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[deliverable/binutils-gdb.git] / opcodes / z8k-dis.c
1 /*
2 This file is part of GNU Binutils.
3
4 This program is free software; you can redistribute it and/or modify
5 it under the terms of the GNU General Public License as published by
6 the Free Software Foundation; either version 2 of the License, or
7 (at your option) any later version.
8
9 This program is distributed in the hope that it will be useful,
10 but WITHOUT ANY WARRANTY; without even the implied warranty of
11 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
12 GNU General Public License for more details.
13
14 You should have received a copy of the GNU General Public License
15 along with this program; if not, write to the Free Software
16 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. */
17
18 #include <ansidecl.h>
19 #include "sysdep.h"
20 #include "dis-asm.h"
21
22 #define DEFINE_TABLE
23 #include "z8k-opc.h"
24
25 \f
26 #include <setjmp.h>
27
28 \f
29 typedef struct
30 {
31 /* These are all indexed by nibble number (i.e only every other entry
32 of bytes is used, and every 4th entry of words). */
33 unsigned char nibbles[24];
34 unsigned char bytes[24];
35 unsigned short words[24];
36
37 /* Nibble number of first word not yet fetched. */
38 int max_fetched;
39 bfd_vma insn_start;
40 jmp_buf bailout;
41
42 long tabl_index;
43 char instr_asmsrc[80];
44 unsigned long arg_reg[0x0f];
45 unsigned long immediate;
46 unsigned long displacement;
47 unsigned long address;
48 unsigned long cond_code;
49 unsigned long ctrl_code;
50 unsigned long flags;
51 unsigned long interrupts;
52 }
53 instr_data_s;
54
55 /* Make sure that bytes from INFO->PRIVATE_DATA->BUFFER (inclusive)
56 to ADDR (exclusive) are valid. Returns 1 for success, longjmps
57 on error. */
58 #define FETCH_DATA(info, nibble) \
59 ((nibble) <= ((instr_data_s *)(info->private_data))->max_fetched \
60 ? 1 : fetch_data ((info), (nibble)))
61
62 static int
63 fetch_data (info, nibble)
64 struct disassemble_info *info;
65 int nibble;
66 {
67 unsigned char mybuf[20];
68 int status;
69 instr_data_s *priv = (instr_data_s *)info->private_data;
70 bfd_vma start = priv->insn_start + priv->max_fetched / 2;
71
72 if ((nibble % 4) != 0)
73 abort ();
74 status = (*info->read_memory_func) (start,
75 (bfd_byte *) mybuf,
76 (nibble - priv->max_fetched) / 2,
77 info);
78 if (status != 0)
79 {
80 (*info->memory_error_func) (status, start, info);
81 longjmp (priv->bailout, 1);
82 }
83
84 {
85 int i;
86 char *p = mybuf + priv->max_fetched / 2;
87
88 for (i = priv->max_fetched; i < nibble;)
89 {
90 priv->words[i] = (p[0] << 8) | p[1];
91
92 priv->bytes[i] = *p;
93 priv->nibbles[i++] = *p >> 4;
94 priv->nibbles[i++] = *p &0xf;
95
96 ++p;
97 priv->bytes[i] = *p;
98 priv->nibbles[i++] = *p >> 4;
99 priv->nibbles[i++] = *p & 0xf;
100
101 ++p;
102 }
103 }
104 priv->max_fetched = nibble;
105 return 1;
106 }
107
108 static char *codes[16] =
109 {
110 "f",
111 "lt",
112 "le",
113 "ule",
114 "ov/pe",
115 "mi",
116 "eq",
117 "c/ult",
118 "t",
119 "ge",
120 "gt",
121 "ugt",
122 "nov/po",
123 "pl",
124 "ne",
125 "nc/uge"
126 };
127
128 int z8k_lookup_instr PARAMS ((unsigned char*, disassemble_info *));
129 static void output_instr
130 PARAMS ((instr_data_s *, unsigned long, disassemble_info *));
131 static void unpack_instr PARAMS ((instr_data_s *, int, disassemble_info *));
132 static void unparse_instr PARAMS ((instr_data_s *));
133
134 static int
135 print_insn_z8k (addr, info, is_segmented)
136 unsigned long addr;
137 disassemble_info *info;
138 int is_segmented;
139 {
140 instr_data_s instr_data;
141
142 info->private_data = (PTR) &instr_data;
143 instr_data.max_fetched = 0;
144 instr_data.insn_start = addr;
145 if (setjmp (instr_data.bailout) != 0)
146 /* Error return. */
147 return -1;
148
149 instr_data.tabl_index = z8k_lookup_instr (instr_data.nibbles, info);
150 if (instr_data.tabl_index > 0)
151 {
152 unpack_instr (&instr_data, is_segmented, info);
153 unparse_instr (&instr_data);
154 output_instr (&instr_data, addr, info);
155 return z8k_table[instr_data.tabl_index].length;
156 }
157 else
158 {
159 FETCH_DATA (info, 4);
160 (*info->fprintf_func) (info->stream, ".word %02x%02x",
161 instr_data.bytes[0], instr_data.bytes[2]);
162 return 2;
163 }
164 }
165
166 print_insn_z8001 (addr, info)
167 unsigned long addr;
168 disassemble_info *info;
169 {
170 return print_insn_z8k (addr, info, 1);
171 }
172
173 print_insn_z8002 (addr, info)
174 unsigned long addr;
175 disassemble_info *info;
176 {
177 return print_insn_z8k (addr, info, 0);
178 }
179
180 int
181 z8k_lookup_instr (nibbles, info)
182 unsigned char *nibbles;
183 disassemble_info *info;
184 {
185
186 int nibl_index, tabl_index;
187 int nibl_matched;
188 unsigned short instr_nibl;
189 unsigned short tabl_datum, datum_class, datum_value;
190
191 nibl_matched = 0;
192 tabl_index = 0;
193 while (!nibl_matched && z8k_table[tabl_index].name)
194 {
195 nibl_matched = 1;
196 for (nibl_index = 0; nibl_index < z8k_table[tabl_index].length * 2 && nibl_matched; nibl_index++)
197 {
198 if ((nibl_index % 4) == 0)
199 /* Fetch one word at a time. */
200 FETCH_DATA (info, nibl_index + 4);
201 instr_nibl = nibbles[nibl_index];
202
203 tabl_datum = z8k_table[tabl_index].byte_info[nibl_index];
204 datum_class = tabl_datum & CLASS_MASK;
205 datum_value = ~CLASS_MASK & tabl_datum;
206
207 switch (datum_class)
208 {
209 case CLASS_BIT:
210 if (datum_value != instr_nibl)
211 nibl_matched = 0;
212 break;
213 case CLASS_00II:
214 if (!((~instr_nibl) & 0x4))
215 nibl_matched = 0;
216 break;
217 case CLASS_01II:
218 if (!(instr_nibl & 0x4))
219 nibl_matched = 0;
220 break;
221 case CLASS_0CCC:
222 if (!((~instr_nibl) & 0x8))
223 nibl_matched = 0;
224 break;
225 case CLASS_1CCC:
226 if (!(instr_nibl & 0x8))
227 nibl_matched = 0;
228 break;
229 case CLASS_0DISP7:
230 if (!((~instr_nibl) & 0x8))
231 nibl_matched = 0;
232 nibl_index += 1;
233 break;
234 case CLASS_1DISP7:
235 if (!(instr_nibl & 0x8))
236 nibl_matched = 0;
237 nibl_index += 1;
238 break;
239 case CLASS_REGN0:
240 if (instr_nibl == 0)
241 nibl_matched = 0;
242 break;
243 case CLASS_BIT_1OR2:
244 if ((instr_nibl | 0x2) != (datum_value | 0x2))
245 nibl_matched = 0;
246 break;
247 default:
248 break;
249 }
250 }
251 if (nibl_matched)
252 {
253 return tabl_index;
254 }
255
256 tabl_index++;
257 }
258 return -1;
259
260 }
261
262 static void
263 output_instr (instr_data, addr, info)
264 instr_data_s *instr_data;
265 unsigned long addr;
266 disassemble_info *info;
267 {
268 int loop, loop_limit;
269 char tmp_str[20];
270 char out_str[100];
271
272 strcpy (out_str, "\t");
273
274 loop_limit = z8k_table[instr_data->tabl_index].length * 2;
275 FETCH_DATA (info, loop_limit);
276 for (loop = 0; loop < loop_limit; loop++)
277 {
278 sprintf (tmp_str, "%x", instr_data->nibbles[loop]);
279 strcat (out_str, tmp_str);
280 }
281
282 while (loop++ < 8)
283 {
284 strcat (out_str, " ");
285 }
286
287 strcat (out_str, instr_data->instr_asmsrc);
288
289 (*info->fprintf_func) (info->stream, "%s", out_str);
290 }
291
292 static void
293 unpack_instr (instr_data, is_segmented, info)
294 instr_data_s *instr_data;
295 int is_segmented;
296 disassemble_info *info;
297 {
298 int nibl_count, loop;
299 unsigned short instr_nibl, instr_byte, instr_word;
300 long instr_long;
301 unsigned short tabl_datum, datum_class, datum_value;
302
303 nibl_count = 0;
304 loop = 0;
305 while (z8k_table[instr_data->tabl_index].byte_info[loop] != 0)
306 {
307 FETCH_DATA (info, nibl_count + 4 - (nibl_count % 4));
308 instr_nibl = instr_data->nibbles[nibl_count];
309 instr_byte = instr_data->bytes[nibl_count];
310 instr_word = instr_data->words[nibl_count];
311
312 tabl_datum = z8k_table[instr_data->tabl_index].byte_info[loop];
313 datum_class = tabl_datum & CLASS_MASK;
314 datum_value = tabl_datum & ~CLASS_MASK;
315
316 switch (datum_class)
317 {
318 case CLASS_X:
319 instr_data->address = instr_nibl;
320 break;
321 case CLASS_BA:
322 instr_data->displacement = instr_nibl;
323 break;
324 case CLASS_BX:
325 instr_data->arg_reg[datum_value] = instr_nibl;
326 break;
327 case CLASS_DISP:
328 switch (datum_value)
329 {
330 case ARG_DISP16:
331 instr_data->displacement = instr_word;
332 nibl_count += 3;
333 break;
334 case ARG_DISP12:
335 instr_data->displacement = instr_word & 0x0fff;
336 nibl_count += 2;
337 break;
338 default:
339 break;
340 }
341 break;
342 case CLASS_IMM:
343 switch (datum_value)
344 {
345 case ARG_IMM4:
346 instr_data->immediate = instr_nibl;
347 break;
348 case ARG_NIM8:
349 instr_data->immediate = (-instr_byte);
350 nibl_count += 1;
351 break;
352 case ARG_IMM8:
353 instr_data->immediate = instr_byte;
354 nibl_count += 1;
355 break;
356 case ARG_IMM16:
357 instr_data->immediate = instr_word;
358 nibl_count += 3;
359 break;
360 case ARG_IMM32:
361 FETCH_DATA (info, nibl_count + 8);
362 instr_long = (instr_data->words[nibl_count] << 16)
363 | (instr_data->words[nibl_count + 4]);
364 instr_data->immediate = instr_long;
365 nibl_count += 7;
366 break;
367 case ARG_IMMN:
368 instr_data->immediate = instr_nibl - 1;
369 break;
370 /* ????? */
371 /* missing ARG_IMMNMINUS1 */
372 case ARG_IMM_1:
373 instr_data->immediate = 1;
374 break;
375 case ARG_IMM_2:
376 instr_data->immediate = 2;
377 break;
378 case ARG_IMM2:
379 instr_data->immediate = instr_nibl & 0x3;
380 break;
381 default:
382 break;
383 }
384 break;
385 case CLASS_CC:
386 instr_data->cond_code = instr_nibl;
387 break;
388 case CLASS_CTRL:
389 instr_data->ctrl_code = instr_nibl;
390 break;
391 case CLASS_DA:
392 case CLASS_ADDRESS:
393 if (is_segmented)
394 {
395 if (instr_nibl & 0x8)
396 {
397 FETCH_DATA (info, nibl_count + 8);
398 instr_long = (instr_data->words[nibl_count] << 16)
399 | (instr_data->words[nibl_count + 4]);
400 instr_data->address = ((instr_word & 0x7f00) << 8) +
401 (instr_long & 0xffff);
402 nibl_count += 7;
403 }
404 else
405 {
406 instr_data->address = ((instr_word & 0x7f00) << 8) +
407 (instr_word & 0x00ff);
408 nibl_count += 3;
409 }
410 }
411 else
412 {
413 instr_data->address = instr_word;
414 nibl_count += 3;
415 }
416 break;
417 case CLASS_0CCC:
418 instr_data->cond_code = instr_nibl & 0x7;
419 break;
420 case CLASS_1CCC:
421 instr_data->cond_code = instr_nibl & 0x7;
422 break;
423 case CLASS_0DISP7:
424 instr_data->displacement = instr_byte & 0x7f;
425 nibl_count += 1;
426 break;
427 case CLASS_1DISP7:
428 instr_data->displacement = instr_byte & 0x7f;
429 nibl_count += 1;
430 break;
431 case CLASS_01II:
432 instr_data->interrupts = instr_nibl & 0x3;
433 break;
434 case CLASS_00II:
435 instr_data->interrupts = instr_nibl & 0x3;
436 break;
437 case CLASS_BIT:
438 /* do nothing */
439 break;
440 case CLASS_IR:
441 instr_data->arg_reg[datum_value] = instr_nibl;
442 break;
443 case CLASS_FLAGS:
444 instr_data->flags = instr_nibl;
445 break;
446 case CLASS_REG:
447 instr_data->arg_reg[datum_value] = instr_nibl;
448 break;
449 case CLASS_REG_BYTE:
450 instr_data->arg_reg[datum_value] = instr_nibl;
451 break;
452 case CLASS_REG_WORD:
453 instr_data->arg_reg[datum_value] = instr_nibl;
454 break;
455 case CLASS_REG_QUAD:
456 instr_data->arg_reg[datum_value] = instr_nibl;
457 break;
458 case CLASS_REG_LONG:
459 instr_data->arg_reg[datum_value] = instr_nibl;
460 break;
461 case CLASS_REGN0:
462 instr_data->arg_reg[datum_value] = instr_nibl;
463 break;
464 default:
465 break;
466 }
467
468 loop += 1;
469 nibl_count += 1;
470 }
471 }
472
473 static void
474 unparse_instr (instr_data)
475 instr_data_s *instr_data;
476 {
477 unsigned short tabl_datum, datum_class, datum_value;
478 int loop, loop_limit;
479 char out_str[80], tmp_str[25];
480
481 sprintf (out_str, "\t%s\t", z8k_table[instr_data->tabl_index].name);
482
483 loop_limit = z8k_table[instr_data->tabl_index].noperands;
484 for (loop = 0; loop < loop_limit; loop++)
485 {
486 if (loop)
487 strcat (out_str, ",");
488
489 tabl_datum = z8k_table[instr_data->tabl_index].arg_info[loop];
490 datum_class = tabl_datum & CLASS_MASK;
491 datum_value = tabl_datum & ~CLASS_MASK;
492
493 switch (datum_class)
494 {
495 case CLASS_X:
496 sprintf (tmp_str, "0x%0x(R%d)", instr_data->address,
497 instr_data->arg_reg[datum_value]);
498 strcat (out_str, tmp_str);
499 break;
500 case CLASS_BA:
501 sprintf (tmp_str, "r%d(#%x)", instr_data->arg_reg[datum_value],
502 instr_data->immediate);
503 strcat (out_str, tmp_str);
504 break;
505 case CLASS_BX:
506 sprintf (tmp_str, "r%d(R%d)", instr_data->arg_reg[datum_value],
507 instr_data->arg_reg[ARG_RX]);
508 strcat (out_str, tmp_str);
509 break;
510 case CLASS_DISP:
511 sprintf (tmp_str, "#0x%0x", instr_data->displacement);
512 strcat (out_str, tmp_str);
513 break;
514 case CLASS_IMM:
515 sprintf (tmp_str, "#0x%0x", instr_data->immediate);
516 strcat (out_str, tmp_str);
517 break;
518 case CLASS_CC:
519 sprintf (tmp_str, "%s", codes[instr_data->cond_code]);
520 strcat (out_str, tmp_str);
521 break;
522 case CLASS_CTRL:
523 sprintf (tmp_str, "0x%0x", instr_data->ctrl_code);
524 strcat (out_str, tmp_str);
525 break;
526 case CLASS_DA:
527 case CLASS_ADDRESS:
528 sprintf (tmp_str, "#0x%0x", instr_data->address);
529 strcat (out_str, tmp_str);
530 break;
531 case CLASS_IR:
532 sprintf (tmp_str, "@R%d", instr_data->arg_reg[datum_value]);
533 strcat (out_str, tmp_str);
534 break;
535 case CLASS_FLAGS:
536 sprintf (tmp_str, "0x%0x", instr_data->flags);
537 strcat (out_str, tmp_str);
538 break;
539 case CLASS_REG_BYTE:
540 if (instr_data->arg_reg[datum_value] >= 0x8)
541 {
542 sprintf (tmp_str, "rl%d",
543 instr_data->arg_reg[datum_value] - 0x8);
544 }
545 else
546 {
547 sprintf (tmp_str, "rh%d", instr_data->arg_reg[datum_value]);
548 }
549 strcat (out_str, tmp_str);
550 break;
551 case CLASS_REG_WORD:
552 sprintf (tmp_str, "r%d", instr_data->arg_reg[datum_value]);
553 strcat (out_str, tmp_str);
554 break;
555 case CLASS_REG_QUAD:
556 sprintf (tmp_str, "rq%d", instr_data->arg_reg[datum_value]);
557 strcat (out_str, tmp_str);
558 break;
559 case CLASS_REG_LONG:
560 sprintf (tmp_str, "rr%d", instr_data->arg_reg[datum_value]);
561 strcat (out_str, tmp_str);
562 break;
563 default:
564 break;
565 }
566 }
567
568 strcpy (instr_data->instr_asmsrc, out_str);
569 }
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