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//===- llvm-profgen.cpp - LLVM SPGO profile generation tool -----*- C++ -*-===//
//
// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
// See https://llvm.org/LICENSE.txt for license information.
// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
//
//===----------------------------------------------------------------------===//
//
// llvm-profgen generates SPGO profiles from perf script ouput.
//
//===----------------------------------------------------------------------===//
#include "ErrorHandling.h"
#include "PerfReader.h"
#include "ProfileGenerator.h"
#include "ProfiledBinary.h"
#include "llvm/DebugInfo/Symbolize/SymbolizableModule.h"
#include "llvm/Support/CommandLine.h"
#include "llvm/Support/FileSystem.h"
#include "llvm/Support/InitLLVM.h"
#include "llvm/Support/TargetSelect.h"
#include "llvm/Support/VirtualFileSystem.h"
static cl::OptionCategory ProfGenCategory("ProfGen Options");
static cl::opt<std::string> PerfScriptFilename(
"perfscript", cl::value_desc("perfscript"),
cl::desc("Path of perf-script trace created by Linux perf tool with "
"`script` command(the raw perf.data should be profiled with -b)"),
cl::cat(ProfGenCategory));
static cl::alias PSA("ps", cl::desc("Alias for --perfscript"),
cl::aliasopt(PerfScriptFilename));
static cl::opt<std::string> PerfDataFilename(
"perfdata", cl::value_desc("perfdata"),
cl::desc("Path of raw perf data created by Linux perf tool (it should be "
"profiled with -b)"),
cl::cat(ProfGenCategory));
static cl::alias PDA("pd", cl::desc("Alias for --perfdata"),
cl::aliasopt(PerfDataFilename));
static cl::opt<std::string> UnsymbolizedProfFilename(
"unsymbolized-profile", cl::value_desc("unsymbolized profile"),
cl::desc("Path of the unsymbolized profile created by "
"`llvm-profgen` with `--skip-symbolization`"),
cl::cat(ProfGenCategory));
static cl::alias UPA("up", cl::desc("Alias for --unsymbolized-profile"),
cl::aliasopt(UnsymbolizedProfFilename));
static cl::opt<std::string> SampleProfFilename(
"llvm-sample-profile", cl::value_desc("llvm sample profile"),
cl::desc("Path of the LLVM sample profile"), cl::cat(ProfGenCategory));
static cl::opt<std::string>
BinaryPath("binary", cl::value_desc("binary"), cl::Required,
cl::desc("Path of profiled executable binary."),
cl::cat(ProfGenCategory));
static cl::opt<uint32_t>
ProcessId("pid", cl::value_desc("process Id"), cl::init(0),
cl::desc("Process Id for the profiled executable binary."),
cl::cat(ProfGenCategory));
static cl::opt<std::string> DebugBinPath(
"debug-binary", cl::value_desc("debug-binary"),
cl::desc("Path of debug info binary, llvm-profgen will load the DWARF info "
"from it instead of the executable binary."),
cl::cat(ProfGenCategory));
extern cl::opt<bool> ShowDisassemblyOnly;
extern cl::opt<bool> ShowSourceLocations;
extern cl::opt<bool> SkipSymbolization;
using namespace llvm;
using namespace sampleprof;
// Validate the command line input.
static void validateCommandLine() {
// Allow the missing perfscript if we only use to show binary disassembly.
if (!ShowDisassemblyOnly) {
// Validate input profile is provided only once
bool HasPerfData = PerfDataFilename.getNumOccurrences() > 0;
bool HasPerfScript = PerfScriptFilename.getNumOccurrences() > 0;
bool HasUnsymbolizedProfile =
UnsymbolizedProfFilename.getNumOccurrences() > 0;
bool HasSampleProfile = SampleProfFilename.getNumOccurrences() > 0;
uint16_t S =
HasPerfData + HasPerfScript + HasUnsymbolizedProfile + HasSampleProfile;
if (S != 1) {
std::string Msg =
S > 1
? "`--perfscript`, `--perfdata` and `--unsymbolized-profile` "
"cannot be used together."
: "Perf input file is missing, please use one of `--perfscript`, "
"`--perfdata` and `--unsymbolized-profile` for the input.";
exitWithError(Msg);
}
auto CheckFileExists = [](bool H, StringRef File) {
if (H && !llvm::sys::fs::exists(File)) {
std::string Msg = "Input perf file(" + File.str() + ") doesn't exist.";
exitWithError(Msg);
}
};
CheckFileExists(HasPerfData, PerfDataFilename);
CheckFileExists(HasPerfScript, PerfScriptFilename);
CheckFileExists(HasUnsymbolizedProfile, UnsymbolizedProfFilename);
CheckFileExists(HasSampleProfile, SampleProfFilename);
}
if (!llvm::sys::fs::exists(BinaryPath)) {
std::string Msg = "Input binary(" + BinaryPath + ") doesn't exist.";
exitWithError(Msg);
}
if (CSProfileGenerator::MaxCompressionSize < -1) {
exitWithError("Value of --compress-recursion should >= -1");
}
if (ShowSourceLocations && !ShowDisassemblyOnly) {
exitWithError("--show-source-locations should work together with "
"--show-disassembly-only!");
}
}
static PerfInputFile getPerfInputFile() {
PerfInputFile File;
if (PerfDataFilename.getNumOccurrences()) {
File.InputFile = PerfDataFilename;
File.Format = PerfFormat::PerfData;
} else if (PerfScriptFilename.getNumOccurrences()) {
File.InputFile = PerfScriptFilename;
File.Format = PerfFormat::PerfScript;
} else if (UnsymbolizedProfFilename.getNumOccurrences()) {
File.InputFile = UnsymbolizedProfFilename;
File.Format = PerfFormat::UnsymbolizedProfile;
}
return File;
}
int main(int argc, const char *argv[]) {
InitLLVM X(argc, argv);
// Initialize targets and assembly printers/parsers.
InitializeAllTargetInfos();
InitializeAllTargetMCs();
InitializeAllDisassemblers();
cl::HideUnrelatedOptions({&ProfGenCategory, &getColorCategory()});
cl::ParseCommandLineOptions(argc, argv, "llvm SPGO profile generator\n");
validateCommandLine();
// Load symbols and disassemble the code of a given binary.
std::unique_ptr<ProfiledBinary> Binary =
std::make_unique<ProfiledBinary>(BinaryPath, DebugBinPath);
if (ShowDisassemblyOnly)
return EXIT_SUCCESS;
if (SampleProfFilename.getNumOccurrences()) {
LLVMContext Context;
auto FS = vfs::getRealFileSystem();
auto ReaderOrErr =
SampleProfileReader::create(SampleProfFilename, Context, *FS);
std::unique_ptr<sampleprof::SampleProfileReader> Reader =
std::move(ReaderOrErr.get());
Reader->read();
std::unique_ptr<ProfileGeneratorBase> Generator =
ProfileGeneratorBase::create(Binary.get(), Reader->getProfiles(),
Reader->profileIsCS());
Generator->generateProfile();
Generator->write();
} else {
std::optional<uint32_t> PIDFilter;
if (ProcessId.getNumOccurrences())
PIDFilter = ProcessId;
PerfInputFile PerfFile = getPerfInputFile();
std::unique_ptr<PerfReaderBase> Reader =
PerfReaderBase::create(Binary.get(), PerfFile, PIDFilter);
// Parse perf events and samples
Reader->parsePerfTraces();
if (SkipSymbolization)
return EXIT_SUCCESS;
std::unique_ptr<ProfileGeneratorBase> Generator =
ProfileGeneratorBase::create(Binary.get(), &Reader->getSampleCounters(),
Reader->profileIsCS());
Generator->generateProfile();
Generator->write();
}
return EXIT_SUCCESS;
}