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In the textual format, `noduplicates` means no COMDAT/section group deduplication is performed. Therefore, if both sets of sections are retained, and they happen to define strong external symbols with the same names, there will be a duplicate definition linker error. In PE/COFF, the selection kind lowers to `IMAGE_COMDAT_SELECT_NODUPLICATES`. The name describes the corollary instead of the immediate semantics. The name can cause confusion to other binary formats (ELF, wasm) which have implemented/ want to implement the "no deduplication" selection kind. Rename it to be clearer. Reviewed By: rnk Differential Revision: https://reviews.llvm.org/D106319
319 lines
11 KiB
C++
319 lines
11 KiB
C++
//===-- Internalize.cpp - Mark functions internal -------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// This pass loops over all of the functions and variables in the input module.
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// If the function or variable does not need to be preserved according to the
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// client supplied callback, it is marked as internal.
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//
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// This transformation would not be legal in a regular compilation, but it gets
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// extra information from the linker about what is safe.
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//
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// For example: Internalizing a function with external linkage. Only if we are
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// told it is only used from within this module, it is safe to do it.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/Transforms/IPO/Internalize.h"
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#include "llvm/ADT/SmallPtrSet.h"
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#include "llvm/ADT/Statistic.h"
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#include "llvm/ADT/StringSet.h"
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#include "llvm/ADT/Triple.h"
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#include "llvm/Analysis/CallGraph.h"
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#include "llvm/IR/Module.h"
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#include "llvm/InitializePasses.h"
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#include "llvm/Pass.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/LineIterator.h"
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#include "llvm/Support/MemoryBuffer.h"
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#include "llvm/Support/raw_ostream.h"
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#include "llvm/Transforms/IPO.h"
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#include "llvm/Transforms/Utils/GlobalStatus.h"
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#include "llvm/Transforms/Utils/ModuleUtils.h"
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using namespace llvm;
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#define DEBUG_TYPE "internalize"
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STATISTIC(NumAliases, "Number of aliases internalized");
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STATISTIC(NumFunctions, "Number of functions internalized");
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STATISTIC(NumGlobals, "Number of global vars internalized");
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// APIFile - A file which contains a list of symbols that should not be marked
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// external.
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static cl::opt<std::string>
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APIFile("internalize-public-api-file", cl::value_desc("filename"),
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cl::desc("A file containing list of symbol names to preserve"));
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// APIList - A list of symbols that should not be marked internal.
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static cl::list<std::string>
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APIList("internalize-public-api-list", cl::value_desc("list"),
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cl::desc("A list of symbol names to preserve"), cl::CommaSeparated);
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namespace {
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// Helper to load an API list to preserve from file and expose it as a functor
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// for internalization.
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class PreserveAPIList {
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public:
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PreserveAPIList() {
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if (!APIFile.empty())
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LoadFile(APIFile);
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ExternalNames.insert(APIList.begin(), APIList.end());
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}
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bool operator()(const GlobalValue &GV) {
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return ExternalNames.count(GV.getName());
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}
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private:
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// Contains the set of symbols loaded from file
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StringSet<> ExternalNames;
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void LoadFile(StringRef Filename) {
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// Load the APIFile...
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ErrorOr<std::unique_ptr<MemoryBuffer>> Buf =
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MemoryBuffer::getFile(Filename);
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if (!Buf) {
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errs() << "WARNING: Internalize couldn't load file '" << Filename
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<< "'! Continuing as if it's empty.\n";
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return; // Just continue as if the file were empty
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}
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for (line_iterator I(*Buf->get(), true), E; I != E; ++I)
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ExternalNames.insert(*I);
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}
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};
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} // end anonymous namespace
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bool InternalizePass::shouldPreserveGV(const GlobalValue &GV) {
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// Function must be defined here
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if (GV.isDeclaration())
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return true;
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// Available externally is really just a "declaration with a body".
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if (GV.hasAvailableExternallyLinkage())
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return true;
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// Assume that dllexported symbols are referenced elsewhere
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if (GV.hasDLLExportStorageClass())
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return true;
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// As the name suggests, externally initialized variables need preserving as
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// they would be initialized elsewhere externally.
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if (const auto *G = dyn_cast<GlobalVariable>(&GV))
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if (G->isExternallyInitialized())
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return true;
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// Already local, has nothing to do.
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if (GV.hasLocalLinkage())
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return false;
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// Check some special cases
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if (AlwaysPreserved.count(GV.getName()))
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return true;
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return MustPreserveGV(GV);
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}
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bool InternalizePass::maybeInternalize(
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GlobalValue &GV, DenseMap<const Comdat *, ComdatInfo> &ComdatMap) {
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SmallString<0> ComdatName;
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if (Comdat *C = GV.getComdat()) {
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// For GlobalAlias, C is the aliasee object's comdat which may have been
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// redirected. So ComdatMap may not contain C.
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if (ComdatMap.lookup(C).External)
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return false;
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if (auto *GO = dyn_cast<GlobalObject>(&GV)) {
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// If a comdat with one member is not externally visible, we can drop it.
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// Otherwise, the comdat can be used to establish dependencies among the
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// group of sections. Thus we have to keep the comdat but switch it to
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// nodeduplicate.
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// Note: nodeduplicate is not necessary for COFF. wasm doesn't support
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// nodeduplicate.
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ComdatInfo &Info = ComdatMap.find(C)->second;
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if (Info.Size == 1)
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GO->setComdat(nullptr);
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else if (!IsWasm)
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C->setSelectionKind(Comdat::NoDeduplicate);
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}
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if (GV.hasLocalLinkage())
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return false;
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} else {
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if (GV.hasLocalLinkage())
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return false;
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if (shouldPreserveGV(GV))
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return false;
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}
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GV.setVisibility(GlobalValue::DefaultVisibility);
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GV.setLinkage(GlobalValue::InternalLinkage);
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return true;
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}
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// If GV is part of a comdat and is externally visible, update the comdat size
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// and keep track of its comdat so that we don't internalize any of its members.
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void InternalizePass::checkComdat(
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GlobalValue &GV, DenseMap<const Comdat *, ComdatInfo> &ComdatMap) {
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Comdat *C = GV.getComdat();
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if (!C)
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return;
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ComdatInfo &Info = ComdatMap.try_emplace(C).first->second;
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++Info.Size;
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if (shouldPreserveGV(GV))
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Info.External = true;
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}
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bool InternalizePass::internalizeModule(Module &M, CallGraph *CG) {
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bool Changed = false;
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CallGraphNode *ExternalNode = CG ? CG->getExternalCallingNode() : nullptr;
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SmallVector<GlobalValue *, 4> Used;
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collectUsedGlobalVariables(M, Used, false);
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// Collect comdat size and visiblity information for the module.
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DenseMap<const Comdat *, ComdatInfo> ComdatMap;
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if (!M.getComdatSymbolTable().empty()) {
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for (Function &F : M)
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checkComdat(F, ComdatMap);
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for (GlobalVariable &GV : M.globals())
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checkComdat(GV, ComdatMap);
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for (GlobalAlias &GA : M.aliases())
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checkComdat(GA, ComdatMap);
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}
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// We must assume that globals in llvm.used have a reference that not even
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// the linker can see, so we don't internalize them.
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// For llvm.compiler.used the situation is a bit fuzzy. The assembler and
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// linker can drop those symbols. If this pass is running as part of LTO,
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// one might think that it could just drop llvm.compiler.used. The problem
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// is that even in LTO llvm doesn't see every reference. For example,
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// we don't see references from function local inline assembly. To be
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// conservative, we internalize symbols in llvm.compiler.used, but we
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// keep llvm.compiler.used so that the symbol is not deleted by llvm.
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for (GlobalValue *V : Used) {
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AlwaysPreserved.insert(V->getName());
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}
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// Mark all functions not in the api as internal.
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IsWasm = Triple(M.getTargetTriple()).isOSBinFormatWasm();
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for (Function &I : M) {
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if (!maybeInternalize(I, ComdatMap))
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continue;
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Changed = true;
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if (ExternalNode)
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// Remove a callgraph edge from the external node to this function.
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ExternalNode->removeOneAbstractEdgeTo((*CG)[&I]);
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++NumFunctions;
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LLVM_DEBUG(dbgs() << "Internalizing func " << I.getName() << "\n");
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}
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// Never internalize the llvm.used symbol. It is used to implement
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// attribute((used)).
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// FIXME: Shouldn't this just filter on llvm.metadata section??
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AlwaysPreserved.insert("llvm.used");
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AlwaysPreserved.insert("llvm.compiler.used");
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// Never internalize anchors used by the machine module info, else the info
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// won't find them. (see MachineModuleInfo.)
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AlwaysPreserved.insert("llvm.global_ctors");
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AlwaysPreserved.insert("llvm.global_dtors");
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AlwaysPreserved.insert("llvm.global.annotations");
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// Never internalize symbols code-gen inserts.
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// FIXME: We should probably add this (and the __stack_chk_guard) via some
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// type of call-back in CodeGen.
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AlwaysPreserved.insert("__stack_chk_fail");
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if (Triple(M.getTargetTriple()).isOSAIX())
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AlwaysPreserved.insert("__ssp_canary_word");
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else
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AlwaysPreserved.insert("__stack_chk_guard");
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// Mark all global variables with initializers that are not in the api as
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// internal as well.
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for (auto &GV : M.globals()) {
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if (!maybeInternalize(GV, ComdatMap))
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continue;
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Changed = true;
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++NumGlobals;
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LLVM_DEBUG(dbgs() << "Internalized gvar " << GV.getName() << "\n");
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}
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// Mark all aliases that are not in the api as internal as well.
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for (auto &GA : M.aliases()) {
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if (!maybeInternalize(GA, ComdatMap))
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continue;
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Changed = true;
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++NumAliases;
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LLVM_DEBUG(dbgs() << "Internalized alias " << GA.getName() << "\n");
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}
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return Changed;
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}
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InternalizePass::InternalizePass() : MustPreserveGV(PreserveAPIList()) {}
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PreservedAnalyses InternalizePass::run(Module &M, ModuleAnalysisManager &AM) {
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if (!internalizeModule(M, AM.getCachedResult<CallGraphAnalysis>(M)))
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return PreservedAnalyses::all();
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PreservedAnalyses PA;
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PA.preserve<CallGraphAnalysis>();
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return PA;
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}
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namespace {
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class InternalizeLegacyPass : public ModulePass {
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// Client supplied callback to control wheter a symbol must be preserved.
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std::function<bool(const GlobalValue &)> MustPreserveGV;
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public:
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static char ID; // Pass identification, replacement for typeid
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InternalizeLegacyPass() : ModulePass(ID), MustPreserveGV(PreserveAPIList()) {}
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InternalizeLegacyPass(std::function<bool(const GlobalValue &)> MustPreserveGV)
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: ModulePass(ID), MustPreserveGV(std::move(MustPreserveGV)) {
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initializeInternalizeLegacyPassPass(*PassRegistry::getPassRegistry());
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}
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bool runOnModule(Module &M) override {
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if (skipModule(M))
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return false;
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CallGraphWrapperPass *CGPass =
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getAnalysisIfAvailable<CallGraphWrapperPass>();
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CallGraph *CG = CGPass ? &CGPass->getCallGraph() : nullptr;
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return internalizeModule(M, MustPreserveGV, CG);
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}
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void getAnalysisUsage(AnalysisUsage &AU) const override {
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AU.setPreservesCFG();
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AU.addPreserved<CallGraphWrapperPass>();
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}
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};
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}
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char InternalizeLegacyPass::ID = 0;
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INITIALIZE_PASS(InternalizeLegacyPass, "internalize",
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"Internalize Global Symbols", false, false)
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ModulePass *llvm::createInternalizePass() {
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return new InternalizeLegacyPass();
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}
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ModulePass *llvm::createInternalizePass(
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std::function<bool(const GlobalValue &)> MustPreserveGV) {
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return new InternalizeLegacyPass(std::move(MustPreserveGV));
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}
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