void identifyDefaultAbstractAttributes(
Function &F, DenseSet<const char *> *Whitelist = nullptr);
+ /// Record that \p I is deleted after information was manifested.
+ void deleteAfterManifest(Instruction &I) { ToBeDeletedInsts.insert(&I); }
+
+ /// Record that \p BB is deleted after information was manifested.
+ void deleteAfterManifest(BasicBlock &BB) { ToBeDeletedBlocks.insert(&BB); }
+
+ /// Record that \p F is deleted after information was manifested.
+ void deleteAfterManifest(Function &F) { ToBeDeletedFunctions.insert(&F); }
+
/// Return true if \p AA (or its context instruction) is assumed dead.
///
/// If \p LivenessAA is not provided it is queried.
/// The information cache that holds pre-processed (LLVM-IR) information.
InformationCache &InfoCache;
+
+ /// Functions, blocks, and instructions we delete after manifest is done.
+ ///
+ ///{
+ SmallPtrSet<Function *, 8> ToBeDeletedFunctions;
+ SmallPtrSet<BasicBlock *, 8> ToBeDeletedBlocks;
+ SmallPtrSet<Instruction *, 8> ToBeDeletedInsts;
+ ///}
};
/// An interface to query the internal state of an abstract attribute.
assert(
NumFinalAAs == AllAbstractAttributes.size() &&
"Expected the final number of abstract attributes to remain unchanged!");
+
+ // Delete stuff at the end to avoid invalid references and a nice order.
+ LLVM_DEBUG(dbgs() << "\n[Attributor] Delete " << ToBeDeletedFunctions.size()
+ << " functions and " << ToBeDeletedBlocks.size()
+ << " blocks and " << ToBeDeletedInsts.size()
+ << " instructions\n");
+ for (Instruction *I : ToBeDeletedInsts) {
+ if (I->hasNUsesOrMore(1))
+ I->replaceAllUsesWith(UndefValue::get(I->getType()));
+ I->eraseFromParent();
+ }
+ for (BasicBlock *BB : ToBeDeletedBlocks) {
+ // TODO: Check if we need to replace users (PHIs, indirect branches?)
+ BB->eraseFromParent();
+ }
+ for (Function *Fn : ToBeDeletedFunctions) {
+ Fn->replaceAllUsesWith(UndefValue::get(Fn->getType()));
+ Fn->eraseFromParent();
+ }
+
return ManifestChange;
}