gas:
[deliverable/binutils-gdb.git] / opcodes / i386-gen.c
1 /* Copyright 2007, 2008, 2009
2 Free Software Foundation, Inc.
3
4 This file is part of the GNU opcodes library.
5
6 This library is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 3, or (at your option)
9 any later version.
10
11 It is distributed in the hope that it will be useful, but WITHOUT
12 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
13 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
14 License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
19 MA 02110-1301, USA. */
20
21 #include "sysdep.h"
22 #include <stdio.h>
23 #include <errno.h>
24 #include "getopt.h"
25 #include "libiberty.h"
26 #include "hashtab.h"
27 #include "safe-ctype.h"
28
29 #include "i386-opc.h"
30
31 #include <libintl.h>
32 #define _(String) gettext (String)
33
34 static const char *program_name = NULL;
35 static int debug = 0;
36
37 typedef struct initializer
38 {
39 const char *name;
40 const char *init;
41 } initializer;
42
43 static initializer cpu_flag_init[] =
44 {
45 { "CPU_UNKNOWN_FLAGS",
46 "unknown" },
47 { "CPU_GENERIC32_FLAGS",
48 "Cpu186|Cpu286|Cpu386" },
49 { "CPU_GENERIC64_FLAGS",
50 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuClflush|CpuMMX|CpuSSE|CpuSSE2|CpuLM" },
51 { "CPU_NONE_FLAGS",
52 "0" },
53 { "CPU_I186_FLAGS",
54 "Cpu186" },
55 { "CPU_I286_FLAGS",
56 "Cpu186|Cpu286" },
57 { "CPU_I386_FLAGS",
58 "Cpu186|Cpu286|Cpu386" },
59 { "CPU_I486_FLAGS",
60 "Cpu186|Cpu286|Cpu386|Cpu486" },
61 { "CPU_I586_FLAGS",
62 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586" },
63 { "CPU_I686_FLAGS",
64 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686" },
65 { "CPU_P2_FLAGS",
66 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuMMX" },
67 { "CPU_P3_FLAGS",
68 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuMMX|CpuSSE" },
69 { "CPU_P4_FLAGS",
70 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuClflush|CpuMMX|CpuSSE|CpuSSE2" },
71 { "CPU_NOCONA_FLAGS",
72 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuClflush|CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuLM" },
73 { "CPU_CORE_FLAGS",
74 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuClflush|CpuMMX|CpuSSE|CpuSSE2|CpuSSE3" },
75 { "CPU_CORE2_FLAGS",
76 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuClflush|CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3|CpuLM" },
77 { "CPU_COREI7_FLAGS",
78 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuClflush|CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3|CpuSSE4_1|CpuSSE4_2|CpuRdtscp|CpuLM" },
79 { "CPU_K6_FLAGS",
80 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|CpuSYSCALL|CpuMMX" },
81 { "CPU_K6_2_FLAGS",
82 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|CpuSYSCALL|CpuMMX|Cpu3dnow" },
83 { "CPU_ATHLON_FLAGS",
84 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuSYSCALL|CpuMMX|Cpu3dnow|Cpu3dnowA" },
85 { "CPU_K8_FLAGS",
86 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuSYSCALL|CpuRdtscp|CpuMMX|Cpu3dnow|Cpu3dnowA|CpuSSE|CpuSSE2|CpuLM" },
87 { "CPU_AMDFAM10_FLAGS",
88 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|Cpu686|CpuSYSCALL|CpuRdtscp|CpuMMX|Cpu3dnow|Cpu3dnowA|CpuSSE|CpuSSE2|CpuSSE3|CpuSSE4a|CpuABM|CpuLM" },
89 { "CPU_CLFLUSH_FLAGS",
90 "CpuClflush" },
91 { "CPU_SYSCALL_FLAGS",
92 "CpuSYSCALL" },
93 { "CPU_MMX_FLAGS",
94 "CpuMMX" },
95 { "CPU_SSE_FLAGS",
96 "CpuMMX|CpuSSE" },
97 { "CPU_SSE2_FLAGS",
98 "CpuMMX|CpuSSE|CpuSSE2" },
99 { "CPU_SSE3_FLAGS",
100 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3" },
101 { "CPU_SSSE3_FLAGS",
102 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3" },
103 { "CPU_SSE4_1_FLAGS",
104 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3|CpuSSE4_1" },
105 { "CPU_SSE4_2_FLAGS",
106 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3|CpuSSE4_1|CpuSSE4_2" },
107 { "CPU_VMX_FLAGS",
108 "CpuVMX" },
109 { "CPU_SMX_FLAGS",
110 "CpuSMX" },
111 { "CPU_XSAVE_FLAGS",
112 "CpuXsave" },
113 { "CPU_AES_FLAGS",
114 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3|CpuSSE4_1|CpuSSE4_2|CpuAES" },
115 { "CPU_PCLMUL_FLAGS",
116 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3|CpuSSE4_1|CpuSSE4_2|CpuPCLMUL" },
117 { "CPU_FMA_FLAGS",
118 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3|CpuSSE4_1|CpuSSE4_2|CpuAVX|CpuFMA" },
119 { "CPU_MOVBE_FLAGS",
120 "CpuMovbe" },
121 { "CPU_RDTSCP_FLAGS",
122 "CpuRdtscp" },
123 { "CPU_EPT_FLAGS",
124 "CpuEPT" },
125 { "CPU_3DNOW_FLAGS",
126 "CpuMMX|Cpu3dnow" },
127 { "CPU_3DNOWA_FLAGS",
128 "CpuMMX|Cpu3dnow|Cpu3dnowA" },
129 { "CPU_PADLOCK_FLAGS",
130 "CpuPadLock" },
131 { "CPU_SVME_FLAGS",
132 "CpuSVME" },
133 { "CPU_SSE4A_FLAGS",
134 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSE4a" },
135 { "CPU_ABM_FLAGS",
136 "CpuABM" },
137 { "CPU_SSE5_FLAGS",
138 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSE4a|CpuABM|CpuSSE5"},
139 { "CPU_AVX_FLAGS",
140 "CpuMMX|CpuSSE|CpuSSE2|CpuSSE3|CpuSSSE3|CpuSSE4_1|CpuSSE4_2|CpuAVX" },
141 };
142
143 static initializer operand_type_init[] =
144 {
145 { "OPERAND_TYPE_NONE",
146 "0" },
147 { "OPERAND_TYPE_REG8",
148 "Reg8" },
149 { "OPERAND_TYPE_REG16",
150 "Reg16" },
151 { "OPERAND_TYPE_REG32",
152 "Reg32" },
153 { "OPERAND_TYPE_REG64",
154 "Reg64" },
155 { "OPERAND_TYPE_IMM1",
156 "Imm1" },
157 { "OPERAND_TYPE_IMM8",
158 "Imm8" },
159 { "OPERAND_TYPE_IMM8S",
160 "Imm8S" },
161 { "OPERAND_TYPE_IMM16",
162 "Imm16" },
163 { "OPERAND_TYPE_IMM32",
164 "Imm32" },
165 { "OPERAND_TYPE_IMM32S",
166 "Imm32S" },
167 { "OPERAND_TYPE_IMM64",
168 "Imm64" },
169 { "OPERAND_TYPE_BASEINDEX",
170 "BaseIndex" },
171 { "OPERAND_TYPE_DISP8",
172 "Disp8" },
173 { "OPERAND_TYPE_DISP16",
174 "Disp16" },
175 { "OPERAND_TYPE_DISP32",
176 "Disp32" },
177 { "OPERAND_TYPE_DISP32S",
178 "Disp32S" },
179 { "OPERAND_TYPE_DISP64",
180 "Disp64" },
181 { "OPERAND_TYPE_INOUTPORTREG",
182 "InOutPortReg" },
183 { "OPERAND_TYPE_SHIFTCOUNT",
184 "ShiftCount" },
185 { "OPERAND_TYPE_CONTROL",
186 "Control" },
187 { "OPERAND_TYPE_TEST",
188 "Test" },
189 { "OPERAND_TYPE_DEBUG",
190 "FloatReg" },
191 { "OPERAND_TYPE_FLOATREG",
192 "FloatReg" },
193 { "OPERAND_TYPE_FLOATACC",
194 "FloatAcc" },
195 { "OPERAND_TYPE_SREG2",
196 "SReg2" },
197 { "OPERAND_TYPE_SREG3",
198 "SReg3" },
199 { "OPERAND_TYPE_ACC",
200 "Acc" },
201 { "OPERAND_TYPE_JUMPABSOLUTE",
202 "JumpAbsolute" },
203 { "OPERAND_TYPE_REGMMX",
204 "RegMMX" },
205 { "OPERAND_TYPE_REGXMM",
206 "RegXMM" },
207 { "OPERAND_TYPE_REGYMM",
208 "RegYMM" },
209 { "OPERAND_TYPE_ESSEG",
210 "EsSeg" },
211 { "OPERAND_TYPE_ACC32",
212 "Reg32|Acc|Dword" },
213 { "OPERAND_TYPE_ACC64",
214 "Reg64|Acc|Qword" },
215 { "OPERAND_TYPE_INOUTPORTREG",
216 "InOutPortReg" },
217 { "OPERAND_TYPE_REG16_INOUTPORTREG",
218 "Reg16|InOutPortReg" },
219 { "OPERAND_TYPE_DISP16_32",
220 "Disp16|Disp32" },
221 { "OPERAND_TYPE_ANYDISP",
222 "Disp8|Disp16|Disp32|Disp32S|Disp64" },
223 { "OPERAND_TYPE_IMM16_32",
224 "Imm16|Imm32" },
225 { "OPERAND_TYPE_IMM16_32S",
226 "Imm16|Imm32S" },
227 { "OPERAND_TYPE_IMM16_32_32S",
228 "Imm16|Imm32|Imm32S" },
229 { "OPERAND_TYPE_IMM32_32S_DISP32",
230 "Imm32|Imm32S|Disp32" },
231 { "OPERAND_TYPE_IMM64_DISP64",
232 "Imm64|Disp64" },
233 { "OPERAND_TYPE_IMM32_32S_64_DISP32",
234 "Imm32|Imm32S|Imm64|Disp32" },
235 { "OPERAND_TYPE_IMM32_32S_64_DISP32_64",
236 "Imm32|Imm32S|Imm64|Disp32|Disp64" },
237 { "OPERAND_TYPE_VEX_IMM4",
238 "VEX_Imm4" },
239 };
240
241 typedef struct bitfield
242 {
243 int position;
244 int value;
245 const char *name;
246 } bitfield;
247
248 #define BITFIELD(n) { n, 0, #n }
249
250 static bitfield cpu_flags[] =
251 {
252 BITFIELD (Cpu186),
253 BITFIELD (Cpu286),
254 BITFIELD (Cpu386),
255 BITFIELD (Cpu486),
256 BITFIELD (Cpu586),
257 BITFIELD (Cpu686),
258 BITFIELD (CpuClflush),
259 BITFIELD (CpuSYSCALL),
260 BITFIELD (CpuMMX),
261 BITFIELD (CpuSSE),
262 BITFIELD (CpuSSE2),
263 BITFIELD (CpuSSE3),
264 BITFIELD (CpuSSSE3),
265 BITFIELD (CpuSSE4_1),
266 BITFIELD (CpuSSE4_2),
267 BITFIELD (CpuAVX),
268 BITFIELD (CpuSSE4a),
269 BITFIELD (CpuSSE5),
270 BITFIELD (Cpu3dnow),
271 BITFIELD (Cpu3dnowA),
272 BITFIELD (CpuPadLock),
273 BITFIELD (CpuSVME),
274 BITFIELD (CpuVMX),
275 BITFIELD (CpuSMX),
276 BITFIELD (CpuABM),
277 BITFIELD (CpuXsave),
278 BITFIELD (CpuAES),
279 BITFIELD (CpuPCLMUL),
280 BITFIELD (CpuFMA),
281 BITFIELD (CpuLM),
282 BITFIELD (CpuMovbe),
283 BITFIELD (CpuEPT),
284 BITFIELD (CpuRdtscp),
285 BITFIELD (Cpu64),
286 BITFIELD (CpuNo64),
287 #ifdef CpuUnused
288 BITFIELD (CpuUnused),
289 #endif
290 };
291
292 static bitfield opcode_modifiers[] =
293 {
294 BITFIELD (D),
295 BITFIELD (W),
296 BITFIELD (S),
297 BITFIELD (Modrm),
298 BITFIELD (ShortForm),
299 BITFIELD (Jump),
300 BITFIELD (JumpDword),
301 BITFIELD (JumpByte),
302 BITFIELD (JumpInterSegment),
303 BITFIELD (FloatMF),
304 BITFIELD (FloatR),
305 BITFIELD (FloatD),
306 BITFIELD (Size16),
307 BITFIELD (Size32),
308 BITFIELD (Size64),
309 BITFIELD (IgnoreSize),
310 BITFIELD (DefaultSize),
311 BITFIELD (No_bSuf),
312 BITFIELD (No_wSuf),
313 BITFIELD (No_lSuf),
314 BITFIELD (No_sSuf),
315 BITFIELD (No_qSuf),
316 BITFIELD (No_ldSuf),
317 BITFIELD (FWait),
318 BITFIELD (IsString),
319 BITFIELD (RegKludge),
320 BITFIELD (FirstXmm0),
321 BITFIELD (Implicit1stXmm0),
322 BITFIELD (ByteOkIntel),
323 BITFIELD (ToDword),
324 BITFIELD (ToQword),
325 BITFIELD (AddrPrefixOp0),
326 BITFIELD (IsPrefix),
327 BITFIELD (ImmExt),
328 BITFIELD (NoRex64),
329 BITFIELD (Rex64),
330 BITFIELD (Ugh),
331 BITFIELD (Drex),
332 BITFIELD (Drexv),
333 BITFIELD (Drexc),
334 BITFIELD (Vex),
335 BITFIELD (Vex256),
336 BITFIELD (VexNDS),
337 BITFIELD (VexNDD),
338 BITFIELD (VexW0),
339 BITFIELD (VexW1),
340 BITFIELD (Vex0F),
341 BITFIELD (Vex0F38),
342 BITFIELD (Vex0F3A),
343 BITFIELD (Vex3Sources),
344 BITFIELD (VexImmExt),
345 BITFIELD (SSE2AVX),
346 BITFIELD (NoAVX),
347 BITFIELD (OldGcc),
348 BITFIELD (ATTMnemonic),
349 BITFIELD (ATTSyntax),
350 BITFIELD (IntelSyntax),
351 };
352
353 static bitfield operand_types[] =
354 {
355 BITFIELD (Reg8),
356 BITFIELD (Reg16),
357 BITFIELD (Reg32),
358 BITFIELD (Reg64),
359 BITFIELD (FloatReg),
360 BITFIELD (RegMMX),
361 BITFIELD (RegXMM),
362 BITFIELD (RegYMM),
363 BITFIELD (Imm8),
364 BITFIELD (Imm8S),
365 BITFIELD (Imm16),
366 BITFIELD (Imm32),
367 BITFIELD (Imm32S),
368 BITFIELD (Imm64),
369 BITFIELD (Imm1),
370 BITFIELD (BaseIndex),
371 BITFIELD (Disp8),
372 BITFIELD (Disp16),
373 BITFIELD (Disp32),
374 BITFIELD (Disp32S),
375 BITFIELD (Disp64),
376 BITFIELD (InOutPortReg),
377 BITFIELD (ShiftCount),
378 BITFIELD (Control),
379 BITFIELD (Debug),
380 BITFIELD (Test),
381 BITFIELD (SReg2),
382 BITFIELD (SReg3),
383 BITFIELD (Acc),
384 BITFIELD (FloatAcc),
385 BITFIELD (JumpAbsolute),
386 BITFIELD (EsSeg),
387 BITFIELD (RegMem),
388 BITFIELD (Mem),
389 BITFIELD (Byte),
390 BITFIELD (Word),
391 BITFIELD (Dword),
392 BITFIELD (Fword),
393 BITFIELD (Qword),
394 BITFIELD (Tbyte),
395 BITFIELD (Xmmword),
396 BITFIELD (Ymmword),
397 BITFIELD (Unspecified),
398 BITFIELD (Anysize),
399 BITFIELD (Vex_Imm4),
400 #ifdef OTUnused
401 BITFIELD (OTUnused),
402 #endif
403 };
404
405 static const char *filename;
406
407 static int
408 compare (const void *x, const void *y)
409 {
410 const bitfield *xp = (const bitfield *) x;
411 const bitfield *yp = (const bitfield *) y;
412 return xp->position - yp->position;
413 }
414
415 static void
416 fail (const char *message, ...)
417 {
418 va_list args;
419
420 va_start (args, message);
421 fprintf (stderr, _("%s: Error: "), program_name);
422 vfprintf (stderr, message, args);
423 va_end (args);
424 xexit (1);
425 }
426
427 static void
428 process_copyright (FILE *fp)
429 {
430 fprintf (fp, "/* This file is automatically generated by i386-gen. Do not edit! */\n\
431 /* Copyright 2007, 2008, 2009\n\
432 Free Software Foundation, Inc.\n\
433 \n\
434 This file is part of the GNU opcodes library.\n\
435 \n\
436 This library is free software; you can redistribute it and/or modify\n\
437 it under the terms of the GNU General Public License as published by\n\
438 the Free Software Foundation; either version 3, or (at your option)\n\
439 any later version.\n\
440 \n\
441 It is distributed in the hope that it will be useful, but WITHOUT\n\
442 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY\n\
443 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public\n\
444 License for more details.\n\
445 \n\
446 You should have received a copy of the GNU General Public License\n\
447 along with this program; if not, write to the Free Software\n\
448 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,\n\
449 MA 02110-1301, USA. */\n");
450 }
451
452 /* Remove leading white spaces. */
453
454 static char *
455 remove_leading_whitespaces (char *str)
456 {
457 while (ISSPACE (*str))
458 str++;
459 return str;
460 }
461
462 /* Remove trailing white spaces. */
463
464 static void
465 remove_trailing_whitespaces (char *str)
466 {
467 size_t last = strlen (str);
468
469 if (last == 0)
470 return;
471
472 do
473 {
474 last--;
475 if (ISSPACE (str [last]))
476 str[last] = '\0';
477 else
478 break;
479 }
480 while (last != 0);
481 }
482
483 /* Find next field separated by SEP and terminate it. Return a
484 pointer to the one after it. */
485
486 static char *
487 next_field (char *str, char sep, char **next, char *last)
488 {
489 char *p;
490
491 p = remove_leading_whitespaces (str);
492 for (str = p; *str != sep && *str != '\0'; str++);
493
494 *str = '\0';
495 remove_trailing_whitespaces (p);
496
497 *next = str + 1;
498
499 if (p >= last)
500 abort ();
501
502 return p;
503 }
504
505 static void
506 set_bitfield (const char *f, bitfield *array, unsigned int size, int lineno)
507 {
508 unsigned int i;
509
510 if (strcmp (f, "Mmword") == 0)
511 f= "Qword";
512 else if (strcmp (f, "Oword") == 0)
513 f= "Xmmword";
514
515 for (i = 0; i < size; i++)
516 if (strcasecmp (array[i].name, f) == 0)
517 {
518 array[i].value = 1;
519 return;
520 }
521
522 if (lineno != -1)
523 fail (_("%s: %d: Unknown bitfield: %s\n"), filename, lineno, f);
524 else
525 fail (_("Unknown bitfield: %s\n"), f);
526 }
527
528 static void
529 output_cpu_flags (FILE *table, bitfield *flags, unsigned int size,
530 int macro, const char *comma, const char *indent)
531 {
532 unsigned int i;
533
534 fprintf (table, "%s{ { ", indent);
535
536 for (i = 0; i < size - 1; i++)
537 {
538 fprintf (table, "%d, ", flags[i].value);
539 if (((i + 1) % 20) == 0)
540 {
541 /* We need \\ for macro. */
542 if (macro)
543 fprintf (table, " \\\n %s", indent);
544 else
545 fprintf (table, "\n %s", indent);
546 }
547 }
548
549 fprintf (table, "%d } }%s\n", flags[i].value, comma);
550 }
551
552 static void
553 process_i386_cpu_flag (FILE *table, char *flag, int macro,
554 const char *comma, const char *indent,
555 int lineno)
556 {
557 char *str, *next, *last;
558 bitfield flags [ARRAY_SIZE (cpu_flags)];
559
560 /* Copy the default cpu flags. */
561 memcpy (flags, cpu_flags, sizeof (cpu_flags));
562
563 if (strcasecmp (flag, "unknown") == 0)
564 {
565 unsigned int i;
566
567 /* We turn on everything except for cpu64 in case of
568 CPU_UNKNOWN_FLAGS. */
569 for (i = 0; i < ARRAY_SIZE (flags); i++)
570 if (flags[i].position != Cpu64)
571 flags[i].value = 1;
572 }
573 else if (strcmp (flag, "0"))
574 {
575 last = flag + strlen (flag);
576 for (next = flag; next && next < last; )
577 {
578 str = next_field (next, '|', &next, last);
579 if (str)
580 set_bitfield (str, flags, ARRAY_SIZE (flags), lineno);
581 }
582 }
583
584 output_cpu_flags (table, flags, ARRAY_SIZE (flags), macro,
585 comma, indent);
586 }
587
588 static void
589 output_opcode_modifier (FILE *table, bitfield *modifier, unsigned int size)
590 {
591 unsigned int i;
592
593 fprintf (table, " { ");
594
595 for (i = 0; i < size - 1; i++)
596 {
597 fprintf (table, "%d, ", modifier[i].value);
598 if (((i + 1) % 20) == 0)
599 fprintf (table, "\n ");
600 }
601
602 fprintf (table, "%d },\n", modifier[i].value);
603 }
604
605 static void
606 process_i386_opcode_modifier (FILE *table, char *mod, int lineno)
607 {
608 char *str, *next, *last;
609 bitfield modifiers [ARRAY_SIZE (opcode_modifiers)];
610
611 /* Copy the default opcode modifier. */
612 memcpy (modifiers, opcode_modifiers, sizeof (modifiers));
613
614 if (strcmp (mod, "0"))
615 {
616 last = mod + strlen (mod);
617 for (next = mod; next && next < last; )
618 {
619 str = next_field (next, '|', &next, last);
620 if (str)
621 set_bitfield (str, modifiers, ARRAY_SIZE (modifiers), lineno);
622 }
623 }
624 output_opcode_modifier (table, modifiers, ARRAY_SIZE (modifiers));
625 }
626
627 static void
628 output_operand_type (FILE *table, bitfield *types, unsigned int size,
629 int macro, const char *indent)
630 {
631 unsigned int i;
632
633 fprintf (table, "{ { ");
634
635 for (i = 0; i < size - 1; i++)
636 {
637 fprintf (table, "%d, ", types[i].value);
638 if (((i + 1) % 20) == 0)
639 {
640 /* We need \\ for macro. */
641 if (macro)
642 fprintf (table, "\\\n%s", indent);
643 else
644 fprintf (table, "\n%s", indent);
645 }
646 }
647
648 fprintf (table, "%d } }", types[i].value);
649 }
650
651 static void
652 process_i386_operand_type (FILE *table, char *op, int macro,
653 const char *indent, int lineno)
654 {
655 char *str, *next, *last;
656 bitfield types [ARRAY_SIZE (operand_types)];
657
658 /* Copy the default operand type. */
659 memcpy (types, operand_types, sizeof (types));
660
661 if (strcmp (op, "0"))
662 {
663 last = op + strlen (op);
664 for (next = op; next && next < last; )
665 {
666 str = next_field (next, '|', &next, last);
667 if (str)
668 set_bitfield (str, types, ARRAY_SIZE (types), lineno);
669 }
670 }
671 output_operand_type (table, types, ARRAY_SIZE (types), macro,
672 indent);
673 }
674
675 static void
676 output_i386_opcode (FILE *table, const char *name, char *str,
677 char *last, int lineno)
678 {
679 unsigned int i;
680 char *operands, *base_opcode, *extension_opcode, *opcode_length;
681 char *cpu_flags, *opcode_modifier, *operand_types [MAX_OPERANDS];
682
683 /* Find number of operands. */
684 operands = next_field (str, ',', &str, last);
685
686 /* Find base_opcode. */
687 base_opcode = next_field (str, ',', &str, last);
688
689 /* Find extension_opcode. */
690 extension_opcode = next_field (str, ',', &str, last);
691
692 /* Find opcode_length. */
693 opcode_length = next_field (str, ',', &str, last);
694
695 /* Find cpu_flags. */
696 cpu_flags = next_field (str, ',', &str, last);
697
698 /* Find opcode_modifier. */
699 opcode_modifier = next_field (str, ',', &str, last);
700
701 /* Remove the first {. */
702 str = remove_leading_whitespaces (str);
703 if (*str != '{')
704 abort ();
705 str = remove_leading_whitespaces (str + 1);
706
707 i = strlen (str);
708
709 /* There are at least "X}". */
710 if (i < 2)
711 abort ();
712
713 /* Remove trailing white spaces and }. */
714 do
715 {
716 i--;
717 if (ISSPACE (str[i]) || str[i] == '}')
718 str[i] = '\0';
719 else
720 break;
721 }
722 while (i != 0);
723
724 last = str + i;
725
726 /* Find operand_types. */
727 for (i = 0; i < ARRAY_SIZE (operand_types); i++)
728 {
729 if (str >= last)
730 {
731 operand_types [i] = NULL;
732 break;
733 }
734
735 operand_types [i] = next_field (str, ',', &str, last);
736 if (*operand_types[i] == '0')
737 {
738 if (i != 0)
739 operand_types[i] = NULL;
740 break;
741 }
742 }
743
744 fprintf (table, " { \"%s\", %s, %s, %s, %s,\n",
745 name, operands, base_opcode, extension_opcode,
746 opcode_length);
747
748 process_i386_cpu_flag (table, cpu_flags, 0, ",", " ", lineno);
749
750 process_i386_opcode_modifier (table, opcode_modifier, lineno);
751
752 fprintf (table, " { ");
753
754 for (i = 0; i < ARRAY_SIZE (operand_types); i++)
755 {
756 if (operand_types[i] == NULL || *operand_types[i] == '0')
757 {
758 if (i == 0)
759 process_i386_operand_type (table, "0", 0, "\t ", lineno);
760 break;
761 }
762
763 if (i != 0)
764 fprintf (table, ",\n ");
765
766 process_i386_operand_type (table, operand_types[i], 0,
767 "\t ", lineno);
768 }
769 fprintf (table, " } },\n");
770 }
771
772 struct opcode_hash_entry
773 {
774 struct opcode_hash_entry *next;
775 char *name;
776 char *opcode;
777 int lineno;
778 };
779
780 /* Calculate the hash value of an opcode hash entry P. */
781
782 static hashval_t
783 opcode_hash_hash (const void *p)
784 {
785 struct opcode_hash_entry *entry = (struct opcode_hash_entry *) p;
786 return htab_hash_string (entry->name);
787 }
788
789 /* Compare a string Q against an opcode hash entry P. */
790
791 static int
792 opcode_hash_eq (const void *p, const void *q)
793 {
794 struct opcode_hash_entry *entry = (struct opcode_hash_entry *) p;
795 const char *name = (const char *) q;
796 return strcmp (name, entry->name) == 0;
797 }
798
799 static void
800 process_i386_opcodes (FILE *table)
801 {
802 FILE *fp;
803 char buf[2048];
804 unsigned int i, j;
805 char *str, *p, *last, *name;
806 struct opcode_hash_entry **hash_slot, **entry, *next;
807 htab_t opcode_hash_table;
808 struct opcode_hash_entry **opcode_array;
809 unsigned int opcode_array_size = 1024;
810 int lineno = 0;
811
812 filename = "i386-opc.tbl";
813 fp = fopen (filename, "r");
814
815 if (fp == NULL)
816 fail (_("can't find i386-opc.tbl for reading, errno = %s\n"),
817 xstrerror (errno));
818
819 i = 0;
820 opcode_array = (struct opcode_hash_entry **)
821 xmalloc (sizeof (*opcode_array) * opcode_array_size);
822
823 opcode_hash_table = htab_create_alloc (16, opcode_hash_hash,
824 opcode_hash_eq, NULL,
825 xcalloc, free);
826
827 fprintf (table, "\n/* i386 opcode table. */\n\n");
828 fprintf (table, "const template i386_optab[] =\n{\n");
829
830 /* Put everything on opcode array. */
831 while (!feof (fp))
832 {
833 if (fgets (buf, sizeof (buf), fp) == NULL)
834 break;
835
836 lineno++;
837
838 p = remove_leading_whitespaces (buf);
839
840 /* Skip comments. */
841 str = strstr (p, "//");
842 if (str != NULL)
843 str[0] = '\0';
844
845 /* Remove trailing white spaces. */
846 remove_trailing_whitespaces (p);
847
848 switch (p[0])
849 {
850 case '#':
851 /* Ignore comments. */
852 case '\0':
853 continue;
854 break;
855 default:
856 break;
857 }
858
859 last = p + strlen (p);
860
861 /* Find name. */
862 name = next_field (p, ',', &str, last);
863
864 /* Get the slot in hash table. */
865 hash_slot = (struct opcode_hash_entry **)
866 htab_find_slot_with_hash (opcode_hash_table, name,
867 htab_hash_string (name),
868 INSERT);
869
870 if (*hash_slot == NULL)
871 {
872 /* It is the new one. Put it on opcode array. */
873 if (i >= opcode_array_size)
874 {
875 /* Grow the opcode array when needed. */
876 opcode_array_size += 1024;
877 opcode_array = (struct opcode_hash_entry **)
878 xrealloc (opcode_array,
879 sizeof (*opcode_array) * opcode_array_size);
880 }
881
882 opcode_array[i] = (struct opcode_hash_entry *)
883 xmalloc (sizeof (struct opcode_hash_entry));
884 opcode_array[i]->next = NULL;
885 opcode_array[i]->name = xstrdup (name);
886 opcode_array[i]->opcode = xstrdup (str);
887 opcode_array[i]->lineno = lineno;
888 *hash_slot = opcode_array[i];
889 i++;
890 }
891 else
892 {
893 /* Append it to the existing one. */
894 entry = hash_slot;
895 while ((*entry) != NULL)
896 entry = &(*entry)->next;
897 *entry = (struct opcode_hash_entry *)
898 xmalloc (sizeof (struct opcode_hash_entry));
899 (*entry)->next = NULL;
900 (*entry)->name = (*hash_slot)->name;
901 (*entry)->opcode = xstrdup (str);
902 (*entry)->lineno = lineno;
903 }
904 }
905
906 /* Process opcode array. */
907 for (j = 0; j < i; j++)
908 {
909 for (next = opcode_array[j]; next; next = next->next)
910 {
911 name = next->name;
912 str = next->opcode;
913 lineno = next->lineno;
914 last = str + strlen (str);
915 output_i386_opcode (table, name, str, last, lineno);
916 }
917 }
918
919 fclose (fp);
920
921 fprintf (table, " { NULL, 0, 0, 0, 0,\n");
922
923 process_i386_cpu_flag (table, "0", 0, ",", " ", -1);
924
925 process_i386_opcode_modifier (table, "0", -1);
926
927 fprintf (table, " { ");
928 process_i386_operand_type (table, "0", 0, "\t ", -1);
929 fprintf (table, " } }\n");
930
931 fprintf (table, "};\n");
932 }
933
934 static void
935 process_i386_registers (FILE *table)
936 {
937 FILE *fp;
938 char buf[2048];
939 char *str, *p, *last;
940 char *reg_name, *reg_type, *reg_flags, *reg_num;
941 char *dw2_32_num, *dw2_64_num;
942 int lineno = 0;
943
944 filename = "i386-reg.tbl";
945 fp = fopen (filename, "r");
946 if (fp == NULL)
947 fail (_("can't find i386-reg.tbl for reading, errno = %s\n"),
948 xstrerror (errno));
949
950 fprintf (table, "\n/* i386 register table. */\n\n");
951 fprintf (table, "const reg_entry i386_regtab[] =\n{\n");
952
953 while (!feof (fp))
954 {
955 if (fgets (buf, sizeof (buf), fp) == NULL)
956 break;
957
958 lineno++;
959
960 p = remove_leading_whitespaces (buf);
961
962 /* Skip comments. */
963 str = strstr (p, "//");
964 if (str != NULL)
965 str[0] = '\0';
966
967 /* Remove trailing white spaces. */
968 remove_trailing_whitespaces (p);
969
970 switch (p[0])
971 {
972 case '#':
973 fprintf (table, "%s\n", p);
974 case '\0':
975 continue;
976 break;
977 default:
978 break;
979 }
980
981 last = p + strlen (p);
982
983 /* Find reg_name. */
984 reg_name = next_field (p, ',', &str, last);
985
986 /* Find reg_type. */
987 reg_type = next_field (str, ',', &str, last);
988
989 /* Find reg_flags. */
990 reg_flags = next_field (str, ',', &str, last);
991
992 /* Find reg_num. */
993 reg_num = next_field (str, ',', &str, last);
994
995 fprintf (table, " { \"%s\",\n ", reg_name);
996
997 process_i386_operand_type (table, reg_type, 0, "\t", lineno);
998
999 /* Find 32-bit Dwarf2 register number. */
1000 dw2_32_num = next_field (str, ',', &str, last);
1001
1002 /* Find 64-bit Dwarf2 register number. */
1003 dw2_64_num = next_field (str, ',', &str, last);
1004
1005 fprintf (table, ",\n %s, %s, { %s, %s } },\n",
1006 reg_flags, reg_num, dw2_32_num, dw2_64_num);
1007 }
1008
1009 fclose (fp);
1010
1011 fprintf (table, "};\n");
1012
1013 fprintf (table, "\nconst unsigned int i386_regtab_size = ARRAY_SIZE (i386_regtab);\n");
1014 }
1015
1016 static void
1017 process_i386_initializers (void)
1018 {
1019 unsigned int i;
1020 FILE *fp = fopen ("i386-init.h", "w");
1021 char *init;
1022
1023 if (fp == NULL)
1024 fail (_("can't create i386-init.h, errno = %s\n"),
1025 xstrerror (errno));
1026
1027 process_copyright (fp);
1028
1029 for (i = 0; i < ARRAY_SIZE (cpu_flag_init); i++)
1030 {
1031 fprintf (fp, "\n#define %s \\\n", cpu_flag_init[i].name);
1032 init = xstrdup (cpu_flag_init[i].init);
1033 process_i386_cpu_flag (fp, init, 1, "", " ", -1);
1034 free (init);
1035 }
1036
1037 for (i = 0; i < ARRAY_SIZE (operand_type_init); i++)
1038 {
1039 fprintf (fp, "\n\n#define %s \\\n ", operand_type_init[i].name);
1040 init = xstrdup (operand_type_init[i].init);
1041 process_i386_operand_type (fp, init, 1, " ", -1);
1042 free (init);
1043 }
1044 fprintf (fp, "\n");
1045
1046 fclose (fp);
1047 }
1048
1049 /* Program options. */
1050 #define OPTION_SRCDIR 200
1051
1052 struct option long_options[] =
1053 {
1054 {"srcdir", required_argument, NULL, OPTION_SRCDIR},
1055 {"debug", no_argument, NULL, 'd'},
1056 {"version", no_argument, NULL, 'V'},
1057 {"help", no_argument, NULL, 'h'},
1058 {0, no_argument, NULL, 0}
1059 };
1060
1061 static void
1062 print_version (void)
1063 {
1064 printf ("%s: version 1.0\n", program_name);
1065 xexit (0);
1066 }
1067
1068 static void
1069 usage (FILE * stream, int status)
1070 {
1071 fprintf (stream, "Usage: %s [-V | --version] [-d | --debug] [--srcdir=dirname] [--help]\n",
1072 program_name);
1073 xexit (status);
1074 }
1075
1076 int
1077 main (int argc, char **argv)
1078 {
1079 extern int chdir (char *);
1080 char *srcdir = NULL;
1081 int c;
1082 FILE *table;
1083
1084 program_name = *argv;
1085 xmalloc_set_program_name (program_name);
1086
1087 while ((c = getopt_long (argc, argv, "vVdh", long_options, 0)) != EOF)
1088 switch (c)
1089 {
1090 case OPTION_SRCDIR:
1091 srcdir = optarg;
1092 break;
1093 case 'V':
1094 case 'v':
1095 print_version ();
1096 break;
1097 case 'd':
1098 debug = 1;
1099 break;
1100 case 'h':
1101 case '?':
1102 usage (stderr, 0);
1103 default:
1104 case 0:
1105 break;
1106 }
1107
1108 if (optind != argc)
1109 usage (stdout, 1);
1110
1111 if (srcdir != NULL)
1112 if (chdir (srcdir) != 0)
1113 fail (_("unable to change directory to \"%s\", errno = %s\n"),
1114 srcdir, xstrerror (errno));
1115
1116 /* Check the unused bitfield in i386_cpu_flags. */
1117 #ifndef CpuUnused
1118 c = CpuNumOfBits - CpuMax - 1;
1119 if (c)
1120 fail (_("%d unused bits in i386_cpu_flags.\n"), c);
1121 #endif
1122
1123 /* Check the unused bitfield in i386_operand_type. */
1124 #ifndef OTUnused
1125 c = OTNumOfBits - OTMax - 1;
1126 if (c)
1127 fail (_("%d unused bits in i386_operand_type.\n"), c);
1128 #endif
1129
1130 qsort (cpu_flags, ARRAY_SIZE (cpu_flags), sizeof (cpu_flags [0]),
1131 compare);
1132
1133 qsort (opcode_modifiers, ARRAY_SIZE (opcode_modifiers),
1134 sizeof (opcode_modifiers [0]), compare);
1135
1136 qsort (operand_types, ARRAY_SIZE (operand_types),
1137 sizeof (operand_types [0]), compare);
1138
1139 table = fopen ("i386-tbl.h", "w");
1140 if (table == NULL)
1141 fail (_("can't create i386-tbl.h, errno = %s\n"),
1142 xstrerror (errno));
1143
1144 process_copyright (table);
1145
1146 process_i386_opcodes (table);
1147 process_i386_registers (table);
1148 process_i386_initializers ();
1149
1150 fclose (table);
1151
1152 exit (0);
1153 }
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