clang 20.0.0 (based on r547379) from build 12806354. Bug: http://b/379133546 Test: N/A Change-Id: I2eb8938af55d809de674be63cb30cf27e801862b Upstream-Commit: ad834e67b1105d15ef907f6255d4c96e8e733f57
291 lines
12 KiB
C++
291 lines
12 KiB
C++
//===- llvm/Transforms/IPO/FunctionImport.h - ThinLTO importing -*- C++ -*-===//
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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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#ifndef LLVM_TRANSFORMS_IPO_FUNCTIONIMPORT_H
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#define LLVM_TRANSFORMS_IPO_FUNCTIONIMPORT_H
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#include "llvm/ADT/DenseSet.h"
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#include "llvm/ADT/StringRef.h"
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#include "llvm/IR/GlobalValue.h"
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#include "llvm/IR/ModuleSummaryIndex.h"
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#include "llvm/IR/PassManager.h"
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#include "llvm/Support/Error.h"
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#include <functional>
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#include <map>
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#include <memory>
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#include <string>
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#include <system_error>
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#include <unordered_map>
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#include <unordered_set>
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#include <utility>
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namespace llvm {
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class Module;
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/// The function importer is automatically importing function from other modules
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/// based on the provided summary informations.
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class FunctionImporter {
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public:
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/// The functions to import from a source module and their import type.
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/// Note we choose unordered_map over (Small)DenseMap. The number of imports
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/// from a source module could be small but DenseMap size grows to 64 quickly
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/// and not memory efficient (see
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/// https://llvm.org/docs/ProgrammersManual.html#llvm-adt-densemap-h)
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using FunctionsToImportTy =
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std::unordered_map<GlobalValue::GUID, GlobalValueSummary::ImportKind>;
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/// The different reasons selectCallee will chose not to import a
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/// candidate.
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enum class ImportFailureReason {
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None,
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// We can encounter a global variable instead of a function in rare
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// situations with SamplePGO. See comments where this failure type is
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// set for more details.
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GlobalVar,
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// Found to be globally dead, so we don't bother importing.
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NotLive,
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// Instruction count over the current threshold.
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TooLarge,
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// Don't import something with interposable linkage as we can't inline it
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// anyway.
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InterposableLinkage,
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// Generally we won't end up failing due to this reason, as we expect
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// to find at least one summary for the GUID that is global or a local
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// in the referenced module for direct calls.
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LocalLinkageNotInModule,
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// This corresponds to the NotEligibleToImport being set on the summary,
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// which can happen in a few different cases (e.g. local that can't be
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// renamed or promoted because it is referenced on a llvm*.used variable).
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NotEligible,
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// This corresponds to NoInline being set on the function summary,
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// which will happen if it is known that the inliner will not be able
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// to inline the function (e.g. it is marked with a NoInline attribute).
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NoInline
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};
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/// Information optionally tracked for candidates the importer decided
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/// not to import. Used for optional stat printing.
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struct ImportFailureInfo {
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// The ValueInfo corresponding to the candidate. We save an index hash
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// table lookup for each GUID by stashing this here.
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ValueInfo VI;
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// The maximum call edge hotness for all failed imports of this candidate.
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CalleeInfo::HotnessType MaxHotness;
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// most recent reason for failing to import (doesn't necessarily correspond
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// to the attempt with the maximum hotness).
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ImportFailureReason Reason;
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// The number of times we tried to import candidate but failed.
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unsigned Attempts;
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ImportFailureInfo(ValueInfo VI, CalleeInfo::HotnessType MaxHotness,
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ImportFailureReason Reason, unsigned Attempts)
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: VI(VI), MaxHotness(MaxHotness), Reason(Reason), Attempts(Attempts) {}
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};
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/// Map of callee GUID considered for import into a given module to a pair
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/// consisting of the largest threshold applied when deciding whether to
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/// import it and, if we decided to import, a pointer to the summary instance
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/// imported. If we decided not to import, the summary will be nullptr.
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using ImportThresholdsTy =
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DenseMap<GlobalValue::GUID,
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std::tuple<unsigned, const GlobalValueSummary *,
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std::unique_ptr<ImportFailureInfo>>>;
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/// The map maintains the list of imports. Conceptually, it is a collection
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/// of tuples of the form:
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///
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/// (The name of the source module, GUID, Definition/Declaration)
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///
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/// The name of the source module is the module identifier to pass to the
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/// ModuleLoader. The module identifier strings must be owned elsewhere,
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/// typically by the in-memory ModuleSummaryIndex the importing decisions are
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/// made from (the module path for each summary is owned by the index's module
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/// path string table).
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class ImportMapTy {
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public:
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using ImportMapTyImpl = DenseMap<StringRef, FunctionsToImportTy>;
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enum class AddDefinitionStatus {
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// No change was made to the list of imports or whether each import should
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// be imported as a declaration or definition.
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NoChange,
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// Successfully added the given GUID to be imported as a definition. There
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// was no existing entry with the same GUID as a declaration.
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Inserted,
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// An existing with the given GUID was changed to a definition.
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ChangedToDefinition,
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};
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// Add the given GUID to ImportList as a definition. If the same GUID has
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// been added as a declaration previously, that entry is overridden.
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AddDefinitionStatus addDefinition(StringRef FromModule,
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GlobalValue::GUID GUID);
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// Add the given GUID to ImportList as a declaration. If the same GUID has
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// been added as a definition previously, that entry takes precedence, and
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// no change is made.
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void maybeAddDeclaration(StringRef FromModule, GlobalValue::GUID GUID);
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void addGUID(StringRef FromModule, GlobalValue::GUID GUID,
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GlobalValueSummary::ImportKind ImportKind) {
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if (ImportKind == GlobalValueSummary::Definition)
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addDefinition(FromModule, GUID);
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else
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maybeAddDeclaration(FromModule, GUID);
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}
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const ImportMapTyImpl &getImportMap() const { return ImportMap; }
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private:
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ImportMapTyImpl ImportMap;
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};
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/// The set contains an entry for every global value that the module exports.
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/// Depending on the user context, this container is allowed to contain
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/// definitions, declarations or a mix of both.
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using ExportSetTy = DenseSet<ValueInfo>;
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/// A function of this type is used to load modules referenced by the index.
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using ModuleLoaderTy =
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std::function<Expected<std::unique_ptr<Module>>(StringRef Identifier)>;
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/// Create a Function Importer.
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FunctionImporter(const ModuleSummaryIndex &Index, ModuleLoaderTy ModuleLoader,
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bool ClearDSOLocalOnDeclarations)
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: Index(Index), ModuleLoader(std::move(ModuleLoader)),
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ClearDSOLocalOnDeclarations(ClearDSOLocalOnDeclarations) {}
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/// Import functions in Module \p M based on the supplied import list.
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Expected<bool> importFunctions(Module &M, const ImportMapTy &ImportList);
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private:
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/// The summaries index used to trigger importing.
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const ModuleSummaryIndex &Index;
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/// Factory function to load a Module for a given identifier
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ModuleLoaderTy ModuleLoader;
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/// See the comment of ClearDSOLocalOnDeclarations in
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/// Utils/FunctionImportUtils.h.
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bool ClearDSOLocalOnDeclarations;
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};
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/// The function importing pass
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class FunctionImportPass : public PassInfoMixin<FunctionImportPass> {
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public:
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PreservedAnalyses run(Module &M, ModuleAnalysisManager &AM);
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};
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/// Compute all the imports and exports for every module in the Index.
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///
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/// \p ModuleToDefinedGVSummaries contains for each Module a map
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/// (GUID -> Summary) for every global defined in the module.
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///
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/// \p isPrevailing is a callback that will be called with a global value's GUID
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/// and summary and should return whether the module corresponding to the
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/// summary contains the linker-prevailing copy of that value.
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///
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/// \p ImportLists will be populated with an entry for every Module we are
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/// importing into. This entry is itself a map that can be passed to
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/// FunctionImporter::importFunctions() above (see description there).
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///
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/// \p ExportLists contains for each Module the set of globals (GUID) that will
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/// be imported by another module, or referenced by such a function. I.e. this
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/// is the set of globals that need to be promoted/renamed appropriately.
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///
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/// The module identifier strings that are the keys of the above two maps
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/// are owned by the in-memory ModuleSummaryIndex the importing decisions
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/// are made from (the module path for each summary is owned by the index's
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/// module path string table).
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void ComputeCrossModuleImport(
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const ModuleSummaryIndex &Index,
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const DenseMap<StringRef, GVSummaryMapTy> &ModuleToDefinedGVSummaries,
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function_ref<bool(GlobalValue::GUID, const GlobalValueSummary *)>
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isPrevailing,
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DenseMap<StringRef, FunctionImporter::ImportMapTy> &ImportLists,
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DenseMap<StringRef, FunctionImporter::ExportSetTy> &ExportLists);
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/// PrevailingType enum used as a return type of callback passed
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/// to computeDeadSymbolsAndUpdateIndirectCalls. Yes and No values used when
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/// status explicitly set by symbols resolution, otherwise status is Unknown.
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enum class PrevailingType { Yes, No, Unknown };
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/// Update call edges for indirect calls to local functions added from
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/// SamplePGO when needed. Normally this is done during
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/// computeDeadSymbolsAndUpdateIndirectCalls, but can be called standalone
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/// when that is not called (e.g. during testing).
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void updateIndirectCalls(ModuleSummaryIndex &Index);
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/// Compute all the symbols that are "dead": i.e these that can't be reached
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/// in the graph from any of the given symbols listed in
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/// \p GUIDPreservedSymbols. Non-prevailing symbols are symbols without a
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/// prevailing copy anywhere in IR and are normally dead, \p isPrevailing
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/// predicate returns status of symbol.
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/// Also update call edges for indirect calls to local functions added from
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/// SamplePGO when needed.
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void computeDeadSymbolsAndUpdateIndirectCalls(
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ModuleSummaryIndex &Index,
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const DenseSet<GlobalValue::GUID> &GUIDPreservedSymbols,
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function_ref<PrevailingType(GlobalValue::GUID)> isPrevailing);
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/// Compute dead symbols and run constant propagation in combined index
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/// after that.
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void computeDeadSymbolsWithConstProp(
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ModuleSummaryIndex &Index,
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const DenseSet<GlobalValue::GUID> &GUIDPreservedSymbols,
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function_ref<PrevailingType(GlobalValue::GUID)> isPrevailing,
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bool ImportEnabled);
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/// Converts value \p GV to declaration, or replaces with a declaration if
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/// it is an alias. Returns true if converted, false if replaced.
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bool convertToDeclaration(GlobalValue &GV);
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/// Compute the set of summaries needed for a ThinLTO backend compilation of
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/// \p ModulePath.
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//
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/// This includes summaries from that module (in case any global summary based
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/// optimizations were recorded) and from any definitions in other modules that
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/// should be imported.
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//
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/// \p ModuleToSummariesForIndex will be populated with the needed summaries
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/// from each required module path. Use a std::map instead of StringMap to get
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/// stable order for bitcode emission.
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///
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/// \p DecSummaries will be popluated with the subset of of summary pointers
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/// that have 'declaration' import type among all summaries the module need.
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void gatherImportedSummariesForModule(
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StringRef ModulePath,
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const DenseMap<StringRef, GVSummaryMapTy> &ModuleToDefinedGVSummaries,
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const FunctionImporter::ImportMapTy &ImportList,
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std::map<std::string, GVSummaryMapTy> &ModuleToSummariesForIndex,
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GVSummaryPtrSet &DecSummaries);
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/// Emit into \p OutputFilename the files module \p ModulePath will import from.
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std::error_code EmitImportsFiles(
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StringRef ModulePath, StringRef OutputFilename,
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const std::map<std::string, GVSummaryMapTy> &ModuleToSummariesForIndex);
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/// Based on the information recorded in the summaries during global
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/// summary-based analysis:
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/// 1. Resolve prevailing symbol linkages and constrain visibility (CanAutoHide
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/// and consider visibility from other definitions for ELF) in \p TheModule
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/// 2. (optional) Apply propagated function attributes to \p TheModule if
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/// PropagateAttrs is true
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void thinLTOFinalizeInModule(Module &TheModule,
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const GVSummaryMapTy &DefinedGlobals,
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bool PropagateAttrs);
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/// Internalize \p TheModule based on the information recorded in the summaries
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/// during global summary-based analysis.
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void thinLTOInternalizeModule(Module &TheModule,
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const GVSummaryMapTy &DefinedGlobals);
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} // end namespace llvm
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#endif // LLVM_TRANSFORMS_IPO_FUNCTIONIMPORT_H
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