v8/src/perf-jit.cc
tebbi c3a6ca68d0 This CL enables precise source positions for all V8 compilers. It merges compiler::SourcePosition and internal::SourcePosition to a single class used throughout the codebase. The new internal::SourcePosition instances store an id identifying an inlined function in addition to a script offset.
SourcePosition::InliningId() refers to a the new table DeoptimizationInputData::InliningPositions(), which provides the following data for every inlining id:
 - The inlined SharedFunctionInfo as an offset into DeoptimizationInfo::LiteralArray
 - The SourcePosition of the inlining. Recursively, this yields the full inlining stack.
Before the Code object is created, the same information can be found in CompilationInfo::inlined_functions().

If SourcePosition::InliningId() is SourcePosition::kNotInlined, it refers to the outer (non-inlined) function.
So every SourcePosition has full information about its inlining stack, as long as the corresponding Code object is known. The internal represenation of a source position is a positive 64bit integer.

All compilers create now appropriate source positions for inlined functions. In the case of Turbofan, this required using AstGraphBuilderWithPositions for inlined functions too. So this class is now moved to a header file.

At the moment, the additional information in source positions is only used in --trace-deopt and --code-comments. The profiler needs to be updated, at the moment it gets the correct script offsets from the deopt info, but the wrong script id from the reconstructed deopt stack, which can lead to wrong outputs. This should be resolved by making the profiler use the new inlining information for deopts.

I activated the inlined deoptimization tests in test-cpu-profiler.cc for Turbofan, changing them to a case where the deopt stack and the inlining position agree. It is currently still broken for other cases.

The following additional changes were necessary:
 - The source position table (internal::SourcePositionTableBuilder etc.) supports now 64bit source positions. Encoding source positions in a single 64bit int together with the difference encoding in the source position table results in very little overhead for the inlining id, since only 12% of the source positions in Octane have a changed inlining id.
 - The class HPositionInfo was effectively dead code and is now removed.
 - SourcePosition has new printing and information facilities, including computing a full inlining stack.
 - I had to rename compiler/source-position.{h,cc} to compiler/compiler-source-position-table.{h,cc} to avoid clashes with the new src/source-position.cc file.
 - I wrote the new wrapper PodArray for ByteArray. It is a template working with any POD-type. This is used in DeoptimizationInputData::InliningPositions().
 - I removed HInlinedFunctionInfo and HGraph::inlined_function_infos, because they were only used for the now obsolete Crankshaft inlining ids.
 - Crankshaft managed a list of inlined functions in Lithium: LChunk::inlined_functions. This is an analog structure to CompilationInfo::inlined_functions. So I removed LChunk::inlined_functions and made Crankshaft use CompilationInfo::inlined_functions instead, because this was necessary to register the offsets into the literal array in a uniform way. This is a safe change because LChunk::inlined_functions has no other uses and the functions in CompilationInfo::inlined_functions have a strictly longer lifespan, being created earlier (in Hydrogen already).

BUG=v8:5432

Review-Url: https://codereview.chromium.org/2451853002
Cr-Commit-Position: refs/heads/master@{#40975}
2016-11-14 17:22:32 +00:00

394 lines
13 KiB
C++

// Copyright 2016 the V8 project authors. All rights reserved.
// Redistribution and use in source and binary forms, with or without
// modification, are permitted provided that the following conditions are
// met:
//
// * Redistributions of source code must retain the above copyright
// notice, this list of conditions and the following disclaimer.
// * Redistributions in binary form must reproduce the above
// copyright notice, this list of conditions and the following
// disclaimer in the documentation and/or other materials provided
// with the distribution.
// * Neither the name of Google Inc. nor the names of its
// contributors may be used to endorse or promote products derived
// from this software without specific prior written permission.
//
// THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
// "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
// LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
// A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
// OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
// SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
// LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
// DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
// THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
// (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
// OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
#include "src/perf-jit.h"
#include <memory>
#include "src/assembler.h"
#include "src/eh-frame.h"
#include "src/objects-inl.h"
#include "src/source-position-table.h"
#if V8_OS_LINUX
#include <fcntl.h>
#include <sys/mman.h>
#include <unistd.h>
#endif // V8_OS_LINUX
namespace v8 {
namespace internal {
#if V8_OS_LINUX
struct PerfJitHeader {
uint32_t magic_;
uint32_t version_;
uint32_t size_;
uint32_t elf_mach_target_;
uint32_t reserved_;
uint32_t process_id_;
uint64_t time_stamp_;
uint64_t flags_;
static const uint32_t kMagic = 0x4A695444;
static const uint32_t kVersion = 1;
};
struct PerfJitBase {
enum PerfJitEvent {
kLoad = 0,
kMove = 1,
kDebugInfo = 2,
kClose = 3,
kUnwindingInfo = 4
};
uint32_t event_;
uint32_t size_;
uint64_t time_stamp_;
};
struct PerfJitCodeLoad : PerfJitBase {
uint32_t process_id_;
uint32_t thread_id_;
uint64_t vma_;
uint64_t code_address_;
uint64_t code_size_;
uint64_t code_id_;
};
struct PerfJitDebugEntry {
uint64_t address_;
int line_number_;
int column_;
// Followed by null-terminated name or \0xff\0 if same as previous.
};
struct PerfJitCodeDebugInfo : PerfJitBase {
uint64_t address_;
uint64_t entry_count_;
// Followed by entry_count_ instances of PerfJitDebugEntry.
};
struct PerfJitCodeUnwindingInfo : PerfJitBase {
uint64_t unwinding_size_;
uint64_t eh_frame_hdr_size_;
uint64_t mapped_size_;
// Followed by size_ - sizeof(PerfJitCodeUnwindingInfo) bytes of data.
};
const char PerfJitLogger::kFilenameFormatString[] = "./jit-%d.dump";
// Extra padding for the PID in the filename
const int PerfJitLogger::kFilenameBufferPadding = 16;
base::LazyRecursiveMutex PerfJitLogger::file_mutex_;
// The following static variables are protected by PerfJitLogger::file_mutex_.
uint64_t PerfJitLogger::reference_count_ = 0;
void* PerfJitLogger::marker_address_ = nullptr;
uint64_t PerfJitLogger::code_index_ = 0;
FILE* PerfJitLogger::perf_output_handle_ = nullptr;
void PerfJitLogger::OpenJitDumpFile() {
// Open the perf JIT dump file.
perf_output_handle_ = nullptr;
int bufferSize = sizeof(kFilenameFormatString) + kFilenameBufferPadding;
ScopedVector<char> perf_dump_name(bufferSize);
int size = SNPrintF(perf_dump_name, kFilenameFormatString,
base::OS::GetCurrentProcessId());
CHECK_NE(size, -1);
int fd = open(perf_dump_name.start(), O_CREAT | O_TRUNC | O_RDWR, 0666);
if (fd == -1) return;
marker_address_ = OpenMarkerFile(fd);
if (marker_address_ == nullptr) return;
perf_output_handle_ = fdopen(fd, "w+");
if (perf_output_handle_ == nullptr) return;
setvbuf(perf_output_handle_, NULL, _IOFBF, kLogBufferSize);
}
void PerfJitLogger::CloseJitDumpFile() {
if (perf_output_handle_ == nullptr) return;
fclose(perf_output_handle_);
perf_output_handle_ = nullptr;
}
void* PerfJitLogger::OpenMarkerFile(int fd) {
long page_size = sysconf(_SC_PAGESIZE); // NOLINT(runtime/int)
if (page_size == -1) return nullptr;
// Mmap the file so that there is a mmap record in the perf_data file.
//
// The map must be PROT_EXEC to ensure it is not ignored by perf record.
void* marker_address =
mmap(nullptr, page_size, PROT_READ | PROT_EXEC, MAP_PRIVATE, fd, 0);
return (marker_address == MAP_FAILED) ? nullptr : marker_address;
}
void PerfJitLogger::CloseMarkerFile(void* marker_address) {
if (marker_address == nullptr) return;
long page_size = sysconf(_SC_PAGESIZE); // NOLINT(runtime/int)
if (page_size == -1) return;
munmap(marker_address, page_size);
}
PerfJitLogger::PerfJitLogger() {
base::LockGuard<base::RecursiveMutex> guard_file(file_mutex_.Pointer());
reference_count_++;
// If this is the first logger, open the file and write the header.
if (reference_count_ == 1) {
OpenJitDumpFile();
if (perf_output_handle_ == nullptr) return;
LogWriteHeader();
}
}
PerfJitLogger::~PerfJitLogger() {
base::LockGuard<base::RecursiveMutex> guard_file(file_mutex_.Pointer());
reference_count_--;
// If this was the last logger, close the file.
if (reference_count_ == 0) {
CloseJitDumpFile();
}
}
uint64_t PerfJitLogger::GetTimestamp() {
struct timespec ts;
int result = clock_gettime(CLOCK_MONOTONIC, &ts);
DCHECK_EQ(0, result);
USE(result);
static const uint64_t kNsecPerSec = 1000000000;
return (ts.tv_sec * kNsecPerSec) + ts.tv_nsec;
}
void PerfJitLogger::LogRecordedBuffer(AbstractCode* abstract_code,
SharedFunctionInfo* shared,
const char* name, int length) {
if (FLAG_perf_basic_prof_only_functions &&
(abstract_code->kind() != AbstractCode::FUNCTION &&
abstract_code->kind() != AbstractCode::INTERPRETED_FUNCTION &&
abstract_code->kind() != AbstractCode::OPTIMIZED_FUNCTION)) {
return;
}
base::LockGuard<base::RecursiveMutex> guard_file(file_mutex_.Pointer());
if (perf_output_handle_ == nullptr) return;
// We only support non-interpreted functions.
if (!abstract_code->IsCode()) return;
Code* code = abstract_code->GetCode();
DCHECK(code->instruction_start() == code->address() + Code::kHeaderSize);
// Debug info has to be emitted first.
if (FLAG_perf_prof_debug_info && shared != nullptr) {
LogWriteDebugInfo(code, shared);
}
const char* code_name = name;
uint8_t* code_pointer = reinterpret_cast<uint8_t*>(code->instruction_start());
uint32_t code_size = code->is_crankshafted() ? code->safepoint_table_offset()
: code->instruction_size();
// Unwinding info comes right after debug info.
if (FLAG_perf_prof_unwinding_info) LogWriteUnwindingInfo(code);
static const char string_terminator[] = "\0";
PerfJitCodeLoad code_load;
code_load.event_ = PerfJitCodeLoad::kLoad;
code_load.size_ = sizeof(code_load) + length + 1 + code_size;
code_load.time_stamp_ = GetTimestamp();
code_load.process_id_ =
static_cast<uint32_t>(base::OS::GetCurrentProcessId());
code_load.thread_id_ = static_cast<uint32_t>(base::OS::GetCurrentThreadId());
code_load.vma_ = 0x0; // Our addresses are absolute.
code_load.code_address_ = reinterpret_cast<uint64_t>(code_pointer);
code_load.code_size_ = code_size;
code_load.code_id_ = code_index_;
code_index_++;
LogWriteBytes(reinterpret_cast<const char*>(&code_load), sizeof(code_load));
LogWriteBytes(code_name, length);
LogWriteBytes(string_terminator, 1);
LogWriteBytes(reinterpret_cast<const char*>(code_pointer), code_size);
}
void PerfJitLogger::LogWriteDebugInfo(Code* code, SharedFunctionInfo* shared) {
// Compute the entry count and get the name of the script.
uint32_t entry_count = 0;
for (SourcePositionTableIterator iterator(code->source_position_table());
!iterator.done(); iterator.Advance()) {
entry_count++;
}
if (entry_count == 0) return;
Handle<Script> script(Script::cast(shared->script()));
Handle<Object> name_or_url(Script::GetNameOrSourceURL(script));
int name_length = 0;
std::unique_ptr<char[]> name_string;
if (name_or_url->IsString()) {
name_string =
Handle<String>::cast(name_or_url)
->ToCString(DISALLOW_NULLS, FAST_STRING_TRAVERSAL, &name_length);
DCHECK_EQ(0, name_string.get()[name_length]);
} else {
const char unknown[] = "<unknown>";
name_length = static_cast<int>(strlen(unknown));
char* buffer = NewArray<char>(name_length);
base::OS::StrNCpy(buffer, name_length + 1, unknown,
static_cast<size_t>(name_length));
name_string = std::unique_ptr<char[]>(buffer);
}
DCHECK_EQ(name_length, static_cast<int>(strlen(name_string.get())));
PerfJitCodeDebugInfo debug_info;
debug_info.event_ = PerfJitCodeLoad::kDebugInfo;
debug_info.time_stamp_ = GetTimestamp();
debug_info.address_ = reinterpret_cast<uint64_t>(code->instruction_start());
debug_info.entry_count_ = entry_count;
uint32_t size = sizeof(debug_info);
// Add the sizes of fixed parts of entries.
size += entry_count * sizeof(PerfJitDebugEntry);
// Add the size of the name after the first entry.
size += (static_cast<uint32_t>(name_length) + 1) * entry_count;
int padding = ((size + 7) & (~7)) - size;
debug_info.size_ = size + padding;
LogWriteBytes(reinterpret_cast<const char*>(&debug_info), sizeof(debug_info));
int script_line_offset = script->line_offset();
Handle<FixedArray> line_ends(FixedArray::cast(script->line_ends()));
Address code_start = code->instruction_start();
for (SourcePositionTableIterator iterator(code->source_position_table());
!iterator.done(); iterator.Advance()) {
int position = iterator.source_position().ScriptOffset();
int line_number = Script::GetLineNumber(script, position);
// Compute column.
int relative_line_number = line_number - script_line_offset;
int start =
(relative_line_number == 0)
? 0
: Smi::cast(line_ends->get(relative_line_number - 1))->value() + 1;
int column_offset = position - start;
if (relative_line_number == 0) {
// For the case where the code is on the same line as the script tag.
column_offset += script->column_offset();
}
PerfJitDebugEntry entry;
entry.address_ =
reinterpret_cast<uint64_t>(code_start + iterator.code_offset());
entry.line_number_ = line_number;
entry.column_ = column_offset;
LogWriteBytes(reinterpret_cast<const char*>(&entry), sizeof(entry));
LogWriteBytes(name_string.get(), name_length + 1);
}
char padding_bytes[] = "\0\0\0\0\0\0\0\0";
LogWriteBytes(padding_bytes, padding);
}
void PerfJitLogger::LogWriteUnwindingInfo(Code* code) {
PerfJitCodeUnwindingInfo unwinding_info_header;
unwinding_info_header.event_ = PerfJitCodeLoad::kUnwindingInfo;
unwinding_info_header.time_stamp_ = GetTimestamp();
unwinding_info_header.eh_frame_hdr_size_ = EhFrameConstants::kEhFrameHdrSize;
if (code->has_unwinding_info()) {
unwinding_info_header.unwinding_size_ = code->unwinding_info_size();
unwinding_info_header.mapped_size_ = unwinding_info_header.unwinding_size_;
} else {
unwinding_info_header.unwinding_size_ = EhFrameConstants::kEhFrameHdrSize;
unwinding_info_header.mapped_size_ = 0;
}
int content_size = static_cast<int>(sizeof(unwinding_info_header) +
unwinding_info_header.unwinding_size_);
int padding_size = RoundUp(content_size, 8) - content_size;
unwinding_info_header.size_ = content_size + padding_size;
LogWriteBytes(reinterpret_cast<const char*>(&unwinding_info_header),
sizeof(unwinding_info_header));
if (code->has_unwinding_info()) {
LogWriteBytes(reinterpret_cast<const char*>(code->unwinding_info_start()),
code->unwinding_info_size());
} else {
OFStream perf_output_stream(perf_output_handle_);
EhFrameWriter::WriteEmptyEhFrame(perf_output_stream);
}
char padding_bytes[] = "\0\0\0\0\0\0\0\0";
DCHECK_LT(padding_size, static_cast<int>(sizeof(padding_bytes)));
LogWriteBytes(padding_bytes, static_cast<int>(padding_size));
}
void PerfJitLogger::CodeMoveEvent(AbstractCode* from, Address to) {
// Code relocation not supported.
UNREACHABLE();
}
void PerfJitLogger::LogWriteBytes(const char* bytes, int size) {
size_t rv = fwrite(bytes, 1, size, perf_output_handle_);
DCHECK(static_cast<size_t>(size) == rv);
USE(rv);
}
void PerfJitLogger::LogWriteHeader() {
DCHECK(perf_output_handle_ != NULL);
PerfJitHeader header;
header.magic_ = PerfJitHeader::kMagic;
header.version_ = PerfJitHeader::kVersion;
header.size_ = sizeof(header);
header.elf_mach_target_ = GetElfMach();
header.reserved_ = 0xdeadbeef;
header.process_id_ = base::OS::GetCurrentProcessId();
header.time_stamp_ =
static_cast<uint64_t>(base::OS::TimeCurrentMillis() * 1000.0);
header.flags_ = 0;
LogWriteBytes(reinterpret_cast<const char*>(&header), sizeof(header));
}
#endif // V8_OS_LINUX
} // namespace internal
} // namespace v8