Remove i860, i960, bout and aout-adobe targets
[deliverable/binutils-gdb.git] / gas / expr.c
CommitLineData
252b5132 1/* expr.c -operands, expressions-
219d1afa 2 Copyright (C) 1987-2018 Free Software Foundation, Inc.
252b5132
RH
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
ec2655a6 8 the Free Software Foundation; either version 3, or (at your option)
252b5132
RH
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 the Free
4b4da160
NC
18 Software Foundation, 51 Franklin Street - Fifth Floor, Boston, MA
19 02110-1301, USA. */
252b5132 20
929b12bc
KH
21/* This is really a branch office of as-read.c. I split it out to clearly
22 distinguish the world of expressions from the world of statements.
23 (It also gives smaller files to re-compile.)
24 Here, "operand"s are of expressions, not instructions. */
252b5132 25
252b5132
RH
26#define min(a, b) ((a) < (b) ? (a) : (b))
27
28#include "as.h"
3882b010 29#include "safe-ctype.h"
252b5132 30
d85733c8
JB
31#ifdef HAVE_LIMITS_H
32#include <limits.h>
33#endif
34#ifndef CHAR_BIT
35#define CHAR_BIT 8
36#endif
37
dd625418
KH
38static void floating_constant (expressionS * expressionP);
39static valueT generic_bignum_to_int32 (void);
6d4d30bb 40#ifdef BFD64
dd625418 41static valueT generic_bignum_to_int64 (void);
6d4d30bb 42#endif
dd625418
KH
43static void integer_constant (int radix, expressionS * expressionP);
44static void mri_char_constant (expressionS *);
dd625418 45static void clean_up_expression (expressionS * expressionP);
9497f5ac 46static segT operand (expressionS *, enum expr_mode);
1e9cc1c2 47static operatorT operatorf (int *);
252b5132 48
252b5132
RH
49/* We keep a mapping of expression symbols to file positions, so that
50 we can provide better error messages. */
51
e6c774b4 52struct expr_symbol_line {
252b5132
RH
53 struct expr_symbol_line *next;
54 symbolS *sym;
3b4dbbbf 55 const char *file;
252b5132
RH
56 unsigned int line;
57};
58
59static struct expr_symbol_line *expr_symbol_lines;
60\f
61/* Build a dummy symbol to hold a complex expression. This is how we
62 build expressions up out of other expressions. The symbol is put
63 into the fake section expr_section. */
64
65symbolS *
dd625418 66make_expr_symbol (expressionS *expressionP)
252b5132
RH
67{
68 expressionS zero;
252b5132
RH
69 symbolS *symbolP;
70 struct expr_symbol_line *n;
71
72 if (expressionP->X_op == O_symbol
73 && expressionP->X_add_number == 0)
74 return expressionP->X_add_symbol;
75
76 if (expressionP->X_op == O_big)
77 {
78 /* This won't work, because the actual value is stored in
02000999
AM
79 generic_floating_point_number or generic_bignum, and we are
80 going to lose it if we haven't already. */
252b5132 81 if (expressionP->X_add_number > 0)
0e389e77 82 as_bad (_("bignum invalid"));
252b5132 83 else
0e389e77 84 as_bad (_("floating point number invalid"));
252b5132
RH
85 zero.X_op = O_constant;
86 zero.X_add_number = 0;
87 zero.X_unsigned = 0;
956a6ba3 88 zero.X_extrabit = 0;
252b5132
RH
89 clean_up_expression (&zero);
90 expressionP = &zero;
91 }
92
252b5132
RH
93 /* Putting constant symbols in absolute_section rather than
94 expr_section is convenient for the old a.out code, for which
95 S_GET_SEGMENT does not always retrieve the value put in by
96 S_SET_SEGMENT. */
756d1d01 97 symbolP = symbol_create (FAKE_LABEL_NAME,
252b5132
RH
98 (expressionP->X_op == O_constant
99 ? absolute_section
5a918ce7
JB
100 : expressionP->X_op == O_register
101 ? reg_section
102 : expr_section),
252b5132 103 0, &zero_address_frag);
49309057 104 symbol_set_value_expression (symbolP, expressionP);
252b5132
RH
105
106 if (expressionP->X_op == O_constant)
6386f3a7 107 resolve_symbol_value (symbolP);
252b5132 108
325801bd 109 n = XNEW (struct expr_symbol_line);
252b5132 110 n->sym = symbolP;
3b4dbbbf 111 n->file = as_where (&n->line);
252b5132
RH
112 n->next = expr_symbol_lines;
113 expr_symbol_lines = n;
114
115 return symbolP;
116}
117
118/* Return the file and line number for an expr symbol. Return
119 non-zero if something was found, 0 if no information is known for
120 the symbol. */
121
122int
3b4dbbbf 123expr_symbol_where (symbolS *sym, const char **pfile, unsigned int *pline)
252b5132 124{
ed9e98c2 125 struct expr_symbol_line *l;
252b5132
RH
126
127 for (l = expr_symbol_lines; l != NULL; l = l->next)
128 {
129 if (l->sym == sym)
130 {
131 *pfile = l->file;
132 *pline = l->line;
133 return 1;
134 }
135 }
136
137 return 0;
138}
139\f
140/* Utilities for building expressions.
141 Since complex expressions are recorded as symbols for use in other
142 expressions these return a symbolS * and not an expressionS *.
143 These explicitly do not take an "add_number" argument. */
144/* ??? For completeness' sake one might want expr_build_symbol.
145 It would just return its argument. */
146
147/* Build an expression for an unsigned constant.
148 The corresponding one for signed constants is missing because
149 there's currently no need for it. One could add an unsigned_p flag
150 but that seems more clumsy. */
151
152symbolS *
dd625418 153expr_build_uconstant (offsetT value)
252b5132
RH
154{
155 expressionS e;
156
157 e.X_op = O_constant;
158 e.X_add_number = value;
159 e.X_unsigned = 1;
956a6ba3 160 e.X_extrabit = 0;
252b5132
RH
161 return make_expr_symbol (&e);
162}
163
252b5132
RH
164/* Build an expression for the current location ('.'). */
165
166symbolS *
dd625418 167expr_build_dot (void)
252b5132
RH
168{
169 expressionS e;
170
171 current_location (&e);
e66a3432 172 return symbol_clone_if_forward_ref (make_expr_symbol (&e));
252b5132
RH
173}
174\f
929b12bc
KH
175/* Build any floating-point literal here.
176 Also build any bignum literal here. */
252b5132
RH
177
178/* Seems atof_machine can backscan through generic_bignum and hit whatever
179 happens to be loaded before it in memory. And its way too complicated
180 for me to fix right. Thus a hack. JF: Just make generic_bignum bigger,
181 and never write into the early words, thus they'll always be zero.
182 I hate Dean's floating-point code. Bleh. */
183LITTLENUM_TYPE generic_bignum[SIZE_OF_LARGE_NUMBER + 6];
e6c774b4
KH
184
185FLONUM_TYPE generic_floating_point_number = {
bc4466dc
KH
186 &generic_bignum[6], /* low. (JF: Was 0) */
187 &generic_bignum[SIZE_OF_LARGE_NUMBER + 6 - 1], /* high. JF: (added +6) */
188 0, /* leader. */
189 0, /* exponent. */
190 0 /* sign. */
252b5132 191};
929b12bc 192
252b5132
RH
193\f
194static void
dd625418 195floating_constant (expressionS *expressionP)
252b5132 196{
929b12bc 197 /* input_line_pointer -> floating-point constant. */
252b5132
RH
198 int error_code;
199
200 error_code = atof_generic (&input_line_pointer, ".", EXP_CHARS,
201 &generic_floating_point_number);
202
203 if (error_code)
204 {
205 if (error_code == ERROR_EXPONENT_OVERFLOW)
206 {
0e389e77 207 as_bad (_("bad floating-point constant: exponent overflow"));
252b5132
RH
208 }
209 else
210 {
0e389e77
AM
211 as_bad (_("bad floating-point constant: unknown error code=%d"),
212 error_code);
252b5132
RH
213 }
214 }
215 expressionP->X_op = O_big;
929b12bc
KH
216 /* input_line_pointer -> just after constant, which may point to
217 whitespace. */
252b5132
RH
218 expressionP->X_add_number = -1;
219}
220
929b12bc 221static valueT
dd625418 222generic_bignum_to_int32 (void)
252b5132
RH
223{
224 valueT number =
225 ((generic_bignum[1] & LITTLENUM_MASK) << LITTLENUM_NUMBER_OF_BITS)
226 | (generic_bignum[0] & LITTLENUM_MASK);
227 number &= 0xffffffff;
228 return number;
229}
230
231#ifdef BFD64
929b12bc 232static valueT
dd625418 233generic_bignum_to_int64 (void)
252b5132 234{
929b12bc
KH
235 valueT number =
236 ((((((((valueT) generic_bignum[3] & LITTLENUM_MASK)
237 << LITTLENUM_NUMBER_OF_BITS)
238 | ((valueT) generic_bignum[2] & LITTLENUM_MASK))
239 << LITTLENUM_NUMBER_OF_BITS)
240 | ((valueT) generic_bignum[1] & LITTLENUM_MASK))
241 << LITTLENUM_NUMBER_OF_BITS)
242 | ((valueT) generic_bignum[0] & LITTLENUM_MASK));
252b5132
RH
243 return number;
244}
245#endif
246
247static void
dd625418 248integer_constant (int radix, expressionS *expressionP)
252b5132 249{
929b12bc 250 char *start; /* Start of number. */
252b5132
RH
251 char *suffix = NULL;
252 char c;
929b12bc
KH
253 valueT number; /* Offset or (absolute) value. */
254 short int digit; /* Value of next digit in current radix. */
255 short int maxdig = 0; /* Highest permitted digit value. */
256 int too_many_digits = 0; /* If we see >= this number of. */
257 char *name; /* Points to name of symbol. */
258 symbolS *symbolP; /* Points to symbol. */
252b5132 259
929b12bc 260 int small; /* True if fits in 32 bits. */
252b5132 261
929b12bc 262 /* May be bignum, or may fit in 32 bits. */
252b5132
RH
263 /* Most numbers fit into 32 bits, and we want this case to be fast.
264 so we pretend it will fit into 32 bits. If, after making up a 32
265 bit number, we realise that we have scanned more digits than
266 comfortably fit into 32 bits, we re-scan the digits coding them
267 into a bignum. For decimal and octal numbers we are
268 conservative: Some numbers may be assumed bignums when in fact
269 they do fit into 32 bits. Numbers of any radix can have excess
270 leading zeros: We strive to recognise this and cast them back
271 into 32 bits. We must check that the bignum really is more than
272 32 bits, and change it back to a 32-bit number if it fits. The
273 number we are looking for is expected to be positive, but if it
274 fits into 32 bits as an unsigned number, we let it be a 32-bit
929b12bc 275 number. The cavalier approach is for speed in ordinary cases. */
252b5132
RH
276 /* This has been extended for 64 bits. We blindly assume that if
277 you're compiling in 64-bit mode, the target is a 64-bit machine.
278 This should be cleaned up. */
279
280#ifdef BFD64
281#define valuesize 64
282#else /* includes non-bfd case, mostly */
283#define valuesize 32
284#endif
285
c14c7a8a
AM
286 if (is_end_of_line[(unsigned char) *input_line_pointer])
287 {
288 expressionP->X_op = O_absent;
289 return;
290 }
291
f805106c 292 if ((NUMBERS_WITH_SUFFIX || flag_m68k_mri) && radix == 0)
252b5132
RH
293 {
294 int flt = 0;
295
296 /* In MRI mode, the number may have a suffix indicating the
02000999
AM
297 radix. For that matter, it might actually be a floating
298 point constant. */
3882b010 299 for (suffix = input_line_pointer; ISALNUM (*suffix); suffix++)
252b5132
RH
300 {
301 if (*suffix == 'e' || *suffix == 'E')
302 flt = 1;
303 }
304
305 if (suffix == input_line_pointer)
306 {
307 radix = 10;
308 suffix = NULL;
309 }
310 else
311 {
312 c = *--suffix;
3882b010 313 c = TOUPPER (c);
fee9cbc7
AM
314 /* If we have both NUMBERS_WITH_SUFFIX and LOCAL_LABELS_FB,
315 we distinguish between 'B' and 'b'. This is the case for
316 Z80. */
317 if ((NUMBERS_WITH_SUFFIX && LOCAL_LABELS_FB ? *suffix : c) == 'B')
252b5132
RH
318 radix = 2;
319 else if (c == 'D')
320 radix = 10;
321 else if (c == 'O' || c == 'Q')
322 radix = 8;
323 else if (c == 'H')
324 radix = 16;
325 else if (suffix[1] == '.' || c == 'E' || flt)
326 {
327 floating_constant (expressionP);
328 return;
329 }
330 else
331 {
332 radix = 10;
333 suffix = NULL;
334 }
335 }
336 }
337
338 switch (radix)
339 {
340 case 2:
341 maxdig = 2;
342 too_many_digits = valuesize + 1;
343 break;
344 case 8:
345 maxdig = radix = 8;
346 too_many_digits = (valuesize + 2) / 3 + 1;
347 break;
348 case 16:
349 maxdig = radix = 16;
350 too_many_digits = (valuesize + 3) / 4 + 1;
351 break;
352 case 10:
353 maxdig = radix = 10;
929b12bc 354 too_many_digits = (valuesize + 11) / 4; /* Very rough. */
252b5132
RH
355 }
356#undef valuesize
357 start = input_line_pointer;
358 c = *input_line_pointer++;
359 for (number = 0;
360 (digit = hex_value (c)) < maxdig;
361 c = *input_line_pointer++)
362 {
363 number = number * radix + digit;
364 }
929b12bc
KH
365 /* c contains character after number. */
366 /* input_line_pointer->char after c. */
252b5132
RH
367 small = (input_line_pointer - start - 1) < too_many_digits;
368
929b12bc 369 if (radix == 16 && c == '_')
252b5132
RH
370 {
371 /* This is literal of the form 0x333_0_12345678_1.
02000999 372 This example is equivalent to 0x00000333000000001234567800000001. */
252b5132
RH
373
374 int num_little_digits = 0;
375 int i;
929b12bc 376 input_line_pointer = start; /* -> 1st digit. */
252b5132
RH
377
378 know (LITTLENUM_NUMBER_OF_BITS == 16);
379
929b12bc 380 for (c = '_'; c == '_'; num_little_digits += 2)
252b5132
RH
381 {
382
929b12bc
KH
383 /* Convert one 64-bit word. */
384 int ndigit = 0;
252b5132
RH
385 number = 0;
386 for (c = *input_line_pointer++;
387 (digit = hex_value (c)) < maxdig;
388 c = *(input_line_pointer++))
389 {
390 number = number * radix + digit;
391 ndigit++;
392 }
393
394 /* Check for 8 digit per word max. */
929b12bc 395 if (ndigit > 8)
0e389e77 396 as_bad (_("a bignum with underscores may not have more than 8 hex digits in any word"));
252b5132 397
929b12bc
KH
398 /* Add this chunk to the bignum.
399 Shift things down 2 little digits. */
252b5132 400 know (LITTLENUM_NUMBER_OF_BITS == 16);
929b12bc
KH
401 for (i = min (num_little_digits + 1, SIZE_OF_LARGE_NUMBER - 1);
402 i >= 2;
403 i--)
404 generic_bignum[i] = generic_bignum[i - 2];
252b5132 405
929b12bc 406 /* Add the new digits as the least significant new ones. */
252b5132
RH
407 generic_bignum[0] = number & 0xffffffff;
408 generic_bignum[1] = number >> 16;
409 }
410
929b12bc 411 /* Again, c is char after number, input_line_pointer->after c. */
252b5132
RH
412
413 if (num_little_digits > SIZE_OF_LARGE_NUMBER - 1)
414 num_little_digits = SIZE_OF_LARGE_NUMBER - 1;
415
9c2799c2 416 gas_assert (num_little_digits >= 4);
252b5132
RH
417
418 if (num_little_digits != 8)
0e389e77 419 as_bad (_("a bignum with underscores must have exactly 4 words"));
252b5132
RH
420
421 /* We might have some leading zeros. These can be trimmed to give
929b12bc
KH
422 us a change to fit this constant into a small number. */
423 while (generic_bignum[num_little_digits - 1] == 0
424 && num_little_digits > 1)
252b5132 425 num_little_digits--;
929b12bc 426
252b5132
RH
427 if (num_little_digits <= 2)
428 {
929b12bc 429 /* will fit into 32 bits. */
252b5132
RH
430 number = generic_bignum_to_int32 ();
431 small = 1;
432 }
433#ifdef BFD64
434 else if (num_little_digits <= 4)
435 {
436 /* Will fit into 64 bits. */
437 number = generic_bignum_to_int64 ();
438 small = 1;
439 }
440#endif
441 else
442 {
443 small = 0;
929b12bc
KH
444
445 /* Number of littlenums in the bignum. */
446 number = num_little_digits;
252b5132
RH
447 }
448 }
449 else if (!small)
450 {
929b12bc
KH
451 /* We saw a lot of digits. manufacture a bignum the hard way. */
452 LITTLENUM_TYPE *leader; /* -> high order littlenum of the bignum. */
453 LITTLENUM_TYPE *pointer; /* -> littlenum we are frobbing now. */
252b5132
RH
454 long carry;
455
456 leader = generic_bignum;
457 generic_bignum[0] = 0;
458 generic_bignum[1] = 0;
459 generic_bignum[2] = 0;
460 generic_bignum[3] = 0;
929b12bc 461 input_line_pointer = start; /* -> 1st digit. */
252b5132 462 c = *input_line_pointer++;
929b12bc 463 for (; (carry = hex_value (c)) < maxdig; c = *input_line_pointer++)
252b5132 464 {
929b12bc 465 for (pointer = generic_bignum; pointer <= leader; pointer++)
252b5132
RH
466 {
467 long work;
468
469 work = carry + radix * *pointer;
470 *pointer = work & LITTLENUM_MASK;
471 carry = work >> LITTLENUM_NUMBER_OF_BITS;
472 }
473 if (carry)
474 {
475 if (leader < generic_bignum + SIZE_OF_LARGE_NUMBER - 1)
476 {
929b12bc 477 /* Room to grow a longer bignum. */
252b5132
RH
478 *++leader = carry;
479 }
480 }
481 }
929b12bc
KH
482 /* Again, c is char after number. */
483 /* input_line_pointer -> after c. */
252b5132
RH
484 know (LITTLENUM_NUMBER_OF_BITS == 16);
485 if (leader < generic_bignum + 2)
486 {
929b12bc 487 /* Will fit into 32 bits. */
252b5132
RH
488 number = generic_bignum_to_int32 ();
489 small = 1;
490 }
491#ifdef BFD64
492 else if (leader < generic_bignum + 4)
493 {
494 /* Will fit into 64 bits. */
495 number = generic_bignum_to_int64 ();
496 small = 1;
497 }
498#endif
499 else
500 {
929b12bc
KH
501 /* Number of littlenums in the bignum. */
502 number = leader - generic_bignum + 1;
252b5132
RH
503 }
504 }
505
60bcf0fa
NC
506 if ((NUMBERS_WITH_SUFFIX || flag_m68k_mri)
507 && suffix != NULL
f805106c 508 && input_line_pointer - 1 == suffix)
252b5132
RH
509 c = *input_line_pointer++;
510
e140100a
NC
511#ifndef tc_allow_U_suffix
512#define tc_allow_U_suffix 1
513#endif
514 /* PR 19910: Look for, and ignore, a U suffix to the number. */
515 if (tc_allow_U_suffix && (c == 'U' || c == 'u'))
516 c = * input_line_pointer++;
517
86b80085
NC
518#ifndef tc_allow_L_suffix
519#define tc_allow_L_suffix 1
520#endif
521 /* PR 20732: Look for, and ignore, a L or LL suffix to the number. */
522 if (tc_allow_L_suffix)
523 while (c == 'L' || c == 'l')
524 c = * input_line_pointer++;
525
252b5132
RH
526 if (small)
527 {
929b12bc
KH
528 /* Here with number, in correct radix. c is the next char.
529 Note that unlike un*x, we allow "011f" "0x9f" to both mean
530 the same as the (conventional) "9f".
531 This is simply easier than checking for strict canonical
532 form. Syntax sux! */
252b5132
RH
533
534 if (LOCAL_LABELS_FB && c == 'b')
535 {
929b12bc
KH
536 /* Backward ref to local label.
537 Because it is backward, expect it to be defined. */
252b5132
RH
538 /* Construct a local label. */
539 name = fb_label_name ((int) number, 0);
540
929b12bc 541 /* Seen before, or symbol is defined: OK. */
252b5132
RH
542 symbolP = symbol_find (name);
543 if ((symbolP != NULL) && (S_IS_DEFINED (symbolP)))
544 {
929b12bc
KH
545 /* Local labels are never absolute. Don't waste time
546 checking absoluteness. */
252b5132
RH
547 know (SEG_NORMAL (S_GET_SEGMENT (symbolP)));
548
549 expressionP->X_op = O_symbol;
550 expressionP->X_add_symbol = symbolP;
551 }
552 else
553 {
929b12bc 554 /* Either not seen or not defined. */
252b5132
RH
555 /* @@ Should print out the original string instead of
556 the parsed number. */
0e389e77 557 as_bad (_("backward ref to unknown label \"%d:\""),
252b5132
RH
558 (int) number);
559 expressionP->X_op = O_constant;
560 }
561
562 expressionP->X_add_number = 0;
563 } /* case 'b' */
564 else if (LOCAL_LABELS_FB && c == 'f')
565 {
929b12bc
KH
566 /* Forward reference. Expect symbol to be undefined or
567 unknown. undefined: seen it before. unknown: never seen
568 it before.
569
570 Construct a local label name, then an undefined symbol.
571 Don't create a xseg frag for it: caller may do that.
572 Just return it as never seen before. */
252b5132
RH
573 name = fb_label_name ((int) number, 1);
574 symbolP = symbol_find_or_make (name);
929b12bc 575 /* We have no need to check symbol properties. */
252b5132 576#ifndef many_segments
929b12bc 577 /* Since "know" puts its arg into a "string", we
252b5132
RH
578 can't have newlines in the argument. */
579 know (S_GET_SEGMENT (symbolP) == undefined_section || S_GET_SEGMENT (symbolP) == text_section || S_GET_SEGMENT (symbolP) == data_section);
580#endif
581 expressionP->X_op = O_symbol;
582 expressionP->X_add_symbol = symbolP;
583 expressionP->X_add_number = 0;
584 } /* case 'f' */
585 else if (LOCAL_LABELS_DOLLAR && c == '$')
586 {
587 /* If the dollar label is *currently* defined, then this is just
588 another reference to it. If it is not *currently* defined,
589 then this is a fresh instantiation of that number, so create
590 it. */
591
592 if (dollar_label_defined ((long) number))
593 {
594 name = dollar_label_name ((long) number, 0);
595 symbolP = symbol_find (name);
596 know (symbolP != NULL);
597 }
598 else
599 {
600 name = dollar_label_name ((long) number, 1);
601 symbolP = symbol_find_or_make (name);
602 }
603
604 expressionP->X_op = O_symbol;
605 expressionP->X_add_symbol = symbolP;
606 expressionP->X_add_number = 0;
607 } /* case '$' */
608 else
609 {
610 expressionP->X_op = O_constant;
252b5132 611 expressionP->X_add_number = number;
bc4466dc 612 input_line_pointer--; /* Restore following character. */
929b12bc 613 } /* Really just a number. */
252b5132
RH
614 }
615 else
616 {
bc4466dc 617 /* Not a small number. */
252b5132 618 expressionP->X_op = O_big;
929b12bc
KH
619 expressionP->X_add_number = number; /* Number of littlenums. */
620 input_line_pointer--; /* -> char following number. */
252b5132
RH
621 }
622}
623
624/* Parse an MRI multi character constant. */
625
626static void
dd625418 627mri_char_constant (expressionS *expressionP)
252b5132
RH
628{
629 int i;
630
631 if (*input_line_pointer == '\''
632 && input_line_pointer[1] != '\'')
633 {
634 expressionP->X_op = O_constant;
635 expressionP->X_add_number = 0;
636 return;
637 }
638
639 /* In order to get the correct byte ordering, we must build the
640 number in reverse. */
641 for (i = SIZE_OF_LARGE_NUMBER - 1; i >= 0; i--)
642 {
643 int j;
644
645 generic_bignum[i] = 0;
646 for (j = 0; j < CHARS_PER_LITTLENUM; j++)
647 {
648 if (*input_line_pointer == '\'')
649 {
650 if (input_line_pointer[1] != '\'')
651 break;
652 ++input_line_pointer;
653 }
654 generic_bignum[i] <<= 8;
655 generic_bignum[i] += *input_line_pointer;
656 ++input_line_pointer;
657 }
658
659 if (i < SIZE_OF_LARGE_NUMBER - 1)
660 {
661 /* If there is more than one littlenum, left justify the
02000999
AM
662 last one to make it match the earlier ones. If there is
663 only one, we can just use the value directly. */
252b5132
RH
664 for (; j < CHARS_PER_LITTLENUM; j++)
665 generic_bignum[i] <<= 8;
666 }
667
668 if (*input_line_pointer == '\''
669 && input_line_pointer[1] != '\'')
670 break;
671 }
672
673 if (i < 0)
674 {
0e389e77 675 as_bad (_("character constant too large"));
252b5132
RH
676 i = 0;
677 }
678
679 if (i > 0)
680 {
681 int c;
682 int j;
683
684 c = SIZE_OF_LARGE_NUMBER - i;
685 for (j = 0; j < c; j++)
686 generic_bignum[j] = generic_bignum[i + j];
687 i = c;
688 }
689
690 know (LITTLENUM_NUMBER_OF_BITS == 16);
691 if (i > 2)
692 {
693 expressionP->X_op = O_big;
694 expressionP->X_add_number = i;
695 }
696 else
697 {
698 expressionP->X_op = O_constant;
699 if (i < 2)
700 expressionP->X_add_number = generic_bignum[0] & LITTLENUM_MASK;
701 else
702 expressionP->X_add_number =
703 (((generic_bignum[1] & LITTLENUM_MASK)
704 << LITTLENUM_NUMBER_OF_BITS)
705 | (generic_bignum[0] & LITTLENUM_MASK));
706 }
707
708 /* Skip the final closing quote. */
709 ++input_line_pointer;
710}
711
712/* Return an expression representing the current location. This
713 handles the magic symbol `.'. */
714
b7adb16d 715void
dd625418 716current_location (expressionS *expressionp)
252b5132
RH
717{
718 if (now_seg == absolute_section)
719 {
720 expressionp->X_op = O_constant;
721 expressionp->X_add_number = abs_section_offset;
722 }
723 else
724 {
252b5132 725 expressionp->X_op = O_symbol;
4a826962 726 expressionp->X_add_symbol = &dot_symbol;
252b5132
RH
727 expressionp->X_add_number = 0;
728 }
729}
730
929b12bc
KH
731/* In: Input_line_pointer points to 1st char of operand, which may
732 be a space.
733
3b37fd66 734 Out: An expressionS.
929b12bc
KH
735 The operand may have been empty: in this case X_op == O_absent.
736 Input_line_pointer->(next non-blank) char after operand. */
252b5132
RH
737
738static segT
9497f5ac 739operand (expressionS *expressionP, enum expr_mode mode)
252b5132
RH
740{
741 char c;
929b12bc
KH
742 symbolS *symbolP; /* Points to symbol. */
743 char *name; /* Points to name of symbol. */
252b5132
RH
744 segT segment;
745
746 /* All integers are regarded as unsigned unless they are negated.
747 This is because the only thing which cares whether a number is
748 unsigned is the code in emit_expr which extends constants into
749 bignums. It should only sign extend negative numbers, so that
750 something like ``.quad 0x80000000'' is not sign extended even
751 though it appears negative if valueT is 32 bits. */
752 expressionP->X_unsigned = 1;
956a6ba3 753 expressionP->X_extrabit = 0;
252b5132 754
929b12bc 755 /* Digits, assume it is a bignum. */
252b5132 756
929b12bc 757 SKIP_WHITESPACE (); /* Leading whitespace is part of operand. */
bc4466dc 758 c = *input_line_pointer++; /* input_line_pointer -> past char in c. */
252b5132 759
b75c0c92
AM
760 if (is_end_of_line[(unsigned char) c])
761 goto eol;
762
252b5132
RH
763 switch (c)
764 {
765 case '1':
766 case '2':
767 case '3':
768 case '4':
769 case '5':
770 case '6':
771 case '7':
772 case '8':
773 case '9':
774 input_line_pointer--;
775
60bcf0fa 776 integer_constant ((NUMBERS_WITH_SUFFIX || flag_m68k_mri)
929b12bc 777 ? 0 : 10,
411863a4 778 expressionP);
252b5132
RH
779 break;
780
ed6d6fd3
FCE
781#ifdef LITERAL_PREFIXDOLLAR_HEX
782 case '$':
c68012fb
JJ
783 /* $L is the start of a local label, not a hex constant. */
784 if (* input_line_pointer == 'L')
785 goto isname;
ed6d6fd3
FCE
786 integer_constant (16, expressionP);
787 break;
788#endif
789
977e771a
FCE
790#ifdef LITERAL_PREFIXPERCENT_BIN
791 case '%':
792 integer_constant (2, expressionP);
793 break;
794#endif
795
252b5132 796 case '0':
929b12bc 797 /* Non-decimal radix. */
252b5132 798
f805106c 799 if (NUMBERS_WITH_SUFFIX || flag_m68k_mri)
252b5132
RH
800 {
801 char *s;
802
02000999 803 /* Check for a hex or float constant. */
252b5132
RH
804 for (s = input_line_pointer; hex_p (*s); s++)
805 ;
02000999 806 if (*s == 'h' || *s == 'H' || *input_line_pointer == '.')
252b5132
RH
807 {
808 --input_line_pointer;
809 integer_constant (0, expressionP);
810 break;
811 }
929b12bc 812 }
252b5132
RH
813 c = *input_line_pointer;
814 switch (c)
815 {
816 case 'o':
817 case 'O':
818 case 'q':
819 case 'Q':
820 case '8':
821 case '9':
f805106c 822 if (NUMBERS_WITH_SUFFIX || flag_m68k_mri)
252b5132
RH
823 {
824 integer_constant (0, expressionP);
825 break;
826 }
827 /* Fall through. */
828 default:
829 default_case:
830 if (c && strchr (FLT_CHARS, c))
831 {
832 input_line_pointer++;
833 floating_constant (expressionP);
3882b010 834 expressionP->X_add_number = - TOLOWER (c);
252b5132
RH
835 }
836 else
837 {
929b12bc 838 /* The string was only zero. */
252b5132
RH
839 expressionP->X_op = O_constant;
840 expressionP->X_add_number = 0;
841 }
842
843 break;
844
845 case 'x':
846 case 'X':
ab266a97 847 if (flag_m68k_mri)
252b5132
RH
848 goto default_case;
849 input_line_pointer++;
850 integer_constant (16, expressionP);
851 break;
852
853 case 'b':
c14c7a8a
AM
854 if (LOCAL_LABELS_FB && !flag_m68k_mri
855 && input_line_pointer[1] != '0'
856 && input_line_pointer[1] != '1')
252b5132 857 {
c14c7a8a
AM
858 /* Parse this as a back reference to label 0. */
859 input_line_pointer--;
860 integer_constant (10, expressionP);
861 break;
252b5132 862 }
c14c7a8a 863 /* Otherwise, parse this as a binary number. */
252b5132
RH
864 /* Fall through. */
865 case 'B':
c14c7a8a
AM
866 if (input_line_pointer[1] == '0'
867 || input_line_pointer[1] == '1')
868 {
869 input_line_pointer++;
870 integer_constant (2, expressionP);
871 break;
872 }
6dc19fc4 873 if (flag_m68k_mri || NUMBERS_WITH_SUFFIX)
c14c7a8a
AM
874 input_line_pointer++;
875 goto default_case;
252b5132
RH
876
877 case '0':
878 case '1':
879 case '2':
880 case '3':
881 case '4':
882 case '5':
883 case '6':
884 case '7':
6dc19fc4 885 integer_constant ((flag_m68k_mri || NUMBERS_WITH_SUFFIX)
929b12bc
KH
886 ? 0 : 8,
887 expressionP);
252b5132
RH
888 break;
889
890 case 'f':
891 if (LOCAL_LABELS_FB)
892 {
19c2883a
AM
893 int is_label = 1;
894
252b5132
RH
895 /* If it says "0f" and it could possibly be a floating point
896 number, make it one. Otherwise, make it a local label,
897 and try to deal with parsing the rest later. */
19c2883a
AM
898 if (!is_end_of_line[(unsigned char) input_line_pointer[1]]
899 && strchr (FLT_CHARS, 'f') != NULL)
900 {
901 char *cp = input_line_pointer + 1;
902
903 atof_generic (&cp, ".", EXP_CHARS,
904 &generic_floating_point_number);
905
906 /* Was nothing parsed, or does it look like an
907 expression? */
908 is_label = (cp == input_line_pointer + 1
909 || (cp == input_line_pointer + 2
910 && (cp[-1] == '-' || cp[-1] == '+'))
911 || *cp == 'f'
912 || *cp == 'b');
913 }
914 if (is_label)
915 {
916 input_line_pointer--;
917 integer_constant (10, expressionP);
918 break;
919 }
252b5132 920 }
19c2883a 921 /* Fall through. */
252b5132
RH
922
923 case 'd':
924 case 'D':
6dc19fc4 925 if (flag_m68k_mri || NUMBERS_WITH_SUFFIX)
252b5132
RH
926 {
927 integer_constant (0, expressionP);
928 break;
929 }
930 /* Fall through. */
931 case 'F':
932 case 'r':
933 case 'e':
934 case 'E':
935 case 'g':
936 case 'G':
937 input_line_pointer++;
938 floating_constant (expressionP);
3882b010 939 expressionP->X_add_number = - TOLOWER (c);
252b5132
RH
940 break;
941
942 case '$':
943 if (LOCAL_LABELS_DOLLAR)
944 {
945 integer_constant (10, expressionP);
946 break;
947 }
948 else
949 goto default_case;
950 }
951
952 break;
953
b585bc2c 954#ifndef NEED_INDEX_OPERATOR
252b5132 955 case '[':
fcaed75e
JB
956# ifdef md_need_index_operator
957 if (md_need_index_operator())
958 goto de_fault;
959# endif
b585bc2c 960#endif
fcddde94 961 /* Fall through. */
fcaed75e 962 case '(':
929b12bc 963 /* Didn't begin with digit & not a name. */
259af69e 964 segment = expr (0, expressionP, mode);
929b12bc 965 /* expression () will pass trailing whitespace. */
f7c88872
AM
966 if ((c == '(' && *input_line_pointer != ')')
967 || (c == '[' && *input_line_pointer != ']'))
e140100a
NC
968 {
969 if (* input_line_pointer)
970 as_bad (_("found '%c', expected: '%c'"),
971 * input_line_pointer, c == '(' ? ')' : ']');
972 else
973 as_bad (_("missing '%c'"), c == '(' ? ')' : ']');
974 }
f7c88872 975 else
929b12bc 976 input_line_pointer++;
252b5132 977 SKIP_WHITESPACE ();
929b12bc 978 /* Here with input_line_pointer -> char after "(...)". */
252b5132
RH
979 return segment;
980
abd63a32 981#ifdef TC_M68K
252b5132
RH
982 case 'E':
983 if (! flag_m68k_mri || *input_line_pointer != '\'')
984 goto de_fault;
985 as_bad (_("EBCDIC constants are not supported"));
986 /* Fall through. */
987 case 'A':
988 if (! flag_m68k_mri || *input_line_pointer != '\'')
989 goto de_fault;
990 ++input_line_pointer;
abd63a32 991#endif
fcddde94 992 /* Fall through. */
252b5132
RH
993 case '\'':
994 if (! flag_m68k_mri)
995 {
996 /* Warning: to conform to other people's assemblers NO
929b12bc 997 ESCAPEMENT is permitted for a single quote. The next
252b5132 998 character, parity errors and all, is taken as the value
929b12bc 999 of the operand. VERY KINKY. */
252b5132
RH
1000 expressionP->X_op = O_constant;
1001 expressionP->X_add_number = *input_line_pointer++;
1002 break;
1003 }
1004
1005 mri_char_constant (expressionP);
1006 break;
1007
abd63a32 1008#ifdef TC_M68K
252b5132
RH
1009 case '"':
1010 /* Double quote is the bitwise not operator in MRI mode. */
1011 if (! flag_m68k_mri)
1012 goto de_fault;
abd63a32 1013#endif
fcddde94 1014 /* Fall through. */
252b5132 1015 case '~':
929b12bc 1016 /* '~' is permitted to start a label on the Delta. */
252b5132
RH
1017 if (is_name_beginner (c))
1018 goto isname;
1a0670f3 1019 /* Fall through. */
252b5132
RH
1020 case '!':
1021 case '-':
43c3ab55 1022 case '+':
252b5132 1023 {
fcaed75e
JB
1024#ifdef md_operator
1025 unary:
1026#endif
9497f5ac 1027 operand (expressionP, mode);
252b5132
RH
1028 if (expressionP->X_op == O_constant)
1029 {
929b12bc 1030 /* input_line_pointer -> char after operand. */
252b5132
RH
1031 if (c == '-')
1032 {
65879393
AM
1033 expressionP->X_add_number
1034 = - (addressT) expressionP->X_add_number;
929b12bc
KH
1035 /* Notice: '-' may overflow: no warning is given.
1036 This is compatible with other people's
1037 assemblers. Sigh. */
252b5132 1038 expressionP->X_unsigned = 0;
956a6ba3
JB
1039 if (expressionP->X_add_number)
1040 expressionP->X_extrabit ^= 1;
252b5132
RH
1041 }
1042 else if (c == '~' || c == '"')
1043 expressionP->X_add_number = ~ expressionP->X_add_number;
43c3ab55 1044 else if (c == '!')
252b5132
RH
1045 expressionP->X_add_number = ! expressionP->X_add_number;
1046 }
02000999
AM
1047 else if (expressionP->X_op == O_big
1048 && expressionP->X_add_number <= 0
1049 && c == '-'
1050 && (generic_floating_point_number.sign == '+'
1051 || generic_floating_point_number.sign == 'P'))
1052 {
1053 /* Negative flonum (eg, -1.000e0). */
1054 if (generic_floating_point_number.sign == '+')
1055 generic_floating_point_number.sign = '-';
1056 else
1057 generic_floating_point_number.sign = 'N';
1058 }
b2221023
MM
1059 else if (expressionP->X_op == O_big
1060 && expressionP->X_add_number > 0)
1061 {
1062 int i;
1063
1064 if (c == '~' || c == '-')
1065 {
1066 for (i = 0; i < expressionP->X_add_number; ++i)
1067 generic_bignum[i] = ~generic_bignum[i];
93d90f46
AM
1068
1069 /* Extend the bignum to at least the size of .octa. */
1070 if (expressionP->X_add_number < SIZE_OF_LARGE_NUMBER)
1071 {
1072 expressionP->X_add_number = SIZE_OF_LARGE_NUMBER;
1073 for (; i < expressionP->X_add_number; ++i)
1074 generic_bignum[i] = ~(LITTLENUM_TYPE) 0;
1075 }
1076
b2221023
MM
1077 if (c == '-')
1078 for (i = 0; i < expressionP->X_add_number; ++i)
1079 {
1080 generic_bignum[i] += 1;
1081 if (generic_bignum[i])
1082 break;
1083 }
1084 }
1085 else if (c == '!')
1086 {
b2221023 1087 for (i = 0; i < expressionP->X_add_number; ++i)
93d90f46
AM
1088 if (generic_bignum[i] != 0)
1089 break;
1090 expressionP->X_add_number = i >= expressionP->X_add_number;
1091 expressionP->X_op = O_constant;
1092 expressionP->X_unsigned = 1;
956a6ba3 1093 expressionP->X_extrabit = 0;
b2221023
MM
1094 }
1095 }
252b5132
RH
1096 else if (expressionP->X_op != O_illegal
1097 && expressionP->X_op != O_absent)
1098 {
43c3ab55
JB
1099 if (c != '+')
1100 {
1101 expressionP->X_add_symbol = make_expr_symbol (expressionP);
1102 if (c == '-')
1103 expressionP->X_op = O_uminus;
1104 else if (c == '~' || c == '"')
1105 expressionP->X_op = O_bit_not;
1106 else
1107 expressionP->X_op = O_logical_not;
1108 expressionP->X_add_number = 0;
1109 }
252b5132
RH
1110 }
1111 else
1112 as_warn (_("Unary operator %c ignored because bad operand follows"),
1113 c);
1114 }
1115 break;
1116
abd63a32 1117#if defined (DOLLAR_DOT) || defined (TC_M68K)
252b5132 1118 case '$':
929b12bc 1119 /* '$' is the program counter when in MRI mode, or when
02000999 1120 DOLLAR_DOT is defined. */
252b5132
RH
1121#ifndef DOLLAR_DOT
1122 if (! flag_m68k_mri)
1123 goto de_fault;
1124#endif
4fa6945e 1125 if (DOLLAR_AMBIGU && hex_p (*input_line_pointer))
252b5132 1126 {
4fa6945e
NC
1127 /* In MRI mode and on Z80, '$' is also used as the prefix
1128 for a hexadecimal constant. */
252b5132
RH
1129 integer_constant (16, expressionP);
1130 break;
1131 }
1132
1133 if (is_part_of_name (*input_line_pointer))
1134 goto isname;
1135
1136 current_location (expressionP);
1137 break;
abd63a32 1138#endif
252b5132
RH
1139
1140 case '.':
1141 if (!is_part_of_name (*input_line_pointer))
1142 {
1143 current_location (expressionP);
1144 break;
1145 }
1146 else if ((strncasecmp (input_line_pointer, "startof.", 8) == 0
1147 && ! is_part_of_name (input_line_pointer[8]))
1148 || (strncasecmp (input_line_pointer, "sizeof.", 7) == 0
1149 && ! is_part_of_name (input_line_pointer[7])))
1150 {
1151 int start;
1152
1153 start = (input_line_pointer[1] == 't'
1154 || input_line_pointer[1] == 'T');
1155 input_line_pointer += start ? 8 : 7;
1156 SKIP_WHITESPACE ();
b0c53498
JB
1157
1158 /* Cover for the as_bad () invocations below. */
1159 expressionP->X_op = O_absent;
1160
252b5132
RH
1161 if (*input_line_pointer != '(')
1162 as_bad (_("syntax error in .startof. or .sizeof."));
1163 else
1164 {
1165 char *buf;
1166
1167 ++input_line_pointer;
1168 SKIP_WHITESPACE ();
d02603dc 1169 c = get_symbol_name (& name);
b0c53498
JB
1170 if (! *name)
1171 {
1172 as_bad (_("expected symbol name"));
1173 (void) restore_line_pointer (c);
1174 if (c != ')')
1175 ignore_rest_of_line ();
1176 else
1177 ++input_line_pointer;
1178 break;
1179 }
252b5132 1180
29a2809e
TS
1181 buf = concat (start ? ".startof." : ".sizeof.", name,
1182 (char *) NULL);
252b5132
RH
1183 symbolP = symbol_make (buf);
1184 free (buf);
1185
1186 expressionP->X_op = O_symbol;
1187 expressionP->X_add_symbol = symbolP;
1188 expressionP->X_add_number = 0;
1189
1190 *input_line_pointer = c;
d02603dc 1191 SKIP_WHITESPACE_AFTER_NAME ();
252b5132
RH
1192 if (*input_line_pointer != ')')
1193 as_bad (_("syntax error in .startof. or .sizeof."));
1194 else
1195 ++input_line_pointer;
1196 }
1197 break;
1198 }
1199 else
1200 {
1201 goto isname;
1202 }
b75c0c92 1203
252b5132 1204 case ',':
252b5132 1205 eol:
929b12bc 1206 /* Can't imagine any other kind of operand. */
252b5132
RH
1207 expressionP->X_op = O_absent;
1208 input_line_pointer--;
1209 break;
1210
abd63a32 1211#ifdef TC_M68K
252b5132
RH
1212 case '%':
1213 if (! flag_m68k_mri)
1214 goto de_fault;
1215 integer_constant (2, expressionP);
1216 break;
1217
1218 case '@':
1219 if (! flag_m68k_mri)
1220 goto de_fault;
1221 integer_constant (8, expressionP);
1222 break;
1223
1224 case ':':
1225 if (! flag_m68k_mri)
1226 goto de_fault;
1227
1228 /* In MRI mode, this is a floating point constant represented
02000999 1229 using hexadecimal digits. */
252b5132
RH
1230
1231 ++input_line_pointer;
1232 integer_constant (16, expressionP);
1233 break;
1234
1235 case '*':
1236 if (! flag_m68k_mri || is_part_of_name (*input_line_pointer))
1237 goto de_fault;
1238
1239 current_location (expressionP);
1240 break;
abd63a32 1241#endif
252b5132
RH
1242
1243 default:
fcaed75e 1244#if defined(md_need_index_operator) || defined(TC_M68K)
252b5132 1245 de_fault:
abd63a32 1246#endif
d02603dc 1247 if (is_name_beginner (c) || c == '"') /* Here if did not begin with a digit. */
252b5132 1248 {
929b12bc
KH
1249 /* Identifier begins here.
1250 This is kludged for speed, so code is repeated. */
252b5132 1251 isname:
d02603dc
NC
1252 -- input_line_pointer;
1253 c = get_symbol_name (&name);
252b5132 1254
fcaed75e
JB
1255#ifdef md_operator
1256 {
1e9cc1c2 1257 operatorT op = md_operator (name, 1, &c);
fcaed75e 1258
1e9cc1c2 1259 switch (op)
fcaed75e
JB
1260 {
1261 case O_uminus:
d02603dc 1262 restore_line_pointer (c);
fcaed75e
JB
1263 c = '-';
1264 goto unary;
1265 case O_bit_not:
d02603dc 1266 restore_line_pointer (c);
fcaed75e
JB
1267 c = '~';
1268 goto unary;
1269 case O_logical_not:
d02603dc 1270 restore_line_pointer (c);
fcaed75e
JB
1271 c = '!';
1272 goto unary;
1273 case O_illegal:
1274 as_bad (_("invalid use of operator \"%s\""), name);
1275 break;
1276 default:
1277 break;
1278 }
d02603dc 1279
1e9cc1c2 1280 if (op != O_absent && op != O_illegal)
fcaed75e 1281 {
d02603dc 1282 restore_line_pointer (c);
fcaed75e
JB
1283 expr (9, expressionP, mode);
1284 expressionP->X_add_symbol = make_expr_symbol (expressionP);
1285 expressionP->X_op_symbol = NULL;
1286 expressionP->X_add_number = 0;
1e9cc1c2 1287 expressionP->X_op = op;
fcaed75e
JB
1288 break;
1289 }
1290 }
1291#endif
1292
252b5132
RH
1293#ifdef md_parse_name
1294 /* This is a hook for the backend to parse certain names
02000999
AM
1295 specially in certain contexts. If a name always has a
1296 specific value, it can often be handled by simply
1297 entering it in the symbol table. */
9497f5ac 1298 if (md_parse_name (name, expressionP, mode, &c))
252b5132 1299 {
d02603dc 1300 restore_line_pointer (c);
252b5132
RH
1301 break;
1302 }
1303#endif
1304
252b5132
RH
1305 symbolP = symbol_find_or_make (name);
1306
1307 /* If we have an absolute symbol or a reg, then we know its
1308 value now. */
1309 segment = S_GET_SEGMENT (symbolP);
c969da64
RS
1310 if (mode != expr_defer
1311 && segment == absolute_section
1312 && !S_FORCE_RELOC (symbolP, 0))
252b5132
RH
1313 {
1314 expressionP->X_op = O_constant;
1315 expressionP->X_add_number = S_GET_VALUE (symbolP);
1316 }
9497f5ac 1317 else if (mode != expr_defer && segment == reg_section)
252b5132
RH
1318 {
1319 expressionP->X_op = O_register;
1320 expressionP->X_add_number = S_GET_VALUE (symbolP);
1321 }
1322 else
1323 {
1324 expressionP->X_op = O_symbol;
1325 expressionP->X_add_symbol = symbolP;
1326 expressionP->X_add_number = 0;
1327 }
d02603dc
NC
1328
1329 restore_line_pointer (c);
252b5132
RH
1330 }
1331 else
1332 {
1333 /* Let the target try to parse it. Success is indicated by changing
1334 the X_op field to something other than O_absent and pointing
927781e2 1335 input_line_pointer past the expression. If it can't parse the
252b5132
RH
1336 expression, X_op and input_line_pointer should be unchanged. */
1337 expressionP->X_op = O_absent;
1338 --input_line_pointer;
1339 md_operand (expressionP);
1340 if (expressionP->X_op == O_absent)
1341 {
1342 ++input_line_pointer;
0e389e77 1343 as_bad (_("bad expression"));
252b5132
RH
1344 expressionP->X_op = O_constant;
1345 expressionP->X_add_number = 0;
1346 }
1347 }
1348 break;
1349 }
1350
929b12bc
KH
1351 /* It is more 'efficient' to clean up the expressionS when they are
1352 created. Doing it here saves lines of code. */
252b5132 1353 clean_up_expression (expressionP);
14c1428b 1354 SKIP_ALL_WHITESPACE (); /* -> 1st char after operand. */
252b5132
RH
1355 know (*input_line_pointer != ' ');
1356
1357 /* The PA port needs this information. */
1358 if (expressionP->X_add_symbol)
49309057 1359 symbol_mark_used (expressionP->X_add_symbol);
252b5132 1360
3df4e177
MR
1361 if (mode != expr_defer)
1362 {
1363 expressionP->X_add_symbol
1364 = symbol_clone_if_forward_ref (expressionP->X_add_symbol);
1365 expressionP->X_op_symbol
1366 = symbol_clone_if_forward_ref (expressionP->X_op_symbol);
1367 }
9497f5ac 1368
252b5132
RH
1369 switch (expressionP->X_op)
1370 {
1371 default:
1372 return absolute_section;
1373 case O_symbol:
1374 return S_GET_SEGMENT (expressionP->X_add_symbol);
1375 case O_register:
1376 return reg_section;
1377 }
929b12bc 1378}
252b5132 1379\f
929b12bc
KH
1380/* Internal. Simplify a struct expression for use by expr (). */
1381
3b37fd66 1382/* In: address of an expressionS.
929b12bc
KH
1383 The X_op field of the expressionS may only take certain values.
1384 Elsewise we waste time special-case testing. Sigh. Ditto SEG_ABSENT.
1385
1386 Out: expressionS may have been modified:
929b12bc 1387 Unused fields zeroed to help expr (). */
252b5132
RH
1388
1389static void
dd625418 1390clean_up_expression (expressionS *expressionP)
252b5132
RH
1391{
1392 switch (expressionP->X_op)
1393 {
1394 case O_illegal:
1395 case O_absent:
1396 expressionP->X_add_number = 0;
1397 /* Fall through. */
1398 case O_big:
1399 case O_constant:
1400 case O_register:
1401 expressionP->X_add_symbol = NULL;
1402 /* Fall through. */
1403 case O_symbol:
1404 case O_uminus:
1405 case O_bit_not:
1406 expressionP->X_op_symbol = NULL;
1407 break;
252b5132
RH
1408 default:
1409 break;
1410 }
1411}
1412\f
929b12bc
KH
1413/* Expression parser. */
1414
1415/* We allow an empty expression, and just assume (absolute,0) silently.
1416 Unary operators and parenthetical expressions are treated as operands.
1417 As usual, Q==quantity==operand, O==operator, X==expression mnemonics.
1418
3b37fd66 1419 We used to do an aho/ullman shift-reduce parser, but the logic got so
929b12bc
KH
1420 warped that I flushed it and wrote a recursive-descent parser instead.
1421 Now things are stable, would anybody like to write a fast parser?
1422 Most expressions are either register (which does not even reach here)
1423 or 1 symbol. Then "symbol+constant" and "symbol-symbol" are common.
1424 So I guess it doesn't really matter how inefficient more complex expressions
1425 are parsed.
1426
1427 After expr(RANK,resultP) input_line_pointer->operator of rank <= RANK.
1428 Also, we have consumed any leading or trailing spaces (operand does that)
1429 and done all intervening operators.
1430
1431 This returns the segment of the result, which will be
1432 absolute_section or the segment of a symbol. */
252b5132
RH
1433
1434#undef __
1435#define __ O_illegal
fb7ccfc1
AM
1436#ifndef O_SINGLE_EQ
1437#define O_SINGLE_EQ O_illegal
1438#endif
252b5132 1439
b041f888
KH
1440/* Maps ASCII -> operators. */
1441static const operatorT op_encoding[256] = {
252b5132
RH
1442 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1443 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1444
1445 __, O_bit_or_not, __, __, __, O_modulus, O_bit_and, __,
1446 __, __, O_multiply, O_add, __, O_subtract, __, O_divide,
1447 __, __, __, __, __, __, __, __,
fb7ccfc1 1448 __, __, __, __, O_lt, O_SINGLE_EQ, O_gt, __,
252b5132
RH
1449 __, __, __, __, __, __, __, __,
1450 __, __, __, __, __, __, __, __,
1451 __, __, __, __, __, __, __, __,
b585bc2c
RH
1452 __, __, __,
1453#ifdef NEED_INDEX_OPERATOR
1454 O_index,
1455#else
1456 __,
1457#endif
1458 __, __, O_bit_exclusive_or, __,
252b5132
RH
1459 __, __, __, __, __, __, __, __,
1460 __, __, __, __, __, __, __, __,
1461 __, __, __, __, __, __, __, __,
1462 __, __, __, __, O_bit_inclusive_or, __, __, __,
1463
1464 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1465 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1466 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1467 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1468 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1469 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1470 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __,
1471 __, __, __, __, __, __, __, __, __, __, __, __, __, __, __, __
1472};
1473
929b12bc
KH
1474/* Rank Examples
1475 0 operand, (expression)
1476 1 ||
1477 2 &&
07a7a145 1478 3 == <> < <= >= >
929b12bc
KH
1479 4 + -
1480 5 used for * / % in MRI mode
1481 6 & ^ ! |
1482 7 * / % << >>
1483 8 unary - unary ~
1484*/
1035ad42 1485static operator_rankT op_rank[O_max] = {
252b5132
RH
1486 0, /* O_illegal */
1487 0, /* O_absent */
1488 0, /* O_constant */
1489 0, /* O_symbol */
1490 0, /* O_symbol_rva */
1491 0, /* O_register */
16887944 1492 0, /* O_big */
b585bc2c
RH
1493 9, /* O_uminus */
1494 9, /* O_bit_not */
1495 9, /* O_logical_not */
1496 8, /* O_multiply */
1497 8, /* O_divide */
1498 8, /* O_modulus */
1499 8, /* O_left_shift */
1500 8, /* O_right_shift */
1501 7, /* O_bit_inclusive_or */
1502 7, /* O_bit_or_not */
1503 7, /* O_bit_exclusive_or */
1504 7, /* O_bit_and */
1505 5, /* O_add */
1506 5, /* O_subtract */
1507 4, /* O_eq */
1508 4, /* O_ne */
1509 4, /* O_lt */
1510 4, /* O_le */
1511 4, /* O_ge */
1512 4, /* O_gt */
1513 3, /* O_logical_and */
1514 2, /* O_logical_or */
1515 1, /* O_index */
252b5132
RH
1516};
1517
1518/* Unfortunately, in MRI mode for the m68k, multiplication and
1519 division have lower precedence than the bit wise operators. This
1520 function sets the operator precedences correctly for the current
1521 mode. Also, MRI uses a different bit_not operator, and this fixes
1522 that as well. */
1523
16887944
AM
1524#define STANDARD_MUL_PRECEDENCE 8
1525#define MRI_MUL_PRECEDENCE 6
252b5132
RH
1526
1527void
dd625418 1528expr_set_precedence (void)
252b5132
RH
1529{
1530 if (flag_m68k_mri)
1531 {
1532 op_rank[O_multiply] = MRI_MUL_PRECEDENCE;
1533 op_rank[O_divide] = MRI_MUL_PRECEDENCE;
1534 op_rank[O_modulus] = MRI_MUL_PRECEDENCE;
1535 }
1536 else
1537 {
1538 op_rank[O_multiply] = STANDARD_MUL_PRECEDENCE;
1539 op_rank[O_divide] = STANDARD_MUL_PRECEDENCE;
1540 op_rank[O_modulus] = STANDARD_MUL_PRECEDENCE;
1541 }
1542}
1543
fcaed75e 1544void
1e9cc1c2 1545expr_set_rank (operatorT op, operator_rankT rank)
fcaed75e 1546{
1e9cc1c2
NC
1547 gas_assert (op >= O_md1 && op < ARRAY_SIZE (op_rank));
1548 op_rank[op] = rank;
fcaed75e
JB
1549}
1550
252b5132
RH
1551/* Initialize the expression parser. */
1552
1553void
dd625418 1554expr_begin (void)
252b5132
RH
1555{
1556 expr_set_precedence ();
1557
1558 /* Verify that X_op field is wide enough. */
1559 {
1560 expressionS e;
1561 e.X_op = O_max;
9c2799c2 1562 gas_assert (e.X_op == O_max);
252b5132
RH
1563 }
1564}
1565\f
6fad6acb
AM
1566/* Return the encoding for the operator at INPUT_LINE_POINTER, and
1567 sets NUM_CHARS to the number of characters in the operator.
1568 Does not advance INPUT_LINE_POINTER. */
252b5132
RH
1569
1570static inline operatorT
1e9cc1c2 1571operatorf (int *num_chars)
252b5132
RH
1572{
1573 int c;
1574 operatorT ret;
1575
1576 c = *input_line_pointer & 0xff;
6fad6acb 1577 *num_chars = 1;
252b5132 1578
b75c0c92
AM
1579 if (is_end_of_line[c])
1580 return O_illegal;
1581
fcaed75e
JB
1582#ifdef md_operator
1583 if (is_name_beginner (c))
1584 {
d02603dc
NC
1585 char *name;
1586 char ec = get_symbol_name (& name);
fcaed75e 1587
91d6fa6a 1588 ret = md_operator (name, 2, &ec);
fcaed75e
JB
1589 switch (ret)
1590 {
1591 case O_absent:
91d6fa6a 1592 *input_line_pointer = ec;
fcaed75e
JB
1593 input_line_pointer = name;
1594 break;
1595 case O_uminus:
1596 case O_bit_not:
1597 case O_logical_not:
1598 as_bad (_("invalid use of operator \"%s\""), name);
1599 ret = O_illegal;
1600 /* FALLTHROUGH */
1601 default:
91d6fa6a 1602 *input_line_pointer = ec;
fcaed75e
JB
1603 *num_chars = input_line_pointer - name;
1604 input_line_pointer = name;
1605 return ret;
1606 }
1607 }
1608#endif
1609
252b5132
RH
1610 switch (c)
1611 {
1612 default:
fcaed75e
JB
1613 ret = op_encoding[c];
1614#ifdef md_operator
1615 if (ret == O_illegal)
1616 {
1617 char *start = input_line_pointer;
1618
1619 ret = md_operator (NULL, 2, NULL);
1620 if (ret != O_illegal)
1621 *num_chars = input_line_pointer - start;
1622 input_line_pointer = start;
1623 }
1624#endif
1625 return ret;
252b5132 1626
3e4caed2
NS
1627 case '+':
1628 case '-':
8c9f705e 1629 return op_encoding[c];
3e4caed2 1630
252b5132
RH
1631 case '<':
1632 switch (input_line_pointer[1])
1633 {
1634 default:
1635 return op_encoding[c];
1636 case '<':
1637 ret = O_left_shift;
1638 break;
1639 case '>':
1640 ret = O_ne;
1641 break;
1642 case '=':
1643 ret = O_le;
1644 break;
1645 }
6fad6acb 1646 *num_chars = 2;
252b5132
RH
1647 return ret;
1648
1649 case '=':
1650 if (input_line_pointer[1] != '=')
1651 return op_encoding[c];
1652
6fad6acb 1653 *num_chars = 2;
252b5132
RH
1654 return O_eq;
1655
1656 case '>':
1657 switch (input_line_pointer[1])
1658 {
1659 default:
1660 return op_encoding[c];
1661 case '>':
1662 ret = O_right_shift;
1663 break;
1664 case '=':
1665 ret = O_ge;
1666 break;
1667 }
6fad6acb 1668 *num_chars = 2;
252b5132
RH
1669 return ret;
1670
1671 case '!':
723a8472 1672 switch (input_line_pointer[1])
252b5132 1673 {
723a8472
NC
1674 case '!':
1675 /* We accept !! as equivalent to ^ for MRI compatibility. */
1676 *num_chars = 2;
1677 return O_bit_exclusive_or;
1678 case '=':
1679 /* We accept != as equivalent to <>. */
1680 *num_chars = 2;
1681 return O_ne;
1682 default:
252b5132
RH
1683 if (flag_m68k_mri)
1684 return O_bit_inclusive_or;
1685 return op_encoding[c];
1686 }
252b5132
RH
1687
1688 case '|':
1689 if (input_line_pointer[1] != '|')
1690 return op_encoding[c];
1691
6fad6acb 1692 *num_chars = 2;
252b5132
RH
1693 return O_logical_or;
1694
1695 case '&':
1696 if (input_line_pointer[1] != '&')
1697 return op_encoding[c];
1698
6fad6acb 1699 *num_chars = 2;
252b5132
RH
1700 return O_logical_and;
1701 }
1702
929b12bc 1703 /* NOTREACHED */
252b5132
RH
1704}
1705
956a6ba3
JB
1706/* Implement "word-size + 1 bit" addition for
1707 {resultP->X_extrabit:resultP->X_add_number} + {rhs_highbit:amount}. This
1708 is used so that the full range of unsigned word values and the full range of
1709 signed word values can be represented in an O_constant expression, which is
1710 useful e.g. for .sleb128 directives. */
1711
4455e9ad 1712void
956a6ba3
JB
1713add_to_result (expressionS *resultP, offsetT amount, int rhs_highbit)
1714{
1715 valueT ures = resultP->X_add_number;
1716 valueT uamount = amount;
1717
1718 resultP->X_add_number += amount;
1719
1720 resultP->X_extrabit ^= rhs_highbit;
1721
1722 if (ures + uamount < ures)
1723 resultP->X_extrabit ^= 1;
1724}
1725
1726/* Similarly, for subtraction. */
1727
4455e9ad 1728void
956a6ba3
JB
1729subtract_from_result (expressionS *resultP, offsetT amount, int rhs_highbit)
1730{
1731 valueT ures = resultP->X_add_number;
1732 valueT uamount = amount;
1733
1734 resultP->X_add_number -= amount;
1735
1736 resultP->X_extrabit ^= rhs_highbit;
1737
1738 if (ures < uamount)
1739 resultP->X_extrabit ^= 1;
1740}
1741
252b5132
RH
1742/* Parse an expression. */
1743
1744segT
dd625418 1745expr (int rankarg, /* Larger # is higher rank. */
9497f5ac
NC
1746 expressionS *resultP, /* Deliver result here. */
1747 enum expr_mode mode /* Controls behavior. */)
252b5132 1748{
0561a208 1749 operator_rankT rank = (operator_rankT) rankarg;
252b5132
RH
1750 segT retval;
1751 expressionS right;
1752 operatorT op_left;
1753 operatorT op_right;
6fad6acb 1754 int op_chars;
252b5132 1755
db557034 1756 know (rankarg >= 0);
252b5132 1757
26346241
AM
1758 /* Save the value of dot for the fixup code. */
1759 if (rank == 0)
8e723a10
CLT
1760 {
1761 dot_value = frag_now_fix ();
1762 dot_frag = frag_now;
1763 }
26346241 1764
9497f5ac 1765 retval = operand (resultP, mode);
252b5132 1766
929b12bc
KH
1767 /* operand () gobbles spaces. */
1768 know (*input_line_pointer != ' ');
252b5132 1769
1e9cc1c2 1770 op_left = operatorf (&op_chars);
252b5132
RH
1771 while (op_left != O_illegal && op_rank[(int) op_left] > rank)
1772 {
1773 segT rightseg;
08ea7020 1774 offsetT frag_off;
252b5132 1775
6fad6acb 1776 input_line_pointer += op_chars; /* -> after operator. */
252b5132 1777
34a7d6c6 1778 right.X_md = 0;
9497f5ac 1779 rightseg = expr (op_rank[(int) op_left], &right, mode);
252b5132
RH
1780 if (right.X_op == O_absent)
1781 {
1782 as_warn (_("missing operand; zero assumed"));
1783 right.X_op = O_constant;
1784 right.X_add_number = 0;
1785 right.X_add_symbol = NULL;
1786 right.X_op_symbol = NULL;
1787 }
1788
1789 know (*input_line_pointer != ' ');
1790
b585bc2c
RH
1791 if (op_left == O_index)
1792 {
1793 if (*input_line_pointer != ']')
1794 as_bad ("missing right bracket");
1795 else
1796 {
1797 ++input_line_pointer;
1798 SKIP_WHITESPACE ();
1799 }
1800 }
1801
1e9cc1c2 1802 op_right = operatorf (&op_chars);
252b5132 1803
fcaed75e 1804 know (op_right == O_illegal || op_left == O_index
929b12bc 1805 || op_rank[(int) op_right] <= op_rank[(int) op_left]);
fcaed75e
JB
1806 know ((int) op_left >= (int) O_multiply);
1807#ifndef md_operator
1808 know ((int) op_left <= (int) O_index);
1809#else
1810 know ((int) op_left < (int) O_max);
1811#endif
252b5132 1812
929b12bc
KH
1813 /* input_line_pointer->after right-hand quantity. */
1814 /* left-hand quantity in resultP. */
1815 /* right-hand quantity in right. */
1816 /* operator in op_left. */
252b5132
RH
1817
1818 if (resultP->X_op == O_big)
1819 {
1820 if (resultP->X_add_number > 0)
1821 as_warn (_("left operand is a bignum; integer 0 assumed"));
1822 else
1823 as_warn (_("left operand is a float; integer 0 assumed"));
1824 resultP->X_op = O_constant;
1825 resultP->X_add_number = 0;
1826 resultP->X_add_symbol = NULL;
1827 resultP->X_op_symbol = NULL;
1828 }
1829 if (right.X_op == O_big)
1830 {
1831 if (right.X_add_number > 0)
1832 as_warn (_("right operand is a bignum; integer 0 assumed"));
1833 else
1834 as_warn (_("right operand is a float; integer 0 assumed"));
1835 right.X_op = O_constant;
1836 right.X_add_number = 0;
1837 right.X_add_symbol = NULL;
1838 right.X_op_symbol = NULL;
1839 }
1840
1841 /* Optimize common cases. */
800eeca4
JW
1842#ifdef md_optimize_expr
1843 if (md_optimize_expr (resultP, op_left, &right))
1844 {
929b12bc
KH
1845 /* Skip. */
1846 ;
800eeca4
JW
1847 }
1848 else
1849#endif
5a918ce7
JB
1850#ifndef md_register_arithmetic
1851# define md_register_arithmetic 1
1852#endif
1853 if (op_left == O_add && right.X_op == O_constant
1854 && (md_register_arithmetic || resultP->X_op != O_register))
252b5132
RH
1855 {
1856 /* X + constant. */
956a6ba3 1857 add_to_result (resultP, right.X_add_number, right.X_extrabit);
252b5132
RH
1858 }
1859 /* This case comes up in PIC code. */
1860 else if (op_left == O_subtract
1861 && right.X_op == O_symbol
1862 && resultP->X_op == O_symbol
99630778 1863 && retval == rightseg
bfff1642
NC
1864#ifdef md_allow_local_subtract
1865 && md_allow_local_subtract (resultP, & right, rightseg)
1866#endif
c969da64
RS
1867 && ((SEG_NORMAL (rightseg)
1868 && !S_FORCE_RELOC (resultP->X_add_symbol, 0)
1869 && !S_FORCE_RELOC (right.X_add_symbol, 0))
99630778
AM
1870 || right.X_add_symbol == resultP->X_add_symbol)
1871 && frag_offset_fixed_p (symbol_get_frag (resultP->X_add_symbol),
1872 symbol_get_frag (right.X_add_symbol),
1873 &frag_off))
252b5132 1874 {
956a6ba3
JB
1875 offsetT symval_diff = S_GET_VALUE (resultP->X_add_symbol)
1876 - S_GET_VALUE (right.X_add_symbol);
1877 subtract_from_result (resultP, right.X_add_number, right.X_extrabit);
1878 subtract_from_result (resultP, frag_off / OCTETS_PER_BYTE, 0);
1879 add_to_result (resultP, symval_diff, symval_diff < 0);
252b5132
RH
1880 resultP->X_op = O_constant;
1881 resultP->X_add_symbol = 0;
1882 }
5a918ce7
JB
1883 else if (op_left == O_subtract && right.X_op == O_constant
1884 && (md_register_arithmetic || resultP->X_op != O_register))
252b5132
RH
1885 {
1886 /* X - constant. */
956a6ba3 1887 subtract_from_result (resultP, right.X_add_number, right.X_extrabit);
252b5132 1888 }
5a918ce7
JB
1889 else if (op_left == O_add && resultP->X_op == O_constant
1890 && (md_register_arithmetic || right.X_op != O_register))
252b5132
RH
1891 {
1892 /* Constant + X. */
1893 resultP->X_op = right.X_op;
1894 resultP->X_add_symbol = right.X_add_symbol;
1895 resultP->X_op_symbol = right.X_op_symbol;
956a6ba3 1896 add_to_result (resultP, right.X_add_number, right.X_extrabit);
252b5132
RH
1897 retval = rightseg;
1898 }
1899 else if (resultP->X_op == O_constant && right.X_op == O_constant)
1900 {
1901 /* Constant OP constant. */
1902 offsetT v = right.X_add_number;
1903 if (v == 0 && (op_left == O_divide || op_left == O_modulus))
1904 {
1905 as_warn (_("division by zero"));
1906 v = 1;
1907 }
d85733c8
JB
1908 if ((valueT) v >= sizeof(valueT) * CHAR_BIT
1909 && (op_left == O_left_shift || op_left == O_right_shift))
1910 {
1911 as_warn_value_out_of_range (_("shift count"), v, 0,
1912 sizeof(valueT) * CHAR_BIT - 1,
1913 NULL, 0);
1914 resultP->X_add_number = v = 0;
1915 }
252b5132
RH
1916 switch (op_left)
1917 {
fcaed75e 1918 default: goto general;
252b5132
RH
1919 case O_multiply: resultP->X_add_number *= v; break;
1920 case O_divide: resultP->X_add_number /= v; break;
1921 case O_modulus: resultP->X_add_number %= v; break;
1922 case O_left_shift: resultP->X_add_number <<= v; break;
1923 case O_right_shift:
1924 /* We always use unsigned shifts, to avoid relying on
02000999 1925 characteristics of the compiler used to compile gas. */
252b5132
RH
1926 resultP->X_add_number =
1927 (offsetT) ((valueT) resultP->X_add_number >> (valueT) v);
1928 break;
1929 case O_bit_inclusive_or: resultP->X_add_number |= v; break;
1930 case O_bit_or_not: resultP->X_add_number |= ~v; break;
1931 case O_bit_exclusive_or: resultP->X_add_number ^= v; break;
1932 case O_bit_and: resultP->X_add_number &= v; break;
7b383517
BE
1933 /* Constant + constant (O_add) is handled by the
1934 previous if statement for constant + X, so is omitted
1935 here. */
956a6ba3
JB
1936 case O_subtract:
1937 subtract_from_result (resultP, v, 0);
1938 break;
252b5132
RH
1939 case O_eq:
1940 resultP->X_add_number =
958b5f01 1941 resultP->X_add_number == v ? ~ (offsetT) 0 : 0;
252b5132
RH
1942 break;
1943 case O_ne:
1944 resultP->X_add_number =
958b5f01 1945 resultP->X_add_number != v ? ~ (offsetT) 0 : 0;
252b5132
RH
1946 break;
1947 case O_lt:
1948 resultP->X_add_number =
958b5f01 1949 resultP->X_add_number < v ? ~ (offsetT) 0 : 0;
252b5132
RH
1950 break;
1951 case O_le:
1952 resultP->X_add_number =
958b5f01 1953 resultP->X_add_number <= v ? ~ (offsetT) 0 : 0;
252b5132
RH
1954 break;
1955 case O_ge:
1956 resultP->X_add_number =
958b5f01 1957 resultP->X_add_number >= v ? ~ (offsetT) 0 : 0;
252b5132
RH
1958 break;
1959 case O_gt:
1960 resultP->X_add_number =
958b5f01 1961 resultP->X_add_number > v ? ~ (offsetT) 0 : 0;
252b5132
RH
1962 break;
1963 case O_logical_and:
1964 resultP->X_add_number = resultP->X_add_number && v;
1965 break;
1966 case O_logical_or:
1967 resultP->X_add_number = resultP->X_add_number || v;
1968 break;
1969 }
1970 }
1971 else if (resultP->X_op == O_symbol
1972 && right.X_op == O_symbol
1973 && (op_left == O_add
1974 || op_left == O_subtract
1975 || (resultP->X_add_number == 0
1976 && right.X_add_number == 0)))
1977 {
1978 /* Symbol OP symbol. */
1979 resultP->X_op = op_left;
1980 resultP->X_op_symbol = right.X_add_symbol;
1981 if (op_left == O_add)
956a6ba3 1982 add_to_result (resultP, right.X_add_number, right.X_extrabit);
252b5132 1983 else if (op_left == O_subtract)
e0890092 1984 {
956a6ba3
JB
1985 subtract_from_result (resultP, right.X_add_number,
1986 right.X_extrabit);
c969da64
RS
1987 if (retval == rightseg
1988 && SEG_NORMAL (retval)
1989 && !S_FORCE_RELOC (resultP->X_add_symbol, 0)
1990 && !S_FORCE_RELOC (right.X_add_symbol, 0))
e0890092
AM
1991 {
1992 retval = absolute_section;
1993 rightseg = absolute_section;
1994 }
1995 }
252b5132
RH
1996 }
1997 else
1998 {
fcaed75e 1999 general:
252b5132
RH
2000 /* The general case. */
2001 resultP->X_add_symbol = make_expr_symbol (resultP);
2002 resultP->X_op_symbol = make_expr_symbol (&right);
2003 resultP->X_op = op_left;
2004 resultP->X_add_number = 0;
2005 resultP->X_unsigned = 1;
956a6ba3 2006 resultP->X_extrabit = 0;
252b5132
RH
2007 }
2008
e0890092
AM
2009 if (retval != rightseg)
2010 {
1e0f6894
AM
2011 if (retval == undefined_section)
2012 ;
2013 else if (rightseg == undefined_section)
2014 retval = rightseg;
2015 else if (retval == expr_section)
2016 ;
2017 else if (rightseg == expr_section)
2018 retval = rightseg;
2019 else if (retval == reg_section)
2020 ;
2021 else if (rightseg == reg_section)
2022 retval = rightseg;
2023 else if (rightseg == absolute_section)
2024 ;
2025 else if (retval == absolute_section)
2026 retval = rightseg;
e0890092 2027#ifdef DIFF_EXPR_OK
1e0f6894
AM
2028 else if (op_left == O_subtract)
2029 ;
e0890092 2030#endif
1e0f6894 2031 else
e0890092
AM
2032 as_bad (_("operation combines symbols in different segments"));
2033 }
2034
252b5132 2035 op_left = op_right;
929b12bc 2036 } /* While next operator is >= this rank. */
252b5132
RH
2037
2038 /* The PA port needs this information. */
2039 if (resultP->X_add_symbol)
49309057 2040 symbol_mark_used (resultP->X_add_symbol);
252b5132 2041
9497f5ac
NC
2042 if (rank == 0 && mode == expr_evaluate)
2043 resolve_expression (resultP);
2044
252b5132
RH
2045 return resultP->X_op == O_constant ? absolute_section : retval;
2046}
9497f5ac
NC
2047
2048/* Resolve an expression without changing any symbols/sub-expressions
2049 used. */
2050
2051int
2052resolve_expression (expressionS *expressionP)
2053{
2054 /* Help out with CSE. */
2055 valueT final_val = expressionP->X_add_number;
2056 symbolS *add_symbol = expressionP->X_add_symbol;
14610ad1 2057 symbolS *orig_add_symbol = add_symbol;
9497f5ac
NC
2058 symbolS *op_symbol = expressionP->X_op_symbol;
2059 operatorT op = expressionP->X_op;
2060 valueT left, right;
2061 segT seg_left, seg_right;
2062 fragS *frag_left, *frag_right;
08ea7020 2063 offsetT frag_off;
9497f5ac
NC
2064
2065 switch (op)
2066 {
2067 default:
2068 return 0;
2069
2070 case O_constant:
2071 case O_register:
2072 left = 0;
2073 break;
2074
2075 case O_symbol:
2076 case O_symbol_rva:
2e1e12b1 2077 if (!snapshot_symbol (&add_symbol, &left, &seg_left, &frag_left))
9497f5ac
NC
2078 return 0;
2079
2080 break;
2081
2082 case O_uminus:
2083 case O_bit_not:
2084 case O_logical_not:
2e1e12b1 2085 if (!snapshot_symbol (&add_symbol, &left, &seg_left, &frag_left))
9497f5ac
NC
2086 return 0;
2087
2088 if (seg_left != absolute_section)
2089 return 0;
2090
2091 if (op == O_logical_not)
2092 left = !left;
2093 else if (op == O_uminus)
2094 left = -left;
2095 else
2096 left = ~left;
2097 op = O_constant;
2098 break;
2099
2100 case O_multiply:
2101 case O_divide:
2102 case O_modulus:
2103 case O_left_shift:
2104 case O_right_shift:
2105 case O_bit_inclusive_or:
2106 case O_bit_or_not:
2107 case O_bit_exclusive_or:
2108 case O_bit_and:
2109 case O_add:
2110 case O_subtract:
2111 case O_eq:
2112 case O_ne:
2113 case O_lt:
2114 case O_le:
2115 case O_ge:
2116 case O_gt:
2117 case O_logical_and:
2118 case O_logical_or:
2e1e12b1
JB
2119 if (!snapshot_symbol (&add_symbol, &left, &seg_left, &frag_left)
2120 || !snapshot_symbol (&op_symbol, &right, &seg_right, &frag_right))
9497f5ac
NC
2121 return 0;
2122
2123 /* Simplify addition or subtraction of a constant by folding the
2124 constant into X_add_number. */
2125 if (op == O_add)
2126 {
2127 if (seg_right == absolute_section)
2128 {
2129 final_val += right;
2130 op = O_symbol;
2131 break;
2132 }
2133 else if (seg_left == absolute_section)
2134 {
2135 final_val += left;
2136 left = right;
2137 seg_left = seg_right;
2e1e12b1 2138 add_symbol = op_symbol;
14610ad1 2139 orig_add_symbol = expressionP->X_op_symbol;
9497f5ac
NC
2140 op = O_symbol;
2141 break;
2142 }
2143 }
2144 else if (op == O_subtract)
2145 {
2146 if (seg_right == absolute_section)
2147 {
2148 final_val -= right;
2149 op = O_symbol;
2150 break;
2151 }
2152 }
2153
2154 /* Equality and non-equality tests are permitted on anything.
2155 Subtraction, and other comparison operators are permitted if
2e1e12b1
JB
2156 both operands are in the same section.
2157 Shifts by constant zero are permitted on anything.
2158 Multiplies, bit-ors, and bit-ands with constant zero are
2159 permitted on anything.
2160 Multiplies and divides by constant one are permitted on
2161 anything.
2162 Binary operations with both operands being the same register
2163 or undefined symbol are permitted if the result doesn't depend
2164 on the input value.
2165 Otherwise, both operands must be absolute. We already handled
2166 the case of addition or subtraction of a constant above. */
99630778 2167 frag_off = 0;
9497f5ac
NC
2168 if (!(seg_left == absolute_section
2169 && seg_right == absolute_section)
2170 && !(op == O_eq || op == O_ne)
2171 && !((op == O_subtract
2172 || op == O_lt || op == O_le || op == O_ge || op == O_gt)
2173 && seg_left == seg_right
99630778
AM
2174 && (finalize_syms
2175 || frag_offset_fixed_p (frag_left, frag_right, &frag_off))
2e1e12b1
JB
2176 && (seg_left != reg_section || left == right)
2177 && (seg_left != undefined_section || add_symbol == op_symbol)))
2178 {
2179 if ((seg_left == absolute_section && left == 0)
2180 || (seg_right == absolute_section && right == 0))
2181 {
2182 if (op == O_bit_exclusive_or || op == O_bit_inclusive_or)
2183 {
14610ad1 2184 if (!(seg_right == absolute_section && right == 0))
2e1e12b1
JB
2185 {
2186 seg_left = seg_right;
2187 left = right;
2188 add_symbol = op_symbol;
14610ad1 2189 orig_add_symbol = expressionP->X_op_symbol;
2e1e12b1
JB
2190 }
2191 op = O_symbol;
2192 break;
2193 }
2194 else if (op == O_left_shift || op == O_right_shift)
2195 {
14610ad1 2196 if (!(seg_left == absolute_section && left == 0))
2e1e12b1
JB
2197 {
2198 op = O_symbol;
2199 break;
2200 }
2201 }
2202 else if (op != O_multiply
2203 && op != O_bit_or_not && op != O_bit_and)
2204 return 0;
2205 }
2206 else if (op == O_multiply
2207 && seg_left == absolute_section && left == 1)
2208 {
2209 seg_left = seg_right;
2210 left = right;
2211 add_symbol = op_symbol;
14610ad1 2212 orig_add_symbol = expressionP->X_op_symbol;
2e1e12b1
JB
2213 op = O_symbol;
2214 break;
2215 }
2216 else if ((op == O_multiply || op == O_divide)
2217 && seg_right == absolute_section && right == 1)
2218 {
2219 op = O_symbol;
2220 break;
2221 }
14610ad1
AM
2222 else if (!(left == right
2223 && ((seg_left == reg_section && seg_right == reg_section)
2224 || (seg_left == undefined_section
2225 && seg_right == undefined_section
2226 && add_symbol == op_symbol))))
2e1e12b1
JB
2227 return 0;
2228 else if (op == O_bit_and || op == O_bit_inclusive_or)
2229 {
2230 op = O_symbol;
2231 break;
2232 }
2233 else if (op != O_bit_exclusive_or && op != O_bit_or_not)
2234 return 0;
2235 }
9497f5ac 2236
99630778 2237 right += frag_off / OCTETS_PER_BYTE;
9497f5ac
NC
2238 switch (op)
2239 {
2240 case O_add: left += right; break;
2241 case O_subtract: left -= right; break;
2242 case O_multiply: left *= right; break;
2243 case O_divide:
2244 if (right == 0)
2245 return 0;
2246 left = (offsetT) left / (offsetT) right;
2247 break;
2248 case O_modulus:
2249 if (right == 0)
2250 return 0;
2251 left = (offsetT) left % (offsetT) right;
2252 break;
2253 case O_left_shift: left <<= right; break;
2254 case O_right_shift: left >>= right; break;
2255 case O_bit_inclusive_or: left |= right; break;
2256 case O_bit_or_not: left |= ~right; break;
2257 case O_bit_exclusive_or: left ^= right; break;
2258 case O_bit_and: left &= right; break;
2259 case O_eq:
2260 case O_ne:
2261 left = (left == right
2262 && seg_left == seg_right
2263 && (finalize_syms || frag_left == frag_right)
2e1e12b1 2264 && (seg_left != undefined_section
9497f5ac
NC
2265 || add_symbol == op_symbol)
2266 ? ~ (valueT) 0 : 0);
2267 if (op == O_ne)
2268 left = ~left;
2269 break;
2270 case O_lt:
2271 left = (offsetT) left < (offsetT) right ? ~ (valueT) 0 : 0;
2272 break;
2273 case O_le:
2274 left = (offsetT) left <= (offsetT) right ? ~ (valueT) 0 : 0;
2275 break;
2276 case O_ge:
2277 left = (offsetT) left >= (offsetT) right ? ~ (valueT) 0 : 0;
2278 break;
2279 case O_gt:
2280 left = (offsetT) left > (offsetT) right ? ~ (valueT) 0 : 0;
2281 break;
2282 case O_logical_and: left = left && right; break;
2283 case O_logical_or: left = left || right; break;
2284 default: abort ();
2285 }
2286
2287 op = O_constant;
2288 break;
2289 }
2290
2291 if (op == O_symbol)
2292 {
2293 if (seg_left == absolute_section)
2294 op = O_constant;
2295 else if (seg_left == reg_section && final_val == 0)
2296 op = O_register;
087d837e 2297 else if (!symbol_same_p (add_symbol, orig_add_symbol))
2e1e12b1
JB
2298 final_val += left;
2299 expressionP->X_add_symbol = add_symbol;
9497f5ac
NC
2300 }
2301 expressionP->X_op = op;
2302
2303 if (op == O_constant || op == O_register)
2304 final_val += left;
2305 expressionP->X_add_number = final_val;
2306
2307 return 1;
2308}
252b5132 2309\f
929b12bc
KH
2310/* This lives here because it belongs equally in expr.c & read.c.
2311 expr.c is just a branch office read.c anyway, and putting it
2312 here lessens the crowd at read.c.
2313
d02603dc
NC
2314 Assume input_line_pointer is at start of symbol name, or the
2315 start of a double quote enclosed symbol name.
929b12bc 2316 Advance input_line_pointer past symbol name.
d02603dc
NC
2317 Turn that character into a '\0', returning its former value,
2318 which may be the closing double quote.
929b12bc 2319 This allows a string compare (RMS wants symbol names to be strings)
d02603dc 2320 of the symbol name.
929b12bc
KH
2321 There will always be a char following symbol name, because all good
2322 lines end in end-of-line. */
2323
252b5132 2324char
d02603dc 2325get_symbol_name (char ** ilp_return)
252b5132
RH
2326{
2327 char c;
2328
d02603dc 2329 * ilp_return = input_line_pointer;
2469b3c5 2330 /* We accept FAKE_LABEL_CHAR in a name in case this is being called with a
252b5132 2331 constructed string. */
2469b3c5
JW
2332 if (is_name_beginner (c = *input_line_pointer++)
2333 || (input_from_string && c == FAKE_LABEL_CHAR))
58b5739a
RH
2334 {
2335 while (is_part_of_name (c = *input_line_pointer++)
2469b3c5 2336 || (input_from_string && c == FAKE_LABEL_CHAR))
58b5739a
RH
2337 ;
2338 if (is_name_ender (c))
2339 c = *input_line_pointer++;
2340 }
d02603dc
NC
2341 else if (c == '"')
2342 {
2343 bfd_boolean backslash_seen;
2344
2345 * ilp_return = input_line_pointer;
2346 do
2347 {
2348 backslash_seen = c == '\\';
2349 c = * input_line_pointer ++;
2350 }
2351 while (c != 0 && (c != '"' || backslash_seen));
2352
2353 if (c == 0)
2354 as_warn (_("missing closing '\"'"));
2355 }
252b5132 2356 *--input_line_pointer = 0;
d02603dc
NC
2357 return c;
2358}
2359
2360/* Replace the NUL character pointed to by input_line_pointer
2361 with C. If C is \" then advance past it. Return the character
2362 now pointed to by input_line_pointer. */
2363
2364char
2365restore_line_pointer (char c)
2366{
2367 * input_line_pointer = c;
2368 if (c == '"')
2369 c = * ++ input_line_pointer;
2370 return c;
252b5132
RH
2371}
2372
252b5132 2373unsigned int
dd625418 2374get_single_number (void)
252b5132
RH
2375{
2376 expressionS exp;
9497f5ac 2377 operand (&exp, expr_normal);
252b5132 2378 return exp.X_add_number;
252b5132 2379}
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