LLVM 22.0.0git
LoopUtils.h
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1//===- llvm/Transforms/Utils/LoopUtils.h - Loop utilities -------*- C++ -*-===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8//
9// This file defines some loop transformation utilities.
10//
11//===----------------------------------------------------------------------===//
12
13#ifndef LLVM_TRANSFORMS_UTILS_LOOPUTILS_H
14#define LLVM_TRANSFORMS_UTILS_LOOPUTILS_H
15
21
22namespace llvm {
23
24template <typename T> class DomTreeNodeBase;
26class AssumptionCache;
27class StringRef;
28class AnalysisUsage;
30class AAResults;
31class BasicBlock;
33class IRBuilderBase;
34class Loop;
35class LoopInfo;
36class MemoryAccess;
37class MemorySSA;
41class ScalarEvolution;
42class SCEV;
43class SCEVExpander;
45class LPPassManager;
46class Instruction;
48typedef std::pair<const RuntimeCheckingPtrGroup *,
51
52template <typename T, unsigned N> class SmallSetVector;
53template <typename T, unsigned N> class SmallPriorityWorklist;
54
56 LoopInfo *LI,
57 MemorySSAUpdater *MSSAU,
58 bool PreserveLCSSA);
59
60/// Ensure that all exit blocks of the loop are dedicated exits.
61///
62/// For any loop exit block with non-loop predecessors, we split the loop
63/// predecessors to use a dedicated loop exit block. We update the dominator
64/// tree and loop info if provided, and will preserve LCSSA if requested.
66 MemorySSAUpdater *MSSAU,
67 bool PreserveLCSSA);
68
69/// Ensures LCSSA form for every instruction from the Worklist in the scope of
70/// innermost containing loop.
71///
72/// For the given instruction which have uses outside of the loop, an LCSSA PHI
73/// node is inserted and the uses outside the loop are rewritten to use this
74/// node.
75///
76/// LoopInfo and DominatorTree are required and, since the routine makes no
77/// changes to CFG, preserved.
78///
79/// Returns true if any modifications are made.
80///
81/// This function may introduce unused PHI nodes. If \p PHIsToRemove is not
82/// nullptr, those are added to it (before removing, the caller has to check if
83/// they still do not have any uses). Otherwise the PHIs are directly removed.
84///
85/// If \p InsertedPHIs is not nullptr, inserted phis will be added to this
86/// vector.
87LLVM_ABI bool
89 const DominatorTree &DT, const LoopInfo &LI,
91 SmallVectorImpl<PHINode *> *PHIsToRemove = nullptr,
92 SmallVectorImpl<PHINode *> *InsertedPHIs = nullptr);
93
94/// Put loop into LCSSA form.
95///
96/// Looks at all instructions in the loop which have uses outside of the
97/// current loop. For each, an LCSSA PHI node is inserted and the uses outside
98/// the loop are rewritten to use this node. Sub-loops must be in LCSSA form
99/// already.
100///
101/// LoopInfo and DominatorTree are required and preserved.
102///
103/// If ScalarEvolution is passed in, it will be preserved.
104///
105/// Returns true if any modifications are made to the loop.
106LLVM_ABI bool formLCSSA(Loop &L, const DominatorTree &DT, const LoopInfo *LI,
107 ScalarEvolution *SE);
108
109/// Put a loop nest into LCSSA form.
110///
111/// This recursively forms LCSSA for a loop nest.
112///
113/// LoopInfo and DominatorTree are required and preserved.
114///
115/// If ScalarEvolution is passed in, it will be preserved.
116///
117/// Returns true if any modifications are made to the loop.
119 const LoopInfo *LI, ScalarEvolution *SE);
120
121/// Flags controlling how much is checked when sinking or hoisting
122/// instructions. The number of memory access in the loop (and whether there
123/// are too many) is determined in the constructors when using MemorySSA.
125public:
126 // Explicitly set limits.
129 bool IsSink, Loop &L, MemorySSA &MSSA);
130 // Use default limits.
132
133 void setIsSink(bool B) { IsSink = B; }
134 bool getIsSink() { return IsSink; }
138
139protected:
140 bool NoOfMemAccTooLarge = false;
141 unsigned LicmMssaOptCounter = 0;
144 bool IsSink;
145};
146
147/// Walk the specified region of the CFG (defined by all blocks
148/// dominated by the specified block, and that are in the current loop) in
149/// reverse depth first order w.r.t the DominatorTree. This allows us to visit
150/// uses before definitions, allowing us to sink a loop body in one pass without
151/// iteration. Takes DomTreeNode, AAResults, LoopInfo, DominatorTree,
152/// TargetLibraryInfo, Loop, AliasSet information for all
153/// instructions of the loop and loop safety information as
154/// arguments. Diagnostics is emitted via \p ORE. It returns changed status.
155/// \p CurLoop is a loop to do sinking on. \p OutermostLoop is used only when
156/// this function is called by \p sinkRegionForLoopNest.
159 TargetTransformInfo *, Loop *CurLoop,
162 Loop *OutermostLoop = nullptr);
163
164/// Call sinkRegion on loops contained within the specified loop
165/// in order from innermost to outermost.
172
173/// Walk the specified region of the CFG (defined by all blocks
174/// dominated by the specified block, and that are in the current loop) in depth
175/// first order w.r.t the DominatorTree. This allows us to visit definitions
176/// before uses, allowing us to hoist a loop body in one pass without iteration.
177/// Takes DomTreeNode, AAResults, LoopInfo, DominatorTree,
178/// TargetLibraryInfo, Loop, AliasSet information for all
179/// instructions of the loop and loop safety information as arguments.
180/// Diagnostics is emitted via \p ORE. It returns changed status.
181/// \p AllowSpeculation is whether values should be hoisted even if they are not
182/// guaranteed to execute in the loop, but are safe to speculatively execute.
188 bool, bool AllowSpeculation);
189
190/// Return true if the induction variable \p IV in a Loop whose latch is
191/// \p LatchBlock would become dead if the exit test \p Cond were removed.
192/// Conservatively returns false if analysis is insufficient.
194
195/// This function deletes dead loops. The caller of this function needs to
196/// guarantee that the loop is infact dead.
197/// The function requires a bunch or prerequisites to be present:
198/// - The loop needs to be in LCSSA form
199/// - The loop needs to have a Preheader
200/// - A unique dedicated exit block must exist
201///
202/// This also updates the relevant analysis information in \p DT, \p SE, \p LI
203/// and \p MSSA if pointers to those are provided.
204/// It also updates the loop PM if an updater struct is provided.
205
207 LoopInfo *LI, MemorySSA *MSSA = nullptr);
208
209/// Remove the backedge of the specified loop. Handles loop nests and general
210/// loop structures subject to the precondition that the loop has no parent
211/// loop and has a single latch block. Preserves all listed analyses.
213 LoopInfo &LI, MemorySSA *MSSA);
214
215/// Try to promote memory values to scalars by sinking stores out of
216/// the loop and moving loads to before the loop. We do this by looping over
217/// the stores in the loop, looking for stores to Must pointers which are
218/// loop invariant. It takes a set of must-alias values, Loop exit blocks
219/// vector, loop exit blocks insertion point vector, PredIteratorCache,
220/// LoopInfo, DominatorTree, Loop, AliasSet information for all instructions
221/// of the loop and loop safety information as arguments.
222/// Diagnostics is emitted via \p ORE. It returns changed status.
223/// \p AllowSpeculation is whether values should be hoisted even if they are not
224/// guaranteed to execute in the loop, but are safe to speculatively execute.
231 bool AllowSpeculation, bool HasReadsOutsideSet);
232
233/// Does a BFS from a given node to all of its children inside a given loop.
234/// The returned vector of basic blocks includes the starting point.
237
238/// Returns the instructions that use values defined in the loop.
240
241/// Find a combination of metadata ("llvm.loop.vectorize.width" and
242/// "llvm.loop.vectorize.scalable.enable") for a loop and use it to construct a
243/// ElementCount. If the metadata "llvm.loop.vectorize.width" cannot be found
244/// then std::nullopt is returned.
245LLVM_ABI std::optional<ElementCount>
247
248/// Create a new loop identifier for a loop created from a loop transformation.
249///
250/// @param OrigLoopID The loop ID of the loop before the transformation.
251/// @param FollowupAttrs List of attribute names that contain attributes to be
252/// added to the new loop ID.
253/// @param InheritOptionsAttrsPrefix Selects which attributes should be inherited
254/// from the original loop. The following values
255/// are considered:
256/// nullptr : Inherit all attributes from @p OrigLoopID.
257/// "" : Do not inherit any attribute from @p OrigLoopID; only use
258/// those specified by a followup attribute.
259/// "<prefix>": Inherit all attributes except those which start with
260/// <prefix>; commonly used to remove metadata for the
261/// applied transformation.
262/// @param AlwaysNew If true, do not try to reuse OrigLoopID and never return
263/// std::nullopt.
264///
265/// @return The loop ID for the after-transformation loop. The following values
266/// can be returned:
267/// std::nullopt : No followup attribute was found; it is up to the
268/// transformation to choose attributes that make sense.
269/// @p OrigLoopID: The original identifier can be reused.
270/// nullptr : The new loop has no attributes.
271/// MDNode* : A new unique loop identifier.
272LLVM_ABI std::optional<MDNode *>
273makeFollowupLoopID(MDNode *OrigLoopID, ArrayRef<StringRef> FollowupAttrs,
274 const char *InheritOptionsAttrsPrefix = "",
275 bool AlwaysNew = false);
276
277/// Look for the loop attribute that disables all transformation heuristic.
279
280/// Look for the loop attribute that disables the LICM transformation heuristics.
282
283/// The mode sets how eager a transformation should be applied.
285 /// The pass can use heuristics to determine whether a transformation should
286 /// be applied.
288
289 /// The transformation should be applied without considering a cost model.
291
292 /// The transformation should not be applied.
294
295 /// Force is a flag and should not be used alone.
296 TM_Force = 0x04,
297
298 /// The transformation was directed by the user, e.g. by a #pragma in
299 /// the source code. If the transformation could not be applied, a
300 /// warning should be emitted.
302
303 /// The transformation must not be applied. For instance, `#pragma clang loop
304 /// unroll(disable)` explicitly forbids any unrolling to take place. Unlike
305 /// general loop metadata, it must not be dropped. Most passes should not
306 /// behave differently under TM_Disable and TM_SuppressedByUser.
308};
309
310/// @{
311/// Get the mode for LLVM's supported loop transformations.
317/// @}
318
319/// Set input string into loop metadata by keeping other values intact.
320/// If the string is already in loop metadata update value if it is
321/// different.
322LLVM_ABI void addStringMetadataToLoop(Loop *TheLoop, const char *MDString,
323 unsigned V = 0);
324
325/// Return either:
326/// - \c std::nullopt, if the implementation is unable to handle the loop form
327/// of \p L (e.g., \p L must have a latch block that controls the loop exit).
328/// - The value of \c llvm.loop.estimated_trip_count from the loop metadata of
329/// \p L, if that metadata is present.
330/// - Else, a new estimate of the trip count from the latch branch weights of
331/// \p L.
332///
333/// An estimated trip count is always a valid positive trip count, saturated at
334/// \c UINT_MAX.
335///
336/// In addition, if \p EstimatedLoopInvocationWeight, then either:
337/// - Set \c *EstimatedLoopInvocationWeight to the weight of the latch's branch
338/// to the loop exit.
339/// - Do not set it, and return \c std::nullopt, if the current implementation
340/// cannot compute that weight (e.g., if \p L does not have a latch block that
341/// controls the loop exit) or the weight is zero (because zero cannot be
342/// used to compute new branch weights that reflect the estimated trip count).
343///
344/// TODO: Eventually, once all passes have migrated away from setting branch
345/// weights to indicate estimated trip counts, this function will drop the
346/// \p EstimatedLoopInvocationWeight parameter.
347LLVM_ABI std::optional<unsigned>
349 unsigned *EstimatedLoopInvocationWeight = nullptr);
350
351/// Set \c llvm.loop.estimated_trip_count with the value \p EstimatedTripCount
352/// in the loop metadata of \p L. Return false if the implementation is unable
353/// to handle the loop form of \p L (e.g., \p L must have a latch block that
354/// controls the loop exit). Otherwise, return true.
355///
356/// In addition, if \p EstimatedLoopInvocationWeight, set the branch weight
357/// metadata of \p L to reflect that \p L has an estimated
358/// \p EstimatedTripCount iterations and has \c *EstimatedLoopInvocationWeight
359/// exit weight through the loop's latch.
360///
361/// TODO: Eventually, once all passes have migrated away from setting branch
362/// weights to indicate estimated trip counts, this function will drop the
363/// \p EstimatedLoopInvocationWeight parameter.
365 Loop *L, unsigned EstimatedTripCount,
366 std::optional<unsigned> EstimatedLoopInvocationWeight = std::nullopt);
367
368/// Check inner loop (L) backedge count is known to be invariant on all
369/// iterations of its outer loop. If the loop has no parent, this is trivially
370/// true.
371LLVM_ABI bool hasIterationCountInvariantInParent(Loop *L, ScalarEvolution &SE);
372
373/// Helper to consistently add the set of standard passes to a loop pass's \c
374/// AnalysisUsage.
375///
376/// All loop passes should call this as part of implementing their \c
377/// getAnalysisUsage.
378LLVM_ABI void getLoopAnalysisUsage(AnalysisUsage &AU);
379
380/// Returns true if is legal to hoist or sink this instruction disregarding the
381/// possible introduction of faults. Reasoning about potential faulting
382/// instructions is the responsibility of the caller since it is challenging to
383/// do efficiently from within this routine.
384/// \p TargetExecutesOncePerLoop is true only when it is guaranteed that the
385/// target executes at most once per execution of the loop body. This is used
386/// to assess the legality of duplicating atomic loads. Generally, this is
387/// true when moving out of loop and not true when moving into loops.
388/// If \p ORE is set use it to emit optimization remarks.
389LLVM_ABI bool canSinkOrHoistInst(Instruction &I, AAResults *AA,
390 DominatorTree *DT, Loop *CurLoop,
391 MemorySSAUpdater &MSSAU,
392 bool TargetExecutesOncePerLoop,
393 SinkAndHoistLICMFlags &LICMFlags,
394 OptimizationRemarkEmitter *ORE = nullptr);
395
396/// Returns the llvm.vector.reduce intrinsic that corresponds to the recurrence
397/// kind.
398LLVM_ABI constexpr Intrinsic::ID getReductionIntrinsicID(RecurKind RK);
399/// Returns the llvm.vector.reduce min/max intrinsic that corresponds to the
400/// intrinsic op.
402
403/// Returns the arithmetic instruction opcode used when expanding a reduction.
405/// Returns the reduction intrinsic id corresponding to the binary operation.
407
408/// Returns the min/max intrinsic used when expanding a min/max reduction.
410
411/// Returns the min/max intrinsic used when expanding a min/max reduction.
413
414/// Returns the recurence kind used when expanding a min/max reduction.
416
417/// Returns the comparison predicate used when expanding a min/max reduction.
419
420/// Given information about an @llvm.vector.reduce.* intrinsic, return
421/// the identity value for the reduction.
422LLVM_ABI Value *getReductionIdentity(Intrinsic::ID RdxID, Type *Ty,
423 FastMathFlags FMF);
424
425/// Given information about an recurrence kind, return the identity
426/// for the @llvm.vector.reduce.* used to generate it.
427LLVM_ABI Value *getRecurrenceIdentity(RecurKind K, Type *Tp, FastMathFlags FMF);
428
429/// Returns a Min/Max operation corresponding to MinMaxRecurrenceKind.
430/// The Builder's fast-math-flags must be set to propagate the expected values.
431LLVM_ABI Value *createMinMaxOp(IRBuilderBase &Builder, RecurKind RK,
432 Value *Left, Value *Right);
433
434/// Generates an ordered vector reduction using extracts to reduce the value.
435LLVM_ABI Value *getOrderedReduction(IRBuilderBase &Builder, Value *Acc,
436 Value *Src, unsigned Op,
437 RecurKind MinMaxKind = RecurKind::None);
438
439/// Generates a vector reduction using shufflevectors to reduce the value.
440/// Fast-math-flags are propagated using the IRBuilder's setting.
441LLVM_ABI Value *getShuffleReduction(IRBuilderBase &Builder, Value *Src,
442 unsigned Op,
444 RecurKind MinMaxKind = RecurKind::None);
445
446/// Create a reduction of the given vector. The reduction operation
447/// is described by the \p Opcode parameter. min/max reductions require
448/// additional information supplied in \p RdxKind.
449/// Fast-math-flags are propagated using the IRBuilder's setting.
450LLVM_ABI Value *createSimpleReduction(IRBuilderBase &B, Value *Src,
451 RecurKind RdxKind);
452/// Overloaded function to generate vector-predication intrinsics for
453/// reduction.
454LLVM_ABI Value *createSimpleReduction(IRBuilderBase &B, Value *Src,
455 RecurKind RdxKind, Value *Mask,
456 Value *EVL);
457
458/// Create a reduction of the given vector \p Src for a reduction of kind
459/// RecurKind::AnyOf. The start value of the reduction is \p InitVal.
460LLVM_ABI Value *createAnyOfReduction(IRBuilderBase &B, Value *Src,
461 Value *InitVal, PHINode *OrigPhi);
462
463/// Create a reduction of the given vector \p Src for a reduction of the
464/// kind RecurKind::FindLastIV.
465LLVM_ABI Value *createFindLastIVReduction(IRBuilderBase &B, Value *Src,
466 RecurKind RdxKind, Value *Start,
467 Value *Sentinel);
468
469/// Create an ordered reduction intrinsic using the given recurrence
470/// kind \p RdxKind.
471LLVM_ABI Value *createOrderedReduction(IRBuilderBase &B, RecurKind RdxKind,
472 Value *Src, Value *Start);
473/// Overloaded function to generate vector-predication intrinsics for ordered
474/// reduction.
475LLVM_ABI Value *createOrderedReduction(IRBuilderBase &B, RecurKind RdxKind,
476 Value *Src, Value *Start, Value *Mask,
477 Value *EVL);
478
479/// Get the intersection (logical and) of all of the potential IR flags
480/// of each scalar operation (VL) that will be converted into a vector (I).
481/// If OpValue is non-null, we only consider operations similar to OpValue
482/// when intersecting.
483/// Flag set: NSW, NUW (if IncludeWrapFlags is true), exact, and all of
484/// fast-math.
486 Value *OpValue = nullptr,
487 bool IncludeWrapFlags = true);
488
489/// Returns true if we can prove that \p S is defined and always negative in
490/// loop \p L.
491LLVM_ABI bool isKnownNegativeInLoop(const SCEV *S, const Loop *L,
492 ScalarEvolution &SE);
493
494/// Returns true if we can prove that \p S is defined and always non-negative in
495/// loop \p L.
496LLVM_ABI bool isKnownNonNegativeInLoop(const SCEV *S, const Loop *L,
497 ScalarEvolution &SE);
498/// Returns true if we can prove that \p S is defined and always positive in
499/// loop \p L.
500LLVM_ABI bool isKnownPositiveInLoop(const SCEV *S, const Loop *L,
501 ScalarEvolution &SE);
502
503/// Returns true if we can prove that \p S is defined and always non-positive in
504/// loop \p L.
505LLVM_ABI bool isKnownNonPositiveInLoop(const SCEV *S, const Loop *L,
506 ScalarEvolution &SE);
507
508/// Returns true if \p S is defined and never is equal to signed/unsigned max.
509LLVM_ABI bool cannotBeMaxInLoop(const SCEV *S, const Loop *L,
510 ScalarEvolution &SE, bool Signed);
511
512/// Returns true if \p S is defined and never is equal to signed/unsigned min.
513LLVM_ABI bool cannotBeMinInLoop(const SCEV *S, const Loop *L,
514 ScalarEvolution &SE, bool Signed);
515
523
524/// If the final value of any expressions that are recurrent in the loop can
525/// be computed, substitute the exit values from the loop into any instructions
526/// outside of the loop that use the final values of the current expressions.
527/// Return the number of loop exit values that have been replaced, and the
528/// corresponding phi node will be added to DeadInsts.
529LLVM_ABI int rewriteLoopExitValues(Loop *L, LoopInfo *LI,
530 TargetLibraryInfo *TLI, ScalarEvolution *SE,
531 const TargetTransformInfo *TTI,
532 SCEVExpander &Rewriter, DominatorTree *DT,
535
536/// Set weights for \p UnrolledLoop and \p RemainderLoop based on weights for
537/// \p OrigLoop and the following distribution of \p OrigLoop iteration among \p
538/// UnrolledLoop and \p RemainderLoop. \p UnrolledLoop receives weights that
539/// reflect TC/UF iterations, and \p RemainderLoop receives weights that reflect
540/// the remaining TC%UF iterations.
541///
542/// Note that \p OrigLoop may be equal to either \p UnrolledLoop or \p
543/// RemainderLoop in which case weights for \p OrigLoop are updated accordingly.
544/// Note also behavior is undefined if \p UnrolledLoop and \p RemainderLoop are
545/// equal. \p UF must be greater than zero.
546/// If \p OrigLoop has no profile info associated nothing happens.
547///
548/// This utility may be useful for such optimizations as unroller and
549/// vectorizer as it's typical transformation for them.
550LLVM_ABI void setProfileInfoAfterUnrolling(Loop *OrigLoop, Loop *UnrolledLoop,
551 Loop *RemainderLoop, uint64_t UF);
552
553/// Utility that implements appending of loops onto a worklist given a range.
554/// We want to process loops in postorder, but the worklist is a LIFO data
555/// structure, so we append to it in *reverse* postorder.
556/// For trees, a preorder traversal is a viable reverse postorder, so we
557/// actually append using a preorder walk algorithm.
558template <typename RangeT>
561/// Utility that implements appending of loops onto a worklist given a range.
562/// It has the same behavior as appendLoopsToWorklist, but assumes the range of
563/// loops has already been reversed, so it processes loops in the given order.
564template <typename RangeT>
565void appendReversedLoopsToWorklist(RangeT &&,
567
568extern template LLVM_TEMPLATE_ABI void
571
572extern template LLVM_TEMPLATE_ABI void
575
576/// Utility that implements appending of loops onto a worklist given LoopInfo.
577/// Calls the templated utility taking a Range of loops, handing it the Loops
578/// in LoopInfo, iterated in reverse. This is because the loops are stored in
579/// RPO w.r.t. the control flow graph in LoopInfo. For the purpose of unrolling,
580/// loop deletion, and LICM, we largely want to work forward across the CFG so
581/// that we visit defs before uses and can propagate simplifications from one
582/// loop nest into the next. Calls appendReversedLoopsToWorklist with the
583/// already reversed loops in LI.
584/// FIXME: Consider changing the order in LoopInfo.
587
588/// Recursively clone the specified loop and all of its children,
589/// mapping the blocks with the specified map.
591 LPPassManager *LPM);
592
593/// Add code that checks at runtime if the accessed arrays in \p PointerChecks
594/// overlap. Returns the final comparator value or NULL if no check is needed.
597 const SmallVectorImpl<RuntimePointerCheck> &PointerChecks,
598 SCEVExpander &Expander, bool HoistRuntimeChecks = false);
599
602 function_ref<Value *(IRBuilderBase &, unsigned)> GetVF, unsigned IC);
603
604/// Struct to hold information about a partially invariant condition.
606 /// Instructions that need to be duplicated and checked for the unswitching
607 /// condition.
609
610 /// Constant to indicate for which value the condition is invariant.
612
613 /// True if the partially invariant path is no-op (=does not have any
614 /// side-effects and no loop value is used outside the loop).
615 bool PathIsNoop = true;
616
617 /// If the partially invariant path reaches a single exit block, ExitForPath
618 /// is set to that block. Otherwise it is nullptr.
620};
621
622/// Check if the loop header has a conditional branch that is not
623/// loop-invariant, because it involves load instructions. If all paths from
624/// either the true or false successor to the header or loop exists do not
625/// modify the memory feeding the condition, perform 'partial unswitching'. That
626/// is, duplicate the instructions feeding the condition in the pre-header. Then
627/// unswitch on the duplicated condition. The condition is now known in the
628/// unswitched version for the 'invariant' path through the original loop.
629///
630/// If the branch condition of the header is partially invariant, return a pair
631/// containing the instructions to duplicate and a boolean Constant to update
632/// the condition in the loops created for the true or false successors.
633LLVM_ABI std::optional<IVConditionInfo>
634hasPartialIVCondition(const Loop &L, unsigned MSSAThreshold,
635 const MemorySSA &MSSA, AAResults &AA);
636
637} // end namespace llvm
638
639#endif // LLVM_TRANSFORMS_UTILS_LOOPUTILS_H
static GCRegistry::Add< OcamlGC > B("ocaml", "ocaml 3.10-compatible GC")
#define LLVM_ABI
Definition Compiler.h:213
#define LLVM_TEMPLATE_ABI
Definition Compiler.h:214
Hexagon Hardware Loops
static cl::opt< ReplaceExitVal > ReplaceExitValue("replexitval", cl::Hidden, cl::init(OnlyCheapRepl), cl::desc("Choose the strategy to replace exit value in IndVarSimplify"), cl::values(clEnumValN(NeverRepl, "never", "never replace exit value"), clEnumValN(OnlyCheapRepl, "cheap", "only replace exit value when the cost is cheap"), clEnumValN(UnusedIndVarInLoop, "unusedindvarinloop", "only replace exit value when it is an unused " "induction variable in the loop and has cheap replacement cost"), clEnumValN(NoHardUse, "noharduse", "only replace exit values when loop def likely dead"), clEnumValN(AlwaysRepl, "always", "always replace exit value whenever possible")))
static cl::opt< bool, true > HoistRuntimeChecks("hoist-runtime-checks", cl::Hidden, cl::desc("Hoist inner loop runtime memory checks to outer loop if possible"), cl::location(VectorizerParams::HoistRuntimeChecks), cl::init(true))
#define I(x, y, z)
Definition MD5.cpp:58
const SmallVectorImpl< MachineOperand > & Cond
static cl::opt< unsigned > MSSAThreshold("simple-loop-unswitch-memoryssa-threshold", cl::desc("Max number of memory uses to explore during " "partial unswitching analysis"), cl::init(100), cl::Hidden)
This pass exposes codegen information to IR-level passes.
static const uint32_t IV[8]
Definition blake3_impl.h:83
Represent the analysis usage information of a pass.
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition ArrayRef.h:41
A cache of @llvm.assume calls within a function.
LLVM Basic Block Representation.
Definition BasicBlock.h:62
Predicate
This enumeration lists the possible predicates for CmpInst subclasses.
Definition InstrTypes.h:678
This is an important base class in LLVM.
Definition Constant.h:43
Base class for the actual dominator tree node.
Concrete subclass of DominatorTreeBase that is used to compute a normal dominator tree.
Definition Dominators.h:165
This implementation of LoopSafetyInfo use ImplicitControlFlowTracking to give precise answers on "may...
Common base class shared among various IRBuilders.
Definition IRBuilder.h:114
Represents a single loop in the control flow graph.
Definition LoopInfo.h:40
Metadata node.
Definition Metadata.h:1077
Encapsulates MemorySSA, including all data associated with memory accesses.
Definition MemorySSA.h:702
The optimization diagnostic interface.
PredIteratorCache - This class is an extremely trivial cache for predecessor iterator queries.
This class uses information about analyze scalars to rewrite expressions in canonical form.
This class represents an analyzed expression in the program.
The main scalar evolution driver.
Flags controlling how much is checked when sinking or hoisting instructions.
Definition LoopUtils.h:124
LLVM_ABI SinkAndHoistLICMFlags(unsigned LicmMssaOptCap, unsigned LicmMssaNoAccForPromotionCap, bool IsSink, Loop &L, MemorySSA &MSSA)
Definition LICM.cpp:391
unsigned LicmMssaNoAccForPromotionCap
Definition LoopUtils.h:143
A version of PriorityWorklist that selects small size optimized data structures for the vector and ma...
A SetVector that performs no allocations if smaller than a certain size.
Definition SetVector.h:356
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
This is a 'vector' (really, a variable-sized array), optimized for the case when the array is small.
StringRef - Represent a constant reference to a string, i.e.
Definition StringRef.h:55
Provides information about what library functions are available for the current target.
This pass provides access to the codegen interfaces that are needed for IR-level transformations.
LLVM Value Representation.
Definition Value.h:75
An efficient, type-erasing, non-owning reference to a callable.
Abstract Attribute helper functions.
Definition Attributor.h:165
This is an optimization pass for GlobalISel generic memory operations.
LLVM_ABI Value * createSimpleReduction(IRBuilderBase &B, Value *Src, RecurKind RdxKind)
Create a reduction of the given vector.
LLVM_ABI std::optional< ElementCount > getOptionalElementCountLoopAttribute(const Loop *TheLoop)
Find a combination of metadata ("llvm.loop.vectorize.width" and "llvm.loop.vectorize....
LLVM_ABI Value * addRuntimeChecks(Instruction *Loc, Loop *TheLoop, const SmallVectorImpl< RuntimePointerCheck > &PointerChecks, SCEVExpander &Expander, bool HoistRuntimeChecks=false)
Add code that checks at runtime if the accessed arrays in PointerChecks overlap.
LLVM_ABI Value * createFindLastIVReduction(IRBuilderBase &B, Value *Src, RecurKind RdxKind, Value *Start, Value *Sentinel)
Create a reduction of the given vector Src for a reduction of the kind RecurKind::FindLastIV.
LLVM_ABI std::optional< unsigned > getLoopEstimatedTripCount(Loop *L, unsigned *EstimatedLoopInvocationWeight=nullptr)
Return either:
LLVM_ABI BasicBlock * InsertPreheaderForLoop(Loop *L, DominatorTree *DT, LoopInfo *LI, MemorySSAUpdater *MSSAU, bool PreserveLCSSA)
InsertPreheaderForLoop - Once we discover that a loop doesn't have a preheader, this method is called...
LLVM_ABI Intrinsic::ID getMinMaxReductionIntrinsicOp(Intrinsic::ID RdxID)
Returns the min/max intrinsic used when expanding a min/max reduction.
std::pair< const RuntimeCheckingPtrGroup *, const RuntimeCheckingPtrGroup * > RuntimePointerCheck
A memcheck which made up of a pair of grouped pointers.
LLVM_ABI bool canSinkOrHoistInst(Instruction &I, AAResults *AA, DominatorTree *DT, Loop *CurLoop, MemorySSAUpdater &MSSAU, bool TargetExecutesOncePerLoop, SinkAndHoistLICMFlags &LICMFlags, OptimizationRemarkEmitter *ORE=nullptr)
Returns true if is legal to hoist or sink this instruction disregarding the possible introduction of ...
Definition LICM.cpp:1167
LLVM_ABI bool isKnownNonPositiveInLoop(const SCEV *S, const Loop *L, ScalarEvolution &SE)
Returns true if we can prove that S is defined and always non-positive in loop L.
void appendReversedLoopsToWorklist(RangeT &&, SmallPriorityWorklist< Loop *, 4 > &)
Utility that implements appending of loops onto a worklist given a range.
LLVM_ABI bool formLCSSARecursively(Loop &L, const DominatorTree &DT, const LoopInfo *LI, ScalarEvolution *SE)
Put a loop nest into LCSSA form.
Definition LCSSA.cpp:449
LLVM_ABI Value * getReductionIdentity(Intrinsic::ID RdxID, Type *Ty, FastMathFlags FMF)
Given information about an @llvm.vector.reduce.
LLVM_ABI std::optional< MDNode * > makeFollowupLoopID(MDNode *OrigLoopID, ArrayRef< StringRef > FollowupAttrs, const char *InheritOptionsAttrsPrefix="", bool AlwaysNew=false)
Create a new loop identifier for a loop created from a loop transformation.
LLVM_ABI unsigned getArithmeticReductionInstruction(Intrinsic::ID RdxID)
Returns the arithmetic instruction opcode used when expanding a reduction.
LLVM_ABI Value * createMinMaxOp(IRBuilderBase &Builder, RecurKind RK, Value *Left, Value *Right)
Returns a Min/Max operation corresponding to MinMaxRecurrenceKind.
LLVM_ABI SmallVector< BasicBlock *, 16 > collectChildrenInLoop(DominatorTree *DT, DomTreeNode *N, const Loop *CurLoop)
Does a BFS from a given node to all of its children inside a given loop.
LLVM_ABI void addStringMetadataToLoop(Loop *TheLoop, const char *MDString, unsigned V=0)
Set input string into loop metadata by keeping other values intact.
LLVM_ABI bool cannotBeMaxInLoop(const SCEV *S, const Loop *L, ScalarEvolution &SE, bool Signed)
Returns true if S is defined and never is equal to signed/unsigned max.
DomTreeNodeBase< BasicBlock > DomTreeNode
Definition Dominators.h:95
LLVM_ABI TransformationMode hasVectorizeTransformation(const Loop *L)
LLVM_ABI bool hoistRegion(DomTreeNode *, AAResults *, LoopInfo *, DominatorTree *, AssumptionCache *, TargetLibraryInfo *, Loop *, MemorySSAUpdater &, ScalarEvolution *, ICFLoopSafetyInfo *, SinkAndHoistLICMFlags &, OptimizationRemarkEmitter *, bool, bool AllowSpeculation)
Walk the specified region of the CFG (defined by all blocks dominated by the specified block,...
Definition LICM.cpp:888
LLVM_ABI SmallVector< Instruction *, 8 > findDefsUsedOutsideOfLoop(Loop *L)
Returns the instructions that use values defined in the loop.
LLVM_ABI constexpr Intrinsic::ID getReductionIntrinsicID(RecurKind RK)
Returns the llvm.vector.reduce intrinsic that corresponds to the recurrence kind.
LLVM_ABI TransformationMode hasUnrollAndJamTransformation(const Loop *L)
LLVM_ABI void deleteDeadLoop(Loop *L, DominatorTree *DT, ScalarEvolution *SE, LoopInfo *LI, MemorySSA *MSSA=nullptr)
This function deletes dead loops.
LLVM_ABI bool hasDisableAllTransformsHint(const Loop *L)
Look for the loop attribute that disables all transformation heuristic.
LLVM_TEMPLATE_ABI void appendLoopsToWorklist(RangeT &&, SmallPriorityWorklist< Loop *, 4 > &)
Utility that implements appending of loops onto a worklist given a range.
LLVM_ABI Value * getShuffleReduction(IRBuilderBase &Builder, Value *Src, unsigned Op, TargetTransformInfo::ReductionShuffle RS, RecurKind MinMaxKind=RecurKind::None)
Generates a vector reduction using shufflevectors to reduce the value.
LLVM_ABI TransformationMode hasUnrollTransformation(const Loop *L)
LLVM_ABI TransformationMode hasDistributeTransformation(const Loop *L)
class LLVM_GSL_OWNER SmallVector
Forward declaration of SmallVector so that calculateSmallVectorDefaultInlinedElements can reference s...
LLVM_ABI void breakLoopBackedge(Loop *L, DominatorTree &DT, ScalarEvolution &SE, LoopInfo &LI, MemorySSA *MSSA)
Remove the backedge of the specified loop.
LLVM_ABI void getLoopAnalysisUsage(AnalysisUsage &AU)
Helper to consistently add the set of standard passes to a loop pass's AnalysisUsage.
LLVM_ABI void propagateIRFlags(Value *I, ArrayRef< Value * > VL, Value *OpValue=nullptr, bool IncludeWrapFlags=true)
Get the intersection (logical and) of all of the potential IR flags of each scalar operation (VL) tha...
LLVM_ABI bool isKnownPositiveInLoop(const SCEV *S, const Loop *L, ScalarEvolution &SE)
Returns true if we can prove that S is defined and always positive in loop L.
TargetTransformInfo TTI
LLVM_ABI CmpInst::Predicate getMinMaxReductionPredicate(RecurKind RK)
Returns the comparison predicate used when expanding a min/max reduction.
LLVM_ABI TransformationMode hasLICMVersioningTransformation(const Loop *L)
TransformationMode
The mode sets how eager a transformation should be applied.
Definition LoopUtils.h:284
@ TM_Unspecified
The pass can use heuristics to determine whether a transformation should be applied.
Definition LoopUtils.h:287
@ TM_SuppressedByUser
The transformation must not be applied.
Definition LoopUtils.h:307
@ TM_ForcedByUser
The transformation was directed by the user, e.g.
Definition LoopUtils.h:301
@ TM_Disable
The transformation should not be applied.
Definition LoopUtils.h:293
@ TM_Force
Force is a flag and should not be used alone.
Definition LoopUtils.h:296
@ TM_Enable
The transformation should be applied without considering a cost model.
Definition LoopUtils.h:290
LLVM_ABI bool hasDisableLICMTransformsHint(const Loop *L)
Look for the loop attribute that disables the LICM transformation heuristics.
template LLVM_TEMPLATE_ABI void appendLoopsToWorklist< Loop & >(Loop &L, SmallPriorityWorklist< Loop *, 4 > &Worklist)
LLVM_ABI Intrinsic::ID getReductionForBinop(Instruction::BinaryOps Opc)
Returns the reduction intrinsic id corresponding to the binary operation.
@ None
Not a recurrence.
LLVM_ABI Value * getRecurrenceIdentity(RecurKind K, Type *Tp, FastMathFlags FMF)
Given information about an recurrence kind, return the identity for the @llvm.vector....
LLVM_ABI void setProfileInfoAfterUnrolling(Loop *OrigLoop, Loop *UnrolledLoop, Loop *RemainderLoop, uint64_t UF)
Set weights for UnrolledLoop and RemainderLoop based on weights for OrigLoop and the following distri...
LLVM_ABI bool formDedicatedExitBlocks(Loop *L, DominatorTree *DT, LoopInfo *LI, MemorySSAUpdater *MSSAU, bool PreserveLCSSA)
Ensure that all exit blocks of the loop are dedicated exits.
Definition LoopUtils.cpp:58
DWARFExpression::Operation Op
ArrayRef(const T &OneElt) -> ArrayRef< T >
LLVM_ABI bool isKnownNegativeInLoop(const SCEV *S, const Loop *L, ScalarEvolution &SE)
Returns true if we can prove that S is defined and always negative in loop L.
ValueMap< const Value *, WeakTrackingVH > ValueToValueMapTy
LLVM_ABI bool setLoopEstimatedTripCount(Loop *L, unsigned EstimatedTripCount, std::optional< unsigned > EstimatedLoopInvocationWeight=std::nullopt)
Set llvm.loop.estimated_trip_count with the value EstimatedTripCount in the loop metadata of L.
LLVM_ABI bool formLCSSAForInstructions(SmallVectorImpl< Instruction * > &Worklist, const DominatorTree &DT, const LoopInfo &LI, ScalarEvolution *SE, SmallVectorImpl< PHINode * > *PHIsToRemove=nullptr, SmallVectorImpl< PHINode * > *InsertedPHIs=nullptr)
Ensures LCSSA form for every instruction from the Worklist in the scope of innermost containing loop.
Definition LCSSA.cpp:308
LLVM_ABI bool hasIterationCountInvariantInParent(Loop *L, ScalarEvolution &SE)
Check inner loop (L) backedge count is known to be invariant on all iterations of its outer loop.
LLVM_ABI bool isAlmostDeadIV(PHINode *IV, BasicBlock *LatchBlock, Value *Cond)
Return true if the induction variable IV in a Loop whose latch is LatchBlock would become dead if the...
LLVM_ABI int rewriteLoopExitValues(Loop *L, LoopInfo *LI, TargetLibraryInfo *TLI, ScalarEvolution *SE, const TargetTransformInfo *TTI, SCEVExpander &Rewriter, DominatorTree *DT, ReplaceExitVal ReplaceExitValue, SmallVector< WeakTrackingVH, 16 > &DeadInsts)
If the final value of any expressions that are recurrent in the loop can be computed,...
LLVM_ABI Value * createOrderedReduction(IRBuilderBase &B, RecurKind RdxKind, Value *Src, Value *Start)
Create an ordered reduction intrinsic using the given recurrence kind RdxKind.
LLVM_ABI bool sinkRegion(DomTreeNode *, AAResults *, LoopInfo *, DominatorTree *, TargetLibraryInfo *, TargetTransformInfo *, Loop *CurLoop, MemorySSAUpdater &, ICFLoopSafetyInfo *, SinkAndHoistLICMFlags &, OptimizationRemarkEmitter *, Loop *OutermostLoop=nullptr)
Walk the specified region of the CFG (defined by all blocks dominated by the specified block,...
Definition LICM.cpp:558
LLVM_ABI Value * addDiffRuntimeChecks(Instruction *Loc, ArrayRef< PointerDiffInfo > Checks, SCEVExpander &Expander, function_ref< Value *(IRBuilderBase &, unsigned)> GetVF, unsigned IC)
LLVM_ABI RecurKind getMinMaxReductionRecurKind(Intrinsic::ID RdxID)
Returns the recurence kind used when expanding a min/max reduction.
ReplaceExitVal
Definition LoopUtils.h:516
@ UnusedIndVarInLoop
Definition LoopUtils.h:520
@ OnlyCheapRepl
Definition LoopUtils.h:518
@ NeverRepl
Definition LoopUtils.h:517
@ NoHardUse
Definition LoopUtils.h:519
@ AlwaysRepl
Definition LoopUtils.h:521
LLVM_ABI std::optional< IVConditionInfo > hasPartialIVCondition(const Loop &L, unsigned MSSAThreshold, const MemorySSA &MSSA, AAResults &AA)
Check if the loop header has a conditional branch that is not loop-invariant, because it involves loa...
LLVM_ABI bool formLCSSA(Loop &L, const DominatorTree &DT, const LoopInfo *LI, ScalarEvolution *SE)
Put loop into LCSSA form.
Definition LCSSA.cpp:427
LLVM_ABI bool promoteLoopAccessesToScalars(const SmallSetVector< Value *, 8 > &, SmallVectorImpl< BasicBlock * > &, SmallVectorImpl< BasicBlock::iterator > &, SmallVectorImpl< MemoryAccess * > &, PredIteratorCache &, LoopInfo *, DominatorTree *, AssumptionCache *AC, const TargetLibraryInfo *, TargetTransformInfo *, Loop *, MemorySSAUpdater &, ICFLoopSafetyInfo *, OptimizationRemarkEmitter *, bool AllowSpeculation, bool HasReadsOutsideSet)
Try to promote memory values to scalars by sinking stores out of the loop and moving loads to before ...
Definition LICM.cpp:1913
LLVM_ABI Value * createAnyOfReduction(IRBuilderBase &B, Value *Src, Value *InitVal, PHINode *OrigPhi)
Create a reduction of the given vector Src for a reduction of kind RecurKind::AnyOf.
LLVM_ABI bool cannotBeMinInLoop(const SCEV *S, const Loop *L, ScalarEvolution &SE, bool Signed)
Returns true if S is defined and never is equal to signed/unsigned min.
LLVM_ABI bool isKnownNonNegativeInLoop(const SCEV *S, const Loop *L, ScalarEvolution &SE)
Returns true if we can prove that S is defined and always non-negative in loop L.
LLVM_ABI bool sinkRegionForLoopNest(DomTreeNode *, AAResults *, LoopInfo *, DominatorTree *, TargetLibraryInfo *, TargetTransformInfo *, Loop *, MemorySSAUpdater &, ICFLoopSafetyInfo *, SinkAndHoistLICMFlags &, OptimizationRemarkEmitter *)
Call sinkRegion on loops contained within the specified loop in order from innermost to outermost.
Definition LICM.cpp:625
LLVM_ABI Value * getOrderedReduction(IRBuilderBase &Builder, Value *Acc, Value *Src, unsigned Op, RecurKind MinMaxKind=RecurKind::None)
Generates an ordered vector reduction using extracts to reduce the value.
LLVM_ABI Intrinsic::ID getMinMaxReductionIntrinsicID(Intrinsic::ID IID)
Returns the llvm.vector.reduce min/max intrinsic that corresponds to the intrinsic op.
LLVM_ABI Loop * cloneLoop(Loop *L, Loop *PL, ValueToValueMapTy &VM, LoopInfo *LI, LPPassManager *LPM)
Recursively clone the specified loop and all of its children, mapping the blocks with the specified m...
#define N
Struct to hold information about a partially invariant condition.
Definition LoopUtils.h:605
BasicBlock * ExitForPath
If the partially invariant path reaches a single exit block, ExitForPath is set to that block.
Definition LoopUtils.h:619
SmallVector< Instruction * > InstToDuplicate
Instructions that need to be duplicated and checked for the unswitching condition.
Definition LoopUtils.h:608
Constant * KnownValue
Constant to indicate for which value the condition is invariant.
Definition LoopUtils.h:611
bool PathIsNoop
True if the partially invariant path is no-op (=does not have any side-effects and no loop value is u...
Definition LoopUtils.h:615