1 /* Generate from machine description:
2 - some #define configuration flags.
3 Copyright (C) 1987, 1991, 1997, 1998, 1999, 2000, 2003, 2004
4 Free Software Foundation, Inc.
6 This file is part of GCC.
8 GCC is free software; you can redistribute it and/or modify it under
9 the terms of the GNU General Public License as published by the Free
10 Software Foundation; either version 2, or (at your option) any later
13 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
14 WARRANTY; without even the implied warranty of MERCHANTABILITY or
15 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
18 You should have received a copy of the GNU General Public License
19 along with GCC; see the file COPYING. If not, write to the Free
20 Software Foundation, 51 Franklin Street, Fifth Floor, Boston, MA
26 #include "coretypes.h"
30 #include "gensupport.h"
33 /* flags to determine output of machine description dependent #define's. */
34 static int max_recog_operands
; /* Largest operand number seen. */
35 static int max_dup_operands
; /* Largest number of match_dup in any insn. */
36 static int max_clobbers_per_insn
;
37 static int have_cc0_flag
;
38 static int have_cmove_flag
;
39 static int have_cond_exec_flag
;
40 static int have_lo_sum_flag
;
41 static int have_peephole_flag
;
42 static int have_peephole2_flag
;
44 /* Maximum number of insns seen in a split. */
45 static int max_insns_per_split
= 1;
47 /* Maximum number of input insns for peephole2. */
48 static int max_insns_per_peep2
;
50 static int clobbers_seen_this_insn
;
51 static int dup_operands_seen_this_insn
;
53 static void walk_insn_part (rtx
, int, int);
54 static void gen_insn (rtx
);
55 static void gen_expand (rtx
);
56 static void gen_split (rtx
);
57 static void gen_peephole (rtx
);
58 static void gen_peephole2 (rtx
);
60 /* RECOG_P will be nonzero if this pattern was seen in a context where it will
61 be used to recognize, rather than just generate an insn.
63 NON_PC_SET_SRC will be nonzero if this pattern was seen in a SET_SRC
64 of a SET whose destination is not (pc). */
67 walk_insn_part (rtx part
, int recog_p
, int non_pc_set_src
)
71 const char *format_ptr
;
76 code
= GET_CODE (part
);
80 clobbers_seen_this_insn
++;
84 if (XINT (part
, 0) > max_recog_operands
)
85 max_recog_operands
= XINT (part
, 0);
90 ++dup_operands_seen_this_insn
;
94 if (XINT (part
, 0) > max_recog_operands
)
95 max_recog_operands
= XINT (part
, 0);
96 /* Now scan the rtl's in the vector inside the MATCH_OPERATOR or
101 if (GET_CODE (XEXP (part
, 0)) == MATCH_OPERAND
102 || GET_CODE (XEXP (part
, 0)) == MATCH_DUP
)
107 ++dup_operands_seen_this_insn
;
108 if (XINT (part
, 0) > max_recog_operands
)
109 max_recog_operands
= XINT (part
, 0);
119 have_lo_sum_flag
= 1;
123 walk_insn_part (SET_DEST (part
), 0, recog_p
);
124 walk_insn_part (SET_SRC (part
), recog_p
,
125 GET_CODE (SET_DEST (part
)) != PC
);
129 /* Only consider this machine as having a conditional move if the
130 two arms of the IF_THEN_ELSE are both MATCH_OPERAND. Otherwise,
131 we have some specific IF_THEN_ELSE construct (like the doz
132 instruction on the RS/6000) that can't be used in the general
133 context we want it for. */
135 if (recog_p
&& non_pc_set_src
136 && GET_CODE (XEXP (part
, 1)) == MATCH_OPERAND
137 && GET_CODE (XEXP (part
, 2)) == MATCH_OPERAND
)
143 have_cond_exec_flag
= 1;
146 case REG
: case CONST_INT
: case SYMBOL_REF
:
154 format_ptr
= GET_RTX_FORMAT (GET_CODE (part
));
156 for (i
= 0; i
< GET_RTX_LENGTH (GET_CODE (part
)); i
++)
157 switch (*format_ptr
++)
161 walk_insn_part (XEXP (part
, i
), recog_p
, non_pc_set_src
);
164 if (XVEC (part
, i
) != NULL
)
165 for (j
= 0; j
< XVECLEN (part
, i
); j
++)
166 walk_insn_part (XVECEXP (part
, i
, j
), recog_p
, non_pc_set_src
);
176 /* Walk the insn pattern to gather the #define's status. */
177 clobbers_seen_this_insn
= 0;
178 dup_operands_seen_this_insn
= 0;
179 if (XVEC (insn
, 1) != 0)
180 for (i
= 0; i
< XVECLEN (insn
, 1); i
++)
181 walk_insn_part (XVECEXP (insn
, 1, i
), 1, 0);
183 if (clobbers_seen_this_insn
> max_clobbers_per_insn
)
184 max_clobbers_per_insn
= clobbers_seen_this_insn
;
185 if (dup_operands_seen_this_insn
> max_dup_operands
)
186 max_dup_operands
= dup_operands_seen_this_insn
;
189 /* Similar but scan a define_expand. */
192 gen_expand (rtx insn
)
196 /* Walk the insn pattern to gather the #define's status. */
198 /* Note that we don't bother recording the number of MATCH_DUPs
199 that occur in a gen_expand, because only reload cares about that. */
200 if (XVEC (insn
, 1) != 0)
201 for (i
= 0; i
< XVECLEN (insn
, 1); i
++)
203 /* Compute the maximum SETs and CLOBBERS
204 in any one of the sub-insns;
205 don't sum across all of them. */
206 clobbers_seen_this_insn
= 0;
208 walk_insn_part (XVECEXP (insn
, 1, i
), 0, 0);
210 if (clobbers_seen_this_insn
> max_clobbers_per_insn
)
211 max_clobbers_per_insn
= clobbers_seen_this_insn
;
215 /* Similar but scan a define_split. */
218 gen_split (rtx split
)
222 /* Look through the patterns that are matched
223 to compute the maximum operand number. */
224 for (i
= 0; i
< XVECLEN (split
, 0); i
++)
225 walk_insn_part (XVECEXP (split
, 0, i
), 1, 0);
226 /* Look at the number of insns this insn could split into. */
227 if (XVECLEN (split
, 2) > max_insns_per_split
)
228 max_insns_per_split
= XVECLEN (split
, 2);
232 gen_peephole (rtx peep
)
236 /* Look through the patterns that are matched
237 to compute the maximum operand number. */
238 for (i
= 0; i
< XVECLEN (peep
, 0); i
++)
239 walk_insn_part (XVECEXP (peep
, 0, i
), 1, 0);
243 gen_peephole2 (rtx peep
)
247 /* Look through the patterns that are matched
248 to compute the maximum operand number. */
249 for (i
= XVECLEN (peep
, 0) - 1; i
>= 0; --i
)
250 walk_insn_part (XVECEXP (peep
, 0, i
), 1, 0);
252 /* Look at the number of insns this insn can be matched from. */
253 for (i
= XVECLEN (peep
, 0) - 1, n
= 0; i
>= 0; --i
)
254 if (GET_CODE (XVECEXP (peep
, 0, i
)) != MATCH_DUP
255 && GET_CODE (XVECEXP (peep
, 0, i
)) != MATCH_SCRATCH
)
257 if (n
> max_insns_per_peep2
)
258 max_insns_per_peep2
= n
;
262 main (int argc
, char **argv
)
266 progname
= "genconfig";
268 if (init_md_reader_args (argc
, argv
) != SUCCESS_EXIT_CODE
)
269 return (FATAL_EXIT_CODE
);
271 puts ("/* Generated automatically by the program `genconfig'");
272 puts (" from the machine description file `md'. */\n");
273 puts ("#ifndef GCC_INSN_CONFIG_H");
274 puts ("#define GCC_INSN_CONFIG_H\n");
276 /* Allow at least 30 operands for the sake of asm constructs. */
277 /* ??? We *really* ought to reorganize things such that there
278 is no fixed upper bound. */
279 max_recog_operands
= 29; /* We will add 1 later. */
280 max_dup_operands
= 1;
282 /* Read the machine description. */
286 int line_no
, insn_code_number
= 0;
288 desc
= read_md_rtx (&line_no
, &insn_code_number
);
292 switch (GET_CODE (desc
))
306 case DEFINE_PEEPHOLE2
:
307 have_peephole2_flag
= 1;
308 gen_peephole2 (desc
);
311 case DEFINE_PEEPHOLE
:
312 have_peephole_flag
= 1;
321 printf ("#define MAX_RECOG_OPERANDS %d\n", max_recog_operands
+ 1);
322 printf ("#define MAX_DUP_OPERANDS %d\n", max_dup_operands
);
324 /* This is conditionally defined, in case the user writes code which emits
325 more splits than we can readily see (and knows s/he does it). */
326 printf ("#ifndef MAX_INSNS_PER_SPLIT\n");
327 printf ("#define MAX_INSNS_PER_SPLIT %d\n", max_insns_per_split
);
332 printf ("#define HAVE_cc0 1\n");
333 printf ("#define CC0_P(X) ((X) == cc0_rtx)\n");
337 /* We output CC0_P this way to make sure that X is declared
339 printf ("#define CC0_P(X) ((X) ? 0 : 0)\n");
343 printf ("#define HAVE_conditional_move 1\n");
345 if (have_cond_exec_flag
)
346 printf ("#define HAVE_conditional_execution 1\n");
348 if (have_lo_sum_flag
)
349 printf ("#define HAVE_lo_sum 1\n");
351 if (have_peephole_flag
)
352 printf ("#define HAVE_peephole 1\n");
354 if (have_peephole2_flag
)
356 printf ("#define HAVE_peephole2 1\n");
357 printf ("#define MAX_INSNS_PER_PEEP2 %d\n", max_insns_per_peep2
);
360 puts("\n#endif /* GCC_INSN_CONFIG_H */");
362 if (ferror (stdout
) || fflush (stdout
) || fclose (stdout
))
363 return FATAL_EXIT_CODE
;
365 return SUCCESS_EXIT_CODE
;
368 /* Define this so we can link with print-rtl.o to get debug_rtx function. */
370 get_insn_name (int ARG_UNUSED (code
))