23a5b65a92
From-SVN: r206289
560 lines
20 KiB
C
560 lines
20 KiB
C
/* Definitions for code generation pass of GNU compiler.
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Copyright (C) 2001-2014 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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#include "insn-opinit.h"
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typedef enum optab_tag optab;
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typedef enum optab_tag convert_optab;
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typedef enum optab_tag direct_optab;
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struct optab_libcall_d
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{
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char libcall_suffix;
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const char *libcall_basename;
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void (*libcall_gen) (optab, const char *name,
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char suffix, enum machine_mode);
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};
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struct convert_optab_libcall_d
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{
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const char *libcall_basename;
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void (*libcall_gen) (convert_optab, const char *name,
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enum machine_mode, enum machine_mode);
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};
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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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/* Contains the optab used for each rtx code, and vice-versa. */
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extern const optab code_to_optab_[NUM_RTX_CODE];
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extern const enum rtx_code optab_to_code_[NUM_OPTABS];
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static inline optab
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code_to_optab (enum rtx_code code)
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{
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return code_to_optab_[code];
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}
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static inline enum rtx_code
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optab_to_code (optab op)
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{
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return optab_to_code_[op];
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}
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extern const struct convert_optab_libcall_d convlib_def[NUM_CONVLIB_OPTABS];
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extern const struct optab_libcall_d normlib_def[NUM_NORMLIB_OPTABS];
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/* Returns the active icode for the given (encoded) optab. */
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extern enum insn_code raw_optab_handler (unsigned);
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extern bool swap_optab_enable (optab, enum machine_mode, bool);
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/* Target-dependent globals. */
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struct target_optabs {
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/* Patterns that are used by optabs that are enabled for this target. */
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bool pat_enable[NUM_OPTAB_PATTERNS];
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};
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extern struct target_optabs default_target_optabs;
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extern struct target_optabs *this_fn_optabs;
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#if SWITCHABLE_TARGET
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extern struct target_optabs *this_target_optabs;
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#else
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#define this_target_optabs (&default_target_optabs)
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#endif
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/* Define functions given in optabs.c. */
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extern rtx expand_widen_pattern_expr (sepops ops, rtx op0, rtx op1, rtx wide_op,
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rtx target, int unsignedp);
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extern rtx expand_ternary_op (enum machine_mode mode, optab ternary_optab,
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rtx op0, rtx op1, rtx op2, rtx target,
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int unsignedp);
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/* Expand a binary operation given optab and rtx operands. */
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extern rtx expand_binop (enum machine_mode, optab, rtx, rtx, rtx, int,
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enum optab_methods);
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extern rtx simplify_expand_binop (enum machine_mode mode, optab binoptab,
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rtx op0, rtx op1, rtx target, int unsignedp,
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enum optab_methods methods);
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extern bool force_expand_binop (enum machine_mode, optab, rtx, rtx, rtx, int,
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enum optab_methods);
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/* Expand a binary operation with both signed and unsigned forms. */
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extern rtx sign_expand_binop (enum machine_mode, optab, optab, rtx, rtx,
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rtx, int, enum optab_methods);
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/* Generate code to perform an operation on one operand with two results. */
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extern int expand_twoval_unop (optab, rtx, rtx, rtx, int);
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/* Generate code to perform an operation on two operands with two results. */
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extern int expand_twoval_binop (optab, rtx, rtx, rtx, rtx, int);
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/* Generate code to perform an operation on two operands with two
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results, using a library function. */
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extern bool expand_twoval_binop_libfunc (optab, rtx, rtx, rtx, rtx,
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enum rtx_code);
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/* Expand a unary arithmetic operation given optab rtx operand. */
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extern rtx expand_unop (enum machine_mode, optab, rtx, rtx, int);
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/* Expand the absolute value operation. */
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extern rtx expand_abs_nojump (enum machine_mode, rtx, rtx, int);
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extern rtx expand_abs (enum machine_mode, rtx, rtx, int, int);
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/* Expand the one's complement absolute value operation. */
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extern rtx expand_one_cmpl_abs_nojump (enum machine_mode, rtx, rtx);
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/* Expand the copysign operation. */
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extern rtx expand_copysign (rtx, rtx, rtx);
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/* Generate an instruction with a given INSN_CODE with an output and
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an input. */
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extern void emit_unop_insn (enum insn_code, rtx, rtx, enum rtx_code);
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extern bool maybe_emit_unop_insn (enum insn_code, rtx, rtx, enum rtx_code);
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/* Find a widening optab even if it doesn't widen as much as we want. */
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#define find_widening_optab_handler(A,B,C,D) \
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find_widening_optab_handler_and_mode (A, B, C, D, NULL)
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extern enum insn_code find_widening_optab_handler_and_mode (optab,
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enum machine_mode,
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enum machine_mode,
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int,
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enum machine_mode *);
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/* An extra flag to control optab_for_tree_code's behavior. This is needed to
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distinguish between machines with a vector shift that takes a scalar for the
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shift amount vs. machines that take a vector for the shift amount. */
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enum optab_subtype
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{
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optab_default,
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optab_scalar,
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optab_vector
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};
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/* Return the optab used for computing the given operation on the type given by
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the second argument. The third argument distinguishes between the types of
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vector shifts and rotates */
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extern optab optab_for_tree_code (enum tree_code, const_tree, enum optab_subtype);
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/* The various uses that a comparison can have; used by can_compare_p:
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jumps, conditional moves, store flag operations. */
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enum can_compare_purpose
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{
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ccp_jump,
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ccp_cmov,
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ccp_store_flag
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};
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/* Nonzero if a compare of mode MODE can be done straightforwardly
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(without splitting it into pieces). */
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extern int can_compare_p (enum rtx_code, enum machine_mode,
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enum can_compare_purpose);
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/* Return the INSN_CODE to use for an extend operation. */
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extern enum insn_code can_extend_p (enum machine_mode, enum machine_mode, int);
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/* Generate the body of an insn to extend Y (with mode MFROM)
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into X (with mode MTO). Do zero-extension if UNSIGNEDP is nonzero. */
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extern rtx gen_extend_insn (rtx, rtx, enum machine_mode,
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enum machine_mode, int);
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/* Call this to reset the function entry for one optab. */
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extern void set_optab_libfunc (optab, enum machine_mode, const char *);
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extern void set_conv_libfunc (convert_optab, enum machine_mode,
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enum machine_mode, const char *);
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/* Call this to install all of the __sync libcalls up to size MAX. */
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extern void init_sync_libfuncs (int max);
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/* Generate code for a FIXED_CONVERT_EXPR. */
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extern void expand_fixed_convert (rtx, rtx, int, int);
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/* Generate code for a FLOAT_EXPR. */
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extern void expand_float (rtx, rtx, int);
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/* Return the insn_code for a FLOAT_EXPR. */
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enum insn_code can_float_p (enum machine_mode, enum machine_mode, int);
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/* Return true if there is an inline compare and swap pattern. */
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extern bool can_compare_and_swap_p (enum machine_mode, bool);
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/* Return true if there is an inline atomic exchange pattern. */
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extern bool can_atomic_exchange_p (enum machine_mode, bool);
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/* Generate code for a compare and swap. */
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extern bool expand_atomic_compare_and_swap (rtx *, rtx *, rtx, rtx, rtx, bool,
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enum memmodel, enum memmodel);
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/* Generate memory barriers. */
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extern void expand_mem_thread_fence (enum memmodel);
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extern void expand_mem_signal_fence (enum memmodel);
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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 */
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bool supportable_convert_operation (enum tree_code, tree, tree, tree *,
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enum tree_code *);
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/* Generate code for a FIX_EXPR. */
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extern void expand_fix (rtx, rtx, int);
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/* Generate code for float to integral conversion. */
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extern bool expand_sfix_optab (rtx, rtx, convert_optab);
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/* Generate code for a widening multiply. */
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extern rtx expand_widening_mult (enum machine_mode, rtx, rtx, rtx, int, optab);
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/* Return tree if target supports vector operations for COND_EXPR. */
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bool expand_vec_cond_expr_p (tree, tree);
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/* Generate code for VEC_COND_EXPR. */
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extern rtx expand_vec_cond_expr (tree, tree, tree, tree, rtx);
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/* Generate code for VEC_LSHIFT_EXPR and VEC_RSHIFT_EXPR. */
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extern rtx expand_vec_shift_expr (sepops, rtx);
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/* Return true if target supports vector operations for VEC_PERM_EXPR. */
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extern bool can_vec_perm_p (enum machine_mode, bool, const unsigned char *);
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/* Generate code for VEC_PERM_EXPR. */
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extern rtx expand_vec_perm (enum machine_mode, rtx, rtx, rtx, rtx);
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/* Return non-zero if target supports a given highpart multiplication. */
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extern int can_mult_highpart_p (enum machine_mode, bool);
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/* Generate code for MULT_HIGHPART_EXPR. */
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extern rtx expand_mult_highpart (enum machine_mode, rtx, rtx, rtx, bool);
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/* Return true if target supports vector masked load/store for mode. */
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extern bool can_vec_mask_load_store_p (enum machine_mode, bool);
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/* Return the insn used to implement mode MODE of OP, or CODE_FOR_nothing
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if the target does not have such an insn. */
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static inline enum insn_code
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optab_handler (optab op, enum machine_mode mode)
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{
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unsigned scode = (op << 16) | mode;
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gcc_assert (op > LAST_CONV_OPTAB);
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return raw_optab_handler (scode);
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}
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/* Return the insn used to perform conversion OP from mode FROM_MODE
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to mode TO_MODE; return CODE_FOR_nothing if the target does not have
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such an insn. */
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static inline enum insn_code
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convert_optab_handler (convert_optab op, enum machine_mode to_mode,
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enum machine_mode from_mode)
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{
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unsigned scode = (op << 16) | (from_mode << 8) | to_mode;
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gcc_assert (op > unknown_optab && op <= LAST_CONV_OPTAB);
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return raw_optab_handler (scode);
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}
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/* Like optab_handler, but for widening_operations that have a
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TO_MODE and a FROM_MODE. */
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static inline enum insn_code
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widening_optab_handler (optab op, enum machine_mode to_mode,
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enum machine_mode from_mode)
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{
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unsigned scode = (op << 16) | to_mode;
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if (to_mode != from_mode && from_mode != VOIDmode)
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{
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/* ??? Why does find_widening_optab_handler_and_mode attempt to
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widen things that can't be widened? E.g. add_optab... */
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if (op > LAST_CONV_OPTAB)
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return CODE_FOR_nothing;
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scode |= from_mode << 8;
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}
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return raw_optab_handler (scode);
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}
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/* Return the insn used to implement mode MODE of OP, or CODE_FOR_nothing
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if the target does not have such an insn. */
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static inline enum insn_code
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direct_optab_handler (direct_optab op, enum machine_mode mode)
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{
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return optab_handler (op, mode);
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}
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/* Return true if UNOPTAB is for a trapping-on-overflow operation. */
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static inline bool
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trapv_unoptab_p (optab unoptab)
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{
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return (unoptab == negv_optab
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|| unoptab == absv_optab);
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}
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/* Return true if BINOPTAB is for a trapping-on-overflow operation. */
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static inline bool
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trapv_binoptab_p (optab binoptab)
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{
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return (binoptab == addv_optab
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|| binoptab == subv_optab
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|| binoptab == smulv_optab);
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}
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extern rtx optab_libfunc (optab optab, enum machine_mode mode);
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extern rtx convert_optab_libfunc (convert_optab optab, enum machine_mode mode1,
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enum machine_mode mode2);
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/* Describes an instruction that inserts or extracts a bitfield. */
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struct extraction_insn
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{
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/* The code of the instruction. */
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enum insn_code icode;
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/* The mode that the structure operand should have. This is byte_mode
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when using the legacy insv, extv and extzv patterns to access memory. */
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enum machine_mode struct_mode;
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/* The mode of the field to be inserted or extracted, and by extension
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the mode of the insertion or extraction itself. */
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enum machine_mode field_mode;
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/* The mode of the field's bit position. This is only important
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when the position is variable rather than constant. */
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enum machine_mode pos_mode;
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};
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/* Enumerates the possible extraction_insn operations. */
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enum extraction_pattern { EP_insv, EP_extv, EP_extzv };
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extern bool get_best_reg_extraction_insn (extraction_insn *,
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enum extraction_pattern,
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unsigned HOST_WIDE_INT,
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enum machine_mode);
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extern bool get_best_mem_extraction_insn (extraction_insn *,
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enum extraction_pattern,
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HOST_WIDE_INT, HOST_WIDE_INT,
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enum machine_mode);
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extern bool insn_operand_matches (enum insn_code icode, unsigned int opno,
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rtx operand);
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/* Describes the type of an expand_operand. Each value is associated
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with a create_*_operand function; see the comments above those
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functions for details. */
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enum expand_operand_type {
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EXPAND_FIXED,
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EXPAND_OUTPUT,
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EXPAND_INPUT,
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EXPAND_CONVERT_TO,
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EXPAND_CONVERT_FROM,
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EXPAND_ADDRESS,
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EXPAND_INTEGER
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};
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/* Information about an operand for instruction expansion. */
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struct expand_operand {
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/* The type of operand. */
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ENUM_BITFIELD (expand_operand_type) type : 8;
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/* True if any conversion should treat VALUE as being unsigned
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rather than signed. Only meaningful for certain types. */
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unsigned int unsigned_p : 1;
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/* Unused; available for future use. */
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unsigned int unused : 7;
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/* The mode passed to the convert_*_operand function. It has a
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type-dependent meaning. */
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ENUM_BITFIELD (machine_mode) mode : 16;
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/* The value of the operand. */
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rtx value;
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};
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/* Initialize OP with the given fields. Initialise the other fields
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to their default values. */
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static inline void
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create_expand_operand (struct expand_operand *op,
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enum expand_operand_type type,
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rtx value, enum machine_mode mode,
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bool unsigned_p)
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{
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op->type = type;
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op->unsigned_p = unsigned_p;
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op->unused = 0;
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op->mode = mode;
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op->value = value;
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}
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/* Make OP describe an operand that must use rtx X, even if X is volatile. */
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static inline void
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create_fixed_operand (struct expand_operand *op, rtx x)
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{
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create_expand_operand (op, EXPAND_FIXED, x, VOIDmode, false);
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}
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/* Make OP describe an output operand that must have mode MODE.
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X, if nonnull, is a suggestion for where the output should be stored.
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It is OK for VALUE to be inconsistent with MODE, although it will just
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be ignored in that case. */
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static inline void
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create_output_operand (struct expand_operand *op, rtx x,
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enum machine_mode mode)
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{
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create_expand_operand (op, EXPAND_OUTPUT, x, mode, false);
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}
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/* Make OP describe an input operand that must have mode MODE and
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value VALUE; MODE cannot be VOIDmode. The backend may request that
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VALUE be copied into a different kind of rtx before being passed
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as an operand. */
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static inline void
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create_input_operand (struct expand_operand *op, rtx value,
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enum machine_mode mode)
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{
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create_expand_operand (op, EXPAND_INPUT, value, mode, false);
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}
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/* Like create_input_operand, except that VALUE must first be converted
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to mode MODE. UNSIGNED_P says whether VALUE is unsigned. */
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static inline void
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create_convert_operand_to (struct expand_operand *op, rtx value,
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enum machine_mode mode, bool unsigned_p)
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{
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create_expand_operand (op, EXPAND_CONVERT_TO, value, mode, unsigned_p);
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}
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/* Make OP describe an input operand that should have the same value
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as VALUE, after any mode conversion that the backend might request.
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If VALUE is a CONST_INT, it should be treated as having mode MODE.
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UNSIGNED_P says whether VALUE is unsigned. */
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static inline void
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create_convert_operand_from (struct expand_operand *op, rtx value,
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enum machine_mode mode, bool unsigned_p)
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{
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create_expand_operand (op, EXPAND_CONVERT_FROM, value, mode, unsigned_p);
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}
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extern void create_convert_operand_from_type (struct expand_operand *op,
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rtx value, tree type);
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/* Make OP describe an input Pmode address operand. VALUE is the value
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of the address, but it may need to be converted to Pmode first. */
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static inline void
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create_address_operand (struct expand_operand *op, rtx value)
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{
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create_expand_operand (op, EXPAND_ADDRESS, value, Pmode, false);
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}
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/* Make OP describe an input operand that has value INTVAL and that has
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no inherent mode. This function should only be used for operands that
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are always expand-time constants. The backend may request that INTVAL
|
||
be copied into a different kind of rtx, but it must specify the mode
|
||
of that rtx if so. */
|
||
|
||
static inline void
|
||
create_integer_operand (struct expand_operand *op, HOST_WIDE_INT intval)
|
||
{
|
||
create_expand_operand (op, EXPAND_INTEGER, GEN_INT (intval), VOIDmode, false);
|
||
}
|
||
|
||
extern bool valid_multiword_target_p (rtx);
|
||
|
||
extern bool maybe_legitimize_operands (enum insn_code icode,
|
||
unsigned int opno, unsigned int nops,
|
||
struct expand_operand *ops);
|
||
extern rtx maybe_gen_insn (enum insn_code icode, unsigned int nops,
|
||
struct expand_operand *ops);
|
||
extern bool maybe_expand_insn (enum insn_code icode, unsigned int nops,
|
||
struct expand_operand *ops);
|
||
extern bool maybe_expand_jump_insn (enum insn_code icode, unsigned int nops,
|
||
struct expand_operand *ops);
|
||
extern void expand_insn (enum insn_code icode, unsigned int nops,
|
||
struct expand_operand *ops);
|
||
extern void expand_jump_insn (enum insn_code icode, unsigned int nops,
|
||
struct expand_operand *ops);
|
||
|
||
extern rtx prepare_operand (enum insn_code, rtx, int, enum machine_mode,
|
||
enum machine_mode, int);
|
||
|
||
extern void gen_int_libfunc (optab, const char *, char, enum machine_mode);
|
||
extern void gen_fp_libfunc (optab, const char *, char, enum machine_mode);
|
||
extern void gen_fixed_libfunc (optab, const char *, char, enum machine_mode);
|
||
extern void gen_signed_fixed_libfunc (optab, const char *, char,
|
||
enum machine_mode);
|
||
extern void gen_unsigned_fixed_libfunc (optab, const char *, char,
|
||
enum machine_mode);
|
||
extern void gen_int_fp_libfunc (optab, const char *, char, enum machine_mode);
|
||
extern void gen_intv_fp_libfunc (optab, const char *, char, enum machine_mode);
|
||
extern void gen_int_fp_fixed_libfunc (optab, const char *, char,
|
||
enum machine_mode);
|
||
extern void gen_int_fp_signed_fixed_libfunc (optab, const char *, char,
|
||
enum machine_mode);
|
||
extern void gen_int_fixed_libfunc (optab, const char *, char,
|
||
enum machine_mode);
|
||
extern void gen_int_signed_fixed_libfunc (optab, const char *, char,
|
||
enum machine_mode);
|
||
extern void gen_int_unsigned_fixed_libfunc (optab, const char *, char,
|
||
enum machine_mode);
|
||
|
||
extern void gen_interclass_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_int_to_fp_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_ufloat_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_int_to_fp_nondecimal_conv_libfunc (convert_optab,
|
||
const char *,
|
||
enum machine_mode,
|
||
enum machine_mode);
|
||
extern void gen_fp_to_int_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_intraclass_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_trunc_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_extend_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_fract_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_fractuns_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_satfract_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode, enum machine_mode);
|
||
extern void gen_satfractuns_conv_libfunc (convert_optab, const char *,
|
||
enum machine_mode,
|
||
enum machine_mode);
|
||
extern void init_tree_optimization_optabs (tree);
|
||
|
||
#endif /* GCC_OPTABS_H */
|