| Index: net/http2/decoder/decode_http2_structures_test.cc
 | 
| diff --git a/net/http2/decoder/decode_http2_structures_test.cc b/net/http2/decoder/decode_http2_structures_test.cc
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| deleted file mode 100644
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| index 4b09e7a7b83691fb79fb483948403a04be4d0e1c..0000000000000000000000000000000000000000
 | 
| --- a/net/http2/decoder/decode_http2_structures_test.cc
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| +++ /dev/null
 | 
| @@ -1,542 +0,0 @@
 | 
| -// Copyright 2016 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.
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| -
 | 
| -#include "net/http2/decoder/decode_http2_structures.h"
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| -
 | 
| -// Tests decoding all of the fixed size HTTP/2 structures (i.e. those defined
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| -// in net/http2/http2_structures.h).
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| -
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| -// TODO(jamessynge): Combine tests of DoDecode, MaybeDecode, SlowDecode and
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| -// Http2StructureDecoder test using gUnit's support for tests parameterized
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| -// by type.
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| -
 | 
| -#include <stddef.h>
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| -#include <string>
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| -
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| -#include "base/bind.h"
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| -#include "base/bind_helpers.h"
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| -#include "base/logging.h"
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| -#include "base/strings/string_piece.h"
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| -#include "net/http2/decoder/decode_buffer.h"
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| -#include "net/http2/decoder/decode_status.h"
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| -#include "net/http2/http2_constants.h"
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| -#include "net/http2/http2_structures_test_util.h"
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| -#include "net/http2/tools/http2_frame_builder.h"
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| -#include "net/http2/tools/random_decoder_test.h"
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| -#include "testing/gtest/include/gtest/gtest.h"
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| -
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| -using ::testing::AssertionFailure;
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| -using ::testing::AssertionResult;
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| -using ::testing::AssertionSuccess;
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| -using base::StringPiece;
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| -using std::string;
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| -
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| -namespace net {
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| -namespace test {
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| -namespace {
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| -
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| -template <class S>
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| -string SerializeStructure(const S& s) {
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| -  Http2FrameBuilder fb;
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| -  fb.Append(s);
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| -  EXPECT_EQ(S::EncodedSize(), fb.size());
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| -  return fb.buffer();
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| -}
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| -
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| -template <class S>
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| -class StructureDecoderTest : public RandomDecoderTest {
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| - protected:
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| -  typedef S Structure;
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| -
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| -  StructureDecoderTest() {
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| -    // IF the test adds more data after the encoded structure, stop as
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| -    // soon as the structure is decoded.
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| -    stop_decode_on_done_ = true;
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| -  }
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| -
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| -  // Reset the decoding to the start of the structure, and overwrite the
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| -  // current contents of |structure_|, in to which we'll decode the buffer.
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| -  DecodeStatus StartDecoding(DecodeBuffer* b) override {
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| -    decode_offset_ = 0;
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| -    Randomize(&structure_);
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| -    return ResumeDecoding(b);
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| -  }
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| -
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| -  DecodeStatus ResumeDecoding(DecodeBuffer* b) override {
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| -    // If we're at the start...
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| -    if (decode_offset_ == 0) {
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| -      const uint32_t start_offset = b->Offset();
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| -      const char* const start_cursor = b->cursor();
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| -      // ... attempt to decode the entire structure.
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| -      if (MaybeDecode(&structure_, b)) {
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| -        ++fast_decode_count_;
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| -        EXPECT_EQ(S::EncodedSize(), b->Offset() - start_offset);
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| -
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| -        if (!HasFailure()) {
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| -          // Success. Confirm that SlowDecode produces the same result.
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| -          DecodeBuffer b2(start_cursor, b->Offset() - start_offset);
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| -          S second;
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| -          Randomize(&second);
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| -          uint32_t second_offset = 0;
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| -          EXPECT_TRUE(SlowDecode(&second, &b2, &second_offset));
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| -          EXPECT_EQ(S::EncodedSize(), second_offset);
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| -          EXPECT_EQ(structure_, second);
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| -        }
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| -
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| -        // Test can't easily tell if MaybeDecode or SlowDecode is used, so
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| -        // update decode_offset_ as if SlowDecode had been used to completely
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| -        // decode.
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| -        decode_offset_ = S::EncodedSize();
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| -        return DecodeStatus::kDecodeDone;
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| -      }
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| -    }
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| -
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| -    // We didn't have enough in the first buffer to decode everything, so we'll
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| -    // reach here multiple times until we've completely decoded the structure.
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| -    if (SlowDecode(&structure_, b, &decode_offset_)) {
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| -      ++slow_decode_count_;
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| -      EXPECT_EQ(S::EncodedSize(), decode_offset_);
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| -      return DecodeStatus::kDecodeDone;
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| -    }
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| -
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| -    // Drained the input buffer, but not yet done.
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| -    EXPECT_TRUE(b->Empty());
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| -    EXPECT_GT(S::EncodedSize(), decode_offset_);
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| -
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| -    return DecodeStatus::kDecodeInProgress;
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| -  }
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| -
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| -  // Set the fields of |*p| to random values.
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| -  void Randomize(S* p) { ::net::test::Randomize(p, RandomPtr()); }
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| -
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| -  AssertionResult ValidatorForDecodeLeadingStructure(const S* expected,
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| -                                                     const DecodeBuffer& db,
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| -                                                     DecodeStatus status) {
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| -    if (expected != nullptr && *expected != structure_) {
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| -      return AssertionFailure()
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| -             << "Expected structs to be equal\nExpected: " << *expected
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| -             << "\n  Actual: " << structure_;
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| -    }
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| -    return AssertionSuccess();
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| -  }
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| -
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| -  // Fully decodes the Structure at the start of data, and confirms it matches
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| -  // *expected (if provided).
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| -  void DecodeLeadingStructure(const S* expected, StringPiece data) {
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| -    ASSERT_LE(S::EncodedSize(), data.size());
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| -    DecodeBuffer original(data);
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| -
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| -    // The validator is called after each of the several times that the input
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| -    // DecodeBuffer is decoded, each with a different segmentation of the input.
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| -    // Validate that structure_ matches the expected value, if provided.
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| -    Validator validator =
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| -        base::Bind(&StructureDecoderTest::ValidatorForDecodeLeadingStructure,
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| -                   base::Unretained(this), expected);
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| -
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| -    // First validate that decoding is done and that we've advanced the cursor
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| -    // the expected amount.
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| -    Validator wrapped_validator =
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| -        ValidateDoneAndOffset(S::EncodedSize(), validator);
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| -
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| -    // Decode several times, with several segmentations of the input buffer.
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| -    fast_decode_count_ = 0;
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| -    slow_decode_count_ = 0;
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| -    EXPECT_TRUE(DecodeAndValidateSeveralWays(
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| -        &original, false /*return_non_zero_on_first*/, wrapped_validator));
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| -
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| -    if (!HasFailure()) {
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| -      EXPECT_EQ(S::EncodedSize(), decode_offset_);
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| -      EXPECT_EQ(S::EncodedSize(), original.Offset());
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| -      EXPECT_LT(0u, fast_decode_count_);
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| -      EXPECT_LT(0u, slow_decode_count_);
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| -      if (expected != nullptr) {
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| -        DVLOG(1) << "DecodeLeadingStructure expected: " << *expected;
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| -        DVLOG(1) << "DecodeLeadingStructure   actual: " << structure_;
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| -        EXPECT_EQ(*expected, structure_);
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| -      }
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| -    }
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| -  }
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| -
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| -  template <size_t N>
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| -  void DecodeLeadingStructure(const char (&data)[N]) {
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| -    DecodeLeadingStructure(nullptr, StringPiece(data, N));
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| -  }
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| -
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| -  // Encode the structure |in_s| into bytes, then decode the bytes
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| -  // and validate that the decoder produced the same field values.
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| -  void EncodeThenDecode(const S& in_s) {
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| -    string bytes = SerializeStructure(in_s);
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| -    EXPECT_EQ(S::EncodedSize(), bytes.size());
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| -    DecodeLeadingStructure(&in_s, bytes);
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| -  }
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| -
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| -  // Generate
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| -  void TestDecodingRandomizedStructures(size_t count) {
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| -    for (size_t i = 0; i < count && !HasFailure(); ++i) {
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| -      Structure input;
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| -      Randomize(&input);
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| -      EncodeThenDecode(input);
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| -    }
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| -  }
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| -
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| -  uint32_t decode_offset_ = 0;
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| -  S structure_;
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| -  size_t fast_decode_count_ = 0;
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| -  size_t slow_decode_count_ = 0;
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| -};
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| -
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| -class FrameHeaderDecoderTest : public StructureDecoderTest<Http2FrameHeader> {};
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| -
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| -TEST_F(FrameHeaderDecoderTest, DecodesLiteral) {
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| -  {
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| -    // Realistic input.
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| -    const char kData[] = {
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| -        0x00, 0x00, 0x05,        // Payload length: 5
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| -        0x01,                    // Frame type: HEADERS
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| -        0x08,                    // Flags: PADDED
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| -        0x00, 0x00, 0x00, 0x01,  // Stream ID: 1
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| -        0x04,                    // Padding length: 4
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| -        0x00, 0x00, 0x00, 0x00,  // Padding bytes
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| -    };
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| -    DecodeLeadingStructure(kData);
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| -    if (!HasFailure()) {
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| -      EXPECT_EQ(5u, structure_.payload_length);
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| -      EXPECT_EQ(Http2FrameType::HEADERS, structure_.type);
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| -      EXPECT_EQ(Http2FrameFlag::FLAG_PADDED, structure_.flags);
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| -      EXPECT_EQ(1u, structure_.stream_id);
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| -    }
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| -  }
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| -  {
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| -    // Unlikely input.
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| -    const char kData[] = {
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| -        0xffu, 0xffu, 0xffu,         // Payload length: uint24 max
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| -        0xffu,                       // Frame type: Unknown
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| -        0xffu,                       // Flags: Unknown/All
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| -        0xffu, 0xffu, 0xffu, 0xffu,  // Stream ID: uint31 max, plus R-bit
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| -    };
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| -    DecodeLeadingStructure(kData);
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| -    if (!HasFailure()) {
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| -      EXPECT_EQ((1u << 24) - 1, structure_.payload_length);
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| -      EXPECT_EQ(static_cast<Http2FrameType>(255), structure_.type);
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| -      EXPECT_EQ(255, structure_.flags);
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| -      EXPECT_EQ(0x7FFFFFFFu, structure_.stream_id);
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| -    }
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| -  }
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| -}
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| -
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| -TEST_F(FrameHeaderDecoderTest, DecodesRandomized) {
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| -  TestDecodingRandomizedStructures(100);
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| -}
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| -
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| -//------------------------------------------------------------------------------
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| -
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| -class PriorityFieldsDecoderTest
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| -    : public StructureDecoderTest<Http2PriorityFields> {};
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| -
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| -TEST_F(PriorityFieldsDecoderTest, DecodesLiteral) {
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| -  {
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| -    const char kData[] = {
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| -        0x80u, 0x00, 0x00, 0x05,  // Exclusive (yes) and Dependency (5)
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| -        0xffu,                    // Weight: 256 (after adding 1)
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| -    };
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| -    DecodeLeadingStructure(kData);
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| -    if (!HasFailure()) {
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| -      EXPECT_EQ(5u, structure_.stream_dependency);
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| -      EXPECT_EQ(256u, structure_.weight);
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| -      EXPECT_EQ(true, structure_.is_exclusive);
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| -    }
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| -  }
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| -  {
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| -    const char kData[] = {
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| -        0x7f,  0xffu,
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| -        0xffu, 0xffu,  // Exclusive (no) and Dependency (0x7fffffff)
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| -        0x00,          // Weight: 1 (after adding 1)
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| -    };
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| -    DecodeLeadingStructure(kData);
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| -    if (!HasFailure()) {
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| -      EXPECT_EQ(StreamIdMask(), structure_.stream_dependency);
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| -      EXPECT_EQ(1u, structure_.weight);
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| -      EXPECT_FALSE(structure_.is_exclusive);
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| -    }
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| -  }
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| -}
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| -
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| -TEST_F(PriorityFieldsDecoderTest, DecodesRandomized) {
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| -  TestDecodingRandomizedStructures(100);
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| -}
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| -
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| -//------------------------------------------------------------------------------
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| -
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| -class RstStreamFieldsDecoderTest
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| -    : public StructureDecoderTest<Http2RstStreamFields> {};
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| -
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| -TEST_F(RstStreamFieldsDecoderTest, DecodesLiteral) {
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| -  {
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| -    const char kData[] = {
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| -        0x00, 0x00, 0x00, 0x01,  // Error: PROTOCOL_ERROR
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| -    };
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| -    DecodeLeadingStructure(kData);
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| -    if (!HasFailure()) {
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| -      EXPECT_TRUE(structure_.IsSupportedErrorCode());
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| -      EXPECT_EQ(Http2ErrorCode::PROTOCOL_ERROR, structure_.error_code);
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| -    }
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| -  }
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| -  {
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| -    const char kData[] = {
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| -        0xffu, 0xffu, 0xffu, 0xffu,  // Error: max uint32 (Unknown error code)
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| -    };
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| -    DecodeLeadingStructure(kData);
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| -    if (!HasFailure()) {
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| -      EXPECT_FALSE(structure_.IsSupportedErrorCode());
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| -      EXPECT_EQ(static_cast<Http2ErrorCode>(0xffffffff), structure_.error_code);
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| -    }
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| -  }
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| -}
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| -
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| -TEST_F(RstStreamFieldsDecoderTest, DecodesRandomized) {
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| -  TestDecodingRandomizedStructures(100);
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| -}
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| -
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| -//------------------------------------------------------------------------------
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| -
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| -class SettingFieldsDecoderTest
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| -    : public StructureDecoderTest<Http2SettingFields> {};
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| -
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| -TEST_F(SettingFieldsDecoderTest, DecodesLiteral) {
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| -  {
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| -    const char kData[] = {
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| -        0x00, 0x01,              // Setting: HEADER_TABLE_SIZE
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| -        0x00, 0x00, 0x40, 0x00,  // Value: 16K
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| -    };
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| -    DecodeLeadingStructure(kData);
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| -    if (!HasFailure()) {
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| -      EXPECT_TRUE(structure_.IsSupportedParameter());
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| -      EXPECT_EQ(Http2SettingsParameter::HEADER_TABLE_SIZE,
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| -                structure_.parameter);
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| -      EXPECT_EQ(1u << 14, structure_.value);
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| -    }
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| -  }
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| -  {
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| -    const char kData[] = {
 | 
| -        0x00,  0x00,                 // Setting: Unknown (0)
 | 
| -        0xffu, 0xffu, 0xffu, 0xffu,  // Value: max uint32
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_FALSE(structure_.IsSupportedParameter());
 | 
| -      EXPECT_EQ(static_cast<Http2SettingsParameter>(0), structure_.parameter);
 | 
| -    }
 | 
| -  }
 | 
| -}
 | 
| -
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| -TEST_F(SettingFieldsDecoderTest, DecodesRandomized) {
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| -  TestDecodingRandomizedStructures(100);
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| -}
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| -
 | 
| -//------------------------------------------------------------------------------
 | 
| -
 | 
| -class PushPromiseFieldsDecoderTest
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| -    : public StructureDecoderTest<Http2PushPromiseFields> {};
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| -
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| -TEST_F(PushPromiseFieldsDecoderTest, DecodesLiteral) {
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| -  {
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| -    const char kData[] = {
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| -        0x00, 0x01, 0x8au, 0x92u,  // Promised Stream ID: 101010
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(101010u, structure_.promised_stream_id);
 | 
| -    }
 | 
| -  }
 | 
| -  {
 | 
| -    // Promised stream id has R-bit (reserved for future use) set, which
 | 
| -    // should be cleared by the decoder.
 | 
| -    const char kData[] = {
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| -        0xffu, 0xffu, 0xffu, 0xffu,  // Promised Stream ID: max uint31 and R-bit
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(StreamIdMask(), structure_.promised_stream_id);
 | 
| -    }
 | 
| -  }
 | 
| -}
 | 
| -
 | 
| -TEST_F(PushPromiseFieldsDecoderTest, DecodesRandomized) {
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| -  TestDecodingRandomizedStructures(100);
 | 
| -}
 | 
| -
 | 
| -//------------------------------------------------------------------------------
 | 
| -
 | 
| -class PingFieldsDecoderTest : public StructureDecoderTest<Http2PingFields> {};
 | 
| -
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| -TEST_F(PingFieldsDecoderTest, DecodesLiteral) {
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| -  {
 | 
| -    // Each byte is different, so can detect if order changed.
 | 
| -    const char kData[] = {
 | 
| -        0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(StringPiece(kData, 8), ToStringPiece(structure_.opaque_data));
 | 
| -    }
 | 
| -  }
 | 
| -  {
 | 
| -    // All zeros, detect problems handling NULs.
 | 
| -    const char kData[] = {
 | 
| -        0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(StringPiece(kData, 8), ToStringPiece(structure_.opaque_data));
 | 
| -    }
 | 
| -  }
 | 
| -  {
 | 
| -    const char kData[] = {
 | 
| -        0xffu, 0xffu, 0xffu, 0xffu, 0xffu, 0xffu, 0xffu, 0xffu,
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(StringPiece(kData, 8), ToStringPiece(structure_.opaque_data));
 | 
| -    }
 | 
| -  }
 | 
| -}
 | 
| -
 | 
| -TEST_F(PingFieldsDecoderTest, DecodesRandomized) {
 | 
| -  TestDecodingRandomizedStructures(100);
 | 
| -}
 | 
| -
 | 
| -//------------------------------------------------------------------------------
 | 
| -
 | 
| -class GoAwayFieldsDecoderTest : public StructureDecoderTest<Http2GoAwayFields> {
 | 
| -};
 | 
| -
 | 
| -TEST_F(GoAwayFieldsDecoderTest, DecodesLiteral) {
 | 
| -  {
 | 
| -    const char kData[] = {
 | 
| -        0x00, 0x00, 0x00, 0x00,  // Last Stream ID: 0
 | 
| -        0x00, 0x00, 0x00, 0x00,  // Error: NO_ERROR (0)
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(0u, structure_.last_stream_id);
 | 
| -      EXPECT_TRUE(structure_.IsSupportedErrorCode());
 | 
| -      EXPECT_EQ(Http2ErrorCode::HTTP2_NO_ERROR, structure_.error_code);
 | 
| -    }
 | 
| -  }
 | 
| -  {
 | 
| -    const char kData[] = {
 | 
| -        0x00, 0x00, 0x00, 0x01,  // Last Stream ID: 1
 | 
| -        0x00, 0x00, 0x00, 0x0d,  // Error: HTTP_1_1_REQUIRED
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(1u, structure_.last_stream_id);
 | 
| -      EXPECT_TRUE(structure_.IsSupportedErrorCode());
 | 
| -      EXPECT_EQ(Http2ErrorCode::HTTP_1_1_REQUIRED, structure_.error_code);
 | 
| -    }
 | 
| -  }
 | 
| -  {
 | 
| -    const char kData[] = {
 | 
| -        0xffu, 0xffu, 0xffu, 0xffu,  // Last Stream ID: max uint31 and R-bit
 | 
| -        0xffu, 0xffu, 0xffu, 0xffu,  // Error: max uint32 (Unknown error code)
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(StreamIdMask(), structure_.last_stream_id);  // No high-bit.
 | 
| -      EXPECT_FALSE(structure_.IsSupportedErrorCode());
 | 
| -      EXPECT_EQ(static_cast<Http2ErrorCode>(0xffffffff), structure_.error_code);
 | 
| -    }
 | 
| -  }
 | 
| -}
 | 
| -
 | 
| -TEST_F(GoAwayFieldsDecoderTest, DecodesRandomized) {
 | 
| -  TestDecodingRandomizedStructures(100);
 | 
| -}
 | 
| -
 | 
| -//------------------------------------------------------------------------------
 | 
| -
 | 
| -class WindowUpdateFieldsDecoderTest
 | 
| -    : public StructureDecoderTest<Http2WindowUpdateFields> {};
 | 
| -
 | 
| -TEST_F(WindowUpdateFieldsDecoderTest, DecodesLiteral) {
 | 
| -  {
 | 
| -    const char kData[] = {
 | 
| -        0x00, 0x01, 0x00, 0x00,  // Window Size Increment: 2 ^ 16
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(1u << 16, structure_.window_size_increment);
 | 
| -    }
 | 
| -  }
 | 
| -  {
 | 
| -    // Increment must be non-zero, but we need to be able to decode the invalid
 | 
| -    // zero to detect it.
 | 
| -    const char kData[] = {
 | 
| -        0x00, 0x00, 0x00, 0x00,  // Window Size Increment: 0
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(0u, structure_.window_size_increment);
 | 
| -    }
 | 
| -  }
 | 
| -  {
 | 
| -    // Increment has R-bit (reserved for future use) set, which
 | 
| -    // should be cleared by the decoder.
 | 
| -    const char kData[] = {
 | 
| -        0xffu, 0xffu, 0xffu,
 | 
| -        0xffu,  // Window Size Increment: max uint31 and R-bit
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(StreamIdMask(), structure_.window_size_increment);
 | 
| -    }
 | 
| -  }
 | 
| -}
 | 
| -
 | 
| -TEST_F(WindowUpdateFieldsDecoderTest, DecodesRandomized) {
 | 
| -  TestDecodingRandomizedStructures(100);
 | 
| -}
 | 
| -
 | 
| -//------------------------------------------------------------------------------
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| -
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| -class AltSvcFieldsDecoderTest : public StructureDecoderTest<Http2AltSvcFields> {
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| -};
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| -
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| -TEST_F(AltSvcFieldsDecoderTest, DecodesLiteral) {
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| -  {
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| -    const char kData[] = {
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| -        0x00, 0x00,  // Origin Length: 0
 | 
| -    };
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| -    DecodeLeadingStructure(kData);
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| -    if (!HasFailure()) {
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| -      EXPECT_EQ(0, structure_.origin_length);
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| -    }
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| -  }
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| -  {
 | 
| -    const char kData[] = {
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| -        0x00, 0x14,  // Origin Length: 20
 | 
| -    };
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| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
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| -      EXPECT_EQ(20, structure_.origin_length);
 | 
| -    }
 | 
| -  }
 | 
| -  {
 | 
| -    const char kData[] = {
 | 
| -        0xffu, 0xffu,  // Origin Length: uint16 max
 | 
| -    };
 | 
| -    DecodeLeadingStructure(kData);
 | 
| -    if (!HasFailure()) {
 | 
| -      EXPECT_EQ(65535, structure_.origin_length);
 | 
| -    }
 | 
| -  }
 | 
| -}
 | 
| -
 | 
| -TEST_F(AltSvcFieldsDecoderTest, DecodesRandomized) {
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| -  TestDecodingRandomizedStructures(100);
 | 
| -}
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| -
 | 
| -}  // namespace
 | 
| -}  // namespace test
 | 
| -}  // namespace net
 | 
| 
 |