Files
revng-revng/tools/pipeline/Main.cpp
Giacomo Vercesi 79272adc9d CLI: check that FilePaths are actually files
Add checks that return an `llvm::Error` in case a provided path is a
directory in the case a `FilePath` was requested.
2025-05-07 16:42:34 +02:00

211 lines
7.3 KiB
C++

// \file Main.cpp
//
// This file is distributed under the MIT License. See LICENSE.md for details.
//
#include <cstdlib>
#include "llvm/ADT/ArrayRef.h"
#include "llvm/ADT/SmallVector.h"
#include "llvm/ADT/StringRef.h"
#include "llvm/IR/LLVMContext.h"
#include "llvm/Support/CommandLine.h"
#include "llvm/Support/DynamicLibrary.h"
#include "llvm/Support/Error.h"
#include "llvm/Support/raw_os_ostream.h"
#include "revng/Model/LoadModelPass.h"
#include "revng/Pipeline/AllRegistries.h"
#include "revng/Pipeline/ContainerSet.h"
#include "revng/Pipeline/CopyPipe.h"
#include "revng/Pipeline/GenericLLVMPipe.h"
#include "revng/Pipeline/LLVMContainerFactory.h"
#include "revng/Pipeline/LLVMKind.h"
#include "revng/Pipeline/Loader.h"
#include "revng/Pipeline/Runner.h"
#include "revng/Pipeline/Target.h"
#include "revng/Pipes/ModelGlobal.h"
#include "revng/Pipes/PipelineManager.h"
#include "revng/Pipes/ToolCLOptions.h"
#include "revng/Support/InitRevng.h"
#include "revng/TupleTree/TupleTreeDiff.h"
using std::string;
using namespace llvm;
using namespace llvm::cl;
using namespace pipeline;
using namespace ::revng::pipes;
using namespace revng;
static cl::list<string> ContainerOverrides("i",
desc("Load the target file in the "
"target container at the "
"target step"),
cat(MainCategory));
static OutputPathOpt SaveModel("save-model",
desc("Save the model at the end of the run"),
cat(MainCategory));
static opt<string> ApplyModelDiff("apply-model-diff",
desc("Apply model diff"),
cat(MainCategory),
init(""));
static opt<bool> ProduceAllPossibleTargets("produce-all",
desc("Try producing all possible "
"targets"),
cat(MainCategory),
init(false));
static opt<bool> ProduceAllPossibleTargetsSingle("produce-all-single",
desc("Try producing all "
"possible "
"targets one element at "
"the time"),
cat(MainCategory),
init(false));
static opt<bool> InvalidateAll("invalidate-all",
desc("Try invalidating all possible "
"targets after producing them. Used for "
"debug purposes"),
cat(MainCategory),
init(false));
static opt<bool> DumpPipeline("d",
desc("Dump built pipeline, but dont run it"),
cat(MainCategory));
static cl::list<string> StoresOverrides("o",
desc("Store the target container at "
"the "
"target step in the target file"),
cat(MainCategory));
static cl::list<string> Produce("produce",
desc("comma separated list of targets to be "
"produced in one sweep."),
cat(MainCategory));
static cl::list<string>
Analyze("analyze", desc("analyses to be performed."), cat(MainCategory));
static opt<bool> PrintBuildableTargets("targets",
desc("Prints the target that can be "
"produced from the current status "
"and exit"),
cat(MainCategory));
static alias A2("t",
desc("Alias for --targets"),
aliasopt(PrintBuildableTargets),
cat(MainCategory));
static ToolCLOptions BaseOptions(MainCategory);
static ExitOnError AbortOnError;
static Runner::State
parseProductionRequest(Runner &Pipeline,
llvm::ArrayRef<llvm::StringRef> Targets) {
Runner::State ToProduce;
const auto &Registry = Pipeline.getKindsRegistry();
for (const auto &Target : Targets) {
auto &&[StepName, Rest] = Target.split("/");
auto &Step = ToProduce[StepName];
AbortOnError(parseTarget(Pipeline.getContext(), Step, Rest, Registry));
}
return ToProduce;
}
static void runAnalysis(Runner &Pipeline, llvm::StringRef Target) {
const auto &Registry = Pipeline.getKindsRegistry();
auto &&[Step, Rest] = Target.split("/");
auto &&[AnalysisName, Rest2] = Rest.split("/");
ContainerToTargetsMap ToProduce;
TargetInStepSet Map;
AbortOnError(parseTarget(Pipeline.getContext(), ToProduce, Rest2, Registry));
AbortOnError(Pipeline.runAnalysis(AnalysisName, Step, ToProduce, Map));
}
static void runPipeline(Runner &Pipeline) {
// First run the requested analyses
{
Task T(Analyze.size(), "revng-pipeline analyses");
for (llvm::StringRef Entry : Analyze) {
T.advance(Entry, true);
runAnalysis(Pipeline, Entry);
}
}
// Then produce the requested targets
Task T(Produce.size(), "revng-pipeline produce");
for (llvm::StringRef Entry : Produce) {
T.advance(Entry, true);
llvm::SmallVector<llvm::StringRef, 3> Targets;
Entry.split(Targets, ",");
AbortOnError(Pipeline.run(parseProductionRequest(Pipeline, Targets)));
}
}
int main(int argc, char *argv[]) {
revng::InitRevng X(argc, argv, "", { &MainCategory });
Registry::runAllInitializationRoutines();
auto Manager = AbortOnError(BaseOptions.makeManager());
for (const auto &Override : ContainerOverrides)
AbortOnError(Manager.overrideContainer(Override));
if (DumpPipeline) {
Manager.dump();
return EXIT_SUCCESS;
}
if (PrintBuildableTargets) {
llvm::raw_os_ostream OS(dbg);
Manager.writeAllPossibleTargets(OS);
return EXIT_SUCCESS;
}
if (not ApplyModelDiff.empty()) {
using Type = TupleTreeDiff<model::Binary>;
auto Diff = AbortOnError(fromFileOrSTDIN<Type>(ApplyModelDiff));
auto &Runner = Manager.getRunner();
TargetInStepSet Map;
GlobalTupleTreeDiff GlobalDiff(std::move(Diff), ModelGlobalName);
AbortOnError(Runner.apply(GlobalDiff, Map));
}
runPipeline(Manager.getRunner());
if (ProduceAllPossibleTargets)
AbortOnError(Manager.produceAllPossibleTargets());
else if (ProduceAllPossibleTargetsSingle)
AbortOnError(Manager.produceAllPossibleSingleTargets());
if (InvalidateAll) {
AbortOnError(Manager.invalidateAllPossibleTargets());
}
AbortOnError(Manager.store(StoresOverrides));
AbortOnError(Manager.store());
auto MaybeSaveModel = AbortOnError(SaveModel.get());
if (MaybeSaveModel.has_value()) {
auto Context = Manager.context();
const auto &ModelName = revng::ModelGlobalName;
auto FinalModel = AbortOnError(Context.getGlobal<ModelGlobal>(ModelName));
AbortOnError(FinalModel->store(*MaybeSaveModel));
}
return EXIT_SUCCESS;
}