Files
Xenia-Canary/src/xenia/cpu/ppc/ppc_opcode_table.cc

492 lines
74 KiB
C++

// This code was autogenerated by tools/ppc-table-gen.py. Do not modify!
// clang-format off
#include <cstdint>
#include "xenia/base/assert.h"
#include "xenia/cpu/ppc/ppc_opcode.h"
#include "xenia/cpu/ppc/ppc_opcode_info.h"
namespace xe {
namespace cpu {
namespace ppc {
#define INSTRUCTION(opcode, mnem, form, subform, group, type, desc) \
{opcode, mnem, PPCOpcodeFormat::form, PPCOpcodeGroup::group, PPCOpcodeType::type, desc, nullptr, nullptr}
PPCOpcodeInfo ppc_opcode_table[] = {
INSTRUCTION(0x7c000014, "addcx" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Add Carrying" ),
INSTRUCTION(0x7c000114, "addex" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Add Extended" ),
INSTRUCTION(0x38000000, "addi" , kD , D_A_SIMM , kI, kGeneral, "Add Immediate" ),
INSTRUCTION(0x30000000, "addic" , kD , D_A_SIMM , kI, kGeneral, "Add Immediate Carrying" ),
INSTRUCTION(0x34000000, "addicx" , kD , D_A_SIMM , kI, kGeneral, "Add Immediate Carrying and Record" ),
INSTRUCTION(0x3c000000, "addis" , kD , D_A_SIMM , kI, kGeneral, "Add Immediate Shifted" ),
INSTRUCTION(0x7c0001d4, "addmex" , kXO , D_A_0_OE_Rc , kI, kGeneral, "Add to Minus One Extended" ),
INSTRUCTION(0x7c000214, "addx" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Add" ),
INSTRUCTION(0x7c000194, "addzex" , kXO , D_A_0_OE_Rc , kI, kGeneral, "Add to Zero Extended" ),
INSTRUCTION(0x7c000078, "andcx" , kX , S_A_B_Rc , kI, kGeneral, "AND with Complement" ),
INSTRUCTION(0x74000000, "andisx" , kD , S_A_UIMM , kI, kGeneral, "AND Immediate Shifted" ),
INSTRUCTION(0x70000000, "andix" , kD , S_A_UIMM , kI, kGeneral, "AND Immediate" ),
INSTRUCTION(0x7c000038, "andx" , kX , S_A_B_Rc , kI, kGeneral, "AND" ),
INSTRUCTION(0x4c000420, "bcctrx" , kXL , BO_BI_0_LK , kI, kSync , "Branch Conditional to Count Register" ),
INSTRUCTION(0x4c000020, "bclrx" , kXL , BO_BI_0_LK , kI, kSync , "Branch Conditional to Link Register" ),
INSTRUCTION(0x40000000, "bcx" , kB , BO_BI_BD_AA_LK , kI, kSync , "Branch Conditional" ),
INSTRUCTION(0x48000000, "bx" , kI , LI_AA_LK , kI, kSync , "Branch" ),
INSTRUCTION(0x7c000000, "cmp" , kX , crfD_L_A_B , kI, kGeneral, "Compare" ),
INSTRUCTION(0x2c000000, "cmpi" , kD , crfD_L_A_SIMM , kI, kGeneral, "Compare Immediate" ),
INSTRUCTION(0x7c000040, "cmpl" , kX , crfD_L_A_B , kI, kGeneral, "Compare Logical" ),
INSTRUCTION(0x28000000, "cmpli" , kD , crfD_L_A_UIMM , kI, kGeneral, "Compare Logical Immediate" ),
INSTRUCTION(0x7c000074, "cntlzdx" , kX , S_A_0_Rc , kI, kGeneral, "Count Leading Zeros Doubleword" ),
INSTRUCTION(0x7c000034, "cntlzwx" , kX , S_A_0_Rc , kI, kGeneral, "Count Leading Zeros Word" ),
INSTRUCTION(0x4c000202, "crand" , kXL , crbD_crbA_crbB , kI, kGeneral, "Condition Register AND" ),
INSTRUCTION(0x4c000102, "crandc" , kXL , crbD_crbA_crbB , kI, kGeneral, "Condition Register AND with Complement" ),
INSTRUCTION(0x4c000242, "creqv" , kXL , crbD_crbA_crbB , kI, kGeneral, "Condition Register Equivalent" ),
INSTRUCTION(0x4c0001c2, "crnand" , kXL , crbD_crbA_crbB , kI, kGeneral, "Condition Register NAND" ),
INSTRUCTION(0x4c000042, "crnor" , kXL , crbD_crbA_crbB , kI, kGeneral, "Condition Register NOR" ),
INSTRUCTION(0x4c000382, "cror" , kXL , crbD_crbA_crbB , kI, kGeneral, "Condition Register OR" ),
INSTRUCTION(0x4c000342, "crorc" , kXL , crbD_crbA_crbB , kI, kGeneral, "Condition Register OR with Complement" ),
INSTRUCTION(0x4c000182, "crxor" , kXL , crbD_crbA_crbB , kI, kGeneral, "Condition Register XOR" ),
INSTRUCTION(0x7c0005ec, "dcba" , kX , _0_A_B , kI, kGeneral, "Data Cache Block Allocate" ),
INSTRUCTION(0x7c0000ac, "dcbf" , kX , _0_A_B , kI, kGeneral, "Data Cache Block Flush" ),
INSTRUCTION(0x7c0003ac, "dcbi" , kX , _0_A_B , kI, kGeneral, "Data Cache Block Invalidate" ),
INSTRUCTION(0x7c00006c, "dcbst" , kX , _0_A_B , kI, kGeneral, "Data Cache Block Store" ),
INSTRUCTION(0x7c00022c, "dcbt" , kX , _0_A_B , kI, kGeneral, "Data Cache Block Touch" ),
INSTRUCTION(0x7c0001ec, "dcbtst" , kX , _0_A_B , kI, kGeneral, "Data Cache Block Touch for Store" ),
INSTRUCTION(0x7c0007ec, "dcbz" , kDCBZ , _0_A_B , kI, kGeneral, "Data Cache Block Clear to Zero" ),
INSTRUCTION(0x7c2007ec, "dcbz128" , kDCBZ , _0_A_B , kI, kGeneral, "Data Cache Block Clear to Zero 128" ),
INSTRUCTION(0x7c000392, "divdux" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Divide Doubleword Unsigned" ),
INSTRUCTION(0x7c0003d2, "divdx" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Divide Doubleword" ),
INSTRUCTION(0x7c000396, "divwux" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Divide Word Unsigned" ),
INSTRUCTION(0x7c0003d6, "divwx" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Divide Word" ),
INSTRUCTION(0x7c00026c, "eciwx" , kX , D_A_B , kI, kGeneral, "External Control In Word Indexed" ),
INSTRUCTION(0x7c00036c, "ecowx" , kX , S_A_B , kI, kGeneral, "External Control Out Word Indexed" ),
INSTRUCTION(0x7c0006ac, "eieio" , kX , _0_0_0 , kI, kGeneral, "Enforce In-Order Execution of I/O" ),
INSTRUCTION(0x7c000238, "eqvx" , kX , S_A_B_Rc , kI, kGeneral, "Equivalent" ),
INSTRUCTION(0x7c000774, "extsbx" , kX , S_A_0_Rc , kI, kGeneral, "Extend Sign Byte" ),
INSTRUCTION(0x7c000734, "extshx" , kX , S_A_0_Rc , kI, kGeneral, "Extend Sign Half Word" ),
INSTRUCTION(0x7c0007b4, "extswx" , kX , S_A_0_Rc , kI, kGeneral, "Extend Sign Word" ),
INSTRUCTION(0xfc000210, "fabsx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Absolute Value" ),
INSTRUCTION(0xec00002a, "faddsx" , kA , D_A_B_0_Rc , kF, kGeneral, "Floating Add Single" ),
INSTRUCTION(0xfc00002a, "faddx" , kA , D_A_B_0_Rc , kF, kGeneral, "Floating Add" ),
INSTRUCTION(0xfc00069c, "fcfidx" , kX , D_A_B_Rc , kF, kGeneral, "Floating Convert From Integer Doubleword" ),
INSTRUCTION(0xfc000040, "fcmpo" , kX , crfD_A_B , kF, kGeneral, "Floating Compare Ordered" ),
INSTRUCTION(0xfc000000, "fcmpu" , kX , crfD_A_B , kF, kGeneral, "Floating Compare Unordered" ),
INSTRUCTION(0xfc00065c, "fctidx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Convert to Integer Doubleword" ),
INSTRUCTION(0xfc00065e, "fctidzx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Convert to Integer Doubleword with Round Toward Zero" ),
INSTRUCTION(0xfc00001c, "fctiwx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Convert to Integer Word" ),
INSTRUCTION(0xfc00001e, "fctiwzx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Convert to Integer Word with Round Toward Zero" ),
INSTRUCTION(0xec000024, "fdivsx" , kA , D_A_B_0_Rc , kF, kGeneral, "Floating Divide Single" ),
INSTRUCTION(0xfc000024, "fdivx" , kA , D_A_B_0_Rc , kF, kGeneral, "Floating Divide" ),
INSTRUCTION(0xec00003a, "fmaddsx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Multiply-Add Single" ),
INSTRUCTION(0xfc00003a, "fmaddx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Multiply-Add" ),
INSTRUCTION(0xfc000090, "fmrx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Move Register" ),
INSTRUCTION(0xec000038, "fmsubsx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Multiply-Subtract Single" ),
INSTRUCTION(0xfc000038, "fmsubx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Multiply-Subtract" ),
INSTRUCTION(0xec000032, "fmulsx" , kA , D_A_0_C_Rc , kF, kGeneral, "Floating Multiply Single" ),
INSTRUCTION(0xfc000032, "fmulx" , kA , D_A_0_C_Rc , kF, kGeneral, "Floating Multiply" ),
INSTRUCTION(0xfc000110, "fnabsx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Negative Absolute Value" ),
INSTRUCTION(0xfc000050, "fnegx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Negate" ),
INSTRUCTION(0xec00003e, "fnmaddsx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Negative Multiply-Add Single" ),
INSTRUCTION(0xfc00003e, "fnmaddx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Negative Multiply-Add" ),
INSTRUCTION(0xec00003c, "fnmsubsx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Negative Multiply-Subtract Single" ),
INSTRUCTION(0xfc00003c, "fnmsubx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Negative Multiply-Subtract" ),
INSTRUCTION(0xec000030, "fresx" , kA , D_0_B_0_Rc , kF, kGeneral, "Floating Reciprocal Estimate Single" ),
INSTRUCTION(0xfc000018, "frspx" , kX , D_0_B_Rc , kF, kGeneral, "Floating Round to Single" ),
INSTRUCTION(0xfc000034, "frsqrtex" , kA , D_0_B_0_Rc , kF, kGeneral, "Floating Reciprocal Square Root Estimate" ),
INSTRUCTION(0xfc00002e, "fselx" , kA , D_A_B_C_Rc , kF, kGeneral, "Floating Select" ),
INSTRUCTION(0xec00002c, "fsqrtsx" , kA , D_0_B_0_Rc , kF, kGeneral, "Floating Square Root Single" ),
INSTRUCTION(0xfc00002c, "fsqrtx" , kA , D_0_B_0_Rc , kF, kGeneral, "Floating Square Root" ),
INSTRUCTION(0xec000028, "fsubsx" , kA , D_A_B_0_Rc , kF, kGeneral, "Floating Subtract Single" ),
INSTRUCTION(0xfc000028, "fsubx" , kA , D_A_B_0_Rc , kF, kGeneral, "Floating Subtract" ),
INSTRUCTION(0x7c0007ac, "icbi" , kX , _0_A_B , kI, kGeneral, "Instruction Cache Block Invalidate" ),
INSTRUCTION(0x4c00012c, "isync" , kXL , _0_0_0 , kI, kGeneral, "Instruction Synchronize" ),
INSTRUCTION(0x88000000, "lbz" , kD , D_A_d , kI, kGeneral, "Load Byte and Zero" ),
INSTRUCTION(0x8c000000, "lbzu" , kD , D_A_d , kI, kGeneral, "Load Byte and Zero with Update" ),
INSTRUCTION(0x7c0000ee, "lbzux" , kX , D_A_B , kI, kGeneral, "Load Byte and Zero with Update Indexed" ),
INSTRUCTION(0x7c0000ae, "lbzx" , kX , D_A_B , kI, kGeneral, "Load Byte and Zero Indexed" ),
INSTRUCTION(0xe8000000, "ld" , kDS , D_A_d , kI, kGeneral, "Load Doubleword" ),
INSTRUCTION(0x7c0000a8, "ldarx" , kX , D_A_B , kI, kGeneral, "Load Doubleword and Reserve Indexed" ),
INSTRUCTION(0x7c000428, "ldbrx" , kX , D_A_B , kI, kGeneral, "Load Doubleword Byte-Reverse Indexed" ),
INSTRUCTION(0xe8000001, "ldu" , kDS , D_A_d , kI, kGeneral, "Load Doubleword with Update" ),
INSTRUCTION(0x7c00006a, "ldux" , kX , D_A_B , kI, kGeneral, "Load Doubleword with Update Indexed" ),
INSTRUCTION(0x7c00002a, "ldx" , kX , D_A_B , kI, kGeneral, "Load Doubleword Indexed" ),
INSTRUCTION(0xc8000000, "lfd" , kD , D_A_d , kF, kGeneral, "Load Floating-Point Double" ),
INSTRUCTION(0xcc000000, "lfdu" , kD , D_A_d , kF, kGeneral, "Load Floating-Point Double with Update" ),
INSTRUCTION(0x7c0004ee, "lfdux" , kX , D_A_B , kF, kGeneral, "Load Floating-Point Double with Update Indexed" ),
INSTRUCTION(0x7c0004ae, "lfdx" , kX , D_A_B , kF, kGeneral, "Load Floating-Point Double Indexed" ),
INSTRUCTION(0xc0000000, "lfs" , kD , D_A_d , kF, kGeneral, "Load Floating-Point Single" ),
INSTRUCTION(0xc4000000, "lfsu" , kD , D_A_d , kF, kGeneral, "Load Floating-Point Single with Update" ),
INSTRUCTION(0x7c00046e, "lfsux" , kX , D_A_B , kF, kGeneral, "Load Floating-Point Single with Update Indexed" ),
INSTRUCTION(0x7c00042e, "lfsx" , kX , D_A_B , kF, kGeneral, "Load Floating-Point Single Indexed" ),
INSTRUCTION(0xa8000000, "lha" , kD , D_A_d , kI, kGeneral, "Load Half Word Algebraic" ),
INSTRUCTION(0xac000000, "lhau" , kD , D_A_d , kI, kGeneral, "Load Half Word Algebraic with Update" ),
INSTRUCTION(0x7c0002ee, "lhaux" , kX , D_A_B , kI, kGeneral, "Load Half Word Algebraic with Update Indexed" ),
INSTRUCTION(0x7c0002ae, "lhax" , kX , D_A_B , kI, kGeneral, "Load Half Word Algebraic Indexed" ),
INSTRUCTION(0x7c00062c, "lhbrx" , kX , D_A_B , kI, kGeneral, "Load Half Word Byte-Reverse Indexed" ),
INSTRUCTION(0xa0000000, "lhz" , kD , D_A_d , kI, kGeneral, "Load Half Word and Zero" ),
INSTRUCTION(0xa4000000, "lhzu" , kD , D_A_d , kI, kGeneral, "Load Half Word and Zero with Update" ),
INSTRUCTION(0x7c00026e, "lhzux" , kX , D_A_B , kI, kGeneral, "Load Half Word and Zero with Update Indexed" ),
INSTRUCTION(0x7c00022e, "lhzx" , kX , D_A_B , kI, kGeneral, "Load Half Word and Zero Indexed" ),
INSTRUCTION(0xb8000000, "lmw" , kD , D_A_d , kI, kGeneral, "Load Multiple Word" ),
INSTRUCTION(0x7c0004aa, "lswi" , kX , D_A_NB , kI, kGeneral, "Load String Word Immediate" ),
INSTRUCTION(0x7c00042a, "lswx" , kX , D_A_B , kI, kGeneral, "Load String Word Indexed" ),
INSTRUCTION(0x7c00000e, "lvebx" , kX , D_A_B , kV, kGeneral, "Load Vector Element Byte Indexed" ),
INSTRUCTION(0x7c00004e, "lvehx" , kX , D_A_B , kV, kGeneral, "Load Vector Element Half Word Indexed" ),
INSTRUCTION(0x7c00008e, "lvewx" , kX , D_A_B , kV, kGeneral, "Load Vector Element Word Indexed" ),
INSTRUCTION(0x10000083, "lvewx128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector Element Word Indexed 128" ),
INSTRUCTION(0x7c00040e, "lvlx" , kX , D_A_B , kV, kGeneral, "Load Vector Left Indexed" ),
INSTRUCTION(0x10000403, "lvlx128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector Left Indexed 128" ),
INSTRUCTION(0x7c00060e, "lvlxl" , kX , D_A_B , kV, kGeneral, "Load Vector Left Indexed LRU" ),
INSTRUCTION(0x10000603, "lvlxl128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector Left Indexed LRU 128" ),
INSTRUCTION(0x7c00044e, "lvrx" , kX , D_A_B , kV, kGeneral, "Load Vector Right Indexed" ),
INSTRUCTION(0x10000443, "lvrx128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector Right Indexed 128" ),
INSTRUCTION(0x7c00064e, "lvrxl" , kX , D_A_B , kV, kGeneral, "Load Vector Right Indexed LRU" ),
INSTRUCTION(0x10000643, "lvrxl128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector Right Indexed LRU 128" ),
INSTRUCTION(0x7c00000c, "lvsl" , kX , D_A_B , kV, kGeneral, "Load Vector for Shift Left Indexed" ),
INSTRUCTION(0x10000003, "lvsl128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector for Shift Left Indexed 128" ),
INSTRUCTION(0x7c00004c, "lvsr" , kX , D_A_B , kV, kGeneral, "Load Vector for Shift Right Indexed" ),
INSTRUCTION(0x10000043, "lvsr128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector for Shift Right Indexed 128" ),
INSTRUCTION(0x7c0000ce, "lvx" , kX , D_A_B , kV, kGeneral, "Load Vector Indexed" ),
INSTRUCTION(0x100000c3, "lvx128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector Indexed 128" ),
INSTRUCTION(0x7c0002ce, "lvxl" , kX , D_A_B , kV, kGeneral, "Load Vector Indexed LRU" ),
INSTRUCTION(0x100002c3, "lvxl128" , kVX128_1, D_A_B , kV, kGeneral, "Load Vector Indexed LRU 128" ),
INSTRUCTION(0xe8000002, "lwa" , kDS , D_A_d , kI, kGeneral, "Load Word Algebraic" ),
INSTRUCTION(0x7c000028, "lwarx" , kX , D_A_B , kI, kGeneral, "Load Word and Reserve Indexed" ),
INSTRUCTION(0x7c0002ea, "lwaux" , kX , D_A_B , kI, kGeneral, "Load Word Algebraic with Update Indexed" ),
INSTRUCTION(0x7c0002aa, "lwax" , kX , D_A_B , kI, kGeneral, "Load Word Algebraic Indexed" ),
INSTRUCTION(0x7c00042c, "lwbrx" , kX , D_A_B , kI, kGeneral, "Load Word Byte-Reverse Indexed" ),
INSTRUCTION(0x80000000, "lwz" , kD , D_A_d , kI, kGeneral, "Load Word and Zero" ),
INSTRUCTION(0x84000000, "lwzu" , kD , D_A_d , kI, kGeneral, "Load Word and Zero with Update" ),
INSTRUCTION(0x7c00006e, "lwzux" , kX , D_A_B , kI, kGeneral, "Load Word and Zero with Update Indexed" ),
INSTRUCTION(0x7c00002e, "lwzx" , kX , D_A_B , kI, kGeneral, "Load Word and Zero Indexed" ),
INSTRUCTION(0x4c000000, "mcrf" , kXL , crfD_crfS_0 , kI, kGeneral, "Move Condition Register Field" ),
INSTRUCTION(0xfc000080, "mcrfs" , kX , crfD_crfS_0 , kF, kGeneral, "Move to Condition Register from FPSCR" ),
INSTRUCTION(0x7c000400, "mcrxr" , kX , crfD_0_0 , kI, kGeneral, "Move to Condition Register from XER" ),
INSTRUCTION(0x7c000026, "mfcr" , kX , D_0_0 , kI, kGeneral, "Move from Condition Register" ),
INSTRUCTION(0xfc00048e, "mffsx" , kX , D_0_0_Rc , kF, kGeneral, "Move from FPSCR" ),
INSTRUCTION(0x7c0000a6, "mfmsr" , kX , D_0_0 , kI, kGeneral, "Move from Machine State Register" ),
INSTRUCTION(0x7c0002a6, "mfspr" , kXFX , D_spr , kI, kGeneral, "Move from Special-Purpose Register" ),
INSTRUCTION(0x7c0002e6, "mftb" , kXFX , D_tbr , kI, kGeneral, "Move from Time Base" ),
INSTRUCTION(0x10000604, "mfvscr" , kVX , D_0_0 , kI, kGeneral, "Move from VSCR" ),
INSTRUCTION(0x7c000120, "mtcrf" , kXFX , S_CRM , kI, kGeneral, "Move to Condition Register Fields" ),
INSTRUCTION(0xfc00008c, "mtfsb0x" , kX , crbD_0_0_Rc , kF, kGeneral, "Move to FPSCR Bit 0" ),
INSTRUCTION(0xfc00004c, "mtfsb1x" , kX , crbD_0_0_Rc , kF, kGeneral, "Move to FPSCR Bit 1" ),
INSTRUCTION(0xfc00010c, "mtfsfix" , kX , crfD_0_IMM_Rc , kF, kGeneral, "Move to FPSCR Field Immediate" ),
INSTRUCTION(0xfc00058e, "mtfsfx" , kXFL , FM_B_Rc , kF, kGeneral, "Move to FPSCR Fields" ),
INSTRUCTION(0x7c000124, "mtmsr" , kX , S_0_0 , kI, kGeneral, "Move to Machine State Register" ),
INSTRUCTION(0x7c000164, "mtmsrd" , kX , S_0_0 , kI, kGeneral, "Move to Machine State Register Doubleword" ),
INSTRUCTION(0x7c0003a6, "mtspr" , kXFX , S_spr , kI, kGeneral, "Move to Special-Purpose Register" ),
INSTRUCTION(0x10000644, "mtvscr" , kVX , S_0_0 , kI, kGeneral, "Move to VSCR" ),
INSTRUCTION(0x7c000012, "mulhdux" , kXO , D_A_B_Rc , kI, kGeneral, "Multiply High Doubleword Unsigned" ),
INSTRUCTION(0x7c000092, "mulhdx" , kXO , D_A_B_Rc , kI, kGeneral, "Multiply High Doubleword" ),
INSTRUCTION(0x7c000016, "mulhwux" , kXO , D_A_B_Rc , kI, kGeneral, "Multiply High Word Unsigned" ),
INSTRUCTION(0x7c000096, "mulhwx" , kXO , D_A_B_Rc , kI, kGeneral, "Multiply High Word" ),
INSTRUCTION(0x7c0001d2, "mulldx" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Multiply Low Doubleword" ),
INSTRUCTION(0x1c000000, "mulli" , kD , D_A_SIMM , kI, kGeneral, "Multiply Low Immediate" ),
INSTRUCTION(0x7c0001d6, "mullwx" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Multiply Low Word" ),
INSTRUCTION(0x7c0003b8, "nandx" , kX , S_A_B_Rc , kI, kGeneral, "NAND" ),
INSTRUCTION(0x7c0000d0, "negx" , kXO , D_A_0_OE_Rc , kI, kGeneral, "Negate" ),
INSTRUCTION(0x7c0000f8, "norx" , kX , S_A_B_Rc , kI, kGeneral, "NOR" ),
INSTRUCTION(0x7c000338, "orcx" , kX , S_A_B_Rc , kI, kGeneral, "OR with Complement" ),
INSTRUCTION(0x60000000, "ori" , kD , S_A_UIMM , kI, kGeneral, "OR Immediate" ),
INSTRUCTION(0x64000000, "oris" , kD , S_A_UIMM , kI, kGeneral, "OR Immediate Shifted" ),
INSTRUCTION(0x7c000378, "orx" , kX , S_A_B_Rc , kI, kGeneral, "OR" ),
INSTRUCTION(0x78000010, "rldclx" , kMDS , S_A_B_MB_ME_Rc , kI, kGeneral, "Rotate Left Doubleword then Clear Left" ),
INSTRUCTION(0x78000012, "rldcrx" , kMDS , S_A_B_MB_ME_Rc , kI, kGeneral, "Rotate Left Doubleword then Clear Right" ),
INSTRUCTION(0x78000000, "rldiclx" , kMDSH , S_A_SH_MB_ME_Rc, kI, kGeneral, "Rotate Left Doubleword Immediate then Clear Left" ),
INSTRUCTION(0x78000004, "rldicrx" , kMDSH , S_A_SH_MB_ME_Rc, kI, kGeneral, "Rotate Left Doubleword Immediate then Clear Right" ),
INSTRUCTION(0x78000008, "rldicx" , kMDSH , S_A_SH_MB_ME_Rc, kI, kGeneral, "Rotate Left Doubleword Immediate then Clear" ),
INSTRUCTION(0x7800000c, "rldimix" , kMDSH , S_A_SH_MB_ME_Rc, kI, kGeneral, "Rotate Left Doubleword Immediate then Mask Insert" ),
INSTRUCTION(0x50000000, "rlwimix" , kM , S_A_SH_MB_ME_Rc, kI, kGeneral, "Rotate Left Word Immediate then Mask Insert" ),
INSTRUCTION(0x54000000, "rlwinmx" , kM , S_A_SH_MB_ME_Rc, kI, kGeneral, "Rotate Left Word Immediate then AND with Mask" ),
INSTRUCTION(0x5c000000, "rlwnmx" , kM , S_A_SH_MB_ME_Rc, kI, kGeneral, "Rotate Left Word then AND with Mask" ),
INSTRUCTION(0x44000002, "sc" , kSC , sc , kI, kSync , "System Call" ),
INSTRUCTION(0x7c000036, "sldx" , kX , S_A_B_Rc , kI, kGeneral, "Shift Left Doubleword" ),
INSTRUCTION(0x7c000030, "slwx" , kX , S_A_B_Rc , kI, kGeneral, "Shift Left Word" ),
INSTRUCTION(0x7c000674, "sradix" , kXS , S_A_SH_Rc , kI, kGeneral, "Shift Right Algebraic Doubleword Immediate" ),
INSTRUCTION(0x7c000634, "sradx" , kX , S_A_B_Rc , kI, kGeneral, "Shift Right Algebraic Doubleword" ),
INSTRUCTION(0x7c000670, "srawix" , kX , S_A_SH_Rc , kI, kGeneral, "Shift Right Algebraic Word Immediate" ),
INSTRUCTION(0x7c000630, "srawx" , kX , S_A_B_Rc , kI, kGeneral, "Shift Right Algebraic Word" ),
INSTRUCTION(0x7c000436, "srdx" , kX , S_A_B_Rc , kI, kGeneral, "Shift Right Doubleword" ),
INSTRUCTION(0x7c000430, "srwx" , kX , S_A_B_Rc , kI, kGeneral, "Shift Right Word" ),
INSTRUCTION(0x98000000, "stb" , kD , S_A_d , kI, kGeneral, "Store Byte" ),
INSTRUCTION(0x9c000000, "stbu" , kD , S_A_d , kI, kGeneral, "Store Byte with Update" ),
INSTRUCTION(0x7c0001ee, "stbux" , kX , S_A_B , kI, kGeneral, "Store Byte with Update Indexed" ),
INSTRUCTION(0x7c0001ae, "stbx" , kX , S_A_B , kI, kGeneral, "Store Byte Indexed" ),
INSTRUCTION(0xf8000000, "std" , kDS , S_A_d , kI, kGeneral, "Store Doubleword" ),
INSTRUCTION(0x7c000528, "stdbrx" , kX , S_A_B , kI, kGeneral, "Store Doubleword Byte-Reverse Indexed" ),
INSTRUCTION(0x7c0001ad, "stdcx" , kX , S_A_B_1 , kI, kGeneral, "Store Doubleword Conditional Indexed" ),
INSTRUCTION(0xf8000001, "stdu" , kDS , S_A_d , kI, kGeneral, "Store Doubleword with Update" ),
INSTRUCTION(0x7c00016a, "stdux" , kX , S_A_B , kI, kGeneral, "Store Doubleword with Update Indexed" ),
INSTRUCTION(0x7c00012a, "stdx" , kX , S_A_B , kI, kGeneral, "Store Doubleword Indexed" ),
INSTRUCTION(0xd8000000, "stfd" , kD , S_A_d , kF, kGeneral, "Store Floating-Point Double" ),
INSTRUCTION(0xdc000000, "stfdu" , kD , S_A_d , kF, kGeneral, "Store Floating-Point Double with Update" ),
INSTRUCTION(0x7c0005ee, "stfdux" , kX , S_A_B , kF, kGeneral, "Store Floating-Point Double with Update Indexed" ),
INSTRUCTION(0x7c0005ae, "stfdx" , kX , S_A_B , kF, kGeneral, "Store Floating-Point Double Indexed" ),
INSTRUCTION(0x7c0007ae, "stfiwx" , kX , S_A_B , kF, kGeneral, "Store Floating-Point as Integer Word Indexed" ),
INSTRUCTION(0xd0000000, "stfs" , kD , S_A_d , kF, kGeneral, "Store Floating-Point Single" ),
INSTRUCTION(0xd4000000, "stfsu" , kD , S_A_d , kF, kGeneral, "Store Floating-Point Single with Update" ),
INSTRUCTION(0x7c00056e, "stfsux" , kX , S_A_B , kF, kGeneral, "Store Floating-Point Single with Update Indexed" ),
INSTRUCTION(0x7c00052e, "stfsx" , kX , S_A_B , kF, kGeneral, "Store Floating-Point Single Indexed" ),
INSTRUCTION(0xb0000000, "sth" , kD , S_A_d , kI, kGeneral, "Store Half Word" ),
INSTRUCTION(0x7c00072c, "sthbrx" , kX , S_A_B , kI, kGeneral, "Store Half Word Byte-Reverse Indexed" ),
INSTRUCTION(0xb4000000, "sthu" , kD , S_A_d , kI, kGeneral, "Store Half Word with Update" ),
INSTRUCTION(0x7c00036e, "sthux" , kX , S_A_B , kI, kGeneral, "Store Half Word with Update Indexed" ),
INSTRUCTION(0x7c00032e, "sthx" , kX , S_A_B , kI, kGeneral, "Store Half Word Indexed" ),
INSTRUCTION(0xbc000000, "stmw" , kD , S_A_d , kI, kGeneral, "Store Multiple Word" ),
INSTRUCTION(0x7c0005aa, "stswi" , kX , S_A_NB , kI, kGeneral, "Store String Word Immediate" ),
INSTRUCTION(0x7c00052a, "stswx" , kX , S_A_B , kI, kGeneral, "Store String Word Indexed" ),
INSTRUCTION(0x7c00010e, "stvebx" , kX , S_A_B , kV, kGeneral, "Store Vector Element Byte Indexed" ),
INSTRUCTION(0x7c00014e, "stvehx" , kX , S_A_B , kV, kGeneral, "Store Vector Element Half Word Indexed" ),
INSTRUCTION(0x7c00018e, "stvewx" , kX , S_A_B , kV, kGeneral, "Store Vector Element Word Indexed" ),
INSTRUCTION(0x10000183, "stvewx128" , kVX128_1, S_A_B , kV, kGeneral, "Store Vector Element Word Indexed 128" ),
INSTRUCTION(0x7c00050e, "stvlx" , kX , S_A_B , kV, kGeneral, "Store Vector Left Indexed" ),
INSTRUCTION(0x10000503, "stvlx128" , kVX128_1, S_A_B , kV, kGeneral, "Store Vector Left Indexed 128" ),
INSTRUCTION(0x7c00070e, "stvlxl" , kX , S_A_B , kV, kGeneral, "Store Vector Left Indexed LRU" ),
INSTRUCTION(0x10000703, "stvlxl128" , kVX128_1, S_A_B , kV, kGeneral, "Store Vector Left Indexed LRU 128" ),
INSTRUCTION(0x7c00054e, "stvrx" , kX , S_A_B , kV, kGeneral, "Store Vector Right Indexed" ),
INSTRUCTION(0x10000543, "stvrx128" , kVX128_1, S_A_B , kV, kGeneral, "Store Vector Right Indexed 128" ),
INSTRUCTION(0x7c00074e, "stvrxl" , kX , S_A_B , kV, kGeneral, "Store Vector Right Indexed LRU" ),
INSTRUCTION(0x10000743, "stvrxl128" , kVX128_1, S_A_B , kV, kGeneral, "Store Vector Right Indexed LRU 128" ),
INSTRUCTION(0x7c0001ce, "stvx" , kX , S_A_B , kV, kGeneral, "Store Vector Indexed" ),
INSTRUCTION(0x100001c3, "stvx128" , kVX128_1, S_A_B , kV, kGeneral, "Store Vector Indexed 128" ),
INSTRUCTION(0x7c0003ce, "stvxl" , kX , S_A_B , kV, kGeneral, "Store Vector Indexed LRU" ),
INSTRUCTION(0x100003c3, "stvxl128" , kVX128_1, S_A_B , kV, kGeneral, "Store Vector Indexed LRU 128" ),
INSTRUCTION(0x90000000, "stw" , kD , S_A_d , kI, kGeneral, "Store Word" ),
INSTRUCTION(0x7c00052c, "stwbrx" , kX , S_A_B , kI, kGeneral, "Store Word Byte-Reverse Indexed" ),
INSTRUCTION(0x7c00012d, "stwcx" , kX , S_A_B_1 , kI, kGeneral, "Store Word Conditional Indexed" ),
INSTRUCTION(0x94000000, "stwu" , kD , S_A_d , kI, kGeneral, "Store Word with Update" ),
INSTRUCTION(0x7c00016e, "stwux" , kX , S_A_B , kI, kGeneral, "Store Word with Update Indexed" ),
INSTRUCTION(0x7c00012e, "stwx" , kX , S_A_B , kI, kGeneral, "Store Word Indexed" ),
INSTRUCTION(0x7c000010, "subfcx" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Subtract From Carrying" ),
INSTRUCTION(0x7c000110, "subfex" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Subtract From Extended" ),
INSTRUCTION(0x20000000, "subficx" , kD , D_A_SIMM , kI, kGeneral, "Subtract From Immediate Carrying" ),
INSTRUCTION(0x7c0001d0, "subfmex" , kXO , D_A_0_OE_Rc , kI, kGeneral, "Subtract From Minus One Extended" ),
INSTRUCTION(0x7c000050, "subfx" , kXO , D_A_B_OE_Rc , kI, kGeneral, "Subtract From" ),
INSTRUCTION(0x7c000190, "subfzex" , kXO , D_A_0_OE_Rc , kI, kGeneral, "Subtract From Zero Extended" ),
INSTRUCTION(0x7c0004ac, "sync" , kX , _0_0_0 , kI, kGeneral, "Synchronize" ),
INSTRUCTION(0x7c000088, "td" , kX , TO_A_B , kI, kGeneral, "Trap Doubleword" ),
INSTRUCTION(0x08000000, "tdi" , kD , TO_A_SIMM , kI, kGeneral, "Trap Doubleword Immediate" ),
INSTRUCTION(0x7c000008, "tw" , kX , TO_A_B , kI, kGeneral, "Trap Word" ),
INSTRUCTION(0x0c000000, "twi" , kD , TO_A_SIMM , kI, kGeneral, "Trap Word Immediate" ),
INSTRUCTION(0x10000180, "vaddcuw" , kVX , D_A_B , kV, kGeneral, "Vector Add Carryout Unsigned Word" ),
INSTRUCTION(0x1000000a, "vaddfp" , kVX , D_A_B , kV, kGeneral, "Vector Add Floating Point" ),
INSTRUCTION(0x14000010, "vaddfp128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Add Floating Point" ),
INSTRUCTION(0x10000300, "vaddsbs" , kVX , D_A_B , kV, kGeneral, "Vector Add Signed Byte Saturate" ),
INSTRUCTION(0x10000340, "vaddshs" , kVX , D_A_B , kV, kGeneral, "Vector Add Signed Half Word Saturate" ),
INSTRUCTION(0x10000380, "vaddsws" , kVX , D_A_B , kV, kGeneral, "Vector Add Signed Word Saturate" ),
INSTRUCTION(0x10000000, "vaddubm" , kVX , D_A_B , kV, kGeneral, "Vector Add Unsigned Byte Modulo" ),
INSTRUCTION(0x10000200, "vaddubs" , kVX , D_A_B , kV, kGeneral, "Vector Add Unsigned Byte Saturate" ),
INSTRUCTION(0x10000040, "vadduhm" , kVX , D_A_B , kV, kGeneral, "Vector Add Unsigned Half Word Modulo" ),
INSTRUCTION(0x10000240, "vadduhs" , kVX , D_A_B , kV, kGeneral, "Vector Add Unsigned Half Word Saturate" ),
INSTRUCTION(0x10000080, "vadduwm" , kVX , D_A_B , kV, kGeneral, "Vector Add Unsigned Word Modulo" ),
INSTRUCTION(0x10000280, "vadduws" , kVX , D_A_B , kV, kGeneral, "Vector Add Unsigned Word Saturate" ),
INSTRUCTION(0x10000404, "vand" , kVX , D_A_B , kV, kGeneral, "Vector Logical AND" ),
INSTRUCTION(0x14000210, "vand128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Logical AND" ),
INSTRUCTION(0x10000444, "vandc" , kVX , D_A_B , kV, kGeneral, "Vector Logical AND with Complement" ),
INSTRUCTION(0x14000250, "vandc128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Logical AND with Complement" ),
INSTRUCTION(0x10000502, "vavgsb" , kVX , D_A_B , kV, kGeneral, "Vector Average Signed Byte" ),
INSTRUCTION(0x10000542, "vavgsh" , kVX , D_A_B , kV, kGeneral, "Vector Average Signed Half Word" ),
INSTRUCTION(0x10000582, "vavgsw" , kVX , D_A_B , kV, kGeneral, "Vector Average Signed Word" ),
INSTRUCTION(0x10000402, "vavgub" , kVX , D_A_B , kV, kGeneral, "Vector Average Unsigned Byte" ),
INSTRUCTION(0x10000442, "vavguh" , kVX , D_A_B , kV, kGeneral, "Vector Average Unsigned Half Word" ),
INSTRUCTION(0x10000482, "vavguw" , kVX , D_A_B , kV, kGeneral, "Vector Average Unsigned Word" ),
INSTRUCTION(0x18000230, "vcfpsxws128" , kVX128_3, D_B_SIMM , kV, kGeneral, "Vector128 Convert From Floating-Point to Signed Fixed-Point Word Saturate" ),
INSTRUCTION(0x18000270, "vcfpuxws128" , kVX128_3, D_B_UIMM , kV, kGeneral, "Vector128 Convert From Floating-Point to Unsigned Fixed-Point Word Saturate"),
INSTRUCTION(0x1000034a, "vcfsx" , kVX , D_A_B , kV, kGeneral, "Vector Convert from Signed Fixed-Point Word" ),
INSTRUCTION(0x1000030a, "vcfux" , kVX , D_A_B , kV, kGeneral, "Vector Convert from Unsigned Fixed-Point Word" ),
INSTRUCTION(0x100003c6, "vcmpbfp" , kVC , D_A_B , kV, kGeneral, "Vector Compare Bounds Floating Point" ),
INSTRUCTION(0x18000180, "vcmpbfp128" , kVX128_R, D_A_B , kV, kGeneral, "Vector128 Compare Bounds Floating Point" ),
INSTRUCTION(0x100000c6, "vcmpeqfp" , kVC , D_A_B , kV, kGeneral, "Vector Compare Equal-to Floating Point" ),
INSTRUCTION(0x18000000, "vcmpeqfp128" , kVX128_R, D_A_B , kV, kGeneral, "Vector128 Compare Equal-to Floating Point" ),
INSTRUCTION(0x10000006, "vcmpequb" , kVC , D_A_B , kV, kGeneral, "Vector Compare Equal-to Unsigned Byte" ),
INSTRUCTION(0x10000046, "vcmpequh" , kVC , D_A_B , kV, kGeneral, "Vector Compare Equal-to Unsigned Half Word" ),
INSTRUCTION(0x10000086, "vcmpequw" , kVC , D_A_B , kV, kGeneral, "Vector Compare Equal-to Unsigned Word" ),
INSTRUCTION(0x18000200, "vcmpequw128" , kVX128_R, D_A_B , kV, kGeneral, "Vector128 Compare Equal-to Unsigned Word" ),
INSTRUCTION(0x100001c6, "vcmpgefp" , kVC , D_A_B , kV, kGeneral, "Vector Compare Greater-Than-or-Equal-to Floating Point" ),
INSTRUCTION(0x18000080, "vcmpgefp128" , kVX128_R, D_A_B , kV, kGeneral, "Vector128 Compare Greater-Than-or-Equal-to Floating Point" ),
INSTRUCTION(0x100002c6, "vcmpgtfp" , kVC , D_A_B , kV, kGeneral, "Vector Compare Greater-Than Floating Point" ),
INSTRUCTION(0x18000100, "vcmpgtfp128" , kVX128_R, D_A_B , kV, kGeneral, "Vector128 Compare Greater-Than Floating-Point" ),
INSTRUCTION(0x10000306, "vcmpgtsb" , kVC , D_A_B , kV, kGeneral, "Vector Compare Greater-Than Signed Byte" ),
INSTRUCTION(0x10000346, "vcmpgtsh" , kVC , D_A_B , kV, kGeneral, "Vector Compare Greater-Than Signed Half Word" ),
INSTRUCTION(0x10000386, "vcmpgtsw" , kVC , D_A_B , kV, kGeneral, "Vector Compare Greater-Than Signed Word" ),
INSTRUCTION(0x10000206, "vcmpgtub" , kVC , D_A_B , kV, kGeneral, "Vector Compare Greater-Than Unsigned Byte" ),
INSTRUCTION(0x10000246, "vcmpgtuh" , kVC , D_A_B , kV, kGeneral, "Vector Compare Greater-Than Unsigned Half Word" ),
INSTRUCTION(0x10000286, "vcmpgtuw" , kVC , D_A_B , kV, kGeneral, "Vector Compare Greater-Than Unsigned Word" ),
INSTRUCTION(0x180002b0, "vcsxwfp128" , kVX128_3, D_B_SIMM , kV, kGeneral, "Vector128 Convert From Signed Fixed-Point Word to Floating-Point" ),
INSTRUCTION(0x100003ca, "vctsxs" , kVX , D_A_B , kV, kGeneral, "Vector Convert to Signed Fixed-Point Word Saturate" ),
INSTRUCTION(0x1000038a, "vctuxs" , kVX , D_A_B , kV, kGeneral, "Vector Convert to Unsigned Fixed-Point Word Saturate" ),
INSTRUCTION(0x180002f0, "vcuxwfp128" , kVX128_3, D_B_SIMM , kV, kGeneral, "Vector128 Convert From Unsigned Fixed-Point Word to Floating-Point" ),
INSTRUCTION(0x1000018a, "vexptefp" , kVX , D_A_B , kV, kGeneral, "Vector 2 Raised to the Exponent Estimate Floating Point" ),
INSTRUCTION(0x180006b0, "vexptefp128" , kVX128_3, D_B , kV, kGeneral, "Vector128 Log2 Estimate Floating Point" ),
INSTRUCTION(0x100001ca, "vlogefp" , kVX , D_A_B , kV, kGeneral, "Vector Log2 Estimate Floating Point" ),
INSTRUCTION(0x180006f0, "vlogefp128" , kVX128_3, D_B , kV, kGeneral, "Vector128 Log2 Estimate Floating Point" ),
INSTRUCTION(0x14000110, "vmaddcfp128" , kVX128 , D_A_D_B , kV, kGeneral, "Vector128 Multiply Add Floating Point" ),
INSTRUCTION(0x1000002e, "vmaddfp" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-Add Floating Point" ),
INSTRUCTION(0x140000d0, "vmaddfp128" , kVX128 , D_A_D_B , kV, kGeneral, "Vector128 Multiply Add Floating Point" ),
INSTRUCTION(0x1000040a, "vmaxfp" , kVX , D_A_B , kV, kGeneral, "Vector Maximum Floating Point" ),
INSTRUCTION(0x18000280, "vmaxfp128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Maximum Floating Point" ),
INSTRUCTION(0x10000102, "vmaxsb" , kVX , D_A_B , kV, kGeneral, "Vector Maximum Signed Byte" ),
INSTRUCTION(0x10000142, "vmaxsh" , kVX , D_A_B , kV, kGeneral, "Vector Maximum Signed Half Word" ),
INSTRUCTION(0x10000182, "vmaxsw" , kVX , D_A_B , kV, kGeneral, "Vector Maximum Signed Word" ),
INSTRUCTION(0x10000002, "vmaxub" , kVX , D_A_B , kV, kGeneral, "Vector Maximum Unsigned Byte" ),
INSTRUCTION(0x10000042, "vmaxuh" , kVX , D_A_B , kV, kGeneral, "Vector Maximum Unsigned Half Word" ),
INSTRUCTION(0x10000082, "vmaxuw" , kVX , D_A_B , kV, kGeneral, "Vector Maximum Unsigned Word" ),
INSTRUCTION(0x10000020, "vmhaddshs" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-High and Add Signed Signed Half Word Saturate" ),
INSTRUCTION(0x10000021, "vmhraddshs" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-High Round and Add Signed Signed Half Word Saturate" ),
INSTRUCTION(0x1000044a, "vminfp" , kVX , D_A_B , kV, kGeneral, "Vector Minimum Floating Point" ),
INSTRUCTION(0x180002c0, "vminfp128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Minimum Floating Point" ),
INSTRUCTION(0x10000302, "vminsb" , kVX , D_A_B , kV, kGeneral, "Vector Minimum Signed Byte" ),
INSTRUCTION(0x10000342, "vminsh" , kVX , D_A_B , kV, kGeneral, "Vector Minimum Signed Half Word" ),
INSTRUCTION(0x10000382, "vminsw" , kVX , D_A_B , kV, kGeneral, "Vector Minimum Signed Word" ),
INSTRUCTION(0x10000202, "vminub" , kVX , D_A_B , kV, kGeneral, "Vector Minimum Unsigned Byte" ),
INSTRUCTION(0x10000242, "vminuh" , kVX , D_A_B , kV, kGeneral, "Vector Minimum Unsigned Half Word" ),
INSTRUCTION(0x10000282, "vminuw" , kVX , D_A_B , kV, kGeneral, "Vector Minimum Unsigned Word" ),
INSTRUCTION(0x10000022, "vmladduhm" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-Low and Add Unsigned Half Word Modulo" ),
INSTRUCTION(0x1000000c, "vmrghb" , kVX , D_A_B , kV, kGeneral, "Vector Merge High Byte" ),
INSTRUCTION(0x1000004c, "vmrghh" , kVX , D_A_B , kV, kGeneral, "Vector Merge High Half Word" ),
INSTRUCTION(0x1000008c, "vmrghw" , kVX , D_A_B , kV, kGeneral, "Vector Merge High Word" ),
INSTRUCTION(0x18000300, "vmrghw128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Merge High Word" ),
INSTRUCTION(0x1000010c, "vmrglb" , kVX , D_A_B , kV, kGeneral, "Vector Merge Low Byte" ),
INSTRUCTION(0x1000014c, "vmrglh" , kVX , D_A_B , kV, kGeneral, "Vector Merge Low Half Word" ),
INSTRUCTION(0x1000018c, "vmrglw" , kVX , D_A_B , kV, kGeneral, "Vector Merge Low Word" ),
INSTRUCTION(0x18000340, "vmrglw128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Merge Low Word" ),
INSTRUCTION(0x14000190, "vmsum3fp128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Multiply Sum 3-way Floating Point" ),
INSTRUCTION(0x140001d0, "vmsum4fp128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Multiply Sum 4-way Floating-Point" ),
INSTRUCTION(0x10000025, "vmsummbm" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-Sum Mixed-Sign Byte Modulo" ),
INSTRUCTION(0x10000028, "vmsumshm" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-Sum Signed Half Word Modulo" ),
INSTRUCTION(0x10000029, "vmsumshs" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-Sum Signed Half Word Saturate" ),
INSTRUCTION(0x10000024, "vmsumubm" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-Sum Unsigned Byte Modulo" ),
INSTRUCTION(0x10000026, "vmsumuhm" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-Sum Unsigned Half Word Modulo" ),
INSTRUCTION(0x10000027, "vmsumuhs" , kVA , D_A_B_C , kV, kGeneral, "Vector Multiply-Sum Unsigned Half Word Saturate" ),
INSTRUCTION(0x10000308, "vmulesb" , kVX , D_A_B , kV, kGeneral, "Vector Multiply Even Signed Byte" ),
INSTRUCTION(0x10000348, "vmulesh" , kVX , D_A_B , kV, kGeneral, "Vector Multiply Even Signed Half Word" ),
INSTRUCTION(0x10000208, "vmuleub" , kVX , D_A_B , kV, kGeneral, "Vector Multiply Even Unsigned Byte" ),
INSTRUCTION(0x10000248, "vmuleuh" , kVX , D_A_B , kV, kGeneral, "Vector Multiply Even Unsigned Half Word" ),
INSTRUCTION(0x14000090, "vmulfp128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Multiply Floating-Point" ),
INSTRUCTION(0x10000108, "vmulosb" , kVX , D_A_B , kV, kGeneral, "Vector Multiply Odd Signed Byte" ),
INSTRUCTION(0x10000148, "vmulosh" , kVX , D_A_B , kV, kGeneral, "Vector Multiply Odd Signed Half Word" ),
INSTRUCTION(0x10000008, "vmuloub" , kVX , D_A_B , kV, kGeneral, "Vector Multiply Odd Unsigned Byte" ),
INSTRUCTION(0x10000048, "vmulouh" , kVX , D_A_B , kV, kGeneral, "Vector Multiply Odd Unsigned Half Word" ),
INSTRUCTION(0x1000002f, "vnmsubfp" , kVA , D_A_B_C , kV, kGeneral, "Vector Negative Multiply-Subtract Floating Point" ),
INSTRUCTION(0x14000150, "vnmsubfp128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Negative Multiply-Subtract Floating Point" ),
INSTRUCTION(0x10000504, "vnor" , kVX , D_A_B , kV, kGeneral, "Vector Logical NOR" ),
INSTRUCTION(0x14000290, "vnor128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Logical NOR" ),
INSTRUCTION(0x10000484, "vor" , kVX , D_A_B , kV, kGeneral, "Vector Logical OR" ),
INSTRUCTION(0x140002d0, "vor128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Logical OR" ),
INSTRUCTION(0x1000002b, "vperm" , kVA , D_A_B_C , kV, kGeneral, "Vector Permute" ),
INSTRUCTION(0x14000000, "vperm128" , kVX128_2, D_A_B_C , kV, kGeneral, "Vector128 Permute" ),
INSTRUCTION(0x18000210, "vpermwi128" , kVX128_P, D_A_B_C , kV, kGeneral, "Vector128 Permutate Word Immediate" ),
INSTRUCTION(0x18000610, "vpkd3d128" , kVX128_4, D_B , kV, kGeneral, "Vector128 Pack D3Dtype, Rotate Left Immediate and Mask Insert" ),
INSTRUCTION(0x1000030e, "vpkpx" , kVX , D_A_B , kV, kGeneral, "Vector Pack Pixel" ),
INSTRUCTION(0x1000018e, "vpkshss" , kVX , D_A_B , kV, kGeneral, "Vector Pack Signed Half Word Signed Saturate" ),
INSTRUCTION(0x14000200, "vpkshss128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Pack Signed Half Word Signed Saturate" ),
INSTRUCTION(0x1000010e, "vpkshus" , kVX , D_A_B , kV, kGeneral, "Vector Pack Signed Half Word Unsigned Saturate" ),
INSTRUCTION(0x14000240, "vpkshus128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Pack Signed Half Word Unsigned Saturate" ),
INSTRUCTION(0x100001ce, "vpkswss" , kVX , D_A_B , kV, kGeneral, "Vector Pack Signed Word Signed Saturate" ),
INSTRUCTION(0x14000280, "vpkswss128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Pack Signed Word Signed Saturate" ),
INSTRUCTION(0x1000014e, "vpkswus" , kVX , D_A_B , kV, kGeneral, "Vector Pack Signed Word Unsigned Saturate" ),
INSTRUCTION(0x140002c0, "vpkswus128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Pack Signed Word Unsigned Saturate" ),
INSTRUCTION(0x1000000e, "vpkuhum" , kVX , D_A_B , kV, kGeneral, "Vector Pack Unsigned Half Word Unsigned Modulo" ),
INSTRUCTION(0x14000300, "vpkuhum128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Pack Unsigned Half Word Unsigned Modulo" ),
INSTRUCTION(0x1000008e, "vpkuhus" , kVX , D_A_B , kV, kGeneral, "Vector Pack Unsigned Half Word Unsigned Saturate" ),
INSTRUCTION(0x14000340, "vpkuhus128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Pack Unsigned Half Word Unsigned Saturate" ),
INSTRUCTION(0x1000004e, "vpkuwum" , kVX , D_A_B , kV, kGeneral, "Vector Pack Unsigned Word Unsigned Modulo" ),
INSTRUCTION(0x14000380, "vpkuwum128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Pack Unsigned Word Unsigned Modulo" ),
INSTRUCTION(0x100000ce, "vpkuwus" , kVX , D_A_B , kV, kGeneral, "Vector Pack Unsigned Word Unsigned Saturate" ),
INSTRUCTION(0x140003c0, "vpkuwus128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Pack Unsigned Word Unsigned Saturate" ),
INSTRUCTION(0x1000010a, "vrefp" , kVX , D_A_B , kV, kGeneral, "Vector Reciprocal Estimate Floating Point" ),
INSTRUCTION(0x18000630, "vrefp128" , kVX128_3, D_B , kV, kGeneral, "Vector128 Reciprocal Estimate Floating Point" ),
INSTRUCTION(0x100002ca, "vrfim" , kVX , D_A_B , kV, kGeneral, "Vector Round to Floating-Point Integer toward -Infinity" ),
INSTRUCTION(0x18000330, "vrfim128" , kVX128_3, D_B , kV, kGeneral, "Vector128 Round to Floating-Point Integer toward -Infinity" ),
INSTRUCTION(0x1000020a, "vrfin" , kVX , D_A_B , kV, kGeneral, "Vector Round to Floating-Point Integer Nearest" ),
INSTRUCTION(0x18000370, "vrfin128" , kVX128_3, D_B , kV, kGeneral, "Vector128 Round to Floating-Point Integer Nearest" ),
INSTRUCTION(0x1000028a, "vrfip" , kVX , D_A_B , kV, kGeneral, "Vector Round to Floating-Point Integer toward +Infinity" ),
INSTRUCTION(0x180003b0, "vrfip128" , kVX128_3, D_B , kV, kGeneral, "Vector128 Round to Floating-Point Integer toward +Infinity" ),
INSTRUCTION(0x1000024a, "vrfiz" , kVX , D_A_B , kV, kGeneral, "Vector Round to Floating-Point Integer toward Zero" ),
INSTRUCTION(0x180003f0, "vrfiz128" , kVX128_3, D_B , kV, kGeneral, "Vector128 Round to Floating-Point Integer toward Zero" ),
INSTRUCTION(0x10000004, "vrlb" , kVX , D_A_B , kV, kGeneral, "Vector Rotate Left Integer Byte" ),
INSTRUCTION(0x10000044, "vrlh" , kVX , D_A_B , kV, kGeneral, "Vector Rotate Left Integer Half Word" ),
INSTRUCTION(0x18000710, "vrlimi128" , kVX128_4, D_B_UIMM , kV, kGeneral, "Vector128 Rotate Left Immediate and Mask Insert" ),
INSTRUCTION(0x10000084, "vrlw" , kVX , D_A_B , kV, kGeneral, "Vector Rotate Left Integer Word" ),
INSTRUCTION(0x18000050, "vrlw128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Rotate Left Word" ),
INSTRUCTION(0x1000014a, "vrsqrtefp" , kVX , D_A_B , kV, kGeneral, "Vector Reciprocal Square Root Estimate Floating Point" ),
INSTRUCTION(0x18000670, "vrsqrtefp128", kVX128_3, D_B , kV, kGeneral, "Vector128 Reciprocal Square Root Estimate Floating Point" ),
INSTRUCTION(0x1000002a, "vsel" , kVA , D_A_B_C , kV, kGeneral, "Vector Conditional Select" ),
INSTRUCTION(0x14000350, "vsel128" , kVX128 , D_A_B_D , kV, kGeneral, "Vector128 Conditional Select" ),
INSTRUCTION(0x100001c4, "vsl" , kVX , D_A_B , kV, kGeneral, "Vector Shift Left" ),
INSTRUCTION(0x10000104, "vslb" , kVX , D_A_B , kV, kGeneral, "Vector Shift Left Integer Byte" ),
INSTRUCTION(0x1000002c, "vsldoi" , kVA , D_A_B_C , kV, kGeneral, "Vector Shift Left Double by Octet Immediate" ),
INSTRUCTION(0x10000010, "vsldoi128" , kVX128_5, D_A_B_I , kV, kGeneral, "Vector128 Shift Left Double by Octet Immediate" ),
INSTRUCTION(0x10000144, "vslh" , kVX , D_A_B , kV, kGeneral, "Vector Shift Left Integer Half Word" ),
INSTRUCTION(0x1000040c, "vslo" , kVX , D_A_B , kV, kGeneral, "Vector Shift Left by Octet" ),
INSTRUCTION(0x14000390, "vslo128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Shift Left Octet" ),
INSTRUCTION(0x10000184, "vslw" , kVX , D_A_B , kV, kGeneral, "Vector Shift Left Integer Word" ),
INSTRUCTION(0x180000d0, "vslw128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Shift Left Integer Word" ),
INSTRUCTION(0x1000020c, "vspltb" , kVX , D_A_B , kV, kGeneral, "Vector Splat Byte" ),
INSTRUCTION(0x1000024c, "vsplth" , kVX , D_A_B , kV, kGeneral, "Vector Splat Half Word" ),
INSTRUCTION(0x1000030c, "vspltisb" , kVX , D_A_B , kV, kGeneral, "Vector Splat Immediate Signed Byte" ),
INSTRUCTION(0x1000034c, "vspltish" , kVX , D_A_B , kV, kGeneral, "Vector Splat Immediate Signed Half Word" ),
INSTRUCTION(0x1000038c, "vspltisw" , kVX , D_A_B , kV, kGeneral, "Vector Splat Immediate Signed Word" ),
INSTRUCTION(0x18000770, "vspltisw128" , kVX128_3, D_B_SIMM , kV, kGeneral, "Vector128 Splat Immediate Signed Word" ),
INSTRUCTION(0x1000028c, "vspltw" , kVX , D_A_B , kV, kGeneral, "Vector Splat Word" ),
INSTRUCTION(0x18000730, "vspltw128" , kVX128_3, D_B_SIMM , kV, kGeneral, "Vector128 Splat Word" ),
INSTRUCTION(0x100002c4, "vsr" , kVX , D_A_B , kV, kGeneral, "Vector Shift Right" ),
INSTRUCTION(0x10000304, "vsrab" , kVX , D_A_B , kV, kGeneral, "Vector Shift Right Algebraic Byte" ),
INSTRUCTION(0x10000344, "vsrah" , kVX , D_A_B , kV, kGeneral, "Vector Shift Right Algebraic Half Word" ),
INSTRUCTION(0x10000384, "vsraw" , kVX , D_A_B , kV, kGeneral, "Vector Shift Right Algebraic Word" ),
INSTRUCTION(0x18000150, "vsraw128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Shift Right Arithmetic Word" ),
INSTRUCTION(0x10000204, "vsrb" , kVX , D_A_B , kV, kGeneral, "Vector Shift Right Byte" ),
INSTRUCTION(0x10000244, "vsrh" , kVX , D_A_B , kV, kGeneral, "Vector Shift Right Half Word" ),
INSTRUCTION(0x1000044c, "vsro" , kVX , D_A_B , kV, kGeneral, "Vector Shift Right Octet" ),
INSTRUCTION(0x140003d0, "vsro128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Shift Right Octet" ),
INSTRUCTION(0x10000284, "vsrw" , kVX , D_A_B , kV, kGeneral, "Vector Shift Right Word" ),
INSTRUCTION(0x180001d0, "vsrw128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Shift Right Word" ),
INSTRUCTION(0x10000580, "vsubcuw" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Carryout Unsigned Word" ),
INSTRUCTION(0x1000004a, "vsubfp" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Floating Point" ),
INSTRUCTION(0x14000050, "vsubfp128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Subtract Floating Point" ),
INSTRUCTION(0x10000700, "vsubsbs" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Signed Byte Saturate" ),
INSTRUCTION(0x10000740, "vsubshs" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Signed Half Word Saturate" ),
INSTRUCTION(0x10000780, "vsubsws" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Signed Word Saturate" ),
INSTRUCTION(0x10000400, "vsububm" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Unsigned Byte Modulo" ),
INSTRUCTION(0x10000600, "vsububs" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Unsigned Byte Saturate" ),
INSTRUCTION(0x10000440, "vsubuhm" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Unsigned Half Word Modulo" ),
INSTRUCTION(0x10000640, "vsubuhs" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Unsigned Half Word Saturate" ),
INSTRUCTION(0x10000480, "vsubuwm" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Unsigned Word Modulo" ),
INSTRUCTION(0x10000680, "vsubuws" , kVX , D_A_B , kV, kGeneral, "Vector Subtract Unsigned Word Saturate" ),
INSTRUCTION(0x10000688, "vsum2sws" , kVX , D_A_B , kV, kGeneral, "Vector Sum Across Partial (1/2) Signed Word Saturate" ),
INSTRUCTION(0x10000708, "vsum4sbs" , kVX , D_A_B , kV, kGeneral, "Vector Sum Across Partial (1/4) Signed Byte Saturate" ),
INSTRUCTION(0x10000648, "vsum4shs" , kVX , D_A_B , kV, kGeneral, "Vector Sum Across Partial (1/4) Signed Half Word Saturate" ),
INSTRUCTION(0x10000608, "vsum4ubs" , kVX , D_A_B , kV, kGeneral, "Vector Sum Across Partial (1/4) Unsigned Byte Saturate" ),
INSTRUCTION(0x10000788, "vsumsws" , kVX , D_A_B , kV, kGeneral, "Vector Sum Across Signed Word Saturate" ),
INSTRUCTION(0x180007f0, "vupkd3d128" , kVX128_3, D_B_SIMM , kV, kGeneral, "Vector128 Unpack D3Dtype" ),
INSTRUCTION(0x1000034e, "vupkhpx" , kVX , D_A_B , kV, kGeneral, "Vector Unpack High Pixel" ),
INSTRUCTION(0x1000020e, "vupkhsb" , kVX , D_A_B , kV, kGeneral, "Vector Unpack High Signed Byte" ),
INSTRUCTION(0x18000380, "vupkhsb128" , kVX128 , D_B , kV, kGeneral, "Vector128 Unpack High Signed Byte" ),
INSTRUCTION(0x1000024e, "vupkhsh" , kVX , D_A_B , kV, kGeneral, "Vector Unpack High Signed Half Word" ),
INSTRUCTION(0x100003ce, "vupklpx" , kVX , D_A_B , kV, kGeneral, "Vector Unpack Low Pixel" ),
INSTRUCTION(0x1000028e, "vupklsb" , kVX , D_A_B , kV, kGeneral, "Vector Unpack Low Signed Byte" ),
INSTRUCTION(0x180003c0, "vupklsb128" , kVX128 , D_B , kV, kGeneral, "Vector128 Unpack Low Signed Byte" ),
INSTRUCTION(0x100002ce, "vupklsh" , kVX , D_A_B , kV, kGeneral, "Vector Unpack Low Signed Half Word" ),
INSTRUCTION(0x100004c4, "vxor" , kVX , D_A_B , kV, kGeneral, "Vector Logical XOR" ),
INSTRUCTION(0x14000310, "vxor128" , kVX128 , D_A_B , kV, kGeneral, "Vector128 Logical XOR" ),
INSTRUCTION(0x68000000, "xori" , kD , S_A_UIMM , kI, kGeneral, "XOR Immediate" ),
INSTRUCTION(0x6c000000, "xoris" , kD , S_A_UIMM , kI, kGeneral, "XOR Immediate Shifted" ),
INSTRUCTION(0x7c000278, "xorx" , kX , S_A_B_Rc , kI, kGeneral, "XOR" ),
};
static_assert(sizeof(ppc_opcode_table) / sizeof(PPCOpcodeInfo) == static_cast<int>(PPCOpcode::kInvalid), "PPC table mismatch - rerun ppc-table-gen");
const PPCOpcodeInfo& GetOpcodeInfo(PPCOpcode opcode) {
return ppc_opcode_table[static_cast<int>(opcode)];
}
void RegisterOpcodeDisasm(PPCOpcode opcode, InstrDisasmFn1 fn) {
assert_null(ppc_opcode_table[static_cast<int>(opcode)].disasm);
ppc_opcode_table[static_cast<int>(opcode)].disasm = fn;
}
void RegisterOpcodeEmitter(PPCOpcode opcode, InstrEmitFn fn) {
assert_null(ppc_opcode_table[static_cast<int>(opcode)].emit);
ppc_opcode_table[static_cast<int>(opcode)].emit = fn;
}
} // namespace ppc
} // namespace cpu
} // namespace xe