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Jia Liub22310f2012-02-18 12:03:15 +00001//===-- ARMBaseInstrInfo.cpp - ARM Instruction Information ----------------===//
David Goodwinaf7451b2009-07-08 16:09:28 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file contains the Base ARM implementation of the TargetInstrInfo class.
11//
12//===----------------------------------------------------------------------===//
13
David Goodwinaf7451b2009-07-08 16:09:28 +000014#include "ARM.h"
Amara Emerson52cfb6a2013-10-03 09:31:51 +000015#include "ARMBaseInstrInfo.h"
Craig Topper5fa0caa2012-03-26 00:45:15 +000016#include "ARMBaseRegisterInfo.h"
Evan Chenga8e8a7c2009-11-07 04:04:34 +000017#include "ARMConstantPoolValue.h"
Amara Emerson52cfb6a2013-10-03 09:31:51 +000018#include "ARMFeatures.h"
Evan Cheng62c7b5b2010-12-05 22:04:16 +000019#include "ARMHazardRecognizer.h"
David Goodwinaf7451b2009-07-08 16:09:28 +000020#include "ARMMachineFunctionInfo.h"
Evan Chenga20cde32011-07-20 23:34:39 +000021#include "MCTargetDesc/ARMAddressingModes.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000022#include "llvm/ADT/STLExtras.h"
David Goodwinaf7451b2009-07-08 16:09:28 +000023#include "llvm/CodeGen/LiveVariables.h"
Evan Chenga8e8a7c2009-11-07 04:04:34 +000024#include "llvm/CodeGen/MachineConstantPool.h"
David Goodwinaf7451b2009-07-08 16:09:28 +000025#include "llvm/CodeGen/MachineFrameInfo.h"
26#include "llvm/CodeGen/MachineInstrBuilder.h"
27#include "llvm/CodeGen/MachineJumpTableInfo.h"
Anton Korobeynikov75b59fb2009-10-07 00:06:35 +000028#include "llvm/CodeGen/MachineMemOperand.h"
Evan Cheng168ced92010-05-22 01:47:14 +000029#include "llvm/CodeGen/MachineRegisterInfo.h"
Evan Chenga20cde32011-07-20 23:34:39 +000030#include "llvm/CodeGen/SelectionDAGNodes.h"
Chandler Carruth9fb823b2013-01-02 11:36:10 +000031#include "llvm/IR/Constants.h"
32#include "llvm/IR/Function.h"
33#include "llvm/IR/GlobalValue.h"
Chris Lattner7b26fce2009-08-22 20:48:53 +000034#include "llvm/MC/MCAsmInfo.h"
Jakub Staszak9b07c0a2011-07-10 02:58:07 +000035#include "llvm/Support/BranchProbability.h"
David Goodwinaf7451b2009-07-08 16:09:28 +000036#include "llvm/Support/CommandLine.h"
Anton Korobeynikov14635da2009-11-02 00:10:38 +000037#include "llvm/Support/Debug.h"
Torok Edwin56d06592009-07-11 20:10:48 +000038#include "llvm/Support/ErrorHandling.h"
Evan Cheng1e210d02011-06-28 20:07:07 +000039
Juergen Ributzkad12ccbd2013-11-19 00:57:56 +000040#define GET_INSTRINFO_CTOR_DTOR
Evan Cheng1e210d02011-06-28 20:07:07 +000041#include "ARMGenInstrInfo.inc"
42
David Goodwinaf7451b2009-07-08 16:09:28 +000043using namespace llvm;
44
45static cl::opt<bool>
46EnableARM3Addr("enable-arm-3-addr-conv", cl::Hidden,
47 cl::desc("Enable ARM 2-addr to 3-addr conv"));
48
Jakob Stoklund Olesencd893392011-08-31 17:00:02 +000049static cl::opt<bool>
Jakob Stoklund Olesen653183f2011-11-15 23:53:18 +000050WidenVMOVS("widen-vmovs", cl::Hidden, cl::init(true),
Jakob Stoklund Olesencd893392011-08-31 17:00:02 +000051 cl::desc("Widen ARM vmovs to vmovd when possible"));
52
Bob Wilsone8a549c2012-09-29 21:43:49 +000053static cl::opt<unsigned>
54SwiftPartialUpdateClearance("swift-partial-update-clearance",
55 cl::Hidden, cl::init(12),
56 cl::desc("Clearance before partial register updates"));
57
Evan Cheng62c7b5b2010-12-05 22:04:16 +000058/// ARM_MLxEntry - Record information about MLA / MLS instructions.
59struct ARM_MLxEntry {
Craig Topper2fbd1302012-05-24 03:59:11 +000060 uint16_t MLxOpc; // MLA / MLS opcode
61 uint16_t MulOpc; // Expanded multiplication opcode
62 uint16_t AddSubOpc; // Expanded add / sub opcode
Evan Cheng62c7b5b2010-12-05 22:04:16 +000063 bool NegAcc; // True if the acc is negated before the add / sub.
64 bool HasLane; // True if instruction has an extra "lane" operand.
65};
66
67static const ARM_MLxEntry ARM_MLxTable[] = {
68 // MLxOpc, MulOpc, AddSubOpc, NegAcc, HasLane
69 // fp scalar ops
70 { ARM::VMLAS, ARM::VMULS, ARM::VADDS, false, false },
71 { ARM::VMLSS, ARM::VMULS, ARM::VSUBS, false, false },
72 { ARM::VMLAD, ARM::VMULD, ARM::VADDD, false, false },
73 { ARM::VMLSD, ARM::VMULD, ARM::VSUBD, false, false },
Evan Cheng62c7b5b2010-12-05 22:04:16 +000074 { ARM::VNMLAS, ARM::VNMULS, ARM::VSUBS, true, false },
75 { ARM::VNMLSS, ARM::VMULS, ARM::VSUBS, true, false },
76 { ARM::VNMLAD, ARM::VNMULD, ARM::VSUBD, true, false },
77 { ARM::VNMLSD, ARM::VMULD, ARM::VSUBD, true, false },
78
79 // fp SIMD ops
80 { ARM::VMLAfd, ARM::VMULfd, ARM::VADDfd, false, false },
81 { ARM::VMLSfd, ARM::VMULfd, ARM::VSUBfd, false, false },
82 { ARM::VMLAfq, ARM::VMULfq, ARM::VADDfq, false, false },
83 { ARM::VMLSfq, ARM::VMULfq, ARM::VSUBfq, false, false },
84 { ARM::VMLAslfd, ARM::VMULslfd, ARM::VADDfd, false, true },
85 { ARM::VMLSslfd, ARM::VMULslfd, ARM::VSUBfd, false, true },
86 { ARM::VMLAslfq, ARM::VMULslfq, ARM::VADDfq, false, true },
87 { ARM::VMLSslfq, ARM::VMULslfq, ARM::VSUBfq, false, true },
88};
89
Anton Korobeynikov14635da2009-11-02 00:10:38 +000090ARMBaseInstrInfo::ARMBaseInstrInfo(const ARMSubtarget& STI)
Evan Cheng703a0fb2011-07-01 17:57:27 +000091 : ARMGenInstrInfo(ARM::ADJCALLSTACKDOWN, ARM::ADJCALLSTACKUP),
Anton Korobeynikov14635da2009-11-02 00:10:38 +000092 Subtarget(STI) {
Evan Cheng62c7b5b2010-12-05 22:04:16 +000093 for (unsigned i = 0, e = array_lengthof(ARM_MLxTable); i != e; ++i) {
94 if (!MLxEntryMap.insert(std::make_pair(ARM_MLxTable[i].MLxOpc, i)).second)
95 assert(false && "Duplicated entries?");
96 MLxHazardOpcodes.insert(ARM_MLxTable[i].AddSubOpc);
97 MLxHazardOpcodes.insert(ARM_MLxTable[i].MulOpc);
98 }
99}
100
Andrew Trick10ffc2b2010-12-24 05:03:26 +0000101// Use a ScoreboardHazardRecognizer for prepass ARM scheduling. TargetInstrImpl
102// currently defaults to no prepass hazard recognizer.
Evan Cheng62c7b5b2010-12-05 22:04:16 +0000103ScheduleHazardRecognizer *ARMBaseInstrInfo::
Andrew Trick10ffc2b2010-12-24 05:03:26 +0000104CreateTargetHazardRecognizer(const TargetMachine *TM,
105 const ScheduleDAG *DAG) const {
Andrew Trick47ff14b2011-01-21 05:51:33 +0000106 if (usePreRAHazardRecognizer()) {
Andrew Trick10ffc2b2010-12-24 05:03:26 +0000107 const InstrItineraryData *II = TM->getInstrItineraryData();
108 return new ScoreboardHazardRecognizer(II, DAG, "pre-RA-sched");
109 }
Jakob Stoklund Olesen9de596e2012-11-28 02:35:17 +0000110 return TargetInstrInfo::CreateTargetHazardRecognizer(TM, DAG);
Andrew Trick10ffc2b2010-12-24 05:03:26 +0000111}
112
113ScheduleHazardRecognizer *ARMBaseInstrInfo::
114CreateTargetPostRAHazardRecognizer(const InstrItineraryData *II,
115 const ScheduleDAG *DAG) const {
Evan Cheng62c7b5b2010-12-05 22:04:16 +0000116 if (Subtarget.isThumb2() || Subtarget.hasVFP2())
Bill Wendlingf95178e2013-06-07 05:54:19 +0000117 return (ScheduleHazardRecognizer *)new ARMHazardRecognizer(II, DAG);
Jakob Stoklund Olesen9de596e2012-11-28 02:35:17 +0000118 return TargetInstrInfo::CreateTargetPostRAHazardRecognizer(II, DAG);
David Goodwinaf7451b2009-07-08 16:09:28 +0000119}
120
121MachineInstr *
122ARMBaseInstrInfo::convertToThreeAddress(MachineFunction::iterator &MFI,
123 MachineBasicBlock::iterator &MBBI,
124 LiveVariables *LV) const {
Evan Cheng0e075e22009-07-27 18:44:00 +0000125 // FIXME: Thumb2 support.
126
David Goodwinaf7451b2009-07-08 16:09:28 +0000127 if (!EnableARM3Addr)
128 return NULL;
129
130 MachineInstr *MI = MBBI;
131 MachineFunction &MF = *MI->getParent()->getParent();
Bruno Cardoso Lopesc2f87b72010-06-08 22:51:23 +0000132 uint64_t TSFlags = MI->getDesc().TSFlags;
David Goodwinaf7451b2009-07-08 16:09:28 +0000133 bool isPre = false;
134 switch ((TSFlags & ARMII::IndexModeMask) >> ARMII::IndexModeShift) {
135 default: return NULL;
136 case ARMII::IndexModePre:
137 isPre = true;
138 break;
139 case ARMII::IndexModePost:
140 break;
141 }
142
143 // Try splitting an indexed load/store to an un-indexed one plus an add/sub
144 // operation.
145 unsigned MemOpc = getUnindexedOpcode(MI->getOpcode());
146 if (MemOpc == 0)
147 return NULL;
148
149 MachineInstr *UpdateMI = NULL;
150 MachineInstr *MemMI = NULL;
151 unsigned AddrMode = (TSFlags & ARMII::AddrModeMask);
Evan Cheng6cc775f2011-06-28 19:10:37 +0000152 const MCInstrDesc &MCID = MI->getDesc();
153 unsigned NumOps = MCID.getNumOperands();
Evan Cheng7f8e5632011-12-07 07:15:52 +0000154 bool isLoad = !MI->mayStore();
David Goodwinaf7451b2009-07-08 16:09:28 +0000155 const MachineOperand &WB = isLoad ? MI->getOperand(1) : MI->getOperand(0);
156 const MachineOperand &Base = MI->getOperand(2);
157 const MachineOperand &Offset = MI->getOperand(NumOps-3);
158 unsigned WBReg = WB.getReg();
159 unsigned BaseReg = Base.getReg();
160 unsigned OffReg = Offset.getReg();
161 unsigned OffImm = MI->getOperand(NumOps-2).getImm();
162 ARMCC::CondCodes Pred = (ARMCC::CondCodes)MI->getOperand(NumOps-1).getImm();
163 switch (AddrMode) {
Craig Toppere55c5562012-02-07 02:50:20 +0000164 default: llvm_unreachable("Unknown indexed op!");
David Goodwinaf7451b2009-07-08 16:09:28 +0000165 case ARMII::AddrMode2: {
166 bool isSub = ARM_AM::getAM2Op(OffImm) == ARM_AM::sub;
167 unsigned Amt = ARM_AM::getAM2Offset(OffImm);
168 if (OffReg == 0) {
Evan Chenge3a53c42009-07-08 21:03:57 +0000169 if (ARM_AM::getSOImmVal(Amt) == -1)
David Goodwinaf7451b2009-07-08 16:09:28 +0000170 // Can't encode it in a so_imm operand. This transformation will
171 // add more than 1 instruction. Abandon!
172 return NULL;
173 UpdateMI = BuildMI(MF, MI->getDebugLoc(),
Evan Cheng0e075e22009-07-27 18:44:00 +0000174 get(isSub ? ARM::SUBri : ARM::ADDri), WBReg)
Evan Chenge3a53c42009-07-08 21:03:57 +0000175 .addReg(BaseReg).addImm(Amt)
David Goodwinaf7451b2009-07-08 16:09:28 +0000176 .addImm(Pred).addReg(0).addReg(0);
177 } else if (Amt != 0) {
178 ARM_AM::ShiftOpc ShOpc = ARM_AM::getAM2ShiftOpc(OffImm);
179 unsigned SOOpc = ARM_AM::getSORegOpc(ShOpc, Amt);
180 UpdateMI = BuildMI(MF, MI->getDebugLoc(),
Owen Andersonb595ed02011-07-21 18:54:16 +0000181 get(isSub ? ARM::SUBrsi : ARM::ADDrsi), WBReg)
David Goodwinaf7451b2009-07-08 16:09:28 +0000182 .addReg(BaseReg).addReg(OffReg).addReg(0).addImm(SOOpc)
183 .addImm(Pred).addReg(0).addReg(0);
184 } else
185 UpdateMI = BuildMI(MF, MI->getDebugLoc(),
Evan Cheng0e075e22009-07-27 18:44:00 +0000186 get(isSub ? ARM::SUBrr : ARM::ADDrr), WBReg)
David Goodwinaf7451b2009-07-08 16:09:28 +0000187 .addReg(BaseReg).addReg(OffReg)
188 .addImm(Pred).addReg(0).addReg(0);
189 break;
190 }
191 case ARMII::AddrMode3 : {
192 bool isSub = ARM_AM::getAM3Op(OffImm) == ARM_AM::sub;
193 unsigned Amt = ARM_AM::getAM3Offset(OffImm);
194 if (OffReg == 0)
195 // Immediate is 8-bits. It's guaranteed to fit in a so_imm operand.
196 UpdateMI = BuildMI(MF, MI->getDebugLoc(),
Evan Cheng0e075e22009-07-27 18:44:00 +0000197 get(isSub ? ARM::SUBri : ARM::ADDri), WBReg)
David Goodwinaf7451b2009-07-08 16:09:28 +0000198 .addReg(BaseReg).addImm(Amt)
199 .addImm(Pred).addReg(0).addReg(0);
200 else
201 UpdateMI = BuildMI(MF, MI->getDebugLoc(),
Evan Cheng0e075e22009-07-27 18:44:00 +0000202 get(isSub ? ARM::SUBrr : ARM::ADDrr), WBReg)
David Goodwinaf7451b2009-07-08 16:09:28 +0000203 .addReg(BaseReg).addReg(OffReg)
204 .addImm(Pred).addReg(0).addReg(0);
205 break;
206 }
207 }
208
209 std::vector<MachineInstr*> NewMIs;
210 if (isPre) {
211 if (isLoad)
212 MemMI = BuildMI(MF, MI->getDebugLoc(),
213 get(MemOpc), MI->getOperand(0).getReg())
Jim Grosbach1e4d9a12010-10-26 22:37:02 +0000214 .addReg(WBReg).addImm(0).addImm(Pred);
David Goodwinaf7451b2009-07-08 16:09:28 +0000215 else
216 MemMI = BuildMI(MF, MI->getDebugLoc(),
217 get(MemOpc)).addReg(MI->getOperand(1).getReg())
218 .addReg(WBReg).addReg(0).addImm(0).addImm(Pred);
219 NewMIs.push_back(MemMI);
220 NewMIs.push_back(UpdateMI);
221 } else {
222 if (isLoad)
223 MemMI = BuildMI(MF, MI->getDebugLoc(),
224 get(MemOpc), MI->getOperand(0).getReg())
Jim Grosbach1e4d9a12010-10-26 22:37:02 +0000225 .addReg(BaseReg).addImm(0).addImm(Pred);
David Goodwinaf7451b2009-07-08 16:09:28 +0000226 else
227 MemMI = BuildMI(MF, MI->getDebugLoc(),
228 get(MemOpc)).addReg(MI->getOperand(1).getReg())
229 .addReg(BaseReg).addReg(0).addImm(0).addImm(Pred);
230 if (WB.isDead())
231 UpdateMI->getOperand(0).setIsDead();
232 NewMIs.push_back(UpdateMI);
233 NewMIs.push_back(MemMI);
234 }
235
236 // Transfer LiveVariables states, kill / dead info.
237 if (LV) {
238 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
239 MachineOperand &MO = MI->getOperand(i);
Jakob Stoklund Olesen2fb5b312011-01-10 02:58:51 +0000240 if (MO.isReg() && TargetRegisterInfo::isVirtualRegister(MO.getReg())) {
David Goodwinaf7451b2009-07-08 16:09:28 +0000241 unsigned Reg = MO.getReg();
242
243 LiveVariables::VarInfo &VI = LV->getVarInfo(Reg);
244 if (MO.isDef()) {
245 MachineInstr *NewMI = (Reg == WBReg) ? UpdateMI : MemMI;
246 if (MO.isDead())
247 LV->addVirtualRegisterDead(Reg, NewMI);
248 }
249 if (MO.isUse() && MO.isKill()) {
250 for (unsigned j = 0; j < 2; ++j) {
251 // Look at the two new MI's in reverse order.
252 MachineInstr *NewMI = NewMIs[j];
253 if (!NewMI->readsRegister(Reg))
254 continue;
255 LV->addVirtualRegisterKilled(Reg, NewMI);
256 if (VI.removeKill(MI))
257 VI.Kills.push_back(NewMI);
258 break;
259 }
260 }
261 }
262 }
263 }
264
265 MFI->insert(MBBI, NewMIs[1]);
266 MFI->insert(MBBI, NewMIs[0]);
267 return NewMIs[0];
268}
269
270// Branch analysis.
271bool
272ARMBaseInstrInfo::AnalyzeBranch(MachineBasicBlock &MBB,MachineBasicBlock *&TBB,
273 MachineBasicBlock *&FBB,
274 SmallVectorImpl<MachineOperand> &Cond,
275 bool AllowModify) const {
Lang Hames24864fe2013-07-19 23:52:47 +0000276 TBB = 0;
277 FBB = 0;
278
David Goodwinaf7451b2009-07-08 16:09:28 +0000279 MachineBasicBlock::iterator I = MBB.end();
Dale Johannesen4244d122010-04-02 01:38:09 +0000280 if (I == MBB.begin())
Lang Hames24864fe2013-07-19 23:52:47 +0000281 return false; // Empty blocks are easy.
Dale Johannesen4244d122010-04-02 01:38:09 +0000282 --I;
Lang Hames24864fe2013-07-19 23:52:47 +0000283
284 // Walk backwards from the end of the basic block until the branch is
285 // analyzed or we give up.
Lang Hames18c98a52013-12-20 20:27:51 +0000286 while (isPredicated(I) || I->isTerminator() || I->isDebugValue()) {
Lang Hames24864fe2013-07-19 23:52:47 +0000287
288 // Flag to be raised on unanalyzeable instructions. This is useful in cases
289 // where we want to clean up on the end of the basic block before we bail
290 // out.
291 bool CantAnalyze = false;
292
293 // Skip over DEBUG values and predicated nonterminators.
294 while (I->isDebugValue() || !I->isTerminator()) {
295 if (I == MBB.begin())
296 return false;
297 --I;
298 }
299
300 if (isIndirectBranchOpcode(I->getOpcode()) ||
301 isJumpTableBranchOpcode(I->getOpcode())) {
302 // Indirect branches and jump tables can't be analyzed, but we still want
303 // to clean up any instructions at the tail of the basic block.
304 CantAnalyze = true;
305 } else if (isUncondBranchOpcode(I->getOpcode())) {
306 TBB = I->getOperand(0).getMBB();
307 } else if (isCondBranchOpcode(I->getOpcode())) {
308 // Bail out if we encounter multiple conditional branches.
309 if (!Cond.empty())
310 return true;
311
312 assert(!FBB && "FBB should have been null.");
313 FBB = TBB;
314 TBB = I->getOperand(0).getMBB();
315 Cond.push_back(I->getOperand(1));
316 Cond.push_back(I->getOperand(2));
317 } else if (I->isReturn()) {
318 // Returns can't be analyzed, but we should run cleanup.
319 CantAnalyze = !isPredicated(I);
320 } else {
321 // We encountered other unrecognized terminator. Bail out immediately.
322 return true;
323 }
324
325 // Cleanup code - to be run for unpredicated unconditional branches and
326 // returns.
327 if (!isPredicated(I) &&
328 (isUncondBranchOpcode(I->getOpcode()) ||
329 isIndirectBranchOpcode(I->getOpcode()) ||
330 isJumpTableBranchOpcode(I->getOpcode()) ||
331 I->isReturn())) {
332 // Forget any previous condition branch information - it no longer applies.
333 Cond.clear();
334 FBB = 0;
335
336 // If we can modify the function, delete everything below this
337 // unconditional branch.
338 if (AllowModify) {
339 MachineBasicBlock::iterator DI = llvm::next(I);
340 while (DI != MBB.end()) {
341 MachineInstr *InstToDelete = DI;
342 ++DI;
343 InstToDelete->eraseFromParent();
344 }
345 }
346 }
347
348 if (CantAnalyze)
349 return true;
350
Dale Johannesen4244d122010-04-02 01:38:09 +0000351 if (I == MBB.begin())
352 return false;
Lang Hames24864fe2013-07-19 23:52:47 +0000353
Dale Johannesen4244d122010-04-02 01:38:09 +0000354 --I;
355 }
David Goodwinaf7451b2009-07-08 16:09:28 +0000356
Lang Hames24864fe2013-07-19 23:52:47 +0000357 // We made it past the terminators without bailing out - we must have
358 // analyzed this branch successfully.
359 return false;
David Goodwinaf7451b2009-07-08 16:09:28 +0000360}
361
362
363unsigned ARMBaseInstrInfo::RemoveBranch(MachineBasicBlock &MBB) const {
David Goodwinaf7451b2009-07-08 16:09:28 +0000364 MachineBasicBlock::iterator I = MBB.end();
365 if (I == MBB.begin()) return 0;
366 --I;
Dale Johannesen4244d122010-04-02 01:38:09 +0000367 while (I->isDebugValue()) {
368 if (I == MBB.begin())
369 return 0;
370 --I;
371 }
Evan Cheng056c6692009-07-27 18:20:05 +0000372 if (!isUncondBranchOpcode(I->getOpcode()) &&
373 !isCondBranchOpcode(I->getOpcode()))
David Goodwinaf7451b2009-07-08 16:09:28 +0000374 return 0;
375
376 // Remove the branch.
377 I->eraseFromParent();
378
379 I = MBB.end();
380
381 if (I == MBB.begin()) return 1;
382 --I;
Evan Cheng056c6692009-07-27 18:20:05 +0000383 if (!isCondBranchOpcode(I->getOpcode()))
David Goodwinaf7451b2009-07-08 16:09:28 +0000384 return 1;
385
386 // Remove the branch.
387 I->eraseFromParent();
388 return 2;
389}
390
391unsigned
392ARMBaseInstrInfo::InsertBranch(MachineBasicBlock &MBB, MachineBasicBlock *TBB,
Stuart Hastings0125b642010-06-17 22:43:56 +0000393 MachineBasicBlock *FBB,
394 const SmallVectorImpl<MachineOperand> &Cond,
395 DebugLoc DL) const {
Evan Cheng780748d2009-07-28 05:48:47 +0000396 ARMFunctionInfo *AFI = MBB.getParent()->getInfo<ARMFunctionInfo>();
397 int BOpc = !AFI->isThumbFunction()
398 ? ARM::B : (AFI->isThumb2Function() ? ARM::t2B : ARM::tB);
399 int BccOpc = !AFI->isThumbFunction()
400 ? ARM::Bcc : (AFI->isThumb2Function() ? ARM::t2Bcc : ARM::tBcc);
Owen Anderson29cfe6c2011-09-09 21:48:23 +0000401 bool isThumb = AFI->isThumbFunction() || AFI->isThumb2Function();
Andrew Trick3f1fdf12011-09-21 02:17:37 +0000402
David Goodwinaf7451b2009-07-08 16:09:28 +0000403 // Shouldn't be a fall through.
404 assert(TBB && "InsertBranch must not be told to insert a fallthrough");
405 assert((Cond.size() == 2 || Cond.size() == 0) &&
406 "ARM branch conditions have two components!");
407
408 if (FBB == 0) {
Owen Andersoneb3f0fb2011-09-09 23:13:02 +0000409 if (Cond.empty()) { // Unconditional branch?
Owen Anderson29cfe6c2011-09-09 21:48:23 +0000410 if (isThumb)
411 BuildMI(&MBB, DL, get(BOpc)).addMBB(TBB).addImm(ARMCC::AL).addReg(0);
412 else
413 BuildMI(&MBB, DL, get(BOpc)).addMBB(TBB);
Owen Andersoneb3f0fb2011-09-09 23:13:02 +0000414 } else
Stuart Hastings0125b642010-06-17 22:43:56 +0000415 BuildMI(&MBB, DL, get(BccOpc)).addMBB(TBB)
David Goodwinaf7451b2009-07-08 16:09:28 +0000416 .addImm(Cond[0].getImm()).addReg(Cond[1].getReg());
417 return 1;
418 }
419
420 // Two-way conditional branch.
Stuart Hastings0125b642010-06-17 22:43:56 +0000421 BuildMI(&MBB, DL, get(BccOpc)).addMBB(TBB)
David Goodwinaf7451b2009-07-08 16:09:28 +0000422 .addImm(Cond[0].getImm()).addReg(Cond[1].getReg());
Owen Anderson29cfe6c2011-09-09 21:48:23 +0000423 if (isThumb)
424 BuildMI(&MBB, DL, get(BOpc)).addMBB(FBB).addImm(ARMCC::AL).addReg(0);
425 else
426 BuildMI(&MBB, DL, get(BOpc)).addMBB(FBB);
David Goodwinaf7451b2009-07-08 16:09:28 +0000427 return 2;
428}
429
430bool ARMBaseInstrInfo::
431ReverseBranchCondition(SmallVectorImpl<MachineOperand> &Cond) const {
432 ARMCC::CondCodes CC = (ARMCC::CondCodes)(int)Cond[0].getImm();
433 Cond[0].setImm(ARMCC::getOppositeCondition(CC));
434 return false;
435}
436
Evan Cheng7fae11b2011-12-14 02:11:42 +0000437bool ARMBaseInstrInfo::isPredicated(const MachineInstr *MI) const {
438 if (MI->isBundle()) {
439 MachineBasicBlock::const_instr_iterator I = MI;
440 MachineBasicBlock::const_instr_iterator E = MI->getParent()->instr_end();
441 while (++I != E && I->isInsideBundle()) {
442 int PIdx = I->findFirstPredOperandIdx();
443 if (PIdx != -1 && I->getOperand(PIdx).getImm() != ARMCC::AL)
444 return true;
445 }
446 return false;
447 }
448
449 int PIdx = MI->findFirstPredOperandIdx();
450 return PIdx != -1 && MI->getOperand(PIdx).getImm() != ARMCC::AL;
451}
452
David Goodwinaf7451b2009-07-08 16:09:28 +0000453bool ARMBaseInstrInfo::
454PredicateInstruction(MachineInstr *MI,
455 const SmallVectorImpl<MachineOperand> &Pred) const {
456 unsigned Opc = MI->getOpcode();
Evan Cheng056c6692009-07-27 18:20:05 +0000457 if (isUncondBranchOpcode(Opc)) {
458 MI->setDesc(get(getMatchingCondBranchOpcode(Opc)));
Jakob Stoklund Olesen2ea20362012-12-20 22:53:55 +0000459 MachineInstrBuilder(*MI->getParent()->getParent(), MI)
460 .addImm(Pred[0].getImm())
461 .addReg(Pred[1].getReg());
David Goodwinaf7451b2009-07-08 16:09:28 +0000462 return true;
463 }
464
465 int PIdx = MI->findFirstPredOperandIdx();
466 if (PIdx != -1) {
467 MachineOperand &PMO = MI->getOperand(PIdx);
468 PMO.setImm(Pred[0].getImm());
469 MI->getOperand(PIdx+1).setReg(Pred[1].getReg());
470 return true;
471 }
472 return false;
473}
474
475bool ARMBaseInstrInfo::
476SubsumesPredicate(const SmallVectorImpl<MachineOperand> &Pred1,
477 const SmallVectorImpl<MachineOperand> &Pred2) const {
478 if (Pred1.size() > 2 || Pred2.size() > 2)
479 return false;
480
481 ARMCC::CondCodes CC1 = (ARMCC::CondCodes)Pred1[0].getImm();
482 ARMCC::CondCodes CC2 = (ARMCC::CondCodes)Pred2[0].getImm();
483 if (CC1 == CC2)
484 return true;
485
486 switch (CC1) {
487 default:
488 return false;
489 case ARMCC::AL:
490 return true;
491 case ARMCC::HS:
492 return CC2 == ARMCC::HI;
493 case ARMCC::LS:
494 return CC2 == ARMCC::LO || CC2 == ARMCC::EQ;
495 case ARMCC::GE:
496 return CC2 == ARMCC::GT;
497 case ARMCC::LE:
498 return CC2 == ARMCC::LT;
499 }
500}
501
502bool ARMBaseInstrInfo::DefinesPredicate(MachineInstr *MI,
503 std::vector<MachineOperand> &Pred) const {
David Goodwinaf7451b2009-07-08 16:09:28 +0000504 bool Found = false;
505 for (unsigned i = 0, e = MI->getNumOperands(); i != e; ++i) {
506 const MachineOperand &MO = MI->getOperand(i);
Jakob Stoklund Olesen4fad5b22012-02-17 19:23:15 +0000507 if ((MO.isRegMask() && MO.clobbersPhysReg(ARM::CPSR)) ||
508 (MO.isReg() && MO.isDef() && MO.getReg() == ARM::CPSR)) {
David Goodwinaf7451b2009-07-08 16:09:28 +0000509 Pred.push_back(MO);
510 Found = true;
511 }
512 }
513
514 return Found;
515}
516
Evan Chenga33fc862009-11-21 06:21:52 +0000517/// isPredicable - Return true if the specified instruction can be predicated.
518/// By default, this returns true for every instruction with a
519/// PredicateOperand.
520bool ARMBaseInstrInfo::isPredicable(MachineInstr *MI) const {
Evan Cheng7f8e5632011-12-07 07:15:52 +0000521 if (!MI->isPredicable())
Evan Chenga33fc862009-11-21 06:21:52 +0000522 return false;
523
Joey Goulya5153cb2013-09-09 14:21:49 +0000524 ARMFunctionInfo *AFI =
525 MI->getParent()->getParent()->getInfo<ARMFunctionInfo>();
526
527 if (AFI->isThumb2Function()) {
Weiming Zhao0da5cc02013-11-13 18:29:49 +0000528 if (getSubtarget().restrictIT())
Joey Goulya5153cb2013-09-09 14:21:49 +0000529 return isV8EligibleForIT(MI);
530 } else { // non-Thumb
531 if ((MI->getDesc().TSFlags & ARMII::DomainMask) == ARMII::DomainNEON)
532 return false;
Evan Chenga33fc862009-11-21 06:21:52 +0000533 }
Joey Goulya5153cb2013-09-09 14:21:49 +0000534
Evan Chenga33fc862009-11-21 06:21:52 +0000535 return true;
536}
David Goodwinaf7451b2009-07-08 16:09:28 +0000537
Chris Lattnerc831fac2009-12-03 06:58:32 +0000538/// FIXME: Works around a gcc miscompilation with -fstrict-aliasing.
Chandler Carruth82058c02010-10-23 08:40:19 +0000539LLVM_ATTRIBUTE_NOINLINE
David Goodwinaf7451b2009-07-08 16:09:28 +0000540static unsigned getNumJTEntries(const std::vector<MachineJumpTableEntry> &JT,
Chris Lattnerc831fac2009-12-03 06:58:32 +0000541 unsigned JTI);
David Goodwinaf7451b2009-07-08 16:09:28 +0000542static unsigned getNumJTEntries(const std::vector<MachineJumpTableEntry> &JT,
543 unsigned JTI) {
Chris Lattnerc831fac2009-12-03 06:58:32 +0000544 assert(JTI < JT.size());
David Goodwinaf7451b2009-07-08 16:09:28 +0000545 return JT[JTI].MBBs.size();
546}
547
548/// GetInstSize - Return the size of the specified MachineInstr.
549///
550unsigned ARMBaseInstrInfo::GetInstSizeInBytes(const MachineInstr *MI) const {
551 const MachineBasicBlock &MBB = *MI->getParent();
552 const MachineFunction *MF = MBB.getParent();
Chris Lattnere9a75a62009-08-22 21:43:10 +0000553 const MCAsmInfo *MAI = MF->getTarget().getMCAsmInfo();
David Goodwinaf7451b2009-07-08 16:09:28 +0000554
Evan Cheng6cc775f2011-06-28 19:10:37 +0000555 const MCInstrDesc &MCID = MI->getDesc();
Owen Anderson651b2302011-07-13 23:22:26 +0000556 if (MCID.getSize())
557 return MCID.getSize();
David Goodwinaf7451b2009-07-08 16:09:28 +0000558
David Blaikie46a9f012012-01-20 21:51:11 +0000559 // If this machine instr is an inline asm, measure it.
560 if (MI->getOpcode() == ARM::INLINEASM)
561 return getInlineAsmLength(MI->getOperand(0).getSymbolName(), *MAI);
562 if (MI->isLabel())
563 return 0;
564 unsigned Opc = MI->getOpcode();
565 switch (Opc) {
566 case TargetOpcode::IMPLICIT_DEF:
567 case TargetOpcode::KILL:
568 case TargetOpcode::PROLOG_LABEL:
569 case TargetOpcode::EH_LABEL:
570 case TargetOpcode::DBG_VALUE:
571 return 0;
572 case TargetOpcode::BUNDLE:
573 return getInstBundleLength(MI);
574 case ARM::MOVi16_ga_pcrel:
575 case ARM::MOVTi16_ga_pcrel:
576 case ARM::t2MOVi16_ga_pcrel:
577 case ARM::t2MOVTi16_ga_pcrel:
578 return 4;
579 case ARM::MOVi32imm:
580 case ARM::t2MOVi32imm:
581 return 8;
582 case ARM::CONSTPOOL_ENTRY:
583 // If this machine instr is a constant pool entry, its size is recorded as
584 // operand #2.
585 return MI->getOperand(2).getImm();
586 case ARM::Int_eh_sjlj_longjmp:
587 return 16;
588 case ARM::tInt_eh_sjlj_longjmp:
589 return 10;
590 case ARM::Int_eh_sjlj_setjmp:
591 case ARM::Int_eh_sjlj_setjmp_nofp:
592 return 20;
593 case ARM::tInt_eh_sjlj_setjmp:
594 case ARM::t2Int_eh_sjlj_setjmp:
595 case ARM::t2Int_eh_sjlj_setjmp_nofp:
596 return 12;
597 case ARM::BR_JTr:
598 case ARM::BR_JTm:
599 case ARM::BR_JTadd:
600 case ARM::tBR_JTr:
601 case ARM::t2BR_JT:
602 case ARM::t2TBB_JT:
603 case ARM::t2TBH_JT: {
604 // These are jumptable branches, i.e. a branch followed by an inlined
605 // jumptable. The size is 4 + 4 * number of entries. For TBB, each
606 // entry is one byte; TBH two byte each.
607 unsigned EntrySize = (Opc == ARM::t2TBB_JT)
608 ? 1 : ((Opc == ARM::t2TBH_JT) ? 2 : 4);
609 unsigned NumOps = MCID.getNumOperands();
610 MachineOperand JTOP =
611 MI->getOperand(NumOps - (MI->isPredicable() ? 3 : 2));
612 unsigned JTI = JTOP.getIndex();
613 const MachineJumpTableInfo *MJTI = MF->getJumpTableInfo();
614 assert(MJTI != 0);
615 const std::vector<MachineJumpTableEntry> &JT = MJTI->getJumpTables();
616 assert(JTI < JT.size());
617 // Thumb instructions are 2 byte aligned, but JT entries are 4 byte
618 // 4 aligned. The assembler / linker may add 2 byte padding just before
619 // the JT entries. The size does not include this padding; the
620 // constant islands pass does separate bookkeeping for it.
621 // FIXME: If we know the size of the function is less than (1 << 16) *2
622 // bytes, we can use 16-bit entries instead. Then there won't be an
623 // alignment issue.
624 unsigned InstSize = (Opc == ARM::tBR_JTr || Opc == ARM::t2BR_JT) ? 2 : 4;
625 unsigned NumEntries = getNumJTEntries(JT, JTI);
626 if (Opc == ARM::t2TBB_JT && (NumEntries & 1))
627 // Make sure the instruction that follows TBB is 2-byte aligned.
628 // FIXME: Constant island pass should insert an "ALIGN" instruction
629 // instead.
630 ++NumEntries;
631 return NumEntries * EntrySize + InstSize;
632 }
633 default:
634 // Otherwise, pseudo-instruction sizes are zero.
635 return 0;
636 }
David Goodwinaf7451b2009-07-08 16:09:28 +0000637}
638
Evan Cheng7fae11b2011-12-14 02:11:42 +0000639unsigned ARMBaseInstrInfo::getInstBundleLength(const MachineInstr *MI) const {
640 unsigned Size = 0;
641 MachineBasicBlock::const_instr_iterator I = MI;
642 MachineBasicBlock::const_instr_iterator E = MI->getParent()->instr_end();
643 while (++I != E && I->isInsideBundle()) {
644 assert(!I->isBundle() && "No nested bundle!");
645 Size += GetInstSizeInBytes(&*I);
646 }
647 return Size;
648}
649
Jakob Stoklund Olesend7b33002010-07-11 06:33:54 +0000650void ARMBaseInstrInfo::copyPhysReg(MachineBasicBlock &MBB,
651 MachineBasicBlock::iterator I, DebugLoc DL,
652 unsigned DestReg, unsigned SrcReg,
653 bool KillSrc) const {
654 bool GPRDest = ARM::GPRRegClass.contains(DestReg);
Jim Grosbach8815bef2013-10-22 02:29:35 +0000655 bool GPRSrc = ARM::GPRRegClass.contains(SrcReg);
Bob Wilson70aa8d02010-02-16 17:24:15 +0000656
Jakob Stoklund Olesend7b33002010-07-11 06:33:54 +0000657 if (GPRDest && GPRSrc) {
658 AddDefaultCC(AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::MOVr), DestReg)
Jim Grosbach8815bef2013-10-22 02:29:35 +0000659 .addReg(SrcReg, getKillRegState(KillSrc))));
Jakob Stoklund Olesend7b33002010-07-11 06:33:54 +0000660 return;
David Goodwine5b5d8f2009-08-05 21:02:22 +0000661 }
David Goodwinaf7451b2009-07-08 16:09:28 +0000662
Jakob Stoklund Olesend7b33002010-07-11 06:33:54 +0000663 bool SPRDest = ARM::SPRRegClass.contains(DestReg);
Jim Grosbach8815bef2013-10-22 02:29:35 +0000664 bool SPRSrc = ARM::SPRRegClass.contains(SrcReg);
Jakob Stoklund Olesend7b33002010-07-11 06:33:54 +0000665
Chad Rosierbe762512011-08-20 00:17:25 +0000666 unsigned Opc = 0;
Jakob Stoklund Olesenda7c0f82011-10-11 00:59:06 +0000667 if (SPRDest && SPRSrc)
Jakob Stoklund Olesend7b33002010-07-11 06:33:54 +0000668 Opc = ARM::VMOVS;
Jakob Stoklund Olesenda7c0f82011-10-11 00:59:06 +0000669 else if (GPRDest && SPRSrc)
Jakob Stoklund Olesend7b33002010-07-11 06:33:54 +0000670 Opc = ARM::VMOVRS;
671 else if (SPRDest && GPRSrc)
672 Opc = ARM::VMOVSR;
673 else if (ARM::DPRRegClass.contains(DestReg, SrcReg))
674 Opc = ARM::VMOVD;
675 else if (ARM::QPRRegClass.contains(DestReg, SrcReg))
Owen Anderson454e1c72011-07-15 18:46:47 +0000676 Opc = ARM::VORRq;
Jakob Stoklund Olesend7b33002010-07-11 06:33:54 +0000677
Chad Rosierbe762512011-08-20 00:17:25 +0000678 if (Opc) {
679 MachineInstrBuilder MIB = BuildMI(MBB, I, DL, get(Opc), DestReg);
Owen Anderson454e1c72011-07-15 18:46:47 +0000680 MIB.addReg(SrcReg, getKillRegState(KillSrc));
Chad Rosierbe762512011-08-20 00:17:25 +0000681 if (Opc == ARM::VORRq)
682 MIB.addReg(SrcReg, getKillRegState(KillSrc));
Chad Rosier61f92ef2011-08-20 00:52:40 +0000683 AddDefaultPred(MIB);
Chad Rosierbe762512011-08-20 00:17:25 +0000684 return;
685 }
686
Jakob Stoklund Olesencaa6bd22012-03-29 21:10:40 +0000687 // Handle register classes that require multiple instructions.
688 unsigned BeginIdx = 0;
689 unsigned SubRegs = 0;
Andrew Trickb57e2252012-08-29 04:41:37 +0000690 int Spacing = 1;
Jakob Stoklund Olesencaa6bd22012-03-29 21:10:40 +0000691
692 // Use VORRq when possible.
Jim Grosbach8815bef2013-10-22 02:29:35 +0000693 if (ARM::QQPRRegClass.contains(DestReg, SrcReg)) {
694 Opc = ARM::VORRq;
695 BeginIdx = ARM::qsub_0;
696 SubRegs = 2;
697 } else if (ARM::QQQQPRRegClass.contains(DestReg, SrcReg)) {
698 Opc = ARM::VORRq;
699 BeginIdx = ARM::qsub_0;
700 SubRegs = 4;
Jakob Stoklund Olesencaa6bd22012-03-29 21:10:40 +0000701 // Fall back to VMOVD.
Jim Grosbach8815bef2013-10-22 02:29:35 +0000702 } else if (ARM::DPairRegClass.contains(DestReg, SrcReg)) {
703 Opc = ARM::VMOVD;
704 BeginIdx = ARM::dsub_0;
705 SubRegs = 2;
706 } else if (ARM::DTripleRegClass.contains(DestReg, SrcReg)) {
707 Opc = ARM::VMOVD;
708 BeginIdx = ARM::dsub_0;
709 SubRegs = 3;
710 } else if (ARM::DQuadRegClass.contains(DestReg, SrcReg)) {
711 Opc = ARM::VMOVD;
712 BeginIdx = ARM::dsub_0;
713 SubRegs = 4;
714 } else if (ARM::GPRPairRegClass.contains(DestReg, SrcReg)) {
Jim Grosbachdba14dd2013-10-22 02:29:37 +0000715 Opc = Subtarget.isThumb2() ? ARM::tMOVr : ARM::MOVr;
Jim Grosbach8815bef2013-10-22 02:29:35 +0000716 BeginIdx = ARM::gsub_0;
717 SubRegs = 2;
718 } else if (ARM::DPairSpcRegClass.contains(DestReg, SrcReg)) {
719 Opc = ARM::VMOVD;
720 BeginIdx = ARM::dsub_0;
721 SubRegs = 2;
722 Spacing = 2;
723 } else if (ARM::DTripleSpcRegClass.contains(DestReg, SrcReg)) {
724 Opc = ARM::VMOVD;
725 BeginIdx = ARM::dsub_0;
726 SubRegs = 3;
727 Spacing = 2;
728 } else if (ARM::DQuadSpcRegClass.contains(DestReg, SrcReg)) {
729 Opc = ARM::VMOVD;
730 BeginIdx = ARM::dsub_0;
731 SubRegs = 4;
732 Spacing = 2;
733 }
Jakob Stoklund Olesencaa6bd22012-03-29 21:10:40 +0000734
Andrew Trickb57e2252012-08-29 04:41:37 +0000735 assert(Opc && "Impossible reg-to-reg copy");
Jakob Stoklund Olesencaa6bd22012-03-29 21:10:40 +0000736
Andrew Trick4cc69492012-08-29 01:58:52 +0000737 const TargetRegisterInfo *TRI = &getRegisterInfo();
738 MachineInstrBuilder Mov;
Andrew Trickbd0073d2012-08-29 01:58:55 +0000739
740 // Copy register tuples backward when the first Dest reg overlaps with SrcReg.
741 if (TRI->regsOverlap(SrcReg, TRI->getSubReg(DestReg, BeginIdx))) {
Jim Grosbach8815bef2013-10-22 02:29:35 +0000742 BeginIdx = BeginIdx + ((SubRegs - 1) * Spacing);
Andrew Trickbd0073d2012-08-29 01:58:55 +0000743 Spacing = -Spacing;
744 }
745#ifndef NDEBUG
746 SmallSet<unsigned, 4> DstRegs;
747#endif
Andrew Trick4cc69492012-08-29 01:58:52 +0000748 for (unsigned i = 0; i != SubRegs; ++i) {
Jim Grosbach8815bef2013-10-22 02:29:35 +0000749 unsigned Dst = TRI->getSubReg(DestReg, BeginIdx + i * Spacing);
750 unsigned Src = TRI->getSubReg(SrcReg, BeginIdx + i * Spacing);
Andrew Trick4cc69492012-08-29 01:58:52 +0000751 assert(Dst && Src && "Bad sub-register");
Andrew Trickbd0073d2012-08-29 01:58:55 +0000752#ifndef NDEBUG
Andrew Trickbd0073d2012-08-29 01:58:55 +0000753 assert(!DstRegs.count(Src) && "destructive vector copy");
Andrew Trickb57e2252012-08-29 04:41:37 +0000754 DstRegs.insert(Dst);
Andrew Trickbd0073d2012-08-29 01:58:55 +0000755#endif
Jim Grosbach8815bef2013-10-22 02:29:35 +0000756 Mov = BuildMI(MBB, I, I->getDebugLoc(), get(Opc), Dst).addReg(Src);
Andrew Trick4cc69492012-08-29 01:58:52 +0000757 // VORR takes two source operands.
758 if (Opc == ARM::VORRq)
759 Mov.addReg(Src);
760 Mov = AddDefaultPred(Mov);
JF Bastien583db652013-07-12 23:33:03 +0000761 // MOVr can set CC.
762 if (Opc == ARM::MOVr)
763 Mov = AddDefaultCC(Mov);
Andrew Trick4cc69492012-08-29 01:58:52 +0000764 }
765 // Add implicit super-register defs and kills to the last instruction.
766 Mov->addRegisterDefined(DestReg, TRI);
767 if (KillSrc)
768 Mov->addRegisterKilled(SrcReg, TRI);
David Goodwinaf7451b2009-07-08 16:09:28 +0000769}
770
Tim Northover798697d2013-04-21 11:57:07 +0000771const MachineInstrBuilder &
772ARMBaseInstrInfo::AddDReg(MachineInstrBuilder &MIB, unsigned Reg,
773 unsigned SubIdx, unsigned State,
774 const TargetRegisterInfo *TRI) const {
Evan Chengddc93c72010-05-07 00:24:52 +0000775 if (!SubIdx)
776 return MIB.addReg(Reg, State);
777
778 if (TargetRegisterInfo::isPhysicalRegister(Reg))
779 return MIB.addReg(TRI->getSubReg(Reg, SubIdx), State);
780 return MIB.addReg(Reg, State, SubIdx);
781}
782
David Goodwinaf7451b2009-07-08 16:09:28 +0000783void ARMBaseInstrInfo::
784storeRegToStackSlot(MachineBasicBlock &MBB, MachineBasicBlock::iterator I,
785 unsigned SrcReg, bool isKill, int FI,
Evan Chengefb126a2010-05-06 19:06:44 +0000786 const TargetRegisterClass *RC,
787 const TargetRegisterInfo *TRI) const {
Chris Lattner6f306d72010-04-02 20:16:16 +0000788 DebugLoc DL;
David Goodwinaf7451b2009-07-08 16:09:28 +0000789 if (I != MBB.end()) DL = I->getDebugLoc();
Anton Korobeynikov75b59fb2009-10-07 00:06:35 +0000790 MachineFunction &MF = *MBB.getParent();
791 MachineFrameInfo &MFI = *MF.getFrameInfo();
Jim Grosbacha15c3b72009-11-08 00:27:19 +0000792 unsigned Align = MFI.getObjectAlignment(FI);
Anton Korobeynikov75b59fb2009-10-07 00:06:35 +0000793
794 MachineMemOperand *MMO =
Jay Foad465101b2011-11-15 07:34:52 +0000795 MF.getMachineMemOperand(MachinePointerInfo::getFixedStack(FI),
Chris Lattnere3d864b2010-09-21 04:39:43 +0000796 MachineMemOperand::MOStore,
Anton Korobeynikov75b59fb2009-10-07 00:06:35 +0000797 MFI.getObjectSize(FI),
Jim Grosbacha15c3b72009-11-08 00:27:19 +0000798 Align);
David Goodwinaf7451b2009-07-08 16:09:28 +0000799
Owen Anderson732f82c2011-08-10 17:21:20 +0000800 switch (RC->getSize()) {
801 case 4:
802 if (ARM::GPRRegClass.hasSubClassEq(RC)) {
803 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::STRi12))
David Goodwinaf7451b2009-07-08 16:09:28 +0000804 .addReg(SrcReg, getKillRegState(isKill))
Jim Grosbach338de3e2010-10-27 23:12:14 +0000805 .addFrameIndex(FI).addImm(0).addMemOperand(MMO));
Owen Anderson732f82c2011-08-10 17:21:20 +0000806 } else if (ARM::SPRRegClass.hasSubClassEq(RC)) {
807 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VSTRS))
Evan Cheng9d768f42010-05-06 01:34:11 +0000808 .addReg(SrcReg, getKillRegState(isKill))
809 .addFrameIndex(FI).addImm(0).addMemOperand(MMO));
Owen Anderson732f82c2011-08-10 17:21:20 +0000810 } else
811 llvm_unreachable("Unknown reg class!");
812 break;
813 case 8:
814 if (ARM::DPRRegClass.hasSubClassEq(RC)) {
815 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VSTRD))
David Goodwinaf7451b2009-07-08 16:09:28 +0000816 .addReg(SrcReg, getKillRegState(isKill))
Anton Korobeynikov75b59fb2009-10-07 00:06:35 +0000817 .addFrameIndex(FI).addImm(0).addMemOperand(MMO));
Jakob Stoklund Olesene46a1042012-10-26 21:29:15 +0000818 } else if (ARM::GPRPairRegClass.hasSubClassEq(RC)) {
Tim Northover798697d2013-04-21 11:57:07 +0000819 if (Subtarget.hasV5TEOps()) {
820 MachineInstrBuilder MIB = BuildMI(MBB, I, DL, get(ARM::STRD));
821 AddDReg(MIB, SrcReg, ARM::gsub_0, getKillRegState(isKill), TRI);
822 AddDReg(MIB, SrcReg, ARM::gsub_1, 0, TRI);
823 MIB.addFrameIndex(FI).addReg(0).addImm(0).addMemOperand(MMO);
824
825 AddDefaultPred(MIB);
826 } else {
827 // Fallback to STM instruction, which has existed since the dawn of
828 // time.
829 MachineInstrBuilder MIB =
830 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::STMIA))
831 .addFrameIndex(FI).addMemOperand(MMO));
832 AddDReg(MIB, SrcReg, ARM::gsub_0, getKillRegState(isKill), TRI);
833 AddDReg(MIB, SrcReg, ARM::gsub_1, 0, TRI);
834 }
Owen Anderson732f82c2011-08-10 17:21:20 +0000835 } else
836 llvm_unreachable("Unknown reg class!");
837 break;
838 case 16:
Jakob Stoklund Olesen9e512122012-03-28 21:20:32 +0000839 if (ARM::DPairRegClass.hasSubClassEq(RC)) {
Jakob Stoklund Olesend110e2a2012-01-05 00:26:57 +0000840 // Use aligned spills if the stack can be realigned.
841 if (Align >= 16 && getRegisterInfo().canRealignStack(MF)) {
Jim Grosbachc988e0c2012-03-05 19:33:30 +0000842 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VST1q64))
Bob Wilson4c1ca292010-07-06 21:26:18 +0000843 .addFrameIndex(FI).addImm(16)
Evan Cheng9de7cfe2010-05-13 01:12:06 +0000844 .addReg(SrcReg, getKillRegState(isKill))
845 .addMemOperand(MMO));
Owen Anderson732f82c2011-08-10 17:21:20 +0000846 } else {
847 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VSTMQIA))
Evan Cheng9de7cfe2010-05-13 01:12:06 +0000848 .addReg(SrcReg, getKillRegState(isKill))
849 .addFrameIndex(FI)
Evan Cheng9de7cfe2010-05-13 01:12:06 +0000850 .addMemOperand(MMO));
Owen Anderson732f82c2011-08-10 17:21:20 +0000851 }
852 } else
853 llvm_unreachable("Unknown reg class!");
854 break;
Anton Korobeynikov218aaf62012-08-04 13:16:12 +0000855 case 24:
856 if (ARM::DTripleRegClass.hasSubClassEq(RC)) {
857 // Use aligned spills if the stack can be realigned.
858 if (Align >= 16 && getRegisterInfo().canRealignStack(MF)) {
859 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VST1d64TPseudo))
860 .addFrameIndex(FI).addImm(16)
861 .addReg(SrcReg, getKillRegState(isKill))
862 .addMemOperand(MMO));
863 } else {
864 MachineInstrBuilder MIB =
865 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VSTMDIA))
866 .addFrameIndex(FI))
867 .addMemOperand(MMO);
868 MIB = AddDReg(MIB, SrcReg, ARM::dsub_0, getKillRegState(isKill), TRI);
869 MIB = AddDReg(MIB, SrcReg, ARM::dsub_1, 0, TRI);
870 AddDReg(MIB, SrcReg, ARM::dsub_2, 0, TRI);
871 }
872 } else
873 llvm_unreachable("Unknown reg class!");
874 break;
Owen Anderson732f82c2011-08-10 17:21:20 +0000875 case 32:
Anton Korobeynikov218aaf62012-08-04 13:16:12 +0000876 if (ARM::QQPRRegClass.hasSubClassEq(RC) || ARM::DQuadRegClass.hasSubClassEq(RC)) {
Owen Anderson732f82c2011-08-10 17:21:20 +0000877 if (Align >= 16 && getRegisterInfo().canRealignStack(MF)) {
878 // FIXME: It's possible to only store part of the QQ register if the
879 // spilled def has a sub-register index.
880 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VST1d64QPseudo))
Bob Wilsonb1e9d4b2010-09-15 01:48:05 +0000881 .addFrameIndex(FI).addImm(16)
882 .addReg(SrcReg, getKillRegState(isKill))
883 .addMemOperand(MMO));
Owen Anderson732f82c2011-08-10 17:21:20 +0000884 } else {
885 MachineInstrBuilder MIB =
886 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VSTMDIA))
Bill Wendlinga68e3a52010-11-16 01:16:36 +0000887 .addFrameIndex(FI))
Owen Anderson732f82c2011-08-10 17:21:20 +0000888 .addMemOperand(MMO);
889 MIB = AddDReg(MIB, SrcReg, ARM::dsub_0, getKillRegState(isKill), TRI);
890 MIB = AddDReg(MIB, SrcReg, ARM::dsub_1, 0, TRI);
891 MIB = AddDReg(MIB, SrcReg, ARM::dsub_2, 0, TRI);
892 AddDReg(MIB, SrcReg, ARM::dsub_3, 0, TRI);
893 }
894 } else
895 llvm_unreachable("Unknown reg class!");
896 break;
897 case 64:
898 if (ARM::QQQQPRRegClass.hasSubClassEq(RC)) {
899 MachineInstrBuilder MIB =
900 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VSTMDIA))
901 .addFrameIndex(FI))
902 .addMemOperand(MMO);
903 MIB = AddDReg(MIB, SrcReg, ARM::dsub_0, getKillRegState(isKill), TRI);
904 MIB = AddDReg(MIB, SrcReg, ARM::dsub_1, 0, TRI);
905 MIB = AddDReg(MIB, SrcReg, ARM::dsub_2, 0, TRI);
906 MIB = AddDReg(MIB, SrcReg, ARM::dsub_3, 0, TRI);
907 MIB = AddDReg(MIB, SrcReg, ARM::dsub_4, 0, TRI);
908 MIB = AddDReg(MIB, SrcReg, ARM::dsub_5, 0, TRI);
909 MIB = AddDReg(MIB, SrcReg, ARM::dsub_6, 0, TRI);
910 AddDReg(MIB, SrcReg, ARM::dsub_7, 0, TRI);
911 } else
912 llvm_unreachable("Unknown reg class!");
913 break;
914 default:
915 llvm_unreachable("Unknown reg class!");
David Goodwinaf7451b2009-07-08 16:09:28 +0000916 }
917}
918
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +0000919unsigned
920ARMBaseInstrInfo::isStoreToStackSlot(const MachineInstr *MI,
921 int &FrameIndex) const {
922 switch (MI->getOpcode()) {
923 default: break;
Jim Grosbach338de3e2010-10-27 23:12:14 +0000924 case ARM::STRrs:
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +0000925 case ARM::t2STRs: // FIXME: don't use t2STRs to access frame.
926 if (MI->getOperand(1).isFI() &&
927 MI->getOperand(2).isReg() &&
928 MI->getOperand(3).isImm() &&
929 MI->getOperand(2).getReg() == 0 &&
930 MI->getOperand(3).getImm() == 0) {
931 FrameIndex = MI->getOperand(1).getIndex();
932 return MI->getOperand(0).getReg();
933 }
934 break;
Jim Grosbach338de3e2010-10-27 23:12:14 +0000935 case ARM::STRi12:
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +0000936 case ARM::t2STRi12:
Jim Grosbachd86f34d2011-06-29 20:26:39 +0000937 case ARM::tSTRspi:
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +0000938 case ARM::VSTRD:
939 case ARM::VSTRS:
940 if (MI->getOperand(1).isFI() &&
941 MI->getOperand(2).isImm() &&
942 MI->getOperand(2).getImm() == 0) {
943 FrameIndex = MI->getOperand(1).getIndex();
944 return MI->getOperand(0).getReg();
945 }
946 break;
Jim Grosbachc988e0c2012-03-05 19:33:30 +0000947 case ARM::VST1q64:
Anton Korobeynikov3a4fdfe2012-08-04 13:22:14 +0000948 case ARM::VST1d64TPseudo:
949 case ARM::VST1d64QPseudo:
Jakob Stoklund Olesen33005d12010-09-15 17:27:09 +0000950 if (MI->getOperand(0).isFI() &&
951 MI->getOperand(2).getSubReg() == 0) {
952 FrameIndex = MI->getOperand(0).getIndex();
953 return MI->getOperand(2).getReg();
954 }
Jakob Stoklund Olesenb929c712010-09-15 21:40:09 +0000955 break;
Bill Wendlinga68e3a52010-11-16 01:16:36 +0000956 case ARM::VSTMQIA:
Jakob Stoklund Olesen33005d12010-09-15 17:27:09 +0000957 if (MI->getOperand(1).isFI() &&
Jakob Stoklund Olesen33005d12010-09-15 17:27:09 +0000958 MI->getOperand(0).getSubReg() == 0) {
959 FrameIndex = MI->getOperand(1).getIndex();
960 return MI->getOperand(0).getReg();
961 }
962 break;
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +0000963 }
964
965 return 0;
966}
967
Jakob Stoklund Olesenc04a66b2011-08-08 21:45:32 +0000968unsigned ARMBaseInstrInfo::isStoreToStackSlotPostFE(const MachineInstr *MI,
969 int &FrameIndex) const {
970 const MachineMemOperand *Dummy;
Evan Cheng7f8e5632011-12-07 07:15:52 +0000971 return MI->mayStore() && hasStoreToStackSlot(MI, Dummy, FrameIndex);
Jakob Stoklund Olesenc04a66b2011-08-08 21:45:32 +0000972}
973
David Goodwinaf7451b2009-07-08 16:09:28 +0000974void ARMBaseInstrInfo::
975loadRegFromStackSlot(MachineBasicBlock &MBB, MachineBasicBlock::iterator I,
976 unsigned DestReg, int FI,
Evan Chengefb126a2010-05-06 19:06:44 +0000977 const TargetRegisterClass *RC,
978 const TargetRegisterInfo *TRI) const {
Chris Lattner6f306d72010-04-02 20:16:16 +0000979 DebugLoc DL;
David Goodwinaf7451b2009-07-08 16:09:28 +0000980 if (I != MBB.end()) DL = I->getDebugLoc();
Anton Korobeynikov75b59fb2009-10-07 00:06:35 +0000981 MachineFunction &MF = *MBB.getParent();
982 MachineFrameInfo &MFI = *MF.getFrameInfo();
Jim Grosbacha15c3b72009-11-08 00:27:19 +0000983 unsigned Align = MFI.getObjectAlignment(FI);
Anton Korobeynikov75b59fb2009-10-07 00:06:35 +0000984 MachineMemOperand *MMO =
Chris Lattnere3d864b2010-09-21 04:39:43 +0000985 MF.getMachineMemOperand(
Jay Foad465101b2011-11-15 07:34:52 +0000986 MachinePointerInfo::getFixedStack(FI),
Chris Lattnere3d864b2010-09-21 04:39:43 +0000987 MachineMemOperand::MOLoad,
Anton Korobeynikov75b59fb2009-10-07 00:06:35 +0000988 MFI.getObjectSize(FI),
Jim Grosbacha15c3b72009-11-08 00:27:19 +0000989 Align);
David Goodwinaf7451b2009-07-08 16:09:28 +0000990
Owen Anderson732f82c2011-08-10 17:21:20 +0000991 switch (RC->getSize()) {
992 case 4:
993 if (ARM::GPRRegClass.hasSubClassEq(RC)) {
994 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::LDRi12), DestReg)
995 .addFrameIndex(FI).addImm(0).addMemOperand(MMO));
Bob Wilson37f106e2010-02-16 22:01:59 +0000996
Owen Anderson732f82c2011-08-10 17:21:20 +0000997 } else if (ARM::SPRRegClass.hasSubClassEq(RC)) {
998 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLDRS), DestReg)
Jim Grosbach1e4d9a12010-10-26 22:37:02 +0000999 .addFrameIndex(FI).addImm(0).addMemOperand(MMO));
Owen Anderson732f82c2011-08-10 17:21:20 +00001000 } else
1001 llvm_unreachable("Unknown reg class!");
Bob Wilsona92e41a2010-06-18 21:32:42 +00001002 break;
Owen Anderson732f82c2011-08-10 17:21:20 +00001003 case 8:
1004 if (ARM::DPRRegClass.hasSubClassEq(RC)) {
1005 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLDRD), DestReg)
Evan Cheng9d768f42010-05-06 01:34:11 +00001006 .addFrameIndex(FI).addImm(0).addMemOperand(MMO));
Jakob Stoklund Olesene46a1042012-10-26 21:29:15 +00001007 } else if (ARM::GPRPairRegClass.hasSubClassEq(RC)) {
Tim Northover798697d2013-04-21 11:57:07 +00001008 MachineInstrBuilder MIB;
1009
1010 if (Subtarget.hasV5TEOps()) {
1011 MIB = BuildMI(MBB, I, DL, get(ARM::LDRD));
1012 AddDReg(MIB, DestReg, ARM::gsub_0, RegState::DefineNoRead, TRI);
1013 AddDReg(MIB, DestReg, ARM::gsub_1, RegState::DefineNoRead, TRI);
1014 MIB.addFrameIndex(FI).addReg(0).addImm(0).addMemOperand(MMO);
1015
1016 AddDefaultPred(MIB);
1017 } else {
1018 // Fallback to LDM instruction, which has existed since the dawn of
1019 // time.
1020 MIB = AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::LDMIA))
1021 .addFrameIndex(FI).addMemOperand(MMO));
1022 MIB = AddDReg(MIB, DestReg, ARM::gsub_0, RegState::DefineNoRead, TRI);
1023 MIB = AddDReg(MIB, DestReg, ARM::gsub_1, RegState::DefineNoRead, TRI);
1024 }
1025
Jakob Stoklund Olesene46a1042012-10-26 21:29:15 +00001026 if (TargetRegisterInfo::isPhysicalRegister(DestReg))
1027 MIB.addReg(DestReg, RegState::ImplicitDefine);
Owen Anderson732f82c2011-08-10 17:21:20 +00001028 } else
1029 llvm_unreachable("Unknown reg class!");
Bob Wilsona92e41a2010-06-18 21:32:42 +00001030 break;
Owen Anderson732f82c2011-08-10 17:21:20 +00001031 case 16:
Jakob Stoklund Olesen9e512122012-03-28 21:20:32 +00001032 if (ARM::DPairRegClass.hasSubClassEq(RC)) {
Jakob Stoklund Olesend110e2a2012-01-05 00:26:57 +00001033 if (Align >= 16 && getRegisterInfo().canRealignStack(MF)) {
Jim Grosbachc988e0c2012-03-05 19:33:30 +00001034 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLD1q64), DestReg)
Bob Wilson4c1ca292010-07-06 21:26:18 +00001035 .addFrameIndex(FI).addImm(16)
Evan Cheng9de7cfe2010-05-13 01:12:06 +00001036 .addMemOperand(MMO));
Owen Anderson732f82c2011-08-10 17:21:20 +00001037 } else {
1038 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLDMQIA), DestReg)
1039 .addFrameIndex(FI)
1040 .addMemOperand(MMO));
1041 }
1042 } else
1043 llvm_unreachable("Unknown reg class!");
Bob Wilsona92e41a2010-06-18 21:32:42 +00001044 break;
Anton Korobeynikov218aaf62012-08-04 13:16:12 +00001045 case 24:
1046 if (ARM::DTripleRegClass.hasSubClassEq(RC)) {
1047 if (Align >= 16 && getRegisterInfo().canRealignStack(MF)) {
1048 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLD1d64TPseudo), DestReg)
1049 .addFrameIndex(FI).addImm(16)
1050 .addMemOperand(MMO));
1051 } else {
1052 MachineInstrBuilder MIB =
1053 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLDMDIA))
1054 .addFrameIndex(FI)
1055 .addMemOperand(MMO));
1056 MIB = AddDReg(MIB, DestReg, ARM::dsub_0, RegState::DefineNoRead, TRI);
1057 MIB = AddDReg(MIB, DestReg, ARM::dsub_1, RegState::DefineNoRead, TRI);
1058 MIB = AddDReg(MIB, DestReg, ARM::dsub_2, RegState::DefineNoRead, TRI);
1059 if (TargetRegisterInfo::isPhysicalRegister(DestReg))
1060 MIB.addReg(DestReg, RegState::ImplicitDefine);
1061 }
1062 } else
1063 llvm_unreachable("Unknown reg class!");
1064 break;
1065 case 32:
1066 if (ARM::QQPRRegClass.hasSubClassEq(RC) || ARM::DQuadRegClass.hasSubClassEq(RC)) {
Owen Anderson732f82c2011-08-10 17:21:20 +00001067 if (Align >= 16 && getRegisterInfo().canRealignStack(MF)) {
1068 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLD1d64QPseudo), DestReg)
Bob Wilsonb1e9d4b2010-09-15 01:48:05 +00001069 .addFrameIndex(FI).addImm(16)
1070 .addMemOperand(MMO));
Owen Anderson732f82c2011-08-10 17:21:20 +00001071 } else {
1072 MachineInstrBuilder MIB =
Bill Wendlinga68e3a52010-11-16 01:16:36 +00001073 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLDMDIA))
1074 .addFrameIndex(FI))
Owen Anderson732f82c2011-08-10 17:21:20 +00001075 .addMemOperand(MMO);
Jakob Stoklund Olesenf729cea2012-03-04 18:40:30 +00001076 MIB = AddDReg(MIB, DestReg, ARM::dsub_0, RegState::DefineNoRead, TRI);
1077 MIB = AddDReg(MIB, DestReg, ARM::dsub_1, RegState::DefineNoRead, TRI);
1078 MIB = AddDReg(MIB, DestReg, ARM::dsub_2, RegState::DefineNoRead, TRI);
1079 MIB = AddDReg(MIB, DestReg, ARM::dsub_3, RegState::DefineNoRead, TRI);
Jakob Stoklund Olesend9b427e2012-03-06 02:48:17 +00001080 if (TargetRegisterInfo::isPhysicalRegister(DestReg))
1081 MIB.addReg(DestReg, RegState::ImplicitDefine);
Owen Anderson732f82c2011-08-10 17:21:20 +00001082 }
1083 } else
1084 llvm_unreachable("Unknown reg class!");
1085 break;
1086 case 64:
1087 if (ARM::QQQQPRRegClass.hasSubClassEq(RC)) {
1088 MachineInstrBuilder MIB =
1089 AddDefaultPred(BuildMI(MBB, I, DL, get(ARM::VLDMDIA))
1090 .addFrameIndex(FI))
1091 .addMemOperand(MMO);
Jakob Stoklund Olesenf729cea2012-03-04 18:40:30 +00001092 MIB = AddDReg(MIB, DestReg, ARM::dsub_0, RegState::DefineNoRead, TRI);
1093 MIB = AddDReg(MIB, DestReg, ARM::dsub_1, RegState::DefineNoRead, TRI);
1094 MIB = AddDReg(MIB, DestReg, ARM::dsub_2, RegState::DefineNoRead, TRI);
1095 MIB = AddDReg(MIB, DestReg, ARM::dsub_3, RegState::DefineNoRead, TRI);
1096 MIB = AddDReg(MIB, DestReg, ARM::dsub_4, RegState::DefineNoRead, TRI);
1097 MIB = AddDReg(MIB, DestReg, ARM::dsub_5, RegState::DefineNoRead, TRI);
1098 MIB = AddDReg(MIB, DestReg, ARM::dsub_6, RegState::DefineNoRead, TRI);
1099 MIB = AddDReg(MIB, DestReg, ARM::dsub_7, RegState::DefineNoRead, TRI);
Jakob Stoklund Olesend9b427e2012-03-06 02:48:17 +00001100 if (TargetRegisterInfo::isPhysicalRegister(DestReg))
1101 MIB.addReg(DestReg, RegState::ImplicitDefine);
Owen Anderson732f82c2011-08-10 17:21:20 +00001102 } else
1103 llvm_unreachable("Unknown reg class!");
Bob Wilsona92e41a2010-06-18 21:32:42 +00001104 break;
Bob Wilsona92e41a2010-06-18 21:32:42 +00001105 default:
1106 llvm_unreachable("Unknown regclass!");
David Goodwinaf7451b2009-07-08 16:09:28 +00001107 }
1108}
1109
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +00001110unsigned
1111ARMBaseInstrInfo::isLoadFromStackSlot(const MachineInstr *MI,
1112 int &FrameIndex) const {
1113 switch (MI->getOpcode()) {
1114 default: break;
Jim Grosbach1e4d9a12010-10-26 22:37:02 +00001115 case ARM::LDRrs:
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +00001116 case ARM::t2LDRs: // FIXME: don't use t2LDRs to access frame.
1117 if (MI->getOperand(1).isFI() &&
1118 MI->getOperand(2).isReg() &&
1119 MI->getOperand(3).isImm() &&
1120 MI->getOperand(2).getReg() == 0 &&
1121 MI->getOperand(3).getImm() == 0) {
1122 FrameIndex = MI->getOperand(1).getIndex();
1123 return MI->getOperand(0).getReg();
1124 }
1125 break;
Jim Grosbach1e4d9a12010-10-26 22:37:02 +00001126 case ARM::LDRi12:
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +00001127 case ARM::t2LDRi12:
Jim Grosbachd86f34d2011-06-29 20:26:39 +00001128 case ARM::tLDRspi:
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +00001129 case ARM::VLDRD:
1130 case ARM::VLDRS:
1131 if (MI->getOperand(1).isFI() &&
1132 MI->getOperand(2).isImm() &&
1133 MI->getOperand(2).getImm() == 0) {
1134 FrameIndex = MI->getOperand(1).getIndex();
1135 return MI->getOperand(0).getReg();
1136 }
1137 break;
Jim Grosbachc988e0c2012-03-05 19:33:30 +00001138 case ARM::VLD1q64:
Anton Korobeynikov3a4fdfe2012-08-04 13:22:14 +00001139 case ARM::VLD1d64TPseudo:
1140 case ARM::VLD1d64QPseudo:
Jakob Stoklund Olesen33005d12010-09-15 17:27:09 +00001141 if (MI->getOperand(1).isFI() &&
1142 MI->getOperand(0).getSubReg() == 0) {
1143 FrameIndex = MI->getOperand(1).getIndex();
1144 return MI->getOperand(0).getReg();
1145 }
1146 break;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00001147 case ARM::VLDMQIA:
Jakob Stoklund Olesen44857a32010-09-15 21:40:11 +00001148 if (MI->getOperand(1).isFI() &&
Jakob Stoklund Olesen44857a32010-09-15 21:40:11 +00001149 MI->getOperand(0).getSubReg() == 0) {
1150 FrameIndex = MI->getOperand(1).getIndex();
1151 return MI->getOperand(0).getReg();
1152 }
1153 break;
Jakob Stoklund Olesen11f5be32010-09-15 16:36:26 +00001154 }
1155
1156 return 0;
1157}
1158
Jakob Stoklund Olesenc04a66b2011-08-08 21:45:32 +00001159unsigned ARMBaseInstrInfo::isLoadFromStackSlotPostFE(const MachineInstr *MI,
1160 int &FrameIndex) const {
1161 const MachineMemOperand *Dummy;
Evan Cheng7f8e5632011-12-07 07:15:52 +00001162 return MI->mayLoad() && hasLoadFromStackSlot(MI, Dummy, FrameIndex);
Jakob Stoklund Olesenc04a66b2011-08-08 21:45:32 +00001163}
1164
Jakob Stoklund Olesenda7c0f82011-10-11 00:59:06 +00001165bool ARMBaseInstrInfo::expandPostRAPseudo(MachineBasicBlock::iterator MI) const{
1166 // This hook gets to expand COPY instructions before they become
1167 // copyPhysReg() calls. Look for VMOVS instructions that can legally be
1168 // widened to VMOVD. We prefer the VMOVD when possible because it may be
1169 // changed into a VORR that can go down the NEON pipeline.
Silviu Baranga82dd6ac2013-03-15 18:28:25 +00001170 if (!WidenVMOVS || !MI->isCopy() || Subtarget.isCortexA15())
Jakob Stoklund Olesenda7c0f82011-10-11 00:59:06 +00001171 return false;
1172
1173 // Look for a copy between even S-registers. That is where we keep floats
1174 // when using NEON v2f32 instructions for f32 arithmetic.
1175 unsigned DstRegS = MI->getOperand(0).getReg();
1176 unsigned SrcRegS = MI->getOperand(1).getReg();
1177 if (!ARM::SPRRegClass.contains(DstRegS, SrcRegS))
1178 return false;
1179
1180 const TargetRegisterInfo *TRI = &getRegisterInfo();
1181 unsigned DstRegD = TRI->getMatchingSuperReg(DstRegS, ARM::ssub_0,
1182 &ARM::DPRRegClass);
1183 unsigned SrcRegD = TRI->getMatchingSuperReg(SrcRegS, ARM::ssub_0,
1184 &ARM::DPRRegClass);
1185 if (!DstRegD || !SrcRegD)
1186 return false;
1187
1188 // We want to widen this into a DstRegD = VMOVD SrcRegD copy. This is only
1189 // legal if the COPY already defines the full DstRegD, and it isn't a
1190 // sub-register insertion.
1191 if (!MI->definesRegister(DstRegD, TRI) || MI->readsRegister(DstRegD, TRI))
1192 return false;
1193
Jakob Stoklund Olesen39c31a72011-10-12 00:06:23 +00001194 // A dead copy shouldn't show up here, but reject it just in case.
1195 if (MI->getOperand(0).isDead())
1196 return false;
1197
1198 // All clear, widen the COPY.
Jakob Stoklund Olesenda7c0f82011-10-11 00:59:06 +00001199 DEBUG(dbgs() << "widening: " << *MI);
Jakob Stoklund Olesenb159b5f2012-12-19 21:31:56 +00001200 MachineInstrBuilder MIB(*MI->getParent()->getParent(), MI);
Jakob Stoklund Olesen39c31a72011-10-12 00:06:23 +00001201
1202 // Get rid of the old <imp-def> of DstRegD. Leave it if it defines a Q-reg
1203 // or some other super-register.
1204 int ImpDefIdx = MI->findRegisterDefOperandIdx(DstRegD);
1205 if (ImpDefIdx != -1)
1206 MI->RemoveOperand(ImpDefIdx);
1207
1208 // Change the opcode and operands.
Jakob Stoklund Olesenda7c0f82011-10-11 00:59:06 +00001209 MI->setDesc(get(ARM::VMOVD));
1210 MI->getOperand(0).setReg(DstRegD);
1211 MI->getOperand(1).setReg(SrcRegD);
Jakob Stoklund Olesenb159b5f2012-12-19 21:31:56 +00001212 AddDefaultPred(MIB);
Jakob Stoklund Olesen39c31a72011-10-12 00:06:23 +00001213
1214 // We are now reading SrcRegD instead of SrcRegS. This may upset the
1215 // register scavenger and machine verifier, so we need to indicate that we
1216 // are reading an undefined value from SrcRegD, but a proper value from
1217 // SrcRegS.
1218 MI->getOperand(1).setIsUndef();
Jakob Stoklund Olesenb159b5f2012-12-19 21:31:56 +00001219 MIB.addReg(SrcRegS, RegState::Implicit);
Jakob Stoklund Olesen39c31a72011-10-12 00:06:23 +00001220
1221 // SrcRegD may actually contain an unrelated value in the ssub_1
1222 // sub-register. Don't kill it. Only kill the ssub_0 sub-register.
1223 if (MI->getOperand(1).isKill()) {
1224 MI->getOperand(1).setIsKill(false);
1225 MI->addRegisterKilled(SrcRegS, TRI, true);
1226 }
1227
Jakob Stoklund Olesenda7c0f82011-10-11 00:59:06 +00001228 DEBUG(dbgs() << "replaced by: " << *MI);
1229 return true;
1230}
1231
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001232/// Create a copy of a const pool value. Update CPI to the new index and return
1233/// the label UID.
1234static unsigned duplicateCPV(MachineFunction &MF, unsigned &CPI) {
1235 MachineConstantPool *MCP = MF.getConstantPool();
1236 ARMFunctionInfo *AFI = MF.getInfo<ARMFunctionInfo>();
1237
1238 const MachineConstantPoolEntry &MCPE = MCP->getConstants()[CPI];
1239 assert(MCPE.isMachineConstantPoolEntry() &&
1240 "Expecting a machine constantpool entry!");
1241 ARMConstantPoolValue *ACPV =
1242 static_cast<ARMConstantPoolValue*>(MCPE.Val.MachineCPVal);
1243
Evan Chengdfce83c2011-01-17 08:03:18 +00001244 unsigned PCLabelId = AFI->createPICLabelUId();
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001245 ARMConstantPoolValue *NewCPV = 0;
Jim Grosbach1f77ee52010-09-10 21:38:22 +00001246 // FIXME: The below assumes PIC relocation model and that the function
1247 // is Thumb mode (t1 or t2). PCAdjustment would be 8 for ARM mode PIC, and
1248 // zero for non-PIC in ARM or Thumb. The callers are all of thumb LDR
1249 // instructions, so that's probably OK, but is PIC always correct when
1250 // we get here?
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001251 if (ACPV->isGlobalValue())
Bill Wendling7753d662011-10-01 08:00:54 +00001252 NewCPV = ARMConstantPoolConstant::
1253 Create(cast<ARMConstantPoolConstant>(ACPV)->getGV(), PCLabelId,
1254 ARMCP::CPValue, 4);
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001255 else if (ACPV->isExtSymbol())
Bill Wendlingc214cb02011-10-01 08:58:29 +00001256 NewCPV = ARMConstantPoolSymbol::
1257 Create(MF.getFunction()->getContext(),
1258 cast<ARMConstantPoolSymbol>(ACPV)->getSymbol(), PCLabelId, 4);
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001259 else if (ACPV->isBlockAddress())
Bill Wendling7753d662011-10-01 08:00:54 +00001260 NewCPV = ARMConstantPoolConstant::
1261 Create(cast<ARMConstantPoolConstant>(ACPV)->getBlockAddress(), PCLabelId,
1262 ARMCP::CPBlockAddress, 4);
Jim Grosbach1f77ee52010-09-10 21:38:22 +00001263 else if (ACPV->isLSDA())
Bill Wendling7753d662011-10-01 08:00:54 +00001264 NewCPV = ARMConstantPoolConstant::Create(MF.getFunction(), PCLabelId,
1265 ARMCP::CPLSDA, 4);
Bill Wendling69bc3de2011-09-29 23:50:42 +00001266 else if (ACPV->isMachineBasicBlock())
Bill Wendling4a4772f2011-10-01 09:30:42 +00001267 NewCPV = ARMConstantPoolMBB::
1268 Create(MF.getFunction()->getContext(),
1269 cast<ARMConstantPoolMBB>(ACPV)->getMBB(), PCLabelId, 4);
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001270 else
1271 llvm_unreachable("Unexpected ARM constantpool value type!!");
1272 CPI = MCP->getConstantPoolIndex(NewCPV, MCPE.getAlignment());
1273 return PCLabelId;
1274}
1275
Evan Chengfe864422009-11-08 00:15:23 +00001276void ARMBaseInstrInfo::
1277reMaterialize(MachineBasicBlock &MBB,
1278 MachineBasicBlock::iterator I,
1279 unsigned DestReg, unsigned SubIdx,
Evan Cheng6ad7da92009-11-14 02:55:43 +00001280 const MachineInstr *Orig,
Jakob Stoklund Olesena8ad9772010-06-02 22:47:25 +00001281 const TargetRegisterInfo &TRI) const {
Evan Chengfe864422009-11-08 00:15:23 +00001282 unsigned Opcode = Orig->getOpcode();
1283 switch (Opcode) {
1284 default: {
1285 MachineInstr *MI = MBB.getParent()->CloneMachineInstr(Orig);
Jakob Stoklund Olesena8ad9772010-06-02 22:47:25 +00001286 MI->substituteRegister(Orig->getOperand(0).getReg(), DestReg, SubIdx, TRI);
Evan Chengfe864422009-11-08 00:15:23 +00001287 MBB.insert(I, MI);
1288 break;
1289 }
1290 case ARM::tLDRpci_pic:
1291 case ARM::t2LDRpci_pic: {
1292 MachineFunction &MF = *MBB.getParent();
Evan Chengfe864422009-11-08 00:15:23 +00001293 unsigned CPI = Orig->getOperand(1).getIndex();
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001294 unsigned PCLabelId = duplicateCPV(MF, CPI);
Evan Chengfe864422009-11-08 00:15:23 +00001295 MachineInstrBuilder MIB = BuildMI(MBB, I, Orig->getDebugLoc(), get(Opcode),
1296 DestReg)
1297 .addConstantPoolIndex(CPI).addImm(PCLabelId);
Chris Lattner1d0c2572011-04-29 05:24:29 +00001298 MIB->setMemRefs(Orig->memoperands_begin(), Orig->memoperands_end());
Evan Chengfe864422009-11-08 00:15:23 +00001299 break;
1300 }
1301 }
Evan Chengfe864422009-11-08 00:15:23 +00001302}
1303
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001304MachineInstr *
1305ARMBaseInstrInfo::duplicate(MachineInstr *Orig, MachineFunction &MF) const {
Jakob Stoklund Olesen9de596e2012-11-28 02:35:17 +00001306 MachineInstr *MI = TargetInstrInfo::duplicate(Orig, MF);
Jakob Stoklund Olesen29a64c92010-01-06 23:47:07 +00001307 switch(Orig->getOpcode()) {
1308 case ARM::tLDRpci_pic:
1309 case ARM::t2LDRpci_pic: {
1310 unsigned CPI = Orig->getOperand(1).getIndex();
1311 unsigned PCLabelId = duplicateCPV(MF, CPI);
1312 Orig->getOperand(1).setIndex(CPI);
1313 Orig->getOperand(2).setImm(PCLabelId);
1314 break;
1315 }
1316 }
1317 return MI;
1318}
1319
Evan Chenge9c46c22010-03-03 01:44:33 +00001320bool ARMBaseInstrInfo::produceSameValue(const MachineInstr *MI0,
Evan Chengb8b0ad82011-01-20 08:34:58 +00001321 const MachineInstr *MI1,
1322 const MachineRegisterInfo *MRI) const {
Evan Chenga8e8a7c2009-11-07 04:04:34 +00001323 int Opcode = MI0->getOpcode();
Evan Cheng028ccbfc2011-01-20 23:55:07 +00001324 if (Opcode == ARM::t2LDRpci ||
Evan Chengbbd50b02009-11-20 02:10:27 +00001325 Opcode == ARM::t2LDRpci_pic ||
1326 Opcode == ARM::tLDRpci ||
Evan Chengb8b0ad82011-01-20 08:34:58 +00001327 Opcode == ARM::tLDRpci_pic ||
Tim Northover72360d22013-12-02 10:35:41 +00001328 Opcode == ARM::LDRLIT_ga_pcrel ||
1329 Opcode == ARM::LDRLIT_ga_pcrel_ldr ||
1330 Opcode == ARM::tLDRLIT_ga_pcrel ||
Evan Cheng2f2435d2011-01-21 18:55:51 +00001331 Opcode == ARM::MOV_ga_pcrel ||
1332 Opcode == ARM::MOV_ga_pcrel_ldr ||
Evan Cheng2f2435d2011-01-21 18:55:51 +00001333 Opcode == ARM::t2MOV_ga_pcrel) {
Evan Chenga8e8a7c2009-11-07 04:04:34 +00001334 if (MI1->getOpcode() != Opcode)
1335 return false;
1336 if (MI0->getNumOperands() != MI1->getNumOperands())
1337 return false;
1338
1339 const MachineOperand &MO0 = MI0->getOperand(1);
1340 const MachineOperand &MO1 = MI1->getOperand(1);
1341 if (MO0.getOffset() != MO1.getOffset())
1342 return false;
1343
Tim Northover72360d22013-12-02 10:35:41 +00001344 if (Opcode == ARM::LDRLIT_ga_pcrel ||
1345 Opcode == ARM::LDRLIT_ga_pcrel_ldr ||
1346 Opcode == ARM::tLDRLIT_ga_pcrel ||
1347 Opcode == ARM::MOV_ga_pcrel ||
Evan Cheng2f2435d2011-01-21 18:55:51 +00001348 Opcode == ARM::MOV_ga_pcrel_ldr ||
Evan Cheng2f2435d2011-01-21 18:55:51 +00001349 Opcode == ARM::t2MOV_ga_pcrel)
Evan Chengb8b0ad82011-01-20 08:34:58 +00001350 // Ignore the PC labels.
1351 return MO0.getGlobal() == MO1.getGlobal();
1352
Evan Chenga8e8a7c2009-11-07 04:04:34 +00001353 const MachineFunction *MF = MI0->getParent()->getParent();
1354 const MachineConstantPool *MCP = MF->getConstantPool();
1355 int CPI0 = MO0.getIndex();
1356 int CPI1 = MO1.getIndex();
1357 const MachineConstantPoolEntry &MCPE0 = MCP->getConstants()[CPI0];
1358 const MachineConstantPoolEntry &MCPE1 = MCP->getConstants()[CPI1];
Evan Chengf098bf12011-03-24 06:20:03 +00001359 bool isARMCP0 = MCPE0.isMachineConstantPoolEntry();
1360 bool isARMCP1 = MCPE1.isMachineConstantPoolEntry();
1361 if (isARMCP0 && isARMCP1) {
1362 ARMConstantPoolValue *ACPV0 =
1363 static_cast<ARMConstantPoolValue*>(MCPE0.Val.MachineCPVal);
1364 ARMConstantPoolValue *ACPV1 =
1365 static_cast<ARMConstantPoolValue*>(MCPE1.Val.MachineCPVal);
1366 return ACPV0->hasSameValue(ACPV1);
1367 } else if (!isARMCP0 && !isARMCP1) {
1368 return MCPE0.Val.ConstVal == MCPE1.Val.ConstVal;
1369 }
1370 return false;
Evan Chengb8b0ad82011-01-20 08:34:58 +00001371 } else if (Opcode == ARM::PICLDR) {
1372 if (MI1->getOpcode() != Opcode)
1373 return false;
1374 if (MI0->getNumOperands() != MI1->getNumOperands())
1375 return false;
1376
1377 unsigned Addr0 = MI0->getOperand(1).getReg();
1378 unsigned Addr1 = MI1->getOperand(1).getReg();
1379 if (Addr0 != Addr1) {
1380 if (!MRI ||
1381 !TargetRegisterInfo::isVirtualRegister(Addr0) ||
1382 !TargetRegisterInfo::isVirtualRegister(Addr1))
1383 return false;
1384
1385 // This assumes SSA form.
1386 MachineInstr *Def0 = MRI->getVRegDef(Addr0);
1387 MachineInstr *Def1 = MRI->getVRegDef(Addr1);
1388 // Check if the loaded value, e.g. a constantpool of a global address, are
1389 // the same.
1390 if (!produceSameValue(Def0, Def1, MRI))
1391 return false;
1392 }
1393
1394 for (unsigned i = 3, e = MI0->getNumOperands(); i != e; ++i) {
1395 // %vreg12<def> = PICLDR %vreg11, 0, pred:14, pred:%noreg
1396 const MachineOperand &MO0 = MI0->getOperand(i);
1397 const MachineOperand &MO1 = MI1->getOperand(i);
1398 if (!MO0.isIdenticalTo(MO1))
1399 return false;
1400 }
1401 return true;
Evan Chenga8e8a7c2009-11-07 04:04:34 +00001402 }
1403
Evan Chenge9c46c22010-03-03 01:44:33 +00001404 return MI0->isIdenticalTo(MI1, MachineInstr::IgnoreVRegDefs);
Evan Chenga8e8a7c2009-11-07 04:04:34 +00001405}
1406
Bill Wendlingf4707472010-06-23 23:00:16 +00001407/// areLoadsFromSameBasePtr - This is used by the pre-regalloc scheduler to
1408/// determine if two loads are loading from the same base address. It should
1409/// only return true if the base pointers are the same and the only differences
1410/// between the two addresses is the offset. It also returns the offsets by
1411/// reference.
Andrew Tricka7714a02012-11-12 19:40:10 +00001412///
1413/// FIXME: remove this in favor of the MachineInstr interface once pre-RA-sched
1414/// is permanently disabled.
Bill Wendlingf4707472010-06-23 23:00:16 +00001415bool ARMBaseInstrInfo::areLoadsFromSameBasePtr(SDNode *Load1, SDNode *Load2,
1416 int64_t &Offset1,
1417 int64_t &Offset2) const {
1418 // Don't worry about Thumb: just ARM and Thumb2.
1419 if (Subtarget.isThumb1Only()) return false;
1420
1421 if (!Load1->isMachineOpcode() || !Load2->isMachineOpcode())
1422 return false;
1423
1424 switch (Load1->getMachineOpcode()) {
1425 default:
1426 return false;
Jim Grosbach1e4d9a12010-10-26 22:37:02 +00001427 case ARM::LDRi12:
Jim Grosbach5a7c7152010-10-27 00:19:44 +00001428 case ARM::LDRBi12:
Bill Wendlingf4707472010-06-23 23:00:16 +00001429 case ARM::LDRD:
1430 case ARM::LDRH:
1431 case ARM::LDRSB:
1432 case ARM::LDRSH:
1433 case ARM::VLDRD:
1434 case ARM::VLDRS:
1435 case ARM::t2LDRi8:
Renato Golinb184cd92013-08-14 16:35:29 +00001436 case ARM::t2LDRBi8:
Bill Wendlingf4707472010-06-23 23:00:16 +00001437 case ARM::t2LDRDi8:
1438 case ARM::t2LDRSHi8:
1439 case ARM::t2LDRi12:
Renato Golinb184cd92013-08-14 16:35:29 +00001440 case ARM::t2LDRBi12:
Bill Wendlingf4707472010-06-23 23:00:16 +00001441 case ARM::t2LDRSHi12:
1442 break;
1443 }
1444
1445 switch (Load2->getMachineOpcode()) {
1446 default:
1447 return false;
Jim Grosbach1e4d9a12010-10-26 22:37:02 +00001448 case ARM::LDRi12:
Jim Grosbach5a7c7152010-10-27 00:19:44 +00001449 case ARM::LDRBi12:
Bill Wendlingf4707472010-06-23 23:00:16 +00001450 case ARM::LDRD:
1451 case ARM::LDRH:
1452 case ARM::LDRSB:
1453 case ARM::LDRSH:
1454 case ARM::VLDRD:
1455 case ARM::VLDRS:
1456 case ARM::t2LDRi8:
Renato Golinb184cd92013-08-14 16:35:29 +00001457 case ARM::t2LDRBi8:
Bill Wendlingf4707472010-06-23 23:00:16 +00001458 case ARM::t2LDRSHi8:
1459 case ARM::t2LDRi12:
Renato Golinb184cd92013-08-14 16:35:29 +00001460 case ARM::t2LDRBi12:
Bill Wendlingf4707472010-06-23 23:00:16 +00001461 case ARM::t2LDRSHi12:
1462 break;
1463 }
1464
1465 // Check if base addresses and chain operands match.
1466 if (Load1->getOperand(0) != Load2->getOperand(0) ||
1467 Load1->getOperand(4) != Load2->getOperand(4))
1468 return false;
1469
1470 // Index should be Reg0.
1471 if (Load1->getOperand(3) != Load2->getOperand(3))
1472 return false;
1473
1474 // Determine the offsets.
1475 if (isa<ConstantSDNode>(Load1->getOperand(1)) &&
1476 isa<ConstantSDNode>(Load2->getOperand(1))) {
1477 Offset1 = cast<ConstantSDNode>(Load1->getOperand(1))->getSExtValue();
1478 Offset2 = cast<ConstantSDNode>(Load2->getOperand(1))->getSExtValue();
1479 return true;
1480 }
1481
1482 return false;
1483}
1484
1485/// shouldScheduleLoadsNear - This is a used by the pre-regalloc scheduler to
Chris Lattner0ab5e2c2011-04-15 05:18:47 +00001486/// determine (in conjunction with areLoadsFromSameBasePtr) if two loads should
Bill Wendlingf4707472010-06-23 23:00:16 +00001487/// be scheduled togther. On some targets if two loads are loading from
1488/// addresses in the same cache line, it's better if they are scheduled
1489/// together. This function takes two integers that represent the load offsets
1490/// from the common base address. It returns true if it decides it's desirable
1491/// to schedule the two loads together. "NumLoads" is the number of loads that
1492/// have already been scheduled after Load1.
Andrew Tricka7714a02012-11-12 19:40:10 +00001493///
1494/// FIXME: remove this in favor of the MachineInstr interface once pre-RA-sched
1495/// is permanently disabled.
Bill Wendlingf4707472010-06-23 23:00:16 +00001496bool ARMBaseInstrInfo::shouldScheduleLoadsNear(SDNode *Load1, SDNode *Load2,
1497 int64_t Offset1, int64_t Offset2,
1498 unsigned NumLoads) const {
1499 // Don't worry about Thumb: just ARM and Thumb2.
1500 if (Subtarget.isThumb1Only()) return false;
1501
1502 assert(Offset2 > Offset1);
1503
1504 if ((Offset2 - Offset1) / 8 > 64)
1505 return false;
1506
Renato Golinb184cd92013-08-14 16:35:29 +00001507 // Check if the machine opcodes are different. If they are different
1508 // then we consider them to not be of the same base address,
1509 // EXCEPT in the case of Thumb2 byte loads where one is LDRBi8 and the other LDRBi12.
1510 // In this case, they are considered to be the same because they are different
1511 // encoding forms of the same basic instruction.
1512 if ((Load1->getMachineOpcode() != Load2->getMachineOpcode()) &&
1513 !((Load1->getMachineOpcode() == ARM::t2LDRBi8 &&
1514 Load2->getMachineOpcode() == ARM::t2LDRBi12) ||
1515 (Load1->getMachineOpcode() == ARM::t2LDRBi12 &&
1516 Load2->getMachineOpcode() == ARM::t2LDRBi8)))
Bill Wendlingf4707472010-06-23 23:00:16 +00001517 return false; // FIXME: overly conservative?
1518
1519 // Four loads in a row should be sufficient.
1520 if (NumLoads >= 3)
1521 return false;
1522
1523 return true;
1524}
1525
Evan Cheng2d51c7c2010-06-18 23:09:54 +00001526bool ARMBaseInstrInfo::isSchedulingBoundary(const MachineInstr *MI,
1527 const MachineBasicBlock *MBB,
1528 const MachineFunction &MF) const {
Jim Grosbachba3ece62010-06-25 18:43:14 +00001529 // Debug info is never a scheduling boundary. It's necessary to be explicit
1530 // due to the special treatment of IT instructions below, otherwise a
1531 // dbg_value followed by an IT will result in the IT instruction being
1532 // considered a scheduling hazard, which is wrong. It should be the actual
1533 // instruction preceding the dbg_value instruction(s), just like it is
1534 // when debug info is not present.
1535 if (MI->isDebugValue())
1536 return false;
1537
Evan Cheng2d51c7c2010-06-18 23:09:54 +00001538 // Terminators and labels can't be scheduled around.
Evan Cheng7f8e5632011-12-07 07:15:52 +00001539 if (MI->isTerminator() || MI->isLabel())
Evan Cheng2d51c7c2010-06-18 23:09:54 +00001540 return true;
1541
1542 // Treat the start of the IT block as a scheduling boundary, but schedule
1543 // t2IT along with all instructions following it.
1544 // FIXME: This is a big hammer. But the alternative is to add all potential
1545 // true and anti dependencies to IT block instructions as implicit operands
1546 // to the t2IT instruction. The added compile time and complexity does not
1547 // seem worth it.
1548 MachineBasicBlock::const_iterator I = MI;
Jim Grosbachba3ece62010-06-25 18:43:14 +00001549 // Make sure to skip any dbg_value instructions
1550 while (++I != MBB->end() && I->isDebugValue())
1551 ;
1552 if (I != MBB->end() && I->getOpcode() == ARM::t2IT)
Evan Cheng2d51c7c2010-06-18 23:09:54 +00001553 return true;
1554
1555 // Don't attempt to schedule around any instruction that defines
1556 // a stack-oriented pointer, as it's unlikely to be profitable. This
1557 // saves compile time, because it doesn't require every single
1558 // stack slot reference to depend on the instruction that does the
1559 // modification.
Jakob Stoklund Olesen6909faa2012-02-21 23:47:43 +00001560 // Calls don't actually change the stack pointer, even if they have imp-defs.
Jakob Stoklund Olesen5f37f1c2012-02-22 01:07:19 +00001561 // No ARM calling conventions change the stack pointer. (X86 calling
1562 // conventions sometimes do).
Jakob Stoklund Olesen6909faa2012-02-21 23:47:43 +00001563 if (!MI->isCall() && MI->definesRegister(ARM::SP))
Evan Cheng2d51c7c2010-06-18 23:09:54 +00001564 return true;
1565
1566 return false;
1567}
1568
Jakub Staszak9b07c0a2011-07-10 02:58:07 +00001569bool ARMBaseInstrInfo::
1570isProfitableToIfCvt(MachineBasicBlock &MBB,
1571 unsigned NumCycles, unsigned ExtraPredCycles,
1572 const BranchProbability &Probability) const {
Cameron Zwarich80018502011-04-13 06:39:16 +00001573 if (!NumCycles)
Evan Cheng02b184d2010-06-25 22:42:03 +00001574 return false;
Michael J. Spencere7f00cb2010-10-05 06:00:33 +00001575
Owen Anderson88af7d02010-09-28 18:32:13 +00001576 // Attempt to estimate the relative costs of predication versus branching.
Jakub Staszak9b07c0a2011-07-10 02:58:07 +00001577 unsigned UnpredCost = Probability.getNumerator() * NumCycles;
1578 UnpredCost /= Probability.getDenominator();
1579 UnpredCost += 1; // The branch itself
1580 UnpredCost += Subtarget.getMispredictionPenalty() / 10;
Michael J. Spencere7f00cb2010-10-05 06:00:33 +00001581
Jakub Staszak9b07c0a2011-07-10 02:58:07 +00001582 return (NumCycles + ExtraPredCycles) <= UnpredCost;
Evan Cheng02b184d2010-06-25 22:42:03 +00001583}
Michael J. Spencere7f00cb2010-10-05 06:00:33 +00001584
Evan Cheng02b184d2010-06-25 22:42:03 +00001585bool ARMBaseInstrInfo::
Evan Chengdebf9c52010-11-03 00:45:17 +00001586isProfitableToIfCvt(MachineBasicBlock &TMBB,
1587 unsigned TCycles, unsigned TExtra,
1588 MachineBasicBlock &FMBB,
1589 unsigned FCycles, unsigned FExtra,
Jakub Staszak9b07c0a2011-07-10 02:58:07 +00001590 const BranchProbability &Probability) const {
Evan Chengdebf9c52010-11-03 00:45:17 +00001591 if (!TCycles || !FCycles)
Owen Anderson88af7d02010-09-28 18:32:13 +00001592 return false;
Michael J. Spencere7f00cb2010-10-05 06:00:33 +00001593
Owen Anderson88af7d02010-09-28 18:32:13 +00001594 // Attempt to estimate the relative costs of predication versus branching.
Jakub Staszak9b07c0a2011-07-10 02:58:07 +00001595 unsigned TUnpredCost = Probability.getNumerator() * TCycles;
1596 TUnpredCost /= Probability.getDenominator();
Andrew Trick3f1fdf12011-09-21 02:17:37 +00001597
Jakub Staszak9b07c0a2011-07-10 02:58:07 +00001598 uint32_t Comp = Probability.getDenominator() - Probability.getNumerator();
1599 unsigned FUnpredCost = Comp * FCycles;
1600 FUnpredCost /= Probability.getDenominator();
Michael J. Spencere7f00cb2010-10-05 06:00:33 +00001601
Jakub Staszak9b07c0a2011-07-10 02:58:07 +00001602 unsigned UnpredCost = TUnpredCost + FUnpredCost;
1603 UnpredCost += 1; // The branch itself
1604 UnpredCost += Subtarget.getMispredictionPenalty() / 10;
1605
1606 return (TCycles + FCycles + TExtra + FExtra) <= UnpredCost;
Evan Cheng02b184d2010-06-25 22:42:03 +00001607}
1608
Bob Wilsone8a549c2012-09-29 21:43:49 +00001609bool
1610ARMBaseInstrInfo::isProfitableToUnpredicate(MachineBasicBlock &TMBB,
1611 MachineBasicBlock &FMBB) const {
1612 // Reduce false anti-dependencies to let Swift's out-of-order execution
1613 // engine do its thing.
1614 return Subtarget.isSwift();
1615}
1616
Evan Cheng2aa91cc2009-08-08 03:20:32 +00001617/// getInstrPredicate - If instruction is predicated, returns its predicate
1618/// condition, otherwise returns AL. It also returns the condition code
1619/// register by reference.
Evan Cheng83e0d482009-09-28 09:14:39 +00001620ARMCC::CondCodes
1621llvm::getInstrPredicate(const MachineInstr *MI, unsigned &PredReg) {
Evan Cheng2aa91cc2009-08-08 03:20:32 +00001622 int PIdx = MI->findFirstPredOperandIdx();
1623 if (PIdx == -1) {
1624 PredReg = 0;
1625 return ARMCC::AL;
1626 }
1627
1628 PredReg = MI->getOperand(PIdx+1).getReg();
1629 return (ARMCC::CondCodes)MI->getOperand(PIdx).getImm();
1630}
1631
1632
Evan Cheng780748d2009-07-28 05:48:47 +00001633int llvm::getMatchingCondBranchOpcode(int Opc) {
Evan Cheng056c6692009-07-27 18:20:05 +00001634 if (Opc == ARM::B)
1635 return ARM::Bcc;
David Blaikie46a9f012012-01-20 21:51:11 +00001636 if (Opc == ARM::tB)
Evan Cheng056c6692009-07-27 18:20:05 +00001637 return ARM::tBcc;
David Blaikie46a9f012012-01-20 21:51:11 +00001638 if (Opc == ARM::t2B)
1639 return ARM::t2Bcc;
Evan Cheng056c6692009-07-27 18:20:05 +00001640
1641 llvm_unreachable("Unknown unconditional branch opcode!");
Evan Cheng056c6692009-07-27 18:20:05 +00001642}
1643
Jakob Stoklund Olesen0a5b72f2012-04-04 18:23:42 +00001644/// commuteInstruction - Handle commutable instructions.
1645MachineInstr *
1646ARMBaseInstrInfo::commuteInstruction(MachineInstr *MI, bool NewMI) const {
1647 switch (MI->getOpcode()) {
1648 case ARM::MOVCCr:
1649 case ARM::t2MOVCCr: {
1650 // MOVCC can be commuted by inverting the condition.
1651 unsigned PredReg = 0;
1652 ARMCC::CondCodes CC = getInstrPredicate(MI, PredReg);
1653 // MOVCC AL can't be inverted. Shouldn't happen.
1654 if (CC == ARMCC::AL || PredReg != ARM::CPSR)
1655 return NULL;
Jakob Stoklund Olesen9de596e2012-11-28 02:35:17 +00001656 MI = TargetInstrInfo::commuteInstruction(MI, NewMI);
Jakob Stoklund Olesen0a5b72f2012-04-04 18:23:42 +00001657 if (!MI)
1658 return NULL;
1659 // After swapping the MOVCC operands, also invert the condition.
1660 MI->getOperand(MI->findFirstPredOperandIdx())
1661 .setImm(ARMCC::getOppositeCondition(CC));
1662 return MI;
1663 }
1664 }
Jakob Stoklund Olesen9de596e2012-11-28 02:35:17 +00001665 return TargetInstrInfo::commuteInstruction(MI, NewMI);
Jakob Stoklund Olesen0a5b72f2012-04-04 18:23:42 +00001666}
Evan Cheng780748d2009-07-28 05:48:47 +00001667
Jakob Stoklund Olesen6cb96122012-08-15 22:16:39 +00001668/// Identify instructions that can be folded into a MOVCC instruction, and
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001669/// return the defining instruction.
1670static MachineInstr *canFoldIntoMOVCC(unsigned Reg,
1671 const MachineRegisterInfo &MRI,
1672 const TargetInstrInfo *TII) {
Jakob Stoklund Olesen6cb96122012-08-15 22:16:39 +00001673 if (!TargetRegisterInfo::isVirtualRegister(Reg))
1674 return 0;
1675 if (!MRI.hasOneNonDBGUse(Reg))
1676 return 0;
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001677 MachineInstr *MI = MRI.getVRegDef(Reg);
Jakob Stoklund Olesen6cb96122012-08-15 22:16:39 +00001678 if (!MI)
1679 return 0;
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001680 // MI is folded into the MOVCC by predicating it.
1681 if (!MI->isPredicable())
1682 return 0;
Jakob Stoklund Olesen6cb96122012-08-15 22:16:39 +00001683 // Check if MI has any non-dead defs or physreg uses. This also detects
1684 // predicated instructions which will be reading CPSR.
1685 for (unsigned i = 1, e = MI->getNumOperands(); i != e; ++i) {
1686 const MachineOperand &MO = MI->getOperand(i);
Jakob Stoklund Olesen7b1a2e82012-08-17 20:55:34 +00001687 // Reject frame index operands, PEI can't handle the predicated pseudos.
1688 if (MO.isFI() || MO.isCPI() || MO.isJTI())
1689 return 0;
Jakob Stoklund Olesen6cb96122012-08-15 22:16:39 +00001690 if (!MO.isReg())
1691 continue;
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001692 // MI can't have any tied operands, that would conflict with predication.
1693 if (MO.isTied())
1694 return 0;
Jakob Stoklund Olesen6cb96122012-08-15 22:16:39 +00001695 if (TargetRegisterInfo::isPhysicalRegister(MO.getReg()))
1696 return 0;
1697 if (MO.isDef() && !MO.isDead())
1698 return 0;
1699 }
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001700 bool DontMoveAcrossStores = true;
1701 if (!MI->isSafeToMove(TII, /* AliasAnalysis = */ 0, DontMoveAcrossStores))
1702 return 0;
1703 return MI;
Jakob Stoklund Olesen6cb96122012-08-15 22:16:39 +00001704}
1705
Jakob Stoklund Olesenc19bf022012-08-16 23:14:20 +00001706bool ARMBaseInstrInfo::analyzeSelect(const MachineInstr *MI,
1707 SmallVectorImpl<MachineOperand> &Cond,
1708 unsigned &TrueOp, unsigned &FalseOp,
1709 bool &Optimizable) const {
1710 assert((MI->getOpcode() == ARM::MOVCCr || MI->getOpcode() == ARM::t2MOVCCr) &&
1711 "Unknown select instruction");
1712 // MOVCC operands:
1713 // 0: Def.
1714 // 1: True use.
1715 // 2: False use.
1716 // 3: Condition code.
1717 // 4: CPSR use.
1718 TrueOp = 1;
1719 FalseOp = 2;
1720 Cond.push_back(MI->getOperand(3));
1721 Cond.push_back(MI->getOperand(4));
1722 // We can always fold a def.
1723 Optimizable = true;
1724 return false;
1725}
1726
1727MachineInstr *ARMBaseInstrInfo::optimizeSelect(MachineInstr *MI,
1728 bool PreferFalse) const {
1729 assert((MI->getOpcode() == ARM::MOVCCr || MI->getOpcode() == ARM::t2MOVCCr) &&
1730 "Unknown select instruction");
Matthias Braun2f169f92013-10-04 16:52:56 +00001731 MachineRegisterInfo &MRI = MI->getParent()->getParent()->getRegInfo();
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001732 MachineInstr *DefMI = canFoldIntoMOVCC(MI->getOperand(2).getReg(), MRI, this);
1733 bool Invert = !DefMI;
1734 if (!DefMI)
1735 DefMI = canFoldIntoMOVCC(MI->getOperand(1).getReg(), MRI, this);
1736 if (!DefMI)
Jakob Stoklund Olesenc19bf022012-08-16 23:14:20 +00001737 return 0;
1738
Matthias Braun2f169f92013-10-04 16:52:56 +00001739 // Find new register class to use.
1740 MachineOperand FalseReg = MI->getOperand(Invert ? 2 : 1);
1741 unsigned DestReg = MI->getOperand(0).getReg();
1742 const TargetRegisterClass *PreviousClass = MRI.getRegClass(FalseReg.getReg());
1743 if (!MRI.constrainRegClass(DestReg, PreviousClass))
1744 return 0;
1745
Jakob Stoklund Olesenc19bf022012-08-16 23:14:20 +00001746 // Create a new predicated version of DefMI.
1747 // Rfalse is the first use.
1748 MachineInstrBuilder NewMI = BuildMI(*MI->getParent(), MI, MI->getDebugLoc(),
Matthias Braun2f169f92013-10-04 16:52:56 +00001749 DefMI->getDesc(), DestReg);
Jakob Stoklund Olesenc19bf022012-08-16 23:14:20 +00001750
1751 // Copy all the DefMI operands, excluding its (null) predicate.
1752 const MCInstrDesc &DefDesc = DefMI->getDesc();
1753 for (unsigned i = 1, e = DefDesc.getNumOperands();
1754 i != e && !DefDesc.OpInfo[i].isPredicate(); ++i)
1755 NewMI.addOperand(DefMI->getOperand(i));
1756
1757 unsigned CondCode = MI->getOperand(3).getImm();
1758 if (Invert)
1759 NewMI.addImm(ARMCC::getOppositeCondition(ARMCC::CondCodes(CondCode)));
1760 else
1761 NewMI.addImm(CondCode);
1762 NewMI.addOperand(MI->getOperand(4));
1763
1764 // DefMI is not the -S version that sets CPSR, so add an optional %noreg.
1765 if (NewMI->hasOptionalDef())
1766 AddDefaultCC(NewMI);
1767
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001768 // The output register value when the predicate is false is an implicit
1769 // register operand tied to the first def.
1770 // The tie makes the register allocator ensure the FalseReg is allocated the
1771 // same register as operand 0.
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001772 FalseReg.setImplicit();
Jakob Stoklund Olesen2ea20362012-12-20 22:53:55 +00001773 NewMI.addOperand(FalseReg);
Jakob Stoklund Olesenf8310592012-09-05 23:58:02 +00001774 NewMI->tieOperands(0, NewMI->getNumOperands() - 1);
1775
Jakob Stoklund Olesenc19bf022012-08-16 23:14:20 +00001776 // The caller will erase MI, but not DefMI.
1777 DefMI->eraseFromParent();
1778 return NewMI;
1779}
1780
Andrew Trick924123a2011-09-21 02:20:46 +00001781/// Map pseudo instructions that imply an 'S' bit onto real opcodes. Whether the
1782/// instruction is encoded with an 'S' bit is determined by the optional CPSR
1783/// def operand.
1784///
1785/// This will go away once we can teach tblgen how to set the optional CPSR def
1786/// operand itself.
1787struct AddSubFlagsOpcodePair {
Craig Topper2fbd1302012-05-24 03:59:11 +00001788 uint16_t PseudoOpc;
1789 uint16_t MachineOpc;
Andrew Trick924123a2011-09-21 02:20:46 +00001790};
1791
Craig Topper2fbd1302012-05-24 03:59:11 +00001792static const AddSubFlagsOpcodePair AddSubFlagsOpcodeMap[] = {
Andrew Trick924123a2011-09-21 02:20:46 +00001793 {ARM::ADDSri, ARM::ADDri},
1794 {ARM::ADDSrr, ARM::ADDrr},
1795 {ARM::ADDSrsi, ARM::ADDrsi},
1796 {ARM::ADDSrsr, ARM::ADDrsr},
1797
1798 {ARM::SUBSri, ARM::SUBri},
1799 {ARM::SUBSrr, ARM::SUBrr},
1800 {ARM::SUBSrsi, ARM::SUBrsi},
1801 {ARM::SUBSrsr, ARM::SUBrsr},
1802
1803 {ARM::RSBSri, ARM::RSBri},
Andrew Trick924123a2011-09-21 02:20:46 +00001804 {ARM::RSBSrsi, ARM::RSBrsi},
1805 {ARM::RSBSrsr, ARM::RSBrsr},
1806
1807 {ARM::t2ADDSri, ARM::t2ADDri},
1808 {ARM::t2ADDSrr, ARM::t2ADDrr},
1809 {ARM::t2ADDSrs, ARM::t2ADDrs},
1810
1811 {ARM::t2SUBSri, ARM::t2SUBri},
1812 {ARM::t2SUBSrr, ARM::t2SUBrr},
1813 {ARM::t2SUBSrs, ARM::t2SUBrs},
1814
1815 {ARM::t2RSBSri, ARM::t2RSBri},
1816 {ARM::t2RSBSrs, ARM::t2RSBrs},
1817};
1818
1819unsigned llvm::convertAddSubFlagsOpcode(unsigned OldOpc) {
Craig Topper2fbd1302012-05-24 03:59:11 +00001820 for (unsigned i = 0, e = array_lengthof(AddSubFlagsOpcodeMap); i != e; ++i)
1821 if (OldOpc == AddSubFlagsOpcodeMap[i].PseudoOpc)
1822 return AddSubFlagsOpcodeMap[i].MachineOpc;
Andrew Trick924123a2011-09-21 02:20:46 +00001823 return 0;
1824}
1825
Evan Cheng780748d2009-07-28 05:48:47 +00001826void llvm::emitARMRegPlusImmediate(MachineBasicBlock &MBB,
1827 MachineBasicBlock::iterator &MBBI, DebugLoc dl,
1828 unsigned DestReg, unsigned BaseReg, int NumBytes,
1829 ARMCC::CondCodes Pred, unsigned PredReg,
Anton Korobeynikove7410dd2011-03-05 18:43:32 +00001830 const ARMBaseInstrInfo &TII, unsigned MIFlags) {
Tim Northoverc9432eb2013-11-04 23:04:15 +00001831 if (NumBytes == 0 && DestReg != BaseReg) {
1832 BuildMI(MBB, MBBI, dl, TII.get(ARM::MOVr), DestReg)
1833 .addReg(BaseReg, RegState::Kill)
1834 .addImm((unsigned)Pred).addReg(PredReg).addReg(0)
1835 .setMIFlags(MIFlags);
1836 return;
1837 }
1838
Evan Cheng780748d2009-07-28 05:48:47 +00001839 bool isSub = NumBytes < 0;
1840 if (isSub) NumBytes = -NumBytes;
1841
1842 while (NumBytes) {
1843 unsigned RotAmt = ARM_AM::getSOImmValRotate(NumBytes);
1844 unsigned ThisVal = NumBytes & ARM_AM::rotr32(0xFF, RotAmt);
1845 assert(ThisVal && "Didn't extract field correctly");
1846
1847 // We will handle these bits from offset, clear them.
1848 NumBytes &= ~ThisVal;
1849
1850 assert(ARM_AM::getSOImmVal(ThisVal) != -1 && "Bit extraction didn't work?");
1851
1852 // Build the new ADD / SUB.
1853 unsigned Opc = isSub ? ARM::SUBri : ARM::ADDri;
1854 BuildMI(MBB, MBBI, dl, TII.get(Opc), DestReg)
1855 .addReg(BaseReg, RegState::Kill).addImm(ThisVal)
Anton Korobeynikove7410dd2011-03-05 18:43:32 +00001856 .addImm((unsigned)Pred).addReg(PredReg).addReg(0)
1857 .setMIFlags(MIFlags);
Evan Cheng780748d2009-07-28 05:48:47 +00001858 BaseReg = DestReg;
1859 }
1860}
1861
Tim Northoverdee86042013-12-02 14:46:26 +00001862bool llvm::tryFoldSPUpdateIntoPushPop(const ARMSubtarget &Subtarget,
1863 MachineFunction &MF, MachineInstr *MI,
Tim Northover93bcc662013-11-08 17:18:07 +00001864 unsigned NumBytes) {
1865 // This optimisation potentially adds lots of load and store
1866 // micro-operations, it's only really a great benefit to code-size.
Tim Northoverdee86042013-12-02 14:46:26 +00001867 if (!Subtarget.isMinSize())
Tim Northover93bcc662013-11-08 17:18:07 +00001868 return false;
1869
1870 // If only one register is pushed/popped, LLVM can use an LDR/STR
1871 // instead. We can't modify those so make sure we're dealing with an
1872 // instruction we understand.
1873 bool IsPop = isPopOpcode(MI->getOpcode());
1874 bool IsPush = isPushOpcode(MI->getOpcode());
1875 if (!IsPush && !IsPop)
1876 return false;
1877
1878 bool IsVFPPushPop = MI->getOpcode() == ARM::VSTMDDB_UPD ||
1879 MI->getOpcode() == ARM::VLDMDIA_UPD;
1880 bool IsT1PushPop = MI->getOpcode() == ARM::tPUSH ||
1881 MI->getOpcode() == ARM::tPOP ||
1882 MI->getOpcode() == ARM::tPOP_RET;
1883
1884 assert((IsT1PushPop || (MI->getOperand(0).getReg() == ARM::SP &&
1885 MI->getOperand(1).getReg() == ARM::SP)) &&
1886 "trying to fold sp update into non-sp-updating push/pop");
1887
1888 // The VFP push & pop act on D-registers, so we can only fold an adjustment
1889 // by a multiple of 8 bytes in correctly. Similarly rN is 4-bytes. Don't try
1890 // if this is violated.
1891 if (NumBytes % (IsVFPPushPop ? 8 : 4) != 0)
1892 return false;
1893
1894 // ARM and Thumb2 push/pop insts have explicit "sp, sp" operands (+
1895 // pred) so the list starts at 4. Thumb1 starts after the predicate.
1896 int RegListIdx = IsT1PushPop ? 2 : 4;
1897
1898 // Calculate the space we'll need in terms of registers.
1899 unsigned FirstReg = MI->getOperand(RegListIdx).getReg();
1900 unsigned RD0Reg, RegsNeeded;
1901 if (IsVFPPushPop) {
1902 RD0Reg = ARM::D0;
1903 RegsNeeded = NumBytes / 8;
1904 } else {
1905 RD0Reg = ARM::R0;
1906 RegsNeeded = NumBytes / 4;
1907 }
1908
1909 // We're going to have to strip all list operands off before
1910 // re-adding them since the order matters, so save the existing ones
1911 // for later.
1912 SmallVector<MachineOperand, 4> RegList;
1913 for (int i = MI->getNumOperands() - 1; i >= RegListIdx; --i)
1914 RegList.push_back(MI->getOperand(i));
1915
1916 MachineBasicBlock *MBB = MI->getParent();
1917 const TargetRegisterInfo *TRI = MF.getRegInfo().getTargetRegisterInfo();
Tim Northover45479dc2013-12-01 14:16:24 +00001918 const MCPhysReg *CSRegs = TRI->getCalleeSavedRegs(&MF);
Tim Northover93bcc662013-11-08 17:18:07 +00001919
1920 // Now try to find enough space in the reglist to allocate NumBytes.
1921 for (unsigned CurReg = FirstReg - 1; CurReg >= RD0Reg && RegsNeeded;
Tim Northover45479dc2013-12-01 14:16:24 +00001922 --CurReg) {
Tim Northover93bcc662013-11-08 17:18:07 +00001923 if (!IsPop) {
1924 // Pushing any register is completely harmless, mark the
1925 // register involved as undef since we don't care about it in
1926 // the slightest.
1927 RegList.push_back(MachineOperand::CreateReg(CurReg, false, false,
1928 false, false, true));
Tim Northover45479dc2013-12-01 14:16:24 +00001929 --RegsNeeded;
Tim Northover93bcc662013-11-08 17:18:07 +00001930 continue;
1931 }
1932
Tim Northover45479dc2013-12-01 14:16:24 +00001933 // However, we can only pop an extra register if it's not live. For
1934 // registers live within the function we might clobber a return value
1935 // register; the other way a register can be live here is if it's
1936 // callee-saved.
1937 if (isCalleeSavedRegister(CurReg, CSRegs) ||
1938 MBB->computeRegisterLiveness(TRI, CurReg, MI) !=
1939 MachineBasicBlock::LQR_Dead) {
1940 // VFP pops don't allow holes in the register list, so any skip is fatal
1941 // for our transformation. GPR pops do, so we should just keep looking.
1942 if (IsVFPPushPop)
1943 return false;
1944 else
1945 continue;
1946 }
Tim Northover93bcc662013-11-08 17:18:07 +00001947
1948 // Mark the unimportant registers as <def,dead> in the POP.
Lang Hames1ca11232013-11-22 00:46:32 +00001949 RegList.push_back(MachineOperand::CreateReg(CurReg, true, false, false,
1950 true));
Tim Northover45479dc2013-12-01 14:16:24 +00001951 --RegsNeeded;
Tim Northover93bcc662013-11-08 17:18:07 +00001952 }
1953
1954 if (RegsNeeded > 0)
1955 return false;
1956
1957 // Finally we know we can profitably perform the optimisation so go
1958 // ahead: strip all existing registers off and add them back again
1959 // in the right order.
1960 for (int i = MI->getNumOperands() - 1; i >= RegListIdx; --i)
1961 MI->RemoveOperand(i);
1962
1963 // Add the complete list back in.
1964 MachineInstrBuilder MIB(MF, &*MI);
1965 for (int i = RegList.size() - 1; i >= 0; --i)
1966 MIB.addOperand(RegList[i]);
1967
1968 return true;
1969}
1970
Evan Cheng7a37b1a2009-08-27 01:23:50 +00001971bool llvm::rewriteARMFrameIndex(MachineInstr &MI, unsigned FrameRegIdx,
1972 unsigned FrameReg, int &Offset,
1973 const ARMBaseInstrInfo &TII) {
Evan Cheng780748d2009-07-28 05:48:47 +00001974 unsigned Opcode = MI.getOpcode();
Evan Cheng6cc775f2011-06-28 19:10:37 +00001975 const MCInstrDesc &Desc = MI.getDesc();
Evan Cheng780748d2009-07-28 05:48:47 +00001976 unsigned AddrMode = (Desc.TSFlags & ARMII::AddrModeMask);
1977 bool isSub = false;
Jim Grosbachf24f9d92009-08-11 15:33:49 +00001978
Evan Cheng780748d2009-07-28 05:48:47 +00001979 // Memory operands in inline assembly always use AddrMode2.
1980 if (Opcode == ARM::INLINEASM)
1981 AddrMode = ARMII::AddrMode2;
Jim Grosbachf24f9d92009-08-11 15:33:49 +00001982
Evan Cheng780748d2009-07-28 05:48:47 +00001983 if (Opcode == ARM::ADDri) {
1984 Offset += MI.getOperand(FrameRegIdx+1).getImm();
1985 if (Offset == 0) {
1986 // Turn it into a move.
1987 MI.setDesc(TII.get(ARM::MOVr));
1988 MI.getOperand(FrameRegIdx).ChangeToRegister(FrameReg, false);
1989 MI.RemoveOperand(FrameRegIdx+1);
Evan Cheng7a37b1a2009-08-27 01:23:50 +00001990 Offset = 0;
1991 return true;
Evan Cheng780748d2009-07-28 05:48:47 +00001992 } else if (Offset < 0) {
1993 Offset = -Offset;
1994 isSub = true;
1995 MI.setDesc(TII.get(ARM::SUBri));
1996 }
1997
1998 // Common case: small offset, fits into instruction.
1999 if (ARM_AM::getSOImmVal(Offset) != -1) {
2000 // Replace the FrameIndex with sp / fp
2001 MI.getOperand(FrameRegIdx).ChangeToRegister(FrameReg, false);
2002 MI.getOperand(FrameRegIdx+1).ChangeToImmediate(Offset);
Evan Cheng7a37b1a2009-08-27 01:23:50 +00002003 Offset = 0;
2004 return true;
Evan Cheng780748d2009-07-28 05:48:47 +00002005 }
2006
2007 // Otherwise, pull as much of the immedidate into this ADDri/SUBri
2008 // as possible.
2009 unsigned RotAmt = ARM_AM::getSOImmValRotate(Offset);
2010 unsigned ThisImmVal = Offset & ARM_AM::rotr32(0xFF, RotAmt);
2011
2012 // We will handle these bits from offset, clear them.
2013 Offset &= ~ThisImmVal;
2014
2015 // Get the properly encoded SOImmVal field.
2016 assert(ARM_AM::getSOImmVal(ThisImmVal) != -1 &&
2017 "Bit extraction didn't work?");
2018 MI.getOperand(FrameRegIdx+1).ChangeToImmediate(ThisImmVal);
2019 } else {
2020 unsigned ImmIdx = 0;
2021 int InstrOffs = 0;
2022 unsigned NumBits = 0;
2023 unsigned Scale = 1;
2024 switch (AddrMode) {
Jim Grosbach1e4d9a12010-10-26 22:37:02 +00002025 case ARMII::AddrMode_i12: {
2026 ImmIdx = FrameRegIdx + 1;
2027 InstrOffs = MI.getOperand(ImmIdx).getImm();
2028 NumBits = 12;
2029 break;
2030 }
Evan Cheng780748d2009-07-28 05:48:47 +00002031 case ARMII::AddrMode2: {
2032 ImmIdx = FrameRegIdx+2;
2033 InstrOffs = ARM_AM::getAM2Offset(MI.getOperand(ImmIdx).getImm());
2034 if (ARM_AM::getAM2Op(MI.getOperand(ImmIdx).getImm()) == ARM_AM::sub)
2035 InstrOffs *= -1;
2036 NumBits = 12;
2037 break;
2038 }
2039 case ARMII::AddrMode3: {
2040 ImmIdx = FrameRegIdx+2;
2041 InstrOffs = ARM_AM::getAM3Offset(MI.getOperand(ImmIdx).getImm());
2042 if (ARM_AM::getAM3Op(MI.getOperand(ImmIdx).getImm()) == ARM_AM::sub)
2043 InstrOffs *= -1;
2044 NumBits = 8;
2045 break;
2046 }
Anton Korobeynikov887d05c2009-08-08 13:35:48 +00002047 case ARMII::AddrMode4:
Jim Grosbach01c1cae2009-11-15 21:45:34 +00002048 case ARMII::AddrMode6:
Evan Cheng7a37b1a2009-08-27 01:23:50 +00002049 // Can't fold any offset even if it's zero.
2050 return false;
Evan Cheng780748d2009-07-28 05:48:47 +00002051 case ARMII::AddrMode5: {
2052 ImmIdx = FrameRegIdx+1;
2053 InstrOffs = ARM_AM::getAM5Offset(MI.getOperand(ImmIdx).getImm());
2054 if (ARM_AM::getAM5Op(MI.getOperand(ImmIdx).getImm()) == ARM_AM::sub)
2055 InstrOffs *= -1;
2056 NumBits = 8;
2057 Scale = 4;
2058 break;
2059 }
2060 default:
2061 llvm_unreachable("Unsupported addressing mode!");
Evan Cheng780748d2009-07-28 05:48:47 +00002062 }
2063
2064 Offset += InstrOffs * Scale;
2065 assert((Offset & (Scale-1)) == 0 && "Can't encode this offset!");
2066 if (Offset < 0) {
2067 Offset = -Offset;
2068 isSub = true;
2069 }
2070
2071 // Attempt to fold address comp. if opcode has offset bits
2072 if (NumBits > 0) {
2073 // Common case: small offset, fits into instruction.
2074 MachineOperand &ImmOp = MI.getOperand(ImmIdx);
2075 int ImmedOffset = Offset / Scale;
2076 unsigned Mask = (1 << NumBits) - 1;
2077 if ((unsigned)Offset <= Mask * Scale) {
2078 // Replace the FrameIndex with sp
2079 MI.getOperand(FrameRegIdx).ChangeToRegister(FrameReg, false);
Jim Grosbach9d2d1f02010-10-27 01:19:41 +00002080 // FIXME: When addrmode2 goes away, this will simplify (like the
2081 // T2 version), as the LDR.i12 versions don't need the encoding
2082 // tricks for the offset value.
2083 if (isSub) {
2084 if (AddrMode == ARMII::AddrMode_i12)
2085 ImmedOffset = -ImmedOffset;
2086 else
2087 ImmedOffset |= 1 << NumBits;
2088 }
Evan Cheng780748d2009-07-28 05:48:47 +00002089 ImmOp.ChangeToImmediate(ImmedOffset);
Evan Cheng7a37b1a2009-08-27 01:23:50 +00002090 Offset = 0;
2091 return true;
Evan Cheng780748d2009-07-28 05:48:47 +00002092 }
Jim Grosbachf24f9d92009-08-11 15:33:49 +00002093
Evan Cheng780748d2009-07-28 05:48:47 +00002094 // Otherwise, it didn't fit. Pull in what we can to simplify the immed.
2095 ImmedOffset = ImmedOffset & Mask;
Jim Grosbach8bf14832010-10-27 16:50:31 +00002096 if (isSub) {
2097 if (AddrMode == ARMII::AddrMode_i12)
2098 ImmedOffset = -ImmedOffset;
2099 else
2100 ImmedOffset |= 1 << NumBits;
2101 }
Evan Cheng780748d2009-07-28 05:48:47 +00002102 ImmOp.ChangeToImmediate(ImmedOffset);
2103 Offset &= ~(Mask*Scale);
2104 }
2105 }
2106
Evan Cheng7a37b1a2009-08-27 01:23:50 +00002107 Offset = (isSub) ? -Offset : Offset;
2108 return Offset == 0;
Evan Cheng780748d2009-07-28 05:48:47 +00002109}
Bill Wendling7de9d522010-08-06 01:32:48 +00002110
Manman Ren6fa76dc2012-06-29 21:33:59 +00002111/// analyzeCompare - For a comparison instruction, return the source registers
2112/// in SrcReg and SrcReg2 if having two register operands, and the value it
2113/// compares against in CmpValue. Return true if the comparison instruction
2114/// can be analyzed.
Bill Wendling7de9d522010-08-06 01:32:48 +00002115bool ARMBaseInstrInfo::
Manman Ren6fa76dc2012-06-29 21:33:59 +00002116analyzeCompare(const MachineInstr *MI, unsigned &SrcReg, unsigned &SrcReg2,
2117 int &CmpMask, int &CmpValue) const {
Bill Wendling7de9d522010-08-06 01:32:48 +00002118 switch (MI->getOpcode()) {
2119 default: break;
Bill Wendling79553ba2010-08-11 00:23:00 +00002120 case ARM::CMPri:
Bill Wendling7de9d522010-08-06 01:32:48 +00002121 case ARM::t2CMPri:
Bill Wendling7de9d522010-08-06 01:32:48 +00002122 SrcReg = MI->getOperand(0).getReg();
Manman Ren6fa76dc2012-06-29 21:33:59 +00002123 SrcReg2 = 0;
Gabor Greifadbbb932010-09-21 12:01:15 +00002124 CmpMask = ~0;
Bill Wendling7de9d522010-08-06 01:32:48 +00002125 CmpValue = MI->getOperand(1).getImm();
2126 return true;
Manman Rendc8ad002012-05-11 01:30:47 +00002127 case ARM::CMPrr:
2128 case ARM::t2CMPrr:
2129 SrcReg = MI->getOperand(0).getReg();
Manman Ren6fa76dc2012-06-29 21:33:59 +00002130 SrcReg2 = MI->getOperand(1).getReg();
Manman Rendc8ad002012-05-11 01:30:47 +00002131 CmpMask = ~0;
2132 CmpValue = 0;
2133 return true;
Gabor Greifadbbb932010-09-21 12:01:15 +00002134 case ARM::TSTri:
2135 case ARM::t2TSTri:
2136 SrcReg = MI->getOperand(0).getReg();
Manman Ren6fa76dc2012-06-29 21:33:59 +00002137 SrcReg2 = 0;
Gabor Greifadbbb932010-09-21 12:01:15 +00002138 CmpMask = MI->getOperand(1).getImm();
2139 CmpValue = 0;
2140 return true;
2141 }
2142
2143 return false;
2144}
2145
Gabor Greifd36e3e82010-09-29 10:12:08 +00002146/// isSuitableForMask - Identify a suitable 'and' instruction that
2147/// operates on the given source register and applies the same mask
2148/// as a 'tst' instruction. Provide a limited look-through for copies.
2149/// When successful, MI will hold the found instruction.
2150static bool isSuitableForMask(MachineInstr *&MI, unsigned SrcReg,
Gabor Greif1a25ae82010-09-21 13:30:57 +00002151 int CmpMask, bool CommonUse) {
Gabor Greifd36e3e82010-09-29 10:12:08 +00002152 switch (MI->getOpcode()) {
Gabor Greifadbbb932010-09-21 12:01:15 +00002153 case ARM::ANDri:
2154 case ARM::t2ANDri:
Gabor Greifd36e3e82010-09-29 10:12:08 +00002155 if (CmpMask != MI->getOperand(2).getImm())
Gabor Greif1a25ae82010-09-21 13:30:57 +00002156 return false;
Gabor Greifd36e3e82010-09-29 10:12:08 +00002157 if (SrcReg == MI->getOperand(CommonUse ? 1 : 0).getReg())
Gabor Greifadbbb932010-09-21 12:01:15 +00002158 return true;
2159 break;
Gabor Greifd36e3e82010-09-29 10:12:08 +00002160 case ARM::COPY: {
2161 // Walk down one instruction which is potentially an 'and'.
2162 const MachineInstr &Copy = *MI;
Michael J. Spencer70ac5fa2010-10-05 06:00:43 +00002163 MachineBasicBlock::iterator AND(
2164 llvm::next(MachineBasicBlock::iterator(MI)));
Gabor Greifd36e3e82010-09-29 10:12:08 +00002165 if (AND == MI->getParent()->end()) return false;
2166 MI = AND;
2167 return isSuitableForMask(MI, Copy.getOperand(0).getReg(),
2168 CmpMask, true);
2169 }
Bill Wendling7de9d522010-08-06 01:32:48 +00002170 }
2171
2172 return false;
2173}
2174
Manman Renb1b3db62012-06-29 22:06:19 +00002175/// getSwappedCondition - assume the flags are set by MI(a,b), return
2176/// the condition code if we modify the instructions such that flags are
2177/// set by MI(b,a).
2178inline static ARMCC::CondCodes getSwappedCondition(ARMCC::CondCodes CC) {
2179 switch (CC) {
2180 default: return ARMCC::AL;
2181 case ARMCC::EQ: return ARMCC::EQ;
2182 case ARMCC::NE: return ARMCC::NE;
2183 case ARMCC::HS: return ARMCC::LS;
2184 case ARMCC::LO: return ARMCC::HI;
2185 case ARMCC::HI: return ARMCC::LO;
2186 case ARMCC::LS: return ARMCC::HS;
2187 case ARMCC::GE: return ARMCC::LE;
2188 case ARMCC::LT: return ARMCC::GT;
2189 case ARMCC::GT: return ARMCC::LT;
2190 case ARMCC::LE: return ARMCC::GE;
2191 }
2192}
2193
2194/// isRedundantFlagInstr - check whether the first instruction, whose only
2195/// purpose is to update flags, can be made redundant.
2196/// CMPrr can be made redundant by SUBrr if the operands are the same.
2197/// CMPri can be made redundant by SUBri if the operands are the same.
2198/// This function can be extended later on.
2199inline static bool isRedundantFlagInstr(MachineInstr *CmpI, unsigned SrcReg,
2200 unsigned SrcReg2, int ImmValue,
2201 MachineInstr *OI) {
2202 if ((CmpI->getOpcode() == ARM::CMPrr ||
2203 CmpI->getOpcode() == ARM::t2CMPrr) &&
2204 (OI->getOpcode() == ARM::SUBrr ||
2205 OI->getOpcode() == ARM::t2SUBrr) &&
2206 ((OI->getOperand(1).getReg() == SrcReg &&
2207 OI->getOperand(2).getReg() == SrcReg2) ||
2208 (OI->getOperand(1).getReg() == SrcReg2 &&
2209 OI->getOperand(2).getReg() == SrcReg)))
2210 return true;
2211
2212 if ((CmpI->getOpcode() == ARM::CMPri ||
2213 CmpI->getOpcode() == ARM::t2CMPri) &&
2214 (OI->getOpcode() == ARM::SUBri ||
2215 OI->getOpcode() == ARM::t2SUBri) &&
2216 OI->getOperand(1).getReg() == SrcReg &&
2217 OI->getOperand(2).getImm() == ImmValue)
2218 return true;
2219 return false;
2220}
2221
Manman Ren6fa76dc2012-06-29 21:33:59 +00002222/// optimizeCompareInstr - Convert the instruction supplying the argument to the
2223/// comparison into one that sets the zero bit in the flags register;
2224/// Remove a redundant Compare instruction if an earlier instruction can set the
2225/// flags in the same way as Compare.
2226/// E.g. SUBrr(r1,r2) and CMPrr(r1,r2). We also handle the case where two
2227/// operands are swapped: SUBrr(r1,r2) and CMPrr(r2,r1), by updating the
2228/// condition code of instructions which use the flags.
Bill Wendling7de9d522010-08-06 01:32:48 +00002229bool ARMBaseInstrInfo::
Manman Ren6fa76dc2012-06-29 21:33:59 +00002230optimizeCompareInstr(MachineInstr *CmpInstr, unsigned SrcReg, unsigned SrcReg2,
2231 int CmpMask, int CmpValue,
2232 const MachineRegisterInfo *MRI) const {
Manman Renb1b3db62012-06-29 22:06:19 +00002233 // Get the unique definition of SrcReg.
2234 MachineInstr *MI = MRI->getUniqueVRegDef(SrcReg);
2235 if (!MI) return false;
Bill Wendling04123002010-09-10 23:34:19 +00002236
Gabor Greifadbbb932010-09-21 12:01:15 +00002237 // Masked compares sometimes use the same register as the corresponding 'and'.
2238 if (CmpMask != ~0) {
Jakob Stoklund Olesen8b9dce52012-09-10 19:17:25 +00002239 if (!isSuitableForMask(MI, SrcReg, CmpMask, false) || isPredicated(MI)) {
Gabor Greifadbbb932010-09-21 12:01:15 +00002240 MI = 0;
Bill Wendling337a3112010-10-18 21:22:31 +00002241 for (MachineRegisterInfo::use_iterator UI = MRI->use_begin(SrcReg),
2242 UE = MRI->use_end(); UI != UE; ++UI) {
Gabor Greifadbbb932010-09-21 12:01:15 +00002243 if (UI->getParent() != CmpInstr->getParent()) continue;
Gabor Greifd36e3e82010-09-29 10:12:08 +00002244 MachineInstr *PotentialAND = &*UI;
Jakob Stoklund Olesen8b9dce52012-09-10 19:17:25 +00002245 if (!isSuitableForMask(PotentialAND, SrcReg, CmpMask, true) ||
2246 isPredicated(PotentialAND))
Gabor Greifadbbb932010-09-21 12:01:15 +00002247 continue;
Gabor Greifd36e3e82010-09-29 10:12:08 +00002248 MI = PotentialAND;
Gabor Greifadbbb932010-09-21 12:01:15 +00002249 break;
2250 }
2251 if (!MI) return false;
2252 }
2253 }
2254
Manman Rendc8ad002012-05-11 01:30:47 +00002255 // Get ready to iterate backward from CmpInstr.
2256 MachineBasicBlock::iterator I = CmpInstr, E = MI,
2257 B = CmpInstr->getParent()->begin();
Bill Wendling59ebe442010-10-09 00:03:48 +00002258
2259 // Early exit if CmpInstr is at the beginning of the BB.
2260 if (I == B) return false;
2261
Manman Rendc8ad002012-05-11 01:30:47 +00002262 // There are two possible candidates which can be changed to set CPSR:
2263 // One is MI, the other is a SUB instruction.
2264 // For CMPrr(r1,r2), we are looking for SUB(r1,r2) or SUB(r2,r1).
2265 // For CMPri(r1, CmpValue), we are looking for SUBri(r1, CmpValue).
2266 MachineInstr *Sub = NULL;
Manman Ren6fa76dc2012-06-29 21:33:59 +00002267 if (SrcReg2 != 0)
Manman Rendc8ad002012-05-11 01:30:47 +00002268 // MI is not a candidate for CMPrr.
2269 MI = NULL;
Manman Ren6fa76dc2012-06-29 21:33:59 +00002270 else if (MI->getParent() != CmpInstr->getParent() || CmpValue != 0) {
Manman Rendc8ad002012-05-11 01:30:47 +00002271 // Conservatively refuse to convert an instruction which isn't in the same
2272 // BB as the comparison.
2273 // For CMPri, we need to check Sub, thus we can't return here.
Manman Ren0d5ec282012-05-11 15:36:46 +00002274 if (CmpInstr->getOpcode() == ARM::CMPri ||
Manman Rendc8ad002012-05-11 01:30:47 +00002275 CmpInstr->getOpcode() == ARM::t2CMPri)
2276 MI = NULL;
2277 else
2278 return false;
2279 }
2280
2281 // Check that CPSR isn't set between the comparison instruction and the one we
2282 // want to change. At the same time, search for Sub.
Manman Renb1b3db62012-06-29 22:06:19 +00002283 const TargetRegisterInfo *TRI = &getRegisterInfo();
Bill Wendling7de9d522010-08-06 01:32:48 +00002284 --I;
2285 for (; I != E; --I) {
2286 const MachineInstr &Instr = *I;
2287
Manman Renb1b3db62012-06-29 22:06:19 +00002288 if (Instr.modifiesRegister(ARM::CPSR, TRI) ||
2289 Instr.readsRegister(ARM::CPSR, TRI))
Bill Wendlingc6627ee2010-11-01 20:41:43 +00002290 // This instruction modifies or uses CPSR after the one we want to
2291 // change. We can't do this transformation.
Manman Renb1b3db62012-06-29 22:06:19 +00002292 return false;
Evan Chengd757c882010-09-21 23:49:07 +00002293
Manman Renb1b3db62012-06-29 22:06:19 +00002294 // Check whether CmpInstr can be made redundant by the current instruction.
2295 if (isRedundantFlagInstr(CmpInstr, SrcReg, SrcReg2, CmpValue, &*I)) {
Manman Rendc8ad002012-05-11 01:30:47 +00002296 Sub = &*I;
2297 break;
2298 }
2299
Evan Chengd757c882010-09-21 23:49:07 +00002300 if (I == B)
2301 // The 'and' is below the comparison instruction.
2302 return false;
Bill Wendling7de9d522010-08-06 01:32:48 +00002303 }
2304
Manman Rendc8ad002012-05-11 01:30:47 +00002305 // Return false if no candidates exist.
2306 if (!MI && !Sub)
2307 return false;
2308
2309 // The single candidate is called MI.
2310 if (!MI) MI = Sub;
2311
Jakob Stoklund Olesen8b9dce52012-09-10 19:17:25 +00002312 // We can't use a predicated instruction - it doesn't always write the flags.
2313 if (isPredicated(MI))
2314 return false;
2315
Bill Wendling7de9d522010-08-06 01:32:48 +00002316 switch (MI->getOpcode()) {
2317 default: break;
Cameron Zwarich93eae152011-04-15 20:28:28 +00002318 case ARM::RSBrr:
Owen Andersonbdff1c92011-04-06 23:35:59 +00002319 case ARM::RSBri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002320 case ARM::RSCrr:
Owen Andersonbdff1c92011-04-06 23:35:59 +00002321 case ARM::RSCri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002322 case ARM::ADDrr:
Bill Wendling79553ba2010-08-11 00:23:00 +00002323 case ARM::ADDri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002324 case ARM::ADCrr:
Owen Andersonbdff1c92011-04-06 23:35:59 +00002325 case ARM::ADCri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002326 case ARM::SUBrr:
Bill Wendling79553ba2010-08-11 00:23:00 +00002327 case ARM::SUBri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002328 case ARM::SBCrr:
Owen Andersonbdff1c92011-04-06 23:35:59 +00002329 case ARM::SBCri:
2330 case ARM::t2RSBri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002331 case ARM::t2ADDrr:
Bill Wendling79553ba2010-08-11 00:23:00 +00002332 case ARM::t2ADDri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002333 case ARM::t2ADCrr:
Owen Andersonbdff1c92011-04-06 23:35:59 +00002334 case ARM::t2ADCri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002335 case ARM::t2SUBrr:
Owen Andersonbdff1c92011-04-06 23:35:59 +00002336 case ARM::t2SUBri:
Cameron Zwarich93eae152011-04-15 20:28:28 +00002337 case ARM::t2SBCrr:
Cameron Zwarich0829b302011-04-15 20:45:00 +00002338 case ARM::t2SBCri:
2339 case ARM::ANDrr:
2340 case ARM::ANDri:
2341 case ARM::t2ANDrr:
Cameron Zwarich9c65e4d2011-04-15 21:24:38 +00002342 case ARM::t2ANDri:
2343 case ARM::ORRrr:
2344 case ARM::ORRri:
2345 case ARM::t2ORRrr:
2346 case ARM::t2ORRri:
2347 case ARM::EORrr:
2348 case ARM::EORri:
2349 case ARM::t2EORrr:
2350 case ARM::t2EORri: {
Manman Rendc8ad002012-05-11 01:30:47 +00002351 // Scan forward for the use of CPSR
2352 // When checking against MI: if it's a conditional code requires
Manman Ren34cb93e2012-07-11 22:51:44 +00002353 // checking of V bit, then this is not safe to do.
2354 // It is safe to remove CmpInstr if CPSR is redefined or killed.
2355 // If we are done with the basic block, we need to check whether CPSR is
2356 // live-out.
Manman Renb1b3db62012-06-29 22:06:19 +00002357 SmallVector<std::pair<MachineOperand*, ARMCC::CondCodes>, 4>
2358 OperandsToUpdate;
Evan Cheng425489d2011-03-23 22:52:04 +00002359 bool isSafe = false;
2360 I = CmpInstr;
Manman Rendc8ad002012-05-11 01:30:47 +00002361 E = CmpInstr->getParent()->end();
Evan Cheng425489d2011-03-23 22:52:04 +00002362 while (!isSafe && ++I != E) {
2363 const MachineInstr &Instr = *I;
2364 for (unsigned IO = 0, EO = Instr.getNumOperands();
2365 !isSafe && IO != EO; ++IO) {
2366 const MachineOperand &MO = Instr.getOperand(IO);
Jakob Stoklund Olesen4fad5b22012-02-17 19:23:15 +00002367 if (MO.isRegMask() && MO.clobbersPhysReg(ARM::CPSR)) {
2368 isSafe = true;
2369 break;
2370 }
Evan Cheng425489d2011-03-23 22:52:04 +00002371 if (!MO.isReg() || MO.getReg() != ARM::CPSR)
2372 continue;
2373 if (MO.isDef()) {
2374 isSafe = true;
2375 break;
2376 }
Weiming Zhao43d8e6c2013-12-06 17:56:48 +00002377 // Condition code is after the operand before CPSR except for VSELs.
2378 ARMCC::CondCodes CC;
2379 bool IsInstrVSel = true;
2380 switch (Instr.getOpcode()) {
2381 default:
2382 IsInstrVSel = false;
2383 CC = (ARMCC::CondCodes)Instr.getOperand(IO - 1).getImm();
2384 break;
2385 case ARM::VSELEQD:
2386 case ARM::VSELEQS:
2387 CC = ARMCC::EQ;
2388 break;
2389 case ARM::VSELGTD:
2390 case ARM::VSELGTS:
2391 CC = ARMCC::GT;
2392 break;
2393 case ARM::VSELGED:
2394 case ARM::VSELGES:
2395 CC = ARMCC::GE;
2396 break;
2397 case ARM::VSELVSS:
2398 case ARM::VSELVSD:
2399 CC = ARMCC::VS;
2400 break;
2401 }
2402
Manman Renb1b3db62012-06-29 22:06:19 +00002403 if (Sub) {
2404 ARMCC::CondCodes NewCC = getSwappedCondition(CC);
2405 if (NewCC == ARMCC::AL)
Manman Rendc8ad002012-05-11 01:30:47 +00002406 return false;
Manman Renb1b3db62012-06-29 22:06:19 +00002407 // If we have SUB(r1, r2) and CMP(r2, r1), the condition code based
2408 // on CMP needs to be updated to be based on SUB.
2409 // Push the condition code operands to OperandsToUpdate.
2410 // If it is safe to remove CmpInstr, the condition code of these
2411 // operands will be modified.
2412 if (SrcReg2 != 0 && Sub->getOperand(1).getReg() == SrcReg2 &&
Weiming Zhao43d8e6c2013-12-06 17:56:48 +00002413 Sub->getOperand(2).getReg() == SrcReg) {
2414 // VSel doesn't support condition code update.
2415 if (IsInstrVSel)
2416 return false;
2417 OperandsToUpdate.push_back(
2418 std::make_pair(&((*I).getOperand(IO - 1)), NewCC));
2419 }
2420 } else
Manman Rendc8ad002012-05-11 01:30:47 +00002421 switch (CC) {
2422 default:
Manman Ren88a0d332012-07-11 23:47:00 +00002423 // CPSR can be used multiple times, we should continue.
Manman Rendc8ad002012-05-11 01:30:47 +00002424 break;
2425 case ARMCC::VS:
2426 case ARMCC::VC:
2427 case ARMCC::GE:
2428 case ARMCC::LT:
2429 case ARMCC::GT:
2430 case ARMCC::LE:
2431 return false;
2432 }
Evan Cheng425489d2011-03-23 22:52:04 +00002433 }
2434 }
2435
Manman Ren34cb93e2012-07-11 22:51:44 +00002436 // If CPSR is not killed nor re-defined, we should check whether it is
2437 // live-out. If it is live-out, do not optimize.
2438 if (!isSafe) {
2439 MachineBasicBlock *MBB = CmpInstr->getParent();
2440 for (MachineBasicBlock::succ_iterator SI = MBB->succ_begin(),
2441 SE = MBB->succ_end(); SI != SE; ++SI)
2442 if ((*SI)->isLiveIn(ARM::CPSR))
2443 return false;
2444 }
Evan Cheng425489d2011-03-23 22:52:04 +00002445
Evan Cheng65536472010-11-17 08:06:50 +00002446 // Toggle the optional operand to CPSR.
2447 MI->getOperand(5).setReg(ARM::CPSR);
2448 MI->getOperand(5).setIsDef(true);
Jakob Stoklund Olesen8b9dce52012-09-10 19:17:25 +00002449 assert(!isPredicated(MI) && "Can't use flags from predicated instruction");
Bill Wendling7de9d522010-08-06 01:32:48 +00002450 CmpInstr->eraseFromParent();
Manman Rendc8ad002012-05-11 01:30:47 +00002451
2452 // Modify the condition code of operands in OperandsToUpdate.
2453 // Since we have SUB(r1, r2) and CMP(r2, r1), the condition code needs to
2454 // be changed from r2 > r1 to r1 < r2, from r2 < r1 to r1 > r2, etc.
Manman Renb1b3db62012-06-29 22:06:19 +00002455 for (unsigned i = 0, e = OperandsToUpdate.size(); i < e; i++)
2456 OperandsToUpdate[i].first->setImm(OperandsToUpdate[i].second);
Bill Wendling7de9d522010-08-06 01:32:48 +00002457 return true;
2458 }
Cameron Zwarich0829b302011-04-15 20:45:00 +00002459 }
Bill Wendling7de9d522010-08-06 01:32:48 +00002460
2461 return false;
2462}
Evan Cheng367a5df2010-09-09 18:18:55 +00002463
Evan Cheng7f8ab6e2010-11-17 20:13:28 +00002464bool ARMBaseInstrInfo::FoldImmediate(MachineInstr *UseMI,
2465 MachineInstr *DefMI, unsigned Reg,
2466 MachineRegisterInfo *MRI) const {
2467 // Fold large immediates into add, sub, or, xor.
2468 unsigned DefOpc = DefMI->getOpcode();
2469 if (DefOpc != ARM::t2MOVi32imm && DefOpc != ARM::MOVi32imm)
2470 return false;
2471 if (!DefMI->getOperand(1).isImm())
2472 // Could be t2MOVi32imm <ga:xx>
2473 return false;
2474
2475 if (!MRI->hasOneNonDBGUse(Reg))
2476 return false;
2477
Evan Chenga2b48d92012-03-26 23:31:00 +00002478 const MCInstrDesc &DefMCID = DefMI->getDesc();
2479 if (DefMCID.hasOptionalDef()) {
2480 unsigned NumOps = DefMCID.getNumOperands();
2481 const MachineOperand &MO = DefMI->getOperand(NumOps-1);
2482 if (MO.getReg() == ARM::CPSR && !MO.isDead())
2483 // If DefMI defines CPSR and it is not dead, it's obviously not safe
2484 // to delete DefMI.
2485 return false;
2486 }
2487
2488 const MCInstrDesc &UseMCID = UseMI->getDesc();
2489 if (UseMCID.hasOptionalDef()) {
2490 unsigned NumOps = UseMCID.getNumOperands();
2491 if (UseMI->getOperand(NumOps-1).getReg() == ARM::CPSR)
2492 // If the instruction sets the flag, do not attempt this optimization
2493 // since it may change the semantics of the code.
2494 return false;
2495 }
2496
Evan Cheng7f8ab6e2010-11-17 20:13:28 +00002497 unsigned UseOpc = UseMI->getOpcode();
Evan Cheng2d4e42f2010-11-18 01:43:23 +00002498 unsigned NewUseOpc = 0;
Evan Cheng7f8ab6e2010-11-17 20:13:28 +00002499 uint32_t ImmVal = (uint32_t)DefMI->getOperand(1).getImm();
Evan Cheng2d4e42f2010-11-18 01:43:23 +00002500 uint32_t SOImmValV1 = 0, SOImmValV2 = 0;
Evan Cheng7f8ab6e2010-11-17 20:13:28 +00002501 bool Commute = false;
2502 switch (UseOpc) {
2503 default: return false;
2504 case ARM::SUBrr:
2505 case ARM::ADDrr:
2506 case ARM::ORRrr:
2507 case ARM::EORrr:
2508 case ARM::t2SUBrr:
2509 case ARM::t2ADDrr:
2510 case ARM::t2ORRrr:
2511 case ARM::t2EORrr: {
2512 Commute = UseMI->getOperand(2).getReg() != Reg;
2513 switch (UseOpc) {
2514 default: break;
2515 case ARM::SUBrr: {
2516 if (Commute)
2517 return false;
2518 ImmVal = -ImmVal;
2519 NewUseOpc = ARM::SUBri;
2520 // Fallthrough
2521 }
2522 case ARM::ADDrr:
2523 case ARM::ORRrr:
2524 case ARM::EORrr: {
2525 if (!ARM_AM::isSOImmTwoPartVal(ImmVal))
2526 return false;
2527 SOImmValV1 = (uint32_t)ARM_AM::getSOImmTwoPartFirst(ImmVal);
2528 SOImmValV2 = (uint32_t)ARM_AM::getSOImmTwoPartSecond(ImmVal);
2529 switch (UseOpc) {
2530 default: break;
2531 case ARM::ADDrr: NewUseOpc = ARM::ADDri; break;
2532 case ARM::ORRrr: NewUseOpc = ARM::ORRri; break;
2533 case ARM::EORrr: NewUseOpc = ARM::EORri; break;
2534 }
2535 break;
2536 }
2537 case ARM::t2SUBrr: {
2538 if (Commute)
2539 return false;
2540 ImmVal = -ImmVal;
2541 NewUseOpc = ARM::t2SUBri;
2542 // Fallthrough
2543 }
2544 case ARM::t2ADDrr:
2545 case ARM::t2ORRrr:
2546 case ARM::t2EORrr: {
2547 if (!ARM_AM::isT2SOImmTwoPartVal(ImmVal))
2548 return false;
2549 SOImmValV1 = (uint32_t)ARM_AM::getT2SOImmTwoPartFirst(ImmVal);
2550 SOImmValV2 = (uint32_t)ARM_AM::getT2SOImmTwoPartSecond(ImmVal);
2551 switch (UseOpc) {
2552 default: break;
2553 case ARM::t2ADDrr: NewUseOpc = ARM::t2ADDri; break;
2554 case ARM::t2ORRrr: NewUseOpc = ARM::t2ORRri; break;
2555 case ARM::t2EORrr: NewUseOpc = ARM::t2EORri; break;
2556 }
2557 break;
2558 }
2559 }
2560 }
2561 }
2562
2563 unsigned OpIdx = Commute ? 2 : 1;
2564 unsigned Reg1 = UseMI->getOperand(OpIdx).getReg();
2565 bool isKill = UseMI->getOperand(OpIdx).isKill();
2566 unsigned NewReg = MRI->createVirtualRegister(MRI->getRegClass(Reg));
2567 AddDefaultCC(AddDefaultPred(BuildMI(*UseMI->getParent(),
Evan Cheng7fae11b2011-12-14 02:11:42 +00002568 UseMI, UseMI->getDebugLoc(),
Evan Cheng7f8ab6e2010-11-17 20:13:28 +00002569 get(NewUseOpc), NewReg)
2570 .addReg(Reg1, getKillRegState(isKill))
2571 .addImm(SOImmValV1)));
2572 UseMI->setDesc(get(NewUseOpc));
2573 UseMI->getOperand(1).setReg(NewReg);
2574 UseMI->getOperand(1).setIsKill();
2575 UseMI->getOperand(2).ChangeToImmediate(SOImmValV2);
2576 DefMI->eraseFromParent();
2577 return true;
2578}
2579
Bob Wilsone8a549c2012-09-29 21:43:49 +00002580static unsigned getNumMicroOpsSwiftLdSt(const InstrItineraryData *ItinData,
2581 const MachineInstr *MI) {
2582 switch (MI->getOpcode()) {
2583 default: {
2584 const MCInstrDesc &Desc = MI->getDesc();
2585 int UOps = ItinData->getNumMicroOps(Desc.getSchedClass());
2586 assert(UOps >= 0 && "bad # UOps");
2587 return UOps;
2588 }
2589
2590 case ARM::LDRrs:
2591 case ARM::LDRBrs:
2592 case ARM::STRrs:
2593 case ARM::STRBrs: {
2594 unsigned ShOpVal = MI->getOperand(3).getImm();
2595 bool isSub = ARM_AM::getAM2Op(ShOpVal) == ARM_AM::sub;
2596 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
2597 if (!isSub &&
2598 (ShImm == 0 ||
2599 ((ShImm == 1 || ShImm == 2 || ShImm == 3) &&
2600 ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl)))
2601 return 1;
2602 return 2;
2603 }
2604
2605 case ARM::LDRH:
2606 case ARM::STRH: {
2607 if (!MI->getOperand(2).getReg())
2608 return 1;
2609
2610 unsigned ShOpVal = MI->getOperand(3).getImm();
2611 bool isSub = ARM_AM::getAM2Op(ShOpVal) == ARM_AM::sub;
2612 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
2613 if (!isSub &&
2614 (ShImm == 0 ||
2615 ((ShImm == 1 || ShImm == 2 || ShImm == 3) &&
2616 ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl)))
2617 return 1;
2618 return 2;
2619 }
2620
2621 case ARM::LDRSB:
2622 case ARM::LDRSH:
2623 return (ARM_AM::getAM3Op(MI->getOperand(3).getImm()) == ARM_AM::sub) ? 3:2;
2624
2625 case ARM::LDRSB_POST:
2626 case ARM::LDRSH_POST: {
2627 unsigned Rt = MI->getOperand(0).getReg();
2628 unsigned Rm = MI->getOperand(3).getReg();
2629 return (Rt == Rm) ? 4 : 3;
2630 }
2631
2632 case ARM::LDR_PRE_REG:
2633 case ARM::LDRB_PRE_REG: {
2634 unsigned Rt = MI->getOperand(0).getReg();
2635 unsigned Rm = MI->getOperand(3).getReg();
2636 if (Rt == Rm)
2637 return 3;
2638 unsigned ShOpVal = MI->getOperand(4).getImm();
2639 bool isSub = ARM_AM::getAM2Op(ShOpVal) == ARM_AM::sub;
2640 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
2641 if (!isSub &&
2642 (ShImm == 0 ||
2643 ((ShImm == 1 || ShImm == 2 || ShImm == 3) &&
2644 ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl)))
2645 return 2;
2646 return 3;
2647 }
2648
2649 case ARM::STR_PRE_REG:
2650 case ARM::STRB_PRE_REG: {
2651 unsigned ShOpVal = MI->getOperand(4).getImm();
2652 bool isSub = ARM_AM::getAM2Op(ShOpVal) == ARM_AM::sub;
2653 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
2654 if (!isSub &&
2655 (ShImm == 0 ||
2656 ((ShImm == 1 || ShImm == 2 || ShImm == 3) &&
2657 ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl)))
2658 return 2;
2659 return 3;
2660 }
2661
2662 case ARM::LDRH_PRE:
2663 case ARM::STRH_PRE: {
2664 unsigned Rt = MI->getOperand(0).getReg();
2665 unsigned Rm = MI->getOperand(3).getReg();
2666 if (!Rm)
2667 return 2;
2668 if (Rt == Rm)
2669 return 3;
2670 return (ARM_AM::getAM3Op(MI->getOperand(4).getImm()) == ARM_AM::sub)
2671 ? 3 : 2;
2672 }
2673
2674 case ARM::LDR_POST_REG:
2675 case ARM::LDRB_POST_REG:
2676 case ARM::LDRH_POST: {
2677 unsigned Rt = MI->getOperand(0).getReg();
2678 unsigned Rm = MI->getOperand(3).getReg();
2679 return (Rt == Rm) ? 3 : 2;
2680 }
2681
2682 case ARM::LDR_PRE_IMM:
2683 case ARM::LDRB_PRE_IMM:
2684 case ARM::LDR_POST_IMM:
2685 case ARM::LDRB_POST_IMM:
2686 case ARM::STRB_POST_IMM:
2687 case ARM::STRB_POST_REG:
2688 case ARM::STRB_PRE_IMM:
2689 case ARM::STRH_POST:
2690 case ARM::STR_POST_IMM:
2691 case ARM::STR_POST_REG:
2692 case ARM::STR_PRE_IMM:
2693 return 2;
2694
2695 case ARM::LDRSB_PRE:
2696 case ARM::LDRSH_PRE: {
2697 unsigned Rm = MI->getOperand(3).getReg();
2698 if (Rm == 0)
2699 return 3;
2700 unsigned Rt = MI->getOperand(0).getReg();
2701 if (Rt == Rm)
2702 return 4;
2703 unsigned ShOpVal = MI->getOperand(4).getImm();
2704 bool isSub = ARM_AM::getAM2Op(ShOpVal) == ARM_AM::sub;
2705 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
2706 if (!isSub &&
2707 (ShImm == 0 ||
2708 ((ShImm == 1 || ShImm == 2 || ShImm == 3) &&
2709 ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl)))
2710 return 3;
2711 return 4;
2712 }
2713
2714 case ARM::LDRD: {
2715 unsigned Rt = MI->getOperand(0).getReg();
2716 unsigned Rn = MI->getOperand(2).getReg();
2717 unsigned Rm = MI->getOperand(3).getReg();
2718 if (Rm)
2719 return (ARM_AM::getAM3Op(MI->getOperand(4).getImm()) == ARM_AM::sub) ?4:3;
2720 return (Rt == Rn) ? 3 : 2;
2721 }
2722
2723 case ARM::STRD: {
2724 unsigned Rm = MI->getOperand(3).getReg();
2725 if (Rm)
2726 return (ARM_AM::getAM3Op(MI->getOperand(4).getImm()) == ARM_AM::sub) ?4:3;
2727 return 2;
2728 }
2729
2730 case ARM::LDRD_POST:
2731 case ARM::t2LDRD_POST:
2732 return 3;
2733
2734 case ARM::STRD_POST:
2735 case ARM::t2STRD_POST:
2736 return 4;
2737
2738 case ARM::LDRD_PRE: {
2739 unsigned Rt = MI->getOperand(0).getReg();
2740 unsigned Rn = MI->getOperand(3).getReg();
2741 unsigned Rm = MI->getOperand(4).getReg();
2742 if (Rm)
2743 return (ARM_AM::getAM3Op(MI->getOperand(5).getImm()) == ARM_AM::sub) ?5:4;
2744 return (Rt == Rn) ? 4 : 3;
2745 }
2746
2747 case ARM::t2LDRD_PRE: {
2748 unsigned Rt = MI->getOperand(0).getReg();
2749 unsigned Rn = MI->getOperand(3).getReg();
2750 return (Rt == Rn) ? 4 : 3;
2751 }
2752
2753 case ARM::STRD_PRE: {
2754 unsigned Rm = MI->getOperand(4).getReg();
2755 if (Rm)
2756 return (ARM_AM::getAM3Op(MI->getOperand(5).getImm()) == ARM_AM::sub) ?5:4;
2757 return 3;
2758 }
2759
2760 case ARM::t2STRD_PRE:
2761 return 3;
2762
2763 case ARM::t2LDR_POST:
2764 case ARM::t2LDRB_POST:
2765 case ARM::t2LDRB_PRE:
2766 case ARM::t2LDRSBi12:
2767 case ARM::t2LDRSBi8:
2768 case ARM::t2LDRSBpci:
2769 case ARM::t2LDRSBs:
2770 case ARM::t2LDRH_POST:
2771 case ARM::t2LDRH_PRE:
2772 case ARM::t2LDRSBT:
2773 case ARM::t2LDRSB_POST:
2774 case ARM::t2LDRSB_PRE:
2775 case ARM::t2LDRSH_POST:
2776 case ARM::t2LDRSH_PRE:
2777 case ARM::t2LDRSHi12:
2778 case ARM::t2LDRSHi8:
2779 case ARM::t2LDRSHpci:
2780 case ARM::t2LDRSHs:
2781 return 2;
2782
2783 case ARM::t2LDRDi8: {
2784 unsigned Rt = MI->getOperand(0).getReg();
2785 unsigned Rn = MI->getOperand(2).getReg();
2786 return (Rt == Rn) ? 3 : 2;
2787 }
2788
2789 case ARM::t2STRB_POST:
2790 case ARM::t2STRB_PRE:
2791 case ARM::t2STRBs:
2792 case ARM::t2STRDi8:
2793 case ARM::t2STRH_POST:
2794 case ARM::t2STRH_PRE:
2795 case ARM::t2STRHs:
2796 case ARM::t2STR_POST:
2797 case ARM::t2STR_PRE:
2798 case ARM::t2STRs:
2799 return 2;
2800 }
2801}
2802
Andrew Trick2ac6f7d2012-09-14 18:48:46 +00002803// Return the number of 32-bit words loaded by LDM or stored by STM. If this
2804// can't be easily determined return 0 (missing MachineMemOperand).
2805//
2806// FIXME: The current MachineInstr design does not support relying on machine
2807// mem operands to determine the width of a memory access. Instead, we expect
2808// the target to provide this information based on the instruction opcode and
2809// operands. However, using MachineMemOperand is a the best solution now for
2810// two reasons:
2811//
2812// 1) getNumMicroOps tries to infer LDM memory width from the total number of MI
2813// operands. This is much more dangerous than using the MachineMemOperand
2814// sizes because CodeGen passes can insert/remove optional machine operands. In
2815// fact, it's totally incorrect for preRA passes and appears to be wrong for
2816// postRA passes as well.
2817//
2818// 2) getNumLDMAddresses is only used by the scheduling machine model and any
2819// machine model that calls this should handle the unknown (zero size) case.
2820//
2821// Long term, we should require a target hook that verifies MachineMemOperand
2822// sizes during MC lowering. That target hook should be local to MC lowering
2823// because we can't ensure that it is aware of other MI forms. Doing this will
2824// ensure that MachineMemOperands are correctly propagated through all passes.
2825unsigned ARMBaseInstrInfo::getNumLDMAddresses(const MachineInstr *MI) const {
2826 unsigned Size = 0;
2827 for (MachineInstr::mmo_iterator I = MI->memoperands_begin(),
2828 E = MI->memoperands_end(); I != E; ++I) {
2829 Size += (*I)->getSize();
2830 }
2831 return Size / 4;
2832}
2833
Evan Cheng367a5df2010-09-09 18:18:55 +00002834unsigned
Evan Chengdebf9c52010-11-03 00:45:17 +00002835ARMBaseInstrInfo::getNumMicroOps(const InstrItineraryData *ItinData,
2836 const MachineInstr *MI) const {
Evan Chengbf407072010-09-10 01:29:16 +00002837 if (!ItinData || ItinData->isEmpty())
Evan Cheng367a5df2010-09-09 18:18:55 +00002838 return 1;
2839
Evan Cheng6cc775f2011-06-28 19:10:37 +00002840 const MCInstrDesc &Desc = MI->getDesc();
Evan Cheng367a5df2010-09-09 18:18:55 +00002841 unsigned Class = Desc.getSchedClass();
Andrew Trickf161e392012-07-02 18:10:42 +00002842 int ItinUOps = ItinData->getNumMicroOps(Class);
Bob Wilsone8a549c2012-09-29 21:43:49 +00002843 if (ItinUOps >= 0) {
2844 if (Subtarget.isSwift() && (Desc.mayLoad() || Desc.mayStore()))
2845 return getNumMicroOpsSwiftLdSt(ItinData, MI);
2846
Andrew Trickf161e392012-07-02 18:10:42 +00002847 return ItinUOps;
Bob Wilsone8a549c2012-09-29 21:43:49 +00002848 }
Evan Cheng367a5df2010-09-09 18:18:55 +00002849
2850 unsigned Opc = MI->getOpcode();
2851 switch (Opc) {
2852 default:
2853 llvm_unreachable("Unexpected multi-uops instruction!");
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002854 case ARM::VLDMQIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002855 case ARM::VSTMQIA:
Evan Cheng367a5df2010-09-09 18:18:55 +00002856 return 2;
2857
2858 // The number of uOps for load / store multiple are determined by the number
2859 // registers.
Andrew Trickc416ba62010-12-24 04:28:06 +00002860 //
Evan Chengbf407072010-09-10 01:29:16 +00002861 // On Cortex-A8, each pair of register loads / stores can be scheduled on the
2862 // same cycle. The scheduling for the first load / store must be done
Sylvestre Ledru35521e22012-07-23 08:51:15 +00002863 // separately by assuming the address is not 64-bit aligned.
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002864 //
Evan Chengbf407072010-09-10 01:29:16 +00002865 // On Cortex-A9, the formula is simply (#reg / 2) + (#reg % 2). If the address
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002866 // is not 64-bit aligned, then AGU would take an extra cycle. For VFP / NEON
2867 // load / store multiple, the formula is (#reg / 2) + (#reg % 2) + 1.
2868 case ARM::VLDMDIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002869 case ARM::VLDMDIA_UPD:
2870 case ARM::VLDMDDB_UPD:
2871 case ARM::VLDMSIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002872 case ARM::VLDMSIA_UPD:
2873 case ARM::VLDMSDB_UPD:
2874 case ARM::VSTMDIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002875 case ARM::VSTMDIA_UPD:
2876 case ARM::VSTMDDB_UPD:
2877 case ARM::VSTMSIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002878 case ARM::VSTMSIA_UPD:
2879 case ARM::VSTMSDB_UPD: {
Evan Cheng367a5df2010-09-09 18:18:55 +00002880 unsigned NumRegs = MI->getNumOperands() - Desc.getNumOperands();
2881 return (NumRegs / 2) + (NumRegs % 2) + 1;
2882 }
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002883
2884 case ARM::LDMIA_RET:
2885 case ARM::LDMIA:
2886 case ARM::LDMDA:
2887 case ARM::LDMDB:
2888 case ARM::LDMIB:
2889 case ARM::LDMIA_UPD:
2890 case ARM::LDMDA_UPD:
2891 case ARM::LDMDB_UPD:
2892 case ARM::LDMIB_UPD:
2893 case ARM::STMIA:
2894 case ARM::STMDA:
2895 case ARM::STMDB:
2896 case ARM::STMIB:
2897 case ARM::STMIA_UPD:
2898 case ARM::STMDA_UPD:
2899 case ARM::STMDB_UPD:
2900 case ARM::STMIB_UPD:
2901 case ARM::tLDMIA:
2902 case ARM::tLDMIA_UPD:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002903 case ARM::tSTMIA_UPD:
Evan Cheng367a5df2010-09-09 18:18:55 +00002904 case ARM::tPOP_RET:
2905 case ARM::tPOP:
2906 case ARM::tPUSH:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002907 case ARM::t2LDMIA_RET:
2908 case ARM::t2LDMIA:
2909 case ARM::t2LDMDB:
2910 case ARM::t2LDMIA_UPD:
2911 case ARM::t2LDMDB_UPD:
2912 case ARM::t2STMIA:
2913 case ARM::t2STMDB:
2914 case ARM::t2STMIA_UPD:
2915 case ARM::t2STMDB_UPD: {
Evan Chengbf407072010-09-10 01:29:16 +00002916 unsigned NumRegs = MI->getNumOperands() - Desc.getNumOperands() + 1;
Bob Wilsone8a549c2012-09-29 21:43:49 +00002917 if (Subtarget.isSwift()) {
Bob Wilsone8a549c2012-09-29 21:43:49 +00002918 int UOps = 1 + NumRegs; // One for address computation, one for each ld / st.
2919 switch (Opc) {
2920 default: break;
2921 case ARM::VLDMDIA_UPD:
2922 case ARM::VLDMDDB_UPD:
2923 case ARM::VLDMSIA_UPD:
2924 case ARM::VLDMSDB_UPD:
2925 case ARM::VSTMDIA_UPD:
2926 case ARM::VSTMDDB_UPD:
2927 case ARM::VSTMSIA_UPD:
2928 case ARM::VSTMSDB_UPD:
2929 case ARM::LDMIA_UPD:
2930 case ARM::LDMDA_UPD:
2931 case ARM::LDMDB_UPD:
2932 case ARM::LDMIB_UPD:
2933 case ARM::STMIA_UPD:
2934 case ARM::STMDA_UPD:
2935 case ARM::STMDB_UPD:
2936 case ARM::STMIB_UPD:
2937 case ARM::tLDMIA_UPD:
2938 case ARM::tSTMIA_UPD:
2939 case ARM::t2LDMIA_UPD:
2940 case ARM::t2LDMDB_UPD:
2941 case ARM::t2STMIA_UPD:
2942 case ARM::t2STMDB_UPD:
2943 ++UOps; // One for base register writeback.
2944 break;
2945 case ARM::LDMIA_RET:
2946 case ARM::tPOP_RET:
2947 case ARM::t2LDMIA_RET:
2948 UOps += 2; // One for base reg wb, one for write to pc.
2949 break;
2950 }
2951 return UOps;
2952 } else if (Subtarget.isCortexA8()) {
Evan Chengdebf9c52010-11-03 00:45:17 +00002953 if (NumRegs < 4)
2954 return 2;
2955 // 4 registers would be issued: 2, 2.
2956 // 5 registers would be issued: 2, 2, 1.
Andrew Trickf161e392012-07-02 18:10:42 +00002957 int A8UOps = (NumRegs / 2);
Evan Chengdebf9c52010-11-03 00:45:17 +00002958 if (NumRegs % 2)
Andrew Trickf161e392012-07-02 18:10:42 +00002959 ++A8UOps;
2960 return A8UOps;
Bob Wilsone8a549c2012-09-29 21:43:49 +00002961 } else if (Subtarget.isLikeA9() || Subtarget.isSwift()) {
Andrew Trickf161e392012-07-02 18:10:42 +00002962 int A9UOps = (NumRegs / 2);
Evan Chengbf407072010-09-10 01:29:16 +00002963 // If there are odd number of registers or if it's not 64-bit aligned,
2964 // then it takes an extra AGU (Address Generation Unit) cycle.
2965 if ((NumRegs % 2) ||
2966 !MI->hasOneMemOperand() ||
2967 (*MI->memoperands_begin())->getAlignment() < 8)
Andrew Trickf161e392012-07-02 18:10:42 +00002968 ++A9UOps;
2969 return A9UOps;
Evan Chengbf407072010-09-10 01:29:16 +00002970 } else {
2971 // Assume the worst.
2972 return NumRegs;
Michael J. Spencere7f00cb2010-10-05 06:00:33 +00002973 }
Evan Cheng367a5df2010-09-09 18:18:55 +00002974 }
2975 }
2976}
Evan Cheng49d4c0b2010-10-06 06:27:31 +00002977
2978int
Evan Cheng412e37b2010-10-07 23:12:15 +00002979ARMBaseInstrInfo::getVLDMDefCycle(const InstrItineraryData *ItinData,
Evan Cheng6cc775f2011-06-28 19:10:37 +00002980 const MCInstrDesc &DefMCID,
Evan Cheng412e37b2010-10-07 23:12:15 +00002981 unsigned DefClass,
2982 unsigned DefIdx, unsigned DefAlign) const {
Evan Cheng6cc775f2011-06-28 19:10:37 +00002983 int RegNo = (int)(DefIdx+1) - DefMCID.getNumOperands() + 1;
Evan Cheng412e37b2010-10-07 23:12:15 +00002984 if (RegNo <= 0)
2985 // Def is the address writeback.
2986 return ItinData->getOperandCycle(DefClass, DefIdx);
2987
2988 int DefCycle;
2989 if (Subtarget.isCortexA8()) {
2990 // (regno / 2) + (regno % 2) + 1
2991 DefCycle = RegNo / 2 + 1;
2992 if (RegNo % 2)
2993 ++DefCycle;
Bob Wilsone8a549c2012-09-29 21:43:49 +00002994 } else if (Subtarget.isLikeA9() || Subtarget.isSwift()) {
Evan Cheng412e37b2010-10-07 23:12:15 +00002995 DefCycle = RegNo;
2996 bool isSLoad = false;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00002997
Evan Cheng6cc775f2011-06-28 19:10:37 +00002998 switch (DefMCID.getOpcode()) {
Evan Cheng412e37b2010-10-07 23:12:15 +00002999 default: break;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003000 case ARM::VLDMSIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003001 case ARM::VLDMSIA_UPD:
3002 case ARM::VLDMSDB_UPD:
Evan Cheng412e37b2010-10-07 23:12:15 +00003003 isSLoad = true;
3004 break;
3005 }
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003006
Evan Cheng412e37b2010-10-07 23:12:15 +00003007 // If there are odd number of 'S' registers or if it's not 64-bit aligned,
3008 // then it takes an extra cycle.
3009 if ((isSLoad && (RegNo % 2)) || DefAlign < 8)
3010 ++DefCycle;
3011 } else {
3012 // Assume the worst.
3013 DefCycle = RegNo + 2;
3014 }
3015
3016 return DefCycle;
3017}
3018
3019int
3020ARMBaseInstrInfo::getLDMDefCycle(const InstrItineraryData *ItinData,
Evan Cheng6cc775f2011-06-28 19:10:37 +00003021 const MCInstrDesc &DefMCID,
Evan Cheng412e37b2010-10-07 23:12:15 +00003022 unsigned DefClass,
3023 unsigned DefIdx, unsigned DefAlign) const {
Evan Cheng6cc775f2011-06-28 19:10:37 +00003024 int RegNo = (int)(DefIdx+1) - DefMCID.getNumOperands() + 1;
Evan Cheng412e37b2010-10-07 23:12:15 +00003025 if (RegNo <= 0)
3026 // Def is the address writeback.
3027 return ItinData->getOperandCycle(DefClass, DefIdx);
3028
3029 int DefCycle;
3030 if (Subtarget.isCortexA8()) {
3031 // 4 registers would be issued: 1, 2, 1.
3032 // 5 registers would be issued: 1, 2, 2.
3033 DefCycle = RegNo / 2;
3034 if (DefCycle < 1)
3035 DefCycle = 1;
3036 // Result latency is issue cycle + 2: E2.
3037 DefCycle += 2;
Bob Wilsone8a549c2012-09-29 21:43:49 +00003038 } else if (Subtarget.isLikeA9() || Subtarget.isSwift()) {
Evan Cheng412e37b2010-10-07 23:12:15 +00003039 DefCycle = (RegNo / 2);
3040 // If there are odd number of registers or if it's not 64-bit aligned,
3041 // then it takes an extra AGU (Address Generation Unit) cycle.
3042 if ((RegNo % 2) || DefAlign < 8)
3043 ++DefCycle;
3044 // Result latency is AGU cycles + 2.
3045 DefCycle += 2;
3046 } else {
3047 // Assume the worst.
3048 DefCycle = RegNo + 2;
3049 }
3050
3051 return DefCycle;
3052}
3053
3054int
3055ARMBaseInstrInfo::getVSTMUseCycle(const InstrItineraryData *ItinData,
Evan Cheng6cc775f2011-06-28 19:10:37 +00003056 const MCInstrDesc &UseMCID,
Evan Cheng412e37b2010-10-07 23:12:15 +00003057 unsigned UseClass,
3058 unsigned UseIdx, unsigned UseAlign) const {
Evan Cheng6cc775f2011-06-28 19:10:37 +00003059 int RegNo = (int)(UseIdx+1) - UseMCID.getNumOperands() + 1;
Evan Cheng412e37b2010-10-07 23:12:15 +00003060 if (RegNo <= 0)
3061 return ItinData->getOperandCycle(UseClass, UseIdx);
3062
3063 int UseCycle;
3064 if (Subtarget.isCortexA8()) {
3065 // (regno / 2) + (regno % 2) + 1
3066 UseCycle = RegNo / 2 + 1;
3067 if (RegNo % 2)
3068 ++UseCycle;
Bob Wilsone8a549c2012-09-29 21:43:49 +00003069 } else if (Subtarget.isLikeA9() || Subtarget.isSwift()) {
Evan Cheng412e37b2010-10-07 23:12:15 +00003070 UseCycle = RegNo;
3071 bool isSStore = false;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003072
Evan Cheng6cc775f2011-06-28 19:10:37 +00003073 switch (UseMCID.getOpcode()) {
Evan Cheng412e37b2010-10-07 23:12:15 +00003074 default: break;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003075 case ARM::VSTMSIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003076 case ARM::VSTMSIA_UPD:
3077 case ARM::VSTMSDB_UPD:
Evan Cheng412e37b2010-10-07 23:12:15 +00003078 isSStore = true;
3079 break;
3080 }
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003081
Evan Cheng412e37b2010-10-07 23:12:15 +00003082 // If there are odd number of 'S' registers or if it's not 64-bit aligned,
3083 // then it takes an extra cycle.
3084 if ((isSStore && (RegNo % 2)) || UseAlign < 8)
3085 ++UseCycle;
3086 } else {
3087 // Assume the worst.
3088 UseCycle = RegNo + 2;
3089 }
3090
3091 return UseCycle;
3092}
3093
3094int
3095ARMBaseInstrInfo::getSTMUseCycle(const InstrItineraryData *ItinData,
Evan Cheng6cc775f2011-06-28 19:10:37 +00003096 const MCInstrDesc &UseMCID,
Evan Cheng412e37b2010-10-07 23:12:15 +00003097 unsigned UseClass,
3098 unsigned UseIdx, unsigned UseAlign) const {
Evan Cheng6cc775f2011-06-28 19:10:37 +00003099 int RegNo = (int)(UseIdx+1) - UseMCID.getNumOperands() + 1;
Evan Cheng412e37b2010-10-07 23:12:15 +00003100 if (RegNo <= 0)
3101 return ItinData->getOperandCycle(UseClass, UseIdx);
3102
3103 int UseCycle;
3104 if (Subtarget.isCortexA8()) {
3105 UseCycle = RegNo / 2;
3106 if (UseCycle < 2)
3107 UseCycle = 2;
3108 // Read in E3.
3109 UseCycle += 2;
Bob Wilsone8a549c2012-09-29 21:43:49 +00003110 } else if (Subtarget.isLikeA9() || Subtarget.isSwift()) {
Evan Cheng412e37b2010-10-07 23:12:15 +00003111 UseCycle = (RegNo / 2);
3112 // If there are odd number of registers or if it's not 64-bit aligned,
3113 // then it takes an extra AGU (Address Generation Unit) cycle.
3114 if ((RegNo % 2) || UseAlign < 8)
3115 ++UseCycle;
3116 } else {
3117 // Assume the worst.
3118 UseCycle = 1;
3119 }
3120 return UseCycle;
3121}
3122
3123int
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003124ARMBaseInstrInfo::getOperandLatency(const InstrItineraryData *ItinData,
Evan Cheng6cc775f2011-06-28 19:10:37 +00003125 const MCInstrDesc &DefMCID,
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003126 unsigned DefIdx, unsigned DefAlign,
Evan Cheng6cc775f2011-06-28 19:10:37 +00003127 const MCInstrDesc &UseMCID,
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003128 unsigned UseIdx, unsigned UseAlign) const {
Evan Cheng6cc775f2011-06-28 19:10:37 +00003129 unsigned DefClass = DefMCID.getSchedClass();
3130 unsigned UseClass = UseMCID.getSchedClass();
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003131
Evan Cheng6cc775f2011-06-28 19:10:37 +00003132 if (DefIdx < DefMCID.getNumDefs() && UseIdx < UseMCID.getNumOperands())
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003133 return ItinData->getOperandLatency(DefClass, DefIdx, UseClass, UseIdx);
3134
3135 // This may be a def / use of a variable_ops instruction, the operand
3136 // latency might be determinable dynamically. Let the target try to
3137 // figure it out.
Evan Chenge2c211c2010-10-28 02:00:25 +00003138 int DefCycle = -1;
Evan Chengff310732010-10-28 06:47:08 +00003139 bool LdmBypass = false;
Evan Cheng6cc775f2011-06-28 19:10:37 +00003140 switch (DefMCID.getOpcode()) {
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003141 default:
3142 DefCycle = ItinData->getOperandCycle(DefClass, DefIdx);
3143 break;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003144
3145 case ARM::VLDMDIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003146 case ARM::VLDMDIA_UPD:
3147 case ARM::VLDMDDB_UPD:
3148 case ARM::VLDMSIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003149 case ARM::VLDMSIA_UPD:
3150 case ARM::VLDMSDB_UPD:
Evan Cheng6cc775f2011-06-28 19:10:37 +00003151 DefCycle = getVLDMDefCycle(ItinData, DefMCID, DefClass, DefIdx, DefAlign);
Evan Cheng1958cef2010-10-07 01:50:48 +00003152 break;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003153
3154 case ARM::LDMIA_RET:
3155 case ARM::LDMIA:
3156 case ARM::LDMDA:
3157 case ARM::LDMDB:
3158 case ARM::LDMIB:
3159 case ARM::LDMIA_UPD:
3160 case ARM::LDMDA_UPD:
3161 case ARM::LDMDB_UPD:
3162 case ARM::LDMIB_UPD:
3163 case ARM::tLDMIA:
3164 case ARM::tLDMIA_UPD:
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003165 case ARM::tPUSH:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003166 case ARM::t2LDMIA_RET:
3167 case ARM::t2LDMIA:
3168 case ARM::t2LDMDB:
3169 case ARM::t2LDMIA_UPD:
3170 case ARM::t2LDMDB_UPD:
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003171 LdmBypass = 1;
Evan Cheng6cc775f2011-06-28 19:10:37 +00003172 DefCycle = getLDMDefCycle(ItinData, DefMCID, DefClass, DefIdx, DefAlign);
Evan Cheng412e37b2010-10-07 23:12:15 +00003173 break;
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003174 }
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003175
3176 if (DefCycle == -1)
3177 // We can't seem to determine the result latency of the def, assume it's 2.
3178 DefCycle = 2;
3179
3180 int UseCycle = -1;
Evan Cheng6cc775f2011-06-28 19:10:37 +00003181 switch (UseMCID.getOpcode()) {
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003182 default:
3183 UseCycle = ItinData->getOperandCycle(UseClass, UseIdx);
3184 break;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003185
3186 case ARM::VSTMDIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003187 case ARM::VSTMDIA_UPD:
3188 case ARM::VSTMDDB_UPD:
3189 case ARM::VSTMSIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003190 case ARM::VSTMSIA_UPD:
3191 case ARM::VSTMSDB_UPD:
Evan Cheng6cc775f2011-06-28 19:10:37 +00003192 UseCycle = getVSTMUseCycle(ItinData, UseMCID, UseClass, UseIdx, UseAlign);
Evan Cheng1958cef2010-10-07 01:50:48 +00003193 break;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003194
3195 case ARM::STMIA:
3196 case ARM::STMDA:
3197 case ARM::STMDB:
3198 case ARM::STMIB:
3199 case ARM::STMIA_UPD:
3200 case ARM::STMDA_UPD:
3201 case ARM::STMDB_UPD:
3202 case ARM::STMIB_UPD:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003203 case ARM::tSTMIA_UPD:
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003204 case ARM::tPOP_RET:
3205 case ARM::tPOP:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003206 case ARM::t2STMIA:
3207 case ARM::t2STMDB:
3208 case ARM::t2STMIA_UPD:
3209 case ARM::t2STMDB_UPD:
Evan Cheng6cc775f2011-06-28 19:10:37 +00003210 UseCycle = getSTMUseCycle(ItinData, UseMCID, UseClass, UseIdx, UseAlign);
Evan Cheng1958cef2010-10-07 01:50:48 +00003211 break;
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003212 }
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003213
3214 if (UseCycle == -1)
3215 // Assume it's read in the first stage.
3216 UseCycle = 1;
3217
3218 UseCycle = DefCycle - UseCycle + 1;
3219 if (UseCycle > 0) {
3220 if (LdmBypass) {
3221 // It's a variable_ops instruction so we can't use DefIdx here. Just use
3222 // first def operand.
Evan Cheng6cc775f2011-06-28 19:10:37 +00003223 if (ItinData->hasPipelineForwarding(DefClass, DefMCID.getNumOperands()-1,
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003224 UseClass, UseIdx))
3225 --UseCycle;
3226 } else if (ItinData->hasPipelineForwarding(DefClass, DefIdx,
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003227 UseClass, UseIdx)) {
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003228 --UseCycle;
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003229 }
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003230 }
3231
3232 return UseCycle;
3233}
3234
Evan Cheng7fae11b2011-12-14 02:11:42 +00003235static const MachineInstr *getBundledDefMI(const TargetRegisterInfo *TRI,
Evan Chengda103bf2011-12-14 20:00:08 +00003236 const MachineInstr *MI, unsigned Reg,
Evan Cheng7fae11b2011-12-14 02:11:42 +00003237 unsigned &DefIdx, unsigned &Dist) {
3238 Dist = 0;
3239
3240 MachineBasicBlock::const_iterator I = MI; ++I;
3241 MachineBasicBlock::const_instr_iterator II =
3242 llvm::prior(I.getInstrIterator());
3243 assert(II->isInsideBundle() && "Empty bundle?");
3244
3245 int Idx = -1;
Evan Cheng7fae11b2011-12-14 02:11:42 +00003246 while (II->isInsideBundle()) {
3247 Idx = II->findRegisterDefOperandIdx(Reg, false, true, TRI);
3248 if (Idx != -1)
3249 break;
3250 --II;
3251 ++Dist;
3252 }
3253
3254 assert(Idx != -1 && "Cannot find bundled definition!");
3255 DefIdx = Idx;
3256 return II;
3257}
3258
3259static const MachineInstr *getBundledUseMI(const TargetRegisterInfo *TRI,
Evan Chengda103bf2011-12-14 20:00:08 +00003260 const MachineInstr *MI, unsigned Reg,
Evan Cheng7fae11b2011-12-14 02:11:42 +00003261 unsigned &UseIdx, unsigned &Dist) {
3262 Dist = 0;
3263
3264 MachineBasicBlock::const_instr_iterator II = MI; ++II;
3265 assert(II->isInsideBundle() && "Empty bundle?");
3266 MachineBasicBlock::const_instr_iterator E = MI->getParent()->instr_end();
3267
3268 // FIXME: This doesn't properly handle multiple uses.
3269 int Idx = -1;
Evan Cheng7fae11b2011-12-14 02:11:42 +00003270 while (II != E && II->isInsideBundle()) {
3271 Idx = II->findRegisterUseOperandIdx(Reg, false, TRI);
3272 if (Idx != -1)
3273 break;
3274 if (II->getOpcode() != ARM::t2IT)
3275 ++Dist;
3276 ++II;
3277 }
3278
Evan Chengda103bf2011-12-14 20:00:08 +00003279 if (Idx == -1) {
3280 Dist = 0;
3281 return 0;
3282 }
3283
Evan Cheng7fae11b2011-12-14 02:11:42 +00003284 UseIdx = Idx;
3285 return II;
3286}
3287
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003288/// Return the number of cycles to add to (or subtract from) the static
3289/// itinerary based on the def opcode and alignment. The caller will ensure that
3290/// adjusted latency is at least one cycle.
3291static int adjustDefLatency(const ARMSubtarget &Subtarget,
3292 const MachineInstr *DefMI,
3293 const MCInstrDesc *DefMCID, unsigned DefAlign) {
3294 int Adjust = 0;
Silviu Barangab47bb942012-09-13 15:05:10 +00003295 if (Subtarget.isCortexA8() || Subtarget.isLikeA9()) {
Evan Chengff310732010-10-28 06:47:08 +00003296 // FIXME: Shifter op hack: no shift (i.e. [r +/- r]) or [r + r << 2]
3297 // variants are one cycle cheaper.
Evan Cheng7fae11b2011-12-14 02:11:42 +00003298 switch (DefMCID->getOpcode()) {
Evan Chengff310732010-10-28 06:47:08 +00003299 default: break;
Jakob Stoklund Olesenb3de7b12012-08-28 03:11:27 +00003300 case ARM::LDRrs:
3301 case ARM::LDRBrs: {
Evan Chengff310732010-10-28 06:47:08 +00003302 unsigned ShOpVal = DefMI->getOperand(3).getImm();
3303 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
3304 if (ShImm == 0 ||
3305 (ShImm == 2 && ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl))
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003306 --Adjust;
Evan Chengff310732010-10-28 06:47:08 +00003307 break;
3308 }
Jakob Stoklund Olesenb3de7b12012-08-28 03:11:27 +00003309 case ARM::t2LDRs:
3310 case ARM::t2LDRBs:
3311 case ARM::t2LDRHs:
Evan Chengff310732010-10-28 06:47:08 +00003312 case ARM::t2LDRSHs: {
3313 // Thumb2 mode: lsl only.
3314 unsigned ShAmt = DefMI->getOperand(3).getImm();
3315 if (ShAmt == 0 || ShAmt == 2)
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003316 --Adjust;
Evan Chengff310732010-10-28 06:47:08 +00003317 break;
3318 }
3319 }
Bob Wilsone8a549c2012-09-29 21:43:49 +00003320 } else if (Subtarget.isSwift()) {
3321 // FIXME: Properly handle all of the latency adjustments for address
3322 // writeback.
3323 switch (DefMCID->getOpcode()) {
3324 default: break;
3325 case ARM::LDRrs:
3326 case ARM::LDRBrs: {
3327 unsigned ShOpVal = DefMI->getOperand(3).getImm();
3328 bool isSub = ARM_AM::getAM2Op(ShOpVal) == ARM_AM::sub;
3329 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
3330 if (!isSub &&
3331 (ShImm == 0 ||
3332 ((ShImm == 1 || ShImm == 2 || ShImm == 3) &&
3333 ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl)))
3334 Adjust -= 2;
3335 else if (!isSub &&
3336 ShImm == 1 && ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsr)
3337 --Adjust;
3338 break;
3339 }
3340 case ARM::t2LDRs:
3341 case ARM::t2LDRBs:
3342 case ARM::t2LDRHs:
3343 case ARM::t2LDRSHs: {
3344 // Thumb2 mode: lsl only.
3345 unsigned ShAmt = DefMI->getOperand(3).getImm();
3346 if (ShAmt == 0 || ShAmt == 1 || ShAmt == 2 || ShAmt == 3)
3347 Adjust -= 2;
3348 break;
3349 }
3350 }
Evan Chengff310732010-10-28 06:47:08 +00003351 }
3352
Silviu Barangab47bb942012-09-13 15:05:10 +00003353 if (DefAlign < 8 && Subtarget.isLikeA9()) {
Evan Cheng7fae11b2011-12-14 02:11:42 +00003354 switch (DefMCID->getOpcode()) {
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003355 default: break;
3356 case ARM::VLD1q8:
3357 case ARM::VLD1q16:
3358 case ARM::VLD1q32:
3359 case ARM::VLD1q64:
Jim Grosbach2098cb12011-10-24 21:45:13 +00003360 case ARM::VLD1q8wb_fixed:
3361 case ARM::VLD1q16wb_fixed:
3362 case ARM::VLD1q32wb_fixed:
3363 case ARM::VLD1q64wb_fixed:
3364 case ARM::VLD1q8wb_register:
3365 case ARM::VLD1q16wb_register:
3366 case ARM::VLD1q32wb_register:
3367 case ARM::VLD1q64wb_register:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003368 case ARM::VLD2d8:
3369 case ARM::VLD2d16:
3370 case ARM::VLD2d32:
3371 case ARM::VLD2q8:
3372 case ARM::VLD2q16:
3373 case ARM::VLD2q32:
Jim Grosbachd146a022011-12-09 21:28:25 +00003374 case ARM::VLD2d8wb_fixed:
3375 case ARM::VLD2d16wb_fixed:
3376 case ARM::VLD2d32wb_fixed:
3377 case ARM::VLD2q8wb_fixed:
3378 case ARM::VLD2q16wb_fixed:
3379 case ARM::VLD2q32wb_fixed:
3380 case ARM::VLD2d8wb_register:
3381 case ARM::VLD2d16wb_register:
3382 case ARM::VLD2d32wb_register:
3383 case ARM::VLD2q8wb_register:
3384 case ARM::VLD2q16wb_register:
3385 case ARM::VLD2q32wb_register:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003386 case ARM::VLD3d8:
3387 case ARM::VLD3d16:
3388 case ARM::VLD3d32:
3389 case ARM::VLD1d64T:
3390 case ARM::VLD3d8_UPD:
3391 case ARM::VLD3d16_UPD:
3392 case ARM::VLD3d32_UPD:
Jim Grosbach92fd05e2011-10-24 23:26:05 +00003393 case ARM::VLD1d64Twb_fixed:
3394 case ARM::VLD1d64Twb_register:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003395 case ARM::VLD3q8_UPD:
3396 case ARM::VLD3q16_UPD:
3397 case ARM::VLD3q32_UPD:
3398 case ARM::VLD4d8:
3399 case ARM::VLD4d16:
3400 case ARM::VLD4d32:
3401 case ARM::VLD1d64Q:
3402 case ARM::VLD4d8_UPD:
3403 case ARM::VLD4d16_UPD:
3404 case ARM::VLD4d32_UPD:
Jim Grosbach17ec1a12011-10-25 00:14:01 +00003405 case ARM::VLD1d64Qwb_fixed:
3406 case ARM::VLD1d64Qwb_register:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003407 case ARM::VLD4q8_UPD:
3408 case ARM::VLD4q16_UPD:
3409 case ARM::VLD4q32_UPD:
3410 case ARM::VLD1DUPq8:
3411 case ARM::VLD1DUPq16:
3412 case ARM::VLD1DUPq32:
Jim Grosbacha68c9a82011-11-30 19:35:44 +00003413 case ARM::VLD1DUPq8wb_fixed:
3414 case ARM::VLD1DUPq16wb_fixed:
3415 case ARM::VLD1DUPq32wb_fixed:
3416 case ARM::VLD1DUPq8wb_register:
3417 case ARM::VLD1DUPq16wb_register:
3418 case ARM::VLD1DUPq32wb_register:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003419 case ARM::VLD2DUPd8:
3420 case ARM::VLD2DUPd16:
3421 case ARM::VLD2DUPd32:
Jim Grosbachc80a2642011-12-21 19:40:55 +00003422 case ARM::VLD2DUPd8wb_fixed:
3423 case ARM::VLD2DUPd16wb_fixed:
3424 case ARM::VLD2DUPd32wb_fixed:
3425 case ARM::VLD2DUPd8wb_register:
3426 case ARM::VLD2DUPd16wb_register:
3427 case ARM::VLD2DUPd32wb_register:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003428 case ARM::VLD4DUPd8:
3429 case ARM::VLD4DUPd16:
3430 case ARM::VLD4DUPd32:
3431 case ARM::VLD4DUPd8_UPD:
3432 case ARM::VLD4DUPd16_UPD:
3433 case ARM::VLD4DUPd32_UPD:
3434 case ARM::VLD1LNd8:
3435 case ARM::VLD1LNd16:
3436 case ARM::VLD1LNd32:
3437 case ARM::VLD1LNd8_UPD:
3438 case ARM::VLD1LNd16_UPD:
3439 case ARM::VLD1LNd32_UPD:
3440 case ARM::VLD2LNd8:
3441 case ARM::VLD2LNd16:
3442 case ARM::VLD2LNd32:
3443 case ARM::VLD2LNq16:
3444 case ARM::VLD2LNq32:
3445 case ARM::VLD2LNd8_UPD:
3446 case ARM::VLD2LNd16_UPD:
3447 case ARM::VLD2LNd32_UPD:
3448 case ARM::VLD2LNq16_UPD:
3449 case ARM::VLD2LNq32_UPD:
3450 case ARM::VLD4LNd8:
3451 case ARM::VLD4LNd16:
3452 case ARM::VLD4LNd32:
3453 case ARM::VLD4LNq16:
3454 case ARM::VLD4LNq32:
3455 case ARM::VLD4LNd8_UPD:
3456 case ARM::VLD4LNd16_UPD:
3457 case ARM::VLD4LNd32_UPD:
3458 case ARM::VLD4LNq16_UPD:
3459 case ARM::VLD4LNq32_UPD:
3460 // If the address is not 64-bit aligned, the latencies of these
3461 // instructions increases by one.
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003462 ++Adjust;
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003463 break;
3464 }
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003465 }
3466 return Adjust;
3467}
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003468
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003469
3470
3471int
3472ARMBaseInstrInfo::getOperandLatency(const InstrItineraryData *ItinData,
3473 const MachineInstr *DefMI, unsigned DefIdx,
3474 const MachineInstr *UseMI,
3475 unsigned UseIdx) const {
3476 // No operand latency. The caller may fall back to getInstrLatency.
3477 if (!ItinData || ItinData->isEmpty())
3478 return -1;
3479
3480 const MachineOperand &DefMO = DefMI->getOperand(DefIdx);
3481 unsigned Reg = DefMO.getReg();
3482 const MCInstrDesc *DefMCID = &DefMI->getDesc();
3483 const MCInstrDesc *UseMCID = &UseMI->getDesc();
3484
3485 unsigned DefAdj = 0;
3486 if (DefMI->isBundle()) {
3487 DefMI = getBundledDefMI(&getRegisterInfo(), DefMI, Reg, DefIdx, DefAdj);
3488 DefMCID = &DefMI->getDesc();
3489 }
3490 if (DefMI->isCopyLike() || DefMI->isInsertSubreg() ||
3491 DefMI->isRegSequence() || DefMI->isImplicitDef()) {
3492 return 1;
3493 }
3494
3495 unsigned UseAdj = 0;
3496 if (UseMI->isBundle()) {
3497 unsigned NewUseIdx;
3498 const MachineInstr *NewUseMI = getBundledUseMI(&getRegisterInfo(), UseMI,
3499 Reg, NewUseIdx, UseAdj);
Andrew Trick77d0b882012-06-22 02:50:33 +00003500 if (!NewUseMI)
3501 return -1;
3502
3503 UseMI = NewUseMI;
3504 UseIdx = NewUseIdx;
3505 UseMCID = &UseMI->getDesc();
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003506 }
3507
3508 if (Reg == ARM::CPSR) {
3509 if (DefMI->getOpcode() == ARM::FMSTAT) {
3510 // fpscr -> cpsr stalls over 20 cycles on A8 (and earlier?)
Silviu Barangab47bb942012-09-13 15:05:10 +00003511 return Subtarget.isLikeA9() ? 1 : 20;
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003512 }
3513
3514 // CPSR set and branch can be paired in the same cycle.
3515 if (UseMI->isBranch())
3516 return 0;
3517
3518 // Otherwise it takes the instruction latency (generally one).
3519 unsigned Latency = getInstrLatency(ItinData, DefMI);
3520
3521 // For Thumb2 and -Os, prefer scheduling CPSR setting instruction close to
3522 // its uses. Instructions which are otherwise scheduled between them may
3523 // incur a code size penalty (not able to use the CPSR setting 16-bit
3524 // instructions).
3525 if (Latency > 0 && Subtarget.isThumb2()) {
3526 const MachineFunction *MF = DefMI->getParent()->getParent();
Bill Wendling698e84f2012-12-30 10:32:01 +00003527 if (MF->getFunction()->getAttributes().
3528 hasAttribute(AttributeSet::FunctionIndex,
3529 Attribute::OptimizeForSize))
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003530 --Latency;
3531 }
3532 return Latency;
3533 }
3534
Andrew Trick77d0b882012-06-22 02:50:33 +00003535 if (DefMO.isImplicit() || UseMI->getOperand(UseIdx).isImplicit())
3536 return -1;
3537
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003538 unsigned DefAlign = DefMI->hasOneMemOperand()
3539 ? (*DefMI->memoperands_begin())->getAlignment() : 0;
3540 unsigned UseAlign = UseMI->hasOneMemOperand()
3541 ? (*UseMI->memoperands_begin())->getAlignment() : 0;
3542
3543 // Get the itinerary's latency if possible, and handle variable_ops.
3544 int Latency = getOperandLatency(ItinData, *DefMCID, DefIdx, DefAlign,
3545 *UseMCID, UseIdx, UseAlign);
3546 // Unable to find operand latency. The caller may resort to getInstrLatency.
3547 if (Latency < 0)
3548 return Latency;
3549
3550 // Adjust for IT block position.
3551 int Adj = DefAdj + UseAdj;
3552
3553 // Adjust for dynamic def-side opcode variants not captured by the itinerary.
3554 Adj += adjustDefLatency(Subtarget, DefMI, DefMCID, DefAlign);
3555 if (Adj >= 0 || (int)Latency > -Adj) {
3556 return Latency + Adj;
3557 }
3558 // Return the itinerary latency, which may be zero but not less than zero.
Evan Chengff310732010-10-28 06:47:08 +00003559 return Latency;
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003560}
3561
3562int
3563ARMBaseInstrInfo::getOperandLatency(const InstrItineraryData *ItinData,
3564 SDNode *DefNode, unsigned DefIdx,
3565 SDNode *UseNode, unsigned UseIdx) const {
3566 if (!DefNode->isMachineOpcode())
3567 return 1;
3568
Evan Cheng6cc775f2011-06-28 19:10:37 +00003569 const MCInstrDesc &DefMCID = get(DefNode->getMachineOpcode());
Andrew Trick47ff14b2011-01-21 05:51:33 +00003570
Evan Cheng6cc775f2011-06-28 19:10:37 +00003571 if (isZeroCost(DefMCID.Opcode))
Andrew Trick47ff14b2011-01-21 05:51:33 +00003572 return 0;
3573
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003574 if (!ItinData || ItinData->isEmpty())
Evan Cheng6cc775f2011-06-28 19:10:37 +00003575 return DefMCID.mayLoad() ? 3 : 1;
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003576
Evan Cheng6c1414f2010-10-29 18:09:28 +00003577 if (!UseNode->isMachineOpcode()) {
Evan Cheng6cc775f2011-06-28 19:10:37 +00003578 int Latency = ItinData->getOperandCycle(DefMCID.getSchedClass(), DefIdx);
Bob Wilsone8a549c2012-09-29 21:43:49 +00003579 if (Subtarget.isLikeA9() || Subtarget.isSwift())
Evan Cheng6c1414f2010-10-29 18:09:28 +00003580 return Latency <= 2 ? 1 : Latency - 1;
3581 else
3582 return Latency <= 3 ? 1 : Latency - 2;
3583 }
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003584
Evan Cheng6cc775f2011-06-28 19:10:37 +00003585 const MCInstrDesc &UseMCID = get(UseNode->getMachineOpcode());
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003586 const MachineSDNode *DefMN = dyn_cast<MachineSDNode>(DefNode);
3587 unsigned DefAlign = !DefMN->memoperands_empty()
3588 ? (*DefMN->memoperands_begin())->getAlignment() : 0;
3589 const MachineSDNode *UseMN = dyn_cast<MachineSDNode>(UseNode);
3590 unsigned UseAlign = !UseMN->memoperands_empty()
3591 ? (*UseMN->memoperands_begin())->getAlignment() : 0;
Evan Cheng6cc775f2011-06-28 19:10:37 +00003592 int Latency = getOperandLatency(ItinData, DefMCID, DefIdx, DefAlign,
3593 UseMCID, UseIdx, UseAlign);
Evan Chengff310732010-10-28 06:47:08 +00003594
3595 if (Latency > 1 &&
Silviu Barangab47bb942012-09-13 15:05:10 +00003596 (Subtarget.isCortexA8() || Subtarget.isLikeA9())) {
Evan Chengff310732010-10-28 06:47:08 +00003597 // FIXME: Shifter op hack: no shift (i.e. [r +/- r]) or [r + r << 2]
3598 // variants are one cycle cheaper.
Evan Cheng6cc775f2011-06-28 19:10:37 +00003599 switch (DefMCID.getOpcode()) {
Evan Chengff310732010-10-28 06:47:08 +00003600 default: break;
Jakob Stoklund Olesenb3de7b12012-08-28 03:11:27 +00003601 case ARM::LDRrs:
3602 case ARM::LDRBrs: {
Evan Chengff310732010-10-28 06:47:08 +00003603 unsigned ShOpVal =
3604 cast<ConstantSDNode>(DefNode->getOperand(2))->getZExtValue();
3605 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
3606 if (ShImm == 0 ||
3607 (ShImm == 2 && ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl))
3608 --Latency;
3609 break;
3610 }
Jakob Stoklund Olesenb3de7b12012-08-28 03:11:27 +00003611 case ARM::t2LDRs:
3612 case ARM::t2LDRBs:
3613 case ARM::t2LDRHs:
Evan Chengff310732010-10-28 06:47:08 +00003614 case ARM::t2LDRSHs: {
3615 // Thumb2 mode: lsl only.
3616 unsigned ShAmt =
3617 cast<ConstantSDNode>(DefNode->getOperand(2))->getZExtValue();
3618 if (ShAmt == 0 || ShAmt == 2)
3619 --Latency;
3620 break;
3621 }
3622 }
Bob Wilsone8a549c2012-09-29 21:43:49 +00003623 } else if (DefIdx == 0 && Latency > 2 && Subtarget.isSwift()) {
3624 // FIXME: Properly handle all of the latency adjustments for address
3625 // writeback.
3626 switch (DefMCID.getOpcode()) {
3627 default: break;
3628 case ARM::LDRrs:
3629 case ARM::LDRBrs: {
3630 unsigned ShOpVal =
3631 cast<ConstantSDNode>(DefNode->getOperand(2))->getZExtValue();
3632 unsigned ShImm = ARM_AM::getAM2Offset(ShOpVal);
3633 if (ShImm == 0 ||
3634 ((ShImm == 1 || ShImm == 2 || ShImm == 3) &&
3635 ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsl))
3636 Latency -= 2;
3637 else if (ShImm == 1 && ARM_AM::getAM2ShiftOpc(ShOpVal) == ARM_AM::lsr)
3638 --Latency;
3639 break;
3640 }
3641 case ARM::t2LDRs:
3642 case ARM::t2LDRBs:
3643 case ARM::t2LDRHs:
3644 case ARM::t2LDRSHs: {
3645 // Thumb2 mode: lsl 0-3 only.
3646 Latency -= 2;
3647 break;
3648 }
3649 }
Evan Chengff310732010-10-28 06:47:08 +00003650 }
3651
Silviu Barangab47bb942012-09-13 15:05:10 +00003652 if (DefAlign < 8 && Subtarget.isLikeA9())
Evan Cheng6cc775f2011-06-28 19:10:37 +00003653 switch (DefMCID.getOpcode()) {
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003654 default: break;
Jim Grosbachc988e0c2012-03-05 19:33:30 +00003655 case ARM::VLD1q8:
3656 case ARM::VLD1q16:
3657 case ARM::VLD1q32:
3658 case ARM::VLD1q64:
3659 case ARM::VLD1q8wb_register:
3660 case ARM::VLD1q16wb_register:
3661 case ARM::VLD1q32wb_register:
3662 case ARM::VLD1q64wb_register:
3663 case ARM::VLD1q8wb_fixed:
3664 case ARM::VLD1q16wb_fixed:
3665 case ARM::VLD1q32wb_fixed:
3666 case ARM::VLD1q64wb_fixed:
3667 case ARM::VLD2d8:
3668 case ARM::VLD2d16:
3669 case ARM::VLD2d32:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003670 case ARM::VLD2q8Pseudo:
3671 case ARM::VLD2q16Pseudo:
3672 case ARM::VLD2q32Pseudo:
Jim Grosbachc988e0c2012-03-05 19:33:30 +00003673 case ARM::VLD2d8wb_fixed:
3674 case ARM::VLD2d16wb_fixed:
3675 case ARM::VLD2d32wb_fixed:
Jim Grosbachd146a022011-12-09 21:28:25 +00003676 case ARM::VLD2q8PseudoWB_fixed:
3677 case ARM::VLD2q16PseudoWB_fixed:
3678 case ARM::VLD2q32PseudoWB_fixed:
Jim Grosbachc988e0c2012-03-05 19:33:30 +00003679 case ARM::VLD2d8wb_register:
3680 case ARM::VLD2d16wb_register:
3681 case ARM::VLD2d32wb_register:
Jim Grosbachd146a022011-12-09 21:28:25 +00003682 case ARM::VLD2q8PseudoWB_register:
3683 case ARM::VLD2q16PseudoWB_register:
3684 case ARM::VLD2q32PseudoWB_register:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003685 case ARM::VLD3d8Pseudo:
3686 case ARM::VLD3d16Pseudo:
3687 case ARM::VLD3d32Pseudo:
3688 case ARM::VLD1d64TPseudo:
Jiangning Liu4df23632014-01-16 09:16:13 +00003689 case ARM::VLD1d64TPseudoWB_fixed:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003690 case ARM::VLD3d8Pseudo_UPD:
3691 case ARM::VLD3d16Pseudo_UPD:
3692 case ARM::VLD3d32Pseudo_UPD:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003693 case ARM::VLD3q8Pseudo_UPD:
3694 case ARM::VLD3q16Pseudo_UPD:
3695 case ARM::VLD3q32Pseudo_UPD:
3696 case ARM::VLD3q8oddPseudo:
3697 case ARM::VLD3q16oddPseudo:
3698 case ARM::VLD3q32oddPseudo:
3699 case ARM::VLD3q8oddPseudo_UPD:
3700 case ARM::VLD3q16oddPseudo_UPD:
3701 case ARM::VLD3q32oddPseudo_UPD:
3702 case ARM::VLD4d8Pseudo:
3703 case ARM::VLD4d16Pseudo:
3704 case ARM::VLD4d32Pseudo:
3705 case ARM::VLD1d64QPseudo:
Jiangning Liu4df23632014-01-16 09:16:13 +00003706 case ARM::VLD1d64QPseudoWB_fixed:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003707 case ARM::VLD4d8Pseudo_UPD:
3708 case ARM::VLD4d16Pseudo_UPD:
3709 case ARM::VLD4d32Pseudo_UPD:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003710 case ARM::VLD4q8Pseudo_UPD:
3711 case ARM::VLD4q16Pseudo_UPD:
3712 case ARM::VLD4q32Pseudo_UPD:
3713 case ARM::VLD4q8oddPseudo:
3714 case ARM::VLD4q16oddPseudo:
3715 case ARM::VLD4q32oddPseudo:
3716 case ARM::VLD4q8oddPseudo_UPD:
3717 case ARM::VLD4q16oddPseudo_UPD:
3718 case ARM::VLD4q32oddPseudo_UPD:
Jim Grosbach13a292c2012-03-06 22:01:44 +00003719 case ARM::VLD1DUPq8:
3720 case ARM::VLD1DUPq16:
3721 case ARM::VLD1DUPq32:
3722 case ARM::VLD1DUPq8wb_fixed:
3723 case ARM::VLD1DUPq16wb_fixed:
3724 case ARM::VLD1DUPq32wb_fixed:
3725 case ARM::VLD1DUPq8wb_register:
3726 case ARM::VLD1DUPq16wb_register:
3727 case ARM::VLD1DUPq32wb_register:
3728 case ARM::VLD2DUPd8:
3729 case ARM::VLD2DUPd16:
3730 case ARM::VLD2DUPd32:
3731 case ARM::VLD2DUPd8wb_fixed:
3732 case ARM::VLD2DUPd16wb_fixed:
3733 case ARM::VLD2DUPd32wb_fixed:
3734 case ARM::VLD2DUPd8wb_register:
3735 case ARM::VLD2DUPd16wb_register:
3736 case ARM::VLD2DUPd32wb_register:
Evan Cheng7d6cd4902011-04-19 01:21:49 +00003737 case ARM::VLD4DUPd8Pseudo:
3738 case ARM::VLD4DUPd16Pseudo:
3739 case ARM::VLD4DUPd32Pseudo:
3740 case ARM::VLD4DUPd8Pseudo_UPD:
3741 case ARM::VLD4DUPd16Pseudo_UPD:
3742 case ARM::VLD4DUPd32Pseudo_UPD:
3743 case ARM::VLD1LNq8Pseudo:
3744 case ARM::VLD1LNq16Pseudo:
3745 case ARM::VLD1LNq32Pseudo:
3746 case ARM::VLD1LNq8Pseudo_UPD:
3747 case ARM::VLD1LNq16Pseudo_UPD:
3748 case ARM::VLD1LNq32Pseudo_UPD:
3749 case ARM::VLD2LNd8Pseudo:
3750 case ARM::VLD2LNd16Pseudo:
3751 case ARM::VLD2LNd32Pseudo:
3752 case ARM::VLD2LNq16Pseudo:
3753 case ARM::VLD2LNq32Pseudo:
3754 case ARM::VLD2LNd8Pseudo_UPD:
3755 case ARM::VLD2LNd16Pseudo_UPD:
3756 case ARM::VLD2LNd32Pseudo_UPD:
3757 case ARM::VLD2LNq16Pseudo_UPD:
3758 case ARM::VLD2LNq32Pseudo_UPD:
3759 case ARM::VLD4LNd8Pseudo:
3760 case ARM::VLD4LNd16Pseudo:
3761 case ARM::VLD4LNd32Pseudo:
3762 case ARM::VLD4LNq16Pseudo:
3763 case ARM::VLD4LNq32Pseudo:
3764 case ARM::VLD4LNd8Pseudo_UPD:
3765 case ARM::VLD4LNd16Pseudo_UPD:
3766 case ARM::VLD4LNd32Pseudo_UPD:
3767 case ARM::VLD4LNq16Pseudo_UPD:
3768 case ARM::VLD4LNq32Pseudo_UPD:
3769 // If the address is not 64-bit aligned, the latencies of these
3770 // instructions increases by one.
3771 ++Latency;
3772 break;
3773 }
3774
Evan Chengff310732010-10-28 06:47:08 +00003775 return Latency;
Evan Cheng49d4c0b2010-10-06 06:27:31 +00003776}
Evan Cheng63c76082010-10-19 18:58:51 +00003777
Arnold Schwaighoferd2f96b92013-09-30 15:28:56 +00003778unsigned ARMBaseInstrInfo::getPredicationCost(const MachineInstr *MI) const {
3779 if (MI->isCopyLike() || MI->isInsertSubreg() ||
3780 MI->isRegSequence() || MI->isImplicitDef())
3781 return 0;
3782
3783 if (MI->isBundle())
3784 return 0;
3785
3786 const MCInstrDesc &MCID = MI->getDesc();
3787
3788 if (MCID.isCall() || MCID.hasImplicitDefOfPhysReg(ARM::CPSR)) {
3789 // When predicated, CPSR is an additional source operand for CPSR updating
3790 // instructions, this apparently increases their latencies.
3791 return 1;
3792 }
3793 return 0;
3794}
3795
Andrew Trick45446062012-06-05 21:11:27 +00003796unsigned ARMBaseInstrInfo::getInstrLatency(const InstrItineraryData *ItinData,
3797 const MachineInstr *MI,
3798 unsigned *PredCost) const {
Evan Chengdebf9c52010-11-03 00:45:17 +00003799 if (MI->isCopyLike() || MI->isInsertSubreg() ||
3800 MI->isRegSequence() || MI->isImplicitDef())
3801 return 1;
3802
Andrew Trickfb1a74c2012-06-07 19:41:55 +00003803 // An instruction scheduler typically runs on unbundled instructions, however
3804 // other passes may query the latency of a bundled instruction.
Evan Cheng7fae11b2011-12-14 02:11:42 +00003805 if (MI->isBundle()) {
Andrew Trickfb1a74c2012-06-07 19:41:55 +00003806 unsigned Latency = 0;
Evan Cheng7fae11b2011-12-14 02:11:42 +00003807 MachineBasicBlock::const_instr_iterator I = MI;
3808 MachineBasicBlock::const_instr_iterator E = MI->getParent()->instr_end();
3809 while (++I != E && I->isInsideBundle()) {
3810 if (I->getOpcode() != ARM::t2IT)
3811 Latency += getInstrLatency(ItinData, I, PredCost);
3812 }
3813 return Latency;
3814 }
3815
Evan Cheng6cc775f2011-06-28 19:10:37 +00003816 const MCInstrDesc &MCID = MI->getDesc();
Andrew Trickfb1a74c2012-06-07 19:41:55 +00003817 if (PredCost && (MCID.isCall() || MCID.hasImplicitDefOfPhysReg(ARM::CPSR))) {
Evan Chengdebf9c52010-11-03 00:45:17 +00003818 // When predicated, CPSR is an additional source operand for CPSR updating
3819 // instructions, this apparently increases their latencies.
3820 *PredCost = 1;
Andrew Trickfb1a74c2012-06-07 19:41:55 +00003821 }
3822 // Be sure to call getStageLatency for an empty itinerary in case it has a
3823 // valid MinLatency property.
3824 if (!ItinData)
3825 return MI->mayLoad() ? 3 : 1;
3826
3827 unsigned Class = MCID.getSchedClass();
3828
3829 // For instructions with variable uops, use uops as latency.
Andrew Trick21cca972012-07-02 19:12:29 +00003830 if (!ItinData->isEmpty() && ItinData->getNumMicroOps(Class) < 0)
Andrew Trickfb1a74c2012-06-07 19:41:55 +00003831 return getNumMicroOps(ItinData, MI);
Andrew Trick21cca972012-07-02 19:12:29 +00003832
Andrew Trickfb1a74c2012-06-07 19:41:55 +00003833 // For the common case, fall back on the itinerary's latency.
Andrew Trick5b1cadf2012-06-07 19:42:00 +00003834 unsigned Latency = ItinData->getStageLatency(Class);
3835
3836 // Adjust for dynamic def-side opcode variants not captured by the itinerary.
3837 unsigned DefAlign = MI->hasOneMemOperand()
3838 ? (*MI->memoperands_begin())->getAlignment() : 0;
3839 int Adj = adjustDefLatency(Subtarget, MI, &MCID, DefAlign);
3840 if (Adj >= 0 || (int)Latency > -Adj) {
3841 return Latency + Adj;
3842 }
3843 return Latency;
Evan Chengdebf9c52010-11-03 00:45:17 +00003844}
3845
3846int ARMBaseInstrInfo::getInstrLatency(const InstrItineraryData *ItinData,
3847 SDNode *Node) const {
3848 if (!Node->isMachineOpcode())
3849 return 1;
3850
3851 if (!ItinData || ItinData->isEmpty())
3852 return 1;
3853
3854 unsigned Opcode = Node->getMachineOpcode();
3855 switch (Opcode) {
3856 default:
3857 return ItinData->getStageLatency(get(Opcode).getSchedClass());
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003858 case ARM::VLDMQIA:
Bill Wendlinga68e3a52010-11-16 01:16:36 +00003859 case ARM::VSTMQIA:
Evan Chengdebf9c52010-11-03 00:45:17 +00003860 return 2;
Eric Christopherb006fc92010-11-18 19:40:05 +00003861 }
Evan Chengdebf9c52010-11-03 00:45:17 +00003862}
3863
Evan Cheng63c76082010-10-19 18:58:51 +00003864bool ARMBaseInstrInfo::
3865hasHighOperandLatency(const InstrItineraryData *ItinData,
3866 const MachineRegisterInfo *MRI,
3867 const MachineInstr *DefMI, unsigned DefIdx,
3868 const MachineInstr *UseMI, unsigned UseIdx) const {
3869 unsigned DDomain = DefMI->getDesc().TSFlags & ARMII::DomainMask;
3870 unsigned UDomain = UseMI->getDesc().TSFlags & ARMII::DomainMask;
3871 if (Subtarget.isCortexA8() &&
3872 (DDomain == ARMII::DomainVFP || UDomain == ARMII::DomainVFP))
3873 // CortexA8 VFP instructions are not pipelined.
3874 return true;
3875
3876 // Hoist VFP / NEON instructions with 4 or higher latency.
Andrew Trickde2109e2013-06-15 04:49:57 +00003877 int Latency = computeOperandLatency(ItinData, DefMI, DefIdx, UseMI, UseIdx);
Andrew Trick3564bdf2012-06-07 19:41:58 +00003878 if (Latency < 0)
3879 Latency = getInstrLatency(ItinData, DefMI);
Evan Cheng63c76082010-10-19 18:58:51 +00003880 if (Latency <= 3)
3881 return false;
3882 return DDomain == ARMII::DomainVFP || DDomain == ARMII::DomainNEON ||
3883 UDomain == ARMII::DomainVFP || UDomain == ARMII::DomainNEON;
3884}
Evan Chenge96b8d72010-10-26 02:08:50 +00003885
3886bool ARMBaseInstrInfo::
3887hasLowDefLatency(const InstrItineraryData *ItinData,
3888 const MachineInstr *DefMI, unsigned DefIdx) const {
3889 if (!ItinData || ItinData->isEmpty())
3890 return false;
3891
3892 unsigned DDomain = DefMI->getDesc().TSFlags & ARMII::DomainMask;
3893 if (DDomain == ARMII::DomainGeneral) {
3894 unsigned DefClass = DefMI->getDesc().getSchedClass();
3895 int DefCycle = ItinData->getOperandCycle(DefClass, DefIdx);
3896 return (DefCycle != -1 && DefCycle <= 2);
3897 }
3898 return false;
3899}
Evan Cheng62c7b5b2010-12-05 22:04:16 +00003900
Andrew Trick924123a2011-09-21 02:20:46 +00003901bool ARMBaseInstrInfo::verifyInstruction(const MachineInstr *MI,
3902 StringRef &ErrInfo) const {
3903 if (convertAddSubFlagsOpcode(MI->getOpcode())) {
3904 ErrInfo = "Pseudo flag setting opcodes only exist in Selection DAG";
3905 return false;
3906 }
3907 return true;
3908}
3909
Evan Cheng62c7b5b2010-12-05 22:04:16 +00003910bool
3911ARMBaseInstrInfo::isFpMLxInstruction(unsigned Opcode, unsigned &MulOpc,
3912 unsigned &AddSubOpc,
3913 bool &NegAcc, bool &HasLane) const {
3914 DenseMap<unsigned, unsigned>::const_iterator I = MLxEntryMap.find(Opcode);
3915 if (I == MLxEntryMap.end())
3916 return false;
3917
3918 const ARM_MLxEntry &Entry = ARM_MLxTable[I->second];
3919 MulOpc = Entry.MulOpc;
3920 AddSubOpc = Entry.AddSubOpc;
3921 NegAcc = Entry.NegAcc;
3922 HasLane = Entry.HasLane;
3923 return true;
3924}
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003925
3926//===----------------------------------------------------------------------===//
3927// Execution domains.
3928//===----------------------------------------------------------------------===//
3929//
3930// Some instructions go down the NEON pipeline, some go down the VFP pipeline,
3931// and some can go down both. The vmov instructions go down the VFP pipeline,
3932// but they can be changed to vorr equivalents that are executed by the NEON
3933// pipeline.
3934//
3935// We use the following execution domain numbering:
3936//
Jakob Stoklund Olesenf7ad1892011-09-29 02:48:41 +00003937enum ARMExeDomain {
3938 ExeGeneric = 0,
3939 ExeVFP = 1,
3940 ExeNEON = 2
3941};
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003942//
3943// Also see ARMInstrFormats.td and Domain* enums in ARMBaseInfo.h
3944//
3945std::pair<uint16_t, uint16_t>
3946ARMBaseInstrInfo::getExecutionDomain(const MachineInstr *MI) const {
Tim Northoverf6618152012-08-17 11:32:52 +00003947 // VMOVD, VMOVRS and VMOVSR are VFP instructions, but can be changed to NEON
3948 // if they are not predicated.
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003949 if (MI->getOpcode() == ARM::VMOVD && !isPredicated(MI))
Jakob Stoklund Olesenf7ad1892011-09-29 02:48:41 +00003950 return std::make_pair(ExeVFP, (1<<ExeVFP) | (1<<ExeNEON));
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003951
Silviu Barangadc453362013-03-27 12:38:44 +00003952 // CortexA9 is particularly picky about mixing the two and wants these
Tim Northoverf6618152012-08-17 11:32:52 +00003953 // converted.
Silviu Barangadc453362013-03-27 12:38:44 +00003954 if (Subtarget.isCortexA9() && !isPredicated(MI) &&
Tim Northoverf6618152012-08-17 11:32:52 +00003955 (MI->getOpcode() == ARM::VMOVRS ||
Tim Northoverca9f3842012-08-30 10:17:45 +00003956 MI->getOpcode() == ARM::VMOVSR ||
3957 MI->getOpcode() == ARM::VMOVS))
Tim Northoverf6618152012-08-17 11:32:52 +00003958 return std::make_pair(ExeVFP, (1<<ExeVFP) | (1<<ExeNEON));
3959
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003960 // No other instructions can be swizzled, so just determine their domain.
3961 unsigned Domain = MI->getDesc().TSFlags & ARMII::DomainMask;
3962
3963 if (Domain & ARMII::DomainNEON)
Jakob Stoklund Olesenf7ad1892011-09-29 02:48:41 +00003964 return std::make_pair(ExeNEON, 0);
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003965
3966 // Certain instructions can go either way on Cortex-A8.
3967 // Treat them as NEON instructions.
3968 if ((Domain & ARMII::DomainNEONA8) && Subtarget.isCortexA8())
Jakob Stoklund Olesenf7ad1892011-09-29 02:48:41 +00003969 return std::make_pair(ExeNEON, 0);
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003970
3971 if (Domain & ARMII::DomainVFP)
Jakob Stoklund Olesenf7ad1892011-09-29 02:48:41 +00003972 return std::make_pair(ExeVFP, 0);
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003973
Jakob Stoklund Olesenf7ad1892011-09-29 02:48:41 +00003974 return std::make_pair(ExeGeneric, 0);
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00003975}
3976
Tim Northover771f1602012-08-29 16:36:07 +00003977static unsigned getCorrespondingDRegAndLane(const TargetRegisterInfo *TRI,
3978 unsigned SReg, unsigned &Lane) {
3979 unsigned DReg = TRI->getMatchingSuperReg(SReg, ARM::ssub_0, &ARM::DPRRegClass);
3980 Lane = 0;
3981
3982 if (DReg != ARM::NoRegister)
3983 return DReg;
3984
3985 Lane = 1;
3986 DReg = TRI->getMatchingSuperReg(SReg, ARM::ssub_1, &ARM::DPRRegClass);
3987
3988 assert(DReg && "S-register with no D super-register?");
3989 return DReg;
3990}
3991
Andrew Trickd9296ec2012-10-10 05:43:01 +00003992/// getImplicitSPRUseForDPRUse - Given a use of a DPR register and lane,
James Molloyea052562012-09-18 08:31:15 +00003993/// set ImplicitSReg to a register number that must be marked as implicit-use or
3994/// zero if no register needs to be defined as implicit-use.
3995///
3996/// If the function cannot determine if an SPR should be marked implicit use or
3997/// not, it returns false.
3998///
3999/// This function handles cases where an instruction is being modified from taking
Andrew Trickd9296ec2012-10-10 05:43:01 +00004000/// an SPR to a DPR[Lane]. A use of the DPR is being added, which may conflict
James Molloyea052562012-09-18 08:31:15 +00004001/// with an earlier def of an SPR corresponding to DPR[Lane^1] (i.e. the other
4002/// lane of the DPR).
4003///
4004/// If the other SPR is defined, an implicit-use of it should be added. Else,
4005/// (including the case where the DPR itself is defined), it should not.
Andrew Trickd9296ec2012-10-10 05:43:01 +00004006///
James Molloyea052562012-09-18 08:31:15 +00004007static bool getImplicitSPRUseForDPRUse(const TargetRegisterInfo *TRI,
4008 MachineInstr *MI,
4009 unsigned DReg, unsigned Lane,
4010 unsigned &ImplicitSReg) {
4011 // If the DPR is defined or used already, the other SPR lane will be chained
4012 // correctly, so there is nothing to be done.
4013 if (MI->definesRegister(DReg, TRI) || MI->readsRegister(DReg, TRI)) {
4014 ImplicitSReg = 0;
4015 return true;
4016 }
4017
4018 // Otherwise we need to go searching to see if the SPR is set explicitly.
4019 ImplicitSReg = TRI->getSubReg(DReg,
4020 (Lane & 1) ? ARM::ssub_0 : ARM::ssub_1);
4021 MachineBasicBlock::LivenessQueryResult LQR =
4022 MI->getParent()->computeRegisterLiveness(TRI, ImplicitSReg, MI);
4023
4024 if (LQR == MachineBasicBlock::LQR_Live)
4025 return true;
4026 else if (LQR == MachineBasicBlock::LQR_Unknown)
4027 return false;
4028
4029 // If the register is known not to be live, there is no need to add an
4030 // implicit-use.
4031 ImplicitSReg = 0;
4032 return true;
4033}
Tim Northover771f1602012-08-29 16:36:07 +00004034
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00004035void
4036ARMBaseInstrInfo::setExecutionDomain(MachineInstr *MI, unsigned Domain) const {
Tim Northoverf6618152012-08-17 11:32:52 +00004037 unsigned DstReg, SrcReg, DReg;
4038 unsigned Lane;
Jakob Stoklund Olesenb159b5f2012-12-19 21:31:56 +00004039 MachineInstrBuilder MIB(*MI->getParent()->getParent(), MI);
Tim Northoverf6618152012-08-17 11:32:52 +00004040 const TargetRegisterInfo *TRI = &getRegisterInfo();
Tim Northoverf6618152012-08-17 11:32:52 +00004041 switch (MI->getOpcode()) {
4042 default:
4043 llvm_unreachable("cannot handle opcode!");
4044 break;
4045 case ARM::VMOVD:
4046 if (Domain != ExeNEON)
4047 break;
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00004048
Tim Northoverf6618152012-08-17 11:32:52 +00004049 // Zap the predicate operands.
4050 assert(!isPredicated(MI) && "Cannot predicate a VORRd");
Jakob Stoklund Olesenf7ad1892011-09-29 02:48:41 +00004051
Tim Northover771f1602012-08-29 16:36:07 +00004052 // Source instruction is %DDst = VMOVD %DSrc, 14, %noreg (; implicits)
4053 DstReg = MI->getOperand(0).getReg();
4054 SrcReg = MI->getOperand(1).getReg();
4055
4056 for (unsigned i = MI->getDesc().getNumOperands(); i; --i)
4057 MI->RemoveOperand(i-1);
4058
4059 // Change to a %DDst = VORRd %DSrc, %DSrc, 14, %noreg (; implicits)
Tim Northoverf6618152012-08-17 11:32:52 +00004060 MI->setDesc(get(ARM::VORRd));
Tim Northover771f1602012-08-29 16:36:07 +00004061 AddDefaultPred(MIB.addReg(DstReg, RegState::Define)
4062 .addReg(SrcReg)
4063 .addReg(SrcReg));
Tim Northoverf6618152012-08-17 11:32:52 +00004064 break;
4065 case ARM::VMOVRS:
4066 if (Domain != ExeNEON)
4067 break;
4068 assert(!isPredicated(MI) && "Cannot predicate a VGETLN");
4069
Tim Northover771f1602012-08-29 16:36:07 +00004070 // Source instruction is %RDst = VMOVRS %SSrc, 14, %noreg (; implicits)
Tim Northoverf6618152012-08-17 11:32:52 +00004071 DstReg = MI->getOperand(0).getReg();
4072 SrcReg = MI->getOperand(1).getReg();
4073
Tim Northover771f1602012-08-29 16:36:07 +00004074 for (unsigned i = MI->getDesc().getNumOperands(); i; --i)
4075 MI->RemoveOperand(i-1);
Tim Northoverf6618152012-08-17 11:32:52 +00004076
Tim Northover771f1602012-08-29 16:36:07 +00004077 DReg = getCorrespondingDRegAndLane(TRI, SrcReg, Lane);
Tim Northoverf6618152012-08-17 11:32:52 +00004078
Tim Northover771f1602012-08-29 16:36:07 +00004079 // Convert to %RDst = VGETLNi32 %DSrc, Lane, 14, %noreg (; imps)
4080 // Note that DSrc has been widened and the other lane may be undef, which
4081 // contaminates the entire register.
Tim Northoverf6618152012-08-17 11:32:52 +00004082 MI->setDesc(get(ARM::VGETLNi32));
Tim Northover771f1602012-08-29 16:36:07 +00004083 AddDefaultPred(MIB.addReg(DstReg, RegState::Define)
4084 .addReg(DReg, RegState::Undef)
4085 .addImm(Lane));
Tim Northoverf6618152012-08-17 11:32:52 +00004086
Tim Northover771f1602012-08-29 16:36:07 +00004087 // The old source should be an implicit use, otherwise we might think it
4088 // was dead before here.
Tim Northoverf6618152012-08-17 11:32:52 +00004089 MIB.addReg(SrcReg, RegState::Implicit);
Tim Northoverf6618152012-08-17 11:32:52 +00004090 break;
James Molloyea052562012-09-18 08:31:15 +00004091 case ARM::VMOVSR: {
Tim Northoverf6618152012-08-17 11:32:52 +00004092 if (Domain != ExeNEON)
4093 break;
4094 assert(!isPredicated(MI) && "Cannot predicate a VSETLN");
4095
Tim Northover771f1602012-08-29 16:36:07 +00004096 // Source instruction is %SDst = VMOVSR %RSrc, 14, %noreg (; implicits)
Tim Northoverf6618152012-08-17 11:32:52 +00004097 DstReg = MI->getOperand(0).getReg();
4098 SrcReg = MI->getOperand(1).getReg();
Tim Northoverf6618152012-08-17 11:32:52 +00004099
Tim Northover771f1602012-08-29 16:36:07 +00004100 DReg = getCorrespondingDRegAndLane(TRI, DstReg, Lane);
4101
James Molloyea052562012-09-18 08:31:15 +00004102 unsigned ImplicitSReg;
4103 if (!getImplicitSPRUseForDPRUse(TRI, MI, DReg, Lane, ImplicitSReg))
4104 break;
Tim Northover726d32c2012-09-01 18:07:29 +00004105
Tim Northoverc8d867d2012-09-05 18:37:53 +00004106 for (unsigned i = MI->getDesc().getNumOperands(); i; --i)
4107 MI->RemoveOperand(i-1);
4108
Tim Northover771f1602012-08-29 16:36:07 +00004109 // Convert to %DDst = VSETLNi32 %DDst, %RSrc, Lane, 14, %noreg (; imps)
4110 // Again DDst may be undefined at the beginning of this instruction.
Tim Northoverf6618152012-08-17 11:32:52 +00004111 MI->setDesc(get(ARM::VSETLNi32));
Tim Northover726d32c2012-09-01 18:07:29 +00004112 MIB.addReg(DReg, RegState::Define)
4113 .addReg(DReg, getUndefRegState(!MI->readsRegister(DReg, TRI)))
4114 .addReg(SrcReg)
4115 .addImm(Lane);
4116 AddDefaultPred(MIB);
Tim Northoverca9f3842012-08-30 10:17:45 +00004117
Tim Northover726d32c2012-09-01 18:07:29 +00004118 // The narrower destination must be marked as set to keep previous chains
4119 // in place.
Tim Northover771f1602012-08-29 16:36:07 +00004120 MIB.addReg(DstReg, RegState::Define | RegState::Implicit);
James Molloyea052562012-09-18 08:31:15 +00004121 if (ImplicitSReg != 0)
4122 MIB.addReg(ImplicitSReg, RegState::Implicit);
Tim Northoverf6618152012-08-17 11:32:52 +00004123 break;
James Molloyea052562012-09-18 08:31:15 +00004124 }
Tim Northoverca9f3842012-08-30 10:17:45 +00004125 case ARM::VMOVS: {
4126 if (Domain != ExeNEON)
4127 break;
4128
4129 // Source instruction is %SDst = VMOVS %SSrc, 14, %noreg (; implicits)
4130 DstReg = MI->getOperand(0).getReg();
4131 SrcReg = MI->getOperand(1).getReg();
4132
Tim Northoverca9f3842012-08-30 10:17:45 +00004133 unsigned DstLane = 0, SrcLane = 0, DDst, DSrc;
4134 DDst = getCorrespondingDRegAndLane(TRI, DstReg, DstLane);
4135 DSrc = getCorrespondingDRegAndLane(TRI, SrcReg, SrcLane);
4136
James Molloyea052562012-09-18 08:31:15 +00004137 unsigned ImplicitSReg;
4138 if (!getImplicitSPRUseForDPRUse(TRI, MI, DSrc, SrcLane, ImplicitSReg))
4139 break;
Tim Northover726d32c2012-09-01 18:07:29 +00004140
Tim Northoverc8d867d2012-09-05 18:37:53 +00004141 for (unsigned i = MI->getDesc().getNumOperands(); i; --i)
4142 MI->RemoveOperand(i-1);
4143
Tim Northoverca9f3842012-08-30 10:17:45 +00004144 if (DSrc == DDst) {
4145 // Destination can be:
4146 // %DDst = VDUPLN32d %DDst, Lane, 14, %noreg (; implicits)
4147 MI->setDesc(get(ARM::VDUPLN32d));
Tim Northover726d32c2012-09-01 18:07:29 +00004148 MIB.addReg(DDst, RegState::Define)
4149 .addReg(DDst, getUndefRegState(!MI->readsRegister(DDst, TRI)))
4150 .addImm(SrcLane);
4151 AddDefaultPred(MIB);
Tim Northoverca9f3842012-08-30 10:17:45 +00004152
4153 // Neither the source or the destination are naturally represented any
4154 // more, so add them in manually.
4155 MIB.addReg(DstReg, RegState::Implicit | RegState::Define);
4156 MIB.addReg(SrcReg, RegState::Implicit);
James Molloyea052562012-09-18 08:31:15 +00004157 if (ImplicitSReg != 0)
4158 MIB.addReg(ImplicitSReg, RegState::Implicit);
Tim Northoverca9f3842012-08-30 10:17:45 +00004159 break;
4160 }
4161
4162 // In general there's no single instruction that can perform an S <-> S
4163 // move in NEON space, but a pair of VEXT instructions *can* do the
4164 // job. It turns out that the VEXTs needed will only use DSrc once, with
4165 // the position based purely on the combination of lane-0 and lane-1
4166 // involved. For example
4167 // vmov s0, s2 -> vext.32 d0, d0, d1, #1 vext.32 d0, d0, d0, #1
4168 // vmov s1, s3 -> vext.32 d0, d1, d0, #1 vext.32 d0, d0, d0, #1
4169 // vmov s0, s3 -> vext.32 d0, d0, d0, #1 vext.32 d0, d1, d0, #1
4170 // vmov s1, s2 -> vext.32 d0, d0, d0, #1 vext.32 d0, d0, d1, #1
4171 //
4172 // Pattern of the MachineInstrs is:
4173 // %DDst = VEXTd32 %DSrc1, %DSrc2, Lane, 14, %noreg (;implicits)
4174 MachineInstrBuilder NewMIB;
4175 NewMIB = BuildMI(*MI->getParent(), MI, MI->getDebugLoc(),
4176 get(ARM::VEXTd32), DDst);
Tim Northover726d32c2012-09-01 18:07:29 +00004177
4178 // On the first instruction, both DSrc and DDst may be <undef> if present.
4179 // Specifically when the original instruction didn't have them as an
4180 // <imp-use>.
4181 unsigned CurReg = SrcLane == 1 && DstLane == 1 ? DSrc : DDst;
4182 bool CurUndef = !MI->readsRegister(CurReg, TRI);
4183 NewMIB.addReg(CurReg, getUndefRegState(CurUndef));
4184
4185 CurReg = SrcLane == 0 && DstLane == 0 ? DSrc : DDst;
4186 CurUndef = !MI->readsRegister(CurReg, TRI);
4187 NewMIB.addReg(CurReg, getUndefRegState(CurUndef));
4188
Tim Northoverca9f3842012-08-30 10:17:45 +00004189 NewMIB.addImm(1);
4190 AddDefaultPred(NewMIB);
4191
4192 if (SrcLane == DstLane)
4193 NewMIB.addReg(SrcReg, RegState::Implicit);
4194
4195 MI->setDesc(get(ARM::VEXTd32));
4196 MIB.addReg(DDst, RegState::Define);
Tim Northover726d32c2012-09-01 18:07:29 +00004197
4198 // On the second instruction, DDst has definitely been defined above, so
4199 // it is not <undef>. DSrc, if present, can be <undef> as above.
4200 CurReg = SrcLane == 1 && DstLane == 0 ? DSrc : DDst;
4201 CurUndef = CurReg == DSrc && !MI->readsRegister(CurReg, TRI);
4202 MIB.addReg(CurReg, getUndefRegState(CurUndef));
4203
4204 CurReg = SrcLane == 0 && DstLane == 1 ? DSrc : DDst;
4205 CurUndef = CurReg == DSrc && !MI->readsRegister(CurReg, TRI);
4206 MIB.addReg(CurReg, getUndefRegState(CurUndef));
4207
Tim Northoverca9f3842012-08-30 10:17:45 +00004208 MIB.addImm(1);
4209 AddDefaultPred(MIB);
4210
4211 if (SrcLane != DstLane)
4212 MIB.addReg(SrcReg, RegState::Implicit);
4213
4214 // As before, the original destination is no longer represented, add it
4215 // implicitly.
4216 MIB.addReg(DstReg, RegState::Define | RegState::Implicit);
James Molloyea052562012-09-18 08:31:15 +00004217 if (ImplicitSReg != 0)
4218 MIB.addReg(ImplicitSReg, RegState::Implicit);
Tim Northoverca9f3842012-08-30 10:17:45 +00004219 break;
4220 }
Tim Northoverf6618152012-08-17 11:32:52 +00004221 }
4222
Jakob Stoklund Olesenf9b71a22011-09-27 22:57:21 +00004223}
Jim Grosbach617f84dd2012-02-28 23:53:30 +00004224
Bob Wilsone8a549c2012-09-29 21:43:49 +00004225//===----------------------------------------------------------------------===//
4226// Partial register updates
4227//===----------------------------------------------------------------------===//
4228//
4229// Swift renames NEON registers with 64-bit granularity. That means any
4230// instruction writing an S-reg implicitly reads the containing D-reg. The
4231// problem is mostly avoided by translating f32 operations to v2f32 operations
4232// on D-registers, but f32 loads are still a problem.
4233//
4234// These instructions can load an f32 into a NEON register:
4235//
4236// VLDRS - Only writes S, partial D update.
4237// VLD1LNd32 - Writes all D-regs, explicit partial D update, 2 uops.
4238// VLD1DUPd32 - Writes all D-regs, no partial reg update, 2 uops.
4239//
4240// FCONSTD can be used as a dependency-breaking instruction.
Bob Wilsone8a549c2012-09-29 21:43:49 +00004241unsigned ARMBaseInstrInfo::
4242getPartialRegUpdateClearance(const MachineInstr *MI,
4243 unsigned OpNum,
4244 const TargetRegisterInfo *TRI) const {
Silviu Barangadc453362013-03-27 12:38:44 +00004245 if (!SwiftPartialUpdateClearance ||
4246 !(Subtarget.isSwift() || Subtarget.isCortexA15()))
Bob Wilsone8a549c2012-09-29 21:43:49 +00004247 return 0;
4248
4249 assert(TRI && "Need TRI instance");
4250
4251 const MachineOperand &MO = MI->getOperand(OpNum);
4252 if (MO.readsReg())
4253 return 0;
4254 unsigned Reg = MO.getReg();
4255 int UseOp = -1;
4256
4257 switch(MI->getOpcode()) {
4258 // Normal instructions writing only an S-register.
4259 case ARM::VLDRS:
4260 case ARM::FCONSTS:
4261 case ARM::VMOVSR:
Bob Wilsone8a549c2012-09-29 21:43:49 +00004262 case ARM::VMOVv8i8:
4263 case ARM::VMOVv4i16:
4264 case ARM::VMOVv2i32:
4265 case ARM::VMOVv2f32:
4266 case ARM::VMOVv1i64:
4267 UseOp = MI->findRegisterUseOperandIdx(Reg, false, TRI);
4268 break;
4269
4270 // Explicitly reads the dependency.
4271 case ARM::VLD1LNd32:
Silviu Barangadc453362013-03-27 12:38:44 +00004272 UseOp = 3;
Bob Wilsone8a549c2012-09-29 21:43:49 +00004273 break;
4274 default:
4275 return 0;
4276 }
4277
4278 // If this instruction actually reads a value from Reg, there is no unwanted
4279 // dependency.
4280 if (UseOp != -1 && MI->getOperand(UseOp).readsReg())
4281 return 0;
4282
4283 // We must be able to clobber the whole D-reg.
4284 if (TargetRegisterInfo::isVirtualRegister(Reg)) {
4285 // Virtual register must be a foo:ssub_0<def,undef> operand.
4286 if (!MO.getSubReg() || MI->readsVirtualRegister(Reg))
4287 return 0;
4288 } else if (ARM::SPRRegClass.contains(Reg)) {
4289 // Physical register: MI must define the full D-reg.
4290 unsigned DReg = TRI->getMatchingSuperReg(Reg, ARM::ssub_0,
4291 &ARM::DPRRegClass);
4292 if (!DReg || !MI->definesRegister(DReg, TRI))
4293 return 0;
4294 }
4295
4296 // MI has an unwanted D-register dependency.
4297 // Avoid defs in the previous N instructrions.
4298 return SwiftPartialUpdateClearance;
4299}
4300
4301// Break a partial register dependency after getPartialRegUpdateClearance
4302// returned non-zero.
4303void ARMBaseInstrInfo::
4304breakPartialRegDependency(MachineBasicBlock::iterator MI,
4305 unsigned OpNum,
4306 const TargetRegisterInfo *TRI) const {
4307 assert(MI && OpNum < MI->getDesc().getNumDefs() && "OpNum is not a def");
4308 assert(TRI && "Need TRI instance");
4309
4310 const MachineOperand &MO = MI->getOperand(OpNum);
4311 unsigned Reg = MO.getReg();
4312 assert(TargetRegisterInfo::isPhysicalRegister(Reg) &&
4313 "Can't break virtual register dependencies.");
4314 unsigned DReg = Reg;
4315
4316 // If MI defines an S-reg, find the corresponding D super-register.
4317 if (ARM::SPRRegClass.contains(Reg)) {
4318 DReg = ARM::D0 + (Reg - ARM::S0) / 2;
4319 assert(TRI->isSuperRegister(Reg, DReg) && "Register enums broken");
4320 }
4321
4322 assert(ARM::DPRRegClass.contains(DReg) && "Can only break D-reg deps");
4323 assert(MI->definesRegister(DReg, TRI) && "MI doesn't clobber full D-reg");
4324
4325 // FIXME: In some cases, VLDRS can be changed to a VLD1DUPd32 which defines
4326 // the full D-register by loading the same value to both lanes. The
4327 // instruction is micro-coded with 2 uops, so don't do this until we can
Robert Wilhelm516be562013-09-14 09:34:24 +00004328 // properly schedule micro-coded instructions. The dispatcher stalls cause
Bob Wilsone8a549c2012-09-29 21:43:49 +00004329 // too big regressions.
4330
4331 // Insert the dependency-breaking FCONSTD before MI.
4332 // 96 is the encoding of 0.5, but the actual value doesn't matter here.
4333 AddDefaultPred(BuildMI(*MI->getParent(), MI, MI->getDebugLoc(),
4334 get(ARM::FCONSTD), DReg).addImm(96));
4335 MI->addRegisterKilled(DReg, TRI, true);
4336}
4337
Jim Grosbach617f84dd2012-02-28 23:53:30 +00004338bool ARMBaseInstrInfo::hasNOP() const {
4339 return (Subtarget.getFeatureBits() & ARM::HasV6T2Ops) != 0;
4340}
Arnold Schwaighofer5dde1f32013-04-05 04:42:00 +00004341
4342bool ARMBaseInstrInfo::isSwiftFastImmShift(const MachineInstr *MI) const {
Arnold Schwaighofere9375922013-06-05 14:59:36 +00004343 if (MI->getNumOperands() < 4)
4344 return true;
Arnold Schwaighofer5dde1f32013-04-05 04:42:00 +00004345 unsigned ShOpVal = MI->getOperand(3).getImm();
4346 unsigned ShImm = ARM_AM::getSORegOffset(ShOpVal);
4347 // Swift supports faster shifts for: lsl 2, lsl 1, and lsr 1.
4348 if ((ShImm == 1 && ARM_AM::getSORegShOp(ShOpVal) == ARM_AM::lsr) ||
4349 ((ShImm == 1 || ShImm == 2) &&
4350 ARM_AM::getSORegShOp(ShOpVal) == ARM_AM::lsl))
4351 return true;
4352
4353 return false;
4354}