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Side by Side Diff: components/tracing/core/trace_buffer_writer_unittest.cc

Issue 2196663002: tracing v2: Introduce TraceBufferWriter (Closed) Base URL: https://chromium.googlesource.com/chromium/src.git@proto_refactor
Patch Set: Add TRACING_EXPORT also to nested class Created 4 years, 4 months ago
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1 // Copyright 2016 The Chromium Authors. All rights reserved.
2 // Use of this source code is governed by a BSD-style license that can be
3 // found in the LICENSE file.
4
5 #include "components/tracing/core/trace_buffer_writer.h"
6
7 #include "base/memory/ptr_util.h"
8 #include "base/strings/string_number_conversions.h"
9 #include "components/tracing/core/trace_ring_buffer.h"
10 #include "components/tracing/test/golden_protos/events_chunk.pb.h"
11 #include "testing/gtest/include/gtest/gtest.h"
12
13 namespace tracing {
14 namespace v2 {
15 namespace {
16
17 class MockEvent : public proto::Event {
18 public:
19 static TraceEventHandle Add(TraceBufferWriter* writer, size_t event_size) {
20 TraceEventHandle handle = writer->AddEvent();
21 MockEvent* mock_event = static_cast<MockEvent*>(&*handle);
22
23 size_t buffer_size = 0;
24 DCHECK_GT(event_size, 2u);
25 if (event_size < (1 << 7) + 2)
26 buffer_size = event_size - 2;
27 else if (event_size < (1 << 14) + 3)
28 buffer_size = event_size - 3;
29 else if (event_size < (1 << 21) + 4)
30 buffer_size = event_size - 4;
31 else
32 NOTREACHED();
33
34 DCHECK(buffer_size);
35 std::unique_ptr<uint8_t[]> buf(new uint8_t[buffer_size]);
36 memset(buf.get(), 0, buffer_size);
37 mock_event->AppendBytes(1, buf.get(), buffer_size);
38
39 return handle;
40 }
41
42 private:
43 DISALLOW_COPY_AND_ASSIGN(MockEvent);
44 };
45
46 constexpr uint32_t kChunkSize = TraceRingBuffer::Chunk::kSize;
47 constexpr uint32_t kNumChunks = 10;
48 constexpr size_t kBufferSize = kNumChunks * kChunkSize;
49
50 class TraceBufferWriterTest : public ::testing::Test {
51 public:
52 void SetUp() override {
53 ring_buf_mem_.reset(new uint8_t[kBufferSize]);
54 memset(ring_buf_mem_.get(), 0, kBufferSize);
55 ring_buf_.reset(new TraceRingBuffer(ring_buf_mem_.get(), kBufferSize));
56
57 // Estimate the size required to fill one event.
58 std::unique_ptr<TraceBufferWriter> writer = CreateWriter(1);
59 MockEvent::Add(&*writer, 4);
60 event_size_to_fill_chunk_ = writer->stream_writer().bytes_available() + 4;
61 writer.reset();
62 ring_buf_.reset(new TraceRingBuffer(ring_buf_mem_.get(), kBufferSize));
63 }
64
65 void TearDown() override {
66 ring_buf_.reset();
67 ring_buf_mem_.reset();
68 }
69
70 std::unique_ptr<TraceBufferWriter> CreateWriter(uint32_t writer_id) {
71 return base::WrapUnique(new TraceBufferWriter(ring_buf_.get(), writer_id));
72 }
73
74 const TraceRingBuffer::Chunk* GetChunk(uint32_t i) {
75 DCHECK_LT(i, kNumChunks);
76 return &ring_buf_->chunks_for_testing()[i];
77 }
78
79 proto::EventsChunk ReadBackAndTestChunk(uint32_t chunk_id,
80 uint32_t expected_writer_id,
81 uint32_t expected_seq_id,
82 int expected_num_events,
83 bool expected_first_event_continues,
84 bool expected_last_event_continues) {
85 const TraceRingBuffer::Chunk* chunk = GetChunk(chunk_id);
86 proto::EventsChunk parsed_chunk;
87 EXPECT_TRUE(
88 parsed_chunk.ParseFromArray(chunk->payload(), chunk->used_size()));
89
90 EXPECT_TRUE(parsed_chunk.has_writer_id());
91 EXPECT_EQ(expected_writer_id, parsed_chunk.writer_id());
92
93 EXPECT_TRUE(parsed_chunk.has_seq_id());
94 EXPECT_EQ(expected_seq_id, parsed_chunk.seq_id());
95
96 EXPECT_EQ(expected_first_event_continues,
97 parsed_chunk.first_event_continues_from_prev_chunk());
98 EXPECT_EQ(expected_last_event_continues,
99 parsed_chunk.last_event_continues_on_next_chunk());
100 EXPECT_EQ(expected_num_events, parsed_chunk.events_size());
101 return parsed_chunk;
102 }
103
104 const TraceRingBuffer& ring_buffer() const { return *ring_buf_; }
105 size_t event_size_to_fill_chunk() const { return event_size_to_fill_chunk_; }
106
107 private:
108 std::unique_ptr<uint8_t[]> ring_buf_mem_;
109 std::unique_ptr<TraceRingBuffer> ring_buf_;
110 size_t event_size_to_fill_chunk_;
111 };
112
113 TEST_F(TraceBufferWriterTest, SingleEvent) {
114 const uint32_t kWriterId = 0x42;
115 std::unique_ptr<TraceBufferWriter> writer = CreateWriter(kWriterId);
116 MockEvent::Add(writer.get(), 7);
117 writer->Flush();
118
119 auto parsed_chunk = ReadBackAndTestChunk(0, kWriterId, 0, 1, false, false);
120 EXPECT_EQ(7u, parsed_chunk.events(0).size());
121 }
122
123 TEST_F(TraceBufferWriterTest, ManySmallEvents) {
124 const uint32_t kWriterId = 0x42;
125 std::unique_ptr<TraceBufferWriter> writer = CreateWriter(kWriterId);
126
127 uint32_t last_owned_chunk_id = 1;
128 uint32_t num_times_did_switch_to_chunk[kNumChunks] = {};
129
130 // kBufferSize here is just an upper bound to prevent the test to get stuck
131 // undefinitely in the loop if it fails.
132 for (size_t i = 0; i < kBufferSize; i++) {
133 MockEvent::Add(&*writer, 5);
134
135 // Small events shouldn't never cause more than a chunk to be owned. Check
136 // that TraceBufferWriter doesn't accidentally retain chunks.
137 uint32_t num_chunks_owned = 0;
138 for (uint32_t chunk_id = 0; chunk_id < kNumChunks; chunk_id++) {
139 const bool is_owned = GetChunk(chunk_id)->is_owned();
140 num_chunks_owned += is_owned ? 1 : 0;
141 if (is_owned && chunk_id != last_owned_chunk_id) {
142 last_owned_chunk_id = chunk_id;
143 num_times_did_switch_to_chunk[chunk_id]++;
144 }
145 }
146 ASSERT_EQ(1u, num_chunks_owned);
147
148 // Stop once the last chunk has been filled twice.
149 if (num_times_did_switch_to_chunk[kNumChunks - 1] == 2)
150 break;
151 }
152
153 // Test the wrap-over logic: all chunks should have been filled twice.
154 for (uint32_t chunk_id = 0; chunk_id < kNumChunks; chunk_id++)
155 EXPECT_EQ(2u, num_times_did_switch_to_chunk[chunk_id]);
156
157 // Test that Flush() releases all chunks.
158 writer->Flush();
159 for (uint32_t chunk_id = 0; chunk_id < kNumChunks; chunk_id++)
160 EXPECT_FALSE(GetChunk(chunk_id)->is_owned());
161 }
162
163 TEST_F(TraceBufferWriterTest, OneWriterWithFragmentingEvents) {
164 const uint32_t kWriterId = 0x42;
165 std::unique_ptr<TraceBufferWriter> writer = CreateWriter(kWriterId);
166
167 MockEvent::Add(&*writer, event_size_to_fill_chunk());
168
169 EXPECT_TRUE(GetChunk(0)->is_owned());
170 EXPECT_FALSE(GetChunk(1)->is_owned());
171
172 MockEvent::Add(&*writer, event_size_to_fill_chunk());
173 EXPECT_TRUE(GetChunk(1)->is_owned());
174 EXPECT_FALSE(GetChunk(2)->is_owned());
175
176 // Create one event which starts at the beginning of chunk 2 and overflows
177 // into chunk 3.
178 MockEvent::Add(&*writer, event_size_to_fill_chunk() + 1);
179 EXPECT_TRUE(GetChunk(2)->is_owned());
180 EXPECT_TRUE(GetChunk(3)->is_owned());
181
182 // Adding a new event should cause the chunk 2 to be released, while chunk
183 // 3 is still retained.
184 MockEvent::Add(&*writer, 4);
185 EXPECT_FALSE(GetChunk(2)->is_owned());
186 EXPECT_TRUE(GetChunk(3)->is_owned());
187
188 // Now add a very large event which spans across 3 chunks (chunks 3, 4 and 5).
189 MockEvent::Add(&*writer, event_size_to_fill_chunk() * 2 + 1);
190 EXPECT_TRUE(GetChunk(3)->is_owned());
191 EXPECT_TRUE(GetChunk(4)->is_owned());
192 EXPECT_TRUE(GetChunk(5)->is_owned());
193
194 // Add a final small event and check that chunks 3 and 4 are released.
195 MockEvent::Add(&*writer, 4);
196 EXPECT_FALSE(GetChunk(3)->is_owned());
197 EXPECT_FALSE(GetChunk(4)->is_owned());
198 EXPECT_TRUE(GetChunk(5)->is_owned());
199
200 // Flush and readback the chunks using the official protos.
201 writer->Flush();
202
203 // The first two chunks should have one event each, neither of them wrapping.
204 auto chunk = ReadBackAndTestChunk(0, kWriterId, 0, 1, false, false);
205 EXPECT_EQ(event_size_to_fill_chunk(), chunk.events(0).size());
206
207 chunk = ReadBackAndTestChunk(1, kWriterId, 1, 1, false, false);
208 EXPECT_EQ(event_size_to_fill_chunk(), chunk.events(0).size());
209
210 // Chunk 2 should have one partial event, which overflows into 3.
211 chunk = ReadBackAndTestChunk(2, kWriterId, 2, 1, false, true);
212 EXPECT_EQ(event_size_to_fill_chunk(), chunk.events(0).size());
213
214 // Chunk 3 should have the overflowing event from above, a small event, and
215 // the beginning of the very large event.
216 chunk = ReadBackAndTestChunk(3, kWriterId, 3, 3, true, true);
217 EXPECT_EQ(4u, chunk.events(1).size());
218
219 // Chunk 4 should contain the partial continuation of the large event.
220 chunk = ReadBackAndTestChunk(4, kWriterId, 4, 1, true, true);
221 EXPECT_EQ(event_size_to_fill_chunk() - 2, chunk.events(0).size());
222
223 // Chunk 5 should contain the end of the large event and the final small one.
224 chunk = ReadBackAndTestChunk(5, kWriterId, 5, 2, true, false);
225 EXPECT_EQ(4u, chunk.events(1).size());
226 }
227
228 TEST_F(TraceBufferWriterTest, ManyWriters) {
229 const uint32_t kNumWriters = kNumChunks / 2;
230 std::unique_ptr<TraceBufferWriter> writer[kNumWriters];
231
232 for (uint32_t i = 0; i < kNumWriters; ++i) {
233 writer[i] = CreateWriter(i + 1);
234 MockEvent::Add(writer[i].get(), 4);
235 EXPECT_EQ(writer[i]->writer_id(), GetChunk(i)->owner());
236 }
237
238 // Write one large and one small event on each writer.
239 for (uint32_t i = 0; i < kNumWriters; ++i) {
240 MockEvent::Add(writer[i].get(), event_size_to_fill_chunk());
241 MockEvent::Add(writer[i].get(), 5 + i);
242 }
243
244 // At this point the first 5 chunks should be returned and the last 5 owned
245 // by the respective 5 writers.
246 for (uint32_t i = 0; i < kNumWriters; ++i)
247 EXPECT_FALSE(GetChunk(i)->is_owned());
248 for (uint32_t i = kNumWriters; i < kNumWriters * 2; ++i)
249 EXPECT_EQ(writer[i - kNumWriters]->writer_id(), GetChunk(i)->owner());
250
251 // Write one large event to writer 0 (currently owning chunk 5). That will
252 // make it return the chunk 5 and take ownership of chunks [0, 4].
253 MockEvent::Add(writer[0].get(), event_size_to_fill_chunk());
254 auto retain_event =
255 MockEvent::Add(writer[0].get(), event_size_to_fill_chunk() * 4 + 1);
256 for (uint32_t i = 0; i < 5; ++i)
257 EXPECT_EQ(writer[0]->writer_id(), GetChunk(i)->owner());
258
259 // At this point the only free chunk is chunk 5. Attempting a write from
260 // another writer should fill that.
261 EXPECT_FALSE(GetChunk(5)->is_owned());
262 auto retain_event_2 =
263 MockEvent::Add(writer[3].get(), event_size_to_fill_chunk());
264
265 // Now all the chunks are taken.
266 for (uint32_t i = 0; i < kNumChunks; ++i)
267 EXPECT_TRUE(GetChunk(i)->is_owned());
268
269 // An attempt to write a larger event on another write should cause the ring
270 // buffer to fall in bankrupcy mode.
271 auto retain_event_3 =
272 MockEvent::Add(writer[4].get(), event_size_to_fill_chunk());
273 EXPECT_EQ(ring_buffer().num_chunks(), ring_buffer().GetNumChunksTaken());
274
275 // A small writer to the writer 0 should cause it to return all chunks but the
276 // last one and leave the bankrupcy chunk.
277 retain_event = MockEvent::Add(writer[0].get(), 7);
278 EXPECT_LT(ring_buffer().GetNumChunksTaken(), ring_buffer().num_chunks());
279 EXPECT_EQ(writer[0]->writer_id(), GetChunk(4)->owner());
280 for (uint32_t i = 0; i < 3; ++i)
281 EXPECT_FALSE(GetChunk(i)->is_owned());
282
283 // Flush all the writers and test that all chunks are returned.
284 for (uint32_t i = 0; i < kNumWriters; ++i)
285 writer[i]->Flush();
286 for (uint32_t i = 0; i < kNumChunks; ++i)
287 EXPECT_FALSE(GetChunk(i)->is_owned());
288
289 // Readback and test the content of the chunks.
290
291 auto chunk =
292 ReadBackAndTestChunk(4, writer[0]->writer_id(), 6, 2, true, false);
293 EXPECT_EQ(7u, chunk.events(1).size());
294
295 // writer[1] and writer[2] just have a continuation and a small event each.
296 chunk = ReadBackAndTestChunk(6, writer[1]->writer_id(), 1, 2, true, false);
297 EXPECT_EQ(5u + 1, chunk.events(1).size());
298
299 chunk = ReadBackAndTestChunk(7, writer[2]->writer_id(), 1, 2, true, false);
300 EXPECT_EQ(5u + 2, chunk.events(1).size());
301
302 // writer[3] did the last write before the bankrupcy and has one extra event.
303 ReadBackAndTestChunk(8, writer[3]->writer_id(), 1, 3, true, true);
304
305 // writer[4] overflew in the bankrupcy chunk and has 3 events as well.
306 ReadBackAndTestChunk(9, writer[4]->writer_id(), 1, 3, true, true);
307 }
308
309 } // namespace
310 } // namespace v2
311 } // namespace tracing
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