//===-- PPCFrameInfo.h - Define TargetFrameInfo for PowerPC -----*- C++ -*-===// // // The LLVM Compiler Infrastructure // // This file is distributed under the University of Illinois Open Source // License. See LICENSE.TXT for details. // //===----------------------------------------------------------------------===// // // //===----------------------------------------------------------------------===// #ifndef POWERPC_FRAMEINFO_H #define POWERPC_FRAMEINFO_H #include "PPC.h" #include "PPCSubtarget.h" #include "llvm/Target/TargetFrameInfo.h" #include "llvm/Target/TargetMachine.h" #include "llvm/ADT/STLExtras.h" namespace llvm { class PPCFrameInfo: public TargetFrameInfo { const TargetMachine &TM; public: PPCFrameInfo(const TargetMachine &tm, bool LP64) : TargetFrameInfo(TargetFrameInfo::StackGrowsDown, 16, 0), TM(tm) { } /// getReturnSaveOffset - Return the previous frame offset to save the /// return address. static unsigned getReturnSaveOffset(bool LP64, bool isDarwinABI) { if (isDarwinABI) return LP64 ? 16 : 8; // SVR4 ABI: return 4; } /// getFramePointerSaveOffset - Return the previous frame offset to save the /// frame pointer. static unsigned getFramePointerSaveOffset(bool LP64, bool isDarwinABI) { // For the Darwin ABI: // Use the TOC save slot in the PowerPC linkage area for saving the frame // pointer (if needed.) LLVM does not generate code that uses the TOC (R2 // is treated as a caller saved register.) if (isDarwinABI) return LP64 ? 40 : 20; // SVR4 ABI: // Save it right before the link register return -4U; } /// getLinkageSize - Return the size of the PowerPC ABI linkage area. /// static unsigned getLinkageSize(bool LP64, bool isDarwinABI) { if (isDarwinABI) return 6 * (LP64 ? 8 : 4); // SVR4 ABI: return 8; } /// getMinCallArgumentsSize - Return the size of the minium PowerPC ABI /// argument area. static unsigned getMinCallArgumentsSize(bool LP64, bool isDarwinABI) { // For the Darwin ABI: // The prolog code of the callee may store up to 8 GPR argument registers to // the stack, allowing va_start to index over them in memory if its varargs. // Because we cannot tell if this is needed on the caller side, we have to // conservatively assume that it is needed. As such, make sure we have at // least enough stack space for the caller to store the 8 GPRs. if (isDarwinABI) return 8 * (LP64 ? 8 : 4); // SVR4 ABI: // There is no default stack allocated for the 8 first GPR arguments. return 0; } /// getMinCallFrameSize - Return the minimum size a call frame can be using /// the PowerPC ABI. static unsigned getMinCallFrameSize(bool LP64, bool isDarwinABI) { // The call frame needs to be at least big enough for linkage and 8 args. return getLinkageSize(LP64, isDarwinABI) + getMinCallArgumentsSize(LP64, isDarwinABI); } // With the SVR4 ABI, callee-saved registers have fixed offsets on the stack. const std::pair * getCalleeSavedSpillSlots(unsigned &NumEntries) const { // Early exit if not using the SVR4 ABI. if (!TM.getSubtarget().isSVR4ABI()) { NumEntries = 0; return 0; } static const std::pair Offsets[] = { // Floating-point register save area offsets. std::pair(PPC::F31, -8), std::pair(PPC::F30, -16), std::pair(PPC::F29, -24), std::pair(PPC::F28, -32), std::pair(PPC::F27, -40), std::pair(PPC::F26, -48), std::pair(PPC::F25, -56), std::pair(PPC::F24, -64), std::pair(PPC::F23, -72), std::pair(PPC::F22, -80), std::pair(PPC::F21, -88), std::pair(PPC::F20, -96), std::pair(PPC::F19, -104), std::pair(PPC::F18, -112), std::pair(PPC::F17, -120), std::pair(PPC::F16, -128), std::pair(PPC::F15, -136), std::pair(PPC::F14, -144), // General register save area offsets. std::pair(PPC::R31, -4), std::pair(PPC::R30, -8), std::pair(PPC::R29, -12), std::pair(PPC::R28, -16), std::pair(PPC::R27, -20), std::pair(PPC::R26, -24), std::pair(PPC::R25, -28), std::pair(PPC::R24, -32), std::pair(PPC::R23, -36), std::pair(PPC::R22, -40), std::pair(PPC::R21, -44), std::pair(PPC::R20, -48), std::pair(PPC::R19, -52), std::pair(PPC::R18, -56), std::pair(PPC::R17, -60), std::pair(PPC::R16, -64), std::pair(PPC::R15, -68), std::pair(PPC::R14, -72), // CR save area offset. // FIXME SVR4: Disable CR save area for now. // std::pair(PPC::CR2, -4), // std::pair(PPC::CR3, -4), // std::pair(PPC::CR4, -4), // std::pair(PPC::CR2LT, -4), // std::pair(PPC::CR2GT, -4), // std::pair(PPC::CR2EQ, -4), // std::pair(PPC::CR2UN, -4), // std::pair(PPC::CR3LT, -4), // std::pair(PPC::CR3GT, -4), // std::pair(PPC::CR3EQ, -4), // std::pair(PPC::CR3UN, -4), // std::pair(PPC::CR4LT, -4), // std::pair(PPC::CR4GT, -4), // std::pair(PPC::CR4EQ, -4), // std::pair(PPC::CR4UN, -4), // VRSAVE save area offset. std::pair(PPC::VRSAVE, -4), // Vector register save area std::pair(PPC::V31, -16), std::pair(PPC::V30, -32), std::pair(PPC::V29, -48), std::pair(PPC::V28, -64), std::pair(PPC::V27, -80), std::pair(PPC::V26, -96), std::pair(PPC::V25, -112), std::pair(PPC::V24, -128), std::pair(PPC::V23, -144), std::pair(PPC::V22, -160), std::pair(PPC::V21, -176), std::pair(PPC::V20, -192) }; NumEntries = array_lengthof(Offsets); return Offsets; } }; } // End llvm namespace #endif