "Hello, world!"; |
+const uint64 kHelloLength = arraysize(kHello) - 1; |
+const char kHelloFrame[] = "\x81\x0dHello, world!"; |
+const uint64 kHelloFrameLength = arraysize(kHelloFrame) - 1; |
+const char kMaskedHelloFrame[] = |
+ "\x81\x8d\xde\xad\xbe\xef" |
+ "\x96\xc8\xd2\x83\xb1\x81\x9e\x98\xb1\xdf\xd2\x8b\xff"; |
+const uint64 kMaskedHelloFrameLength = arraysize(kMaskedHelloFrame) - 1; |
+ |
+struct FrameHeaderTestCase { |
+ const char* frame_header; |
+ size_t frame_header_length; |
+ uint64 frame_length; |
+}; |
+ |
+const FrameHeaderTestCase kFrameHeaderTests[] = { |
+ { "\x81\x00", 2, GG_UINT64_C(0) }, |
+ { "\x81\x7D", 2, GG_UINT64_C(125) }, |
+ { "\x81\x7E\x00\x7E", 4, GG_UINT64_C(126) }, |
+ { "\x81\x7E\xFF\xFF", 4, GG_UINT64_C(0xFFFF) }, |
+ { "\x81\x7F\x00\x00\x00\x00\x00\x01\x00\x00", 10, GG_UINT64_C(0x10000) }, |
+ { "\x81\x7F\x7F\xFF\xFF\xFF\xFF\xFF\xFF\xFF", 10, |
+ GG_UINT64_C(0x7FFFFFFFFFFFFFFF) } |
+}; |
Takashi Toyoshima
2012/04/12 06:08:50
[optional]
Hex values in this array are written in
Yuta Kitamura
2012/05/01 09:49:46
Fixed; used capital everywhere.
|
+const int kNumFrameHeaderTests = arraysize(kFrameHeaderTests); |
+ |
+} // Unnamed namespace |
+ |
+namespace net { |
+ |
+TEST(WebSocketFrameParserTest, DecodeNormalFrame) { |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames; |
+ EXPECT_TRUE(parser.Decode(kHelloFrame, kHelloFrameLength, &frames)); |
+ EXPECT_FALSE(parser.failed()); |
+ ASSERT_EQ(1u, frames.size()); |
+ WebSocketPartialFrame* frame = frames[0]; |
+ ASSERT_TRUE(frame != NULL); |
+ const WebSocketFrameHeader* header = frame->header.get(); |
+ EXPECT_TRUE(header != NULL); |
+ if (header) { |
+ EXPECT_TRUE(header->final); |
+ EXPECT_FALSE(header->reserved1); |
+ EXPECT_FALSE(header->reserved2); |
+ EXPECT_FALSE(header->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header->opcode); |
+ EXPECT_FALSE(header->masked); |
+ EXPECT_EQ(kHelloLength, header->payload_length); |
+ } |
+ EXPECT_TRUE(frame->final_part); |
+ |
+ std::vector<char> expected_data(kHello, kHello + kHelloLength); |
+ EXPECT_EQ(expected_data, frame->data); |
+} |
+ |
+TEST(WebSocketFrameParserTest, DecodeMaskedFrame) { |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames; |
+ EXPECT_TRUE(parser.Decode(kMaskedHelloFrame, kMaskedHelloFrameLength, |
+ &frames)); |
+ EXPECT_FALSE(parser.failed()); |
+ ASSERT_EQ(1u, frames.size()); |
+ WebSocketPartialFrame* frame = frames[0]; |
+ ASSERT_TRUE(frame != NULL); |
+ const WebSocketFrameHeader* header = frame->header.get(); |
+ EXPECT_TRUE(header != NULL); |
+ if (header) { |
+ EXPECT_TRUE(header->final); |
+ EXPECT_FALSE(header->reserved1); |
+ EXPECT_FALSE(header->reserved2); |
+ EXPECT_FALSE(header->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header->opcode); |
+ EXPECT_TRUE(header->masked); |
+ EXPECT_EQ(kHelloLength, header->payload_length); |
+ } |
+ EXPECT_TRUE(frame->final_part); |
+ |
+ std::vector<char> expected_data(kHello, kHello + kHelloLength); |
+ EXPECT_EQ(expected_data, frame->data); |
+} |
+ |
+TEST(WebSocketFrameParserTest, DecodeManyFrames) { |
+ static const int kRepeat = 10; |
+ |
+ std::vector<char> input; |
+ for (int i = 0; i < kRepeat; ++i) |
+ input.insert(input.end(), kHelloFrame, kHelloFrame + kHelloFrameLength); |
+ |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames; |
+ EXPECT_TRUE(parser.Decode(&input.front(), input.size(), &frames)); |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_EQ(static_cast<size_t>(kRepeat), frames.size()); |
+ |
+ std::vector<char> expected_data(kHello, kHello + kHelloLength); |
+ |
+ for (size_t i = 0; i < frames.size(); ++i) { |
+ WebSocketPartialFrame* frame = frames[i]; |
+ EXPECT_TRUE(frame != NULL); |
+ if (!frame) |
+ continue; |
+ EXPECT_TRUE(frame->final_part); |
+ EXPECT_EQ(expected_data, frame->data); |
+ |
+ const WebSocketFrameHeader* header = frame->header.get(); |
+ EXPECT_TRUE(header != NULL); |
+ if (!header) |
+ continue; |
+ EXPECT_TRUE(header->final); |
+ EXPECT_FALSE(header->reserved1); |
+ EXPECT_FALSE(header->reserved2); |
+ EXPECT_FALSE(header->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header->opcode); |
+ EXPECT_FALSE(header->masked); |
+ EXPECT_EQ(kHelloLength, header->payload_length); |
+ } |
+} |
+ |
+TEST(WebSocketFrameParserTest, DecodePartialFrame) { |
+ static const size_t kFrameHeaderSize = 2; |
+ |
+ for (size_t cutting_pos = 0; cutting_pos < kHelloLength - 1; ++cutting_pos) { |
+ std::vector<char> input1(kHelloFrame, |
+ kHelloFrame + kFrameHeaderSize + cutting_pos); |
+ std::vector<char> input2(kHelloFrame + input1.size(), |
+ kHelloFrame + kHelloFrameLength); |
+ |
+ std::vector<char> expected1(kHello, kHello + cutting_pos); |
+ std::vector<char> expected2(kHello + cutting_pos, kHello + kHelloLength); |
+ |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames1; |
+ EXPECT_TRUE(parser.Decode(&input1.front(), input1.size(), &frames1)); |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_EQ(1u, frames1.size()); |
+ if (frames1.size() != 1u) |
+ continue; |
+ WebSocketPartialFrame* frame1 = frames1[0]; |
+ EXPECT_TRUE(frame1 != NULL); |
+ if (!frame1) |
+ continue; |
+ EXPECT_FALSE(frame1->final_part); |
+ EXPECT_EQ(expected1, frame1->data); |
+ const WebSocketFrameHeader* header1 = frame1->header.get(); |
+ EXPECT_TRUE(header1 != NULL); |
+ if (!header1) |
+ continue; |
+ EXPECT_TRUE(header1->final); |
+ EXPECT_FALSE(header1->reserved1); |
+ EXPECT_FALSE(header1->reserved2); |
+ EXPECT_FALSE(header1->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header1->opcode); |
+ EXPECT_FALSE(header1->masked); |
+ EXPECT_EQ(kHelloLength, header1->payload_length); |
+ |
+ ScopedVector<WebSocketPartialFrame> frames2; |
+ EXPECT_TRUE(parser.Decode(&input2.front(), input2.size(), &frames2)); |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_EQ(1u, frames2.size()); |
+ if (frames2.size() != 1u) |
+ continue; |
+ WebSocketPartialFrame* frame2 = frames2[0]; |
+ EXPECT_TRUE(frame2 != NULL); |
+ if (!frame2) |
+ continue; |
+ EXPECT_TRUE(frame2->final_part); |
+ EXPECT_EQ(expected2, frame2->data); |
+ const WebSocketFrameHeader* header2 = frame2->header.get(); |
+ EXPECT_TRUE(header2 != NULL); |
+ EXPECT_EQ(header1, header2); |
+ if (!header2) |
+ continue; |
+ EXPECT_TRUE(header2->final); |
+ EXPECT_FALSE(header2->reserved1); |
+ EXPECT_FALSE(header2->reserved2); |
+ EXPECT_FALSE(header2->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header2->opcode); |
+ EXPECT_FALSE(header2->masked); |
+ EXPECT_EQ(kHelloLength, header2->payload_length); |
+ } |
+} |
+ |
+TEST(WebSocketFrameParserTest, DecodePartialMaskedFrame) { |
+ static const size_t kFrameHeaderSize = 6; |
+ |
+ for (size_t cutting_pos = 0; cutting_pos < kHelloLength - 1; ++cutting_pos) { |
+ std::vector<char> input1( |
+ kMaskedHelloFrame, |
+ kMaskedHelloFrame + kFrameHeaderSize + cutting_pos); |
+ std::vector<char> input2(kMaskedHelloFrame + input1.size(), |
+ kMaskedHelloFrame + kMaskedHelloFrameLength); |
+ |
+ std::vector<char> expected1(kHello, kHello + cutting_pos); |
+ std::vector<char> expected2(kHello + cutting_pos, kHello + kHelloLength); |
+ |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames1; |
+ EXPECT_TRUE(parser.Decode(&input1.front(), input1.size(), &frames1)); |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_EQ(1u, frames1.size()); |
+ if (frames1.size() != 1u) |
+ continue; |
+ WebSocketPartialFrame* frame1 = frames1[0]; |
+ EXPECT_TRUE(frame1 != NULL); |
+ if (!frame1) |
+ continue; |
+ EXPECT_FALSE(frame1->final_part); |
+ EXPECT_EQ(expected1, frame1->data); |
+ const WebSocketFrameHeader* header1 = frame1->header.get(); |
+ EXPECT_TRUE(header1 != NULL); |
+ if (!header1) |
+ continue; |
+ EXPECT_TRUE(header1->final); |
+ EXPECT_FALSE(header1->reserved1); |
+ EXPECT_FALSE(header1->reserved2); |
+ EXPECT_FALSE(header1->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header1->opcode); |
+ EXPECT_TRUE(header1->masked); |
+ EXPECT_EQ(kHelloLength, header1->payload_length); |
+ |
+ ScopedVector<WebSocketPartialFrame> frames2; |
+ EXPECT_TRUE(parser.Decode(&input2.front(), input2.size(), &frames2)); |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_EQ(1u, frames2.size()); |
+ if (frames2.size() != 1u) |
+ continue; |
+ WebSocketPartialFrame* frame2 = frames2[0]; |
+ EXPECT_TRUE(frame2 != NULL); |
+ if (!frame2) |
+ continue; |
+ EXPECT_TRUE(frame2->final_part); |
+ EXPECT_EQ(expected2, frame2->data); |
+ const WebSocketFrameHeader* header2 = frame2->header.get(); |
+ EXPECT_TRUE(header2 != NULL); |
+ EXPECT_EQ(header1, header2); |
+ if (!header2) |
+ continue; |
+ EXPECT_TRUE(header2->final); |
+ EXPECT_FALSE(header2->reserved1); |
+ EXPECT_FALSE(header2->reserved2); |
+ EXPECT_FALSE(header2->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header2->opcode); |
+ EXPECT_TRUE(header2->masked); |
+ EXPECT_EQ(kHelloLength, header2->payload_length); |
+ } |
+} |
+ |
+TEST(WebSocketFrameParserTest, DecodeFramesOfVariousLengths) { |
+ for (int i = 0; i < kNumFrameHeaderTests; ++i) { |
+ const char* frame_header = kFrameHeaderTests[i].frame_header; |
+ size_t frame_header_length = kFrameHeaderTests[i].frame_header_length; |
+ uint64 frame_length = kFrameHeaderTests[i].frame_length; |
+ |
+ std::vector<char> input(frame_header, frame_header + frame_header_length); |
+ // Limit the payload size not to flood the console on failure. |
+ static const uint64 kMaxPayloadSize = 200; |
+ uint64 input_payload_size = std::min(frame_length, kMaxPayloadSize); |
+ input.insert(input.end(), input_payload_size, 'a'); |
+ |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames; |
+ EXPECT_TRUE(parser.Decode(&input.front(), input.size(), &frames)); |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_EQ(1u, frames.size()); |
+ if (frames.size() != 1u) |
+ continue; |
+ WebSocketPartialFrame* frame = frames[0]; |
+ EXPECT_TRUE(frame != NULL); |
+ if (!frame) |
+ continue; |
+ if (frame_length == input_payload_size) |
+ EXPECT_TRUE(frame->final_part); |
+ else |
+ EXPECT_FALSE(frame->final_part); |
+ std::vector<char> expected_payload(input_payload_size, 'a'); |
+ EXPECT_EQ(expected_payload, frame->data); |
+ const WebSocketFrameHeader* header = frame->header.get(); |
+ EXPECT_TRUE(header != NULL); |
+ if (!header) |
+ continue; |
+ EXPECT_TRUE(header->final); |
+ EXPECT_FALSE(header->reserved1); |
+ EXPECT_FALSE(header->reserved2); |
+ EXPECT_FALSE(header->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header->opcode); |
+ EXPECT_FALSE(header->masked); |
+ EXPECT_EQ(frame_length, header->payload_length); |
+ } |
+} |
+ |
+TEST(WebSocketFrameParserTest, DecodePartialHeader) { |
+ for (int i = 0; i < kNumFrameHeaderTests; ++i) { |
+ const char* frame_header = kFrameHeaderTests[i].frame_header; |
+ size_t frame_header_length = kFrameHeaderTests[i].frame_header_length; |
+ uint64 frame_length = kFrameHeaderTests[i].frame_length; |
+ |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames; |
+ // Feed each byte to the parser to see if the parser behaves correctly |
+ // when it receives partial frame header. |
+ for (size_t j = 0; j < frame_header_length; ++j) { |
+ EXPECT_TRUE(parser.Decode(frame_header + j, 1, &frames)); |
+ EXPECT_FALSE(parser.failed()); |
+ if (j == frame_header_length - 1) |
+ EXPECT_EQ(1u, frames.size()); |
+ else |
+ EXPECT_EQ(0u, frames.size()); |
+ } |
+ if (frames.size() != 1u) |
+ continue; |
+ WebSocketPartialFrame* frame = frames[0]; |
+ EXPECT_TRUE(frame != NULL); |
+ if (!frame) |
+ continue; |
+ if (frame_length == 0u) |
+ EXPECT_TRUE(frame->final_part); |
+ else |
+ EXPECT_FALSE(frame->final_part); |
+ EXPECT_EQ(std::vector<char>(), frame->data); |
+ const WebSocketFrameHeader* header = frame->header.get(); |
+ EXPECT_TRUE(header != NULL); |
+ if (!header) |
+ continue; |
+ EXPECT_TRUE(header->final); |
+ EXPECT_FALSE(header->reserved1); |
+ EXPECT_FALSE(header->reserved2); |
+ EXPECT_FALSE(header->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header->opcode); |
+ EXPECT_FALSE(header->masked); |
+ EXPECT_EQ(frame_length, header->payload_length); |
+ } |
+} |
+ |
+TEST(WebSocketFrameParserTest, InvalidLengthEncoding) { |
+ struct TestCase { |
+ const char* frame_header; |
+ size_t frame_header_length; |
+ }; |
+ static const TestCase kTests[] = { |
+ // For frames with two-byte extended length field, the payload length |
+ // should be 126 (0x7E) bytes or more. |
+ { "\x81\x7E\x00\x00", 4 }, |
+ { "\x81\x7E\x00\x7D", 4 }, |
+ // For frames with eight-byte extended length field, the payload length |
+ // should be 0x10000 bytes or more. |
+ { "\x81\x7F\x00\x00\x00\x00\x00\x00\x00\x00", 10 }, |
+ { "\x81\x7E\x00\x00\x00\x00\x00\x00\xFF\xFF", 10 }, |
+ }; |
+ static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); |
+ |
+ for (int i = 0; i < kNumTests; ++i) { |
+ const char* frame_header = kTests[i].frame_header; |
+ size_t frame_header_length = kTests[i].frame_header_length; |
+ |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames; |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_FALSE(parser.Decode(frame_header, frame_header_length, &frames)); |
+ EXPECT_TRUE(parser.failed()); |
+ EXPECT_EQ(0u, frames.size()); |
+ |
+ // Once the parser has failed, it no longer accepts any input (even if |
+ // the input is empty). |
+ EXPECT_FALSE(parser.Decode("", 0, &frames)); |
+ EXPECT_TRUE(parser.failed()); |
+ EXPECT_EQ(0u, frames.size()); |
+ } |
+} |
+ |
+TEST(WebSocketFrameParserTest, FrameTypes) { |
+ struct TestCase { |
+ const char* frame_header; |
+ size_t frame_header_length; |
+ WebSocketFrameHeader::OpCode opcode; |
+ }; |
+ static const TestCase kTests[] = { |
+ { "\x80\x00", 2, WebSocketFrameHeader::kOpCodeContinuation }, |
+ { "\x81\x00", 2, WebSocketFrameHeader::kOpCodeText }, |
+ { "\x82\x00", 2, WebSocketFrameHeader::kOpCodeBinary }, |
+ { "\x88\x00", 2, WebSocketFrameHeader::kOpCodeClose }, |
+ { "\x89\x00", 2, WebSocketFrameHeader::kOpCodePing }, |
+ { "\x8a\x00", 2, WebSocketFrameHeader::kOpCodePong }, |
+ // These are undefined opcodes, but the parser needs to be able to parse |
+ // them anyway. |
+ { "\x83\x00", 2, 0x3 }, |
+ { "\x84\x00", 2, 0x4 }, |
+ { "\x85\x00", 2, 0x5 }, |
+ { "\x86\x00", 2, 0x6 }, |
+ { "\x87\x00", 2, 0x7 }, |
+ { "\x8b\x00", 2, 0xb }, |
+ { "\x8c\x00", 2, 0xc }, |
+ { "\x8d\x00", 2, 0xd }, |
+ { "\x8e\x00", 2, 0xe }, |
+ { "\x8f\x00", 2, 0xf } |
+ }; |
+ static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); |
+ |
+ for (int i = 0; i < kNumTests; ++i) { |
+ const char* frame_header = kTests[i].frame_header; |
+ size_t frame_header_length = kTests[i].frame_header_length; |
+ WebSocketFrameHeader::OpCode opcode = kTests[i].opcode; |
+ |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames; |
+ EXPECT_TRUE(parser.Decode(frame_header, frame_header_length, &frames)); |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_EQ(1u, frames.size()); |
+ if (frames.size() != 1u) |
+ continue; |
+ WebSocketPartialFrame* frame = frames[0]; |
+ EXPECT_TRUE(frame != NULL); |
+ if (!frame) |
+ continue; |
+ EXPECT_TRUE(frame->final_part); |
+ EXPECT_EQ(std::vector<char>(), frame->data); |
+ const WebSocketFrameHeader* header = frame->header.get(); |
+ EXPECT_TRUE(header != NULL); |
+ if (!header) |
+ continue; |
+ EXPECT_TRUE(header->final); |
+ EXPECT_FALSE(header->reserved1); |
+ EXPECT_FALSE(header->reserved2); |
+ EXPECT_FALSE(header->reserved3); |
+ EXPECT_EQ(opcode, header->opcode); |
+ EXPECT_FALSE(header->masked); |
+ EXPECT_EQ(0u, header->payload_length); |
+ }; |
+} |
+ |
+TEST(WebSocketFrameParserTest, FinalBitAndReservedBits) { |
+ struct TestCase { |
+ const char* frame_header; |
+ size_t frame_header_length; |
+ bool final; |
+ bool reserved1; |
+ bool reserved2; |
+ bool reserved3; |
+ }; |
+ static const TestCase kTests[] = { |
+ { "\x81\x00", 2, true, false, false, false }, |
+ { "\x01\x00", 2, false, false, false, false }, |
+ { "\xC1\x00", 2, true, true, false, false }, |
+ { "\xA1\x00", 2, true, false, true, false }, |
+ { "\x91\x00", 2, true, false, false, true }, |
+ { "\x71\x00", 2, false, true, true, true }, |
+ { "\xF1\x00", 2, true, true, true, true } |
+ }; |
+ static const int kNumTests = ARRAYSIZE_UNSAFE(kTests); |
+ |
+ for (int i = 0; i < kNumTests; ++i) { |
+ const char* frame_header = kTests[i].frame_header; |
+ size_t frame_header_length = kTests[i].frame_header_length; |
+ bool final = kTests[i].final; |
+ bool reserved1 = kTests[i].reserved1; |
+ bool reserved2 = kTests[i].reserved2; |
+ bool reserved3 = kTests[i].reserved3; |
+ |
+ WebSocketFrameParser parser; |
+ |
+ ScopedVector<WebSocketPartialFrame> frames; |
+ EXPECT_TRUE(parser.Decode(frame_header, frame_header_length, &frames)); |
+ EXPECT_FALSE(parser.failed()); |
+ EXPECT_EQ(1u, frames.size()); |
+ if (frames.size() != 1u) |
+ continue; |
+ WebSocketPartialFrame* frame = frames[0]; |
+ EXPECT_TRUE(frame != NULL); |
+ if (!frame) |
+ continue; |
+ EXPECT_TRUE(frame->final_part); |
+ EXPECT_EQ(std::vector<char>(), frame->data); |
+ const WebSocketFrameHeader* header = frame->header.get(); |
+ EXPECT_TRUE(header != NULL); |
+ if (!header) |
+ continue; |
+ EXPECT_EQ(final, header->final); |
+ EXPECT_EQ(reserved1, header->reserved1); |
+ EXPECT_EQ(reserved2, header->reserved2); |
+ EXPECT_EQ(reserved3, header->reserved3); |
+ EXPECT_EQ(WebSocketFrameHeader::kOpCodeText, header->opcode); |
+ EXPECT_FALSE(header->masked); |
+ EXPECT_EQ(0u, header->payload_length); |
+ } |
+} |
+ |
+} // namespace net |