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optabs.h revision 1.1.1.4
      1 /* Definitions for code generation pass of GNU compiler.
      2    Copyright (C) 2001-2016 Free Software Foundation, Inc.
      3 
      4 This file is part of GCC.
      5 
      6 GCC is free software; you can redistribute it and/or modify
      7 it under the terms of the GNU General Public License as published by
      8 the Free Software Foundation; either version 3, or (at your option)
      9 any later version.
     10 
     11 GCC is distributed in the hope that it will be useful,
     12 but WITHOUT ANY WARRANTY; without even the implied warranty of
     13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
     14 GNU General Public License for more details.
     15 
     16 You should have received a copy of the GNU General Public License
     17 along with GCC; see the file COPYING3.  If not see
     18 <http://www.gnu.org/licenses/>.  */
     19 
     20 #ifndef GCC_OPTABS_H
     21 #define GCC_OPTABS_H
     22 
     23 #include "optabs-query.h"
     24 #include "optabs-libfuncs.h"
     25 
     26 /* Generate code for a widening multiply.  */
     27 extern rtx expand_widening_mult (machine_mode, rtx, rtx, rtx, int, optab);
     28 
     29 /* Describes the type of an expand_operand.  Each value is associated
     30    with a create_*_operand function; see the comments above those
     31    functions for details.  */
     32 enum expand_operand_type {
     33   EXPAND_FIXED,
     34   EXPAND_OUTPUT,
     35   EXPAND_INPUT,
     36   EXPAND_CONVERT_TO,
     37   EXPAND_CONVERT_FROM,
     38   EXPAND_ADDRESS,
     39   EXPAND_INTEGER
     40 };
     41 
     42 /* Information about an operand for instruction expansion.  */
     43 struct expand_operand {
     44   /* The type of operand.  */
     45   ENUM_BITFIELD (expand_operand_type) type : 8;
     46 
     47   /* True if any conversion should treat VALUE as being unsigned
     48      rather than signed.  Only meaningful for certain types.  */
     49   unsigned int unsigned_p : 1;
     50 
     51   /* Unused; available for future use.  */
     52   unsigned int unused : 7;
     53 
     54   /* The mode passed to the convert_*_operand function.  It has a
     55      type-dependent meaning.  */
     56   ENUM_BITFIELD (machine_mode) mode : 16;
     57 
     58   /* The value of the operand.  */
     59   rtx value;
     60 };
     61 
     62 /* Initialize OP with the given fields.  Initialise the other fields
     63    to their default values.  */
     64 
     65 static inline void
     66 create_expand_operand (struct expand_operand *op,
     67 		       enum expand_operand_type type,
     68 		       rtx value, machine_mode mode,
     69 		       bool unsigned_p)
     70 {
     71   op->type = type;
     72   op->unsigned_p = unsigned_p;
     73   op->unused = 0;
     74   op->mode = mode;
     75   op->value = value;
     76 }
     77 
     78 /* Make OP describe an operand that must use rtx X, even if X is volatile.  */
     79 
     80 static inline void
     81 create_fixed_operand (struct expand_operand *op, rtx x)
     82 {
     83   create_expand_operand (op, EXPAND_FIXED, x, VOIDmode, false);
     84 }
     85 
     86 /* Make OP describe an output operand that must have mode MODE.
     87    X, if nonnull, is a suggestion for where the output should be stored.
     88    It is OK for VALUE to be inconsistent with MODE, although it will just
     89    be ignored in that case.  */
     90 
     91 static inline void
     92 create_output_operand (struct expand_operand *op, rtx x,
     93 		       machine_mode mode)
     94 {
     95   create_expand_operand (op, EXPAND_OUTPUT, x, mode, false);
     96 }
     97 
     98 /* Make OP describe an input operand that must have mode MODE and
     99    value VALUE; MODE cannot be VOIDmode.  The backend may request that
    100    VALUE be copied into a different kind of rtx before being passed
    101    as an operand.  */
    102 
    103 static inline void
    104 create_input_operand (struct expand_operand *op, rtx value,
    105 		      machine_mode mode)
    106 {
    107   create_expand_operand (op, EXPAND_INPUT, value, mode, false);
    108 }
    109 
    110 /* Like create_input_operand, except that VALUE must first be converted
    111    to mode MODE.  UNSIGNED_P says whether VALUE is unsigned.  */
    112 
    113 static inline void
    114 create_convert_operand_to (struct expand_operand *op, rtx value,
    115 			   machine_mode mode, bool unsigned_p)
    116 {
    117   create_expand_operand (op, EXPAND_CONVERT_TO, value, mode, unsigned_p);
    118 }
    119 
    120 /* Make OP describe an input operand that should have the same value
    121    as VALUE, after any mode conversion that the backend might request.
    122    If VALUE is a CONST_INT, it should be treated as having mode MODE.
    123    UNSIGNED_P says whether VALUE is unsigned.  */
    124 
    125 static inline void
    126 create_convert_operand_from (struct expand_operand *op, rtx value,
    127 			     machine_mode mode, bool unsigned_p)
    128 {
    129   create_expand_operand (op, EXPAND_CONVERT_FROM, value, mode, unsigned_p);
    130 }
    131 
    132 
    133 /* Make OP describe an input Pmode address operand.  VALUE is the value
    134    of the address, but it may need to be converted to Pmode first.  */
    135 
    136 static inline void
    137 create_address_operand (struct expand_operand *op, rtx value)
    138 {
    139   create_expand_operand (op, EXPAND_ADDRESS, value, Pmode, false);
    140 }
    141 
    142 /* Make OP describe an input operand that has value INTVAL and that has
    143    no inherent mode.  This function should only be used for operands that
    144    are always expand-time constants.  The backend may request that INTVAL
    145    be copied into a different kind of rtx, but it must specify the mode
    146    of that rtx if so.  */
    147 
    148 static inline void
    149 create_integer_operand (struct expand_operand *op, HOST_WIDE_INT intval)
    150 {
    151   create_expand_operand (op, EXPAND_INTEGER, GEN_INT (intval), VOIDmode, false);
    152 }
    153 
    154 
    155 /* Passed to expand_simple_binop and expand_binop to say which options
    156    to try to use if the requested operation can't be open-coded on the
    157    requisite mode.  Either OPTAB_LIB or OPTAB_LIB_WIDEN says try using
    158    a library call.  Either OPTAB_WIDEN or OPTAB_LIB_WIDEN says try
    159    using a wider mode.  OPTAB_MUST_WIDEN says try widening and don't
    160    try anything else.  */
    161 
    162 enum optab_methods
    163 {
    164   OPTAB_DIRECT,
    165   OPTAB_LIB,
    166   OPTAB_WIDEN,
    167   OPTAB_LIB_WIDEN,
    168   OPTAB_MUST_WIDEN
    169 };
    170 
    171 extern rtx expand_widen_pattern_expr (struct separate_ops *, rtx , rtx , rtx,
    172                                       rtx, int);
    173 extern rtx expand_ternary_op (machine_mode mode, optab ternary_optab,
    174 			      rtx op0, rtx op1, rtx op2, rtx target,
    175 			      int unsignedp);
    176 extern rtx simplify_expand_binop (machine_mode mode, optab binoptab,
    177 				  rtx op0, rtx op1, rtx target, int unsignedp,
    178 				  enum optab_methods methods);
    179 extern bool force_expand_binop (machine_mode, optab, rtx, rtx, rtx, int,
    180 				enum optab_methods);
    181 
    182 /* Generate code for a simple binary or unary operation.  "Simple" in
    183    this case means "can be unambiguously described by a (mode, code)
    184    pair and mapped to a single optab."  */
    185 extern rtx expand_simple_binop (machine_mode, enum rtx_code, rtx,
    186 				rtx, rtx, int, enum optab_methods);
    187 
    188 /* Expand a binary operation given optab and rtx operands.  */
    189 extern rtx expand_binop (machine_mode, optab, rtx, rtx, rtx, int,
    190 			 enum optab_methods);
    191 
    192 /* Expand a binary operation with both signed and unsigned forms.  */
    193 extern rtx sign_expand_binop (machine_mode, optab, optab, rtx, rtx,
    194 			      rtx, int, enum optab_methods);
    195 
    196 /* Generate code to perform an operation on one operand with two results.  */
    197 extern int expand_twoval_unop (optab, rtx, rtx, rtx, int);
    198 
    199 /* Generate code to perform an operation on two operands with two results.  */
    200 extern int expand_twoval_binop (optab, rtx, rtx, rtx, rtx, int);
    201 
    202 /* Generate code to perform an operation on two operands with two
    203    results, using a library function.  */
    204 extern bool expand_twoval_binop_libfunc (optab, rtx, rtx, rtx, rtx,
    205 					 enum rtx_code);
    206 extern rtx expand_simple_unop (machine_mode, enum rtx_code, rtx, rtx,
    207 			       int);
    208 
    209 /* Expand a unary arithmetic operation given optab rtx operand.  */
    210 extern rtx expand_unop (machine_mode, optab, rtx, rtx, int);
    211 
    212 /* Expand the absolute value operation.  */
    213 extern rtx expand_abs_nojump (machine_mode, rtx, rtx, int);
    214 extern rtx expand_abs (machine_mode, rtx, rtx, int, int);
    215 
    216 /* Expand the one's complement absolute value operation.  */
    217 extern rtx expand_one_cmpl_abs_nojump (machine_mode, rtx, rtx);
    218 
    219 /* Expand the copysign operation.  */
    220 extern rtx expand_copysign (rtx, rtx, rtx);
    221 /* Generate an instruction with a given INSN_CODE with an output and
    222    an input.  */
    223 extern bool maybe_emit_unop_insn (enum insn_code, rtx, rtx, enum rtx_code);
    224 extern void emit_unop_insn (enum insn_code, rtx, rtx, enum rtx_code);
    225 
    226 /* Emit code to make a call to a constant function or a library call.  */
    227 extern void emit_libcall_block (rtx, rtx, rtx, rtx);
    228 
    229 /* The various uses that a comparison can have; used by can_compare_p:
    230    jumps, conditional moves, store flag operations.  */
    231 enum can_compare_purpose
    232 {
    233   ccp_jump,
    234   ccp_cmov,
    235   ccp_store_flag
    236 };
    237 
    238 /* Nonzero if a compare of mode MODE can be done straightforwardly
    239    (without splitting it into pieces).  */
    240 extern int can_compare_p (enum rtx_code, machine_mode,
    241 			  enum can_compare_purpose);
    242 extern rtx prepare_operand (enum insn_code, rtx, int, machine_mode,
    243 			    machine_mode, int);
    244 /* Emit a pair of rtl insns to compare two rtx's and to jump
    245    to a label if the comparison is true.  */
    246 extern void emit_cmp_and_jump_insns (rtx, rtx, enum rtx_code, rtx,
    247 				     machine_mode, int, rtx, int prob=-1);
    248 
    249 /* Generate code to indirectly jump to a location given in the rtx LOC.  */
    250 extern void emit_indirect_jump (rtx);
    251 
    252 #include "insn-config.h"
    253 
    254 #ifndef GCC_INSN_CONFIG_H
    255 #error "insn-config.h must be included before optabs.h"
    256 #endif
    257 
    258 /* Emit a conditional move operation.  */
    259 rtx emit_conditional_move (rtx, enum rtx_code, rtx, rtx, machine_mode,
    260 			   rtx, rtx, machine_mode, int);
    261 
    262 /* Emit a conditional negate or bitwise complement operation.  */
    263 rtx emit_conditional_neg_or_complement (rtx, rtx_code, machine_mode, rtx,
    264 					 rtx, rtx);
    265 
    266 rtx emit_conditional_add (rtx, enum rtx_code, rtx, rtx, machine_mode,
    267 			  rtx, rtx, machine_mode, int);
    268 
    269 /* Create but don't emit one rtl instruction to perform certain operations.
    270    Modes must match; operands must meet the operation's predicates.
    271    Likewise for subtraction and for just copying.  */
    272 extern rtx_insn *gen_add2_insn (rtx, rtx);
    273 extern rtx_insn *gen_add3_insn (rtx, rtx, rtx);
    274 extern int have_add2_insn (rtx, rtx);
    275 extern rtx_insn *gen_addptr3_insn (rtx, rtx, rtx);
    276 extern int have_addptr3_insn (rtx, rtx, rtx);
    277 extern rtx_insn *gen_sub2_insn (rtx, rtx);
    278 extern rtx_insn *gen_sub3_insn (rtx, rtx, rtx);
    279 extern int have_sub2_insn (rtx, rtx);
    280 
    281 /* Generate the body of an insn to extend Y (with mode MFROM)
    282    into X (with mode MTO).  Do zero-extension if UNSIGNEDP is nonzero.  */
    283 extern rtx_insn *gen_extend_insn (rtx, rtx, machine_mode, machine_mode, int);
    284 
    285 /* Generate code for a FLOAT_EXPR.  */
    286 extern void expand_float (rtx, rtx, int);
    287 
    288 /* Generate code for a FIX_EXPR.  */
    289 extern void expand_fix (rtx, rtx, int);
    290 
    291 /* Generate code for a FIXED_CONVERT_EXPR.  */
    292 extern void expand_fixed_convert (rtx, rtx, int, int);
    293 
    294 /* Generate code for float to integral conversion.  */
    295 extern bool expand_sfix_optab (rtx, rtx, convert_optab);
    296 
    297 /* Report whether the machine description contains an insn which can
    298    perform the operation described by CODE and MODE.  */
    299 extern int have_insn_for (enum rtx_code, machine_mode);
    300 
    301 /* Generate a conditional trap instruction.  */
    302 extern rtx_insn *gen_cond_trap (enum rtx_code, rtx, rtx, rtx);
    303 
    304 /* Generate code for VEC_PERM_EXPR.  */
    305 extern rtx expand_vec_perm (machine_mode, rtx, rtx, rtx, rtx);
    306 
    307 /* Generate code for vector comparison.  */
    308 extern rtx expand_vec_cmp_expr (tree, tree, rtx);
    309 
    310 /* Generate code for VEC_COND_EXPR.  */
    311 extern rtx expand_vec_cond_expr (tree, tree, tree, tree, rtx);
    312 
    313 /* Generate code for MULT_HIGHPART_EXPR.  */
    314 extern rtx expand_mult_highpart (machine_mode, rtx, rtx, rtx, bool);
    315 
    316 extern rtx expand_sync_lock_test_and_set (rtx, rtx, rtx);
    317 extern rtx expand_atomic_test_and_set (rtx, rtx, enum memmodel);
    318 extern rtx expand_atomic_exchange (rtx, rtx, rtx, enum memmodel);
    319 extern bool expand_atomic_compare_and_swap (rtx *, rtx *, rtx, rtx, rtx, bool,
    320 					    enum memmodel, enum memmodel);
    321 /* Generate memory barriers.  */
    322 extern void expand_mem_thread_fence (enum memmodel);
    323 extern void expand_mem_signal_fence (enum memmodel);
    324 
    325 rtx expand_atomic_load (rtx, rtx, enum memmodel);
    326 rtx expand_atomic_store (rtx, rtx, enum memmodel, bool);
    327 rtx expand_atomic_fetch_op (rtx, rtx, rtx, enum rtx_code, enum memmodel,
    328 			      bool);
    329 
    330 extern bool insn_operand_matches (enum insn_code icode, unsigned int opno,
    331 				  rtx operand);
    332 extern bool valid_multiword_target_p (rtx);
    333 extern void create_convert_operand_from_type (struct expand_operand *op,
    334 					      rtx value, tree type);
    335 extern bool maybe_legitimize_operands (enum insn_code icode,
    336 				       unsigned int opno, unsigned int nops,
    337 				       struct expand_operand *ops);
    338 extern rtx_insn *maybe_gen_insn (enum insn_code icode, unsigned int nops,
    339 				 struct expand_operand *ops);
    340 extern bool maybe_expand_insn (enum insn_code icode, unsigned int nops,
    341 			       struct expand_operand *ops);
    342 extern bool maybe_expand_jump_insn (enum insn_code icode, unsigned int nops,
    343 				    struct expand_operand *ops);
    344 extern void expand_insn (enum insn_code icode, unsigned int nops,
    345 			 struct expand_operand *ops);
    346 extern void expand_jump_insn (enum insn_code icode, unsigned int nops,
    347 			      struct expand_operand *ops);
    348 
    349 extern enum rtx_code get_rtx_code (enum tree_code tcode, bool unsignedp);
    350 
    351 #endif /* GCC_OPTABS_H */
    352