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507 lines
20 KiB
C
507 lines
20 KiB
C
#ifndef IA32_INSN_H
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#define IA32_INSN_H
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/* this file contains the structure of opcode definitions and the
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* constants they use */
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#include <sys/types.h>
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#include "libdis.h"
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#define GET_BYTE( buf, buf_len ) buf_len ? *buf : 0
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#define OP_SIZE_16 1
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#define OP_SIZE_32 2
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#define ADDR_SIZE_16 4
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#define ADDR_SIZE_32 8
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#define MAX_INSTRUCTION_SIZE 20
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/* invalid instructions are handled by returning 0 [error] from the
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* function, setting the size of the insn to 1 byte, and copying
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* the byte at the start of the invalid insn into the x86_insn_t.
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* if the caller is saving the x86_insn_t for invalid instructions,
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* instead of discarding them, this will maintain a consistent
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* address space in the x86_insn_ts */
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#define INVALID_INSN ((size_t) -1) /* return value for invalid insn */
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#define MAKE_INVALID( i, buf ) \
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strcpy( i->mnemonic, "invalid" ); \
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x86_oplist_free( i ); \
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i->size = 1; \
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i->group = insn_none; \
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i->type = insn_invalid; \
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memcpy( i->bytes, buf, 1 );
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size_t ia32_disasm_addr( unsigned char * buf, size_t buf_len,
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x86_insn_t *insn);
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/* --------------------------------------------------------- Table Lookup */
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/* IA32 Instruction defintion for ia32_opcodes.c */
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typedef struct {
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unsigned int table; /* escape to this sub-table */
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unsigned int mnem_flag; /* Flags referring to mnemonic */
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unsigned int notes; /* Notes for this instruction */
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unsigned int dest_flag, src_flag, aux_flag; /* and for specific operands */
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unsigned int cpu; /* minimumCPU [AND with clocks?? */
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char mnemonic[16]; /* buffers for building instruction */
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char mnemonic_att[16]; /* at&t style mnemonic name */
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int32_t dest;
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int32_t src;
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int32_t aux;
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unsigned int flags_effected;
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unsigned int implicit_ops; /* implicit operands */
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} ia32_insn_t;
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/* --------------------------------------------------------- Prefixes */
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/* Prefix Flags */
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/* Prefixes, same order as in the manual */
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/* had to reverse the values of the first three as they were entered into
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* libdis.h incorrectly. */
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#define PREFIX_LOCK 0x0004
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#define PREFIX_REPNZ 0x0002
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#define PREFIX_REPZ 0x0001
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#define PREFIX_OP_SIZE 0x0010
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#define PREFIX_ADDR_SIZE 0x0020
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#define PREFIX_CS 0x0100
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#define PREFIX_SS 0x0200
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#define PREFIX_DS 0x0300
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#define PREFIX_ES 0x0400
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#define PREFIX_FS 0x0500
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#define PREFIX_GS 0x0600
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#define PREFIX_TAKEN 0x1000 /* branch taken */
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#define PREFIX_NOTTAKEN 0x2000 /* branch not taken */
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#define PREFIX_REG_MASK 0x0F00
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#define BRANCH_HINT_MASK 0x3000
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#define PREFIX_PRINT_MASK 0x000F /* printable prefixes */
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#define PREFIX_MASK 0xFFFF
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/* ---------------------------------------------------------- CPU Type */
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#define cpu_8086 0x0001
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#define cpu_80286 0x0002
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#define cpu_80386 0x0003
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#define cpu_80387 0x0004 /* originally these were a co-proc */
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#define cpu_80486 0x0005
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#define cpu_PENTIUM 0x0006
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#define cpu_PENTPRO 0x0007
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#define cpu_PENTIUM2 0x0008
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#define cpu_PENTIUM3 0x0009
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#define cpu_PENTIUM4 0x000A
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#define cpu_K6 0x0010
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#define cpu_K7 0x0020
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#define cpu_ATHLON 0x0030
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#define CPU_MODEL_MASK 0xFFFF
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#define CPU_MODEL(cpu) (cpu & CPU_MODEL_MASK)
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/* intel instruction subsets */
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#define isa_GP 0x10000 /* General Purpose Instructions */
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#define isa_FPU 0x20000 /* FPU instructions */
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#define isa_FPUMGT 0x30000 /* FPU/SIMD Management */
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#define isa_MMX 0x40000 /* MMX */
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#define isa_SSE1 0x50000 /* SSE */
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#define isa_SSE2 0x60000 /* SSE 2 */
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#define isa_SSE3 0x70000 /* SSE 3 */
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#define isa_3DNOW 0x80000 /* AMD 3d Now */
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#define isa_SYS 0x90000 /* System Instructions */
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#define ISA_SUBSET_MASK 0xFFFF0000
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#define ISA_SUBSET(isa) (isa & ISA_SUBSET_MASK)
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/* ------------------------------------------------------ Operand Decoding */
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#define ARG_NONE 0
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/* Using a mask allows us to store info such as OP_SIGNED in the
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* operand flags field */
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#define OPFLAGS_MASK 0x0000FFFF
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/* Operand Addressing Methods, per intel manual */
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#define ADDRMETH_MASK 0x00FF0000
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/* note: for instructions with implied operands, use no ADDRMETH */
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#define ADDRMETH_A 0x00010000
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#define ADDRMETH_C 0x00020000
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#define ADDRMETH_D 0x00030000
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#define ADDRMETH_E 0x00040000
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#define ADDRMETH_F 0x00050000
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#define ADDRMETH_G 0x00060000
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#define ADDRMETH_I 0x00070000
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#define ADDRMETH_J 0x00080000
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#define ADDRMETH_M 0x00090000
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#define ADDRMETH_O 0x000A0000
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#define ADDRMETH_P 0x000B0000
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#define ADDRMETH_Q 0x000C0000
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#define ADDRMETH_R 0x000D0000
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#define ADDRMETH_S 0x000E0000
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#define ADDRMETH_T 0x000F0000
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#define ADDRMETH_V 0x00100000
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#define ADDRMETH_W 0x00110000
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#define ADDRMETH_X 0x00120000
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#define ADDRMETH_Y 0x00130000
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#define ADDRMETH_RR 0x00140000 /* gen reg hard-coded in opcode */
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#define ADDRMETH_RS 0x00150000 /* seg reg hard-coded in opcode */
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#define ADDRMETH_RT 0x00160000 /* test reg hard-coded in opcode */
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#define ADDRMETH_RF 0x00170000 /* fpu reg hard-coded in opcode */
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#define ADDRMETH_II 0x00180000 /* immediate hard-coded in opcode */
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#define ADDRMETH_PP 0x00190000 /* mm reg ONLY in modr/m field */
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#define ADDRMETH_VV 0x001A0000 /* xmm reg ONLY in mod/rm field */
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/* Operand Types, per intel manual */
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#define OPTYPE_MASK 0xFF000000
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#define OPTYPE_a 0x01000000 /* BOUND: h:h or w:w */
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#define OPTYPE_b 0x02000000 /* byte */
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#define OPTYPE_c 0x03000000 /* byte or word */
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#define OPTYPE_d 0x04000000 /* word */
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#define OPTYPE_dq 0x05000000 /* qword */
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#define OPTYPE_p 0x06000000 /* 16:16 or 16:32 pointer */
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#define OPTYPE_pi 0x07000000 /* dword MMX reg */
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#define OPTYPE_ps 0x08000000 /* 128-bit single fp */
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#define OPTYPE_q 0x09000000 /* dword */
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#define OPTYPE_s 0x0A000000 /* 6-byte descriptor */
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#define OPTYPE_ss 0x0B000000 /* scalar of 128-bit single fp */
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#define OPTYPE_si 0x0C000000 /* word general register */
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#define OPTYPE_v 0x0D000000 /* hword or word */
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#define OPTYPE_w 0x0E000000 /* hword */
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#define OPTYPE_m 0x0F000000 /* to handle LEA */
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#define OPTYPE_none 0xFF000000 /* no valid operand size, INVLPG */
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/* custom ones for FPU instructions */
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#define OPTYPE_fs 0x10000000 /* pointer to single-real*/
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#define OPTYPE_fd 0x20000000 /* pointer to double real */
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#define OPTYPE_fe 0x30000000 /* pointer to extended real */
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#define OPTYPE_fb 0x40000000 /* pointer to packed BCD */
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#define OPTYPE_fv 0x50000000 /* pointer to FPU env: 14|28-bytes */
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#define OPTYPE_ft 0x60000000 /* pointer to FPU state: 94|108-bytes */
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#define OPTYPE_fx 0x70000000 /* pointer to FPU regs: 512 bites */
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#define OPTYPE_fp 0x80000000 /* general fpu register: dbl ext */
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/* SSE2 operand types */
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#define OPTYPE_sd 0x90000000 /* scalar of 128-bit double fp */
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#define OPTYPE_pd 0xA0000000 /* 128-bit double fp */
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/* ---------------------------------------------- Opcode Table Descriptions */
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/* the table type describes how to handle byte/size increments before
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* and after lookup. Some tables re-use the current byte, others
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* consume a byte only if the ModR/M encodes no operands, etc */
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enum ia32_tbl_type_id {
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tbl_opcode = 0, /* standard opcode table: no surprises */
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tbl_prefix, /* Prefix Override, e.g. 66/F2/F3 */
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tbl_suffix, /* 3D Now style */
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tbl_extension, /* ModR/M extension: 00-FF -> 00-07 */
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tbl_ext_ext, /* extension of modr/m using R/M field */
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tbl_fpu, /* fpu table: 00-BF -> 00-0F */
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tbl_fpu_ext /* fpu extension : C0-FF -> 00-1F */
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};
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/* How it works:
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* Bytes are 'consumed' if the next table lookup requires that the byte
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* pointer be advanced in the instruction stream. 'Does not consume' means
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* that, when the lookup function recurses, the same byte it re-used in the
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* new table. It also means that size is not decremented, for example when
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* a ModR/M byte is used. Note that tbl_extension (ModR/M) instructions that
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* do not increase the size of an insn with their operands have a forced
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3 size increase in the lookup algo. Weird, yes, confusing, yes, welcome
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* to the Intel ISA. Another note: tbl_prefix is used as an override, so an
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* empty insn in a prefix table causes the instruction in the original table
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* to be used, rather than an invalid insn being generated.
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* tbl_opcode uses current byte and consumes it
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* tbl_prefix uses current byte but does not consume it
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* tbl_suffix uses and consumes last byte in insn
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* tbl_extension uses current byte but does not consume it
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* tbl_ext_ext uses current byte but does not consume it
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* tbl_fpu uses current byte and consumes it
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* tbl_fpu_ext uses current byte but does not consume it
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*/
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/* Convenience struct for opcode tables : these will be stored in a
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* 'table of tables' so we can use a table index instead of a pointer */
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typedef struct { /* Assembly instruction tables */
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ia32_insn_t *table; /* Pointer to table of instruction encodings */
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enum ia32_tbl_type_id type;
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unsigned char shift; /* amount to shift modrm byte */
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unsigned char mask; /* bit mask for look up */
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unsigned char minlim,maxlim; /* limits on min/max entries. */
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} ia32_table_desc_t;
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/* ---------------------------------------------- 'Cooked' Operand Type Info */
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/* Permissions: */
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#define OP_R 0x001 /* operand is READ */
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#define OP_W 0x002 /* operand is WRITTEN */
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#define OP_RW 0x003 /* (OP_R|OP_W): convenience macro */
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#define OP_X 0x004 /* operand is EXECUTED */
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#define OP_PERM_MASK 0x0000007 /* perms are NOT mutually exclusive */
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#define OP_PERM( type ) (type & OP_PERM_MASK)
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/* Flags */
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#define OP_SIGNED 0x010 /* operand is signed */
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#define OP_FLAG_MASK 0x0F0 /* mods are NOT mutually exclusive */
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#define OP_FLAGS( type ) (type & OP_FLAG_MASK)
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#define OP_REG_MASK 0x0000FFFF /* lower WORD is register ID */
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#define OP_REGTBL_MASK 0xFFFF0000 /* higher word is register type [gen/dbg] */
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#define OP_REGID( type ) (type & OP_REG_MASK)
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#define OP_REGTYPE( type ) (type & OP_REGTBL_MASK)
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/* ------------------------------------------'Cooked' Instruction Type Info */
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/* high-bit opcode types/insn meta-types */
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#define INS_FLAG_PREFIX 0x10000000 /* insn is a prefix */
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#define INS_FLAG_SUFFIX 0x20000000 /* followed by a suffix byte */
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#define INS_FLAG_MASK 0xFF000000
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/* insn notes */
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#define INS_NOTE_RING0 0x00000001 /* insn is privileged */
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#define INS_NOTE_SMM 0x00000002 /* Sys Mgt Mode only */
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#define INS_NOTE_SERIAL 0x00000004 /* serializes */
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#define INS_NOTE_NONSWAP 0x00000008 /* insn is not swapped in att format */ // could be separate field?
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#define INS_NOTE_NOSUFFIX 0x00000010 /* insn has no size suffix in att format */ // could be separate field?
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//#define INS_NOTE_NMI
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#define INS_INVALID 0
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/* instruction groups */
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#define INS_EXEC 0x1000
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#define INS_ARITH 0x2000
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#define INS_LOGIC 0x3000
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#define INS_STACK 0x4000
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#define INS_COND 0x5000
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#define INS_LOAD 0x6000
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#define INS_ARRAY 0x7000
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#define INS_BIT 0x8000
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#define INS_FLAG 0x9000
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#define INS_FPU 0xA000
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#define INS_TRAPS 0xD000
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#define INS_SYSTEM 0xE000
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#define INS_OTHER 0xF000
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#define INS_GROUP_MASK 0xF000
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#define INS_GROUP( type ) ( type & INS_GROUP_MASK )
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/* INS_EXEC group */
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#define INS_BRANCH (INS_EXEC | 0x01) /* Unconditional branch */
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#define INS_BRANCHCC (INS_EXEC | 0x02) /* Conditional branch */
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#define INS_CALL (INS_EXEC | 0x03) /* Jump to subroutine */
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#define INS_CALLCC (INS_EXEC | 0x04) /* Jump to subroutine */
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#define INS_RET (INS_EXEC | 0x05) /* Return from subroutine */
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/* INS_ARITH group */
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#define INS_ADD (INS_ARITH | 0x01)
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#define INS_SUB (INS_ARITH | 0x02)
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#define INS_MUL (INS_ARITH | 0x03)
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#define INS_DIV (INS_ARITH | 0x04)
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#define INS_INC (INS_ARITH | 0x05) /* increment */
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#define INS_DEC (INS_ARITH | 0x06) /* decrement */
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#define INS_SHL (INS_ARITH | 0x07) /* shift right */
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#define INS_SHR (INS_ARITH | 0x08) /* shift left */
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#define INS_ROL (INS_ARITH | 0x09) /* rotate left */
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#define INS_ROR (INS_ARITH | 0x0A) /* rotate right */
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#define INS_MIN (INS_ARITH | 0x0B) /* min func */
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#define INS_MAX (INS_ARITH | 0x0C) /* max func */
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#define INS_AVG (INS_ARITH | 0x0D) /* avg func */
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#define INS_FLR (INS_ARITH | 0x0E) /* floor func */
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#define INS_CEIL (INS_ARITH | 0x0F) /* ceiling func */
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/* INS_LOGIC group */
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#define INS_AND (INS_LOGIC | 0x01)
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#define INS_OR (INS_LOGIC | 0x02)
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#define INS_XOR (INS_LOGIC | 0x03)
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#define INS_NOT (INS_LOGIC | 0x04)
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#define INS_NEG (INS_LOGIC | 0x05)
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#define INS_NAND (INS_LOGIC | 0x06)
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/* INS_STACK group */
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#define INS_PUSH (INS_STACK | 0x01)
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#define INS_POP (INS_STACK | 0x02)
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#define INS_PUSHREGS (INS_STACK | 0x03) /* push register context */
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#define INS_POPREGS (INS_STACK | 0x04) /* pop register context */
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#define INS_PUSHFLAGS (INS_STACK | 0x05) /* push all flags */
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#define INS_POPFLAGS (INS_STACK | 0x06) /* pop all flags */
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#define INS_ENTER (INS_STACK | 0x07) /* enter stack frame */
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#define INS_LEAVE (INS_STACK | 0x08) /* leave stack frame */
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/* INS_COND group */
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#define INS_TEST (INS_COND | 0x01)
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#define INS_CMP (INS_COND | 0x02)
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/* INS_LOAD group */
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#define INS_MOV (INS_LOAD | 0x01)
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#define INS_MOVCC (INS_LOAD | 0x02)
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#define INS_XCHG (INS_LOAD | 0x03)
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#define INS_XCHGCC (INS_LOAD | 0x04)
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#define INS_CONV (INS_LOAD | 0x05) /* move and convert type */
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/* INS_ARRAY group */
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#define INS_STRCMP (INS_ARRAY | 0x01)
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#define INS_STRLOAD (INS_ARRAY | 0x02)
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#define INS_STRMOV (INS_ARRAY | 0x03)
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#define INS_STRSTOR (INS_ARRAY | 0x04)
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#define INS_XLAT (INS_ARRAY | 0x05)
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/* INS_BIT group */
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#define INS_BITTEST (INS_BIT | 0x01)
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#define INS_BITSET (INS_BIT | 0x02)
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#define INS_BITCLR (INS_BIT | 0x03)
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/* INS_FLAG group */
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#define INS_CLEARCF (INS_FLAG | 0x01) /* clear Carry flag */
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#define INS_CLEARZF (INS_FLAG | 0x02) /* clear Zero flag */
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#define INS_CLEAROF (INS_FLAG | 0x03) /* clear Overflow flag */
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#define INS_CLEARDF (INS_FLAG | 0x04) /* clear Direction flag */
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#define INS_CLEARSF (INS_FLAG | 0x05) /* clear Sign flag */
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#define INS_CLEARPF (INS_FLAG | 0x06) /* clear Parity flag */
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#define INS_SETCF (INS_FLAG | 0x07)
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#define INS_SETZF (INS_FLAG | 0x08)
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#define INS_SETOF (INS_FLAG | 0x09)
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#define INS_SETDF (INS_FLAG | 0x0A)
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#define INS_SETSF (INS_FLAG | 0x0B)
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#define INS_SETPF (INS_FLAG | 0x0C)
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#define INS_TOGCF (INS_FLAG | 0x10) /* toggle */
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#define INS_TOGZF (INS_FLAG | 0x20)
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#define INS_TOGOF (INS_FLAG | 0x30)
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#define INS_TOGDF (INS_FLAG | 0x40)
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#define INS_TOGSF (INS_FLAG | 0x50)
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#define INS_TOGPF (INS_FLAG | 0x60)
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/* INS_FPU */
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#define INS_FMOV (INS_FPU | 0x1)
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#define INS_FMOVCC (INS_FPU | 0x2)
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#define INS_FNEG (INS_FPU | 0x3)
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#define INS_FABS (INS_FPU | 0x4)
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#define INS_FADD (INS_FPU | 0x5)
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#define INS_FSUB (INS_FPU | 0x6)
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#define INS_FMUL (INS_FPU | 0x7)
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#define INS_FDIV (INS_FPU | 0x8)
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#define INS_FSQRT (INS_FPU | 0x9)
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#define INS_FCMP (INS_FPU | 0xA)
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#define INS_FCOS (INS_FPU | 0xC) /* cosine */
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#define INS_FLDPI (INS_FPU | 0xD) /* load pi */
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#define INS_FLDZ (INS_FPU | 0xE) /* load 0 */
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#define INS_FTAN (INS_FPU | 0xF) /* tanget */
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#define INS_FSINE (INS_FPU | 0x10) /* sine */
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#define INS_FSYS (INS_FPU | 0x20) /* misc */
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/* INS_TRAP */
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#define INS_TRAP (INS_TRAPS | 0x01) /* generate trap */
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#define INS_TRAPCC (INS_TRAPS | 0x02) /* conditional trap gen */
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#define INS_TRET (INS_TRAPS | 0x03) /* return from trap */
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#define INS_BOUNDS (INS_TRAPS | 0x04) /* gen bounds trap */
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#define INS_DEBUG (INS_TRAPS | 0x05) /* gen breakpoint trap */
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#define INS_TRACE (INS_TRAPS | 0x06) /* gen single step trap */
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#define INS_INVALIDOP (INS_TRAPS | 0x07) /* gen invalid insn */
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#define INS_OFLOW (INS_TRAPS | 0x08) /* gen overflow trap */
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#define INS_ICEBP (INS_TRAPS | 0x09) /* ICE breakpoint */
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/* INS_SYSTEM */
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#define INS_HALT (INS_SYSTEM | 0x01) /* halt machine */
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#define INS_IN (INS_SYSTEM | 0x02) /* input form port */
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#define INS_OUT (INS_SYSTEM | 0x03) /* output to port */
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#define INS_CPUID (INS_SYSTEM | 0x04) /* identify cpu */
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/* INS_OTHER */
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#define INS_NOP (INS_OTHER | 0x01)
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#define INS_BCDCONV (INS_OTHER | 0x02) /* convert to/from BCD */
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#define INS_SZCONV (INS_OTHER | 0x03) /* convert size of operand */
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#define INS_SALC (INS_OTHER | 0x04) /* set %al on carry */
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#define INS_UNKNOWN (INS_OTHER | 0x05)
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#define INS_TYPE_MASK 0xFFFF
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#define INS_TYPE( type ) ( type & INS_TYPE_MASK )
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/* flags effected by instruction */
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#define INS_TEST_CARRY 0x01 /* carry */
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#define INS_TEST_ZERO 0x02 /* zero/equal */
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#define INS_TEST_OFLOW 0x04 /* overflow */
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#define INS_TEST_DIR 0x08 /* direction */
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#define INS_TEST_SIGN 0x10 /* negative */
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#define INS_TEST_PARITY 0x20 /* parity */
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#define INS_TEST_OR 0x40 /* used in jle */
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#define INS_TEST_NCARRY 0x100 /* ! carry */
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#define INS_TEST_NZERO 0x200 /* ! zero */
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#define INS_TEST_NOFLOW 0x400 /* ! oflow */
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#define INS_TEST_NDIR 0x800 /* ! dir */
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#define INS_TEST_NSIGN 0x100 /* ! sign */
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#define INS_TEST_NPARITY 0x2000 /* ! parity */
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/* SF == OF */
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#define INS_TEST_SFEQOF 0x4000
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/* SF != OF */
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#define INS_TEST_SFNEOF 0x8000
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#define INS_TEST_ALL INS_TEST_CARRY | INS_TEST_ZERO | \
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INS_TEST_OFLOW | INS_TEST_SIGN | \
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INS_TEST_PARITY
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#define INS_SET_CARRY 0x010000 /* carry */
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#define INS_SET_ZERO 0x020000 /* zero/equal */
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#define INS_SET_OFLOW 0x040000 /* overflow */
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#define INS_SET_DIR 0x080000 /* direction */
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#define INS_SET_SIGN 0x100000 /* negative */
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#define INS_SET_PARITY 0x200000 /* parity */
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#define INS_SET_NCARRY 0x1000000
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#define INS_SET_NZERO 0x2000000
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#define INS_SET_NOFLOW 0x4000000
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#define INS_SET_NDIR 0x8000000
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#define INS_SET_NSIGN 0x10000000
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#define INS_SET_NPARITY 0x20000000
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#define INS_SET_SFEQOF 0x40000000
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#define INS_SET_SFNEOF 0x80000000
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#define INS_SET_ALL INS_SET_CARRY | INS_SET_ZERO | \
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INS_SET_OFLOW | INS_SET_SIGN | \
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INS_SET_PARITY
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#define INS_TEST_MASK 0x0000FFFF
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#define INS_FLAGS_TEST(x) (x & INS_TEST_MASK)
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#define INS_SET_MASK 0xFFFF0000
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#define INS_FLAGS_SET(x) (x & INS_SET_MASK)
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#if 0
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/* TODO: actually start using these */
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#define X86_PAIR_NP 1 /* not pairable; execs in U */
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#define X86_PAIR_PU 2 /* pairable in U pipe */
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#define X86_PAIR_PV 3 /* pairable in V pipe */
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#define X86_PAIR_UV 4 /* pairable in UV pipe */
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#define X86_PAIR_FX 5 /* pairable with FXCH */
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#define X86_EXEC_PORT_0 1
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#define X86_EXEC_PORT_1 2
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#define X86_EXEC_PORT_2 4
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#define X86_EXEC_PORT_3 8
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#define X86_EXEC_PORT_4 16
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#define X86_EXEC_UNITS
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typedef struct { /* representation of an insn during decoding */
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uint32_t flags; /* runtime settings */
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/* instruction prefixes and other foolishness */
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uint32_t prefix; /* encoding of prefix */
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char prefix_str[16]; /* mnemonics for prefix */
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uint32_t branch_hint; /* gah! */
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unsigned int cpu_ver; /* TODO: cpu version */
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unsigned int clocks; /* TODO: clock cycles: min/max */
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unsigned char last_prefix;
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/* runtime intruction decoding helpers */
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unsigned char mode; /* 16, 32, 64 */
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unsigned char gen_regs; /* offset of default general reg set */
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unsigned char sz_operand; /* operand size for insn */
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unsigned char sz_address; /* address size for insn */
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unsigned char uops; /* uops per insn */
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unsigned char pairing; /* np,pu,pv.lv */
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unsigned char exec_unit;
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unsigned char exec_port;
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unsigned char latency;
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} ia32_info_t;
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#define MODE_32 0 /* default */
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#define MODE_16 1
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#define MODE_64 2
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#endif
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#endif
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