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Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001//===-- X86FrameLowering.cpp - X86 Frame Information ----------------------===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This file contains the X86 implementation of TargetFrameLowering class.
11//
12//===----------------------------------------------------------------------===//
13
14#include "X86FrameLowering.h"
15#include "X86InstrBuilder.h"
16#include "X86InstrInfo.h"
17#include "X86MachineFunctionInfo.h"
18#include "X86Subtarget.h"
19#include "X86TargetMachine.h"
20#include "llvm/ADT/SmallSet.h"
David Majnemer70497c62015-12-02 23:06:39 +000021#include "llvm/Analysis/EHPersonalities.h"
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000022#include "llvm/CodeGen/MachineFrameInfo.h"
23#include "llvm/CodeGen/MachineFunction.h"
24#include "llvm/CodeGen/MachineInstrBuilder.h"
25#include "llvm/CodeGen/MachineModuleInfo.h"
26#include "llvm/CodeGen/MachineRegisterInfo.h"
Reid Klecknerdf129512015-09-08 22:44:41 +000027#include "llvm/CodeGen/WinEHFuncInfo.h"
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000028#include "llvm/IR/DataLayout.h"
29#include "llvm/IR/Function.h"
30#include "llvm/MC/MCAsmInfo.h"
31#include "llvm/MC/MCSymbol.h"
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000032#include "llvm/Target/TargetOptions.h"
33#include "llvm/Support/Debug.h"
34#include <cstdlib>
35
36using namespace llvm;
37
Reid Klecknerf9977bf2015-06-17 21:50:02 +000038X86FrameLowering::X86FrameLowering(const X86Subtarget &STI,
39 unsigned StackAlignOverride)
40 : TargetFrameLowering(StackGrowsDown, StackAlignOverride,
41 STI.is64Bit() ? -8 : -4),
Reid Kleckner034ea962015-06-18 20:32:02 +000042 STI(STI), TII(*STI.getInstrInfo()), TRI(STI.getRegisterInfo()) {
Reid Klecknerf9977bf2015-06-17 21:50:02 +000043 // Cache a bunch of frame-related predicates for this subtarget.
Reid Kleckner034ea962015-06-18 20:32:02 +000044 SlotSize = TRI->getSlotSize();
Reid Klecknerf9977bf2015-06-17 21:50:02 +000045 Is64Bit = STI.is64Bit();
46 IsLP64 = STI.isTarget64BitLP64();
47 // standard x86_64 and NaCl use 64-bit frame/stack pointers, x32 - 32-bit.
48 Uses64BitFramePtr = STI.isTarget64BitLP64() || STI.isTargetNaCl64();
Reid Kleckner034ea962015-06-18 20:32:02 +000049 StackPtr = TRI->getStackRegister();
Reid Klecknerf9977bf2015-06-17 21:50:02 +000050}
51
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000052bool X86FrameLowering::hasReservedCallFrame(const MachineFunction &MF) const {
Michael Kuperstein13fbd452015-02-01 16:56:04 +000053 return !MF.getFrameInfo()->hasVarSizedObjects() &&
54 !MF.getInfo<X86MachineFunctionInfo>()->getHasPushSequences();
55}
56
57/// canSimplifyCallFramePseudos - If there is a reserved call frame, the
58/// call frame pseudos can be simplified. Having a FP, as in the default
59/// implementation, is not sufficient here since we can't always use it.
60/// Use a more nuanced condition.
61bool
62X86FrameLowering::canSimplifyCallFramePseudos(const MachineFunction &MF) const {
Michael Kuperstein13fbd452015-02-01 16:56:04 +000063 return hasReservedCallFrame(MF) ||
Reid Kleckner034ea962015-06-18 20:32:02 +000064 (hasFP(MF) && !TRI->needsStackRealignment(MF)) ||
65 TRI->hasBasePointer(MF);
Michael Kuperstein13fbd452015-02-01 16:56:04 +000066}
67
68// needsFrameIndexResolution - Do we need to perform FI resolution for
69// this function. Normally, this is required only when the function
70// has any stack objects. However, FI resolution actually has another job,
71// not apparent from the title - it resolves callframesetup/destroy
72// that were not simplified earlier.
73// So, this is required for x86 functions that have push sequences even
74// when there are no stack objects.
75bool
76X86FrameLowering::needsFrameIndexResolution(const MachineFunction &MF) const {
77 return MF.getFrameInfo()->hasStackObjects() ||
78 MF.getInfo<X86MachineFunctionInfo>()->getHasPushSequences();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000079}
80
81/// hasFP - Return true if the specified function should have a dedicated frame
82/// pointer register. This is true if the function has variable sized allocas
83/// or if frame pointer elimination is disabled.
84bool X86FrameLowering::hasFP(const MachineFunction &MF) const {
85 const MachineFrameInfo *MFI = MF.getFrameInfo();
86 const MachineModuleInfo &MMI = MF.getMMI();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000087
88 return (MF.getTarget().Options.DisableFramePointerElim(MF) ||
Reid Kleckner034ea962015-06-18 20:32:02 +000089 TRI->needsStackRealignment(MF) ||
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000090 MFI->hasVarSizedObjects() ||
Reid Klecknere69bdb82015-07-07 23:45:58 +000091 MFI->isFrameAddressTaken() || MFI->hasOpaqueSPAdjustment() ||
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000092 MF.getInfo<X86MachineFunctionInfo>()->getForceFramePointer() ||
Reid Klecknerdf129512015-09-08 22:44:41 +000093 MMI.callsUnwindInit() || MMI.hasEHFunclets() || MMI.callsEHReturn() ||
David Majnemer3463e692016-01-14 01:20:03 +000094 MFI->hasStackMap() || MFI->hasPatchPoint() ||
95 MFI->hasCopyImplyingStackAdjustment());
Michael Kupersteine86aa9a2015-02-01 16:15:07 +000096}
97
98static unsigned getSUBriOpcode(unsigned IsLP64, int64_t Imm) {
99 if (IsLP64) {
100 if (isInt<8>(Imm))
101 return X86::SUB64ri8;
102 return X86::SUB64ri32;
103 } else {
104 if (isInt<8>(Imm))
105 return X86::SUB32ri8;
106 return X86::SUB32ri;
107 }
108}
109
110static unsigned getADDriOpcode(unsigned IsLP64, int64_t Imm) {
111 if (IsLP64) {
112 if (isInt<8>(Imm))
113 return X86::ADD64ri8;
114 return X86::ADD64ri32;
115 } else {
116 if (isInt<8>(Imm))
117 return X86::ADD32ri8;
118 return X86::ADD32ri;
119 }
120}
121
122static unsigned getSUBrrOpcode(unsigned isLP64) {
123 return isLP64 ? X86::SUB64rr : X86::SUB32rr;
124}
125
126static unsigned getADDrrOpcode(unsigned isLP64) {
127 return isLP64 ? X86::ADD64rr : X86::ADD32rr;
128}
129
130static unsigned getANDriOpcode(bool IsLP64, int64_t Imm) {
131 if (IsLP64) {
132 if (isInt<8>(Imm))
133 return X86::AND64ri8;
134 return X86::AND64ri32;
135 }
136 if (isInt<8>(Imm))
137 return X86::AND32ri8;
138 return X86::AND32ri;
139}
140
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000141static unsigned getLEArOpcode(unsigned IsLP64) {
142 return IsLP64 ? X86::LEA64r : X86::LEA32r;
143}
144
145/// findDeadCallerSavedReg - Return a caller-saved register that isn't live
146/// when it reaches the "return" instruction. We can then pop a stack object
147/// to this register without worry about clobbering it.
148static unsigned findDeadCallerSavedReg(MachineBasicBlock &MBB,
149 MachineBasicBlock::iterator &MBBI,
Andy Ayers9f750182015-11-23 22:17:44 +0000150 const X86RegisterInfo *TRI,
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000151 bool Is64Bit) {
152 const MachineFunction *MF = MBB.getParent();
153 const Function *F = MF->getFunction();
154 if (!F || MF->getMMI().callsEHReturn())
155 return 0;
156
Andy Ayers9f750182015-11-23 22:17:44 +0000157 const TargetRegisterClass &AvailableRegs = *TRI->getGPRsForTailCall(*MF);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000158
159 unsigned Opc = MBBI->getOpcode();
160 switch (Opc) {
161 default: return 0;
162 case X86::RETL:
163 case X86::RETQ:
164 case X86::RETIL:
165 case X86::RETIQ:
166 case X86::TCRETURNdi:
167 case X86::TCRETURNri:
168 case X86::TCRETURNmi:
169 case X86::TCRETURNdi64:
170 case X86::TCRETURNri64:
171 case X86::TCRETURNmi64:
172 case X86::EH_RETURN:
173 case X86::EH_RETURN64: {
174 SmallSet<uint16_t, 8> Uses;
175 for (unsigned i = 0, e = MBBI->getNumOperands(); i != e; ++i) {
176 MachineOperand &MO = MBBI->getOperand(i);
177 if (!MO.isReg() || MO.isDef())
178 continue;
179 unsigned Reg = MO.getReg();
180 if (!Reg)
181 continue;
Reid Kleckner034ea962015-06-18 20:32:02 +0000182 for (MCRegAliasIterator AI(Reg, TRI, true); AI.isValid(); ++AI)
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000183 Uses.insert(*AI);
184 }
185
Andy Ayers9f750182015-11-23 22:17:44 +0000186 for (auto CS : AvailableRegs)
187 if (!Uses.count(CS) && CS != X86::RIP)
188 return CS;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000189 }
190 }
191
192 return 0;
193}
194
195static bool isEAXLiveIn(MachineFunction &MF) {
196 for (MachineRegisterInfo::livein_iterator II = MF.getRegInfo().livein_begin(),
197 EE = MF.getRegInfo().livein_end(); II != EE; ++II) {
198 unsigned Reg = II->first;
199
200 if (Reg == X86::RAX || Reg == X86::EAX || Reg == X86::AX ||
201 Reg == X86::AH || Reg == X86::AL)
202 return true;
203 }
204
205 return false;
206}
207
Quentin Colombetf1e91c82015-12-02 01:22:54 +0000208/// Check if the flags need to be preserved before the terminators.
209/// This would be the case, if the eflags is live-in of the region
210/// composed by the terminators or live-out of that region, without
211/// being defined by a terminator.
212static bool
213flagsNeedToBePreservedBeforeTheTerminators(const MachineBasicBlock &MBB) {
Reid Kleckner98d78032015-06-18 20:22:12 +0000214 for (const MachineInstr &MI : MBB.terminators()) {
Quentin Colombetbbdebef2015-12-02 02:07:00 +0000215 bool BreakNext = false;
Reid Kleckner98d78032015-06-18 20:22:12 +0000216 for (const MachineOperand &MO : MI.operands()) {
217 if (!MO.isReg())
218 continue;
219 unsigned Reg = MO.getReg();
220 if (Reg != X86::EFLAGS)
221 continue;
222
Quentin Colombetf1e91c82015-12-02 01:22:54 +0000223 // This terminator needs an eflags that is not defined
224 // by a previous another terminator:
225 // EFLAGS is live-in of the region composed by the terminators.
Reid Kleckner98d78032015-06-18 20:22:12 +0000226 if (!MO.isDef())
227 return true;
Quentin Colombetf1e91c82015-12-02 01:22:54 +0000228 // This terminator defines the eflags, i.e., we don't need to preserve it.
Quentin Colombetbbdebef2015-12-02 02:07:00 +0000229 // However, we still need to check this specific terminator does not
230 // read a live-in value.
231 BreakNext = true;
Reid Kleckner98d78032015-06-18 20:22:12 +0000232 }
Quentin Colombetbbdebef2015-12-02 02:07:00 +0000233 // We found a definition of the eflags, no need to preserve them.
234 if (BreakNext)
235 return false;
Reid Kleckner98d78032015-06-18 20:22:12 +0000236 }
Quentin Colombetf1e91c82015-12-02 01:22:54 +0000237
238 // None of the terminators use or define the eflags.
239 // Check if they are live-out, that would imply we need to preserve them.
240 for (const MachineBasicBlock *Succ : MBB.successors())
241 if (Succ->isLiveIn(X86::EFLAGS))
242 return true;
243
Reid Kleckner98d78032015-06-18 20:22:12 +0000244 return false;
245}
246
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000247/// emitSPUpdate - Emit a series of instructions to increment / decrement the
248/// stack pointer by a constant value.
Quentin Colombet494eb602015-05-22 18:10:47 +0000249void X86FrameLowering::emitSPUpdate(MachineBasicBlock &MBB,
250 MachineBasicBlock::iterator &MBBI,
Reid Kleckner98d78032015-06-18 20:22:12 +0000251 int64_t NumBytes, bool InEpilogue) const {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000252 bool isSub = NumBytes < 0;
253 uint64_t Offset = isSub ? -NumBytes : NumBytes;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000254
255 uint64_t Chunk = (1LL << 31) - 1;
256 DebugLoc DL = MBB.findDebugLoc(MBBI);
257
258 while (Offset) {
259 if (Offset > Chunk) {
260 // Rather than emit a long series of instructions for large offsets,
261 // load the offset into a register and do one sub/add
262 unsigned Reg = 0;
263
264 if (isSub && !isEAXLiveIn(*MBB.getParent()))
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000265 Reg = (unsigned)(Is64Bit ? X86::RAX : X86::EAX);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000266 else
Reid Kleckner034ea962015-06-18 20:32:02 +0000267 Reg = findDeadCallerSavedReg(MBB, MBBI, TRI, Is64Bit);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000268
269 if (Reg) {
Reid Kleckner98d78032015-06-18 20:22:12 +0000270 unsigned Opc = Is64Bit ? X86::MOV64ri : X86::MOV32ri;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000271 BuildMI(MBB, MBBI, DL, TII.get(Opc), Reg)
272 .addImm(Offset);
273 Opc = isSub
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000274 ? getSUBrrOpcode(Is64Bit)
275 : getADDrrOpcode(Is64Bit);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000276 MachineInstr *MI = BuildMI(MBB, MBBI, DL, TII.get(Opc), StackPtr)
277 .addReg(StackPtr)
278 .addReg(Reg);
279 MI->getOperand(3).setIsDead(); // The EFLAGS implicit def is dead.
280 Offset = 0;
281 continue;
282 }
283 }
284
David Majnemer3aa0bd82015-02-24 00:11:32 +0000285 uint64_t ThisVal = std::min(Offset, Chunk);
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000286 if (ThisVal == (Is64Bit ? 8 : 4)) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000287 // Use push / pop instead.
288 unsigned Reg = isSub
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000289 ? (unsigned)(Is64Bit ? X86::RAX : X86::EAX)
Reid Kleckner034ea962015-06-18 20:32:02 +0000290 : findDeadCallerSavedReg(MBB, MBBI, TRI, Is64Bit);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000291 if (Reg) {
Reid Kleckner98d78032015-06-18 20:22:12 +0000292 unsigned Opc = isSub
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000293 ? (Is64Bit ? X86::PUSH64r : X86::PUSH32r)
294 : (Is64Bit ? X86::POP64r : X86::POP32r);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000295 MachineInstr *MI = BuildMI(MBB, MBBI, DL, TII.get(Opc))
296 .addReg(Reg, getDefRegState(!isSub) | getUndefRegState(isSub));
297 if (isSub)
298 MI->setFlag(MachineInstr::FrameSetup);
Michael Kuperstein098cd9f2015-09-16 11:18:25 +0000299 else
300 MI->setFlag(MachineInstr::FrameDestroy);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000301 Offset -= ThisVal;
302 continue;
303 }
304 }
305
Reid Kleckner98d78032015-06-18 20:22:12 +0000306 MachineInstrBuilder MI = BuildStackAdjustment(
307 MBB, MBBI, DL, isSub ? -ThisVal : ThisVal, InEpilogue);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000308 if (isSub)
Reid Kleckner98d78032015-06-18 20:22:12 +0000309 MI.setMIFlag(MachineInstr::FrameSetup);
Michael Kuperstein098cd9f2015-09-16 11:18:25 +0000310 else
311 MI.setMIFlag(MachineInstr::FrameDestroy);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000312
313 Offset -= ThisVal;
314 }
315}
316
Reid Kleckner98d78032015-06-18 20:22:12 +0000317MachineInstrBuilder X86FrameLowering::BuildStackAdjustment(
318 MachineBasicBlock &MBB, MachineBasicBlock::iterator MBBI, DebugLoc DL,
319 int64_t Offset, bool InEpilogue) const {
320 assert(Offset != 0 && "zero offset stack adjustment requested");
321
322 // On Atom, using LEA to adjust SP is preferred, but using it in the epilogue
323 // is tricky.
324 bool UseLEA;
325 if (!InEpilogue) {
Quentin Colombet9cb01aa2015-12-01 19:49:31 +0000326 // Check if inserting the prologue at the beginning
327 // of MBB would require to use LEA operations.
Quentin Colombetf1e91c82015-12-02 01:22:54 +0000328 // We need to use LEA operations if EFLAGS is live in, because
329 // it means an instruction will read it before it gets defined.
330 UseLEA = STI.useLeaForSP() || MBB.isLiveIn(X86::EFLAGS);
Reid Kleckner98d78032015-06-18 20:22:12 +0000331 } else {
332 // If we can use LEA for SP but we shouldn't, check that none
333 // of the terminators uses the eflags. Otherwise we will insert
334 // a ADD that will redefine the eflags and break the condition.
335 // Alternatively, we could move the ADD, but this may not be possible
336 // and is an optimization anyway.
337 UseLEA = canUseLEAForSPInEpilogue(*MBB.getParent());
338 if (UseLEA && !STI.useLeaForSP())
Quentin Colombetf1e91c82015-12-02 01:22:54 +0000339 UseLEA = flagsNeedToBePreservedBeforeTheTerminators(MBB);
Reid Kleckner98d78032015-06-18 20:22:12 +0000340 // If that assert breaks, that means we do not do the right thing
341 // in canUseAsEpilogue.
Quentin Colombetf1e91c82015-12-02 01:22:54 +0000342 assert((UseLEA || !flagsNeedToBePreservedBeforeTheTerminators(MBB)) &&
Reid Kleckner98d78032015-06-18 20:22:12 +0000343 "We shouldn't have allowed this insertion point");
344 }
345
346 MachineInstrBuilder MI;
347 if (UseLEA) {
348 MI = addRegOffset(BuildMI(MBB, MBBI, DL,
349 TII.get(getLEArOpcode(Uses64BitFramePtr)),
350 StackPtr),
351 StackPtr, false, Offset);
352 } else {
353 bool IsSub = Offset < 0;
354 uint64_t AbsOffset = IsSub ? -Offset : Offset;
355 unsigned Opc = IsSub ? getSUBriOpcode(Uses64BitFramePtr, AbsOffset)
356 : getADDriOpcode(Uses64BitFramePtr, AbsOffset);
357 MI = BuildMI(MBB, MBBI, DL, TII.get(Opc), StackPtr)
358 .addReg(StackPtr)
359 .addImm(AbsOffset);
360 MI->getOperand(3).setIsDead(); // The EFLAGS implicit def is dead.
361 }
362 return MI;
363}
364
Quentin Colombet494eb602015-05-22 18:10:47 +0000365int X86FrameLowering::mergeSPUpdates(MachineBasicBlock &MBB,
366 MachineBasicBlock::iterator &MBBI,
Reid Klecknerf9977bf2015-06-17 21:50:02 +0000367 bool doMergeWithPrevious) const {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000368 if ((doMergeWithPrevious && MBBI == MBB.begin()) ||
369 (!doMergeWithPrevious && MBBI == MBB.end()))
370 return 0;
371
372 MachineBasicBlock::iterator PI = doMergeWithPrevious ? std::prev(MBBI) : MBBI;
373 MachineBasicBlock::iterator NI = doMergeWithPrevious ? nullptr
374 : std::next(MBBI);
375 unsigned Opc = PI->getOpcode();
376 int Offset = 0;
377
378 if ((Opc == X86::ADD64ri32 || Opc == X86::ADD64ri8 ||
379 Opc == X86::ADD32ri || Opc == X86::ADD32ri8 ||
380 Opc == X86::LEA32r || Opc == X86::LEA64_32r) &&
381 PI->getOperand(0).getReg() == StackPtr){
382 Offset += PI->getOperand(2).getImm();
383 MBB.erase(PI);
384 if (!doMergeWithPrevious) MBBI = NI;
385 } else if ((Opc == X86::SUB64ri32 || Opc == X86::SUB64ri8 ||
386 Opc == X86::SUB32ri || Opc == X86::SUB32ri8) &&
387 PI->getOperand(0).getReg() == StackPtr) {
388 Offset -= PI->getOperand(2).getImm();
389 MBB.erase(PI);
390 if (!doMergeWithPrevious) MBBI = NI;
391 }
392
393 return Offset;
394}
395
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000396void X86FrameLowering::BuildCFI(MachineBasicBlock &MBB,
397 MachineBasicBlock::iterator MBBI, DebugLoc DL,
398 MCCFIInstruction CFIInst) const {
Reid Kleckner7f189f82015-06-15 23:45:08 +0000399 MachineFunction &MF = *MBB.getParent();
400 unsigned CFIIndex = MF.getMMI().addFrameInst(CFIInst);
401 BuildMI(MBB, MBBI, DL, TII.get(TargetOpcode::CFI_INSTRUCTION))
402 .addCFIIndex(CFIIndex);
403}
404
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000405void
406X86FrameLowering::emitCalleeSavedFrameMoves(MachineBasicBlock &MBB,
407 MachineBasicBlock::iterator MBBI,
408 DebugLoc DL) const {
409 MachineFunction &MF = *MBB.getParent();
410 MachineFrameInfo *MFI = MF.getFrameInfo();
411 MachineModuleInfo &MMI = MF.getMMI();
412 const MCRegisterInfo *MRI = MMI.getContext().getRegisterInfo();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000413
414 // Add callee saved registers to move list.
415 const std::vector<CalleeSavedInfo> &CSI = MFI->getCalleeSavedInfo();
416 if (CSI.empty()) return;
417
418 // Calculate offsets.
419 for (std::vector<CalleeSavedInfo>::const_iterator
420 I = CSI.begin(), E = CSI.end(); I != E; ++I) {
421 int64_t Offset = MFI->getObjectOffset(I->getFrameIdx());
422 unsigned Reg = I->getReg();
423
424 unsigned DwarfReg = MRI->getDwarfRegNum(Reg, true);
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000425 BuildCFI(MBB, MBBI, DL,
Reid Kleckner7f189f82015-06-15 23:45:08 +0000426 MCCFIInstruction::createOffset(nullptr, DwarfReg, Offset));
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000427 }
428}
429
Andy Ayers809cbe92015-11-10 01:50:49 +0000430MachineInstr *X86FrameLowering::emitStackProbe(MachineFunction &MF,
431 MachineBasicBlock &MBB,
432 MachineBasicBlock::iterator MBBI,
433 DebugLoc DL,
434 bool InProlog) const {
435 const X86Subtarget &STI = MF.getSubtarget<X86Subtarget>();
436 if (STI.isTargetWindowsCoreCLR()) {
437 if (InProlog) {
438 return emitStackProbeInlineStub(MF, MBB, MBBI, DL, true);
439 } else {
440 return emitStackProbeInline(MF, MBB, MBBI, DL, false);
441 }
442 } else {
443 return emitStackProbeCall(MF, MBB, MBBI, DL, InProlog);
444 }
445}
446
447void X86FrameLowering::inlineStackProbe(MachineFunction &MF,
448 MachineBasicBlock &PrologMBB) const {
449 const StringRef ChkStkStubSymbol = "__chkstk_stub";
450 MachineInstr *ChkStkStub = nullptr;
451
452 for (MachineInstr &MI : PrologMBB) {
453 if (MI.isCall() && MI.getOperand(0).isSymbol() &&
454 ChkStkStubSymbol == MI.getOperand(0).getSymbolName()) {
455 ChkStkStub = &MI;
456 break;
457 }
458 }
459
460 if (ChkStkStub != nullptr) {
461 MachineBasicBlock::iterator MBBI = std::next(ChkStkStub->getIterator());
462 assert(std::prev(MBBI).operator==(ChkStkStub) &&
463 "MBBI expected after __chkstk_stub.");
464 DebugLoc DL = PrologMBB.findDebugLoc(MBBI);
465 emitStackProbeInline(MF, PrologMBB, MBBI, DL, true);
466 ChkStkStub->eraseFromParent();
467 }
468}
469
470MachineInstr *X86FrameLowering::emitStackProbeInline(
471 MachineFunction &MF, MachineBasicBlock &MBB,
472 MachineBasicBlock::iterator MBBI, DebugLoc DL, bool InProlog) const {
473 const X86Subtarget &STI = MF.getSubtarget<X86Subtarget>();
474 assert(STI.is64Bit() && "different expansion needed for 32 bit");
475 assert(STI.isTargetWindowsCoreCLR() && "custom expansion expects CoreCLR");
476 const TargetInstrInfo &TII = *STI.getInstrInfo();
477 const BasicBlock *LLVM_BB = MBB.getBasicBlock();
478
479 // RAX contains the number of bytes of desired stack adjustment.
480 // The handling here assumes this value has already been updated so as to
481 // maintain stack alignment.
482 //
483 // We need to exit with RSP modified by this amount and execute suitable
484 // page touches to notify the OS that we're growing the stack responsibly.
485 // All stack probing must be done without modifying RSP.
486 //
487 // MBB:
488 // SizeReg = RAX;
489 // ZeroReg = 0
490 // CopyReg = RSP
491 // Flags, TestReg = CopyReg - SizeReg
492 // FinalReg = !Flags.Ovf ? TestReg : ZeroReg
493 // LimitReg = gs magic thread env access
494 // if FinalReg >= LimitReg goto ContinueMBB
495 // RoundBB:
496 // RoundReg = page address of FinalReg
497 // LoopMBB:
498 // LoopReg = PHI(LimitReg,ProbeReg)
499 // ProbeReg = LoopReg - PageSize
500 // [ProbeReg] = 0
501 // if (ProbeReg > RoundReg) goto LoopMBB
502 // ContinueMBB:
503 // RSP = RSP - RAX
504 // [rest of original MBB]
505
506 // Set up the new basic blocks
507 MachineBasicBlock *RoundMBB = MF.CreateMachineBasicBlock(LLVM_BB);
508 MachineBasicBlock *LoopMBB = MF.CreateMachineBasicBlock(LLVM_BB);
509 MachineBasicBlock *ContinueMBB = MF.CreateMachineBasicBlock(LLVM_BB);
510
511 MachineFunction::iterator MBBIter = std::next(MBB.getIterator());
512 MF.insert(MBBIter, RoundMBB);
513 MF.insert(MBBIter, LoopMBB);
514 MF.insert(MBBIter, ContinueMBB);
515
516 // Split MBB and move the tail portion down to ContinueMBB.
517 MachineBasicBlock::iterator BeforeMBBI = std::prev(MBBI);
518 ContinueMBB->splice(ContinueMBB->begin(), &MBB, MBBI, MBB.end());
519 ContinueMBB->transferSuccessorsAndUpdatePHIs(&MBB);
520
521 // Some useful constants
522 const int64_t ThreadEnvironmentStackLimit = 0x10;
523 const int64_t PageSize = 0x1000;
524 const int64_t PageMask = ~(PageSize - 1);
525
526 // Registers we need. For the normal case we use virtual
527 // registers. For the prolog expansion we use RAX, RCX and RDX.
528 MachineRegisterInfo &MRI = MF.getRegInfo();
529 const TargetRegisterClass *RegClass = &X86::GR64RegClass;
Aaron Ballman107bb0d2015-11-11 13:44:06 +0000530 const unsigned SizeReg = InProlog ? (unsigned)X86::RAX
531 : MRI.createVirtualRegister(RegClass),
532 ZeroReg = InProlog ? (unsigned)X86::RCX
533 : MRI.createVirtualRegister(RegClass),
534 CopyReg = InProlog ? (unsigned)X86::RDX
535 : MRI.createVirtualRegister(RegClass),
536 TestReg = InProlog ? (unsigned)X86::RDX
537 : MRI.createVirtualRegister(RegClass),
538 FinalReg = InProlog ? (unsigned)X86::RDX
539 : MRI.createVirtualRegister(RegClass),
540 RoundedReg = InProlog ? (unsigned)X86::RDX
541 : MRI.createVirtualRegister(RegClass),
542 LimitReg = InProlog ? (unsigned)X86::RCX
543 : MRI.createVirtualRegister(RegClass),
544 JoinReg = InProlog ? (unsigned)X86::RCX
545 : MRI.createVirtualRegister(RegClass),
546 ProbeReg = InProlog ? (unsigned)X86::RCX
547 : MRI.createVirtualRegister(RegClass);
Andy Ayers809cbe92015-11-10 01:50:49 +0000548
549 // SP-relative offsets where we can save RCX and RDX.
550 int64_t RCXShadowSlot = 0;
551 int64_t RDXShadowSlot = 0;
552
553 // If inlining in the prolog, save RCX and RDX.
554 // Future optimization: don't save or restore if not live in.
555 if (InProlog) {
556 // Compute the offsets. We need to account for things already
557 // pushed onto the stack at this point: return address, frame
558 // pointer (if used), and callee saves.
559 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
560 const int64_t CalleeSaveSize = X86FI->getCalleeSavedFrameSize();
561 const bool HasFP = hasFP(MF);
562 RCXShadowSlot = 8 + CalleeSaveSize + (HasFP ? 8 : 0);
563 RDXShadowSlot = RCXShadowSlot + 8;
564 // Emit the saves.
565 addRegOffset(BuildMI(&MBB, DL, TII.get(X86::MOV64mr)), X86::RSP, false,
566 RCXShadowSlot)
567 .addReg(X86::RCX);
568 addRegOffset(BuildMI(&MBB, DL, TII.get(X86::MOV64mr)), X86::RSP, false,
569 RDXShadowSlot)
570 .addReg(X86::RDX);
571 } else {
572 // Not in the prolog. Copy RAX to a virtual reg.
573 BuildMI(&MBB, DL, TII.get(X86::MOV64rr), SizeReg).addReg(X86::RAX);
574 }
575
576 // Add code to MBB to check for overflow and set the new target stack pointer
577 // to zero if so.
578 BuildMI(&MBB, DL, TII.get(X86::XOR64rr), ZeroReg)
579 .addReg(ZeroReg, RegState::Undef)
580 .addReg(ZeroReg, RegState::Undef);
581 BuildMI(&MBB, DL, TII.get(X86::MOV64rr), CopyReg).addReg(X86::RSP);
582 BuildMI(&MBB, DL, TII.get(X86::SUB64rr), TestReg)
583 .addReg(CopyReg)
584 .addReg(SizeReg);
585 BuildMI(&MBB, DL, TII.get(X86::CMOVB64rr), FinalReg)
586 .addReg(TestReg)
587 .addReg(ZeroReg);
588
589 // FinalReg now holds final stack pointer value, or zero if
590 // allocation would overflow. Compare against the current stack
591 // limit from the thread environment block. Note this limit is the
592 // lowest touched page on the stack, not the point at which the OS
593 // will cause an overflow exception, so this is just an optimization
594 // to avoid unnecessarily touching pages that are below the current
595 // SP but already commited to the stack by the OS.
596 BuildMI(&MBB, DL, TII.get(X86::MOV64rm), LimitReg)
597 .addReg(0)
598 .addImm(1)
599 .addReg(0)
600 .addImm(ThreadEnvironmentStackLimit)
601 .addReg(X86::GS);
602 BuildMI(&MBB, DL, TII.get(X86::CMP64rr)).addReg(FinalReg).addReg(LimitReg);
603 // Jump if the desired stack pointer is at or above the stack limit.
604 BuildMI(&MBB, DL, TII.get(X86::JAE_1)).addMBB(ContinueMBB);
605
606 // Add code to roundMBB to round the final stack pointer to a page boundary.
607 BuildMI(RoundMBB, DL, TII.get(X86::AND64ri32), RoundedReg)
608 .addReg(FinalReg)
609 .addImm(PageMask);
610 BuildMI(RoundMBB, DL, TII.get(X86::JMP_1)).addMBB(LoopMBB);
611
612 // LimitReg now holds the current stack limit, RoundedReg page-rounded
613 // final RSP value. Add code to loopMBB to decrement LimitReg page-by-page
614 // and probe until we reach RoundedReg.
615 if (!InProlog) {
616 BuildMI(LoopMBB, DL, TII.get(X86::PHI), JoinReg)
617 .addReg(LimitReg)
618 .addMBB(RoundMBB)
619 .addReg(ProbeReg)
620 .addMBB(LoopMBB);
621 }
622
623 addRegOffset(BuildMI(LoopMBB, DL, TII.get(X86::LEA64r), ProbeReg), JoinReg,
624 false, -PageSize);
625
626 // Probe by storing a byte onto the stack.
627 BuildMI(LoopMBB, DL, TII.get(X86::MOV8mi))
628 .addReg(ProbeReg)
629 .addImm(1)
630 .addReg(0)
631 .addImm(0)
632 .addReg(0)
633 .addImm(0);
634 BuildMI(LoopMBB, DL, TII.get(X86::CMP64rr))
635 .addReg(RoundedReg)
636 .addReg(ProbeReg);
637 BuildMI(LoopMBB, DL, TII.get(X86::JNE_1)).addMBB(LoopMBB);
638
639 MachineBasicBlock::iterator ContinueMBBI = ContinueMBB->getFirstNonPHI();
640
641 // If in prolog, restore RDX and RCX.
642 if (InProlog) {
643 addRegOffset(BuildMI(*ContinueMBB, ContinueMBBI, DL, TII.get(X86::MOV64rm),
644 X86::RCX),
645 X86::RSP, false, RCXShadowSlot);
646 addRegOffset(BuildMI(*ContinueMBB, ContinueMBBI, DL, TII.get(X86::MOV64rm),
647 X86::RDX),
648 X86::RSP, false, RDXShadowSlot);
649 }
650
651 // Now that the probing is done, add code to continueMBB to update
652 // the stack pointer for real.
653 BuildMI(*ContinueMBB, ContinueMBBI, DL, TII.get(X86::SUB64rr), X86::RSP)
654 .addReg(X86::RSP)
655 .addReg(SizeReg);
656
657 // Add the control flow edges we need.
658 MBB.addSuccessor(ContinueMBB);
659 MBB.addSuccessor(RoundMBB);
660 RoundMBB->addSuccessor(LoopMBB);
661 LoopMBB->addSuccessor(ContinueMBB);
662 LoopMBB->addSuccessor(LoopMBB);
663
664 // Mark all the instructions added to the prolog as frame setup.
665 if (InProlog) {
666 for (++BeforeMBBI; BeforeMBBI != MBB.end(); ++BeforeMBBI) {
667 BeforeMBBI->setFlag(MachineInstr::FrameSetup);
668 }
669 for (MachineInstr &MI : *RoundMBB) {
670 MI.setFlag(MachineInstr::FrameSetup);
671 }
672 for (MachineInstr &MI : *LoopMBB) {
673 MI.setFlag(MachineInstr::FrameSetup);
674 }
675 for (MachineBasicBlock::iterator CMBBI = ContinueMBB->begin();
676 CMBBI != ContinueMBBI; ++CMBBI) {
677 CMBBI->setFlag(MachineInstr::FrameSetup);
678 }
679 }
680
681 // Possible TODO: physreg liveness for InProlog case.
682
683 return ContinueMBBI;
684}
685
686MachineInstr *X86FrameLowering::emitStackProbeCall(
687 MachineFunction &MF, MachineBasicBlock &MBB,
688 MachineBasicBlock::iterator MBBI, DebugLoc DL, bool InProlog) const {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000689 bool IsLargeCodeModel = MF.getTarget().getCodeModel() == CodeModel::Large;
690
691 unsigned CallOp;
692 if (Is64Bit)
693 CallOp = IsLargeCodeModel ? X86::CALL64r : X86::CALL64pcrel32;
694 else
695 CallOp = X86::CALLpcrel32;
696
697 const char *Symbol;
698 if (Is64Bit) {
699 if (STI.isTargetCygMing()) {
700 Symbol = "___chkstk_ms";
701 } else {
702 Symbol = "__chkstk";
703 }
704 } else if (STI.isTargetCygMing())
705 Symbol = "_alloca";
706 else
707 Symbol = "_chkstk";
708
709 MachineInstrBuilder CI;
Andy Ayers809cbe92015-11-10 01:50:49 +0000710 MachineBasicBlock::iterator ExpansionMBBI = std::prev(MBBI);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000711
712 // All current stack probes take AX and SP as input, clobber flags, and
713 // preserve all registers. x86_64 probes leave RSP unmodified.
714 if (Is64Bit && MF.getTarget().getCodeModel() == CodeModel::Large) {
715 // For the large code model, we have to call through a register. Use R11,
716 // as it is scratch in all supported calling conventions.
717 BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64ri), X86::R11)
718 .addExternalSymbol(Symbol);
719 CI = BuildMI(MBB, MBBI, DL, TII.get(CallOp)).addReg(X86::R11);
720 } else {
721 CI = BuildMI(MBB, MBBI, DL, TII.get(CallOp)).addExternalSymbol(Symbol);
722 }
723
724 unsigned AX = Is64Bit ? X86::RAX : X86::EAX;
725 unsigned SP = Is64Bit ? X86::RSP : X86::ESP;
726 CI.addReg(AX, RegState::Implicit)
727 .addReg(SP, RegState::Implicit)
728 .addReg(AX, RegState::Define | RegState::Implicit)
729 .addReg(SP, RegState::Define | RegState::Implicit)
730 .addReg(X86::EFLAGS, RegState::Define | RegState::Implicit);
731
732 if (Is64Bit) {
733 // MSVC x64's __chkstk and cygwin/mingw's ___chkstk_ms do not adjust %rsp
734 // themselves. It also does not clobber %rax so we can reuse it when
735 // adjusting %rsp.
736 BuildMI(MBB, MBBI, DL, TII.get(X86::SUB64rr), X86::RSP)
737 .addReg(X86::RSP)
738 .addReg(X86::RAX);
739 }
Andy Ayers809cbe92015-11-10 01:50:49 +0000740
741 if (InProlog) {
742 // Apply the frame setup flag to all inserted instrs.
743 for (++ExpansionMBBI; ExpansionMBBI != MBBI; ++ExpansionMBBI)
744 ExpansionMBBI->setFlag(MachineInstr::FrameSetup);
745 }
746
747 return MBBI;
748}
749
750MachineInstr *X86FrameLowering::emitStackProbeInlineStub(
751 MachineFunction &MF, MachineBasicBlock &MBB,
752 MachineBasicBlock::iterator MBBI, DebugLoc DL, bool InProlog) const {
753
754 assert(InProlog && "ChkStkStub called outside prolog!");
755
David Blaikiee35168f2015-11-10 03:16:28 +0000756 BuildMI(MBB, MBBI, DL, TII.get(X86::CALLpcrel32))
757 .addExternalSymbol("__chkstk_stub");
Andy Ayers809cbe92015-11-10 01:50:49 +0000758
759 return MBBI;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000760}
761
David Majnemer93c22a42015-02-10 00:57:42 +0000762static unsigned calculateSetFPREG(uint64_t SPAdjust) {
763 // Win64 ABI has a less restrictive limitation of 240; 128 works equally well
764 // and might require smaller successive adjustments.
765 const uint64_t Win64MaxSEHOffset = 128;
766 uint64_t SEHFrameOffset = std::min(SPAdjust, Win64MaxSEHOffset);
767 // Win64 ABI requires 16-byte alignment for the UWOP_SET_FPREG opcode.
David Majnemer89d05642015-02-21 01:04:47 +0000768 return SEHFrameOffset & -16;
David Majnemer93c22a42015-02-10 00:57:42 +0000769}
770
771// If we're forcing a stack realignment we can't rely on just the frame
772// info, we need to know the ABI stack alignment as well in case we
773// have a call out. Otherwise just make sure we have some alignment - we'll
774// go with the minimum SlotSize.
Reid Klecknerf9977bf2015-06-17 21:50:02 +0000775uint64_t X86FrameLowering::calculateMaxStackAlign(const MachineFunction &MF) const {
David Majnemer93c22a42015-02-10 00:57:42 +0000776 const MachineFrameInfo *MFI = MF.getFrameInfo();
777 uint64_t MaxAlign = MFI->getMaxAlignment(); // Desired stack alignment.
Reid Klecknerf9977bf2015-06-17 21:50:02 +0000778 unsigned StackAlign = getStackAlignment();
Akira Hatanakabc497c92015-09-11 18:54:38 +0000779 if (MF.getFunction()->hasFnAttribute("stackrealign")) {
David Majnemer93c22a42015-02-10 00:57:42 +0000780 if (MFI->hasCalls())
781 MaxAlign = (StackAlign > MaxAlign) ? StackAlign : MaxAlign;
782 else if (MaxAlign < SlotSize)
783 MaxAlign = SlotSize;
784 }
785 return MaxAlign;
786}
787
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000788void X86FrameLowering::BuildStackAlignAND(MachineBasicBlock &MBB,
789 MachineBasicBlock::iterator MBBI,
Reid Kleckner6ddae312015-11-05 21:09:49 +0000790 DebugLoc DL, unsigned Reg,
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000791 uint64_t MaxAlign) const {
792 uint64_t Val = -MaxAlign;
Reid Kleckner6ddae312015-11-05 21:09:49 +0000793 unsigned AndOp = getANDriOpcode(Uses64BitFramePtr, Val);
794 MachineInstr *MI = BuildMI(MBB, MBBI, DL, TII.get(AndOp), Reg)
795 .addReg(Reg)
796 .addImm(Val)
797 .setMIFlag(MachineInstr::FrameSetup);
Reid Kleckner3854f7b2015-06-18 18:03:25 +0000798
799 // The EFLAGS implicit def is dead.
800 MI->getOperand(3).setIsDead();
801}
802
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000803/// emitPrologue - Push callee-saved registers onto the stack, which
804/// automatically adjust the stack pointer. Adjust the stack pointer to allocate
805/// space for local variables. Also emit labels used by the exception handler to
806/// generate the exception handling frames.
807
808/*
809 Here's a gist of what gets emitted:
810
811 ; Establish frame pointer, if needed
812 [if needs FP]
813 push %rbp
814 .cfi_def_cfa_offset 16
815 .cfi_offset %rbp, -16
816 .seh_pushreg %rpb
817 mov %rsp, %rbp
818 .cfi_def_cfa_register %rbp
819
820 ; Spill general-purpose registers
821 [for all callee-saved GPRs]
822 pushq %<reg>
823 [if not needs FP]
824 .cfi_def_cfa_offset (offset from RETADDR)
825 .seh_pushreg %<reg>
826
827 ; If the required stack alignment > default stack alignment
828 ; rsp needs to be re-aligned. This creates a "re-alignment gap"
829 ; of unknown size in the stack frame.
830 [if stack needs re-alignment]
831 and $MASK, %rsp
832
833 ; Allocate space for locals
834 [if target is Windows and allocated space > 4096 bytes]
835 ; Windows needs special care for allocations larger
836 ; than one page.
837 mov $NNN, %rax
838 call ___chkstk_ms/___chkstk
839 sub %rax, %rsp
840 [else]
841 sub $NNN, %rsp
842
843 [if needs FP]
844 .seh_stackalloc (size of XMM spill slots)
845 .seh_setframe %rbp, SEHFrameOffset ; = size of all spill slots
846 [else]
847 .seh_stackalloc NNN
848
849 ; Spill XMMs
850 ; Note, that while only Windows 64 ABI specifies XMMs as callee-preserved,
851 ; they may get spilled on any platform, if the current function
852 ; calls @llvm.eh.unwind.init
853 [if needs FP]
854 [for all callee-saved XMM registers]
855 movaps %<xmm reg>, -MMM(%rbp)
856 [for all callee-saved XMM registers]
857 .seh_savexmm %<xmm reg>, (-MMM + SEHFrameOffset)
858 ; i.e. the offset relative to (%rbp - SEHFrameOffset)
859 [else]
860 [for all callee-saved XMM registers]
861 movaps %<xmm reg>, KKK(%rsp)
862 [for all callee-saved XMM registers]
863 .seh_savexmm %<xmm reg>, KKK
864
865 .seh_endprologue
866
867 [if needs base pointer]
868 mov %rsp, %rbx
869 [if needs to restore base pointer]
870 mov %rsp, -MMM(%rbp)
871
872 ; Emit CFI info
873 [if needs FP]
874 [for all callee-saved registers]
875 .cfi_offset %<reg>, (offset from %rbp)
876 [else]
877 .cfi_def_cfa_offset (offset from RETADDR)
878 [for all callee-saved registers]
879 .cfi_offset %<reg>, (offset from %rsp)
880
881 Notes:
882 - .seh directives are emitted only for Windows 64 ABI
883 - .cfi directives are emitted for all other ABIs
884 - for 32-bit code, substitute %e?? registers for %r??
885*/
886
Quentin Colombet61b305e2015-05-05 17:38:16 +0000887void X86FrameLowering::emitPrologue(MachineFunction &MF,
888 MachineBasicBlock &MBB) const {
Reid Klecknerf9977bf2015-06-17 21:50:02 +0000889 assert(&STI == &MF.getSubtarget<X86Subtarget>() &&
890 "MF used frame lowering for wrong subtarget");
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000891 MachineBasicBlock::iterator MBBI = MBB.begin();
892 MachineFrameInfo *MFI = MF.getFrameInfo();
893 const Function *Fn = MF.getFunction();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000894 MachineModuleInfo &MMI = MF.getMMI();
895 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
David Majnemer93c22a42015-02-10 00:57:42 +0000896 uint64_t MaxAlign = calculateMaxStackAlign(MF); // Desired stack alignment.
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000897 uint64_t StackSize = MFI->getStackSize(); // Number of bytes to allocate.
Reid Klecknera13dfd52015-09-29 23:32:01 +0000898 bool IsFunclet = MBB.isEHFuncletEntry();
Reid Kleckner7850c9f2015-12-15 23:40:58 +0000899 EHPersonality Personality = EHPersonality::Unknown;
900 if (Fn->hasPersonalityFn())
901 Personality = classifyEHPersonality(Fn->getPersonalityFn());
Joseph Tremoulet149c4332015-11-13 00:39:23 +0000902 bool FnHasClrFunclet =
Reid Kleckner7850c9f2015-12-15 23:40:58 +0000903 MMI.hasEHFunclets() && Personality == EHPersonality::CoreCLR;
Joseph Tremoulet149c4332015-11-13 00:39:23 +0000904 bool IsClrFunclet = IsFunclet && FnHasClrFunclet;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000905 bool HasFP = hasFP(MF);
Reid Kleckner1c140bd2015-06-16 18:08:57 +0000906 bool IsWin64CC = STI.isCallingConvWin64(Fn->getCallingConv());
Reid Kleckner1c140bd2015-06-16 18:08:57 +0000907 bool IsWin64Prologue = MF.getTarget().getMCAsmInfo()->usesWindowsCFI();
908 bool NeedsWinCFI = IsWin64Prologue && Fn->needsUnwindTableEntry();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000909 bool NeedsDwarfCFI =
Reid Kleckner1c140bd2015-06-16 18:08:57 +0000910 !IsWin64Prologue && (MMI.hasDebugInfo() || Fn->needsUnwindTableEntry());
Reid Kleckner034ea962015-06-18 20:32:02 +0000911 unsigned FramePtr = TRI->getFrameRegister(MF);
Eric Christopher05b81972015-02-02 17:38:43 +0000912 const unsigned MachineFramePtr =
913 STI.isTarget64BitILP32()
Craig Topper91dab7b2015-12-25 22:09:45 +0000914 ? getX86SubSuperRegister(FramePtr, 64) : FramePtr;
Tim Northover775aaeb2015-11-05 21:54:58 +0000915 unsigned BasePtr = TRI->getBaseRegister();
916
917 // Debug location must be unknown since the first debug location is used
918 // to determine the end of the prologue.
919 DebugLoc DL;
920
921 // Add RETADDR move area to callee saved frame size.
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000922 int TailCallReturnAddrDelta = X86FI->getTCReturnAddrDelta();
Reid Kleckner1c140bd2015-06-16 18:08:57 +0000923 if (TailCallReturnAddrDelta && IsWin64Prologue)
David Majnemer93c22a42015-02-10 00:57:42 +0000924 report_fatal_error("Can't handle guaranteed tail call under win64 yet");
925
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000926 if (TailCallReturnAddrDelta < 0)
927 X86FI->setCalleeSavedFrameSize(
928 X86FI->getCalleeSavedFrameSize() - TailCallReturnAddrDelta);
929
930 bool UseStackProbe = (STI.isOSWindows() && !STI.isTargetMachO());
931
932 // The default stack probe size is 4096 if the function has no stackprobesize
933 // attribute.
934 unsigned StackProbeSize = 4096;
935 if (Fn->hasFnAttribute("stack-probe-size"))
936 Fn->getFnAttribute("stack-probe-size")
937 .getValueAsString()
938 .getAsInteger(0, StackProbeSize);
939
940 // If this is x86-64 and the Red Zone is not disabled, if we are a leaf
941 // function, and use up to 128 bytes of stack space, don't have a frame
942 // pointer, calls, or dynamic alloca then we do not need to adjust the
943 // stack pointer (we fit in the Red Zone). We also check that we don't
944 // push and pop from the stack.
Duncan P. N. Exon Smith5975a702015-02-14 01:59:52 +0000945 if (Is64Bit && !Fn->hasFnAttribute(Attribute::NoRedZone) &&
Reid Kleckner034ea962015-06-18 20:32:02 +0000946 !TRI->needsStackRealignment(MF) &&
David Majnemer3463e692016-01-14 01:20:03 +0000947 !MFI->hasVarSizedObjects() && // No dynamic alloca.
948 !MFI->adjustsStack() && // No calls.
949 !IsWin64CC && // Win64 has no Red Zone
950 !MFI->hasCopyImplyingStackAdjustment() && // Don't push and pop.
951 !MF.shouldSplitStack()) { // Regular stack
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000952 uint64_t MinSize = X86FI->getCalleeSavedFrameSize();
953 if (HasFP) MinSize += SlotSize;
954 StackSize = std::max(MinSize, StackSize > 128 ? StackSize - 128 : 0);
955 MFI->setStackSize(StackSize);
956 }
957
958 // Insert stack pointer adjustment for later moving of return addr. Only
959 // applies to tail call optimized functions where the callee argument stack
960 // size is bigger than the callers.
961 if (TailCallReturnAddrDelta < 0) {
Reid Kleckner98d78032015-06-18 20:22:12 +0000962 BuildStackAdjustment(MBB, MBBI, DL, TailCallReturnAddrDelta,
963 /*InEpilogue=*/false)
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000964 .setMIFlag(MachineInstr::FrameSetup);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +0000965 }
966
967 // Mapping for machine moves:
968 //
969 // DST: VirtualFP AND
970 // SRC: VirtualFP => DW_CFA_def_cfa_offset
971 // ELSE => DW_CFA_def_cfa
972 //
973 // SRC: VirtualFP AND
974 // DST: Register => DW_CFA_def_cfa_register
975 //
976 // ELSE
977 // OFFSET < 0 => DW_CFA_offset_extended_sf
978 // REG < 64 => DW_CFA_offset + Reg
979 // ELSE => DW_CFA_offset_extended
980
981 uint64_t NumBytes = 0;
982 int stackGrowth = -SlotSize;
983
Joseph Tremoulet6afccf62015-11-05 02:20:07 +0000984 // Find the funclet establisher parameter
985 unsigned Establisher = X86::NoRegister;
986 if (IsClrFunclet)
987 Establisher = Uses64BitFramePtr ? X86::RCX : X86::ECX;
988 else if (IsFunclet)
989 Establisher = Uses64BitFramePtr ? X86::RDX : X86::EDX;
990
Craig Topper8e44b9a2015-12-10 06:09:41 +0000991 if (IsWin64Prologue && IsFunclet && !IsClrFunclet) {
Joseph Tremoulet6afccf62015-11-05 02:20:07 +0000992 // Immediately spill establisher into the home slot.
993 // The runtime cares about this.
Reid Klecknera13dfd52015-09-29 23:32:01 +0000994 // MOV64mr %rdx, 16(%rsp)
995 unsigned MOVmr = Uses64BitFramePtr ? X86::MOV64mr : X86::MOV32mr;
996 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(MOVmr)), StackPtr, true, 16)
Joseph Tremoulet6afccf62015-11-05 02:20:07 +0000997 .addReg(Establisher)
Reid Klecknerdf129512015-09-08 22:44:41 +0000998 .setMIFlag(MachineInstr::FrameSetup);
Reid Kleckner64b003f2015-11-09 21:04:00 +0000999 MBB.addLiveIn(Establisher);
Reid Klecknera13dfd52015-09-29 23:32:01 +00001000 }
Reid Klecknerdf129512015-09-08 22:44:41 +00001001
Reid Klecknera13dfd52015-09-29 23:32:01 +00001002 if (HasFP) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001003 // Calculate required stack adjustment.
1004 uint64_t FrameSize = StackSize - SlotSize;
1005 // If required, include space for extra hidden slot for stashing base pointer.
1006 if (X86FI->getRestoreBasePointer())
1007 FrameSize += SlotSize;
David Majnemer89d05642015-02-21 01:04:47 +00001008
1009 NumBytes = FrameSize - X86FI->getCalleeSavedFrameSize();
1010
1011 // Callee-saved registers are pushed on stack before the stack is realigned.
Reid Kleckner034ea962015-06-18 20:32:02 +00001012 if (TRI->needsStackRealignment(MF) && !IsWin64Prologue)
David Majnemer89d05642015-02-21 01:04:47 +00001013 NumBytes = RoundUpToAlignment(NumBytes, MaxAlign);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001014
1015 // Get the offset of the stack slot for the EBP register, which is
1016 // guaranteed to be the last slot by processFunctionBeforeFrameFinalized.
1017 // Update the frame offset adjustment.
Reid Klecknera13dfd52015-09-29 23:32:01 +00001018 if (!IsFunclet)
1019 MFI->setOffsetAdjustment(-NumBytes);
1020 else
David Blaikie757908e2015-09-30 20:37:48 +00001021 assert(MFI->getOffsetAdjustment() == -(int)NumBytes &&
Reid Klecknera13dfd52015-09-29 23:32:01 +00001022 "should calculate same local variable offset for funclets");
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001023
1024 // Save EBP/RBP into the appropriate stack slot.
1025 BuildMI(MBB, MBBI, DL, TII.get(Is64Bit ? X86::PUSH64r : X86::PUSH32r))
1026 .addReg(MachineFramePtr, RegState::Kill)
1027 .setMIFlag(MachineInstr::FrameSetup);
1028
1029 if (NeedsDwarfCFI) {
1030 // Mark the place where EBP/RBP was saved.
1031 // Define the current CFA rule to use the provided offset.
1032 assert(StackSize);
Reid Kleckner3854f7b2015-06-18 18:03:25 +00001033 BuildCFI(MBB, MBBI, DL,
Reid Kleckner7f189f82015-06-15 23:45:08 +00001034 MCCFIInstruction::createDefCfaOffset(nullptr, 2 * stackGrowth));
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001035
1036 // Change the rule for the FramePtr to be an "offset" rule.
Reid Kleckner034ea962015-06-18 20:32:02 +00001037 unsigned DwarfFramePtr = TRI->getDwarfRegNum(MachineFramePtr, true);
Reid Kleckner3854f7b2015-06-18 18:03:25 +00001038 BuildCFI(MBB, MBBI, DL, MCCFIInstruction::createOffset(
1039 nullptr, DwarfFramePtr, 2 * stackGrowth));
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001040 }
1041
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001042 if (NeedsWinCFI) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001043 BuildMI(MBB, MBBI, DL, TII.get(X86::SEH_PushReg))
1044 .addImm(FramePtr)
1045 .setMIFlag(MachineInstr::FrameSetup);
1046 }
1047
Reid Klecknera13dfd52015-09-29 23:32:01 +00001048 if (!IsWin64Prologue && !IsFunclet) {
David Majnemer93c22a42015-02-10 00:57:42 +00001049 // Update EBP with the new base value.
1050 BuildMI(MBB, MBBI, DL,
1051 TII.get(Uses64BitFramePtr ? X86::MOV64rr : X86::MOV32rr),
1052 FramePtr)
1053 .addReg(StackPtr)
1054 .setMIFlag(MachineInstr::FrameSetup);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001055
Reid Klecknera13dfd52015-09-29 23:32:01 +00001056 if (NeedsDwarfCFI) {
1057 // Mark effective beginning of when frame pointer becomes valid.
1058 // Define the current CFA to use the EBP/RBP register.
1059 unsigned DwarfFramePtr = TRI->getDwarfRegNum(MachineFramePtr, true);
1060 BuildCFI(MBB, MBBI, DL, MCCFIInstruction::createDefCfaRegister(
1061 nullptr, DwarfFramePtr));
1062 }
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001063 }
1064
Reid Kleckner64b003f2015-11-09 21:04:00 +00001065 // Mark the FramePtr as live-in in every block. Don't do this again for
1066 // funclet prologues.
1067 if (!IsFunclet) {
1068 for (MachineBasicBlock &EveryMBB : MF)
1069 EveryMBB.addLiveIn(MachineFramePtr);
1070 }
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001071 } else {
Reid Klecknera13dfd52015-09-29 23:32:01 +00001072 assert(!IsFunclet && "funclets without FPs not yet implemented");
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001073 NumBytes = StackSize - X86FI->getCalleeSavedFrameSize();
1074 }
1075
Reid Klecknera13dfd52015-09-29 23:32:01 +00001076 // For EH funclets, only allocate enough space for outgoing calls. Save the
1077 // NumBytes value that we would've used for the parent frame.
1078 unsigned ParentFrameNumBytes = NumBytes;
1079 if (IsFunclet)
Reid Kleckner28e49032015-10-16 23:43:27 +00001080 NumBytes = getWinEHFuncletFrameSize(MF);
Reid Klecknera13dfd52015-09-29 23:32:01 +00001081
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001082 // Skip the callee-saved push instructions.
1083 bool PushedRegs = false;
1084 int StackOffset = 2 * stackGrowth;
1085
1086 while (MBBI != MBB.end() &&
Michael Kupersteine1ea4e7d2015-07-16 12:27:59 +00001087 MBBI->getFlag(MachineInstr::FrameSetup) &&
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001088 (MBBI->getOpcode() == X86::PUSH32r ||
1089 MBBI->getOpcode() == X86::PUSH64r)) {
1090 PushedRegs = true;
1091 unsigned Reg = MBBI->getOperand(0).getReg();
1092 ++MBBI;
1093
1094 if (!HasFP && NeedsDwarfCFI) {
1095 // Mark callee-saved push instruction.
1096 // Define the current CFA rule to use the provided offset.
1097 assert(StackSize);
Reid Kleckner3854f7b2015-06-18 18:03:25 +00001098 BuildCFI(MBB, MBBI, DL,
Reid Kleckner7f189f82015-06-15 23:45:08 +00001099 MCCFIInstruction::createDefCfaOffset(nullptr, StackOffset));
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001100 StackOffset += stackGrowth;
1101 }
1102
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001103 if (NeedsWinCFI) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001104 BuildMI(MBB, MBBI, DL, TII.get(X86::SEH_PushReg)).addImm(Reg).setMIFlag(
1105 MachineInstr::FrameSetup);
1106 }
1107 }
1108
1109 // Realign stack after we pushed callee-saved registers (so that we'll be
1110 // able to calculate their offsets from the frame pointer).
David Majnemer93c22a42015-02-10 00:57:42 +00001111 // Don't do this for Win64, it needs to realign the stack after the prologue.
Reid Klecknera13dfd52015-09-29 23:32:01 +00001112 if (!IsWin64Prologue && !IsFunclet && TRI->needsStackRealignment(MF)) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001113 assert(HasFP && "There should be a frame pointer if stack is realigned.");
Reid Kleckner6ddae312015-11-05 21:09:49 +00001114 BuildStackAlignAND(MBB, MBBI, DL, StackPtr, MaxAlign);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001115 }
1116
1117 // If there is an SUB32ri of ESP immediately before this instruction, merge
1118 // the two. This can be the case when tail call elimination is enabled and
1119 // the callee has more arguments then the caller.
Reid Kleckner3854f7b2015-06-18 18:03:25 +00001120 NumBytes -= mergeSPUpdates(MBB, MBBI, true);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001121
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001122 // Adjust stack pointer: ESP -= numbytes.
1123
1124 // Windows and cygwin/mingw require a prologue helper routine when allocating
1125 // more than 4K bytes on the stack. Windows uses __chkstk and cygwin/mingw
1126 // uses __alloca. __alloca and the 32-bit version of __chkstk will probe the
1127 // stack and adjust the stack pointer in one go. The 64-bit version of
1128 // __chkstk is only responsible for probing the stack. The 64-bit prologue is
1129 // responsible for adjusting the stack pointer. Touching the stack at 4K
1130 // increments is necessary to ensure that the guard pages used by the OS
1131 // virtual memory manager are allocated in correct sequence.
David Majnemer89d05642015-02-21 01:04:47 +00001132 uint64_t AlignedNumBytes = NumBytes;
Reid Klecknera13dfd52015-09-29 23:32:01 +00001133 if (IsWin64Prologue && !IsFunclet && TRI->needsStackRealignment(MF))
David Majnemer89d05642015-02-21 01:04:47 +00001134 AlignedNumBytes = RoundUpToAlignment(AlignedNumBytes, MaxAlign);
1135 if (AlignedNumBytes >= StackProbeSize && UseStackProbe) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001136 // Check whether EAX is livein for this function.
1137 bool isEAXAlive = isEAXLiveIn(MF);
1138
1139 if (isEAXAlive) {
1140 // Sanity check that EAX is not livein for this function.
1141 // It should not be, so throw an assert.
1142 assert(!Is64Bit && "EAX is livein in x64 case!");
1143
1144 // Save EAX
1145 BuildMI(MBB, MBBI, DL, TII.get(X86::PUSH32r))
1146 .addReg(X86::EAX, RegState::Kill)
1147 .setMIFlag(MachineInstr::FrameSetup);
1148 }
1149
1150 if (Is64Bit) {
1151 // Handle the 64-bit Windows ABI case where we need to call __chkstk.
1152 // Function prologue is responsible for adjusting the stack pointer.
David Majnemer006c4902015-02-23 21:50:30 +00001153 if (isUInt<32>(NumBytes)) {
1154 BuildMI(MBB, MBBI, DL, TII.get(X86::MOV32ri), X86::EAX)
1155 .addImm(NumBytes)
1156 .setMIFlag(MachineInstr::FrameSetup);
1157 } else if (isInt<32>(NumBytes)) {
1158 BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64ri32), X86::RAX)
1159 .addImm(NumBytes)
1160 .setMIFlag(MachineInstr::FrameSetup);
1161 } else {
1162 BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64ri), X86::RAX)
1163 .addImm(NumBytes)
1164 .setMIFlag(MachineInstr::FrameSetup);
1165 }
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001166 } else {
1167 // Allocate NumBytes-4 bytes on stack in case of isEAXAlive.
1168 // We'll also use 4 already allocated bytes for EAX.
1169 BuildMI(MBB, MBBI, DL, TII.get(X86::MOV32ri), X86::EAX)
Andy Ayers809cbe92015-11-10 01:50:49 +00001170 .addImm(isEAXAlive ? NumBytes - 4 : NumBytes)
1171 .setMIFlag(MachineInstr::FrameSetup);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001172 }
1173
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001174 // Call __chkstk, __chkstk_ms, or __alloca.
Andy Ayers809cbe92015-11-10 01:50:49 +00001175 emitStackProbe(MF, MBB, MBBI, DL, true);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001176
1177 if (isEAXAlive) {
1178 // Restore EAX
Andy Ayers809cbe92015-11-10 01:50:49 +00001179 MachineInstr *MI =
1180 addRegOffset(BuildMI(MF, DL, TII.get(X86::MOV32rm), X86::EAX),
1181 StackPtr, false, NumBytes - 4);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001182 MI->setFlag(MachineInstr::FrameSetup);
1183 MBB.insert(MBBI, MI);
1184 }
1185 } else if (NumBytes) {
Reid Kleckner98d78032015-06-18 20:22:12 +00001186 emitSPUpdate(MBB, MBBI, -(int64_t)NumBytes, /*InEpilogue=*/false);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001187 }
1188
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001189 if (NeedsWinCFI && NumBytes)
David Majnemer93c22a42015-02-10 00:57:42 +00001190 BuildMI(MBB, MBBI, DL, TII.get(X86::SEH_StackAlloc))
1191 .addImm(NumBytes)
1192 .setMIFlag(MachineInstr::FrameSetup);
1193
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001194 int SEHFrameOffset = 0;
Joseph Tremoulet149c4332015-11-13 00:39:23 +00001195 unsigned SPOrEstablisher;
1196 if (IsFunclet) {
1197 if (IsClrFunclet) {
1198 // The establisher parameter passed to a CLR funclet is actually a pointer
1199 // to the (mostly empty) frame of its nearest enclosing funclet; we have
1200 // to find the root function establisher frame by loading the PSPSym from
1201 // the intermediate frame.
1202 unsigned PSPSlotOffset = getPSPSlotOffsetFromSP(MF);
1203 MachinePointerInfo NoInfo;
1204 MBB.addLiveIn(Establisher);
1205 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64rm), Establisher),
1206 Establisher, false, PSPSlotOffset)
1207 .addMemOperand(MF.getMachineMemOperand(
1208 NoInfo, MachineMemOperand::MOLoad, SlotSize, SlotSize));
1209 ;
1210 // Save the root establisher back into the current funclet's (mostly
1211 // empty) frame, in case a sub-funclet or the GC needs it.
1212 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64mr)), StackPtr,
1213 false, PSPSlotOffset)
1214 .addReg(Establisher)
1215 .addMemOperand(
1216 MF.getMachineMemOperand(NoInfo, MachineMemOperand::MOStore |
1217 MachineMemOperand::MOVolatile,
1218 SlotSize, SlotSize));
1219 }
1220 SPOrEstablisher = Establisher;
1221 } else {
1222 SPOrEstablisher = StackPtr;
1223 }
1224
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001225 if (IsWin64Prologue && HasFP) {
Reid Klecknera13dfd52015-09-29 23:32:01 +00001226 // Set RBP to a small fixed offset from RSP. In the funclet case, we base
Joseph Tremoulet6afccf62015-11-05 02:20:07 +00001227 // this calculation on the incoming establisher, which holds the value of
1228 // RSP from the parent frame at the end of the prologue.
Reid Klecknera13dfd52015-09-29 23:32:01 +00001229 SEHFrameOffset = calculateSetFPREG(ParentFrameNumBytes);
David Majnemer31d868b2015-02-23 21:50:27 +00001230 if (SEHFrameOffset)
1231 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(X86::LEA64r), FramePtr),
Joseph Tremoulet6afccf62015-11-05 02:20:07 +00001232 SPOrEstablisher, false, SEHFrameOffset);
David Majnemer31d868b2015-02-23 21:50:27 +00001233 else
Reid Klecknera13dfd52015-09-29 23:32:01 +00001234 BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64rr), FramePtr)
Joseph Tremoulet6afccf62015-11-05 02:20:07 +00001235 .addReg(SPOrEstablisher);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001236
Reid Klecknera13dfd52015-09-29 23:32:01 +00001237 // If this is not a funclet, emit the CFI describing our frame pointer.
Reid Kleckner7850c9f2015-12-15 23:40:58 +00001238 if (NeedsWinCFI && !IsFunclet) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001239 BuildMI(MBB, MBBI, DL, TII.get(X86::SEH_SetFrame))
1240 .addImm(FramePtr)
1241 .addImm(SEHFrameOffset)
1242 .setMIFlag(MachineInstr::FrameSetup);
Reid Kleckner7850c9f2015-12-15 23:40:58 +00001243 if (isAsynchronousEHPersonality(Personality))
1244 MF.getWinEHFuncInfo()->SEHSetFrameOffset = SEHFrameOffset;
1245 }
Reid Klecknera13dfd52015-09-29 23:32:01 +00001246 } else if (IsFunclet && STI.is32Bit()) {
1247 // Reset EBP / ESI to something good for funclets.
1248 MBBI = restoreWin32EHStackPointers(MBB, MBBI, DL);
Reid Kleckner75b4be92015-11-13 21:27:00 +00001249 // If we're a catch funclet, we can be returned to via catchret. Save ESP
1250 // into the registration node so that the runtime will restore it for us.
1251 if (!MBB.isCleanupFuncletEntry()) {
Reid Kleckner7850c9f2015-12-15 23:40:58 +00001252 assert(Personality == EHPersonality::MSVC_CXX);
Reid Kleckner75b4be92015-11-13 21:27:00 +00001253 unsigned FrameReg;
Reid Klecknerc20276d2015-11-17 21:10:25 +00001254 int FI = MF.getWinEHFuncInfo()->EHRegNodeFrameIndex;
Reid Kleckner75b4be92015-11-13 21:27:00 +00001255 int64_t EHRegOffset = getFrameIndexReference(MF, FI, FrameReg);
1256 // ESP is the first field, so no extra displacement is needed.
1257 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(X86::MOV32mr)), FrameReg,
1258 false, EHRegOffset)
1259 .addReg(X86::ESP);
1260 }
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001261 }
1262
David Majnemera7d908e2015-02-10 19:01:47 +00001263 while (MBBI != MBB.end() && MBBI->getFlag(MachineInstr::FrameSetup)) {
1264 const MachineInstr *FrameInstr = &*MBBI;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001265 ++MBBI;
1266
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001267 if (NeedsWinCFI) {
David Majnemera7d908e2015-02-10 19:01:47 +00001268 int FI;
1269 if (unsigned Reg = TII.isStoreToStackSlot(FrameInstr, FI)) {
1270 if (X86::FR64RegClass.contains(Reg)) {
James Y Knight5567baf2015-08-15 02:32:35 +00001271 unsigned IgnoredFrameReg;
1272 int Offset = getFrameIndexReference(MF, FI, IgnoredFrameReg);
David Majnemera7d908e2015-02-10 19:01:47 +00001273 Offset += SEHFrameOffset;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001274
David Majnemera7d908e2015-02-10 19:01:47 +00001275 BuildMI(MBB, MBBI, DL, TII.get(X86::SEH_SaveXMM))
1276 .addImm(Reg)
1277 .addImm(Offset)
1278 .setMIFlag(MachineInstr::FrameSetup);
1279 }
1280 }
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001281 }
David Majnemera7d908e2015-02-10 19:01:47 +00001282 }
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001283
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001284 if (NeedsWinCFI)
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001285 BuildMI(MBB, MBBI, DL, TII.get(X86::SEH_EndPrologue))
1286 .setMIFlag(MachineInstr::FrameSetup);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001287
Joseph Tremoulet149c4332015-11-13 00:39:23 +00001288 if (FnHasClrFunclet && !IsFunclet) {
1289 // Save the so-called Initial-SP (i.e. the value of the stack pointer
1290 // immediately after the prolog) into the PSPSlot so that funclets
1291 // and the GC can recover it.
1292 unsigned PSPSlotOffset = getPSPSlotOffsetFromSP(MF);
1293 auto PSPInfo = MachinePointerInfo::getFixedStack(
Reid Klecknerc20276d2015-11-17 21:10:25 +00001294 MF, MF.getWinEHFuncInfo()->PSPSymFrameIdx);
Joseph Tremoulet149c4332015-11-13 00:39:23 +00001295 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64mr)), StackPtr, false,
1296 PSPSlotOffset)
1297 .addReg(StackPtr)
1298 .addMemOperand(MF.getMachineMemOperand(
1299 PSPInfo, MachineMemOperand::MOStore | MachineMemOperand::MOVolatile,
1300 SlotSize, SlotSize));
1301 }
1302
David Majnemer93c22a42015-02-10 00:57:42 +00001303 // Realign stack after we spilled callee-saved registers (so that we'll be
1304 // able to calculate their offsets from the frame pointer).
1305 // Win64 requires aligning the stack after the prologue.
Reid Kleckner034ea962015-06-18 20:32:02 +00001306 if (IsWin64Prologue && TRI->needsStackRealignment(MF)) {
David Majnemer93c22a42015-02-10 00:57:42 +00001307 assert(HasFP && "There should be a frame pointer if stack is realigned.");
Reid Kleckner6ddae312015-11-05 21:09:49 +00001308 BuildStackAlignAND(MBB, MBBI, DL, SPOrEstablisher, MaxAlign);
David Majnemer93c22a42015-02-10 00:57:42 +00001309 }
1310
Reid Kleckner6ddae312015-11-05 21:09:49 +00001311 // We already dealt with stack realignment and funclets above.
1312 if (IsFunclet && STI.is32Bit())
1313 return;
1314
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001315 // If we need a base pointer, set it up here. It's whatever the value
1316 // of the stack pointer is at this point. Any variable size objects
1317 // will be allocated after this, so we can still use the base pointer
1318 // to reference locals.
Reid Kleckner034ea962015-06-18 20:32:02 +00001319 if (TRI->hasBasePointer(MF)) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001320 // Update the base pointer with the current stack pointer.
1321 unsigned Opc = Uses64BitFramePtr ? X86::MOV64rr : X86::MOV32rr;
1322 BuildMI(MBB, MBBI, DL, TII.get(Opc), BasePtr)
Reid Kleckner6ddae312015-11-05 21:09:49 +00001323 .addReg(SPOrEstablisher)
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001324 .setMIFlag(MachineInstr::FrameSetup);
1325 if (X86FI->getRestoreBasePointer()) {
Reid Klecknere69bdb82015-07-07 23:45:58 +00001326 // Stash value of base pointer. Saving RSP instead of EBP shortens
1327 // dependence chain. Used by SjLj EH.
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001328 unsigned Opm = Uses64BitFramePtr ? X86::MOV64mr : X86::MOV32mr;
1329 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(Opm)),
1330 FramePtr, true, X86FI->getRestoreBasePointerOffset())
Reid Kleckner6ddae312015-11-05 21:09:49 +00001331 .addReg(SPOrEstablisher)
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001332 .setMIFlag(MachineInstr::FrameSetup);
1333 }
Reid Klecknere69bdb82015-07-07 23:45:58 +00001334
Reid Kleckner6ddae312015-11-05 21:09:49 +00001335 if (X86FI->getHasSEHFramePtrSave() && !IsFunclet) {
Reid Klecknere69bdb82015-07-07 23:45:58 +00001336 // Stash the value of the frame pointer relative to the base pointer for
1337 // Win32 EH. This supports Win32 EH, which does the inverse of the above:
1338 // it recovers the frame pointer from the base pointer rather than the
1339 // other way around.
1340 unsigned Opm = Uses64BitFramePtr ? X86::MOV64mr : X86::MOV32mr;
Reid Klecknerdf129512015-09-08 22:44:41 +00001341 unsigned UsedReg;
1342 int Offset =
1343 getFrameIndexReference(MF, X86FI->getSEHFramePtrSaveIndex(), UsedReg);
1344 assert(UsedReg == BasePtr);
1345 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(Opm)), UsedReg, true, Offset)
Reid Klecknere69bdb82015-07-07 23:45:58 +00001346 .addReg(FramePtr)
1347 .setMIFlag(MachineInstr::FrameSetup);
1348 }
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001349 }
1350
1351 if (((!HasFP && NumBytes) || PushedRegs) && NeedsDwarfCFI) {
1352 // Mark end of stack pointer adjustment.
1353 if (!HasFP && NumBytes) {
1354 // Define the current CFA rule to use the provided offset.
1355 assert(StackSize);
Reid Kleckner3854f7b2015-06-18 18:03:25 +00001356 BuildCFI(MBB, MBBI, DL, MCCFIInstruction::createDefCfaOffset(
1357 nullptr, -StackSize + stackGrowth));
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001358 }
1359
1360 // Emit DWARF info specifying the offsets of the callee-saved registers.
1361 if (PushedRegs)
1362 emitCalleeSavedFrameMoves(MBB, MBBI, DL);
1363 }
1364}
1365
Quentin Colombetaa8020752015-05-27 06:28:41 +00001366bool X86FrameLowering::canUseLEAForSPInEpilogue(
1367 const MachineFunction &MF) const {
Quentin Colombet494eb602015-05-22 18:10:47 +00001368 // We can't use LEA instructions for adjusting the stack pointer if this is a
1369 // leaf function in the Win64 ABI. Only ADD instructions may be used to
1370 // deallocate the stack.
1371 // This means that we can use LEA for SP in two situations:
1372 // 1. We *aren't* using the Win64 ABI which means we are free to use LEA.
1373 // 2. We *have* a frame pointer which means we are permitted to use LEA.
Quentin Colombetaa8020752015-05-27 06:28:41 +00001374 return !MF.getTarget().getMCAsmInfo()->usesWindowsCFI() || hasFP(MF);
1375}
1376
Reid Klecknerdf129512015-09-08 22:44:41 +00001377static bool isFuncletReturnInstr(MachineInstr *MI) {
1378 switch (MI->getOpcode()) {
1379 case X86::CATCHRET:
Reid Kleckner78783912015-09-10 00:25:23 +00001380 case X86::CLEANUPRET:
Reid Klecknerdf129512015-09-08 22:44:41 +00001381 return true;
1382 default:
1383 return false;
1384 }
1385 llvm_unreachable("impossible");
1386}
1387
Joseph Tremoulet149c4332015-11-13 00:39:23 +00001388// CLR funclets use a special "Previous Stack Pointer Symbol" slot on the
1389// stack. It holds a pointer to the bottom of the root function frame. The
1390// establisher frame pointer passed to a nested funclet may point to the
1391// (mostly empty) frame of its parent funclet, but it will need to find
1392// the frame of the root function to access locals. To facilitate this,
1393// every funclet copies the pointer to the bottom of the root function
1394// frame into a PSPSym slot in its own (mostly empty) stack frame. Using the
1395// same offset for the PSPSym in the root function frame that's used in the
1396// funclets' frames allows each funclet to dynamically accept any ancestor
1397// frame as its establisher argument (the runtime doesn't guarantee the
1398// immediate parent for some reason lost to history), and also allows the GC,
1399// which uses the PSPSym for some bookkeeping, to find it in any funclet's
1400// frame with only a single offset reported for the entire method.
1401unsigned
1402X86FrameLowering::getPSPSlotOffsetFromSP(const MachineFunction &MF) const {
Reid Klecknerc20276d2015-11-17 21:10:25 +00001403 const WinEHFuncInfo &Info = *MF.getWinEHFuncInfo();
Joseph Tremoulet149c4332015-11-13 00:39:23 +00001404 // getFrameIndexReferenceFromSP has an out ref parameter for the stack
1405 // pointer register; pass a dummy that we ignore
1406 unsigned SPReg;
1407 int Offset = getFrameIndexReferenceFromSP(MF, Info.PSPSymFrameIdx, SPReg);
1408 assert(Offset >= 0);
1409 return static_cast<unsigned>(Offset);
1410}
1411
1412unsigned
1413X86FrameLowering::getWinEHFuncletFrameSize(const MachineFunction &MF) const {
Reid Kleckner28e49032015-10-16 23:43:27 +00001414 // This is the size of the pushed CSRs.
1415 unsigned CSSize =
1416 MF.getInfo<X86MachineFunctionInfo>()->getCalleeSavedFrameSize();
1417 // This is the amount of stack a funclet needs to allocate.
Joseph Tremoulet149c4332015-11-13 00:39:23 +00001418 unsigned UsedSize;
1419 EHPersonality Personality =
1420 classifyEHPersonality(MF.getFunction()->getPersonalityFn());
1421 if (Personality == EHPersonality::CoreCLR) {
1422 // CLR funclets need to hold enough space to include the PSPSym, at the
1423 // same offset from the stack pointer (immediately after the prolog) as it
1424 // resides at in the main function.
1425 UsedSize = getPSPSlotOffsetFromSP(MF) + SlotSize;
1426 } else {
1427 // Other funclets just need enough stack for outgoing call arguments.
1428 UsedSize = MF.getFrameInfo()->getMaxCallFrameSize();
1429 }
Reid Kleckner28e49032015-10-16 23:43:27 +00001430 // RBP is not included in the callee saved register block. After pushing RBP,
1431 // everything is 16 byte aligned. Everything we allocate before an outgoing
1432 // call must also be 16 byte aligned.
1433 unsigned FrameSizeMinusRBP =
Joseph Tremoulet149c4332015-11-13 00:39:23 +00001434 RoundUpToAlignment(CSSize + UsedSize, getStackAlignment());
Reid Kleckner28e49032015-10-16 23:43:27 +00001435 // Subtract out the size of the callee saved registers. This is how much stack
1436 // each funclet will allocate.
1437 return FrameSizeMinusRBP - CSSize;
1438}
1439
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001440void X86FrameLowering::emitEpilogue(MachineFunction &MF,
1441 MachineBasicBlock &MBB) const {
1442 const MachineFrameInfo *MFI = MF.getFrameInfo();
1443 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
Quentin Colombetaa8020752015-05-27 06:28:41 +00001444 MachineBasicBlock::iterator MBBI = MBB.getFirstTerminator();
1445 DebugLoc DL;
1446 if (MBBI != MBB.end())
1447 DL = MBBI->getDebugLoc();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001448 // standard x86_64 and NaCl use 64-bit frame/stack pointers, x32 - 32-bit.
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001449 const bool Is64BitILP32 = STI.isTarget64BitILP32();
Reid Kleckner034ea962015-06-18 20:32:02 +00001450 unsigned FramePtr = TRI->getFrameRegister(MF);
Eric Christopher05b81972015-02-02 17:38:43 +00001451 unsigned MachineFramePtr =
Craig Topper91dab7b2015-12-25 22:09:45 +00001452 Is64BitILP32 ? getX86SubSuperRegister(FramePtr, 64) : FramePtr;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001453
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001454 bool IsWin64Prologue = MF.getTarget().getMCAsmInfo()->usesWindowsCFI();
1455 bool NeedsWinCFI =
1456 IsWin64Prologue && MF.getFunction()->needsUnwindTableEntry();
Reid Kleckner97797412015-10-07 23:55:01 +00001457 bool IsFunclet = isFuncletReturnInstr(MBBI);
Reid Kleckner51460c12015-11-06 01:49:05 +00001458 MachineBasicBlock *TargetMBB = nullptr;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001459
1460 // Get the number of bytes to allocate from the FrameInfo.
1461 uint64_t StackSize = MFI->getStackSize();
David Majnemer93c22a42015-02-10 00:57:42 +00001462 uint64_t MaxAlign = calculateMaxStackAlign(MF);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001463 unsigned CSSize = X86FI->getCalleeSavedFrameSize();
1464 uint64_t NumBytes = 0;
1465
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00001466 if (MBBI->getOpcode() == X86::CATCHRET) {
Reid Kleckner51460c12015-11-06 01:49:05 +00001467 // SEH shouldn't use catchret.
1468 assert(!isAsynchronousEHPersonality(
1469 classifyEHPersonality(MF.getFunction()->getPersonalityFn())) &&
1470 "SEH should not use CATCHRET");
1471
Reid Kleckner28e49032015-10-16 23:43:27 +00001472 NumBytes = getWinEHFuncletFrameSize(MF);
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00001473 assert(hasFP(MF) && "EH funclets without FP not yet implemented");
Reid Kleckner51460c12015-11-06 01:49:05 +00001474 TargetMBB = MBBI->getOperand(0).getMBB();
David Majnemer91b0ab92015-09-29 22:33:36 +00001475
Reid Klecknerda6dcc52015-09-10 22:00:02 +00001476 // Pop EBP.
1477 BuildMI(MBB, MBBI, DL, TII.get(Is64Bit ? X86::POP64r : X86::POP32r),
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00001478 MachineFramePtr)
1479 .setMIFlag(MachineInstr::FrameDestroy);
David Majnemer91b0ab92015-09-29 22:33:36 +00001480 } else if (MBBI->getOpcode() == X86::CLEANUPRET) {
Reid Kleckner28e49032015-10-16 23:43:27 +00001481 NumBytes = getWinEHFuncletFrameSize(MF);
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00001482 assert(hasFP(MF) && "EH funclets without FP not yet implemented");
1483 BuildMI(MBB, MBBI, DL, TII.get(Is64Bit ? X86::POP64r : X86::POP32r),
1484 MachineFramePtr)
1485 .setMIFlag(MachineInstr::FrameDestroy);
Reid Klecknerdf129512015-09-08 22:44:41 +00001486 } else if (hasFP(MF)) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001487 // Calculate required stack adjustment.
1488 uint64_t FrameSize = StackSize - SlotSize;
David Majnemer89d05642015-02-21 01:04:47 +00001489 NumBytes = FrameSize - CSSize;
1490
1491 // Callee-saved registers were pushed on stack before the stack was
1492 // realigned.
Reid Kleckner034ea962015-06-18 20:32:02 +00001493 if (TRI->needsStackRealignment(MF) && !IsWin64Prologue)
David Majnemer89d05642015-02-21 01:04:47 +00001494 NumBytes = RoundUpToAlignment(FrameSize, MaxAlign);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001495
1496 // Pop EBP.
1497 BuildMI(MBB, MBBI, DL,
Michael Kuperstein098cd9f2015-09-16 11:18:25 +00001498 TII.get(Is64Bit ? X86::POP64r : X86::POP32r), MachineFramePtr)
1499 .setMIFlag(MachineInstr::FrameDestroy);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001500 } else {
1501 NumBytes = StackSize - CSSize;
1502 }
David Majnemer93c22a42015-02-10 00:57:42 +00001503 uint64_t SEHStackAllocAmt = NumBytes;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001504
1505 // Skip the callee-saved pop instructions.
1506 while (MBBI != MBB.begin()) {
1507 MachineBasicBlock::iterator PI = std::prev(MBBI);
1508 unsigned Opc = PI->getOpcode();
1509
Michael Kuperstein098cd9f2015-09-16 11:18:25 +00001510 if ((Opc != X86::POP32r || !PI->getFlag(MachineInstr::FrameDestroy)) &&
1511 (Opc != X86::POP64r || !PI->getFlag(MachineInstr::FrameDestroy)) &&
1512 Opc != X86::DBG_VALUE && !PI->isTerminator())
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001513 break;
1514
1515 --MBBI;
1516 }
1517 MachineBasicBlock::iterator FirstCSPop = MBBI;
1518
Reid Kleckner51460c12015-11-06 01:49:05 +00001519 if (TargetMBB) {
David Majnemer35d27b22015-10-09 22:18:45 +00001520 // Fill EAX/RAX with the address of the target block.
1521 unsigned ReturnReg = STI.is64Bit() ? X86::RAX : X86::EAX;
1522 if (STI.is64Bit()) {
Reid Kleckner51460c12015-11-06 01:49:05 +00001523 // LEA64r TargetMBB(%rip), %rax
David Majnemer35d27b22015-10-09 22:18:45 +00001524 BuildMI(MBB, FirstCSPop, DL, TII.get(X86::LEA64r), ReturnReg)
1525 .addReg(X86::RIP)
1526 .addImm(0)
1527 .addReg(0)
Reid Kleckner51460c12015-11-06 01:49:05 +00001528 .addMBB(TargetMBB)
David Majnemer35d27b22015-10-09 22:18:45 +00001529 .addReg(0);
1530 } else {
Reid Kleckner51460c12015-11-06 01:49:05 +00001531 // MOV32ri $TargetMBB, %eax
Reid Kleckner64b003f2015-11-09 21:04:00 +00001532 BuildMI(MBB, FirstCSPop, DL, TII.get(X86::MOV32ri), ReturnReg)
Reid Kleckner51460c12015-11-06 01:49:05 +00001533 .addMBB(TargetMBB);
David Majnemer35d27b22015-10-09 22:18:45 +00001534 }
Reid Kleckner51460c12015-11-06 01:49:05 +00001535 // Record that we've taken the address of TargetMBB and no longer just
Joseph Tremoulet3d0fbf12015-10-23 15:06:05 +00001536 // reference it in a terminator.
Reid Kleckner51460c12015-11-06 01:49:05 +00001537 TargetMBB->setHasAddressTaken();
David Majnemer35d27b22015-10-09 22:18:45 +00001538 }
1539
Quentin Colombetaa8020752015-05-27 06:28:41 +00001540 if (MBBI != MBB.end())
1541 DL = MBBI->getDebugLoc();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001542
1543 // If there is an ADD32ri or SUB32ri of ESP immediately before this
1544 // instruction, merge the two instructions.
1545 if (NumBytes || MFI->hasVarSizedObjects())
Michael Kupersteincba308c2015-07-28 08:56:13 +00001546 NumBytes += mergeSPUpdates(MBB, MBBI, true);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001547
1548 // If dynamic alloca is used, then reset esp to point to the last callee-saved
1549 // slot before popping them off! Same applies for the case, when stack was
Reid Kleckner97797412015-10-07 23:55:01 +00001550 // realigned. Don't do this if this was a funclet epilogue, since the funclets
1551 // will not do realignment or dynamic stack allocation.
1552 if ((TRI->needsStackRealignment(MF) || MFI->hasVarSizedObjects()) &&
1553 !IsFunclet) {
Reid Kleckner034ea962015-06-18 20:32:02 +00001554 if (TRI->needsStackRealignment(MF))
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001555 MBBI = FirstCSPop;
David Majnemere1bbad92015-02-25 21:13:37 +00001556 unsigned SEHFrameOffset = calculateSetFPREG(SEHStackAllocAmt);
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001557 uint64_t LEAAmount =
1558 IsWin64Prologue ? SEHStackAllocAmt - SEHFrameOffset : -CSSize;
David Majnemere1bbad92015-02-25 21:13:37 +00001559
1560 // There are only two legal forms of epilogue:
1561 // - add SEHAllocationSize, %rsp
1562 // - lea SEHAllocationSize(%FramePtr), %rsp
1563 //
1564 // 'mov %FramePtr, %rsp' will not be recognized as an epilogue sequence.
1565 // However, we may use this sequence if we have a frame pointer because the
1566 // effects of the prologue can safely be undone.
1567 if (LEAAmount != 0) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001568 unsigned Opc = getLEArOpcode(Uses64BitFramePtr);
1569 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(Opc), StackPtr),
David Majnemere1bbad92015-02-25 21:13:37 +00001570 FramePtr, false, LEAAmount);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001571 --MBBI;
1572 } else {
1573 unsigned Opc = (Uses64BitFramePtr ? X86::MOV64rr : X86::MOV32rr);
1574 BuildMI(MBB, MBBI, DL, TII.get(Opc), StackPtr)
1575 .addReg(FramePtr);
1576 --MBBI;
1577 }
1578 } else if (NumBytes) {
1579 // Adjust stack pointer back: ESP += numbytes.
Reid Kleckner98d78032015-06-18 20:22:12 +00001580 emitSPUpdate(MBB, MBBI, NumBytes, /*InEpilogue=*/true);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001581 --MBBI;
1582 }
1583
1584 // Windows unwinder will not invoke function's exception handler if IP is
1585 // either in prologue or in epilogue. This behavior causes a problem when a
1586 // call immediately precedes an epilogue, because the return address points
1587 // into the epilogue. To cope with that, we insert an epilogue marker here,
1588 // then replace it with a 'nop' if it ends up immediately after a CALL in the
1589 // final emitted code.
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001590 if (NeedsWinCFI)
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001591 BuildMI(MBB, MBBI, DL, TII.get(X86::SEH_Epilogue));
1592
Quentin Colombet494eb602015-05-22 18:10:47 +00001593 // Add the return addr area delta back since we are not tail calling.
1594 int Offset = -1 * X86FI->getTCReturnAddrDelta();
1595 assert(Offset >= 0 && "TCDelta should never be positive");
1596 if (Offset) {
1597 MBBI = MBB.getFirstTerminator();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001598
1599 // Check for possible merge with preceding ADD instruction.
Reid Kleckner3854f7b2015-06-18 18:03:25 +00001600 Offset += mergeSPUpdates(MBB, MBBI, true);
Reid Kleckner98d78032015-06-18 20:22:12 +00001601 emitSPUpdate(MBB, MBBI, Offset, /*InEpilogue=*/true);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001602 }
1603}
1604
James Y Knight5567baf2015-08-15 02:32:35 +00001605// NOTE: this only has a subset of the full frame index logic. In
1606// particular, the FI < 0 and AfterFPPop logic is handled in
1607// X86RegisterInfo::eliminateFrameIndex, but not here. Possibly
1608// (probably?) it should be moved into here.
1609int X86FrameLowering::getFrameIndexReference(const MachineFunction &MF, int FI,
1610 unsigned &FrameReg) const {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001611 const MachineFrameInfo *MFI = MF.getFrameInfo();
James Y Knight5567baf2015-08-15 02:32:35 +00001612
1613 // We can't calculate offset from frame pointer if the stack is realigned,
1614 // so enforce usage of stack/base pointer. The base pointer is used when we
1615 // have dynamic allocas in addition to dynamic realignment.
1616 if (TRI->hasBasePointer(MF))
1617 FrameReg = TRI->getBaseRegister();
1618 else if (TRI->needsStackRealignment(MF))
1619 FrameReg = TRI->getStackRegister();
1620 else
1621 FrameReg = TRI->getFrameRegister(MF);
1622
David Majnemer93c22a42015-02-10 00:57:42 +00001623 // Offset will hold the offset from the stack pointer at function entry to the
1624 // object.
1625 // We need to factor in additional offsets applied during the prologue to the
1626 // frame, base, and stack pointer depending on which is used.
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001627 int Offset = MFI->getObjectOffset(FI) - getOffsetOfLocalArea();
David Majnemer93c22a42015-02-10 00:57:42 +00001628 const X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
1629 unsigned CSSize = X86FI->getCalleeSavedFrameSize();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001630 uint64_t StackSize = MFI->getStackSize();
David Majnemer93c22a42015-02-10 00:57:42 +00001631 bool HasFP = hasFP(MF);
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001632 bool IsWin64Prologue = MF.getTarget().getMCAsmInfo()->usesWindowsCFI();
David Majnemer93c22a42015-02-10 00:57:42 +00001633 int64_t FPDelta = 0;
1634
Reid Kleckner1c140bd2015-06-16 18:08:57 +00001635 if (IsWin64Prologue) {
David Majnemer89d05642015-02-21 01:04:47 +00001636 assert(!MFI->hasCalls() || (StackSize % 16) == 8);
1637
David Majnemer93c22a42015-02-10 00:57:42 +00001638 // Calculate required stack adjustment.
1639 uint64_t FrameSize = StackSize - SlotSize;
1640 // If required, include space for extra hidden slot for stashing base pointer.
1641 if (X86FI->getRestoreBasePointer())
1642 FrameSize += SlotSize;
David Majnemer89d05642015-02-21 01:04:47 +00001643 uint64_t NumBytes = FrameSize - CSSize;
David Majnemer93c22a42015-02-10 00:57:42 +00001644
David Majnemer93c22a42015-02-10 00:57:42 +00001645 uint64_t SEHFrameOffset = calculateSetFPREG(NumBytes);
David Majnemer13d0b112015-02-10 21:22:05 +00001646 if (FI && FI == X86FI->getFAIndex())
1647 return -SEHFrameOffset;
1648
David Majnemer93c22a42015-02-10 00:57:42 +00001649 // FPDelta is the offset from the "traditional" FP location of the old base
1650 // pointer followed by return address and the location required by the
1651 // restricted Win64 prologue.
1652 // Add FPDelta to all offsets below that go through the frame pointer.
David Majnemer89d05642015-02-21 01:04:47 +00001653 FPDelta = FrameSize - SEHFrameOffset;
1654 assert((!MFI->hasCalls() || (FPDelta % 16) == 0) &&
1655 "FPDelta isn't aligned per the Win64 ABI!");
David Majnemer93c22a42015-02-10 00:57:42 +00001656 }
1657
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001658
Reid Kleckner034ea962015-06-18 20:32:02 +00001659 if (TRI->hasBasePointer(MF)) {
David Majnemer93c22a42015-02-10 00:57:42 +00001660 assert(HasFP && "VLAs and dynamic stack realign, but no FP?!");
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001661 if (FI < 0) {
1662 // Skip the saved EBP.
David Majnemer93c22a42015-02-10 00:57:42 +00001663 return Offset + SlotSize + FPDelta;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001664 } else {
1665 assert((-(Offset + StackSize)) % MFI->getObjectAlignment(FI) == 0);
1666 return Offset + StackSize;
1667 }
Reid Kleckner034ea962015-06-18 20:32:02 +00001668 } else if (TRI->needsStackRealignment(MF)) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001669 if (FI < 0) {
1670 // Skip the saved EBP.
David Majnemer93c22a42015-02-10 00:57:42 +00001671 return Offset + SlotSize + FPDelta;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001672 } else {
1673 assert((-(Offset + StackSize)) % MFI->getObjectAlignment(FI) == 0);
1674 return Offset + StackSize;
1675 }
1676 // FIXME: Support tail calls
1677 } else {
David Majnemer93c22a42015-02-10 00:57:42 +00001678 if (!HasFP)
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001679 return Offset + StackSize;
1680
1681 // Skip the saved EBP.
David Majnemer93c22a42015-02-10 00:57:42 +00001682 Offset += SlotSize;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001683
1684 // Skip the RETADDR move area
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001685 int TailCallReturnAddrDelta = X86FI->getTCReturnAddrDelta();
1686 if (TailCallReturnAddrDelta < 0)
1687 Offset -= TailCallReturnAddrDelta;
1688 }
1689
David Majnemer89d05642015-02-21 01:04:47 +00001690 return Offset + FPDelta;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001691}
1692
James Y Knight5567baf2015-08-15 02:32:35 +00001693// Simplified from getFrameIndexReference keeping only StackPointer cases
1694int X86FrameLowering::getFrameIndexReferenceFromSP(const MachineFunction &MF,
1695 int FI,
1696 unsigned &FrameReg) const {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001697 const MachineFrameInfo *MFI = MF.getFrameInfo();
1698 // Does not include any dynamic realign.
1699 const uint64_t StackSize = MFI->getStackSize();
1700 {
1701#ifndef NDEBUG
Reid Kleckner6ddae312015-11-05 21:09:49 +00001702 // LLVM arranges the stack as follows:
1703 // ...
1704 // ARG2
1705 // ARG1
1706 // RETADDR
1707 // PUSH RBP <-- RBP points here
1708 // PUSH CSRs
Reid Kleckner94b57062015-11-13 19:06:01 +00001709 // ~~~~~~~ <-- possible stack realignment (non-win64)
Reid Kleckner6ddae312015-11-05 21:09:49 +00001710 // ...
1711 // STACK OBJECTS
1712 // ... <-- RSP after prologue points here
Reid Kleckner94b57062015-11-13 19:06:01 +00001713 // ~~~~~~~ <-- possible stack realignment (win64)
Reid Kleckner6ddae312015-11-05 21:09:49 +00001714 //
1715 // if (hasVarSizedObjects()):
1716 // ... <-- "base pointer" (ESI/RBX) points here
1717 // DYNAMIC ALLOCAS
1718 // ... <-- RSP points here
1719 //
1720 // Case 1: In the simple case of no stack realignment and no dynamic
1721 // allocas, both "fixed" stack objects (arguments and CSRs) are addressable
1722 // with fixed offsets from RSP.
1723 //
1724 // Case 2: In the case of stack realignment with no dynamic allocas, fixed
1725 // stack objects are addressed with RBP and regular stack objects with RSP.
1726 //
1727 // Case 3: In the case of dynamic allocas and stack realignment, RSP is used
1728 // to address stack arguments for outgoing calls and nothing else. The "base
1729 // pointer" points to local variables, and RBP points to fixed objects.
1730 //
1731 // In cases 2 and 3, we can only answer for non-fixed stack objects, and the
1732 // answer we give is relative to the SP after the prologue, and not the
1733 // SP in the middle of the function.
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001734
Reid Kleckner94b57062015-11-13 19:06:01 +00001735 assert((!MFI->isFixedObjectIndex(FI) || !TRI->needsStackRealignment(MF) ||
1736 STI.isTargetWin64()) &&
Reid Kleckner6ddae312015-11-05 21:09:49 +00001737 "offset from fixed object to SP is not static");
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001738
Reid Kleckner6ddae312015-11-05 21:09:49 +00001739 // We don't handle tail calls, and shouldn't be seeing them either.
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001740 int TailCallReturnAddrDelta =
1741 MF.getInfo<X86MachineFunctionInfo>()->getTCReturnAddrDelta();
1742 assert(!(TailCallReturnAddrDelta < 0) && "we don't handle this case!");
1743#endif
1744 }
1745
James Y Knight5567baf2015-08-15 02:32:35 +00001746 // Fill in FrameReg output argument.
1747 FrameReg = TRI->getStackRegister();
1748
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001749 // This is how the math works out:
1750 //
1751 // %rsp grows (i.e. gets lower) left to right. Each box below is
1752 // one word (eight bytes). Obj0 is the stack slot we're trying to
1753 // get to.
1754 //
1755 // ----------------------------------
1756 // | BP | Obj0 | Obj1 | ... | ObjN |
1757 // ----------------------------------
1758 // ^ ^ ^ ^
1759 // A B C E
1760 //
1761 // A is the incoming stack pointer.
1762 // (B - A) is the local area offset (-8 for x86-64) [1]
1763 // (C - A) is the Offset returned by MFI->getObjectOffset for Obj0 [2]
1764 //
1765 // |(E - B)| is the StackSize (absolute value, positive). For a
1766 // stack that grown down, this works out to be (B - E). [3]
1767 //
1768 // E is also the value of %rsp after stack has been set up, and we
1769 // want (C - E) -- the value we can add to %rsp to get to Obj0. Now
1770 // (C - E) == (C - A) - (B - A) + (B - E)
1771 // { Using [1], [2] and [3] above }
1772 // == getObjectOffset - LocalAreaOffset + StackSize
1773 //
1774
1775 // Get the Offset from the StackPointer
1776 int Offset = MFI->getObjectOffset(FI) - getOffsetOfLocalArea();
1777
1778 return Offset + StackSize;
1779}
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001780
1781bool X86FrameLowering::assignCalleeSavedSpillSlots(
1782 MachineFunction &MF, const TargetRegisterInfo *TRI,
1783 std::vector<CalleeSavedInfo> &CSI) const {
1784 MachineFrameInfo *MFI = MF.getFrameInfo();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001785 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
1786
1787 unsigned CalleeSavedFrameSize = 0;
1788 int SpillSlotOffset = getOffsetOfLocalArea() + X86FI->getTCReturnAddrDelta();
1789
1790 if (hasFP(MF)) {
1791 // emitPrologue always spills frame register the first thing.
1792 SpillSlotOffset -= SlotSize;
1793 MFI->CreateFixedSpillStackObject(SlotSize, SpillSlotOffset);
1794
1795 // Since emitPrologue and emitEpilogue will handle spilling and restoring of
1796 // the frame register, we can delete it from CSI list and not have to worry
1797 // about avoiding it later.
Reid Kleckner034ea962015-06-18 20:32:02 +00001798 unsigned FPReg = TRI->getFrameRegister(MF);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001799 for (unsigned i = 0; i < CSI.size(); ++i) {
1800 if (TRI->regsOverlap(CSI[i].getReg(),FPReg)) {
1801 CSI.erase(CSI.begin() + i);
1802 break;
1803 }
1804 }
1805 }
1806
1807 // Assign slots for GPRs. It increases frame size.
1808 for (unsigned i = CSI.size(); i != 0; --i) {
1809 unsigned Reg = CSI[i - 1].getReg();
1810
1811 if (!X86::GR64RegClass.contains(Reg) && !X86::GR32RegClass.contains(Reg))
1812 continue;
1813
1814 SpillSlotOffset -= SlotSize;
1815 CalleeSavedFrameSize += SlotSize;
1816
1817 int SlotIndex = MFI->CreateFixedSpillStackObject(SlotSize, SpillSlotOffset);
1818 CSI[i - 1].setFrameIdx(SlotIndex);
1819 }
1820
1821 X86FI->setCalleeSavedFrameSize(CalleeSavedFrameSize);
1822
1823 // Assign slots for XMMs.
1824 for (unsigned i = CSI.size(); i != 0; --i) {
1825 unsigned Reg = CSI[i - 1].getReg();
1826 if (X86::GR64RegClass.contains(Reg) || X86::GR32RegClass.contains(Reg))
1827 continue;
1828
Reid Kleckner034ea962015-06-18 20:32:02 +00001829 const TargetRegisterClass *RC = TRI->getMinimalPhysRegClass(Reg);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001830 // ensure alignment
1831 SpillSlotOffset -= std::abs(SpillSlotOffset) % RC->getAlignment();
1832 // spill into slot
1833 SpillSlotOffset -= RC->getSize();
1834 int SlotIndex =
1835 MFI->CreateFixedSpillStackObject(RC->getSize(), SpillSlotOffset);
1836 CSI[i - 1].setFrameIdx(SlotIndex);
1837 MFI->ensureMaxAlignment(RC->getAlignment());
1838 }
1839
1840 return true;
1841}
1842
1843bool X86FrameLowering::spillCalleeSavedRegisters(
1844 MachineBasicBlock &MBB, MachineBasicBlock::iterator MI,
1845 const std::vector<CalleeSavedInfo> &CSI,
1846 const TargetRegisterInfo *TRI) const {
1847 DebugLoc DL = MBB.findDebugLoc(MI);
1848
Reid Klecknerdf129512015-09-08 22:44:41 +00001849 // Don't save CSRs in 32-bit EH funclets. The caller saves EBX, EBP, ESI, EDI
1850 // for us, and there are no XMM CSRs on Win32.
1851 if (MBB.isEHFuncletEntry() && STI.is32Bit() && STI.isOSWindows())
1852 return true;
1853
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001854 // Push GPRs. It increases frame size.
1855 unsigned Opc = STI.is64Bit() ? X86::PUSH64r : X86::PUSH32r;
1856 for (unsigned i = CSI.size(); i != 0; --i) {
1857 unsigned Reg = CSI[i - 1].getReg();
1858
1859 if (!X86::GR64RegClass.contains(Reg) && !X86::GR32RegClass.contains(Reg))
1860 continue;
1861 // Add the callee-saved register as live-in. It's killed at the spill.
1862 MBB.addLiveIn(Reg);
1863
1864 BuildMI(MBB, MI, DL, TII.get(Opc)).addReg(Reg, RegState::Kill)
1865 .setMIFlag(MachineInstr::FrameSetup);
1866 }
1867
1868 // Make XMM regs spilled. X86 does not have ability of push/pop XMM.
1869 // It can be done by spilling XMMs to stack frame.
1870 for (unsigned i = CSI.size(); i != 0; --i) {
1871 unsigned Reg = CSI[i-1].getReg();
David Majnemera7d908e2015-02-10 19:01:47 +00001872 if (X86::GR64RegClass.contains(Reg) || X86::GR32RegClass.contains(Reg))
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001873 continue;
1874 // Add the callee-saved register as live-in. It's killed at the spill.
1875 MBB.addLiveIn(Reg);
1876 const TargetRegisterClass *RC = TRI->getMinimalPhysRegClass(Reg);
1877
1878 TII.storeRegToStackSlot(MBB, MI, Reg, true, CSI[i - 1].getFrameIdx(), RC,
1879 TRI);
1880 --MI;
1881 MI->setFlag(MachineInstr::FrameSetup);
1882 ++MI;
1883 }
1884
1885 return true;
1886}
1887
1888bool X86FrameLowering::restoreCalleeSavedRegisters(MachineBasicBlock &MBB,
1889 MachineBasicBlock::iterator MI,
1890 const std::vector<CalleeSavedInfo> &CSI,
1891 const TargetRegisterInfo *TRI) const {
1892 if (CSI.empty())
1893 return false;
1894
Reid Klecknerfc64fae2015-10-01 21:38:24 +00001895 if (isFuncletReturnInstr(MI) && STI.isOSWindows()) {
1896 // Don't restore CSRs in 32-bit EH funclets. Matches
1897 // spillCalleeSavedRegisters.
1898 if (STI.is32Bit())
1899 return true;
1900 // Don't restore CSRs before an SEH catchret. SEH except blocks do not form
1901 // funclets. emitEpilogue transforms these to normal jumps.
1902 if (MI->getOpcode() == X86::CATCHRET) {
1903 const Function *Func = MBB.getParent()->getFunction();
1904 bool IsSEH = isAsynchronousEHPersonality(
1905 classifyEHPersonality(Func->getPersonalityFn()));
1906 if (IsSEH)
1907 return true;
1908 }
1909 }
Reid Klecknerdf129512015-09-08 22:44:41 +00001910
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001911 DebugLoc DL = MBB.findDebugLoc(MI);
1912
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001913 // Reload XMMs from stack frame.
1914 for (unsigned i = 0, e = CSI.size(); i != e; ++i) {
1915 unsigned Reg = CSI[i].getReg();
1916 if (X86::GR64RegClass.contains(Reg) ||
1917 X86::GR32RegClass.contains(Reg))
1918 continue;
1919
1920 const TargetRegisterClass *RC = TRI->getMinimalPhysRegClass(Reg);
1921 TII.loadRegFromStackSlot(MBB, MI, Reg, CSI[i].getFrameIdx(), RC, TRI);
1922 }
1923
1924 // POP GPRs.
1925 unsigned Opc = STI.is64Bit() ? X86::POP64r : X86::POP32r;
1926 for (unsigned i = 0, e = CSI.size(); i != e; ++i) {
1927 unsigned Reg = CSI[i].getReg();
1928 if (!X86::GR64RegClass.contains(Reg) &&
1929 !X86::GR32RegClass.contains(Reg))
1930 continue;
1931
Michael Kuperstein098cd9f2015-09-16 11:18:25 +00001932 BuildMI(MBB, MI, DL, TII.get(Opc), Reg)
1933 .setMIFlag(MachineInstr::FrameDestroy);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001934 }
1935 return true;
1936}
1937
Matthias Braun02564862015-07-14 17:17:13 +00001938void X86FrameLowering::determineCalleeSaves(MachineFunction &MF,
1939 BitVector &SavedRegs,
1940 RegScavenger *RS) const {
1941 TargetFrameLowering::determineCalleeSaves(MF, SavedRegs, RS);
1942
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001943 MachineFrameInfo *MFI = MF.getFrameInfo();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001944
1945 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
1946 int64_t TailCallReturnAddrDelta = X86FI->getTCReturnAddrDelta();
1947
1948 if (TailCallReturnAddrDelta < 0) {
1949 // create RETURNADDR area
1950 // arg
1951 // arg
1952 // RETADDR
1953 // { ...
1954 // RETADDR area
1955 // ...
1956 // }
1957 // [EBP]
1958 MFI->CreateFixedObject(-TailCallReturnAddrDelta,
1959 TailCallReturnAddrDelta - SlotSize, true);
1960 }
1961
1962 // Spill the BasePtr if it's used.
Reid Klecknerdf129512015-09-08 22:44:41 +00001963 if (TRI->hasBasePointer(MF)) {
Matthias Braun02564862015-07-14 17:17:13 +00001964 SavedRegs.set(TRI->getBaseRegister());
Reid Klecknerdf129512015-09-08 22:44:41 +00001965
1966 // Allocate a spill slot for EBP if we have a base pointer and EH funclets.
1967 if (MF.getMMI().hasEHFunclets()) {
1968 int FI = MFI->CreateSpillStackObject(SlotSize, SlotSize);
1969 X86FI->setHasSEHFramePtrSave(true);
1970 X86FI->setSEHFramePtrSaveIndex(FI);
1971 }
1972 }
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00001973}
1974
1975static bool
1976HasNestArgument(const MachineFunction *MF) {
1977 const Function *F = MF->getFunction();
1978 for (Function::const_arg_iterator I = F->arg_begin(), E = F->arg_end();
1979 I != E; I++) {
1980 if (I->hasNestAttr())
1981 return true;
1982 }
1983 return false;
1984}
1985
1986/// GetScratchRegister - Get a temp register for performing work in the
1987/// segmented stack and the Erlang/HiPE stack prologue. Depending on platform
1988/// and the properties of the function either one or two registers will be
1989/// needed. Set primary to true for the first register, false for the second.
1990static unsigned
1991GetScratchRegister(bool Is64Bit, bool IsLP64, const MachineFunction &MF, bool Primary) {
1992 CallingConv::ID CallingConvention = MF.getFunction()->getCallingConv();
1993
1994 // Erlang stuff.
1995 if (CallingConvention == CallingConv::HiPE) {
1996 if (Is64Bit)
1997 return Primary ? X86::R14 : X86::R13;
1998 else
1999 return Primary ? X86::EBX : X86::EDI;
2000 }
2001
2002 if (Is64Bit) {
2003 if (IsLP64)
2004 return Primary ? X86::R11 : X86::R12;
2005 else
2006 return Primary ? X86::R11D : X86::R12D;
2007 }
2008
2009 bool IsNested = HasNestArgument(&MF);
2010
2011 if (CallingConvention == CallingConv::X86_FastCall ||
2012 CallingConvention == CallingConv::Fast) {
2013 if (IsNested)
2014 report_fatal_error("Segmented stacks does not support fastcall with "
2015 "nested function.");
2016 return Primary ? X86::EAX : X86::ECX;
2017 }
2018 if (IsNested)
2019 return Primary ? X86::EDX : X86::EAX;
2020 return Primary ? X86::ECX : X86::EAX;
2021}
2022
2023// The stack limit in the TCB is set to this many bytes above the actual stack
2024// limit.
2025static const uint64_t kSplitStackAvailable = 256;
2026
Quentin Colombet61b305e2015-05-05 17:38:16 +00002027void X86FrameLowering::adjustForSegmentedStacks(
2028 MachineFunction &MF, MachineBasicBlock &PrologueMBB) const {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002029 MachineFrameInfo *MFI = MF.getFrameInfo();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002030 uint64_t StackSize;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002031 unsigned TlsReg, TlsOffset;
2032 DebugLoc DL;
2033
2034 unsigned ScratchReg = GetScratchRegister(Is64Bit, IsLP64, MF, true);
2035 assert(!MF.getRegInfo().isLiveIn(ScratchReg) &&
2036 "Scratch register is live-in");
2037
2038 if (MF.getFunction()->isVarArg())
2039 report_fatal_error("Segmented stacks do not support vararg functions.");
2040 if (!STI.isTargetLinux() && !STI.isTargetDarwin() && !STI.isTargetWin32() &&
2041 !STI.isTargetWin64() && !STI.isTargetFreeBSD() &&
2042 !STI.isTargetDragonFly())
2043 report_fatal_error("Segmented stacks not supported on this platform.");
2044
2045 // Eventually StackSize will be calculated by a link-time pass; which will
2046 // also decide whether checking code needs to be injected into this particular
2047 // prologue.
2048 StackSize = MFI->getStackSize();
2049
2050 // Do not generate a prologue for functions with a stack of size zero
2051 if (StackSize == 0)
2052 return;
2053
2054 MachineBasicBlock *allocMBB = MF.CreateMachineBasicBlock();
2055 MachineBasicBlock *checkMBB = MF.CreateMachineBasicBlock();
2056 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
2057 bool IsNested = false;
2058
2059 // We need to know if the function has a nest argument only in 64 bit mode.
2060 if (Is64Bit)
2061 IsNested = HasNestArgument(&MF);
2062
2063 // The MOV R10, RAX needs to be in a different block, since the RET we emit in
2064 // allocMBB needs to be last (terminating) instruction.
2065
Matthias Braund9da1622015-09-09 18:08:03 +00002066 for (const auto &LI : PrologueMBB.liveins()) {
Matthias Braunb2b7ef12015-08-24 22:59:52 +00002067 allocMBB->addLiveIn(LI);
2068 checkMBB->addLiveIn(LI);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002069 }
2070
2071 if (IsNested)
2072 allocMBB->addLiveIn(IsLP64 ? X86::R10 : X86::R10D);
2073
2074 MF.push_front(allocMBB);
2075 MF.push_front(checkMBB);
2076
2077 // When the frame size is less than 256 we just compare the stack
2078 // boundary directly to the value of the stack pointer, per gcc.
2079 bool CompareStackPointer = StackSize < kSplitStackAvailable;
2080
2081 // Read the limit off the current stacklet off the stack_guard location.
2082 if (Is64Bit) {
2083 if (STI.isTargetLinux()) {
2084 TlsReg = X86::FS;
2085 TlsOffset = IsLP64 ? 0x70 : 0x40;
2086 } else if (STI.isTargetDarwin()) {
2087 TlsReg = X86::GS;
2088 TlsOffset = 0x60 + 90*8; // See pthread_machdep.h. Steal TLS slot 90.
2089 } else if (STI.isTargetWin64()) {
2090 TlsReg = X86::GS;
2091 TlsOffset = 0x28; // pvArbitrary, reserved for application use
2092 } else if (STI.isTargetFreeBSD()) {
2093 TlsReg = X86::FS;
2094 TlsOffset = 0x18;
2095 } else if (STI.isTargetDragonFly()) {
2096 TlsReg = X86::FS;
2097 TlsOffset = 0x20; // use tls_tcb.tcb_segstack
2098 } else {
2099 report_fatal_error("Segmented stacks not supported on this platform.");
2100 }
2101
2102 if (CompareStackPointer)
2103 ScratchReg = IsLP64 ? X86::RSP : X86::ESP;
2104 else
2105 BuildMI(checkMBB, DL, TII.get(IsLP64 ? X86::LEA64r : X86::LEA64_32r), ScratchReg).addReg(X86::RSP)
2106 .addImm(1).addReg(0).addImm(-StackSize).addReg(0);
2107
2108 BuildMI(checkMBB, DL, TII.get(IsLP64 ? X86::CMP64rm : X86::CMP32rm)).addReg(ScratchReg)
2109 .addReg(0).addImm(1).addReg(0).addImm(TlsOffset).addReg(TlsReg);
2110 } else {
2111 if (STI.isTargetLinux()) {
2112 TlsReg = X86::GS;
2113 TlsOffset = 0x30;
2114 } else if (STI.isTargetDarwin()) {
2115 TlsReg = X86::GS;
2116 TlsOffset = 0x48 + 90*4;
2117 } else if (STI.isTargetWin32()) {
2118 TlsReg = X86::FS;
2119 TlsOffset = 0x14; // pvArbitrary, reserved for application use
2120 } else if (STI.isTargetDragonFly()) {
2121 TlsReg = X86::FS;
2122 TlsOffset = 0x10; // use tls_tcb.tcb_segstack
2123 } else if (STI.isTargetFreeBSD()) {
2124 report_fatal_error("Segmented stacks not supported on FreeBSD i386.");
2125 } else {
2126 report_fatal_error("Segmented stacks not supported on this platform.");
2127 }
2128
2129 if (CompareStackPointer)
2130 ScratchReg = X86::ESP;
2131 else
2132 BuildMI(checkMBB, DL, TII.get(X86::LEA32r), ScratchReg).addReg(X86::ESP)
2133 .addImm(1).addReg(0).addImm(-StackSize).addReg(0);
2134
2135 if (STI.isTargetLinux() || STI.isTargetWin32() || STI.isTargetWin64() ||
2136 STI.isTargetDragonFly()) {
2137 BuildMI(checkMBB, DL, TII.get(X86::CMP32rm)).addReg(ScratchReg)
2138 .addReg(0).addImm(0).addReg(0).addImm(TlsOffset).addReg(TlsReg);
2139 } else if (STI.isTargetDarwin()) {
2140
2141 // TlsOffset doesn't fit into a mod r/m byte so we need an extra register.
2142 unsigned ScratchReg2;
2143 bool SaveScratch2;
2144 if (CompareStackPointer) {
2145 // The primary scratch register is available for holding the TLS offset.
2146 ScratchReg2 = GetScratchRegister(Is64Bit, IsLP64, MF, true);
2147 SaveScratch2 = false;
2148 } else {
2149 // Need to use a second register to hold the TLS offset
2150 ScratchReg2 = GetScratchRegister(Is64Bit, IsLP64, MF, false);
2151
2152 // Unfortunately, with fastcc the second scratch register may hold an
2153 // argument.
2154 SaveScratch2 = MF.getRegInfo().isLiveIn(ScratchReg2);
2155 }
2156
2157 // If Scratch2 is live-in then it needs to be saved.
2158 assert((!MF.getRegInfo().isLiveIn(ScratchReg2) || SaveScratch2) &&
2159 "Scratch register is live-in and not saved");
2160
2161 if (SaveScratch2)
2162 BuildMI(checkMBB, DL, TII.get(X86::PUSH32r))
2163 .addReg(ScratchReg2, RegState::Kill);
2164
2165 BuildMI(checkMBB, DL, TII.get(X86::MOV32ri), ScratchReg2)
2166 .addImm(TlsOffset);
2167 BuildMI(checkMBB, DL, TII.get(X86::CMP32rm))
2168 .addReg(ScratchReg)
2169 .addReg(ScratchReg2).addImm(1).addReg(0)
2170 .addImm(0)
2171 .addReg(TlsReg);
2172
2173 if (SaveScratch2)
2174 BuildMI(checkMBB, DL, TII.get(X86::POP32r), ScratchReg2);
2175 }
2176 }
2177
2178 // This jump is taken if SP >= (Stacklet Limit + Stack Space required).
2179 // It jumps to normal execution of the function body.
Quentin Colombet61b305e2015-05-05 17:38:16 +00002180 BuildMI(checkMBB, DL, TII.get(X86::JA_1)).addMBB(&PrologueMBB);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002181
2182 // On 32 bit we first push the arguments size and then the frame size. On 64
2183 // bit, we pass the stack frame size in r10 and the argument size in r11.
2184 if (Is64Bit) {
2185 // Functions with nested arguments use R10, so it needs to be saved across
2186 // the call to _morestack
2187
2188 const unsigned RegAX = IsLP64 ? X86::RAX : X86::EAX;
2189 const unsigned Reg10 = IsLP64 ? X86::R10 : X86::R10D;
2190 const unsigned Reg11 = IsLP64 ? X86::R11 : X86::R11D;
2191 const unsigned MOVrr = IsLP64 ? X86::MOV64rr : X86::MOV32rr;
2192 const unsigned MOVri = IsLP64 ? X86::MOV64ri : X86::MOV32ri;
2193
2194 if (IsNested)
2195 BuildMI(allocMBB, DL, TII.get(MOVrr), RegAX).addReg(Reg10);
2196
2197 BuildMI(allocMBB, DL, TII.get(MOVri), Reg10)
2198 .addImm(StackSize);
2199 BuildMI(allocMBB, DL, TII.get(MOVri), Reg11)
2200 .addImm(X86FI->getArgumentStackSize());
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002201 } else {
2202 BuildMI(allocMBB, DL, TII.get(X86::PUSHi32))
2203 .addImm(X86FI->getArgumentStackSize());
2204 BuildMI(allocMBB, DL, TII.get(X86::PUSHi32))
2205 .addImm(StackSize);
2206 }
2207
2208 // __morestack is in libgcc
2209 if (Is64Bit && MF.getTarget().getCodeModel() == CodeModel::Large) {
2210 // Under the large code model, we cannot assume that __morestack lives
2211 // within 2^31 bytes of the call site, so we cannot use pc-relative
2212 // addressing. We cannot perform the call via a temporary register,
2213 // as the rax register may be used to store the static chain, and all
2214 // other suitable registers may be either callee-save or used for
2215 // parameter passing. We cannot use the stack at this point either
2216 // because __morestack manipulates the stack directly.
2217 //
2218 // To avoid these issues, perform an indirect call via a read-only memory
2219 // location containing the address.
2220 //
2221 // This solution is not perfect, as it assumes that the .rodata section
2222 // is laid out within 2^31 bytes of each function body, but this seems
2223 // to be sufficient for JIT.
2224 BuildMI(allocMBB, DL, TII.get(X86::CALL64m))
2225 .addReg(X86::RIP)
2226 .addImm(0)
2227 .addReg(0)
2228 .addExternalSymbol("__morestack_addr")
2229 .addReg(0);
2230 MF.getMMI().setUsesMorestackAddr(true);
2231 } else {
2232 if (Is64Bit)
2233 BuildMI(allocMBB, DL, TII.get(X86::CALL64pcrel32))
2234 .addExternalSymbol("__morestack");
2235 else
2236 BuildMI(allocMBB, DL, TII.get(X86::CALLpcrel32))
2237 .addExternalSymbol("__morestack");
2238 }
2239
2240 if (IsNested)
2241 BuildMI(allocMBB, DL, TII.get(X86::MORESTACK_RET_RESTORE_R10));
2242 else
2243 BuildMI(allocMBB, DL, TII.get(X86::MORESTACK_RET));
2244
Quentin Colombet61b305e2015-05-05 17:38:16 +00002245 allocMBB->addSuccessor(&PrologueMBB);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002246
2247 checkMBB->addSuccessor(allocMBB);
Quentin Colombet61b305e2015-05-05 17:38:16 +00002248 checkMBB->addSuccessor(&PrologueMBB);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002249
2250#ifdef XDEBUG
2251 MF.verify();
2252#endif
2253}
2254
2255/// Erlang programs may need a special prologue to handle the stack size they
2256/// might need at runtime. That is because Erlang/OTP does not implement a C
2257/// stack but uses a custom implementation of hybrid stack/heap architecture.
2258/// (for more information see Eric Stenman's Ph.D. thesis:
2259/// http://publications.uu.se/uu/fulltext/nbn_se_uu_diva-2688.pdf)
2260///
2261/// CheckStack:
2262/// temp0 = sp - MaxStack
2263/// if( temp0 < SP_LIMIT(P) ) goto IncStack else goto OldStart
2264/// OldStart:
2265/// ...
2266/// IncStack:
2267/// call inc_stack # doubles the stack space
2268/// temp0 = sp - MaxStack
2269/// if( temp0 < SP_LIMIT(P) ) goto IncStack else goto OldStart
Quentin Colombet61b305e2015-05-05 17:38:16 +00002270void X86FrameLowering::adjustForHiPEPrologue(
2271 MachineFunction &MF, MachineBasicBlock &PrologueMBB) const {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002272 MachineFrameInfo *MFI = MF.getFrameInfo();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002273 DebugLoc DL;
2274 // HiPE-specific values
2275 const unsigned HipeLeafWords = 24;
2276 const unsigned CCRegisteredArgs = Is64Bit ? 6 : 5;
2277 const unsigned Guaranteed = HipeLeafWords * SlotSize;
2278 unsigned CallerStkArity = MF.getFunction()->arg_size() > CCRegisteredArgs ?
2279 MF.getFunction()->arg_size() - CCRegisteredArgs : 0;
2280 unsigned MaxStack = MFI->getStackSize() + CallerStkArity*SlotSize + SlotSize;
2281
2282 assert(STI.isTargetLinux() &&
2283 "HiPE prologue is only supported on Linux operating systems.");
2284
2285 // Compute the largest caller's frame that is needed to fit the callees'
2286 // frames. This 'MaxStack' is computed from:
2287 //
2288 // a) the fixed frame size, which is the space needed for all spilled temps,
2289 // b) outgoing on-stack parameter areas, and
2290 // c) the minimum stack space this function needs to make available for the
2291 // functions it calls (a tunable ABI property).
2292 if (MFI->hasCalls()) {
2293 unsigned MoreStackForCalls = 0;
2294
2295 for (MachineFunction::iterator MBBI = MF.begin(), MBBE = MF.end();
2296 MBBI != MBBE; ++MBBI)
2297 for (MachineBasicBlock::iterator MI = MBBI->begin(), ME = MBBI->end();
2298 MI != ME; ++MI) {
2299 if (!MI->isCall())
2300 continue;
2301
2302 // Get callee operand.
2303 const MachineOperand &MO = MI->getOperand(0);
2304
2305 // Only take account of global function calls (no closures etc.).
2306 if (!MO.isGlobal())
2307 continue;
2308
2309 const Function *F = dyn_cast<Function>(MO.getGlobal());
2310 if (!F)
2311 continue;
2312
2313 // Do not update 'MaxStack' for primitive and built-in functions
2314 // (encoded with names either starting with "erlang."/"bif_" or not
2315 // having a ".", such as a simple <Module>.<Function>.<Arity>, or an
2316 // "_", such as the BIF "suspend_0") as they are executed on another
2317 // stack.
2318 if (F->getName().find("erlang.") != StringRef::npos ||
2319 F->getName().find("bif_") != StringRef::npos ||
2320 F->getName().find_first_of("._") == StringRef::npos)
2321 continue;
2322
2323 unsigned CalleeStkArity =
2324 F->arg_size() > CCRegisteredArgs ? F->arg_size()-CCRegisteredArgs : 0;
2325 if (HipeLeafWords - 1 > CalleeStkArity)
2326 MoreStackForCalls = std::max(MoreStackForCalls,
2327 (HipeLeafWords - 1 - CalleeStkArity) * SlotSize);
2328 }
2329 MaxStack += MoreStackForCalls;
2330 }
2331
2332 // If the stack frame needed is larger than the guaranteed then runtime checks
2333 // and calls to "inc_stack_0" BIF should be inserted in the assembly prologue.
2334 if (MaxStack > Guaranteed) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002335 MachineBasicBlock *stackCheckMBB = MF.CreateMachineBasicBlock();
2336 MachineBasicBlock *incStackMBB = MF.CreateMachineBasicBlock();
2337
Matthias Braund9da1622015-09-09 18:08:03 +00002338 for (const auto &LI : PrologueMBB.liveins()) {
Matthias Braunb2b7ef12015-08-24 22:59:52 +00002339 stackCheckMBB->addLiveIn(LI);
2340 incStackMBB->addLiveIn(LI);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002341 }
2342
2343 MF.push_front(incStackMBB);
2344 MF.push_front(stackCheckMBB);
2345
2346 unsigned ScratchReg, SPReg, PReg, SPLimitOffset;
2347 unsigned LEAop, CMPop, CALLop;
2348 if (Is64Bit) {
2349 SPReg = X86::RSP;
2350 PReg = X86::RBP;
2351 LEAop = X86::LEA64r;
2352 CMPop = X86::CMP64rm;
2353 CALLop = X86::CALL64pcrel32;
2354 SPLimitOffset = 0x90;
2355 } else {
2356 SPReg = X86::ESP;
2357 PReg = X86::EBP;
2358 LEAop = X86::LEA32r;
2359 CMPop = X86::CMP32rm;
2360 CALLop = X86::CALLpcrel32;
2361 SPLimitOffset = 0x4c;
2362 }
2363
2364 ScratchReg = GetScratchRegister(Is64Bit, IsLP64, MF, true);
2365 assert(!MF.getRegInfo().isLiveIn(ScratchReg) &&
2366 "HiPE prologue scratch register is live-in");
2367
2368 // Create new MBB for StackCheck:
2369 addRegOffset(BuildMI(stackCheckMBB, DL, TII.get(LEAop), ScratchReg),
2370 SPReg, false, -MaxStack);
2371 // SPLimitOffset is in a fixed heap location (pointed by BP).
2372 addRegOffset(BuildMI(stackCheckMBB, DL, TII.get(CMPop))
2373 .addReg(ScratchReg), PReg, false, SPLimitOffset);
Quentin Colombet61b305e2015-05-05 17:38:16 +00002374 BuildMI(stackCheckMBB, DL, TII.get(X86::JAE_1)).addMBB(&PrologueMBB);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002375
2376 // Create new MBB for IncStack:
2377 BuildMI(incStackMBB, DL, TII.get(CALLop)).
2378 addExternalSymbol("inc_stack_0");
2379 addRegOffset(BuildMI(incStackMBB, DL, TII.get(LEAop), ScratchReg),
2380 SPReg, false, -MaxStack);
2381 addRegOffset(BuildMI(incStackMBB, DL, TII.get(CMPop))
2382 .addReg(ScratchReg), PReg, false, SPLimitOffset);
2383 BuildMI(incStackMBB, DL, TII.get(X86::JLE_1)).addMBB(incStackMBB);
2384
Cong Hou1938f2e2015-11-24 08:51:23 +00002385 stackCheckMBB->addSuccessor(&PrologueMBB, {99, 100});
2386 stackCheckMBB->addSuccessor(incStackMBB, {1, 100});
2387 incStackMBB->addSuccessor(&PrologueMBB, {99, 100});
2388 incStackMBB->addSuccessor(incStackMBB, {1, 100});
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002389 }
2390#ifdef XDEBUG
2391 MF.verify();
2392#endif
2393}
2394
Michael Kuperstein7337ee22015-08-11 08:48:48 +00002395bool X86FrameLowering::adjustStackWithPops(MachineBasicBlock &MBB,
2396 MachineBasicBlock::iterator MBBI, DebugLoc DL, int Offset) const {
2397
Michael Kupersteind9264652015-09-16 11:27:20 +00002398 if (Offset <= 0)
2399 return false;
2400
Michael Kuperstein7337ee22015-08-11 08:48:48 +00002401 if (Offset % SlotSize)
2402 return false;
2403
2404 int NumPops = Offset / SlotSize;
2405 // This is only worth it if we have at most 2 pops.
2406 if (NumPops != 1 && NumPops != 2)
2407 return false;
2408
2409 // Handle only the trivial case where the adjustment directly follows
2410 // a call. This is the most common one, anyway.
2411 if (MBBI == MBB.begin())
2412 return false;
2413 MachineBasicBlock::iterator Prev = std::prev(MBBI);
2414 if (!Prev->isCall() || !Prev->getOperand(1).isRegMask())
2415 return false;
2416
2417 unsigned Regs[2];
2418 unsigned FoundRegs = 0;
2419
2420 auto RegMask = Prev->getOperand(1);
Michael Kupersteind9264652015-09-16 11:27:20 +00002421
2422 auto &RegClass =
2423 Is64Bit ? X86::GR64_NOREX_NOSPRegClass : X86::GR32_NOREX_NOSPRegClass;
2424 // Try to find up to NumPops free registers.
2425 for (auto Candidate : RegClass) {
Michael Kuperstein7337ee22015-08-11 08:48:48 +00002426
2427 // Poor man's liveness:
2428 // Since we're immediately after a call, any register that is clobbered
2429 // by the call and not defined by it can be considered dead.
2430 if (!RegMask.clobbersPhysReg(Candidate))
2431 continue;
2432
2433 bool IsDef = false;
2434 for (const MachineOperand &MO : Prev->implicit_operands()) {
2435 if (MO.isReg() && MO.isDef() && MO.getReg() == Candidate) {
2436 IsDef = true;
2437 break;
2438 }
2439 }
2440
2441 if (IsDef)
2442 continue;
2443
2444 Regs[FoundRegs++] = Candidate;
2445 if (FoundRegs == (unsigned)NumPops)
2446 break;
2447 }
2448
2449 if (FoundRegs == 0)
2450 return false;
2451
2452 // If we found only one free register, but need two, reuse the same one twice.
2453 while (FoundRegs < (unsigned)NumPops)
2454 Regs[FoundRegs++] = Regs[0];
2455
2456 for (int i = 0; i < NumPops; ++i)
2457 BuildMI(MBB, MBBI, DL,
2458 TII.get(STI.is64Bit() ? X86::POP64r : X86::POP32r), Regs[i]);
2459
2460 return true;
2461}
2462
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002463void X86FrameLowering::
2464eliminateCallFramePseudoInstr(MachineFunction &MF, MachineBasicBlock &MBB,
2465 MachineBasicBlock::iterator I) const {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002466 bool reserveCallFrame = hasReservedCallFrame(MF);
Matthias Braunfa3872e2015-05-18 20:27:55 +00002467 unsigned Opcode = I->getOpcode();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002468 bool isDestroy = Opcode == TII.getCallFrameDestroyOpcode();
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002469 DebugLoc DL = I->getDebugLoc();
2470 uint64_t Amount = !reserveCallFrame ? I->getOperand(0).getImm() : 0;
Michael Kuperstein13fbd452015-02-01 16:56:04 +00002471 uint64_t InternalAmt = (isDestroy || Amount) ? I->getOperand(1).getImm() : 0;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002472 I = MBB.erase(I);
2473
2474 if (!reserveCallFrame) {
2475 // If the stack pointer can be changed after prologue, turn the
2476 // adjcallstackup instruction into a 'sub ESP, <amt>' and the
2477 // adjcallstackdown instruction into 'add ESP, <amt>'
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002478
2479 // We need to keep the stack aligned properly. To do this, we round the
2480 // amount of space needed for the outgoing arguments up to the next
2481 // alignment boundary.
David Majnemer93c22a42015-02-10 00:57:42 +00002482 unsigned StackAlign = getStackAlignment();
2483 Amount = RoundUpToAlignment(Amount, StackAlign);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002484
Michael Kuperstein73dc8522015-11-03 08:17:25 +00002485 MachineModuleInfo &MMI = MF.getMMI();
2486 const Function *Fn = MF.getFunction();
2487 bool WindowsCFI = MF.getTarget().getMCAsmInfo()->usesWindowsCFI();
2488 bool DwarfCFI = !WindowsCFI &&
2489 (MMI.hasDebugInfo() || Fn->needsUnwindTableEntry());
2490
Michael Kuperstein259f1502015-10-07 07:01:31 +00002491 // If we have any exception handlers in this function, and we adjust
Michael Kuperstein73dc8522015-11-03 08:17:25 +00002492 // the SP before calls, we may need to indicate this to the unwinder
2493 // using GNU_ARGS_SIZE. Note that this may be necessary even when
2494 // Amount == 0, because the preceding function may have set a non-0
2495 // GNU_ARGS_SIZE.
Michael Kuperstein259f1502015-10-07 07:01:31 +00002496 // TODO: We don't need to reset this between subsequent functions,
2497 // if it didn't change.
Michael Kuperstein73dc8522015-11-03 08:17:25 +00002498 bool HasDwarfEHHandlers = !WindowsCFI &&
2499 !MF.getMMI().getLandingPads().empty();
Michael Kuperstein259f1502015-10-07 07:01:31 +00002500
Michael Kuperstein73dc8522015-11-03 08:17:25 +00002501 if (HasDwarfEHHandlers && !isDestroy &&
Michael Kuperstein259f1502015-10-07 07:01:31 +00002502 MF.getInfo<X86MachineFunctionInfo>()->getHasPushSequences())
Michael Kupersteinaf22daf2015-10-13 06:22:30 +00002503 BuildCFI(MBB, I, DL,
2504 MCCFIInstruction::createGnuArgsSize(nullptr, Amount));
Michael Kuperstein259f1502015-10-07 07:01:31 +00002505
2506 if (Amount == 0)
2507 return;
2508
Michael Kuperstein13fbd452015-02-01 16:56:04 +00002509 // Factor out the amount that gets handled inside the sequence
2510 // (Pushes of argument for frame setup, callee pops for frame destroy)
2511 Amount -= InternalAmt;
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002512
Michael Kuperstein77ce9d32015-12-06 13:06:20 +00002513 // TODO: This is needed only if we require precise CFA.
2514 // If this is a callee-pop calling convention, emit a CFA adjust for
2515 // the amount the callee popped.
2516 if (isDestroy && InternalAmt && DwarfCFI && !hasFP(MF))
Michael Kuperstein73dc8522015-11-03 08:17:25 +00002517 BuildCFI(MBB, I, DL,
2518 MCCFIInstruction::createAdjustCfaOffset(nullptr, -InternalAmt));
2519
Michael Kuperstein13fbd452015-02-01 16:56:04 +00002520 if (Amount) {
Reid Kleckner98d78032015-06-18 20:22:12 +00002521 // Add Amount to SP to destroy a frame, and subtract to setup.
2522 int Offset = isDestroy ? Amount : -Amount;
Michael Kuperstein7337ee22015-08-11 08:48:48 +00002523
Michael Kuperstein73dc8522015-11-03 08:17:25 +00002524 if (!(Fn->optForMinSize() &&
Michael Kuperstein7337ee22015-08-11 08:48:48 +00002525 adjustStackWithPops(MBB, I, DL, Offset)))
2526 BuildStackAdjustment(MBB, I, DL, Offset, /*InEpilogue=*/false);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002527 }
Michael Kuperstein7337ee22015-08-11 08:48:48 +00002528
Michael Kuperstein73dc8522015-11-03 08:17:25 +00002529 if (DwarfCFI && !hasFP(MF)) {
2530 // If we don't have FP, but need to generate unwind information,
2531 // we need to set the correct CFA offset after the stack adjustment.
2532 // How much we adjust the CFA offset depends on whether we're emitting
2533 // CFI only for EH purposes or for debugging. EH only requires the CFA
2534 // offset to be correct at each call site, while for debugging we want
2535 // it to be more precise.
2536 int CFAOffset = Amount;
Michael Kuperstein77ce9d32015-12-06 13:06:20 +00002537 // TODO: When not using precise CFA, we also need to adjust for the
2538 // InternalAmt here.
2539
2540 if (CFAOffset) {
2541 CFAOffset = isDestroy ? -CFAOffset : CFAOffset;
2542 BuildCFI(MBB, I, DL,
2543 MCCFIInstruction::createAdjustCfaOffset(nullptr, CFAOffset));
2544 }
Michael Kuperstein73dc8522015-11-03 08:17:25 +00002545 }
2546
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002547 return;
2548 }
2549
Reid Kleckner98d78032015-06-18 20:22:12 +00002550 if (isDestroy && InternalAmt) {
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002551 // If we are performing frame pointer elimination and if the callee pops
2552 // something off the stack pointer, add it back. We do this until we have
2553 // more advanced stack pointer tracking ability.
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002554 // We are not tracking the stack pointer adjustment by the callee, so make
2555 // sure we restore the stack pointer immediately after the call, there may
2556 // be spill code inserted between the CALL and ADJCALLSTACKUP instructions.
2557 MachineBasicBlock::iterator B = MBB.begin();
2558 while (I != B && !std::prev(I)->isCall())
2559 --I;
Reid Kleckner98d78032015-06-18 20:22:12 +00002560 BuildStackAdjustment(MBB, I, DL, -InternalAmt, /*InEpilogue=*/false);
Michael Kupersteine86aa9a2015-02-01 16:15:07 +00002561 }
2562}
2563
Quentin Colombetaa8020752015-05-27 06:28:41 +00002564bool X86FrameLowering::canUseAsEpilogue(const MachineBasicBlock &MBB) const {
2565 assert(MBB.getParent() && "Block is not attached to a function!");
2566
Quentin Colombet421723c2015-11-04 22:37:28 +00002567 // Win64 has strict requirements in terms of epilogue and we are
2568 // not taking a chance at messing with them.
2569 // I.e., unless this block is already an exit block, we can't use
2570 // it as an epilogue.
Reid Kleckner4255b04e2015-11-16 18:47:12 +00002571 if (STI.isTargetWin64() && !MBB.succ_empty() && !MBB.isReturnBlock())
Quentin Colombet421723c2015-11-04 22:37:28 +00002572 return false;
2573
Quentin Colombetaa8020752015-05-27 06:28:41 +00002574 if (canUseLEAForSPInEpilogue(*MBB.getParent()))
2575 return true;
2576
2577 // If we cannot use LEA to adjust SP, we may need to use ADD, which
Quentin Colombetf1e91c82015-12-02 01:22:54 +00002578 // clobbers the EFLAGS. Check that we do not need to preserve it,
2579 // otherwise, conservatively assume this is not
Quentin Colombetaa8020752015-05-27 06:28:41 +00002580 // safe to insert the epilogue here.
Quentin Colombetf1e91c82015-12-02 01:22:54 +00002581 return !flagsNeedToBePreservedBeforeTheTerminators(MBB);
Quentin Colombetaa8020752015-05-27 06:28:41 +00002582}
Reid Klecknerdf129512015-09-08 22:44:41 +00002583
Quentin Colombet5d2f7cf2015-12-09 23:08:18 +00002584bool X86FrameLowering::enableShrinkWrapping(const MachineFunction &MF) const {
2585 // If we may need to emit frameless compact unwind information, give
2586 // up as this is currently broken: PR25614.
2587 return MF.getFunction()->hasFnAttribute(Attribute::NoUnwind) || hasFP(MF);
2588}
2589
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00002590MachineBasicBlock::iterator X86FrameLowering::restoreWin32EHStackPointers(
Reid Klecknerdf129512015-09-08 22:44:41 +00002591 MachineBasicBlock &MBB, MachineBasicBlock::iterator MBBI,
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00002592 DebugLoc DL, bool RestoreSP) const {
Reid Klecknerdf129512015-09-08 22:44:41 +00002593 assert(STI.isTargetWindowsMSVC() && "funclets only supported in MSVC env");
2594 assert(STI.isTargetWin32() && "EBP/ESI restoration only required on win32");
2595 assert(STI.is32Bit() && !Uses64BitFramePtr &&
2596 "restoring EBP/ESI on non-32-bit target");
2597
2598 MachineFunction &MF = *MBB.getParent();
2599 unsigned FramePtr = TRI->getFrameRegister(MF);
2600 unsigned BasePtr = TRI->getBaseRegister();
Reid Klecknerc20276d2015-11-17 21:10:25 +00002601 WinEHFuncInfo &FuncInfo = *MF.getWinEHFuncInfo();
Reid Klecknerdf129512015-09-08 22:44:41 +00002602 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
2603 MachineFrameInfo *MFI = MF.getFrameInfo();
2604
2605 // FIXME: Don't set FrameSetup flag in catchret case.
2606
2607 int FI = FuncInfo.EHRegNodeFrameIndex;
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00002608 int EHRegSize = MFI->getObjectSize(FI);
2609
2610 if (RestoreSP) {
2611 // MOV32rm -EHRegSize(%ebp), %esp
2612 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(X86::MOV32rm), X86::ESP),
2613 X86::EBP, true, -EHRegSize)
2614 .setMIFlag(MachineInstr::FrameSetup);
2615 }
2616
Reid Klecknerdf129512015-09-08 22:44:41 +00002617 unsigned UsedReg;
2618 int EHRegOffset = getFrameIndexReference(MF, FI, UsedReg);
Reid Klecknerdf129512015-09-08 22:44:41 +00002619 int EndOffset = -EHRegOffset - EHRegSize;
Reid Klecknerb005d282015-09-16 20:16:27 +00002620 FuncInfo.EHRegNodeEndOffset = EndOffset;
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00002621
Reid Klecknerdf129512015-09-08 22:44:41 +00002622 if (UsedReg == FramePtr) {
2623 // ADD $offset, %ebp
Reid Klecknerdf129512015-09-08 22:44:41 +00002624 unsigned ADDri = getADDriOpcode(false, EndOffset);
2625 BuildMI(MBB, MBBI, DL, TII.get(ADDri), FramePtr)
2626 .addReg(FramePtr)
2627 .addImm(EndOffset)
2628 .setMIFlag(MachineInstr::FrameSetup)
2629 ->getOperand(3)
2630 .setIsDead();
Reid Klecknerb2244cb2015-10-08 18:41:52 +00002631 assert(EndOffset >= 0 &&
2632 "end of registration object above normal EBP position!");
2633 } else if (UsedReg == BasePtr) {
Reid Klecknerdf129512015-09-08 22:44:41 +00002634 // LEA offset(%ebp), %esi
2635 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(X86::LEA32r), BasePtr),
2636 FramePtr, false, EndOffset)
2637 .setMIFlag(MachineInstr::FrameSetup);
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00002638 // MOV32rm SavedEBPOffset(%esi), %ebp
Reid Klecknerdf129512015-09-08 22:44:41 +00002639 assert(X86FI->getHasSEHFramePtrSave());
2640 int Offset =
2641 getFrameIndexReference(MF, X86FI->getSEHFramePtrSaveIndex(), UsedReg);
2642 assert(UsedReg == BasePtr);
Reid Kleckner5b8a46e2015-09-17 20:43:47 +00002643 addRegOffset(BuildMI(MBB, MBBI, DL, TII.get(X86::MOV32rm), FramePtr),
2644 UsedReg, true, Offset)
Reid Klecknerdf129512015-09-08 22:44:41 +00002645 .setMIFlag(MachineInstr::FrameSetup);
Reid Klecknerb2244cb2015-10-08 18:41:52 +00002646 } else {
2647 llvm_unreachable("32-bit frames with WinEH must use FramePtr or BasePtr");
Reid Klecknerdf129512015-09-08 22:44:41 +00002648 }
2649 return MBBI;
2650}
Reid Kleckner28e49032015-10-16 23:43:27 +00002651
2652unsigned X86FrameLowering::getWinEHParentFrameOffset(const MachineFunction &MF) const {
2653 // RDX, the parent frame pointer, is homed into 16(%rsp) in the prologue.
2654 unsigned Offset = 16;
2655 // RBP is immediately pushed.
2656 Offset += SlotSize;
2657 // All callee-saved registers are then pushed.
2658 Offset += MF.getInfo<X86MachineFunctionInfo>()->getCalleeSavedFrameSize();
2659 // Every funclet allocates enough stack space for the largest outgoing call.
2660 Offset += getWinEHFuncletFrameSize(MF);
2661 return Offset;
2662}
Reid Kleckner94b57062015-11-13 19:06:01 +00002663
2664void X86FrameLowering::processFunctionBeforeFrameFinalized(
2665 MachineFunction &MF, RegScavenger *RS) const {
2666 // If this function isn't doing Win64-style C++ EH, we don't need to do
2667 // anything.
2668 const Function *Fn = MF.getFunction();
Reid Klecknerc397b262015-11-16 18:47:25 +00002669 if (!STI.is64Bit() || !MF.getMMI().hasEHFunclets() ||
2670 classifyEHPersonality(Fn->getPersonalityFn()) != EHPersonality::MSVC_CXX)
Reid Kleckner94b57062015-11-13 19:06:01 +00002671 return;
2672
2673 // Win64 C++ EH needs to allocate the UnwindHelp object at some fixed offset
2674 // relative to RSP after the prologue. Find the offset of the last fixed
Reid Klecknerc397b262015-11-16 18:47:25 +00002675 // object, so that we can allocate a slot immediately following it. If there
2676 // were no fixed objects, use offset -SlotSize, which is immediately after the
2677 // return address. Fixed objects have negative frame indices.
Reid Kleckner94b57062015-11-13 19:06:01 +00002678 MachineFrameInfo *MFI = MF.getFrameInfo();
Reid Klecknerc397b262015-11-16 18:47:25 +00002679 int64_t MinFixedObjOffset = -SlotSize;
Reid Kleckner94b57062015-11-13 19:06:01 +00002680 for (int I = MFI->getObjectIndexBegin(); I < 0; ++I)
2681 MinFixedObjOffset = std::min(MinFixedObjOffset, MFI->getObjectOffset(I));
2682
2683 int64_t UnwindHelpOffset = MinFixedObjOffset - SlotSize;
2684 int UnwindHelpFI =
2685 MFI->CreateFixedObject(SlotSize, UnwindHelpOffset, /*Immutable=*/false);
Reid Klecknerc20276d2015-11-17 21:10:25 +00002686 MF.getWinEHFuncInfo()->UnwindHelpFrameIdx = UnwindHelpFI;
Reid Kleckner94b57062015-11-13 19:06:01 +00002687
2688 // Store -2 into UnwindHelp on function entry. We have to scan forwards past
2689 // other frame setup instructions.
2690 MachineBasicBlock &MBB = MF.front();
2691 auto MBBI = MBB.begin();
2692 while (MBBI != MBB.end() && MBBI->getFlag(MachineInstr::FrameSetup))
2693 ++MBBI;
2694
2695 DebugLoc DL = MBB.findDebugLoc(MBBI);
2696 addFrameReference(BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64mi32)),
2697 UnwindHelpFI)
2698 .addImm(-2);
2699}