cbe34bb5ed
From-SVN: r243994
379 lines
11 KiB
C
379 lines
11 KiB
C
/* Tree-based target query functions relating to optabs
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Copyright (C) 1987-2017 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 it under
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the terms of the GNU General Public License as published by the Free
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Software Foundation; either version 3, or (at your option) any later
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version.
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GCC is distributed in the hope that it will be useful, but WITHOUT ANY
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WARRANTY; without even the implied warranty of MERCHANTABILITY or
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FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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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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#include "config.h"
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#include "system.h"
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#include "coretypes.h"
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#include "target.h"
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#include "insn-codes.h"
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#include "tree.h"
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#include "optabs-tree.h"
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#include "stor-layout.h"
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/* Return the optab used for computing the operation given by the tree code,
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CODE and the tree EXP. This function is not always usable (for example, it
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cannot give complete results for multiplication or division) but probably
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ought to be relied on more widely throughout the expander. */
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optab
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optab_for_tree_code (enum tree_code code, const_tree type,
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enum optab_subtype subtype)
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{
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bool trapv;
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switch (code)
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{
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case BIT_AND_EXPR:
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return and_optab;
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case BIT_IOR_EXPR:
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return ior_optab;
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case BIT_NOT_EXPR:
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return one_cmpl_optab;
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case BIT_XOR_EXPR:
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return xor_optab;
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case MULT_HIGHPART_EXPR:
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return TYPE_UNSIGNED (type) ? umul_highpart_optab : smul_highpart_optab;
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case TRUNC_MOD_EXPR:
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case CEIL_MOD_EXPR:
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case FLOOR_MOD_EXPR:
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case ROUND_MOD_EXPR:
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return TYPE_UNSIGNED (type) ? umod_optab : smod_optab;
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case RDIV_EXPR:
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case TRUNC_DIV_EXPR:
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case CEIL_DIV_EXPR:
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case FLOOR_DIV_EXPR:
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case ROUND_DIV_EXPR:
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case EXACT_DIV_EXPR:
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if (TYPE_SATURATING (type))
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return TYPE_UNSIGNED (type) ? usdiv_optab : ssdiv_optab;
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return TYPE_UNSIGNED (type) ? udiv_optab : sdiv_optab;
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case LSHIFT_EXPR:
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if (TREE_CODE (type) == VECTOR_TYPE)
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{
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if (subtype == optab_vector)
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return TYPE_SATURATING (type) ? unknown_optab : vashl_optab;
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gcc_assert (subtype == optab_scalar);
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}
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if (TYPE_SATURATING (type))
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return TYPE_UNSIGNED (type) ? usashl_optab : ssashl_optab;
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return ashl_optab;
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case RSHIFT_EXPR:
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if (TREE_CODE (type) == VECTOR_TYPE)
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{
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if (subtype == optab_vector)
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return TYPE_UNSIGNED (type) ? vlshr_optab : vashr_optab;
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gcc_assert (subtype == optab_scalar);
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}
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return TYPE_UNSIGNED (type) ? lshr_optab : ashr_optab;
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case LROTATE_EXPR:
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if (TREE_CODE (type) == VECTOR_TYPE)
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{
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if (subtype == optab_vector)
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return vrotl_optab;
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gcc_assert (subtype == optab_scalar);
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}
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return rotl_optab;
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case RROTATE_EXPR:
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if (TREE_CODE (type) == VECTOR_TYPE)
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{
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if (subtype == optab_vector)
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return vrotr_optab;
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gcc_assert (subtype == optab_scalar);
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}
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return rotr_optab;
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case MAX_EXPR:
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return TYPE_UNSIGNED (type) ? umax_optab : smax_optab;
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case MIN_EXPR:
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return TYPE_UNSIGNED (type) ? umin_optab : smin_optab;
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case REALIGN_LOAD_EXPR:
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return vec_realign_load_optab;
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case WIDEN_SUM_EXPR:
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return TYPE_UNSIGNED (type) ? usum_widen_optab : ssum_widen_optab;
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case DOT_PROD_EXPR:
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return TYPE_UNSIGNED (type) ? udot_prod_optab : sdot_prod_optab;
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case SAD_EXPR:
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return TYPE_UNSIGNED (type) ? usad_optab : ssad_optab;
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case WIDEN_MULT_PLUS_EXPR:
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return (TYPE_UNSIGNED (type)
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? (TYPE_SATURATING (type)
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? usmadd_widen_optab : umadd_widen_optab)
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: (TYPE_SATURATING (type)
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? ssmadd_widen_optab : smadd_widen_optab));
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case WIDEN_MULT_MINUS_EXPR:
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return (TYPE_UNSIGNED (type)
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? (TYPE_SATURATING (type)
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? usmsub_widen_optab : umsub_widen_optab)
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: (TYPE_SATURATING (type)
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? ssmsub_widen_optab : smsub_widen_optab));
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case FMA_EXPR:
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return fma_optab;
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case REDUC_MAX_EXPR:
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return TYPE_UNSIGNED (type)
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? reduc_umax_scal_optab : reduc_smax_scal_optab;
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case REDUC_MIN_EXPR:
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return TYPE_UNSIGNED (type)
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? reduc_umin_scal_optab : reduc_smin_scal_optab;
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case REDUC_PLUS_EXPR:
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return reduc_plus_scal_optab;
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case VEC_WIDEN_MULT_HI_EXPR:
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return TYPE_UNSIGNED (type) ?
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vec_widen_umult_hi_optab : vec_widen_smult_hi_optab;
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case VEC_WIDEN_MULT_LO_EXPR:
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return TYPE_UNSIGNED (type) ?
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vec_widen_umult_lo_optab : vec_widen_smult_lo_optab;
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case VEC_WIDEN_MULT_EVEN_EXPR:
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return TYPE_UNSIGNED (type) ?
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vec_widen_umult_even_optab : vec_widen_smult_even_optab;
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case VEC_WIDEN_MULT_ODD_EXPR:
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return TYPE_UNSIGNED (type) ?
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vec_widen_umult_odd_optab : vec_widen_smult_odd_optab;
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case VEC_WIDEN_LSHIFT_HI_EXPR:
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return TYPE_UNSIGNED (type) ?
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vec_widen_ushiftl_hi_optab : vec_widen_sshiftl_hi_optab;
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case VEC_WIDEN_LSHIFT_LO_EXPR:
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return TYPE_UNSIGNED (type) ?
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vec_widen_ushiftl_lo_optab : vec_widen_sshiftl_lo_optab;
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case VEC_UNPACK_HI_EXPR:
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return TYPE_UNSIGNED (type) ?
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vec_unpacku_hi_optab : vec_unpacks_hi_optab;
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case VEC_UNPACK_LO_EXPR:
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return TYPE_UNSIGNED (type) ?
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vec_unpacku_lo_optab : vec_unpacks_lo_optab;
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case VEC_UNPACK_FLOAT_HI_EXPR:
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/* The signedness is determined from input operand. */
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return TYPE_UNSIGNED (type) ?
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vec_unpacku_float_hi_optab : vec_unpacks_float_hi_optab;
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case VEC_UNPACK_FLOAT_LO_EXPR:
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/* The signedness is determined from input operand. */
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return TYPE_UNSIGNED (type) ?
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vec_unpacku_float_lo_optab : vec_unpacks_float_lo_optab;
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case VEC_PACK_TRUNC_EXPR:
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return vec_pack_trunc_optab;
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case VEC_PACK_SAT_EXPR:
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return TYPE_UNSIGNED (type) ? vec_pack_usat_optab : vec_pack_ssat_optab;
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case VEC_PACK_FIX_TRUNC_EXPR:
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/* The signedness is determined from output operand. */
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return TYPE_UNSIGNED (type) ?
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vec_pack_ufix_trunc_optab : vec_pack_sfix_trunc_optab;
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default:
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break;
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}
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trapv = INTEGRAL_TYPE_P (type) && TYPE_OVERFLOW_TRAPS (type);
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switch (code)
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{
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case POINTER_PLUS_EXPR:
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case PLUS_EXPR:
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if (TYPE_SATURATING (type))
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return TYPE_UNSIGNED (type) ? usadd_optab : ssadd_optab;
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return trapv ? addv_optab : add_optab;
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case MINUS_EXPR:
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if (TYPE_SATURATING (type))
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return TYPE_UNSIGNED (type) ? ussub_optab : sssub_optab;
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return trapv ? subv_optab : sub_optab;
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case MULT_EXPR:
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if (TYPE_SATURATING (type))
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return TYPE_UNSIGNED (type) ? usmul_optab : ssmul_optab;
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return trapv ? smulv_optab : smul_optab;
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case NEGATE_EXPR:
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if (TYPE_SATURATING (type))
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return TYPE_UNSIGNED (type) ? usneg_optab : ssneg_optab;
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return trapv ? negv_optab : neg_optab;
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case ABS_EXPR:
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return trapv ? absv_optab : abs_optab;
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default:
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return unknown_optab;
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}
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}
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/* Function supportable_convert_operation
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Check whether an operation represented by the code CODE is a
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convert operation that is supported by the target platform in
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vector form (i.e., when operating on arguments of type VECTYPE_IN
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producing a result of type VECTYPE_OUT).
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Convert operations we currently support directly are FIX_TRUNC and FLOAT.
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This function checks if these operations are supported
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by the target platform either directly (via vector tree-codes), or via
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target builtins.
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Output:
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- CODE1 is code of vector operation to be used when
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vectorizing the operation, if available.
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- DECL is decl of target builtin functions to be used
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when vectorizing the operation, if available. In this case,
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CODE1 is CALL_EXPR. */
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bool
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supportable_convert_operation (enum tree_code code,
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tree vectype_out, tree vectype_in,
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tree *decl, enum tree_code *code1)
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{
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machine_mode m1,m2;
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bool truncp;
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m1 = TYPE_MODE (vectype_out);
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m2 = TYPE_MODE (vectype_in);
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/* First check if we can done conversion directly. */
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if ((code == FIX_TRUNC_EXPR
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&& can_fix_p (m1,m2,TYPE_UNSIGNED (vectype_out), &truncp)
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!= CODE_FOR_nothing)
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|| (code == FLOAT_EXPR
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&& can_float_p (m1,m2,TYPE_UNSIGNED (vectype_in))
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!= CODE_FOR_nothing))
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{
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*code1 = code;
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return true;
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}
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/* Now check for builtin. */
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if (targetm.vectorize.builtin_conversion
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&& targetm.vectorize.builtin_conversion (code, vectype_out, vectype_in))
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{
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*code1 = CALL_EXPR;
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*decl = targetm.vectorize.builtin_conversion (code, vectype_out,
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vectype_in);
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return true;
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}
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return false;
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}
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/* Return TRUE if appropriate vector insn is available
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for vector comparison expr with vector type VALUE_TYPE
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and resulting mask with MASK_TYPE. */
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bool
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expand_vec_cmp_expr_p (tree value_type, tree mask_type, enum tree_code code)
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{
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if (get_vec_cmp_icode (TYPE_MODE (value_type), TYPE_MODE (mask_type),
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TYPE_UNSIGNED (value_type)) != CODE_FOR_nothing)
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return true;
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if ((code == EQ_EXPR || code == NE_EXPR)
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&& (get_vec_cmp_eq_icode (TYPE_MODE (value_type), TYPE_MODE (mask_type))
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!= CODE_FOR_nothing))
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return true;
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return false;
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}
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/* Return TRUE iff, appropriate vector insns are available
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for vector cond expr with vector type VALUE_TYPE and a comparison
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with operand vector types in CMP_OP_TYPE. */
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bool
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expand_vec_cond_expr_p (tree value_type, tree cmp_op_type, enum tree_code code)
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{
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machine_mode value_mode = TYPE_MODE (value_type);
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machine_mode cmp_op_mode = TYPE_MODE (cmp_op_type);
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if (VECTOR_BOOLEAN_TYPE_P (cmp_op_type)
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&& get_vcond_mask_icode (TYPE_MODE (value_type),
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TYPE_MODE (cmp_op_type)) != CODE_FOR_nothing)
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return true;
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if (GET_MODE_SIZE (value_mode) != GET_MODE_SIZE (cmp_op_mode)
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|| GET_MODE_NUNITS (value_mode) != GET_MODE_NUNITS (cmp_op_mode))
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return false;
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if (get_vcond_icode (TYPE_MODE (value_type), TYPE_MODE (cmp_op_type),
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TYPE_UNSIGNED (cmp_op_type)) == CODE_FOR_nothing
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&& ((code != EQ_EXPR && code != NE_EXPR)
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|| get_vcond_eq_icode (TYPE_MODE (value_type),
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TYPE_MODE (cmp_op_type)) == CODE_FOR_nothing))
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return false;
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return true;
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}
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/* Use the current target and options to initialize
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TREE_OPTIMIZATION_OPTABS (OPTNODE). */
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void
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init_tree_optimization_optabs (tree optnode)
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{
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/* Quick exit if we have already computed optabs for this target. */
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if (TREE_OPTIMIZATION_BASE_OPTABS (optnode) == this_target_optabs)
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return;
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/* Forget any previous information and set up for the current target. */
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TREE_OPTIMIZATION_BASE_OPTABS (optnode) = this_target_optabs;
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struct target_optabs *tmp_optabs = (struct target_optabs *)
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TREE_OPTIMIZATION_OPTABS (optnode);
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if (tmp_optabs)
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memset (tmp_optabs, 0, sizeof (struct target_optabs));
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else
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tmp_optabs = ggc_alloc<target_optabs> ();
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/* Generate a new set of optabs into tmp_optabs. */
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init_all_optabs (tmp_optabs);
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/* If the optabs changed, record it. */
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if (memcmp (tmp_optabs, this_target_optabs, sizeof (struct target_optabs)))
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TREE_OPTIMIZATION_OPTABS (optnode) = tmp_optabs;
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else
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{
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TREE_OPTIMIZATION_OPTABS (optnode) = NULL;
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ggc_free (tmp_optabs);
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}
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}
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