#include "PassDetail.h"
#include "mlir/IR/Dominance.h"
#include "mlir/Interfaces/SideEffectInterfaces.h"
#include "mlir/Pass/Pass.h"
#include "mlir/Transforms/Passes.h"
#include "llvm/ADT/DenseMapInfo.h"
#include "llvm/ADT/Hashing.h"
#include "llvm/ADT/ScopedHashTable.h"
#include "llvm/Support/Allocator.h"
#include "llvm/Support/RecyclingAllocator.h"
#include <deque>
using namespace mlir;
namespace {
struct SimpleOperationInfo : public llvm::DenseMapInfo<Operation *> {
static unsigned getHashValue(const Operation *opC) {
return OperationEquivalence::computeHash(
const_cast<Operation *>(opC),
OperationEquivalence::directHashValue,
OperationEquivalence::ignoreHashValue,
OperationEquivalence::IgnoreLocations);
}
static bool isEqual(const Operation *lhsC, const Operation *rhsC) {
auto *lhs = const_cast<Operation *>(lhsC);
auto *rhs = const_cast<Operation *>(rhsC);
if (lhs == rhs)
return true;
if (lhs == getTombstoneKey() || lhs == getEmptyKey() ||
rhs == getTombstoneKey() || rhs == getEmptyKey())
return false;
return OperationEquivalence::isEquivalentTo(
const_cast<Operation *>(lhsC), const_cast<Operation *>(rhsC),
OperationEquivalence::exactValueMatch,
OperationEquivalence::ignoreValueEquivalence,
OperationEquivalence::IgnoreLocations);
}
};
}
namespace {
struct CSE : public CSEBase<CSE> {
using AllocatorTy = llvm::RecyclingAllocator<
llvm::BumpPtrAllocator,
llvm::ScopedHashTableVal<Operation *, Operation *>>;
using ScopedMapTy = llvm::ScopedHashTable<Operation *, Operation *,
SimpleOperationInfo, AllocatorTy>;
using MemEffectsCache =
DenseMap<Operation *, std::pair<Operation *, MemoryEffects::Effect *>>;
struct CFGStackNode {
CFGStackNode(ScopedMapTy &knownValues, DominanceInfoNode *node)
: scope(knownValues), node(node), childIterator(node->begin()) {}
ScopedMapTy::ScopeTy scope;
DominanceInfoNode *node;
DominanceInfoNode::const_iterator childIterator;
bool processed = false;
};
LogicalResult simplifyOperation(ScopedMapTy &knownValues, Operation *op,
bool hasSSADominance);
void simplifyBlock(ScopedMapTy &knownValues, Block *bb, bool hasSSADominance);
void simplifyRegion(ScopedMapTy &knownValues, Region ®ion);
void runOnOperation() override;
private:
void replaceUsesAndDelete(ScopedMapTy &knownValues, Operation *op,
Operation *existing, bool hasSSADominance);
bool hasOtherSideEffectingOpInBetween(Operation *fromOp, Operation *toOp);
std::vector<Operation *> opsToErase;
DominanceInfo *domInfo = nullptr;
MemEffectsCache memEffectsCache;
};
}
void CSE::replaceUsesAndDelete(ScopedMapTy &knownValues, Operation *op,
Operation *existing, bool hasSSADominance) {
if (hasSSADominance) {
op->replaceAllUsesWith(existing);
opsToErase.push_back(op);
} else {
for (auto it : llvm::zip(op->getResults(), existing->getResults())) {
std::get<0>(it).replaceUsesWithIf(
std::get<1>(it), [&](OpOperand &operand) {
return !knownValues.count(operand.getOwner());
});
}
if (op->use_empty())
opsToErase.push_back(op);
}
if (existing->getLoc().isa<UnknownLoc>() && !op->getLoc().isa<UnknownLoc>())
existing->setLoc(op->getLoc());
++numCSE;
}
bool CSE::hasOtherSideEffectingOpInBetween(Operation *fromOp, Operation *toOp) {
assert(fromOp->getBlock() == toOp->getBlock());
assert(
isa<MemoryEffectOpInterface>(fromOp) &&
cast<MemoryEffectOpInterface>(fromOp).hasEffect<MemoryEffects::Read>() &&
isa<MemoryEffectOpInterface>(toOp) &&
cast<MemoryEffectOpInterface>(toOp).hasEffect<MemoryEffects::Read>());
Operation *nextOp = fromOp->getNextNode();
auto result =
memEffectsCache.try_emplace(fromOp, std::make_pair(fromOp, nullptr));
if (result.second) {
auto memEffectsCachePair = result.first->second;
if (memEffectsCachePair.second == nullptr) {
nextOp = memEffectsCachePair.first;
} else {
return true;
}
}
while (nextOp && nextOp != toOp) {
auto nextOpMemEffects = dyn_cast<MemoryEffectOpInterface>(nextOp);
if ((nextOpMemEffects &&
nextOpMemEffects.hasEffect<MemoryEffects::Write>()) ||
!nextOpMemEffects) {
result.first->second =
std::make_pair(nextOp, MemoryEffects::Write::get());
return true;
}
nextOp = nextOp->getNextNode();
}
result.first->second = std::make_pair(toOp, nullptr);
return false;
}
LogicalResult CSE::simplifyOperation(ScopedMapTy &knownValues, Operation *op,
bool hasSSADominance) {
if (op->hasTrait<OpTrait::IsTerminator>())
return failure();
if (isOpTriviallyDead(op)) {
opsToErase.push_back(op);
++numDCE;
return success();
}
if (op->getNumRegions() != 0)
return failure();
if (!MemoryEffectOpInterface::hasNoEffect(op)) {
auto memEffects = dyn_cast<MemoryEffectOpInterface>(op);
if (!memEffects || !memEffects.onlyHasEffect<MemoryEffects::Read>())
return failure();
if (auto *existing = knownValues.lookup(op)) {
if (existing->getBlock() == op->getBlock() &&
!hasOtherSideEffectingOpInBetween(existing, op)) {
replaceUsesAndDelete(knownValues, op, existing, hasSSADominance);
return success();
}
}
knownValues.insert(op, op);
return failure();
}
if (auto *existing = knownValues.lookup(op)) {
replaceUsesAndDelete(knownValues, op, existing, hasSSADominance);
++numCSE;
return success();
}
knownValues.insert(op, op);
return failure();
}
void CSE::simplifyBlock(ScopedMapTy &knownValues, Block *bb,
bool hasSSADominance) {
for (auto &op : *bb) {
if (succeeded(simplifyOperation(knownValues, &op, hasSSADominance)))
continue;
if (op.getNumRegions() == 0)
continue;
if (op.mightHaveTrait<OpTrait::IsIsolatedFromAbove>()) {
ScopedMapTy nestedKnownValues;
for (auto ®ion : op.getRegions())
simplifyRegion(nestedKnownValues, region);
continue;
}
for (auto ®ion : op.getRegions())
simplifyRegion(knownValues, region);
}
memEffectsCache.clear();
}
void CSE::simplifyRegion(ScopedMapTy &knownValues, Region ®ion) {
if (region.empty())
return;
bool hasSSADominance = domInfo->hasSSADominance(®ion);
if (region.hasOneBlock()) {
ScopedMapTy::ScopeTy scope(knownValues);
simplifyBlock(knownValues, ®ion.front(), hasSSADominance);
return;
}
if (!hasSSADominance)
return;
std::deque<std::unique_ptr<CFGStackNode>> stack;
stack.emplace_back(std::make_unique<CFGStackNode>(
knownValues, domInfo->getRootNode(®ion)));
while (!stack.empty()) {
auto ¤tNode = stack.back();
if (!currentNode->processed) {
currentNode->processed = true;
simplifyBlock(knownValues, currentNode->node->getBlock(),
hasSSADominance);
}
if (currentNode->childIterator != currentNode->node->end()) {
auto *childNode = *(currentNode->childIterator++);
stack.emplace_back(
std::make_unique<CFGStackNode>(knownValues, childNode));
} else {
stack.pop_back();
}
}
}
void CSE::runOnOperation() {
ScopedMapTy knownValues;
domInfo = &getAnalysis<DominanceInfo>();
Operation *rootOp = getOperation();
for (auto ®ion : rootOp->getRegions())
simplifyRegion(knownValues, region);
if (opsToErase.empty())
return markAllAnalysesPreserved();
for (auto *op : opsToErase)
op->erase();
opsToErase.clear();
markAnalysesPreserved<DominanceInfo, PostDominanceInfo>();
domInfo = nullptr;
}
std::unique_ptr<Pass> mlir::createCSEPass() { return std::make_unique<CSE>(); }