[64/77] Add a scalar_mode class
[official-gcc.git] / gcc / genmodes.c
blobab3f999c9995e78a403f21a21064c69ca502c6a6
1 /* Generate the machine mode enumeration and associated tables.
2 Copyright (C) 2003-2017 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
9 version.
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
14 for more details.
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/>. */
20 #include "bconfig.h"
21 #include "system.h"
22 #include "errors.h"
24 /* enum mode_class is normally defined by machmode.h but we can't
25 include that header here. */
26 #include "mode-classes.def"
28 #define DEF_MODE_CLASS(M) M
29 enum mode_class { MODE_CLASSES, MAX_MODE_CLASS };
30 #undef DEF_MODE_CLASS
32 /* Text names of mode classes, for output. */
33 #define DEF_MODE_CLASS(M) #M
34 static const char *const mode_class_names[MAX_MODE_CLASS] =
36 MODE_CLASSES
38 #undef DEF_MODE_CLASS
39 #undef MODE_CLASSES
41 #ifdef EXTRA_MODES_FILE
42 # define HAVE_EXTRA_MODES 1
43 #else
44 # define HAVE_EXTRA_MODES 0
45 # define EXTRA_MODES_FILE ""
46 #endif
48 /* Data structure for building up what we know about a mode.
49 They're clustered by mode class. */
50 struct mode_data
52 struct mode_data *next; /* next this class - arbitrary order */
54 const char *name; /* printable mode name -- SI, not SImode */
55 enum mode_class cl; /* this mode class */
56 unsigned int precision; /* size in bits, equiv to TYPE_PRECISION */
57 unsigned int bytesize; /* storage size in addressable units */
58 unsigned int ncomponents; /* number of subunits */
59 unsigned int alignment; /* mode alignment */
60 const char *format; /* floating point format - float modes only */
62 struct mode_data *component; /* mode of components */
63 struct mode_data *wider; /* next wider mode */
65 struct mode_data *contained; /* Pointer to list of modes that have
66 this mode as a component. */
67 struct mode_data *next_cont; /* Next mode in that list. */
69 struct mode_data *complex; /* complex type with mode as component. */
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 */
75 bool need_bytesize_adj; /* true if this mode need dynamic size
76 adjustment */
77 unsigned int int_n; /* If nonzero, then __int<INT_N> will be defined */
80 static struct mode_data *modes[MAX_MODE_CLASS];
81 static unsigned int n_modes[MAX_MODE_CLASS];
82 static struct mode_data *void_mode;
84 static const struct mode_data blank_mode = {
85 0, "<unknown>", MAX_MODE_CLASS,
86 -1U, -1U, -1U, -1U,
87 0, 0, 0, 0, 0, 0,
88 "<unknown>", 0, 0, 0, 0, false, 0
91 static htab_t modes_by_name;
93 /* Data structure for recording target-specified runtime adjustments
94 to a particular mode. We support varying the byte size, the
95 alignment, and the floating point format. */
96 struct mode_adjust
98 struct mode_adjust *next;
99 struct mode_data *mode;
100 const char *adjustment;
102 const char *file;
103 unsigned int line;
106 static struct mode_adjust *adj_bytesize;
107 static struct mode_adjust *adj_alignment;
108 static struct mode_adjust *adj_format;
109 static struct mode_adjust *adj_ibit;
110 static struct mode_adjust *adj_fbit;
112 /* Mode class operations. */
113 static enum mode_class
114 complex_class (enum mode_class c)
116 switch (c)
118 case MODE_INT: return MODE_COMPLEX_INT;
119 case MODE_FLOAT: return MODE_COMPLEX_FLOAT;
120 default:
121 error ("no complex class for class %s", mode_class_names[c]);
122 return MODE_RANDOM;
126 static enum mode_class
127 vector_class (enum mode_class cl)
129 switch (cl)
131 case MODE_INT: return MODE_VECTOR_INT;
132 case MODE_FLOAT: return MODE_VECTOR_FLOAT;
133 case MODE_FRACT: return MODE_VECTOR_FRACT;
134 case MODE_UFRACT: return MODE_VECTOR_UFRACT;
135 case MODE_ACCUM: return MODE_VECTOR_ACCUM;
136 case MODE_UACCUM: return MODE_VECTOR_UACCUM;
137 default:
138 error ("no vector class for class %s", mode_class_names[cl]);
139 return MODE_RANDOM;
143 /* Utility routines. */
144 static inline struct mode_data *
145 find_mode (const char *name)
147 struct mode_data key;
149 key.name = name;
150 return (struct mode_data *) htab_find (modes_by_name, &key);
153 static struct mode_data *
154 new_mode (enum mode_class cl, const char *name,
155 const char *file, unsigned int line)
157 struct mode_data *m;
158 static unsigned int count = 0;
160 m = find_mode (name);
161 if (m)
163 error ("%s:%d: duplicate definition of mode \"%s\"",
164 trim_filename (file), line, name);
165 error ("%s:%d: previous definition here", m->file, m->line);
166 return m;
169 m = XNEW (struct mode_data);
170 memcpy (m, &blank_mode, sizeof (struct mode_data));
171 m->cl = cl;
172 m->name = name;
173 if (file)
174 m->file = trim_filename (file);
175 m->line = line;
176 m->counter = count++;
178 m->next = modes[cl];
179 modes[cl] = m;
180 n_modes[cl]++;
182 *htab_find_slot (modes_by_name, m, INSERT) = m;
184 return m;
187 static hashval_t
188 hash_mode (const void *p)
190 const struct mode_data *m = (const struct mode_data *)p;
191 return htab_hash_string (m->name);
194 static int
195 eq_mode (const void *p, const void *q)
197 const struct mode_data *a = (const struct mode_data *)p;
198 const struct mode_data *b = (const struct mode_data *)q;
200 return !strcmp (a->name, b->name);
203 #define for_all_modes(C, M) \
204 for (C = 0; C < MAX_MODE_CLASS; C++) \
205 for (M = modes[C]; M; M = M->next)
207 static void ATTRIBUTE_UNUSED
208 new_adjust (const char *name,
209 struct mode_adjust **category, const char *catname,
210 const char *adjustment,
211 enum mode_class required_class_from,
212 enum mode_class required_class_to,
213 const char *file, unsigned int line)
215 struct mode_data *mode = find_mode (name);
216 struct mode_adjust *a;
218 file = trim_filename (file);
220 if (!mode)
222 error ("%s:%d: no mode \"%s\"", file, line, name);
223 return;
226 if (required_class_from != MODE_RANDOM
227 && (mode->cl < required_class_from || mode->cl > required_class_to))
229 error ("%s:%d: mode \"%s\" is not among class {%s, %s}",
230 file, line, name, mode_class_names[required_class_from] + 5,
231 mode_class_names[required_class_to] + 5);
232 return;
235 for (a = *category; a; a = a->next)
236 if (a->mode == mode)
238 error ("%s:%d: mode \"%s\" already has a %s adjustment",
239 file, line, name, catname);
240 error ("%s:%d: previous adjustment here", a->file, a->line);
241 return;
244 a = XNEW (struct mode_adjust);
245 a->mode = mode;
246 a->adjustment = adjustment;
247 a->file = file;
248 a->line = line;
250 a->next = *category;
251 *category = a;
254 /* Diagnose failure to meet expectations in a partially filled out
255 mode structure. */
256 enum requirement { SET, UNSET, OPTIONAL };
258 #define validate_field_(mname, fname, req, val, unset, file, line) do { \
259 switch (req) \
261 case SET: \
262 if (val == unset) \
263 error ("%s:%d: (%s) field %s must be set", \
264 file, line, mname, fname); \
265 break; \
266 case UNSET: \
267 if (val != unset) \
268 error ("%s:%d: (%s) field %s must not be set", \
269 file, line, mname, fname); \
270 case OPTIONAL: \
271 break; \
273 } while (0)
275 #define validate_field(M, F) \
276 validate_field_(M->name, #F, r_##F, M->F, blank_mode.F, M->file, M->line)
278 static void
279 validate_mode (struct mode_data *m,
280 enum requirement r_precision,
281 enum requirement r_bytesize,
282 enum requirement r_component,
283 enum requirement r_ncomponents,
284 enum requirement r_format)
286 validate_field (m, precision);
287 validate_field (m, bytesize);
288 validate_field (m, component);
289 validate_field (m, ncomponents);
290 validate_field (m, format);
292 #undef validate_field
293 #undef validate_field_
295 /* Given a partially-filled-out mode structure, figure out what we can
296 and fill the rest of it in; die if it isn't enough. */
297 static void
298 complete_mode (struct mode_data *m)
300 unsigned int alignment;
302 if (!m->name)
304 error ("%s:%d: mode with no name", m->file, m->line);
305 return;
307 if (m->cl == MAX_MODE_CLASS)
309 error ("%s:%d: %smode has no mode class", m->file, m->line, m->name);
310 return;
313 switch (m->cl)
315 case MODE_RANDOM:
316 /* Nothing more need be said. */
317 if (!strcmp (m->name, "VOID"))
318 void_mode = m;
320 validate_mode (m, UNSET, UNSET, UNSET, UNSET, UNSET);
322 m->precision = 0;
323 m->bytesize = 0;
324 m->ncomponents = 0;
325 m->component = 0;
326 break;
328 case MODE_CC:
329 /* Again, nothing more need be said. For historical reasons,
330 the size of a CC mode is four units. */
331 validate_mode (m, UNSET, UNSET, UNSET, UNSET, UNSET);
333 m->bytesize = 4;
334 m->ncomponents = 1;
335 m->component = 0;
336 break;
338 case MODE_INT:
339 case MODE_POINTER_BOUNDS:
340 case MODE_FLOAT:
341 case MODE_DECIMAL_FLOAT:
342 case MODE_FRACT:
343 case MODE_UFRACT:
344 case MODE_ACCUM:
345 case MODE_UACCUM:
346 /* A scalar mode must have a byte size, may have a bit size,
347 and must not have components. A float mode must have a
348 format. */
349 validate_mode (m, OPTIONAL, SET, UNSET, UNSET,
350 (m->cl == MODE_FLOAT || m->cl == MODE_DECIMAL_FLOAT)
351 ? SET : UNSET);
353 m->ncomponents = 1;
354 m->component = 0;
355 break;
357 case MODE_PARTIAL_INT:
358 /* A partial integer mode uses ->component to say what the
359 corresponding full-size integer mode is, and may also
360 specify a bit size. */
361 validate_mode (m, OPTIONAL, UNSET, SET, UNSET, UNSET);
363 m->bytesize = m->component->bytesize;
365 m->ncomponents = 1;
366 break;
368 case MODE_COMPLEX_INT:
369 case MODE_COMPLEX_FLOAT:
370 /* Complex modes should have a component indicated, but no more. */
371 validate_mode (m, UNSET, UNSET, SET, UNSET, UNSET);
372 m->ncomponents = 2;
373 if (m->component->precision != (unsigned int)-1)
374 m->precision = 2 * m->component->precision;
375 m->bytesize = 2 * m->component->bytesize;
376 break;
378 case MODE_VECTOR_INT:
379 case MODE_VECTOR_FLOAT:
380 case MODE_VECTOR_FRACT:
381 case MODE_VECTOR_UFRACT:
382 case MODE_VECTOR_ACCUM:
383 case MODE_VECTOR_UACCUM:
384 /* Vector modes should have a component and a number of components. */
385 validate_mode (m, UNSET, UNSET, SET, SET, UNSET);
386 if (m->component->precision != (unsigned int)-1)
387 m->precision = m->ncomponents * m->component->precision;
388 m->bytesize = m->ncomponents * m->component->bytesize;
389 break;
391 default:
392 gcc_unreachable ();
395 /* If not already specified, the mode alignment defaults to the largest
396 power of two that divides the size of the object. Complex types are
397 not more aligned than their contents. */
398 if (m->cl == MODE_COMPLEX_INT || m->cl == MODE_COMPLEX_FLOAT)
399 alignment = m->component->bytesize;
400 else
401 alignment = m->bytesize;
403 m->alignment = alignment & (~alignment + 1);
405 /* If this mode has components, make the component mode point back
406 to this mode, for the sake of adjustments. */
407 if (m->component)
409 m->next_cont = m->component->contained;
410 m->component->contained = m;
414 static void
415 complete_all_modes (void)
417 struct mode_data *m;
418 int cl;
420 for_all_modes (cl, m)
421 complete_mode (m);
424 /* For each mode in class CLASS, construct a corresponding complex mode. */
425 #define COMPLEX_MODES(C) make_complex_modes (MODE_##C, __FILE__, __LINE__)
426 static void
427 make_complex_modes (enum mode_class cl,
428 const char *file, unsigned int line)
430 struct mode_data *m;
431 struct mode_data *c;
432 enum mode_class cclass = complex_class (cl);
434 if (cclass == MODE_RANDOM)
435 return;
437 for (m = modes[cl]; m; m = m->next)
439 char *p, *buf;
440 size_t m_len;
442 /* Skip BImode. FIXME: BImode probably shouldn't be MODE_INT. */
443 if (m->precision == 1)
444 continue;
446 m_len = strlen (m->name);
447 /* The leading "1 +" is in case we prepend a "C" below. */
448 buf = (char *) xmalloc (1 + m_len + 1);
450 /* Float complex modes are named SCmode, etc.
451 Int complex modes are named CSImode, etc.
452 This inconsistency should be eliminated. */
453 p = 0;
454 if (cl == MODE_FLOAT)
456 memcpy (buf, m->name, m_len + 1);
457 p = strchr (buf, 'F');
458 if (p == 0 && strchr (buf, 'D') == 0)
460 error ("%s:%d: float mode \"%s\" has no 'F' or 'D'",
461 m->file, m->line, m->name);
462 free (buf);
463 continue;
466 if (p != 0)
467 *p = 'C';
468 else
470 buf[0] = 'C';
471 memcpy (buf + 1, m->name, m_len + 1);
474 c = new_mode (cclass, buf, file, line);
475 c->component = m;
476 m->complex = c;
480 /* For all modes in class CL, construct vector modes of width
481 WIDTH, having as many components as necessary. */
482 #define VECTOR_MODES(C, W) make_vector_modes (MODE_##C, W, __FILE__, __LINE__)
483 static void ATTRIBUTE_UNUSED
484 make_vector_modes (enum mode_class cl, unsigned int width,
485 const char *file, unsigned int line)
487 struct mode_data *m;
488 struct mode_data *v;
489 /* Big enough for a 32-bit UINT_MAX plus the text. */
490 char buf[12];
491 unsigned int ncomponents;
492 enum mode_class vclass = vector_class (cl);
494 if (vclass == MODE_RANDOM)
495 return;
497 for (m = modes[cl]; m; m = m->next)
499 /* Do not construct vector modes with only one element, or
500 vector modes where the element size doesn't divide the full
501 size evenly. */
502 ncomponents = width / m->bytesize;
503 if (ncomponents < 2)
504 continue;
505 if (width % m->bytesize)
506 continue;
508 /* Skip QFmode and BImode. FIXME: this special case should
509 not be necessary. */
510 if (cl == MODE_FLOAT && m->bytesize == 1)
511 continue;
512 if (cl == MODE_INT && m->precision == 1)
513 continue;
515 if ((size_t)snprintf (buf, sizeof buf, "V%u%s", ncomponents, m->name)
516 >= sizeof buf)
518 error ("%s:%d: mode name \"%s\" is too long",
519 m->file, m->line, m->name);
520 continue;
523 v = new_mode (vclass, xstrdup (buf), file, line);
524 v->component = m;
525 v->ncomponents = ncomponents;
529 /* Input. */
531 #define _SPECIAL_MODE(C, N) \
532 make_special_mode (MODE_##C, #N, __FILE__, __LINE__)
533 #define RANDOM_MODE(N) _SPECIAL_MODE (RANDOM, N)
534 #define CC_MODE(N) _SPECIAL_MODE (CC, N)
536 static void
537 make_special_mode (enum mode_class cl, const char *name,
538 const char *file, unsigned int line)
540 new_mode (cl, name, file, line);
543 #define POINTER_BOUNDS_MODE(N, Y) \
544 make_pointer_bounds_mode (#N, Y, __FILE__, __LINE__)
546 static void ATTRIBUTE_UNUSED
547 make_pointer_bounds_mode (const char *name,
548 unsigned int bytesize,
549 const char *file, unsigned int line)
551 struct mode_data *m = new_mode (MODE_POINTER_BOUNDS, name, file, line);
552 m->bytesize = bytesize;
556 #define INT_MODE(N, Y) FRACTIONAL_INT_MODE (N, -1U, Y)
557 #define FRACTIONAL_INT_MODE(N, B, Y) \
558 make_int_mode (#N, B, Y, __FILE__, __LINE__)
560 static void
561 make_int_mode (const char *name,
562 unsigned int precision, unsigned int bytesize,
563 const char *file, unsigned int line)
565 struct mode_data *m = new_mode (MODE_INT, name, file, line);
566 m->bytesize = bytesize;
567 m->precision = precision;
570 #define FRACT_MODE(N, Y, F) \
571 make_fixed_point_mode (MODE_FRACT, #N, Y, 0, F, __FILE__, __LINE__)
573 #define UFRACT_MODE(N, Y, F) \
574 make_fixed_point_mode (MODE_UFRACT, #N, Y, 0, F, __FILE__, __LINE__)
576 #define ACCUM_MODE(N, Y, I, F) \
577 make_fixed_point_mode (MODE_ACCUM, #N, Y, I, F, __FILE__, __LINE__)
579 #define UACCUM_MODE(N, Y, I, F) \
580 make_fixed_point_mode (MODE_UACCUM, #N, Y, I, F, __FILE__, __LINE__)
582 /* Create a fixed-point mode by setting CL, NAME, BYTESIZE, IBIT, FBIT,
583 FILE, and LINE. */
585 static void
586 make_fixed_point_mode (enum mode_class cl,
587 const char *name,
588 unsigned int bytesize,
589 unsigned int ibit,
590 unsigned int fbit,
591 const char *file, unsigned int line)
593 struct mode_data *m = new_mode (cl, name, file, line);
594 m->bytesize = bytesize;
595 m->ibit = ibit;
596 m->fbit = fbit;
599 #define FLOAT_MODE(N, Y, F) FRACTIONAL_FLOAT_MODE (N, -1U, Y, F)
600 #define FRACTIONAL_FLOAT_MODE(N, B, Y, F) \
601 make_float_mode (#N, B, Y, #F, __FILE__, __LINE__)
603 static void
604 make_float_mode (const char *name,
605 unsigned int precision, unsigned int bytesize,
606 const char *format,
607 const char *file, unsigned int line)
609 struct mode_data *m = new_mode (MODE_FLOAT, name, file, line);
610 m->bytesize = bytesize;
611 m->precision = precision;
612 m->format = format;
615 #define DECIMAL_FLOAT_MODE(N, Y, F) \
616 FRACTIONAL_DECIMAL_FLOAT_MODE (N, -1U, Y, F)
617 #define FRACTIONAL_DECIMAL_FLOAT_MODE(N, B, Y, F) \
618 make_decimal_float_mode (#N, B, Y, #F, __FILE__, __LINE__)
620 static void
621 make_decimal_float_mode (const char *name,
622 unsigned int precision, unsigned int bytesize,
623 const char *format,
624 const char *file, unsigned int line)
626 struct mode_data *m = new_mode (MODE_DECIMAL_FLOAT, name, file, line);
627 m->bytesize = bytesize;
628 m->precision = precision;
629 m->format = format;
632 #define RESET_FLOAT_FORMAT(N, F) \
633 reset_float_format (#N, #F, __FILE__, __LINE__)
634 static void ATTRIBUTE_UNUSED
635 reset_float_format (const char *name, const char *format,
636 const char *file, unsigned int line)
638 struct mode_data *m = find_mode (name);
639 if (!m)
641 error ("%s:%d: no mode \"%s\"", file, line, name);
642 return;
644 if (m->cl != MODE_FLOAT && m->cl != MODE_DECIMAL_FLOAT)
646 error ("%s:%d: mode \"%s\" is not a FLOAT class", file, line, name);
647 return;
649 m->format = format;
652 /* __intN support. */
653 #define INT_N(M,PREC) \
654 make_int_n (#M, PREC, __FILE__, __LINE__)
655 static void ATTRIBUTE_UNUSED
656 make_int_n (const char *m, int bitsize,
657 const char *file, unsigned int line)
659 struct mode_data *component = find_mode (m);
660 if (!component)
662 error ("%s:%d: no mode \"%s\"", file, line, m);
663 return;
665 if (component->cl != MODE_INT
666 && component->cl != MODE_PARTIAL_INT)
668 error ("%s:%d: mode \"%s\" is not class INT or PARTIAL_INT", file, line, m);
669 return;
671 if (component->int_n != 0)
673 error ("%s:%d: mode \"%s\" already has an intN", file, line, m);
674 return;
677 component->int_n = bitsize;
680 /* Partial integer modes are specified by relation to a full integer
681 mode. */
682 #define PARTIAL_INT_MODE(M,PREC,NAME) \
683 make_partial_integer_mode (#M, #NAME, PREC, __FILE__, __LINE__)
684 static void ATTRIBUTE_UNUSED
685 make_partial_integer_mode (const char *base, const char *name,
686 unsigned int precision,
687 const char *file, unsigned int line)
689 struct mode_data *m;
690 struct mode_data *component = find_mode (base);
691 if (!component)
693 error ("%s:%d: no mode \"%s\"", file, line, name);
694 return;
696 if (component->cl != MODE_INT)
698 error ("%s:%d: mode \"%s\" is not class INT", file, line, name);
699 return;
702 m = new_mode (MODE_PARTIAL_INT, name, file, line);
703 m->precision = precision;
704 m->component = component;
707 /* A single vector mode can be specified by naming its component
708 mode and the number of components. */
709 #define VECTOR_MODE(C, M, N) \
710 make_vector_mode (MODE_##C, #M, N, __FILE__, __LINE__);
711 static void ATTRIBUTE_UNUSED
712 make_vector_mode (enum mode_class bclass,
713 const char *base,
714 unsigned int ncomponents,
715 const char *file, unsigned int line)
717 struct mode_data *v;
718 enum mode_class vclass = vector_class (bclass);
719 struct mode_data *component = find_mode (base);
720 char namebuf[16];
722 if (vclass == MODE_RANDOM)
723 return;
724 if (component == 0)
726 error ("%s:%d: no mode \"%s\"", file, line, base);
727 return;
729 if (component->cl != bclass
730 && (component->cl != MODE_PARTIAL_INT
731 || bclass != MODE_INT))
733 error ("%s:%d: mode \"%s\" is not class %s",
734 file, line, base, mode_class_names[bclass] + 5);
735 return;
738 if ((size_t)snprintf (namebuf, sizeof namebuf, "V%u%s",
739 ncomponents, base) >= sizeof namebuf)
741 error ("%s:%d: mode name \"%s\" is too long",
742 file, line, base);
743 return;
746 v = new_mode (vclass, xstrdup (namebuf), file, line);
747 v->ncomponents = ncomponents;
748 v->component = component;
751 /* Adjustability. */
752 #define _ADD_ADJUST(A, M, X, C1, C2) \
753 new_adjust (#M, &adj_##A, #A, #X, MODE_##C1, MODE_##C2, __FILE__, __LINE__)
755 #define ADJUST_BYTESIZE(M, X) _ADD_ADJUST (bytesize, M, X, RANDOM, RANDOM)
756 #define ADJUST_ALIGNMENT(M, X) _ADD_ADJUST (alignment, M, X, RANDOM, RANDOM)
757 #define ADJUST_FLOAT_FORMAT(M, X) _ADD_ADJUST (format, M, X, FLOAT, FLOAT)
758 #define ADJUST_IBIT(M, X) _ADD_ADJUST (ibit, M, X, ACCUM, UACCUM)
759 #define ADJUST_FBIT(M, X) _ADD_ADJUST (fbit, M, X, FRACT, UACCUM)
761 static int bits_per_unit;
762 static int max_bitsize_mode_any_int;
764 static void
765 create_modes (void)
767 #include "machmode.def"
769 /* So put the default value unless the target needs a non standard
770 value. */
771 #ifdef BITS_PER_UNIT
772 bits_per_unit = BITS_PER_UNIT;
773 #else
774 bits_per_unit = 8;
775 #endif
777 #ifdef MAX_BITSIZE_MODE_ANY_INT
778 max_bitsize_mode_any_int = MAX_BITSIZE_MODE_ANY_INT;
779 #else
780 max_bitsize_mode_any_int = 0;
781 #endif
784 /* Processing. */
786 /* Sort a list of modes into the order needed for the WIDER field:
787 major sort by precision, minor sort by component precision.
789 For instance:
790 QI < HI < SI < DI < TI
791 V4QI < V2HI < V8QI < V4HI < V2SI.
793 If the precision is not set, sort by the bytesize. A mode with
794 precision set gets sorted before a mode without precision set, if
795 they have the same bytesize; this is the right thing because
796 the precision must always be smaller than the bytesize * BITS_PER_UNIT.
797 We don't have to do anything special to get this done -- an unset
798 precision shows up as (unsigned int)-1, i.e. UINT_MAX. */
799 static int
800 cmp_modes (const void *a, const void *b)
802 const struct mode_data *const m = *(const struct mode_data *const*)a;
803 const struct mode_data *const n = *(const struct mode_data *const*)b;
805 if (m->bytesize > n->bytesize)
806 return 1;
807 else if (m->bytesize < n->bytesize)
808 return -1;
810 if (m->precision > n->precision)
811 return 1;
812 else if (m->precision < n->precision)
813 return -1;
815 if (!m->component && !n->component)
817 if (m->counter < n->counter)
818 return -1;
819 else
820 return 1;
823 if (m->component->bytesize > n->component->bytesize)
824 return 1;
825 else if (m->component->bytesize < n->component->bytesize)
826 return -1;
828 if (m->component->precision > n->component->precision)
829 return 1;
830 else if (m->component->precision < n->component->precision)
831 return -1;
833 if (m->counter < n->counter)
834 return -1;
835 else
836 return 1;
839 static void
840 calc_wider_mode (void)
842 int c;
843 struct mode_data *m;
844 struct mode_data **sortbuf;
845 unsigned int max_n_modes = 0;
846 unsigned int i, j;
848 for (c = 0; c < MAX_MODE_CLASS; c++)
849 max_n_modes = MAX (max_n_modes, n_modes[c]);
851 /* Allocate max_n_modes + 1 entries to leave room for the extra null
852 pointer assigned after the qsort call below. */
853 sortbuf = XALLOCAVEC (struct mode_data *, max_n_modes + 1);
855 for (c = 0; c < MAX_MODE_CLASS; c++)
857 /* "wider" is not meaningful for MODE_RANDOM and MODE_CC.
858 However, we want these in textual order, and we have
859 precisely the reverse. */
860 if (c == MODE_RANDOM || c == MODE_CC)
862 struct mode_data *prev, *next;
864 for (prev = 0, m = modes[c]; m; m = next)
866 m->wider = void_mode;
868 /* this is nreverse */
869 next = m->next;
870 m->next = prev;
871 prev = m;
873 modes[c] = prev;
875 else
877 if (!modes[c])
878 continue;
880 for (i = 0, m = modes[c]; m; i++, m = m->next)
881 sortbuf[i] = m;
883 qsort (sortbuf, i, sizeof (struct mode_data *), cmp_modes);
885 sortbuf[i] = 0;
886 for (j = 0; j < i; j++)
888 sortbuf[j]->next = sortbuf[j + 1];
889 if (c == MODE_PARTIAL_INT)
890 sortbuf[j]->wider = sortbuf[j]->component;
891 else
892 sortbuf[j]->wider = sortbuf[j]->next;
895 modes[c] = sortbuf[0];
900 /* Output routines. */
902 #define tagged_printf(FMT, ARG, TAG) do { \
903 int count_ = printf (" " FMT ",", ARG); \
904 printf ("%*s/* %s */\n", 27 - count_, "", TAG); \
905 } while (0)
907 #define print_decl(TYPE, NAME, ASIZE) \
908 puts ("\nconst " TYPE " " NAME "[" ASIZE "] =\n{");
910 #define print_maybe_const_decl(TYPE, NAME, ASIZE, CATEGORY) \
911 printf ("\n" TYPE " " NAME "[" ASIZE "] = \n{\n", \
912 adj_##CATEGORY ? "" : "const ")
914 #define print_closer() puts ("};")
916 /* Compute the max bitsize of some of the classes of integers. It may
917 be that there are needs for the other integer classes, and this
918 code is easy to extend. */
919 static void
920 emit_max_int (void)
922 unsigned int max, mmax;
923 struct mode_data *i;
924 int j;
926 puts ("");
928 printf ("#define BITS_PER_UNIT (%d)\n", bits_per_unit);
930 if (max_bitsize_mode_any_int == 0)
932 for (max = 1, i = modes[MODE_INT]; i; i = i->next)
933 if (max < i->bytesize)
934 max = i->bytesize;
935 mmax = max;
936 for (max = 1, i = modes[MODE_PARTIAL_INT]; i; i = i->next)
937 if (max < i->bytesize)
938 max = i->bytesize;
939 if (max > mmax)
940 mmax = max;
941 printf ("#define MAX_BITSIZE_MODE_ANY_INT (%d*BITS_PER_UNIT)\n", mmax);
943 else
944 printf ("#define MAX_BITSIZE_MODE_ANY_INT %d\n", max_bitsize_mode_any_int);
946 mmax = 0;
947 for (j = 0; j < MAX_MODE_CLASS; j++)
948 for (i = modes[j]; i; i = i->next)
949 if (mmax < i->bytesize)
950 mmax = i->bytesize;
951 printf ("#define MAX_BITSIZE_MODE_ANY_MODE (%d*BITS_PER_UNIT)\n", mmax);
954 /* Emit mode_size_inline routine into insn-modes.h header. */
955 static void
956 emit_mode_size_inline (void)
958 int c;
959 struct mode_adjust *a;
960 struct mode_data *m;
962 /* Size adjustments must be propagated to all containing modes. */
963 for (a = adj_bytesize; a; a = a->next)
965 a->mode->need_bytesize_adj = true;
966 for (m = a->mode->contained; m; m = m->next_cont)
967 m->need_bytesize_adj = true;
970 printf ("\
971 #ifdef __cplusplus\n\
972 inline __attribute__((__always_inline__))\n\
973 #else\n\
974 extern __inline__ __attribute__((__always_inline__, __gnu_inline__))\n\
975 #endif\n\
976 unsigned short\n\
977 mode_size_inline (machine_mode mode)\n\
978 {\n\
979 extern %sunsigned short mode_size[NUM_MACHINE_MODES];\n\
980 gcc_assert (mode >= 0 && mode < NUM_MACHINE_MODES);\n\
981 switch (mode)\n\
982 {\n", adj_bytesize ? "" : "const ");
984 for_all_modes (c, m)
985 if (!m->need_bytesize_adj)
986 printf (" case E_%smode: return %u;\n", m->name, m->bytesize);
988 puts ("\
989 default: return mode_size[mode];\n\
990 }\n\
991 }\n");
994 /* Emit mode_nunits_inline routine into insn-modes.h header. */
995 static void
996 emit_mode_nunits_inline (void)
998 int c;
999 struct mode_data *m;
1001 puts ("\
1002 #ifdef __cplusplus\n\
1003 inline __attribute__((__always_inline__))\n\
1004 #else\n\
1005 extern __inline__ __attribute__((__always_inline__, __gnu_inline__))\n\
1006 #endif\n\
1007 unsigned char\n\
1008 mode_nunits_inline (machine_mode mode)\n\
1009 {\n\
1010 extern const unsigned char mode_nunits[NUM_MACHINE_MODES];\n\
1011 gcc_assert (mode >= 0 && mode < NUM_MACHINE_MODES);\n\
1012 switch (mode)\n\
1013 {");
1015 for_all_modes (c, m)
1016 printf (" case E_%smode: return %u;\n", m->name, m->ncomponents);
1018 puts ("\
1019 default: return mode_nunits[mode];\n\
1020 }\n\
1021 }\n");
1024 /* Emit mode_inner_inline routine into insn-modes.h header. */
1025 static void
1026 emit_mode_inner_inline (void)
1028 int c;
1029 struct mode_data *m;
1031 puts ("\
1032 #ifdef __cplusplus\n\
1033 inline __attribute__((__always_inline__))\n\
1034 #else\n\
1035 extern __inline__ __attribute__((__always_inline__, __gnu_inline__))\n\
1036 #endif\n\
1037 unsigned char\n\
1038 mode_inner_inline (machine_mode mode)\n\
1039 {\n\
1040 extern const unsigned char mode_inner[NUM_MACHINE_MODES];\n\
1041 gcc_assert (mode >= 0 && mode < NUM_MACHINE_MODES);\n\
1042 switch (mode)\n\
1043 {");
1045 for_all_modes (c, m)
1046 printf (" case E_%smode: return E_%smode;\n", m->name,
1047 c != MODE_PARTIAL_INT && m->component
1048 ? m->component->name : m->name);
1050 puts ("\
1051 default: return mode_inner[mode];\n\
1052 }\n\
1053 }\n");
1056 /* Emit mode_unit_size_inline routine into insn-modes.h header. */
1057 static void
1058 emit_mode_unit_size_inline (void)
1060 int c;
1061 struct mode_data *m;
1063 puts ("\
1064 #ifdef __cplusplus\n\
1065 inline __attribute__((__always_inline__))\n\
1066 #else\n\
1067 extern __inline__ __attribute__((__always_inline__, __gnu_inline__))\n\
1068 #endif\n\
1069 unsigned char\n\
1070 mode_unit_size_inline (machine_mode mode)\n\
1071 {\n\
1072 extern CONST_MODE_UNIT_SIZE unsigned char mode_unit_size[NUM_MACHINE_MODES];\
1074 gcc_assert (mode >= 0 && mode < NUM_MACHINE_MODES);\n\
1075 switch (mode)\n\
1076 {");
1078 for_all_modes (c, m)
1080 const char *name = m->name;
1081 struct mode_data *m2 = m;
1082 if (c != MODE_PARTIAL_INT && m2->component)
1083 m2 = m2->component;
1084 if (!m2->need_bytesize_adj)
1085 printf (" case E_%smode: return %u;\n", name, m2->bytesize);
1088 puts ("\
1089 default: return mode_unit_size[mode];\n\
1090 }\n\
1091 }\n");
1094 /* Emit mode_unit_precision_inline routine into insn-modes.h header. */
1095 static void
1096 emit_mode_unit_precision_inline (void)
1098 int c;
1099 struct mode_data *m;
1101 puts ("\
1102 #ifdef __cplusplus\n\
1103 inline __attribute__((__always_inline__))\n\
1104 #else\n\
1105 extern __inline__ __attribute__((__always_inline__, __gnu_inline__))\n\
1106 #endif\n\
1107 unsigned short\n\
1108 mode_unit_precision_inline (machine_mode mode)\n\
1109 {\n\
1110 extern const unsigned short mode_unit_precision[NUM_MACHINE_MODES];\n\
1111 gcc_assert (mode >= 0 && mode < NUM_MACHINE_MODES);\n\
1112 switch (mode)\n\
1113 {");
1115 for_all_modes (c, m)
1117 struct mode_data *m2
1118 = (c != MODE_PARTIAL_INT && m->component) ? m->component : m;
1119 if (m2->precision != (unsigned int)-1)
1120 printf (" case E_%smode: return %u;\n", m->name, m2->precision);
1121 else
1122 printf (" case E_%smode: return %u*BITS_PER_UNIT;\n",
1123 m->name, m2->bytesize);
1126 puts ("\
1127 default: return mode_unit_precision[mode];\n\
1128 }\n\
1129 }\n");
1132 /* Return the best machine mode class for MODE, or null if machine_mode
1133 should be used. */
1135 static const char *
1136 get_mode_class (struct mode_data *mode)
1138 switch (mode->cl)
1140 case MODE_INT:
1141 case MODE_PARTIAL_INT:
1142 return "scalar_int_mode";
1144 case MODE_FRACT:
1145 case MODE_UFRACT:
1146 case MODE_ACCUM:
1147 case MODE_UACCUM:
1148 case MODE_POINTER_BOUNDS:
1149 return "scalar_mode";
1151 case MODE_FLOAT:
1152 case MODE_DECIMAL_FLOAT:
1153 return "scalar_float_mode";
1155 default:
1156 return NULL;
1160 static void
1161 emit_insn_modes_h (void)
1163 int c;
1164 struct mode_data *m, *first, *last;
1165 int n_int_n_ents = 0;
1167 printf ("/* Generated automatically from machmode.def%s%s\n",
1168 HAVE_EXTRA_MODES ? " and " : "",
1169 EXTRA_MODES_FILE);
1171 puts ("\
1172 by genmodes. */\n\
1174 #ifndef GCC_INSN_MODES_H\n\
1175 #define GCC_INSN_MODES_H\n\
1177 enum machine_mode\n{");
1179 for (c = 0; c < MAX_MODE_CLASS; c++)
1180 for (m = modes[c]; m; m = m->next)
1182 int count_ = printf (" E_%smode,", m->name);
1183 printf ("%*s/* %s:%d */\n", 27 - count_, "",
1184 trim_filename (m->file), m->line);
1185 printf ("#define HAVE_%smode\n", m->name);
1186 printf ("#ifdef USE_ENUM_MODES\n");
1187 printf ("#define %smode E_%smode\n", m->name, m->name);
1188 printf ("#else\n");
1189 if (const char *mode_class = get_mode_class (m))
1190 printf ("#define %smode (%s ((%s::from_int) E_%smode))\n",
1191 m->name, mode_class, mode_class, m->name);
1192 else
1193 printf ("#define %smode ((void) 0, E_%smode)\n",
1194 m->name, m->name);
1195 printf ("#endif\n");
1198 puts (" MAX_MACHINE_MODE,\n");
1200 for (c = 0; c < MAX_MODE_CLASS; c++)
1202 first = modes[c];
1203 last = 0;
1204 for (m = first; m; last = m, m = m->next)
1207 /* Don't use BImode for MIN_MODE_INT, since otherwise the middle
1208 end will try to use it for bitfields in structures and the
1209 like, which we do not want. Only the target md file should
1210 generate BImode widgets. */
1211 if (first && first->precision == 1 && c == MODE_INT)
1212 first = first->next;
1214 if (first && last)
1215 printf (" MIN_%s = E_%smode,\n MAX_%s = E_%smode,\n\n",
1216 mode_class_names[c], first->name,
1217 mode_class_names[c], last->name);
1218 else
1219 printf (" MIN_%s = E_%smode,\n MAX_%s = E_%smode,\n\n",
1220 mode_class_names[c], void_mode->name,
1221 mode_class_names[c], void_mode->name);
1224 puts ("\
1225 NUM_MACHINE_MODES = MAX_MACHINE_MODE\n\
1226 };\n");
1228 /* I can't think of a better idea, can you? */
1229 printf ("#define CONST_MODE_SIZE%s\n", adj_bytesize ? "" : " const");
1230 printf ("#define CONST_MODE_UNIT_SIZE%s\n", adj_bytesize ? "" : " const");
1231 printf ("#define CONST_MODE_BASE_ALIGN%s\n", adj_alignment ? "" : " const");
1232 #if 0 /* disabled for backward compatibility, temporary */
1233 printf ("#define CONST_REAL_FORMAT_FOR_MODE%s\n", adj_format ? "" :" const");
1234 #endif
1235 printf ("#define CONST_MODE_IBIT%s\n", adj_ibit ? "" : " const");
1236 printf ("#define CONST_MODE_FBIT%s\n", adj_fbit ? "" : " const");
1237 emit_max_int ();
1239 for_all_modes (c, m)
1240 if (m->int_n)
1241 n_int_n_ents ++;
1243 printf ("#define NUM_INT_N_ENTS %d\n", n_int_n_ents);
1245 puts ("\
1247 #endif /* insn-modes.h */");
1250 static void
1251 emit_insn_modes_inline_h (void)
1253 printf ("/* Generated automatically from machmode.def%s%s\n",
1254 HAVE_EXTRA_MODES ? " and " : "",
1255 EXTRA_MODES_FILE);
1257 puts ("\
1258 by genmodes. */\n\
1260 #ifndef GCC_INSN_MODES_INLINE_H\n\
1261 #define GCC_INSN_MODES_INLINE_H");
1263 puts ("\n#if !defined (USED_FOR_TARGET) && GCC_VERSION >= 4001\n");
1264 emit_mode_size_inline ();
1265 emit_mode_nunits_inline ();
1266 emit_mode_inner_inline ();
1267 emit_mode_unit_size_inline ();
1268 emit_mode_unit_precision_inline ();
1269 puts ("#endif /* GCC_VERSION >= 4001 */");
1271 puts ("\
1273 #endif /* insn-modes-inline.h */");
1276 static void
1277 emit_insn_modes_c_header (void)
1279 printf ("/* Generated automatically from machmode.def%s%s\n",
1280 HAVE_EXTRA_MODES ? " and " : "",
1281 EXTRA_MODES_FILE);
1283 puts ("\
1284 by genmodes. */\n\
1286 #include \"config.h\"\n\
1287 #include \"system.h\"\n\
1288 #include \"coretypes.h\"\n\
1289 #include \"tm.h\"\n\
1290 #include \"real.h\"");
1293 static void
1294 emit_min_insn_modes_c_header (void)
1296 printf ("/* Generated automatically from machmode.def%s%s\n",
1297 HAVE_EXTRA_MODES ? " and " : "",
1298 EXTRA_MODES_FILE);
1300 puts ("\
1301 by genmodes. */\n\
1303 #include \"bconfig.h\"\n\
1304 #include \"system.h\"\n\
1305 #include \"coretypes.h\"");
1308 static void
1309 emit_mode_name (void)
1311 int c;
1312 struct mode_data *m;
1314 print_decl ("char *const", "mode_name", "NUM_MACHINE_MODES");
1316 for_all_modes (c, m)
1317 printf (" \"%s\",\n", m->name);
1319 print_closer ();
1322 static void
1323 emit_mode_class (void)
1325 int c;
1326 struct mode_data *m;
1328 print_decl ("unsigned char", "mode_class", "NUM_MACHINE_MODES");
1330 for_all_modes (c, m)
1331 tagged_printf ("%s", mode_class_names[m->cl], m->name);
1333 print_closer ();
1336 static void
1337 emit_mode_precision (void)
1339 int c;
1340 struct mode_data *m;
1342 print_decl ("unsigned short", "mode_precision", "NUM_MACHINE_MODES");
1344 for_all_modes (c, m)
1345 if (m->precision != (unsigned int)-1)
1346 tagged_printf ("%u", m->precision, m->name);
1347 else
1348 tagged_printf ("%u*BITS_PER_UNIT", m->bytesize, m->name);
1350 print_closer ();
1353 static void
1354 emit_mode_size (void)
1356 int c;
1357 struct mode_data *m;
1359 print_maybe_const_decl ("%sunsigned short", "mode_size",
1360 "NUM_MACHINE_MODES", bytesize);
1362 for_all_modes (c, m)
1363 tagged_printf ("%u", m->bytesize, m->name);
1365 print_closer ();
1368 static void
1369 emit_mode_nunits (void)
1371 int c;
1372 struct mode_data *m;
1374 print_decl ("unsigned char", "mode_nunits", "NUM_MACHINE_MODES");
1376 for_all_modes (c, m)
1377 tagged_printf ("%u", m->ncomponents, m->name);
1379 print_closer ();
1382 static void
1383 emit_mode_wider (void)
1385 int c;
1386 struct mode_data *m;
1388 print_decl ("unsigned char", "mode_wider", "NUM_MACHINE_MODES");
1390 for_all_modes (c, m)
1391 tagged_printf ("E_%smode",
1392 m->wider ? m->wider->name : void_mode->name,
1393 m->name);
1395 print_closer ();
1396 print_decl ("unsigned char", "mode_2xwider", "NUM_MACHINE_MODES");
1398 for_all_modes (c, m)
1400 struct mode_data * m2;
1402 for (m2 = m;
1403 m2 && m2 != void_mode;
1404 m2 = m2->wider)
1406 if (m2->bytesize < 2 * m->bytesize)
1407 continue;
1408 if (m->precision != (unsigned int) -1)
1410 if (m2->precision != 2 * m->precision)
1411 continue;
1413 else
1415 if (m2->precision != (unsigned int) -1)
1416 continue;
1419 /* For vectors we want twice the number of components,
1420 with the same element type. */
1421 if (m->cl == MODE_VECTOR_INT
1422 || m->cl == MODE_VECTOR_FLOAT
1423 || m->cl == MODE_VECTOR_FRACT
1424 || m->cl == MODE_VECTOR_UFRACT
1425 || m->cl == MODE_VECTOR_ACCUM
1426 || m->cl == MODE_VECTOR_UACCUM)
1428 if (m2->ncomponents != 2 * m->ncomponents)
1429 continue;
1430 if (m->component != m2->component)
1431 continue;
1434 break;
1436 if (m2 == void_mode)
1437 m2 = 0;
1438 tagged_printf ("E_%smode",
1439 m2 ? m2->name : void_mode->name,
1440 m->name);
1443 print_closer ();
1446 static void
1447 emit_mode_complex (void)
1449 int c;
1450 struct mode_data *m;
1452 print_decl ("unsigned char", "mode_complex", "NUM_MACHINE_MODES");
1454 for_all_modes (c, m)
1455 tagged_printf ("E_%smode",
1456 m->complex ? m->complex->name : void_mode->name,
1457 m->name);
1459 print_closer ();
1462 static void
1463 emit_mode_mask (void)
1465 int c;
1466 struct mode_data *m;
1468 print_decl ("unsigned HOST_WIDE_INT", "mode_mask_array",
1469 "NUM_MACHINE_MODES");
1470 puts ("\
1471 #define MODE_MASK(m) \\\n\
1472 ((m) >= HOST_BITS_PER_WIDE_INT) \\\n\
1473 ? HOST_WIDE_INT_M1U \\\n\
1474 : (HOST_WIDE_INT_1U << (m)) - 1\n");
1476 for_all_modes (c, m)
1477 if (m->precision != (unsigned int)-1)
1478 tagged_printf ("MODE_MASK (%u)", m->precision, m->name);
1479 else
1480 tagged_printf ("MODE_MASK (%u*BITS_PER_UNIT)", m->bytesize, m->name);
1482 puts ("#undef MODE_MASK");
1483 print_closer ();
1486 static void
1487 emit_mode_inner (void)
1489 int c;
1490 struct mode_data *m;
1492 print_decl ("unsigned char", "mode_inner", "NUM_MACHINE_MODES");
1494 for_all_modes (c, m)
1495 tagged_printf ("E_%smode",
1496 c != MODE_PARTIAL_INT && m->component
1497 ? m->component->name : m->name,
1498 m->name);
1500 print_closer ();
1503 /* Emit mode_unit_size array into insn-modes.c file. */
1504 static void
1505 emit_mode_unit_size (void)
1507 int c;
1508 struct mode_data *m;
1510 print_maybe_const_decl ("%sunsigned char", "mode_unit_size",
1511 "NUM_MACHINE_MODES", bytesize);
1513 for_all_modes (c, m)
1514 tagged_printf ("%u",
1515 c != MODE_PARTIAL_INT && m->component
1516 ? m->component->bytesize : m->bytesize, m->name);
1518 print_closer ();
1521 /* Emit mode_unit_precision array into insn-modes.c file. */
1522 static void
1523 emit_mode_unit_precision (void)
1525 int c;
1526 struct mode_data *m;
1528 print_decl ("unsigned short", "mode_unit_precision", "NUM_MACHINE_MODES");
1530 for_all_modes (c, m)
1532 struct mode_data *m2 = (c != MODE_PARTIAL_INT && m->component) ?
1533 m->component : m;
1534 if (m2->precision != (unsigned int)-1)
1535 tagged_printf ("%u", m2->precision, m->name);
1536 else
1537 tagged_printf ("%u*BITS_PER_UNIT", m2->bytesize, m->name);
1540 print_closer ();
1544 static void
1545 emit_mode_base_align (void)
1547 int c;
1548 struct mode_data *m;
1550 print_maybe_const_decl ("%sunsigned short",
1551 "mode_base_align", "NUM_MACHINE_MODES",
1552 alignment);
1554 for_all_modes (c, m)
1555 tagged_printf ("%u", m->alignment, m->name);
1557 print_closer ();
1560 static void
1561 emit_class_narrowest_mode (void)
1563 int c;
1565 print_decl ("unsigned char", "class_narrowest_mode", "MAX_MODE_CLASS");
1567 for (c = 0; c < MAX_MODE_CLASS; c++)
1568 /* Bleah, all this to get the comment right for MIN_MODE_INT. */
1569 tagged_printf ("MIN_%s", mode_class_names[c],
1570 modes[c]
1571 ? ((c != MODE_INT || modes[c]->precision != 1)
1572 ? modes[c]->name
1573 : (modes[c]->next
1574 ? modes[c]->next->name
1575 : void_mode->name))
1576 : void_mode->name);
1578 print_closer ();
1581 static void
1582 emit_real_format_for_mode (void)
1584 struct mode_data *m;
1586 /* The entities pointed to by this table are constant, whether
1587 or not the table itself is constant.
1589 For backward compatibility this table is always writable
1590 (several targets modify it in TARGET_OPTION_OVERRIDE). FIXME:
1591 convert all said targets to use ADJUST_FORMAT instead. */
1592 #if 0
1593 print_maybe_const_decl ("const struct real_format *%s",
1594 "real_format_for_mode",
1595 "MAX_MODE_FLOAT - MIN_MODE_FLOAT + 1",
1596 format);
1597 #else
1598 print_decl ("struct real_format *\n", "real_format_for_mode",
1599 "MAX_MODE_FLOAT - MIN_MODE_FLOAT + 1 "
1600 "+ MAX_MODE_DECIMAL_FLOAT - MIN_MODE_DECIMAL_FLOAT + 1");
1601 #endif
1603 /* The beginning of the table is entries for float modes. */
1604 for (m = modes[MODE_FLOAT]; m; m = m->next)
1605 if (!strcmp (m->format, "0"))
1606 tagged_printf ("%s", m->format, m->name);
1607 else
1608 tagged_printf ("&%s", m->format, m->name);
1610 /* The end of the table is entries for decimal float modes. */
1611 for (m = modes[MODE_DECIMAL_FLOAT]; m; m = m->next)
1612 if (!strcmp (m->format, "0"))
1613 tagged_printf ("%s", m->format, m->name);
1614 else
1615 tagged_printf ("&%s", m->format, m->name);
1617 print_closer ();
1620 static void
1621 emit_mode_adjustments (void)
1623 struct mode_adjust *a;
1624 struct mode_data *m;
1626 puts ("\
1627 \nvoid\
1628 \ninit_adjust_machine_modes (void)\
1629 \n{\
1630 \n size_t s ATTRIBUTE_UNUSED;");
1632 /* Size adjustments must be propagated to all containing modes.
1633 A size adjustment forces us to recalculate the alignment too. */
1634 for (a = adj_bytesize; a; a = a->next)
1636 printf ("\n /* %s:%d */\n s = %s;\n",
1637 a->file, a->line, a->adjustment);
1638 printf (" mode_size[E_%smode] = s;\n", a->mode->name);
1639 printf (" mode_unit_size[E_%smode] = s;\n", a->mode->name);
1640 printf (" mode_base_align[E_%smode] = s & (~s + 1);\n",
1641 a->mode->name);
1643 for (m = a->mode->contained; m; m = m->next_cont)
1645 switch (m->cl)
1647 case MODE_COMPLEX_INT:
1648 case MODE_COMPLEX_FLOAT:
1649 printf (" mode_size[E_%smode] = 2*s;\n", m->name);
1650 printf (" mode_unit_size[E_%smode] = s;\n", m->name);
1651 printf (" mode_base_align[E_%smode] = s & (~s + 1);\n",
1652 m->name);
1653 break;
1655 case MODE_VECTOR_INT:
1656 case MODE_VECTOR_FLOAT:
1657 case MODE_VECTOR_FRACT:
1658 case MODE_VECTOR_UFRACT:
1659 case MODE_VECTOR_ACCUM:
1660 case MODE_VECTOR_UACCUM:
1661 printf (" mode_size[E_%smode] = %d*s;\n",
1662 m->name, m->ncomponents);
1663 printf (" mode_unit_size[E_%smode] = s;\n", m->name);
1664 printf (" mode_base_align[E_%smode] = (%d*s) & (~(%d*s)+1);\n",
1665 m->name, m->ncomponents, m->ncomponents);
1666 break;
1668 default:
1669 internal_error (
1670 "mode %s is neither vector nor complex but contains %s",
1671 m->name, a->mode->name);
1672 /* NOTREACHED */
1677 /* Alignment adjustments propagate too.
1678 ??? This may not be the right thing for vector modes. */
1679 for (a = adj_alignment; a; a = a->next)
1681 printf ("\n /* %s:%d */\n s = %s;\n",
1682 a->file, a->line, a->adjustment);
1683 printf (" mode_base_align[E_%smode] = s;\n", a->mode->name);
1685 for (m = a->mode->contained; m; m = m->next_cont)
1687 switch (m->cl)
1689 case MODE_COMPLEX_INT:
1690 case MODE_COMPLEX_FLOAT:
1691 printf (" mode_base_align[E_%smode] = s;\n", m->name);
1692 break;
1694 case MODE_VECTOR_INT:
1695 case MODE_VECTOR_FLOAT:
1696 case MODE_VECTOR_FRACT:
1697 case MODE_VECTOR_UFRACT:
1698 case MODE_VECTOR_ACCUM:
1699 case MODE_VECTOR_UACCUM:
1700 printf (" mode_base_align[E_%smode] = %d*s;\n",
1701 m->name, m->ncomponents);
1702 break;
1704 default:
1705 internal_error (
1706 "mode %s is neither vector nor complex but contains %s",
1707 m->name, a->mode->name);
1708 /* NOTREACHED */
1713 /* Ibit adjustments don't have to propagate. */
1714 for (a = adj_ibit; a; a = a->next)
1716 printf ("\n /* %s:%d */\n s = %s;\n",
1717 a->file, a->line, a->adjustment);
1718 printf (" mode_ibit[E_%smode] = s;\n", a->mode->name);
1721 /* Fbit adjustments don't have to propagate. */
1722 for (a = adj_fbit; a; a = a->next)
1724 printf ("\n /* %s:%d */\n s = %s;\n",
1725 a->file, a->line, a->adjustment);
1726 printf (" mode_fbit[E_%smode] = s;\n", a->mode->name);
1729 /* Real mode formats don't have to propagate anywhere. */
1730 for (a = adj_format; a; a = a->next)
1731 printf ("\n /* %s:%d */\n REAL_MODE_FORMAT (E_%smode) = %s;\n",
1732 a->file, a->line, a->mode->name, a->adjustment);
1734 puts ("}");
1737 /* Emit ibit for all modes. */
1739 static void
1740 emit_mode_ibit (void)
1742 int c;
1743 struct mode_data *m;
1745 print_maybe_const_decl ("%sunsigned char",
1746 "mode_ibit", "NUM_MACHINE_MODES",
1747 ibit);
1749 for_all_modes (c, m)
1750 tagged_printf ("%u", m->ibit, m->name);
1752 print_closer ();
1755 /* Emit fbit for all modes. */
1757 static void
1758 emit_mode_fbit (void)
1760 int c;
1761 struct mode_data *m;
1763 print_maybe_const_decl ("%sunsigned char",
1764 "mode_fbit", "NUM_MACHINE_MODES",
1765 fbit);
1767 for_all_modes (c, m)
1768 tagged_printf ("%u", m->fbit, m->name);
1770 print_closer ();
1773 /* Emit __intN for all modes. */
1775 static void
1776 emit_mode_int_n (void)
1778 int c;
1779 struct mode_data *m;
1780 struct mode_data **mode_sort;
1781 int n_modes = 0;
1782 int i, j;
1784 print_decl ("int_n_data_t", "int_n_data", "");
1786 n_modes = 0;
1787 for_all_modes (c, m)
1788 if (m->int_n)
1789 n_modes ++;
1790 mode_sort = XALLOCAVEC (struct mode_data *, n_modes);
1792 n_modes = 0;
1793 for_all_modes (c, m)
1794 if (m->int_n)
1795 mode_sort[n_modes++] = m;
1797 /* Yes, this is a bubblesort, but there are at most four (and
1798 usually only 1-2) entries to sort. */
1799 for (i = 0; i<n_modes - 1; i++)
1800 for (j = i + 1; j < n_modes; j++)
1801 if (mode_sort[i]->int_n > mode_sort[j]->int_n)
1802 std::swap (mode_sort[i], mode_sort[j]);
1804 for (i = 0; i < n_modes; i ++)
1806 m = mode_sort[i];
1807 printf(" {\n");
1808 tagged_printf ("%u", m->int_n, m->name);
1809 printf ("{ E_%smode },", m->name);
1810 printf(" },\n");
1813 print_closer ();
1817 static void
1818 emit_insn_modes_c (void)
1820 emit_insn_modes_c_header ();
1821 emit_mode_name ();
1822 emit_mode_class ();
1823 emit_mode_precision ();
1824 emit_mode_size ();
1825 emit_mode_nunits ();
1826 emit_mode_wider ();
1827 emit_mode_complex ();
1828 emit_mode_mask ();
1829 emit_mode_inner ();
1830 emit_mode_unit_size ();
1831 emit_mode_unit_precision ();
1832 emit_mode_base_align ();
1833 emit_class_narrowest_mode ();
1834 emit_real_format_for_mode ();
1835 emit_mode_adjustments ();
1836 emit_mode_ibit ();
1837 emit_mode_fbit ();
1838 emit_mode_int_n ();
1841 static void
1842 emit_min_insn_modes_c (void)
1844 emit_min_insn_modes_c_header ();
1845 emit_mode_name ();
1846 emit_mode_class ();
1847 emit_mode_nunits ();
1848 emit_mode_wider ();
1849 emit_mode_inner ();
1850 emit_class_narrowest_mode ();
1853 /* Master control. */
1855 main (int argc, char **argv)
1857 bool gen_header = false, gen_inlines = false, gen_min = false;
1858 progname = argv[0];
1860 if (argc == 1)
1862 else if (argc == 2 && !strcmp (argv[1], "-h"))
1863 gen_header = true;
1864 else if (argc == 2 && !strcmp (argv[1], "-i"))
1865 gen_inlines = true;
1866 else if (argc == 2 && !strcmp (argv[1], "-m"))
1867 gen_min = true;
1868 else
1870 error ("usage: %s [-h|-i|-m] > file", progname);
1871 return FATAL_EXIT_CODE;
1874 modes_by_name = htab_create_alloc (64, hash_mode, eq_mode, 0, xcalloc, free);
1876 create_modes ();
1877 complete_all_modes ();
1879 if (have_error)
1880 return FATAL_EXIT_CODE;
1882 calc_wider_mode ();
1884 if (gen_header)
1885 emit_insn_modes_h ();
1886 else if (gen_inlines)
1887 emit_insn_modes_inline_h ();
1888 else if (gen_min)
1889 emit_min_insn_modes_c ();
1890 else
1891 emit_insn_modes_c ();
1893 if (fflush (stdout) || fclose (stdout))
1894 return FATAL_EXIT_CODE;
1895 return SUCCESS_EXIT_CODE;