1dd3b6498SWhitney Tsang //===- LoopCacheAnalysis.cpp - Loop Cache Analysis -------------------------==//
2dd3b6498SWhitney Tsang //
3dd3b6498SWhitney Tsang //                     The LLVM Compiler Infrastructure
4dd3b6498SWhitney Tsang //
5dd3b6498SWhitney Tsang // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
6dd3b6498SWhitney Tsang // See https://llvm.org/LICENSE.txt for license information.
7dd3b6498SWhitney Tsang // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
8dd3b6498SWhitney Tsang //
9dd3b6498SWhitney Tsang //===----------------------------------------------------------------------===//
10dd3b6498SWhitney Tsang ///
11dd3b6498SWhitney Tsang /// \file
12dd3b6498SWhitney Tsang /// This file defines the implementation for the loop cache analysis.
13dd3b6498SWhitney Tsang /// The implementation is largely based on the following paper:
14dd3b6498SWhitney Tsang ///
15dd3b6498SWhitney Tsang ///       Compiler Optimizations for Improving Data Locality
16dd3b6498SWhitney Tsang ///       By: Steve Carr, Katherine S. McKinley, Chau-Wen Tseng
17dd3b6498SWhitney Tsang ///       http://www.cs.utexas.edu/users/mckinley/papers/asplos-1994.pdf
18dd3b6498SWhitney Tsang ///
19dd3b6498SWhitney Tsang /// The general approach taken to estimate the number of cache lines used by the
20dd3b6498SWhitney Tsang /// memory references in an inner loop is:
21dd3b6498SWhitney Tsang ///    1. Partition memory references that exhibit temporal or spacial reuse
22dd3b6498SWhitney Tsang ///       into reference groups.
23dd3b6498SWhitney Tsang ///    2. For each loop L in the a loop nest LN:
24dd3b6498SWhitney Tsang ///       a. Compute the cost of the reference group
25dd3b6498SWhitney Tsang ///       b. Compute the loop cost by summing up the reference groups costs
26dd3b6498SWhitney Tsang //===----------------------------------------------------------------------===//
27dd3b6498SWhitney Tsang 
28dd3b6498SWhitney Tsang #include "llvm/Analysis/LoopCacheAnalysis.h"
29dd3b6498SWhitney Tsang #include "llvm/ADT/BreadthFirstIterator.h"
30dd3b6498SWhitney Tsang #include "llvm/ADT/Sequence.h"
31dd3b6498SWhitney Tsang #include "llvm/ADT/SmallVector.h"
324c1a1d3cSReid Kleckner #include "llvm/Support/CommandLine.h"
33dd3b6498SWhitney Tsang #include "llvm/Support/Debug.h"
34dd3b6498SWhitney Tsang 
35dd3b6498SWhitney Tsang using namespace llvm;
36dd3b6498SWhitney Tsang 
37dd3b6498SWhitney Tsang #define DEBUG_TYPE "loop-cache-cost"
38dd3b6498SWhitney Tsang 
39dd3b6498SWhitney Tsang static cl::opt<unsigned> DefaultTripCount(
40dd3b6498SWhitney Tsang     "default-trip-count", cl::init(100), cl::Hidden,
41dd3b6498SWhitney Tsang     cl::desc("Use this to specify the default trip count of a loop"));
42dd3b6498SWhitney Tsang 
43dd3b6498SWhitney Tsang // In this analysis two array references are considered to exhibit temporal
44dd3b6498SWhitney Tsang // reuse if they access either the same memory location, or a memory location
45dd3b6498SWhitney Tsang // with distance smaller than a configurable threshold.
46dd3b6498SWhitney Tsang static cl::opt<unsigned> TemporalReuseThreshold(
47dd3b6498SWhitney Tsang     "temporal-reuse-threshold", cl::init(2), cl::Hidden,
48dd3b6498SWhitney Tsang     cl::desc("Use this to specify the max. distance between array elements "
49dd3b6498SWhitney Tsang              "accessed in a loop so that the elements are classified to have "
50dd3b6498SWhitney Tsang              "temporal reuse"));
51dd3b6498SWhitney Tsang 
52dd3b6498SWhitney Tsang /// Retrieve the innermost loop in the given loop nest \p Loops. It returns a
53dd3b6498SWhitney Tsang /// nullptr if any loops in the loop vector supplied has more than one sibling.
54dd3b6498SWhitney Tsang /// The loop vector is expected to contain loops collected in breadth-first
55dd3b6498SWhitney Tsang /// order.
56dd3b6498SWhitney Tsang static Loop *getInnerMostLoop(const LoopVectorTy &Loops) {
57dd3b6498SWhitney Tsang   assert(!Loops.empty() && "Expecting a non-empy loop vector");
58dd3b6498SWhitney Tsang 
59dd3b6498SWhitney Tsang   Loop *LastLoop = Loops.back();
60dd3b6498SWhitney Tsang   Loop *ParentLoop = LastLoop->getParentLoop();
61dd3b6498SWhitney Tsang 
62dd3b6498SWhitney Tsang   if (ParentLoop == nullptr) {
63dd3b6498SWhitney Tsang     assert(Loops.size() == 1 && "Expecting a single loop");
64dd3b6498SWhitney Tsang     return LastLoop;
65dd3b6498SWhitney Tsang   }
66dd3b6498SWhitney Tsang 
67dd3b6498SWhitney Tsang   return (std::is_sorted(Loops.begin(), Loops.end(),
68dd3b6498SWhitney Tsang                          [](const Loop *L1, const Loop *L2) {
69dd3b6498SWhitney Tsang                            return L1->getLoopDepth() < L2->getLoopDepth();
70dd3b6498SWhitney Tsang                          }))
71dd3b6498SWhitney Tsang              ? LastLoop
72dd3b6498SWhitney Tsang              : nullptr;
73dd3b6498SWhitney Tsang }
74dd3b6498SWhitney Tsang 
75dd3b6498SWhitney Tsang static bool isOneDimensionalArray(const SCEV &AccessFn, const SCEV &ElemSize,
76dd3b6498SWhitney Tsang                                   const Loop &L, ScalarEvolution &SE) {
77dd3b6498SWhitney Tsang   const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(&AccessFn);
78dd3b6498SWhitney Tsang   if (!AR || !AR->isAffine())
79dd3b6498SWhitney Tsang     return false;
80dd3b6498SWhitney Tsang 
81dd3b6498SWhitney Tsang   assert(AR->getLoop() && "AR should have a loop");
82dd3b6498SWhitney Tsang 
83dd3b6498SWhitney Tsang   // Check that start and increment are not add recurrences.
84dd3b6498SWhitney Tsang   const SCEV *Start = AR->getStart();
85dd3b6498SWhitney Tsang   const SCEV *Step = AR->getStepRecurrence(SE);
86dd3b6498SWhitney Tsang   if (isa<SCEVAddRecExpr>(Start) || isa<SCEVAddRecExpr>(Step))
87dd3b6498SWhitney Tsang     return false;
88dd3b6498SWhitney Tsang 
89dd3b6498SWhitney Tsang   // Check that start and increment are both invariant in the loop.
90dd3b6498SWhitney Tsang   if (!SE.isLoopInvariant(Start, &L) || !SE.isLoopInvariant(Step, &L))
91dd3b6498SWhitney Tsang     return false;
92dd3b6498SWhitney Tsang 
93dd3b6498SWhitney Tsang   return AR->getStepRecurrence(SE) == &ElemSize;
94dd3b6498SWhitney Tsang }
95dd3b6498SWhitney Tsang 
96dd3b6498SWhitney Tsang /// Compute the trip count for the given loop \p L. Return the SCEV expression
97dd3b6498SWhitney Tsang /// for the trip count or nullptr if it cannot be computed.
98dd3b6498SWhitney Tsang static const SCEV *computeTripCount(const Loop &L, ScalarEvolution &SE) {
99dd3b6498SWhitney Tsang   const SCEV *BackedgeTakenCount = SE.getBackedgeTakenCount(&L);
100dd3b6498SWhitney Tsang   if (isa<SCEVCouldNotCompute>(BackedgeTakenCount) ||
101dd3b6498SWhitney Tsang       !isa<SCEVConstant>(BackedgeTakenCount))
102dd3b6498SWhitney Tsang     return nullptr;
103dd3b6498SWhitney Tsang 
104dd3b6498SWhitney Tsang   return SE.getAddExpr(BackedgeTakenCount,
105dd3b6498SWhitney Tsang                        SE.getOne(BackedgeTakenCount->getType()));
106dd3b6498SWhitney Tsang }
107dd3b6498SWhitney Tsang 
108dd3b6498SWhitney Tsang //===----------------------------------------------------------------------===//
109dd3b6498SWhitney Tsang // IndexedReference implementation
110dd3b6498SWhitney Tsang //
111dd3b6498SWhitney Tsang raw_ostream &llvm::operator<<(raw_ostream &OS, const IndexedReference &R) {
112dd3b6498SWhitney Tsang   if (!R.IsValid) {
113dd3b6498SWhitney Tsang     OS << R.StoreOrLoadInst;
114dd3b6498SWhitney Tsang     OS << ", IsValid=false.";
115dd3b6498SWhitney Tsang     return OS;
116dd3b6498SWhitney Tsang   }
117dd3b6498SWhitney Tsang 
118dd3b6498SWhitney Tsang   OS << *R.BasePointer;
119dd3b6498SWhitney Tsang   for (const SCEV *Subscript : R.Subscripts)
120dd3b6498SWhitney Tsang     OS << "[" << *Subscript << "]";
121dd3b6498SWhitney Tsang 
122dd3b6498SWhitney Tsang   OS << ", Sizes: ";
123dd3b6498SWhitney Tsang   for (const SCEV *Size : R.Sizes)
124dd3b6498SWhitney Tsang     OS << "[" << *Size << "]";
125dd3b6498SWhitney Tsang 
126dd3b6498SWhitney Tsang   return OS;
127dd3b6498SWhitney Tsang }
128dd3b6498SWhitney Tsang 
129dd3b6498SWhitney Tsang IndexedReference::IndexedReference(Instruction &StoreOrLoadInst,
130dd3b6498SWhitney Tsang                                    const LoopInfo &LI, ScalarEvolution &SE)
131dd3b6498SWhitney Tsang     : StoreOrLoadInst(StoreOrLoadInst), SE(SE) {
132dd3b6498SWhitney Tsang   assert((isa<StoreInst>(StoreOrLoadInst) || isa<LoadInst>(StoreOrLoadInst)) &&
133dd3b6498SWhitney Tsang          "Expecting a load or store instruction");
134dd3b6498SWhitney Tsang 
135dd3b6498SWhitney Tsang   IsValid = delinearize(LI);
136dd3b6498SWhitney Tsang   if (IsValid)
137dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(2) << "Succesfully delinearized: " << *this
138dd3b6498SWhitney Tsang                                 << "\n");
139dd3b6498SWhitney Tsang }
140dd3b6498SWhitney Tsang 
141dd3b6498SWhitney Tsang Optional<bool> IndexedReference::hasSpacialReuse(const IndexedReference &Other,
142dd3b6498SWhitney Tsang                                                  unsigned CLS,
143dd3b6498SWhitney Tsang                                                  AliasAnalysis &AA) const {
144dd3b6498SWhitney Tsang   assert(IsValid && "Expecting a valid reference");
145dd3b6498SWhitney Tsang 
146dd3b6498SWhitney Tsang   if (BasePointer != Other.getBasePointer() && !isAliased(Other, AA)) {
147dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(2)
148dd3b6498SWhitney Tsang                << "No spacial reuse: different base pointers\n");
149dd3b6498SWhitney Tsang     return false;
150dd3b6498SWhitney Tsang   }
151dd3b6498SWhitney Tsang 
152dd3b6498SWhitney Tsang   unsigned NumSubscripts = getNumSubscripts();
153dd3b6498SWhitney Tsang   if (NumSubscripts != Other.getNumSubscripts()) {
154dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(2)
155dd3b6498SWhitney Tsang                << "No spacial reuse: different number of subscripts\n");
156dd3b6498SWhitney Tsang     return false;
157dd3b6498SWhitney Tsang   }
158dd3b6498SWhitney Tsang 
159dd3b6498SWhitney Tsang   // all subscripts must be equal, except the leftmost one (the last one).
160dd3b6498SWhitney Tsang   for (auto SubNum : seq<unsigned>(0, NumSubscripts - 1)) {
161dd3b6498SWhitney Tsang     if (getSubscript(SubNum) != Other.getSubscript(SubNum)) {
162dd3b6498SWhitney Tsang       LLVM_DEBUG(dbgs().indent(2) << "No spacial reuse, different subscripts: "
163dd3b6498SWhitney Tsang                                   << "\n\t" << *getSubscript(SubNum) << "\n\t"
164dd3b6498SWhitney Tsang                                   << *Other.getSubscript(SubNum) << "\n");
165dd3b6498SWhitney Tsang       return false;
166dd3b6498SWhitney Tsang     }
167dd3b6498SWhitney Tsang   }
168dd3b6498SWhitney Tsang 
169dd3b6498SWhitney Tsang   // the difference between the last subscripts must be less than the cache line
170dd3b6498SWhitney Tsang   // size.
171dd3b6498SWhitney Tsang   const SCEV *LastSubscript = getLastSubscript();
172dd3b6498SWhitney Tsang   const SCEV *OtherLastSubscript = Other.getLastSubscript();
173dd3b6498SWhitney Tsang   const SCEVConstant *Diff = dyn_cast<SCEVConstant>(
174dd3b6498SWhitney Tsang       SE.getMinusSCEV(LastSubscript, OtherLastSubscript));
175dd3b6498SWhitney Tsang 
176dd3b6498SWhitney Tsang   if (Diff == nullptr) {
177dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(2)
178dd3b6498SWhitney Tsang                << "No spacial reuse, difference between subscript:\n\t"
179dd3b6498SWhitney Tsang                << *LastSubscript << "\n\t" << OtherLastSubscript
180dd3b6498SWhitney Tsang                << "\nis not constant.\n");
181dd3b6498SWhitney Tsang     return None;
182dd3b6498SWhitney Tsang   }
183dd3b6498SWhitney Tsang 
184dd3b6498SWhitney Tsang   bool InSameCacheLine = (Diff->getValue()->getSExtValue() < CLS);
185dd3b6498SWhitney Tsang 
186dd3b6498SWhitney Tsang   LLVM_DEBUG({
187dd3b6498SWhitney Tsang     if (InSameCacheLine)
188dd3b6498SWhitney Tsang       dbgs().indent(2) << "Found spacial reuse.\n";
189dd3b6498SWhitney Tsang     else
190dd3b6498SWhitney Tsang       dbgs().indent(2) << "No spacial reuse.\n";
191dd3b6498SWhitney Tsang   });
192dd3b6498SWhitney Tsang 
193dd3b6498SWhitney Tsang   return InSameCacheLine;
194dd3b6498SWhitney Tsang }
195dd3b6498SWhitney Tsang 
196dd3b6498SWhitney Tsang Optional<bool> IndexedReference::hasTemporalReuse(const IndexedReference &Other,
197dd3b6498SWhitney Tsang                                                   unsigned MaxDistance,
198dd3b6498SWhitney Tsang                                                   const Loop &L,
199dd3b6498SWhitney Tsang                                                   DependenceInfo &DI,
200dd3b6498SWhitney Tsang                                                   AliasAnalysis &AA) const {
201dd3b6498SWhitney Tsang   assert(IsValid && "Expecting a valid reference");
202dd3b6498SWhitney Tsang 
203dd3b6498SWhitney Tsang   if (BasePointer != Other.getBasePointer() && !isAliased(Other, AA)) {
204dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(2)
205dd3b6498SWhitney Tsang                << "No temporal reuse: different base pointer\n");
206dd3b6498SWhitney Tsang     return false;
207dd3b6498SWhitney Tsang   }
208dd3b6498SWhitney Tsang 
209dd3b6498SWhitney Tsang   std::unique_ptr<Dependence> D =
210dd3b6498SWhitney Tsang       DI.depends(&StoreOrLoadInst, &Other.StoreOrLoadInst, true);
211dd3b6498SWhitney Tsang 
212dd3b6498SWhitney Tsang   if (D == nullptr) {
213dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(2) << "No temporal reuse: no dependence\n");
214dd3b6498SWhitney Tsang     return false;
215dd3b6498SWhitney Tsang   }
216dd3b6498SWhitney Tsang 
217dd3b6498SWhitney Tsang   if (D->isLoopIndependent()) {
218dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(2) << "Found temporal reuse\n");
219dd3b6498SWhitney Tsang     return true;
220dd3b6498SWhitney Tsang   }
221dd3b6498SWhitney Tsang 
222dd3b6498SWhitney Tsang   // Check the dependence distance at every loop level. There is temporal reuse
223dd3b6498SWhitney Tsang   // if the distance at the given loop's depth is small (|d| <= MaxDistance) and
224dd3b6498SWhitney Tsang   // it is zero at every other loop level.
225dd3b6498SWhitney Tsang   int LoopDepth = L.getLoopDepth();
226dd3b6498SWhitney Tsang   int Levels = D->getLevels();
227dd3b6498SWhitney Tsang   for (int Level = 1; Level <= Levels; ++Level) {
228dd3b6498SWhitney Tsang     const SCEV *Distance = D->getDistance(Level);
229dd3b6498SWhitney Tsang     const SCEVConstant *SCEVConst = dyn_cast_or_null<SCEVConstant>(Distance);
230dd3b6498SWhitney Tsang 
231dd3b6498SWhitney Tsang     if (SCEVConst == nullptr) {
232dd3b6498SWhitney Tsang       LLVM_DEBUG(dbgs().indent(2) << "No temporal reuse: distance unknown\n");
233dd3b6498SWhitney Tsang       return None;
234dd3b6498SWhitney Tsang     }
235dd3b6498SWhitney Tsang 
236dd3b6498SWhitney Tsang     const ConstantInt &CI = *SCEVConst->getValue();
237dd3b6498SWhitney Tsang     if (Level != LoopDepth && !CI.isZero()) {
238dd3b6498SWhitney Tsang       LLVM_DEBUG(dbgs().indent(2)
239dd3b6498SWhitney Tsang                  << "No temporal reuse: distance is not zero at depth=" << Level
240dd3b6498SWhitney Tsang                  << "\n");
241dd3b6498SWhitney Tsang       return false;
242dd3b6498SWhitney Tsang     } else if (Level == LoopDepth && CI.getSExtValue() > MaxDistance) {
243dd3b6498SWhitney Tsang       LLVM_DEBUG(
244dd3b6498SWhitney Tsang           dbgs().indent(2)
245dd3b6498SWhitney Tsang           << "No temporal reuse: distance is greater than MaxDistance at depth="
246dd3b6498SWhitney Tsang           << Level << "\n");
247dd3b6498SWhitney Tsang       return false;
248dd3b6498SWhitney Tsang     }
249dd3b6498SWhitney Tsang   }
250dd3b6498SWhitney Tsang 
251dd3b6498SWhitney Tsang   LLVM_DEBUG(dbgs().indent(2) << "Found temporal reuse\n");
252dd3b6498SWhitney Tsang   return true;
253dd3b6498SWhitney Tsang }
254dd3b6498SWhitney Tsang 
255dd3b6498SWhitney Tsang CacheCostTy IndexedReference::computeRefCost(const Loop &L,
256dd3b6498SWhitney Tsang                                              unsigned CLS) const {
257dd3b6498SWhitney Tsang   assert(IsValid && "Expecting a valid reference");
258dd3b6498SWhitney Tsang   LLVM_DEBUG({
259dd3b6498SWhitney Tsang     dbgs().indent(2) << "Computing cache cost for:\n";
260dd3b6498SWhitney Tsang     dbgs().indent(4) << *this << "\n";
261dd3b6498SWhitney Tsang   });
262dd3b6498SWhitney Tsang 
263dd3b6498SWhitney Tsang   // If the indexed reference is loop invariant the cost is one.
264dd3b6498SWhitney Tsang   if (isLoopInvariant(L)) {
265dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(4) << "Reference is loop invariant: RefCost=1\n");
266dd3b6498SWhitney Tsang     return 1;
267dd3b6498SWhitney Tsang   }
268dd3b6498SWhitney Tsang 
269dd3b6498SWhitney Tsang   const SCEV *TripCount = computeTripCount(L, SE);
270dd3b6498SWhitney Tsang   if (!TripCount) {
271dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs() << "Trip count of loop " << L.getName()
272dd3b6498SWhitney Tsang                       << " could not be computed, using DefaultTripCount\n");
273dd3b6498SWhitney Tsang     const SCEV *ElemSize = Sizes.back();
274dd3b6498SWhitney Tsang     TripCount = SE.getConstant(ElemSize->getType(), DefaultTripCount);
275dd3b6498SWhitney Tsang   }
276dd3b6498SWhitney Tsang   LLVM_DEBUG(dbgs() << "TripCount=" << *TripCount << "\n");
277dd3b6498SWhitney Tsang 
278dd3b6498SWhitney Tsang   // If the indexed reference is 'consecutive' the cost is
279dd3b6498SWhitney Tsang   // (TripCount*Stride)/CLS, otherwise the cost is TripCount.
280dd3b6498SWhitney Tsang   const SCEV *RefCost = TripCount;
281dd3b6498SWhitney Tsang 
282dd3b6498SWhitney Tsang   if (isConsecutive(L, CLS)) {
283dd3b6498SWhitney Tsang     const SCEV *Coeff = getLastCoefficient();
284dd3b6498SWhitney Tsang     const SCEV *ElemSize = Sizes.back();
285dd3b6498SWhitney Tsang     const SCEV *Stride = SE.getMulExpr(Coeff, ElemSize);
286dd3b6498SWhitney Tsang     const SCEV *CacheLineSize = SE.getConstant(Stride->getType(), CLS);
287*f897d087SRachel Craik     Type *WiderType = SE.getWiderType(Stride->getType(), TripCount->getType());
288*f897d087SRachel Craik     Stride = SE.getNoopOrSignExtend(Stride, WiderType);
289*f897d087SRachel Craik     TripCount = SE.getNoopOrAnyExtend(TripCount, WiderType);
290dd3b6498SWhitney Tsang     const SCEV *Numerator = SE.getMulExpr(Stride, TripCount);
291dd3b6498SWhitney Tsang     RefCost = SE.getUDivExpr(Numerator, CacheLineSize);
292dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(4)
293dd3b6498SWhitney Tsang                << "Access is consecutive: RefCost=(TripCount*Stride)/CLS="
294dd3b6498SWhitney Tsang                << *RefCost << "\n");
295dd3b6498SWhitney Tsang   } else
296dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(4)
297dd3b6498SWhitney Tsang                << "Access is not consecutive: RefCost=TripCount=" << *RefCost
298dd3b6498SWhitney Tsang                << "\n");
299dd3b6498SWhitney Tsang 
300dd3b6498SWhitney Tsang   // Attempt to fold RefCost into a constant.
301dd3b6498SWhitney Tsang   if (auto ConstantCost = dyn_cast<SCEVConstant>(RefCost))
302dd3b6498SWhitney Tsang     return ConstantCost->getValue()->getSExtValue();
303dd3b6498SWhitney Tsang 
304dd3b6498SWhitney Tsang   LLVM_DEBUG(dbgs().indent(4)
305dd3b6498SWhitney Tsang              << "RefCost is not a constant! Setting to RefCost=InvalidCost "
306dd3b6498SWhitney Tsang                 "(invalid value).\n");
307dd3b6498SWhitney Tsang 
308dd3b6498SWhitney Tsang   return CacheCost::InvalidCost;
309dd3b6498SWhitney Tsang }
310dd3b6498SWhitney Tsang 
311dd3b6498SWhitney Tsang bool IndexedReference::delinearize(const LoopInfo &LI) {
312dd3b6498SWhitney Tsang   assert(Subscripts.empty() && "Subscripts should be empty");
313dd3b6498SWhitney Tsang   assert(Sizes.empty() && "Sizes should be empty");
314dd3b6498SWhitney Tsang   assert(!IsValid && "Should be called once from the constructor");
315dd3b6498SWhitney Tsang   LLVM_DEBUG(dbgs() << "Delinearizing: " << StoreOrLoadInst << "\n");
316dd3b6498SWhitney Tsang 
317dd3b6498SWhitney Tsang   const SCEV *ElemSize = SE.getElementSize(&StoreOrLoadInst);
318dd3b6498SWhitney Tsang   const BasicBlock *BB = StoreOrLoadInst.getParent();
319dd3b6498SWhitney Tsang 
32089453d18STsang Whitney W.H   if (Loop *L = LI.getLoopFor(BB)) {
321dd3b6498SWhitney Tsang     const SCEV *AccessFn =
322dd3b6498SWhitney Tsang         SE.getSCEVAtScope(getPointerOperand(&StoreOrLoadInst), L);
323dd3b6498SWhitney Tsang 
324dd3b6498SWhitney Tsang     BasePointer = dyn_cast<SCEVUnknown>(SE.getPointerBase(AccessFn));
325dd3b6498SWhitney Tsang     if (BasePointer == nullptr) {
326dd3b6498SWhitney Tsang       LLVM_DEBUG(
327dd3b6498SWhitney Tsang           dbgs().indent(2)
328dd3b6498SWhitney Tsang           << "ERROR: failed to delinearize, can't identify base pointer\n");
329dd3b6498SWhitney Tsang       return false;
330dd3b6498SWhitney Tsang     }
331dd3b6498SWhitney Tsang 
332dd3b6498SWhitney Tsang     AccessFn = SE.getMinusSCEV(AccessFn, BasePointer);
333dd3b6498SWhitney Tsang 
334dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs().indent(2) << "In Loop '" << L->getName()
335dd3b6498SWhitney Tsang                                 << "', AccessFn: " << *AccessFn << "\n");
336dd3b6498SWhitney Tsang 
337dd3b6498SWhitney Tsang     SE.delinearize(AccessFn, Subscripts, Sizes,
338dd3b6498SWhitney Tsang                    SE.getElementSize(&StoreOrLoadInst));
339dd3b6498SWhitney Tsang 
340dd3b6498SWhitney Tsang     if (Subscripts.empty() || Sizes.empty() ||
341dd3b6498SWhitney Tsang         Subscripts.size() != Sizes.size()) {
342dd3b6498SWhitney Tsang       // Attempt to determine whether we have a single dimensional array access.
343dd3b6498SWhitney Tsang       // before giving up.
344dd3b6498SWhitney Tsang       if (!isOneDimensionalArray(*AccessFn, *ElemSize, *L, SE)) {
345dd3b6498SWhitney Tsang         LLVM_DEBUG(dbgs().indent(2)
346dd3b6498SWhitney Tsang                    << "ERROR: failed to delinearize reference\n");
347dd3b6498SWhitney Tsang         Subscripts.clear();
348dd3b6498SWhitney Tsang         Sizes.clear();
34989453d18STsang Whitney W.H         return false;
350dd3b6498SWhitney Tsang       }
351dd3b6498SWhitney Tsang 
352dd3b6498SWhitney Tsang       const SCEV *Div = SE.getUDivExactExpr(AccessFn, ElemSize);
353dd3b6498SWhitney Tsang       Subscripts.push_back(Div);
354dd3b6498SWhitney Tsang       Sizes.push_back(ElemSize);
355dd3b6498SWhitney Tsang     }
356dd3b6498SWhitney Tsang 
357dd3b6498SWhitney Tsang     return all_of(Subscripts, [&](const SCEV *Subscript) {
358dd3b6498SWhitney Tsang       return isSimpleAddRecurrence(*Subscript, *L);
359dd3b6498SWhitney Tsang     });
360dd3b6498SWhitney Tsang   }
361dd3b6498SWhitney Tsang 
362dd3b6498SWhitney Tsang   return false;
363dd3b6498SWhitney Tsang }
364dd3b6498SWhitney Tsang 
365dd3b6498SWhitney Tsang bool IndexedReference::isLoopInvariant(const Loop &L) const {
366dd3b6498SWhitney Tsang   Value *Addr = getPointerOperand(&StoreOrLoadInst);
367dd3b6498SWhitney Tsang   assert(Addr != nullptr && "Expecting either a load or a store instruction");
368dd3b6498SWhitney Tsang   assert(SE.isSCEVable(Addr->getType()) && "Addr should be SCEVable");
369dd3b6498SWhitney Tsang 
370dd3b6498SWhitney Tsang   if (SE.isLoopInvariant(SE.getSCEV(Addr), &L))
371dd3b6498SWhitney Tsang     return true;
372dd3b6498SWhitney Tsang 
373dd3b6498SWhitney Tsang   // The indexed reference is loop invariant if none of the coefficients use
374dd3b6498SWhitney Tsang   // the loop induction variable.
375dd3b6498SWhitney Tsang   bool allCoeffForLoopAreZero = all_of(Subscripts, [&](const SCEV *Subscript) {
376dd3b6498SWhitney Tsang     return isCoeffForLoopZeroOrInvariant(*Subscript, L);
377dd3b6498SWhitney Tsang   });
378dd3b6498SWhitney Tsang 
379dd3b6498SWhitney Tsang   return allCoeffForLoopAreZero;
380dd3b6498SWhitney Tsang }
381dd3b6498SWhitney Tsang 
382dd3b6498SWhitney Tsang bool IndexedReference::isConsecutive(const Loop &L, unsigned CLS) const {
383dd3b6498SWhitney Tsang   // The indexed reference is 'consecutive' if the only coefficient that uses
384dd3b6498SWhitney Tsang   // the loop induction variable is the last one...
385dd3b6498SWhitney Tsang   const SCEV *LastSubscript = Subscripts.back();
386dd3b6498SWhitney Tsang   for (const SCEV *Subscript : Subscripts) {
387dd3b6498SWhitney Tsang     if (Subscript == LastSubscript)
388dd3b6498SWhitney Tsang       continue;
389dd3b6498SWhitney Tsang     if (!isCoeffForLoopZeroOrInvariant(*Subscript, L))
390dd3b6498SWhitney Tsang       return false;
391dd3b6498SWhitney Tsang   }
392dd3b6498SWhitney Tsang 
393dd3b6498SWhitney Tsang   // ...and the access stride is less than the cache line size.
394dd3b6498SWhitney Tsang   const SCEV *Coeff = getLastCoefficient();
395dd3b6498SWhitney Tsang   const SCEV *ElemSize = Sizes.back();
396dd3b6498SWhitney Tsang   const SCEV *Stride = SE.getMulExpr(Coeff, ElemSize);
397dd3b6498SWhitney Tsang   const SCEV *CacheLineSize = SE.getConstant(Stride->getType(), CLS);
398dd3b6498SWhitney Tsang 
399dd3b6498SWhitney Tsang   return SE.isKnownPredicate(ICmpInst::ICMP_ULT, Stride, CacheLineSize);
400dd3b6498SWhitney Tsang }
401dd3b6498SWhitney Tsang 
402dd3b6498SWhitney Tsang const SCEV *IndexedReference::getLastCoefficient() const {
403dd3b6498SWhitney Tsang   const SCEV *LastSubscript = getLastSubscript();
404dd3b6498SWhitney Tsang   assert(isa<SCEVAddRecExpr>(LastSubscript) &&
405dd3b6498SWhitney Tsang          "Expecting a SCEV add recurrence expression");
406dd3b6498SWhitney Tsang   const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(LastSubscript);
407dd3b6498SWhitney Tsang   return AR->getStepRecurrence(SE);
408dd3b6498SWhitney Tsang }
409dd3b6498SWhitney Tsang 
410dd3b6498SWhitney Tsang bool IndexedReference::isCoeffForLoopZeroOrInvariant(const SCEV &Subscript,
411dd3b6498SWhitney Tsang                                                      const Loop &L) const {
412dd3b6498SWhitney Tsang   const SCEVAddRecExpr *AR = dyn_cast<SCEVAddRecExpr>(&Subscript);
413dd3b6498SWhitney Tsang   return (AR != nullptr) ? AR->getLoop() != &L
414dd3b6498SWhitney Tsang                          : SE.isLoopInvariant(&Subscript, &L);
415dd3b6498SWhitney Tsang }
416dd3b6498SWhitney Tsang 
417dd3b6498SWhitney Tsang bool IndexedReference::isSimpleAddRecurrence(const SCEV &Subscript,
418dd3b6498SWhitney Tsang                                              const Loop &L) const {
419dd3b6498SWhitney Tsang   if (!isa<SCEVAddRecExpr>(Subscript))
420dd3b6498SWhitney Tsang     return false;
421dd3b6498SWhitney Tsang 
422dd3b6498SWhitney Tsang   const SCEVAddRecExpr *AR = cast<SCEVAddRecExpr>(&Subscript);
423dd3b6498SWhitney Tsang   assert(AR->getLoop() && "AR should have a loop");
424dd3b6498SWhitney Tsang 
425dd3b6498SWhitney Tsang   if (!AR->isAffine())
426dd3b6498SWhitney Tsang     return false;
427dd3b6498SWhitney Tsang 
428dd3b6498SWhitney Tsang   const SCEV *Start = AR->getStart();
429dd3b6498SWhitney Tsang   const SCEV *Step = AR->getStepRecurrence(SE);
430dd3b6498SWhitney Tsang 
431dd3b6498SWhitney Tsang   if (!SE.isLoopInvariant(Start, &L) || !SE.isLoopInvariant(Step, &L))
432dd3b6498SWhitney Tsang     return false;
433dd3b6498SWhitney Tsang 
434dd3b6498SWhitney Tsang   return true;
435dd3b6498SWhitney Tsang }
436dd3b6498SWhitney Tsang 
437dd3b6498SWhitney Tsang bool IndexedReference::isAliased(const IndexedReference &Other,
438dd3b6498SWhitney Tsang                                  AliasAnalysis &AA) const {
439dd3b6498SWhitney Tsang   const auto &Loc1 = MemoryLocation::get(&StoreOrLoadInst);
440dd3b6498SWhitney Tsang   const auto &Loc2 = MemoryLocation::get(&Other.StoreOrLoadInst);
441dd3b6498SWhitney Tsang   return AA.isMustAlias(Loc1, Loc2);
442dd3b6498SWhitney Tsang }
443dd3b6498SWhitney Tsang 
444dd3b6498SWhitney Tsang //===----------------------------------------------------------------------===//
445dd3b6498SWhitney Tsang // CacheCost implementation
446dd3b6498SWhitney Tsang //
447dd3b6498SWhitney Tsang raw_ostream &llvm::operator<<(raw_ostream &OS, const CacheCost &CC) {
448dd3b6498SWhitney Tsang   for (const auto &LC : CC.LoopCosts) {
449dd3b6498SWhitney Tsang     const Loop *L = LC.first;
450dd3b6498SWhitney Tsang     OS << "Loop '" << L->getName() << "' has cost = " << LC.second << "\n";
451dd3b6498SWhitney Tsang   }
452dd3b6498SWhitney Tsang   return OS;
453dd3b6498SWhitney Tsang }
454dd3b6498SWhitney Tsang 
455dd3b6498SWhitney Tsang CacheCost::CacheCost(const LoopVectorTy &Loops, const LoopInfo &LI,
456dd3b6498SWhitney Tsang                      ScalarEvolution &SE, TargetTransformInfo &TTI,
457dd3b6498SWhitney Tsang                      AliasAnalysis &AA, DependenceInfo &DI,
458dd3b6498SWhitney Tsang                      Optional<unsigned> TRT)
459dd3b6498SWhitney Tsang     : Loops(Loops), TripCounts(), LoopCosts(),
46089453d18STsang Whitney W.H       TRT((TRT == None) ? Optional<unsigned>(TemporalReuseThreshold) : TRT),
461dd3b6498SWhitney Tsang       LI(LI), SE(SE), TTI(TTI), AA(AA), DI(DI) {
462dd3b6498SWhitney Tsang   assert(!Loops.empty() && "Expecting a non-empty loop vector.");
463dd3b6498SWhitney Tsang 
464dd3b6498SWhitney Tsang   for (const Loop *L : Loops) {
465dd3b6498SWhitney Tsang     unsigned TripCount = SE.getSmallConstantTripCount(L);
466dd3b6498SWhitney Tsang     TripCount = (TripCount == 0) ? DefaultTripCount : TripCount;
467dd3b6498SWhitney Tsang     TripCounts.push_back({L, TripCount});
468dd3b6498SWhitney Tsang   }
469dd3b6498SWhitney Tsang 
470dd3b6498SWhitney Tsang   calculateCacheFootprint();
471dd3b6498SWhitney Tsang }
472dd3b6498SWhitney Tsang 
473dd3b6498SWhitney Tsang std::unique_ptr<CacheCost>
474dd3b6498SWhitney Tsang CacheCost::getCacheCost(Loop &Root, LoopStandardAnalysisResults &AR,
475dd3b6498SWhitney Tsang                         DependenceInfo &DI, Optional<unsigned> TRT) {
476dd3b6498SWhitney Tsang   if (Root.getParentLoop()) {
477dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs() << "Expecting the outermost loop in a loop nest\n");
478dd3b6498SWhitney Tsang     return nullptr;
479dd3b6498SWhitney Tsang   }
480dd3b6498SWhitney Tsang 
481dd3b6498SWhitney Tsang   LoopVectorTy Loops;
482dd3b6498SWhitney Tsang   for (Loop *L : breadth_first(&Root))
483dd3b6498SWhitney Tsang     Loops.push_back(L);
484dd3b6498SWhitney Tsang 
485dd3b6498SWhitney Tsang   if (!getInnerMostLoop(Loops)) {
486dd3b6498SWhitney Tsang     LLVM_DEBUG(dbgs() << "Cannot compute cache cost of loop nest with more "
487dd3b6498SWhitney Tsang                          "than one innermost loop\n");
488dd3b6498SWhitney Tsang     return nullptr;
489dd3b6498SWhitney Tsang   }
490dd3b6498SWhitney Tsang 
4910eaee545SJonas Devlieghere   return std::make_unique<CacheCost>(Loops, AR.LI, AR.SE, AR.TTI, AR.AA, DI, TRT);
492dd3b6498SWhitney Tsang }
493dd3b6498SWhitney Tsang 
494dd3b6498SWhitney Tsang void CacheCost::calculateCacheFootprint() {
495dd3b6498SWhitney Tsang   LLVM_DEBUG(dbgs() << "POPULATING REFERENCE GROUPS\n");
496dd3b6498SWhitney Tsang   ReferenceGroupsTy RefGroups;
497dd3b6498SWhitney Tsang   if (!populateReferenceGroups(RefGroups))
498dd3b6498SWhitney Tsang     return;
499dd3b6498SWhitney Tsang 
500dd3b6498SWhitney Tsang   LLVM_DEBUG(dbgs() << "COMPUTING LOOP CACHE COSTS\n");
501dd3b6498SWhitney Tsang   for (const Loop *L : Loops) {
502dd3b6498SWhitney Tsang     assert((std::find_if(LoopCosts.begin(), LoopCosts.end(),
503dd3b6498SWhitney Tsang                          [L](const LoopCacheCostTy &LCC) {
504dd3b6498SWhitney Tsang                            return LCC.first == L;
505dd3b6498SWhitney Tsang                          }) == LoopCosts.end()) &&
506dd3b6498SWhitney Tsang            "Should not add duplicate element");
507dd3b6498SWhitney Tsang     CacheCostTy LoopCost = computeLoopCacheCost(*L, RefGroups);
508dd3b6498SWhitney Tsang     LoopCosts.push_back(std::make_pair(L, LoopCost));
509dd3b6498SWhitney Tsang   }
510dd3b6498SWhitney Tsang 
511dd3b6498SWhitney Tsang   sortLoopCosts();
512dd3b6498SWhitney Tsang   RefGroups.clear();
513dd3b6498SWhitney Tsang }
514dd3b6498SWhitney Tsang 
515dd3b6498SWhitney Tsang bool CacheCost::populateReferenceGroups(ReferenceGroupsTy &RefGroups) const {
516dd3b6498SWhitney Tsang   assert(RefGroups.empty() && "Reference groups should be empty");
517dd3b6498SWhitney Tsang 
518dd3b6498SWhitney Tsang   unsigned CLS = TTI.getCacheLineSize();
519dd3b6498SWhitney Tsang   Loop *InnerMostLoop = getInnerMostLoop(Loops);
520dd3b6498SWhitney Tsang   assert(InnerMostLoop != nullptr && "Expecting a valid innermost loop");
521dd3b6498SWhitney Tsang 
522dd3b6498SWhitney Tsang   for (BasicBlock *BB : InnerMostLoop->getBlocks()) {
523dd3b6498SWhitney Tsang     for (Instruction &I : *BB) {
524dd3b6498SWhitney Tsang       if (!isa<StoreInst>(I) && !isa<LoadInst>(I))
525dd3b6498SWhitney Tsang         continue;
526dd3b6498SWhitney Tsang 
527dd3b6498SWhitney Tsang       std::unique_ptr<IndexedReference> R(new IndexedReference(I, LI, SE));
528dd3b6498SWhitney Tsang       if (!R->isValid())
529dd3b6498SWhitney Tsang         continue;
530dd3b6498SWhitney Tsang 
531dd3b6498SWhitney Tsang       bool Added = false;
532dd3b6498SWhitney Tsang       for (ReferenceGroupTy &RefGroup : RefGroups) {
533dd3b6498SWhitney Tsang         const IndexedReference &Representative = *RefGroup.front().get();
534dd3b6498SWhitney Tsang         LLVM_DEBUG({
535dd3b6498SWhitney Tsang           dbgs() << "References:\n";
536dd3b6498SWhitney Tsang           dbgs().indent(2) << *R << "\n";
537dd3b6498SWhitney Tsang           dbgs().indent(2) << Representative << "\n";
538dd3b6498SWhitney Tsang         });
539dd3b6498SWhitney Tsang 
540dd3b6498SWhitney Tsang         Optional<bool> HasTemporalReuse =
541dd3b6498SWhitney Tsang             R->hasTemporalReuse(Representative, *TRT, *InnerMostLoop, DI, AA);
542dd3b6498SWhitney Tsang         Optional<bool> HasSpacialReuse =
543dd3b6498SWhitney Tsang             R->hasSpacialReuse(Representative, CLS, AA);
544dd3b6498SWhitney Tsang 
545dd3b6498SWhitney Tsang         if ((HasTemporalReuse.hasValue() && *HasTemporalReuse) ||
546dd3b6498SWhitney Tsang             (HasSpacialReuse.hasValue() && *HasSpacialReuse)) {
547dd3b6498SWhitney Tsang           RefGroup.push_back(std::move(R));
548dd3b6498SWhitney Tsang           Added = true;
549dd3b6498SWhitney Tsang           break;
550dd3b6498SWhitney Tsang         }
551dd3b6498SWhitney Tsang       }
552dd3b6498SWhitney Tsang 
553dd3b6498SWhitney Tsang       if (!Added) {
554dd3b6498SWhitney Tsang         ReferenceGroupTy RG;
555dd3b6498SWhitney Tsang         RG.push_back(std::move(R));
556dd3b6498SWhitney Tsang         RefGroups.push_back(std::move(RG));
557dd3b6498SWhitney Tsang       }
558dd3b6498SWhitney Tsang     }
559dd3b6498SWhitney Tsang   }
560dd3b6498SWhitney Tsang 
561dd3b6498SWhitney Tsang   if (RefGroups.empty())
562dd3b6498SWhitney Tsang     return false;
563dd3b6498SWhitney Tsang 
564dd3b6498SWhitney Tsang   LLVM_DEBUG({
565dd3b6498SWhitney Tsang     dbgs() << "\nIDENTIFIED REFERENCE GROUPS:\n";
566dd3b6498SWhitney Tsang     int n = 1;
567dd3b6498SWhitney Tsang     for (const ReferenceGroupTy &RG : RefGroups) {
568dd3b6498SWhitney Tsang       dbgs().indent(2) << "RefGroup " << n << ":\n";
569dd3b6498SWhitney Tsang       for (const auto &IR : RG)
570dd3b6498SWhitney Tsang         dbgs().indent(4) << *IR << "\n";
571dd3b6498SWhitney Tsang       n++;
572dd3b6498SWhitney Tsang     }
573dd3b6498SWhitney Tsang     dbgs() << "\n";
574dd3b6498SWhitney Tsang   });
575dd3b6498SWhitney Tsang 
576dd3b6498SWhitney Tsang   return true;
577dd3b6498SWhitney Tsang }
578dd3b6498SWhitney Tsang 
579dd3b6498SWhitney Tsang CacheCostTy
580dd3b6498SWhitney Tsang CacheCost::computeLoopCacheCost(const Loop &L,
581dd3b6498SWhitney Tsang                                 const ReferenceGroupsTy &RefGroups) const {
582dd3b6498SWhitney Tsang   if (!L.isLoopSimplifyForm())
583dd3b6498SWhitney Tsang     return InvalidCost;
584dd3b6498SWhitney Tsang 
585dd3b6498SWhitney Tsang   LLVM_DEBUG(dbgs() << "Considering loop '" << L.getName()
586dd3b6498SWhitney Tsang                     << "' as innermost loop.\n");
587dd3b6498SWhitney Tsang 
588dd3b6498SWhitney Tsang   // Compute the product of the trip counts of each other loop in the nest.
589dd3b6498SWhitney Tsang   CacheCostTy TripCountsProduct = 1;
590dd3b6498SWhitney Tsang   for (const auto &TC : TripCounts) {
591dd3b6498SWhitney Tsang     if (TC.first == &L)
592dd3b6498SWhitney Tsang       continue;
593dd3b6498SWhitney Tsang     TripCountsProduct *= TC.second;
594dd3b6498SWhitney Tsang   }
595dd3b6498SWhitney Tsang 
596dd3b6498SWhitney Tsang   CacheCostTy LoopCost = 0;
597dd3b6498SWhitney Tsang   for (const ReferenceGroupTy &RG : RefGroups) {
598dd3b6498SWhitney Tsang     CacheCostTy RefGroupCost = computeRefGroupCacheCost(RG, L);
599dd3b6498SWhitney Tsang     LoopCost += RefGroupCost * TripCountsProduct;
600dd3b6498SWhitney Tsang   }
601dd3b6498SWhitney Tsang 
602dd3b6498SWhitney Tsang   LLVM_DEBUG(dbgs().indent(2) << "Loop '" << L.getName()
603dd3b6498SWhitney Tsang                               << "' has cost=" << LoopCost << "\n");
604dd3b6498SWhitney Tsang 
605dd3b6498SWhitney Tsang   return LoopCost;
606dd3b6498SWhitney Tsang }
607dd3b6498SWhitney Tsang 
608dd3b6498SWhitney Tsang CacheCostTy CacheCost::computeRefGroupCacheCost(const ReferenceGroupTy &RG,
609dd3b6498SWhitney Tsang                                                 const Loop &L) const {
610dd3b6498SWhitney Tsang   assert(!RG.empty() && "Reference group should have at least one member.");
611dd3b6498SWhitney Tsang 
612dd3b6498SWhitney Tsang   const IndexedReference *Representative = RG.front().get();
613dd3b6498SWhitney Tsang   return Representative->computeRefCost(L, TTI.getCacheLineSize());
614dd3b6498SWhitney Tsang }
615dd3b6498SWhitney Tsang 
616dd3b6498SWhitney Tsang //===----------------------------------------------------------------------===//
617dd3b6498SWhitney Tsang // LoopCachePrinterPass implementation
618dd3b6498SWhitney Tsang //
619dd3b6498SWhitney Tsang PreservedAnalyses LoopCachePrinterPass::run(Loop &L, LoopAnalysisManager &AM,
620dd3b6498SWhitney Tsang                                             LoopStandardAnalysisResults &AR,
621dd3b6498SWhitney Tsang                                             LPMUpdater &U) {
622dd3b6498SWhitney Tsang   Function *F = L.getHeader()->getParent();
623dd3b6498SWhitney Tsang   DependenceInfo DI(F, &AR.AA, &AR.SE, &AR.LI);
624dd3b6498SWhitney Tsang 
625dd3b6498SWhitney Tsang   if (auto CC = CacheCost::getCacheCost(L, AR, DI))
626dd3b6498SWhitney Tsang     OS << *CC;
627dd3b6498SWhitney Tsang 
628dd3b6498SWhitney Tsang   return PreservedAnalyses::all();
629dd3b6498SWhitney Tsang }
630