Enable Intel AVX512_BITALG instructions.
[deliverable/binutils-gdb.git] / opcodes / i386-gen.c
1 /* Copyright (C) 2007-2017 Free Software Foundation, Inc.
2
3 This file is part of the GNU opcodes library.
4
5 This library is free software; you can redistribute it and/or modify
6 it under the terms of the GNU General Public License as published by
7 the Free Software Foundation; either version 3, or (at your option)
8 any later version.
9
10 It is distributed in the hope that it will be useful, but WITHOUT
11 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
12 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
13 License for more details.
14
15 You should have received a copy of the GNU General Public License
16 along with this program; if not, write to the Free Software
17 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
18 MA 02110-1301, USA. */
19
20 #include "sysdep.h"
21 #include <stdio.h>
22 #include <errno.h>
23 #include "getopt.h"
24 #include "libiberty.h"
25 #include "hashtab.h"
26 #include "safe-ctype.h"
27
28 #include "i386-opc.h"
29
30 #include <libintl.h>
31 #define _(String) gettext (String)
32
33 static const char *program_name = NULL;
34 static int debug = 0;
35
36 typedef struct initializer
37 {
38 const char *name;
39 const char *init;
40 } initializer;
41
42 static initializer cpu_flag_init[] =
43 {
44 { "CPU_UNKNOWN_FLAGS",
45 "~(CpuL1OM|CpuK1OM)" },
46 { "CPU_GENERIC32_FLAGS",
47 "Cpu186|Cpu286|Cpu386" },
48 { "CPU_GENERIC64_FLAGS",
49 "CPU_PENTIUMPRO_FLAGS|CpuClflush|CpuSYSCALL|CPU_MMX_FLAGS|CPU_SSE2_FLAGS|CpuLM" },
50 { "CPU_NONE_FLAGS",
51 "0" },
52 { "CPU_I186_FLAGS",
53 "Cpu186" },
54 { "CPU_I286_FLAGS",
55 "CPU_I186_FLAGS|Cpu286" },
56 { "CPU_I386_FLAGS",
57 "CPU_I286_FLAGS|Cpu386" },
58 { "CPU_I486_FLAGS",
59 "CPU_I386_FLAGS|Cpu486" },
60 { "CPU_I586_FLAGS",
61 "CPU_I486_FLAGS|CPU_387_FLAGS|Cpu586" },
62 { "CPU_I686_FLAGS",
63 "CPU_I586_FLAGS|Cpu686|Cpu687" },
64 { "CPU_PENTIUMPRO_FLAGS",
65 "CPU_I686_FLAGS|CpuNop" },
66 { "CPU_P2_FLAGS",
67 "CPU_PENTIUMPRO_FLAGS|CPU_MMX_FLAGS" },
68 { "CPU_P3_FLAGS",
69 "CPU_P2_FLAGS|CPU_SSE_FLAGS" },
70 { "CPU_P4_FLAGS",
71 "CPU_P3_FLAGS|CpuClflush|CPU_SSE2_FLAGS" },
72 { "CPU_NOCONA_FLAGS",
73 "CPU_GENERIC64_FLAGS|CpuFISTTP|CPU_SSE3_FLAGS|CpuCX16" },
74 { "CPU_CORE_FLAGS",
75 "CPU_P4_FLAGS|CpuFISTTP|CPU_SSE3_FLAGS|CpuCX16" },
76 { "CPU_CORE2_FLAGS",
77 "CPU_NOCONA_FLAGS|CPU_SSSE3_FLAGS" },
78 { "CPU_COREI7_FLAGS",
79 "CPU_CORE2_FLAGS|CPU_SSE4_2_FLAGS|CpuRdtscp" },
80 { "CPU_K6_FLAGS",
81 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586|CpuSYSCALL|Cpu387|CPU_MMX_FLAGS" },
82 { "CPU_K6_2_FLAGS",
83 "CPU_K6_FLAGS|Cpu3dnow" },
84 { "CPU_ATHLON_FLAGS",
85 "CPU_K6_2_FLAGS|Cpu686|Cpu687|CpuNop|Cpu3dnowA" },
86 { "CPU_K8_FLAGS",
87 "CPU_ATHLON_FLAGS|CpuRdtscp|CPU_SSE2_FLAGS|CpuLM" },
88 { "CPU_AMDFAM10_FLAGS",
89 "CPU_K8_FLAGS|CpuFISTTP|CPU_SSE4A_FLAGS|CpuABM" },
90 { "CPU_BDVER1_FLAGS",
91 "CPU_GENERIC64_FLAGS|CpuFISTTP|CpuRdtscp|CpuCX16|CPU_SSE4_2_FLAGS|CpuSSE4A|CpuABM|CpuFMA4|CpuXOP|CpuLWP|CpuSVME|CpuXsave|CpuAES|CpuAVX|CpuPCLMUL|CpuLZCNT|CpuPRFCHW" },
92 { "CPU_BDVER2_FLAGS",
93 "CPU_BDVER1_FLAGS|CpuFMA|CpuBMI|CpuTBM|CpuF16C" },
94 { "CPU_BDVER3_FLAGS",
95 "CPU_BDVER2_FLAGS|CpuXsaveopt|CpuFSGSBase" },
96 { "CPU_BDVER4_FLAGS",
97 "CPU_BDVER3_FLAGS|CpuAVX2|CpuMovbe|CpuBMI2|CpuRdRnd|CpuMWAITX" },
98 { "CPU_ZNVER1_FLAGS",
99 "CPU_GENERIC64_FLAGS|CpuFISTTP|CpuRdtscp|CpuCX16|CPU_SSE4_2_FLAGS|CpuSSE4A|CpuABM|CpuSVME|CpuXsave|CpuAES|CpuAVX|CpuPCLMUL|CpuLZCNT|CpuPRFCHW|CpuFMA|CpuBMI|CpuF16C|CpuXsaveopt|CpuFSGSBase|CpuAVX2|CpuMovbe|CpuBMI2|CpuRdRnd|CpuADX|CpuRdSeed|CpuSMAP|CpuSHA|CpuXSAVEC|CpuXSAVES|CpuClflushOpt|CpuCLZERO|CpuMWAITX" },
100 { "CPU_BTVER1_FLAGS",
101 "CPU_GENERIC64_FLAGS|CpuFISTTP|CpuCX16|CpuRdtscp|CPU_SSSE3_FLAGS|CpuSSE4A|CpuABM|CpuPRFCHW|CpuCX16|CpuClflush|CpuFISTTP|CpuSVME|CpuLZCNT" },
102 { "CPU_BTVER2_FLAGS",
103 "CPU_BTVER1_FLAGS|CPU_SSE4_2_FLAGS|CpuBMI|CpuF16C|CpuAES|CpuPCLMUL|CpuAVX|CpuMovbe|CpuXsave|CpuXsaveopt|CpuPRFCHW" },
104 { "CPU_8087_FLAGS",
105 "Cpu8087" },
106 { "CPU_287_FLAGS",
107 "CPU_8087_FLAGS|Cpu287" },
108 { "CPU_387_FLAGS",
109 "CPU_287_FLAGS|Cpu387" },
110 { "CPU_687_FLAGS",
111 "CPU_387_FLAGS|Cpu687" },
112 { "CPU_CLFLUSH_FLAGS",
113 "CpuClflush" },
114 { "CPU_NOP_FLAGS",
115 "CpuNop" },
116 { "CPU_SYSCALL_FLAGS",
117 "CpuSYSCALL" },
118 { "CPU_MMX_FLAGS",
119 "CpuRegMMX|CpuMMX" },
120 { "CPU_SSE_FLAGS",
121 "CpuRegXMM|CpuSSE" },
122 { "CPU_SSE2_FLAGS",
123 "CPU_SSE_FLAGS|CpuSSE2" },
124 { "CPU_SSE3_FLAGS",
125 "CPU_SSE2_FLAGS|CpuSSE3" },
126 { "CPU_SSSE3_FLAGS",
127 "CPU_SSE3_FLAGS|CpuSSSE3" },
128 { "CPU_SSE4_1_FLAGS",
129 "CPU_SSSE3_FLAGS|CpuSSE4_1" },
130 { "CPU_SSE4_2_FLAGS",
131 "CPU_SSE4_1_FLAGS|CpuSSE4_2" },
132 { "CPU_VMX_FLAGS",
133 "CpuVMX" },
134 { "CPU_SMX_FLAGS",
135 "CpuSMX" },
136 { "CPU_XSAVE_FLAGS",
137 "CpuXsave" },
138 { "CPU_XSAVEOPT_FLAGS",
139 "CPU_XSAVE_FLAGS|CpuXsaveopt" },
140 { "CPU_AES_FLAGS",
141 "CPU_SSE2_FLAGS|CpuAES" },
142 { "CPU_PCLMUL_FLAGS",
143 "CPU_SSE2_FLAGS|CpuPCLMUL" },
144 { "CPU_FMA_FLAGS",
145 "CPU_AVX_FLAGS|CpuFMA" },
146 { "CPU_FMA4_FLAGS",
147 "CPU_AVX_FLAGS|CpuFMA4" },
148 { "CPU_XOP_FLAGS",
149 "CPU_SSE4A_FLAGS|CPU_FMA4_FLAGS|CpuXOP" },
150 { "CPU_LWP_FLAGS",
151 "CpuLWP" },
152 { "CPU_BMI_FLAGS",
153 "CpuBMI" },
154 { "CPU_TBM_FLAGS",
155 "CpuTBM" },
156 { "CPU_MOVBE_FLAGS",
157 "CpuMovbe" },
158 { "CPU_CX16_FLAGS",
159 "CpuCX16" },
160 { "CPU_RDTSCP_FLAGS",
161 "CpuRdtscp" },
162 { "CPU_EPT_FLAGS",
163 "CpuEPT" },
164 { "CPU_FSGSBASE_FLAGS",
165 "CpuFSGSBase" },
166 { "CPU_RDRND_FLAGS",
167 "CpuRdRnd" },
168 { "CPU_F16C_FLAGS",
169 "CPU_AVX_FLAGS|CpuF16C" },
170 { "CPU_BMI2_FLAGS",
171 "CpuBMI2" },
172 { "CPU_LZCNT_FLAGS",
173 "CpuLZCNT" },
174 { "CPU_HLE_FLAGS",
175 "CpuHLE" },
176 { "CPU_RTM_FLAGS",
177 "CpuRTM" },
178 { "CPU_INVPCID_FLAGS",
179 "CpuINVPCID" },
180 { "CPU_VMFUNC_FLAGS",
181 "CpuVMFUNC" },
182 { "CPU_3DNOW_FLAGS",
183 "CPU_MMX_FLAGS|Cpu3dnow" },
184 { "CPU_3DNOWA_FLAGS",
185 "CPU_3DNOW_FLAGS|Cpu3dnowA" },
186 { "CPU_PADLOCK_FLAGS",
187 "CpuPadLock" },
188 { "CPU_SVME_FLAGS",
189 "CpuSVME" },
190 { "CPU_SSE4A_FLAGS",
191 "CPU_SSE3_FLAGS|CpuSSE4a" },
192 { "CPU_ABM_FLAGS",
193 "CpuABM" },
194 { "CPU_AVX_FLAGS",
195 "CPU_SSE4_2_FLAGS|CpuRegYMM|CpuAVX" },
196 { "CPU_AVX2_FLAGS",
197 "CPU_AVX_FLAGS|CpuAVX2" },
198 /* Don't use CPU_AVX2_FLAGS on CPU_AVX512F_FLAGS since AVX512F doesn't
199 support YMM registers. */
200 { "CPU_AVX512F_FLAGS",
201 "CpuVREX|CPU_SSE4_2_FLAGS|CpuRegZMM|CpuRegMask|CpuAVX|CpuAVX2|CpuAVX512F" },
202 { "CPU_AVX512CD_FLAGS",
203 "CPU_AVX512F_FLAGS|CpuAVX512CD" },
204 { "CPU_AVX512ER_FLAGS",
205 "CPU_AVX512F_FLAGS|CpuAVX512ER" },
206 { "CPU_AVX512PF_FLAGS",
207 "CPU_AVX512F_FLAGS|CpuAVX512PF" },
208 { "CPU_AVX512DQ_FLAGS",
209 "CPU_AVX512F_FLAGS|CpuAVX512DQ" },
210 { "CPU_AVX512BW_FLAGS",
211 "CPU_AVX512F_FLAGS|CpuAVX512BW" },
212 { "CPU_AVX512VL_FLAGS",
213 /* Use CPU_AVX2_FLAGS on CPU_AVX512VL_FLAGS since AVX512VL supports YMM
214 registers. */
215 "CPU_AVX512F_FLAGS|CPU_AVX2_FLAGS|CpuAVX512VL" },
216 { "CPU_AVX512IFMA_FLAGS",
217 "CPU_AVX512F_FLAGS|CpuAVX512IFMA" },
218 { "CPU_AVX512VBMI_FLAGS",
219 "CPU_AVX512F_FLAGS|CpuAVX512VBMI" },
220 { "CPU_AVX512_4FMAPS_FLAGS",
221 "CPU_AVX512F_FLAGS|CpuAVX512_4FMAPS" },
222 { "CPU_AVX512_4VNNIW_FLAGS",
223 "CPU_AVX512F_FLAGS|CpuAVX512_4VNNIW" },
224 { "CPU_AVX512_VPOPCNTDQ_FLAGS",
225 "CPU_AVX512F_FLAGS|CpuAVX512_VPOPCNTDQ" },
226 { "CPU_AVX512_VBMI2_FLAGS",
227 "CPU_AVX512F_FLAGS|CpuAVX512_VBMI2" },
228 { "CPU_AVX512_VNNI_FLAGS",
229 "CPU_AVX512F_FLAGS|CpuAVX512_VNNI" },
230 { "CPU_AVX512_BITALG_FLAGS",
231 "CPU_AVX512F_FLAGS|CpuAVX512_BITALG" },
232 { "CPU_L1OM_FLAGS",
233 "unknown" },
234 { "CPU_K1OM_FLAGS",
235 "unknown" },
236 { "CPU_IAMCU_FLAGS",
237 "Cpu186|Cpu286|Cpu386|Cpu486|Cpu586" },
238 { "CPU_ADX_FLAGS",
239 "CpuADX" },
240 { "CPU_RDSEED_FLAGS",
241 "CpuRdSeed" },
242 { "CPU_PRFCHW_FLAGS",
243 "CpuPRFCHW" },
244 { "CPU_SMAP_FLAGS",
245 "CpuSMAP" },
246 { "CPU_MPX_FLAGS",
247 "CpuMPX" },
248 { "CPU_SHA_FLAGS",
249 "CPU_SSE2_FLAGS|CpuSHA" },
250 { "CPU_CLFLUSHOPT_FLAGS",
251 "CpuClflushOpt" },
252 { "CPU_XSAVES_FLAGS",
253 "CPU_XSAVE_FLAGS|CpuXSAVES" },
254 { "CPU_XSAVEC_FLAGS",
255 "CPU_XSAVE_FLAGS|CpuXSAVEC" },
256 { "CPU_PREFETCHWT1_FLAGS",
257 "CpuPREFETCHWT1" },
258 { "CPU_SE1_FLAGS",
259 "CpuSE1" },
260 { "CPU_CLWB_FLAGS",
261 "CpuCLWB" },
262 { "CPU_CLZERO_FLAGS",
263 "CpuCLZERO" },
264 { "CPU_MWAITX_FLAGS",
265 "CpuMWAITX" },
266 { "CPU_OSPKE_FLAGS",
267 "CpuOSPKE" },
268 { "CPU_RDPID_FLAGS",
269 "CpuRDPID" },
270 { "CPU_PTWRITE_FLAGS",
271 "CpuPTWRITE" },
272 { "CPU_CET_FLAGS",
273 "CpuCET" },
274 { "CPU_GFNI_FLAGS",
275 "CpuGFNI" },
276 { "CPU_VAES_FLAGS",
277 "CpuVAES" },
278 { "CPU_VPCLMULQDQ_FLAGS",
279 "CpuVPCLMULQDQ" },
280 { "CPU_ANY_X87_FLAGS",
281 "CPU_ANY_287_FLAGS|Cpu8087" },
282 { "CPU_ANY_287_FLAGS",
283 "CPU_ANY_387_FLAGS|Cpu287" },
284 { "CPU_ANY_387_FLAGS",
285 "CPU_ANY_687_FLAGS|Cpu387" },
286 { "CPU_ANY_687_FLAGS",
287 "Cpu687|CpuFISTTP" },
288 { "CPU_ANY_MMX_FLAGS",
289 "CPU_3DNOWA_FLAGS" },
290 { "CPU_ANY_SSE_FLAGS",
291 "CPU_ANY_SSE2_FLAGS|CpuSSE|CpuSSE4a" },
292 { "CPU_ANY_SSE2_FLAGS",
293 "CPU_ANY_SSE3_FLAGS|CpuSSE2" },
294 { "CPU_ANY_SSE3_FLAGS",
295 "CPU_ANY_SSSE3_FLAGS|CpuSSE3" },
296 { "CPU_ANY_SSSE3_FLAGS",
297 "CPU_ANY_SSE4_1_FLAGS|CpuSSSE3" },
298 { "CPU_ANY_SSE4_1_FLAGS",
299 "CPU_ANY_SSE4_2_FLAGS|CpuSSE4_1" },
300 { "CPU_ANY_SSE4_2_FLAGS",
301 "CpuSSE4_2" },
302 { "CPU_ANY_AVX_FLAGS",
303 "CPU_ANY_AVX2_FLAGS|CpuF16C|CpuFMA|CpuFMA4|CpuXOP|CpuAVX" },
304 { "CPU_ANY_AVX2_FLAGS",
305 "CpuAVX2" },
306 { "CPU_ANY_AVX512F_FLAGS",
307 "CpuVREX|CpuRegZMM|CpuRegMask|CpuAVX512CD|CpuAVX512ER|CpuAVX512PF|CpuAVX512DQ|CpuAVX512BW|CpuAVX512VL|CpuAVX512IFMA|CpuAVX512VBMI|CpuAVX512_4FMAPS|CpuAVX512_4VNNIW|CpuAVX512_VPOPCNTDQ|CpuAVX512_VBMI2|CpuAVX512_VNNI|CpuAVX512_BITALG|CpuAVX512F" },
308 { "CPU_ANY_AVX512CD_FLAGS",
309 "CpuAVX512CD" },
310 { "CPU_ANY_AVX512ER_FLAGS",
311 "CpuAVX512ER" },
312 { "CPU_ANY_AVX512PF_FLAGS",
313 "CpuAVX512PF" },
314 { "CPU_ANY_AVX512DQ_FLAGS",
315 "CpuAVX512DQ" },
316 { "CPU_ANY_AVX512BW_FLAGS",
317 "CpuAVX512BW" },
318 { "CPU_ANY_AVX512VL_FLAGS",
319 "CpuAVX512VL" },
320 { "CPU_ANY_AVX512IFMA_FLAGS",
321 "CpuAVX512IFMA" },
322 { "CPU_ANY_AVX512VBMI_FLAGS",
323 "CpuAVX512VBMI" },
324 { "CPU_ANY_AVX512_4FMAPS_FLAGS",
325 "CpuAVX512_4FMAPS" },
326 { "CPU_ANY_AVX512_4VNNIW_FLAGS",
327 "CpuAVX512_4VNNIW" },
328 { "CPU_ANY_AVX512_VPOPCNTDQ_FLAGS",
329 "CpuAVX512_VPOPCNTDQ" },
330 { "CPU_ANY_AVX512_VBMI2_FLAGS",
331 "CpuAVX512_VBMI2" },
332 { "CPU_ANY_AVX512_VNNI_FLAGS",
333 "CpuAVX512_VNNI" },
334 { "CPU_ANY_AVX512_BITALG_FLAGS",
335 "CpuAVX512_BITALG" },
336 };
337
338 static initializer operand_type_init[] =
339 {
340 { "OPERAND_TYPE_NONE",
341 "0" },
342 { "OPERAND_TYPE_REG8",
343 "Reg8" },
344 { "OPERAND_TYPE_REG16",
345 "Reg16" },
346 { "OPERAND_TYPE_REG32",
347 "Reg32" },
348 { "OPERAND_TYPE_REG64",
349 "Reg64" },
350 { "OPERAND_TYPE_IMM1",
351 "Imm1" },
352 { "OPERAND_TYPE_IMM8",
353 "Imm8" },
354 { "OPERAND_TYPE_IMM8S",
355 "Imm8S" },
356 { "OPERAND_TYPE_IMM16",
357 "Imm16" },
358 { "OPERAND_TYPE_IMM32",
359 "Imm32" },
360 { "OPERAND_TYPE_IMM32S",
361 "Imm32S" },
362 { "OPERAND_TYPE_IMM64",
363 "Imm64" },
364 { "OPERAND_TYPE_BASEINDEX",
365 "BaseIndex" },
366 { "OPERAND_TYPE_DISP8",
367 "Disp8" },
368 { "OPERAND_TYPE_DISP16",
369 "Disp16" },
370 { "OPERAND_TYPE_DISP32",
371 "Disp32" },
372 { "OPERAND_TYPE_DISP32S",
373 "Disp32S" },
374 { "OPERAND_TYPE_DISP64",
375 "Disp64" },
376 { "OPERAND_TYPE_INOUTPORTREG",
377 "InOutPortReg" },
378 { "OPERAND_TYPE_SHIFTCOUNT",
379 "ShiftCount" },
380 { "OPERAND_TYPE_CONTROL",
381 "Control" },
382 { "OPERAND_TYPE_TEST",
383 "Test" },
384 { "OPERAND_TYPE_DEBUG",
385 "FloatReg" },
386 { "OPERAND_TYPE_FLOATREG",
387 "FloatReg" },
388 { "OPERAND_TYPE_FLOATACC",
389 "FloatAcc" },
390 { "OPERAND_TYPE_SREG2",
391 "SReg2" },
392 { "OPERAND_TYPE_SREG3",
393 "SReg3" },
394 { "OPERAND_TYPE_ACC",
395 "Acc" },
396 { "OPERAND_TYPE_JUMPABSOLUTE",
397 "JumpAbsolute" },
398 { "OPERAND_TYPE_REGMMX",
399 "RegMMX" },
400 { "OPERAND_TYPE_REGXMM",
401 "RegXMM" },
402 { "OPERAND_TYPE_REGYMM",
403 "RegYMM" },
404 { "OPERAND_TYPE_REGZMM",
405 "RegZMM" },
406 { "OPERAND_TYPE_REGMASK",
407 "RegMask" },
408 { "OPERAND_TYPE_ESSEG",
409 "EsSeg" },
410 { "OPERAND_TYPE_ACC32",
411 "Reg32|Acc|Dword" },
412 { "OPERAND_TYPE_ACC64",
413 "Reg64|Acc|Qword" },
414 { "OPERAND_TYPE_INOUTPORTREG",
415 "InOutPortReg" },
416 { "OPERAND_TYPE_REG16_INOUTPORTREG",
417 "Reg16|InOutPortReg" },
418 { "OPERAND_TYPE_DISP16_32",
419 "Disp16|Disp32" },
420 { "OPERAND_TYPE_ANYDISP",
421 "Disp8|Disp16|Disp32|Disp32S|Disp64" },
422 { "OPERAND_TYPE_IMM16_32",
423 "Imm16|Imm32" },
424 { "OPERAND_TYPE_IMM16_32S",
425 "Imm16|Imm32S" },
426 { "OPERAND_TYPE_IMM16_32_32S",
427 "Imm16|Imm32|Imm32S" },
428 { "OPERAND_TYPE_IMM32_64",
429 "Imm32|Imm64" },
430 { "OPERAND_TYPE_IMM32_32S_DISP32",
431 "Imm32|Imm32S|Disp32" },
432 { "OPERAND_TYPE_IMM64_DISP64",
433 "Imm64|Disp64" },
434 { "OPERAND_TYPE_IMM32_32S_64_DISP32",
435 "Imm32|Imm32S|Imm64|Disp32" },
436 { "OPERAND_TYPE_IMM32_32S_64_DISP32_64",
437 "Imm32|Imm32S|Imm64|Disp32|Disp64" },
438 { "OPERAND_TYPE_VEC_IMM4",
439 "Vec_Imm4" },
440 { "OPERAND_TYPE_REGBND",
441 "RegBND" },
442 { "OPERAND_TYPE_VEC_DISP8",
443 "Vec_Disp8" },
444 };
445
446 typedef struct bitfield
447 {
448 int position;
449 int value;
450 const char *name;
451 } bitfield;
452
453 #define BITFIELD(n) { n, 0, #n }
454
455 static bitfield cpu_flags[] =
456 {
457 BITFIELD (Cpu186),
458 BITFIELD (Cpu286),
459 BITFIELD (Cpu386),
460 BITFIELD (Cpu486),
461 BITFIELD (Cpu586),
462 BITFIELD (Cpu686),
463 BITFIELD (CpuClflush),
464 BITFIELD (CpuNop),
465 BITFIELD (CpuSYSCALL),
466 BITFIELD (Cpu8087),
467 BITFIELD (Cpu287),
468 BITFIELD (Cpu387),
469 BITFIELD (Cpu687),
470 BITFIELD (CpuFISTTP),
471 BITFIELD (CpuMMX),
472 BITFIELD (CpuSSE),
473 BITFIELD (CpuSSE2),
474 BITFIELD (CpuSSE3),
475 BITFIELD (CpuSSSE3),
476 BITFIELD (CpuSSE4_1),
477 BITFIELD (CpuSSE4_2),
478 BITFIELD (CpuAVX),
479 BITFIELD (CpuAVX2),
480 BITFIELD (CpuAVX512F),
481 BITFIELD (CpuAVX512CD),
482 BITFIELD (CpuAVX512ER),
483 BITFIELD (CpuAVX512PF),
484 BITFIELD (CpuAVX512VL),
485 BITFIELD (CpuAVX512DQ),
486 BITFIELD (CpuAVX512BW),
487 BITFIELD (CpuL1OM),
488 BITFIELD (CpuK1OM),
489 BITFIELD (CpuIAMCU),
490 BITFIELD (CpuSSE4a),
491 BITFIELD (Cpu3dnow),
492 BITFIELD (Cpu3dnowA),
493 BITFIELD (CpuPadLock),
494 BITFIELD (CpuSVME),
495 BITFIELD (CpuVMX),
496 BITFIELD (CpuSMX),
497 BITFIELD (CpuABM),
498 BITFIELD (CpuXsave),
499 BITFIELD (CpuXsaveopt),
500 BITFIELD (CpuAES),
501 BITFIELD (CpuPCLMUL),
502 BITFIELD (CpuFMA),
503 BITFIELD (CpuFMA4),
504 BITFIELD (CpuXOP),
505 BITFIELD (CpuLWP),
506 BITFIELD (CpuBMI),
507 BITFIELD (CpuTBM),
508 BITFIELD (CpuLM),
509 BITFIELD (CpuMovbe),
510 BITFIELD (CpuCX16),
511 BITFIELD (CpuEPT),
512 BITFIELD (CpuRdtscp),
513 BITFIELD (CpuFSGSBase),
514 BITFIELD (CpuRdRnd),
515 BITFIELD (CpuF16C),
516 BITFIELD (CpuBMI2),
517 BITFIELD (CpuLZCNT),
518 BITFIELD (CpuHLE),
519 BITFIELD (CpuRTM),
520 BITFIELD (CpuINVPCID),
521 BITFIELD (CpuVMFUNC),
522 BITFIELD (CpuRDSEED),
523 BITFIELD (CpuADX),
524 BITFIELD (CpuPRFCHW),
525 BITFIELD (CpuSMAP),
526 BITFIELD (CpuSHA),
527 BITFIELD (CpuVREX),
528 BITFIELD (CpuClflushOpt),
529 BITFIELD (CpuXSAVES),
530 BITFIELD (CpuXSAVEC),
531 BITFIELD (CpuPREFETCHWT1),
532 BITFIELD (CpuSE1),
533 BITFIELD (CpuCLWB),
534 BITFIELD (Cpu64),
535 BITFIELD (CpuNo64),
536 BITFIELD (CpuMPX),
537 BITFIELD (CpuAVX512IFMA),
538 BITFIELD (CpuAVX512VBMI),
539 BITFIELD (CpuAVX512_4FMAPS),
540 BITFIELD (CpuAVX512_4VNNIW),
541 BITFIELD (CpuAVX512_VPOPCNTDQ),
542 BITFIELD (CpuAVX512_VBMI2),
543 BITFIELD (CpuAVX512_VNNI),
544 BITFIELD (CpuAVX512_BITALG),
545 BITFIELD (CpuMWAITX),
546 BITFIELD (CpuCLZERO),
547 BITFIELD (CpuOSPKE),
548 BITFIELD (CpuRDPID),
549 BITFIELD (CpuPTWRITE),
550 BITFIELD (CpuCET),
551 BITFIELD (CpuGFNI),
552 BITFIELD (CpuVAES),
553 BITFIELD (CpuVPCLMULQDQ),
554 BITFIELD (CpuRegMMX),
555 BITFIELD (CpuRegXMM),
556 BITFIELD (CpuRegYMM),
557 BITFIELD (CpuRegZMM),
558 BITFIELD (CpuRegMask),
559 #ifdef CpuUnused
560 BITFIELD (CpuUnused),
561 #endif
562 };
563
564 static bitfield opcode_modifiers[] =
565 {
566 BITFIELD (D),
567 BITFIELD (W),
568 BITFIELD (Load),
569 BITFIELD (Modrm),
570 BITFIELD (ShortForm),
571 BITFIELD (Jump),
572 BITFIELD (JumpDword),
573 BITFIELD (JumpByte),
574 BITFIELD (JumpInterSegment),
575 BITFIELD (FloatMF),
576 BITFIELD (FloatR),
577 BITFIELD (FloatD),
578 BITFIELD (Size16),
579 BITFIELD (Size32),
580 BITFIELD (Size64),
581 BITFIELD (CheckRegSize),
582 BITFIELD (IgnoreSize),
583 BITFIELD (DefaultSize),
584 BITFIELD (No_bSuf),
585 BITFIELD (No_wSuf),
586 BITFIELD (No_lSuf),
587 BITFIELD (No_sSuf),
588 BITFIELD (No_qSuf),
589 BITFIELD (No_ldSuf),
590 BITFIELD (FWait),
591 BITFIELD (IsString),
592 BITFIELD (BNDPrefixOk),
593 BITFIELD (NoTrackPrefixOk),
594 BITFIELD (IsLockable),
595 BITFIELD (RegKludge),
596 BITFIELD (FirstXmm0),
597 BITFIELD (Implicit1stXmm0),
598 BITFIELD (RepPrefixOk),
599 BITFIELD (HLEPrefixOk),
600 BITFIELD (ToDword),
601 BITFIELD (ToQword),
602 BITFIELD (AddrPrefixOp0),
603 BITFIELD (IsPrefix),
604 BITFIELD (ImmExt),
605 BITFIELD (NoRex64),
606 BITFIELD (Rex64),
607 BITFIELD (Ugh),
608 BITFIELD (Vex),
609 BITFIELD (VexVVVV),
610 BITFIELD (VexW),
611 BITFIELD (VexOpcode),
612 BITFIELD (VexSources),
613 BITFIELD (VexImmExt),
614 BITFIELD (VecSIB),
615 BITFIELD (SSE2AVX),
616 BITFIELD (NoAVX),
617 BITFIELD (EVex),
618 BITFIELD (Masking),
619 BITFIELD (VecESize),
620 BITFIELD (Broadcast),
621 BITFIELD (StaticRounding),
622 BITFIELD (SAE),
623 BITFIELD (Disp8MemShift),
624 BITFIELD (NoDefMask),
625 BITFIELD (ImplicitQuadGroup),
626 BITFIELD (OldGcc),
627 BITFIELD (ATTMnemonic),
628 BITFIELD (ATTSyntax),
629 BITFIELD (IntelSyntax),
630 BITFIELD (AMD64),
631 BITFIELD (Intel64),
632 };
633
634 static bitfield operand_types[] =
635 {
636 BITFIELD (Reg8),
637 BITFIELD (Reg16),
638 BITFIELD (Reg32),
639 BITFIELD (Reg64),
640 BITFIELD (FloatReg),
641 BITFIELD (RegMMX),
642 BITFIELD (RegXMM),
643 BITFIELD (RegYMM),
644 BITFIELD (RegZMM),
645 BITFIELD (RegMask),
646 BITFIELD (Imm1),
647 BITFIELD (Imm8),
648 BITFIELD (Imm8S),
649 BITFIELD (Imm16),
650 BITFIELD (Imm32),
651 BITFIELD (Imm32S),
652 BITFIELD (Imm64),
653 BITFIELD (BaseIndex),
654 BITFIELD (Disp8),
655 BITFIELD (Disp16),
656 BITFIELD (Disp32),
657 BITFIELD (Disp32S),
658 BITFIELD (Disp64),
659 BITFIELD (InOutPortReg),
660 BITFIELD (ShiftCount),
661 BITFIELD (Control),
662 BITFIELD (Debug),
663 BITFIELD (Test),
664 BITFIELD (SReg2),
665 BITFIELD (SReg3),
666 BITFIELD (Acc),
667 BITFIELD (FloatAcc),
668 BITFIELD (JumpAbsolute),
669 BITFIELD (EsSeg),
670 BITFIELD (RegMem),
671 BITFIELD (Mem),
672 BITFIELD (Byte),
673 BITFIELD (Word),
674 BITFIELD (Dword),
675 BITFIELD (Fword),
676 BITFIELD (Qword),
677 BITFIELD (Tbyte),
678 BITFIELD (Xmmword),
679 BITFIELD (Ymmword),
680 BITFIELD (Zmmword),
681 BITFIELD (Unspecified),
682 BITFIELD (Anysize),
683 BITFIELD (Vec_Imm4),
684 BITFIELD (RegBND),
685 BITFIELD (Vec_Disp8),
686 #ifdef OTUnused
687 BITFIELD (OTUnused),
688 #endif
689 };
690
691 static const char *filename;
692
693 static int
694 compare (const void *x, const void *y)
695 {
696 const bitfield *xp = (const bitfield *) x;
697 const bitfield *yp = (const bitfield *) y;
698 return xp->position - yp->position;
699 }
700
701 static void
702 fail (const char *message, ...)
703 {
704 va_list args;
705
706 va_start (args, message);
707 fprintf (stderr, _("%s: Error: "), program_name);
708 vfprintf (stderr, message, args);
709 va_end (args);
710 xexit (1);
711 }
712
713 static void
714 process_copyright (FILE *fp)
715 {
716 fprintf (fp, "/* This file is automatically generated by i386-gen. Do not edit! */\n\
717 /* Copyright (C) 2007-2017 Free Software Foundation, Inc.\n\
718 \n\
719 This file is part of the GNU opcodes library.\n\
720 \n\
721 This library is free software; you can redistribute it and/or modify\n\
722 it under the terms of the GNU General Public License as published by\n\
723 the Free Software Foundation; either version 3, or (at your option)\n\
724 any later version.\n\
725 \n\
726 It is distributed in the hope that it will be useful, but WITHOUT\n\
727 ANY WARRANTY; without even the implied warranty of MERCHANTABILITY\n\
728 or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public\n\
729 License for more details.\n\
730 \n\
731 You should have received a copy of the GNU General Public License\n\
732 along with this program; if not, write to the Free Software\n\
733 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,\n\
734 MA 02110-1301, USA. */\n");
735 }
736
737 /* Remove leading white spaces. */
738
739 static char *
740 remove_leading_whitespaces (char *str)
741 {
742 while (ISSPACE (*str))
743 str++;
744 return str;
745 }
746
747 /* Remove trailing white spaces. */
748
749 static void
750 remove_trailing_whitespaces (char *str)
751 {
752 size_t last = strlen (str);
753
754 if (last == 0)
755 return;
756
757 do
758 {
759 last--;
760 if (ISSPACE (str [last]))
761 str[last] = '\0';
762 else
763 break;
764 }
765 while (last != 0);
766 }
767
768 /* Find next field separated by SEP and terminate it. Return a
769 pointer to the one after it. */
770
771 static char *
772 next_field (char *str, char sep, char **next, char *last)
773 {
774 char *p;
775
776 p = remove_leading_whitespaces (str);
777 for (str = p; *str != sep && *str != '\0'; str++);
778
779 *str = '\0';
780 remove_trailing_whitespaces (p);
781
782 *next = str + 1;
783
784 if (p >= last)
785 abort ();
786
787 return p;
788 }
789
790 static void set_bitfield (char *, bitfield *, int, unsigned int, int);
791
792 static int
793 set_bitfield_from_cpu_flag_init (char *f, bitfield *array,
794 int value, unsigned int size,
795 int lineno)
796 {
797 char *str, *next, *last;
798 unsigned int i;
799
800 for (i = 0; i < ARRAY_SIZE (cpu_flag_init); i++)
801 if (strcmp (cpu_flag_init[i].name, f) == 0)
802 {
803 /* Turn on selective bits. */
804 char *init = xstrdup (cpu_flag_init[i].init);
805 last = init + strlen (init);
806 for (next = init; next && next < last; )
807 {
808 str = next_field (next, '|', &next, last);
809 if (str)
810 set_bitfield (str, array, 1, size, lineno);
811 }
812 free (init);
813 return 0;
814 }
815
816 return -1;
817 }
818
819 static void
820 set_bitfield (char *f, bitfield *array, int value,
821 unsigned int size, int lineno)
822 {
823 unsigned int i;
824
825 if (strcmp (f, "CpuFP") == 0)
826 {
827 set_bitfield("Cpu387", array, value, size, lineno);
828 set_bitfield("Cpu287", array, value, size, lineno);
829 f = "Cpu8087";
830 }
831 else if (strcmp (f, "Mmword") == 0)
832 f= "Qword";
833 else if (strcmp (f, "Oword") == 0)
834 f= "Xmmword";
835
836 for (i = 0; i < size; i++)
837 if (strcasecmp (array[i].name, f) == 0)
838 {
839 array[i].value = value;
840 return;
841 }
842
843 if (value)
844 {
845 const char *v = strchr (f, '=');
846
847 if (v)
848 {
849 size_t n = v - f;
850 char *end;
851
852 for (i = 0; i < size; i++)
853 if (strncasecmp (array[i].name, f, n) == 0)
854 {
855 value = strtol (v + 1, &end, 0);
856 if (*end == '\0')
857 {
858 array[i].value = value;
859 return;
860 }
861 break;
862 }
863 }
864 }
865
866 /* Handle CPU_XXX_FLAGS. */
867 if (!set_bitfield_from_cpu_flag_init (f, array, value, size, lineno))
868 return;
869
870 if (lineno != -1)
871 fail (_("%s: %d: Unknown bitfield: %s\n"), filename, lineno, f);
872 else
873 fail (_("Unknown bitfield: %s\n"), f);
874 }
875
876 static void
877 output_cpu_flags (FILE *table, bitfield *flags, unsigned int size,
878 int macro, const char *comma, const char *indent)
879 {
880 unsigned int i;
881
882 fprintf (table, "%s{ { ", indent);
883
884 for (i = 0; i < size - 1; i++)
885 {
886 if (((i + 1) % 20) != 0)
887 fprintf (table, "%d, ", flags[i].value);
888 else
889 fprintf (table, "%d,", flags[i].value);
890 if (((i + 1) % 20) == 0)
891 {
892 /* We need \\ for macro. */
893 if (macro)
894 fprintf (table, " \\\n %s", indent);
895 else
896 fprintf (table, "\n %s", indent);
897 }
898 }
899
900 fprintf (table, "%d } }%s\n", flags[i].value, comma);
901 }
902
903 static void
904 process_i386_cpu_flag (FILE *table, char *flag, int macro,
905 const char *comma, const char *indent,
906 int lineno)
907 {
908 char *str, *next, *last;
909 unsigned int i;
910 bitfield flags [ARRAY_SIZE (cpu_flags)];
911
912 /* Copy the default cpu flags. */
913 memcpy (flags, cpu_flags, sizeof (cpu_flags));
914
915 if (strcasecmp (flag, "unknown") == 0)
916 {
917 /* We turn on everything except for cpu64 in case of
918 CPU_UNKNOWN_FLAGS. */
919 for (i = 0; i < ARRAY_SIZE (flags); i++)
920 if (flags[i].position != Cpu64)
921 flags[i].value = 1;
922 }
923 else if (flag[0] == '~')
924 {
925 last = flag + strlen (flag);
926
927 if (flag[1] == '(')
928 {
929 last -= 1;
930 next = flag + 2;
931 if (*last != ')')
932 fail (_("%s: %d: Missing `)' in bitfield: %s\n"), filename,
933 lineno, flag);
934 *last = '\0';
935 }
936 else
937 next = flag + 1;
938
939 /* First we turn on everything except for cpu64. */
940 for (i = 0; i < ARRAY_SIZE (flags); i++)
941 if (flags[i].position != Cpu64)
942 flags[i].value = 1;
943
944 /* Turn off selective bits. */
945 for (; next && next < last; )
946 {
947 str = next_field (next, '|', &next, last);
948 if (str)
949 set_bitfield (str, flags, 0, ARRAY_SIZE (flags), lineno);
950 }
951 }
952 else if (strcmp (flag, "0"))
953 {
954 /* Turn on selective bits. */
955 last = flag + strlen (flag);
956 for (next = flag; next && next < last; )
957 {
958 str = next_field (next, '|', &next, last);
959 if (str)
960 set_bitfield (str, flags, 1, ARRAY_SIZE (flags), lineno);
961 }
962 }
963
964 output_cpu_flags (table, flags, ARRAY_SIZE (flags), macro,
965 comma, indent);
966 }
967
968 static void
969 output_opcode_modifier (FILE *table, bitfield *modifier, unsigned int size)
970 {
971 unsigned int i;
972
973 fprintf (table, " { ");
974
975 for (i = 0; i < size - 1; i++)
976 {
977 if (((i + 1) % 20) != 0)
978 fprintf (table, "%d, ", modifier[i].value);
979 else
980 fprintf (table, "%d,", modifier[i].value);
981 if (((i + 1) % 20) == 0)
982 fprintf (table, "\n ");
983 }
984
985 fprintf (table, "%d },\n", modifier[i].value);
986 }
987
988 static void
989 process_i386_opcode_modifier (FILE *table, char *mod, int lineno)
990 {
991 char *str, *next, *last;
992 bitfield modifiers [ARRAY_SIZE (opcode_modifiers)];
993
994 /* Copy the default opcode modifier. */
995 memcpy (modifiers, opcode_modifiers, sizeof (modifiers));
996
997 if (strcmp (mod, "0"))
998 {
999 last = mod + strlen (mod);
1000 for (next = mod; next && next < last; )
1001 {
1002 str = next_field (next, '|', &next, last);
1003 if (str)
1004 set_bitfield (str, modifiers, 1, ARRAY_SIZE (modifiers),
1005 lineno);
1006 }
1007 }
1008 output_opcode_modifier (table, modifiers, ARRAY_SIZE (modifiers));
1009 }
1010
1011 static void
1012 output_operand_type (FILE *table, bitfield *types, unsigned int size,
1013 int macro, const char *indent)
1014 {
1015 unsigned int i;
1016
1017 fprintf (table, "{ { ");
1018
1019 for (i = 0; i < size - 1; i++)
1020 {
1021 if (((i + 1) % 20) != 0)
1022 fprintf (table, "%d, ", types[i].value);
1023 else
1024 fprintf (table, "%d,", types[i].value);
1025 if (((i + 1) % 20) == 0)
1026 {
1027 /* We need \\ for macro. */
1028 if (macro)
1029 fprintf (table, " \\\n%s", indent);
1030 else
1031 fprintf (table, "\n%s", indent);
1032 }
1033 }
1034
1035 fprintf (table, "%d } }", types[i].value);
1036 }
1037
1038 static void
1039 process_i386_operand_type (FILE *table, char *op, int macro,
1040 const char *indent, int lineno)
1041 {
1042 char *str, *next, *last;
1043 bitfield types [ARRAY_SIZE (operand_types)];
1044
1045 /* Copy the default operand type. */
1046 memcpy (types, operand_types, sizeof (types));
1047
1048 if (strcmp (op, "0"))
1049 {
1050 last = op + strlen (op);
1051 for (next = op; next && next < last; )
1052 {
1053 str = next_field (next, '|', &next, last);
1054 if (str)
1055 set_bitfield (str, types, 1, ARRAY_SIZE (types), lineno);
1056 }
1057 }
1058 output_operand_type (table, types, ARRAY_SIZE (types), macro,
1059 indent);
1060 }
1061
1062 static void
1063 output_i386_opcode (FILE *table, const char *name, char *str,
1064 char *last, int lineno)
1065 {
1066 unsigned int i;
1067 char *operands, *base_opcode, *extension_opcode, *opcode_length;
1068 char *cpu_flags, *opcode_modifier, *operand_types [MAX_OPERANDS];
1069
1070 /* Find number of operands. */
1071 operands = next_field (str, ',', &str, last);
1072
1073 /* Find base_opcode. */
1074 base_opcode = next_field (str, ',', &str, last);
1075
1076 /* Find extension_opcode. */
1077 extension_opcode = next_field (str, ',', &str, last);
1078
1079 /* Find opcode_length. */
1080 opcode_length = next_field (str, ',', &str, last);
1081
1082 /* Find cpu_flags. */
1083 cpu_flags = next_field (str, ',', &str, last);
1084
1085 /* Find opcode_modifier. */
1086 opcode_modifier = next_field (str, ',', &str, last);
1087
1088 /* Remove the first {. */
1089 str = remove_leading_whitespaces (str);
1090 if (*str != '{')
1091 abort ();
1092 str = remove_leading_whitespaces (str + 1);
1093
1094 i = strlen (str);
1095
1096 /* There are at least "X}". */
1097 if (i < 2)
1098 abort ();
1099
1100 /* Remove trailing white spaces and }. */
1101 do
1102 {
1103 i--;
1104 if (ISSPACE (str[i]) || str[i] == '}')
1105 str[i] = '\0';
1106 else
1107 break;
1108 }
1109 while (i != 0);
1110
1111 last = str + i;
1112
1113 /* Find operand_types. */
1114 for (i = 0; i < ARRAY_SIZE (operand_types); i++)
1115 {
1116 if (str >= last)
1117 {
1118 operand_types [i] = NULL;
1119 break;
1120 }
1121
1122 operand_types [i] = next_field (str, ',', &str, last);
1123 if (*operand_types[i] == '0')
1124 {
1125 if (i != 0)
1126 operand_types[i] = NULL;
1127 break;
1128 }
1129 }
1130
1131 fprintf (table, " { \"%s\", %s, %s, %s, %s,\n",
1132 name, operands, base_opcode, extension_opcode,
1133 opcode_length);
1134
1135 process_i386_cpu_flag (table, cpu_flags, 0, ",", " ", lineno);
1136
1137 process_i386_opcode_modifier (table, opcode_modifier, lineno);
1138
1139 fprintf (table, " { ");
1140
1141 for (i = 0; i < ARRAY_SIZE (operand_types); i++)
1142 {
1143 if (operand_types[i] == NULL || *operand_types[i] == '0')
1144 {
1145 if (i == 0)
1146 process_i386_operand_type (table, "0", 0, "\t ", lineno);
1147 break;
1148 }
1149
1150 if (i != 0)
1151 fprintf (table, ",\n ");
1152
1153 process_i386_operand_type (table, operand_types[i], 0,
1154 "\t ", lineno);
1155 }
1156 fprintf (table, " } },\n");
1157 }
1158
1159 struct opcode_hash_entry
1160 {
1161 struct opcode_hash_entry *next;
1162 char *name;
1163 char *opcode;
1164 int lineno;
1165 };
1166
1167 /* Calculate the hash value of an opcode hash entry P. */
1168
1169 static hashval_t
1170 opcode_hash_hash (const void *p)
1171 {
1172 struct opcode_hash_entry *entry = (struct opcode_hash_entry *) p;
1173 return htab_hash_string (entry->name);
1174 }
1175
1176 /* Compare a string Q against an opcode hash entry P. */
1177
1178 static int
1179 opcode_hash_eq (const void *p, const void *q)
1180 {
1181 struct opcode_hash_entry *entry = (struct opcode_hash_entry *) p;
1182 const char *name = (const char *) q;
1183 return strcmp (name, entry->name) == 0;
1184 }
1185
1186 static void
1187 process_i386_opcodes (FILE *table)
1188 {
1189 FILE *fp;
1190 char buf[2048];
1191 unsigned int i, j;
1192 char *str, *p, *last, *name;
1193 struct opcode_hash_entry **hash_slot, **entry, *next;
1194 htab_t opcode_hash_table;
1195 struct opcode_hash_entry **opcode_array;
1196 unsigned int opcode_array_size = 1024;
1197 int lineno = 0;
1198
1199 filename = "i386-opc.tbl";
1200 fp = fopen (filename, "r");
1201
1202 if (fp == NULL)
1203 fail (_("can't find i386-opc.tbl for reading, errno = %s\n"),
1204 xstrerror (errno));
1205
1206 i = 0;
1207 opcode_array = (struct opcode_hash_entry **)
1208 xmalloc (sizeof (*opcode_array) * opcode_array_size);
1209
1210 opcode_hash_table = htab_create_alloc (16, opcode_hash_hash,
1211 opcode_hash_eq, NULL,
1212 xcalloc, free);
1213
1214 fprintf (table, "\n/* i386 opcode table. */\n\n");
1215 fprintf (table, "const insn_template i386_optab[] =\n{\n");
1216
1217 /* Put everything on opcode array. */
1218 while (!feof (fp))
1219 {
1220 if (fgets (buf, sizeof (buf), fp) == NULL)
1221 break;
1222
1223 lineno++;
1224
1225 p = remove_leading_whitespaces (buf);
1226
1227 /* Skip comments. */
1228 str = strstr (p, "//");
1229 if (str != NULL)
1230 str[0] = '\0';
1231
1232 /* Remove trailing white spaces. */
1233 remove_trailing_whitespaces (p);
1234
1235 switch (p[0])
1236 {
1237 case '#':
1238 /* Ignore comments. */
1239 case '\0':
1240 continue;
1241 break;
1242 default:
1243 break;
1244 }
1245
1246 last = p + strlen (p);
1247
1248 /* Find name. */
1249 name = next_field (p, ',', &str, last);
1250
1251 /* Get the slot in hash table. */
1252 hash_slot = (struct opcode_hash_entry **)
1253 htab_find_slot_with_hash (opcode_hash_table, name,
1254 htab_hash_string (name),
1255 INSERT);
1256
1257 if (*hash_slot == NULL)
1258 {
1259 /* It is the new one. Put it on opcode array. */
1260 if (i >= opcode_array_size)
1261 {
1262 /* Grow the opcode array when needed. */
1263 opcode_array_size += 1024;
1264 opcode_array = (struct opcode_hash_entry **)
1265 xrealloc (opcode_array,
1266 sizeof (*opcode_array) * opcode_array_size);
1267 }
1268
1269 opcode_array[i] = (struct opcode_hash_entry *)
1270 xmalloc (sizeof (struct opcode_hash_entry));
1271 opcode_array[i]->next = NULL;
1272 opcode_array[i]->name = xstrdup (name);
1273 opcode_array[i]->opcode = xstrdup (str);
1274 opcode_array[i]->lineno = lineno;
1275 *hash_slot = opcode_array[i];
1276 i++;
1277 }
1278 else
1279 {
1280 /* Append it to the existing one. */
1281 entry = hash_slot;
1282 while ((*entry) != NULL)
1283 entry = &(*entry)->next;
1284 *entry = (struct opcode_hash_entry *)
1285 xmalloc (sizeof (struct opcode_hash_entry));
1286 (*entry)->next = NULL;
1287 (*entry)->name = (*hash_slot)->name;
1288 (*entry)->opcode = xstrdup (str);
1289 (*entry)->lineno = lineno;
1290 }
1291 }
1292
1293 /* Process opcode array. */
1294 for (j = 0; j < i; j++)
1295 {
1296 for (next = opcode_array[j]; next; next = next->next)
1297 {
1298 name = next->name;
1299 str = next->opcode;
1300 lineno = next->lineno;
1301 last = str + strlen (str);
1302 output_i386_opcode (table, name, str, last, lineno);
1303 }
1304 }
1305
1306 fclose (fp);
1307
1308 fprintf (table, " { NULL, 0, 0, 0, 0,\n");
1309
1310 process_i386_cpu_flag (table, "0", 0, ",", " ", -1);
1311
1312 process_i386_opcode_modifier (table, "0", -1);
1313
1314 fprintf (table, " { ");
1315 process_i386_operand_type (table, "0", 0, "\t ", -1);
1316 fprintf (table, " } }\n");
1317
1318 fprintf (table, "};\n");
1319 }
1320
1321 static void
1322 process_i386_registers (FILE *table)
1323 {
1324 FILE *fp;
1325 char buf[2048];
1326 char *str, *p, *last;
1327 char *reg_name, *reg_type, *reg_flags, *reg_num;
1328 char *dw2_32_num, *dw2_64_num;
1329 int lineno = 0;
1330
1331 filename = "i386-reg.tbl";
1332 fp = fopen (filename, "r");
1333 if (fp == NULL)
1334 fail (_("can't find i386-reg.tbl for reading, errno = %s\n"),
1335 xstrerror (errno));
1336
1337 fprintf (table, "\n/* i386 register table. */\n\n");
1338 fprintf (table, "const reg_entry i386_regtab[] =\n{\n");
1339
1340 while (!feof (fp))
1341 {
1342 if (fgets (buf, sizeof (buf), fp) == NULL)
1343 break;
1344
1345 lineno++;
1346
1347 p = remove_leading_whitespaces (buf);
1348
1349 /* Skip comments. */
1350 str = strstr (p, "//");
1351 if (str != NULL)
1352 str[0] = '\0';
1353
1354 /* Remove trailing white spaces. */
1355 remove_trailing_whitespaces (p);
1356
1357 switch (p[0])
1358 {
1359 case '#':
1360 fprintf (table, "%s\n", p);
1361 case '\0':
1362 continue;
1363 break;
1364 default:
1365 break;
1366 }
1367
1368 last = p + strlen (p);
1369
1370 /* Find reg_name. */
1371 reg_name = next_field (p, ',', &str, last);
1372
1373 /* Find reg_type. */
1374 reg_type = next_field (str, ',', &str, last);
1375
1376 /* Find reg_flags. */
1377 reg_flags = next_field (str, ',', &str, last);
1378
1379 /* Find reg_num. */
1380 reg_num = next_field (str, ',', &str, last);
1381
1382 fprintf (table, " { \"%s\",\n ", reg_name);
1383
1384 process_i386_operand_type (table, reg_type, 0, "\t", lineno);
1385
1386 /* Find 32-bit Dwarf2 register number. */
1387 dw2_32_num = next_field (str, ',', &str, last);
1388
1389 /* Find 64-bit Dwarf2 register number. */
1390 dw2_64_num = next_field (str, ',', &str, last);
1391
1392 fprintf (table, ",\n %s, %s, { %s, %s } },\n",
1393 reg_flags, reg_num, dw2_32_num, dw2_64_num);
1394 }
1395
1396 fclose (fp);
1397
1398 fprintf (table, "};\n");
1399
1400 fprintf (table, "\nconst unsigned int i386_regtab_size = ARRAY_SIZE (i386_regtab);\n");
1401 }
1402
1403 static void
1404 process_i386_initializers (void)
1405 {
1406 unsigned int i;
1407 FILE *fp = fopen ("i386-init.h", "w");
1408 char *init;
1409
1410 if (fp == NULL)
1411 fail (_("can't create i386-init.h, errno = %s\n"),
1412 xstrerror (errno));
1413
1414 process_copyright (fp);
1415
1416 for (i = 0; i < ARRAY_SIZE (cpu_flag_init); i++)
1417 {
1418 fprintf (fp, "\n#define %s \\\n", cpu_flag_init[i].name);
1419 init = xstrdup (cpu_flag_init[i].init);
1420 process_i386_cpu_flag (fp, init, 1, "", " ", -1);
1421 free (init);
1422 }
1423
1424 for (i = 0; i < ARRAY_SIZE (operand_type_init); i++)
1425 {
1426 fprintf (fp, "\n\n#define %s \\\n ", operand_type_init[i].name);
1427 init = xstrdup (operand_type_init[i].init);
1428 process_i386_operand_type (fp, init, 1, " ", -1);
1429 free (init);
1430 }
1431 fprintf (fp, "\n");
1432
1433 fclose (fp);
1434 }
1435
1436 /* Program options. */
1437 #define OPTION_SRCDIR 200
1438
1439 struct option long_options[] =
1440 {
1441 {"srcdir", required_argument, NULL, OPTION_SRCDIR},
1442 {"debug", no_argument, NULL, 'd'},
1443 {"version", no_argument, NULL, 'V'},
1444 {"help", no_argument, NULL, 'h'},
1445 {0, no_argument, NULL, 0}
1446 };
1447
1448 static void
1449 print_version (void)
1450 {
1451 printf ("%s: version 1.0\n", program_name);
1452 xexit (0);
1453 }
1454
1455 static void
1456 usage (FILE * stream, int status)
1457 {
1458 fprintf (stream, "Usage: %s [-V | --version] [-d | --debug] [--srcdir=dirname] [--help]\n",
1459 program_name);
1460 xexit (status);
1461 }
1462
1463 int
1464 main (int argc, char **argv)
1465 {
1466 extern int chdir (char *);
1467 char *srcdir = NULL;
1468 int c;
1469 unsigned int i, cpumax;
1470 FILE *table;
1471
1472 program_name = *argv;
1473 xmalloc_set_program_name (program_name);
1474
1475 while ((c = getopt_long (argc, argv, "vVdh", long_options, 0)) != EOF)
1476 switch (c)
1477 {
1478 case OPTION_SRCDIR:
1479 srcdir = optarg;
1480 break;
1481 case 'V':
1482 case 'v':
1483 print_version ();
1484 break;
1485 case 'd':
1486 debug = 1;
1487 break;
1488 case 'h':
1489 case '?':
1490 usage (stderr, 0);
1491 default:
1492 case 0:
1493 break;
1494 }
1495
1496 if (optind != argc)
1497 usage (stdout, 1);
1498
1499 if (srcdir != NULL)
1500 if (chdir (srcdir) != 0)
1501 fail (_("unable to change directory to \"%s\", errno = %s\n"),
1502 srcdir, xstrerror (errno));
1503
1504 /* cpu_flags isn't sorted by position. */
1505 cpumax = 0;
1506 for (i = 0; i < ARRAY_SIZE (cpu_flags); i++)
1507 if (cpu_flags[i].position > cpumax)
1508 cpumax = cpu_flags[i].position;
1509
1510 /* Check the unused bitfield in i386_cpu_flags. */
1511 #ifdef CpuUnused
1512 if ((cpumax - 1) != CpuMax)
1513 fail (_("CpuMax != %d!\n"), cpumax);
1514 #else
1515 if (cpumax != CpuMax)
1516 fail (_("CpuMax != %d!\n"), cpumax);
1517
1518 c = CpuNumOfBits - CpuMax - 1;
1519 if (c)
1520 fail (_("%d unused bits in i386_cpu_flags.\n"), c);
1521 #endif
1522
1523 /* Check the unused bitfield in i386_operand_type. */
1524 #ifndef OTUnused
1525 c = OTNumOfBits - OTMax - 1;
1526 if (c)
1527 fail (_("%d unused bits in i386_operand_type.\n"), c);
1528 #endif
1529
1530 qsort (cpu_flags, ARRAY_SIZE (cpu_flags), sizeof (cpu_flags [0]),
1531 compare);
1532
1533 qsort (opcode_modifiers, ARRAY_SIZE (opcode_modifiers),
1534 sizeof (opcode_modifiers [0]), compare);
1535
1536 qsort (operand_types, ARRAY_SIZE (operand_types),
1537 sizeof (operand_types [0]), compare);
1538
1539 table = fopen ("i386-tbl.h", "w");
1540 if (table == NULL)
1541 fail (_("can't create i386-tbl.h, errno = %s\n"),
1542 xstrerror (errno));
1543
1544 process_copyright (table);
1545
1546 process_i386_opcodes (table);
1547 process_i386_registers (table);
1548 process_i386_initializers ();
1549
1550 fclose (table);
1551
1552 exit (0);
1553 }
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