When a new function "NewF" is created with instructions extracted from another function "OldF", the CodeExtractor only preserves debug line/column of the extracted instructions. However: 1. Any inlinedAt nodes are dropped. 2. The scope chain is replaced with a single node, the Subprogram of NewF. Both of these are incorrect: most of the debug metadata from the original instructions should be preserved. We only need to update the Subprogram found at the scope of the last node of the inline chain; this Subprogram used to be OldF but now should be NewF. Differential Revision: https://reviews.llvm.org/D139217
191 lines
6.1 KiB
C++
191 lines
6.1 KiB
C++
//===-- DebugLoc.cpp - Implement DebugLoc class ---------------------------===//
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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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#include "llvm/IR/DebugLoc.h"
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#include "llvm/Config/llvm-config.h"
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#include "llvm/IR/DebugInfo.h"
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using namespace llvm;
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//===----------------------------------------------------------------------===//
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// DebugLoc Implementation
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//===----------------------------------------------------------------------===//
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DebugLoc::DebugLoc(const DILocation *L) : Loc(const_cast<DILocation *>(L)) {}
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DebugLoc::DebugLoc(const MDNode *L) : Loc(const_cast<MDNode *>(L)) {}
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DILocation *DebugLoc::get() const {
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return cast_or_null<DILocation>(Loc.get());
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}
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unsigned DebugLoc::getLine() const {
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assert(get() && "Expected valid DebugLoc");
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return get()->getLine();
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}
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unsigned DebugLoc::getCol() const {
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assert(get() && "Expected valid DebugLoc");
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return get()->getColumn();
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}
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MDNode *DebugLoc::getScope() const {
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assert(get() && "Expected valid DebugLoc");
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return get()->getScope();
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}
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DILocation *DebugLoc::getInlinedAt() const {
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assert(get() && "Expected valid DebugLoc");
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return get()->getInlinedAt();
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}
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MDNode *DebugLoc::getInlinedAtScope() const {
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return cast<DILocation>(Loc)->getInlinedAtScope();
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}
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DebugLoc DebugLoc::getFnDebugLoc() const {
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// FIXME: Add a method on \a DILocation that does this work.
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const MDNode *Scope = getInlinedAtScope();
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if (auto *SP = getDISubprogram(Scope))
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return DILocation::get(SP->getContext(), SP->getScopeLine(), 0, SP);
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return DebugLoc();
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}
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bool DebugLoc::isImplicitCode() const {
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if (DILocation *Loc = get()) {
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return Loc->isImplicitCode();
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}
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return true;
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}
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void DebugLoc::setImplicitCode(bool ImplicitCode) {
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if (DILocation *Loc = get()) {
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Loc->setImplicitCode(ImplicitCode);
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}
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}
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/// Traverses the scope chain rooted at RootScope until it hits a Subprogram,
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/// recreating the chain with "NewSP" instead.
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static DIScope *
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cloneScopeForSubprogram(DILocalScope &RootScope, DISubprogram &NewSP,
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LLVMContext &Ctx,
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DenseMap<const MDNode *, MDNode *> &Cache) {
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SmallVector<DIScope *> ScopeChain;
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DIScope *CachedResult = nullptr;
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for (DIScope *Scope = &RootScope; !isa<DISubprogram>(Scope);
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Scope = Scope->getScope()) {
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if (auto It = Cache.find(Scope); It != Cache.end()) {
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CachedResult = cast<DIScope>(It->second);
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break;
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}
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ScopeChain.push_back(Scope);
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}
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// Recreate the scope chain, bottom-up, starting at the new subprogram (or a
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// cached result).
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DIScope *UpdatedScope = CachedResult ? CachedResult : &NewSP;
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for (DIScope *ScopeToUpdate : reverse(ScopeChain)) {
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TempMDNode ClonedScope = ScopeToUpdate->clone();
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cast<DILexicalBlockBase>(*ClonedScope).replaceScope(UpdatedScope);
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UpdatedScope =
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cast<DIScope>(MDNode::replaceWithUniqued(std::move(ClonedScope)));
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Cache[ScopeToUpdate] = UpdatedScope;
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}
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return UpdatedScope;
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}
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DebugLoc DebugLoc::replaceInlinedAtSubprogram(
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const DebugLoc &RootLoc, DISubprogram &NewSP, LLVMContext &Ctx,
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DenseMap<const MDNode *, MDNode *> &Cache) {
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SmallVector<DILocation *> LocChain;
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DILocation *CachedResult = nullptr;
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// Collect the inline chain, stopping if we find a location that has already
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// been processed.
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for (DILocation *Loc = RootLoc; Loc; Loc = Loc->getInlinedAt()) {
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if (auto It = Cache.find(Loc); It != Cache.end()) {
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CachedResult = cast<DILocation>(It->second);
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break;
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}
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LocChain.push_back(Loc);
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}
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DILocation *UpdatedLoc = CachedResult;
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if (!UpdatedLoc) {
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// If no cache hits, then back() is the end of the inline chain, that is,
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// the DILocation whose scope ends in the Subprogram to be replaced.
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DILocation *LocToUpdate = LocChain.pop_back_val();
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DIScope *NewScope =
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cloneScopeForSubprogram(*LocToUpdate->getScope(), NewSP, Ctx, Cache);
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UpdatedLoc = DILocation::get(Ctx, LocToUpdate->getLine(),
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LocToUpdate->getColumn(), NewScope);
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Cache[LocToUpdate] = UpdatedLoc;
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}
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// Recreate the location chain, bottom-up, starting at the new scope (or a
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// cached result).
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for (const DILocation *LocToUpdate : reverse(LocChain)) {
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UpdatedLoc =
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DILocation::get(Ctx, LocToUpdate->getLine(), LocToUpdate->getColumn(),
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LocToUpdate->getScope(), UpdatedLoc);
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Cache[LocToUpdate] = UpdatedLoc;
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}
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return UpdatedLoc;
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}
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DebugLoc DebugLoc::appendInlinedAt(const DebugLoc &DL, DILocation *InlinedAt,
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LLVMContext &Ctx,
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DenseMap<const MDNode *, MDNode *> &Cache) {
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SmallVector<DILocation *, 3> InlinedAtLocations;
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DILocation *Last = InlinedAt;
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DILocation *CurInlinedAt = DL;
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// Gather all the inlined-at nodes.
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while (DILocation *IA = CurInlinedAt->getInlinedAt()) {
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// Skip any we've already built nodes for.
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if (auto *Found = Cache[IA]) {
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Last = cast<DILocation>(Found);
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break;
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}
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InlinedAtLocations.push_back(IA);
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CurInlinedAt = IA;
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}
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// Starting from the top, rebuild the nodes to point to the new inlined-at
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// location (then rebuilding the rest of the chain behind it) and update the
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// map of already-constructed inlined-at nodes.
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for (const DILocation *MD : reverse(InlinedAtLocations))
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Cache[MD] = Last = DILocation::getDistinct(
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Ctx, MD->getLine(), MD->getColumn(), MD->getScope(), Last);
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return Last;
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}
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#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
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LLVM_DUMP_METHOD void DebugLoc::dump() const { print(dbgs()); }
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#endif
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void DebugLoc::print(raw_ostream &OS) const {
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if (!Loc)
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return;
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// Print source line info.
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auto *Scope = cast<DIScope>(getScope());
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OS << Scope->getFilename();
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OS << ':' << getLine();
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if (getCol() != 0)
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OS << ':' << getCol();
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if (DebugLoc InlinedAtDL = getInlinedAt()) {
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OS << " @[ ";
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InlinedAtDL.print(OS);
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OS << " ]";
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}
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}
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