1 //===-- PowerPCSubtarget.cpp - PPC Subtarget Information ------------------===// 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 file implements the PPC specific subclass of TargetSubtargetInfo. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "PPCSubtarget.h" 15 #include "PPC.h" 16 #include "PPCRegisterInfo.h" 17 #include "PPCTargetMachine.h" 18 #include "llvm/CodeGen/MachineFunction.h" 19 #include "llvm/CodeGen/MachineScheduler.h" 20 #include "llvm/IR/Attributes.h" 21 #include "llvm/IR/Function.h" 22 #include "llvm/IR/GlobalValue.h" 23 #include "llvm/Support/CommandLine.h" 24 #include "llvm/Support/TargetRegistry.h" 25 #include "llvm/Target/TargetMachine.h" 26 #include <cstdlib> 27 28 using namespace llvm; 29 30 #define DEBUG_TYPE "ppc-subtarget" 31 32 #define GET_SUBTARGETINFO_TARGET_DESC 33 #define GET_SUBTARGETINFO_CTOR 34 #include "PPCGenSubtargetInfo.inc" 35 36 static cl::opt<bool> UseSubRegLiveness("ppc-track-subreg-liveness", 37 cl::desc("Enable subregister liveness tracking for PPC"), cl::Hidden); 38 39 static cl::opt<bool> QPXStackUnaligned("qpx-stack-unaligned", 40 cl::desc("Even when QPX is enabled the stack is not 32-byte aligned"), 41 cl::Hidden); 42 43 PPCSubtarget &PPCSubtarget::initializeSubtargetDependencies(StringRef CPU, 44 StringRef FS) { 45 initializeEnvironment(); 46 initSubtargetFeatures(CPU, FS); 47 return *this; 48 } 49 50 PPCSubtarget::PPCSubtarget(const Triple &TT, const std::string &CPU, 51 const std::string &FS, const PPCTargetMachine &TM) 52 : PPCGenSubtargetInfo(TT, CPU, FS), TargetTriple(TT), 53 IsPPC64(TargetTriple.getArch() == Triple::ppc64 || 54 TargetTriple.getArch() == Triple::ppc64le), 55 TM(TM), FrameLowering(initializeSubtargetDependencies(CPU, FS)), 56 InstrInfo(*this), TLInfo(TM, *this) {} 57 58 void PPCSubtarget::initializeEnvironment() { 59 StackAlignment = 16; 60 DarwinDirective = PPC::DIR_NONE; 61 HasMFOCRF = false; 62 Has64BitSupport = false; 63 Use64BitRegs = false; 64 UseCRBits = false; 65 UseSoftFloat = false; 66 HasAltivec = false; 67 HasSPE = false; 68 HasQPX = false; 69 HasVSX = false; 70 HasP8Vector = false; 71 HasP8Altivec = false; 72 HasP8Crypto = false; 73 HasP9Vector = false; 74 HasP9Altivec = false; 75 HasFCPSGN = false; 76 HasFSQRT = false; 77 HasFRE = false; 78 HasFRES = false; 79 HasFRSQRTE = false; 80 HasFRSQRTES = false; 81 HasRecipPrec = false; 82 HasSTFIWX = false; 83 HasLFIWAX = false; 84 HasFPRND = false; 85 HasFPCVT = false; 86 HasISEL = false; 87 HasBPERMD = false; 88 HasExtDiv = false; 89 HasCMPB = false; 90 HasLDBRX = false; 91 IsBookE = false; 92 HasOnlyMSYNC = false; 93 IsPPC4xx = false; 94 IsPPC6xx = false; 95 IsE500 = false; 96 FeatureMFTB = false; 97 DeprecatedDST = false; 98 HasLazyResolverStubs = false; 99 HasICBT = false; 100 HasInvariantFunctionDescriptors = false; 101 HasPartwordAtomics = false; 102 HasDirectMove = false; 103 IsQPXStackUnaligned = false; 104 HasHTM = false; 105 HasFusion = false; 106 HasFloat128 = false; 107 IsISA3_0 = false; 108 109 HasPOPCNTD = POPCNTD_Unavailable; 110 } 111 112 void PPCSubtarget::initSubtargetFeatures(StringRef CPU, StringRef FS) { 113 // Determine default and user specified characteristics 114 std::string CPUName = CPU; 115 if (CPUName.empty() || CPU == "generic") { 116 // If cross-compiling with -march=ppc64le without -mcpu 117 if (TargetTriple.getArch() == Triple::ppc64le) 118 CPUName = "ppc64le"; 119 else 120 CPUName = "generic"; 121 } 122 123 // Initialize scheduling itinerary for the specified CPU. 124 InstrItins = getInstrItineraryForCPU(CPUName); 125 126 // Parse features string. 127 ParseSubtargetFeatures(CPUName, FS); 128 129 // If the user requested use of 64-bit regs, but the cpu selected doesn't 130 // support it, ignore. 131 if (IsPPC64 && has64BitSupport()) 132 Use64BitRegs = true; 133 134 // Set up darwin-specific properties. 135 if (isDarwin()) 136 HasLazyResolverStubs = true; 137 138 // QPX requires a 32-byte aligned stack. Note that we need to do this if 139 // we're compiling for a BG/Q system regardless of whether or not QPX 140 // is enabled because external functions will assume this alignment. 141 IsQPXStackUnaligned = QPXStackUnaligned; 142 StackAlignment = getPlatformStackAlignment(); 143 144 // Determine endianness. 145 // FIXME: Part of the TargetMachine. 146 IsLittleEndian = (TargetTriple.getArch() == Triple::ppc64le); 147 } 148 149 /// hasLazyResolverStub - Return true if accesses to the specified global have 150 /// to go through a dyld lazy resolution stub. This means that an extra load 151 /// is required to get the address of the global. 152 bool PPCSubtarget::hasLazyResolverStub(const GlobalValue *GV) const { 153 // We never have stubs if HasLazyResolverStubs=false or if in static mode. 154 if (!HasLazyResolverStubs || TM.getRelocationModel() == Reloc::Static) 155 return false; 156 bool isDecl = GV->isDeclaration(); 157 if (GV->hasHiddenVisibility() && !isDecl && !GV->hasCommonLinkage()) 158 return false; 159 return GV->hasWeakLinkage() || GV->hasLinkOnceLinkage() || 160 GV->hasCommonLinkage() || isDecl; 161 } 162 163 // Embedded cores need aggressive scheduling (and some others also benefit). 164 static bool needsAggressiveScheduling(unsigned Directive) { 165 switch (Directive) { 166 default: return false; 167 case PPC::DIR_440: 168 case PPC::DIR_A2: 169 case PPC::DIR_E500mc: 170 case PPC::DIR_E5500: 171 case PPC::DIR_PWR7: 172 case PPC::DIR_PWR8: 173 return true; 174 } 175 } 176 177 bool PPCSubtarget::enableMachineScheduler() const { 178 // Enable MI scheduling for the embedded cores. 179 // FIXME: Enable this for all cores (some additional modeling 180 // may be necessary). 181 return needsAggressiveScheduling(DarwinDirective); 182 } 183 184 // This overrides the PostRAScheduler bit in the SchedModel for each CPU. 185 bool PPCSubtarget::enablePostRAScheduler() const { return true; } 186 187 PPCGenSubtargetInfo::AntiDepBreakMode PPCSubtarget::getAntiDepBreakMode() const { 188 return TargetSubtargetInfo::ANTIDEP_ALL; 189 } 190 191 void PPCSubtarget::getCriticalPathRCs(RegClassVector &CriticalPathRCs) const { 192 CriticalPathRCs.clear(); 193 CriticalPathRCs.push_back(isPPC64() ? 194 &PPC::G8RCRegClass : &PPC::GPRCRegClass); 195 } 196 197 void PPCSubtarget::overrideSchedPolicy(MachineSchedPolicy &Policy, 198 MachineInstr *begin, 199 MachineInstr *end, 200 unsigned NumRegionInstrs) const { 201 if (needsAggressiveScheduling(DarwinDirective)) { 202 Policy.OnlyTopDown = false; 203 Policy.OnlyBottomUp = false; 204 } 205 206 // Spilling is generally expensive on all PPC cores, so always enable 207 // register-pressure tracking. 208 Policy.ShouldTrackPressure = true; 209 } 210 211 bool PPCSubtarget::useAA() const { 212 // Use AA during code generation for the embedded cores. 213 return needsAggressiveScheduling(DarwinDirective); 214 } 215 216 bool PPCSubtarget::enableSubRegLiveness() const { 217 return UseSubRegLiveness; 218 } 219 220 unsigned char PPCSubtarget::classifyGlobalReference( 221 const GlobalValue *GV) const { 222 // Note that currently we don't generate non-pic references. 223 // If a caller wants that, this will have to be updated. 224 225 // Large code model always uses the TOC even for local symbols. 226 if (TM.getCodeModel() == CodeModel::Large) 227 return PPCII::MO_PIC_FLAG | PPCII::MO_NLP_FLAG; 228 229 unsigned char flags = PPCII::MO_PIC_FLAG; 230 231 // Only if the relocation mode is PIC do we have to worry about 232 // interposition. In all other cases we can use a slightly looser standard to 233 // decide how to access the symbol. 234 if (TM.getRelocationModel() == Reloc::PIC_) { 235 // If it's local, or it's non-default, it can't be interposed. 236 if (!GV->hasLocalLinkage() && 237 GV->hasDefaultVisibility()) { 238 flags |= PPCII::MO_NLP_FLAG; 239 } 240 return flags; 241 } 242 243 if (GV->isStrongDefinitionForLinker()) 244 return flags; 245 return flags | PPCII::MO_NLP_FLAG; 246 } 247 248 bool PPCSubtarget::isELFv2ABI() const { return TM.isELFv2ABI(); } 249 bool PPCSubtarget::isPPC64() const { return TM.isPPC64(); } 250