50#define DEBUG_TYPE "stack-slot-coloring"
55 cl::desc(
"Suppress slot sharing during stack coloring"));
59STATISTIC(NumEliminated,
"Number of stack slots eliminated due to coloring");
60STATISTIC(NumDead,
"Number of trivially dead stack accesses eliminated");
64class StackSlotColoring {
72 std::vector<LiveInterval *> SSIntervals;
100 class ColorAssignmentInfo {
102 LiveInterval *SingleLI =
nullptr;
104 LiveIntervalUnion *LIU =
nullptr;
107 uint8_t LIUPad[
sizeof(LiveIntervalUnion)];
110 ~ColorAssignmentInfo() {
112 LIU->~LiveIntervalUnion();
117 bool overlaps(LiveInterval *LI)
const {
119 return LiveIntervalUnion::Query(*LI, *LIU).checkInterference();
120 return SingleLI ? SingleLI->overlaps(*LI) :
false;
127 LIU->unify(*LI, *LI);
128 }
else if (SingleLI) {
129 LIU =
new (LIUPad) LiveIntervalUnion(
Alloc);
130 LIU->unify(*SingleLI, *SingleLI);
131 LIU->unify(*LI, *LI);
145 MachineBlockFrequencyInfo *MBFI, SlotIndexes *Indexes)
146 : MFI(&MF.getFrameInfo()), TII(MF.getSubtarget().getInstrInfo()), LS(LS),
147 MBFI(MBFI), Indexes(Indexes) {}
151 void InitializeSlots();
153 int ColorSlot(LiveInterval *li);
155 void RewriteInstruction(MachineInstr &
MI, SmallVectorImpl<int> &SlotMapping,
157 bool RemoveDeadStores(MachineBasicBlock *
MBB);
164 StackSlotColoringLegacy() : MachineFunctionPass(ID) {}
166 void getAnalysisUsage(AnalysisUsage &AU)
const override {
171 AU.
addRequired<MachineBlockFrequencyInfoWrapperPass>();
188char StackSlotColoringLegacy::ID = 0;
193 "Stack Slot Coloring",
false,
false)
206 return LHS->weight() > RHS->weight();
218 for (MachineBasicBlock &
MBB : MF) {
219 for (MachineInstr &
MI :
MBB) {
220 for (
const MachineOperand &MO :
MI.operands()) {
223 int FI = MO.getIndex();
226 if (!
LS->hasInterval(FI))
228 LiveInterval &li =
LS->getInterval(FI);
229 if (!
MI.isDebugInstr())
233 for (MachineMemOperand *MMO :
MI.memoperands()) {
234 if (
const FixedStackPseudoSourceValue *FSV =
236 MMO->getPseudoValue())) {
237 int FI = FSV->getFrameIndex();
248void StackSlotColoring::InitializeSlots() {
255 OrigAlignments.
resize(LastFI);
257 AllColors[0].
resize(LastFI);
258 UsedColors[0].
resize(LastFI);
259 Assignments.resize(LastFI);
261 using Pair = std::iterator_traits<LiveStacks::iterator>::value_type;
265 Intervals.
reserve(
LS->getNumIntervals());
269 [](Pair *
LHS, Pair *
RHS) {
return LHS->first <
RHS->first; });
273 for (
auto *
I : Intervals) {
274 LiveInterval &li =
I->second;
280 SSIntervals.push_back(&li);
286 if (StackID >= AllColors.
size()) {
287 AllColors.
resize(StackID + 1);
288 UsedColors.
resize(StackID + 1);
290 AllColors[StackID].
resize(LastFI);
291 UsedColors[StackID].
resize(LastFI);
294 AllColors[StackID].set(FI);
304 for (
unsigned I = 0,
E = AllColors.
size();
I !=
E; ++
I)
305 NextColors[
I] = AllColors[
I].find_first();
309int StackSlotColoring::ColorSlot(LiveInterval *li) {
318 Color = UsedColors[StackID].find_first();
319 while (Color != -1) {
320 if (!Assignments[Color].overlaps(li)) {
325 Color = UsedColors[StackID].find_next(Color);
330 LLVM_DEBUG(
dbgs() <<
"cannot share FIs with different stack IDs\n");
337 assert(NextColors[StackID] != -1 &&
"No more spill slots?");
338 Color = NextColors[StackID];
339 UsedColors[StackID].set(Color);
340 NextColors[StackID] = AllColors[StackID].find_next(NextColors[StackID]);
346 Assignments[Color].add(li, LIUAlloc);
347 LLVM_DEBUG(
dbgs() <<
"Assigning fi#" << FI <<
" to fi#" << Color <<
"\n");
355 int64_t
Size = OrigSizes[FI];
365 SmallVector<int, 16> SlotMapping(NumObjs, -1);
368 BitVector UsedColors(NumObjs);
372 for (LiveInterval *li : SSIntervals) {
374 int NewSS = ColorSlot(li);
375 assert(NewSS >= 0 &&
"Stack coloring failed?");
376 SlotMapping[
SS] = NewSS;
377 RevMap[NewSS].push_back(SS);
378 SlotWeights[NewSS] += li->
weight();
379 UsedColors.set(NewSS);
384 for (LiveInterval *li : SSIntervals) {
392 for (LiveInterval *li : SSIntervals)
401 for (
unsigned SS = 0, SE = SSRefs.
size(); SS != SE; ++SS) {
402 int NewFI = SlotMapping[
SS];
403 if (NewFI == -1 || (NewFI == (
int)SS))
407 SmallVectorImpl<MachineMemOperand *> &RefMMOs = SSRefs[
SS];
408 for (MachineMemOperand *MMO : RefMMOs)
409 MMO->setValue(NewSV);
413 for (MachineBasicBlock &
MBB : MF) {
414 for (MachineInstr &
MI :
MBB)
415 RewriteInstruction(
MI, SlotMapping, MF);
416 RemoveDeadStores(&
MBB);
420 for (
int StackID = 0,
E = AllColors.
size(); StackID !=
E; ++StackID) {
421 int NextColor = NextColors[StackID];
422 while (NextColor != -1) {
423 LLVM_DEBUG(
dbgs() <<
"Removing unused stack object fi#" << NextColor <<
"\n");
425 NextColor = AllColors[StackID].find_next(NextColor);
434void StackSlotColoring::RewriteInstruction(MachineInstr &
MI,
435 SmallVectorImpl<int> &SlotMapping,
438 for (MachineOperand &MO :
MI.operands()) {
441 int OldFI = MO.getIndex();
444 int NewFI = SlotMapping[OldFI];
445 if (NewFI == -1 || NewFI == OldFI)
460bool StackSlotColoring::RemoveDeadStores(MachineBasicBlock*
MBB) {
463 bool changed =
false;
465 SmallVector<MachineInstr*, 4> toErase;
471 int FirstSS, SecondSS;
472 if (
TII->isStackSlotCopy(*
I, FirstSS, SecondSS) && FirstSS == SecondSS &&
490 while ((NextMI !=
E) && NextMI->isDebugInstr()) {
494 if (NextMI ==
E)
continue;
498 if (!LoadSize || !StoreSize)
500 if (FirstSS != SecondSS || LoadReg != StoreReg || FirstSS == -1 ||
507 if (NextMI->findRegisterUseOperandIdx(LoadReg,
nullptr,
true) !=
517 for (MachineInstr *
MI : toErase) {
520 MI->eraseFromParent();
528 dbgs() <<
"********** Stack Slot Coloring **********\n"
529 <<
"********** Function: " << MF.
getName() <<
'\n';
534 unsigned NumSlots =
LS->getNumIntervals();
546 ScanForSpillSlotRefs(MF);
550 for (
int &
Next : NextColors)
554 for (
auto &RefMMOs : SSRefs)
557 OrigAlignments.
clear();
566bool StackSlotColoringLegacy::runOnMachineFunction(
MachineFunction &MF) {
570 LiveStacks *
LS = &getAnalysis<LiveStacksWrapperLegacy>().getLS();
571 MachineBlockFrequencyInfo *MBFI =
572 &getAnalysis<MachineBlockFrequencyInfoWrapperPass>().getMBFI();
573 SlotIndexes *Indexes = &getAnalysis<SlotIndexesWrapperPass>().getSI();
574 StackSlotColoring Impl(MF, LS, MBFI, Indexes);
585 StackSlotColoring Impl(MF, LS, MBFI, Indexes);
assert(UImm &&(UImm !=~static_cast< T >(0)) &&"Invalid immediate!")
This file implements the BitVector class.
static GCRegistry::Add< CoreCLRGC > E("coreclr", "CoreCLR-compatible GC")
const HexagonInstrInfo * TII
Promote Memory to Register
#define INITIALIZE_PASS_DEPENDENCY(depName)
#define INITIALIZE_PASS_END(passName, arg, name, cfg, analysis)
#define INITIALIZE_PASS_BEGIN(passName, arg, name, cfg, analysis)
This file defines the SmallVector class.
static cl::opt< bool > DisableSharing("no-stack-slot-sharing", cl::init(false), cl::Hidden, cl::desc("Suppress slot sharing during stack coloring"))
static cl::opt< int > DCELimit("ssc-dce-limit", cl::init(-1), cl::Hidden)
This file defines the 'Statistic' class, which is designed to be an easy way to expose various metric...
#define STATISTIC(VARNAME, DESC)
PassT::Result & getResult(IRUnitT &IR, ExtraArgTs... ExtraArgs)
Get the result of an analysis pass for a given IR unit.
AnalysisUsage & addRequired()
AnalysisUsage & addPreserved()
Add the specified Pass class to the set of analyses preserved by this pass.
LLVM_ABI void setPreservesCFG()
This function should be called by the pass, iff they do not:
Represents analyses that only rely on functions' control flow.
Register isLoadFromStackSlot(const MachineInstr &MI, int &FrameIndex) const override
TargetInstrInfo overrides.
Register isStoreToStackSlot(const MachineInstr &MI, int &FrameIndex) const override
If the specified machine instruction is a direct store to a stack slot, return the virtual or physica...
LiveSegments::Allocator Allocator
LiveInterval - This class represents the liveness of a register, or stack slot.
LLVM_ABI void dump() const
void incrementWeight(float Inc)
void setWeight(float Value)
static LLVM_ABI float getSpillWeight(bool isDef, bool isUse, const MachineBlockFrequencyInfo *MBFI, const MachineInstr &MI, ProfileSummaryInfo *PSI=nullptr)
Calculate the spill weight to assign to a single instruction.
MachineInstrBundleIterator< MachineInstr > iterator
MachineBlockFrequencyInfo pass uses BlockFrequencyInfoImpl implementation to estimate machine basic b...
The MachineFrameInfo class represents an abstract stack frame until prolog/epilog code is inserted.
void setObjectSize(int ObjectIdx, int64_t Size)
Change the size of the specified stack object.
Align getObjectAlign(int ObjectIdx) const
Return the alignment of the specified stack object.
bool isSpillSlotObjectIndex(int ObjectIdx) const
Returns true if the specified index corresponds to a spill slot.
int64_t getObjectSize(int ObjectIdx) const
Return the size of the specified object.
void RemoveStackObject(int ObjectIdx)
Remove or mark dead a statically sized stack object.
int getObjectIndexEnd() const
Return one past the maximum frame object index.
uint8_t getStackID(int ObjectIdx) const
void setObjectAlignment(int ObjectIdx, Align Alignment)
setObjectAlignment - Change the alignment of the specified stack object.
bool isDeadObjectIndex(int ObjectIdx) const
Returns true if the specified index corresponds to a dead object.
MachineFunctionPass - This class adapts the FunctionPass interface to allow convenient creation of pa...
void getAnalysisUsage(AnalysisUsage &AU) const override
getAnalysisUsage - Subclasses that override getAnalysisUsage must call this.
PseudoSourceValueManager & getPSVManager() const
StringRef getName() const
getName - Return the name of the corresponding LLVM function.
bool exposesReturnsTwice() const
exposesReturnsTwice - Returns true if the function calls setjmp or any other similar functions with a...
Function & getFunction()
Return the LLVM function that this machine code represents.
static PreservedAnalyses all()
Construct a special preserved set that preserves all passes.
LLVM_ABI const PseudoSourceValue * getFixedStack(int FI)
Return a pseudo source value referencing a fixed stack frame entry, e.g., a spill slot.
int stackSlotIndex() const
Compute the frame index from a register value representing a stack slot.
LLVM_ABI void removeMachineInstrFromMaps(MachineInstr &MI, bool AllowBundled=false)
Removes machine instruction (bundle) MI from the mapping.
void reserve(size_type N)
void push_back(const T &Elt)
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
LLVM_ABI PreservedAnalyses run(MachineFunction &MF, MachineFunctionAnalysisManager &MFAM)
TargetInstrInfo - Interface to description of machine instruction set.
static constexpr TypeSize getZero()
constexpr char Align[]
Key for Kernel::Arg::Metadata::mAlign.
initializer< Ty > init(const Ty &Val)
DXILDebugInfoMap run(Module &M)
This is an optimization pass for GlobalISel generic memory operations.
void stable_sort(R &&Range)
AnalysisManager< MachineFunction > MachineFunctionAnalysisManager
LLVM_ABI PreservedAnalyses getMachineFunctionPassPreservedAnalyses()
Returns the minimum set of Analyses that all machine function passes must preserve.
auto dyn_cast_or_null(const Y &Val)
void sort(IteratorTy Start, IteratorTy End)
LLVM_ABI raw_ostream & dbgs()
dbgs() - This returns a reference to a raw_ostream for debugging messages.
class LLVM_GSL_OWNER SmallVector
Forward declaration of SmallVector so that calculateSmallVectorDefaultInlinedElements can reference s...
LLVM_ABI char & StackSlotColoringID
StackSlotColoring - This pass performs stack slot coloring.
RelativeUniformCounterPtr ValuesPtrExpr VTableAddr Next
bool operator()(LiveInterval *LHS, LiveInterval *RHS) const