1 //===-- RISCVFrameLowering.cpp - RISCV Frame Information ------------------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 // 9 // This file contains the RISCV implementation of TargetFrameLowering class. 10 // 11 //===----------------------------------------------------------------------===// 12 13 #include "RISCVFrameLowering.h" 14 #include "RISCVMachineFunctionInfo.h" 15 #include "RISCVSubtarget.h" 16 #include "llvm/CodeGen/MachineFrameInfo.h" 17 #include "llvm/CodeGen/MachineFunction.h" 18 #include "llvm/CodeGen/MachineInstrBuilder.h" 19 #include "llvm/CodeGen/MachineRegisterInfo.h" 20 #include "llvm/CodeGen/RegisterScavenging.h" 21 #include "llvm/IR/DiagnosticInfo.h" 22 #include "llvm/MC/MCDwarf.h" 23 24 using namespace llvm; 25 26 // For now we use x18, a.k.a s2, as pointer to shadow call stack. 27 // User should explicitly set -ffixed-x18 and not use x18 in their asm. 28 static void emitSCSPrologue(MachineFunction &MF, MachineBasicBlock &MBB, 29 MachineBasicBlock::iterator MI, 30 const DebugLoc &DL) { 31 if (!MF.getFunction().hasFnAttribute(Attribute::ShadowCallStack)) 32 return; 33 34 const auto &STI = MF.getSubtarget<RISCVSubtarget>(); 35 Register RAReg = STI.getRegisterInfo()->getRARegister(); 36 37 // Do not save RA to the SCS if it's not saved to the regular stack, 38 // i.e. RA is not at risk of being overwritten. 39 std::vector<CalleeSavedInfo> &CSI = MF.getFrameInfo().getCalleeSavedInfo(); 40 if (std::none_of(CSI.begin(), CSI.end(), 41 [&](CalleeSavedInfo &CSR) { return CSR.getReg() == RAReg; })) 42 return; 43 44 Register SCSPReg = RISCVABI::getSCSPReg(); 45 46 auto &Ctx = MF.getFunction().getContext(); 47 if (!STI.isRegisterReservedByUser(SCSPReg)) { 48 Ctx.diagnose(DiagnosticInfoUnsupported{ 49 MF.getFunction(), "x18 not reserved by user for Shadow Call Stack."}); 50 return; 51 } 52 53 const auto *RVFI = MF.getInfo<RISCVMachineFunctionInfo>(); 54 if (RVFI->useSaveRestoreLibCalls(MF)) { 55 Ctx.diagnose(DiagnosticInfoUnsupported{ 56 MF.getFunction(), 57 "Shadow Call Stack cannot be combined with Save/Restore LibCalls."}); 58 return; 59 } 60 61 const RISCVInstrInfo *TII = STI.getInstrInfo(); 62 bool IsRV64 = STI.hasFeature(RISCV::Feature64Bit); 63 int64_t SlotSize = STI.getXLen() / 8; 64 // Store return address to shadow call stack 65 // s[w|d] ra, 0(s2) 66 // addi s2, s2, [4|8] 67 BuildMI(MBB, MI, DL, TII->get(IsRV64 ? RISCV::SD : RISCV::SW)) 68 .addReg(RAReg) 69 .addReg(SCSPReg) 70 .addImm(0); 71 BuildMI(MBB, MI, DL, TII->get(RISCV::ADDI)) 72 .addReg(SCSPReg, RegState::Define) 73 .addReg(SCSPReg) 74 .addImm(SlotSize); 75 } 76 77 static void emitSCSEpilogue(MachineFunction &MF, MachineBasicBlock &MBB, 78 MachineBasicBlock::iterator MI, 79 const DebugLoc &DL) { 80 if (!MF.getFunction().hasFnAttribute(Attribute::ShadowCallStack)) 81 return; 82 83 const auto &STI = MF.getSubtarget<RISCVSubtarget>(); 84 Register RAReg = STI.getRegisterInfo()->getRARegister(); 85 86 // See emitSCSPrologue() above. 87 std::vector<CalleeSavedInfo> &CSI = MF.getFrameInfo().getCalleeSavedInfo(); 88 if (std::none_of(CSI.begin(), CSI.end(), 89 [&](CalleeSavedInfo &CSR) { return CSR.getReg() == RAReg; })) 90 return; 91 92 Register SCSPReg = RISCVABI::getSCSPReg(); 93 94 auto &Ctx = MF.getFunction().getContext(); 95 if (!STI.isRegisterReservedByUser(SCSPReg)) { 96 Ctx.diagnose(DiagnosticInfoUnsupported{ 97 MF.getFunction(), "x18 not reserved by user for Shadow Call Stack."}); 98 return; 99 } 100 101 const auto *RVFI = MF.getInfo<RISCVMachineFunctionInfo>(); 102 if (RVFI->useSaveRestoreLibCalls(MF)) { 103 Ctx.diagnose(DiagnosticInfoUnsupported{ 104 MF.getFunction(), 105 "Shadow Call Stack cannot be combined with Save/Restore LibCalls."}); 106 return; 107 } 108 109 const RISCVInstrInfo *TII = STI.getInstrInfo(); 110 bool IsRV64 = STI.hasFeature(RISCV::Feature64Bit); 111 int64_t SlotSize = STI.getXLen() / 8; 112 // Load return address from shadow call stack 113 // l[w|d] ra, -[4|8](s2) 114 // addi s2, s2, -[4|8] 115 BuildMI(MBB, MI, DL, TII->get(IsRV64 ? RISCV::LD : RISCV::LW)) 116 .addReg(RAReg, RegState::Define) 117 .addReg(SCSPReg) 118 .addImm(-SlotSize); 119 BuildMI(MBB, MI, DL, TII->get(RISCV::ADDI)) 120 .addReg(SCSPReg, RegState::Define) 121 .addReg(SCSPReg) 122 .addImm(-SlotSize); 123 } 124 125 // Get the ID of the libcall used for spilling and restoring callee saved 126 // registers. The ID is representative of the number of registers saved or 127 // restored by the libcall, except it is zero-indexed - ID 0 corresponds to a 128 // single register. 129 static int getLibCallID(const MachineFunction &MF, 130 const std::vector<CalleeSavedInfo> &CSI) { 131 const auto *RVFI = MF.getInfo<RISCVMachineFunctionInfo>(); 132 133 if (CSI.empty() || !RVFI->useSaveRestoreLibCalls(MF)) 134 return -1; 135 136 Register MaxReg = RISCV::NoRegister; 137 for (auto &CS : CSI) 138 // RISCVRegisterInfo::hasReservedSpillSlot assigns negative frame indexes to 139 // registers which can be saved by libcall. 140 if (CS.getFrameIdx() < 0) 141 MaxReg = std::max(MaxReg.id(), CS.getReg().id()); 142 143 if (MaxReg == RISCV::NoRegister) 144 return -1; 145 146 switch (MaxReg) { 147 default: 148 llvm_unreachable("Something has gone wrong!"); 149 case /*s11*/ RISCV::X27: return 12; 150 case /*s10*/ RISCV::X26: return 11; 151 case /*s9*/ RISCV::X25: return 10; 152 case /*s8*/ RISCV::X24: return 9; 153 case /*s7*/ RISCV::X23: return 8; 154 case /*s6*/ RISCV::X22: return 7; 155 case /*s5*/ RISCV::X21: return 6; 156 case /*s4*/ RISCV::X20: return 5; 157 case /*s3*/ RISCV::X19: return 4; 158 case /*s2*/ RISCV::X18: return 3; 159 case /*s1*/ RISCV::X9: return 2; 160 case /*s0*/ RISCV::X8: return 1; 161 case /*ra*/ RISCV::X1: return 0; 162 } 163 } 164 165 // Get the name of the libcall used for spilling callee saved registers. 166 // If this function will not use save/restore libcalls, then return a nullptr. 167 static const char * 168 getSpillLibCallName(const MachineFunction &MF, 169 const std::vector<CalleeSavedInfo> &CSI) { 170 static const char *const SpillLibCalls[] = { 171 "__riscv_save_0", 172 "__riscv_save_1", 173 "__riscv_save_2", 174 "__riscv_save_3", 175 "__riscv_save_4", 176 "__riscv_save_5", 177 "__riscv_save_6", 178 "__riscv_save_7", 179 "__riscv_save_8", 180 "__riscv_save_9", 181 "__riscv_save_10", 182 "__riscv_save_11", 183 "__riscv_save_12" 184 }; 185 186 int LibCallID = getLibCallID(MF, CSI); 187 if (LibCallID == -1) 188 return nullptr; 189 return SpillLibCalls[LibCallID]; 190 } 191 192 // Get the name of the libcall used for restoring callee saved registers. 193 // If this function will not use save/restore libcalls, then return a nullptr. 194 static const char * 195 getRestoreLibCallName(const MachineFunction &MF, 196 const std::vector<CalleeSavedInfo> &CSI) { 197 static const char *const RestoreLibCalls[] = { 198 "__riscv_restore_0", 199 "__riscv_restore_1", 200 "__riscv_restore_2", 201 "__riscv_restore_3", 202 "__riscv_restore_4", 203 "__riscv_restore_5", 204 "__riscv_restore_6", 205 "__riscv_restore_7", 206 "__riscv_restore_8", 207 "__riscv_restore_9", 208 "__riscv_restore_10", 209 "__riscv_restore_11", 210 "__riscv_restore_12" 211 }; 212 213 int LibCallID = getLibCallID(MF, CSI); 214 if (LibCallID == -1) 215 return nullptr; 216 return RestoreLibCalls[LibCallID]; 217 } 218 219 bool RISCVFrameLowering::hasFP(const MachineFunction &MF) const { 220 const TargetRegisterInfo *RegInfo = MF.getSubtarget().getRegisterInfo(); 221 222 const MachineFrameInfo &MFI = MF.getFrameInfo(); 223 return MF.getTarget().Options.DisableFramePointerElim(MF) || 224 RegInfo->hasStackRealignment(MF) || MFI.hasVarSizedObjects() || 225 MFI.isFrameAddressTaken(); 226 } 227 228 bool RISCVFrameLowering::hasBP(const MachineFunction &MF) const { 229 const MachineFrameInfo &MFI = MF.getFrameInfo(); 230 const TargetRegisterInfo *TRI = STI.getRegisterInfo(); 231 232 return MFI.hasVarSizedObjects() && TRI->hasStackRealignment(MF); 233 } 234 235 // Determines the size of the frame and maximum call frame size. 236 void RISCVFrameLowering::determineFrameLayout(MachineFunction &MF) const { 237 MachineFrameInfo &MFI = MF.getFrameInfo(); 238 239 // Get the number of bytes to allocate from the FrameInfo. 240 uint64_t FrameSize = MFI.getStackSize(); 241 242 // Get the alignment. 243 Align StackAlign = getStackAlign(); 244 245 // Make sure the frame is aligned. 246 FrameSize = alignTo(FrameSize, StackAlign); 247 248 // Update frame info. 249 MFI.setStackSize(FrameSize); 250 } 251 252 void RISCVFrameLowering::adjustReg(MachineBasicBlock &MBB, 253 MachineBasicBlock::iterator MBBI, 254 const DebugLoc &DL, Register DestReg, 255 Register SrcReg, int64_t Val, 256 MachineInstr::MIFlag Flag) const { 257 MachineRegisterInfo &MRI = MBB.getParent()->getRegInfo(); 258 const RISCVInstrInfo *TII = STI.getInstrInfo(); 259 260 if (DestReg == SrcReg && Val == 0) 261 return; 262 263 if (isInt<12>(Val)) { 264 BuildMI(MBB, MBBI, DL, TII->get(RISCV::ADDI), DestReg) 265 .addReg(SrcReg) 266 .addImm(Val) 267 .setMIFlag(Flag); 268 } else { 269 unsigned Opc = RISCV::ADD; 270 bool isSub = Val < 0; 271 if (isSub) { 272 Val = -Val; 273 Opc = RISCV::SUB; 274 } 275 276 Register ScratchReg = MRI.createVirtualRegister(&RISCV::GPRRegClass); 277 TII->movImm(MBB, MBBI, DL, ScratchReg, Val, Flag); 278 BuildMI(MBB, MBBI, DL, TII->get(Opc), DestReg) 279 .addReg(SrcReg) 280 .addReg(ScratchReg, RegState::Kill) 281 .setMIFlag(Flag); 282 } 283 } 284 285 // Returns the register used to hold the frame pointer. 286 static Register getFPReg(const RISCVSubtarget &STI) { return RISCV::X8; } 287 288 // Returns the register used to hold the stack pointer. 289 static Register getSPReg(const RISCVSubtarget &STI) { return RISCV::X2; } 290 291 static SmallVector<CalleeSavedInfo, 8> 292 getNonLibcallCSI(const MachineFunction &MF, 293 const std::vector<CalleeSavedInfo> &CSI) { 294 const MachineFrameInfo &MFI = MF.getFrameInfo(); 295 SmallVector<CalleeSavedInfo, 8> NonLibcallCSI; 296 297 for (auto &CS : CSI) { 298 int FI = CS.getFrameIdx(); 299 if (FI >= 0 && MFI.getStackID(FI) == TargetStackID::Default) 300 NonLibcallCSI.push_back(CS); 301 } 302 303 return NonLibcallCSI; 304 } 305 306 void RISCVFrameLowering::adjustStackForRVV(MachineFunction &MF, 307 MachineBasicBlock &MBB, 308 MachineBasicBlock::iterator MBBI, 309 const DebugLoc &DL, 310 int64_t Amount) const { 311 assert(Amount != 0 && "Did not need to adjust stack pointer for RVV."); 312 313 const RISCVInstrInfo *TII = STI.getInstrInfo(); 314 Register SPReg = getSPReg(STI); 315 unsigned Opc = RISCV::ADD; 316 if (Amount < 0) { 317 Amount = -Amount; 318 Opc = RISCV::SUB; 319 } 320 321 // 1. Multiply the number of v-slots to the length of registers 322 Register FactorRegister = TII->getVLENFactoredAmount(MF, MBB, MBBI, Amount); 323 // 2. SP = SP - RVV stack size 324 BuildMI(MBB, MBBI, DL, TII->get(Opc), SPReg) 325 .addReg(SPReg) 326 .addReg(FactorRegister, RegState::Kill); 327 } 328 329 void RISCVFrameLowering::emitPrologue(MachineFunction &MF, 330 MachineBasicBlock &MBB) const { 331 MachineFrameInfo &MFI = MF.getFrameInfo(); 332 auto *RVFI = MF.getInfo<RISCVMachineFunctionInfo>(); 333 const RISCVRegisterInfo *RI = STI.getRegisterInfo(); 334 const RISCVInstrInfo *TII = STI.getInstrInfo(); 335 MachineBasicBlock::iterator MBBI = MBB.begin(); 336 337 Register FPReg = getFPReg(STI); 338 Register SPReg = getSPReg(STI); 339 Register BPReg = RISCVABI::getBPReg(); 340 341 // Debug location must be unknown since the first debug location is used 342 // to determine the end of the prologue. 343 DebugLoc DL; 344 345 // All calls are tail calls in GHC calling conv, and functions have no 346 // prologue/epilogue. 347 if (MF.getFunction().getCallingConv() == CallingConv::GHC) 348 return; 349 350 // Emit prologue for shadow call stack. 351 emitSCSPrologue(MF, MBB, MBBI, DL); 352 353 // Since spillCalleeSavedRegisters may have inserted a libcall, skip past 354 // any instructions marked as FrameSetup 355 while (MBBI != MBB.end() && MBBI->getFlag(MachineInstr::FrameSetup)) 356 ++MBBI; 357 358 // Determine the correct frame layout 359 determineFrameLayout(MF); 360 361 // If libcalls are used to spill and restore callee-saved registers, the frame 362 // has two sections; the opaque section managed by the libcalls, and the 363 // section managed by MachineFrameInfo which can also hold callee saved 364 // registers in fixed stack slots, both of which have negative frame indices. 365 // This gets even more complicated when incoming arguments are passed via the 366 // stack, as these too have negative frame indices. An example is detailed 367 // below: 368 // 369 // | incoming arg | <- FI[-3] 370 // | libcallspill | 371 // | calleespill | <- FI[-2] 372 // | calleespill | <- FI[-1] 373 // | this_frame | <- FI[0] 374 // 375 // For negative frame indices, the offset from the frame pointer will differ 376 // depending on which of these groups the frame index applies to. 377 // The following calculates the correct offset knowing the number of callee 378 // saved registers spilt by the two methods. 379 if (int LibCallRegs = getLibCallID(MF, MFI.getCalleeSavedInfo()) + 1) { 380 // Calculate the size of the frame managed by the libcall. The libcalls are 381 // implemented such that the stack will always be 16 byte aligned. 382 unsigned LibCallFrameSize = alignTo((STI.getXLen() / 8) * LibCallRegs, 16); 383 RVFI->setLibCallStackSize(LibCallFrameSize); 384 } 385 386 // FIXME (note copied from Lanai): This appears to be overallocating. Needs 387 // investigation. Get the number of bytes to allocate from the FrameInfo. 388 uint64_t StackSize = MFI.getStackSize() + RVFI->getRVVPadding(); 389 uint64_t RealStackSize = StackSize + RVFI->getLibCallStackSize(); 390 uint64_t RVVStackSize = RVFI->getRVVStackSize(); 391 392 // Early exit if there is no need to allocate on the stack 393 if (RealStackSize == 0 && !MFI.adjustsStack() && RVVStackSize == 0) 394 return; 395 396 // If the stack pointer has been marked as reserved, then produce an error if 397 // the frame requires stack allocation 398 if (STI.isRegisterReservedByUser(SPReg)) 399 MF.getFunction().getContext().diagnose(DiagnosticInfoUnsupported{ 400 MF.getFunction(), "Stack pointer required, but has been reserved."}); 401 402 uint64_t FirstSPAdjustAmount = getFirstSPAdjustAmount(MF); 403 // Split the SP adjustment to reduce the offsets of callee saved spill. 404 if (FirstSPAdjustAmount) { 405 StackSize = FirstSPAdjustAmount; 406 RealStackSize = FirstSPAdjustAmount; 407 } 408 409 // Allocate space on the stack if necessary. 410 adjustReg(MBB, MBBI, DL, SPReg, SPReg, -StackSize, MachineInstr::FrameSetup); 411 412 // Emit ".cfi_def_cfa_offset RealStackSize" 413 unsigned CFIIndex = MF.addFrameInst( 414 MCCFIInstruction::cfiDefCfaOffset(nullptr, RealStackSize)); 415 BuildMI(MBB, MBBI, DL, TII->get(TargetOpcode::CFI_INSTRUCTION)) 416 .addCFIIndex(CFIIndex); 417 418 const auto &CSI = MFI.getCalleeSavedInfo(); 419 420 // The frame pointer is callee-saved, and code has been generated for us to 421 // save it to the stack. We need to skip over the storing of callee-saved 422 // registers as the frame pointer must be modified after it has been saved 423 // to the stack, not before. 424 // FIXME: assumes exactly one instruction is used to save each callee-saved 425 // register. 426 std::advance(MBBI, getNonLibcallCSI(MF, CSI).size()); 427 428 // Iterate over list of callee-saved registers and emit .cfi_offset 429 // directives. 430 for (const auto &Entry : CSI) { 431 int FrameIdx = Entry.getFrameIdx(); 432 int64_t Offset; 433 // Offsets for objects with fixed locations (IE: those saved by libcall) are 434 // simply calculated from the frame index. 435 if (FrameIdx < 0) 436 Offset = FrameIdx * (int64_t) STI.getXLen() / 8; 437 else 438 Offset = MFI.getObjectOffset(Entry.getFrameIdx()) - 439 RVFI->getLibCallStackSize(); 440 Register Reg = Entry.getReg(); 441 unsigned CFIIndex = MF.addFrameInst(MCCFIInstruction::createOffset( 442 nullptr, RI->getDwarfRegNum(Reg, true), Offset)); 443 BuildMI(MBB, MBBI, DL, TII->get(TargetOpcode::CFI_INSTRUCTION)) 444 .addCFIIndex(CFIIndex); 445 } 446 447 // Generate new FP. 448 if (hasFP(MF)) { 449 if (STI.isRegisterReservedByUser(FPReg)) 450 MF.getFunction().getContext().diagnose(DiagnosticInfoUnsupported{ 451 MF.getFunction(), "Frame pointer required, but has been reserved."}); 452 453 adjustReg(MBB, MBBI, DL, FPReg, SPReg, 454 RealStackSize - RVFI->getVarArgsSaveSize(), 455 MachineInstr::FrameSetup); 456 457 // Emit ".cfi_def_cfa $fp, RVFI->getVarArgsSaveSize()" 458 unsigned CFIIndex = MF.addFrameInst(MCCFIInstruction::cfiDefCfa( 459 nullptr, RI->getDwarfRegNum(FPReg, true), RVFI->getVarArgsSaveSize())); 460 BuildMI(MBB, MBBI, DL, TII->get(TargetOpcode::CFI_INSTRUCTION)) 461 .addCFIIndex(CFIIndex); 462 } 463 464 // Emit the second SP adjustment after saving callee saved registers. 465 if (FirstSPAdjustAmount) { 466 uint64_t SecondSPAdjustAmount = MFI.getStackSize() - FirstSPAdjustAmount; 467 assert(SecondSPAdjustAmount > 0 && 468 "SecondSPAdjustAmount should be greater than zero"); 469 adjustReg(MBB, MBBI, DL, SPReg, SPReg, -SecondSPAdjustAmount, 470 MachineInstr::FrameSetup); 471 472 // If we are using a frame-pointer, and thus emitted ".cfi_def_cfa fp, 0", 473 // don't emit an sp-based .cfi_def_cfa_offset 474 if (!hasFP(MF)) { 475 // Emit ".cfi_def_cfa_offset StackSize" 476 unsigned CFIIndex = MF.addFrameInst( 477 MCCFIInstruction::cfiDefCfaOffset(nullptr, MFI.getStackSize())); 478 BuildMI(MBB, MBBI, DL, TII->get(TargetOpcode::CFI_INSTRUCTION)) 479 .addCFIIndex(CFIIndex); 480 } 481 } 482 483 if (RVVStackSize) 484 adjustStackForRVV(MF, MBB, MBBI, DL, -RVVStackSize); 485 486 if (hasFP(MF)) { 487 // Realign Stack 488 const RISCVRegisterInfo *RI = STI.getRegisterInfo(); 489 if (RI->hasStackRealignment(MF)) { 490 Align MaxAlignment = MFI.getMaxAlign(); 491 492 const RISCVInstrInfo *TII = STI.getInstrInfo(); 493 if (isInt<12>(-(int)MaxAlignment.value())) { 494 BuildMI(MBB, MBBI, DL, TII->get(RISCV::ANDI), SPReg) 495 .addReg(SPReg) 496 .addImm(-(int)MaxAlignment.value()); 497 } else { 498 unsigned ShiftAmount = Log2(MaxAlignment); 499 Register VR = 500 MF.getRegInfo().createVirtualRegister(&RISCV::GPRRegClass); 501 BuildMI(MBB, MBBI, DL, TII->get(RISCV::SRLI), VR) 502 .addReg(SPReg) 503 .addImm(ShiftAmount); 504 BuildMI(MBB, MBBI, DL, TII->get(RISCV::SLLI), SPReg) 505 .addReg(VR) 506 .addImm(ShiftAmount); 507 } 508 // FP will be used to restore the frame in the epilogue, so we need 509 // another base register BP to record SP after re-alignment. SP will 510 // track the current stack after allocating variable sized objects. 511 if (hasBP(MF)) { 512 // move BP, SP 513 TII->copyPhysReg(MBB, MBBI, DL, BPReg, SPReg, false); 514 } 515 } 516 } 517 } 518 519 void RISCVFrameLowering::emitEpilogue(MachineFunction &MF, 520 MachineBasicBlock &MBB) const { 521 const RISCVRegisterInfo *RI = STI.getRegisterInfo(); 522 MachineFrameInfo &MFI = MF.getFrameInfo(); 523 auto *RVFI = MF.getInfo<RISCVMachineFunctionInfo>(); 524 Register FPReg = getFPReg(STI); 525 Register SPReg = getSPReg(STI); 526 527 // All calls are tail calls in GHC calling conv, and functions have no 528 // prologue/epilogue. 529 if (MF.getFunction().getCallingConv() == CallingConv::GHC) 530 return; 531 532 // Get the insert location for the epilogue. If there were no terminators in 533 // the block, get the last instruction. 534 MachineBasicBlock::iterator MBBI = MBB.end(); 535 DebugLoc DL; 536 if (!MBB.empty()) { 537 MBBI = MBB.getFirstTerminator(); 538 if (MBBI == MBB.end()) 539 MBBI = MBB.getLastNonDebugInstr(); 540 DL = MBBI->getDebugLoc(); 541 542 // If this is not a terminator, the actual insert location should be after the 543 // last instruction. 544 if (!MBBI->isTerminator()) 545 MBBI = std::next(MBBI); 546 547 // If callee-saved registers are saved via libcall, place stack adjustment 548 // before this call. 549 while (MBBI != MBB.begin() && 550 std::prev(MBBI)->getFlag(MachineInstr::FrameDestroy)) 551 --MBBI; 552 } 553 554 const auto &CSI = getNonLibcallCSI(MF, MFI.getCalleeSavedInfo()); 555 556 // Skip to before the restores of callee-saved registers 557 // FIXME: assumes exactly one instruction is used to restore each 558 // callee-saved register. 559 auto LastFrameDestroy = MBBI; 560 if (!CSI.empty()) 561 LastFrameDestroy = std::prev(MBBI, CSI.size()); 562 563 uint64_t StackSize = MFI.getStackSize() + RVFI->getRVVPadding(); 564 uint64_t RealStackSize = StackSize + RVFI->getLibCallStackSize(); 565 uint64_t FPOffset = RealStackSize - RVFI->getVarArgsSaveSize(); 566 uint64_t RVVStackSize = RVFI->getRVVStackSize(); 567 568 // Restore the stack pointer using the value of the frame pointer. Only 569 // necessary if the stack pointer was modified, meaning the stack size is 570 // unknown. 571 if (RI->hasStackRealignment(MF) || MFI.hasVarSizedObjects()) { 572 assert(hasFP(MF) && "frame pointer should not have been eliminated"); 573 adjustReg(MBB, LastFrameDestroy, DL, SPReg, FPReg, -FPOffset, 574 MachineInstr::FrameDestroy); 575 } else { 576 if (RVVStackSize) 577 adjustStackForRVV(MF, MBB, LastFrameDestroy, DL, RVVStackSize); 578 } 579 580 uint64_t FirstSPAdjustAmount = getFirstSPAdjustAmount(MF); 581 if (FirstSPAdjustAmount) { 582 uint64_t SecondSPAdjustAmount = MFI.getStackSize() - FirstSPAdjustAmount; 583 assert(SecondSPAdjustAmount > 0 && 584 "SecondSPAdjustAmount should be greater than zero"); 585 586 adjustReg(MBB, LastFrameDestroy, DL, SPReg, SPReg, SecondSPAdjustAmount, 587 MachineInstr::FrameDestroy); 588 } 589 590 if (FirstSPAdjustAmount) 591 StackSize = FirstSPAdjustAmount; 592 593 // Deallocate stack 594 adjustReg(MBB, MBBI, DL, SPReg, SPReg, StackSize, MachineInstr::FrameDestroy); 595 596 // Emit epilogue for shadow call stack. 597 emitSCSEpilogue(MF, MBB, MBBI, DL); 598 } 599 600 StackOffset 601 RISCVFrameLowering::getFrameIndexReference(const MachineFunction &MF, int FI, 602 Register &FrameReg) const { 603 const MachineFrameInfo &MFI = MF.getFrameInfo(); 604 const TargetRegisterInfo *RI = MF.getSubtarget().getRegisterInfo(); 605 const auto *RVFI = MF.getInfo<RISCVMachineFunctionInfo>(); 606 607 // Callee-saved registers should be referenced relative to the stack 608 // pointer (positive offset), otherwise use the frame pointer (negative 609 // offset). 610 const auto &CSI = getNonLibcallCSI(MF, MFI.getCalleeSavedInfo()); 611 int MinCSFI = 0; 612 int MaxCSFI = -1; 613 StackOffset Offset; 614 auto StackID = MFI.getStackID(FI); 615 616 assert((StackID == TargetStackID::Default || 617 StackID == TargetStackID::ScalableVector) && 618 "Unexpected stack ID for the frame object."); 619 if (StackID == TargetStackID::Default) { 620 Offset = 621 StackOffset::getFixed(MFI.getObjectOffset(FI) - getOffsetOfLocalArea() + 622 MFI.getOffsetAdjustment()); 623 } else if (StackID == TargetStackID::ScalableVector) { 624 Offset = StackOffset::getScalable(MFI.getObjectOffset(FI)); 625 } 626 627 uint64_t FirstSPAdjustAmount = getFirstSPAdjustAmount(MF); 628 629 if (CSI.size()) { 630 MinCSFI = CSI[0].getFrameIdx(); 631 MaxCSFI = CSI[CSI.size() - 1].getFrameIdx(); 632 } 633 634 if (FI >= MinCSFI && FI <= MaxCSFI) { 635 FrameReg = RISCV::X2; 636 637 if (FirstSPAdjustAmount) 638 Offset += StackOffset::getFixed(FirstSPAdjustAmount); 639 else 640 Offset += 641 StackOffset::getFixed(MFI.getStackSize() + RVFI->getRVVPadding()); 642 } else if (RI->hasStackRealignment(MF) && !MFI.isFixedObjectIndex(FI)) { 643 // If the stack was realigned, the frame pointer is set in order to allow 644 // SP to be restored, so we need another base register to record the stack 645 // after realignment. 646 if (hasBP(MF)) { 647 FrameReg = RISCVABI::getBPReg(); 648 // |--------------------------| -- <-- FP 649 // | callee-saved registers | | <----. 650 // |--------------------------| -- | 651 // | realignment (the size of | | | 652 // | this area is not counted | | | 653 // | in MFI.getStackSize()) | | | 654 // |--------------------------| -- | 655 // | Padding after RVV | | | 656 // | (not counted in | | | 657 // | MFI.getStackSize() | | | 658 // |--------------------------| -- |-- MFI.getStackSize() 659 // | RVV objects | | | 660 // | (not counted in | | | 661 // | MFI.getStackSize() | | | 662 // |--------------------------| -- | 663 // | Padding before RVV | | | 664 // | (not counted in | | | 665 // | MFI.getStackSize() | | | 666 // |--------------------------| -- | 667 // | scalar local variables | | <----' 668 // |--------------------------| -- <-- BP 669 // | VarSize objects | | 670 // |--------------------------| -- <-- SP 671 } else { 672 FrameReg = RISCV::X2; 673 // |--------------------------| -- <-- FP 674 // | callee-saved registers | | <----. 675 // |--------------------------| -- | 676 // | realignment (the size of | | | 677 // | this area is not counted | | | 678 // | in MFI.getStackSize()) | | | 679 // |--------------------------| -- | 680 // | Padding after RVV | | | 681 // | (not counted in | | | 682 // | MFI.getStackSize() | | | 683 // |--------------------------| -- |-- MFI.getStackSize() 684 // | RVV objects | | | 685 // | (not counted in | | | 686 // | MFI.getStackSize() | | | 687 // |--------------------------| -- | 688 // | Padding before RVV | | | 689 // | (not counted in | | | 690 // | MFI.getStackSize() | | | 691 // |--------------------------| -- | 692 // | scalar local variables | | <----' 693 // |--------------------------| -- <-- SP 694 } 695 // The total amount of padding surrounding RVV objects is described by 696 // RVV->getRVVPadding() and it can be zero. It allows us to align the RVV 697 // objects to 8 bytes. 698 if (MFI.getStackID(FI) == TargetStackID::Default) { 699 Offset += StackOffset::getFixed(MFI.getStackSize()); 700 if (FI < 0) 701 Offset += StackOffset::getFixed(RVFI->getLibCallStackSize()); 702 } else if (MFI.getStackID(FI) == TargetStackID::ScalableVector) { 703 Offset += StackOffset::get( 704 alignTo(MFI.getStackSize() - RVFI->getCalleeSavedStackSize(), 8), 705 RVFI->getRVVStackSize()); 706 } 707 } else { 708 FrameReg = RI->getFrameRegister(MF); 709 if (hasFP(MF)) { 710 Offset += StackOffset::getFixed(RVFI->getVarArgsSaveSize()); 711 if (FI >= 0) 712 Offset -= StackOffset::getFixed(RVFI->getLibCallStackSize()); 713 // When using FP to access scalable vector objects, we need to minus 714 // the frame size. 715 // 716 // |--------------------------| -- <-- FP 717 // | callee-saved registers | | 718 // |--------------------------| | MFI.getStackSize() 719 // | scalar local variables | | 720 // |--------------------------| -- (Offset of RVV objects is from here.) 721 // | RVV objects | 722 // |--------------------------| 723 // | VarSize objects | 724 // |--------------------------| <-- SP 725 if (MFI.getStackID(FI) == TargetStackID::ScalableVector) 726 Offset -= StackOffset::getFixed(MFI.getStackSize()); 727 } else { 728 // When using SP to access frame objects, we need to add RVV stack size. 729 // 730 // |--------------------------| -- <-- FP 731 // | callee-saved registers | | <----. 732 // |--------------------------| -- | 733 // | Padding after RVV | | | 734 // | (not counted in | | | 735 // | MFI.getStackSize() | | | 736 // |--------------------------| -- | 737 // | RVV objects | | |-- MFI.getStackSize() 738 // | (not counted in | | | 739 // | MFI.getStackSize() | | | 740 // |--------------------------| -- | 741 // | Padding before RVV | | | 742 // | (not counted in | | | 743 // | MFI.getStackSize() | | | 744 // |--------------------------| -- | 745 // | scalar local variables | | <----' 746 // |--------------------------| -- <-- SP 747 // 748 // The total amount of padding surrounding RVV objects is described by 749 // RVV->getRVVPadding() and it can be zero. It allows us to align the RVV 750 // objects to 8 bytes. 751 if (MFI.getStackID(FI) == TargetStackID::Default) { 752 Offset += StackOffset::getFixed(MFI.getStackSize()); 753 if (FI < 0) 754 Offset += StackOffset::getFixed(RVFI->getLibCallStackSize()); 755 } else if (MFI.getStackID(FI) == TargetStackID::ScalableVector) { 756 Offset += StackOffset::get( 757 alignTo(MFI.getStackSize() - RVFI->getCalleeSavedStackSize(), 8), 758 RVFI->getRVVStackSize()); 759 } 760 } 761 } 762 763 return Offset; 764 } 765 766 void RISCVFrameLowering::determineCalleeSaves(MachineFunction &MF, 767 BitVector &SavedRegs, 768 RegScavenger *RS) const { 769 TargetFrameLowering::determineCalleeSaves(MF, SavedRegs, RS); 770 // Unconditionally spill RA and FP only if the function uses a frame 771 // pointer. 772 if (hasFP(MF)) { 773 SavedRegs.set(RISCV::X1); 774 SavedRegs.set(RISCV::X8); 775 } 776 // Mark BP as used if function has dedicated base pointer. 777 if (hasBP(MF)) 778 SavedRegs.set(RISCVABI::getBPReg()); 779 780 // If interrupt is enabled and there are calls in the handler, 781 // unconditionally save all Caller-saved registers and 782 // all FP registers, regardless whether they are used. 783 MachineFrameInfo &MFI = MF.getFrameInfo(); 784 785 if (MF.getFunction().hasFnAttribute("interrupt") && MFI.hasCalls()) { 786 787 static const MCPhysReg CSRegs[] = { RISCV::X1, /* ra */ 788 RISCV::X5, RISCV::X6, RISCV::X7, /* t0-t2 */ 789 RISCV::X10, RISCV::X11, /* a0-a1, a2-a7 */ 790 RISCV::X12, RISCV::X13, RISCV::X14, RISCV::X15, RISCV::X16, RISCV::X17, 791 RISCV::X28, RISCV::X29, RISCV::X30, RISCV::X31, 0 /* t3-t6 */ 792 }; 793 794 for (unsigned i = 0; CSRegs[i]; ++i) 795 SavedRegs.set(CSRegs[i]); 796 797 if (MF.getSubtarget<RISCVSubtarget>().hasStdExtF()) { 798 799 // If interrupt is enabled, this list contains all FP registers. 800 const MCPhysReg * Regs = MF.getRegInfo().getCalleeSavedRegs(); 801 802 for (unsigned i = 0; Regs[i]; ++i) 803 if (RISCV::FPR16RegClass.contains(Regs[i]) || 804 RISCV::FPR32RegClass.contains(Regs[i]) || 805 RISCV::FPR64RegClass.contains(Regs[i])) 806 SavedRegs.set(Regs[i]); 807 } 808 } 809 } 810 811 int64_t 812 RISCVFrameLowering::assignRVVStackObjectOffsets(MachineFrameInfo &MFI) const { 813 int64_t Offset = 0; 814 // Create a buffer of RVV objects to allocate. 815 SmallVector<int, 8> ObjectsToAllocate; 816 for (int I = 0, E = MFI.getObjectIndexEnd(); I != E; ++I) { 817 unsigned StackID = MFI.getStackID(I); 818 if (StackID != TargetStackID::ScalableVector) 819 continue; 820 if (MFI.isDeadObjectIndex(I)) 821 continue; 822 823 ObjectsToAllocate.push_back(I); 824 } 825 826 // Allocate all RVV locals and spills 827 for (int FI : ObjectsToAllocate) { 828 // ObjectSize in bytes. 829 int64_t ObjectSize = MFI.getObjectSize(FI); 830 // If the data type is the fractional vector type, reserve one vector 831 // register for it. 832 if (ObjectSize < 8) 833 ObjectSize = 8; 834 // Currently, all scalable vector types are aligned to 8 bytes. 835 Offset = alignTo(Offset + ObjectSize, 8); 836 MFI.setObjectOffset(FI, -Offset); 837 } 838 839 return Offset; 840 } 841 842 void RISCVFrameLowering::processFunctionBeforeFrameFinalized( 843 MachineFunction &MF, RegScavenger *RS) const { 844 const TargetRegisterInfo *RegInfo = MF.getSubtarget().getRegisterInfo(); 845 MachineFrameInfo &MFI = MF.getFrameInfo(); 846 const TargetRegisterClass *RC = &RISCV::GPRRegClass; 847 auto *RVFI = MF.getInfo<RISCVMachineFunctionInfo>(); 848 849 int64_t RVVStackSize = assignRVVStackObjectOffsets(MFI); 850 RVFI->setRVVStackSize(RVVStackSize); 851 852 // estimateStackSize has been observed to under-estimate the final stack 853 // size, so give ourselves wiggle-room by checking for stack size 854 // representable an 11-bit signed field rather than 12-bits. 855 // FIXME: It may be possible to craft a function with a small stack that 856 // still needs an emergency spill slot for branch relaxation. This case 857 // would currently be missed. 858 if (!isInt<11>(MFI.estimateStackSize(MF)) || RVVStackSize != 0) { 859 int RegScavFI = MFI.CreateStackObject(RegInfo->getSpillSize(*RC), 860 RegInfo->getSpillAlign(*RC), false); 861 RS->addScavengingFrameIndex(RegScavFI); 862 } 863 864 if (MFI.getCalleeSavedInfo().empty() || RVFI->useSaveRestoreLibCalls(MF)) { 865 RVFI->setCalleeSavedStackSize(0); 866 return; 867 } 868 869 unsigned Size = 0; 870 for (const auto &Info : MFI.getCalleeSavedInfo()) { 871 int FrameIdx = Info.getFrameIdx(); 872 if (MFI.getStackID(FrameIdx) != TargetStackID::Default) 873 continue; 874 875 Size += MFI.getObjectSize(FrameIdx); 876 } 877 RVFI->setCalleeSavedStackSize(Size); 878 879 // Padding required to keep the RVV stack aligned to 8 bytes 880 // within the main stack. We only need this when not using FP. 881 if (RVVStackSize && !hasFP(MF) && Size % 8 != 0) { 882 // Because we add the padding to the size of the stack, adding 883 // getStackAlign() will keep it aligned. 884 RVFI->setRVVPadding(getStackAlign().value()); 885 } 886 } 887 888 // Not preserve stack space within prologue for outgoing variables when the 889 // function contains variable size objects and let eliminateCallFramePseudoInstr 890 // preserve stack space for it. 891 bool RISCVFrameLowering::hasReservedCallFrame(const MachineFunction &MF) const { 892 return !MF.getFrameInfo().hasVarSizedObjects(); 893 } 894 895 // Eliminate ADJCALLSTACKDOWN, ADJCALLSTACKUP pseudo instructions. 896 MachineBasicBlock::iterator RISCVFrameLowering::eliminateCallFramePseudoInstr( 897 MachineFunction &MF, MachineBasicBlock &MBB, 898 MachineBasicBlock::iterator MI) const { 899 Register SPReg = RISCV::X2; 900 DebugLoc DL = MI->getDebugLoc(); 901 902 if (!hasReservedCallFrame(MF)) { 903 // If space has not been reserved for a call frame, ADJCALLSTACKDOWN and 904 // ADJCALLSTACKUP must be converted to instructions manipulating the stack 905 // pointer. This is necessary when there is a variable length stack 906 // allocation (e.g. alloca), which means it's not possible to allocate 907 // space for outgoing arguments from within the function prologue. 908 int64_t Amount = MI->getOperand(0).getImm(); 909 910 if (Amount != 0) { 911 // Ensure the stack remains aligned after adjustment. 912 Amount = alignSPAdjust(Amount); 913 914 if (MI->getOpcode() == RISCV::ADJCALLSTACKDOWN) 915 Amount = -Amount; 916 917 adjustReg(MBB, MI, DL, SPReg, SPReg, Amount, MachineInstr::NoFlags); 918 } 919 } 920 921 return MBB.erase(MI); 922 } 923 924 // We would like to split the SP adjustment to reduce prologue/epilogue 925 // as following instructions. In this way, the offset of the callee saved 926 // register could fit in a single store. 927 // add sp,sp,-2032 928 // sw ra,2028(sp) 929 // sw s0,2024(sp) 930 // sw s1,2020(sp) 931 // sw s3,2012(sp) 932 // sw s4,2008(sp) 933 // add sp,sp,-64 934 uint64_t 935 RISCVFrameLowering::getFirstSPAdjustAmount(const MachineFunction &MF) const { 936 const auto *RVFI = MF.getInfo<RISCVMachineFunctionInfo>(); 937 const MachineFrameInfo &MFI = MF.getFrameInfo(); 938 const std::vector<CalleeSavedInfo> &CSI = MFI.getCalleeSavedInfo(); 939 uint64_t StackSize = MFI.getStackSize(); 940 941 // Disable SplitSPAdjust if save-restore libcall used. The callee saved 942 // registers will be pushed by the save-restore libcalls, so we don't have to 943 // split the SP adjustment in this case. 944 if (RVFI->getLibCallStackSize()) 945 return 0; 946 947 // Return the FirstSPAdjustAmount if the StackSize can not fit in signed 948 // 12-bit and there exists a callee saved register need to be pushed. 949 if (!isInt<12>(StackSize) && (CSI.size() > 0)) { 950 // FirstSPAdjustAmount is choosed as (2048 - StackAlign) 951 // because 2048 will cause sp = sp + 2048 in epilogue split into 952 // multi-instructions. The offset smaller than 2048 can fit in signle 953 // load/store instruction and we have to stick with the stack alignment. 954 // 2048 is 16-byte alignment. The stack alignment for RV32 and RV64 is 16, 955 // for RV32E is 4. So (2048 - StackAlign) will satisfy the stack alignment. 956 return 2048 - getStackAlign().value(); 957 } 958 return 0; 959 } 960 961 bool RISCVFrameLowering::spillCalleeSavedRegisters( 962 MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, 963 ArrayRef<CalleeSavedInfo> CSI, const TargetRegisterInfo *TRI) const { 964 if (CSI.empty()) 965 return true; 966 967 MachineFunction *MF = MBB.getParent(); 968 const TargetInstrInfo &TII = *MF->getSubtarget().getInstrInfo(); 969 DebugLoc DL; 970 if (MI != MBB.end() && !MI->isDebugInstr()) 971 DL = MI->getDebugLoc(); 972 973 const char *SpillLibCall = getSpillLibCallName(*MF, CSI); 974 if (SpillLibCall) { 975 // Add spill libcall via non-callee-saved register t0. 976 BuildMI(MBB, MI, DL, TII.get(RISCV::PseudoCALLReg), RISCV::X5) 977 .addExternalSymbol(SpillLibCall, RISCVII::MO_CALL) 978 .setMIFlag(MachineInstr::FrameSetup); 979 980 // Add registers spilled in libcall as liveins. 981 for (auto &CS : CSI) 982 MBB.addLiveIn(CS.getReg()); 983 } 984 985 // Manually spill values not spilled by libcall. 986 const auto &NonLibcallCSI = getNonLibcallCSI(*MF, CSI); 987 for (auto &CS : NonLibcallCSI) { 988 // Insert the spill to the stack frame. 989 Register Reg = CS.getReg(); 990 const TargetRegisterClass *RC = TRI->getMinimalPhysRegClass(Reg); 991 TII.storeRegToStackSlot(MBB, MI, Reg, true, CS.getFrameIdx(), RC, TRI); 992 } 993 994 return true; 995 } 996 997 bool RISCVFrameLowering::restoreCalleeSavedRegisters( 998 MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, 999 MutableArrayRef<CalleeSavedInfo> CSI, const TargetRegisterInfo *TRI) const { 1000 if (CSI.empty()) 1001 return true; 1002 1003 MachineFunction *MF = MBB.getParent(); 1004 const TargetInstrInfo &TII = *MF->getSubtarget().getInstrInfo(); 1005 DebugLoc DL; 1006 if (MI != MBB.end() && !MI->isDebugInstr()) 1007 DL = MI->getDebugLoc(); 1008 1009 // Manually restore values not restored by libcall. Insert in reverse order. 1010 // loadRegFromStackSlot can insert multiple instructions. 1011 const auto &NonLibcallCSI = getNonLibcallCSI(*MF, CSI); 1012 for (auto &CS : reverse(NonLibcallCSI)) { 1013 Register Reg = CS.getReg(); 1014 const TargetRegisterClass *RC = TRI->getMinimalPhysRegClass(Reg); 1015 TII.loadRegFromStackSlot(MBB, MI, Reg, CS.getFrameIdx(), RC, TRI); 1016 assert(MI != MBB.begin() && "loadRegFromStackSlot didn't insert any code!"); 1017 } 1018 1019 const char *RestoreLibCall = getRestoreLibCallName(*MF, CSI); 1020 if (RestoreLibCall) { 1021 // Add restore libcall via tail call. 1022 MachineBasicBlock::iterator NewMI = 1023 BuildMI(MBB, MI, DL, TII.get(RISCV::PseudoTAIL)) 1024 .addExternalSymbol(RestoreLibCall, RISCVII::MO_CALL) 1025 .setMIFlag(MachineInstr::FrameDestroy); 1026 1027 // Remove trailing returns, since the terminator is now a tail call to the 1028 // restore function. 1029 if (MI != MBB.end() && MI->getOpcode() == RISCV::PseudoRET) { 1030 NewMI->copyImplicitOps(*MF, *MI); 1031 MI->eraseFromParent(); 1032 } 1033 } 1034 1035 return true; 1036 } 1037 1038 bool RISCVFrameLowering::canUseAsPrologue(const MachineBasicBlock &MBB) const { 1039 MachineBasicBlock *TmpMBB = const_cast<MachineBasicBlock *>(&MBB); 1040 const MachineFunction *MF = MBB.getParent(); 1041 const auto *RVFI = MF->getInfo<RISCVMachineFunctionInfo>(); 1042 1043 if (!RVFI->useSaveRestoreLibCalls(*MF)) 1044 return true; 1045 1046 // Inserting a call to a __riscv_save libcall requires the use of the register 1047 // t0 (X5) to hold the return address. Therefore if this register is already 1048 // used we can't insert the call. 1049 1050 RegScavenger RS; 1051 RS.enterBasicBlock(*TmpMBB); 1052 return !RS.isRegUsed(RISCV::X5); 1053 } 1054 1055 bool RISCVFrameLowering::canUseAsEpilogue(const MachineBasicBlock &MBB) const { 1056 const MachineFunction *MF = MBB.getParent(); 1057 MachineBasicBlock *TmpMBB = const_cast<MachineBasicBlock *>(&MBB); 1058 const auto *RVFI = MF->getInfo<RISCVMachineFunctionInfo>(); 1059 1060 if (!RVFI->useSaveRestoreLibCalls(*MF)) 1061 return true; 1062 1063 // Using the __riscv_restore libcalls to restore CSRs requires a tail call. 1064 // This means if we still need to continue executing code within this function 1065 // the restore cannot take place in this basic block. 1066 1067 if (MBB.succ_size() > 1) 1068 return false; 1069 1070 MachineBasicBlock *SuccMBB = 1071 MBB.succ_empty() ? TmpMBB->getFallThrough() : *MBB.succ_begin(); 1072 1073 // Doing a tail call should be safe if there are no successors, because either 1074 // we have a returning block or the end of the block is unreachable, so the 1075 // restore will be eliminated regardless. 1076 if (!SuccMBB) 1077 return true; 1078 1079 // The successor can only contain a return, since we would effectively be 1080 // replacing the successor with our own tail return at the end of our block. 1081 return SuccMBB->isReturnBlock() && SuccMBB->size() == 1; 1082 } 1083 1084 bool RISCVFrameLowering::isSupportedStackID(TargetStackID::Value ID) const { 1085 switch (ID) { 1086 case TargetStackID::Default: 1087 case TargetStackID::ScalableVector: 1088 return true; 1089 case TargetStackID::NoAlloc: 1090 case TargetStackID::SGPRSpill: 1091 return false; 1092 } 1093 llvm_unreachable("Invalid TargetStackID::Value"); 1094 } 1095 1096 TargetStackID::Value RISCVFrameLowering::getStackIDForScalableVectors() const { 1097 return TargetStackID::ScalableVector; 1098 } 1099