This defines the OutlinedHashTree class. It contains sequences of stable hash values of instructions that have been outlined. This OutlinedHashTree can be used to track the outlined instruction sequences across modules. A trie structure is used in its implementation, allowing for a compact sharing of common prefixes. This is a patch for https://discourse.llvm.org/t/rfc-enhanced-machine-outliner-part-2-thinlto-nolto/78753.
169 lines
5.6 KiB
C++
169 lines
5.6 KiB
C++
//===-- OutlinedHashTreeRecord.cpp ----------------------------------------===//
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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 defines the OutlinedHashTreeRecord class. This class holds the outlined
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// hash tree for both serialization and deserialization processes. It utilizes
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// two data formats for serialization: raw binary data and YAML.
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// These two formats can be used interchangeably.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/CodeGenData/OutlinedHashTreeRecord.h"
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#include "llvm/ObjectYAML/YAML.h"
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#include "llvm/Support/Endian.h"
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#include "llvm/Support/EndianStream.h"
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#define DEBUG_TYPE "outlined-hash-tree"
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using namespace llvm;
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using namespace llvm::support;
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namespace llvm {
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namespace yaml {
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template <> struct MappingTraits<HashNodeStable> {
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static void mapping(IO &io, HashNodeStable &res) {
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io.mapRequired("Hash", res.Hash);
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io.mapRequired("Terminals", res.Terminals);
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io.mapRequired("SuccessorIds", res.SuccessorIds);
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}
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};
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template <> struct CustomMappingTraits<IdHashNodeStableMapTy> {
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static void inputOne(IO &io, StringRef Key, IdHashNodeStableMapTy &V) {
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HashNodeStable NodeStable;
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io.mapRequired(Key.str().c_str(), NodeStable);
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unsigned Id;
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if (Key.getAsInteger(0, Id)) {
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io.setError("Id not an integer");
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return;
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}
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V.insert({Id, NodeStable});
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}
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static void output(IO &io, IdHashNodeStableMapTy &V) {
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for (auto Iter = V.begin(); Iter != V.end(); ++Iter)
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io.mapRequired(utostr(Iter->first).c_str(), Iter->second);
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}
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};
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} // namespace yaml
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} // namespace llvm
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void OutlinedHashTreeRecord::serialize(raw_ostream &OS) const {
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IdHashNodeStableMapTy IdNodeStableMap;
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convertToStableData(IdNodeStableMap);
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support::endian::Writer Writer(OS, endianness::little);
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Writer.write<uint32_t>(IdNodeStableMap.size());
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for (const auto &[Id, NodeStable] : IdNodeStableMap) {
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Writer.write<uint32_t>(Id);
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Writer.write<uint64_t>(NodeStable.Hash);
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Writer.write<uint32_t>(NodeStable.Terminals);
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Writer.write<uint32_t>(NodeStable.SuccessorIds.size());
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for (auto SuccessorId : NodeStable.SuccessorIds)
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Writer.write<uint32_t>(SuccessorId);
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}
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}
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void OutlinedHashTreeRecord::deserialize(const unsigned char *&Ptr) {
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IdHashNodeStableMapTy IdNodeStableMap;
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auto NumIdNodeStableMap =
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endian::readNext<uint32_t, endianness::little, unaligned>(Ptr);
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for (unsigned I = 0; I < NumIdNodeStableMap; ++I) {
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auto Id = endian::readNext<uint32_t, endianness::little, unaligned>(Ptr);
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HashNodeStable NodeStable;
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NodeStable.Hash =
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endian::readNext<uint64_t, endianness::little, unaligned>(Ptr);
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NodeStable.Terminals =
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endian::readNext<uint32_t, endianness::little, unaligned>(Ptr);
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auto NumSuccessorIds =
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endian::readNext<uint32_t, endianness::little, unaligned>(Ptr);
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for (unsigned J = 0; J < NumSuccessorIds; ++J)
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NodeStable.SuccessorIds.push_back(
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endian::readNext<uint32_t, endianness::little, unaligned>(Ptr));
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IdNodeStableMap[Id] = std::move(NodeStable);
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}
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convertFromStableData(IdNodeStableMap);
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}
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void OutlinedHashTreeRecord::serializeYAML(yaml::Output &YOS) const {
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IdHashNodeStableMapTy IdNodeStableMap;
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convertToStableData(IdNodeStableMap);
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YOS << IdNodeStableMap;
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}
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void OutlinedHashTreeRecord::deserializeYAML(yaml::Input &YIS) {
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IdHashNodeStableMapTy IdNodeStableMap;
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YIS >> IdNodeStableMap;
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YIS.nextDocument();
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convertFromStableData(IdNodeStableMap);
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}
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void OutlinedHashTreeRecord::convertToStableData(
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IdHashNodeStableMapTy &IdNodeStableMap) const {
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// Build NodeIdMap
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HashNodeIdMapTy NodeIdMap;
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HashTree->walkGraph(
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[&NodeIdMap](const HashNode *Current) {
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size_t Index = NodeIdMap.size();
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NodeIdMap[Current] = Index;
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assert(Index = NodeIdMap.size() + 1 &&
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"Expected size of NodeMap to increment by 1");
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},
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/*EdgeCallbackFn=*/nullptr, /*SortedWork=*/true);
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// Convert NodeIdMap to NodeStableMap
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for (auto &P : NodeIdMap) {
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auto *Node = P.first;
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auto Id = P.second;
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HashNodeStable NodeStable;
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NodeStable.Hash = Node->Hash;
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NodeStable.Terminals = Node->Terminals ? *Node->Terminals : 0;
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for (auto &P : Node->Successors)
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NodeStable.SuccessorIds.push_back(NodeIdMap[P.second.get()]);
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IdNodeStableMap[Id] = NodeStable;
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}
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// Sort the Successors so that they come out in the same order as in the map.
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for (auto &P : IdNodeStableMap)
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llvm::sort(P.second.SuccessorIds);
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}
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void OutlinedHashTreeRecord::convertFromStableData(
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const IdHashNodeStableMapTy &IdNodeStableMap) {
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IdHashNodeMapTy IdNodeMap;
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// Initialize the root node at 0.
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IdNodeMap[0] = HashTree->getRoot();
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assert(IdNodeMap[0]->Successors.empty());
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for (auto &P : IdNodeStableMap) {
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auto Id = P.first;
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const HashNodeStable &NodeStable = P.second;
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assert(IdNodeMap.count(Id));
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HashNode *Curr = IdNodeMap[Id];
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Curr->Hash = NodeStable.Hash;
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if (NodeStable.Terminals)
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Curr->Terminals = NodeStable.Terminals;
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auto &Successors = Curr->Successors;
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assert(Successors.empty());
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for (auto SuccessorId : NodeStable.SuccessorIds) {
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auto Sucessor = std::make_unique<HashNode>();
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IdNodeMap[SuccessorId] = Sucessor.get();
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auto Hash = IdNodeStableMap.at(SuccessorId).Hash;
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Successors[Hash] = std::move(Sucessor);
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}
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}
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}
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