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Tobias Grosser75805372011-04-29 06:27:02 +00001//===--------- ScopInfo.cpp - Create Scops from LLVM IR ------------------===//
2//
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 Grosser75805372011-04-29 06:27:02 +000020#include "polly/LinkAllPasses.h"
Johannes Doerfert0ee1f212014-06-17 17:31:36 +000021#include "polly/Options.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000022#include "polly/ScopInfo.h"
Tobias Grosser75805372011-04-29 06:27:02 +000023#include "polly/Support/GICHelper.h"
Tobias Grosser60b54f12011-11-08 15:41:28 +000024#include "polly/Support/SCEVValidator.h"
Tobias Grosser83628182013-05-07 08:11:54 +000025#include "polly/Support/ScopHelper.h"
Sebastian Pop27c10c62013-03-22 22:07:43 +000026#include "polly/TempScopInfo.h"
Tobias Grosserf4c24b22015-04-05 13:11:54 +000027#include "llvm/ADT/MapVector.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000028#include "llvm/ADT/SetVector.h"
Tobias Grosser83628182013-05-07 08:11:54 +000029#include "llvm/ADT/Statistic.h"
Hongbin Zheng86a37742012-04-25 08:01:38 +000030#include "llvm/ADT/StringExtras.h"
Johannes Doerfertb164c792014-09-18 11:17:17 +000031#include "llvm/Analysis/AliasAnalysis.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000032#include "llvm/Analysis/LoopInfo.h"
Tobias Grosser83628182013-05-07 08:11:54 +000033#include "llvm/Analysis/RegionIterator.h"
34#include "llvm/Analysis/ScalarEvolutionExpressions.h"
Tobias Grosser75805372011-04-29 06:27:02 +000035#include "llvm/Support/Debug.h"
Tobias Grosser33ba62ad2011-08-18 06:31:50 +000036#include "isl/aff.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000037#include "isl/constraint.h"
Tobias Grosserf5338802011-10-06 00:03:35 +000038#include "isl/local_space.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000039#include "isl/map.h"
Tobias Grosser4a8e3562011-12-07 07:42:51 +000040#include "isl/options.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000041#include "isl/printer.h"
42#include "isl/set.h"
43#include "isl/union_map.h"
Tobias Grossercd524dc2015-05-09 09:36:38 +000044#include "isl/union_set.h"
Tobias Grosseredab1352013-06-21 06:41:31 +000045#include "isl/val.h"
Tobias Grosser75805372011-04-29 06:27:02 +000046#include <sstream>
47#include <string>
48#include <vector>
49
50using namespace llvm;
51using namespace polly;
52
Chandler Carruth95fef942014-04-22 03:30:19 +000053#define DEBUG_TYPE "polly-scops"
54
Tobias Grosser74394f02013-01-14 22:40:23 +000055STATISTIC(ScopFound, "Number of valid Scops");
56STATISTIC(RichScopFound, "Number of Scops containing a loop");
Tobias Grosser75805372011-04-29 06:27:02 +000057
Johannes Doerfert9e7b17b2014-08-18 00:40:13 +000058// Multiplicative reductions can be disabled separately as these kind of
Johannes Doerfert0ee1f212014-06-17 17:31:36 +000059// operations can overflow easily. Additive reductions and bit operations
60// are in contrast pretty stable.
Tobias Grosser483a90d2014-07-09 10:50:10 +000061static cl::opt<bool> DisableMultiplicativeReductions(
62 "polly-disable-multiplicative-reductions",
63 cl::desc("Disable multiplicative reductions"), cl::Hidden, cl::ZeroOrMore,
64 cl::init(false), cl::cat(PollyCategory));
Johannes Doerfert0ee1f212014-06-17 17:31:36 +000065
Johannes Doerfert9143d672014-09-27 11:02:39 +000066static cl::opt<unsigned> RunTimeChecksMaxParameters(
67 "polly-rtc-max-parameters",
68 cl::desc("The maximal number of parameters allowed in RTCs."), cl::Hidden,
69 cl::ZeroOrMore, cl::init(8), cl::cat(PollyCategory));
70
Tobias Grosser71500722015-03-28 15:11:14 +000071static cl::opt<unsigned> RunTimeChecksMaxArraysPerGroup(
72 "polly-rtc-max-arrays-per-group",
73 cl::desc("The maximal number of arrays to compare in each alias group."),
74 cl::Hidden, cl::ZeroOrMore, cl::init(20), cl::cat(PollyCategory));
75
Tobias Grosser0695ee42013-09-17 03:30:31 +000076/// Translate a 'const SCEV *' expression in an isl_pw_aff.
Tobias Grosserabfbe632013-02-05 12:09:06 +000077struct SCEVAffinator : public SCEVVisitor<SCEVAffinator, isl_pw_aff *> {
Tobias Grosser0695ee42013-09-17 03:30:31 +000078public:
Tobias Grosser0695ee42013-09-17 03:30:31 +000079 /// @brief Translate a 'const SCEV *' to an isl_pw_aff.
80 ///
81 /// @param Stmt The location at which the scalar evolution expression
82 /// is evaluated.
83 /// @param Expr The expression that is translated.
84 static __isl_give isl_pw_aff *getPwAff(ScopStmt *Stmt, const SCEV *Expr);
85
Tobias Grosser33ba62ad2011-08-18 06:31:50 +000086private:
Tobias Grosser3cc99742012-06-06 16:33:15 +000087 isl_ctx *Ctx;
Tobias Grosserf5338802011-10-06 00:03:35 +000088 int NbLoopSpaces;
Tobias Grosser3cc99742012-06-06 16:33:15 +000089 const Scop *S;
Tobias Grosser33ba62ad2011-08-18 06:31:50 +000090
Tobias Grosser0695ee42013-09-17 03:30:31 +000091 SCEVAffinator(const ScopStmt *Stmt);
92 int getLoopDepth(const Loop *L);
Tobias Grosser60b54f12011-11-08 15:41:28 +000093
Tobias Grosser0695ee42013-09-17 03:30:31 +000094 __isl_give isl_pw_aff *visit(const SCEV *Expr);
95 __isl_give isl_pw_aff *visitConstant(const SCEVConstant *Expr);
96 __isl_give isl_pw_aff *visitTruncateExpr(const SCEVTruncateExpr *Expr);
97 __isl_give isl_pw_aff *visitZeroExtendExpr(const SCEVZeroExtendExpr *Expr);
98 __isl_give isl_pw_aff *visitSignExtendExpr(const SCEVSignExtendExpr *Expr);
99 __isl_give isl_pw_aff *visitAddExpr(const SCEVAddExpr *Expr);
100 __isl_give isl_pw_aff *visitMulExpr(const SCEVMulExpr *Expr);
101 __isl_give isl_pw_aff *visitUDivExpr(const SCEVUDivExpr *Expr);
102 __isl_give isl_pw_aff *visitAddRecExpr(const SCEVAddRecExpr *Expr);
103 __isl_give isl_pw_aff *visitSMaxExpr(const SCEVSMaxExpr *Expr);
104 __isl_give isl_pw_aff *visitUMaxExpr(const SCEVUMaxExpr *Expr);
105 __isl_give isl_pw_aff *visitUnknown(const SCEVUnknown *Expr);
Johannes Doerfertb9d18882015-02-11 14:54:50 +0000106 __isl_give isl_pw_aff *visitSDivInstruction(Instruction *SDiv);
Tobias Grosser60b54f12011-11-08 15:41:28 +0000107
Tobias Grosser0695ee42013-09-17 03:30:31 +0000108 friend struct SCEVVisitor<SCEVAffinator, isl_pw_aff *>;
109};
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000110
Tobias Grosser0695ee42013-09-17 03:30:31 +0000111SCEVAffinator::SCEVAffinator(const ScopStmt *Stmt)
112 : Ctx(Stmt->getIslCtx()), NbLoopSpaces(Stmt->getNumIterators()),
113 S(Stmt->getParent()) {}
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000114
Tobias Grosser0695ee42013-09-17 03:30:31 +0000115__isl_give isl_pw_aff *SCEVAffinator::getPwAff(ScopStmt *Stmt,
116 const SCEV *Scev) {
117 Scop *S = Stmt->getParent();
118 const Region *Reg = &S->getRegion();
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000119
Tobias Grosser0695ee42013-09-17 03:30:31 +0000120 S->addParams(getParamsInAffineExpr(Reg, Scev, *S->getSE()));
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000121
Tobias Grosser0695ee42013-09-17 03:30:31 +0000122 SCEVAffinator Affinator(Stmt);
123 return Affinator.visit(Scev);
124}
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000125
Tobias Grosser0695ee42013-09-17 03:30:31 +0000126__isl_give isl_pw_aff *SCEVAffinator::visit(const SCEV *Expr) {
127 // In case the scev is a valid parameter, we do not further analyze this
128 // expression, but create a new parameter in the isl_pw_aff. This allows us
129 // to treat subexpressions that we cannot translate into an piecewise affine
130 // expression, as constant parameters of the piecewise affine expression.
131 if (isl_id *Id = S->getIdForParam(Expr)) {
132 isl_space *Space = isl_space_set_alloc(Ctx, 1, NbLoopSpaces);
133 Space = isl_space_set_dim_id(Space, isl_dim_param, 0, Id);
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000134
Tobias Grosser0695ee42013-09-17 03:30:31 +0000135 isl_set *Domain = isl_set_universe(isl_space_copy(Space));
136 isl_aff *Affine = isl_aff_zero_on_domain(isl_local_space_from_space(Space));
137 Affine = isl_aff_add_coefficient_si(Affine, isl_dim_param, 0, 1);
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000138
139 return isl_pw_aff_alloc(Domain, Affine);
140 }
141
Tobias Grosser0695ee42013-09-17 03:30:31 +0000142 return SCEVVisitor<SCEVAffinator, isl_pw_aff *>::visit(Expr);
143}
144
Tobias Grosser0d170132013-10-03 13:09:19 +0000145__isl_give isl_pw_aff *SCEVAffinator::visitConstant(const SCEVConstant *Expr) {
Tobias Grosser0695ee42013-09-17 03:30:31 +0000146 ConstantInt *Value = Expr->getValue();
147 isl_val *v;
148
149 // LLVM does not define if an integer value is interpreted as a signed or
150 // unsigned value. Hence, without further information, it is unknown how
151 // this value needs to be converted to GMP. At the moment, we only support
152 // signed operations. So we just interpret it as signed. Later, there are
153 // two options:
154 //
155 // 1. We always interpret any value as signed and convert the values on
156 // demand.
157 // 2. We pass down the signedness of the calculation and use it to interpret
158 // this constant correctly.
159 v = isl_valFromAPInt(Ctx, Value->getValue(), /* isSigned */ true);
160
161 isl_space *Space = isl_space_set_alloc(Ctx, 0, NbLoopSpaces);
Johannes Doerfert9c147372014-11-19 15:36:59 +0000162 isl_local_space *ls = isl_local_space_from_space(Space);
163 return isl_pw_aff_from_aff(isl_aff_val_on_domain(ls, v));
Tobias Grosser0695ee42013-09-17 03:30:31 +0000164}
165
166__isl_give isl_pw_aff *
167SCEVAffinator::visitTruncateExpr(const SCEVTruncateExpr *Expr) {
168 llvm_unreachable("SCEVTruncateExpr not yet supported");
169}
170
171__isl_give isl_pw_aff *
172SCEVAffinator::visitZeroExtendExpr(const SCEVZeroExtendExpr *Expr) {
173 llvm_unreachable("SCEVZeroExtendExpr not yet supported");
174}
175
176__isl_give isl_pw_aff *
177SCEVAffinator::visitSignExtendExpr(const SCEVSignExtendExpr *Expr) {
178 // Assuming the value is signed, a sign extension is basically a noop.
179 // TODO: Reconsider this as soon as we support unsigned values.
180 return visit(Expr->getOperand());
181}
182
183__isl_give isl_pw_aff *SCEVAffinator::visitAddExpr(const SCEVAddExpr *Expr) {
184 isl_pw_aff *Sum = visit(Expr->getOperand(0));
185
186 for (int i = 1, e = Expr->getNumOperands(); i < e; ++i) {
187 isl_pw_aff *NextSummand = visit(Expr->getOperand(i));
188 Sum = isl_pw_aff_add(Sum, NextSummand);
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000189 }
190
Tobias Grosser0695ee42013-09-17 03:30:31 +0000191 // TODO: Check for NSW and NUW.
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000192
Tobias Grosser0695ee42013-09-17 03:30:31 +0000193 return Sum;
194}
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000195
Tobias Grosser0695ee42013-09-17 03:30:31 +0000196__isl_give isl_pw_aff *SCEVAffinator::visitMulExpr(const SCEVMulExpr *Expr) {
Johannes Doerfertbe409962015-03-29 20:45:09 +0000197 // Divide Expr into a constant part and the rest. Then visit both and multiply
198 // the result to obtain the representation for Expr. While the second part of
199 // ConstantAndLeftOverPair might still be a SCEVMulExpr we will not get to
200 // this point again. The reason is that if it is a multiplication it consists
201 // only of parameters and we will stop in the visit(const SCEV *) function and
202 // return the isl_pw_aff for that parameter.
203 auto ConstantAndLeftOverPair = extractConstantFactor(Expr, *S->getSE());
204 return isl_pw_aff_mul(visit(ConstantAndLeftOverPair.first),
205 visit(ConstantAndLeftOverPair.second));
Tobias Grosser0695ee42013-09-17 03:30:31 +0000206}
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000207
Tobias Grosser0695ee42013-09-17 03:30:31 +0000208__isl_give isl_pw_aff *SCEVAffinator::visitUDivExpr(const SCEVUDivExpr *Expr) {
209 llvm_unreachable("SCEVUDivExpr not yet supported");
210}
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000211
Tobias Grosser0695ee42013-09-17 03:30:31 +0000212__isl_give isl_pw_aff *
213SCEVAffinator::visitAddRecExpr(const SCEVAddRecExpr *Expr) {
214 assert(Expr->isAffine() && "Only affine AddRecurrences allowed");
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000215
Johannes Doerfertd5d8f672015-04-26 19:55:21 +0000216 auto Flags = Expr->getNoWrapFlags();
217
Tobias Grosser0695ee42013-09-17 03:30:31 +0000218 // Directly generate isl_pw_aff for Expr if 'start' is zero.
219 if (Expr->getStart()->isZero()) {
220 assert(S->getRegion().contains(Expr->getLoop()) &&
221 "Scop does not contain the loop referenced in this AddRec");
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000222
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000223 isl_pw_aff *Start = visit(Expr->getStart());
Tobias Grosser0695ee42013-09-17 03:30:31 +0000224 isl_pw_aff *Step = visit(Expr->getOperand(1));
225 isl_space *Space = isl_space_set_alloc(Ctx, 0, NbLoopSpaces);
226 isl_local_space *LocalSpace = isl_local_space_from_space(Space);
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000227
Tobias Grosser0695ee42013-09-17 03:30:31 +0000228 int loopDimension = getLoopDepth(Expr->getLoop());
229
230 isl_aff *LAff = isl_aff_set_coefficient_si(
231 isl_aff_zero_on_domain(LocalSpace), isl_dim_in, loopDimension, 1);
232 isl_pw_aff *LPwAff = isl_pw_aff_from_aff(LAff);
233
234 // TODO: Do we need to check for NSW and NUW?
235 return isl_pw_aff_add(Start, isl_pw_aff_mul(Step, LPwAff));
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000236 }
237
Tobias Grosser0695ee42013-09-17 03:30:31 +0000238 // Translate AddRecExpr from '{start, +, inc}' into 'start + {0, +, inc}'
239 // if 'start' is not zero.
Johannes Doerfertd5d8f672015-04-26 19:55:21 +0000240 // TODO: Using the original SCEV no-wrap flags is not always safe, however
241 // as our code generation is reordering the expression anyway it doesn't
242 // really matter.
Tobias Grosser0695ee42013-09-17 03:30:31 +0000243 ScalarEvolution &SE = *S->getSE();
Johannes Doerfertd5d8f672015-04-26 19:55:21 +0000244 const SCEV *ZeroStartExpr =
245 SE.getAddRecExpr(SE.getConstant(Expr->getStart()->getType(), 0),
246 Expr->getStepRecurrence(SE), Expr->getLoop(), Flags);
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000247
Tobias Grosser0695ee42013-09-17 03:30:31 +0000248 isl_pw_aff *ZeroStartResult = visit(ZeroStartExpr);
249 isl_pw_aff *Start = visit(Expr->getStart());
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000250
Tobias Grosser0695ee42013-09-17 03:30:31 +0000251 return isl_pw_aff_add(ZeroStartResult, Start);
252}
253
254__isl_give isl_pw_aff *SCEVAffinator::visitSMaxExpr(const SCEVSMaxExpr *Expr) {
255 isl_pw_aff *Max = visit(Expr->getOperand(0));
256
257 for (int i = 1, e = Expr->getNumOperands(); i < e; ++i) {
258 isl_pw_aff *NextOperand = visit(Expr->getOperand(i));
259 Max = isl_pw_aff_max(Max, NextOperand);
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000260 }
261
Tobias Grosser0695ee42013-09-17 03:30:31 +0000262 return Max;
263}
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000264
Tobias Grosser0695ee42013-09-17 03:30:31 +0000265__isl_give isl_pw_aff *SCEVAffinator::visitUMaxExpr(const SCEVUMaxExpr *Expr) {
266 llvm_unreachable("SCEVUMaxExpr not yet supported");
267}
268
Johannes Doerfertb9d18882015-02-11 14:54:50 +0000269__isl_give isl_pw_aff *SCEVAffinator::visitSDivInstruction(Instruction *SDiv) {
270 assert(SDiv->getOpcode() == Instruction::SDiv && "Assumed SDiv instruction!");
271 auto *SE = S->getSE();
272
273 auto *Divisor = SDiv->getOperand(1);
274 auto *DivisorSCEV = SE->getSCEV(Divisor);
275 auto *DivisorPWA = visit(DivisorSCEV);
276 assert(isa<ConstantInt>(Divisor) &&
277 "SDiv is no parameter but has a non-constant RHS.");
278
279 auto *Dividend = SDiv->getOperand(0);
280 auto *DividendSCEV = SE->getSCEV(Dividend);
281 auto *DividendPWA = visit(DividendSCEV);
282 return isl_pw_aff_tdiv_q(DividendPWA, DivisorPWA);
283}
284
Tobias Grosser0695ee42013-09-17 03:30:31 +0000285__isl_give isl_pw_aff *SCEVAffinator::visitUnknown(const SCEVUnknown *Expr) {
Johannes Doerfertb9d18882015-02-11 14:54:50 +0000286 if (Instruction *I = dyn_cast<Instruction>(Expr->getValue())) {
287 switch (I->getOpcode()) {
288 case Instruction::SDiv:
289 return visitSDivInstruction(I);
290 default:
291 break; // Fall through.
292 }
293 }
294
295 llvm_unreachable(
296 "Unknowns SCEV was neither parameter nor a valid instruction.");
Tobias Grosser0695ee42013-09-17 03:30:31 +0000297}
298
299int SCEVAffinator::getLoopDepth(const Loop *L) {
300 Loop *outerLoop = S->getRegion().outermostLoopInRegion(const_cast<Loop *>(L));
301 assert(outerLoop && "Scop does not contain this loop");
302 return L->getLoopDepth() - outerLoop->getLoopDepth();
303}
Tobias Grosser33ba62ad2011-08-18 06:31:50 +0000304
Johannes Doerferte7044942015-02-24 11:58:30 +0000305/// @brief Add the bounds of @p Range to the set @p S for dimension @p dim.
306static __isl_give isl_set *addRangeBoundsToSet(__isl_take isl_set *S,
307 const ConstantRange &Range,
308 int dim,
309 enum isl_dim_type type) {
310 isl_val *V;
311 isl_ctx *ctx = isl_set_get_ctx(S);
312
Johannes Doerfert8f8af432015-04-26 20:07:21 +0000313 bool useLowerUpperBound = Range.isSignWrappedSet() && !Range.isFullSet();
314 const auto LB = useLowerUpperBound ? Range.getLower() : Range.getSignedMin();
Johannes Doerferte4bd53b2015-03-08 19:49:50 +0000315 V = isl_valFromAPInt(ctx, LB, true);
Johannes Doerferte7044942015-02-24 11:58:30 +0000316 isl_set *SLB = isl_set_lower_bound_val(isl_set_copy(S), type, dim, V);
317
Johannes Doerfert8f8af432015-04-26 20:07:21 +0000318 const auto UB = useLowerUpperBound ? Range.getUpper() : Range.getSignedMax();
Johannes Doerferte4bd53b2015-03-08 19:49:50 +0000319 V = isl_valFromAPInt(ctx, UB, true);
Johannes Doerfert8f8af432015-04-26 20:07:21 +0000320 if (useLowerUpperBound)
Johannes Doerferte4bd53b2015-03-08 19:49:50 +0000321 V = isl_val_sub_ui(V, 1);
Johannes Doerferte7044942015-02-24 11:58:30 +0000322 isl_set *SUB = isl_set_upper_bound_val(S, type, dim, V);
323
Johannes Doerfert8f8af432015-04-26 20:07:21 +0000324 if (useLowerUpperBound)
Johannes Doerferte7044942015-02-24 11:58:30 +0000325 return isl_set_union(SLB, SUB);
326 else
327 return isl_set_intersect(SLB, SUB);
328}
329
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000330ScopArrayInfo::ScopArrayInfo(Value *BasePtr, Type *AccessType, isl_ctx *Ctx,
331 const SmallVector<const SCEV *, 4> &DimensionSizes)
332 : BasePtr(BasePtr), AccessType(AccessType), DimensionSizes(DimensionSizes) {
333 const std::string BasePtrName = getIslCompatibleName("MemRef_", BasePtr, "");
334 Id = isl_id_alloc(Ctx, BasePtrName.c_str(), this);
335}
336
337ScopArrayInfo::~ScopArrayInfo() { isl_id_free(Id); }
338
339isl_id *ScopArrayInfo::getBasePtrId() const { return isl_id_copy(Id); }
340
341void ScopArrayInfo::dump() const { print(errs()); }
342
343void ScopArrayInfo::print(raw_ostream &OS) const {
344 OS << "ScopArrayInfo:\n";
345 OS << " Base: " << *getBasePtr() << "\n";
346 OS << " Type: " << *getType() << "\n";
347 OS << " Dimension Sizes:\n";
348 for (unsigned u = 0; u < getNumberOfDimensions(); u++)
349 OS << " " << u << ") " << *DimensionSizes[u] << "\n";
350 OS << "\n";
351}
352
353const ScopArrayInfo *
354ScopArrayInfo::getFromAccessFunction(__isl_keep isl_pw_multi_aff *PMA) {
355 isl_id *Id = isl_pw_multi_aff_get_tuple_id(PMA, isl_dim_out);
356 assert(Id && "Output dimension didn't have an ID");
357 return getFromId(Id);
358}
359
360const ScopArrayInfo *ScopArrayInfo::getFromId(isl_id *Id) {
361 void *User = isl_id_get_user(Id);
362 const ScopArrayInfo *SAI = static_cast<ScopArrayInfo *>(User);
363 isl_id_free(Id);
364 return SAI;
365}
366
Johannes Doerfert32868bf2014-08-01 08:13:25 +0000367const std::string
368MemoryAccess::getReductionOperatorStr(MemoryAccess::ReductionType RT) {
369 switch (RT) {
370 case MemoryAccess::RT_NONE:
371 llvm_unreachable("Requested a reduction operator string for a memory "
372 "access which isn't a reduction");
373 case MemoryAccess::RT_ADD:
374 return "+";
375 case MemoryAccess::RT_MUL:
376 return "*";
377 case MemoryAccess::RT_BOR:
378 return "|";
379 case MemoryAccess::RT_BXOR:
380 return "^";
381 case MemoryAccess::RT_BAND:
382 return "&";
383 }
384 llvm_unreachable("Unknown reduction type");
385 return "";
386}
387
Johannes Doerfertf6183392014-07-01 20:52:51 +0000388/// @brief Return the reduction type for a given binary operator
389static MemoryAccess::ReductionType getReductionType(const BinaryOperator *BinOp,
390 const Instruction *Load) {
391 if (!BinOp)
392 return MemoryAccess::RT_NONE;
393 switch (BinOp->getOpcode()) {
394 case Instruction::FAdd:
395 if (!BinOp->hasUnsafeAlgebra())
396 return MemoryAccess::RT_NONE;
397 // Fall through
398 case Instruction::Add:
399 return MemoryAccess::RT_ADD;
400 case Instruction::Or:
401 return MemoryAccess::RT_BOR;
402 case Instruction::Xor:
403 return MemoryAccess::RT_BXOR;
404 case Instruction::And:
405 return MemoryAccess::RT_BAND;
406 case Instruction::FMul:
407 if (!BinOp->hasUnsafeAlgebra())
408 return MemoryAccess::RT_NONE;
409 // Fall through
410 case Instruction::Mul:
411 if (DisableMultiplicativeReductions)
412 return MemoryAccess::RT_NONE;
413 return MemoryAccess::RT_MUL;
414 default:
415 return MemoryAccess::RT_NONE;
416 }
417}
Tobias Grosser75805372011-04-29 06:27:02 +0000418//===----------------------------------------------------------------------===//
419
420MemoryAccess::~MemoryAccess() {
Tobias Grosser6f48e0f2015-05-15 09:58:32 +0000421 isl_id_free(Id);
Tobias Grosser54a86e62011-08-18 06:31:46 +0000422 isl_map_free(AccessRelation);
Raghesh Aloor129e8672011-08-15 02:33:39 +0000423 isl_map_free(newAccessRelation);
Tobias Grosser75805372011-04-29 06:27:02 +0000424}
425
Johannes Doerfert8f7124c2014-09-12 11:00:49 +0000426static MemoryAccess::AccessType getMemoryAccessType(const IRAccess &Access) {
427 switch (Access.getType()) {
428 case IRAccess::READ:
429 return MemoryAccess::READ;
430 case IRAccess::MUST_WRITE:
431 return MemoryAccess::MUST_WRITE;
432 case IRAccess::MAY_WRITE:
433 return MemoryAccess::MAY_WRITE;
434 }
435 llvm_unreachable("Unknown IRAccess type!");
436}
437
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000438const ScopArrayInfo *MemoryAccess::getScopArrayInfo() const {
439 isl_id *ArrayId = getArrayId();
440 void *User = isl_id_get_user(ArrayId);
441 const ScopArrayInfo *SAI = static_cast<ScopArrayInfo *>(User);
442 isl_id_free(ArrayId);
443 return SAI;
444}
445
Tobias Grosser4f663aa2015-03-30 11:52:59 +0000446__isl_give isl_id *MemoryAccess::getArrayId() const {
Johannes Doerfert5d83f092014-07-29 08:37:55 +0000447 return isl_map_get_tuple_id(AccessRelation, isl_dim_out);
448}
449
Tobias Grosser4f663aa2015-03-30 11:52:59 +0000450__isl_give isl_pw_multi_aff *MemoryAccess::applyScheduleToAccessRelation(
451 __isl_take isl_union_map *USchedule) const {
Johannes Doerferta99130f2014-10-13 12:58:03 +0000452 isl_map *Schedule, *ScheduledAccRel;
453 isl_union_set *UDomain;
454
455 UDomain = isl_union_set_from_set(getStatement()->getDomain());
456 USchedule = isl_union_map_intersect_domain(USchedule, UDomain);
457 Schedule = isl_map_from_union_map(USchedule);
458 ScheduledAccRel = isl_map_apply_domain(getAccessRelation(), Schedule);
459 return isl_pw_multi_aff_from_map(ScheduledAccRel);
460}
461
Tobias Grosser4f663aa2015-03-30 11:52:59 +0000462__isl_give isl_map *MemoryAccess::getOriginalAccessRelation() const {
Tobias Grosser5d453812011-10-06 00:04:11 +0000463 return isl_map_copy(AccessRelation);
464}
465
Johannes Doerferta99130f2014-10-13 12:58:03 +0000466std::string MemoryAccess::getOriginalAccessRelationStr() const {
Tobias Grosser5d453812011-10-06 00:04:11 +0000467 return stringFromIslObj(AccessRelation);
468}
469
Johannes Doerferta99130f2014-10-13 12:58:03 +0000470__isl_give isl_space *MemoryAccess::getOriginalAccessRelationSpace() const {
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000471 return isl_map_get_space(AccessRelation);
472}
473
Tobias Grosser4f663aa2015-03-30 11:52:59 +0000474__isl_give isl_map *MemoryAccess::getNewAccessRelation() const {
Tobias Grosser5d453812011-10-06 00:04:11 +0000475 return isl_map_copy(newAccessRelation);
Tobias Grosser75805372011-04-29 06:27:02 +0000476}
477
Tobias Grosser4f663aa2015-03-30 11:52:59 +0000478__isl_give isl_basic_map *
479MemoryAccess::createBasicAccessMap(ScopStmt *Statement) {
Tobias Grosser084d8f72012-05-29 09:29:44 +0000480 isl_space *Space = isl_space_set_alloc(Statement->getIslCtx(), 0, 1);
Tobias Grossered295662012-09-11 13:50:21 +0000481 Space = isl_space_align_params(Space, Statement->getDomainSpace());
Tobias Grosser75805372011-04-29 06:27:02 +0000482
Tobias Grosser084d8f72012-05-29 09:29:44 +0000483 return isl_basic_map_from_domain_and_range(
Tobias Grosserabfbe632013-02-05 12:09:06 +0000484 isl_basic_set_universe(Statement->getDomainSpace()),
485 isl_basic_set_universe(Space));
Tobias Grosser75805372011-04-29 06:27:02 +0000486}
487
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000488// Formalize no out-of-bound access assumption
489//
490// When delinearizing array accesses we optimistically assume that the
491// delinearized accesses do not access out of bound locations (the subscript
492// expression of each array evaluates for each statement instance that is
493// executed to a value that is larger than zero and strictly smaller than the
494// size of the corresponding dimension). The only exception is the outermost
Tobias Grosserf57d63f2014-08-03 21:07:30 +0000495// dimension for which we do not need to assume any upper bound. At this point
496// we formalize this assumption to ensure that at code generation time the
497// relevant run-time checks can be generated.
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000498//
499// To find the set of constraints necessary to avoid out of bound accesses, we
500// first build the set of data locations that are not within array bounds. We
501// then apply the reverse access relation to obtain the set of iterations that
502// may contain invalid accesses and reduce this set of iterations to the ones
503// that are actually executed by intersecting them with the domain of the
504// statement. If we now project out all loop dimensions, we obtain a set of
505// parameters that may cause statement instances to be executed that may
506// possibly yield out of bound memory accesses. The complement of these
507// constraints is the set of constraints that needs to be assumed to ensure such
508// statement instances are never executed.
509void MemoryAccess::assumeNoOutOfBound(const IRAccess &Access) {
Johannes Doerferta99130f2014-10-13 12:58:03 +0000510 isl_space *Space = isl_space_range(getOriginalAccessRelationSpace());
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000511 isl_set *Outside = isl_set_empty(isl_space_copy(Space));
Tobias Grosserf57d63f2014-08-03 21:07:30 +0000512 for (int i = 1, Size = Access.Subscripts.size(); i < Size; ++i) {
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000513 isl_local_space *LS = isl_local_space_from_space(isl_space_copy(Space));
514 isl_pw_aff *Var =
515 isl_pw_aff_var_on_domain(isl_local_space_copy(LS), isl_dim_set, i);
516 isl_pw_aff *Zero = isl_pw_aff_zero_on_domain(LS);
517
518 isl_set *DimOutside;
519
Tobias Grosserf57d63f2014-08-03 21:07:30 +0000520 DimOutside = isl_pw_aff_lt_set(isl_pw_aff_copy(Var), Zero);
521 isl_pw_aff *SizeE = SCEVAffinator::getPwAff(Statement, Access.Sizes[i - 1]);
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000522
Tobias Grosserf57d63f2014-08-03 21:07:30 +0000523 SizeE = isl_pw_aff_drop_dims(SizeE, isl_dim_in, 0,
524 Statement->getNumIterators());
525 SizeE = isl_pw_aff_add_dims(SizeE, isl_dim_in,
526 isl_space_dim(Space, isl_dim_set));
527 SizeE = isl_pw_aff_set_tuple_id(SizeE, isl_dim_in,
528 isl_space_get_tuple_id(Space, isl_dim_set));
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000529
Tobias Grosserf57d63f2014-08-03 21:07:30 +0000530 DimOutside = isl_set_union(DimOutside, isl_pw_aff_le_set(SizeE, Var));
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000531
532 Outside = isl_set_union(Outside, DimOutside);
533 }
534
535 Outside = isl_set_apply(Outside, isl_map_reverse(getAccessRelation()));
536 Outside = isl_set_intersect(Outside, Statement->getDomain());
537 Outside = isl_set_params(Outside);
538 Outside = isl_set_complement(Outside);
539 Statement->getParent()->addAssumption(Outside);
540 isl_space_free(Space);
541}
542
Johannes Doerferte7044942015-02-24 11:58:30 +0000543void MemoryAccess::computeBoundsOnAccessRelation(unsigned ElementSize) {
544 ScalarEvolution *SE = Statement->getParent()->getSE();
545
546 Value *Ptr = getPointerOperand(*getAccessInstruction());
547 if (!Ptr || !SE->isSCEVable(Ptr->getType()))
548 return;
549
550 auto *PtrSCEV = SE->getSCEV(Ptr);
551 if (isa<SCEVCouldNotCompute>(PtrSCEV))
552 return;
553
554 auto *BasePtrSCEV = SE->getPointerBase(PtrSCEV);
555 if (BasePtrSCEV && !isa<SCEVCouldNotCompute>(BasePtrSCEV))
556 PtrSCEV = SE->getMinusSCEV(PtrSCEV, BasePtrSCEV);
557
558 const ConstantRange &Range = SE->getSignedRange(PtrSCEV);
559 if (Range.isFullSet())
560 return;
561
Johannes Doerferte4bd53b2015-03-08 19:49:50 +0000562 bool isWrapping = Range.isSignWrappedSet();
Johannes Doerferte7044942015-02-24 11:58:30 +0000563 unsigned BW = Range.getBitWidth();
Johannes Doerferte4bd53b2015-03-08 19:49:50 +0000564 const auto LB = isWrapping ? Range.getLower() : Range.getSignedMin();
565 const auto UB = isWrapping ? Range.getUpper() : Range.getSignedMax();
566
567 auto Min = LB.sdiv(APInt(BW, ElementSize));
568 auto Max = (UB - APInt(BW, 1)).sdiv(APInt(BW, ElementSize));
Johannes Doerferte7044942015-02-24 11:58:30 +0000569
570 isl_set *AccessRange = isl_map_range(isl_map_copy(AccessRelation));
571 AccessRange =
572 addRangeBoundsToSet(AccessRange, ConstantRange(Min, Max), 0, isl_dim_set);
573 AccessRelation = isl_map_intersect_range(AccessRelation, AccessRange);
574}
575
Tobias Grosser619190d2015-03-30 17:22:28 +0000576__isl_give isl_map *MemoryAccess::foldAccess(const IRAccess &Access,
577 __isl_take isl_map *AccessRelation,
578 ScopStmt *Statement) {
579 int Size = Access.Subscripts.size();
580
581 for (int i = Size - 2; i >= 0; --i) {
582 isl_space *Space;
583 isl_map *MapOne, *MapTwo;
584 isl_pw_aff *DimSize = SCEVAffinator::getPwAff(Statement, Access.Sizes[i]);
585
586 isl_space *SpaceSize = isl_pw_aff_get_space(DimSize);
587 isl_pw_aff_free(DimSize);
588 isl_id *ParamId = isl_space_get_dim_id(SpaceSize, isl_dim_param, 0);
589
590 Space = isl_map_get_space(AccessRelation);
591 Space = isl_space_map_from_set(isl_space_range(Space));
592 Space = isl_space_align_params(Space, SpaceSize);
593
594 int ParamLocation = isl_space_find_dim_by_id(Space, isl_dim_param, ParamId);
595 isl_id_free(ParamId);
596
597 MapOne = isl_map_universe(isl_space_copy(Space));
598 for (int j = 0; j < Size; ++j)
599 MapOne = isl_map_equate(MapOne, isl_dim_in, j, isl_dim_out, j);
600 MapOne = isl_map_lower_bound_si(MapOne, isl_dim_in, i + 1, 0);
601
602 MapTwo = isl_map_universe(isl_space_copy(Space));
603 for (int j = 0; j < Size; ++j)
604 if (j < i || j > i + 1)
605 MapTwo = isl_map_equate(MapTwo, isl_dim_in, j, isl_dim_out, j);
606
607 isl_local_space *LS = isl_local_space_from_space(Space);
608 isl_constraint *C;
609 C = isl_equality_alloc(isl_local_space_copy(LS));
610 C = isl_constraint_set_constant_si(C, -1);
611 C = isl_constraint_set_coefficient_si(C, isl_dim_in, i, 1);
612 C = isl_constraint_set_coefficient_si(C, isl_dim_out, i, -1);
613 MapTwo = isl_map_add_constraint(MapTwo, C);
614 C = isl_equality_alloc(LS);
615 C = isl_constraint_set_coefficient_si(C, isl_dim_in, i + 1, 1);
616 C = isl_constraint_set_coefficient_si(C, isl_dim_out, i + 1, -1);
617 C = isl_constraint_set_coefficient_si(C, isl_dim_param, ParamLocation, 1);
618 MapTwo = isl_map_add_constraint(MapTwo, C);
619 MapTwo = isl_map_upper_bound_si(MapTwo, isl_dim_in, i + 1, -1);
620
621 MapOne = isl_map_union(MapOne, MapTwo);
622 AccessRelation = isl_map_apply_range(AccessRelation, MapOne);
623 }
624 return AccessRelation;
625}
626
Johannes Doerfert13c8cf22014-08-10 08:09:38 +0000627MemoryAccess::MemoryAccess(const IRAccess &Access, Instruction *AccInst,
Tobias Grosser6f48e0f2015-05-15 09:58:32 +0000628 ScopStmt *Statement, const ScopArrayInfo *SAI,
629 int Identifier)
Johannes Doerfert4c7ce472014-10-08 10:11:33 +0000630 : AccType(getMemoryAccessType(Access)), Statement(Statement), Inst(AccInst),
Johannes Doerfert8f7124c2014-09-12 11:00:49 +0000631 newAccessRelation(nullptr) {
Tobias Grosser75805372011-04-29 06:27:02 +0000632
Johannes Doerfert5d83f092014-07-29 08:37:55 +0000633 isl_ctx *Ctx = Statement->getIslCtx();
Tobias Grosser9759f852011-11-10 12:44:55 +0000634 BaseAddr = Access.getBase();
Johannes Doerfert79fc23f2014-07-24 23:48:02 +0000635 BaseName = getIslCompatibleName("MemRef_", getBaseAddr(), "");
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000636
637 isl_id *BaseAddrId = SAI->getBasePtrId();
Tobias Grosser5683df42011-11-09 22:34:34 +0000638
Tobias Grossere29d31c2015-05-15 12:24:09 +0000639 auto IdName = "__polly_array_ref_ " + std::to_string(Identifier);
640 Id = isl_id_alloc(Ctx, IdName.c_str(), nullptr);
Tobias Grosser6f48e0f2015-05-15 09:58:32 +0000641
Tobias Grossera1879642011-12-20 10:43:14 +0000642 if (!Access.isAffine()) {
Tobias Grosser4f967492013-06-23 05:21:18 +0000643 // We overapproximate non-affine accesses with a possible access to the
644 // whole array. For read accesses it does not make a difference, if an
645 // access must or may happen. However, for write accesses it is important to
646 // differentiate between writes that must happen and writes that may happen.
Tobias Grosser04d6ae62013-06-23 06:04:54 +0000647 AccessRelation = isl_map_from_basic_map(createBasicAccessMap(Statement));
Johannes Doerfert5d83f092014-07-29 08:37:55 +0000648 AccessRelation =
649 isl_map_set_tuple_id(AccessRelation, isl_dim_out, BaseAddrId);
Johannes Doerferte7044942015-02-24 11:58:30 +0000650
651 computeBoundsOnAccessRelation(Access.getElemSizeInBytes());
Tobias Grossera1879642011-12-20 10:43:14 +0000652 return;
653 }
654
Johannes Doerfert5d83f092014-07-29 08:37:55 +0000655 isl_space *Space = isl_space_alloc(Ctx, 0, Statement->getNumIterators(), 0);
Tobias Grosser79baa212014-04-10 08:38:02 +0000656 AccessRelation = isl_map_universe(Space);
Tobias Grossera1879642011-12-20 10:43:14 +0000657
Tobias Grosser79baa212014-04-10 08:38:02 +0000658 for (int i = 0, Size = Access.Subscripts.size(); i < Size; ++i) {
Sebastian Pop18016682014-04-08 21:20:44 +0000659 isl_pw_aff *Affine =
660 SCEVAffinator::getPwAff(Statement, Access.Subscripts[i]);
Tobias Grosser75805372011-04-29 06:27:02 +0000661
Sebastian Pop422e33f2014-06-03 18:16:31 +0000662 if (Size == 1) {
663 // For the non delinearized arrays, divide the access function of the last
664 // subscript by the size of the elements in the array.
Sebastian Pop18016682014-04-08 21:20:44 +0000665 //
666 // A stride one array access in C expressed as A[i] is expressed in
667 // LLVM-IR as something like A[i * elementsize]. This hides the fact that
668 // two subsequent values of 'i' index two values that are stored next to
669 // each other in memory. By this division we make this characteristic
670 // obvious again.
Johannes Doerfert5d83f092014-07-29 08:37:55 +0000671 isl_val *v = isl_val_int_from_si(Ctx, Access.getElemSizeInBytes());
Sebastian Pop18016682014-04-08 21:20:44 +0000672 Affine = isl_pw_aff_scale_down_val(Affine, v);
673 }
674
675 isl_map *SubscriptMap = isl_map_from_pw_aff(Affine);
676
Tobias Grosser79baa212014-04-10 08:38:02 +0000677 AccessRelation = isl_map_flat_range_product(AccessRelation, SubscriptMap);
Sebastian Pop18016682014-04-08 21:20:44 +0000678 }
679
Tobias Grosser619190d2015-03-30 17:22:28 +0000680 AccessRelation = foldAccess(Access, AccessRelation, Statement);
681
Tobias Grosser79baa212014-04-10 08:38:02 +0000682 Space = Statement->getDomainSpace();
Tobias Grosserabfbe632013-02-05 12:09:06 +0000683 AccessRelation = isl_map_set_tuple_id(
684 AccessRelation, isl_dim_in, isl_space_get_tuple_id(Space, isl_dim_set));
Johannes Doerfert5d83f092014-07-29 08:37:55 +0000685 AccessRelation =
686 isl_map_set_tuple_id(AccessRelation, isl_dim_out, BaseAddrId);
687
Tobias Grosser5e6813d2014-07-02 17:47:48 +0000688 assumeNoOutOfBound(Access);
Tobias Grosseraa660a92015-03-30 00:07:50 +0000689 AccessRelation = isl_map_gist_domain(AccessRelation, Statement->getDomain());
Johannes Doerfert5d83f092014-07-29 08:37:55 +0000690 isl_space_free(Space);
Tobias Grosser8cae72f2011-11-08 15:41:08 +0000691}
Tobias Grosser30b8a092011-08-18 07:51:37 +0000692
Tobias Grosser8cae72f2011-11-08 15:41:08 +0000693void MemoryAccess::realignParams() {
Tobias Grosser6defb5b2014-04-10 08:37:44 +0000694 isl_space *ParamSpace = Statement->getParent()->getParamSpace();
Tobias Grosser37487052011-10-06 00:03:42 +0000695 AccessRelation = isl_map_align_params(AccessRelation, ParamSpace);
Tobias Grosser75805372011-04-29 06:27:02 +0000696}
697
Johannes Doerfert32868bf2014-08-01 08:13:25 +0000698const std::string MemoryAccess::getReductionOperatorStr() const {
699 return MemoryAccess::getReductionOperatorStr(getReductionType());
700}
701
Tobias Grosser6f48e0f2015-05-15 09:58:32 +0000702__isl_give isl_id *MemoryAccess::getId() const { return isl_id_copy(Id); }
703
Johannes Doerfertf6183392014-07-01 20:52:51 +0000704raw_ostream &polly::operator<<(raw_ostream &OS,
705 MemoryAccess::ReductionType RT) {
Johannes Doerfert32868bf2014-08-01 08:13:25 +0000706 if (RT == MemoryAccess::RT_NONE)
Johannes Doerfertf6183392014-07-01 20:52:51 +0000707 OS << "NONE";
Johannes Doerfert32868bf2014-08-01 08:13:25 +0000708 else
709 OS << MemoryAccess::getReductionOperatorStr(RT);
Johannes Doerfertf6183392014-07-01 20:52:51 +0000710 return OS;
711}
712
Tobias Grosser75805372011-04-29 06:27:02 +0000713void MemoryAccess::print(raw_ostream &OS) const {
Johannes Doerfert4c7ce472014-10-08 10:11:33 +0000714 switch (AccType) {
Tobias Grosserb58f6a42013-07-13 20:41:24 +0000715 case READ:
Johannes Doerfert6780bc32014-06-26 18:47:03 +0000716 OS.indent(12) << "ReadAccess :=\t";
Tobias Grosser4f967492013-06-23 05:21:18 +0000717 break;
Tobias Grosserb58f6a42013-07-13 20:41:24 +0000718 case MUST_WRITE:
Johannes Doerfert6780bc32014-06-26 18:47:03 +0000719 OS.indent(12) << "MustWriteAccess :=\t";
Tobias Grosser4f967492013-06-23 05:21:18 +0000720 break;
Tobias Grosserb58f6a42013-07-13 20:41:24 +0000721 case MAY_WRITE:
Johannes Doerfert6780bc32014-06-26 18:47:03 +0000722 OS.indent(12) << "MayWriteAccess :=\t";
Tobias Grosser4f967492013-06-23 05:21:18 +0000723 break;
724 }
Johannes Doerfert0ff23ec2015-02-06 20:13:15 +0000725 OS << "[Reduction Type: " << getReductionType() << "] ";
726 OS << "[Scalar: " << isScalar() << "]\n";
Johannes Doerferta99130f2014-10-13 12:58:03 +0000727 OS.indent(16) << getOriginalAccessRelationStr() << ";\n";
Tobias Grosser75805372011-04-29 06:27:02 +0000728}
729
Tobias Grosser74394f02013-01-14 22:40:23 +0000730void MemoryAccess::dump() const { print(errs()); }
Tobias Grosser75805372011-04-29 06:27:02 +0000731
732// Create a map in the size of the provided set domain, that maps from the
733// one element of the provided set domain to another element of the provided
734// set domain.
735// The mapping is limited to all points that are equal in all but the last
736// dimension and for which the last dimension of the input is strict smaller
737// than the last dimension of the output.
738//
739// getEqualAndLarger(set[i0, i1, ..., iX]):
740//
741// set[i0, i1, ..., iX] -> set[o0, o1, ..., oX]
742// : i0 = o0, i1 = o1, ..., i(X-1) = o(X-1), iX < oX
743//
Tobias Grosserf5338802011-10-06 00:03:35 +0000744static isl_map *getEqualAndLarger(isl_space *setDomain) {
Tobias Grosserc327932c2012-02-01 14:23:36 +0000745 isl_space *Space = isl_space_map_from_set(setDomain);
746 isl_map *Map = isl_map_universe(isl_space_copy(Space));
747 isl_local_space *MapLocalSpace = isl_local_space_from_space(Space);
Sebastian Pop40408762013-10-04 17:14:53 +0000748 unsigned lastDimension = isl_map_dim(Map, isl_dim_in) - 1;
Tobias Grosser75805372011-04-29 06:27:02 +0000749
750 // Set all but the last dimension to be equal for the input and output
751 //
752 // input[i0, i1, ..., iX] -> output[o0, o1, ..., oX]
753 // : i0 = o0, i1 = o1, ..., i(X-1) = o(X-1)
Sebastian Pop40408762013-10-04 17:14:53 +0000754 for (unsigned i = 0; i < lastDimension; ++i)
Tobias Grosserc327932c2012-02-01 14:23:36 +0000755 Map = isl_map_equate(Map, isl_dim_in, i, isl_dim_out, i);
Tobias Grosser75805372011-04-29 06:27:02 +0000756
757 // Set the last dimension of the input to be strict smaller than the
758 // last dimension of the output.
759 //
760 // input[?,?,?,...,iX] -> output[?,?,?,...,oX] : iX < oX
761 //
Tobias Grosseredab1352013-06-21 06:41:31 +0000762 isl_val *v;
763 isl_ctx *Ctx = isl_map_get_ctx(Map);
Tobias Grosserf5338802011-10-06 00:03:35 +0000764 isl_constraint *c = isl_inequality_alloc(isl_local_space_copy(MapLocalSpace));
Tobias Grosseredab1352013-06-21 06:41:31 +0000765 v = isl_val_int_from_si(Ctx, -1);
766 c = isl_constraint_set_coefficient_val(c, isl_dim_in, lastDimension, v);
767 v = isl_val_int_from_si(Ctx, 1);
768 c = isl_constraint_set_coefficient_val(c, isl_dim_out, lastDimension, v);
769 v = isl_val_int_from_si(Ctx, -1);
770 c = isl_constraint_set_constant_val(c, v);
Tobias Grosser75805372011-04-29 06:27:02 +0000771
Tobias Grosserc327932c2012-02-01 14:23:36 +0000772 Map = isl_map_add_constraint(Map, c);
Tobias Grosser75805372011-04-29 06:27:02 +0000773
Tobias Grosser23b36662011-10-17 08:32:36 +0000774 isl_local_space_free(MapLocalSpace);
Tobias Grosserc327932c2012-02-01 14:23:36 +0000775 return Map;
Tobias Grosser75805372011-04-29 06:27:02 +0000776}
777
Tobias Grosser4f663aa2015-03-30 11:52:59 +0000778__isl_give isl_set *
779MemoryAccess::getStride(__isl_take const isl_map *Schedule) const {
Tobias Grosserabfbe632013-02-05 12:09:06 +0000780 isl_map *S = const_cast<isl_map *>(Schedule);
Johannes Doerferta99130f2014-10-13 12:58:03 +0000781 isl_map *AccessRelation = getAccessRelation();
Sebastian Popa00a0292012-12-18 07:46:06 +0000782 isl_space *Space = isl_space_range(isl_map_get_space(S));
783 isl_map *NextScatt = getEqualAndLarger(Space);
Tobias Grosser75805372011-04-29 06:27:02 +0000784
Sebastian Popa00a0292012-12-18 07:46:06 +0000785 S = isl_map_reverse(S);
786 NextScatt = isl_map_lexmin(NextScatt);
Tobias Grosser75805372011-04-29 06:27:02 +0000787
Sebastian Popa00a0292012-12-18 07:46:06 +0000788 NextScatt = isl_map_apply_range(NextScatt, isl_map_copy(S));
789 NextScatt = isl_map_apply_range(NextScatt, isl_map_copy(AccessRelation));
790 NextScatt = isl_map_apply_domain(NextScatt, S);
791 NextScatt = isl_map_apply_domain(NextScatt, AccessRelation);
Tobias Grosser75805372011-04-29 06:27:02 +0000792
Sebastian Popa00a0292012-12-18 07:46:06 +0000793 isl_set *Deltas = isl_map_deltas(NextScatt);
794 return Deltas;
Tobias Grosser75805372011-04-29 06:27:02 +0000795}
796
Sebastian Popa00a0292012-12-18 07:46:06 +0000797bool MemoryAccess::isStrideX(__isl_take const isl_map *Schedule,
Tobias Grosser28dd4862012-01-24 16:42:16 +0000798 int StrideWidth) const {
799 isl_set *Stride, *StrideX;
800 bool IsStrideX;
Tobias Grosser75805372011-04-29 06:27:02 +0000801
Sebastian Popa00a0292012-12-18 07:46:06 +0000802 Stride = getStride(Schedule);
Tobias Grosser28dd4862012-01-24 16:42:16 +0000803 StrideX = isl_set_universe(isl_set_get_space(Stride));
804 StrideX = isl_set_fix_si(StrideX, isl_dim_set, 0, StrideWidth);
805 IsStrideX = isl_set_is_equal(Stride, StrideX);
Tobias Grosser75805372011-04-29 06:27:02 +0000806
Tobias Grosser28dd4862012-01-24 16:42:16 +0000807 isl_set_free(StrideX);
Tobias Grosserdea98232012-01-17 20:34:27 +0000808 isl_set_free(Stride);
Tobias Grosserb76f38532011-08-20 11:11:25 +0000809
Tobias Grosser28dd4862012-01-24 16:42:16 +0000810 return IsStrideX;
811}
812
Sebastian Popa00a0292012-12-18 07:46:06 +0000813bool MemoryAccess::isStrideZero(const isl_map *Schedule) const {
814 return isStrideX(Schedule, 0);
Tobias Grosser75805372011-04-29 06:27:02 +0000815}
816
Tobias Grosser79baa212014-04-10 08:38:02 +0000817bool MemoryAccess::isScalar() const {
818 return isl_map_n_out(AccessRelation) == 0;
819}
820
Sebastian Popa00a0292012-12-18 07:46:06 +0000821bool MemoryAccess::isStrideOne(const isl_map *Schedule) const {
822 return isStrideX(Schedule, 1);
Tobias Grosser75805372011-04-29 06:27:02 +0000823}
824
Tobias Grosser5d453812011-10-06 00:04:11 +0000825void MemoryAccess::setNewAccessRelation(isl_map *newAccess) {
Tobias Grosserb76f38532011-08-20 11:11:25 +0000826 isl_map_free(newAccessRelation);
Raghesh Aloor7a04f4f2011-08-03 13:47:59 +0000827 newAccessRelation = newAccess;
Raghesh Aloor3cb66282011-07-12 17:14:03 +0000828}
Tobias Grosser75805372011-04-29 06:27:02 +0000829
830//===----------------------------------------------------------------------===//
Tobias Grossercf3942d2011-10-06 00:04:05 +0000831
Tobias Grosser54839312015-04-21 11:37:25 +0000832isl_map *ScopStmt::getSchedule() const { return isl_map_copy(Schedule); }
Tobias Grossercf3942d2011-10-06 00:04:05 +0000833
Tobias Grosser37eb4222014-02-20 21:43:54 +0000834void ScopStmt::restrictDomain(__isl_take isl_set *NewDomain) {
835 assert(isl_set_is_subset(NewDomain, Domain) &&
836 "New domain is not a subset of old domain!");
837 isl_set_free(Domain);
838 Domain = NewDomain;
Tobias Grosser54839312015-04-21 11:37:25 +0000839 Schedule = isl_map_intersect_domain(Schedule, isl_set_copy(Domain));
Tobias Grosser37eb4222014-02-20 21:43:54 +0000840}
841
Tobias Grosser54839312015-04-21 11:37:25 +0000842void ScopStmt::setSchedule(__isl_take isl_map *NewSchedule) {
843 assert(NewSchedule && "New schedule is nullptr");
844 isl_map_free(Schedule);
845 Schedule = NewSchedule;
Tobias Grosserb76f38532011-08-20 11:11:25 +0000846}
847
Tobias Grosser54839312015-04-21 11:37:25 +0000848void ScopStmt::buildSchedule(SmallVectorImpl<unsigned> &ScheduleVec) {
Tobias Grosser78d8a3d2012-01-17 20:34:23 +0000849 unsigned NbIterators = getNumIterators();
Tobias Grosser54839312015-04-21 11:37:25 +0000850 unsigned NbScheduleDims = Parent.getMaxLoopDepth() * 2 + 1;
Tobias Grosser78d8a3d2012-01-17 20:34:23 +0000851
Tobias Grosser54839312015-04-21 11:37:25 +0000852 isl_space *Space = isl_space_set_alloc(getIslCtx(), 0, NbScheduleDims);
Tobias Grosser78d8a3d2012-01-17 20:34:23 +0000853
Tobias Grosser54839312015-04-21 11:37:25 +0000854 Schedule = isl_map_from_domain_and_range(isl_set_universe(getDomainSpace()),
Tobias Grosser654af8f2015-04-21 11:42:01 +0000855 isl_set_universe(Space));
Tobias Grosser75805372011-04-29 06:27:02 +0000856
857 // Loop dimensions.
Tobias Grosser78d8a3d2012-01-17 20:34:23 +0000858 for (unsigned i = 0; i < NbIterators; ++i)
Tobias Grosser654af8f2015-04-21 11:42:01 +0000859 Schedule = isl_map_equate(Schedule, isl_dim_out, 2 * i + 1, isl_dim_in, i);
Tobias Grosser75805372011-04-29 06:27:02 +0000860
861 // Constant dimensions
Tobias Grosser78d8a3d2012-01-17 20:34:23 +0000862 for (unsigned i = 0; i < NbIterators + 1; ++i)
Tobias Grosser54839312015-04-21 11:37:25 +0000863 Schedule = isl_map_fix_si(Schedule, isl_dim_out, 2 * i, ScheduleVec[i]);
Tobias Grosser75805372011-04-29 06:27:02 +0000864
Tobias Grosser54839312015-04-21 11:37:25 +0000865 // Fill schedule dimensions.
866 for (unsigned i = 2 * NbIterators + 1; i < NbScheduleDims; ++i)
867 Schedule = isl_map_fix_si(Schedule, isl_dim_out, i, 0);
Tobias Grosser75805372011-04-29 06:27:02 +0000868
Tobias Grosser54839312015-04-21 11:37:25 +0000869 Schedule = isl_map_align_params(Schedule, Parent.getParamSpace());
Tobias Grosser75805372011-04-29 06:27:02 +0000870}
871
Johannes Doerfertff9d1982015-02-24 12:00:50 +0000872void ScopStmt::buildAccesses(TempScop &tempScop, BasicBlock *Block,
873 bool isApproximated) {
874 AccFuncSetType *AFS = tempScop.getAccessFunctions(Block);
875 if (!AFS)
876 return;
877
Tobias Grosser6f48e0f2015-05-15 09:58:32 +0000878 int Identifier = 0;
879
Johannes Doerfertff9d1982015-02-24 12:00:50 +0000880 for (auto &AccessPair : *AFS) {
881 IRAccess &Access = AccessPair.first;
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000882 Instruction *AccessInst = AccessPair.second;
883
Johannes Doerfert80ef1102014-11-07 08:31:31 +0000884 Type *AccessType = getAccessInstType(AccessInst)->getPointerTo();
885 const ScopArrayInfo *SAI = getParent()->getOrCreateScopArrayInfo(
886 Access.getBase(), AccessType, Access.Sizes);
887
Johannes Doerfertff9d1982015-02-24 12:00:50 +0000888 if (isApproximated && Access.isWrite())
889 Access.setMayWrite();
890
Tobias Grosser6f48e0f2015-05-15 09:58:32 +0000891 MemAccs.push_back(
892 new MemoryAccess(Access, AccessInst, this, SAI, Identifier));
893 Identifier++;
Tobias Grosserd6aafa72014-02-20 21:29:09 +0000894
895 // We do not track locations for scalar memory accesses at the moment.
896 //
897 // We do not have a use for this information at the moment. If we need this
898 // at some point, the "instruction -> access" mapping needs to be enhanced
899 // as a single instruction could then possibly perform multiple accesses.
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000900 if (!Access.isScalar()) {
901 assert(!InstructionToAccess.count(AccessInst) &&
Tobias Grosser3fc91542014-02-20 21:43:45 +0000902 "Unexpected 1-to-N mapping on instruction to access map!");
Johannes Doerfert1a28a892014-10-05 11:32:18 +0000903 InstructionToAccess[AccessInst] = MemAccs.back();
Tobias Grosserd6aafa72014-02-20 21:29:09 +0000904 }
Tobias Grosser75805372011-04-29 06:27:02 +0000905 }
906}
907
Tobias Grosser8cae72f2011-11-08 15:41:08 +0000908void ScopStmt::realignParams() {
Johannes Doerfertf6752892014-06-13 18:01:45 +0000909 for (MemoryAccess *MA : *this)
910 MA->realignParams();
Tobias Grosser8cae72f2011-11-08 15:41:08 +0000911
912 Domain = isl_set_align_params(Domain, Parent.getParamSpace());
Tobias Grosser54839312015-04-21 11:37:25 +0000913 Schedule = isl_map_align_params(Schedule, Parent.getParamSpace());
Tobias Grosser8cae72f2011-11-08 15:41:08 +0000914}
915
Tobias Grosser65b00582011-11-08 15:41:19 +0000916__isl_give isl_set *ScopStmt::buildConditionSet(const Comparison &Comp) {
Tobias Grossera601fbd2011-11-09 22:34:44 +0000917 isl_pw_aff *L = SCEVAffinator::getPwAff(this, Comp.getLHS());
918 isl_pw_aff *R = SCEVAffinator::getPwAff(this, Comp.getRHS());
Tobias Grosser75805372011-04-29 06:27:02 +0000919
Tobias Grosserd2795d02011-08-18 07:51:40 +0000920 switch (Comp.getPred()) {
Tobias Grosser75805372011-04-29 06:27:02 +0000921 case ICmpInst::ICMP_EQ:
Tobias Grosser048c8792011-10-23 20:59:20 +0000922 return isl_pw_aff_eq_set(L, R);
Tobias Grosser75805372011-04-29 06:27:02 +0000923 case ICmpInst::ICMP_NE:
Tobias Grosser048c8792011-10-23 20:59:20 +0000924 return isl_pw_aff_ne_set(L, R);
Tobias Grosser75805372011-04-29 06:27:02 +0000925 case ICmpInst::ICMP_SLT:
Tobias Grosser048c8792011-10-23 20:59:20 +0000926 return isl_pw_aff_lt_set(L, R);
Tobias Grosser75805372011-04-29 06:27:02 +0000927 case ICmpInst::ICMP_SLE:
Tobias Grosser048c8792011-10-23 20:59:20 +0000928 return isl_pw_aff_le_set(L, R);
Tobias Grosserd2795d02011-08-18 07:51:40 +0000929 case ICmpInst::ICMP_SGT:
Tobias Grosser048c8792011-10-23 20:59:20 +0000930 return isl_pw_aff_gt_set(L, R);
Tobias Grosser75805372011-04-29 06:27:02 +0000931 case ICmpInst::ICMP_SGE:
Tobias Grosser048c8792011-10-23 20:59:20 +0000932 return isl_pw_aff_ge_set(L, R);
Tobias Grosserd2795d02011-08-18 07:51:40 +0000933 case ICmpInst::ICMP_ULT:
Tobias Grosserbfbc3692015-01-09 00:01:33 +0000934 return isl_pw_aff_lt_set(L, R);
Tobias Grosserd2795d02011-08-18 07:51:40 +0000935 case ICmpInst::ICMP_UGT:
Tobias Grosserbfbc3692015-01-09 00:01:33 +0000936 return isl_pw_aff_gt_set(L, R);
Tobias Grosserd2795d02011-08-18 07:51:40 +0000937 case ICmpInst::ICMP_ULE:
Tobias Grosserbfbc3692015-01-09 00:01:33 +0000938 return isl_pw_aff_le_set(L, R);
Tobias Grosser75805372011-04-29 06:27:02 +0000939 case ICmpInst::ICMP_UGE:
Tobias Grosserbfbc3692015-01-09 00:01:33 +0000940 return isl_pw_aff_ge_set(L, R);
Tobias Grosser75805372011-04-29 06:27:02 +0000941 default:
942 llvm_unreachable("Non integer predicate not supported");
943 }
Tobias Grosser75805372011-04-29 06:27:02 +0000944}
945
Tobias Grossere19661e2011-10-07 08:46:57 +0000946__isl_give isl_set *ScopStmt::addLoopBoundsToDomain(__isl_take isl_set *Domain,
Tobias Grosser60b54f12011-11-08 15:41:28 +0000947 TempScop &tempScop) {
Tobias Grossere19661e2011-10-07 08:46:57 +0000948 isl_space *Space;
949 isl_local_space *LocalSpace;
Tobias Grosser75805372011-04-29 06:27:02 +0000950
Tobias Grossere19661e2011-10-07 08:46:57 +0000951 Space = isl_set_get_space(Domain);
952 LocalSpace = isl_local_space_from_space(Space);
Tobias Grosserf5338802011-10-06 00:03:35 +0000953
Johannes Doerfert5ad8a6a2014-11-01 01:14:56 +0000954 ScalarEvolution *SE = getParent()->getSE();
Tobias Grosser75805372011-04-29 06:27:02 +0000955 for (int i = 0, e = getNumIterators(); i != e; ++i) {
Tobias Grosser9b13d3d2011-10-06 22:32:58 +0000956 isl_aff *Zero = isl_aff_zero_on_domain(isl_local_space_copy(LocalSpace));
Tobias Grosserabfbe632013-02-05 12:09:06 +0000957 isl_pw_aff *IV =
958 isl_pw_aff_from_aff(isl_aff_set_coefficient_si(Zero, isl_dim_in, i, 1));
Tobias Grosser75805372011-04-29 06:27:02 +0000959
Tobias Grosser9b13d3d2011-10-06 22:32:58 +0000960 // 0 <= IV.
961 isl_set *LowerBound = isl_pw_aff_nonneg_set(isl_pw_aff_copy(IV));
962 Domain = isl_set_intersect(Domain, LowerBound);
963
964 // IV <= LatchExecutions.
Hongbin Zheng27f3afb2011-04-30 03:26:51 +0000965 const Loop *L = getLoopForDimension(i);
Johannes Doerfert5ad8a6a2014-11-01 01:14:56 +0000966 const SCEV *LatchExecutions = SE->getBackedgeTakenCount(L);
Tobias Grosser9b13d3d2011-10-06 22:32:58 +0000967 isl_pw_aff *UpperBound = SCEVAffinator::getPwAff(this, LatchExecutions);
968 isl_set *UpperBoundSet = isl_pw_aff_le_set(IV, UpperBound);
Tobias Grosser75805372011-04-29 06:27:02 +0000969 Domain = isl_set_intersect(Domain, UpperBoundSet);
970 }
971
Tobias Grosserf5338802011-10-06 00:03:35 +0000972 isl_local_space_free(LocalSpace);
Tobias Grossere19661e2011-10-07 08:46:57 +0000973 return Domain;
Tobias Grosser75805372011-04-29 06:27:02 +0000974}
975
Tobias Grossere602a072013-05-07 07:30:56 +0000976__isl_give isl_set *ScopStmt::addConditionsToDomain(__isl_take isl_set *Domain,
977 TempScop &tempScop,
978 const Region &CurRegion) {
Tobias Grossere19661e2011-10-07 08:46:57 +0000979 const Region *TopRegion = tempScop.getMaxRegion().getParent(),
Tobias Grosserd7e58642013-04-10 06:55:45 +0000980 *CurrentRegion = &CurRegion;
Johannes Doerfertff9d1982015-02-24 12:00:50 +0000981 const BasicBlock *BranchingBB = BB ? BB : R->getEntry();
Tobias Grosser75805372011-04-29 06:27:02 +0000982
Tobias Grosser75805372011-04-29 06:27:02 +0000983 do {
Tobias Grossere19661e2011-10-07 08:46:57 +0000984 if (BranchingBB != CurrentRegion->getEntry()) {
985 if (const BBCond *Condition = tempScop.getBBCond(BranchingBB))
Tobias Grosser083d3d32014-06-28 08:59:45 +0000986 for (const auto &C : *Condition) {
987 isl_set *ConditionSet = buildConditionSet(C);
Tobias Grossere19661e2011-10-07 08:46:57 +0000988 Domain = isl_set_intersect(Domain, ConditionSet);
Tobias Grosser75805372011-04-29 06:27:02 +0000989 }
990 }
Tobias Grossere19661e2011-10-07 08:46:57 +0000991 BranchingBB = CurrentRegion->getEntry();
992 CurrentRegion = CurrentRegion->getParent();
993 } while (TopRegion != CurrentRegion);
Tobias Grosser75805372011-04-29 06:27:02 +0000994
Tobias Grossere19661e2011-10-07 08:46:57 +0000995 return Domain;
Tobias Grosser75805372011-04-29 06:27:02 +0000996}
997
Tobias Grossere602a072013-05-07 07:30:56 +0000998__isl_give isl_set *ScopStmt::buildDomain(TempScop &tempScop,
999 const Region &CurRegion) {
Tobias Grossere19661e2011-10-07 08:46:57 +00001000 isl_space *Space;
1001 isl_set *Domain;
Tobias Grosser084d8f72012-05-29 09:29:44 +00001002 isl_id *Id;
Tobias Grossere19661e2011-10-07 08:46:57 +00001003
1004 Space = isl_space_set_alloc(getIslCtx(), 0, getNumIterators());
1005
Tobias Grosser084d8f72012-05-29 09:29:44 +00001006 Id = isl_id_alloc(getIslCtx(), getBaseName(), this);
1007
Tobias Grossere19661e2011-10-07 08:46:57 +00001008 Domain = isl_set_universe(Space);
Tobias Grossere19661e2011-10-07 08:46:57 +00001009 Domain = addLoopBoundsToDomain(Domain, tempScop);
1010 Domain = addConditionsToDomain(Domain, tempScop, CurRegion);
Tobias Grosser084d8f72012-05-29 09:29:44 +00001011 Domain = isl_set_set_tuple_id(Domain, Id);
Tobias Grossere19661e2011-10-07 08:46:57 +00001012
1013 return Domain;
Tobias Grosser75805372011-04-29 06:27:02 +00001014}
1015
Tobias Grosser7b50bee2014-11-25 10:51:12 +00001016void ScopStmt::deriveAssumptionsFromGEP(GetElementPtrInst *GEP) {
1017 int Dimension = 0;
1018 isl_ctx *Ctx = Parent.getIslCtx();
1019 isl_local_space *LSpace = isl_local_space_from_space(getDomainSpace());
1020 Type *Ty = GEP->getPointerOperandType();
1021 ScalarEvolution &SE = *Parent.getSE();
1022
1023 if (auto *PtrTy = dyn_cast<PointerType>(Ty)) {
1024 Dimension = 1;
1025 Ty = PtrTy->getElementType();
1026 }
1027
1028 while (auto ArrayTy = dyn_cast<ArrayType>(Ty)) {
1029 unsigned int Operand = 1 + Dimension;
1030
1031 if (GEP->getNumOperands() <= Operand)
1032 break;
1033
1034 const SCEV *Expr = SE.getSCEV(GEP->getOperand(Operand));
1035
1036 if (isAffineExpr(&Parent.getRegion(), Expr, SE)) {
1037 isl_pw_aff *AccessOffset = SCEVAffinator::getPwAff(this, Expr);
1038 AccessOffset =
1039 isl_pw_aff_set_tuple_id(AccessOffset, isl_dim_in, getDomainId());
1040
1041 isl_pw_aff *DimSize = isl_pw_aff_from_aff(isl_aff_val_on_domain(
1042 isl_local_space_copy(LSpace),
1043 isl_val_int_from_si(Ctx, ArrayTy->getNumElements())));
1044
1045 isl_set *OutOfBound = isl_pw_aff_ge_set(AccessOffset, DimSize);
1046 OutOfBound = isl_set_intersect(getDomain(), OutOfBound);
1047 OutOfBound = isl_set_params(OutOfBound);
1048 isl_set *InBound = isl_set_complement(OutOfBound);
1049 isl_set *Executed = isl_set_params(getDomain());
1050
1051 // A => B == !A or B
1052 isl_set *InBoundIfExecuted =
1053 isl_set_union(isl_set_complement(Executed), InBound);
1054
1055 Parent.addAssumption(InBoundIfExecuted);
1056 }
1057
1058 Dimension += 1;
1059 Ty = ArrayTy->getElementType();
1060 }
1061
1062 isl_local_space_free(LSpace);
1063}
1064
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001065void ScopStmt::deriveAssumptions(BasicBlock *Block) {
1066 for (Instruction &Inst : *Block)
Tobias Grosser7b50bee2014-11-25 10:51:12 +00001067 if (auto *GEP = dyn_cast<GetElementPtrInst>(&Inst))
1068 deriveAssumptionsFromGEP(GEP);
1069}
1070
Tobias Grosser74394f02013-01-14 22:40:23 +00001071ScopStmt::ScopStmt(Scop &parent, TempScop &tempScop, const Region &CurRegion,
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001072 Region &R, SmallVectorImpl<Loop *> &Nest,
Tobias Grosser54839312015-04-21 11:37:25 +00001073 SmallVectorImpl<unsigned> &ScheduleVec)
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001074 : Parent(parent), BB(nullptr), R(&R), Build(nullptr),
1075 NestLoops(Nest.size()) {
1076 // Setup the induction variables.
1077 for (unsigned i = 0, e = Nest.size(); i < e; ++i)
1078 NestLoops[i] = Nest[i];
1079
1080 BaseName = getIslCompatibleName("Stmt_(", R.getNameStr(), ")");
1081
1082 Domain = buildDomain(tempScop, CurRegion);
Tobias Grosser54839312015-04-21 11:37:25 +00001083 buildSchedule(ScheduleVec);
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001084
1085 BasicBlock *EntryBB = R.getEntry();
1086 for (BasicBlock *Block : R.blocks()) {
1087 buildAccesses(tempScop, Block, Block != EntryBB);
1088 deriveAssumptions(Block);
1089 }
1090 checkForReductions();
1091}
1092
1093ScopStmt::ScopStmt(Scop &parent, TempScop &tempScop, const Region &CurRegion,
Sebastian Pop860e0212013-02-15 21:26:44 +00001094 BasicBlock &bb, SmallVectorImpl<Loop *> &Nest,
Tobias Grosser54839312015-04-21 11:37:25 +00001095 SmallVectorImpl<unsigned> &ScheduleVec)
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001096 : Parent(parent), BB(&bb), R(nullptr), Build(nullptr),
1097 NestLoops(Nest.size()) {
Tobias Grosser75805372011-04-29 06:27:02 +00001098 // Setup the induction variables.
Tobias Grosser683b8e42014-11-30 14:33:31 +00001099 for (unsigned i = 0, e = Nest.size(); i < e; ++i)
Sebastian Pop860e0212013-02-15 21:26:44 +00001100 NestLoops[i] = Nest[i];
Tobias Grosser75805372011-04-29 06:27:02 +00001101
Johannes Doerfert79fc23f2014-07-24 23:48:02 +00001102 BaseName = getIslCompatibleName("Stmt_", &bb, "");
Tobias Grosser75805372011-04-29 06:27:02 +00001103
Tobias Grossere19661e2011-10-07 08:46:57 +00001104 Domain = buildDomain(tempScop, CurRegion);
Tobias Grosser54839312015-04-21 11:37:25 +00001105 buildSchedule(ScheduleVec);
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001106 buildAccesses(tempScop, BB);
1107 deriveAssumptions(BB);
Johannes Doerferte58a0122014-06-27 20:31:28 +00001108 checkForReductions();
Johannes Doerfert0ee1f212014-06-17 17:31:36 +00001109}
1110
Johannes Doerferte58a0122014-06-27 20:31:28 +00001111/// @brief Collect loads which might form a reduction chain with @p StoreMA
1112///
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001113/// Check if the stored value for @p StoreMA is a binary operator with one or
1114/// two loads as operands. If the binary operand is commutative & associative,
Johannes Doerferte58a0122014-06-27 20:31:28 +00001115/// used only once (by @p StoreMA) and its load operands are also used only
1116/// once, we have found a possible reduction chain. It starts at an operand
1117/// load and includes the binary operator and @p StoreMA.
1118///
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001119/// Note: We allow only one use to ensure the load and binary operator cannot
Johannes Doerferte58a0122014-06-27 20:31:28 +00001120/// escape this block or into any other store except @p StoreMA.
1121void ScopStmt::collectCandiateReductionLoads(
1122 MemoryAccess *StoreMA, SmallVectorImpl<MemoryAccess *> &Loads) {
1123 auto *Store = dyn_cast<StoreInst>(StoreMA->getAccessInstruction());
1124 if (!Store)
Johannes Doerfert0ee1f212014-06-17 17:31:36 +00001125 return;
1126
1127 // Skip if there is not one binary operator between the load and the store
1128 auto *BinOp = dyn_cast<BinaryOperator>(Store->getValueOperand());
Johannes Doerferte58a0122014-06-27 20:31:28 +00001129 if (!BinOp)
1130 return;
1131
1132 // Skip if the binary operators has multiple uses
1133 if (BinOp->getNumUses() != 1)
Johannes Doerfert0ee1f212014-06-17 17:31:36 +00001134 return;
1135
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001136 // Skip if the opcode of the binary operator is not commutative/associative
Johannes Doerfert0ee1f212014-06-17 17:31:36 +00001137 if (!BinOp->isCommutative() || !BinOp->isAssociative())
1138 return;
1139
Johannes Doerfert9890a052014-07-01 00:32:29 +00001140 // Skip if the binary operator is outside the current SCoP
1141 if (BinOp->getParent() != Store->getParent())
1142 return;
1143
Johannes Doerfert0ee1f212014-06-17 17:31:36 +00001144 // Skip if it is a multiplicative reduction and we disabled them
1145 if (DisableMultiplicativeReductions &&
1146 (BinOp->getOpcode() == Instruction::Mul ||
1147 BinOp->getOpcode() == Instruction::FMul))
1148 return;
1149
Johannes Doerferte58a0122014-06-27 20:31:28 +00001150 // Check the binary operator operands for a candidate load
1151 auto *PossibleLoad0 = dyn_cast<LoadInst>(BinOp->getOperand(0));
1152 auto *PossibleLoad1 = dyn_cast<LoadInst>(BinOp->getOperand(1));
1153 if (!PossibleLoad0 && !PossibleLoad1)
1154 return;
1155
1156 // A load is only a candidate if it cannot escape (thus has only this use)
1157 if (PossibleLoad0 && PossibleLoad0->getNumUses() == 1)
Johannes Doerfert9890a052014-07-01 00:32:29 +00001158 if (PossibleLoad0->getParent() == Store->getParent())
1159 Loads.push_back(lookupAccessFor(PossibleLoad0));
Johannes Doerferte58a0122014-06-27 20:31:28 +00001160 if (PossibleLoad1 && PossibleLoad1->getNumUses() == 1)
Johannes Doerfert9890a052014-07-01 00:32:29 +00001161 if (PossibleLoad1->getParent() == Store->getParent())
1162 Loads.push_back(lookupAccessFor(PossibleLoad1));
Johannes Doerferte58a0122014-06-27 20:31:28 +00001163}
1164
1165/// @brief Check for reductions in this ScopStmt
1166///
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001167/// Iterate over all store memory accesses and check for valid binary reduction
1168/// like chains. For all candidates we check if they have the same base address
1169/// and there are no other accesses which overlap with them. The base address
1170/// check rules out impossible reductions candidates early. The overlap check,
1171/// together with the "only one user" check in collectCandiateReductionLoads,
Johannes Doerferte58a0122014-06-27 20:31:28 +00001172/// guarantees that none of the intermediate results will escape during
1173/// execution of the loop nest. We basically check here that no other memory
1174/// access can access the same memory as the potential reduction.
1175void ScopStmt::checkForReductions() {
1176 SmallVector<MemoryAccess *, 2> Loads;
1177 SmallVector<std::pair<MemoryAccess *, MemoryAccess *>, 4> Candidates;
1178
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001179 // First collect candidate load-store reduction chains by iterating over all
Johannes Doerferte58a0122014-06-27 20:31:28 +00001180 // stores and collecting possible reduction loads.
1181 for (MemoryAccess *StoreMA : MemAccs) {
1182 if (StoreMA->isRead())
1183 continue;
1184
1185 Loads.clear();
1186 collectCandiateReductionLoads(StoreMA, Loads);
1187 for (MemoryAccess *LoadMA : Loads)
1188 Candidates.push_back(std::make_pair(LoadMA, StoreMA));
1189 }
1190
1191 // Then check each possible candidate pair.
1192 for (const auto &CandidatePair : Candidates) {
1193 bool Valid = true;
1194 isl_map *LoadAccs = CandidatePair.first->getAccessRelation();
1195 isl_map *StoreAccs = CandidatePair.second->getAccessRelation();
1196
1197 // Skip those with obviously unequal base addresses.
1198 if (!isl_map_has_equal_space(LoadAccs, StoreAccs)) {
1199 isl_map_free(LoadAccs);
1200 isl_map_free(StoreAccs);
1201 continue;
1202 }
1203
1204 // And check if the remaining for overlap with other memory accesses.
1205 isl_map *AllAccsRel = isl_map_union(LoadAccs, StoreAccs);
1206 AllAccsRel = isl_map_intersect_domain(AllAccsRel, getDomain());
1207 isl_set *AllAccs = isl_map_range(AllAccsRel);
1208
1209 for (MemoryAccess *MA : MemAccs) {
1210 if (MA == CandidatePair.first || MA == CandidatePair.second)
1211 continue;
1212
1213 isl_map *AccRel =
1214 isl_map_intersect_domain(MA->getAccessRelation(), getDomain());
1215 isl_set *Accs = isl_map_range(AccRel);
1216
1217 if (isl_set_has_equal_space(AllAccs, Accs) || isl_set_free(Accs)) {
1218 isl_set *OverlapAccs = isl_set_intersect(Accs, isl_set_copy(AllAccs));
1219 Valid = Valid && isl_set_is_empty(OverlapAccs);
1220 isl_set_free(OverlapAccs);
1221 }
1222 }
1223
1224 isl_set_free(AllAccs);
1225 if (!Valid)
1226 continue;
1227
Johannes Doerfertf6183392014-07-01 20:52:51 +00001228 const LoadInst *Load =
1229 dyn_cast<const LoadInst>(CandidatePair.first->getAccessInstruction());
1230 MemoryAccess::ReductionType RT =
1231 getReductionType(dyn_cast<BinaryOperator>(Load->user_back()), Load);
1232
Johannes Doerferte58a0122014-06-27 20:31:28 +00001233 // If no overlapping access was found we mark the load and store as
1234 // reduction like.
Johannes Doerfertf6183392014-07-01 20:52:51 +00001235 CandidatePair.first->markAsReductionLike(RT);
1236 CandidatePair.second->markAsReductionLike(RT);
Johannes Doerferte58a0122014-06-27 20:31:28 +00001237 }
Tobias Grosser75805372011-04-29 06:27:02 +00001238}
1239
Tobias Grosser74394f02013-01-14 22:40:23 +00001240std::string ScopStmt::getDomainStr() const { return stringFromIslObj(Domain); }
Tobias Grosser75805372011-04-29 06:27:02 +00001241
Tobias Grosser54839312015-04-21 11:37:25 +00001242std::string ScopStmt::getScheduleStr() const {
1243 return stringFromIslObj(Schedule);
Tobias Grosser75805372011-04-29 06:27:02 +00001244}
1245
Tobias Grosser74394f02013-01-14 22:40:23 +00001246unsigned ScopStmt::getNumParams() const { return Parent.getNumParams(); }
Tobias Grosser75805372011-04-29 06:27:02 +00001247
Tobias Grosserf567e1a2015-02-19 22:16:12 +00001248unsigned ScopStmt::getNumIterators() const { return NestLoops.size(); }
Tobias Grosser75805372011-04-29 06:27:02 +00001249
Tobias Grosser54839312015-04-21 11:37:25 +00001250unsigned ScopStmt::getNumSchedule() const {
1251 return isl_map_dim(Schedule, isl_dim_out);
Tobias Grosser75805372011-04-29 06:27:02 +00001252}
1253
1254const char *ScopStmt::getBaseName() const { return BaseName.c_str(); }
1255
Hongbin Zheng27f3afb2011-04-30 03:26:51 +00001256const Loop *ScopStmt::getLoopForDimension(unsigned Dimension) const {
Sebastian Pop860e0212013-02-15 21:26:44 +00001257 return NestLoops[Dimension];
Tobias Grosser75805372011-04-29 06:27:02 +00001258}
1259
Tobias Grosser74394f02013-01-14 22:40:23 +00001260isl_ctx *ScopStmt::getIslCtx() const { return Parent.getIslCtx(); }
Tobias Grosser75805372011-04-29 06:27:02 +00001261
Tobias Grosser4f663aa2015-03-30 11:52:59 +00001262__isl_give isl_set *ScopStmt::getDomain() const { return isl_set_copy(Domain); }
Tobias Grosserd5a7bfc2011-05-06 19:52:19 +00001263
Tobias Grosser6e6c7e02015-03-30 12:22:39 +00001264__isl_give isl_space *ScopStmt::getDomainSpace() const {
Tobias Grosser78d8a3d2012-01-17 20:34:23 +00001265 return isl_set_get_space(Domain);
1266}
1267
Tobias Grosser4f663aa2015-03-30 11:52:59 +00001268__isl_give isl_id *ScopStmt::getDomainId() const {
1269 return isl_set_get_tuple_id(Domain);
1270}
Tobias Grossercd95b772012-08-30 11:49:38 +00001271
Tobias Grosser75805372011-04-29 06:27:02 +00001272ScopStmt::~ScopStmt() {
1273 while (!MemAccs.empty()) {
1274 delete MemAccs.back();
1275 MemAccs.pop_back();
1276 }
1277
1278 isl_set_free(Domain);
Tobias Grosser54839312015-04-21 11:37:25 +00001279 isl_map_free(Schedule);
Tobias Grosser75805372011-04-29 06:27:02 +00001280}
1281
1282void ScopStmt::print(raw_ostream &OS) const {
1283 OS << "\t" << getBaseName() << "\n";
Tobias Grosser75805372011-04-29 06:27:02 +00001284 OS.indent(12) << "Domain :=\n";
1285
1286 if (Domain) {
1287 OS.indent(16) << getDomainStr() << ";\n";
1288 } else
1289 OS.indent(16) << "n/a\n";
1290
Tobias Grosser54839312015-04-21 11:37:25 +00001291 OS.indent(12) << "Schedule :=\n";
Tobias Grosser75805372011-04-29 06:27:02 +00001292
1293 if (Domain) {
Tobias Grosser54839312015-04-21 11:37:25 +00001294 OS.indent(16) << getScheduleStr() << ";\n";
Tobias Grosser75805372011-04-29 06:27:02 +00001295 } else
1296 OS.indent(16) << "n/a\n";
1297
Tobias Grosser083d3d32014-06-28 08:59:45 +00001298 for (MemoryAccess *Access : MemAccs)
1299 Access->print(OS);
Tobias Grosser75805372011-04-29 06:27:02 +00001300}
1301
1302void ScopStmt::dump() const { print(dbgs()); }
1303
1304//===----------------------------------------------------------------------===//
1305/// Scop class implement
Tobias Grosser60b54f12011-11-08 15:41:28 +00001306
Tobias Grosser7ffe4e82011-11-17 12:56:10 +00001307void Scop::setContext(__isl_take isl_set *NewContext) {
Tobias Grosserff9b54d2011-11-15 11:38:44 +00001308 NewContext = isl_set_align_params(NewContext, isl_set_get_space(Context));
1309 isl_set_free(Context);
1310 Context = NewContext;
1311}
1312
Tobias Grosserabfbe632013-02-05 12:09:06 +00001313void Scop::addParams(std::vector<const SCEV *> NewParameters) {
Tobias Grosser083d3d32014-06-28 08:59:45 +00001314 for (const SCEV *Parameter : NewParameters) {
Johannes Doerfertbe409962015-03-29 20:45:09 +00001315 Parameter = extractConstantFactor(Parameter, *SE).second;
Tobias Grosser60b54f12011-11-08 15:41:28 +00001316 if (ParameterIds.find(Parameter) != ParameterIds.end())
1317 continue;
1318
1319 int dimension = Parameters.size();
1320
1321 Parameters.push_back(Parameter);
1322 ParameterIds[Parameter] = dimension;
1323 }
1324}
1325
Tobias Grosser9a38ab82011-11-08 15:41:03 +00001326__isl_give isl_id *Scop::getIdForParam(const SCEV *Parameter) const {
1327 ParamIdType::const_iterator IdIter = ParameterIds.find(Parameter);
Tobias Grosser76c2e322011-11-07 12:58:59 +00001328
Tobias Grosser9a38ab82011-11-08 15:41:03 +00001329 if (IdIter == ParameterIds.end())
Tobias Grosser5a56cbf2014-04-16 07:33:47 +00001330 return nullptr;
Tobias Grosser76c2e322011-11-07 12:58:59 +00001331
Tobias Grosser8f99c162011-11-15 11:38:55 +00001332 std::string ParameterName;
1333
1334 if (const SCEVUnknown *ValueParameter = dyn_cast<SCEVUnknown>(Parameter)) {
1335 Value *Val = ValueParameter->getValue();
Tobias Grosser29ee0b12011-11-17 14:52:36 +00001336 ParameterName = Val->getName();
Tobias Grosser8f99c162011-11-15 11:38:55 +00001337 }
1338
1339 if (ParameterName == "" || ParameterName.substr(0, 2) == "p_")
Hongbin Zheng86a37742012-04-25 08:01:38 +00001340 ParameterName = "p_" + utostr_32(IdIter->second);
Tobias Grosser8f99c162011-11-15 11:38:55 +00001341
Tobias Grosser20532b82014-04-11 17:56:49 +00001342 return isl_id_alloc(getIslCtx(), ParameterName.c_str(),
1343 const_cast<void *>((const void *)Parameter));
Tobias Grosser76c2e322011-11-07 12:58:59 +00001344}
Tobias Grosser75805372011-04-29 06:27:02 +00001345
Tobias Grosser6be480c2011-11-08 15:41:13 +00001346void Scop::buildContext() {
1347 isl_space *Space = isl_space_params_alloc(IslCtx, 0);
Tobias Grossere86109f2013-10-29 21:05:49 +00001348 Context = isl_set_universe(isl_space_copy(Space));
1349 AssumedContext = isl_set_universe(Space);
Tobias Grosser0e27e242011-10-06 00:03:48 +00001350}
1351
Tobias Grosser18daaca2012-05-22 10:47:27 +00001352void Scop::addParameterBounds() {
Johannes Doerfert4f8ac3d2015-02-23 16:15:51 +00001353 for (const auto &ParamID : ParameterIds) {
Johannes Doerfert4f8ac3d2015-02-23 16:15:51 +00001354 int dim = ParamID.second;
Tobias Grosser18daaca2012-05-22 10:47:27 +00001355
Johannes Doerfert4f8ac3d2015-02-23 16:15:51 +00001356 ConstantRange SRange = SE->getSignedRange(ParamID.first);
Tobias Grosser18daaca2012-05-22 10:47:27 +00001357
Johannes Doerferte7044942015-02-24 11:58:30 +00001358 Context = addRangeBoundsToSet(Context, SRange, dim, isl_dim_param);
Tobias Grosser18daaca2012-05-22 10:47:27 +00001359 }
1360}
1361
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001362void Scop::realignParams() {
Tobias Grosser6be480c2011-11-08 15:41:13 +00001363 // Add all parameters into a common model.
Tobias Grosser60b54f12011-11-08 15:41:28 +00001364 isl_space *Space = isl_space_params_alloc(IslCtx, ParameterIds.size());
Tobias Grosser6be480c2011-11-08 15:41:13 +00001365
Tobias Grosser083d3d32014-06-28 08:59:45 +00001366 for (const auto &ParamID : ParameterIds) {
1367 const SCEV *Parameter = ParamID.first;
Tobias Grosser6be480c2011-11-08 15:41:13 +00001368 isl_id *id = getIdForParam(Parameter);
Tobias Grosser083d3d32014-06-28 08:59:45 +00001369 Space = isl_space_set_dim_id(Space, isl_dim_param, ParamID.second, id);
Tobias Grosser6be480c2011-11-08 15:41:13 +00001370 }
1371
1372 // Align the parameters of all data structures to the model.
1373 Context = isl_set_align_params(Context, Space);
1374
Tobias Grosser083d3d32014-06-28 08:59:45 +00001375 for (ScopStmt *Stmt : *this)
1376 Stmt->realignParams();
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001377}
1378
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001379void Scop::simplifyAssumedContext() {
1380 // The parameter constraints of the iteration domains give us a set of
1381 // constraints that need to hold for all cases where at least a single
1382 // statement iteration is executed in the whole scop. We now simplify the
1383 // assumed context under the assumption that such constraints hold and at
1384 // least a single statement iteration is executed. For cases where no
1385 // statement instances are executed, the assumptions we have taken about
1386 // the executed code do not matter and can be changed.
1387 //
1388 // WARNING: This only holds if the assumptions we have taken do not reduce
1389 // the set of statement instances that are executed. Otherwise we
1390 // may run into a case where the iteration domains suggest that
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001391 // for a certain set of parameter constraints no code is executed,
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001392 // but in the original program some computation would have been
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001393 // performed. In such a case, modifying the run-time conditions and
1394 // possibly influencing the run-time check may cause certain scops
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001395 // to not be executed.
1396 //
1397 // Example:
1398 //
1399 // When delinearizing the following code:
1400 //
1401 // for (long i = 0; i < 100; i++)
1402 // for (long j = 0; j < m; j++)
1403 // A[i+p][j] = 1.0;
1404 //
1405 // we assume that the condition m <= 0 or (m >= 1 and p >= 0) holds as
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001406 // otherwise we would access out of bound data. Now, knowing that code is
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001407 // only executed for the case m >= 0, it is sufficient to assume p >= 0.
1408 AssumedContext =
1409 isl_set_gist_params(AssumedContext, isl_union_set_params(getDomains()));
Johannes Doerfert4f8ac3d2015-02-23 16:15:51 +00001410 AssumedContext = isl_set_gist_params(AssumedContext, getContext());
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001411}
1412
Johannes Doerfertb164c792014-09-18 11:17:17 +00001413/// @brief Add the minimal/maximal access in @p Set to @p User.
1414static int buildMinMaxAccess(__isl_take isl_set *Set, void *User) {
1415 Scop::MinMaxVectorTy *MinMaxAccesses = (Scop::MinMaxVectorTy *)User;
1416 isl_pw_multi_aff *MinPMA, *MaxPMA;
1417 isl_pw_aff *LastDimAff;
1418 isl_aff *OneAff;
1419 unsigned Pos;
1420
Johannes Doerfert9143d672014-09-27 11:02:39 +00001421 // Restrict the number of parameters involved in the access as the lexmin/
1422 // lexmax computation will take too long if this number is high.
1423 //
1424 // Experiments with a simple test case using an i7 4800MQ:
1425 //
1426 // #Parameters involved | Time (in sec)
1427 // 6 | 0.01
1428 // 7 | 0.04
1429 // 8 | 0.12
1430 // 9 | 0.40
1431 // 10 | 1.54
1432 // 11 | 6.78
1433 // 12 | 30.38
1434 //
1435 if (isl_set_n_param(Set) > RunTimeChecksMaxParameters) {
1436 unsigned InvolvedParams = 0;
1437 for (unsigned u = 0, e = isl_set_n_param(Set); u < e; u++)
1438 if (isl_set_involves_dims(Set, isl_dim_param, u, 1))
1439 InvolvedParams++;
1440
1441 if (InvolvedParams > RunTimeChecksMaxParameters) {
1442 isl_set_free(Set);
1443 return -1;
1444 }
1445 }
1446
Johannes Doerfertb6755bb2015-02-14 12:00:06 +00001447 Set = isl_set_remove_divs(Set);
1448
Johannes Doerfertb164c792014-09-18 11:17:17 +00001449 MinPMA = isl_set_lexmin_pw_multi_aff(isl_set_copy(Set));
1450 MaxPMA = isl_set_lexmax_pw_multi_aff(isl_set_copy(Set));
1451
Johannes Doerfert219b20e2014-10-07 14:37:59 +00001452 MinPMA = isl_pw_multi_aff_coalesce(MinPMA);
1453 MaxPMA = isl_pw_multi_aff_coalesce(MaxPMA);
1454
Johannes Doerfertb164c792014-09-18 11:17:17 +00001455 // Adjust the last dimension of the maximal access by one as we want to
1456 // enclose the accessed memory region by MinPMA and MaxPMA. The pointer
1457 // we test during code generation might now point after the end of the
1458 // allocated array but we will never dereference it anyway.
1459 assert(isl_pw_multi_aff_dim(MaxPMA, isl_dim_out) &&
1460 "Assumed at least one output dimension");
1461 Pos = isl_pw_multi_aff_dim(MaxPMA, isl_dim_out) - 1;
1462 LastDimAff = isl_pw_multi_aff_get_pw_aff(MaxPMA, Pos);
1463 OneAff = isl_aff_zero_on_domain(
1464 isl_local_space_from_space(isl_pw_aff_get_domain_space(LastDimAff)));
1465 OneAff = isl_aff_add_constant_si(OneAff, 1);
1466 LastDimAff = isl_pw_aff_add(LastDimAff, isl_pw_aff_from_aff(OneAff));
1467 MaxPMA = isl_pw_multi_aff_set_pw_aff(MaxPMA, Pos, LastDimAff);
1468
1469 MinMaxAccesses->push_back(std::make_pair(MinPMA, MaxPMA));
1470
1471 isl_set_free(Set);
1472 return 0;
1473}
1474
Johannes Doerferteeab05a2014-10-01 12:42:37 +00001475static __isl_give isl_set *getAccessDomain(MemoryAccess *MA) {
1476 isl_set *Domain = MA->getStatement()->getDomain();
1477 Domain = isl_set_project_out(Domain, isl_dim_set, 0, isl_set_n_dim(Domain));
1478 return isl_set_reset_tuple_id(Domain);
1479}
1480
Johannes Doerfert9143d672014-09-27 11:02:39 +00001481bool Scop::buildAliasGroups(AliasAnalysis &AA) {
Johannes Doerfertb164c792014-09-18 11:17:17 +00001482 // To create sound alias checks we perform the following steps:
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001483 // o) Use the alias analysis and an alias set tracker to build alias sets
Johannes Doerfertb164c792014-09-18 11:17:17 +00001484 // for all memory accesses inside the SCoP.
1485 // o) For each alias set we then map the aliasing pointers back to the
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001486 // memory accesses we know, thus obtain groups of memory accesses which
Johannes Doerfertb164c792014-09-18 11:17:17 +00001487 // might alias.
Johannes Doerferteeab05a2014-10-01 12:42:37 +00001488 // o) We divide each group based on the domains of the minimal/maximal
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001489 // accesses. That means two minimal/maximal accesses are only in a group
Johannes Doerferteeab05a2014-10-01 12:42:37 +00001490 // if their access domains intersect, otherwise they are in different
1491 // ones.
Johannes Doerfert13771732014-10-01 12:40:46 +00001492 // o) We split groups such that they contain at most one read only base
1493 // address.
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001494 // o) For each group with more than one base pointer we then compute minimal
Johannes Doerfertb164c792014-09-18 11:17:17 +00001495 // and maximal accesses to each array in this group.
1496 using AliasGroupTy = SmallVector<MemoryAccess *, 4>;
1497
1498 AliasSetTracker AST(AA);
1499
1500 DenseMap<Value *, MemoryAccess *> PtrToAcc;
Johannes Doerfert13771732014-10-01 12:40:46 +00001501 DenseSet<Value *> HasWriteAccess;
Johannes Doerfertb164c792014-09-18 11:17:17 +00001502 for (ScopStmt *Stmt : *this) {
Johannes Doerfertf1ee2622014-10-06 17:43:00 +00001503
1504 // Skip statements with an empty domain as they will never be executed.
1505 isl_set *StmtDomain = Stmt->getDomain();
1506 bool StmtDomainEmpty = isl_set_is_empty(StmtDomain);
1507 isl_set_free(StmtDomain);
1508 if (StmtDomainEmpty)
1509 continue;
1510
Johannes Doerfertb164c792014-09-18 11:17:17 +00001511 for (MemoryAccess *MA : *Stmt) {
1512 if (MA->isScalar())
1513 continue;
Johannes Doerfert13771732014-10-01 12:40:46 +00001514 if (!MA->isRead())
1515 HasWriteAccess.insert(MA->getBaseAddr());
Johannes Doerfertb164c792014-09-18 11:17:17 +00001516 Instruction *Acc = MA->getAccessInstruction();
1517 PtrToAcc[getPointerOperand(*Acc)] = MA;
1518 AST.add(Acc);
1519 }
1520 }
1521
1522 SmallVector<AliasGroupTy, 4> AliasGroups;
1523 for (AliasSet &AS : AST) {
Johannes Doerfert74f68692014-10-08 02:23:48 +00001524 if (AS.isMustAlias() || AS.isForwardingAliasSet())
Johannes Doerfertb164c792014-09-18 11:17:17 +00001525 continue;
1526 AliasGroupTy AG;
1527 for (auto PR : AS)
1528 AG.push_back(PtrToAcc[PR.getValue()]);
1529 assert(AG.size() > 1 &&
1530 "Alias groups should contain at least two accesses");
1531 AliasGroups.push_back(std::move(AG));
1532 }
1533
Johannes Doerferteeab05a2014-10-01 12:42:37 +00001534 // Split the alias groups based on their domain.
1535 for (unsigned u = 0; u < AliasGroups.size(); u++) {
1536 AliasGroupTy NewAG;
1537 AliasGroupTy &AG = AliasGroups[u];
1538 AliasGroupTy::iterator AGI = AG.begin();
1539 isl_set *AGDomain = getAccessDomain(*AGI);
1540 while (AGI != AG.end()) {
1541 MemoryAccess *MA = *AGI;
1542 isl_set *MADomain = getAccessDomain(MA);
1543 if (isl_set_is_disjoint(AGDomain, MADomain)) {
1544 NewAG.push_back(MA);
1545 AGI = AG.erase(AGI);
1546 isl_set_free(MADomain);
1547 } else {
1548 AGDomain = isl_set_union(AGDomain, MADomain);
1549 AGI++;
1550 }
1551 }
1552 if (NewAG.size() > 1)
1553 AliasGroups.push_back(std::move(NewAG));
1554 isl_set_free(AGDomain);
1555 }
1556
Tobias Grosserf4c24b22015-04-05 13:11:54 +00001557 MapVector<const Value *, SmallPtrSet<MemoryAccess *, 8>> ReadOnlyPairs;
Johannes Doerfert13771732014-10-01 12:40:46 +00001558 SmallPtrSet<const Value *, 4> NonReadOnlyBaseValues;
1559 for (AliasGroupTy &AG : AliasGroups) {
1560 NonReadOnlyBaseValues.clear();
1561 ReadOnlyPairs.clear();
1562
Johannes Doerferteeab05a2014-10-01 12:42:37 +00001563 if (AG.size() < 2) {
1564 AG.clear();
1565 continue;
1566 }
1567
Johannes Doerfert13771732014-10-01 12:40:46 +00001568 for (auto II = AG.begin(); II != AG.end();) {
1569 Value *BaseAddr = (*II)->getBaseAddr();
1570 if (HasWriteAccess.count(BaseAddr)) {
1571 NonReadOnlyBaseValues.insert(BaseAddr);
1572 II++;
1573 } else {
1574 ReadOnlyPairs[BaseAddr].insert(*II);
1575 II = AG.erase(II);
1576 }
1577 }
1578
1579 // If we don't have read only pointers check if there are at least two
1580 // non read only pointers, otherwise clear the alias group.
1581 if (ReadOnlyPairs.empty()) {
1582 if (NonReadOnlyBaseValues.size() <= 1)
1583 AG.clear();
1584 continue;
1585 }
1586
1587 // If we don't have non read only pointers clear the alias group.
1588 if (NonReadOnlyBaseValues.empty()) {
1589 AG.clear();
1590 continue;
1591 }
1592
1593 // If we have both read only and non read only base pointers we combine
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00001594 // the non read only ones with exactly one read only one at a time into a
Johannes Doerfert13771732014-10-01 12:40:46 +00001595 // new alias group and clear the old alias group in the end.
1596 for (const auto &ReadOnlyPair : ReadOnlyPairs) {
1597 AliasGroupTy AGNonReadOnly = AG;
1598 for (MemoryAccess *MA : ReadOnlyPair.second)
1599 AGNonReadOnly.push_back(MA);
1600 AliasGroups.push_back(std::move(AGNonReadOnly));
1601 }
1602 AG.clear();
Johannes Doerfertb164c792014-09-18 11:17:17 +00001603 }
1604
1605 for (AliasGroupTy &AG : AliasGroups) {
Johannes Doerfert13771732014-10-01 12:40:46 +00001606 if (AG.empty())
1607 continue;
1608
Johannes Doerfertb164c792014-09-18 11:17:17 +00001609 MinMaxVectorTy *MinMaxAccesses = new MinMaxVectorTy();
1610 MinMaxAccesses->reserve(AG.size());
1611
1612 isl_union_map *Accesses = isl_union_map_empty(getParamSpace());
1613 for (MemoryAccess *MA : AG)
1614 Accesses = isl_union_map_add_map(Accesses, MA->getAccessRelation());
1615 Accesses = isl_union_map_intersect_domain(Accesses, getDomains());
1616
1617 isl_union_set *Locations = isl_union_map_range(Accesses);
1618 Locations = isl_union_set_intersect_params(Locations, getAssumedContext());
1619 Locations = isl_union_set_coalesce(Locations);
1620 Locations = isl_union_set_detect_equalities(Locations);
Tobias Grosser50d4e2e2015-03-28 14:50:32 +00001621 bool Valid = (0 == isl_union_set_foreach_set(Locations, buildMinMaxAccess,
1622 MinMaxAccesses));
Johannes Doerfertb164c792014-09-18 11:17:17 +00001623 isl_union_set_free(Locations);
Johannes Doerfertb164c792014-09-18 11:17:17 +00001624 MinMaxAliasGroups.push_back(MinMaxAccesses);
Johannes Doerfert9143d672014-09-27 11:02:39 +00001625
1626 if (!Valid)
Tobias Grosser50d4e2e2015-03-28 14:50:32 +00001627 return false;
Johannes Doerfertb164c792014-09-18 11:17:17 +00001628 }
Johannes Doerfert9143d672014-09-27 11:02:39 +00001629
Tobias Grosser71500722015-03-28 15:11:14 +00001630 // Bail out if the number of values we need to compare is too large.
1631 // This is important as the number of comparisions grows quadratically with
1632 // the number of values we need to compare.
1633 for (const auto *Values : MinMaxAliasGroups)
1634 if (Values->size() > RunTimeChecksMaxArraysPerGroup)
1635 return false;
1636
Tobias Grosser50d4e2e2015-03-28 14:50:32 +00001637 return true;
Johannes Doerfertb164c792014-09-18 11:17:17 +00001638}
1639
Johannes Doerfertf8206cf2015-04-12 22:58:40 +00001640static unsigned getMaxLoopDepthInRegion(const Region &R, LoopInfo &LI,
1641 ScopDetection &SD) {
1642
1643 const ScopDetection::BoxedLoopsSetTy *BoxedLoops = SD.getBoxedLoops(&R);
1644
Johannes Doerferte3da05a2014-11-01 00:12:13 +00001645 unsigned MinLD = INT_MAX, MaxLD = 0;
1646 for (BasicBlock *BB : R.blocks()) {
1647 if (Loop *L = LI.getLoopFor(BB)) {
David Peixottodc0a11c2015-01-13 18:31:55 +00001648 if (!R.contains(L))
1649 continue;
Johannes Doerfertf8206cf2015-04-12 22:58:40 +00001650 if (BoxedLoops && BoxedLoops->count(L))
1651 continue;
Johannes Doerferte3da05a2014-11-01 00:12:13 +00001652 unsigned LD = L->getLoopDepth();
1653 MinLD = std::min(MinLD, LD);
1654 MaxLD = std::max(MaxLD, LD);
1655 }
1656 }
1657
1658 // Handle the case that there is no loop in the SCoP first.
1659 if (MaxLD == 0)
1660 return 1;
1661
1662 assert(MinLD >= 1 && "Minimal loop depth should be at least one");
1663 assert(MaxLD >= MinLD &&
1664 "Maximal loop depth was smaller than mininaml loop depth?");
1665 return MaxLD - MinLD + 1;
1666}
1667
Tobias Grosser3f296192015-01-01 23:01:11 +00001668void Scop::dropConstantScheduleDims() {
1669 isl_union_map *FullSchedule = getSchedule();
1670
1671 if (isl_union_map_n_map(FullSchedule) == 0) {
1672 isl_union_map_free(FullSchedule);
1673 return;
1674 }
1675
1676 isl_set *ScheduleSpace =
1677 isl_set_from_union_set(isl_union_map_range(FullSchedule));
1678 isl_map *DropDimMap = isl_set_identity(isl_set_copy(ScheduleSpace));
1679
1680 int NumDimsDropped = 0;
Johannes Doerfert3f21e272015-03-04 22:23:21 +00001681 for (unsigned i = 0; i < isl_set_dim(ScheduleSpace, isl_dim_set); i += 2) {
1682 isl_val *FixedVal =
1683 isl_set_plain_get_val_if_fixed(ScheduleSpace, isl_dim_set, i);
1684 if (isl_val_is_int(FixedVal)) {
1685 DropDimMap =
1686 isl_map_project_out(DropDimMap, isl_dim_out, i - NumDimsDropped, 1);
1687 NumDimsDropped++;
Tobias Grosser3f296192015-01-01 23:01:11 +00001688 }
Johannes Doerfert3f21e272015-03-04 22:23:21 +00001689 isl_val_free(FixedVal);
1690 }
Tobias Grosser3f296192015-01-01 23:01:11 +00001691
Tobias Grosser3f296192015-01-01 23:01:11 +00001692 for (auto *S : *this) {
Tobias Grosser54839312015-04-21 11:37:25 +00001693 isl_map *Schedule = S->getSchedule();
Tobias Grosser3f296192015-01-01 23:01:11 +00001694 Schedule = isl_map_apply_range(Schedule, isl_map_copy(DropDimMap));
Tobias Grosser54839312015-04-21 11:37:25 +00001695 S->setSchedule(Schedule);
Tobias Grosser3f296192015-01-01 23:01:11 +00001696 }
1697 isl_set_free(ScheduleSpace);
1698 isl_map_free(DropDimMap);
1699}
1700
Tobias Grosser0e27e242011-10-06 00:03:48 +00001701Scop::Scop(TempScop &tempScop, LoopInfo &LI, ScalarEvolution &ScalarEvolution,
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001702 ScopDetection &SD, isl_ctx *Context)
Johannes Doerfert7ceb0402015-02-11 17:25:09 +00001703 : SE(&ScalarEvolution), R(tempScop.getMaxRegion()), IsOptimized(false),
Johannes Doerfertf8206cf2015-04-12 22:58:40 +00001704 MaxLoopDepth(getMaxLoopDepthInRegion(tempScop.getMaxRegion(), LI, SD)) {
Tobias Grosser9a38ab82011-11-08 15:41:03 +00001705 IslCtx = Context;
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001706
Tobias Grosser6be480c2011-11-08 15:41:13 +00001707 buildContext();
Tobias Grosser75805372011-04-29 06:27:02 +00001708
Tobias Grosserabfbe632013-02-05 12:09:06 +00001709 SmallVector<Loop *, 8> NestLoops;
Tobias Grosser54839312015-04-21 11:37:25 +00001710 SmallVector<unsigned, 8> Schedule;
Tobias Grosser75805372011-04-29 06:27:02 +00001711
Tobias Grosser54839312015-04-21 11:37:25 +00001712 Schedule.assign(MaxLoopDepth + 1, 0);
Tobias Grosser75805372011-04-29 06:27:02 +00001713
Tobias Grosser54839312015-04-21 11:37:25 +00001714 // Build the iteration domain, access functions and schedule functions
Tobias Grosser75805372011-04-29 06:27:02 +00001715 // traversing the region tree.
Tobias Grosser54839312015-04-21 11:37:25 +00001716 buildScop(tempScop, getRegion(), NestLoops, Schedule, LI, SD);
Tobias Grosser75805372011-04-29 06:27:02 +00001717
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001718 realignParams();
Tobias Grosser18daaca2012-05-22 10:47:27 +00001719 addParameterBounds();
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001720 simplifyAssumedContext();
Tobias Grosser3f296192015-01-01 23:01:11 +00001721 dropConstantScheduleDims();
Tobias Grosser8cae72f2011-11-08 15:41:08 +00001722
Tobias Grosser75805372011-04-29 06:27:02 +00001723 assert(NestLoops.empty() && "NestLoops not empty at top level!");
1724}
1725
1726Scop::~Scop() {
1727 isl_set_free(Context);
Tobias Grossere86109f2013-10-29 21:05:49 +00001728 isl_set_free(AssumedContext);
Tobias Grosser75805372011-04-29 06:27:02 +00001729
1730 // Free the statements;
Tobias Grosser083d3d32014-06-28 08:59:45 +00001731 for (ScopStmt *Stmt : *this)
1732 delete Stmt;
Johannes Doerfertb164c792014-09-18 11:17:17 +00001733
Johannes Doerfert1a28a892014-10-05 11:32:18 +00001734 // Free the ScopArrayInfo objects.
Tobias Grossere71ed192015-05-06 10:05:20 +00001735 for (auto &ScopArrayInfoPair : arrays())
Johannes Doerfert1a28a892014-10-05 11:32:18 +00001736 delete ScopArrayInfoPair.second;
1737
Johannes Doerfertb164c792014-09-18 11:17:17 +00001738 // Free the alias groups
1739 for (MinMaxVectorTy *MinMaxAccesses : MinMaxAliasGroups) {
1740 for (MinMaxAccessTy &MMA : *MinMaxAccesses) {
1741 isl_pw_multi_aff_free(MMA.first);
1742 isl_pw_multi_aff_free(MMA.second);
1743 }
1744 delete MinMaxAccesses;
1745 }
Tobias Grosser75805372011-04-29 06:27:02 +00001746}
1747
Johannes Doerfert80ef1102014-11-07 08:31:31 +00001748const ScopArrayInfo *
1749Scop::getOrCreateScopArrayInfo(Value *BasePtr, Type *AccessType,
1750 const SmallVector<const SCEV *, 4> &Sizes) {
Johannes Doerfert1a28a892014-10-05 11:32:18 +00001751 const ScopArrayInfo *&SAI = ScopArrayInfoMap[BasePtr];
Johannes Doerfert80ef1102014-11-07 08:31:31 +00001752 if (!SAI)
1753 SAI = new ScopArrayInfo(BasePtr, AccessType, getIslCtx(), Sizes);
Johannes Doerfert1a28a892014-10-05 11:32:18 +00001754 return SAI;
1755}
1756
1757const ScopArrayInfo *Scop::getScopArrayInfo(Value *BasePtr) {
1758 const SCEV *PtrSCEV = SE->getSCEV(BasePtr);
1759 const SCEVUnknown *PtrBaseSCEV =
1760 cast<SCEVUnknown>(SE->getPointerBase(PtrSCEV));
1761 const ScopArrayInfo *SAI = ScopArrayInfoMap[PtrBaseSCEV->getValue()];
1762 assert(SAI && "No ScopArrayInfo available for this base pointer");
1763 return SAI;
1764}
1765
Tobias Grosser74394f02013-01-14 22:40:23 +00001766std::string Scop::getContextStr() const { return stringFromIslObj(Context); }
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001767std::string Scop::getAssumedContextStr() const {
1768 return stringFromIslObj(AssumedContext);
1769}
Tobias Grosser75805372011-04-29 06:27:02 +00001770
1771std::string Scop::getNameStr() const {
1772 std::string ExitName, EntryName;
1773 raw_string_ostream ExitStr(ExitName);
1774 raw_string_ostream EntryStr(EntryName);
1775
Tobias Grosserf240b482014-01-09 10:42:15 +00001776 R.getEntry()->printAsOperand(EntryStr, false);
Tobias Grosser75805372011-04-29 06:27:02 +00001777 EntryStr.str();
1778
1779 if (R.getExit()) {
Tobias Grosserf240b482014-01-09 10:42:15 +00001780 R.getExit()->printAsOperand(ExitStr, false);
Tobias Grosser75805372011-04-29 06:27:02 +00001781 ExitStr.str();
1782 } else
1783 ExitName = "FunctionExit";
1784
1785 return EntryName + "---" + ExitName;
1786}
1787
Tobias Grosser74394f02013-01-14 22:40:23 +00001788__isl_give isl_set *Scop::getContext() const { return isl_set_copy(Context); }
Tobias Grosser37487052011-10-06 00:03:42 +00001789__isl_give isl_space *Scop::getParamSpace() const {
1790 return isl_set_get_space(this->Context);
1791}
1792
Tobias Grossere86109f2013-10-29 21:05:49 +00001793__isl_give isl_set *Scop::getAssumedContext() const {
1794 return isl_set_copy(AssumedContext);
1795}
1796
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001797void Scop::addAssumption(__isl_take isl_set *Set) {
1798 AssumedContext = isl_set_intersect(AssumedContext, Set);
Tobias Grosser7b50bee2014-11-25 10:51:12 +00001799 AssumedContext = isl_set_coalesce(AssumedContext);
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001800}
1801
Tobias Grosser75805372011-04-29 06:27:02 +00001802void Scop::printContext(raw_ostream &OS) const {
1803 OS << "Context:\n";
1804
1805 if (!Context) {
1806 OS.indent(4) << "n/a\n\n";
1807 return;
1808 }
1809
1810 OS.indent(4) << getContextStr() << "\n";
Tobias Grosser60b54f12011-11-08 15:41:28 +00001811
Tobias Grosser5e6813d2014-07-02 17:47:48 +00001812 OS.indent(4) << "Assumed Context:\n";
1813 if (!AssumedContext) {
1814 OS.indent(4) << "n/a\n\n";
1815 return;
1816 }
1817
1818 OS.indent(4) << getAssumedContextStr() << "\n";
1819
Tobias Grosser083d3d32014-06-28 08:59:45 +00001820 for (const SCEV *Parameter : Parameters) {
Tobias Grosser60b54f12011-11-08 15:41:28 +00001821 int Dim = ParameterIds.find(Parameter)->second;
Tobias Grosser60b54f12011-11-08 15:41:28 +00001822 OS.indent(4) << "p" << Dim << ": " << *Parameter << "\n";
1823 }
Tobias Grosser75805372011-04-29 06:27:02 +00001824}
1825
Johannes Doerfertb164c792014-09-18 11:17:17 +00001826void Scop::printAliasAssumptions(raw_ostream &OS) const {
1827 OS.indent(4) << "Alias Groups (" << MinMaxAliasGroups.size() << "):\n";
1828 if (MinMaxAliasGroups.empty()) {
1829 OS.indent(8) << "n/a\n";
1830 return;
1831 }
1832 for (MinMaxVectorTy *MinMaxAccesses : MinMaxAliasGroups) {
1833 OS.indent(8) << "[[";
1834 for (MinMaxAccessTy &MinMacAccess : *MinMaxAccesses)
1835 OS << " <" << MinMacAccess.first << ", " << MinMacAccess.second << ">";
1836 OS << " ]]\n";
1837 }
1838}
1839
Tobias Grosser75805372011-04-29 06:27:02 +00001840void Scop::printStatements(raw_ostream &OS) const {
1841 OS << "Statements {\n";
1842
Tobias Grosser083d3d32014-06-28 08:59:45 +00001843 for (ScopStmt *Stmt : *this)
1844 OS.indent(4) << *Stmt;
Tobias Grosser75805372011-04-29 06:27:02 +00001845
1846 OS.indent(4) << "}\n";
1847}
1848
Tobias Grosser75805372011-04-29 06:27:02 +00001849void Scop::print(raw_ostream &OS) const {
Tobias Grosser4eb7ddb2014-03-18 18:51:11 +00001850 OS.indent(4) << "Function: " << getRegion().getEntry()->getParent()->getName()
1851 << "\n";
Tobias Grosser483fdd42014-03-18 18:05:38 +00001852 OS.indent(4) << "Region: " << getNameStr() << "\n";
David Peixottodc0a11c2015-01-13 18:31:55 +00001853 OS.indent(4) << "Max Loop Depth: " << getMaxLoopDepth() << "\n";
Tobias Grosser75805372011-04-29 06:27:02 +00001854 printContext(OS.indent(4));
Johannes Doerfertb164c792014-09-18 11:17:17 +00001855 printAliasAssumptions(OS);
Tobias Grosser75805372011-04-29 06:27:02 +00001856 printStatements(OS.indent(4));
1857}
1858
1859void Scop::dump() const { print(dbgs()); }
1860
Tobias Grosser9a38ab82011-11-08 15:41:03 +00001861isl_ctx *Scop::getIslCtx() const { return IslCtx; }
Tobias Grosser75805372011-04-29 06:27:02 +00001862
Tobias Grosser5f9a7622012-02-14 14:02:40 +00001863__isl_give isl_union_set *Scop::getDomains() {
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001864 isl_union_set *Domain = isl_union_set_empty(getParamSpace());
Tobias Grosser5f9a7622012-02-14 14:02:40 +00001865
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001866 for (ScopStmt *Stmt : *this)
1867 Domain = isl_union_set_add_set(Domain, Stmt->getDomain());
Tobias Grosser5f9a7622012-02-14 14:02:40 +00001868
1869 return Domain;
1870}
1871
Tobias Grosser780ce0f2014-07-11 07:12:10 +00001872__isl_give isl_union_map *Scop::getMustWrites() {
1873 isl_union_map *Write = isl_union_map_empty(this->getParamSpace());
1874
1875 for (ScopStmt *Stmt : *this) {
1876 for (MemoryAccess *MA : *Stmt) {
1877 if (!MA->isMustWrite())
1878 continue;
1879
1880 isl_set *Domain = Stmt->getDomain();
1881 isl_map *AccessDomain = MA->getAccessRelation();
1882 AccessDomain = isl_map_intersect_domain(AccessDomain, Domain);
1883 Write = isl_union_map_add_map(Write, AccessDomain);
1884 }
1885 }
1886 return isl_union_map_coalesce(Write);
1887}
1888
1889__isl_give isl_union_map *Scop::getMayWrites() {
1890 isl_union_map *Write = isl_union_map_empty(this->getParamSpace());
1891
1892 for (ScopStmt *Stmt : *this) {
1893 for (MemoryAccess *MA : *Stmt) {
1894 if (!MA->isMayWrite())
1895 continue;
1896
1897 isl_set *Domain = Stmt->getDomain();
1898 isl_map *AccessDomain = MA->getAccessRelation();
1899 AccessDomain = isl_map_intersect_domain(AccessDomain, Domain);
1900 Write = isl_union_map_add_map(Write, AccessDomain);
1901 }
1902 }
1903 return isl_union_map_coalesce(Write);
1904}
1905
Tobias Grosser37eb4222014-02-20 21:43:54 +00001906__isl_give isl_union_map *Scop::getWrites() {
1907 isl_union_map *Write = isl_union_map_empty(this->getParamSpace());
1908
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001909 for (ScopStmt *Stmt : *this) {
Johannes Doerfertf6752892014-06-13 18:01:45 +00001910 for (MemoryAccess *MA : *Stmt) {
1911 if (!MA->isWrite())
Tobias Grosser37eb4222014-02-20 21:43:54 +00001912 continue;
1913
1914 isl_set *Domain = Stmt->getDomain();
Johannes Doerfertf6752892014-06-13 18:01:45 +00001915 isl_map *AccessDomain = MA->getAccessRelation();
Tobias Grosser37eb4222014-02-20 21:43:54 +00001916 AccessDomain = isl_map_intersect_domain(AccessDomain, Domain);
1917 Write = isl_union_map_add_map(Write, AccessDomain);
1918 }
1919 }
1920 return isl_union_map_coalesce(Write);
1921}
1922
1923__isl_give isl_union_map *Scop::getReads() {
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001924 isl_union_map *Read = isl_union_map_empty(getParamSpace());
Tobias Grosser37eb4222014-02-20 21:43:54 +00001925
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001926 for (ScopStmt *Stmt : *this) {
Johannes Doerfertf6752892014-06-13 18:01:45 +00001927 for (MemoryAccess *MA : *Stmt) {
1928 if (!MA->isRead())
Tobias Grosser37eb4222014-02-20 21:43:54 +00001929 continue;
1930
1931 isl_set *Domain = Stmt->getDomain();
Johannes Doerfertf6752892014-06-13 18:01:45 +00001932 isl_map *AccessDomain = MA->getAccessRelation();
Tobias Grosser37eb4222014-02-20 21:43:54 +00001933
1934 AccessDomain = isl_map_intersect_domain(AccessDomain, Domain);
1935 Read = isl_union_map_add_map(Read, AccessDomain);
1936 }
1937 }
1938 return isl_union_map_coalesce(Read);
1939}
1940
1941__isl_give isl_union_map *Scop::getSchedule() {
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001942 isl_union_map *Schedule = isl_union_map_empty(getParamSpace());
Tobias Grosser37eb4222014-02-20 21:43:54 +00001943
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001944 for (ScopStmt *Stmt : *this)
Tobias Grosser54839312015-04-21 11:37:25 +00001945 Schedule = isl_union_map_add_map(Schedule, Stmt->getSchedule());
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001946
Tobias Grosser37eb4222014-02-20 21:43:54 +00001947 return isl_union_map_coalesce(Schedule);
1948}
1949
1950bool Scop::restrictDomains(__isl_take isl_union_set *Domain) {
1951 bool Changed = false;
Tobias Grosserbc4ef902014-06-28 08:59:38 +00001952 for (ScopStmt *Stmt : *this) {
Tobias Grosser37eb4222014-02-20 21:43:54 +00001953 isl_union_set *StmtDomain = isl_union_set_from_set(Stmt->getDomain());
Tobias Grosser37eb4222014-02-20 21:43:54 +00001954 isl_union_set *NewStmtDomain = isl_union_set_intersect(
1955 isl_union_set_copy(StmtDomain), isl_union_set_copy(Domain));
1956
1957 if (isl_union_set_is_subset(StmtDomain, NewStmtDomain)) {
1958 isl_union_set_free(StmtDomain);
1959 isl_union_set_free(NewStmtDomain);
1960 continue;
1961 }
1962
1963 Changed = true;
1964
1965 isl_union_set_free(StmtDomain);
1966 NewStmtDomain = isl_union_set_coalesce(NewStmtDomain);
1967
1968 if (isl_union_set_is_empty(NewStmtDomain)) {
1969 Stmt->restrictDomain(isl_set_empty(Stmt->getDomainSpace()));
1970 isl_union_set_free(NewStmtDomain);
1971 } else
1972 Stmt->restrictDomain(isl_set_from_union_set(NewStmtDomain));
1973 }
1974 isl_union_set_free(Domain);
1975 return Changed;
1976}
1977
Tobias Grosser75805372011-04-29 06:27:02 +00001978ScalarEvolution *Scop::getSE() const { return SE; }
1979
1980bool Scop::isTrivialBB(BasicBlock *BB, TempScop &tempScop) {
1981 if (tempScop.getAccessFunctions(BB))
1982 return false;
1983
1984 return true;
1985}
1986
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001987void Scop::addScopStmt(BasicBlock *BB, Region *R, TempScop &tempScop,
1988 const Region &CurRegion,
1989 SmallVectorImpl<Loop *> &NestLoops,
Tobias Grosser54839312015-04-21 11:37:25 +00001990 SmallVectorImpl<unsigned> &ScheduleVec) {
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001991 ScopStmt *Stmt;
1992
1993 if (BB) {
Tobias Grosser654af8f2015-04-21 11:42:01 +00001994 Stmt =
1995 new ScopStmt(*this, tempScop, CurRegion, *BB, NestLoops, ScheduleVec);
Johannes Doerfertff9d1982015-02-24 12:00:50 +00001996 StmtMap[BB] = Stmt;
1997 } else {
1998 assert(R && "Either a basic block or a region is needed to "
1999 "create a new SCoP stmt.");
Tobias Grosser54839312015-04-21 11:37:25 +00002000 Stmt = new ScopStmt(*this, tempScop, CurRegion, *R, NestLoops, ScheduleVec);
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002001 for (BasicBlock *BB : R->blocks())
2002 StmtMap[BB] = Stmt;
2003 }
2004
2005 // Insert all statements into the statement map and the statement vector.
2006 Stmts.push_back(Stmt);
2007
Tobias Grosser54839312015-04-21 11:37:25 +00002008 // Increasing the Schedule function is OK for the moment, because
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002009 // we are using a depth first iterator and the program is well structured.
Tobias Grosser54839312015-04-21 11:37:25 +00002010 ++ScheduleVec[NestLoops.size()];
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002011}
2012
Tobias Grosser74394f02013-01-14 22:40:23 +00002013void Scop::buildScop(TempScop &tempScop, const Region &CurRegion,
2014 SmallVectorImpl<Loop *> &NestLoops,
Tobias Grosser54839312015-04-21 11:37:25 +00002015 SmallVectorImpl<unsigned> &ScheduleVec, LoopInfo &LI,
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002016 ScopDetection &SD) {
2017 if (SD.isNonAffineSubRegion(&CurRegion, &getRegion()))
2018 return addScopStmt(nullptr, const_cast<Region *>(&CurRegion), tempScop,
Tobias Grosser54839312015-04-21 11:37:25 +00002019 CurRegion, NestLoops, ScheduleVec);
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002020
Tobias Grosser75805372011-04-29 06:27:02 +00002021 Loop *L = castToLoop(CurRegion, LI);
2022
2023 if (L)
2024 NestLoops.push_back(L);
2025
2026 unsigned loopDepth = NestLoops.size();
Tobias Grosser54839312015-04-21 11:37:25 +00002027 assert(ScheduleVec.size() > loopDepth && "Schedule not big enough!");
Tobias Grosser75805372011-04-29 06:27:02 +00002028
2029 for (Region::const_element_iterator I = CurRegion.element_begin(),
Tobias Grosserabfbe632013-02-05 12:09:06 +00002030 E = CurRegion.element_end();
2031 I != E; ++I)
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002032 if (I->isSubRegion()) {
Tobias Grosser654af8f2015-04-21 11:42:01 +00002033 buildScop(tempScop, *I->getNodeAs<Region>(), NestLoops, ScheduleVec, LI,
2034 SD);
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002035 } else {
Tobias Grosser75805372011-04-29 06:27:02 +00002036 BasicBlock *BB = I->getNodeAs<BasicBlock>();
2037
2038 if (isTrivialBB(BB, tempScop))
2039 continue;
2040
Tobias Grosser54839312015-04-21 11:37:25 +00002041 addScopStmt(BB, nullptr, tempScop, CurRegion, NestLoops, ScheduleVec);
Tobias Grosser75805372011-04-29 06:27:02 +00002042 }
2043
2044 if (!L)
2045 return;
2046
2047 // Exiting a loop region.
Tobias Grosser54839312015-04-21 11:37:25 +00002048 ScheduleVec[loopDepth] = 0;
Tobias Grosser75805372011-04-29 06:27:02 +00002049 NestLoops.pop_back();
Tobias Grosser54839312015-04-21 11:37:25 +00002050 ++ScheduleVec[loopDepth - 1];
Tobias Grosser75805372011-04-29 06:27:02 +00002051}
2052
Johannes Doerfert7c494212014-10-31 23:13:39 +00002053ScopStmt *Scop::getStmtForBasicBlock(BasicBlock *BB) const {
2054 const auto &StmtMapIt = StmtMap.find(BB);
2055 if (StmtMapIt == StmtMap.end())
2056 return nullptr;
2057 return StmtMapIt->second;
2058}
2059
Tobias Grosser75805372011-04-29 06:27:02 +00002060//===----------------------------------------------------------------------===//
Tobias Grosserb76f38532011-08-20 11:11:25 +00002061ScopInfo::ScopInfo() : RegionPass(ID), scop(0) {
2062 ctx = isl_ctx_alloc();
Tobias Grosser4a8e3562011-12-07 07:42:51 +00002063 isl_options_set_on_error(ctx, ISL_ON_ERROR_ABORT);
Tobias Grosserb76f38532011-08-20 11:11:25 +00002064}
2065
2066ScopInfo::~ScopInfo() {
2067 clear();
2068 isl_ctx_free(ctx);
2069}
2070
Tobias Grosser75805372011-04-29 06:27:02 +00002071void ScopInfo::getAnalysisUsage(AnalysisUsage &AU) const {
Chandler Carruthf5579872015-01-17 14:16:56 +00002072 AU.addRequired<LoopInfoWrapperPass>();
Matt Arsenault8ca36812014-07-19 18:40:17 +00002073 AU.addRequired<RegionInfoPass>();
Tobias Grosser75805372011-04-29 06:27:02 +00002074 AU.addRequired<ScalarEvolution>();
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002075 AU.addRequired<ScopDetection>();
Tobias Grosser75805372011-04-29 06:27:02 +00002076 AU.addRequired<TempScopInfo>();
Johannes Doerfertb164c792014-09-18 11:17:17 +00002077 AU.addRequired<AliasAnalysis>();
Tobias Grosser75805372011-04-29 06:27:02 +00002078 AU.setPreservesAll();
2079}
2080
2081bool ScopInfo::runOnRegion(Region *R, RGPassManager &RGM) {
Chandler Carruthf5579872015-01-17 14:16:56 +00002082 LoopInfo &LI = getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
Johannes Doerfertb164c792014-09-18 11:17:17 +00002083 AliasAnalysis &AA = getAnalysis<AliasAnalysis>();
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002084 ScopDetection &SD = getAnalysis<ScopDetection>();
Tobias Grosser75805372011-04-29 06:27:02 +00002085 ScalarEvolution &SE = getAnalysis<ScalarEvolution>();
2086
2087 TempScop *tempScop = getAnalysis<TempScopInfo>().getTempScop(R);
2088
2089 // This region is no Scop.
2090 if (!tempScop) {
Tobias Grosserc98a8fc2014-11-14 11:12:31 +00002091 scop = nullptr;
Tobias Grosser75805372011-04-29 06:27:02 +00002092 return false;
2093 }
2094
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002095 scop = new Scop(*tempScop, LI, SE, SD, ctx);
Tobias Grosser75805372011-04-29 06:27:02 +00002096
Johannes Doerfert21aa3dc2014-11-01 01:30:11 +00002097 if (!PollyUseRuntimeAliasChecks) {
2098 // Statistics.
2099 ++ScopFound;
2100 if (scop->getMaxLoopDepth() > 0)
2101 ++RichScopFound;
Johannes Doerfert9143d672014-09-27 11:02:39 +00002102 return false;
Johannes Doerfert21aa3dc2014-11-01 01:30:11 +00002103 }
Johannes Doerfertb164c792014-09-18 11:17:17 +00002104
Johannes Doerfert9143d672014-09-27 11:02:39 +00002105 // If a problem occurs while building the alias groups we need to delete
2106 // this SCoP and pretend it wasn't valid in the first place.
Johannes Doerfert21aa3dc2014-11-01 01:30:11 +00002107 if (scop->buildAliasGroups(AA)) {
2108 // Statistics.
2109 ++ScopFound;
2110 if (scop->getMaxLoopDepth() > 0)
2111 ++RichScopFound;
Johannes Doerfert9143d672014-09-27 11:02:39 +00002112 return false;
Johannes Doerfert21aa3dc2014-11-01 01:30:11 +00002113 }
Johannes Doerfert9143d672014-09-27 11:02:39 +00002114
2115 DEBUG(dbgs()
2116 << "\n\nNOTE: Run time checks for " << scop->getNameStr()
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00002117 << " could not be created as the number of parameters involved is too "
Johannes Doerfert9143d672014-09-27 11:02:39 +00002118 "high. The SCoP will be "
2119 "dismissed.\nUse:\n\t--polly-rtc-max-parameters=X\nto adjust the "
Johannes Doerfert6cad9c42015-02-24 16:00:29 +00002120 "maximal number of parameters but be advised that the compile time "
Johannes Doerfert9143d672014-09-27 11:02:39 +00002121 "might increase exponentially.\n\n");
2122
2123 delete scop;
2124 scop = nullptr;
Tobias Grosser75805372011-04-29 06:27:02 +00002125 return false;
2126}
2127
2128char ScopInfo::ID = 0;
2129
Tobias Grosser4d96c8d2013-03-23 01:05:07 +00002130Pass *polly::createScopInfoPass() { return new ScopInfo(); }
2131
Tobias Grosser73600b82011-10-08 00:30:40 +00002132INITIALIZE_PASS_BEGIN(ScopInfo, "polly-scops",
2133 "Polly - Create polyhedral description of Scops", false,
Tobias Grosser4d96c8d2013-03-23 01:05:07 +00002134 false);
Johannes Doerfertb164c792014-09-18 11:17:17 +00002135INITIALIZE_AG_DEPENDENCY(AliasAnalysis);
Chandler Carruthf5579872015-01-17 14:16:56 +00002136INITIALIZE_PASS_DEPENDENCY(LoopInfoWrapperPass);
Matt Arsenault8ca36812014-07-19 18:40:17 +00002137INITIALIZE_PASS_DEPENDENCY(RegionInfoPass);
Tobias Grosser4d96c8d2013-03-23 01:05:07 +00002138INITIALIZE_PASS_DEPENDENCY(ScalarEvolution);
Johannes Doerfertff9d1982015-02-24 12:00:50 +00002139INITIALIZE_PASS_DEPENDENCY(ScopDetection);
Tobias Grosser4d96c8d2013-03-23 01:05:07 +00002140INITIALIZE_PASS_DEPENDENCY(TempScopInfo);
Tobias Grosser73600b82011-10-08 00:30:40 +00002141INITIALIZE_PASS_END(ScopInfo, "polly-scops",
2142 "Polly - Create polyhedral description of Scops", false,
2143 false)