//////////////////////////////////////////////////////////////////// // // Base class for sparc instructions, and some support functions // output header {{ struct condCodes { uint8_t c:1; uint8_t v:1; uint8_t z:1; uint8_t n:1; }; enum condTest { Always=0x8, Never=0x0, NotEqual=0x9, Equal=0x1, Greater=0xA, LessOrEqual=0x2, GreaterOrEqual=0xB, Less=0x3, GreaterUnsigned=0xC, LessOrEqualUnsigned=0x4, CarryClear=0xD, CarrySet=0x5, Positive=0xE, Negative=0x6, OverflowClear=0xF, OverflowSet=0x7 }; /** * Base class for all SPARC static instructions. */ class SparcStaticInst : public StaticInst { protected: // Constructor. SparcStaticInst(const char *mnem, MachInst _machInst, OpClass __opClass) : StaticInst(mnem, _machInst, __opClass) { } std::string generateDisassembly(Addr pc, const SymbolTable *symtab) const; }; bool passesCondition(condCodes codes, condTest condition); }}; output decoder {{ std::string SparcStaticInst::generateDisassembly(Addr pc, const SymbolTable *symtab) const { std::stringstream ss; ccprintf(ss, "%-10s ", mnemonic); // just print the first two source regs... if there's // a third one, it's a read-modify-write dest (Rc), // e.g. for CMOVxx if(_numSrcRegs > 0) { printReg(ss, _srcRegIdx[0]); } if(_numSrcRegs > 1) { ss << ","; printReg(ss, _srcRegIdx[1]); } // just print the first dest... if there's a second one, // it's generally implicit if(_numDestRegs > 0) { if(_numSrcRegs > 0) ss << ","; printReg(ss, _destRegIdx[0]); } return ss.str(); } bool passesCondition(condCodes codes, condTest condition) { switch(condition) { case Always: return true; case Never: return false; case NotEqual: return !codes.z; case Equal: return codes.z; case Greater: return !(codes.z | (codes.n ^ codes.v)); case LessOrEqual: return codes.z | (codes.n ^ codes.v); case GreaterOrEqual: return !(codes.n ^ codes.v); case Less: return (codes.n ^ codes.v); case GreaterUnsigned: return !(codes.c | codes.z); case LessOrEqualUnsigned: return (codes.c | codes.z); case CarryClear: return !codes.c; case CarrySet: return codes.c; case Positive: return !codes.n; case Negative: return codes.n; case OverflowClear: return !codes.v; case OverflowSet: return codes.v; } } }};