#include "mlir/Transforms/ControlFlowSinkUtils.h"
#include "mlir/IR/Dominance.h"
#include "mlir/IR/Matchers.h"
#include "mlir/IR/Operation.h"
#include "mlir/IR/OperationSupport.h"
#include "mlir/Interfaces/ControlFlowInterfaces.h"
#include "llvm/Support/DebugLog.h"
#include <vector>
#define DEBUG_TYPE "cf-sink"
using namespace mlir;
namespace {
class Sinker {
public:
Sinker(function_ref<bool(Operation *, Region *)> shouldMoveIntoRegion,
function_ref<void(Operation *, Region *)> moveIntoRegion,
DominanceInfo &domInfo)
: shouldMoveIntoRegion(shouldMoveIntoRegion),
moveIntoRegion(moveIntoRegion), domInfo(domInfo) {}
size_t sinkRegions(RegionRange regions);
private:
bool allUsersDominatedBy(Operation *op, Region *region);
void tryToSinkPredecessors(Operation *user, Region *region,
std::vector<Operation *> &stack);
void sinkRegion(Region *region);
function_ref<bool(Operation *, Region *)> shouldMoveIntoRegion;
function_ref<void(Operation *, Region *)> moveIntoRegion;
DominanceInfo &domInfo;
size_t numSunk = 0;
};
}
bool Sinker::allUsersDominatedBy(Operation *op, Region *region) {
assert(region->findAncestorOpInRegion(*op) == nullptr &&
"expected op to be defined outside the region");
return llvm::all_of(op->getUsers(), [&](Operation *user) {
return domInfo.dominates(®ion->front(), user->getBlock());
});
}
void Sinker::tryToSinkPredecessors(Operation *user, Region *region,
std::vector<Operation *> &stack) {
LDBG() << "Contained op: "
<< OpWithFlags(user, OpPrintingFlags().skipRegions());
for (Value value : user->getOperands()) {
Operation *op = value.getDefiningOp();
if (!op || op->getParentRegion() == region)
continue;
LDBG() << "Try to sink:\n"
<< OpWithFlags(op, OpPrintingFlags().skipRegions());
if (allUsersDominatedBy(op, region) && shouldMoveIntoRegion(op, region)) {
moveIntoRegion(op, region);
++numSunk;
stack.push_back(op);
}
}
}
void Sinker::sinkRegion(Region *region) {
std::vector<Operation *> stack;
for (Operation &op : region->getOps())
stack.push_back(&op);
while (!stack.empty()) {
Operation *op = stack.back();
stack.pop_back();
tryToSinkPredecessors(op, region, stack);
}
}
size_t Sinker::sinkRegions(RegionRange regions) {
for (Region *region : regions)
if (!region->empty())
sinkRegion(region);
return numSunk;
}
size_t mlir::controlFlowSink(
RegionRange regions, DominanceInfo &domInfo,
function_ref<bool(Operation *, Region *)> shouldMoveIntoRegion,
function_ref<void(Operation *, Region *)> moveIntoRegion) {
return Sinker(shouldMoveIntoRegion, moveIntoRegion, domInfo)
.sinkRegions(regions);
}
void mlir::getSinglyExecutedRegionsToSink(RegionBranchOpInterface branch,
SmallVectorImpl<Region *> ®ions) {
SmallVector<Attribute> operands(branch->getNumOperands(), Attribute());
for (auto [idx, operand] : llvm::enumerate(branch->getOperands()))
(void)matchPattern(operand, m_Constant(&operands[idx]));
SmallVector<InvocationBounds> bounds;
branch.getRegionInvocationBounds(operands, bounds);
for (auto it : llvm::zip(branch->getRegions(), bounds)) {
const InvocationBounds &bound = std::get<1>(it);
if (bound.getUpperBound() && *bound.getUpperBound() <= 1)
regions.push_back(&std::get<0>(it));
}
}