1 //===-- X86MachineFunctionInfo.h - X86 machine function info ----*- 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 // This file declares X86-specific per-machine-function information.
10 //
11 //===----------------------------------------------------------------------===//
12 
13 #ifndef LLVM_LIB_TARGET_X86_X86MACHINEFUNCTIONINFO_H
14 #define LLVM_LIB_TARGET_X86_X86MACHINEFUNCTIONINFO_H
15 
16 #include "llvm/ADT/ArrayRef.h"
17 #include "llvm/ADT/SmallVector.h"
18 #include "llvm/CodeGen/CallingConvLower.h"
19 #include "llvm/CodeGen/MachineFunction.h"
20 
21 namespace llvm {
22 
23 /// X86MachineFunctionInfo - This class is derived from MachineFunction and
24 /// contains private X86 target-specific information for each MachineFunction.
25 class X86MachineFunctionInfo : public MachineFunctionInfo {
26   virtual void anchor();
27 
28   /// ForceFramePointer - True if the function is required to use of frame
29   /// pointer for reasons other than it containing dynamic allocation or
30   /// that FP eliminatation is turned off. For example, Cygwin main function
31   /// contains stack pointer re-alignment code which requires FP.
32   bool ForceFramePointer = false;
33 
34   /// RestoreBasePointerOffset - Non-zero if the function has base pointer
35   /// and makes call to llvm.eh.sjlj.setjmp. When non-zero, the value is a
36   /// displacement from the frame pointer to a slot where the base pointer
37   /// is stashed.
38   signed char RestoreBasePointerOffset = 0;
39 
40   /// WinEHXMMSlotInfo - Slot information of XMM registers in the stack frame
41   /// in bytes.
42   DenseMap<int, unsigned> WinEHXMMSlotInfo;
43 
44   /// CalleeSavedFrameSize - Size of the callee-saved register portion of the
45   /// stack frame in bytes.
46   unsigned CalleeSavedFrameSize = 0;
47 
48   // SaveArgSize - Number of register arguments saved on the stack
49   unsigned SaveArgSize = 0;
50 
51   /// BytesToPopOnReturn - Number of bytes function pops on return (in addition
52   /// to the space used by the return address).
53   /// Used on windows platform for stdcall & fastcall name decoration
54   unsigned BytesToPopOnReturn = 0;
55 
56   /// ReturnAddrIndex - FrameIndex for return slot.
57   int ReturnAddrIndex = 0;
58 
59   /// FrameIndex for return slot.
60   int FrameAddrIndex = 0;
61 
62   /// TailCallReturnAddrDelta - The number of bytes by which return address
63   /// stack slot is moved as the result of tail call optimization.
64   int TailCallReturnAddrDelta = 0;
65 
66   /// SRetReturnReg - Some subtargets require that sret lowering includes
67   /// returning the value of the returned struct in a register. This field
68   /// holds the virtual register into which the sret argument is passed.
69   Register SRetReturnReg;
70 
71   /// GlobalBaseReg - keeps track of the virtual register initialized for
72   /// use as the global base register. This is used for PIC in some PIC
73   /// relocation models.
74   Register GlobalBaseReg;
75 
76   /// VarArgsFrameIndex - FrameIndex for start of varargs area.
77   int VarArgsFrameIndex = 0;
78   /// RegSaveFrameIndex - X86-64 vararg func register save area.
79   int RegSaveFrameIndex = 0;
80   /// VarArgsGPOffset - X86-64 vararg func int reg offset.
81   unsigned VarArgsGPOffset = 0;
82   /// VarArgsFPOffset - X86-64 vararg func fp reg offset.
83   unsigned VarArgsFPOffset = 0;
84   /// ArgumentStackSize - The number of bytes on stack consumed by the arguments
85   /// being passed on the stack.
86   unsigned ArgumentStackSize = 0;
87   /// NumLocalDynamics - Number of local-dynamic TLS accesses.
88   unsigned NumLocalDynamics = 0;
89   /// HasPushSequences - Keeps track of whether this function uses sequences
90   /// of pushes to pass function parameters.
91   bool HasPushSequences = false;
92 
93   /// True if the function recovers from an SEH exception, and therefore needs
94   /// to spill and restore the frame pointer.
95   bool HasSEHFramePtrSave = false;
96 
97   /// The frame index of a stack object containing the original frame pointer
98   /// used to address arguments in a function using a base pointer.
99   int SEHFramePtrSaveIndex = 0;
100 
101   /// True if this function has a subset of CSRs that is handled explicitly via
102   /// copies.
103   bool IsSplitCSR = false;
104 
105   /// True if this function uses the red zone.
106   bool UsesRedZone = false;
107 
108   /// True if this function has DYN_ALLOCA instructions.
109   bool HasDynAlloca = false;
110 
111   /// True if this function has any preallocated calls.
112   bool HasPreallocatedCall = false;
113 
114   /// Whether this function has an extended frame record [Ctx, RBP, Return
115   /// addr]. If so, bit 60 of the in-memory frame pointer will be 1 to enable
116   /// other tools to detect the extended record.
117   bool HasSwiftAsyncContext = false;
118 
119   /// True if this function has tile virtual register. This is used to
120   /// determine if we should insert tilerelease in frame lowering.
121   bool HasVirtualTileReg = false;
122 
123   std::optional<int> SwiftAsyncContextFrameIdx;
124 
125   // Preallocated fields are only used during isel.
126   // FIXME: Can we find somewhere else to store these?
127   DenseMap<const Value *, size_t> PreallocatedIds;
128   SmallVector<size_t, 0> PreallocatedStackSizes;
129   SmallVector<SmallVector<size_t, 4>, 0> PreallocatedArgOffsets;
130 
131 private:
132   /// ForwardedMustTailRegParms - A list of virtual and physical registers
133   /// that must be forwarded to every musttail call.
134   SmallVector<ForwardedRegister, 1> ForwardedMustTailRegParms;
135 
136 public:
137   X86MachineFunctionInfo() = default;
X86MachineFunctionInfo(const Function & F,const TargetSubtargetInfo * STI)138   X86MachineFunctionInfo(const Function &F, const TargetSubtargetInfo *STI) {}
139 
140   X86MachineFunctionInfo(const X86MachineFunctionInfo &) = default;
141 
142   MachineFunctionInfo *
143   clone(BumpPtrAllocator &Allocator, MachineFunction &DestMF,
144         const DenseMap<MachineBasicBlock *, MachineBasicBlock *> &Src2DstMBB)
145       const override;
146 
getForceFramePointer()147   bool getForceFramePointer() const { return ForceFramePointer;}
setForceFramePointer(bool forceFP)148   void setForceFramePointer(bool forceFP) { ForceFramePointer = forceFP; }
149 
getHasPushSequences()150   bool getHasPushSequences() const { return HasPushSequences; }
setHasPushSequences(bool HasPush)151   void setHasPushSequences(bool HasPush) { HasPushSequences = HasPush; }
152 
getRestoreBasePointer()153   bool getRestoreBasePointer() const { return RestoreBasePointerOffset!=0; }
154   void setRestoreBasePointer(const MachineFunction *MF);
getRestoreBasePointerOffset()155   int getRestoreBasePointerOffset() const {return RestoreBasePointerOffset; }
156 
getWinEHXMMSlotInfo()157   DenseMap<int, unsigned>& getWinEHXMMSlotInfo() { return WinEHXMMSlotInfo; }
getWinEHXMMSlotInfo()158   const DenseMap<int, unsigned>& getWinEHXMMSlotInfo() const {
159     return WinEHXMMSlotInfo; }
160 
getCalleeSavedFrameSize()161   unsigned getCalleeSavedFrameSize() const { return CalleeSavedFrameSize; }
setCalleeSavedFrameSize(unsigned bytes)162   void setCalleeSavedFrameSize(unsigned bytes) { CalleeSavedFrameSize = bytes; }
163 
getSaveArgSize()164   unsigned getSaveArgSize() const { return SaveArgSize; }
setSaveArgSize(unsigned bytes)165   void setSaveArgSize(unsigned bytes) { SaveArgSize = bytes; }
166 
getBytesToPopOnReturn()167   unsigned getBytesToPopOnReturn() const { return BytesToPopOnReturn; }
setBytesToPopOnReturn(unsigned bytes)168   void setBytesToPopOnReturn (unsigned bytes) { BytesToPopOnReturn = bytes;}
169 
getRAIndex()170   int getRAIndex() const { return ReturnAddrIndex; }
setRAIndex(int Index)171   void setRAIndex(int Index) { ReturnAddrIndex = Index; }
172 
getFAIndex()173   int getFAIndex() const { return FrameAddrIndex; }
setFAIndex(int Index)174   void setFAIndex(int Index) { FrameAddrIndex = Index; }
175 
getTCReturnAddrDelta()176   int getTCReturnAddrDelta() const { return TailCallReturnAddrDelta; }
setTCReturnAddrDelta(int delta)177   void setTCReturnAddrDelta(int delta) {TailCallReturnAddrDelta = delta;}
178 
getSRetReturnReg()179   Register getSRetReturnReg() const { return SRetReturnReg; }
setSRetReturnReg(Register Reg)180   void setSRetReturnReg(Register Reg) { SRetReturnReg = Reg; }
181 
getGlobalBaseReg()182   Register getGlobalBaseReg() const { return GlobalBaseReg; }
setGlobalBaseReg(Register Reg)183   void setGlobalBaseReg(Register Reg) { GlobalBaseReg = Reg; }
184 
getVarArgsFrameIndex()185   int getVarArgsFrameIndex() const { return VarArgsFrameIndex; }
setVarArgsFrameIndex(int Idx)186   void setVarArgsFrameIndex(int Idx) { VarArgsFrameIndex = Idx; }
187 
getRegSaveFrameIndex()188   int getRegSaveFrameIndex() const { return RegSaveFrameIndex; }
setRegSaveFrameIndex(int Idx)189   void setRegSaveFrameIndex(int Idx) { RegSaveFrameIndex = Idx; }
190 
getVarArgsGPOffset()191   unsigned getVarArgsGPOffset() const { return VarArgsGPOffset; }
setVarArgsGPOffset(unsigned Offset)192   void setVarArgsGPOffset(unsigned Offset) { VarArgsGPOffset = Offset; }
193 
getVarArgsFPOffset()194   unsigned getVarArgsFPOffset() const { return VarArgsFPOffset; }
setVarArgsFPOffset(unsigned Offset)195   void setVarArgsFPOffset(unsigned Offset) { VarArgsFPOffset = Offset; }
196 
getArgumentStackSize()197   unsigned getArgumentStackSize() const { return ArgumentStackSize; }
setArgumentStackSize(unsigned size)198   void setArgumentStackSize(unsigned size) { ArgumentStackSize = size; }
199 
getNumLocalDynamicTLSAccesses()200   unsigned getNumLocalDynamicTLSAccesses() const { return NumLocalDynamics; }
incNumLocalDynamicTLSAccesses()201   void incNumLocalDynamicTLSAccesses() { ++NumLocalDynamics; }
202 
getHasSEHFramePtrSave()203   bool getHasSEHFramePtrSave() const { return HasSEHFramePtrSave; }
setHasSEHFramePtrSave(bool V)204   void setHasSEHFramePtrSave(bool V) { HasSEHFramePtrSave = V; }
205 
getSEHFramePtrSaveIndex()206   int getSEHFramePtrSaveIndex() const { return SEHFramePtrSaveIndex; }
setSEHFramePtrSaveIndex(int Index)207   void setSEHFramePtrSaveIndex(int Index) { SEHFramePtrSaveIndex = Index; }
208 
getForwardedMustTailRegParms()209   SmallVectorImpl<ForwardedRegister> &getForwardedMustTailRegParms() {
210     return ForwardedMustTailRegParms;
211   }
212 
isSplitCSR()213   bool isSplitCSR() const { return IsSplitCSR; }
setIsSplitCSR(bool s)214   void setIsSplitCSR(bool s) { IsSplitCSR = s; }
215 
getUsesRedZone()216   bool getUsesRedZone() const { return UsesRedZone; }
setUsesRedZone(bool V)217   void setUsesRedZone(bool V) { UsesRedZone = V; }
218 
hasDynAlloca()219   bool hasDynAlloca() const { return HasDynAlloca; }
setHasDynAlloca(bool v)220   void setHasDynAlloca(bool v) { HasDynAlloca = v; }
221 
hasPreallocatedCall()222   bool hasPreallocatedCall() const { return HasPreallocatedCall; }
setHasPreallocatedCall(bool v)223   void setHasPreallocatedCall(bool v) { HasPreallocatedCall = v; }
224 
hasSwiftAsyncContext()225   bool hasSwiftAsyncContext() const { return HasSwiftAsyncContext; }
setHasSwiftAsyncContext(bool v)226   void setHasSwiftAsyncContext(bool v) { HasSwiftAsyncContext = v; }
227 
hasVirtualTileReg()228   bool hasVirtualTileReg() const { return HasVirtualTileReg; }
setHasVirtualTileReg(bool v)229   void setHasVirtualTileReg(bool v) { HasVirtualTileReg = v; }
230 
getSwiftAsyncContextFrameIdx()231   std::optional<int> getSwiftAsyncContextFrameIdx() const {
232     return SwiftAsyncContextFrameIdx;
233   }
setSwiftAsyncContextFrameIdx(int v)234   void setSwiftAsyncContextFrameIdx(int v) { SwiftAsyncContextFrameIdx = v; }
235 
getPreallocatedIdForCallSite(const Value * CS)236   size_t getPreallocatedIdForCallSite(const Value *CS) {
237     auto Insert = PreallocatedIds.insert({CS, PreallocatedIds.size()});
238     if (Insert.second) {
239       PreallocatedStackSizes.push_back(0);
240       PreallocatedArgOffsets.emplace_back();
241     }
242     return Insert.first->second;
243   }
244 
setPreallocatedStackSize(size_t Id,size_t StackSize)245   void setPreallocatedStackSize(size_t Id, size_t StackSize) {
246     PreallocatedStackSizes[Id] = StackSize;
247   }
248 
getPreallocatedStackSize(const size_t Id)249   size_t getPreallocatedStackSize(const size_t Id) {
250     assert(PreallocatedStackSizes[Id] != 0 && "stack size not set");
251     return PreallocatedStackSizes[Id];
252   }
253 
setPreallocatedArgOffsets(size_t Id,ArrayRef<size_t> AO)254   void setPreallocatedArgOffsets(size_t Id, ArrayRef<size_t> AO) {
255     PreallocatedArgOffsets[Id].assign(AO.begin(), AO.end());
256   }
257 
getPreallocatedArgOffsets(const size_t Id)258   ArrayRef<size_t> getPreallocatedArgOffsets(const size_t Id) {
259     assert(!PreallocatedArgOffsets[Id].empty() && "arg offsets not set");
260     return PreallocatedArgOffsets[Id];
261   }
262 };
263 
264 } // End llvm namespace
265 
266 #endif
267