1 //===-- MipsSEFrameLowering.cpp - Mips32/64 Frame Information -------------===//
3 // The LLVM Compiler Infrastructure
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
8 //===----------------------------------------------------------------------===//
10 // This file contains the Mips32/64 implementation of TargetFrameLowering class.
12 //===----------------------------------------------------------------------===//
14 #include "MipsSEFrameLowering.h"
15 #include "MCTargetDesc/MipsBaseInfo.h"
16 #include "MipsAnalyzeImmediate.h"
17 #include "MipsMachineFunction.h"
18 #include "MipsSEInstrInfo.h"
19 #include "MipsSubtarget.h"
20 #include "llvm/CodeGen/MachineFrameInfo.h"
21 #include "llvm/CodeGen/MachineFunction.h"
22 #include "llvm/CodeGen/MachineInstrBuilder.h"
23 #include "llvm/CodeGen/MachineModuleInfo.h"
24 #include "llvm/CodeGen/MachineRegisterInfo.h"
25 #include "llvm/CodeGen/RegisterScavenging.h"
26 #include "llvm/IR/DataLayout.h"
27 #include "llvm/IR/Function.h"
28 #include "llvm/Support/CommandLine.h"
29 #include "llvm/Target/TargetOptions.h"
34 typedef MachineBasicBlock::iterator Iter;
36 static std::pair<unsigned, unsigned> getMFHiLoOpc(unsigned Src) {
37 if (Mips::ACC64RegClass.contains(Src))
38 return std::make_pair((unsigned)Mips::PseudoMFHI,
39 (unsigned)Mips::PseudoMFLO);
41 if (Mips::ACC64DSPRegClass.contains(Src))
42 return std::make_pair((unsigned)Mips::MFHI_DSP, (unsigned)Mips::MFLO_DSP);
44 if (Mips::ACC128RegClass.contains(Src))
45 return std::make_pair((unsigned)Mips::PseudoMFHI64,
46 (unsigned)Mips::PseudoMFLO64);
48 return std::make_pair(0, 0);
51 /// Helper class to expand pseudos.
54 ExpandPseudo(MachineFunction &MF);
58 bool expandInstr(MachineBasicBlock &MBB, Iter I);
59 void expandLoadCCond(MachineBasicBlock &MBB, Iter I);
60 void expandStoreCCond(MachineBasicBlock &MBB, Iter I);
61 void expandLoadACC(MachineBasicBlock &MBB, Iter I, unsigned RegSize);
62 void expandStoreACC(MachineBasicBlock &MBB, Iter I, unsigned MFHiOpc,
63 unsigned MFLoOpc, unsigned RegSize);
64 bool expandCopy(MachineBasicBlock &MBB, Iter I);
65 bool expandCopyACC(MachineBasicBlock &MBB, Iter I, unsigned MFHiOpc,
67 bool expandBuildPairF64(MachineBasicBlock &MBB,
68 MachineBasicBlock::iterator I, bool FP64) const;
69 bool expandExtractElementF64(MachineBasicBlock &MBB,
70 MachineBasicBlock::iterator I, bool FP64) const;
73 MachineRegisterInfo &MRI;
74 const MipsSubtarget &Subtarget;
75 const MipsSEInstrInfo &TII;
76 const MipsRegisterInfo &RegInfo;
80 ExpandPseudo::ExpandPseudo(MachineFunction &MF_)
81 : MF(MF_), MRI(MF.getRegInfo()),
82 Subtarget(static_cast<const MipsSubtarget &>(MF.getSubtarget())),
83 TII(*static_cast<const MipsSEInstrInfo *>(Subtarget.getInstrInfo())),
84 RegInfo(*Subtarget.getRegisterInfo()) {}
86 bool ExpandPseudo::expand() {
87 bool Expanded = false;
89 for (MachineFunction::iterator BB = MF.begin(), BBEnd = MF.end();
91 for (Iter I = BB->begin(), End = BB->end(); I != End;)
92 Expanded |= expandInstr(*BB, I++);
97 bool ExpandPseudo::expandInstr(MachineBasicBlock &MBB, Iter I) {
98 switch(I->getOpcode()) {
99 case Mips::LOAD_CCOND_DSP:
100 expandLoadCCond(MBB, I);
102 case Mips::STORE_CCOND_DSP:
103 expandStoreCCond(MBB, I);
105 case Mips::LOAD_ACC64:
106 case Mips::LOAD_ACC64DSP:
107 expandLoadACC(MBB, I, 4);
109 case Mips::LOAD_ACC128:
110 expandLoadACC(MBB, I, 8);
112 case Mips::STORE_ACC64:
113 expandStoreACC(MBB, I, Mips::PseudoMFHI, Mips::PseudoMFLO, 4);
115 case Mips::STORE_ACC64DSP:
116 expandStoreACC(MBB, I, Mips::MFHI_DSP, Mips::MFLO_DSP, 4);
118 case Mips::STORE_ACC128:
119 expandStoreACC(MBB, I, Mips::PseudoMFHI64, Mips::PseudoMFLO64, 8);
121 case Mips::BuildPairF64:
122 if (expandBuildPairF64(MBB, I, false))
125 case Mips::BuildPairF64_64:
126 if (expandBuildPairF64(MBB, I, true))
129 case Mips::ExtractElementF64:
130 if (expandExtractElementF64(MBB, I, false))
133 case Mips::ExtractElementF64_64:
134 if (expandExtractElementF64(MBB, I, true))
137 case TargetOpcode::COPY:
138 if (!expandCopy(MBB, I))
149 void ExpandPseudo::expandLoadCCond(MachineBasicBlock &MBB, Iter I) {
153 assert(I->getOperand(0).isReg() && I->getOperand(1).isFI());
155 const TargetRegisterClass *RC = RegInfo.intRegClass(4);
156 unsigned VR = MRI.createVirtualRegister(RC);
157 unsigned Dst = I->getOperand(0).getReg(), FI = I->getOperand(1).getIndex();
159 TII.loadRegFromStack(MBB, I, VR, FI, RC, &RegInfo, 0);
160 BuildMI(MBB, I, I->getDebugLoc(), TII.get(TargetOpcode::COPY), Dst)
161 .addReg(VR, RegState::Kill);
164 void ExpandPseudo::expandStoreCCond(MachineBasicBlock &MBB, Iter I) {
168 assert(I->getOperand(0).isReg() && I->getOperand(1).isFI());
170 const TargetRegisterClass *RC = RegInfo.intRegClass(4);
171 unsigned VR = MRI.createVirtualRegister(RC);
172 unsigned Src = I->getOperand(0).getReg(), FI = I->getOperand(1).getIndex();
174 BuildMI(MBB, I, I->getDebugLoc(), TII.get(TargetOpcode::COPY), VR)
175 .addReg(Src, getKillRegState(I->getOperand(0).isKill()));
176 TII.storeRegToStack(MBB, I, VR, true, FI, RC, &RegInfo, 0);
179 void ExpandPseudo::expandLoadACC(MachineBasicBlock &MBB, Iter I,
186 assert(I->getOperand(0).isReg() && I->getOperand(1).isFI());
188 const TargetRegisterClass *RC = RegInfo.intRegClass(RegSize);
189 unsigned VR0 = MRI.createVirtualRegister(RC);
190 unsigned VR1 = MRI.createVirtualRegister(RC);
191 unsigned Dst = I->getOperand(0).getReg(), FI = I->getOperand(1).getIndex();
192 unsigned Lo = RegInfo.getSubReg(Dst, Mips::sub_lo);
193 unsigned Hi = RegInfo.getSubReg(Dst, Mips::sub_hi);
194 DebugLoc DL = I->getDebugLoc();
195 const MCInstrDesc &Desc = TII.get(TargetOpcode::COPY);
197 TII.loadRegFromStack(MBB, I, VR0, FI, RC, &RegInfo, 0);
198 BuildMI(MBB, I, DL, Desc, Lo).addReg(VR0, RegState::Kill);
199 TII.loadRegFromStack(MBB, I, VR1, FI, RC, &RegInfo, RegSize);
200 BuildMI(MBB, I, DL, Desc, Hi).addReg(VR1, RegState::Kill);
203 void ExpandPseudo::expandStoreACC(MachineBasicBlock &MBB, Iter I,
204 unsigned MFHiOpc, unsigned MFLoOpc,
209 // store $vr1, FI + 4
211 assert(I->getOperand(0).isReg() && I->getOperand(1).isFI());
213 const TargetRegisterClass *RC = RegInfo.intRegClass(RegSize);
214 unsigned VR0 = MRI.createVirtualRegister(RC);
215 unsigned VR1 = MRI.createVirtualRegister(RC);
216 unsigned Src = I->getOperand(0).getReg(), FI = I->getOperand(1).getIndex();
217 unsigned SrcKill = getKillRegState(I->getOperand(0).isKill());
218 DebugLoc DL = I->getDebugLoc();
220 BuildMI(MBB, I, DL, TII.get(MFLoOpc), VR0).addReg(Src);
221 TII.storeRegToStack(MBB, I, VR0, true, FI, RC, &RegInfo, 0);
222 BuildMI(MBB, I, DL, TII.get(MFHiOpc), VR1).addReg(Src, SrcKill);
223 TII.storeRegToStack(MBB, I, VR1, true, FI, RC, &RegInfo, RegSize);
226 bool ExpandPseudo::expandCopy(MachineBasicBlock &MBB, Iter I) {
227 unsigned Src = I->getOperand(1).getReg();
228 std::pair<unsigned, unsigned> Opcodes = getMFHiLoOpc(Src);
233 return expandCopyACC(MBB, I, Opcodes.first, Opcodes.second);
236 bool ExpandPseudo::expandCopyACC(MachineBasicBlock &MBB, Iter I,
237 unsigned MFHiOpc, unsigned MFLoOpc) {
243 unsigned Dst = I->getOperand(0).getReg(), Src = I->getOperand(1).getReg();
244 unsigned VRegSize = RegInfo.getMinimalPhysRegClass(Dst)->getSize() / 2;
245 const TargetRegisterClass *RC = RegInfo.intRegClass(VRegSize);
246 unsigned VR0 = MRI.createVirtualRegister(RC);
247 unsigned VR1 = MRI.createVirtualRegister(RC);
248 unsigned SrcKill = getKillRegState(I->getOperand(1).isKill());
249 unsigned DstLo = RegInfo.getSubReg(Dst, Mips::sub_lo);
250 unsigned DstHi = RegInfo.getSubReg(Dst, Mips::sub_hi);
251 DebugLoc DL = I->getDebugLoc();
253 BuildMI(MBB, I, DL, TII.get(MFLoOpc), VR0).addReg(Src);
254 BuildMI(MBB, I, DL, TII.get(TargetOpcode::COPY), DstLo)
255 .addReg(VR0, RegState::Kill);
256 BuildMI(MBB, I, DL, TII.get(MFHiOpc), VR1).addReg(Src, SrcKill);
257 BuildMI(MBB, I, DL, TII.get(TargetOpcode::COPY), DstHi)
258 .addReg(VR1, RegState::Kill);
262 /// This method expands the same instruction that MipsSEInstrInfo::
263 /// expandBuildPairF64 does, for the case when ABI is fpxx and mthc1 is not
264 /// available and the case where the ABI is FP64A. It is implemented here
265 /// because frame indexes are eliminated before MipsSEInstrInfo::
266 /// expandBuildPairF64 is called.
267 bool ExpandPseudo::expandBuildPairF64(MachineBasicBlock &MBB,
268 MachineBasicBlock::iterator I,
270 // For fpxx and when mthc1 is not available, use:
271 // spill + reload via ldc1
273 // The case where dmtc1 is available doesn't need to be handled here
274 // because it never creates a BuildPairF64 node.
276 // The FP64A ABI (fp64 with nooddspreg) must also use a spill/reload sequence
277 // for odd-numbered double precision values (because the lower 32-bits is
278 // transferred with mtc1 which is redirected to the upper half of the even
279 // register). Unfortunately, we have to make this decision before register
280 // allocation so for now we use a spill/reload sequence for all
281 // double-precision values in regardless of being an odd/even register.
282 if ((Subtarget.isABI_FPXX() && !Subtarget.hasMTHC1()) ||
283 (FP64 && !Subtarget.useOddSPReg())) {
284 unsigned DstReg = I->getOperand(0).getReg();
285 unsigned LoReg = I->getOperand(1).getReg();
286 unsigned HiReg = I->getOperand(2).getReg();
288 // It should be impossible to have FGR64 on MIPS-II or MIPS32r1 (which are
289 // the cases where mthc1 is not available). 64-bit architectures and
290 // MIPS32r2 or later can use FGR64 though.
291 assert(Subtarget.isGP64bit() || Subtarget.hasMTHC1() ||
292 !Subtarget.isFP64bit());
294 const TargetRegisterClass *RC = &Mips::GPR32RegClass;
295 const TargetRegisterClass *RC2 =
296 FP64 ? &Mips::FGR64RegClass : &Mips::AFGR64RegClass;
298 // We re-use the same spill slot each time so that the stack frame doesn't
299 // grow too much in functions with a large number of moves.
300 int FI = MF.getInfo<MipsFunctionInfo>()->getMoveF64ViaSpillFI(RC2);
301 if (!Subtarget.isLittle())
302 std::swap(LoReg, HiReg);
303 TII.storeRegToStack(MBB, I, LoReg, I->getOperand(1).isKill(), FI, RC,
305 TII.storeRegToStack(MBB, I, HiReg, I->getOperand(2).isKill(), FI, RC,
307 TII.loadRegFromStack(MBB, I, DstReg, FI, RC2, &RegInfo, 0);
314 /// This method expands the same instruction that MipsSEInstrInfo::
315 /// expandExtractElementF64 does, for the case when ABI is fpxx and mfhc1 is not
316 /// available and the case where the ABI is FP64A. It is implemented here
317 /// because frame indexes are eliminated before MipsSEInstrInfo::
318 /// expandExtractElementF64 is called.
319 bool ExpandPseudo::expandExtractElementF64(MachineBasicBlock &MBB,
320 MachineBasicBlock::iterator I,
322 // For fpxx and when mfhc1 is not available, use:
323 // spill + reload via ldc1
325 // The case where dmfc1 is available doesn't need to be handled here
326 // because it never creates a ExtractElementF64 node.
328 // The FP64A ABI (fp64 with nooddspreg) must also use a spill/reload sequence
329 // for odd-numbered double precision values (because the lower 32-bits is
330 // transferred with mfc1 which is redirected to the upper half of the even
331 // register). Unfortunately, we have to make this decision before register
332 // allocation so for now we use a spill/reload sequence for all
333 // double-precision values in regardless of being an odd/even register.
335 if ((Subtarget.isABI_FPXX() && !Subtarget.hasMTHC1()) ||
336 (FP64 && !Subtarget.useOddSPReg())) {
337 unsigned DstReg = I->getOperand(0).getReg();
338 unsigned SrcReg = I->getOperand(1).getReg();
339 unsigned N = I->getOperand(2).getImm();
340 int64_t Offset = 4 * (Subtarget.isLittle() ? N : (1 - N));
342 // It should be impossible to have FGR64 on MIPS-II or MIPS32r1 (which are
343 // the cases where mfhc1 is not available). 64-bit architectures and
344 // MIPS32r2 or later can use FGR64 though.
345 assert(Subtarget.isGP64bit() || Subtarget.hasMTHC1() ||
346 !Subtarget.isFP64bit());
348 const TargetRegisterClass *RC =
349 FP64 ? &Mips::FGR64RegClass : &Mips::AFGR64RegClass;
350 const TargetRegisterClass *RC2 = &Mips::GPR32RegClass;
352 // We re-use the same spill slot each time so that the stack frame doesn't
353 // grow too much in functions with a large number of moves.
354 int FI = MF.getInfo<MipsFunctionInfo>()->getMoveF64ViaSpillFI(RC);
355 TII.storeRegToStack(MBB, I, SrcReg, I->getOperand(1).isKill(), FI, RC,
357 TII.loadRegFromStack(MBB, I, DstReg, FI, RC2, &RegInfo, Offset);
364 MipsSEFrameLowering::MipsSEFrameLowering(const MipsSubtarget &STI)
365 : MipsFrameLowering(STI, STI.stackAlignment()) {}
367 void MipsSEFrameLowering::emitPrologue(MachineFunction &MF) const {
368 MachineBasicBlock &MBB = MF.front();
369 MachineFrameInfo *MFI = MF.getFrameInfo();
370 MipsFunctionInfo *MipsFI = MF.getInfo<MipsFunctionInfo>();
372 const MipsSEInstrInfo &TII =
373 *static_cast<const MipsSEInstrInfo *>(STI.getInstrInfo());
374 const MipsRegisterInfo &RegInfo =
375 *static_cast<const MipsRegisterInfo *>(STI.getRegisterInfo());
377 MachineBasicBlock::iterator MBBI = MBB.begin();
378 DebugLoc dl = MBBI != MBB.end() ? MBBI->getDebugLoc() : DebugLoc();
379 MipsABIInfo ABI = STI.getABI();
380 unsigned SP = ABI.GetStackPtr();
381 unsigned FP = ABI.GetFramePtr();
382 unsigned ZERO = ABI.GetNullPtr();
383 unsigned ADDu = ABI.GetPtrAdduOp();
385 // First, compute final stack size.
386 uint64_t StackSize = MFI->getStackSize();
388 // No need to allocate space on the stack.
389 if (StackSize == 0 && !MFI->adjustsStack()) return;
391 MachineModuleInfo &MMI = MF.getMMI();
392 const MCRegisterInfo *MRI = MMI.getContext().getRegisterInfo();
393 MachineLocation DstML, SrcML;
396 TII.adjustStackPtr(SP, -StackSize, MBB, MBBI);
398 // emit ".cfi_def_cfa_offset StackSize"
399 unsigned CFIIndex = MMI.addFrameInst(
400 MCCFIInstruction::createDefCfaOffset(nullptr, -StackSize));
401 BuildMI(MBB, MBBI, dl, TII.get(TargetOpcode::CFI_INSTRUCTION))
402 .addCFIIndex(CFIIndex);
404 const std::vector<CalleeSavedInfo> &CSI = MFI->getCalleeSavedInfo();
407 // Find the instruction past the last instruction that saves a callee-saved
408 // register to the stack.
409 for (unsigned i = 0; i < CSI.size(); ++i)
412 // Iterate over list of callee-saved registers and emit .cfi_offset
414 for (std::vector<CalleeSavedInfo>::const_iterator I = CSI.begin(),
415 E = CSI.end(); I != E; ++I) {
416 int64_t Offset = MFI->getObjectOffset(I->getFrameIdx());
417 unsigned Reg = I->getReg();
419 // If Reg is a double precision register, emit two cfa_offsets,
420 // one for each of the paired single precision registers.
421 if (Mips::AFGR64RegClass.contains(Reg)) {
423 MRI->getDwarfRegNum(RegInfo.getSubReg(Reg, Mips::sub_lo), true);
425 MRI->getDwarfRegNum(RegInfo.getSubReg(Reg, Mips::sub_hi), true);
428 std::swap(Reg0, Reg1);
430 unsigned CFIIndex = MMI.addFrameInst(
431 MCCFIInstruction::createOffset(nullptr, Reg0, Offset));
432 BuildMI(MBB, MBBI, dl, TII.get(TargetOpcode::CFI_INSTRUCTION))
433 .addCFIIndex(CFIIndex);
435 CFIIndex = MMI.addFrameInst(
436 MCCFIInstruction::createOffset(nullptr, Reg1, Offset + 4));
437 BuildMI(MBB, MBBI, dl, TII.get(TargetOpcode::CFI_INSTRUCTION))
438 .addCFIIndex(CFIIndex);
439 } else if (Mips::FGR64RegClass.contains(Reg)) {
440 unsigned Reg0 = MRI->getDwarfRegNum(Reg, true);
441 unsigned Reg1 = MRI->getDwarfRegNum(Reg, true) + 1;
444 std::swap(Reg0, Reg1);
446 unsigned CFIIndex = MMI.addFrameInst(
447 MCCFIInstruction::createOffset(nullptr, Reg0, Offset));
448 BuildMI(MBB, MBBI, dl, TII.get(TargetOpcode::CFI_INSTRUCTION))
449 .addCFIIndex(CFIIndex);
451 CFIIndex = MMI.addFrameInst(
452 MCCFIInstruction::createOffset(nullptr, Reg1, Offset + 4));
453 BuildMI(MBB, MBBI, dl, TII.get(TargetOpcode::CFI_INSTRUCTION))
454 .addCFIIndex(CFIIndex);
456 // Reg is either in GPR32 or FGR32.
457 unsigned CFIIndex = MMI.addFrameInst(MCCFIInstruction::createOffset(
458 nullptr, MRI->getDwarfRegNum(Reg, 1), Offset));
459 BuildMI(MBB, MBBI, dl, TII.get(TargetOpcode::CFI_INSTRUCTION))
460 .addCFIIndex(CFIIndex);
465 if (MipsFI->callsEhReturn()) {
466 const TargetRegisterClass *PtrRC =
467 ABI.ArePtrs64bit() ? &Mips::GPR64RegClass : &Mips::GPR32RegClass;
469 // Insert instructions that spill eh data registers.
470 for (int I = 0; I < 4; ++I) {
471 if (!MBB.isLiveIn(ABI.GetEhDataReg(I)))
472 MBB.addLiveIn(ABI.GetEhDataReg(I));
473 TII.storeRegToStackSlot(MBB, MBBI, ABI.GetEhDataReg(I), false,
474 MipsFI->getEhDataRegFI(I), PtrRC, &RegInfo);
477 // Emit .cfi_offset directives for eh data registers.
478 for (int I = 0; I < 4; ++I) {
479 int64_t Offset = MFI->getObjectOffset(MipsFI->getEhDataRegFI(I));
480 unsigned Reg = MRI->getDwarfRegNum(ABI.GetEhDataReg(I), true);
481 unsigned CFIIndex = MMI.addFrameInst(
482 MCCFIInstruction::createOffset(nullptr, Reg, Offset));
483 BuildMI(MBB, MBBI, dl, TII.get(TargetOpcode::CFI_INSTRUCTION))
484 .addCFIIndex(CFIIndex);
488 // if framepointer enabled, set it to point to the stack pointer.
490 // Insert instruction "move $fp, $sp" at this location.
491 BuildMI(MBB, MBBI, dl, TII.get(ADDu), FP).addReg(SP).addReg(ZERO)
492 .setMIFlag(MachineInstr::FrameSetup);
494 // emit ".cfi_def_cfa_register $fp"
495 unsigned CFIIndex = MMI.addFrameInst(MCCFIInstruction::createDefCfaRegister(
496 nullptr, MRI->getDwarfRegNum(FP, true)));
497 BuildMI(MBB, MBBI, dl, TII.get(TargetOpcode::CFI_INSTRUCTION))
498 .addCFIIndex(CFIIndex);
502 void MipsSEFrameLowering::emitEpilogue(MachineFunction &MF,
503 MachineBasicBlock &MBB) const {
504 MachineBasicBlock::iterator MBBI = MBB.getLastNonDebugInstr();
505 MachineFrameInfo *MFI = MF.getFrameInfo();
506 MipsFunctionInfo *MipsFI = MF.getInfo<MipsFunctionInfo>();
508 const MipsSEInstrInfo &TII =
509 *static_cast<const MipsSEInstrInfo *>(STI.getInstrInfo());
510 const MipsRegisterInfo &RegInfo =
511 *static_cast<const MipsRegisterInfo *>(STI.getRegisterInfo());
513 DebugLoc dl = MBBI->getDebugLoc();
514 MipsABIInfo ABI = STI.getABI();
515 unsigned SP = ABI.GetStackPtr();
516 unsigned FP = ABI.GetFramePtr();
517 unsigned ZERO = ABI.GetNullPtr();
518 unsigned ADDu = ABI.GetPtrAdduOp();
520 // if framepointer enabled, restore the stack pointer.
522 // Find the first instruction that restores a callee-saved register.
523 MachineBasicBlock::iterator I = MBBI;
525 for (unsigned i = 0; i < MFI->getCalleeSavedInfo().size(); ++i)
528 // Insert instruction "move $sp, $fp" at this location.
529 BuildMI(MBB, I, dl, TII.get(ADDu), SP).addReg(FP).addReg(ZERO);
532 if (MipsFI->callsEhReturn()) {
533 const TargetRegisterClass *RC =
534 ABI.ArePtrs64bit() ? &Mips::GPR64RegClass : &Mips::GPR32RegClass;
536 // Find first instruction that restores a callee-saved register.
537 MachineBasicBlock::iterator I = MBBI;
538 for (unsigned i = 0; i < MFI->getCalleeSavedInfo().size(); ++i)
541 // Insert instructions that restore eh data registers.
542 for (int J = 0; J < 4; ++J) {
543 TII.loadRegFromStackSlot(MBB, I, ABI.GetEhDataReg(J),
544 MipsFI->getEhDataRegFI(J), RC, &RegInfo);
548 // Get the number of bytes from FrameInfo
549 uint64_t StackSize = MFI->getStackSize();
555 TII.adjustStackPtr(SP, StackSize, MBB, MBBI);
558 bool MipsSEFrameLowering::
559 spillCalleeSavedRegisters(MachineBasicBlock &MBB,
560 MachineBasicBlock::iterator MI,
561 const std::vector<CalleeSavedInfo> &CSI,
562 const TargetRegisterInfo *TRI) const {
563 MachineFunction *MF = MBB.getParent();
564 MachineBasicBlock *EntryBlock = MF->begin();
565 const TargetInstrInfo &TII = *STI.getInstrInfo();
567 for (unsigned i = 0, e = CSI.size(); i != e; ++i) {
568 // Add the callee-saved register as live-in. Do not add if the register is
569 // RA and return address is taken, because it has already been added in
570 // method MipsTargetLowering::LowerRETURNADDR.
571 // It's killed at the spill, unless the register is RA and return address
573 unsigned Reg = CSI[i].getReg();
574 bool IsRAAndRetAddrIsTaken = (Reg == Mips::RA || Reg == Mips::RA_64)
575 && MF->getFrameInfo()->isReturnAddressTaken();
576 if (!IsRAAndRetAddrIsTaken)
577 EntryBlock->addLiveIn(Reg);
579 // Insert the spill to the stack frame.
580 bool IsKill = !IsRAAndRetAddrIsTaken;
581 const TargetRegisterClass *RC = TRI->getMinimalPhysRegClass(Reg);
582 TII.storeRegToStackSlot(*EntryBlock, MI, Reg, IsKill,
583 CSI[i].getFrameIdx(), RC, TRI);
590 MipsSEFrameLowering::hasReservedCallFrame(const MachineFunction &MF) const {
591 const MachineFrameInfo *MFI = MF.getFrameInfo();
593 // Reserve call frame if the size of the maximum call frame fits into 16-bit
594 // immediate field and there are no variable sized objects on the stack.
595 // Make sure the second register scavenger spill slot can be accessed with one
597 return isInt<16>(MFI->getMaxCallFrameSize() + getStackAlignment()) &&
598 !MFI->hasVarSizedObjects();
601 void MipsSEFrameLowering::
602 processFunctionBeforeCalleeSavedScan(MachineFunction &MF,
603 RegScavenger *RS) const {
604 MachineRegisterInfo &MRI = MF.getRegInfo();
605 MipsFunctionInfo *MipsFI = MF.getInfo<MipsFunctionInfo>();
606 MipsABIInfo ABI = STI.getABI();
607 unsigned FP = ABI.GetFramePtr();
609 // Mark $fp as used if function has dedicated frame pointer.
611 MRI.setPhysRegUsed(FP);
613 // Create spill slots for eh data registers if function calls eh_return.
614 if (MipsFI->callsEhReturn())
615 MipsFI->createEhDataRegsFI();
617 // Expand pseudo instructions which load, store or copy accumulators.
618 // Add an emergency spill slot if a pseudo was expanded.
619 if (ExpandPseudo(MF).expand()) {
620 // The spill slot should be half the size of the accumulator. If target is
621 // mips64, it should be 64-bit, otherwise it should be 32-bt.
622 const TargetRegisterClass *RC = STI.hasMips64() ?
623 &Mips::GPR64RegClass : &Mips::GPR32RegClass;
624 int FI = MF.getFrameInfo()->CreateStackObject(RC->getSize(),
625 RC->getAlignment(), false);
626 RS->addScavengingFrameIndex(FI);
629 // Set scavenging frame index if necessary.
630 uint64_t MaxSPOffset = MF.getInfo<MipsFunctionInfo>()->getIncomingArgSize() +
631 estimateStackSize(MF);
633 if (isInt<16>(MaxSPOffset))
636 const TargetRegisterClass *RC =
637 ABI.ArePtrs64bit() ? &Mips::GPR64RegClass : &Mips::GPR32RegClass;
638 int FI = MF.getFrameInfo()->CreateStackObject(RC->getSize(),
639 RC->getAlignment(), false);
640 RS->addScavengingFrameIndex(FI);
643 const MipsFrameLowering *
644 llvm::createMipsSEFrameLowering(const MipsSubtarget &ST) {
645 return new MipsSEFrameLowering(ST);