1 /* Generate the machine mode enumeration and associated tables.
2 Copyright (C) 2003-2013 Free Software Foundation, Inc.
4 This file is part of GCC.
6 GCC is free software; you can redistribute it and/or modify it under
7 the terms of the GNU General Public License as published by the Free
8 Software Foundation; either version 3, or (at your option) any later
11 GCC is distributed in the hope that it will be useful, but WITHOUT ANY
12 WARRANTY; without even the implied warranty of MERCHANTABILITY or
13 FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
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/>. */
25 /* enum mode_class is normally defined by machmode.h but we can't
26 include that header here. */
27 #include "mode-classes.def"
29 #define DEF_MODE_CLASS(M) M
30 enum mode_class
{ MODE_CLASSES
, MAX_MODE_CLASS
};
33 /* Text names of mode classes, for output. */
34 #define DEF_MODE_CLASS(M) #M
35 static const char *const mode_class_names
[MAX_MODE_CLASS
] =
42 #ifdef EXTRA_MODES_FILE
43 # define HAVE_EXTRA_MODES 1
45 # define HAVE_EXTRA_MODES 0
46 # define EXTRA_MODES_FILE ""
49 /* Data structure for building up what we know about a mode.
50 They're clustered by mode class. */
53 struct mode_data
*next
; /* next this class - arbitrary order */
55 const char *name
; /* printable mode name -- SI, not SImode */
56 enum mode_class cl
; /* this mode class */
57 unsigned int precision
; /* size in bits, equiv to TYPE_PRECISION */
58 unsigned int bytesize
; /* storage size in addressable units */
59 unsigned int ncomponents
; /* number of subunits */
60 unsigned int alignment
; /* mode alignment */
61 const char *format
; /* floating point format - float modes only */
63 struct mode_data
*component
; /* mode of components */
64 struct mode_data
*wider
; /* next wider mode */
66 struct mode_data
*contained
; /* Pointer to list of modes that have
67 this mode as a component. */
68 struct mode_data
*next_cont
; /* Next mode in that list. */
70 const char *file
; /* file and line of definition, */
71 unsigned int line
; /* for error reporting */
72 unsigned int counter
; /* Rank ordering of modes */
73 unsigned int ibit
; /* the number of integral bits */
74 unsigned int fbit
; /* the number of fractional bits */
77 static struct mode_data
*modes
[MAX_MODE_CLASS
];
78 static unsigned int n_modes
[MAX_MODE_CLASS
];
79 static struct mode_data
*void_mode
;
81 static const struct mode_data blank_mode
= {
82 0, "<unknown>", MAX_MODE_CLASS
,
85 "<unknown>", 0, 0, 0, 0
88 static htab_t modes_by_name
;
90 /* Data structure for recording target-specified runtime adjustments
91 to a particular mode. We support varying the byte size, the
92 alignment, and the floating point format. */
95 struct mode_adjust
*next
;
96 struct mode_data
*mode
;
97 const char *adjustment
;
103 static struct mode_adjust
*adj_bytesize
;
104 static struct mode_adjust
*adj_alignment
;
105 static struct mode_adjust
*adj_format
;
106 static struct mode_adjust
*adj_ibit
;
107 static struct mode_adjust
*adj_fbit
;
109 /* Mode class operations. */
110 static enum mode_class
111 complex_class (enum mode_class c
)
115 case MODE_INT
: return MODE_COMPLEX_INT
;
116 case MODE_FLOAT
: return MODE_COMPLEX_FLOAT
;
118 error ("no complex class for class %s", mode_class_names
[c
]);
123 static enum mode_class
124 vector_class (enum mode_class cl
)
128 case MODE_INT
: return MODE_VECTOR_INT
;
129 case MODE_FLOAT
: return MODE_VECTOR_FLOAT
;
130 case MODE_FRACT
: return MODE_VECTOR_FRACT
;
131 case MODE_UFRACT
: return MODE_VECTOR_UFRACT
;
132 case MODE_ACCUM
: return MODE_VECTOR_ACCUM
;
133 case MODE_UACCUM
: return MODE_VECTOR_UACCUM
;
135 error ("no vector class for class %s", mode_class_names
[cl
]);
140 /* Utility routines. */
141 static inline struct mode_data
*
142 find_mode (const char *name
)
144 struct mode_data key
;
147 return (struct mode_data
*) htab_find (modes_by_name
, &key
);
150 static struct mode_data
*
151 new_mode (enum mode_class cl
, const char *name
,
152 const char *file
, unsigned int line
)
155 static unsigned int count
= 0;
157 m
= find_mode (name
);
160 error ("%s:%d: duplicate definition of mode \"%s\"",
161 trim_filename (file
), line
, name
);
162 error ("%s:%d: previous definition here", m
->file
, m
->line
);
166 m
= XNEW (struct mode_data
);
167 memcpy (m
, &blank_mode
, sizeof (struct mode_data
));
171 m
->file
= trim_filename (file
);
173 m
->counter
= count
++;
179 *htab_find_slot (modes_by_name
, m
, INSERT
) = m
;
185 hash_mode (const void *p
)
187 const struct mode_data
*m
= (const struct mode_data
*)p
;
188 return htab_hash_string (m
->name
);
192 eq_mode (const void *p
, const void *q
)
194 const struct mode_data
*a
= (const struct mode_data
*)p
;
195 const struct mode_data
*b
= (const struct mode_data
*)q
;
197 return !strcmp (a
->name
, b
->name
);
200 #define for_all_modes(C, M) \
201 for (C = 0; C < MAX_MODE_CLASS; C++) \
202 for (M = modes[C]; M; M = M->next)
204 static void ATTRIBUTE_UNUSED
205 new_adjust (const char *name
,
206 struct mode_adjust
**category
, const char *catname
,
207 const char *adjustment
,
208 enum mode_class required_class_from
,
209 enum mode_class required_class_to
,
210 const char *file
, unsigned int line
)
212 struct mode_data
*mode
= find_mode (name
);
213 struct mode_adjust
*a
;
215 file
= trim_filename (file
);
219 error ("%s:%d: no mode \"%s\"", file
, line
, name
);
223 if (required_class_from
!= MODE_RANDOM
224 && (mode
->cl
< required_class_from
|| mode
->cl
> required_class_to
))
226 error ("%s:%d: mode \"%s\" is not among class {%s, %s}",
227 file
, line
, name
, mode_class_names
[required_class_from
] + 5,
228 mode_class_names
[required_class_to
] + 5);
232 for (a
= *category
; a
; a
= a
->next
)
235 error ("%s:%d: mode \"%s\" already has a %s adjustment",
236 file
, line
, name
, catname
);
237 error ("%s:%d: previous adjustment here", a
->file
, a
->line
);
241 a
= XNEW (struct mode_adjust
);
243 a
->adjustment
= adjustment
;
251 /* Diagnose failure to meet expectations in a partially filled out
253 enum requirement
{ SET
, UNSET
, OPTIONAL
};
255 #define validate_field_(mname, fname, req, val, unset, file, line) do { \
260 error ("%s:%d: (%s) field %s must be set", \
261 file, line, mname, fname); \
265 error ("%s:%d: (%s) field %s must not be set", \
266 file, line, mname, fname); \
272 #define validate_field(M, F) \
273 validate_field_(M->name, #F, r_##F, M->F, blank_mode.F, M->file, M->line)
276 validate_mode (struct mode_data
*m
,
277 enum requirement r_precision
,
278 enum requirement r_bytesize
,
279 enum requirement r_component
,
280 enum requirement r_ncomponents
,
281 enum requirement r_format
)
283 validate_field (m
, precision
);
284 validate_field (m
, bytesize
);
285 validate_field (m
, component
);
286 validate_field (m
, ncomponents
);
287 validate_field (m
, format
);
289 #undef validate_field
290 #undef validate_field_
292 /* Given a partially-filled-out mode structure, figure out what we can
293 and fill the rest of it in; die if it isn't enough. */
295 complete_mode (struct mode_data
*m
)
297 unsigned int alignment
;
301 error ("%s:%d: mode with no name", m
->file
, m
->line
);
304 if (m
->cl
== MAX_MODE_CLASS
)
306 error ("%s:%d: %smode has no mode class", m
->file
, m
->line
, m
->name
);
313 /* Nothing more need be said. */
314 if (!strcmp (m
->name
, "VOID"))
317 validate_mode (m
, UNSET
, UNSET
, UNSET
, UNSET
, UNSET
);
326 /* Again, nothing more need be said. For historical reasons,
327 the size of a CC mode is four units. */
328 validate_mode (m
, UNSET
, UNSET
, UNSET
, UNSET
, UNSET
);
336 case MODE_POINTER_BOUNDS
:
338 case MODE_DECIMAL_FLOAT
:
343 /* A scalar mode must have a byte size, may have a bit size,
344 and must not have components. A float mode must have a
346 validate_mode (m
, OPTIONAL
, SET
, UNSET
, UNSET
,
347 (m
->cl
== MODE_FLOAT
|| m
->cl
== MODE_DECIMAL_FLOAT
)
354 case MODE_PARTIAL_INT
:
355 /* A partial integer mode uses ->component to say what the
356 corresponding full-size integer mode is, and may also
357 specify a bit size. */
358 validate_mode (m
, OPTIONAL
, UNSET
, SET
, UNSET
, UNSET
);
360 m
->bytesize
= m
->component
->bytesize
;
365 case MODE_COMPLEX_INT
:
366 case MODE_COMPLEX_FLOAT
:
367 /* Complex modes should have a component indicated, but no more. */
368 validate_mode (m
, UNSET
, UNSET
, SET
, UNSET
, UNSET
);
370 if (m
->component
->precision
!= (unsigned int)-1)
371 m
->precision
= 2 * m
->component
->precision
;
372 m
->bytesize
= 2 * m
->component
->bytesize
;
375 case MODE_VECTOR_INT
:
376 case MODE_VECTOR_FLOAT
:
377 case MODE_VECTOR_FRACT
:
378 case MODE_VECTOR_UFRACT
:
379 case MODE_VECTOR_ACCUM
:
380 case MODE_VECTOR_UACCUM
:
381 /* Vector modes should have a component and a number of components. */
382 validate_mode (m
, UNSET
, UNSET
, SET
, SET
, UNSET
);
383 if (m
->component
->precision
!= (unsigned int)-1)
384 m
->precision
= m
->ncomponents
* m
->component
->precision
;
385 m
->bytesize
= m
->ncomponents
* m
->component
->bytesize
;
392 /* If not already specified, the mode alignment defaults to the largest
393 power of two that divides the size of the object. Complex types are
394 not more aligned than their contents. */
395 if (m
->cl
== MODE_COMPLEX_INT
|| m
->cl
== MODE_COMPLEX_FLOAT
)
396 alignment
= m
->component
->bytesize
;
398 alignment
= m
->bytesize
;
400 m
->alignment
= alignment
& (~alignment
+ 1);
402 /* If this mode has components, make the component mode point back
403 to this mode, for the sake of adjustments. */
406 m
->next_cont
= m
->component
->contained
;
407 m
->component
->contained
= m
;
412 complete_all_modes (void)
417 for_all_modes (cl
, m
)
421 /* For each mode in class CLASS, construct a corresponding complex mode. */
422 #define COMPLEX_MODES(C) make_complex_modes (MODE_##C, __FILE__, __LINE__)
424 make_complex_modes (enum mode_class cl
,
425 const char *file
, unsigned int line
)
429 enum mode_class cclass
= complex_class (cl
);
431 if (cclass
== MODE_RANDOM
)
434 for (m
= modes
[cl
]; m
; m
= m
->next
)
439 /* Skip BImode. FIXME: BImode probably shouldn't be MODE_INT. */
440 if (m
->precision
== 1)
443 m_len
= strlen (m
->name
);
444 /* The leading "1 +" is in case we prepend a "C" below. */
445 buf
= (char *) xmalloc (1 + m_len
+ 1);
447 /* Float complex modes are named SCmode, etc.
448 Int complex modes are named CSImode, etc.
449 This inconsistency should be eliminated. */
451 if (cl
== MODE_FLOAT
)
453 memcpy (buf
, m
->name
, m_len
+ 1);
454 p
= strchr (buf
, 'F');
455 if (p
== 0 && strchr (buf
, 'D') == 0)
457 error ("%s:%d: float mode \"%s\" has no 'F' or 'D'",
458 m
->file
, m
->line
, m
->name
);
468 memcpy (buf
+ 1, m
->name
, m_len
+ 1);
471 c
= new_mode (cclass
, buf
, file
, line
);
476 /* For all modes in class CL, construct vector modes of width
477 WIDTH, having as many components as necessary. */
478 #define VECTOR_MODES(C, W) make_vector_modes (MODE_##C, W, __FILE__, __LINE__)
479 static void ATTRIBUTE_UNUSED
480 make_vector_modes (enum mode_class cl
, unsigned int width
,
481 const char *file
, unsigned int line
)
486 unsigned int ncomponents
;
487 enum mode_class vclass
= vector_class (cl
);
489 if (vclass
== MODE_RANDOM
)
492 for (m
= modes
[cl
]; m
; m
= m
->next
)
494 /* Do not construct vector modes with only one element, or
495 vector modes where the element size doesn't divide the full
497 ncomponents
= width
/ m
->bytesize
;
500 if (width
% m
->bytesize
)
503 /* Skip QFmode and BImode. FIXME: this special case should
505 if (cl
== MODE_FLOAT
&& m
->bytesize
== 1)
507 if (cl
== MODE_INT
&& m
->precision
== 1)
510 if ((size_t)snprintf (buf
, sizeof buf
, "V%u%s", ncomponents
, m
->name
)
513 error ("%s:%d: mode name \"%s\" is too long",
514 m
->file
, m
->line
, m
->name
);
518 v
= new_mode (vclass
, xstrdup (buf
), file
, line
);
520 v
->ncomponents
= ncomponents
;
526 #define _SPECIAL_MODE(C, N) \
527 make_special_mode (MODE_##C, #N, __FILE__, __LINE__)
528 #define RANDOM_MODE(N) _SPECIAL_MODE (RANDOM, N)
529 #define CC_MODE(N) _SPECIAL_MODE (CC, N)
532 make_special_mode (enum mode_class cl
, const char *name
,
533 const char *file
, unsigned int line
)
535 new_mode (cl
, name
, file
, line
);
538 #define POINTER_BOUNDS_MODE(N, Y) \
539 make_pointer_bounds_mode (#N, Y, __FILE__, __LINE__)
541 static void ATTRIBUTE_UNUSED
542 make_pointer_bounds_mode (const char *name
,
543 unsigned int bytesize
,
544 const char *file
, unsigned int line
)
546 struct mode_data
*m
= new_mode (MODE_POINTER_BOUNDS
, name
, file
, line
);
547 m
->bytesize
= bytesize
;
551 #define INT_MODE(N, Y) FRACTIONAL_INT_MODE (N, -1U, Y)
552 #define FRACTIONAL_INT_MODE(N, B, Y) \
553 make_int_mode (#N, B, Y, __FILE__, __LINE__)
556 make_int_mode (const char *name
,
557 unsigned int precision
, unsigned int bytesize
,
558 const char *file
, unsigned int line
)
560 struct mode_data
*m
= new_mode (MODE_INT
, name
, file
, line
);
561 m
->bytesize
= bytesize
;
562 m
->precision
= precision
;
565 #define FRACT_MODE(N, Y, F) \
566 make_fixed_point_mode (MODE_FRACT, #N, Y, 0, F, __FILE__, __LINE__)
568 #define UFRACT_MODE(N, Y, F) \
569 make_fixed_point_mode (MODE_UFRACT, #N, Y, 0, F, __FILE__, __LINE__)
571 #define ACCUM_MODE(N, Y, I, F) \
572 make_fixed_point_mode (MODE_ACCUM, #N, Y, I, F, __FILE__, __LINE__)
574 #define UACCUM_MODE(N, Y, I, F) \
575 make_fixed_point_mode (MODE_UACCUM, #N, Y, I, F, __FILE__, __LINE__)
577 /* Create a fixed-point mode by setting CL, NAME, BYTESIZE, IBIT, FBIT,
581 make_fixed_point_mode (enum mode_class cl
,
583 unsigned int bytesize
,
586 const char *file
, unsigned int line
)
588 struct mode_data
*m
= new_mode (cl
, name
, file
, line
);
589 m
->bytesize
= bytesize
;
594 #define FLOAT_MODE(N, Y, F) FRACTIONAL_FLOAT_MODE (N, -1U, Y, F)
595 #define FRACTIONAL_FLOAT_MODE(N, B, Y, F) \
596 make_float_mode (#N, B, Y, #F, __FILE__, __LINE__)
599 make_float_mode (const char *name
,
600 unsigned int precision
, unsigned int bytesize
,
602 const char *file
, unsigned int line
)
604 struct mode_data
*m
= new_mode (MODE_FLOAT
, name
, file
, line
);
605 m
->bytesize
= bytesize
;
606 m
->precision
= precision
;
610 #define DECIMAL_FLOAT_MODE(N, Y, F) \
611 FRACTIONAL_DECIMAL_FLOAT_MODE (N, -1U, Y, F)
612 #define FRACTIONAL_DECIMAL_FLOAT_MODE(N, B, Y, F) \
613 make_decimal_float_mode (#N, B, Y, #F, __FILE__, __LINE__)
616 make_decimal_float_mode (const char *name
,
617 unsigned int precision
, unsigned int bytesize
,
619 const char *file
, unsigned int line
)
621 struct mode_data
*m
= new_mode (MODE_DECIMAL_FLOAT
, name
, file
, line
);
622 m
->bytesize
= bytesize
;
623 m
->precision
= precision
;
627 #define RESET_FLOAT_FORMAT(N, F) \
628 reset_float_format (#N, #F, __FILE__, __LINE__)
629 static void ATTRIBUTE_UNUSED
630 reset_float_format (const char *name
, const char *format
,
631 const char *file
, unsigned int line
)
633 struct mode_data
*m
= find_mode (name
);
636 error ("%s:%d: no mode \"%s\"", file
, line
, name
);
639 if (m
->cl
!= MODE_FLOAT
&& m
->cl
!= MODE_DECIMAL_FLOAT
)
641 error ("%s:%d: mode \"%s\" is not a FLOAT class", file
, line
, name
);
647 /* Partial integer modes are specified by relation to a full integer
649 #define PARTIAL_INT_MODE(M,PREC,NAME) \
650 make_partial_integer_mode (#M, #NAME, PREC, __FILE__, __LINE__)
651 static void ATTRIBUTE_UNUSED
652 make_partial_integer_mode (const char *base
, const char *name
,
653 unsigned int precision
,
654 const char *file
, unsigned int line
)
657 struct mode_data
*component
= find_mode (base
);
660 error ("%s:%d: no mode \"%s\"", file
, line
, name
);
663 if (component
->cl
!= MODE_INT
)
665 error ("%s:%d: mode \"%s\" is not class INT", file
, line
, name
);
669 m
= new_mode (MODE_PARTIAL_INT
, name
, file
, line
);
670 m
->precision
= precision
;
671 m
->component
= component
;
674 /* A single vector mode can be specified by naming its component
675 mode and the number of components. */
676 #define VECTOR_MODE(C, M, N) \
677 make_vector_mode (MODE_##C, #M, N, __FILE__, __LINE__);
678 static void ATTRIBUTE_UNUSED
679 make_vector_mode (enum mode_class bclass
,
681 unsigned int ncomponents
,
682 const char *file
, unsigned int line
)
685 enum mode_class vclass
= vector_class (bclass
);
686 struct mode_data
*component
= find_mode (base
);
689 if (vclass
== MODE_RANDOM
)
693 error ("%s:%d: no mode \"%s\"", file
, line
, base
);
696 if (component
->cl
!= bclass
697 && (component
->cl
!= MODE_PARTIAL_INT
698 || bclass
!= MODE_INT
))
700 error ("%s:%d: mode \"%s\" is not class %s",
701 file
, line
, base
, mode_class_names
[bclass
] + 5);
705 if ((size_t)snprintf (namebuf
, sizeof namebuf
, "V%u%s",
706 ncomponents
, base
) >= sizeof namebuf
)
708 error ("%s:%d: mode name \"%s\" is too long",
713 v
= new_mode (vclass
, xstrdup (namebuf
), file
, line
);
714 v
->ncomponents
= ncomponents
;
715 v
->component
= component
;
719 #define _ADD_ADJUST(A, M, X, C1, C2) \
720 new_adjust (#M, &adj_##A, #A, #X, MODE_##C1, MODE_##C2, __FILE__, __LINE__)
722 #define ADJUST_BYTESIZE(M, X) _ADD_ADJUST (bytesize, M, X, RANDOM, RANDOM)
723 #define ADJUST_ALIGNMENT(M, X) _ADD_ADJUST (alignment, M, X, RANDOM, RANDOM)
724 #define ADJUST_FLOAT_FORMAT(M, X) _ADD_ADJUST (format, M, X, FLOAT, FLOAT)
725 #define ADJUST_IBIT(M, X) _ADD_ADJUST (ibit, M, X, ACCUM, UACCUM)
726 #define ADJUST_FBIT(M, X) _ADD_ADJUST (fbit, M, X, FRACT, UACCUM)
731 #include "machmode.def"
736 /* Sort a list of modes into the order needed for the WIDER field:
737 major sort by precision, minor sort by component precision.
740 QI < HI < SI < DI < TI
741 V4QI < V2HI < V8QI < V4HI < V2SI.
743 If the precision is not set, sort by the bytesize. A mode with
744 precision set gets sorted before a mode without precision set, if
745 they have the same bytesize; this is the right thing because
746 the precision must always be smaller than the bytesize * BITS_PER_UNIT.
747 We don't have to do anything special to get this done -- an unset
748 precision shows up as (unsigned int)-1, i.e. UINT_MAX. */
750 cmp_modes (const void *a
, const void *b
)
752 const struct mode_data
*const m
= *(const struct mode_data
*const*)a
;
753 const struct mode_data
*const n
= *(const struct mode_data
*const*)b
;
755 if (m
->bytesize
> n
->bytesize
)
757 else if (m
->bytesize
< n
->bytesize
)
760 if (m
->precision
> n
->precision
)
762 else if (m
->precision
< n
->precision
)
765 if (!m
->component
&& !n
->component
)
767 if (m
->counter
< n
->counter
)
773 if (m
->component
->bytesize
> n
->component
->bytesize
)
775 else if (m
->component
->bytesize
< n
->component
->bytesize
)
778 if (m
->component
->precision
> n
->component
->precision
)
780 else if (m
->component
->precision
< n
->component
->precision
)
783 if (m
->counter
< n
->counter
)
790 calc_wider_mode (void)
794 struct mode_data
**sortbuf
;
795 unsigned int max_n_modes
= 0;
798 for (c
= 0; c
< MAX_MODE_CLASS
; c
++)
799 max_n_modes
= MAX (max_n_modes
, n_modes
[c
]);
801 /* Allocate max_n_modes + 1 entries to leave room for the extra null
802 pointer assigned after the qsort call below. */
803 sortbuf
= XALLOCAVEC (struct mode_data
*, max_n_modes
+ 1);
805 for (c
= 0; c
< MAX_MODE_CLASS
; c
++)
807 /* "wider" is not meaningful for MODE_RANDOM and MODE_CC.
808 However, we want these in textual order, and we have
809 precisely the reverse. */
810 if (c
== MODE_RANDOM
|| c
== MODE_CC
)
812 struct mode_data
*prev
, *next
;
814 for (prev
= 0, m
= modes
[c
]; m
; m
= next
)
816 m
->wider
= void_mode
;
818 /* this is nreverse */
830 for (i
= 0, m
= modes
[c
]; m
; i
++, m
= m
->next
)
833 qsort (sortbuf
, i
, sizeof (struct mode_data
*), cmp_modes
);
836 for (j
= 0; j
< i
; j
++)
838 sortbuf
[j
]->next
= sortbuf
[j
+ 1];
839 if (c
== MODE_PARTIAL_INT
)
840 sortbuf
[j
]->wider
= sortbuf
[j
]->component
;
842 sortbuf
[j
]->wider
= sortbuf
[j
]->next
;
845 modes
[c
] = sortbuf
[0];
850 /* Output routines. */
852 #define tagged_printf(FMT, ARG, TAG) do { \
853 int count_ = printf (" " FMT ",", ARG); \
854 printf ("%*s/* %s */\n", 27 - count_, "", TAG); \
857 #define print_decl(TYPE, NAME, ASIZE) \
858 puts ("\nconst " TYPE " " NAME "[" ASIZE "] =\n{");
860 #define print_maybe_const_decl(TYPE, NAME, ASIZE, CATEGORY) \
861 printf ("\n" TYPE " " NAME "[" ASIZE "] = \n{\n", \
862 adj_##CATEGORY ? "" : "const ")
864 #define print_closer() puts ("};")
866 /* Compute the max bitsize of some of the classes of integers. It may
867 be that there are needs for the other integer classes, and this
868 code is easy to extend. */
872 unsigned int max
, mmax
;
877 for (max
= 1, i
= modes
[MODE_INT
]; i
; i
= i
->next
)
878 if (max
< i
->bytesize
)
881 for (max
= 1, i
= modes
[MODE_PARTIAL_INT
]; i
; i
= i
->next
)
882 if (max
< i
->bytesize
)
886 printf ("#define MAX_BITSIZE_MODE_ANY_INT %d*BITS_PER_UNIT\n", mmax
);
889 for (j
= 0; j
< MAX_MODE_CLASS
; j
++)
890 for (i
= modes
[j
]; i
; i
= i
->next
)
891 if (mmax
< i
->bytesize
)
893 printf ("#define MAX_BITSIZE_MODE_ANY_MODE %d*BITS_PER_UNIT\n", mmax
);
897 emit_insn_modes_h (void)
900 struct mode_data
*m
, *first
, *last
;
902 printf ("/* Generated automatically from machmode.def%s%s\n",
903 HAVE_EXTRA_MODES
? " and " : "",
909 #ifndef GCC_INSN_MODES_H\n\
910 #define GCC_INSN_MODES_H\n\
912 enum machine_mode\n{");
914 for (c
= 0; c
< MAX_MODE_CLASS
; c
++)
915 for (m
= modes
[c
]; m
; m
= m
->next
)
917 int count_
= printf (" %smode,", m
->name
);
918 printf ("%*s/* %s:%d */\n", 27 - count_
, "",
919 trim_filename (m
->file
), m
->line
);
922 puts (" MAX_MACHINE_MODE,\n");
924 for (c
= 0; c
< MAX_MODE_CLASS
; c
++)
928 for (m
= first
; m
; last
= m
, m
= m
->next
)
931 /* Don't use BImode for MIN_MODE_INT, since otherwise the middle
932 end will try to use it for bitfields in structures and the
933 like, which we do not want. Only the target md file should
934 generate BImode widgets. */
935 if (first
&& first
->precision
== 1 && c
== MODE_INT
)
939 printf (" MIN_%s = %smode,\n MAX_%s = %smode,\n\n",
940 mode_class_names
[c
], first
->name
,
941 mode_class_names
[c
], last
->name
);
943 printf (" MIN_%s = %smode,\n MAX_%s = %smode,\n\n",
944 mode_class_names
[c
], void_mode
->name
,
945 mode_class_names
[c
], void_mode
->name
);
949 NUM_MACHINE_MODES = MAX_MACHINE_MODE\n\
952 /* I can't think of a better idea, can you? */
953 printf ("#define CONST_MODE_SIZE%s\n", adj_bytesize
? "" : " const");
954 printf ("#define CONST_MODE_BASE_ALIGN%s\n", adj_alignment
? "" : " const");
955 #if 0 /* disabled for backward compatibility, temporary */
956 printf ("#define CONST_REAL_FORMAT_FOR_MODE%s\n", adj_format
? "" :" const");
958 printf ("#define CONST_MODE_IBIT%s\n", adj_ibit
? "" : " const");
959 printf ("#define CONST_MODE_FBIT%s\n", adj_fbit
? "" : " const");
963 #endif /* insn-modes.h */");
967 emit_insn_modes_c_header (void)
969 printf ("/* Generated automatically from machmode.def%s%s\n",
970 HAVE_EXTRA_MODES
? " and " : "",
976 #include \"config.h\"\n\
977 #include \"system.h\"\n\
978 #include \"coretypes.h\"\n\
980 #include \"machmode.h\"\n\
981 #include \"real.h\"");
985 emit_min_insn_modes_c_header (void)
987 printf ("/* Generated automatically from machmode.def%s%s\n",
988 HAVE_EXTRA_MODES
? " and " : "",
994 #include \"bconfig.h\"\n\
995 #include \"system.h\"\n\
996 #include \"machmode.h\"");
1000 emit_mode_name (void)
1003 struct mode_data
*m
;
1005 print_decl ("char *const", "mode_name", "NUM_MACHINE_MODES");
1007 for_all_modes (c
, m
)
1008 printf (" \"%s\",\n", m
->name
);
1014 emit_mode_class (void)
1017 struct mode_data
*m
;
1019 print_decl ("unsigned char", "mode_class", "NUM_MACHINE_MODES");
1021 for_all_modes (c
, m
)
1022 tagged_printf ("%s", mode_class_names
[m
->cl
], m
->name
);
1028 emit_mode_precision (void)
1031 struct mode_data
*m
;
1033 print_decl ("unsigned short", "mode_precision", "NUM_MACHINE_MODES");
1035 for_all_modes (c
, m
)
1036 if (m
->precision
!= (unsigned int)-1)
1037 tagged_printf ("%u", m
->precision
, m
->name
);
1039 tagged_printf ("%u*BITS_PER_UNIT", m
->bytesize
, m
->name
);
1045 emit_mode_size (void)
1048 struct mode_data
*m
;
1050 print_maybe_const_decl ("%sunsigned char", "mode_size",
1051 "NUM_MACHINE_MODES", bytesize
);
1053 for_all_modes (c
, m
)
1054 tagged_printf ("%u", m
->bytesize
, m
->name
);
1060 emit_mode_nunits (void)
1063 struct mode_data
*m
;
1065 print_decl ("unsigned char", "mode_nunits", "NUM_MACHINE_MODES");
1067 for_all_modes (c
, m
)
1068 tagged_printf ("%u", m
->ncomponents
, m
->name
);
1074 emit_mode_wider (void)
1077 struct mode_data
*m
;
1079 print_decl ("unsigned char", "mode_wider", "NUM_MACHINE_MODES");
1081 for_all_modes (c
, m
)
1082 tagged_printf ("%smode",
1083 m
->wider
? m
->wider
->name
: void_mode
->name
,
1087 print_decl ("unsigned char", "mode_2xwider", "NUM_MACHINE_MODES");
1089 for_all_modes (c
, m
)
1091 struct mode_data
* m2
;
1094 m2
&& m2
!= void_mode
;
1097 if (m2
->bytesize
< 2 * m
->bytesize
)
1099 if (m
->precision
!= (unsigned int) -1)
1101 if (m2
->precision
!= 2 * m
->precision
)
1106 if (m2
->precision
!= (unsigned int) -1)
1110 /* For vectors we want twice the number of components,
1111 with the same element type. */
1112 if (m
->cl
== MODE_VECTOR_INT
1113 || m
->cl
== MODE_VECTOR_FLOAT
1114 || m
->cl
== MODE_VECTOR_FRACT
1115 || m
->cl
== MODE_VECTOR_UFRACT
1116 || m
->cl
== MODE_VECTOR_ACCUM
1117 || m
->cl
== MODE_VECTOR_UACCUM
)
1119 if (m2
->ncomponents
!= 2 * m
->ncomponents
)
1121 if (m
->component
!= m2
->component
)
1127 if (m2
== void_mode
)
1129 tagged_printf ("%smode",
1130 m2
? m2
->name
: void_mode
->name
,
1138 emit_mode_mask (void)
1141 struct mode_data
*m
;
1143 print_decl ("unsigned HOST_WIDE_INT", "mode_mask_array",
1144 "NUM_MACHINE_MODES");
1146 #define MODE_MASK(m) \\\n\
1147 ((m) >= HOST_BITS_PER_WIDE_INT) \\\n\
1148 ? ~(unsigned HOST_WIDE_INT) 0 \\\n\
1149 : ((unsigned HOST_WIDE_INT) 1 << (m)) - 1\n");
1151 for_all_modes (c
, m
)
1152 if (m
->precision
!= (unsigned int)-1)
1153 tagged_printf ("MODE_MASK (%u)", m
->precision
, m
->name
);
1155 tagged_printf ("MODE_MASK (%u*BITS_PER_UNIT)", m
->bytesize
, m
->name
);
1157 puts ("#undef MODE_MASK");
1162 emit_mode_inner (void)
1165 struct mode_data
*m
;
1167 print_decl ("unsigned char", "mode_inner", "NUM_MACHINE_MODES");
1169 for_all_modes (c
, m
)
1170 tagged_printf ("%smode",
1171 c
!= MODE_PARTIAL_INT
&& m
->component
1172 ? m
->component
->name
: void_mode
->name
,
1179 emit_mode_base_align (void)
1182 struct mode_data
*m
;
1184 print_maybe_const_decl ("%sunsigned char",
1185 "mode_base_align", "NUM_MACHINE_MODES",
1188 for_all_modes (c
, m
)
1189 tagged_printf ("%u", m
->alignment
, m
->name
);
1195 emit_class_narrowest_mode (void)
1199 print_decl ("unsigned char", "class_narrowest_mode", "MAX_MODE_CLASS");
1201 for (c
= 0; c
< MAX_MODE_CLASS
; c
++)
1202 /* Bleah, all this to get the comment right for MIN_MODE_INT. */
1203 tagged_printf ("MIN_%s", mode_class_names
[c
],
1205 ? ((c
!= MODE_INT
|| modes
[c
]->precision
!= 1)
1208 ? modes
[c
]->next
->name
1216 emit_real_format_for_mode (void)
1218 struct mode_data
*m
;
1220 /* The entities pointed to by this table are constant, whether
1221 or not the table itself is constant.
1223 For backward compatibility this table is always writable
1224 (several targets modify it in TARGET_OPTION_OVERRIDE). FIXME:
1225 convert all said targets to use ADJUST_FORMAT instead. */
1227 print_maybe_const_decl ("const struct real_format *%s",
1228 "real_format_for_mode",
1229 "MAX_MODE_FLOAT - MIN_MODE_FLOAT + 1",
1232 print_decl ("struct real_format *\n", "real_format_for_mode",
1233 "MAX_MODE_FLOAT - MIN_MODE_FLOAT + 1 "
1234 "+ MAX_MODE_DECIMAL_FLOAT - MIN_MODE_DECIMAL_FLOAT + 1");
1237 /* The beginning of the table is entries for float modes. */
1238 for (m
= modes
[MODE_FLOAT
]; m
; m
= m
->next
)
1239 if (!strcmp (m
->format
, "0"))
1240 tagged_printf ("%s", m
->format
, m
->name
);
1242 tagged_printf ("&%s", m
->format
, m
->name
);
1244 /* The end of the table is entries for decimal float modes. */
1245 for (m
= modes
[MODE_DECIMAL_FLOAT
]; m
; m
= m
->next
)
1246 if (!strcmp (m
->format
, "0"))
1247 tagged_printf ("%s", m
->format
, m
->name
);
1249 tagged_printf ("&%s", m
->format
, m
->name
);
1255 emit_mode_adjustments (void)
1257 struct mode_adjust
*a
;
1258 struct mode_data
*m
;
1262 \ninit_adjust_machine_modes (void)\
1264 \n size_t s ATTRIBUTE_UNUSED;");
1266 /* Size adjustments must be propagated to all containing modes.
1267 A size adjustment forces us to recalculate the alignment too. */
1268 for (a
= adj_bytesize
; a
; a
= a
->next
)
1270 printf ("\n /* %s:%d */\n s = %s;\n",
1271 a
->file
, a
->line
, a
->adjustment
);
1272 printf (" mode_size[%smode] = s;\n", a
->mode
->name
);
1273 printf (" mode_base_align[%smode] = s & (~s + 1);\n",
1276 for (m
= a
->mode
->contained
; m
; m
= m
->next_cont
)
1280 case MODE_COMPLEX_INT
:
1281 case MODE_COMPLEX_FLOAT
:
1282 printf (" mode_size[%smode] = 2*s;\n", m
->name
);
1283 printf (" mode_base_align[%smode] = s & (~s + 1);\n",
1287 case MODE_VECTOR_INT
:
1288 case MODE_VECTOR_FLOAT
:
1289 case MODE_VECTOR_FRACT
:
1290 case MODE_VECTOR_UFRACT
:
1291 case MODE_VECTOR_ACCUM
:
1292 case MODE_VECTOR_UACCUM
:
1293 printf (" mode_size[%smode] = %d*s;\n",
1294 m
->name
, m
->ncomponents
);
1295 printf (" mode_base_align[%smode] = (%d*s) & (~(%d*s)+1);\n",
1296 m
->name
, m
->ncomponents
, m
->ncomponents
);
1301 "mode %s is neither vector nor complex but contains %s",
1302 m
->name
, a
->mode
->name
);
1308 /* Alignment adjustments propagate too.
1309 ??? This may not be the right thing for vector modes. */
1310 for (a
= adj_alignment
; a
; a
= a
->next
)
1312 printf ("\n /* %s:%d */\n s = %s;\n",
1313 a
->file
, a
->line
, a
->adjustment
);
1314 printf (" mode_base_align[%smode] = s;\n", a
->mode
->name
);
1316 for (m
= a
->mode
->contained
; m
; m
= m
->next_cont
)
1320 case MODE_COMPLEX_INT
:
1321 case MODE_COMPLEX_FLOAT
:
1322 printf (" mode_base_align[%smode] = s;\n", m
->name
);
1325 case MODE_VECTOR_INT
:
1326 case MODE_VECTOR_FLOAT
:
1327 case MODE_VECTOR_FRACT
:
1328 case MODE_VECTOR_UFRACT
:
1329 case MODE_VECTOR_ACCUM
:
1330 case MODE_VECTOR_UACCUM
:
1331 printf (" mode_base_align[%smode] = %d*s;\n",
1332 m
->name
, m
->ncomponents
);
1337 "mode %s is neither vector nor complex but contains %s",
1338 m
->name
, a
->mode
->name
);
1344 /* Ibit adjustments don't have to propagate. */
1345 for (a
= adj_ibit
; a
; a
= a
->next
)
1347 printf ("\n /* %s:%d */\n s = %s;\n",
1348 a
->file
, a
->line
, a
->adjustment
);
1349 printf (" mode_ibit[%smode] = s;\n", a
->mode
->name
);
1352 /* Fbit adjustments don't have to propagate. */
1353 for (a
= adj_fbit
; a
; a
= a
->next
)
1355 printf ("\n /* %s:%d */\n s = %s;\n",
1356 a
->file
, a
->line
, a
->adjustment
);
1357 printf (" mode_fbit[%smode] = s;\n", a
->mode
->name
);
1360 /* Real mode formats don't have to propagate anywhere. */
1361 for (a
= adj_format
; a
; a
= a
->next
)
1362 printf ("\n /* %s:%d */\n REAL_MODE_FORMAT (%smode) = %s;\n",
1363 a
->file
, a
->line
, a
->mode
->name
, a
->adjustment
);
1368 /* Emit ibit for all modes. */
1371 emit_mode_ibit (void)
1374 struct mode_data
*m
;
1376 print_maybe_const_decl ("%sunsigned char",
1377 "mode_ibit", "NUM_MACHINE_MODES",
1380 for_all_modes (c
, m
)
1381 tagged_printf ("%u", m
->ibit
, m
->name
);
1386 /* Emit fbit for all modes. */
1389 emit_mode_fbit (void)
1392 struct mode_data
*m
;
1394 print_maybe_const_decl ("%sunsigned char",
1395 "mode_fbit", "NUM_MACHINE_MODES",
1398 for_all_modes (c
, m
)
1399 tagged_printf ("%u", m
->fbit
, m
->name
);
1406 emit_insn_modes_c (void)
1408 emit_insn_modes_c_header ();
1411 emit_mode_precision ();
1413 emit_mode_nunits ();
1417 emit_mode_base_align ();
1418 emit_class_narrowest_mode ();
1419 emit_real_format_for_mode ();
1420 emit_mode_adjustments ();
1426 emit_min_insn_modes_c (void)
1428 emit_min_insn_modes_c_header ();
1432 emit_class_narrowest_mode ();
1435 /* Master control. */
1437 main (int argc
, char **argv
)
1439 bool gen_header
= false, gen_min
= false;
1444 else if (argc
== 2 && !strcmp (argv
[1], "-h"))
1446 else if (argc
== 2 && !strcmp (argv
[1], "-m"))
1450 error ("usage: %s [-h|-m] > file", progname
);
1451 return FATAL_EXIT_CODE
;
1454 modes_by_name
= htab_create_alloc (64, hash_mode
, eq_mode
, 0, xcalloc
, free
);
1457 complete_all_modes ();
1460 return FATAL_EXIT_CODE
;
1465 emit_insn_modes_h ();
1467 emit_min_insn_modes_c ();
1469 emit_insn_modes_c ();
1471 if (fflush (stdout
) || fclose (stdout
))
1472 return FATAL_EXIT_CODE
;
1473 return SUCCESS_EXIT_CODE
;