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Previously it was part of swiftBasic. The demangler library does not depend on llvm (except some header-only utilities like StringRef). Putting it into its own library makes sure that no llvm stuff will be linked into clients which use the demangler library. This change also contains other refactoring, like moving demangler code into different files. This makes it easier to remove the old demangler from the runtime library when we switch to the new symbol mangling. Also in this commit: remove some unused API functions from the demangler Context. fixes rdar://problem/30503344
394 lines
15 KiB
C++
394 lines
15 KiB
C++
//===--- SILFunctionExtractor.cpp - SIL function extraction utility -------===//
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//
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// This source file is part of the Swift.org open source project
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//
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// Copyright (c) 2014 - 2017 Apple Inc. and the Swift project authors
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// Licensed under Apache License v2.0 with Runtime Library Exception
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//
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// See https://swift.org/LICENSE.txt for license information
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// See https://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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///
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/// \file
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///
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/// This utility is meant to help simplify the extraction of test cases from sil
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/// files by removing (currently only) functions that do not match a list of
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/// string. It also allows for the inverse to be selected. Eventually this
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/// should have additional capabilities like stripping globals, vtables, etc.
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///
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//===----------------------------------------------------------------------===//
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#define DEBUG_TYPE "sil-func-extractor"
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#include "swift/Strings.h"
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#include "swift/Basic/LLVM.h"
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#include "swift/Basic/LLVMInitialize.h"
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#include "swift/Demangling/Demangle.h"
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#include "swift/Demangling/ManglingMacros.h"
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#include "swift/Frontend/DiagnosticVerifier.h"
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#include "swift/Frontend/Frontend.h"
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#include "swift/Frontend/PrintingDiagnosticConsumer.h"
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#include "swift/SIL/SILBuilder.h"
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#include "swift/SIL/SILUndef.h"
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#include "swift/SILOptimizer/Analysis/Analysis.h"
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#include "swift/SILOptimizer/PassManager/PassManager.h"
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#include "swift/SILOptimizer/PassManager/Passes.h"
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#include "swift/Serialization/SerializedModuleLoader.h"
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#include "swift/Serialization/SerializationOptions.h"
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#include "swift/Serialization/SerializedSILLoader.h"
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#include "swift/Subsystems.h"
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#include "llvm/Support/CommandLine.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/FileSystem.h"
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#include "llvm/Support/ManagedStatic.h"
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#include "llvm/Support/MemoryBuffer.h"
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#include "llvm/Support/Path.h"
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#include "llvm/Support/Signals.h"
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#include <cstdio>
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using namespace swift;
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static llvm::cl::opt<std::string> InputFilename(llvm::cl::desc("input file"),
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llvm::cl::init("-"),
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llvm::cl::Positional);
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static llvm::cl::opt<std::string>
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OutputFilename("o", llvm::cl::desc("output filename"), llvm::cl::init("-"));
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static llvm::cl::opt<bool>
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EmitVerboseSIL("emit-verbose-sil",
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llvm::cl::desc("Emit locations during sil emission."));
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static llvm::cl::list<std::string>
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CommandLineFunctionNames("func",
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llvm::cl::desc("Function names to extract."));
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static llvm::cl::opt<std::string> FunctionNameFile(
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"func-file", llvm::cl::desc("File to load additional function names from"));
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static llvm::cl::opt<bool>
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EmitSIB("emit-sib",
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llvm::cl::desc("Emit a sib file as output instead of a sil file"));
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static llvm::cl::opt<bool> InvertMatch(
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"invert",
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llvm::cl::desc("Match functions whose name do not "
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"match the names of the functions to be extracted"));
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static llvm::cl::list<std::string>
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ImportPaths("I",
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llvm::cl::desc("add a directory to the import search path"));
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static llvm::cl::opt<std::string>
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ModuleName("module-name",
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llvm::cl::desc("The name of the module if processing"
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" a module. Necessary for processing "
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"stdin."));
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static llvm::cl::opt<std::string>
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ModuleCachePath("module-cache-path",
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llvm::cl::desc("Clang module cache path"));
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static llvm::cl::opt<std::string> ResourceDir(
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"resource-dir",
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llvm::cl::desc("The directory that holds the compiler resource files"));
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static llvm::cl::opt<std::string>
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SDKPath("sdk", llvm::cl::desc("The path to the SDK for use with the clang "
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"importer."),
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llvm::cl::init(""));
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static llvm::cl::opt<std::string> Triple("target",
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llvm::cl::desc("target triple"));
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static llvm::cl::opt<bool>
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EnableSILSortOutput("emit-sorted-sil", llvm::cl::Hidden,
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llvm::cl::init(false),
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llvm::cl::desc("Sort Functions, VTables, Globals, "
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"WitnessTables by name to ease diffing."));
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static llvm::cl::opt<bool>
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DisableASTDump("sil-disable-ast-dump", llvm::cl::Hidden,
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llvm::cl::init(false),
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llvm::cl::desc("Do not dump AST."));
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static llvm::cl::opt<bool> AssumeUnqualifiedOwnershipWhenParsing(
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"assume-parsing-unqualified-ownership-sil", llvm::cl::Hidden,
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llvm::cl::init(false),
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llvm::cl::desc("Assume all parsed functions have unqualified ownership"));
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// This function isn't referenced outside its translation unit, but it
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// can't use the "static" keyword because its address is used for
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// getMainExecutable (since some platforms don't support taking the
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// address of main, and some platforms can't implement getMainExecutable
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// without being given the address of a function in the main executable).
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void anchorForGetMainExecutable() {}
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static void getFunctionNames(std::vector<std::string> &Names) {
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std::copy(CommandLineFunctionNames.begin(), CommandLineFunctionNames.end(),
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std::back_inserter(Names));
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if (!FunctionNameFile.empty()) {
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llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> FileBufOrErr =
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llvm::MemoryBuffer::getFileOrSTDIN(FunctionNameFile);
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if (!FileBufOrErr) {
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fprintf(stderr, "Error! Failed to open file: %s\n",
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InputFilename.c_str());
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exit(-1);
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}
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StringRef Buffer = FileBufOrErr.get()->getBuffer();
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while (!Buffer.empty()) {
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StringRef Token, NewBuffer;
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std::tie(Token, NewBuffer) = llvm::getToken(Buffer, "\n");
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if (Token.empty()) {
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break;
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}
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Names.push_back(Token);
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Buffer = NewBuffer;
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}
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}
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}
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static bool stringInSortedArray(
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StringRef str, ArrayRef<std::string> list,
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llvm::function_ref<bool(const std::string &, const std::string &)> &&cmp) {
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if (list.empty())
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return false;
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auto iter = std::lower_bound(list.begin(), list.end(), str, cmp);
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// If we didn't find str, return false.
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if (list.end() == iter)
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return false;
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return !cmp(str, *iter);
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}
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void removeUnwantedFunctions(SILModule *M, ArrayRef<std::string> MangledNames,
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ArrayRef<std::string> DemangledNames) {
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assert((!MangledNames.empty() || !DemangledNames.empty()) &&
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"Expected names of function we want to retain!");
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assert(M && "Expected a SIL module to extract from.");
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std::vector<SILFunction *> DeadFunctions;
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for (auto &F : M->getFunctionList()) {
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StringRef MangledName = F.getName();
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std::string DemangledName =
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swift::Demangle::demangleSymbolAsString(MangledName);
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DemangledName = DemangledName.substr(0, DemangledName.find(' '));
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DEBUG(llvm::dbgs() << "Visiting New Func:\n"
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<< " Mangled: " << MangledName
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<< "\n Demangled: " << DemangledName << "\n");
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bool FoundMangledName = stringInSortedArray(MangledName, MangledNames,
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std::less<std::string>());
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bool FoundDemangledName = stringInSortedArray(
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DemangledName, DemangledNames,
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[](const std::string &str1, const std::string &str2) -> bool {
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return str1.substr(0, str1.find(' ')) <
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str2.substr(0, str2.find(' '));
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});
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if ((FoundMangledName || FoundDemangledName) ^ InvertMatch) {
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DEBUG(llvm::dbgs() << " Not removing!\n");
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continue;
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}
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DEBUG(llvm::dbgs() << " Removing!\n");
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// If F has no body, there is nothing further to do.
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if (!F.size())
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continue;
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SILBasicBlock &BB = F.front();
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SILLocation Loc = BB.back().getLoc();
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BB.split(BB.begin());
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// Make terminator unreachable.
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SILBuilder(&BB).createUnreachable(Loc);
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DeadFunctions.push_back(&F);
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}
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// After running this pass all of the functions we will remove
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// should consist only of one basic block terminated by
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// UnreachableInst.
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performSILDiagnoseUnreachable(M);
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// Now mark all of these functions as public and remove their bodies.
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for (auto &F : DeadFunctions) {
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F->setLinkage(SILLinkage::PublicExternal);
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F->getBlocks().clear();
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}
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// Remove dead functions.
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performSILDeadFunctionElimination(M);
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}
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int main(int argc, char **argv) {
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INITIALIZE_LLVM(argc, argv);
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llvm::cl::ParseCommandLineOptions(argc, argv, "Swift SIL Extractor\n");
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CompilerInvocation Invocation;
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Invocation.setMainExecutablePath(llvm::sys::fs::getMainExecutable(
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argv[0], reinterpret_cast<void *>(&anchorForGetMainExecutable)));
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// Give the context the list of search paths to use for modules.
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Invocation.setImportSearchPaths(ImportPaths);
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// Set the SDK path and target if given.
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if (SDKPath.getNumOccurrences() == 0) {
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const char *SDKROOT = getenv("SDKROOT");
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if (SDKROOT)
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SDKPath = SDKROOT;
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}
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if (!SDKPath.empty())
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Invocation.setSDKPath(SDKPath);
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if (!Triple.empty())
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Invocation.setTargetTriple(Triple);
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if (!ResourceDir.empty())
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Invocation.setRuntimeResourcePath(ResourceDir);
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Invocation.getClangImporterOptions().ModuleCachePath = ModuleCachePath;
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Invocation.setParseStdlib();
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Invocation.getLangOptions().DisableAvailabilityChecking = true;
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Invocation.getLangOptions().EnableAccessControl = false;
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Invocation.getLangOptions().EnableObjCAttrRequiresFoundation = false;
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// Load the input file.
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llvm::ErrorOr<std::unique_ptr<llvm::MemoryBuffer>> FileBufOrErr =
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llvm::MemoryBuffer::getFileOrSTDIN(InputFilename);
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if (!FileBufOrErr) {
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fprintf(stderr, "Error! Failed to open file: %s\n", InputFilename.c_str());
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exit(-1);
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}
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// If it looks like we have an AST, set the source file kind to SIL and the
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// name of the module to the file's name.
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Invocation.addInputBuffer(FileBufOrErr.get().get());
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serialization::ExtendedValidationInfo extendedInfo;
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auto result = serialization::validateSerializedAST(
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FileBufOrErr.get()->getBuffer(), &extendedInfo);
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bool HasSerializedAST = result.status == serialization::Status::Valid;
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if (HasSerializedAST) {
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const StringRef Stem = ModuleName.size()
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? StringRef(ModuleName)
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: llvm::sys::path::stem(InputFilename);
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Invocation.setModuleName(Stem);
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Invocation.setInputKind(InputFileKind::IFK_Swift_Library);
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} else {
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Invocation.setModuleName("main");
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Invocation.setInputKind(InputFileKind::IFK_SIL);
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}
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SILOptions &SILOpts = Invocation.getSILOptions();
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SILOpts.AssumeUnqualifiedOwnershipWhenParsing =
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AssumeUnqualifiedOwnershipWhenParsing;
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CompilerInstance CI;
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PrintingDiagnosticConsumer PrintDiags;
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CI.addDiagnosticConsumer(&PrintDiags);
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if (CI.setup(Invocation))
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return 1;
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CI.performSema();
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// If parsing produced an error, don't run any passes.
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if (CI.getASTContext().hadError())
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return 1;
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// Load the SIL if we have a module. We have to do this after SILParse
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// creating the unfortunate double if statement.
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if (HasSerializedAST) {
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assert(!CI.hasSILModule() &&
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"performSema() should not create a SILModule.");
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CI.setSILModule(
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SILModule::createEmptyModule(CI.getMainModule(), CI.getSILOptions()));
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std::unique_ptr<SerializedSILLoader> SL = SerializedSILLoader::create(
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CI.getASTContext(), CI.getSILModule(), nullptr);
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if (extendedInfo.isSIB())
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SL->getAllForModule(CI.getMainModule()->getName(), nullptr);
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else
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SL->getAll();
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}
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if (CommandLineFunctionNames.empty() && FunctionNameFile.empty())
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return CI.getASTContext().hadError();
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// For efficient usage, we separate our names into two separate sorted
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// lists, one of managled names, and one of unmangled names.
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std::vector<std::string> Names;
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getFunctionNames(Names);
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// First partition our function names into mangled/demangled arrays.
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auto FirstDemangledName = std::partition(
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Names.begin(), Names.end(), [](const std::string &Name) -> bool {
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StringRef NameRef(Name);
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return NameRef.startswith("_T") ||
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NameRef.startswith(MANGLING_PREFIX_STR);
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});
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// Then grab offsets to avoid any issues with iterator invalidation when we
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// sort.
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unsigned NumMangled = std::distance(Names.begin(), FirstDemangledName);
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unsigned NumNames = Names.size();
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// Then sort the two partitioned arrays.
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std::sort(Names.begin(), FirstDemangledName);
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std::sort(FirstDemangledName, Names.end());
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// Finally construct our ArrayRefs into the sorted std::vector for our
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// mangled and demangled names.
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ArrayRef<std::string> MangledNames(&*Names.begin(), NumMangled);
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ArrayRef<std::string> DemangledNames(&*std::next(Names.begin(), NumMangled),
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NumNames - NumMangled);
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DEBUG(llvm::errs() << "MangledNames to keep:\n";
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std::for_each(MangledNames.begin(), MangledNames.end(),
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[](const std::string &str) {
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llvm::errs() << " " << str << '\n';
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}));
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DEBUG(llvm::errs() << "DemangledNames to keep:\n";
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std::for_each(DemangledNames.begin(), DemangledNames.end(),
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[](const std::string &str) {
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llvm::errs() << " " << str << '\n';
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}));
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removeUnwantedFunctions(CI.getSILModule(), MangledNames, DemangledNames);
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if (EmitSIB) {
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llvm::SmallString<128> OutputFile;
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if (OutputFilename.size()) {
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OutputFile = OutputFilename;
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} else if (ModuleName.size()) {
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OutputFile = ModuleName;
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llvm::sys::path::replace_extension(OutputFile, SIB_EXTENSION);
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} else {
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OutputFile = CI.getMainModule()->getName().str();
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llvm::sys::path::replace_extension(OutputFile, SIB_EXTENSION);
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}
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SerializationOptions serializationOpts;
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serializationOpts.OutputPath = OutputFile.c_str();
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serializationOpts.SerializeAllSIL = true;
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serializationOpts.IsSIB = true;
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serialize(CI.getMainModule(), serializationOpts, CI.getSILModule());
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} else {
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const StringRef OutputFile =
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OutputFilename.size() ? StringRef(OutputFilename) : "-";
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if (OutputFile == "-") {
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CI.getSILModule()->print(llvm::outs(), EmitVerboseSIL, CI.getMainModule(),
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EnableSILSortOutput, !DisableASTDump);
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} else {
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std::error_code EC;
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llvm::raw_fd_ostream OS(OutputFile, EC, llvm::sys::fs::F_None);
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if (EC) {
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llvm::errs() << "while opening '" << OutputFile << "': " << EC.message()
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<< '\n';
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return 1;
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}
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CI.getSILModule()->print(OS, EmitVerboseSIL, CI.getMainModule(),
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EnableSILSortOutput, !DisableASTDump);
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}
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}
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}
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