Remove use of alloca.
[deliverable/binutils-gdb.git] / gas / config / tc-ppc.c
1 /* tc-ppc.c -- Assemble for the PowerPC or POWER (RS/6000)
2 Copyright (C) 1994-2016 Free Software Foundation, Inc.
3 Written by Ian Lance Taylor, Cygnus Support.
4
5 This file is part of GAS, the GNU Assembler.
6
7 GAS is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 3, or (at your option)
10 any later version.
11
12 GAS is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GAS; see the file COPYING. If not, write to the Free
19 Software Foundation, 51 Franklin Street - Fifth Floor, Boston, MA
20 02110-1301, USA. */
21
22 #include "as.h"
23 #include "safe-ctype.h"
24 #include "subsegs.h"
25 #include "dw2gencfi.h"
26 #include "opcode/ppc.h"
27
28 #ifdef OBJ_ELF
29 #include "elf/ppc.h"
30 #include "elf/ppc64.h"
31 #include "dwarf2dbg.h"
32 #endif
33
34 #ifdef TE_PE
35 #include "coff/pe.h"
36 #endif
37
38 #ifdef OBJ_XCOFF
39 #include "coff/xcoff.h"
40 #include "libxcoff.h"
41 #endif
42
43 /* This is the assembler for the PowerPC or POWER (RS/6000) chips. */
44
45 /* Tell the main code what the endianness is. */
46 extern int target_big_endian;
47
48 /* Whether or not, we've set target_big_endian. */
49 static int set_target_endian = 0;
50
51 /* Whether to use user friendly register names. */
52 #ifndef TARGET_REG_NAMES_P
53 #ifdef TE_PE
54 #define TARGET_REG_NAMES_P TRUE
55 #else
56 #define TARGET_REG_NAMES_P FALSE
57 #endif
58 #endif
59
60 /* Macros for calculating LO, HI, HA, HIGHER, HIGHERA, HIGHEST,
61 HIGHESTA. */
62
63 /* #lo(value) denotes the least significant 16 bits of the indicated. */
64 #define PPC_LO(v) ((v) & 0xffff)
65
66 /* #hi(value) denotes bits 16 through 31 of the indicated value. */
67 #define PPC_HI(v) (((v) >> 16) & 0xffff)
68
69 /* #ha(value) denotes the high adjusted value: bits 16 through 31 of
70 the indicated value, compensating for #lo() being treated as a
71 signed number. */
72 #define PPC_HA(v) PPC_HI ((v) + 0x8000)
73
74 /* #higher(value) denotes bits 32 through 47 of the indicated value. */
75 #define PPC_HIGHER(v) (((v) >> 16 >> 16) & 0xffff)
76
77 /* #highera(value) denotes bits 32 through 47 of the indicated value,
78 compensating for #lo() being treated as a signed number. */
79 #define PPC_HIGHERA(v) PPC_HIGHER ((v) + 0x8000)
80
81 /* #highest(value) denotes bits 48 through 63 of the indicated value. */
82 #define PPC_HIGHEST(v) (((v) >> 24 >> 24) & 0xffff)
83
84 /* #highesta(value) denotes bits 48 through 63 of the indicated value,
85 compensating for #lo being treated as a signed number. */
86 #define PPC_HIGHESTA(v) PPC_HIGHEST ((v) + 0x8000)
87
88 #define SEX16(val) (((val) ^ 0x8000) - 0x8000)
89
90 /* For the time being on ppc64, don't report overflow on @h and @ha
91 applied to constants. */
92 #define REPORT_OVERFLOW_HI 0
93
94 static bfd_boolean reg_names_p = TARGET_REG_NAMES_P;
95
96 static void ppc_macro (char *, const struct powerpc_macro *);
97 static void ppc_byte (int);
98
99 #if defined (OBJ_XCOFF) || defined (OBJ_ELF)
100 static void ppc_tc (int);
101 static void ppc_machine (int);
102 #endif
103
104 #ifdef OBJ_XCOFF
105 static void ppc_comm (int);
106 static void ppc_bb (int);
107 static void ppc_bc (int);
108 static void ppc_bf (int);
109 static void ppc_biei (int);
110 static void ppc_bs (int);
111 static void ppc_eb (int);
112 static void ppc_ec (int);
113 static void ppc_ef (int);
114 static void ppc_es (int);
115 static void ppc_csect (int);
116 static void ppc_dwsect (int);
117 static void ppc_change_csect (symbolS *, offsetT);
118 static void ppc_function (int);
119 static void ppc_extern (int);
120 static void ppc_lglobl (int);
121 static void ppc_ref (int);
122 static void ppc_section (int);
123 static void ppc_named_section (int);
124 static void ppc_stabx (int);
125 static void ppc_rename (int);
126 static void ppc_toc (int);
127 static void ppc_xcoff_cons (int);
128 static void ppc_vbyte (int);
129 #endif
130
131 #ifdef OBJ_ELF
132 static void ppc_elf_rdata (int);
133 static void ppc_elf_lcomm (int);
134 static void ppc_elf_localentry (int);
135 static void ppc_elf_abiversion (int);
136 #endif
137
138 #ifdef TE_PE
139 static void ppc_previous (int);
140 static void ppc_pdata (int);
141 static void ppc_ydata (int);
142 static void ppc_reldata (int);
143 static void ppc_rdata (int);
144 static void ppc_ualong (int);
145 static void ppc_znop (int);
146 static void ppc_pe_comm (int);
147 static void ppc_pe_section (int);
148 static void ppc_pe_function (int);
149 static void ppc_pe_tocd (int);
150 #endif
151 \f
152 /* Generic assembler global variables which must be defined by all
153 targets. */
154
155 #ifdef OBJ_ELF
156 /* This string holds the chars that always start a comment. If the
157 pre-processor is disabled, these aren't very useful. The macro
158 tc_comment_chars points to this. We use this, rather than the
159 usual comment_chars, so that we can switch for Solaris conventions. */
160 static const char ppc_solaris_comment_chars[] = "#!";
161 static const char ppc_eabi_comment_chars[] = "#";
162
163 #ifdef TARGET_SOLARIS_COMMENT
164 const char *ppc_comment_chars = ppc_solaris_comment_chars;
165 #else
166 const char *ppc_comment_chars = ppc_eabi_comment_chars;
167 #endif
168 #else
169 const char comment_chars[] = "#";
170 #endif
171
172 /* Characters which start a comment at the beginning of a line. */
173 const char line_comment_chars[] = "#";
174
175 /* Characters which may be used to separate multiple commands on a
176 single line. */
177 const char line_separator_chars[] = ";";
178
179 /* Characters which are used to indicate an exponent in a floating
180 point number. */
181 const char EXP_CHARS[] = "eE";
182
183 /* Characters which mean that a number is a floating point constant,
184 as in 0d1.0. */
185 const char FLT_CHARS[] = "dD";
186
187 /* Anything that can start an operand needs to be mentioned here,
188 to stop the input scrubber eating whitespace. */
189 const char ppc_symbol_chars[] = "%[";
190
191 /* The dwarf2 data alignment, adjusted for 32 or 64 bit. */
192 int ppc_cie_data_alignment;
193
194 /* The dwarf2 minimum instruction length. */
195 int ppc_dwarf2_line_min_insn_length;
196
197 /* More than this number of nops in an alignment op gets a branch
198 instead. */
199 unsigned long nop_limit = 4;
200
201 /* The type of processor we are assembling for. This is one or more
202 of the PPC_OPCODE flags defined in opcode/ppc.h. */
203 ppc_cpu_t ppc_cpu = 0;
204 ppc_cpu_t sticky = 0;
205
206 /* Value for ELF e_flags EF_PPC64_ABI. */
207 unsigned int ppc_abiversion = 0;
208
209 /* Flags set on encountering toc relocs. */
210 enum {
211 has_large_toc_reloc = 1,
212 has_small_toc_reloc = 2
213 } toc_reloc_types;
214
215 /* Warn on emitting data to code sections. */
216 int warn_476;
217 unsigned long last_insn;
218 segT last_seg;
219 subsegT last_subseg;
220 \f
221 /* The target specific pseudo-ops which we support. */
222
223 const pseudo_typeS md_pseudo_table[] =
224 {
225 /* Pseudo-ops which must be overridden. */
226 { "byte", ppc_byte, 0 },
227
228 #ifdef OBJ_XCOFF
229 /* Pseudo-ops specific to the RS/6000 XCOFF format. Some of these
230 legitimately belong in the obj-*.c file. However, XCOFF is based
231 on COFF, and is only implemented for the RS/6000. We just use
232 obj-coff.c, and add what we need here. */
233 { "comm", ppc_comm, 0 },
234 { "lcomm", ppc_comm, 1 },
235 { "bb", ppc_bb, 0 },
236 { "bc", ppc_bc, 0 },
237 { "bf", ppc_bf, 0 },
238 { "bi", ppc_biei, 0 },
239 { "bs", ppc_bs, 0 },
240 { "csect", ppc_csect, 0 },
241 { "dwsect", ppc_dwsect, 0 },
242 { "data", ppc_section, 'd' },
243 { "eb", ppc_eb, 0 },
244 { "ec", ppc_ec, 0 },
245 { "ef", ppc_ef, 0 },
246 { "ei", ppc_biei, 1 },
247 { "es", ppc_es, 0 },
248 { "extern", ppc_extern, 0 },
249 { "function", ppc_function, 0 },
250 { "lglobl", ppc_lglobl, 0 },
251 { "ref", ppc_ref, 0 },
252 { "rename", ppc_rename, 0 },
253 { "section", ppc_named_section, 0 },
254 { "stabx", ppc_stabx, 0 },
255 { "text", ppc_section, 't' },
256 { "toc", ppc_toc, 0 },
257 { "long", ppc_xcoff_cons, 2 },
258 { "llong", ppc_xcoff_cons, 3 },
259 { "word", ppc_xcoff_cons, 1 },
260 { "short", ppc_xcoff_cons, 1 },
261 { "vbyte", ppc_vbyte, 0 },
262 #endif
263
264 #ifdef OBJ_ELF
265 { "llong", cons, 8 },
266 { "rdata", ppc_elf_rdata, 0 },
267 { "rodata", ppc_elf_rdata, 0 },
268 { "lcomm", ppc_elf_lcomm, 0 },
269 { "localentry", ppc_elf_localentry, 0 },
270 { "abiversion", ppc_elf_abiversion, 0 },
271 #endif
272
273 #ifdef TE_PE
274 /* Pseudo-ops specific to the Windows NT PowerPC PE (coff) format. */
275 { "previous", ppc_previous, 0 },
276 { "pdata", ppc_pdata, 0 },
277 { "ydata", ppc_ydata, 0 },
278 { "reldata", ppc_reldata, 0 },
279 { "rdata", ppc_rdata, 0 },
280 { "ualong", ppc_ualong, 0 },
281 { "znop", ppc_znop, 0 },
282 { "comm", ppc_pe_comm, 0 },
283 { "lcomm", ppc_pe_comm, 1 },
284 { "section", ppc_pe_section, 0 },
285 { "function", ppc_pe_function,0 },
286 { "tocd", ppc_pe_tocd, 0 },
287 #endif
288
289 #if defined (OBJ_XCOFF) || defined (OBJ_ELF)
290 { "tc", ppc_tc, 0 },
291 { "machine", ppc_machine, 0 },
292 #endif
293
294 { NULL, NULL, 0 }
295 };
296
297 \f
298 /* Predefined register names if -mregnames (or default for Windows NT).
299 In general, there are lots of them, in an attempt to be compatible
300 with a number of other Windows NT assemblers. */
301
302 /* Structure to hold information about predefined registers. */
303 struct pd_reg
304 {
305 const char *name;
306 int value;
307 };
308
309 /* List of registers that are pre-defined:
310
311 Each general register has predefined names of the form:
312 1. r<reg_num> which has the value <reg_num>.
313 2. r.<reg_num> which has the value <reg_num>.
314
315 Each floating point register has predefined names of the form:
316 1. f<reg_num> which has the value <reg_num>.
317 2. f.<reg_num> which has the value <reg_num>.
318
319 Each vector unit register has predefined names of the form:
320 1. v<reg_num> which has the value <reg_num>.
321 2. v.<reg_num> which has the value <reg_num>.
322
323 Each condition register has predefined names of the form:
324 1. cr<reg_num> which has the value <reg_num>.
325 2. cr.<reg_num> which has the value <reg_num>.
326
327 There are individual registers as well:
328 sp or r.sp has the value 1
329 rtoc or r.toc has the value 2
330 fpscr has the value 0
331 xer has the value 1
332 lr has the value 8
333 ctr has the value 9
334 pmr has the value 0
335 dar has the value 19
336 dsisr has the value 18
337 dec has the value 22
338 sdr1 has the value 25
339 srr0 has the value 26
340 srr1 has the value 27
341
342 The table is sorted. Suitable for searching by a binary search. */
343
344 static const struct pd_reg pre_defined_registers[] =
345 {
346 { "cr.0", 0 }, /* Condition Registers */
347 { "cr.1", 1 },
348 { "cr.2", 2 },
349 { "cr.3", 3 },
350 { "cr.4", 4 },
351 { "cr.5", 5 },
352 { "cr.6", 6 },
353 { "cr.7", 7 },
354
355 { "cr0", 0 },
356 { "cr1", 1 },
357 { "cr2", 2 },
358 { "cr3", 3 },
359 { "cr4", 4 },
360 { "cr5", 5 },
361 { "cr6", 6 },
362 { "cr7", 7 },
363
364 { "ctr", 9 },
365
366 { "dar", 19 }, /* Data Access Register */
367 { "dec", 22 }, /* Decrementer */
368 { "dsisr", 18 }, /* Data Storage Interrupt Status Register */
369
370 { "f.0", 0 }, /* Floating point registers */
371 { "f.1", 1 },
372 { "f.10", 10 },
373 { "f.11", 11 },
374 { "f.12", 12 },
375 { "f.13", 13 },
376 { "f.14", 14 },
377 { "f.15", 15 },
378 { "f.16", 16 },
379 { "f.17", 17 },
380 { "f.18", 18 },
381 { "f.19", 19 },
382 { "f.2", 2 },
383 { "f.20", 20 },
384 { "f.21", 21 },
385 { "f.22", 22 },
386 { "f.23", 23 },
387 { "f.24", 24 },
388 { "f.25", 25 },
389 { "f.26", 26 },
390 { "f.27", 27 },
391 { "f.28", 28 },
392 { "f.29", 29 },
393 { "f.3", 3 },
394 { "f.30", 30 },
395 { "f.31", 31 },
396
397 { "f.32", 32 }, /* Extended floating point scalar registers (ISA 2.06). */
398 { "f.33", 33 },
399 { "f.34", 34 },
400 { "f.35", 35 },
401 { "f.36", 36 },
402 { "f.37", 37 },
403 { "f.38", 38 },
404 { "f.39", 39 },
405 { "f.4", 4 },
406 { "f.40", 40 },
407 { "f.41", 41 },
408 { "f.42", 42 },
409 { "f.43", 43 },
410 { "f.44", 44 },
411 { "f.45", 45 },
412 { "f.46", 46 },
413 { "f.47", 47 },
414 { "f.48", 48 },
415 { "f.49", 49 },
416 { "f.5", 5 },
417 { "f.50", 50 },
418 { "f.51", 51 },
419 { "f.52", 52 },
420 { "f.53", 53 },
421 { "f.54", 54 },
422 { "f.55", 55 },
423 { "f.56", 56 },
424 { "f.57", 57 },
425 { "f.58", 58 },
426 { "f.59", 59 },
427 { "f.6", 6 },
428 { "f.60", 60 },
429 { "f.61", 61 },
430 { "f.62", 62 },
431 { "f.63", 63 },
432 { "f.7", 7 },
433 { "f.8", 8 },
434 { "f.9", 9 },
435
436 { "f0", 0 },
437 { "f1", 1 },
438 { "f10", 10 },
439 { "f11", 11 },
440 { "f12", 12 },
441 { "f13", 13 },
442 { "f14", 14 },
443 { "f15", 15 },
444 { "f16", 16 },
445 { "f17", 17 },
446 { "f18", 18 },
447 { "f19", 19 },
448 { "f2", 2 },
449 { "f20", 20 },
450 { "f21", 21 },
451 { "f22", 22 },
452 { "f23", 23 },
453 { "f24", 24 },
454 { "f25", 25 },
455 { "f26", 26 },
456 { "f27", 27 },
457 { "f28", 28 },
458 { "f29", 29 },
459 { "f3", 3 },
460 { "f30", 30 },
461 { "f31", 31 },
462
463 { "f32", 32 }, /* Extended floating point scalar registers (ISA 2.06). */
464 { "f33", 33 },
465 { "f34", 34 },
466 { "f35", 35 },
467 { "f36", 36 },
468 { "f37", 37 },
469 { "f38", 38 },
470 { "f39", 39 },
471 { "f4", 4 },
472 { "f40", 40 },
473 { "f41", 41 },
474 { "f42", 42 },
475 { "f43", 43 },
476 { "f44", 44 },
477 { "f45", 45 },
478 { "f46", 46 },
479 { "f47", 47 },
480 { "f48", 48 },
481 { "f49", 49 },
482 { "f5", 5 },
483 { "f50", 50 },
484 { "f51", 51 },
485 { "f52", 52 },
486 { "f53", 53 },
487 { "f54", 54 },
488 { "f55", 55 },
489 { "f56", 56 },
490 { "f57", 57 },
491 { "f58", 58 },
492 { "f59", 59 },
493 { "f6", 6 },
494 { "f60", 60 },
495 { "f61", 61 },
496 { "f62", 62 },
497 { "f63", 63 },
498 { "f7", 7 },
499 { "f8", 8 },
500 { "f9", 9 },
501
502 { "fpscr", 0 },
503
504 /* Quantization registers used with pair single instructions. */
505 { "gqr.0", 0 },
506 { "gqr.1", 1 },
507 { "gqr.2", 2 },
508 { "gqr.3", 3 },
509 { "gqr.4", 4 },
510 { "gqr.5", 5 },
511 { "gqr.6", 6 },
512 { "gqr.7", 7 },
513 { "gqr0", 0 },
514 { "gqr1", 1 },
515 { "gqr2", 2 },
516 { "gqr3", 3 },
517 { "gqr4", 4 },
518 { "gqr5", 5 },
519 { "gqr6", 6 },
520 { "gqr7", 7 },
521
522 { "lr", 8 }, /* Link Register */
523
524 { "pmr", 0 },
525
526 { "r.0", 0 }, /* General Purpose Registers */
527 { "r.1", 1 },
528 { "r.10", 10 },
529 { "r.11", 11 },
530 { "r.12", 12 },
531 { "r.13", 13 },
532 { "r.14", 14 },
533 { "r.15", 15 },
534 { "r.16", 16 },
535 { "r.17", 17 },
536 { "r.18", 18 },
537 { "r.19", 19 },
538 { "r.2", 2 },
539 { "r.20", 20 },
540 { "r.21", 21 },
541 { "r.22", 22 },
542 { "r.23", 23 },
543 { "r.24", 24 },
544 { "r.25", 25 },
545 { "r.26", 26 },
546 { "r.27", 27 },
547 { "r.28", 28 },
548 { "r.29", 29 },
549 { "r.3", 3 },
550 { "r.30", 30 },
551 { "r.31", 31 },
552 { "r.4", 4 },
553 { "r.5", 5 },
554 { "r.6", 6 },
555 { "r.7", 7 },
556 { "r.8", 8 },
557 { "r.9", 9 },
558
559 { "r.sp", 1 }, /* Stack Pointer */
560
561 { "r.toc", 2 }, /* Pointer to the table of contents */
562
563 { "r0", 0 }, /* More general purpose registers */
564 { "r1", 1 },
565 { "r10", 10 },
566 { "r11", 11 },
567 { "r12", 12 },
568 { "r13", 13 },
569 { "r14", 14 },
570 { "r15", 15 },
571 { "r16", 16 },
572 { "r17", 17 },
573 { "r18", 18 },
574 { "r19", 19 },
575 { "r2", 2 },
576 { "r20", 20 },
577 { "r21", 21 },
578 { "r22", 22 },
579 { "r23", 23 },
580 { "r24", 24 },
581 { "r25", 25 },
582 { "r26", 26 },
583 { "r27", 27 },
584 { "r28", 28 },
585 { "r29", 29 },
586 { "r3", 3 },
587 { "r30", 30 },
588 { "r31", 31 },
589 { "r4", 4 },
590 { "r5", 5 },
591 { "r6", 6 },
592 { "r7", 7 },
593 { "r8", 8 },
594 { "r9", 9 },
595
596 { "rtoc", 2 }, /* Table of contents */
597
598 { "sdr1", 25 }, /* Storage Description Register 1 */
599
600 { "sp", 1 },
601
602 { "srr0", 26 }, /* Machine Status Save/Restore Register 0 */
603 { "srr1", 27 }, /* Machine Status Save/Restore Register 1 */
604
605 { "v.0", 0 }, /* Vector (Altivec/VMX) registers */
606 { "v.1", 1 },
607 { "v.10", 10 },
608 { "v.11", 11 },
609 { "v.12", 12 },
610 { "v.13", 13 },
611 { "v.14", 14 },
612 { "v.15", 15 },
613 { "v.16", 16 },
614 { "v.17", 17 },
615 { "v.18", 18 },
616 { "v.19", 19 },
617 { "v.2", 2 },
618 { "v.20", 20 },
619 { "v.21", 21 },
620 { "v.22", 22 },
621 { "v.23", 23 },
622 { "v.24", 24 },
623 { "v.25", 25 },
624 { "v.26", 26 },
625 { "v.27", 27 },
626 { "v.28", 28 },
627 { "v.29", 29 },
628 { "v.3", 3 },
629 { "v.30", 30 },
630 { "v.31", 31 },
631 { "v.4", 4 },
632 { "v.5", 5 },
633 { "v.6", 6 },
634 { "v.7", 7 },
635 { "v.8", 8 },
636 { "v.9", 9 },
637
638 { "v0", 0 },
639 { "v1", 1 },
640 { "v10", 10 },
641 { "v11", 11 },
642 { "v12", 12 },
643 { "v13", 13 },
644 { "v14", 14 },
645 { "v15", 15 },
646 { "v16", 16 },
647 { "v17", 17 },
648 { "v18", 18 },
649 { "v19", 19 },
650 { "v2", 2 },
651 { "v20", 20 },
652 { "v21", 21 },
653 { "v22", 22 },
654 { "v23", 23 },
655 { "v24", 24 },
656 { "v25", 25 },
657 { "v26", 26 },
658 { "v27", 27 },
659 { "v28", 28 },
660 { "v29", 29 },
661 { "v3", 3 },
662 { "v30", 30 },
663 { "v31", 31 },
664 { "v4", 4 },
665 { "v5", 5 },
666 { "v6", 6 },
667 { "v7", 7 },
668 { "v8", 8 },
669 { "v9", 9 },
670
671 { "vs.0", 0 }, /* Vector Scalar (VSX) registers (ISA 2.06). */
672 { "vs.1", 1 },
673 { "vs.10", 10 },
674 { "vs.11", 11 },
675 { "vs.12", 12 },
676 { "vs.13", 13 },
677 { "vs.14", 14 },
678 { "vs.15", 15 },
679 { "vs.16", 16 },
680 { "vs.17", 17 },
681 { "vs.18", 18 },
682 { "vs.19", 19 },
683 { "vs.2", 2 },
684 { "vs.20", 20 },
685 { "vs.21", 21 },
686 { "vs.22", 22 },
687 { "vs.23", 23 },
688 { "vs.24", 24 },
689 { "vs.25", 25 },
690 { "vs.26", 26 },
691 { "vs.27", 27 },
692 { "vs.28", 28 },
693 { "vs.29", 29 },
694 { "vs.3", 3 },
695 { "vs.30", 30 },
696 { "vs.31", 31 },
697 { "vs.32", 32 },
698 { "vs.33", 33 },
699 { "vs.34", 34 },
700 { "vs.35", 35 },
701 { "vs.36", 36 },
702 { "vs.37", 37 },
703 { "vs.38", 38 },
704 { "vs.39", 39 },
705 { "vs.4", 4 },
706 { "vs.40", 40 },
707 { "vs.41", 41 },
708 { "vs.42", 42 },
709 { "vs.43", 43 },
710 { "vs.44", 44 },
711 { "vs.45", 45 },
712 { "vs.46", 46 },
713 { "vs.47", 47 },
714 { "vs.48", 48 },
715 { "vs.49", 49 },
716 { "vs.5", 5 },
717 { "vs.50", 50 },
718 { "vs.51", 51 },
719 { "vs.52", 52 },
720 { "vs.53", 53 },
721 { "vs.54", 54 },
722 { "vs.55", 55 },
723 { "vs.56", 56 },
724 { "vs.57", 57 },
725 { "vs.58", 58 },
726 { "vs.59", 59 },
727 { "vs.6", 6 },
728 { "vs.60", 60 },
729 { "vs.61", 61 },
730 { "vs.62", 62 },
731 { "vs.63", 63 },
732 { "vs.7", 7 },
733 { "vs.8", 8 },
734 { "vs.9", 9 },
735
736 { "vs0", 0 },
737 { "vs1", 1 },
738 { "vs10", 10 },
739 { "vs11", 11 },
740 { "vs12", 12 },
741 { "vs13", 13 },
742 { "vs14", 14 },
743 { "vs15", 15 },
744 { "vs16", 16 },
745 { "vs17", 17 },
746 { "vs18", 18 },
747 { "vs19", 19 },
748 { "vs2", 2 },
749 { "vs20", 20 },
750 { "vs21", 21 },
751 { "vs22", 22 },
752 { "vs23", 23 },
753 { "vs24", 24 },
754 { "vs25", 25 },
755 { "vs26", 26 },
756 { "vs27", 27 },
757 { "vs28", 28 },
758 { "vs29", 29 },
759 { "vs3", 3 },
760 { "vs30", 30 },
761 { "vs31", 31 },
762 { "vs32", 32 },
763 { "vs33", 33 },
764 { "vs34", 34 },
765 { "vs35", 35 },
766 { "vs36", 36 },
767 { "vs37", 37 },
768 { "vs38", 38 },
769 { "vs39", 39 },
770 { "vs4", 4 },
771 { "vs40", 40 },
772 { "vs41", 41 },
773 { "vs42", 42 },
774 { "vs43", 43 },
775 { "vs44", 44 },
776 { "vs45", 45 },
777 { "vs46", 46 },
778 { "vs47", 47 },
779 { "vs48", 48 },
780 { "vs49", 49 },
781 { "vs5", 5 },
782 { "vs50", 50 },
783 { "vs51", 51 },
784 { "vs52", 52 },
785 { "vs53", 53 },
786 { "vs54", 54 },
787 { "vs55", 55 },
788 { "vs56", 56 },
789 { "vs57", 57 },
790 { "vs58", 58 },
791 { "vs59", 59 },
792 { "vs6", 6 },
793 { "vs60", 60 },
794 { "vs61", 61 },
795 { "vs62", 62 },
796 { "vs63", 63 },
797 { "vs7", 7 },
798 { "vs8", 8 },
799 { "vs9", 9 },
800
801 { "xer", 1 },
802
803 };
804
805 #define REG_NAME_CNT (sizeof (pre_defined_registers) / sizeof (struct pd_reg))
806
807 /* Given NAME, find the register number associated with that name, return
808 the integer value associated with the given name or -1 on failure. */
809
810 static int
811 reg_name_search (const struct pd_reg *regs, int regcount, const char *name)
812 {
813 int middle, low, high;
814 int cmp;
815
816 low = 0;
817 high = regcount - 1;
818
819 do
820 {
821 middle = (low + high) / 2;
822 cmp = strcasecmp (name, regs[middle].name);
823 if (cmp < 0)
824 high = middle - 1;
825 else if (cmp > 0)
826 low = middle + 1;
827 else
828 return regs[middle].value;
829 }
830 while (low <= high);
831
832 return -1;
833 }
834
835 /*
836 * Summary of register_name.
837 *
838 * in: Input_line_pointer points to 1st char of operand.
839 *
840 * out: A expressionS.
841 * The operand may have been a register: in this case, X_op == O_register,
842 * X_add_number is set to the register number, and truth is returned.
843 * Input_line_pointer->(next non-blank) char after operand, or is in its
844 * original state.
845 */
846
847 static bfd_boolean
848 register_name (expressionS *expressionP)
849 {
850 int reg_number;
851 char *name;
852 char *start;
853 char c;
854
855 /* Find the spelling of the operand. */
856 start = name = input_line_pointer;
857 if (name[0] == '%' && ISALPHA (name[1]))
858 name = ++input_line_pointer;
859
860 else if (!reg_names_p || !ISALPHA (name[0]))
861 return FALSE;
862
863 c = get_symbol_name (&name);
864 reg_number = reg_name_search (pre_defined_registers, REG_NAME_CNT, name);
865
866 /* Put back the delimiting char. */
867 *input_line_pointer = c;
868
869 /* Look to see if it's in the register table. */
870 if (reg_number >= 0)
871 {
872 expressionP->X_op = O_register;
873 expressionP->X_add_number = reg_number;
874
875 /* Make the rest nice. */
876 expressionP->X_add_symbol = NULL;
877 expressionP->X_op_symbol = NULL;
878 return TRUE;
879 }
880
881 /* Reset the line as if we had not done anything. */
882 input_line_pointer = start;
883 return FALSE;
884 }
885 \f
886 /* This function is called for each symbol seen in an expression. It
887 handles the special parsing which PowerPC assemblers are supposed
888 to use for condition codes. */
889
890 /* Whether to do the special parsing. */
891 static bfd_boolean cr_operand;
892
893 /* Names to recognize in a condition code. This table is sorted. */
894 static const struct pd_reg cr_names[] =
895 {
896 { "cr0", 0 },
897 { "cr1", 1 },
898 { "cr2", 2 },
899 { "cr3", 3 },
900 { "cr4", 4 },
901 { "cr5", 5 },
902 { "cr6", 6 },
903 { "cr7", 7 },
904 { "eq", 2 },
905 { "gt", 1 },
906 { "lt", 0 },
907 { "so", 3 },
908 { "un", 3 }
909 };
910
911 /* Parsing function. This returns non-zero if it recognized an
912 expression. */
913
914 int
915 ppc_parse_name (const char *name, expressionS *exp)
916 {
917 int val;
918
919 if (! cr_operand)
920 return 0;
921
922 if (*name == '%')
923 ++name;
924 val = reg_name_search (cr_names, sizeof cr_names / sizeof cr_names[0],
925 name);
926 if (val < 0)
927 return 0;
928
929 exp->X_op = O_constant;
930 exp->X_add_number = val;
931
932 return 1;
933 }
934 \f
935 /* Local variables. */
936
937 /* Whether to target xcoff64/elf64. */
938 static unsigned int ppc_obj64 = BFD_DEFAULT_TARGET_SIZE == 64;
939
940 /* Opcode hash table. */
941 static struct hash_control *ppc_hash;
942
943 /* Macro hash table. */
944 static struct hash_control *ppc_macro_hash;
945
946 #ifdef OBJ_ELF
947 /* What type of shared library support to use. */
948 static enum { SHLIB_NONE, SHLIB_PIC, SHLIB_MRELOCATABLE } shlib = SHLIB_NONE;
949
950 /* Flags to set in the elf header. */
951 static flagword ppc_flags = 0;
952
953 /* Whether this is Solaris or not. */
954 #ifdef TARGET_SOLARIS_COMMENT
955 #define SOLARIS_P TRUE
956 #else
957 #define SOLARIS_P FALSE
958 #endif
959
960 static bfd_boolean msolaris = SOLARIS_P;
961 #endif
962
963 #ifdef OBJ_XCOFF
964
965 /* The RS/6000 assembler uses the .csect pseudo-op to generate code
966 using a bunch of different sections. These assembler sections,
967 however, are all encompassed within the .text or .data sections of
968 the final output file. We handle this by using different
969 subsegments within these main segments. */
970
971 /* Next subsegment to allocate within the .text segment. */
972 static subsegT ppc_text_subsegment = 2;
973
974 /* Linked list of csects in the text section. */
975 static symbolS *ppc_text_csects;
976
977 /* Next subsegment to allocate within the .data segment. */
978 static subsegT ppc_data_subsegment = 2;
979
980 /* Linked list of csects in the data section. */
981 static symbolS *ppc_data_csects;
982
983 /* The current csect. */
984 static symbolS *ppc_current_csect;
985
986 /* The RS/6000 assembler uses a TOC which holds addresses of functions
987 and variables. Symbols are put in the TOC with the .tc pseudo-op.
988 A special relocation is used when accessing TOC entries. We handle
989 the TOC as a subsegment within the .data segment. We set it up if
990 we see a .toc pseudo-op, and save the csect symbol here. */
991 static symbolS *ppc_toc_csect;
992
993 /* The first frag in the TOC subsegment. */
994 static fragS *ppc_toc_frag;
995
996 /* The first frag in the first subsegment after the TOC in the .data
997 segment. NULL if there are no subsegments after the TOC. */
998 static fragS *ppc_after_toc_frag;
999
1000 /* The current static block. */
1001 static symbolS *ppc_current_block;
1002
1003 /* The COFF debugging section; set by md_begin. This is not the
1004 .debug section, but is instead the secret BFD section which will
1005 cause BFD to set the section number of a symbol to N_DEBUG. */
1006 static asection *ppc_coff_debug_section;
1007
1008 /* Structure to set the length field of the dwarf sections. */
1009 struct dw_subsection {
1010 /* Subsections are simply linked. */
1011 struct dw_subsection *link;
1012
1013 /* The subsection number. */
1014 subsegT subseg;
1015
1016 /* Expression to compute the length of the section. */
1017 expressionS end_exp;
1018 };
1019
1020 static struct dw_section {
1021 /* Corresponding section. */
1022 segT sect;
1023
1024 /* Simply linked list of subsections with a label. */
1025 struct dw_subsection *list_subseg;
1026
1027 /* The anonymous subsection. */
1028 struct dw_subsection *anon_subseg;
1029 } dw_sections[XCOFF_DWSECT_NBR_NAMES];
1030 #endif /* OBJ_XCOFF */
1031
1032 #ifdef TE_PE
1033
1034 /* Various sections that we need for PE coff support. */
1035 static segT ydata_section;
1036 static segT pdata_section;
1037 static segT reldata_section;
1038 static segT rdata_section;
1039 static segT tocdata_section;
1040
1041 /* The current section and the previous section. See ppc_previous. */
1042 static segT ppc_previous_section;
1043 static segT ppc_current_section;
1044
1045 #endif /* TE_PE */
1046
1047 #ifdef OBJ_ELF
1048 symbolS *GOT_symbol; /* Pre-defined "_GLOBAL_OFFSET_TABLE" */
1049 #define PPC_APUINFO_ISEL 0x40
1050 #define PPC_APUINFO_PMR 0x41
1051 #define PPC_APUINFO_RFMCI 0x42
1052 #define PPC_APUINFO_CACHELCK 0x43
1053 #define PPC_APUINFO_SPE 0x100
1054 #define PPC_APUINFO_EFS 0x101
1055 #define PPC_APUINFO_BRLOCK 0x102
1056 #define PPC_APUINFO_VLE 0x104
1057
1058 /*
1059 * We keep a list of APUinfo
1060 */
1061 unsigned long *ppc_apuinfo_list;
1062 unsigned int ppc_apuinfo_num;
1063 unsigned int ppc_apuinfo_num_alloc;
1064 #endif /* OBJ_ELF */
1065 \f
1066 #ifdef OBJ_ELF
1067 const char *const md_shortopts = "b:l:usm:K:VQ:";
1068 #else
1069 const char *const md_shortopts = "um:";
1070 #endif
1071 #define OPTION_NOPS (OPTION_MD_BASE + 0)
1072 const struct option md_longopts[] = {
1073 {"nops", required_argument, NULL, OPTION_NOPS},
1074 {"ppc476-workaround", no_argument, &warn_476, 1},
1075 {"no-ppc476-workaround", no_argument, &warn_476, 0},
1076 {NULL, no_argument, NULL, 0}
1077 };
1078 const size_t md_longopts_size = sizeof (md_longopts);
1079
1080 int
1081 md_parse_option (int c, char *arg)
1082 {
1083 ppc_cpu_t new_cpu;
1084
1085 switch (c)
1086 {
1087 case 'u':
1088 /* -u means that any undefined symbols should be treated as
1089 external, which is the default for gas anyhow. */
1090 break;
1091
1092 #ifdef OBJ_ELF
1093 case 'l':
1094 /* Solaris as takes -le (presumably for little endian). For completeness
1095 sake, recognize -be also. */
1096 if (strcmp (arg, "e") == 0)
1097 {
1098 target_big_endian = 0;
1099 set_target_endian = 1;
1100 if (ppc_cpu & PPC_OPCODE_VLE)
1101 as_bad (_("the use of -mvle requires big endian."));
1102 }
1103 else
1104 return 0;
1105
1106 break;
1107
1108 case 'b':
1109 if (strcmp (arg, "e") == 0)
1110 {
1111 target_big_endian = 1;
1112 set_target_endian = 1;
1113 }
1114 else
1115 return 0;
1116
1117 break;
1118
1119 case 'K':
1120 /* Recognize -K PIC. */
1121 if (strcmp (arg, "PIC") == 0 || strcmp (arg, "pic") == 0)
1122 {
1123 shlib = SHLIB_PIC;
1124 ppc_flags |= EF_PPC_RELOCATABLE_LIB;
1125 }
1126 else
1127 return 0;
1128
1129 break;
1130 #endif
1131
1132 /* a64 and a32 determine whether to use XCOFF64 or XCOFF32. */
1133 case 'a':
1134 if (strcmp (arg, "64") == 0)
1135 {
1136 #ifdef BFD64
1137 ppc_obj64 = 1;
1138 if (ppc_cpu & PPC_OPCODE_VLE)
1139 as_bad (_("the use of -mvle requires -a32."));
1140 #else
1141 as_fatal (_("%s unsupported"), "-a64");
1142 #endif
1143 }
1144 else if (strcmp (arg, "32") == 0)
1145 ppc_obj64 = 0;
1146 else
1147 return 0;
1148 break;
1149
1150 case 'm':
1151 new_cpu = ppc_parse_cpu (ppc_cpu, &sticky, arg);
1152 if (new_cpu != 0)
1153 {
1154 ppc_cpu = new_cpu;
1155 if (strcmp (arg, "vle") == 0)
1156 {
1157 if (set_target_endian && target_big_endian == 0)
1158 as_bad (_("the use of -mvle requires big endian."));
1159 if (ppc_obj64)
1160 as_bad (_("the use of -mvle requires -a32."));
1161 }
1162 }
1163
1164 else if (strcmp (arg, "regnames") == 0)
1165 reg_names_p = TRUE;
1166
1167 else if (strcmp (arg, "no-regnames") == 0)
1168 reg_names_p = FALSE;
1169
1170 #ifdef OBJ_ELF
1171 /* -mrelocatable/-mrelocatable-lib -- warn about initializations
1172 that require relocation. */
1173 else if (strcmp (arg, "relocatable") == 0)
1174 {
1175 shlib = SHLIB_MRELOCATABLE;
1176 ppc_flags |= EF_PPC_RELOCATABLE;
1177 }
1178
1179 else if (strcmp (arg, "relocatable-lib") == 0)
1180 {
1181 shlib = SHLIB_MRELOCATABLE;
1182 ppc_flags |= EF_PPC_RELOCATABLE_LIB;
1183 }
1184
1185 /* -memb, set embedded bit. */
1186 else if (strcmp (arg, "emb") == 0)
1187 ppc_flags |= EF_PPC_EMB;
1188
1189 /* -mlittle/-mbig set the endianness. */
1190 else if (strcmp (arg, "little") == 0
1191 || strcmp (arg, "little-endian") == 0)
1192 {
1193 target_big_endian = 0;
1194 set_target_endian = 1;
1195 if (ppc_cpu & PPC_OPCODE_VLE)
1196 as_bad (_("the use of -mvle requires big endian."));
1197 }
1198
1199 else if (strcmp (arg, "big") == 0 || strcmp (arg, "big-endian") == 0)
1200 {
1201 target_big_endian = 1;
1202 set_target_endian = 1;
1203 }
1204
1205 else if (strcmp (arg, "solaris") == 0)
1206 {
1207 msolaris = TRUE;
1208 ppc_comment_chars = ppc_solaris_comment_chars;
1209 }
1210
1211 else if (strcmp (arg, "no-solaris") == 0)
1212 {
1213 msolaris = FALSE;
1214 ppc_comment_chars = ppc_eabi_comment_chars;
1215 }
1216 #endif
1217 else
1218 {
1219 as_bad (_("invalid switch -m%s"), arg);
1220 return 0;
1221 }
1222 break;
1223
1224 #ifdef OBJ_ELF
1225 /* -V: SVR4 argument to print version ID. */
1226 case 'V':
1227 print_version_id ();
1228 break;
1229
1230 /* -Qy, -Qn: SVR4 arguments controlling whether a .comment section
1231 should be emitted or not. FIXME: Not implemented. */
1232 case 'Q':
1233 break;
1234
1235 /* Solaris takes -s to specify that .stabs go in a .stabs section,
1236 rather than .stabs.excl, which is ignored by the linker.
1237 FIXME: Not implemented. */
1238 case 's':
1239 if (arg)
1240 return 0;
1241
1242 break;
1243 #endif
1244
1245 case OPTION_NOPS:
1246 {
1247 char *end;
1248 nop_limit = strtoul (optarg, &end, 0);
1249 if (*end)
1250 as_bad (_("--nops needs a numeric argument"));
1251 }
1252 break;
1253
1254 case 0:
1255 break;
1256
1257 default:
1258 return 0;
1259 }
1260
1261 return 1;
1262 }
1263
1264 void
1265 md_show_usage (FILE *stream)
1266 {
1267 fprintf (stream, _("\
1268 PowerPC options:\n\
1269 -a32 generate ELF32/XCOFF32\n\
1270 -a64 generate ELF64/XCOFF64\n\
1271 -u ignored\n\
1272 -mpwrx, -mpwr2 generate code for POWER/2 (RIOS2)\n\
1273 -mpwr generate code for POWER (RIOS1)\n\
1274 -m601 generate code for PowerPC 601\n\
1275 -mppc, -mppc32, -m603, -m604\n\
1276 generate code for PowerPC 603/604\n\
1277 -m403 generate code for PowerPC 403\n\
1278 -m405 generate code for PowerPC 405\n\
1279 -m440 generate code for PowerPC 440\n\
1280 -m464 generate code for PowerPC 464\n\
1281 -m476 generate code for PowerPC 476\n\
1282 -m7400, -m7410, -m7450, -m7455\n\
1283 generate code for PowerPC 7400/7410/7450/7455\n\
1284 -m750cl generate code for PowerPC 750cl\n\
1285 -m821, -m850, -m860 generate code for PowerPC 821/850/860\n"));
1286 fprintf (stream, _("\
1287 -mppc64, -m620 generate code for PowerPC 620/625/630\n\
1288 -mppc64bridge generate code for PowerPC 64, including bridge insns\n\
1289 -mbooke generate code for 32-bit PowerPC BookE\n\
1290 -ma2 generate code for A2 architecture\n\
1291 -mpower4, -mpwr4 generate code for Power4 architecture\n\
1292 -mpower5, -mpwr5, -mpwr5x\n\
1293 generate code for Power5 architecture\n\
1294 -mpower6, -mpwr6 generate code for Power6 architecture\n\
1295 -mpower7, -mpwr7 generate code for Power7 architecture\n\
1296 -mpower8, -mpwr8 generate code for Power8 architecture\n\
1297 -mpower9, -mpwr9 generate code for Power9 architecture\n\
1298 -mcell generate code for Cell Broadband Engine architecture\n\
1299 -mcom generate code Power/PowerPC common instructions\n\
1300 -many generate code for any architecture (PWR/PWRX/PPC)\n"));
1301 fprintf (stream, _("\
1302 -maltivec generate code for AltiVec\n\
1303 -mvsx generate code for Vector-Scalar (VSX) instructions\n\
1304 -mhtm generate code for Hardware Transactional Memory\n\
1305 -me300 generate code for PowerPC e300 family\n\
1306 -me500, -me500x2 generate code for Motorola e500 core complex\n\
1307 -me500mc, generate code for Freescale e500mc core complex\n\
1308 -me500mc64, generate code for Freescale e500mc64 core complex\n\
1309 -me5500, generate code for Freescale e5500 core complex\n\
1310 -me6500, generate code for Freescale e6500 core complex\n\
1311 -mspe generate code for Motorola SPE instructions\n\
1312 -mvle generate code for Freescale VLE instructions\n\
1313 -mtitan generate code for AppliedMicro Titan core complex\n\
1314 -mregnames Allow symbolic names for registers\n\
1315 -mno-regnames Do not allow symbolic names for registers\n"));
1316 #ifdef OBJ_ELF
1317 fprintf (stream, _("\
1318 -mrelocatable support for GCC's -mrelocatble option\n\
1319 -mrelocatable-lib support for GCC's -mrelocatble-lib option\n\
1320 -memb set PPC_EMB bit in ELF flags\n\
1321 -mlittle, -mlittle-endian, -le\n\
1322 generate code for a little endian machine\n\
1323 -mbig, -mbig-endian, -be\n\
1324 generate code for a big endian machine\n\
1325 -msolaris generate code for Solaris\n\
1326 -mno-solaris do not generate code for Solaris\n\
1327 -K PIC set EF_PPC_RELOCATABLE_LIB in ELF flags\n\
1328 -V print assembler version number\n\
1329 -Qy, -Qn ignored\n"));
1330 #endif
1331 fprintf (stream, _("\
1332 -nops=count when aligning, more than COUNT nops uses a branch\n\
1333 -ppc476-workaround warn if emitting data to code sections\n"));
1334 }
1335 \f
1336 /* Set ppc_cpu if it is not already set. */
1337
1338 static void
1339 ppc_set_cpu (void)
1340 {
1341 const char *default_os = TARGET_OS;
1342 const char *default_cpu = TARGET_CPU;
1343
1344 if ((ppc_cpu & ~(ppc_cpu_t) PPC_OPCODE_ANY) == 0)
1345 {
1346 if (ppc_obj64)
1347 ppc_cpu |= PPC_OPCODE_PPC | PPC_OPCODE_64;
1348 else if (strncmp (default_os, "aix", 3) == 0
1349 && default_os[3] >= '4' && default_os[3] <= '9')
1350 ppc_cpu |= PPC_OPCODE_COMMON;
1351 else if (strncmp (default_os, "aix3", 4) == 0)
1352 ppc_cpu |= PPC_OPCODE_POWER;
1353 else if (strcmp (default_cpu, "rs6000") == 0)
1354 ppc_cpu |= PPC_OPCODE_POWER;
1355 else if (strncmp (default_cpu, "powerpc", 7) == 0)
1356 ppc_cpu |= PPC_OPCODE_PPC;
1357 else
1358 as_fatal (_("unknown default cpu = %s, os = %s"),
1359 default_cpu, default_os);
1360 }
1361 }
1362
1363 /* Figure out the BFD architecture to use. This function and ppc_mach
1364 are called well before md_begin, when the output file is opened. */
1365
1366 enum bfd_architecture
1367 ppc_arch (void)
1368 {
1369 const char *default_cpu = TARGET_CPU;
1370 ppc_set_cpu ();
1371
1372 if ((ppc_cpu & PPC_OPCODE_PPC) != 0)
1373 return bfd_arch_powerpc;
1374 if ((ppc_cpu & PPC_OPCODE_VLE) != 0)
1375 return bfd_arch_powerpc;
1376 if ((ppc_cpu & PPC_OPCODE_POWER) != 0)
1377 return bfd_arch_rs6000;
1378 if ((ppc_cpu & (PPC_OPCODE_COMMON | PPC_OPCODE_ANY)) != 0)
1379 {
1380 if (strcmp (default_cpu, "rs6000") == 0)
1381 return bfd_arch_rs6000;
1382 else if (strncmp (default_cpu, "powerpc", 7) == 0)
1383 return bfd_arch_powerpc;
1384 }
1385
1386 as_fatal (_("neither Power nor PowerPC opcodes were selected."));
1387 return bfd_arch_unknown;
1388 }
1389
1390 unsigned long
1391 ppc_mach (void)
1392 {
1393 if (ppc_obj64)
1394 return bfd_mach_ppc64;
1395 else if (ppc_arch () == bfd_arch_rs6000)
1396 return bfd_mach_rs6k;
1397 else if (ppc_cpu & PPC_OPCODE_TITAN)
1398 return bfd_mach_ppc_titan;
1399 else if (ppc_cpu & PPC_OPCODE_VLE)
1400 return bfd_mach_ppc_vle;
1401 else
1402 return bfd_mach_ppc;
1403 }
1404
1405 extern const char*
1406 ppc_target_format (void)
1407 {
1408 #ifdef OBJ_COFF
1409 #ifdef TE_PE
1410 return target_big_endian ? "pe-powerpc" : "pe-powerpcle";
1411 #elif TE_POWERMAC
1412 return "xcoff-powermac";
1413 #else
1414 # ifdef TE_AIX5
1415 return (ppc_obj64 ? "aix5coff64-rs6000" : "aixcoff-rs6000");
1416 # else
1417 return (ppc_obj64 ? "aixcoff64-rs6000" : "aixcoff-rs6000");
1418 # endif
1419 #endif
1420 #endif
1421 #ifdef OBJ_ELF
1422 # ifdef TE_FreeBSD
1423 return (ppc_obj64 ? "elf64-powerpc-freebsd" : "elf32-powerpc-freebsd");
1424 # elif defined (TE_VXWORKS)
1425 return "elf32-powerpc-vxworks";
1426 # else
1427 return (target_big_endian
1428 ? (ppc_obj64 ? "elf64-powerpc" : "elf32-powerpc")
1429 : (ppc_obj64 ? "elf64-powerpcle" : "elf32-powerpcle"));
1430 # endif
1431 #endif
1432 }
1433
1434 /* Validate one entry in powerpc_opcodes[] or vle_opcodes[].
1435 Return TRUE if there's a problem, otherwise FALSE. */
1436
1437 static bfd_boolean
1438 insn_validate (const struct powerpc_opcode *op)
1439 {
1440 const unsigned char *o;
1441 unsigned long omask = op->mask;
1442
1443 /* The mask had better not trim off opcode bits. */
1444 if ((op->opcode & omask) != op->opcode)
1445 {
1446 as_bad (_("mask trims opcode bits for %s"), op->name);
1447 return TRUE;
1448 }
1449
1450 /* The operands must not overlap the opcode or each other. */
1451 for (o = op->operands; *o; ++o)
1452 {
1453 if (*o >= num_powerpc_operands)
1454 {
1455 as_bad (_("operand index error for %s"), op->name);
1456 return TRUE;
1457 }
1458 else
1459 {
1460 const struct powerpc_operand *operand = &powerpc_operands[*o];
1461 if (operand->shift != (int) PPC_OPSHIFT_INV)
1462 {
1463 unsigned long mask;
1464
1465 if (operand->shift >= 0)
1466 mask = operand->bitm << operand->shift;
1467 else
1468 mask = operand->bitm >> -operand->shift;
1469 if (omask & mask)
1470 {
1471 as_bad (_("operand %d overlap in %s"),
1472 (int) (o - op->operands), op->name);
1473 return TRUE;
1474 }
1475 omask |= mask;
1476 }
1477 }
1478 }
1479 return FALSE;
1480 }
1481
1482 /* Insert opcodes and macros into hash tables. Called at startup and
1483 for .machine pseudo. */
1484
1485 static void
1486 ppc_setup_opcodes (void)
1487 {
1488 const struct powerpc_opcode *op;
1489 const struct powerpc_opcode *op_end;
1490 const struct powerpc_macro *macro;
1491 const struct powerpc_macro *macro_end;
1492 bfd_boolean bad_insn = FALSE;
1493
1494 if (ppc_hash != NULL)
1495 hash_die (ppc_hash);
1496 if (ppc_macro_hash != NULL)
1497 hash_die (ppc_macro_hash);
1498
1499 /* Insert the opcodes into a hash table. */
1500 ppc_hash = hash_new ();
1501
1502 if (ENABLE_CHECKING)
1503 {
1504 unsigned int i;
1505
1506 /* An index into powerpc_operands is stored in struct fix
1507 fx_pcrel_adjust which is 8 bits wide. */
1508 gas_assert (num_powerpc_operands < 256);
1509
1510 /* Check operand masks. Code here and in the disassembler assumes
1511 all the 1's in the mask are contiguous. */
1512 for (i = 0; i < num_powerpc_operands; ++i)
1513 {
1514 unsigned long mask = powerpc_operands[i].bitm;
1515 unsigned long right_bit;
1516 unsigned int j;
1517
1518 right_bit = mask & -mask;
1519 mask += right_bit;
1520 right_bit = mask & -mask;
1521 if (mask != right_bit)
1522 {
1523 as_bad (_("powerpc_operands[%d].bitm invalid"), i);
1524 bad_insn = TRUE;
1525 }
1526 for (j = i + 1; j < num_powerpc_operands; ++j)
1527 if (memcmp (&powerpc_operands[i], &powerpc_operands[j],
1528 sizeof (powerpc_operands[0])) == 0)
1529 {
1530 as_bad (_("powerpc_operands[%d] duplicates powerpc_operands[%d]"),
1531 j, i);
1532 bad_insn = TRUE;
1533 }
1534 }
1535 }
1536
1537 op_end = powerpc_opcodes + powerpc_num_opcodes;
1538 for (op = powerpc_opcodes; op < op_end; op++)
1539 {
1540 if (ENABLE_CHECKING)
1541 {
1542 if (op != powerpc_opcodes)
1543 {
1544 int old_opcode = PPC_OP (op[-1].opcode);
1545 int new_opcode = PPC_OP (op[0].opcode);
1546
1547 #ifdef PRINT_OPCODE_TABLE
1548 printf ("%-14s\t#%04u\tmajor op: 0x%x\top: 0x%x\tmask: 0x%x\tflags: 0x%llx\n",
1549 op->name, (unsigned int) (op - powerpc_opcodes),
1550 (unsigned int) new_opcode, (unsigned int) op->opcode,
1551 (unsigned int) op->mask, (unsigned long long) op->flags);
1552 #endif
1553
1554 /* The major opcodes had better be sorted. Code in the
1555 disassembler assumes the insns are sorted according to
1556 major opcode. */
1557 if (new_opcode < old_opcode)
1558 {
1559 as_bad (_("major opcode is not sorted for %s"),
1560 op->name);
1561 bad_insn = TRUE;
1562 }
1563 }
1564 bad_insn |= insn_validate (op);
1565 }
1566
1567 if ((ppc_cpu & op->flags) != 0
1568 && !(ppc_cpu & op->deprecated))
1569 {
1570 const char *retval;
1571
1572 retval = hash_insert (ppc_hash, op->name, (void *) op);
1573 if (retval != NULL)
1574 {
1575 as_bad (_("duplicate instruction %s"),
1576 op->name);
1577 bad_insn = TRUE;
1578 }
1579 }
1580 }
1581
1582 if ((ppc_cpu & PPC_OPCODE_ANY) != 0)
1583 for (op = powerpc_opcodes; op < op_end; op++)
1584 hash_insert (ppc_hash, op->name, (void *) op);
1585
1586 op_end = vle_opcodes + vle_num_opcodes;
1587 for (op = vle_opcodes; op < op_end; op++)
1588 {
1589 if (ENABLE_CHECKING)
1590 {
1591 if (op != vle_opcodes)
1592 {
1593 unsigned old_seg, new_seg;
1594
1595 old_seg = VLE_OP (op[-1].opcode, op[-1].mask);
1596 old_seg = VLE_OP_TO_SEG (old_seg);
1597 new_seg = VLE_OP (op[0].opcode, op[0].mask);
1598 new_seg = VLE_OP_TO_SEG (new_seg);
1599
1600 #ifdef PRINT_OPCODE_TABLE
1601 printf ("%-14s\t#%04u\tmajor op: 0x%x\top: 0x%x\tmask: 0x%x\tflags: 0x%llx\n",
1602 op->name, (unsigned int) (op - powerpc_opcodes),
1603 (unsigned int) new_seg, (unsigned int) op->opcode,
1604 (unsigned int) op->mask, (unsigned long long) op->flags);
1605 #endif
1606 /* The major opcodes had better be sorted. Code in the
1607 disassembler assumes the insns are sorted according to
1608 major opcode. */
1609 if (new_seg < old_seg)
1610 {
1611 as_bad (_("major opcode is not sorted for %s"),
1612 op->name);
1613 bad_insn = TRUE;
1614 }
1615 }
1616
1617 bad_insn |= insn_validate (op);
1618 }
1619
1620 if ((ppc_cpu & op->flags) != 0
1621 && !(ppc_cpu & op->deprecated))
1622 {
1623 const char *retval;
1624
1625 retval = hash_insert (ppc_hash, op->name, (void *) op);
1626 if (retval != NULL)
1627 {
1628 as_bad (_("duplicate instruction %s"),
1629 op->name);
1630 bad_insn = TRUE;
1631 }
1632 }
1633 }
1634
1635 if ((ppc_cpu & PPC_OPCODE_VLE) != 0)
1636 for (op = vle_opcodes; op < op_end; op++)
1637 hash_insert (ppc_hash, op->name, (void *) op);
1638
1639 /* Insert the macros into a hash table. */
1640 ppc_macro_hash = hash_new ();
1641
1642 macro_end = powerpc_macros + powerpc_num_macros;
1643 for (macro = powerpc_macros; macro < macro_end; macro++)
1644 {
1645 if ((macro->flags & ppc_cpu) != 0 || (ppc_cpu & PPC_OPCODE_ANY) != 0)
1646 {
1647 const char *retval;
1648
1649 retval = hash_insert (ppc_macro_hash, macro->name, (void *) macro);
1650 if (retval != (const char *) NULL)
1651 {
1652 as_bad (_("duplicate macro %s"), macro->name);
1653 bad_insn = TRUE;
1654 }
1655 }
1656 }
1657
1658 if (bad_insn)
1659 abort ();
1660 }
1661
1662 /* This function is called when the assembler starts up. It is called
1663 after the options have been parsed and the output file has been
1664 opened. */
1665
1666 void
1667 md_begin (void)
1668 {
1669 ppc_set_cpu ();
1670
1671 ppc_cie_data_alignment = ppc_obj64 ? -8 : -4;
1672 ppc_dwarf2_line_min_insn_length = (ppc_cpu & PPC_OPCODE_VLE) ? 2 : 4;
1673
1674 #ifdef OBJ_ELF
1675 /* Set the ELF flags if desired. */
1676 if (ppc_flags && !msolaris)
1677 bfd_set_private_flags (stdoutput, ppc_flags);
1678 #endif
1679
1680 ppc_setup_opcodes ();
1681
1682 /* Tell the main code what the endianness is if it is not overridden
1683 by the user. */
1684 if (!set_target_endian)
1685 {
1686 set_target_endian = 1;
1687 target_big_endian = PPC_BIG_ENDIAN;
1688 }
1689
1690 #ifdef OBJ_XCOFF
1691 ppc_coff_debug_section = coff_section_from_bfd_index (stdoutput, N_DEBUG);
1692
1693 /* Create dummy symbols to serve as initial csects. This forces the
1694 text csects to precede the data csects. These symbols will not
1695 be output. */
1696 ppc_text_csects = symbol_make ("dummy\001");
1697 symbol_get_tc (ppc_text_csects)->within = ppc_text_csects;
1698 ppc_data_csects = symbol_make ("dummy\001");
1699 symbol_get_tc (ppc_data_csects)->within = ppc_data_csects;
1700 #endif
1701
1702 #ifdef TE_PE
1703
1704 ppc_current_section = text_section;
1705 ppc_previous_section = 0;
1706
1707 #endif
1708 }
1709
1710 void
1711 ppc_cleanup (void)
1712 {
1713 #ifdef OBJ_ELF
1714 if (ppc_apuinfo_list == NULL)
1715 return;
1716
1717 /* Ok, so write the section info out. We have this layout:
1718
1719 byte data what
1720 ---- ---- ----
1721 0 8 length of "APUinfo\0"
1722 4 (n*4) number of APU's (4 bytes each)
1723 8 2 note type 2
1724 12 "APUinfo\0" name
1725 20 APU#1 first APU's info
1726 24 APU#2 second APU's info
1727 ... ...
1728 */
1729 {
1730 char *p;
1731 asection *seg = now_seg;
1732 subsegT subseg = now_subseg;
1733 asection *apuinfo_secp = (asection *) NULL;
1734 unsigned int i;
1735
1736 /* Create the .PPC.EMB.apuinfo section. */
1737 apuinfo_secp = subseg_new (".PPC.EMB.apuinfo", 0);
1738 bfd_set_section_flags (stdoutput,
1739 apuinfo_secp,
1740 SEC_HAS_CONTENTS | SEC_READONLY);
1741
1742 p = frag_more (4);
1743 md_number_to_chars (p, (valueT) 8, 4);
1744
1745 p = frag_more (4);
1746 md_number_to_chars (p, (valueT) ppc_apuinfo_num * 4, 4);
1747
1748 p = frag_more (4);
1749 md_number_to_chars (p, (valueT) 2, 4);
1750
1751 p = frag_more (8);
1752 strcpy (p, "APUinfo");
1753
1754 for (i = 0; i < ppc_apuinfo_num; i++)
1755 {
1756 p = frag_more (4);
1757 md_number_to_chars (p, (valueT) ppc_apuinfo_list[i], 4);
1758 }
1759
1760 frag_align (2, 0, 0);
1761
1762 /* We probably can't restore the current segment, for there likely
1763 isn't one yet... */
1764 if (seg && subseg)
1765 subseg_set (seg, subseg);
1766 }
1767 #endif
1768 }
1769
1770 /* Insert an operand value into an instruction. */
1771
1772 static unsigned long
1773 ppc_insert_operand (unsigned long insn,
1774 const struct powerpc_operand *operand,
1775 offsetT val,
1776 ppc_cpu_t cpu,
1777 const char *file,
1778 unsigned int line)
1779 {
1780 long min, max, right;
1781
1782 max = operand->bitm;
1783 right = max & -max;
1784 min = 0;
1785
1786 if ((operand->flags & PPC_OPERAND_SIGNOPT) != 0)
1787 {
1788 /* Extend the allowed range for addis to [-65536, 65535].
1789 Similarly for some VLE high part insns. For 64-bit it
1790 would be good to disable this for signed fields since the
1791 value is sign extended into the high 32 bits of the register.
1792 If the value is, say, an address, then we might care about
1793 the high bits. However, gcc as of 2014-06 uses unsigned
1794 values when loading the high part of 64-bit constants using
1795 lis.
1796 Use the same extended range for cmpli, to allow at least
1797 [-32768, 65535]. */
1798 min = ~max & -right;
1799 }
1800 else if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
1801 {
1802 max = (max >> 1) & -right;
1803 min = ~max & -right;
1804 }
1805
1806 if ((operand->flags & PPC_OPERAND_PLUS1) != 0)
1807 max++;
1808
1809 if ((operand->flags & PPC_OPERAND_NEGATIVE) != 0)
1810 {
1811 long tmp = min;
1812 min = -max;
1813 max = -tmp;
1814 }
1815
1816 if (min <= max)
1817 {
1818 /* Some people write constants with the sign extension done by
1819 hand but only up to 32 bits. This shouldn't really be valid,
1820 but, to permit this code to assemble on a 64-bit host, we
1821 sign extend the 32-bit value to 64 bits if so doing makes the
1822 value valid. */
1823 if (val > max
1824 && (offsetT) (val - 0x80000000 - 0x80000000) >= min
1825 && (offsetT) (val - 0x80000000 - 0x80000000) <= max
1826 && ((val - 0x80000000 - 0x80000000) & (right - 1)) == 0)
1827 val = val - 0x80000000 - 0x80000000;
1828
1829 /* Similarly, people write expressions like ~(1<<15), and expect
1830 this to be OK for a 32-bit unsigned value. */
1831 else if (val < min
1832 && (offsetT) (val + 0x80000000 + 0x80000000) >= min
1833 && (offsetT) (val + 0x80000000 + 0x80000000) <= max
1834 && ((val + 0x80000000 + 0x80000000) & (right - 1)) == 0)
1835 val = val + 0x80000000 + 0x80000000;
1836
1837 else if (val < min
1838 || val > max
1839 || (val & (right - 1)) != 0)
1840 as_bad_value_out_of_range (_("operand"), val, min, max, file, line);
1841 }
1842
1843 if (operand->insert)
1844 {
1845 const char *errmsg;
1846
1847 errmsg = NULL;
1848 insn = (*operand->insert) (insn, (long) val, cpu, &errmsg);
1849 if (errmsg != (const char *) NULL)
1850 as_bad_where (file, line, "%s", errmsg);
1851 }
1852 else if (operand->shift >= 0)
1853 insn |= ((long) val & operand->bitm) << operand->shift;
1854 else
1855 insn |= ((long) val & operand->bitm) >> -operand->shift;
1856
1857 return insn;
1858 }
1859
1860 \f
1861 #ifdef OBJ_ELF
1862 /* Parse @got, etc. and return the desired relocation. */
1863 static bfd_reloc_code_real_type
1864 ppc_elf_suffix (char **str_p, expressionS *exp_p)
1865 {
1866 struct map_bfd {
1867 const char *string;
1868 unsigned int length : 8;
1869 unsigned int valid32 : 1;
1870 unsigned int valid64 : 1;
1871 unsigned int reloc;
1872 };
1873
1874 char ident[20];
1875 char *str = *str_p;
1876 char *str2;
1877 int ch;
1878 int len;
1879 const struct map_bfd *ptr;
1880
1881 #define MAP(str, reloc) { str, sizeof (str) - 1, 1, 1, reloc }
1882 #define MAP32(str, reloc) { str, sizeof (str) - 1, 1, 0, reloc }
1883 #define MAP64(str, reloc) { str, sizeof (str) - 1, 0, 1, reloc }
1884
1885 static const struct map_bfd mapping[] = {
1886 MAP ("l", BFD_RELOC_LO16),
1887 MAP ("h", BFD_RELOC_HI16),
1888 MAP ("ha", BFD_RELOC_HI16_S),
1889 MAP ("brtaken", BFD_RELOC_PPC_B16_BRTAKEN),
1890 MAP ("brntaken", BFD_RELOC_PPC_B16_BRNTAKEN),
1891 MAP ("got", BFD_RELOC_16_GOTOFF),
1892 MAP ("got@l", BFD_RELOC_LO16_GOTOFF),
1893 MAP ("got@h", BFD_RELOC_HI16_GOTOFF),
1894 MAP ("got@ha", BFD_RELOC_HI16_S_GOTOFF),
1895 MAP ("plt@l", BFD_RELOC_LO16_PLTOFF),
1896 MAP ("plt@h", BFD_RELOC_HI16_PLTOFF),
1897 MAP ("plt@ha", BFD_RELOC_HI16_S_PLTOFF),
1898 MAP ("copy", BFD_RELOC_PPC_COPY),
1899 MAP ("globdat", BFD_RELOC_PPC_GLOB_DAT),
1900 MAP ("sectoff", BFD_RELOC_16_BASEREL),
1901 MAP ("sectoff@l", BFD_RELOC_LO16_BASEREL),
1902 MAP ("sectoff@h", BFD_RELOC_HI16_BASEREL),
1903 MAP ("sectoff@ha", BFD_RELOC_HI16_S_BASEREL),
1904 MAP ("tls", BFD_RELOC_PPC_TLS),
1905 MAP ("dtpmod", BFD_RELOC_PPC_DTPMOD),
1906 MAP ("dtprel", BFD_RELOC_PPC_DTPREL),
1907 MAP ("dtprel@l", BFD_RELOC_PPC_DTPREL16_LO),
1908 MAP ("dtprel@h", BFD_RELOC_PPC_DTPREL16_HI),
1909 MAP ("dtprel@ha", BFD_RELOC_PPC_DTPREL16_HA),
1910 MAP ("tprel", BFD_RELOC_PPC_TPREL),
1911 MAP ("tprel@l", BFD_RELOC_PPC_TPREL16_LO),
1912 MAP ("tprel@h", BFD_RELOC_PPC_TPREL16_HI),
1913 MAP ("tprel@ha", BFD_RELOC_PPC_TPREL16_HA),
1914 MAP ("got@tlsgd", BFD_RELOC_PPC_GOT_TLSGD16),
1915 MAP ("got@tlsgd@l", BFD_RELOC_PPC_GOT_TLSGD16_LO),
1916 MAP ("got@tlsgd@h", BFD_RELOC_PPC_GOT_TLSGD16_HI),
1917 MAP ("got@tlsgd@ha", BFD_RELOC_PPC_GOT_TLSGD16_HA),
1918 MAP ("got@tlsld", BFD_RELOC_PPC_GOT_TLSLD16),
1919 MAP ("got@tlsld@l", BFD_RELOC_PPC_GOT_TLSLD16_LO),
1920 MAP ("got@tlsld@h", BFD_RELOC_PPC_GOT_TLSLD16_HI),
1921 MAP ("got@tlsld@ha", BFD_RELOC_PPC_GOT_TLSLD16_HA),
1922 MAP ("got@dtprel", BFD_RELOC_PPC_GOT_DTPREL16),
1923 MAP ("got@dtprel@l", BFD_RELOC_PPC_GOT_DTPREL16_LO),
1924 MAP ("got@dtprel@h", BFD_RELOC_PPC_GOT_DTPREL16_HI),
1925 MAP ("got@dtprel@ha", BFD_RELOC_PPC_GOT_DTPREL16_HA),
1926 MAP ("got@tprel", BFD_RELOC_PPC_GOT_TPREL16),
1927 MAP ("got@tprel@l", BFD_RELOC_PPC_GOT_TPREL16_LO),
1928 MAP ("got@tprel@h", BFD_RELOC_PPC_GOT_TPREL16_HI),
1929 MAP ("got@tprel@ha", BFD_RELOC_PPC_GOT_TPREL16_HA),
1930 MAP32 ("fixup", BFD_RELOC_CTOR),
1931 MAP32 ("plt", BFD_RELOC_24_PLT_PCREL),
1932 MAP32 ("pltrel24", BFD_RELOC_24_PLT_PCREL),
1933 MAP32 ("local24pc", BFD_RELOC_PPC_LOCAL24PC),
1934 MAP32 ("local", BFD_RELOC_PPC_LOCAL24PC),
1935 MAP32 ("pltrel", BFD_RELOC_32_PLT_PCREL),
1936 MAP32 ("sdarel", BFD_RELOC_GPREL16),
1937 MAP32 ("sdarel@l", BFD_RELOC_PPC_VLE_SDAREL_LO16A),
1938 MAP32 ("sdarel@h", BFD_RELOC_PPC_VLE_SDAREL_HI16A),
1939 MAP32 ("sdarel@ha", BFD_RELOC_PPC_VLE_SDAREL_HA16A),
1940 MAP32 ("naddr", BFD_RELOC_PPC_EMB_NADDR32),
1941 MAP32 ("naddr16", BFD_RELOC_PPC_EMB_NADDR16),
1942 MAP32 ("naddr@l", BFD_RELOC_PPC_EMB_NADDR16_LO),
1943 MAP32 ("naddr@h", BFD_RELOC_PPC_EMB_NADDR16_HI),
1944 MAP32 ("naddr@ha", BFD_RELOC_PPC_EMB_NADDR16_HA),
1945 MAP32 ("sdai16", BFD_RELOC_PPC_EMB_SDAI16),
1946 MAP32 ("sda2rel", BFD_RELOC_PPC_EMB_SDA2REL),
1947 MAP32 ("sda2i16", BFD_RELOC_PPC_EMB_SDA2I16),
1948 MAP32 ("sda21", BFD_RELOC_PPC_EMB_SDA21),
1949 MAP32 ("sda21@l", BFD_RELOC_PPC_VLE_SDA21_LO),
1950 MAP32 ("mrkref", BFD_RELOC_PPC_EMB_MRKREF),
1951 MAP32 ("relsect", BFD_RELOC_PPC_EMB_RELSEC16),
1952 MAP32 ("relsect@l", BFD_RELOC_PPC_EMB_RELST_LO),
1953 MAP32 ("relsect@h", BFD_RELOC_PPC_EMB_RELST_HI),
1954 MAP32 ("relsect@ha", BFD_RELOC_PPC_EMB_RELST_HA),
1955 MAP32 ("bitfld", BFD_RELOC_PPC_EMB_BIT_FLD),
1956 MAP32 ("relsda", BFD_RELOC_PPC_EMB_RELSDA),
1957 MAP32 ("xgot", BFD_RELOC_PPC_TOC16),
1958 MAP64 ("high", BFD_RELOC_PPC64_ADDR16_HIGH),
1959 MAP64 ("higha", BFD_RELOC_PPC64_ADDR16_HIGHA),
1960 MAP64 ("higher", BFD_RELOC_PPC64_HIGHER),
1961 MAP64 ("highera", BFD_RELOC_PPC64_HIGHER_S),
1962 MAP64 ("highest", BFD_RELOC_PPC64_HIGHEST),
1963 MAP64 ("highesta", BFD_RELOC_PPC64_HIGHEST_S),
1964 MAP64 ("tocbase", BFD_RELOC_PPC64_TOC),
1965 MAP64 ("toc", BFD_RELOC_PPC_TOC16),
1966 MAP64 ("toc@l", BFD_RELOC_PPC64_TOC16_LO),
1967 MAP64 ("toc@h", BFD_RELOC_PPC64_TOC16_HI),
1968 MAP64 ("toc@ha", BFD_RELOC_PPC64_TOC16_HA),
1969 MAP64 ("dtprel@high", BFD_RELOC_PPC64_DTPREL16_HIGH),
1970 MAP64 ("dtprel@higha", BFD_RELOC_PPC64_DTPREL16_HIGHA),
1971 MAP64 ("dtprel@higher", BFD_RELOC_PPC64_DTPREL16_HIGHER),
1972 MAP64 ("dtprel@highera", BFD_RELOC_PPC64_DTPREL16_HIGHERA),
1973 MAP64 ("dtprel@highest", BFD_RELOC_PPC64_DTPREL16_HIGHEST),
1974 MAP64 ("dtprel@highesta", BFD_RELOC_PPC64_DTPREL16_HIGHESTA),
1975 MAP64 ("localentry", BFD_RELOC_PPC64_ADDR64_LOCAL),
1976 MAP64 ("tprel@high", BFD_RELOC_PPC64_TPREL16_HIGH),
1977 MAP64 ("tprel@higha", BFD_RELOC_PPC64_TPREL16_HIGHA),
1978 MAP64 ("tprel@higher", BFD_RELOC_PPC64_TPREL16_HIGHER),
1979 MAP64 ("tprel@highera", BFD_RELOC_PPC64_TPREL16_HIGHERA),
1980 MAP64 ("tprel@highest", BFD_RELOC_PPC64_TPREL16_HIGHEST),
1981 MAP64 ("tprel@highesta", BFD_RELOC_PPC64_TPREL16_HIGHESTA),
1982 { (char *) 0, 0, 0, 0, BFD_RELOC_NONE }
1983 };
1984
1985 if (*str++ != '@')
1986 return BFD_RELOC_NONE;
1987
1988 for (ch = *str, str2 = ident;
1989 (str2 < ident + sizeof (ident) - 1
1990 && (ISALNUM (ch) || ch == '@'));
1991 ch = *++str)
1992 {
1993 *str2++ = TOLOWER (ch);
1994 }
1995
1996 *str2 = '\0';
1997 len = str2 - ident;
1998
1999 ch = ident[0];
2000 for (ptr = &mapping[0]; ptr->length > 0; ptr++)
2001 if (ch == ptr->string[0]
2002 && len == ptr->length
2003 && memcmp (ident, ptr->string, ptr->length) == 0
2004 && (ppc_obj64 ? ptr->valid64 : ptr->valid32))
2005 {
2006 int reloc = ptr->reloc;
2007
2008 if (!ppc_obj64 && exp_p->X_add_number != 0)
2009 {
2010 switch (reloc)
2011 {
2012 case BFD_RELOC_16_GOTOFF:
2013 case BFD_RELOC_LO16_GOTOFF:
2014 case BFD_RELOC_HI16_GOTOFF:
2015 case BFD_RELOC_HI16_S_GOTOFF:
2016 as_warn (_("identifier+constant@got means "
2017 "identifier@got+constant"));
2018 break;
2019
2020 case BFD_RELOC_PPC_GOT_TLSGD16:
2021 case BFD_RELOC_PPC_GOT_TLSGD16_LO:
2022 case BFD_RELOC_PPC_GOT_TLSGD16_HI:
2023 case BFD_RELOC_PPC_GOT_TLSGD16_HA:
2024 case BFD_RELOC_PPC_GOT_TLSLD16:
2025 case BFD_RELOC_PPC_GOT_TLSLD16_LO:
2026 case BFD_RELOC_PPC_GOT_TLSLD16_HI:
2027 case BFD_RELOC_PPC_GOT_TLSLD16_HA:
2028 case BFD_RELOC_PPC_GOT_DTPREL16:
2029 case BFD_RELOC_PPC_GOT_DTPREL16_LO:
2030 case BFD_RELOC_PPC_GOT_DTPREL16_HI:
2031 case BFD_RELOC_PPC_GOT_DTPREL16_HA:
2032 case BFD_RELOC_PPC_GOT_TPREL16:
2033 case BFD_RELOC_PPC_GOT_TPREL16_LO:
2034 case BFD_RELOC_PPC_GOT_TPREL16_HI:
2035 case BFD_RELOC_PPC_GOT_TPREL16_HA:
2036 as_bad (_("symbol+offset not supported for got tls"));
2037 break;
2038 }
2039 }
2040
2041 /* Now check for identifier@suffix+constant. */
2042 if (*str == '-' || *str == '+')
2043 {
2044 char *orig_line = input_line_pointer;
2045 expressionS new_exp;
2046
2047 input_line_pointer = str;
2048 expression (&new_exp);
2049 if (new_exp.X_op == O_constant)
2050 {
2051 exp_p->X_add_number += new_exp.X_add_number;
2052 str = input_line_pointer;
2053 }
2054
2055 if (&input_line_pointer != str_p)
2056 input_line_pointer = orig_line;
2057 }
2058 *str_p = str;
2059
2060 if (reloc == (int) BFD_RELOC_PPC64_TOC
2061 && exp_p->X_op == O_symbol
2062 && strcmp (S_GET_NAME (exp_p->X_add_symbol), ".TOC.") == 0)
2063 {
2064 /* Change the symbol so that the dummy .TOC. symbol can be
2065 omitted from the object file. */
2066 exp_p->X_add_symbol = &abs_symbol;
2067 }
2068
2069 return (bfd_reloc_code_real_type) reloc;
2070 }
2071
2072 return BFD_RELOC_NONE;
2073 }
2074
2075 /* Support @got, etc. on constants emitted via .short, .int etc. */
2076
2077 bfd_reloc_code_real_type
2078 ppc_elf_parse_cons (expressionS *exp, unsigned int nbytes)
2079 {
2080 expression (exp);
2081 if (nbytes >= 2 && *input_line_pointer == '@')
2082 return ppc_elf_suffix (&input_line_pointer, exp);
2083 return BFD_RELOC_NONE;
2084 }
2085
2086 /* Warn when emitting data to code sections, unless we are emitting
2087 a relocation that ld --ppc476-workaround uses to recognise data
2088 *and* there was an unconditional branch prior to the data. */
2089
2090 void
2091 ppc_elf_cons_fix_check (expressionS *exp ATTRIBUTE_UNUSED,
2092 unsigned int nbytes, fixS *fix)
2093 {
2094 if (warn_476
2095 && (now_seg->flags & SEC_CODE) != 0
2096 && (nbytes != 4
2097 || fix == NULL
2098 || !(fix->fx_r_type == BFD_RELOC_32
2099 || fix->fx_r_type == BFD_RELOC_CTOR
2100 || fix->fx_r_type == BFD_RELOC_32_PCREL)
2101 || !(last_seg == now_seg && last_subseg == now_subseg)
2102 || !((last_insn & (0x3f << 26)) == (18u << 26)
2103 || ((last_insn & (0x3f << 26)) == (16u << 26)
2104 && (last_insn & (0x14 << 21)) == (0x14 << 21))
2105 || ((last_insn & (0x3f << 26)) == (19u << 26)
2106 && (last_insn & (0x3ff << 1)) == (16u << 1)
2107 && (last_insn & (0x14 << 21)) == (0x14 << 21)))))
2108 {
2109 /* Flag that we've warned. */
2110 if (fix != NULL)
2111 fix->fx_tcbit = 1;
2112
2113 as_warn (_("data in executable section"));
2114 }
2115 }
2116
2117 /* Solaris pseduo op to change to the .rodata section. */
2118 static void
2119 ppc_elf_rdata (int xxx)
2120 {
2121 char *save_line = input_line_pointer;
2122 static char section[] = ".rodata\n";
2123
2124 /* Just pretend this is .section .rodata */
2125 input_line_pointer = section;
2126 obj_elf_section (xxx);
2127
2128 input_line_pointer = save_line;
2129 }
2130
2131 /* Pseudo op to make file scope bss items. */
2132 static void
2133 ppc_elf_lcomm (int xxx ATTRIBUTE_UNUSED)
2134 {
2135 char *name;
2136 char c;
2137 char *p;
2138 offsetT size;
2139 symbolS *symbolP;
2140 offsetT align;
2141 segT old_sec;
2142 int old_subsec;
2143 char *pfrag;
2144 int align2;
2145
2146 c = get_symbol_name (&name);
2147
2148 /* Just after name is now '\0'. */
2149 p = input_line_pointer;
2150 *p = c;
2151 SKIP_WHITESPACE_AFTER_NAME ();
2152 if (*input_line_pointer != ',')
2153 {
2154 as_bad (_("expected comma after symbol-name: rest of line ignored."));
2155 ignore_rest_of_line ();
2156 return;
2157 }
2158
2159 input_line_pointer++; /* skip ',' */
2160 if ((size = get_absolute_expression ()) < 0)
2161 {
2162 as_warn (_(".COMMon length (%ld.) <0! Ignored."), (long) size);
2163 ignore_rest_of_line ();
2164 return;
2165 }
2166
2167 /* The third argument to .lcomm is the alignment. */
2168 if (*input_line_pointer != ',')
2169 align = 8;
2170 else
2171 {
2172 ++input_line_pointer;
2173 align = get_absolute_expression ();
2174 if (align <= 0)
2175 {
2176 as_warn (_("ignoring bad alignment"));
2177 align = 8;
2178 }
2179 }
2180
2181 *p = 0;
2182 symbolP = symbol_find_or_make (name);
2183 *p = c;
2184
2185 if (S_IS_DEFINED (symbolP) && ! S_IS_COMMON (symbolP))
2186 {
2187 as_bad (_("ignoring attempt to re-define symbol `%s'."),
2188 S_GET_NAME (symbolP));
2189 ignore_rest_of_line ();
2190 return;
2191 }
2192
2193 if (S_GET_VALUE (symbolP) && S_GET_VALUE (symbolP) != (valueT) size)
2194 {
2195 as_bad (_("length of .lcomm \"%s\" is already %ld. Not changed to %ld."),
2196 S_GET_NAME (symbolP),
2197 (long) S_GET_VALUE (symbolP),
2198 (long) size);
2199
2200 ignore_rest_of_line ();
2201 return;
2202 }
2203
2204 /* Allocate_bss. */
2205 old_sec = now_seg;
2206 old_subsec = now_subseg;
2207 if (align)
2208 {
2209 /* Convert to a power of 2 alignment. */
2210 for (align2 = 0; (align & 1) == 0; align >>= 1, ++align2);
2211 if (align != 1)
2212 {
2213 as_bad (_("common alignment not a power of 2"));
2214 ignore_rest_of_line ();
2215 return;
2216 }
2217 }
2218 else
2219 align2 = 0;
2220
2221 record_alignment (bss_section, align2);
2222 subseg_set (bss_section, 1);
2223 if (align2)
2224 frag_align (align2, 0, 0);
2225 if (S_GET_SEGMENT (symbolP) == bss_section)
2226 symbol_get_frag (symbolP)->fr_symbol = 0;
2227 symbol_set_frag (symbolP, frag_now);
2228 pfrag = frag_var (rs_org, 1, 1, (relax_substateT) 0, symbolP, size,
2229 (char *) 0);
2230 *pfrag = 0;
2231 S_SET_SIZE (symbolP, size);
2232 S_SET_SEGMENT (symbolP, bss_section);
2233 subseg_set (old_sec, old_subsec);
2234 demand_empty_rest_of_line ();
2235 }
2236
2237 /* Pseudo op to set symbol local entry point. */
2238 static void
2239 ppc_elf_localentry (int ignore ATTRIBUTE_UNUSED)
2240 {
2241 char *name;
2242 char c = get_symbol_name (&name);
2243 char *p;
2244 expressionS exp;
2245 symbolS *sym;
2246 asymbol *bfdsym;
2247 elf_symbol_type *elfsym;
2248
2249 p = input_line_pointer;
2250 *p = c;
2251 SKIP_WHITESPACE_AFTER_NAME ();
2252 if (*input_line_pointer != ',')
2253 {
2254 *p = 0;
2255 as_bad (_("expected comma after name `%s' in .localentry directive"),
2256 name);
2257 *p = c;
2258 ignore_rest_of_line ();
2259 return;
2260 }
2261 input_line_pointer++;
2262 expression (&exp);
2263 if (exp.X_op == O_absent)
2264 {
2265 as_bad (_("missing expression in .localentry directive"));
2266 exp.X_op = O_constant;
2267 exp.X_add_number = 0;
2268 }
2269 *p = 0;
2270 sym = symbol_find_or_make (name);
2271 *p = c;
2272
2273 if (resolve_expression (&exp)
2274 && exp.X_op == O_constant)
2275 {
2276 unsigned char encoded = PPC64_SET_LOCAL_ENTRY_OFFSET (exp.X_add_number);
2277
2278 if (exp.X_add_number != (offsetT) PPC64_LOCAL_ENTRY_OFFSET (encoded))
2279 as_bad (_(".localentry expression for `%s' "
2280 "is not a valid power of 2"), S_GET_NAME (sym));
2281 else
2282 {
2283 bfdsym = symbol_get_bfdsym (sym);
2284 elfsym = elf_symbol_from (bfd_asymbol_bfd (bfdsym), bfdsym);
2285 gas_assert (elfsym);
2286 elfsym->internal_elf_sym.st_other &= ~STO_PPC64_LOCAL_MASK;
2287 elfsym->internal_elf_sym.st_other |= encoded;
2288 if (ppc_abiversion == 0)
2289 ppc_abiversion = 2;
2290 }
2291 }
2292 else
2293 as_bad (_(".localentry expression for `%s' "
2294 "does not evaluate to a constant"), S_GET_NAME (sym));
2295
2296 demand_empty_rest_of_line ();
2297 }
2298
2299 /* Pseudo op to set ABI version. */
2300 static void
2301 ppc_elf_abiversion (int ignore ATTRIBUTE_UNUSED)
2302 {
2303 expressionS exp;
2304
2305 expression (&exp);
2306 if (exp.X_op == O_absent)
2307 {
2308 as_bad (_("missing expression in .abiversion directive"));
2309 exp.X_op = O_constant;
2310 exp.X_add_number = 0;
2311 }
2312
2313 if (resolve_expression (&exp)
2314 && exp.X_op == O_constant)
2315 ppc_abiversion = exp.X_add_number;
2316 else
2317 as_bad (_(".abiversion expression does not evaluate to a constant"));
2318 demand_empty_rest_of_line ();
2319 }
2320
2321 /* Set ABI version in output file. */
2322 void
2323 ppc_elf_end (void)
2324 {
2325 if (ppc_obj64 && ppc_abiversion != 0)
2326 {
2327 elf_elfheader (stdoutput)->e_flags &= ~EF_PPC64_ABI;
2328 elf_elfheader (stdoutput)->e_flags |= ppc_abiversion & EF_PPC64_ABI;
2329 }
2330 }
2331
2332 /* Validate any relocations emitted for -mrelocatable, possibly adding
2333 fixups for word relocations in writable segments, so we can adjust
2334 them at runtime. */
2335 static void
2336 ppc_elf_validate_fix (fixS *fixp, segT seg)
2337 {
2338 if (fixp->fx_done || fixp->fx_pcrel)
2339 return;
2340
2341 switch (shlib)
2342 {
2343 case SHLIB_NONE:
2344 case SHLIB_PIC:
2345 return;
2346
2347 case SHLIB_MRELOCATABLE:
2348 if (fixp->fx_r_type != BFD_RELOC_16_GOTOFF
2349 && fixp->fx_r_type != BFD_RELOC_HI16_GOTOFF
2350 && fixp->fx_r_type != BFD_RELOC_LO16_GOTOFF
2351 && fixp->fx_r_type != BFD_RELOC_HI16_S_GOTOFF
2352 && fixp->fx_r_type != BFD_RELOC_16_BASEREL
2353 && fixp->fx_r_type != BFD_RELOC_LO16_BASEREL
2354 && fixp->fx_r_type != BFD_RELOC_HI16_BASEREL
2355 && fixp->fx_r_type != BFD_RELOC_HI16_S_BASEREL
2356 && (seg->flags & SEC_LOAD) != 0
2357 && strcmp (segment_name (seg), ".got2") != 0
2358 && strcmp (segment_name (seg), ".dtors") != 0
2359 && strcmp (segment_name (seg), ".ctors") != 0
2360 && strcmp (segment_name (seg), ".fixup") != 0
2361 && strcmp (segment_name (seg), ".gcc_except_table") != 0
2362 && strcmp (segment_name (seg), ".eh_frame") != 0
2363 && strcmp (segment_name (seg), ".ex_shared") != 0)
2364 {
2365 if ((seg->flags & (SEC_READONLY | SEC_CODE)) != 0
2366 || fixp->fx_r_type != BFD_RELOC_CTOR)
2367 {
2368 as_bad_where (fixp->fx_file, fixp->fx_line,
2369 _("relocation cannot be done when using -mrelocatable"));
2370 }
2371 }
2372 return;
2373 }
2374 }
2375
2376 /* Prevent elf_frob_file_before_adjust removing a weak undefined
2377 function descriptor sym if the corresponding code sym is used. */
2378
2379 void
2380 ppc_frob_file_before_adjust (void)
2381 {
2382 symbolS *symp;
2383 asection *toc;
2384
2385 if (!ppc_obj64)
2386 return;
2387
2388 for (symp = symbol_rootP; symp; symp = symbol_next (symp))
2389 {
2390 const char *name;
2391 char *dotname;
2392 symbolS *dotsym;
2393 size_t len;
2394
2395 name = S_GET_NAME (symp);
2396 if (name[0] == '.')
2397 continue;
2398
2399 if (! S_IS_WEAK (symp)
2400 || S_IS_DEFINED (symp))
2401 continue;
2402
2403 len = strlen (name) + 1;
2404 dotname = xmalloc (len + 1);
2405 dotname[0] = '.';
2406 memcpy (dotname + 1, name, len);
2407 dotsym = symbol_find_noref (dotname, 1);
2408 free (dotname);
2409 if (dotsym != NULL && (symbol_used_p (dotsym)
2410 || symbol_used_in_reloc_p (dotsym)))
2411 symbol_mark_used (symp);
2412
2413 }
2414
2415 toc = bfd_get_section_by_name (stdoutput, ".toc");
2416 if (toc != NULL
2417 && toc_reloc_types != has_large_toc_reloc
2418 && bfd_section_size (stdoutput, toc) > 0x10000)
2419 as_warn (_("TOC section size exceeds 64k"));
2420 }
2421
2422 /* .TOC. used in an opd entry as .TOC.@tocbase doesn't need to be
2423 emitted. Other uses of .TOC. will cause the symbol to be marked
2424 with BSF_KEEP in md_apply_fix. */
2425
2426 void
2427 ppc_elf_adjust_symtab (void)
2428 {
2429 if (ppc_obj64)
2430 {
2431 symbolS *symp;
2432 symp = symbol_find (".TOC.");
2433 if (symp != NULL)
2434 {
2435 asymbol *bsym = symbol_get_bfdsym (symp);
2436 if ((bsym->flags & BSF_KEEP) == 0)
2437 symbol_remove (symp, &symbol_rootP, &symbol_lastP);
2438 }
2439 }
2440 }
2441 #endif /* OBJ_ELF */
2442 \f
2443 #ifdef TE_PE
2444
2445 /*
2446 * Summary of parse_toc_entry.
2447 *
2448 * in: Input_line_pointer points to the '[' in one of:
2449 *
2450 * [toc] [tocv] [toc32] [toc64]
2451 *
2452 * Anything else is an error of one kind or another.
2453 *
2454 * out:
2455 * return value: success or failure
2456 * toc_kind: kind of toc reference
2457 * input_line_pointer:
2458 * success: first char after the ']'
2459 * failure: unchanged
2460 *
2461 * settings:
2462 *
2463 * [toc] - rv == success, toc_kind = default_toc
2464 * [tocv] - rv == success, toc_kind = data_in_toc
2465 * [toc32] - rv == success, toc_kind = must_be_32
2466 * [toc64] - rv == success, toc_kind = must_be_64
2467 *
2468 */
2469
2470 enum toc_size_qualifier
2471 {
2472 default_toc, /* The toc cell constructed should be the system default size */
2473 data_in_toc, /* This is a direct reference to a toc cell */
2474 must_be_32, /* The toc cell constructed must be 32 bits wide */
2475 must_be_64 /* The toc cell constructed must be 64 bits wide */
2476 };
2477
2478 static int
2479 parse_toc_entry (enum toc_size_qualifier *toc_kind)
2480 {
2481 char *start;
2482 char *toc_spec;
2483 char c;
2484 enum toc_size_qualifier t;
2485
2486 /* Save the input_line_pointer. */
2487 start = input_line_pointer;
2488
2489 /* Skip over the '[' , and whitespace. */
2490 ++input_line_pointer;
2491 SKIP_WHITESPACE ();
2492
2493 /* Find the spelling of the operand. */
2494 c = get_symbol_name (&toc_spec);
2495
2496 if (strcmp (toc_spec, "toc") == 0)
2497 {
2498 t = default_toc;
2499 }
2500 else if (strcmp (toc_spec, "tocv") == 0)
2501 {
2502 t = data_in_toc;
2503 }
2504 else if (strcmp (toc_spec, "toc32") == 0)
2505 {
2506 t = must_be_32;
2507 }
2508 else if (strcmp (toc_spec, "toc64") == 0)
2509 {
2510 t = must_be_64;
2511 }
2512 else
2513 {
2514 as_bad (_("syntax error: invalid toc specifier `%s'"), toc_spec);
2515 *input_line_pointer = c;
2516 input_line_pointer = start;
2517 return 0;
2518 }
2519
2520 /* Now find the ']'. */
2521 *input_line_pointer = c;
2522
2523 SKIP_WHITESPACE_AFTER_NAME (); /* leading whitespace could be there. */
2524 c = *input_line_pointer++; /* input_line_pointer->past char in c. */
2525
2526 if (c != ']')
2527 {
2528 as_bad (_("syntax error: expected `]', found `%c'"), c);
2529 input_line_pointer = start;
2530 return 0;
2531 }
2532
2533 *toc_kind = t;
2534 return 1;
2535 }
2536 #endif
2537
2538 #if defined (OBJ_XCOFF) || defined (OBJ_ELF)
2539 /* See whether a symbol is in the TOC section. */
2540
2541 static int
2542 ppc_is_toc_sym (symbolS *sym)
2543 {
2544 #ifdef OBJ_XCOFF
2545 return (symbol_get_tc (sym)->symbol_class == XMC_TC
2546 || symbol_get_tc (sym)->symbol_class == XMC_TC0);
2547 #endif
2548 #ifdef OBJ_ELF
2549 const char *sname = segment_name (S_GET_SEGMENT (sym));
2550 if (ppc_obj64)
2551 return strcmp (sname, ".toc") == 0;
2552 else
2553 return strcmp (sname, ".got") == 0;
2554 #endif
2555 }
2556 #endif /* defined (OBJ_XCOFF) || defined (OBJ_ELF) */
2557 \f
2558
2559 #ifdef OBJ_ELF
2560 #define APUID(a,v) ((((a) & 0xffff) << 16) | ((v) & 0xffff))
2561 static void
2562 ppc_apuinfo_section_add (unsigned int apu, unsigned int version)
2563 {
2564 unsigned int i;
2565
2566 /* Check we don't already exist. */
2567 for (i = 0; i < ppc_apuinfo_num; i++)
2568 if (ppc_apuinfo_list[i] == APUID (apu, version))
2569 return;
2570
2571 if (ppc_apuinfo_num == ppc_apuinfo_num_alloc)
2572 {
2573 if (ppc_apuinfo_num_alloc == 0)
2574 {
2575 ppc_apuinfo_num_alloc = 4;
2576 ppc_apuinfo_list = (unsigned long *)
2577 xmalloc (sizeof (unsigned long) * ppc_apuinfo_num_alloc);
2578 }
2579 else
2580 {
2581 ppc_apuinfo_num_alloc += 4;
2582 ppc_apuinfo_list = (unsigned long *) xrealloc (ppc_apuinfo_list,
2583 sizeof (unsigned long) * ppc_apuinfo_num_alloc);
2584 }
2585 }
2586 ppc_apuinfo_list[ppc_apuinfo_num++] = APUID (apu, version);
2587 }
2588 #undef APUID
2589 #endif
2590 \f
2591
2592 /* We need to keep a list of fixups. We can't simply generate them as
2593 we go, because that would require us to first create the frag, and
2594 that would screw up references to ``.''. */
2595
2596 struct ppc_fixup
2597 {
2598 expressionS exp;
2599 int opindex;
2600 bfd_reloc_code_real_type reloc;
2601 };
2602
2603 #define MAX_INSN_FIXUPS (5)
2604
2605 /* Form I16L. */
2606 #define E_OR2I_INSN 0x7000C000
2607 #define E_AND2I_DOT_INSN 0x7000C800
2608 #define E_OR2IS_INSN 0x7000D000
2609 #define E_LIS_INSN 0x7000E000
2610 #define E_AND2IS_DOT_INSN 0x7000E800
2611
2612 /* Form I16A. */
2613 #define E_ADD2I_DOT_INSN 0x70008800
2614 #define E_ADD2IS_INSN 0x70009000
2615 #define E_CMP16I_INSN 0x70009800
2616 #define E_MULL2I_INSN 0x7000A000
2617 #define E_CMPL16I_INSN 0x7000A800
2618 #define E_CMPH16I_INSN 0x7000B000
2619 #define E_CMPHL16I_INSN 0x7000B800
2620
2621 /* This routine is called for each instruction to be assembled. */
2622
2623 void
2624 md_assemble (char *str)
2625 {
2626 char *s;
2627 const struct powerpc_opcode *opcode;
2628 unsigned long insn;
2629 const unsigned char *opindex_ptr;
2630 int skip_optional;
2631 int need_paren;
2632 int next_opindex;
2633 struct ppc_fixup fixups[MAX_INSN_FIXUPS];
2634 int fc;
2635 char *f;
2636 int addr_mod;
2637 int i;
2638 unsigned int insn_length;
2639
2640 /* Get the opcode. */
2641 for (s = str; *s != '\0' && ! ISSPACE (*s); s++)
2642 ;
2643 if (*s != '\0')
2644 *s++ = '\0';
2645
2646 /* Look up the opcode in the hash table. */
2647 opcode = (const struct powerpc_opcode *) hash_find (ppc_hash, str);
2648 if (opcode == (const struct powerpc_opcode *) NULL)
2649 {
2650 const struct powerpc_macro *macro;
2651
2652 macro = (const struct powerpc_macro *) hash_find (ppc_macro_hash, str);
2653 if (macro == (const struct powerpc_macro *) NULL)
2654 as_bad (_("unrecognized opcode: `%s'"), str);
2655 else
2656 ppc_macro (s, macro);
2657
2658 return;
2659 }
2660
2661 insn = opcode->opcode;
2662
2663 str = s;
2664 while (ISSPACE (*str))
2665 ++str;
2666
2667 /* PowerPC operands are just expressions. The only real issue is
2668 that a few operand types are optional. All cases which might use
2669 an optional operand separate the operands only with commas (in some
2670 cases parentheses are used, as in ``lwz 1,0(1)'' but such cases never
2671 have optional operands). Most instructions with optional operands
2672 have only one. Those that have more than one optional operand can
2673 take either all their operands or none. So, before we start seriously
2674 parsing the operands, we check to see if we have optional operands,
2675 and if we do, we count the number of commas to see which operands
2676 have been omitted. */
2677 skip_optional = 0;
2678 for (opindex_ptr = opcode->operands; *opindex_ptr != 0; opindex_ptr++)
2679 {
2680 const struct powerpc_operand *operand;
2681
2682 operand = &powerpc_operands[*opindex_ptr];
2683 if ((operand->flags & PPC_OPERAND_OPTIONAL) != 0)
2684 {
2685 unsigned int opcount;
2686 unsigned int num_operands_expected;
2687
2688 /* There is an optional operand. Count the number of
2689 commas in the input line. */
2690 if (*str == '\0')
2691 opcount = 0;
2692 else
2693 {
2694 opcount = 1;
2695 s = str;
2696 while ((s = strchr (s, ',')) != (char *) NULL)
2697 {
2698 ++opcount;
2699 ++s;
2700 }
2701 }
2702
2703 /* Compute the number of expected operands.
2704 Do not count fake operands. */
2705 for (num_operands_expected = 0, i = 0; opcode->operands[i]; i ++)
2706 if ((powerpc_operands [opcode->operands[i]].flags & PPC_OPERAND_FAKE) == 0)
2707 ++ num_operands_expected;
2708
2709 /* If there are fewer operands in the line then are called
2710 for by the instruction, we want to skip the optional
2711 operands. */
2712 if (opcount < num_operands_expected)
2713 skip_optional = 1;
2714
2715 break;
2716 }
2717 }
2718
2719 /* Gather the operands. */
2720 need_paren = 0;
2721 next_opindex = 0;
2722 fc = 0;
2723 for (opindex_ptr = opcode->operands; *opindex_ptr != 0; opindex_ptr++)
2724 {
2725 const struct powerpc_operand *operand;
2726 const char *errmsg;
2727 char *hold;
2728 expressionS ex;
2729 char endc;
2730
2731 if (next_opindex == 0)
2732 operand = &powerpc_operands[*opindex_ptr];
2733 else
2734 {
2735 operand = &powerpc_operands[next_opindex];
2736 next_opindex = 0;
2737 }
2738 errmsg = NULL;
2739
2740 /* If this is a fake operand, then we do not expect anything
2741 from the input. */
2742 if ((operand->flags & PPC_OPERAND_FAKE) != 0)
2743 {
2744 insn = (*operand->insert) (insn, 0L, ppc_cpu, &errmsg);
2745 if (errmsg != (const char *) NULL)
2746 as_bad ("%s", errmsg);
2747 continue;
2748 }
2749
2750 /* If this is an optional operand, and we are skipping it, just
2751 insert a zero. */
2752 if ((operand->flags & PPC_OPERAND_OPTIONAL) != 0
2753 && skip_optional)
2754 {
2755 long val = ppc_optional_operand_value (operand);
2756 if (operand->insert)
2757 {
2758 insn = (*operand->insert) (insn, val, ppc_cpu, &errmsg);
2759 if (errmsg != (const char *) NULL)
2760 as_bad ("%s", errmsg);
2761 }
2762 else if (operand->shift >= 0)
2763 insn |= ((long) val & operand->bitm) << operand->shift;
2764 else
2765 insn |= ((long) val & operand->bitm) >> -operand->shift;
2766
2767 if ((operand->flags & PPC_OPERAND_NEXT) != 0)
2768 next_opindex = *opindex_ptr + 1;
2769 continue;
2770 }
2771
2772 /* Gather the operand. */
2773 hold = input_line_pointer;
2774 input_line_pointer = str;
2775
2776 #ifdef TE_PE
2777 if (*input_line_pointer == '[')
2778 {
2779 /* We are expecting something like the second argument here:
2780 *
2781 * lwz r4,[toc].GS.0.static_int(rtoc)
2782 * ^^^^^^^^^^^^^^^^^^^^^^^^^^^
2783 * The argument following the `]' must be a symbol name, and the
2784 * register must be the toc register: 'rtoc' or '2'
2785 *
2786 * The effect is to 0 as the displacement field
2787 * in the instruction, and issue an IMAGE_REL_PPC_TOCREL16 (or
2788 * the appropriate variation) reloc against it based on the symbol.
2789 * The linker will build the toc, and insert the resolved toc offset.
2790 *
2791 * Note:
2792 * o The size of the toc entry is currently assumed to be
2793 * 32 bits. This should not be assumed to be a hard coded
2794 * number.
2795 * o In an effort to cope with a change from 32 to 64 bits,
2796 * there are also toc entries that are specified to be
2797 * either 32 or 64 bits:
2798 * lwz r4,[toc32].GS.0.static_int(rtoc)
2799 * lwz r4,[toc64].GS.0.static_int(rtoc)
2800 * These demand toc entries of the specified size, and the
2801 * instruction probably requires it.
2802 */
2803
2804 int valid_toc;
2805 enum toc_size_qualifier toc_kind;
2806 bfd_reloc_code_real_type toc_reloc;
2807
2808 /* Go parse off the [tocXX] part. */
2809 valid_toc = parse_toc_entry (&toc_kind);
2810
2811 if (!valid_toc)
2812 {
2813 ignore_rest_of_line ();
2814 break;
2815 }
2816
2817 /* Now get the symbol following the ']'. */
2818 expression (&ex);
2819
2820 switch (toc_kind)
2821 {
2822 case default_toc:
2823 /* In this case, we may not have seen the symbol yet,
2824 since it is allowed to appear on a .extern or .globl
2825 or just be a label in the .data section. */
2826 toc_reloc = BFD_RELOC_PPC_TOC16;
2827 break;
2828 case data_in_toc:
2829 /* 1. The symbol must be defined and either in the toc
2830 section, or a global.
2831 2. The reloc generated must have the TOCDEFN flag set
2832 in upper bit mess of the reloc type.
2833 FIXME: It's a little confusing what the tocv
2834 qualifier can be used for. At the very least, I've
2835 seen three uses, only one of which I'm sure I can
2836 explain. */
2837 if (ex.X_op == O_symbol)
2838 {
2839 gas_assert (ex.X_add_symbol != NULL);
2840 if (symbol_get_bfdsym (ex.X_add_symbol)->section
2841 != tocdata_section)
2842 {
2843 as_bad (_("[tocv] symbol is not a toc symbol"));
2844 }
2845 }
2846
2847 toc_reloc = BFD_RELOC_PPC_TOC16;
2848 break;
2849 case must_be_32:
2850 /* FIXME: these next two specifically specify 32/64 bit
2851 toc entries. We don't support them today. Is this
2852 the right way to say that? */
2853 toc_reloc = BFD_RELOC_NONE;
2854 as_bad (_("unimplemented toc32 expression modifier"));
2855 break;
2856 case must_be_64:
2857 /* FIXME: see above. */
2858 toc_reloc = BFD_RELOC_NONE;
2859 as_bad (_("unimplemented toc64 expression modifier"));
2860 break;
2861 default:
2862 fprintf (stderr,
2863 _("Unexpected return value [%d] from parse_toc_entry!\n"),
2864 toc_kind);
2865 abort ();
2866 break;
2867 }
2868
2869 /* We need to generate a fixup for this expression. */
2870 if (fc >= MAX_INSN_FIXUPS)
2871 as_fatal (_("too many fixups"));
2872
2873 fixups[fc].reloc = toc_reloc;
2874 fixups[fc].exp = ex;
2875 fixups[fc].opindex = *opindex_ptr;
2876 ++fc;
2877
2878 /* Ok. We've set up the fixup for the instruction. Now make it
2879 look like the constant 0 was found here. */
2880 ex.X_unsigned = 1;
2881 ex.X_op = O_constant;
2882 ex.X_add_number = 0;
2883 ex.X_add_symbol = NULL;
2884 ex.X_op_symbol = NULL;
2885 }
2886
2887 else
2888 #endif /* TE_PE */
2889 {
2890 if ((reg_names_p
2891 && (((operand->flags & PPC_OPERAND_CR_BIT) != 0)
2892 || ((operand->flags & PPC_OPERAND_CR_REG) != 0)))
2893 || !register_name (&ex))
2894 {
2895 char save_lex = lex_type['%'];
2896
2897 if (((operand->flags & PPC_OPERAND_CR_REG) != 0)
2898 || (operand->flags & PPC_OPERAND_CR_BIT) != 0)
2899 {
2900 cr_operand = TRUE;
2901 lex_type['%'] |= LEX_BEGIN_NAME;
2902 }
2903 expression (&ex);
2904 cr_operand = FALSE;
2905 lex_type['%'] = save_lex;
2906 }
2907 }
2908
2909 str = input_line_pointer;
2910 input_line_pointer = hold;
2911
2912 if (ex.X_op == O_illegal)
2913 as_bad (_("illegal operand"));
2914 else if (ex.X_op == O_absent)
2915 as_bad (_("missing operand"));
2916 else if (ex.X_op == O_register)
2917 {
2918 insn = ppc_insert_operand (insn, operand, ex.X_add_number,
2919 ppc_cpu, (char *) NULL, 0);
2920 }
2921 else if (ex.X_op == O_constant)
2922 {
2923 #ifdef OBJ_ELF
2924 /* Allow @HA, @L, @H on constants. */
2925 bfd_reloc_code_real_type reloc;
2926 char *orig_str = str;
2927
2928 if ((reloc = ppc_elf_suffix (&str, &ex)) != BFD_RELOC_NONE)
2929 switch (reloc)
2930 {
2931 default:
2932 str = orig_str;
2933 break;
2934
2935 case BFD_RELOC_LO16:
2936 ex.X_add_number &= 0xffff;
2937 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
2938 ex.X_add_number = SEX16 (ex.X_add_number);
2939 break;
2940
2941 case BFD_RELOC_HI16:
2942 if (REPORT_OVERFLOW_HI && ppc_obj64)
2943 {
2944 /* PowerPC64 @h is tested for overflow. */
2945 ex.X_add_number = (addressT) ex.X_add_number >> 16;
2946 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
2947 {
2948 addressT sign = (((addressT) -1 >> 16) + 1) >> 1;
2949 ex.X_add_number
2950 = ((addressT) ex.X_add_number ^ sign) - sign;
2951 }
2952 break;
2953 }
2954 /* Fall thru */
2955
2956 case BFD_RELOC_PPC64_ADDR16_HIGH:
2957 ex.X_add_number = PPC_HI (ex.X_add_number);
2958 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
2959 ex.X_add_number = SEX16 (ex.X_add_number);
2960 break;
2961
2962 case BFD_RELOC_HI16_S:
2963 if (REPORT_OVERFLOW_HI && ppc_obj64)
2964 {
2965 /* PowerPC64 @ha is tested for overflow. */
2966 ex.X_add_number
2967 = ((addressT) ex.X_add_number + 0x8000) >> 16;
2968 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
2969 {
2970 addressT sign = (((addressT) -1 >> 16) + 1) >> 1;
2971 ex.X_add_number
2972 = ((addressT) ex.X_add_number ^ sign) - sign;
2973 }
2974 break;
2975 }
2976 /* Fall thru */
2977
2978 case BFD_RELOC_PPC64_ADDR16_HIGHA:
2979 ex.X_add_number = PPC_HA (ex.X_add_number);
2980 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
2981 ex.X_add_number = SEX16 (ex.X_add_number);
2982 break;
2983
2984 case BFD_RELOC_PPC64_HIGHER:
2985 ex.X_add_number = PPC_HIGHER (ex.X_add_number);
2986 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
2987 ex.X_add_number = SEX16 (ex.X_add_number);
2988 break;
2989
2990 case BFD_RELOC_PPC64_HIGHER_S:
2991 ex.X_add_number = PPC_HIGHERA (ex.X_add_number);
2992 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
2993 ex.X_add_number = SEX16 (ex.X_add_number);
2994 break;
2995
2996 case BFD_RELOC_PPC64_HIGHEST:
2997 ex.X_add_number = PPC_HIGHEST (ex.X_add_number);
2998 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
2999 ex.X_add_number = SEX16 (ex.X_add_number);
3000 break;
3001
3002 case BFD_RELOC_PPC64_HIGHEST_S:
3003 ex.X_add_number = PPC_HIGHESTA (ex.X_add_number);
3004 if ((operand->flags & PPC_OPERAND_SIGNED) != 0)
3005 ex.X_add_number = SEX16 (ex.X_add_number);
3006 break;
3007 }
3008 #endif /* OBJ_ELF */
3009 insn = ppc_insert_operand (insn, operand, ex.X_add_number,
3010 ppc_cpu, (char *) NULL, 0);
3011 }
3012 else
3013 {
3014 bfd_reloc_code_real_type reloc = BFD_RELOC_NONE;
3015 #ifdef OBJ_ELF
3016 if (ex.X_op == O_symbol && str[0] == '(')
3017 {
3018 const char *sym_name = S_GET_NAME (ex.X_add_symbol);
3019 if (sym_name[0] == '.')
3020 ++sym_name;
3021
3022 if (strcasecmp (sym_name, "__tls_get_addr") == 0)
3023 {
3024 expressionS tls_exp;
3025
3026 hold = input_line_pointer;
3027 input_line_pointer = str + 1;
3028 expression (&tls_exp);
3029 if (tls_exp.X_op == O_symbol)
3030 {
3031 reloc = BFD_RELOC_NONE;
3032 if (strncasecmp (input_line_pointer, "@tlsgd)", 7) == 0)
3033 {
3034 reloc = BFD_RELOC_PPC_TLSGD;
3035 input_line_pointer += 7;
3036 }
3037 else if (strncasecmp (input_line_pointer, "@tlsld)", 7) == 0)
3038 {
3039 reloc = BFD_RELOC_PPC_TLSLD;
3040 input_line_pointer += 7;
3041 }
3042 if (reloc != BFD_RELOC_NONE)
3043 {
3044 SKIP_WHITESPACE ();
3045 str = input_line_pointer;
3046
3047 if (fc >= MAX_INSN_FIXUPS)
3048 as_fatal (_("too many fixups"));
3049 fixups[fc].exp = tls_exp;
3050 fixups[fc].opindex = *opindex_ptr;
3051 fixups[fc].reloc = reloc;
3052 ++fc;
3053 }
3054 }
3055 input_line_pointer = hold;
3056 }
3057 }
3058
3059 if ((reloc = ppc_elf_suffix (&str, &ex)) != BFD_RELOC_NONE)
3060 {
3061 /* Some TLS tweaks. */
3062 switch (reloc)
3063 {
3064 default:
3065 break;
3066
3067 case BFD_RELOC_PPC_TLS:
3068 if (!_bfd_elf_ppc_at_tls_transform (opcode->opcode, 0))
3069 as_bad (_("@tls may not be used with \"%s\" operands"),
3070 opcode->name);
3071 else if (operand->shift != 11)
3072 as_bad (_("@tls may only be used in last operand"));
3073 else
3074 insn = ppc_insert_operand (insn, operand,
3075 ppc_obj64 ? 13 : 2,
3076 ppc_cpu, (char *) NULL, 0);
3077 break;
3078
3079 /* We'll only use the 32 (or 64) bit form of these relocations
3080 in constants. Instructions get the 16 bit form. */
3081 case BFD_RELOC_PPC_DTPREL:
3082 reloc = BFD_RELOC_PPC_DTPREL16;
3083 break;
3084 case BFD_RELOC_PPC_TPREL:
3085 reloc = BFD_RELOC_PPC_TPREL16;
3086 break;
3087 }
3088
3089 /* addpcis. */
3090 if (opcode->opcode == (19 << 26) + (2 << 1)
3091 && reloc == BFD_RELOC_HI16_S)
3092 reloc = BFD_RELOC_PPC_REL16DX_HA;
3093
3094 /* If VLE-mode convert LO/HI/HA relocations. */
3095 if (opcode->flags & PPC_OPCODE_VLE)
3096 {
3097 int tmp_insn = insn & opcode->mask;
3098
3099 int use_d_reloc = (tmp_insn == E_OR2I_INSN
3100 || tmp_insn == E_AND2I_DOT_INSN
3101 || tmp_insn == E_OR2IS_INSN
3102 || tmp_insn == E_LIS_INSN
3103 || tmp_insn == E_AND2IS_DOT_INSN);
3104
3105
3106 int use_a_reloc = (tmp_insn == E_ADD2I_DOT_INSN
3107 || tmp_insn == E_ADD2IS_INSN
3108 || tmp_insn == E_CMP16I_INSN
3109 || tmp_insn == E_MULL2I_INSN
3110 || tmp_insn == E_CMPL16I_INSN
3111 || tmp_insn == E_CMPH16I_INSN
3112 || tmp_insn == E_CMPHL16I_INSN);
3113
3114 switch (reloc)
3115 {
3116 default:
3117 break;
3118
3119 case BFD_RELOC_PPC_EMB_SDA21:
3120 reloc = BFD_RELOC_PPC_VLE_SDA21;
3121 break;
3122
3123 case BFD_RELOC_LO16:
3124 if (use_d_reloc)
3125 reloc = BFD_RELOC_PPC_VLE_LO16D;
3126 else if (use_a_reloc)
3127 reloc = BFD_RELOC_PPC_VLE_LO16A;
3128 break;
3129
3130 case BFD_RELOC_HI16:
3131 if (use_d_reloc)
3132 reloc = BFD_RELOC_PPC_VLE_HI16D;
3133 else if (use_a_reloc)
3134 reloc = BFD_RELOC_PPC_VLE_HI16A;
3135 break;
3136
3137 case BFD_RELOC_HI16_S:
3138 if (use_d_reloc)
3139 reloc = BFD_RELOC_PPC_VLE_HA16D;
3140 else if (use_a_reloc)
3141 reloc = BFD_RELOC_PPC_VLE_HA16A;
3142 break;
3143
3144 case BFD_RELOC_PPC_VLE_SDAREL_LO16A:
3145 if (use_d_reloc)
3146 reloc = BFD_RELOC_PPC_VLE_SDAREL_LO16D;
3147 break;
3148
3149 case BFD_RELOC_PPC_VLE_SDAREL_HI16A:
3150 if (use_d_reloc)
3151 reloc = BFD_RELOC_PPC_VLE_SDAREL_HI16D;
3152 break;
3153
3154 case BFD_RELOC_PPC_VLE_SDAREL_HA16A:
3155 if (use_d_reloc)
3156 reloc = BFD_RELOC_PPC_VLE_SDAREL_HA16D;
3157 break;
3158 }
3159 }
3160 }
3161 #endif /* OBJ_ELF */
3162
3163 if (reloc != BFD_RELOC_NONE)
3164 ;
3165 /* Determine a BFD reloc value based on the operand information.
3166 We are only prepared to turn a few of the operands into
3167 relocs. */
3168 else if ((operand->flags & (PPC_OPERAND_RELATIVE
3169 | PPC_OPERAND_ABSOLUTE)) != 0
3170 && operand->bitm == 0x3fffffc
3171 && operand->shift == 0)
3172 reloc = BFD_RELOC_PPC_B26;
3173 else if ((operand->flags & (PPC_OPERAND_RELATIVE
3174 | PPC_OPERAND_ABSOLUTE)) != 0
3175 && operand->bitm == 0xfffc
3176 && operand->shift == 0)
3177 reloc = BFD_RELOC_PPC_B16;
3178 else if ((operand->flags & PPC_OPERAND_RELATIVE) != 0
3179 && operand->bitm == 0x1fe
3180 && operand->shift == -1)
3181 reloc = BFD_RELOC_PPC_VLE_REL8;
3182 else if ((operand->flags & PPC_OPERAND_RELATIVE) != 0
3183 && operand->bitm == 0xfffe
3184 && operand->shift == 0)
3185 reloc = BFD_RELOC_PPC_VLE_REL15;
3186 else if ((operand->flags & PPC_OPERAND_RELATIVE) != 0
3187 && operand->bitm == 0x1fffffe
3188 && operand->shift == 0)
3189 reloc = BFD_RELOC_PPC_VLE_REL24;
3190 else if ((operand->flags & PPC_OPERAND_NEGATIVE) == 0
3191 && (operand->bitm & 0xfff0) == 0xfff0
3192 && operand->shift == 0)
3193 {
3194 reloc = BFD_RELOC_16;
3195 #if defined OBJ_XCOFF || defined OBJ_ELF
3196 /* Note: the symbol may be not yet defined. */
3197 if ((operand->flags & PPC_OPERAND_PARENS) != 0
3198 && ppc_is_toc_sym (ex.X_add_symbol))
3199 {
3200 reloc = BFD_RELOC_PPC_TOC16;
3201 #ifdef OBJ_ELF
3202 as_warn (_("assuming %s on symbol"),
3203 ppc_obj64 ? "@toc" : "@xgot");
3204 #endif
3205 }
3206 #endif
3207 }
3208
3209 /* For the absolute forms of branches, convert the PC
3210 relative form back into the absolute. */
3211 if ((operand->flags & PPC_OPERAND_ABSOLUTE) != 0)
3212 {
3213 switch (reloc)
3214 {
3215 case BFD_RELOC_PPC_B26:
3216 reloc = BFD_RELOC_PPC_BA26;
3217 break;
3218 case BFD_RELOC_PPC_B16:
3219 reloc = BFD_RELOC_PPC_BA16;
3220 break;
3221 #ifdef OBJ_ELF
3222 case BFD_RELOC_PPC_B16_BRTAKEN:
3223 reloc = BFD_RELOC_PPC_BA16_BRTAKEN;
3224 break;
3225 case BFD_RELOC_PPC_B16_BRNTAKEN:
3226 reloc = BFD_RELOC_PPC_BA16_BRNTAKEN;
3227 break;
3228 #endif
3229 default:
3230 break;
3231 }
3232 }
3233
3234 #ifdef OBJ_ELF
3235 switch (reloc)
3236 {
3237 case BFD_RELOC_PPC_TOC16:
3238 toc_reloc_types |= has_small_toc_reloc;
3239 break;
3240 case BFD_RELOC_PPC64_TOC16_LO:
3241 case BFD_RELOC_PPC64_TOC16_HI:
3242 case BFD_RELOC_PPC64_TOC16_HA:
3243 toc_reloc_types |= has_large_toc_reloc;
3244 break;
3245 default:
3246 break;
3247 }
3248
3249 if (ppc_obj64
3250 && (operand->flags & (PPC_OPERAND_DS | PPC_OPERAND_DQ)) != 0)
3251 {
3252 switch (reloc)
3253 {
3254 case BFD_RELOC_16:
3255 reloc = BFD_RELOC_PPC64_ADDR16_DS;
3256 break;
3257 case BFD_RELOC_LO16:
3258 reloc = BFD_RELOC_PPC64_ADDR16_LO_DS;
3259 break;
3260 case BFD_RELOC_16_GOTOFF:
3261 reloc = BFD_RELOC_PPC64_GOT16_DS;
3262 break;
3263 case BFD_RELOC_LO16_GOTOFF:
3264 reloc = BFD_RELOC_PPC64_GOT16_LO_DS;
3265 break;
3266 case BFD_RELOC_LO16_PLTOFF:
3267 reloc = BFD_RELOC_PPC64_PLT16_LO_DS;
3268 break;
3269 case BFD_RELOC_16_BASEREL:
3270 reloc = BFD_RELOC_PPC64_SECTOFF_DS;
3271 break;
3272 case BFD_RELOC_LO16_BASEREL:
3273 reloc = BFD_RELOC_PPC64_SECTOFF_LO_DS;
3274 break;
3275 case BFD_RELOC_PPC_TOC16:
3276 reloc = BFD_RELOC_PPC64_TOC16_DS;
3277 break;
3278 case BFD_RELOC_PPC64_TOC16_LO:
3279 reloc = BFD_RELOC_PPC64_TOC16_LO_DS;
3280 break;
3281 case BFD_RELOC_PPC64_PLTGOT16:
3282 reloc = BFD_RELOC_PPC64_PLTGOT16_DS;
3283 break;
3284 case BFD_RELOC_PPC64_PLTGOT16_LO:
3285 reloc = BFD_RELOC_PPC64_PLTGOT16_LO_DS;
3286 break;
3287 case BFD_RELOC_PPC_DTPREL16:
3288 reloc = BFD_RELOC_PPC64_DTPREL16_DS;
3289 break;
3290 case BFD_RELOC_PPC_DTPREL16_LO:
3291 reloc = BFD_RELOC_PPC64_DTPREL16_LO_DS;
3292 break;
3293 case BFD_RELOC_PPC_TPREL16:
3294 reloc = BFD_RELOC_PPC64_TPREL16_DS;
3295 break;
3296 case BFD_RELOC_PPC_TPREL16_LO:
3297 reloc = BFD_RELOC_PPC64_TPREL16_LO_DS;
3298 break;
3299 case BFD_RELOC_PPC_GOT_DTPREL16:
3300 case BFD_RELOC_PPC_GOT_DTPREL16_LO:
3301 case BFD_RELOC_PPC_GOT_TPREL16:
3302 case BFD_RELOC_PPC_GOT_TPREL16_LO:
3303 break;
3304 default:
3305 as_bad (_("unsupported relocation for DS offset field"));
3306 break;
3307 }
3308 }
3309 #endif
3310
3311 /* We need to generate a fixup for this expression. */
3312 if (fc >= MAX_INSN_FIXUPS)
3313 as_fatal (_("too many fixups"));
3314 fixups[fc].exp = ex;
3315 fixups[fc].opindex = *opindex_ptr;
3316 fixups[fc].reloc = reloc;
3317 ++fc;
3318 }
3319
3320 if (need_paren)
3321 {
3322 endc = ')';
3323 need_paren = 0;
3324 /* If expecting more operands, then we want to see "),". */
3325 if (*str == endc && opindex_ptr[1] != 0)
3326 {
3327 do
3328 ++str;
3329 while (ISSPACE (*str));
3330 endc = ',';
3331 }
3332 }
3333 else if ((operand->flags & PPC_OPERAND_PARENS) != 0)
3334 {
3335 endc = '(';
3336 need_paren = 1;
3337 }
3338 else
3339 endc = ',';
3340
3341 /* The call to expression should have advanced str past any
3342 whitespace. */
3343 if (*str != endc
3344 && (endc != ',' || *str != '\0'))
3345 {
3346 if (*str == '\0')
3347 as_bad (_("syntax error; end of line, expected `%c'"), endc);
3348 else
3349 as_bad (_("syntax error; found `%c', expected `%c'"), *str, endc);
3350 break;
3351 }
3352
3353 if (*str != '\0')
3354 ++str;
3355 }
3356
3357 while (ISSPACE (*str))
3358 ++str;
3359
3360 if (*str != '\0')
3361 as_bad (_("junk at end of line: `%s'"), str);
3362
3363 #ifdef OBJ_ELF
3364 /* Do we need/want an APUinfo section? */
3365 if ((ppc_cpu & (PPC_OPCODE_E500 | PPC_OPCODE_E500MC | PPC_OPCODE_VLE)) != 0
3366 && !ppc_obj64)
3367 {
3368 /* These are all version "1". */
3369 if (opcode->flags & PPC_OPCODE_SPE)
3370 ppc_apuinfo_section_add (PPC_APUINFO_SPE, 1);
3371 if (opcode->flags & PPC_OPCODE_ISEL)
3372 ppc_apuinfo_section_add (PPC_APUINFO_ISEL, 1);
3373 if (opcode->flags & PPC_OPCODE_EFS)
3374 ppc_apuinfo_section_add (PPC_APUINFO_EFS, 1);
3375 if (opcode->flags & PPC_OPCODE_BRLOCK)
3376 ppc_apuinfo_section_add (PPC_APUINFO_BRLOCK, 1);
3377 if (opcode->flags & PPC_OPCODE_PMR)
3378 ppc_apuinfo_section_add (PPC_APUINFO_PMR, 1);
3379 if (opcode->flags & PPC_OPCODE_CACHELCK)
3380 ppc_apuinfo_section_add (PPC_APUINFO_CACHELCK, 1);
3381 if (opcode->flags & PPC_OPCODE_RFMCI)
3382 ppc_apuinfo_section_add (PPC_APUINFO_RFMCI, 1);
3383 /* Only set the VLE flag if the instruction has been pulled via
3384 the VLE instruction set. This way the flag is guaranteed to
3385 be set for VLE-only instructions or for VLE-only processors,
3386 however it'll remain clear for dual-mode instructions on
3387 dual-mode and, more importantly, standard-mode processors. */
3388 if ((ppc_cpu & opcode->flags) == PPC_OPCODE_VLE)
3389 ppc_apuinfo_section_add (PPC_APUINFO_VLE, 1);
3390 }
3391 #endif
3392
3393 /* Write out the instruction. */
3394 /* Differentiate between two and four byte insns. */
3395 if (ppc_mach () == bfd_mach_ppc_vle)
3396 {
3397 if (PPC_OP_SE_VLE (insn))
3398 insn_length = 2;
3399 else
3400 insn_length = 4;
3401 addr_mod = frag_now_fix () & 1;
3402 }
3403 else
3404 {
3405 insn_length = 4;
3406 addr_mod = frag_now_fix () & 3;
3407 }
3408 /* All instructions can start on a 2 byte boundary for VLE. */
3409 f = frag_more (insn_length);
3410 if (frag_now->has_code && frag_now->insn_addr != addr_mod)
3411 {
3412 if (ppc_mach() == bfd_mach_ppc_vle)
3413 as_bad (_("instruction address is not a multiple of 2"));
3414 else
3415 as_bad (_("instruction address is not a multiple of 4"));
3416 }
3417 frag_now->insn_addr = addr_mod;
3418 frag_now->has_code = 1;
3419 md_number_to_chars (f, insn, insn_length);
3420 last_insn = insn;
3421 last_seg = now_seg;
3422 last_subseg = now_subseg;
3423
3424 #ifdef OBJ_ELF
3425 dwarf2_emit_insn (insn_length);
3426 #endif
3427
3428 /* Create any fixups. */
3429 for (i = 0; i < fc; i++)
3430 {
3431 fixS *fixP;
3432 if (fixups[i].reloc != BFD_RELOC_NONE)
3433 {
3434 reloc_howto_type *reloc_howto;
3435 int size;
3436 int offset;
3437
3438 reloc_howto = bfd_reloc_type_lookup (stdoutput, fixups[i].reloc);
3439 if (!reloc_howto)
3440 abort ();
3441
3442 size = bfd_get_reloc_size (reloc_howto);
3443 offset = target_big_endian ? (insn_length - size) : 0;
3444
3445 fixP = fix_new_exp (frag_now,
3446 f - frag_now->fr_literal + offset,
3447 size,
3448 &fixups[i].exp,
3449 reloc_howto->pc_relative,
3450 fixups[i].reloc);
3451 }
3452 else
3453 {
3454 const struct powerpc_operand *operand;
3455
3456 operand = &powerpc_operands[fixups[i].opindex];
3457 fixP = fix_new_exp (frag_now,
3458 f - frag_now->fr_literal,
3459 insn_length,
3460 &fixups[i].exp,
3461 (operand->flags & PPC_OPERAND_RELATIVE) != 0,
3462 BFD_RELOC_NONE);
3463 }
3464 fixP->fx_pcrel_adjust = fixups[i].opindex;
3465 }
3466 }
3467
3468 /* Handle a macro. Gather all the operands, transform them as
3469 described by the macro, and call md_assemble recursively. All the
3470 operands are separated by commas; we don't accept parentheses
3471 around operands here. */
3472
3473 static void
3474 ppc_macro (char *str, const struct powerpc_macro *macro)
3475 {
3476 char *operands[10];
3477 unsigned int count;
3478 char *s;
3479 unsigned int len;
3480 const char *format;
3481 unsigned int arg;
3482 char *send;
3483 char *complete;
3484
3485 /* Gather the users operands into the operands array. */
3486 count = 0;
3487 s = str;
3488 while (1)
3489 {
3490 if (count >= sizeof operands / sizeof operands[0])
3491 break;
3492 operands[count++] = s;
3493 s = strchr (s, ',');
3494 if (s == (char *) NULL)
3495 break;
3496 *s++ = '\0';
3497 }
3498
3499 if (count != macro->operands)
3500 {
3501 as_bad (_("wrong number of operands"));
3502 return;
3503 }
3504
3505 /* Work out how large the string must be (the size is unbounded
3506 because it includes user input). */
3507 len = 0;
3508 format = macro->format;
3509 while (*format != '\0')
3510 {
3511 if (*format != '%')
3512 {
3513 ++len;
3514 ++format;
3515 }
3516 else
3517 {
3518 arg = strtol (format + 1, &send, 10);
3519 know (send != format && arg < count);
3520 len += strlen (operands[arg]);
3521 format = send;
3522 }
3523 }
3524
3525 /* Put the string together. */
3526 complete = s = (char *) xmalloc (len + 1);
3527 format = macro->format;
3528 while (*format != '\0')
3529 {
3530 if (*format != '%')
3531 *s++ = *format++;
3532 else
3533 {
3534 arg = strtol (format + 1, &send, 10);
3535 strcpy (s, operands[arg]);
3536 s += strlen (s);
3537 format = send;
3538 }
3539 }
3540 *s = '\0';
3541
3542 /* Assemble the constructed instruction. */
3543 md_assemble (complete);
3544 free (complete);
3545 }
3546 \f
3547 #ifdef OBJ_ELF
3548 /* For ELF, add support for SHT_ORDERED. */
3549
3550 int
3551 ppc_section_type (char *str, size_t len)
3552 {
3553 if (len == 7 && strncmp (str, "ordered", 7) == 0)
3554 return SHT_ORDERED;
3555
3556 return -1;
3557 }
3558
3559 int
3560 ppc_section_flags (flagword flags, bfd_vma attr ATTRIBUTE_UNUSED, int type)
3561 {
3562 if (type == SHT_ORDERED)
3563 flags |= SEC_ALLOC | SEC_LOAD | SEC_SORT_ENTRIES;
3564
3565 return flags;
3566 }
3567 #endif /* OBJ_ELF */
3568
3569 \f
3570 /* Pseudo-op handling. */
3571
3572 /* The .byte pseudo-op. This is similar to the normal .byte
3573 pseudo-op, but it can also take a single ASCII string. */
3574
3575 static void
3576 ppc_byte (int ignore ATTRIBUTE_UNUSED)
3577 {
3578 int count = 0;
3579
3580 if (*input_line_pointer != '\"')
3581 {
3582 cons (1);
3583 return;
3584 }
3585
3586 /* Gather characters. A real double quote is doubled. Unusual
3587 characters are not permitted. */
3588 ++input_line_pointer;
3589 while (1)
3590 {
3591 char c;
3592
3593 c = *input_line_pointer++;
3594
3595 if (c == '\"')
3596 {
3597 if (*input_line_pointer != '\"')
3598 break;
3599 ++input_line_pointer;
3600 }
3601
3602 FRAG_APPEND_1_CHAR (c);
3603 ++count;
3604 }
3605
3606 if (warn_476 && count != 0 && (now_seg->flags & SEC_CODE) != 0)
3607 as_warn (_("data in executable section"));
3608 demand_empty_rest_of_line ();
3609 }
3610 \f
3611 #ifdef OBJ_XCOFF
3612
3613 /* XCOFF specific pseudo-op handling. */
3614
3615 /* This is set if we are creating a .stabx symbol, since we don't want
3616 to handle symbol suffixes for such symbols. */
3617 static bfd_boolean ppc_stab_symbol;
3618
3619 /* The .comm and .lcomm pseudo-ops for XCOFF. XCOFF puts common
3620 symbols in the .bss segment as though they were local common
3621 symbols, and uses a different smclas. The native Aix 4.3.3 assembler
3622 aligns .comm and .lcomm to 4 bytes. */
3623
3624 static void
3625 ppc_comm (int lcomm)
3626 {
3627 asection *current_seg = now_seg;
3628 subsegT current_subseg = now_subseg;
3629 char *name;
3630 char endc;
3631 char *end_name;
3632 offsetT size;
3633 offsetT align;
3634 symbolS *lcomm_sym = NULL;
3635 symbolS *sym;
3636 char *pfrag;
3637
3638 endc = get_symbol_name (&name);
3639 end_name = input_line_pointer;
3640 (void) restore_line_pointer (endc);
3641
3642 if (*input_line_pointer != ',')
3643 {
3644 as_bad (_("missing size"));
3645 ignore_rest_of_line ();
3646 return;
3647 }
3648 ++input_line_pointer;
3649
3650 size = get_absolute_expression ();
3651 if (size < 0)
3652 {
3653 as_bad (_("negative size"));
3654 ignore_rest_of_line ();
3655 return;
3656 }
3657
3658 if (! lcomm)
3659 {
3660 /* The third argument to .comm is the alignment. */
3661 if (*input_line_pointer != ',')
3662 align = 2;
3663 else
3664 {
3665 ++input_line_pointer;
3666 align = get_absolute_expression ();
3667 if (align <= 0)
3668 {
3669 as_warn (_("ignoring bad alignment"));
3670 align = 2;
3671 }
3672 }
3673 }
3674 else
3675 {
3676 char *lcomm_name;
3677 char lcomm_endc;
3678
3679 /* The third argument to .lcomm appears to be the real local
3680 common symbol to create. References to the symbol named in
3681 the first argument are turned into references to the third
3682 argument. */
3683 if (*input_line_pointer != ',')
3684 {
3685 as_bad (_("missing real symbol name"));
3686 ignore_rest_of_line ();
3687 return;
3688 }
3689 ++input_line_pointer;
3690
3691 lcomm_endc = get_symbol_name (&lcomm_name);
3692
3693 lcomm_sym = symbol_find_or_make (lcomm_name);
3694
3695 (void) restore_line_pointer (lcomm_endc);
3696
3697 /* The fourth argument to .lcomm is the alignment. */
3698 if (*input_line_pointer != ',')
3699 {
3700 if (size <= 4)
3701 align = 2;
3702 else
3703 align = 3;
3704 }
3705 else
3706 {
3707 ++input_line_pointer;
3708 align = get_absolute_expression ();
3709 if (align <= 0)
3710 {
3711 as_warn (_("ignoring bad alignment"));
3712 align = 2;
3713 }
3714 }
3715 }
3716
3717 *end_name = '\0';
3718 sym = symbol_find_or_make (name);
3719 *end_name = endc;
3720
3721 if (S_IS_DEFINED (sym)
3722 || S_GET_VALUE (sym) != 0)
3723 {
3724 as_bad (_("attempt to redefine symbol"));
3725 ignore_rest_of_line ();
3726 return;
3727 }
3728
3729 record_alignment (bss_section, align);
3730
3731 if (! lcomm
3732 || ! S_IS_DEFINED (lcomm_sym))
3733 {
3734 symbolS *def_sym;
3735 offsetT def_size;
3736
3737 if (! lcomm)
3738 {
3739 def_sym = sym;
3740 def_size = size;
3741 S_SET_EXTERNAL (sym);
3742 }
3743 else
3744 {
3745 symbol_get_tc (lcomm_sym)->output = 1;
3746 def_sym = lcomm_sym;
3747 def_size = 0;
3748 }
3749
3750 subseg_set (bss_section, 1);
3751 frag_align (align, 0, 0);
3752
3753 symbol_set_frag (def_sym, frag_now);
3754 pfrag = frag_var (rs_org, 1, 1, (relax_substateT) 0, def_sym,
3755 def_size, (char *) NULL);
3756 *pfrag = 0;
3757 S_SET_SEGMENT (def_sym, bss_section);
3758 symbol_get_tc (def_sym)->align = align;
3759 }
3760 else if (lcomm)
3761 {
3762 /* Align the size of lcomm_sym. */
3763 symbol_get_frag (lcomm_sym)->fr_offset =
3764 ((symbol_get_frag (lcomm_sym)->fr_offset + (1 << align) - 1)
3765 &~ ((1 << align) - 1));
3766 if (align > symbol_get_tc (lcomm_sym)->align)
3767 symbol_get_tc (lcomm_sym)->align = align;
3768 }
3769
3770 if (lcomm)
3771 {
3772 /* Make sym an offset from lcomm_sym. */
3773 S_SET_SEGMENT (sym, bss_section);
3774 symbol_set_frag (sym, symbol_get_frag (lcomm_sym));
3775 S_SET_VALUE (sym, symbol_get_frag (lcomm_sym)->fr_offset);
3776 symbol_get_frag (lcomm_sym)->fr_offset += size;
3777 }
3778
3779 subseg_set (current_seg, current_subseg);
3780
3781 demand_empty_rest_of_line ();
3782 }
3783
3784 /* The .csect pseudo-op. This switches us into a different
3785 subsegment. The first argument is a symbol whose value is the
3786 start of the .csect. In COFF, csect symbols get special aux
3787 entries defined by the x_csect field of union internal_auxent. The
3788 optional second argument is the alignment (the default is 2). */
3789
3790 static void
3791 ppc_csect (int ignore ATTRIBUTE_UNUSED)
3792 {
3793 char *name;
3794 char endc;
3795 symbolS *sym;
3796 offsetT align;
3797
3798 endc = get_symbol_name (&name);
3799
3800 sym = symbol_find_or_make (name);
3801
3802 (void) restore_line_pointer (endc);
3803
3804 if (S_GET_NAME (sym)[0] == '\0')
3805 {
3806 /* An unnamed csect is assumed to be [PR]. */
3807 symbol_get_tc (sym)->symbol_class = XMC_PR;
3808 }
3809
3810 align = 2;
3811 if (*input_line_pointer == ',')
3812 {
3813 ++input_line_pointer;
3814 align = get_absolute_expression ();
3815 }
3816
3817 ppc_change_csect (sym, align);
3818
3819 demand_empty_rest_of_line ();
3820 }
3821
3822 /* Change to a different csect. */
3823
3824 static void
3825 ppc_change_csect (symbolS *sym, offsetT align)
3826 {
3827 if (S_IS_DEFINED (sym))
3828 subseg_set (S_GET_SEGMENT (sym), symbol_get_tc (sym)->subseg);
3829 else
3830 {
3831 symbolS **list_ptr;
3832 int after_toc;
3833 int hold_chunksize;
3834 symbolS *list;
3835 int is_code;
3836 segT sec;
3837
3838 /* This is a new csect. We need to look at the symbol class to
3839 figure out whether it should go in the text section or the
3840 data section. */
3841 after_toc = 0;
3842 is_code = 0;
3843 switch (symbol_get_tc (sym)->symbol_class)
3844 {
3845 case XMC_PR:
3846 case XMC_RO:
3847 case XMC_DB:
3848 case XMC_GL:
3849 case XMC_XO:
3850 case XMC_SV:
3851 case XMC_TI:
3852 case XMC_TB:
3853 S_SET_SEGMENT (sym, text_section);
3854 symbol_get_tc (sym)->subseg = ppc_text_subsegment;
3855 ++ppc_text_subsegment;
3856 list_ptr = &ppc_text_csects;
3857 is_code = 1;
3858 break;
3859 case XMC_RW:
3860 case XMC_TC0:
3861 case XMC_TC:
3862 case XMC_DS:
3863 case XMC_UA:
3864 case XMC_BS:
3865 case XMC_UC:
3866 if (ppc_toc_csect != NULL
3867 && (symbol_get_tc (ppc_toc_csect)->subseg + 1
3868 == ppc_data_subsegment))
3869 after_toc = 1;
3870 S_SET_SEGMENT (sym, data_section);
3871 symbol_get_tc (sym)->subseg = ppc_data_subsegment;
3872 ++ppc_data_subsegment;
3873 list_ptr = &ppc_data_csects;
3874 break;
3875 default:
3876 abort ();
3877 }
3878
3879 /* We set the obstack chunk size to a small value before
3880 changing subsegments, so that we don't use a lot of memory
3881 space for what may be a small section. */
3882 hold_chunksize = chunksize;
3883 chunksize = 64;
3884
3885 sec = subseg_new (segment_name (S_GET_SEGMENT (sym)),
3886 symbol_get_tc (sym)->subseg);
3887
3888 chunksize = hold_chunksize;
3889
3890 if (after_toc)
3891 ppc_after_toc_frag = frag_now;
3892
3893 record_alignment (sec, align);
3894 if (is_code)
3895 frag_align_code (align, 0);
3896 else
3897 frag_align (align, 0, 0);
3898
3899 symbol_set_frag (sym, frag_now);
3900 S_SET_VALUE (sym, (valueT) frag_now_fix ());
3901
3902 symbol_get_tc (sym)->align = align;
3903 symbol_get_tc (sym)->output = 1;
3904 symbol_get_tc (sym)->within = sym;
3905
3906 for (list = *list_ptr;
3907 symbol_get_tc (list)->next != (symbolS *) NULL;
3908 list = symbol_get_tc (list)->next)
3909 ;
3910 symbol_get_tc (list)->next = sym;
3911
3912 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
3913 symbol_append (sym, symbol_get_tc (list)->within, &symbol_rootP,
3914 &symbol_lastP);
3915 }
3916
3917 ppc_current_csect = sym;
3918 }
3919
3920 static void
3921 ppc_change_debug_section (unsigned int idx, subsegT subseg)
3922 {
3923 segT sec;
3924 flagword oldflags;
3925 const struct xcoff_dwsect_name *dw = &xcoff_dwsect_names[idx];
3926
3927 sec = subseg_new (dw->name, subseg);
3928 oldflags = bfd_get_section_flags (stdoutput, sec);
3929 if (oldflags == SEC_NO_FLAGS)
3930 {
3931 /* Just created section. */
3932 gas_assert (dw_sections[idx].sect == NULL);
3933
3934 bfd_set_section_flags (stdoutput, sec, SEC_DEBUGGING);
3935 bfd_set_section_alignment (stdoutput, sec, 0);
3936 dw_sections[idx].sect = sec;
3937 }
3938
3939 /* Not anymore in a csect. */
3940 ppc_current_csect = NULL;
3941 }
3942
3943 /* The .dwsect pseudo-op. Defines a DWARF section. Syntax is:
3944 .dwsect flag [, opt-label ]
3945 */
3946
3947 static void
3948 ppc_dwsect (int ignore ATTRIBUTE_UNUSED)
3949 {
3950 offsetT flag;
3951 symbolS *opt_label;
3952 const struct xcoff_dwsect_name *dw;
3953 struct dw_subsection *subseg;
3954 struct dw_section *dws;
3955 int i;
3956
3957 /* Find section. */
3958 flag = get_absolute_expression ();
3959 dw = NULL;
3960 for (i = 0; i < XCOFF_DWSECT_NBR_NAMES; i++)
3961 if (xcoff_dwsect_names[i].flag == flag)
3962 {
3963 dw = &xcoff_dwsect_names[i];
3964 break;
3965 }
3966
3967 /* Parse opt-label. */
3968 if (*input_line_pointer == ',')
3969 {
3970 char *label;
3971 char c;
3972
3973 ++input_line_pointer;
3974
3975 c = get_symbol_name (&label);
3976 opt_label = symbol_find_or_make (label);
3977 (void) restore_line_pointer (c);
3978 }
3979 else
3980 opt_label = NULL;
3981
3982 demand_empty_rest_of_line ();
3983
3984 /* Return now in case of unknown subsection. */
3985 if (dw == NULL)
3986 {
3987 as_bad (_("no known dwarf XCOFF section for flag 0x%08x\n"),
3988 (unsigned)flag);
3989 return;
3990 }
3991
3992 /* Find the subsection. */
3993 dws = &dw_sections[i];
3994 subseg = NULL;
3995 if (opt_label != NULL && S_IS_DEFINED (opt_label))
3996 {
3997 /* Sanity check (note that in theory S_GET_SEGMENT mustn't be null). */
3998 if (dws->sect == NULL || S_GET_SEGMENT (opt_label) != dws->sect)
3999 {
4000 as_bad (_("label %s was not defined in this dwarf section"),
4001 S_GET_NAME (opt_label));
4002 subseg = dws->anon_subseg;
4003 opt_label = NULL;
4004 }
4005 else
4006 subseg = symbol_get_tc (opt_label)->u.dw;
4007 }
4008
4009 if (subseg != NULL)
4010 {
4011 /* Switch to the subsection. */
4012 ppc_change_debug_section (i, subseg->subseg);
4013 }
4014 else
4015 {
4016 /* Create a new dw subsection. */
4017 subseg = (struct dw_subsection *)
4018 xmalloc (sizeof (struct dw_subsection));
4019
4020 if (opt_label == NULL)
4021 {
4022 /* The anonymous one. */
4023 subseg->subseg = 0;
4024 subseg->link = NULL;
4025 dws->anon_subseg = subseg;
4026 }
4027 else
4028 {
4029 /* A named one. */
4030 if (dws->list_subseg != NULL)
4031 subseg->subseg = dws->list_subseg->subseg + 1;
4032 else
4033 subseg->subseg = 1;
4034
4035 subseg->link = dws->list_subseg;
4036 dws->list_subseg = subseg;
4037 symbol_get_tc (opt_label)->u.dw = subseg;
4038 }
4039
4040 ppc_change_debug_section (i, subseg->subseg);
4041
4042 if (dw->def_size)
4043 {
4044 /* Add the length field. */
4045 expressionS *exp = &subseg->end_exp;
4046 int sz;
4047
4048 if (opt_label != NULL)
4049 symbol_set_value_now (opt_label);
4050
4051 /* Add the length field. Note that according to the AIX assembler
4052 manual, the size of the length field is 4 for powerpc32 but
4053 12 for powerpc64. */
4054 if (ppc_obj64)
4055 {
4056 /* Write the 64bit marker. */
4057 md_number_to_chars (frag_more (4), -1, 4);
4058 }
4059
4060 exp->X_op = O_subtract;
4061 exp->X_op_symbol = symbol_temp_new_now ();
4062 exp->X_add_symbol = symbol_temp_make ();
4063
4064 sz = ppc_obj64 ? 8 : 4;
4065 exp->X_add_number = -sz;
4066 emit_expr (exp, sz);
4067 }
4068 }
4069 }
4070
4071 /* This function handles the .text and .data pseudo-ops. These
4072 pseudo-ops aren't really used by XCOFF; we implement them for the
4073 convenience of people who aren't used to XCOFF. */
4074
4075 static void
4076 ppc_section (int type)
4077 {
4078 const char *name;
4079 symbolS *sym;
4080
4081 if (type == 't')
4082 name = ".text[PR]";
4083 else if (type == 'd')
4084 name = ".data[RW]";
4085 else
4086 abort ();
4087
4088 sym = symbol_find_or_make (name);
4089
4090 ppc_change_csect (sym, 2);
4091
4092 demand_empty_rest_of_line ();
4093 }
4094
4095 /* This function handles the .section pseudo-op. This is mostly to
4096 give an error, since XCOFF only supports .text, .data and .bss, but
4097 we do permit the user to name the text or data section. */
4098
4099 static void
4100 ppc_named_section (int ignore ATTRIBUTE_UNUSED)
4101 {
4102 char *user_name;
4103 const char *real_name;
4104 char c;
4105 symbolS *sym;
4106
4107 c = get_symbol_name (&user_name);
4108
4109 if (strcmp (user_name, ".text") == 0)
4110 real_name = ".text[PR]";
4111 else if (strcmp (user_name, ".data") == 0)
4112 real_name = ".data[RW]";
4113 else
4114 {
4115 as_bad (_("the XCOFF file format does not support arbitrary sections"));
4116 (void) restore_line_pointer (c);
4117 ignore_rest_of_line ();
4118 return;
4119 }
4120
4121 (void) restore_line_pointer (c);
4122
4123 sym = symbol_find_or_make (real_name);
4124
4125 ppc_change_csect (sym, 2);
4126
4127 demand_empty_rest_of_line ();
4128 }
4129
4130 /* The .extern pseudo-op. We create an undefined symbol. */
4131
4132 static void
4133 ppc_extern (int ignore ATTRIBUTE_UNUSED)
4134 {
4135 char *name;
4136 char endc;
4137
4138 endc = get_symbol_name (&name);
4139
4140 (void) symbol_find_or_make (name);
4141
4142 (void) restore_line_pointer (endc);
4143
4144 demand_empty_rest_of_line ();
4145 }
4146
4147 /* The .lglobl pseudo-op. Keep the symbol in the symbol table. */
4148
4149 static void
4150 ppc_lglobl (int ignore ATTRIBUTE_UNUSED)
4151 {
4152 char *name;
4153 char endc;
4154 symbolS *sym;
4155
4156 endc = get_symbol_name (&name);
4157
4158 sym = symbol_find_or_make (name);
4159
4160 (void) restore_line_pointer (endc);
4161
4162 symbol_get_tc (sym)->output = 1;
4163
4164 demand_empty_rest_of_line ();
4165 }
4166
4167 /* The .ref pseudo-op. It takes a list of symbol names and inserts R_REF
4168 relocations at the beginning of the current csect.
4169
4170 (In principle, there's no reason why the relocations _have_ to be at
4171 the beginning. Anywhere in the csect would do. However, inserting
4172 at the beginning is what the native assmebler does, and it helps to
4173 deal with cases where the .ref statements follow the section contents.)
4174
4175 ??? .refs don't work for empty .csects. However, the native assembler
4176 doesn't report an error in this case, and neither yet do we. */
4177
4178 static void
4179 ppc_ref (int ignore ATTRIBUTE_UNUSED)
4180 {
4181 char *name;
4182 char c;
4183
4184 if (ppc_current_csect == NULL)
4185 {
4186 as_bad (_(".ref outside .csect"));
4187 ignore_rest_of_line ();
4188 return;
4189 }
4190
4191 do
4192 {
4193 c = get_symbol_name (&name);
4194
4195 fix_at_start (symbol_get_frag (ppc_current_csect), 0,
4196 symbol_find_or_make (name), 0, FALSE, BFD_RELOC_NONE);
4197
4198 *input_line_pointer = c;
4199 SKIP_WHITESPACE_AFTER_NAME ();
4200 c = *input_line_pointer;
4201 if (c == ',')
4202 {
4203 input_line_pointer++;
4204 SKIP_WHITESPACE ();
4205 if (is_end_of_line[(unsigned char) *input_line_pointer])
4206 {
4207 as_bad (_("missing symbol name"));
4208 ignore_rest_of_line ();
4209 return;
4210 }
4211 }
4212 }
4213 while (c == ',');
4214
4215 demand_empty_rest_of_line ();
4216 }
4217
4218 /* The .rename pseudo-op. The RS/6000 assembler can rename symbols,
4219 although I don't know why it bothers. */
4220
4221 static void
4222 ppc_rename (int ignore ATTRIBUTE_UNUSED)
4223 {
4224 char *name;
4225 char endc;
4226 symbolS *sym;
4227 int len;
4228
4229 endc = get_symbol_name (&name);
4230
4231 sym = symbol_find_or_make (name);
4232
4233 (void) restore_line_pointer (endc);
4234
4235 if (*input_line_pointer != ',')
4236 {
4237 as_bad (_("missing rename string"));
4238 ignore_rest_of_line ();
4239 return;
4240 }
4241 ++input_line_pointer;
4242
4243 symbol_get_tc (sym)->real_name = demand_copy_C_string (&len);
4244
4245 demand_empty_rest_of_line ();
4246 }
4247
4248 /* The .stabx pseudo-op. This is similar to a normal .stabs
4249 pseudo-op, but slightly different. A sample is
4250 .stabx "main:F-1",.main,142,0
4251 The first argument is the symbol name to create. The second is the
4252 value, and the third is the storage class. The fourth seems to be
4253 always zero, and I am assuming it is the type. */
4254
4255 static void
4256 ppc_stabx (int ignore ATTRIBUTE_UNUSED)
4257 {
4258 char *name;
4259 int len;
4260 symbolS *sym;
4261 expressionS exp;
4262
4263 name = demand_copy_C_string (&len);
4264
4265 if (*input_line_pointer != ',')
4266 {
4267 as_bad (_("missing value"));
4268 return;
4269 }
4270 ++input_line_pointer;
4271
4272 ppc_stab_symbol = TRUE;
4273 sym = symbol_make (name);
4274 ppc_stab_symbol = FALSE;
4275
4276 symbol_get_tc (sym)->real_name = name;
4277
4278 (void) expression (&exp);
4279
4280 switch (exp.X_op)
4281 {
4282 case O_illegal:
4283 case O_absent:
4284 case O_big:
4285 as_bad (_("illegal .stabx expression; zero assumed"));
4286 exp.X_add_number = 0;
4287 /* Fall through. */
4288 case O_constant:
4289 S_SET_VALUE (sym, (valueT) exp.X_add_number);
4290 symbol_set_frag (sym, &zero_address_frag);
4291 break;
4292
4293 case O_symbol:
4294 if (S_GET_SEGMENT (exp.X_add_symbol) == undefined_section)
4295 symbol_set_value_expression (sym, &exp);
4296 else
4297 {
4298 S_SET_VALUE (sym,
4299 exp.X_add_number + S_GET_VALUE (exp.X_add_symbol));
4300 symbol_set_frag (sym, symbol_get_frag (exp.X_add_symbol));
4301 }
4302 break;
4303
4304 default:
4305 /* The value is some complex expression. This will probably
4306 fail at some later point, but this is probably the right
4307 thing to do here. */
4308 symbol_set_value_expression (sym, &exp);
4309 break;
4310 }
4311
4312 S_SET_SEGMENT (sym, ppc_coff_debug_section);
4313 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
4314
4315 if (*input_line_pointer != ',')
4316 {
4317 as_bad (_("missing class"));
4318 return;
4319 }
4320 ++input_line_pointer;
4321
4322 S_SET_STORAGE_CLASS (sym, get_absolute_expression ());
4323
4324 if (*input_line_pointer != ',')
4325 {
4326 as_bad (_("missing type"));
4327 return;
4328 }
4329 ++input_line_pointer;
4330
4331 S_SET_DATA_TYPE (sym, get_absolute_expression ());
4332
4333 symbol_get_tc (sym)->output = 1;
4334
4335 if (S_GET_STORAGE_CLASS (sym) == C_STSYM)
4336 {
4337 /* In this case :
4338
4339 .bs name
4340 .stabx "z",arrays_,133,0
4341 .es
4342
4343 .comm arrays_,13768,3
4344
4345 resolve_symbol_value will copy the exp's "within" into sym's when the
4346 offset is 0. Since this seems to be corner case problem,
4347 only do the correction for storage class C_STSYM. A better solution
4348 would be to have the tc field updated in ppc_symbol_new_hook. */
4349
4350 if (exp.X_op == O_symbol)
4351 {
4352 if (ppc_current_block == NULL)
4353 as_bad (_(".stabx of storage class stsym must be within .bs/.es"));
4354
4355 symbol_get_tc (sym)->within = ppc_current_block;
4356 symbol_get_tc (exp.X_add_symbol)->within = ppc_current_block;
4357 }
4358 }
4359
4360 if (exp.X_op != O_symbol
4361 || ! S_IS_EXTERNAL (exp.X_add_symbol)
4362 || S_GET_SEGMENT (exp.X_add_symbol) != bss_section)
4363 ppc_frob_label (sym);
4364 else
4365 {
4366 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
4367 symbol_append (sym, exp.X_add_symbol, &symbol_rootP, &symbol_lastP);
4368 if (symbol_get_tc (ppc_current_csect)->within == exp.X_add_symbol)
4369 symbol_get_tc (ppc_current_csect)->within = sym;
4370 }
4371
4372 demand_empty_rest_of_line ();
4373 }
4374
4375 /* The .function pseudo-op. This takes several arguments. The first
4376 argument seems to be the external name of the symbol. The second
4377 argument seems to be the label for the start of the function. gcc
4378 uses the same name for both. I have no idea what the third and
4379 fourth arguments are meant to be. The optional fifth argument is
4380 an expression for the size of the function. In COFF this symbol
4381 gets an aux entry like that used for a csect. */
4382
4383 static void
4384 ppc_function (int ignore ATTRIBUTE_UNUSED)
4385 {
4386 char *name;
4387 char endc;
4388 char *s;
4389 symbolS *ext_sym;
4390 symbolS *lab_sym;
4391
4392 endc = get_symbol_name (&name);
4393
4394 /* Ignore any [PR] suffix. */
4395 name = ppc_canonicalize_symbol_name (name);
4396 s = strchr (name, '[');
4397 if (s != (char *) NULL
4398 && strcmp (s + 1, "PR]") == 0)
4399 *s = '\0';
4400
4401 ext_sym = symbol_find_or_make (name);
4402
4403 (void) restore_line_pointer (endc);
4404
4405 if (*input_line_pointer != ',')
4406 {
4407 as_bad (_("missing symbol name"));
4408 ignore_rest_of_line ();
4409 return;
4410 }
4411 ++input_line_pointer;
4412
4413 endc = get_symbol_name (&name);
4414
4415 lab_sym = symbol_find_or_make (name);
4416
4417 (void) restore_line_pointer (endc);
4418
4419 if (ext_sym != lab_sym)
4420 {
4421 expressionS exp;
4422
4423 exp.X_op = O_symbol;
4424 exp.X_add_symbol = lab_sym;
4425 exp.X_op_symbol = NULL;
4426 exp.X_add_number = 0;
4427 exp.X_unsigned = 0;
4428 symbol_set_value_expression (ext_sym, &exp);
4429 }
4430
4431 if (symbol_get_tc (ext_sym)->symbol_class == -1)
4432 symbol_get_tc (ext_sym)->symbol_class = XMC_PR;
4433 symbol_get_tc (ext_sym)->output = 1;
4434
4435 if (*input_line_pointer == ',')
4436 {
4437 expressionS exp;
4438
4439 /* Ignore the third argument. */
4440 ++input_line_pointer;
4441 expression (& exp);
4442 if (*input_line_pointer == ',')
4443 {
4444 /* Ignore the fourth argument. */
4445 ++input_line_pointer;
4446 expression (& exp);
4447 if (*input_line_pointer == ',')
4448 {
4449 /* The fifth argument is the function size. */
4450 ++input_line_pointer;
4451 symbol_get_tc (ext_sym)->u.size = symbol_new
4452 ("L0\001", absolute_section,(valueT) 0, &zero_address_frag);
4453 pseudo_set (symbol_get_tc (ext_sym)->u.size);
4454 }
4455 }
4456 }
4457
4458 S_SET_DATA_TYPE (ext_sym, DT_FCN << N_BTSHFT);
4459 SF_SET_FUNCTION (ext_sym);
4460 SF_SET_PROCESS (ext_sym);
4461 coff_add_linesym (ext_sym);
4462
4463 demand_empty_rest_of_line ();
4464 }
4465
4466 /* The .bf pseudo-op. This is just like a COFF C_FCN symbol named
4467 ".bf". If the pseudo op .bi was seen before .bf, patch the .bi sym
4468 with the correct line number */
4469
4470 static symbolS *saved_bi_sym = 0;
4471
4472 static void
4473 ppc_bf (int ignore ATTRIBUTE_UNUSED)
4474 {
4475 symbolS *sym;
4476
4477 sym = symbol_make (".bf");
4478 S_SET_SEGMENT (sym, text_section);
4479 symbol_set_frag (sym, frag_now);
4480 S_SET_VALUE (sym, frag_now_fix ());
4481 S_SET_STORAGE_CLASS (sym, C_FCN);
4482
4483 coff_line_base = get_absolute_expression ();
4484
4485 S_SET_NUMBER_AUXILIARY (sym, 1);
4486 SA_SET_SYM_LNNO (sym, coff_line_base);
4487
4488 /* Line number for bi. */
4489 if (saved_bi_sym)
4490 {
4491 S_SET_VALUE (saved_bi_sym, coff_n_line_nos);
4492 saved_bi_sym = 0;
4493 }
4494
4495
4496 symbol_get_tc (sym)->output = 1;
4497
4498 ppc_frob_label (sym);
4499
4500 demand_empty_rest_of_line ();
4501 }
4502
4503 /* The .ef pseudo-op. This is just like a COFF C_FCN symbol named
4504 ".ef", except that the line number is absolute, not relative to the
4505 most recent ".bf" symbol. */
4506
4507 static void
4508 ppc_ef (int ignore ATTRIBUTE_UNUSED)
4509 {
4510 symbolS *sym;
4511
4512 sym = symbol_make (".ef");
4513 S_SET_SEGMENT (sym, text_section);
4514 symbol_set_frag (sym, frag_now);
4515 S_SET_VALUE (sym, frag_now_fix ());
4516 S_SET_STORAGE_CLASS (sym, C_FCN);
4517 S_SET_NUMBER_AUXILIARY (sym, 1);
4518 SA_SET_SYM_LNNO (sym, get_absolute_expression ());
4519 symbol_get_tc (sym)->output = 1;
4520
4521 ppc_frob_label (sym);
4522
4523 demand_empty_rest_of_line ();
4524 }
4525
4526 /* The .bi and .ei pseudo-ops. These take a string argument and
4527 generates a C_BINCL or C_EINCL symbol, which goes at the start of
4528 the symbol list. The value of .bi will be know when the next .bf
4529 is encountered. */
4530
4531 static void
4532 ppc_biei (int ei)
4533 {
4534 static symbolS *last_biei;
4535
4536 char *name;
4537 int len;
4538 symbolS *sym;
4539 symbolS *look;
4540
4541 name = demand_copy_C_string (&len);
4542
4543 /* The value of these symbols is actually file offset. Here we set
4544 the value to the index into the line number entries. In
4545 ppc_frob_symbols we set the fix_line field, which will cause BFD
4546 to do the right thing. */
4547
4548 sym = symbol_make (name);
4549 /* obj-coff.c currently only handles line numbers correctly in the
4550 .text section. */
4551 S_SET_SEGMENT (sym, text_section);
4552 S_SET_VALUE (sym, coff_n_line_nos);
4553 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
4554
4555 S_SET_STORAGE_CLASS (sym, ei ? C_EINCL : C_BINCL);
4556 symbol_get_tc (sym)->output = 1;
4557
4558 /* Save bi. */
4559 if (ei)
4560 saved_bi_sym = 0;
4561 else
4562 saved_bi_sym = sym;
4563
4564 for (look = last_biei ? last_biei : symbol_rootP;
4565 (look != (symbolS *) NULL
4566 && (S_GET_STORAGE_CLASS (look) == C_FILE
4567 || S_GET_STORAGE_CLASS (look) == C_BINCL
4568 || S_GET_STORAGE_CLASS (look) == C_EINCL));
4569 look = symbol_next (look))
4570 ;
4571 if (look != (symbolS *) NULL)
4572 {
4573 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
4574 symbol_insert (sym, look, &symbol_rootP, &symbol_lastP);
4575 last_biei = sym;
4576 }
4577
4578 demand_empty_rest_of_line ();
4579 }
4580
4581 /* The .bs pseudo-op. This generates a C_BSTAT symbol named ".bs".
4582 There is one argument, which is a csect symbol. The value of the
4583 .bs symbol is the index of this csect symbol. */
4584
4585 static void
4586 ppc_bs (int ignore ATTRIBUTE_UNUSED)
4587 {
4588 char *name;
4589 char endc;
4590 symbolS *csect;
4591 symbolS *sym;
4592
4593 if (ppc_current_block != NULL)
4594 as_bad (_("nested .bs blocks"));
4595
4596 endc = get_symbol_name (&name);
4597
4598 csect = symbol_find_or_make (name);
4599
4600 (void) restore_line_pointer (endc);
4601
4602 sym = symbol_make (".bs");
4603 S_SET_SEGMENT (sym, now_seg);
4604 S_SET_STORAGE_CLASS (sym, C_BSTAT);
4605 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
4606 symbol_get_tc (sym)->output = 1;
4607
4608 symbol_get_tc (sym)->within = csect;
4609
4610 ppc_frob_label (sym);
4611
4612 ppc_current_block = sym;
4613
4614 demand_empty_rest_of_line ();
4615 }
4616
4617 /* The .es pseudo-op. Generate a C_ESTART symbol named .es. */
4618
4619 static void
4620 ppc_es (int ignore ATTRIBUTE_UNUSED)
4621 {
4622 symbolS *sym;
4623
4624 if (ppc_current_block == NULL)
4625 as_bad (_(".es without preceding .bs"));
4626
4627 sym = symbol_make (".es");
4628 S_SET_SEGMENT (sym, now_seg);
4629 S_SET_STORAGE_CLASS (sym, C_ESTAT);
4630 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
4631 symbol_get_tc (sym)->output = 1;
4632
4633 ppc_frob_label (sym);
4634
4635 ppc_current_block = NULL;
4636
4637 demand_empty_rest_of_line ();
4638 }
4639
4640 /* The .bb pseudo-op. Generate a C_BLOCK symbol named .bb, with a
4641 line number. */
4642
4643 static void
4644 ppc_bb (int ignore ATTRIBUTE_UNUSED)
4645 {
4646 symbolS *sym;
4647
4648 sym = symbol_make (".bb");
4649 S_SET_SEGMENT (sym, text_section);
4650 symbol_set_frag (sym, frag_now);
4651 S_SET_VALUE (sym, frag_now_fix ());
4652 S_SET_STORAGE_CLASS (sym, C_BLOCK);
4653
4654 S_SET_NUMBER_AUXILIARY (sym, 1);
4655 SA_SET_SYM_LNNO (sym, get_absolute_expression ());
4656
4657 symbol_get_tc (sym)->output = 1;
4658
4659 SF_SET_PROCESS (sym);
4660
4661 ppc_frob_label (sym);
4662
4663 demand_empty_rest_of_line ();
4664 }
4665
4666 /* The .eb pseudo-op. Generate a C_BLOCK symbol named .eb, with a
4667 line number. */
4668
4669 static void
4670 ppc_eb (int ignore ATTRIBUTE_UNUSED)
4671 {
4672 symbolS *sym;
4673
4674 sym = symbol_make (".eb");
4675 S_SET_SEGMENT (sym, text_section);
4676 symbol_set_frag (sym, frag_now);
4677 S_SET_VALUE (sym, frag_now_fix ());
4678 S_SET_STORAGE_CLASS (sym, C_BLOCK);
4679 S_SET_NUMBER_AUXILIARY (sym, 1);
4680 SA_SET_SYM_LNNO (sym, get_absolute_expression ());
4681 symbol_get_tc (sym)->output = 1;
4682
4683 SF_SET_PROCESS (sym);
4684
4685 ppc_frob_label (sym);
4686
4687 demand_empty_rest_of_line ();
4688 }
4689
4690 /* The .bc pseudo-op. This just creates a C_BCOMM symbol with a
4691 specified name. */
4692
4693 static void
4694 ppc_bc (int ignore ATTRIBUTE_UNUSED)
4695 {
4696 char *name;
4697 int len;
4698 symbolS *sym;
4699
4700 name = demand_copy_C_string (&len);
4701 sym = symbol_make (name);
4702 S_SET_SEGMENT (sym, ppc_coff_debug_section);
4703 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
4704 S_SET_STORAGE_CLASS (sym, C_BCOMM);
4705 S_SET_VALUE (sym, 0);
4706 symbol_get_tc (sym)->output = 1;
4707
4708 ppc_frob_label (sym);
4709
4710 demand_empty_rest_of_line ();
4711 }
4712
4713 /* The .ec pseudo-op. This just creates a C_ECOMM symbol. */
4714
4715 static void
4716 ppc_ec (int ignore ATTRIBUTE_UNUSED)
4717 {
4718 symbolS *sym;
4719
4720 sym = symbol_make (".ec");
4721 S_SET_SEGMENT (sym, ppc_coff_debug_section);
4722 symbol_get_bfdsym (sym)->flags |= BSF_DEBUGGING;
4723 S_SET_STORAGE_CLASS (sym, C_ECOMM);
4724 S_SET_VALUE (sym, 0);
4725 symbol_get_tc (sym)->output = 1;
4726
4727 ppc_frob_label (sym);
4728
4729 demand_empty_rest_of_line ();
4730 }
4731
4732 /* The .toc pseudo-op. Switch to the .toc subsegment. */
4733
4734 static void
4735 ppc_toc (int ignore ATTRIBUTE_UNUSED)
4736 {
4737 if (ppc_toc_csect != (symbolS *) NULL)
4738 subseg_set (data_section, symbol_get_tc (ppc_toc_csect)->subseg);
4739 else
4740 {
4741 subsegT subseg;
4742 symbolS *sym;
4743 symbolS *list;
4744
4745 subseg = ppc_data_subsegment;
4746 ++ppc_data_subsegment;
4747
4748 subseg_new (segment_name (data_section), subseg);
4749 ppc_toc_frag = frag_now;
4750
4751 sym = symbol_find_or_make ("TOC[TC0]");
4752 symbol_set_frag (sym, frag_now);
4753 S_SET_SEGMENT (sym, data_section);
4754 S_SET_VALUE (sym, (valueT) frag_now_fix ());
4755 symbol_get_tc (sym)->subseg = subseg;
4756 symbol_get_tc (sym)->output = 1;
4757 symbol_get_tc (sym)->within = sym;
4758
4759 ppc_toc_csect = sym;
4760
4761 for (list = ppc_data_csects;
4762 symbol_get_tc (list)->next != (symbolS *) NULL;
4763 list = symbol_get_tc (list)->next)
4764 ;
4765 symbol_get_tc (list)->next = sym;
4766
4767 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
4768 symbol_append (sym, symbol_get_tc (list)->within, &symbol_rootP,
4769 &symbol_lastP);
4770 }
4771
4772 ppc_current_csect = ppc_toc_csect;
4773
4774 demand_empty_rest_of_line ();
4775 }
4776
4777 /* The AIX assembler automatically aligns the operands of a .long or
4778 .short pseudo-op, and we want to be compatible. */
4779
4780 static void
4781 ppc_xcoff_cons (int log_size)
4782 {
4783 frag_align (log_size, 0, 0);
4784 record_alignment (now_seg, log_size);
4785 cons (1 << log_size);
4786 }
4787
4788 static void
4789 ppc_vbyte (int dummy ATTRIBUTE_UNUSED)
4790 {
4791 expressionS exp;
4792 int byte_count;
4793
4794 (void) expression (&exp);
4795
4796 if (exp.X_op != O_constant)
4797 {
4798 as_bad (_("non-constant byte count"));
4799 return;
4800 }
4801
4802 byte_count = exp.X_add_number;
4803
4804 if (*input_line_pointer != ',')
4805 {
4806 as_bad (_("missing value"));
4807 return;
4808 }
4809
4810 ++input_line_pointer;
4811 cons (byte_count);
4812 }
4813
4814 void
4815 ppc_xcoff_end (void)
4816 {
4817 int i;
4818
4819 for (i = 0; i < XCOFF_DWSECT_NBR_NAMES; i++)
4820 {
4821 struct dw_section *dws = &dw_sections[i];
4822 struct dw_subsection *dwss;
4823
4824 if (dws->anon_subseg)
4825 {
4826 dwss = dws->anon_subseg;
4827 dwss->link = dws->list_subseg;
4828 }
4829 else
4830 dwss = dws->list_subseg;
4831
4832 for (; dwss != NULL; dwss = dwss->link)
4833 if (dwss->end_exp.X_add_symbol != NULL)
4834 {
4835 subseg_set (dws->sect, dwss->subseg);
4836 symbol_set_value_now (dwss->end_exp.X_add_symbol);
4837 }
4838 }
4839 }
4840
4841 #endif /* OBJ_XCOFF */
4842 #if defined (OBJ_XCOFF) || defined (OBJ_ELF)
4843 \f
4844 /* The .tc pseudo-op. This is used when generating either XCOFF or
4845 ELF. This takes two or more arguments.
4846
4847 When generating XCOFF output, the first argument is the name to
4848 give to this location in the toc; this will be a symbol with class
4849 TC. The rest of the arguments are N-byte values to actually put at
4850 this location in the TOC; often there is just one more argument, a
4851 relocatable symbol reference. The size of the value to store
4852 depends on target word size. A 32-bit target uses 4-byte values, a
4853 64-bit target uses 8-byte values.
4854
4855 When not generating XCOFF output, the arguments are the same, but
4856 the first argument is simply ignored. */
4857
4858 static void
4859 ppc_tc (int ignore ATTRIBUTE_UNUSED)
4860 {
4861 #ifdef OBJ_XCOFF
4862
4863 /* Define the TOC symbol name. */
4864 {
4865 char *name;
4866 char endc;
4867 symbolS *sym;
4868
4869 if (ppc_toc_csect == (symbolS *) NULL
4870 || ppc_toc_csect != ppc_current_csect)
4871 {
4872 as_bad (_(".tc not in .toc section"));
4873 ignore_rest_of_line ();
4874 return;
4875 }
4876
4877 endc = get_symbol_name (&name);
4878
4879 sym = symbol_find_or_make (name);
4880
4881 (void) restore_line_pointer (endc);
4882
4883 if (S_IS_DEFINED (sym))
4884 {
4885 symbolS *label;
4886
4887 label = symbol_get_tc (ppc_current_csect)->within;
4888 if (symbol_get_tc (label)->symbol_class != XMC_TC0)
4889 {
4890 as_bad (_(".tc with no label"));
4891 ignore_rest_of_line ();
4892 return;
4893 }
4894
4895 S_SET_SEGMENT (label, S_GET_SEGMENT (sym));
4896 symbol_set_frag (label, symbol_get_frag (sym));
4897 S_SET_VALUE (label, S_GET_VALUE (sym));
4898
4899 while (! is_end_of_line[(unsigned char) *input_line_pointer])
4900 ++input_line_pointer;
4901
4902 return;
4903 }
4904
4905 S_SET_SEGMENT (sym, now_seg);
4906 symbol_set_frag (sym, frag_now);
4907 S_SET_VALUE (sym, (valueT) frag_now_fix ());
4908 symbol_get_tc (sym)->symbol_class = XMC_TC;
4909 symbol_get_tc (sym)->output = 1;
4910
4911 ppc_frob_label (sym);
4912 }
4913
4914 #endif /* OBJ_XCOFF */
4915 #ifdef OBJ_ELF
4916 int align;
4917
4918 /* Skip the TOC symbol name. */
4919 while (is_part_of_name (*input_line_pointer)
4920 || *input_line_pointer == ' '
4921 || *input_line_pointer == '['
4922 || *input_line_pointer == ']'
4923 || *input_line_pointer == '{'
4924 || *input_line_pointer == '}')
4925 ++input_line_pointer;
4926
4927 /* Align to a four/eight byte boundary. */
4928 align = ppc_obj64 ? 3 : 2;
4929 frag_align (align, 0, 0);
4930 record_alignment (now_seg, align);
4931 #endif /* OBJ_ELF */
4932
4933 if (*input_line_pointer != ',')
4934 demand_empty_rest_of_line ();
4935 else
4936 {
4937 ++input_line_pointer;
4938 cons (ppc_obj64 ? 8 : 4);
4939 }
4940 }
4941
4942 /* Pseudo-op .machine. */
4943
4944 static void
4945 ppc_machine (int ignore ATTRIBUTE_UNUSED)
4946 {
4947 char c;
4948 char *cpu_string;
4949 #define MAX_HISTORY 100
4950 static ppc_cpu_t *cpu_history;
4951 static int curr_hist;
4952
4953 SKIP_WHITESPACE ();
4954
4955 c = get_symbol_name (&cpu_string);
4956 cpu_string = xstrdup (cpu_string);
4957 (void) restore_line_pointer (c);
4958
4959 if (cpu_string != NULL)
4960 {
4961 ppc_cpu_t old_cpu = ppc_cpu;
4962 ppc_cpu_t new_cpu;
4963 char *p;
4964
4965 for (p = cpu_string; *p != 0; p++)
4966 *p = TOLOWER (*p);
4967
4968 if (strcmp (cpu_string, "push") == 0)
4969 {
4970 if (cpu_history == NULL)
4971 cpu_history = xmalloc (MAX_HISTORY * sizeof (*cpu_history));
4972
4973 if (curr_hist >= MAX_HISTORY)
4974 as_bad (_(".machine stack overflow"));
4975 else
4976 cpu_history[curr_hist++] = ppc_cpu;
4977 }
4978 else if (strcmp (cpu_string, "pop") == 0)
4979 {
4980 if (curr_hist <= 0)
4981 as_bad (_(".machine stack underflow"));
4982 else
4983 ppc_cpu = cpu_history[--curr_hist];
4984 }
4985 else if ((new_cpu = ppc_parse_cpu (ppc_cpu, &sticky, cpu_string)) != 0)
4986 ppc_cpu = new_cpu;
4987 else
4988 as_bad (_("invalid machine `%s'"), cpu_string);
4989
4990 if (ppc_cpu != old_cpu)
4991 ppc_setup_opcodes ();
4992 }
4993
4994 demand_empty_rest_of_line ();
4995 }
4996 #endif /* defined (OBJ_XCOFF) || defined (OBJ_ELF) */
4997 \f
4998 #ifdef TE_PE
4999
5000 /* Pseudo-ops specific to the Windows NT PowerPC PE (coff) format. */
5001
5002 /* Set the current section. */
5003 static void
5004 ppc_set_current_section (segT new)
5005 {
5006 ppc_previous_section = ppc_current_section;
5007 ppc_current_section = new;
5008 }
5009
5010 /* pseudo-op: .previous
5011 behaviour: toggles the current section with the previous section.
5012 errors: None
5013 warnings: "No previous section" */
5014
5015 static void
5016 ppc_previous (int ignore ATTRIBUTE_UNUSED)
5017 {
5018 if (ppc_previous_section == NULL)
5019 {
5020 as_warn (_("no previous section to return to, ignored."));
5021 return;
5022 }
5023
5024 subseg_set (ppc_previous_section, 0);
5025
5026 ppc_set_current_section (ppc_previous_section);
5027 }
5028
5029 /* pseudo-op: .pdata
5030 behaviour: predefined read only data section
5031 double word aligned
5032 errors: None
5033 warnings: None
5034 initial: .section .pdata "adr3"
5035 a - don't know -- maybe a misprint
5036 d - initialized data
5037 r - readable
5038 3 - double word aligned (that would be 4 byte boundary)
5039
5040 commentary:
5041 Tag index tables (also known as the function table) for exception
5042 handling, debugging, etc. */
5043
5044 static void
5045 ppc_pdata (int ignore ATTRIBUTE_UNUSED)
5046 {
5047 if (pdata_section == 0)
5048 {
5049 pdata_section = subseg_new (".pdata", 0);
5050
5051 bfd_set_section_flags (stdoutput, pdata_section,
5052 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
5053 | SEC_READONLY | SEC_DATA ));
5054
5055 bfd_set_section_alignment (stdoutput, pdata_section, 2);
5056 }
5057 else
5058 {
5059 pdata_section = subseg_new (".pdata", 0);
5060 }
5061 ppc_set_current_section (pdata_section);
5062 }
5063
5064 /* pseudo-op: .ydata
5065 behaviour: predefined read only data section
5066 double word aligned
5067 errors: None
5068 warnings: None
5069 initial: .section .ydata "drw3"
5070 a - don't know -- maybe a misprint
5071 d - initialized data
5072 r - readable
5073 3 - double word aligned (that would be 4 byte boundary)
5074 commentary:
5075 Tag tables (also known as the scope table) for exception handling,
5076 debugging, etc. */
5077
5078 static void
5079 ppc_ydata (int ignore ATTRIBUTE_UNUSED)
5080 {
5081 if (ydata_section == 0)
5082 {
5083 ydata_section = subseg_new (".ydata", 0);
5084 bfd_set_section_flags (stdoutput, ydata_section,
5085 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
5086 | SEC_READONLY | SEC_DATA ));
5087
5088 bfd_set_section_alignment (stdoutput, ydata_section, 3);
5089 }
5090 else
5091 {
5092 ydata_section = subseg_new (".ydata", 0);
5093 }
5094 ppc_set_current_section (ydata_section);
5095 }
5096
5097 /* pseudo-op: .reldata
5098 behaviour: predefined read write data section
5099 double word aligned (4-byte)
5100 FIXME: relocation is applied to it
5101 FIXME: what's the difference between this and .data?
5102 errors: None
5103 warnings: None
5104 initial: .section .reldata "drw3"
5105 d - initialized data
5106 r - readable
5107 w - writeable
5108 3 - double word aligned (that would be 8 byte boundary)
5109
5110 commentary:
5111 Like .data, but intended to hold data subject to relocation, such as
5112 function descriptors, etc. */
5113
5114 static void
5115 ppc_reldata (int ignore ATTRIBUTE_UNUSED)
5116 {
5117 if (reldata_section == 0)
5118 {
5119 reldata_section = subseg_new (".reldata", 0);
5120
5121 bfd_set_section_flags (stdoutput, reldata_section,
5122 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
5123 | SEC_DATA));
5124
5125 bfd_set_section_alignment (stdoutput, reldata_section, 2);
5126 }
5127 else
5128 {
5129 reldata_section = subseg_new (".reldata", 0);
5130 }
5131 ppc_set_current_section (reldata_section);
5132 }
5133
5134 /* pseudo-op: .rdata
5135 behaviour: predefined read only data section
5136 double word aligned
5137 errors: None
5138 warnings: None
5139 initial: .section .rdata "dr3"
5140 d - initialized data
5141 r - readable
5142 3 - double word aligned (that would be 4 byte boundary) */
5143
5144 static void
5145 ppc_rdata (int ignore ATTRIBUTE_UNUSED)
5146 {
5147 if (rdata_section == 0)
5148 {
5149 rdata_section = subseg_new (".rdata", 0);
5150 bfd_set_section_flags (stdoutput, rdata_section,
5151 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
5152 | SEC_READONLY | SEC_DATA ));
5153
5154 bfd_set_section_alignment (stdoutput, rdata_section, 2);
5155 }
5156 else
5157 {
5158 rdata_section = subseg_new (".rdata", 0);
5159 }
5160 ppc_set_current_section (rdata_section);
5161 }
5162
5163 /* pseudo-op: .ualong
5164 behaviour: much like .int, with the exception that no alignment is
5165 performed.
5166 FIXME: test the alignment statement
5167 errors: None
5168 warnings: None */
5169
5170 static void
5171 ppc_ualong (int ignore ATTRIBUTE_UNUSED)
5172 {
5173 /* Try for long. */
5174 cons (4);
5175 }
5176
5177 /* pseudo-op: .znop <symbol name>
5178 behaviour: Issue a nop instruction
5179 Issue a IMAGE_REL_PPC_IFGLUE relocation against it, using
5180 the supplied symbol name.
5181 errors: None
5182 warnings: Missing symbol name */
5183
5184 static void
5185 ppc_znop (int ignore ATTRIBUTE_UNUSED)
5186 {
5187 unsigned long insn;
5188 const struct powerpc_opcode *opcode;
5189 char *f;
5190 symbolS *sym;
5191 char *symbol_name;
5192 char c;
5193 char *name;
5194
5195 /* Strip out the symbol name. */
5196 c = get_symbol_name (&symbol_name);
5197
5198 name = xmalloc (input_line_pointer - symbol_name + 1);
5199 strcpy (name, symbol_name);
5200
5201 sym = symbol_find_or_make (name);
5202
5203 *input_line_pointer = c;
5204
5205 SKIP_WHITESPACE_AFTER_NAME ();
5206
5207 /* Look up the opcode in the hash table. */
5208 opcode = (const struct powerpc_opcode *) hash_find (ppc_hash, "nop");
5209
5210 /* Stick in the nop. */
5211 insn = opcode->opcode;
5212
5213 /* Write out the instruction. */
5214 f = frag_more (4);
5215 md_number_to_chars (f, insn, 4);
5216 fix_new (frag_now,
5217 f - frag_now->fr_literal,
5218 4,
5219 sym,
5220 0,
5221 0,
5222 BFD_RELOC_16_GOT_PCREL);
5223
5224 }
5225
5226 /* pseudo-op:
5227 behaviour:
5228 errors:
5229 warnings: */
5230
5231 static void
5232 ppc_pe_comm (int lcomm)
5233 {
5234 char *name;
5235 char c;
5236 char *p;
5237 offsetT temp;
5238 symbolS *symbolP;
5239 offsetT align;
5240
5241 c = get_symbol_name (&name);
5242
5243 /* just after name is now '\0'. */
5244 p = input_line_pointer;
5245 *p = c;
5246 SKIP_WHITESPACE_AFTER_NAME ();
5247 if (*input_line_pointer != ',')
5248 {
5249 as_bad (_("expected comma after symbol-name: rest of line ignored."));
5250 ignore_rest_of_line ();
5251 return;
5252 }
5253
5254 input_line_pointer++; /* skip ',' */
5255 if ((temp = get_absolute_expression ()) < 0)
5256 {
5257 as_warn (_(".COMMon length (%ld.) <0! Ignored."), (long) temp);
5258 ignore_rest_of_line ();
5259 return;
5260 }
5261
5262 if (! lcomm)
5263 {
5264 /* The third argument to .comm is the alignment. */
5265 if (*input_line_pointer != ',')
5266 align = 3;
5267 else
5268 {
5269 ++input_line_pointer;
5270 align = get_absolute_expression ();
5271 if (align <= 0)
5272 {
5273 as_warn (_("ignoring bad alignment"));
5274 align = 3;
5275 }
5276 }
5277 }
5278
5279 *p = 0;
5280 symbolP = symbol_find_or_make (name);
5281
5282 *p = c;
5283 if (S_IS_DEFINED (symbolP) && ! S_IS_COMMON (symbolP))
5284 {
5285 as_bad (_("ignoring attempt to re-define symbol `%s'."),
5286 S_GET_NAME (symbolP));
5287 ignore_rest_of_line ();
5288 return;
5289 }
5290
5291 if (S_GET_VALUE (symbolP))
5292 {
5293 if (S_GET_VALUE (symbolP) != (valueT) temp)
5294 as_bad (_("length of .comm \"%s\" is already %ld. Not changed to %ld."),
5295 S_GET_NAME (symbolP),
5296 (long) S_GET_VALUE (symbolP),
5297 (long) temp);
5298 }
5299 else
5300 {
5301 S_SET_VALUE (symbolP, (valueT) temp);
5302 S_SET_EXTERNAL (symbolP);
5303 S_SET_SEGMENT (symbolP, bfd_com_section_ptr);
5304 }
5305
5306 demand_empty_rest_of_line ();
5307 }
5308
5309 /*
5310 * implement the .section pseudo op:
5311 * .section name {, "flags"}
5312 * ^ ^
5313 * | +--- optional flags: 'b' for bss
5314 * | 'i' for info
5315 * +-- section name 'l' for lib
5316 * 'n' for noload
5317 * 'o' for over
5318 * 'w' for data
5319 * 'd' (apparently m88k for data)
5320 * 'x' for text
5321 * But if the argument is not a quoted string, treat it as a
5322 * subsegment number.
5323 *
5324 * FIXME: this is a copy of the section processing from obj-coff.c, with
5325 * additions/changes for the moto-pas assembler support. There are three
5326 * categories:
5327 *
5328 * FIXME: I just noticed this. This doesn't work at all really. It it
5329 * setting bits that bfd probably neither understands or uses. The
5330 * correct approach (?) will have to incorporate extra fields attached
5331 * to the section to hold the system specific stuff. (krk)
5332 *
5333 * Section Contents:
5334 * 'a' - unknown - referred to in documentation, but no definition supplied
5335 * 'c' - section has code
5336 * 'd' - section has initialized data
5337 * 'u' - section has uninitialized data
5338 * 'i' - section contains directives (info)
5339 * 'n' - section can be discarded
5340 * 'R' - remove section at link time
5341 *
5342 * Section Protection:
5343 * 'r' - section is readable
5344 * 'w' - section is writeable
5345 * 'x' - section is executable
5346 * 's' - section is sharable
5347 *
5348 * Section Alignment:
5349 * '0' - align to byte boundary
5350 * '1' - align to halfword undary
5351 * '2' - align to word boundary
5352 * '3' - align to doubleword boundary
5353 * '4' - align to quadword boundary
5354 * '5' - align to 32 byte boundary
5355 * '6' - align to 64 byte boundary
5356 *
5357 */
5358
5359 void
5360 ppc_pe_section (int ignore ATTRIBUTE_UNUSED)
5361 {
5362 /* Strip out the section name. */
5363 char *section_name;
5364 char c;
5365 char *name;
5366 unsigned int exp;
5367 flagword flags;
5368 segT sec;
5369 int align;
5370
5371 c = get_symbol_name (&section_name);
5372
5373 name = xmalloc (input_line_pointer - section_name + 1);
5374 strcpy (name, section_name);
5375
5376 *input_line_pointer = c;
5377
5378 SKIP_WHITESPACE_AFTER_NAME ();
5379
5380 exp = 0;
5381 flags = SEC_NO_FLAGS;
5382
5383 if (strcmp (name, ".idata$2") == 0)
5384 {
5385 align = 0;
5386 }
5387 else if (strcmp (name, ".idata$3") == 0)
5388 {
5389 align = 0;
5390 }
5391 else if (strcmp (name, ".idata$4") == 0)
5392 {
5393 align = 2;
5394 }
5395 else if (strcmp (name, ".idata$5") == 0)
5396 {
5397 align = 2;
5398 }
5399 else if (strcmp (name, ".idata$6") == 0)
5400 {
5401 align = 1;
5402 }
5403 else
5404 /* Default alignment to 16 byte boundary. */
5405 align = 4;
5406
5407 if (*input_line_pointer == ',')
5408 {
5409 ++input_line_pointer;
5410 SKIP_WHITESPACE ();
5411 if (*input_line_pointer != '"')
5412 exp = get_absolute_expression ();
5413 else
5414 {
5415 ++input_line_pointer;
5416 while (*input_line_pointer != '"'
5417 && ! is_end_of_line[(unsigned char) *input_line_pointer])
5418 {
5419 switch (*input_line_pointer)
5420 {
5421 /* Section Contents */
5422 case 'a': /* unknown */
5423 as_bad (_("unsupported section attribute -- 'a'"));
5424 break;
5425 case 'c': /* code section */
5426 flags |= SEC_CODE;
5427 break;
5428 case 'd': /* section has initialized data */
5429 flags |= SEC_DATA;
5430 break;
5431 case 'u': /* section has uninitialized data */
5432 /* FIXME: This is IMAGE_SCN_CNT_UNINITIALIZED_DATA
5433 in winnt.h */
5434 flags |= SEC_ROM;
5435 break;
5436 case 'i': /* section contains directives (info) */
5437 /* FIXME: This is IMAGE_SCN_LNK_INFO
5438 in winnt.h */
5439 flags |= SEC_HAS_CONTENTS;
5440 break;
5441 case 'n': /* section can be discarded */
5442 flags &=~ SEC_LOAD;
5443 break;
5444 case 'R': /* Remove section at link time */
5445 flags |= SEC_NEVER_LOAD;
5446 break;
5447 #if IFLICT_BRAIN_DAMAGE
5448 /* Section Protection */
5449 case 'r': /* section is readable */
5450 flags |= IMAGE_SCN_MEM_READ;
5451 break;
5452 case 'w': /* section is writeable */
5453 flags |= IMAGE_SCN_MEM_WRITE;
5454 break;
5455 case 'x': /* section is executable */
5456 flags |= IMAGE_SCN_MEM_EXECUTE;
5457 break;
5458 case 's': /* section is sharable */
5459 flags |= IMAGE_SCN_MEM_SHARED;
5460 break;
5461
5462 /* Section Alignment */
5463 case '0': /* align to byte boundary */
5464 flags |= IMAGE_SCN_ALIGN_1BYTES;
5465 align = 0;
5466 break;
5467 case '1': /* align to halfword boundary */
5468 flags |= IMAGE_SCN_ALIGN_2BYTES;
5469 align = 1;
5470 break;
5471 case '2': /* align to word boundary */
5472 flags |= IMAGE_SCN_ALIGN_4BYTES;
5473 align = 2;
5474 break;
5475 case '3': /* align to doubleword boundary */
5476 flags |= IMAGE_SCN_ALIGN_8BYTES;
5477 align = 3;
5478 break;
5479 case '4': /* align to quadword boundary */
5480 flags |= IMAGE_SCN_ALIGN_16BYTES;
5481 align = 4;
5482 break;
5483 case '5': /* align to 32 byte boundary */
5484 flags |= IMAGE_SCN_ALIGN_32BYTES;
5485 align = 5;
5486 break;
5487 case '6': /* align to 64 byte boundary */
5488 flags |= IMAGE_SCN_ALIGN_64BYTES;
5489 align = 6;
5490 break;
5491 #endif
5492 default:
5493 as_bad (_("unknown section attribute '%c'"),
5494 *input_line_pointer);
5495 break;
5496 }
5497 ++input_line_pointer;
5498 }
5499 if (*input_line_pointer == '"')
5500 ++input_line_pointer;
5501 }
5502 }
5503
5504 sec = subseg_new (name, (subsegT) exp);
5505
5506 ppc_set_current_section (sec);
5507
5508 if (flags != SEC_NO_FLAGS)
5509 {
5510 if (! bfd_set_section_flags (stdoutput, sec, flags))
5511 as_bad (_("error setting flags for \"%s\": %s"),
5512 bfd_section_name (stdoutput, sec),
5513 bfd_errmsg (bfd_get_error ()));
5514 }
5515
5516 bfd_set_section_alignment (stdoutput, sec, align);
5517 }
5518
5519 static void
5520 ppc_pe_function (int ignore ATTRIBUTE_UNUSED)
5521 {
5522 char *name;
5523 char endc;
5524 symbolS *ext_sym;
5525
5526 endc = get_symbol_name (&name);
5527
5528 ext_sym = symbol_find_or_make (name);
5529
5530 (void) restore_line_pointer (endc);
5531
5532 S_SET_DATA_TYPE (ext_sym, DT_FCN << N_BTSHFT);
5533 SF_SET_FUNCTION (ext_sym);
5534 SF_SET_PROCESS (ext_sym);
5535 coff_add_linesym (ext_sym);
5536
5537 demand_empty_rest_of_line ();
5538 }
5539
5540 static void
5541 ppc_pe_tocd (int ignore ATTRIBUTE_UNUSED)
5542 {
5543 if (tocdata_section == 0)
5544 {
5545 tocdata_section = subseg_new (".tocd", 0);
5546 /* FIXME: section flags won't work. */
5547 bfd_set_section_flags (stdoutput, tocdata_section,
5548 (SEC_ALLOC | SEC_LOAD | SEC_RELOC
5549 | SEC_READONLY | SEC_DATA));
5550
5551 bfd_set_section_alignment (stdoutput, tocdata_section, 2);
5552 }
5553 else
5554 {
5555 rdata_section = subseg_new (".tocd", 0);
5556 }
5557
5558 ppc_set_current_section (tocdata_section);
5559
5560 demand_empty_rest_of_line ();
5561 }
5562
5563 /* Don't adjust TOC relocs to use the section symbol. */
5564
5565 int
5566 ppc_pe_fix_adjustable (fixS *fix)
5567 {
5568 return fix->fx_r_type != BFD_RELOC_PPC_TOC16;
5569 }
5570
5571 #endif
5572 \f
5573 #ifdef OBJ_XCOFF
5574
5575 /* XCOFF specific symbol and file handling. */
5576
5577 /* Canonicalize the symbol name. We use the to force the suffix, if
5578 any, to use square brackets, and to be in upper case. */
5579
5580 char *
5581 ppc_canonicalize_symbol_name (char *name)
5582 {
5583 char *s;
5584
5585 if (ppc_stab_symbol)
5586 return name;
5587
5588 for (s = name; *s != '\0' && *s != '{' && *s != '['; s++)
5589 ;
5590 if (*s != '\0')
5591 {
5592 char brac;
5593
5594 if (*s == '[')
5595 brac = ']';
5596 else
5597 {
5598 *s = '[';
5599 brac = '}';
5600 }
5601
5602 for (s++; *s != '\0' && *s != brac; s++)
5603 *s = TOUPPER (*s);
5604
5605 if (*s == '\0' || s[1] != '\0')
5606 as_bad (_("bad symbol suffix"));
5607
5608 *s = ']';
5609 }
5610
5611 return name;
5612 }
5613
5614 /* Set the class of a symbol based on the suffix, if any. This is
5615 called whenever a new symbol is created. */
5616
5617 void
5618 ppc_symbol_new_hook (symbolS *sym)
5619 {
5620 struct ppc_tc_sy *tc;
5621 const char *s;
5622
5623 tc = symbol_get_tc (sym);
5624 tc->next = NULL;
5625 tc->output = 0;
5626 tc->symbol_class = -1;
5627 tc->real_name = NULL;
5628 tc->subseg = 0;
5629 tc->align = 0;
5630 tc->u.size = NULL;
5631 tc->u.dw = NULL;
5632 tc->within = NULL;
5633
5634 if (ppc_stab_symbol)
5635 return;
5636
5637 s = strchr (S_GET_NAME (sym), '[');
5638 if (s == (const char *) NULL)
5639 {
5640 /* There is no suffix. */
5641 return;
5642 }
5643
5644 ++s;
5645
5646 switch (s[0])
5647 {
5648 case 'B':
5649 if (strcmp (s, "BS]") == 0)
5650 tc->symbol_class = XMC_BS;
5651 break;
5652 case 'D':
5653 if (strcmp (s, "DB]") == 0)
5654 tc->symbol_class = XMC_DB;
5655 else if (strcmp (s, "DS]") == 0)
5656 tc->symbol_class = XMC_DS;
5657 break;
5658 case 'G':
5659 if (strcmp (s, "GL]") == 0)
5660 tc->symbol_class = XMC_GL;
5661 break;
5662 case 'P':
5663 if (strcmp (s, "PR]") == 0)
5664 tc->symbol_class = XMC_PR;
5665 break;
5666 case 'R':
5667 if (strcmp (s, "RO]") == 0)
5668 tc->symbol_class = XMC_RO;
5669 else if (strcmp (s, "RW]") == 0)
5670 tc->symbol_class = XMC_RW;
5671 break;
5672 case 'S':
5673 if (strcmp (s, "SV]") == 0)
5674 tc->symbol_class = XMC_SV;
5675 break;
5676 case 'T':
5677 if (strcmp (s, "TC]") == 0)
5678 tc->symbol_class = XMC_TC;
5679 else if (strcmp (s, "TI]") == 0)
5680 tc->symbol_class = XMC_TI;
5681 else if (strcmp (s, "TB]") == 0)
5682 tc->symbol_class = XMC_TB;
5683 else if (strcmp (s, "TC0]") == 0 || strcmp (s, "T0]") == 0)
5684 tc->symbol_class = XMC_TC0;
5685 break;
5686 case 'U':
5687 if (strcmp (s, "UA]") == 0)
5688 tc->symbol_class = XMC_UA;
5689 else if (strcmp (s, "UC]") == 0)
5690 tc->symbol_class = XMC_UC;
5691 break;
5692 case 'X':
5693 if (strcmp (s, "XO]") == 0)
5694 tc->symbol_class = XMC_XO;
5695 break;
5696 }
5697
5698 if (tc->symbol_class == -1)
5699 as_bad (_("unrecognized symbol suffix"));
5700 }
5701
5702 /* Set the class of a label based on where it is defined. This
5703 handles symbols without suffixes. Also, move the symbol so that it
5704 follows the csect symbol. */
5705
5706 void
5707 ppc_frob_label (symbolS *sym)
5708 {
5709 if (ppc_current_csect != (symbolS *) NULL)
5710 {
5711 if (symbol_get_tc (sym)->symbol_class == -1)
5712 symbol_get_tc (sym)->symbol_class = symbol_get_tc (ppc_current_csect)->symbol_class;
5713
5714 symbol_remove (sym, &symbol_rootP, &symbol_lastP);
5715 symbol_append (sym, symbol_get_tc (ppc_current_csect)->within,
5716 &symbol_rootP, &symbol_lastP);
5717 symbol_get_tc (ppc_current_csect)->within = sym;
5718 symbol_get_tc (sym)->within = ppc_current_csect;
5719 }
5720
5721 #ifdef OBJ_ELF
5722 dwarf2_emit_label (sym);
5723 #endif
5724 }
5725
5726 /* This variable is set by ppc_frob_symbol if any absolute symbols are
5727 seen. It tells ppc_adjust_symtab whether it needs to look through
5728 the symbols. */
5729
5730 static bfd_boolean ppc_saw_abs;
5731
5732 /* Change the name of a symbol just before writing it out. Set the
5733 real name if the .rename pseudo-op was used. Otherwise, remove any
5734 class suffix. Return 1 if the symbol should not be included in the
5735 symbol table. */
5736
5737 int
5738 ppc_frob_symbol (symbolS *sym)
5739 {
5740 static symbolS *ppc_last_function;
5741 static symbolS *set_end;
5742
5743 /* Discard symbols that should not be included in the output symbol
5744 table. */
5745 if (! symbol_used_in_reloc_p (sym)
5746 && ((symbol_get_bfdsym (sym)->flags & BSF_SECTION_SYM) != 0
5747 || (! (S_IS_EXTERNAL (sym) || S_IS_WEAK (sym))
5748 && ! symbol_get_tc (sym)->output
5749 && S_GET_STORAGE_CLASS (sym) != C_FILE)))
5750 return 1;
5751
5752 /* This one will disappear anyway. Don't make a csect sym for it. */
5753 if (sym == abs_section_sym)
5754 return 1;
5755
5756 if (symbol_get_tc (sym)->real_name != (char *) NULL)
5757 S_SET_NAME (sym, symbol_get_tc (sym)->real_name);
5758 else
5759 {
5760 const char *name;
5761 const char *s;
5762
5763 name = S_GET_NAME (sym);
5764 s = strchr (name, '[');
5765 if (s != (char *) NULL)
5766 {
5767 unsigned int len;
5768 char *snew;
5769
5770 len = s - name;
5771 snew = xmalloc (len + 1);
5772 memcpy (snew, name, len);
5773 snew[len] = '\0';
5774
5775 S_SET_NAME (sym, snew);
5776 }
5777 }
5778
5779 if (set_end != (symbolS *) NULL)
5780 {
5781 SA_SET_SYM_ENDNDX (set_end, sym);
5782 set_end = NULL;
5783 }
5784
5785 if (SF_GET_FUNCTION (sym))
5786 {
5787 if (ppc_last_function != (symbolS *) NULL)
5788 as_bad (_("two .function pseudo-ops with no intervening .ef"));
5789 ppc_last_function = sym;
5790 if (symbol_get_tc (sym)->u.size != (symbolS *) NULL)
5791 {
5792 resolve_symbol_value (symbol_get_tc (sym)->u.size);
5793 SA_SET_SYM_FSIZE (sym,
5794 (long) S_GET_VALUE (symbol_get_tc (sym)->u.size));
5795 }
5796 }
5797 else if (S_GET_STORAGE_CLASS (sym) == C_FCN
5798 && strcmp (S_GET_NAME (sym), ".ef") == 0)
5799 {
5800 if (ppc_last_function == (symbolS *) NULL)
5801 as_bad (_(".ef with no preceding .function"));
5802 else
5803 {
5804 set_end = ppc_last_function;
5805 ppc_last_function = NULL;
5806
5807 /* We don't have a C_EFCN symbol, but we need to force the
5808 COFF backend to believe that it has seen one. */
5809 coff_last_function = NULL;
5810 }
5811 }
5812
5813 if (! (S_IS_EXTERNAL (sym) || S_IS_WEAK (sym))
5814 && (symbol_get_bfdsym (sym)->flags & BSF_SECTION_SYM) == 0
5815 && S_GET_STORAGE_CLASS (sym) != C_FILE
5816 && S_GET_STORAGE_CLASS (sym) != C_FCN
5817 && S_GET_STORAGE_CLASS (sym) != C_BLOCK
5818 && S_GET_STORAGE_CLASS (sym) != C_BSTAT
5819 && S_GET_STORAGE_CLASS (sym) != C_ESTAT
5820 && S_GET_STORAGE_CLASS (sym) != C_BINCL
5821 && S_GET_STORAGE_CLASS (sym) != C_EINCL
5822 && S_GET_SEGMENT (sym) != ppc_coff_debug_section)
5823 S_SET_STORAGE_CLASS (sym, C_HIDEXT);
5824
5825 if (S_GET_STORAGE_CLASS (sym) == C_EXT
5826 || S_GET_STORAGE_CLASS (sym) == C_AIX_WEAKEXT
5827 || S_GET_STORAGE_CLASS (sym) == C_HIDEXT)
5828 {
5829 int i;
5830 union internal_auxent *a;
5831
5832 /* Create a csect aux. */
5833 i = S_GET_NUMBER_AUXILIARY (sym);
5834 S_SET_NUMBER_AUXILIARY (sym, i + 1);
5835 a = &coffsymbol (symbol_get_bfdsym (sym))->native[i + 1].u.auxent;
5836 if (symbol_get_tc (sym)->symbol_class == XMC_TC0)
5837 {
5838 /* This is the TOC table. */
5839 know (strcmp (S_GET_NAME (sym), "TOC") == 0);
5840 a->x_csect.x_scnlen.l = 0;
5841 a->x_csect.x_smtyp = (2 << 3) | XTY_SD;
5842 }
5843 else if (symbol_get_tc (sym)->subseg != 0)
5844 {
5845 /* This is a csect symbol. x_scnlen is the size of the
5846 csect. */
5847 if (symbol_get_tc (sym)->next == (symbolS *) NULL)
5848 a->x_csect.x_scnlen.l = (bfd_section_size (stdoutput,
5849 S_GET_SEGMENT (sym))
5850 - S_GET_VALUE (sym));
5851 else
5852 {
5853 resolve_symbol_value (symbol_get_tc (sym)->next);
5854 a->x_csect.x_scnlen.l = (S_GET_VALUE (symbol_get_tc (sym)->next)
5855 - S_GET_VALUE (sym));
5856 }
5857 a->x_csect.x_smtyp = (symbol_get_tc (sym)->align << 3) | XTY_SD;
5858 }
5859 else if (S_GET_SEGMENT (sym) == bss_section)
5860 {
5861 /* This is a common symbol. */
5862 a->x_csect.x_scnlen.l = symbol_get_frag (sym)->fr_offset;
5863 a->x_csect.x_smtyp = (symbol_get_tc (sym)->align << 3) | XTY_CM;
5864 if (S_IS_EXTERNAL (sym))
5865 symbol_get_tc (sym)->symbol_class = XMC_RW;
5866 else
5867 symbol_get_tc (sym)->symbol_class = XMC_BS;
5868 }
5869 else if (S_GET_SEGMENT (sym) == absolute_section)
5870 {
5871 /* This is an absolute symbol. The csect will be created by
5872 ppc_adjust_symtab. */
5873 ppc_saw_abs = TRUE;
5874 a->x_csect.x_smtyp = XTY_LD;
5875 if (symbol_get_tc (sym)->symbol_class == -1)
5876 symbol_get_tc (sym)->symbol_class = XMC_XO;
5877 }
5878 else if (! S_IS_DEFINED (sym))
5879 {
5880 /* This is an external symbol. */
5881 a->x_csect.x_scnlen.l = 0;
5882 a->x_csect.x_smtyp = XTY_ER;
5883 }
5884 else if (symbol_get_tc (sym)->symbol_class == XMC_TC)
5885 {
5886 symbolS *next;
5887
5888 /* This is a TOC definition. x_scnlen is the size of the
5889 TOC entry. */
5890 next = symbol_next (sym);
5891 while (symbol_get_tc (next)->symbol_class == XMC_TC0)
5892 next = symbol_next (next);
5893 if (next == (symbolS *) NULL
5894 || symbol_get_tc (next)->symbol_class != XMC_TC)
5895 {
5896 if (ppc_after_toc_frag == (fragS *) NULL)
5897 a->x_csect.x_scnlen.l = (bfd_section_size (stdoutput,
5898 data_section)
5899 - S_GET_VALUE (sym));
5900 else
5901 a->x_csect.x_scnlen.l = (ppc_after_toc_frag->fr_address
5902 - S_GET_VALUE (sym));
5903 }
5904 else
5905 {
5906 resolve_symbol_value (next);
5907 a->x_csect.x_scnlen.l = (S_GET_VALUE (next)
5908 - S_GET_VALUE (sym));
5909 }
5910 a->x_csect.x_smtyp = (2 << 3) | XTY_SD;
5911 }
5912 else
5913 {
5914 symbolS *csect;
5915
5916 /* This is a normal symbol definition. x_scnlen is the
5917 symbol index of the containing csect. */
5918 if (S_GET_SEGMENT (sym) == text_section)
5919 csect = ppc_text_csects;
5920 else if (S_GET_SEGMENT (sym) == data_section)
5921 csect = ppc_data_csects;
5922 else
5923 abort ();
5924
5925 /* Skip the initial dummy symbol. */
5926 csect = symbol_get_tc (csect)->next;
5927
5928 if (csect == (symbolS *) NULL)
5929 {
5930 as_warn (_("warning: symbol %s has no csect"), S_GET_NAME (sym));
5931 a->x_csect.x_scnlen.l = 0;
5932 }
5933 else
5934 {
5935 while (symbol_get_tc (csect)->next != (symbolS *) NULL)
5936 {
5937 resolve_symbol_value (symbol_get_tc (csect)->next);
5938 if (S_GET_VALUE (symbol_get_tc (csect)->next)
5939 > S_GET_VALUE (sym))
5940 break;
5941 csect = symbol_get_tc (csect)->next;
5942 }
5943
5944 a->x_csect.x_scnlen.p =
5945 coffsymbol (symbol_get_bfdsym (csect))->native;
5946 coffsymbol (symbol_get_bfdsym (sym))->native[i + 1].fix_scnlen =
5947 1;
5948 }
5949 a->x_csect.x_smtyp = XTY_LD;
5950 }
5951
5952 a->x_csect.x_parmhash = 0;
5953 a->x_csect.x_snhash = 0;
5954 if (symbol_get_tc (sym)->symbol_class == -1)
5955 a->x_csect.x_smclas = XMC_PR;
5956 else
5957 a->x_csect.x_smclas = symbol_get_tc (sym)->symbol_class;
5958 a->x_csect.x_stab = 0;
5959 a->x_csect.x_snstab = 0;
5960
5961 /* Don't let the COFF backend resort these symbols. */
5962 symbol_get_bfdsym (sym)->flags |= BSF_NOT_AT_END;
5963 }
5964 else if (S_GET_STORAGE_CLASS (sym) == C_BSTAT)
5965 {
5966 /* We want the value to be the symbol index of the referenced
5967 csect symbol. BFD will do that for us if we set the right
5968 flags. */
5969 asymbol *bsym = symbol_get_bfdsym (symbol_get_tc (sym)->within);
5970 combined_entry_type *c = coffsymbol (bsym)->native;
5971
5972 S_SET_VALUE (sym, (valueT) (size_t) c);
5973 coffsymbol (symbol_get_bfdsym (sym))->native->fix_value = 1;
5974 }
5975 else if (S_GET_STORAGE_CLASS (sym) == C_STSYM)
5976 {
5977 symbolS *block;
5978 valueT base;
5979
5980 block = symbol_get_tc (sym)->within;
5981 if (block)
5982 {
5983 /* The value is the offset from the enclosing csect. */
5984 symbolS *csect;
5985
5986 csect = symbol_get_tc (block)->within;
5987 resolve_symbol_value (csect);
5988 base = S_GET_VALUE (csect);
5989 }
5990 else
5991 base = 0;
5992
5993 S_SET_VALUE (sym, S_GET_VALUE (sym) - base);
5994 }
5995 else if (S_GET_STORAGE_CLASS (sym) == C_BINCL
5996 || S_GET_STORAGE_CLASS (sym) == C_EINCL)
5997 {
5998 /* We want the value to be a file offset into the line numbers.
5999 BFD will do that for us if we set the right flags. We have
6000 already set the value correctly. */
6001 coffsymbol (symbol_get_bfdsym (sym))->native->fix_line = 1;
6002 }
6003
6004 return 0;
6005 }
6006
6007 /* Adjust the symbol table. This creates csect symbols for all
6008 absolute symbols. */
6009
6010 void
6011 ppc_adjust_symtab (void)
6012 {
6013 symbolS *sym;
6014
6015 if (! ppc_saw_abs)
6016 return;
6017
6018 for (sym = symbol_rootP; sym != NULL; sym = symbol_next (sym))
6019 {
6020 symbolS *csect;
6021 int i;
6022 union internal_auxent *a;
6023
6024 if (S_GET_SEGMENT (sym) != absolute_section)
6025 continue;
6026
6027 csect = symbol_create (".abs[XO]", absolute_section,
6028 S_GET_VALUE (sym), &zero_address_frag);
6029 symbol_get_bfdsym (csect)->value = S_GET_VALUE (sym);
6030 S_SET_STORAGE_CLASS (csect, C_HIDEXT);
6031 i = S_GET_NUMBER_AUXILIARY (csect);
6032 S_SET_NUMBER_AUXILIARY (csect, i + 1);
6033 a = &coffsymbol (symbol_get_bfdsym (csect))->native[i + 1].u.auxent;
6034 a->x_csect.x_scnlen.l = 0;
6035 a->x_csect.x_smtyp = XTY_SD;
6036 a->x_csect.x_parmhash = 0;
6037 a->x_csect.x_snhash = 0;
6038 a->x_csect.x_smclas = XMC_XO;
6039 a->x_csect.x_stab = 0;
6040 a->x_csect.x_snstab = 0;
6041
6042 symbol_insert (csect, sym, &symbol_rootP, &symbol_lastP);
6043
6044 i = S_GET_NUMBER_AUXILIARY (sym);
6045 a = &coffsymbol (symbol_get_bfdsym (sym))->native[i].u.auxent;
6046 a->x_csect.x_scnlen.p = coffsymbol (symbol_get_bfdsym (csect))->native;
6047 coffsymbol (symbol_get_bfdsym (sym))->native[i].fix_scnlen = 1;
6048 }
6049
6050 ppc_saw_abs = FALSE;
6051 }
6052
6053 /* Set the VMA for a section. This is called on all the sections in
6054 turn. */
6055
6056 void
6057 ppc_frob_section (asection *sec)
6058 {
6059 static bfd_vma vma = 0;
6060
6061 /* Dwarf sections start at 0. */
6062 if (bfd_get_section_flags (NULL, sec) & SEC_DEBUGGING)
6063 return;
6064
6065 vma = md_section_align (sec, vma);
6066 bfd_set_section_vma (stdoutput, sec, vma);
6067 vma += bfd_section_size (stdoutput, sec);
6068 }
6069
6070 #endif /* OBJ_XCOFF */
6071 \f
6072 char *
6073 md_atof (int type, char *litp, int *sizep)
6074 {
6075 return ieee_md_atof (type, litp, sizep, target_big_endian);
6076 }
6077
6078 /* Write a value out to the object file, using the appropriate
6079 endianness. */
6080
6081 void
6082 md_number_to_chars (char *buf, valueT val, int n)
6083 {
6084 if (target_big_endian)
6085 number_to_chars_bigendian (buf, val, n);
6086 else
6087 number_to_chars_littleendian (buf, val, n);
6088 }
6089
6090 /* Align a section (I don't know why this is machine dependent). */
6091
6092 valueT
6093 md_section_align (asection *seg ATTRIBUTE_UNUSED, valueT addr)
6094 {
6095 #ifdef OBJ_ELF
6096 return addr;
6097 #else
6098 int align = bfd_get_section_alignment (stdoutput, seg);
6099
6100 return ((addr + (1 << align) - 1) & -(1 << align));
6101 #endif
6102 }
6103
6104 /* We don't have any form of relaxing. */
6105
6106 int
6107 md_estimate_size_before_relax (fragS *fragp ATTRIBUTE_UNUSED,
6108 asection *seg ATTRIBUTE_UNUSED)
6109 {
6110 abort ();
6111 return 0;
6112 }
6113
6114 /* Convert a machine dependent frag. We never generate these. */
6115
6116 void
6117 md_convert_frag (bfd *abfd ATTRIBUTE_UNUSED,
6118 asection *sec ATTRIBUTE_UNUSED,
6119 fragS *fragp ATTRIBUTE_UNUSED)
6120 {
6121 abort ();
6122 }
6123
6124 /* We have no need to default values of symbols. */
6125
6126 symbolS *
6127 md_undefined_symbol (char *name ATTRIBUTE_UNUSED)
6128 {
6129 return 0;
6130 }
6131 \f
6132 /* Functions concerning relocs. */
6133
6134 /* The location from which a PC relative jump should be calculated,
6135 given a PC relative reloc. */
6136
6137 long
6138 md_pcrel_from_section (fixS *fixp, segT sec ATTRIBUTE_UNUSED)
6139 {
6140 return fixp->fx_frag->fr_address + fixp->fx_where;
6141 }
6142
6143 #ifdef OBJ_XCOFF
6144
6145 /* This is called to see whether a fixup should be adjusted to use a
6146 section symbol. We take the opportunity to change a fixup against
6147 a symbol in the TOC subsegment into a reloc against the
6148 corresponding .tc symbol. */
6149
6150 int
6151 ppc_fix_adjustable (fixS *fix)
6152 {
6153 valueT val = resolve_symbol_value (fix->fx_addsy);
6154 segT symseg = S_GET_SEGMENT (fix->fx_addsy);
6155 TC_SYMFIELD_TYPE *tc;
6156
6157 if (symseg == absolute_section)
6158 return 0;
6159
6160 /* Always adjust symbols in debugging sections. */
6161 if (bfd_get_section_flags (stdoutput, symseg) & SEC_DEBUGGING)
6162 return 1;
6163
6164 if (ppc_toc_csect != (symbolS *) NULL
6165 && fix->fx_addsy != ppc_toc_csect
6166 && symseg == data_section
6167 && val >= ppc_toc_frag->fr_address
6168 && (ppc_after_toc_frag == (fragS *) NULL
6169 || val < ppc_after_toc_frag->fr_address))
6170 {
6171 symbolS *sy;
6172
6173 for (sy = symbol_next (ppc_toc_csect);
6174 sy != (symbolS *) NULL;
6175 sy = symbol_next (sy))
6176 {
6177 TC_SYMFIELD_TYPE *sy_tc = symbol_get_tc (sy);
6178
6179 if (sy_tc->symbol_class == XMC_TC0)
6180 continue;
6181 if (sy_tc->symbol_class != XMC_TC)
6182 break;
6183 if (val == resolve_symbol_value (sy))
6184 {
6185 fix->fx_addsy = sy;
6186 fix->fx_addnumber = val - ppc_toc_frag->fr_address;
6187 return 0;
6188 }
6189 }
6190
6191 as_bad_where (fix->fx_file, fix->fx_line,
6192 _("symbol in .toc does not match any .tc"));
6193 }
6194
6195 /* Possibly adjust the reloc to be against the csect. */
6196 tc = symbol_get_tc (fix->fx_addsy);
6197 if (tc->subseg == 0
6198 && tc->symbol_class != XMC_TC0
6199 && tc->symbol_class != XMC_TC
6200 && symseg != bss_section
6201 /* Don't adjust if this is a reloc in the toc section. */
6202 && (symseg != data_section
6203 || ppc_toc_csect == NULL
6204 || val < ppc_toc_frag->fr_address
6205 || (ppc_after_toc_frag != NULL
6206 && val >= ppc_after_toc_frag->fr_address)))
6207 {
6208 symbolS *csect = tc->within;
6209
6210 /* If the symbol was not declared by a label (eg: a section symbol),
6211 use the section instead of the csect. This doesn't happen in
6212 normal AIX assembly code. */
6213 if (csect == NULL)
6214 csect = seg_info (symseg)->sym;
6215
6216 fix->fx_offset += val - symbol_get_frag (csect)->fr_address;
6217 fix->fx_addsy = csect;
6218
6219 return 0;
6220 }
6221
6222 /* Adjust a reloc against a .lcomm symbol to be against the base
6223 .lcomm. */
6224 if (symseg == bss_section
6225 && ! S_IS_EXTERNAL (fix->fx_addsy))
6226 {
6227 symbolS *sy = symbol_get_frag (fix->fx_addsy)->fr_symbol;
6228
6229 fix->fx_offset += val - resolve_symbol_value (sy);
6230 fix->fx_addsy = sy;
6231 }
6232
6233 return 0;
6234 }
6235
6236 /* A reloc from one csect to another must be kept. The assembler
6237 will, of course, keep relocs between sections, and it will keep
6238 absolute relocs, but we need to force it to keep PC relative relocs
6239 between two csects in the same section. */
6240
6241 int
6242 ppc_force_relocation (fixS *fix)
6243 {
6244 /* At this point fix->fx_addsy should already have been converted to
6245 a csect symbol. If the csect does not include the fragment, then
6246 we need to force the relocation. */
6247 if (fix->fx_pcrel
6248 && fix->fx_addsy != NULL
6249 && symbol_get_tc (fix->fx_addsy)->subseg != 0
6250 && ((symbol_get_frag (fix->fx_addsy)->fr_address
6251 > fix->fx_frag->fr_address)
6252 || (symbol_get_tc (fix->fx_addsy)->next != NULL
6253 && (symbol_get_frag (symbol_get_tc (fix->fx_addsy)->next)->fr_address
6254 <= fix->fx_frag->fr_address))))
6255 return 1;
6256
6257 return generic_force_reloc (fix);
6258 }
6259
6260 void
6261 ppc_new_dot_label (symbolS *sym)
6262 {
6263 /* Anchor this label to the current csect for relocations. */
6264 symbol_get_tc (sym)->within = ppc_current_csect;
6265 }
6266
6267 #endif /* OBJ_XCOFF */
6268
6269 #ifdef OBJ_ELF
6270 /* If this function returns non-zero, it guarantees that a relocation
6271 will be emitted for a fixup. */
6272
6273 int
6274 ppc_force_relocation (fixS *fix)
6275 {
6276 /* Branch prediction relocations must force a relocation, as must
6277 the vtable description relocs. */
6278 switch (fix->fx_r_type)
6279 {
6280 case BFD_RELOC_PPC_B16_BRTAKEN:
6281 case BFD_RELOC_PPC_B16_BRNTAKEN:
6282 case BFD_RELOC_PPC_BA16_BRTAKEN:
6283 case BFD_RELOC_PPC_BA16_BRNTAKEN:
6284 case BFD_RELOC_24_PLT_PCREL:
6285 case BFD_RELOC_PPC64_TOC:
6286 return 1;
6287 case BFD_RELOC_PPC_B26:
6288 case BFD_RELOC_PPC_BA26:
6289 case BFD_RELOC_PPC_B16:
6290 case BFD_RELOC_PPC_BA16:
6291 /* All branch fixups targeting a localentry symbol must
6292 force a relocation. */
6293 if (fix->fx_addsy)
6294 {
6295 asymbol *bfdsym = symbol_get_bfdsym (fix->fx_addsy);
6296 elf_symbol_type *elfsym
6297 = elf_symbol_from (bfd_asymbol_bfd (bfdsym), bfdsym);
6298 gas_assert (elfsym);
6299 if ((STO_PPC64_LOCAL_MASK & elfsym->internal_elf_sym.st_other) != 0)
6300 return 1;
6301 }
6302 break;
6303 default:
6304 break;
6305 }
6306
6307 if (fix->fx_r_type >= BFD_RELOC_PPC_TLS
6308 && fix->fx_r_type <= BFD_RELOC_PPC64_DTPREL16_HIGHESTA)
6309 return 1;
6310
6311 return generic_force_reloc (fix);
6312 }
6313
6314 int
6315 ppc_fix_adjustable (fixS *fix)
6316 {
6317 switch (fix->fx_r_type)
6318 {
6319 /* All branch fixups targeting a localentry symbol must
6320 continue using the symbol. */
6321 case BFD_RELOC_PPC_B26:
6322 case BFD_RELOC_PPC_BA26:
6323 case BFD_RELOC_PPC_B16:
6324 case BFD_RELOC_PPC_BA16:
6325 case BFD_RELOC_PPC_B16_BRTAKEN:
6326 case BFD_RELOC_PPC_B16_BRNTAKEN:
6327 case BFD_RELOC_PPC_BA16_BRTAKEN:
6328 case BFD_RELOC_PPC_BA16_BRNTAKEN:
6329 if (fix->fx_addsy)
6330 {
6331 asymbol *bfdsym = symbol_get_bfdsym (fix->fx_addsy);
6332 elf_symbol_type *elfsym
6333 = elf_symbol_from (bfd_asymbol_bfd (bfdsym), bfdsym);
6334 gas_assert (elfsym);
6335 if ((STO_PPC64_LOCAL_MASK & elfsym->internal_elf_sym.st_other) != 0)
6336 return 0;
6337 }
6338 break;
6339 default:
6340 break;
6341 }
6342
6343 return (fix->fx_r_type != BFD_RELOC_16_GOTOFF
6344 && fix->fx_r_type != BFD_RELOC_LO16_GOTOFF
6345 && fix->fx_r_type != BFD_RELOC_HI16_GOTOFF
6346 && fix->fx_r_type != BFD_RELOC_HI16_S_GOTOFF
6347 && fix->fx_r_type != BFD_RELOC_PPC64_GOT16_DS
6348 && fix->fx_r_type != BFD_RELOC_PPC64_GOT16_LO_DS
6349 && fix->fx_r_type != BFD_RELOC_GPREL16
6350 && fix->fx_r_type != BFD_RELOC_VTABLE_INHERIT
6351 && fix->fx_r_type != BFD_RELOC_VTABLE_ENTRY
6352 && !(fix->fx_r_type >= BFD_RELOC_PPC_TLS
6353 && fix->fx_r_type <= BFD_RELOC_PPC64_DTPREL16_HIGHESTA));
6354 }
6355 #endif
6356
6357 void
6358 ppc_frag_check (struct frag *fragP)
6359 {
6360 if (!fragP->has_code)
6361 return;
6362
6363 if (ppc_mach() == bfd_mach_ppc_vle)
6364 {
6365 if (((fragP->fr_address + fragP->insn_addr) & 1) != 0)
6366 as_bad (_("instruction address is not a multiple of 2"));
6367 }
6368 else
6369 {
6370 if (((fragP->fr_address + fragP->insn_addr) & 3) != 0)
6371 as_bad (_("instruction address is not a multiple of 4"));
6372 }
6373 }
6374
6375 /* Implement HANDLE_ALIGN. This writes the NOP pattern into an
6376 rs_align_code frag. */
6377
6378 void
6379 ppc_handle_align (struct frag *fragP)
6380 {
6381 valueT count = (fragP->fr_next->fr_address
6382 - (fragP->fr_address + fragP->fr_fix));
6383
6384 if (ppc_mach() == bfd_mach_ppc_vle && count != 0 && (count & 1) == 0)
6385 {
6386 char *dest = fragP->fr_literal + fragP->fr_fix;
6387
6388 fragP->fr_var = 2;
6389 md_number_to_chars (dest, 0x4400, 2);
6390 }
6391 else if (count != 0 && (count & 3) == 0)
6392 {
6393 char *dest = fragP->fr_literal + fragP->fr_fix;
6394
6395 fragP->fr_var = 4;
6396
6397 if (count > 4 * nop_limit && count < 0x2000000)
6398 {
6399 struct frag *rest;
6400
6401 /* Make a branch, then follow with nops. Insert another
6402 frag to handle the nops. */
6403 md_number_to_chars (dest, 0x48000000 + count, 4);
6404 count -= 4;
6405 if (count == 0)
6406 return;
6407
6408 rest = xmalloc (SIZEOF_STRUCT_FRAG + 4);
6409 memcpy (rest, fragP, SIZEOF_STRUCT_FRAG);
6410 fragP->fr_next = rest;
6411 fragP = rest;
6412 rest->fr_address += rest->fr_fix + 4;
6413 rest->fr_fix = 0;
6414 /* If we leave the next frag as rs_align_code we'll come here
6415 again, resulting in a bunch of branches rather than a
6416 branch followed by nops. */
6417 rest->fr_type = rs_align;
6418 dest = rest->fr_literal;
6419 }
6420
6421 md_number_to_chars (dest, 0x60000000, 4);
6422
6423 if ((ppc_cpu & PPC_OPCODE_POWER6) != 0
6424 || (ppc_cpu & PPC_OPCODE_POWER7) != 0
6425 || (ppc_cpu & PPC_OPCODE_POWER8) != 0
6426 || (ppc_cpu & PPC_OPCODE_POWER9) != 0)
6427 {
6428 /* For power6, power7, power8 and power9, we want the last nop to be
6429 a group terminating one. Do this by inserting an rs_fill frag
6430 immediately after this one, with its address set to the last nop
6431 location. This will automatically reduce the number of nops in
6432 the current frag by one. */
6433 if (count > 4)
6434 {
6435 struct frag *group_nop = xmalloc (SIZEOF_STRUCT_FRAG + 4);
6436
6437 memcpy (group_nop, fragP, SIZEOF_STRUCT_FRAG);
6438 group_nop->fr_address = group_nop->fr_next->fr_address - 4;
6439 group_nop->fr_fix = 0;
6440 group_nop->fr_offset = 1;
6441 group_nop->fr_type = rs_fill;
6442 fragP->fr_next = group_nop;
6443 dest = group_nop->fr_literal;
6444 }
6445
6446 if ((ppc_cpu & PPC_OPCODE_POWER7) != 0
6447 || (ppc_cpu & PPC_OPCODE_POWER8) != 0
6448 || (ppc_cpu & PPC_OPCODE_POWER9) != 0)
6449 {
6450 if (ppc_cpu & PPC_OPCODE_E500MC)
6451 /* e500mc group terminating nop: "ori 0,0,0". */
6452 md_number_to_chars (dest, 0x60000000, 4);
6453 else
6454 /* power7/power8/power9 group terminating nop: "ori 2,2,0". */
6455 md_number_to_chars (dest, 0x60420000, 4);
6456 }
6457 else
6458 /* power6 group terminating nop: "ori 1,1,0". */
6459 md_number_to_chars (dest, 0x60210000, 4);
6460 }
6461 }
6462 }
6463
6464 /* Apply a fixup to the object code. This is called for all the
6465 fixups we generated by the calls to fix_new_exp, above. */
6466
6467 void
6468 md_apply_fix (fixS *fixP, valueT *valP, segT seg)
6469 {
6470 valueT value = * valP;
6471 offsetT fieldval;
6472 const struct powerpc_operand *operand;
6473
6474 #ifdef OBJ_ELF
6475 if (fixP->fx_addsy != NULL)
6476 {
6477 /* Hack around bfd_install_relocation brain damage. */
6478 if (fixP->fx_pcrel)
6479 value += fixP->fx_frag->fr_address + fixP->fx_where;
6480
6481 if (fixP->fx_addsy == abs_section_sym)
6482 fixP->fx_done = 1;
6483 }
6484 else
6485 fixP->fx_done = 1;
6486 #else
6487 /* FIXME FIXME FIXME: The value we are passed in *valP includes
6488 the symbol values. If we are doing this relocation the code in
6489 write.c is going to call bfd_install_relocation, which is also
6490 going to use the symbol value. That means that if the reloc is
6491 fully resolved we want to use *valP since bfd_install_relocation is
6492 not being used.
6493 However, if the reloc is not fully resolved we do not want to
6494 use *valP, and must use fx_offset instead. If the relocation
6495 is PC-relative, we then need to re-apply md_pcrel_from_section
6496 to this new relocation value. */
6497 if (fixP->fx_addsy == (symbolS *) NULL)
6498 fixP->fx_done = 1;
6499
6500 else
6501 {
6502 value = fixP->fx_offset;
6503 if (fixP->fx_pcrel)
6504 value -= md_pcrel_from_section (fixP, seg);
6505 }
6506 #endif
6507
6508 if (fixP->fx_subsy != (symbolS *) NULL)
6509 {
6510 /* We can't actually support subtracting a symbol. */
6511 as_bad_where (fixP->fx_file, fixP->fx_line, _("expression too complex"));
6512 }
6513
6514 operand = NULL;
6515 if (fixP->fx_pcrel_adjust != 0)
6516 {
6517 /* This is a fixup on an instruction. */
6518 int opindex = fixP->fx_pcrel_adjust & 0xff;
6519
6520 operand = &powerpc_operands[opindex];
6521 #ifdef OBJ_XCOFF
6522 /* An instruction like `lwz 9,sym(30)' when `sym' is not a TOC symbol
6523 does not generate a reloc. It uses the offset of `sym' within its
6524 csect. Other usages, such as `.long sym', generate relocs. This
6525 is the documented behaviour of non-TOC symbols. */
6526 if ((operand->flags & PPC_OPERAND_PARENS) != 0
6527 && (operand->bitm & 0xfff0) == 0xfff0
6528 && operand->shift == 0
6529 && (operand->insert == NULL || ppc_obj64)
6530 && fixP->fx_addsy != NULL
6531 && symbol_get_tc (fixP->fx_addsy)->subseg != 0
6532 && symbol_get_tc (fixP->fx_addsy)->symbol_class != XMC_TC
6533 && symbol_get_tc (fixP->fx_addsy)->symbol_class != XMC_TC0
6534 && S_GET_SEGMENT (fixP->fx_addsy) != bss_section)
6535 {
6536 value = fixP->fx_offset;
6537 fixP->fx_done = 1;
6538 }
6539
6540 /* During parsing of instructions, a TOC16 reloc is generated for
6541 instructions such as 'lwz RT,SYM(RB)' if SYM is a symbol defined
6542 in the toc. But at parse time, SYM may be not yet defined, so
6543 check again here. */
6544 if (fixP->fx_r_type == BFD_RELOC_16
6545 && fixP->fx_addsy != NULL
6546 && ppc_is_toc_sym (fixP->fx_addsy))
6547 fixP->fx_r_type = BFD_RELOC_PPC_TOC16;
6548 #endif
6549 }
6550
6551 /* Calculate value to be stored in field. */
6552 fieldval = value;
6553 switch (fixP->fx_r_type)
6554 {
6555 #ifdef OBJ_ELF
6556 case BFD_RELOC_PPC64_ADDR16_LO_DS:
6557 case BFD_RELOC_PPC_VLE_LO16A:
6558 case BFD_RELOC_PPC_VLE_LO16D:
6559 #endif
6560 case BFD_RELOC_LO16:
6561 case BFD_RELOC_LO16_PCREL:
6562 fieldval = value & 0xffff;
6563 sign_extend_16:
6564 if (operand != NULL && (operand->flags & PPC_OPERAND_SIGNED) != 0)
6565 fieldval = SEX16 (fieldval);
6566 fixP->fx_no_overflow = 1;
6567 break;
6568
6569 case BFD_RELOC_HI16:
6570 case BFD_RELOC_HI16_PCREL:
6571 #ifdef OBJ_ELF
6572 if (REPORT_OVERFLOW_HI && ppc_obj64)
6573 {
6574 fieldval = value >> 16;
6575 if (operand != NULL && (operand->flags & PPC_OPERAND_SIGNED) != 0)
6576 {
6577 valueT sign = (((valueT) -1 >> 16) + 1) >> 1;
6578 fieldval = ((valueT) fieldval ^ sign) - sign;
6579 }
6580 break;
6581 }
6582 /* Fall thru */
6583
6584 case BFD_RELOC_PPC_VLE_HI16A:
6585 case BFD_RELOC_PPC_VLE_HI16D:
6586 case BFD_RELOC_PPC64_ADDR16_HIGH:
6587 #endif
6588 fieldval = PPC_HI (value);
6589 goto sign_extend_16;
6590
6591 case BFD_RELOC_HI16_S:
6592 case BFD_RELOC_HI16_S_PCREL:
6593 case BFD_RELOC_PPC_REL16DX_HA:
6594 #ifdef OBJ_ELF
6595 if (REPORT_OVERFLOW_HI && ppc_obj64)
6596 {
6597 fieldval = (value + 0x8000) >> 16;
6598 if (operand != NULL && (operand->flags & PPC_OPERAND_SIGNED) != 0)
6599 {
6600 valueT sign = (((valueT) -1 >> 16) + 1) >> 1;
6601 fieldval = ((valueT) fieldval ^ sign) - sign;
6602 }
6603 break;
6604 }
6605 /* Fall thru */
6606
6607 case BFD_RELOC_PPC_VLE_HA16A:
6608 case BFD_RELOC_PPC_VLE_HA16D:
6609 case BFD_RELOC_PPC64_ADDR16_HIGHA:
6610 #endif
6611 fieldval = PPC_HA (value);
6612 goto sign_extend_16;
6613
6614 #ifdef OBJ_ELF
6615 case BFD_RELOC_PPC64_HIGHER:
6616 fieldval = PPC_HIGHER (value);
6617 goto sign_extend_16;
6618
6619 case BFD_RELOC_PPC64_HIGHER_S:
6620 fieldval = PPC_HIGHERA (value);
6621 goto sign_extend_16;
6622
6623 case BFD_RELOC_PPC64_HIGHEST:
6624 fieldval = PPC_HIGHEST (value);
6625 goto sign_extend_16;
6626
6627 case BFD_RELOC_PPC64_HIGHEST_S:
6628 fieldval = PPC_HIGHESTA (value);
6629 goto sign_extend_16;
6630 #endif
6631
6632 default:
6633 break;
6634 }
6635
6636 if (operand != NULL)
6637 {
6638 /* Handle relocs in an insn. */
6639 switch (fixP->fx_r_type)
6640 {
6641 #ifdef OBJ_ELF
6642 /* The following relocs can't be calculated by the assembler.
6643 Leave the field zero. */
6644 case BFD_RELOC_PPC_TPREL16:
6645 case BFD_RELOC_PPC_TPREL16_LO:
6646 case BFD_RELOC_PPC_TPREL16_HI:
6647 case BFD_RELOC_PPC_TPREL16_HA:
6648 case BFD_RELOC_PPC_DTPREL16:
6649 case BFD_RELOC_PPC_DTPREL16_LO:
6650 case BFD_RELOC_PPC_DTPREL16_HI:
6651 case BFD_RELOC_PPC_DTPREL16_HA:
6652 case BFD_RELOC_PPC_GOT_TLSGD16:
6653 case BFD_RELOC_PPC_GOT_TLSGD16_LO:
6654 case BFD_RELOC_PPC_GOT_TLSGD16_HI:
6655 case BFD_RELOC_PPC_GOT_TLSGD16_HA:
6656 case BFD_RELOC_PPC_GOT_TLSLD16:
6657 case BFD_RELOC_PPC_GOT_TLSLD16_LO:
6658 case BFD_RELOC_PPC_GOT_TLSLD16_HI:
6659 case BFD_RELOC_PPC_GOT_TLSLD16_HA:
6660 case BFD_RELOC_PPC_GOT_TPREL16:
6661 case BFD_RELOC_PPC_GOT_TPREL16_LO:
6662 case BFD_RELOC_PPC_GOT_TPREL16_HI:
6663 case BFD_RELOC_PPC_GOT_TPREL16_HA:
6664 case BFD_RELOC_PPC_GOT_DTPREL16:
6665 case BFD_RELOC_PPC_GOT_DTPREL16_LO:
6666 case BFD_RELOC_PPC_GOT_DTPREL16_HI:
6667 case BFD_RELOC_PPC_GOT_DTPREL16_HA:
6668 case BFD_RELOC_PPC64_TPREL16_DS:
6669 case BFD_RELOC_PPC64_TPREL16_LO_DS:
6670 case BFD_RELOC_PPC64_TPREL16_HIGH:
6671 case BFD_RELOC_PPC64_TPREL16_HIGHA:
6672 case BFD_RELOC_PPC64_TPREL16_HIGHER:
6673 case BFD_RELOC_PPC64_TPREL16_HIGHERA:
6674 case BFD_RELOC_PPC64_TPREL16_HIGHEST:
6675 case BFD_RELOC_PPC64_TPREL16_HIGHESTA:
6676 case BFD_RELOC_PPC64_DTPREL16_HIGH:
6677 case BFD_RELOC_PPC64_DTPREL16_HIGHA:
6678 case BFD_RELOC_PPC64_DTPREL16_DS:
6679 case BFD_RELOC_PPC64_DTPREL16_LO_DS:
6680 case BFD_RELOC_PPC64_DTPREL16_HIGHER:
6681 case BFD_RELOC_PPC64_DTPREL16_HIGHERA:
6682 case BFD_RELOC_PPC64_DTPREL16_HIGHEST:
6683 case BFD_RELOC_PPC64_DTPREL16_HIGHESTA:
6684 gas_assert (fixP->fx_addsy != NULL);
6685 S_SET_THREAD_LOCAL (fixP->fx_addsy);
6686 fieldval = 0;
6687 break;
6688
6689 /* These also should leave the field zero for the same
6690 reason. Note that older versions of gas wrote values
6691 here. If we want to go back to the old behaviour, then
6692 all _LO and _LO_DS cases will need to be treated like
6693 BFD_RELOC_LO16_PCREL above. Similarly for _HI etc. */
6694 case BFD_RELOC_16_GOTOFF:
6695 case BFD_RELOC_LO16_GOTOFF:
6696 case BFD_RELOC_HI16_GOTOFF:
6697 case BFD_RELOC_HI16_S_GOTOFF:
6698 case BFD_RELOC_LO16_PLTOFF:
6699 case BFD_RELOC_HI16_PLTOFF:
6700 case BFD_RELOC_HI16_S_PLTOFF:
6701 case BFD_RELOC_GPREL16:
6702 case BFD_RELOC_16_BASEREL:
6703 case BFD_RELOC_LO16_BASEREL:
6704 case BFD_RELOC_HI16_BASEREL:
6705 case BFD_RELOC_HI16_S_BASEREL:
6706 case BFD_RELOC_PPC_TOC16:
6707 case BFD_RELOC_PPC64_TOC16_LO:
6708 case BFD_RELOC_PPC64_TOC16_HI:
6709 case BFD_RELOC_PPC64_TOC16_HA:
6710 case BFD_RELOC_PPC64_PLTGOT16:
6711 case BFD_RELOC_PPC64_PLTGOT16_LO:
6712 case BFD_RELOC_PPC64_PLTGOT16_HI:
6713 case BFD_RELOC_PPC64_PLTGOT16_HA:
6714 case BFD_RELOC_PPC64_GOT16_DS:
6715 case BFD_RELOC_PPC64_GOT16_LO_DS:
6716 case BFD_RELOC_PPC64_PLT16_LO_DS:
6717 case BFD_RELOC_PPC64_SECTOFF_DS:
6718 case BFD_RELOC_PPC64_SECTOFF_LO_DS:
6719 case BFD_RELOC_PPC64_TOC16_DS:
6720 case BFD_RELOC_PPC64_TOC16_LO_DS:
6721 case BFD_RELOC_PPC64_PLTGOT16_DS:
6722 case BFD_RELOC_PPC64_PLTGOT16_LO_DS:
6723 case BFD_RELOC_PPC_EMB_NADDR16:
6724 case BFD_RELOC_PPC_EMB_NADDR16_LO:
6725 case BFD_RELOC_PPC_EMB_NADDR16_HI:
6726 case BFD_RELOC_PPC_EMB_NADDR16_HA:
6727 case BFD_RELOC_PPC_EMB_SDAI16:
6728 case BFD_RELOC_PPC_EMB_SDA2I16:
6729 case BFD_RELOC_PPC_EMB_SDA2REL:
6730 case BFD_RELOC_PPC_EMB_SDA21:
6731 case BFD_RELOC_PPC_EMB_MRKREF:
6732 case BFD_RELOC_PPC_EMB_RELSEC16:
6733 case BFD_RELOC_PPC_EMB_RELST_LO:
6734 case BFD_RELOC_PPC_EMB_RELST_HI:
6735 case BFD_RELOC_PPC_EMB_RELST_HA:
6736 case BFD_RELOC_PPC_EMB_BIT_FLD:
6737 case BFD_RELOC_PPC_EMB_RELSDA:
6738 case BFD_RELOC_PPC_VLE_SDA21:
6739 case BFD_RELOC_PPC_VLE_SDA21_LO:
6740 case BFD_RELOC_PPC_VLE_SDAREL_LO16A:
6741 case BFD_RELOC_PPC_VLE_SDAREL_LO16D:
6742 case BFD_RELOC_PPC_VLE_SDAREL_HI16A:
6743 case BFD_RELOC_PPC_VLE_SDAREL_HI16D:
6744 case BFD_RELOC_PPC_VLE_SDAREL_HA16A:
6745 case BFD_RELOC_PPC_VLE_SDAREL_HA16D:
6746 gas_assert (fixP->fx_addsy != NULL);
6747 /* Fall thru */
6748
6749 case BFD_RELOC_PPC_TLS:
6750 case BFD_RELOC_PPC_TLSGD:
6751 case BFD_RELOC_PPC_TLSLD:
6752 fieldval = 0;
6753 break;
6754 #endif
6755
6756 #ifdef OBJ_XCOFF
6757 case BFD_RELOC_PPC_B16:
6758 /* Adjust the offset to the instruction boundary. */
6759 fieldval += 2;
6760 break;
6761 #endif
6762
6763 case BFD_RELOC_VTABLE_INHERIT:
6764 case BFD_RELOC_VTABLE_ENTRY:
6765 case BFD_RELOC_PPC_DTPMOD:
6766 case BFD_RELOC_PPC_TPREL:
6767 case BFD_RELOC_PPC_DTPREL:
6768 case BFD_RELOC_PPC_COPY:
6769 case BFD_RELOC_PPC_GLOB_DAT:
6770 case BFD_RELOC_32_PLT_PCREL:
6771 case BFD_RELOC_PPC_EMB_NADDR32:
6772 case BFD_RELOC_PPC64_TOC:
6773 case BFD_RELOC_CTOR:
6774 case BFD_RELOC_32:
6775 case BFD_RELOC_32_PCREL:
6776 case BFD_RELOC_RVA:
6777 case BFD_RELOC_64:
6778 case BFD_RELOC_64_PCREL:
6779 case BFD_RELOC_PPC64_ADDR64_LOCAL:
6780 as_bad_where (fixP->fx_file, fixP->fx_line,
6781 _("%s unsupported as instruction fixup"),
6782 bfd_get_reloc_code_name (fixP->fx_r_type));
6783 fixP->fx_done = 1;
6784 return;
6785
6786 default:
6787 break;
6788 }
6789
6790 #ifdef OBJ_ELF
6791 /* powerpc uses RELA style relocs, so if emitting a reloc the field
6792 contents can stay at zero. */
6793 #define APPLY_RELOC fixP->fx_done
6794 #else
6795 #define APPLY_RELOC 1
6796 #endif
6797 if ((fieldval != 0 && APPLY_RELOC) || operand->insert != NULL)
6798 {
6799 unsigned long insn;
6800 unsigned char *where;
6801
6802 /* Fetch the instruction, insert the fully resolved operand
6803 value, and stuff the instruction back again. */
6804 where = (unsigned char *) fixP->fx_frag->fr_literal + fixP->fx_where;
6805 if (target_big_endian)
6806 {
6807 if (fixP->fx_size == 4)
6808 insn = bfd_getb32 (where);
6809 else
6810 insn = bfd_getb16 (where);
6811 }
6812 else
6813 {
6814 if (fixP->fx_size == 4)
6815 insn = bfd_getl32 (where);
6816 else
6817 insn = bfd_getl16 (where);
6818 }
6819 insn = ppc_insert_operand (insn, operand, fieldval,
6820 fixP->tc_fix_data.ppc_cpu,
6821 fixP->fx_file, fixP->fx_line);
6822 if (target_big_endian)
6823 {
6824 if (fixP->fx_size == 4)
6825 bfd_putb32 (insn, where);
6826 else
6827 bfd_putb16 (insn, where);
6828 }
6829 else
6830 {
6831 if (fixP->fx_size == 4)
6832 bfd_putl32 (insn, where);
6833 else
6834 bfd_putl16 (insn, where);
6835 }
6836 }
6837
6838 if (fixP->fx_done)
6839 /* Nothing else to do here. */
6840 return;
6841
6842 gas_assert (fixP->fx_addsy != NULL);
6843 if (fixP->fx_r_type == BFD_RELOC_NONE)
6844 {
6845 const char *sfile;
6846 unsigned int sline;
6847
6848 /* Use expr_symbol_where to see if this is an expression
6849 symbol. */
6850 if (expr_symbol_where (fixP->fx_addsy, &sfile, &sline))
6851 as_bad_where (fixP->fx_file, fixP->fx_line,
6852 _("unresolved expression that must be resolved"));
6853 else
6854 as_bad_where (fixP->fx_file, fixP->fx_line,
6855 _("unsupported relocation against %s"),
6856 S_GET_NAME (fixP->fx_addsy));
6857 fixP->fx_done = 1;
6858 return;
6859 }
6860 }
6861 else
6862 {
6863 /* Handle relocs in data. */
6864 switch (fixP->fx_r_type)
6865 {
6866 case BFD_RELOC_VTABLE_INHERIT:
6867 if (fixP->fx_addsy
6868 && !S_IS_DEFINED (fixP->fx_addsy)
6869 && !S_IS_WEAK (fixP->fx_addsy))
6870 S_SET_WEAK (fixP->fx_addsy);
6871 /* Fall thru */
6872
6873 case BFD_RELOC_VTABLE_ENTRY:
6874 fixP->fx_done = 0;
6875 break;
6876
6877 #ifdef OBJ_ELF
6878 /* These can appear with @l etc. in data. */
6879 case BFD_RELOC_LO16:
6880 case BFD_RELOC_LO16_PCREL:
6881 case BFD_RELOC_HI16:
6882 case BFD_RELOC_HI16_PCREL:
6883 case BFD_RELOC_HI16_S:
6884 case BFD_RELOC_HI16_S_PCREL:
6885 case BFD_RELOC_PPC64_HIGHER:
6886 case BFD_RELOC_PPC64_HIGHER_S:
6887 case BFD_RELOC_PPC64_HIGHEST:
6888 case BFD_RELOC_PPC64_HIGHEST_S:
6889 case BFD_RELOC_PPC64_ADDR16_HIGH:
6890 case BFD_RELOC_PPC64_ADDR16_HIGHA:
6891 case BFD_RELOC_PPC64_ADDR64_LOCAL:
6892 break;
6893
6894 case BFD_RELOC_PPC_DTPMOD:
6895 case BFD_RELOC_PPC_TPREL:
6896 case BFD_RELOC_PPC_DTPREL:
6897 S_SET_THREAD_LOCAL (fixP->fx_addsy);
6898 break;
6899
6900 /* Just punt all of these to the linker. */
6901 case BFD_RELOC_PPC_B16_BRTAKEN:
6902 case BFD_RELOC_PPC_B16_BRNTAKEN:
6903 case BFD_RELOC_16_GOTOFF:
6904 case BFD_RELOC_LO16_GOTOFF:
6905 case BFD_RELOC_HI16_GOTOFF:
6906 case BFD_RELOC_HI16_S_GOTOFF:
6907 case BFD_RELOC_LO16_PLTOFF:
6908 case BFD_RELOC_HI16_PLTOFF:
6909 case BFD_RELOC_HI16_S_PLTOFF:
6910 case BFD_RELOC_PPC_COPY:
6911 case BFD_RELOC_PPC_GLOB_DAT:
6912 case BFD_RELOC_16_BASEREL:
6913 case BFD_RELOC_LO16_BASEREL:
6914 case BFD_RELOC_HI16_BASEREL:
6915 case BFD_RELOC_HI16_S_BASEREL:
6916 case BFD_RELOC_PPC_TLS:
6917 case BFD_RELOC_PPC_DTPREL16_LO:
6918 case BFD_RELOC_PPC_DTPREL16_HI:
6919 case BFD_RELOC_PPC_DTPREL16_HA:
6920 case BFD_RELOC_PPC_TPREL16_LO:
6921 case BFD_RELOC_PPC_TPREL16_HI:
6922 case BFD_RELOC_PPC_TPREL16_HA:
6923 case BFD_RELOC_PPC_GOT_TLSGD16:
6924 case BFD_RELOC_PPC_GOT_TLSGD16_LO:
6925 case BFD_RELOC_PPC_GOT_TLSGD16_HI:
6926 case BFD_RELOC_PPC_GOT_TLSGD16_HA:
6927 case BFD_RELOC_PPC_GOT_TLSLD16:
6928 case BFD_RELOC_PPC_GOT_TLSLD16_LO:
6929 case BFD_RELOC_PPC_GOT_TLSLD16_HI:
6930 case BFD_RELOC_PPC_GOT_TLSLD16_HA:
6931 case BFD_RELOC_PPC_GOT_DTPREL16:
6932 case BFD_RELOC_PPC_GOT_DTPREL16_LO:
6933 case BFD_RELOC_PPC_GOT_DTPREL16_HI:
6934 case BFD_RELOC_PPC_GOT_DTPREL16_HA:
6935 case BFD_RELOC_PPC_GOT_TPREL16:
6936 case BFD_RELOC_PPC_GOT_TPREL16_LO:
6937 case BFD_RELOC_PPC_GOT_TPREL16_HI:
6938 case BFD_RELOC_PPC_GOT_TPREL16_HA:
6939 case BFD_RELOC_24_PLT_PCREL:
6940 case BFD_RELOC_PPC_LOCAL24PC:
6941 case BFD_RELOC_32_PLT_PCREL:
6942 case BFD_RELOC_GPREL16:
6943 case BFD_RELOC_PPC_VLE_SDAREL_LO16A:
6944 case BFD_RELOC_PPC_VLE_SDAREL_HI16A:
6945 case BFD_RELOC_PPC_VLE_SDAREL_HA16A:
6946 case BFD_RELOC_PPC_EMB_NADDR32:
6947 case BFD_RELOC_PPC_EMB_NADDR16:
6948 case BFD_RELOC_PPC_EMB_NADDR16_LO:
6949 case BFD_RELOC_PPC_EMB_NADDR16_HI:
6950 case BFD_RELOC_PPC_EMB_NADDR16_HA:
6951 case BFD_RELOC_PPC_EMB_SDAI16:
6952 case BFD_RELOC_PPC_EMB_SDA2REL:
6953 case BFD_RELOC_PPC_EMB_SDA2I16:
6954 case BFD_RELOC_PPC_EMB_SDA21:
6955 case BFD_RELOC_PPC_VLE_SDA21_LO:
6956 case BFD_RELOC_PPC_EMB_MRKREF:
6957 case BFD_RELOC_PPC_EMB_RELSEC16:
6958 case BFD_RELOC_PPC_EMB_RELST_LO:
6959 case BFD_RELOC_PPC_EMB_RELST_HI:
6960 case BFD_RELOC_PPC_EMB_RELST_HA:
6961 case BFD_RELOC_PPC_EMB_BIT_FLD:
6962 case BFD_RELOC_PPC_EMB_RELSDA:
6963 case BFD_RELOC_PPC64_TOC:
6964 case BFD_RELOC_PPC_TOC16:
6965 case BFD_RELOC_PPC64_TOC16_LO:
6966 case BFD_RELOC_PPC64_TOC16_HI:
6967 case BFD_RELOC_PPC64_TOC16_HA:
6968 case BFD_RELOC_PPC64_DTPREL16_HIGH:
6969 case BFD_RELOC_PPC64_DTPREL16_HIGHA:
6970 case BFD_RELOC_PPC64_DTPREL16_HIGHER:
6971 case BFD_RELOC_PPC64_DTPREL16_HIGHERA:
6972 case BFD_RELOC_PPC64_DTPREL16_HIGHEST:
6973 case BFD_RELOC_PPC64_DTPREL16_HIGHESTA:
6974 case BFD_RELOC_PPC64_TPREL16_HIGH:
6975 case BFD_RELOC_PPC64_TPREL16_HIGHA:
6976 case BFD_RELOC_PPC64_TPREL16_HIGHER:
6977 case BFD_RELOC_PPC64_TPREL16_HIGHERA:
6978 case BFD_RELOC_PPC64_TPREL16_HIGHEST:
6979 case BFD_RELOC_PPC64_TPREL16_HIGHESTA:
6980 fixP->fx_done = 0;
6981 break;
6982 #endif
6983
6984 #ifdef OBJ_XCOFF
6985 case BFD_RELOC_NONE:
6986 #endif
6987 case BFD_RELOC_CTOR:
6988 case BFD_RELOC_32:
6989 case BFD_RELOC_32_PCREL:
6990 case BFD_RELOC_RVA:
6991 case BFD_RELOC_64:
6992 case BFD_RELOC_64_PCREL:
6993 case BFD_RELOC_16:
6994 case BFD_RELOC_16_PCREL:
6995 case BFD_RELOC_8:
6996 break;
6997
6998 default:
6999 fprintf (stderr,
7000 _("Gas failure, reloc value %d\n"), fixP->fx_r_type);
7001 fflush (stderr);
7002 abort ();
7003 }
7004
7005 if (fixP->fx_size && APPLY_RELOC)
7006 md_number_to_chars (fixP->fx_frag->fr_literal + fixP->fx_where,
7007 fieldval, fixP->fx_size);
7008 if (warn_476
7009 && (seg->flags & SEC_CODE) != 0
7010 && fixP->fx_size == 4
7011 && fixP->fx_done
7012 && !fixP->fx_tcbit
7013 && (fixP->fx_r_type == BFD_RELOC_32
7014 || fixP->fx_r_type == BFD_RELOC_CTOR
7015 || fixP->fx_r_type == BFD_RELOC_32_PCREL))
7016 as_warn_where (fixP->fx_file, fixP->fx_line,
7017 _("data in executable section"));
7018 }
7019
7020 /* We are only able to convert some relocs to pc-relative. */
7021 if (!fixP->fx_done && fixP->fx_pcrel)
7022 {
7023 switch (fixP->fx_r_type)
7024 {
7025 case BFD_RELOC_LO16:
7026 fixP->fx_r_type = BFD_RELOC_LO16_PCREL;
7027 break;
7028
7029 case BFD_RELOC_HI16:
7030 fixP->fx_r_type = BFD_RELOC_HI16_PCREL;
7031 break;
7032
7033 case BFD_RELOC_HI16_S:
7034 fixP->fx_r_type = BFD_RELOC_HI16_S_PCREL;
7035 break;
7036
7037 case BFD_RELOC_64:
7038 fixP->fx_r_type = BFD_RELOC_64_PCREL;
7039 break;
7040
7041 case BFD_RELOC_32:
7042 fixP->fx_r_type = BFD_RELOC_32_PCREL;
7043 break;
7044
7045 case BFD_RELOC_16:
7046 fixP->fx_r_type = BFD_RELOC_16_PCREL;
7047 break;
7048
7049 /* Some of course are already pc-relative. */
7050 case BFD_RELOC_LO16_PCREL:
7051 case BFD_RELOC_HI16_PCREL:
7052 case BFD_RELOC_HI16_S_PCREL:
7053 case BFD_RELOC_PPC_REL16DX_HA:
7054 case BFD_RELOC_64_PCREL:
7055 case BFD_RELOC_32_PCREL:
7056 case BFD_RELOC_16_PCREL:
7057 case BFD_RELOC_PPC_B16:
7058 case BFD_RELOC_PPC_B16_BRTAKEN:
7059 case BFD_RELOC_PPC_B16_BRNTAKEN:
7060 case BFD_RELOC_PPC_B26:
7061 case BFD_RELOC_PPC_LOCAL24PC:
7062 case BFD_RELOC_24_PLT_PCREL:
7063 case BFD_RELOC_32_PLT_PCREL:
7064 case BFD_RELOC_64_PLT_PCREL:
7065 case BFD_RELOC_PPC_VLE_REL8:
7066 case BFD_RELOC_PPC_VLE_REL15:
7067 case BFD_RELOC_PPC_VLE_REL24:
7068 break;
7069
7070 default:
7071 if (fixP->fx_addsy)
7072 {
7073 const char *sfile;
7074 unsigned int sline;
7075
7076 /* Use expr_symbol_where to see if this is an
7077 expression symbol. */
7078 if (expr_symbol_where (fixP->fx_addsy, &sfile, &sline))
7079 as_bad_where (fixP->fx_file, fixP->fx_line,
7080 _("unresolved expression that must"
7081 " be resolved"));
7082 else
7083 as_bad_where (fixP->fx_file, fixP->fx_line,
7084 _("cannot emit PC relative %s relocation"
7085 " against %s"),
7086 bfd_get_reloc_code_name (fixP->fx_r_type),
7087 S_GET_NAME (fixP->fx_addsy));
7088 }
7089 else
7090 as_bad_where (fixP->fx_file, fixP->fx_line,
7091 _("unable to resolve expression"));
7092 fixP->fx_done = 1;
7093 break;
7094 }
7095 }
7096
7097 #ifdef OBJ_ELF
7098 ppc_elf_validate_fix (fixP, seg);
7099 fixP->fx_addnumber = value;
7100
7101 /* PowerPC uses RELA relocs, ie. the reloc addend is stored separately
7102 from the section contents. If we are going to be emitting a reloc
7103 then the section contents are immaterial, so don't warn if they
7104 happen to overflow. Leave such warnings to ld. */
7105 if (!fixP->fx_done)
7106 {
7107 fixP->fx_no_overflow = 1;
7108
7109 /* Arrange to emit .TOC. as a normal symbol if used in anything
7110 but .TOC.@tocbase. */
7111 if (ppc_obj64
7112 && fixP->fx_r_type != BFD_RELOC_PPC64_TOC
7113 && fixP->fx_addsy != NULL
7114 && strcmp (S_GET_NAME (fixP->fx_addsy), ".TOC.") == 0)
7115 symbol_get_bfdsym (fixP->fx_addsy)->flags |= BSF_KEEP;
7116 }
7117 #else
7118 if (fixP->fx_r_type != BFD_RELOC_PPC_TOC16)
7119 fixP->fx_addnumber = 0;
7120 else
7121 {
7122 #ifdef TE_PE
7123 fixP->fx_addnumber = 0;
7124 #else
7125 /* We want to use the offset within the toc, not the actual VMA
7126 of the symbol. */
7127 fixP->fx_addnumber =
7128 - bfd_get_section_vma (stdoutput, S_GET_SEGMENT (fixP->fx_addsy))
7129 - S_GET_VALUE (ppc_toc_csect);
7130 /* Set *valP to avoid errors. */
7131 *valP = value;
7132 #endif
7133 }
7134 #endif
7135 }
7136
7137 /* Generate a reloc for a fixup. */
7138
7139 arelent *
7140 tc_gen_reloc (asection *seg ATTRIBUTE_UNUSED, fixS *fixp)
7141 {
7142 arelent *reloc;
7143
7144 reloc = (arelent *) xmalloc (sizeof (arelent));
7145
7146 reloc->sym_ptr_ptr = (asymbol **) xmalloc (sizeof (asymbol *));
7147 *reloc->sym_ptr_ptr = symbol_get_bfdsym (fixp->fx_addsy);
7148 reloc->address = fixp->fx_frag->fr_address + fixp->fx_where;
7149 reloc->howto = bfd_reloc_type_lookup (stdoutput, fixp->fx_r_type);
7150 if (reloc->howto == (reloc_howto_type *) NULL)
7151 {
7152 as_bad_where (fixp->fx_file, fixp->fx_line,
7153 _("reloc %d not supported by object file format"),
7154 (int) fixp->fx_r_type);
7155 return NULL;
7156 }
7157 reloc->addend = fixp->fx_addnumber;
7158
7159 return reloc;
7160 }
7161
7162 void
7163 ppc_cfi_frame_initial_instructions (void)
7164 {
7165 cfi_add_CFA_def_cfa (1, 0);
7166 }
7167
7168 int
7169 tc_ppc_regname_to_dw2regnum (char *regname)
7170 {
7171 unsigned int regnum = -1;
7172 unsigned int i;
7173 const char *p;
7174 char *q;
7175 static struct { const char *name; int dw2regnum; } regnames[] =
7176 {
7177 { "sp", 1 }, { "r.sp", 1 }, { "rtoc", 2 }, { "r.toc", 2 },
7178 { "mq", 64 }, { "lr", 65 }, { "ctr", 66 }, { "ap", 67 },
7179 { "cr", 70 }, { "xer", 76 }, { "vrsave", 109 }, { "vscr", 110 },
7180 { "spe_acc", 111 }, { "spefscr", 112 }
7181 };
7182
7183 for (i = 0; i < ARRAY_SIZE (regnames); ++i)
7184 if (strcmp (regnames[i].name, regname) == 0)
7185 return regnames[i].dw2regnum;
7186
7187 if (regname[0] == 'r' || regname[0] == 'f' || regname[0] == 'v')
7188 {
7189 p = regname + 1 + (regname[1] == '.');
7190 regnum = strtoul (p, &q, 10);
7191 if (p == q || *q || regnum >= 32)
7192 return -1;
7193 if (regname[0] == 'f')
7194 regnum += 32;
7195 else if (regname[0] == 'v')
7196 regnum += 77;
7197 }
7198 else if (regname[0] == 'c' && regname[1] == 'r')
7199 {
7200 p = regname + 2 + (regname[2] == '.');
7201 if (p[0] < '0' || p[0] > '7' || p[1])
7202 return -1;
7203 regnum = p[0] - '0' + 68;
7204 }
7205 return regnum;
7206 }
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