503 lines
16 KiB
C++
503 lines
16 KiB
C++
//===--- ELF_loongarch.cpp - JIT linker implementation for ELF/loongarch --===//
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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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// ELF/loongarch jit-link implementation.
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//
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//===----------------------------------------------------------------------===//
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#include "llvm/ExecutionEngine/JITLink/ELF_loongarch.h"
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#include "llvm/BinaryFormat/ELF.h"
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#include "llvm/ExecutionEngine/JITLink/DWARFRecordSectionSplitter.h"
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#include "llvm/ExecutionEngine/JITLink/JITLink.h"
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#include "llvm/ExecutionEngine/JITLink/loongarch.h"
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#include "llvm/Object/ELF.h"
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#include "llvm/Object/ELFObjectFile.h"
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#include "EHFrameSupportImpl.h"
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#include "ELFLinkGraphBuilder.h"
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#include "JITLinkGeneric.h"
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#define DEBUG_TYPE "jitlink"
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using namespace llvm;
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using namespace llvm::jitlink;
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using namespace llvm::jitlink::loongarch;
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namespace {
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class ELFJITLinker_loongarch : public JITLinker<ELFJITLinker_loongarch> {
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friend class JITLinker<ELFJITLinker_loongarch>;
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public:
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ELFJITLinker_loongarch(std::unique_ptr<JITLinkContext> Ctx,
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std::unique_ptr<LinkGraph> G,
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PassConfiguration PassConfig)
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: JITLinker(std::move(Ctx), std::move(G), std::move(PassConfig)) {}
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private:
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Error applyFixup(LinkGraph &G, Block &B, const Edge &E) const {
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return loongarch::applyFixup(G, B, E);
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}
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};
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namespace {
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struct SymbolAnchor {
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uint64_t Offset;
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Symbol *Sym;
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bool End; // true for the anchor of getOffset() + getSize()
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};
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struct BlockRelaxAux {
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// This records symbol start and end offsets which will be adjusted according
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// to the nearest RelocDeltas element.
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SmallVector<SymbolAnchor, 0> Anchors;
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// All edges that either 1) are R_LARCH_ALIGN or 2) have a R_LARCH_RELAX edge
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// at the same offset.
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SmallVector<Edge *, 0> RelaxEdges;
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// For RelaxEdges[I], the actual offset is RelaxEdges[I]->getOffset() - (I ?
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// RelocDeltas[I - 1] : 0).
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SmallVector<uint32_t, 0> RelocDeltas;
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// For RelaxEdges[I], the actual type is EdgeKinds[I].
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SmallVector<Edge::Kind, 0> EdgeKinds;
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// List of rewritten instructions. Contains one raw encoded instruction per
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// element in EdgeKinds that isn't Invalid or R_LARCH_ALIGN.
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SmallVector<uint32_t, 0> Writes;
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};
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struct RelaxAux {
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DenseMap<Block *, BlockRelaxAux> Blocks;
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};
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} // namespace
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static bool shouldRelax(const Section &S) {
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return (S.getMemProt() & orc::MemProt::Exec) != orc::MemProt::None;
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}
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static bool isRelaxable(const Edge &E) {
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switch (E.getKind()) {
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default:
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return false;
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case AlignRelaxable:
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return true;
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}
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}
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static RelaxAux initRelaxAux(LinkGraph &G) {
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RelaxAux Aux;
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for (auto &S : G.sections()) {
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if (!shouldRelax(S))
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continue;
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for (auto *B : S.blocks()) {
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auto BlockEmplaceResult = Aux.Blocks.try_emplace(B);
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assert(BlockEmplaceResult.second && "Block encountered twice");
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auto &BlockAux = BlockEmplaceResult.first->second;
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for (auto &E : B->edges())
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if (isRelaxable(E))
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BlockAux.RelaxEdges.push_back(&E);
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if (BlockAux.RelaxEdges.empty()) {
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Aux.Blocks.erase(BlockEmplaceResult.first);
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continue;
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}
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const auto NumEdges = BlockAux.RelaxEdges.size();
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BlockAux.RelocDeltas.resize(NumEdges, 0);
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BlockAux.EdgeKinds.resize_for_overwrite(NumEdges);
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// Store anchors (offset and offset+size) for symbols.
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for (auto *Sym : S.symbols()) {
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if (!Sym->isDefined() || &Sym->getBlock() != B)
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continue;
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BlockAux.Anchors.push_back({Sym->getOffset(), Sym, false});
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BlockAux.Anchors.push_back(
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{Sym->getOffset() + Sym->getSize(), Sym, true});
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}
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}
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}
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// Sort anchors by offset so that we can find the closest relocation
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// efficiently. For a zero size symbol, ensure that its start anchor precedes
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// its end anchor. For two symbols with anchors at the same offset, their
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// order does not matter.
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for (auto &BlockAuxIter : Aux.Blocks) {
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llvm::sort(BlockAuxIter.second.Anchors, [](auto &A, auto &B) {
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return std::make_pair(A.Offset, A.End) < std::make_pair(B.Offset, B.End);
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});
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}
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return Aux;
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}
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static void relaxAlign(orc::ExecutorAddr Loc, const Edge &E, uint32_t &Remove,
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Edge::Kind &NewEdgeKind) {
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const uint64_t Addend =
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!E.getTarget().isDefined() ? Log2_64(E.getAddend()) + 1 : E.getAddend();
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const uint64_t AllBytes = (1ULL << (Addend & 0xff)) - 4;
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const uint64_t Align = 1ULL << (Addend & 0xff);
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const uint64_t MaxBytes = Addend >> 8;
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const uint64_t Off = Loc.getValue() & (Align - 1);
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const uint64_t CurBytes = Off == 0 ? 0 : Align - Off;
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// All bytes beyond the alignment boundary should be removed.
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// If emit bytes more than max bytes to emit, remove all.
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if (MaxBytes != 0 && CurBytes > MaxBytes)
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Remove = AllBytes;
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else
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Remove = AllBytes - CurBytes;
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assert(static_cast<int32_t>(Remove) >= 0 &&
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"R_LARCH_ALIGN needs expanding the content");
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NewEdgeKind = AlignRelaxable;
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}
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static bool relaxBlock(LinkGraph &G, Block &Block, BlockRelaxAux &Aux) {
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const auto BlockAddr = Block.getAddress();
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bool Changed = false;
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ArrayRef<SymbolAnchor> SA = ArrayRef(Aux.Anchors);
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uint32_t Delta = 0;
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Aux.EdgeKinds.assign(Aux.EdgeKinds.size(), Edge::Invalid);
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Aux.Writes.clear();
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for (auto [I, E] : llvm::enumerate(Aux.RelaxEdges)) {
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const auto Loc = BlockAddr + E->getOffset() - Delta;
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auto &Cur = Aux.RelocDeltas[I];
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uint32_t Remove = 0;
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switch (E->getKind()) {
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case AlignRelaxable:
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relaxAlign(Loc, *E, Remove, Aux.EdgeKinds[I]);
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break;
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default:
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llvm_unreachable("Unexpected relaxable edge kind");
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}
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// For all anchors whose offsets are <= E->getOffset(), they are preceded by
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// the previous relocation whose RelocDeltas value equals Delta.
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// Decrease their offset and update their size.
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for (; SA.size() && SA[0].Offset <= E->getOffset(); SA = SA.slice(1)) {
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if (SA[0].End)
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SA[0].Sym->setSize(SA[0].Offset - Delta - SA[0].Sym->getOffset());
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else
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SA[0].Sym->setOffset(SA[0].Offset - Delta);
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}
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Delta += Remove;
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if (Delta != Cur) {
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Cur = Delta;
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Changed = true;
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}
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}
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for (const SymbolAnchor &A : SA) {
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if (A.End)
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A.Sym->setSize(A.Offset - Delta - A.Sym->getOffset());
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else
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A.Sym->setOffset(A.Offset - Delta);
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}
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return Changed;
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}
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static bool relaxOnce(LinkGraph &G, RelaxAux &Aux) {
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bool Changed = false;
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for (auto &[B, BlockAux] : Aux.Blocks)
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Changed |= relaxBlock(G, *B, BlockAux);
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return Changed;
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}
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static void finalizeBlockRelax(LinkGraph &G, Block &Block, BlockRelaxAux &Aux) {
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auto Contents = Block.getAlreadyMutableContent();
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auto *Dest = Contents.data();
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uint32_t Offset = 0;
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uint32_t Delta = 0;
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// Update section content: remove NOPs for R_LARCH_ALIGN and rewrite
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// instructions for relaxed relocations.
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for (auto [I, E] : llvm::enumerate(Aux.RelaxEdges)) {
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uint32_t Remove = Aux.RelocDeltas[I] - Delta;
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Delta = Aux.RelocDeltas[I];
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if (Remove == 0 && Aux.EdgeKinds[I] == Edge::Invalid)
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continue;
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// Copy from last location to the current relocated location.
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const auto Size = E->getOffset() - Offset;
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std::memmove(Dest, Contents.data() + Offset, Size);
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Dest += Size;
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Offset = E->getOffset() + Remove;
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}
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std::memmove(Dest, Contents.data() + Offset, Contents.size() - Offset);
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// Fixup edge offsets and kinds.
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Delta = 0;
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size_t I = 0;
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for (auto &E : Block.edges()) {
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E.setOffset(E.getOffset() - Delta);
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if (I < Aux.RelaxEdges.size() && Aux.RelaxEdges[I] == &E) {
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if (Aux.EdgeKinds[I] != Edge::Invalid)
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E.setKind(Aux.EdgeKinds[I]);
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Delta = Aux.RelocDeltas[I];
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++I;
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}
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}
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// Remove AlignRelaxable edges: all other relaxable edges got modified and
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// will be used later while linking. Alignment is entirely handled here so we
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// don't need these edges anymore.
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for (auto IE = Block.edges().begin(); IE != Block.edges().end();) {
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if (IE->getKind() == AlignRelaxable)
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IE = Block.removeEdge(IE);
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else
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++IE;
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}
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}
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static void finalizeRelax(LinkGraph &G, RelaxAux &Aux) {
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for (auto &[B, BlockAux] : Aux.Blocks)
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finalizeBlockRelax(G, *B, BlockAux);
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}
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static Error relax(LinkGraph &G) {
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auto Aux = initRelaxAux(G);
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while (relaxOnce(G, Aux)) {
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}
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finalizeRelax(G, Aux);
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return Error::success();
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}
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template <typename ELFT>
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class ELFLinkGraphBuilder_loongarch : public ELFLinkGraphBuilder<ELFT> {
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private:
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static Expected<loongarch::EdgeKind_loongarch>
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getRelocationKind(const uint32_t Type) {
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using namespace loongarch;
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switch (Type) {
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case ELF::R_LARCH_64:
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return Pointer64;
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case ELF::R_LARCH_32:
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return Pointer32;
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case ELF::R_LARCH_32_PCREL:
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return Delta32;
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case ELF::R_LARCH_B16:
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return Branch16PCRel;
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case ELF::R_LARCH_B21:
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return Branch21PCRel;
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case ELF::R_LARCH_B26:
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return Branch26PCRel;
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case ELF::R_LARCH_PCALA_HI20:
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return Page20;
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case ELF::R_LARCH_PCALA_LO12:
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return PageOffset12;
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case ELF::R_LARCH_GOT_PC_HI20:
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return RequestGOTAndTransformToPage20;
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case ELF::R_LARCH_GOT_PC_LO12:
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return RequestGOTAndTransformToPageOffset12;
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case ELF::R_LARCH_CALL36:
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return Call36PCRel;
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case ELF::R_LARCH_ADD6:
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return Add6;
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case ELF::R_LARCH_ADD8:
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return Add8;
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case ELF::R_LARCH_ADD16:
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return Add16;
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case ELF::R_LARCH_ADD32:
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return Add32;
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case ELF::R_LARCH_ADD64:
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return Add64;
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case ELF::R_LARCH_ADD_ULEB128:
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return AddUleb128;
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case ELF::R_LARCH_SUB6:
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return Sub6;
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case ELF::R_LARCH_SUB8:
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return Sub8;
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case ELF::R_LARCH_SUB16:
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return Sub16;
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case ELF::R_LARCH_SUB32:
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return Sub32;
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case ELF::R_LARCH_SUB64:
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return Sub64;
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case ELF::R_LARCH_SUB_ULEB128:
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return SubUleb128;
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case ELF::R_LARCH_ALIGN:
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return AlignRelaxable;
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}
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return make_error<JITLinkError>(
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"Unsupported loongarch relocation:" + formatv("{0:d}: ", Type) +
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object::getELFRelocationTypeName(ELF::EM_LOONGARCH, Type));
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}
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EdgeKind_loongarch getRelaxableRelocationKind(EdgeKind_loongarch Kind) {
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// TODO: Implement more. Just ignore all relaxations now.
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return Kind;
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}
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Error addRelocations() override {
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LLVM_DEBUG(dbgs() << "Processing relocations:\n");
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using Base = ELFLinkGraphBuilder<ELFT>;
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using Self = ELFLinkGraphBuilder_loongarch<ELFT>;
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for (const auto &RelSect : Base::Sections)
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if (Error Err = Base::forEachRelaRelocation(RelSect, this,
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&Self::addSingleRelocation))
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return Err;
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return Error::success();
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}
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Error addSingleRelocation(const typename ELFT::Rela &Rel,
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const typename ELFT::Shdr &FixupSect,
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Block &BlockToFix) {
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using Base = ELFLinkGraphBuilder<ELFT>;
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uint32_t Type = Rel.getType(false);
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int64_t Addend = Rel.r_addend;
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if (Type == ELF::R_LARCH_RELAX) {
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if (BlockToFix.edges_empty())
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return make_error<StringError>(
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"R_LARCH_RELAX without preceding relocation",
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inconvertibleErrorCode());
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auto &PrevEdge = *std::prev(BlockToFix.edges().end());
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auto Kind = static_cast<EdgeKind_loongarch>(PrevEdge.getKind());
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PrevEdge.setKind(getRelaxableRelocationKind(Kind));
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return Error::success();
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}
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Expected<loongarch::EdgeKind_loongarch> Kind = getRelocationKind(Type);
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if (!Kind)
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return Kind.takeError();
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uint32_t SymbolIndex = Rel.getSymbol(false);
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auto ObjSymbol = Base::Obj.getRelocationSymbol(Rel, Base::SymTabSec);
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if (!ObjSymbol)
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return ObjSymbol.takeError();
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Symbol *GraphSymbol = Base::getGraphSymbol(SymbolIndex);
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if (!GraphSymbol)
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return make_error<StringError>(
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formatv("Could not find symbol at given index, did you add it to "
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"JITSymbolTable? index: {0}, shndx: {1} Size of table: {2}",
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SymbolIndex, (*ObjSymbol)->st_shndx,
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Base::GraphSymbols.size()),
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inconvertibleErrorCode());
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auto FixupAddress = orc::ExecutorAddr(FixupSect.sh_addr) + Rel.r_offset;
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Edge::OffsetT Offset = FixupAddress - BlockToFix.getAddress();
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Edge GE(*Kind, Offset, *GraphSymbol, Addend);
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LLVM_DEBUG({
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dbgs() << " ";
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printEdge(dbgs(), BlockToFix, GE, loongarch::getEdgeKindName(*Kind));
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dbgs() << "\n";
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});
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BlockToFix.addEdge(std::move(GE));
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return Error::success();
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}
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public:
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ELFLinkGraphBuilder_loongarch(StringRef FileName,
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const object::ELFFile<ELFT> &Obj,
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std::shared_ptr<orc::SymbolStringPool> SSP,
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Triple TT, SubtargetFeatures Features)
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: ELFLinkGraphBuilder<ELFT>(Obj, std::move(SSP), std::move(TT),
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std::move(Features), FileName,
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loongarch::getEdgeKindName) {}
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};
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Error buildTables_ELF_loongarch(LinkGraph &G) {
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LLVM_DEBUG(dbgs() << "Visiting edges in graph:\n");
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GOTTableManager GOT;
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PLTTableManager PLT(GOT);
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visitExistingEdges(G, GOT, PLT);
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return Error::success();
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}
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} // namespace
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namespace llvm {
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namespace jitlink {
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Expected<std::unique_ptr<LinkGraph>> createLinkGraphFromELFObject_loongarch(
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MemoryBufferRef ObjectBuffer, std::shared_ptr<orc::SymbolStringPool> SSP) {
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LLVM_DEBUG({
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dbgs() << "Building jitlink graph for new input "
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<< ObjectBuffer.getBufferIdentifier() << "...\n";
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});
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auto ELFObj = object::ObjectFile::createELFObjectFile(ObjectBuffer);
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if (!ELFObj)
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return ELFObj.takeError();
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auto Features = (*ELFObj)->getFeatures();
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if (!Features)
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return Features.takeError();
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if ((*ELFObj)->getArch() == Triple::loongarch64) {
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auto &ELFObjFile = cast<object::ELFObjectFile<object::ELF64LE>>(**ELFObj);
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return ELFLinkGraphBuilder_loongarch<object::ELF64LE>(
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(*ELFObj)->getFileName(), ELFObjFile.getELFFile(),
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std::move(SSP), (*ELFObj)->makeTriple(), std::move(*Features))
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.buildGraph();
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}
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assert((*ELFObj)->getArch() == Triple::loongarch32 &&
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"Invalid triple for LoongArch ELF object file");
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auto &ELFObjFile = cast<object::ELFObjectFile<object::ELF32LE>>(**ELFObj);
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return ELFLinkGraphBuilder_loongarch<object::ELF32LE>(
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(*ELFObj)->getFileName(), ELFObjFile.getELFFile(), std::move(SSP),
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(*ELFObj)->makeTriple(), std::move(*Features))
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.buildGraph();
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}
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void link_ELF_loongarch(std::unique_ptr<LinkGraph> G,
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std::unique_ptr<JITLinkContext> Ctx) {
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PassConfiguration Config;
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const Triple &TT = G->getTargetTriple();
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if (Ctx->shouldAddDefaultTargetPasses(TT)) {
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// Add eh-frame passes.
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Config.PrePrunePasses.push_back(DWARFRecordSectionSplitter(".eh_frame"));
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Config.PrePrunePasses.push_back(
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EHFrameEdgeFixer(".eh_frame", G->getPointerSize(), Pointer32, Pointer64,
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Delta32, Delta64, NegDelta32));
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Config.PrePrunePasses.push_back(EHFrameNullTerminator(".eh_frame"));
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// Add a mark-live pass.
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if (auto MarkLive = Ctx->getMarkLivePass(TT))
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Config.PrePrunePasses.push_back(std::move(MarkLive));
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else
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Config.PrePrunePasses.push_back(markAllSymbolsLive);
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// Add an in-place GOT/PLTStubs build pass.
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Config.PostPrunePasses.push_back(buildTables_ELF_loongarch);
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// Add a linker relaxation pass.
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Config.PostAllocationPasses.push_back(relax);
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}
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|
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if (auto Err = Ctx->modifyPassConfig(*G, Config))
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return Ctx->notifyFailed(std::move(Err));
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|
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ELFJITLinker_loongarch::link(std::move(Ctx), std::move(G), std::move(Config));
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}
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LinkGraphPassFunction createRelaxationPass_ELF_loongarch() { return relax; }
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} // namespace jitlink
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} // namespace llvm
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