blob: 036043637fd0c291715510f1f1243a35ae4feeed [file] [log] [blame]
Nick Lewycky3c2f0a12011-06-14 03:23:52 +00001//=======- X86FrameLowering.cpp - X86 Frame Information --------*- C++ -*-====//
Anton Korobeynikov33464912010-11-15 00:06:54 +00002//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
Anton Korobeynikov16c29b52011-01-10 12:39:04 +000010// This file contains the X86 implementation of TargetFrameLowering class.
Anton Korobeynikov33464912010-11-15 00:06:54 +000011//
12//===----------------------------------------------------------------------===//
13
Anton Korobeynikov16c29b52011-01-10 12:39:04 +000014#include "X86FrameLowering.h"
Anton Korobeynikov33464912010-11-15 00:06:54 +000015#include "X86InstrBuilder.h"
16#include "X86InstrInfo.h"
17#include "X86MachineFunctionInfo.h"
Rafael Espindola76927d752011-08-30 19:39:58 +000018#include "X86Subtarget.h"
Anton Korobeynikovd9e33852010-11-18 23:25:52 +000019#include "X86TargetMachine.h"
Anton Korobeynikov33464912010-11-15 00:06:54 +000020#include "llvm/Function.h"
21#include "llvm/CodeGen/MachineFrameInfo.h"
22#include "llvm/CodeGen/MachineFunction.h"
23#include "llvm/CodeGen/MachineInstrBuilder.h"
24#include "llvm/CodeGen/MachineModuleInfo.h"
25#include "llvm/CodeGen/MachineRegisterInfo.h"
Rafael Espindolaf0adba92011-04-15 15:11:06 +000026#include "llvm/MC/MCAsmInfo.h"
Bill Wendling6a6b8c32011-07-07 00:54:13 +000027#include "llvm/MC/MCSymbol.h"
Anton Korobeynikov33464912010-11-15 00:06:54 +000028#include "llvm/Target/TargetData.h"
29#include "llvm/Target/TargetOptions.h"
30#include "llvm/Support/CommandLine.h"
Evan Cheng7158e082011-01-03 22:53:22 +000031#include "llvm/ADT/SmallSet.h"
Anton Korobeynikov33464912010-11-15 00:06:54 +000032
33using namespace llvm;
34
35// FIXME: completely move here.
36extern cl::opt<bool> ForceStackAlign;
37
Anton Korobeynikov16c29b52011-01-10 12:39:04 +000038bool X86FrameLowering::hasReservedCallFrame(const MachineFunction &MF) const {
Anton Korobeynikovd0c38172010-11-18 21:19:35 +000039 return !MF.getFrameInfo()->hasVarSizedObjects();
40}
41
42/// hasFP - Return true if the specified function should have a dedicated frame
43/// pointer register. This is true if the function has variable sized allocas
44/// or if frame pointer elimination is disabled.
Anton Korobeynikov16c29b52011-01-10 12:39:04 +000045bool X86FrameLowering::hasFP(const MachineFunction &MF) const {
Anton Korobeynikovd0c38172010-11-18 21:19:35 +000046 const MachineFrameInfo *MFI = MF.getFrameInfo();
47 const MachineModuleInfo &MMI = MF.getMMI();
Anton Korobeynikovd9e33852010-11-18 23:25:52 +000048 const TargetRegisterInfo *RI = TM.getRegisterInfo();
Anton Korobeynikovd0c38172010-11-18 21:19:35 +000049
Nick Lewycky8a8d4792011-12-02 22:16:29 +000050 return (MF.getTarget().Options.DisableFramePointerElim(MF) ||
Anton Korobeynikovd0c38172010-11-18 21:19:35 +000051 RI->needsStackRealignment(MF) ||
52 MFI->hasVarSizedObjects() ||
53 MFI->isFrameAddressTaken() ||
54 MF.getInfo<X86MachineFunctionInfo>()->getForceFramePointer() ||
55 MMI.callsUnwindInit());
56}
57
Anton Korobeynikov33464912010-11-15 00:06:54 +000058static unsigned getSUBriOpcode(unsigned is64Bit, int64_t Imm) {
59 if (is64Bit) {
60 if (isInt<8>(Imm))
61 return X86::SUB64ri8;
62 return X86::SUB64ri32;
63 } else {
64 if (isInt<8>(Imm))
65 return X86::SUB32ri8;
66 return X86::SUB32ri;
67 }
68}
69
70static unsigned getADDriOpcode(unsigned is64Bit, int64_t Imm) {
71 if (is64Bit) {
72 if (isInt<8>(Imm))
73 return X86::ADD64ri8;
74 return X86::ADD64ri32;
75 } else {
76 if (isInt<8>(Imm))
77 return X86::ADD32ri8;
78 return X86::ADD32ri;
79 }
80}
81
Evan Cheng7158e082011-01-03 22:53:22 +000082/// findDeadCallerSavedReg - Return a caller-saved register that isn't live
83/// when it reaches the "return" instruction. We can then pop a stack object
84/// to this register without worry about clobbering it.
85static unsigned findDeadCallerSavedReg(MachineBasicBlock &MBB,
86 MachineBasicBlock::iterator &MBBI,
87 const TargetRegisterInfo &TRI,
88 bool Is64Bit) {
89 const MachineFunction *MF = MBB.getParent();
90 const Function *F = MF->getFunction();
91 if (!F || MF->getMMI().callsEHReturn())
92 return 0;
93
94 static const unsigned CallerSavedRegs32Bit[] = {
Andrew Trick32a183c2011-08-12 00:49:19 +000095 X86::EAX, X86::EDX, X86::ECX, 0
Evan Cheng7158e082011-01-03 22:53:22 +000096 };
97
98 static const unsigned CallerSavedRegs64Bit[] = {
99 X86::RAX, X86::RDX, X86::RCX, X86::RSI, X86::RDI,
Andrew Trick32a183c2011-08-12 00:49:19 +0000100 X86::R8, X86::R9, X86::R10, X86::R11, 0
Evan Cheng7158e082011-01-03 22:53:22 +0000101 };
102
103 unsigned Opc = MBBI->getOpcode();
104 switch (Opc) {
105 default: return 0;
106 case X86::RET:
107 case X86::RETI:
108 case X86::TCRETURNdi:
109 case X86::TCRETURNri:
110 case X86::TCRETURNmi:
111 case X86::TCRETURNdi64:
112 case X86::TCRETURNri64:
113 case X86::TCRETURNmi64:
114 case X86::EH_RETURN:
115 case X86::EH_RETURN64: {
116 SmallSet<unsigned, 8> Uses;
117 for (unsigned i = 0, e = MBBI->getNumOperands(); i != e; ++i) {
118 MachineOperand &MO = MBBI->getOperand(i);
119 if (!MO.isReg() || MO.isDef())
120 continue;
121 unsigned Reg = MO.getReg();
122 if (!Reg)
123 continue;
124 for (const unsigned *AsI = TRI.getOverlaps(Reg); *AsI; ++AsI)
125 Uses.insert(*AsI);
126 }
127
128 const unsigned *CS = Is64Bit ? CallerSavedRegs64Bit : CallerSavedRegs32Bit;
129 for (; *CS; ++CS)
130 if (!Uses.count(*CS))
131 return *CS;
132 }
133 }
134
135 return 0;
136}
137
138
Anton Korobeynikov33464912010-11-15 00:06:54 +0000139/// emitSPUpdate - Emit a series of instructions to increment / decrement the
140/// stack pointer by a constant value.
141static
142void emitSPUpdate(MachineBasicBlock &MBB, MachineBasicBlock::iterator &MBBI,
Evan Cheng7158e082011-01-03 22:53:22 +0000143 unsigned StackPtr, int64_t NumBytes,
144 bool Is64Bit, const TargetInstrInfo &TII,
145 const TargetRegisterInfo &TRI) {
Anton Korobeynikov33464912010-11-15 00:06:54 +0000146 bool isSub = NumBytes < 0;
147 uint64_t Offset = isSub ? -NumBytes : NumBytes;
148 unsigned Opc = isSub ?
149 getSUBriOpcode(Is64Bit, Offset) :
150 getADDriOpcode(Is64Bit, Offset);
151 uint64_t Chunk = (1LL << 31) - 1;
152 DebugLoc DL = MBB.findDebugLoc(MBBI);
153
154 while (Offset) {
155 uint64_t ThisVal = (Offset > Chunk) ? Chunk : Offset;
Evan Cheng7158e082011-01-03 22:53:22 +0000156 if (ThisVal == (Is64Bit ? 8 : 4)) {
157 // Use push / pop instead.
158 unsigned Reg = isSub
Dale Johannesen1e08cd12011-01-04 19:31:24 +0000159 ? (unsigned)(Is64Bit ? X86::RAX : X86::EAX)
Evan Cheng7158e082011-01-03 22:53:22 +0000160 : findDeadCallerSavedReg(MBB, MBBI, TRI, Is64Bit);
161 if (Reg) {
162 Opc = isSub
163 ? (Is64Bit ? X86::PUSH64r : X86::PUSH32r)
164 : (Is64Bit ? X86::POP64r : X86::POP32r);
Charles Davisaff232a2011-06-12 01:45:54 +0000165 MachineInstr *MI = BuildMI(MBB, MBBI, DL, TII.get(Opc))
Evan Cheng7158e082011-01-03 22:53:22 +0000166 .addReg(Reg, getDefRegState(!isSub) | getUndefRegState(isSub));
Charles Davisaff232a2011-06-12 01:45:54 +0000167 if (isSub)
168 MI->setFlag(MachineInstr::FrameSetup);
Evan Cheng7158e082011-01-03 22:53:22 +0000169 Offset -= ThisVal;
170 continue;
171 }
172 }
173
Anton Korobeynikov33464912010-11-15 00:06:54 +0000174 MachineInstr *MI =
175 BuildMI(MBB, MBBI, DL, TII.get(Opc), StackPtr)
Evan Cheng7158e082011-01-03 22:53:22 +0000176 .addReg(StackPtr)
177 .addImm(ThisVal);
Charles Davisaff232a2011-06-12 01:45:54 +0000178 if (isSub)
179 MI->setFlag(MachineInstr::FrameSetup);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000180 MI->getOperand(3).setIsDead(); // The EFLAGS implicit def is dead.
181 Offset -= ThisVal;
182 }
183}
184
185/// mergeSPUpdatesUp - Merge two stack-manipulating instructions upper iterator.
186static
187void mergeSPUpdatesUp(MachineBasicBlock &MBB, MachineBasicBlock::iterator &MBBI,
188 unsigned StackPtr, uint64_t *NumBytes = NULL) {
189 if (MBBI == MBB.begin()) return;
190
191 MachineBasicBlock::iterator PI = prior(MBBI);
192 unsigned Opc = PI->getOpcode();
193 if ((Opc == X86::ADD64ri32 || Opc == X86::ADD64ri8 ||
194 Opc == X86::ADD32ri || Opc == X86::ADD32ri8) &&
195 PI->getOperand(0).getReg() == StackPtr) {
196 if (NumBytes)
197 *NumBytes += PI->getOperand(2).getImm();
198 MBB.erase(PI);
199 } else if ((Opc == X86::SUB64ri32 || Opc == X86::SUB64ri8 ||
200 Opc == X86::SUB32ri || Opc == X86::SUB32ri8) &&
201 PI->getOperand(0).getReg() == StackPtr) {
202 if (NumBytes)
203 *NumBytes -= PI->getOperand(2).getImm();
204 MBB.erase(PI);
205 }
206}
207
208/// mergeSPUpdatesDown - Merge two stack-manipulating instructions lower iterator.
209static
210void mergeSPUpdatesDown(MachineBasicBlock &MBB,
211 MachineBasicBlock::iterator &MBBI,
212 unsigned StackPtr, uint64_t *NumBytes = NULL) {
Sanjoy Dasfc926122011-12-01 19:15:08 +0000213 // FIXME: THIS ISN'T RUN!!!
Anton Korobeynikov33464912010-11-15 00:06:54 +0000214 return;
215
216 if (MBBI == MBB.end()) return;
217
218 MachineBasicBlock::iterator NI = llvm::next(MBBI);
219 if (NI == MBB.end()) return;
220
221 unsigned Opc = NI->getOpcode();
222 if ((Opc == X86::ADD64ri32 || Opc == X86::ADD64ri8 ||
223 Opc == X86::ADD32ri || Opc == X86::ADD32ri8) &&
224 NI->getOperand(0).getReg() == StackPtr) {
225 if (NumBytes)
226 *NumBytes -= NI->getOperand(2).getImm();
227 MBB.erase(NI);
228 MBBI = NI;
229 } else if ((Opc == X86::SUB64ri32 || Opc == X86::SUB64ri8 ||
230 Opc == X86::SUB32ri || Opc == X86::SUB32ri8) &&
231 NI->getOperand(0).getReg() == StackPtr) {
232 if (NumBytes)
233 *NumBytes += NI->getOperand(2).getImm();
234 MBB.erase(NI);
235 MBBI = NI;
236 }
237}
238
239/// mergeSPUpdates - Checks the instruction before/after the passed
240/// instruction. If it is an ADD/SUB instruction it is deleted argument and the
241/// stack adjustment is returned as a positive value for ADD and a negative for
242/// SUB.
243static int mergeSPUpdates(MachineBasicBlock &MBB,
244 MachineBasicBlock::iterator &MBBI,
245 unsigned StackPtr,
246 bool doMergeWithPrevious) {
247 if ((doMergeWithPrevious && MBBI == MBB.begin()) ||
248 (!doMergeWithPrevious && MBBI == MBB.end()))
249 return 0;
250
251 MachineBasicBlock::iterator PI = doMergeWithPrevious ? prior(MBBI) : MBBI;
252 MachineBasicBlock::iterator NI = doMergeWithPrevious ? 0 : llvm::next(MBBI);
253 unsigned Opc = PI->getOpcode();
254 int Offset = 0;
255
256 if ((Opc == X86::ADD64ri32 || Opc == X86::ADD64ri8 ||
257 Opc == X86::ADD32ri || Opc == X86::ADD32ri8) &&
258 PI->getOperand(0).getReg() == StackPtr){
259 Offset += PI->getOperand(2).getImm();
260 MBB.erase(PI);
261 if (!doMergeWithPrevious) MBBI = NI;
262 } else if ((Opc == X86::SUB64ri32 || Opc == X86::SUB64ri8 ||
263 Opc == X86::SUB32ri || Opc == X86::SUB32ri8) &&
264 PI->getOperand(0).getReg() == StackPtr) {
265 Offset -= PI->getOperand(2).getImm();
266 MBB.erase(PI);
267 if (!doMergeWithPrevious) MBBI = NI;
268 }
269
270 return Offset;
271}
272
273static bool isEAXLiveIn(MachineFunction &MF) {
274 for (MachineRegisterInfo::livein_iterator II = MF.getRegInfo().livein_begin(),
275 EE = MF.getRegInfo().livein_end(); II != EE; ++II) {
276 unsigned Reg = II->first;
277
278 if (Reg == X86::EAX || Reg == X86::AX ||
279 Reg == X86::AH || Reg == X86::AL)
280 return true;
281 }
282
283 return false;
284}
285
Anton Korobeynikov16c29b52011-01-10 12:39:04 +0000286void X86FrameLowering::emitCalleeSavedFrameMoves(MachineFunction &MF,
Bill Wendling09b02c82011-07-25 18:00:28 +0000287 MCSymbol *Label,
288 unsigned FramePtr) const {
Anton Korobeynikov33464912010-11-15 00:06:54 +0000289 MachineFrameInfo *MFI = MF.getFrameInfo();
Anton Korobeynikov33464912010-11-15 00:06:54 +0000290 MachineModuleInfo &MMI = MF.getMMI();
291
292 // Add callee saved registers to move list.
293 const std::vector<CalleeSavedInfo> &CSI = MFI->getCalleeSavedInfo();
294 if (CSI.empty()) return;
295
296 std::vector<MachineMove> &Moves = MMI.getFrameMoves();
Anton Korobeynikovd9e33852010-11-18 23:25:52 +0000297 const TargetData *TD = TM.getTargetData();
Anton Korobeynikovd0c38172010-11-18 21:19:35 +0000298 bool HasFP = hasFP(MF);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000299
300 // Calculate amount of bytes used for return address storing.
Anton Korobeynikove7499112011-01-14 21:57:58 +0000301 int stackGrowth = -TD->getPointerSize();
Anton Korobeynikov33464912010-11-15 00:06:54 +0000302
303 // FIXME: This is dirty hack. The code itself is pretty mess right now.
304 // It should be rewritten from scratch and generalized sometimes.
305
Chris Lattner7a2bdde2011-04-15 05:18:47 +0000306 // Determine maximum offset (minimum due to stack growth).
Anton Korobeynikov33464912010-11-15 00:06:54 +0000307 int64_t MaxOffset = 0;
308 for (std::vector<CalleeSavedInfo>::const_iterator
309 I = CSI.begin(), E = CSI.end(); I != E; ++I)
310 MaxOffset = std::min(MaxOffset,
311 MFI->getObjectOffset(I->getFrameIdx()));
312
313 // Calculate offsets.
314 int64_t saveAreaOffset = (HasFP ? 3 : 2) * stackGrowth;
315 for (std::vector<CalleeSavedInfo>::const_iterator
316 I = CSI.begin(), E = CSI.end(); I != E; ++I) {
317 int64_t Offset = MFI->getObjectOffset(I->getFrameIdx());
318 unsigned Reg = I->getReg();
319 Offset = MaxOffset - Offset + saveAreaOffset;
320
321 // Don't output a new machine move if we're re-saving the frame
322 // pointer. This happens when the PrologEpilogInserter has inserted an extra
323 // "PUSH" of the frame pointer -- the "emitPrologue" method automatically
324 // generates one when frame pointers are used. If we generate a "machine
325 // move" for this extra "PUSH", the linker will lose track of the fact that
326 // the frame pointer should have the value of the first "PUSH" when it's
327 // trying to unwind.
NAKAMURA Takumi27635382011-02-05 15:10:54 +0000328 //
Anton Korobeynikov33464912010-11-15 00:06:54 +0000329 // FIXME: This looks inelegant. It's possibly correct, but it's covering up
330 // another bug. I.e., one where we generate a prolog like this:
331 //
332 // pushl %ebp
333 // movl %esp, %ebp
334 // pushl %ebp
335 // pushl %esi
336 // ...
337 //
338 // The immediate re-push of EBP is unnecessary. At the least, it's an
339 // optimization bug. EBP can be used as a scratch register in certain
340 // cases, but probably not when we have a frame pointer.
341 if (HasFP && FramePtr == Reg)
342 continue;
343
344 MachineLocation CSDst(MachineLocation::VirtualFP, Offset);
345 MachineLocation CSSrc(Reg);
346 Moves.push_back(MachineMove(Label, CSDst, CSSrc));
347 }
348}
349
Bill Wendling09b02c82011-07-25 18:00:28 +0000350/// getCompactUnwindRegNum - Get the compact unwind number for a given
351/// register. The number corresponds to the enum lists in
352/// compact_unwind_encoding.h.
353static int getCompactUnwindRegNum(const unsigned *CURegs, unsigned Reg) {
354 int Idx = 1;
355 for (; *CURegs; ++CURegs, ++Idx)
356 if (*CURegs == Reg)
357 return Idx;
358
359 return -1;
360}
361
Bill Wendling57a3cd22011-12-06 21:23:42 +0000362// Number of registers that can be saved in a compact unwind encoding.
363#define CU_NUM_SAVED_REGS 6
364
Bill Wendling09b02c82011-07-25 18:00:28 +0000365/// encodeCompactUnwindRegistersWithoutFrame - Create the permutation encoding
366/// used with frameless stacks. It is passed the number of registers to be saved
367/// and an array of the registers saved.
Bill Wendling57a3cd22011-12-06 21:23:42 +0000368static uint32_t
369encodeCompactUnwindRegistersWithoutFrame(unsigned SavedRegs[CU_NUM_SAVED_REGS],
370 unsigned RegCount, bool Is64Bit) {
Bill Wendling09b02c82011-07-25 18:00:28 +0000371 // The saved registers are numbered from 1 to 6. In order to encode the order
372 // in which they were saved, we re-number them according to their place in the
373 // register order. The re-numbering is relative to the last re-numbered
374 // register. E.g., if we have registers {6, 2, 4, 5} saved in that order:
375 //
376 // Orig Re-Num
377 // ---- ------
378 // 6 6
379 // 2 2
380 // 4 3
381 // 5 3
382 //
383 static const unsigned CU32BitRegs[] = {
384 X86::EBX, X86::ECX, X86::EDX, X86::EDI, X86::ESI, X86::EBP, 0
385 };
386 static const unsigned CU64BitRegs[] = {
387 X86::RBX, X86::R12, X86::R13, X86::R14, X86::R15, X86::RBP, 0
388 };
389 const unsigned *CURegs = (Is64Bit ? CU64BitRegs : CU32BitRegs);
390
Bill Wendling57a3cd22011-12-06 21:23:42 +0000391 for (unsigned i = CU_NUM_SAVED_REGS - RegCount; i < CU_NUM_SAVED_REGS; ++i) {
Bill Wendling09b02c82011-07-25 18:00:28 +0000392 int CUReg = getCompactUnwindRegNum(CURegs, SavedRegs[i]);
393 if (CUReg == -1) return ~0U;
394 SavedRegs[i] = CUReg;
Bill Wendling79df9862011-12-06 01:26:14 +0000395 }
Bill Wendling09b02c82011-07-25 18:00:28 +0000396
Bill Wendling57a3cd22011-12-06 21:23:42 +0000397 uint32_t RenumRegs[CU_NUM_SAVED_REGS];
398 for (unsigned i = CU_NUM_SAVED_REGS - RegCount; i < CU_NUM_SAVED_REGS; ++i) {
Bill Wendling09b02c82011-07-25 18:00:28 +0000399 unsigned Countless = 0;
Bill Wendling57a3cd22011-12-06 21:23:42 +0000400 for (unsigned j = CU_NUM_SAVED_REGS - RegCount; j < i; ++j)
Bill Wendling09b02c82011-07-25 18:00:28 +0000401 if (SavedRegs[j] < SavedRegs[i])
402 ++Countless;
403
404 RenumRegs[i] = SavedRegs[i] - Countless - 1;
405 }
406
407 // Take the renumbered values and encode them into a 10-bit number.
408 uint32_t permutationEncoding = 0;
409 switch (RegCount) {
410 case 6:
411 permutationEncoding |= 120 * RenumRegs[0] + 24 * RenumRegs[1]
412 + 6 * RenumRegs[2] + 2 * RenumRegs[3]
413 + RenumRegs[4];
414 break;
415 case 5:
416 permutationEncoding |= 120 * RenumRegs[1] + 24 * RenumRegs[2]
417 + 6 * RenumRegs[3] + 2 * RenumRegs[4]
418 + RenumRegs[5];
419 break;
420 case 4:
421 permutationEncoding |= 60 * RenumRegs[2] + 12 * RenumRegs[3]
422 + 3 * RenumRegs[4] + RenumRegs[5];
423 break;
424 case 3:
425 permutationEncoding |= 20 * RenumRegs[3] + 4 * RenumRegs[4]
426 + RenumRegs[5];
427 break;
428 case 2:
429 permutationEncoding |= 5 * RenumRegs[4] + RenumRegs[5];
430 break;
431 case 1:
432 permutationEncoding |= RenumRegs[5];
433 break;
434 }
435
436 assert((permutationEncoding & 0x3FF) == permutationEncoding &&
437 "Invalid compact register encoding!");
438 return permutationEncoding;
439}
440
441/// encodeCompactUnwindRegistersWithFrame - Return the registers encoded for a
442/// compact encoding with a frame pointer.
Bill Wendling57a3cd22011-12-06 21:23:42 +0000443static uint32_t
444encodeCompactUnwindRegistersWithFrame(unsigned SavedRegs[CU_NUM_SAVED_REGS],
445 bool Is64Bit) {
Bill Wendling09b02c82011-07-25 18:00:28 +0000446 static const unsigned CU32BitRegs[] = {
447 X86::EBX, X86::ECX, X86::EDX, X86::EDI, X86::ESI, X86::EBP, 0
448 };
449 static const unsigned CU64BitRegs[] = {
450 X86::RBX, X86::R12, X86::R13, X86::R14, X86::R15, X86::RBP, 0
451 };
452 const unsigned *CURegs = (Is64Bit ? CU64BitRegs : CU32BitRegs);
453
454 // Encode the registers in the order they were saved, 3-bits per register. The
455 // registers are numbered from 1 to 6.
456 uint32_t RegEnc = 0;
457 for (int I = 5; I >= 0; --I) {
458 unsigned Reg = SavedRegs[I];
459 if (Reg == 0) break;
460 int CURegNum = getCompactUnwindRegNum(CURegs, Reg);
461 if (CURegNum == -1)
462 return ~0U;
Bill Wendling80caf9c2011-12-06 01:57:48 +0000463
464 // Encode the 3-bit register number in order, skipping over 3-bits for each
465 // register.
Bill Wendling79df9862011-12-06 01:26:14 +0000466 RegEnc |= (CURegNum & 0x7) << ((5 - I) * 3);
Bill Wendling09b02c82011-07-25 18:00:28 +0000467 }
468
469 assert((RegEnc & 0x7FFF) == RegEnc && "Invalid compact register encoding!");
470 return RegEnc;
471}
472
473uint32_t X86FrameLowering::getCompactUnwindEncoding(MachineFunction &MF) const {
474 const X86RegisterInfo *RegInfo = TM.getRegisterInfo();
475 unsigned FramePtr = RegInfo->getFrameRegister(MF);
476 unsigned StackPtr = RegInfo->getStackRegister();
477
Bill Wendling09b02c82011-07-25 18:00:28 +0000478 bool Is64Bit = STI.is64Bit();
479 bool HasFP = hasFP(MF);
480
Bill Wendling57a3cd22011-12-06 21:23:42 +0000481 unsigned SavedRegs[CU_NUM_SAVED_REGS] = { 0, 0, 0, 0, 0, 0 };
482 int SavedRegIdx = CU_NUM_SAVED_REGS;
Bill Wendling09b02c82011-07-25 18:00:28 +0000483
484 unsigned OffsetSize = (Is64Bit ? 8 : 4);
485
486 unsigned PushInstr = (Is64Bit ? X86::PUSH64r : X86::PUSH32r);
487 unsigned PushInstrSize = 1;
488 unsigned MoveInstr = (Is64Bit ? X86::MOV64rr : X86::MOV32rr);
489 unsigned MoveInstrSize = (Is64Bit ? 3 : 2);
Bill Wendling09b02c82011-07-25 18:00:28 +0000490 unsigned SubtractInstrIdx = (Is64Bit ? 3 : 2);
491
Bill Wendlingde770552011-07-26 08:03:49 +0000492 unsigned StackDivide = (Is64Bit ? 8 : 4);
493
Bill Wendling09b02c82011-07-25 18:00:28 +0000494 unsigned InstrOffset = 0;
Bill Wendling09b02c82011-07-25 18:00:28 +0000495 unsigned StackAdjust = 0;
Bill Wendling57a3cd22011-12-06 21:23:42 +0000496 unsigned StackSize = 0;
Bill Wendling09b02c82011-07-25 18:00:28 +0000497
498 MachineBasicBlock &MBB = MF.front(); // Prologue is in entry BB.
499 bool ExpectEnd = false;
500 for (MachineBasicBlock::iterator
501 MBBI = MBB.begin(), MBBE = MBB.end(); MBBI != MBBE; ++MBBI) {
502 MachineInstr &MI = *MBBI;
503 unsigned Opc = MI.getOpcode();
504 if (Opc == X86::PROLOG_LABEL) continue;
505 if (!MI.getFlag(MachineInstr::FrameSetup)) break;
506
507 // We don't exect any more prolog instructions.
508 if (ExpectEnd) return 0;
509
510 if (Opc == PushInstr) {
511 // If there are too many saved registers, we cannot use compact encoding.
512 if (--SavedRegIdx < 0) return 0;
513
514 SavedRegs[SavedRegIdx] = MI.getOperand(0).getReg();
Bill Wendling57a3cd22011-12-06 21:23:42 +0000515 StackAdjust += OffsetSize;
Bill Wendling09b02c82011-07-25 18:00:28 +0000516 InstrOffset += PushInstrSize;
517 } else if (Opc == MoveInstr) {
518 unsigned SrcReg = MI.getOperand(1).getReg();
519 unsigned DstReg = MI.getOperand(0).getReg();
520
521 if (DstReg != FramePtr || SrcReg != StackPtr)
522 return 0;
523
Bill Wendling57a3cd22011-12-06 21:23:42 +0000524 StackAdjust = 0;
Bill Wendling09b02c82011-07-25 18:00:28 +0000525 memset(SavedRegs, 0, sizeof(SavedRegs));
Bill Wendling57a3cd22011-12-06 21:23:42 +0000526 SavedRegIdx = CU_NUM_SAVED_REGS;
Bill Wendling09b02c82011-07-25 18:00:28 +0000527 InstrOffset += MoveInstrSize;
Bill Wendling84d518a2011-12-06 22:14:27 +0000528 } else if (Opc == X86::SUB64ri32 || Opc == X86::SUB64ri8 ||
529 Opc == X86::SUB32ri || Opc == X86::SUB32ri8) {
Bill Wendling57a3cd22011-12-06 21:23:42 +0000530 if (StackSize)
531 // We already have a stack size.
Bill Wendling09b02c82011-07-25 18:00:28 +0000532 return 0;
533
534 if (!MI.getOperand(0).isReg() ||
535 MI.getOperand(0).getReg() != MI.getOperand(1).getReg() ||
536 MI.getOperand(0).getReg() != StackPtr || !MI.getOperand(2).isImm())
537 // We need this to be a stack adjustment pointer. Something like:
538 //
539 // %RSP<def> = SUB64ri8 %RSP, 48
540 return 0;
541
Bill Wendling57a3cd22011-12-06 21:23:42 +0000542 StackSize = MI.getOperand(2).getImm() / StackDivide;
Bill Wendling09b02c82011-07-25 18:00:28 +0000543 SubtractInstrIdx += InstrOffset;
544 ExpectEnd = true;
545 }
546 }
547
548 // Encode that we are using EBP/RBP as the frame pointer.
549 uint32_t CompactUnwindEncoding = 0;
Bill Wendling57a3cd22011-12-06 21:23:42 +0000550 StackAdjust /= StackDivide;
Bill Wendling09b02c82011-07-25 18:00:28 +0000551 if (HasFP) {
Bill Wendling57a3cd22011-12-06 21:23:42 +0000552 if ((StackAdjust & 0xFF) != StackAdjust)
Bill Wendling09b02c82011-07-25 18:00:28 +0000553 // Offset was too big for compact encoding.
554 return 0;
555
556 // Get the encoding of the saved registers when we have a frame pointer.
557 uint32_t RegEnc = encodeCompactUnwindRegistersWithFrame(SavedRegs, Is64Bit);
Bill Wendling5b2c4972011-12-06 19:16:17 +0000558 if (RegEnc == ~0U) return 0;
Bill Wendling09b02c82011-07-25 18:00:28 +0000559
560 CompactUnwindEncoding |= 0x01000000;
Bill Wendling57a3cd22011-12-06 21:23:42 +0000561 CompactUnwindEncoding |= (StackAdjust & 0xFF) << 16;
Bill Wendling09b02c82011-07-25 18:00:28 +0000562 CompactUnwindEncoding |= RegEnc & 0x7FFF;
563 } else {
Bill Wendlingb3ec3292011-12-07 07:58:55 +0000564 ++StackAdjust;
565 uint32_t TotalStackSize = StackAdjust + StackSize;
Bill Wendling581ac272011-12-06 21:34:01 +0000566 if ((TotalStackSize & 0xFF) == TotalStackSize) {
Bill Wendling5b2c4972011-12-06 19:16:17 +0000567 // Frameless stack with a small stack size.
Bill Wendling09b02c82011-07-25 18:00:28 +0000568 CompactUnwindEncoding |= 0x02000000;
Bill Wendling5b2c4972011-12-06 19:16:17 +0000569
570 // Encode the stack size.
Bill Wendling581ac272011-12-06 21:34:01 +0000571 CompactUnwindEncoding |= (TotalStackSize & 0xFF) << 16;
Bill Wendling09b02c82011-07-25 18:00:28 +0000572 } else {
Bill Wendling57a3cd22011-12-06 21:23:42 +0000573 if ((StackAdjust & 0x7) != StackAdjust)
Bill Wendling09b02c82011-07-25 18:00:28 +0000574 // The extra stack adjustments are too big for us to handle.
575 return 0;
576
577 // Frameless stack with an offset too large for us to encode compactly.
578 CompactUnwindEncoding |= 0x03000000;
579
580 // Encode the offset to the nnnnnn value in the 'subl $nnnnnn, ESP'
581 // instruction.
582 CompactUnwindEncoding |= (SubtractInstrIdx & 0xFF) << 16;
583
Bill Wendling57a3cd22011-12-06 21:23:42 +0000584 // Encode any extra stack stack adjustments (done via push instructions).
585 CompactUnwindEncoding |= (StackAdjust & 0x7) << 13;
Bill Wendling09b02c82011-07-25 18:00:28 +0000586 }
587
Bill Wendling5b2c4972011-12-06 19:16:17 +0000588 // Encode the number of registers saved.
Bill Wendling57a3cd22011-12-06 21:23:42 +0000589 CompactUnwindEncoding |= ((CU_NUM_SAVED_REGS - SavedRegIdx) & 0x7) << 10;
Bill Wendling75e14e02011-12-06 19:09:06 +0000590
Bill Wendling09b02c82011-07-25 18:00:28 +0000591 // Get the encoding of the saved registers when we don't have a frame
592 // pointer.
Bill Wendling57a3cd22011-12-06 21:23:42 +0000593 uint32_t RegEnc =
594 encodeCompactUnwindRegistersWithoutFrame(SavedRegs,
595 CU_NUM_SAVED_REGS - SavedRegIdx,
596 Is64Bit);
Bill Wendling09b02c82011-07-25 18:00:28 +0000597 if (RegEnc == ~0U) return 0;
Bill Wendling5b2c4972011-12-06 19:16:17 +0000598
599 // Encode the register encoding.
Bill Wendling09b02c82011-07-25 18:00:28 +0000600 CompactUnwindEncoding |= RegEnc & 0x3FF;
601 }
602
603 return CompactUnwindEncoding;
604}
605
Anton Korobeynikov33464912010-11-15 00:06:54 +0000606/// emitPrologue - Push callee-saved registers onto the stack, which
607/// automatically adjust the stack pointer. Adjust the stack pointer to allocate
608/// space for local variables. Also emit labels used by the exception handler to
609/// generate the exception handling frames.
Anton Korobeynikov16c29b52011-01-10 12:39:04 +0000610void X86FrameLowering::emitPrologue(MachineFunction &MF) const {
Anton Korobeynikov33464912010-11-15 00:06:54 +0000611 MachineBasicBlock &MBB = MF.front(); // Prologue goes in entry BB.
612 MachineBasicBlock::iterator MBBI = MBB.begin();
613 MachineFrameInfo *MFI = MF.getFrameInfo();
614 const Function *Fn = MF.getFunction();
Anton Korobeynikovd9e33852010-11-18 23:25:52 +0000615 const X86RegisterInfo *RegInfo = TM.getRegisterInfo();
616 const X86InstrInfo &TII = *TM.getInstrInfo();
Anton Korobeynikov33464912010-11-15 00:06:54 +0000617 MachineModuleInfo &MMI = MF.getMMI();
618 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
619 bool needsFrameMoves = MMI.hasDebugInfo() ||
Rafael Espindolafc2bb8c2011-05-25 03:44:17 +0000620 Fn->needsUnwindTableEntry();
Anton Korobeynikov33464912010-11-15 00:06:54 +0000621 uint64_t MaxAlign = MFI->getMaxAlignment(); // Desired stack alignment.
622 uint64_t StackSize = MFI->getStackSize(); // Number of bytes to allocate.
Anton Korobeynikovd0c38172010-11-18 21:19:35 +0000623 bool HasFP = hasFP(MF);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000624 bool Is64Bit = STI.is64Bit();
625 bool IsWin64 = STI.isTargetWin64();
626 unsigned StackAlign = getStackAlignment();
627 unsigned SlotSize = RegInfo->getSlotSize();
628 unsigned FramePtr = RegInfo->getFrameRegister(MF);
629 unsigned StackPtr = RegInfo->getStackRegister();
Anton Korobeynikov33464912010-11-15 00:06:54 +0000630 DebugLoc DL;
631
632 // If we're forcing a stack realignment we can't rely on just the frame
633 // info, we need to know the ABI stack alignment as well in case we
634 // have a call out. Otherwise just make sure we have some alignment - we'll
635 // go with the minimum SlotSize.
636 if (ForceStackAlign) {
637 if (MFI->hasCalls())
638 MaxAlign = (StackAlign > MaxAlign) ? StackAlign : MaxAlign;
639 else if (MaxAlign < SlotSize)
640 MaxAlign = SlotSize;
641 }
642
643 // Add RETADDR move area to callee saved frame size.
644 int TailCallReturnAddrDelta = X86FI->getTCReturnAddrDelta();
645 if (TailCallReturnAddrDelta < 0)
646 X86FI->setCalleeSavedFrameSize(
647 X86FI->getCalleeSavedFrameSize() - TailCallReturnAddrDelta);
648
649 // If this is x86-64 and the Red Zone is not disabled, if we are a leaf
650 // function, and use up to 128 bytes of stack space, don't have a frame
651 // pointer, calls, or dynamic alloca then we do not need to adjust the
652 // stack pointer (we fit in the Red Zone).
653 if (Is64Bit && !Fn->hasFnAttr(Attribute::NoRedZone) &&
654 !RegInfo->needsStackRealignment(MF) &&
Nick Lewycky8a8d4792011-12-02 22:16:29 +0000655 !MFI->hasVarSizedObjects() && // No dynamic alloca.
656 !MFI->adjustsStack() && // No calls.
657 !IsWin64 && // Win64 has no Red Zone
658 !MF.getTarget().Options.EnableSegmentedStacks) { // Regular stack
Anton Korobeynikov33464912010-11-15 00:06:54 +0000659 uint64_t MinSize = X86FI->getCalleeSavedFrameSize();
660 if (HasFP) MinSize += SlotSize;
661 StackSize = std::max(MinSize, StackSize > 128 ? StackSize - 128 : 0);
662 MFI->setStackSize(StackSize);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000663 }
664
665 // Insert stack pointer adjustment for later moving of return addr. Only
666 // applies to tail call optimized functions where the callee argument stack
667 // size is bigger than the callers.
668 if (TailCallReturnAddrDelta < 0) {
669 MachineInstr *MI =
670 BuildMI(MBB, MBBI, DL,
671 TII.get(getSUBriOpcode(Is64Bit, -TailCallReturnAddrDelta)),
672 StackPtr)
673 .addReg(StackPtr)
Charles Davisaff232a2011-06-12 01:45:54 +0000674 .addImm(-TailCallReturnAddrDelta)
675 .setMIFlag(MachineInstr::FrameSetup);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000676 MI->getOperand(3).setIsDead(); // The EFLAGS implicit def is dead.
677 }
678
679 // Mapping for machine moves:
680 //
681 // DST: VirtualFP AND
682 // SRC: VirtualFP => DW_CFA_def_cfa_offset
683 // ELSE => DW_CFA_def_cfa
684 //
685 // SRC: VirtualFP AND
686 // DST: Register => DW_CFA_def_cfa_register
687 //
688 // ELSE
689 // OFFSET < 0 => DW_CFA_offset_extended_sf
690 // REG < 64 => DW_CFA_offset + Reg
691 // ELSE => DW_CFA_offset_extended
692
693 std::vector<MachineMove> &Moves = MMI.getFrameMoves();
694 const TargetData *TD = MF.getTarget().getTargetData();
695 uint64_t NumBytes = 0;
696 int stackGrowth = -TD->getPointerSize();
697
698 if (HasFP) {
699 // Calculate required stack adjustment.
700 uint64_t FrameSize = StackSize - SlotSize;
701 if (RegInfo->needsStackRealignment(MF))
702 FrameSize = (FrameSize + MaxAlign - 1) / MaxAlign * MaxAlign;
703
704 NumBytes = FrameSize - X86FI->getCalleeSavedFrameSize();
705
706 // Get the offset of the stack slot for the EBP register, which is
707 // guaranteed to be the last slot by processFunctionBeforeFrameFinalized.
708 // Update the frame offset adjustment.
709 MFI->setOffsetAdjustment(-NumBytes);
710
711 // Save EBP/RBP into the appropriate stack slot.
712 BuildMI(MBB, MBBI, DL, TII.get(Is64Bit ? X86::PUSH64r : X86::PUSH32r))
Charles Davisaff232a2011-06-12 01:45:54 +0000713 .addReg(FramePtr, RegState::Kill)
714 .setMIFlag(MachineInstr::FrameSetup);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000715
716 if (needsFrameMoves) {
717 // Mark the place where EBP/RBP was saved.
718 MCSymbol *FrameLabel = MMI.getContext().CreateTempSymbol();
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000719 BuildMI(MBB, MBBI, DL, TII.get(X86::PROLOG_LABEL))
720 .addSym(FrameLabel);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000721
722 // Define the current CFA rule to use the provided offset.
723 if (StackSize) {
724 MachineLocation SPDst(MachineLocation::VirtualFP);
725 MachineLocation SPSrc(MachineLocation::VirtualFP, 2 * stackGrowth);
726 Moves.push_back(MachineMove(FrameLabel, SPDst, SPSrc));
727 } else {
Anton Korobeynikov33464912010-11-15 00:06:54 +0000728 MachineLocation SPDst(StackPtr);
729 MachineLocation SPSrc(StackPtr, stackGrowth);
730 Moves.push_back(MachineMove(FrameLabel, SPDst, SPSrc));
731 }
732
733 // Change the rule for the FramePtr to be an "offset" rule.
734 MachineLocation FPDst(MachineLocation::VirtualFP, 2 * stackGrowth);
735 MachineLocation FPSrc(FramePtr);
736 Moves.push_back(MachineMove(FrameLabel, FPDst, FPSrc));
737 }
738
Bill Wendling09b02c82011-07-25 18:00:28 +0000739 // Update EBP with the new base value.
Anton Korobeynikov33464912010-11-15 00:06:54 +0000740 BuildMI(MBB, MBBI, DL,
741 TII.get(Is64Bit ? X86::MOV64rr : X86::MOV32rr), FramePtr)
Charles Davisaff232a2011-06-12 01:45:54 +0000742 .addReg(StackPtr)
743 .setMIFlag(MachineInstr::FrameSetup);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000744
745 if (needsFrameMoves) {
746 // Mark effective beginning of when frame pointer becomes valid.
747 MCSymbol *FrameLabel = MMI.getContext().CreateTempSymbol();
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000748 BuildMI(MBB, MBBI, DL, TII.get(X86::PROLOG_LABEL))
749 .addSym(FrameLabel);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000750
751 // Define the current CFA to use the EBP/RBP register.
752 MachineLocation FPDst(FramePtr);
753 MachineLocation FPSrc(MachineLocation::VirtualFP);
754 Moves.push_back(MachineMove(FrameLabel, FPDst, FPSrc));
755 }
756
757 // Mark the FramePtr as live-in in every block except the entry.
758 for (MachineFunction::iterator I = llvm::next(MF.begin()), E = MF.end();
759 I != E; ++I)
760 I->addLiveIn(FramePtr);
761
762 // Realign stack
763 if (RegInfo->needsStackRealignment(MF)) {
764 MachineInstr *MI =
765 BuildMI(MBB, MBBI, DL,
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000766 TII.get(Is64Bit ? X86::AND64ri32 : X86::AND32ri), StackPtr)
767 .addReg(StackPtr)
768 .addImm(-MaxAlign)
769 .setMIFlag(MachineInstr::FrameSetup);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000770
771 // The EFLAGS implicit def is dead.
772 MI->getOperand(3).setIsDead();
773 }
774 } else {
775 NumBytes = StackSize - X86FI->getCalleeSavedFrameSize();
776 }
777
778 // Skip the callee-saved push instructions.
779 bool PushedRegs = false;
780 int StackOffset = 2 * stackGrowth;
781
782 while (MBBI != MBB.end() &&
783 (MBBI->getOpcode() == X86::PUSH32r ||
784 MBBI->getOpcode() == X86::PUSH64r)) {
785 PushedRegs = true;
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000786 MBBI->setFlag(MachineInstr::FrameSetup);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000787 ++MBBI;
788
789 if (!HasFP && needsFrameMoves) {
790 // Mark callee-saved push instruction.
791 MCSymbol *Label = MMI.getContext().CreateTempSymbol();
792 BuildMI(MBB, MBBI, DL, TII.get(X86::PROLOG_LABEL)).addSym(Label);
793
794 // Define the current CFA rule to use the provided offset.
Bill Wendling09b02c82011-07-25 18:00:28 +0000795 unsigned Ptr = StackSize ? MachineLocation::VirtualFP : StackPtr;
Anton Korobeynikov33464912010-11-15 00:06:54 +0000796 MachineLocation SPDst(Ptr);
797 MachineLocation SPSrc(Ptr, StackOffset);
798 Moves.push_back(MachineMove(Label, SPDst, SPSrc));
799 StackOffset += stackGrowth;
800 }
801 }
802
803 DL = MBB.findDebugLoc(MBBI);
804
805 // If there is an SUB32ri of ESP immediately before this instruction, merge
806 // the two. This can be the case when tail call elimination is enabled and
807 // the callee has more arguments then the caller.
808 NumBytes -= mergeSPUpdates(MBB, MBBI, StackPtr, true);
809
810 // If there is an ADD32ri or SUB32ri of ESP immediately after this
811 // instruction, merge the two instructions.
812 mergeSPUpdatesDown(MBB, MBBI, StackPtr, &NumBytes);
813
814 // Adjust stack pointer: ESP -= numbytes.
815
816 // Windows and cygwin/mingw require a prologue helper routine when allocating
817 // more than 4K bytes on the stack. Windows uses __chkstk and cygwin/mingw
818 // uses __alloca. __alloca and the 32-bit version of __chkstk will probe the
819 // stack and adjust the stack pointer in one go. The 64-bit version of
820 // __chkstk is only responsible for probing the stack. The 64-bit prologue is
821 // responsible for adjusting the stack pointer. Touching the stack at 4K
822 // increments is necessary to ensure that the guard pages used by the OS
823 // virtual memory manager are allocated in correct sequence.
NAKAMURA Takumia2e07622011-03-24 07:07:00 +0000824 if (NumBytes >= 4096 && STI.isTargetCOFF() && !STI.isTargetEnvMacho()) {
825 const char *StackProbeSymbol;
826 bool isSPUpdateNeeded = false;
827
828 if (Is64Bit) {
829 if (STI.isTargetCygMing())
830 StackProbeSymbol = "___chkstk";
831 else {
832 StackProbeSymbol = "__chkstk";
833 isSPUpdateNeeded = true;
834 }
835 } else if (STI.isTargetCygMing())
836 StackProbeSymbol = "_alloca";
837 else
838 StackProbeSymbol = "_chkstk";
839
Anton Korobeynikov33464912010-11-15 00:06:54 +0000840 // Check whether EAX is livein for this function.
841 bool isEAXAlive = isEAXLiveIn(MF);
842
NAKAMURA Takumia2e07622011-03-24 07:07:00 +0000843 if (isEAXAlive) {
844 // Sanity check that EAX is not livein for this function.
845 // It should not be, so throw an assert.
846 assert(!Is64Bit && "EAX is livein in x64 case!");
847
Anton Korobeynikov33464912010-11-15 00:06:54 +0000848 // Save EAX
849 BuildMI(MBB, MBBI, DL, TII.get(X86::PUSH32r))
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000850 .addReg(X86::EAX, RegState::Kill)
851 .setMIFlag(MachineInstr::FrameSetup);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000852 }
Anton Korobeynikov33464912010-11-15 00:06:54 +0000853
NAKAMURA Takumia2e07622011-03-24 07:07:00 +0000854 if (Is64Bit) {
855 // Handle the 64-bit Windows ABI case where we need to call __chkstk.
856 // Function prologue is responsible for adjusting the stack pointer.
857 BuildMI(MBB, MBBI, DL, TII.get(X86::MOV64ri), X86::RAX)
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000858 .addImm(NumBytes)
859 .setMIFlag(MachineInstr::FrameSetup);
NAKAMURA Takumia2e07622011-03-24 07:07:00 +0000860 } else {
861 // Allocate NumBytes-4 bytes on stack in case of isEAXAlive.
862 // We'll also use 4 already allocated bytes for EAX.
863 BuildMI(MBB, MBBI, DL, TII.get(X86::MOV32ri), X86::EAX)
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000864 .addImm(isEAXAlive ? NumBytes - 4 : NumBytes)
865 .setMIFlag(MachineInstr::FrameSetup);
NAKAMURA Takumia2e07622011-03-24 07:07:00 +0000866 }
867
868 BuildMI(MBB, MBBI, DL,
869 TII.get(Is64Bit ? X86::W64ALLOCA : X86::CALLpcrel32))
870 .addExternalSymbol(StackProbeSymbol)
871 .addReg(StackPtr, RegState::Define | RegState::Implicit)
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000872 .addReg(X86::EFLAGS, RegState::Define | RegState::Implicit)
873 .setMIFlag(MachineInstr::FrameSetup);
NAKAMURA Takumia2e07622011-03-24 07:07:00 +0000874
875 // MSVC x64's __chkstk needs to adjust %rsp.
876 // FIXME: %rax preserves the offset and should be available.
877 if (isSPUpdateNeeded)
878 emitSPUpdate(MBB, MBBI, StackPtr, -(int64_t)NumBytes, Is64Bit,
879 TII, *RegInfo);
880
881 if (isEAXAlive) {
882 // Restore EAX
883 MachineInstr *MI = addRegOffset(BuildMI(MF, DL, TII.get(X86::MOV32rm),
884 X86::EAX),
885 StackPtr, false, NumBytes - 4);
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000886 MI->setFlag(MachineInstr::FrameSetup);
NAKAMURA Takumia2e07622011-03-24 07:07:00 +0000887 MBB.insert(MBBI, MI);
888 }
Anton Korobeynikov33464912010-11-15 00:06:54 +0000889 } else if (NumBytes)
Evan Cheng7158e082011-01-03 22:53:22 +0000890 emitSPUpdate(MBB, MBBI, StackPtr, -(int64_t)NumBytes, Is64Bit,
891 TII, *RegInfo);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000892
Rafael Espindolaf0adba92011-04-15 15:11:06 +0000893 if (( (!HasFP && NumBytes) || PushedRegs) && needsFrameMoves) {
Anton Korobeynikov33464912010-11-15 00:06:54 +0000894 // Mark end of stack pointer adjustment.
895 MCSymbol *Label = MMI.getContext().CreateTempSymbol();
Bill Wendlingfb4eb162011-07-21 00:44:56 +0000896 BuildMI(MBB, MBBI, DL, TII.get(X86::PROLOG_LABEL))
897 .addSym(Label);
Anton Korobeynikov33464912010-11-15 00:06:54 +0000898
899 if (!HasFP && NumBytes) {
900 // Define the current CFA rule to use the provided offset.
901 if (StackSize) {
902 MachineLocation SPDst(MachineLocation::VirtualFP);
903 MachineLocation SPSrc(MachineLocation::VirtualFP,
904 -StackSize + stackGrowth);
905 Moves.push_back(MachineMove(Label, SPDst, SPSrc));
906 } else {
Anton Korobeynikov33464912010-11-15 00:06:54 +0000907 MachineLocation SPDst(StackPtr);
908 MachineLocation SPSrc(StackPtr, stackGrowth);
909 Moves.push_back(MachineMove(Label, SPDst, SPSrc));
910 }
911 }
912
913 // Emit DWARF info specifying the offsets of the callee-saved registers.
914 if (PushedRegs)
915 emitCalleeSavedFrameMoves(MF, Label, HasFP ? FramePtr : StackPtr);
916 }
Bill Wendling09b02c82011-07-25 18:00:28 +0000917
918 // Darwin 10.7 and greater has support for compact unwind encoding.
Bill Wendlingc8725d12011-09-06 23:47:14 +0000919 if (STI.getTargetTriple().isMacOSX() &&
Eli Friedmanac86d432011-08-31 16:19:51 +0000920 !STI.getTargetTriple().isMacOSXVersionLT(10, 7))
Bill Wendling09b02c82011-07-25 18:00:28 +0000921 MMI.setCompactUnwindEncoding(getCompactUnwindEncoding(MF));
Anton Korobeynikov33464912010-11-15 00:06:54 +0000922}
923
Anton Korobeynikov16c29b52011-01-10 12:39:04 +0000924void X86FrameLowering::emitEpilogue(MachineFunction &MF,
Nick Lewycky3c2f0a12011-06-14 03:23:52 +0000925 MachineBasicBlock &MBB) const {
Anton Korobeynikov33464912010-11-15 00:06:54 +0000926 const MachineFrameInfo *MFI = MF.getFrameInfo();
927 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
Anton Korobeynikovd9e33852010-11-18 23:25:52 +0000928 const X86RegisterInfo *RegInfo = TM.getRegisterInfo();
929 const X86InstrInfo &TII = *TM.getInstrInfo();
Jakob Stoklund Olesen4f28c1c2011-01-13 21:28:52 +0000930 MachineBasicBlock::iterator MBBI = MBB.getLastNonDebugInstr();
931 assert(MBBI != MBB.end() && "Returning block has no instructions");
Anton Korobeynikov33464912010-11-15 00:06:54 +0000932 unsigned RetOpcode = MBBI->getOpcode();
933 DebugLoc DL = MBBI->getDebugLoc();
934 bool Is64Bit = STI.is64Bit();
935 unsigned StackAlign = getStackAlignment();
936 unsigned SlotSize = RegInfo->getSlotSize();
937 unsigned FramePtr = RegInfo->getFrameRegister(MF);
938 unsigned StackPtr = RegInfo->getStackRegister();
939
940 switch (RetOpcode) {
941 default:
942 llvm_unreachable("Can only insert epilog into returning blocks");
943 case X86::RET:
944 case X86::RETI:
945 case X86::TCRETURNdi:
946 case X86::TCRETURNri:
947 case X86::TCRETURNmi:
948 case X86::TCRETURNdi64:
949 case X86::TCRETURNri64:
950 case X86::TCRETURNmi64:
951 case X86::EH_RETURN:
952 case X86::EH_RETURN64:
953 break; // These are ok
954 }
955
956 // Get the number of bytes to allocate from the FrameInfo.
957 uint64_t StackSize = MFI->getStackSize();
958 uint64_t MaxAlign = MFI->getMaxAlignment();
959 unsigned CSSize = X86FI->getCalleeSavedFrameSize();
960 uint64_t NumBytes = 0;
961
962 // If we're forcing a stack realignment we can't rely on just the frame
963 // info, we need to know the ABI stack alignment as well in case we
964 // have a call out. Otherwise just make sure we have some alignment - we'll
965 // go with the minimum.
966 if (ForceStackAlign) {
967 if (MFI->hasCalls())
968 MaxAlign = (StackAlign > MaxAlign) ? StackAlign : MaxAlign;
969 else
970 MaxAlign = MaxAlign ? MaxAlign : 4;
971 }
972
Anton Korobeynikovd0c38172010-11-18 21:19:35 +0000973 if (hasFP(MF)) {
Anton Korobeynikov33464912010-11-15 00:06:54 +0000974 // Calculate required stack adjustment.
975 uint64_t FrameSize = StackSize - SlotSize;
976 if (RegInfo->needsStackRealignment(MF))
977 FrameSize = (FrameSize + MaxAlign - 1)/MaxAlign*MaxAlign;
978
979 NumBytes = FrameSize - CSSize;
980
981 // Pop EBP.
982 BuildMI(MBB, MBBI, DL,
983 TII.get(Is64Bit ? X86::POP64r : X86::POP32r), FramePtr);
984 } else {
985 NumBytes = StackSize - CSSize;
986 }
987
988 // Skip the callee-saved pop instructions.
989 MachineBasicBlock::iterator LastCSPop = MBBI;
990 while (MBBI != MBB.begin()) {
991 MachineBasicBlock::iterator PI = prior(MBBI);
992 unsigned Opc = PI->getOpcode();
993
Jakob Stoklund Olesen4f28c1c2011-01-13 21:28:52 +0000994 if (Opc != X86::POP32r && Opc != X86::POP64r && Opc != X86::DBG_VALUE &&
Evan Cheng5a96b3d2011-12-07 07:15:52 +0000995 !PI->isTerminator())
Anton Korobeynikov33464912010-11-15 00:06:54 +0000996 break;
997
998 --MBBI;
999 }
1000
1001 DL = MBBI->getDebugLoc();
1002
1003 // If there is an ADD32ri or SUB32ri of ESP immediately before this
1004 // instruction, merge the two instructions.
1005 if (NumBytes || MFI->hasVarSizedObjects())
1006 mergeSPUpdatesUp(MBB, MBBI, StackPtr, &NumBytes);
1007
1008 // If dynamic alloca is used, then reset esp to point to the last callee-saved
1009 // slot before popping them off! Same applies for the case, when stack was
1010 // realigned.
1011 if (RegInfo->needsStackRealignment(MF)) {
1012 // We cannot use LEA here, because stack pointer was realigned. We need to
1013 // deallocate local frame back.
1014 if (CSSize) {
Evan Cheng7158e082011-01-03 22:53:22 +00001015 emitSPUpdate(MBB, MBBI, StackPtr, NumBytes, Is64Bit, TII, *RegInfo);
Anton Korobeynikov33464912010-11-15 00:06:54 +00001016 MBBI = prior(LastCSPop);
1017 }
1018
1019 BuildMI(MBB, MBBI, DL,
1020 TII.get(Is64Bit ? X86::MOV64rr : X86::MOV32rr),
1021 StackPtr).addReg(FramePtr);
1022 } else if (MFI->hasVarSizedObjects()) {
1023 if (CSSize) {
1024 unsigned Opc = Is64Bit ? X86::LEA64r : X86::LEA32r;
1025 MachineInstr *MI =
1026 addRegOffset(BuildMI(MF, DL, TII.get(Opc), StackPtr),
1027 FramePtr, false, -CSSize);
1028 MBB.insert(MBBI, MI);
1029 } else {
1030 BuildMI(MBB, MBBI, DL,
1031 TII.get(Is64Bit ? X86::MOV64rr : X86::MOV32rr), StackPtr)
1032 .addReg(FramePtr);
1033 }
1034 } else if (NumBytes) {
1035 // Adjust stack pointer back: ESP += numbytes.
Evan Cheng7158e082011-01-03 22:53:22 +00001036 emitSPUpdate(MBB, MBBI, StackPtr, NumBytes, Is64Bit, TII, *RegInfo);
Anton Korobeynikov33464912010-11-15 00:06:54 +00001037 }
1038
1039 // We're returning from function via eh_return.
1040 if (RetOpcode == X86::EH_RETURN || RetOpcode == X86::EH_RETURN64) {
Jakob Stoklund Olesen4f28c1c2011-01-13 21:28:52 +00001041 MBBI = MBB.getLastNonDebugInstr();
Anton Korobeynikov33464912010-11-15 00:06:54 +00001042 MachineOperand &DestAddr = MBBI->getOperand(0);
1043 assert(DestAddr.isReg() && "Offset should be in register!");
1044 BuildMI(MBB, MBBI, DL,
1045 TII.get(Is64Bit ? X86::MOV64rr : X86::MOV32rr),
1046 StackPtr).addReg(DestAddr.getReg());
1047 } else if (RetOpcode == X86::TCRETURNri || RetOpcode == X86::TCRETURNdi ||
1048 RetOpcode == X86::TCRETURNmi ||
1049 RetOpcode == X86::TCRETURNri64 || RetOpcode == X86::TCRETURNdi64 ||
1050 RetOpcode == X86::TCRETURNmi64) {
1051 bool isMem = RetOpcode == X86::TCRETURNmi || RetOpcode == X86::TCRETURNmi64;
1052 // Tail call return: adjust the stack pointer and jump to callee.
Jakob Stoklund Olesenf7ca9762011-01-13 22:47:43 +00001053 MBBI = MBB.getLastNonDebugInstr();
Anton Korobeynikov33464912010-11-15 00:06:54 +00001054 MachineOperand &JumpTarget = MBBI->getOperand(0);
1055 MachineOperand &StackAdjust = MBBI->getOperand(isMem ? 5 : 1);
1056 assert(StackAdjust.isImm() && "Expecting immediate value.");
1057
1058 // Adjust stack pointer.
1059 int StackAdj = StackAdjust.getImm();
1060 int MaxTCDelta = X86FI->getTCReturnAddrDelta();
1061 int Offset = 0;
1062 assert(MaxTCDelta <= 0 && "MaxTCDelta should never be positive");
1063
1064 // Incoporate the retaddr area.
1065 Offset = StackAdj-MaxTCDelta;
1066 assert(Offset >= 0 && "Offset should never be negative");
1067
1068 if (Offset) {
Chris Lattner7a2bdde2011-04-15 05:18:47 +00001069 // Check for possible merge with preceding ADD instruction.
Anton Korobeynikov33464912010-11-15 00:06:54 +00001070 Offset += mergeSPUpdates(MBB, MBBI, StackPtr, true);
Evan Cheng7158e082011-01-03 22:53:22 +00001071 emitSPUpdate(MBB, MBBI, StackPtr, Offset, Is64Bit, TII, *RegInfo);
Anton Korobeynikov33464912010-11-15 00:06:54 +00001072 }
1073
1074 // Jump to label or value in register.
1075 if (RetOpcode == X86::TCRETURNdi || RetOpcode == X86::TCRETURNdi64) {
Evan Cheng3d2125c2010-11-30 23:55:39 +00001076 MachineInstrBuilder MIB =
1077 BuildMI(MBB, MBBI, DL, TII.get((RetOpcode == X86::TCRETURNdi)
1078 ? X86::TAILJMPd : X86::TAILJMPd64));
1079 if (JumpTarget.isGlobal())
1080 MIB.addGlobalAddress(JumpTarget.getGlobal(), JumpTarget.getOffset(),
1081 JumpTarget.getTargetFlags());
1082 else {
1083 assert(JumpTarget.isSymbol());
1084 MIB.addExternalSymbol(JumpTarget.getSymbolName(),
1085 JumpTarget.getTargetFlags());
1086 }
Anton Korobeynikov33464912010-11-15 00:06:54 +00001087 } else if (RetOpcode == X86::TCRETURNmi || RetOpcode == X86::TCRETURNmi64) {
1088 MachineInstrBuilder MIB =
1089 BuildMI(MBB, MBBI, DL, TII.get((RetOpcode == X86::TCRETURNmi)
1090 ? X86::TAILJMPm : X86::TAILJMPm64));
1091 for (unsigned i = 0; i != 5; ++i)
1092 MIB.addOperand(MBBI->getOperand(i));
1093 } else if (RetOpcode == X86::TCRETURNri64) {
1094 BuildMI(MBB, MBBI, DL, TII.get(X86::TAILJMPr64)).
1095 addReg(JumpTarget.getReg(), RegState::Kill);
1096 } else {
1097 BuildMI(MBB, MBBI, DL, TII.get(X86::TAILJMPr)).
1098 addReg(JumpTarget.getReg(), RegState::Kill);
1099 }
1100
1101 MachineInstr *NewMI = prior(MBBI);
1102 for (unsigned i = 2, e = MBBI->getNumOperands(); i != e; ++i)
1103 NewMI->addOperand(MBBI->getOperand(i));
1104
1105 // Delete the pseudo instruction TCRETURN.
1106 MBB.erase(MBBI);
1107 } else if ((RetOpcode == X86::RET || RetOpcode == X86::RETI) &&
1108 (X86FI->getTCReturnAddrDelta() < 0)) {
1109 // Add the return addr area delta back since we are not tail calling.
1110 int delta = -1*X86FI->getTCReturnAddrDelta();
Jakob Stoklund Olesen4f28c1c2011-01-13 21:28:52 +00001111 MBBI = MBB.getLastNonDebugInstr();
Anton Korobeynikov33464912010-11-15 00:06:54 +00001112
Chris Lattner7a2bdde2011-04-15 05:18:47 +00001113 // Check for possible merge with preceding ADD instruction.
Anton Korobeynikov33464912010-11-15 00:06:54 +00001114 delta += mergeSPUpdates(MBB, MBBI, StackPtr, true);
Evan Cheng7158e082011-01-03 22:53:22 +00001115 emitSPUpdate(MBB, MBBI, StackPtr, delta, Is64Bit, TII, *RegInfo);
Anton Korobeynikov33464912010-11-15 00:06:54 +00001116 }
1117}
Anton Korobeynikovd9e33852010-11-18 23:25:52 +00001118
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00001119int X86FrameLowering::getFrameIndexOffset(const MachineFunction &MF, int FI) const {
Anton Korobeynikov82f58742010-11-20 15:59:32 +00001120 const X86RegisterInfo *RI =
1121 static_cast<const X86RegisterInfo*>(MF.getTarget().getRegisterInfo());
1122 const MachineFrameInfo *MFI = MF.getFrameInfo();
1123 int Offset = MFI->getObjectOffset(FI) - getOffsetOfLocalArea();
1124 uint64_t StackSize = MFI->getStackSize();
1125
1126 if (RI->needsStackRealignment(MF)) {
1127 if (FI < 0) {
1128 // Skip the saved EBP.
1129 Offset += RI->getSlotSize();
1130 } else {
Duncan Sands17001ce2011-10-18 12:44:00 +00001131 assert((-(Offset + StackSize)) % MFI->getObjectAlignment(FI) == 0);
Anton Korobeynikov82f58742010-11-20 15:59:32 +00001132 return Offset + StackSize;
1133 }
1134 // FIXME: Support tail calls
1135 } else {
1136 if (!hasFP(MF))
1137 return Offset + StackSize;
1138
1139 // Skip the saved EBP.
1140 Offset += RI->getSlotSize();
1141
1142 // Skip the RETADDR move area
1143 const X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
1144 int TailCallReturnAddrDelta = X86FI->getTCReturnAddrDelta();
1145 if (TailCallReturnAddrDelta < 0)
1146 Offset -= TailCallReturnAddrDelta;
1147 }
1148
1149 return Offset;
1150}
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001151
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00001152bool X86FrameLowering::spillCalleeSavedRegisters(MachineBasicBlock &MBB,
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001153 MachineBasicBlock::iterator MI,
1154 const std::vector<CalleeSavedInfo> &CSI,
1155 const TargetRegisterInfo *TRI) const {
1156 if (CSI.empty())
1157 return false;
1158
1159 DebugLoc DL = MBB.findDebugLoc(MI);
1160
1161 MachineFunction &MF = *MBB.getParent();
1162
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001163 unsigned SlotSize = STI.is64Bit() ? 8 : 4;
1164 unsigned FPReg = TRI->getFrameRegister(MF);
1165 unsigned CalleeFrameSize = 0;
1166
1167 const TargetInstrInfo &TII = *MF.getTarget().getInstrInfo();
1168 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
1169
NAKAMURA Takumi419f2322011-02-27 08:47:19 +00001170 // Push GPRs. It increases frame size.
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001171 unsigned Opc = STI.is64Bit() ? X86::PUSH64r : X86::PUSH32r;
1172 for (unsigned i = CSI.size(); i != 0; --i) {
1173 unsigned Reg = CSI[i-1].getReg();
NAKAMURA Takumi419f2322011-02-27 08:47:19 +00001174 if (!X86::GR64RegClass.contains(Reg) &&
1175 !X86::GR32RegClass.contains(Reg))
1176 continue;
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001177 // Add the callee-saved register as live-in. It's killed at the spill.
1178 MBB.addLiveIn(Reg);
1179 if (Reg == FPReg)
1180 // X86RegisterInfo::emitPrologue will handle spilling of frame register.
1181 continue;
NAKAMURA Takumi419f2322011-02-27 08:47:19 +00001182 CalleeFrameSize += SlotSize;
Charles Davisaff232a2011-06-12 01:45:54 +00001183 BuildMI(MBB, MI, DL, TII.get(Opc)).addReg(Reg, RegState::Kill)
1184 .setMIFlag(MachineInstr::FrameSetup);
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001185 }
1186
1187 X86FI->setCalleeSavedFrameSize(CalleeFrameSize);
NAKAMURA Takumi419f2322011-02-27 08:47:19 +00001188
1189 // Make XMM regs spilled. X86 does not have ability of push/pop XMM.
1190 // It can be done by spilling XMMs to stack frame.
1191 // Note that only Win64 ABI might spill XMMs.
1192 for (unsigned i = CSI.size(); i != 0; --i) {
1193 unsigned Reg = CSI[i-1].getReg();
1194 if (X86::GR64RegClass.contains(Reg) ||
1195 X86::GR32RegClass.contains(Reg))
1196 continue;
1197 // Add the callee-saved register as live-in. It's killed at the spill.
1198 MBB.addLiveIn(Reg);
1199 const TargetRegisterClass *RC = TRI->getMinimalPhysRegClass(Reg);
1200 TII.storeRegToStackSlot(MBB, MI, Reg, true, CSI[i-1].getFrameIdx(),
1201 RC, TRI);
1202 }
1203
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001204 return true;
1205}
1206
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00001207bool X86FrameLowering::restoreCalleeSavedRegisters(MachineBasicBlock &MBB,
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001208 MachineBasicBlock::iterator MI,
1209 const std::vector<CalleeSavedInfo> &CSI,
1210 const TargetRegisterInfo *TRI) const {
1211 if (CSI.empty())
1212 return false;
1213
1214 DebugLoc DL = MBB.findDebugLoc(MI);
1215
1216 MachineFunction &MF = *MBB.getParent();
1217 const TargetInstrInfo &TII = *MF.getTarget().getInstrInfo();
NAKAMURA Takumi419f2322011-02-27 08:47:19 +00001218
1219 // Reload XMMs from stack frame.
1220 for (unsigned i = 0, e = CSI.size(); i != e; ++i) {
1221 unsigned Reg = CSI[i].getReg();
1222 if (X86::GR64RegClass.contains(Reg) ||
1223 X86::GR32RegClass.contains(Reg))
1224 continue;
1225 const TargetRegisterClass *RC = TRI->getMinimalPhysRegClass(Reg);
1226 TII.loadRegFromStackSlot(MBB, MI, Reg, CSI[i].getFrameIdx(),
1227 RC, TRI);
1228 }
1229
1230 // POP GPRs.
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001231 unsigned FPReg = TRI->getFrameRegister(MF);
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001232 unsigned Opc = STI.is64Bit() ? X86::POP64r : X86::POP32r;
1233 for (unsigned i = 0, e = CSI.size(); i != e; ++i) {
1234 unsigned Reg = CSI[i].getReg();
NAKAMURA Takumi419f2322011-02-27 08:47:19 +00001235 if (!X86::GR64RegClass.contains(Reg) &&
1236 !X86::GR32RegClass.contains(Reg))
1237 continue;
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001238 if (Reg == FPReg)
1239 // X86RegisterInfo::emitEpilogue will handle restoring of frame register.
1240 continue;
NAKAMURA Takumi419f2322011-02-27 08:47:19 +00001241 BuildMI(MBB, MI, DL, TII.get(Opc), Reg);
Anton Korobeynikovcd775ce2010-11-27 23:05:03 +00001242 }
1243 return true;
1244}
Anton Korobeynikov94c5ae02010-11-27 23:05:25 +00001245
1246void
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00001247X86FrameLowering::processFunctionBeforeCalleeSavedScan(MachineFunction &MF,
Anton Korobeynikov94c5ae02010-11-27 23:05:25 +00001248 RegScavenger *RS) const {
1249 MachineFrameInfo *MFI = MF.getFrameInfo();
1250 const X86RegisterInfo *RegInfo = TM.getRegisterInfo();
1251 unsigned SlotSize = RegInfo->getSlotSize();
1252
1253 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
1254 int32_t TailCallReturnAddrDelta = X86FI->getTCReturnAddrDelta();
1255
1256 if (TailCallReturnAddrDelta < 0) {
1257 // create RETURNADDR area
1258 // arg
1259 // arg
1260 // RETADDR
1261 // { ...
1262 // RETADDR area
1263 // ...
1264 // }
1265 // [EBP]
1266 MFI->CreateFixedObject(-TailCallReturnAddrDelta,
1267 (-1U*SlotSize)+TailCallReturnAddrDelta, true);
1268 }
1269
1270 if (hasFP(MF)) {
1271 assert((TailCallReturnAddrDelta <= 0) &&
1272 "The Delta should always be zero or negative");
Anton Korobeynikov16c29b52011-01-10 12:39:04 +00001273 const TargetFrameLowering &TFI = *MF.getTarget().getFrameLowering();
Anton Korobeynikov94c5ae02010-11-27 23:05:25 +00001274
1275 // Create a frame entry for the EBP register that must be saved.
1276 int FrameIdx = MFI->CreateFixedObject(SlotSize,
1277 -(int)SlotSize +
1278 TFI.getOffsetOfLocalArea() +
1279 TailCallReturnAddrDelta,
1280 true);
1281 assert(FrameIdx == MFI->getObjectIndexBegin() &&
1282 "Slot for EBP register must be last in order to be found!");
Duncan Sands17001ce2011-10-18 12:44:00 +00001283 (void)FrameIdx;
Anton Korobeynikov94c5ae02010-11-27 23:05:25 +00001284 }
1285}
Rafael Espindola76927d752011-08-30 19:39:58 +00001286
1287static bool
1288HasNestArgument(const MachineFunction *MF) {
1289 const Function *F = MF->getFunction();
1290 for (Function::const_arg_iterator I = F->arg_begin(), E = F->arg_end();
1291 I != E; I++) {
1292 if (I->hasNestAttr())
1293 return true;
1294 }
1295 return false;
1296}
1297
1298static unsigned
1299GetScratchRegister(bool Is64Bit, const MachineFunction &MF) {
1300 if (Is64Bit) {
1301 return X86::R11;
1302 } else {
1303 CallingConv::ID CallingConvention = MF.getFunction()->getCallingConv();
1304 bool IsNested = HasNestArgument(&MF);
1305
1306 if (CallingConvention == CallingConv::X86_FastCall) {
1307 if (IsNested) {
Rafael Espindolae81abfd2011-08-31 16:43:33 +00001308 report_fatal_error("Segmented stacks does not support fastcall with "
1309 "nested function.");
Rafael Espindola76927d752011-08-30 19:39:58 +00001310 return -1;
1311 } else {
1312 return X86::EAX;
1313 }
1314 } else {
1315 if (IsNested)
1316 return X86::EDX;
1317 else
1318 return X86::ECX;
1319 }
1320 }
1321}
1322
Sanjoy Das199ce332011-12-03 09:32:07 +00001323// The stack limit in the TCB is set to this many bytes above the actual stack
1324// limit.
1325static const uint64_t kSplitStackAvailable = 256;
1326
Rafael Espindola76927d752011-08-30 19:39:58 +00001327void
1328X86FrameLowering::adjustForSegmentedStacks(MachineFunction &MF) const {
1329 MachineBasicBlock &prologueMBB = MF.front();
1330 MachineFrameInfo *MFI = MF.getFrameInfo();
1331 const X86InstrInfo &TII = *TM.getInstrInfo();
1332 uint64_t StackSize;
1333 bool Is64Bit = STI.is64Bit();
1334 unsigned TlsReg, TlsOffset;
1335 DebugLoc DL;
1336 const X86Subtarget *ST = &MF.getTarget().getSubtarget<X86Subtarget>();
1337
1338 unsigned ScratchReg = GetScratchRegister(Is64Bit, MF);
1339 assert(!MF.getRegInfo().isLiveIn(ScratchReg) &&
1340 "Scratch register is live-in");
1341
1342 if (MF.getFunction()->isVarArg())
1343 report_fatal_error("Segmented stacks do not support vararg functions.");
1344 if (!ST->isTargetLinux())
1345 report_fatal_error("Segmented stacks supported only on linux.");
1346
1347 MachineBasicBlock *allocMBB = MF.CreateMachineBasicBlock();
1348 MachineBasicBlock *checkMBB = MF.CreateMachineBasicBlock();
1349 X86MachineFunctionInfo *X86FI = MF.getInfo<X86MachineFunctionInfo>();
1350 bool IsNested = false;
1351
1352 // We need to know if the function has a nest argument only in 64 bit mode.
1353 if (Is64Bit)
1354 IsNested = HasNestArgument(&MF);
1355
Bill Wendling4e680542011-10-13 08:24:19 +00001356 // The MOV R10, RAX needs to be in a different block, since the RET we emit in
1357 // allocMBB needs to be last (terminating) instruction.
Bill Wendling4e680542011-10-13 08:24:19 +00001358
Rafael Espindola76927d752011-08-30 19:39:58 +00001359 for (MachineBasicBlock::livein_iterator i = prologueMBB.livein_begin(),
1360 e = prologueMBB.livein_end(); i != e; i++) {
1361 allocMBB->addLiveIn(*i);
1362 checkMBB->addLiveIn(*i);
1363 }
1364
1365 if (IsNested)
Rafael Espindolae840e882011-10-26 21:12:27 +00001366 allocMBB->addLiveIn(X86::R10);
1367
Rafael Espindola76927d752011-08-30 19:39:58 +00001368 MF.push_front(allocMBB);
1369 MF.push_front(checkMBB);
1370
1371 // Eventually StackSize will be calculated by a link-time pass; which will
1372 // also decide whether checking code needs to be injected into this particular
1373 // prologue.
1374 StackSize = MFI->getStackSize();
1375
1376 // Read the limit off the current stacklet off the stack_guard location.
1377 if (Is64Bit) {
1378 TlsReg = X86::FS;
1379 TlsOffset = 0x70;
1380
Sanjoy Das199ce332011-12-03 09:32:07 +00001381 if (StackSize < kSplitStackAvailable)
1382 ScratchReg = X86::RSP;
1383 else
1384 BuildMI(checkMBB, DL, TII.get(X86::LEA64r), ScratchReg).addReg(X86::RSP)
1385 .addImm(0).addReg(0).addImm(-StackSize).addReg(0);
1386
Rafael Espindola76927d752011-08-30 19:39:58 +00001387 BuildMI(checkMBB, DL, TII.get(X86::CMP64rm)).addReg(ScratchReg)
1388 .addReg(0).addImm(0).addReg(0).addImm(TlsOffset).addReg(TlsReg);
1389 } else {
1390 TlsReg = X86::GS;
1391 TlsOffset = 0x30;
1392
Sanjoy Das199ce332011-12-03 09:32:07 +00001393 if (StackSize < kSplitStackAvailable)
1394 ScratchReg = X86::ESP;
1395 else
1396 BuildMI(checkMBB, DL, TII.get(X86::LEA32r), ScratchReg).addReg(X86::ESP)
1397 .addImm(0).addReg(0).addImm(-StackSize).addReg(0);
1398
Rafael Espindola76927d752011-08-30 19:39:58 +00001399 BuildMI(checkMBB, DL, TII.get(X86::CMP32rm)).addReg(ScratchReg)
1400 .addReg(0).addImm(0).addReg(0).addImm(TlsOffset).addReg(TlsReg);
1401 }
1402
1403 // This jump is taken if SP >= (Stacklet Limit + Stack Space required).
1404 // It jumps to normal execution of the function body.
1405 BuildMI(checkMBB, DL, TII.get(X86::JG_4)).addMBB(&prologueMBB);
1406
1407 // On 32 bit we first push the arguments size and then the frame size. On 64
1408 // bit, we pass the stack frame size in r10 and the argument size in r11.
1409 if (Is64Bit) {
1410 // Functions with nested arguments use R10, so it needs to be saved across
1411 // the call to _morestack
1412
1413 if (IsNested)
1414 BuildMI(allocMBB, DL, TII.get(X86::MOV64rr), X86::RAX).addReg(X86::R10);
1415
1416 BuildMI(allocMBB, DL, TII.get(X86::MOV64ri), X86::R10)
1417 .addImm(StackSize);
1418 BuildMI(allocMBB, DL, TII.get(X86::MOV64ri), X86::R11)
1419 .addImm(X86FI->getArgumentStackSize());
1420 MF.getRegInfo().setPhysRegUsed(X86::R10);
1421 MF.getRegInfo().setPhysRegUsed(X86::R11);
1422 } else {
Rafael Espindola76927d752011-08-30 19:39:58 +00001423 BuildMI(allocMBB, DL, TII.get(X86::PUSHi32))
1424 .addImm(X86FI->getArgumentStackSize());
1425 BuildMI(allocMBB, DL, TII.get(X86::PUSHi32))
1426 .addImm(StackSize);
1427 }
1428
1429 // __morestack is in libgcc
1430 if (Is64Bit)
1431 BuildMI(allocMBB, DL, TII.get(X86::CALL64pcrel32))
1432 .addExternalSymbol("__morestack");
1433 else
1434 BuildMI(allocMBB, DL, TII.get(X86::CALLpcrel32))
1435 .addExternalSymbol("__morestack");
1436
Bill Wendling4e680542011-10-13 08:24:19 +00001437 if (IsNested)
Rafael Espindolae840e882011-10-26 21:12:27 +00001438 BuildMI(allocMBB, DL, TII.get(X86::MORESTACK_RET_RESTORE_R10));
1439 else
1440 BuildMI(allocMBB, DL, TII.get(X86::MORESTACK_RET));
Bill Wendling4e680542011-10-13 08:24:19 +00001441
Rafael Espindolae840e882011-10-26 21:12:27 +00001442 allocMBB->addSuccessor(&prologueMBB);
Bill Wendling4e680542011-10-13 08:24:19 +00001443
Rafael Espindola76927d752011-08-30 19:39:58 +00001444 checkMBB->addSuccessor(allocMBB);
1445 checkMBB->addSuccessor(&prologueMBB);
1446
Jakob Stoklund Olesen51f0c762011-09-24 01:11:19 +00001447#ifdef XDEBUG
Rafael Espindola76927d752011-08-30 19:39:58 +00001448 MF.verify();
1449#endif
1450}