* readelf.c (dump_section_as_strings): Use %6tx instead of %6zx.
[deliverable/binutils-gdb.git] / opcodes / ia64-gen.c
CommitLineData
800eeca4 1/* ia64-gen.c -- Generate a shrunk set of opcode tables
9b201bb5 2 Copyright 1999, 2000, 2001, 2002, 2004, 2005, 2006, 2007
53c9ebc5 3 Free Software Foundation, Inc.
800eeca4
JW
4 Written by Bob Manson, Cygnus Solutions, <manson@cygnus.com>
5
9b201bb5 6 This file is part of the GNU opcodes library.
800eeca4 7
9b201bb5
NC
8 This library is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 3, or (at your option)
11 any later version.
800eeca4 12
9b201bb5
NC
13 It is distributed in the hope that it will be useful, but WITHOUT
14 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
15 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
16 License for more details.
800eeca4
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17
18 You should have received a copy of the GNU General Public License
19 along with this file; see the file COPYING. If not, write to the
f4321104
NC
20 Free Software Foundation, 51 Franklin Street - Fifth Floor, Boston, MA
21 02110-1301, USA. */
800eeca4 22
9b201bb5 23
800eeca4
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24/* While the ia64-opc-* set of opcode tables are easy to maintain,
25 they waste a tremendous amount of space. ia64-gen rearranges the
26 instructions into a directed acyclic graph (DAG) of instruction opcodes and
27 their possible completers, as well as compacting the set of strings used.
28
29 The disassembler table consists of a state machine that does
30 branching based on the bits of the opcode being disassembled. The
31 state encodings have been chosen to minimize the amount of space
32 required.
33
34 The resource table is constructed based on some text dependency tables,
bde78a07 35 which are also easier to maintain than the final representation. */
800eeca4
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36
37#include <stdio.h>
bde78a07
NC
38#include <stdarg.h>
39#include <errno.h>
800eeca4
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40
41#include "ansidecl.h"
42#include "libiberty.h"
3882b010 43#include "safe-ctype.h"
800eeca4 44#include "sysdep.h"
bde78a07 45#include "getopt.h"
800eeca4
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46#include "ia64-opc.h"
47#include "ia64-opc-a.c"
48#include "ia64-opc-i.c"
49#include "ia64-opc-m.c"
50#include "ia64-opc-b.c"
51#include "ia64-opc-f.c"
52#include "ia64-opc-x.c"
53#include "ia64-opc-d.c"
54
bde78a07
NC
55#include <libintl.h>
56#define _(String) gettext (String)
57
aa2273ba
JW
58/* This is a copy of fprintf_vma from bfd/bfd-in2.h. We have to use this
59 always, because we might be compiled without BFD64 defined, if configured
60 for a 32-bit target and --enable-targets=all is used. This will work for
61 both 32-bit and 64-bit hosts. */
62#define _opcode_int64_low(x) ((unsigned long) (((x) & 0xffffffff)))
63#define _opcode_int64_high(x) ((unsigned long) (((x) >> 32) & 0xffffffff))
64#define opcode_fprintf_vma(s,x) \
65 fprintf ((s), "%08lx%08lx", _opcode_int64_high (x), _opcode_int64_low (x))
66
bde78a07 67const char * program_name = NULL;
800eeca4
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68int debug = 0;
69
60b9a617 70#define NELEMS(a) (sizeof (a) / sizeof ((a)[0]))
800eeca4
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71#define tmalloc(X) (X *) xmalloc (sizeof (X))
72
73/* The main opcode table entry. Each entry is a unique combination of
74 name and flags (no two entries in the table compare as being equal
bde78a07 75 via opcodes_eq). */
800eeca4
JW
76struct main_entry
77{
78 /* The base name of this opcode. The names of its completers are
bde78a07 79 appended to it to generate the full instruction name. */
800eeca4
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80 struct string_entry *name;
81 /* The base opcode entry. Which one to use is a fairly arbitrary choice;
bde78a07 82 it uses the first one passed to add_opcode_entry. */
800eeca4 83 struct ia64_opcode *opcode;
bde78a07 84 /* The list of completers that can be applied to this opcode. */
800eeca4 85 struct completer_entry *completers;
bde78a07 86 /* Next entry in the chain. */
800eeca4 87 struct main_entry *next;
bde78a07 88 /* Index in the main table. */
aa170a07
TW
89 int main_index;
90} *maintable, **ordered_table;
bde78a07 91
aa170a07
TW
92int otlen = 0;
93int ottotlen = 0;
94int opcode_count = 0;
800eeca4 95
bde78a07 96/* The set of possible completers for an opcode. */
800eeca4
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97struct completer_entry
98{
bde78a07 99 /* This entry's index in the ia64_completer_table[] array. */
800eeca4
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100 int num;
101
bde78a07 102 /* The name of the completer. */
800eeca4
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103 struct string_entry *name;
104
bde78a07 105 /* This entry's parent. */
800eeca4
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106 struct completer_entry *parent;
107
108 /* Set if this is a terminal completer (occurs at the end of an
bde78a07 109 opcode). */
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110 int is_terminal;
111
bde78a07 112 /* An alternative completer. */
800eeca4
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113 struct completer_entry *alternative;
114
115 /* Additional completers that can be appended to this one. */
116 struct completer_entry *addl_entries;
117
118 /* Before compute_completer_bits () is invoked, this contains the actual
119 instruction opcode for this combination of opcode and completers.
120 Afterwards, it contains those bits that are different from its
bde78a07 121 parent opcode. */
800eeca4
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122 ia64_insn bits;
123
124 /* Bits set to 1 correspond to those bits in this completer's opcode
125 that are different from its parent completer's opcode (or from
126 the base opcode if the entry is the root of the opcode's completer
bde78a07 127 list). This field is filled in by compute_completer_bits (). */
800eeca4
JW
128 ia64_insn mask;
129
bde78a07 130 /* Index into the opcode dependency list, or -1 if none. */
800eeca4 131 int dependencies;
aa170a07
TW
132
133 /* Remember the order encountered in the opcode tables. */
134 int order;
800eeca4
JW
135};
136
bde78a07 137/* One entry in the disassembler name table. */
800eeca4
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138struct disent
139{
bde78a07 140 /* The index into the ia64_name_dis array for this entry. */
800eeca4
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141 int ournum;
142
bde78a07 143 /* The index into the main_table[] array. */
800eeca4
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144 int insn;
145
bde78a07 146 /* The disassmbly priority of this entry. */
aa170a07
TW
147 int priority;
148
bde78a07 149 /* The completer_index value for this entry. */
800eeca4
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150 int completer_index;
151
bde78a07 152 /* How many other entries share this decode. */
800eeca4
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153 int nextcnt;
154
bde78a07 155 /* The next entry sharing the same decode. */
800eeca4
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156 struct disent *nexte;
157
bde78a07 158 /* The next entry in the name list. */
800eeca4
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159 struct disent *next_ent;
160} *disinsntable = NULL;
161
162/* A state machine that will eventually be used to generate the
bde78a07 163 disassembler table. */
800eeca4
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164struct bittree
165{
166 struct disent *disent;
bde78a07 167 struct bittree *bits[3]; /* 0, 1, and X (don't care). */
800eeca4
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168 int bits_to_skip;
169 int skip_flag;
170} *bittree;
171
172/* The string table contains all opcodes and completers sorted in
173 alphabetical order. */
174
bde78a07 175/* One entry in the string table. */
800eeca4
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176struct string_entry
177{
bde78a07 178 /* The index in the ia64_strings[] array for this entry. */
800eeca4 179 int num;
bde78a07 180 /* And the string. */
800eeca4
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181 char *s;
182} **string_table = NULL;
bde78a07 183
800eeca4
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184int strtablen = 0;
185int strtabtotlen = 0;
186
187\f
bde78a07 188/* Resource dependency entries. */
800eeca4
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189struct rdep
190{
bde78a07 191 char *name; /* Resource name. */
800eeca4 192 unsigned
bde78a07
NC
193 mode:2, /* RAW, WAW, or WAR. */
194 semantics:3; /* Dependency semantics. */
195 char *extra; /* Additional semantics info. */
800eeca4 196 int nchks;
bde78a07
NC
197 int total_chks; /* Total #of terminal insns. */
198 int *chks; /* Insn classes which read (RAW), write
199 (WAW), or write (WAR) this rsrc. */
200 int *chknotes; /* Dependency notes for each class. */
800eeca4 201 int nregs;
bde78a07
NC
202 int total_regs; /* Total #of terminal insns. */
203 int *regs; /* Insn class which write (RAW), write2
204 (WAW), or read (WAR) this rsrc. */
205 int *regnotes; /* Dependency notes for each class. */
800eeca4 206
bde78a07 207 int waw_special; /* Special WAW dependency note. */
800eeca4
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208} **rdeps = NULL;
209
210static int rdepslen = 0;
211static int rdepstotlen = 0;
212
bde78a07 213/* Array of all instruction classes. */
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214struct iclass
215{
bde78a07
NC
216 char *name; /* Instruction class name. */
217 int is_class; /* Is a class, not a terminal. */
800eeca4 218 int nsubs;
bde78a07 219 int *subs; /* Other classes within this class. */
800eeca4 220 int nxsubs;
bde78a07
NC
221 int xsubs[4]; /* Exclusions. */
222 char *comment; /* Optional comment. */
223 int note; /* Optional note. */
224 int terminal_resolved; /* Did we match this with anything? */
225 int orphan; /* Detect class orphans. */
800eeca4
JW
226} **ics = NULL;
227
228static int iclen = 0;
229static int ictotlen = 0;
230
bde78a07 231/* An opcode dependency (chk/reg pair of dependency lists). */
800eeca4
JW
232struct opdep
233{
234 int chk; /* index into dlists */
235 int reg; /* index into dlists */
236} **opdeps;
237
238static int opdeplen = 0;
239static int opdeptotlen = 0;
240
bde78a07 241/* A generic list of dependencies w/notes encoded. These may be shared. */
800eeca4
JW
242struct deplist
243{
244 int len;
245 unsigned short *deps;
246} **dlists;
247
248static int dlistlen = 0;
249static int dlisttotlen = 0;
250
bde78a07 251
0fd3a477
JW
252static void fail (const char *, ...) ATTRIBUTE_PRINTF_1;
253static void warn (const char *, ...) ATTRIBUTE_PRINTF_1;
bde78a07
NC
254static struct rdep * insert_resource (const char *, enum ia64_dependency_mode);
255static int deplist_equals (struct deplist *, struct deplist *);
256static short insert_deplist (int, unsigned short *);
257static short insert_dependencies (int, unsigned short *, int, unsigned short *);
258static void mark_used (struct iclass *, int);
259static int fetch_insn_class (const char *, int);
260static int sub_compare (const void *, const void *);
261static void load_insn_classes (void);
262static void parse_resource_users (const char *, int **, int *, int **);
263static int parse_semantics (char *);
264static void add_dep (const char *, const char *, const char *, int, int, char *, int);
265static void load_depfile (const char *, enum ia64_dependency_mode);
266static void load_dependencies (void);
267static int irf_operand (int, const char *);
268static int in_iclass_mov_x (struct ia64_opcode *, struct iclass *, const char *, const char *);
269static int in_iclass (struct ia64_opcode *, struct iclass *, const char *, const char *, int *);
270static int lookup_regindex (const char *, int);
271static int lookup_specifier (const char *);
272static void print_dependency_table (void);
273static struct string_entry * insert_string (char *);
274static void gen_dis_table (struct bittree *);
275static void print_dis_table (void);
276static void generate_disassembler (void);
277static void print_string_table (void);
278static int completer_entries_eq (struct completer_entry *, struct completer_entry *);
279static struct completer_entry * insert_gclist (struct completer_entry *);
280static int get_prefix_len (const char *);
281static void compute_completer_bits (struct main_entry *, struct completer_entry *);
282static void collapse_redundant_completers (void);
283static int insert_opcode_dependencies (struct ia64_opcode *, struct completer_entry *);
284static void insert_completer_entry (struct ia64_opcode *, struct main_entry *, int);
285static void print_completer_entry (struct completer_entry *);
286static void print_completer_table (void);
287static int opcodes_eq (struct ia64_opcode *, struct ia64_opcode *);
288static void add_opcode_entry (struct ia64_opcode *);
289static void print_main_table (void);
290static void shrink (struct ia64_opcode *);
291static void print_version (void);
292static void usage (FILE *, int);
293static void finish_distable (void);
294static void insert_bit_table_ent (struct bittree *, int, ia64_insn, ia64_insn, int, int, int);
295static void add_dis_entry (struct bittree *, ia64_insn, ia64_insn, int, struct completer_entry *, int);
296static void compact_distree (struct bittree *);
297static struct bittree * make_bittree_entry (void);
298static struct disent * add_dis_table_ent (struct disent *, int, int, int);
299
300\f
301static void
302fail (const char *message, ...)
303{
304 va_list args;
305
306 va_start (args, message);
307 fprintf (stderr, _("%s: Error: "), program_name);
308 vfprintf (stderr, message, args);
309 va_end (args);
310 xexit (1);
311}
312
313static void
314warn (const char *message, ...)
315{
316 va_list args;
317
318 va_start (args, message);
319
320 fprintf (stderr, _("%s: Warning: "), program_name);
321 vfprintf (stderr, message, args);
322 va_end (args);
323}
324
325/* Add NAME to the resource table, where TYPE is RAW or WAW. */
800eeca4
JW
326static struct rdep *
327insert_resource (const char *name, enum ia64_dependency_mode type)
328{
329 if (rdepslen == rdepstotlen)
330 {
331 rdepstotlen += 20;
332 rdeps = (struct rdep **)
333 xrealloc (rdeps, sizeof(struct rdep **) * rdepstotlen);
334 }
335 rdeps[rdepslen] = tmalloc(struct rdep);
336 memset((void *)rdeps[rdepslen], 0, sizeof(struct rdep));
337 rdeps[rdepslen]->name = xstrdup (name);
338 rdeps[rdepslen]->mode = type;
339 rdeps[rdepslen]->waw_special = 0;
340
341 return rdeps[rdepslen++];
342}
343
bde78a07 344/* Are the lists of dependency indexes equivalent? */
800eeca4
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345static int
346deplist_equals (struct deplist *d1, struct deplist *d2)
347{
348 int i;
349
350 if (d1->len != d2->len)
351 return 0;
352
bde78a07
NC
353 for (i = 0; i < d1->len; i++)
354 if (d1->deps[i] != d2->deps[i])
355 return 0;
800eeca4
JW
356
357 return 1;
358}
359
bde78a07 360/* Add the list of dependencies to the list of dependency lists. */
800eeca4 361static short
bde78a07 362insert_deplist (int count, unsigned short *deps)
800eeca4 363{
bde78a07
NC
364 /* Sort the list, then see if an equivalent list exists already.
365 this results in a much smaller set of dependency lists. */
800eeca4
JW
366 struct deplist *list;
367 char set[0x10000];
368 int i;
369
bde78a07
NC
370 memset ((void *)set, 0, sizeof (set));
371 for (i = 0; i < count; i++)
800eeca4 372 set[deps[i]] = 1;
bde78a07 373
800eeca4 374 count = 0;
bde78a07 375 for (i = 0; i < (int) sizeof (set); i++)
800eeca4
JW
376 if (set[i])
377 ++count;
378
bde78a07 379 list = tmalloc (struct deplist);
800eeca4 380 list->len = count;
bde78a07 381 list->deps = (unsigned short *) malloc (sizeof (unsigned short) * count);
800eeca4 382
bde78a07
NC
383 for (i = 0, count = 0; i < (int) sizeof (set); i++)
384 if (set[i])
385 list->deps[count++] = i;
386
387 /* Does this list exist already? */
388 for (i = 0; i < dlistlen; i++)
389 if (deplist_equals (list, dlists[i]))
390 {
391 free (list->deps);
392 free (list);
393 return i;
394 }
800eeca4
JW
395
396 if (dlistlen == dlisttotlen)
397 {
398 dlisttotlen += 20;
399 dlists = (struct deplist **)
400 xrealloc (dlists, sizeof(struct deplist **) * dlisttotlen);
401 }
402 dlists[dlistlen] = list;
403
404 return dlistlen++;
405}
406
bde78a07 407/* Add the given pair of dependency lists to the opcode dependency list. */
800eeca4
JW
408static short
409insert_dependencies (int nchks, unsigned short *chks,
410 int nregs, unsigned short *regs)
411{
412 struct opdep *pair;
413 int i;
414 int regind = -1;
415 int chkind = -1;
416
417 if (nregs > 0)
418 regind = insert_deplist (nregs, regs);
419 if (nchks > 0)
420 chkind = insert_deplist (nchks, chks);
421
bde78a07
NC
422 for (i = 0; i < opdeplen; i++)
423 if (opdeps[i]->chk == chkind
424 && opdeps[i]->reg == regind)
425 return i;
426
427 pair = tmalloc (struct opdep);
800eeca4
JW
428 pair->chk = chkind;
429 pair->reg = regind;
430
431 if (opdeplen == opdeptotlen)
432 {
433 opdeptotlen += 20;
434 opdeps = (struct opdep **)
435 xrealloc (opdeps, sizeof(struct opdep **) * opdeptotlen);
436 }
437 opdeps[opdeplen] = pair;
438
439 return opdeplen++;
440}
441
442static void
443mark_used (struct iclass *ic, int clear_terminals)
444{
445 int i;
446
447 ic->orphan = 0;
448 if (clear_terminals)
449 ic->terminal_resolved = 1;
450
bde78a07
NC
451 for (i = 0; i < ic->nsubs; i++)
452 mark_used (ics[ic->subs[i]], clear_terminals);
453
454 for (i = 0; i < ic->nxsubs; i++)
455 mark_used (ics[ic->xsubs[i]], clear_terminals);
800eeca4
JW
456}
457
bde78a07
NC
458/* Look up an instruction class; if CREATE make a new one if none found;
459 returns the index into the insn class array. */
800eeca4 460static int
bde78a07 461fetch_insn_class (const char *full_name, int create)
800eeca4
JW
462{
463 char *name;
464 char *notestr;
465 char *xsect;
466 char *comment;
467 int i, note = 0;
468 int ind;
469 int is_class = 0;
470
0112cd26 471 if (CONST_STRNEQ (full_name, "IC:"))
800eeca4
JW
472 {
473 name = xstrdup (full_name + 3);
474 is_class = 1;
475 }
476 else
477 name = xstrdup (full_name);
478
479 if ((xsect = strchr(name, '\\')) != NULL)
480 is_class = 1;
481 if ((comment = strchr(name, '[')) != NULL)
482 is_class = 1;
483 if ((notestr = strchr(name, '+')) != NULL)
f4bc6bb0
JW
484 is_class = 1;
485
486 /* If it is a composite class, then ignore comments and notes that come after
487 the '\\', since they don't apply to the part we are decoding now. */
488 if (xsect)
489 {
490 if (comment > xsect)
491 comment = 0;
492 if (notestr > xsect)
493 notestr = 0;
494 }
495
496 if (notestr)
800eeca4
JW
497 {
498 char *nextnotestr;
bde78a07 499
800eeca4
JW
500 note = atoi (notestr + 1);
501 if ((nextnotestr = strchr (notestr + 1, '+')) != NULL)
502 {
503 if (strcmp (notestr, "+1+13") == 0)
504 note = 13;
505 else if (!xsect || nextnotestr < xsect)
bde78a07 506 warn (_("multiple note %s not handled\n"), notestr);
800eeca4
JW
507 }
508 }
509
f4bc6bb0
JW
510 /* If it's a composite class, leave the notes and comments in place so that
511 we have a unique name for the composite class. Otherwise, we remove
512 them. */
800eeca4
JW
513 if (!xsect)
514 {
515 if (notestr)
516 *notestr = 0;
517 if (comment)
518 *comment = 0;
519 }
520
bde78a07
NC
521 for (i = 0; i < iclen; i++)
522 if (strcmp (name, ics[i]->name) == 0
800eeca4
JW
523 && ((comment == NULL && ics[i]->comment == NULL)
524 || (comment != NULL && ics[i]->comment != NULL
525 && strncmp (ics[i]->comment, comment,
526 strlen (ics[i]->comment)) == 0))
527 && note == ics[i]->note)
528 return i;
529
530 if (!create)
531 return -1;
532
bde78a07 533 /* Doesn't exist, so make a new one. */
800eeca4
JW
534 if (iclen == ictotlen)
535 {
536 ictotlen += 20;
537 ics = (struct iclass **)
bde78a07 538 xrealloc (ics, (ictotlen) * sizeof (struct iclass *));
800eeca4 539 }
bde78a07 540
800eeca4 541 ind = iclen++;
bde78a07
NC
542 ics[ind] = tmalloc (struct iclass);
543 memset ((void *)ics[ind], 0, sizeof (struct iclass));
544 ics[ind]->name = xstrdup (name);
800eeca4
JW
545 ics[ind]->is_class = is_class;
546 ics[ind]->orphan = 1;
547
548 if (comment)
549 {
550 ics[ind]->comment = xstrdup (comment + 1);
bde78a07 551 ics[ind]->comment[strlen (ics[ind]->comment)-1] = 0;
800eeca4 552 }
bde78a07 553
800eeca4
JW
554 if (notestr)
555 ics[ind]->note = note;
556
bde78a07
NC
557 /* If it's a composite class, there's a comment or note, look for an
558 existing class or terminal with the same name. */
800eeca4
JW
559 if ((xsect || comment || notestr) && is_class)
560 {
d1e28e24 561 /* First, populate with the class we're based on. */
800eeca4 562 char *subname = name;
bde78a07 563
800eeca4
JW
564 if (xsect)
565 *xsect = 0;
566 else if (comment)
567 *comment = 0;
568 else if (notestr)
569 *notestr = 0;
bde78a07 570
800eeca4
JW
571 ics[ind]->nsubs = 1;
572 ics[ind]->subs = tmalloc(int);
573 ics[ind]->subs[0] = fetch_insn_class (subname, 1);;
574 }
575
576 while (xsect)
577 {
578 char *subname = xsect + 1;
bde78a07 579
800eeca4
JW
580 xsect = strchr (subname, '\\');
581 if (xsect)
582 *xsect = 0;
583 ics[ind]->xsubs[ics[ind]->nxsubs] = fetch_insn_class (subname,1);
584 ics[ind]->nxsubs++;
585 }
586 free (name);
587
588 return ind;
589}
590
bde78a07
NC
591/* For sorting a class's sub-class list only; make sure classes appear before
592 terminals. */
800eeca4
JW
593static int
594sub_compare (const void *e1, const void *e2)
595{
596 struct iclass *ic1 = ics[*(int *)e1];
597 struct iclass *ic2 = ics[*(int *)e2];
598
599 if (ic1->is_class)
600 {
601 if (!ic2->is_class)
602 return -1;
603 }
604 else if (ic2->is_class)
605 return 1;
606
607 return strcmp (ic1->name, ic2->name);
608}
609
610static void
bde78a07 611load_insn_classes (void)
800eeca4 612{
bde78a07 613 FILE *fp = fopen ("ia64-ic.tbl", "r");
800eeca4
JW
614 char buf[2048];
615
bde78a07
NC
616 if (fp == NULL)
617 fail (_("can't find ia64-ic.tbl for reading\n"));
aa170a07 618
bde78a07 619 /* Discard first line. */
800eeca4
JW
620 fgets (buf, sizeof(buf), fp);
621
bde78a07 622 while (!feof (fp))
800eeca4
JW
623 {
624 int iclass;
625 char *name;
626 char *tmp;
627
bde78a07 628 if (fgets (buf, sizeof (buf), fp) == NULL)
800eeca4
JW
629 break;
630
bde78a07
NC
631 while (ISSPACE (buf[strlen (buf) - 1]))
632 buf[strlen (buf) - 1] = '\0';
800eeca4
JW
633
634 name = tmp = buf;
635 while (*tmp != ';')
636 {
637 ++tmp;
bde78a07 638 if (tmp == buf + sizeof (buf))
800eeca4
JW
639 abort ();
640 }
641 *tmp++ = '\0';
642
bde78a07 643 iclass = fetch_insn_class (name, 1);
800eeca4
JW
644 ics[iclass]->is_class = 1;
645
646 if (strcmp (name, "none") == 0)
647 {
648 ics[iclass]->is_class = 0;
649 ics[iclass]->terminal_resolved = 1;
650 continue;
651 }
652
bde78a07 653 /* For this class, record all sub-classes. */
800eeca4
JW
654 while (*tmp)
655 {
656 char *subname;
657 int sub;
658
3882b010 659 while (*tmp && ISSPACE (*tmp))
800eeca4
JW
660 {
661 ++tmp;
bde78a07
NC
662 if (tmp == buf + sizeof (buf))
663 abort ();
800eeca4
JW
664 }
665 subname = tmp;
666 while (*tmp && *tmp != ',')
667 {
668 ++tmp;
bde78a07
NC
669 if (tmp == buf + sizeof (buf))
670 abort ();
800eeca4
JW
671 }
672 if (*tmp == ',')
673 *tmp++ = '\0';
674
675 ics[iclass]->subs = (int *)
bde78a07
NC
676 xrealloc ((void *)ics[iclass]->subs,
677 (ics[iclass]->nsubs + 1) * sizeof (int));
800eeca4 678
bde78a07 679 sub = fetch_insn_class (subname, 1);
800eeca4 680 ics[iclass]->subs = (int *)
bde78a07 681 xrealloc (ics[iclass]->subs, (ics[iclass]->nsubs + 1) * sizeof (int));
800eeca4
JW
682 ics[iclass]->subs[ics[iclass]->nsubs++] = sub;
683 }
bde78a07
NC
684
685 /* Make sure classes come before terminals. */
800eeca4
JW
686 qsort ((void *)ics[iclass]->subs,
687 ics[iclass]->nsubs, sizeof(int), sub_compare);
688 }
bde78a07 689 fclose (fp);
800eeca4
JW
690
691 if (debug)
bde78a07 692 printf ("%d classes\n", iclen);
800eeca4
JW
693}
694
bde78a07 695/* Extract the insn classes from the given line. */
800eeca4 696static void
bde78a07
NC
697parse_resource_users (ref, usersp, nusersp, notesp)
698 const char *ref;
800eeca4
JW
699 int **usersp;
700 int *nusersp;
701 int **notesp;
702{
703 int c;
704 char *line = xstrdup (ref);
705 char *tmp = line;
706 int *users = *usersp;
707 int count = *nusersp;
708 int *notes = *notesp;
709
710 c = *tmp;
711 while (c != 0)
712 {
713 char *notestr;
714 int note;
715 char *xsect;
716 int iclass;
717 int create = 0;
718 char *name;
719
3882b010 720 while (ISSPACE (*tmp))
800eeca4
JW
721 ++tmp;
722 name = tmp;
723 while (*tmp && *tmp != ',')
724 ++tmp;
725 c = *tmp;
726 *tmp++ = '\0';
727
bde78a07
NC
728 xsect = strchr (name, '\\');
729 if ((notestr = strstr (name, "+")) != NULL)
800eeca4
JW
730 {
731 char *nextnotestr;
bde78a07 732
800eeca4
JW
733 note = atoi (notestr + 1);
734 if ((nextnotestr = strchr (notestr + 1, '+')) != NULL)
735 {
bde78a07 736 /* Note 13 always implies note 1. */
800eeca4
JW
737 if (strcmp (notestr, "+1+13") == 0)
738 note = 13;
739 else if (!xsect || nextnotestr < xsect)
bde78a07 740 warn (_("multiple note %s not handled\n"), notestr);
800eeca4
JW
741 }
742 if (!xsect)
743 *notestr = '\0';
744 }
745 else
746 note = 0;
bde78a07 747
800eeca4
JW
748 /* All classes are created when the insn class table is parsed;
749 Individual instructions might not appear until the dependency tables
750 are read. Only create new classes if it's *not* an insn class,
751 or if it's a composite class (which wouldn't necessarily be in the IC
bde78a07 752 table). */
0112cd26 753 if (! CONST_STRNEQ (name, "IC:") || xsect != NULL)
800eeca4
JW
754 create = 1;
755
bde78a07 756 iclass = fetch_insn_class (name, create);
800eeca4
JW
757 if (iclass != -1)
758 {
759 users = (int *)
bde78a07 760 xrealloc ((void *) users,(count + 1) * sizeof (int));
800eeca4 761 notes = (int *)
bde78a07 762 xrealloc ((void *) notes,(count + 1) * sizeof (int));
800eeca4
JW
763 notes[count] = note;
764 users[count++] = iclass;
765 mark_used (ics[iclass], 0);
766 }
bde78a07
NC
767 else if (debug)
768 printf("Class %s not found\n", name);
800eeca4 769 }
bde78a07 770 /* Update the return values. */
800eeca4
JW
771 *usersp = users;
772 *nusersp = count;
773 *notesp = notes;
774
775 free (line);
776}
777
778static int
779parse_semantics (char *sem)
780{
781 if (strcmp (sem, "none") == 0)
782 return IA64_DVS_NONE;
783 else if (strcmp (sem, "implied") == 0)
784 return IA64_DVS_IMPLIED;
785 else if (strcmp (sem, "impliedF") == 0)
786 return IA64_DVS_IMPLIEDF;
787 else if (strcmp (sem, "data") == 0)
788 return IA64_DVS_DATA;
789 else if (strcmp (sem, "instr") == 0)
790 return IA64_DVS_INSTR;
791 else if (strcmp (sem, "specific") == 0)
792 return IA64_DVS_SPECIFIC;
139368c9
JW
793 else if (strcmp (sem, "stop") == 0)
794 return IA64_DVS_STOP;
800eeca4
JW
795 else
796 return IA64_DVS_OTHER;
797}
798
799static void
800add_dep (const char *name, const char *chk, const char *reg,
801 int semantics, int mode, char *extra, int flag)
802{
803 struct rdep *rs;
804
805 rs = insert_resource (name, mode);
bde78a07
NC
806
807 parse_resource_users (chk, &rs->chks, &rs->nchks, &rs->chknotes);
808 parse_resource_users (reg, &rs->regs, &rs->nregs, &rs->regnotes);
809
800eeca4
JW
810 rs->semantics = semantics;
811 rs->extra = extra;
812 rs->waw_special = flag;
813}
814
815static void
816load_depfile (const char *filename, enum ia64_dependency_mode mode)
817{
bde78a07 818 FILE *fp = fopen (filename, "r");
800eeca4
JW
819 char buf[1024];
820
bde78a07
NC
821 if (fp == NULL)
822 fail (_("can't find %s for reading\n"), filename);
aa170a07 823
bde78a07
NC
824 fgets (buf, sizeof(buf), fp);
825 while (!feof (fp))
800eeca4
JW
826 {
827 char *name, *tmp;
828 int semantics;
829 char *extra;
830 char *regp, *chkp;
831
832 if (fgets (buf, sizeof(buf), fp) == NULL)
833 break;
834
bde78a07
NC
835 while (ISSPACE (buf[strlen (buf) - 1]))
836 buf[strlen (buf) - 1] = '\0';
800eeca4
JW
837
838 name = tmp = buf;
839 while (*tmp != ';')
840 ++tmp;
841 *tmp++ = '\0';
842
3882b010 843 while (ISSPACE (*tmp))
800eeca4
JW
844 ++tmp;
845 regp = tmp;
846 tmp = strchr (tmp, ';');
847 if (!tmp)
848 abort ();
849 *tmp++ = 0;
3882b010 850 while (ISSPACE (*tmp))
800eeca4
JW
851 ++tmp;
852 chkp = tmp;
853 tmp = strchr (tmp, ';');
854 if (!tmp)
855 abort ();
856 *tmp++ = 0;
3882b010 857 while (ISSPACE (*tmp))
800eeca4
JW
858 ++tmp;
859 semantics = parse_semantics (tmp);
860 extra = semantics == IA64_DVS_OTHER ? xstrdup (tmp) : NULL;
861
862 /* For WAW entries, if the chks and regs differ, we need to enter the
863 entries in both positions so that the tables will be parsed properly,
bde78a07 864 without a lot of extra work. */
800eeca4
JW
865 if (mode == IA64_DV_WAW && strcmp (regp, chkp) != 0)
866 {
867 add_dep (name, chkp, regp, semantics, mode, extra, 0);
868 add_dep (name, regp, chkp, semantics, mode, extra, 1);
869 }
870 else
871 {
872 add_dep (name, chkp, regp, semantics, mode, extra, 0);
873 }
874 }
bde78a07 875 fclose (fp);
800eeca4
JW
876}
877
878static void
bde78a07 879load_dependencies (void)
800eeca4
JW
880{
881 load_depfile ("ia64-raw.tbl", IA64_DV_RAW);
882 load_depfile ("ia64-waw.tbl", IA64_DV_WAW);
883 load_depfile ("ia64-war.tbl", IA64_DV_WAR);
884
885 if (debug)
bde78a07 886 printf ("%d RAW/WAW/WAR dependencies\n", rdepslen);
800eeca4
JW
887}
888
bde78a07 889/* Is the given operand an indirect register file operand? */
800eeca4
JW
890static int
891irf_operand (int op, const char *field)
892{
893 if (!field)
894 {
895 return op == IA64_OPND_RR_R3 || op == IA64_OPND_DBR_R3
c1485d85
NC
896 || op == IA64_OPND_IBR_R3 || op == IA64_OPND_PKR_R3
897 || op == IA64_OPND_PMC_R3 || op == IA64_OPND_PMD_R3
800eeca4
JW
898 || op == IA64_OPND_MSR_R3 || op == IA64_OPND_CPUID_R3;
899 }
900 else
901 {
902 return ((op == IA64_OPND_RR_R3 && strstr (field, "rr"))
903 || (op == IA64_OPND_DBR_R3 && strstr (field, "dbr"))
904 || (op == IA64_OPND_IBR_R3 && strstr (field, "ibr"))
905 || (op == IA64_OPND_PKR_R3 && strstr (field, "pkr"))
906 || (op == IA64_OPND_PMC_R3 && strstr (field, "pmc"))
907 || (op == IA64_OPND_PMD_R3 && strstr (field, "pmd"))
908 || (op == IA64_OPND_MSR_R3 && strstr (field, "msr"))
909 || (op == IA64_OPND_CPUID_R3 && strstr (field, "cpuid")));
910 }
911}
912
bde78a07
NC
913/* Handle mov_ar, mov_br, mov_cr, mov_indirect, mov_ip, mov_pr, mov_psr, and
914 mov_um insn classes. */
800eeca4
JW
915static int
916in_iclass_mov_x (struct ia64_opcode *idesc, struct iclass *ic,
917 const char *format, const char *field)
918{
919 int plain_mov = strcmp (idesc->name, "mov") == 0;
920
921 if (!format)
922 return 0;
923
924 switch (ic->name[4])
925 {
926 default:
927 abort ();
928 case 'a':
929 {
930 int i = strcmp (idesc->name, "mov.i") == 0;
931 int m = strcmp (idesc->name, "mov.m") == 0;
932 int i2627 = i && idesc->operands[0] == IA64_OPND_AR3;
933 int i28 = i && idesc->operands[1] == IA64_OPND_AR3;
934 int m2930 = m && idesc->operands[0] == IA64_OPND_AR3;
935 int m31 = m && idesc->operands[1] == IA64_OPND_AR3;
936 int pseudo0 = plain_mov && idesc->operands[1] == IA64_OPND_AR3;
937 int pseudo1 = plain_mov && idesc->operands[0] == IA64_OPND_AR3;
938
939 /* IC:mov ar */
940 if (i2627)
941 return strstr (format, "I26") || strstr (format, "I27");
942 if (i28)
943 return strstr (format, "I28") != NULL;
944 if (m2930)
945 return strstr (format, "M29") || strstr (format, "M30");
946 if (m31)
947 return strstr (format, "M31") != NULL;
948 if (pseudo0 || pseudo1)
949 return 1;
950 }
951 break;
952 case 'b':
953 {
954 int i21 = idesc->operands[0] == IA64_OPND_B1;
955 int i22 = plain_mov && idesc->operands[1] == IA64_OPND_B2;
956 if (i22)
957 return strstr (format, "I22") != NULL;
958 if (i21)
959 return strstr (format, "I21") != NULL;
960 }
961 break;
962 case 'c':
963 {
964 int m32 = plain_mov && idesc->operands[0] == IA64_OPND_CR3;
965 int m33 = plain_mov && idesc->operands[1] == IA64_OPND_CR3;
966 if (m32)
967 return strstr (format, "M32") != NULL;
968 if (m33)
969 return strstr (format, "M33") != NULL;
970 }
971 break;
972 case 'i':
973 if (ic->name[5] == 'n')
974 {
975 int m42 = plain_mov && irf_operand (idesc->operands[0], field);
976 int m43 = plain_mov && irf_operand (idesc->operands[1], field);
977 if (m42)
978 return strstr (format, "M42") != NULL;
979 if (m43)
980 return strstr (format, "M43") != NULL;
981 }
982 else if (ic->name[5] == 'p')
983 {
984 return idesc->operands[1] == IA64_OPND_IP;
985 }
986 else
987 abort ();
988 break;
989 case 'p':
990 if (ic->name[5] == 'r')
991 {
992 int i25 = plain_mov && idesc->operands[1] == IA64_OPND_PR;
993 int i23 = plain_mov && idesc->operands[0] == IA64_OPND_PR;
994 int i24 = plain_mov && idesc->operands[0] == IA64_OPND_PR_ROT;
995 if (i23)
996 return strstr (format, "I23") != NULL;
997 if (i24)
998 return strstr (format, "I24") != NULL;
999 if (i25)
1000 return strstr (format, "I25") != NULL;
1001 }
1002 else if (ic->name[5] == 's')
1003 {
1004 int m35 = plain_mov && idesc->operands[0] == IA64_OPND_PSR_L;
1005 int m36 = plain_mov && idesc->operands[1] == IA64_OPND_PSR;
1006 if (m35)
1007 return strstr (format, "M35") != NULL;
1008 if (m36)
1009 return strstr (format, "M36") != NULL;
1010 }
1011 else
1012 abort ();
1013 break;
1014 case 'u':
1015 {
1016 int m35 = plain_mov && idesc->operands[0] == IA64_OPND_PSR_UM;
1017 int m36 = plain_mov && idesc->operands[1] == IA64_OPND_PSR_UM;
1018 if (m35)
1019 return strstr (format, "M35") != NULL;
1020 if (m36)
1021 return strstr (format, "M36") != NULL;
1022 }
1023 break;
1024 }
1025 return 0;
1026}
1027
bde78a07 1028/* Is the given opcode in the given insn class? */
800eeca4 1029static int
bde78a07
NC
1030in_iclass (struct ia64_opcode *idesc, struct iclass *ic,
1031 const char *format, const char *field, int *notep)
800eeca4
JW
1032{
1033 int i;
1034 int resolved = 0;
1035
1036 if (ic->comment)
1037 {
0112cd26 1038 if (CONST_STRNEQ (ic->comment, "Format"))
800eeca4 1039 {
bde78a07
NC
1040 /* Assume that the first format seen is the most restrictive, and
1041 only keep a later one if it looks like it's more restrictive. */
800eeca4
JW
1042 if (format)
1043 {
1044 if (strlen (ic->comment) < strlen (format))
1045 {
bde78a07
NC
1046 warn (_("most recent format '%s'\nappears more restrictive than '%s'\n"),
1047 ic->comment, format);
800eeca4
JW
1048 format = ic->comment;
1049 }
1050 }
1051 else
1052 format = ic->comment;
1053 }
0112cd26 1054 else if (CONST_STRNEQ (ic->comment, "Field"))
800eeca4
JW
1055 {
1056 if (field)
bde78a07
NC
1057 warn (_("overlapping field %s->%s\n"),
1058 ic->comment, field);
800eeca4
JW
1059 field = ic->comment;
1060 }
1061 }
1062
bde78a07 1063 /* An insn class matches anything that is the same followed by completers,
800eeca4 1064 except when the absence and presence of completers constitutes different
bde78a07 1065 instructions. */
800eeca4
JW
1066 if (ic->nsubs == 0 && ic->nxsubs == 0)
1067 {
0112cd26 1068 int is_mov = CONST_STRNEQ (idesc->name, "mov");
800eeca4
JW
1069 int plain_mov = strcmp (idesc->name, "mov") == 0;
1070 int len = strlen(ic->name);
1071
1072 resolved = ((strncmp (ic->name, idesc->name, len) == 0)
1073 && (idesc->name[len] == '\0'
1074 || idesc->name[len] == '.'));
1075
c10d9d8f 1076 /* All break, nop, and hint variations must match exactly. */
800eeca4
JW
1077 if (resolved &&
1078 (strcmp (ic->name, "break") == 0
c10d9d8f
JW
1079 || strcmp (ic->name, "nop") == 0
1080 || strcmp (ic->name, "hint") == 0))
800eeca4
JW
1081 resolved = strcmp (ic->name, idesc->name) == 0;
1082
bde78a07
NC
1083 /* Assume restrictions in the FORMAT/FIELD negate resolution,
1084 unless specifically allowed by clauses in this block. */
800eeca4
JW
1085 if (resolved && field)
1086 {
bde78a07 1087 /* Check Field(sf)==sN against opcode sN. */
800eeca4
JW
1088 if (strstr(field, "(sf)==") != NULL)
1089 {
1090 char *sf;
bde78a07 1091
800eeca4 1092 if ((sf = strstr (idesc->name, ".s")) != 0)
bde78a07 1093 resolved = strcmp (sf + 1, strstr (field, "==") + 2) == 0;
800eeca4 1094 }
bde78a07 1095 /* Check Field(lftype)==XXX. */
800eeca4
JW
1096 else if (strstr (field, "(lftype)") != NULL)
1097 {
1098 if (strstr (idesc->name, "fault") != NULL)
1099 resolved = strstr (field, "fault") != NULL;
1100 else
1101 resolved = strstr (field, "fault") == NULL;
1102 }
bde78a07 1103 /* Handle Field(ctype)==XXX. */
800eeca4
JW
1104 else if (strstr (field, "(ctype)") != NULL)
1105 {
1106 if (strstr (idesc->name, "or.andcm"))
1107 resolved = strstr (field, "or.andcm") != NULL;
1108 else if (strstr (idesc->name, "and.orcm"))
1109 resolved = strstr (field, "and.orcm") != NULL;
1110 else if (strstr (idesc->name, "orcm"))
1111 resolved = strstr (field, "or orcm") != NULL;
1112 else if (strstr (idesc->name, "or"))
1113 resolved = strstr (field, "or orcm") != NULL;
1114 else if (strstr (idesc->name, "andcm"))
1115 resolved = strstr (field, "and andcm") != NULL;
1116 else if (strstr (idesc->name, "and"))
1117 resolved = strstr (field, "and andcm") != NULL;
1118 else if (strstr (idesc->name, "unc"))
1119 resolved = strstr (field, "unc") != NULL;
1120 else
1121 resolved = strcmp (field, "Field(ctype)==") == 0;
1122 }
1123 }
bde78a07 1124
800eeca4
JW
1125 if (resolved && format)
1126 {
0112cd26 1127 if (CONST_STRNEQ (idesc->name, "dep")
800eeca4
JW
1128 && strstr (format, "I13") != NULL)
1129 resolved = idesc->operands[1] == IA64_OPND_IMM8;
0112cd26 1130 else if (CONST_STRNEQ (idesc->name, "chk")
800eeca4
JW
1131 && strstr (format, "M21") != NULL)
1132 resolved = idesc->operands[0] == IA64_OPND_F2;
0112cd26 1133 else if (CONST_STRNEQ (idesc->name, "lfetch"))
800eeca4
JW
1134 resolved = (strstr (format, "M14 M15") != NULL
1135 && (idesc->operands[1] == IA64_OPND_R2
1136 || idesc->operands[1] == IA64_OPND_IMM9b));
0112cd26 1137 else if (CONST_STRNEQ (idesc->name, "br.call")
800eeca4
JW
1138 && strstr (format, "B5") != NULL)
1139 resolved = idesc->operands[1] == IA64_OPND_B2;
0112cd26 1140 else if (CONST_STRNEQ (idesc->name, "br.call")
800eeca4
JW
1141 && strstr (format, "B3") != NULL)
1142 resolved = idesc->operands[1] == IA64_OPND_TGT25c;
0112cd26 1143 else if (CONST_STRNEQ (idesc->name, "brp")
800eeca4
JW
1144 && strstr (format, "B7") != NULL)
1145 resolved = idesc->operands[0] == IA64_OPND_B2;
1146 else if (strcmp (ic->name, "invala") == 0)
1147 resolved = strcmp (idesc->name, ic->name) == 0;
0112cd26 1148 else if (CONST_STRNEQ (idesc->name, "st")
bad9ceea
JJ
1149 && (strstr (format, "M5") != NULL
1150 || strstr (format, "M10") != NULL))
1151 resolved = idesc->flags & IA64_OPCODE_POSTINC;
0112cd26 1152 else if (CONST_STRNEQ (idesc->name, "ld")
bad9ceea
JJ
1153 && (strstr (format, "M2 M3") != NULL
1154 || strstr (format, "M12") != NULL
1155 || strstr (format, "M7 M8") != NULL))
f4bc6bb0 1156 resolved = idesc->flags & IA64_OPCODE_POSTINC;
800eeca4
JW
1157 else
1158 resolved = 0;
1159 }
1160
bde78a07
NC
1161 /* Misc brl variations ('.cond' is optional);
1162 plain brl matches brl.cond. */
800eeca4
JW
1163 if (!resolved
1164 && (strcmp (idesc->name, "brl") == 0
0112cd26 1165 || CONST_STRNEQ (idesc->name, "brl."))
800eeca4
JW
1166 && strcmp (ic->name, "brl.cond") == 0)
1167 {
1168 resolved = 1;
1169 }
1170
bde78a07 1171 /* Misc br variations ('.cond' is optional). */
800eeca4
JW
1172 if (!resolved
1173 && (strcmp (idesc->name, "br") == 0
0112cd26 1174 || CONST_STRNEQ (idesc->name, "br."))
800eeca4
JW
1175 && strcmp (ic->name, "br.cond") == 0)
1176 {
1177 if (format)
1178 resolved = (strstr (format, "B4") != NULL
1179 && idesc->operands[0] == IA64_OPND_B2)
1180 || (strstr (format, "B1") != NULL
1181 && idesc->operands[0] == IA64_OPND_TGT25c);
1182 else
1183 resolved = 1;
1184 }
1185
bde78a07 1186 /* probe variations. */
0112cd26 1187 if (!resolved && CONST_STRNEQ (idesc->name, "probe"))
800eeca4
JW
1188 {
1189 resolved = strcmp (ic->name, "probe") == 0
1190 && !((strstr (idesc->name, "fault") != NULL)
1191 ^ (format && strstr (format, "M40") != NULL));
1192 }
bde78a07
NC
1193
1194 /* mov variations. */
800eeca4
JW
1195 if (!resolved && is_mov)
1196 {
1197 if (plain_mov)
1198 {
bde78a07 1199 /* mov alias for fmerge. */
800eeca4
JW
1200 if (strcmp (ic->name, "fmerge") == 0)
1201 {
1202 resolved = idesc->operands[0] == IA64_OPND_F1
1203 && idesc->operands[1] == IA64_OPND_F3;
1204 }
bde78a07 1205 /* mov alias for adds (r3 or imm14). */
800eeca4
JW
1206 else if (strcmp (ic->name, "adds") == 0)
1207 {
1208 resolved = (idesc->operands[0] == IA64_OPND_R1
1209 && (idesc->operands[1] == IA64_OPND_R3
1210 || (idesc->operands[1] == IA64_OPND_IMM14)));
1211 }
bde78a07 1212 /* mov alias for addl. */
800eeca4
JW
1213 else if (strcmp (ic->name, "addl") == 0)
1214 {
1215 resolved = idesc->operands[0] == IA64_OPND_R1
1216 && idesc->operands[1] == IA64_OPND_IMM22;
1217 }
1218 }
bde78a07
NC
1219
1220 /* Some variants of mov and mov.[im]. */
0112cd26 1221 if (!resolved && CONST_STRNEQ (ic->name, "mov_"))
bde78a07 1222 resolved = in_iclass_mov_x (idesc, ic, format, field);
800eeca4
JW
1223 }
1224
bde78a07
NC
1225 /* Keep track of this so we can flag any insn classes which aren't
1226 mapped onto at least one real insn. */
800eeca4 1227 if (resolved)
bde78a07 1228 ic->terminal_resolved = 1;
800eeca4 1229 }
bde78a07 1230 else for (i = 0; i < ic->nsubs; i++)
800eeca4 1231 {
bde78a07 1232 if (in_iclass (idesc, ics[ic->subs[i]], format, field, notep))
800eeca4
JW
1233 {
1234 int j;
bde78a07
NC
1235
1236 for (j = 0; j < ic->nxsubs; j++)
1237 if (in_iclass (idesc, ics[ic->xsubs[j]], NULL, NULL, NULL))
1238 return 0;
1239
800eeca4 1240 if (debug > 1)
bde78a07
NC
1241 printf ("%s is in IC %s\n", idesc->name, ic->name);
1242
800eeca4
JW
1243 resolved = 1;
1244 break;
1245 }
1246 }
1247
bde78a07 1248 /* If it's in this IC, add the IC note (if any) to the insn. */
800eeca4
JW
1249 if (resolved)
1250 {
1251 if (ic->note && notep)
1252 {
1253 if (*notep && *notep != ic->note)
bde78a07
NC
1254 warn (_("overwriting note %d with note %d (IC:%s)\n"),
1255 *notep, ic->note, ic->name);
1256
800eeca4
JW
1257 *notep = ic->note;
1258 }
1259 }
1260
1261 return resolved;
1262}
1263
1264\f
1265static int
1266lookup_regindex (const char *name, int specifier)
1267{
1268 switch (specifier)
1269 {
1270 case IA64_RS_ARX:
1271 if (strstr (name, "[RSC]"))
1272 return 16;
1273 if (strstr (name, "[BSP]"))
1274 return 17;
1275 else if (strstr (name, "[BSPSTORE]"))
1276 return 18;
1277 else if (strstr (name, "[RNAT]"))
1278 return 19;
c10d9d8f
JW
1279 else if (strstr (name, "[FCR]"))
1280 return 21;
1281 else if (strstr (name, "[EFLAG]"))
1282 return 24;
1283 else if (strstr (name, "[CSD]"))
1284 return 25;
1285 else if (strstr (name, "[SSD]"))
1286 return 26;
1287 else if (strstr (name, "[CFLG]"))
1288 return 27;
1289 else if (strstr (name, "[FSR]"))
1290 return 28;
1291 else if (strstr (name, "[FIR]"))
1292 return 29;
1293 else if (strstr (name, "[FDR]"))
1294 return 30;
800eeca4
JW
1295 else if (strstr (name, "[CCV]"))
1296 return 32;
1297 else if (strstr (name, "[ITC]"))
1298 return 44;
1299 else if (strstr (name, "[PFS]"))
1300 return 64;
1301 else if (strstr (name, "[LC]"))
1302 return 65;
1303 else if (strstr (name, "[EC]"))
1304 return 66;
1305 abort ();
1306 case IA64_RS_CRX:
1307 if (strstr (name, "[DCR]"))
1308 return 0;
1309 else if (strstr (name, "[ITM]"))
1310 return 1;
1311 else if (strstr (name, "[IVA]"))
1312 return 2;
1313 else if (strstr (name, "[PTA]"))
1314 return 8;
1315 else if (strstr (name, "[GPTA]"))
1316 return 9;
1317 else if (strstr (name, "[IPSR]"))
1318 return 16;
1319 else if (strstr (name, "[ISR]"))
1320 return 17;
1321 else if (strstr (name, "[IIP]"))
1322 return 19;
1323 else if (strstr (name, "[IFA]"))
1324 return 20;
1325 else if (strstr (name, "[ITIR]"))
1326 return 21;
1327 else if (strstr (name, "[IIPA]"))
1328 return 22;
1329 else if (strstr (name, "[IFS]"))
1330 return 23;
1331 else if (strstr (name, "[IIM]"))
1332 return 24;
1333 else if (strstr (name, "[IHA]"))
1334 return 25;
1335 else if (strstr (name, "[LID]"))
1336 return 64;
1337 else if (strstr (name, "[IVR]"))
1338 return 65;
1339 else if (strstr (name, "[TPR]"))
1340 return 66;
1341 else if (strstr (name, "[EOI]"))
1342 return 67;
1343 else if (strstr (name, "[ITV]"))
1344 return 72;
1345 else if (strstr (name, "[PMV]"))
1346 return 73;
1347 else if (strstr (name, "[CMCV]"))
1348 return 74;
1349 abort ();
1350 case IA64_RS_PSR:
1351 if (strstr (name, ".be"))
1352 return 1;
1353 else if (strstr (name, ".up"))
1354 return 2;
1355 else if (strstr (name, ".ac"))
1356 return 3;
1357 else if (strstr (name, ".mfl"))
1358 return 4;
1359 else if (strstr (name, ".mfh"))
1360 return 5;
1361 else if (strstr (name, ".ic"))
1362 return 13;
1363 else if (strstr (name, ".i"))
1364 return 14;
1365 else if (strstr (name, ".pk"))
1366 return 15;
1367 else if (strstr (name, ".dt"))
1368 return 17;
1369 else if (strstr (name, ".dfl"))
1370 return 18;
1371 else if (strstr (name, ".dfh"))
1372 return 19;
1373 else if (strstr (name, ".sp"))
1374 return 20;
1375 else if (strstr (name, ".pp"))
1376 return 21;
1377 else if (strstr (name, ".di"))
1378 return 22;
1379 else if (strstr (name, ".si"))
1380 return 23;
1381 else if (strstr (name, ".db"))
1382 return 24;
1383 else if (strstr (name, ".lp"))
1384 return 25;
1385 else if (strstr (name, ".tb"))
1386 return 26;
1387 else if (strstr (name, ".rt"))
1388 return 27;
1389 else if (strstr (name, ".cpl"))
1390 return 32;
1391 else if (strstr (name, ".rs"))
1392 return 34;
1393 else if (strstr (name, ".mc"))
1394 return 35;
1395 else if (strstr (name, ".it"))
1396 return 36;
1397 else if (strstr (name, ".id"))
1398 return 37;
1399 else if (strstr (name, ".da"))
1400 return 38;
1401 else if (strstr (name, ".dd"))
1402 return 39;
1403 else if (strstr (name, ".ss"))
1404 return 40;
1405 else if (strstr (name, ".ri"))
1406 return 41;
1407 else if (strstr (name, ".ed"))
1408 return 43;
1409 else if (strstr (name, ".bn"))
1410 return 44;
1411 else if (strstr (name, ".ia"))
1412 return 45;
7f3dfb9c
L
1413 else if (strstr (name, ".vm"))
1414 return 46;
800eeca4
JW
1415 else
1416 abort ();
1417 default:
1418 break;
1419 }
1420 return REG_NONE;
1421}
1422
1423static int
1424lookup_specifier (const char *name)
1425{
1426 if (strchr (name, '%'))
1427 {
1428 if (strstr (name, "AR[K%]") != NULL)
1429 return IA64_RS_AR_K;
1430 if (strstr (name, "AR[UNAT]") != NULL)
1431 return IA64_RS_AR_UNAT;
1432 if (strstr (name, "AR%, % in 8") != NULL)
1433 return IA64_RS_AR;
1434 if (strstr (name, "AR%, % in 48") != NULL)
1435 return IA64_RS_ARb;
1436 if (strstr (name, "BR%") != NULL)
1437 return IA64_RS_BR;
1438 if (strstr (name, "CR[IRR%]") != NULL)
1439 return IA64_RS_CR_IRR;
1440 if (strstr (name, "CR[LRR%]") != NULL)
1441 return IA64_RS_CR_LRR;
1442 if (strstr (name, "CR%") != NULL)
1443 return IA64_RS_CR;
1444 if (strstr (name, "FR%, % in 0") != NULL)
1445 return IA64_RS_FR;
1446 if (strstr (name, "FR%, % in 2") != NULL)
1447 return IA64_RS_FRb;
1448 if (strstr (name, "GR%") != NULL)
1449 return IA64_RS_GR;
139368c9 1450 if (strstr (name, "PR%, % in 1 ") != NULL)
800eeca4 1451 return IA64_RS_PR;
139368c9
JW
1452 if (strstr (name, "PR%, % in 16 ") != NULL)
1453 return IA64_RS_PRr;
800eeca4 1454
bde78a07
NC
1455 warn (_("don't know how to specify %% dependency %s\n"),
1456 name);
800eeca4
JW
1457 }
1458 else if (strchr (name, '#'))
1459 {
1460 if (strstr (name, "CPUID#") != NULL)
1461 return IA64_RS_CPUID;
1462 if (strstr (name, "DBR#") != NULL)
1463 return IA64_RS_DBR;
1464 if (strstr (name, "IBR#") != NULL)
1465 return IA64_RS_IBR;
1466 if (strstr (name, "MSR#") != NULL)
1467 return IA64_RS_MSR;
1468 if (strstr (name, "PKR#") != NULL)
1469 return IA64_RS_PKR;
1470 if (strstr (name, "PMC#") != NULL)
1471 return IA64_RS_PMC;
1472 if (strstr (name, "PMD#") != NULL)
1473 return IA64_RS_PMD;
1474 if (strstr (name, "RR#") != NULL)
1475 return IA64_RS_RR;
1476
bde78a07
NC
1477 warn (_("Don't know how to specify # dependency %s\n"),
1478 name);
800eeca4 1479 }
0112cd26 1480 else if (CONST_STRNEQ (name, "AR[FPSR]"))
800eeca4 1481 return IA64_RS_AR_FPSR;
0112cd26 1482 else if (CONST_STRNEQ (name, "AR["))
800eeca4 1483 return IA64_RS_ARX;
0112cd26 1484 else if (CONST_STRNEQ (name, "CR["))
800eeca4 1485 return IA64_RS_CRX;
0112cd26 1486 else if (CONST_STRNEQ (name, "PSR."))
800eeca4
JW
1487 return IA64_RS_PSR;
1488 else if (strcmp (name, "InService*") == 0)
1489 return IA64_RS_INSERVICE;
1490 else if (strcmp (name, "GR0") == 0)
1491 return IA64_RS_GR0;
1492 else if (strcmp (name, "CFM") == 0)
1493 return IA64_RS_CFM;
1494 else if (strcmp (name, "PR63") == 0)
1495 return IA64_RS_PR63;
1496 else if (strcmp (name, "RSE") == 0)
1497 return IA64_RS_RSE;
1498
1499 return IA64_RS_ANY;
1500}
1501
bde78a07 1502static void
800eeca4
JW
1503print_dependency_table ()
1504{
1505 int i, j;
1506
1507 if (debug)
1508 {
1509 for (i=0;i < iclen;i++)
1510 {
1511 if (ics[i]->is_class)
1512 {
1513 if (!ics[i]->nsubs)
1514 {
800eeca4 1515 if (ics[i]->comment)
bde78a07
NC
1516 warn (_("IC:%s [%s] has no terminals or sub-classes\n"),
1517 ics[i]->name, ics[i]->comment);
1518 else
1519 warn (_("IC:%s has no terminals or sub-classes\n"),
1520 ics[i]->name);
800eeca4
JW
1521 }
1522 }
1523 else
1524 {
1525 if (!ics[i]->terminal_resolved && !ics[i]->orphan)
1526 {
800eeca4 1527 if (ics[i]->comment)
bde78a07
NC
1528 warn (_("no insns mapped directly to terminal IC %s [%s]"),
1529 ics[i]->name, ics[i]->comment);
1530 else
1531 warn (_("no insns mapped directly to terminal IC %s\n"),
1532 ics[i]->name);
800eeca4
JW
1533 }
1534 }
1535 }
1536
bde78a07 1537 for (i = 0; i < iclen; i++)
800eeca4
JW
1538 {
1539 if (ics[i]->orphan)
1540 {
1541 mark_used (ics[i], 1);
bde78a07
NC
1542 warn (_("class %s is defined but not used\n"),
1543 ics[i]->name);
800eeca4
JW
1544 }
1545 }
1546
bde78a07
NC
1547 if (debug > 1)
1548 for (i = 0; i < rdepslen; i++)
1549 {
1550 static const char *mode_str[] = { "RAW", "WAW", "WAR" };
1551
1552 if (rdeps[i]->total_chks == 0)
168411b1
NC
1553 {
1554 if (rdeps[i]->total_regs)
7a53bcd4 1555 warn (_("Warning: rsrc %s (%s) has no chks\n"),
168411b1
NC
1556 rdeps[i]->name, mode_str[rdeps[i]->mode]);
1557 else
1558 warn (_("Warning: rsrc %s (%s) has no chks or regs\n"),
1559 rdeps[i]->name, mode_str[rdeps[i]->mode]);
1560 }
bde78a07
NC
1561 else if (rdeps[i]->total_regs == 0)
1562 warn (_("rsrc %s (%s) has no regs\n"),
1563 rdeps[i]->name, mode_str[rdeps[i]->mode]);
1564 }
800eeca4
JW
1565 }
1566
bde78a07 1567 /* The dependencies themselves. */
800eeca4 1568 printf ("static const struct ia64_dependency\ndependencies[] = {\n");
bde78a07 1569 for (i = 0; i < rdepslen; i++)
800eeca4
JW
1570 {
1571 /* '%', '#', AR[], CR[], or PSR. indicates we need to specify the actual
bde78a07 1572 resource used. */
800eeca4
JW
1573 int specifier = lookup_specifier (rdeps[i]->name);
1574 int regindex = lookup_regindex (rdeps[i]->name, specifier);
1575
1576 printf (" { \"%s\", %d, %d, %d, %d, ",
1577 rdeps[i]->name, specifier,
1578 (int)rdeps[i]->mode, (int)rdeps[i]->semantics, regindex);
1579 if (rdeps[i]->semantics == IA64_DVS_OTHER)
7f3dfb9c
L
1580 {
1581 const char *quote, *rest;
1582
1583 putchar ('\"');
1584 rest = rdeps[i]->extra;
1585 quote = strchr (rest, '\"');
1586 while (quote != NULL)
1587 {
1588 printf ("%.*s\\\"", (int) (quote - rest), rest);
1589 rest = quote + 1;
1590 quote = strchr (rest, '\"');
1591 }
1592 printf ("%s\", ", rest);
1593 }
514829c3
JW
1594 else
1595 printf ("NULL, ");
800eeca4
JW
1596 printf("},\n");
1597 }
1598 printf ("};\n\n");
1599
bde78a07 1600 /* And dependency lists. */
800eeca4
JW
1601 for (i=0;i < dlistlen;i++)
1602 {
1603 int len = 2;
53c9ebc5 1604 printf ("static const unsigned short dep%d[] = {\n ", i);
800eeca4
JW
1605 for (j=0;j < dlists[i]->len; j++)
1606 {
1607 len += printf ("%d, ", dlists[i]->deps[j]);
1608 if (len > 75)
1609 {
1610 printf("\n ");
1611 len = 2;
1612 }
1613 }
1614 printf ("\n};\n\n");
1615 }
1616
bde78a07 1617 /* And opcode dependency list. */
800eeca4
JW
1618 printf ("#define NELS(X) (sizeof(X)/sizeof(X[0]))\n");
1619 printf ("static const struct ia64_opcode_dependency\n");
1620 printf ("op_dependencies[] = {\n");
bde78a07 1621 for (i = 0; i < opdeplen; i++)
800eeca4
JW
1622 {
1623 printf (" { ");
1624 if (opdeps[i]->chk == -1)
1625 printf ("0, NULL, ");
1626 else
1627 printf ("NELS(dep%d), dep%d, ", opdeps[i]->chk, opdeps[i]->chk);
1628 if (opdeps[i]->reg == -1)
1629 printf ("0, NULL, ");
1630 else
1631 printf ("NELS(dep%d), dep%d, ", opdeps[i]->reg, opdeps[i]->reg);
1632 printf ("},\n");
1633 }
1634 printf ("};\n\n");
1635}
1636
1637\f
bde78a07 1638/* Add STR to the string table. */
800eeca4 1639static struct string_entry *
bde78a07 1640insert_string (char *str)
800eeca4
JW
1641{
1642 int start = 0, end = strtablen;
1643 int i, x;
1644
1645 if (strtablen == strtabtotlen)
1646 {
1647 strtabtotlen += 20;
1648 string_table = (struct string_entry **)
1649 xrealloc (string_table,
1650 sizeof (struct string_entry **) * strtabtotlen);
1651 }
1652
1653 if (strtablen == 0)
1654 {
1655 strtablen = 1;
1656 string_table[0] = tmalloc (struct string_entry);
1657 string_table[0]->s = xstrdup (str);
1658 string_table[0]->num = 0;
1659 return string_table[0];
1660 }
1661
1662 if (strcmp (str, string_table[strtablen - 1]->s) > 0)
bde78a07 1663 i = end;
800eeca4 1664 else if (strcmp (str, string_table[0]->s) < 0)
bde78a07 1665 i = 0;
800eeca4
JW
1666 else
1667 {
1668 while (1)
1669 {
1670 int c;
1671
1672 i = (start + end) / 2;
1673 c = strcmp (str, string_table[i]->s);
bde78a07 1674
800eeca4 1675 if (c < 0)
bde78a07 1676 end = i - 1;
800eeca4 1677 else if (c == 0)
bde78a07 1678 return string_table[i];
800eeca4 1679 else
bde78a07
NC
1680 start = i + 1;
1681
800eeca4 1682 if (start > end)
bde78a07 1683 break;
800eeca4
JW
1684 }
1685 }
bde78a07 1686
800eeca4 1687 for (; i > 0 && i < strtablen; i--)
bde78a07
NC
1688 if (strcmp (str, string_table[i - 1]->s) > 0)
1689 break;
1690
800eeca4 1691 for (; i < strtablen; i++)
bde78a07
NC
1692 if (strcmp (str, string_table[i]->s) < 0)
1693 break;
1694
800eeca4
JW
1695 for (x = strtablen - 1; x >= i; x--)
1696 {
1697 string_table[x + 1] = string_table[x];
1698 string_table[x + 1]->num = x + 1;
1699 }
bde78a07 1700
800eeca4
JW
1701 string_table[i] = tmalloc (struct string_entry);
1702 string_table[i]->s = xstrdup (str);
1703 string_table[i]->num = i;
1704 strtablen++;
bde78a07 1705
800eeca4
JW
1706 return string_table[i];
1707}
1708\f
bde78a07
NC
1709static struct bittree *
1710make_bittree_entry (void)
800eeca4
JW
1711{
1712 struct bittree *res = tmalloc (struct bittree);
1713
1714 res->disent = NULL;
1715 res->bits[0] = NULL;
1716 res->bits[1] = NULL;
1717 res->bits[2] = NULL;
1718 res->skip_flag = 0;
1719 res->bits_to_skip = 0;
1720 return res;
1721}
bde78a07 1722
800eeca4 1723\f
bde78a07 1724static struct disent *
aa170a07 1725add_dis_table_ent (which, insn, order, completer_index)
800eeca4
JW
1726 struct disent *which;
1727 int insn;
aa170a07 1728 int order;
800eeca4
JW
1729 int completer_index;
1730{
1731 int ci = 0;
1732 struct disent *ent;
1733
1734 if (which != NULL)
1735 {
1736 ent = which;
1737
1738 ent->nextcnt++;
1739 while (ent->nexte != NULL)
bde78a07
NC
1740 ent = ent->nexte;
1741
800eeca4
JW
1742 ent = (ent->nexte = tmalloc (struct disent));
1743 }
1744 else
1745 {
1746 ent = tmalloc (struct disent);
1747 ent->next_ent = disinsntable;
1748 disinsntable = ent;
1749 which = ent;
1750 }
1751 ent->nextcnt = 0;
1752 ent->nexte = NULL;
1753 ent->insn = insn;
aa170a07
TW
1754 ent->priority = order;
1755
800eeca4
JW
1756 while (completer_index != 1)
1757 {
1758 ci = (ci << 1) | (completer_index & 1);
1759 completer_index >>= 1;
1760 }
1761 ent->completer_index = ci;
1762 return which;
1763}
1764\f
bde78a07 1765static void
800eeca4
JW
1766finish_distable ()
1767{
1768 struct disent *ent = disinsntable;
1769 struct disent *prev = ent;
1770
1771 ent->ournum = 32768;
1772 while ((ent = ent->next_ent) != NULL)
1773 {
1774 ent->ournum = prev->ournum + prev->nextcnt + 1;
1775 prev = ent;
1776 }
1777}
1778\f
bde78a07 1779static void
aa170a07
TW
1780insert_bit_table_ent (curr_ent, bit, opcode, mask,
1781 opcodenum, order, completer_index)
800eeca4
JW
1782 struct bittree *curr_ent;
1783 int bit;
1784 ia64_insn opcode;
1785 ia64_insn mask;
1786 int opcodenum;
aa170a07 1787 int order;
800eeca4
JW
1788 int completer_index;
1789{
1790 ia64_insn m;
1791 int b;
1792 struct bittree *next;
1793
1794 if (bit == -1)
1795 {
aa170a07
TW
1796 struct disent *nent = add_dis_table_ent (curr_ent->disent,
1797 opcodenum, order,
800eeca4
JW
1798 completer_index);
1799 curr_ent->disent = nent;
1800 return;
1801 }
1802
1803 m = ((ia64_insn) 1) << bit;
1804
1805 if (mask & m)
bde78a07 1806 b = (opcode & m) ? 1 : 0;
800eeca4 1807 else
bde78a07
NC
1808 b = 2;
1809
800eeca4
JW
1810 next = curr_ent->bits[b];
1811 if (next == NULL)
1812 {
1813 next = make_bittree_entry ();
1814 curr_ent->bits[b] = next;
1815 }
aa170a07 1816 insert_bit_table_ent (next, bit - 1, opcode, mask, opcodenum, order,
800eeca4
JW
1817 completer_index);
1818}
1819\f
bde78a07 1820static void
800eeca4 1821add_dis_entry (first, opcode, mask, opcodenum, ent, completer_index)
aa170a07 1822 struct bittree *first;
800eeca4
JW
1823 ia64_insn opcode;
1824 ia64_insn mask;
1825 int opcodenum;
1826 struct completer_entry *ent;
1827 int completer_index;
1828{
1829 if (completer_index & (1 << 20))
bde78a07 1830 abort ();
c1485d85 1831
800eeca4
JW
1832 while (ent != NULL)
1833 {
1834 ia64_insn newopcode = (opcode & (~ ent->mask)) | ent->bits;
1835 add_dis_entry (first, newopcode, mask, opcodenum, ent->addl_entries,
1836 (completer_index << 1) | 1);
bde78a07 1837
800eeca4
JW
1838 if (ent->is_terminal)
1839 {
aa170a07
TW
1840 insert_bit_table_ent (bittree, 40, newopcode, mask,
1841 opcodenum, opcode_count - ent->order - 1,
800eeca4
JW
1842 (completer_index << 1) | 1);
1843 }
1844 completer_index <<= 1;
1845 ent = ent->alternative;
1846 }
1847}
1848\f
bde78a07
NC
1849/* This optimization pass combines multiple "don't care" nodes. */
1850static void
800eeca4
JW
1851compact_distree (ent)
1852 struct bittree *ent;
1853{
1854#define IS_SKIP(ent) \
1855 ((ent->bits[2] !=NULL) \
1856 && (ent->bits[0] == NULL && ent->bits[1] == NULL && ent->skip_flag == 0))
1857
1858 int bitcnt = 0;
1859 struct bittree *nent = ent;
1860 int x;
1861
1862 while (IS_SKIP (nent))
1863 {
1864 bitcnt++;
1865 nent = nent->bits[2];
1866 }
1867
1868 if (bitcnt)
1869 {
1870 struct bittree *next = ent->bits[2];
1871
1872 ent->bits[0] = nent->bits[0];
1873 ent->bits[1] = nent->bits[1];
1874 ent->bits[2] = nent->bits[2];
1875 ent->disent = nent->disent;
1876 ent->skip_flag = 1;
1877 ent->bits_to_skip = bitcnt;
1878 while (next != nent)
1879 {
1880 struct bittree *b = next;
1881 next = next->bits[2];
1882 free (b);
1883 }
1884 free (nent);
1885 }
1886
1887 for (x = 0; x < 3; x++)
1888 {
1889 struct bittree *i = ent->bits[x];
bde78a07 1890
800eeca4 1891 if (i != NULL)
bde78a07 1892 compact_distree (i);
800eeca4
JW
1893 }
1894}
1895\f
1896static unsigned char *insn_list;
1897static int insn_list_len = 0;
1898static int tot_insn_list_len = 0;
1899
1900/* Generate the disassembler state machine corresponding to the tree
1901 in ENT. */
bde78a07 1902static void
800eeca4
JW
1903gen_dis_table (ent)
1904 struct bittree *ent;
1905{
1906 int x;
1907 int our_offset = insn_list_len;
1908 int bitsused = 5;
1909 int totbits = bitsused;
1910 int needed_bytes;
1911 int zero_count = 0;
bde78a07 1912 int zero_dest = 0; /* Initialize this with 0 to keep gcc quiet... */
800eeca4
JW
1913
1914 /* If this is a terminal entry, there's no point in skipping any
bde78a07 1915 bits. */
800eeca4
JW
1916 if (ent->skip_flag && ent->bits[0] == NULL && ent->bits[1] == NULL &&
1917 ent->bits[2] == NULL)
1918 {
1919 if (ent->disent == NULL)
bde78a07 1920 abort ();
800eeca4 1921 else
bde78a07 1922 ent->skip_flag = 0;
800eeca4
JW
1923 }
1924
1925 /* Calculate the amount of space needed for this entry, or at least
bde78a07 1926 a conservatively large approximation. */
800eeca4 1927 if (ent->skip_flag)
bde78a07
NC
1928 totbits += 5;
1929
800eeca4 1930 for (x = 1; x < 3; x++)
bde78a07
NC
1931 if (ent->bits[x] != NULL)
1932 totbits += 16;
800eeca4
JW
1933
1934 if (ent->disent != NULL)
1935 {
1936 if (ent->bits[2] != NULL)
bde78a07
NC
1937 abort ();
1938
800eeca4
JW
1939 totbits += 16;
1940 }
1941
bde78a07 1942 /* Now allocate the space. */
800eeca4
JW
1943 needed_bytes = (totbits + 7) / 8;
1944 if ((needed_bytes + insn_list_len) > tot_insn_list_len)
1945 {
1946 tot_insn_list_len += 256;
53c9ebc5 1947 insn_list = (unsigned char *) xrealloc (insn_list, tot_insn_list_len);
800eeca4
JW
1948 }
1949 our_offset = insn_list_len;
1950 insn_list_len += needed_bytes;
1951 memset (insn_list + our_offset, 0, needed_bytes);
1952
1953 /* Encode the skip entry by setting bit 6 set in the state op field,
bde78a07 1954 and store the # of bits to skip immediately after. */
800eeca4
JW
1955 if (ent->skip_flag)
1956 {
1957 bitsused += 5;
1958 insn_list[our_offset + 0] |= 0x40 | ((ent->bits_to_skip >> 2) & 0xf);
1959 insn_list[our_offset + 1] |= ((ent->bits_to_skip & 3) << 6);
1960 }
1961
1962#define IS_ONLY_IFZERO(ENT) \
1963 ((ENT)->bits[0] != NULL && (ENT)->bits[1] == NULL && (ENT)->bits[2] == NULL \
1964 && (ENT)->disent == NULL && (ENT)->skip_flag == 0)
1965
1966 /* Store an "if (bit is zero)" instruction by setting bit 7 in the
bde78a07 1967 state op field. */
800eeca4
JW
1968 if (ent->bits[0] != NULL)
1969 {
1970 struct bittree *nent = ent->bits[0];
1971 zero_count = 0;
1972
1973 insn_list[our_offset] |= 0x80;
1974
1975 /* We can encode sequences of multiple "if (bit is zero)" tests
1976 by storing the # of zero bits to check in the lower 3 bits of
1977 the instruction. However, this only applies if the state
1978 solely tests for a zero bit. */
1979
1980 if (IS_ONLY_IFZERO (ent))
1981 {
1982 while (IS_ONLY_IFZERO (nent) && zero_count < 7)
1983 {
1984 nent = nent->bits[0];
1985 zero_count++;
1986 }
1987
1988 insn_list[our_offset + 0] |= zero_count;
1989 }
1990 zero_dest = insn_list_len;
1991 gen_dis_table (nent);
1992 }
1993
1994 /* Now store the remaining tests. We also handle a sole "termination
1995 entry" by storing it as an "any bit" test. */
1996
1997 for (x = 1; x < 3; x++)
1998 {
1999 if (ent->bits[x] != NULL || (x == 2 && ent->disent != NULL))
2000 {
2001 struct bittree *i = ent->bits[x];
2002 int idest;
2003 int currbits = 15;
2004
2005 if (i != NULL)
2006 {
2007 /* If the instruction being branched to only consists of
2008 a termination entry, use the termination entry as the
2009 place to branch to instead. */
2010 if (i->bits[0] == NULL && i->bits[1] == NULL
2011 && i->bits[2] == NULL && i->disent != NULL)
2012 {
2013 idest = i->disent->ournum;
2014 i = NULL;
2015 }
2016 else
bde78a07 2017 idest = insn_list_len - our_offset;
800eeca4
JW
2018 }
2019 else
bde78a07 2020 idest = ent->disent->ournum;
800eeca4
JW
2021
2022 /* If the destination offset for the if (bit is 1) test is less
2023 than 256 bytes away, we can store it as 8-bits instead of 16;
2024 the instruction has bit 5 set for the 16-bit address, and bit
2025 4 for the 8-bit address. Since we've already allocated 16
2026 bits for the address we need to deallocate the space.
2027
2028 Note that branchings within the table are relative, and
2029 there are no branches that branch past our instruction yet
bde78a07 2030 so we do not need to adjust any other offsets. */
800eeca4
JW
2031 if (x == 1)
2032 {
2033 if (idest <= 256)
2034 {
2035 int start = our_offset + bitsused / 8 + 1;
2036
2037 memmove (insn_list + start,
2038 insn_list + start + 1,
2039 insn_list_len - (start + 1));
2040 currbits = 7;
2041 totbits -= 8;
2042 needed_bytes--;
2043 insn_list_len--;
2044 insn_list[our_offset] |= 0x10;
2045 idest--;
2046 }
2047 else
bde78a07 2048 insn_list[our_offset] |= 0x20;
800eeca4
JW
2049 }
2050 else
2051 {
2052 /* An instruction which solely consists of a termination
2053 marker and whose disassembly name index is < 4096
2054 can be stored in 16 bits. The encoding is slightly
2055 odd; the upper 4 bits of the instruction are 0x3, and
2056 bit 3 loses its normal meaning. */
2057
2058 if (ent->bits[0] == NULL && ent->bits[1] == NULL
2059 && ent->bits[2] == NULL && ent->skip_flag == 0
2060 && ent->disent != NULL
2061 && ent->disent->ournum < (32768 + 4096))
2062 {
2063 int start = our_offset + bitsused / 8 + 1;
2064
2065 memmove (insn_list + start,
2066 insn_list + start + 1,
2067 insn_list_len - (start + 1));
2068 currbits = 11;
2069 totbits -= 5;
2070 bitsused--;
2071 needed_bytes--;
2072 insn_list_len--;
2073 insn_list[our_offset] |= 0x30;
2074 idest &= ~32768;
2075 }
2076 else
bde78a07 2077 insn_list[our_offset] |= 0x08;
800eeca4 2078 }
bde78a07 2079
800eeca4
JW
2080 if (debug)
2081 {
2082 int id = idest;
2083
2084 if (i == NULL)
bde78a07 2085 id |= 32768;
800eeca4 2086 else if (! (id & 32768))
bde78a07
NC
2087 id += our_offset;
2088
800eeca4 2089 if (x == 1)
bde78a07 2090 printf ("%d: if (1) goto %d\n", our_offset, id);
800eeca4 2091 else
bde78a07 2092 printf ("%d: try %d\n", our_offset, id);
800eeca4
JW
2093 }
2094
bde78a07 2095 /* Store the address of the entry being branched to. */
800eeca4
JW
2096 while (currbits >= 0)
2097 {
53c9ebc5 2098 unsigned char *byte = insn_list + our_offset + bitsused / 8;
800eeca4
JW
2099
2100 if (idest & (1 << currbits))
bde78a07
NC
2101 *byte |= (1 << (7 - (bitsused % 8)));
2102
800eeca4
JW
2103 bitsused++;
2104 currbits--;
2105 }
2106
bde78a07 2107 /* Now generate the states for the entry being branched to. */
800eeca4 2108 if (i != NULL)
bde78a07 2109 gen_dis_table (i);
800eeca4
JW
2110 }
2111 }
bde78a07 2112
800eeca4
JW
2113 if (debug)
2114 {
2115 if (ent->skip_flag)
bde78a07 2116 printf ("%d: skipping %d\n", our_offset, ent->bits_to_skip);
800eeca4
JW
2117
2118 if (ent->bits[0] != NULL)
bde78a07
NC
2119 printf ("%d: if (0:%d) goto %d\n", our_offset, zero_count + 1,
2120 zero_dest);
800eeca4 2121 }
bde78a07 2122
800eeca4 2123 if (bitsused != totbits)
bde78a07 2124 abort ();
800eeca4
JW
2125}
2126\f
bde78a07
NC
2127static void
2128print_dis_table (void)
800eeca4
JW
2129{
2130 int x;
2131 struct disent *cent = disinsntable;
2132
2133 printf ("static const char dis_table[] = {\n");
2134 for (x = 0; x < insn_list_len; x++)
2135 {
2136 if ((x > 0) && ((x % 12) == 0))
bde78a07
NC
2137 printf ("\n");
2138
800eeca4
JW
2139 printf ("0x%02x, ", insn_list[x]);
2140 }
2141 printf ("\n};\n\n");
2142
2143 printf ("static const struct ia64_dis_names ia64_dis_names[] = {\n");
2144 while (cent != NULL)
2145 {
2146 struct disent *ent = cent;
2147
2148 while (ent != NULL)
2149 {
aa170a07
TW
2150 printf ("{ 0x%x, %d, %d, %d },\n", ent->completer_index,
2151 ent->insn, (ent->nexte != NULL ? 1 : 0),
2152 ent->priority);
800eeca4
JW
2153 ent = ent->nexte;
2154 }
2155 cent = cent->next_ent;
2156 }
2157 printf ("};\n\n");
2158}
2159\f
bde78a07
NC
2160static void
2161generate_disassembler (void)
800eeca4 2162{
aa170a07 2163 int i;
800eeca4
JW
2164
2165 bittree = make_bittree_entry ();
2166
bde78a07 2167 for (i = 0; i < otlen; i++)
800eeca4 2168 {
aa170a07
TW
2169 struct main_entry *ptr = ordered_table[i];
2170
800eeca4 2171 if (ptr->opcode->type != IA64_TYPE_DYN)
bde78a07
NC
2172 add_dis_entry (bittree,
2173 ptr->opcode->opcode, ptr->opcode->mask,
2174 ptr->main_index,
2175 ptr->completers, 1);
800eeca4
JW
2176 }
2177
2178 compact_distree (bittree);
2179 finish_distable ();
2180 gen_dis_table (bittree);
2181
2182 print_dis_table ();
2183}
2184\f
bde78a07
NC
2185static void
2186print_string_table (void)
800eeca4
JW
2187{
2188 int x;
2189 char lbuf[80], buf[80];
2190 int blen = 0;
2191
bde78a07 2192 printf ("static const char * const ia64_strings[] = {\n");
800eeca4 2193 lbuf[0] = '\0';
bde78a07 2194
800eeca4
JW
2195 for (x = 0; x < strtablen; x++)
2196 {
2197 int len;
2198
2199 if (strlen (string_table[x]->s) > 75)
bde78a07
NC
2200 abort ();
2201
800eeca4
JW
2202 sprintf (buf, " \"%s\",", string_table[x]->s);
2203 len = strlen (buf);
bde78a07 2204
800eeca4
JW
2205 if ((blen + len) > 75)
2206 {
2207 printf (" %s\n", lbuf);
2208 lbuf[0] = '\0';
2209 blen = 0;
2210 }
2211 strcat (lbuf, buf);
2212 blen += len;
2213 }
bde78a07 2214
800eeca4 2215 if (blen > 0)
bde78a07
NC
2216 printf (" %s\n", lbuf);
2217
800eeca4
JW
2218 printf ("};\n\n");
2219}
2220\f
2221static struct completer_entry **glist;
2222static int glistlen = 0;
2223static int glisttotlen = 0;
2224
bde78a07 2225/* If the completer trees ENT1 and ENT2 are equal, return 1. */
800eeca4 2226
bde78a07 2227static int
800eeca4
JW
2228completer_entries_eq (ent1, ent2)
2229 struct completer_entry *ent1, *ent2;
2230{
2231 while (ent1 != NULL && ent2 != NULL)
2232 {
2233 if (ent1->name->num != ent2->name->num
2234 || ent1->bits != ent2->bits
2235 || ent1->mask != ent2->mask
2236 || ent1->is_terminal != ent2->is_terminal
aa170a07
TW
2237 || ent1->dependencies != ent2->dependencies
2238 || ent1->order != ent2->order)
bde78a07
NC
2239 return 0;
2240
800eeca4 2241 if (! completer_entries_eq (ent1->addl_entries, ent2->addl_entries))
bde78a07
NC
2242 return 0;
2243
800eeca4
JW
2244 ent1 = ent1->alternative;
2245 ent2 = ent2->alternative;
2246 }
bde78a07 2247
800eeca4
JW
2248 return ent1 == ent2;
2249}
2250\f
2251/* Insert ENT into the global list of completers and return it. If an
2252 equivalent entry (according to completer_entries_eq) already exists,
bde78a07
NC
2253 it is returned instead. */
2254static struct completer_entry *
2255insert_gclist (struct completer_entry *ent)
800eeca4
JW
2256{
2257 if (ent != NULL)
2258 {
2259 int i;
2260 int x;
2261 int start = 0, end;
2262
2263 ent->addl_entries = insert_gclist (ent->addl_entries);
2264 ent->alternative = insert_gclist (ent->alternative);
2265
2266 i = glistlen / 2;
2267 end = glistlen;
2268
2269 if (glisttotlen == glistlen)
2270 {
2271 glisttotlen += 20;
2272 glist = (struct completer_entry **)
2273 xrealloc (glist, sizeof (struct completer_entry *) * glisttotlen);
2274 }
2275
2276 if (glistlen == 0)
2277 {
2278 glist[0] = ent;
2279 glistlen = 1;
2280 return ent;
2281 }
2282
2283 if (ent->name->num < glist[0]->name->num)
bde78a07 2284 i = 0;
800eeca4 2285 else if (ent->name->num > glist[end - 1]->name->num)
bde78a07 2286 i = end;
800eeca4
JW
2287 else
2288 {
2289 int c;
2290
2291 while (1)
2292 {
2293 i = (start + end) / 2;
2294 c = ent->name->num - glist[i]->name->num;
bde78a07 2295
800eeca4 2296 if (c < 0)
bde78a07 2297 end = i - 1;
800eeca4
JW
2298 else if (c == 0)
2299 {
2300 while (i > 0
2301 && ent->name->num == glist[i - 1]->name->num)
bde78a07
NC
2302 i--;
2303
800eeca4
JW
2304 break;
2305 }
2306 else
bde78a07
NC
2307 start = i + 1;
2308
800eeca4 2309 if (start > end)
bde78a07 2310 break;
800eeca4 2311 }
bde78a07 2312
800eeca4
JW
2313 if (c == 0)
2314 {
2315 while (i < glistlen)
2316 {
2317 if (ent->name->num != glist[i]->name->num)
bde78a07
NC
2318 break;
2319
800eeca4 2320 if (completer_entries_eq (ent, glist[i]))
bde78a07
NC
2321 return glist[i];
2322
800eeca4
JW
2323 i++;
2324 }
2325 }
2326 }
bde78a07 2327
800eeca4 2328 for (; i > 0 && i < glistlen; i--)
bde78a07
NC
2329 if (ent->name->num >= glist[i - 1]->name->num)
2330 break;
2331
800eeca4 2332 for (; i < glistlen; i++)
bde78a07
NC
2333 if (ent->name->num < glist[i]->name->num)
2334 break;
2335
800eeca4 2336 for (x = glistlen - 1; x >= i; x--)
bde78a07
NC
2337 glist[x + 1] = glist[x];
2338
800eeca4
JW
2339 glist[i] = ent;
2340 glistlen++;
2341 }
2342 return ent;
2343}
2344\f
2345static int
2346get_prefix_len (name)
2347 const char *name;
2348{
2349 char *c;
2350
2351 if (name[0] == '\0')
bde78a07 2352 return 0;
800eeca4
JW
2353
2354 c = strchr (name, '.');
2355 if (c != NULL)
bde78a07 2356 return c - name;
800eeca4 2357 else
bde78a07 2358 return strlen (name);
800eeca4
JW
2359}
2360\f
2361static void
2362compute_completer_bits (ment, ent)
2363 struct main_entry *ment;
2364 struct completer_entry *ent;
2365{
2366 while (ent != NULL)
2367 {
2368 compute_completer_bits (ment, ent->addl_entries);
2369
2370 if (ent->is_terminal)
2371 {
2372 ia64_insn mask = 0;
2373 ia64_insn our_bits = ent->bits;
2374 struct completer_entry *p = ent->parent;
2375 ia64_insn p_bits;
2376 int x;
2377
2378 while (p != NULL && ! p->is_terminal)
bde78a07 2379 p = p->parent;
800eeca4
JW
2380
2381 if (p != NULL)
bde78a07 2382 p_bits = p->bits;
800eeca4 2383 else
bde78a07 2384 p_bits = ment->opcode->opcode;
800eeca4
JW
2385
2386 for (x = 0; x < 64; x++)
2387 {
2388 ia64_insn m = ((ia64_insn) 1) << x;
bde78a07 2389
800eeca4 2390 if ((p_bits & m) != (our_bits & m))
bde78a07 2391 mask |= m;
800eeca4 2392 else
bde78a07 2393 our_bits &= ~m;
800eeca4
JW
2394 }
2395 ent->bits = our_bits;
2396 ent->mask = mask;
2397 }
2398 else
2399 {
2400 ent->bits = 0;
2401 ent->mask = 0;
2402 }
2403
2404 ent = ent->alternative;
2405 }
2406}
2407\f
2408/* Find identical completer trees that are used in different
bde78a07
NC
2409 instructions and collapse their entries. */
2410static void
2411collapse_redundant_completers (void)
800eeca4
JW
2412{
2413 struct main_entry *ptr;
2414 int x;
2415
2416 for (ptr = maintable; ptr != NULL; ptr = ptr->next)
2417 {
2418 if (ptr->completers == NULL)
bde78a07
NC
2419 abort ();
2420
800eeca4
JW
2421 compute_completer_bits (ptr, ptr->completers);
2422 ptr->completers = insert_gclist (ptr->completers);
2423 }
2424
2425 /* The table has been finalized, now number the indexes. */
2426 for (x = 0; x < glistlen; x++)
bde78a07 2427 glist[x]->num = x;
800eeca4
JW
2428}
2429\f
2430
bde78a07 2431/* Attach two lists of dependencies to each opcode.
800eeca4
JW
2432 1) all resources which, when already marked in use, conflict with this
2433 opcode (chks)
2434 2) all resources which must be marked in use when this opcode is used
bde78a07
NC
2435 (regs). */
2436static int
800eeca4
JW
2437insert_opcode_dependencies (opc, cmp)
2438 struct ia64_opcode *opc;
514829c3 2439 struct completer_entry *cmp ATTRIBUTE_UNUSED;
800eeca4 2440{
bde78a07
NC
2441 /* Note all resources which point to this opcode. rfi has the most chks
2442 (79) and cmpxchng has the most regs (54) so 100 here should be enough. */
800eeca4
JW
2443 int i;
2444 int nregs = 0;
2445 unsigned short regs[256];
2446 int nchks = 0;
2447 unsigned short chks[256];
bde78a07 2448 /* Flag insns for which no class matched; there should be none. */
800eeca4
JW
2449 int no_class_found = 1;
2450
bde78a07 2451 for (i = 0; i < rdepslen; i++)
800eeca4
JW
2452 {
2453 struct rdep *rs = rdeps[i];
2454 int j;
2455
2456 if (strcmp (opc->name, "cmp.eq.and") == 0
0112cd26 2457 && CONST_STRNEQ (rs->name, "PR%")
800eeca4
JW
2458 && rs->mode == 1)
2459 no_class_found = 99;
2460
2461 for (j=0; j < rs->nregs;j++)
2462 {
2463 int ic_note = 0;
2464
2465 if (in_iclass (opc, ics[rs->regs[j]], NULL, NULL, &ic_note))
2466 {
bde78a07 2467 /* We can ignore ic_note 11 for non PR resources. */
0112cd26 2468 if (ic_note == 11 && ! CONST_STRNEQ (rs->name, "PR"))
800eeca4
JW
2469 ic_note = 0;
2470
2471 if (ic_note != 0 && rs->regnotes[j] != 0
2472 && ic_note != rs->regnotes[j]
2473 && !(ic_note == 11 && rs->regnotes[j] == 1))
bde78a07
NC
2474 warn (_("IC note %d in opcode %s (IC:%s) conflicts with resource %s note %d\n"),
2475 ic_note, opc->name, ics[rs->regs[j]]->name,
2476 rs->name, rs->regnotes[j]);
800eeca4
JW
2477 /* Instruction class notes override resource notes.
2478 So far, only note 11 applies to an IC instead of a resource,
bde78a07 2479 and note 11 implies note 1. */
800eeca4
JW
2480 if (ic_note)
2481 regs[nregs++] = RDEP(ic_note, i);
2482 else
2483 regs[nregs++] = RDEP(rs->regnotes[j], i);
2484 no_class_found = 0;
2485 ++rs->total_regs;
2486 }
2487 }
bde78a07
NC
2488
2489 for (j = 0; j < rs->nchks; j++)
800eeca4
JW
2490 {
2491 int ic_note = 0;
2492
2493 if (in_iclass (opc, ics[rs->chks[j]], NULL, NULL, &ic_note))
2494 {
bde78a07 2495 /* We can ignore ic_note 11 for non PR resources. */
0112cd26 2496 if (ic_note == 11 && ! CONST_STRNEQ (rs->name, "PR"))
800eeca4
JW
2497 ic_note = 0;
2498
2499 if (ic_note != 0 && rs->chknotes[j] != 0
2500 && ic_note != rs->chknotes[j]
2501 && !(ic_note == 11 && rs->chknotes[j] == 1))
bde78a07
NC
2502 warn (_("IC note %d for opcode %s (IC:%s) conflicts with resource %s note %d\n"),
2503 ic_note, opc->name, ics[rs->chks[j]]->name,
2504 rs->name, rs->chknotes[j]);
800eeca4
JW
2505 if (ic_note)
2506 chks[nchks++] = RDEP(ic_note, i);
2507 else
2508 chks[nchks++] = RDEP(rs->chknotes[j], i);
2509 no_class_found = 0;
2510 ++rs->total_chks;
2511 }
2512 }
2513 }
2514
2515 if (no_class_found)
bde78a07
NC
2516 warn (_("opcode %s has no class (ops %d %d %d)\n"),
2517 opc->name,
2518 opc->operands[0], opc->operands[1], opc->operands[2]);
800eeca4
JW
2519
2520 return insert_dependencies (nchks, chks, nregs, regs);
2521}
2522\f
bde78a07 2523static void
aa170a07 2524insert_completer_entry (opc, tabent, order)
800eeca4
JW
2525 struct ia64_opcode *opc;
2526 struct main_entry *tabent;
aa170a07 2527 int order;
800eeca4
JW
2528{
2529 struct completer_entry **ptr = &tabent->completers;
2530 struct completer_entry *parent = NULL;
2531 char pcopy[129], *prefix;
2532 int at_end = 0;
2533
2534 if (strlen (opc->name) > 128)
bde78a07
NC
2535 abort ();
2536
800eeca4
JW
2537 strcpy (pcopy, opc->name);
2538 prefix = pcopy + get_prefix_len (pcopy);
bde78a07 2539
800eeca4 2540 if (prefix[0] != '\0')
bde78a07 2541 prefix++;
800eeca4
JW
2542
2543 while (! at_end)
2544 {
2545 int need_new_ent = 1;
2546 int plen = get_prefix_len (prefix);
2547 struct string_entry *sent;
2548
2549 at_end = (prefix[plen] == '\0');
2550 prefix[plen] = '\0';
2551 sent = insert_string (prefix);
2552
2553 while (*ptr != NULL)
2554 {
2555 int cmpres = sent->num - (*ptr)->name->num;
2556
2557 if (cmpres == 0)
2558 {
2559 need_new_ent = 0;
2560 break;
2561 }
800eeca4 2562 else
bde78a07 2563 ptr = &((*ptr)->alternative);
800eeca4 2564 }
bde78a07 2565
800eeca4
JW
2566 if (need_new_ent)
2567 {
2568 struct completer_entry *nent = tmalloc (struct completer_entry);
bde78a07 2569
800eeca4
JW
2570 nent->name = sent;
2571 nent->parent = parent;
2572 nent->addl_entries = NULL;
2573 nent->alternative = *ptr;
2574 *ptr = nent;
2575 nent->is_terminal = 0;
2576 nent->dependencies = -1;
2577 }
2578
2579 if (! at_end)
2580 {
2581 parent = *ptr;
2582 ptr = &((*ptr)->addl_entries);
2583 prefix += plen + 1;
2584 }
2585 }
2586
2587 if ((*ptr)->is_terminal)
bde78a07 2588 abort ();
800eeca4
JW
2589
2590 (*ptr)->is_terminal = 1;
2591 (*ptr)->mask = (ia64_insn)-1;
2592 (*ptr)->bits = opc->opcode;
800eeca4 2593 (*ptr)->dependencies = insert_opcode_dependencies (opc, *ptr);
aa170a07 2594 (*ptr)->order = order;
800eeca4
JW
2595}
2596\f
bde78a07 2597static void
800eeca4
JW
2598print_completer_entry (ent)
2599 struct completer_entry *ent;
2600{
2601 int moffset = 0;
2602 ia64_insn mask = ent->mask, bits = ent->bits;
2603
2604 if (mask != 0)
2605 {
2606 while (! (mask & 1))
2607 {
2608 moffset++;
2609 mask = mask >> 1;
2610 bits = bits >> 1;
2611 }
bde78a07 2612
800eeca4 2613 if (bits & 0xffffffff00000000LL)
bde78a07 2614 abort ();
800eeca4
JW
2615 }
2616
2617 printf (" { 0x%x, 0x%x, %d, %d, %d, %d, %d, %d },\n",
2618 (int)bits,
2619 (int)mask,
2620 ent->name->num,
2621 ent->alternative != NULL ? ent->alternative->num : -1,
2622 ent->addl_entries != NULL ? ent->addl_entries->num : -1,
2623 moffset,
2624 ent->is_terminal ? 1 : 0,
2625 ent->dependencies);
2626}
2627\f
bde78a07 2628static void
800eeca4
JW
2629print_completer_table ()
2630{
2631 int x;
2632
2633 printf ("static const struct ia64_completer_table\ncompleter_table[] = {\n");
2634 for (x = 0; x < glistlen; x++)
bde78a07 2635 print_completer_entry (glist[x]);
800eeca4
JW
2636 printf ("};\n\n");
2637}
2638\f
bde78a07 2639static int
800eeca4
JW
2640opcodes_eq (opc1, opc2)
2641 struct ia64_opcode *opc1;
2642 struct ia64_opcode *opc2;
2643{
2644 int x;
2645 int plen1, plen2;
2646
2647 if ((opc1->mask != opc2->mask) || (opc1->type != opc2->type)
2648 || (opc1->num_outputs != opc2->num_outputs)
2649 || (opc1->flags != opc2->flags))
bde78a07
NC
2650 return 0;
2651
800eeca4 2652 for (x = 0; x < 5; x++)
bde78a07
NC
2653 if (opc1->operands[x] != opc2->operands[x])
2654 return 0;
2655
800eeca4
JW
2656 plen1 = get_prefix_len (opc1->name);
2657 plen2 = get_prefix_len (opc2->name);
bde78a07 2658
800eeca4 2659 if (plen1 == plen2 && (memcmp (opc1->name, opc2->name, plen1) == 0))
bde78a07
NC
2660 return 1;
2661
800eeca4
JW
2662 return 0;
2663}
2664\f
bde78a07 2665static void
800eeca4
JW
2666add_opcode_entry (opc)
2667 struct ia64_opcode *opc;
2668{
2669 struct main_entry **place;
2670 struct string_entry *name;
2671 char prefix[129];
2672 int found_it = 0;
2673
2674 if (strlen (opc->name) > 128)
bde78a07
NC
2675 abort ();
2676
800eeca4
JW
2677 place = &maintable;
2678 strcpy (prefix, opc->name);
2679 prefix[get_prefix_len (prefix)] = '\0';
2680 name = insert_string (prefix);
2681
2682 /* Walk the list of opcode table entries. If it's a new
aa170a07 2683 instruction, allocate and fill in a new entry. Note
bde78a07 2684 the main table is alphabetical by opcode name. */
800eeca4
JW
2685
2686 while (*place != NULL)
2687 {
2688 if ((*place)->name->num == name->num
2689 && opcodes_eq ((*place)->opcode, opc))
2690 {
2691 found_it = 1;
2692 break;
2693 }
2694 if ((*place)->name->num > name->num)
bde78a07
NC
2695 break;
2696
800eeca4
JW
2697 place = &((*place)->next);
2698 }
2699 if (! found_it)
2700 {
2701 struct main_entry *nent = tmalloc (struct main_entry);
2702
2703 nent->name = name;
2704 nent->opcode = opc;
2705 nent->next = *place;
2706 nent->completers = 0;
2707 *place = nent;
aa170a07
TW
2708
2709 if (otlen == ottotlen)
2710 {
2711 ottotlen += 20;
2712 ordered_table = (struct main_entry **)
2713 xrealloc (ordered_table, sizeof (struct main_entry *) * ottotlen);
2714 }
2715 ordered_table[otlen++] = nent;
800eeca4 2716 }
c1485d85 2717
aa170a07 2718 insert_completer_entry (opc, *place, opcode_count++);
800eeca4
JW
2719}
2720\f
bde78a07
NC
2721static void
2722print_main_table (void)
800eeca4
JW
2723{
2724 struct main_entry *ptr = maintable;
aa170a07 2725 int index = 0;
800eeca4
JW
2726
2727 printf ("static const struct ia64_main_table\nmain_table[] = {\n");
2728 while (ptr != NULL)
2729 {
514829c3 2730 printf (" { %d, %d, %d, 0x",
800eeca4
JW
2731 ptr->name->num,
2732 ptr->opcode->type,
514829c3 2733 ptr->opcode->num_outputs);
aa2273ba 2734 opcode_fprintf_vma (stdout, ptr->opcode->opcode);
514829c3 2735 printf ("ull, 0x");
aa2273ba 2736 opcode_fprintf_vma (stdout, ptr->opcode->mask);
514829c3 2737 printf ("ull, { %d, %d, %d, %d, %d }, 0x%x, %d, },\n",
800eeca4
JW
2738 ptr->opcode->operands[0],
2739 ptr->opcode->operands[1],
2740 ptr->opcode->operands[2],
2741 ptr->opcode->operands[3],
2742 ptr->opcode->operands[4],
2743 ptr->opcode->flags,
2744 ptr->completers->num);
2745
aa170a07
TW
2746 ptr->main_index = index++;
2747
800eeca4
JW
2748 ptr = ptr->next;
2749 }
2750 printf ("};\n\n");
2751}
2752\f
bde78a07 2753static void
800eeca4
JW
2754shrink (table)
2755 struct ia64_opcode *table;
2756{
2757 int curr_opcode;
2758
2759 for (curr_opcode = 0; table[curr_opcode].name != NULL; curr_opcode++)
60b9a617
JB
2760 {
2761 add_opcode_entry (table + curr_opcode);
2762 if (table[curr_opcode].num_outputs == 2
2763 && ((table[curr_opcode].operands[0] == IA64_OPND_P1
2764 && table[curr_opcode].operands[1] == IA64_OPND_P2)
2765 || (table[curr_opcode].operands[0] == IA64_OPND_P2
2766 && table[curr_opcode].operands[1] == IA64_OPND_P1)))
2767 {
2768 struct ia64_opcode *alias = tmalloc(struct ia64_opcode);
2769 unsigned i;
2770
2771 *alias = table[curr_opcode];
2772 for (i = 2; i < NELEMS (alias->operands); ++i)
2773 alias->operands[i - 1] = alias->operands[i];
2774 alias->operands[NELEMS (alias->operands) - 1] = IA64_OPND_NIL;
2775 --alias->num_outputs;
2776 alias->flags |= PSEUDO;
2777 add_opcode_entry (alias);
2778 }
2779 }
800eeca4
JW
2780}
2781\f
bde78a07
NC
2782
2783/* Program options. */
2784#define OPTION_SRCDIR 200
2785
2786struct option long_options[] =
2787{
2788 {"srcdir", required_argument, NULL, OPTION_SRCDIR},
2789 {"debug", no_argument, NULL, 'd'},
2790 {"version", no_argument, NULL, 'V'},
2791 {"help", no_argument, NULL, 'h'},
2792 {0, no_argument, NULL, 0}
2793};
2794
2795static void
2796print_version (void)
2797{
2798 printf ("%s: version 1.0\n", program_name);
2799 xexit (0);
2800}
2801
2802static void
2803usage (FILE * stream, int status)
2804{
2805 fprintf (stream, "Usage: %s [-V | --version] [-d | --debug] [--srcdir=dirname] [--help]\n",
2806 program_name);
2807 xexit (status);
2808}
2809
800eeca4 2810int
bde78a07 2811main (int argc, char **argv)
800eeca4 2812{
bde78a07
NC
2813 extern int chdir (char *);
2814 char *srcdir = NULL;
2815 int c;
2816
2817 program_name = *argv;
2818 xmalloc_set_program_name (program_name);
2819
2820 while ((c = getopt_long (argc, argv, "vVdh", long_options, 0)) != EOF)
2821 switch (c)
2822 {
2823 case OPTION_SRCDIR:
2824 srcdir = optarg;
2825 break;
2826 case 'V':
2827 case 'v':
2828 print_version ();
2829 break;
2830 case 'd':
2831 debug = 1;
2832 break;
2833 case 'h':
2834 case '?':
2835 usage (stderr, 0);
2836 default:
2837 case 0:
2838 break;
2839 }
2840
2841 if (optind != argc)
2842 usage (stdout, 1);
2843
2844 if (srcdir != NULL)
2845 if (chdir (srcdir) != 0)
2846 fail (_("unable to change directory to \"%s\", errno = %s\n"),
2847 srcdir, strerror (errno));
800eeca4 2848
bde78a07
NC
2849 load_insn_classes ();
2850 load_dependencies ();
800eeca4
JW
2851
2852 shrink (ia64_opcodes_a);
2853 shrink (ia64_opcodes_b);
2854 shrink (ia64_opcodes_f);
2855 shrink (ia64_opcodes_i);
2856 shrink (ia64_opcodes_m);
2857 shrink (ia64_opcodes_x);
2858 shrink (ia64_opcodes_d);
2859
2860 collapse_redundant_completers ();
2861
bde78a07 2862 printf ("/* This file is automatically generated by ia64-gen. Do not edit! */\n");
9b201bb5
NC
2863 printf ("/* Copyright 2007 Free Software Foundation, Inc.\n\
2864\n\
2865 This file is part of the GNU opcodes library.\n\
2866\n\
2867 This library is free software; you can redistribute it and/or modify\n\
2868 it under the terms of the GNU General Public License as published by\n\
2869 the Free Software Foundation; either version 3, or (at your option)\n\
2870 any later version.\n\
2871\n\
2872 It is distributed in the hope that it will be useful, but WITHOUT\n\
2873 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY\n\
2874 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public\n\
2875 License for more details.\n\
2876\n\
2877 You should have received a copy of the GNU General Public License\n\
2878 along with this program; see the file COPYING. If not, write to the\n\
2879 Free Software Foundation, 51 Franklin Street - Fifth Floor, Boston, MA\n\
b8deab37 2880 02110-1301, USA. */\n");
9b201bb5 2881
800eeca4
JW
2882 print_string_table ();
2883 print_dependency_table ();
2884 print_completer_table ();
2885 print_main_table ();
2886
2887 generate_disassembler ();
2888
2889 exit (0);
2890}
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