Coverage Report

Created: 2024-04-15 06:29

/proc/self/cwd/pw_protobuf/encoder_fuzzer.cc
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// Copyright 2019 The Pigweed Authors
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//
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// Licensed under the Apache License, Version 2.0 (the "License"); you may not
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// use this file except in compliance with the License. You may obtain a copy of
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// the License at
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//
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//     https://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS, WITHOUT
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// WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. See the
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// License for the specific language governing permissions and limitations under
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// the License.
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#include <cstddef>
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#include <cstdint>
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#include <cstring>
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#include <vector>
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#include "fuzz.h"
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#include "pw_fuzzer/asan_interface.h"
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#include "pw_fuzzer/fuzzed_data_provider.h"
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#include "pw_protobuf/encoder.h"
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#include "pw_span/span.h"
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namespace pw::protobuf::fuzz {
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namespace {
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// TODO: b/235289495 - Move this to pw_fuzzer/fuzzed_data_provider.h
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// Uses the given |provider| to pick and return a number between 0 and the
32
// maximum numbers of T that can be generated from the remaining input data.
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template <typename T>
34
51.0k
size_t ConsumeSize(FuzzedDataProvider& provider) {
35
51.0k
  size_t max = provider.remaining_bytes() / sizeof(T);
36
51.0k
  return provider.ConsumeIntegralInRange<size_t>(0, max);
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51.0k
}
encoder_fuzzer.cc:unsigned long pw::protobuf::fuzz::(anonymous namespace)::ConsumeSize<unsigned int>(FuzzedDataProvider&)
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Source
34
3.19k
size_t ConsumeSize(FuzzedDataProvider& provider) {
35
3.19k
  size_t max = provider.remaining_bytes() / sizeof(T);
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3.19k
  return provider.ConsumeIntegralInRange<size_t>(0, max);
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3.19k
}
encoder_fuzzer.cc:unsigned long pw::protobuf::fuzz::(anonymous namespace)::ConsumeSize<unsigned long>(FuzzedDataProvider&)
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Count
Source
34
4.12k
size_t ConsumeSize(FuzzedDataProvider& provider) {
35
4.12k
  size_t max = provider.remaining_bytes() / sizeof(T);
36
4.12k
  return provider.ConsumeIntegralInRange<size_t>(0, max);
37
4.12k
}
encoder_fuzzer.cc:unsigned long pw::protobuf::fuzz::(anonymous namespace)::ConsumeSize<int>(FuzzedDataProvider&)
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Source
34
4.20k
size_t ConsumeSize(FuzzedDataProvider& provider) {
35
4.20k
  size_t max = provider.remaining_bytes() / sizeof(T);
36
4.20k
  return provider.ConsumeIntegralInRange<size_t>(0, max);
37
4.20k
}
encoder_fuzzer.cc:unsigned long pw::protobuf::fuzz::(anonymous namespace)::ConsumeSize<long>(FuzzedDataProvider&)
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Source
34
3.87k
size_t ConsumeSize(FuzzedDataProvider& provider) {
35
3.87k
  size_t max = provider.remaining_bytes() / sizeof(T);
36
3.87k
  return provider.ConsumeIntegralInRange<size_t>(0, max);
37
3.87k
}
encoder_fuzzer.cc:unsigned long pw::protobuf::fuzz::(anonymous namespace)::ConsumeSize<float>(FuzzedDataProvider&)
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Source
34
1.99k
size_t ConsumeSize(FuzzedDataProvider& provider) {
35
1.99k
  size_t max = provider.remaining_bytes() / sizeof(T);
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1.99k
  return provider.ConsumeIntegralInRange<size_t>(0, max);
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1.99k
}
encoder_fuzzer.cc:unsigned long pw::protobuf::fuzz::(anonymous namespace)::ConsumeSize<double>(FuzzedDataProvider&)
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Source
34
2.03k
size_t ConsumeSize(FuzzedDataProvider& provider) {
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2.03k
  size_t max = provider.remaining_bytes() / sizeof(T);
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2.03k
  return provider.ConsumeIntegralInRange<size_t>(0, max);
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2.03k
}
encoder_fuzzer.cc:unsigned long pw::protobuf::fuzz::(anonymous namespace)::ConsumeSize<std::byte>(FuzzedDataProvider&)
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Source
34
31.6k
size_t ConsumeSize(FuzzedDataProvider& provider) {
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31.6k
  size_t max = provider.remaining_bytes() / sizeof(T);
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31.6k
  return provider.ConsumeIntegralInRange<size_t>(0, max);
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31.6k
}
38
39
// Uses the given |provider| to generate several instances of T, store them in
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// |data|, and then return a span to them. It is the caller's responsbility
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// to ensure |data| remains in scope as long as the returned span.
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template <typename T>
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19.4k
span<const T> ConsumeSpan(FuzzedDataProvider& provider, std::vector<T>* data) {
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19.4k
  size_t num = ConsumeSize<T>(provider);
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19.4k
  size_t off = data->size();
46
19.4k
  if (num == 0) {
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10.6k
    return span<const T>();
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10.6k
  }
49
50
8.81k
  data->reserve(off + num);
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17.0M
  for (size_t i = 0; i < num; ++i) {
52
17.0M
    if constexpr (std::is_floating_point<T>::value) {
53
13.5M
      data->push_back(provider.ConsumeFloatingPoint<T>());
54
13.5M
    } else {
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13.5M
      data->push_back(provider.ConsumeIntegral<T>());
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13.5M
    }
57
17.0M
  }
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8.81k
  return span(&((*data)[off]), num);
59
19.4k
}
encoder_fuzzer.cc:pw::span<unsigned int const, 18446744073709551615ul> pw::protobuf::fuzz::(anonymous namespace)::ConsumeSpan<unsigned int>(FuzzedDataProvider&, std::__1::vector<unsigned int, std::__1::allocator<unsigned int> >*)
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Source
43
3.19k
span<const T> ConsumeSpan(FuzzedDataProvider& provider, std::vector<T>* data) {
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3.19k
  size_t num = ConsumeSize<T>(provider);
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3.19k
  size_t off = data->size();
46
3.19k
  if (num == 0) {
47
1.61k
    return span<const T>();
48
1.61k
  }
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50
1.57k
  data->reserve(off + num);
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3.81M
  for (size_t i = 0; i < num; ++i) {
52
3.81M
    if constexpr (std::is_floating_point<T>::value) {
53
3.81M
      data->push_back(provider.ConsumeFloatingPoint<T>());
54
3.81M
    } else {
55
3.81M
      data->push_back(provider.ConsumeIntegral<T>());
56
3.81M
    }
57
3.81M
  }
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1.57k
  return span(&((*data)[off]), num);
59
3.19k
}
encoder_fuzzer.cc:pw::span<unsigned long const, 18446744073709551615ul> pw::protobuf::fuzz::(anonymous namespace)::ConsumeSpan<unsigned long>(FuzzedDataProvider&, std::__1::vector<unsigned long, std::__1::allocator<unsigned long> >*)
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Source
43
4.12k
span<const T> ConsumeSpan(FuzzedDataProvider& provider, std::vector<T>* data) {
44
4.12k
  size_t num = ConsumeSize<T>(provider);
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4.12k
  size_t off = data->size();
46
4.12k
  if (num == 0) {
47
2.18k
    return span<const T>();
48
2.18k
  }
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50
1.93k
  data->reserve(off + num);
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3.67M
  for (size_t i = 0; i < num; ++i) {
52
3.67M
    if constexpr (std::is_floating_point<T>::value) {
53
3.67M
      data->push_back(provider.ConsumeFloatingPoint<T>());
54
3.67M
    } else {
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3.67M
      data->push_back(provider.ConsumeIntegral<T>());
56
3.67M
    }
57
3.67M
  }
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1.93k
  return span(&((*data)[off]), num);
59
4.12k
}
encoder_fuzzer.cc:pw::span<int const, 18446744073709551615ul> pw::protobuf::fuzz::(anonymous namespace)::ConsumeSpan<int>(FuzzedDataProvider&, std::__1::vector<int, std::__1::allocator<int> >*)
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Source
43
4.20k
span<const T> ConsumeSpan(FuzzedDataProvider& provider, std::vector<T>* data) {
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4.20k
  size_t num = ConsumeSize<T>(provider);
45
4.20k
  size_t off = data->size();
46
4.20k
  if (num == 0) {
47
2.80k
    return span<const T>();
48
2.80k
  }
49
50
1.39k
  data->reserve(off + num);
51
3.95M
  for (size_t i = 0; i < num; ++i) {
52
3.95M
    if constexpr (std::is_floating_point<T>::value) {
53
3.95M
      data->push_back(provider.ConsumeFloatingPoint<T>());
54
3.95M
    } else {
55
3.95M
      data->push_back(provider.ConsumeIntegral<T>());
56
3.95M
    }
57
3.95M
  }
58
1.39k
  return span(&((*data)[off]), num);
59
4.20k
}
encoder_fuzzer.cc:pw::span<long const, 18446744073709551615ul> pw::protobuf::fuzz::(anonymous namespace)::ConsumeSpan<long>(FuzzedDataProvider&, std::__1::vector<long, std::__1::allocator<long> >*)
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Source
43
3.87k
span<const T> ConsumeSpan(FuzzedDataProvider& provider, std::vector<T>* data) {
44
3.87k
  size_t num = ConsumeSize<T>(provider);
45
3.87k
  size_t off = data->size();
46
3.87k
  if (num == 0) {
47
2.33k
    return span<const T>();
48
2.33k
  }
49
50
1.54k
  data->reserve(off + num);
51
2.09M
  for (size_t i = 0; i < num; ++i) {
52
2.08M
    if constexpr (std::is_floating_point<T>::value) {
53
2.08M
      data->push_back(provider.ConsumeFloatingPoint<T>());
54
2.08M
    } else {
55
2.08M
      data->push_back(provider.ConsumeIntegral<T>());
56
2.08M
    }
57
2.08M
  }
58
1.54k
  return span(&((*data)[off]), num);
59
3.87k
}
encoder_fuzzer.cc:pw::span<float const, 18446744073709551615ul> pw::protobuf::fuzz::(anonymous namespace)::ConsumeSpan<float>(FuzzedDataProvider&, std::__1::vector<float, std::__1::allocator<float> >*)
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Source
43
1.99k
span<const T> ConsumeSpan(FuzzedDataProvider& provider, std::vector<T>* data) {
44
1.99k
  size_t num = ConsumeSize<T>(provider);
45
1.99k
  size_t off = data->size();
46
1.99k
  if (num == 0) {
47
811
    return span<const T>();
48
811
  }
49
50
1.18k
  data->reserve(off + num);
51
2.12M
  for (size_t i = 0; i < num; ++i) {
52
2.12M
    if constexpr (std::is_floating_point<T>::value) {
53
2.12M
      data->push_back(provider.ConsumeFloatingPoint<T>());
54
2.12M
    } else {
55
2.12M
      data->push_back(provider.ConsumeIntegral<T>());
56
2.12M
    }
57
2.12M
  }
58
1.18k
  return span(&((*data)[off]), num);
59
1.99k
}
encoder_fuzzer.cc:pw::span<double const, 18446744073709551615ul> pw::protobuf::fuzz::(anonymous namespace)::ConsumeSpan<double>(FuzzedDataProvider&, std::__1::vector<double, std::__1::allocator<double> >*)
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Source
43
2.03k
span<const T> ConsumeSpan(FuzzedDataProvider& provider, std::vector<T>* data) {
44
2.03k
  size_t num = ConsumeSize<T>(provider);
45
2.03k
  size_t off = data->size();
46
2.03k
  if (num == 0) {
47
858
    return span<const T>();
48
858
  }
49
50
1.17k
  data->reserve(off + num);
51
1.34M
  for (size_t i = 0; i < num; ++i) {
52
1.34M
    if constexpr (std::is_floating_point<T>::value) {
53
1.34M
      data->push_back(provider.ConsumeFloatingPoint<T>());
54
1.34M
    } else {
55
1.34M
      data->push_back(provider.ConsumeIntegral<T>());
56
1.34M
    }
57
1.34M
  }
58
1.17k
  return span(&((*data)[off]), num);
59
2.03k
}
60
61
// Uses the given |provider| to generate a string, store it in |data|, and
62
// return a C-style representation. It is the caller's responsbility to
63
// ensure |data| remains in scope as long as the returned char*.
64
const char* ConsumeString(FuzzedDataProvider& provider,
65
102k
                          std::vector<std::string>* data) {
66
102k
  size_t off = data->size();
67
  // OSS-Fuzz's clang doesn't have the zero-parameter version of
68
  // ConsumeRandomLengthString yet.
69
102k
  size_t max_length = std::numeric_limits<size_t>::max();
70
102k
  data->push_back(provider.ConsumeRandomLengthString(max_length));
71
102k
  return (*data)[off].c_str();
72
102k
}
73
74
// Uses the given |provider| to generate non-arithmetic bytes, store them in
75
// |data|, and return a span to them. It is the caller's responsbility to
76
// ensure |data| remains in scope as long as the returned span.
77
span<const std::byte> ConsumeBytes(FuzzedDataProvider& provider,
78
31.6k
                                   std::vector<std::byte>* data) {
79
31.6k
  size_t num = ConsumeSize<std::byte>(provider);
80
31.6k
  auto added = provider.ConsumeBytes<std::byte>(num);
81
31.6k
  size_t off = data->size();
82
31.6k
  num = added.size();
83
31.6k
  data->insert(data->end(), added.begin(), added.end());
84
  // It's possible nothing was added, and the vector was empty to begin with.
85
31.6k
  if (data->empty()) {
86
4.58k
    return span<const std::byte>();
87
4.58k
  }
88
27.0k
  return span(&((*data)[off]), num);
89
31.6k
}
90
91
void RecursiveFuzzedEncode(FuzzedDataProvider& provider,
92
                           StreamEncoder& encoder,
93
21.1k
                           uint32_t depth = 0) {
94
21.1k
  constexpr size_t kMaxDepth = 256;
95
21.1k
  if (depth > kMaxDepth) {
96
866
    return;
97
866
  }
98
99
  // Storage for generated spans
100
20.3k
  std::vector<uint32_t> u32s;
101
20.3k
  std::vector<uint64_t> u64s;
102
20.3k
  std::vector<int32_t> s32s;
103
20.3k
  std::vector<int64_t> s64s;
104
20.3k
  std::vector<float> floats;
105
20.3k
  std::vector<double> doubles;
106
20.3k
  std::vector<std::string> strings;
107
20.3k
  std::vector<std::byte> bytes;
108
109
  // Consume the fuzzing input, using it to generate a sequence of fields to
110
  // encode. Both the uint32_t field IDs and the fields values are generated.
111
  // Don't try to detect errors, ensures pushes and pops are balanced, or
112
  // otherwise hold the interface correctly. Instead, fuzz the widest possbile
113
  // set of inputs to the encoder to ensure it doesn't misbehave.
114
1.16M
  while (provider.remaining_bytes() != 0) {
115
1.14M
    switch (provider.ConsumeEnum<FieldType>()) {
116
602k
      case kUint32:
117
602k
        encoder
118
602k
            .WriteUint32(provider.ConsumeIntegral<uint32_t>(),
119
602k
                         provider.ConsumeIntegral<uint32_t>())
120
602k
            .IgnoreError();
121
602k
        break;
122
2.31k
      case kPackedUint32:
123
2.31k
        encoder
124
2.31k
            .WritePackedUint32(provider.ConsumeIntegral<uint32_t>(),
125
2.31k
                               ConsumeSpan<uint32_t>(provider, &u32s))
126
2.31k
            .IgnoreError();
127
2.31k
        break;
128
1.59k
      case kUint64:
129
1.59k
        encoder
130
1.59k
            .WriteUint64(provider.ConsumeIntegral<uint32_t>(),
131
1.59k
                         provider.ConsumeIntegral<uint64_t>())
132
1.59k
            .IgnoreError();
133
1.59k
        break;
134
3.19k
      case kPackedUint64:
135
3.19k
        encoder
136
3.19k
            .WritePackedUint64(provider.ConsumeIntegral<uint32_t>(),
137
3.19k
                               ConsumeSpan<uint64_t>(provider, &u64s))
138
3.19k
            .IgnoreError();
139
3.19k
        break;
140
134k
      case kInt32:
141
134k
        encoder
142
134k
            .WriteInt32(provider.ConsumeIntegral<uint32_t>(),
143
134k
                        provider.ConsumeIntegral<int32_t>())
144
134k
            .IgnoreError();
145
134k
        break;
146
1.74k
      case kPackedInt32:
147
1.74k
        encoder
148
1.74k
            .WritePackedInt32(provider.ConsumeIntegral<uint32_t>(),
149
1.74k
                              ConsumeSpan<int32_t>(provider, &s32s))
150
1.74k
            .IgnoreError();
151
1.74k
        break;
152
56.4k
      case kInt64:
153
56.4k
        encoder
154
56.4k
            .WriteInt64(provider.ConsumeIntegral<uint32_t>(),
155
56.4k
                        provider.ConsumeIntegral<int64_t>())
156
56.4k
            .IgnoreError();
157
56.4k
        break;
158
1.26k
      case kPackedInt64:
159
1.26k
        encoder
160
1.26k
            .WritePackedInt64(provider.ConsumeIntegral<uint32_t>(),
161
1.26k
                              ConsumeSpan<int64_t>(provider, &s64s))
162
1.26k
            .IgnoreError();
163
1.26k
        break;
164
3.73k
      case kSint32:
165
3.73k
        encoder
166
3.73k
            .WriteSint32(provider.ConsumeIntegral<uint32_t>(),
167
3.73k
                         provider.ConsumeIntegral<int32_t>())
168
3.73k
            .IgnoreError();
169
3.73k
        break;
170
1.37k
      case kPackedSint32:
171
1.37k
        encoder
172
1.37k
            .WritePackedSint32(provider.ConsumeIntegral<uint32_t>(),
173
1.37k
                               ConsumeSpan<int32_t>(provider, &s32s))
174
1.37k
            .IgnoreError();
175
1.37k
        break;
176
2.28k
      case kSint64:
177
2.28k
        encoder
178
2.28k
            .WriteSint64(provider.ConsumeIntegral<uint32_t>(),
179
2.28k
                         provider.ConsumeIntegral<int64_t>())
180
2.28k
            .IgnoreError();
181
2.28k
        break;
182
1.62k
      case kPackedSint64:
183
1.62k
        encoder
184
1.62k
            .WritePackedSint64(provider.ConsumeIntegral<uint32_t>(),
185
1.62k
                               ConsumeSpan<int64_t>(provider, &s64s))
186
1.62k
            .IgnoreError();
187
1.62k
        break;
188
2.91k
      case kBool:
189
2.91k
        encoder
190
2.91k
            .WriteBool(provider.ConsumeIntegral<uint32_t>(),
191
2.91k
                       provider.ConsumeBool())
192
2.91k
            .IgnoreError();
193
2.91k
        break;
194
159k
      case kFixed32:
195
159k
        encoder
196
159k
            .WriteFixed32(provider.ConsumeIntegral<uint32_t>(),
197
159k
                          provider.ConsumeIntegral<uint32_t>())
198
159k
            .IgnoreError();
199
159k
        break;
200
875
      case kPackedFixed32:
201
875
        encoder
202
875
            .WritePackedFixed32(provider.ConsumeIntegral<uint32_t>(),
203
875
                                ConsumeSpan<uint32_t>(provider, &u32s))
204
875
            .IgnoreError();
205
875
        break;
206
1.07k
      case kFixed64:
207
1.07k
        encoder
208
1.07k
            .WriteFixed64(provider.ConsumeIntegral<uint32_t>(),
209
1.07k
                          provider.ConsumeIntegral<uint64_t>())
210
1.07k
            .IgnoreError();
211
1.07k
        break;
212
923
      case kPackedFixed64:
213
923
        encoder
214
923
            .WritePackedFixed64(provider.ConsumeIntegral<uint32_t>(),
215
923
                                ConsumeSpan<uint64_t>(provider, &u64s))
216
923
            .IgnoreError();
217
923
        break;
218
1.29k
      case kSfixed32:
219
1.29k
        encoder
220
1.29k
            .WriteSfixed32(provider.ConsumeIntegral<uint32_t>(),
221
1.29k
                           provider.ConsumeIntegral<int32_t>())
222
1.29k
            .IgnoreError();
223
1.29k
        break;
224
1.09k
      case kPackedSfixed32:
225
1.09k
        encoder
226
1.09k
            .WritePackedSfixed32(provider.ConsumeIntegral<uint32_t>(),
227
1.09k
                                 ConsumeSpan<int32_t>(provider, &s32s))
228
1.09k
            .IgnoreError();
229
1.09k
        break;
230
1.04k
      case kSfixed64:
231
1.04k
        encoder
232
1.04k
            .WriteSfixed64(provider.ConsumeIntegral<uint32_t>(),
233
1.04k
                           provider.ConsumeIntegral<int64_t>())
234
1.04k
            .IgnoreError();
235
1.04k
        break;
236
989
      case kPackedSfixed64:
237
989
        encoder
238
989
            .WritePackedSfixed64(provider.ConsumeIntegral<uint32_t>(),
239
989
                                 ConsumeSpan<int64_t>(provider, &s64s))
240
989
            .IgnoreError();
241
989
        break;
242
2.72k
      case kFloat:
243
2.72k
        encoder
244
2.72k
            .WriteFloat(provider.ConsumeIntegral<uint32_t>(),
245
2.72k
                        provider.ConsumeFloatingPoint<float>())
246
2.72k
            .IgnoreError();
247
2.72k
        break;
248
1.99k
      case kPackedFloat:
249
1.99k
        encoder
250
1.99k
            .WritePackedFloat(provider.ConsumeIntegral<uint32_t>(),
251
1.99k
                              ConsumeSpan<float>(provider, &floats))
252
1.99k
            .IgnoreError();
253
1.99k
        break;
254
1.54k
      case kDouble:
255
1.54k
        encoder
256
1.54k
            .WriteDouble(provider.ConsumeIntegral<uint32_t>(),
257
1.54k
                         provider.ConsumeFloatingPoint<double>())
258
1.54k
            .IgnoreError();
259
1.54k
        break;
260
2.03k
      case kPackedDouble:
261
2.03k
        encoder
262
2.03k
            .WritePackedDouble(provider.ConsumeIntegral<uint32_t>(),
263
2.03k
                               ConsumeSpan<double>(provider, &doubles))
264
2.03k
            .IgnoreError();
265
2.03k
        break;
266
31.6k
      case kBytes:
267
31.6k
        encoder
268
31.6k
            .WriteBytes(provider.ConsumeIntegral<uint32_t>(),
269
31.6k
                        ConsumeBytes(provider, &bytes))
270
31.6k
            .IgnoreError();
271
31.6k
        break;
272
102k
      case kString:
273
102k
        encoder
274
102k
            .WriteString(provider.ConsumeIntegral<uint32_t>(),
275
102k
                         ConsumeString(provider, &strings))
276
102k
            .IgnoreError();
277
102k
        break;
278
17.2k
      case kPush: {
279
        // Special "field". The marks the start of a nested message.
280
17.2k
        StreamEncoder nested_encoder =
281
17.2k
            encoder.GetNestedEncoder(provider.ConsumeIntegral<uint32_t>());
282
17.2k
        RecursiveFuzzedEncode(provider, nested_encoder, depth + 1);
283
17.2k
        break;
284
0
      }
285
0
      case kPop:
286
0
        if (depth > 0) {
287
          // Special "field". The marks the end of a nested message.
288
0
          return;
289
0
        }
290
1.14M
    }
291
1.14M
  }
292
20.3k
}
293
294
3.91k
void TestOneInput(FuzzedDataProvider& provider) {
295
3.91k
  static std::byte buffer[65536];
296
297
  // Pick a subset of the buffer that the fuzzer is allowed to use, and poison
298
  // the rest.
299
3.91k
  size_t unpoisoned_length =
300
3.91k
      provider.ConsumeIntegralInRange<size_t>(0, sizeof(buffer));
301
3.91k
  ByteSpan unpoisoned(buffer, unpoisoned_length);
302
3.91k
  void* poisoned = &buffer[unpoisoned_length];
303
3.91k
  size_t poisoned_length = sizeof(buffer) - unpoisoned_length;
304
3.91k
  ASAN_POISON_MEMORY_REGION(poisoned, poisoned_length);
305
306
3.91k
  pw::protobuf::MemoryEncoder encoder(unpoisoned);
307
3.91k
  RecursiveFuzzedEncode(provider, encoder);
308
309
  // Don't forget to unpoison for the next iteration!
310
3.91k
  ASAN_UNPOISON_MEMORY_REGION(poisoned, poisoned_length);
311
3.91k
}
312
313
}  // namespace
314
}  // namespace pw::protobuf::fuzz
315
316
6.62k
extern "C" int LLVMFuzzerTestOneInput(const uint8_t* data, size_t size) {
317
6.62k
  FuzzedDataProvider provider(data, size);
318
6.62k
  pw::protobuf::fuzz::TestOneInput(provider);
319
6.62k
  return 0;
320
6.62k
}