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Bill Schmidt82f1c772015-02-10 19:09:05 +00001//===---------- PPCTLSDynamicCall.cpp - TLS Dynamic Call Fixup ------------===//
2//
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//
10// This pass expands ADDItls{ld,gd}LADDR[32] machine instructions into
11// separate ADDItls[gd]L[32] and GETtlsADDR[32] instructions, both of
12// which define GPR3. A copy is added from GPR3 to the target virtual
13// register of the original instruction. The GETtlsADDR[32] is really
14// a call instruction, so its target register is constrained to be GPR3.
15// This is not true of ADDItls[gd]L[32], but there is a legacy linker
16// optimization bug that requires the target register of the addi of
17// a local- or general-dynamic TLS access sequence to be GPR3.
18//
19// This is done in a late pass so that TLS variable accesses can be
20// fully commoned by MachineCSE.
21//
22//===----------------------------------------------------------------------===//
23
24#include "PPCInstrInfo.h"
25#include "PPC.h"
26#include "PPCInstrBuilder.h"
27#include "PPCTargetMachine.h"
28#include "llvm/CodeGen/LiveIntervalAnalysis.h"
29#include "llvm/CodeGen/MachineFunctionPass.h"
30#include "llvm/CodeGen/MachineInstrBuilder.h"
31#include "llvm/Support/Debug.h"
32#include "llvm/Support/raw_ostream.h"
33
34using namespace llvm;
35
36#define DEBUG_TYPE "ppc-tls-dynamic-call"
37
38namespace llvm {
39 void initializePPCTLSDynamicCallPass(PassRegistry&);
40}
41
42namespace {
43 struct PPCTLSDynamicCall : public MachineFunctionPass {
44 static char ID;
45 PPCTLSDynamicCall() : MachineFunctionPass(ID) {
46 initializePPCTLSDynamicCallPass(*PassRegistry::getPassRegistry());
47 }
48
49 const PPCTargetMachine *TM;
50 const PPCInstrInfo *TII;
51 LiveIntervals *LIS;
52
53protected:
54 bool processBlock(MachineBasicBlock &MBB) {
55 bool Changed = false;
56 bool Is64Bit = TM->getSubtargetImpl()->isPPC64();
57
58 for (MachineBasicBlock::iterator I = MBB.begin(), IE = MBB.end();
59 I != IE; ++I) {
60 MachineInstr *MI = I;
61
62 if (MI->getOpcode() != PPC::ADDItlsgdLADDR &&
63 MI->getOpcode() != PPC::ADDItlsldLADDR &&
64 MI->getOpcode() != PPC::ADDItlsgdLADDR32 &&
65 MI->getOpcode() != PPC::ADDItlsldLADDR32)
66 continue;
67
68 DEBUG(dbgs() << "TLS Dynamic Call Fixup:\n " << *MI;);
69
70 unsigned OutReg = MI->getOperand(0).getReg();
71 unsigned InReg = MI->getOperand(1).getReg();
72 DebugLoc DL = MI->getDebugLoc();
73 unsigned GPR3 = Is64Bit ? PPC::X3 : PPC::R3;
74 unsigned Opc1, Opc2;
75 SmallVector<unsigned, 4> OrigRegs;
76 OrigRegs.push_back(OutReg);
77 OrigRegs.push_back(InReg);
78 OrigRegs.push_back(GPR3);
79
80 switch (MI->getOpcode()) {
81 default:
82 llvm_unreachable("Opcode inconsistency error");
83 case PPC::ADDItlsgdLADDR:
84 Opc1 = PPC::ADDItlsgdL;
85 Opc2 = PPC::GETtlsADDR;
86 break;
87 case PPC::ADDItlsldLADDR:
88 Opc1 = PPC::ADDItlsldL;
89 Opc2 = PPC::GETtlsldADDR;
90 break;
91 case PPC::ADDItlsgdLADDR32:
92 Opc1 = PPC::ADDItlsgdL32;
93 Opc2 = PPC::GETtlsADDR32;
94 break;
95 case PPC::ADDItlsldLADDR32:
96 Opc1 = PPC::ADDItlsldL32;
97 Opc2 = PPC::GETtlsldADDR32;
98 break;
99 }
100
101 // Expand into two ops built prior to the existing instruction.
102 MachineInstr *Addi = BuildMI(MBB, I, DL, TII->get(Opc1), GPR3)
103 .addReg(InReg);
104 Addi->addOperand(MI->getOperand(2));
105
106 // The ADDItls* instruction is the first instruction in the
107 // repair range.
108 MachineBasicBlock::iterator First = I;
109 --First;
110
111 MachineInstr *Call = (BuildMI(MBB, I, DL, TII->get(Opc2), GPR3)
112 .addReg(GPR3));
113 Call->addOperand(MI->getOperand(3));
114
115 BuildMI(MBB, I, DL, TII->get(TargetOpcode::COPY), OutReg)
116 .addReg(GPR3);
117
118 // The COPY is the last instruction in the repair range.
119 MachineBasicBlock::iterator Last = I;
120 --Last;
121
122 // Move past the original instruction and remove it.
123 ++I;
124 MI->removeFromParent();
125
126 // Repair the live intervals.
127 LIS->repairIntervalsInRange(&MBB, First, Last, OrigRegs);
128 Changed = true;
129 }
130
131 return Changed;
132 }
133
134public:
135 bool runOnMachineFunction(MachineFunction &MF) override {
136 TM = static_cast<const PPCTargetMachine *>(&MF.getTarget());
137 TII = TM->getSubtargetImpl()->getInstrInfo();
138 LIS = &getAnalysis<LiveIntervals>();
139
140 bool Changed = false;
141
142 for (MachineFunction::iterator I = MF.begin(); I != MF.end();) {
143 MachineBasicBlock &B = *I++;
144 if (processBlock(B))
145 Changed = true;
146 }
147
148 return Changed;
149 }
150
151 void getAnalysisUsage(AnalysisUsage &AU) const override {
152 AU.addRequired<LiveIntervals>();
153 AU.addPreserved<LiveIntervals>();
154 AU.addRequired<SlotIndexes>();
155 AU.addPreserved<SlotIndexes>();
156 MachineFunctionPass::getAnalysisUsage(AU);
157 }
158 };
159}
160
161INITIALIZE_PASS_BEGIN(PPCTLSDynamicCall, DEBUG_TYPE,
162 "PowerPC TLS Dynamic Call Fixup", false, false)
163INITIALIZE_PASS_DEPENDENCY(LiveIntervals)
164INITIALIZE_PASS_DEPENDENCY(SlotIndexes)
165INITIALIZE_PASS_END(PPCTLSDynamicCall, DEBUG_TYPE,
166 "PowerPC TLS Dynamic Call Fixup", false, false)
167
168char PPCTLSDynamicCall::ID = 0;
169FunctionPass*
170llvm::createPPCTLSDynamicCallPass() { return new PPCTLSDynamicCall(); }