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684 |
jeremybenn |
/* Definitions for code generation pass of GNU compiler.
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Copyright (C) 2001, 2002, 2003, 2004, 2005, 2006, 2007, 2008, 2009, 2010
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Free Software Foundation, Inc.
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This file is part of GCC.
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GCC is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 3, or (at your option)
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any later version.
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GCC is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with GCC; see the file COPYING3. If not see
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<http://www.gnu.org/licenses/>. */
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#ifndef GCC_OPTABS_H
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#define GCC_OPTABS_H
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#include "insn-codes.h"
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/* Optabs are tables saying how to generate insn bodies
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for various machine modes and numbers of operands.
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Each optab applies to one operation.
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For example, add_optab applies to addition.
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The `lib_call' slot is the name of the library function that
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can be used to perform the operation.
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A few optabs, such as move_optab, are used by special code. */
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struct optab_handlers
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{
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/* I - CODE_FOR_nothing, where I is either the insn code of the
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associated insn generator or CODE_FOR_nothing if there is no such
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insn on the target machine. */
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int insn_code;
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};
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struct widening_optab_handlers
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{
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struct optab_handlers handlers[NUM_MACHINE_MODES][NUM_MACHINE_MODES];
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};
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struct optab_d
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{
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enum rtx_code code;
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char libcall_suffix;
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const char *libcall_basename;
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void (*libcall_gen)(struct optab_d *, const char *name, char suffix,
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enum machine_mode);
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struct optab_handlers handlers[NUM_MACHINE_MODES];
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struct widening_optab_handlers *widening;
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};
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typedef struct optab_d * optab;
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/* A convert_optab is for some sort of conversion operation between
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modes. The first array index is the destination mode, the second
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is the source mode. */
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struct convert_optab_d
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{
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enum rtx_code code;
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const char *libcall_basename;
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void (*libcall_gen)(struct convert_optab_d *, const char *name,
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enum machine_mode,
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enum machine_mode);
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struct optab_handlers handlers[NUM_MACHINE_MODES][NUM_MACHINE_MODES];
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};
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typedef struct convert_optab_d *convert_optab;
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/* Given an enum insn_code, access the function to construct
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the body of that kind of insn. */
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#define GEN_FCN(CODE) (insn_data[CODE].genfun)
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/* Enumeration of valid indexes into optab_table. */
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enum optab_index
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{
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/* Fixed-point operators with signed/unsigned saturation */
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OTI_ssadd,
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OTI_usadd,
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OTI_sssub,
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OTI_ussub,
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OTI_ssmul,
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OTI_usmul,
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OTI_ssdiv,
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OTI_usdiv,
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OTI_ssneg,
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OTI_usneg,
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OTI_ssashl,
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OTI_usashl,
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OTI_add,
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OTI_addv,
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OTI_sub,
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OTI_subv,
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/* Signed and fp multiply */
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OTI_smul,
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OTI_smulv,
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/* Signed multiply, return high word */
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OTI_smul_highpart,
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OTI_umul_highpart,
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/* Signed multiply with result one machine mode wider than args */
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OTI_smul_widen,
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OTI_umul_widen,
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/* Widening multiply of one unsigned and one signed operand. */
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OTI_usmul_widen,
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/* Signed multiply and add with the result and addend one machine mode
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wider than the multiplicand and multiplier. */
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OTI_smadd_widen,
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/* Unsigned multiply and add with the result and addend one machine mode
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wider than the multiplicand and multiplier. */
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OTI_umadd_widen,
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/* Signed multiply and add with the result and addend one machine mode
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wider than the multiplicand and multiplier.
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All involved operations are saturating. */
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OTI_ssmadd_widen,
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/* Unsigned multiply and add with the result and addend one machine mode
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wider than the multiplicand and multiplier.
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All involved operations are saturating. */
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OTI_usmadd_widen,
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/* Signed multiply and subtract the result and minuend one machine mode
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wider than the multiplicand and multiplier. */
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OTI_smsub_widen,
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/* Unsigned multiply and subtract the result and minuend one machine mode
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wider than the multiplicand and multiplier. */
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OTI_umsub_widen,
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/* Signed multiply and subtract the result and minuend one machine mode
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wider than the multiplicand and multiplier.
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All involved operations are saturating. */
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OTI_ssmsub_widen,
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/* Unsigned multiply and subtract the result and minuend one machine mode
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wider than the multiplicand and multiplier.
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All involved operations are saturating. */
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OTI_usmsub_widen,
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/* Signed divide */
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OTI_sdiv,
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OTI_sdivv,
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/* Signed divide-and-remainder in one */
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OTI_sdivmod,
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OTI_udiv,
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OTI_udivmod,
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/* Signed remainder */
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OTI_smod,
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OTI_umod,
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/* Floating point remainder functions */
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OTI_fmod,
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OTI_remainder,
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/* Convert float to integer in float fmt */
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OTI_ftrunc,
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/* Logical and */
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OTI_and,
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/* Logical or */
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OTI_ior,
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/* Logical xor */
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OTI_xor,
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/* Arithmetic shift left */
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OTI_ashl,
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/* Logical shift right */
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OTI_lshr,
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/* Arithmetic shift right */
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OTI_ashr,
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/* Rotate left */
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OTI_rotl,
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/* Rotate right */
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OTI_rotr,
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/* Arithmetic shift left of vector by vector */
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OTI_vashl,
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/* Logical shift right of vector by vector */
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OTI_vlshr,
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/* Arithmetic shift right of vector by vector */
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OTI_vashr,
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/* Rotate left of vector by vector */
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OTI_vrotl,
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/* Rotate right of vector by vector */
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OTI_vrotr,
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/* Signed and floating-point minimum value */
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OTI_smin,
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/* Signed and floating-point maximum value */
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OTI_smax,
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/* Unsigned minimum value */
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OTI_umin,
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/* Unsigned maximum value */
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OTI_umax,
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/* Power */
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OTI_pow,
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/* Arc tangent of y/x */
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OTI_atan2,
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/* Floating multiply/add */
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OTI_fma,
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OTI_fms,
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OTI_fnma,
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OTI_fnms,
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/* Move instruction. */
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OTI_mov,
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/* Move, preserving high part of register. */
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OTI_movstrict,
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/* Move, with a misaligned memory. */
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OTI_movmisalign,
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/* Nontemporal store. */
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OTI_storent,
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/* Unary operations */
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/* Negation */
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OTI_neg,
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OTI_negv,
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/* Abs value */
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OTI_abs,
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OTI_absv,
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/* Byteswap */
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OTI_bswap,
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/* Bitwise not */
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OTI_one_cmpl,
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/* Bit scanning and counting */
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OTI_ffs,
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OTI_clz,
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OTI_ctz,
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OTI_clrsb,
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OTI_popcount,
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OTI_parity,
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/* Square root */
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OTI_sqrt,
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/* Sine-Cosine */
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OTI_sincos,
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/* Sine */
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OTI_sin,
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/* Inverse sine */
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OTI_asin,
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/* Cosine */
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OTI_cos,
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/* Inverse cosine */
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OTI_acos,
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/* Exponential */
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OTI_exp,
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/* Base-10 Exponential */
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OTI_exp10,
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/* Base-2 Exponential */
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OTI_exp2,
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/* Exponential - 1*/
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OTI_expm1,
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/* Load exponent of a floating point number */
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OTI_ldexp,
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/* Multiply floating-point number by integral power of radix */
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OTI_scalb,
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/* Mantissa of a floating-point number */
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OTI_significand,
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/* Radix-independent exponent */
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OTI_logb,
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OTI_ilogb,
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/* Natural Logarithm */
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OTI_log,
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/* Base-10 Logarithm */
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OTI_log10,
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/* Base-2 Logarithm */
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OTI_log2,
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/* logarithm of 1 plus argument */
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OTI_log1p,
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/* Rounding functions */
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OTI_floor,
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OTI_ceil,
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OTI_btrunc,
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OTI_round,
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OTI_nearbyint,
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OTI_rint,
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/* Tangent */
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OTI_tan,
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/* Inverse tangent */
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OTI_atan,
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/* Copy sign */
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OTI_copysign,
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/* Signbit */
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OTI_signbit,
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/* Test for infinite value */
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OTI_isinf,
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/* Compare insn; two operands. Used only for libcalls. */
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OTI_cmp,
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OTI_ucmp,
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/* Floating point comparison optabs - used primarily for libfuncs */
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OTI_eq,
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OTI_ne,
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OTI_gt,
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OTI_ge,
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OTI_lt,
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OTI_le,
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OTI_unord,
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/* String length */
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OTI_strlen,
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/* Combined compare & jump/move/store flags/trap operations. */
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OTI_cbranch,
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OTI_cmov,
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OTI_cstore,
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OTI_ctrap,
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/* Push instruction. */
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OTI_push,
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/* Conditional add instruction. */
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OTI_addcc,
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/* Reduction operations on a vector operand. */
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OTI_reduc_smax,
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OTI_reduc_umax,
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OTI_reduc_smin,
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OTI_reduc_umin,
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OTI_reduc_splus,
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OTI_reduc_uplus,
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/* Summation, with result machine mode one or more wider than args. */
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OTI_ssum_widen,
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OTI_usum_widen,
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/* Dot product, with result machine mode one or more wider than args. */
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OTI_sdot_prod,
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OTI_udot_prod,
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/* Set specified field of vector operand. */
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OTI_vec_set,
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/* Extract specified field of vector operand. */
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OTI_vec_extract,
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/* Initialize vector operand. */
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OTI_vec_init,
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/* Whole vector shift. The shift amount is in bits. */
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OTI_vec_shl,
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OTI_vec_shr,
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/* Extract specified elements from vectors, for vector load. */
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OTI_vec_realign_load,
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/* Widening multiplication.
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The high/low part of the resulting vector of products is returned. */
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OTI_vec_widen_umult_hi,
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OTI_vec_widen_umult_lo,
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OTI_vec_widen_smult_hi,
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OTI_vec_widen_smult_lo,
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/* Widening shift left.
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The high/low part of the resulting vector is returned. */
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OTI_vec_widen_ushiftl_hi,
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OTI_vec_widen_ushiftl_lo,
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OTI_vec_widen_sshiftl_hi,
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OTI_vec_widen_sshiftl_lo,
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/* Extract and widen the high/low part of a vector of signed or
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floating point elements. */
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OTI_vec_unpacks_hi,
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OTI_vec_unpacks_lo,
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/* Extract and widen the high/low part of a vector of unsigned
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elements. */
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OTI_vec_unpacku_hi,
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OTI_vec_unpacku_lo,
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/* Extract, convert to floating point and widen the high/low part of
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a vector of signed or unsigned integer elements. */
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365 |
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OTI_vec_unpacks_float_hi,
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OTI_vec_unpacks_float_lo,
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OTI_vec_unpacku_float_hi,
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368 |
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OTI_vec_unpacku_float_lo,
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369 |
|
|
|
370 |
|
|
/* Narrow (demote) and merge the elements of two vectors. */
|
371 |
|
|
OTI_vec_pack_trunc,
|
372 |
|
|
OTI_vec_pack_usat,
|
373 |
|
|
OTI_vec_pack_ssat,
|
374 |
|
|
|
375 |
|
|
/* Convert to signed/unsigned integer, narrow and merge elements
|
376 |
|
|
of two vectors of floating point elements. */
|
377 |
|
|
OTI_vec_pack_sfix_trunc,
|
378 |
|
|
OTI_vec_pack_ufix_trunc,
|
379 |
|
|
|
380 |
|
|
/* Perform a raise to the power of integer. */
|
381 |
|
|
OTI_powi,
|
382 |
|
|
|
383 |
|
|
/* Atomic compare and swap. */
|
384 |
|
|
OTI_sync_compare_and_swap,
|
385 |
|
|
|
386 |
|
|
/* Atomic exchange with acquire semantics. */
|
387 |
|
|
OTI_sync_lock_test_and_set,
|
388 |
|
|
|
389 |
|
|
/* This second set is atomic operations in which we return the value
|
390 |
|
|
that existed in memory before the operation. */
|
391 |
|
|
OTI_sync_old_add,
|
392 |
|
|
OTI_sync_old_sub,
|
393 |
|
|
OTI_sync_old_ior,
|
394 |
|
|
OTI_sync_old_and,
|
395 |
|
|
OTI_sync_old_xor,
|
396 |
|
|
OTI_sync_old_nand,
|
397 |
|
|
|
398 |
|
|
/* This third set is atomic operations in which we return the value
|
399 |
|
|
that resulted after performing the operation. */
|
400 |
|
|
OTI_sync_new_add,
|
401 |
|
|
OTI_sync_new_sub,
|
402 |
|
|
OTI_sync_new_ior,
|
403 |
|
|
OTI_sync_new_and,
|
404 |
|
|
OTI_sync_new_xor,
|
405 |
|
|
OTI_sync_new_nand,
|
406 |
|
|
|
407 |
|
|
OTI_MAX
|
408 |
|
|
};
|
409 |
|
|
|
410 |
|
|
#define ssadd_optab (&optab_table[OTI_ssadd])
|
411 |
|
|
#define usadd_optab (&optab_table[OTI_usadd])
|
412 |
|
|
#define sssub_optab (&optab_table[OTI_sssub])
|
413 |
|
|
#define ussub_optab (&optab_table[OTI_ussub])
|
414 |
|
|
#define ssmul_optab (&optab_table[OTI_ssmul])
|
415 |
|
|
#define usmul_optab (&optab_table[OTI_usmul])
|
416 |
|
|
#define ssdiv_optab (&optab_table[OTI_ssdiv])
|
417 |
|
|
#define usdiv_optab (&optab_table[OTI_usdiv])
|
418 |
|
|
#define ssneg_optab (&optab_table[OTI_ssneg])
|
419 |
|
|
#define usneg_optab (&optab_table[OTI_usneg])
|
420 |
|
|
#define ssashl_optab (&optab_table[OTI_ssashl])
|
421 |
|
|
#define usashl_optab (&optab_table[OTI_usashl])
|
422 |
|
|
|
423 |
|
|
#define add_optab (&optab_table[OTI_add])
|
424 |
|
|
#define sub_optab (&optab_table[OTI_sub])
|
425 |
|
|
#define smul_optab (&optab_table[OTI_smul])
|
426 |
|
|
#define addv_optab (&optab_table[OTI_addv])
|
427 |
|
|
#define subv_optab (&optab_table[OTI_subv])
|
428 |
|
|
#define smul_highpart_optab (&optab_table[OTI_smul_highpart])
|
429 |
|
|
#define umul_highpart_optab (&optab_table[OTI_umul_highpart])
|
430 |
|
|
#define smul_widen_optab (&optab_table[OTI_smul_widen])
|
431 |
|
|
#define umul_widen_optab (&optab_table[OTI_umul_widen])
|
432 |
|
|
#define usmul_widen_optab (&optab_table[OTI_usmul_widen])
|
433 |
|
|
#define smadd_widen_optab (&optab_table[OTI_smadd_widen])
|
434 |
|
|
#define umadd_widen_optab (&optab_table[OTI_umadd_widen])
|
435 |
|
|
#define ssmadd_widen_optab (&optab_table[OTI_ssmadd_widen])
|
436 |
|
|
#define usmadd_widen_optab (&optab_table[OTI_usmadd_widen])
|
437 |
|
|
#define smsub_widen_optab (&optab_table[OTI_smsub_widen])
|
438 |
|
|
#define umsub_widen_optab (&optab_table[OTI_umsub_widen])
|
439 |
|
|
#define ssmsub_widen_optab (&optab_table[OTI_ssmsub_widen])
|
440 |
|
|
#define usmsub_widen_optab (&optab_table[OTI_usmsub_widen])
|
441 |
|
|
#define sdiv_optab (&optab_table[OTI_sdiv])
|
442 |
|
|
#define smulv_optab (&optab_table[OTI_smulv])
|
443 |
|
|
#define sdivv_optab (&optab_table[OTI_sdivv])
|
444 |
|
|
#define sdivmod_optab (&optab_table[OTI_sdivmod])
|
445 |
|
|
#define udiv_optab (&optab_table[OTI_udiv])
|
446 |
|
|
#define udivmod_optab (&optab_table[OTI_udivmod])
|
447 |
|
|
#define smod_optab (&optab_table[OTI_smod])
|
448 |
|
|
#define umod_optab (&optab_table[OTI_umod])
|
449 |
|
|
#define fmod_optab (&optab_table[OTI_fmod])
|
450 |
|
|
#define remainder_optab (&optab_table[OTI_remainder])
|
451 |
|
|
#define ftrunc_optab (&optab_table[OTI_ftrunc])
|
452 |
|
|
#define and_optab (&optab_table[OTI_and])
|
453 |
|
|
#define ior_optab (&optab_table[OTI_ior])
|
454 |
|
|
#define xor_optab (&optab_table[OTI_xor])
|
455 |
|
|
#define ashl_optab (&optab_table[OTI_ashl])
|
456 |
|
|
#define lshr_optab (&optab_table[OTI_lshr])
|
457 |
|
|
#define ashr_optab (&optab_table[OTI_ashr])
|
458 |
|
|
#define rotl_optab (&optab_table[OTI_rotl])
|
459 |
|
|
#define rotr_optab (&optab_table[OTI_rotr])
|
460 |
|
|
#define vashl_optab (&optab_table[OTI_vashl])
|
461 |
|
|
#define vlshr_optab (&optab_table[OTI_vlshr])
|
462 |
|
|
#define vashr_optab (&optab_table[OTI_vashr])
|
463 |
|
|
#define vrotl_optab (&optab_table[OTI_vrotl])
|
464 |
|
|
#define vrotr_optab (&optab_table[OTI_vrotr])
|
465 |
|
|
#define smin_optab (&optab_table[OTI_smin])
|
466 |
|
|
#define smax_optab (&optab_table[OTI_smax])
|
467 |
|
|
#define umin_optab (&optab_table[OTI_umin])
|
468 |
|
|
#define umax_optab (&optab_table[OTI_umax])
|
469 |
|
|
#define pow_optab (&optab_table[OTI_pow])
|
470 |
|
|
#define atan2_optab (&optab_table[OTI_atan2])
|
471 |
|
|
#define fma_optab (&optab_table[OTI_fma])
|
472 |
|
|
#define fms_optab (&optab_table[OTI_fms])
|
473 |
|
|
#define fnma_optab (&optab_table[OTI_fnma])
|
474 |
|
|
#define fnms_optab (&optab_table[OTI_fnms])
|
475 |
|
|
|
476 |
|
|
#define mov_optab (&optab_table[OTI_mov])
|
477 |
|
|
#define movstrict_optab (&optab_table[OTI_movstrict])
|
478 |
|
|
#define movmisalign_optab (&optab_table[OTI_movmisalign])
|
479 |
|
|
#define storent_optab (&optab_table[OTI_storent])
|
480 |
|
|
|
481 |
|
|
#define neg_optab (&optab_table[OTI_neg])
|
482 |
|
|
#define negv_optab (&optab_table[OTI_negv])
|
483 |
|
|
#define abs_optab (&optab_table[OTI_abs])
|
484 |
|
|
#define absv_optab (&optab_table[OTI_absv])
|
485 |
|
|
#define one_cmpl_optab (&optab_table[OTI_one_cmpl])
|
486 |
|
|
#define bswap_optab (&optab_table[OTI_bswap])
|
487 |
|
|
#define ffs_optab (&optab_table[OTI_ffs])
|
488 |
|
|
#define clz_optab (&optab_table[OTI_clz])
|
489 |
|
|
#define ctz_optab (&optab_table[OTI_ctz])
|
490 |
|
|
#define clrsb_optab (&optab_table[OTI_clrsb])
|
491 |
|
|
#define popcount_optab (&optab_table[OTI_popcount])
|
492 |
|
|
#define parity_optab (&optab_table[OTI_parity])
|
493 |
|
|
#define sqrt_optab (&optab_table[OTI_sqrt])
|
494 |
|
|
#define sincos_optab (&optab_table[OTI_sincos])
|
495 |
|
|
#define sin_optab (&optab_table[OTI_sin])
|
496 |
|
|
#define asin_optab (&optab_table[OTI_asin])
|
497 |
|
|
#define cos_optab (&optab_table[OTI_cos])
|
498 |
|
|
#define acos_optab (&optab_table[OTI_acos])
|
499 |
|
|
#define exp_optab (&optab_table[OTI_exp])
|
500 |
|
|
#define exp10_optab (&optab_table[OTI_exp10])
|
501 |
|
|
#define exp2_optab (&optab_table[OTI_exp2])
|
502 |
|
|
#define expm1_optab (&optab_table[OTI_expm1])
|
503 |
|
|
#define ldexp_optab (&optab_table[OTI_ldexp])
|
504 |
|
|
#define scalb_optab (&optab_table[OTI_scalb])
|
505 |
|
|
#define significand_optab (&optab_table[OTI_significand])
|
506 |
|
|
#define logb_optab (&optab_table[OTI_logb])
|
507 |
|
|
#define ilogb_optab (&optab_table[OTI_ilogb])
|
508 |
|
|
#define log_optab (&optab_table[OTI_log])
|
509 |
|
|
#define log10_optab (&optab_table[OTI_log10])
|
510 |
|
|
#define log2_optab (&optab_table[OTI_log2])
|
511 |
|
|
#define log1p_optab (&optab_table[OTI_log1p])
|
512 |
|
|
#define floor_optab (&optab_table[OTI_floor])
|
513 |
|
|
#define ceil_optab (&optab_table[OTI_ceil])
|
514 |
|
|
#define btrunc_optab (&optab_table[OTI_btrunc])
|
515 |
|
|
#define round_optab (&optab_table[OTI_round])
|
516 |
|
|
#define nearbyint_optab (&optab_table[OTI_nearbyint])
|
517 |
|
|
#define rint_optab (&optab_table[OTI_rint])
|
518 |
|
|
#define tan_optab (&optab_table[OTI_tan])
|
519 |
|
|
#define atan_optab (&optab_table[OTI_atan])
|
520 |
|
|
#define copysign_optab (&optab_table[OTI_copysign])
|
521 |
|
|
#define signbit_optab (&optab_table[OTI_signbit])
|
522 |
|
|
#define isinf_optab (&optab_table[OTI_isinf])
|
523 |
|
|
|
524 |
|
|
#define cmp_optab (&optab_table[OTI_cmp])
|
525 |
|
|
#define ucmp_optab (&optab_table[OTI_ucmp])
|
526 |
|
|
|
527 |
|
|
#define eq_optab (&optab_table[OTI_eq])
|
528 |
|
|
#define ne_optab (&optab_table[OTI_ne])
|
529 |
|
|
#define gt_optab (&optab_table[OTI_gt])
|
530 |
|
|
#define ge_optab (&optab_table[OTI_ge])
|
531 |
|
|
#define lt_optab (&optab_table[OTI_lt])
|
532 |
|
|
#define le_optab (&optab_table[OTI_le])
|
533 |
|
|
#define unord_optab (&optab_table[OTI_unord])
|
534 |
|
|
|
535 |
|
|
#define strlen_optab (&optab_table[OTI_strlen])
|
536 |
|
|
|
537 |
|
|
#define cbranch_optab (&optab_table[OTI_cbranch])
|
538 |
|
|
#define cmov_optab (&optab_table[OTI_cmov])
|
539 |
|
|
#define cstore_optab (&optab_table[OTI_cstore])
|
540 |
|
|
#define ctrap_optab (&optab_table[OTI_ctrap])
|
541 |
|
|
|
542 |
|
|
#define push_optab (&optab_table[OTI_push])
|
543 |
|
|
#define addcc_optab (&optab_table[OTI_addcc])
|
544 |
|
|
|
545 |
|
|
#define reduc_smax_optab (&optab_table[OTI_reduc_smax])
|
546 |
|
|
#define reduc_umax_optab (&optab_table[OTI_reduc_umax])
|
547 |
|
|
#define reduc_smin_optab (&optab_table[OTI_reduc_smin])
|
548 |
|
|
#define reduc_umin_optab (&optab_table[OTI_reduc_umin])
|
549 |
|
|
#define reduc_splus_optab (&optab_table[OTI_reduc_splus])
|
550 |
|
|
#define reduc_uplus_optab (&optab_table[OTI_reduc_uplus])
|
551 |
|
|
|
552 |
|
|
#define ssum_widen_optab (&optab_table[OTI_ssum_widen])
|
553 |
|
|
#define usum_widen_optab (&optab_table[OTI_usum_widen])
|
554 |
|
|
#define sdot_prod_optab (&optab_table[OTI_sdot_prod])
|
555 |
|
|
#define udot_prod_optab (&optab_table[OTI_udot_prod])
|
556 |
|
|
|
557 |
|
|
#define vec_set_optab (&optab_table[OTI_vec_set])
|
558 |
|
|
#define vec_extract_optab (&optab_table[OTI_vec_extract])
|
559 |
|
|
#define vec_init_optab (&optab_table[OTI_vec_init])
|
560 |
|
|
#define vec_shl_optab (&optab_table[OTI_vec_shl])
|
561 |
|
|
#define vec_shr_optab (&optab_table[OTI_vec_shr])
|
562 |
|
|
#define vec_realign_load_optab (&optab_table[OTI_vec_realign_load])
|
563 |
|
|
#define vec_widen_umult_hi_optab (&optab_table[OTI_vec_widen_umult_hi])
|
564 |
|
|
#define vec_widen_umult_lo_optab (&optab_table[OTI_vec_widen_umult_lo])
|
565 |
|
|
#define vec_widen_smult_hi_optab (&optab_table[OTI_vec_widen_smult_hi])
|
566 |
|
|
#define vec_widen_smult_lo_optab (&optab_table[OTI_vec_widen_smult_lo])
|
567 |
|
|
#define vec_widen_ushiftl_hi_optab (&optab_table[OTI_vec_widen_ushiftl_hi])
|
568 |
|
|
#define vec_widen_ushiftl_lo_optab (&optab_table[OTI_vec_widen_ushiftl_lo])
|
569 |
|
|
#define vec_widen_sshiftl_hi_optab (&optab_table[OTI_vec_widen_sshiftl_hi])
|
570 |
|
|
#define vec_widen_sshiftl_lo_optab (&optab_table[OTI_vec_widen_sshiftl_lo])
|
571 |
|
|
#define vec_unpacks_hi_optab (&optab_table[OTI_vec_unpacks_hi])
|
572 |
|
|
#define vec_unpacks_lo_optab (&optab_table[OTI_vec_unpacks_lo])
|
573 |
|
|
#define vec_unpacku_hi_optab (&optab_table[OTI_vec_unpacku_hi])
|
574 |
|
|
#define vec_unpacku_lo_optab (&optab_table[OTI_vec_unpacku_lo])
|
575 |
|
|
#define vec_unpacks_float_hi_optab (&optab_table[OTI_vec_unpacks_float_hi])
|
576 |
|
|
#define vec_unpacks_float_lo_optab (&optab_table[OTI_vec_unpacks_float_lo])
|
577 |
|
|
#define vec_unpacku_float_hi_optab (&optab_table[OTI_vec_unpacku_float_hi])
|
578 |
|
|
#define vec_unpacku_float_lo_optab (&optab_table[OTI_vec_unpacku_float_lo])
|
579 |
|
|
#define vec_pack_trunc_optab (&optab_table[OTI_vec_pack_trunc])
|
580 |
|
|
#define vec_pack_ssat_optab (&optab_table[OTI_vec_pack_ssat])
|
581 |
|
|
#define vec_pack_usat_optab (&optab_table[OTI_vec_pack_usat])
|
582 |
|
|
#define vec_pack_sfix_trunc_optab (&optab_table[OTI_vec_pack_sfix_trunc])
|
583 |
|
|
#define vec_pack_ufix_trunc_optab (&optab_table[OTI_vec_pack_ufix_trunc])
|
584 |
|
|
|
585 |
|
|
#define powi_optab (&optab_table[OTI_powi])
|
586 |
|
|
|
587 |
|
|
#define sync_compare_and_swap_optab \
|
588 |
|
|
(&optab_table[(int) OTI_sync_compare_and_swap])
|
589 |
|
|
#define sync_lock_test_and_set_optab \
|
590 |
|
|
(&optab_table[(int) OTI_sync_lock_test_and_set])
|
591 |
|
|
#define sync_old_add_optab (&optab_table[(int) OTI_sync_old_add])
|
592 |
|
|
#define sync_old_sub_optab (&optab_table[(int) OTI_sync_old_sub])
|
593 |
|
|
#define sync_old_ior_optab (&optab_table[(int) OTI_sync_old_ior])
|
594 |
|
|
#define sync_old_and_optab (&optab_table[(int) OTI_sync_old_and])
|
595 |
|
|
#define sync_old_xor_optab (&optab_table[(int) OTI_sync_old_xor])
|
596 |
|
|
#define sync_old_nand_optab (&optab_table[(int) OTI_sync_old_nand])
|
597 |
|
|
#define sync_new_add_optab (&optab_table[(int) OTI_sync_new_add])
|
598 |
|
|
#define sync_new_sub_optab (&optab_table[(int) OTI_sync_new_sub])
|
599 |
|
|
#define sync_new_ior_optab (&optab_table[(int) OTI_sync_new_ior])
|
600 |
|
|
#define sync_new_and_optab (&optab_table[(int) OTI_sync_new_and])
|
601 |
|
|
#define sync_new_xor_optab (&optab_table[(int) OTI_sync_new_xor])
|
602 |
|
|
#define sync_new_nand_optab (&optab_table[(int) OTI_sync_new_nand])
|
603 |
|
|
|
604 |
|
|
/* Conversion optabs have their own table and indexes. */
|
605 |
|
|
enum convert_optab_index
|
606 |
|
|
{
|
607 |
|
|
COI_sext,
|
608 |
|
|
COI_zext,
|
609 |
|
|
COI_trunc,
|
610 |
|
|
|
611 |
|
|
COI_sfix,
|
612 |
|
|
COI_ufix,
|
613 |
|
|
|
614 |
|
|
COI_sfixtrunc,
|
615 |
|
|
COI_ufixtrunc,
|
616 |
|
|
|
617 |
|
|
COI_sfloat,
|
618 |
|
|
COI_ufloat,
|
619 |
|
|
|
620 |
|
|
COI_lrint,
|
621 |
|
|
COI_lround,
|
622 |
|
|
COI_lfloor,
|
623 |
|
|
COI_lceil,
|
624 |
|
|
|
625 |
|
|
COI_fract,
|
626 |
|
|
COI_fractuns,
|
627 |
|
|
COI_satfract,
|
628 |
|
|
COI_satfractuns,
|
629 |
|
|
|
630 |
|
|
COI_vec_load_lanes,
|
631 |
|
|
COI_vec_store_lanes,
|
632 |
|
|
|
633 |
|
|
/* Vector conditional operations. */
|
634 |
|
|
COI_vcond,
|
635 |
|
|
COI_vcondu,
|
636 |
|
|
|
637 |
|
|
COI_MAX
|
638 |
|
|
};
|
639 |
|
|
|
640 |
|
|
#define sext_optab (&convert_optab_table[COI_sext])
|
641 |
|
|
#define zext_optab (&convert_optab_table[COI_zext])
|
642 |
|
|
#define trunc_optab (&convert_optab_table[COI_trunc])
|
643 |
|
|
#define sfix_optab (&convert_optab_table[COI_sfix])
|
644 |
|
|
#define ufix_optab (&convert_optab_table[COI_ufix])
|
645 |
|
|
#define sfixtrunc_optab (&convert_optab_table[COI_sfixtrunc])
|
646 |
|
|
#define ufixtrunc_optab (&convert_optab_table[COI_ufixtrunc])
|
647 |
|
|
#define sfloat_optab (&convert_optab_table[COI_sfloat])
|
648 |
|
|
#define ufloat_optab (&convert_optab_table[COI_ufloat])
|
649 |
|
|
#define lrint_optab (&convert_optab_table[COI_lrint])
|
650 |
|
|
#define lround_optab (&convert_optab_table[COI_lround])
|
651 |
|
|
#define lfloor_optab (&convert_optab_table[COI_lfloor])
|
652 |
|
|
#define lceil_optab (&convert_optab_table[COI_lceil])
|
653 |
|
|
#define fract_optab (&convert_optab_table[COI_fract])
|
654 |
|
|
#define fractuns_optab (&convert_optab_table[COI_fractuns])
|
655 |
|
|
#define satfract_optab (&convert_optab_table[COI_satfract])
|
656 |
|
|
#define satfractuns_optab (&convert_optab_table[COI_satfractuns])
|
657 |
|
|
#define vec_load_lanes_optab (&convert_optab_table[COI_vec_load_lanes])
|
658 |
|
|
#define vec_store_lanes_optab (&convert_optab_table[COI_vec_store_lanes])
|
659 |
|
|
#define vcond_optab (&convert_optab_table[(int) COI_vcond])
|
660 |
|
|
#define vcondu_optab (&convert_optab_table[(int) COI_vcondu])
|
661 |
|
|
|
662 |
|
|
/* Contains the optab used for each rtx code. */
|
663 |
|
|
extern optab code_to_optab[NUM_RTX_CODE + 1];
|
664 |
|
|
|
665 |
|
|
|
666 |
|
|
typedef rtx (*rtxfun) (rtx);
|
667 |
|
|
|
668 |
|
|
/* Enumerates operations that have a named .md pattern associated
|
669 |
|
|
with them, but which are not implemented as library functions. */
|
670 |
|
|
enum direct_optab_index
|
671 |
|
|
{
|
672 |
|
|
#ifdef HAVE_conditional_move
|
673 |
|
|
/* Conditional move operations. */
|
674 |
|
|
DOI_movcc,
|
675 |
|
|
#endif
|
676 |
|
|
|
677 |
|
|
/* Operations that use a scratch register to perform input and output
|
678 |
|
|
reloads of special objects. */
|
679 |
|
|
DOI_reload_in,
|
680 |
|
|
DOI_reload_out,
|
681 |
|
|
|
682 |
|
|
/* Block move operation. */
|
683 |
|
|
DOI_movmem,
|
684 |
|
|
|
685 |
|
|
/* Block set operation. */
|
686 |
|
|
DOI_setmem,
|
687 |
|
|
|
688 |
|
|
/* Various types of block compare operation. */
|
689 |
|
|
DOI_cmpstr,
|
690 |
|
|
DOI_cmpstrn,
|
691 |
|
|
DOI_cmpmem,
|
692 |
|
|
|
693 |
|
|
/* Atomic clear with release semantics. */
|
694 |
|
|
DOI_sync_lock_release,
|
695 |
|
|
|
696 |
|
|
/* Atomic operation with no resulting value. */
|
697 |
|
|
DOI_sync_add,
|
698 |
|
|
DOI_sync_sub,
|
699 |
|
|
DOI_sync_ior,
|
700 |
|
|
DOI_sync_and,
|
701 |
|
|
DOI_sync_xor,
|
702 |
|
|
DOI_sync_nand,
|
703 |
|
|
|
704 |
|
|
/* Atomic operations with memory model parameters. */
|
705 |
|
|
DOI_atomic_exchange,
|
706 |
|
|
DOI_atomic_compare_and_swap,
|
707 |
|
|
DOI_atomic_load,
|
708 |
|
|
DOI_atomic_store,
|
709 |
|
|
DOI_atomic_add_fetch,
|
710 |
|
|
DOI_atomic_sub_fetch,
|
711 |
|
|
DOI_atomic_and_fetch,
|
712 |
|
|
DOI_atomic_nand_fetch,
|
713 |
|
|
DOI_atomic_xor_fetch,
|
714 |
|
|
DOI_atomic_or_fetch,
|
715 |
|
|
DOI_atomic_fetch_add,
|
716 |
|
|
DOI_atomic_fetch_sub,
|
717 |
|
|
DOI_atomic_fetch_and,
|
718 |
|
|
DOI_atomic_fetch_nand,
|
719 |
|
|
DOI_atomic_fetch_xor,
|
720 |
|
|
DOI_atomic_fetch_or,
|
721 |
|
|
DOI_atomic_add,
|
722 |
|
|
DOI_atomic_sub,
|
723 |
|
|
DOI_atomic_and,
|
724 |
|
|
DOI_atomic_nand,
|
725 |
|
|
DOI_atomic_xor,
|
726 |
|
|
DOI_atomic_or,
|
727 |
|
|
DOI_atomic_always_lock_free,
|
728 |
|
|
DOI_atomic_is_lock_free,
|
729 |
|
|
DOI_atomic_thread_fence,
|
730 |
|
|
DOI_atomic_signal_fence,
|
731 |
|
|
|
732 |
|
|
/* Vector permutation. */
|
733 |
|
|
DOI_vec_perm,
|
734 |
|
|
DOI_vec_perm_const,
|
735 |
|
|
|
736 |
|
|
DOI_MAX
|
737 |
|
|
};
|
738 |
|
|
|
739 |
|
|
/* A structure that says which insn should be used to perform an operation
|
740 |
|
|
in a particular mode. */
|
741 |
|
|
struct direct_optab_d
|
742 |
|
|
{
|
743 |
|
|
struct optab_handlers handlers[NUM_MACHINE_MODES];
|
744 |
|
|
};
|
745 |
|
|
typedef struct direct_optab_d *direct_optab;
|
746 |
|
|
|
747 |
|
|
#ifdef HAVE_conditional_move
|
748 |
|
|
#define movcc_optab (&direct_optab_table[(int) DOI_movcc])
|
749 |
|
|
#endif
|
750 |
|
|
#define reload_in_optab (&direct_optab_table[(int) DOI_reload_in])
|
751 |
|
|
#define reload_out_optab (&direct_optab_table[(int) DOI_reload_out])
|
752 |
|
|
#define movmem_optab (&direct_optab_table[(int) DOI_movmem])
|
753 |
|
|
#define setmem_optab (&direct_optab_table[(int) DOI_setmem])
|
754 |
|
|
#define cmpstr_optab (&direct_optab_table[(int) DOI_cmpstr])
|
755 |
|
|
#define cmpstrn_optab (&direct_optab_table[(int) DOI_cmpstrn])
|
756 |
|
|
#define cmpmem_optab (&direct_optab_table[(int) DOI_cmpmem])
|
757 |
|
|
#define sync_lock_release_optab \
|
758 |
|
|
(&direct_optab_table[(int) DOI_sync_lock_release])
|
759 |
|
|
#define sync_add_optab (&direct_optab_table[(int) DOI_sync_add])
|
760 |
|
|
#define sync_sub_optab (&direct_optab_table[(int) DOI_sync_sub])
|
761 |
|
|
#define sync_ior_optab (&direct_optab_table[(int) DOI_sync_ior])
|
762 |
|
|
#define sync_and_optab (&direct_optab_table[(int) DOI_sync_and])
|
763 |
|
|
#define sync_xor_optab (&direct_optab_table[(int) DOI_sync_xor])
|
764 |
|
|
#define sync_nand_optab (&direct_optab_table[(int) DOI_sync_nand])
|
765 |
|
|
|
766 |
|
|
#define atomic_exchange_optab \
|
767 |
|
|
(&direct_optab_table[(int) DOI_atomic_exchange])
|
768 |
|
|
#define atomic_compare_and_swap_optab \
|
769 |
|
|
(&direct_optab_table[(int) DOI_atomic_compare_and_swap])
|
770 |
|
|
#define atomic_load_optab \
|
771 |
|
|
(&direct_optab_table[(int) DOI_atomic_load])
|
772 |
|
|
#define atomic_store_optab \
|
773 |
|
|
(&direct_optab_table[(int) DOI_atomic_store])
|
774 |
|
|
#define atomic_add_fetch_optab \
|
775 |
|
|
(&direct_optab_table[(int) DOI_atomic_add_fetch])
|
776 |
|
|
#define atomic_sub_fetch_optab \
|
777 |
|
|
(&direct_optab_table[(int) DOI_atomic_sub_fetch])
|
778 |
|
|
#define atomic_and_fetch_optab \
|
779 |
|
|
(&direct_optab_table[(int) DOI_atomic_and_fetch])
|
780 |
|
|
#define atomic_nand_fetch_optab \
|
781 |
|
|
(&direct_optab_table[(int) DOI_atomic_nand_fetch])
|
782 |
|
|
#define atomic_xor_fetch_optab \
|
783 |
|
|
(&direct_optab_table[(int) DOI_atomic_xor_fetch])
|
784 |
|
|
#define atomic_or_fetch_optab \
|
785 |
|
|
(&direct_optab_table[(int) DOI_atomic_or_fetch])
|
786 |
|
|
#define atomic_fetch_add_optab \
|
787 |
|
|
(&direct_optab_table[(int) DOI_atomic_fetch_add])
|
788 |
|
|
#define atomic_fetch_sub_optab \
|
789 |
|
|
(&direct_optab_table[(int) DOI_atomic_fetch_sub])
|
790 |
|
|
#define atomic_fetch_and_optab \
|
791 |
|
|
(&direct_optab_table[(int) DOI_atomic_fetch_and])
|
792 |
|
|
#define atomic_fetch_nand_optab \
|
793 |
|
|
(&direct_optab_table[(int) DOI_atomic_fetch_nand])
|
794 |
|
|
#define atomic_fetch_xor_optab \
|
795 |
|
|
(&direct_optab_table[(int) DOI_atomic_fetch_xor])
|
796 |
|
|
#define atomic_fetch_or_optab \
|
797 |
|
|
(&direct_optab_table[(int) DOI_atomic_fetch_or])
|
798 |
|
|
#define atomic_add_optab \
|
799 |
|
|
(&direct_optab_table[(int) DOI_atomic_add])
|
800 |
|
|
#define atomic_sub_optab \
|
801 |
|
|
(&direct_optab_table[(int) DOI_atomic_sub])
|
802 |
|
|
#define atomic_and_optab \
|
803 |
|
|
(&direct_optab_table[(int) DOI_atomic_and])
|
804 |
|
|
#define atomic_nand_optab \
|
805 |
|
|
(&direct_optab_table[(int) DOI_atomic_nand])
|
806 |
|
|
#define atomic_xor_optab \
|
807 |
|
|
(&direct_optab_table[(int) DOI_atomic_xor])
|
808 |
|
|
#define atomic_or_optab \
|
809 |
|
|
(&direct_optab_table[(int) DOI_atomic_or])
|
810 |
|
|
#define atomic_always_lock_free_optab \
|
811 |
|
|
(&direct_optab_table[(int) DOI_atomic_always_lock_free])
|
812 |
|
|
#define atomic_is_lock_free_optab \
|
813 |
|
|
(&direct_optab_table[(int) DOI_atomic_is_lock_free])
|
814 |
|
|
#define atomic_thread_fence_optab \
|
815 |
|
|
(&direct_optab_table[(int) DOI_atomic_thread_fence])
|
816 |
|
|
#define atomic_signal_fence_optab \
|
817 |
|
|
(&direct_optab_table[(int) DOI_atomic_signal_fence])
|
818 |
|
|
|
819 |
|
|
#define vec_perm_optab (&direct_optab_table[DOI_vec_perm])
|
820 |
|
|
#define vec_perm_const_optab (&direct_optab_table[(int) DOI_vec_perm_const])
|
821 |
|
|
|
822 |
|
|
/* Target-dependent globals. */
|
823 |
|
|
struct target_optabs {
|
824 |
|
|
/* Tables of patterns that may have an associated libcall. */
|
825 |
|
|
struct optab_d x_optab_table[(int) OTI_MAX];
|
826 |
|
|
|
827 |
|
|
/* Tables of patterns for converting one mode to another. */
|
828 |
|
|
struct convert_optab_d x_convert_optab_table[(int) COI_MAX];
|
829 |
|
|
|
830 |
|
|
/* Tables of patterns for direct optabs (i.e. those which cannot be
|
831 |
|
|
implemented using a libcall). */
|
832 |
|
|
struct direct_optab_d x_direct_optab_table[(int) DOI_MAX];
|
833 |
|
|
};
|
834 |
|
|
|
835 |
|
|
extern struct target_optabs default_target_optabs;
|
836 |
|
|
#if SWITCHABLE_TARGET
|
837 |
|
|
extern struct target_optabs *this_target_optabs;
|
838 |
|
|
#else
|
839 |
|
|
#define this_target_optabs (&default_target_optabs)
|
840 |
|
|
#endif
|
841 |
|
|
|
842 |
|
|
#define optab_table \
|
843 |
|
|
(this_target_optabs->x_optab_table)
|
844 |
|
|
#define convert_optab_table \
|
845 |
|
|
(this_target_optabs->x_convert_optab_table)
|
846 |
|
|
#define direct_optab_table \
|
847 |
|
|
(this_target_optabs->x_direct_optab_table)
|
848 |
|
|
|
849 |
|
|
/* Define functions given in optabs.c. */
|
850 |
|
|
|
851 |
|
|
extern rtx expand_widen_pattern_expr (sepops ops, rtx op0, rtx op1, rtx wide_op,
|
852 |
|
|
rtx target, int unsignedp);
|
853 |
|
|
|
854 |
|
|
extern rtx expand_ternary_op (enum machine_mode mode, optab ternary_optab,
|
855 |
|
|
rtx op0, rtx op1, rtx op2, rtx target,
|
856 |
|
|
int unsignedp);
|
857 |
|
|
|
858 |
|
|
/* Expand a binary operation given optab and rtx operands. */
|
859 |
|
|
extern rtx expand_binop (enum machine_mode, optab, rtx, rtx, rtx, int,
|
860 |
|
|
enum optab_methods);
|
861 |
|
|
|
862 |
|
|
extern rtx simplify_expand_binop (enum machine_mode mode, optab binoptab,
|
863 |
|
|
rtx op0, rtx op1, rtx target, int unsignedp,
|
864 |
|
|
enum optab_methods methods);
|
865 |
|
|
|
866 |
|
|
extern bool force_expand_binop (enum machine_mode, optab, rtx, rtx, rtx, int,
|
867 |
|
|
enum optab_methods);
|
868 |
|
|
|
869 |
|
|
/* Expand a binary operation with both signed and unsigned forms. */
|
870 |
|
|
extern rtx sign_expand_binop (enum machine_mode, optab, optab, rtx, rtx,
|
871 |
|
|
rtx, int, enum optab_methods);
|
872 |
|
|
|
873 |
|
|
/* Generate code to perform an operation on one operand with two results. */
|
874 |
|
|
extern int expand_twoval_unop (optab, rtx, rtx, rtx, int);
|
875 |
|
|
|
876 |
|
|
/* Generate code to perform an operation on two operands with two results. */
|
877 |
|
|
extern int expand_twoval_binop (optab, rtx, rtx, rtx, rtx, int);
|
878 |
|
|
|
879 |
|
|
/* Generate code to perform an operation on two operands with two
|
880 |
|
|
results, using a library function. */
|
881 |
|
|
extern bool expand_twoval_binop_libfunc (optab, rtx, rtx, rtx, rtx,
|
882 |
|
|
enum rtx_code);
|
883 |
|
|
|
884 |
|
|
/* Expand a unary arithmetic operation given optab rtx operand. */
|
885 |
|
|
extern rtx expand_unop (enum machine_mode, optab, rtx, rtx, int);
|
886 |
|
|
|
887 |
|
|
/* Expand the absolute value operation. */
|
888 |
|
|
extern rtx expand_abs_nojump (enum machine_mode, rtx, rtx, int);
|
889 |
|
|
extern rtx expand_abs (enum machine_mode, rtx, rtx, int, int);
|
890 |
|
|
|
891 |
|
|
/* Expand the one's complement absolute value operation. */
|
892 |
|
|
extern rtx expand_one_cmpl_abs_nojump (enum machine_mode, rtx, rtx);
|
893 |
|
|
|
894 |
|
|
/* Expand the copysign operation. */
|
895 |
|
|
extern rtx expand_copysign (rtx, rtx, rtx);
|
896 |
|
|
|
897 |
|
|
/* Generate an instruction with a given INSN_CODE with an output and
|
898 |
|
|
an input. */
|
899 |
|
|
extern void emit_unop_insn (enum insn_code, rtx, rtx, enum rtx_code);
|
900 |
|
|
extern bool maybe_emit_unop_insn (enum insn_code, rtx, rtx, enum rtx_code);
|
901 |
|
|
|
902 |
|
|
/* Find a widening optab even if it doesn't widen as much as we want. */
|
903 |
|
|
#define find_widening_optab_handler(A,B,C,D) \
|
904 |
|
|
find_widening_optab_handler_and_mode (A, B, C, D, NULL)
|
905 |
|
|
extern enum insn_code find_widening_optab_handler_and_mode (optab,
|
906 |
|
|
enum machine_mode,
|
907 |
|
|
enum machine_mode,
|
908 |
|
|
int,
|
909 |
|
|
enum machine_mode *);
|
910 |
|
|
|
911 |
|
|
/* An extra flag to control optab_for_tree_code's behavior. This is needed to
|
912 |
|
|
distinguish between machines with a vector shift that takes a scalar for the
|
913 |
|
|
shift amount vs. machines that take a vector for the shift amount. */
|
914 |
|
|
enum optab_subtype
|
915 |
|
|
{
|
916 |
|
|
optab_default,
|
917 |
|
|
optab_scalar,
|
918 |
|
|
optab_vector
|
919 |
|
|
};
|
920 |
|
|
|
921 |
|
|
/* Return the optab used for computing the given operation on the type given by
|
922 |
|
|
the second argument. The third argument distinguishes between the types of
|
923 |
|
|
vector shifts and rotates */
|
924 |
|
|
extern optab optab_for_tree_code (enum tree_code, const_tree, enum optab_subtype);
|
925 |
|
|
|
926 |
|
|
/* The various uses that a comparison can have; used by can_compare_p:
|
927 |
|
|
jumps, conditional moves, store flag operations. */
|
928 |
|
|
enum can_compare_purpose
|
929 |
|
|
{
|
930 |
|
|
ccp_jump,
|
931 |
|
|
ccp_cmov,
|
932 |
|
|
ccp_store_flag
|
933 |
|
|
};
|
934 |
|
|
|
935 |
|
|
/* Nonzero if a compare of mode MODE can be done straightforwardly
|
936 |
|
|
(without splitting it into pieces). */
|
937 |
|
|
extern int can_compare_p (enum rtx_code, enum machine_mode,
|
938 |
|
|
enum can_compare_purpose);
|
939 |
|
|
|
940 |
|
|
/* Return the INSN_CODE to use for an extend operation. */
|
941 |
|
|
extern enum insn_code can_extend_p (enum machine_mode, enum machine_mode, int);
|
942 |
|
|
|
943 |
|
|
/* Generate the body of an insn to extend Y (with mode MFROM)
|
944 |
|
|
into X (with mode MTO). Do zero-extension if UNSIGNEDP is nonzero. */
|
945 |
|
|
extern rtx gen_extend_insn (rtx, rtx, enum machine_mode,
|
946 |
|
|
enum machine_mode, int);
|
947 |
|
|
|
948 |
|
|
/* Call this to reset the function entry for one optab. */
|
949 |
|
|
extern void set_optab_libfunc (optab, enum machine_mode, const char *);
|
950 |
|
|
extern void set_conv_libfunc (convert_optab, enum machine_mode,
|
951 |
|
|
enum machine_mode, const char *);
|
952 |
|
|
|
953 |
|
|
/* Call this to install all of the __sync libcalls up to size MAX. */
|
954 |
|
|
extern void init_sync_libfuncs (int max);
|
955 |
|
|
|
956 |
|
|
/* Generate code for a FIXED_CONVERT_EXPR. */
|
957 |
|
|
extern void expand_fixed_convert (rtx, rtx, int, int);
|
958 |
|
|
|
959 |
|
|
/* Generate code for a FLOAT_EXPR. */
|
960 |
|
|
extern void expand_float (rtx, rtx, int);
|
961 |
|
|
|
962 |
|
|
/* Return the insn_code for a FLOAT_EXPR. */
|
963 |
|
|
enum insn_code can_float_p (enum machine_mode, enum machine_mode, int);
|
964 |
|
|
|
965 |
|
|
/* Return true if there is an inline compare and swap pattern. */
|
966 |
|
|
extern bool can_compare_and_swap_p (enum machine_mode, bool);
|
967 |
|
|
|
968 |
|
|
/* Return true if there is an inline atomic exchange pattern. */
|
969 |
|
|
extern bool can_atomic_exchange_p (enum machine_mode, bool);
|
970 |
|
|
|
971 |
|
|
/* Generate code for a compare and swap. */
|
972 |
|
|
extern bool expand_atomic_compare_and_swap (rtx *, rtx *, rtx, rtx, rtx, bool,
|
973 |
|
|
enum memmodel, enum memmodel);
|
974 |
|
|
|
975 |
|
|
/* Generate memory barriers. */
|
976 |
|
|
extern void expand_mem_thread_fence (enum memmodel);
|
977 |
|
|
extern void expand_mem_signal_fence (enum memmodel);
|
978 |
|
|
|
979 |
|
|
/* Check whether an operation represented by the code CODE is a
|
980 |
|
|
convert operation that is supported by the target platform in
|
981 |
|
|
vector form */
|
982 |
|
|
bool supportable_convert_operation (enum tree_code, tree, tree, tree *,
|
983 |
|
|
enum tree_code *);
|
984 |
|
|
|
985 |
|
|
/* Generate code for a FIX_EXPR. */
|
986 |
|
|
extern void expand_fix (rtx, rtx, int);
|
987 |
|
|
|
988 |
|
|
/* Generate code for float to integral conversion. */
|
989 |
|
|
extern bool expand_sfix_optab (rtx, rtx, convert_optab);
|
990 |
|
|
|
991 |
|
|
/* Generate code for a widening multiply. */
|
992 |
|
|
extern rtx expand_widening_mult (enum machine_mode, rtx, rtx, rtx, int, optab);
|
993 |
|
|
|
994 |
|
|
/* Return tree if target supports vector operations for COND_EXPR. */
|
995 |
|
|
bool expand_vec_cond_expr_p (tree, tree);
|
996 |
|
|
|
997 |
|
|
/* Generate code for VEC_COND_EXPR. */
|
998 |
|
|
extern rtx expand_vec_cond_expr (tree, tree, tree, tree, rtx);
|
999 |
|
|
/* Generate code for VEC_LSHIFT_EXPR and VEC_RSHIFT_EXPR. */
|
1000 |
|
|
extern rtx expand_vec_shift_expr (sepops, rtx);
|
1001 |
|
|
|
1002 |
|
|
/* Return tree if target supports vector operations for VEC_PERM_EXPR. */
|
1003 |
|
|
extern bool can_vec_perm_p (enum machine_mode, bool, const unsigned char *);
|
1004 |
|
|
|
1005 |
|
|
/* Generate code for VEC_PERM_EXPR. */
|
1006 |
|
|
extern rtx expand_vec_perm (enum machine_mode, rtx, rtx, rtx, rtx);
|
1007 |
|
|
|
1008 |
|
|
/* Return the insn used to implement mode MODE of OP, or CODE_FOR_nothing
|
1009 |
|
|
if the target does not have such an insn. */
|
1010 |
|
|
|
1011 |
|
|
static inline enum insn_code
|
1012 |
|
|
optab_handler (optab op, enum machine_mode mode)
|
1013 |
|
|
{
|
1014 |
|
|
return (enum insn_code) (op->handlers[(int) mode].insn_code
|
1015 |
|
|
+ (int) CODE_FOR_nothing);
|
1016 |
|
|
}
|
1017 |
|
|
|
1018 |
|
|
/* Like optab_handler, but for widening_operations that have a TO_MODE and
|
1019 |
|
|
a FROM_MODE. */
|
1020 |
|
|
|
1021 |
|
|
static inline enum insn_code
|
1022 |
|
|
widening_optab_handler (optab op, enum machine_mode to_mode,
|
1023 |
|
|
enum machine_mode from_mode)
|
1024 |
|
|
{
|
1025 |
|
|
if (to_mode == from_mode || from_mode == VOIDmode)
|
1026 |
|
|
return optab_handler (op, to_mode);
|
1027 |
|
|
|
1028 |
|
|
if (op->widening)
|
1029 |
|
|
return (enum insn_code) (op->widening->handlers[(int) to_mode][(int) from_mode].insn_code
|
1030 |
|
|
+ (int) CODE_FOR_nothing);
|
1031 |
|
|
|
1032 |
|
|
return CODE_FOR_nothing;
|
1033 |
|
|
}
|
1034 |
|
|
|
1035 |
|
|
/* Record that insn CODE should be used to implement mode MODE of OP. */
|
1036 |
|
|
|
1037 |
|
|
static inline void
|
1038 |
|
|
set_optab_handler (optab op, enum machine_mode mode, enum insn_code code)
|
1039 |
|
|
{
|
1040 |
|
|
op->handlers[(int) mode].insn_code = (int) code - (int) CODE_FOR_nothing;
|
1041 |
|
|
}
|
1042 |
|
|
|
1043 |
|
|
/* Like set_optab_handler, but for widening operations that have a TO_MODE
|
1044 |
|
|
and a FROM_MODE. */
|
1045 |
|
|
|
1046 |
|
|
static inline void
|
1047 |
|
|
set_widening_optab_handler (optab op, enum machine_mode to_mode,
|
1048 |
|
|
enum machine_mode from_mode, enum insn_code code)
|
1049 |
|
|
{
|
1050 |
|
|
if (to_mode == from_mode)
|
1051 |
|
|
set_optab_handler (op, to_mode, code);
|
1052 |
|
|
else
|
1053 |
|
|
{
|
1054 |
|
|
if (op->widening == NULL)
|
1055 |
|
|
op->widening = (struct widening_optab_handlers *)
|
1056 |
|
|
xcalloc (1, sizeof (struct widening_optab_handlers));
|
1057 |
|
|
|
1058 |
|
|
op->widening->handlers[(int) to_mode][(int) from_mode].insn_code
|
1059 |
|
|
= (int) code - (int) CODE_FOR_nothing;
|
1060 |
|
|
}
|
1061 |
|
|
}
|
1062 |
|
|
|
1063 |
|
|
/* Return the insn used to perform conversion OP from mode FROM_MODE
|
1064 |
|
|
to mode TO_MODE; return CODE_FOR_nothing if the target does not have
|
1065 |
|
|
such an insn. */
|
1066 |
|
|
|
1067 |
|
|
static inline enum insn_code
|
1068 |
|
|
convert_optab_handler (convert_optab op, enum machine_mode to_mode,
|
1069 |
|
|
enum machine_mode from_mode)
|
1070 |
|
|
{
|
1071 |
|
|
return ((enum insn_code)
|
1072 |
|
|
(op->handlers[(int) to_mode][(int) from_mode].insn_code
|
1073 |
|
|
+ (int) CODE_FOR_nothing));
|
1074 |
|
|
}
|
1075 |
|
|
|
1076 |
|
|
/* Record that insn CODE should be used to perform conversion OP
|
1077 |
|
|
from mode FROM_MODE to mode TO_MODE. */
|
1078 |
|
|
|
1079 |
|
|
static inline void
|
1080 |
|
|
set_convert_optab_handler (convert_optab op, enum machine_mode to_mode,
|
1081 |
|
|
enum machine_mode from_mode, enum insn_code code)
|
1082 |
|
|
{
|
1083 |
|
|
op->handlers[(int) to_mode][(int) from_mode].insn_code
|
1084 |
|
|
= (int) code - (int) CODE_FOR_nothing;
|
1085 |
|
|
}
|
1086 |
|
|
|
1087 |
|
|
/* Return the insn used to implement mode MODE of OP, or CODE_FOR_nothing
|
1088 |
|
|
if the target does not have such an insn. */
|
1089 |
|
|
|
1090 |
|
|
static inline enum insn_code
|
1091 |
|
|
direct_optab_handler (direct_optab op, enum machine_mode mode)
|
1092 |
|
|
{
|
1093 |
|
|
return (enum insn_code) (op->handlers[(int) mode].insn_code
|
1094 |
|
|
+ (int) CODE_FOR_nothing);
|
1095 |
|
|
}
|
1096 |
|
|
|
1097 |
|
|
/* Record that insn CODE should be used to implement mode MODE of OP. */
|
1098 |
|
|
|
1099 |
|
|
static inline void
|
1100 |
|
|
set_direct_optab_handler (direct_optab op, enum machine_mode mode,
|
1101 |
|
|
enum insn_code code)
|
1102 |
|
|
{
|
1103 |
|
|
op->handlers[(int) mode].insn_code = (int) code - (int) CODE_FOR_nothing;
|
1104 |
|
|
}
|
1105 |
|
|
|
1106 |
|
|
extern rtx optab_libfunc (optab optab, enum machine_mode mode);
|
1107 |
|
|
extern rtx convert_optab_libfunc (convert_optab optab, enum machine_mode mode1,
|
1108 |
|
|
enum machine_mode mode2);
|
1109 |
|
|
|
1110 |
|
|
extern bool insn_operand_matches (enum insn_code icode, unsigned int opno,
|
1111 |
|
|
rtx operand);
|
1112 |
|
|
|
1113 |
|
|
/* Describes the type of an expand_operand. Each value is associated
|
1114 |
|
|
with a create_*_operand function; see the comments above those
|
1115 |
|
|
functions for details. */
|
1116 |
|
|
enum expand_operand_type {
|
1117 |
|
|
EXPAND_FIXED,
|
1118 |
|
|
EXPAND_OUTPUT,
|
1119 |
|
|
EXPAND_INPUT,
|
1120 |
|
|
EXPAND_CONVERT_TO,
|
1121 |
|
|
EXPAND_CONVERT_FROM,
|
1122 |
|
|
EXPAND_ADDRESS,
|
1123 |
|
|
EXPAND_INTEGER
|
1124 |
|
|
};
|
1125 |
|
|
|
1126 |
|
|
/* Information about an operand for instruction expansion. */
|
1127 |
|
|
struct expand_operand {
|
1128 |
|
|
/* The type of operand. */
|
1129 |
|
|
ENUM_BITFIELD (expand_operand_type) type : 8;
|
1130 |
|
|
|
1131 |
|
|
/* True if any conversion should treat VALUE as being unsigned
|
1132 |
|
|
rather than signed. Only meaningful for certain types. */
|
1133 |
|
|
unsigned int unsigned_p : 1;
|
1134 |
|
|
|
1135 |
|
|
/* Unused; available for future use. */
|
1136 |
|
|
unsigned int unused : 7;
|
1137 |
|
|
|
1138 |
|
|
/* The mode passed to the convert_*_operand function. It has a
|
1139 |
|
|
type-dependent meaning. */
|
1140 |
|
|
ENUM_BITFIELD (machine_mode) mode : 16;
|
1141 |
|
|
|
1142 |
|
|
/* The value of the operand. */
|
1143 |
|
|
rtx value;
|
1144 |
|
|
};
|
1145 |
|
|
|
1146 |
|
|
/* Initialize OP with the given fields. Initialise the other fields
|
1147 |
|
|
to their default values. */
|
1148 |
|
|
|
1149 |
|
|
static inline void
|
1150 |
|
|
create_expand_operand (struct expand_operand *op,
|
1151 |
|
|
enum expand_operand_type type,
|
1152 |
|
|
rtx value, enum machine_mode mode,
|
1153 |
|
|
bool unsigned_p)
|
1154 |
|
|
{
|
1155 |
|
|
op->type = type;
|
1156 |
|
|
op->unsigned_p = unsigned_p;
|
1157 |
|
|
op->unused = 0;
|
1158 |
|
|
op->mode = mode;
|
1159 |
|
|
op->value = value;
|
1160 |
|
|
}
|
1161 |
|
|
|
1162 |
|
|
/* Make OP describe an operand that must use rtx X, even if X is volatile. */
|
1163 |
|
|
|
1164 |
|
|
static inline void
|
1165 |
|
|
create_fixed_operand (struct expand_operand *op, rtx x)
|
1166 |
|
|
{
|
1167 |
|
|
create_expand_operand (op, EXPAND_FIXED, x, VOIDmode, false);
|
1168 |
|
|
}
|
1169 |
|
|
|
1170 |
|
|
/* Make OP describe an output operand that must have mode MODE.
|
1171 |
|
|
X, if nonnull, is a suggestion for where the output should be stored.
|
1172 |
|
|
It is OK for VALUE to be inconsistent with MODE, although it will just
|
1173 |
|
|
be ignored in that case. */
|
1174 |
|
|
|
1175 |
|
|
static inline void
|
1176 |
|
|
create_output_operand (struct expand_operand *op, rtx x,
|
1177 |
|
|
enum machine_mode mode)
|
1178 |
|
|
{
|
1179 |
|
|
create_expand_operand (op, EXPAND_OUTPUT, x, mode, false);
|
1180 |
|
|
}
|
1181 |
|
|
|
1182 |
|
|
/* Make OP describe an input operand that must have mode MODE and
|
1183 |
|
|
value VALUE; MODE cannot be VOIDmode. The backend may request that
|
1184 |
|
|
VALUE be copied into a different kind of rtx before being passed
|
1185 |
|
|
as an operand. */
|
1186 |
|
|
|
1187 |
|
|
static inline void
|
1188 |
|
|
create_input_operand (struct expand_operand *op, rtx value,
|
1189 |
|
|
enum machine_mode mode)
|
1190 |
|
|
{
|
1191 |
|
|
create_expand_operand (op, EXPAND_INPUT, value, mode, false);
|
1192 |
|
|
}
|
1193 |
|
|
|
1194 |
|
|
/* Like create_input_operand, except that VALUE must first be converted
|
1195 |
|
|
to mode MODE. UNSIGNED_P says whether VALUE is unsigned. */
|
1196 |
|
|
|
1197 |
|
|
static inline void
|
1198 |
|
|
create_convert_operand_to (struct expand_operand *op, rtx value,
|
1199 |
|
|
enum machine_mode mode, bool unsigned_p)
|
1200 |
|
|
{
|
1201 |
|
|
create_expand_operand (op, EXPAND_CONVERT_TO, value, mode, unsigned_p);
|
1202 |
|
|
}
|
1203 |
|
|
|
1204 |
|
|
/* Make OP describe an input operand that should have the same value
|
1205 |
|
|
as VALUE, after any mode conversion that the backend might request.
|
1206 |
|
|
If VALUE is a CONST_INT, it should be treated as having mode MODE.
|
1207 |
|
|
UNSIGNED_P says whether VALUE is unsigned. */
|
1208 |
|
|
|
1209 |
|
|
static inline void
|
1210 |
|
|
create_convert_operand_from (struct expand_operand *op, rtx value,
|
1211 |
|
|
enum machine_mode mode, bool unsigned_p)
|
1212 |
|
|
{
|
1213 |
|
|
create_expand_operand (op, EXPAND_CONVERT_FROM, value, mode, unsigned_p);
|
1214 |
|
|
}
|
1215 |
|
|
|
1216 |
|
|
extern void create_convert_operand_from_type (struct expand_operand *op,
|
1217 |
|
|
rtx value, tree type);
|
1218 |
|
|
|
1219 |
|
|
/* Make OP describe an input Pmode address operand. VALUE is the value
|
1220 |
|
|
of the address, but it may need to be converted to Pmode first. */
|
1221 |
|
|
|
1222 |
|
|
static inline void
|
1223 |
|
|
create_address_operand (struct expand_operand *op, rtx value)
|
1224 |
|
|
{
|
1225 |
|
|
create_expand_operand (op, EXPAND_ADDRESS, value, Pmode, false);
|
1226 |
|
|
}
|
1227 |
|
|
|
1228 |
|
|
/* Make OP describe an input operand that has value INTVAL and that has
|
1229 |
|
|
no inherent mode. This function should only be used for operands that
|
1230 |
|
|
are always expand-time constants. The backend may request that INTVAL
|
1231 |
|
|
be copied into a different kind of rtx, but it must specify the mode
|
1232 |
|
|
of that rtx if so. */
|
1233 |
|
|
|
1234 |
|
|
static inline void
|
1235 |
|
|
create_integer_operand (struct expand_operand *op, HOST_WIDE_INT intval)
|
1236 |
|
|
{
|
1237 |
|
|
create_expand_operand (op, EXPAND_INTEGER, GEN_INT (intval), VOIDmode, false);
|
1238 |
|
|
}
|
1239 |
|
|
|
1240 |
|
|
extern bool valid_multiword_target_p (rtx);
|
1241 |
|
|
|
1242 |
|
|
extern bool maybe_legitimize_operands (enum insn_code icode,
|
1243 |
|
|
unsigned int opno, unsigned int nops,
|
1244 |
|
|
struct expand_operand *ops);
|
1245 |
|
|
extern rtx maybe_gen_insn (enum insn_code icode, unsigned int nops,
|
1246 |
|
|
struct expand_operand *ops);
|
1247 |
|
|
extern bool maybe_expand_insn (enum insn_code icode, unsigned int nops,
|
1248 |
|
|
struct expand_operand *ops);
|
1249 |
|
|
extern bool maybe_expand_jump_insn (enum insn_code icode, unsigned int nops,
|
1250 |
|
|
struct expand_operand *ops);
|
1251 |
|
|
extern void expand_insn (enum insn_code icode, unsigned int nops,
|
1252 |
|
|
struct expand_operand *ops);
|
1253 |
|
|
extern void expand_jump_insn (enum insn_code icode, unsigned int nops,
|
1254 |
|
|
struct expand_operand *ops);
|
1255 |
|
|
|
1256 |
|
|
extern rtx prepare_operand (enum insn_code, rtx, int, enum machine_mode,
|
1257 |
|
|
enum machine_mode, int);
|
1258 |
|
|
|
1259 |
|
|
#endif /* GCC_OPTABS_H */
|