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Hongbin Zheng3b11a162012-04-25 13:16:49 +00001//===--- BlockGenerators.cpp - Generate code for statements -----*- C++ -*-===//
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// This file implements the BlockGenerator and VectorBlockGenerator classes,
11// which generate sequential code and vectorized code for a polyhedral
12// statement, respectively.
13//
14//===----------------------------------------------------------------------===//
15
16#include "polly/ScopInfo.h"
Hongbin Zheng8a846612012-04-25 13:18:28 +000017#include "polly/CodeGen/BlockGenerators.h"
Tobias Grosser83628182013-05-07 08:11:54 +000018#include "polly/CodeGen/CodeGeneration.h"
Johannes Doerferta63b2572014-08-03 01:51:59 +000019#include "polly/CodeGen/IslExprBuilder.h"
Tobias Grosser637bd632013-05-07 07:31:10 +000020#include "polly/Options.h"
Hongbin Zheng3b11a162012-04-25 13:16:49 +000021#include "polly/Support/GICHelper.h"
Sebastian Pop97cb8132013-03-18 20:21:13 +000022#include "polly/Support/SCEVValidator.h"
Tobias Grosserecfe21b2013-03-20 18:03:18 +000023#include "polly/Support/ScopHelper.h"
Tobias Grossere71c6ab2012-04-27 16:36:14 +000024#include "llvm/Analysis/LoopInfo.h"
Johannes Doerfertf32d6512015-03-01 18:45:58 +000025#include "llvm/Analysis/RegionInfo.h"
Tobias Grossere71c6ab2012-04-27 16:36:14 +000026#include "llvm/Analysis/ScalarEvolution.h"
Tobias Grosser030237d2014-02-21 15:06:05 +000027#include "llvm/IR/IntrinsicInst.h"
Tobias Grosserc9895062015-03-10 15:24:33 +000028#include "llvm/IR/Module.h"
Hongbin Zheng3b11a162012-04-25 13:16:49 +000029#include "llvm/Transforms/Utils/BasicBlockUtils.h"
Johannes Doerfertf32d6512015-03-01 18:45:58 +000030#include "isl/aff.h"
31#include "isl/ast.h"
Johannes Doerfertf32d6512015-03-01 18:45:58 +000032#include "isl/ast_build.h"
Tobias Grosserba0d0922015-05-09 09:13:42 +000033#include "isl/set.h"
Johannes Doerfertf32d6512015-03-01 18:45:58 +000034#include <deque>
35
Hongbin Zheng3b11a162012-04-25 13:16:49 +000036using namespace llvm;
37using namespace polly;
38
Tobias Grosser878aba42014-10-22 23:22:41 +000039static cl::opt<bool> Aligned("enable-polly-aligned",
40 cl::desc("Assumed aligned memory accesses."),
41 cl::Hidden, cl::init(false), cl::ZeroOrMore,
42 cl::cat(PollyCategory));
Hongbin Zheng3b11a162012-04-25 13:16:49 +000043
Tobias Grosserdcc3b432015-08-04 13:54:20 +000044bool polly::canSynthesize(const Value *V, const llvm::LoopInfo *LI,
Tobias Grosserecfe21b2013-03-20 18:03:18 +000045 ScalarEvolution *SE, const Region *R) {
Tobias Grosserdcc3b432015-08-04 13:54:20 +000046 if (!V || !SE->isSCEVable(V->getType()))
Tobias Grosserecfe21b2013-03-20 18:03:18 +000047 return false;
Tobias Grosserecfe21b2013-03-20 18:03:18 +000048
Tobias Grosserdcc3b432015-08-04 13:54:20 +000049 if (const SCEV *Scev = SE->getSCEV(const_cast<Value *>(V)))
Tobias Grosser683b8e42014-11-30 14:33:31 +000050 if (!isa<SCEVCouldNotCompute>(Scev))
51 if (!hasScalarDepsInsideRegion(Scev, R))
52 return true;
53
54 return false;
Tobias Grosserecfe21b2013-03-20 18:03:18 +000055}
56
Johannes Doerfert9e3a5db2015-01-26 15:55:54 +000057bool polly::isIgnoredIntrinsic(const Value *V) {
58 if (auto *IT = dyn_cast<IntrinsicInst>(V)) {
59 switch (IT->getIntrinsicID()) {
60 // Lifetime markers are supported/ignored.
61 case llvm::Intrinsic::lifetime_start:
62 case llvm::Intrinsic::lifetime_end:
63 // Invariant markers are supported/ignored.
64 case llvm::Intrinsic::invariant_start:
65 case llvm::Intrinsic::invariant_end:
66 // Some misc annotations are supported/ignored.
67 case llvm::Intrinsic::var_annotation:
68 case llvm::Intrinsic::ptr_annotation:
69 case llvm::Intrinsic::annotation:
70 case llvm::Intrinsic::donothing:
71 case llvm::Intrinsic::assume:
72 case llvm::Intrinsic::expect:
73 return true;
74 default:
75 break;
76 }
77 }
78 return false;
79}
80
Johannes Doerfertb4f08eb2015-02-23 13:51:35 +000081BlockGenerator::BlockGenerator(PollyIRBuilder &B, LoopInfo &LI,
82 ScalarEvolution &SE, DominatorTree &DT,
Johannes Doerfertecff11d2015-05-22 23:43:58 +000083 ScalarAllocaMapTy &ScalarMap,
84 ScalarAllocaMapTy &PHIOpMap,
85 EscapeUsersAllocaMapTy &EscapeMap,
Johannes Doerfertb4f08eb2015-02-23 13:51:35 +000086 IslExprBuilder *ExprBuilder)
Johannes Doerfertecff11d2015-05-22 23:43:58 +000087 : Builder(B), LI(LI), SE(SE), ExprBuilder(ExprBuilder), DT(DT),
88 EntryBB(nullptr), PHIOpMap(PHIOpMap), ScalarMap(ScalarMap),
89 EscapeMap(EscapeMap) {}
Tobias Grossere71c6ab2012-04-27 16:36:14 +000090
Johannes Doerfertbe9c9112015-02-06 21:39:31 +000091Value *BlockGenerator::getNewValue(ScopStmt &Stmt, const Value *Old,
92 ValueMapT &BBMap, ValueMapT &GlobalMap,
93 LoopToScevMapT &LTS, Loop *L) const {
Hongbin Zheng3b11a162012-04-25 13:16:49 +000094 // We assume constants never change.
95 // This avoids map lookups for many calls to this function.
96 if (isa<Constant>(Old))
Tobias Grosserc14582f2013-02-05 18:01:29 +000097 return const_cast<Value *>(Old);
Hongbin Zheng3b11a162012-04-25 13:16:49 +000098
Hongbin Zhengfe11e282013-06-29 13:22:15 +000099 if (Value *New = GlobalMap.lookup(Old)) {
Tobias Grosserc14582f2013-02-05 18:01:29 +0000100 if (Old->getType()->getScalarSizeInBits() <
Tobias Grosserd7e58642013-04-10 06:55:45 +0000101 New->getType()->getScalarSizeInBits())
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000102 New = Builder.CreateTruncOrBitCast(New, Old->getType());
103
104 return New;
105 }
106
Hongbin Zhengfe11e282013-06-29 13:22:15 +0000107 if (Value *New = BBMap.lookup(Old))
108 return New;
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000109
Tobias Grosser683b8e42014-11-30 14:33:31 +0000110 if (SE.isSCEVable(Old->getType()))
Tobias Grosser369430f2013-03-22 23:42:53 +0000111 if (const SCEV *Scev = SE.getSCEVAtScope(const_cast<Value *>(Old), L)) {
Tobias Grossere71c6ab2012-04-27 16:36:14 +0000112 if (!isa<SCEVCouldNotCompute>(Scev)) {
Sebastian Pop637b23d2013-02-15 20:56:01 +0000113 const SCEV *NewScev = apply(Scev, LTS, SE);
114 ValueToValueMap VTV;
115 VTV.insert(BBMap.begin(), BBMap.end());
116 VTV.insert(GlobalMap.begin(), GlobalMap.end());
Sebastian Pop47d4ee32013-02-15 21:26:53 +0000117 NewScev = SCEVParameterRewriter::rewrite(NewScev, SE, VTV);
Johannes Doerferte69e1142015-08-18 11:56:00 +0000118
119 Scop &S = *Stmt.getParent();
120 const DataLayout &DL =
121 S.getRegion().getEntry()->getParent()->getParent()->getDataLayout();
122 auto IP = Builder.GetInsertPoint();
123
124 assert(IP != Builder.GetInsertBlock()->end() &&
Tobias Grosser45e79442015-08-01 09:07:57 +0000125 "Only instructions can be insert points for SCEVExpander");
Johannes Doerferte69e1142015-08-18 11:56:00 +0000126 Value *Expanded =
127 expandCodeFor(S, SE, DL, "polly", NewScev, Old->getType(), IP);
Tobias Grossere71c6ab2012-04-27 16:36:14 +0000128
129 BBMap[Old] = Expanded;
130 return Expanded;
131 }
Tobias Grosser369430f2013-03-22 23:42:53 +0000132 }
Tobias Grossere71c6ab2012-04-27 16:36:14 +0000133
Tobias Grosser16371ac2014-11-05 20:48:56 +0000134 // A scop-constant value defined by a global or a function parameter.
135 if (isa<GlobalValue>(Old) || isa<Argument>(Old))
136 return const_cast<Value *>(Old);
137
138 // A scop-constant value defined by an instruction executed outside the scop.
139 if (const Instruction *Inst = dyn_cast<Instruction>(Old))
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000140 if (!Stmt.getParent()->getRegion().contains(Inst->getParent()))
Tobias Grosser16371ac2014-11-05 20:48:56 +0000141 return const_cast<Value *>(Old);
142
143 // The scalar dependence is neither available nor SCEVCodegenable.
Hongbin Zheng5b463ce2013-07-25 09:12:07 +0000144 llvm_unreachable("Unexpected scalar dependence in region!");
Tobias Grosser5a56cbf2014-04-16 07:33:47 +0000145 return nullptr;
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000146}
147
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000148void BlockGenerator::copyInstScalar(ScopStmt &Stmt, const Instruction *Inst,
149 ValueMapT &BBMap, ValueMapT &GlobalMap,
150 LoopToScevMapT &LTS) {
Tobias Grosser030237d2014-02-21 15:06:05 +0000151 // We do not generate debug intrinsics as we did not investigate how to
152 // copy them correctly. At the current state, they just crash the code
153 // generation as the meta-data operands are not correctly copied.
154 if (isa<DbgInfoIntrinsic>(Inst))
155 return;
156
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000157 Instruction *NewInst = Inst->clone();
158
159 // Replace old operands with the new ones.
Tobias Grosser91f5b262014-06-04 08:06:40 +0000160 for (Value *OldOperand : Inst->operands()) {
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000161 Value *NewOperand = getNewValue(Stmt, OldOperand, BBMap, GlobalMap, LTS,
162 getLoopForInst(Inst));
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000163
164 if (!NewOperand) {
Tobias Grosserc14582f2013-02-05 18:01:29 +0000165 assert(!isa<StoreInst>(NewInst) &&
166 "Store instructions are always needed!");
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000167 delete NewInst;
168 return;
169 }
170
171 NewInst->replaceUsesOfWith(OldOperand, NewOperand);
172 }
173
174 Builder.Insert(NewInst);
175 BBMap[Inst] = NewInst;
176
177 if (!NewInst->getType()->isVoidTy())
178 NewInst->setName("p_" + Inst->getName());
179}
180
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000181Value *BlockGenerator::generateLocationAccessed(
182 ScopStmt &Stmt, const Instruction *Inst, const Value *Pointer,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000183 ValueMapT &BBMap, ValueMapT &GlobalMap, LoopToScevMapT &LTS,
184 isl_id_to_ast_expr *NewAccesses) {
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000185 const MemoryAccess &MA = Stmt.getAccessFor(Inst);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000186
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000187 isl_ast_expr *AccessExpr = isl_id_to_ast_expr_get(NewAccesses, MA.getId());
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000188
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000189 if (AccessExpr) {
190 AccessExpr = isl_ast_expr_address_of(AccessExpr);
191 return ExprBuilder->create(AccessExpr);
192 }
193
194 return getNewValue(Stmt, Pointer, BBMap, GlobalMap, LTS,
195 getLoopForInst(Inst));
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000196}
197
Tobias Grosser4d96c8d2013-03-23 01:05:07 +0000198Loop *BlockGenerator::getLoopForInst(const llvm::Instruction *Inst) {
Johannes Doerfert2ef3f4f2014-08-07 17:14:54 +0000199 return LI.getLoopFor(Inst->getParent());
Tobias Grosser369430f2013-03-22 23:42:53 +0000200}
201
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000202Value *BlockGenerator::generateScalarLoad(ScopStmt &Stmt, const LoadInst *Load,
Tobias Grossere602a072013-05-07 07:30:56 +0000203 ValueMapT &BBMap,
204 ValueMapT &GlobalMap,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000205 LoopToScevMapT &LTS,
206 isl_id_to_ast_expr *NewAccesses) {
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000207 const Value *Pointer = Load->getPointerOperand();
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000208 Value *NewPointer = generateLocationAccessed(Stmt, Load, Pointer, BBMap,
209 GlobalMap, LTS, NewAccesses);
Johannes Doerfert87901452014-10-02 16:22:19 +0000210 Value *ScalarLoad = Builder.CreateAlignedLoad(
211 NewPointer, Load->getAlignment(), Load->getName() + "_p_scalar_");
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000212 return ScalarLoad;
213}
214
Tobias Grosserc186ac72015-08-11 08:13:15 +0000215void BlockGenerator::generateScalarStore(ScopStmt &Stmt, const StoreInst *Store,
216 ValueMapT &BBMap, ValueMapT &GlobalMap,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000217 LoopToScevMapT &LTS,
218 isl_id_to_ast_expr *NewAccesses) {
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000219 const Value *Pointer = Store->getPointerOperand();
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000220 Value *NewPointer = generateLocationAccessed(Stmt, Store, Pointer, BBMap,
221 GlobalMap, LTS, NewAccesses);
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000222 Value *ValueOperand = getNewValue(Stmt, Store->getValueOperand(), BBMap,
223 GlobalMap, LTS, getLoopForInst(Store));
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000224
Tobias Grosserc186ac72015-08-11 08:13:15 +0000225 Builder.CreateAlignedStore(ValueOperand, NewPointer, Store->getAlignment());
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000226}
227
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000228void BlockGenerator::copyInstruction(ScopStmt &Stmt, const Instruction *Inst,
229 ValueMapT &BBMap, ValueMapT &GlobalMap,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000230 LoopToScevMapT &LTS,
231 isl_id_to_ast_expr *NewAccesses) {
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000232
233 // First check for possible scalar dependences for this instruction.
234 generateScalarLoads(Stmt, Inst, BBMap);
235
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000236 // Terminator instructions control the control flow. They are explicitly
237 // expressed in the clast and do not need to be copied.
238 if (Inst->isTerminator())
239 return;
240
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000241 Loop *L = getLoopForInst(Inst);
242 if ((Stmt.isBlockStmt() || !Stmt.getRegion()->contains(L)) &&
243 canSynthesize(Inst, &LI, &SE, &Stmt.getParent()->getRegion())) {
244 Value *NewValue = getNewValue(Stmt, Inst, BBMap, GlobalMap, LTS, L);
245 BBMap[Inst] = NewValue;
Tobias Grossere71c6ab2012-04-27 16:36:14 +0000246 return;
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000247 }
Tobias Grossere71c6ab2012-04-27 16:36:14 +0000248
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000249 if (const LoadInst *Load = dyn_cast<LoadInst>(Inst)) {
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000250 Value *NewLoad =
251 generateScalarLoad(Stmt, Load, BBMap, GlobalMap, LTS, NewAccesses);
Sebastian Pop3d94fed2013-05-24 18:46:02 +0000252 // Compute NewLoad before its insertion in BBMap to make the insertion
253 // deterministic.
Sebastian Pop753d43f2013-05-24 17:16:02 +0000254 BBMap[Load] = NewLoad;
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000255 return;
256 }
257
258 if (const StoreInst *Store = dyn_cast<StoreInst>(Inst)) {
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000259 generateScalarStore(Stmt, Store, BBMap, GlobalMap, LTS, NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000260 return;
261 }
262
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000263 if (const PHINode *PHI = dyn_cast<PHINode>(Inst)) {
264 copyPHIInstruction(Stmt, PHI, BBMap, GlobalMap, LTS);
265 return;
266 }
267
Johannes Doerfert3f500fa2015-01-25 18:07:30 +0000268 // Skip some special intrinsics for which we do not adjust the semantics to
269 // the new schedule. All others are handled like every other instruction.
270 if (auto *IT = dyn_cast<IntrinsicInst>(Inst)) {
271 switch (IT->getIntrinsicID()) {
272 // Lifetime markers are ignored.
273 case llvm::Intrinsic::lifetime_start:
274 case llvm::Intrinsic::lifetime_end:
275 // Invariant markers are ignored.
276 case llvm::Intrinsic::invariant_start:
277 case llvm::Intrinsic::invariant_end:
278 // Some misc annotations are ignored.
279 case llvm::Intrinsic::var_annotation:
280 case llvm::Intrinsic::ptr_annotation:
281 case llvm::Intrinsic::annotation:
282 case llvm::Intrinsic::donothing:
283 case llvm::Intrinsic::assume:
284 case llvm::Intrinsic::expect:
285 return;
286 default:
287 // Other intrinsics are copied.
288 break;
289 }
290 }
291
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000292 copyInstScalar(Stmt, Inst, BBMap, GlobalMap, LTS);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000293}
294
Johannes Doerfert275a1752015-02-24 16:16:32 +0000295void BlockGenerator::copyStmt(ScopStmt &Stmt, ValueMapT &GlobalMap,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000296 LoopToScevMapT &LTS,
297 isl_id_to_ast_expr *NewAccesses) {
Johannes Doerfert275a1752015-02-24 16:16:32 +0000298 assert(Stmt.isBlockStmt() &&
299 "Only block statements can be copied by the block generator");
300
301 ValueMapT BBMap;
302
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000303 BasicBlock *BB = Stmt.getBasicBlock();
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000304 copyBB(Stmt, BB, BBMap, GlobalMap, LTS, NewAccesses);
Johannes Doerfert275a1752015-02-24 16:16:32 +0000305}
306
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000307BasicBlock *BlockGenerator::splitBB(BasicBlock *BB) {
Tobias Grosserc14582f2013-02-05 18:01:29 +0000308 BasicBlock *CopyBB =
Johannes Doerfertb4f08eb2015-02-23 13:51:35 +0000309 SplitBlock(Builder.GetInsertBlock(), Builder.GetInsertPoint(), &DT, &LI);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000310 CopyBB->setName("polly.stmt." + BB->getName());
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000311 return CopyBB;
312}
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000313
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000314BasicBlock *BlockGenerator::copyBB(ScopStmt &Stmt, BasicBlock *BB,
315 ValueMapT &BBMap, ValueMapT &GlobalMap,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000316 LoopToScevMapT &LTS,
317 isl_id_to_ast_expr *NewAccesses) {
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000318 BasicBlock *CopyBB = splitBB(BB);
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000319 copyBB(Stmt, BB, CopyBB, BBMap, GlobalMap, LTS, NewAccesses);
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000320 return CopyBB;
321}
322
323void BlockGenerator::copyBB(ScopStmt &Stmt, BasicBlock *BB, BasicBlock *CopyBB,
324 ValueMapT &BBMap, ValueMapT &GlobalMap,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000325 LoopToScevMapT &LTS,
326 isl_id_to_ast_expr *NewAccesses) {
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000327 Builder.SetInsertPoint(CopyBB->begin());
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000328 EntryBB = &CopyBB->getParent()->getEntryBlock();
329
Tobias Grosser91f5b262014-06-04 08:06:40 +0000330 for (Instruction &Inst : *BB)
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000331 copyInstruction(Stmt, &Inst, BBMap, GlobalMap, LTS, NewAccesses);
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000332
333 // After a basic block was copied store all scalars that escape this block
334 // in their alloca. First the scalars that have dependences inside the SCoP,
335 // then the ones that might escape the SCoP.
336 generateScalarStores(Stmt, BB, BBMap, GlobalMap);
337
338 const Region &R = Stmt.getParent()->getRegion();
339 for (Instruction &Inst : *BB)
340 handleOutsideUsers(R, &Inst, BBMap[&Inst]);
341}
342
Tobias Grosser0164b8f2015-08-13 08:07:39 +0000343AllocaInst *BlockGenerator::getOrCreateAlloca(Value *ScalarBase,
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000344 ScalarAllocaMapTy &Map,
345 const char *NameExt,
346 bool *IsNew) {
347
348 // Check if an alloca was cached for the base instruction.
349 AllocaInst *&Addr = Map[ScalarBase];
350
351 // If needed indicate if it was found already or will be created.
352 if (IsNew)
353 *IsNew = (Addr == nullptr);
354
355 // If no alloca was found create one and insert it in the entry block.
356 if (!Addr) {
357 auto *Ty = ScalarBase->getType();
358 Addr = new AllocaInst(Ty, ScalarBase->getName() + NameExt);
359 Addr->insertBefore(EntryBB->getFirstInsertionPt());
360 }
361
362 return Addr;
363}
364
365void BlockGenerator::handleOutsideUsers(const Region &R, Instruction *Inst,
366 Value *InstCopy) {
Michael Kruseacb6ade2015-08-18 17:25:48 +0000367 // If there are escape users we get the alloca for this instruction and put
368 // it in the EscapeMap for later finalization. However, if the alloca was not
369 // created by an already handled scalar dependence we have to initialize it
370 // also. Lastly, if the instruction was copied multiple times we already did
371 // this and can exit.
372 if (EscapeMap.count(Inst))
373 return;
Johannes Doerferte69e1142015-08-18 11:56:00 +0000374
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000375 EscapeUserVectorTy EscapeUsers;
376 for (User *U : Inst->users()) {
377
378 // Non-instruction user will never escape.
379 Instruction *UI = dyn_cast<Instruction>(U);
380 if (!UI)
381 continue;
382
Johannes Doerfertddb83d02015-08-16 08:35:40 +0000383 if (R.contains(UI))
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000384 continue;
385
386 EscapeUsers.push_back(UI);
387 }
388
389 // Exit if no escape uses were found.
390 if (EscapeUsers.empty())
391 return;
392
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000393 // Get or create an escape alloca for this instruction.
394 bool IsNew;
395 AllocaInst *ScalarAddr =
396 getOrCreateAlloca(Inst, ScalarMap, ".escape", &IsNew);
397
398 // Remember that this instruction has escape uses and the escape alloca.
399 EscapeMap[Inst] = std::make_pair(ScalarAddr, std::move(EscapeUsers));
400
401 // If the escape alloca was just created store the instruction in there,
402 // otherwise that happened already.
403 if (IsNew) {
404 assert(InstCopy && "Except PHIs every instruction should have a copy!");
405 Builder.CreateStore(InstCopy, ScalarAddr);
406 }
407}
408
409void BlockGenerator::generateScalarLoads(ScopStmt &Stmt,
410 const Instruction *Inst,
411 ValueMapT &BBMap) {
Tobias Grosserd4dd6ec2015-07-27 17:57:58 +0000412 auto *MAL = Stmt.lookupAccessesFor(Inst);
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000413
Tobias Grosserd4dd6ec2015-07-27 17:57:58 +0000414 if (!MAL)
415 return;
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000416
Tobias Grosserd4dd6ec2015-07-27 17:57:58 +0000417 for (MemoryAccess &MA : *MAL) {
418 AllocaInst *Address;
419 if (!MA.isScalar() || !MA.isRead())
420 continue;
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000421
Tobias Grosser0164b8f2015-08-13 08:07:39 +0000422 auto Base = MA.getBaseAddr();
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000423
Tobias Grosser92245222015-07-28 14:53:44 +0000424 if (MA.getScopArrayInfo()->isPHI())
Tobias Grosserd4dd6ec2015-07-27 17:57:58 +0000425 Address = getOrCreateAlloca(Base, PHIOpMap, ".phiops");
426 else
427 Address = getOrCreateAlloca(Base, ScalarMap, ".s2a");
428
429 BBMap[Base] = Builder.CreateLoad(Address, Address->getName() + ".reload");
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000430 }
431}
432
433Value *BlockGenerator::getNewScalarValue(Value *ScalarValue, const Region &R,
434 ScalarAllocaMapTy &ReloadMap,
435 ValueMapT &BBMap,
436 ValueMapT &GlobalMap) {
437 // If the value we want to store is an instruction we might have demoted it
438 // in order to make it accessible here. In such a case a reload is
439 // necessary. If it is no instruction it will always be a value that
440 // dominates the current point and we can just use it. In total there are 4
441 // options:
442 // (1) The value is no instruction ==> use the value.
443 // (2) The value is an instruction that was split out of the region prior to
444 // code generation ==> use the instruction as it dominates the region.
445 // (3) The value is an instruction:
446 // (a) The value was defined in the current block, thus a copy is in
447 // the BBMap ==> use the mapped value.
448 // (b) The value was defined in a previous block, thus we demoted it
449 // earlier ==> use the reloaded value.
450 Instruction *ScalarValueInst = dyn_cast<Instruction>(ScalarValue);
451 if (!ScalarValueInst)
452 return ScalarValue;
453
454 if (!R.contains(ScalarValueInst)) {
455 if (Value *ScalarValueCopy = GlobalMap.lookup(ScalarValueInst))
456 return /* Case (3a) */ ScalarValueCopy;
457 else
458 return /* Case 2 */ ScalarValue;
459 }
460
461 if (Value *ScalarValueCopy = BBMap.lookup(ScalarValueInst))
462 return /* Case (3a) */ ScalarValueCopy;
463
464 // Case (3b)
Johannes Doerferte1fa6da2015-08-17 09:38:46 +0000465 Value *ReloadAddr = getOrCreateAlloca(ScalarValueInst, ReloadMap, ".s2a");
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000466 ScalarValue =
467 Builder.CreateLoad(ReloadAddr, ReloadAddr->getName() + ".reload");
468
469 return ScalarValue;
470}
471
472void BlockGenerator::generateScalarStores(ScopStmt &Stmt, BasicBlock *BB,
473 ValueMapT &BBMap,
474 ValueMapT &GlobalMap) {
475 const Region &R = Stmt.getParent()->getRegion();
476
477 assert(Stmt.isBlockStmt() && BB == Stmt.getBasicBlock() &&
478 "Region statements need to use the generateScalarStores() "
479 "function in the RegionGenerator");
480
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000481 for (MemoryAccess *MA : Stmt) {
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000482 if (!MA->isScalar() || MA->isRead())
483 continue;
484
Tobias Grosser92245222015-07-28 14:53:44 +0000485 Instruction *Base = cast<Instruction>(MA->getBaseAddr());
Johannes Doerfertd86f2152015-08-17 10:58:17 +0000486 Value *Val = MA->getAccessValue();
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000487
Tobias Grosser92245222015-07-28 14:53:44 +0000488 AllocaInst *Address = nullptr;
Johannes Doerfertd86f2152015-08-17 10:58:17 +0000489 if (MA->getScopArrayInfo()->isPHI())
Tobias Grosser92245222015-07-28 14:53:44 +0000490 Address = getOrCreateAlloca(Base, PHIOpMap, ".phiops");
Johannes Doerfertd86f2152015-08-17 10:58:17 +0000491 else
Tobias Grosser92245222015-07-28 14:53:44 +0000492 Address = getOrCreateAlloca(Base, ScalarMap, ".s2a");
Johannes Doerfertd86f2152015-08-17 10:58:17 +0000493
Tobias Grosser92245222015-07-28 14:53:44 +0000494 Val = getNewScalarValue(Val, R, ScalarMap, BBMap, GlobalMap);
495 Builder.CreateStore(Val, Address);
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000496 }
497}
498
499void BlockGenerator::createScalarInitialization(Region &R,
500 ValueMapT &GlobalMap) {
501 // The split block __just before__ the region and optimized region.
502 BasicBlock *SplitBB = R.getEnteringBlock();
503 BranchInst *SplitBBTerm = cast<BranchInst>(SplitBB->getTerminator());
504 assert(SplitBBTerm->getNumSuccessors() == 2 && "Bad region entering block!");
505
506 // Get the start block of the __optimized__ region.
507 BasicBlock *StartBB = SplitBBTerm->getSuccessor(0);
508 if (StartBB == R.getEntry())
509 StartBB = SplitBBTerm->getSuccessor(1);
510
511 // For each PHI predecessor outside the region store the incoming operand
512 // value prior to entering the optimized region.
513 Builder.SetInsertPoint(StartBB->getTerminator());
514
515 ScalarAllocaMapTy EmptyMap;
516 for (const auto &PHIOpMapping : PHIOpMap) {
517 const PHINode *PHI = cast<PHINode>(PHIOpMapping.getFirst());
518
519 // Check if this PHI has the split block as predecessor (that is the only
520 // possible predecessor outside the SCoP).
521 int idx = PHI->getBasicBlockIndex(SplitBB);
522 if (idx < 0)
523 continue;
524
525 Value *ScalarValue = PHI->getIncomingValue(idx);
526 ScalarValue =
527 getNewScalarValue(ScalarValue, R, EmptyMap, GlobalMap, GlobalMap);
528
529 // If the split block is the predecessor initialize the PHI operator alloca.
530 Builder.CreateStore(ScalarValue, PHIOpMapping.getSecond());
531 }
532}
533
534void BlockGenerator::createScalarFinalization(Region &R) {
535 // The exit block of the __unoptimized__ region.
536 BasicBlock *ExitBB = R.getExitingBlock();
537 // The merge block __just after__ the region and the optimized region.
538 BasicBlock *MergeBB = R.getExit();
539
540 // The exit block of the __optimized__ region.
541 BasicBlock *OptExitBB = *(pred_begin(MergeBB));
542 if (OptExitBB == ExitBB)
543 OptExitBB = *(++pred_begin(MergeBB));
544
545 Builder.SetInsertPoint(OptExitBB->getTerminator());
546 for (const auto &EscapeMapping : EscapeMap) {
547 // Extract the escaping instruction and the escaping users as well as the
548 // alloca the instruction was demoted to.
549 Instruction *EscapeInst = EscapeMapping.getFirst();
550 const auto &EscapeMappingValue = EscapeMapping.getSecond();
551 const EscapeUserVectorTy &EscapeUsers = EscapeMappingValue.second;
552 AllocaInst *ScalarAddr = EscapeMappingValue.first;
553
554 // Reload the demoted instruction in the optimized version of the SCoP.
555 Instruction *EscapeInstReload =
556 Builder.CreateLoad(ScalarAddr, EscapeInst->getName() + ".final_reload");
557
558 // Create the merge PHI that merges the optimized and unoptimized version.
559 PHINode *MergePHI = PHINode::Create(EscapeInst->getType(), 2,
560 EscapeInst->getName() + ".merge");
561 MergePHI->insertBefore(MergeBB->getFirstInsertionPt());
562
563 // Add the respective values to the merge PHI.
564 MergePHI->addIncoming(EscapeInstReload, OptExitBB);
565 MergePHI->addIncoming(EscapeInst, ExitBB);
566
567 // The information of scalar evolution about the escaping instruction needs
568 // to be revoked so the new merged instruction will be used.
569 if (SE.isSCEVable(EscapeInst->getType()))
570 SE.forgetValue(EscapeInst);
571
572 // Replace all uses of the demoted instruction with the merge PHI.
573 for (Instruction *EUser : EscapeUsers)
574 EUser->replaceUsesOfWith(EscapeInst, MergePHI);
575 }
576}
577
578void BlockGenerator::finalizeSCoP(Scop &S, ValueMapT &GlobalMap) {
579 createScalarInitialization(S.getRegion(), GlobalMap);
580 createScalarFinalization(S.getRegion());
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000581}
582
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000583VectorBlockGenerator::VectorBlockGenerator(BlockGenerator &BlockGen,
584 VectorValueMapT &GlobalMaps,
585 std::vector<LoopToScevMapT> &VLTS,
586 isl_map *Schedule)
587 : BlockGenerator(BlockGen), GlobalMaps(GlobalMaps), VLTS(VLTS),
588 Schedule(Schedule) {
Sebastian Popa00a0292012-12-18 07:46:06 +0000589 assert(GlobalMaps.size() > 1 && "Only one vector lane found");
590 assert(Schedule && "No statement domain provided");
591}
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000592
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000593Value *VectorBlockGenerator::getVectorValue(ScopStmt &Stmt, const Value *Old,
Tobias Grossere602a072013-05-07 07:30:56 +0000594 ValueMapT &VectorMap,
595 VectorValueMapT &ScalarMaps,
596 Loop *L) {
Hongbin Zhengfe11e282013-06-29 13:22:15 +0000597 if (Value *NewValue = VectorMap.lookup(Old))
598 return NewValue;
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000599
600 int Width = getVectorWidth();
601
602 Value *Vector = UndefValue::get(VectorType::get(Old->getType(), Width));
603
604 for (int Lane = 0; Lane < Width; Lane++)
Tobias Grosserc14582f2013-02-05 18:01:29 +0000605 Vector = Builder.CreateInsertElement(
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000606 Vector, getNewValue(Stmt, Old, ScalarMaps[Lane], GlobalMaps[Lane],
607 VLTS[Lane], L),
Tobias Grosser7242ad92013-02-22 08:07:06 +0000608 Builder.getInt32(Lane));
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000609
610 VectorMap[Old] = Vector;
611
612 return Vector;
613}
614
615Type *VectorBlockGenerator::getVectorPtrTy(const Value *Val, int Width) {
616 PointerType *PointerTy = dyn_cast<PointerType>(Val->getType());
617 assert(PointerTy && "PointerType expected");
618
619 Type *ScalarType = PointerTy->getElementType();
620 VectorType *VectorType = VectorType::get(ScalarType, Width);
621
622 return PointerType::getUnqual(VectorType);
623}
624
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000625Value *VectorBlockGenerator::generateStrideOneLoad(
626 ScopStmt &Stmt, const LoadInst *Load, VectorValueMapT &ScalarMaps,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000627 __isl_keep isl_id_to_ast_expr *NewAccesses, bool NegativeStride = false) {
Tobias Grosser0dd463f2014-03-19 19:27:24 +0000628 unsigned VectorWidth = getVectorWidth();
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000629 const Value *Pointer = Load->getPointerOperand();
Tobias Grosser0dd463f2014-03-19 19:27:24 +0000630 Type *VectorPtrType = getVectorPtrTy(Pointer, VectorWidth);
631 unsigned Offset = NegativeStride ? VectorWidth - 1 : 0;
632
Tobias Grosser5a56cbf2014-04-16 07:33:47 +0000633 Value *NewPointer = nullptr;
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000634 NewPointer =
635 generateLocationAccessed(Stmt, Load, Pointer, ScalarMaps[Offset],
636 GlobalMaps[Offset], VLTS[Offset], NewAccesses);
Tobias Grosserc14582f2013-02-05 18:01:29 +0000637 Value *VectorPtr =
638 Builder.CreateBitCast(NewPointer, VectorPtrType, "vector_ptr");
639 LoadInst *VecLoad =
640 Builder.CreateLoad(VectorPtr, Load->getName() + "_p_vec_full");
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000641 if (!Aligned)
642 VecLoad->setAlignment(8);
643
Tobias Grosser0dd463f2014-03-19 19:27:24 +0000644 if (NegativeStride) {
645 SmallVector<Constant *, 16> Indices;
646 for (int i = VectorWidth - 1; i >= 0; i--)
647 Indices.push_back(ConstantInt::get(Builder.getInt32Ty(), i));
648 Constant *SV = llvm::ConstantVector::get(Indices);
649 Value *RevVecLoad = Builder.CreateShuffleVector(
650 VecLoad, VecLoad, SV, Load->getName() + "_reverse");
651 return RevVecLoad;
652 }
653
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000654 return VecLoad;
655}
656
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000657Value *VectorBlockGenerator::generateStrideZeroLoad(
658 ScopStmt &Stmt, const LoadInst *Load, ValueMapT &BBMap,
659 __isl_keep isl_id_to_ast_expr *NewAccesses) {
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000660 const Value *Pointer = Load->getPointerOperand();
661 Type *VectorPtrType = getVectorPtrTy(Pointer, 1);
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000662 Value *NewPointer = generateLocationAccessed(
663 Stmt, Load, Pointer, BBMap, GlobalMaps[0], VLTS[0], NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000664 Value *VectorPtr = Builder.CreateBitCast(NewPointer, VectorPtrType,
665 Load->getName() + "_p_vec_p");
Tobias Grosserc14582f2013-02-05 18:01:29 +0000666 LoadInst *ScalarLoad =
667 Builder.CreateLoad(VectorPtr, Load->getName() + "_p_splat_one");
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000668
669 if (!Aligned)
670 ScalarLoad->setAlignment(8);
671
Tobias Grosserc14582f2013-02-05 18:01:29 +0000672 Constant *SplatVector = Constant::getNullValue(
673 VectorType::get(Builder.getInt32Ty(), getVectorWidth()));
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000674
Tobias Grosserc14582f2013-02-05 18:01:29 +0000675 Value *VectorLoad = Builder.CreateShuffleVector(
676 ScalarLoad, ScalarLoad, SplatVector, Load->getName() + "_p_splat");
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000677 return VectorLoad;
678}
679
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000680Value *VectorBlockGenerator::generateUnknownStrideLoad(
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000681 ScopStmt &Stmt, const LoadInst *Load, VectorValueMapT &ScalarMaps,
682 __isl_keep isl_id_to_ast_expr *NewAccesses
683
684 ) {
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000685 int VectorWidth = getVectorWidth();
686 const Value *Pointer = Load->getPointerOperand();
687 VectorType *VectorType = VectorType::get(
Tobias Grosserc14582f2013-02-05 18:01:29 +0000688 dyn_cast<PointerType>(Pointer->getType())->getElementType(), VectorWidth);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000689
690 Value *Vector = UndefValue::get(VectorType);
691
692 for (int i = 0; i < VectorWidth; i++) {
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000693 Value *NewPointer =
694 generateLocationAccessed(Stmt, Load, Pointer, ScalarMaps[i],
695 GlobalMaps[i], VLTS[i], NewAccesses);
Tobias Grosserc14582f2013-02-05 18:01:29 +0000696 Value *ScalarLoad =
697 Builder.CreateLoad(NewPointer, Load->getName() + "_p_scalar_");
698 Vector = Builder.CreateInsertElement(
699 Vector, ScalarLoad, Builder.getInt32(i), Load->getName() + "_p_vec_");
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000700 }
701
702 return Vector;
703}
704
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000705void VectorBlockGenerator::generateLoad(
706 ScopStmt &Stmt, const LoadInst *Load, ValueMapT &VectorMap,
707 VectorValueMapT &ScalarMaps, __isl_keep isl_id_to_ast_expr *NewAccesses) {
Tobias Grosser28736452015-03-23 07:00:36 +0000708 if (!VectorType::isValidElementType(Load->getType())) {
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000709 for (int i = 0; i < getVectorWidth(); i++)
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000710 ScalarMaps[i][Load] = generateScalarLoad(
711 Stmt, Load, ScalarMaps[i], GlobalMaps[i], VLTS[i], NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000712 return;
713 }
714
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000715 const MemoryAccess &Access = Stmt.getAccessFor(Load);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000716
Tobias Grosser95493982014-04-18 09:46:35 +0000717 // Make sure we have scalar values available to access the pointer to
718 // the data location.
719 extractScalarValues(Load, VectorMap, ScalarMaps);
720
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000721 Value *NewLoad;
Sebastian Popa00a0292012-12-18 07:46:06 +0000722 if (Access.isStrideZero(isl_map_copy(Schedule)))
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000723 NewLoad = generateStrideZeroLoad(Stmt, Load, ScalarMaps[0], NewAccesses);
Sebastian Popa00a0292012-12-18 07:46:06 +0000724 else if (Access.isStrideOne(isl_map_copy(Schedule)))
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000725 NewLoad = generateStrideOneLoad(Stmt, Load, ScalarMaps, NewAccesses);
Tobias Grosser0dd463f2014-03-19 19:27:24 +0000726 else if (Access.isStrideX(isl_map_copy(Schedule), -1))
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000727 NewLoad = generateStrideOneLoad(Stmt, Load, ScalarMaps, NewAccesses, true);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000728 else
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000729 NewLoad = generateUnknownStrideLoad(Stmt, Load, ScalarMaps, NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000730
731 VectorMap[Load] = NewLoad;
732}
733
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000734void VectorBlockGenerator::copyUnaryInst(ScopStmt &Stmt,
735 const UnaryInstruction *Inst,
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000736 ValueMapT &VectorMap,
737 VectorValueMapT &ScalarMaps) {
738 int VectorWidth = getVectorWidth();
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000739 Value *NewOperand = getVectorValue(Stmt, Inst->getOperand(0), VectorMap,
740 ScalarMaps, getLoopForInst(Inst));
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000741
742 assert(isa<CastInst>(Inst) && "Can not generate vector code for instruction");
743
744 const CastInst *Cast = dyn_cast<CastInst>(Inst);
745 VectorType *DestType = VectorType::get(Inst->getType(), VectorWidth);
746 VectorMap[Inst] = Builder.CreateCast(Cast->getOpcode(), NewOperand, DestType);
747}
748
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000749void VectorBlockGenerator::copyBinaryInst(ScopStmt &Stmt,
750 const BinaryOperator *Inst,
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000751 ValueMapT &VectorMap,
752 VectorValueMapT &ScalarMaps) {
Tobias Grosser369430f2013-03-22 23:42:53 +0000753 Loop *L = getLoopForInst(Inst);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000754 Value *OpZero = Inst->getOperand(0);
755 Value *OpOne = Inst->getOperand(1);
756
757 Value *NewOpZero, *NewOpOne;
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000758 NewOpZero = getVectorValue(Stmt, OpZero, VectorMap, ScalarMaps, L);
759 NewOpOne = getVectorValue(Stmt, OpOne, VectorMap, ScalarMaps, L);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000760
Tobias Grosser1bb59b02012-12-29 23:47:38 +0000761 Value *NewInst = Builder.CreateBinOp(Inst->getOpcode(), NewOpZero, NewOpOne,
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000762 Inst->getName() + "p_vec");
763 VectorMap[Inst] = NewInst;
764}
765
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000766void VectorBlockGenerator::copyStore(
767 ScopStmt &Stmt, const StoreInst *Store, ValueMapT &VectorMap,
768 VectorValueMapT &ScalarMaps, __isl_keep isl_id_to_ast_expr *NewAccesses) {
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000769 const MemoryAccess &Access = Stmt.getAccessFor(Store);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000770
771 const Value *Pointer = Store->getPointerOperand();
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000772 Value *Vector = getVectorValue(Stmt, Store->getValueOperand(), VectorMap,
Tobias Grosser369430f2013-03-22 23:42:53 +0000773 ScalarMaps, getLoopForInst(Store));
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000774
Tobias Grosser50fd7012014-04-17 23:13:49 +0000775 // Make sure we have scalar values available to access the pointer to
776 // the data location.
777 extractScalarValues(Store, VectorMap, ScalarMaps);
778
Sebastian Popa00a0292012-12-18 07:46:06 +0000779 if (Access.isStrideOne(isl_map_copy(Schedule))) {
Johannes Doerfert1947f862014-10-08 20:18:32 +0000780 Type *VectorPtrType = getVectorPtrTy(Pointer, getVectorWidth());
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000781 Value *NewPointer =
782 generateLocationAccessed(Stmt, Store, Pointer, ScalarMaps[0],
783 GlobalMaps[0], VLTS[0], NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000784
Tobias Grosserc14582f2013-02-05 18:01:29 +0000785 Value *VectorPtr =
786 Builder.CreateBitCast(NewPointer, VectorPtrType, "vector_ptr");
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000787 StoreInst *Store = Builder.CreateStore(Vector, VectorPtr);
788
789 if (!Aligned)
790 Store->setAlignment(8);
791 } else {
792 for (unsigned i = 0; i < ScalarMaps.size(); i++) {
Tobias Grosser1bb59b02012-12-29 23:47:38 +0000793 Value *Scalar = Builder.CreateExtractElement(Vector, Builder.getInt32(i));
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000794 Value *NewPointer =
795 generateLocationAccessed(Stmt, Store, Pointer, ScalarMaps[i],
796 GlobalMaps[i], VLTS[i], NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000797 Builder.CreateStore(Scalar, NewPointer);
798 }
799 }
800}
801
802bool VectorBlockGenerator::hasVectorOperands(const Instruction *Inst,
803 ValueMapT &VectorMap) {
Tobias Grosser91f5b262014-06-04 08:06:40 +0000804 for (Value *Operand : Inst->operands())
805 if (VectorMap.count(Operand))
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000806 return true;
807 return false;
808}
809
810bool VectorBlockGenerator::extractScalarValues(const Instruction *Inst,
811 ValueMapT &VectorMap,
812 VectorValueMapT &ScalarMaps) {
813 bool HasVectorOperand = false;
814 int VectorWidth = getVectorWidth();
815
Tobias Grosser91f5b262014-06-04 08:06:40 +0000816 for (Value *Operand : Inst->operands()) {
817 ValueMapT::iterator VecOp = VectorMap.find(Operand);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000818
819 if (VecOp == VectorMap.end())
820 continue;
821
822 HasVectorOperand = true;
823 Value *NewVector = VecOp->second;
824
825 for (int i = 0; i < VectorWidth; ++i) {
826 ValueMapT &SM = ScalarMaps[i];
827
828 // If there is one scalar extracted, all scalar elements should have
829 // already been extracted by the code here. So no need to check for the
830 // existance of all of them.
Tobias Grosser91f5b262014-06-04 08:06:40 +0000831 if (SM.count(Operand))
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000832 break;
833
Tobias Grosser91f5b262014-06-04 08:06:40 +0000834 SM[Operand] =
835 Builder.CreateExtractElement(NewVector, Builder.getInt32(i));
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000836 }
837 }
838
839 return HasVectorOperand;
840}
841
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000842void VectorBlockGenerator::copyInstScalarized(
843 ScopStmt &Stmt, const Instruction *Inst, ValueMapT &VectorMap,
844 VectorValueMapT &ScalarMaps, __isl_keep isl_id_to_ast_expr *NewAccesses) {
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000845 bool HasVectorOperand;
846 int VectorWidth = getVectorWidth();
847
848 HasVectorOperand = extractScalarValues(Inst, VectorMap, ScalarMaps);
849
850 for (int VectorLane = 0; VectorLane < getVectorWidth(); VectorLane++)
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000851 BlockGenerator::copyInstruction(Stmt, Inst, ScalarMaps[VectorLane],
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000852 GlobalMaps[VectorLane], VLTS[VectorLane],
853 NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000854
855 if (!VectorType::isValidElementType(Inst->getType()) || !HasVectorOperand)
856 return;
857
858 // Make the result available as vector value.
859 VectorType *VectorType = VectorType::get(Inst->getType(), VectorWidth);
860 Value *Vector = UndefValue::get(VectorType);
861
862 for (int i = 0; i < VectorWidth; i++)
863 Vector = Builder.CreateInsertElement(Vector, ScalarMaps[i][Inst],
864 Builder.getInt32(i));
865
866 VectorMap[Inst] = Vector;
867}
868
Tobias Grosserc14582f2013-02-05 18:01:29 +0000869int VectorBlockGenerator::getVectorWidth() { return GlobalMaps.size(); }
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000870
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000871void VectorBlockGenerator::copyInstruction(
872 ScopStmt &Stmt, const Instruction *Inst, ValueMapT &VectorMap,
873 VectorValueMapT &ScalarMaps, __isl_keep isl_id_to_ast_expr *NewAccesses) {
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000874 // Terminator instructions control the control flow. They are explicitly
875 // expressed in the clast and do not need to be copied.
876 if (Inst->isTerminator())
877 return;
878
Johannes Doerfert1ef52332015-02-08 20:50:42 +0000879 if (canSynthesize(Inst, &LI, &SE, &Stmt.getParent()->getRegion()))
Tobias Grossere71c6ab2012-04-27 16:36:14 +0000880 return;
881
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000882 if (const LoadInst *Load = dyn_cast<LoadInst>(Inst)) {
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000883 generateLoad(Stmt, Load, VectorMap, ScalarMaps, NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000884 return;
885 }
886
887 if (hasVectorOperands(Inst, VectorMap)) {
888 if (const StoreInst *Store = dyn_cast<StoreInst>(Inst)) {
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000889 copyStore(Stmt, Store, VectorMap, ScalarMaps, NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000890 return;
891 }
892
893 if (const UnaryInstruction *Unary = dyn_cast<UnaryInstruction>(Inst)) {
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000894 copyUnaryInst(Stmt, Unary, VectorMap, ScalarMaps);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000895 return;
896 }
897
898 if (const BinaryOperator *Binary = dyn_cast<BinaryOperator>(Inst)) {
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000899 copyBinaryInst(Stmt, Binary, VectorMap, ScalarMaps);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000900 return;
901 }
902
903 // Falltrough: We generate scalar instructions, if we don't know how to
904 // generate vector code.
905 }
906
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000907 copyInstScalarized(Stmt, Inst, VectorMap, ScalarMaps, NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000908}
909
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000910void VectorBlockGenerator::copyStmt(
911 ScopStmt &Stmt, __isl_keep isl_id_to_ast_expr *NewAccesses) {
Johannes Doerfert275a1752015-02-24 16:16:32 +0000912 assert(Stmt.isBlockStmt() && "TODO: Only block statements can be copied by "
913 "the vector block generator");
914
Johannes Doerfertbe9c9112015-02-06 21:39:31 +0000915 BasicBlock *BB = Stmt.getBasicBlock();
Tobias Grosserc14582f2013-02-05 18:01:29 +0000916 BasicBlock *CopyBB =
Johannes Doerfertb4f08eb2015-02-23 13:51:35 +0000917 SplitBlock(Builder.GetInsertBlock(), Builder.GetInsertPoint(), &DT, &LI);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000918 CopyBB->setName("polly.stmt." + BB->getName());
919 Builder.SetInsertPoint(CopyBB->begin());
920
921 // Create two maps that store the mapping from the original instructions of
922 // the old basic block to their copies in the new basic block. Those maps
923 // are basic block local.
924 //
925 // As vector code generation is supported there is one map for scalar values
926 // and one for vector values.
927 //
928 // In case we just do scalar code generation, the vectorMap is not used and
929 // the scalarMap has just one dimension, which contains the mapping.
930 //
931 // In case vector code generation is done, an instruction may either appear
932 // in the vector map once (as it is calculating >vectorwidth< values at a
933 // time. Or (if the values are calculated using scalar operations), it
934 // appears once in every dimension of the scalarMap.
935 VectorValueMapT ScalarBlockMap(getVectorWidth());
936 ValueMapT VectorBlockMap;
937
Tobias Grosser91f5b262014-06-04 08:06:40 +0000938 for (Instruction &Inst : *BB)
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000939 copyInstruction(Stmt, &Inst, VectorBlockMap, ScalarBlockMap, NewAccesses);
Hongbin Zheng3b11a162012-04-25 13:16:49 +0000940}
Johannes Doerfert275a1752015-02-24 16:16:32 +0000941
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000942BasicBlock *RegionGenerator::repairDominance(BasicBlock *BB,
943 BasicBlock *BBCopy) {
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000944
945 BasicBlock *BBIDom = DT.getNode(BB)->getIDom()->getBlock();
946 BasicBlock *BBCopyIDom = BlockMap.lookup(BBIDom);
947
948 if (BBCopyIDom)
949 DT.changeImmediateDominator(BBCopy, BBCopyIDom);
950
951 return BBCopyIDom;
952}
953
Johannes Doerfert275a1752015-02-24 16:16:32 +0000954void RegionGenerator::copyStmt(ScopStmt &Stmt, ValueMapT &GlobalMap,
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +0000955 LoopToScevMapT &LTS,
956 isl_id_to_ast_expr *IdToAstExp) {
Johannes Doerfert275a1752015-02-24 16:16:32 +0000957 assert(Stmt.isRegionStmt() &&
Tobias Grosserd3f21832015-08-01 06:26:51 +0000958 "Only region statements can be copied by the region generator");
Johannes Doerfert275a1752015-02-24 16:16:32 +0000959
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000960 // Forget all old mappings.
961 BlockMap.clear();
962 RegionMaps.clear();
963 IncompletePHINodeMap.clear();
964
Johannes Doerfert275a1752015-02-24 16:16:32 +0000965 // The region represented by the statement.
966 Region *R = Stmt.getRegion();
967
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000968 // Create a dedicated entry for the region where we can reload all demoted
969 // inputs.
970 BasicBlock *EntryBB = R->getEntry();
971 BasicBlock *EntryBBCopy =
972 SplitBlock(Builder.GetInsertBlock(), Builder.GetInsertPoint(), &DT, &LI);
973 EntryBBCopy->setName("polly.stmt." + EntryBB->getName() + ".entry");
974 Builder.SetInsertPoint(EntryBBCopy->begin());
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000975
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000976 for (auto PI = pred_begin(EntryBB), PE = pred_end(EntryBB); PI != PE; ++PI)
977 if (!R->contains(*PI))
978 BlockMap[*PI] = EntryBBCopy;
Johannes Doerfert275a1752015-02-24 16:16:32 +0000979
980 // Iterate over all blocks in the region in a breadth-first search.
981 std::deque<BasicBlock *> Blocks;
982 SmallPtrSet<BasicBlock *, 8> SeenBlocks;
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000983 Blocks.push_back(EntryBB);
984 SeenBlocks.insert(EntryBB);
Johannes Doerfert275a1752015-02-24 16:16:32 +0000985
986 while (!Blocks.empty()) {
987 BasicBlock *BB = Blocks.front();
988 Blocks.pop_front();
989
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000990 // First split the block and update dominance information.
991 BasicBlock *BBCopy = splitBB(BB);
Johannes Doerfertecff11d2015-05-22 23:43:58 +0000992 BasicBlock *BBCopyIDom = repairDominance(BB, BBCopy);
993
994 // In order to remap PHI nodes we store also basic block mappings.
995 BlockMap[BB] = BBCopy;
Johannes Doerfert514f6ef2015-02-27 18:29:04 +0000996
997 // Get the mapping for this block and initialize it with the mapping
998 // available at its immediate dominator (in the new region).
999 ValueMapT &RegionMap = RegionMaps[BBCopy];
1000 RegionMap = RegionMaps[BBCopyIDom];
1001
Johannes Doerfert275a1752015-02-24 16:16:32 +00001002 // Copy the block with the BlockGenerator.
Tobias Grosser2d1ed0b2015-08-27 07:28:16 +00001003 copyBB(Stmt, BB, BBCopy, RegionMap, GlobalMap, LTS, IdToAstExp);
Johannes Doerfert275a1752015-02-24 16:16:32 +00001004
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001005 // In order to remap PHI nodes we store also basic block mappings.
1006 BlockMap[BB] = BBCopy;
1007
1008 // Add values to incomplete PHI nodes waiting for this block to be copied.
1009 for (const PHINodePairTy &PHINodePair : IncompletePHINodeMap[BB])
1010 addOperandToPHI(Stmt, PHINodePair.first, PHINodePair.second, BB,
1011 GlobalMap, LTS);
1012 IncompletePHINodeMap[BB].clear();
1013
Johannes Doerfert275a1752015-02-24 16:16:32 +00001014 // And continue with new successors inside the region.
1015 for (auto SI = succ_begin(BB), SE = succ_end(BB); SI != SE; SI++)
1016 if (R->contains(*SI) && SeenBlocks.insert(*SI).second)
1017 Blocks.push_back(*SI);
Johannes Doerfert275a1752015-02-24 16:16:32 +00001018 }
1019
1020 // Now create a new dedicated region exit block and add it to the region map.
Johannes Doerfert514f6ef2015-02-27 18:29:04 +00001021 BasicBlock *ExitBBCopy =
Johannes Doerfert275a1752015-02-24 16:16:32 +00001022 SplitBlock(Builder.GetInsertBlock(), Builder.GetInsertPoint(), &DT, &LI);
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001023 ExitBBCopy->setName("polly.stmt." + R->getExit()->getName() + ".exit");
Johannes Doerfert514f6ef2015-02-27 18:29:04 +00001024 BlockMap[R->getExit()] = ExitBBCopy;
1025
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001026 repairDominance(R->getExit(), ExitBBCopy);
Johannes Doerfert275a1752015-02-24 16:16:32 +00001027
1028 // As the block generator doesn't handle control flow we need to add the
1029 // region control flow by hand after all blocks have been copied.
1030 for (BasicBlock *BB : SeenBlocks) {
1031
1032 BranchInst *BI = cast<BranchInst>(BB->getTerminator());
1033
Johannes Doerfert514f6ef2015-02-27 18:29:04 +00001034 BasicBlock *BBCopy = BlockMap[BB];
Johannes Doerfert275a1752015-02-24 16:16:32 +00001035 Instruction *BICopy = BBCopy->getTerminator();
1036
Johannes Doerfert514f6ef2015-02-27 18:29:04 +00001037 ValueMapT &RegionMap = RegionMaps[BBCopy];
1038 RegionMap.insert(BlockMap.begin(), BlockMap.end());
1039
Tobias Grosser45e79442015-08-01 09:07:57 +00001040 Builder.SetInsertPoint(BICopy);
Johannes Doerfert275a1752015-02-24 16:16:32 +00001041 copyInstScalar(Stmt, BI, RegionMap, GlobalMap, LTS);
1042 BICopy->eraseFromParent();
1043 }
1044
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001045 // Add counting PHI nodes to all loops in the region that can be used as
1046 // replacement for SCEVs refering to the old loop.
1047 for (BasicBlock *BB : SeenBlocks) {
1048 Loop *L = LI.getLoopFor(BB);
1049 if (L == nullptr || L->getHeader() != BB)
1050 continue;
1051
1052 BasicBlock *BBCopy = BlockMap[BB];
1053 Value *NullVal = Builder.getInt32(0);
1054 PHINode *LoopPHI =
1055 PHINode::Create(Builder.getInt32Ty(), 2, "polly.subregion.iv");
1056 Instruction *LoopPHIInc = BinaryOperator::CreateAdd(
1057 LoopPHI, Builder.getInt32(1), "polly.subregion.iv.inc");
1058 LoopPHI->insertBefore(BBCopy->begin());
1059 LoopPHIInc->insertBefore(BBCopy->getTerminator());
1060
1061 for (auto *PredBB : make_range(pred_begin(BB), pred_end(BB))) {
1062 if (!R->contains(PredBB))
1063 continue;
1064 if (L->contains(PredBB))
1065 LoopPHI->addIncoming(LoopPHIInc, BlockMap[PredBB]);
1066 else
1067 LoopPHI->addIncoming(NullVal, BlockMap[PredBB]);
1068 }
1069
1070 for (auto *PredBBCopy : make_range(pred_begin(BBCopy), pred_end(BBCopy)))
1071 if (LoopPHI->getBasicBlockIndex(PredBBCopy) < 0)
1072 LoopPHI->addIncoming(NullVal, PredBBCopy);
1073
1074 LTS[L] = SE.getUnknown(LoopPHI);
1075 }
1076
1077 // Add all mappings from the region to the global map so outside uses will use
1078 // the copied instructions.
1079 for (auto &BBMap : RegionMaps)
1080 GlobalMap.insert(BBMap.second.begin(), BBMap.second.end());
1081
Johannes Doerfert275a1752015-02-24 16:16:32 +00001082 // Reset the old insert point for the build.
Johannes Doerfert514f6ef2015-02-27 18:29:04 +00001083 Builder.SetInsertPoint(ExitBBCopy->begin());
Johannes Doerfert275a1752015-02-24 16:16:32 +00001084}
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001085
1086void RegionGenerator::generateScalarLoads(ScopStmt &Stmt,
1087 const Instruction *Inst,
1088 ValueMapT &BBMap) {
1089
1090 // Inside a non-affine region PHI nodes are copied not demoted. Once the
1091 // phi is copied it will reload all inputs from outside the region, hence
1092 // we do not need to generate code for the read access of the operands of a
1093 // PHI.
1094 if (isa<PHINode>(Inst))
1095 return;
1096
1097 return BlockGenerator::generateScalarLoads(Stmt, Inst, BBMap);
1098}
1099
1100void RegionGenerator::generateScalarStores(ScopStmt &Stmt, BasicBlock *BB,
1101 ValueMapT &BBMap,
1102 ValueMapT &GlobalMap) {
1103 const Region &R = Stmt.getParent()->getRegion();
1104
Tobias Grosser75296902015-08-21 19:23:21 +00001105 assert(Stmt.getRegion() &&
1106 "Block statements need to use the generateScalarStores() "
1107 "function in the BlockGenerator");
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001108
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001109 for (MemoryAccess *MA : Stmt) {
1110
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001111 if (!MA->isScalar() || MA->isRead())
1112 continue;
1113
1114 Instruction *ScalarBase = cast<Instruction>(MA->getBaseAddr());
1115 Instruction *ScalarInst = MA->getAccessInstruction();
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001116
Tobias Grosser62139132015-08-02 16:17:41 +00001117 // Only generate accesses that belong to this basic block.
1118 if (ScalarInst->getParent() != BB)
1119 continue;
1120
Johannes Doerfertd86f2152015-08-17 10:58:17 +00001121 Value *Val = MA->getAccessValue();
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001122 AllocaInst *ScalarAddr = nullptr;
1123
Johannes Doerfertd86f2152015-08-17 10:58:17 +00001124 if (MA->getScopArrayInfo()->isPHI())
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001125 ScalarAddr = getOrCreateAlloca(ScalarBase, PHIOpMap, ".phiops");
Johannes Doerfertd86f2152015-08-17 10:58:17 +00001126 else
Tobias Grosser92245222015-07-28 14:53:44 +00001127 ScalarAddr = getOrCreateAlloca(ScalarBase, ScalarMap, ".s2a");
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001128
Tobias Grosser92245222015-07-28 14:53:44 +00001129 Val = getNewScalarValue(Val, R, ScalarMap, BBMap, GlobalMap);
1130 Builder.CreateStore(Val, ScalarAddr);
Johannes Doerfertecff11d2015-05-22 23:43:58 +00001131 }
1132}
1133
1134void RegionGenerator::addOperandToPHI(ScopStmt &Stmt, const PHINode *PHI,
1135 PHINode *PHICopy, BasicBlock *IncomingBB,
1136 ValueMapT &GlobalMap,
1137 LoopToScevMapT &LTS) {
1138 Region *StmtR = Stmt.getRegion();
1139
1140 // If the incoming block was not yet copied mark this PHI as incomplete.
1141 // Once the block will be copied the incoming value will be added.
1142 BasicBlock *BBCopy = BlockMap[IncomingBB];
1143 if (!BBCopy) {
1144 assert(StmtR->contains(IncomingBB) &&
1145 "Bad incoming block for PHI in non-affine region");
1146 IncompletePHINodeMap[IncomingBB].push_back(std::make_pair(PHI, PHICopy));
1147 return;
1148 }
1149
1150 Value *OpCopy = nullptr;
1151 if (StmtR->contains(IncomingBB)) {
1152 assert(RegionMaps.count(BBCopy) &&
1153 "Incoming PHI block did not have a BBMap");
1154 ValueMapT &BBCopyMap = RegionMaps[BBCopy];
1155
1156 Value *Op = PHI->getIncomingValueForBlock(IncomingBB);
1157 OpCopy =
1158 getNewValue(Stmt, Op, BBCopyMap, GlobalMap, LTS, getLoopForInst(PHI));
1159 } else {
1160
1161 if (PHICopy->getBasicBlockIndex(BBCopy) >= 0)
1162 return;
1163
1164 AllocaInst *PHIOpAddr =
1165 getOrCreateAlloca(const_cast<PHINode *>(PHI), PHIOpMap, ".phiops");
1166 OpCopy = new LoadInst(PHIOpAddr, PHIOpAddr->getName() + ".reload",
1167 BlockMap[IncomingBB]->getTerminator());
1168 }
1169
1170 assert(OpCopy && "Incoming PHI value was not copied properly");
1171 assert(BBCopy && "Incoming PHI block was not copied properly");
1172 PHICopy->addIncoming(OpCopy, BBCopy);
1173}
1174
1175Value *RegionGenerator::copyPHIInstruction(ScopStmt &Stmt, const PHINode *PHI,
1176 ValueMapT &BBMap,
1177 ValueMapT &GlobalMap,
1178 LoopToScevMapT &LTS) {
1179 unsigned NumIncoming = PHI->getNumIncomingValues();
1180 PHINode *PHICopy =
1181 Builder.CreatePHI(PHI->getType(), NumIncoming, "polly." + PHI->getName());
1182 PHICopy->moveBefore(PHICopy->getParent()->getFirstNonPHI());
1183 BBMap[PHI] = PHICopy;
1184
1185 for (unsigned u = 0; u < NumIncoming; u++)
1186 addOperandToPHI(Stmt, PHI, PHICopy, PHI->getIncomingBlock(u), GlobalMap,
1187 LTS);
1188 return PHICopy;
1189}