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https://github.com/RPCSX/llvm.git
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Changes from Nick Lewycky with a simplified PPCTargetAsmInfo.
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@32735 91177308-0d34-0410-b5e6-96231b3b80d8
This commit is contained in:
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787bfe654c
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@ -26,10 +26,11 @@ namespace llvm {
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/// TargetAsmInfo - This class is intended to be used as a base class for asm
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/// properties and features specific to the target.
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class TargetAsmInfo {
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protected:
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public:
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//===------------------------------------------------------------------===//
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// Properties to be set by the target writer, used to configure asm printer.
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//
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// Should not be accessed by anything but a subclass of TargetAsmInfo. Use
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// accessor functions.
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/// TextSection - Section directive for standard text.
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///
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@ -282,6 +282,35 @@ namespace {
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virtual bool doFinalization(Module &M) = 0;
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};
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/// LinuxAsmPrinter - PowerPC assembly printer, customized for Linux
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struct VISIBILITY_HIDDEN LinuxAsmPrinter : public PPCAsmPrinter {
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DwarfWriter DW;
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LinuxAsmPrinter(std::ostream &O, PPCTargetMachine &TM,
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const TargetAsmInfo *T)
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: PPCAsmPrinter(O, TM, T), DW(O, this, T) {
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}
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virtual const char *getPassName() const {
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return "Linux PPC Assembly Printer";
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}
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bool runOnMachineFunction(MachineFunction &F);
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bool doInitialization(Module &M);
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bool doFinalization(Module &M);
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void getAnalysisUsage(AnalysisUsage &AU) const {
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AU.setPreservesAll();
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AU.addRequired<MachineDebugInfo>();
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PPCAsmPrinter::getAnalysisUsage(AU);
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}
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/// getSectionForFunction - Return the section that we should emit the
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/// specified function body into.
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virtual std::string getSectionForFunction(const Function &F) const;
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};
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/// DarwinAsmPrinter - PowerPC assembly printer, customized for Darwin/Mac OS
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/// X
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struct VISIBILITY_HIDDEN DarwinAsmPrinter : public PPCAsmPrinter {
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@ -491,7 +520,194 @@ void PPCAsmPrinter::printMachineInstruction(const MachineInstr *MI) {
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return;
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}
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/// runOnMachineFunction - This uses the printMachineInstruction()
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/// method to print assembly for each instruction.
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///
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bool LinuxAsmPrinter::runOnMachineFunction(MachineFunction &MF) {
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DW.SetDebugInfo(&getAnalysis<MachineDebugInfo>());
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SetupMachineFunction(MF);
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O << "\n\n";
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// Print out constants referenced by the function
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EmitConstantPool(MF.getConstantPool());
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// Print out labels for the function.
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const Function *F = MF.getFunction();
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SwitchToTextSection(getSectionForFunction(*F).c_str(), F);
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switch (F->getLinkage()) {
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default: assert(0 && "Unknown linkage type!");
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case Function::InternalLinkage: // Symbols default to internal.
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break;
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case Function::ExternalLinkage:
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O << "\t.global\t" << CurrentFnName << '\n'
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<< "\t.type\t" << CurrentFnName << ", @function\n";
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break;
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case Function::WeakLinkage:
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case Function::LinkOnceLinkage:
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O << "\t.global\t" << CurrentFnName << '\n';
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O << "\t.weak\t" << CurrentFnName << '\n';
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break;
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}
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EmitAlignment(2, F);
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O << CurrentFnName << ":\n";
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// Emit pre-function debug information.
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DW.BeginFunction(&MF);
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// Print out code for the function.
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for (MachineFunction::const_iterator I = MF.begin(), E = MF.end();
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I != E; ++I) {
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// Print a label for the basic block.
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if (I != MF.begin()) {
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printBasicBlockLabel(I, true);
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O << '\n';
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}
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for (MachineBasicBlock::const_iterator II = I->begin(), E = I->end();
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II != E; ++II) {
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// Print the assembly for the instruction.
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O << "\t";
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printMachineInstruction(II);
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}
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}
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O << "\t.size\t" << CurrentFnName << ",.-" << CurrentFnName << "\n";
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// Print out jump tables referenced by the function.
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EmitJumpTableInfo(MF.getJumpTableInfo(), MF);
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// Emit post-function debug information.
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DW.EndFunction();
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// We didn't modify anything.
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return false;
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}
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bool LinuxAsmPrinter::doInitialization(Module &M) {
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AsmPrinter::doInitialization(M);
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// GNU as handles section names wrapped in quotes
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Mang->setUseQuotes(true);
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SwitchToTextSection(TAI->getTextSection());
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// Emit initial debug information.
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DW.BeginModule(&M);
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return false;
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}
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bool LinuxAsmPrinter::doFinalization(Module &M) {
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const TargetData *TD = TM.getTargetData();
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// Print out module-level global variables here.
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for (Module::const_global_iterator I = M.global_begin(), E = M.global_end();
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I != E; ++I) {
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if (!I->hasInitializer()) continue; // External global require no code
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// Check to see if this is a special global used by LLVM, if so, emit it.
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if (EmitSpecialLLVMGlobal(I))
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continue;
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std::string name = Mang->getValueName(I);
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Constant *C = I->getInitializer();
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unsigned Size = TD->getTypeSize(C->getType());
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unsigned Align = TD->getPreferredAlignmentLog(I);
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if (C->isNullValue() && /* FIXME: Verify correct */
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(I->hasInternalLinkage() || I->hasWeakLinkage() ||
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I->hasLinkOnceLinkage() ||
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(I->hasExternalLinkage() && !I->hasSection()))) {
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if (Size == 0) Size = 1; // .comm Foo, 0 is undefined, avoid it.
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if (I->hasExternalLinkage()) {
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O << "\t.global " << name << '\n';
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O << "\t.type " << name << ", @object\n";
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//O << "\t.zerofill __DATA, __common, " << name << ", "
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// << Size << ", " << Align;
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} else if (I->hasInternalLinkage()) {
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SwitchToDataSection("\t.data", I);
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O << TAI->getLCOMMDirective() << name << "," << Size;
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} else {
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SwitchToDataSection("\t.data", I);
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O << ".comm " << name << "," << Size;
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}
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O << "\t\t" << TAI->getCommentString() << " '" << I->getName() << "'\n";
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} else {
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switch (I->getLinkage()) {
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case GlobalValue::LinkOnceLinkage:
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case GlobalValue::WeakLinkage:
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O << "\t.global " << name << '\n'
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<< "\t.type " << name << ", @object\n"
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<< "\t.weak " << name << '\n';
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SwitchToDataSection("\t.data", I);
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break;
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case GlobalValue::AppendingLinkage:
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// FIXME: appending linkage variables should go into a section of
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// their name or something. For now, just emit them as external.
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case GlobalValue::ExternalLinkage:
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// If external or appending, declare as a global symbol
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O << "\t.global " << name << "\n"
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<< "\t.type " << name << ", @object\n";
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// FALL THROUGH
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case GlobalValue::InternalLinkage:
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if (I->isConstant()) {
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const ConstantArray *CVA = dyn_cast<ConstantArray>(C);
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if (TAI->getCStringSection() && CVA && CVA->isCString()) {
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SwitchToDataSection(TAI->getCStringSection(), I);
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break;
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}
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}
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// FIXME: special handling for ".ctors" & ".dtors" sections
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if (I->hasSection() &&
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(I->getSection() == ".ctors" ||
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I->getSection() == ".dtors")) {
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std::string SectionName = ".section " + I->getSection()
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+ ",\"aw\",@progbits";
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SwitchToDataSection(SectionName.c_str());
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} else {
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SwitchToDataSection(TAI->getDataSection(), I);
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}
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break;
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default:
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cerr << "Unknown linkage type!";
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abort();
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}
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EmitAlignment(Align, I);
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O << name << ":\t\t\t\t" << TAI->getCommentString() << " '"
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<< I->getName() << "'\n";
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// If the initializer is a extern weak symbol, remember to emit the weak
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// reference!
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if (const GlobalValue *GV = dyn_cast<GlobalValue>(C))
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if (GV->hasExternalWeakLinkage())
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ExtWeakSymbols.insert(GV);
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EmitGlobalConstant(C);
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O << '\n';
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}
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}
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// TODO
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// Emit initial debug information.
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DW.EndModule();
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AsmPrinter::doFinalization(M);
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return false; // success
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}
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std::string LinuxAsmPrinter::getSectionForFunction(const Function &F) const {
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switch (F.getLinkage()) {
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default: assert(0 && "Unknown linkage type!");
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case Function::ExternalLinkage:
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case Function::InternalLinkage: return TAI->getTextSection();
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case Function::WeakLinkage:
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case Function::LinkOnceLinkage:
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return ".text";
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}
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}
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std::string DarwinAsmPrinter::getSectionForFunction(const Function &F) const {
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switch (F.getLinkage()) {
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@ -786,6 +1002,12 @@ bool DarwinAsmPrinter::doFinalization(Module &M) {
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///
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FunctionPass *llvm::createPPCAsmPrinterPass(std::ostream &o,
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PPCTargetMachine &tm) {
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return new DarwinAsmPrinter(o, tm, tm.getTargetAsmInfo());
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const PPCSubtarget *Subtarget = &tm.getSubtarget<PPCSubtarget>();
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if (Subtarget->isDarwin()) {
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return new DarwinAsmPrinter(o, tm, tm.getTargetAsmInfo());
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} else {
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return new LinuxAsmPrinter(o, tm, tm.getTargetAsmInfo());
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}
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}
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@ -209,9 +209,9 @@ def VRSAVE: SPR<256, "VRsave">, DwarfRegNum<107>;
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// Allocate volatiles first
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// then nonvolatiles in reverse order since stmw/lmw save from rN to r31
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def GPRC : RegisterClass<"PPC", [i32], 32,
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[R2, R3, R4, R5, R6, R7, R8, R9, R10, R11, R12,
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[R3, R4, R5, R6, R7, R8, R9, R10, R11, R12,
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R30, R29, R28, R27, R26, R25, R24, R23, R22, R21, R20, R19, R18, R17,
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R16, R15, R14, R13, R31, R0, R1, LR]>
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R16, R15, R14, R2, R13, R31, R0, R1, LR]>
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{
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let MethodProtos = [{
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iterator allocation_order_begin(const MachineFunction &MF) const;
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@ -224,6 +224,10 @@ def GPRC : RegisterClass<"PPC", [i32], 32,
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}
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GPRCClass::iterator
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GPRCClass::allocation_order_end(const MachineFunction &MF) const {
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// In Linux, r2 is reserved for the OS.
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if (!MF.getTarget().getSubtarget<PPCSubtarget>().isDarwin())
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return end()-6;
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// On PPC64, r13 is the thread pointer. Never allocate this register.
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// Note that this is overconservative, as it also prevents allocation of
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// R31 when the FP is not needed.
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@ -16,24 +16,14 @@
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#include "llvm/Function.h"
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using namespace llvm;
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DarwinTargetAsmInfo::DarwinTargetAsmInfo(const PPCTargetMachine &TM) {
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PPCTargetAsmInfo::PPCTargetAsmInfo(const PPCTargetMachine &TM) {
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bool isPPC64 = TM.getSubtargetImpl()->isPPC64();
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CommentString = ";";
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GlobalPrefix = "_";
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PrivateGlobalPrefix = "L";
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ZeroDirective = "\t.space\t";
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SetDirective = "\t.set";
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Data64bitsDirective = isPPC64 ? "\t.quad\t" : 0;
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AlignmentIsInBytes = false;
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ConstantPoolSection = "\t.const\t";
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JumpTableDataSection = ".const";
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CStringSection = "\t.cstring";
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LCOMMDirective = "\t.lcomm\t";
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StaticCtorsSection = ".mod_init_func";
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StaticDtorsSection = ".mod_term_func";
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UsedDirective = "\t.no_dead_strip\t";
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WeakRefDirective = "\t.weak_reference\t";
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InlineAsmStart = "# InlineAsm Start";
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InlineAsmEnd = "# InlineAsm End";
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@ -52,3 +42,32 @@ DarwinTargetAsmInfo::DarwinTargetAsmInfo(const PPCTargetMachine &TM) {
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DwarfMacInfoSection = ".section __DWARF,__debug_macinfo,regular,debug";
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}
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DarwinTargetAsmInfo::DarwinTargetAsmInfo(const PPCTargetMachine &TM)
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: PPCTargetAsmInfo(TM)
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{
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CommentString = ";";
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GlobalPrefix = "_";
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PrivateGlobalPrefix = "L";
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ConstantPoolSection = "\t.const\t";
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JumpTableDataSection = ".const";
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CStringSection = "\t.cstring";
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StaticCtorsSection = ".mod_init_func";
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StaticDtorsSection = ".mod_term_func";
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UsedDirective = "\t.no_dead_strip\t";
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WeakRefDirective = "\t.weak_reference\t";
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}
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LinuxTargetAsmInfo::LinuxTargetAsmInfo(const PPCTargetMachine &TM)
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: PPCTargetAsmInfo(TM)
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{
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CommentString = "#";
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GlobalPrefix = "";
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PrivateGlobalPrefix = "";
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ConstantPoolSection = "\t.section .rodata.cst4\t";
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JumpTableDataSection = ".section .rodata.cst4";
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CStringSection = "\t.section\t.rodata";
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StaticCtorsSection = ".section\t.ctors,\"aw\",@progbits";
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StaticDtorsSection = ".section\t.dtors,\"aw\",@progbits";
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UsedDirective = "\t# .no_dead_strip\t";
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WeakRefDirective = "\t.weak\t";
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}
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@ -20,11 +20,19 @@ namespace llvm {
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// Forward declaration.
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class PPCTargetMachine;
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struct PPCTargetAsmInfo : public TargetAsmInfo {
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PPCTargetAsmInfo(const PPCTargetMachine &TM);
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};
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struct DarwinTargetAsmInfo : public TargetAsmInfo {
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struct DarwinTargetAsmInfo : public PPCTargetAsmInfo {
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DarwinTargetAsmInfo(const PPCTargetMachine &TM);
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};
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struct LinuxTargetAsmInfo : public PPCTargetAsmInfo {
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LinuxTargetAsmInfo(const PPCTargetMachine &TM);
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};
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} // namespace llvm
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#endif
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@ -28,7 +28,10 @@ namespace {
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}
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const TargetAsmInfo *PPCTargetMachine::createTargetAsmInfo() const {
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return new DarwinTargetAsmInfo(*this);
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if (Subtarget.isDarwin())
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return new DarwinTargetAsmInfo(*this);
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else
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return new LinuxTargetAsmInfo(*this);
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}
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unsigned PPC32TargetMachine::getJITMatchQuality() {
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@ -90,7 +93,7 @@ PPCTargetMachine::PPCTargetMachine(const Module &M, const std::string &FS,
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if (Subtarget.isDarwin())
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setRelocationModel(Reloc::DynamicNoPIC);
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else
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setRelocationModel(Reloc::PIC_);
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setRelocationModel(Reloc::Static);
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}
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PPC32TargetMachine::PPC32TargetMachine(const Module &M, const std::string &FS)
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