1ffd1746dSEd Schouten //===-- CallingConvLower.cpp - Calling Conventions ------------------------===//
2ffd1746dSEd Schouten //
3ffd1746dSEd Schouten // The LLVM Compiler Infrastructure
4ffd1746dSEd Schouten //
5ffd1746dSEd Schouten // This file is distributed under the University of Illinois Open Source
6ffd1746dSEd Schouten // License. See LICENSE.TXT for details.
7ffd1746dSEd Schouten //
8ffd1746dSEd Schouten //===----------------------------------------------------------------------===//
9ffd1746dSEd Schouten //
10ffd1746dSEd Schouten // This file implements the CCState class, used for lowering and implementing
11ffd1746dSEd Schouten // calling conventions.
12ffd1746dSEd Schouten //
13ffd1746dSEd Schouten //===----------------------------------------------------------------------===//
14ffd1746dSEd Schouten
15ffd1746dSEd Schouten #include "llvm/CodeGen/CallingConvLower.h"
16bd5abe19SDimitry Andric #include "llvm/CodeGen/MachineFrameInfo.h"
1739d628a0SDimitry Andric #include "llvm/CodeGen/MachineRegisterInfo.h"
18*2cab237bSDimitry Andric #include "llvm/CodeGen/TargetLowering.h"
19*2cab237bSDimitry Andric #include "llvm/CodeGen/TargetRegisterInfo.h"
20*2cab237bSDimitry Andric #include "llvm/CodeGen/TargetSubtargetInfo.h"
21139f7f9bSDimitry Andric #include "llvm/IR/DataLayout.h"
22ffd1746dSEd Schouten #include "llvm/Support/Debug.h"
23ffd1746dSEd Schouten #include "llvm/Support/ErrorHandling.h"
2439d628a0SDimitry Andric #include "llvm/Support/SaveAndRestore.h"
25ffd1746dSEd Schouten #include "llvm/Support/raw_ostream.h"
26d88c1a5aSDimitry Andric #include <algorithm>
27d88c1a5aSDimitry Andric
28ffd1746dSEd Schouten using namespace llvm;
29ffd1746dSEd Schouten
CCState(CallingConv::ID CC,bool isVarArg,MachineFunction & mf,SmallVectorImpl<CCValAssign> & locs,LLVMContext & C)30bd5abe19SDimitry Andric CCState::CCState(CallingConv::ID CC, bool isVarArg, MachineFunction &mf,
3139d628a0SDimitry Andric SmallVectorImpl<CCValAssign> &locs, LLVMContext &C)
3239d628a0SDimitry Andric : CallingConv(CC), IsVarArg(isVarArg), MF(mf),
337a7e6055SDimitry Andric TRI(*MF.getSubtarget().getRegisterInfo()), Locs(locs), Context(C) {
34ffd1746dSEd Schouten // No stack is used.
35ffd1746dSEd Schouten StackOffset = 0;
367d523365SDimitry Andric MaxStackArgAlign = 1;
37ffd1746dSEd Schouten
38284c1978SDimitry Andric clearByValRegsInfo();
39ffd1746dSEd Schouten UsedRegs.resize((TRI.getNumRegs()+31)/32);
40ffd1746dSEd Schouten }
41ffd1746dSEd Schouten
428f0fd8f6SDimitry Andric /// Allocate space on the stack large enough to pass an argument by value.
438f0fd8f6SDimitry Andric /// The size and alignment information of the argument is encoded in
448f0fd8f6SDimitry Andric /// its parameter attribute.
HandleByVal(unsigned ValNo,MVT ValVT,MVT LocVT,CCValAssign::LocInfo LocInfo,int MinSize,int MinAlign,ISD::ArgFlagsTy ArgFlags)452754fe60SDimitry Andric void CCState::HandleByVal(unsigned ValNo, MVT ValVT,
462754fe60SDimitry Andric MVT LocVT, CCValAssign::LocInfo LocInfo,
47ffd1746dSEd Schouten int MinSize, int MinAlign,
48ffd1746dSEd Schouten ISD::ArgFlagsTy ArgFlags) {
49ffd1746dSEd Schouten unsigned Align = ArgFlags.getByValAlign();
50ffd1746dSEd Schouten unsigned Size = ArgFlags.getByValSize();
51ffd1746dSEd Schouten if (MinSize > (int)Size)
52ffd1746dSEd Schouten Size = MinSize;
53ffd1746dSEd Schouten if (MinAlign > (int)Align)
54ffd1746dSEd Schouten Align = MinAlign;
553ca95b02SDimitry Andric ensureMaxAlignment(Align);
5639d628a0SDimitry Andric MF.getSubtarget().getTargetLowering()->HandleByVal(this, Size, Align);
573ca95b02SDimitry Andric Size = unsigned(alignTo(Size, MinAlign));
58ffd1746dSEd Schouten unsigned Offset = AllocateStack(Size, Align);
59ffd1746dSEd Schouten addLoc(CCValAssign::getMem(ValNo, ValVT, Offset, LocVT, LocInfo));
60ffd1746dSEd Schouten }
61ffd1746dSEd Schouten
628f0fd8f6SDimitry Andric /// Mark a register and all of its aliases as allocated.
MarkAllocated(unsigned Reg)63ffd1746dSEd Schouten void CCState::MarkAllocated(unsigned Reg) {
647ae0e2c9SDimitry Andric for (MCRegAliasIterator AI(Reg, &TRI, true); AI.isValid(); ++AI)
657ae0e2c9SDimitry Andric UsedRegs[*AI/32] |= 1 << (*AI&31);
66ffd1746dSEd Schouten }
67ffd1746dSEd Schouten
IsShadowAllocatedReg(unsigned Reg) const68d88c1a5aSDimitry Andric bool CCState::IsShadowAllocatedReg(unsigned Reg) const {
69d88c1a5aSDimitry Andric if (!isAllocated(Reg))
70d88c1a5aSDimitry Andric return false;
71d88c1a5aSDimitry Andric
72d88c1a5aSDimitry Andric for (auto const &ValAssign : Locs) {
73d88c1a5aSDimitry Andric if (ValAssign.isRegLoc()) {
74d88c1a5aSDimitry Andric for (MCRegAliasIterator AI(ValAssign.getLocReg(), &TRI, true);
75d88c1a5aSDimitry Andric AI.isValid(); ++AI) {
76d88c1a5aSDimitry Andric if (*AI == Reg)
77d88c1a5aSDimitry Andric return false;
78d88c1a5aSDimitry Andric }
79d88c1a5aSDimitry Andric }
80d88c1a5aSDimitry Andric }
81d88c1a5aSDimitry Andric return true;
82d88c1a5aSDimitry Andric }
83d88c1a5aSDimitry Andric
848f0fd8f6SDimitry Andric /// Analyze an array of argument values,
85ffd1746dSEd Schouten /// incorporating info about the formals into this state.
86ffd1746dSEd Schouten void
AnalyzeFormalArguments(const SmallVectorImpl<ISD::InputArg> & Ins,CCAssignFn Fn)87ffd1746dSEd Schouten CCState::AnalyzeFormalArguments(const SmallVectorImpl<ISD::InputArg> &Ins,
88ffd1746dSEd Schouten CCAssignFn Fn) {
89ffd1746dSEd Schouten unsigned NumArgs = Ins.size();
90ffd1746dSEd Schouten
91ffd1746dSEd Schouten for (unsigned i = 0; i != NumArgs; ++i) {
922754fe60SDimitry Andric MVT ArgVT = Ins[i].VT;
93ffd1746dSEd Schouten ISD::ArgFlagsTy ArgFlags = Ins[i].Flags;
94ffd1746dSEd Schouten if (Fn(i, ArgVT, ArgVT, CCValAssign::Full, ArgFlags, *this)) {
95ffd1746dSEd Schouten #ifndef NDEBUG
96ffd1746dSEd Schouten dbgs() << "Formal argument #" << i << " has unhandled type "
97139f7f9bSDimitry Andric << EVT(ArgVT).getEVTString() << '\n';
98ffd1746dSEd Schouten #endif
9991bc56edSDimitry Andric llvm_unreachable(nullptr);
100ffd1746dSEd Schouten }
101ffd1746dSEd Schouten }
102ffd1746dSEd Schouten }
103ffd1746dSEd Schouten
1048f0fd8f6SDimitry Andric /// Analyze the return values of a function, returning true if the return can
1058f0fd8f6SDimitry Andric /// be performed without sret-demotion and false otherwise.
CheckReturn(const SmallVectorImpl<ISD::OutputArg> & Outs,CCAssignFn Fn)106ffd1746dSEd Schouten bool CCState::CheckReturn(const SmallVectorImpl<ISD::OutputArg> &Outs,
107ffd1746dSEd Schouten CCAssignFn Fn) {
108ffd1746dSEd Schouten // Determine which register each value should be copied into.
109ffd1746dSEd Schouten for (unsigned i = 0, e = Outs.size(); i != e; ++i) {
1102754fe60SDimitry Andric MVT VT = Outs[i].VT;
111ffd1746dSEd Schouten ISD::ArgFlagsTy ArgFlags = Outs[i].Flags;
112ffd1746dSEd Schouten if (Fn(i, VT, VT, CCValAssign::Full, ArgFlags, *this))
113ffd1746dSEd Schouten return false;
114ffd1746dSEd Schouten }
115ffd1746dSEd Schouten return true;
116ffd1746dSEd Schouten }
117ffd1746dSEd Schouten
1188f0fd8f6SDimitry Andric /// Analyze the returned values of a return,
119ffd1746dSEd Schouten /// incorporating info about the result values into this state.
AnalyzeReturn(const SmallVectorImpl<ISD::OutputArg> & Outs,CCAssignFn Fn)120ffd1746dSEd Schouten void CCState::AnalyzeReturn(const SmallVectorImpl<ISD::OutputArg> &Outs,
121ffd1746dSEd Schouten CCAssignFn Fn) {
122ffd1746dSEd Schouten // Determine which register each value should be copied into.
123ffd1746dSEd Schouten for (unsigned i = 0, e = Outs.size(); i != e; ++i) {
1242754fe60SDimitry Andric MVT VT = Outs[i].VT;
125ffd1746dSEd Schouten ISD::ArgFlagsTy ArgFlags = Outs[i].Flags;
126ffd1746dSEd Schouten if (Fn(i, VT, VT, CCValAssign::Full, ArgFlags, *this)) {
127ffd1746dSEd Schouten #ifndef NDEBUG
128ffd1746dSEd Schouten dbgs() << "Return operand #" << i << " has unhandled type "
129139f7f9bSDimitry Andric << EVT(VT).getEVTString() << '\n';
130ffd1746dSEd Schouten #endif
13191bc56edSDimitry Andric llvm_unreachable(nullptr);
132ffd1746dSEd Schouten }
133ffd1746dSEd Schouten }
134ffd1746dSEd Schouten }
135ffd1746dSEd Schouten
1368f0fd8f6SDimitry Andric /// Analyze the outgoing arguments to a call,
137ffd1746dSEd Schouten /// incorporating info about the passed values into this state.
AnalyzeCallOperands(const SmallVectorImpl<ISD::OutputArg> & Outs,CCAssignFn Fn)138ffd1746dSEd Schouten void CCState::AnalyzeCallOperands(const SmallVectorImpl<ISD::OutputArg> &Outs,
139ffd1746dSEd Schouten CCAssignFn Fn) {
140ffd1746dSEd Schouten unsigned NumOps = Outs.size();
141ffd1746dSEd Schouten for (unsigned i = 0; i != NumOps; ++i) {
1422754fe60SDimitry Andric MVT ArgVT = Outs[i].VT;
143ffd1746dSEd Schouten ISD::ArgFlagsTy ArgFlags = Outs[i].Flags;
144ffd1746dSEd Schouten if (Fn(i, ArgVT, ArgVT, CCValAssign::Full, ArgFlags, *this)) {
145ffd1746dSEd Schouten #ifndef NDEBUG
146ffd1746dSEd Schouten dbgs() << "Call operand #" << i << " has unhandled type "
147139f7f9bSDimitry Andric << EVT(ArgVT).getEVTString() << '\n';
148ffd1746dSEd Schouten #endif
14991bc56edSDimitry Andric llvm_unreachable(nullptr);
150ffd1746dSEd Schouten }
151ffd1746dSEd Schouten }
152ffd1746dSEd Schouten }
153ffd1746dSEd Schouten
1548f0fd8f6SDimitry Andric /// Same as above except it takes vectors of types and argument flags.
AnalyzeCallOperands(SmallVectorImpl<MVT> & ArgVTs,SmallVectorImpl<ISD::ArgFlagsTy> & Flags,CCAssignFn Fn)1552754fe60SDimitry Andric void CCState::AnalyzeCallOperands(SmallVectorImpl<MVT> &ArgVTs,
156ffd1746dSEd Schouten SmallVectorImpl<ISD::ArgFlagsTy> &Flags,
157ffd1746dSEd Schouten CCAssignFn Fn) {
158ffd1746dSEd Schouten unsigned NumOps = ArgVTs.size();
159ffd1746dSEd Schouten for (unsigned i = 0; i != NumOps; ++i) {
1602754fe60SDimitry Andric MVT ArgVT = ArgVTs[i];
161ffd1746dSEd Schouten ISD::ArgFlagsTy ArgFlags = Flags[i];
162ffd1746dSEd Schouten if (Fn(i, ArgVT, ArgVT, CCValAssign::Full, ArgFlags, *this)) {
163ffd1746dSEd Schouten #ifndef NDEBUG
164ffd1746dSEd Schouten dbgs() << "Call operand #" << i << " has unhandled type "
165139f7f9bSDimitry Andric << EVT(ArgVT).getEVTString() << '\n';
166ffd1746dSEd Schouten #endif
16791bc56edSDimitry Andric llvm_unreachable(nullptr);
168ffd1746dSEd Schouten }
169ffd1746dSEd Schouten }
170ffd1746dSEd Schouten }
171ffd1746dSEd Schouten
1728f0fd8f6SDimitry Andric /// Analyze the return values of a call, incorporating info about the passed
1738f0fd8f6SDimitry Andric /// values into this state.
AnalyzeCallResult(const SmallVectorImpl<ISD::InputArg> & Ins,CCAssignFn Fn)174ffd1746dSEd Schouten void CCState::AnalyzeCallResult(const SmallVectorImpl<ISD::InputArg> &Ins,
175ffd1746dSEd Schouten CCAssignFn Fn) {
176ffd1746dSEd Schouten for (unsigned i = 0, e = Ins.size(); i != e; ++i) {
1772754fe60SDimitry Andric MVT VT = Ins[i].VT;
178ffd1746dSEd Schouten ISD::ArgFlagsTy Flags = Ins[i].Flags;
179ffd1746dSEd Schouten if (Fn(i, VT, VT, CCValAssign::Full, Flags, *this)) {
180ffd1746dSEd Schouten #ifndef NDEBUG
181ffd1746dSEd Schouten dbgs() << "Call result #" << i << " has unhandled type "
182139f7f9bSDimitry Andric << EVT(VT).getEVTString() << '\n';
183ffd1746dSEd Schouten #endif
18491bc56edSDimitry Andric llvm_unreachable(nullptr);
185ffd1746dSEd Schouten }
186ffd1746dSEd Schouten }
187ffd1746dSEd Schouten }
188ffd1746dSEd Schouten
1898f0fd8f6SDimitry Andric /// Same as above except it's specialized for calls that produce a single value.
AnalyzeCallResult(MVT VT,CCAssignFn Fn)1902754fe60SDimitry Andric void CCState::AnalyzeCallResult(MVT VT, CCAssignFn Fn) {
191ffd1746dSEd Schouten if (Fn(0, VT, VT, CCValAssign::Full, ISD::ArgFlagsTy(), *this)) {
192ffd1746dSEd Schouten #ifndef NDEBUG
193ffd1746dSEd Schouten dbgs() << "Call result has unhandled type "
194139f7f9bSDimitry Andric << EVT(VT).getEVTString() << '\n';
195ffd1746dSEd Schouten #endif
19691bc56edSDimitry Andric llvm_unreachable(nullptr);
197ffd1746dSEd Schouten }
198ffd1746dSEd Schouten }
19939d628a0SDimitry Andric
isValueTypeInRegForCC(CallingConv::ID CC,MVT VT)20039d628a0SDimitry Andric static bool isValueTypeInRegForCC(CallingConv::ID CC, MVT VT) {
20139d628a0SDimitry Andric if (VT.isVector())
20239d628a0SDimitry Andric return true; // Assume -msse-regparm might be in effect.
20339d628a0SDimitry Andric if (!VT.isInteger())
20439d628a0SDimitry Andric return false;
20539d628a0SDimitry Andric if (CC == CallingConv::X86_VectorCall || CC == CallingConv::X86_FastCall)
20639d628a0SDimitry Andric return true;
20739d628a0SDimitry Andric return false;
20839d628a0SDimitry Andric }
20939d628a0SDimitry Andric
getRemainingRegParmsForType(SmallVectorImpl<MCPhysReg> & Regs,MVT VT,CCAssignFn Fn)21039d628a0SDimitry Andric void CCState::getRemainingRegParmsForType(SmallVectorImpl<MCPhysReg> &Regs,
21139d628a0SDimitry Andric MVT VT, CCAssignFn Fn) {
21239d628a0SDimitry Andric unsigned SavedStackOffset = StackOffset;
2137d523365SDimitry Andric unsigned SavedMaxStackArgAlign = MaxStackArgAlign;
21439d628a0SDimitry Andric unsigned NumLocs = Locs.size();
21539d628a0SDimitry Andric
21639d628a0SDimitry Andric // Set the 'inreg' flag if it is used for this calling convention.
21739d628a0SDimitry Andric ISD::ArgFlagsTy Flags;
21839d628a0SDimitry Andric if (isValueTypeInRegForCC(CallingConv, VT))
21939d628a0SDimitry Andric Flags.setInReg();
22039d628a0SDimitry Andric
22139d628a0SDimitry Andric // Allocate something of this value type repeatedly until we get assigned a
22239d628a0SDimitry Andric // location in memory.
22339d628a0SDimitry Andric bool HaveRegParm = true;
22439d628a0SDimitry Andric while (HaveRegParm) {
22539d628a0SDimitry Andric if (Fn(0, VT, VT, CCValAssign::Full, Flags, *this)) {
22639d628a0SDimitry Andric #ifndef NDEBUG
22739d628a0SDimitry Andric dbgs() << "Call has unhandled type " << EVT(VT).getEVTString()
22839d628a0SDimitry Andric << " while computing remaining regparms\n";
22939d628a0SDimitry Andric #endif
23039d628a0SDimitry Andric llvm_unreachable(nullptr);
23139d628a0SDimitry Andric }
23239d628a0SDimitry Andric HaveRegParm = Locs.back().isRegLoc();
23339d628a0SDimitry Andric }
23439d628a0SDimitry Andric
23539d628a0SDimitry Andric // Copy all the registers from the value locations we added.
23639d628a0SDimitry Andric assert(NumLocs < Locs.size() && "CC assignment failed to add location");
23739d628a0SDimitry Andric for (unsigned I = NumLocs, E = Locs.size(); I != E; ++I)
23839d628a0SDimitry Andric if (Locs[I].isRegLoc())
23939d628a0SDimitry Andric Regs.push_back(MCPhysReg(Locs[I].getLocReg()));
24039d628a0SDimitry Andric
24139d628a0SDimitry Andric // Clear the assigned values and stack memory. We leave the registers marked
24239d628a0SDimitry Andric // as allocated so that future queries don't return the same registers, i.e.
24339d628a0SDimitry Andric // when i64 and f64 are both passed in GPRs.
24439d628a0SDimitry Andric StackOffset = SavedStackOffset;
2457d523365SDimitry Andric MaxStackArgAlign = SavedMaxStackArgAlign;
24639d628a0SDimitry Andric Locs.resize(NumLocs);
24739d628a0SDimitry Andric }
24839d628a0SDimitry Andric
analyzeMustTailForwardedRegisters(SmallVectorImpl<ForwardedRegister> & Forwards,ArrayRef<MVT> RegParmTypes,CCAssignFn Fn)24939d628a0SDimitry Andric void CCState::analyzeMustTailForwardedRegisters(
25039d628a0SDimitry Andric SmallVectorImpl<ForwardedRegister> &Forwards, ArrayRef<MVT> RegParmTypes,
25139d628a0SDimitry Andric CCAssignFn Fn) {
25239d628a0SDimitry Andric // Oftentimes calling conventions will not user register parameters for
25339d628a0SDimitry Andric // variadic functions, so we need to assume we're not variadic so that we get
25439d628a0SDimitry Andric // all the registers that might be used in a non-variadic call.
25539d628a0SDimitry Andric SaveAndRestore<bool> SavedVarArg(IsVarArg, false);
2563ca95b02SDimitry Andric SaveAndRestore<bool> SavedMustTail(AnalyzingMustTailForwardedRegs, true);
25739d628a0SDimitry Andric
25839d628a0SDimitry Andric for (MVT RegVT : RegParmTypes) {
25939d628a0SDimitry Andric SmallVector<MCPhysReg, 8> RemainingRegs;
26039d628a0SDimitry Andric getRemainingRegParmsForType(RemainingRegs, RegVT, Fn);
26139d628a0SDimitry Andric const TargetLowering *TL = MF.getSubtarget().getTargetLowering();
26239d628a0SDimitry Andric const TargetRegisterClass *RC = TL->getRegClassFor(RegVT);
26339d628a0SDimitry Andric for (MCPhysReg PReg : RemainingRegs) {
26439d628a0SDimitry Andric unsigned VReg = MF.addLiveIn(PReg, RC);
26539d628a0SDimitry Andric Forwards.push_back(ForwardedRegister(VReg, PReg, RegVT));
26639d628a0SDimitry Andric }
26739d628a0SDimitry Andric }
26839d628a0SDimitry Andric }
2693ca95b02SDimitry Andric
resultsCompatible(CallingConv::ID CalleeCC,CallingConv::ID CallerCC,MachineFunction & MF,LLVMContext & C,const SmallVectorImpl<ISD::InputArg> & Ins,CCAssignFn CalleeFn,CCAssignFn CallerFn)2703ca95b02SDimitry Andric bool CCState::resultsCompatible(CallingConv::ID CalleeCC,
2713ca95b02SDimitry Andric CallingConv::ID CallerCC, MachineFunction &MF,
2723ca95b02SDimitry Andric LLVMContext &C,
2733ca95b02SDimitry Andric const SmallVectorImpl<ISD::InputArg> &Ins,
2743ca95b02SDimitry Andric CCAssignFn CalleeFn, CCAssignFn CallerFn) {
2753ca95b02SDimitry Andric if (CalleeCC == CallerCC)
2763ca95b02SDimitry Andric return true;
2773ca95b02SDimitry Andric SmallVector<CCValAssign, 4> RVLocs1;
2783ca95b02SDimitry Andric CCState CCInfo1(CalleeCC, false, MF, RVLocs1, C);
2793ca95b02SDimitry Andric CCInfo1.AnalyzeCallResult(Ins, CalleeFn);
2803ca95b02SDimitry Andric
2813ca95b02SDimitry Andric SmallVector<CCValAssign, 4> RVLocs2;
2823ca95b02SDimitry Andric CCState CCInfo2(CallerCC, false, MF, RVLocs2, C);
2833ca95b02SDimitry Andric CCInfo2.AnalyzeCallResult(Ins, CallerFn);
2843ca95b02SDimitry Andric
2853ca95b02SDimitry Andric if (RVLocs1.size() != RVLocs2.size())
2863ca95b02SDimitry Andric return false;
2873ca95b02SDimitry Andric for (unsigned I = 0, E = RVLocs1.size(); I != E; ++I) {
2883ca95b02SDimitry Andric const CCValAssign &Loc1 = RVLocs1[I];
2893ca95b02SDimitry Andric const CCValAssign &Loc2 = RVLocs2[I];
2903ca95b02SDimitry Andric if (Loc1.getLocInfo() != Loc2.getLocInfo())
2913ca95b02SDimitry Andric return false;
2923ca95b02SDimitry Andric bool RegLoc1 = Loc1.isRegLoc();
2933ca95b02SDimitry Andric if (RegLoc1 != Loc2.isRegLoc())
2943ca95b02SDimitry Andric return false;
2953ca95b02SDimitry Andric if (RegLoc1) {
2963ca95b02SDimitry Andric if (Loc1.getLocReg() != Loc2.getLocReg())
2973ca95b02SDimitry Andric return false;
2983ca95b02SDimitry Andric } else {
2993ca95b02SDimitry Andric if (Loc1.getLocMemOffset() != Loc2.getLocMemOffset())
3003ca95b02SDimitry Andric return false;
3013ca95b02SDimitry Andric }
3023ca95b02SDimitry Andric }
3033ca95b02SDimitry Andric return true;
3043ca95b02SDimitry Andric }
305