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Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001//===- ScopInfo.cpp -------------------------------------------------------===//
Tobias Grosser75805372011-04-29 06:27:02 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// Create a polyhedral description for a static control flow region.
11//
12// The pass creates a polyhedral description of the Scops detected by the Scop
13// detection derived from their LLVM-IR code.
14//
Tobias Grossera5605d32014-10-29 19:58:28 +000015// This representation is shared among several tools in the polyhedral
Tobias Grosser75805372011-04-29 06:27:02 +000016// community, which are e.g. Cloog, Pluto, Loopo, Graphite.
17//
18//===----------------------------------------------------------------------===//
19
Tobias Grosser5624d3c2015-12-21 12:38:56 +000020#include "polly/ScopInfo.h"
Tobias Grosser75805372011-04-29 06:27:02 +000021#include "polly/LinkAllPasses.h"
Johannes Doerfert0ee1f212014-06-17 17:31:36 +000022#include "polly/Options.h"
Michael Kruse73fa33b2016-06-28 01:37:28 +000023#include "polly/ScopBuilder.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000024#include "polly/ScopDetection.h"
Tobias Grosser75805372011-04-29 06:27:02 +000025#include "polly/Support/GICHelper.h"
Tobias Grosser77eef902017-07-21 23:07:56 +000026#include "polly/Support/ISLOStream.h"
Michael Krusee3300712018-05-09 16:23:56 +000027#include "polly/Support/ISLTools.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000028#include "polly/Support/SCEVAffinator.h"
Tobias Grosser60b54f12011-11-08 15:41:28 +000029#include "polly/Support/SCEVValidator.h"
Tobias Grosser83628182013-05-07 08:11:54 +000030#include "polly/Support/ScopHelper.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000031#include "llvm/ADT/APInt.h"
32#include "llvm/ADT/ArrayRef.h"
33#include "llvm/ADT/DenseMap.h"
34#include "llvm/ADT/DenseSet.h"
Tobias Grosserc2bb0cb2015-09-25 09:49:19 +000035#include "llvm/ADT/PostOrderIterator.h"
36#include "llvm/ADT/STLExtras.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000037#include "llvm/ADT/SetVector.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000038#include "llvm/ADT/SmallPtrSet.h"
39#include "llvm/ADT/SmallSet.h"
40#include "llvm/ADT/SmallVector.h"
Tobias Grosser83628182013-05-07 08:11:54 +000041#include "llvm/ADT/Statistic.h"
Hongbin Zheng86a37742012-04-25 08:01:38 +000042#include "llvm/ADT/StringExtras.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000043#include "llvm/ADT/StringMap.h"
Johannes Doerfertb164c792014-09-18 11:17:17 +000044#include "llvm/Analysis/AliasAnalysis.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000045#include "llvm/Analysis/AliasSetTracker.h"
Michael Kruse89b1f942017-03-17 13:56:53 +000046#include "llvm/Analysis/AssumptionCache.h"
Johannes Doerfert1dc12af2016-04-23 12:59:18 +000047#include "llvm/Analysis/Loads.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000048#include "llvm/Analysis/LoopInfo.h"
Adam Nemete0f15412017-10-09 23:49:08 +000049#include "llvm/Analysis/OptimizationRemarkEmitter.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000050#include "llvm/Analysis/RegionInfo.h"
Tobias Grosser83628182013-05-07 08:11:54 +000051#include "llvm/Analysis/RegionIterator.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000052#include "llvm/Analysis/ScalarEvolution.h"
Tobias Grosser83628182013-05-07 08:11:54 +000053#include "llvm/Analysis/ScalarEvolutionExpressions.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000054#include "llvm/IR/Argument.h"
55#include "llvm/IR/BasicBlock.h"
56#include "llvm/IR/CFG.h"
57#include "llvm/IR/ConstantRange.h"
58#include "llvm/IR/Constants.h"
59#include "llvm/IR/DataLayout.h"
60#include "llvm/IR/DebugLoc.h"
61#include "llvm/IR/DerivedTypes.h"
Johannes Doerfert48fe86f2015-11-12 02:32:32 +000062#include "llvm/IR/DiagnosticInfo.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000063#include "llvm/IR/Dominators.h"
64#include "llvm/IR/Function.h"
65#include "llvm/IR/InstrTypes.h"
66#include "llvm/IR/Instruction.h"
67#include "llvm/IR/Instructions.h"
68#include "llvm/IR/IntrinsicInst.h"
69#include "llvm/IR/Module.h"
70#include "llvm/IR/PassManager.h"
71#include "llvm/IR/Type.h"
72#include "llvm/IR/Use.h"
73#include "llvm/IR/User.h"
74#include "llvm/IR/Value.h"
75#include "llvm/Pass.h"
76#include "llvm/Support/Casting.h"
77#include "llvm/Support/CommandLine.h"
78#include "llvm/Support/Compiler.h"
Tobias Grosser75805372011-04-29 06:27:02 +000079#include "llvm/Support/Debug.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000080#include "llvm/Support/ErrorHandling.h"
81#include "llvm/Support/MathExtras.h"
82#include "llvm/Support/raw_ostream.h"
Tobias Grosser33ba62ad2011-08-18 06:31:50 +000083#include "isl/aff.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000084#include "isl/constraint.h"
Tobias Grosserf5338802011-10-06 00:03:35 +000085#include "isl/local_space.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000086#include "isl/map.h"
Tobias Grosser4a8e3562011-12-07 07:42:51 +000087#include "isl/options.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000088#include "isl/printer.h"
Tobias Grosser808cd692015-07-14 09:33:13 +000089#include "isl/schedule.h"
90#include "isl/schedule_node.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000091#include "isl/set.h"
92#include "isl/union_map.h"
Tobias Grossercd524dc2015-05-09 09:36:38 +000093#include "isl/union_set.h"
Tobias Grosseredab1352013-06-21 06:41:31 +000094#include "isl/val.h"
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +000095#include <algorithm>
96#include <cassert>
97#include <cstdlib>
98#include <cstring>
99#include <deque>
100#include <iterator>
101#include <memory>
Tobias Grosser75805372011-04-29 06:27:02 +0000102#include <string>
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +0000103#include <tuple>
104#include <utility>
Tobias Grosser75805372011-04-29 06:27:02 +0000105#include <vector>
106
107using namespace llvm;
108using namespace polly;
109
Chandler Carruth95fef942014-04-22 03:30:19 +0000110#define DEBUG_TYPE "polly-scops"
111
Johannes Doerfert81aa6e82016-11-18 14:37:08 +0000112STATISTIC(AssumptionsAliasing, "Number of aliasing assumptions taken.");
113STATISTIC(AssumptionsInbounds, "Number of inbounds assumptions taken.");
114STATISTIC(AssumptionsWrapping, "Number of wrapping assumptions taken.");
115STATISTIC(AssumptionsUnsigned, "Number of unsigned assumptions taken.");
116STATISTIC(AssumptionsComplexity, "Number of too complex SCoPs.");
117STATISTIC(AssumptionsUnprofitable, "Number of unprofitable SCoPs.");
118STATISTIC(AssumptionsErrorBlock, "Number of error block assumptions taken.");
119STATISTIC(AssumptionsInfiniteLoop, "Number of bounded loop assumptions taken.");
120STATISTIC(AssumptionsInvariantLoad,
Johannes Doerfertcd195322016-11-17 21:41:08 +0000121 "Number of invariant loads assumptions taken.");
Johannes Doerfert81aa6e82016-11-18 14:37:08 +0000122STATISTIC(AssumptionsDelinearization,
Johannes Doerfertcd195322016-11-17 21:41:08 +0000123 "Number of delinearization assumptions taken.");
124
Michael Kruse06ed5292017-08-23 13:50:30 +0000125STATISTIC(NumScops, "Number of feasible SCoPs after ScopInfo");
Tobias Grossercd01a362017-02-17 08:12:36 +0000126STATISTIC(NumLoopsInScop, "Number of loops in scops");
Michael Kruse06ed5292017-08-23 13:50:30 +0000127STATISTIC(NumBoxedLoops, "Number of boxed loops in SCoPs after ScopInfo");
128STATISTIC(NumAffineLoops, "Number of affine loops in SCoPs after ScopInfo");
129
Tobias Grosserfcc3ad52018-04-18 20:03:36 +0000130STATISTIC(NumScopsDepthZero, "Number of scops with maximal loop depth 0");
Tobias Grossercd01a362017-02-17 08:12:36 +0000131STATISTIC(NumScopsDepthOne, "Number of scops with maximal loop depth 1");
132STATISTIC(NumScopsDepthTwo, "Number of scops with maximal loop depth 2");
133STATISTIC(NumScopsDepthThree, "Number of scops with maximal loop depth 3");
134STATISTIC(NumScopsDepthFour, "Number of scops with maximal loop depth 4");
135STATISTIC(NumScopsDepthFive, "Number of scops with maximal loop depth 5");
136STATISTIC(NumScopsDepthLarger,
137 "Number of scops with maximal loop depth 6 and larger");
138STATISTIC(MaxNumLoopsInScop, "Maximal number of loops in scops");
139
Michael Kruse06ed5292017-08-23 13:50:30 +0000140STATISTIC(NumValueWrites, "Number of scalar value writes after ScopInfo");
141STATISTIC(
142 NumValueWritesInLoops,
143 "Number of scalar value writes nested in affine loops after ScopInfo");
144STATISTIC(NumPHIWrites, "Number of scalar phi writes after ScopInfo");
145STATISTIC(NumPHIWritesInLoops,
146 "Number of scalar phi writes nested in affine loops after ScopInfo");
147STATISTIC(NumSingletonWrites, "Number of singleton writes after ScopInfo");
148STATISTIC(NumSingletonWritesInLoops,
149 "Number of singleton writes nested in affine loops after ScopInfo");
150
Tobias Grosser75dc40c2015-12-20 13:31:48 +0000151// The maximal number of basic sets we allow during domain construction to
152// be created. More complex scops will result in very high compile time and
153// are also unlikely to result in good code
Tobias Grosser90411a92017-02-16 19:11:33 +0000154static int const MaxDisjunctsInDomain = 20;
Tobias Grosser75dc40c2015-12-20 13:31:48 +0000155
Tobias Grosserc8a82762017-02-16 19:11:25 +0000156// The number of disjunct in the context after which we stop to add more
157// disjuncts. This parameter is there to avoid exponential growth in the
158// number of disjunct when adding non-convex sets to the context.
159static int const MaxDisjunctsInContext = 4;
160
Tobias Grosser1eeedf42017-07-20 19:55:19 +0000161// The maximal number of dimensions we allow during invariant load construction.
162// More complex access ranges will result in very high compile time and are also
163// unlikely to result in good code. This value is very high and should only
164// trigger for corner cases (e.g., the "dct_luma" function in h264, SPEC2006).
165static int const MaxDimensionsInAccessRange = 9;
166
Tobias Grosser97715842017-05-19 04:01:52 +0000167static cl::opt<int>
168 OptComputeOut("polly-analysis-computeout",
169 cl::desc("Bound the scop analysis by a maximal amount of "
170 "computational steps (0 means no bound)"),
Tobias Grosser57a1d362017-06-23 08:05:27 +0000171 cl::Hidden, cl::init(800000), cl::ZeroOrMore,
Tobias Grosser97715842017-05-19 04:01:52 +0000172 cl::cat(PollyCategory));
Tobias Grosser45e9fd12017-05-19 03:45:00 +0000173
Johannes Doerfert2f705842016-04-12 16:09:44 +0000174static cl::opt<bool> PollyRemarksMinimal(
175 "polly-remarks-minimal",
176 cl::desc("Do not emit remarks about assumptions that are known"),
177 cl::Hidden, cl::ZeroOrMore, cl::init(false), cl::cat(PollyCategory));
178
Tobias Grosser1b9d1bc2017-06-25 06:32:00 +0000179static cl::opt<int> RunTimeChecksMaxAccessDisjuncts(
180 "polly-rtc-max-array-disjuncts",
181 cl::desc("The maximal number of disjunts allowed in memory accesses to "
182 "to build RTCs."),
183 cl::Hidden, cl::ZeroOrMore, cl::init(8), cl::cat(PollyCategory));
184
Johannes Doerfert9143d672014-09-27 11:02:39 +0000185static cl::opt<unsigned> RunTimeChecksMaxParameters(
186 "polly-rtc-max-parameters",
187 cl::desc("The maximal number of parameters allowed in RTCs."), cl::Hidden,
188 cl::ZeroOrMore, cl::init(8), cl::cat(PollyCategory));
189
Tobias Grosser71500722015-03-28 15:11:14 +0000190static cl::opt<unsigned> RunTimeChecksMaxArraysPerGroup(
191 "polly-rtc-max-arrays-per-group",
192 cl::desc("The maximal number of arrays to compare in each alias group."),
193 cl::Hidden, cl::ZeroOrMore, cl::init(20), cl::cat(PollyCategory));
Johannes Doerfert5210da52016-06-02 11:06:54 +0000194
Tobias Grosser8a9c2352015-08-16 10:19:29 +0000195static cl::opt<std::string> UserContextStr(
196 "polly-context", cl::value_desc("isl parameter set"),
197 cl::desc("Provide additional constraints on the context parameters"),
198 cl::init(""), cl::cat(PollyCategory));
Tobias Grosser71500722015-03-28 15:11:14 +0000199
Tobias Grosser2937b592016-04-29 11:43:20 +0000200static cl::opt<bool>
201 IslOnErrorAbort("polly-on-isl-error-abort",
202 cl::desc("Abort if an isl error is encountered"),
203 cl::init(true), cl::cat(PollyCategory));
204
Tobias Grosserd7c49752017-02-28 09:45:54 +0000205static cl::opt<bool> PollyPreciseInbounds(
206 "polly-precise-inbounds",
207 cl::desc("Take more precise inbounds assumptions (do not scale well)"),
208 cl::Hidden, cl::init(false), cl::cat(PollyCategory));
209
Tobias Grosser8a6e6052017-03-17 12:26:58 +0000210static cl::opt<bool>
211 PollyIgnoreInbounds("polly-ignore-inbounds",
212 cl::desc("Do not take inbounds assumptions at all"),
213 cl::Hidden, cl::init(false), cl::cat(PollyCategory));
214
Tobias Grosser5842dee2017-03-17 13:00:53 +0000215static cl::opt<bool> PollyIgnoreParamBounds(
216 "polly-ignore-parameter-bounds",
217 cl::desc(
218 "Do not add parameter bounds and do no gist simplify sets accordingly"),
219 cl::Hidden, cl::init(false), cl::cat(PollyCategory));
220
Siddharth Bhat7bc77e82017-08-21 11:57:04 +0000221static cl::opt<bool> PollyAllowDereferenceOfAllFunctionParams(
222 "polly-allow-dereference-of-all-function-parameters",
223 cl::desc(
224 "Treat all parameters to functions that are pointers as dereferencible."
225 " This is useful for invariant load hoisting, since we can generate"
226 " less runtime checks. This is only valid if all pointers to functions"
227 " are always initialized, so that Polly can choose to hoist"
228 " their loads. "),
229 cl::Hidden, cl::init(false), cl::cat(PollyCategory));
230
Tobias Grosserc2f15102017-03-01 21:11:27 +0000231static cl::opt<bool> PollyPreciseFoldAccesses(
232 "polly-precise-fold-accesses",
Michael Kruse6e7854a2017-04-03 12:03:38 +0000233 cl::desc("Fold memory accesses to model more possible delinearizations "
234 "(does not scale well)"),
Tobias Grosserc2f15102017-03-01 21:11:27 +0000235 cl::Hidden, cl::init(false), cl::cat(PollyCategory));
Tobias Grossere2ccc3f2017-05-03 20:08:52 +0000236
Michael Kruse5ae08c02017-05-06 14:03:58 +0000237bool polly::UseInstructionNames;
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +0000238
Michael Kruse5ae08c02017-05-06 14:03:58 +0000239static cl::opt<bool, true> XUseInstructionNames(
Tobias Grossere2ccc3f2017-05-03 20:08:52 +0000240 "polly-use-llvm-names",
Michael Kruse5ae08c02017-05-06 14:03:58 +0000241 cl::desc("Use LLVM-IR names when deriving statement names"),
242 cl::location(UseInstructionNames), cl::Hidden, cl::init(false),
243 cl::ZeroOrMore, cl::cat(PollyCategory));
Tobias Grossere2ccc3f2017-05-03 20:08:52 +0000244
Tobias Grosserd5fcbef2017-05-27 04:40:18 +0000245static cl::opt<bool> PollyPrintInstructions(
246 "polly-print-instructions", cl::desc("Output instructions per ScopStmt"),
247 cl::Hidden, cl::Optional, cl::init(false), cl::cat(PollyCategory));
248
Michael Kruse7bf39442015-09-10 12:46:52 +0000249//===----------------------------------------------------------------------===//
Michael Kruse7bf39442015-09-10 12:46:52 +0000250
Michael Kruse046dde42015-08-10 13:01:57 +0000251// Create a sequence of two schedules. Either argument may be null and is
252// interpreted as the empty schedule. Can also return null if both schedules are
253// empty.
Philip Pfaffe00fd43b2017-11-19 22:13:34 +0000254static isl::schedule combineInSequence(isl::schedule Prev, isl::schedule Succ) {
Michael Kruse046dde42015-08-10 13:01:57 +0000255 if (!Prev)
256 return Succ;
257 if (!Succ)
258 return Prev;
259
Philip Pfaffe00fd43b2017-11-19 22:13:34 +0000260 return Prev.sequence(Succ);
Michael Kruse046dde42015-08-10 13:01:57 +0000261}
262
Tobias Grosser99ea1d02017-05-21 20:23:20 +0000263static isl::set addRangeBoundsToSet(isl::set S, const ConstantRange &Range,
264 int dim, isl::dim type) {
265 isl::val V;
266 isl::ctx Ctx = S.get_ctx();
Johannes Doerferte7044942015-02-24 11:58:30 +0000267
Tobias Grosser3281f602017-02-16 18:39:14 +0000268 // The upper and lower bound for a parameter value is derived either from
269 // the data type of the parameter or from the - possibly more restrictive -
270 // range metadata.
Tobias Grosser99ea1d02017-05-21 20:23:20 +0000271 V = valFromAPInt(Ctx.get(), Range.getSignedMin(), true);
272 S = S.lower_bound_val(type, dim, V);
273 V = valFromAPInt(Ctx.get(), Range.getSignedMax(), true);
274 S = S.upper_bound_val(type, dim, V);
Johannes Doerferte7044942015-02-24 11:58:30 +0000275
Tobias Grosser3281f602017-02-16 18:39:14 +0000276 if (Range.isFullSet())
277 return S;
278
Tobias Grosser99ea1d02017-05-21 20:23:20 +0000279 if (isl_set_n_basic_set(S.get()) > MaxDisjunctsInContext)
Tobias Grosserc8a82762017-02-16 19:11:25 +0000280 return S;
281
Tobias Grosser3281f602017-02-16 18:39:14 +0000282 // In case of signed wrapping, we can refine the set of valid values by
283 // excluding the part not covered by the wrapping range.
284 if (Range.isSignWrappedSet()) {
Tobias Grosser99ea1d02017-05-21 20:23:20 +0000285 V = valFromAPInt(Ctx.get(), Range.getLower(), true);
286 isl::set SLB = S.lower_bound_val(type, dim, V);
Tobias Grosser3281f602017-02-16 18:39:14 +0000287
Tobias Grosser99ea1d02017-05-21 20:23:20 +0000288 V = valFromAPInt(Ctx.get(), Range.getUpper(), true);
289 V = V.sub_ui(1);
290 isl::set SUB = S.upper_bound_val(type, dim, V);
291 S = SLB.unite(SUB);
Tobias Grosser3281f602017-02-16 18:39:14 +0000292 }
Johannes Doerferte7044942015-02-24 11:58:30 +0000293
Tobias Grosser3281f602017-02-16 18:39:14 +0000294 return S;
Johannes Doerferte7044942015-02-24 11:58:30 +0000295}
296
Johannes Doerfert4eed5be2015-08-20 18:04:22 +0000297static const ScopArrayInfo *identifyBasePtrOriginSAI(Scop *S, Value *BasePtr) {
298 LoadInst *BasePtrLI = dyn_cast<LoadInst>(BasePtr);
299 if (!BasePtrLI)
300 return nullptr;
301
Johannes Doerfert952b5302016-05-23 12:40:48 +0000302 if (!S->contains(BasePtrLI))
Johannes Doerfert4eed5be2015-08-20 18:04:22 +0000303 return nullptr;
304
305 ScalarEvolution &SE = *S->getSE();
306
307 auto *OriginBaseSCEV =
308 SE.getPointerBase(SE.getSCEV(BasePtrLI->getPointerOperand()));
309 if (!OriginBaseSCEV)
310 return nullptr;
311
312 auto *OriginBaseSCEVUnknown = dyn_cast<SCEVUnknown>(OriginBaseSCEV);
313 if (!OriginBaseSCEVUnknown)
314 return nullptr;
315
Tobias Grosser6abc75a2015-11-10 17:31:31 +0000316 return S->getScopArrayInfo(OriginBaseSCEVUnknown->getValue(),
Tobias Grosser4d5a9172017-01-14 20:25:44 +0000317 MemoryKind::Array);
Johannes Doerfert4eed5be2015-08-20 18:04:22 +0000318}
319
Tobias Grosser27db02b2017-08-06 17:25:05 +0000320ScopArrayInfo::ScopArrayInfo(Value *BasePtr, Type *ElementType, isl::ctx Ctx,
Hongbin Zheng6aded2a2017-01-15 16:47:26 +0000321 ArrayRef<const SCEV *> Sizes, MemoryKind Kind,
Roman Gareevd7754a12016-07-30 09:25:51 +0000322 const DataLayout &DL, Scop *S,
323 const char *BaseName)
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +0000324 : BasePtr(BasePtr), ElementType(ElementType), Kind(Kind), DL(DL), S(*S) {
Tobias Grosser92245222015-07-28 14:53:44 +0000325 std::string BasePtrName =
Tobias Grosser4d5a9172017-01-14 20:25:44 +0000326 BaseName ? BaseName
Tobias Grossere2ccc3f2017-05-03 20:08:52 +0000327 : getIslCompatibleName("MemRef", BasePtr, S->getNextArrayIdx(),
328 Kind == MemoryKind::PHI ? "__phi" : "",
329 UseInstructionNames);
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +0000330 Id = isl::id::alloc(Ctx, BasePtrName, this);
Johannes Doerfert4eed5be2015-08-20 18:04:22 +0000331
Johannes Doerfert3ff22212016-02-14 22:31:39 +0000332 updateSizes(Sizes);
Roman Gareevd7754a12016-07-30 09:25:51 +0000333
Tobias Grosser4d5a9172017-01-14 20:25:44 +0000334 if (!BasePtr || Kind != MemoryKind::Array) {
Roman Gareevd7754a12016-07-30 09:25:51 +0000335 BasePtrOriginSAI = nullptr;
336 return;
337 }
338
Johannes Doerfert4eed5be2015-08-20 18:04:22 +0000339 BasePtrOriginSAI = identifyBasePtrOriginSAI(S, BasePtr);
340 if (BasePtrOriginSAI)
341 const_cast<ScopArrayInfo *>(BasePtrOriginSAI)->addDerivedSAI(this);
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000342}
343
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +0000344ScopArrayInfo::~ScopArrayInfo() = default;
345
Tobias Grosser77eef902017-07-21 23:07:56 +0000346isl::space ScopArrayInfo::getSpace() const {
347 auto Space = isl::space(Id.get_ctx(), 0, getNumberOfDimensions());
348 Space = Space.set_tuple_id(isl::dim::set, Id);
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000349 return Space;
350}
351
Tobias Grosserfe74a7a2016-09-17 19:22:18 +0000352bool ScopArrayInfo::isReadOnly() {
Tobias Grosser5ab39ff2017-08-06 19:22:27 +0000353 isl::union_set WriteSet = S.getWrites().range();
Tobias Grosser77eef902017-07-21 23:07:56 +0000354 isl::space Space = getSpace();
Tobias Grosser2ade9862017-05-23 06:41:04 +0000355 WriteSet = WriteSet.extract_set(Space);
Tobias Grosserfe74a7a2016-09-17 19:22:18 +0000356
Tobias Grosser2ade9862017-05-23 06:41:04 +0000357 return bool(WriteSet.is_empty());
Tobias Grosserfe74a7a2016-09-17 19:22:18 +0000358}
359
Tobias Grosserf3adab42017-05-10 10:59:58 +0000360bool ScopArrayInfo::isCompatibleWith(const ScopArrayInfo *Array) const {
361 if (Array->getElementType() != getElementType())
362 return false;
363
364 if (Array->getNumberOfDimensions() != getNumberOfDimensions())
365 return false;
366
367 for (unsigned i = 0; i < getNumberOfDimensions(); i++)
368 if (Array->getDimensionSize(i) != getDimensionSize(i))
369 return false;
370
371 return true;
372}
373
Johannes Doerfert3ff22212016-02-14 22:31:39 +0000374void ScopArrayInfo::updateElementType(Type *NewElementType) {
375 if (NewElementType == ElementType)
376 return;
377
Tobias Grosserd840fc72016-02-04 13:18:42 +0000378 auto OldElementSize = DL.getTypeAllocSizeInBits(ElementType);
379 auto NewElementSize = DL.getTypeAllocSizeInBits(NewElementType);
380
Johannes Doerferta7920982016-02-25 14:08:48 +0000381 if (NewElementSize == OldElementSize || NewElementSize == 0)
Johannes Doerfert3ff22212016-02-14 22:31:39 +0000382 return;
Tobias Grosserd840fc72016-02-04 13:18:42 +0000383
Johannes Doerfert3ff22212016-02-14 22:31:39 +0000384 if (NewElementSize % OldElementSize == 0 && NewElementSize < OldElementSize) {
385 ElementType = NewElementType;
386 } else {
387 auto GCD = GreatestCommonDivisor64(NewElementSize, OldElementSize);
388 ElementType = IntegerType::get(ElementType->getContext(), GCD);
389 }
390}
391
Siddharth Bhatb7f68b82017-05-19 15:07:45 +0000392/// Make the ScopArrayInfo model a Fortran Array
393void ScopArrayInfo::applyAndSetFAD(Value *FAD) {
394 assert(FAD && "got invalid Fortran array descriptor");
395 if (this->FAD) {
396 assert(this->FAD == FAD &&
397 "receiving different array descriptors for same array");
398 return;
399 }
400
401 assert(DimensionSizesPw.size() > 0 && !DimensionSizesPw[0]);
402 assert(!this->FAD);
403 this->FAD = FAD;
404
Tobias Grosserb1ed3d92017-05-23 07:07:05 +0000405 isl::space Space(S.getIslCtx(), 1, 0);
Siddharth Bhatb7f68b82017-05-19 15:07:45 +0000406
407 std::string param_name = getName();
408 param_name += "_fortranarr_size";
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +0000409 isl::id IdPwAff = isl::id::alloc(S.getIslCtx(), param_name, this);
Siddharth Bhatb7f68b82017-05-19 15:07:45 +0000410
Tobias Grosserb1ed3d92017-05-23 07:07:05 +0000411 Space = Space.set_dim_id(isl::dim::param, 0, IdPwAff);
412 isl::pw_aff PwAff =
413 isl::aff::var_on_domain(isl::local_space(Space), isl::dim::param, 0);
Siddharth Bhatb7f68b82017-05-19 15:07:45 +0000414
Tobias Grosser77eef902017-07-21 23:07:56 +0000415 DimensionSizesPw[0] = PwAff;
Siddharth Bhatb7f68b82017-05-19 15:07:45 +0000416}
417
Tobias Grosserbedef002016-12-02 08:10:56 +0000418bool ScopArrayInfo::updateSizes(ArrayRef<const SCEV *> NewSizes,
419 bool CheckConsistency) {
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000420 int SharedDims = std::min(NewSizes.size(), DimensionSizes.size());
421 int ExtraDimsNew = NewSizes.size() - SharedDims;
422 int ExtraDimsOld = DimensionSizes.size() - SharedDims;
Roman Gareevf5aff702016-09-12 17:08:31 +0000423
Tobias Grosserbedef002016-12-02 08:10:56 +0000424 if (CheckConsistency) {
425 for (int i = 0; i < SharedDims; i++) {
426 auto *NewSize = NewSizes[i + ExtraDimsNew];
427 auto *KnownSize = DimensionSizes[i + ExtraDimsOld];
428 if (NewSize && KnownSize && NewSize != KnownSize)
429 return false;
430 }
Tobias Grosser8286b832015-11-02 11:29:32 +0000431
Tobias Grosserbedef002016-12-02 08:10:56 +0000432 if (DimensionSizes.size() >= NewSizes.size())
433 return true;
434 }
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000435
436 DimensionSizes.clear();
437 DimensionSizes.insert(DimensionSizes.begin(), NewSizes.begin(),
438 NewSizes.end());
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000439 DimensionSizesPw.clear();
440 for (const SCEV *Expr : DimensionSizes) {
Roman Gareevf5aff702016-09-12 17:08:31 +0000441 if (!Expr) {
442 DimensionSizesPw.push_back(nullptr);
443 continue;
444 }
Tobias Grosser61bd3a42017-08-06 21:42:38 +0000445 isl::pw_aff Size = S.getPwAffOnly(Expr);
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000446 DimensionSizesPw.push_back(Size);
447 }
Tobias Grosser8286b832015-11-02 11:29:32 +0000448 return true;
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000449}
450
Tobias Grosser77eef902017-07-21 23:07:56 +0000451std::string ScopArrayInfo::getName() const { return Id.get_name(); }
Tobias Grosser49ad36c2015-05-20 08:05:31 +0000452
453int ScopArrayInfo::getElemSizeInBytes() const {
Johannes Doerfert55b3d8b2015-11-12 20:15:08 +0000454 return DL.getTypeAllocSize(ElementType);
Tobias Grosser49ad36c2015-05-20 08:05:31 +0000455}
456
Tobias Grosser77eef902017-07-21 23:07:56 +0000457isl::id ScopArrayInfo::getBasePtrId() const { return Id; }
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000458
Michael Kruse5d518462017-07-21 15:54:07 +0000459#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Michael Krusee1860132017-07-21 15:54:13 +0000460LLVM_DUMP_METHOD void ScopArrayInfo::dump() const { print(errs()); }
Michael Kruse5d518462017-07-21 15:54:07 +0000461#endif
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000462
Tobias Grosserd46fd5e2015-08-12 15:27:16 +0000463void ScopArrayInfo::print(raw_ostream &OS, bool SizeAsPwAff) const {
Tobias Grosser4ea2e072015-11-10 14:02:54 +0000464 OS.indent(8) << *getElementType() << " " << getName();
Roman Gareevf5aff702016-09-12 17:08:31 +0000465 unsigned u = 0;
Siddharth Bhatb7f68b82017-05-19 15:07:45 +0000466 // If this is a Fortran array, then we can print the outermost dimension
467 // as a isl_pw_aff even though there is no SCEV information.
468 bool IsOutermostSizeKnown = SizeAsPwAff && FAD;
469
470 if (!IsOutermostSizeKnown && getNumberOfDimensions() > 0 &&
471 !getDimensionSize(0)) {
Tobias Grosser4ea2e072015-11-10 14:02:54 +0000472 OS << "[*]";
Roman Gareevf5aff702016-09-12 17:08:31 +0000473 u++;
474 }
475 for (; u < getNumberOfDimensions(); u++) {
Tobias Grosserd46fd5e2015-08-12 15:27:16 +0000476 OS << "[";
477
Tobias Grosser26253842015-11-10 14:24:21 +0000478 if (SizeAsPwAff) {
Tobias Grosser77eef902017-07-21 23:07:56 +0000479 isl::pw_aff Size = getDimensionSizePw(u);
Tobias Grosser26253842015-11-10 14:24:21 +0000480 OS << " " << Size << " ";
Tobias Grosser26253842015-11-10 14:24:21 +0000481 } else {
482 OS << *getDimensionSize(u);
483 }
Tobias Grosserd46fd5e2015-08-12 15:27:16 +0000484
485 OS << "]";
486 }
487
Tobias Grosser4ea2e072015-11-10 14:02:54 +0000488 OS << ";";
489
Johannes Doerfert4eed5be2015-08-20 18:04:22 +0000490 if (BasePtrOriginSAI)
491 OS << " [BasePtrOrigin: " << BasePtrOriginSAI->getName() << "]";
492
Tobias Grosser49ad36c2015-05-20 08:05:31 +0000493 OS << " // Element size " << getElemSizeInBytes() << "\n";
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000494}
495
496const ScopArrayInfo *
Tobias Grosser206e9e32017-07-24 16:22:27 +0000497ScopArrayInfo::getFromAccessFunction(isl::pw_multi_aff PMA) {
498 isl::id Id = PMA.get_tuple_id(isl::dim::out);
499 assert(!Id.is_null() && "Output dimension didn't have an ID");
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000500 return getFromId(Id);
501}
502
Tobias Grosser206e9e32017-07-24 16:22:27 +0000503const ScopArrayInfo *ScopArrayInfo::getFromId(isl::id Id) {
504 void *User = Id.get_user();
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000505 const ScopArrayInfo *SAI = static_cast<ScopArrayInfo *>(User);
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000506 return SAI;
507}
508
Michael Kruse3b425ff2016-04-11 14:34:08 +0000509void MemoryAccess::wrapConstantDimensions() {
510 auto *SAI = getScopArrayInfo();
Tobias Grosser77eef902017-07-21 23:07:56 +0000511 isl::space ArraySpace = SAI->getSpace();
Tobias Grosser3137f2c2017-05-21 20:23:23 +0000512 isl::ctx Ctx = ArraySpace.get_ctx();
Michael Kruse3b425ff2016-04-11 14:34:08 +0000513 unsigned DimsArray = SAI->getNumberOfDimensions();
514
Tobias Grosser3137f2c2017-05-21 20:23:23 +0000515 isl::multi_aff DivModAff = isl::multi_aff::identity(
516 ArraySpace.map_from_domain_and_range(ArraySpace));
517 isl::local_space LArraySpace = isl::local_space(ArraySpace);
Michael Kruse3b425ff2016-04-11 14:34:08 +0000518
519 // Begin with last dimension, to iteratively carry into higher dimensions.
520 for (int i = DimsArray - 1; i > 0; i--) {
521 auto *DimSize = SAI->getDimensionSize(i);
522 auto *DimSizeCst = dyn_cast<SCEVConstant>(DimSize);
523
524 // This transformation is not applicable to dimensions with dynamic size.
525 if (!DimSizeCst)
526 continue;
527
Tobias Grosserca2cfd02017-02-17 04:48:52 +0000528 // This transformation is not applicable to dimensions of size zero.
529 if (DimSize->isZero())
530 continue;
531
Tobias Grosser3137f2c2017-05-21 20:23:23 +0000532 isl::val DimSizeVal =
533 valFromAPInt(Ctx.get(), DimSizeCst->getAPInt(), false);
534 isl::aff Var = isl::aff::var_on_domain(LArraySpace, isl::dim::set, i);
535 isl::aff PrevVar =
536 isl::aff::var_on_domain(LArraySpace, isl::dim::set, i - 1);
Michael Kruse3b425ff2016-04-11 14:34:08 +0000537
538 // Compute: index % size
539 // Modulo must apply in the divide of the previous iteration, if any.
Tobias Grossercb0224a2017-08-06 15:56:45 +0000540 isl::aff Modulo = Var.mod(DimSizeVal);
Tobias Grosser3137f2c2017-05-21 20:23:23 +0000541 Modulo = Modulo.pullback(DivModAff);
Michael Kruse3b425ff2016-04-11 14:34:08 +0000542
543 // Compute: floor(index / size)
Tobias Grosser3137f2c2017-05-21 20:23:23 +0000544 isl::aff Divide = Var.div(isl::aff(LArraySpace, DimSizeVal));
545 Divide = Divide.floor();
546 Divide = Divide.add(PrevVar);
547 Divide = Divide.pullback(DivModAff);
Michael Kruse3b425ff2016-04-11 14:34:08 +0000548
549 // Apply Modulo and Divide.
Tobias Grosser3137f2c2017-05-21 20:23:23 +0000550 DivModAff = DivModAff.set_aff(i, Modulo);
551 DivModAff = DivModAff.set_aff(i - 1, Divide);
Michael Kruse3b425ff2016-04-11 14:34:08 +0000552 }
553
554 // Apply all modulo/divides on the accesses.
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000555 isl::map Relation = AccessRelation;
Tobias Grosser3137f2c2017-05-21 20:23:23 +0000556 Relation = Relation.apply_range(isl::map::from_multi_aff(DivModAff));
557 Relation = Relation.detect_equalities();
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000558 AccessRelation = Relation;
Michael Kruse3b425ff2016-04-11 14:34:08 +0000559}
560
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000561void MemoryAccess::updateDimensionality() {
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +0000562 auto *SAI = getScopArrayInfo();
Tobias Grosser77eef902017-07-21 23:07:56 +0000563 isl::space ArraySpace = SAI->getSpace();
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000564 isl::space AccessSpace = AccessRelation.get_space().range();
Tobias Grosser7be82452017-05-21 20:38:33 +0000565 isl::ctx Ctx = ArraySpace.get_ctx();
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000566
Tobias Grosser7be82452017-05-21 20:38:33 +0000567 auto DimsArray = ArraySpace.dim(isl::dim::set);
568 auto DimsAccess = AccessSpace.dim(isl::dim::set);
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000569 auto DimsMissing = DimsArray - DimsAccess;
570
Michael Kruse375cb5f2016-02-24 22:08:24 +0000571 auto *BB = getStatement()->getEntryBlock();
Johannes Doerfertcea61932016-02-21 19:13:19 +0000572 auto &DL = BB->getModule()->getDataLayout();
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +0000573 unsigned ArrayElemSize = SAI->getElemSizeInBytes();
Johannes Doerfertcea61932016-02-21 19:13:19 +0000574 unsigned ElemBytes = DL.getTypeAllocSize(getElementType());
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +0000575
Tobias Grosser7be82452017-05-21 20:38:33 +0000576 isl::map Map = isl::map::from_domain_and_range(
577 isl::set::universe(AccessSpace), isl::set::universe(ArraySpace));
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000578
579 for (unsigned i = 0; i < DimsMissing; i++)
Tobias Grosser7be82452017-05-21 20:38:33 +0000580 Map = Map.fix_si(isl::dim::out, i, 0);
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000581
582 for (unsigned i = DimsMissing; i < DimsArray; i++)
Tobias Grosser7be82452017-05-21 20:38:33 +0000583 Map = Map.equate(isl::dim::in, i - DimsMissing, isl::dim::out, i);
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000584
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000585 AccessRelation = AccessRelation.apply_range(Map);
Roman Gareev10595a12016-01-08 14:01:59 +0000586
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +0000587 // For the non delinearized arrays, divide the access function of the last
588 // subscript by the size of the elements in the array.
589 //
590 // A stride one array access in C expressed as A[i] is expressed in
591 // LLVM-IR as something like A[i * elementsize]. This hides the fact that
592 // two subsequent values of 'i' index two values that are stored next to
593 // each other in memory. By this division we make this characteristic
594 // obvious again. If the base pointer was accessed with offsets not divisible
Tobias Grosser2219d152016-08-03 05:28:09 +0000595 // by the accesses element size, we will have chosen a smaller ArrayElemSize
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +0000596 // that divides the offsets of all accesses to this base pointer.
597 if (DimsAccess == 1) {
Tobias Grosser7be82452017-05-21 20:38:33 +0000598 isl::val V = isl::val(Ctx, ArrayElemSize);
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000599 AccessRelation = AccessRelation.floordiv_val(V);
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +0000600 }
601
Michael Kruse3b425ff2016-04-11 14:34:08 +0000602 // We currently do this only if we added at least one dimension, which means
603 // some dimension's indices have not been specified, an indicator that some
604 // index values have been added together.
605 // TODO: Investigate general usefulness; Effect on unit tests is to make index
606 // expressions more complicated.
607 if (DimsMissing)
608 wrapConstantDimensions();
609
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +0000610 if (!isAffine())
611 computeBoundsOnAccessRelation(ArrayElemSize);
612
Tobias Grosserd840fc72016-02-04 13:18:42 +0000613 // Introduce multi-element accesses in case the type loaded by this memory
614 // access is larger than the canonical element type of the array.
615 //
616 // An access ((float *)A)[i] to an array char *A is modeled as
617 // {[i] -> A[o] : 4 i <= o <= 4 i + 3
Tobias Grosserd840fc72016-02-04 13:18:42 +0000618 if (ElemBytes > ArrayElemSize) {
619 assert(ElemBytes % ArrayElemSize == 0 &&
620 "Loaded element size should be multiple of canonical element size");
Tobias Grosser7be82452017-05-21 20:38:33 +0000621 isl::map Map = isl::map::from_domain_and_range(
622 isl::set::universe(ArraySpace), isl::set::universe(ArraySpace));
Tobias Grosserd840fc72016-02-04 13:18:42 +0000623 for (unsigned i = 0; i < DimsArray - 1; i++)
Tobias Grosser7be82452017-05-21 20:38:33 +0000624 Map = Map.equate(isl::dim::in, i, isl::dim::out, i);
Tobias Grosserd840fc72016-02-04 13:18:42 +0000625
Tobias Grosser7be82452017-05-21 20:38:33 +0000626 isl::constraint C;
627 isl::local_space LS;
Tobias Grosserd840fc72016-02-04 13:18:42 +0000628
Tobias Grosser7be82452017-05-21 20:38:33 +0000629 LS = isl::local_space(Map.get_space());
Tobias Grosserd840fc72016-02-04 13:18:42 +0000630 int Num = ElemBytes / getScopArrayInfo()->getElemSizeInBytes();
631
Tobias Grosser7be82452017-05-21 20:38:33 +0000632 C = isl::constraint::alloc_inequality(LS);
633 C = C.set_constant_val(isl::val(Ctx, Num - 1));
634 C = C.set_coefficient_si(isl::dim::in, DimsArray - 1, 1);
635 C = C.set_coefficient_si(isl::dim::out, DimsArray - 1, -1);
636 Map = Map.add_constraint(C);
Tobias Grosserd840fc72016-02-04 13:18:42 +0000637
Tobias Grosser7be82452017-05-21 20:38:33 +0000638 C = isl::constraint::alloc_inequality(LS);
639 C = C.set_coefficient_si(isl::dim::in, DimsArray - 1, -1);
640 C = C.set_coefficient_si(isl::dim::out, DimsArray - 1, 1);
641 C = C.set_constant_val(isl::val(Ctx, 0));
642 Map = Map.add_constraint(C);
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000643 AccessRelation = AccessRelation.apply_range(Map);
Tobias Grosserd840fc72016-02-04 13:18:42 +0000644 }
Tobias Grosser99c70dd2015-09-26 08:55:54 +0000645}
646
Johannes Doerfert32868bf2014-08-01 08:13:25 +0000647const std::string
648MemoryAccess::getReductionOperatorStr(MemoryAccess::ReductionType RT) {
649 switch (RT) {
650 case MemoryAccess::RT_NONE:
651 llvm_unreachable("Requested a reduction operator string for a memory "
652 "access which isn't a reduction");
653 case MemoryAccess::RT_ADD:
654 return "+";
655 case MemoryAccess::RT_MUL:
656 return "*";
657 case MemoryAccess::RT_BOR:
658 return "|";
659 case MemoryAccess::RT_BXOR:
660 return "^";
661 case MemoryAccess::RT_BAND:
662 return "&";
663 }
664 llvm_unreachable("Unknown reduction type");
Johannes Doerfert32868bf2014-08-01 08:13:25 +0000665}
666
Michael Kruse2fa35192016-09-01 19:53:31 +0000667const ScopArrayInfo *MemoryAccess::getOriginalScopArrayInfo() const {
Tobias Grosser1959dbd2017-07-23 04:08:59 +0000668 isl::id ArrayId = getArrayId();
669 void *User = ArrayId.get_user();
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000670 const ScopArrayInfo *SAI = static_cast<ScopArrayInfo *>(User);
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000671 return SAI;
672}
673
Michael Kruse2fa35192016-09-01 19:53:31 +0000674const ScopArrayInfo *MemoryAccess::getLatestScopArrayInfo() const {
Tobias Grosser1959dbd2017-07-23 04:08:59 +0000675 isl::id ArrayId = getLatestArrayId();
676 void *User = ArrayId.get_user();
Michael Kruse2fa35192016-09-01 19:53:31 +0000677 const ScopArrayInfo *SAI = static_cast<ScopArrayInfo *>(User);
Michael Kruse2fa35192016-09-01 19:53:31 +0000678 return SAI;
679}
680
Tobias Grosser1959dbd2017-07-23 04:08:59 +0000681isl::id MemoryAccess::getOriginalArrayId() const {
682 return AccessRelation.get_tuple_id(isl::dim::out);
Johannes Doerfert5d83f092014-07-29 08:37:55 +0000683}
684
Tobias Grosser1959dbd2017-07-23 04:08:59 +0000685isl::id MemoryAccess::getLatestArrayId() const {
Michael Kruse2fa35192016-09-01 19:53:31 +0000686 if (!hasNewAccessRelation())
687 return getOriginalArrayId();
Tobias Grosser1959dbd2017-07-23 04:08:59 +0000688 return NewAccessRelation.get_tuple_id(isl::dim::out);
Michael Kruse2fa35192016-09-01 19:53:31 +0000689}
690
Tobias Grosser6a870362017-07-23 04:08:45 +0000691isl::map MemoryAccess::getAddressFunction() const {
692 return getAccessRelation().lexmin();
Tobias Grosserd840fc72016-02-04 13:18:42 +0000693}
694
Tobias Grosser3b196132017-07-23 04:08:52 +0000695isl::pw_multi_aff
696MemoryAccess::applyScheduleToAccessRelation(isl::union_map USchedule) const {
697 isl::map Schedule, ScheduledAccRel;
698 isl::union_set UDomain;
Johannes Doerferta99130f2014-10-13 12:58:03 +0000699
Tobias Grosserdcf8d692017-08-06 16:39:52 +0000700 UDomain = getStatement()->getDomain();
Tobias Grosser3b196132017-07-23 04:08:52 +0000701 USchedule = USchedule.intersect_domain(UDomain);
702 Schedule = isl::map::from_union_map(USchedule);
703 ScheduledAccRel = getAddressFunction().apply_domain(Schedule);
704 return isl::pw_multi_aff::from_map(ScheduledAccRel);
Johannes Doerferta99130f2014-10-13 12:58:03 +0000705}
706
Tobias Grosser22da5f02017-07-23 04:08:27 +0000707isl::map MemoryAccess::getOriginalAccessRelation() const {
708 return AccessRelation;
Tobias Grosser5d453812011-10-06 00:04:11 +0000709}
710
Johannes Doerferta99130f2014-10-13 12:58:03 +0000711std::string MemoryAccess::getOriginalAccessRelationStr() const {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +0000712 return AccessRelation.to_str();
Tobias Grosser5d453812011-10-06 00:04:11 +0000713}
714
Tobias Grosser22da5f02017-07-23 04:08:27 +0000715isl::space MemoryAccess::getOriginalAccessRelationSpace() const {
716 return AccessRelation.get_space();
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000717}
718
Tobias Grosser1515f6b2017-07-23 04:08:38 +0000719isl::map MemoryAccess::getNewAccessRelation() const {
720 return NewAccessRelation;
Tobias Grosser75805372011-04-29 06:27:02 +0000721}
722
Tobias Grosser6f730082015-09-05 07:46:47 +0000723std::string MemoryAccess::getNewAccessRelationStr() const {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +0000724 return NewAccessRelation.to_str();
Tobias Grosser6f730082015-09-05 07:46:47 +0000725}
726
Tobias Grosser6a4c12f2017-07-11 10:10:13 +0000727std::string MemoryAccess::getAccessRelationStr() const {
Tobias Grosser2b7479b2017-08-06 11:41:10 +0000728 return getAccessRelation().to_str();
Tobias Grosser6a4c12f2017-07-11 10:10:13 +0000729}
730
Tobias Grosserb6e7a852017-07-23 04:08:17 +0000731isl::basic_map MemoryAccess::createBasicAccessMap(ScopStmt *Statement) {
732 isl::space Space = isl::space(Statement->getIslCtx(), 0, 1);
Tobias Grosserdcf8d692017-08-06 16:39:52 +0000733 Space = Space.align_params(Statement->getDomainSpace());
Tobias Grosser75805372011-04-29 06:27:02 +0000734
Tobias Grosserb6e7a852017-07-23 04:08:17 +0000735 return isl::basic_map::from_domain_and_range(
Tobias Grosserdcf8d692017-08-06 16:39:52 +0000736 isl::basic_set::universe(Statement->getDomainSpace()),
Tobias Grosserb6e7a852017-07-23 04:08:17 +0000737 isl::basic_set::universe(Space));
Tobias Grosser75805372011-04-29 06:27:02 +0000738}
739
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000740// Formalize no out-of-bound access assumption
741//
742// When delinearizing array accesses we optimistically assume that the
743// delinearized accesses do not access out of bound locations (the subscript
744// expression of each array evaluates for each statement instance that is
745// executed to a value that is larger than zero and strictly smaller than the
746// size of the corresponding dimension). The only exception is the outermost
Tobias Grosserf57d63f2014-08-03 21:07:30 +0000747// dimension for which we do not need to assume any upper bound. At this point
748// we formalize this assumption to ensure that at code generation time the
749// relevant run-time checks can be generated.
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000750//
751// To find the set of constraints necessary to avoid out of bound accesses, we
752// first build the set of data locations that are not within array bounds. We
753// then apply the reverse access relation to obtain the set of iterations that
754// may contain invalid accesses and reduce this set of iterations to the ones
755// that are actually executed by intersecting them with the domain of the
756// statement. If we now project out all loop dimensions, we obtain a set of
757// parameters that may cause statement instances to be executed that may
758// possibly yield out of bound memory accesses. The complement of these
759// constraints is the set of constraints that needs to be assumed to ensure such
760// statement instances are never executed.
Michael Krusee2bccbb2015-09-18 19:59:43 +0000761void MemoryAccess::assumeNoOutOfBound() {
Tobias Grosser8a6e6052017-03-17 12:26:58 +0000762 if (PollyIgnoreInbounds)
763 return;
Johannes Doerfertadeab372016-02-07 13:57:32 +0000764 auto *SAI = getScopArrayInfo();
Tobias Grosser22da5f02017-07-23 04:08:27 +0000765 isl::space Space = getOriginalAccessRelationSpace().range();
Tobias Grosser1e2edaf2017-05-23 07:07:07 +0000766 isl::set Outside = isl::set::empty(Space);
767 for (int i = 1, Size = Space.dim(isl::dim::set); i < Size; ++i) {
768 isl::local_space LS(Space);
769 isl::pw_aff Var = isl::pw_aff::var_on_domain(LS, isl::dim::set, i);
770 isl::pw_aff Zero = isl::pw_aff(LS);
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000771
Tobias Grosser1e2edaf2017-05-23 07:07:07 +0000772 isl::set DimOutside = Var.lt_set(Zero);
Tobias Grosser77eef902017-07-21 23:07:56 +0000773 isl::pw_aff SizeE = SAI->getDimensionSizePw(i);
Tobias Grosser1e2edaf2017-05-23 07:07:07 +0000774 SizeE = SizeE.add_dims(isl::dim::in, Space.dim(isl::dim::set));
775 SizeE = SizeE.set_tuple_id(isl::dim::in, Space.get_tuple_id(isl::dim::set));
776 DimOutside = DimOutside.unite(SizeE.le_set(Var));
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000777
Tobias Grosser1e2edaf2017-05-23 07:07:07 +0000778 Outside = Outside.unite(DimOutside);
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000779 }
780
Tobias Grosser1515f6b2017-07-23 04:08:38 +0000781 Outside = Outside.apply(getAccessRelation().reverse());
Tobias Grosserdcf8d692017-08-06 16:39:52 +0000782 Outside = Outside.intersect(Statement->getDomain());
Tobias Grosser1e2edaf2017-05-23 07:07:07 +0000783 Outside = Outside.params();
Tobias Grosserf54bb772015-06-26 12:09:28 +0000784
785 // Remove divs to avoid the construction of overly complicated assumptions.
786 // Doing so increases the set of parameter combinations that are assumed to
787 // not appear. This is always save, but may make the resulting run-time check
788 // bail out more often than strictly necessary.
Tobias Grosser1e2edaf2017-05-23 07:07:07 +0000789 Outside = Outside.remove_divs();
790 Outside = Outside.complement();
Michael Kruse7071e8b2016-04-11 13:24:29 +0000791 const auto &Loc = getAccessInstruction()
792 ? getAccessInstruction()->getDebugLoc()
793 : DebugLoc();
Tobias Grosserd7c49752017-02-28 09:45:54 +0000794 if (!PollyPreciseInbounds)
Tobias Grosserdcf8d692017-08-06 16:39:52 +0000795 Outside = Outside.gist_params(Statement->getDomain().params());
Philip Pfaffe00fd43b2017-11-19 22:13:34 +0000796 Statement->getParent()->recordAssumption(INBOUNDS, Outside, Loc,
Johannes Doerfert3bf6e4122016-04-12 13:27:35 +0000797 AS_ASSUMPTION);
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000798}
799
Johannes Doerfertcea61932016-02-21 19:13:19 +0000800void MemoryAccess::buildMemIntrinsicAccessRelation() {
Johannes Doerfertc9765462016-11-17 22:11:56 +0000801 assert(isMemoryIntrinsic());
Roman Gareevf5aff702016-09-12 17:08:31 +0000802 assert(Subscripts.size() == 2 && Sizes.size() == 1);
Johannes Doerfertcea61932016-02-21 19:13:19 +0000803
Tobias Grossercdf471b2017-07-24 16:36:34 +0000804 isl::pw_aff SubscriptPWA = getPwAff(Subscripts[0]);
Tobias Grosser53fc3552017-05-23 07:07:09 +0000805 isl::map SubscriptMap = isl::map::from_pw_aff(SubscriptPWA);
Johannes Doerferta7920982016-02-25 14:08:48 +0000806
Tobias Grosser53fc3552017-05-23 07:07:09 +0000807 isl::map LengthMap;
Johannes Doerferta7920982016-02-25 14:08:48 +0000808 if (Subscripts[1] == nullptr) {
Tobias Grosser53fc3552017-05-23 07:07:09 +0000809 LengthMap = isl::map::universe(SubscriptMap.get_space());
Johannes Doerferta7920982016-02-25 14:08:48 +0000810 } else {
Tobias Grossercdf471b2017-07-24 16:36:34 +0000811 isl::pw_aff LengthPWA = getPwAff(Subscripts[1]);
Tobias Grosser53fc3552017-05-23 07:07:09 +0000812 LengthMap = isl::map::from_pw_aff(LengthPWA);
813 isl::space RangeSpace = LengthMap.get_space().range();
814 LengthMap = LengthMap.apply_range(isl::map::lex_gt(RangeSpace));
Johannes Doerferta7920982016-02-25 14:08:48 +0000815 }
Tobias Grosser53fc3552017-05-23 07:07:09 +0000816 LengthMap = LengthMap.lower_bound_si(isl::dim::out, 0, 0);
817 LengthMap = LengthMap.align_params(SubscriptMap.get_space());
818 SubscriptMap = SubscriptMap.align_params(LengthMap.get_space());
819 LengthMap = LengthMap.sum(SubscriptMap);
820 AccessRelation =
Tobias Grosserdcf8d692017-08-06 16:39:52 +0000821 LengthMap.set_tuple_id(isl::dim::in, getStatement()->getDomainId());
Johannes Doerfertcea61932016-02-21 19:13:19 +0000822}
823
Johannes Doerferte7044942015-02-24 11:58:30 +0000824void MemoryAccess::computeBoundsOnAccessRelation(unsigned ElementSize) {
825 ScalarEvolution *SE = Statement->getParent()->getSE();
826
Johannes Doerfertcea61932016-02-21 19:13:19 +0000827 auto MAI = MemAccInst(getAccessInstruction());
Hongbin Zheng8efb22e2016-02-27 01:49:58 +0000828 if (isa<MemIntrinsic>(MAI))
Johannes Doerfertcea61932016-02-21 19:13:19 +0000829 return;
830
831 Value *Ptr = MAI.getPointerOperand();
Johannes Doerferte7044942015-02-24 11:58:30 +0000832 if (!Ptr || !SE->isSCEVable(Ptr->getType()))
833 return;
834
835 auto *PtrSCEV = SE->getSCEV(Ptr);
836 if (isa<SCEVCouldNotCompute>(PtrSCEV))
837 return;
838
839 auto *BasePtrSCEV = SE->getPointerBase(PtrSCEV);
840 if (BasePtrSCEV && !isa<SCEVCouldNotCompute>(BasePtrSCEV))
841 PtrSCEV = SE->getMinusSCEV(PtrSCEV, BasePtrSCEV);
842
843 const ConstantRange &Range = SE->getSignedRange(PtrSCEV);
844 if (Range.isFullSet())
845 return;
846
Michael Kruse960c0d02017-05-18 21:55:36 +0000847 if (Range.isWrappedSet() || Range.isSignWrappedSet())
Tobias Grosserb3a85882017-02-12 08:11:12 +0000848 return;
849
Johannes Doerferte4bd53b2015-03-08 19:49:50 +0000850 bool isWrapping = Range.isSignWrappedSet();
Tobias Grosserb3a85882017-02-12 08:11:12 +0000851
Johannes Doerferte7044942015-02-24 11:58:30 +0000852 unsigned BW = Range.getBitWidth();
Johannes Doerferte7087902016-02-07 13:59:03 +0000853 const auto One = APInt(BW, 1);
Johannes Doerferte4bd53b2015-03-08 19:49:50 +0000854 const auto LB = isWrapping ? Range.getLower() : Range.getSignedMin();
Johannes Doerferte7087902016-02-07 13:59:03 +0000855 const auto UB = isWrapping ? (Range.getUpper() - One) : Range.getSignedMax();
Johannes Doerferte4bd53b2015-03-08 19:49:50 +0000856
857 auto Min = LB.sdiv(APInt(BW, ElementSize));
Johannes Doerferte7087902016-02-07 13:59:03 +0000858 auto Max = UB.sdiv(APInt(BW, ElementSize)) + One;
Johannes Doerferte7044942015-02-24 11:58:30 +0000859
Tobias Grosserb3a85882017-02-12 08:11:12 +0000860 assert(Min.sle(Max) && "Minimum expected to be less or equal than max");
861
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000862 isl::map Relation = AccessRelation;
Tobias Grosser99ea1d02017-05-21 20:23:20 +0000863 isl::set AccessRange = Relation.range();
864 AccessRange = addRangeBoundsToSet(AccessRange, ConstantRange(Min, Max), 0,
865 isl::dim::set);
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000866 AccessRelation = Relation.intersect_range(AccessRange);
Johannes Doerferte7044942015-02-24 11:58:30 +0000867}
868
Tobias Grosser491b7992016-12-02 05:21:22 +0000869void MemoryAccess::foldAccessRelation() {
870 if (Sizes.size() < 2 || isa<SCEVConstant>(Sizes[1]))
871 return;
872
Michael Krusee2bccbb2015-09-18 19:59:43 +0000873 int Size = Subscripts.size();
Tobias Grosser619190d2015-03-30 17:22:28 +0000874
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000875 isl::map NewAccessRelation = AccessRelation;
Tobias Grosserc2f15102017-03-01 21:11:27 +0000876
Tobias Grosser619190d2015-03-30 17:22:28 +0000877 for (int i = Size - 2; i >= 0; --i) {
Tobias Grossera32de132017-05-23 07:22:56 +0000878 isl::space Space;
879 isl::map MapOne, MapTwo;
Tobias Grossercdf471b2017-07-24 16:36:34 +0000880 isl::pw_aff DimSize = getPwAff(Sizes[i + 1]);
Tobias Grosser619190d2015-03-30 17:22:28 +0000881
Tobias Grossera32de132017-05-23 07:22:56 +0000882 isl::space SpaceSize = DimSize.get_space();
Tobias Grosserd3d3d6b2018-04-29 00:28:26 +0000883 isl::id ParamId = SpaceSize.get_dim_id(isl::dim::param, 0);
Tobias Grosser619190d2015-03-30 17:22:28 +0000884
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000885 Space = AccessRelation.get_space();
Tobias Grossera32de132017-05-23 07:22:56 +0000886 Space = Space.range().map_from_set();
887 Space = Space.align_params(SpaceSize);
Tobias Grosser619190d2015-03-30 17:22:28 +0000888
Tobias Grossera32de132017-05-23 07:22:56 +0000889 int ParamLocation = Space.find_dim_by_id(isl::dim::param, ParamId);
Tobias Grosser619190d2015-03-30 17:22:28 +0000890
Tobias Grossera32de132017-05-23 07:22:56 +0000891 MapOne = isl::map::universe(Space);
Tobias Grosser619190d2015-03-30 17:22:28 +0000892 for (int j = 0; j < Size; ++j)
Tobias Grossera32de132017-05-23 07:22:56 +0000893 MapOne = MapOne.equate(isl::dim::in, j, isl::dim::out, j);
894 MapOne = MapOne.lower_bound_si(isl::dim::in, i + 1, 0);
Tobias Grosser619190d2015-03-30 17:22:28 +0000895
Tobias Grossera32de132017-05-23 07:22:56 +0000896 MapTwo = isl::map::universe(Space);
Tobias Grosser619190d2015-03-30 17:22:28 +0000897 for (int j = 0; j < Size; ++j)
898 if (j < i || j > i + 1)
Tobias Grossera32de132017-05-23 07:22:56 +0000899 MapTwo = MapTwo.equate(isl::dim::in, j, isl::dim::out, j);
Tobias Grosser619190d2015-03-30 17:22:28 +0000900
Tobias Grossera32de132017-05-23 07:22:56 +0000901 isl::local_space LS(Space);
902 isl::constraint C;
903 C = isl::constraint::alloc_equality(LS);
904 C = C.set_constant_si(-1);
905 C = C.set_coefficient_si(isl::dim::in, i, 1);
906 C = C.set_coefficient_si(isl::dim::out, i, -1);
907 MapTwo = MapTwo.add_constraint(C);
908 C = isl::constraint::alloc_equality(LS);
909 C = C.set_coefficient_si(isl::dim::in, i + 1, 1);
910 C = C.set_coefficient_si(isl::dim::out, i + 1, -1);
911 C = C.set_coefficient_si(isl::dim::param, ParamLocation, 1);
912 MapTwo = MapTwo.add_constraint(C);
913 MapTwo = MapTwo.upper_bound_si(isl::dim::in, i + 1, -1);
Tobias Grosser619190d2015-03-30 17:22:28 +0000914
Tobias Grossera32de132017-05-23 07:22:56 +0000915 MapOne = MapOne.unite(MapTwo);
916 NewAccessRelation = NewAccessRelation.apply_range(MapOne);
Tobias Grosser619190d2015-03-30 17:22:28 +0000917 }
Tobias Grosser491b7992016-12-02 05:21:22 +0000918
Tobias Grosser77eef902017-07-21 23:07:56 +0000919 isl::id BaseAddrId = getScopArrayInfo()->getBasePtrId();
Tobias Grosserdcf8d692017-08-06 16:39:52 +0000920 isl::space Space = Statement->getDomainSpace();
Tobias Grossera32de132017-05-23 07:22:56 +0000921 NewAccessRelation = NewAccessRelation.set_tuple_id(
922 isl::dim::in, Space.get_tuple_id(isl::dim::set));
923 NewAccessRelation = NewAccessRelation.set_tuple_id(isl::dim::out, BaseAddrId);
Tobias Grosserdcf8d692017-08-06 16:39:52 +0000924 NewAccessRelation = NewAccessRelation.gist_domain(Statement->getDomain());
Tobias Grosserc2f15102017-03-01 21:11:27 +0000925
926 // Access dimension folding might in certain cases increase the number of
927 // disjuncts in the memory access, which can possibly complicate the generated
928 // run-time checks and can lead to costly compilation.
Tobias Grossera32de132017-05-23 07:22:56 +0000929 if (!PollyPreciseFoldAccesses &&
930 isl_map_n_basic_map(NewAccessRelation.get()) >
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000931 isl_map_n_basic_map(AccessRelation.get())) {
Tobias Grosserc2f15102017-03-01 21:11:27 +0000932 } else {
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000933 AccessRelation = NewAccessRelation;
Tobias Grosserc2f15102017-03-01 21:11:27 +0000934 }
Tobias Grosser619190d2015-03-30 17:22:28 +0000935}
936
Tobias Grosserc80d6972016-09-02 06:33:33 +0000937/// Check if @p Expr is divisible by @p Size.
Johannes Doerferta4b77c02015-11-12 20:15:32 +0000938static bool isDivisible(const SCEV *Expr, unsigned Size, ScalarEvolution &SE) {
Johannes Doerferta7920982016-02-25 14:08:48 +0000939 assert(Size != 0);
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +0000940 if (Size == 1)
941 return true;
Johannes Doerferta4b77c02015-11-12 20:15:32 +0000942
943 // Only one factor needs to be divisible.
944 if (auto *MulExpr = dyn_cast<SCEVMulExpr>(Expr)) {
945 for (auto *FactorExpr : MulExpr->operands())
946 if (isDivisible(FactorExpr, Size, SE))
947 return true;
948 return false;
949 }
950
951 // For other n-ary expressions (Add, AddRec, Max,...) all operands need
Michael Krusea6d48f52017-06-08 12:06:15 +0000952 // to be divisible.
Johannes Doerferta4b77c02015-11-12 20:15:32 +0000953 if (auto *NAryExpr = dyn_cast<SCEVNAryExpr>(Expr)) {
954 for (auto *OpExpr : NAryExpr->operands())
955 if (!isDivisible(OpExpr, Size, SE))
956 return false;
957 return true;
958 }
959
960 auto *SizeSCEV = SE.getConstant(Expr->getType(), Size);
961 auto *UDivSCEV = SE.getUDivExpr(Expr, SizeSCEV);
962 auto *MulSCEV = SE.getMulExpr(UDivSCEV, SizeSCEV);
963 return MulSCEV == Expr;
964}
965
Michael Krusee2bccbb2015-09-18 19:59:43 +0000966void MemoryAccess::buildAccessRelation(const ScopArrayInfo *SAI) {
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000967 assert(AccessRelation.is_null() && "AccessRelation already built");
Tobias Grosser75805372011-04-29 06:27:02 +0000968
Johannes Doerfert85676e32016-04-23 14:32:34 +0000969 // Initialize the invalid domain which describes all iterations for which the
970 // access relation is not modeled correctly.
Tobias Grosser2332fa32017-08-06 15:36:48 +0000971 isl::set StmtInvalidDomain = getStatement()->getInvalidDomain();
Tobias Grosserb739cb42017-07-24 20:30:34 +0000972 InvalidDomain = isl::set::empty(StmtInvalidDomain.get_space());
Johannes Doerfert85676e32016-04-23 14:32:34 +0000973
Tobias Grosserb739cb42017-07-24 20:30:34 +0000974 isl::ctx Ctx = Id.get_ctx();
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000975 isl::id BaseAddrId = SAI->getBasePtrId();
Tobias Grosser5683df42011-11-09 22:34:34 +0000976
Eli Friedmanb9c6f012016-11-01 20:53:11 +0000977 if (getAccessInstruction() && isa<MemIntrinsic>(getAccessInstruction())) {
978 buildMemIntrinsicAccessRelation();
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000979 AccessRelation = AccessRelation.set_tuple_id(isl::dim::out, BaseAddrId);
Eli Friedmanb9c6f012016-11-01 20:53:11 +0000980 return;
981 }
Johannes Doerfertcea61932016-02-21 19:13:19 +0000982
Eli Friedmanb9c6f012016-11-01 20:53:11 +0000983 if (!isAffine()) {
Tobias Grosser4f967492013-06-23 05:21:18 +0000984 // We overapproximate non-affine accesses with a possible access to the
985 // whole array. For read accesses it does not make a difference, if an
986 // access must or may happen. However, for write accesses it is important to
987 // differentiate between writes that must happen and writes that may happen.
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000988 if (AccessRelation.is_null())
989 AccessRelation = createBasicAccessMap(Statement);
Johannes Doerfertcea61932016-02-21 19:13:19 +0000990
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000991 AccessRelation = AccessRelation.set_tuple_id(isl::dim::out, BaseAddrId);
Tobias Grossera1879642011-12-20 10:43:14 +0000992 return;
993 }
994
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +0000995 isl::space Space = isl::space(Ctx, 0, Statement->getNumIterators(), 0);
996 AccessRelation = isl::map::universe(Space);
Tobias Grossera1879642011-12-20 10:43:14 +0000997
Michael Krusee2bccbb2015-09-18 19:59:43 +0000998 for (int i = 0, Size = Subscripts.size(); i < Size; ++i) {
Tobias Grossercdf471b2017-07-24 16:36:34 +0000999 isl::pw_aff Affine = getPwAff(Subscripts[i]);
1000 isl::map SubscriptMap = isl::map::from_pw_aff(Affine);
1001 AccessRelation = AccessRelation.flat_range_product(SubscriptMap);
Sebastian Pop18016682014-04-08 21:20:44 +00001002 }
1003
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001004 Space = Statement->getDomainSpace();
Tobias Grosser0c4c2ee2017-07-23 04:08:22 +00001005 AccessRelation = AccessRelation.set_tuple_id(
1006 isl::dim::in, Space.get_tuple_id(isl::dim::set));
1007 AccessRelation = AccessRelation.set_tuple_id(isl::dim::out, BaseAddrId);
Johannes Doerfert5d83f092014-07-29 08:37:55 +00001008
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001009 AccessRelation = AccessRelation.gist_domain(Statement->getDomain());
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001010}
Tobias Grosser30b8a092011-08-18 07:51:37 +00001011
Michael Krusecac948e2015-10-02 13:53:07 +00001012MemoryAccess::MemoryAccess(ScopStmt *Stmt, Instruction *AccessInst,
Johannes Doerfertcea61932016-02-21 19:13:19 +00001013 AccessType AccType, Value *BaseAddress,
1014 Type *ElementType, bool Affine,
Michael Krusee2bccbb2015-09-18 19:59:43 +00001015 ArrayRef<const SCEV *> Subscripts,
1016 ArrayRef<const SCEV *> Sizes, Value *AccessValue,
Tobias Grosser72684bb2017-05-03 08:02:32 +00001017 MemoryKind Kind)
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001018 : Kind(Kind), AccType(AccType), Statement(Stmt), InvalidDomain(nullptr),
1019 BaseAddr(BaseAddress), ElementType(ElementType),
Tobias Grosser81331282017-05-03 07:57:35 +00001020 Sizes(Sizes.begin(), Sizes.end()), AccessInstruction(AccessInst),
1021 AccessValue(AccessValue), IsAffine(Affine),
Michael Krusee2bccbb2015-09-18 19:59:43 +00001022 Subscripts(Subscripts.begin(), Subscripts.end()), AccessRelation(nullptr),
Siddharth Bhatf2dbba82017-05-10 13:11:20 +00001023 NewAccessRelation(nullptr), FAD(nullptr) {
Hongbin Zheng86f43ea2016-02-20 03:40:15 +00001024 static const std::string TypeStrings[] = {"", "_Read", "_Write", "_MayWrite"};
Tobias Grosser81331282017-05-03 07:57:35 +00001025 const std::string Access = TypeStrings[AccType] + utostr(Stmt->size());
Tobias Grosserf1bfd752015-11-05 20:15:37 +00001026
Tobias Grosser81331282017-05-03 07:57:35 +00001027 std::string IdName = Stmt->getBaseName() + Access;
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001028 Id = isl::id::alloc(Stmt->getParent()->getIslCtx(), IdName, this);
Tobias Grosserf1bfd752015-11-05 20:15:37 +00001029}
Michael Krusee2bccbb2015-09-18 19:59:43 +00001030
Tobias Grosser1f6ba7e2017-07-24 16:22:32 +00001031MemoryAccess::MemoryAccess(ScopStmt *Stmt, AccessType AccType, isl::map AccRel)
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001032 : Kind(MemoryKind::Array), AccType(AccType), Statement(Stmt),
1033 InvalidDomain(nullptr), AccessRelation(nullptr),
1034 NewAccessRelation(AccRel), FAD(nullptr) {
Tobias Grosser206e9e32017-07-24 16:22:27 +00001035 isl::id ArrayInfoId = NewAccessRelation.get_tuple_id(isl::dim::out);
Roman Gareevb3224ad2016-09-14 06:26:09 +00001036 auto *SAI = ScopArrayInfo::getFromId(ArrayInfoId);
1037 Sizes.push_back(nullptr);
1038 for (unsigned i = 1; i < SAI->getNumberOfDimensions(); i++)
1039 Sizes.push_back(SAI->getDimensionSize(i));
1040 ElementType = SAI->getElementType();
1041 BaseAddr = SAI->getBasePtr();
Roman Gareevb3224ad2016-09-14 06:26:09 +00001042 static const std::string TypeStrings[] = {"", "_Read", "_Write", "_MayWrite"};
Tobias Grosser81331282017-05-03 07:57:35 +00001043 const std::string Access = TypeStrings[AccType] + utostr(Stmt->size());
Roman Gareevb3224ad2016-09-14 06:26:09 +00001044
Tobias Grosser81331282017-05-03 07:57:35 +00001045 std::string IdName = Stmt->getBaseName() + Access;
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001046 Id = isl::id::alloc(Stmt->getParent()->getIslCtx(), IdName, this);
Roman Gareevb3224ad2016-09-14 06:26:09 +00001047}
1048
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001049MemoryAccess::~MemoryAccess() = default;
1050
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001051void MemoryAccess::realignParams() {
Tobias Grosser8ea1fc12017-08-06 19:52:38 +00001052 isl::set Ctx = Statement->getParent()->getContext();
Tobias Grosserb739cb42017-07-24 20:30:34 +00001053 InvalidDomain = InvalidDomain.gist_params(Ctx);
1054 AccessRelation = AccessRelation.gist_params(Ctx);
Tobias Grosser75805372011-04-29 06:27:02 +00001055}
1056
Johannes Doerfert32868bf2014-08-01 08:13:25 +00001057const std::string MemoryAccess::getReductionOperatorStr() const {
1058 return MemoryAccess::getReductionOperatorStr(getReductionType());
1059}
1060
Tobias Grosserfe46c3f2017-07-23 04:08:11 +00001061isl::id MemoryAccess::getId() const { return Id; }
Tobias Grosser6f48e0f2015-05-15 09:58:32 +00001062
Johannes Doerfertf6183392014-07-01 20:52:51 +00001063raw_ostream &polly::operator<<(raw_ostream &OS,
1064 MemoryAccess::ReductionType RT) {
Johannes Doerfert32868bf2014-08-01 08:13:25 +00001065 if (RT == MemoryAccess::RT_NONE)
Johannes Doerfertf6183392014-07-01 20:52:51 +00001066 OS << "NONE";
Johannes Doerfert32868bf2014-08-01 08:13:25 +00001067 else
1068 OS << MemoryAccess::getReductionOperatorStr(RT);
Johannes Doerfertf6183392014-07-01 20:52:51 +00001069 return OS;
1070}
1071
Siddharth Bhat0fe72312017-05-15 08:41:30 +00001072void MemoryAccess::setFortranArrayDescriptor(Value *FAD) { this->FAD = FAD; }
Siddharth Bhatf2dbba82017-05-10 13:11:20 +00001073
Tobias Grosser75805372011-04-29 06:27:02 +00001074void MemoryAccess::print(raw_ostream &OS) const {
Johannes Doerfert4c7ce472014-10-08 10:11:33 +00001075 switch (AccType) {
Tobias Grosserb58f6a42013-07-13 20:41:24 +00001076 case READ:
Johannes Doerfert6780bc32014-06-26 18:47:03 +00001077 OS.indent(12) << "ReadAccess :=\t";
Tobias Grosser4f967492013-06-23 05:21:18 +00001078 break;
Tobias Grosserb58f6a42013-07-13 20:41:24 +00001079 case MUST_WRITE:
Johannes Doerfert6780bc32014-06-26 18:47:03 +00001080 OS.indent(12) << "MustWriteAccess :=\t";
Tobias Grosser4f967492013-06-23 05:21:18 +00001081 break;
Tobias Grosserb58f6a42013-07-13 20:41:24 +00001082 case MAY_WRITE:
Johannes Doerfert6780bc32014-06-26 18:47:03 +00001083 OS.indent(12) << "MayWriteAccess :=\t";
Tobias Grosser4f967492013-06-23 05:21:18 +00001084 break;
1085 }
Siddharth Bhatf2dbba82017-05-10 13:11:20 +00001086
Johannes Doerfert0ff23ec2015-02-06 20:13:15 +00001087 OS << "[Reduction Type: " << getReductionType() << "] ";
Siddharth Bhatf2dbba82017-05-10 13:11:20 +00001088
1089 if (FAD) {
1090 OS << "[Fortran array descriptor: " << FAD->getName();
1091 OS << "] ";
1092 };
1093
Tobias Grossera535dff2015-12-13 19:59:01 +00001094 OS << "[Scalar: " << isScalarKind() << "]\n";
Michael Kruseb8d26442015-12-13 19:35:26 +00001095 OS.indent(16) << getOriginalAccessRelationStr() << ";\n";
Tobias Grosser6f730082015-09-05 07:46:47 +00001096 if (hasNewAccessRelation())
1097 OS.indent(11) << "new: " << getNewAccessRelationStr() << ";\n";
Tobias Grosser75805372011-04-29 06:27:02 +00001098}
1099
Michael Kruse5d518462017-07-21 15:54:07 +00001100#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Michael Krusee1860132017-07-21 15:54:13 +00001101LLVM_DUMP_METHOD void MemoryAccess::dump() const { print(errs()); }
Michael Kruse5d518462017-07-21 15:54:07 +00001102#endif
Tobias Grosser75805372011-04-29 06:27:02 +00001103
Tobias Grossercdf471b2017-07-24 16:36:34 +00001104isl::pw_aff MemoryAccess::getPwAff(const SCEV *E) {
Johannes Doerfert97f0dcd2016-04-12 13:26:45 +00001105 auto *Stmt = getStatement();
Johannes Doerfert85676e32016-04-23 14:32:34 +00001106 PWACtx PWAC = Stmt->getParent()->getPwAff(E, Stmt->getEntryBlock());
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001107 isl::set StmtDom = getStatement()->getDomain();
Tobias Grossercdf471b2017-07-24 16:36:34 +00001108 StmtDom = StmtDom.reset_tuple_id();
Philip Pfaffed98dbee2017-12-06 21:02:22 +00001109 isl::set NewInvalidDom = StmtDom.intersect(PWAC.second);
Tobias Grosserb739cb42017-07-24 20:30:34 +00001110 InvalidDomain = InvalidDomain.unite(NewInvalidDom);
Philip Pfaffed98dbee2017-12-06 21:02:22 +00001111 return PWAC.first;
Johannes Doerfert97f0dcd2016-04-12 13:26:45 +00001112}
1113
Tobias Grosser75805372011-04-29 06:27:02 +00001114// Create a map in the size of the provided set domain, that maps from the
1115// one element of the provided set domain to another element of the provided
1116// set domain.
1117// The mapping is limited to all points that are equal in all but the last
1118// dimension and for which the last dimension of the input is strict smaller
1119// than the last dimension of the output.
1120//
1121// getEqualAndLarger(set[i0, i1, ..., iX]):
1122//
1123// set[i0, i1, ..., iX] -> set[o0, o1, ..., oX]
1124// : i0 = o0, i1 = o1, ..., i(X-1) = o(X-1), iX < oX
1125//
Tobias Grosserd7065e52017-07-24 20:50:22 +00001126static isl::map getEqualAndLarger(isl::space SetDomain) {
1127 isl::space Space = SetDomain.map_from_set();
1128 isl::map Map = isl::map::universe(Space);
1129 unsigned lastDimension = Map.dim(isl::dim::in) - 1;
Tobias Grosser75805372011-04-29 06:27:02 +00001130
1131 // Set all but the last dimension to be equal for the input and output
1132 //
1133 // input[i0, i1, ..., iX] -> output[o0, o1, ..., oX]
1134 // : i0 = o0, i1 = o1, ..., i(X-1) = o(X-1)
Sebastian Pop40408762013-10-04 17:14:53 +00001135 for (unsigned i = 0; i < lastDimension; ++i)
Tobias Grosserd7065e52017-07-24 20:50:22 +00001136 Map = Map.equate(isl::dim::in, i, isl::dim::out, i);
Tobias Grosser75805372011-04-29 06:27:02 +00001137
1138 // Set the last dimension of the input to be strict smaller than the
1139 // last dimension of the output.
1140 //
1141 // input[?,?,?,...,iX] -> output[?,?,?,...,oX] : iX < oX
Tobias Grosserd7065e52017-07-24 20:50:22 +00001142 Map = Map.order_lt(isl::dim::in, lastDimension, isl::dim::out, lastDimension);
Tobias Grosserc327932c2012-02-01 14:23:36 +00001143 return Map;
Tobias Grosser75805372011-04-29 06:27:02 +00001144}
1145
Tobias Grosserd7065e52017-07-24 20:50:22 +00001146isl::set MemoryAccess::getStride(isl::map Schedule) const {
1147 isl::map AccessRelation = getAccessRelation();
1148 isl::space Space = Schedule.get_space().range();
1149 isl::map NextScatt = getEqualAndLarger(Space);
Tobias Grosser75805372011-04-29 06:27:02 +00001150
Tobias Grosserd7065e52017-07-24 20:50:22 +00001151 Schedule = Schedule.reverse();
1152 NextScatt = NextScatt.lexmin();
Tobias Grosser75805372011-04-29 06:27:02 +00001153
Tobias Grosserd7065e52017-07-24 20:50:22 +00001154 NextScatt = NextScatt.apply_range(Schedule);
1155 NextScatt = NextScatt.apply_range(AccessRelation);
1156 NextScatt = NextScatt.apply_domain(Schedule);
1157 NextScatt = NextScatt.apply_domain(AccessRelation);
Tobias Grosser75805372011-04-29 06:27:02 +00001158
Tobias Grosserd7065e52017-07-24 20:50:22 +00001159 isl::set Deltas = NextScatt.deltas();
Sebastian Popa00a0292012-12-18 07:46:06 +00001160 return Deltas;
Tobias Grosser75805372011-04-29 06:27:02 +00001161}
1162
Tobias Grosserd7065e52017-07-24 20:50:22 +00001163bool MemoryAccess::isStrideX(isl::map Schedule, int StrideWidth) const {
1164 isl::set Stride, StrideX;
Tobias Grosser28dd4862012-01-24 16:42:16 +00001165 bool IsStrideX;
Tobias Grosser75805372011-04-29 06:27:02 +00001166
Sebastian Popa00a0292012-12-18 07:46:06 +00001167 Stride = getStride(Schedule);
Tobias Grosserd7065e52017-07-24 20:50:22 +00001168 StrideX = isl::set::universe(Stride.get_space());
1169 for (unsigned i = 0; i < StrideX.dim(isl::dim::set) - 1; i++)
1170 StrideX = StrideX.fix_si(isl::dim::set, i, 0);
1171 StrideX = StrideX.fix_si(isl::dim::set, StrideX.dim(isl::dim::set) - 1,
1172 StrideWidth);
1173 IsStrideX = Stride.is_subset(StrideX);
Tobias Grosserb76f38532011-08-20 11:11:25 +00001174
Tobias Grosser28dd4862012-01-24 16:42:16 +00001175 return IsStrideX;
1176}
1177
Tobias Grosserd7065e52017-07-24 20:50:22 +00001178bool MemoryAccess::isStrideZero(isl::map Schedule) const {
Sebastian Popa00a0292012-12-18 07:46:06 +00001179 return isStrideX(Schedule, 0);
Tobias Grosser75805372011-04-29 06:27:02 +00001180}
1181
Tobias Grosserd7065e52017-07-24 20:50:22 +00001182bool MemoryAccess::isStrideOne(isl::map Schedule) const {
Sebastian Popa00a0292012-12-18 07:46:06 +00001183 return isStrideX(Schedule, 1);
Tobias Grosser75805372011-04-29 06:27:02 +00001184}
1185
Tobias Grosser6d588042017-08-02 19:27:16 +00001186void MemoryAccess::setAccessRelation(isl::map NewAccess) {
1187 AccessRelation = NewAccess;
Tobias Grosserbedef002016-12-02 08:10:56 +00001188}
1189
Tobias Grosser7b45af12017-08-02 19:27:25 +00001190void MemoryAccess::setNewAccessRelation(isl::map NewAccess) {
Michael Kruse772ce722016-09-01 19:16:58 +00001191 assert(NewAccess);
1192
1193#ifndef NDEBUG
1194 // Check domain space compatibility.
Tobias Grosser7b45af12017-08-02 19:27:25 +00001195 isl::space NewSpace = NewAccess.get_space();
1196 isl::space NewDomainSpace = NewSpace.domain();
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001197 isl::space OriginalDomainSpace = getStatement()->getDomainSpace();
Tobias Grosser7b45af12017-08-02 19:27:25 +00001198 assert(OriginalDomainSpace.has_equal_tuples(NewDomainSpace));
Michael Kruse772ce722016-09-01 19:16:58 +00001199
Michael Kruse706f79a2017-05-21 22:46:57 +00001200 // Reads must be executed unconditionally. Writes might be executed in a
1201 // subdomain only.
1202 if (isRead()) {
1203 // Check whether there is an access for every statement instance.
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001204 isl::set StmtDomain = getStatement()->getDomain();
Tobias Grosserb65ccc42017-08-06 20:11:59 +00001205 StmtDomain =
1206 StmtDomain.intersect_params(getStatement()->getParent()->getContext());
Tobias Grosser7b45af12017-08-02 19:27:25 +00001207 isl::set NewDomain = NewAccess.domain();
1208 assert(StmtDomain.is_subset(NewDomain) &&
Michael Kruse706f79a2017-05-21 22:46:57 +00001209 "Partial READ accesses not supported");
Michael Kruse706f79a2017-05-21 22:46:57 +00001210 }
Michael Kruse772ce722016-09-01 19:16:58 +00001211
Tobias Grosser7b45af12017-08-02 19:27:25 +00001212 isl::space NewAccessSpace = NewAccess.get_space();
1213 assert(NewAccessSpace.has_tuple_id(isl::dim::set) &&
Michael Kruse772ce722016-09-01 19:16:58 +00001214 "Must specify the array that is accessed");
Tobias Grosser7b45af12017-08-02 19:27:25 +00001215 isl::id NewArrayId = NewAccessSpace.get_tuple_id(isl::dim::set);
1216 auto *SAI = static_cast<ScopArrayInfo *>(NewArrayId.get_user());
Michael Kruse772ce722016-09-01 19:16:58 +00001217 assert(SAI && "Must set a ScopArrayInfo");
Tobias Grossere1ff0cf2017-01-17 12:00:42 +00001218
1219 if (SAI->isArrayKind() && SAI->getBasePtrOriginSAI()) {
1220 InvariantEquivClassTy *EqClass =
1221 getStatement()->getParent()->lookupInvariantEquivClass(
1222 SAI->getBasePtr());
1223 assert(EqClass &&
1224 "Access functions to indirect arrays must have an invariant and "
1225 "hoisted base pointer");
1226 }
1227
1228 // Check whether access dimensions correspond to number of dimensions of the
1229 // accesses array.
Michael Kruse772ce722016-09-01 19:16:58 +00001230 auto Dims = SAI->getNumberOfDimensions();
Tobias Grosser7b45af12017-08-02 19:27:25 +00001231 assert(NewAccessSpace.dim(isl::dim::set) == Dims &&
Michael Kruse772ce722016-09-01 19:16:58 +00001232 "Access dims must match array dims");
Michael Kruse772ce722016-09-01 19:16:58 +00001233#endif
1234
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001235 NewAccess = NewAccess.gist_domain(getStatement()->getDomain());
Tobias Grosser7b45af12017-08-02 19:27:25 +00001236 NewAccessRelation = NewAccess;
Raghesh Aloor3cb66282011-07-12 17:14:03 +00001237}
Tobias Grosser75805372011-04-29 06:27:02 +00001238
Michael Kruse706f79a2017-05-21 22:46:57 +00001239bool MemoryAccess::isLatestPartialAccess() const {
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001240 isl::set StmtDom = getStatement()->getDomain();
Tobias Grosser1515f6b2017-07-23 04:08:38 +00001241 isl::set AccDom = getLatestAccessRelation().domain();
Michael Kruse706f79a2017-05-21 22:46:57 +00001242
Tobias Grosserd3d3d6b2018-04-29 00:28:26 +00001243 return !StmtDom.is_subset(AccDom);
Michael Kruse706f79a2017-05-21 22:46:57 +00001244}
1245
Tobias Grosser75805372011-04-29 06:27:02 +00001246//===----------------------------------------------------------------------===//
Tobias Grossercf3942d2011-10-06 00:04:05 +00001247
Tobias Grosser6ad16402017-08-06 17:45:28 +00001248isl::map ScopStmt::getSchedule() const {
Tobias Grosser1e09c132017-08-14 06:49:06 +00001249 isl::set Domain = getDomain();
1250 if (Domain.is_empty())
1251 return isl::map::from_aff(isl::aff(isl::local_space(getDomainSpace())));
1252 auto Schedule = getParent()->getSchedule();
1253 if (!Schedule)
Roman Gareevb3224ad2016-09-14 06:26:09 +00001254 return nullptr;
Tobias Grosser1e09c132017-08-14 06:49:06 +00001255 Schedule = Schedule.intersect_domain(isl::union_set(Domain));
1256 if (Schedule.is_empty())
1257 return isl::map::from_aff(isl::aff(isl::local_space(getDomainSpace())));
1258 isl::map M = M.from_union_map(Schedule);
1259 M = M.coalesce();
1260 M = M.gist_domain(Domain);
1261 M = M.coalesce();
1262 return M;
Tobias Grosser808cd692015-07-14 09:33:13 +00001263}
Tobias Grossercf3942d2011-10-06 00:04:05 +00001264
Tobias Grossera9b5bba2017-08-06 16:11:53 +00001265void ScopStmt::restrictDomain(isl::set NewDomain) {
1266 assert(NewDomain.is_subset(Domain) &&
Tobias Grosser37eb4222014-02-20 21:43:54 +00001267 "New domain is not a subset of old domain!");
Tobias Grosser37eb4222014-02-20 21:43:54 +00001268 Domain = NewDomain;
Tobias Grosser75805372011-04-29 06:27:02 +00001269}
1270
Michael Kruse70af4f52017-08-07 18:40:29 +00001271void ScopStmt::addAccess(MemoryAccess *Access, bool Prepend) {
Michael Krusecac948e2015-10-02 13:53:07 +00001272 Instruction *AccessInst = Access->getAccessInstruction();
1273
Michael Kruse58fa3bb2015-12-22 23:25:11 +00001274 if (Access->isArrayKind()) {
1275 MemoryAccessList &MAL = InstructionToAccess[AccessInst];
1276 MAL.emplace_front(Access);
Michael Kruse436db622016-01-26 13:33:10 +00001277 } else if (Access->isValueKind() && Access->isWrite()) {
1278 Instruction *AccessVal = cast<Instruction>(Access->getAccessValue());
Michael Kruse436db622016-01-26 13:33:10 +00001279 assert(!ValueWrites.lookup(AccessVal));
1280
1281 ValueWrites[AccessVal] = Access;
Michael Krusead28e5a2016-01-26 13:33:15 +00001282 } else if (Access->isValueKind() && Access->isRead()) {
1283 Value *AccessVal = Access->getAccessValue();
1284 assert(!ValueReads.lookup(AccessVal));
1285
1286 ValueReads[AccessVal] = Access;
Michael Kruseee6a4fc2016-01-26 13:33:27 +00001287 } else if (Access->isAnyPHIKind() && Access->isWrite()) {
Tobias Grosser5db171a2017-02-10 10:09:44 +00001288 PHINode *PHI = cast<PHINode>(Access->getAccessValue());
Michael Kruseee6a4fc2016-01-26 13:33:27 +00001289 assert(!PHIWrites.lookup(PHI));
1290
1291 PHIWrites[PHI] = Access;
Michael Kruse3562f272017-07-20 16:47:57 +00001292 } else if (Access->isAnyPHIKind() && Access->isRead()) {
1293 PHINode *PHI = cast<PHINode>(Access->getAccessValue());
1294 assert(!PHIReads.lookup(PHI));
1295
1296 PHIReads[PHI] = Access;
Michael Kruse58fa3bb2015-12-22 23:25:11 +00001297 }
1298
Michael Kruse70af4f52017-08-07 18:40:29 +00001299 if (Prepend) {
1300 MemAccs.insert(MemAccs.begin(), Access);
1301 return;
1302 }
Michael Kruse58fa3bb2015-12-22 23:25:11 +00001303 MemAccs.push_back(Access);
Michael Krusecac948e2015-10-02 13:53:07 +00001304}
1305
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001306void ScopStmt::realignParams() {
Johannes Doerfertf6752892014-06-13 18:01:45 +00001307 for (MemoryAccess *MA : *this)
1308 MA->realignParams();
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001309
Tobias Grosser8ea1fc12017-08-06 19:52:38 +00001310 isl::set Ctx = Parent.getContext();
Tobias Grosser2332fa32017-08-06 15:36:48 +00001311 InvalidDomain = InvalidDomain.gist_params(Ctx);
Tobias Grossera9b5bba2017-08-06 16:11:53 +00001312 Domain = Domain.gist_params(Ctx);
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001313}
1314
Tobias Grosserc80d6972016-09-02 06:33:33 +00001315/// Add @p BSet to the set @p User if @p BSet is bounded.
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00001316static isl_stat collectBoundedParts(__isl_take isl_basic_set *BSet,
1317 void *User) {
1318 isl_set **BoundedParts = static_cast<isl_set **>(User);
1319 if (isl_basic_set_is_bounded(BSet))
1320 *BoundedParts = isl_set_union(*BoundedParts, isl_set_from_basic_set(BSet));
1321 else
1322 isl_basic_set_free(BSet);
1323 return isl_stat_ok;
1324}
1325
Tobias Grosserc80d6972016-09-02 06:33:33 +00001326/// Return the bounded parts of @p S.
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00001327static __isl_give isl_set *collectBoundedParts(__isl_take isl_set *S) {
1328 isl_set *BoundedParts = isl_set_empty(isl_set_get_space(S));
1329 isl_set_foreach_basic_set(S, collectBoundedParts, &BoundedParts);
1330 isl_set_free(S);
1331 return BoundedParts;
1332}
1333
Tobias Grosserc80d6972016-09-02 06:33:33 +00001334/// Compute the (un)bounded parts of @p S wrt. to dimension @p Dim.
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00001335///
1336/// @returns A separation of @p S into first an unbounded then a bounded subset,
1337/// both with regards to the dimension @p Dim.
1338static std::pair<__isl_give isl_set *, __isl_give isl_set *>
1339partitionSetParts(__isl_take isl_set *S, unsigned Dim) {
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00001340 for (unsigned u = 0, e = isl_set_n_dim(S); u < e; u++)
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00001341 S = isl_set_lower_bound_si(S, isl_dim_set, u, 0);
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00001342
1343 unsigned NumDimsS = isl_set_n_dim(S);
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00001344 isl_set *OnlyDimS = isl_set_copy(S);
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00001345
1346 // Remove dimensions that are greater than Dim as they are not interesting.
1347 assert(NumDimsS >= Dim + 1);
1348 OnlyDimS =
1349 isl_set_project_out(OnlyDimS, isl_dim_set, Dim + 1, NumDimsS - Dim - 1);
1350
1351 // Create artificial parametric upper bounds for dimensions smaller than Dim
1352 // as we are not interested in them.
1353 OnlyDimS = isl_set_insert_dims(OnlyDimS, isl_dim_param, 0, Dim);
1354 for (unsigned u = 0; u < Dim; u++) {
1355 isl_constraint *C = isl_inequality_alloc(
1356 isl_local_space_from_space(isl_set_get_space(OnlyDimS)));
1357 C = isl_constraint_set_coefficient_si(C, isl_dim_param, u, 1);
1358 C = isl_constraint_set_coefficient_si(C, isl_dim_set, u, -1);
1359 OnlyDimS = isl_set_add_constraint(OnlyDimS, C);
1360 }
1361
1362 // Collect all bounded parts of OnlyDimS.
1363 isl_set *BoundedParts = collectBoundedParts(OnlyDimS);
1364
1365 // Create the dimensions greater than Dim again.
1366 BoundedParts = isl_set_insert_dims(BoundedParts, isl_dim_set, Dim + 1,
1367 NumDimsS - Dim - 1);
1368
1369 // Remove the artificial upper bound parameters again.
1370 BoundedParts = isl_set_remove_dims(BoundedParts, isl_dim_param, 0, Dim);
1371
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00001372 isl_set *UnboundedParts = isl_set_subtract(S, isl_set_copy(BoundedParts));
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00001373 return std::make_pair(UnboundedParts, BoundedParts);
1374}
1375
Tobias Grosserc80d6972016-09-02 06:33:33 +00001376/// Create the conditions under which @p L @p Pred @p R is true.
Johannes Doerfert96425c22015-08-30 21:13:53 +00001377static __isl_give isl_set *buildConditionSet(ICmpInst::Predicate Pred,
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001378 __isl_take isl_pw_aff *L,
1379 __isl_take isl_pw_aff *R) {
Johannes Doerfert96425c22015-08-30 21:13:53 +00001380 switch (Pred) {
1381 case ICmpInst::ICMP_EQ:
1382 return isl_pw_aff_eq_set(L, R);
1383 case ICmpInst::ICMP_NE:
1384 return isl_pw_aff_ne_set(L, R);
1385 case ICmpInst::ICMP_SLT:
1386 return isl_pw_aff_lt_set(L, R);
1387 case ICmpInst::ICMP_SLE:
1388 return isl_pw_aff_le_set(L, R);
1389 case ICmpInst::ICMP_SGT:
1390 return isl_pw_aff_gt_set(L, R);
1391 case ICmpInst::ICMP_SGE:
1392 return isl_pw_aff_ge_set(L, R);
1393 case ICmpInst::ICMP_ULT:
1394 return isl_pw_aff_lt_set(L, R);
1395 case ICmpInst::ICMP_UGT:
1396 return isl_pw_aff_gt_set(L, R);
1397 case ICmpInst::ICMP_ULE:
1398 return isl_pw_aff_le_set(L, R);
1399 case ICmpInst::ICMP_UGE:
1400 return isl_pw_aff_ge_set(L, R);
1401 default:
1402 llvm_unreachable("Non integer predicate not supported");
1403 }
1404}
1405
Michael Kruse476f8552017-06-29 12:47:41 +00001406/// Compute the isl representation for the SCEV @p E in this BB.
1407///
1408/// @param S The Scop in which @p BB resides in.
1409/// @param BB The BB for which isl representation is to be
1410/// computed.
1411/// @param InvalidDomainMap A map of BB to their invalid domains.
1412/// @param E The SCEV that should be translated.
1413/// @param NonNegative Flag to indicate the @p E has to be non-negative.
1414///
1415/// Note that this function will also adjust the invalid context accordingly.
1416
1417__isl_give isl_pw_aff *
1418getPwAff(Scop &S, BasicBlock *BB,
Tobias Grosser13acbb92017-07-15 09:01:31 +00001419 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap, const SCEV *E,
1420 bool NonNegative = false) {
Michael Kruse476f8552017-06-29 12:47:41 +00001421 PWACtx PWAC = S.getPwAff(E, BB, NonNegative);
Philip Pfaffed98dbee2017-12-06 21:02:22 +00001422 InvalidDomainMap[BB] = InvalidDomainMap[BB].unite(PWAC.second);
Tobias Grosser8dae41a2018-04-29 00:57:38 +00001423 return PWAC.first.release();
Michael Kruse476f8552017-06-29 12:47:41 +00001424}
1425
Tobias Grosserc80d6972016-09-02 06:33:33 +00001426/// Build the conditions sets for the switch @p SI in the @p Domain.
Johannes Doerfert96425c22015-08-30 21:13:53 +00001427///
1428/// This will fill @p ConditionSets with the conditions under which control
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001429/// will be moved from @p SI to its successors. Hence, @p ConditionSets will
1430/// have as many elements as @p SI has successors.
Tobias Grosseree457592017-09-24 09:25:30 +00001431bool buildConditionSets(Scop &S, BasicBlock *BB, SwitchInst *SI, Loop *L,
1432 __isl_keep isl_set *Domain,
1433 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap,
1434 SmallVectorImpl<__isl_give isl_set *> &ConditionSets) {
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001435 Value *Condition = getConditionFromTerminator(SI);
1436 assert(Condition && "No condition for switch");
1437
1438 ScalarEvolution &SE = *S.getSE();
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001439 isl_pw_aff *LHS, *RHS;
Michael Kruse476f8552017-06-29 12:47:41 +00001440 LHS = getPwAff(S, BB, InvalidDomainMap, SE.getSCEVAtScope(Condition, L));
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001441
1442 unsigned NumSuccessors = SI->getNumSuccessors();
1443 ConditionSets.resize(NumSuccessors);
1444 for (auto &Case : SI->cases()) {
1445 unsigned Idx = Case.getSuccessorIndex();
1446 ConstantInt *CaseValue = Case.getCaseValue();
1447
Michael Kruse476f8552017-06-29 12:47:41 +00001448 RHS = getPwAff(S, BB, InvalidDomainMap, SE.getSCEV(CaseValue));
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001449 isl_set *CaseConditionSet =
Tobias Grosserb9486302018-03-03 19:27:54 +00001450 buildConditionSet(ICmpInst::ICMP_EQ, isl_pw_aff_copy(LHS), RHS);
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001451 ConditionSets[Idx] = isl_set_coalesce(
1452 isl_set_intersect(CaseConditionSet, isl_set_copy(Domain)));
1453 }
1454
1455 assert(ConditionSets[0] == nullptr && "Default condition set was set");
1456 isl_set *ConditionSetUnion = isl_set_copy(ConditionSets[1]);
1457 for (unsigned u = 2; u < NumSuccessors; u++)
1458 ConditionSetUnion =
1459 isl_set_union(ConditionSetUnion, isl_set_copy(ConditionSets[u]));
Tobias Grosserb9486302018-03-03 19:27:54 +00001460 ConditionSets[0] = isl_set_subtract(isl_set_copy(Domain), ConditionSetUnion);
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001461
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001462 isl_pw_aff_free(LHS);
Johannes Doerfert297c7202016-05-10 13:06:42 +00001463
1464 return true;
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001465}
1466
Michael Kruse08655852017-07-20 12:37:02 +00001467/// Build condition sets for unsigned ICmpInst(s).
1468/// Special handling is required for unsigned operands to ensure that if
1469/// MSB (aka the Sign bit) is set for an operands in an unsigned ICmpInst
1470/// it should wrap around.
1471///
1472/// @param IsStrictUpperBound holds information on the predicate relation
1473/// between TestVal and UpperBound, i.e,
1474/// TestVal < UpperBound OR TestVal <= UpperBound
Tobias Grosseree457592017-09-24 09:25:30 +00001475__isl_give isl_set *
Michael Kruse08655852017-07-20 12:37:02 +00001476buildUnsignedConditionSets(Scop &S, BasicBlock *BB, Value *Condition,
1477 __isl_keep isl_set *Domain, const SCEV *SCEV_TestVal,
1478 const SCEV *SCEV_UpperBound,
1479 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap,
1480 bool IsStrictUpperBound) {
Michael Kruse08655852017-07-20 12:37:02 +00001481 // Do not take NonNeg assumption on TestVal
1482 // as it might have MSB (Sign bit) set.
1483 isl_pw_aff *TestVal = getPwAff(S, BB, InvalidDomainMap, SCEV_TestVal, false);
1484 // Take NonNeg assumption on UpperBound.
1485 isl_pw_aff *UpperBound =
1486 getPwAff(S, BB, InvalidDomainMap, SCEV_UpperBound, true);
1487
1488 // 0 <= TestVal
1489 isl_set *First =
1490 isl_pw_aff_le_set(isl_pw_aff_zero_on_domain(isl_local_space_from_space(
1491 isl_pw_aff_get_domain_space(TestVal))),
1492 isl_pw_aff_copy(TestVal));
1493
1494 isl_set *Second;
1495 if (IsStrictUpperBound)
1496 // TestVal < UpperBound
1497 Second = isl_pw_aff_lt_set(TestVal, UpperBound);
1498 else
1499 // TestVal <= UpperBound
1500 Second = isl_pw_aff_le_set(TestVal, UpperBound);
1501
1502 isl_set *ConsequenceCondSet = isl_set_intersect(First, Second);
Michael Kruse08655852017-07-20 12:37:02 +00001503 return ConsequenceCondSet;
1504}
1505
Tobias Grosserc80d6972016-09-02 06:33:33 +00001506/// Build the conditions sets for the branch condition @p Condition in
1507/// the @p Domain.
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001508///
1509/// This will fill @p ConditionSets with the conditions under which control
1510/// will be moved from @p TI to its successors. Hence, @p ConditionSets will
Johannes Doerfert2af10e22015-11-12 03:25:01 +00001511/// have as many elements as @p TI has successors. If @p TI is nullptr the
1512/// context under which @p Condition is true/false will be returned as the
1513/// new elements of @p ConditionSets.
Tobias Grosseree457592017-09-24 09:25:30 +00001514bool buildConditionSets(Scop &S, BasicBlock *BB, Value *Condition,
1515 TerminatorInst *TI, Loop *L, __isl_keep isl_set *Domain,
1516 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap,
1517 SmallVectorImpl<__isl_give isl_set *> &ConditionSets) {
Tobias Grosser5e531df2017-09-25 20:27:15 +00001518 ScalarEvolution &SE = *S.getSE();
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001519 isl_set *ConsequenceCondSet = nullptr;
Tobias Grosser0a62b2d2017-09-25 16:37:15 +00001520
Tobias Grosser5e531df2017-09-25 20:27:15 +00001521 if (auto Load = dyn_cast<LoadInst>(Condition)) {
1522 const SCEV *LHSSCEV = SE.getSCEVAtScope(Load, L);
1523 const SCEV *RHSSCEV = SE.getZero(LHSSCEV->getType());
1524 bool NonNeg = false;
1525 isl_pw_aff *LHS = getPwAff(S, BB, InvalidDomainMap, LHSSCEV, NonNeg);
1526 isl_pw_aff *RHS = getPwAff(S, BB, InvalidDomainMap, RHSSCEV, NonNeg);
Tobias Grosserb9486302018-03-03 19:27:54 +00001527 ConsequenceCondSet = buildConditionSet(ICmpInst::ICMP_SLE, LHS, RHS);
Tobias Grosser5e531df2017-09-25 20:27:15 +00001528 } else if (auto *PHI = dyn_cast<PHINode>(Condition)) {
Tobias Grosser0a62b2d2017-09-25 16:37:15 +00001529 auto *Unique = dyn_cast<ConstantInt>(
1530 getUniqueNonErrorValue(PHI, &S.getRegion(), *S.getLI(), *S.getDT()));
1531
1532 if (Unique->isZero())
1533 ConsequenceCondSet = isl_set_empty(isl_set_get_space(Domain));
1534 else
1535 ConsequenceCondSet = isl_set_universe(isl_set_get_space(Domain));
1536 } else if (auto *CCond = dyn_cast<ConstantInt>(Condition)) {
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001537 if (CCond->isZero())
1538 ConsequenceCondSet = isl_set_empty(isl_set_get_space(Domain));
1539 else
1540 ConsequenceCondSet = isl_set_universe(isl_set_get_space(Domain));
1541 } else if (BinaryOperator *BinOp = dyn_cast<BinaryOperator>(Condition)) {
1542 auto Opcode = BinOp->getOpcode();
1543 assert(Opcode == Instruction::And || Opcode == Instruction::Or);
1544
Michael Kruse476f8552017-06-29 12:47:41 +00001545 bool Valid = buildConditionSets(S, BB, BinOp->getOperand(0), TI, L, Domain,
1546 InvalidDomainMap, ConditionSets) &&
1547 buildConditionSets(S, BB, BinOp->getOperand(1), TI, L, Domain,
1548 InvalidDomainMap, ConditionSets);
Johannes Doerfertede4eca2016-05-10 14:01:21 +00001549 if (!Valid) {
1550 while (!ConditionSets.empty())
1551 isl_set_free(ConditionSets.pop_back_val());
Johannes Doerfert297c7202016-05-10 13:06:42 +00001552 return false;
Johannes Doerfertede4eca2016-05-10 14:01:21 +00001553 }
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001554
1555 isl_set_free(ConditionSets.pop_back_val());
1556 isl_set *ConsCondPart0 = ConditionSets.pop_back_val();
1557 isl_set_free(ConditionSets.pop_back_val());
1558 isl_set *ConsCondPart1 = ConditionSets.pop_back_val();
1559
1560 if (Opcode == Instruction::And)
1561 ConsequenceCondSet = isl_set_intersect(ConsCondPart0, ConsCondPart1);
1562 else
1563 ConsequenceCondSet = isl_set_union(ConsCondPart0, ConsCondPart1);
1564 } else {
1565 auto *ICond = dyn_cast<ICmpInst>(Condition);
1566 assert(ICond &&
1567 "Condition of exiting branch was neither constant nor ICmp!");
1568
Tobias Grosseree457592017-09-24 09:25:30 +00001569 LoopInfo &LI = *S.getLI();
1570 DominatorTree &DT = *S.getDT();
1571 Region &R = S.getRegion();
1572
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001573 isl_pw_aff *LHS, *RHS;
Johannes Doerfert3e48ee22016-04-29 10:44:41 +00001574 // For unsigned comparisons we assumed the signed bit of neither operand
1575 // to be set. The comparison is equal to a signed comparison under this
1576 // assumption.
1577 bool NonNeg = ICond->isUnsigned();
Michael Kruse08655852017-07-20 12:37:02 +00001578 const SCEV *LeftOperand = SE.getSCEVAtScope(ICond->getOperand(0), L),
1579 *RightOperand = SE.getSCEVAtScope(ICond->getOperand(1), L);
1580
Tobias Grosseree457592017-09-24 09:25:30 +00001581 LeftOperand = tryForwardThroughPHI(LeftOperand, R, SE, LI, DT);
1582 RightOperand = tryForwardThroughPHI(RightOperand, R, SE, LI, DT);
1583
Michael Kruse08655852017-07-20 12:37:02 +00001584 switch (ICond->getPredicate()) {
1585 case ICmpInst::ICMP_ULT:
1586 ConsequenceCondSet =
1587 buildUnsignedConditionSets(S, BB, Condition, Domain, LeftOperand,
1588 RightOperand, InvalidDomainMap, true);
1589 break;
1590 case ICmpInst::ICMP_ULE:
1591 ConsequenceCondSet =
1592 buildUnsignedConditionSets(S, BB, Condition, Domain, LeftOperand,
1593 RightOperand, InvalidDomainMap, false);
1594 break;
1595 case ICmpInst::ICMP_UGT:
1596 ConsequenceCondSet =
1597 buildUnsignedConditionSets(S, BB, Condition, Domain, RightOperand,
1598 LeftOperand, InvalidDomainMap, true);
1599 break;
1600 case ICmpInst::ICMP_UGE:
1601 ConsequenceCondSet =
1602 buildUnsignedConditionSets(S, BB, Condition, Domain, RightOperand,
1603 LeftOperand, InvalidDomainMap, false);
1604 break;
1605 default:
1606 LHS = getPwAff(S, BB, InvalidDomainMap, LeftOperand, NonNeg);
1607 RHS = getPwAff(S, BB, InvalidDomainMap, RightOperand, NonNeg);
Tobias Grosserb9486302018-03-03 19:27:54 +00001608 ConsequenceCondSet = buildConditionSet(ICond->getPredicate(), LHS, RHS);
Michael Kruse08655852017-07-20 12:37:02 +00001609 break;
1610 }
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001611 }
1612
Johannes Doerfert2af10e22015-11-12 03:25:01 +00001613 // If no terminator was given we are only looking for parameter constraints
1614 // under which @p Condition is true/false.
1615 if (!TI)
1616 ConsequenceCondSet = isl_set_params(ConsequenceCondSet);
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001617 assert(ConsequenceCondSet);
Johannes Doerfert15194912016-04-04 07:59:41 +00001618 ConsequenceCondSet = isl_set_coalesce(
1619 isl_set_intersect(ConsequenceCondSet, isl_set_copy(Domain)));
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001620
Johannes Doerfertb2885792016-04-26 09:20:41 +00001621 isl_set *AlternativeCondSet = nullptr;
Michael Krusef7a4a942016-05-02 12:25:36 +00001622 bool TooComplex =
Tobias Grosser90411a92017-02-16 19:11:33 +00001623 isl_set_n_basic_set(ConsequenceCondSet) >= MaxDisjunctsInDomain;
Johannes Doerfertb2885792016-04-26 09:20:41 +00001624
Michael Krusef7a4a942016-05-02 12:25:36 +00001625 if (!TooComplex) {
Johannes Doerfert15194912016-04-04 07:59:41 +00001626 AlternativeCondSet = isl_set_subtract(isl_set_copy(Domain),
1627 isl_set_copy(ConsequenceCondSet));
Michael Krusef7a4a942016-05-02 12:25:36 +00001628 TooComplex =
Tobias Grosser90411a92017-02-16 19:11:33 +00001629 isl_set_n_basic_set(AlternativeCondSet) >= MaxDisjunctsInDomain;
Johannes Doerfertb2885792016-04-26 09:20:41 +00001630 }
1631
Michael Krusef7a4a942016-05-02 12:25:36 +00001632 if (TooComplex) {
Eli Friedmane737fc12017-07-17 23:58:33 +00001633 S.invalidate(COMPLEXITY, TI ? TI->getDebugLoc() : DebugLoc(),
1634 TI ? TI->getParent() : nullptr /* BasicBlock */);
Johannes Doerfertb2885792016-04-26 09:20:41 +00001635 isl_set_free(AlternativeCondSet);
Johannes Doerfertb2885792016-04-26 09:20:41 +00001636 isl_set_free(ConsequenceCondSet);
Johannes Doerfert297c7202016-05-10 13:06:42 +00001637 return false;
Johannes Doerfert15194912016-04-04 07:59:41 +00001638 }
1639
1640 ConditionSets.push_back(ConsequenceCondSet);
1641 ConditionSets.push_back(isl_set_coalesce(AlternativeCondSet));
Johannes Doerfert297c7202016-05-10 13:06:42 +00001642
1643 return true;
Johannes Doerfert9b1f9c82015-10-11 13:21:03 +00001644}
1645
Tobias Grosserc80d6972016-09-02 06:33:33 +00001646/// Build the conditions sets for the terminator @p TI in the @p Domain.
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001647///
1648/// This will fill @p ConditionSets with the conditions under which control
1649/// will be moved from @p TI to its successors. Hence, @p ConditionSets will
1650/// have as many elements as @p TI has successors.
Tobias Grosseree457592017-09-24 09:25:30 +00001651bool buildConditionSets(Scop &S, BasicBlock *BB, TerminatorInst *TI, Loop *L,
1652 __isl_keep isl_set *Domain,
1653 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap,
1654 SmallVectorImpl<__isl_give isl_set *> &ConditionSets) {
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001655 if (SwitchInst *SI = dyn_cast<SwitchInst>(TI))
Michael Kruse476f8552017-06-29 12:47:41 +00001656 return buildConditionSets(S, BB, SI, L, Domain, InvalidDomainMap,
1657 ConditionSets);
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001658
1659 assert(isa<BranchInst>(TI) && "Terminator was neither branch nor switch.");
1660
1661 if (TI->getNumSuccessors() == 1) {
Johannes Doerfert96425c22015-08-30 21:13:53 +00001662 ConditionSets.push_back(isl_set_copy(Domain));
Johannes Doerfert297c7202016-05-10 13:06:42 +00001663 return true;
Johannes Doerfert96425c22015-08-30 21:13:53 +00001664 }
1665
Johannes Doerfert9a132f32015-09-28 09:33:22 +00001666 Value *Condition = getConditionFromTerminator(TI);
1667 assert(Condition && "No condition for Terminator");
Johannes Doerfert96425c22015-08-30 21:13:53 +00001668
Michael Kruse476f8552017-06-29 12:47:41 +00001669 return buildConditionSets(S, BB, Condition, TI, L, Domain, InvalidDomainMap,
1670 ConditionSets);
Johannes Doerfert96425c22015-08-30 21:13:53 +00001671}
1672
Michael Krused6e22082018-01-18 15:15:38 +00001673ScopStmt::ScopStmt(Scop &parent, Region &R, StringRef Name,
1674 Loop *SurroundingLoop,
Tobias Grosserbd15d132017-08-31 03:15:56 +00001675 std::vector<Instruction *> EntryBlockInstructions)
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001676 : Parent(parent), InvalidDomain(nullptr), Domain(nullptr), R(&R),
Michael Krused6e22082018-01-18 15:15:38 +00001677 Build(nullptr), BaseName(Name), SurroundingLoop(SurroundingLoop),
1678 Instructions(EntryBlockInstructions) {}
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001679
Michael Krused6e22082018-01-18 15:15:38 +00001680ScopStmt::ScopStmt(Scop &parent, BasicBlock &bb, StringRef Name,
1681 Loop *SurroundingLoop,
1682 std::vector<Instruction *> Instructions)
Johannes Doerferta3519512016-04-23 13:02:23 +00001683 : Parent(parent), InvalidDomain(nullptr), Domain(nullptr), BB(&bb),
Michael Krused6e22082018-01-18 15:15:38 +00001684 Build(nullptr), BaseName(Name), SurroundingLoop(SurroundingLoop),
1685 Instructions(Instructions) {}
Michael Krusecac948e2015-10-02 13:53:07 +00001686
Tobias Grosser85048ef2017-08-06 17:24:59 +00001687ScopStmt::ScopStmt(Scop &parent, isl::map SourceRel, isl::map TargetRel,
1688 isl::set NewDomain)
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001689 : Parent(parent), InvalidDomain(nullptr), Domain(NewDomain),
1690 Build(nullptr) {
Roman Gareevb3224ad2016-09-14 06:26:09 +00001691 BaseName = getIslCompatibleName("CopyStmt_", "",
1692 std::to_string(parent.getCopyStmtsNum()));
Tobias Grosser85048ef2017-08-06 17:24:59 +00001693 isl::id Id = isl::id::alloc(getIslCtx(), getBaseName(), this);
1694 Domain = Domain.set_tuple_id(Id);
1695 TargetRel = TargetRel.set_tuple_id(isl::dim::in, Id);
1696 auto *Access =
1697 new MemoryAccess(this, MemoryAccess::AccessType::MUST_WRITE, TargetRel);
Roman Gareevb3224ad2016-09-14 06:26:09 +00001698 parent.addAccessFunction(Access);
1699 addAccess(Access);
Tobias Grosser85048ef2017-08-06 17:24:59 +00001700 SourceRel = SourceRel.set_tuple_id(isl::dim::in, Id);
1701 Access = new MemoryAccess(this, MemoryAccess::AccessType::READ, SourceRel);
Roman Gareevb3224ad2016-09-14 06:26:09 +00001702 parent.addAccessFunction(Access);
1703 addAccess(Access);
1704}
1705
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001706ScopStmt::~ScopStmt() = default;
1707
Tobias Grossera9b5bba2017-08-06 16:11:53 +00001708std::string ScopStmt::getDomainStr() const { return Domain.to_str(); }
Tobias Grosser75805372011-04-29 06:27:02 +00001709
Tobias Grosser54839312015-04-21 11:37:25 +00001710std::string ScopStmt::getScheduleStr() const {
Tobias Grosser6ad16402017-08-06 17:45:28 +00001711 auto *S = getSchedule().release();
Roman Gareevb3224ad2016-09-14 06:26:09 +00001712 if (!S)
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001713 return {};
Tobias Grosser808cd692015-07-14 09:33:13 +00001714 auto Str = stringFromIslObj(S);
1715 isl_map_free(S);
1716 return Str;
Tobias Grosser75805372011-04-29 06:27:02 +00001717}
1718
Tobias Grosser2332fa32017-08-06 15:36:48 +00001719void ScopStmt::setInvalidDomain(isl::set ID) { InvalidDomain = ID; }
Johannes Doerfert7c013572016-04-12 09:57:34 +00001720
Michael Kruse375cb5f2016-02-24 22:08:24 +00001721BasicBlock *ScopStmt::getEntryBlock() const {
1722 if (isBlockStmt())
1723 return getBasicBlock();
1724 return getRegion()->getEntry();
1725}
1726
Tobias Grosserf567e1a2015-02-19 22:16:12 +00001727unsigned ScopStmt::getNumIterators() const { return NestLoops.size(); }
Tobias Grosser75805372011-04-29 06:27:02 +00001728
Tobias Grosser75805372011-04-29 06:27:02 +00001729const char *ScopStmt::getBaseName() const { return BaseName.c_str(); }
1730
Johannes Doerfert2b92a0e2016-05-10 14:00:57 +00001731Loop *ScopStmt::getLoopForDimension(unsigned Dimension) const {
Sebastian Pop860e0212013-02-15 21:26:44 +00001732 return NestLoops[Dimension];
Tobias Grosser75805372011-04-29 06:27:02 +00001733}
1734
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00001735isl::ctx ScopStmt::getIslCtx() const { return Parent.getIslCtx(); }
Tobias Grosser75805372011-04-29 06:27:02 +00001736
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001737isl::set ScopStmt::getDomain() const { return Domain; }
Tobias Grosserd5a7bfc2011-05-06 19:52:19 +00001738
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001739isl::space ScopStmt::getDomainSpace() const { return Domain.get_space(); }
Tobias Grosser78d8a3d2012-01-17 20:34:23 +00001740
Tobias Grosserdcf8d692017-08-06 16:39:52 +00001741isl::id ScopStmt::getDomainId() const { return Domain.get_tuple_id(); }
Tobias Grossercd95b772012-08-30 11:49:38 +00001742
Tobias Grosserd5fcbef2017-05-27 04:40:18 +00001743void ScopStmt::printInstructions(raw_ostream &OS) const {
1744 OS << "Instructions {\n";
1745
1746 for (Instruction *Inst : Instructions)
1747 OS.indent(16) << *Inst << "\n";
1748
Michael Krusee52ebd12017-07-22 16:44:39 +00001749 OS.indent(12) << "}\n";
Tobias Grosserd5fcbef2017-05-27 04:40:18 +00001750}
1751
Michael Krusecd4c9772017-07-21 15:35:53 +00001752void ScopStmt::print(raw_ostream &OS, bool PrintInstructions) const {
Tobias Grosser75805372011-04-29 06:27:02 +00001753 OS << "\t" << getBaseName() << "\n";
Tobias Grosser75805372011-04-29 06:27:02 +00001754 OS.indent(12) << "Domain :=\n";
1755
1756 if (Domain) {
1757 OS.indent(16) << getDomainStr() << ";\n";
1758 } else
1759 OS.indent(16) << "n/a\n";
1760
Tobias Grosser54839312015-04-21 11:37:25 +00001761 OS.indent(12) << "Schedule :=\n";
Tobias Grosser75805372011-04-29 06:27:02 +00001762
1763 if (Domain) {
Tobias Grosser54839312015-04-21 11:37:25 +00001764 OS.indent(16) << getScheduleStr() << ";\n";
Tobias Grosser75805372011-04-29 06:27:02 +00001765 } else
1766 OS.indent(16) << "n/a\n";
1767
Tobias Grosser083d3d32014-06-28 08:59:45 +00001768 for (MemoryAccess *Access : MemAccs)
1769 Access->print(OS);
Tobias Grosserd5fcbef2017-05-27 04:40:18 +00001770
Tobias Grosserbd15d132017-08-31 03:15:56 +00001771 if (PrintInstructions)
Tobias Grosserd5fcbef2017-05-27 04:40:18 +00001772 printInstructions(OS.indent(12));
Tobias Grosser75805372011-04-29 06:27:02 +00001773}
1774
Michael Kruse5d518462017-07-21 15:54:07 +00001775#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Michael Krusee1860132017-07-21 15:54:13 +00001776LLVM_DUMP_METHOD void ScopStmt::dump() const { print(dbgs(), true); }
Michael Kruse5d518462017-07-21 15:54:07 +00001777#endif
Tobias Grosser75805372011-04-29 06:27:02 +00001778
Michael Krusee60eca72017-05-11 22:56:12 +00001779void ScopStmt::removeAccessData(MemoryAccess *MA) {
1780 if (MA->isRead() && MA->isOriginalValueKind()) {
1781 bool Found = ValueReads.erase(MA->getAccessValue());
1782 (void)Found;
1783 assert(Found && "Expected access data not found");
1784 }
1785 if (MA->isWrite() && MA->isOriginalValueKind()) {
1786 bool Found = ValueWrites.erase(cast<Instruction>(MA->getAccessValue()));
1787 (void)Found;
1788 assert(Found && "Expected access data not found");
1789 }
1790 if (MA->isWrite() && MA->isOriginalAnyPHIKind()) {
1791 bool Found = PHIWrites.erase(cast<PHINode>(MA->getAccessInstruction()));
1792 (void)Found;
1793 assert(Found && "Expected access data not found");
1794 }
Michael Kruse3562f272017-07-20 16:47:57 +00001795 if (MA->isRead() && MA->isOriginalAnyPHIKind()) {
1796 bool Found = PHIReads.erase(cast<PHINode>(MA->getAccessInstruction()));
1797 (void)Found;
1798 assert(Found && "Expected access data not found");
1799 }
Michael Krusee60eca72017-05-11 22:56:12 +00001800}
1801
Michael Kruse10071822016-05-23 14:45:58 +00001802void ScopStmt::removeMemoryAccess(MemoryAccess *MA) {
Tobias Grosser4d5a9172017-01-14 20:25:44 +00001803 // Remove the memory accesses from this statement together with all scalar
1804 // accesses that were caused by it. MemoryKind::Value READs have no access
1805 // instruction, hence would not be removed by this function. However, it is
1806 // only used for invariant LoadInst accesses, its arguments are always affine,
1807 // hence synthesizable, and therefore there are no MemoryKind::Value READ
1808 // accesses to be removed.
Michael Kruse10071822016-05-23 14:45:58 +00001809 auto Predicate = [&](MemoryAccess *Acc) {
1810 return Acc->getAccessInstruction() == MA->getAccessInstruction();
1811 };
Michael Krusee60eca72017-05-11 22:56:12 +00001812 for (auto *MA : MemAccs) {
Michael Kruse8b805802017-07-19 17:11:25 +00001813 if (Predicate(MA)) {
Michael Krusee60eca72017-05-11 22:56:12 +00001814 removeAccessData(MA);
Michael Kruse8b805802017-07-19 17:11:25 +00001815 Parent.removeAccessData(MA);
1816 }
Michael Krusee60eca72017-05-11 22:56:12 +00001817 }
Michael Kruse10071822016-05-23 14:45:58 +00001818 MemAccs.erase(std::remove_if(MemAccs.begin(), MemAccs.end(), Predicate),
1819 MemAccs.end());
1820 InstructionToAccess.erase(MA->getAccessInstruction());
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00001821}
1822
Michael Kruse192e7f72018-04-09 23:13:05 +00001823void ScopStmt::removeSingleMemoryAccess(MemoryAccess *MA, bool AfterHoisting) {
1824 if (AfterHoisting) {
1825 auto MAIt = std::find(MemAccs.begin(), MemAccs.end(), MA);
1826 assert(MAIt != MemAccs.end());
1827 MemAccs.erase(MAIt);
Michael Kruse0446d812017-03-10 16:05:24 +00001828
Michael Kruse192e7f72018-04-09 23:13:05 +00001829 removeAccessData(MA);
1830 Parent.removeAccessData(MA);
1831 }
Michael Krusee60eca72017-05-11 22:56:12 +00001832
Michael Kruse0446d812017-03-10 16:05:24 +00001833 auto It = InstructionToAccess.find(MA->getAccessInstruction());
1834 if (It != InstructionToAccess.end()) {
1835 It->second.remove(MA);
1836 if (It->second.empty())
1837 InstructionToAccess.erase(MA->getAccessInstruction());
1838 }
1839}
1840
Michael Kruse07e8c362017-07-24 12:43:27 +00001841MemoryAccess *ScopStmt::ensureValueRead(Value *V) {
1842 MemoryAccess *Access = lookupInputAccessOf(V);
1843 if (Access)
1844 return Access;
1845
1846 ScopArrayInfo *SAI =
1847 Parent.getOrCreateScopArrayInfo(V, V->getType(), {}, MemoryKind::Value);
1848 Access = new MemoryAccess(this, nullptr, MemoryAccess::READ, V, V->getType(),
1849 true, {}, {}, V, MemoryKind::Value);
1850 Parent.addAccessFunction(Access);
1851 Access->buildAccessRelation(SAI);
1852 addAccess(Access);
1853 Parent.addAccessData(Access);
1854 return Access;
1855}
1856
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001857raw_ostream &polly::operator<<(raw_ostream &OS, const ScopStmt &S) {
1858 S.print(OS, PollyPrintInstructions);
1859 return OS;
Michael Krusecd4c9772017-07-21 15:35:53 +00001860}
1861
Tobias Grosser75805372011-04-29 06:27:02 +00001862//===----------------------------------------------------------------------===//
1863/// Scop class implement
Tobias Grosser60b54f12011-11-08 15:41:28 +00001864
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00001865void Scop::setContext(isl::set NewContext) {
1866 Context = NewContext.align_params(Context.get_space());
Tobias Grosserff9b54d2011-11-15 11:38:44 +00001867}
1868
Eli Friedman5e589ea2017-06-20 22:53:02 +00001869namespace {
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001870
Tobias Grosserc80d6972016-09-02 06:33:33 +00001871/// Remap parameter values but keep AddRecs valid wrt. invariant loads.
Johannes Doerfertd6fc0702015-11-03 16:47:58 +00001872struct SCEVSensitiveParameterRewriter
Tobias Grosser278f9e72016-11-26 17:58:40 +00001873 : public SCEVRewriteVisitor<SCEVSensitiveParameterRewriter> {
Tobias Grosserb5563c62017-08-03 13:51:15 +00001874 const ValueToValueMap &VMap;
Johannes Doerfertd6fc0702015-11-03 16:47:58 +00001875
1876public:
Tobias Grosserb5563c62017-08-03 13:51:15 +00001877 SCEVSensitiveParameterRewriter(const ValueToValueMap &VMap,
1878 ScalarEvolution &SE)
Tobias Grosser278f9e72016-11-26 17:58:40 +00001879 : SCEVRewriteVisitor(SE), VMap(VMap) {}
Johannes Doerfertd6fc0702015-11-03 16:47:58 +00001880
1881 static const SCEV *rewrite(const SCEV *E, ScalarEvolution &SE,
Tobias Grosserb5563c62017-08-03 13:51:15 +00001882 const ValueToValueMap &VMap) {
Johannes Doerfertd6fc0702015-11-03 16:47:58 +00001883 SCEVSensitiveParameterRewriter SSPR(VMap, SE);
1884 return SSPR.visit(E);
1885 }
1886
Johannes Doerfertd6fc0702015-11-03 16:47:58 +00001887 const SCEV *visitAddRecExpr(const SCEVAddRecExpr *E) {
1888 auto *Start = visit(E->getStart());
1889 auto *AddRec = SE.getAddRecExpr(SE.getConstant(E->getType(), 0),
1890 visit(E->getStepRecurrence(SE)),
1891 E->getLoop(), SCEV::FlagAnyWrap);
1892 return SE.getAddExpr(Start, AddRec);
1893 }
1894
1895 const SCEV *visitUnknown(const SCEVUnknown *E) {
1896 if (auto *NewValue = VMap.lookup(E->getValue()))
1897 return SE.getUnknown(NewValue);
1898 return E;
1899 }
1900};
1901
Eli Friedman5e589ea2017-06-20 22:53:02 +00001902/// Check whether we should remap a SCEV expression.
1903struct SCEVFindInsideScop : public SCEVTraversal<SCEVFindInsideScop> {
Tobias Grosserb5563c62017-08-03 13:51:15 +00001904 const ValueToValueMap &VMap;
Eli Friedman5e589ea2017-06-20 22:53:02 +00001905 bool FoundInside = false;
Tobias Grosserb5563c62017-08-03 13:51:15 +00001906 const Scop *S;
Eli Friedman5e589ea2017-06-20 22:53:02 +00001907
1908public:
Tobias Grosserb5563c62017-08-03 13:51:15 +00001909 SCEVFindInsideScop(const ValueToValueMap &VMap, ScalarEvolution &SE,
1910 const Scop *S)
Eli Friedman5e589ea2017-06-20 22:53:02 +00001911 : SCEVTraversal(*this), VMap(VMap), S(S) {}
1912
1913 static bool hasVariant(const SCEV *E, ScalarEvolution &SE,
Tobias Grosserb5563c62017-08-03 13:51:15 +00001914 const ValueToValueMap &VMap, const Scop *S) {
Eli Friedman5e589ea2017-06-20 22:53:02 +00001915 SCEVFindInsideScop SFIS(VMap, SE, S);
1916 SFIS.visitAll(E);
1917 return SFIS.FoundInside;
1918 }
1919
1920 bool follow(const SCEV *E) {
1921 if (auto *AddRec = dyn_cast<SCEVAddRecExpr>(E)) {
1922 FoundInside |= S->getRegion().contains(AddRec->getLoop());
1923 } else if (auto *Unknown = dyn_cast<SCEVUnknown>(E)) {
1924 if (Instruction *I = dyn_cast<Instruction>(Unknown->getValue()))
1925 FoundInside |= S->getRegion().contains(I) && !VMap.count(I);
1926 }
1927 return !FoundInside;
1928 }
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001929
Eli Friedman5e589ea2017-06-20 22:53:02 +00001930 bool isDone() { return FoundInside; }
1931};
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00001932} // end anonymous namespace
Eli Friedman5e589ea2017-06-20 22:53:02 +00001933
Tobias Grosserb5563c62017-08-03 13:51:15 +00001934const SCEV *Scop::getRepresentingInvariantLoadSCEV(const SCEV *E) const {
Eli Friedman5e589ea2017-06-20 22:53:02 +00001935 // Check whether it makes sense to rewrite the SCEV. (ScalarEvolution
1936 // doesn't like addition between an AddRec and an expression that
1937 // doesn't have a dominance relationship with it.)
1938 if (SCEVFindInsideScop::hasVariant(E, *SE, InvEquivClassVMap, this))
1939 return E;
1940
1941 // Rewrite SCEV.
1942 return SCEVSensitiveParameterRewriter::rewrite(E, *SE, InvEquivClassVMap);
Johannes Doerfert697fdf82015-10-09 17:12:26 +00001943}
1944
Tobias Grosserf5e7e602017-05-27 15:18:46 +00001945// This table of function names is used to translate parameter names in more
1946// human-readable names. This makes it easier to interpret Polly analysis
1947// results.
1948StringMap<std::string> KnownNames = {
1949 {"_Z13get_global_idj", "global_id"},
1950 {"_Z12get_local_idj", "local_id"},
1951 {"_Z15get_global_sizej", "global_size"},
1952 {"_Z14get_local_sizej", "local_size"},
1953 {"_Z12get_work_dimv", "work_dim"},
1954 {"_Z17get_global_offsetj", "global_offset"},
1955 {"_Z12get_group_idj", "group_id"},
1956 {"_Z14get_num_groupsj", "num_groups"},
1957};
1958
1959static std::string getCallParamName(CallInst *Call) {
1960 std::string Result;
1961 raw_string_ostream OS(Result);
1962 std::string Name = Call->getCalledFunction()->getName();
1963
1964 auto Iterator = KnownNames.find(Name);
1965 if (Iterator != KnownNames.end())
Tobias Grosserdff902f2017-06-01 12:46:51 +00001966 Name = "__" + Iterator->getValue();
Tobias Grosserf5e7e602017-05-27 15:18:46 +00001967 OS << Name;
1968 for (auto &Operand : Call->arg_operands()) {
1969 ConstantInt *Op = cast<ConstantInt>(&Operand);
1970 OS << "_" << Op->getValue();
1971 }
1972 OS.flush();
1973 return Result;
1974}
1975
Johannes Doerfert4e3bb7b2016-04-25 16:15:13 +00001976void Scop::createParameterId(const SCEV *Parameter) {
1977 assert(Parameters.count(Parameter));
1978 assert(!ParameterIds.count(Parameter));
Johannes Doerfert697fdf82015-10-09 17:12:26 +00001979
Johannes Doerfert4e3bb7b2016-04-25 16:15:13 +00001980 std::string ParameterName = "p_" + std::to_string(getNumParams() - 1);
Tobias Grosserb39c96a2015-11-17 11:54:51 +00001981
Tobias Grosserf5e7e602017-05-27 15:18:46 +00001982 if (const SCEVUnknown *ValueParameter = dyn_cast<SCEVUnknown>(Parameter)) {
1983 Value *Val = ValueParameter->getValue();
1984 CallInst *Call = dyn_cast<CallInst>(Val);
Tobias Grosser8f99c162011-11-15 11:38:55 +00001985
Tobias Grosserf5e7e602017-05-27 15:18:46 +00001986 if (Call && isConstCall(Call)) {
1987 ParameterName = getCallParamName(Call);
1988 } else if (UseInstructionNames) {
Tobias Grossere2ccc3f2017-05-03 20:08:52 +00001989 // If this parameter references a specific Value and this value has a name
1990 // we use this name as it is likely to be unique and more useful than just
1991 // a number.
1992 if (Val->hasName())
1993 ParameterName = Val->getName();
1994 else if (LoadInst *LI = dyn_cast<LoadInst>(Val)) {
1995 auto *LoadOrigin = LI->getPointerOperand()->stripInBoundsOffsets();
1996 if (LoadOrigin->hasName()) {
1997 ParameterName += "_loaded_from_";
1998 ParameterName +=
1999 LI->getPointerOperand()->stripInBoundsOffsets()->getName();
2000 }
Tobias Grosserb39c96a2015-11-17 11:54:51 +00002001 }
2002 }
Tobias Grosser8f99c162011-11-15 11:38:55 +00002003
Tobias Grossere2ccc3f2017-05-03 20:08:52 +00002004 ParameterName = getIslCompatibleName("", ParameterName, "");
2005 }
Tobias Grosser2ea7c6e2016-07-01 13:40:28 +00002006
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00002007 isl::id Id = isl::id::alloc(getIslCtx(), ParameterName,
Tobias Grosser6e78cc62017-08-13 17:54:51 +00002008 const_cast<void *>((const void *)Parameter));
Johannes Doerfert4e3bb7b2016-04-25 16:15:13 +00002009 ParameterIds[Parameter] = Id;
2010}
2011
2012void Scop::addParams(const ParameterSetTy &NewParameters) {
2013 for (const SCEV *Parameter : NewParameters) {
2014 // Normalize the SCEV to get the representing element for an invariant load.
2015 Parameter = extractConstantFactor(Parameter, *SE).second;
2016 Parameter = getRepresentingInvariantLoadSCEV(Parameter);
2017
2018 if (Parameters.insert(Parameter))
2019 createParameterId(Parameter);
2020 }
2021}
2022
Tobias Grosser9a635702017-08-06 19:31:27 +00002023isl::id Scop::getIdForParam(const SCEV *Parameter) const {
Johannes Doerfert4e3bb7b2016-04-25 16:15:13 +00002024 // Normalize the SCEV to get the representing element for an invariant load.
2025 Parameter = getRepresentingInvariantLoadSCEV(Parameter);
Tobias Grosser6e78cc62017-08-13 17:54:51 +00002026 return ParameterIds.lookup(Parameter);
Tobias Grosser76c2e322011-11-07 12:58:59 +00002027}
Tobias Grosser75805372011-04-29 06:27:02 +00002028
Tobias Grosser232fdad2017-08-06 20:19:26 +00002029isl::set Scop::addNonEmptyDomainConstraints(isl::set C) const {
Tobias Grosser31df6f32017-08-06 21:42:25 +00002030 isl_set *DomainContext = isl_union_set_params(getDomains().release());
Tobias Grosser232fdad2017-08-06 20:19:26 +00002031 return isl::manage(isl_set_intersect_params(C.release(), DomainContext));
Johannes Doerfert5d5b3062015-08-20 18:06:30 +00002032}
2033
Johannes Doerferte0b08072016-05-23 12:43:44 +00002034bool Scop::isDominatedBy(const DominatorTree &DT, BasicBlock *BB) const {
2035 return DT.dominates(BB, getEntry());
2036}
2037
Michael Kruse476f8552017-06-29 12:47:41 +00002038void Scop::addUserAssumptions(
2039 AssumptionCache &AC, DominatorTree &DT, LoopInfo &LI,
Tobias Grosser13acbb92017-07-15 09:01:31 +00002040 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap) {
Michael Kruse89b1f942017-03-17 13:56:53 +00002041 for (auto &Assumption : AC.assumptions()) {
2042 auto *CI = dyn_cast_or_null<CallInst>(Assumption);
2043 if (!CI || CI->getNumArgOperands() != 1)
Johannes Doerfert2af10e22015-11-12 03:25:01 +00002044 continue;
Johannes Doerfert2b92a0e2016-05-10 14:00:57 +00002045
Michael Kruse89b1f942017-03-17 13:56:53 +00002046 bool InScop = contains(CI);
2047 if (!InScop && !isDominatedBy(DT, CI->getParent()))
2048 continue;
Johannes Doerfert2af10e22015-11-12 03:25:01 +00002049
Michael Kruse89b1f942017-03-17 13:56:53 +00002050 auto *L = LI.getLoopFor(CI->getParent());
2051 auto *Val = CI->getArgOperand(0);
2052 ParameterSetTy DetectedParams;
2053 if (!isAffineConstraint(Val, &R, L, *SE, DetectedParams)) {
Eli Friedmane737fc12017-07-17 23:58:33 +00002054 ORE.emit(
2055 OptimizationRemarkAnalysis(DEBUG_TYPE, "IgnoreUserAssumption", CI)
2056 << "Non-affine user assumption ignored.");
Michael Kruse89b1f942017-03-17 13:56:53 +00002057 continue;
Michael Kruse7037fde2016-12-15 09:25:14 +00002058 }
Michael Kruse89b1f942017-03-17 13:56:53 +00002059
2060 // Collect all newly introduced parameters.
2061 ParameterSetTy NewParams;
2062 for (auto *Param : DetectedParams) {
2063 Param = extractConstantFactor(Param, *SE).second;
2064 Param = getRepresentingInvariantLoadSCEV(Param);
2065 if (Parameters.count(Param))
2066 continue;
2067 NewParams.insert(Param);
2068 }
2069
2070 SmallVector<isl_set *, 2> ConditionSets;
2071 auto *TI = InScop ? CI->getParent()->getTerminator() : nullptr;
Michael Kruse1df1aac2017-07-26 13:25:28 +00002072 BasicBlock *BB = InScop ? CI->getParent() : getRegion().getEntry();
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002073 auto *Dom = InScop ? DomainMap[BB].copy() : Context.copy();
Michael Kruse1df1aac2017-07-26 13:25:28 +00002074 assert(Dom && "Cannot propagate a nullptr.");
2075 bool Valid = buildConditionSets(*this, BB, Val, TI, L, Dom,
2076 InvalidDomainMap, ConditionSets);
Michael Kruse89b1f942017-03-17 13:56:53 +00002077 isl_set_free(Dom);
2078
2079 if (!Valid)
2080 continue;
2081
2082 isl_set *AssumptionCtx = nullptr;
2083 if (InScop) {
2084 AssumptionCtx = isl_set_complement(isl_set_params(ConditionSets[1]));
2085 isl_set_free(ConditionSets[0]);
2086 } else {
2087 AssumptionCtx = isl_set_complement(ConditionSets[1]);
2088 AssumptionCtx = isl_set_intersect(AssumptionCtx, ConditionSets[0]);
2089 }
2090
2091 // Project out newly introduced parameters as they are not otherwise useful.
2092 if (!NewParams.empty()) {
2093 for (unsigned u = 0; u < isl_set_n_param(AssumptionCtx); u++) {
2094 auto *Id = isl_set_get_dim_id(AssumptionCtx, isl_dim_param, u);
2095 auto *Param = static_cast<const SCEV *>(isl_id_get_user(Id));
2096 isl_id_free(Id);
2097
2098 if (!NewParams.count(Param))
2099 continue;
2100
2101 AssumptionCtx =
2102 isl_set_project_out(AssumptionCtx, isl_dim_param, u--, 1);
2103 }
2104 }
Eli Friedmane737fc12017-07-17 23:58:33 +00002105 ORE.emit(OptimizationRemarkAnalysis(DEBUG_TYPE, "UserAssumption", CI)
2106 << "Use user assumption: " << stringFromIslObj(AssumptionCtx));
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002107 Context = Context.intersect(isl::manage(AssumptionCtx));
Johannes Doerfert2af10e22015-11-12 03:25:01 +00002108 }
2109}
2110
Tobias Grosser8a9c2352015-08-16 10:19:29 +00002111void Scop::addUserContext() {
2112 if (UserContextStr.empty())
2113 return;
2114
Hongbin Zheng8831eb72016-02-17 15:49:21 +00002115 isl_set *UserContext =
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002116 isl_set_read_from_str(getIslCtx().get(), UserContextStr.c_str());
Tobias Grosserb65ccc42017-08-06 20:11:59 +00002117 isl_space *Space = getParamSpace().release();
Tobias Grosser8a9c2352015-08-16 10:19:29 +00002118 if (isl_space_dim(Space, isl_dim_param) !=
2119 isl_set_dim(UserContext, isl_dim_param)) {
2120 auto SpaceStr = isl_space_to_str(Space);
2121 errs() << "Error: the context provided in -polly-context has not the same "
2122 << "number of dimensions than the computed context. Due to this "
2123 << "mismatch, the -polly-context option is ignored. Please provide "
2124 << "the context in the parameter space: " << SpaceStr << ".\n";
2125 free(SpaceStr);
2126 isl_set_free(UserContext);
2127 isl_space_free(Space);
2128 return;
2129 }
2130
2131 for (unsigned i = 0; i < isl_space_dim(Space, isl_dim_param); i++) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002132 std::string NameContext = Context.get_dim_name(isl::dim::param, i);
2133 std::string NameUserContext =
2134 isl_set_get_dim_name(UserContext, isl_dim_param, i);
Tobias Grosser8a9c2352015-08-16 10:19:29 +00002135
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002136 if (NameContext != NameUserContext) {
Tobias Grosser8a9c2352015-08-16 10:19:29 +00002137 auto SpaceStr = isl_space_to_str(Space);
2138 errs() << "Error: the name of dimension " << i
2139 << " provided in -polly-context "
2140 << "is '" << NameUserContext << "', but the name in the computed "
2141 << "context is '" << NameContext
2142 << "'. Due to this name mismatch, "
2143 << "the -polly-context option is ignored. Please provide "
2144 << "the context in the parameter space: " << SpaceStr << ".\n";
2145 free(SpaceStr);
2146 isl_set_free(UserContext);
2147 isl_space_free(Space);
2148 return;
2149 }
2150
2151 UserContext =
2152 isl_set_set_dim_id(UserContext, isl_dim_param, i,
2153 isl_space_get_dim_id(Space, isl_dim_param, i));
2154 }
2155
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002156 Context = Context.intersect(isl::manage(UserContext));
Tobias Grosser8a9c2352015-08-16 10:19:29 +00002157 isl_space_free(Space);
2158}
2159
Johannes Doerfertffd222f2016-05-19 12:34:57 +00002160void Scop::buildInvariantEquivalenceClasses() {
Johannes Doerfert96e54712016-02-07 17:30:13 +00002161 DenseMap<std::pair<const SCEV *, Type *>, LoadInst *> EquivClasses;
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00002162
Johannes Doerfertffd222f2016-05-19 12:34:57 +00002163 const InvariantLoadsSetTy &RIL = getRequiredInvariantLoads();
Johannes Doerfert697fdf82015-10-09 17:12:26 +00002164 for (LoadInst *LInst : RIL) {
2165 const SCEV *PointerSCEV = SE->getSCEV(LInst->getPointerOperand());
2166
Johannes Doerfert96e54712016-02-07 17:30:13 +00002167 Type *Ty = LInst->getType();
2168 LoadInst *&ClassRep = EquivClasses[std::make_pair(PointerSCEV, Ty)];
Johannes Doerfertfc4bfc42015-11-11 04:30:07 +00002169 if (ClassRep) {
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00002170 InvEquivClassVMap[LInst] = ClassRep;
Johannes Doerfertfc4bfc42015-11-11 04:30:07 +00002171 continue;
2172 }
2173
2174 ClassRep = LInst;
Tobias Grosser4e2d9c42016-07-11 12:15:10 +00002175 InvariantEquivClasses.emplace_back(
2176 InvariantEquivClassTy{PointerSCEV, MemoryAccessList(), nullptr, Ty});
Johannes Doerfert697fdf82015-10-09 17:12:26 +00002177 }
2178}
2179
Tobias Grosser6be480c2011-11-08 15:41:13 +00002180void Scop::buildContext() {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002181 isl::space Space = isl::space::params_alloc(getIslCtx(), 0);
2182 Context = isl::set::universe(Space);
2183 InvalidContext = isl::set::empty(Space);
2184 AssumedContext = isl::set::universe(Space);
Tobias Grosser0e27e242011-10-06 00:03:48 +00002185}
2186
Tobias Grosser18daaca2012-05-22 10:47:27 +00002187void Scop::addParameterBounds() {
Johannes Doerfert4e3bb7b2016-04-25 16:15:13 +00002188 unsigned PDim = 0;
2189 for (auto *Parameter : Parameters) {
2190 ConstantRange SRange = SE->getSignedRange(Parameter);
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002191 Context = addRangeBoundsToSet(Context, SRange, PDim++, isl::dim::param);
Tobias Grosser18daaca2012-05-22 10:47:27 +00002192 }
2193}
2194
Tobias Grosserb5563c62017-08-03 13:51:15 +00002195static std::vector<isl::id> getFortranArrayIds(Scop::array_range Arrays) {
2196 std::vector<isl::id> OutermostSizeIds;
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00002197 for (auto Array : Arrays) {
2198 // To check if an array is a Fortran array, we check if it has a isl_pw_aff
2199 // for its outermost dimension. Fortran arrays will have this since the
2200 // outermost dimension size can be picked up from their runtime description.
2201 // TODO: actually need to check if it has a FAD, but for now this works.
2202 if (Array->getNumberOfDimensions() > 0) {
Tobias Grosserb5563c62017-08-03 13:51:15 +00002203 isl::pw_aff PwAff = Array->getDimensionSizePw(0);
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00002204 if (!PwAff)
2205 continue;
2206
Tobias Grosserb5563c62017-08-03 13:51:15 +00002207 isl::id Id =
2208 isl::manage(isl_pw_aff_get_dim_id(PwAff.get(), isl_dim_param, 0));
2209 assert(!Id.is_null() &&
2210 "Invalid Id for PwAff expression in Fortran array");
2211 Id.dump();
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00002212 OutermostSizeIds.push_back(Id);
2213 }
2214 }
Tobias Grosserb5563c62017-08-03 13:51:15 +00002215 return OutermostSizeIds;
2216}
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00002217
Tobias Grosserb5563c62017-08-03 13:51:15 +00002218// The FORTRAN array size parameters are known to be non-negative.
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002219static isl::set boundFortranArrayParams(isl::set Context,
Tobias Grosserb5563c62017-08-03 13:51:15 +00002220 Scop::array_range Arrays) {
2221 std::vector<isl::id> OutermostSizeIds;
2222 OutermostSizeIds = getFortranArrayIds(Arrays);
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00002223
Tobias Grosserb5563c62017-08-03 13:51:15 +00002224 for (isl::id Id : OutermostSizeIds) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002225 int dim = Context.find_dim_by_id(isl::dim::param, Id);
2226 Context = Context.lower_bound_si(isl::dim::param, dim, 0);
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00002227 }
2228
2229 return Context;
2230}
2231
Tobias Grosser8cae72f2011-11-08 15:41:08 +00002232void Scop::realignParams() {
Tobias Grosser5842dee2017-03-17 13:00:53 +00002233 if (PollyIgnoreParamBounds)
2234 return;
2235
Tobias Grosser6be480c2011-11-08 15:41:13 +00002236 // Add all parameters into a common model.
Tobias Grosserb5563c62017-08-03 13:51:15 +00002237 isl::space Space = getFullParamSpace();
Tobias Grosser6be480c2011-11-08 15:41:13 +00002238
2239 // Align the parameters of all data structures to the model.
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002240 Context = Context.align_params(Space);
Tobias Grosser6be480c2011-11-08 15:41:13 +00002241
Tobias Grosserb5563c62017-08-03 13:51:15 +00002242 // Bound the size of the fortran array dimensions.
2243 Context = boundFortranArrayParams(Context, arrays());
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00002244
Johannes Doerferta60ad842016-05-10 12:18:22 +00002245 // As all parameters are known add bounds to them.
2246 addParameterBounds();
2247
Tobias Grosser7c3bad52015-05-27 05:16:57 +00002248 for (ScopStmt &Stmt : *this)
2249 Stmt.realignParams();
Johannes Doerfert06445ded2016-06-02 15:07:41 +00002250 // Simplify the schedule according to the context too.
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002251 Schedule = Schedule.gist_domain_params(getContext());
Tobias Grosser8cae72f2011-11-08 15:41:08 +00002252}
2253
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002254static isl::set simplifyAssumptionContext(isl::set AssumptionContext,
2255 const Scop &S) {
Tobias Grossercdbe5c92017-01-06 17:30:34 +00002256 // If we have modeled all blocks in the SCoP that have side effects we can
2257 // simplify the context with the constraints that are needed for anything to
2258 // be executed at all. However, if we have error blocks in the SCoP we already
2259 // assumed some parameter combinations cannot occur and removed them from the
Johannes Doerfertf85ad042015-11-08 20:16:39 +00002260 // domains, thus we cannot use the remaining domain to simplify the
2261 // assumptions.
2262 if (!S.hasErrorBlock()) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002263 auto DomainParameters = S.getDomains().params();
2264 AssumptionContext = AssumptionContext.gist_params(DomainParameters);
Johannes Doerfertf85ad042015-11-08 20:16:39 +00002265 }
2266
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002267 AssumptionContext = AssumptionContext.gist_params(S.getContext());
Johannes Doerfert883f8c12015-09-15 22:52:53 +00002268 return AssumptionContext;
2269}
2270
2271void Scop::simplifyContexts() {
Tobias Grosser5e6813d2014-07-02 17:47:48 +00002272 // The parameter constraints of the iteration domains give us a set of
2273 // constraints that need to hold for all cases where at least a single
2274 // statement iteration is executed in the whole scop. We now simplify the
2275 // assumed context under the assumption that such constraints hold and at
2276 // least a single statement iteration is executed. For cases where no
2277 // statement instances are executed, the assumptions we have taken about
2278 // the executed code do not matter and can be changed.
2279 //
2280 // WARNING: This only holds if the assumptions we have taken do not reduce
2281 // the set of statement instances that are executed. Otherwise we
2282 // may run into a case where the iteration domains suggest that
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00002283 // for a certain set of parameter constraints no code is executed,
Tobias Grosser5e6813d2014-07-02 17:47:48 +00002284 // but in the original program some computation would have been
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00002285 // performed. In such a case, modifying the run-time conditions and
2286 // possibly influencing the run-time check may cause certain scops
Tobias Grosser5e6813d2014-07-02 17:47:48 +00002287 // to not be executed.
2288 //
2289 // Example:
2290 //
2291 // When delinearizing the following code:
2292 //
2293 // for (long i = 0; i < 100; i++)
2294 // for (long j = 0; j < m; j++)
2295 // A[i+p][j] = 1.0;
2296 //
2297 // we assume that the condition m <= 0 or (m >= 1 and p >= 0) holds as
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00002298 // otherwise we would access out of bound data. Now, knowing that code is
Tobias Grosser5e6813d2014-07-02 17:47:48 +00002299 // only executed for the case m >= 0, it is sufficient to assume p >= 0.
Johannes Doerfert883f8c12015-09-15 22:52:53 +00002300 AssumedContext = simplifyAssumptionContext(AssumedContext, *this);
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002301 InvalidContext = InvalidContext.align_params(getParamSpace());
Tobias Grosser5e6813d2014-07-02 17:47:48 +00002302}
2303
Tobias Grosserc80d6972016-09-02 06:33:33 +00002304/// Add the minimal/maximal access in @p Set to @p User.
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002305static isl::stat
2306buildMinMaxAccess(isl::set Set, Scop::MinMaxVectorTy &MinMaxAccesses, Scop &S) {
2307 isl::pw_multi_aff MinPMA, MaxPMA;
2308 isl::pw_aff LastDimAff;
2309 isl::aff OneAff;
Johannes Doerfertb164c792014-09-18 11:17:17 +00002310 unsigned Pos;
2311
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002312 Set = Set.remove_divs();
Michael Krusee3300712018-05-09 16:23:56 +00002313 polly::simplify(Set);
Johannes Doerfert6296d952016-04-22 11:38:19 +00002314
Michael Krusee3300712018-05-09 16:23:56 +00002315 if (isl_set_n_basic_set(Set.get()) > RunTimeChecksMaxAccessDisjuncts)
2316 Set = Set.simple_hull();
Johannes Doerfert6296d952016-04-22 11:38:19 +00002317
Johannes Doerfert9143d672014-09-27 11:02:39 +00002318 // Restrict the number of parameters involved in the access as the lexmin/
2319 // lexmax computation will take too long if this number is high.
2320 //
2321 // Experiments with a simple test case using an i7 4800MQ:
2322 //
2323 // #Parameters involved | Time (in sec)
2324 // 6 | 0.01
2325 // 7 | 0.04
2326 // 8 | 0.12
2327 // 9 | 0.40
2328 // 10 | 1.54
2329 // 11 | 6.78
2330 // 12 | 30.38
2331 //
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002332 if (isl_set_n_param(Set.get()) > RunTimeChecksMaxParameters) {
Johannes Doerfert9143d672014-09-27 11:02:39 +00002333 unsigned InvolvedParams = 0;
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002334 for (unsigned u = 0, e = isl_set_n_param(Set.get()); u < e; u++)
2335 if (Set.involves_dims(isl::dim::param, u, 1))
Johannes Doerfert9143d672014-09-27 11:02:39 +00002336 InvolvedParams++;
2337
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002338 if (InvolvedParams > RunTimeChecksMaxParameters)
2339 return isl::stat::error;
Johannes Doerfert9143d672014-09-27 11:02:39 +00002340 }
2341
Tobias Grosser57a1d362017-06-23 08:05:27 +00002342 MinPMA = Set.lexmin_pw_multi_aff();
2343 MaxPMA = Set.lexmax_pw_multi_aff();
Tobias Grosser45e9fd12017-05-19 03:45:00 +00002344
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002345 MinPMA = MinPMA.coalesce();
2346 MaxPMA = MaxPMA.coalesce();
Johannes Doerfert219b20e2014-10-07 14:37:59 +00002347
Johannes Doerfertb164c792014-09-18 11:17:17 +00002348 // Adjust the last dimension of the maximal access by one as we want to
2349 // enclose the accessed memory region by MinPMA and MaxPMA. The pointer
2350 // we test during code generation might now point after the end of the
2351 // allocated array but we will never dereference it anyway.
Michael Krusee3300712018-05-09 16:23:56 +00002352 assert((!MaxPMA || MaxPMA.dim(isl::dim::out)) &&
2353 "Assumed at least one output dimension");
2354
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002355 Pos = MaxPMA.dim(isl::dim::out) - 1;
2356 LastDimAff = MaxPMA.get_pw_aff(Pos);
2357 OneAff = isl::aff(isl::local_space(LastDimAff.get_domain_space()));
2358 OneAff = OneAff.add_constant_si(1);
2359 LastDimAff = LastDimAff.add(OneAff);
2360 MaxPMA = MaxPMA.set_pw_aff(Pos, LastDimAff);
Johannes Doerfertb164c792014-09-18 11:17:17 +00002361
Michael Krusee3300712018-05-09 16:23:56 +00002362 if (!MinPMA || !MaxPMA)
2363 return isl::stat::error;
2364
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002365 MinMaxAccesses.push_back(std::make_pair(MinPMA, MaxPMA));
Johannes Doerfertb164c792014-09-18 11:17:17 +00002366
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002367 return isl::stat::ok;
Johannes Doerfertb164c792014-09-18 11:17:17 +00002368}
2369
Johannes Doerferteeab05a2014-10-01 12:42:37 +00002370static __isl_give isl_set *getAccessDomain(MemoryAccess *MA) {
Tobias Grosserdcf8d692017-08-06 16:39:52 +00002371 isl_set *Domain = MA->getStatement()->getDomain().release();
Johannes Doerferteeab05a2014-10-01 12:42:37 +00002372 Domain = isl_set_project_out(Domain, isl_dim_set, 0, isl_set_n_dim(Domain));
2373 return isl_set_reset_tuple_id(Domain);
2374}
2375
Tobias Grosserc80d6972016-09-02 06:33:33 +00002376/// Wrapper function to calculate minimal/maximal accesses to each array.
Tobias Grossere9522232017-01-16 15:49:04 +00002377static bool calculateMinMaxAccess(Scop::AliasGroupTy AliasGroup, Scop &S,
Johannes Doerfert210b09a2015-07-26 13:14:38 +00002378 Scop::MinMaxVectorTy &MinMaxAccesses) {
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002379 MinMaxAccesses.reserve(AliasGroup.size());
Tobias Grossere9522232017-01-16 15:49:04 +00002380
Tobias Grosser31df6f32017-08-06 21:42:25 +00002381 isl::union_set Domains = S.getDomains();
Tobias Grosserb65ccc42017-08-06 20:11:59 +00002382 isl::union_map Accesses = isl::union_map::empty(S.getParamSpace());
Tobias Grossere9522232017-01-16 15:49:04 +00002383
2384 for (MemoryAccess *MA : AliasGroup)
Tobias Grosserd3d3d6b2018-04-29 00:28:26 +00002385 Accesses = Accesses.add_map(MA->getAccessRelation());
Tobias Grossere9522232017-01-16 15:49:04 +00002386
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002387 Accesses = Accesses.intersect_domain(Domains);
2388 isl::union_set Locations = Accesses.range();
Tobias Grosser8f23fb82017-06-23 08:05:20 +00002389
2390 auto Lambda = [&MinMaxAccesses, &S](isl::set Set) -> isl::stat {
2391 return buildMinMaxAccess(Set, MinMaxAccesses, S);
2392 };
2393 return Locations.foreach_set(Lambda) == isl::stat::ok;
Johannes Doerfert338b42c2015-07-23 17:04:54 +00002394}
2395
Tobias Grosserc80d6972016-09-02 06:33:33 +00002396/// Helper to treat non-affine regions and basic blocks the same.
Johannes Doerfert96425c22015-08-30 21:13:53 +00002397///
2398///{
2399
Tobias Grosserc80d6972016-09-02 06:33:33 +00002400/// Return the block that is the representing block for @p RN.
Johannes Doerfert96425c22015-08-30 21:13:53 +00002401static inline BasicBlock *getRegionNodeBasicBlock(RegionNode *RN) {
2402 return RN->isSubRegion() ? RN->getNodeAs<Region>()->getEntry()
2403 : RN->getNodeAs<BasicBlock>();
2404}
2405
Tobias Grosserc80d6972016-09-02 06:33:33 +00002406/// Return the @p idx'th block that is executed after @p RN.
Johannes Doerfert9a132f32015-09-28 09:33:22 +00002407static inline BasicBlock *
2408getRegionNodeSuccessor(RegionNode *RN, TerminatorInst *TI, unsigned idx) {
Johannes Doerfert96425c22015-08-30 21:13:53 +00002409 if (RN->isSubRegion()) {
2410 assert(idx == 0);
2411 return RN->getNodeAs<Region>()->getExit();
2412 }
Johannes Doerfert9a132f32015-09-28 09:33:22 +00002413 return TI->getSuccessor(idx);
Johannes Doerfert96425c22015-08-30 21:13:53 +00002414}
2415
Tobias Grosserc80d6972016-09-02 06:33:33 +00002416/// Return the smallest loop surrounding @p RN.
Johannes Doerfert96425c22015-08-30 21:13:53 +00002417static inline Loop *getRegionNodeLoop(RegionNode *RN, LoopInfo &LI) {
Tobias Grosserce69e7b2017-03-07 16:17:55 +00002418 if (!RN->isSubRegion()) {
2419 BasicBlock *BB = RN->getNodeAs<BasicBlock>();
2420 Loop *L = LI.getLoopFor(BB);
2421
2422 // Unreachable statements are not considered to belong to a LLVM loop, as
2423 // they are not part of an actual loop in the control flow graph.
2424 // Nevertheless, we handle certain unreachable statements that are common
2425 // when modeling run-time bounds checks as being part of the loop to be
2426 // able to model them and to later eliminate the run-time bounds checks.
2427 //
2428 // Specifically, for basic blocks that terminate in an unreachable and
Michael Krusea6d48f52017-06-08 12:06:15 +00002429 // where the immediate predecessor is part of a loop, we assume these
Tobias Grosserce69e7b2017-03-07 16:17:55 +00002430 // basic blocks belong to the loop the predecessor belongs to. This
2431 // allows us to model the following code.
2432 //
2433 // for (i = 0; i < N; i++) {
2434 // if (i > 1024)
2435 // abort(); <- this abort might be translated to an
2436 // unreachable
2437 //
2438 // A[i] = ...
2439 // }
2440 if (!L && isa<UnreachableInst>(BB->getTerminator()) && BB->getPrevNode())
2441 L = LI.getLoopFor(BB->getPrevNode());
2442 return L;
2443 }
Johannes Doerfert96425c22015-08-30 21:13:53 +00002444
2445 Region *NonAffineSubRegion = RN->getNodeAs<Region>();
2446 Loop *L = LI.getLoopFor(NonAffineSubRegion->getEntry());
2447 while (L && NonAffineSubRegion->contains(L))
2448 L = L->getParentLoop();
2449 return L;
2450}
2451
Tobias Grosserce69e7b2017-03-07 16:17:55 +00002452/// Get the number of blocks in @p L.
2453///
2454/// The number of blocks in a loop are the number of basic blocks actually
2455/// belonging to the loop, as well as all single basic blocks that the loop
2456/// exits to and which terminate in an unreachable instruction. We do not
2457/// allow such basic blocks in the exit of a scop, hence they belong to the
2458/// scop and represent run-time conditions which we want to model and
2459/// subsequently speculate away.
2460///
2461/// @see getRegionNodeLoop for additional details.
Reid Klecknerdf2b2832017-06-19 17:44:02 +00002462unsigned getNumBlocksInLoop(Loop *L) {
2463 unsigned NumBlocks = L->getNumBlocks();
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00002464 SmallVector<BasicBlock *, 4> ExitBlocks;
Tobias Grosserce69e7b2017-03-07 16:17:55 +00002465 L->getExitBlocks(ExitBlocks);
2466
2467 for (auto ExitBlock : ExitBlocks) {
2468 if (isa<UnreachableInst>(ExitBlock->getTerminator()))
2469 NumBlocks++;
2470 }
2471 return NumBlocks;
2472}
2473
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00002474static inline unsigned getNumBlocksInRegionNode(RegionNode *RN) {
2475 if (!RN->isSubRegion())
2476 return 1;
2477
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00002478 Region *R = RN->getNodeAs<Region>();
Tobias Grosser0dd4a9a2016-02-01 01:55:08 +00002479 return std::distance(R->block_begin(), R->block_end());
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00002480}
2481
Johannes Doerfert08d90a32015-10-07 20:32:43 +00002482static bool containsErrorBlock(RegionNode *RN, const Region &R, LoopInfo &LI,
2483 const DominatorTree &DT) {
Johannes Doerfertf5673802015-10-01 23:48:18 +00002484 if (!RN->isSubRegion())
Johannes Doerfert08d90a32015-10-07 20:32:43 +00002485 return isErrorBlock(*RN->getNodeAs<BasicBlock>(), R, LI, DT);
Johannes Doerfertf5673802015-10-01 23:48:18 +00002486 for (BasicBlock *BB : RN->getNodeAs<Region>()->blocks())
Johannes Doerfert08d90a32015-10-07 20:32:43 +00002487 if (isErrorBlock(*BB, R, LI, DT))
Johannes Doerfertf5673802015-10-01 23:48:18 +00002488 return true;
2489 return false;
2490}
2491
Johannes Doerfert96425c22015-08-30 21:13:53 +00002492///}
2493
Tobias Grosser61bd3a42017-08-06 21:42:38 +00002494isl::set Scop::getDomainConditions(const ScopStmt *Stmt) const {
Michael Kruse375cb5f2016-02-24 22:08:24 +00002495 return getDomainConditions(Stmt->getEntryBlock());
Johannes Doerfertcef616f2015-09-15 22:49:04 +00002496}
2497
Tobias Grosser61bd3a42017-08-06 21:42:38 +00002498isl::set Scop::getDomainConditions(BasicBlock *BB) const {
Johannes Doerfert41cda152016-04-08 10:32:26 +00002499 auto DIt = DomainMap.find(BB);
2500 if (DIt != DomainMap.end())
Tobias Grosser61bd3a42017-08-06 21:42:38 +00002501 return DIt->getSecond();
Johannes Doerfert41cda152016-04-08 10:32:26 +00002502
2503 auto &RI = *R.getRegionInfo();
2504 auto *BBR = RI.getRegionFor(BB);
2505 while (BBR->getEntry() == BB)
2506 BBR = BBR->getParent();
2507 return getDomainConditions(BBR->getEntry());
Johannes Doerfert96425c22015-08-30 21:13:53 +00002508}
2509
Tobias Grosser13acbb92017-07-15 09:01:31 +00002510bool Scop::buildDomains(Region *R, DominatorTree &DT, LoopInfo &LI,
2511 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap) {
Johannes Doerfertffd222f2016-05-19 12:34:57 +00002512 bool IsOnlyNonAffineRegion = isNonAffineSubRegion(R);
Johannes Doerfertf08bd002015-08-31 13:56:32 +00002513 auto *EntryBB = R->getEntry();
Johannes Doerfert432658d2016-01-26 11:01:41 +00002514 auto *L = IsOnlyNonAffineRegion ? nullptr : LI.getLoopFor(EntryBB);
2515 int LD = getRelativeLoopDepth(L);
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002516 auto *S = isl_set_universe(isl_space_set_alloc(getIslCtx().get(), 0, LD + 1));
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00002517
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00002518 while (LD-- >= 0) {
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00002519 L = L->getParentLoop();
2520 }
2521
Tobias Grosser13acbb92017-07-15 09:01:31 +00002522 InvalidDomainMap[EntryBB] = isl::manage(isl_set_empty(isl_set_get_space(S)));
Tobias Grosser325204a32017-07-15 12:41:32 +00002523 DomainMap[EntryBB] = isl::manage(S);
Johannes Doerfert96425c22015-08-30 21:13:53 +00002524
Johannes Doerfert432658d2016-01-26 11:01:41 +00002525 if (IsOnlyNonAffineRegion)
Johannes Doerfert26404542016-05-10 12:19:47 +00002526 return !containsErrorBlock(R->getNode(), *R, LI, DT);
Johannes Doerfert40fa56f2015-09-14 11:15:07 +00002527
Michael Kruse476f8552017-06-29 12:47:41 +00002528 if (!buildDomainsWithBranchConstraints(R, DT, LI, InvalidDomainMap))
Johannes Doerfert5fb9b212016-03-29 20:02:05 +00002529 return false;
2530
Michael Kruse476f8552017-06-29 12:47:41 +00002531 if (!propagateDomainConstraints(R, DT, LI, InvalidDomainMap))
Johannes Doerfert297c7202016-05-10 13:06:42 +00002532 return false;
Tobias Grosser9737c7b2015-11-22 11:06:51 +00002533
2534 // Error blocks and blocks dominated by them have been assumed to never be
2535 // executed. Representing them in the Scop does not add any value. In fact,
2536 // it is likely to cause issues during construction of the ScopStmts. The
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002537 // contents of error blocks have not been verified to be expressible and
Tobias Grosser9737c7b2015-11-22 11:06:51 +00002538 // will cause problems when building up a ScopStmt for them.
2539 // Furthermore, basic blocks dominated by error blocks may reference
2540 // instructions in the error block which, if the error block is not modeled,
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002541 // can themselves not be constructed properly. To this end we will replace
2542 // the domains of error blocks and those only reachable via error blocks
2543 // with an empty set. Additionally, we will record for each block under which
Johannes Doerfert7c013572016-04-12 09:57:34 +00002544 // parameter combination it would be reached via an error block in its
Johannes Doerferta3519512016-04-23 13:02:23 +00002545 // InvalidDomain. This information is needed during load hoisting.
Michael Kruse476f8552017-06-29 12:47:41 +00002546 if (!propagateInvalidStmtDomains(R, DT, LI, InvalidDomainMap))
Johannes Doerfert297c7202016-05-10 13:06:42 +00002547 return false;
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002548
Johannes Doerfert5fb9b212016-03-29 20:02:05 +00002549 return true;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002550}
2551
Tobias Grosserc80d6972016-09-02 06:33:33 +00002552/// Adjust the dimensions of @p Dom that was constructed for @p OldL
Johannes Doerferta07f0ac2016-04-04 07:50:40 +00002553/// to be compatible to domains constructed for loop @p NewL.
2554///
2555/// This function assumes @p NewL and @p OldL are equal or there is a CFG
2556/// edge from @p OldL to @p NewL.
2557static __isl_give isl_set *adjustDomainDimensions(Scop &S,
2558 __isl_take isl_set *Dom,
2559 Loop *OldL, Loop *NewL) {
Johannes Doerferta07f0ac2016-04-04 07:50:40 +00002560 // If the loops are the same there is nothing to do.
2561 if (NewL == OldL)
2562 return Dom;
2563
2564 int OldDepth = S.getRelativeLoopDepth(OldL);
2565 int NewDepth = S.getRelativeLoopDepth(NewL);
2566 // If both loops are non-affine loops there is nothing to do.
2567 if (OldDepth == -1 && NewDepth == -1)
2568 return Dom;
2569
2570 // Distinguish three cases:
2571 // 1) The depth is the same but the loops are not.
2572 // => One loop was left one was entered.
2573 // 2) The depth increased from OldL to NewL.
2574 // => One loop was entered, none was left.
2575 // 3) The depth decreased from OldL to NewL.
2576 // => Loops were left were difference of the depths defines how many.
2577 if (OldDepth == NewDepth) {
2578 assert(OldL->getParentLoop() == NewL->getParentLoop());
2579 Dom = isl_set_project_out(Dom, isl_dim_set, NewDepth, 1);
2580 Dom = isl_set_add_dims(Dom, isl_dim_set, 1);
Johannes Doerferta07f0ac2016-04-04 07:50:40 +00002581 } else if (OldDepth < NewDepth) {
2582 assert(OldDepth + 1 == NewDepth);
2583 auto &R = S.getRegion();
2584 (void)R;
2585 assert(NewL->getParentLoop() == OldL ||
2586 ((!OldL || !R.contains(OldL)) && R.contains(NewL)));
2587 Dom = isl_set_add_dims(Dom, isl_dim_set, 1);
Johannes Doerferta07f0ac2016-04-04 07:50:40 +00002588 } else {
2589 assert(OldDepth > NewDepth);
2590 int Diff = OldDepth - NewDepth;
2591 int NumDim = isl_set_n_dim(Dom);
2592 assert(NumDim >= Diff);
2593 Dom = isl_set_project_out(Dom, isl_dim_set, NumDim - Diff, Diff);
2594 }
2595
2596 return Dom;
2597}
Johannes Doerfert642594a2016-04-04 07:57:39 +00002598
Michael Kruse476f8552017-06-29 12:47:41 +00002599bool Scop::propagateInvalidStmtDomains(
2600 Region *R, DominatorTree &DT, LoopInfo &LI,
Tobias Grosser13acbb92017-07-15 09:01:31 +00002601 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap) {
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002602 ReversePostOrderTraversal<Region *> RTraversal(R);
2603 for (auto *RN : RTraversal) {
2604
2605 // Recurse for affine subregions but go on for basic blocks and non-affine
2606 // subregions.
2607 if (RN->isSubRegion()) {
2608 Region *SubRegion = RN->getNodeAs<Region>();
Johannes Doerfertffd222f2016-05-19 12:34:57 +00002609 if (!isNonAffineSubRegion(SubRegion)) {
Michael Kruse476f8552017-06-29 12:47:41 +00002610 propagateInvalidStmtDomains(SubRegion, DT, LI, InvalidDomainMap);
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002611 continue;
2612 }
2613 }
2614
2615 bool ContainsErrorBlock = containsErrorBlock(RN, getRegion(), LI, DT);
2616 BasicBlock *BB = getRegionNodeBasicBlock(RN);
Tobias Grosser325204a32017-07-15 12:41:32 +00002617 isl::set &Domain = DomainMap[BB];
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002618 assert(Domain && "Cannot propagate a nullptr");
2619
Tobias Grosser325204a32017-07-15 12:41:32 +00002620 isl::set InvalidDomain = InvalidDomainMap[BB];
Michael Kruse476f8552017-06-29 12:47:41 +00002621
Tobias Grosser325204a32017-07-15 12:41:32 +00002622 bool IsInvalidBlock = ContainsErrorBlock || Domain.is_subset(InvalidDomain);
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002623
Johannes Doerferta3519512016-04-23 13:02:23 +00002624 if (!IsInvalidBlock) {
Tobias Grosser325204a32017-07-15 12:41:32 +00002625 InvalidDomain = InvalidDomain.intersect(Domain);
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002626 } else {
Johannes Doerferta3519512016-04-23 13:02:23 +00002627 InvalidDomain = Domain;
Tobias Grosser325204a32017-07-15 12:41:32 +00002628 isl::set DomPar = Domain.params();
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00002629 recordAssumption(ERRORBLOCK, DomPar, BB->getTerminator()->getDebugLoc(),
2630 AS_RESTRICTION);
Johannes Doerfert14b1cf32016-05-10 12:42:26 +00002631 Domain = nullptr;
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002632 }
2633
Tobias Grosser325204a32017-07-15 12:41:32 +00002634 if (InvalidDomain.is_empty()) {
2635 InvalidDomainMap[BB] = InvalidDomain;
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002636 continue;
Johannes Doerfert7c013572016-04-12 09:57:34 +00002637 }
2638
Johannes Doerferta3519512016-04-23 13:02:23 +00002639 auto *BBLoop = getRegionNodeLoop(RN, LI);
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002640 auto *TI = BB->getTerminator();
2641 unsigned NumSuccs = RN->isSubRegion() ? 1 : TI->getNumSuccessors();
2642 for (unsigned u = 0; u < NumSuccs; u++) {
2643 auto *SuccBB = getRegionNodeSuccessor(RN, TI, u);
Johannes Doerfert7c013572016-04-12 09:57:34 +00002644
2645 // Skip successors outside the SCoP.
Michael Kruse476f8552017-06-29 12:47:41 +00002646 if (!contains(SuccBB))
Johannes Doerfert7c013572016-04-12 09:57:34 +00002647 continue;
2648
Johannes Doerferte4459a22016-04-25 13:34:50 +00002649 // Skip backedges.
2650 if (DT.dominates(SuccBB, BB))
2651 continue;
2652
Michael Kruse476f8552017-06-29 12:47:41 +00002653 Loop *SuccBBLoop = getFirstNonBoxedLoopFor(SuccBB, LI, getBoxedLoops());
2654
Johannes Doerferta3519512016-04-23 13:02:23 +00002655 auto *AdjustedInvalidDomain = adjustDomainDimensions(
Tobias Grosser325204a32017-07-15 12:41:32 +00002656 *this, InvalidDomain.copy(), BBLoop, SuccBBLoop);
Michael Kruse476f8552017-06-29 12:47:41 +00002657
Tobias Grosser13acbb92017-07-15 09:01:31 +00002658 auto *SuccInvalidDomain = InvalidDomainMap[SuccBB].copy();
Johannes Doerferta3519512016-04-23 13:02:23 +00002659 SuccInvalidDomain =
2660 isl_set_union(SuccInvalidDomain, AdjustedInvalidDomain);
2661 SuccInvalidDomain = isl_set_coalesce(SuccInvalidDomain);
2662 unsigned NumConjucts = isl_set_n_basic_set(SuccInvalidDomain);
Michael Kruse476f8552017-06-29 12:47:41 +00002663
Tobias Grosser13acbb92017-07-15 09:01:31 +00002664 InvalidDomainMap[SuccBB] = isl::manage(SuccInvalidDomain);
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002665
Michael Krusebc150122016-05-02 12:25:18 +00002666 // Check if the maximal number of domain disjunctions was reached.
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002667 // In case this happens we will bail.
Tobias Grosser90411a92017-02-16 19:11:33 +00002668 if (NumConjucts < MaxDisjunctsInDomain)
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002669 continue;
2670
Tobias Grosserf44f0052017-07-09 15:47:17 +00002671 InvalidDomainMap.erase(BB);
Eli Friedmane737fc12017-07-17 23:58:33 +00002672 invalidate(COMPLEXITY, TI->getDebugLoc(), TI->getParent());
Johannes Doerfert297c7202016-05-10 13:06:42 +00002673 return false;
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002674 }
Johannes Doerferta3519512016-04-23 13:02:23 +00002675
Tobias Grosser325204a32017-07-15 12:41:32 +00002676 InvalidDomainMap[BB] = InvalidDomain;
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002677 }
Johannes Doerfert297c7202016-05-10 13:06:42 +00002678
2679 return true;
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00002680}
2681
Johannes Doerfert642594a2016-04-04 07:57:39 +00002682void Scop::propagateDomainConstraintsToRegionExit(
2683 BasicBlock *BB, Loop *BBLoop,
Michael Kruse476f8552017-06-29 12:47:41 +00002684 SmallPtrSetImpl<BasicBlock *> &FinishedExitBlocks, LoopInfo &LI,
Tobias Grosser13acbb92017-07-15 09:01:31 +00002685 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap) {
Johannes Doerfert642594a2016-04-04 07:57:39 +00002686 // Check if the block @p BB is the entry of a region. If so we propagate it's
2687 // domain to the exit block of the region. Otherwise we are done.
2688 auto *RI = R.getRegionInfo();
2689 auto *BBReg = RI ? RI->getRegionFor(BB) : nullptr;
2690 auto *ExitBB = BBReg ? BBReg->getExit() : nullptr;
Johannes Doerfert952b5302016-05-23 12:40:48 +00002691 if (!BBReg || BBReg->getEntry() != BB || !contains(ExitBB))
Johannes Doerfert642594a2016-04-04 07:57:39 +00002692 return;
2693
Johannes Doerfert642594a2016-04-04 07:57:39 +00002694 // Do not propagate the domain if there is a loop backedge inside the region
Tobias Grossercdbe5c92017-01-06 17:30:34 +00002695 // that would prevent the exit block from being executed.
Johannes Doerfert642594a2016-04-04 07:57:39 +00002696 auto *L = BBLoop;
Johannes Doerfert952b5302016-05-23 12:40:48 +00002697 while (L && contains(L)) {
Johannes Doerfert642594a2016-04-04 07:57:39 +00002698 SmallVector<BasicBlock *, 4> LatchBBs;
2699 BBLoop->getLoopLatches(LatchBBs);
2700 for (auto *LatchBB : LatchBBs)
2701 if (BB != LatchBB && BBReg->contains(LatchBB))
2702 return;
2703 L = L->getParentLoop();
2704 }
2705
Tobias Grosser325204a32017-07-15 12:41:32 +00002706 isl::set Domain = DomainMap[BB];
Johannes Doerfert642594a2016-04-04 07:57:39 +00002707 assert(Domain && "Cannot propagate a nullptr");
2708
Michael Kruse476f8552017-06-29 12:47:41 +00002709 Loop *ExitBBLoop = getFirstNonBoxedLoopFor(ExitBB, LI, getBoxedLoops());
Johannes Doerfert642594a2016-04-04 07:57:39 +00002710
2711 // Since the dimensions of @p BB and @p ExitBB might be different we have to
2712 // adjust the domain before we can propagate it.
Tobias Grosser325204a32017-07-15 12:41:32 +00002713 isl::set AdjustedDomain = isl::manage(
2714 adjustDomainDimensions(*this, Domain.copy(), BBLoop, ExitBBLoop));
2715 isl::set &ExitDomain = DomainMap[ExitBB];
Johannes Doerfert642594a2016-04-04 07:57:39 +00002716
2717 // If the exit domain is not yet created we set it otherwise we "add" the
2718 // current domain.
Tobias Grosser325204a32017-07-15 12:41:32 +00002719 ExitDomain = ExitDomain ? AdjustedDomain.unite(ExitDomain) : AdjustedDomain;
Johannes Doerfert642594a2016-04-04 07:57:39 +00002720
Johannes Doerferta3519512016-04-23 13:02:23 +00002721 // Initialize the invalid domain.
Tobias Grosser325204a32017-07-15 12:41:32 +00002722 InvalidDomainMap[ExitBB] = ExitDomain.empty(ExitDomain.get_space());
Johannes Doerferta3519512016-04-23 13:02:23 +00002723
Johannes Doerfert642594a2016-04-04 07:57:39 +00002724 FinishedExitBlocks.insert(ExitBB);
2725}
2726
Michael Kruse476f8552017-06-29 12:47:41 +00002727bool Scop::buildDomainsWithBranchConstraints(
2728 Region *R, DominatorTree &DT, LoopInfo &LI,
Tobias Grosser13acbb92017-07-15 09:01:31 +00002729 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap) {
Johannes Doerfert96425c22015-08-30 21:13:53 +00002730 // To create the domain for each block in R we iterate over all blocks and
2731 // subregions in R and propagate the conditions under which the current region
2732 // element is executed. To this end we iterate in reverse post order over R as
2733 // it ensures that we first visit all predecessors of a region node (either a
2734 // basic block or a subregion) before we visit the region node itself.
2735 // Initially, only the domain for the SCoP region entry block is set and from
2736 // there we propagate the current domain to all successors, however we add the
2737 // condition that the successor is actually executed next.
2738 // As we are only interested in non-loop carried constraints here we can
2739 // simply skip loop back edges.
2740
Johannes Doerfert642594a2016-04-04 07:57:39 +00002741 SmallPtrSet<BasicBlock *, 8> FinishedExitBlocks;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002742 ReversePostOrderTraversal<Region *> RTraversal(R);
2743 for (auto *RN : RTraversal) {
Johannes Doerfert96425c22015-08-30 21:13:53 +00002744 // Recurse for affine subregions but go on for basic blocks and non-affine
2745 // subregions.
2746 if (RN->isSubRegion()) {
2747 Region *SubRegion = RN->getNodeAs<Region>();
Johannes Doerfertffd222f2016-05-19 12:34:57 +00002748 if (!isNonAffineSubRegion(SubRegion)) {
Michael Kruse476f8552017-06-29 12:47:41 +00002749 if (!buildDomainsWithBranchConstraints(SubRegion, DT, LI,
2750 InvalidDomainMap))
Johannes Doerfert5fb9b212016-03-29 20:02:05 +00002751 return false;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002752 continue;
2753 }
2754 }
2755
Tobias Grosserb76cd3c2015-11-11 08:42:20 +00002756 if (containsErrorBlock(RN, getRegion(), LI, DT))
Johannes Doerfertf85ad042015-11-08 20:16:39 +00002757 HasErrorBlock = true;
Johannes Doerfertf5673802015-10-01 23:48:18 +00002758
Johannes Doerfert96425c22015-08-30 21:13:53 +00002759 BasicBlock *BB = getRegionNodeBasicBlock(RN);
Johannes Doerfert90db75e2015-09-10 17:51:27 +00002760 TerminatorInst *TI = BB->getTerminator();
2761
Tobias Grosserb76cd3c2015-11-11 08:42:20 +00002762 if (isa<UnreachableInst>(TI))
2763 continue;
2764
Tobias Grosser325204a32017-07-15 12:41:32 +00002765 isl::set Domain = DomainMap.lookup(BB);
Tobias Grosser4fb9e512016-02-27 06:59:30 +00002766 if (!Domain)
Johannes Doerfert90db75e2015-09-10 17:51:27 +00002767 continue;
Tobias Grosser325204a32017-07-15 12:41:32 +00002768 MaxLoopDepth = std::max(MaxLoopDepth, isl_set_n_dim(Domain.get()));
Johannes Doerfert96425c22015-08-30 21:13:53 +00002769
Johannes Doerfert642594a2016-04-04 07:57:39 +00002770 auto *BBLoop = getRegionNodeLoop(RN, LI);
2771 // Propagate the domain from BB directly to blocks that have a superset
2772 // domain, at the moment only region exit nodes of regions that start in BB.
Michael Kruse476f8552017-06-29 12:47:41 +00002773 propagateDomainConstraintsToRegionExit(BB, BBLoop, FinishedExitBlocks, LI,
2774 InvalidDomainMap);
Johannes Doerfert642594a2016-04-04 07:57:39 +00002775
2776 // If all successors of BB have been set a domain through the propagation
2777 // above we do not need to build condition sets but can just skip this
2778 // block. However, it is important to note that this is a local property
2779 // with regards to the region @p R. To this end FinishedExitBlocks is a
2780 // local variable.
2781 auto IsFinishedRegionExit = [&FinishedExitBlocks](BasicBlock *SuccBB) {
2782 return FinishedExitBlocks.count(SuccBB);
2783 };
2784 if (std::all_of(succ_begin(BB), succ_end(BB), IsFinishedRegionExit))
2785 continue;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002786
2787 // Build the condition sets for the successor nodes of the current region
2788 // node. If it is a non-affine subregion we will always execute the single
2789 // exit node, hence the single entry node domain is the condition set. For
2790 // basic blocks we use the helper function buildConditionSets.
Johannes Doerfert9a132f32015-09-28 09:33:22 +00002791 SmallVector<isl_set *, 8> ConditionSets;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002792 if (RN->isSubRegion())
Tobias Grosser325204a32017-07-15 12:41:32 +00002793 ConditionSets.push_back(Domain.copy());
2794 else if (!buildConditionSets(*this, BB, TI, BBLoop, Domain.get(),
Michael Kruse476f8552017-06-29 12:47:41 +00002795 InvalidDomainMap, ConditionSets))
Johannes Doerfert297c7202016-05-10 13:06:42 +00002796 return false;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002797
2798 // Now iterate over the successors and set their initial domain based on
2799 // their condition set. We skip back edges here and have to be careful when
2800 // we leave a loop not to keep constraints over a dimension that doesn't
2801 // exist anymore.
Johannes Doerfert9a132f32015-09-28 09:33:22 +00002802 assert(RN->isSubRegion() || TI->getNumSuccessors() == ConditionSets.size());
Johannes Doerfert96425c22015-08-30 21:13:53 +00002803 for (unsigned u = 0, e = ConditionSets.size(); u < e; u++) {
Tobias Grosser325204a32017-07-15 12:41:32 +00002804 isl::set CondSet = isl::manage(ConditionSets[u]);
Johannes Doerfert9a132f32015-09-28 09:33:22 +00002805 BasicBlock *SuccBB = getRegionNodeSuccessor(RN, TI, u);
Johannes Doerfert96425c22015-08-30 21:13:53 +00002806
Johannes Doerfert535de032016-04-19 14:49:05 +00002807 // Skip blocks outside the region.
Tobias Grosser325204a32017-07-15 12:41:32 +00002808 if (!contains(SuccBB))
Johannes Doerfert535de032016-04-19 14:49:05 +00002809 continue;
Johannes Doerfert535de032016-04-19 14:49:05 +00002810
Johannes Doerfert642594a2016-04-04 07:57:39 +00002811 // If we propagate the domain of some block to "SuccBB" we do not have to
2812 // adjust the domain.
Tobias Grosser325204a32017-07-15 12:41:32 +00002813 if (FinishedExitBlocks.count(SuccBB))
Johannes Doerfert642594a2016-04-04 07:57:39 +00002814 continue;
Johannes Doerfert642594a2016-04-04 07:57:39 +00002815
Johannes Doerfert96425c22015-08-30 21:13:53 +00002816 // Skip back edges.
Tobias Grosser325204a32017-07-15 12:41:32 +00002817 if (DT.dominates(SuccBB, BB))
Johannes Doerfert96425c22015-08-30 21:13:53 +00002818 continue;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002819
Michael Kruse476f8552017-06-29 12:47:41 +00002820 Loop *SuccBBLoop = getFirstNonBoxedLoopFor(SuccBB, LI, getBoxedLoops());
2821
Tobias Grosser325204a32017-07-15 12:41:32 +00002822 CondSet = isl::manage(
2823 adjustDomainDimensions(*this, CondSet.copy(), BBLoop, SuccBBLoop));
Johannes Doerfert96425c22015-08-30 21:13:53 +00002824
2825 // Set the domain for the successor or merge it with an existing domain in
2826 // case there are multiple paths (without loop back edges) to the
2827 // successor block.
Tobias Grosser325204a32017-07-15 12:41:32 +00002828 isl::set &SuccDomain = DomainMap[SuccBB];
Tobias Grosser5a8c0522016-03-22 22:05:32 +00002829
Johannes Doerferta3519512016-04-23 13:02:23 +00002830 if (SuccDomain) {
Tobias Grosser325204a32017-07-15 12:41:32 +00002831 SuccDomain = SuccDomain.unite(CondSet).coalesce();
Johannes Doerferta3519512016-04-23 13:02:23 +00002832 } else {
2833 // Initialize the invalid domain.
Tobias Grosser325204a32017-07-15 12:41:32 +00002834 InvalidDomainMap[SuccBB] = CondSet.empty(CondSet.get_space());
Johannes Doerferta3519512016-04-23 13:02:23 +00002835 SuccDomain = CondSet;
2836 }
Johannes Doerfert96425c22015-08-30 21:13:53 +00002837
Tobias Grosser325204a32017-07-15 12:41:32 +00002838 SuccDomain = SuccDomain.detect_equalities();
Tobias Grosser6d459c52017-05-23 04:26:28 +00002839
Michael Krusebc150122016-05-02 12:25:18 +00002840 // Check if the maximal number of domain disjunctions was reached.
Johannes Doerfert5fb9b212016-03-29 20:02:05 +00002841 // In case this happens we will clean up and bail.
Tobias Grosser325204a32017-07-15 12:41:32 +00002842 if (isl_set_n_basic_set(SuccDomain.get()) < MaxDisjunctsInDomain)
Johannes Doerfert5fb9b212016-03-29 20:02:05 +00002843 continue;
2844
2845 invalidate(COMPLEXITY, DebugLoc());
2846 while (++u < ConditionSets.size())
2847 isl_set_free(ConditionSets[u]);
2848 return false;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002849 }
2850 }
Johannes Doerfert5fb9b212016-03-29 20:02:05 +00002851
2852 return true;
Johannes Doerfert96425c22015-08-30 21:13:53 +00002853}
2854
Tobias Grosser2f3041f2017-08-06 17:31:38 +00002855isl::set Scop::getPredecessorDomainConstraints(BasicBlock *BB, isl::set Domain,
2856 DominatorTree &DT,
2857 LoopInfo &LI) {
Johannes Doerfert642594a2016-04-04 07:57:39 +00002858 // If @p BB is the ScopEntry we are done
2859 if (R.getEntry() == BB)
Tobias Grosser2f3041f2017-08-06 17:31:38 +00002860 return isl::set::universe(Domain.get_space());
Johannes Doerfert642594a2016-04-04 07:57:39 +00002861
Johannes Doerfert642594a2016-04-04 07:57:39 +00002862 // The region info of this function.
2863 auto &RI = *R.getRegionInfo();
2864
Michael Kruse476f8552017-06-29 12:47:41 +00002865 Loop *BBLoop = getFirstNonBoxedLoopFor(BB, LI, getBoxedLoops());
Johannes Doerfert642594a2016-04-04 07:57:39 +00002866
2867 // A domain to collect all predecessor domains, thus all conditions under
2868 // which the block is executed. To this end we start with the empty domain.
Tobias Grosser2f3041f2017-08-06 17:31:38 +00002869 isl::set PredDom = isl::set::empty(Domain.get_space());
Johannes Doerfert642594a2016-04-04 07:57:39 +00002870
2871 // Set of regions of which the entry block domain has been propagated to BB.
2872 // all predecessors inside any of the regions can be skipped.
2873 SmallSet<Region *, 8> PropagatedRegions;
2874
2875 for (auto *PredBB : predecessors(BB)) {
2876 // Skip backedges.
2877 if (DT.dominates(BB, PredBB))
2878 continue;
2879
2880 // If the predecessor is in a region we used for propagation we can skip it.
2881 auto PredBBInRegion = [PredBB](Region *PR) { return PR->contains(PredBB); };
2882 if (std::any_of(PropagatedRegions.begin(), PropagatedRegions.end(),
2883 PredBBInRegion)) {
2884 continue;
2885 }
2886
2887 // Check if there is a valid region we can use for propagation, thus look
2888 // for a region that contains the predecessor and has @p BB as exit block.
2889 auto *PredR = RI.getRegionFor(PredBB);
2890 while (PredR->getExit() != BB && !PredR->contains(BB))
2891 PredR->getParent();
2892
2893 // If a valid region for propagation was found use the entry of that region
2894 // for propagation, otherwise the PredBB directly.
2895 if (PredR->getExit() == BB) {
2896 PredBB = PredR->getEntry();
2897 PropagatedRegions.insert(PredR);
2898 }
2899
Tobias Grosser61bd3a42017-08-06 21:42:38 +00002900 auto *PredBBDom = getDomainConditions(PredBB).release();
Michael Kruse476f8552017-06-29 12:47:41 +00002901 Loop *PredBBLoop = getFirstNonBoxedLoopFor(PredBB, LI, getBoxedLoops());
2902
Johannes Doerfert642594a2016-04-04 07:57:39 +00002903 PredBBDom = adjustDomainDimensions(*this, PredBBDom, PredBBLoop, BBLoop);
2904
Tobias Grosser2f3041f2017-08-06 17:31:38 +00002905 PredDom = PredDom.unite(isl::manage(PredBBDom));
Johannes Doerfert642594a2016-04-04 07:57:39 +00002906 }
2907
2908 return PredDom;
2909}
2910
Michael Kruse476f8552017-06-29 12:47:41 +00002911bool Scop::propagateDomainConstraints(
2912 Region *R, DominatorTree &DT, LoopInfo &LI,
Tobias Grosser13acbb92017-07-15 09:01:31 +00002913 DenseMap<BasicBlock *, isl::set> &InvalidDomainMap) {
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002914 // Iterate over the region R and propagate the domain constrains from the
2915 // predecessors to the current node. In contrast to the
2916 // buildDomainsWithBranchConstraints function, this one will pull the domain
2917 // information from the predecessors instead of pushing it to the successors.
2918 // Additionally, we assume the domains to be already present in the domain
2919 // map here. However, we iterate again in reverse post order so we know all
2920 // predecessors have been visited before a block or non-affine subregion is
2921 // visited.
2922
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002923 ReversePostOrderTraversal<Region *> RTraversal(R);
2924 for (auto *RN : RTraversal) {
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002925 // Recurse for affine subregions but go on for basic blocks and non-affine
2926 // subregions.
2927 if (RN->isSubRegion()) {
2928 Region *SubRegion = RN->getNodeAs<Region>();
Johannes Doerfertffd222f2016-05-19 12:34:57 +00002929 if (!isNonAffineSubRegion(SubRegion)) {
Michael Kruse476f8552017-06-29 12:47:41 +00002930 if (!propagateDomainConstraints(SubRegion, DT, LI, InvalidDomainMap))
Johannes Doerfert297c7202016-05-10 13:06:42 +00002931 return false;
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002932 continue;
2933 }
2934 }
2935
2936 BasicBlock *BB = getRegionNodeBasicBlock(RN);
Tobias Grosser325204a32017-07-15 12:41:32 +00002937 isl::set &Domain = DomainMap[BB];
Johannes Doerferta49c5572016-04-05 16:18:53 +00002938 assert(Domain);
Johannes Doerfertf5673802015-10-01 23:48:18 +00002939
Tobias Grosser6deba4e2016-03-30 18:18:31 +00002940 // Under the union of all predecessor conditions we can reach this block.
Tobias Grosser2f3041f2017-08-06 17:31:38 +00002941 isl::set PredDom = getPredecessorDomainConstraints(BB, Domain, DT, LI);
Tobias Grosser325204a32017-07-15 12:41:32 +00002942 Domain = Domain.intersect(PredDom).coalesce();
Tobias Grosserb65ccc42017-08-06 20:11:59 +00002943 Domain = Domain.align_params(getParamSpace());
Tobias Grosser6deba4e2016-03-30 18:18:31 +00002944
Johannes Doerfert642594a2016-04-04 07:57:39 +00002945 Loop *BBLoop = getRegionNodeLoop(RN, LI);
Johannes Doerfert952b5302016-05-23 12:40:48 +00002946 if (BBLoop && BBLoop->getHeader() == BB && contains(BBLoop))
Michael Kruse476f8552017-06-29 12:47:41 +00002947 if (!addLoopBoundsToHeaderDomain(BBLoop, LI, InvalidDomainMap))
Johannes Doerfert297c7202016-05-10 13:06:42 +00002948 return false;
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002949 }
Johannes Doerfert297c7202016-05-10 13:06:42 +00002950
2951 return true;
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002952}
2953
Tobias Grosserc80d6972016-09-02 06:33:33 +00002954/// Create a map to map from a given iteration to a subsequent iteration.
2955///
2956/// This map maps from SetSpace -> SetSpace where the dimensions @p Dim
2957/// is incremented by one and all other dimensions are equal, e.g.,
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002958/// [i0, i1, i2, i3] -> [i0, i1, i2 + 1, i3]
Tobias Grosserc80d6972016-09-02 06:33:33 +00002959///
2960/// if @p Dim is 2 and @p SetSpace has 4 dimensions.
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002961static __isl_give isl_map *
2962createNextIterationMap(__isl_take isl_space *SetSpace, unsigned Dim) {
2963 auto *MapSpace = isl_space_map_from_set(SetSpace);
2964 auto *NextIterationMap = isl_map_universe(isl_space_copy(MapSpace));
Tobias Grosserf4fe34b2017-03-16 21:33:20 +00002965 for (unsigned u = 0; u < isl_map_dim(NextIterationMap, isl_dim_in); u++)
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002966 if (u != Dim)
2967 NextIterationMap =
2968 isl_map_equate(NextIterationMap, isl_dim_in, u, isl_dim_out, u);
2969 auto *C = isl_constraint_alloc_equality(isl_local_space_from_space(MapSpace));
2970 C = isl_constraint_set_constant_si(C, 1);
2971 C = isl_constraint_set_coefficient_si(C, isl_dim_in, Dim, 1);
2972 C = isl_constraint_set_coefficient_si(C, isl_dim_out, Dim, -1);
2973 NextIterationMap = isl_map_add_constraint(NextIterationMap, C);
2974 return NextIterationMap;
2975}
2976
Michael Kruse476f8552017-06-29 12:47:41 +00002977bool Scop::addLoopBoundsToHeaderDomain(
Tobias Grosser13acbb92017-07-15 09:01:31 +00002978 Loop *L, LoopInfo &LI, DenseMap<BasicBlock *, isl::set> &InvalidDomainMap) {
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00002979 int LoopDepth = getRelativeLoopDepth(L);
2980 assert(LoopDepth >= 0 && "Loop in region should have at least depth one");
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002981
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00002982 BasicBlock *HeaderBB = L->getHeader();
2983 assert(DomainMap.count(HeaderBB));
Tobias Grosser325204a32017-07-15 12:41:32 +00002984 isl::set &HeaderBBDom = DomainMap[HeaderBB];
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002985
Tobias Grosser325204a32017-07-15 12:41:32 +00002986 isl::map NextIterationMap = isl::manage(
2987 createNextIterationMap(HeaderBBDom.get_space().release(), LoopDepth));
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002988
Tobias Grosser325204a32017-07-15 12:41:32 +00002989 isl::set UnionBackedgeCondition = HeaderBBDom.empty(HeaderBBDom.get_space());
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002990
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00002991 SmallVector<BasicBlock *, 4> LatchBlocks;
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00002992 L->getLoopLatches(LatchBlocks);
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00002993
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00002994 for (BasicBlock *LatchBB : LatchBlocks) {
Johannes Doerfertf5673802015-10-01 23:48:18 +00002995 // If the latch is only reachable via error statements we skip it.
Tobias Grosser325204a32017-07-15 12:41:32 +00002996 isl::set LatchBBDom = DomainMap.lookup(LatchBB);
Johannes Doerfertf5673802015-10-01 23:48:18 +00002997 if (!LatchBBDom)
2998 continue;
2999
Tobias Grosser325204a32017-07-15 12:41:32 +00003000 isl::set BackedgeCondition = nullptr;
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00003001
Johannes Doerfert9a132f32015-09-28 09:33:22 +00003002 TerminatorInst *TI = LatchBB->getTerminator();
3003 BranchInst *BI = dyn_cast<BranchInst>(TI);
Tobias Grosserbbaeda32016-11-10 05:20:29 +00003004 assert(BI && "Only branch instructions allowed in loop latches");
3005
3006 if (BI->isUnconditional())
Tobias Grosser325204a32017-07-15 12:41:32 +00003007 BackedgeCondition = LatchBBDom;
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003008 else {
Johannes Doerfert9a132f32015-09-28 09:33:22 +00003009 SmallVector<isl_set *, 8> ConditionSets;
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003010 int idx = BI->getSuccessor(0) != HeaderBB;
Tobias Grosser325204a32017-07-15 12:41:32 +00003011 if (!buildConditionSets(*this, LatchBB, TI, L, LatchBBDom.get(),
3012 InvalidDomainMap, ConditionSets))
Johannes Doerfert297c7202016-05-10 13:06:42 +00003013 return false;
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00003014
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003015 // Free the non back edge condition set as we do not need it.
3016 isl_set_free(ConditionSets[1 - idx]);
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00003017
Tobias Grosser325204a32017-07-15 12:41:32 +00003018 BackedgeCondition = isl::manage(ConditionSets[idx]);
Johannes Doerfert06c57b52015-09-20 15:00:20 +00003019 }
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00003020
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003021 int LatchLoopDepth = getRelativeLoopDepth(LI.getLoopFor(LatchBB));
3022 assert(LatchLoopDepth >= LoopDepth);
Tobias Grosser325204a32017-07-15 12:41:32 +00003023 BackedgeCondition = BackedgeCondition.project_out(
3024 isl::dim::set, LoopDepth + 1, LatchLoopDepth - LoopDepth);
3025 UnionBackedgeCondition = UnionBackedgeCondition.unite(BackedgeCondition);
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00003026 }
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003027
Tobias Grosser325204a32017-07-15 12:41:32 +00003028 isl::map ForwardMap = ForwardMap.lex_le(HeaderBBDom.get_space());
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003029 for (int i = 0; i < LoopDepth; i++)
Tobias Grosser325204a32017-07-15 12:41:32 +00003030 ForwardMap = ForwardMap.equate(isl::dim::in, i, isl::dim::out, i);
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003031
Tobias Grosser325204a32017-07-15 12:41:32 +00003032 isl::set UnionBackedgeConditionComplement =
3033 UnionBackedgeCondition.complement();
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003034 UnionBackedgeConditionComplement =
Tobias Grosser325204a32017-07-15 12:41:32 +00003035 UnionBackedgeConditionComplement.lower_bound_si(isl::dim::set, LoopDepth,
3036 0);
3037 UnionBackedgeConditionComplement =
3038 UnionBackedgeConditionComplement.apply(ForwardMap);
3039 HeaderBBDom = HeaderBBDom.subtract(UnionBackedgeConditionComplement);
3040 HeaderBBDom = HeaderBBDom.apply(NextIterationMap);
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003041
Tobias Grosser325204a32017-07-15 12:41:32 +00003042 auto Parts = partitionSetParts(HeaderBBDom.copy(), LoopDepth);
3043 HeaderBBDom = isl::manage(Parts.second);
Johannes Doerfertf2cc86e2015-09-20 16:15:32 +00003044
Johannes Doerfert6a72a2a2015-09-20 16:59:23 +00003045 // Check if there is a <nsw> tagged AddRec for this loop and if so do not add
3046 // the bounded assumptions to the context as they are already implied by the
3047 // <nsw> tag.
3048 if (Affinator.hasNSWAddRecForLoop(L)) {
3049 isl_set_free(Parts.first);
Johannes Doerfert297c7202016-05-10 13:06:42 +00003050 return true;
Johannes Doerfert6a72a2a2015-09-20 16:59:23 +00003051 }
3052
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003053 isl::set UnboundedCtx = isl::manage(Parts.first).params();
Johannes Doerfert3bf6e4122016-04-12 13:27:35 +00003054 recordAssumption(INFINITELOOP, UnboundedCtx,
3055 HeaderBB->getTerminator()->getDebugLoc(), AS_RESTRICTION);
Johannes Doerfert297c7202016-05-10 13:06:42 +00003056 return true;
Johannes Doerfert5b9ff8b2015-09-10 13:00:06 +00003057}
3058
Johannes Doerfert764b7e62016-05-23 09:26:46 +00003059MemoryAccess *Scop::lookupBasePtrAccess(MemoryAccess *MA) {
Tobias Grosserbe372d52017-02-09 10:11:58 +00003060 Value *PointerBase = MA->getOriginalBaseAddr();
Johannes Doerfert764b7e62016-05-23 09:26:46 +00003061
Tobias Grossere0e0e4d2017-02-09 09:34:46 +00003062 auto *PointerBaseInst = dyn_cast<Instruction>(PointerBase);
Johannes Doerfert764b7e62016-05-23 09:26:46 +00003063 if (!PointerBaseInst)
3064 return nullptr;
3065
3066 auto *BasePtrStmt = getStmtFor(PointerBaseInst);
3067 if (!BasePtrStmt)
3068 return nullptr;
3069
3070 return BasePtrStmt->getArrayAccessOrNULLFor(PointerBaseInst);
3071}
3072
3073bool Scop::hasNonHoistableBasePtrInScop(MemoryAccess *MA,
Tobias Grosser4071cb52017-06-06 23:13:02 +00003074 isl::union_map Writes) {
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003075 if (auto *BasePtrMA = lookupBasePtrAccess(MA)) {
Tobias Grosser4071cb52017-06-06 23:13:02 +00003076 return getNonHoistableCtx(BasePtrMA, Writes).is_null();
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003077 }
Johannes Doerfert764b7e62016-05-23 09:26:46 +00003078
Tobias Grosserbe372d52017-02-09 10:11:58 +00003079 Value *BaseAddr = MA->getOriginalBaseAddr();
Tobias Grossere0e0e4d2017-02-09 09:34:46 +00003080 if (auto *BasePtrInst = dyn_cast<Instruction>(BaseAddr))
Johannes Doerfert764b7e62016-05-23 09:26:46 +00003081 if (!isa<LoadInst>(BasePtrInst))
Johannes Doerfert952b5302016-05-23 12:40:48 +00003082 return contains(BasePtrInst);
Johannes Doerfert764b7e62016-05-23 09:26:46 +00003083
3084 return false;
3085}
3086
Johannes Doerfert5210da52016-06-02 11:06:54 +00003087bool Scop::buildAliasChecks(AliasAnalysis &AA) {
Johannes Doerfert120de4b2015-08-20 18:30:08 +00003088 if (!PollyUseRuntimeAliasChecks)
Johannes Doerfert5210da52016-06-02 11:06:54 +00003089 return true;
Johannes Doerfert120de4b2015-08-20 18:30:08 +00003090
Johannes Doerfertcd195322016-11-17 21:41:08 +00003091 if (buildAliasGroups(AA)) {
3092 // Aliasing assumptions do not go through addAssumption but we still want to
3093 // collect statistics so we do it here explicitly.
3094 if (MinMaxAliasGroups.size())
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00003095 AssumptionsAliasing++;
Johannes Doerfert5210da52016-06-02 11:06:54 +00003096 return true;
Johannes Doerfertcd195322016-11-17 21:41:08 +00003097 }
Johannes Doerfert120de4b2015-08-20 18:30:08 +00003098
3099 // If a problem occurs while building the alias groups we need to delete
3100 // this SCoP and pretend it wasn't valid in the first place. To this end
3101 // we make the assumed context infeasible.
Tobias Grosser8d4f6262015-12-12 09:52:26 +00003102 invalidate(ALIASING, DebugLoc());
Johannes Doerfert120de4b2015-08-20 18:30:08 +00003103
Nicola Zaghen349506a2018-05-15 13:37:17 +00003104 LLVM_DEBUG(
3105 dbgs() << "\n\nNOTE: Run time checks for " << getNameStr()
3106 << " could not be created as the number of parameters involved "
3107 "is too high. The SCoP will be "
3108 "dismissed.\nUse:\n\t--polly-rtc-max-parameters=X\nto adjust "
3109 "the maximal number of parameters but be advised that the "
3110 "compile time might increase exponentially.\n\n");
Johannes Doerfert5210da52016-06-02 11:06:54 +00003111 return false;
Johannes Doerfert120de4b2015-08-20 18:30:08 +00003112}
3113
Tobias Grosser889830b2017-02-09 23:12:22 +00003114std::tuple<Scop::AliasGroupVectorTy, DenseSet<const ScopArrayInfo *>>
Tobias Grosser9edcf072017-01-16 14:07:57 +00003115Scop::buildAliasGroupsForAccesses(AliasAnalysis &AA) {
Johannes Doerfertb164c792014-09-18 11:17:17 +00003116 AliasSetTracker AST(AA);
3117
3118 DenseMap<Value *, MemoryAccess *> PtrToAcc;
Tobias Grosser889830b2017-02-09 23:12:22 +00003119 DenseSet<const ScopArrayInfo *> HasWriteAccess;
Tobias Grosser7c3bad52015-05-27 05:16:57 +00003120 for (ScopStmt &Stmt : *this) {
Johannes Doerfertf1ee2622014-10-06 17:43:00 +00003121
Tobias Grosserdcf8d692017-08-06 16:39:52 +00003122 isl_set *StmtDomain = Stmt.getDomain().release();
Johannes Doerfertf1ee2622014-10-06 17:43:00 +00003123 bool StmtDomainEmpty = isl_set_is_empty(StmtDomain);
3124 isl_set_free(StmtDomain);
Tobias Grosser9edcf072017-01-16 14:07:57 +00003125
3126 // Statements with an empty domain will never be executed.
Johannes Doerfertf1ee2622014-10-06 17:43:00 +00003127 if (StmtDomainEmpty)
3128 continue;
3129
Tobias Grosser7c3bad52015-05-27 05:16:57 +00003130 for (MemoryAccess *MA : Stmt) {
Tobias Grossera535dff2015-12-13 19:59:01 +00003131 if (MA->isScalarKind())
Johannes Doerfertb164c792014-09-18 11:17:17 +00003132 continue;
Johannes Doerfert13771732014-10-01 12:40:46 +00003133 if (!MA->isRead())
Tobias Grosser889830b2017-02-09 23:12:22 +00003134 HasWriteAccess.insert(MA->getScopArrayInfo());
Michael Kruse70131d32016-01-27 17:09:17 +00003135 MemAccInst Acc(MA->getAccessInstruction());
Hongbin Zheng8efb22e2016-02-27 01:49:58 +00003136 if (MA->isRead() && isa<MemTransferInst>(Acc))
Michael Kruse426e6f72016-10-25 13:37:43 +00003137 PtrToAcc[cast<MemTransferInst>(Acc)->getRawSource()] = MA;
Johannes Doerfertcea61932016-02-21 19:13:19 +00003138 else
3139 PtrToAcc[Acc.getPointerOperand()] = MA;
Johannes Doerfertb164c792014-09-18 11:17:17 +00003140 AST.add(Acc);
3141 }
3142 }
3143
Tobias Grosser9edcf072017-01-16 14:07:57 +00003144 AliasGroupVectorTy AliasGroups;
Johannes Doerfertb164c792014-09-18 11:17:17 +00003145 for (AliasSet &AS : AST) {
Johannes Doerfert74f68692014-10-08 02:23:48 +00003146 if (AS.isMustAlias() || AS.isForwardingAliasSet())
Johannes Doerfertb164c792014-09-18 11:17:17 +00003147 continue;
3148 AliasGroupTy AG;
Johannes Doerferta90943d2016-02-21 16:37:25 +00003149 for (auto &PR : AS)
Johannes Doerfertb164c792014-09-18 11:17:17 +00003150 AG.push_back(PtrToAcc[PR.getValue()]);
Johannes Doerfertcea61932016-02-21 19:13:19 +00003151 if (AG.size() < 2)
3152 continue;
Johannes Doerfertb164c792014-09-18 11:17:17 +00003153 AliasGroups.push_back(std::move(AG));
3154 }
3155
Tobias Grosser9edcf072017-01-16 14:07:57 +00003156 return std::make_tuple(AliasGroups, HasWriteAccess);
3157}
3158
Tobias Grossere39f9122017-01-16 14:08:00 +00003159void Scop::splitAliasGroupsByDomain(AliasGroupVectorTy &AliasGroups) {
Johannes Doerferteeab05a2014-10-01 12:42:37 +00003160 for (unsigned u = 0; u < AliasGroups.size(); u++) {
3161 AliasGroupTy NewAG;
3162 AliasGroupTy &AG = AliasGroups[u];
3163 AliasGroupTy::iterator AGI = AG.begin();
3164 isl_set *AGDomain = getAccessDomain(*AGI);
3165 while (AGI != AG.end()) {
3166 MemoryAccess *MA = *AGI;
3167 isl_set *MADomain = getAccessDomain(MA);
3168 if (isl_set_is_disjoint(AGDomain, MADomain)) {
3169 NewAG.push_back(MA);
3170 AGI = AG.erase(AGI);
3171 isl_set_free(MADomain);
3172 } else {
3173 AGDomain = isl_set_union(AGDomain, MADomain);
3174 AGI++;
3175 }
3176 }
3177 if (NewAG.size() > 1)
3178 AliasGroups.push_back(std::move(NewAG));
3179 isl_set_free(AGDomain);
3180 }
Tobias Grossere39f9122017-01-16 14:08:00 +00003181}
3182
3183bool Scop::buildAliasGroups(AliasAnalysis &AA) {
3184 // To create sound alias checks we perform the following steps:
3185 // o) We partition each group into read only and non read only accesses.
3186 // o) For each group with more than one base pointer we then compute minimal
3187 // and maximal accesses to each array of a group in read only and non
3188 // read only partitions separately.
3189 AliasGroupVectorTy AliasGroups;
Tobias Grosser889830b2017-02-09 23:12:22 +00003190 DenseSet<const ScopArrayInfo *> HasWriteAccess;
Tobias Grossere39f9122017-01-16 14:08:00 +00003191
3192 std::tie(AliasGroups, HasWriteAccess) = buildAliasGroupsForAccesses(AA);
3193
3194 splitAliasGroupsByDomain(AliasGroups);
Johannes Doerferteeab05a2014-10-01 12:42:37 +00003195
Johannes Doerfert13771732014-10-01 12:40:46 +00003196 for (AliasGroupTy &AG : AliasGroups) {
Tobias Grosser78a7a6c2017-06-23 08:05:31 +00003197 if (!hasFeasibleRuntimeContext())
3198 return false;
3199
Tobias Grosser57a1d362017-06-23 08:05:27 +00003200 {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003201 IslMaxOperationsGuard MaxOpGuard(getIslCtx().get(), OptComputeOut);
Tobias Grosser57a1d362017-06-23 08:05:27 +00003202 bool Valid = buildAliasGroup(AG, HasWriteAccess);
3203 if (!Valid)
3204 return false;
3205 }
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003206 if (isl_ctx_last_error(getIslCtx().get()) == isl_error_quota) {
Tobias Grosser57a1d362017-06-23 08:05:27 +00003207 invalidate(COMPLEXITY, DebugLoc());
Tobias Grosser50d4e2e2015-03-28 14:50:32 +00003208 return false;
Tobias Grosser57a1d362017-06-23 08:05:27 +00003209 }
Johannes Doerfertb164c792014-09-18 11:17:17 +00003210 }
Johannes Doerfert9143d672014-09-27 11:02:39 +00003211
Tobias Grosser50d4e2e2015-03-28 14:50:32 +00003212 return true;
Johannes Doerfertb164c792014-09-18 11:17:17 +00003213}
3214
Tobias Grosser77f32572017-01-16 15:49:07 +00003215bool Scop::buildAliasGroup(Scop::AliasGroupTy &AliasGroup,
Tobias Grosser889830b2017-02-09 23:12:22 +00003216 DenseSet<const ScopArrayInfo *> HasWriteAccess) {
Tobias Grosser77f32572017-01-16 15:49:07 +00003217 AliasGroupTy ReadOnlyAccesses;
3218 AliasGroupTy ReadWriteAccesses;
Tobias Grosser889830b2017-02-09 23:12:22 +00003219 SmallPtrSet<const ScopArrayInfo *, 4> ReadWriteArrays;
Tobias Grosser079d5112017-02-18 20:51:29 +00003220 SmallPtrSet<const ScopArrayInfo *, 4> ReadOnlyArrays;
Tobias Grosser77f32572017-01-16 15:49:07 +00003221
Tobias Grosser77f32572017-01-16 15:49:07 +00003222 if (AliasGroup.size() < 2)
3223 return true;
3224
3225 for (MemoryAccess *Access : AliasGroup) {
Eli Friedmane737fc12017-07-17 23:58:33 +00003226 ORE.emit(OptimizationRemarkAnalysis(DEBUG_TYPE, "PossibleAlias",
3227 Access->getAccessInstruction())
3228 << "Possibly aliasing pointer, use restrict keyword.");
Tobias Grosser889830b2017-02-09 23:12:22 +00003229 const ScopArrayInfo *Array = Access->getScopArrayInfo();
3230 if (HasWriteAccess.count(Array)) {
3231 ReadWriteArrays.insert(Array);
Tobias Grosser77f32572017-01-16 15:49:07 +00003232 ReadWriteAccesses.push_back(Access);
3233 } else {
Tobias Grosser079d5112017-02-18 20:51:29 +00003234 ReadOnlyArrays.insert(Array);
Tobias Grosser77f32572017-01-16 15:49:07 +00003235 ReadOnlyAccesses.push_back(Access);
3236 }
3237 }
3238
Tobias Grosserf3c145f2017-01-16 15:49:09 +00003239 // If there are no read-only pointers, and less than two read-write pointers,
3240 // no alias check is needed.
Tobias Grosser889830b2017-02-09 23:12:22 +00003241 if (ReadOnlyAccesses.empty() && ReadWriteArrays.size() <= 1)
Tobias Grosser77f32572017-01-16 15:49:07 +00003242 return true;
3243
Tobias Grosserf3c145f2017-01-16 15:49:09 +00003244 // If there is no read-write pointer, no alias check is needed.
Tobias Grosser889830b2017-02-09 23:12:22 +00003245 if (ReadWriteArrays.empty())
Tobias Grosser77f32572017-01-16 15:49:07 +00003246 return true;
3247
Tobias Grosserf3c145f2017-01-16 15:49:09 +00003248 // For non-affine accesses, no alias check can be generated as we cannot
3249 // compute a sufficiently tight lower and upper bound: bail out.
Tobias Grosser77f32572017-01-16 15:49:07 +00003250 for (MemoryAccess *MA : AliasGroup) {
3251 if (!MA->isAffine()) {
Eli Friedmane737fc12017-07-17 23:58:33 +00003252 invalidate(ALIASING, MA->getAccessInstruction()->getDebugLoc(),
3253 MA->getAccessInstruction()->getParent());
Tobias Grosser77f32572017-01-16 15:49:07 +00003254 return false;
3255 }
Tobias Grosser0032d872017-01-16 15:49:14 +00003256 }
3257
3258 // Ensure that for all memory accesses for which we generate alias checks,
3259 // their base pointers are available.
3260 for (MemoryAccess *MA : AliasGroup) {
Tobias Grosser77f32572017-01-16 15:49:07 +00003261 if (MemoryAccess *BasePtrMA = lookupBasePtrAccess(MA))
3262 addRequiredInvariantLoad(
3263 cast<LoadInst>(BasePtrMA->getAccessInstruction()));
3264 }
3265
3266 MinMaxAliasGroups.emplace_back();
3267 MinMaxVectorPairTy &pair = MinMaxAliasGroups.back();
3268 MinMaxVectorTy &MinMaxAccessesReadWrite = pair.first;
3269 MinMaxVectorTy &MinMaxAccessesReadOnly = pair.second;
3270
3271 bool Valid;
3272
3273 Valid =
3274 calculateMinMaxAccess(ReadWriteAccesses, *this, MinMaxAccessesReadWrite);
3275
3276 if (!Valid)
3277 return false;
3278
3279 // Bail out if the number of values we need to compare is too large.
3280 // This is important as the number of comparisons grows quadratically with
3281 // the number of values we need to compare.
Tobias Grosser079d5112017-02-18 20:51:29 +00003282 if (MinMaxAccessesReadWrite.size() + ReadOnlyArrays.size() >
Tobias Grosser77f32572017-01-16 15:49:07 +00003283 RunTimeChecksMaxArraysPerGroup)
3284 return false;
3285
3286 Valid =
3287 calculateMinMaxAccess(ReadOnlyAccesses, *this, MinMaxAccessesReadOnly);
3288
3289 if (!Valid)
3290 return false;
3291
3292 return true;
3293}
3294
Tobias Grosserc80d6972016-09-02 06:33:33 +00003295/// Get the smallest loop that contains @p S but is not in @p S.
Johannes Doerfertef744432016-05-23 12:42:38 +00003296static Loop *getLoopSurroundingScop(Scop &S, LoopInfo &LI) {
Johannes Doerfertdec27df2015-11-21 16:56:13 +00003297 // Start with the smallest loop containing the entry and expand that
3298 // loop until it contains all blocks in the region. If there is a loop
3299 // containing all blocks in the region check if it is itself contained
3300 // and if so take the parent loop as it will be the smallest containing
3301 // the region but not contained by it.
Johannes Doerfertef744432016-05-23 12:42:38 +00003302 Loop *L = LI.getLoopFor(S.getEntry());
Johannes Doerfertdec27df2015-11-21 16:56:13 +00003303 while (L) {
3304 bool AllContained = true;
Johannes Doerfertef744432016-05-23 12:42:38 +00003305 for (auto *BB : S.blocks())
Johannes Doerfertdec27df2015-11-21 16:56:13 +00003306 AllContained &= L->contains(BB);
3307 if (AllContained)
3308 break;
3309 L = L->getParentLoop();
3310 }
3311
Johannes Doerfertef744432016-05-23 12:42:38 +00003312 return L ? (S.contains(L) ? L->getParentLoop() : L) : nullptr;
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00003313}
3314
Singapuram Sanjay Srivallabh1abd9ff2017-07-12 16:46:19 +00003315int Scop::NextScopID = 0;
3316
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00003317std::string Scop::CurrentFunc;
Singapuram Sanjay Srivallabh1abd9ff2017-07-12 16:46:19 +00003318
3319int Scop::getNextID(std::string ParentFunc) {
3320 if (ParentFunc != CurrentFunc) {
3321 CurrentFunc = ParentFunc;
3322 NextScopID = 0;
3323 }
3324 return NextScopID++;
3325}
3326
Johannes Doerfertffd222f2016-05-19 12:34:57 +00003327Scop::Scop(Region &R, ScalarEvolution &ScalarEvolution, LoopInfo &LI,
Tobias Grosseree457592017-09-24 09:25:30 +00003328 DominatorTree &DT, ScopDetection::DetectionContext &DC,
3329 OptimizationRemarkEmitter &ORE)
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003330 : IslCtx(isl_ctx_alloc(), isl_ctx_free), SE(&ScalarEvolution), DT(&DT),
Philip Pfaffee9ca17e2018-05-02 14:55:39 +00003331 R(R), name(R.getNameStr()), HasSingleExitEdge(R.getExitingBlock()),
3332 DC(DC), ORE(ORE), Affinator(this, LI),
Singapuram Sanjay Srivallabh1abd9ff2017-07-12 16:46:19 +00003333 ID(getNextID((*R.getEntry()->getParent()).getName().str())) {
Tobias Grosser2937b592016-04-29 11:43:20 +00003334 if (IslOnErrorAbort)
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003335 isl_options_set_on_error(getIslCtx().get(), ISL_ON_ERROR_ABORT);
Tobias Grosserd840fc72016-02-04 13:18:42 +00003336 buildContext();
3337}
Johannes Doerfertff9d1982015-02-24 12:00:50 +00003338
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003339Scop::~Scop() = default;
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00003340
Tobias Grosserbedef002016-12-02 08:10:56 +00003341void Scop::foldSizeConstantsToRight() {
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00003342 isl_union_set *Accessed = isl_union_map_range(getAccesses().release());
Tobias Grosserbedef002016-12-02 08:10:56 +00003343
3344 for (auto Array : arrays()) {
3345 if (Array->getNumberOfDimensions() <= 1)
3346 continue;
3347
Tobias Grosser77eef902017-07-21 23:07:56 +00003348 isl_space *Space = Array->getSpace().release();
Tobias Grosserbedef002016-12-02 08:10:56 +00003349
3350 Space = isl_space_align_params(Space, isl_union_set_get_space(Accessed));
3351
3352 if (!isl_union_set_contains(Accessed, Space)) {
3353 isl_space_free(Space);
3354 continue;
3355 }
3356
3357 isl_set *Elements = isl_union_set_extract_set(Accessed, Space);
3358
3359 isl_map *Transform =
Tobias Grosser77eef902017-07-21 23:07:56 +00003360 isl_map_universe(isl_space_map_from_set(Array->getSpace().release()));
Tobias Grosserbedef002016-12-02 08:10:56 +00003361
3362 std::vector<int> Int;
3363
3364 int Dims = isl_set_dim(Elements, isl_dim_set);
3365 for (int i = 0; i < Dims; i++) {
3366 isl_set *DimOnly =
3367 isl_set_project_out(isl_set_copy(Elements), isl_dim_set, 0, i);
3368 DimOnly = isl_set_project_out(DimOnly, isl_dim_set, 1, Dims - i - 1);
3369 DimOnly = isl_set_lower_bound_si(DimOnly, isl_dim_set, 0, 0);
3370
3371 isl_basic_set *DimHull = isl_set_affine_hull(DimOnly);
3372
3373 if (i == Dims - 1) {
3374 Int.push_back(1);
3375 Transform = isl_map_equate(Transform, isl_dim_in, i, isl_dim_out, i);
3376 isl_basic_set_free(DimHull);
3377 continue;
3378 }
3379
3380 if (isl_basic_set_dim(DimHull, isl_dim_div) == 1) {
3381 isl_aff *Diff = isl_basic_set_get_div(DimHull, 0);
3382 isl_val *Val = isl_aff_get_denominator_val(Diff);
3383 isl_aff_free(Diff);
3384
3385 int ValInt = 1;
3386
Eli Friedmana75d53c2018-01-17 21:59:02 +00003387 if (isl_val_is_int(Val)) {
3388 auto ValAPInt = APIntFromVal(Val);
3389 if (ValAPInt.isSignedIntN(32))
3390 ValInt = ValAPInt.getSExtValue();
3391 } else {
3392 isl_val_free(Val);
3393 }
Tobias Grosserbedef002016-12-02 08:10:56 +00003394
3395 Int.push_back(ValInt);
3396
3397 isl_constraint *C = isl_constraint_alloc_equality(
3398 isl_local_space_from_space(isl_map_get_space(Transform)));
3399 C = isl_constraint_set_coefficient_si(C, isl_dim_out, i, ValInt);
3400 C = isl_constraint_set_coefficient_si(C, isl_dim_in, i, -1);
3401 Transform = isl_map_add_constraint(Transform, C);
3402 isl_basic_set_free(DimHull);
3403 continue;
3404 }
3405
3406 isl_basic_set *ZeroSet = isl_basic_set_copy(DimHull);
3407 ZeroSet = isl_basic_set_fix_si(ZeroSet, isl_dim_set, 0, 0);
3408
3409 int ValInt = 1;
3410 if (isl_basic_set_is_equal(ZeroSet, DimHull)) {
3411 ValInt = 0;
3412 }
3413
3414 Int.push_back(ValInt);
3415 Transform = isl_map_equate(Transform, isl_dim_in, i, isl_dim_out, i);
3416 isl_basic_set_free(DimHull);
3417 isl_basic_set_free(ZeroSet);
3418 }
3419
3420 isl_set *MappedElements = isl_map_domain(isl_map_copy(Transform));
3421
3422 if (!isl_set_is_subset(Elements, MappedElements)) {
3423 isl_set_free(Elements);
3424 isl_set_free(MappedElements);
3425 isl_map_free(Transform);
3426 continue;
3427 }
3428
3429 isl_set_free(MappedElements);
3430
3431 bool CanFold = true;
3432
3433 if (Int[0] <= 1)
3434 CanFold = false;
3435
3436 unsigned NumDims = Array->getNumberOfDimensions();
3437 for (unsigned i = 1; i < NumDims - 1; i++)
3438 if (Int[0] != Int[i] && Int[i])
3439 CanFold = false;
3440
3441 if (!CanFold) {
3442 isl_set_free(Elements);
3443 isl_map_free(Transform);
3444 continue;
3445 }
3446
Tobias Grosserbedef002016-12-02 08:10:56 +00003447 for (auto &Access : AccessFunctions)
3448 if (Access->getScopArrayInfo() == Array)
Tobias Grosser6d588042017-08-02 19:27:16 +00003449 Access->setAccessRelation(Access->getAccessRelation().apply_range(
Tobias Grosser718d04c2018-02-20 07:26:58 +00003450 isl::manage_copy(Transform)));
Tobias Grosserbedef002016-12-02 08:10:56 +00003451
3452 isl_map_free(Transform);
3453
3454 std::vector<const SCEV *> Sizes;
3455 for (unsigned i = 0; i < NumDims; i++) {
3456 auto Size = Array->getDimensionSize(i);
3457
3458 if (i == NumDims - 1)
3459 Size = SE->getMulExpr(Size, SE->getConstant(Size->getType(), Int[0]));
3460 Sizes.push_back(Size);
3461 }
3462
3463 Array->updateSizes(Sizes, false /* CheckConsistency */);
3464
3465 isl_set_free(Elements);
3466 }
3467 isl_union_set_free(Accessed);
Tobias Grosserbedef002016-12-02 08:10:56 +00003468}
3469
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00003470void Scop::markFortranArrays() {
3471 for (ScopStmt &Stmt : Stmts) {
3472 for (MemoryAccess *MemAcc : Stmt) {
3473 Value *FAD = MemAcc->getFortranArrayDescriptor();
3474 if (!FAD)
3475 continue;
3476
3477 // TODO: const_cast-ing to edit
3478 ScopArrayInfo *SAI =
3479 const_cast<ScopArrayInfo *>(MemAcc->getLatestScopArrayInfo());
3480 assert(SAI && "memory access into a Fortran array does not "
3481 "have an associated ScopArrayInfo");
3482 SAI->applyAndSetFAD(FAD);
3483 }
3484 }
3485}
3486
Tobias Grosser491b7992016-12-02 05:21:22 +00003487void Scop::finalizeAccesses() {
3488 updateAccessDimensionality();
Tobias Grosserbedef002016-12-02 08:10:56 +00003489 foldSizeConstantsToRight();
Tobias Grosser491b7992016-12-02 05:21:22 +00003490 foldAccessRelations();
3491 assumeNoOutOfBounds();
Siddharth Bhatb7f68b82017-05-19 15:07:45 +00003492 markFortranArrays();
Tobias Grosser491b7992016-12-02 05:21:22 +00003493}
3494
Tobias Grosser99c70dd2015-09-26 08:55:54 +00003495void Scop::updateAccessDimensionality() {
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +00003496 // Check all array accesses for each base pointer and find a (virtual) element
3497 // size for the base pointer that divides all access functions.
Tobias Grosser9c7d1812017-02-09 23:24:54 +00003498 for (ScopStmt &Stmt : *this)
3499 for (MemoryAccess *Access : Stmt) {
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +00003500 if (!Access->isArrayKind())
3501 continue;
Tobias Grosser9c7d1812017-02-09 23:24:54 +00003502 ScopArrayInfo *Array =
Tobias Grossere24b7b92017-02-09 23:24:57 +00003503 const_cast<ScopArrayInfo *>(Access->getScopArrayInfo());
3504
Tobias Grosser9c7d1812017-02-09 23:24:54 +00003505 if (Array->getNumberOfDimensions() != 1)
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +00003506 continue;
Tobias Grosser9c7d1812017-02-09 23:24:54 +00003507 unsigned DivisibleSize = Array->getElemSizeInBytes();
3508 const SCEV *Subscript = Access->getSubscript(0);
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +00003509 while (!isDivisible(Subscript, DivisibleSize, *SE))
3510 DivisibleSize /= 2;
3511 auto *Ty = IntegerType::get(SE->getContext(), DivisibleSize * 8);
Tobias Grosser9c7d1812017-02-09 23:24:54 +00003512 Array->updateElementType(Ty);
Johannes Doerfert4d9bb8d2016-02-18 16:50:12 +00003513 }
3514
Tobias Grosser99c70dd2015-09-26 08:55:54 +00003515 for (auto &Stmt : *this)
3516 for (auto &Access : Stmt)
3517 Access->updateDimensionality();
3518}
3519
Tobias Grosser491b7992016-12-02 05:21:22 +00003520void Scop::foldAccessRelations() {
3521 for (auto &Stmt : *this)
3522 for (auto &Access : Stmt)
3523 Access->foldAccessRelation();
3524}
3525
3526void Scop::assumeNoOutOfBounds() {
3527 for (auto &Stmt : *this)
3528 for (auto &Access : Stmt)
3529 Access->assumeNoOutOfBound();
3530}
3531
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003532void Scop::removeFromStmtMap(ScopStmt &Stmt) {
Tobias Grosserbd15d132017-08-31 03:15:56 +00003533 for (Instruction *Inst : Stmt.getInstructions())
3534 InstStmtMap.erase(Inst);
3535
3536 if (Stmt.isRegionStmt()) {
Michael Krusecd3b9fe2017-08-09 16:45:37 +00003537 for (BasicBlock *BB : Stmt.getRegion()->blocks()) {
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003538 StmtMap.erase(BB);
Tobias Grosserbd15d132017-08-31 03:15:56 +00003539 // Skip entry basic block, as its instructions are already deleted as
3540 // part of the statement's instruction list.
3541 if (BB == Stmt.getEntryBlock())
3542 continue;
Michael Krusecd3b9fe2017-08-09 16:45:37 +00003543 for (Instruction &Inst : *BB)
3544 InstStmtMap.erase(&Inst);
3545 }
Tobias Grosserbd15d132017-08-31 03:15:56 +00003546 } else {
Michael Kruse0c6c5552017-09-01 11:36:52 +00003547 auto StmtMapIt = StmtMap.find(Stmt.getBasicBlock());
3548 if (StmtMapIt != StmtMap.end())
3549 StmtMapIt->second.erase(std::remove(StmtMapIt->second.begin(),
3550 StmtMapIt->second.end(), &Stmt),
3551 StmtMapIt->second.end());
3552 for (Instruction *Inst : Stmt.getInstructions())
3553 InstStmtMap.erase(Inst);
Michael Krusecd3b9fe2017-08-09 16:45:37 +00003554 }
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003555}
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00003556
Michael Kruse192e7f72018-04-09 23:13:05 +00003557void Scop::removeStmts(std::function<bool(ScopStmt &)> ShouldDelete,
3558 bool AfterHoisting) {
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003559 for (auto StmtIt = Stmts.begin(), StmtEnd = Stmts.end(); StmtIt != StmtEnd;) {
3560 if (!ShouldDelete(*StmtIt)) {
3561 StmtIt++;
3562 continue;
3563 }
3564
Michael Kruse192e7f72018-04-09 23:13:05 +00003565 // Start with removing all of the statement's accesses including erasing it
3566 // from all maps that are pointing to them.
Michael Krusedb6f71e2018-04-10 01:20:41 +00003567 // Make a temporary copy because removing MAs invalidates the iterator.
3568 SmallVector<MemoryAccess *, 16> MAList(StmtIt->begin(), StmtIt->end());
3569 for (MemoryAccess *MA : MAList)
Michael Kruse192e7f72018-04-09 23:13:05 +00003570 StmtIt->removeSingleMemoryAccess(MA, AfterHoisting);
3571
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003572 removeFromStmtMap(*StmtIt);
3573 StmtIt = Stmts.erase(StmtIt);
3574 }
3575}
3576
3577void Scop::removeStmtNotInDomainMap() {
3578 auto ShouldDelete = [this](ScopStmt &Stmt) -> bool {
Tobias Grosser199ec4a2017-07-19 16:31:10 +00003579 return !this->DomainMap.lookup(Stmt.getEntryBlock());
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003580 };
Michael Kruse192e7f72018-04-09 23:13:05 +00003581 removeStmts(ShouldDelete, false);
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003582}
3583
3584void Scop::simplifySCoP(bool AfterHoisting) {
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003585 auto ShouldDelete = [AfterHoisting](ScopStmt &Stmt) -> bool {
Michael Kruse5369ea52018-04-20 18:55:44 +00003586 // Never delete statements that contain calls to debug functions.
3587 if (hasDebugCall(&Stmt))
3588 return false;
3589
Johannes Doerfert26404542016-05-10 12:19:47 +00003590 bool RemoveStmt = Stmt.isEmpty();
Johannes Doerfertf17a78e2015-10-04 15:00:05 +00003591
Tobias Grosser3012a0b2017-07-16 22:44:17 +00003592 // Remove read only statements only after invariant load hoisting.
Johannes Doerfert26404542016-05-10 12:19:47 +00003593 if (!RemoveStmt && AfterHoisting) {
Johannes Doerferteca9e892015-11-03 16:54:49 +00003594 bool OnlyRead = true;
3595 for (MemoryAccess *MA : Stmt) {
3596 if (MA->isRead())
3597 continue;
3598
3599 OnlyRead = false;
3600 break;
3601 }
3602
3603 RemoveStmt = OnlyRead;
3604 }
Tobias Grosser21cbcf02017-07-16 23:55:38 +00003605 return RemoveStmt;
3606 };
Johannes Doerferteca9e892015-11-03 16:54:49 +00003607
Michael Kruse192e7f72018-04-09 23:13:05 +00003608 removeStmts(ShouldDelete, AfterHoisting);
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00003609}
3610
Johannes Doerfert8ab28032016-04-27 12:49:11 +00003611InvariantEquivClassTy *Scop::lookupInvariantEquivClass(Value *Val) {
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003612 LoadInst *LInst = dyn_cast<LoadInst>(Val);
3613 if (!LInst)
3614 return nullptr;
3615
3616 if (Value *Rep = InvEquivClassVMap.lookup(LInst))
3617 LInst = cast<LoadInst>(Rep);
3618
Johannes Doerfert96e54712016-02-07 17:30:13 +00003619 Type *Ty = LInst->getType();
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003620 const SCEV *PointerSCEV = SE->getSCEV(LInst->getPointerOperand());
Johannes Doerfert549768c2016-03-24 13:22:16 +00003621 for (auto &IAClass : InvariantEquivClasses) {
Tobias Grosserfaef9a72016-07-11 12:27:04 +00003622 if (PointerSCEV != IAClass.IdentifyingPointer || Ty != IAClass.AccessType)
Johannes Doerfert549768c2016-03-24 13:22:16 +00003623 continue;
3624
Tobias Grosser4e2d9c42016-07-11 12:15:10 +00003625 auto &MAs = IAClass.InvariantAccesses;
Johannes Doerfert549768c2016-03-24 13:22:16 +00003626 for (auto *MA : MAs)
3627 if (MA->getAccessInstruction() == Val)
3628 return &IAClass;
3629 }
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003630
3631 return nullptr;
3632}
3633
Siddharth Bhat7bc77e82017-08-21 11:57:04 +00003634bool isAParameter(llvm::Value *maybeParam, const Function &F) {
3635 for (const llvm::Argument &Arg : F.args())
3636 if (&Arg == maybeParam)
3637 return true;
3638
3639 return false;
Michael Kruse594386e2017-08-23 12:34:37 +00003640}
Siddharth Bhat7bc77e82017-08-21 11:57:04 +00003641
Tobias Grosser305d3162017-08-07 00:10:11 +00003642bool Scop::canAlwaysBeHoisted(MemoryAccess *MA, bool StmtInvalidCtxIsEmpty,
3643 bool MAInvalidCtxIsEmpty,
3644 bool NonHoistableCtxIsEmpty) {
Johannes Doerfert1dc12af2016-04-23 12:59:18 +00003645 LoadInst *LInst = cast<LoadInst>(MA->getAccessInstruction());
3646 const DataLayout &DL = LInst->getParent()->getModule()->getDataLayout();
Siddharth Bhat7bc77e82017-08-21 11:57:04 +00003647 if (PollyAllowDereferenceOfAllFunctionParams &&
3648 isAParameter(LInst->getPointerOperand(), getFunction()))
3649 return true;
3650
Johannes Doerfert1dc12af2016-04-23 12:59:18 +00003651 // TODO: We can provide more information for better but more expensive
3652 // results.
3653 if (!isDereferenceableAndAlignedPointer(LInst->getPointerOperand(),
3654 LInst->getAlignment(), DL))
3655 return false;
3656
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003657 // If the location might be overwritten we do not hoist it unconditionally.
3658 //
Siddharth Bhat83fe6b52017-08-08 12:26:32 +00003659 // TODO: This is probably too conservative.
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003660 if (!NonHoistableCtxIsEmpty)
3661 return false;
3662
Michael Krusea6d48f52017-06-08 12:06:15 +00003663 // If a dereferenceable load is in a statement that is modeled precisely we
3664 // can hoist it.
Johannes Doerfert85676e32016-04-23 14:32:34 +00003665 if (StmtInvalidCtxIsEmpty && MAInvalidCtxIsEmpty)
Johannes Doerfert1dc12af2016-04-23 12:59:18 +00003666 return true;
3667
3668 // Even if the statement is not modeled precisely we can hoist the load if it
Tobias Grossercdbe5c92017-01-06 17:30:34 +00003669 // does not involve any parameters that might have been specialized by the
Johannes Doerfert1dc12af2016-04-23 12:59:18 +00003670 // statement domain.
3671 for (unsigned u = 0, e = MA->getNumSubscripts(); u < e; u++)
3672 if (!isa<SCEVConstant>(MA->getSubscript(u)))
3673 return false;
3674 return true;
3675}
3676
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003677void Scop::addInvariantLoads(ScopStmt &Stmt, InvariantAccessesTy &InvMAs) {
Johannes Doerfert5d03f842016-04-22 11:38:44 +00003678 if (InvMAs.empty())
3679 return;
3680
Tobias Grosser2332fa32017-08-06 15:36:48 +00003681 isl::set StmtInvalidCtx = Stmt.getInvalidContext();
3682 bool StmtInvalidCtxIsEmpty = StmtInvalidCtx.is_empty();
Johannes Doerfertd77089e2016-04-22 11:41:14 +00003683
Johannes Doerfert3ef78d62016-04-08 10:30:09 +00003684 // Get the context under which the statement is executed but remove the error
3685 // context under which this statement is reached.
Tobias Grossere69b2722017-08-06 23:50:25 +00003686 isl::set DomainCtx = Stmt.getDomain().params();
3687 DomainCtx = DomainCtx.subtract(StmtInvalidCtx);
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003688
Tobias Grossere69b2722017-08-06 23:50:25 +00003689 if (isl_set_n_basic_set(DomainCtx.get()) >= MaxDisjunctsInDomain) {
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003690 auto *AccInst = InvMAs.front().MA->getAccessInstruction();
Eli Friedmane737fc12017-07-17 23:58:33 +00003691 invalidate(COMPLEXITY, AccInst->getDebugLoc(), AccInst->getParent());
Johannes Doerfertd77089e2016-04-22 11:41:14 +00003692 return;
3693 }
3694
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003695 // Project out all parameters that relate to loads in the statement. Otherwise
3696 // we could have cyclic dependences on the constraints under which the
3697 // hoisted loads are executed and we could not determine an order in which to
3698 // pre-load them. This happens because not only lower bounds are part of the
3699 // domain but also upper bounds.
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003700 for (auto &InvMA : InvMAs) {
3701 auto *MA = InvMA.MA;
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003702 Instruction *AccInst = MA->getAccessInstruction();
3703 if (SE->isSCEVable(AccInst->getType())) {
Johannes Doerfert44483c52015-11-07 19:45:27 +00003704 SetVector<Value *> Values;
3705 for (const SCEV *Parameter : Parameters) {
3706 Values.clear();
Johannes Doerfert7b811032016-04-08 10:25:58 +00003707 findValues(Parameter, *SE, Values);
Johannes Doerfert44483c52015-11-07 19:45:27 +00003708 if (!Values.count(AccInst))
3709 continue;
3710
Tobias Grossere69b2722017-08-06 23:50:25 +00003711 if (isl::id ParamId = getIdForParam(Parameter)) {
3712 int Dim = DomainCtx.find_dim_by_id(isl::dim::param, ParamId);
Tobias Grosserb58ed8d2017-03-17 09:02:53 +00003713 if (Dim >= 0)
Tobias Grossere69b2722017-08-06 23:50:25 +00003714 DomainCtx = DomainCtx.eliminate(isl::dim::param, Dim, 1);
Johannes Doerfert44483c52015-11-07 19:45:27 +00003715 }
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003716 }
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003717 }
3718 }
3719
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003720 for (auto &InvMA : InvMAs) {
3721 auto *MA = InvMA.MA;
Tobias Grossere69b2722017-08-06 23:50:25 +00003722 isl::set NHCtx = InvMA.NonHoistableCtx;
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003723
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003724 // Check for another invariant access that accesses the same location as
3725 // MA and if found consolidate them. Otherwise create a new equivalence
3726 // class at the end of InvariantEquivClasses.
3727 LoadInst *LInst = cast<LoadInst>(MA->getAccessInstruction());
Johannes Doerfert96e54712016-02-07 17:30:13 +00003728 Type *Ty = LInst->getType();
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003729 const SCEV *PointerSCEV = SE->getSCEV(LInst->getPointerOperand());
3730
Tobias Grossere69b2722017-08-06 23:50:25 +00003731 isl::set MAInvalidCtx = MA->getInvalidContext();
3732 bool NonHoistableCtxIsEmpty = NHCtx.is_empty();
3733 bool MAInvalidCtxIsEmpty = MAInvalidCtx.is_empty();
Johannes Doerfert85676e32016-04-23 14:32:34 +00003734
Tobias Grossere69b2722017-08-06 23:50:25 +00003735 isl::set MACtx;
Johannes Doerfert1dc12af2016-04-23 12:59:18 +00003736 // Check if we know that this pointer can be speculatively accessed.
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003737 if (canAlwaysBeHoisted(MA, StmtInvalidCtxIsEmpty, MAInvalidCtxIsEmpty,
3738 NonHoistableCtxIsEmpty)) {
Tobias Grossere69b2722017-08-06 23:50:25 +00003739 MACtx = isl::set::universe(DomainCtx.get_space());
Johannes Doerfert1dc12af2016-04-23 12:59:18 +00003740 } else {
Tobias Grossere69b2722017-08-06 23:50:25 +00003741 MACtx = DomainCtx;
3742 MACtx = MACtx.subtract(MAInvalidCtx.unite(NHCtx));
3743 MACtx = MACtx.gist_params(getContext());
Johannes Doerfert1dc12af2016-04-23 12:59:18 +00003744 }
3745
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003746 bool Consolidated = false;
3747 for (auto &IAClass : InvariantEquivClasses) {
Tobias Grosserfaef9a72016-07-11 12:27:04 +00003748 if (PointerSCEV != IAClass.IdentifyingPointer || Ty != IAClass.AccessType)
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003749 continue;
3750
Johannes Doerfertdf880232016-03-03 12:26:58 +00003751 // If the pointer and the type is equal check if the access function wrt.
3752 // to the domain is equal too. It can happen that the domain fixes
3753 // parameter values and these can be different for distinct part of the
Johannes Doerfertac37c562016-03-03 12:30:19 +00003754 // SCoP. If this happens we cannot consolidate the loads but need to
Johannes Doerfertdf880232016-03-03 12:26:58 +00003755 // create a new invariant load equivalence class.
Tobias Grosser4e2d9c42016-07-11 12:15:10 +00003756 auto &MAs = IAClass.InvariantAccesses;
Johannes Doerfertdf880232016-03-03 12:26:58 +00003757 if (!MAs.empty()) {
3758 auto *LastMA = MAs.front();
3759
Tobias Grossere69b2722017-08-06 23:50:25 +00003760 isl::set AR = MA->getAccessRelation().range();
3761 isl::set LastAR = LastMA->getAccessRelation().range();
3762 bool SameAR = AR.is_equal(LastAR);
Johannes Doerfertdf880232016-03-03 12:26:58 +00003763
3764 if (!SameAR)
3765 continue;
3766 }
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003767
3768 // Add MA to the list of accesses that are in this class.
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003769 MAs.push_front(MA);
3770
Johannes Doerfertdf880232016-03-03 12:26:58 +00003771 Consolidated = true;
3772
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003773 // Unify the execution context of the class and this statement.
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003774 isl::set IAClassDomainCtx = IAClass.ExecutionContext;
Johannes Doerfertfc4bfc42015-11-11 04:30:07 +00003775 if (IAClassDomainCtx)
Tobias Grossere69b2722017-08-06 23:50:25 +00003776 IAClassDomainCtx = IAClassDomainCtx.unite(MACtx).coalesce();
Johannes Doerfertfc4bfc42015-11-11 04:30:07 +00003777 else
Johannes Doerfert1dc12af2016-04-23 12:59:18 +00003778 IAClassDomainCtx = MACtx;
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003779 IAClass.ExecutionContext = IAClassDomainCtx;
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003780 break;
3781 }
3782
3783 if (Consolidated)
3784 continue;
3785
3786 // If we did not consolidate MA, thus did not find an equivalence class
3787 // for it, we create a new one.
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003788 InvariantEquivClasses.emplace_back(
3789 InvariantEquivClassTy{PointerSCEV, MemoryAccessList{MA}, MACtx, Ty});
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003790 }
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00003791}
3792
Tobias Grosser1eeedf42017-07-20 19:55:19 +00003793/// Check if an access range is too complex.
3794///
3795/// An access range is too complex, if it contains either many disjuncts or
3796/// very complex expressions. As a simple heuristic, we assume if a set to
3797/// be too complex if the sum of existentially quantified dimensions and
3798/// set dimensions is larger than a threshold. This reliably detects both
3799/// sets with many disjuncts as well as sets with many divisions as they
3800/// arise in h264.
3801///
3802/// @param AccessRange The range to check for complexity.
3803///
3804/// @returns True if the access range is too complex.
3805static bool isAccessRangeTooComplex(isl::set AccessRange) {
3806 unsigned NumTotalDims = 0;
3807
3808 auto CountDimensions = [&NumTotalDims](isl::basic_set BSet) -> isl::stat {
3809 NumTotalDims += BSet.dim(isl::dim::div);
3810 NumTotalDims += BSet.dim(isl::dim::set);
3811 return isl::stat::ok;
3812 };
3813
3814 AccessRange.foreach_basic_set(CountDimensions);
3815
3816 if (NumTotalDims > MaxDimensionsInAccessRange)
3817 return true;
3818
3819 return false;
3820}
3821
Tobias Grosser4071cb52017-06-06 23:13:02 +00003822isl::set Scop::getNonHoistableCtx(MemoryAccess *Access, isl::union_map Writes) {
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003823 // TODO: Loads that are not loop carried, hence are in a statement with
3824 // zero iterators, are by construction invariant, though we
3825 // currently "hoist" them anyway. This is necessary because we allow
3826 // them to be treated as parameters (e.g., in conditions) and our code
3827 // generation would otherwise use the old value.
3828
3829 auto &Stmt = *Access->getStatement();
Michael Kruse375cb5f2016-02-24 22:08:24 +00003830 BasicBlock *BB = Stmt.getEntryBlock();
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003831
Johannes Doerfertc9765462016-11-17 22:11:56 +00003832 if (Access->isScalarKind() || Access->isWrite() || !Access->isAffine() ||
3833 Access->isMemoryIntrinsic())
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003834 return nullptr;
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003835
3836 // Skip accesses that have an invariant base pointer which is defined but
3837 // not loaded inside the SCoP. This can happened e.g., if a readnone call
3838 // returns a pointer that is used as a base address. However, as we want
3839 // to hoist indirect pointers, we allow the base pointer to be defined in
3840 // the region if it is also a memory access. Each ScopArrayInfo object
3841 // that has a base pointer origin has a base pointer that is loaded and
3842 // that it is invariant, thus it will be hoisted too. However, if there is
3843 // no base pointer origin we check that the base pointer is defined
3844 // outside the region.
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003845 auto *LI = cast<LoadInst>(Access->getAccessInstruction());
Johannes Doerfert764b7e62016-05-23 09:26:46 +00003846 if (hasNonHoistableBasePtrInScop(Access, Writes))
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003847 return nullptr;
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003848
Tobias Grosserd3d3d6b2018-04-29 00:28:26 +00003849 isl::map AccessRelation = Access->getAccessRelation();
Tobias Grosser4071cb52017-06-06 23:13:02 +00003850 assert(!AccessRelation.is_empty());
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003851
Tobias Grosser4071cb52017-06-06 23:13:02 +00003852 if (AccessRelation.involves_dims(isl::dim::in, 0, Stmt.getNumIterators()))
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003853 return nullptr;
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003854
Tobias Grosserdcf8d692017-08-06 16:39:52 +00003855 AccessRelation = AccessRelation.intersect_domain(Stmt.getDomain());
Tobias Grosser4071cb52017-06-06 23:13:02 +00003856 isl::set SafeToLoad;
Tobias Grosserc96c1d82017-04-27 20:08:16 +00003857
3858 auto &DL = getFunction().getParent()->getDataLayout();
3859 if (isSafeToLoadUnconditionally(LI->getPointerOperand(), LI->getAlignment(),
3860 DL)) {
Tobias Grosser4071cb52017-06-06 23:13:02 +00003861 SafeToLoad = isl::set::universe(AccessRelation.get_space().range());
Tobias Grosserc96c1d82017-04-27 20:08:16 +00003862 } else if (BB != LI->getParent()) {
3863 // Skip accesses in non-affine subregions as they might not be executed
3864 // under the same condition as the entry of the non-affine subregion.
Tobias Grosserc96c1d82017-04-27 20:08:16 +00003865 return nullptr;
3866 } else {
Tobias Grosser4071cb52017-06-06 23:13:02 +00003867 SafeToLoad = AccessRelation.range();
Tobias Grosserc96c1d82017-04-27 20:08:16 +00003868 }
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003869
Tobias Grosser1eeedf42017-07-20 19:55:19 +00003870 if (isAccessRangeTooComplex(AccessRelation.range()))
3871 return nullptr;
3872
Tobias Grosser4071cb52017-06-06 23:13:02 +00003873 isl::union_map Written = Writes.intersect_range(SafeToLoad);
3874 isl::set WrittenCtx = Written.params();
3875 bool IsWritten = !WrittenCtx.is_empty();
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003876
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003877 if (!IsWritten)
3878 return WrittenCtx;
3879
Tobias Grosser4071cb52017-06-06 23:13:02 +00003880 WrittenCtx = WrittenCtx.remove_divs();
3881 bool TooComplex =
3882 isl_set_n_basic_set(WrittenCtx.get()) >= MaxDisjunctsInDomain;
3883 if (TooComplex || !isRequiredInvariantLoad(LI))
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003884 return nullptr;
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003885
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00003886 addAssumption(INVARIANTLOAD, WrittenCtx, LI->getDebugLoc(), AS_RESTRICTION,
3887 LI->getParent());
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003888 return WrittenCtx;
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003889}
3890
Johannes Doerfertffd222f2016-05-19 12:34:57 +00003891void Scop::verifyInvariantLoads() {
3892 auto &RIL = getRequiredInvariantLoads();
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003893 for (LoadInst *LI : RIL) {
Johannes Doerfert952b5302016-05-23 12:40:48 +00003894 assert(LI && contains(LI));
Michael Krusecd3b9fe2017-08-09 16:45:37 +00003895 // If there exists a statement in the scop which has a memory access for
3896 // @p LI, then mark this scop as infeasible for optimization.
3897 for (ScopStmt &Stmt : Stmts)
3898 if (Stmt.getArrayAccessOrNULLFor(LI)) {
3899 invalidate(INVARIANTLOAD, LI->getDebugLoc(), LI->getParent());
3900 return;
3901 }
Tobias Grosser29f38ab2015-12-13 21:00:40 +00003902 }
3903}
3904
Johannes Doerfertffd222f2016-05-19 12:34:57 +00003905void Scop::hoistInvariantLoads() {
Tobias Grosser0865e7752016-02-29 07:29:42 +00003906 if (!PollyInvariantLoadHoisting)
3907 return;
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00003908
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00003909 isl::union_map Writes = getWrites();
Tobias Grosser0865e7752016-02-29 07:29:42 +00003910 for (ScopStmt &Stmt : *this) {
Johannes Doerfert25227fe2016-05-23 10:40:54 +00003911 InvariantAccessesTy InvariantAccesses;
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00003912
Tobias Grosser0865e7752016-02-29 07:29:42 +00003913 for (MemoryAccess *Access : Stmt)
Tobias Grosser4071cb52017-06-06 23:13:02 +00003914 if (isl::set NHCtx = getNonHoistableCtx(Access, Writes))
Tobias Grosserd16f9272017-08-06 17:25:14 +00003915 InvariantAccesses.push_back({Access, NHCtx});
Tobias Grosser0865e7752016-02-29 07:29:42 +00003916
3917 // Transfer the memory access from the statement to the SCoP.
Michael Kruse10071822016-05-23 14:45:58 +00003918 for (auto InvMA : InvariantAccesses)
3919 Stmt.removeMemoryAccess(InvMA.MA);
Tobias Grosser0865e7752016-02-29 07:29:42 +00003920 addInvariantLoads(Stmt, InvariantAccesses);
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00003921 }
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00003922}
3923
Tobias Grosserf3adab42017-05-10 10:59:58 +00003924/// Find the canonical scop array info object for a set of invariant load
3925/// hoisted loads. The canonical array is the one that corresponds to the
3926/// first load in the list of accesses which is used as base pointer of a
3927/// scop array.
3928static const ScopArrayInfo *findCanonicalArray(Scop *S,
3929 MemoryAccessList &Accesses) {
3930 for (MemoryAccess *Access : Accesses) {
3931 const ScopArrayInfo *CanonicalArray = S->getScopArrayInfoOrNull(
3932 Access->getAccessInstruction(), MemoryKind::Array);
3933 if (CanonicalArray)
3934 return CanonicalArray;
3935 }
3936 return nullptr;
3937}
3938
3939/// Check if @p Array severs as base array in an invariant load.
3940static bool isUsedForIndirectHoistedLoad(Scop *S, const ScopArrayInfo *Array) {
3941 for (InvariantEquivClassTy &EqClass2 : S->getInvariantAccesses())
3942 for (MemoryAccess *Access2 : EqClass2.InvariantAccesses)
3943 if (Access2->getScopArrayInfo() == Array)
3944 return true;
3945 return false;
3946}
3947
3948/// Replace the base pointer arrays in all memory accesses referencing @p Old,
3949/// with a reference to @p New.
3950static void replaceBasePtrArrays(Scop *S, const ScopArrayInfo *Old,
3951 const ScopArrayInfo *New) {
3952 for (ScopStmt &Stmt : *S)
3953 for (MemoryAccess *Access : Stmt) {
3954 if (Access->getLatestScopArrayInfo() != Old)
3955 continue;
3956
Tobias Grosser6d588042017-08-02 19:27:16 +00003957 isl::id Id = New->getBasePtrId();
3958 isl::map Map = Access->getAccessRelation();
3959 Map = Map.set_tuple_id(isl::dim::out, Id);
Tobias Grosserf3adab42017-05-10 10:59:58 +00003960 Access->setAccessRelation(Map);
3961 }
3962}
3963
3964void Scop::canonicalizeDynamicBasePtrs() {
3965 for (InvariantEquivClassTy &EqClass : InvariantEquivClasses) {
3966 MemoryAccessList &BasePtrAccesses = EqClass.InvariantAccesses;
3967
3968 const ScopArrayInfo *CanonicalBasePtrSAI =
3969 findCanonicalArray(this, BasePtrAccesses);
3970
3971 if (!CanonicalBasePtrSAI)
3972 continue;
3973
3974 for (MemoryAccess *BasePtrAccess : BasePtrAccesses) {
3975 const ScopArrayInfo *BasePtrSAI = getScopArrayInfoOrNull(
3976 BasePtrAccess->getAccessInstruction(), MemoryKind::Array);
3977 if (!BasePtrSAI || BasePtrSAI == CanonicalBasePtrSAI ||
3978 !BasePtrSAI->isCompatibleWith(CanonicalBasePtrSAI))
3979 continue;
3980
3981 // we currently do not canonicalize arrays where some accesses are
3982 // hoisted as invariant loads. If we would, we need to update the access
3983 // function of the invariant loads as well. However, as this is not a
3984 // very common situation, we leave this for now to avoid further
3985 // complexity increases.
3986 if (isUsedForIndirectHoistedLoad(this, BasePtrSAI))
3987 continue;
3988
3989 replaceBasePtrArrays(this, BasePtrSAI, CanonicalBasePtrSAI);
3990 }
3991 }
3992}
3993
Michael Kruseb738ffa2017-06-28 13:02:43 +00003994ScopArrayInfo *Scop::getOrCreateScopArrayInfo(Value *BasePtr, Type *ElementType,
3995 ArrayRef<const SCEV *> Sizes,
3996 MemoryKind Kind,
3997 const char *BaseName) {
Roman Gareevd7754a12016-07-30 09:25:51 +00003998 assert((BasePtr || BaseName) &&
3999 "BasePtr and BaseName can not be nullptr at the same time.");
4000 assert(!(BasePtr && BaseName) && "BaseName is redundant.");
4001 auto &SAI = BasePtr ? ScopArrayInfoMap[std::make_pair(BasePtr, Kind)]
4002 : ScopArrayNameMap[BaseName];
Tobias Grosser99c70dd2015-09-26 08:55:54 +00004003 if (!SAI) {
Johannes Doerfert3f52e352016-05-23 12:38:05 +00004004 auto &DL = getFunction().getParent()->getDataLayout();
Tobias Grossercc779502016-02-02 13:22:54 +00004005 SAI.reset(new ScopArrayInfo(BasePtr, ElementType, getIslCtx(), Sizes, Kind,
Roman Gareevd7754a12016-07-30 09:25:51 +00004006 DL, this, BaseName));
4007 ScopArrayInfoSet.insert(SAI.get());
Tobias Grosser99c70dd2015-09-26 08:55:54 +00004008 } else {
Johannes Doerfert3ff22212016-02-14 22:31:39 +00004009 SAI->updateElementType(ElementType);
Tobias Grosser8286b832015-11-02 11:29:32 +00004010 // In case of mismatching array sizes, we bail out by setting the run-time
4011 // context to false.
Johannes Doerfert3ff22212016-02-14 22:31:39 +00004012 if (!SAI->updateSizes(Sizes))
Tobias Grosser8d4f6262015-12-12 09:52:26 +00004013 invalidate(DELINEARIZATION, DebugLoc());
Tobias Grosser99c70dd2015-09-26 08:55:54 +00004014 }
Tobias Grosserab671442015-05-23 05:58:27 +00004015 return SAI.get();
Johannes Doerfert1a28a892014-10-05 11:32:18 +00004016}
4017
Michael Kruseb738ffa2017-06-28 13:02:43 +00004018ScopArrayInfo *Scop::createScopArrayInfo(Type *ElementType,
4019 const std::string &BaseName,
4020 const std::vector<unsigned> &Sizes) {
Roman Gareevd7754a12016-07-30 09:25:51 +00004021 auto *DimSizeType = Type::getInt64Ty(getSE()->getContext());
4022 std::vector<const SCEV *> SCEVSizes;
4023
4024 for (auto size : Sizes)
Roman Gareevf5aff702016-09-12 17:08:31 +00004025 if (size)
4026 SCEVSizes.push_back(getSE()->getConstant(DimSizeType, size, false));
4027 else
4028 SCEVSizes.push_back(nullptr);
Roman Gareevd7754a12016-07-30 09:25:51 +00004029
Tobias Grosser4d5a9172017-01-14 20:25:44 +00004030 auto *SAI = getOrCreateScopArrayInfo(nullptr, ElementType, SCEVSizes,
4031 MemoryKind::Array, BaseName.c_str());
Roman Gareevd7754a12016-07-30 09:25:51 +00004032 return SAI;
4033}
4034
Tobias Grosserf3adab42017-05-10 10:59:58 +00004035const ScopArrayInfo *Scop::getScopArrayInfoOrNull(Value *BasePtr,
4036 MemoryKind Kind) {
Tobias Grosser6abc75a2015-11-10 17:31:31 +00004037 auto *SAI = ScopArrayInfoMap[std::make_pair(BasePtr, Kind)].get();
Tobias Grosserf3adab42017-05-10 10:59:58 +00004038 return SAI;
4039}
4040
4041const ScopArrayInfo *Scop::getScopArrayInfo(Value *BasePtr, MemoryKind Kind) {
4042 auto *SAI = getScopArrayInfoOrNull(BasePtr, Kind);
Johannes Doerfert1a28a892014-10-05 11:32:18 +00004043 assert(SAI && "No ScopArrayInfo available for this base pointer");
4044 return SAI;
4045}
4046
Tobias Grosser8ea1fc12017-08-06 19:52:38 +00004047std::string Scop::getContextStr() const { return getContext().to_str(); }
Johannes Doerfertb92e2182016-02-21 16:37:58 +00004048
Tobias Grosser5e6813d2014-07-02 17:47:48 +00004049std::string Scop::getAssumedContextStr() const {
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004050 assert(AssumedContext && "Assumed context not yet built");
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004051 return AssumedContext.to_str();
Tobias Grosser5e6813d2014-07-02 17:47:48 +00004052}
Johannes Doerfertb92e2182016-02-21 16:37:58 +00004053
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004054std::string Scop::getInvalidContextStr() const {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004055 return InvalidContext.to_str();
Johannes Doerfert883f8c12015-09-15 22:52:53 +00004056}
Tobias Grosser75805372011-04-29 06:27:02 +00004057
4058std::string Scop::getNameStr() const {
4059 std::string ExitName, EntryName;
Siddharth Bhat07bee292017-06-02 08:01:22 +00004060 std::tie(EntryName, ExitName) = getEntryExitStr();
4061 return EntryName + "---" + ExitName;
4062}
4063
4064std::pair<std::string, std::string> Scop::getEntryExitStr() const {
4065 std::string ExitName, EntryName;
Tobias Grosser75805372011-04-29 06:27:02 +00004066 raw_string_ostream ExitStr(ExitName);
4067 raw_string_ostream EntryStr(EntryName);
4068
Tobias Grosserf240b482014-01-09 10:42:15 +00004069 R.getEntry()->printAsOperand(EntryStr, false);
Tobias Grosser75805372011-04-29 06:27:02 +00004070 EntryStr.str();
4071
4072 if (R.getExit()) {
Tobias Grosserf240b482014-01-09 10:42:15 +00004073 R.getExit()->printAsOperand(ExitStr, false);
Tobias Grosser75805372011-04-29 06:27:02 +00004074 ExitStr.str();
4075 } else
4076 ExitName = "FunctionExit";
4077
Siddharth Bhat07bee292017-06-02 08:01:22 +00004078 return std::make_pair(EntryName, ExitName);
Tobias Grosser75805372011-04-29 06:27:02 +00004079}
4080
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004081isl::set Scop::getContext() const { return Context; }
Tobias Grosserb65ccc42017-08-06 20:11:59 +00004082isl::space Scop::getParamSpace() const { return getContext().get_space(); }
Tobias Grosser37487052011-10-06 00:03:42 +00004083
Tobias Grosserb5563c62017-08-03 13:51:15 +00004084isl::space Scop::getFullParamSpace() const {
4085 std::vector<isl::id> FortranIDs;
4086 FortranIDs = getFortranArrayIds(arrays());
4087
4088 isl::space Space = isl::space::params_alloc(
4089 getIslCtx(), ParameterIds.size() + FortranIDs.size());
4090
4091 unsigned PDim = 0;
4092 for (const SCEV *Parameter : Parameters) {
Tobias Grosser9a635702017-08-06 19:31:27 +00004093 isl::id Id = getIdForParam(Parameter);
Tobias Grosserb5563c62017-08-03 13:51:15 +00004094 Space = Space.set_dim_id(isl::dim::param, PDim++, Id);
4095 }
4096
4097 for (isl::id Id : FortranIDs)
4098 Space = Space.set_dim_id(isl::dim::param, PDim++, Id);
4099
4100 return Space;
4101}
4102
Tobias Grossere1270332017-08-06 21:42:09 +00004103isl::set Scop::getAssumedContext() const {
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004104 assert(AssumedContext && "Assumed context not yet built");
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004105 return AssumedContext;
Tobias Grossere86109f2013-10-29 21:05:49 +00004106}
4107
Michael Krusef3091bf2017-03-17 13:09:52 +00004108bool Scop::isProfitable(bool ScalarsAreUnprofitable) const {
Johannes Doerfert27d12d32016-05-10 16:38:09 +00004109 if (PollyProcessUnprofitable)
4110 return true;
4111
Johannes Doerfert27d12d32016-05-10 16:38:09 +00004112 if (isEmpty())
4113 return false;
4114
4115 unsigned OptimizableStmtsOrLoops = 0;
4116 for (auto &Stmt : *this) {
4117 if (Stmt.getNumIterators() == 0)
4118 continue;
4119
4120 bool ContainsArrayAccs = false;
4121 bool ContainsScalarAccs = false;
4122 for (auto *MA : Stmt) {
4123 if (MA->isRead())
4124 continue;
Michael Krusef3091bf2017-03-17 13:09:52 +00004125 ContainsArrayAccs |= MA->isLatestArrayKind();
4126 ContainsScalarAccs |= MA->isLatestScalarKind();
Johannes Doerfert27d12d32016-05-10 16:38:09 +00004127 }
4128
Michael Krusef3091bf2017-03-17 13:09:52 +00004129 if (!ScalarsAreUnprofitable || (ContainsArrayAccs && !ContainsScalarAccs))
Johannes Doerfert27d12d32016-05-10 16:38:09 +00004130 OptimizableStmtsOrLoops += Stmt.getNumIterators();
4131 }
4132
4133 return OptimizableStmtsOrLoops > 1;
4134}
4135
Johannes Doerfert5d5b3062015-08-20 18:06:30 +00004136bool Scop::hasFeasibleRuntimeContext() const {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004137 auto PositiveContext = getAssumedContext();
4138 auto NegativeContext = getInvalidContext();
4139 PositiveContext = addNonEmptyDomainConstraints(PositiveContext);
4140 // addNonEmptyDomainConstraints returns null if ScopStmts have a null domain
4141 if (!PositiveContext)
Johannes Doerfert94341c92016-04-23 13:00:27 +00004142 return false;
Johannes Doerfert94341c92016-04-23 13:00:27 +00004143
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004144 bool IsFeasible = !(PositiveContext.is_empty() ||
4145 PositiveContext.is_subset(NegativeContext));
4146 if (!IsFeasible)
4147 return false;
4148
4149 auto DomainContext = getDomains().params();
4150 IsFeasible = !DomainContext.is_subset(NegativeContext);
4151 IsFeasible &= !Context.is_subset(NegativeContext);
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004152
Johannes Doerfert43788c52015-08-20 05:58:56 +00004153 return IsFeasible;
4154}
4155
Johannes Doerfertd84493e2015-11-12 02:33:38 +00004156static std::string toString(AssumptionKind Kind) {
4157 switch (Kind) {
4158 case ALIASING:
4159 return "No-aliasing";
4160 case INBOUNDS:
4161 return "Inbounds";
4162 case WRAPPING:
4163 return "No-overflows";
Johannes Doerfertc3596282016-04-25 14:01:36 +00004164 case UNSIGNED:
4165 return "Signed-unsigned";
Johannes Doerfert6462d8c2016-03-26 16:17:00 +00004166 case COMPLEXITY:
4167 return "Low complexity";
Johannes Doerfert27d12d32016-05-10 16:38:09 +00004168 case PROFITABLE:
4169 return "Profitable";
Johannes Doerfertd84493e2015-11-12 02:33:38 +00004170 case ERRORBLOCK:
4171 return "No-error";
4172 case INFINITELOOP:
4173 return "Finite loop";
4174 case INVARIANTLOAD:
4175 return "Invariant load";
4176 case DELINEARIZATION:
4177 return "Delinearization";
4178 }
4179 llvm_unreachable("Unknown AssumptionKind!");
4180}
4181
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004182bool Scop::isEffectiveAssumption(isl::set Set, AssumptionSign Sign) {
Johannes Doerfert1a6b0f72016-06-06 12:16:10 +00004183 if (Sign == AS_ASSUMPTION) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004184 if (Context.is_subset(Set))
Johannes Doerfert1a6b0f72016-06-06 12:16:10 +00004185 return false;
4186
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004187 if (AssumedContext.is_subset(Set))
Johannes Doerfert1a6b0f72016-06-06 12:16:10 +00004188 return false;
4189 } else {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004190 if (Set.is_disjoint(Context))
Johannes Doerfert1a6b0f72016-06-06 12:16:10 +00004191 return false;
4192
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004193 if (Set.is_subset(InvalidContext))
Johannes Doerfert1a6b0f72016-06-06 12:16:10 +00004194 return false;
4195 }
4196 return true;
4197}
4198
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004199bool Scop::trackAssumption(AssumptionKind Kind, isl::set Set, DebugLoc Loc,
4200 AssumptionSign Sign, BasicBlock *BB) {
Johannes Doerfert1a6b0f72016-06-06 12:16:10 +00004201 if (PollyRemarksMinimal && !isEffectiveAssumption(Set, Sign))
4202 return false;
Johannes Doerfertd84493e2015-11-12 02:33:38 +00004203
Johannes Doerfertb3265a32016-11-17 22:08:40 +00004204 // Do never emit trivial assumptions as they only clutter the output.
4205 if (!PollyRemarksMinimal) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004206 isl::set Univ;
Johannes Doerfertb3265a32016-11-17 22:08:40 +00004207 if (Sign == AS_ASSUMPTION)
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004208 Univ = isl::set::universe(Set.get_space());
Johannes Doerfertb3265a32016-11-17 22:08:40 +00004209
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004210 bool IsTrivial = (Sign == AS_RESTRICTION && Set.is_empty()) ||
4211 (Sign == AS_ASSUMPTION && Univ.is_equal(Set));
Johannes Doerfertb3265a32016-11-17 22:08:40 +00004212
4213 if (IsTrivial)
4214 return false;
4215 }
4216
Johannes Doerfertcd195322016-11-17 21:41:08 +00004217 switch (Kind) {
4218 case ALIASING:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004219 AssumptionsAliasing++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004220 break;
4221 case INBOUNDS:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004222 AssumptionsInbounds++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004223 break;
4224 case WRAPPING:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004225 AssumptionsWrapping++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004226 break;
4227 case UNSIGNED:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004228 AssumptionsUnsigned++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004229 break;
4230 case COMPLEXITY:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004231 AssumptionsComplexity++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004232 break;
4233 case PROFITABLE:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004234 AssumptionsUnprofitable++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004235 break;
4236 case ERRORBLOCK:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004237 AssumptionsErrorBlock++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004238 break;
4239 case INFINITELOOP:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004240 AssumptionsInfiniteLoop++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004241 break;
4242 case INVARIANTLOAD:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004243 AssumptionsInvariantLoad++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004244 break;
4245 case DELINEARIZATION:
Johannes Doerfert81aa6e82016-11-18 14:37:08 +00004246 AssumptionsDelinearization++;
Johannes Doerfertcd195322016-11-17 21:41:08 +00004247 break;
4248 }
4249
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004250 auto Suffix = Sign == AS_ASSUMPTION ? " assumption:\t" : " restriction:\t";
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004251 std::string Msg = toString(Kind) + Suffix + Set.to_str();
Eli Friedmane737fc12017-07-17 23:58:33 +00004252 if (BB)
4253 ORE.emit(OptimizationRemarkAnalysis(DEBUG_TYPE, "AssumpRestrict", Loc, BB)
4254 << Msg);
4255 else
4256 ORE.emit(OptimizationRemarkAnalysis(DEBUG_TYPE, "AssumpRestrict", Loc,
4257 R.getEntry())
4258 << Msg);
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004259 return true;
Johannes Doerfertd84493e2015-11-12 02:33:38 +00004260}
4261
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004262void Scop::addAssumption(AssumptionKind Kind, isl::set Set, DebugLoc Loc,
4263 AssumptionSign Sign, BasicBlock *BB) {
Johannes Doerfert3bf6e4122016-04-12 13:27:35 +00004264 // Simplify the assumptions/restrictions first.
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004265 Set = Set.gist_params(getContext());
Johannes Doerfert3bf6e4122016-04-12 13:27:35 +00004266
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004267 if (!trackAssumption(Kind, Set, Loc, Sign, BB))
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004268 return;
Tobias Grosser20a4c0c2015-11-11 16:22:36 +00004269
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004270 if (Sign == AS_ASSUMPTION)
4271 AssumedContext = AssumedContext.intersect(Set).coalesce();
4272 else
4273 InvalidContext = InvalidContext.unite(Set).coalesce();
Tobias Grosser5e6813d2014-07-02 17:47:48 +00004274}
4275
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004276void Scop::recordAssumption(AssumptionKind Kind, isl::set Set, DebugLoc Loc,
4277 AssumptionSign Sign, BasicBlock *BB) {
4278 assert((Set.is_params() || BB) &&
Tobias Grosserf67433a2016-11-10 11:44:10 +00004279 "Assumptions without a basic block must be parameter sets");
Johannes Doerfert615e0b82016-04-12 13:28:39 +00004280 RecordedAssumptions.push_back({Kind, Sign, Set, Loc, BB});
Johannes Doerfert3bf6e4122016-04-12 13:27:35 +00004281}
4282
4283void Scop::addRecordedAssumptions() {
4284 while (!RecordedAssumptions.empty()) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004285 Assumption AS = RecordedAssumptions.pop_back_val();
Johannes Doerfert615e0b82016-04-12 13:28:39 +00004286
Johannes Doerfert8475d1c2016-04-28 14:32:58 +00004287 if (!AS.BB) {
Eli Friedmane737fc12017-07-17 23:58:33 +00004288 addAssumption(AS.Kind, AS.Set, AS.Loc, AS.Sign, nullptr /* BasicBlock */);
Johannes Doerfert8475d1c2016-04-28 14:32:58 +00004289 continue;
4290 }
Johannes Doerfert615e0b82016-04-12 13:28:39 +00004291
Johannes Doerfert14b1cf32016-05-10 12:42:26 +00004292 // If the domain was deleted the assumptions are void.
Tobias Grosser61bd3a42017-08-06 21:42:38 +00004293 isl_set *Dom = getDomainConditions(AS.BB).release();
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004294 if (!Dom)
Johannes Doerfert14b1cf32016-05-10 12:42:26 +00004295 continue;
Johannes Doerfert14b1cf32016-05-10 12:42:26 +00004296
Johannes Doerfert8475d1c2016-04-28 14:32:58 +00004297 // If a basic block was given use its domain to simplify the assumption.
4298 // In case of restrictions we know they only have to hold on the domain,
4299 // thus we can intersect them with the domain of the block. However, for
4300 // assumptions the domain has to imply them, thus:
4301 // _ _____
4302 // Dom => S <==> A v B <==> A - B
4303 //
Tobias Grossercdbe5c92017-01-06 17:30:34 +00004304 // To avoid the complement we will register A - B as a restriction not an
Johannes Doerfert8475d1c2016-04-28 14:32:58 +00004305 // assumption.
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004306 isl_set *S = AS.Set.copy();
Johannes Doerfert8475d1c2016-04-28 14:32:58 +00004307 if (AS.Sign == AS_RESTRICTION)
4308 S = isl_set_params(isl_set_intersect(S, Dom));
4309 else /* (AS.Sign == AS_ASSUMPTION) */
4310 S = isl_set_params(isl_set_subtract(Dom, S));
4311
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004312 addAssumption(AS.Kind, isl::manage(S), AS.Loc, AS_RESTRICTION, AS.BB);
Johannes Doerfert3bf6e4122016-04-12 13:27:35 +00004313 }
4314}
4315
Eli Friedmane737fc12017-07-17 23:58:33 +00004316void Scop::invalidate(AssumptionKind Kind, DebugLoc Loc, BasicBlock *BB) {
Nicola Zaghen349506a2018-05-15 13:37:17 +00004317 LLVM_DEBUG(dbgs() << "Invalidate SCoP because of reason " << Kind << "\n");
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004318 addAssumption(Kind, isl::set::empty(getParamSpace()), Loc, AS_ASSUMPTION, BB);
Tobias Grosser8d4f6262015-12-12 09:52:26 +00004319}
4320
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004321isl::set Scop::getInvalidContext() const { return InvalidContext; }
Johannes Doerfert883f8c12015-09-15 22:52:53 +00004322
Tobias Grosser75805372011-04-29 06:27:02 +00004323void Scop::printContext(raw_ostream &OS) const {
4324 OS << "Context:\n";
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004325 OS.indent(4) << Context << "\n";
Tobias Grosser60b54f12011-11-08 15:41:28 +00004326
Tobias Grosser5e6813d2014-07-02 17:47:48 +00004327 OS.indent(4) << "Assumed Context:\n";
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004328 OS.indent(4) << AssumedContext << "\n";
Tobias Grosser5e6813d2014-07-02 17:47:48 +00004329
Johannes Doerfert066dbf32016-03-01 13:06:28 +00004330 OS.indent(4) << "Invalid Context:\n";
4331 OS.indent(4) << InvalidContext << "\n";
Johannes Doerfert883f8c12015-09-15 22:52:53 +00004332
Johannes Doerfert4e3bb7b2016-04-25 16:15:13 +00004333 unsigned Dim = 0;
4334 for (const SCEV *Parameter : Parameters)
4335 OS.indent(4) << "p" << Dim++ << ": " << *Parameter << "\n";
Tobias Grosser75805372011-04-29 06:27:02 +00004336}
4337
Johannes Doerfertb164c792014-09-18 11:17:17 +00004338void Scop::printAliasAssumptions(raw_ostream &OS) const {
Tobias Grosserbb853c22015-07-25 12:31:03 +00004339 int noOfGroups = 0;
4340 for (const MinMaxVectorPairTy &Pair : MinMaxAliasGroups) {
Johannes Doerfert210b09a2015-07-26 13:14:38 +00004341 if (Pair.second.size() == 0)
Johannes Doerfert338b42c2015-07-23 17:04:54 +00004342 noOfGroups += 1;
4343 else
Johannes Doerfert210b09a2015-07-26 13:14:38 +00004344 noOfGroups += Pair.second.size();
Johannes Doerfert338b42c2015-07-23 17:04:54 +00004345 }
4346
Tobias Grosserbb853c22015-07-25 12:31:03 +00004347 OS.indent(4) << "Alias Groups (" << noOfGroups << "):\n";
Johannes Doerfertb164c792014-09-18 11:17:17 +00004348 if (MinMaxAliasGroups.empty()) {
4349 OS.indent(8) << "n/a\n";
4350 return;
4351 }
Johannes Doerfert338b42c2015-07-23 17:04:54 +00004352
Tobias Grosserbb853c22015-07-25 12:31:03 +00004353 for (const MinMaxVectorPairTy &Pair : MinMaxAliasGroups) {
Johannes Doerfert338b42c2015-07-23 17:04:54 +00004354
4355 // If the group has no read only accesses print the write accesses.
Johannes Doerfert210b09a2015-07-26 13:14:38 +00004356 if (Pair.second.empty()) {
Johannes Doerfert338b42c2015-07-23 17:04:54 +00004357 OS.indent(8) << "[[";
Johannes Doerfert210b09a2015-07-26 13:14:38 +00004358 for (const MinMaxAccessTy &MMANonReadOnly : Pair.first) {
Tobias Grosserbb853c22015-07-25 12:31:03 +00004359 OS << " <" << MMANonReadOnly.first << ", " << MMANonReadOnly.second
4360 << ">";
Johannes Doerfert338b42c2015-07-23 17:04:54 +00004361 }
4362 OS << " ]]\n";
4363 }
4364
Johannes Doerfert210b09a2015-07-26 13:14:38 +00004365 for (const MinMaxAccessTy &MMAReadOnly : Pair.second) {
Johannes Doerfert338b42c2015-07-23 17:04:54 +00004366 OS.indent(8) << "[[";
Tobias Grosserbb853c22015-07-25 12:31:03 +00004367 OS << " <" << MMAReadOnly.first << ", " << MMAReadOnly.second << ">";
Johannes Doerfert210b09a2015-07-26 13:14:38 +00004368 for (const MinMaxAccessTy &MMANonReadOnly : Pair.first) {
Tobias Grosserbb853c22015-07-25 12:31:03 +00004369 OS << " <" << MMANonReadOnly.first << ", " << MMANonReadOnly.second
4370 << ">";
Johannes Doerfert338b42c2015-07-23 17:04:54 +00004371 }
4372 OS << " ]]\n";
4373 }
Johannes Doerfertb164c792014-09-18 11:17:17 +00004374 }
4375}
4376
Michael Krusecd4c9772017-07-21 15:35:53 +00004377void Scop::printStatements(raw_ostream &OS, bool PrintInstructions) const {
Tobias Grosser75805372011-04-29 06:27:02 +00004378 OS << "Statements {\n";
4379
Michael Krusecd4c9772017-07-21 15:35:53 +00004380 for (const ScopStmt &Stmt : *this) {
4381 OS.indent(4);
4382 Stmt.print(OS, PrintInstructions);
4383 }
Tobias Grosser75805372011-04-29 06:27:02 +00004384
4385 OS.indent(4) << "}\n";
4386}
4387
Tobias Grosser49ad36c2015-05-20 08:05:31 +00004388void Scop::printArrayInfo(raw_ostream &OS) const {
4389 OS << "Arrays {\n";
4390
Tobias Grosserab671442015-05-23 05:58:27 +00004391 for (auto &Array : arrays())
Roman Gareevd7754a12016-07-30 09:25:51 +00004392 Array->print(OS);
Tobias Grosser49ad36c2015-05-20 08:05:31 +00004393
4394 OS.indent(4) << "}\n";
Tobias Grosserd46fd5e2015-08-12 15:27:16 +00004395
4396 OS.indent(4) << "Arrays (Bounds as pw_affs) {\n";
4397
4398 for (auto &Array : arrays())
Roman Gareevd7754a12016-07-30 09:25:51 +00004399 Array->print(OS, /* SizeAsPwAff */ true);
Tobias Grosserd46fd5e2015-08-12 15:27:16 +00004400
4401 OS.indent(4) << "}\n";
Tobias Grosser49ad36c2015-05-20 08:05:31 +00004402}
4403
Michael Krusecd4c9772017-07-21 15:35:53 +00004404void Scop::print(raw_ostream &OS, bool PrintInstructions) const {
Johannes Doerfert3f52e352016-05-23 12:38:05 +00004405 OS.indent(4) << "Function: " << getFunction().getName() << "\n";
Tobias Grosser483fdd42014-03-18 18:05:38 +00004406 OS.indent(4) << "Region: " << getNameStr() << "\n";
David Peixottodc0a11c2015-01-13 18:31:55 +00004407 OS.indent(4) << "Max Loop Depth: " << getMaxLoopDepth() << "\n";
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00004408 OS.indent(4) << "Invariant Accesses: {\n";
Johannes Doerfert697fdf82015-10-09 17:12:26 +00004409 for (const auto &IAClass : InvariantEquivClasses) {
Tobias Grosser4e2d9c42016-07-11 12:15:10 +00004410 const auto &MAs = IAClass.InvariantAccesses;
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00004411 if (MAs.empty()) {
Tobias Grosser4e2d9c42016-07-11 12:15:10 +00004412 OS.indent(12) << "Class Pointer: " << *IAClass.IdentifyingPointer << "\n";
Johannes Doerfert697fdf82015-10-09 17:12:26 +00004413 } else {
Johannes Doerfertaf3e3012015-10-18 12:39:19 +00004414 MAs.front()->print(OS);
Tobias Grosser4e2d9c42016-07-11 12:15:10 +00004415 OS.indent(12) << "Execution Context: " << IAClass.ExecutionContext
4416 << "\n";
Johannes Doerfert697fdf82015-10-09 17:12:26 +00004417 }
Johannes Doerfertc1db67e2015-09-29 23:47:21 +00004418 }
4419 OS.indent(4) << "}\n";
Tobias Grosser75805372011-04-29 06:27:02 +00004420 printContext(OS.indent(4));
Tobias Grosser49ad36c2015-05-20 08:05:31 +00004421 printArrayInfo(OS.indent(4));
Johannes Doerfertb164c792014-09-18 11:17:17 +00004422 printAliasAssumptions(OS);
Michael Krusecd4c9772017-07-21 15:35:53 +00004423 printStatements(OS.indent(4), PrintInstructions);
Tobias Grosser75805372011-04-29 06:27:02 +00004424}
4425
Michael Kruse5d518462017-07-21 15:54:07 +00004426#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Michael Krusee1860132017-07-21 15:54:13 +00004427LLVM_DUMP_METHOD void Scop::dump() const { print(dbgs(), true); }
Michael Kruse5d518462017-07-21 15:54:07 +00004428#endif
Tobias Grosser75805372011-04-29 06:27:02 +00004429
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004430isl::ctx Scop::getIslCtx() const { return IslCtx.get(); }
Tobias Grosser75805372011-04-29 06:27:02 +00004431
Johannes Doerfert3e48ee22016-04-29 10:44:41 +00004432__isl_give PWACtx Scop::getPwAff(const SCEV *E, BasicBlock *BB,
4433 bool NonNegative) {
Johannes Doerfert6462d8c2016-03-26 16:17:00 +00004434 // First try to use the SCEVAffinator to generate a piecewise defined
4435 // affine function from @p E in the context of @p BB. If that tasks becomes to
4436 // complex the affinator might return a nullptr. In such a case we invalidate
4437 // the SCoP and return a dummy value. This way we do not need to add error
Tobias Grossercdbe5c92017-01-06 17:30:34 +00004438 // handling code to all users of this function.
Johannes Doerfertac9c32e2016-04-23 14:31:17 +00004439 auto PWAC = Affinator.getPwAff(E, BB);
Johannes Doerfert3e48ee22016-04-29 10:44:41 +00004440 if (PWAC.first) {
Johannes Doerfert56b37762016-05-10 11:45:46 +00004441 // TODO: We could use a heuristic and either use:
4442 // SCEVAffinator::takeNonNegativeAssumption
4443 // or
4444 // SCEVAffinator::interpretAsUnsigned
4445 // to deal with unsigned or "NonNegative" SCEVs.
Johannes Doerfert3e48ee22016-04-29 10:44:41 +00004446 if (NonNegative)
4447 Affinator.takeNonNegativeAssumption(PWAC);
Johannes Doerfertac9c32e2016-04-23 14:31:17 +00004448 return PWAC;
Johannes Doerfert3e48ee22016-04-29 10:44:41 +00004449 }
Johannes Doerfert6462d8c2016-03-26 16:17:00 +00004450
4451 auto DL = BB ? BB->getTerminator()->getDebugLoc() : DebugLoc();
Eli Friedmane737fc12017-07-17 23:58:33 +00004452 invalidate(COMPLEXITY, DL, BB);
Johannes Doerfert6462d8c2016-03-26 16:17:00 +00004453 return Affinator.getPwAff(SE->getZero(E->getType()), BB);
Johannes Doerfert574182d2015-08-12 10:19:50 +00004454}
4455
Tobias Grosser31df6f32017-08-06 21:42:25 +00004456isl::union_set Scop::getDomains() const {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004457 isl_space *EmptySpace = isl_space_params_alloc(getIslCtx().get(), 0);
Tobias Grosser941cb7d2017-03-17 09:02:50 +00004458 isl_union_set *Domain = isl_union_set_empty(EmptySpace);
Tobias Grosser5f9a7622012-02-14 14:02:40 +00004459
Tobias Grosser808cd692015-07-14 09:33:13 +00004460 for (const ScopStmt &Stmt : *this)
Tobias Grosserdcf8d692017-08-06 16:39:52 +00004461 Domain = isl_union_set_add_set(Domain, Stmt.getDomain().release());
Tobias Grosser5f9a7622012-02-14 14:02:40 +00004462
Tobias Grosser31df6f32017-08-06 21:42:25 +00004463 return isl::manage(Domain);
Tobias Grosser5f9a7622012-02-14 14:02:40 +00004464}
4465
Tobias Grosser61bd3a42017-08-06 21:42:38 +00004466isl::pw_aff Scop::getPwAffOnly(const SCEV *E, BasicBlock *BB) {
Johannes Doerfertac9c32e2016-04-23 14:31:17 +00004467 PWACtx PWAC = getPwAff(E, BB);
Philip Pfaffed98dbee2017-12-06 21:02:22 +00004468 return PWAC.first;
Johannes Doerfertac9c32e2016-04-23 14:31:17 +00004469}
4470
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00004471isl::union_map
Tobias Grossere5a35142015-11-12 14:07:09 +00004472Scop::getAccessesOfType(std::function<bool(MemoryAccess &)> Predicate) {
Tobias Grosserb65ccc42017-08-06 20:11:59 +00004473 isl::union_map Accesses = isl::union_map::empty(getParamSpace());
Tobias Grosser780ce0f2014-07-11 07:12:10 +00004474
Tobias Grosser7c3bad52015-05-27 05:16:57 +00004475 for (ScopStmt &Stmt : *this) {
4476 for (MemoryAccess *MA : Stmt) {
Tobias Grossere5a35142015-11-12 14:07:09 +00004477 if (!Predicate(*MA))
Tobias Grosser780ce0f2014-07-11 07:12:10 +00004478 continue;
4479
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00004480 isl::set Domain = Stmt.getDomain();
4481 isl::map AccessDomain = MA->getAccessRelation();
4482 AccessDomain = AccessDomain.intersect_domain(Domain);
4483 Accesses = Accesses.add_map(AccessDomain);
Tobias Grosser780ce0f2014-07-11 07:12:10 +00004484 }
4485 }
Tobias Grosser206e9e32017-07-24 16:22:27 +00004486
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00004487 return Accesses.coalesce();
Tobias Grossere5a35142015-11-12 14:07:09 +00004488}
4489
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00004490isl::union_map Scop::getMustWrites() {
Tobias Grossere5a35142015-11-12 14:07:09 +00004491 return getAccessesOfType([](MemoryAccess &MA) { return MA.isMustWrite(); });
Tobias Grosser780ce0f2014-07-11 07:12:10 +00004492}
4493
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00004494isl::union_map Scop::getMayWrites() {
Tobias Grossere5a35142015-11-12 14:07:09 +00004495 return getAccessesOfType([](MemoryAccess &MA) { return MA.isMayWrite(); });
Tobias Grosser780ce0f2014-07-11 07:12:10 +00004496}
4497
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00004498isl::union_map Scop::getWrites() {
Tobias Grossere5a35142015-11-12 14:07:09 +00004499 return getAccessesOfType([](MemoryAccess &MA) { return MA.isWrite(); });
Tobias Grosser37eb4222014-02-20 21:43:54 +00004500}
4501
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00004502isl::union_map Scop::getReads() {
Tobias Grossere5a35142015-11-12 14:07:09 +00004503 return getAccessesOfType([](MemoryAccess &MA) { return MA.isRead(); });
Tobias Grosser37eb4222014-02-20 21:43:54 +00004504}
4505
Tobias Grosser5ab39ff2017-08-06 19:22:27 +00004506isl::union_map Scop::getAccesses() {
Tobias Grosser2ac23382015-11-12 14:07:13 +00004507 return getAccessesOfType([](MemoryAccess &MA) { return true; });
4508}
4509
Tobias Grosserfa03cb72017-08-17 22:04:53 +00004510isl::union_map Scop::getAccesses(ScopArrayInfo *Array) {
4511 return getAccessesOfType(
4512 [Array](MemoryAccess &MA) { return MA.getScopArrayInfo() == Array; });
4513}
4514
Roman Gareevb3224ad2016-09-14 06:26:09 +00004515// Check whether @p Node is an extension node.
4516//
4517// @return true if @p Node is an extension node.
4518isl_bool isNotExtNode(__isl_keep isl_schedule_node *Node, void *User) {
4519 if (isl_schedule_node_get_type(Node) == isl_schedule_node_extension)
4520 return isl_bool_error;
4521 else
4522 return isl_bool_true;
4523}
4524
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004525bool Scop::containsExtensionNode(isl::schedule Schedule) {
4526 return isl_schedule_foreach_schedule_node_top_down(
Tobias Grosserd3d3d6b2018-04-29 00:28:26 +00004527 Schedule.get(), isNotExtNode, nullptr) == isl_stat_error;
Roman Gareevb3224ad2016-09-14 06:26:09 +00004528}
4529
Tobias Grosser61bd3a42017-08-06 21:42:38 +00004530isl::union_map Scop::getSchedule() const {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004531 auto Tree = getScheduleTree();
4532 if (containsExtensionNode(Tree))
Roman Gareevb3224ad2016-09-14 06:26:09 +00004533 return nullptr;
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004534
4535 return Tree.get_map();
Tobias Grosser808cd692015-07-14 09:33:13 +00004536}
Tobias Grosser37eb4222014-02-20 21:43:54 +00004537
Tobias Grosser61bd3a42017-08-06 21:42:38 +00004538isl::schedule Scop::getScheduleTree() const {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004539 return Schedule.intersect_domain(getDomains());
Tobias Grosser808cd692015-07-14 09:33:13 +00004540}
Tobias Grosserbc4ef902014-06-28 08:59:38 +00004541
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004542void Scop::setSchedule(isl::union_map NewSchedule) {
4543 auto S = isl::schedule::from_domain(getDomains());
4544 Schedule = S.insert_partial_schedule(
4545 isl::multi_union_pw_aff::from_union_map(NewSchedule));
Tobias Grosser808cd692015-07-14 09:33:13 +00004546}
4547
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004548void Scop::setScheduleTree(isl::schedule NewSchedule) {
Tobias Grosser808cd692015-07-14 09:33:13 +00004549 Schedule = NewSchedule;
Tobias Grosser37eb4222014-02-20 21:43:54 +00004550}
4551
Tobias Grosser990cbb42017-08-14 06:49:01 +00004552bool Scop::restrictDomains(isl::union_set Domain) {
Tobias Grosser37eb4222014-02-20 21:43:54 +00004553 bool Changed = false;
Tobias Grosser7c3bad52015-05-27 05:16:57 +00004554 for (ScopStmt &Stmt : *this) {
Tobias Grosser990cbb42017-08-14 06:49:01 +00004555 isl::union_set StmtDomain = isl::union_set(Stmt.getDomain());
4556 isl::union_set NewStmtDomain = StmtDomain.intersect(Domain);
Tobias Grosser37eb4222014-02-20 21:43:54 +00004557
Tobias Grosser990cbb42017-08-14 06:49:01 +00004558 if (StmtDomain.is_subset(NewStmtDomain))
Tobias Grosser37eb4222014-02-20 21:43:54 +00004559 continue;
Tobias Grosser37eb4222014-02-20 21:43:54 +00004560
4561 Changed = true;
4562
Tobias Grosser990cbb42017-08-14 06:49:01 +00004563 NewStmtDomain = NewStmtDomain.coalesce();
Tobias Grosser37eb4222014-02-20 21:43:54 +00004564
Tobias Grosser990cbb42017-08-14 06:49:01 +00004565 if (NewStmtDomain.is_empty())
Tobias Grosserdcf8d692017-08-06 16:39:52 +00004566 Stmt.restrictDomain(isl::set::empty(Stmt.getDomainSpace()));
Tobias Grosser990cbb42017-08-14 06:49:01 +00004567 else
4568 Stmt.restrictDomain(isl::set(NewStmtDomain));
Tobias Grosser37eb4222014-02-20 21:43:54 +00004569 }
Tobias Grosser37eb4222014-02-20 21:43:54 +00004570 return Changed;
4571}
4572
Tobias Grosser75805372011-04-29 06:27:02 +00004573ScalarEvolution *Scop::getSE() const { return SE; }
4574
Tobias Grosserc80d6972016-09-02 06:33:33 +00004575// Create an isl_multi_union_aff that defines an identity mapping from the
4576// elements of USet to their N-th dimension.
Tobias Grosser808cd692015-07-14 09:33:13 +00004577//
Tobias Grossercbf7ae82015-12-21 22:45:53 +00004578// # Example:
4579//
4580// Domain: { A[i,j]; B[i,j,k] }
4581// N: 1
4582//
4583// Resulting Mapping: { {A[i,j] -> [(j)]; B[i,j,k] -> [(j)] }
4584//
4585// @param USet A union set describing the elements for which to generate a
4586// mapping.
Tobias Grosser808cd692015-07-14 09:33:13 +00004587// @param N The dimension to map to.
Tobias Grossercbf7ae82015-12-21 22:45:53 +00004588// @returns A mapping from USet to its N-th dimension.
Tobias Grosser99320862017-05-26 17:22:03 +00004589static isl::multi_union_pw_aff mapToDimension(isl::union_set USet, int N) {
Tobias Grossercbf7ae82015-12-21 22:45:53 +00004590 assert(N >= 0);
Tobias Grosserc900633d2015-12-21 23:01:53 +00004591 assert(USet);
Siddharth Bhat8bb436e2017-05-29 11:34:29 +00004592 assert(!USet.is_empty());
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00004593
Tobias Grosser99320862017-05-26 17:22:03 +00004594 auto Result = isl::union_pw_multi_aff::empty(USet.get_space());
Tobias Grosser808cd692015-07-14 09:33:13 +00004595
Tobias Grosser99320862017-05-26 17:22:03 +00004596 auto Lambda = [&Result, N](isl::set S) -> isl::stat {
4597 int Dim = S.dim(isl::dim::set);
4598 auto PMA = isl::pw_multi_aff::project_out_map(S.get_space(), isl::dim::set,
4599 N, Dim - N);
4600 if (N > 1)
4601 PMA = PMA.drop_dims(isl::dim::out, 0, N - 1);
Tobias Grosser808cd692015-07-14 09:33:13 +00004602
Tobias Grosser99320862017-05-26 17:22:03 +00004603 Result = Result.add_pw_multi_aff(PMA);
4604 return isl::stat::ok;
4605 };
Tobias Grossercbf7ae82015-12-21 22:45:53 +00004606
Tobias Grosser99320862017-05-26 17:22:03 +00004607 isl::stat Res = USet.foreach_set(Lambda);
Sumanth Gundapaneni4b1472f2016-01-20 15:41:30 +00004608 (void)Res;
4609
Tobias Grosser99320862017-05-26 17:22:03 +00004610 assert(Res == isl::stat::ok);
Tobias Grossercbf7ae82015-12-21 22:45:53 +00004611
Tobias Grosser99320862017-05-26 17:22:03 +00004612 return isl::multi_union_pw_aff(isl::union_pw_multi_aff(Result));
Tobias Grosser808cd692015-07-14 09:33:13 +00004613}
4614
Michael Krused6e22082018-01-18 15:15:38 +00004615void Scop::addScopStmt(BasicBlock *BB, StringRef Name, Loop *SurroundingLoop,
4616 std::vector<Instruction *> Instructions) {
Hongbin Zhenga8fb73f2016-11-21 20:09:40 +00004617 assert(BB && "Unexpected nullptr!");
Michael Krused6e22082018-01-18 15:15:38 +00004618 Stmts.emplace_back(*this, *BB, Name, SurroundingLoop, Instructions);
Hongbin Zhenga8fb73f2016-11-21 20:09:40 +00004619 auto *Stmt = &Stmts.back();
Michael Kruse4dfa7322017-07-18 15:41:49 +00004620 StmtMap[BB].push_back(Stmt);
Michael Krusecd3b9fe2017-08-09 16:45:37 +00004621 for (Instruction *Inst : Instructions) {
4622 assert(!InstStmtMap.count(Inst) &&
4623 "Unexpected statement corresponding to the instruction.");
4624 InstStmtMap[Inst] = Stmt;
4625 }
Hongbin Zhenga8fb73f2016-11-21 20:09:40 +00004626}
4627
Michael Krused6e22082018-01-18 15:15:38 +00004628void Scop::addScopStmt(Region *R, StringRef Name, Loop *SurroundingLoop,
Tobias Grosserbd15d132017-08-31 03:15:56 +00004629 std::vector<Instruction *> Instructions) {
Hongbin Zhenga8fb73f2016-11-21 20:09:40 +00004630 assert(R && "Unexpected nullptr!");
Michael Krused6e22082018-01-18 15:15:38 +00004631 Stmts.emplace_back(*this, *R, Name, SurroundingLoop, Instructions);
Hongbin Zhenga8fb73f2016-11-21 20:09:40 +00004632 auto *Stmt = &Stmts.back();
Tobias Grosserbd15d132017-08-31 03:15:56 +00004633
4634 for (Instruction *Inst : Instructions) {
4635 assert(!InstStmtMap.count(Inst) &&
4636 "Unexpected statement corresponding to the instruction.");
4637 InstStmtMap[Inst] = Stmt;
4638 }
4639
Michael Krusecd3b9fe2017-08-09 16:45:37 +00004640 for (BasicBlock *BB : R->blocks()) {
Michael Kruse4dfa7322017-07-18 15:41:49 +00004641 StmtMap[BB].push_back(Stmt);
Tobias Grosserbd15d132017-08-31 03:15:56 +00004642 if (BB == R->getEntry())
4643 continue;
Michael Krusecd3b9fe2017-08-09 16:45:37 +00004644 for (Instruction &Inst : *BB) {
4645 assert(!InstStmtMap.count(&Inst) &&
4646 "Unexpected statement corresponding to the instruction.");
4647 InstStmtMap[&Inst] = Stmt;
4648 }
4649 }
Tobias Grosser808cd692015-07-14 09:33:13 +00004650}
4651
Tobias Grosser85048ef2017-08-06 17:24:59 +00004652ScopStmt *Scop::addScopStmt(isl::map SourceRel, isl::map TargetRel,
4653 isl::set Domain) {
Tobias Grossereba86a12016-11-09 04:24:49 +00004654#ifndef NDEBUG
Tobias Grosser85048ef2017-08-06 17:24:59 +00004655 isl::set SourceDomain = SourceRel.domain();
4656 isl::set TargetDomain = TargetRel.domain();
4657 assert(Domain.is_subset(TargetDomain) &&
Tobias Grosser744740a2016-11-05 21:02:43 +00004658 "Target access not defined for complete statement domain");
Tobias Grosser85048ef2017-08-06 17:24:59 +00004659 assert(Domain.is_subset(SourceDomain) &&
Tobias Grosser744740a2016-11-05 21:02:43 +00004660 "Source access not defined for complete statement domain");
Tobias Grossereba86a12016-11-09 04:24:49 +00004661#endif
Roman Gareevb3224ad2016-09-14 06:26:09 +00004662 Stmts.emplace_back(*this, SourceRel, TargetRel, Domain);
4663 CopyStmtsNum++;
4664 return &(Stmts.back());
4665}
4666
Johannes Doerfertffd222f2016-05-19 12:34:57 +00004667void Scop::buildSchedule(LoopInfo &LI) {
Johannes Doerfertef744432016-05-23 12:42:38 +00004668 Loop *L = getLoopSurroundingScop(*this, LI);
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004669 LoopStackTy LoopStack({LoopStackElementTy(L, nullptr, 0)});
Johannes Doerfertffd222f2016-05-19 12:34:57 +00004670 buildSchedule(getRegion().getNode(), LoopStack, LI);
Tobias Grosser151ae322016-04-03 19:36:52 +00004671 assert(LoopStack.size() == 1 && LoopStack.back().L == L);
4672 Schedule = LoopStack[0].Schedule;
Johannes Doerfertf9711ef2016-01-06 12:59:23 +00004673}
4674
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004675/// To generate a schedule for the elements in a Region we traverse the Region
4676/// in reverse-post-order and add the contained RegionNodes in traversal order
4677/// to the schedule of the loop that is currently at the top of the LoopStack.
4678/// For loop-free codes, this results in a correct sequential ordering.
4679///
4680/// Example:
4681/// bb1(0)
4682/// / \.
4683/// bb2(1) bb3(2)
4684/// \ / \.
4685/// bb4(3) bb5(4)
4686/// \ /
4687/// bb6(5)
4688///
4689/// Including loops requires additional processing. Whenever a loop header is
4690/// encountered, the corresponding loop is added to the @p LoopStack. Starting
4691/// from an empty schedule, we first process all RegionNodes that are within
4692/// this loop and complete the sequential schedule at this loop-level before
4693/// processing about any other nodes. To implement this
4694/// loop-nodes-first-processing, the reverse post-order traversal is
4695/// insufficient. Hence, we additionally check if the traversal yields
4696/// sub-regions or blocks that are outside the last loop on the @p LoopStack.
4697/// These region-nodes are then queue and only traverse after the all nodes
4698/// within the current loop have been processed.
Johannes Doerfertffd222f2016-05-19 12:34:57 +00004699void Scop::buildSchedule(Region *R, LoopStackTy &LoopStack, LoopInfo &LI) {
Johannes Doerfertef744432016-05-23 12:42:38 +00004700 Loop *OuterScopLoop = getLoopSurroundingScop(*this, LI);
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004701
4702 ReversePostOrderTraversal<Region *> RTraversal(R);
4703 std::deque<RegionNode *> WorkList(RTraversal.begin(), RTraversal.end());
4704 std::deque<RegionNode *> DelayList;
4705 bool LastRNWaiting = false;
4706
4707 // Iterate over the region @p R in reverse post-order but queue
4708 // sub-regions/blocks iff they are not part of the last encountered but not
4709 // completely traversed loop. The variable LastRNWaiting is a flag to indicate
4710 // that we queued the last sub-region/block from the reverse post-order
4711 // iterator. If it is set we have to explore the next sub-region/block from
4712 // the iterator (if any) to guarantee progress. If it is not set we first try
4713 // the next queued sub-region/blocks.
4714 while (!WorkList.empty() || !DelayList.empty()) {
4715 RegionNode *RN;
4716
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00004717 if ((LastRNWaiting && !WorkList.empty()) || DelayList.empty()) {
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004718 RN = WorkList.front();
4719 WorkList.pop_front();
4720 LastRNWaiting = false;
4721 } else {
4722 RN = DelayList.front();
4723 DelayList.pop_front();
4724 }
4725
4726 Loop *L = getRegionNodeLoop(RN, LI);
Johannes Doerfert952b5302016-05-23 12:40:48 +00004727 if (!contains(L))
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004728 L = OuterScopLoop;
4729
Tobias Grosser151ae322016-04-03 19:36:52 +00004730 Loop *LastLoop = LoopStack.back().L;
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004731 if (LastLoop != L) {
Johannes Doerfertd5edbd62016-04-03 23:09:06 +00004732 if (LastLoop && !LastLoop->contains(L)) {
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004733 LastRNWaiting = true;
4734 DelayList.push_back(RN);
4735 continue;
4736 }
4737 LoopStack.push_back({L, nullptr, 0});
4738 }
Johannes Doerfertffd222f2016-05-19 12:34:57 +00004739 buildSchedule(RN, LoopStack, LI);
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004740 }
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004741}
4742
Johannes Doerfertffd222f2016-05-19 12:34:57 +00004743void Scop::buildSchedule(RegionNode *RN, LoopStackTy &LoopStack, LoopInfo &LI) {
Tobias Grosser8362c262016-01-06 15:30:06 +00004744 if (RN->isSubRegion()) {
4745 auto *LocalRegion = RN->getNodeAs<Region>();
Johannes Doerfertffd222f2016-05-19 12:34:57 +00004746 if (!isNonAffineSubRegion(LocalRegion)) {
4747 buildSchedule(LocalRegion, LoopStack, LI);
Tobias Grosser8362c262016-01-06 15:30:06 +00004748 return;
4749 }
4750 }
Michael Kruse046dde42015-08-10 13:01:57 +00004751
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004752 assert(LoopStack.rbegin() != LoopStack.rend());
4753 auto LoopData = LoopStack.rbegin();
4754 LoopData->NumBlocksProcessed += getNumBlocksInRegionNode(RN);
Tobias Grosser8362c262016-01-06 15:30:06 +00004755
Michael Kruse1ce67912017-07-20 17:18:58 +00004756 for (auto *Stmt : getStmtListFor(RN)) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004757 isl::union_set UDomain{Stmt->getDomain()};
4758 auto StmtSchedule = isl::schedule::from_domain(UDomain);
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004759 LoopData->Schedule = combineInSequence(LoopData->Schedule, StmtSchedule);
Tobias Grosser8362c262016-01-06 15:30:06 +00004760 }
4761
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004762 // Check if we just processed the last node in this loop. If we did, finalize
4763 // the loop by:
4764 //
4765 // - adding new schedule dimensions
4766 // - folding the resulting schedule into the parent loop schedule
4767 // - dropping the loop schedule from the LoopStack.
4768 //
4769 // Then continue to check surrounding loops, which might also have been
4770 // completed by this node.
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004771 size_t Dimension = LoopStack.size();
4772 while (LoopData->L &&
4773 LoopData->NumBlocksProcessed == getNumBlocksInLoop(LoopData->L)) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004774 isl::schedule Schedule = LoopData->Schedule;
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004775 auto NumBlocksProcessed = LoopData->NumBlocksProcessed;
Tobias Grosser8362c262016-01-06 15:30:06 +00004776
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004777 assert(std::next(LoopData) != LoopStack.rend());
4778 ++LoopData;
4779 --Dimension;
Tobias Grosser8362c262016-01-06 15:30:06 +00004780
Tobias Grosserc2fd8b42016-02-01 11:54:13 +00004781 if (Schedule) {
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004782 isl::union_set Domain = Schedule.get_domain();
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004783 isl::multi_union_pw_aff MUPA = mapToDimension(Domain, Dimension);
Philip Pfaffe00fd43b2017-11-19 22:13:34 +00004784 Schedule = Schedule.insert_partial_schedule(MUPA);
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004785 LoopData->Schedule = combineInSequence(LoopData->Schedule, Schedule);
Tobias Grosser75805372011-04-29 06:27:02 +00004786 }
Johannes Doerfertb68cffb2015-09-10 15:27:46 +00004787
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004788 LoopData->NumBlocksProcessed += NumBlocksProcessed;
Tobias Grosser808cd692015-07-14 09:33:13 +00004789 }
Philip Pfaffe8dd0f472017-11-16 16:35:19 +00004790 // Now pop all loops processed up there from the LoopStack
4791 LoopStack.erase(LoopStack.begin() + Dimension, LoopStack.end());
Tobias Grosser75805372011-04-29 06:27:02 +00004792}
4793
Michael Kruse6eba4b12017-07-20 17:08:50 +00004794ArrayRef<ScopStmt *> Scop::getStmtListFor(BasicBlock *BB) const {
4795 auto StmtMapIt = StmtMap.find(BB);
4796 if (StmtMapIt == StmtMap.end())
4797 return {};
Michael Kruse6eba4b12017-07-20 17:08:50 +00004798 return StmtMapIt->second;
4799}
4800
Michael Krusea230f222018-01-23 23:56:36 +00004801ScopStmt *Scop::getIncomingStmtFor(const Use &U) const {
4802 auto *PHI = cast<PHINode>(U.getUser());
4803 BasicBlock *IncomingBB = PHI->getIncomingBlock(U);
4804
4805 // If the value is a non-synthesizable from the incoming block, use the
4806 // statement that contains it as user statement.
4807 if (auto *IncomingInst = dyn_cast<Instruction>(U.get())) {
4808 if (IncomingInst->getParent() == IncomingBB) {
4809 if (ScopStmt *IncomingStmt = getStmtFor(IncomingInst))
4810 return IncomingStmt;
4811 }
4812 }
4813
4814 // Otherwise, use the epilogue/last statement.
4815 return getLastStmtFor(IncomingBB);
4816}
4817
Michael Kruse6eba4b12017-07-20 17:08:50 +00004818ScopStmt *Scop::getLastStmtFor(BasicBlock *BB) const {
4819 ArrayRef<ScopStmt *> StmtList = getStmtListFor(BB);
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00004820 if (!StmtList.empty())
Michael Kruse6eba4b12017-07-20 17:08:50 +00004821 return StmtList.back();
4822 return nullptr;
4823}
4824
Michael Kruse1ce67912017-07-20 17:18:58 +00004825ArrayRef<ScopStmt *> Scop::getStmtListFor(RegionNode *RN) const {
Michael Kruse6f7721f2016-02-24 22:08:19 +00004826 if (RN->isSubRegion())
Michael Kruse1ce67912017-07-20 17:18:58 +00004827 return getStmtListFor(RN->getNodeAs<Region>());
4828 return getStmtListFor(RN->getNodeAs<BasicBlock>());
Michael Kruse6f7721f2016-02-24 22:08:19 +00004829}
4830
Michael Kruse1ce67912017-07-20 17:18:58 +00004831ArrayRef<ScopStmt *> Scop::getStmtListFor(Region *R) const {
4832 return getStmtListFor(R->getEntry());
Michael Krusea902ba62015-12-13 19:21:45 +00004833}
4834
Johannes Doerfert96425c22015-08-30 21:13:53 +00004835int Scop::getRelativeLoopDepth(const Loop *L) const {
Philip Pfaffe1a0128f2017-05-24 18:39:39 +00004836 if (!L || !R.contains(L))
Johannes Doerfert96425c22015-08-30 21:13:53 +00004837 return -1;
Philip Pfaffe1a0128f2017-05-24 18:39:39 +00004838 // outermostLoopInRegion always returns nullptr for top level regions
4839 if (R.isTopLevelRegion()) {
4840 // LoopInfo's depths start at 1, we start at 0
4841 return L->getLoopDepth() - 1;
4842 } else {
4843 Loop *OuterLoop = R.outermostLoopInRegion(const_cast<Loop *>(L));
4844 assert(OuterLoop);
4845 return L->getLoopDepth() - OuterLoop->getLoopDepth();
4846 }
Johannes Doerfertd020b772015-08-27 06:53:52 +00004847}
4848
Roman Gareevd7754a12016-07-30 09:25:51 +00004849ScopArrayInfo *Scop::getArrayInfoByName(const std::string BaseName) {
4850 for (auto &SAI : arrays()) {
4851 if (SAI->getName() == BaseName)
4852 return SAI;
4853 }
4854 return nullptr;
4855}
4856
Michael Kruse8b805802017-07-19 17:11:25 +00004857void Scop::addAccessData(MemoryAccess *Access) {
4858 const ScopArrayInfo *SAI = Access->getOriginalScopArrayInfo();
4859 assert(SAI && "can only use after access relations have been constructed");
4860
4861 if (Access->isOriginalValueKind() && Access->isRead())
4862 ValueUseAccs[SAI].push_back(Access);
4863 else if (Access->isOriginalAnyPHIKind() && Access->isWrite())
4864 PHIIncomingAccs[SAI].push_back(Access);
4865}
4866
4867void Scop::removeAccessData(MemoryAccess *Access) {
Michael Kruse6d7a7892017-09-21 14:23:11 +00004868 if (Access->isOriginalValueKind() && Access->isWrite()) {
4869 ValueDefAccs.erase(Access->getAccessValue());
4870 } else if (Access->isOriginalValueKind() && Access->isRead()) {
Michael Kruse8b805802017-07-19 17:11:25 +00004871 auto &Uses = ValueUseAccs[Access->getScopArrayInfo()];
Michael Kruse7de61662018-04-09 23:13:01 +00004872 auto NewEnd = std::remove(Uses.begin(), Uses.end(), Access);
4873 Uses.erase(NewEnd, Uses.end());
Michael Kruse6d7a7892017-09-21 14:23:11 +00004874 } else if (Access->isOriginalPHIKind() && Access->isRead()) {
4875 PHINode *PHI = cast<PHINode>(Access->getAccessInstruction());
4876 PHIReadAccs.erase(PHI);
Michael Kruse8b805802017-07-19 17:11:25 +00004877 } else if (Access->isOriginalAnyPHIKind() && Access->isWrite()) {
4878 auto &Incomings = PHIIncomingAccs[Access->getScopArrayInfo()];
Michael Kruse7de61662018-04-09 23:13:01 +00004879 auto NewEnd = std::remove(Incomings.begin(), Incomings.end(), Access);
4880 Incomings.erase(NewEnd, Incomings.end());
Michael Kruse8b805802017-07-19 17:11:25 +00004881 }
4882}
4883
4884MemoryAccess *Scop::getValueDef(const ScopArrayInfo *SAI) const {
4885 assert(SAI->isValueKind());
4886
4887 Instruction *Val = dyn_cast<Instruction>(SAI->getBasePtr());
4888 if (!Val)
4889 return nullptr;
4890
Michael Kruse6d7a7892017-09-21 14:23:11 +00004891 return ValueDefAccs.lookup(Val);
Michael Kruse8b805802017-07-19 17:11:25 +00004892}
4893
4894ArrayRef<MemoryAccess *> Scop::getValueUses(const ScopArrayInfo *SAI) const {
4895 assert(SAI->isValueKind());
4896 auto It = ValueUseAccs.find(SAI);
4897 if (It == ValueUseAccs.end())
4898 return {};
4899 return It->second;
4900}
4901
4902MemoryAccess *Scop::getPHIRead(const ScopArrayInfo *SAI) const {
4903 assert(SAI->isPHIKind() || SAI->isExitPHIKind());
4904
4905 if (SAI->isExitPHIKind())
4906 return nullptr;
4907
4908 PHINode *PHI = cast<PHINode>(SAI->getBasePtr());
Michael Kruse6d7a7892017-09-21 14:23:11 +00004909 return PHIReadAccs.lookup(PHI);
Michael Kruse8b805802017-07-19 17:11:25 +00004910}
4911
4912ArrayRef<MemoryAccess *> Scop::getPHIIncomings(const ScopArrayInfo *SAI) const {
4913 assert(SAI->isPHIKind() || SAI->isExitPHIKind());
4914 auto It = PHIIncomingAccs.find(SAI);
4915 if (It == PHIIncomingAccs.end())
4916 return {};
4917 return It->second;
4918}
4919
Michael Krusea508a4e2017-07-27 14:39:52 +00004920bool Scop::isEscaping(Instruction *Inst) {
4921 assert(contains(Inst) && "The concept of escaping makes only sense for "
4922 "values defined inside the SCoP");
4923
4924 for (Use &Use : Inst->uses()) {
4925 BasicBlock *UserBB = getUseBlock(Use);
4926 if (!contains(UserBB))
4927 return true;
4928
4929 // When the SCoP region exit needs to be simplified, PHIs in the region exit
4930 // move to a new basic block such that its incoming blocks are not in the
4931 // SCoP anymore.
4932 if (hasSingleExitEdge() && isa<PHINode>(Use.getUser()) &&
4933 isExit(cast<PHINode>(Use.getUser())->getParent()))
4934 return true;
4935 }
4936 return false;
4937}
4938
Michael Kruse06ed5292017-08-23 13:50:30 +00004939Scop::ScopStatistics Scop::getStatistics() const {
4940 ScopStatistics Result;
4941#if !defined(NDEBUG) || defined(LLVM_ENABLE_STATS)
4942 auto LoopStat = ScopDetection::countBeneficialLoops(&R, *SE, *getLI(), 0);
4943
4944 int NumTotalLoops = LoopStat.NumLoops;
4945 Result.NumBoxedLoops = getBoxedLoops().size();
4946 Result.NumAffineLoops = NumTotalLoops - Result.NumBoxedLoops;
4947
4948 for (const ScopStmt &Stmt : *this) {
4949 isl::set Domain = Stmt.getDomain().intersect_params(getContext());
4950 bool IsInLoop = Stmt.getNumIterators() >= 1;
4951 for (MemoryAccess *MA : Stmt) {
4952 if (!MA->isWrite())
4953 continue;
4954
4955 if (MA->isLatestValueKind()) {
4956 Result.NumValueWrites += 1;
4957 if (IsInLoop)
4958 Result.NumValueWritesInLoops += 1;
4959 }
4960
4961 if (MA->isLatestAnyPHIKind()) {
4962 Result.NumPHIWrites += 1;
4963 if (IsInLoop)
4964 Result.NumPHIWritesInLoops += 1;
4965 }
4966
4967 isl::set AccSet =
4968 MA->getAccessRelation().intersect_domain(Domain).range();
4969 if (AccSet.is_singleton()) {
4970 Result.NumSingletonWrites += 1;
4971 if (IsInLoop)
4972 Result.NumSingletonWritesInLoops += 1;
4973 }
4974 }
4975 }
4976#endif
4977 return Result;
4978}
4979
Eugene Zelenko0c4c2ce2017-08-22 21:25:51 +00004980raw_ostream &polly::operator<<(raw_ostream &OS, const Scop &scop) {
4981 scop.print(OS, PollyPrintInstructions);
4982 return OS;
Michael Krusecd4c9772017-07-21 15:35:53 +00004983}
4984
Johannes Doerfert99191c72016-05-31 09:41:04 +00004985//===----------------------------------------------------------------------===//
4986void ScopInfoRegionPass::getAnalysisUsage(AnalysisUsage &AU) const {
4987 AU.addRequired<LoopInfoWrapperPass>();
4988 AU.addRequired<RegionInfoPass>();
4989 AU.addRequired<DominatorTreeWrapperPass>();
4990 AU.addRequiredTransitive<ScalarEvolutionWrapperPass>();
Philip Pfaffe5cc87e32017-05-12 14:37:29 +00004991 AU.addRequiredTransitive<ScopDetectionWrapperPass>();
Johannes Doerfert99191c72016-05-31 09:41:04 +00004992 AU.addRequired<AAResultsWrapperPass>();
Michael Kruse89b1f942017-03-17 13:56:53 +00004993 AU.addRequired<AssumptionCacheTracker>();
Michael Krusea4f447c2017-08-28 14:07:33 +00004994 AU.addRequired<OptimizationRemarkEmitterWrapperPass>();
Johannes Doerfert99191c72016-05-31 09:41:04 +00004995 AU.setPreservesAll();
4996}
4997
Michael Kruse06ed5292017-08-23 13:50:30 +00004998void updateLoopCountStatistic(ScopDetection::LoopStats Stats,
4999 Scop::ScopStatistics ScopStats) {
5000 assert(Stats.NumLoops == ScopStats.NumAffineLoops + ScopStats.NumBoxedLoops);
5001
5002 NumScops++;
Tobias Grossercd01a362017-02-17 08:12:36 +00005003 NumLoopsInScop += Stats.NumLoops;
5004 MaxNumLoopsInScop =
5005 std::max(MaxNumLoopsInScop.getValue(), (unsigned)Stats.NumLoops);
5006
Tobias Grosserfcc3ad52018-04-18 20:03:36 +00005007 if (Stats.MaxDepth == 0)
5008 NumScopsDepthZero++;
5009 else if (Stats.MaxDepth == 1)
Tobias Grossercd01a362017-02-17 08:12:36 +00005010 NumScopsDepthOne++;
5011 else if (Stats.MaxDepth == 2)
5012 NumScopsDepthTwo++;
5013 else if (Stats.MaxDepth == 3)
5014 NumScopsDepthThree++;
5015 else if (Stats.MaxDepth == 4)
5016 NumScopsDepthFour++;
5017 else if (Stats.MaxDepth == 5)
5018 NumScopsDepthFive++;
5019 else
5020 NumScopsDepthLarger++;
Michael Kruse06ed5292017-08-23 13:50:30 +00005021
5022 NumAffineLoops += ScopStats.NumAffineLoops;
5023 NumBoxedLoops += ScopStats.NumBoxedLoops;
5024
5025 NumValueWrites += ScopStats.NumValueWrites;
5026 NumValueWritesInLoops += ScopStats.NumValueWritesInLoops;
5027 NumPHIWrites += ScopStats.NumPHIWrites;
5028 NumPHIWritesInLoops += ScopStats.NumPHIWritesInLoops;
5029 NumSingletonWrites += ScopStats.NumSingletonWrites;
5030 NumSingletonWritesInLoops += ScopStats.NumSingletonWritesInLoops;
Tobias Grossercd01a362017-02-17 08:12:36 +00005031}
5032
Johannes Doerfert99191c72016-05-31 09:41:04 +00005033bool ScopInfoRegionPass::runOnRegion(Region *R, RGPassManager &RGM) {
Philip Pfaffe5cc87e32017-05-12 14:37:29 +00005034 auto &SD = getAnalysis<ScopDetectionWrapperPass>().getSD();
Johannes Doerfert99191c72016-05-31 09:41:04 +00005035
5036 if (!SD.isMaxRegionInScop(*R))
5037 return false;
5038
5039 Function *F = R->getEntry()->getParent();
5040 auto &SE = getAnalysis<ScalarEvolutionWrapperPass>().getSE();
5041 auto &LI = getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
5042 auto &AA = getAnalysis<AAResultsWrapperPass>().getAAResults();
5043 auto const &DL = F->getParent()->getDataLayout();
5044 auto &DT = getAnalysis<DominatorTreeWrapperPass>().getDomTree();
Michael Kruse89b1f942017-03-17 13:56:53 +00005045 auto &AC = getAnalysis<AssumptionCacheTracker>().getAssumptionCache(*F);
Michael Krusea4f447c2017-08-28 14:07:33 +00005046 auto &ORE = getAnalysis<OptimizationRemarkEmitterWrapperPass>().getORE();
Johannes Doerfert99191c72016-05-31 09:41:04 +00005047
Michael Krusea4f447c2017-08-28 14:07:33 +00005048 ScopBuilder SB(R, AC, AA, DL, DT, LI, SD, SE, ORE);
Johannes Doerfertb7e97132016-06-27 09:25:40 +00005049 S = SB.getScop(); // take ownership of scop object
Tobias Grossercd01a362017-02-17 08:12:36 +00005050
Michael Kruse06ed5292017-08-23 13:50:30 +00005051#if !defined(NDEBUG) || defined(LLVM_ENABLE_STATS)
Tobias Grossercd01a362017-02-17 08:12:36 +00005052 if (S) {
5053 ScopDetection::LoopStats Stats =
5054 ScopDetection::countBeneficialLoops(&S->getRegion(), SE, LI, 0);
Michael Kruse06ed5292017-08-23 13:50:30 +00005055 updateLoopCountStatistic(Stats, S->getStatistics());
Tobias Grossercd01a362017-02-17 08:12:36 +00005056 }
Michael Kruse06ed5292017-08-23 13:50:30 +00005057#endif
Tobias Grossercd01a362017-02-17 08:12:36 +00005058
Tobias Grosser75805372011-04-29 06:27:02 +00005059 return false;
5060}
5061
Johannes Doerfert99191c72016-05-31 09:41:04 +00005062void ScopInfoRegionPass::print(raw_ostream &OS, const Module *) const {
Johannes Doerfertb7e97132016-06-27 09:25:40 +00005063 if (S)
Michael Krusecd4c9772017-07-21 15:35:53 +00005064 S->print(OS, PollyPrintInstructions);
Johannes Doerfertb7e97132016-06-27 09:25:40 +00005065 else
5066 OS << "Invalid Scop!\n";
Johannes Doerfert99191c72016-05-31 09:41:04 +00005067}
Tobias Grosser75805372011-04-29 06:27:02 +00005068
Johannes Doerfert99191c72016-05-31 09:41:04 +00005069char ScopInfoRegionPass::ID = 0;
Tobias Grosser4d96c8d2013-03-23 01:05:07 +00005070
Johannes Doerfert99191c72016-05-31 09:41:04 +00005071Pass *polly::createScopInfoRegionPassPass() { return new ScopInfoRegionPass(); }
5072
5073INITIALIZE_PASS_BEGIN(ScopInfoRegionPass, "polly-scops",
Tobias Grosser73600b82011-10-08 00:30:40 +00005074 "Polly - Create polyhedral description of Scops", false,
Tobias Grosser4d96c8d2013-03-23 01:05:07 +00005075 false);
Chandler Carruth66ef16b2015-09-09 22:13:56 +00005076INITIALIZE_PASS_DEPENDENCY(AAResultsWrapperPass);
Michael Kruse89b1f942017-03-17 13:56:53 +00005077INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker);
Chandler Carruthf5579872015-01-17 14:16:56 +00005078INITIALIZE_PASS_DEPENDENCY(LoopInfoWrapperPass);
Matt Arsenault8ca36812014-07-19 18:40:17 +00005079INITIALIZE_PASS_DEPENDENCY(RegionInfoPass);
Tobias Grosserc5bcf242015-08-17 10:57:08 +00005080INITIALIZE_PASS_DEPENDENCY(ScalarEvolutionWrapperPass);
Philip Pfaffe5cc87e32017-05-12 14:37:29 +00005081INITIALIZE_PASS_DEPENDENCY(ScopDetectionWrapperPass);
Johannes Doerfert96425c22015-08-30 21:13:53 +00005082INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass);
Johannes Doerfert99191c72016-05-31 09:41:04 +00005083INITIALIZE_PASS_END(ScopInfoRegionPass, "polly-scops",
Tobias Grosser73600b82011-10-08 00:30:40 +00005084 "Polly - Create polyhedral description of Scops", false,
5085 false)
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005086
5087//===----------------------------------------------------------------------===//
Philip Pfaffe838e0882017-05-15 12:55:14 +00005088ScopInfo::ScopInfo(const DataLayout &DL, ScopDetection &SD, ScalarEvolution &SE,
5089 LoopInfo &LI, AliasAnalysis &AA, DominatorTree &DT,
Michael Krusea4f447c2017-08-28 14:07:33 +00005090 AssumptionCache &AC, OptimizationRemarkEmitter &ORE)
5091 : DL(DL), SD(SD), SE(SE), LI(LI), AA(AA), DT(DT), AC(AC), ORE(ORE) {
Philip Pfaffef43e7c22017-08-10 07:43:46 +00005092 recompute();
5093}
5094
5095void ScopInfo::recompute() {
5096 RegionToScopMap.clear();
Michael Krusea6d48f52017-06-08 12:06:15 +00005097 /// Create polyhedral description of scops for all the valid regions of a
Philip Pfaffe838e0882017-05-15 12:55:14 +00005098 /// function.
5099 for (auto &It : SD) {
5100 Region *R = const_cast<Region *>(It);
5101 if (!SD.isMaxRegionInScop(*R))
5102 continue;
5103
Michael Krusea4f447c2017-08-28 14:07:33 +00005104 ScopBuilder SB(R, AC, AA, DL, DT, LI, SD, SE, ORE);
Philip Pfaffe838e0882017-05-15 12:55:14 +00005105 std::unique_ptr<Scop> S = SB.getScop();
5106 if (!S)
5107 continue;
Michael Kruse06ed5292017-08-23 13:50:30 +00005108#if !defined(NDEBUG) || defined(LLVM_ENABLE_STATS)
Philip Pfaffeead67db2017-08-02 11:14:41 +00005109 ScopDetection::LoopStats Stats =
5110 ScopDetection::countBeneficialLoops(&S->getRegion(), SE, LI, 0);
Michael Kruse06ed5292017-08-23 13:50:30 +00005111 updateLoopCountStatistic(Stats, S->getStatistics());
5112#endif
Philip Pfaffe838e0882017-05-15 12:55:14 +00005113 bool Inserted = RegionToScopMap.insert({R, std::move(S)}).second;
5114 assert(Inserted && "Building Scop for the same region twice!");
5115 (void)Inserted;
5116 }
5117}
5118
Philip Pfaffef43e7c22017-08-10 07:43:46 +00005119bool ScopInfo::invalidate(Function &F, const PreservedAnalyses &PA,
5120 FunctionAnalysisManager::Invalidator &Inv) {
5121 // Check whether the analysis, all analyses on functions have been preserved
5122 // or anything we're holding references to is being invalidated
5123 auto PAC = PA.getChecker<ScopInfoAnalysis>();
5124 return !(PAC.preserved() || PAC.preservedSet<AllAnalysesOn<Function>>()) ||
5125 Inv.invalidate<ScopAnalysis>(F, PA) ||
5126 Inv.invalidate<ScalarEvolutionAnalysis>(F, PA) ||
5127 Inv.invalidate<LoopAnalysis>(F, PA) ||
5128 Inv.invalidate<AAManager>(F, PA) ||
5129 Inv.invalidate<DominatorTreeAnalysis>(F, PA) ||
5130 Inv.invalidate<AssumptionAnalysis>(F, PA);
5131}
5132
Philip Pfaffe838e0882017-05-15 12:55:14 +00005133AnalysisKey ScopInfoAnalysis::Key;
5134
5135ScopInfoAnalysis::Result ScopInfoAnalysis::run(Function &F,
5136 FunctionAnalysisManager &FAM) {
5137 auto &SD = FAM.getResult<ScopAnalysis>(F);
5138 auto &SE = FAM.getResult<ScalarEvolutionAnalysis>(F);
5139 auto &LI = FAM.getResult<LoopAnalysis>(F);
5140 auto &AA = FAM.getResult<AAManager>(F);
5141 auto &DT = FAM.getResult<DominatorTreeAnalysis>(F);
5142 auto &AC = FAM.getResult<AssumptionAnalysis>(F);
5143 auto &DL = F.getParent()->getDataLayout();
Michael Krusea4f447c2017-08-28 14:07:33 +00005144 auto &ORE = FAM.getResult<OptimizationRemarkEmitterAnalysis>(F);
5145 return {DL, SD, SE, LI, AA, DT, AC, ORE};
Philip Pfaffe838e0882017-05-15 12:55:14 +00005146}
5147
5148PreservedAnalyses ScopInfoPrinterPass::run(Function &F,
5149 FunctionAnalysisManager &FAM) {
5150 auto &SI = FAM.getResult<ScopInfoAnalysis>(F);
Philip Pfaffe96d21432017-08-04 11:28:51 +00005151 // Since the legacy PM processes Scops in bottom up, we print them in reverse
5152 // order here to keep the output persistent
5153 for (auto &It : reverse(SI)) {
Philip Pfaffe838e0882017-05-15 12:55:14 +00005154 if (It.second)
Michael Krusecd4c9772017-07-21 15:35:53 +00005155 It.second->print(Stream, PollyPrintInstructions);
Philip Pfaffe838e0882017-05-15 12:55:14 +00005156 else
5157 Stream << "Invalid Scop!\n";
5158 }
5159 return PreservedAnalyses::all();
5160}
5161
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005162void ScopInfoWrapperPass::getAnalysisUsage(AnalysisUsage &AU) const {
5163 AU.addRequired<LoopInfoWrapperPass>();
5164 AU.addRequired<RegionInfoPass>();
5165 AU.addRequired<DominatorTreeWrapperPass>();
5166 AU.addRequiredTransitive<ScalarEvolutionWrapperPass>();
Philip Pfaffe5cc87e32017-05-12 14:37:29 +00005167 AU.addRequiredTransitive<ScopDetectionWrapperPass>();
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005168 AU.addRequired<AAResultsWrapperPass>();
Michael Kruse89b1f942017-03-17 13:56:53 +00005169 AU.addRequired<AssumptionCacheTracker>();
Michael Krusea4f447c2017-08-28 14:07:33 +00005170 AU.addRequired<OptimizationRemarkEmitterWrapperPass>();
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005171 AU.setPreservesAll();
5172}
5173
5174bool ScopInfoWrapperPass::runOnFunction(Function &F) {
Philip Pfaffe5cc87e32017-05-12 14:37:29 +00005175 auto &SD = getAnalysis<ScopDetectionWrapperPass>().getSD();
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005176 auto &SE = getAnalysis<ScalarEvolutionWrapperPass>().getSE();
5177 auto &LI = getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
5178 auto &AA = getAnalysis<AAResultsWrapperPass>().getAAResults();
5179 auto const &DL = F.getParent()->getDataLayout();
5180 auto &DT = getAnalysis<DominatorTreeWrapperPass>().getDomTree();
Michael Kruse89b1f942017-03-17 13:56:53 +00005181 auto &AC = getAnalysis<AssumptionCacheTracker>().getAssumptionCache(F);
Michael Krusea4f447c2017-08-28 14:07:33 +00005182 auto &ORE = getAnalysis<OptimizationRemarkEmitterWrapperPass>().getORE();
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005183
Michael Krusea4f447c2017-08-28 14:07:33 +00005184 Result.reset(new ScopInfo{DL, SD, SE, LI, AA, DT, AC, ORE});
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005185 return false;
5186}
5187
5188void ScopInfoWrapperPass::print(raw_ostream &OS, const Module *) const {
Philip Pfaffe838e0882017-05-15 12:55:14 +00005189 for (auto &It : *Result) {
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005190 if (It.second)
Michael Krusecd4c9772017-07-21 15:35:53 +00005191 It.second->print(OS, PollyPrintInstructions);
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005192 else
5193 OS << "Invalid Scop!\n";
5194 }
5195}
5196
5197char ScopInfoWrapperPass::ID = 0;
5198
5199Pass *polly::createScopInfoWrapperPassPass() {
5200 return new ScopInfoWrapperPass();
5201}
5202
5203INITIALIZE_PASS_BEGIN(
5204 ScopInfoWrapperPass, "polly-function-scops",
5205 "Polly - Create polyhedral description of all Scops of a function", false,
5206 false);
5207INITIALIZE_PASS_DEPENDENCY(AAResultsWrapperPass);
Michael Kruse89b1f942017-03-17 13:56:53 +00005208INITIALIZE_PASS_DEPENDENCY(AssumptionCacheTracker);
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005209INITIALIZE_PASS_DEPENDENCY(LoopInfoWrapperPass);
5210INITIALIZE_PASS_DEPENDENCY(RegionInfoPass);
5211INITIALIZE_PASS_DEPENDENCY(ScalarEvolutionWrapperPass);
Philip Pfaffe5cc87e32017-05-12 14:37:29 +00005212INITIALIZE_PASS_DEPENDENCY(ScopDetectionWrapperPass);
Johannes Doerfert4ba65a52016-06-27 09:32:30 +00005213INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass);
5214INITIALIZE_PASS_END(
5215 ScopInfoWrapperPass, "polly-function-scops",
5216 "Polly - Create polyhedral description of all Scops of a function", false,
5217 false)