LLVM 22.0.0git
TargetFrameLowering.h
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1//===-- llvm/CodeGen/TargetFrameLowering.h ----------------------*- C++ -*-===//
2//
3// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6//
7//===----------------------------------------------------------------------===//
8//
9// Interface to describe the layout of a stack frame on the target machine.
10//
11//===----------------------------------------------------------------------===//
12
13#ifndef LLVM_CODEGEN_TARGETFRAMELOWERING_H
14#define LLVM_CODEGEN_TARGETFRAMELOWERING_H
15
16#include "llvm/ADT/BitVector.h"
21#include <vector>
22
23namespace llvm {
24 class BitVector;
25 class CalleeSavedInfo;
26 class MachineFunction;
27 class RegScavenger;
28
39
40/// Information about stack frame layout on the target. It holds the direction
41/// of stack growth, the known stack alignment on entry to each function, and
42/// the offset to the locals area.
43///
44/// The offset to the local area is the offset from the stack pointer on
45/// function entry to the first location where function data (local variables,
46/// spill locations) can be stored.
48public:
50 StackGrowsUp, // Adding to the stack increases the stack address
51 StackGrowsDown // Adding to the stack decreases the stack address
52 };
53
54 // Maps a callee saved register to a stack slot with a fixed offset.
55 struct SpillSlot {
56 unsigned Reg;
57 int64_t Offset; // Offset relative to stack pointer on function entry.
58 };
59
61 // The frame base may be either a register (the default), the CFA with an
62 // offset, or a WebAssembly-specific location description.
65 unsigned Kind; // Wasm local, global, or value stack
66 unsigned Index;
67 };
68 union {
69 // Used with FrameBaseKind::Register.
70 unsigned Reg;
71 // Used with FrameBaseKind::CFA.
72 int64_t Offset;
74 } Location;
75 };
76
77private:
78 StackDirection StackDir;
79 Align StackAlignment;
80 Align TransientStackAlignment;
81 int LocalAreaOffset;
82 bool StackRealignable;
83public:
85 Align TransAl = Align(1), bool StackReal = true)
86 : StackDir(D), StackAlignment(StackAl), TransientStackAlignment(TransAl),
87 LocalAreaOffset(LAO), StackRealignable(StackReal) {}
88
90
91 // These methods return information that describes the abstract stack layout
92 // of the target machine.
93
94 /// getStackGrowthDirection - Return the direction the stack grows
95 ///
96 StackDirection getStackGrowthDirection() const { return StackDir; }
97
98 /// getStackAlignment - This method returns the number of bytes to which the
99 /// stack pointer must be aligned on entry to a function. Typically, this
100 /// is the largest alignment for any data object in the target.
101 ///
102 unsigned getStackAlignment() const { return StackAlignment.value(); }
103 /// getStackAlignment - This method returns the number of bytes to which the
104 /// stack pointer must be aligned on entry to a function. Typically, this
105 /// is the largest alignment for any data object in the target.
106 ///
107 Align getStackAlign() const { return StackAlignment; }
108
109 /// getStackThreshold - Return the maximum stack size
110 ///
111 virtual uint64_t getStackThreshold() const { return UINT_MAX; }
112
113 /// alignSPAdjust - This method aligns the stack adjustment to the correct
114 /// alignment.
115 ///
116 int alignSPAdjust(int SPAdj) const {
117 if (SPAdj < 0) {
118 SPAdj = -alignTo(-SPAdj, StackAlignment);
119 } else {
120 SPAdj = alignTo(SPAdj, StackAlignment);
121 }
122 return SPAdj;
123 }
124
125 /// getTransientStackAlignment - This method returns the number of bytes to
126 /// which the stack pointer must be aligned at all times, even between
127 /// calls.
128 ///
129 Align getTransientStackAlign() const { return TransientStackAlignment; }
130
131 /// isStackRealignable - This method returns whether the stack can be
132 /// realigned.
133 bool isStackRealignable() const {
134 return StackRealignable;
135 }
136
137 /// This method returns whether or not it is safe for an object with the
138 /// given stack id to be bundled into the local area.
139 virtual bool isStackIdSafeForLocalArea(unsigned StackId) const {
140 return true;
141 }
142
143 /// getOffsetOfLocalArea - This method returns the offset of the local area
144 /// from the stack pointer on entrance to a function.
145 ///
146 int getOffsetOfLocalArea() const { return LocalAreaOffset; }
147
148 /// Control the placement of special register scavenging spill slots when
149 /// allocating a stack frame.
150 ///
151 /// If this returns true, the frame indexes used by the RegScavenger will be
152 /// allocated closest to the incoming stack pointer.
153 virtual bool allocateScavengingFrameIndexesNearIncomingSP(
154 const MachineFunction &MF) const;
155
156 /// assignCalleeSavedSpillSlots - Allows target to override spill slot
157 /// assignment logic. If implemented, assignCalleeSavedSpillSlots() should
158 /// assign frame slots to all CSI entries and return true. If this method
159 /// returns false, spill slots will be assigned using generic implementation.
160 /// assignCalleeSavedSpillSlots() may add, delete or rearrange elements of
161 /// CSI.
162 virtual bool
164 const TargetRegisterInfo *TRI,
165 std::vector<CalleeSavedInfo> &CSI) const {
166 return false;
167 }
168
169 /// getCalleeSavedSpillSlots - This method returns a pointer to an array of
170 /// pairs, that contains an entry for each callee saved register that must be
171 /// spilled to a particular stack location if it is spilled.
172 ///
173 /// Each entry in this array contains a <register,offset> pair, indicating the
174 /// fixed offset from the incoming stack pointer that each register should be
175 /// spilled at. If a register is not listed here, the code generator is
176 /// allowed to spill it anywhere it chooses.
177 ///
178 virtual const SpillSlot *
179 getCalleeSavedSpillSlots(unsigned &NumEntries) const {
180 NumEntries = 0;
181 return nullptr;
182 }
183
184 /// targetHandlesStackFrameRounding - Returns true if the target is
185 /// responsible for rounding up the stack frame (probably at emitPrologue
186 /// time).
187 virtual bool targetHandlesStackFrameRounding() const {
188 return false;
189 }
190
191 /// Returns true if the target will correctly handle shrink wrapping.
192 virtual bool enableShrinkWrapping(const MachineFunction &MF) const {
193 return false;
194 }
195
196 /// Returns true if the stack slot holes in the fixed and callee-save stack
197 /// area should be used when allocating other stack locations to reduce stack
198 /// size.
199 virtual bool enableStackSlotScavenging(const MachineFunction &MF) const {
200 return false;
201 }
202
203 /// Returns true if the target can safely skip saving callee-saved registers
204 /// for noreturn nounwind functions.
205 virtual bool enableCalleeSaveSkip(const MachineFunction &MF) const;
206
207 /// emitProlog/emitEpilog - These methods insert prolog and epilog code into
208 /// the function.
210 MachineBasicBlock &MBB) const = 0;
212 MachineBasicBlock &MBB) const = 0;
213
214 /// emitZeroCallUsedRegs - Zeros out call used registers.
215 virtual void emitZeroCallUsedRegs(BitVector RegsToZero,
216 MachineBasicBlock &MBB) const {}
217
218 /// With basic block sections, emit callee saved frame moves for basic blocks
219 /// that are in a different section.
220 virtual void
223
224 /// Returns true if we may need to fix the unwind information for the
225 /// function.
226 virtual bool enableCFIFixup(const MachineFunction &MF) const;
227
228 /// enableFullCFIFixup - Returns true if we may need to fix the unwind
229 /// information such that it is accurate for *every* instruction in the
230 /// function (e.g. if the function has an async unwind table).
231 virtual bool enableFullCFIFixup(const MachineFunction &MF) const {
232 return enableCFIFixup(MF);
233 };
234
235 /// Emit CFI instructions that recreate the state of the unwind information
236 /// upon function entry.
238
239 /// Replace a StackProbe stub (if any) with the actual probe code inline
241 MachineBasicBlock &PrologueMBB) const {}
242
243 /// Does the stack probe function call return with a modified stack pointer?
244 virtual bool stackProbeFunctionModifiesSP() const { return false; }
245
246 /// Adjust the prologue to have the function use segmented stacks. This works
247 /// by adding a check even before the "normal" function prologue.
249 MachineBasicBlock &PrologueMBB) const {}
250
251 /// Adjust the prologue to add Erlang Run-Time System (ERTS) specific code in
252 /// the assembly prologue to explicitly handle the stack.
254 MachineBasicBlock &PrologueMBB) const {}
255
256 /// spillCalleeSavedRegisters - Issues instruction(s) to spill all callee
257 /// saved registers and returns true if it isn't possible / profitable to do
258 /// so by issuing a series of store instructions via
259 /// storeRegToStackSlot(). Returns false otherwise.
266
267 /// spillCalleeSavedRegister - Default implementation for spilling a single
268 /// callee saved register.
269 void spillCalleeSavedRegister(MachineBasicBlock &SaveBlock,
271 const CalleeSavedInfo &CS,
272 const TargetInstrInfo *TII,
273 const TargetRegisterInfo *TRI) const;
274
275 /// restoreCalleeSavedRegisters - Issues instruction(s) to restore all callee
276 /// saved registers and returns true if it isn't possible / profitable to do
277 /// so by issuing a series of load instructions via loadRegToStackSlot().
278 /// If it returns true, and any of the registers in CSI is not restored,
279 /// it sets the corresponding Restored flag in CSI to false.
280 /// Returns false otherwise.
281 virtual bool
288
289 // restoreCalleeSavedRegister - Default implementation for restoring a single
290 // callee saved register. Should be called in reverse order. Can insert
291 // multiple instructions.
292 void restoreCalleeSavedRegister(MachineBasicBlock &MBB,
294 const CalleeSavedInfo &CS,
295 const TargetInstrInfo *TII,
296 const TargetRegisterInfo *TRI) const;
297
298 /// hasFP - Return true if the specified function should have a dedicated
299 /// frame pointer register. For most targets this is true only if the function
300 /// has variable sized allocas or if frame pointer elimination is disabled.
301 /// For all targets, this is false if the function has the naked attribute
302 /// since there is no prologue to set up the frame pointer.
303 bool hasFP(const MachineFunction &MF) const {
304 return !MF.getFunction().hasFnAttribute(Attribute::Naked) && hasFPImpl(MF);
305 }
306
307 /// hasReservedCallFrame - Under normal circumstances, when a frame pointer is
308 /// not required, we reserve argument space for call sites in the function
309 /// immediately on entry to the current function. This eliminates the need for
310 /// add/sub sp brackets around call sites. Returns true if the call frame is
311 /// included as part of the stack frame.
312 virtual bool hasReservedCallFrame(const MachineFunction &MF) const {
313 return !hasFP(MF);
314 }
315
316 /// canSimplifyCallFramePseudos - When possible, it's best to simplify the
317 /// call frame pseudo ops before doing frame index elimination. This is
318 /// possible only when frame index references between the pseudos won't
319 /// need adjusting for the call frame adjustments. Normally, that's true
320 /// if the function has a reserved call frame or a frame pointer. Some
321 /// targets (Thumb2, for example) may have more complicated criteria,
322 /// however, and can override this behavior.
323 virtual bool canSimplifyCallFramePseudos(const MachineFunction &MF) const {
324 return hasReservedCallFrame(MF) || hasFP(MF);
325 }
326
327 // needsFrameIndexResolution - Do we need to perform FI resolution for
328 // this function. Normally, this is required only when the function
329 // has any stack objects. However, targets may want to override this.
330 virtual bool needsFrameIndexResolution(const MachineFunction &MF) const;
331
332 /// getFrameIndexReference - This method should return the base register
333 /// and offset used to reference a frame index location. The offset is
334 /// returned directly, and the base register is returned via FrameReg.
335 virtual StackOffset getFrameIndexReference(const MachineFunction &MF, int FI,
336 Register &FrameReg) const;
337
338 /// Same as \c getFrameIndexReference, except that the stack pointer (as
339 /// opposed to the frame pointer) will be the preferred value for \p
340 /// FrameReg. This is generally used for emitting statepoint or EH tables that
341 /// use offsets from RSP. If \p IgnoreSPUpdates is true, the returned
342 /// offset is only guaranteed to be valid with respect to the value of SP at
343 /// the end of the prologue.
344 virtual StackOffset
346 Register &FrameReg,
347 bool IgnoreSPUpdates) const {
348 // Always safe to dispatch to getFrameIndexReference.
349 return getFrameIndexReference(MF, FI, FrameReg);
350 }
351
352 /// getNonLocalFrameIndexReference - This method returns the offset used to
353 /// reference a frame index location. The offset can be from either FP/BP/SP
354 /// based on which base register is returned by llvm.localaddress.
356 int FI) const {
357 // By default, dispatch to getFrameIndexReference. Interested targets can
358 // override this.
359 Register FrameReg;
360 return getFrameIndexReference(MF, FI, FrameReg);
361 }
362
363 /// getFrameIndexReferenceFromSP - This method returns the offset from the
364 /// stack pointer to the slot of the specified index. This function serves to
365 /// provide a comparable offset from a single reference point (the value of
366 /// the stack-pointer at function entry) that can be used for analysis.
367 virtual StackOffset getFrameIndexReferenceFromSP(const MachineFunction &MF,
368 int FI) const;
369
370 /// Returns the callee-saved registers as computed by determineCalleeSaves
371 /// in the BitVector \p SavedRegs.
372 virtual void getCalleeSaves(const MachineFunction &MF,
373 BitVector &SavedRegs) const;
374
375 /// This method determines which of the registers reported by
376 /// TargetRegisterInfo::getCalleeSavedRegs() should actually get saved.
377 /// The default implementation checks populates the \p SavedRegs bitset with
378 /// all registers which are modified in the function, targets may override
379 /// this function to save additional registers.
380 /// This method also sets up the register scavenger ensuring there is a free
381 /// register or a frameindex available.
382 /// This method should not be called by any passes outside of PEI, because
383 /// it may change state passed in by \p MF and \p RS. The preferred
384 /// interface outside PEI is getCalleeSaves.
385 virtual void determineCalleeSaves(MachineFunction &MF, BitVector &SavedRegs,
386 RegScavenger *RS = nullptr) const;
387
388 /// processFunctionBeforeFrameFinalized - This method is called immediately
389 /// before the specified function's frame layout (MF.getFrameInfo()) is
390 /// finalized. Once the frame is finalized, MO_FrameIndex operands are
391 /// replaced with direct constants. This method is optional.
392 ///
394 RegScavenger *RS = nullptr) const {
395 }
396
397 /// processFunctionBeforeFrameIndicesReplaced - This method is called
398 /// immediately before MO_FrameIndex operands are eliminated, but after the
399 /// frame is finalized. This method is optional.
400 virtual void
403
404 virtual unsigned getWinEHParentFrameOffset(const MachineFunction &MF) const {
405 report_fatal_error("WinEH not implemented for this target");
406 }
407
408 /// This method is called during prolog/epilog code insertion to eliminate
409 /// call frame setup and destroy pseudo instructions (but only if the Target
410 /// is using them). It is responsible for eliminating these instructions,
411 /// replacing them with concrete instructions. This method need only be
412 /// implemented if using call frame setup/destroy pseudo instructions.
413 /// Returns an iterator pointing to the instruction after the replaced one.
418 llvm_unreachable("Call Frame Pseudo Instructions do not exist on this "
419 "target!");
420 }
421
422
423 /// Order the symbols in the local stack frame.
424 /// The list of objects that we want to order is in \p objectsToAllocate as
425 /// indices into the MachineFrameInfo. The array can be reordered in any way
426 /// upon return. The contents of the array, however, may not be modified (i.e.
427 /// only their order may be changed).
428 /// By default, just maintain the original order.
429 virtual void
431 SmallVectorImpl<int> &objectsToAllocate) const {
432 }
433
434 /// Check whether or not the given \p MBB can be used as a prologue
435 /// for the target.
436 /// The prologue will be inserted first in this basic block.
437 /// This method is used by the shrink-wrapping pass to decide if
438 /// \p MBB will be correctly handled by the target.
439 /// As soon as the target enable shrink-wrapping without overriding
440 /// this method, we assume that each basic block is a valid
441 /// prologue.
442 virtual bool canUseAsPrologue(const MachineBasicBlock &MBB) const {
443 return true;
444 }
445
446 /// Check whether or not the given \p MBB can be used as a epilogue
447 /// for the target.
448 /// The epilogue will be inserted before the first terminator of that block.
449 /// This method is used by the shrink-wrapping pass to decide if
450 /// \p MBB will be correctly handled by the target.
451 /// As soon as the target enable shrink-wrapping without overriding
452 /// this method, we assume that each basic block is a valid
453 /// epilogue.
454 virtual bool canUseAsEpilogue(const MachineBasicBlock &MBB) const {
455 return true;
456 }
457
458 /// Returns the StackID that scalable vectors should be associated with.
462
464 switch (ID) {
465 default:
466 return false;
469 return true;
470 }
471 }
472
473 /// Check if given function is safe for not having callee saved registers.
474 /// This is used when interprocedural register allocation is enabled.
475 static bool isSafeForNoCSROpt(const Function &F);
476
477 /// Check if the no-CSR optimisation is profitable for the given function.
478 virtual bool isProfitableForNoCSROpt(const Function &F) const {
479 return true;
480 }
481
482 /// Return initial CFA offset value i.e. the one valid at the beginning of the
483 /// function (before any stack operations).
484 virtual int getInitialCFAOffset(const MachineFunction &MF) const;
485
486 /// Return initial CFA register value i.e. the one valid at the beginning of
487 /// the function (before any stack operations).
488 virtual Register getInitialCFARegister(const MachineFunction &MF) const;
489
490 /// Return the frame base information to be encoded in the DWARF subprogram
491 /// debug info.
492 virtual DwarfFrameBase getDwarfFrameBase(const MachineFunction &MF) const;
493
494 /// If frame pointer or base pointer is clobbered by an instruction, we should
495 /// spill/restore it around that instruction.
496 virtual void spillFPBP(MachineFunction &MF) const {}
497
498 /// This method is called at the end of prolog/epilog code insertion, so
499 /// targets can emit remarks based on the final frame layout.
500 virtual void emitRemarks(const MachineFunction &MF,
502
503protected:
504 virtual bool hasFPImpl(const MachineFunction &MF) const = 0;
505};
506
507} // End llvm namespace
508
509#endif
static int alignTo(int Num, int PowOf2)
const TargetInstrInfo & TII
MachineBasicBlock & MBB
MachineBasicBlock MachineBasicBlock::iterator MBBI
This file implements the BitVector class.
static GCRegistry::Add< StatepointGC > D("statepoint-example", "an example strategy for statepoint")
#define LLVM_ABI
Definition Compiler.h:213
IRTranslator LLVM IR MI
#define F(x, y, z)
Definition MD5.cpp:54
===- MachineOptimizationRemarkEmitter.h - Opt Diagnostics -*- C++ -*-—===//
Register const TargetRegisterInfo * TRI
ArrayRef - Represent a constant reference to an array (0 or more elements consecutively in memory),...
Definition ArrayRef.h:40
The CalleeSavedInfo class tracks the information need to locate where a callee saved register is in t...
bool hasFnAttribute(Attribute::AttrKind Kind) const
Return true if the function has the attribute.
Definition Function.cpp:730
MachineInstrBundleIterator< MachineInstr > iterator
Function & getFunction()
Return the LLVM function that this machine code represents.
MutableArrayRef - Represent a mutable reference to an array (0 or more elements consecutively in memo...
Definition ArrayRef.h:298
Wrapper class representing virtual and physical registers.
Definition Register.h:20
This class consists of common code factored out of the SmallVector class to reduce code duplication b...
StackOffset holds a fixed and a scalable offset in bytes.
Definition TypeSize.h:30
virtual void spillFPBP(MachineFunction &MF) const
If frame pointer or base pointer is clobbered by an instruction, we should spill/restore it around th...
unsigned getStackAlignment() const
getStackAlignment - This method returns the number of bytes to which the stack pointer must be aligne...
virtual void emitCalleeSavedFrameMovesFullCFA(MachineBasicBlock &MBB, MachineBasicBlock::iterator MBBI) const
With basic block sections, emit callee saved frame moves for basic blocks that are in a different sec...
bool hasFP(const MachineFunction &MF) const
hasFP - Return true if the specified function should have a dedicated frame pointer register.
virtual void emitEpilogue(MachineFunction &MF, MachineBasicBlock &MBB) const =0
virtual const SpillSlot * getCalleeSavedSpillSlots(unsigned &NumEntries) const
getCalleeSavedSpillSlots - This method returns a pointer to an array of pairs, that contains an entry...
virtual bool hasReservedCallFrame(const MachineFunction &MF) const
hasReservedCallFrame - Under normal circumstances, when a frame pointer is not required,...
virtual bool enableStackSlotScavenging(const MachineFunction &MF) const
Returns true if the stack slot holes in the fixed and callee-save stack area should be used when allo...
Align getTransientStackAlign() const
getTransientStackAlignment - This method returns the number of bytes to which the stack pointer must ...
virtual uint64_t getStackThreshold() const
getStackThreshold - Return the maximum stack size
virtual void processFunctionBeforeFrameFinalized(MachineFunction &MF, RegScavenger *RS=nullptr) const
processFunctionBeforeFrameFinalized - This method is called immediately before the specified function...
virtual bool enableShrinkWrapping(const MachineFunction &MF) const
Returns true if the target will correctly handle shrink wrapping.
virtual void inlineStackProbe(MachineFunction &MF, MachineBasicBlock &PrologueMBB) const
Replace a StackProbe stub (if any) with the actual probe code inline.
virtual void orderFrameObjects(const MachineFunction &MF, SmallVectorImpl< int > &objectsToAllocate) const
Order the symbols in the local stack frame.
virtual bool isStackIdSafeForLocalArea(unsigned StackId) const
This method returns whether or not it is safe for an object with the given stack id to be bundled int...
virtual void adjustForHiPEPrologue(MachineFunction &MF, MachineBasicBlock &PrologueMBB) const
Adjust the prologue to add Erlang Run-Time System (ERTS) specific code in the assembly prologue to ex...
virtual bool spillCalleeSavedRegisters(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, ArrayRef< CalleeSavedInfo > CSI, const TargetRegisterInfo *TRI) const
spillCalleeSavedRegisters - Issues instruction(s) to spill all callee saved registers and returns tru...
virtual bool stackProbeFunctionModifiesSP() const
Does the stack probe function call return with a modified stack pointer?
bool isStackRealignable() const
isStackRealignable - This method returns whether the stack can be realigned.
virtual TargetStackID::Value getStackIDForScalableVectors() const
Returns the StackID that scalable vectors should be associated with.
int getOffsetOfLocalArea() const
getOffsetOfLocalArea - This method returns the offset of the local area from the stack pointer on ent...
TargetFrameLowering(StackDirection D, Align StackAl, int LAO, Align TransAl=Align(1), bool StackReal=true)
virtual bool isSupportedStackID(TargetStackID::Value ID) const
virtual MachineBasicBlock::iterator eliminateCallFramePseudoInstr(MachineFunction &MF, MachineBasicBlock &MBB, MachineBasicBlock::iterator MI) const
This method is called during prolog/epilog code insertion to eliminate call frame setup and destroy p...
Align getStackAlign() const
getStackAlignment - This method returns the number of bytes to which the stack pointer must be aligne...
virtual StackOffset getNonLocalFrameIndexReference(const MachineFunction &MF, int FI) const
getNonLocalFrameIndexReference - This method returns the offset used to reference a frame index locat...
virtual bool assignCalleeSavedSpillSlots(MachineFunction &MF, const TargetRegisterInfo *TRI, std::vector< CalleeSavedInfo > &CSI) const
assignCalleeSavedSpillSlots - Allows target to override spill slot assignment logic.
virtual void processFunctionBeforeFrameIndicesReplaced(MachineFunction &MF, RegScavenger *RS=nullptr) const
processFunctionBeforeFrameIndicesReplaced - This method is called immediately before MO_FrameIndex op...
virtual StackOffset getFrameIndexReferencePreferSP(const MachineFunction &MF, int FI, Register &FrameReg, bool IgnoreSPUpdates) const
Same as getFrameIndexReference, except that the stack pointer (as opposed to the frame pointer) will ...
virtual bool isProfitableForNoCSROpt(const Function &F) const
Check if the no-CSR optimisation is profitable for the given function.
virtual bool enableFullCFIFixup(const MachineFunction &MF) const
enableFullCFIFixup - Returns true if we may need to fix the unwind information such that it is accura...
StackDirection getStackGrowthDirection() const
getStackGrowthDirection - Return the direction the stack grows
virtual bool canUseAsEpilogue(const MachineBasicBlock &MBB) const
Check whether or not the given MBB can be used as a epilogue for the target.
virtual void adjustForSegmentedStacks(MachineFunction &MF, MachineBasicBlock &PrologueMBB) const
Adjust the prologue to have the function use segmented stacks.
virtual bool canUseAsPrologue(const MachineBasicBlock &MBB) const
Check whether or not the given MBB can be used as a prologue for the target.
int alignSPAdjust(int SPAdj) const
alignSPAdjust - This method aligns the stack adjustment to the correct alignment.
virtual void resetCFIToInitialState(MachineBasicBlock &MBB) const
Emit CFI instructions that recreate the state of the unwind information upon function entry.
virtual bool canSimplifyCallFramePseudos(const MachineFunction &MF) const
canSimplifyCallFramePseudos - When possible, it's best to simplify the call frame pseudo ops before d...
virtual bool hasFPImpl(const MachineFunction &MF) const =0
virtual void emitZeroCallUsedRegs(BitVector RegsToZero, MachineBasicBlock &MBB) const
emitZeroCallUsedRegs - Zeros out call used registers.
virtual void emitRemarks(const MachineFunction &MF, MachineOptimizationRemarkEmitter *ORE) const
This method is called at the end of prolog/epilog code insertion, so targets can emit remarks based o...
virtual bool enableCFIFixup(const MachineFunction &MF) const
Returns true if we may need to fix the unwind information for the function.
virtual bool targetHandlesStackFrameRounding() const
targetHandlesStackFrameRounding - Returns true if the target is responsible for rounding up the stack...
virtual unsigned getWinEHParentFrameOffset(const MachineFunction &MF) const
virtual void emitPrologue(MachineFunction &MF, MachineBasicBlock &MBB) const =0
emitProlog/emitEpilog - These methods insert prolog and epilog code into the function.
virtual bool restoreCalleeSavedRegisters(MachineBasicBlock &MBB, MachineBasicBlock::iterator MI, MutableArrayRef< CalleeSavedInfo > CSI, const TargetRegisterInfo *TRI) const
restoreCalleeSavedRegisters - Issues instruction(s) to restore all callee saved registers and returns...
virtual StackOffset getFrameIndexReference(const MachineFunction &MF, int FI, Register &FrameReg) const
getFrameIndexReference - This method should return the base register and offset used to reference a f...
TargetInstrInfo - Interface to description of machine instruction set.
TargetRegisterInfo base class - We assume that the target defines a static array of TargetRegisterDes...
#define llvm_unreachable(msg)
Marks that the current location is not supposed to be reachable.
unsigned ID
LLVM IR allows to use arbitrary numbers as calling convention identifiers.
Definition CallingConv.h:24
This is an optimization pass for GlobalISel generic memory operations.
LLVM_ABI void report_fatal_error(Error Err, bool gen_crash_diag=true)
Definition Error.cpp:167
This struct is a compact representation of a valid (non-zero power of two) alignment.
Definition Alignment.h:39