* symbols.c (S_FORCE_RELOC): Add "strict" param.
[deliverable/binutils-gdb.git] / gas / config / tc-ppc.c
1 /* tc-ppc.c -- Assemble for the PowerPC or POWER (RS/6000)
2 Copyright 1994, 1995, 1996, 1997, 1998, 1999, 2000, 2001, 2002, 2003
3 Free Software Foundation, Inc.
4 Written by Ian Lance Taylor, Cygnus Support.
5
6 This file is part of GAS, the GNU Assembler.
7
8 GAS is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2, or (at your option)
11 any later version.
12
13 GAS is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with GAS; see the file COPYING. If not, write to the Free
20 Software Foundation, 59 Temple Place - Suite 330, Boston, MA
21 02111-1307, USA. */
22
23 #include <stdio.h>
24 #include "as.h"
25 #include "safe-ctype.h"
26 #include "subsegs.h"
27
28 #include "opcode/ppc.h"
29
30 #ifdef OBJ_ELF
31 #include "elf/ppc.h"
32 #include "dwarf2dbg.h"
33 #endif
34
35 #ifdef TE_PE
36 #include "coff/pe.h"
37 #endif
38
39 /* This is the assembler for the PowerPC or POWER (RS/6000) chips. */
40
41 /* Tell the main code what the endianness is. */
42 extern int target_big_endian;
43
44 /* Whether or not, we've set target_big_endian. */
45 static int set_target_endian = 0;
46
47 /* Whether to use user friendly register names. */
48 #ifndef TARGET_REG_NAMES_P
49 #ifdef TE_PE
50 #define TARGET_REG_NAMES_P TRUE
51 #else
52 #define TARGET_REG_NAMES_P FALSE
53 #endif
54 #endif
55
56 /* Macros for calculating LO, HI, HA, HIGHER, HIGHERA, HIGHEST,
57 HIGHESTA. */
58
59 /* #lo(value) denotes the least significant 16 bits of the indicated. */
60 #define PPC_LO(v) ((v) & 0xffff)
61
62 /* #hi(value) denotes bits 16 through 31 of the indicated value. */
63 #define PPC_HI(v) (((v) >> 16) & 0xffff)
64
65 /* #ha(value) denotes the high adjusted value: bits 16 through 31 of
66 the indicated value, compensating for #lo() being treated as a
67 signed number. */
68 #define PPC_HA(v) PPC_HI ((v) + 0x8000)
69
70 /* #higher(value) denotes bits 32 through 47 of the indicated value. */
71 #define PPC_HIGHER(v) (((v) >> 16 >> 16) & 0xffff)
72
73 /* #highera(value) denotes bits 32 through 47 of the indicated value,
74 compensating for #lo() being treated as a signed number. */
75 #define PPC_HIGHERA(v) PPC_HIGHER ((v) + 0x8000)
76
77 /* #highest(value) denotes bits 48 through 63 of the indicated value. */
78 #define PPC_HIGHEST(v) (((v) >> 24 >> 24) & 0xffff)
79
80 /* #highesta(value) denotes bits 48 through 63 of the indicated value,
81 compensating for #lo being treated as a signed number. */
82 #define PPC_HIGHESTA(v) PPC_HIGHEST ((v) + 0x8000)
83
84 #define SEX16(val) ((((val) & 0xffff) ^ 0x8000) - 0x8000)
85
86 static bfd_boolean reg_names_p = TARGET_REG_NAMES_P;
87
88 static bfd_boolean register_name PARAMS ((expressionS *));
89 static void ppc_set_cpu PARAMS ((void));
90 static unsigned long ppc_insert_operand
91 PARAMS ((unsigned long insn, const struct powerpc_operand *operand,
92 offsetT val, char *file, unsigned int line));
93 static void ppc_macro PARAMS ((char *str, const struct powerpc_macro *macro));
94 static void ppc_byte PARAMS ((int));
95
96 #if defined (OBJ_XCOFF) || defined (OBJ_ELF)
97 static int ppc_is_toc_sym PARAMS ((symbolS *sym));
98 static void ppc_tc PARAMS ((int));
99 static void ppc_machine PARAMS ((int));
100 #endif
101
102 #ifdef OBJ_XCOFF
103 static void ppc_comm PARAMS ((int));
104 static void ppc_bb PARAMS ((int));
105 static void ppc_bc PARAMS ((int));
106 static void ppc_bf PARAMS ((int));
107 static void ppc_biei PARAMS ((int));
108 static void ppc_bs PARAMS ((int));
109 static void ppc_eb PARAMS ((int));
110 static void ppc_ec PARAMS ((int));
111 static void ppc_ef PARAMS ((int));
112 static void ppc_es PARAMS ((int));
113 static void ppc_csect PARAMS ((int));
114 static void ppc_change_csect PARAMS ((symbolS *));
115 static void ppc_function PARAMS ((int));
116 static void ppc_extern PARAMS ((int));
117 static void ppc_lglobl PARAMS ((int));
118 static void ppc_section PARAMS ((int));
119 static void ppc_named_section PARAMS ((int));
120 static void ppc_stabx PARAMS ((int));
121 static void ppc_rename PARAMS ((int));
122 static void ppc_toc PARAMS ((int));
123 static void ppc_xcoff_cons PARAMS ((int));
124 static void ppc_vbyte PARAMS ((int));
125 #endif
126
127 #ifdef OBJ_ELF
128 static bfd_reloc_code_real_type ppc_elf_suffix PARAMS ((char **, expressionS *));
129 static void ppc_elf_cons PARAMS ((int));
130 static void ppc_elf_rdata PARAMS ((int));
131 static void ppc_elf_lcomm PARAMS ((int));
132 static void ppc_elf_validate_fix PARAMS ((fixS *, segT));
133 static void ppc_apuinfo_section_add PARAMS ((unsigned int apu, unsigned int version));
134 #endif
135
136 #ifdef TE_PE
137 static void ppc_set_current_section PARAMS ((segT));
138 static void ppc_previous PARAMS ((int));
139 static void ppc_pdata PARAMS ((int));
140 static void ppc_ydata PARAMS ((int));
141 static void ppc_reldata PARAMS ((int));
142 static void ppc_rdata PARAMS ((int));
143 static void ppc_ualong PARAMS ((int));
144 static void ppc_znop PARAMS ((int));
145 static void ppc_pe_comm PARAMS ((int));
146 static void ppc_pe_section PARAMS ((int));
147 static void ppc_pe_function PARAMS ((int));
148 static void ppc_pe_tocd PARAMS ((int));
149 #endif
150 \f
151 /* Generic assembler global variables which must be defined by all
152 targets. */
153
154 #ifdef OBJ_ELF
155 /* This string holds the chars that always start a comment. If the
156 pre-processor is disabled, these aren't very useful. The macro
157 tc_comment_chars points to this. We use this, rather than the
158 usual comment_chars, so that we can switch for Solaris conventions. */
159 static const char ppc_solaris_comment_chars[] = "#!";
160 static const char ppc_eabi_comment_chars[] = "#";
161
162 #ifdef TARGET_SOLARIS_COMMENT
163 const char *ppc_comment_chars = ppc_solaris_comment_chars;
164 #else
165 const char *ppc_comment_chars = ppc_eabi_comment_chars;
166 #endif
167 #else
168 const char comment_chars[] = "#";
169 #endif
170
171 /* Characters which start a comment at the beginning of a line. */
172 const char line_comment_chars[] = "#";
173
174 /* Characters which may be used to separate multiple commands on a
175 single line. */
176 const char line_separator_chars[] = ";";
177
178 /* Characters which are used to indicate an exponent in a floating
179 point number. */
180 const char EXP_CHARS[] = "eE";
181
182 /* Characters which mean that a number is a floating point constant,
183 as in 0d1.0. */
184 const char FLT_CHARS[] = "dD";
185 \f
186 /* The target specific pseudo-ops which we support. */
187
188 const pseudo_typeS md_pseudo_table[] =
189 {
190 /* Pseudo-ops which must be overridden. */
191 { "byte", ppc_byte, 0 },
192
193 #ifdef OBJ_XCOFF
194 /* Pseudo-ops specific to the RS/6000 XCOFF format. Some of these
195 legitimately belong in the obj-*.c file. However, XCOFF is based
196 on COFF, and is only implemented for the RS/6000. We just use
197 obj-coff.c, and add what we need here. */
198 { "comm", ppc_comm, 0 },
199 { "lcomm", ppc_comm, 1 },
200 { "bb", ppc_bb, 0 },
201 { "bc", ppc_bc, 0 },
202 { "bf", ppc_bf, 0 },
203 { "bi", ppc_biei, 0 },
204 { "bs", ppc_bs, 0 },
205 { "csect", ppc_csect, 0 },
206 { "data", ppc_section, 'd' },
207 { "eb", ppc_eb, 0 },
208 { "ec", ppc_ec, 0 },
209 { "ef", ppc_ef, 0 },
210 { "ei", ppc_biei, 1 },
211 { "es", ppc_es, 0 },
212 { "extern", ppc_extern, 0 },
213 { "function", ppc_function, 0 },
214 { "lglobl", ppc_lglobl, 0 },
215 { "rename", ppc_rename, 0 },
216 { "section", ppc_named_section, 0 },
217 { "stabx", ppc_stabx, 0 },
218 { "text", ppc_section, 't' },
219 { "toc", ppc_toc, 0 },
220 { "long", ppc_xcoff_cons, 2 },
221 { "llong", ppc_xcoff_cons, 3 },
222 { "word", ppc_xcoff_cons, 1 },
223 { "short", ppc_xcoff_cons, 1 },
224 { "vbyte", ppc_vbyte, 0 },
225 #endif
226
227 #ifdef OBJ_ELF
228 { "llong", ppc_elf_cons, 8 },
229 { "quad", ppc_elf_cons, 8 },
230 { "long", ppc_elf_cons, 4 },
231 { "word", ppc_elf_cons, 2 },
232 { "short", ppc_elf_cons, 2 },
233 { "rdata", ppc_elf_rdata, 0 },
234 { "rodata", ppc_elf_rdata, 0 },
235 { "lcomm", ppc_elf_lcomm, 0 },
236 { "file", (void (*) PARAMS ((int))) dwarf2_directive_file, 0 },
237 { "loc", dwarf2_directive_loc, 0 },
238 #endif
239
240 #ifdef TE_PE
241 /* Pseudo-ops specific to the Windows NT PowerPC PE (coff) format. */
242 { "previous", ppc_previous, 0 },
243 { "pdata", ppc_pdata, 0 },
244 { "ydata", ppc_ydata, 0 },
245 { "reldata", ppc_reldata, 0 },
246 { "rdata", ppc_rdata, 0 },
247 { "ualong", ppc_ualong, 0 },
248 { "znop", ppc_znop, 0 },
249 { "comm", ppc_pe_comm, 0 },
250 { "lcomm", ppc_pe_comm, 1 },
251 { "section", ppc_pe_section, 0 },
252 { "function", ppc_pe_function,0 },
253 { "tocd", ppc_pe_tocd, 0 },
254 #endif
255
256 #if defined (OBJ_XCOFF) || defined (OBJ_ELF)
257 { "tc", ppc_tc, 0 },
258 { "machine", ppc_machine, 0 },
259 #endif
260
261 { NULL, NULL, 0 }
262 };
263
264 \f
265 /* Predefined register names if -mregnames (or default for Windows NT).
266 In general, there are lots of them, in an attempt to be compatible
267 with a number of other Windows NT assemblers. */
268
269 /* Structure to hold information about predefined registers. */
270 struct pd_reg
271 {
272 char *name;
273 int value;
274 };
275
276 /* List of registers that are pre-defined:
277
278 Each general register has predefined names of the form:
279 1. r<reg_num> which has the value <reg_num>.
280 2. r.<reg_num> which has the value <reg_num>.
281
282 Each floating point register has predefined names of the form:
283 1. f<reg_num> which has the value <reg_num>.
284 2. f.<reg_num> which has the value <reg_num>.
285
286 Each vector unit register has predefined names of the form:
287 1. v<reg_num> which has the value <reg_num>.
288 2. v.<reg_num> which has the value <reg_num>.
289
290 Each condition register has predefined names of the form:
291 1. cr<reg_num> which has the value <reg_num>.
292 2. cr.<reg_num> which has the value <reg_num>.
293
294 There are individual registers as well:
295 sp or r.sp has the value 1
296 rtoc or r.toc has the value 2
297 fpscr has the value 0
298 xer has the value 1
299 lr has the value 8
300 ctr has the value 9
301 pmr has the value 0
302 dar has the value 19
303 dsisr has the value 18
304 dec has the value 22
305 sdr1 has the value 25
306 srr0 has the value 26
307 srr1 has the value 27
308
309 The table is sorted. Suitable for searching by a binary search. */
310
311 static const struct pd_reg pre_defined_registers[] =
312 {
313 { "cr.0", 0 }, /* Condition Registers */
314 { "cr.1", 1 },
315 { "cr.2", 2 },
316 { "cr.3", 3 },
317 { "cr.4", 4 },
318 { "cr.5", 5 },
319 { "cr.6", 6 },
320 { "cr.7", 7 },
321
322 { "cr0", 0 },
323 { "cr1", 1 },
324 { "cr2", 2 },
325 { "cr3", 3 },
326 { "cr4", 4 },
327 { "cr5", 5 },
328 { "cr6", 6 },
329 { "cr7", 7 },
330
331 { "ctr", 9 },
332
333 { "dar", 19 }, /* Data Access Register */
334 { "dec", 22 }, /* Decrementer */
335 { "dsisr", 18 }, /* Data Storage Interrupt Status Register */
336
337 { "f.0", 0 }, /* Floating point registers */
338 { "f.1", 1 },
339 { "f.10", 10 },
340 { "f.11", 11 },
341 { "f.12", 12 },
342 { "f.13", 13 },
343 { "f.14", 14 },
344 { "f.15", 15 },
345 { "f.16", 16 },
346 { "f.17", 17 },
347 { "f.18", 18 },
348 { "f.19", 19 },
349 { "f.2", 2 },
350 { "f.20", 20 },
351 { "f.21", 21 },
352 { "f.22", 22 },
353 { "f.23", 23 },
354 { "f.24", 24 },
355 { "f.25", 25 },
356 { "f.26", 26 },
357 { "f.27", 27 },
358 { "f.28", 28 },
359 { "f.29", 29 },
360 { "f.3", 3 },
361 { "f.30", 30 },
362 { "f.31", 31 },
363 { "f.4", 4 },
364 { "f.5", 5 },
365 { "f.6", 6 },
366 { "f.7", 7 },
367 { "f.8", 8 },
368 { "f.9", 9 },
369
370 { "f0", 0 },
371 { "f1", 1 },
372 { "f10", 10 },
373 { "f11", 11 },
374 { "f12", 12 },
375 { "f13", 13 },
376 { "f14", 14 },
377 { "f15", 15 },
378 { "f16", 16 },
379 { "f17", 17 },
380 { "f18", 18 },
381 { "f19", 19 },
382 { "f2", 2 },
383 { "f20", 20 },
384 { "f21", 21 },
385 { "f22", 22 },
386 { "f23", 23 },
387 { "f24", 24 },
388 { "f25", 25 },
389 { "f26", 26 },
390 { "f27", 27 },
391 { "f28", 28 },
392 { "f29", 29 },
393 { "f3", 3 },
394 { "f30", 30 },
395 { "f31", 31 },
396 { "f4", 4 },
397 { "f5", 5 },
398 { "f6", 6 },
399 { "f7", 7 },
400 { "f8", 8 },
401 { "f9", 9 },
402
403 { "fpscr", 0 },
404
405 { "lr", 8 }, /* Link Register */
406
407 { "pmr", 0 },
408
409 { "r.0", 0 }, /* General Purpose Registers */
410 { "r.1", 1 },
411 { "r.10", 10 },
412 { "r.11", 11 },
413 { "r.12", 12 },
414 { "r.13", 13 },
415 { "r.14", 14 },
416 { "r.15", 15 },
417 { "r.16", 16 },
418 { "r.17", 17 },
419 { "r.18", 18 },
420 { "r.19", 19 },
421 { "r.2", 2 },
422 { "r.20", 20 },
423 { "r.21", 21 },
424 { "r.22", 22 },
425 { "r.23", 23 },
426 { "r.24", 24 },
427 { "r.25", 25 },
428 { "r.26", 26 },
429 { "r.27", 27 },
430 { "r.28", 28 },
431 { "r.29", 29 },
432 { "r.3", 3 },
433 { "r.30", 30 },
434 { "r.31", 31 },
435 { "r.4", 4 },
436 { "r.5", 5 },
437 { "r.6", 6 },
438 { "r.7", 7 },
439 { "r.8", 8 },
440 { "r.9", 9 },
441
442 { "r.sp", 1 }, /* Stack Pointer */
443
444 { "r.toc", 2 }, /* Pointer to the table of contents */
445
446 { "r0", 0 }, /* More general purpose registers */
447 { "r1", 1 },
448 { "r10", 10 },
449 { "r11", 11 },
450 { "r12", 12 },
451 { "r13", 13 },
452 { "r14", 14 },
453 { "r15", 15 },
454 { "r16", 16 },
455 { "r17", 17 },
456 { "r18", 18 },
457 { "r19", 19 },
458 { "r2", 2 },
459 { "r20", 20 },
460 { "r21", 21 },
461 { "r22", 22 },
462 { "r23", 23 },
463 { "r24", 24 },
464 { "r25", 25 },
465 { "r26", 26 },
466 { "r27", 27 },
467 { "r28", 28 },
468 { "r29", 29 },
469 { "r3", 3 },
470 { "r30", 30 },
471 { "r31", 31 },
472 { "r4", 4 },
473 { "r5", 5 },
474 { "r6", 6 },
475 { "r7", 7 },
476 { "r8", 8 },
477 { "r9", 9 },
478
479 { "rtoc", 2 }, /* Table of contents */
480
481 { "sdr1", 25 }, /* Storage Description Register 1 */
482
483 { "sp", 1 },
484
485 { "srr0", 26 }, /* Machine Status Save/Restore Register 0 */
486 { "srr1", 27 }, /* Machine Status Save/Restore Register 1 */
487
488 { "v.0", 0 }, /* Vector registers */
489 { "v.1", 1 },
490 { "v.10", 10 },
491 { "v.11", 11 },
492 { "v.12", 12 },
493 { "v.13", 13 },
494 { "v.14", 14 },
495 { "v.15", 15 },
496 { "v.16", 16 },
497 { "v.17", 17 },
498 { "v.18", 18 },
499 { "v.19", 19 },
500 { "v.2", 2 },
501 { "v.20", 20 },
502 { "v.21", 21 },
503 { "v.22", 22 },
504 { "v.23", 23 },
505 { "v.24", 24 },
506 { "v.25", 25 },
507 { "v.26", 26 },
508 { "v.27", 27 },
509 { "v.28", 28 },
510 { "v.29", 29 },
511 { "v.3", 3 },
512 { "v.30", 30 },
513 { "v.31", 31 },
514 { "v.4", 4 },
515 { "v.5", 5 },
516 { "v.6", 6 },
517 { "v.7", 7 },
518 { "v.8", 8 },
519 { "v.9", 9 },
520
521 { "v0", 0 },
522 { "v1", 1 },
523 { "v10", 10 },
524 { "v11", 11 },
525 { "v12", 12 },
526 { "v13", 13 },
527 { "v14", 14 },
528 { "v15", 15 },
529 { "v16", 16 },
530 { "v17", 17 },
531 { "v18", 18 },
532 { "v19", 19 },
533 { "v2", 2 },
534 { "v20", 20 },
535 { "v21", 21 },
536 { "v22", 22 },
537 { "v23", 23 },
538 { "v24", 24 },
539 { "v25", 25 },
540 { "v26", 26 },
541 { "v27", 27 },
542 { "v28", 28 },
543 { "v29", 29 },
544 { "v3", 3 },
545 { "v30", 30 },
546 { "v31", 31 },
547 { "v4", 4 },
548 { "v5", 5 },
549 { "v6", 6 },
550 { "v7", 7 },
551 { "v8", 8 },
552 { "v9", 9 },
553
554 { "xer", 1 },
555
556 };
557
558 #define REG_NAME_CNT (sizeof (pre_defined_registers) / sizeof (struct pd_reg))
559
560 /* Given NAME, find the register number associated with that name, return
561 the integer value associated with the given name or -1 on failure. */
562
563 static int reg_name_search
564 PARAMS ((const struct pd_reg *, int, const char * name));
565
566 static int
567 reg_name_search (regs, regcount, name)
568 const struct pd_reg *regs;
569 int regcount;
570 const char *name;
571 {
572 int middle, low, high;
573 int cmp;
574
575 low = 0;
576 high = regcount - 1;
577
578 do
579 {
580 middle = (low + high) / 2;
581 cmp = strcasecmp (name, regs[middle].name);
582 if (cmp < 0)
583 high = middle - 1;
584 else if (cmp > 0)
585 low = middle + 1;
586 else
587 return regs[middle].value;
588 }
589 while (low <= high);
590
591 return -1;
592 }
593
594 /*
595 * Summary of register_name.
596 *
597 * in: Input_line_pointer points to 1st char of operand.
598 *
599 * out: A expressionS.
600 * The operand may have been a register: in this case, X_op == O_register,
601 * X_add_number is set to the register number, and truth is returned.
602 * Input_line_pointer->(next non-blank) char after operand, or is in its
603 * original state.
604 */
605
606 static bfd_boolean
607 register_name (expressionP)
608 expressionS *expressionP;
609 {
610 int reg_number;
611 char *name;
612 char *start;
613 char c;
614
615 /* Find the spelling of the operand. */
616 start = name = input_line_pointer;
617 if (name[0] == '%' && ISALPHA (name[1]))
618 name = ++input_line_pointer;
619
620 else if (!reg_names_p || !ISALPHA (name[0]))
621 return FALSE;
622
623 c = get_symbol_end ();
624 reg_number = reg_name_search (pre_defined_registers, REG_NAME_CNT, name);
625
626 /* Put back the delimiting char. */
627 *input_line_pointer = c;
628
629 /* Look to see if it's in the register table. */
630 if (reg_number >= 0)
631 {
632 expressionP->X_op = O_register;
633 expressionP->X_add_number = reg_number;
634
635 /* Make the rest nice. */
636 expressionP->X_add_symbol = NULL;
637 expressionP->X_op_symbol = NULL;
638 return TRUE;
639 }
640
641 /* Reset the line as if we had not done anything. */
642 input_line_pointer = start;
643 return FALSE;
644 }
645 \f
646 /* This function is called for each symbol seen in an expression. It
647 handles the special parsing which PowerPC assemblers are supposed
648 to use for condition codes. */
649
650 /* Whether to do the special parsing. */
651 static bfd_boolean cr_operand;
652
653 /* Names to recognize in a condition code. This table is sorted. */
654 static const struct pd_reg cr_names[] =
655 {
656 { "cr0", 0 },
657 { "cr1", 1 },
658 { "cr2", 2 },
659 { "cr3", 3 },
660 { "cr4", 4 },
661 { "cr5", 5 },
662 { "cr6", 6 },
663 { "cr7", 7 },
664 { "eq", 2 },
665 { "gt", 1 },
666 { "lt", 0 },
667 { "so", 3 },
668 { "un", 3 }
669 };
670
671 /* Parsing function. This returns non-zero if it recognized an
672 expression. */
673
674 int
675 ppc_parse_name (name, expr)
676 const char *name;
677 expressionS *expr;
678 {
679 int val;
680
681 if (! cr_operand)
682 return 0;
683
684 val = reg_name_search (cr_names, sizeof cr_names / sizeof cr_names[0],
685 name);
686 if (val < 0)
687 return 0;
688
689 expr->X_op = O_constant;
690 expr->X_add_number = val;
691
692 return 1;
693 }
694 \f
695 /* Local variables. */
696
697 /* The type of processor we are assembling for. This is one or more
698 of the PPC_OPCODE flags defined in opcode/ppc.h. */
699 static unsigned long ppc_cpu = 0;
700
701 /* Whether to target xcoff64/elf64. */
702 static unsigned int ppc_obj64 = BFD_DEFAULT_TARGET_SIZE == 64;
703
704 /* Opcode hash table. */
705 static struct hash_control *ppc_hash;
706
707 /* Macro hash table. */
708 static struct hash_control *ppc_macro_hash;
709
710 #ifdef OBJ_ELF
711 /* What type of shared library support to use. */
712 static enum { SHLIB_NONE, SHLIB_PIC, SHLIB_MRELOCATABLE } shlib = SHLIB_NONE;
713
714 /* Flags to set in the elf header. */
715 static flagword ppc_flags = 0;
716
717 /* Whether this is Solaris or not. */
718 #ifdef TARGET_SOLARIS_COMMENT
719 #define SOLARIS_P TRUE
720 #else
721 #define SOLARIS_P FALSE
722 #endif
723
724 static bfd_boolean msolaris = SOLARIS_P;
725 #endif
726
727 #ifdef OBJ_XCOFF
728
729 /* The RS/6000 assembler uses the .csect pseudo-op to generate code
730 using a bunch of different sections. These assembler sections,
731 however, are all encompassed within the .text or .data sections of
732 the final output file. We handle this by using different
733 subsegments within these main segments. */
734
735 /* Next subsegment to allocate within the .text segment. */
736 static subsegT ppc_text_subsegment = 2;
737
738 /* Linked list of csects in the text section. */
739 static symbolS *ppc_text_csects;
740
741 /* Next subsegment to allocate within the .data segment. */
742 static subsegT ppc_data_subsegment = 2;
743
744 /* Linked list of csects in the data section. */
745 static symbolS *ppc_data_csects;
746
747 /* The current csect. */
748 static symbolS *ppc_current_csect;
749
750 /* The RS/6000 assembler uses a TOC which holds addresses of functions
751 and variables. Symbols are put in the TOC with the .tc pseudo-op.
752 A special relocation is used when accessing TOC entries. We handle
753 the TOC as a subsegment within the .data segment. We set it up if
754 we see a .toc pseudo-op, and save the csect symbol here. */
755 static symbolS *ppc_toc_csect;
756
757 /* The first frag in the TOC subsegment. */
758 static fragS *ppc_toc_frag;
759
760 /* The first frag in the first subsegment after the TOC in the .data
761 segment. NULL if there are no subsegments after the TOC. */
762 static fragS *ppc_after_toc_frag;
763
764 /* The current static block. */
765 static symbolS *ppc_current_block;
766
767 /* The COFF debugging section; set by md_begin. This is not the
768 .debug section, but is instead the secret BFD section which will
769 cause BFD to set the section number of a symbol to N_DEBUG. */
770 static asection *ppc_coff_debug_section;
771
772 #endif /* OBJ_XCOFF */
773
774 #ifdef TE_PE
775
776 /* Various sections that we need for PE coff support. */
777 static segT ydata_section;
778 static segT pdata_section;
779 static segT reldata_section;
780 static segT rdata_section;
781 static segT tocdata_section;
782
783 /* The current section and the previous section. See ppc_previous. */
784 static segT ppc_previous_section;
785 static segT ppc_current_section;
786
787 #endif /* TE_PE */
788
789 #ifdef OBJ_ELF
790 symbolS *GOT_symbol; /* Pre-defined "_GLOBAL_OFFSET_TABLE" */
791 #define PPC_APUINFO_ISEL 0x40
792 #define PPC_APUINFO_PMR 0x41
793 #define PPC_APUINFO_RFMCI 0x42
794 #define PPC_APUINFO_CACHELCK 0x43
795 #define PPC_APUINFO_SPE 0x100
796 #define PPC_APUINFO_EFS 0x101
797 #define PPC_APUINFO_BRLOCK 0x102
798
799 /*
800 * We keep a list of APUinfo
801 */
802 unsigned long *ppc_apuinfo_list;
803 unsigned int ppc_apuinfo_num;
804 unsigned int ppc_apuinfo_num_alloc;
805 #endif /* OBJ_ELF */
806 \f
807 #ifdef OBJ_ELF
808 const char *const md_shortopts = "b:l:usm:K:VQ:";
809 #else
810 const char *const md_shortopts = "um:";
811 #endif
812 const struct option md_longopts[] = {
813 {NULL, no_argument, NULL, 0}
814 };
815 const size_t md_longopts_size = sizeof (md_longopts);
816
817 int
818 md_parse_option (c, arg)
819 int c;
820 char *arg;
821 {
822 switch (c)
823 {
824 case 'u':
825 /* -u means that any undefined symbols should be treated as
826 external, which is the default for gas anyhow. */
827 break;
828
829 #ifdef OBJ_ELF
830 case 'l':
831 /* Solaris as takes -le (presumably for little endian). For completeness
832 sake, recognize -be also. */
833 if (strcmp (arg, "e") == 0)
834 {
835 target_big_endian = 0;
836 set_target_endian = 1;
837 }
838 else
839 return 0;
840
841 break;
842
843 case 'b':
844 if (strcmp (arg, "e") == 0)
845 {
846 target_big_endian = 1;
847 set_target_endian = 1;
848 }
849 else
850 return 0;
851
852 break;
853
854 case 'K':
855 /* Recognize -K PIC. */
856 if (strcmp (arg, "PIC") == 0 || strcmp (arg, "pic") == 0)
857 {
858 shlib = SHLIB_PIC;
859 ppc_flags |= EF_PPC_RELOCATABLE_LIB;
860 }
861 else
862 return 0;
863
864 break;
865 #endif
866
867 /* a64 and a32 determine whether to use XCOFF64 or XCOFF32. */
868 case 'a':
869 if (strcmp (arg, "64") == 0)
870 {
871 #ifdef BFD64
872 ppc_obj64 = 1;
873 #else
874 as_fatal (_("%s unsupported"), "-a64");
875 #endif
876 }
877 else if (strcmp (arg, "32") == 0)
878 ppc_obj64 = 0;
879 else
880 return 0;
881 break;
882
883 case 'm':
884 /* -mpwrx and -mpwr2 mean to assemble for the IBM POWER/2
885 (RIOS2). */
886 if (strcmp (arg, "pwrx") == 0 || strcmp (arg, "pwr2") == 0)
887 ppc_cpu = PPC_OPCODE_POWER | PPC_OPCODE_POWER2 | PPC_OPCODE_32;
888 /* -mpwr means to assemble for the IBM POWER (RIOS1). */
889 else if (strcmp (arg, "pwr") == 0)
890 ppc_cpu = PPC_OPCODE_POWER | PPC_OPCODE_32;
891 /* -m601 means to assemble for the PowerPC 601, which includes
892 instructions that are holdovers from the Power. */
893 else if (strcmp (arg, "601") == 0)
894 ppc_cpu = (PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC
895 | PPC_OPCODE_601 | PPC_OPCODE_32);
896 /* -mppc, -mppc32, -m603, and -m604 mean to assemble for the
897 PowerPC 603/604. */
898 else if (strcmp (arg, "ppc") == 0
899 || strcmp (arg, "ppc32") == 0
900 || strcmp (arg, "603") == 0
901 || strcmp (arg, "604") == 0)
902 ppc_cpu = PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC | PPC_OPCODE_32;
903 /* -m403 and -m405 mean to assemble for the PowerPC 403/405. */
904 else if (strcmp (arg, "403") == 0
905 || strcmp (arg, "405") == 0)
906 ppc_cpu = (PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC
907 | PPC_OPCODE_403 | PPC_OPCODE_32);
908 else if (strcmp (arg, "7400") == 0
909 || strcmp (arg, "7410") == 0
910 || strcmp (arg, "7450") == 0
911 || strcmp (arg, "7455") == 0)
912 ppc_cpu = (PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC
913 | PPC_OPCODE_ALTIVEC | PPC_OPCODE_32);
914 else if (strcmp (arg, "altivec") == 0)
915 {
916 if (ppc_cpu == 0)
917 ppc_cpu = PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC | PPC_OPCODE_ALTIVEC;
918 else
919 ppc_cpu |= PPC_OPCODE_ALTIVEC;
920 }
921 else if (strcmp (arg, "e500") == 0 || strcmp (arg, "e500x2") == 0)
922 {
923 ppc_cpu = (PPC_OPCODE_PPC | PPC_OPCODE_BOOKE | PPC_OPCODE_SPE
924 | PPC_OPCODE_ISEL | PPC_OPCODE_EFS | PPC_OPCODE_BRLOCK
925 | PPC_OPCODE_PMR | PPC_OPCODE_CACHELCK
926 | PPC_OPCODE_RFMCI);
927 }
928 else if (strcmp (arg, "spe") == 0)
929 {
930 if (ppc_cpu == 0)
931 ppc_cpu = PPC_OPCODE_PPC | PPC_OPCODE_SPE | PPC_OPCODE_EFS;
932 else
933 ppc_cpu |= PPC_OPCODE_SPE;
934 }
935 /* -mppc64 and -m620 mean to assemble for the 64-bit PowerPC
936 620. */
937 else if (strcmp (arg, "ppc64") == 0 || strcmp (arg, "620") == 0)
938 {
939 ppc_cpu = PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC | PPC_OPCODE_64;
940 }
941 else if (strcmp (arg, "ppc64bridge") == 0)
942 {
943 ppc_cpu = (PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC
944 | PPC_OPCODE_64_BRIDGE | PPC_OPCODE_64);
945 }
946 /* -mbooke/-mbooke32 mean enable 32-bit BookE support. */
947 else if (strcmp (arg, "booke") == 0 || strcmp (arg, "booke32") == 0)
948 {
949 ppc_cpu = PPC_OPCODE_PPC | PPC_OPCODE_BOOKE | PPC_OPCODE_32;
950 }
951 /* -mbooke64 means enable 64-bit BookE support. */
952 else if (strcmp (arg, "booke64") == 0)
953 {
954 ppc_cpu = (PPC_OPCODE_PPC | PPC_OPCODE_BOOKE
955 | PPC_OPCODE_BOOKE64 | PPC_OPCODE_64);
956 }
957 else if (strcmp (arg, "power4") == 0)
958 {
959 ppc_cpu = (PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC
960 | PPC_OPCODE_64 | PPC_OPCODE_POWER4);
961 }
962 /* -mcom means assemble for the common intersection between Power
963 and PowerPC. At present, we just allow the union, rather
964 than the intersection. */
965 else if (strcmp (arg, "com") == 0)
966 ppc_cpu = PPC_OPCODE_COMMON | PPC_OPCODE_32;
967 /* -many means to assemble for any architecture (PWR/PWRX/PPC). */
968 else if (strcmp (arg, "any") == 0)
969 ppc_cpu = PPC_OPCODE_ANY | PPC_OPCODE_32;
970
971 else if (strcmp (arg, "regnames") == 0)
972 reg_names_p = TRUE;
973
974 else if (strcmp (arg, "no-regnames") == 0)
975 reg_names_p = FALSE;
976
977 #ifdef OBJ_ELF
978 /* -mrelocatable/-mrelocatable-lib -- warn about initializations
979 that require relocation. */
980 else if (strcmp (arg, "relocatable") == 0)
981 {
982 shlib = SHLIB_MRELOCATABLE;
983 ppc_flags |= EF_PPC_RELOCATABLE;
984 }
985
986 else if (strcmp (arg, "relocatable-lib") == 0)
987 {
988 shlib = SHLIB_MRELOCATABLE;
989 ppc_flags |= EF_PPC_RELOCATABLE_LIB;
990 }
991
992 /* -memb, set embedded bit. */
993 else if (strcmp (arg, "emb") == 0)
994 ppc_flags |= EF_PPC_EMB;
995
996 /* -mlittle/-mbig set the endianess. */
997 else if (strcmp (arg, "little") == 0
998 || strcmp (arg, "little-endian") == 0)
999 {
1000 target_big_endian = 0;
1001 set_target_endian = 1;
1002 }
1003
1004 else if (strcmp (arg, "big") == 0 || strcmp (arg, "big-endian") == 0)
1005 {
1006 target_big_endian = 1;
1007 set_target_endian = 1;
1008 }
1009
1010 else if (strcmp (arg, "solaris") == 0)
1011 {
1012 msolaris = TRUE;
1013 ppc_comment_chars = ppc_solaris_comment_chars;
1014 }
1015
1016 else if (strcmp (arg, "no-solaris") == 0)
1017 {
1018 msolaris = FALSE;
1019 ppc_comment_chars = ppc_eabi_comment_chars;
1020 }
1021 #endif
1022 else
1023 {
1024 as_bad (_("invalid switch -m%s"), arg);
1025 return 0;
1026 }
1027 break;
1028
1029 #ifdef OBJ_ELF
1030 /* -V: SVR4 argument to print version ID. */
1031 case 'V':
1032 print_version_id ();
1033 break;
1034
1035 /* -Qy, -Qn: SVR4 arguments controlling whether a .comment section
1036 should be emitted or not. FIXME: Not implemented. */
1037 case 'Q':
1038 break;
1039
1040 /* Solaris takes -s to specify that .stabs go in a .stabs section,
1041 rather than .stabs.excl, which is ignored by the linker.
1042 FIXME: Not implemented. */
1043 case 's':
1044 if (arg)
1045 return 0;
1046
1047 break;
1048 #endif
1049
1050 default:
1051 return 0;
1052 }
1053
1054 return 1;
1055 }
1056
1057 void
1058 md_show_usage (stream)
1059 FILE *stream;
1060 {
1061 fprintf (stream, _("\
1062 PowerPC options:\n\
1063 -u ignored\n\
1064 -mpwrx, -mpwr2 generate code for POWER/2 (RIOS2)\n\
1065 -mpwr generate code for POWER (RIOS1)\n\
1066 -m601 generate code for PowerPC 601\n\
1067 -mppc, -mppc32, -m603, -m604\n\
1068 generate code for PowerPC 603/604\n\
1069 -m403, -m405 generate code for PowerPC 403/405\n\
1070 -m7400, -m7410, -m7450, -m7455\n\
1071 generate code For PowerPC 7400/7410/7450/7455\n\
1072 -mppc64, -m620 generate code for PowerPC 620/625/630\n\
1073 -mppc64bridge generate code for PowerPC 64, including bridge insns\n\
1074 -mbooke64 generate code for 64-bit PowerPC BookE\n\
1075 -mbooke, mbooke32 generate code for 32-bit PowerPC BookE\n\
1076 -mpower4 generate code for Power4 architecture\n\
1077 -maltivec generate code for AltiVec\n\
1078 -mcom generate code Power/PowerPC common instructions\n\
1079 -many generate code for any architecture (PWR/PWRX/PPC)\n\
1080 -mregnames Allow symbolic names for registers\n\
1081 -mno-regnames Do not allow symbolic names for registers\n"));
1082 fprintf (stream, _("\
1083 -me500, -me500x2 generate code for Motorola e500 core complex\n\
1084 -mspe generate code for Motorola SPE instructions\n"));
1085 #ifdef OBJ_ELF
1086 fprintf (stream, _("\
1087 -mrelocatable support for GCC's -mrelocatble option\n\
1088 -mrelocatable-lib support for GCC's -mrelocatble-lib option\n\
1089 -memb set PPC_EMB bit in ELF flags\n\
1090 -mlittle, -mlittle-endian\n\
1091 generate code for a little endian machine\n\
1092 -mbig, -mbig-endian generate code for a big endian machine\n\
1093 -msolaris generate code for Solaris\n\
1094 -mno-solaris do not generate code for Solaris\n\
1095 -V print assembler version number\n\
1096 -Qy, -Qn ignored\n"));
1097 #endif
1098 }
1099 \f
1100 /* Set ppc_cpu if it is not already set. */
1101
1102 static void
1103 ppc_set_cpu ()
1104 {
1105 const char *default_os = TARGET_OS;
1106 const char *default_cpu = TARGET_CPU;
1107
1108 if (ppc_cpu == 0)
1109 {
1110 if (ppc_obj64)
1111 ppc_cpu = PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC | PPC_OPCODE_64;
1112 else if (strncmp (default_os, "aix", 3) == 0
1113 && default_os[3] >= '4' && default_os[3] <= '9')
1114 ppc_cpu = PPC_OPCODE_COMMON | PPC_OPCODE_32;
1115 else if (strncmp (default_os, "aix3", 4) == 0)
1116 ppc_cpu = PPC_OPCODE_POWER | PPC_OPCODE_32;
1117 else if (strcmp (default_cpu, "rs6000") == 0)
1118 ppc_cpu = PPC_OPCODE_POWER | PPC_OPCODE_32;
1119 else if (strncmp (default_cpu, "powerpc", 7) == 0)
1120 {
1121 if (default_cpu[7] == '6' && default_cpu[8] == '4')
1122 ppc_cpu = PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC | PPC_OPCODE_64;
1123 else
1124 ppc_cpu = PPC_OPCODE_PPC | PPC_OPCODE_CLASSIC | PPC_OPCODE_32;
1125 }
1126 else
1127 as_fatal (_("Unknown default cpu = %s, os = %s"),
1128 default_cpu, default_os);
1129 }
1130 }
1131
1132 /* Figure out the BFD architecture to use. */
1133
1134 enum bfd_architecture
1135 ppc_arch ()
1136 {
1137 const char *default_cpu = TARGET_CPU;
1138 ppc_set_cpu ();
1139
1140 if ((ppc_cpu & PPC_OPCODE_PPC) != 0)
1141 return bfd_arch_powerpc;
1142 else if ((ppc_cpu & PPC_OPCODE_POWER) != 0)
1143 return bfd_arch_rs6000;
1144 else if ((ppc_cpu & (PPC_OPCODE_COMMON | PPC_OPCODE_ANY)) != 0)
1145 {
1146 if (strcmp (default_cpu, "rs6000") == 0)
1147 return bfd_arch_rs6000;
1148 else if (strncmp (default_cpu, "powerpc", 7) == 0)
1149 return bfd_arch_powerpc;
1150 }
1151
1152 as_fatal (_("Neither Power nor PowerPC opcodes were selected."));
1153 return bfd_arch_unknown;
1154 }
1155
1156 unsigned long
1157 ppc_mach ()
1158 {
1159 if (ppc_obj64)
1160 return bfd_mach_ppc64;
1161 else if (ppc_arch () == bfd_arch_rs6000)
1162 return bfd_mach_rs6k;
1163 else
1164 return bfd_mach_ppc;
1165 }
1166
1167 extern char*
1168 ppc_target_format ()
1169 {
1170 #ifdef OBJ_COFF
1171 #ifdef TE_PE
1172 return target_big_endian ? "pe-powerpc" : "pe-powerpcle";
1173 #elif TE_POWERMAC
1174 return "xcoff-powermac";
1175 #else
1176 # ifdef TE_AIX5
1177 return (ppc_obj64 ? "aix5coff64-rs6000" : "aixcoff-rs6000");
1178 # else
1179 return (ppc_obj64 ? "aixcoff64-rs6000" : "aixcoff-rs6000");
1180 # endif
1181 #endif
1182 #endif
1183 #ifdef OBJ_ELF
1184 return (target_big_endian
1185 ? (ppc_obj64 ? "elf64-powerpc" : "elf32-powerpc")
1186 : (ppc_obj64 ? "elf64-powerpcle" : "elf32-powerpcle"));
1187 #endif
1188 }
1189
1190 /* This function is called when the assembler starts up. It is called
1191 after the options have been parsed and the output file has been
1192 opened. */
1193
1194 void
1195 md_begin ()
1196 {
1197 register const struct powerpc_opcode *op;
1198 const struct powerpc_opcode *op_end;
1199 const struct powerpc_macro *macro;
1200 const struct powerpc_macro *macro_end;
1201 bfd_boolean dup_insn = FALSE;
1202
1203 ppc_set_cpu ();
1204
1205 #ifdef OBJ_ELF
1206 /* Set the ELF flags if desired. */
1207 if (ppc_flags && !msolaris)
1208 bfd_set_private_flags (stdoutput, ppc_flags);
1209 #endif
1210
1211 /* Insert the opcodes into a hash table. */
1212 ppc_hash = hash_new ();
1213
1214 op_end = powerpc_opcodes + powerpc_num_opcodes;
1215 for (op = powerpc_opcodes; op < op_end; op++)
1216 {
1217 know ((op->opcode & op->mask) == op->opcode);
1218
1219 if ((op->flags & ppc_cpu & ~(PPC_OPCODE_32 | PPC_OPCODE_64)) != 0
1220 && ((op->flags & (PPC_OPCODE_32 | PPC_OPCODE_64)) == 0
1221 || ((op->flags & (PPC_OPCODE_32 | PPC_OPCODE_64))
1222 == (ppc_cpu & (PPC_OPCODE_32 | PPC_OPCODE_64)))
1223 || (ppc_cpu & PPC_OPCODE_64_BRIDGE) != 0)
1224 /* Certain instructions (eg: extsw) do not exist in the
1225 32-bit BookE instruction set, but they do exist in the
1226 64-bit BookE instruction set, and other PPC instruction
1227 sets. Check to see if the opcode has the BOOKE64 flag set.
1228 If it does make sure that the target CPU is not the BookE32. */
1229 && ((op->flags & PPC_OPCODE_BOOKE64) == 0
1230 || (ppc_cpu & PPC_OPCODE_BOOKE64) == PPC_OPCODE_BOOKE64
1231 || (ppc_cpu & PPC_OPCODE_BOOKE) == 0)
1232 && ((op->flags & (PPC_OPCODE_POWER4 | PPC_OPCODE_NOPOWER4)) == 0
1233 || ((op->flags & PPC_OPCODE_POWER4)
1234 == (ppc_cpu & PPC_OPCODE_POWER4))))
1235 {
1236 const char *retval;
1237
1238 retval = hash_insert (ppc_hash, op->name, (PTR) op);
1239 if (retval != (const char *) NULL)
1240 {
1241 /* Ignore Power duplicates for -m601. */
1242 if ((ppc_cpu & PPC_OPCODE_601) != 0
1243 && (op->flags & PPC_OPCODE_POWER) != 0)
1244 continue;
1245
1246 as_bad (_("Internal assembler error for instruction %s"),
1247 op->name);
1248 dup_insn = TRUE;
1249 }
1250 }
1251 }
1252
1253 /* Insert the macros into a hash table. */
1254 ppc_macro_hash = hash_new ();
1255
1256 macro_end = powerpc_macros + powerpc_num_macros;
1257 for (macro = powerpc_macros; macro < macro_end; macro++)
1258 {
1259 if ((macro->flags & ppc_cpu) != 0)
1260 {
1261 const char *retval;
1262
1263 retval = hash_insert (ppc_macro_hash, macro->name, (PTR) macro);
1264 if (retval != (const char *) NULL)
1265 {
1266 as_bad (_("Internal assembler error for macro %s"), macro->name);
1267 dup_insn = TRUE;
1268 }
1269 }
1270 }
1271
1272 if (dup_insn)
1273 abort ();
1274
1275 /* Tell the main code what the endianness is if it is not overidden
1276 by the user. */
1277 if (!set_target_endian)
1278 {
1279 set_target_endian = 1;
1280 target_big_endian = PPC_BIG_ENDIAN;
1281 }
1282
1283 #ifdef OBJ_XCOFF
1284 ppc_coff_debug_section = coff_section_from_bfd_index (stdoutput, N_DEBUG);
1285
1286 /* Create dummy symbols to serve as initial csects. This forces the
1287 text csects to precede the data csects. These symbols will not
1288 be output. */
1289 ppc_text_csects = symbol_make ("dummy\001");
1290 symbol_get_tc (ppc_text_csects)->within = ppc_text_csects;
1291 ppc_data_csects = symbol_make ("dummy\001");
1292 symbol_get_tc (ppc_data_csects)->within = ppc_data_csects;
1293 #endif
1294
1295 #ifdef TE_PE
1296
1297 ppc_current_section = text_section;
1298 ppc_previous_section = 0;
1299
1300 #endif
1301 }
1302
1303 void
1304 ppc_cleanup ()
1305 {
1306 #ifdef OBJ_ELF
1307 if (ppc_apuinfo_list == NULL)
1308 return;
1309
1310 /* Ok, so write the section info out. We have this layout:
1311
1312 byte data what
1313 ---- ---- ----
1314 0 8 length of "APUinfo\0"
1315 4 (n*4) number of APU's (4 bytes each)
1316 8 2 note type 2
1317 12 "APUinfo\0" name
1318 20 APU#1 first APU's info
1319 24 APU#2 second APU's info
1320 ... ...
1321 */
1322 {
1323 char *p;
1324 asection *seg = now_seg;
1325 subsegT subseg = now_subseg;
1326 asection *apuinfo_secp = (asection *) NULL;
1327 unsigned int i;
1328
1329 /* Create the .PPC.EMB.apuinfo section. */
1330 apuinfo_secp = subseg_new (".PPC.EMB.apuinfo", 0);
1331 bfd_set_section_flags (stdoutput,
1332 apuinfo_secp,
1333 SEC_HAS_CONTENTS | SEC_READONLY);
1334
1335 p = frag_more (4);
1336 md_number_to_chars (p, (valueT) 8, 4);
1337
1338 p = frag_more (4);
1339 md_number_to_chars (p, (valueT) ppc_apuinfo_num, 4);
1340
1341 p = frag_more (4);
1342 md_number_to_chars (p, (valueT) 2, 4);
1343
1344 p = frag_more (8);
1345 strcpy (p, "APUinfo");
1346
1347 for (i = 0; i < ppc_apuinfo_num; i++)
1348 {
1349 p = frag_more (4);
1350 md_number_to_chars (p, (valueT) ppc_apuinfo_list[i], 4);
1351 }
1352
1353 frag_align (2, 0, 0);
1354
1355 /* We probably can't restore the current segment, for there likely
1356 isn't one yet... */
1357 if (seg && subseg)
1358 subseg_set (seg, subseg);
1359 }
1360 #endif
1361 }
1362
1363 /* Insert an operand value into an instruction. */
1364
1365 static unsigned long
1366 ppc_insert_operand (insn, operand, val, file, line)
1367 unsigned long insn;
1368 const struct powerpc_operand *operand;
1369 offsetT val;
1370 char *file;
1371 unsigned int line;
1372 {
1373 if (operand->bits != 32)
1374 {
1375 long min, max;
1376 offsetT test;
1377
1378 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
1379 {
1380 if ((operand->flags & PPC_OPERAND_SIGNOPT) != 0)
1381 max = (1 << operand->bits) - 1;
1382 else
1383 max = (1 << (operand->bits - 1)) - 1;
1384 min = - (1 << (operand->bits - 1));
1385
1386 if (!ppc_obj64)
1387 {
1388 /* Some people write 32 bit hex constants with the sign
1389 extension done by hand. This shouldn't really be
1390 valid, but, to permit this code to assemble on a 64
1391 bit host, we sign extend the 32 bit value. */
1392 if (val > 0
1393 && (val & (offsetT) 0x80000000) != 0
1394 && (val & (offsetT) 0xffffffff) == val)
1395 {
1396 val -= 0x80000000;
1397 val -= 0x80000000;
1398 }
1399 }
1400 }
1401 else
1402 {
1403 max = (1 << operand->bits) - 1;
1404 min = 0;
1405 }
1406
1407 if ((operand->flags & PPC_OPERAND_NEGATIVE) != 0)
1408 test = - val;
1409 else
1410 test = val;
1411
1412 if (test < (offsetT) min || test > (offsetT) max)
1413 {
1414 const char *err =
1415 _("operand out of range (%s not between %ld and %ld)");
1416 char buf[100];
1417
1418 sprint_value (buf, test);
1419 as_bad_where (file, line, err, buf, min, max);
1420 }
1421 }
1422
1423 if (operand->insert)
1424 {
1425 const char *errmsg;
1426
1427 errmsg = NULL;
1428 insn = (*operand->insert) (insn, (long) val, ppc_cpu, &errmsg);
1429 if (errmsg != (const char *) NULL)
1430 as_bad_where (file, line, errmsg);
1431 }
1432 else
1433 insn |= (((long) val & ((1 << operand->bits) - 1))
1434 << operand->shift);
1435
1436 return insn;
1437 }
1438
1439 \f
1440 #ifdef OBJ_ELF
1441 /* Parse @got, etc. and return the desired relocation. */
1442 static bfd_reloc_code_real_type
1443 ppc_elf_suffix (str_p, exp_p)
1444 char **str_p;
1445 expressionS *exp_p;
1446 {
1447 struct map_bfd {
1448 char *string;
1449 int length;
1450 int reloc;
1451 };
1452
1453 char ident[20];
1454 char *str = *str_p;
1455 char *str2;
1456 int ch;
1457 int len;
1458 const struct map_bfd *ptr;
1459
1460 #define MAP(str,reloc) { str, sizeof (str)-1, reloc }
1461
1462 static const struct map_bfd mapping[] = {
1463 MAP ("l", (int) BFD_RELOC_LO16),
1464 MAP ("h", (int) BFD_RELOC_HI16),
1465 MAP ("ha", (int) BFD_RELOC_HI16_S),
1466 MAP ("brtaken", (int) BFD_RELOC_PPC_B16_BRTAKEN),
1467 MAP ("brntaken", (int) BFD_RELOC_PPC_B16_BRNTAKEN),
1468 MAP ("got", (int) BFD_RELOC_16_GOTOFF),
1469 MAP ("got@l", (int) BFD_RELOC_LO16_GOTOFF),
1470 MAP ("got@h", (int) BFD_RELOC_HI16_GOTOFF),
1471 MAP ("got@ha", (int) BFD_RELOC_HI16_S_GOTOFF),
1472 MAP ("fixup", (int) BFD_RELOC_CTOR), /* warning with -mrelocatable */
1473 MAP ("plt", (int) BFD_RELOC_24_PLT_PCREL),
1474 MAP ("pltrel24", (int) BFD_RELOC_24_PLT_PCREL),
1475 MAP ("copy", (int) BFD_RELOC_PPC_COPY),
1476 MAP ("globdat", (int) BFD_RELOC_PPC_GLOB_DAT),
1477 MAP ("local24pc", (int) BFD_RELOC_PPC_LOCAL24PC),
1478 MAP ("local", (int) BFD_RELOC_PPC_LOCAL24PC),
1479 MAP ("pltrel", (int) BFD_RELOC_32_PLT_PCREL),
1480 MAP ("plt@l", (int) BFD_RELOC_LO16_PLTOFF),
1481 MAP ("plt@h", (int) BFD_RELOC_HI16_PLTOFF),
1482 MAP ("plt@ha", (int) BFD_RELOC_HI16_S_PLTOFF),
1483 MAP ("sdarel", (int) BFD_RELOC_GPREL16),
1484 MAP ("sectoff", (int) BFD_RELOC_16_BASEREL),
1485 MAP ("sectoff@l", (int) BFD_RELOC_LO16_BASEREL),
1486 MAP ("sectoff@h", (int) BFD_RELOC_HI16_BASEREL),
1487 MAP ("sectoff@ha", (int) BFD_RELOC_HI16_S_BASEREL),
1488 MAP ("naddr", (int) BFD_RELOC_PPC_EMB_NADDR32),
1489 MAP ("naddr16", (int) BFD_RELOC_PPC_EMB_NADDR16),
1490 MAP ("naddr@l", (int) BFD_RELOC_PPC_EMB_NADDR16_LO),
1491 MAP ("naddr@h", (int) BFD_RELOC_PPC_EMB_NADDR16_HI),
1492 MAP ("naddr@ha", (int) BFD_RELOC_PPC_EMB_NADDR16_HA),
1493 MAP ("sdai16", (int) BFD_RELOC_PPC_EMB_SDAI16),
1494 MAP ("sda2rel", (int) BFD_RELOC_PPC_EMB_SDA2REL),
1495 MAP ("sda2i16", (int) BFD_RELOC_PPC_EMB_SDA2I16),
1496 MAP ("sda21", (int) BFD_RELOC_PPC_EMB_SDA21),
1497 MAP ("mrkref", (int) BFD_RELOC_PPC_EMB_MRKREF),
1498 MAP ("relsect", (int) BFD_RELOC_PPC_EMB_RELSEC16),
1499 MAP ("relsect@l", (int) BFD_RELOC_PPC_EMB_RELST_LO),
1500 MAP ("relsect@h", (int) BFD_RELOC_PPC_EMB_RELST_HI),
1501 MAP ("relsect@ha", (int) BFD_RELOC_PPC_EMB_RELST_HA),
1502 MAP ("bitfld", (int) BFD_RELOC_PPC_EMB_BIT_FLD),
1503 MAP ("relsda", (int) BFD_RELOC_PPC_EMB_RELSDA),
1504 MAP ("xgot", (int) BFD_RELOC_PPC_TOC16),
1505 /* The following are only valid for ppc64. Negative values are
1506 used instead of a flag. */
1507 MAP ("higher", - (int) BFD_RELOC_PPC64_HIGHER),
1508 MAP ("highera", - (int) BFD_RELOC_PPC64_HIGHER_S),
1509 MAP ("highest", - (int) BFD_RELOC_PPC64_HIGHEST),
1510 MAP ("highesta", - (int) BFD_RELOC_PPC64_HIGHEST_S),
1511 MAP ("tocbase", - (int) BFD_RELOC_PPC64_TOC),
1512 MAP ("toc", - (int) BFD_RELOC_PPC_TOC16),
1513 MAP ("toc@l", - (int) BFD_RELOC_PPC64_TOC16_LO),
1514 MAP ("toc@h", - (int) BFD_RELOC_PPC64_TOC16_HI),
1515 MAP ("toc@ha", - (int) BFD_RELOC_PPC64_TOC16_HA),
1516 { (char *) 0, 0, (int) BFD_RELOC_UNUSED }
1517 };
1518
1519 if (*str++ != '@')
1520 return BFD_RELOC_UNUSED;
1521
1522 for (ch = *str, str2 = ident;
1523 (str2 < ident + sizeof (ident) - 1
1524 && (ISALNUM (ch) || ch == '@'));
1525 ch = *++str)
1526 {
1527 *str2++ = TOLOWER (ch);
1528 }
1529
1530 *str2 = '\0';
1531 len = str2 - ident;
1532
1533 ch = ident[0];
1534 for (ptr = &mapping[0]; ptr->length > 0; ptr++)
1535 if (ch == ptr->string[0]
1536 && len == ptr->length
1537 && memcmp (ident, ptr->string, ptr->length) == 0)
1538 {
1539 int reloc = ptr->reloc;
1540
1541 if (reloc < 0)
1542 {
1543 if (!ppc_obj64)
1544 return BFD_RELOC_UNUSED;
1545 reloc = -reloc;
1546 }
1547
1548 if (exp_p->X_add_number != 0
1549 && (reloc == (int) BFD_RELOC_16_GOTOFF
1550 || reloc == (int) BFD_RELOC_LO16_GOTOFF
1551 || reloc == (int) BFD_RELOC_HI16_GOTOFF
1552 || reloc == (int) BFD_RELOC_HI16_S_GOTOFF))
1553 as_warn (_("identifier+constant@got means identifier@got+constant"));
1554
1555 /* Now check for identifier@suffix+constant. */
1556 if (*str == '-' || *str == '+')
1557 {
1558 char *orig_line = input_line_pointer;
1559 expressionS new_exp;
1560
1561 input_line_pointer = str;
1562 expression (&new_exp);
1563 if (new_exp.X_op == O_constant)
1564 {
1565 exp_p->X_add_number += new_exp.X_add_number;
1566 str = input_line_pointer;
1567 }
1568
1569 if (&input_line_pointer != str_p)
1570 input_line_pointer = orig_line;
1571 }
1572 *str_p = str;
1573
1574 if (reloc == (int) BFD_RELOC_PPC64_TOC
1575 && exp_p->X_op == O_symbol)
1576 {
1577 /* This reloc type ignores the symbol. Change the symbol
1578 so that the dummy .TOC. symbol can be omitted from the
1579 object file. */
1580 exp_p->X_add_symbol = &abs_symbol;
1581 }
1582
1583 return (bfd_reloc_code_real_type) reloc;
1584 }
1585
1586 return BFD_RELOC_UNUSED;
1587 }
1588
1589 /* Like normal .long/.short/.word, except support @got, etc.
1590 Clobbers input_line_pointer, checks end-of-line. */
1591 static void
1592 ppc_elf_cons (nbytes)
1593 register int nbytes; /* 1=.byte, 2=.word, 4=.long, 8=.llong. */
1594 {
1595 expressionS exp;
1596 bfd_reloc_code_real_type reloc;
1597
1598 if (is_it_end_of_statement ())
1599 {
1600 demand_empty_rest_of_line ();
1601 return;
1602 }
1603
1604 do
1605 {
1606 expression (&exp);
1607 if (exp.X_op == O_symbol
1608 && *input_line_pointer == '@'
1609 && (reloc = ppc_elf_suffix (&input_line_pointer,
1610 &exp)) != BFD_RELOC_UNUSED)
1611 {
1612 reloc_howto_type *reloc_howto;
1613 int size;
1614
1615 reloc_howto = bfd_reloc_type_lookup (stdoutput, reloc);
1616 size = bfd_get_reloc_size (reloc_howto);
1617
1618 if (size > nbytes)
1619 {
1620 as_bad (_("%s relocations do not fit in %d bytes\n"),
1621 reloc_howto->name, nbytes);
1622 }
1623 else
1624 {
1625 char *p;
1626 int offset;
1627
1628 p = frag_more (nbytes);
1629 offset = 0;
1630 if (target_big_endian)
1631 offset = nbytes - size;
1632 fix_new_exp (frag_now, p - frag_now->fr_literal + offset, size,
1633 &exp, 0, reloc);
1634 }
1635 }
1636 else
1637 emit_expr (&exp, (unsigned int) nbytes);
1638 }
1639 while (*input_line_pointer++ == ',');
1640
1641 /* Put terminator back into stream. */
1642 input_line_pointer--;
1643 demand_empty_rest_of_line ();
1644 }
1645
1646 /* Solaris pseduo op to change to the .rodata section. */
1647 static void
1648 ppc_elf_rdata (xxx)
1649 int xxx;
1650 {
1651 char *save_line = input_line_pointer;
1652 static char section[] = ".rodata\n";
1653
1654 /* Just pretend this is .section .rodata */
1655 input_line_pointer = section;
1656 obj_elf_section (xxx);
1657
1658 input_line_pointer = save_line;
1659 }
1660
1661 /* Pseudo op to make file scope bss items. */
1662 static void
1663 ppc_elf_lcomm (xxx)
1664 int xxx ATTRIBUTE_UNUSED;
1665 {
1666 register char *name;
1667 register char c;
1668 register char *p;
1669 offsetT size;
1670 register symbolS *symbolP;
1671 offsetT align;
1672 segT old_sec;
1673 int old_subsec;
1674 char *pfrag;
1675 int align2;
1676
1677 name = input_line_pointer;
1678 c = get_symbol_end ();
1679
1680 /* just after name is now '\0'. */
1681 p = input_line_pointer;
1682 *p = c;
1683 SKIP_WHITESPACE ();
1684 if (*input_line_pointer != ',')
1685 {
1686 as_bad (_("Expected comma after symbol-name: rest of line ignored."));
1687 ignore_rest_of_line ();
1688 return;
1689 }
1690
1691 input_line_pointer++; /* skip ',' */
1692 if ((size = get_absolute_expression ()) < 0)
1693 {
1694 as_warn (_(".COMMon length (%ld.) <0! Ignored."), (long) size);
1695 ignore_rest_of_line ();
1696 return;
1697 }
1698
1699 /* The third argument to .lcomm is the alignment. */
1700 if (*input_line_pointer != ',')
1701 align = 8;
1702 else
1703 {
1704 ++input_line_pointer;
1705 align = get_absolute_expression ();
1706 if (align <= 0)
1707 {
1708 as_warn (_("ignoring bad alignment"));
1709 align = 8;
1710 }
1711 }
1712
1713 *p = 0;
1714 symbolP = symbol_find_or_make (name);
1715 *p = c;
1716
1717 if (S_IS_DEFINED (symbolP) && ! S_IS_COMMON (symbolP))
1718 {
1719 as_bad (_("Ignoring attempt to re-define symbol `%s'."),
1720 S_GET_NAME (symbolP));
1721 ignore_rest_of_line ();
1722 return;
1723 }
1724
1725 if (S_GET_VALUE (symbolP) && S_GET_VALUE (symbolP) != (valueT) size)
1726 {
1727 as_bad (_("Length of .lcomm \"%s\" is already %ld. Not changed to %ld."),
1728 S_GET_NAME (symbolP),
1729 (long) S_GET_VALUE (symbolP),
1730 (long) size);
1731
1732 ignore_rest_of_line ();
1733 return;
1734 }
1735
1736 /* Allocate_bss. */
1737 old_sec = now_seg;
1738 old_subsec = now_subseg;
1739 if (align)
1740 {
1741 /* Convert to a power of 2 alignment. */
1742 for (align2 = 0; (align & 1) == 0; align >>= 1, ++align2);
1743 if (align != 1)
1744 {
1745 as_bad (_("Common alignment not a power of 2"));
1746 ignore_rest_of_line ();
1747 return;
1748 }
1749 }
1750 else
1751 align2 = 0;
1752
1753 record_alignment (bss_section, align2);
1754 subseg_set (bss_section, 0);
1755 if (align2)
1756 frag_align (align2, 0, 0);
1757 if (S_GET_SEGMENT (symbolP) == bss_section)
1758 symbol_get_frag (symbolP)->fr_symbol = 0;
1759 symbol_set_frag (symbolP, frag_now);
1760 pfrag = frag_var (rs_org, 1, 1, (relax_substateT) 0, symbolP, size,
1761 (char *) 0);
1762 *pfrag = 0;
1763 S_SET_SIZE (symbolP, size);
1764 S_SET_SEGMENT (symbolP, bss_section);
1765 subseg_set (old_sec, old_subsec);
1766 demand_empty_rest_of_line ();
1767 }
1768
1769 /* Validate any relocations emitted for -mrelocatable, possibly adding
1770 fixups for word relocations in writable segments, so we can adjust
1771 them at runtime. */
1772 static void
1773 ppc_elf_validate_fix (fixp, seg)
1774 fixS *fixp;
1775 segT seg;
1776 {
1777 if (fixp->fx_done || fixp->fx_pcrel)
1778 return;
1779
1780 switch (shlib)
1781 {
1782 case SHLIB_NONE:
1783 case SHLIB_PIC:
1784 return;
1785
1786 case SHLIB_MRELOCATABLE:
1787 if (fixp->fx_r_type <= BFD_RELOC_UNUSED
1788 && fixp->fx_r_type != BFD_RELOC_16_GOTOFF
1789 && fixp->fx_r_type != BFD_RELOC_HI16_GOTOFF
1790 && fixp->fx_r_type != BFD_RELOC_LO16_GOTOFF
1791 && fixp->fx_r_type != BFD_RELOC_HI16_S_GOTOFF
1792 && fixp->fx_r_type != BFD_RELOC_16_BASEREL
1793 && fixp->fx_r_type != BFD_RELOC_LO16_BASEREL
1794 && fixp->fx_r_type != BFD_RELOC_HI16_BASEREL
1795 && fixp->fx_r_type != BFD_RELOC_HI16_S_BASEREL
1796 && (seg->flags & SEC_LOAD) != 0
1797 && strcmp (segment_name (seg), ".got2") != 0
1798 && strcmp (segment_name (seg), ".dtors") != 0
1799 && strcmp (segment_name (seg), ".ctors") != 0
1800 && strcmp (segment_name (seg), ".fixup") != 0
1801 && strcmp (segment_name (seg), ".gcc_except_table") != 0
1802 && strcmp (segment_name (seg), ".eh_frame") != 0
1803 && strcmp (segment_name (seg), ".ex_shared") != 0)
1804 {
1805 if ((seg->flags & (SEC_READONLY | SEC_CODE)) != 0
1806 || fixp->fx_r_type != BFD_RELOC_CTOR)
1807 {
1808 as_bad_where (fixp->fx_file, fixp->fx_line,
1809 _("Relocation cannot be done when using -mrelocatable"));
1810 }
1811 }
1812 return;
1813 }
1814 }
1815
1816 /* Prevent elf_frob_file_before_adjust removing a weak undefined
1817 function descriptor sym if the corresponding code sym is used. */
1818
1819 void
1820 ppc_frob_file_before_adjust ()
1821 {
1822 symbolS *symp;
1823
1824 if (!ppc_obj64)
1825 return;
1826
1827 for (symp = symbol_rootP; symp; symp = symbol_next (symp))
1828 {
1829 const char *name;
1830 char *dotname;
1831 symbolS *dotsym;
1832 size_t len;
1833
1834 name = S_GET_NAME (symp);
1835 if (name[0] == '.')
1836 continue;
1837
1838 if (! S_IS_WEAK (symp)
1839 || S_IS_DEFINED (symp))
1840 continue;
1841
1842 len = strlen (name) + 1;
1843 dotname = xmalloc (len + 1);
1844 dotname[0] = '.';
1845 memcpy (dotname + 1, name, len);
1846 dotsym = symbol_find (dotname);
1847 free (dotname);
1848 if (dotsym != NULL && (symbol_used_p (dotsym)
1849 || symbol_used_in_reloc_p (dotsym)))
1850 {
1851 symbol_mark_used (symp);
1852 }
1853 }
1854
1855 /* Don't emit .TOC. symbol. */
1856 symp = symbol_find (".TOC.");
1857 if (symp != NULL)
1858 symbol_remove (symp, &symbol_rootP, &symbol_lastP);
1859 }
1860 #endif /* OBJ_ELF */
1861 \f
1862 #ifdef TE_PE
1863
1864 /*
1865 * Summary of parse_toc_entry.
1866 *
1867 * in: Input_line_pointer points to the '[' in one of:
1868 *
1869 * [toc] [tocv] [toc32] [toc64]
1870 *
1871 * Anything else is an error of one kind or another.
1872 *
1873 * out:
1874 * return value: success or failure
1875 * toc_kind: kind of toc reference
1876 * input_line_pointer:
1877 * success: first char after the ']'
1878 * failure: unchanged
1879 *
1880 * settings:
1881 *
1882 * [toc] - rv == success, toc_kind = default_toc
1883 * [tocv] - rv == success, toc_kind = data_in_toc
1884 * [toc32] - rv == success, toc_kind = must_be_32
1885 * [toc64] - rv == success, toc_kind = must_be_64
1886 *
1887 */
1888
1889 enum toc_size_qualifier
1890 {
1891 default_toc, /* The toc cell constructed should be the system default size */
1892 data_in_toc, /* This is a direct reference to a toc cell */
1893 must_be_32, /* The toc cell constructed must be 32 bits wide */
1894 must_be_64 /* The toc cell constructed must be 64 bits wide */
1895 };
1896
1897 static int
1898 parse_toc_entry (toc_kind)
1899 enum toc_size_qualifier *toc_kind;
1900 {
1901 char *start;
1902 char *toc_spec;
1903 char c;
1904 enum toc_size_qualifier t;
1905
1906 /* Save the input_line_pointer. */
1907 start = input_line_pointer;
1908
1909 /* Skip over the '[' , and whitespace. */
1910 ++input_line_pointer;
1911 SKIP_WHITESPACE ();
1912
1913 /* Find the spelling of the operand. */
1914 toc_spec = input_line_pointer;
1915 c = get_symbol_end ();
1916
1917 if (strcmp (toc_spec, "toc") == 0)
1918 {
1919 t = default_toc;
1920 }
1921 else if (strcmp (toc_spec, "tocv") == 0)
1922 {
1923 t = data_in_toc;
1924 }
1925 else if (strcmp (toc_spec, "toc32") == 0)
1926 {
1927 t = must_be_32;
1928 }
1929 else if (strcmp (toc_spec, "toc64") == 0)
1930 {
1931 t = must_be_64;
1932 }
1933 else
1934 {
1935 as_bad (_("syntax error: invalid toc specifier `%s'"), toc_spec);
1936 *input_line_pointer = c;
1937 input_line_pointer = start;
1938 return 0;
1939 }
1940
1941 /* Now find the ']'. */
1942 *input_line_pointer = c;
1943
1944 SKIP_WHITESPACE (); /* leading whitespace could be there. */
1945 c = *input_line_pointer++; /* input_line_pointer->past char in c. */
1946
1947 if (c != ']')
1948 {
1949 as_bad (_("syntax error: expected `]', found `%c'"), c);
1950 input_line_pointer = start;
1951 return 0;
1952 }
1953
1954 *toc_kind = t;
1955 return 1;
1956 }
1957 #endif
1958 \f
1959
1960 #ifdef OBJ_ELF
1961 #define APUID(a,v) ((((a) & 0xffff) << 16) | ((v) & 0xffff))
1962 static void
1963 ppc_apuinfo_section_add (apu, version)
1964 unsigned int apu, version;
1965 {
1966 unsigned int i;
1967
1968 /* Check we don't already exist. */
1969 for (i = 0; i < ppc_apuinfo_num; i++)
1970 if (ppc_apuinfo_list[i] == APUID (apu, version))
1971 return;
1972
1973 if (ppc_apuinfo_num == ppc_apuinfo_num_alloc)
1974 {
1975 if (ppc_apuinfo_num_alloc == 0)
1976 {
1977 ppc_apuinfo_num_alloc = 4;
1978 ppc_apuinfo_list = (unsigned long *)
1979 xmalloc (sizeof (unsigned long) * ppc_apuinfo_num_alloc);
1980 }
1981 else
1982 {
1983 ppc_apuinfo_num_alloc += 4;
1984 ppc_apuinfo_list = (unsigned long *) xrealloc (ppc_apuinfo_list,
1985 sizeof (unsigned long) * ppc_apuinfo_num_alloc);
1986 }
1987 }
1988 ppc_apuinfo_list[ppc_apuinfo_num++] = APUID (apu, version);
1989 }
1990 #undef APUID
1991 #endif
1992 \f
1993
1994 /* We need to keep a list of fixups. We can't simply generate them as
1995 we go, because that would require us to first create the frag, and
1996 that would screw up references to ``.''. */
1997
1998 struct ppc_fixup
1999 {
2000 expressionS exp;
2001 int opindex;
2002 bfd_reloc_code_real_type reloc;
2003 };
2004
2005 #define MAX_INSN_FIXUPS (5)
2006
2007 /* This routine is called for each instruction to be assembled. */
2008
2009 void
2010 md_assemble (str)
2011 char *str;
2012 {
2013 char *s;
2014 const struct powerpc_opcode *opcode;
2015 unsigned long insn;
2016 const unsigned char *opindex_ptr;
2017 int skip_optional;
2018 int need_paren;
2019 int next_opindex;
2020 struct ppc_fixup fixups[MAX_INSN_FIXUPS];
2021 int fc;
2022 char *f;
2023 int i;
2024 #ifdef OBJ_ELF
2025 bfd_reloc_code_real_type reloc;
2026 #endif
2027
2028 /* Get the opcode. */
2029 for (s = str; *s != '\0' && ! ISSPACE (*s); s++)
2030 ;
2031 if (*s != '\0')
2032 *s++ = '\0';
2033
2034 /* Look up the opcode in the hash table. */
2035 opcode = (const struct powerpc_opcode *) hash_find (ppc_hash, str);
2036 if (opcode == (const struct powerpc_opcode *) NULL)
2037 {
2038 const struct powerpc_macro *macro;
2039
2040 macro = (const struct powerpc_macro *) hash_find (ppc_macro_hash, str);
2041 if (macro == (const struct powerpc_macro *) NULL)
2042 as_bad (_("Unrecognized opcode: `%s'"), str);
2043 else
2044 ppc_macro (s, macro);
2045
2046 return;
2047 }
2048
2049 insn = opcode->opcode;
2050
2051 str = s;
2052 while (ISSPACE (*str))
2053 ++str;
2054
2055 /* PowerPC operands are just expressions. The only real issue is
2056 that a few operand types are optional. All cases which might use
2057 an optional operand separate the operands only with commas (in
2058 some cases parentheses are used, as in ``lwz 1,0(1)'' but such
2059 cases never have optional operands). There is never more than
2060 one optional operand for an instruction. So, before we start
2061 seriously parsing the operands, we check to see if we have an
2062 optional operand, and, if we do, we count the number of commas to
2063 see whether the operand should be omitted. */
2064 skip_optional = 0;
2065 for (opindex_ptr = opcode->operands; *opindex_ptr != 0; opindex_ptr++)
2066 {
2067 const struct powerpc_operand *operand;
2068
2069 operand = &powerpc_operands[*opindex_ptr];
2070 if ((operand->flags & PPC_OPERAND_OPTIONAL) != 0)
2071 {
2072 unsigned int opcount;
2073 unsigned int num_operands_expected;
2074 unsigned int i;
2075
2076 /* There is an optional operand. Count the number of
2077 commas in the input line. */
2078 if (*str == '\0')
2079 opcount = 0;
2080 else
2081 {
2082 opcount = 1;
2083 s = str;
2084 while ((s = strchr (s, ',')) != (char *) NULL)
2085 {
2086 ++opcount;
2087 ++s;
2088 }
2089 }
2090
2091 /* Compute the number of expected operands.
2092 Do not count fake operands. */
2093 for (num_operands_expected = 0, i = 0; opcode->operands[i]; i ++)
2094 if ((powerpc_operands [opcode->operands[i]].flags & PPC_OPERAND_FAKE) == 0)
2095 ++ num_operands_expected;
2096
2097 /* If there are fewer operands in the line then are called
2098 for by the instruction, we want to skip the optional
2099 operand. */
2100 if (opcount < num_operands_expected)
2101 skip_optional = 1;
2102
2103 break;
2104 }
2105 }
2106
2107 /* Gather the operands. */
2108 need_paren = 0;
2109 next_opindex = 0;
2110 fc = 0;
2111 for (opindex_ptr = opcode->operands; *opindex_ptr != 0; opindex_ptr++)
2112 {
2113 const struct powerpc_operand *operand;
2114 const char *errmsg;
2115 char *hold;
2116 expressionS ex;
2117 char endc;
2118
2119 if (next_opindex == 0)
2120 operand = &powerpc_operands[*opindex_ptr];
2121 else
2122 {
2123 operand = &powerpc_operands[next_opindex];
2124 next_opindex = 0;
2125 }
2126 errmsg = NULL;
2127
2128 /* If this is a fake operand, then we do not expect anything
2129 from the input. */
2130 if ((operand->flags & PPC_OPERAND_FAKE) != 0)
2131 {
2132 insn = (*operand->insert) (insn, 0L, ppc_cpu, &errmsg);
2133 if (errmsg != (const char *) NULL)
2134 as_bad (errmsg);
2135 continue;
2136 }
2137
2138 /* If this is an optional operand, and we are skipping it, just
2139 insert a zero. */
2140 if ((operand->flags & PPC_OPERAND_OPTIONAL) != 0
2141 && skip_optional)
2142 {
2143 if (operand->insert)
2144 {
2145 insn = (*operand->insert) (insn, 0L, ppc_cpu, &errmsg);
2146 if (errmsg != (const char *) NULL)
2147 as_bad (errmsg);
2148 }
2149 if ((operand->flags & PPC_OPERAND_NEXT) != 0)
2150 next_opindex = *opindex_ptr + 1;
2151 continue;
2152 }
2153
2154 /* Gather the operand. */
2155 hold = input_line_pointer;
2156 input_line_pointer = str;
2157
2158 #ifdef TE_PE
2159 if (*input_line_pointer == '[')
2160 {
2161 /* We are expecting something like the second argument here:
2162 *
2163 * lwz r4,[toc].GS.0.static_int(rtoc)
2164 * ^^^^^^^^^^^^^^^^^^^^^^^^^^^
2165 * The argument following the `]' must be a symbol name, and the
2166 * register must be the toc register: 'rtoc' or '2'
2167 *
2168 * The effect is to 0 as the displacement field
2169 * in the instruction, and issue an IMAGE_REL_PPC_TOCREL16 (or
2170 * the appropriate variation) reloc against it based on the symbol.
2171 * The linker will build the toc, and insert the resolved toc offset.
2172 *
2173 * Note:
2174 * o The size of the toc entry is currently assumed to be
2175 * 32 bits. This should not be assumed to be a hard coded
2176 * number.
2177 * o In an effort to cope with a change from 32 to 64 bits,
2178 * there are also toc entries that are specified to be
2179 * either 32 or 64 bits:
2180 * lwz r4,[toc32].GS.0.static_int(rtoc)
2181 * lwz r4,[toc64].GS.0.static_int(rtoc)
2182 * These demand toc entries of the specified size, and the
2183 * instruction probably requires it.
2184 */
2185
2186 int valid_toc;
2187 enum toc_size_qualifier toc_kind;
2188 bfd_reloc_code_real_type toc_reloc;
2189
2190 /* Go parse off the [tocXX] part. */
2191 valid_toc = parse_toc_entry (&toc_kind);
2192
2193 if (!valid_toc)
2194 {
2195 /* Note: message has already been issued.
2196 FIXME: what sort of recovery should we do?
2197 demand_rest_of_line (); return; ? */
2198 }
2199
2200 /* Now get the symbol following the ']'. */
2201 expression (&ex);
2202
2203 switch (toc_kind)
2204 {
2205 case default_toc:
2206 /* In this case, we may not have seen the symbol yet,
2207 since it is allowed to appear on a .extern or .globl
2208 or just be a label in the .data section. */
2209 toc_reloc = BFD_RELOC_PPC_TOC16;
2210 break;
2211 case data_in_toc:
2212 /* 1. The symbol must be defined and either in the toc
2213 section, or a global.
2214 2. The reloc generated must have the TOCDEFN flag set
2215 in upper bit mess of the reloc type.
2216 FIXME: It's a little confusing what the tocv
2217 qualifier can be used for. At the very least, I've
2218 seen three uses, only one of which I'm sure I can
2219 explain. */
2220 if (ex.X_op == O_symbol)
2221 {
2222 assert (ex.X_add_symbol != NULL);
2223 if (symbol_get_bfdsym (ex.X_add_symbol)->section
2224 != tocdata_section)
2225 {
2226 as_bad (_("[tocv] symbol is not a toc symbol"));
2227 }
2228 }
2229
2230 toc_reloc = BFD_RELOC_PPC_TOC16;
2231 break;
2232 case must_be_32:
2233 /* FIXME: these next two specifically specify 32/64 bit
2234 toc entries. We don't support them today. Is this
2235 the right way to say that? */
2236 toc_reloc = BFD_RELOC_UNUSED;
2237 as_bad (_("Unimplemented toc32 expression modifier"));
2238 break;
2239 case must_be_64:
2240 /* FIXME: see above. */
2241 toc_reloc = BFD_RELOC_UNUSED;
2242 as_bad (_("Unimplemented toc64 expression modifier"));
2243 break;
2244 default:
2245 fprintf (stderr,
2246 _("Unexpected return value [%d] from parse_toc_entry!\n"),
2247 toc_kind);
2248 abort ();
2249 break;
2250 }
2251
2252 /* We need to generate a fixup for this expression. */
2253 if (fc >= MAX_INSN_FIXUPS)
2254 as_fatal (_("too many fixups"));
2255
2256 fixups[fc].reloc = toc_reloc;
2257 fixups[fc].exp = ex;
2258 fixups[fc].opindex = *opindex_ptr;
2259 ++fc;
2260
2261 /* Ok. We've set up the fixup for the instruction. Now make it
2262 look like the constant 0 was found here. */
2263 ex.X_unsigned = 1;
2264 ex.X_op = O_constant;
2265 ex.X_add_number = 0;
2266 ex.X_add_symbol = NULL;
2267 ex.X_op_symbol = NULL;
2268 }
2269
2270 else
2271 #endif /* TE_PE */
2272 {
2273 if (! register_name (&ex))
2274 {
2275 if ((operand->flags & PPC_OPERAND_CR) != 0)
2276 cr_operand = TRUE;
2277 expression (&ex);
2278 cr_operand = FALSE;
2279 }
2280 }
2281
2282 str = input_line_pointer;
2283 input_line_pointer = hold;
2284
2285 if (ex.X_op == O_illegal)
2286 as_bad (_("illegal operand"));
2287 else if (ex.X_op == O_absent)
2288 as_bad (_("missing operand"));
2289 else if (ex.X_op == O_register)
2290 {
2291 insn = ppc_insert_operand (insn, operand, ex.X_add_number,
2292 (char *) NULL, 0);
2293 }
2294 else if (ex.X_op == O_constant)
2295 {
2296 #ifdef OBJ_ELF
2297 /* Allow @HA, @L, @H on constants. */
2298 char *orig_str = str;
2299
2300 if ((reloc = ppc_elf_suffix (&str, &ex)) != BFD_RELOC_UNUSED)
2301 switch (reloc)
2302 {
2303 default:
2304 str = orig_str;
2305 break;
2306
2307 case BFD_RELOC_LO16:
2308 /* X_unsigned is the default, so if the user has done
2309 something which cleared it, we always produce a
2310 signed value. */
2311 if (ex.X_unsigned && ! (operand->flags & PPC_OPERAND_SIGNED))
2312 ex.X_add_number &= 0xffff;
2313 else
2314 ex.X_add_number = SEX16 (ex.X_add_number);
2315 break;
2316
2317 case BFD_RELOC_HI16:
2318 if (ex.X_unsigned && ! (operand->flags & PPC_OPERAND_SIGNED))
2319 ex.X_add_number = PPC_HI (ex.X_add_number);
2320 else
2321 ex.X_add_number = SEX16 (PPC_HI (ex.X_add_number));
2322 break;
2323
2324 case BFD_RELOC_HI16_S:
2325 if (ex.X_unsigned && ! (operand->flags & PPC_OPERAND_SIGNED))
2326 ex.X_add_number = PPC_HA (ex.X_add_number);
2327 else
2328 ex.X_add_number = SEX16 (PPC_HA (ex.X_add_number));
2329 break;
2330
2331 case BFD_RELOC_PPC64_HIGHER:
2332 if (ex.X_unsigned && ! (operand->flags & PPC_OPERAND_SIGNED))
2333 ex.X_add_number = PPC_HIGHER (ex.X_add_number);
2334 else
2335 ex.X_add_number = SEX16 (PPC_HIGHER (ex.X_add_number));
2336 break;
2337
2338 case BFD_RELOC_PPC64_HIGHER_S:
2339 if (ex.X_unsigned && ! (operand->flags & PPC_OPERAND_SIGNED))
2340 ex.X_add_number = PPC_HIGHERA (ex.X_add_number);
2341 else
2342 ex.X_add_number = SEX16 (PPC_HIGHERA (ex.X_add_number));
2343 break;
2344
2345 case BFD_RELOC_PPC64_HIGHEST:
2346 if (ex.X_unsigned && ! (operand->flags & PPC_OPERAND_SIGNED))
2347 ex.X_add_number = PPC_HIGHEST (ex.X_add_number);
2348 else
2349 ex.X_add_number = SEX16 (PPC_HIGHEST (ex.X_add_number));
2350 break;
2351
2352 case BFD_RELOC_PPC64_HIGHEST_S:
2353 if (ex.X_unsigned && ! (operand->flags & PPC_OPERAND_SIGNED))
2354 ex.X_add_number = PPC_HIGHESTA (ex.X_add_number);
2355 else
2356 ex.X_add_number = SEX16 (PPC_HIGHESTA (ex.X_add_number));
2357 break;
2358 }
2359 #endif /* OBJ_ELF */
2360 insn = ppc_insert_operand (insn, operand, ex.X_add_number,
2361 (char *) NULL, 0);
2362 }
2363 #ifdef OBJ_ELF
2364 else if ((reloc = ppc_elf_suffix (&str, &ex)) != BFD_RELOC_UNUSED)
2365 {
2366 /* For the absolute forms of branches, convert the PC
2367 relative form back into the absolute. */
2368 if ((operand->flags & PPC_OPERAND_ABSOLUTE) != 0)
2369 {
2370 switch (reloc)
2371 {
2372 case BFD_RELOC_PPC_B26:
2373 reloc = BFD_RELOC_PPC_BA26;
2374 break;
2375 case BFD_RELOC_PPC_B16:
2376 reloc = BFD_RELOC_PPC_BA16;
2377 break;
2378 case BFD_RELOC_PPC_B16_BRTAKEN:
2379 reloc = BFD_RELOC_PPC_BA16_BRTAKEN;
2380 break;
2381 case BFD_RELOC_PPC_B16_BRNTAKEN:
2382 reloc = BFD_RELOC_PPC_BA16_BRNTAKEN;
2383 break;
2384 default:
2385 break;
2386 }
2387 }
2388
2389 if (ppc_obj64
2390 && (operand->flags & PPC_OPERAND_DS) != 0)
2391 {
2392 switch (reloc)
2393 {
2394 case BFD_RELOC_16:
2395 reloc = BFD_RELOC_PPC64_ADDR16_DS;
2396 break;
2397 case BFD_RELOC_LO16:
2398 reloc = BFD_RELOC_PPC64_ADDR16_LO_DS;
2399 break;
2400 case BFD_RELOC_16_GOTOFF:
2401 reloc = BFD_RELOC_PPC64_GOT16_DS;
2402 break;
2403 case BFD_RELOC_LO16_GOTOFF:
2404 reloc = BFD_RELOC_PPC64_GOT16_LO_DS;
2405 break;
2406 case BFD_RELOC_LO16_PLTOFF:
2407 reloc = BFD_RELOC_PPC64_PLT16_LO_DS;
2408 break;
2409 case BFD_RELOC_16_BASEREL:
2410 reloc = BFD_RELOC_PPC64_SECTOFF_DS;
2411 break;
2412 case BFD_RELOC_LO16_BASEREL:
2413 reloc = BFD_RELOC_PPC64_SECTOFF_LO_DS;
2414 break;
2415 case BFD_RELOC_PPC_TOC16:
2416 reloc = BFD_RELOC_PPC64_TOC16_DS;
2417 break;
2418 case BFD_RELOC_PPC64_TOC16_LO:
2419 reloc = BFD_RELOC_PPC64_TOC16_LO_DS;
2420 break;
2421 case BFD_RELOC_PPC64_PLTGOT16:
2422 reloc = BFD_RELOC_PPC64_PLTGOT16_DS;
2423 break;
2424 case BFD_RELOC_PPC64_PLTGOT16_LO:
2425 reloc = BFD_RELOC_PPC64_PLTGOT16_LO_DS;
2426 break;
2427 default:
2428 as_bad (_("unsupported relocation for DS offset field"));
2429 break;
2430 }
2431 }
2432
2433 /* We need to generate a fixup for this expression. */
2434 if (fc >= MAX_INSN_FIXUPS)
2435 as_fatal (_("too many fixups"));
2436 fixups[fc].exp = ex;
2437 fixups[fc].opindex = 0;
2438 fixups[fc].reloc = reloc;
2439 ++fc;
2440 }
2441 #endif /* OBJ_ELF */
2442
2443 else
2444 {
2445 /* We need to generate a fixup for this expression. */
2446 if (fc >= MAX_INSN_FIXUPS)
2447 as_fatal (_("too many fixups"));
2448 fixups[fc].exp = ex;
2449 fixups[fc].opindex = *opindex_ptr;
2450 fixups[fc].reloc = BFD_RELOC_UNUSED;
2451 ++fc;
2452 }
2453
2454 if (need_paren)
2455 {
2456 endc = ')';
2457 need_paren = 0;
2458 }
2459 else if ((operand->flags & PPC_OPERAND_PARENS) != 0)
2460 {
2461 endc = '(';
2462 need_paren = 1;
2463 }
2464 else
2465 endc = ',';
2466
2467 /* The call to expression should have advanced str past any
2468 whitespace. */
2469 if (*str != endc
2470 && (endc != ',' || *str != '\0'))
2471 {
2472 as_bad (_("syntax error; found `%c' but expected `%c'"), *str, endc);
2473 break;
2474 }
2475
2476 if (*str != '\0')
2477 ++str;
2478 }
2479
2480 while (ISSPACE (*str))
2481 ++str;
2482
2483 if (*str != '\0')
2484 as_bad (_("junk at end of line: `%s'"), str);
2485
2486 #ifdef OBJ_ELF
2487 /* Do we need/want a APUinfo section? */
2488 if (ppc_cpu & (PPC_OPCODE_SPE
2489 | PPC_OPCODE_ISEL | PPC_OPCODE_EFS
2490 | PPC_OPCODE_BRLOCK | PPC_OPCODE_PMR | PPC_OPCODE_CACHELCK
2491 | PPC_OPCODE_RFMCI))
2492 {
2493 /* These are all version "1". */
2494 if (opcode->flags & PPC_OPCODE_SPE)
2495 ppc_apuinfo_section_add (PPC_APUINFO_SPE, 1);
2496 if (opcode->flags & PPC_OPCODE_ISEL)
2497 ppc_apuinfo_section_add (PPC_APUINFO_ISEL, 1);
2498 if (opcode->flags & PPC_OPCODE_EFS)
2499 ppc_apuinfo_section_add (PPC_APUINFO_EFS, 1);
2500 if (opcode->flags & PPC_OPCODE_BRLOCK)
2501 ppc_apuinfo_section_add (PPC_APUINFO_BRLOCK, 1);
2502 if (opcode->flags & PPC_OPCODE_PMR)
2503 ppc_apuinfo_section_add (PPC_APUINFO_PMR, 1);
2504 if (opcode->flags & PPC_OPCODE_CACHELCK)
2505 ppc_apuinfo_section_add (PPC_APUINFO_CACHELCK, 1);
2506 if (opcode->flags & PPC_OPCODE_RFMCI)
2507 ppc_apuinfo_section_add (PPC_APUINFO_RFMCI, 1);
2508 }
2509 #endif
2510
2511 /* Write out the instruction. */
2512 f = frag_more (4);
2513 md_number_to_chars (f, insn, 4);
2514
2515 #ifdef OBJ_ELF
2516 dwarf2_emit_insn (4);
2517 #endif
2518
2519 /* Create any fixups. At this point we do not use a
2520 bfd_reloc_code_real_type, but instead just use the
2521 BFD_RELOC_UNUSED plus the operand index. This lets us easily
2522 handle fixups for any operand type, although that is admittedly
2523 not a very exciting feature. We pick a BFD reloc type in
2524 md_apply_fix3. */
2525 for (i = 0; i < fc; i++)
2526 {
2527 const struct powerpc_operand *operand;
2528
2529 operand = &powerpc_operands[fixups[i].opindex];
2530 if (fixups[i].reloc != BFD_RELOC_UNUSED)
2531 {
2532 reloc_howto_type *reloc_howto;
2533 int size;
2534 int offset;
2535 fixS *fixP;
2536
2537 reloc_howto = bfd_reloc_type_lookup (stdoutput, fixups[i].reloc);
2538 if (!reloc_howto)
2539 abort ();
2540
2541 size = bfd_get_reloc_size (reloc_howto);
2542 offset = target_big_endian ? (4 - size) : 0;
2543
2544 if (size < 1 || size > 4)
2545 abort ();
2546
2547 fixP = fix_new_exp (frag_now,
2548 f - frag_now->fr_literal + offset,
2549 size,
2550 &fixups[i].exp,
2551 reloc_howto->pc_relative,
2552 fixups[i].reloc);
2553
2554 /* Turn off complaints that the addend is too large for things like
2555 foo+100000@ha. */
2556 switch (fixups[i].reloc)
2557 {
2558 case BFD_RELOC_16_GOTOFF:
2559 case BFD_RELOC_PPC_TOC16:
2560 case BFD_RELOC_LO16:
2561 case BFD_RELOC_HI16:
2562 case BFD_RELOC_HI16_S:
2563 #ifdef OBJ_ELF
2564 case BFD_RELOC_PPC64_HIGHER:
2565 case BFD_RELOC_PPC64_HIGHER_S:
2566 case BFD_RELOC_PPC64_HIGHEST:
2567 case BFD_RELOC_PPC64_HIGHEST_S:
2568 #endif
2569 fixP->fx_no_overflow = 1;
2570 break;
2571 default:
2572 break;
2573 }
2574 }
2575 else
2576 fix_new_exp (frag_now,
2577 f - frag_now->fr_literal,
2578 4,
2579 &fixups[i].exp,
2580 (operand->flags & PPC_OPERAND_RELATIVE) != 0,
2581 ((bfd_reloc_code_real_type)
2582 (fixups[i].opindex + (int) BFD_RELOC_UNUSED)));
2583 }
2584 }
2585
2586 /* Handle a macro. Gather all the operands, transform them as
2587 described by the macro, and call md_assemble recursively. All the
2588 operands are separated by commas; we don't accept parentheses
2589 around operands here. */
2590
2591 static void
2592 ppc_macro (str, macro)
2593 char *str;
2594 const struct powerpc_macro *macro;
2595 {
2596 char *operands[10];
2597 unsigned int count;
2598 char *s;
2599 unsigned int len;
2600 const char *format;
2601 int arg;
2602 char *send;
2603 char *complete;
2604
2605 /* Gather the users operands into the operands array. */
2606 count = 0;
2607 s = str;
2608 while (1)
2609 {
2610 if (count >= sizeof operands / sizeof operands[0])
2611 break;
2612 operands[count++] = s;
2613 s = strchr (s, ',');
2614 if (s == (char *) NULL)
2615 break;
2616 *s++ = '\0';
2617 }
2618
2619 if (count != macro->operands)
2620 {
2621 as_bad (_("wrong number of operands"));
2622 return;
2623 }
2624
2625 /* Work out how large the string must be (the size is unbounded
2626 because it includes user input). */
2627 len = 0;
2628 format = macro->format;
2629 while (*format != '\0')
2630 {
2631 if (*format != '%')
2632 {
2633 ++len;
2634 ++format;
2635 }
2636 else
2637 {
2638 arg = strtol (format + 1, &send, 10);
2639 know (send != format && arg >= 0 && arg < count);
2640 len += strlen (operands[arg]);
2641 format = send;
2642 }
2643 }
2644
2645 /* Put the string together. */
2646 complete = s = (char *) alloca (len + 1);
2647 format = macro->format;
2648 while (*format != '\0')
2649 {
2650 if (*format != '%')
2651 *s++ = *format++;
2652 else
2653 {
2654 arg = strtol (format + 1, &send, 10);
2655 strcpy (s, operands[arg]);
2656 s += strlen (s);
2657 format = send;
2658 }
2659 }
2660 *s = '\0';
2661
2662 /* Assemble the constructed instruction. */
2663 md_assemble (complete);
2664 }
2665 \f
2666 #ifdef OBJ_ELF
2667 /* For ELF, add support for SHF_EXCLUDE and SHT_ORDERED. */
2668
2669 int
2670 ppc_section_letter (letter, ptr_msg)
2671 int letter;
2672 char **ptr_msg;
2673 {
2674 if (letter == 'e')
2675 return SHF_EXCLUDE;
2676
2677 *ptr_msg = _("Bad .section directive: want a,e,w,x,M,S,G,T in string");
2678 return 0;
2679 }
2680
2681 int
2682 ppc_section_word (str, len)
2683 char *str;
2684 size_t len;
2685 {
2686 if (len == 7 && strncmp (str, "exclude", 7) == 0)
2687 return SHF_EXCLUDE;
2688
2689 return -1;
2690 }
2691
2692 int
2693 ppc_section_type (str, len)
2694 char *str;
2695 size_t len;
2696 {
2697 if (len == 7 && strncmp (str, "ordered", 7) == 0)
2698 return SHT_ORDERED;
2699
2700 return -1;
2701 }
2702
2703 int
2704 ppc_section_flags (flags, attr, type)
2705 int flags;
2706 int attr;
2707 int type;
2708 {
2709 if (type == SHT_ORDERED)
2710 flags |= SEC_ALLOC | SEC_LOAD | SEC_SORT_ENTRIES;
2711
2712 if (attr & SHF_EXCLUDE)
2713 flags |= SEC_EXCLUDE;
2714
2715 return flags;
2716 }
2717 #endif /* OBJ_ELF */
2718
2719 \f
2720 /* Pseudo-op handling. */
2721
2722 /* The .byte pseudo-op. This is similar to the normal .byte
2723 pseudo-op, but it can also take a single ASCII string. */
2724
2725 static void
2726 ppc_byte (ignore)
2727 int ignore ATTRIBUTE_UNUSED;
2728 {
2729 if (*input_line_pointer != '\"')
2730 {
2731 cons (1);
2732 return;
2733 }
2734
2735 /* Gather characters. A real double quote is doubled. Unusual
2736 characters are not permitted. */
2737 ++input_line_pointer;
2738 while (1)
2739 {
2740 char c;
2741
2742 c = *input_line_pointer++;
2743
2744 if (c == '\"')
2745 {
2746 if (*input_line_pointer != '\"')
2747 break;
2748 ++input_line_pointer;
2749 }
2750
2751 FRAG_APPEND_1_CHAR (c);
2752 }
2753
2754 demand_empty_rest_of_line ();
2755 }
2756 \f
2757 #ifdef OBJ_XCOFF
2758
2759 /* XCOFF specific pseudo-op handling. */
2760
2761 /* This is set if we are creating a .stabx symbol, since we don't want
2762 to handle symbol suffixes for such symbols. */
2763 static bfd_boolean ppc_stab_symbol;
2764
2765 /* The .comm and .lcomm pseudo-ops for XCOFF. XCOFF puts common
2766 symbols in the .bss segment as though they were local common
2767 symbols, and uses a different smclas. The native Aix 4.3.3 assember
2768 aligns .comm and .lcomm to 4 bytes. */
2769
2770 static void
2771 ppc_comm (lcomm)
2772 int lcomm;
2773 {
2774 asection *current_seg = now_seg;
2775 subsegT current_subseg = now_subseg;
2776 char *name;
2777 char endc;
2778 char *end_name;
2779 offsetT size;
2780 offsetT align;
2781 symbolS *lcomm_sym = NULL;
2782 symbolS *sym;
2783 char *pfrag;
2784
2785 name = input_line_pointer;
2786 endc = get_symbol_end ();
2787 end_name = input_line_pointer;
2788 *end_name = endc;
2789
2790 if (*input_line_pointer != ',')
2791 {
2792 as_bad (_("missing size"));
2793 ignore_rest_of_line ();
2794 return;
2795 }
2796 ++input_line_pointer;
2797
2798 size = get_absolute_expression ();
2799 if (size < 0)
2800 {
2801 as_bad (_("negative size"));
2802 ignore_rest_of_line ();
2803 return;
2804 }
2805
2806 if (! lcomm)
2807 {
2808 /* The third argument to .comm is the alignment. */
2809 if (*input_line_pointer != ',')
2810 align = 2;
2811 else
2812 {
2813 ++input_line_pointer;
2814 align = get_absolute_expression ();
2815 if (align <= 0)
2816 {
2817 as_warn (_("ignoring bad alignment"));
2818 align = 2;
2819 }
2820 }
2821 }
2822 else
2823 {
2824 char *lcomm_name;
2825 char lcomm_endc;
2826
2827 if (size <= 4)
2828 align = 2;
2829 else
2830 align = 3;
2831
2832 /* The third argument to .lcomm appears to be the real local
2833 common symbol to create. References to the symbol named in
2834 the first argument are turned into references to the third
2835 argument. */
2836 if (*input_line_pointer != ',')
2837 {
2838 as_bad (_("missing real symbol name"));
2839 ignore_rest_of_line ();
2840 return;
2841 }
2842 ++input_line_pointer;
2843
2844 lcomm_name = input_line_pointer;
2845 lcomm_endc = get_symbol_end ();
2846
2847 lcomm_sym = symbol_find_or_make (lcomm_name);
2848
2849 *input_line_pointer = lcomm_endc;
2850 }
2851
2852 *end_name = '\0';
2853 sym = symbol_find_or_make (name);
2854 *end_name = endc;
2855
2856 if (S_IS_DEFINED (sym)
2857 || S_GET_VALUE (sym) != 0)
2858 {
2859 as_bad (_("attempt to redefine symbol"));
2860 ignore_rest_of_line ();
2861 return;
2862 }
2863
2864 record_alignment (bss_section, align);
2865
2866 if (! lcomm
2867 || ! S_IS_DEFINED (lcomm_sym))
2868 {
2869 symbolS *def_sym;
2870 offsetT def_size;
2871
2872 if (! lcomm)
2873 {
2874 def_sym = sym;
2875 def_size = size;
2876 S_SET_EXTERNAL (sym);
2877 }
2878 else
2879 {
2880 symbol_get_tc (lcomm_sym)->output = 1;
2881 def_sym = lcomm_sym;
2882 def_size = 0;
2883 }
2884
2885 subseg_set (bss_section, 1);
2886 frag_align (align, 0, 0);
2887
2888 symbol_set_frag (def_sym, frag_now);
2889 pfrag = frag_var (rs_org, 1, 1, (relax_substateT) 0, def_sym,
2890 def_size, (char *) NULL);
2891 *pfrag = 0;
2892 S_SET_SEGMENT (def_sym, bss_section);
2893 symbol_get_tc (def_sym)->align = align;
2894 }
2895 else if (lcomm)
2896 {
2897 /* Align the size of lcomm_sym. */
2898 symbol_get_frag (lcomm_sym)->fr_offset =
2899 ((symbol_get_frag (lcomm_sym)->fr_offset + (1 << align) - 1)
2900 &~ ((1 << align) - 1));
2901 if (align > symbol_get_tc (lcomm_sym)->align)
2902 symbol_get_tc (lcomm_sym)->align = align;
2903 }
2904
2905 if (lcomm)
2906 {
2907 /* Make sym an offset from lcomm_sym. */
2908 S_SET_SEGMENT (sym, bss_section);
2909 symbol_set_frag (sym, symbol_get_frag (lcomm_sym));
2910 S_SET_VALUE (sym, symbol_get_frag (lcomm_sym)->fr_offset);
2911 symbol_get_frag (lcomm_sym)->fr_offset += size;
2912 }
2913
2914 subseg_set (current_seg, current_subseg);
2915
2916 demand_empty_rest_of_line ();
2917 }
2918
2919 /* The .csect pseudo-op. This switches us into a different
2920 subsegment. The first argument is a symbol whose value is the
2921 start of the .csect. In COFF, csect symbols get special aux
2922 entries defined by the x_csect field of union internal_auxent. The
2923 optional second argument is the alignment (the default is 2). */
2924
2925 static void
2926 ppc_csect (ignore)
2927 int ignore ATTRIBUTE_UNUSED;
2928 {
2929 char *name;
2930 char endc;
2931 symbolS *sym;
2932
2933 name = input_line_pointer;
2934 endc = get_symbol_end ();
2935
2936 sym = symbol_find_or_make (name);
2937
2938 *input_line_pointer = endc;
2939
2940 if (S_GET_NAME (sym)[0] == '\0')
2941 {
2942 /* An unnamed csect is assumed to be [PR]. */
2943 symbol_get_tc (sym)->class = XMC_PR;
2944 }
2945
2946 ppc_change_csect (sym);
2947
2948 if (*input_line_pointer == ',')
2949 {
2950 ++input_line_pointer;
2951 symbol_get_tc (sym)->align = get_absolute_expression ();
2952 }
2953
2954 demand_empty_rest_of_line ();
2955 }
2956
2957 /* Change to a different csect. */
2958
2959 static void
2960 ppc_change_csect (sym)
2961 symbolS *sym;
2962 {
2963 if (S_IS_DEFINED (sym))
2964 subseg_set (S_GET_SEGMENT (sym), symbol_get_tc (sym)->subseg);
2965 else
2966 {
2967 symbolS **list_ptr;
2968 int after_toc;
2969 int hold_chunksize;
2970 symbolS *list;
2971
2972 /* This is a new csect. We need to look at the symbol class to
2973 figure out whether it should go in the text section or the
2974 data section. */
2975 after_toc = 0;
2976 switch (symbol_get_tc (sym)->class)
2977 {
2978 case XMC_PR:
2979 case XMC_RO:
2980 case XMC_DB:
2981 case XMC_GL:
2982 case XMC_XO:
2983 case XMC_SV:
2984 case XMC_TI:
2985 case XMC_TB:
2986 S_SET_SEGMENT (sym, text_section);
2987 symbol_get_tc (sym)->subseg = ppc_text_subsegment;
2988 ++ppc_text_subsegment;
2989 list_ptr = &ppc_text_csects;
2990 break;
2991 case XMC_RW:
2992 case XMC_TC0:
2993 case XMC_TC:
2994 case XMC_DS:
2995 case XMC_UA:
2996 case XMC_BS:
2997 case XMC_UC:
2998 if (ppc_toc_csect != NULL
2999 && (symbol_get_tc (ppc_toc_csect)->subseg + 1
3000 == ppc_data_subsegment))
3001 after_toc = 1;
3002 S_SET_SEGMENT (sym, data_section);
3003 symbol_get_tc (sym)->subseg = ppc_data_subsegment;
3004 ++ppc_data_subsegment;
3005 list_ptr = &ppc_data_csects;
3006 break;
3007 default:
3008 abort ();
3009 }
3010
3011 /* We set the obstack chunk size to a small value before
3012 changing subsegments, so that we don't use a lot of memory
3013 space for what may be a small section. */
3014 hold_chunksize = chunksize;
3015 chunksize = 64;
3016
3017 subseg_new (segment_name (S_GET_SEGMENT (sym)),
3018 symbol_get_tc (sym)->subseg);
3019
3020 chunksize = hold_chunksize;
3021
3022 if (after_toc)
3023 ppc_after_toc_frag = frag_now;
3024
3025 symbol_set_frag (sym, frag_now);
3026 S_SET_VALUE (sym, (valueT) frag_now_fix ());
3027
3028 symbol_get_tc (sym)->align = 2;
3029 symbol_get_tc (sym)->output = 1;
3030 symbol_get_tc (sym)->within = sym;
3031
3032 for (list = *list_ptr;
3033 symbol_get_tc (list)->next != (symbolS *) NULL;
3034 list = symbol_get_tc (list)->next)
3035 ;
3036 symbol_get_tc (list)->next = sym;
3037
3038 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
3039 symbol_append (sym, symbol_get_tc (list)->within, &symbol_rootP,
3040 &symbol_lastP);
3041 }
3042
3043 ppc_current_csect = sym;
3044 }
3045
3046 /* This function handles the .text and .data pseudo-ops. These
3047 pseudo-ops aren't really used by XCOFF; we implement them for the
3048 convenience of people who aren't used to XCOFF. */
3049
3050 static void
3051 ppc_section (type)
3052 int type;
3053 {
3054 const char *name;
3055 symbolS *sym;
3056
3057 if (type == 't')
3058 name = ".text[PR]";
3059 else if (type == 'd')
3060 name = ".data[RW]";
3061 else
3062 abort ();
3063
3064 sym = symbol_find_or_make (name);
3065
3066 ppc_change_csect (sym);
3067
3068 demand_empty_rest_of_line ();
3069 }
3070
3071 /* This function handles the .section pseudo-op. This is mostly to
3072 give an error, since XCOFF only supports .text, .data and .bss, but
3073 we do permit the user to name the text or data section. */
3074
3075 static void
3076 ppc_named_section (ignore)
3077 int ignore ATTRIBUTE_UNUSED;
3078 {
3079 char *user_name;
3080 const char *real_name;
3081 char c;
3082 symbolS *sym;
3083
3084 user_name = input_line_pointer;
3085 c = get_symbol_end ();
3086
3087 if (strcmp (user_name, ".text") == 0)
3088 real_name = ".text[PR]";
3089 else if (strcmp (user_name, ".data") == 0)
3090 real_name = ".data[RW]";
3091 else
3092 {
3093 as_bad (_("The XCOFF file format does not support arbitrary sections"));
3094 *input_line_pointer = c;
3095 ignore_rest_of_line ();
3096 return;
3097 }
3098
3099 *input_line_pointer = c;
3100
3101 sym = symbol_find_or_make (real_name);
3102
3103 ppc_change_csect (sym);
3104
3105 demand_empty_rest_of_line ();
3106 }
3107
3108 /* The .extern pseudo-op. We create an undefined symbol. */
3109
3110 static void
3111 ppc_extern (ignore)
3112 int ignore ATTRIBUTE_UNUSED;
3113 {
3114 char *name;
3115 char endc;
3116
3117 name = input_line_pointer;
3118 endc = get_symbol_end ();
3119
3120 (void) symbol_find_or_make (name);
3121
3122 *input_line_pointer = endc;
3123
3124 demand_empty_rest_of_line ();
3125 }
3126
3127 /* The .lglobl pseudo-op. Keep the symbol in the symbol table. */
3128
3129 static void
3130 ppc_lglobl (ignore)
3131 int ignore ATTRIBUTE_UNUSED;
3132 {
3133 char *name;
3134 char endc;
3135 symbolS *sym;
3136
3137 name = input_line_pointer;
3138 endc = get_symbol_end ();
3139
3140 sym = symbol_find_or_make (name);
3141
3142 *input_line_pointer = endc;
3143
3144 symbol_get_tc (sym)->output = 1;
3145
3146 demand_empty_rest_of_line ();
3147 }
3148
3149 /* The .rename pseudo-op. The RS/6000 assembler can rename symbols,
3150 although I don't know why it bothers. */
3151
3152 static void
3153 ppc_rename (ignore)
3154 int ignore ATTRIBUTE_UNUSED;
3155 {
3156 char *name;
3157 char endc;
3158 symbolS *sym;
3159 int len;
3160
3161 name = input_line_pointer;
3162 endc = get_symbol_end ();
3163
3164 sym = symbol_find_or_make (name);
3165
3166 *input_line_pointer = endc;
3167
3168 if (*input_line_pointer != ',')
3169 {
3170 as_bad (_("missing rename string"));
3171 ignore_rest_of_line ();
3172 return;
3173 }
3174 ++input_line_pointer;
3175
3176 symbol_get_tc (sym)->real_name = demand_copy_C_string (&len);
3177
3178 demand_empty_rest_of_line ();
3179 }
3180
3181 /* The .stabx pseudo-op. This is similar to a normal .stabs
3182 pseudo-op, but slightly different. A sample is
3183 .stabx "main:F-1",.main,142,0
3184 The first argument is the symbol name to create. The second is the
3185 value, and the third is the storage class. The fourth seems to be
3186 always zero, and I am assuming it is the type. */
3187
3188 static void
3189 ppc_stabx (ignore)
3190 int ignore ATTRIBUTE_UNUSED;
3191 {
3192 char *name;
3193 int len;
3194 symbolS *sym;
3195 expressionS exp;
3196
3197 name = demand_copy_C_string (&len);
3198
3199 if (*input_line_pointer != ',')
3200 {
3201 as_bad (_("missing value"));
3202 return;
3203 }
3204 ++input_line_pointer;
3205
3206 ppc_stab_symbol = TRUE;
3207 sym = symbol_make (name);
3208 ppc_stab_symbol = FALSE;
3209
3210 symbol_get_tc (sym)->real_name = name;
3211
3212 (void) expression (&exp);
3213
3214 switch (exp.X_op)
3215 {
3216 case O_illegal:
3217 case O_absent:
3218 case O_big:
3219 as_bad (_("illegal .stabx expression; zero assumed"));
3220 exp.X_add_number = 0;
3221 /* Fall through. */
3222 case O_constant:
3223 S_SET_VALUE (sym, (valueT) exp.X_add_number);
3224 symbol_set_frag (sym, &zero_address_frag);
3225 break;
3226
3227 case O_symbol:
3228 if (S_GET_SEGMENT (exp.X_add_symbol) == undefined_section)
3229 symbol_set_value_expression (sym, &exp);
3230 else
3231 {
3232 S_SET_VALUE (sym,
3233 exp.X_add_number + S_GET_VALUE (exp.X_add_symbol));
3234 symbol_set_frag (sym, symbol_get_frag (exp.X_add_symbol));
3235 }
3236 break;
3237
3238 default:
3239 /* The value is some complex expression. This will probably
3240 fail at some later point, but this is probably the right
3241 thing to do here. */
3242 symbol_set_value_expression (sym, &exp);
3243 break;
3244 }
3245
3246 S_SET_SEGMENT (sym, ppc_coff_debug_section);
3247 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
3248
3249 if (*input_line_pointer != ',')
3250 {
3251 as_bad (_("missing class"));
3252 return;
3253 }
3254 ++input_line_pointer;
3255
3256 S_SET_STORAGE_CLASS (sym, get_absolute_expression ());
3257
3258 if (*input_line_pointer != ',')
3259 {
3260 as_bad (_("missing type"));
3261 return;
3262 }
3263 ++input_line_pointer;
3264
3265 S_SET_DATA_TYPE (sym, get_absolute_expression ());
3266
3267 symbol_get_tc (sym)->output = 1;
3268
3269 if (S_GET_STORAGE_CLASS (sym) == C_STSYM) {
3270
3271 symbol_get_tc (sym)->within = ppc_current_block;
3272
3273 /* In this case :
3274
3275 .bs name
3276 .stabx "z",arrays_,133,0
3277 .es
3278
3279 .comm arrays_,13768,3
3280
3281 resolve_symbol_value will copy the exp's "within" into sym's when the
3282 offset is 0. Since this seems to be corner case problem,
3283 only do the correction for storage class C_STSYM. A better solution
3284 would be to have the tc field updated in ppc_symbol_new_hook. */
3285
3286 if (exp.X_op == O_symbol)
3287 {
3288 symbol_get_tc (exp.X_add_symbol)->within = ppc_current_block;
3289 }
3290 }
3291
3292 if (exp.X_op != O_symbol
3293 || ! S_IS_EXTERNAL (exp.X_add_symbol)
3294 || S_GET_SEGMENT (exp.X_add_symbol) != bss_section)
3295 ppc_frob_label (sym);
3296 else
3297 {
3298 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
3299 symbol_append (sym, exp.X_add_symbol, &symbol_rootP, &symbol_lastP);
3300 if (symbol_get_tc (ppc_current_csect)->within == exp.X_add_symbol)
3301 symbol_get_tc (ppc_current_csect)->within = sym;
3302 }
3303
3304 demand_empty_rest_of_line ();
3305 }
3306
3307 /* The .function pseudo-op. This takes several arguments. The first
3308 argument seems to be the external name of the symbol. The second
3309 argment seems to be the label for the start of the function. gcc
3310 uses the same name for both. I have no idea what the third and
3311 fourth arguments are meant to be. The optional fifth argument is
3312 an expression for the size of the function. In COFF this symbol
3313 gets an aux entry like that used for a csect. */
3314
3315 static void
3316 ppc_function (ignore)
3317 int ignore ATTRIBUTE_UNUSED;
3318 {
3319 char *name;
3320 char endc;
3321 char *s;
3322 symbolS *ext_sym;
3323 symbolS *lab_sym;
3324
3325 name = input_line_pointer;
3326 endc = get_symbol_end ();
3327
3328 /* Ignore any [PR] suffix. */
3329 name = ppc_canonicalize_symbol_name (name);
3330 s = strchr (name, '[');
3331 if (s != (char *) NULL
3332 && strcmp (s + 1, "PR]") == 0)
3333 *s = '\0';
3334
3335 ext_sym = symbol_find_or_make (name);
3336
3337 *input_line_pointer = endc;
3338
3339 if (*input_line_pointer != ',')
3340 {
3341 as_bad (_("missing symbol name"));
3342 ignore_rest_of_line ();
3343 return;
3344 }
3345 ++input_line_pointer;
3346
3347 name = input_line_pointer;
3348 endc = get_symbol_end ();
3349
3350 lab_sym = symbol_find_or_make (name);
3351
3352 *input_line_pointer = endc;
3353
3354 if (ext_sym != lab_sym)
3355 {
3356 expressionS exp;
3357
3358 exp.X_op = O_symbol;
3359 exp.X_add_symbol = lab_sym;
3360 exp.X_op_symbol = NULL;
3361 exp.X_add_number = 0;
3362 exp.X_unsigned = 0;
3363 symbol_set_value_expression (ext_sym, &exp);
3364 }
3365
3366 if (symbol_get_tc (ext_sym)->class == -1)
3367 symbol_get_tc (ext_sym)->class = XMC_PR;
3368 symbol_get_tc (ext_sym)->output = 1;
3369
3370 if (*input_line_pointer == ',')
3371 {
3372 expressionS ignore;
3373
3374 /* Ignore the third argument. */
3375 ++input_line_pointer;
3376 expression (&ignore);
3377 if (*input_line_pointer == ',')
3378 {
3379 /* Ignore the fourth argument. */
3380 ++input_line_pointer;
3381 expression (&ignore);
3382 if (*input_line_pointer == ',')
3383 {
3384 /* The fifth argument is the function size. */
3385 ++input_line_pointer;
3386 symbol_get_tc (ext_sym)->size = symbol_new ("L0\001",
3387 absolute_section,
3388 (valueT) 0,
3389 &zero_address_frag);
3390 pseudo_set (symbol_get_tc (ext_sym)->size);
3391 }
3392 }
3393 }
3394
3395 S_SET_DATA_TYPE (ext_sym, DT_FCN << N_BTSHFT);
3396 SF_SET_FUNCTION (ext_sym);
3397 SF_SET_PROCESS (ext_sym);
3398 coff_add_linesym (ext_sym);
3399
3400 demand_empty_rest_of_line ();
3401 }
3402
3403 /* The .bf pseudo-op. This is just like a COFF C_FCN symbol named
3404 ".bf". If the pseudo op .bi was seen before .bf, patch the .bi sym
3405 with the correct line number */
3406
3407 static symbolS *saved_bi_sym = 0;
3408
3409 static void
3410 ppc_bf (ignore)
3411 int ignore ATTRIBUTE_UNUSED;
3412 {
3413 symbolS *sym;
3414
3415 sym = symbol_make (".bf");
3416 S_SET_SEGMENT (sym, text_section);
3417 symbol_set_frag (sym, frag_now);
3418 S_SET_VALUE (sym, frag_now_fix ());
3419 S_SET_STORAGE_CLASS (sym, C_FCN);
3420
3421 coff_line_base = get_absolute_expression ();
3422
3423 S_SET_NUMBER_AUXILIARY (sym, 1);
3424 SA_SET_SYM_LNNO (sym, coff_line_base);
3425
3426 /* Line number for bi. */
3427 if (saved_bi_sym)
3428 {
3429 S_SET_VALUE (saved_bi_sym, coff_n_line_nos);
3430 saved_bi_sym = 0;
3431 }
3432
3433
3434 symbol_get_tc (sym)->output = 1;
3435
3436 ppc_frob_label (sym);
3437
3438 demand_empty_rest_of_line ();
3439 }
3440
3441 /* The .ef pseudo-op. This is just like a COFF C_FCN symbol named
3442 ".ef", except that the line number is absolute, not relative to the
3443 most recent ".bf" symbol. */
3444
3445 static void
3446 ppc_ef (ignore)
3447 int ignore ATTRIBUTE_UNUSED;
3448 {
3449 symbolS *sym;
3450
3451 sym = symbol_make (".ef");
3452 S_SET_SEGMENT (sym, text_section);
3453 symbol_set_frag (sym, frag_now);
3454 S_SET_VALUE (sym, frag_now_fix ());
3455 S_SET_STORAGE_CLASS (sym, C_FCN);
3456 S_SET_NUMBER_AUXILIARY (sym, 1);
3457 SA_SET_SYM_LNNO (sym, get_absolute_expression ());
3458 symbol_get_tc (sym)->output = 1;
3459
3460 ppc_frob_label (sym);
3461
3462 demand_empty_rest_of_line ();
3463 }
3464
3465 /* The .bi and .ei pseudo-ops. These take a string argument and
3466 generates a C_BINCL or C_EINCL symbol, which goes at the start of
3467 the symbol list. The value of .bi will be know when the next .bf
3468 is encountered. */
3469
3470 static void
3471 ppc_biei (ei)
3472 int ei;
3473 {
3474 static symbolS *last_biei;
3475
3476 char *name;
3477 int len;
3478 symbolS *sym;
3479 symbolS *look;
3480
3481 name = demand_copy_C_string (&len);
3482
3483 /* The value of these symbols is actually file offset. Here we set
3484 the value to the index into the line number entries. In
3485 ppc_frob_symbols we set the fix_line field, which will cause BFD
3486 to do the right thing. */
3487
3488 sym = symbol_make (name);
3489 /* obj-coff.c currently only handles line numbers correctly in the
3490 .text section. */
3491 S_SET_SEGMENT (sym, text_section);
3492 S_SET_VALUE (sym, coff_n_line_nos);
3493 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
3494
3495 S_SET_STORAGE_CLASS (sym, ei ? C_EINCL : C_BINCL);
3496 symbol_get_tc (sym)->output = 1;
3497
3498 /* Save bi. */
3499 if (ei)
3500 saved_bi_sym = 0;
3501 else
3502 saved_bi_sym = sym;
3503
3504 for (look = last_biei ? last_biei : symbol_rootP;
3505 (look != (symbolS *) NULL
3506 && (S_GET_STORAGE_CLASS (look) == C_FILE
3507 || S_GET_STORAGE_CLASS (look) == C_BINCL
3508 || S_GET_STORAGE_CLASS (look) == C_EINCL));
3509 look = symbol_next (look))
3510 ;
3511 if (look != (symbolS *) NULL)
3512 {
3513 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
3514 symbol_insert (sym, look, &symbol_rootP, &symbol_lastP);
3515 last_biei = sym;
3516 }
3517
3518 demand_empty_rest_of_line ();
3519 }
3520
3521 /* The .bs pseudo-op. This generates a C_BSTAT symbol named ".bs".
3522 There is one argument, which is a csect symbol. The value of the
3523 .bs symbol is the index of this csect symbol. */
3524
3525 static void
3526 ppc_bs (ignore)
3527 int ignore ATTRIBUTE_UNUSED;
3528 {
3529 char *name;
3530 char endc;
3531 symbolS *csect;
3532 symbolS *sym;
3533
3534 if (ppc_current_block != NULL)
3535 as_bad (_("nested .bs blocks"));
3536
3537 name = input_line_pointer;
3538 endc = get_symbol_end ();
3539
3540 csect = symbol_find_or_make (name);
3541
3542 *input_line_pointer = endc;
3543
3544 sym = symbol_make (".bs");
3545 S_SET_SEGMENT (sym, now_seg);
3546 S_SET_STORAGE_CLASS (sym, C_BSTAT);
3547 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
3548 symbol_get_tc (sym)->output = 1;
3549
3550 symbol_get_tc (sym)->within = csect;
3551
3552 ppc_frob_label (sym);
3553
3554 ppc_current_block = sym;
3555
3556 demand_empty_rest_of_line ();
3557 }
3558
3559 /* The .es pseudo-op. Generate a C_ESTART symbol named .es. */
3560
3561 static void
3562 ppc_es (ignore)
3563 int ignore ATTRIBUTE_UNUSED;
3564 {
3565 symbolS *sym;
3566
3567 if (ppc_current_block == NULL)
3568 as_bad (_(".es without preceding .bs"));
3569
3570 sym = symbol_make (".es");
3571 S_SET_SEGMENT (sym, now_seg);
3572 S_SET_STORAGE_CLASS (sym, C_ESTAT);
3573 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
3574 symbol_get_tc (sym)->output = 1;
3575
3576 ppc_frob_label (sym);
3577
3578 ppc_current_block = NULL;
3579
3580 demand_empty_rest_of_line ();
3581 }
3582
3583 /* The .bb pseudo-op. Generate a C_BLOCK symbol named .bb, with a
3584 line number. */
3585
3586 static void
3587 ppc_bb (ignore)
3588 int ignore ATTRIBUTE_UNUSED;
3589 {
3590 symbolS *sym;
3591
3592 sym = symbol_make (".bb");
3593 S_SET_SEGMENT (sym, text_section);
3594 symbol_set_frag (sym, frag_now);
3595 S_SET_VALUE (sym, frag_now_fix ());
3596 S_SET_STORAGE_CLASS (sym, C_BLOCK);
3597
3598 S_SET_NUMBER_AUXILIARY (sym, 1);
3599 SA_SET_SYM_LNNO (sym, get_absolute_expression ());
3600
3601 symbol_get_tc (sym)->output = 1;
3602
3603 SF_SET_PROCESS (sym);
3604
3605 ppc_frob_label (sym);
3606
3607 demand_empty_rest_of_line ();
3608 }
3609
3610 /* The .eb pseudo-op. Generate a C_BLOCK symbol named .eb, with a
3611 line number. */
3612
3613 static void
3614 ppc_eb (ignore)
3615 int ignore ATTRIBUTE_UNUSED;
3616 {
3617 symbolS *sym;
3618
3619 sym = symbol_make (".eb");
3620 S_SET_SEGMENT (sym, text_section);
3621 symbol_set_frag (sym, frag_now);
3622 S_SET_VALUE (sym, frag_now_fix ());
3623 S_SET_STORAGE_CLASS (sym, C_BLOCK);
3624 S_SET_NUMBER_AUXILIARY (sym, 1);
3625 SA_SET_SYM_LNNO (sym, get_absolute_expression ());
3626 symbol_get_tc (sym)->output = 1;
3627
3628 SF_SET_PROCESS (sym);
3629
3630 ppc_frob_label (sym);
3631
3632 demand_empty_rest_of_line ();
3633 }
3634
3635 /* The .bc pseudo-op. This just creates a C_BCOMM symbol with a
3636 specified name. */
3637
3638 static void
3639 ppc_bc (ignore)
3640 int ignore ATTRIBUTE_UNUSED;
3641 {
3642 char *name;
3643 int len;
3644 symbolS *sym;
3645
3646 name = demand_copy_C_string (&len);
3647 sym = symbol_make (name);
3648 S_SET_SEGMENT (sym, ppc_coff_debug_section);
3649 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
3650 S_SET_STORAGE_CLASS (sym, C_BCOMM);
3651 S_SET_VALUE (sym, 0);
3652 symbol_get_tc (sym)->output = 1;
3653
3654 ppc_frob_label (sym);
3655
3656 demand_empty_rest_of_line ();
3657 }
3658
3659 /* The .ec pseudo-op. This just creates a C_ECOMM symbol. */
3660
3661 static void
3662 ppc_ec (ignore)
3663 int ignore ATTRIBUTE_UNUSED;
3664 {
3665 symbolS *sym;
3666
3667 sym = symbol_make (".ec");
3668 S_SET_SEGMENT (sym, ppc_coff_debug_section);
3669 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
3670 S_SET_STORAGE_CLASS (sym, C_ECOMM);
3671 S_SET_VALUE (sym, 0);
3672 symbol_get_tc (sym)->output = 1;
3673
3674 ppc_frob_label (sym);
3675
3676 demand_empty_rest_of_line ();
3677 }
3678
3679 /* The .toc pseudo-op. Switch to the .toc subsegment. */
3680
3681 static void
3682 ppc_toc (ignore)
3683 int ignore ATTRIBUTE_UNUSED;
3684 {
3685 if (ppc_toc_csect != (symbolS *) NULL)
3686 subseg_set (data_section, symbol_get_tc (ppc_toc_csect)->subseg);
3687 else
3688 {
3689 subsegT subseg;
3690 symbolS *sym;
3691 symbolS *list;
3692
3693 subseg = ppc_data_subsegment;
3694 ++ppc_data_subsegment;
3695
3696 subseg_new (segment_name (data_section), subseg);
3697 ppc_toc_frag = frag_now;
3698
3699 sym = symbol_find_or_make ("TOC[TC0]");
3700 symbol_set_frag (sym, frag_now);
3701 S_SET_SEGMENT (sym, data_section);
3702 S_SET_VALUE (sym, (valueT) frag_now_fix ());
3703 symbol_get_tc (sym)->subseg = subseg;
3704 symbol_get_tc (sym)->output = 1;
3705 symbol_get_tc (sym)->within = sym;
3706
3707 ppc_toc_csect = sym;
3708
3709 for (list = ppc_data_csects;
3710 symbol_get_tc (list)->next != (symbolS *) NULL;
3711 list = symbol_get_tc (list)->next)
3712 ;
3713 symbol_get_tc (list)->next = sym;
3714
3715 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
3716 symbol_append (sym, symbol_get_tc (list)->within, &symbol_rootP,
3717 &symbol_lastP);
3718 }
3719
3720 ppc_current_csect = ppc_toc_csect;
3721
3722 demand_empty_rest_of_line ();
3723 }
3724
3725 /* The AIX assembler automatically aligns the operands of a .long or
3726 .short pseudo-op, and we want to be compatible. */
3727
3728 static void
3729 ppc_xcoff_cons (log_size)
3730 int log_size;
3731 {
3732 frag_align (log_size, 0, 0);
3733 record_alignment (now_seg, log_size);
3734 cons (1 << log_size);
3735 }
3736
3737 static void
3738 ppc_vbyte (dummy)
3739 int dummy ATTRIBUTE_UNUSED;
3740 {
3741 expressionS exp;
3742 int byte_count;
3743
3744 (void) expression (&exp);
3745
3746 if (exp.X_op != O_constant)
3747 {
3748 as_bad (_("non-constant byte count"));
3749 return;
3750 }
3751
3752 byte_count = exp.X_add_number;
3753
3754 if (*input_line_pointer != ',')
3755 {
3756 as_bad (_("missing value"));
3757 return;
3758 }
3759
3760 ++input_line_pointer;
3761 cons (byte_count);
3762 }
3763
3764 #endif /* OBJ_XCOFF */
3765 #if defined (OBJ_XCOFF) || defined (OBJ_ELF)
3766 \f
3767 /* The .tc pseudo-op. This is used when generating either XCOFF or
3768 ELF. This takes two or more arguments.
3769
3770 When generating XCOFF output, the first argument is the name to
3771 give to this location in the toc; this will be a symbol with class
3772 TC. The rest of the arguments are N-byte values to actually put at
3773 this location in the TOC; often there is just one more argument, a
3774 relocateable symbol reference. The size of the value to store
3775 depends on target word size. A 32-bit target uses 4-byte values, a
3776 64-bit target uses 8-byte values.
3777
3778 When not generating XCOFF output, the arguments are the same, but
3779 the first argument is simply ignored. */
3780
3781 static void
3782 ppc_tc (ignore)
3783 int ignore ATTRIBUTE_UNUSED;
3784 {
3785 #ifdef OBJ_XCOFF
3786
3787 /* Define the TOC symbol name. */
3788 {
3789 char *name;
3790 char endc;
3791 symbolS *sym;
3792
3793 if (ppc_toc_csect == (symbolS *) NULL
3794 || ppc_toc_csect != ppc_current_csect)
3795 {
3796 as_bad (_(".tc not in .toc section"));
3797 ignore_rest_of_line ();
3798 return;
3799 }
3800
3801 name = input_line_pointer;
3802 endc = get_symbol_end ();
3803
3804 sym = symbol_find_or_make (name);
3805
3806 *input_line_pointer = endc;
3807
3808 if (S_IS_DEFINED (sym))
3809 {
3810 symbolS *label;
3811
3812 label = symbol_get_tc (ppc_current_csect)->within;
3813 if (symbol_get_tc (label)->class != XMC_TC0)
3814 {
3815 as_bad (_(".tc with no label"));
3816 ignore_rest_of_line ();
3817 return;
3818 }
3819
3820 S_SET_SEGMENT (label, S_GET_SEGMENT (sym));
3821 symbol_set_frag (label, symbol_get_frag (sym));
3822 S_SET_VALUE (label, S_GET_VALUE (sym));
3823
3824 while (! is_end_of_line[(unsigned char) *input_line_pointer])
3825 ++input_line_pointer;
3826
3827 return;
3828 }
3829
3830 S_SET_SEGMENT (sym, now_seg);
3831 symbol_set_frag (sym, frag_now);
3832 S_SET_VALUE (sym, (valueT) frag_now_fix ());
3833 symbol_get_tc (sym)->class = XMC_TC;
3834 symbol_get_tc (sym)->output = 1;
3835
3836 ppc_frob_label (sym);
3837 }
3838
3839 #endif /* OBJ_XCOFF */
3840 #ifdef OBJ_ELF
3841 int align;
3842
3843 /* Skip the TOC symbol name. */
3844 while (is_part_of_name (*input_line_pointer)
3845 || *input_line_pointer == '['
3846 || *input_line_pointer == ']'
3847 || *input_line_pointer == '{'
3848 || *input_line_pointer == '}')
3849 ++input_line_pointer;
3850
3851 /* Align to a four/eight byte boundary. */
3852 align = ppc_obj64 ? 3 : 2;
3853 frag_align (align, 0, 0);
3854 record_alignment (now_seg, align);
3855 #endif /* OBJ_ELF */
3856
3857 if (*input_line_pointer != ',')
3858 demand_empty_rest_of_line ();
3859 else
3860 {
3861 ++input_line_pointer;
3862 cons (ppc_obj64 ? 8 : 4);
3863 }
3864 }
3865
3866 /* Pseudo-op .machine. */
3867 /* FIXME: `.machine' is a nop for the moment. It would be nice to
3868 accept this directive on the first line of input and set ppc_obj64
3869 and the target format accordingly. Unfortunately, the target
3870 format is selected in output-file.c:output_file_create before we
3871 even get to md_begin, so it's not possible without changing
3872 as.c:main. */
3873
3874 static void
3875 ppc_machine (ignore)
3876 int ignore ATTRIBUTE_UNUSED;
3877 {
3878 discard_rest_of_line ();
3879 }
3880
3881 /* See whether a symbol is in the TOC section. */
3882
3883 static int
3884 ppc_is_toc_sym (sym)
3885 symbolS *sym;
3886 {
3887 #ifdef OBJ_XCOFF
3888 return symbol_get_tc (sym)->class == XMC_TC;
3889 #endif
3890 #ifdef OBJ_ELF
3891 const char *sname = segment_name (S_GET_SEGMENT (sym));
3892 if (ppc_obj64)
3893 return strcmp (sname, ".toc") == 0;
3894 else
3895 return strcmp (sname, ".got") == 0;
3896 #endif
3897 }
3898 #endif /* defined (OBJ_XCOFF) || defined (OBJ_ELF) */
3899 \f
3900 #ifdef TE_PE
3901
3902 /* Pseudo-ops specific to the Windows NT PowerPC PE (coff) format. */
3903
3904 /* Set the current section. */
3905 static void
3906 ppc_set_current_section (new)
3907 segT new;
3908 {
3909 ppc_previous_section = ppc_current_section;
3910 ppc_current_section = new;
3911 }
3912
3913 /* pseudo-op: .previous
3914 behaviour: toggles the current section with the previous section.
3915 errors: None
3916 warnings: "No previous section" */
3917
3918 static void
3919 ppc_previous (ignore)
3920 int ignore ATTRIBUTE_UNUSED;
3921 {
3922 symbolS *tmp;
3923
3924 if (ppc_previous_section == NULL)
3925 {
3926 as_warn (_("No previous section to return to. Directive ignored."));
3927 return;
3928 }
3929
3930 subseg_set (ppc_previous_section, 0);
3931
3932 ppc_set_current_section (ppc_previous_section);
3933 }
3934
3935 /* pseudo-op: .pdata
3936 behaviour: predefined read only data section
3937 double word aligned
3938 errors: None
3939 warnings: None
3940 initial: .section .pdata "adr3"
3941 a - don't know -- maybe a misprint
3942 d - initialized data
3943 r - readable
3944 3 - double word aligned (that would be 4 byte boundary)
3945
3946 commentary:
3947 Tag index tables (also known as the function table) for exception
3948 handling, debugging, etc. */
3949
3950 static void
3951 ppc_pdata (ignore)
3952 int ignore ATTRIBUTE_UNUSED;
3953 {
3954 if (pdata_section == 0)
3955 {
3956 pdata_section = subseg_new (".pdata", 0);
3957
3958 bfd_set_section_flags (stdoutput, pdata_section,
3959 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
3960 | SEC_READONLY | SEC_DATA ));
3961
3962 bfd_set_section_alignment (stdoutput, pdata_section, 2);
3963 }
3964 else
3965 {
3966 pdata_section = subseg_new (".pdata", 0);
3967 }
3968 ppc_set_current_section (pdata_section);
3969 }
3970
3971 /* pseudo-op: .ydata
3972 behaviour: predefined read only data section
3973 double word aligned
3974 errors: None
3975 warnings: None
3976 initial: .section .ydata "drw3"
3977 a - don't know -- maybe a misprint
3978 d - initialized data
3979 r - readable
3980 3 - double word aligned (that would be 4 byte boundary)
3981 commentary:
3982 Tag tables (also known as the scope table) for exception handling,
3983 debugging, etc. */
3984
3985 static void
3986 ppc_ydata (ignore)
3987 int ignore ATTRIBUTE_UNUSED;
3988 {
3989 if (ydata_section == 0)
3990 {
3991 ydata_section = subseg_new (".ydata", 0);
3992 bfd_set_section_flags (stdoutput, ydata_section,
3993 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
3994 | SEC_READONLY | SEC_DATA ));
3995
3996 bfd_set_section_alignment (stdoutput, ydata_section, 3);
3997 }
3998 else
3999 {
4000 ydata_section = subseg_new (".ydata", 0);
4001 }
4002 ppc_set_current_section (ydata_section);
4003 }
4004
4005 /* pseudo-op: .reldata
4006 behaviour: predefined read write data section
4007 double word aligned (4-byte)
4008 FIXME: relocation is applied to it
4009 FIXME: what's the difference between this and .data?
4010 errors: None
4011 warnings: None
4012 initial: .section .reldata "drw3"
4013 d - initialized data
4014 r - readable
4015 w - writeable
4016 3 - double word aligned (that would be 8 byte boundary)
4017
4018 commentary:
4019 Like .data, but intended to hold data subject to relocation, such as
4020 function descriptors, etc. */
4021
4022 static void
4023 ppc_reldata (ignore)
4024 int ignore ATTRIBUTE_UNUSED;
4025 {
4026 if (reldata_section == 0)
4027 {
4028 reldata_section = subseg_new (".reldata", 0);
4029
4030 bfd_set_section_flags (stdoutput, reldata_section,
4031 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
4032 | SEC_DATA));
4033
4034 bfd_set_section_alignment (stdoutput, reldata_section, 2);
4035 }
4036 else
4037 {
4038 reldata_section = subseg_new (".reldata", 0);
4039 }
4040 ppc_set_current_section (reldata_section);
4041 }
4042
4043 /* pseudo-op: .rdata
4044 behaviour: predefined read only data section
4045 double word aligned
4046 errors: None
4047 warnings: None
4048 initial: .section .rdata "dr3"
4049 d - initialized data
4050 r - readable
4051 3 - double word aligned (that would be 4 byte boundary) */
4052
4053 static void
4054 ppc_rdata (ignore)
4055 int ignore ATTRIBUTE_UNUSED;
4056 {
4057 if (rdata_section == 0)
4058 {
4059 rdata_section = subseg_new (".rdata", 0);
4060 bfd_set_section_flags (stdoutput, rdata_section,
4061 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
4062 | SEC_READONLY | SEC_DATA ));
4063
4064 bfd_set_section_alignment (stdoutput, rdata_section, 2);
4065 }
4066 else
4067 {
4068 rdata_section = subseg_new (".rdata", 0);
4069 }
4070 ppc_set_current_section (rdata_section);
4071 }
4072
4073 /* pseudo-op: .ualong
4074 behaviour: much like .int, with the exception that no alignment is
4075 performed.
4076 FIXME: test the alignment statement
4077 errors: None
4078 warnings: None */
4079
4080 static void
4081 ppc_ualong (ignore)
4082 int ignore ATTRIBUTE_UNUSED;
4083 {
4084 /* Try for long. */
4085 cons (4);
4086 }
4087
4088 /* pseudo-op: .znop <symbol name>
4089 behaviour: Issue a nop instruction
4090 Issue a IMAGE_REL_PPC_IFGLUE relocation against it, using
4091 the supplied symbol name.
4092 errors: None
4093 warnings: Missing symbol name */
4094
4095 static void
4096 ppc_znop (ignore)
4097 int ignore ATTRIBUTE_UNUSED;
4098 {
4099 unsigned long insn;
4100 const struct powerpc_opcode *opcode;
4101 expressionS ex;
4102 char *f;
4103 symbolS *sym;
4104 char *symbol_name;
4105 char c;
4106 char *name;
4107 unsigned int exp;
4108 flagword flags;
4109 asection *sec;
4110
4111 /* Strip out the symbol name. */
4112 symbol_name = input_line_pointer;
4113 c = get_symbol_end ();
4114
4115 name = xmalloc (input_line_pointer - symbol_name + 1);
4116 strcpy (name, symbol_name);
4117
4118 sym = symbol_find_or_make (name);
4119
4120 *input_line_pointer = c;
4121
4122 SKIP_WHITESPACE ();
4123
4124 /* Look up the opcode in the hash table. */
4125 opcode = (const struct powerpc_opcode *) hash_find (ppc_hash, "nop");
4126
4127 /* Stick in the nop. */
4128 insn = opcode->opcode;
4129
4130 /* Write out the instruction. */
4131 f = frag_more (4);
4132 md_number_to_chars (f, insn, 4);
4133 fix_new (frag_now,
4134 f - frag_now->fr_literal,
4135 4,
4136 sym,
4137 0,
4138 0,
4139 BFD_RELOC_16_GOT_PCREL);
4140
4141 }
4142
4143 /* pseudo-op:
4144 behaviour:
4145 errors:
4146 warnings: */
4147
4148 static void
4149 ppc_pe_comm (lcomm)
4150 int lcomm;
4151 {
4152 register char *name;
4153 register char c;
4154 register char *p;
4155 offsetT temp;
4156 register symbolS *symbolP;
4157 offsetT align;
4158
4159 name = input_line_pointer;
4160 c = get_symbol_end ();
4161
4162 /* just after name is now '\0'. */
4163 p = input_line_pointer;
4164 *p = c;
4165 SKIP_WHITESPACE ();
4166 if (*input_line_pointer != ',')
4167 {
4168 as_bad (_("Expected comma after symbol-name: rest of line ignored."));
4169 ignore_rest_of_line ();
4170 return;
4171 }
4172
4173 input_line_pointer++; /* skip ',' */
4174 if ((temp = get_absolute_expression ()) < 0)
4175 {
4176 as_warn (_(".COMMon length (%ld.) <0! Ignored."), (long) temp);
4177 ignore_rest_of_line ();
4178 return;
4179 }
4180
4181 if (! lcomm)
4182 {
4183 /* The third argument to .comm is the alignment. */
4184 if (*input_line_pointer != ',')
4185 align = 3;
4186 else
4187 {
4188 ++input_line_pointer;
4189 align = get_absolute_expression ();
4190 if (align <= 0)
4191 {
4192 as_warn (_("ignoring bad alignment"));
4193 align = 3;
4194 }
4195 }
4196 }
4197
4198 *p = 0;
4199 symbolP = symbol_find_or_make (name);
4200
4201 *p = c;
4202 if (S_IS_DEFINED (symbolP) && ! S_IS_COMMON (symbolP))
4203 {
4204 as_bad (_("Ignoring attempt to re-define symbol `%s'."),
4205 S_GET_NAME (symbolP));
4206 ignore_rest_of_line ();
4207 return;
4208 }
4209
4210 if (S_GET_VALUE (symbolP))
4211 {
4212 if (S_GET_VALUE (symbolP) != (valueT) temp)
4213 as_bad (_("Length of .comm \"%s\" is already %ld. Not changed to %ld."),
4214 S_GET_NAME (symbolP),
4215 (long) S_GET_VALUE (symbolP),
4216 (long) temp);
4217 }
4218 else
4219 {
4220 S_SET_VALUE (symbolP, (valueT) temp);
4221 S_SET_EXTERNAL (symbolP);
4222 }
4223
4224 demand_empty_rest_of_line ();
4225 }
4226
4227 /*
4228 * implement the .section pseudo op:
4229 * .section name {, "flags"}
4230 * ^ ^
4231 * | +--- optional flags: 'b' for bss
4232 * | 'i' for info
4233 * +-- section name 'l' for lib
4234 * 'n' for noload
4235 * 'o' for over
4236 * 'w' for data
4237 * 'd' (apparently m88k for data)
4238 * 'x' for text
4239 * But if the argument is not a quoted string, treat it as a
4240 * subsegment number.
4241 *
4242 * FIXME: this is a copy of the section processing from obj-coff.c, with
4243 * additions/changes for the moto-pas assembler support. There are three
4244 * categories:
4245 *
4246 * FIXME: I just noticed this. This doesn't work at all really. It it
4247 * setting bits that bfd probably neither understands or uses. The
4248 * correct approach (?) will have to incorporate extra fields attached
4249 * to the section to hold the system specific stuff. (krk)
4250 *
4251 * Section Contents:
4252 * 'a' - unknown - referred to in documentation, but no definition supplied
4253 * 'c' - section has code
4254 * 'd' - section has initialized data
4255 * 'u' - section has uninitialized data
4256 * 'i' - section contains directives (info)
4257 * 'n' - section can be discarded
4258 * 'R' - remove section at link time
4259 *
4260 * Section Protection:
4261 * 'r' - section is readable
4262 * 'w' - section is writeable
4263 * 'x' - section is executable
4264 * 's' - section is sharable
4265 *
4266 * Section Alignment:
4267 * '0' - align to byte boundary
4268 * '1' - align to halfword undary
4269 * '2' - align to word boundary
4270 * '3' - align to doubleword boundary
4271 * '4' - align to quadword boundary
4272 * '5' - align to 32 byte boundary
4273 * '6' - align to 64 byte boundary
4274 *
4275 */
4276
4277 void
4278 ppc_pe_section (ignore)
4279 int ignore ATTRIBUTE_UNUSED;
4280 {
4281 /* Strip out the section name. */
4282 char *section_name;
4283 char c;
4284 char *name;
4285 unsigned int exp;
4286 flagword flags;
4287 segT sec;
4288 int align;
4289
4290 section_name = input_line_pointer;
4291 c = get_symbol_end ();
4292
4293 name = xmalloc (input_line_pointer - section_name + 1);
4294 strcpy (name, section_name);
4295
4296 *input_line_pointer = c;
4297
4298 SKIP_WHITESPACE ();
4299
4300 exp = 0;
4301 flags = SEC_NO_FLAGS;
4302
4303 if (strcmp (name, ".idata$2") == 0)
4304 {
4305 align = 0;
4306 }
4307 else if (strcmp (name, ".idata$3") == 0)
4308 {
4309 align = 0;
4310 }
4311 else if (strcmp (name, ".idata$4") == 0)
4312 {
4313 align = 2;
4314 }
4315 else if (strcmp (name, ".idata$5") == 0)
4316 {
4317 align = 2;
4318 }
4319 else if (strcmp (name, ".idata$6") == 0)
4320 {
4321 align = 1;
4322 }
4323 else
4324 /* Default alignment to 16 byte boundary. */
4325 align = 4;
4326
4327 if (*input_line_pointer == ',')
4328 {
4329 ++input_line_pointer;
4330 SKIP_WHITESPACE ();
4331 if (*input_line_pointer != '"')
4332 exp = get_absolute_expression ();
4333 else
4334 {
4335 ++input_line_pointer;
4336 while (*input_line_pointer != '"'
4337 && ! is_end_of_line[(unsigned char) *input_line_pointer])
4338 {
4339 switch (*input_line_pointer)
4340 {
4341 /* Section Contents */
4342 case 'a': /* unknown */
4343 as_bad (_("Unsupported section attribute -- 'a'"));
4344 break;
4345 case 'c': /* code section */
4346 flags |= SEC_CODE;
4347 break;
4348 case 'd': /* section has initialized data */
4349 flags |= SEC_DATA;
4350 break;
4351 case 'u': /* section has uninitialized data */
4352 /* FIXME: This is IMAGE_SCN_CNT_UNINITIALIZED_DATA
4353 in winnt.h */
4354 flags |= SEC_ROM;
4355 break;
4356 case 'i': /* section contains directives (info) */
4357 /* FIXME: This is IMAGE_SCN_LNK_INFO
4358 in winnt.h */
4359 flags |= SEC_HAS_CONTENTS;
4360 break;
4361 case 'n': /* section can be discarded */
4362 flags &=~ SEC_LOAD;
4363 break;
4364 case 'R': /* Remove section at link time */
4365 flags |= SEC_NEVER_LOAD;
4366 break;
4367
4368 /* Section Protection */
4369 case 'r': /* section is readable */
4370 flags |= IMAGE_SCN_MEM_READ;
4371 break;
4372 case 'w': /* section is writeable */
4373 flags |= IMAGE_SCN_MEM_WRITE;
4374 break;
4375 case 'x': /* section is executable */
4376 flags |= IMAGE_SCN_MEM_EXECUTE;
4377 break;
4378 case 's': /* section is sharable */
4379 flags |= IMAGE_SCN_MEM_SHARED;
4380 break;
4381
4382 /* Section Alignment */
4383 case '0': /* align to byte boundary */
4384 flags |= IMAGE_SCN_ALIGN_1BYTES;
4385 align = 0;
4386 break;
4387 case '1': /* align to halfword boundary */
4388 flags |= IMAGE_SCN_ALIGN_2BYTES;
4389 align = 1;
4390 break;
4391 case '2': /* align to word boundary */
4392 flags |= IMAGE_SCN_ALIGN_4BYTES;
4393 align = 2;
4394 break;
4395 case '3': /* align to doubleword boundary */
4396 flags |= IMAGE_SCN_ALIGN_8BYTES;
4397 align = 3;
4398 break;
4399 case '4': /* align to quadword boundary */
4400 flags |= IMAGE_SCN_ALIGN_16BYTES;
4401 align = 4;
4402 break;
4403 case '5': /* align to 32 byte boundary */
4404 flags |= IMAGE_SCN_ALIGN_32BYTES;
4405 align = 5;
4406 break;
4407 case '6': /* align to 64 byte boundary */
4408 flags |= IMAGE_SCN_ALIGN_64BYTES;
4409 align = 6;
4410 break;
4411
4412 default:
4413 as_bad (_("unknown section attribute '%c'"),
4414 *input_line_pointer);
4415 break;
4416 }
4417 ++input_line_pointer;
4418 }
4419 if (*input_line_pointer == '"')
4420 ++input_line_pointer;
4421 }
4422 }
4423
4424 sec = subseg_new (name, (subsegT) exp);
4425
4426 ppc_set_current_section (sec);
4427
4428 if (flags != SEC_NO_FLAGS)
4429 {
4430 if (! bfd_set_section_flags (stdoutput, sec, flags))
4431 as_bad (_("error setting flags for \"%s\": %s"),
4432 bfd_section_name (stdoutput, sec),
4433 bfd_errmsg (bfd_get_error ()));
4434 }
4435
4436 bfd_set_section_alignment (stdoutput, sec, align);
4437
4438 }
4439
4440 static void
4441 ppc_pe_function (ignore)
4442 int ignore ATTRIBUTE_UNUSED;
4443 {
4444 char *name;
4445 char endc;
4446 symbolS *ext_sym;
4447
4448 name = input_line_pointer;
4449 endc = get_symbol_end ();
4450
4451 ext_sym = symbol_find_or_make (name);
4452
4453 *input_line_pointer = endc;
4454
4455 S_SET_DATA_TYPE (ext_sym, DT_FCN << N_BTSHFT);
4456 SF_SET_FUNCTION (ext_sym);
4457 SF_SET_PROCESS (ext_sym);
4458 coff_add_linesym (ext_sym);
4459
4460 demand_empty_rest_of_line ();
4461 }
4462
4463 static void
4464 ppc_pe_tocd (ignore)
4465 int ignore ATTRIBUTE_UNUSED;
4466 {
4467 if (tocdata_section == 0)
4468 {
4469 tocdata_section = subseg_new (".tocd", 0);
4470 /* FIXME: section flags won't work. */
4471 bfd_set_section_flags (stdoutput, tocdata_section,
4472 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
4473 | SEC_READONLY | SEC_DATA));
4474
4475 bfd_set_section_alignment (stdoutput, tocdata_section, 2);
4476 }
4477 else
4478 {
4479 rdata_section = subseg_new (".tocd", 0);
4480 }
4481
4482 ppc_set_current_section (tocdata_section);
4483
4484 demand_empty_rest_of_line ();
4485 }
4486
4487 /* Don't adjust TOC relocs to use the section symbol. */
4488
4489 int
4490 ppc_pe_fix_adjustable (fix)
4491 fixS *fix;
4492 {
4493 return fix->fx_r_type != BFD_RELOC_PPC_TOC16;
4494 }
4495
4496 #endif
4497 \f
4498 #ifdef OBJ_XCOFF
4499
4500 /* XCOFF specific symbol and file handling. */
4501
4502 /* Canonicalize the symbol name. We use the to force the suffix, if
4503 any, to use square brackets, and to be in upper case. */
4504
4505 char *
4506 ppc_canonicalize_symbol_name (name)
4507 char *name;
4508 {
4509 char *s;
4510
4511 if (ppc_stab_symbol)
4512 return name;
4513
4514 for (s = name; *s != '\0' && *s != '{' && *s != '['; s++)
4515 ;
4516 if (*s != '\0')
4517 {
4518 char brac;
4519
4520 if (*s == '[')
4521 brac = ']';
4522 else
4523 {
4524 *s = '[';
4525 brac = '}';
4526 }
4527
4528 for (s++; *s != '\0' && *s != brac; s++)
4529 *s = TOUPPER (*s);
4530
4531 if (*s == '\0' || s[1] != '\0')
4532 as_bad (_("bad symbol suffix"));
4533
4534 *s = ']';
4535 }
4536
4537 return name;
4538 }
4539
4540 /* Set the class of a symbol based on the suffix, if any. This is
4541 called whenever a new symbol is created. */
4542
4543 void
4544 ppc_symbol_new_hook (sym)
4545 symbolS *sym;
4546 {
4547 struct ppc_tc_sy *tc;
4548 const char *s;
4549
4550 tc = symbol_get_tc (sym);
4551 tc->next = NULL;
4552 tc->output = 0;
4553 tc->class = -1;
4554 tc->real_name = NULL;
4555 tc->subseg = 0;
4556 tc->align = 0;
4557 tc->size = NULL;
4558 tc->within = NULL;
4559
4560 if (ppc_stab_symbol)
4561 return;
4562
4563 s = strchr (S_GET_NAME (sym), '[');
4564 if (s == (const char *) NULL)
4565 {
4566 /* There is no suffix. */
4567 return;
4568 }
4569
4570 ++s;
4571
4572 switch (s[0])
4573 {
4574 case 'B':
4575 if (strcmp (s, "BS]") == 0)
4576 tc->class = XMC_BS;
4577 break;
4578 case 'D':
4579 if (strcmp (s, "DB]") == 0)
4580 tc->class = XMC_DB;
4581 else if (strcmp (s, "DS]") == 0)
4582 tc->class = XMC_DS;
4583 break;
4584 case 'G':
4585 if (strcmp (s, "GL]") == 0)
4586 tc->class = XMC_GL;
4587 break;
4588 case 'P':
4589 if (strcmp (s, "PR]") == 0)
4590 tc->class = XMC_PR;
4591 break;
4592 case 'R':
4593 if (strcmp (s, "RO]") == 0)
4594 tc->class = XMC_RO;
4595 else if (strcmp (s, "RW]") == 0)
4596 tc->class = XMC_RW;
4597 break;
4598 case 'S':
4599 if (strcmp (s, "SV]") == 0)
4600 tc->class = XMC_SV;
4601 break;
4602 case 'T':
4603 if (strcmp (s, "TC]") == 0)
4604 tc->class = XMC_TC;
4605 else if (strcmp (s, "TI]") == 0)
4606 tc->class = XMC_TI;
4607 else if (strcmp (s, "TB]") == 0)
4608 tc->class = XMC_TB;
4609 else if (strcmp (s, "TC0]") == 0 || strcmp (s, "T0]") == 0)
4610 tc->class = XMC_TC0;
4611 break;
4612 case 'U':
4613 if (strcmp (s, "UA]") == 0)
4614 tc->class = XMC_UA;
4615 else if (strcmp (s, "UC]") == 0)
4616 tc->class = XMC_UC;
4617 break;
4618 case 'X':
4619 if (strcmp (s, "XO]") == 0)
4620 tc->class = XMC_XO;
4621 break;
4622 }
4623
4624 if (tc->class == -1)
4625 as_bad (_("Unrecognized symbol suffix"));
4626 }
4627
4628 /* Set the class of a label based on where it is defined. This
4629 handles symbols without suffixes. Also, move the symbol so that it
4630 follows the csect symbol. */
4631
4632 void
4633 ppc_frob_label (sym)
4634 symbolS *sym;
4635 {
4636 if (ppc_current_csect != (symbolS *) NULL)
4637 {
4638 if (symbol_get_tc (sym)->class == -1)
4639 symbol_get_tc (sym)->class = symbol_get_tc (ppc_current_csect)->class;
4640
4641 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
4642 symbol_append (sym, symbol_get_tc (ppc_current_csect)->within,
4643 &symbol_rootP, &symbol_lastP);
4644 symbol_get_tc (ppc_current_csect)->within = sym;
4645 }
4646 }
4647
4648 /* This variable is set by ppc_frob_symbol if any absolute symbols are
4649 seen. It tells ppc_adjust_symtab whether it needs to look through
4650 the symbols. */
4651
4652 static bfd_boolean ppc_saw_abs;
4653
4654 /* Change the name of a symbol just before writing it out. Set the
4655 real name if the .rename pseudo-op was used. Otherwise, remove any
4656 class suffix. Return 1 if the symbol should not be included in the
4657 symbol table. */
4658
4659 int
4660 ppc_frob_symbol (sym)
4661 symbolS *sym;
4662 {
4663 static symbolS *ppc_last_function;
4664 static symbolS *set_end;
4665
4666 /* Discard symbols that should not be included in the output symbol
4667 table. */
4668 if (! symbol_used_in_reloc_p (sym)
4669 && ((symbol_get_bfdsym (sym)->flags & BSF_SECTION_SYM) != 0
4670 || (! S_IS_EXTERNAL (sym)
4671 && ! symbol_get_tc (sym)->output
4672 && S_GET_STORAGE_CLASS (sym) != C_FILE)))
4673 return 1;
4674
4675 /* This one will disappear anyway. Don't make a csect sym for it. */
4676 if (sym == abs_section_sym)
4677 return 1;
4678
4679 if (symbol_get_tc (sym)->real_name != (char *) NULL)
4680 S_SET_NAME (sym, symbol_get_tc (sym)->real_name);
4681 else
4682 {
4683 const char *name;
4684 const char *s;
4685
4686 name = S_GET_NAME (sym);
4687 s = strchr (name, '[');
4688 if (s != (char *) NULL)
4689 {
4690 unsigned int len;
4691 char *snew;
4692
4693 len = s - name;
4694 snew = xmalloc (len + 1);
4695 memcpy (snew, name, len);
4696 snew[len] = '\0';
4697
4698 S_SET_NAME (sym, snew);
4699 }
4700 }
4701
4702 if (set_end != (symbolS *) NULL)
4703 {
4704 SA_SET_SYM_ENDNDX (set_end, sym);
4705 set_end = NULL;
4706 }
4707
4708 if (SF_GET_FUNCTION (sym))
4709 {
4710 if (ppc_last_function != (symbolS *) NULL)
4711 as_bad (_("two .function pseudo-ops with no intervening .ef"));
4712 ppc_last_function = sym;
4713 if (symbol_get_tc (sym)->size != (symbolS *) NULL)
4714 {
4715 resolve_symbol_value (symbol_get_tc (sym)->size);
4716 SA_SET_SYM_FSIZE (sym,
4717 (long) S_GET_VALUE (symbol_get_tc (sym)->size));
4718 }
4719 }
4720 else if (S_GET_STORAGE_CLASS (sym) == C_FCN
4721 && strcmp (S_GET_NAME (sym), ".ef") == 0)
4722 {
4723 if (ppc_last_function == (symbolS *) NULL)
4724 as_bad (_(".ef with no preceding .function"));
4725 else
4726 {
4727 set_end = ppc_last_function;
4728 ppc_last_function = NULL;
4729
4730 /* We don't have a C_EFCN symbol, but we need to force the
4731 COFF backend to believe that it has seen one. */
4732 coff_last_function = NULL;
4733 }
4734 }
4735
4736 if (! S_IS_EXTERNAL (sym)
4737 && (symbol_get_bfdsym (sym)->flags & BSF_SECTION_SYM) == 0
4738 && S_GET_STORAGE_CLASS (sym) != C_FILE
4739 && S_GET_STORAGE_CLASS (sym) != C_FCN
4740 && S_GET_STORAGE_CLASS (sym) != C_BLOCK
4741 && S_GET_STORAGE_CLASS (sym) != C_BSTAT
4742 && S_GET_STORAGE_CLASS (sym) != C_ESTAT
4743 && S_GET_STORAGE_CLASS (sym) != C_BINCL
4744 && S_GET_STORAGE_CLASS (sym) != C_EINCL
4745 && S_GET_SEGMENT (sym) != ppc_coff_debug_section)
4746 S_SET_STORAGE_CLASS (sym, C_HIDEXT);
4747
4748 if (S_GET_STORAGE_CLASS (sym) == C_EXT
4749 || S_GET_STORAGE_CLASS (sym) == C_HIDEXT)
4750 {
4751 int i;
4752 union internal_auxent *a;
4753
4754 /* Create a csect aux. */
4755 i = S_GET_NUMBER_AUXILIARY (sym);
4756 S_SET_NUMBER_AUXILIARY (sym, i + 1);
4757 a = &coffsymbol (symbol_get_bfdsym (sym))->native[i + 1].u.auxent;
4758 if (symbol_get_tc (sym)->class == XMC_TC0)
4759 {
4760 /* This is the TOC table. */
4761 know (strcmp (S_GET_NAME (sym), "TOC") == 0);
4762 a->x_csect.x_scnlen.l = 0;
4763 a->x_csect.x_smtyp = (2 << 3) | XTY_SD;
4764 }
4765 else if (symbol_get_tc (sym)->subseg != 0)
4766 {
4767 /* This is a csect symbol. x_scnlen is the size of the
4768 csect. */
4769 if (symbol_get_tc (sym)->next == (symbolS *) NULL)
4770 a->x_csect.x_scnlen.l = (bfd_section_size (stdoutput,
4771 S_GET_SEGMENT (sym))
4772 - S_GET_VALUE (sym));
4773 else
4774 {
4775 resolve_symbol_value (symbol_get_tc (sym)->next);
4776 a->x_csect.x_scnlen.l = (S_GET_VALUE (symbol_get_tc (sym)->next)
4777 - S_GET_VALUE (sym));
4778 }
4779 a->x_csect.x_smtyp = (symbol_get_tc (sym)->align << 3) | XTY_SD;
4780 }
4781 else if (S_GET_SEGMENT (sym) == bss_section)
4782 {
4783 /* This is a common symbol. */
4784 a->x_csect.x_scnlen.l = symbol_get_frag (sym)->fr_offset;
4785 a->x_csect.x_smtyp = (symbol_get_tc (sym)->align << 3) | XTY_CM;
4786 if (S_IS_EXTERNAL (sym))
4787 symbol_get_tc (sym)->class = XMC_RW;
4788 else
4789 symbol_get_tc (sym)->class = XMC_BS;
4790 }
4791 else if (S_GET_SEGMENT (sym) == absolute_section)
4792 {
4793 /* This is an absolute symbol. The csect will be created by
4794 ppc_adjust_symtab. */
4795 ppc_saw_abs = TRUE;
4796 a->x_csect.x_smtyp = XTY_LD;
4797 if (symbol_get_tc (sym)->class == -1)
4798 symbol_get_tc (sym)->class = XMC_XO;
4799 }
4800 else if (! S_IS_DEFINED (sym))
4801 {
4802 /* This is an external symbol. */
4803 a->x_csect.x_scnlen.l = 0;
4804 a->x_csect.x_smtyp = XTY_ER;
4805 }
4806 else if (symbol_get_tc (sym)->class == XMC_TC)
4807 {
4808 symbolS *next;
4809
4810 /* This is a TOC definition. x_scnlen is the size of the
4811 TOC entry. */
4812 next = symbol_next (sym);
4813 while (symbol_get_tc (next)->class == XMC_TC0)
4814 next = symbol_next (next);
4815 if (next == (symbolS *) NULL
4816 || symbol_get_tc (next)->class != XMC_TC)
4817 {
4818 if (ppc_after_toc_frag == (fragS *) NULL)
4819 a->x_csect.x_scnlen.l = (bfd_section_size (stdoutput,
4820 data_section)
4821 - S_GET_VALUE (sym));
4822 else
4823 a->x_csect.x_scnlen.l = (ppc_after_toc_frag->fr_address
4824 - S_GET_VALUE (sym));
4825 }
4826 else
4827 {
4828 resolve_symbol_value (next);
4829 a->x_csect.x_scnlen.l = (S_GET_VALUE (next)
4830 - S_GET_VALUE (sym));
4831 }
4832 a->x_csect.x_smtyp = (2 << 3) | XTY_SD;
4833 }
4834 else
4835 {
4836 symbolS *csect;
4837
4838 /* This is a normal symbol definition. x_scnlen is the
4839 symbol index of the containing csect. */
4840 if (S_GET_SEGMENT (sym) == text_section)
4841 csect = ppc_text_csects;
4842 else if (S_GET_SEGMENT (sym) == data_section)
4843 csect = ppc_data_csects;
4844 else
4845 abort ();
4846
4847 /* Skip the initial dummy symbol. */
4848 csect = symbol_get_tc (csect)->next;
4849
4850 if (csect == (symbolS *) NULL)
4851 {
4852 as_warn (_("warning: symbol %s has no csect"), S_GET_NAME (sym));
4853 a->x_csect.x_scnlen.l = 0;
4854 }
4855 else
4856 {
4857 while (symbol_get_tc (csect)->next != (symbolS *) NULL)
4858 {
4859 resolve_symbol_value (symbol_get_tc (csect)->next);
4860 if (S_GET_VALUE (symbol_get_tc (csect)->next)
4861 > S_GET_VALUE (sym))
4862 break;
4863 csect = symbol_get_tc (csect)->next;
4864 }
4865
4866 a->x_csect.x_scnlen.p =
4867 coffsymbol (symbol_get_bfdsym (csect))->native;
4868 coffsymbol (symbol_get_bfdsym (sym))->native[i + 1].fix_scnlen =
4869 1;
4870 }
4871 a->x_csect.x_smtyp = XTY_LD;
4872 }
4873
4874 a->x_csect.x_parmhash = 0;
4875 a->x_csect.x_snhash = 0;
4876 if (symbol_get_tc (sym)->class == -1)
4877 a->x_csect.x_smclas = XMC_PR;
4878 else
4879 a->x_csect.x_smclas = symbol_get_tc (sym)->class;
4880 a->x_csect.x_stab = 0;
4881 a->x_csect.x_snstab = 0;
4882
4883 /* Don't let the COFF backend resort these symbols. */
4884 symbol_get_bfdsym (sym)->flags |= BSF_NOT_AT_END;
4885 }
4886 else if (S_GET_STORAGE_CLASS (sym) == C_BSTAT)
4887 {
4888 /* We want the value to be the symbol index of the referenced
4889 csect symbol. BFD will do that for us if we set the right
4890 flags. */
4891 asymbol *bsym = symbol_get_bfdsym (symbol_get_tc (sym)->within);
4892 combined_entry_type *c = coffsymbol (bsym)->native;
4893
4894 S_SET_VALUE (sym, (valueT) (size_t) c);
4895 coffsymbol (symbol_get_bfdsym (sym))->native->fix_value = 1;
4896 }
4897 else if (S_GET_STORAGE_CLASS (sym) == C_STSYM)
4898 {
4899 symbolS *block;
4900 symbolS *csect;
4901
4902 /* The value is the offset from the enclosing csect. */
4903 block = symbol_get_tc (sym)->within;
4904 csect = symbol_get_tc (block)->within;
4905 resolve_symbol_value (csect);
4906 S_SET_VALUE (sym, S_GET_VALUE (sym) - S_GET_VALUE (csect));
4907 }
4908 else if (S_GET_STORAGE_CLASS (sym) == C_BINCL
4909 || S_GET_STORAGE_CLASS (sym) == C_EINCL)
4910 {
4911 /* We want the value to be a file offset into the line numbers.
4912 BFD will do that for us if we set the right flags. We have
4913 already set the value correctly. */
4914 coffsymbol (symbol_get_bfdsym (sym))->native->fix_line = 1;
4915 }
4916
4917 return 0;
4918 }
4919
4920 /* Adjust the symbol table. This creates csect symbols for all
4921 absolute symbols. */
4922
4923 void
4924 ppc_adjust_symtab ()
4925 {
4926 symbolS *sym;
4927
4928 if (! ppc_saw_abs)
4929 return;
4930
4931 for (sym = symbol_rootP; sym != NULL; sym = symbol_next (sym))
4932 {
4933 symbolS *csect;
4934 int i;
4935 union internal_auxent *a;
4936
4937 if (S_GET_SEGMENT (sym) != absolute_section)
4938 continue;
4939
4940 csect = symbol_create (".abs[XO]", absolute_section,
4941 S_GET_VALUE (sym), &zero_address_frag);
4942 symbol_get_bfdsym (csect)->value = S_GET_VALUE (sym);
4943 S_SET_STORAGE_CLASS (csect, C_HIDEXT);
4944 i = S_GET_NUMBER_AUXILIARY (csect);
4945 S_SET_NUMBER_AUXILIARY (csect, i + 1);
4946 a = &coffsymbol (symbol_get_bfdsym (csect))->native[i + 1].u.auxent;
4947 a->x_csect.x_scnlen.l = 0;
4948 a->x_csect.x_smtyp = XTY_SD;
4949 a->x_csect.x_parmhash = 0;
4950 a->x_csect.x_snhash = 0;
4951 a->x_csect.x_smclas = XMC_XO;
4952 a->x_csect.x_stab = 0;
4953 a->x_csect.x_snstab = 0;
4954
4955 symbol_insert (csect, sym, &symbol_rootP, &symbol_lastP);
4956
4957 i = S_GET_NUMBER_AUXILIARY (sym);
4958 a = &coffsymbol (symbol_get_bfdsym (sym))->native[i].u.auxent;
4959 a->x_csect.x_scnlen.p = coffsymbol (symbol_get_bfdsym (csect))->native;
4960 coffsymbol (symbol_get_bfdsym (sym))->native[i].fix_scnlen = 1;
4961 }
4962
4963 ppc_saw_abs = FALSE;
4964 }
4965
4966 /* Set the VMA for a section. This is called on all the sections in
4967 turn. */
4968
4969 void
4970 ppc_frob_section (sec)
4971 asection *sec;
4972 {
4973 static bfd_size_type vma = 0;
4974
4975 bfd_set_section_vma (stdoutput, sec, vma);
4976 vma += bfd_section_size (stdoutput, sec);
4977 }
4978
4979 #endif /* OBJ_XCOFF */
4980 \f
4981 /* Turn a string in input_line_pointer into a floating point constant
4982 of type TYPE, and store the appropriate bytes in *LITP. The number
4983 of LITTLENUMS emitted is stored in *SIZEP. An error message is
4984 returned, or NULL on OK. */
4985
4986 char *
4987 md_atof (type, litp, sizep)
4988 int type;
4989 char *litp;
4990 int *sizep;
4991 {
4992 int prec;
4993 LITTLENUM_TYPE words[4];
4994 char *t;
4995 int i;
4996
4997 switch (type)
4998 {
4999 case 'f':
5000 prec = 2;
5001 break;
5002
5003 case 'd':
5004 prec = 4;
5005 break;
5006
5007 default:
5008 *sizep = 0;
5009 return _("bad call to md_atof");
5010 }
5011
5012 t = atof_ieee (input_line_pointer, type, words);
5013 if (t)
5014 input_line_pointer = t;
5015
5016 *sizep = prec * 2;
5017
5018 if (target_big_endian)
5019 {
5020 for (i = 0; i < prec; i++)
5021 {
5022 md_number_to_chars (litp, (valueT) words[i], 2);
5023 litp += 2;
5024 }
5025 }
5026 else
5027 {
5028 for (i = prec - 1; i >= 0; i--)
5029 {
5030 md_number_to_chars (litp, (valueT) words[i], 2);
5031 litp += 2;
5032 }
5033 }
5034
5035 return NULL;
5036 }
5037
5038 /* Write a value out to the object file, using the appropriate
5039 endianness. */
5040
5041 void
5042 md_number_to_chars (buf, val, n)
5043 char *buf;
5044 valueT val;
5045 int n;
5046 {
5047 if (target_big_endian)
5048 number_to_chars_bigendian (buf, val, n);
5049 else
5050 number_to_chars_littleendian (buf, val, n);
5051 }
5052
5053 /* Align a section (I don't know why this is machine dependent). */
5054
5055 valueT
5056 md_section_align (seg, addr)
5057 asection *seg;
5058 valueT addr;
5059 {
5060 int align = bfd_get_section_alignment (stdoutput, seg);
5061
5062 return ((addr + (1 << align) - 1) & (-1 << align));
5063 }
5064
5065 /* We don't have any form of relaxing. */
5066
5067 int
5068 md_estimate_size_before_relax (fragp, seg)
5069 fragS *fragp ATTRIBUTE_UNUSED;
5070 asection *seg ATTRIBUTE_UNUSED;
5071 {
5072 abort ();
5073 return 0;
5074 }
5075
5076 /* Convert a machine dependent frag. We never generate these. */
5077
5078 void
5079 md_convert_frag (abfd, sec, fragp)
5080 bfd *abfd ATTRIBUTE_UNUSED;
5081 asection *sec ATTRIBUTE_UNUSED;
5082 fragS *fragp ATTRIBUTE_UNUSED;
5083 {
5084 abort ();
5085 }
5086
5087 /* We have no need to default values of symbols. */
5088
5089 symbolS *
5090 md_undefined_symbol (name)
5091 char *name ATTRIBUTE_UNUSED;
5092 {
5093 return 0;
5094 }
5095 \f
5096 /* Functions concerning relocs. */
5097
5098 /* The location from which a PC relative jump should be calculated,
5099 given a PC relative reloc. */
5100
5101 long
5102 md_pcrel_from_section (fixp, sec)
5103 fixS *fixp;
5104 segT sec ATTRIBUTE_UNUSED;
5105 {
5106 return fixp->fx_frag->fr_address + fixp->fx_where;
5107 }
5108
5109 #ifdef OBJ_XCOFF
5110
5111 /* This is called to see whether a fixup should be adjusted to use a
5112 section symbol. We take the opportunity to change a fixup against
5113 a symbol in the TOC subsegment into a reloc against the
5114 corresponding .tc symbol. */
5115
5116 int
5117 ppc_fix_adjustable (fix)
5118 fixS *fix;
5119 {
5120 valueT val = resolve_symbol_value (fix->fx_addsy);
5121 segT symseg = S_GET_SEGMENT (fix->fx_addsy);
5122 TC_SYMFIELD_TYPE *tc;
5123
5124 if (symseg == absolute_section)
5125 return 0;
5126
5127 if (ppc_toc_csect != (symbolS *) NULL
5128 && fix->fx_addsy != ppc_toc_csect
5129 && symseg == data_section
5130 && val >= ppc_toc_frag->fr_address
5131 && (ppc_after_toc_frag == (fragS *) NULL
5132 || val < ppc_after_toc_frag->fr_address))
5133 {
5134 symbolS *sy;
5135
5136 for (sy = symbol_next (ppc_toc_csect);
5137 sy != (symbolS *) NULL;
5138 sy = symbol_next (sy))
5139 {
5140 TC_SYMFIELD_TYPE *sy_tc = symbol_get_tc (sy);
5141
5142 if (sy_tc->class == XMC_TC0)
5143 continue;
5144 if (sy_tc->class != XMC_TC)
5145 break;
5146 if (val == resolve_symbol_value (sy))
5147 {
5148 fix->fx_addsy = sy;
5149 fix->fx_addnumber = val - ppc_toc_frag->fr_address;
5150 return 0;
5151 }
5152 }
5153
5154 as_bad_where (fix->fx_file, fix->fx_line,
5155 _("symbol in .toc does not match any .tc"));
5156 }
5157
5158 /* Possibly adjust the reloc to be against the csect. */
5159 tc = symbol_get_tc (fix->fx_addsy);
5160 if (tc->subseg == 0
5161 && tc->class != XMC_TC0
5162 && tc->class != XMC_TC
5163 && symseg != bss_section
5164 /* Don't adjust if this is a reloc in the toc section. */
5165 && (symseg != data_section
5166 || ppc_toc_csect == NULL
5167 || val < ppc_toc_frag->fr_address
5168 || (ppc_after_toc_frag != NULL
5169 && val >= ppc_after_toc_frag->fr_address)))
5170 {
5171 symbolS *csect;
5172 symbolS *next_csect;
5173
5174 if (symseg == text_section)
5175 csect = ppc_text_csects;
5176 else if (symseg == data_section)
5177 csect = ppc_data_csects;
5178 else
5179 abort ();
5180
5181 /* Skip the initial dummy symbol. */
5182 csect = symbol_get_tc (csect)->next;
5183
5184 if (csect != (symbolS *) NULL)
5185 {
5186 while ((next_csect = symbol_get_tc (csect)->next) != (symbolS *) NULL
5187 && (symbol_get_frag (next_csect)->fr_address <= val))
5188 {
5189 /* If the csect address equals the symbol value, then we
5190 have to look through the full symbol table to see
5191 whether this is the csect we want. Note that we will
5192 only get here if the csect has zero length. */
5193 if (symbol_get_frag (csect)->fr_address == val
5194 && S_GET_VALUE (csect) == val)
5195 {
5196 symbolS *scan;
5197
5198 for (scan = symbol_next (csect);
5199 scan != NULL;
5200 scan = symbol_next (scan))
5201 {
5202 if (symbol_get_tc (scan)->subseg != 0)
5203 break;
5204 if (scan == fix->fx_addsy)
5205 break;
5206 }
5207
5208 /* If we found the symbol before the next csect
5209 symbol, then this is the csect we want. */
5210 if (scan == fix->fx_addsy)
5211 break;
5212 }
5213
5214 csect = next_csect;
5215 }
5216
5217 fix->fx_offset += val - symbol_get_frag (csect)->fr_address;
5218 fix->fx_addsy = csect;
5219 }
5220 return 0;
5221 }
5222
5223 /* Adjust a reloc against a .lcomm symbol to be against the base
5224 .lcomm. */
5225 if (symseg == bss_section
5226 && ! S_IS_EXTERNAL (fix->fx_addsy))
5227 {
5228 symbolS *sy = symbol_get_frag (fix->fx_addsy)->fr_symbol;
5229
5230 fix->fx_offset += val - resolve_symbol_value (sy);
5231 fix->fx_addsy = sy;
5232 }
5233
5234 return 0;
5235 }
5236
5237 /* A reloc from one csect to another must be kept. The assembler
5238 will, of course, keep relocs between sections, and it will keep
5239 absolute relocs, but we need to force it to keep PC relative relocs
5240 between two csects in the same section. */
5241
5242 int
5243 ppc_force_relocation (fix)
5244 fixS *fix;
5245 {
5246 /* At this point fix->fx_addsy should already have been converted to
5247 a csect symbol. If the csect does not include the fragment, then
5248 we need to force the relocation. */
5249 if (fix->fx_pcrel
5250 && fix->fx_addsy != NULL
5251 && symbol_get_tc (fix->fx_addsy)->subseg != 0
5252 && ((symbol_get_frag (fix->fx_addsy)->fr_address
5253 > fix->fx_frag->fr_address)
5254 || (symbol_get_tc (fix->fx_addsy)->next != NULL
5255 && (symbol_get_frag (symbol_get_tc (fix->fx_addsy)->next)->fr_address
5256 <= fix->fx_frag->fr_address))))
5257 return 1;
5258
5259 return generic_force_reloc (fix);
5260 }
5261
5262 #endif /* OBJ_XCOFF */
5263
5264 #ifdef OBJ_ELF
5265 /* If this function returns non-zero, it guarantees that a relocation
5266 will be emitted for a fixup. */
5267
5268 int
5269 ppc_force_relocation (fix)
5270 fixS *fix;
5271 {
5272 /* Branch prediction relocations must force a relocation, as must
5273 the vtable description relocs. */
5274 switch (fix->fx_r_type)
5275 {
5276 case BFD_RELOC_PPC_B16_BRTAKEN:
5277 case BFD_RELOC_PPC_B16_BRNTAKEN:
5278 case BFD_RELOC_PPC_BA16_BRTAKEN:
5279 case BFD_RELOC_PPC_BA16_BRNTAKEN:
5280 case BFD_RELOC_PPC64_TOC:
5281 return 1;
5282 default:
5283 break;
5284 }
5285
5286 return generic_force_reloc (fix);
5287 }
5288
5289 int
5290 ppc_fix_adjustable (fix)
5291 fixS *fix;
5292 {
5293 return (fix->fx_r_type != BFD_RELOC_16_GOTOFF
5294 && fix->fx_r_type != BFD_RELOC_LO16_GOTOFF
5295 && fix->fx_r_type != BFD_RELOC_HI16_GOTOFF
5296 && fix->fx_r_type != BFD_RELOC_HI16_S_GOTOFF
5297 && fix->fx_r_type != BFD_RELOC_GPREL16
5298 && fix->fx_r_type != BFD_RELOC_VTABLE_INHERIT
5299 && fix->fx_r_type != BFD_RELOC_VTABLE_ENTRY
5300 && (fix->fx_pcrel
5301 || (fix->fx_subsy != NULL
5302 && (S_GET_SEGMENT (fix->fx_subsy)
5303 == S_GET_SEGMENT (fix->fx_addsy)))
5304 || S_IS_LOCAL (fix->fx_addsy)));
5305 }
5306 #endif
5307
5308 /* Apply a fixup to the object code. This is called for all the
5309 fixups we generated by the call to fix_new_exp, above. In the call
5310 above we used a reloc code which was the largest legal reloc code
5311 plus the operand index. Here we undo that to recover the operand
5312 index. At this point all symbol values should be fully resolved,
5313 and we attempt to completely resolve the reloc. If we can not do
5314 that, we determine the correct reloc code and put it back in the
5315 fixup. */
5316
5317 void
5318 md_apply_fix3 (fixP, valP, seg)
5319 fixS *fixP;
5320 valueT * valP;
5321 segT seg ATTRIBUTE_UNUSED;
5322 {
5323 valueT value = * valP;
5324
5325 #ifdef OBJ_ELF
5326 if (fixP->fx_addsy != NULL)
5327 {
5328 /* Hack around bfd_install_relocation brain damage. */
5329 if (fixP->fx_pcrel)
5330 value += fixP->fx_frag->fr_address + fixP->fx_where;
5331 }
5332 else
5333 fixP->fx_done = 1;
5334 #else
5335 /* FIXME FIXME FIXME: The value we are passed in *valP includes
5336 the symbol values. Since we are using BFD_ASSEMBLER, if we are
5337 doing this relocation the code in write.c is going to call
5338 bfd_install_relocation, which is also going to use the symbol
5339 value. That means that if the reloc is fully resolved we want to
5340 use *valP since bfd_install_relocation is not being used.
5341 However, if the reloc is not fully resolved we do not want to use
5342 *valP, and must use fx_offset instead. However, if the reloc
5343 is PC relative, we do want to use *valP since it includes the
5344 result of md_pcrel_from. This is confusing. */
5345 if (fixP->fx_addsy == (symbolS *) NULL)
5346 fixP->fx_done = 1;
5347
5348 else if (fixP->fx_pcrel)
5349 ;
5350
5351 else
5352 value = fixP->fx_offset;
5353 #endif
5354
5355 if (fixP->fx_subsy != (symbolS *) NULL)
5356 {
5357 /* We can't actually support subtracting a symbol. */
5358 as_bad_where (fixP->fx_file, fixP->fx_line, _("expression too complex"));
5359 }
5360
5361 if ((int) fixP->fx_r_type >= (int) BFD_RELOC_UNUSED)
5362 {
5363 int opindex;
5364 const struct powerpc_operand *operand;
5365 char *where;
5366 unsigned long insn;
5367
5368 opindex = (int) fixP->fx_r_type - (int) BFD_RELOC_UNUSED;
5369
5370 operand = &powerpc_operands[opindex];
5371
5372 #ifdef OBJ_XCOFF
5373 /* An instruction like `lwz 9,sym(30)' when `sym' is not a TOC symbol
5374 does not generate a reloc. It uses the offset of `sym' within its
5375 csect. Other usages, such as `.long sym', generate relocs. This
5376 is the documented behaviour of non-TOC symbols. */
5377 if ((operand->flags & PPC_OPERAND_PARENS) != 0
5378 && operand->bits == 16
5379 && operand->shift == 0
5380 && (operand->insert == NULL || ppc_obj64)
5381 && fixP->fx_addsy != NULL
5382 && symbol_get_tc (fixP->fx_addsy)->subseg != 0
5383 && symbol_get_tc (fixP->fx_addsy)->class != XMC_TC
5384 && symbol_get_tc (fixP->fx_addsy)->class != XMC_TC0
5385 && S_GET_SEGMENT (fixP->fx_addsy) != bss_section)
5386 {
5387 value = fixP->fx_offset;
5388 fixP->fx_done = 1;
5389 }
5390 #endif
5391
5392 /* Fetch the instruction, insert the fully resolved operand
5393 value, and stuff the instruction back again. */
5394 where = fixP->fx_frag->fr_literal + fixP->fx_where;
5395 if (target_big_endian)
5396 insn = bfd_getb32 ((unsigned char *) where);
5397 else
5398 insn = bfd_getl32 ((unsigned char *) where);
5399 insn = ppc_insert_operand (insn, operand, (offsetT) value,
5400 fixP->fx_file, fixP->fx_line);
5401 if (target_big_endian)
5402 bfd_putb32 ((bfd_vma) insn, (unsigned char *) where);
5403 else
5404 bfd_putl32 ((bfd_vma) insn, (unsigned char *) where);
5405
5406 if (fixP->fx_done)
5407 /* Nothing else to do here. */
5408 return;
5409
5410 assert (fixP->fx_addsy != NULL);
5411
5412 /* Determine a BFD reloc value based on the operand information.
5413 We are only prepared to turn a few of the operands into
5414 relocs. */
5415 if ((operand->flags & PPC_OPERAND_RELATIVE) != 0
5416 && operand->bits == 26
5417 && operand->shift == 0)
5418 fixP->fx_r_type = BFD_RELOC_PPC_B26;
5419 else if ((operand->flags & PPC_OPERAND_RELATIVE) != 0
5420 && operand->bits == 16
5421 && operand->shift == 0)
5422 {
5423 fixP->fx_r_type = BFD_RELOC_PPC_B16;
5424 #ifdef OBJ_XCOFF
5425 fixP->fx_size = 2;
5426 if (target_big_endian)
5427 fixP->fx_where += 2;
5428 #endif
5429 }
5430 else if ((operand->flags & PPC_OPERAND_ABSOLUTE) != 0
5431 && operand->bits == 26
5432 && operand->shift == 0)
5433 fixP->fx_r_type = BFD_RELOC_PPC_BA26;
5434 else if ((operand->flags & PPC_OPERAND_ABSOLUTE) != 0
5435 && operand->bits == 16
5436 && operand->shift == 0)
5437 {
5438 fixP->fx_r_type = BFD_RELOC_PPC_BA16;
5439 #ifdef OBJ_XCOFF
5440 fixP->fx_size = 2;
5441 if (target_big_endian)
5442 fixP->fx_where += 2;
5443 #endif
5444 }
5445 #if defined (OBJ_XCOFF) || defined (OBJ_ELF)
5446 else if ((operand->flags & PPC_OPERAND_PARENS) != 0
5447 && operand->bits == 16
5448 && operand->shift == 0
5449 && ppc_is_toc_sym (fixP->fx_addsy))
5450 {
5451 fixP->fx_r_type = BFD_RELOC_PPC_TOC16;
5452 #ifdef OBJ_ELF
5453 if (ppc_obj64
5454 && (operand->flags & PPC_OPERAND_DS) != 0)
5455 fixP->fx_r_type = BFD_RELOC_PPC64_TOC16_DS;
5456 #endif
5457 fixP->fx_size = 2;
5458 if (target_big_endian)
5459 fixP->fx_where += 2;
5460 }
5461 #endif /* defined (OBJ_XCOFF) || defined (OBJ_ELF) */
5462 else
5463 {
5464 char *sfile;
5465 unsigned int sline;
5466
5467 /* Use expr_symbol_where to see if this is an expression
5468 symbol. */
5469 if (expr_symbol_where (fixP->fx_addsy, &sfile, &sline))
5470 as_bad_where (fixP->fx_file, fixP->fx_line,
5471 _("unresolved expression that must be resolved"));
5472 else
5473 as_bad_where (fixP->fx_file, fixP->fx_line,
5474 _("unsupported relocation against %s"),
5475 S_GET_NAME (fixP->fx_addsy));
5476 fixP->fx_done = 1;
5477 return;
5478 }
5479 }
5480 else
5481 {
5482 #ifdef OBJ_ELF
5483 ppc_elf_validate_fix (fixP, seg);
5484 #endif
5485 switch (fixP->fx_r_type)
5486 {
5487 case BFD_RELOC_CTOR:
5488 if (ppc_obj64)
5489 goto ctor64;
5490 /* fall through */
5491
5492 case BFD_RELOC_32:
5493 if (fixP->fx_pcrel)
5494 fixP->fx_r_type = BFD_RELOC_32_PCREL;
5495 /* fall through */
5496
5497 case BFD_RELOC_RVA:
5498 case BFD_RELOC_32_PCREL:
5499 case BFD_RELOC_PPC_EMB_NADDR32:
5500 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5501 value, 4);
5502 break;
5503
5504 case BFD_RELOC_64:
5505 ctor64:
5506 if (fixP->fx_pcrel)
5507 fixP->fx_r_type = BFD_RELOC_64_PCREL;
5508 /* fall through */
5509
5510 case BFD_RELOC_64_PCREL:
5511 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5512 value, 8);
5513 break;
5514
5515 case BFD_RELOC_LO16:
5516 case BFD_RELOC_16:
5517 case BFD_RELOC_GPREL16:
5518 case BFD_RELOC_16_GOT_PCREL:
5519 case BFD_RELOC_16_GOTOFF:
5520 case BFD_RELOC_LO16_GOTOFF:
5521 case BFD_RELOC_HI16_GOTOFF:
5522 case BFD_RELOC_HI16_S_GOTOFF:
5523 case BFD_RELOC_16_BASEREL:
5524 case BFD_RELOC_LO16_BASEREL:
5525 case BFD_RELOC_HI16_BASEREL:
5526 case BFD_RELOC_HI16_S_BASEREL:
5527 case BFD_RELOC_PPC_EMB_NADDR16:
5528 case BFD_RELOC_PPC_EMB_NADDR16_LO:
5529 case BFD_RELOC_PPC_EMB_NADDR16_HI:
5530 case BFD_RELOC_PPC_EMB_NADDR16_HA:
5531 case BFD_RELOC_PPC_EMB_SDAI16:
5532 case BFD_RELOC_PPC_EMB_SDA2REL:
5533 case BFD_RELOC_PPC_EMB_SDA2I16:
5534 case BFD_RELOC_PPC_EMB_RELSEC16:
5535 case BFD_RELOC_PPC_EMB_RELST_LO:
5536 case BFD_RELOC_PPC_EMB_RELST_HI:
5537 case BFD_RELOC_PPC_EMB_RELST_HA:
5538 case BFD_RELOC_PPC_EMB_RELSDA:
5539 case BFD_RELOC_PPC_TOC16:
5540 #ifdef OBJ_ELF
5541 case BFD_RELOC_PPC64_TOC16_LO:
5542 case BFD_RELOC_PPC64_TOC16_HI:
5543 case BFD_RELOC_PPC64_TOC16_HA:
5544 #endif
5545 if (fixP->fx_pcrel)
5546 {
5547 if (fixP->fx_addsy != NULL)
5548 as_bad_where (fixP->fx_file, fixP->fx_line,
5549 _("cannot emit PC relative %s relocation against %s"),
5550 bfd_get_reloc_code_name (fixP->fx_r_type),
5551 S_GET_NAME (fixP->fx_addsy));
5552 else
5553 as_bad_where (fixP->fx_file, fixP->fx_line,
5554 _("cannot emit PC relative %s relocation"),
5555 bfd_get_reloc_code_name (fixP->fx_r_type));
5556 }
5557
5558 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5559 value, 2);
5560 break;
5561
5562 /* This case happens when you write, for example,
5563 lis %r3,(L1-L2)@ha
5564 where L1 and L2 are defined later. */
5565 case BFD_RELOC_HI16:
5566 if (fixP->fx_pcrel)
5567 abort ();
5568 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5569 PPC_HI (value), 2);
5570 break;
5571
5572 case BFD_RELOC_HI16_S:
5573 if (fixP->fx_pcrel)
5574 abort ();
5575 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5576 PPC_HA (value), 2);
5577 break;
5578
5579 #ifdef OBJ_ELF
5580 case BFD_RELOC_PPC64_HIGHER:
5581 if (fixP->fx_pcrel)
5582 abort ();
5583 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5584 PPC_HIGHER (value), 2);
5585 break;
5586
5587 case BFD_RELOC_PPC64_HIGHER_S:
5588 if (fixP->fx_pcrel)
5589 abort ();
5590 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5591 PPC_HIGHERA (value), 2);
5592 break;
5593
5594 case BFD_RELOC_PPC64_HIGHEST:
5595 if (fixP->fx_pcrel)
5596 abort ();
5597 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5598 PPC_HIGHEST (value), 2);
5599 break;
5600
5601 case BFD_RELOC_PPC64_HIGHEST_S:
5602 if (fixP->fx_pcrel)
5603 abort ();
5604 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5605 PPC_HIGHESTA (value), 2);
5606 break;
5607
5608 case BFD_RELOC_PPC64_ADDR16_DS:
5609 case BFD_RELOC_PPC64_ADDR16_LO_DS:
5610 case BFD_RELOC_PPC64_GOT16_DS:
5611 case BFD_RELOC_PPC64_GOT16_LO_DS:
5612 case BFD_RELOC_PPC64_PLT16_LO_DS:
5613 case BFD_RELOC_PPC64_SECTOFF_DS:
5614 case BFD_RELOC_PPC64_SECTOFF_LO_DS:
5615 case BFD_RELOC_PPC64_TOC16_DS:
5616 case BFD_RELOC_PPC64_TOC16_LO_DS:
5617 case BFD_RELOC_PPC64_PLTGOT16_DS:
5618 case BFD_RELOC_PPC64_PLTGOT16_LO_DS:
5619 if (fixP->fx_pcrel)
5620 abort ();
5621 {
5622 unsigned char *where = fixP->fx_frag->fr_literal + fixP->fx_where;
5623 unsigned long val;
5624
5625 if (target_big_endian)
5626 val = bfd_getb16 (where);
5627 else
5628 val = bfd_getl16 (where);
5629 val |= (value & 0xfffc);
5630 if (target_big_endian)
5631 bfd_putb16 ((bfd_vma) val, where);
5632 else
5633 bfd_putl16 ((bfd_vma) val, where);
5634 }
5635 break;
5636 #endif
5637 /* Because SDA21 modifies the register field, the size is set to 4
5638 bytes, rather than 2, so offset it here appropriately. */
5639 case BFD_RELOC_PPC_EMB_SDA21:
5640 if (fixP->fx_pcrel)
5641 abort ();
5642
5643 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where
5644 + ((target_big_endian) ? 2 : 0),
5645 value, 2);
5646 break;
5647
5648 case BFD_RELOC_8:
5649 if (fixP->fx_pcrel)
5650 abort ();
5651
5652 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
5653 value, 1);
5654 break;
5655
5656 case BFD_RELOC_24_PLT_PCREL:
5657 case BFD_RELOC_PPC_LOCAL24PC:
5658 if (!fixP->fx_pcrel && !fixP->fx_done)
5659 abort ();
5660
5661 if (fixP->fx_done)
5662 {
5663 char *where;
5664 unsigned long insn;
5665
5666 /* Fetch the instruction, insert the fully resolved operand
5667 value, and stuff the instruction back again. */
5668 where = fixP->fx_frag->fr_literal + fixP->fx_where;
5669 if (target_big_endian)
5670 insn = bfd_getb32 ((unsigned char *) where);
5671 else
5672 insn = bfd_getl32 ((unsigned char *) where);
5673 if ((value & 3) != 0)
5674 as_bad_where (fixP->fx_file, fixP->fx_line,
5675 _("must branch to an address a multiple of 4"));
5676 if ((offsetT) value < -0x40000000
5677 || (offsetT) value >= 0x40000000)
5678 as_bad_where (fixP->fx_file, fixP->fx_line,
5679 _("@local or @plt branch destination is too far away, %ld bytes"),
5680 (long) value);
5681 insn = insn | (value & 0x03fffffc);
5682 if (target_big_endian)
5683 bfd_putb32 ((bfd_vma) insn, (unsigned char *) where);
5684 else
5685 bfd_putl32 ((bfd_vma) insn, (unsigned char *) where);
5686 }
5687 break;
5688
5689 case BFD_RELOC_VTABLE_INHERIT:
5690 fixP->fx_done = 0;
5691 if (fixP->fx_addsy
5692 && !S_IS_DEFINED (fixP->fx_addsy)
5693 && !S_IS_WEAK (fixP->fx_addsy))
5694 S_SET_WEAK (fixP->fx_addsy);
5695 break;
5696
5697 case BFD_RELOC_VTABLE_ENTRY:
5698 fixP->fx_done = 0;
5699 break;
5700
5701 #ifdef OBJ_ELF
5702 /* Generated by reference to `sym@tocbase'. The sym is
5703 ignored by the linker. */
5704 case BFD_RELOC_PPC64_TOC:
5705 fixP->fx_done = 0;
5706 break;
5707 #endif
5708 default:
5709 fprintf (stderr,
5710 _("Gas failure, reloc value %d\n"), fixP->fx_r_type);
5711 fflush (stderr);
5712 abort ();
5713 }
5714 }
5715
5716 #ifdef OBJ_ELF
5717 fixP->fx_addnumber = value;
5718 #else
5719 if (fixP->fx_r_type != BFD_RELOC_PPC_TOC16)
5720 fixP->fx_addnumber = 0;
5721 else
5722 {
5723 #ifdef TE_PE
5724 fixP->fx_addnumber = 0;
5725 #else
5726 /* We want to use the offset within the data segment of the
5727 symbol, not the actual VMA of the symbol. */
5728 fixP->fx_addnumber =
5729 - bfd_get_section_vma (stdoutput, S_GET_SEGMENT (fixP->fx_addsy));
5730 #endif
5731 }
5732 #endif
5733 }
5734
5735 /* Generate a reloc for a fixup. */
5736
5737 arelent *
5738 tc_gen_reloc (seg, fixp)
5739 asection *seg ATTRIBUTE_UNUSED;
5740 fixS *fixp;
5741 {
5742 arelent *reloc;
5743
5744 reloc = (arelent *) xmalloc (sizeof (arelent));
5745
5746 reloc->sym_ptr_ptr = (asymbol **) xmalloc (sizeof (asymbol *));
5747 *reloc->sym_ptr_ptr = symbol_get_bfdsym (fixp->fx_addsy);
5748 reloc->address = fixp->fx_frag->fr_address + fixp->fx_where;
5749 reloc->howto = bfd_reloc_type_lookup (stdoutput, fixp->fx_r_type);
5750 if (reloc->howto == (reloc_howto_type *) NULL)
5751 {
5752 as_bad_where (fixp->fx_file, fixp->fx_line,
5753 _("reloc %d not supported by object file format"),
5754 (int) fixp->fx_r_type);
5755 return NULL;
5756 }
5757 reloc->addend = fixp->fx_addnumber;
5758
5759 return reloc;
5760 }
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