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[/] [openrisc/] [trunk/] [gnu-src/] [gdb-6.8/] [opcodes/] [mep-desc.h] - Diff between revs 157 and 225

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Line 1... Line 1...
/* CPU data header for mep.
/* CPU data header for mep.
 
 
THIS FILE IS MACHINE GENERATED WITH CGEN.
THIS FILE IS MACHINE GENERATED WITH CGEN.
 
 
Copyright 1996-2007 Free Software Foundation, Inc.
Copyright 1996-2009 Free Software Foundation, Inc.
 
 
This file is part of the GNU Binutils and/or GDB, the GNU debugger.
This file is part of the GNU Binutils and/or GDB, the GNU debugger.
 
 
   This file is free software; you can redistribute it and/or modify
   This file is free software; you can redistribute it and/or modify
   it under the terms of the GNU General Public License as published by
   it under the terms of the GNU General Public License as published by
Line 49... Line 49...
#define CGEN_MAX_INSN_SIZE 4
#define CGEN_MAX_INSN_SIZE 4
 
 
#define CGEN_INT_INSN_P 1
#define CGEN_INT_INSN_P 1
 
 
/* Maximum number of syntax elements in an instruction.  */
/* Maximum number of syntax elements in an instruction.  */
#define CGEN_ACTUAL_MAX_SYNTAX_ELEMENTS 17
#define CGEN_ACTUAL_MAX_SYNTAX_ELEMENTS 22
 
 
/* CGEN_MNEMONIC_OPERANDS is defined if mnemonics have operands.
/* CGEN_MNEMONIC_OPERANDS is defined if mnemonics have operands.
   e.g. In "b,a foo" the ",a" is an operand.  If mnemonics have operands
   e.g. In "b,a foo" the ",a" is an operand.  If mnemonics have operands
   we can't hash on everything up to the space.  */
   we can't hash on everything up to the space.  */
#define CGEN_MNEMONIC_OPERANDS
#define CGEN_MNEMONIC_OPERANDS
 
 
/* Maximum number of fields in an instruction.  */
/* Maximum number of fields in an instruction.  */
#define CGEN_ACTUAL_MAX_IFMT_OPERANDS 11
#define CGEN_ACTUAL_MAX_IFMT_OPERANDS 10
 
 
/* Enums.  */
/* Enums.  */
 
 
/* Enum declaration for major opcodes.  */
/* Enum declaration for major opcodes.  */
typedef enum major {
typedef enum major {
Line 69... Line 69...
 , MAJ_4, MAJ_5, MAJ_6, MAJ_7
 , MAJ_4, MAJ_5, MAJ_6, MAJ_7
 , MAJ_8, MAJ_9, MAJ_10, MAJ_11
 , MAJ_8, MAJ_9, MAJ_10, MAJ_11
 , MAJ_12, MAJ_13, MAJ_14, MAJ_15
 , MAJ_12, MAJ_13, MAJ_14, MAJ_15
} MAJOR;
} MAJOR;
 
 
/* Enum declaration for condition opcode enum.  */
 
typedef enum fmax_cond {
 
  FMAX_F, FMAX_U, FMAX_E, FMAX_UE
 
 , FMAX_L, FMAX_UL, FMAX_LE, FMAX_ULE
 
 , FMAX_FI, FMAX_UI, FMAX_EI, FMAX_UEI
 
 , FMAX_LI, FMAX_ULI, FMAX_LEI, FMAX_ULEI
 
} FMAX_COND;
 
 
 
/* Attributes.  */
/* Attributes.  */
 
 
/* Enum declaration for machine type selection.  */
/* Enum declaration for machine type selection.  */
typedef enum mach_attr {
typedef enum mach_attr {
  MACH_BASE, MACH_MEP, MACH_H1, MACH_MAX
  MACH_BASE, MACH_MEP, MACH_H1, MACH_C5
 
 , MACH_MAX
} MACH_ATTR;
} MACH_ATTR;
 
 
/* Enum declaration for instruction set selection.  */
/* Enum declaration for instruction set selection.  */
typedef enum isa_attr {
typedef enum isa_attr {
  ISA_MEP, ISA_EXT_CORE1, ISA_EXT_CORE2, ISA_EXT_COP2_16
  ISA_MEP, ISA_EXT_CORE1, ISA_EXT_COP1_16, ISA_EXT_COP1_32
 , ISA_EXT_COP2_32, ISA_EXT_COP2_48, ISA_EXT_COP2_64, ISA_MAX
 , ISA_EXT_COP1_48, ISA_EXT_COP1_64, ISA_MAX
} ISA_ATTR;
} ISA_ATTR;
 
 
/* Enum declaration for datatype to use for C intrinsics mapping.  */
/* Enum declaration for datatype to use for C intrinsics mapping.  */
typedef enum cdata_attr {
typedef enum cdata_attr {
  CDATA_LABEL, CDATA_REGNUM, CDATA_FMAX_FLOAT, CDATA_FMAX_INT
  CDATA_LABEL, CDATA_REGNUM, CDATA_FMAX_FLOAT, CDATA_FMAX_INT
 , CDATA_POINTER, CDATA_LONG, CDATA_ULONG, CDATA_SHORT
 , CDATA_POINTER, CDATA_LONG, CDATA_ULONG, CDATA_SHORT
 , CDATA_USHORT, CDATA_CHAR, CDATA_UCHAR, CDATA_CP_DATA_BUS_INT
 , CDATA_USHORT, CDATA_CHAR, CDATA_UCHAR, CDATA_CP_DATA_BUS_INT
} CDATA_ATTR;
} CDATA_ATTR;
 
 
 
/* Enum declaration for datatype to use for coprocessor values.  */
 
typedef enum cptype_attr {
 
  CPTYPE_CP_DATA_BUS_INT, CPTYPE_VECT, CPTYPE_V2SI, CPTYPE_V4HI
 
 , CPTYPE_V8QI, CPTYPE_V2USI, CPTYPE_V4UHI, CPTYPE_V8UQI
 
} CPTYPE_ATTR;
 
 
 
/* Enum declaration for Insn's intrinsic returns void, or the first argument rather than (or in addition to) passing it..  */
 
typedef enum cret_attr {
 
  CRET_VOID, CRET_FIRST, CRET_FIRSTCOPY
 
} CRET_ATTR;
 
 
/* Enum declaration for .  */
/* Enum declaration for .  */
typedef enum config_attr {
typedef enum config_attr {
  CONFIG_NONE, CONFIG_SIMPLE, CONFIG_FMAX
  CONFIG_NONE, CONFIG_DEFAULT
} CONFIG_ATTR;
} CONFIG_ATTR;
 
 
 
/* Enum declaration for slots for which this opcode is valid - c3, p0s, p0, p1.  */
 
typedef enum slots_attr {
 
  SLOTS_CORE, SLOTS_C3, SLOTS_P0S, SLOTS_P0
 
 , SLOTS_P1
 
} SLOTS_ATTR;
 
 
/* Number of architecture variants.  */
/* Number of architecture variants.  */
#define MAX_ISAS  ((int) ISA_MAX)
#define MAX_ISAS  ((int) ISA_MAX)
#define MAX_MACHS ((int) MACH_MAX)
#define MAX_MACHS ((int) MACH_MAX)
 
 
/* Ifield support.  */
/* Ifield support.  */
Line 134... Line 144...
 
 
/* Enum declaration for mep ifield types.  */
/* Enum declaration for mep ifield types.  */
typedef enum ifield_type {
typedef enum ifield_type {
  MEP_F_NIL, MEP_F_ANYOF, MEP_F_MAJOR, MEP_F_RN
  MEP_F_NIL, MEP_F_ANYOF, MEP_F_MAJOR, MEP_F_RN
 , MEP_F_RN3, MEP_F_RM, MEP_F_RL, MEP_F_SUB2
 , MEP_F_RN3, MEP_F_RM, MEP_F_RL, MEP_F_SUB2
 , MEP_F_SUB3, MEP_F_SUB4, MEP_F_EXT, MEP_F_CRN
 , MEP_F_SUB3, MEP_F_SUB4, MEP_F_EXT, MEP_F_EXT4
 , MEP_F_CSRN_HI, MEP_F_CSRN_LO, MEP_F_CSRN, MEP_F_CRNX_HI
 , MEP_F_EXT62, MEP_F_CRN, MEP_F_CSRN_HI, MEP_F_CSRN_LO
 , MEP_F_CRNX_LO, MEP_F_CRNX, MEP_F_0, MEP_F_1
 , MEP_F_CSRN, MEP_F_CRNX_HI, MEP_F_CRNX_LO, MEP_F_CRNX
 , MEP_F_2, MEP_F_3, MEP_F_4, MEP_F_5
 , MEP_F_0, MEP_F_1, MEP_F_2, MEP_F_3
 , MEP_F_6, MEP_F_7, MEP_F_8, MEP_F_9
 , MEP_F_4, MEP_F_5, MEP_F_6, MEP_F_7
 , MEP_F_10, MEP_F_11, MEP_F_12, MEP_F_13
 , MEP_F_8, MEP_F_9, MEP_F_10, MEP_F_11
 , MEP_F_14, MEP_F_15, MEP_F_16, MEP_F_17
 , MEP_F_12, MEP_F_13, MEP_F_14, MEP_F_15
 , MEP_F_18, MEP_F_19, MEP_F_20, MEP_F_21
 , MEP_F_16, MEP_F_17, MEP_F_18, MEP_F_19
 , MEP_F_22, MEP_F_23, MEP_F_24, MEP_F_25
 , MEP_F_20, MEP_F_21, MEP_F_22, MEP_F_23
 , MEP_F_26, MEP_F_27, MEP_F_28, MEP_F_29
 , MEP_F_24, MEP_F_25, MEP_F_26, MEP_F_27
 , MEP_F_30, MEP_F_31, MEP_F_8S8A2, MEP_F_12S4A2
 , MEP_F_28, MEP_F_29, MEP_F_30, MEP_F_31
 , MEP_F_17S16A2, MEP_F_24S5A2N_HI, MEP_F_24S5A2N_LO, MEP_F_24S5A2N
 , MEP_F_8S8A2, MEP_F_12S4A2, MEP_F_17S16A2, MEP_F_24S5A2N_HI
 , MEP_F_24U5A2N_HI, MEP_F_24U5A2N_LO, MEP_F_24U5A2N, MEP_F_2U6
 , MEP_F_24S5A2N_LO, MEP_F_24S5A2N, MEP_F_24U5A2N_HI, MEP_F_24U5A2N_LO
 , MEP_F_7U9, MEP_F_7U9A2, MEP_F_7U9A4, MEP_F_16S16
 , MEP_F_24U5A2N, MEP_F_2U6, MEP_F_7U9, MEP_F_7U9A2
 , MEP_F_2U10, MEP_F_3U5, MEP_F_4U8, MEP_F_5U8
 , MEP_F_7U9A4, MEP_F_16S16, MEP_F_2U10, MEP_F_3U5
 , MEP_F_5U24, MEP_F_6S8, MEP_F_8S8, MEP_F_16U16
 , MEP_F_4U8, MEP_F_5U8, MEP_F_5U24, MEP_F_6S8
 , MEP_F_12U16, MEP_F_3U29, MEP_F_8S24, MEP_F_8S24A2
 , MEP_F_8S8, MEP_F_16U16, MEP_F_12U16, MEP_F_3U29
 , MEP_F_8S24A4, MEP_F_8S24A8, MEP_F_24U8A4N_HI, MEP_F_24U8A4N_LO
 , MEP_F_CDISP10, MEP_F_24U8A4N_HI, MEP_F_24U8A4N_LO, MEP_F_24U8A4N
 , MEP_F_24U8A4N, MEP_F_24U8N_HI, MEP_F_24U8N_LO, MEP_F_24U8N
 , MEP_F_24U8N_HI, MEP_F_24U8N_LO, MEP_F_24U8N, MEP_F_24U4N_HI
 , MEP_F_24U4N_HI, MEP_F_24U4N_LO, MEP_F_24U4N, MEP_F_CALLNUM
 , MEP_F_24U4N_LO, MEP_F_24U4N, MEP_F_CALLNUM, MEP_F_CCRN_HI
 , MEP_F_CCRN_HI, MEP_F_CCRN_LO, MEP_F_CCRN, MEP_F_FMAX_0_4
 , MEP_F_CCRN_LO, MEP_F_CCRN, MEP_F_C5N4, MEP_F_C5N5
 , MEP_F_FMAX_4_4, MEP_F_FMAX_8_4, MEP_F_FMAX_12_4, MEP_F_FMAX_16_4
 , MEP_F_C5N6, MEP_F_C5N7, MEP_F_RL5, MEP_F_12S20
 , MEP_F_FMAX_20_4, MEP_F_FMAX_24_4, MEP_F_FMAX_28_1, MEP_F_FMAX_29_1
 , MEP_F_C5_RNM, MEP_F_C5_RM, MEP_F_C5_16U16, MEP_F_C5_RMUIMM20
 , MEP_F_FMAX_30_1, MEP_F_FMAX_31_1, MEP_F_FMAX_FRD, MEP_F_FMAX_FRN
 , MEP_F_C5_RNMUIMM24, MEP_F_IVC2_2U4, MEP_F_IVC2_3U4, MEP_F_IVC2_8U4
 , MEP_F_FMAX_FRM, MEP_F_FMAX_RM, MEP_F_MAX
 , MEP_F_IVC2_8S4, MEP_F_IVC2_1U6, MEP_F_IVC2_2U6, MEP_F_IVC2_3U6
 
 , MEP_F_IVC2_6U6, MEP_F_IVC2_5U7, MEP_F_IVC2_4U8, MEP_F_IVC2_3U9
 
 , MEP_F_IVC2_5U16, MEP_F_IVC2_5U21, MEP_F_IVC2_5U26, MEP_F_IVC2_1U31
 
 , MEP_F_IVC2_4U16, MEP_F_IVC2_4U20, MEP_F_IVC2_4U24, MEP_F_IVC2_4U28
 
 , MEP_F_IVC2_2U0, MEP_F_IVC2_3U0, MEP_F_IVC2_4U0, MEP_F_IVC2_5U0
 
 , MEP_F_IVC2_8U0, MEP_F_IVC2_8S0, MEP_F_IVC2_6U2, MEP_F_IVC2_5U3
 
 , MEP_F_IVC2_4U4, MEP_F_IVC2_3U5, MEP_F_IVC2_5U8, MEP_F_IVC2_4U10
 
 , MEP_F_IVC2_3U12, MEP_F_IVC2_5U13, MEP_F_IVC2_2U18, MEP_F_IVC2_5U18
 
 , MEP_F_IVC2_8U20, MEP_F_IVC2_8S20, MEP_F_IVC2_5U23, MEP_F_IVC2_2U23
 
 , MEP_F_IVC2_3U25, MEP_F_IVC2_IMM16P0, MEP_F_IVC2_SIMM16P0, MEP_F_IVC2_CCRN_C3HI
 
 , MEP_F_IVC2_CCRN_C3LO, MEP_F_IVC2_CRN, MEP_F_IVC2_CRM, MEP_F_IVC2_CCRN_H1
 
 , MEP_F_IVC2_CCRN_H2, MEP_F_IVC2_CCRN_LO, MEP_F_IVC2_CMOV1, MEP_F_IVC2_CMOV2
 
 , MEP_F_IVC2_CMOV3, MEP_F_IVC2_CCRN_C3, MEP_F_IVC2_CCRN, MEP_F_IVC2_CRNX
 
 , MEP_F_MAX
} IFIELD_TYPE;
} IFIELD_TYPE;
 
 
#define MAX_IFLD ((int) MEP_F_MAX)
#define MAX_IFLD ((int) MEP_F_MAX)
 
 
/* Hardware attribute indices.  */
/* Hardware attribute indices.  */
Line 188... Line 211...
 
 
/* Enum declaration for mep hardware types.  */
/* Enum declaration for mep hardware types.  */
typedef enum cgen_hw_type {
typedef enum cgen_hw_type {
  HW_H_MEMORY, HW_H_SINT, HW_H_UINT, HW_H_ADDR
  HW_H_MEMORY, HW_H_SINT, HW_H_UINT, HW_H_ADDR
 , HW_H_IADDR, HW_H_PC, HW_H_GPR, HW_H_CSR
 , HW_H_IADDR, HW_H_PC, HW_H_GPR, HW_H_CSR
 , HW_H_CR64, HW_H_CR, HW_H_CCR, HW_H_CR_FMAX
 , HW_H_CR64, HW_H_CR64_W, HW_H_CR, HW_H_CCR
 , HW_H_CCR_FMAX, HW_H_FMAX_COMPARE_I_P, HW_MAX
 , HW_H_CCR_W, HW_H_CR_IVC2, HW_H_CCR_IVC2, HW_MAX
} CGEN_HW_TYPE;
} CGEN_HW_TYPE;
 
 
#define MAX_HW ((int) HW_MAX)
#define MAX_HW ((int) HW_MAX)
 
 
/* Operand attribute indices.  */
/* Operand attribute indices.  */
Line 242... Line 265...
 , MEP_OPERAND_SDISP16, MEP_OPERAND_SIMM16, MEP_OPERAND_UIMM16, MEP_OPERAND_CODE16
 , MEP_OPERAND_SDISP16, MEP_OPERAND_SIMM16, MEP_OPERAND_UIMM16, MEP_OPERAND_CODE16
 , MEP_OPERAND_UDISP2, MEP_OPERAND_UIMM2, MEP_OPERAND_SIMM6, MEP_OPERAND_SIMM8
 , MEP_OPERAND_UDISP2, MEP_OPERAND_UIMM2, MEP_OPERAND_SIMM6, MEP_OPERAND_SIMM8
 , MEP_OPERAND_ADDR24A4, MEP_OPERAND_CODE24, MEP_OPERAND_CALLNUM, MEP_OPERAND_UIMM3
 , MEP_OPERAND_ADDR24A4, MEP_OPERAND_CODE24, MEP_OPERAND_CALLNUM, MEP_OPERAND_UIMM3
 , MEP_OPERAND_UIMM4, MEP_OPERAND_UIMM5, MEP_OPERAND_UDISP7, MEP_OPERAND_UDISP7A2
 , MEP_OPERAND_UIMM4, MEP_OPERAND_UIMM5, MEP_OPERAND_UDISP7, MEP_OPERAND_UDISP7A2
 , MEP_OPERAND_UDISP7A4, MEP_OPERAND_UIMM7A4, MEP_OPERAND_UIMM24, MEP_OPERAND_CIMM4
 , MEP_OPERAND_UDISP7A4, MEP_OPERAND_UIMM7A4, MEP_OPERAND_UIMM24, MEP_OPERAND_CIMM4
 , MEP_OPERAND_CIMM5, MEP_OPERAND_CDISP8, MEP_OPERAND_CDISP8A2, MEP_OPERAND_CDISP8A4
 , MEP_OPERAND_CIMM5, MEP_OPERAND_CDISP10, MEP_OPERAND_CDISP10A2, MEP_OPERAND_CDISP10A4
 , MEP_OPERAND_CDISP8A8, MEP_OPERAND_ZERO, MEP_OPERAND_CP_FLAG, MEP_OPERAND_FMAX_FRD
 , MEP_OPERAND_CDISP10A8, MEP_OPERAND_ZERO, MEP_OPERAND_RL5, MEP_OPERAND_CDISP12
 , MEP_OPERAND_FMAX_FRN, MEP_OPERAND_FMAX_FRM, MEP_OPERAND_FMAX_FRD_INT, MEP_OPERAND_FMAX_FRN_INT
 , MEP_OPERAND_C5RMUIMM20, MEP_OPERAND_C5RNMUIMM24, MEP_OPERAND_CP_FLAG, MEP_OPERAND_IVC2_CSAR0
 , MEP_OPERAND_FMAX_CCRN, MEP_OPERAND_FMAX_CIRR, MEP_OPERAND_FMAX_CBCR, MEP_OPERAND_FMAX_CERR
 , MEP_OPERAND_IVC2_CC, MEP_OPERAND_IVC2_COFR0, MEP_OPERAND_IVC2_COFR1, MEP_OPERAND_IVC2_COFA0
 , MEP_OPERAND_FMAX_RM, MEP_OPERAND_FMAX_COMPARE_I_P, MEP_OPERAND_MAX
 , MEP_OPERAND_IVC2_COFA1, MEP_OPERAND_IVC2_CSAR1, MEP_OPERAND_IVC2_ACC0_0, MEP_OPERAND_IVC2_ACC0_1
 
 , MEP_OPERAND_IVC2_ACC0_2, MEP_OPERAND_IVC2_ACC0_3, MEP_OPERAND_IVC2_ACC0_4, MEP_OPERAND_IVC2_ACC0_5
 
 , MEP_OPERAND_IVC2_ACC0_6, MEP_OPERAND_IVC2_ACC0_7, MEP_OPERAND_IVC2_ACC1_0, MEP_OPERAND_IVC2_ACC1_1
 
 , MEP_OPERAND_IVC2_ACC1_2, MEP_OPERAND_IVC2_ACC1_3, MEP_OPERAND_IVC2_ACC1_4, MEP_OPERAND_IVC2_ACC1_5
 
 , MEP_OPERAND_IVC2_ACC1_6, MEP_OPERAND_IVC2_ACC1_7, MEP_OPERAND_CROC, MEP_OPERAND_CRQC
 
 , MEP_OPERAND_CRPC, MEP_OPERAND_IVC_X_6_1, MEP_OPERAND_IVC_X_6_2, MEP_OPERAND_IVC_X_6_3
 
 , MEP_OPERAND_IMM3P4, MEP_OPERAND_IMM3P9, MEP_OPERAND_IMM4P8, MEP_OPERAND_IMM5P7
 
 , MEP_OPERAND_IMM6P6, MEP_OPERAND_IMM8P4, MEP_OPERAND_SIMM8P4, MEP_OPERAND_IMM3P5
 
 , MEP_OPERAND_IMM3P12, MEP_OPERAND_IMM4P4, MEP_OPERAND_IMM4P10, MEP_OPERAND_IMM5P8
 
 , MEP_OPERAND_IMM5P3, MEP_OPERAND_IMM6P2, MEP_OPERAND_IMM5P23, MEP_OPERAND_IMM3P25
 
 , MEP_OPERAND_IMM8P0, MEP_OPERAND_SIMM8P0, MEP_OPERAND_SIMM8P20, MEP_OPERAND_IMM8P20
 
 , MEP_OPERAND_CROP, MEP_OPERAND_CRQP, MEP_OPERAND_CRPP, MEP_OPERAND_IVC_X_0_2
 
 , MEP_OPERAND_IVC_X_0_3, MEP_OPERAND_IVC_X_0_4, MEP_OPERAND_IVC_X_0_5, MEP_OPERAND_IMM16P0
 
 , MEP_OPERAND_SIMM16P0, MEP_OPERAND_IVC2RM, MEP_OPERAND_IVC2CRN, MEP_OPERAND_IVC2CCRN
 
 , MEP_OPERAND_IVC2C3CCRN, MEP_OPERAND_MAX
} CGEN_OPERAND_TYPE;
} CGEN_OPERAND_TYPE;
 
 
/* Number of operands types.  */
/* Number of operands types.  */
#define MAX_OPERANDS 90
#define MAX_OPERANDS 145
 
 
/* Maximum number of operands referenced by any insn.  */
/* Maximum number of operands referenced by any insn.  */
#define MAX_OPERAND_INSTANCES 8
#define MAX_OPERAND_INSTANCES 8
 
 
/* Insn attribute indices.  */
/* Insn attribute indices.  */
Line 268... Line 305...
 , CGEN_INSN_OPTIONAL_AVE_INSN, CGEN_INSN_OPTIONAL_MINMAX_INSN, CGEN_INSN_OPTIONAL_CLIP_INSN, CGEN_INSN_OPTIONAL_SAT_INSN
 , CGEN_INSN_OPTIONAL_AVE_INSN, CGEN_INSN_OPTIONAL_MINMAX_INSN, CGEN_INSN_OPTIONAL_CLIP_INSN, CGEN_INSN_OPTIONAL_SAT_INSN
 , CGEN_INSN_OPTIONAL_UCI_INSN, CGEN_INSN_OPTIONAL_DSP_INSN, CGEN_INSN_OPTIONAL_CP_INSN, CGEN_INSN_OPTIONAL_CP64_INSN
 , CGEN_INSN_OPTIONAL_UCI_INSN, CGEN_INSN_OPTIONAL_DSP_INSN, CGEN_INSN_OPTIONAL_CP_INSN, CGEN_INSN_OPTIONAL_CP64_INSN
 , CGEN_INSN_OPTIONAL_VLIW64, CGEN_INSN_MAY_TRAP, CGEN_INSN_VLIW_ALONE, CGEN_INSN_VLIW_NO_CORE_NOP
 , CGEN_INSN_OPTIONAL_VLIW64, CGEN_INSN_MAY_TRAP, CGEN_INSN_VLIW_ALONE, CGEN_INSN_VLIW_NO_CORE_NOP
 , CGEN_INSN_VLIW_NO_COP_NOP, CGEN_INSN_VLIW64_NO_MATCHING_NOP, CGEN_INSN_VLIW32_NO_MATCHING_NOP, CGEN_INSN_VOLATILE
 , CGEN_INSN_VLIW_NO_COP_NOP, CGEN_INSN_VLIW64_NO_MATCHING_NOP, CGEN_INSN_VLIW32_NO_MATCHING_NOP, CGEN_INSN_VOLATILE
 , CGEN_INSN_END_BOOLS, CGEN_INSN_START_NBOOLS = 31, CGEN_INSN_MACH, CGEN_INSN_ISA
 , CGEN_INSN_END_BOOLS, CGEN_INSN_START_NBOOLS = 31, CGEN_INSN_MACH, CGEN_INSN_ISA
 , CGEN_INSN_LATENCY, CGEN_INSN_CONFIG, CGEN_INSN_END_NBOOLS
 , CGEN_INSN_CPTYPE, CGEN_INSN_CRET, CGEN_INSN_LATENCY, CGEN_INSN_CONFIG
 
 , CGEN_INSN_SLOTS, CGEN_INSN_END_NBOOLS
} CGEN_INSN_ATTR;
} CGEN_INSN_ATTR;
 
 
/* Number of non-boolean elements in cgen_insn_attr.  */
/* Number of non-boolean elements in cgen_insn_attr.  */
#define CGEN_INSN_NBOOL_ATTRS (CGEN_INSN_END_NBOOLS - CGEN_INSN_START_NBOOLS - 1)
#define CGEN_INSN_NBOOL_ATTRS (CGEN_INSN_END_NBOOLS - CGEN_INSN_START_NBOOLS - 1)
 
 
/* cgen_insn attribute accessor macros.  */
/* cgen_insn attribute accessor macros.  */
#define CGEN_ATTR_CGEN_INSN_MACH_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_MACH-CGEN_INSN_START_NBOOLS-1].nonbitset)
#define CGEN_ATTR_CGEN_INSN_MACH_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_MACH-CGEN_INSN_START_NBOOLS-1].nonbitset)
#define CGEN_ATTR_CGEN_INSN_ISA_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_ISA-CGEN_INSN_START_NBOOLS-1].bitset)
#define CGEN_ATTR_CGEN_INSN_ISA_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_ISA-CGEN_INSN_START_NBOOLS-1].bitset)
 
#define CGEN_ATTR_CGEN_INSN_CPTYPE_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_CPTYPE-CGEN_INSN_START_NBOOLS-1].nonbitset)
 
#define CGEN_ATTR_CGEN_INSN_CRET_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_CRET-CGEN_INSN_START_NBOOLS-1].nonbitset)
#define CGEN_ATTR_CGEN_INSN_LATENCY_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_LATENCY-CGEN_INSN_START_NBOOLS-1].nonbitset)
#define CGEN_ATTR_CGEN_INSN_LATENCY_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_LATENCY-CGEN_INSN_START_NBOOLS-1].nonbitset)
#define CGEN_ATTR_CGEN_INSN_CONFIG_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_CONFIG-CGEN_INSN_START_NBOOLS-1].nonbitset)
#define CGEN_ATTR_CGEN_INSN_CONFIG_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_CONFIG-CGEN_INSN_START_NBOOLS-1].nonbitset)
 
#define CGEN_ATTR_CGEN_INSN_SLOTS_VALUE(attrs) ((attrs)->nonbool[CGEN_INSN_SLOTS-CGEN_INSN_START_NBOOLS-1].nonbitset)
#define CGEN_ATTR_CGEN_INSN_ALIAS_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_ALIAS)) != 0)
#define CGEN_ATTR_CGEN_INSN_ALIAS_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_ALIAS)) != 0)
#define CGEN_ATTR_CGEN_INSN_VIRTUAL_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_VIRTUAL)) != 0)
#define CGEN_ATTR_CGEN_INSN_VIRTUAL_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_VIRTUAL)) != 0)
#define CGEN_ATTR_CGEN_INSN_UNCOND_CTI_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_UNCOND_CTI)) != 0)
#define CGEN_ATTR_CGEN_INSN_UNCOND_CTI_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_UNCOND_CTI)) != 0)
#define CGEN_ATTR_CGEN_INSN_COND_CTI_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_COND_CTI)) != 0)
#define CGEN_ATTR_CGEN_INSN_COND_CTI_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_COND_CTI)) != 0)
#define CGEN_ATTR_CGEN_INSN_SKIP_CTI_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_SKIP_CTI)) != 0)
#define CGEN_ATTR_CGEN_INSN_SKIP_CTI_VALUE(attrs) (((attrs)->bool & (1 << CGEN_INSN_SKIP_CTI)) != 0)
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extern CGEN_KEYWORD mep_cgen_opval_h_gpr;
extern CGEN_KEYWORD mep_cgen_opval_h_gpr;
extern CGEN_KEYWORD mep_cgen_opval_h_csr;
extern CGEN_KEYWORD mep_cgen_opval_h_csr;
extern CGEN_KEYWORD mep_cgen_opval_h_cr64;
extern CGEN_KEYWORD mep_cgen_opval_h_cr64;
extern CGEN_KEYWORD mep_cgen_opval_h_cr;
extern CGEN_KEYWORD mep_cgen_opval_h_cr;
extern CGEN_KEYWORD mep_cgen_opval_h_ccr;
extern CGEN_KEYWORD mep_cgen_opval_h_ccr;
extern CGEN_KEYWORD mep_cgen_opval_h_cr_fmax;
extern CGEN_KEYWORD mep_cgen_opval_h_cr_ivc2;
extern CGEN_KEYWORD mep_cgen_opval_h_ccr_fmax;
extern CGEN_KEYWORD mep_cgen_opval_h_ccr_ivc2;
 
 
extern const CGEN_HW_ENTRY mep_cgen_hw_table[];
extern const CGEN_HW_ENTRY mep_cgen_hw_table[];
 
 
 
 
 
 

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