1 //===-- PPCCallLowering.h - Call lowering for GlobalISel -------*- 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 /// \file
10 /// This file implements the lowering of LLVM calls to machine code calls for
11 /// GlobalISel.
12 ///
13 //===----------------------------------------------------------------------===//
14
15 #include "PPCCallLowering.h"
16 #include "PPCCallingConv.h"
17 #include "PPCISelLowering.h"
18 #include "llvm/CodeGen/CallingConvLower.h"
19 #include "llvm/CodeGen/GlobalISel/CallLowering.h"
20 #include "llvm/CodeGen/GlobalISel/MachineIRBuilder.h"
21 #include "llvm/CodeGen/MachineFrameInfo.h"
22 #include "llvm/CodeGen/TargetCallingConv.h"
23
24 #define DEBUG_TYPE "ppc-call-lowering"
25
26 using namespace llvm;
27
28 namespace {
29
30 struct OutgoingArgHandler : public CallLowering::OutgoingValueHandler {
OutgoingArgHandler__anonb19fadde0111::OutgoingArgHandler31 OutgoingArgHandler(MachineIRBuilder &MIRBuilder, MachineRegisterInfo &MRI,
32 MachineInstrBuilder MIB)
33 : OutgoingValueHandler(MIRBuilder, MRI), MIB(MIB) {}
34
35 void assignValueToReg(Register ValVReg, Register PhysReg,
36 const CCValAssign &VA) override;
37 void assignValueToAddress(Register ValVReg, Register Addr, LLT MemTy,
38 const MachinePointerInfo &MPO,
39 const CCValAssign &VA) override;
40 Register getStackAddress(uint64_t Size, int64_t Offset,
41 MachinePointerInfo &MPO,
42 ISD::ArgFlagsTy Flags) override;
43
44 MachineInstrBuilder MIB;
45 };
46 } // namespace
47
assignValueToReg(Register ValVReg,Register PhysReg,const CCValAssign & VA)48 void OutgoingArgHandler::assignValueToReg(Register ValVReg, Register PhysReg,
49 const CCValAssign &VA) {
50 MIB.addUse(PhysReg, RegState::Implicit);
51 Register ExtReg = extendRegister(ValVReg, VA);
52 MIRBuilder.buildCopy(PhysReg, ExtReg);
53 }
54
assignValueToAddress(Register ValVReg,Register Addr,LLT MemTy,const MachinePointerInfo & MPO,const CCValAssign & VA)55 void OutgoingArgHandler::assignValueToAddress(Register ValVReg, Register Addr,
56 LLT MemTy,
57 const MachinePointerInfo &MPO,
58 const CCValAssign &VA) {
59 llvm_unreachable("unimplemented");
60 }
61
getStackAddress(uint64_t Size,int64_t Offset,MachinePointerInfo & MPO,ISD::ArgFlagsTy Flags)62 Register OutgoingArgHandler::getStackAddress(uint64_t Size, int64_t Offset,
63 MachinePointerInfo &MPO,
64 ISD::ArgFlagsTy Flags) {
65 llvm_unreachable("unimplemented");
66 }
67
PPCCallLowering(const PPCTargetLowering & TLI)68 PPCCallLowering::PPCCallLowering(const PPCTargetLowering &TLI)
69 : CallLowering(&TLI) {}
70
lowerReturn(MachineIRBuilder & MIRBuilder,const Value * Val,ArrayRef<Register> VRegs,FunctionLoweringInfo & FLI,Register SwiftErrorVReg) const71 bool PPCCallLowering::lowerReturn(MachineIRBuilder &MIRBuilder,
72 const Value *Val, ArrayRef<Register> VRegs,
73 FunctionLoweringInfo &FLI,
74 Register SwiftErrorVReg) const {
75 auto MIB = MIRBuilder.buildInstrNoInsert(PPC::BLR8);
76 bool Success = true;
77 MachineFunction &MF = MIRBuilder.getMF();
78 const Function &F = MF.getFunction();
79 MachineRegisterInfo &MRI = MF.getRegInfo();
80 auto &DL = F.getDataLayout();
81 if (!VRegs.empty()) {
82 // Setup the information about the return value.
83 ArgInfo OrigArg{VRegs, Val->getType(), 0};
84 setArgFlags(OrigArg, AttributeList::ReturnIndex, DL, F);
85
86 // Split the return value into consecutive registers if needed.
87 SmallVector<ArgInfo, 8> SplitArgs;
88 splitToValueTypes(OrigArg, SplitArgs, DL, F.getCallingConv());
89
90 // Use the calling convention callback to determine type and location of
91 // return value.
92 OutgoingValueAssigner ArgAssigner(RetCC_PPC);
93
94 // Handler to move the return value into the correct location.
95 OutgoingArgHandler ArgHandler(MIRBuilder, MRI, MIB);
96
97 // Iterate over all return values, and move them to the assigned location.
98 Success = determineAndHandleAssignments(ArgHandler, ArgAssigner, SplitArgs,
99 MIRBuilder, F.getCallingConv(),
100 F.isVarArg());
101 }
102 MIRBuilder.insertInstr(MIB);
103 return Success;
104 }
105
lowerCall(MachineIRBuilder & MIRBuilder,CallLoweringInfo & Info) const106 bool PPCCallLowering::lowerCall(MachineIRBuilder &MIRBuilder,
107 CallLoweringInfo &Info) const {
108 return false;
109 }
110
lowerFormalArguments(MachineIRBuilder & MIRBuilder,const Function & F,ArrayRef<ArrayRef<Register>> VRegs,FunctionLoweringInfo & FLI) const111 bool PPCCallLowering::lowerFormalArguments(MachineIRBuilder &MIRBuilder,
112 const Function &F,
113 ArrayRef<ArrayRef<Register>> VRegs,
114 FunctionLoweringInfo &FLI) const {
115 MachineFunction &MF = MIRBuilder.getMF();
116 MachineRegisterInfo &MRI = MF.getRegInfo();
117 const auto &DL = F.getDataLayout();
118 auto &TLI = *getTLI<PPCTargetLowering>();
119
120 // Loop over each arg, set flags and split to single value types
121 SmallVector<ArgInfo, 8> SplitArgs;
122 unsigned I = 0;
123 for (const auto &Arg : F.args()) {
124 if (DL.getTypeStoreSize(Arg.getType()).isZero())
125 continue;
126
127 ArgInfo OrigArg{VRegs[I], Arg, I};
128 setArgFlags(OrigArg, I + AttributeList::FirstArgIndex, DL, F);
129 splitToValueTypes(OrigArg, SplitArgs, DL, F.getCallingConv());
130 ++I;
131 }
132
133 CCAssignFn *AssignFn =
134 TLI.ccAssignFnForCall(F.getCallingConv(), false, F.isVarArg());
135 IncomingValueAssigner ArgAssigner(AssignFn);
136 FormalArgHandler ArgHandler(MIRBuilder, MRI);
137 return determineAndHandleAssignments(ArgHandler, ArgAssigner, SplitArgs,
138 MIRBuilder, F.getCallingConv(),
139 F.isVarArg());
140 }
141
assignValueToReg(Register ValVReg,Register PhysReg,const CCValAssign & VA)142 void PPCIncomingValueHandler::assignValueToReg(Register ValVReg,
143 Register PhysReg,
144 const CCValAssign &VA) {
145 markPhysRegUsed(PhysReg);
146 IncomingValueHandler::assignValueToReg(ValVReg, PhysReg, VA);
147 }
148
assignValueToAddress(Register ValVReg,Register Addr,LLT MemTy,const MachinePointerInfo & MPO,const CCValAssign & VA)149 void PPCIncomingValueHandler::assignValueToAddress(
150 Register ValVReg, Register Addr, LLT MemTy, const MachinePointerInfo &MPO,
151 const CCValAssign &VA) {
152 // define a lambda expression to load value
153 auto BuildLoad = [](MachineIRBuilder &MIRBuilder,
154 const MachinePointerInfo &MPO, LLT MemTy,
155 const DstOp &Res, Register Addr) {
156 MachineFunction &MF = MIRBuilder.getMF();
157 auto *MMO = MF.getMachineMemOperand(MPO, MachineMemOperand::MOLoad, MemTy,
158 inferAlignFromPtrInfo(MF, MPO));
159 return MIRBuilder.buildLoad(Res, Addr, *MMO);
160 };
161
162 BuildLoad(MIRBuilder, MPO, MemTy, ValVReg, Addr);
163 }
164
getStackAddress(uint64_t Size,int64_t Offset,MachinePointerInfo & MPO,ISD::ArgFlagsTy Flags)165 Register PPCIncomingValueHandler::getStackAddress(uint64_t Size, int64_t Offset,
166 MachinePointerInfo &MPO,
167 ISD::ArgFlagsTy Flags) {
168 auto &MFI = MIRBuilder.getMF().getFrameInfo();
169 const bool IsImmutable = !Flags.isByVal();
170 int FI = MFI.CreateFixedObject(Size, Offset, IsImmutable);
171 MPO = MachinePointerInfo::getFixedStack(MIRBuilder.getMF(), FI);
172
173 // Build Frame Index based on whether the machine is 32-bit or 64-bit
174 llvm::LLT FramePtr = LLT::pointer(
175 0, MIRBuilder.getMF().getDataLayout().getPointerSizeInBits());
176 MachineInstrBuilder AddrReg = MIRBuilder.buildFrameIndex(FramePtr, FI);
177 StackUsed = std::max(StackUsed, Size + Offset);
178 return AddrReg.getReg(0);
179 }
180
markPhysRegUsed(unsigned PhysReg)181 void FormalArgHandler::markPhysRegUsed(unsigned PhysReg) {
182 MIRBuilder.getMRI()->addLiveIn(PhysReg);
183 MIRBuilder.getMBB().addLiveIn(PhysReg);
184 }
185