1 /* tc-pdp11.c - pdp11-specific -
2    Copyright (C) 2001-2021 Free Software Foundation, Inc.
3 
4    This file is part of GAS, the GNU Assembler.
5 
6    GAS is free software; you can redistribute it and/or modify
7    it under the terms of the GNU General Public License as published by
8    the Free Software Foundation; either version 3, or (at your option)
9    any later version.
10 
11    GAS is distributed in the hope that it will be useful,
12    but WITHOUT ANY WARRANTY; without even the implied warranty of
13    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
14    GNU General Public License for more details.
15 
16    You should have received a copy of the GNU General Public License
17    along with GAS; see the file COPYING.  If not, write to
18    the Free Software Foundation, 51 Franklin Street - Fifth Floor,
19    Boston, MA 02110-1301, USA.  */
20 
21 #include "as.h"
22 #include "safe-ctype.h"
23 #include "opcode/pdp11.h"
24 
25 extern int flonum_gen2vax (int, FLONUM_TYPE * f, LITTLENUM_TYPE *);
26 
27 /* A representation for PDP-11 machine code.  */
28 struct pdp11_code
29 {
30   const char *error;
31   int code;
32   int additional;	/* Is there an additional word?  */
33   int word;		/* Additional word, if any.  */
34   struct
35   {
36     bfd_reloc_code_real_type type;
37     expressionS exp;
38     int pc_rel;
39   } reloc;
40 };
41 
42 /* Instruction set extensions.
43 
44    If you change this from an array to something else, please update
45    the "PDP-11 instruction set extensions" comment in pdp11.h.  */
46 int pdp11_extension[PDP11_EXT_NUM];
47 
48 /* Assembly options.  */
49 
50 #define ASM_OPT_PIC 1
51 #define ASM_OPT_NUM 2
52 
53 int asm_option[ASM_OPT_NUM];
54 
55 /* These chars start a comment anywhere in a source file (except inside
56    another comment.  */
57 const char comment_chars[] = "#/";
58 
59 /* These chars only start a comment at the beginning of a line.  */
60 const char line_comment_chars[] = "#/";
61 
62 const char line_separator_chars[] = ";";
63 
64 /* Chars that can be used to separate mant from exp in floating point nums.  */
65 const char EXP_CHARS[] = "eE";
66 
67 /* Chars that mean this number is a floating point constant.  */
68 /* as in 0f123.456.  */
69 /* or    0H1.234E-12 (see exp chars above).  */
70 const char FLT_CHARS[] = "dDfF";
71 
72 void pseudo_even (int);
73 void pseudo_bss (int);
74 
75 const pseudo_typeS md_pseudo_table[] =
76 {
77   { "bss", pseudo_bss, 0 },
78   { "even", pseudo_even, 0 },
79   { 0, 0, 0 },
80 };
81 
82 static htab_t insn_hash = NULL;
83 
84 static int
set_option(const char * arg)85 set_option (const char *arg)
86 {
87   int yes = 1;
88 
89   if (strcmp (arg, "all-extensions") == 0
90       || strcmp (arg, "all") == 0)
91     {
92       memset (pdp11_extension, ~0, sizeof pdp11_extension);
93       pdp11_extension[PDP11_NONE] = 0;
94       return 1;
95     }
96   else if (strcmp (arg, "no-extensions") == 0)
97     {
98       memset (pdp11_extension, 0, sizeof pdp11_extension);
99       pdp11_extension[PDP11_BASIC] = 1;
100       return 1;
101     }
102 
103   if (startswith (arg, "no-"))
104     {
105       yes = 0;
106       arg += 3;
107     }
108 
109   /* Commercial instructions.  */
110   if (strcmp (arg, "cis") == 0)
111     pdp11_extension[PDP11_CIS] = yes;
112   /* Call supervisor mode.  */
113   else if (strcmp (arg, "csm") == 0)
114     pdp11_extension[PDP11_CSM] = yes;
115   /* Extended instruction set.  */
116   else if (strcmp (arg, "eis") == 0)
117     pdp11_extension[PDP11_EIS] = pdp11_extension[PDP11_LEIS] = yes;
118   /* KEV11 floating-point.  */
119   else if (strcmp (arg, "fis") == 0
120 	   || strcmp (arg, "kev11") == 0
121 	   || strcmp (arg, "kev-11") == 0)
122     pdp11_extension[PDP11_FIS] = yes;
123   /* FP-11 floating-point.  */
124   else if (strcmp (arg, "fpp") == 0
125 	   || strcmp (arg, "fpu") == 0
126 	   || strcmp (arg, "fp11") == 0
127 	   || strcmp (arg, "fp-11") == 0
128 	   || strcmp (arg, "fpj11") == 0
129 	   || strcmp (arg, "fp-j11") == 0
130 	   || strcmp (arg, "fpj-11") == 0)
131     pdp11_extension[PDP11_FPP] = yes;
132   /* Limited extended insns.  */
133   else if (strcmp (arg, "limited-eis") == 0)
134     {
135       pdp11_extension[PDP11_LEIS] = yes;
136       if (!pdp11_extension[PDP11_LEIS])
137 	pdp11_extension[PDP11_EIS] = 0;
138     }
139   /* Move from processor type.  */
140   else if (strcmp (arg, "mfpt") == 0)
141     pdp11_extension[PDP11_MFPT] = yes;
142   /* Multiprocessor insns:  */
143   else if (startswith (arg, "mproc")
144 	   /* TSTSET, WRTLCK */
145 	   || startswith (arg, "multiproc"))
146     pdp11_extension[PDP11_MPROC] = yes;
147   /* Move from/to proc status.  */
148   else if (strcmp (arg, "mxps") == 0)
149     pdp11_extension[PDP11_MXPS] = yes;
150   /* Position-independent code.  */
151   else if (strcmp (arg, "pic") == 0)
152     asm_option[ASM_OPT_PIC] = yes;
153   /* Set priority level.  */
154   else if (strcmp (arg, "spl") == 0)
155     pdp11_extension[PDP11_SPL] = yes;
156   /* Microcode instructions:  */
157   else if (strcmp (arg, "ucode") == 0
158 	   /* LDUB, MED, XFC */
159 	   || strcmp (arg, "microcode") == 0)
160     pdp11_extension[PDP11_UCODE] = yes;
161   else
162     return 0;
163 
164   return 1;
165 }
166 
167 
168 static void
init_defaults(void)169 init_defaults (void)
170 {
171   static int first = 1;
172 
173   if (first)
174     {
175       set_option ("all-extensions");
176       set_option ("pic");
177       first = 0;
178     }
179 }
180 
181 void
md_begin(void)182 md_begin (void)
183 {
184   int i;
185 
186   init_defaults ();
187 
188   insn_hash = str_htab_create ();
189 
190   for (i = 0; i < pdp11_num_opcodes; i++)
191     str_hash_insert (insn_hash, pdp11_opcodes[i].name, pdp11_opcodes + i, 0);
192   for (i = 0; i < pdp11_num_aliases; i++)
193     str_hash_insert (insn_hash, pdp11_aliases[i].name, pdp11_aliases + i, 0);
194 }
195 
196 void
md_number_to_chars(char con[],valueT value,int nbytes)197 md_number_to_chars (char con[], valueT value, int nbytes)
198 {
199   /* On a PDP-11, 0x1234 is stored as "\x12\x34", and
200      0x12345678 is stored as "\x56\x78\x12\x34". It's
201      anyone's guess what 0x123456 would be stored like.  */
202 
203   switch (nbytes)
204     {
205     case 0:
206       break;
207     case 1:
208       con[0] =  value       & 0xff;
209       break;
210     case 2:
211       con[0] =  value        & 0xff;
212       con[1] = (value >>  8) & 0xff;
213       break;
214     case 4:
215       con[0] = (value >> 16) & 0xff;
216       con[1] = (value >> 24) & 0xff;
217       con[2] =  value        & 0xff;
218       con[3] = (value >>  8) & 0xff;
219       break;
220 #ifdef BFD64
221     case 8:
222       con[0] = (value >> 48) & 0xff;
223       con[1] = (value >> 56) & 0xff;
224       con[2] = (value >> 32) & 0xff;
225       con[3] = (value >> 40) & 0xff;
226       con[4] = (value >> 16) & 0xff;
227       con[5] = (value >> 24) & 0xff;
228       con[6] =  value        & 0xff;
229       con[7] = (value >>  8) & 0xff;
230       break;
231 #endif
232     default:
233       BAD_CASE (nbytes);
234     }
235 }
236 
237 /* Fix up some data or instructions after we find out the value of a symbol
238    that they reference.  Knows about order of bytes in address.  */
239 
240 void
md_apply_fix(fixS * fixP,valueT * valP,segT seg ATTRIBUTE_UNUSED)241 md_apply_fix (fixS *fixP,
242 	       valueT * valP,
243 	       segT seg ATTRIBUTE_UNUSED)
244 {
245   valueT code;
246   valueT mask;
247   valueT val = * valP;
248   char *buf;
249   int shift;
250   int size;
251 
252   buf = fixP->fx_where + fixP->fx_frag->fr_literal;
253   size = fixP->fx_size;
254   code = md_chars_to_number ((unsigned char *) buf, size);
255 
256   switch (fixP->fx_r_type)
257     {
258     case BFD_RELOC_8:
259       mask = 0xff;
260       shift = 0;
261       break;
262     case BFD_RELOC_16:
263     case BFD_RELOC_16_PCREL:
264       mask = 0xffff;
265       shift = 0;
266       break;
267     case BFD_RELOC_32:
268       mask = 0xffffffff;
269       shift = 0;
270       break;
271     case BFD_RELOC_PDP11_DISP_8_PCREL:
272       mask = 0x00ff;
273       shift = 1;
274       break;
275     case BFD_RELOC_PDP11_DISP_6_PCREL:
276       mask = 0x003f;
277       shift = 1;
278       val = -val;
279       break;
280     default:
281       BAD_CASE (fixP->fx_r_type);
282     }
283 
284   if (fixP->fx_addsy != NULL)
285     val += symbol_get_bfdsym (fixP->fx_addsy)->section->vma;
286     /* *value += fixP->fx_addsy->bsym->section->vma; */
287 
288   code &= ~mask;
289   code |= (val >> shift) & mask;
290   number_to_chars_littleendian (buf, code, size);
291 
292   if (fixP->fx_addsy == NULL && fixP->fx_pcrel == 0)
293     fixP->fx_done = 1;
294 }
295 
296 long
md_chars_to_number(unsigned char * con,int nbytes)297 md_chars_to_number (unsigned char *con, int nbytes)
298 {
299   /* On a PDP-11, 0x1234 is stored as "\x12\x34", and
300      0x12345678 is stored as "\x56\x78\x12\x34". It's
301      anyone's guess what 0x123456 would be stored like.  */
302   switch (nbytes)
303     {
304     case 0:
305       return 0;
306     case 1:
307       return con[0];
308     case 2:
309       return (con[1] << BITS_PER_CHAR) | con[0];
310     case 4:
311       return
312 	(((con[1] << BITS_PER_CHAR) | con[0]) << (2 * BITS_PER_CHAR))
313 	|((con[3] << BITS_PER_CHAR) | con[2]);
314     default:
315       BAD_CASE (nbytes);
316       return 0;
317     }
318 }
319 
320 static char *
skip_whitespace(char * str)321 skip_whitespace (char *str)
322 {
323   while (*str == ' ' || *str == '\t')
324     str++;
325   return str;
326 }
327 
328 static char *
find_whitespace(char * str)329 find_whitespace (char *str)
330 {
331   while (*str != ' ' && *str != '\t' && *str != 0)
332     str++;
333   return str;
334 }
335 
336 static char *
parse_reg(char * str,struct pdp11_code * operand)337 parse_reg (char *str, struct pdp11_code *operand)
338 {
339   str = skip_whitespace (str);
340   if (TOLOWER (*str) == 'r')
341     {
342       str++;
343       switch (*str)
344 	{
345 	case '0': case '1': case '2': case '3':
346 	case '4': case '5': case '6': case '7':
347 	  operand->code = *str - '0';
348 	  str++;
349 	  break;
350 	default:
351 	  operand->error = _("Bad register name");
352 	  return str - 1;
353 	}
354     }
355   else if (startswith (str, "sp")
356 	   || startswith (str, "SP"))
357     {
358       operand->code = 6;
359       str += 2;
360     }
361   else if (startswith (str, "pc")
362 	   || startswith (str, "PC"))
363     {
364       operand->code = 7;
365       str += 2;
366     }
367   else
368     {
369       operand->error = _("Bad register name");
370       return str;
371     }
372 
373   if (ISALNUM (*str) || *str == '_' || *str == '.')
374     {
375       operand->error = _("Bad register name");
376       str -= 2;
377     }
378 
379   return str;
380 }
381 
382 static char *
parse_ac5(char * str,struct pdp11_code * operand)383 parse_ac5 (char *str, struct pdp11_code *operand)
384 {
385   str = skip_whitespace (str);
386   if (startswith (str, "fr")
387       || startswith (str, "FR")
388       || startswith (str, "ac")
389       || startswith (str, "AC"))
390     {
391       str += 2;
392       switch (*str)
393 	{
394 	case '0': case '1': case '2': case '3':
395         case '4': case '5':
396 	  operand->code = *str - '0';
397 	  str++;
398 	  break;
399 	default:
400 	  operand->error = _("Bad register name");
401 	  return str - 2;
402 	}
403     }
404   else
405     {
406       operand->error = _("Bad register name");
407       return str;
408     }
409 
410   return str;
411 }
412 
413 static char *
parse_ac(char * str,struct pdp11_code * operand)414 parse_ac (char *str, struct pdp11_code *operand)
415 {
416   str = parse_ac5 (str, operand);
417   if (!operand->error && operand->code > 3)
418     {
419       operand->error = _("Bad register name");
420 	  return str - 3;
421     }
422 
423   return str;
424 }
425 
426 static char *
parse_expression(char * str,struct pdp11_code * operand)427 parse_expression (char *str, struct pdp11_code *operand)
428 {
429   char *save_input_line_pointer;
430   segT seg;
431 
432   save_input_line_pointer = input_line_pointer;
433   input_line_pointer = str;
434   seg = expression (&operand->reloc.exp);
435   if (seg == NULL)
436     {
437       input_line_pointer = save_input_line_pointer;
438       operand->error = _("Error in expression");
439       return str;
440     }
441 
442   str = input_line_pointer;
443   input_line_pointer = save_input_line_pointer;
444 
445   operand->reloc.pc_rel = 0;
446 
447   return str;
448 }
449 
450 static char *
parse_op_no_deferred(char * str,struct pdp11_code * operand)451 parse_op_no_deferred (char *str, struct pdp11_code *operand)
452 {
453   LITTLENUM_TYPE literal_float[2];
454 
455   str = skip_whitespace (str);
456 
457   switch (*str)
458     {
459     case '(':				/* (rn) and (rn)+ */
460       str = parse_reg (str + 1, operand);
461       if (operand->error)
462 	return str;
463       str = skip_whitespace (str);
464       if (*str != ')')
465 	{
466 	  operand->error = _("Missing ')'");
467 	  return str;
468 	}
469       str++;
470       if (*str == '+')
471 	{
472 	  operand->code |= 020;
473 	  str++;
474 	}
475       else
476 	{
477 	  operand->code |= 010;
478 	}
479       break;
480 
481       /* Immediate.  */
482     case '#':
483     case '$':
484       str = parse_expression (str + 1, operand);
485       if (operand->error)
486 	return str;
487       operand->additional = true;
488       operand->word = operand->reloc.exp.X_add_number;
489       switch (operand->reloc.exp.X_op)
490 	{
491 	case O_constant:
492 	  break;
493 	case O_symbol:
494 	case O_add:
495 	case O_subtract:
496 	  operand->reloc.type = BFD_RELOC_16;
497 	  operand->reloc.pc_rel = 0;
498 	  break;
499         case O_big:
500           if (operand->reloc.exp.X_add_number > 0)
501             {
502               operand->error = _("Error in expression");
503               break;
504             }
505           /* It's a floating literal...  */
506           know (operand->reloc.exp.X_add_number < 0);
507           flonum_gen2vax ('f', &generic_floating_point_number, literal_float);
508           operand->word = literal_float[0];
509           if (literal_float[1] != 0)
510             as_warn (_("Low order bits truncated in immediate float operand"));
511           break;
512 	default:
513 	  operand->error = _("Error in expression");
514 	  break;
515 	}
516       operand->code = 027;
517       break;
518 
519       /* label, d(rn), -(rn)  */
520     default:
521       {
522 	if (startswith (str, "-("))	/* -(rn) */
523 	  {
524 	    str = parse_reg (str + 2, operand);
525 	    if (operand->error)
526 	      return str;
527 	    str = skip_whitespace (str);
528 	    if (*str != ')')
529 	      {
530 		operand->error = _("Missing ')'");
531 		return str;
532 	      }
533 	    operand->code |= 040;
534 	    str++;
535 	    break;
536 	  }
537 
538 	str = parse_expression (str, operand);
539 	if (operand->error)
540 	  return str;
541 
542 	str = skip_whitespace (str);
543 
544 	if (*str != '(')
545 	  {
546 	    operand->code = 067;
547 	    operand->additional = 1;
548 	    operand->word = 0;
549 	    operand->reloc.type = BFD_RELOC_16_PCREL;
550 	    operand->reloc.pc_rel = 1;
551 	    break;
552 	  }
553 
554 	/* d(rn) */
555 	str++;
556 	str = parse_reg (str, operand);
557 	if (operand->error)
558 	  return str;
559 
560 	str = skip_whitespace (str);
561 
562 	if (*str != ')')
563 	  {
564 	    operand->error = _("Missing ')'");
565 	    return str;
566 	  }
567 
568 	str++;
569 	operand->additional = true;
570 	operand->code |= 060;
571 	switch (operand->reloc.exp.X_op)
572 	  {
573 	  case O_symbol:
574 	    operand->reloc.type = BFD_RELOC_16;
575 	    operand->reloc.pc_rel = 0;
576 	    break;
577 	  case O_constant:
578 	    if ((operand->code & 7) == 7)
579 	      {
580 		operand->reloc.pc_rel = 1;
581 		operand->word = operand->reloc.exp.X_add_number;
582 	      }
583 	    else
584 	      operand->word = operand->reloc.exp.X_add_number;
585 
586 	    break;
587 	  default:
588 	    BAD_CASE (operand->reloc.exp.X_op);
589 	  }
590 	break;
591       }
592     }
593 
594   return str;
595 }
596 
597 static char *
parse_op_noreg(char * str,struct pdp11_code * operand)598 parse_op_noreg (char *str, struct pdp11_code *operand)
599 {
600   str = skip_whitespace (str);
601   operand->error = NULL;
602 
603   if (*str == '@' || *str == '*')
604     {
605       /* @(Rn) == @0(Rn): Mode 7, Indexed deferred.
606 	 Check for auto-increment deferred.  */
607       if (str[1] == '('
608 	  && str[2] != 0
609 	  && str[3] != 0
610 	  && str[4] != 0
611 	  && str[5] != '+')
612         {
613 	  /* Change implied to explicit index deferred.  */
614           *str = '0';
615           str = parse_op_no_deferred (str, operand);
616         }
617       else
618         {
619           /* @Rn == (Rn): Register deferred.  */
620           str = parse_reg (str + 1, operand);
621 
622           /* Not @Rn */
623           if (operand->error)
624 	    {
625 	      operand->error = NULL;
626 	      str = parse_op_no_deferred (str, operand);
627 	    }
628         }
629 
630       if (operand->error)
631 	return str;
632 
633       operand->code |= 010;
634     }
635   else
636     str = parse_op_no_deferred (str, operand);
637 
638   return str;
639 }
640 
641 static char *
parse_op(char * str,struct pdp11_code * operand)642 parse_op (char *str, struct pdp11_code *operand)
643 {
644   str = skip_whitespace (str);
645 
646   str = parse_reg (str, operand);
647   if (!operand->error)
648     return str;
649 
650   operand->error = NULL;
651   parse_ac5 (str, operand);
652   if (!operand->error)
653     {
654       operand->error = _("Float AC not legal as integer operand");
655       return str;
656     }
657 
658   return parse_op_noreg (str, operand);
659 }
660 
661 static char *
parse_fop(char * str,struct pdp11_code * operand)662 parse_fop (char *str, struct pdp11_code *operand)
663 {
664   str = skip_whitespace (str);
665 
666   str = parse_ac5 (str, operand);
667   if (!operand->error)
668     return str;
669 
670   operand->error = NULL;
671   parse_reg (str, operand);
672   if (!operand->error)
673     {
674       operand->error = _("General register not legal as float operand");
675       return str;
676     }
677 
678   return parse_op_noreg (str, operand);
679 }
680 
681 static char *
parse_separator(char * str,int * error)682 parse_separator (char *str, int *error)
683 {
684   str = skip_whitespace (str);
685   *error = (*str != ',');
686   if (!*error)
687     str++;
688   return str;
689 }
690 
691 void
md_assemble(char * instruction_string)692 md_assemble (char *instruction_string)
693 {
694   const struct pdp11_opcode *op;
695   struct pdp11_code insn, op1, op2;
696   int error;
697   int size;
698   const char *err = NULL;
699   char *str;
700   char *p;
701   char c;
702 
703   str = skip_whitespace (instruction_string);
704   p = find_whitespace (str);
705   if (p - str == 0)
706     {
707       as_bad (_("No instruction found"));
708       return;
709     }
710 
711   c = *p;
712   *p = '\0';
713   op = (struct pdp11_opcode *)str_hash_find (insn_hash, str);
714   *p = c;
715   if (op == 0)
716     {
717       as_bad (_("Unknown instruction '%s'"), str);
718       return;
719     }
720 
721   if (!pdp11_extension[op->extension])
722     {
723       as_warn (_("Unsupported instruction set extension: %s"), op->name);
724       return;
725     }
726 
727   insn.error = NULL;
728   insn.code = op->opcode;
729   insn.reloc.type = BFD_RELOC_NONE;
730   op1.error = NULL;
731   op1.additional = false;
732   op1.reloc.type = BFD_RELOC_NONE;
733   op2.error = NULL;
734   op2.additional = false;
735   op2.reloc.type = BFD_RELOC_NONE;
736 
737   str = p;
738   size = 2;
739 
740   switch (op->type)
741     {
742     case PDP11_OPCODE_NO_OPS:
743       str = skip_whitespace (str);
744       break;
745 
746     case PDP11_OPCODE_IMM3:
747     case PDP11_OPCODE_IMM6:
748     case PDP11_OPCODE_IMM8:
749       str = skip_whitespace (str);
750       if (*str == '#' || *str == '$')
751 	str++;
752       str = parse_expression (str, &op1);
753       if (op1.error)
754 	break;
755       if (op1.reloc.exp.X_op != O_constant || op1.reloc.type != BFD_RELOC_NONE)
756 	{
757 	  op1.error = _("operand is not an absolute constant");
758 	  break;
759 	}
760       switch (op->type)
761 	{
762 	case PDP11_OPCODE_IMM3:
763 	  if (op1.reloc.exp.X_add_number & ~7)
764 	    {
765 	      op1.error = _("3-bit immediate out of range");
766 	      break;
767 	    }
768 	  break;
769 	case PDP11_OPCODE_IMM6:
770 	  if (op1.reloc.exp.X_add_number & ~0x3f)
771 	    {
772 	      op1.error = _("6-bit immediate out of range");
773 	      break;
774 	    }
775 	  break;
776 	case PDP11_OPCODE_IMM8:
777 	  if (op1.reloc.exp.X_add_number & ~0xff)
778 	    {
779 	      op1.error = _("8-bit immediate out of range");
780 	      break;
781 	    }
782 	  break;
783 	}
784       insn.code |= op1.reloc.exp.X_add_number;
785       break;
786 
787     case PDP11_OPCODE_DISPL:
788       {
789 	char *new_pointer;
790 	new_pointer = parse_expression (str, &op1);
791 	op1.code = 0;
792 	op1.reloc.pc_rel = 1;
793 	op1.reloc.type = BFD_RELOC_PDP11_DISP_8_PCREL;
794 	if (op1.reloc.exp.X_op != O_symbol)
795 	  {
796 	    op1.error = _("Symbol expected");
797 	    break;
798 	  }
799 	if (op1.code & ~0xff)
800 	  {
801 	    err = _("8-bit displacement out of range");
802 	    break;
803 	  }
804 	str = new_pointer;
805 	insn.code |= op1.code;
806 	insn.reloc = op1.reloc;
807       }
808       break;
809 
810     case PDP11_OPCODE_REG:
811       str = parse_reg (str, &op1);
812       if (op1.error)
813 	break;
814       insn.code |= op1.code;
815       break;
816 
817     case PDP11_OPCODE_OP:
818       str = parse_op (str, &op1);
819       if (op1.error)
820 	break;
821       insn.code |= op1.code;
822       if (op1.additional)
823 	size += 2;
824       break;
825 
826     case PDP11_OPCODE_FOP:
827       str = parse_fop (str, &op1);
828       if (op1.error)
829 	break;
830       insn.code |= op1.code;
831       if (op1.additional)
832 	size += 2;
833       break;
834 
835     case PDP11_OPCODE_REG_OP:
836       str = parse_reg (str, &op2);
837       if (op2.error)
838 	break;
839       insn.code |= op2.code << 6;
840       str = parse_separator (str, &error);
841       if (error)
842 	{
843 	  op2.error = _("Missing ','");
844 	  break;
845 	}
846       str = parse_op (str, &op1);
847       if (op1.error)
848 	break;
849       insn.code |= op1.code;
850       if (op1.additional)
851 	size += 2;
852       break;
853 
854     case PDP11_OPCODE_REG_OP_REV:
855       str = parse_op (str, &op1);
856       if (op1.error)
857 	break;
858       insn.code |= op1.code;
859       if (op1.additional)
860 	size += 2;
861       str = parse_separator (str, &error);
862       if (error)
863 	{
864 	  op2.error = _("Missing ','");
865 	  break;
866 	}
867       str = parse_reg (str, &op2);
868       if (op2.error)
869 	break;
870       insn.code |= op2.code << 6;
871       break;
872 
873     case PDP11_OPCODE_AC_FOP:
874       str = parse_ac (str, &op2);
875       if (op2.error)
876 	break;
877       insn.code |= op2.code << 6;
878       str = parse_separator (str, &error);
879       if (error)
880 	{
881 	  op1.error = _("Missing ','");
882 	  break;
883 	}
884       str = parse_fop (str, &op1);
885       if (op1.error)
886 	break;
887       insn.code |= op1.code;
888       if (op1.additional)
889 	size += 2;
890       break;
891 
892     case PDP11_OPCODE_FOP_AC:
893       str = parse_fop (str, &op1);
894       if (op1.error)
895 	break;
896       insn.code |= op1.code;
897       if (op1.additional)
898 	size += 2;
899       str = parse_separator (str, &error);
900       if (error)
901 	{
902 	  op1.error = _("Missing ','");
903 	  break;
904 	}
905       str = parse_ac (str, &op2);
906       if (op2.error)
907 	break;
908       insn.code |= op2.code << 6;
909       break;
910 
911     case PDP11_OPCODE_AC_OP:
912       str = parse_ac (str, &op2);
913       if (op2.error)
914 	break;
915       insn.code |= op2.code << 6;
916       str = parse_separator (str, &error);
917       if (error)
918 	{
919 	  op1.error = _("Missing ','");
920 	  break;
921 	}
922       str = parse_op (str, &op1);
923       if (op1.error)
924 	break;
925       insn.code |= op1.code;
926       if (op1.additional)
927 	size += 2;
928       break;
929 
930     case PDP11_OPCODE_OP_AC:
931       str = parse_op (str, &op1);
932       if (op1.error)
933 	break;
934       insn.code |= op1.code;
935       if (op1.additional)
936 	size += 2;
937       str = parse_separator (str, &error);
938       if (error)
939 	{
940 	  op1.error = _("Missing ','");
941 	  break;
942 	}
943       str = parse_ac (str, &op2);
944       if (op2.error)
945 	break;
946       insn.code |= op2.code << 6;
947       break;
948 
949     case PDP11_OPCODE_OP_OP:
950       str = parse_op (str, &op1);
951       if (op1.error)
952 	break;
953       insn.code |= op1.code << 6;
954       if (op1.additional)
955 	size += 2;
956       str = parse_separator (str, &error);
957       if (error)
958 	{
959 	  op2.error = _("Missing ','");
960 	  break;
961 	}
962       str = parse_op (str, &op2);
963       if (op2.error)
964 	break;
965       insn.code |= op2.code;
966       if (op2.additional)
967 	size += 2;
968       break;
969 
970     case PDP11_OPCODE_REG_DISPL:
971       {
972 	char *new_pointer;
973 	str = parse_reg (str, &op2);
974 	if (op2.error)
975 	  break;
976 	insn.code |= op2.code << 6;
977 	str = parse_separator (str, &error);
978 	if (error)
979 	  {
980 	    op1.error = _("Missing ','");
981 	    break;
982 	  }
983 	new_pointer = parse_expression (str, &op1);
984 	op1.code = 0;
985 	op1.reloc.pc_rel = 1;
986 	op1.reloc.type = BFD_RELOC_PDP11_DISP_6_PCREL;
987 	if (op1.reloc.exp.X_op != O_symbol)
988 	  {
989 	    op1.error = _("Symbol expected");
990 	    break;
991 	  }
992 	if (op1.code & ~0x3f)
993 	  {
994 	    err = _("6-bit displacement out of range");
995 	    break;
996 	  }
997 	str = new_pointer;
998 	insn.code |= op1.code;
999 	insn.reloc = op1.reloc;
1000       }
1001       break;
1002 
1003     default:
1004       BAD_CASE (op->type);
1005     }
1006 
1007   if (op1.error)
1008     err = op1.error;
1009   else if (op2.error)
1010     err = op2.error;
1011   else
1012     {
1013       str = skip_whitespace (str);
1014       if (*str)
1015 	err = _("Too many operands");
1016     }
1017 
1018   {
1019     char *to = NULL;
1020 
1021     if (err)
1022       {
1023 	as_bad ("%s", err);
1024 	return;
1025       }
1026 
1027     to = frag_more (size);
1028 
1029     md_number_to_chars (to, insn.code, 2);
1030     if (insn.reloc.type != BFD_RELOC_NONE)
1031       fix_new_exp (frag_now, to - frag_now->fr_literal, 2,
1032 		   &insn.reloc.exp, insn.reloc.pc_rel, insn.reloc.type);
1033     to += 2;
1034 
1035     if (op1.additional)
1036       {
1037 	md_number_to_chars (to, op1.word, 2);
1038 	if (op1.reloc.type != BFD_RELOC_NONE)
1039 	  fix_new_exp (frag_now, to - frag_now->fr_literal, 2,
1040 		       &op1.reloc.exp, op1.reloc.pc_rel, op1.reloc.type);
1041 	to += 2;
1042       }
1043 
1044     if (op2.additional)
1045       {
1046 	md_number_to_chars (to, op2.word, 2);
1047 	if (op2.reloc.type != BFD_RELOC_NONE)
1048 	  fix_new_exp (frag_now, to - frag_now->fr_literal, 2,
1049 		       &op2.reloc.exp, op2.reloc.pc_rel, op2.reloc.type);
1050       }
1051   }
1052 }
1053 
1054 int
md_estimate_size_before_relax(fragS * fragP ATTRIBUTE_UNUSED,segT segment ATTRIBUTE_UNUSED)1055 md_estimate_size_before_relax (fragS *fragP ATTRIBUTE_UNUSED,
1056 			       segT segment ATTRIBUTE_UNUSED)
1057 {
1058   return 0;
1059 }
1060 
1061 void
md_convert_frag(bfd * headers ATTRIBUTE_UNUSED,segT seg ATTRIBUTE_UNUSED,fragS * fragP ATTRIBUTE_UNUSED)1062 md_convert_frag (bfd *headers ATTRIBUTE_UNUSED,
1063 		 segT seg ATTRIBUTE_UNUSED,
1064 		 fragS *fragP ATTRIBUTE_UNUSED)
1065 {
1066 }
1067 
1068 int md_short_jump_size = 2;
1069 int md_long_jump_size = 4;
1070 
1071 void
md_create_short_jump(char * ptr ATTRIBUTE_UNUSED,addressT from_addr ATTRIBUTE_UNUSED,addressT to_addr ATTRIBUTE_UNUSED,fragS * frag ATTRIBUTE_UNUSED,symbolS * to_symbol ATTRIBUTE_UNUSED)1072 md_create_short_jump (char *ptr ATTRIBUTE_UNUSED,
1073 		      addressT from_addr ATTRIBUTE_UNUSED,
1074 		      addressT to_addr ATTRIBUTE_UNUSED,
1075 		      fragS *frag ATTRIBUTE_UNUSED,
1076 		      symbolS *to_symbol ATTRIBUTE_UNUSED)
1077 {
1078 }
1079 
1080 void
md_create_long_jump(char * ptr ATTRIBUTE_UNUSED,addressT from_addr ATTRIBUTE_UNUSED,addressT to_addr ATTRIBUTE_UNUSED,fragS * frag ATTRIBUTE_UNUSED,symbolS * to_symbol ATTRIBUTE_UNUSED)1081 md_create_long_jump (char *ptr ATTRIBUTE_UNUSED,
1082 		     addressT from_addr ATTRIBUTE_UNUSED,
1083 		     addressT to_addr ATTRIBUTE_UNUSED,
1084 		     fragS *frag ATTRIBUTE_UNUSED,
1085 		     symbolS *to_symbol ATTRIBUTE_UNUSED)
1086 {
1087 }
1088 
1089 static int
set_cpu_model(const char * arg)1090 set_cpu_model (const char *arg)
1091 {
1092   char buf[4];
1093   char *model = buf;
1094 
1095   if (arg[0] == 'k')
1096     arg++;
1097 
1098   *model++ = *arg++;
1099 
1100   if (strchr ("abdx", model[-1]) == NULL)
1101     return 0;
1102 
1103   if (model[-1] == 'd')
1104     {
1105       if (arg[0] == 'f' || arg[0] == 'j')
1106 	model[-1] = *arg++;
1107     }
1108   else if (model[-1] == 'x')
1109     {
1110       if (arg[0] == 't')
1111 	model[-1] = *arg++;
1112     }
1113 
1114   if (arg[0] == '-')
1115     arg++;
1116 
1117   if (!startswith (arg, "11"))
1118     return 0;
1119   arg += 2;
1120 
1121   if (arg[0] == '-')
1122     {
1123       if (*++arg == 0)
1124 	return 0;
1125     }
1126 
1127   /* Allow up to two revision letters.  */
1128   if (arg[0] != 0)
1129     *model++ = *arg++;
1130   if (arg[0] != 0)
1131     *model++ = *arg++;
1132 
1133   *model++ = 0;
1134 
1135   set_option ("no-extensions");
1136 
1137   /* KA11 (11/15/20).  */
1138   if (startswith (buf, "a"))
1139     return 1; /* No extensions.  */
1140 
1141   /* KB11 (11/45/50/55/70).  */
1142   else if (startswith (buf, "b"))
1143     return set_option ("eis") && set_option ("spl");
1144 
1145   /* KD11-A (11/35/40).  */
1146   else if (startswith (buf, "da"))
1147     return set_option ("limited-eis");
1148 
1149   /* KD11-B (11/05/10).  */
1150   else if (startswith (buf, "db")
1151 	   /* KD11-D (11/04).  */
1152 	   || startswith (buf, "dd"))
1153     return 1; /* no extensions */
1154 
1155   /* KD11-E (11/34).  */
1156   else if (startswith (buf, "de"))
1157     return set_option ("eis") && set_option ("mxps");
1158 
1159   /* KD11-F (11/03).  */
1160   else if (startswith (buf, "df")
1161 	   /* KD11-H (11/03).  */
1162 	   || startswith (buf, "dh")
1163 	   /* KD11-Q (11/03).  */
1164 	   || startswith (buf, "dq"))
1165     return set_option ("limited-eis") && set_option ("mxps");
1166 
1167   /* KD11-K (11/60).  */
1168   else if (startswith (buf, "dk"))
1169     return set_option ("eis")
1170       && set_option ("mxps")
1171       && set_option ("ucode");
1172 
1173   /* KD11-Z (11/44).  */
1174   else if (startswith (buf, "dz"))
1175     return set_option ("csm")
1176       && set_option ("eis")
1177       && set_option ("mfpt")
1178       && set_option ("mxps")
1179       && set_option ("spl");
1180 
1181   /* F11 (11/23/24).  */
1182   else if (startswith (buf, "f"))
1183     return set_option ("eis")
1184       && set_option ("mfpt")
1185       && set_option ("mxps");
1186 
1187   /* J11 (11/53/73/83/84/93/94).  */
1188   else if (startswith (buf, "j"))
1189     return set_option ("csm")
1190       && set_option ("eis")
1191       && set_option ("mfpt")
1192       && set_option ("multiproc")
1193       && set_option ("mxps")
1194       && set_option ("spl");
1195 
1196   /* T11 (11/21).  */
1197   else if (startswith (buf, "t"))
1198     return set_option ("limited-eis")
1199       && set_option ("mxps");
1200 
1201   else
1202     return 0;
1203 }
1204 
1205 static int
set_machine_model(const char * arg)1206 set_machine_model (const char *arg)
1207 {
1208   if (!startswith (arg, "pdp-11/")
1209       && !startswith (arg, "pdp11/")
1210       && !startswith (arg, "11/"))
1211     return 0;
1212 
1213   if (startswith (arg, "pdp"))
1214     arg += 3;
1215   if (arg[0] == '-')
1216     arg++;
1217   if (startswith (arg, "11/"))
1218     arg += 3;
1219 
1220   if (strcmp (arg, "03") == 0)
1221     return set_cpu_model ("kd11f");
1222 
1223   else if (strcmp (arg, "04") == 0)
1224     return set_cpu_model ("kd11d");
1225 
1226   else if (strcmp (arg, "05") == 0
1227 	   || strcmp (arg, "10") == 0)
1228     return set_cpu_model ("kd11b");
1229 
1230   else if (strcmp (arg, "15") == 0
1231 	   || strcmp (arg, "20") == 0)
1232     return set_cpu_model ("ka11");
1233 
1234   else if (strcmp (arg, "21") == 0)
1235     return set_cpu_model ("t11");
1236 
1237   else if (strcmp (arg, "23") == 0
1238 	   || strcmp (arg, "24") == 0)
1239     return set_cpu_model ("f11");
1240 
1241   else if (strcmp (arg, "34") == 0
1242 	   || strcmp (arg, "34a") == 0)
1243     return set_cpu_model ("kd11e");
1244 
1245   else if (strcmp (arg, "35") == 0
1246 	   || strcmp (arg, "40") == 0)
1247     return set_cpu_model ("kd11da");
1248 
1249   else if (strcmp (arg, "44") == 0)
1250     return set_cpu_model ("kd11dz");
1251 
1252   else if (strcmp (arg, "45") == 0
1253 	   || strcmp (arg, "50") == 0
1254 	   || strcmp (arg, "55") == 0
1255 	   || strcmp (arg, "70") == 0)
1256     return set_cpu_model ("kb11");
1257 
1258   else if (strcmp (arg, "60") == 0)
1259     return set_cpu_model ("kd11k");
1260 
1261   else if (strcmp (arg, "53") == 0
1262 	   || strcmp (arg, "73") == 0
1263 	   || strcmp (arg, "83") == 0
1264 	   || strcmp (arg, "84") == 0
1265 	   || strcmp (arg, "93") == 0
1266 	   || strcmp (arg, "94") == 0)
1267     return set_cpu_model ("j11")
1268       && set_option ("fpp");
1269 
1270   else
1271     return 0;
1272 }
1273 
1274 const char *md_shortopts = "m:";
1275 
1276 struct option md_longopts[] =
1277 {
1278 #define OPTION_CPU 257
1279   { "cpu", required_argument, NULL, OPTION_CPU },
1280 #define OPTION_MACHINE 258
1281   { "machine", required_argument, NULL, OPTION_MACHINE },
1282 #define OPTION_PIC 259
1283   { "pic", no_argument, NULL, OPTION_PIC },
1284   { NULL, no_argument, NULL, 0 }
1285 };
1286 
1287 size_t md_longopts_size = sizeof (md_longopts);
1288 
1289 /* Invocation line includes a switch not recognized by the base assembler.
1290    See if it's a processor-specific option.  */
1291 
1292 int
md_parse_option(int c,const char * arg)1293 md_parse_option (int c, const char *arg)
1294 {
1295   init_defaults ();
1296 
1297   switch (c)
1298     {
1299     case 'm':
1300       if (set_option (arg))
1301 	return 1;
1302       if (set_cpu_model (arg))
1303 	return 1;
1304       if (set_machine_model (arg))
1305 	return 1;
1306       break;
1307 
1308     case OPTION_CPU:
1309       if (set_cpu_model (arg))
1310 	return 1;
1311       break;
1312 
1313     case OPTION_MACHINE:
1314       if (set_machine_model (arg))
1315 	return 1;
1316       break;
1317 
1318     case OPTION_PIC:
1319       if (set_option ("pic"))
1320 	return 1;
1321       break;
1322 
1323     default:
1324       break;
1325     }
1326 
1327   return 0;
1328 }
1329 
1330 void
md_show_usage(FILE * stream)1331 md_show_usage (FILE *stream)
1332 {
1333   fprintf (stream, "\
1334 \n\
1335 PDP-11 instruction set extensions:\n\
1336 \n\
1337 -m(no-)cis		allow (disallow) commercial instruction set\n\
1338 -m(no-)csm		allow (disallow) CSM instruction\n\
1339 -m(no-)eis		allow (disallow) full extended instruction set\n\
1340 -m(no-)fis		allow (disallow) KEV11 floating-point instructions\n\
1341 -m(no-)fpp		allow (disallow) FP-11 floating-point instructions\n\
1342 -m(no-)fpu		allow (disallow) FP-11 floating-point instructions\n\
1343 -m(no-)limited-eis	allow (disallow) limited extended instruction set\n\
1344 -m(no-)mfpt		allow (disallow) processor type instruction\n\
1345 -m(no-)multiproc	allow (disallow) multiprocessor instructions\n\
1346 -m(no-)mxps		allow (disallow) processor status instructions\n\
1347 -m(no-)spl		allow (disallow) SPL instruction\n\
1348 -m(no-)ucode		allow (disallow) microcode instructions\n\
1349 -mall-extensions	allow all instruction set extensions\n\
1350 			(this is the default)\n\
1351 -mno-extensions		disallow all instruction set extensions\n\
1352 -pic			generate position-independent code\n\
1353 \n\
1354 PDP-11 CPU model options:\n\
1355 \n\
1356 -mka11*			KA11 CPU.  base line instruction set only\n\
1357 -mkb11*			KB11 CPU.  enable full EIS and SPL\n\
1358 -mkd11a*		KD11-A CPU.  enable limited EIS\n\
1359 -mkd11b*		KD11-B CPU.  base line instruction set only\n\
1360 -mkd11d*		KD11-D CPU.  base line instruction set only\n\
1361 -mkd11e*		KD11-E CPU.  enable full EIS, MTPS, and MFPS\n\
1362 -mkd11f*		KD11-F CPU.  enable limited EIS, MTPS, and MFPS\n\
1363 -mkd11h*		KD11-H CPU.  enable limited EIS, MTPS, and MFPS\n\
1364 -mkd11q*		KD11-Q CPU.  enable limited EIS, MTPS, and MFPS\n\
1365 -mkd11k*		KD11-K CPU.  enable full EIS, MTPS, MFPS, LDUB, MED,\n\
1366 			XFC, and MFPT\n\
1367 -mkd11z*		KD11-Z CPU.  enable full EIS, MTPS, MFPS, MFPT, SPL,\n\
1368 			and CSM\n\
1369 -mf11*			F11 CPU.  enable full EIS, MFPS, MTPS, and MFPT\n\
1370 -mj11*			J11 CPU.  enable full EIS, MTPS, MFPS, MFPT, SPL,\n\
1371 			CSM, TSTSET, and WRTLCK\n\
1372 -mt11*			T11 CPU.  enable limited EIS, MTPS, and MFPS\n\
1373 \n\
1374 PDP-11 machine model options:\n\
1375 \n\
1376 -m11/03			same as -mkd11f\n\
1377 -m11/04			same as -mkd11d\n\
1378 -m11/05			same as -mkd11b\n\
1379 -m11/10			same as -mkd11b\n\
1380 -m11/15			same as -mka11\n\
1381 -m11/20			same as -mka11\n\
1382 -m11/21			same as -mt11\n\
1383 -m11/23			same as -mf11\n\
1384 -m11/24			same as -mf11\n\
1385 -m11/34			same as -mkd11e\n\
1386 -m11/34a		same as -mkd11e -mfpp\n\
1387 -m11/35			same as -mkd11a\n\
1388 -m11/40			same as -mkd11a\n\
1389 -m11/44			same as -mkd11z\n\
1390 -m11/45			same as -mkb11\n\
1391 -m11/50			same as -mkb11\n\
1392 -m11/53			same as -mj11\n\
1393 -m11/55			same as -mkb11\n\
1394 -m11/60			same as -mkd11k\n\
1395 -m11/70			same as -mkb11\n\
1396 -m11/73			same as -mj11\n\
1397 -m11/83			same as -mj11\n\
1398 -m11/84			same as -mj11\n\
1399 -m11/93			same as -mj11\n\
1400 -m11/94			same as -mj11\n\
1401 ");
1402 }
1403 
1404 symbolS *
md_undefined_symbol(char * name ATTRIBUTE_UNUSED)1405 md_undefined_symbol (char *name ATTRIBUTE_UNUSED)
1406 {
1407   return 0;
1408 }
1409 
1410 valueT
md_section_align(segT segment ATTRIBUTE_UNUSED,valueT size)1411 md_section_align (segT segment ATTRIBUTE_UNUSED,
1412 		  valueT size)
1413 {
1414   return (size + 1) & ~1;
1415 }
1416 
1417 long
md_pcrel_from(fixS * fixP)1418 md_pcrel_from (fixS *fixP)
1419 {
1420   return fixP->fx_frag->fr_address + fixP->fx_where + fixP->fx_size;
1421 }
1422 
1423 /* Translate internal representation of relocation info to BFD target
1424    format.  */
1425 
1426 arelent *
tc_gen_reloc(asection * section ATTRIBUTE_UNUSED,fixS * fixp)1427 tc_gen_reloc (asection *section ATTRIBUTE_UNUSED,
1428 	      fixS *fixp)
1429 {
1430   arelent *reloc;
1431   bfd_reloc_code_real_type code;
1432 
1433   reloc = XNEW (arelent);
1434 
1435   reloc->sym_ptr_ptr = XNEW (asymbol *);
1436   *reloc->sym_ptr_ptr = symbol_get_bfdsym (fixp->fx_addsy);
1437   reloc->address = fixp->fx_frag->fr_address + fixp->fx_where;
1438 
1439   /* This is taken account for in md_apply_fix().  */
1440   reloc->addend = -symbol_get_bfdsym (fixp->fx_addsy)->section->vma;
1441 
1442   code = fixp->fx_r_type;
1443   if (fixp->fx_pcrel)
1444     {
1445       switch (code)
1446 	{
1447 	case BFD_RELOC_16:
1448 	  code = BFD_RELOC_16_PCREL;
1449 	  break;
1450 
1451 	case BFD_RELOC_16_PCREL:
1452 	  break;
1453 
1454 	default:
1455 	  BAD_CASE (code);
1456 	  return NULL;
1457 	}
1458     }
1459 
1460   reloc->howto = bfd_reloc_type_lookup (stdoutput, code);
1461 
1462   if (reloc->howto == NULL)
1463     {
1464       as_bad_where (fixp->fx_file, fixp->fx_line,
1465 		    _("Can not represent %s relocation in this object file format"),
1466 		    bfd_get_reloc_code_name (code));
1467       return NULL;
1468     }
1469 
1470   return reloc;
1471 }
1472 
1473 void
pseudo_bss(int c ATTRIBUTE_UNUSED)1474 pseudo_bss (int c ATTRIBUTE_UNUSED)
1475 {
1476   int temp;
1477 
1478   temp = get_absolute_expression ();
1479   subseg_set (bss_section, temp);
1480   demand_empty_rest_of_line ();
1481 }
1482 
1483 void
pseudo_even(int c ATTRIBUTE_UNUSED)1484 pseudo_even (int c ATTRIBUTE_UNUSED)
1485 {
1486   int alignment = 1; /* 2^1 */
1487   frag_align (alignment, 0, 1);
1488   record_alignment (now_seg, alignment);
1489 }
1490 
1491 const char *
md_atof(int type,char * litP,int * sizeP)1492 md_atof (int type, char * litP, int * sizeP)
1493 {
1494   return vax_md_atof (type, litP, sizeP);
1495 }
1496