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[XRay] Add a BlockIndexer visitor for FDR Records.

Summary:
This change adds a `BlockIndexer` type which maintains pointers to
records that belong to the same process+thread pairs. The indexing
happens with order of appearance of records as they are visited.

This version of the indexer currently only supports FDR version 3 logs,
which contain `BufferExtent` records. We will add support for v2 and v1
logs in follow-up patches.

This is another part of D50441.

Reviewers: eizan, kpw, mboerger

Reviewed By: mboerger

Subscribers: mboerger, mgorny, hiraditya, llvm-commits

Differential Revision: https://reviews.llvm.org/D51673

llvm-svn: 341518
This commit is contained in:
Dean Michael Berris 2018-09-06 05:55:57 +00:00
parent 26a15d24bf
commit f5133da999
5 changed files with 251 additions and 0 deletions

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@ -0,0 +1,69 @@
//===- BlockIndexer.h - FDR Block Indexing Visitor ------------------------===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
//
// An implementation of the RecordVisitor which generates a mapping between a
// thread and a range of records representing a block.
//
//===----------------------------------------------------------------------===//
#ifndef LLVM_LIB_XRAY_BLOCKINDEXER_H_
#define LLVM_LIB_XRAY_BLOCKINDEXER_H_
#include "llvm/ADT/DenseMap.h"
#include "llvm/XRay/FDRRecords.h"
#include <cstdint>
#include <vector>
namespace llvm {
namespace xray {
// The BlockIndexer will gather all related records associated with a
// process+thread and group them by 'Block'.
class BlockIndexer : public RecordVisitor {
public:
struct Block {
uint64_t ProcessID;
int32_t ThreadID;
std::vector<Record *> Records;
};
// This maps the process + thread combination to a sequence of blocks.
using Index = DenseMap<std::pair<uint64_t, int32_t>, std::vector<Block>>;
private:
Index &Indices;
enum class State : unsigned { SeekExtents, ExtentsFound, ThreadIDFound };
State CurrentState = State::SeekExtents;
Block CurrentBlock{0, 0, {}};
public:
explicit BlockIndexer(Index &I) : RecordVisitor(), Indices(I) {}
Error visit(BufferExtents &) override;
Error visit(WallclockRecord &) override;
Error visit(NewCPUIDRecord &) override;
Error visit(TSCWrapRecord &) override;
Error visit(CustomEventRecord &) override;
Error visit(CallArgRecord &) override;
Error visit(PIDRecord &) override;
Error visit(NewBufferRecord &) override;
Error visit(EndBufferRecord &) override;
Error visit(FunctionRecord &) override;
/// The flush() function will clear out the current state of the visitor, to
/// allow for explicitly flushing a block's records to the currently
/// recognized thread and process combination.
Error flush();
};
} // namespace xray
} // namespace llvm
#endif // LLVM_LIB_XRAY_BLOCKINDEXER_H_

97
lib/XRay/BlockIndexer.cpp Normal file
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//===- BlockIndexer.cpp - FDR Block Indexing VIsitor ----------------------===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
//
// An implementation of the RecordVisitor which generates a mapping between a
// thread and a range of records representing a block.
//
//===----------------------------------------------------------------------===//
#include "llvm/XRay/BlockIndexer.h"
namespace llvm {
namespace xray {
Error BlockIndexer::visit(BufferExtents &) {
if (CurrentState == State::ThreadIDFound) {
Index::iterator It;
std::tie(It, std::ignore) =
Indices.insert({{CurrentBlock.ProcessID, CurrentBlock.ThreadID}, {}});
It->second.push_back({CurrentBlock.ProcessID, CurrentBlock.ThreadID,
std::move(CurrentBlock.Records)});
CurrentBlock.ProcessID = 0;
CurrentBlock.ThreadID = 0;
CurrentBlock.Records = {};
}
CurrentState = State::ExtentsFound;
return Error::success();
}
Error BlockIndexer::visit(WallclockRecord &R) {
CurrentBlock.Records.push_back(&R);
return Error::success();
}
Error BlockIndexer::visit(NewCPUIDRecord &R) {
CurrentBlock.Records.push_back(&R);
return Error::success();
}
Error BlockIndexer::visit(TSCWrapRecord &R) {
CurrentBlock.Records.push_back(&R);
return Error::success();
}
Error BlockIndexer::visit(CustomEventRecord &R) {
CurrentBlock.Records.push_back(&R);
return Error::success();
}
Error BlockIndexer::visit(CallArgRecord &R) {
CurrentBlock.Records.push_back(&R);
return Error::success();
};
Error BlockIndexer::visit(PIDRecord &R) {
CurrentBlock.ProcessID = R.pid();
CurrentBlock.Records.push_back(&R);
return Error::success();
}
Error BlockIndexer::visit(NewBufferRecord &R) {
CurrentState = State::ThreadIDFound;
CurrentBlock.ThreadID = R.tid();
CurrentBlock.Records.push_back(&R);
return Error::success();
}
Error BlockIndexer::visit(EndBufferRecord &R) {
CurrentState = State::SeekExtents;
CurrentBlock.Records.push_back(&R);
return Error::success();
}
Error BlockIndexer::visit(FunctionRecord &R) {
CurrentBlock.Records.push_back(&R);
return Error::success();
}
Error BlockIndexer::flush() {
CurrentState = State::SeekExtents;
Index::iterator It;
std::tie(It, std::ignore) =
Indices.insert({{CurrentBlock.ProcessID, CurrentBlock.ThreadID}, {}});
It->second.push_back({CurrentBlock.ProcessID, CurrentBlock.ThreadID,
std::move(CurrentBlock.Records)});
CurrentBlock.ProcessID = 0;
CurrentBlock.ThreadID = 0;
CurrentBlock.Records = {};
return Error::success();
}
} // namespace xray
} // namespace llvm

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@ -1,4 +1,5 @@
add_llvm_library(LLVMXRay
BlockIndexer.cpp
FDRRecordProducer.cpp
FDRRecords.cpp
FDRTraceWriter.cpp

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@ -5,6 +5,7 @@ set(LLVM_LINK_COMPONENTS
add_llvm_unittest(XRayTests
ProfileTest.cpp
FDRBlockIndexerTest.cpp
FDRProducerConsumerTest.cpp
FDRRecordPrinterTest.cpp
FDRTraceWriterTest.cpp

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//===- llvm/unittest/XRay/FDRTraceWriterTest.cpp ----------------*- C++ -*-===//
//
// The LLVM Compiler Infrastructure
//
// This file is distributed under the University of Illinois Open Source
// License. See LICENSE.TXT for details.
//
//===----------------------------------------------------------------------===//
#include "llvm/XRay/BlockIndexer.h"
#include "llvm/XRay/FDRLogBuilder.h"
#include "llvm/XRay/FDRRecords.h"
#include "gmock/gmock.h"
#include "gtest/gtest.h"
namespace llvm {
namespace xray {
namespace {
using ::testing::ElementsAre;
using ::testing::Eq;
using ::testing::Field;
using ::testing::Not;
using ::testing::SizeIs;
// This test ensures that we can index blocks that follow version 3 of the log
// format.
TEST(FDRBlockIndexerTest, IndexBlocksV3) {
auto Block0 = LogBuilder()
.add<BufferExtents>(80)
.add<NewBufferRecord>(1)
.add<WallclockRecord>(1, 2)
.add<PIDRecord>(1)
.add<NewCPUIDRecord>(1)
.add<FunctionRecord>(RecordTypes::ENTER, 1, 1)
.add<FunctionRecord>(RecordTypes::EXIT, 1, 100)
.consume();
auto Block1 = LogBuilder()
.add<BufferExtents>(80)
.add<NewBufferRecord>(1)
.add<WallclockRecord>(1, 2)
.add<PIDRecord>(1)
.add<NewCPUIDRecord>(1)
.add<FunctionRecord>(RecordTypes::ENTER, 1, 1)
.add<FunctionRecord>(RecordTypes::EXIT, 1, 100)
.consume();
auto Block2 = LogBuilder()
.add<BufferExtents>(80)
.add<NewBufferRecord>(2)
.add<WallclockRecord>(1, 2)
.add<PIDRecord>(1)
.add<NewCPUIDRecord>(2)
.add<FunctionRecord>(RecordTypes::ENTER, 1, 1)
.add<FunctionRecord>(RecordTypes::EXIT, 1, 100)
.consume();
BlockIndexer::Index Index;
BlockIndexer Indexer(Index);
// Iterate through the contrived blocks we have created above.
for (auto B : {std::ref(Block0), std::ref(Block1), std::ref(Block2)}) {
// For each record in the block, we apply the indexer.
for (auto &R : B.get())
ASSERT_FALSE(errorToBool(R->apply(Indexer)));
ASSERT_FALSE(errorToBool(Indexer.flush()));
}
ASSERT_THAT(Index.size(), Eq(2u));
auto T1Blocks = Index.find({1, 1});
ASSERT_THAT(T1Blocks, Not(Eq(Index.end())));
// Expect only six records, because we're ignoring the BufferExtents record.
EXPECT_THAT(T1Blocks->second,
ElementsAre(Field(&BlockIndexer::Block::Records, SizeIs(6u)),
Field(&BlockIndexer::Block::Records, SizeIs(6u))));
auto T2Blocks = Index.find({1, 2});
ASSERT_THAT(T2Blocks, Not(Eq(Index.end())));
EXPECT_THAT(T2Blocks->second, ElementsAre(Field(&BlockIndexer::Block::Records,
SizeIs(Eq(6u)))));
}
// FIXME: Support indexing V2 and V1 blocks.
} // namespace
} // namespace xray
} // namespace llvm