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[thirdparty/binutils-gdb.git] / opcodes / xstormy16-asm.c
CommitLineData
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1/* Assembler interface for targets using CGEN. -*- C -*-
2 CGEN: Cpu tools GENerator
3
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NC
4 THIS FILE IS MACHINE GENERATED WITH CGEN.
5 - the resultant file is machine generated, cgen-asm.in isn't
93fbbb04 6
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7 Copyright 1996, 1997, 1998, 1999, 2000, 2001, 2005
8 Free Software Foundation, Inc.
93fbbb04 9
47b0e7ad 10 This file is part of the GNU Binutils and GDB, the GNU debugger.
93fbbb04 11
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NC
12 This program is free software; you can redistribute it and/or modify
13 it under the terms of the GNU General Public License as published by
14 the Free Software Foundation; either version 2, or (at your option)
15 any later version.
93fbbb04 16
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NC
17 This program is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 GNU General Public License for more details.
93fbbb04 21
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NC
22 You should have received a copy of the GNU General Public License
23 along with this program; if not, write to the Free Software Foundation, Inc.,
24 51 Franklin Street - Fifth Floor, Boston, MA 02110-1301, USA. */
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25
26/* ??? Eventually more and more of this stuff can go to cpu-independent files.
27 Keep that in mind. */
28
29#include "sysdep.h"
30#include <stdio.h>
31#include "ansidecl.h"
32#include "bfd.h"
33#include "symcat.h"
34#include "xstormy16-desc.h"
35#include "xstormy16-opc.h"
36#include "opintl.h"
37#include "xregex.h"
38#include "libiberty.h"
39#include "safe-ctype.h"
40
41#undef min
42#define min(a,b) ((a) < (b) ? (a) : (b))
43#undef max
44#define max(a,b) ((a) > (b) ? (a) : (b))
45
46static const char * parse_insn_normal
ffead7ae 47 (CGEN_CPU_DESC, const CGEN_INSN *, const char **, CGEN_FIELDS *);
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48\f
49/* -- assembler routines inserted here. */
50
51/* -- asm.c */
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52
53/* The machine-independent code doesn't know how to disambiguate
54 mov (foo),r3
55 and
56 mov (r2),r3
57 where 'foo' is a label. This helps it out. */
58
59static const char *
47b0e7ad
NC
60parse_mem8 (CGEN_CPU_DESC cd,
61 const char **strp,
62 int opindex,
63 unsigned long *valuep)
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64{
65 if (**strp == '(')
66 {
67 const char *s = *strp;
68
69 if (s[1] == '-' && s[2] == '-')
70 return _("Bad register in preincrement");
71
98f70fc4 72 while (ISALNUM (*++s))
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73 ;
74 if (s[0] == '+' && s[1] == '+' && (s[2] == ')' || s[2] == ','))
75 return _("Bad register in postincrement");
76 if (s[0] == ',' || s[0] == ')')
77 return _("Bad register name");
78 }
79 else if (cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_gr_names,
33b71eeb 80 (long *) valuep) == NULL)
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81 return _("Label conflicts with register name");
82 else if (strncasecmp (*strp, "rx,", 3) == 0
83 || strncasecmp (*strp, "rxl,", 3) == 0
84 || strncasecmp (*strp, "rxh,", 3) == 0)
85 return _("Label conflicts with `Rx'");
86 else if (**strp == '#')
87 return _("Bad immediate expression");
88
89 return cgen_parse_unsigned_integer (cd, strp, opindex, valuep);
90}
91
92/* For the add and subtract instructions, there are two immediate forms,
93 one for small operands and one for large ones. We want to use
94 the small one when possible, but we do not want to generate relocs
95 of the small size. This is somewhat tricky. */
96
97static const char *
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NC
98parse_small_immediate (CGEN_CPU_DESC cd,
99 const char **strp,
100 int opindex,
101 unsigned long *valuep)
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102{
103 bfd_vma value;
104 enum cgen_parse_operand_result result;
105 const char *errmsg;
106
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DD
107 if (**strp == '@')
108 return _("No relocation for small immediate");
109
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110 errmsg = (* cd->parse_operand_fn)
111 (cd, CGEN_PARSE_OPERAND_INTEGER, strp, opindex, BFD_RELOC_NONE,
47b0e7ad 112 & result, & value);
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113
114 if (errmsg)
115 return errmsg;
116
117 if (result != CGEN_PARSE_OPERAND_RESULT_NUMBER)
118 return _("Small operand was not an immediate number");
119
120 *valuep = value;
121 return NULL;
122}
c2617f40 123
47b0e7ad 124/* Literal scan be either a normal literal, a @hi() or @lo relocation. */
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DD
125
126static const char *
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127parse_immediate16 (CGEN_CPU_DESC cd,
128 const char **strp,
129 int opindex,
130 unsigned long *valuep)
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DD
131{
132 const char *errmsg;
133 enum cgen_parse_operand_result result;
134 bfd_reloc_code_real_type code = BFD_RELOC_NONE;
135 bfd_vma value;
136
137 if (strncmp (*strp, "@hi(", 4) == 0)
138 {
139 *strp += 4;
140 code = BFD_RELOC_HI16;
141 }
142 else
143 if (strncmp (*strp, "@lo(", 4) == 0)
144 {
145 *strp += 4;
146 code = BFD_RELOC_LO16;
147 }
148
149 if (code == BFD_RELOC_NONE)
150 errmsg = cgen_parse_unsigned_integer (cd, strp, opindex, valuep);
151 else
152 {
153 errmsg = cgen_parse_address (cd, strp, opindex, code, &result, &value);
154 if ((errmsg == NULL) &&
155 (result != CGEN_PARSE_OPERAND_RESULT_QUEUED))
156 errmsg = _("Operand is not a symbol");
157
158 *valuep = value;
159 if ((code == BFD_RELOC_HI16 || code == BFD_RELOC_LO16)
160 && **strp == ')')
161 *strp += 1;
162 else
163 {
164 errmsg = _("Syntax error: No trailing ')'");
165 return errmsg;
166 }
167 }
168 return errmsg;
169}
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170/* -- */
171
172const char * xstormy16_cgen_parse_operand
47b0e7ad 173 (CGEN_CPU_DESC, int, const char **, CGEN_FIELDS *);
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174
175/* Main entry point for operand parsing.
176
177 This function is basically just a big switch statement. Earlier versions
178 used tables to look up the function to use, but
179 - if the table contains both assembler and disassembler functions then
180 the disassembler contains much of the assembler and vice-versa,
181 - there's a lot of inlining possibilities as things grow,
182 - using a switch statement avoids the function call overhead.
183
184 This function could be moved into `parse_insn_normal', but keeping it
185 separate makes clear the interface between `parse_insn_normal' and each of
186 the handlers. */
187
188const char *
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NC
189xstormy16_cgen_parse_operand (CGEN_CPU_DESC cd,
190 int opindex,
191 const char ** strp,
192 CGEN_FIELDS * fields)
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193{
194 const char * errmsg = NULL;
195 /* Used by scalar operands that still need to be parsed. */
196 long junk ATTRIBUTE_UNUSED;
197
198 switch (opindex)
199 {
200 case XSTORMY16_OPERAND_RB :
1951c6f7 201 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_gr_Rb_names, & fields->f_Rb);
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202 break;
203 case XSTORMY16_OPERAND_RBJ :
1951c6f7 204 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_gr_Rb_names, & fields->f_Rbj);
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205 break;
206 case XSTORMY16_OPERAND_RD :
207 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_gr_names, & fields->f_Rd);
208 break;
209 case XSTORMY16_OPERAND_RDM :
210 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_gr_names, & fields->f_Rdm);
211 break;
212 case XSTORMY16_OPERAND_RM :
213 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_gr_names, & fields->f_Rm);
214 break;
215 case XSTORMY16_OPERAND_RS :
216 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_gr_names, & fields->f_Rs);
217 break;
218 case XSTORMY16_OPERAND_ABS24 :
33b71eeb 219 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_ABS24, (unsigned long *) (& fields->f_abs24));
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220 break;
221 case XSTORMY16_OPERAND_BCOND2 :
222 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_h_branchcond, & fields->f_op2);
223 break;
224 case XSTORMY16_OPERAND_BCOND5 :
225 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_h_branchcond, & fields->f_op5);
226 break;
227 case XSTORMY16_OPERAND_HMEM8 :
33b71eeb 228 errmsg = parse_mem8 (cd, strp, XSTORMY16_OPERAND_HMEM8, (unsigned long *) (& fields->f_hmem8));
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229 break;
230 case XSTORMY16_OPERAND_IMM12 :
33b71eeb 231 errmsg = cgen_parse_signed_integer (cd, strp, XSTORMY16_OPERAND_IMM12, (long *) (& fields->f_imm12));
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232 break;
233 case XSTORMY16_OPERAND_IMM16 :
33b71eeb 234 errmsg = parse_immediate16 (cd, strp, XSTORMY16_OPERAND_IMM16, (unsigned long *) (& fields->f_imm16));
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235 break;
236 case XSTORMY16_OPERAND_IMM2 :
33b71eeb 237 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_IMM2, (unsigned long *) (& fields->f_imm2));
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238 break;
239 case XSTORMY16_OPERAND_IMM3 :
33b71eeb 240 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_IMM3, (unsigned long *) (& fields->f_imm3));
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241 break;
242 case XSTORMY16_OPERAND_IMM3B :
33b71eeb 243 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_IMM3B, (unsigned long *) (& fields->f_imm3b));
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244 break;
245 case XSTORMY16_OPERAND_IMM4 :
33b71eeb 246 errmsg = parse_small_immediate (cd, strp, XSTORMY16_OPERAND_IMM4, (unsigned long *) (& fields->f_imm4));
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247 break;
248 case XSTORMY16_OPERAND_IMM8 :
33b71eeb 249 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_IMM8, (unsigned long *) (& fields->f_imm8));
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250 break;
251 case XSTORMY16_OPERAND_IMM8SMALL :
33b71eeb 252 errmsg = parse_small_immediate (cd, strp, XSTORMY16_OPERAND_IMM8SMALL, (unsigned long *) (& fields->f_imm8));
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253 break;
254 case XSTORMY16_OPERAND_LMEM8 :
33b71eeb 255 errmsg = parse_mem8 (cd, strp, XSTORMY16_OPERAND_LMEM8, (unsigned long *) (& fields->f_lmem8));
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256 break;
257 case XSTORMY16_OPERAND_REL12 :
33b71eeb 258 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_REL12, (unsigned long *) (& fields->f_rel12));
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259 break;
260 case XSTORMY16_OPERAND_REL12A :
33b71eeb 261 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_REL12A, (unsigned long *) (& fields->f_rel12a));
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262 break;
263 case XSTORMY16_OPERAND_REL8_2 :
33b71eeb 264 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_REL8_2, (unsigned long *) (& fields->f_rel8_2));
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265 break;
266 case XSTORMY16_OPERAND_REL8_4 :
33b71eeb 267 errmsg = cgen_parse_unsigned_integer (cd, strp, XSTORMY16_OPERAND_REL8_4, (unsigned long *) (& fields->f_rel8_4));
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268 break;
269 case XSTORMY16_OPERAND_WS2 :
270 errmsg = cgen_parse_keyword (cd, strp, & xstormy16_cgen_opval_h_wordsize, & fields->f_op2m);
271 break;
272
273 default :
274 /* xgettext:c-format */
275 fprintf (stderr, _("Unrecognized field %d while parsing.\n"), opindex);
276 abort ();
277 }
278
279 return errmsg;
280}
281
282cgen_parse_fn * const xstormy16_cgen_parse_handlers[] =
283{
284 parse_insn_normal,
285};
286
287void
47b0e7ad 288xstormy16_cgen_init_asm (CGEN_CPU_DESC cd)
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289{
290 xstormy16_cgen_init_opcode_table (cd);
291 xstormy16_cgen_init_ibld_table (cd);
292 cd->parse_handlers = & xstormy16_cgen_parse_handlers[0];
293 cd->parse_operand = xstormy16_cgen_parse_operand;
1620f33d
AM
294#ifdef CGEN_ASM_INIT_HOOK
295CGEN_ASM_INIT_HOOK
296#endif
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297}
298
299\f
300
301/* Regex construction routine.
302
303 This translates an opcode syntax string into a regex string,
304 by replacing any non-character syntax element (such as an
305 opcode) with the pattern '.*'
306
307 It then compiles the regex and stores it in the opcode, for
308 later use by xstormy16_cgen_assemble_insn
309
310 Returns NULL for success, an error message for failure. */
311
312char *
ffead7ae 313xstormy16_cgen_build_insn_regex (CGEN_INSN *insn)
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314{
315 CGEN_OPCODE *opc = (CGEN_OPCODE *) CGEN_INSN_OPCODE (insn);
316 const char *mnem = CGEN_INSN_MNEMONIC (insn);
317 char rxbuf[CGEN_MAX_RX_ELEMENTS];
318 char *rx = rxbuf;
319 const CGEN_SYNTAX_CHAR_TYPE *syn;
320 int reg_err;
321
322 syn = CGEN_SYNTAX_STRING (CGEN_OPCODE_SYNTAX (opc));
323
324 /* Mnemonics come first in the syntax string. */
325 if (! CGEN_SYNTAX_MNEMONIC_P (* syn))
326 return _("missing mnemonic in syntax string");
327 ++syn;
328
329 /* Generate a case sensitive regular expression that emulates case
330 insensitive matching in the "C" locale. We cannot generate a case
331 insensitive regular expression because in Turkish locales, 'i' and 'I'
332 are not equal modulo case conversion. */
333
334 /* Copy the literal mnemonic out of the insn. */
335 for (; *mnem; mnem++)
336 {
337 char c = *mnem;
338
339 if (ISALPHA (c))
340 {
341 *rx++ = '[';
342 *rx++ = TOLOWER (c);
343 *rx++ = TOUPPER (c);
344 *rx++ = ']';
345 }
346 else
347 *rx++ = c;
348 }
349
350 /* Copy any remaining literals from the syntax string into the rx. */
351 for(; * syn != 0 && rx <= rxbuf + (CGEN_MAX_RX_ELEMENTS - 7 - 4); ++syn)
352 {
353 if (CGEN_SYNTAX_CHAR_P (* syn))
354 {
355 char c = CGEN_SYNTAX_CHAR (* syn);
356
357 switch (c)
358 {
359 /* Escape any regex metacharacters in the syntax. */
360 case '.': case '[': case '\\':
361 case '*': case '^': case '$':
362
363#ifdef CGEN_ESCAPE_EXTENDED_REGEX
364 case '?': case '{': case '}':
365 case '(': case ')': case '*':
366 case '|': case '+': case ']':
367#endif
368 *rx++ = '\\';
369 *rx++ = c;
370 break;
371
372 default:
373 if (ISALPHA (c))
374 {
375 *rx++ = '[';
376 *rx++ = TOLOWER (c);
377 *rx++ = TOUPPER (c);
378 *rx++ = ']';
379 }
380 else
381 *rx++ = c;
382 break;
383 }
384 }
385 else
386 {
387 /* Replace non-syntax fields with globs. */
388 *rx++ = '.';
389 *rx++ = '*';
390 }
391 }
392
393 /* Trailing whitespace ok. */
394 * rx++ = '[';
395 * rx++ = ' ';
396 * rx++ = '\t';
397 * rx++ = ']';
398 * rx++ = '*';
399
400 /* But anchor it after that. */
401 * rx++ = '$';
402 * rx = '\0';
403
404 CGEN_INSN_RX (insn) = xmalloc (sizeof (regex_t));
405 reg_err = regcomp ((regex_t *) CGEN_INSN_RX (insn), rxbuf, REG_NOSUB);
406
407 if (reg_err == 0)
408 return NULL;
409 else
410 {
411 static char msg[80];
412
413 regerror (reg_err, (regex_t *) CGEN_INSN_RX (insn), msg, 80);
414 regfree ((regex_t *) CGEN_INSN_RX (insn));
415 free (CGEN_INSN_RX (insn));
416 (CGEN_INSN_RX (insn)) = NULL;
417 return msg;
418 }
419}
420
421\f
422/* Default insn parser.
423
424 The syntax string is scanned and operands are parsed and stored in FIELDS.
425 Relocs are queued as we go via other callbacks.
426
427 ??? Note that this is currently an all-or-nothing parser. If we fail to
428 parse the instruction, we return 0 and the caller will start over from
429 the beginning. Backtracking will be necessary in parsing subexpressions,
430 but that can be handled there. Not handling backtracking here may get
431 expensive in the case of the m68k. Deal with later.
432
433 Returns NULL for success, an error message for failure. */
434
435static const char *
ffead7ae
MM
436parse_insn_normal (CGEN_CPU_DESC cd,
437 const CGEN_INSN *insn,
438 const char **strp,
439 CGEN_FIELDS *fields)
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440{
441 /* ??? Runtime added insns not handled yet. */
442 const CGEN_SYNTAX *syntax = CGEN_INSN_SYNTAX (insn);
443 const char *str = *strp;
444 const char *errmsg;
445 const char *p;
446 const CGEN_SYNTAX_CHAR_TYPE * syn;
447#ifdef CGEN_MNEMONIC_OPERANDS
448 /* FIXME: wip */
449 int past_opcode_p;
450#endif
451
452 /* For now we assume the mnemonic is first (there are no leading operands).
453 We can parse it without needing to set up operand parsing.
454 GAS's input scrubber will ensure mnemonics are lowercase, but we may
455 not be called from GAS. */
456 p = CGEN_INSN_MNEMONIC (insn);
457 while (*p && TOLOWER (*p) == TOLOWER (*str))
458 ++p, ++str;
459
460 if (* p)
461 return _("unrecognized instruction");
462
463#ifndef CGEN_MNEMONIC_OPERANDS
464 if (* str && ! ISSPACE (* str))
465 return _("unrecognized instruction");
466#endif
467
468 CGEN_INIT_PARSE (cd);
469 cgen_init_parse_operand (cd);
470#ifdef CGEN_MNEMONIC_OPERANDS
471 past_opcode_p = 0;
472#endif
473
474 /* We don't check for (*str != '\0') here because we want to parse
475 any trailing fake arguments in the syntax string. */
476 syn = CGEN_SYNTAX_STRING (syntax);
477
478 /* Mnemonics come first for now, ensure valid string. */
479 if (! CGEN_SYNTAX_MNEMONIC_P (* syn))
480 abort ();
481
482 ++syn;
483
484 while (* syn != 0)
485 {
486 /* Non operand chars must match exactly. */
487 if (CGEN_SYNTAX_CHAR_P (* syn))
488 {
489 /* FIXME: While we allow for non-GAS callers above, we assume the
490 first char after the mnemonic part is a space. */
491 /* FIXME: We also take inappropriate advantage of the fact that
492 GAS's input scrubber will remove extraneous blanks. */
493 if (TOLOWER (*str) == TOLOWER (CGEN_SYNTAX_CHAR (* syn)))
494 {
495#ifdef CGEN_MNEMONIC_OPERANDS
496 if (CGEN_SYNTAX_CHAR(* syn) == ' ')
497 past_opcode_p = 1;
498#endif
499 ++ syn;
500 ++ str;
501 }
502 else if (*str)
503 {
504 /* Syntax char didn't match. Can't be this insn. */
505 static char msg [80];
506
507 /* xgettext:c-format */
508 sprintf (msg, _("syntax error (expected char `%c', found `%c')"),
509 CGEN_SYNTAX_CHAR(*syn), *str);
510 return msg;
511 }
512 else
513 {
514 /* Ran out of input. */
515 static char msg [80];
516
517 /* xgettext:c-format */
518 sprintf (msg, _("syntax error (expected char `%c', found end of instruction)"),
519 CGEN_SYNTAX_CHAR(*syn));
520 return msg;
521 }
522 continue;
523 }
524
525 /* We have an operand of some sort. */
a978a3e5 526 errmsg = cd->parse_operand (cd, CGEN_SYNTAX_FIELD (*syn),
93fbbb04
GK
527 &str, fields);
528 if (errmsg)
529 return errmsg;
530
531 /* Done with this operand, continue with next one. */
532 ++ syn;
533 }
534
535 /* If we're at the end of the syntax string, we're done. */
536 if (* syn == 0)
537 {
538 /* FIXME: For the moment we assume a valid `str' can only contain
539 blanks now. IE: We needn't try again with a longer version of
540 the insn and it is assumed that longer versions of insns appear
541 before shorter ones (eg: lsr r2,r3,1 vs lsr r2,r3). */
542 while (ISSPACE (* str))
543 ++ str;
544
545 if (* str != '\0')
546 return _("junk at end of line"); /* FIXME: would like to include `str' */
547
548 return NULL;
549 }
550
551 /* We couldn't parse it. */
552 return _("unrecognized instruction");
553}
554\f
555/* Main entry point.
556 This routine is called for each instruction to be assembled.
557 STR points to the insn to be assembled.
558 We assume all necessary tables have been initialized.
559 The assembled instruction, less any fixups, is stored in BUF.
560 Remember that if CGEN_INT_INSN_P then BUF is an int and thus the value
561 still needs to be converted to target byte order, otherwise BUF is an array
562 of bytes in target byte order.
563 The result is a pointer to the insn's entry in the opcode table,
564 or NULL if an error occured (an error message will have already been
565 printed).
566
567 Note that when processing (non-alias) macro-insns,
568 this function recurses.
569
570 ??? It's possible to make this cpu-independent.
571 One would have to deal with a few minor things.
572 At this point in time doing so would be more of a curiosity than useful
573 [for example this file isn't _that_ big], but keeping the possibility in
574 mind helps keep the design clean. */
575
576const CGEN_INSN *
ffead7ae
MM
577xstormy16_cgen_assemble_insn (CGEN_CPU_DESC cd,
578 const char *str,
579 CGEN_FIELDS *fields,
580 CGEN_INSN_BYTES_PTR buf,
581 char **errmsg)
93fbbb04
GK
582{
583 const char *start;
584 CGEN_INSN_LIST *ilist;
585 const char *parse_errmsg = NULL;
586 const char *insert_errmsg = NULL;
587 int recognized_mnemonic = 0;
588
589 /* Skip leading white space. */
590 while (ISSPACE (* str))
591 ++ str;
592
593 /* The instructions are stored in hashed lists.
594 Get the first in the list. */
595 ilist = CGEN_ASM_LOOKUP_INSN (cd, str);
596
597 /* Keep looking until we find a match. */
598 start = str;
599 for ( ; ilist != NULL ; ilist = CGEN_ASM_NEXT_INSN (ilist))
600 {
601 const CGEN_INSN *insn = ilist->insn;
602 recognized_mnemonic = 1;
603
604#ifdef CGEN_VALIDATE_INSN_SUPPORTED
605 /* Not usually needed as unsupported opcodes
606 shouldn't be in the hash lists. */
607 /* Is this insn supported by the selected cpu? */
608 if (! xstormy16_cgen_insn_supported (cd, insn))
609 continue;
610#endif
b11dcf4e 611 /* If the RELAXED attribute is set, this is an insn that shouldn't be
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612 chosen immediately. Instead, it is used during assembler/linker
613 relaxation if possible. */
b11dcf4e 614 if (CGEN_INSN_ATTR_VALUE (insn, CGEN_INSN_RELAXED) != 0)
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615 continue;
616
617 str = start;
618
619 /* Skip this insn if str doesn't look right lexically. */
620 if (CGEN_INSN_RX (insn) != NULL &&
621 regexec ((regex_t *) CGEN_INSN_RX (insn), str, 0, NULL, 0) == REG_NOMATCH)
622 continue;
623
624 /* Allow parse/insert handlers to obtain length of insn. */
625 CGEN_FIELDS_BITSIZE (fields) = CGEN_INSN_BITSIZE (insn);
626
627 parse_errmsg = CGEN_PARSE_FN (cd, insn) (cd, insn, & str, fields);
628 if (parse_errmsg != NULL)
629 continue;
630
631 /* ??? 0 is passed for `pc'. */
632 insert_errmsg = CGEN_INSERT_FN (cd, insn) (cd, insn, fields, buf,
633 (bfd_vma) 0);
634 if (insert_errmsg != NULL)
635 continue;
636
637 /* It is up to the caller to actually output the insn and any
638 queued relocs. */
639 return insn;
640 }
641
642 {
643 static char errbuf[150];
644#ifdef CGEN_VERBOSE_ASSEMBLER_ERRORS
645 const char *tmp_errmsg;
646
647 /* If requesting verbose error messages, use insert_errmsg.
648 Failing that, use parse_errmsg. */
649 tmp_errmsg = (insert_errmsg ? insert_errmsg :
650 parse_errmsg ? parse_errmsg :
651 recognized_mnemonic ?
652 _("unrecognized form of instruction") :
653 _("unrecognized instruction"));
654
655 if (strlen (start) > 50)
656 /* xgettext:c-format */
657 sprintf (errbuf, "%s `%.50s...'", tmp_errmsg, start);
658 else
659 /* xgettext:c-format */
660 sprintf (errbuf, "%s `%.50s'", tmp_errmsg, start);
661#else
662 if (strlen (start) > 50)
663 /* xgettext:c-format */
664 sprintf (errbuf, _("bad instruction `%.50s...'"), start);
665 else
666 /* xgettext:c-format */
667 sprintf (errbuf, _("bad instruction `%.50s'"), start);
668#endif
669
670 *errmsg = errbuf;
671 return NULL;
672 }
673}