or1k-asm.c revision 1.1 1 1.1 matt /* Assembler interface for targets using CGEN. -*- C -*-
2 1.1 matt CGEN: Cpu tools GENerator
3 1.1 matt
4 1.1 matt THIS FILE IS MACHINE GENERATED WITH CGEN.
5 1.1 matt - the resultant file is machine generated, cgen-asm.in isn't
6 1.1 matt
7 1.1 matt Copyright (C) 1996-2014 Free Software Foundation, Inc.
8 1.1 matt
9 1.1 matt This file is part of libopcodes.
10 1.1 matt
11 1.1 matt This library is free software; you can redistribute it and/or modify
12 1.1 matt it under the terms of the GNU General Public License as published by
13 1.1 matt the Free Software Foundation; either version 3, or (at your option)
14 1.1 matt any later version.
15 1.1 matt
16 1.1 matt It is distributed in the hope that it will be useful, but WITHOUT
17 1.1 matt ANY WARRANTY; without even the implied warranty of MERCHANTABILITY
18 1.1 matt or FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public
19 1.1 matt License for more details.
20 1.1 matt
21 1.1 matt You should have received a copy of the GNU General Public License
22 1.1 matt along with this program; if not, write to the Free Software Foundation, Inc.,
23 1.1 matt 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA. */
24 1.1 matt
25 1.1 matt
26 1.1 matt /* ??? Eventually more and more of this stuff can go to cpu-independent files.
27 1.1 matt Keep that in mind. */
28 1.1 matt
29 1.1 matt #include "sysdep.h"
30 1.1 matt #include <stdio.h>
31 1.1 matt #include "ansidecl.h"
32 1.1 matt #include "bfd.h"
33 1.1 matt #include "symcat.h"
34 1.1 matt #include "or1k-desc.h"
35 1.1 matt #include "or1k-opc.h"
36 1.1 matt #include "opintl.h"
37 1.1 matt #include "xregex.h"
38 1.1 matt #include "libiberty.h"
39 1.1 matt #include "safe-ctype.h"
40 1.1 matt
41 1.1 matt #undef min
42 1.1 matt #define min(a,b) ((a) < (b) ? (a) : (b))
43 1.1 matt #undef max
44 1.1 matt #define max(a,b) ((a) > (b) ? (a) : (b))
45 1.1 matt
46 1.1 matt static const char * parse_insn_normal
47 1.1 matt (CGEN_CPU_DESC, const CGEN_INSN *, const char **, CGEN_FIELDS *);
48 1.1 matt
49 1.1 matt /* -- assembler routines inserted here. */
51 1.1 matt
52 1.1 matt /* -- asm.c */
53 1.1 matt
54 1.1 matt static const char * MISSING_CLOSING_PARENTHESIS = N_("missing `)'");
55 1.1 matt
56 1.1 matt #define CGEN_VERBOSE_ASSEMBLER_ERRORS
57 1.1 matt
58 1.1 matt static const char *
59 1.1 matt parse_disp26 (CGEN_CPU_DESC cd,
60 1.1 matt const char ** strp,
61 1.1 matt int opindex,
62 1.1 matt int opinfo,
63 1.1 matt enum cgen_parse_operand_result * resultp,
64 1.1 matt bfd_vma * valuep)
65 1.1 matt {
66 1.1 matt const char *errmsg = NULL;
67 1.1 matt enum cgen_parse_operand_result result_type;
68 1.1 matt
69 1.1 matt if (strncasecmp (*strp, "plt(", 4) == 0)
70 1.1 matt {
71 1.1 matt bfd_vma value;
72 1.1 matt
73 1.1 matt *strp += 4;
74 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex, BFD_RELOC_OR1K_PLT26,
75 1.1 matt & result_type, & value);
76 1.1 matt if (**strp != ')')
77 1.1 matt return MISSING_CLOSING_PARENTHESIS;
78 1.1 matt ++*strp;
79 1.1 matt if (errmsg == NULL
80 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
81 1.1 matt value = (value >> 2) & 0xffff;
82 1.1 matt *valuep = value;
83 1.1 matt return errmsg;
84 1.1 matt }
85 1.1 matt return cgen_parse_address (cd, strp, opindex, opinfo, resultp, valuep);
86 1.1 matt }
87 1.1 matt
88 1.1 matt static const char *
89 1.1 matt parse_simm16 (CGEN_CPU_DESC cd, const char ** strp, int opindex, long * valuep)
90 1.1 matt {
91 1.1 matt const char *errmsg;
92 1.1 matt enum cgen_parse_operand_result result_type;
93 1.1 matt long ret;
94 1.1 matt
95 1.1 matt if (**strp == '#')
96 1.1 matt ++*strp;
97 1.1 matt
98 1.1 matt if (strncasecmp (*strp, "hi(", 3) == 0)
99 1.1 matt {
100 1.1 matt bfd_vma value;
101 1.1 matt
102 1.1 matt *strp += 3;
103 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex, BFD_RELOC_HI16,
104 1.1 matt & result_type, & value);
105 1.1 matt if (**strp != ')')
106 1.1 matt errmsg = MISSING_CLOSING_PARENTHESIS;
107 1.1 matt ++*strp;
108 1.1 matt
109 1.1 matt ret = value;
110 1.1 matt
111 1.1 matt if (errmsg == NULL
112 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
113 1.1 matt {
114 1.1 matt ret >>= 16;
115 1.1 matt ret &= 0xffff;
116 1.1 matt ret = (ret ^ 0x8000) - 0x8000;
117 1.1 matt }
118 1.1 matt }
119 1.1 matt else if (strncasecmp (*strp, "lo(", 3) == 0)
120 1.1 matt {
121 1.1 matt bfd_vma value;
122 1.1 matt
123 1.1 matt *strp += 3;
124 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex, BFD_RELOC_LO16,
125 1.1 matt & result_type, & value);
126 1.1 matt if (**strp != ')')
127 1.1 matt return MISSING_CLOSING_PARENTHESIS;
128 1.1 matt ++*strp;
129 1.1 matt
130 1.1 matt ret = value;
131 1.1 matt
132 1.1 matt if (result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
133 1.1 matt {
134 1.1 matt ret &= 0xffff;
135 1.1 matt ret = (ret ^ 0x8000) - 0x8000;
136 1.1 matt }
137 1.1 matt }
138 1.1 matt else if (strncasecmp (*strp, "got(", 4) == 0)
139 1.1 matt {
140 1.1 matt bfd_vma value;
141 1.1 matt
142 1.1 matt *strp += 4;
143 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex, BFD_RELOC_OR1K_GOT16,
144 1.1 matt & result_type, & value);
145 1.1 matt if (**strp != ')')
146 1.1 matt return MISSING_CLOSING_PARENTHESIS;
147 1.1 matt ++*strp;
148 1.1 matt if (errmsg == NULL
149 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
150 1.1 matt value &= 0xffff;
151 1.1 matt *valuep = value;
152 1.1 matt return errmsg;
153 1.1 matt }
154 1.1 matt else if (strncasecmp (*strp, "gotpchi(", 8) == 0)
155 1.1 matt {
156 1.1 matt bfd_vma value;
157 1.1 matt
158 1.1 matt *strp += 8;
159 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
160 1.1 matt BFD_RELOC_OR1K_GOTPC_HI16,
161 1.1 matt & result_type, & value);
162 1.1 matt if (**strp != ')')
163 1.1 matt return MISSING_CLOSING_PARENTHESIS;
164 1.1 matt ++*strp;
165 1.1 matt if (errmsg == NULL
166 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
167 1.1 matt value = (value >> 16) & 0xffff;
168 1.1 matt *valuep = value;
169 1.1 matt return errmsg;
170 1.1 matt }
171 1.1 matt else if (strncasecmp (*strp, "gotpclo(", 8) == 0)
172 1.1 matt {
173 1.1 matt bfd_vma value;
174 1.1 matt
175 1.1 matt *strp += 8;
176 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
177 1.1 matt BFD_RELOC_OR1K_GOTPC_LO16,
178 1.1 matt &result_type, &value);
179 1.1 matt if (**strp != ')')
180 1.1 matt return MISSING_CLOSING_PARENTHESIS;
181 1.1 matt ++*strp;
182 1.1 matt if (errmsg == NULL
183 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
184 1.1 matt value &= 0xffff;
185 1.1 matt *valuep = value;
186 1.1 matt return errmsg;
187 1.1 matt }
188 1.1 matt else if (strncasecmp (*strp, "gotoffhi(", 9) == 0)
189 1.1 matt {
190 1.1 matt bfd_vma value;
191 1.1 matt
192 1.1 matt *strp += 9;
193 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
194 1.1 matt BFD_RELOC_OR1K_GOTOFF_HI16,
195 1.1 matt & result_type, & value);
196 1.1 matt
197 1.1 matt if (**strp != ')')
198 1.1 matt return MISSING_CLOSING_PARENTHESIS;
199 1.1 matt ++*strp;
200 1.1 matt if (errmsg == NULL
201 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
202 1.1 matt value = (value >> 16) & 0xffff;
203 1.1 matt *valuep = value;
204 1.1 matt return errmsg;
205 1.1 matt }
206 1.1 matt else if (strncasecmp (*strp, "gotofflo(", 9) == 0)
207 1.1 matt {
208 1.1 matt bfd_vma value;
209 1.1 matt
210 1.1 matt *strp += 9;
211 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
212 1.1 matt BFD_RELOC_OR1K_GOTOFF_LO16,
213 1.1 matt &result_type, &value);
214 1.1 matt if (**strp != ')')
215 1.1 matt return MISSING_CLOSING_PARENTHESIS;
216 1.1 matt ++*strp;
217 1.1 matt if (errmsg == NULL
218 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
219 1.1 matt value &= 0xffff;
220 1.1 matt *valuep = value;
221 1.1 matt return errmsg;
222 1.1 matt }
223 1.1 matt else if (strncasecmp (*strp, "tlsgdhi(", 8) == 0)
224 1.1 matt {
225 1.1 matt bfd_vma value;
226 1.1 matt
227 1.1 matt *strp += 8;
228 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
229 1.1 matt BFD_RELOC_OR1K_TLS_GD_HI16,
230 1.1 matt & result_type, & value);
231 1.1 matt
232 1.1 matt if (**strp != ')')
233 1.1 matt return MISSING_CLOSING_PARENTHESIS;
234 1.1 matt ++*strp;
235 1.1 matt if (errmsg == NULL
236 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
237 1.1 matt value = (value >> 16) & 0xffff;
238 1.1 matt *valuep = value;
239 1.1 matt return errmsg;
240 1.1 matt }
241 1.1 matt else if (strncasecmp (*strp, "tlsgdlo(", 8) == 0)
242 1.1 matt {
243 1.1 matt bfd_vma value;
244 1.1 matt
245 1.1 matt *strp += 8;
246 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
247 1.1 matt BFD_RELOC_OR1K_TLS_GD_LO16,
248 1.1 matt &result_type, &value);
249 1.1 matt if (**strp != ')')
250 1.1 matt return MISSING_CLOSING_PARENTHESIS;
251 1.1 matt ++*strp;
252 1.1 matt if (errmsg == NULL
253 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
254 1.1 matt value &= 0xffff;
255 1.1 matt *valuep = value;
256 1.1 matt return errmsg;
257 1.1 matt }
258 1.1 matt else if (strncasecmp (*strp, "tlsldmhi(", 9) == 0)
259 1.1 matt {
260 1.1 matt bfd_vma value;
261 1.1 matt
262 1.1 matt *strp += 9;
263 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
264 1.1 matt BFD_RELOC_OR1K_TLS_LDM_HI16,
265 1.1 matt & result_type, & value);
266 1.1 matt
267 1.1 matt if (**strp != ')')
268 1.1 matt return MISSING_CLOSING_PARENTHESIS;
269 1.1 matt ++*strp;
270 1.1 matt if (errmsg == NULL
271 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
272 1.1 matt value = (value >> 16) & 0xffff;
273 1.1 matt *valuep = value;
274 1.1 matt return errmsg;
275 1.1 matt }
276 1.1 matt else if (strncasecmp (*strp, "tlsldmlo(", 9) == 0)
277 1.1 matt {
278 1.1 matt bfd_vma value;
279 1.1 matt
280 1.1 matt *strp += 9;
281 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
282 1.1 matt BFD_RELOC_OR1K_TLS_LDM_LO16,
283 1.1 matt &result_type, &value);
284 1.1 matt if (**strp != ')')
285 1.1 matt return MISSING_CLOSING_PARENTHESIS;
286 1.1 matt ++*strp;
287 1.1 matt if (errmsg == NULL
288 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
289 1.1 matt value &= 0xffff;
290 1.1 matt *valuep = value;
291 1.1 matt return errmsg;
292 1.1 matt }
293 1.1 matt else if (strncasecmp (*strp, "dtpoffhi(", 9) == 0)
294 1.1 matt {
295 1.1 matt bfd_vma value;
296 1.1 matt
297 1.1 matt *strp += 9;
298 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
299 1.1 matt BFD_RELOC_OR1K_TLS_LDO_HI16,
300 1.1 matt & result_type, & value);
301 1.1 matt
302 1.1 matt if (**strp != ')')
303 1.1 matt return MISSING_CLOSING_PARENTHESIS;
304 1.1 matt ++*strp;
305 1.1 matt if (errmsg == NULL
306 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
307 1.1 matt value = (value >> 16) & 0xffff;
308 1.1 matt *valuep = value;
309 1.1 matt return errmsg;
310 1.1 matt }
311 1.1 matt else if (strncasecmp (*strp, "dtpofflo(", 9) == 0)
312 1.1 matt {
313 1.1 matt bfd_vma value;
314 1.1 matt
315 1.1 matt *strp += 9;
316 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
317 1.1 matt BFD_RELOC_OR1K_TLS_LDO_LO16,
318 1.1 matt &result_type, &value);
319 1.1 matt if (**strp != ')')
320 1.1 matt return MISSING_CLOSING_PARENTHESIS;
321 1.1 matt ++*strp;
322 1.1 matt if (errmsg == NULL
323 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
324 1.1 matt value &= 0xffff;
325 1.1 matt *valuep = value;
326 1.1 matt return errmsg;
327 1.1 matt }
328 1.1 matt else if (strncasecmp (*strp, "gottpoffhi(", 11) == 0)
329 1.1 matt {
330 1.1 matt bfd_vma value;
331 1.1 matt
332 1.1 matt *strp += 11;
333 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
334 1.1 matt BFD_RELOC_OR1K_TLS_IE_HI16,
335 1.1 matt & result_type, & value);
336 1.1 matt
337 1.1 matt if (**strp != ')')
338 1.1 matt return MISSING_CLOSING_PARENTHESIS;
339 1.1 matt ++*strp;
340 1.1 matt if (errmsg == NULL
341 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
342 1.1 matt value = (value >> 16) & 0xffff;
343 1.1 matt *valuep = value;
344 1.1 matt return errmsg;
345 1.1 matt }
346 1.1 matt else if (strncasecmp (*strp, "gottpofflo(", 11) == 0)
347 1.1 matt {
348 1.1 matt bfd_vma value;
349 1.1 matt
350 1.1 matt *strp += 11;
351 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
352 1.1 matt BFD_RELOC_OR1K_TLS_IE_LO16,
353 1.1 matt &result_type, &value);
354 1.1 matt if (**strp != ')')
355 1.1 matt return MISSING_CLOSING_PARENTHESIS;
356 1.1 matt ++*strp;
357 1.1 matt if (errmsg == NULL
358 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
359 1.1 matt value &= 0xffff;
360 1.1 matt *valuep = value;
361 1.1 matt return errmsg;
362 1.1 matt }
363 1.1 matt else if (strncasecmp (*strp, "tpoffhi(", 8) == 0)
364 1.1 matt {
365 1.1 matt bfd_vma value;
366 1.1 matt
367 1.1 matt *strp += 8;
368 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
369 1.1 matt BFD_RELOC_OR1K_TLS_LE_HI16,
370 1.1 matt & result_type, & value);
371 1.1 matt
372 1.1 matt if (**strp != ')')
373 1.1 matt return MISSING_CLOSING_PARENTHESIS;
374 1.1 matt ++*strp;
375 1.1 matt if (errmsg == NULL
376 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
377 1.1 matt value = (value >> 16) & 0xffff;
378 1.1 matt *valuep = value;
379 1.1 matt return errmsg;
380 1.1 matt }
381 1.1 matt else if (strncasecmp (*strp, "tpofflo(", 8) == 0)
382 1.1 matt {
383 1.1 matt bfd_vma value;
384 1.1 matt
385 1.1 matt *strp += 8;
386 1.1 matt errmsg = cgen_parse_address (cd, strp, opindex,
387 1.1 matt BFD_RELOC_OR1K_TLS_LE_LO16,
388 1.1 matt &result_type, &value);
389 1.1 matt if (**strp != ')')
390 1.1 matt return MISSING_CLOSING_PARENTHESIS;
391 1.1 matt ++*strp;
392 1.1 matt if (errmsg == NULL
393 1.1 matt && result_type == CGEN_PARSE_OPERAND_RESULT_NUMBER)
394 1.1 matt value &= 0xffff;
395 1.1 matt *valuep = value;
396 1.1 matt return errmsg;
397 1.1 matt }
398 1.1 matt else
399 1.1 matt {
400 1.1 matt long value;
401 1.1 matt errmsg = cgen_parse_signed_integer (cd, strp, opindex, &value);
402 1.1 matt ret = value;
403 1.1 matt }
404 1.1 matt
405 1.1 matt if (errmsg == NULL)
406 1.1 matt *valuep = ret;
407 1.1 matt
408 1.1 matt return errmsg;
409 1.1 matt }
410 1.1 matt
411 1.1 matt static const char *
412 1.1 matt parse_uimm16 (CGEN_CPU_DESC cd, const char ** strp, int opindex, unsigned long * valuep)
413 1.1 matt {
414 1.1 matt const char *errmsg = parse_simm16(cd, strp, opindex, (long *) valuep);
415 1.1 matt
416 1.1 matt if (errmsg == NULL)
417 1.1 matt *valuep &= 0xffff;
418 1.1 matt return errmsg;
419 1.1 matt }
420 1.1 matt
421 1.1 matt /* -- */
422 1.1 matt
423 1.1 matt const char * or1k_cgen_parse_operand
424 1.1 matt (CGEN_CPU_DESC, int, const char **, CGEN_FIELDS *);
425 1.1 matt
426 1.1 matt /* Main entry point for operand parsing.
427 1.1 matt
428 1.1 matt This function is basically just a big switch statement. Earlier versions
429 1.1 matt used tables to look up the function to use, but
430 1.1 matt - if the table contains both assembler and disassembler functions then
431 1.1 matt the disassembler contains much of the assembler and vice-versa,
432 1.1 matt - there's a lot of inlining possibilities as things grow,
433 1.1 matt - using a switch statement avoids the function call overhead.
434 1.1 matt
435 1.1 matt This function could be moved into `parse_insn_normal', but keeping it
436 1.1 matt separate makes clear the interface between `parse_insn_normal' and each of
437 1.1 matt the handlers. */
438 1.1 matt
439 1.1 matt const char *
440 1.1 matt or1k_cgen_parse_operand (CGEN_CPU_DESC cd,
441 1.1 matt int opindex,
442 1.1 matt const char ** strp,
443 1.1 matt CGEN_FIELDS * fields)
444 1.1 matt {
445 1.1 matt const char * errmsg = NULL;
446 1.1 matt /* Used by scalar operands that still need to be parsed. */
447 1.1 matt long junk ATTRIBUTE_UNUSED;
448 1.1 matt
449 1.1 matt switch (opindex)
450 1.1 matt {
451 1.1 matt case OR1K_OPERAND_DISP26 :
452 1.1 matt {
453 1.1 matt bfd_vma value = 0;
454 1.1 matt errmsg = parse_disp26 (cd, strp, OR1K_OPERAND_DISP26, 0, NULL, & value);
455 1.1 matt fields->f_disp26 = value;
456 1.1 matt }
457 1.1 matt break;
458 1.1 matt case OR1K_OPERAND_RA :
459 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_gpr, & fields->f_r2);
460 1.1 matt break;
461 1.1 matt case OR1K_OPERAND_RADF :
462 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_fdr, & fields->f_r1);
463 1.1 matt break;
464 1.1 matt case OR1K_OPERAND_RASF :
465 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_fsr, & fields->f_r2);
466 1.1 matt break;
467 1.1 matt case OR1K_OPERAND_RB :
468 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_gpr, & fields->f_r3);
469 1.1 matt break;
470 1.1 matt case OR1K_OPERAND_RBDF :
471 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_fdr, & fields->f_r1);
472 1.1 matt break;
473 1.1 matt case OR1K_OPERAND_RBSF :
474 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_fsr, & fields->f_r3);
475 1.1 matt break;
476 1.1 matt case OR1K_OPERAND_RD :
477 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_gpr, & fields->f_r1);
478 1.1 matt break;
479 1.1 matt case OR1K_OPERAND_RDDF :
480 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_fdr, & fields->f_r1);
481 1.1 matt break;
482 1.1 matt case OR1K_OPERAND_RDSF :
483 1.1 matt errmsg = cgen_parse_keyword (cd, strp, & or1k_cgen_opval_h_fsr, & fields->f_r1);
484 1.1 matt break;
485 1.1 matt case OR1K_OPERAND_SIMM16 :
486 1.1 matt errmsg = parse_simm16 (cd, strp, OR1K_OPERAND_SIMM16, (long *) (& fields->f_simm16));
487 1.1 matt break;
488 1.1 matt case OR1K_OPERAND_SIMM16_SPLIT :
489 1.1 matt errmsg = parse_simm16 (cd, strp, OR1K_OPERAND_SIMM16_SPLIT, (long *) (& fields->f_simm16_split));
490 1.1 matt break;
491 1.1 matt case OR1K_OPERAND_UIMM16 :
492 1.1 matt errmsg = parse_uimm16 (cd, strp, OR1K_OPERAND_UIMM16, (unsigned long *) (& fields->f_uimm16));
493 1.1 matt break;
494 1.1 matt case OR1K_OPERAND_UIMM16_SPLIT :
495 1.1 matt errmsg = parse_uimm16 (cd, strp, OR1K_OPERAND_UIMM16_SPLIT, (unsigned long *) (& fields->f_uimm16_split));
496 1.1 matt break;
497 1.1 matt case OR1K_OPERAND_UIMM6 :
498 1.1 matt errmsg = cgen_parse_unsigned_integer (cd, strp, OR1K_OPERAND_UIMM6, (unsigned long *) (& fields->f_uimm6));
499 1.1 matt break;
500 1.1 matt
501 1.1 matt default :
502 1.1 matt /* xgettext:c-format */
503 1.1 matt fprintf (stderr, _("Unrecognized field %d while parsing.\n"), opindex);
504 1.1 matt abort ();
505 1.1 matt }
506 1.1 matt
507 1.1 matt return errmsg;
508 1.1 matt }
509 1.1 matt
510 1.1 matt cgen_parse_fn * const or1k_cgen_parse_handlers[] =
511 1.1 matt {
512 1.1 matt parse_insn_normal,
513 1.1 matt };
514 1.1 matt
515 1.1 matt void
516 1.1 matt or1k_cgen_init_asm (CGEN_CPU_DESC cd)
517 1.1 matt {
518 1.1 matt or1k_cgen_init_opcode_table (cd);
519 1.1 matt or1k_cgen_init_ibld_table (cd);
520 1.1 matt cd->parse_handlers = & or1k_cgen_parse_handlers[0];
521 1.1 matt cd->parse_operand = or1k_cgen_parse_operand;
522 1.1 matt #ifdef CGEN_ASM_INIT_HOOK
523 1.1 matt CGEN_ASM_INIT_HOOK
524 1.1 matt #endif
525 1.1 matt }
526 1.1 matt
527 1.1 matt
528 1.1 matt
530 1.1 matt /* Regex construction routine.
531 1.1 matt
532 1.1 matt This translates an opcode syntax string into a regex string,
533 1.1 matt by replacing any non-character syntax element (such as an
534 1.1 matt opcode) with the pattern '.*'
535 1.1 matt
536 1.1 matt It then compiles the regex and stores it in the opcode, for
537 1.1 matt later use by or1k_cgen_assemble_insn
538 1.1 matt
539 1.1 matt Returns NULL for success, an error message for failure. */
540 1.1 matt
541 1.1 matt char *
542 1.1 matt or1k_cgen_build_insn_regex (CGEN_INSN *insn)
543 1.1 matt {
544 1.1 matt CGEN_OPCODE *opc = (CGEN_OPCODE *) CGEN_INSN_OPCODE (insn);
545 1.1 matt const char *mnem = CGEN_INSN_MNEMONIC (insn);
546 1.1 matt char rxbuf[CGEN_MAX_RX_ELEMENTS];
547 1.1 matt char *rx = rxbuf;
548 1.1 matt const CGEN_SYNTAX_CHAR_TYPE *syn;
549 1.1 matt int reg_err;
550 1.1 matt
551 1.1 matt syn = CGEN_SYNTAX_STRING (CGEN_OPCODE_SYNTAX (opc));
552 1.1 matt
553 1.1 matt /* Mnemonics come first in the syntax string. */
554 1.1 matt if (! CGEN_SYNTAX_MNEMONIC_P (* syn))
555 1.1 matt return _("missing mnemonic in syntax string");
556 1.1 matt ++syn;
557 1.1 matt
558 1.1 matt /* Generate a case sensitive regular expression that emulates case
559 1.1 matt insensitive matching in the "C" locale. We cannot generate a case
560 1.1 matt insensitive regular expression because in Turkish locales, 'i' and 'I'
561 1.1 matt are not equal modulo case conversion. */
562 1.1 matt
563 1.1 matt /* Copy the literal mnemonic out of the insn. */
564 1.1 matt for (; *mnem; mnem++)
565 1.1 matt {
566 1.1 matt char c = *mnem;
567 1.1 matt
568 1.1 matt if (ISALPHA (c))
569 1.1 matt {
570 1.1 matt *rx++ = '[';
571 1.1 matt *rx++ = TOLOWER (c);
572 1.1 matt *rx++ = TOUPPER (c);
573 1.1 matt *rx++ = ']';
574 1.1 matt }
575 1.1 matt else
576 1.1 matt *rx++ = c;
577 1.1 matt }
578 1.1 matt
579 1.1 matt /* Copy any remaining literals from the syntax string into the rx. */
580 1.1 matt for(; * syn != 0 && rx <= rxbuf + (CGEN_MAX_RX_ELEMENTS - 7 - 4); ++syn)
581 1.1 matt {
582 1.1 matt if (CGEN_SYNTAX_CHAR_P (* syn))
583 1.1 matt {
584 1.1 matt char c = CGEN_SYNTAX_CHAR (* syn);
585 1.1 matt
586 1.1 matt switch (c)
587 1.1 matt {
588 1.1 matt /* Escape any regex metacharacters in the syntax. */
589 1.1 matt case '.': case '[': case '\\':
590 1.1 matt case '*': case '^': case '$':
591 1.1 matt
592 1.1 matt #ifdef CGEN_ESCAPE_EXTENDED_REGEX
593 1.1 matt case '?': case '{': case '}':
594 1.1 matt case '(': case ')': case '*':
595 1.1 matt case '|': case '+': case ']':
596 1.1 matt #endif
597 1.1 matt *rx++ = '\\';
598 1.1 matt *rx++ = c;
599 1.1 matt break;
600 1.1 matt
601 1.1 matt default:
602 1.1 matt if (ISALPHA (c))
603 1.1 matt {
604 1.1 matt *rx++ = '[';
605 1.1 matt *rx++ = TOLOWER (c);
606 1.1 matt *rx++ = TOUPPER (c);
607 1.1 matt *rx++ = ']';
608 1.1 matt }
609 1.1 matt else
610 1.1 matt *rx++ = c;
611 1.1 matt break;
612 1.1 matt }
613 1.1 matt }
614 1.1 matt else
615 1.1 matt {
616 1.1 matt /* Replace non-syntax fields with globs. */
617 1.1 matt *rx++ = '.';
618 1.1 matt *rx++ = '*';
619 1.1 matt }
620 1.1 matt }
621 1.1 matt
622 1.1 matt /* Trailing whitespace ok. */
623 1.1 matt * rx++ = '[';
624 1.1 matt * rx++ = ' ';
625 1.1 matt * rx++ = '\t';
626 1.1 matt * rx++ = ']';
627 1.1 matt * rx++ = '*';
628 1.1 matt
629 1.1 matt /* But anchor it after that. */
630 1.1 matt * rx++ = '$';
631 1.1 matt * rx = '\0';
632 1.1 matt
633 1.1 matt CGEN_INSN_RX (insn) = xmalloc (sizeof (regex_t));
634 1.1 matt reg_err = regcomp ((regex_t *) CGEN_INSN_RX (insn), rxbuf, REG_NOSUB);
635 1.1 matt
636 1.1 matt if (reg_err == 0)
637 1.1 matt return NULL;
638 1.1 matt else
639 1.1 matt {
640 1.1 matt static char msg[80];
641 1.1 matt
642 1.1 matt regerror (reg_err, (regex_t *) CGEN_INSN_RX (insn), msg, 80);
643 1.1 matt regfree ((regex_t *) CGEN_INSN_RX (insn));
644 1.1 matt free (CGEN_INSN_RX (insn));
645 1.1 matt (CGEN_INSN_RX (insn)) = NULL;
646 1.1 matt return msg;
647 1.1 matt }
648 1.1 matt }
649 1.1 matt
650 1.1 matt
651 1.1 matt /* Default insn parser.
653 1.1 matt
654 1.1 matt The syntax string is scanned and operands are parsed and stored in FIELDS.
655 1.1 matt Relocs are queued as we go via other callbacks.
656 1.1 matt
657 1.1 matt ??? Note that this is currently an all-or-nothing parser. If we fail to
658 1.1 matt parse the instruction, we return 0 and the caller will start over from
659 1.1 matt the beginning. Backtracking will be necessary in parsing subexpressions,
660 1.1 matt but that can be handled there. Not handling backtracking here may get
661 1.1 matt expensive in the case of the m68k. Deal with later.
662 1.1 matt
663 1.1 matt Returns NULL for success, an error message for failure. */
664 1.1 matt
665 1.1 matt static const char *
666 1.1 matt parse_insn_normal (CGEN_CPU_DESC cd,
667 1.1 matt const CGEN_INSN *insn,
668 1.1 matt const char **strp,
669 1.1 matt CGEN_FIELDS *fields)
670 1.1 matt {
671 1.1 matt /* ??? Runtime added insns not handled yet. */
672 1.1 matt const CGEN_SYNTAX *syntax = CGEN_INSN_SYNTAX (insn);
673 1.1 matt const char *str = *strp;
674 1.1 matt const char *errmsg;
675 1.1 matt const char *p;
676 1.1 matt const CGEN_SYNTAX_CHAR_TYPE * syn;
677 1.1 matt #ifdef CGEN_MNEMONIC_OPERANDS
678 1.1 matt /* FIXME: wip */
679 1.1 matt int past_opcode_p;
680 1.1 matt #endif
681 1.1 matt
682 1.1 matt /* For now we assume the mnemonic is first (there are no leading operands).
683 1.1 matt We can parse it without needing to set up operand parsing.
684 1.1 matt GAS's input scrubber will ensure mnemonics are lowercase, but we may
685 1.1 matt not be called from GAS. */
686 1.1 matt p = CGEN_INSN_MNEMONIC (insn);
687 1.1 matt while (*p && TOLOWER (*p) == TOLOWER (*str))
688 1.1 matt ++p, ++str;
689 1.1 matt
690 1.1 matt if (* p)
691 1.1 matt return _("unrecognized instruction");
692 1.1 matt
693 1.1 matt #ifndef CGEN_MNEMONIC_OPERANDS
694 1.1 matt if (* str && ! ISSPACE (* str))
695 1.1 matt return _("unrecognized instruction");
696 1.1 matt #endif
697 1.1 matt
698 1.1 matt CGEN_INIT_PARSE (cd);
699 1.1 matt cgen_init_parse_operand (cd);
700 1.1 matt #ifdef CGEN_MNEMONIC_OPERANDS
701 1.1 matt past_opcode_p = 0;
702 1.1 matt #endif
703 1.1 matt
704 1.1 matt /* We don't check for (*str != '\0') here because we want to parse
705 1.1 matt any trailing fake arguments in the syntax string. */
706 1.1 matt syn = CGEN_SYNTAX_STRING (syntax);
707 1.1 matt
708 1.1 matt /* Mnemonics come first for now, ensure valid string. */
709 1.1 matt if (! CGEN_SYNTAX_MNEMONIC_P (* syn))
710 1.1 matt abort ();
711 1.1 matt
712 1.1 matt ++syn;
713 1.1 matt
714 1.1 matt while (* syn != 0)
715 1.1 matt {
716 1.1 matt /* Non operand chars must match exactly. */
717 1.1 matt if (CGEN_SYNTAX_CHAR_P (* syn))
718 1.1 matt {
719 1.1 matt /* FIXME: While we allow for non-GAS callers above, we assume the
720 1.1 matt first char after the mnemonic part is a space. */
721 1.1 matt /* FIXME: We also take inappropriate advantage of the fact that
722 1.1 matt GAS's input scrubber will remove extraneous blanks. */
723 1.1 matt if (TOLOWER (*str) == TOLOWER (CGEN_SYNTAX_CHAR (* syn)))
724 1.1 matt {
725 1.1 matt #ifdef CGEN_MNEMONIC_OPERANDS
726 1.1 matt if (CGEN_SYNTAX_CHAR(* syn) == ' ')
727 1.1 matt past_opcode_p = 1;
728 1.1 matt #endif
729 1.1 matt ++ syn;
730 1.1 matt ++ str;
731 1.1 matt }
732 1.1 matt else if (*str)
733 1.1 matt {
734 1.1 matt /* Syntax char didn't match. Can't be this insn. */
735 1.1 matt static char msg [80];
736 1.1 matt
737 1.1 matt /* xgettext:c-format */
738 1.1 matt sprintf (msg, _("syntax error (expected char `%c', found `%c')"),
739 1.1 matt CGEN_SYNTAX_CHAR(*syn), *str);
740 1.1 matt return msg;
741 1.1 matt }
742 1.1 matt else
743 1.1 matt {
744 1.1 matt /* Ran out of input. */
745 1.1 matt static char msg [80];
746 1.1 matt
747 1.1 matt /* xgettext:c-format */
748 1.1 matt sprintf (msg, _("syntax error (expected char `%c', found end of instruction)"),
749 1.1 matt CGEN_SYNTAX_CHAR(*syn));
750 1.1 matt return msg;
751 1.1 matt }
752 1.1 matt continue;
753 1.1 matt }
754 1.1 matt
755 1.1 matt #ifdef CGEN_MNEMONIC_OPERANDS
756 1.1 matt (void) past_opcode_p;
757 1.1 matt #endif
758 1.1 matt /* We have an operand of some sort. */
759 1.1 matt errmsg = cd->parse_operand (cd, CGEN_SYNTAX_FIELD (*syn), &str, fields);
760 1.1 matt if (errmsg)
761 1.1 matt return errmsg;
762 1.1 matt
763 1.1 matt /* Done with this operand, continue with next one. */
764 1.1 matt ++ syn;
765 1.1 matt }
766 1.1 matt
767 1.1 matt /* If we're at the end of the syntax string, we're done. */
768 1.1 matt if (* syn == 0)
769 1.1 matt {
770 1.1 matt /* FIXME: For the moment we assume a valid `str' can only contain
771 1.1 matt blanks now. IE: We needn't try again with a longer version of
772 1.1 matt the insn and it is assumed that longer versions of insns appear
773 1.1 matt before shorter ones (eg: lsr r2,r3,1 vs lsr r2,r3). */
774 1.1 matt while (ISSPACE (* str))
775 1.1 matt ++ str;
776 1.1 matt
777 1.1 matt if (* str != '\0')
778 1.1 matt return _("junk at end of line"); /* FIXME: would like to include `str' */
779 1.1 matt
780 1.1 matt return NULL;
781 1.1 matt }
782 1.1 matt
783 1.1 matt /* We couldn't parse it. */
784 1.1 matt return _("unrecognized instruction");
785 1.1 matt }
786 1.1 matt
787 1.1 matt /* Main entry point.
789 1.1 matt This routine is called for each instruction to be assembled.
790 1.1 matt STR points to the insn to be assembled.
791 1.1 matt We assume all necessary tables have been initialized.
792 1.1 matt The assembled instruction, less any fixups, is stored in BUF.
793 1.1 matt Remember that if CGEN_INT_INSN_P then BUF is an int and thus the value
794 1.1 matt still needs to be converted to target byte order, otherwise BUF is an array
795 1.1 matt of bytes in target byte order.
796 1.1 matt The result is a pointer to the insn's entry in the opcode table,
797 1.1 matt or NULL if an error occured (an error message will have already been
798 1.1 matt printed).
799 1.1 matt
800 1.1 matt Note that when processing (non-alias) macro-insns,
801 1.1 matt this function recurses.
802 1.1 matt
803 1.1 matt ??? It's possible to make this cpu-independent.
804 1.1 matt One would have to deal with a few minor things.
805 1.1 matt At this point in time doing so would be more of a curiosity than useful
806 1.1 matt [for example this file isn't _that_ big], but keeping the possibility in
807 1.1 matt mind helps keep the design clean. */
808 1.1 matt
809 1.1 matt const CGEN_INSN *
810 1.1 matt or1k_cgen_assemble_insn (CGEN_CPU_DESC cd,
811 1.1 matt const char *str,
812 1.1 matt CGEN_FIELDS *fields,
813 1.1 matt CGEN_INSN_BYTES_PTR buf,
814 1.1 matt char **errmsg)
815 1.1 matt {
816 1.1 matt const char *start;
817 1.1 matt CGEN_INSN_LIST *ilist;
818 1.1 matt const char *parse_errmsg = NULL;
819 1.1 matt const char *insert_errmsg = NULL;
820 1.1 matt int recognized_mnemonic = 0;
821 1.1 matt
822 1.1 matt /* Skip leading white space. */
823 1.1 matt while (ISSPACE (* str))
824 1.1 matt ++ str;
825 1.1 matt
826 1.1 matt /* The instructions are stored in hashed lists.
827 1.1 matt Get the first in the list. */
828 1.1 matt ilist = CGEN_ASM_LOOKUP_INSN (cd, str);
829 1.1 matt
830 1.1 matt /* Keep looking until we find a match. */
831 1.1 matt start = str;
832 1.1 matt for ( ; ilist != NULL ; ilist = CGEN_ASM_NEXT_INSN (ilist))
833 1.1 matt {
834 1.1 matt const CGEN_INSN *insn = ilist->insn;
835 1.1 matt recognized_mnemonic = 1;
836 1.1 matt
837 1.1 matt #ifdef CGEN_VALIDATE_INSN_SUPPORTED
838 1.1 matt /* Not usually needed as unsupported opcodes
839 1.1 matt shouldn't be in the hash lists. */
840 1.1 matt /* Is this insn supported by the selected cpu? */
841 1.1 matt if (! or1k_cgen_insn_supported (cd, insn))
842 1.1 matt continue;
843 1.1 matt #endif
844 1.1 matt /* If the RELAXED attribute is set, this is an insn that shouldn't be
845 1.1 matt chosen immediately. Instead, it is used during assembler/linker
846 1.1 matt relaxation if possible. */
847 1.1 matt if (CGEN_INSN_ATTR_VALUE (insn, CGEN_INSN_RELAXED) != 0)
848 1.1 matt continue;
849 1.1 matt
850 1.1 matt str = start;
851 1.1 matt
852 1.1 matt /* Skip this insn if str doesn't look right lexically. */
853 1.1 matt if (CGEN_INSN_RX (insn) != NULL &&
854 1.1 matt regexec ((regex_t *) CGEN_INSN_RX (insn), str, 0, NULL, 0) == REG_NOMATCH)
855 1.1 matt continue;
856 1.1 matt
857 1.1 matt /* Allow parse/insert handlers to obtain length of insn. */
858 1.1 matt CGEN_FIELDS_BITSIZE (fields) = CGEN_INSN_BITSIZE (insn);
859 1.1 matt
860 1.1 matt parse_errmsg = CGEN_PARSE_FN (cd, insn) (cd, insn, & str, fields);
861 1.1 matt if (parse_errmsg != NULL)
862 1.1 matt continue;
863 1.1 matt
864 1.1 matt /* ??? 0 is passed for `pc'. */
865 1.1 matt insert_errmsg = CGEN_INSERT_FN (cd, insn) (cd, insn, fields, buf,
866 1.1 matt (bfd_vma) 0);
867 1.1 matt if (insert_errmsg != NULL)
868 1.1 matt continue;
869 1.1 matt
870 1.1 matt /* It is up to the caller to actually output the insn and any
871 1.1 matt queued relocs. */
872 1.1 matt return insn;
873 1.1 matt }
874 1.1 matt
875 1.1 matt {
876 1.1 matt static char errbuf[150];
877 1.1 matt const char *tmp_errmsg;
878 1.1 matt #ifdef CGEN_VERBOSE_ASSEMBLER_ERRORS
879 1.1 matt #define be_verbose 1
880 1.1 matt #else
881 1.1 matt #define be_verbose 0
882 1.1 matt #endif
883 1.1 matt
884 1.1 matt if (be_verbose)
885 1.1 matt {
886 1.1 matt /* If requesting verbose error messages, use insert_errmsg.
887 1.1 matt Failing that, use parse_errmsg. */
888 1.1 matt tmp_errmsg = (insert_errmsg ? insert_errmsg :
889 1.1 matt parse_errmsg ? parse_errmsg :
890 1.1 matt recognized_mnemonic ?
891 1.1 matt _("unrecognized form of instruction") :
892 1.1 matt _("unrecognized instruction"));
893 1.1 matt
894 1.1 matt if (strlen (start) > 50)
895 1.1 matt /* xgettext:c-format */
896 1.1 matt sprintf (errbuf, "%s `%.50s...'", tmp_errmsg, start);
897 1.1 matt else
898 1.1 matt /* xgettext:c-format */
899 1.1 matt sprintf (errbuf, "%s `%.50s'", tmp_errmsg, start);
900 1.1 matt }
901 1.1 matt else
902 1.1 matt {
903 1.1 matt if (strlen (start) > 50)
904 1.1 matt /* xgettext:c-format */
905 1.1 matt sprintf (errbuf, _("bad instruction `%.50s...'"), start);
906 1.1 matt else
907 1.1 matt /* xgettext:c-format */
908 1.1 matt sprintf (errbuf, _("bad instruction `%.50s'"), start);
909 1.1 matt }
910 1.1 matt
911 *errmsg = errbuf;
912 return NULL;
913 }
914 }
915