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252b5132 1\input texinfo @c -*-Texinfo-*-
f7e42eb4 2@c Copyright 1991, 1992, 1993, 1994, 1995, 1996, 1997, 1998, 1999, 2000,
2da5c037 3@c 2001, 2002, 2003, 2004, 2005
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4@c Free Software Foundation, Inc.
5@c UPDATE!! On future updates--
6@c (1) check for new machine-dep cmdline options in
7@c md_parse_option definitions in config/tc-*.c
8@c (2) for platform-specific directives, examine md_pseudo_op
9@c in config/tc-*.c
10@c (3) for object-format specific directives, examine obj_pseudo_op
11@c in config/obj-*.c
12@c (4) portable directives in potable[] in read.c
13@c %**start of header
14@setfilename as.info
15@c ---config---
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16@macro gcctabopt{body}
17@code{\body\}
18@end macro
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19@c defaults, config file may override:
20@set have-stabs
21@c ---
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22@c man begin NAME
23@c ---
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24@include asconfig.texi
25@include gasver.texi
26@c ---
0285c67d 27@c man end
4a4c4a1d 28@c ---
252b5132 29@c common OR combinations of conditions
c1253627
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30@ifset COFF
31@set COFF-ELF
32@end ifset
33@ifset ELF
34@set COFF-ELF
35@end ifset
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36@ifset AOUT
37@set aout-bout
38@end ifset
39@ifset ARM/Thumb
40@set ARM
41@end ifset
42@ifset BOUT
43@set aout-bout
44@end ifset
45@ifset H8/300
46@set H8
47@end ifset
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48@ifset SH
49@set H8
50@end ifset
51@ifset HPPA
52@set abnormal-separator
53@end ifset
54@c ------------
55@ifset GENERIC
56@settitle Using @value{AS}
57@end ifset
58@ifclear GENERIC
59@settitle Using @value{AS} (@value{TARGET})
60@end ifclear
61@setchapternewpage odd
62@c %**end of header
63
64@c @smallbook
65@c @set SMALL
66@c WARE! Some of the machine-dependent sections contain tables of machine
67@c instructions. Except in multi-column format, these tables look silly.
68@c Unfortunately, Texinfo doesn't have a general-purpose multi-col format, so
69@c the multi-col format is faked within @example sections.
70@c
71@c Again unfortunately, the natural size that fits on a page, for these tables,
72@c is different depending on whether or not smallbook is turned on.
73@c This matters, because of order: text flow switches columns at each page
74@c break.
75@c
76@c The format faked in this source works reasonably well for smallbook,
77@c not well for the default large-page format. This manual expects that if you
78@c turn on @smallbook, you will also uncomment the "@set SMALL" to enable the
79@c tables in question. You can turn on one without the other at your
80@c discretion, of course.
81@ifinfo
82@set SMALL
83@c the insn tables look just as silly in info files regardless of smallbook,
84@c might as well show 'em anyways.
85@end ifinfo
86
87@ifinfo
88@format
89START-INFO-DIR-ENTRY
90* As: (as). The GNU assembler.
59455fb1 91* Gas: (as). The GNU assembler.
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92END-INFO-DIR-ENTRY
93@end format
94@end ifinfo
95
96@finalout
97@syncodeindex ky cp
98
99@ifinfo
100This file documents the GNU Assembler "@value{AS}".
101
0285c67d 102@c man begin COPYRIGHT
973eb340 103Copyright (C) 1991, 92, 93, 94, 95, 96, 97, 98, 99, 2000, 2001, 2002 Free Software Foundation, Inc.
252b5132 104
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105Permission is granted to copy, distribute and/or modify this document
106under the terms of the GNU Free Documentation License, Version 1.1
107or any later version published by the Free Software Foundation;
108with no Invariant Sections, with no Front-Cover Texts, and with no
109Back-Cover Texts. A copy of the license is included in the
c1253627 110section entitled ``GNU Free Documentation License''.
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111
112@c man end
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113
114@ignore
115Permission is granted to process this file through Tex and print the
116results, provided the printed document carries copying permission
117notice identical to this one except for the removal of this paragraph
118(this paragraph not being relevant to the printed manual).
119
120@end ignore
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121@end ifinfo
122
123@titlepage
124@title Using @value{AS}
125@subtitle The @sc{gnu} Assembler
126@ifclear GENERIC
127@subtitle for the @value{TARGET} family
128@end ifclear
129@sp 1
130@subtitle Version @value{VERSION}
131@sp 1
132@sp 13
133The Free Software Foundation Inc. thanks The Nice Computer
134Company of Australia for loaning Dean Elsner to write the
a4fb0134 135first (Vax) version of @command{as} for Project @sc{gnu}.
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136The proprietors, management and staff of TNCCA thank FSF for
137distracting the boss while they got some work
138done.
139@sp 3
140@author Dean Elsner, Jay Fenlason & friends
141@page
142@tex
143{\parskip=0pt
144\hfill {\it Using {\tt @value{AS}}}\par
145\hfill Edited by Cygnus Support\par
146}
147%"boxit" macro for figures:
148%Modified from Knuth's ``boxit'' macro from TeXbook (answer to exercise 21.3)
149\gdef\boxit#1#2{\vbox{\hrule\hbox{\vrule\kern3pt
150 \vbox{\parindent=0pt\parskip=0pt\hsize=#1\kern3pt\strut\hfil
151#2\hfil\strut\kern3pt}\kern3pt\vrule}\hrule}}%box with visible outline
152\gdef\ibox#1#2{\hbox to #1{#2\hfil}\kern8pt}% invisible box
153@end tex
154
155@vskip 0pt plus 1filll
973eb340 156Copyright @copyright{} 1991, 92, 93, 94, 95, 96, 97, 98, 99, 2000, 2001, 2002 Free Software Foundation, Inc.
252b5132 157
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158 Permission is granted to copy, distribute and/or modify this document
159 under the terms of the GNU Free Documentation License, Version 1.1
160 or any later version published by the Free Software Foundation;
161 with no Invariant Sections, with no Front-Cover Texts, and with no
162 Back-Cover Texts. A copy of the license is included in the
c1253627 163 section entitled ``GNU Free Documentation License''.
252b5132 164
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165@end titlepage
166
2e64b665 167@ifnottex
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168@node Top
169@top Using @value{AS}
170
a4fb0134 171This file is a user guide to the @sc{gnu} assembler @command{@value{AS}} version
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172@value{VERSION}.
173@ifclear GENERIC
a4fb0134 174This version of the file describes @command{@value{AS}} configured to generate
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175code for @value{TARGET} architectures.
176@end ifclear
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177
178This document is distributed under the terms of the GNU Free
179Documentation License. A copy of the license is included in the
c1253627 180section entitled ``GNU Free Documentation License''.
cf055d54 181
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182@menu
183* Overview:: Overview
184* Invoking:: Command-Line Options
185* Syntax:: Syntax
186* Sections:: Sections and Relocation
187* Symbols:: Symbols
188* Expressions:: Expressions
189* Pseudo Ops:: Assembler Directives
190* Machine Dependencies:: Machine Dependent Features
191* Reporting Bugs:: Reporting Bugs
192* Acknowledgements:: Who Did What
cf055d54 193* GNU Free Documentation License:: GNU Free Documentation License
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194* Index:: Index
195@end menu
2e64b665 196@end ifnottex
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197
198@node Overview
199@chapter Overview
200@iftex
a4fb0134 201This manual is a user guide to the @sc{gnu} assembler @command{@value{AS}}.
252b5132 202@ifclear GENERIC
a4fb0134 203This version of the manual describes @command{@value{AS}} configured to generate
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204code for @value{TARGET} architectures.
205@end ifclear
206@end iftex
207
208@cindex invocation summary
209@cindex option summary
210@cindex summary of options
a4fb0134 211Here is a brief summary of how to invoke @command{@value{AS}}. For details,
8dfa0188 212@pxref{Invoking,,Command-Line Options}.
252b5132 213
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214@c man title AS the portable GNU assembler.
215
a4fb0134 216@ignore
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217@c man begin SEEALSO
218gcc(1), ld(1), and the Info entries for @file{binutils} and @file{ld}.
219@c man end
a4fb0134 220@end ignore
0285c67d 221
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222@c We don't use deffn and friends for the following because they seem
223@c to be limited to one line for the header.
224@smallexample
0285c67d 225@c man begin SYNOPSIS
caa32fe5 226@value{AS} [@b{-a}[@b{cdhlns}][=@var{file}]] [@b{--alternate}] [@b{-D}]
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227 [@b{--defsym} @var{sym}=@var{val}] [@b{-f}] [@b{-g}] [@b{--gstabs}]
228 [@b{--gstabs+}] [@b{--gdwarf-2}] [@b{--help}] [@b{-I} @var{dir}] [@b{-J}]
229 [@b{-K}] [@b{-L}] [@b{--listing-lhs-width}=@var{NUM}]
230 [@b{--listing-lhs-width2}=@var{NUM}] [@b{--listing-rhs-width}=@var{NUM}]
231 [@b{--listing-cont-lines}=@var{NUM}] [@b{--keep-locals}] [@b{-o}
232 @var{objfile}] [@b{-R}] [@b{--reduce-memory-overheads}] [@b{--statistics}]
233 [@b{-v}] [@b{-version}] [@b{--version}] [@b{-W}] [@b{--warn}]
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234 [@b{--fatal-warnings}] [@b{-w}] [@b{-x}] [@b{-Z}] [@b{@@@var{FILE}}]
235 [@b{--target-help}] [@var{target-options}]
236 [@b{--}|@var{files} @dots{}]
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237@c
238@c Target dependent options are listed below. Keep the list sorted.
239@c Add an empty line for separation.
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240@ifset ALPHA
241
242@emph{Target Alpha options:}
243 [@b{-m@var{cpu}}]
244 [@b{-mdebug} | @b{-no-mdebug}]
245 [@b{-relax}] [@b{-g}] [@b{-G@var{size}}]
246 [@b{-F}] [@b{-32addr}]
247@end ifset
252b5132 248@ifset ARC
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249
250@emph{Target ARC options:}
251 [@b{-marc[5|6|7|8]}]
252 [@b{-EB}|@b{-EL}]
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253@end ifset
254@ifset ARM
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255
256@emph{Target ARM options:}
03b1477f 257@c Don't document the deprecated options
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258 [@b{-mcpu}=@var{processor}[+@var{extension}@dots{}]]
259 [@b{-march}=@var{architecture}[+@var{extension}@dots{}]]
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260 [@b{-mfpu}=@var{floating-point-format}]
261 [@b{-mfloat-abi}=@var{abi}]
d507cf36 262 [@b{-meabi}=@var{ver}]
03b1477f 263 [@b{-mthumb}]
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264 [@b{-EB}|@b{-EL}]
265 [@b{-mapcs-32}|@b{-mapcs-26}|@b{-mapcs-float}|
266 @b{-mapcs-reentrant}]
7f266840 267 [@b{-mthumb-interwork}] [@b{-k}]
252b5132 268@end ifset
328eb32e
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269@ifset CRIS
270
271@emph{Target CRIS options:}
272 [@b{--underscore} | @b{--no-underscore}]
273 [@b{--pic}] [@b{-N}]
274 [@b{--emulation=criself} | @b{--emulation=crisaout}]
ae57792d 275 [@b{--march=v0_v10} | @b{--march=v10} | @b{--march=v32} | @b{--march=common_v10_v32}]
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276@c Deprecated -- deliberately not documented.
277@c [@b{-h}] [@b{-H}]
278@end ifset
252b5132 279@ifset D10V
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280
281@emph{Target D10V options:}
282 [@b{-O}]
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283@end ifset
284@ifset D30V
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285
286@emph{Target D30V options:}
287 [@b{-O}|@b{-n}|@b{-N}]
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288@end ifset
289@ifset H8
c2dcd04e 290@c Renesas family chips have no machine-dependent assembler options
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291@end ifset
292@ifset HPPA
293@c HPPA has no machine-dependent assembler options (yet).
294@end ifset
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295@ifset I80386
296
297@emph{Target i386 options:}
12b55ccc 298 [@b{--32}|@b{--64}] [@b{-n}]
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299@end ifset
300@ifset I960
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301
302@emph{Target i960 options:}
252b5132 303@c see md_parse_option in tc-i960.c
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304 [@b{-ACA}|@b{-ACA_A}|@b{-ACB}|@b{-ACC}|@b{-AKA}|@b{-AKB}|
305 @b{-AKC}|@b{-AMC}]
306 [@b{-b}] [@b{-no-relax}]
252b5132 307@end ifset
587fe2b3 308@ifset IA64
a4fb0134 309
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310@emph{Target IA-64 options:}
311 [@b{-mconstant-gp}|@b{-mauto-pic}]
312 [@b{-milp32}|@b{-milp64}|@b{-mlp64}|@b{-mp64}]
313 [@b{-mle}|@b{mbe}]
8c2fda1d 314 [@b{-mtune=itanium1}|@b{-mtune=itanium2}]
970d6792 315 [@b{-munwind-check=warning}|@b{-munwind-check=error}]
91d777ee 316 [@b{-mhint.b=ok}|@b{-mhint.b=warning}|@b{-mhint.b=error}]
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317 [@b{-x}|@b{-xexplicit}] [@b{-xauto}] [@b{-xdebug}]
318@end ifset
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319@ifset IP2K
320
321@emph{Target IP2K options:}
322 [@b{-mip2022}|@b{-mip2022ext}]
323@end ifset
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324@ifset M32C
325
326@emph{Target M32C options:}
327 [@b{-m32c}|@b{-m16c}]
328@end ifset
587fe2b3 329@ifset M32R
9e32ca89 330
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331@emph{Target M32R options:}
332 [@b{--m32rx}|@b{--[no-]warn-explicit-parallel-conflicts}|
587fe2b3 333 @b{--W[n]p}]
ec694b89 334@end ifset
252b5132 335@ifset M680X0
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336
337@emph{Target M680X0 options:}
338 [@b{-l}] [@b{-m68000}|@b{-m68010}|@b{-m68020}|@dots{}]
252b5132 339@end ifset
60bcf0fa 340@ifset M68HC11
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341
342@emph{Target M68HC11 options:}
d01030e6 343 [@b{-m68hc11}|@b{-m68hc12}|@b{-m68hcs12}]
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344 [@b{-mshort}|@b{-mlong}]
345 [@b{-mshort-double}|@b{-mlong-double}]
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346 [@b{--force-long-branchs}] [@b{--short-branchs}]
347 [@b{--strict-direct-mode}] [@b{--print-insn-syntax}]
348 [@b{--print-opcodes}] [@b{--generate-example}]
349@end ifset
350@ifset MCORE
351
352@emph{Target MCORE options:}
353 [@b{-jsri2bsr}] [@b{-sifilter}] [@b{-relax}]
354 [@b{-mcpu=[210|340]}]
60bcf0fa 355@end ifset
252b5132 356@ifset MIPS
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357
358@emph{Target MIPS options:}
78849248 359 [@b{-nocpp}] [@b{-EL}] [@b{-EB}] [@b{-O}[@var{optimization level}]]
437ee9d5 360 [@b{-g}[@var{debug level}]] [@b{-G} @var{num}] [@b{-KPIC}] [@b{-call_shared}]
1ffcab4b 361 [@b{-non_shared}] [@b{-xgot}]
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362 [@b{-mabi}=@var{ABI}] [@b{-32}] [@b{-n32}] [@b{-64}] [@b{-mfp32}] [@b{-mgp32}]
363 [@b{-march}=@var{CPU}] [@b{-mtune}=@var{CPU}] [@b{-mips1}] [@b{-mips2}]
af7ee8bf 364 [@b{-mips3}] [@b{-mips4}] [@b{-mips5}] [@b{-mips32}] [@b{-mips32r2}]
5f74bc13 365 [@b{-mips64}] [@b{-mips64r2}]
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366 [@b{-construct-floats}] [@b{-no-construct-floats}]
367 [@b{-trap}] [@b{-no-break}] [@b{-break}] [@b{-no-trap}]
368 [@b{-mfix7000}] [@b{-mno-fix7000}]
369 [@b{-mips16}] [@b{-no-mips16}]
1f25f5d3 370 [@b{-mips3d}] [@b{-no-mips3d}]
deec1734 371 [@b{-mdmx}] [@b{-no-mdmx}]
2ef2b9ae 372 [@b{-mdsp}] [@b{-mno-dsp}]
ef2e4d86 373 [@b{-mmt}] [@b{-mno-mt}]
ecb4347a 374 [@b{-mdebug}] [@b{-no-mdebug}]
dcd410fe 375 [@b{-mpdr}] [@b{-mno-pdr}]
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376@end ifset
377@ifset MMIX
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378
379@emph{Target MMIX options:}
380 [@b{--fixed-special-register-names}] [@b{--globalize-symbols}]
381 [@b{--gnu-syntax}] [@b{--relax}] [@b{--no-predefined-symbols}]
382 [@b{--no-expand}] [@b{--no-merge-gregs}] [@b{-x}]
973eb340 383 [@b{--linker-allocated-gregs}]
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384@end ifset
385@ifset PDP11
386
387@emph{Target PDP11 options:}
388 [@b{-mpic}|@b{-mno-pic}] [@b{-mall}] [@b{-mno-extensions}]
389 [@b{-m}@var{extension}|@b{-mno-}@var{extension}]
390 [@b{-m}@var{cpu}] [@b{-m}@var{machine}]
391@end ifset
392@ifset PJ
393
394@emph{Target picoJava options:}
395 [@b{-mb}|@b{-me}]
396@end ifset
397@ifset PPC
398
399@emph{Target PowerPC options:}
400 [@b{-mpwrx}|@b{-mpwr2}|@b{-mpwr}|@b{-m601}|@b{-mppc}|@b{-mppc32}|@b{-m603}|@b{-m604}|
401 @b{-m403}|@b{-m405}|@b{-mppc64}|@b{-m620}|@b{-mppc64bridge}|@b{-mbooke}|
402 @b{-mbooke32}|@b{-mbooke64}]
403 [@b{-mcom}|@b{-many}|@b{-maltivec}] [@b{-memb}]
404 [@b{-mregnames}|@b{-mno-regnames}]
405 [@b{-mrelocatable}|@b{-mrelocatable-lib}]
406 [@b{-mlittle}|@b{-mlittle-endian}|@b{-mbig}|@b{-mbig-endian}]
407 [@b{-msolaris}|@b{-mno-solaris}]
408@end ifset
409@ifset SPARC
410
411@emph{Target SPARC options:}
412@c The order here is important. See c-sparc.texi.
413 [@b{-Av6}|@b{-Av7}|@b{-Av8}|@b{-Asparclet}|@b{-Asparclite}
414 @b{-Av8plus}|@b{-Av8plusa}|@b{-Av9}|@b{-Av9a}]
415 [@b{-xarch=v8plus}|@b{-xarch=v8plusa}] [@b{-bump}]
416 [@b{-32}|@b{-64}]
417@end ifset
418@ifset TIC54X
419
420@emph{Target TIC54X options:}
421 [@b{-mcpu=54[123589]}|@b{-mcpu=54[56]lp}] [@b{-mfar-mode}|@b{-mf}]
422 [@b{-merrors-to-file} @var{<filename>}|@b{-me} @var{<filename>}]
423@end ifset
3c9b82ba
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424
425@ifset Z80
426
427@emph{Target Z80 options:}
428 [@b{-z80}] [@b{-r800}]
429 [@b{ -ignore-undocumented-instructions}] [@b{-Wnud}]
430 [@b{ -ignore-unportable-instructions}] [@b{-Wnup}]
431 [@b{ -warn-undocumented-instructions}] [@b{-Wud}]
432 [@b{ -warn-unportable-instructions}] [@b{-Wup}]
433 [@b{ -forbid-undocumented-instructions}] [@b{-Fud}]
434 [@b{ -forbid-unportable-instructions}] [@b{-Fup}]
435@end ifset
436
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437@ifset Z8000
438@c Z8000 has no machine-dependent assembler options
252b5132 439@end ifset
e0001a05
NC
440@ifset XTENSA
441
442@emph{Target Xtensa options:}
43cd72b9 443 [@b{--[no-]text-section-literals}] [@b{--[no-]absolute-literals}]
e0001a05 444 [@b{--[no-]target-align}] [@b{--[no-]longcalls}]
43cd72b9 445 [@b{--[no-]transform}]
9456465c 446 [@b{--rename-section} @var{oldname}=@var{newname}]
e0001a05 447@end ifset
0285c67d 448@c man end
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449@end smallexample
450
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451@c man begin OPTIONS
452
a4fb0134 453@table @gcctabopt
a0b7da79
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454@include @value{top_srcdir}/../libiberty/at-file.texi
455
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456@item -a[cdhlmns]
457Turn on listings, in any of a variety of ways:
458
a4fb0134 459@table @gcctabopt
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460@item -ac
461omit false conditionals
462
463@item -ad
464omit debugging directives
465
466@item -ah
467include high-level source
468
469@item -al
470include assembly
471
472@item -am
473include macro expansions
474
475@item -an
476omit forms processing
477
478@item -as
479include symbols
480
481@item =file
482set the name of the listing file
483@end table
484
485You may combine these options; for example, use @samp{-aln} for assembly
486listing without forms processing. The @samp{=file} option, if used, must be
487the last one. By itself, @samp{-a} defaults to @samp{-ahls}.
488
caa32fe5
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489@item --alternate
490Begin in alternate macro mode, see @ref{Altmacro,,@code{.altmacro}}.
491
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492@item -D
493Ignored. This option is accepted for script compatibility with calls to
494other assemblers.
495
496@item --defsym @var{sym}=@var{value}
497Define the symbol @var{sym} to be @var{value} before assembling the input file.
498@var{value} must be an integer constant. As in C, a leading @samp{0x}
499indicates a hexadecimal value, and a leading @samp{0} indicates an octal value.
500
501@item -f
502``fast''---skip whitespace and comment preprocessing (assume source is
503compiler output).
504
329e276d
NC
505@item -g
506@itemx --gen-debug
507Generate debugging information for each assembler source line using whichever
508debug format is preferred by the target. This currently means either STABS,
509ECOFF or DWARF2.
510
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511@item --gstabs
512Generate stabs debugging information for each assembler line. This
513may help debugging assembler code, if the debugger can handle it.
514
05da4302
NC
515@item --gstabs+
516Generate stabs debugging information for each assembler line, with GNU
517extensions that probably only gdb can handle, and that could make other
518debuggers crash or refuse to read your program. This
519may help debugging assembler code. Currently the only GNU extension is
520the location of the current working directory at assembling time.
521
329e276d 522@item --gdwarf-2
cdf82bcf 523Generate DWARF2 debugging information for each assembler line. This
c1253627 524may help debugging assembler code, if the debugger can handle it. Note---this
85a39694 525option is only supported by some targets, not all of them.
cdf82bcf 526
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527@item --help
528Print a summary of the command line options and exit.
529
ea20a7da
CC
530@item --target-help
531Print a summary of all target specific options and exit.
532
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533@item -I @var{dir}
534Add directory @var{dir} to the search list for @code{.include} directives.
535
536@item -J
537Don't warn about signed overflow.
538
539@item -K
540@ifclear DIFF-TBL-KLUGE
541This option is accepted but has no effect on the @value{TARGET} family.
542@end ifclear
543@ifset DIFF-TBL-KLUGE
544Issue warnings when difference tables altered for long displacements.
545@end ifset
546
547@item -L
548@itemx --keep-locals
549Keep (in the symbol table) local symbols. On traditional a.out systems
550these start with @samp{L}, but different systems have different local
551label prefixes.
552
c3a27914
NC
553@item --listing-lhs-width=@var{number}
554Set the maximum width, in words, of the output data column for an assembler
555listing to @var{number}.
556
557@item --listing-lhs-width2=@var{number}
558Set the maximum width, in words, of the output data column for continuation
559lines in an assembler listing to @var{number}.
560
561@item --listing-rhs-width=@var{number}
562Set the maximum width of an input source line, as displayed in a listing, to
563@var{number} bytes.
564
565@item --listing-cont-lines=@var{number}
566Set the maximum number of lines printed in a listing for a single line of input
567to @var{number} + 1.
568
252b5132 569@item -o @var{objfile}
a4fb0134 570Name the object-file output from @command{@value{AS}} @var{objfile}.
252b5132
RH
571
572@item -R
573Fold the data section into the text section.
574
4bdd3565
NC
575@kindex --hash-size=@var{number}
576Set the default size of GAS's hash tables to a prime number close to
577@var{number}. Increasing this value can reduce the length of time it takes the
578assembler to perform its tasks, at the expense of increasing the assembler's
579memory requirements. Similarly reducing this value can reduce the memory
580requirements at the expense of speed.
581
582@item --reduce-memory-overheads
583This option reduces GAS's memory requirements, at the expense of making the
584assembly processes slower. Currently this switch is a synonym for
585@samp{--hash-size=4051}, but in the future it may have other effects as well.
586
252b5132
RH
587@item --statistics
588Print the maximum space (in bytes) and total time (in seconds) used by
589assembly.
590
591@item --strip-local-absolute
592Remove local absolute symbols from the outgoing symbol table.
593
594@item -v
595@itemx -version
a4fb0134 596Print the @command{as} version.
252b5132
RH
597
598@item --version
a4fb0134 599Print the @command{as} version and exit.
252b5132
RH
600
601@item -W
2bdd6cf5 602@itemx --no-warn
252b5132
RH
603Suppress warning messages.
604
2bdd6cf5
GK
605@item --fatal-warnings
606Treat warnings as errors.
607
608@item --warn
609Don't suppress warning messages or treat them as errors.
610
252b5132
RH
611@item -w
612Ignored.
613
614@item -x
615Ignored.
616
617@item -Z
618Generate an object file even after errors.
619
620@item -- | @var{files} @dots{}
621Standard input, or source files to assemble.
622
623@end table
624
625@ifset ARC
626The following options are available when @value{AS} is configured for
627an ARC processor.
628
a4fb0134 629@table @gcctabopt
0d2bcfaf
NC
630@item -marc[5|6|7|8]
631This option selects the core processor variant.
632@item -EB | -EL
633Select either big-endian (-EB) or little-endian (-EL) output.
252b5132
RH
634@end table
635@end ifset
636
637@ifset ARM
638The following options are available when @value{AS} is configured for the ARM
639processor family.
640
a4fb0134 641@table @gcctabopt
92081f48 642@item -mcpu=@var{processor}[+@var{extension}@dots{}]
cdf82bcf 643Specify which ARM processor variant is the target.
92081f48 644@item -march=@var{architecture}[+@var{extension}@dots{}]
cdf82bcf 645Specify which ARM architecture variant is used by the target.
03b1477f 646@item -mfpu=@var{floating-point-format}
a349d9dd 647Select which Floating Point architecture is the target.
33a392fb
PB
648@item -mfloat-abi=@var{abi}
649Select which floating point ABI is in use.
03b1477f
RE
650@item -mthumb
651Enable Thumb only instruction decoding.
7f266840 652@item -mapcs-32 | -mapcs-26 | -mapcs-float | -mapcs-reentrant
252b5132
RH
653Select which procedure calling convention is in use.
654@item -EB | -EL
655Select either big-endian (-EB) or little-endian (-EL) output.
cdf82bcf
NC
656@item -mthumb-interwork
657Specify that the code has been generated with interworking between Thumb and
658ARM code in mind.
659@item -k
660Specify that PIC code has been generated.
252b5132
RH
661@end table
662@end ifset
663
328eb32e
HPN
664@ifset CRIS
665See the info pages for documentation of the CRIS-specific options.
666@end ifset
667
252b5132
RH
668@ifset D10V
669The following options are available when @value{AS} is configured for
670a D10V processor.
a4fb0134 671@table @gcctabopt
252b5132
RH
672@cindex D10V optimization
673@cindex optimization, D10V
674@item -O
675Optimize output by parallelizing instructions.
676@end table
677@end ifset
678
679@ifset D30V
680The following options are available when @value{AS} is configured for a D30V
681processor.
a4fb0134 682@table @gcctabopt
252b5132
RH
683@cindex D30V optimization
684@cindex optimization, D30V
685@item -O
686Optimize output by parallelizing instructions.
687
688@cindex D30V nops
689@item -n
690Warn when nops are generated.
691
692@cindex D30V nops after 32-bit multiply
693@item -N
694Warn when a nop after a 32-bit multiply instruction is generated.
695@end table
696@end ifset
697
698@ifset I960
699The following options are available when @value{AS} is configured for the
700Intel 80960 processor.
701
a4fb0134 702@table @gcctabopt
252b5132
RH
703@item -ACA | -ACA_A | -ACB | -ACC | -AKA | -AKB | -AKC | -AMC
704Specify which variant of the 960 architecture is the target.
705
706@item -b
707Add code to collect statistics about branches taken.
708
709@item -no-relax
710Do not alter compare-and-branch instructions for long displacements;
711error if necessary.
712
713@end table
714@end ifset
715
a40cbfa3
NC
716@ifset IP2K
717The following options are available when @value{AS} is configured for the
ec88d317 718Ubicom IP2K series.
a40cbfa3
NC
719
720@table @gcctabopt
721
722@item -mip2022ext
723Specifies that the extended IP2022 instructions are allowed.
724
725@item -mip2022
8dfa0188 726Restores the default behaviour, which restricts the permitted instructions to
a40cbfa3
NC
727just the basic IP2022 ones.
728
729@end table
730@end ifset
731
49f58d10
JB
732@ifset M32C
733The following options are available when @value{AS} is configured for the
734Renesas M32C and M16C processors.
735
736@table @gcctabopt
737
738@item -m32c
739Assemble M32C instructions.
740
741@item -m16c
742Assemble M16C instructions (the default).
743
744@end table
745@end ifset
746
ec694b89
NC
747@ifset M32R
748The following options are available when @value{AS} is configured for the
26597c86 749Renesas M32R (formerly Mitsubishi M32R) series.
ec694b89 750
a4fb0134 751@table @gcctabopt
ec694b89
NC
752
753@item --m32rx
754Specify which processor in the M32R family is the target. The default
755is normally the M32R, but this option changes it to the M32RX.
756
757@item --warn-explicit-parallel-conflicts or --Wp
758Produce warning messages when questionable parallel constructs are
759encountered.
760
761@item --no-warn-explicit-parallel-conflicts or --Wnp
762Do not produce warning messages when questionable parallel constructs are
763encountered.
764
765@end table
766@end ifset
252b5132
RH
767
768@ifset M680X0
769The following options are available when @value{AS} is configured for the
770Motorola 68000 series.
771
a4fb0134 772@table @gcctabopt
252b5132
RH
773
774@item -l
775Shorten references to undefined symbols, to one word instead of two.
776
0285c67d
NC
777@item -m68000 | -m68008 | -m68010 | -m68020 | -m68030
778@itemx | -m68040 | -m68060 | -m68302 | -m68331 | -m68332
779@itemx | -m68333 | -m68340 | -mcpu32 | -m5200
252b5132
RH
780Specify what processor in the 68000 family is the target. The default
781is normally the 68020, but this can be changed at configuration time.
782
783@item -m68881 | -m68882 | -mno-68881 | -mno-68882
784The target machine does (or does not) have a floating-point coprocessor.
785The default is to assume a coprocessor for 68020, 68030, and cpu32. Although
786the basic 68000 is not compatible with the 68881, a combination of the
787two can be specified, since it's possible to do emulation of the
788coprocessor instructions with the main processor.
789
790@item -m68851 | -mno-68851
791The target machine does (or does not) have a memory-management
792unit coprocessor. The default is to assume an MMU for 68020 and up.
793
794@end table
795@end ifset
796
e135f41b
NC
797@ifset PDP11
798
799For details about the PDP-11 machine dependent features options,
800see @ref{PDP-11-Options}.
801
a4fb0134 802@table @gcctabopt
e135f41b
NC
803@item -mpic | -mno-pic
804Generate position-independent (or position-dependent) code. The
a4fb0134 805default is @option{-mpic}.
e135f41b
NC
806
807@item -mall
808@itemx -mall-extensions
809Enable all instruction set extensions. This is the default.
810
811@item -mno-extensions
812Disable all instruction set extensions.
813
814@item -m@var{extension} | -mno-@var{extension}
815Enable (or disable) a particular instruction set extension.
816
817@item -m@var{cpu}
818Enable the instruction set extensions supported by a particular CPU, and
819disable all other extensions.
820
821@item -m@var{machine}
822Enable the instruction set extensions supported by a particular machine
823model, and disable all other extensions.
824@end table
825
826@end ifset
827
041dd5a9
ILT
828@ifset PJ
829The following options are available when @value{AS} is configured for
830a picoJava processor.
831
a4fb0134 832@table @gcctabopt
041dd5a9
ILT
833
834@cindex PJ endianness
835@cindex endianness, PJ
836@cindex big endian output, PJ
837@item -mb
838Generate ``big endian'' format output.
839
840@cindex little endian output, PJ
841@item -ml
842Generate ``little endian'' format output.
843
844@end table
845@end ifset
846
60bcf0fa
NC
847@ifset M68HC11
848The following options are available when @value{AS} is configured for the
849Motorola 68HC11 or 68HC12 series.
850
a4fb0134 851@table @gcctabopt
60bcf0fa 852
d01030e6 853@item -m68hc11 | -m68hc12 | -m68hcs12
60bcf0fa
NC
854Specify what processor is the target. The default is
855defined by the configuration option when building the assembler.
856
2f904664
SC
857@item -mshort
858Specify to use the 16-bit integer ABI.
859
860@item -mlong
861Specify to use the 32-bit integer ABI.
862
863@item -mshort-double
864Specify to use the 32-bit double ABI.
865
866@item -mlong-double
867Specify to use the 64-bit double ABI.
868
60bcf0fa
NC
869@item --force-long-branchs
870Relative branches are turned into absolute ones. This concerns
871conditional branches, unconditional branches and branches to a
872sub routine.
873
874@item -S | --short-branchs
875Do not turn relative branchs into absolute ones
876when the offset is out of range.
877
878@item --strict-direct-mode
879Do not turn the direct addressing mode into extended addressing mode
880when the instruction does not support direct addressing mode.
881
882@item --print-insn-syntax
883Print the syntax of instruction in case of error.
884
885@item --print-opcodes
886print the list of instructions with syntax and then exit.
887
888@item --generate-example
889print an example of instruction for each possible instruction and then exit.
a4fb0134 890This option is only useful for testing @command{@value{AS}}.
60bcf0fa
NC
891
892@end table
893@end ifset
894
252b5132 895@ifset SPARC
a4fb0134 896The following options are available when @command{@value{AS}} is configured
252b5132
RH
897for the SPARC architecture:
898
a4fb0134 899@table @gcctabopt
252b5132
RH
900@item -Av6 | -Av7 | -Av8 | -Asparclet | -Asparclite
901@itemx -Av8plus | -Av8plusa | -Av9 | -Av9a
902Explicitly select a variant of the SPARC architecture.
903
904@samp{-Av8plus} and @samp{-Av8plusa} select a 32 bit environment.
905@samp{-Av9} and @samp{-Av9a} select a 64 bit environment.
906
907@samp{-Av8plusa} and @samp{-Av9a} enable the SPARC V9 instruction set with
908UltraSPARC extensions.
909
910@item -xarch=v8plus | -xarch=v8plusa
911For compatibility with the Solaris v9 assembler. These options are
912equivalent to -Av8plus and -Av8plusa, respectively.
913
914@item -bump
915Warn when the assembler switches to another architecture.
916@end table
917@end ifset
918
39bec121
TW
919@ifset TIC54X
920The following options are available when @value{AS} is configured for the 'c54x
921architecture.
922
a4fb0134 923@table @gcctabopt
39bec121
TW
924@item -mfar-mode
925Enable extended addressing mode. All addresses and relocations will assume
926extended addressing (usually 23 bits).
927@item -mcpu=@var{CPU_VERSION}
928Sets the CPU version being compiled for.
929@item -merrors-to-file @var{FILENAME}
930Redirect error output to a file, for broken systems which don't support such
931behaviour in the shell.
932@end table
933@end ifset
934
252b5132
RH
935@ifset MIPS
936The following options are available when @value{AS} is configured for
437ee9d5 937a @sc{mips} processor.
252b5132 938
a4fb0134 939@table @gcctabopt
252b5132
RH
940@item -G @var{num}
941This option sets the largest size of an object that can be referenced
942implicitly with the @code{gp} register. It is only accepted for targets that
943use ECOFF format, such as a DECstation running Ultrix. The default value is 8.
944
945@cindex MIPS endianness
946@cindex endianness, MIPS
947@cindex big endian output, MIPS
948@item -EB
949Generate ``big endian'' format output.
950
951@cindex little endian output, MIPS
952@item -EL
953Generate ``little endian'' format output.
954
955@cindex MIPS ISA
956@item -mips1
957@itemx -mips2
958@itemx -mips3
e7af610e 959@itemx -mips4
437ee9d5 960@itemx -mips5
e7af610e 961@itemx -mips32
af7ee8bf 962@itemx -mips32r2
4058e45f 963@itemx -mips64
5f74bc13 964@itemx -mips64r2
437ee9d5
TS
965Generate code for a particular @sc{mips} Instruction Set Architecture level.
966@samp{-mips1} is an alias for @samp{-march=r3000}, @samp{-mips2} is an
967alias for @samp{-march=r6000}, @samp{-mips3} is an alias for
968@samp{-march=r4000} and @samp{-mips4} is an alias for @samp{-march=r8000}.
5f74bc13
CD
969@samp{-mips5}, @samp{-mips32}, @samp{-mips32r2}, @samp{-mips64}, and
970@samp{-mips64r2}
af7ee8bf 971correspond to generic
5f74bc13
CD
972@samp{MIPS V}, @samp{MIPS32}, @samp{MIPS32 Release 2}, @samp{MIPS64},
973and @samp{MIPS64 Release 2}
974ISA processors, respectively.
437ee9d5
TS
975
976@item -march=@var{CPU}
977Generate code for a particular @sc{mips} cpu.
978
979@item -mtune=@var{cpu}
980Schedule and tune for a particular @sc{mips} cpu.
981
982@item -mfix7000
983@itemx -mno-fix7000
984Cause nops to be inserted if the read of the destination register
985of an mfhi or mflo instruction occurs in the following two instructions.
986
ecb4347a
DJ
987@item -mdebug
988@itemx -no-mdebug
989Cause stabs-style debugging output to go into an ECOFF-style .mdebug
990section instead of the standard ELF .stabs sections.
991
dcd410fe
RO
992@item -mpdr
993@itemx -mno-pdr
994Control generation of @code{.pdr} sections.
995
437ee9d5
TS
996@item -mgp32
997@itemx -mfp32
998The register sizes are normally inferred from the ISA and ABI, but these
999flags force a certain group of registers to be treated as 32 bits wide at
1000all times. @samp{-mgp32} controls the size of general-purpose registers
1001and @samp{-mfp32} controls the size of floating-point registers.
1002
1003@item -mips16
1004@itemx -no-mips16
1005Generate code for the MIPS 16 processor. This is equivalent to putting
1006@code{.set mips16} at the start of the assembly file. @samp{-no-mips16}
1007turns off this option.
252b5132 1008
1f25f5d3
CD
1009@item -mips3d
1010@itemx -no-mips3d
1011Generate code for the MIPS-3D Application Specific Extension.
1012This tells the assembler to accept MIPS-3D instructions.
1013@samp{-no-mips3d} turns off this option.
1014
deec1734
CD
1015@item -mdmx
1016@itemx -no-mdmx
1017Generate code for the MDMX Application Specific Extension.
1018This tells the assembler to accept MDMX instructions.
1019@samp{-no-mdmx} turns off this option.
1020
2ef2b9ae
CF
1021@item -mdsp
1022@itemx -mno-dsp
1023Generate code for the DSP Application Specific Extension.
1024This tells the assembler to accept DSP instructions.
1025@samp{-mno-dsp} turns off this option.
1026
ef2e4d86
CF
1027@item -mmt
1028@itemx -mno-mt
1029Generate code for the MT Application Specific Extension.
1030This tells the assembler to accept MT instructions.
1031@samp{-mno-mt} turns off this option.
1032
437ee9d5
TS
1033@item --construct-floats
1034@itemx --no-construct-floats
1035The @samp{--no-construct-floats} option disables the construction of
1036double width floating point constants by loading the two halves of the
1037value into the two single width floating point registers that make up
1038the double width register. By default @samp{--construct-floats} is
1039selected, allowing construction of these floating point constants.
252b5132
RH
1040
1041@cindex emulation
1042@item --emulation=@var{name}
a4fb0134 1043This option causes @command{@value{AS}} to emulate @command{@value{AS}} configured
252b5132
RH
1044for some other target, in all respects, including output format (choosing
1045between ELF and ECOFF only), handling of pseudo-opcodes which may generate
1046debugging information or store symbol table information, and default
1047endianness. The available configuration names are: @samp{mipsecoff},
1048@samp{mipself}, @samp{mipslecoff}, @samp{mipsbecoff}, @samp{mipslelf},
1049@samp{mipsbelf}. The first two do not alter the default endianness from that
1050of the primary target for which the assembler was configured; the others change
1051the default to little- or big-endian as indicated by the @samp{b} or @samp{l}
1052in the name. Using @samp{-EB} or @samp{-EL} will override the endianness
1053selection in any case.
1054
1055This option is currently supported only when the primary target
437ee9d5 1056@command{@value{AS}} is configured for is a @sc{mips} ELF or ECOFF target.
252b5132
RH
1057Furthermore, the primary target or others specified with
1058@samp{--enable-targets=@dots{}} at configuration time must include support for
1059the other format, if both are to be available. For example, the Irix 5
1060configuration includes support for both.
1061
1062Eventually, this option will support more configurations, with more
1063fine-grained control over the assembler's behavior, and will be supported for
1064more processors.
1065
1066@item -nocpp
a4fb0134 1067@command{@value{AS}} ignores this option. It is accepted for compatibility with
252b5132
RH
1068the native tools.
1069
252b5132
RH
1070@item --trap
1071@itemx --no-trap
1072@itemx --break
1073@itemx --no-break
1074Control how to deal with multiplication overflow and division by zero.
1075@samp{--trap} or @samp{--no-break} (which are synonyms) take a trap exception
1076(and only work for Instruction Set Architecture level 2 and higher);
1077@samp{--break} or @samp{--no-trap} (also synonyms, and the default) take a
1078break exception.
63486801
L
1079
1080@item -n
a4fb0134 1081When this option is used, @command{@value{AS}} will issue a warning every
63486801 1082time it generates a nop instruction from a macro.
252b5132
RH
1083@end table
1084@end ifset
1085
1086@ifset MCORE
1087The following options are available when @value{AS} is configured for
1088an MCore processor.
1089
a4fb0134 1090@table @gcctabopt
252b5132
RH
1091@item -jsri2bsr
1092@itemx -nojsri2bsr
1093Enable or disable the JSRI to BSR transformation. By default this is enabled.
1094The command line option @samp{-nojsri2bsr} can be used to disable it.
1095
1096@item -sifilter
1097@itemx -nosifilter
1098Enable or disable the silicon filter behaviour. By default this is disabled.
a349d9dd 1099The default can be overridden by the @samp{-sifilter} command line option.
252b5132
RH
1100
1101@item -relax
1102Alter jump instructions for long displacements.
1103
ec694b89
NC
1104@item -mcpu=[210|340]
1105Select the cpu type on the target hardware. This controls which instructions
1106can be assembled.
1107
1108@item -EB
1109Assemble for a big endian target.
1110
1111@item -EL
1112Assemble for a little endian target.
252b5132
RH
1113
1114@end table
1115@end ifset
1116
3c3bdf30
NC
1117@ifset MMIX
1118See the info pages for documentation of the MMIX-specific options.
1119@end ifset
1120
e0001a05
NC
1121@ifset XTENSA
1122The following options are available when @value{AS} is configured for
1123an Xtensa processor.
1124
1125@table @gcctabopt
e0001a05
NC
1126@item --text-section-literals | --no-text-section-literals
1127With @option{--text-@-section-@-literals}, literal pools are interspersed
1128in the text section. The default is
1129@option{--no-@-text-@-section-@-literals}, which places literals in a
43cd72b9
BW
1130separate section in the output file. These options only affect literals
1131referenced via PC-relative @code{L32R} instructions; literals for
1132absolute mode @code{L32R} instructions are handled separately.
1133
1134@item --absolute-literals | --no-absolute-literals
1135Indicate to the assembler whether @code{L32R} instructions use absolute
1136or PC-relative addressing. The default is to assume absolute addressing
1137if the Xtensa processor includes the absolute @code{L32R} addressing
1138option. Otherwise, only the PC-relative @code{L32R} mode can be used.
e0001a05
NC
1139
1140@item --target-align | --no-target-align
1141Enable or disable automatic alignment to reduce branch penalties at the
1142expense of some code density. The default is @option{--target-@-align}.
1143
1144@item --longcalls | --no-longcalls
1145Enable or disable transformation of call instructions to allow calls
1146across a greater range of addresses. The default is
1147@option{--no-@-longcalls}.
43cd72b9
BW
1148
1149@item --transform | --no-transform
1150Enable or disable all assembler transformations of Xtensa instructions.
1151The default is @option{--transform};
1152@option{--no-transform} should be used only in the rare cases when the
1153instructions must be exactly as specified in the assembly source.
e0001a05
NC
1154@end table
1155@end ifset
1156
3c9b82ba
NC
1157@ifset Z80
1158The following options are available when @value{AS} is configured for
1159a Z80 family processor.
1160@table @gcctabopt
1161@item -z80
1162Assemble for Z80 processor.
1163@item -r800
1164Assemble for R800 processor.
1165@item -ignore-undocumented-instructions
1166@itemx -Wnud
1167Assemble undocumented Z80 instructions that also work on R800 without warning.
1168@item -ignore-unportable-instructions
1169@itemx -Wnup
1170Assemble all undocumented Z80 instructions without warning.
1171@item -warn-undocumented-instructions
1172@itemx -Wud
1173Issue a warning for undocumented Z80 instructions that also work on R800.
1174@item -warn-unportable-instructions
1175@itemx -Wup
1176Issue a warning for undocumented Z80 instructions that do notwork on R800.
1177@item -forbid-undocumented-instructions
1178@itemx -Fud
1179Treat all undocumented instructions as errors.
1180@item -forbid-unportable-instructions
1181@itemx -Fup
1182Treat undocumented Z80 intructions that do notwork on R800 as errors.
1183@end table
1184@end ifset
1185
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NC
1186@c man end
1187
252b5132
RH
1188@menu
1189* Manual:: Structure of this Manual
1190* GNU Assembler:: The GNU Assembler
1191* Object Formats:: Object File Formats
1192* Command Line:: Command Line
1193* Input Files:: Input Files
1194* Object:: Output (Object) File
1195* Errors:: Error and Warning Messages
1196@end menu
1197
1198@node Manual
1199@section Structure of this Manual
1200
1201@cindex manual, structure and purpose
1202This manual is intended to describe what you need to know to use
a4fb0134 1203@sc{gnu} @command{@value{AS}}. We cover the syntax expected in source files, including
252b5132 1204notation for symbols, constants, and expressions; the directives that
a4fb0134 1205@command{@value{AS}} understands; and of course how to invoke @command{@value{AS}}.
252b5132
RH
1206
1207@ifclear GENERIC
1208We also cover special features in the @value{TARGET}
a4fb0134 1209configuration of @command{@value{AS}}, including assembler directives.
252b5132
RH
1210@end ifclear
1211@ifset GENERIC
1212This manual also describes some of the machine-dependent features of
1213various flavors of the assembler.
1214@end ifset
1215
1216@cindex machine instructions (not covered)
1217On the other hand, this manual is @emph{not} intended as an introduction
1218to programming in assembly language---let alone programming in general!
1219In a similar vein, we make no attempt to introduce the machine
1220architecture; we do @emph{not} describe the instruction set, standard
1221mnemonics, registers or addressing modes that are standard to a
1222particular architecture.
1223@ifset GENERIC
1224You may want to consult the manufacturer's
1225machine architecture manual for this information.
1226@end ifset
1227@ifclear GENERIC
1228@ifset H8/300
1229For information on the H8/300 machine instruction set, see @cite{H8/300
c2dcd04e
NC
1230Series Programming Manual}. For the H8/300H, see @cite{H8/300H Series
1231Programming Manual} (Renesas).
252b5132 1232@end ifset
252b5132 1233@ifset SH
ef230218
JR
1234For information on the Renesas (formerly Hitachi) / SuperH SH machine instruction set,
1235see @cite{SH-Microcomputer User's Manual} (Renesas) or
1236@cite{SH-4 32-bit CPU Core Architecture} (SuperH) and
1237@cite{SuperH (SH) 64-Bit RISC Series} (SuperH).
252b5132
RH
1238@end ifset
1239@ifset Z8000
1240For information on the Z8000 machine instruction set, see @cite{Z8000 CPU Technical Manual}
1241@end ifset
1242@end ifclear
1243
1244@c I think this is premature---doc@cygnus.com, 17jan1991
1245@ignore
1246Throughout this manual, we assume that you are running @dfn{GNU},
1247the portable operating system from the @dfn{Free Software
1248Foundation, Inc.}. This restricts our attention to certain kinds of
1249computer (in particular, the kinds of computers that @sc{gnu} can run on);
1250once this assumption is granted examples and definitions need less
1251qualification.
1252
a4fb0134 1253@command{@value{AS}} is part of a team of programs that turn a high-level
252b5132
RH
1254human-readable series of instructions into a low-level
1255computer-readable series of instructions. Different versions of
a4fb0134 1256@command{@value{AS}} are used for different kinds of computer.
252b5132
RH
1257@end ignore
1258
1259@c There used to be a section "Terminology" here, which defined
1260@c "contents", "byte", "word", and "long". Defining "word" to any
1261@c particular size is confusing when the .word directive may generate 16
1262@c bits on one machine and 32 bits on another; in general, for the user
1263@c version of this manual, none of these terms seem essential to define.
1264@c They were used very little even in the former draft of the manual;
1265@c this draft makes an effort to avoid them (except in names of
1266@c directives).
1267
1268@node GNU Assembler
1269@section The GNU Assembler
1270
0285c67d
NC
1271@c man begin DESCRIPTION
1272
a4fb0134 1273@sc{gnu} @command{as} is really a family of assemblers.
252b5132 1274@ifclear GENERIC
a4fb0134 1275This manual describes @command{@value{AS}}, a member of that family which is
252b5132
RH
1276configured for the @value{TARGET} architectures.
1277@end ifclear
1278If you use (or have used) the @sc{gnu} assembler on one architecture, you
1279should find a fairly similar environment when you use it on another
1280architecture. Each version has much in common with the others,
1281including object file formats, most assembler directives (often called
1282@dfn{pseudo-ops}) and assembler syntax.@refill
1283
1284@cindex purpose of @sc{gnu} assembler
a4fb0134 1285@command{@value{AS}} is primarily intended to assemble the output of the
252b5132 1286@sc{gnu} C compiler @code{@value{GCC}} for use by the linker
a4fb0134 1287@code{@value{LD}}. Nevertheless, we've tried to make @command{@value{AS}}
252b5132
RH
1288assemble correctly everything that other assemblers for the same
1289machine would assemble.
1290@ifset VAX
1291Any exceptions are documented explicitly (@pxref{Machine Dependencies}).
1292@end ifset
1293@ifset M680X0
1294@c This remark should appear in generic version of manual; assumption
1295@c here is that generic version sets M680x0.
a4fb0134 1296This doesn't mean @command{@value{AS}} always uses the same syntax as another
252b5132
RH
1297assembler for the same architecture; for example, we know of several
1298incompatible versions of 680x0 assembly language syntax.
1299@end ifset
1300
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NC
1301@c man end
1302
a4fb0134 1303Unlike older assemblers, @command{@value{AS}} is designed to assemble a source
252b5132
RH
1304program in one pass of the source file. This has a subtle impact on the
1305@kbd{.org} directive (@pxref{Org,,@code{.org}}).
1306
1307@node Object Formats
1308@section Object File Formats
1309
1310@cindex object file format
1311The @sc{gnu} assembler can be configured to produce several alternative
1312object file formats. For the most part, this does not affect how you
1313write assembly language programs; but directives for debugging symbols
1314are typically different in different file formats. @xref{Symbol
1315Attributes,,Symbol Attributes}.
1316@ifclear GENERIC
1317@ifclear MULTI-OBJ
c1253627 1318For the @value{TARGET} target, @command{@value{AS}} is configured to produce
252b5132
RH
1319@value{OBJ-NAME} format object files.
1320@end ifclear
1321@c The following should exhaust all configs that set MULTI-OBJ, ideally
252b5132 1322@ifset I960
a4fb0134 1323On the @value{TARGET}, @command{@value{AS}} can be configured to produce either
252b5132
RH
1324@code{b.out} or COFF format object files.
1325@end ifset
1326@ifset HPPA
a4fb0134 1327On the @value{TARGET}, @command{@value{AS}} can be configured to produce either
252b5132
RH
1328SOM or ELF format object files.
1329@end ifset
1330@end ifclear
1331
1332@node Command Line
1333@section Command Line
1334
1335@cindex command line conventions
0285c67d 1336
a4fb0134 1337After the program name @command{@value{AS}}, the command line may contain
252b5132
RH
1338options and file names. Options may appear in any order, and may be
1339before, after, or between file names. The order of file names is
1340significant.
1341
1342@cindex standard input, as input file
1343@kindex --
1344@file{--} (two hyphens) by itself names the standard input file
a4fb0134 1345explicitly, as one of the files for @command{@value{AS}} to assemble.
252b5132
RH
1346
1347@cindex options, command line
1348Except for @samp{--} any command line argument that begins with a
1349hyphen (@samp{-}) is an option. Each option changes the behavior of
a4fb0134 1350@command{@value{AS}}. No option changes the way another option works. An
252b5132
RH
1351option is a @samp{-} followed by one or more letters; the case of
1352the letter is important. All options are optional.
1353
1354Some options expect exactly one file name to follow them. The file
1355name may either immediately follow the option's letter (compatible
1356with older assemblers) or it may be the next command argument (@sc{gnu}
1357standard). These two command lines are equivalent:
1358
1359@smallexample
1360@value{AS} -o my-object-file.o mumble.s
1361@value{AS} -omy-object-file.o mumble.s
1362@end smallexample
1363
1364@node Input Files
1365@section Input Files
1366
1367@cindex input
1368@cindex source program
1369@cindex files, input
1370We use the phrase @dfn{source program}, abbreviated @dfn{source}, to
a4fb0134 1371describe the program input to one run of @command{@value{AS}}. The program may
252b5132
RH
1372be in one or more files; how the source is partitioned into files
1373doesn't change the meaning of the source.
1374
1375@c I added "con" prefix to "catenation" just to prove I can overcome my
1376@c APL training... doc@cygnus.com
1377The source program is a concatenation of the text in all the files, in the
1378order specified.
1379
0285c67d 1380@c man begin DESCRIPTION
a4fb0134 1381Each time you run @command{@value{AS}} it assembles exactly one source
252b5132
RH
1382program. The source program is made up of one or more files.
1383(The standard input is also a file.)
1384
a4fb0134 1385You give @command{@value{AS}} a command line that has zero or more input file
252b5132
RH
1386names. The input files are read (from left file name to right). A
1387command line argument (in any position) that has no special meaning
1388is taken to be an input file name.
1389
a4fb0134
SC
1390If you give @command{@value{AS}} no file names it attempts to read one input file
1391from the @command{@value{AS}} standard input, which is normally your terminal. You
1392may have to type @key{ctl-D} to tell @command{@value{AS}} there is no more program
252b5132
RH
1393to assemble.
1394
1395Use @samp{--} if you need to explicitly name the standard input file
1396in your command line.
1397
a4fb0134 1398If the source is empty, @command{@value{AS}} produces a small, empty object
252b5132
RH
1399file.
1400
0285c67d
NC
1401@c man end
1402
252b5132
RH
1403@subheading Filenames and Line-numbers
1404
1405@cindex input file linenumbers
1406@cindex line numbers, in input files
1407There are two ways of locating a line in the input file (or files) and
1408either may be used in reporting error messages. One way refers to a line
1409number in a physical file; the other refers to a line number in a
1410``logical'' file. @xref{Errors, ,Error and Warning Messages}.
1411
1412@dfn{Physical files} are those files named in the command line given
a4fb0134 1413to @command{@value{AS}}.
252b5132
RH
1414
1415@dfn{Logical files} are simply names declared explicitly by assembler
1416directives; they bear no relation to physical files. Logical file names help
a4fb0134
SC
1417error messages reflect the original source file, when @command{@value{AS}} source
1418is itself synthesized from other files. @command{@value{AS}} understands the
252b5132
RH
1419@samp{#} directives emitted by the @code{@value{GCC}} preprocessor. See also
1420@ref{File,,@code{.file}}.
1421
1422@node Object
1423@section Output (Object) File
1424
1425@cindex object file
1426@cindex output file
1427@kindex a.out
1428@kindex .o
a4fb0134 1429Every time you run @command{@value{AS}} it produces an output file, which is
252b5132
RH
1430your assembly language program translated into numbers. This file
1431is the object file. Its default name is
1432@ifclear BOUT
1433@code{a.out}.
1434@end ifclear
1435@ifset BOUT
1436@ifset GENERIC
1437@code{a.out}, or
1438@end ifset
a4fb0134 1439@code{b.out} when @command{@value{AS}} is configured for the Intel 80960.
252b5132 1440@end ifset
a4fb0134 1441You can give it another name by using the @option{-o} option. Conventionally,
252b5132
RH
1442object file names end with @file{.o}. The default name is used for historical
1443reasons: older assemblers were capable of assembling self-contained programs
1444directly into a runnable program. (For some formats, this isn't currently
1445possible, but it can be done for the @code{a.out} format.)
1446
1447@cindex linker
1448@kindex ld
1449The object file is meant for input to the linker @code{@value{LD}}. It contains
1450assembled program code, information to help @code{@value{LD}} integrate
1451the assembled program into a runnable file, and (optionally) symbolic
1452information for the debugger.
1453
1454@c link above to some info file(s) like the description of a.out.
1455@c don't forget to describe @sc{gnu} info as well as Unix lossage.
1456
1457@node Errors
1458@section Error and Warning Messages
1459
0285c67d
NC
1460@c man begin DESCRIPTION
1461
a349d9dd 1462@cindex error messages
252b5132
RH
1463@cindex warning messages
1464@cindex messages from assembler
a4fb0134 1465@command{@value{AS}} may write warnings and error messages to the standard error
252b5132 1466file (usually your terminal). This should not happen when a compiler
a4fb0134
SC
1467runs @command{@value{AS}} automatically. Warnings report an assumption made so
1468that @command{@value{AS}} could keep assembling a flawed program; errors report a
252b5132
RH
1469grave problem that stops the assembly.
1470
0285c67d
NC
1471@c man end
1472
252b5132
RH
1473@cindex format of warning messages
1474Warning messages have the format
1475
1476@smallexample
1477file_name:@b{NNN}:Warning Message Text
1478@end smallexample
1479
1480@noindent
1481@cindex line numbers, in warnings/errors
1482(where @b{NNN} is a line number). If a logical file name has been given
1483(@pxref{File,,@code{.file}}) it is used for the filename, otherwise the name of
1484the current input file is used. If a logical line number was given
1485@ifset GENERIC
1486(@pxref{Line,,@code{.line}})
1487@end ifset
252b5132
RH
1488then it is used to calculate the number printed,
1489otherwise the actual line in the current source file is printed. The
1490message text is intended to be self explanatory (in the grand Unix
1491tradition).
1492
1493@cindex format of error messages
1494Error messages have the format
1495@smallexample
1496file_name:@b{NNN}:FATAL:Error Message Text
1497@end smallexample
1498The file name and line number are derived as for warning
1499messages. The actual message text may be rather less explanatory
1500because many of them aren't supposed to happen.
1501
1502@node Invoking
1503@chapter Command-Line Options
1504
1505@cindex options, all versions of assembler
1506This chapter describes command-line options available in @emph{all}
1507versions of the @sc{gnu} assembler; @pxref{Machine Dependencies}, for options specific
1508@ifclear GENERIC
c1253627 1509to the @value{TARGET} target.
252b5132
RH
1510@end ifclear
1511@ifset GENERIC
1512to particular machine architectures.
1513@end ifset
1514
0285c67d
NC
1515@c man begin DESCRIPTION
1516
c1253627 1517If you are invoking @command{@value{AS}} via the @sc{gnu} C compiler,
252b5132
RH
1518you can use the @samp{-Wa} option to pass arguments through to the assembler.
1519The assembler arguments must be separated from each other (and the @samp{-Wa})
1520by commas. For example:
1521
1522@smallexample
1523gcc -c -g -O -Wa,-alh,-L file.c
1524@end smallexample
1525
1526@noindent
1527This passes two options to the assembler: @samp{-alh} (emit a listing to
5f5e16be 1528standard output with high-level and assembly source) and @samp{-L} (retain
252b5132
RH
1529local symbols in the symbol table).
1530
1531Usually you do not need to use this @samp{-Wa} mechanism, since many compiler
1532command-line options are automatically passed to the assembler by the compiler.
1533(You can call the @sc{gnu} compiler driver with the @samp{-v} option to see
1534precisely what options it passes to each compilation pass, including the
1535assembler.)
1536
0285c67d
NC
1537@c man end
1538
252b5132
RH
1539@menu
1540* a:: -a[cdhlns] enable listings
caa32fe5 1541* alternate:: --alternate enable alternate macro syntax
252b5132
RH
1542* D:: -D for compatibility
1543* f:: -f to work faster
1544* I:: -I for .include search path
1545@ifclear DIFF-TBL-KLUGE
1546* K:: -K for compatibility
1547@end ifclear
1548@ifset DIFF-TBL-KLUGE
1549* K:: -K for difference tables
1550@end ifset
1551
1552* L:: -L to retain local labels
c3a27914 1553* listing:: --listing-XXX to configure listing output
252b5132
RH
1554* M:: -M or --mri to assemble in MRI compatibility mode
1555* MD:: --MD for dependency tracking
1556* o:: -o to name the object file
1557* R:: -R to join data and text sections
1558* statistics:: --statistics to see statistics about assembly
1559* traditional-format:: --traditional-format for compatible output
1560* v:: -v to announce version
2bdd6cf5 1561* W:: -W, --no-warn, --warn, --fatal-warnings to control warnings
252b5132
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1562* Z:: -Z to make object file even after errors
1563@end menu
1564
1565@node a
a4fb0134 1566@section Enable Listings: @option{-a[cdhlns]}
252b5132
RH
1567
1568@kindex -a
1569@kindex -ac
1570@kindex -ad
1571@kindex -ah
1572@kindex -al
1573@kindex -an
1574@kindex -as
1575@cindex listings, enabling
1576@cindex assembly listings, enabling
1577
1578These options enable listing output from the assembler. By itself,
1579@samp{-a} requests high-level, assembly, and symbols listing.
1580You can use other letters to select specific options for the list:
1581@samp{-ah} requests a high-level language listing,
1582@samp{-al} requests an output-program assembly listing, and
1583@samp{-as} requests a symbol table listing.
1584High-level listings require that a compiler debugging option like
1585@samp{-g} be used, and that assembly listings (@samp{-al}) be requested
1586also.
1587
1588Use the @samp{-ac} option to omit false conditionals from a listing. Any lines
1589which are not assembled because of a false @code{.if} (or @code{.ifdef}, or any
1590other conditional), or a true @code{.if} followed by an @code{.else}, will be
1591omitted from the listing.
1592
1593Use the @samp{-ad} option to omit debugging directives from the
1594listing.
1595
1596Once you have specified one of these options, you can further control
1597listing output and its appearance using the directives @code{.list},
1598@code{.nolist}, @code{.psize}, @code{.eject}, @code{.title}, and
1599@code{.sbttl}.
1600The @samp{-an} option turns off all forms processing.
1601If you do not request listing output with one of the @samp{-a} options, the
1602listing-control directives have no effect.
1603
1604The letters after @samp{-a} may be combined into one option,
1605@emph{e.g.}, @samp{-aln}.
1606
c3a27914
NC
1607Note if the assembler source is coming from the standard input (eg because it
1608is being created by @code{@value{GCC}} and the @samp{-pipe} command line switch
1609is being used) then the listing will not contain any comments or preprocessor
1610directives. This is because the listing code buffers input source lines from
1611stdin only after they have been preprocessed by the assembler. This reduces
1612memory usage and makes the code more efficient.
1613
caa32fe5
NC
1614@node alternate
1615@section @option{--alternate}
1616
1617@kindex --alternate
1618Begin in alternate macro mode, see @ref{Altmacro,,@code{.altmacro}}.
1619
252b5132 1620@node D
a4fb0134 1621@section @option{-D}
252b5132
RH
1622
1623@kindex -D
1624This option has no effect whatsoever, but it is accepted to make it more
1625likely that scripts written for other assemblers also work with
a4fb0134 1626@command{@value{AS}}.
252b5132
RH
1627
1628@node f
a4fb0134 1629@section Work Faster: @option{-f}
252b5132
RH
1630
1631@kindex -f
1632@cindex trusted compiler
a4fb0134 1633@cindex faster processing (@option{-f})
252b5132
RH
1634@samp{-f} should only be used when assembling programs written by a
1635(trusted) compiler. @samp{-f} stops the assembler from doing whitespace
1636and comment preprocessing on
1637the input file(s) before assembling them. @xref{Preprocessing,
1638,Preprocessing}.
1639
1640@quotation
1641@emph{Warning:} if you use @samp{-f} when the files actually need to be
a4fb0134 1642preprocessed (if they contain comments, for example), @command{@value{AS}} does
252b5132
RH
1643not work correctly.
1644@end quotation
1645
1646@node I
c1253627 1647@section @code{.include} Search Path: @option{-I} @var{path}
252b5132
RH
1648
1649@kindex -I @var{path}
1650@cindex paths for @code{.include}
1651@cindex search path for @code{.include}
1652@cindex @code{include} directive search path
1653Use this option to add a @var{path} to the list of directories
a4fb0134
SC
1654@command{@value{AS}} searches for files specified in @code{.include}
1655directives (@pxref{Include,,@code{.include}}). You may use @option{-I} as
252b5132 1656many times as necessary to include a variety of paths. The current
a4fb0134 1657working directory is always searched first; after that, @command{@value{AS}}
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RH
1658searches any @samp{-I} directories in the same order as they were
1659specified (left to right) on the command line.
1660
1661@node K
a4fb0134 1662@section Difference Tables: @option{-K}
252b5132
RH
1663
1664@kindex -K
1665@ifclear DIFF-TBL-KLUGE
1666On the @value{TARGET} family, this option is allowed, but has no effect. It is
1667permitted for compatibility with the @sc{gnu} assembler on other platforms,
1668where it can be used to warn when the assembler alters the machine code
1669generated for @samp{.word} directives in difference tables. The @value{TARGET}
1670family does not have the addressing limitations that sometimes lead to this
1671alteration on other platforms.
1672@end ifclear
1673
1674@ifset DIFF-TBL-KLUGE
1675@cindex difference tables, warning
1676@cindex warning for altered difference tables
a4fb0134 1677@command{@value{AS}} sometimes alters the code emitted for directives of the form
252b5132
RH
1678@samp{.word @var{sym1}-@var{sym2}}; @pxref{Word,,@code{.word}}.
1679You can use the @samp{-K} option if you want a warning issued when this
1680is done.
1681@end ifset
1682
1683@node L
a4fb0134 1684@section Include Local Labels: @option{-L}
252b5132
RH
1685
1686@kindex -L
1687@cindex local labels, retaining in output
1688Labels beginning with @samp{L} (upper case only) are called @dfn{local
1689labels}. @xref{Symbol Names}. Normally you do not see such labels when
1690debugging, because they are intended for the use of programs (like
1691compilers) that compose assembler programs, not for your notice.
a4fb0134 1692Normally both @command{@value{AS}} and @code{@value{LD}} discard such labels, so you do not
252b5132
RH
1693normally debug with them.
1694
a4fb0134 1695This option tells @command{@value{AS}} to retain those @samp{L@dots{}} symbols
252b5132
RH
1696in the object file. Usually if you do this you also tell the linker
1697@code{@value{LD}} to preserve symbols whose names begin with @samp{L}.
1698
1699By default, a local label is any label beginning with @samp{L}, but each
1700target is allowed to redefine the local label prefix.
1701@ifset HPPA
1702On the HPPA local labels begin with @samp{L$}.
1703@end ifset
252b5132 1704
c3a27914 1705@node listing
a4fb0134 1706@section Configuring listing output: @option{--listing}
c3a27914
NC
1707
1708The listing feature of the assembler can be enabled via the command line switch
1709@samp{-a} (@pxref{a}). This feature combines the input source file(s) with a
1710hex dump of the corresponding locations in the output object file, and displays
1711them as a listing file. The format of this listing can be controlled by pseudo
1712ops inside the assembler source (@pxref{List} @pxref{Title} @pxref{Sbttl}
1713@pxref{Psize} @pxref{Eject}) and also by the following switches:
1714
a4fb0134 1715@table @gcctabopt
c3a27914
NC
1716@item --listing-lhs-width=@samp{number}
1717@kindex --listing-lhs-width
1718@cindex Width of first line disassembly output
1719Sets the maximum width, in words, of the first line of the hex byte dump. This
1720dump appears on the left hand side of the listing output.
1721
1722@item --listing-lhs-width2=@samp{number}
1723@kindex --listing-lhs-width2
1724@cindex Width of continuation lines of disassembly output
1725Sets the maximum width, in words, of any further lines of the hex byte dump for
8dfa0188 1726a given input source line. If this value is not specified, it defaults to being
c3a27914
NC
1727the same as the value specified for @samp{--listing-lhs-width}. If neither
1728switch is used the default is to one.
1729
1730@item --listing-rhs-width=@samp{number}
1731@kindex --listing-rhs-width
1732@cindex Width of source line output
1733Sets the maximum width, in characters, of the source line that is displayed
1734alongside the hex dump. The default value for this parameter is 100. The
1735source line is displayed on the right hand side of the listing output.
1736
1737@item --listing-cont-lines=@samp{number}
1738@kindex --listing-cont-lines
1739@cindex Maximum number of continuation lines
1740Sets the maximum number of continuation lines of hex dump that will be
1741displayed for a given single line of source input. The default value is 4.
1742@end table
1743
252b5132 1744@node M
a4fb0134 1745@section Assemble in MRI Compatibility Mode: @option{-M}
252b5132
RH
1746
1747@kindex -M
1748@cindex MRI compatibility mode
a4fb0134
SC
1749The @option{-M} or @option{--mri} option selects MRI compatibility mode. This
1750changes the syntax and pseudo-op handling of @command{@value{AS}} to make it
252b5132
RH
1751compatible with the @code{ASM68K} or the @code{ASM960} (depending upon the
1752configured target) assembler from Microtec Research. The exact nature of the
1753MRI syntax will not be documented here; see the MRI manuals for more
1754information. Note in particular that the handling of macros and macro
1755arguments is somewhat different. The purpose of this option is to permit
a4fb0134 1756assembling existing MRI assembler code using @command{@value{AS}}.
252b5132
RH
1757
1758The MRI compatibility is not complete. Certain operations of the MRI assembler
1759depend upon its object file format, and can not be supported using other object
1760file formats. Supporting these would require enhancing each object file format
1761individually. These are:
1762
1763@itemize @bullet
1764@item global symbols in common section
1765
1766The m68k MRI assembler supports common sections which are merged by the linker.
a4fb0134 1767Other object file formats do not support this. @command{@value{AS}} handles
252b5132
RH
1768common sections by treating them as a single common symbol. It permits local
1769symbols to be defined within a common section, but it can not support global
1770symbols, since it has no way to describe them.
1771
1772@item complex relocations
1773
1774The MRI assemblers support relocations against a negated section address, and
1775relocations which combine the start addresses of two or more sections. These
1776are not support by other object file formats.
1777
1778@item @code{END} pseudo-op specifying start address
1779
1780The MRI @code{END} pseudo-op permits the specification of a start address.
1781This is not supported by other object file formats. The start address may
a4fb0134 1782instead be specified using the @option{-e} option to the linker, or in a linker
252b5132
RH
1783script.
1784
1785@item @code{IDNT}, @code{.ident} and @code{NAME} pseudo-ops
1786
1787The MRI @code{IDNT}, @code{.ident} and @code{NAME} pseudo-ops assign a module
1788name to the output file. This is not supported by other object file formats.
1789
1790@item @code{ORG} pseudo-op
1791
1792The m68k MRI @code{ORG} pseudo-op begins an absolute section at a given
a4fb0134 1793address. This differs from the usual @command{@value{AS}} @code{.org} pseudo-op,
252b5132
RH
1794which changes the location within the current section. Absolute sections are
1795not supported by other object file formats. The address of a section may be
1796assigned within a linker script.
1797@end itemize
1798
1799There are some other features of the MRI assembler which are not supported by
a4fb0134 1800@command{@value{AS}}, typically either because they are difficult or because they
252b5132
RH
1801seem of little consequence. Some of these may be supported in future releases.
1802
1803@itemize @bullet
1804
1805@item EBCDIC strings
1806
1807EBCDIC strings are not supported.
1808
1809@item packed binary coded decimal
1810
1811Packed binary coded decimal is not supported. This means that the @code{DC.P}
1812and @code{DCB.P} pseudo-ops are not supported.
1813
1814@item @code{FEQU} pseudo-op
1815
1816The m68k @code{FEQU} pseudo-op is not supported.
1817
1818@item @code{NOOBJ} pseudo-op
1819
1820The m68k @code{NOOBJ} pseudo-op is not supported.
1821
1822@item @code{OPT} branch control options
1823
1824The m68k @code{OPT} branch control options---@code{B}, @code{BRS}, @code{BRB},
a4fb0134 1825@code{BRL}, and @code{BRW}---are ignored. @command{@value{AS}} automatically
252b5132
RH
1826relaxes all branches, whether forward or backward, to an appropriate size, so
1827these options serve no purpose.
1828
1829@item @code{OPT} list control options
1830
1831The following m68k @code{OPT} list control options are ignored: @code{C},
1832@code{CEX}, @code{CL}, @code{CRE}, @code{E}, @code{G}, @code{I}, @code{M},
1833@code{MEX}, @code{MC}, @code{MD}, @code{X}.
1834
1835@item other @code{OPT} options
1836
1837The following m68k @code{OPT} options are ignored: @code{NEST}, @code{O},
1838@code{OLD}, @code{OP}, @code{P}, @code{PCO}, @code{PCR}, @code{PCS}, @code{R}.
1839
1840@item @code{OPT} @code{D} option is default
1841
1842The m68k @code{OPT} @code{D} option is the default, unlike the MRI assembler.
1843@code{OPT NOD} may be used to turn it off.
1844
1845@item @code{XREF} pseudo-op.
1846
1847The m68k @code{XREF} pseudo-op is ignored.
1848
1849@item @code{.debug} pseudo-op
1850
1851The i960 @code{.debug} pseudo-op is not supported.
1852
1853@item @code{.extended} pseudo-op
1854
1855The i960 @code{.extended} pseudo-op is not supported.
1856
1857@item @code{.list} pseudo-op.
1858
1859The various options of the i960 @code{.list} pseudo-op are not supported.
1860
1861@item @code{.optimize} pseudo-op
1862
1863The i960 @code{.optimize} pseudo-op is not supported.
1864
1865@item @code{.output} pseudo-op
1866
1867The i960 @code{.output} pseudo-op is not supported.
1868
1869@item @code{.setreal} pseudo-op
1870
1871The i960 @code{.setreal} pseudo-op is not supported.
1872
1873@end itemize
1874
1875@node MD
c1253627 1876@section Dependency Tracking: @option{--MD}
252b5132
RH
1877
1878@kindex --MD
1879@cindex dependency tracking
1880@cindex make rules
1881
a4fb0134 1882@command{@value{AS}} can generate a dependency file for the file it creates. This
252b5132
RH
1883file consists of a single rule suitable for @code{make} describing the
1884dependencies of the main source file.
1885
1886The rule is written to the file named in its argument.
1887
1888This feature is used in the automatic updating of makefiles.
1889
1890@node o
a4fb0134 1891@section Name the Object File: @option{-o}
252b5132
RH
1892
1893@kindex -o
1894@cindex naming object file
1895@cindex object file name
a4fb0134 1896There is always one object file output when you run @command{@value{AS}}. By
252b5132
RH
1897default it has the name
1898@ifset GENERIC
1899@ifset I960
1900@file{a.out} (or @file{b.out}, for Intel 960 targets only).
1901@end ifset
1902@ifclear I960
1903@file{a.out}.
1904@end ifclear
1905@end ifset
1906@ifclear GENERIC
1907@ifset I960
1908@file{b.out}.
1909@end ifset
1910@ifclear I960
1911@file{a.out}.
1912@end ifclear
1913@end ifclear
1914You use this option (which takes exactly one filename) to give the
1915object file a different name.
1916
a4fb0134 1917Whatever the object file is called, @command{@value{AS}} overwrites any
252b5132
RH
1918existing file of the same name.
1919
1920@node R
a4fb0134 1921@section Join Data and Text Sections: @option{-R}
252b5132
RH
1922
1923@kindex -R
1924@cindex data and text sections, joining
1925@cindex text and data sections, joining
1926@cindex joining text and data sections
1927@cindex merging text and data sections
a4fb0134 1928@option{-R} tells @command{@value{AS}} to write the object file as if all
252b5132
RH
1929data-section data lives in the text section. This is only done at
1930the very last moment: your binary data are the same, but data
1931section parts are relocated differently. The data section part of
1932your object file is zero bytes long because all its bytes are
1933appended to the text section. (@xref{Sections,,Sections and Relocation}.)
1934
a4fb0134 1935When you specify @option{-R} it would be possible to generate shorter
252b5132
RH
1936address displacements (because we do not have to cross between text and
1937data section). We refrain from doing this simply for compatibility with
a4fb0134 1938older versions of @command{@value{AS}}. In future, @option{-R} may work this way.
252b5132 1939
c1253627
NC
1940@ifset COFF-ELF
1941When @command{@value{AS}} is configured for COFF or ELF output,
252b5132
RH
1942this option is only useful if you use sections named @samp{.text} and
1943@samp{.data}.
1944@end ifset
1945
1946@ifset HPPA
a4fb0134
SC
1947@option{-R} is not supported for any of the HPPA targets. Using
1948@option{-R} generates a warning from @command{@value{AS}}.
252b5132
RH
1949@end ifset
1950
1951@node statistics
a4fb0134 1952@section Display Assembly Statistics: @option{--statistics}
252b5132
RH
1953
1954@kindex --statistics
1955@cindex statistics, about assembly
1956@cindex time, total for assembly
1957@cindex space used, maximum for assembly
1958Use @samp{--statistics} to display two statistics about the resources used by
a4fb0134 1959@command{@value{AS}}: the maximum amount of space allocated during the assembly
252b5132
RH
1960(in bytes), and the total execution time taken for the assembly (in @sc{cpu}
1961seconds).
1962
1963@node traditional-format
c1253627 1964@section Compatible Output: @option{--traditional-format}
252b5132
RH
1965
1966@kindex --traditional-format
a4fb0134 1967For some targets, the output of @command{@value{AS}} is different in some ways
252b5132 1968from the output of some existing assembler. This switch requests
a4fb0134 1969@command{@value{AS}} to use the traditional format instead.
252b5132
RH
1970
1971For example, it disables the exception frame optimizations which
a4fb0134 1972@command{@value{AS}} normally does by default on @code{@value{GCC}} output.
252b5132
RH
1973
1974@node v
a4fb0134 1975@section Announce Version: @option{-v}
252b5132
RH
1976
1977@kindex -v
1978@kindex -version
1979@cindex assembler version
1980@cindex version of assembler
1981You can find out what version of as is running by including the
1982option @samp{-v} (which you can also spell as @samp{-version}) on the
1983command line.
1984
1985@node W
a4fb0134 1986@section Control Warnings: @option{-W}, @option{--warn}, @option{--no-warn}, @option{--fatal-warnings}
252b5132 1987
a4fb0134 1988@command{@value{AS}} should never give a warning or error message when
252b5132 1989assembling compiler output. But programs written by people often
a4fb0134 1990cause @command{@value{AS}} to give a warning that a particular assumption was
252b5132 1991made. All such warnings are directed to the standard error file.
2bdd6cf5 1992
c1253627
NC
1993@kindex -W
1994@kindex --no-warn
2bdd6cf5
GK
1995@cindex suppressing warnings
1996@cindex warnings, suppressing
a4fb0134 1997If you use the @option{-W} and @option{--no-warn} options, no warnings are issued.
2bdd6cf5 1998This only affects the warning messages: it does not change any particular of
a4fb0134 1999how @command{@value{AS}} assembles your file. Errors, which stop the assembly,
2bdd6cf5
GK
2000are still reported.
2001
c1253627 2002@kindex --fatal-warnings
2bdd6cf5
GK
2003@cindex errors, caused by warnings
2004@cindex warnings, causing error
a4fb0134 2005If you use the @option{--fatal-warnings} option, @command{@value{AS}} considers
2bdd6cf5
GK
2006files that generate warnings to be in error.
2007
c1253627 2008@kindex --warn
2bdd6cf5 2009@cindex warnings, switching on
a4fb0134 2010You can switch these options off again by specifying @option{--warn}, which
2bdd6cf5 2011causes warnings to be output as usual.
252b5132
RH
2012
2013@node Z
a4fb0134 2014@section Generate Object File in Spite of Errors: @option{-Z}
252b5132
RH
2015@cindex object file, after errors
2016@cindex errors, continuing after
a4fb0134 2017After an error message, @command{@value{AS}} normally produces no output. If for
252b5132 2018some reason you are interested in object file output even after
a4fb0134
SC
2019@command{@value{AS}} gives an error message on your program, use the @samp{-Z}
2020option. If there are any errors, @command{@value{AS}} continues anyways, and
252b5132
RH
2021writes an object file after a final warning message of the form @samp{@var{n}
2022errors, @var{m} warnings, generating bad object file.}
2023
2024@node Syntax
2025@chapter Syntax
2026
2027@cindex machine-independent syntax
2028@cindex syntax, machine-independent
2029This chapter describes the machine-independent syntax allowed in a
a4fb0134 2030source file. @command{@value{AS}} syntax is similar to what many other
252b5132
RH
2031assemblers use; it is inspired by the BSD 4.2
2032@ifclear VAX
2033assembler.
2034@end ifclear
2035@ifset VAX
a4fb0134 2036assembler, except that @command{@value{AS}} does not assemble Vax bit-fields.
252b5132
RH
2037@end ifset
2038
2039@menu
2040* Preprocessing:: Preprocessing
2041* Whitespace:: Whitespace
2042* Comments:: Comments
2043* Symbol Intro:: Symbols
2044* Statements:: Statements
2045* Constants:: Constants
2046@end menu
2047
2048@node Preprocessing
2049@section Preprocessing
2050
2051@cindex preprocessing
a4fb0134 2052The @command{@value{AS}} internal preprocessor:
252b5132
RH
2053@itemize @bullet
2054@cindex whitespace, removed by preprocessor
2055@item
2056adjusts and removes extra whitespace. It leaves one space or tab before
2057the keywords on a line, and turns any other whitespace on the line into
2058a single space.
2059
2060@cindex comments, removed by preprocessor
2061@item
2062removes all comments, replacing them with a single space, or an
2063appropriate number of newlines.
2064
2065@cindex constants, converted by preprocessor
2066@item
2067converts character constants into the appropriate numeric values.
2068@end itemize
2069
2070It does not do macro processing, include file handling, or
2071anything else you may get from your C compiler's preprocessor. You can
2072do include file processing with the @code{.include} directive
2073(@pxref{Include,,@code{.include}}). You can use the @sc{gnu} C compiler driver
c1253627 2074to get other ``CPP'' style preprocessing by giving the input file a
252b5132
RH
2075@samp{.S} suffix. @xref{Overall Options,, Options Controlling the Kind of
2076Output, gcc.info, Using GNU CC}.
2077
2078Excess whitespace, comments, and character constants
2079cannot be used in the portions of the input text that are not
2080preprocessed.
2081
2082@cindex turning preprocessing on and off
2083@cindex preprocessing, turning on and off
2084@kindex #NO_APP
2085@kindex #APP
2086If the first line of an input file is @code{#NO_APP} or if you use the
2087@samp{-f} option, whitespace and comments are not removed from the input file.
2088Within an input file, you can ask for whitespace and comment removal in
2089specific portions of the by putting a line that says @code{#APP} before the
2090text that may contain whitespace or comments, and putting a line that says
2091@code{#NO_APP} after this text. This feature is mainly intend to support
2092@code{asm} statements in compilers whose output is otherwise free of comments
2093and whitespace.
2094
2095@node Whitespace
2096@section Whitespace
2097
2098@cindex whitespace
2099@dfn{Whitespace} is one or more blanks or tabs, in any order.
2100Whitespace is used to separate symbols, and to make programs neater for
2101people to read. Unless within character constants
2102(@pxref{Characters,,Character Constants}), any whitespace means the same
2103as exactly one space.
2104
2105@node Comments
2106@section Comments
2107
2108@cindex comments
a4fb0134 2109There are two ways of rendering comments to @command{@value{AS}}. In both
252b5132
RH
2110cases the comment is equivalent to one space.
2111
2112Anything from @samp{/*} through the next @samp{*/} is a comment.
2113This means you may not nest these comments.
2114
2115@smallexample
2116/*
2117 The only way to include a newline ('\n') in a comment
2118 is to use this sort of comment.
2119*/
2120
2121/* This sort of comment does not nest. */
2122@end smallexample
2123
2124@cindex line comment character
2125Anything from the @dfn{line comment} character to the next newline
2126is considered a comment and is ignored. The line comment character is
252b5132
RH
2127@ifset ARC
2128@samp{;} on the ARC;
2129@end ifset
550262c4
NC
2130@ifset ARM
2131@samp{@@} on the ARM;
2132@end ifset
252b5132
RH
2133@ifset H8/300
2134@samp{;} for the H8/300 family;
2135@end ifset
252b5132
RH
2136@ifset HPPA
2137@samp{;} for the HPPA;
2138@end ifset
55b62671
AJ
2139@ifset I80386
2140@samp{#} on the i386 and x86-64;
2141@end ifset
252b5132
RH
2142@ifset I960
2143@samp{#} on the i960;
2144@end ifset
e135f41b
NC
2145@ifset PDP11
2146@samp{;} for the PDP-11;
2147@end ifset
041dd5a9
ILT
2148@ifset PJ
2149@samp{;} for picoJava;
2150@end ifset
418c1742 2151@ifset PPC
3fb9d77f 2152@samp{#} for Motorola PowerPC;
418c1742 2153@end ifset
252b5132 2154@ifset SH
ef230218 2155@samp{!} for the Renesas / SuperH SH;
252b5132
RH
2156@end ifset
2157@ifset SPARC
2158@samp{!} on the SPARC;
2159@end ifset
a40cbfa3
NC
2160@ifset IP2K
2161@samp{#} on the ip2k;
2162@end ifset
49f58d10
JB
2163@ifset M32C
2164@samp{#} on the m32c;
2165@end ifset
252b5132
RH
2166@ifset M32R
2167@samp{#} on the m32r;
2168@end ifset
2169@ifset M680X0
2170@samp{|} on the 680x0;
2171@end ifset
60bcf0fa
NC
2172@ifset M68HC11
2173@samp{#} on the 68HC11 and 68HC12;
2174@end ifset
252b5132
RH
2175@ifset VAX
2176@samp{#} on the Vax;
2177@end ifset
3c9b82ba
NC
2178@ifset Z80
2179@samp{;} for the Z80;
2180@end ifset
252b5132
RH
2181@ifset Z8000
2182@samp{!} for the Z8000;
2183@end ifset
2184@ifset V850
2185@samp{#} on the V850;
2186@end ifset
e0001a05
NC
2187@ifset XTENSA
2188@samp{#} for Xtensa systems;
2189@end ifset
252b5132 2190see @ref{Machine Dependencies}. @refill
81b0b3f1 2191@c FIXME What about i860?
252b5132
RH
2192
2193@ifset GENERIC
2194On some machines there are two different line comment characters. One
2195character only begins a comment if it is the first non-whitespace character on
2196a line, while the other always begins a comment.
2197@end ifset
2198
2199@ifset V850
2200The V850 assembler also supports a double dash as starting a comment that
2201extends to the end of the line.
2202
2203@samp{--};
2204@end ifset
2205
2206@kindex #
2207@cindex lines starting with @code{#}
2208@cindex logical line numbers
2209To be compatible with past assemblers, lines that begin with @samp{#} have a
2210special interpretation. Following the @samp{#} should be an absolute
2211expression (@pxref{Expressions}): the logical line number of the @emph{next}
2212line. Then a string (@pxref{Strings,, Strings}) is allowed: if present it is a
2213new logical file name. The rest of the line, if any, should be whitespace.
2214
2215If the first non-whitespace characters on the line are not numeric,
2216the line is ignored. (Just like a comment.)
2217
2218@smallexample
2219 # This is an ordinary comment.
2220# 42-6 "new_file_name" # New logical file name
2221 # This is logical line # 36.
2222@end smallexample
2223This feature is deprecated, and may disappear from future versions
a4fb0134 2224of @command{@value{AS}}.
252b5132
RH
2225
2226@node Symbol Intro
2227@section Symbols
2228
2229@cindex characters used in symbols
2230@ifclear SPECIAL-SYMS
2231A @dfn{symbol} is one or more characters chosen from the set of all
2232letters (both upper and lower case), digits and the three characters
2233@samp{_.$}.
2234@end ifclear
2235@ifset SPECIAL-SYMS
2236@ifclear GENERIC
2237@ifset H8
2238A @dfn{symbol} is one or more characters chosen from the set of all
2239letters (both upper and lower case), digits and the three characters
2240@samp{._$}. (Save that, on the H8/300 only, you may not use @samp{$} in
2241symbol names.)
2242@end ifset
2243@end ifclear
2244@end ifset
2245@ifset GENERIC
2246On most machines, you can also use @code{$} in symbol names; exceptions
2247are noted in @ref{Machine Dependencies}.
2248@end ifset
2249No symbol may begin with a digit. Case is significant.
2250There is no length limit: all characters are significant. Symbols are
2251delimited by characters not in that set, or by the beginning of a file
2252(since the source program must end with a newline, the end of a file is
2253not a possible symbol delimiter). @xref{Symbols}.
2254@cindex length of symbols
2255
2256@node Statements
2257@section Statements
2258
2259@cindex statements, structure of
2260@cindex line separator character
2261@cindex statement separator character
2262@ifclear GENERIC
2263@ifclear abnormal-separator
2264A @dfn{statement} ends at a newline character (@samp{\n}) or at a
2265semicolon (@samp{;}). The newline or semicolon is considered part of
2266the preceding statement. Newlines and semicolons within character
2267constants are an exception: they do not end statements.
2268@end ifclear
2269@ifset abnormal-separator
252b5132
RH
2270@ifset HPPA
2271A @dfn{statement} ends at a newline character (@samp{\n}) or an exclamation
2272point (@samp{!}). The newline or exclamation point is considered part of the
2273preceding statement. Newlines and exclamation points within character
2274constants are an exception: they do not end statements.
2275@end ifset
2276@ifset H8
2277A @dfn{statement} ends at a newline character (@samp{\n}); or (for the
7be1c489 2278H8/300) a dollar sign (@samp{$}); or (for the Renesas-SH) a semicolon
252b5132
RH
2279(@samp{;}). The newline or separator character is considered part of
2280the preceding statement. Newlines and separators within character
2281constants are an exception: they do not end statements.
2282@end ifset
2283@end ifset
2284@end ifclear
2285@ifset GENERIC
2286A @dfn{statement} ends at a newline character (@samp{\n}) or line
2287separator character. (The line separator is usually @samp{;}, unless
2288this conflicts with the comment character; @pxref{Machine Dependencies}.) The
2289newline or separator character is considered part of the preceding
2290statement. Newlines and separators within character constants are an
2291exception: they do not end statements.
2292@end ifset
2293
2294@cindex newline, required at file end
2295@cindex EOF, newline must precede
2296It is an error to end any statement with end-of-file: the last
2297character of any input file should be a newline.@refill
2298
2299An empty statement is allowed, and may include whitespace. It is ignored.
2300
2301@cindex instructions and directives
2302@cindex directives and instructions
2303@c "key symbol" is not used elsewhere in the document; seems pedantic to
2304@c @defn{} it in that case, as was done previously... doc@cygnus.com,
2305@c 13feb91.
2306A statement begins with zero or more labels, optionally followed by a
2307key symbol which determines what kind of statement it is. The key
2308symbol determines the syntax of the rest of the statement. If the
2309symbol begins with a dot @samp{.} then the statement is an assembler
2310directive: typically valid for any computer. If the symbol begins with
2311a letter the statement is an assembly language @dfn{instruction}: it
2312assembles into a machine language instruction.
2313@ifset GENERIC
a4fb0134 2314Different versions of @command{@value{AS}} for different computers
252b5132
RH
2315recognize different instructions. In fact, the same symbol may
2316represent a different instruction in a different computer's assembly
2317language.@refill
2318@end ifset
2319
2320@cindex @code{:} (label)
2321@cindex label (@code{:})
2322A label is a symbol immediately followed by a colon (@code{:}).
2323Whitespace before a label or after a colon is permitted, but you may not
2324have whitespace between a label's symbol and its colon. @xref{Labels}.
2325
2326@ifset HPPA
2327For HPPA targets, labels need not be immediately followed by a colon, but
2328the definition of a label must begin in column zero. This also implies that
2329only one label may be defined on each line.
2330@end ifset
2331
2332@smallexample
2333label: .directive followed by something
2334another_label: # This is an empty statement.
2335 instruction operand_1, operand_2, @dots{}
2336@end smallexample
2337
2338@node Constants
2339@section Constants
2340
2341@cindex constants
2342A constant is a number, written so that its value is known by
2343inspection, without knowing any context. Like this:
2344@smallexample
2345@group
2346.byte 74, 0112, 092, 0x4A, 0X4a, 'J, '\J # All the same value.
2347.ascii "Ring the bell\7" # A string constant.
2348.octa 0x123456789abcdef0123456789ABCDEF0 # A bignum.
2349.float 0f-314159265358979323846264338327\
235095028841971.693993751E-40 # - pi, a flonum.
2351@end group
2352@end smallexample
2353
2354@menu
2355* Characters:: Character Constants
2356* Numbers:: Number Constants
2357@end menu
2358
2359@node Characters
2360@subsection Character Constants
2361
2362@cindex character constants
2363@cindex constants, character
2364There are two kinds of character constants. A @dfn{character} stands
2365for one character in one byte and its value may be used in
2366numeric expressions. String constants (properly called string
2367@emph{literals}) are potentially many bytes and their values may not be
2368used in arithmetic expressions.
2369
2370@menu
2371* Strings:: Strings
2372* Chars:: Characters
2373@end menu
2374
2375@node Strings
2376@subsubsection Strings
2377
2378@cindex string constants
2379@cindex constants, string
2380A @dfn{string} is written between double-quotes. It may contain
2381double-quotes or null characters. The way to get special characters
2382into a string is to @dfn{escape} these characters: precede them with
2383a backslash @samp{\} character. For example @samp{\\} represents
2384one backslash: the first @code{\} is an escape which tells
a4fb0134
SC
2385@command{@value{AS}} to interpret the second character literally as a backslash
2386(which prevents @command{@value{AS}} from recognizing the second @code{\} as an
252b5132
RH
2387escape character). The complete list of escapes follows.
2388
2389@cindex escape codes, character
2390@cindex character escape codes
2391@table @kbd
2392@c @item \a
2393@c Mnemonic for ACKnowledge; for ASCII this is octal code 007.
2394@c
2395@cindex @code{\b} (backspace character)
2396@cindex backspace (@code{\b})
2397@item \b
2398Mnemonic for backspace; for ASCII this is octal code 010.
2399
2400@c @item \e
2401@c Mnemonic for EOText; for ASCII this is octal code 004.
2402@c
2403@cindex @code{\f} (formfeed character)
2404@cindex formfeed (@code{\f})
2405@item \f
2406Mnemonic for FormFeed; for ASCII this is octal code 014.
2407
2408@cindex @code{\n} (newline character)
2409@cindex newline (@code{\n})
2410@item \n
2411Mnemonic for newline; for ASCII this is octal code 012.
2412
2413@c @item \p
2414@c Mnemonic for prefix; for ASCII this is octal code 033, usually known as @code{escape}.
2415@c
2416@cindex @code{\r} (carriage return character)
2417@cindex carriage return (@code{\r})
2418@item \r
2419Mnemonic for carriage-Return; for ASCII this is octal code 015.
2420
2421@c @item \s
2422@c Mnemonic for space; for ASCII this is octal code 040. Included for compliance with
2423@c other assemblers.
2424@c
2425@cindex @code{\t} (tab)
2426@cindex tab (@code{\t})
2427@item \t
2428Mnemonic for horizontal Tab; for ASCII this is octal code 011.
2429
2430@c @item \v
2431@c Mnemonic for Vertical tab; for ASCII this is octal code 013.
2432@c @item \x @var{digit} @var{digit} @var{digit}
2433@c A hexadecimal character code. The numeric code is 3 hexadecimal digits.
2434@c
2435@cindex @code{\@var{ddd}} (octal character code)
2436@cindex octal character code (@code{\@var{ddd}})
2437@item \ @var{digit} @var{digit} @var{digit}
2438An octal character code. The numeric code is 3 octal digits.
2439For compatibility with other Unix systems, 8 and 9 are accepted as digits:
2440for example, @code{\008} has the value 010, and @code{\009} the value 011.
2441
2442@cindex @code{\@var{xd...}} (hex character code)
2443@cindex hex character code (@code{\@var{xd...}})
2444@item \@code{x} @var{hex-digits...}
2445A hex character code. All trailing hex digits are combined. Either upper or
2446lower case @code{x} works.
2447
2448@cindex @code{\\} (@samp{\} character)
2449@cindex backslash (@code{\\})
2450@item \\
2451Represents one @samp{\} character.
2452
2453@c @item \'
2454@c Represents one @samp{'} (accent acute) character.
2455@c This is needed in single character literals
2456@c (@xref{Characters,,Character Constants}.) to represent
2457@c a @samp{'}.
2458@c
2459@cindex @code{\"} (doublequote character)
2460@cindex doublequote (@code{\"})
2461@item \"
2462Represents one @samp{"} character. Needed in strings to represent
2463this character, because an unescaped @samp{"} would end the string.
2464
2465@item \ @var{anything-else}
2466Any other character when escaped by @kbd{\} gives a warning, but
2467assembles as if the @samp{\} was not present. The idea is that if
2468you used an escape sequence you clearly didn't want the literal
a4fb0134
SC
2469interpretation of the following character. However @command{@value{AS}} has no
2470other interpretation, so @command{@value{AS}} knows it is giving you the wrong
252b5132
RH
2471code and warns you of the fact.
2472@end table
2473
2474Which characters are escapable, and what those escapes represent,
2475varies widely among assemblers. The current set is what we think
2476the BSD 4.2 assembler recognizes, and is a subset of what most C
2477compilers recognize. If you are in doubt, do not use an escape
2478sequence.
2479
2480@node Chars
2481@subsubsection Characters
2482
2483@cindex single character constant
2484@cindex character, single
2485@cindex constant, single character
2486A single character may be written as a single quote immediately
2487followed by that character. The same escapes apply to characters as
2488to strings. So if you want to write the character backslash, you
2489must write @kbd{'\\} where the first @code{\} escapes the second
2490@code{\}. As you can see, the quote is an acute accent, not a
2491grave accent. A newline
2492@ifclear GENERIC
2493@ifclear abnormal-separator
2494(or semicolon @samp{;})
2495@end ifclear
2496@ifset abnormal-separator
252b5132
RH
2497@ifset H8
2498(or dollar sign @samp{$}, for the H8/300; or semicolon @samp{;} for the
7be1c489 2499Renesas SH)
252b5132
RH
2500@end ifset
2501@end ifset
2502@end ifclear
2503immediately following an acute accent is taken as a literal character
2504and does not count as the end of a statement. The value of a character
2505constant in a numeric expression is the machine's byte-wide code for
a4fb0134 2506that character. @command{@value{AS}} assumes your character code is ASCII:
252b5132
RH
2507@kbd{'A} means 65, @kbd{'B} means 66, and so on. @refill
2508
2509@node Numbers
2510@subsection Number Constants
2511
2512@cindex constants, number
2513@cindex number constants
a4fb0134 2514@command{@value{AS}} distinguishes three kinds of numbers according to how they
252b5132
RH
2515are stored in the target machine. @emph{Integers} are numbers that
2516would fit into an @code{int} in the C language. @emph{Bignums} are
2517integers, but they are stored in more than 32 bits. @emph{Flonums}
2518are floating point numbers, described below.
2519
2520@menu
2521* Integers:: Integers
2522* Bignums:: Bignums
2523* Flonums:: Flonums
2524@ifclear GENERIC
2525@ifset I960
2526* Bit Fields:: Bit Fields
2527@end ifset
2528@end ifclear
2529@end menu
2530
2531@node Integers
2532@subsubsection Integers
2533@cindex integers
2534@cindex constants, integer
2535
2536@cindex binary integers
2537@cindex integers, binary
2538A binary integer is @samp{0b} or @samp{0B} followed by zero or more of
2539the binary digits @samp{01}.
2540
2541@cindex octal integers
2542@cindex integers, octal
2543An octal integer is @samp{0} followed by zero or more of the octal
2544digits (@samp{01234567}).
2545
2546@cindex decimal integers
2547@cindex integers, decimal
2548A decimal integer starts with a non-zero digit followed by zero or
2549more digits (@samp{0123456789}).
2550
2551@cindex hexadecimal integers
2552@cindex integers, hexadecimal
2553A hexadecimal integer is @samp{0x} or @samp{0X} followed by one or
2554more hexadecimal digits chosen from @samp{0123456789abcdefABCDEF}.
2555
2556Integers have the usual values. To denote a negative integer, use
2557the prefix operator @samp{-} discussed under expressions
2558(@pxref{Prefix Ops,,Prefix Operators}).
2559
2560@node Bignums
2561@subsubsection Bignums
2562
2563@cindex bignums
2564@cindex constants, bignum
2565A @dfn{bignum} has the same syntax and semantics as an integer
2566except that the number (or its negative) takes more than 32 bits to
2567represent in binary. The distinction is made because in some places
2568integers are permitted while bignums are not.
2569
2570@node Flonums
2571@subsubsection Flonums
2572@cindex flonums
2573@cindex floating point numbers
2574@cindex constants, floating point
2575
2576@cindex precision, floating point
2577A @dfn{flonum} represents a floating point number. The translation is
2578indirect: a decimal floating point number from the text is converted by
a4fb0134 2579@command{@value{AS}} to a generic binary floating point number of more than
252b5132
RH
2580sufficient precision. This generic floating point number is converted
2581to a particular computer's floating point format (or formats) by a
a4fb0134 2582portion of @command{@value{AS}} specialized to that computer.
252b5132
RH
2583
2584A flonum is written by writing (in order)
2585@itemize @bullet
2586@item
2587The digit @samp{0}.
2588@ifset HPPA
2589(@samp{0} is optional on the HPPA.)
2590@end ifset
2591
2592@item
a4fb0134 2593A letter, to tell @command{@value{AS}} the rest of the number is a flonum.
252b5132
RH
2594@ifset GENERIC
2595@kbd{e} is recommended. Case is not important.
2596@ignore
2597@c FIXME: verify if flonum syntax really this vague for most cases
2598(Any otherwise illegal letter works here, but that might be changed. Vax BSD
25994.2 assembler seems to allow any of @samp{defghDEFGH}.)
2600@end ignore
2601
7be1c489 2602On the H8/300, Renesas / SuperH SH,
252b5132
RH
2603and AMD 29K architectures, the letter must be
2604one of the letters @samp{DFPRSX} (in upper or lower case).
2605
2606On the ARC, the letter must be one of the letters @samp{DFRS}
2607(in upper or lower case).
2608
2609On the Intel 960 architecture, the letter must be
2610one of the letters @samp{DFT} (in upper or lower case).
2611
2612On the HPPA architecture, the letter must be @samp{E} (upper case only).
2613@end ifset
2614@ifclear GENERIC
252b5132
RH
2615@ifset ARC
2616One of the letters @samp{DFRS} (in upper or lower case).
2617@end ifset
2618@ifset H8
2619One of the letters @samp{DFPRSX} (in upper or lower case).
2620@end ifset
2621@ifset HPPA
2622The letter @samp{E} (upper case only).
2623@end ifset
2624@ifset I960
2625One of the letters @samp{DFT} (in upper or lower case).
2626@end ifset
2627@end ifclear
2628
2629@item
2630An optional sign: either @samp{+} or @samp{-}.
2631
2632@item
2633An optional @dfn{integer part}: zero or more decimal digits.
2634
2635@item
2636An optional @dfn{fractional part}: @samp{.} followed by zero
2637or more decimal digits.
2638
2639@item
2640An optional exponent, consisting of:
2641
2642@itemize @bullet
2643@item
2644An @samp{E} or @samp{e}.
2645@c I can't find a config where "EXP_CHARS" is other than 'eE', but in
2646@c principle this can perfectly well be different on different targets.
2647@item
2648Optional sign: either @samp{+} or @samp{-}.
2649@item
2650One or more decimal digits.
2651@end itemize
2652
2653@end itemize
2654
2655At least one of the integer part or the fractional part must be
2656present. The floating point number has the usual base-10 value.
2657
a4fb0134 2658@command{@value{AS}} does all processing using integers. Flonums are computed
252b5132 2659independently of any floating point hardware in the computer running
a4fb0134 2660@command{@value{AS}}.
252b5132
RH
2661
2662@ifclear GENERIC
2663@ifset I960
2664@c Bit fields are written as a general facility but are also controlled
2665@c by a conditional-compilation flag---which is as of now (21mar91)
2666@c turned on only by the i960 config of GAS.
2667@node Bit Fields
2668@subsubsection Bit Fields
2669
2670@cindex bit fields
2671@cindex constants, bit field
2672You can also define numeric constants as @dfn{bit fields}.
2673specify two numbers separated by a colon---
2674@example
2675@var{mask}:@var{value}
2676@end example
2677@noindent
a4fb0134 2678@command{@value{AS}} applies a bitwise @sc{and} between @var{mask} and
252b5132
RH
2679@var{value}.
2680
2681The resulting number is then packed
2682@ifset GENERIC
2683@c this conditional paren in case bit fields turned on elsewhere than 960
2684(in host-dependent byte order)
2685@end ifset
2686into a field whose width depends on which assembler directive has the
2687bit-field as its argument. Overflow (a result from the bitwise and
2688requiring more binary digits to represent) is not an error; instead,
2689more constants are generated, of the specified width, beginning with the
2690least significant digits.@refill
2691
2692The directives @code{.byte}, @code{.hword}, @code{.int}, @code{.long},
2693@code{.short}, and @code{.word} accept bit-field arguments.
2694@end ifset
2695@end ifclear
2696
2697@node Sections
2698@chapter Sections and Relocation
2699@cindex sections
2700@cindex relocation
2701
2702@menu
2703* Secs Background:: Background
2704* Ld Sections:: Linker Sections
2705* As Sections:: Assembler Internal Sections
2706* Sub-Sections:: Sub-Sections
2707* bss:: bss Section
2708@end menu
2709
2710@node Secs Background
2711@section Background
2712
2713Roughly, a section is a range of addresses, with no gaps; all data
2714``in'' those addresses is treated the same for some particular purpose.
2715For example there may be a ``read only'' section.
2716
2717@cindex linker, and assembler
2718@cindex assembler, and linker
2719The linker @code{@value{LD}} reads many object files (partial programs) and
a4fb0134 2720combines their contents to form a runnable program. When @command{@value{AS}}
252b5132
RH
2721emits an object file, the partial program is assumed to start at address 0.
2722@code{@value{LD}} assigns the final addresses for the partial program, so that
2723different partial programs do not overlap. This is actually an
a4fb0134 2724oversimplification, but it suffices to explain how @command{@value{AS}} uses
252b5132
RH
2725sections.
2726
2727@code{@value{LD}} moves blocks of bytes of your program to their run-time
2728addresses. These blocks slide to their run-time addresses as rigid
2729units; their length does not change and neither does the order of bytes
2730within them. Such a rigid unit is called a @emph{section}. Assigning
2731run-time addresses to sections is called @dfn{relocation}. It includes
2732the task of adjusting mentions of object-file addresses so they refer to
2733the proper run-time addresses.
2734@ifset H8
7be1c489 2735For the H8/300, and for the Renesas / SuperH SH,
a4fb0134 2736@command{@value{AS}} pads sections if needed to
252b5132
RH
2737ensure they end on a word (sixteen bit) boundary.
2738@end ifset
2739
2740@cindex standard assembler sections
a4fb0134 2741An object file written by @command{@value{AS}} has at least three sections, any
252b5132
RH
2742of which may be empty. These are named @dfn{text}, @dfn{data} and
2743@dfn{bss} sections.
2744
c1253627 2745@ifset COFF-ELF
252b5132 2746@ifset GENERIC
c1253627 2747When it generates COFF or ELF output,
252b5132 2748@end ifset
a4fb0134 2749@command{@value{AS}} can also generate whatever other named sections you specify
252b5132
RH
2750using the @samp{.section} directive (@pxref{Section,,@code{.section}}).
2751If you do not use any directives that place output in the @samp{.text}
2752or @samp{.data} sections, these sections still exist, but are empty.
2753@end ifset
2754
2755@ifset HPPA
2756@ifset GENERIC
a4fb0134 2757When @command{@value{AS}} generates SOM or ELF output for the HPPA,
252b5132 2758@end ifset
a4fb0134 2759@command{@value{AS}} can also generate whatever other named sections you
252b5132
RH
2760specify using the @samp{.space} and @samp{.subspace} directives. See
2761@cite{HP9000 Series 800 Assembly Language Reference Manual}
2762(HP 92432-90001) for details on the @samp{.space} and @samp{.subspace}
2763assembler directives.
2764
2765@ifset SOM
a4fb0134 2766Additionally, @command{@value{AS}} uses different names for the standard
252b5132
RH
2767text, data, and bss sections when generating SOM output. Program text
2768is placed into the @samp{$CODE$} section, data into @samp{$DATA$}, and
2769BSS into @samp{$BSS$}.
2770@end ifset
2771@end ifset
2772
2773Within the object file, the text section starts at address @code{0}, the
2774data section follows, and the bss section follows the data section.
2775
2776@ifset HPPA
2777When generating either SOM or ELF output files on the HPPA, the text
2778section starts at address @code{0}, the data section at address
2779@code{0x4000000}, and the bss section follows the data section.
2780@end ifset
2781
2782To let @code{@value{LD}} know which data changes when the sections are
a4fb0134 2783relocated, and how to change that data, @command{@value{AS}} also writes to the
252b5132
RH
2784object file details of the relocation needed. To perform relocation
2785@code{@value{LD}} must know, each time an address in the object
2786file is mentioned:
2787@itemize @bullet
2788@item
2789Where in the object file is the beginning of this reference to
2790an address?
2791@item
2792How long (in bytes) is this reference?
2793@item
2794Which section does the address refer to? What is the numeric value of
2795@display
2796(@var{address}) @minus{} (@var{start-address of section})?
2797@end display
2798@item
2799Is the reference to an address ``Program-Counter relative''?
2800@end itemize
2801
2802@cindex addresses, format of
2803@cindex section-relative addressing
a4fb0134 2804In fact, every address @command{@value{AS}} ever uses is expressed as
252b5132
RH
2805@display
2806(@var{section}) + (@var{offset into section})
2807@end display
2808@noindent
a4fb0134 2809Further, most expressions @command{@value{AS}} computes have this section-relative
252b5132
RH
2810nature.
2811@ifset SOM
2812(For some object formats, such as SOM for the HPPA, some expressions are
2813symbol-relative instead.)
2814@end ifset
2815
2816In this manual we use the notation @{@var{secname} @var{N}@} to mean ``offset
2817@var{N} into section @var{secname}.''
2818
2819Apart from text, data and bss sections you need to know about the
2820@dfn{absolute} section. When @code{@value{LD}} mixes partial programs,
2821addresses in the absolute section remain unchanged. For example, address
2822@code{@{absolute 0@}} is ``relocated'' to run-time address 0 by
2823@code{@value{LD}}. Although the linker never arranges two partial programs'
2824data sections with overlapping addresses after linking, @emph{by definition}
2825their absolute sections must overlap. Address @code{@{absolute@ 239@}} in one
2826part of a program is always the same address when the program is running as
2827address @code{@{absolute@ 239@}} in any other part of the program.
2828
2829The idea of sections is extended to the @dfn{undefined} section. Any
2830address whose section is unknown at assembly time is by definition
2831rendered @{undefined @var{U}@}---where @var{U} is filled in later.
2832Since numbers are always defined, the only way to generate an undefined
2833address is to mention an undefined symbol. A reference to a named
2834common block would be such a symbol: its value is unknown at assembly
2835time so it has section @emph{undefined}.
2836
2837By analogy the word @emph{section} is used to describe groups of sections in
2838the linked program. @code{@value{LD}} puts all partial programs' text
2839sections in contiguous addresses in the linked program. It is
2840customary to refer to the @emph{text section} of a program, meaning all
2841the addresses of all partial programs' text sections. Likewise for
2842data and bss sections.
2843
2844Some sections are manipulated by @code{@value{LD}}; others are invented for
a4fb0134 2845use of @command{@value{AS}} and have no meaning except during assembly.
252b5132
RH
2846
2847@node Ld Sections
2848@section Linker Sections
2849@code{@value{LD}} deals with just four kinds of sections, summarized below.
2850
2851@table @strong
2852
c1253627 2853@ifset COFF-ELF
252b5132
RH
2854@cindex named sections
2855@cindex sections, named
2856@item named sections
2857@end ifset
2858@ifset aout-bout
2859@cindex text section
2860@cindex data section
2861@itemx text section
2862@itemx data section
2863@end ifset
a4fb0134 2864These sections hold your program. @command{@value{AS}} and @code{@value{LD}} treat them as
252b5132 2865separate but equal sections. Anything you can say of one section is
c1253627
NC
2866true of another.
2867@c @ifset aout-bout
252b5132
RH
2868When the program is running, however, it is
2869customary for the text section to be unalterable. The
2870text section is often shared among processes: it contains
2871instructions, constants and the like. The data section of a running
2872program is usually alterable: for example, C variables would be stored
2873in the data section.
c1253627 2874@c @end ifset
252b5132
RH
2875
2876@cindex bss section
2877@item bss section
2878This section contains zeroed bytes when your program begins running. It
a349d9dd 2879is used to hold uninitialized variables or common storage. The length of
252b5132
RH
2880each partial program's bss section is important, but because it starts
2881out containing zeroed bytes there is no need to store explicit zero
2882bytes in the object file. The bss section was invented to eliminate
2883those explicit zeros from object files.
2884
2885@cindex absolute section
2886@item absolute section
2887Address 0 of this section is always ``relocated'' to runtime address 0.
2888This is useful if you want to refer to an address that @code{@value{LD}} must
2889not change when relocating. In this sense we speak of absolute
2890addresses being ``unrelocatable'': they do not change during relocation.
2891
2892@cindex undefined section
2893@item undefined section
2894This ``section'' is a catch-all for address references to objects not in
2895the preceding sections.
2896@c FIXME: ref to some other doc on obj-file formats could go here.
2897@end table
2898
2899@cindex relocation example
2900An idealized example of three relocatable sections follows.
c1253627 2901@ifset COFF-ELF
252b5132
RH
2902The example uses the traditional section names @samp{.text} and @samp{.data}.
2903@end ifset
2904Memory addresses are on the horizontal axis.
2905
2906@c TEXI2ROFF-KILL
c1253627 2907@ifnottex
252b5132
RH
2908@c END TEXI2ROFF-KILL
2909@smallexample
2910 +-----+----+--+
2911partial program # 1: |ttttt|dddd|00|
2912 +-----+----+--+
2913
2914 text data bss
2915 seg. seg. seg.
2916
2917 +---+---+---+
2918partial program # 2: |TTT|DDD|000|
2919 +---+---+---+
2920
2921 +--+---+-----+--+----+---+-----+~~
2922linked program: | |TTT|ttttt| |dddd|DDD|00000|
2923 +--+---+-----+--+----+---+-----+~~
2924
2925 addresses: 0 @dots{}
2926@end smallexample
2927@c TEXI2ROFF-KILL
c1253627 2928@end ifnottex
252b5132
RH
2929@need 5000
2930@tex
c1253627 2931\bigskip
252b5132
RH
2932\line{\it Partial program \#1: \hfil}
2933\line{\ibox{2.5cm}{\tt text}\ibox{2cm}{\tt data}\ibox{1cm}{\tt bss}\hfil}
2934\line{\boxit{2.5cm}{\tt ttttt}\boxit{2cm}{\tt dddd}\boxit{1cm}{\tt 00}\hfil}
2935
2936\line{\it Partial program \#2: \hfil}
2937\line{\ibox{1cm}{\tt text}\ibox{1.5cm}{\tt data}\ibox{1cm}{\tt bss}\hfil}
2938\line{\boxit{1cm}{\tt TTT}\boxit{1.5cm}{\tt DDDD}\boxit{1cm}{\tt 000}\hfil}
2939
2940\line{\it linked program: \hfil}
2941\line{\ibox{.5cm}{}\ibox{1cm}{\tt text}\ibox{2.5cm}{}\ibox{.75cm}{}\ibox{2cm}{\tt data}\ibox{1.5cm}{}\ibox{2cm}{\tt bss}\hfil}
2942\line{\boxit{.5cm}{}\boxit{1cm}{\tt TTT}\boxit{2.5cm}{\tt
2943ttttt}\boxit{.75cm}{}\boxit{2cm}{\tt dddd}\boxit{1.5cm}{\tt
2944DDDD}\boxit{2cm}{\tt 00000}\ \dots\hfil}
2945
2946\line{\it addresses: \hfil}
2947\line{0\dots\hfil}
2948
2949@end tex
2950@c END TEXI2ROFF-KILL
2951
2952@node As Sections
2953@section Assembler Internal Sections
2954
2955@cindex internal assembler sections
2956@cindex sections in messages, internal
a4fb0134 2957These sections are meant only for the internal use of @command{@value{AS}}. They
252b5132 2958have no meaning at run-time. You do not really need to know about these
a4fb0134 2959sections for most purposes; but they can be mentioned in @command{@value{AS}}
252b5132 2960warning messages, so it might be helpful to have an idea of their
a4fb0134 2961meanings to @command{@value{AS}}. These sections are used to permit the
252b5132
RH
2962value of every expression in your assembly language program to be a
2963section-relative address.
2964
2965@table @b
2966@cindex assembler internal logic error
2967@item ASSEMBLER-INTERNAL-LOGIC-ERROR!
2968An internal assembler logic error has been found. This means there is a
2969bug in the assembler.
2970
2971@cindex expr (internal section)
2972@item expr section
2973The assembler stores complex expression internally as combinations of
2974symbols. When it needs to represent an expression as a symbol, it puts
2975it in the expr section.
2976@c FIXME item debug
2977@c FIXME item transfer[t] vector preload
2978@c FIXME item transfer[t] vector postload
2979@c FIXME item register
2980@end table
2981
2982@node Sub-Sections
2983@section Sub-Sections
2984
2985@cindex numbered subsections
2986@cindex grouping data
2987@ifset aout-bout
2988Assembled bytes
c1253627 2989@ifset COFF-ELF
252b5132
RH
2990conventionally
2991@end ifset
2992fall into two sections: text and data.
2993@end ifset
2994You may have separate groups of
2995@ifset GENERIC
2996data in named sections
2997@end ifset
2998@ifclear GENERIC
2999@ifclear aout-bout
3000data in named sections
3001@end ifclear
3002@ifset aout-bout
3003text or data
3004@end ifset
3005@end ifclear
3006that you want to end up near to each other in the object file, even though they
a4fb0134 3007are not contiguous in the assembler source. @command{@value{AS}} allows you to
252b5132
RH
3008use @dfn{subsections} for this purpose. Within each section, there can be
3009numbered subsections with values from 0 to 8192. Objects assembled into the
3010same subsection go into the object file together with other objects in the same
3011subsection. For example, a compiler might want to store constants in the text
3012section, but might not want to have them interspersed with the program being
3013assembled. In this case, the compiler could issue a @samp{.text 0} before each
3014section of code being output, and a @samp{.text 1} before each group of
3015constants being output.
3016
3017Subsections are optional. If you do not use subsections, everything
3018goes in subsection number zero.
3019
3020@ifset GENERIC
3021Each subsection is zero-padded up to a multiple of four bytes.
3022(Subsections may be padded a different amount on different flavors
a4fb0134 3023of @command{@value{AS}}.)
252b5132
RH
3024@end ifset
3025@ifclear GENERIC
3026@ifset H8
7be1c489 3027On the H8/300 platform, each subsection is zero-padded to a word
252b5132 3028boundary (two bytes).
c2dcd04e 3029The same is true on the Renesas SH.
252b5132
RH
3030@end ifset
3031@ifset I960
3032@c FIXME section padding (alignment)?
3033@c Rich Pixley says padding here depends on target obj code format; that
3034@c doesn't seem particularly useful to say without further elaboration,
3035@c so for now I say nothing about it. If this is a generic BFD issue,
3036@c these paragraphs might need to vanish from this manual, and be
3037@c discussed in BFD chapter of binutils (or some such).
3038@end ifset
252b5132
RH
3039@end ifclear
3040
3041Subsections appear in your object file in numeric order, lowest numbered
3042to highest. (All this to be compatible with other people's assemblers.)
3043The object file contains no representation of subsections; @code{@value{LD}} and
3044other programs that manipulate object files see no trace of them.
3045They just see all your text subsections as a text section, and all your
3046data subsections as a data section.
3047
3048To specify which subsection you want subsequent statements assembled
3049into, use a numeric argument to specify it, in a @samp{.text
3050@var{expression}} or a @samp{.data @var{expression}} statement.
ed9589d4 3051@ifset COFF
252b5132 3052@ifset GENERIC
ed9589d4 3053When generating COFF output, you
252b5132
RH
3054@end ifset
3055@ifclear GENERIC
3056You
3057@end ifclear
3058can also use an extra subsection
3059argument with arbitrary named sections: @samp{.section @var{name},
3060@var{expression}}.
3061@end ifset
ed9589d4
BW
3062@ifset ELF
3063@ifset GENERIC
3064When generating ELF output, you
3065@end ifset
3066@ifclear GENERIC
3067You
3068@end ifclear
3069can also use the @code{.subsection} directive (@pxref{SubSection})
3070to specify a subsection: @samp{.subsection @var{expression}}.
3071@end ifset
252b5132
RH
3072@var{Expression} should be an absolute expression.
3073(@xref{Expressions}.) If you just say @samp{.text} then @samp{.text 0}
3074is assumed. Likewise @samp{.data} means @samp{.data 0}. Assembly
3075begins in @code{text 0}. For instance:
3076@smallexample
3077.text 0 # The default subsection is text 0 anyway.
3078.ascii "This lives in the first text subsection. *"
3079.text 1
3080.ascii "But this lives in the second text subsection."
3081.data 0
3082.ascii "This lives in the data section,"
3083.ascii "in the first data subsection."
3084.text 0
3085.ascii "This lives in the first text section,"
3086.ascii "immediately following the asterisk (*)."
3087@end smallexample
3088
3089Each section has a @dfn{location counter} incremented by one for every byte
3090assembled into that section. Because subsections are merely a convenience
a4fb0134 3091restricted to @command{@value{AS}} there is no concept of a subsection location
252b5132
RH
3092counter. There is no way to directly manipulate a location counter---but the
3093@code{.align} directive changes it, and any label definition captures its
3094current value. The location counter of the section where statements are being
3095assembled is said to be the @dfn{active} location counter.
3096
3097@node bss
3098@section bss Section
3099
3100@cindex bss section
3101@cindex common variable storage
3102The bss section is used for local common variable storage.
3103You may allocate address space in the bss section, but you may
3104not dictate data to load into it before your program executes. When
3105your program starts running, all the contents of the bss
3106section are zeroed bytes.
3107
3108The @code{.lcomm} pseudo-op defines a symbol in the bss section; see
3109@ref{Lcomm,,@code{.lcomm}}.
3110
3111The @code{.comm} pseudo-op may be used to declare a common symbol, which is
3112another form of uninitialized symbol; see @xref{Comm,,@code{.comm}}.
3113
3114@ifset GENERIC
3115When assembling for a target which supports multiple sections, such as ELF or
3116COFF, you may switch into the @code{.bss} section and define symbols as usual;
3117see @ref{Section,,@code{.section}}. You may only assemble zero values into the
3118section. Typically the section will only contain symbol definitions and
3119@code{.skip} directives (@pxref{Skip,,@code{.skip}}).
3120@end ifset
3121
3122@node Symbols
3123@chapter Symbols
3124
3125@cindex symbols
3126Symbols are a central concept: the programmer uses symbols to name
3127things, the linker uses symbols to link, and the debugger uses symbols
3128to debug.
3129
3130@quotation
3131@cindex debuggers, and symbol order
a4fb0134 3132@emph{Warning:} @command{@value{AS}} does not place symbols in the object file in
252b5132
RH
3133the same order they were declared. This may break some debuggers.
3134@end quotation
3135
3136@menu
3137* Labels:: Labels
3138* Setting Symbols:: Giving Symbols Other Values
3139* Symbol Names:: Symbol Names
3140* Dot:: The Special Dot Symbol
3141* Symbol Attributes:: Symbol Attributes
3142@end menu
3143
3144@node Labels
3145@section Labels
3146
3147@cindex labels
3148A @dfn{label} is written as a symbol immediately followed by a colon
3149@samp{:}. The symbol then represents the current value of the
3150active location counter, and is, for example, a suitable instruction
3151operand. You are warned if you use the same symbol to represent two
3152different locations: the first definition overrides any other
3153definitions.
3154
3155@ifset HPPA
3156On the HPPA, the usual form for a label need not be immediately followed by a
3157colon, but instead must start in column zero. Only one label may be defined on
a4fb0134 3158a single line. To work around this, the HPPA version of @command{@value{AS}} also
252b5132
RH
3159provides a special directive @code{.label} for defining labels more flexibly.
3160@end ifset
3161
3162@node Setting Symbols
3163@section Giving Symbols Other Values
3164
3165@cindex assigning values to symbols
3166@cindex symbol values, assigning
3167A symbol can be given an arbitrary value by writing a symbol, followed
3168by an equals sign @samp{=}, followed by an expression
3169(@pxref{Expressions}). This is equivalent to using the @code{.set}
9497f5ac
NC
3170directive. @xref{Set,,@code{.set}}. In the same way, using a double
3171equals sign @samp{=}@samp{=} here represents an equivalent of the
3172@code{.eqv} directive. @xref{Eqv,,@code{.eqv}}.
252b5132
RH
3173
3174@node Symbol Names
3175@section Symbol Names
3176
3177@cindex symbol names
3178@cindex names, symbol
3179@ifclear SPECIAL-SYMS
3180Symbol names begin with a letter or with one of @samp{._}. On most
3181machines, you can also use @code{$} in symbol names; exceptions are
3182noted in @ref{Machine Dependencies}. That character may be followed by any
3183string of digits, letters, dollar signs (unless otherwise noted in
3184@ref{Machine Dependencies}), and underscores.
3185@end ifclear
252b5132
RH
3186@ifset SPECIAL-SYMS
3187@ifset H8
3188Symbol names begin with a letter or with one of @samp{._}. On the
7be1c489 3189Renesas SH you can also use @code{$} in symbol names. That
c2dcd04e
NC
3190character may be followed by any string of digits, letters, dollar signs (save
3191on the H8/300), and underscores.
252b5132
RH
3192@end ifset
3193@end ifset
3194
3195Case of letters is significant: @code{foo} is a different symbol name
3196than @code{Foo}.
3197
3198Each symbol has exactly one name. Each name in an assembly language program
3199refers to exactly one symbol. You may use that symbol name any number of times
3200in a program.
3201
3202@subheading Local Symbol Names
3203
3204@cindex local symbol names
3205@cindex symbol names, local
3206@cindex temporary symbol names
3207@cindex symbol names, temporary
3208Local symbols help compilers and programmers use names temporarily.
2d5aaba0
NC
3209They create symbols which are guaranteed to be unique over the entire scope of
3210the input source code and which can be referred to by a simple notation.
3211To define a local symbol, write a label of the form @samp{@b{N}:} (where @b{N}
3212represents any positive integer). To refer to the most recent previous
3213definition of that symbol write @samp{@b{N}b}, using the same number as when
3214you defined the label. To refer to the next definition of a local label, write
3215@samp{@b{N}f}--- The @samp{b} stands for``backwards'' and the @samp{f} stands
3216for ``forwards''.
3217
3218There is no restriction on how you can use these labels, and you can reuse them
3219too. So that it is possible to repeatedly define the same local label (using
3220the same number @samp{@b{N}}), although you can only refer to the most recently
3221defined local label of that number (for a backwards reference) or the next
3222definition of a specific local label for a forward reference. It is also worth
3223noting that the first 10 local labels (@samp{@b{0:}}@dots{}@samp{@b{9:}}) are
3224implemented in a slightly more efficient manner than the others.
3225
3226Here is an example:
3227
3228@smallexample
32291: branch 1f
32302: branch 1b
32311: branch 2f
32322: branch 1b
3233@end smallexample
3234
3235Which is the equivalent of:
3236
3237@smallexample
3238label_1: branch label_3
3239label_2: branch label_1
3240label_3: branch label_4
3241label_4: branch label_3
3242@end smallexample
3243
3244Local symbol names are only a notational device. They are immediately
3245transformed into more conventional symbol names before the assembler uses them.
3246The symbol names stored in the symbol table, appearing in error messages and
3247optionally emitted to the object file. The names are constructed using these
252b5132
RH
3248parts:
3249
3250@table @code
3251@item L
a4fb0134 3252All local labels begin with @samp{L}. Normally both @command{@value{AS}} and
252b5132
RH
3253@code{@value{LD}} forget symbols that start with @samp{L}. These labels are
3254used for symbols you are never intended to see. If you use the
a4fb0134 3255@samp{-L} option then @command{@value{AS}} retains these symbols in the
252b5132
RH
3256object file. If you also instruct @code{@value{LD}} to retain these symbols,
3257you may use them in debugging.
3258
2d5aaba0
NC
3259@item @var{number}
3260This is the number that was used in the local label definition. So if the
3261label is written @samp{55:} then the number is @samp{55}.
252b5132 3262
2d5aaba0
NC
3263@item @kbd{C-B}
3264This unusual character is included so you do not accidentally invent a symbol
3265of the same name. The character has ASCII value of @samp{\002} (control-B).
252b5132
RH
3266
3267@item @emph{ordinal number}
2d5aaba0
NC
3268This is a serial number to keep the labels distinct. The first definition of
3269@samp{0:} gets the number @samp{1}. The 15th definition of @samp{0:} gets the
3270number @samp{15}, and so on. Likewise the first definition of @samp{1:} gets
3271the number @samp{1} and its 15th defintion gets @samp{15} as well.
252b5132
RH
3272@end table
3273
2d5aaba0
NC
3274So for example, the first @code{1:} is named @code{L1@kbd{C-B}1}, the 44th
3275@code{3:} is named @code{L3@kbd{C-B}44}.
3276
3277@subheading Dollar Local Labels
3278@cindex dollar local symbols
3279
3280@code{@value{AS}} also supports an even more local form of local labels called
3281dollar labels. These labels go out of scope (ie they become undefined) as soon
3282as a non-local label is defined. Thus they remain valid for only a small
3283region of the input source code. Normal local labels, by contrast, remain in
3284scope for the entire file, or until they are redefined by another occurrence of
3285the same local label.
3286
3287Dollar labels are defined in exactly the same way as ordinary local labels,
3288except that instead of being terminated by a colon, they are terminated by a
3289dollar sign. eg @samp{@b{55$}}.
3290
3291They can also be distinguished from ordinary local labels by their transformed
3292name which uses ASCII character @samp{\001} (control-A) as the magic character
3293to distinguish them from ordinary labels. Thus the 5th defintion of @samp{6$}
3294is named @samp{L6@kbd{C-A}5}.
252b5132
RH
3295
3296@node Dot
3297@section The Special Dot Symbol
3298
3299@cindex dot (symbol)
3300@cindex @code{.} (symbol)
3301@cindex current address
3302@cindex location counter
3303The special symbol @samp{.} refers to the current address that
a4fb0134 3304@command{@value{AS}} is assembling into. Thus, the expression @samp{melvin:
252b5132
RH
3305.long .} defines @code{melvin} to contain its own address.
3306Assigning a value to @code{.} is treated the same as a @code{.org}
3307directive. Thus, the expression @samp{.=.+4} is the same as saying
3308@ifclear no-space-dir
3309@samp{.space 4}.
3310@end ifclear
252b5132
RH
3311
3312@node Symbol Attributes
3313@section Symbol Attributes
3314
3315@cindex symbol attributes
3316@cindex attributes, symbol
3317Every symbol has, as well as its name, the attributes ``Value'' and
3318``Type''. Depending on output format, symbols can also have auxiliary
3319attributes.
3320@ifset INTERNALS
3321The detailed definitions are in @file{a.out.h}.
3322@end ifset
3323
a4fb0134 3324If you use a symbol without defining it, @command{@value{AS}} assumes zero for
252b5132
RH
3325all these attributes, and probably won't warn you. This makes the
3326symbol an externally defined symbol, which is generally what you
3327would want.
3328
3329@menu
3330* Symbol Value:: Value
3331* Symbol Type:: Type
3332@ifset aout-bout
3333@ifset GENERIC
3334* a.out Symbols:: Symbol Attributes: @code{a.out}
3335@end ifset
3336@ifclear GENERIC
3337@ifclear BOUT
3338* a.out Symbols:: Symbol Attributes: @code{a.out}
3339@end ifclear
3340@ifset BOUT
3341* a.out Symbols:: Symbol Attributes: @code{a.out}, @code{b.out}
3342@end ifset
3343@end ifclear
3344@end ifset
3345@ifset COFF
3346* COFF Symbols:: Symbol Attributes for COFF
3347@end ifset
3348@ifset SOM
3349* SOM Symbols:: Symbol Attributes for SOM
3350@end ifset
3351@end menu
3352
3353@node Symbol Value
3354@subsection Value
3355
3356@cindex value of a symbol
3357@cindex symbol value
3358The value of a symbol is (usually) 32 bits. For a symbol which labels a
3359location in the text, data, bss or absolute sections the value is the
3360number of addresses from the start of that section to the label.
3361Naturally for text, data and bss sections the value of a symbol changes
3362as @code{@value{LD}} changes section base addresses during linking. Absolute
3363symbols' values do not change during linking: that is why they are
3364called absolute.
3365
3366The value of an undefined symbol is treated in a special way. If it is
33670 then the symbol is not defined in this assembler source file, and
3368@code{@value{LD}} tries to determine its value from other files linked into the
3369same program. You make this kind of symbol simply by mentioning a symbol
3370name without defining it. A non-zero value represents a @code{.comm}
3371common declaration. The value is how much common storage to reserve, in
3372bytes (addresses). The symbol refers to the first address of the
3373allocated storage.
3374
3375@node Symbol Type
3376@subsection Type
3377
3378@cindex type of a symbol
3379@cindex symbol type
3380The type attribute of a symbol contains relocation (section)
3381information, any flag settings indicating that a symbol is external, and
3382(optionally), other information for linkers and debuggers. The exact
3383format depends on the object-code output format in use.
3384
3385@ifset aout-bout
3386@ifclear GENERIC
3387@ifset BOUT
3388@c The following avoids a "widow" subsection title. @group would be
3389@c better if it were available outside examples.
3390@need 1000
3391@node a.out Symbols
3392@subsection Symbol Attributes: @code{a.out}, @code{b.out}
3393
3394@cindex @code{b.out} symbol attributes
3395@cindex symbol attributes, @code{b.out}
a4fb0134 3396These symbol attributes appear only when @command{@value{AS}} is configured for
252b5132
RH
3397one of the Berkeley-descended object output formats---@code{a.out} or
3398@code{b.out}.
3399
3400@end ifset
3401@ifclear BOUT
3402@node a.out Symbols
3403@subsection Symbol Attributes: @code{a.out}
3404
3405@cindex @code{a.out} symbol attributes
3406@cindex symbol attributes, @code{a.out}
3407
3408@end ifclear
3409@end ifclear
3410@ifset GENERIC
3411@node a.out Symbols
3412@subsection Symbol Attributes: @code{a.out}
3413
3414@cindex @code{a.out} symbol attributes
3415@cindex symbol attributes, @code{a.out}
3416
3417@end ifset
3418@menu
3419* Symbol Desc:: Descriptor
3420* Symbol Other:: Other
3421@end menu
3422
3423@node Symbol Desc
3424@subsubsection Descriptor
3425
3426@cindex descriptor, of @code{a.out} symbol
3427This is an arbitrary 16-bit value. You may establish a symbol's
3428descriptor value by using a @code{.desc} statement
3429(@pxref{Desc,,@code{.desc}}). A descriptor value means nothing to
a4fb0134 3430@command{@value{AS}}.
252b5132
RH
3431
3432@node Symbol Other
3433@subsubsection Other
3434
3435@cindex other attribute, of @code{a.out} symbol
a4fb0134 3436This is an arbitrary 8-bit value. It means nothing to @command{@value{AS}}.
252b5132
RH
3437@end ifset
3438
3439@ifset COFF
3440@node COFF Symbols
3441@subsection Symbol Attributes for COFF
3442
3443@cindex COFF symbol attributes
3444@cindex symbol attributes, COFF
3445
3446The COFF format supports a multitude of auxiliary symbol attributes;
3447like the primary symbol attributes, they are set between @code{.def} and
3448@code{.endef} directives.
3449
3450@subsubsection Primary Attributes
3451
3452@cindex primary attributes, COFF symbols
3453The symbol name is set with @code{.def}; the value and type,
3454respectively, with @code{.val} and @code{.type}.
3455
3456@subsubsection Auxiliary Attributes
3457
3458@cindex auxiliary attributes, COFF symbols
a4fb0134 3459The @command{@value{AS}} directives @code{.dim}, @code{.line}, @code{.scl},
c87db184
CF
3460@code{.size}, @code{.tag}, and @code{.weak} can generate auxiliary symbol
3461table information for COFF.
252b5132
RH
3462@end ifset
3463
3464@ifset SOM
3465@node SOM Symbols
3466@subsection Symbol Attributes for SOM
3467
3468@cindex SOM symbol attributes
3469@cindex symbol attributes, SOM
3470
3471The SOM format for the HPPA supports a multitude of symbol attributes set with
3472the @code{.EXPORT} and @code{.IMPORT} directives.
3473
3474The attributes are described in @cite{HP9000 Series 800 Assembly
3475Language Reference Manual} (HP 92432-90001) under the @code{IMPORT} and
3476@code{EXPORT} assembler directive documentation.
3477@end ifset
3478
3479@node Expressions
3480@chapter Expressions
3481
3482@cindex expressions
3483@cindex addresses
3484@cindex numeric values
3485An @dfn{expression} specifies an address or numeric value.
3486Whitespace may precede and/or follow an expression.
3487
3488The result of an expression must be an absolute number, or else an offset into
3489a particular section. If an expression is not absolute, and there is not
a4fb0134 3490enough information when @command{@value{AS}} sees the expression to know its
252b5132
RH
3491section, a second pass over the source program might be necessary to interpret
3492the expression---but the second pass is currently not implemented.
a4fb0134 3493@command{@value{AS}} aborts with an error message in this situation.
252b5132
RH
3494
3495@menu
3496* Empty Exprs:: Empty Expressions
3497* Integer Exprs:: Integer Expressions
3498@end menu
3499
3500@node Empty Exprs
3501@section Empty Expressions
3502
3503@cindex empty expressions
3504@cindex expressions, empty
3505An empty expression has no value: it is just whitespace or null.
3506Wherever an absolute expression is required, you may omit the
a4fb0134 3507expression, and @command{@value{AS}} assumes a value of (absolute) 0. This
252b5132
RH
3508is compatible with other assemblers.
3509
3510@node Integer Exprs
3511@section Integer Expressions
3512
3513@cindex integer expressions
3514@cindex expressions, integer
3515An @dfn{integer expression} is one or more @emph{arguments} delimited
3516by @emph{operators}.
3517
3518@menu
3519* Arguments:: Arguments
3520* Operators:: Operators
3521* Prefix Ops:: Prefix Operators
3522* Infix Ops:: Infix Operators
3523@end menu
3524
3525@node Arguments
3526@subsection Arguments
3527
3528@cindex expression arguments
3529@cindex arguments in expressions
3530@cindex operands in expressions
3531@cindex arithmetic operands
3532@dfn{Arguments} are symbols, numbers or subexpressions. In other
3533contexts arguments are sometimes called ``arithmetic operands''. In
3534this manual, to avoid confusing them with the ``instruction operands'' of
3535the machine language, we use the term ``argument'' to refer to parts of
3536expressions only, reserving the word ``operand'' to refer only to machine
3537instruction operands.
3538
3539Symbols are evaluated to yield @{@var{section} @var{NNN}@} where
3540@var{section} is one of text, data, bss, absolute,
3541or undefined. @var{NNN} is a signed, 2's complement 32 bit
3542integer.
3543
3544Numbers are usually integers.
3545
3546A number can be a flonum or bignum. In this case, you are warned
a4fb0134 3547that only the low order 32 bits are used, and @command{@value{AS}} pretends
252b5132
RH
3548these 32 bits are an integer. You may write integer-manipulating
3549instructions that act on exotic constants, compatible with other
3550assemblers.
3551
3552@cindex subexpressions
3553Subexpressions are a left parenthesis @samp{(} followed by an integer
3554expression, followed by a right parenthesis @samp{)}; or a prefix
3555operator followed by an argument.
3556
3557@node Operators
3558@subsection Operators
3559
3560@cindex operators, in expressions
3561@cindex arithmetic functions
3562@cindex functions, in expressions
3563@dfn{Operators} are arithmetic functions, like @code{+} or @code{%}. Prefix
3564operators are followed by an argument. Infix operators appear
3565between their arguments. Operators may be preceded and/or followed by
3566whitespace.
3567
3568@node Prefix Ops
3569@subsection Prefix Operator
3570
3571@cindex prefix operators
a4fb0134 3572@command{@value{AS}} has the following @dfn{prefix operators}. They each take
252b5132
RH
3573one argument, which must be absolute.
3574
3575@c the tex/end tex stuff surrounding this small table is meant to make
3576@c it align, on the printed page, with the similar table in the next
3577@c section (which is inside an enumerate).
3578@tex
3579\global\advance\leftskip by \itemindent
3580@end tex
3581
3582@table @code
3583@item -
3584@dfn{Negation}. Two's complement negation.
3585@item ~
3586@dfn{Complementation}. Bitwise not.
3587@end table
3588
3589@tex
3590\global\advance\leftskip by -\itemindent
3591@end tex
3592
3593@node Infix Ops
3594@subsection Infix Operators
3595
3596@cindex infix operators
3597@cindex operators, permitted arguments
3598@dfn{Infix operators} take two arguments, one on either side. Operators
3599have precedence, but operations with equal precedence are performed left
a4fb0134 3600to right. Apart from @code{+} or @option{-}, both arguments must be
252b5132
RH
3601absolute, and the result is absolute.
3602
3603@enumerate
3604@cindex operator precedence
3605@cindex precedence of operators
3606
3607@item
3608Highest Precedence
3609
3610@table @code
3611@item *
3612@dfn{Multiplication}.
3613
3614@item /
3615@dfn{Division}. Truncation is the same as the C operator @samp{/}
3616
3617@item %
3618@dfn{Remainder}.
3619
d1eac9d9 3620@item <<
252b5132
RH
3621@dfn{Shift Left}. Same as the C operator @samp{<<}.
3622
d1eac9d9 3623@item >>
252b5132
RH
3624@dfn{Shift Right}. Same as the C operator @samp{>>}.
3625@end table
3626
3627@item
3628Intermediate precedence
3629
3630@table @code
3631@item |
3632
3633@dfn{Bitwise Inclusive Or}.
3634
3635@item &
3636@dfn{Bitwise And}.
3637
3638@item ^
3639@dfn{Bitwise Exclusive Or}.
3640
3641@item !
3642@dfn{Bitwise Or Not}.
3643@end table
3644
3645@item
b131d4dc 3646Low Precedence
252b5132
RH
3647
3648@table @code
3649@cindex addition, permitted arguments
3650@cindex plus, permitted arguments
3651@cindex arguments for addition
3652@item +
3653@dfn{Addition}. If either argument is absolute, the result has the section of
3654the other argument. You may not add together arguments from different
3655sections.
3656
3657@cindex subtraction, permitted arguments
3658@cindex minus, permitted arguments
3659@cindex arguments for subtraction
3660@item -
3661@dfn{Subtraction}. If the right argument is absolute, the
3662result has the section of the left argument.
3663If both arguments are in the same section, the result is absolute.
3664You may not subtract arguments from different sections.
3665@c FIXME is there still something useful to say about undefined - undefined ?
b131d4dc
NC
3666
3667@cindex comparison expressions
3668@cindex expressions, comparison
3669@item ==
3670@dfn{Is Equal To}
3671@item <>
723a8472 3672@itemx !=
b131d4dc
NC
3673@dfn{Is Not Equal To}
3674@item <
3675@dfn{Is Less Than}
d1eac9d9 3676@item >
b131d4dc 3677@dfn{Is Greater Than}
d1eac9d9 3678@item >=
b131d4dc 3679@dfn{Is Greater Than Or Equal To}
d1eac9d9 3680@item <=
b131d4dc
NC
3681@dfn{Is Less Than Or Equal To}
3682
3683The comparison operators can be used as infix operators. A true results has a
3684value of -1 whereas a false result has a value of 0. Note, these operators
3685perform signed comparisons.
3686@end table
3687
3688@item Lowest Precedence
3689
3690@table @code
3691@item &&
3692@dfn{Logical And}.
3693
3694@item ||
3695@dfn{Logical Or}.
3696
3697These two logical operations can be used to combine the results of sub
3698expressions. Note, unlike the comparison operators a true result returns a
3699value of 1 but a false results does still return 0. Also note that the logical
3700or operator has a slightly lower precedence than logical and.
3701
252b5132
RH
3702@end table
3703@end enumerate
3704
3705In short, it's only meaningful to add or subtract the @emph{offsets} in an
3706address; you can only have a defined section in one of the two arguments.
3707
3708@node Pseudo Ops
3709@chapter Assembler Directives
3710
3711@cindex directives, machine independent
3712@cindex pseudo-ops, machine independent
3713@cindex machine independent directives
3714All assembler directives have names that begin with a period (@samp{.}).
3715The rest of the name is letters, usually in lower case.
3716
3717This chapter discusses directives that are available regardless of the
3718target machine configuration for the @sc{gnu} assembler.
3719@ifset GENERIC
3720Some machine configurations provide additional directives.
3721@xref{Machine Dependencies}.
3722@end ifset
3723@ifclear GENERIC
3724@ifset machine-directives
3725@xref{Machine Dependencies} for additional directives.
3726@end ifset
3727@end ifclear
3728
3729@menu
3730* Abort:: @code{.abort}
3731@ifset COFF
3732* ABORT:: @code{.ABORT}
3733@end ifset
f0dc282c 3734
252b5132 3735* Align:: @code{.align @var{abs-expr} , @var{abs-expr}}
caa32fe5 3736* Altmacro:: @code{.altmacro}
252b5132
RH
3737* Ascii:: @code{.ascii "@var{string}"}@dots{}
3738* Asciz:: @code{.asciz "@var{string}"}@dots{}
3739* Balign:: @code{.balign @var{abs-expr} , @var{abs-expr}}
3740* Byte:: @code{.byte @var{expressions}}
3741* Comm:: @code{.comm @var{symbol} , @var{length} }
54cfded0 3742
cdfbf930 3743* CFI directives:: @code{.cfi_startproc}, @code{.cfi_endproc}, etc.
54cfded0 3744
252b5132
RH
3745* Data:: @code{.data @var{subsection}}
3746@ifset COFF
3747* Def:: @code{.def @var{name}}
3748@end ifset
3749@ifset aout-bout
3750* Desc:: @code{.desc @var{symbol}, @var{abs-expression}}
3751@end ifset
3752@ifset COFF
3753* Dim:: @code{.dim}
3754@end ifset
f0dc282c 3755
252b5132
RH
3756* Double:: @code{.double @var{flonums}}
3757* Eject:: @code{.eject}
3758* Else:: @code{.else}
3fd9f047 3759* Elseif:: @code{.elseif}
252b5132
RH
3760* End:: @code{.end}
3761@ifset COFF
3762* Endef:: @code{.endef}
3763@end ifset
f0dc282c 3764
252b5132
RH
3765* Endfunc:: @code{.endfunc}
3766* Endif:: @code{.endif}
3767* Equ:: @code{.equ @var{symbol}, @var{expression}}
3768* Equiv:: @code{.equiv @var{symbol}, @var{expression}}
9497f5ac 3769* Eqv:: @code{.eqv @var{symbol}, @var{expression}}
252b5132 3770* Err:: @code{.err}
d190d046 3771* Error:: @code{.error @var{string}}
252b5132
RH
3772* Exitm:: @code{.exitm}
3773* Extern:: @code{.extern}
3774* Fail:: @code{.fail}
3775@ifclear no-file-dir
3776* File:: @code{.file @var{string}}
3777@end ifclear
f0dc282c 3778
252b5132
RH
3779* Fill:: @code{.fill @var{repeat} , @var{size} , @var{value}}
3780* Float:: @code{.float @var{flonums}}
3781* Func:: @code{.func}
3782* Global:: @code{.global @var{symbol}}, @code{.globl @var{symbol}}
c91d2e08
NC
3783@ifset ELF
3784* Hidden:: @code{.hidden @var{names}}
3785@end ifset
f0dc282c 3786
252b5132
RH
3787* hword:: @code{.hword @var{expressions}}
3788* Ident:: @code{.ident}
3789* If:: @code{.if @var{absolute expression}}
7e005732 3790* Incbin:: @code{.incbin "@var{file}"[,@var{skip}[,@var{count}]]}
252b5132
RH
3791* Include:: @code{.include "@var{file}"}
3792* Int:: @code{.int @var{expressions}}
c91d2e08
NC
3793@ifset ELF
3794* Internal:: @code{.internal @var{names}}
3795@end ifset
f0dc282c 3796
252b5132
RH
3797* Irp:: @code{.irp @var{symbol},@var{values}}@dots{}
3798* Irpc:: @code{.irpc @var{symbol},@var{values}}@dots{}
3799* Lcomm:: @code{.lcomm @var{symbol} , @var{length}}
3800* Lflags:: @code{.lflags}
3801@ifclear no-line-dir
3802* Line:: @code{.line @var{line-number}}
3803@end ifclear
f0dc282c 3804
252b5132
RH
3805* Linkonce:: @code{.linkonce [@var{type}]}
3806* List:: @code{.list}
bd0eb99b
RH
3807* Ln:: @code{.ln @var{line-number}}
3808
3809* LNS directives:: @code{.file}, @code{.loc}, etc.
3810
252b5132
RH
3811* Long:: @code{.long @var{expressions}}
3812@ignore
3813* Lsym:: @code{.lsym @var{symbol}, @var{expression}}
3814@end ignore
f0dc282c 3815
252b5132
RH
3816* Macro:: @code{.macro @var{name} @var{args}}@dots{}
3817* MRI:: @code{.mri @var{val}}
caa32fe5 3818* Noaltmacro:: @code{.noaltmacro}
252b5132
RH
3819* Nolist:: @code{.nolist}
3820* Octa:: @code{.octa @var{bignums}}
3821* Org:: @code{.org @var{new-lc} , @var{fill}}
3822* P2align:: @code{.p2align @var{abs-expr} , @var{abs-expr}}
c91d2e08
NC
3823@ifset ELF
3824* PopSection:: @code{.popsection}
3825* Previous:: @code{.previous}
3826@end ifset
f0dc282c 3827
252b5132 3828* Print:: @code{.print @var{string}}
c91d2e08
NC
3829@ifset ELF
3830* Protected:: @code{.protected @var{names}}
3831@end ifset
f0dc282c 3832
252b5132
RH
3833* Psize:: @code{.psize @var{lines}, @var{columns}}
3834* Purgem:: @code{.purgem @var{name}}
c91d2e08
NC
3835@ifset ELF
3836* PushSection:: @code{.pushsection @var{name}}
3837@end ifset
f0dc282c 3838
252b5132
RH
3839* Quad:: @code{.quad @var{bignums}}
3840* Rept:: @code{.rept @var{count}}
3841* Sbttl:: @code{.sbttl "@var{subheading}"}
3842@ifset COFF
3843* Scl:: @code{.scl @var{class}}
c1253627
NC
3844@end ifset
3845@ifset COFF-ELF
3846* Section:: @code{.section @var{name}}
252b5132 3847@end ifset
f0dc282c 3848
252b5132
RH
3849* Set:: @code{.set @var{symbol}, @var{expression}}
3850* Short:: @code{.short @var{expressions}}
3851* Single:: @code{.single @var{flonums}}
c1253627 3852@ifset COFF-ELF
c91d2e08 3853* Size:: @code{.size [@var{name} , @var{expression}]}
c1253627
NC
3854@end ifset
3855
252b5132
RH
3856* Skip:: @code{.skip @var{size} , @var{fill}}
3857* Sleb128:: @code{.sleb128 @var{expressions}}
3858* Space:: @code{.space @var{size} , @var{fill}}
3859@ifset have-stabs
3860* Stab:: @code{.stabd, .stabn, .stabs}
3861@end ifset
f0dc282c 3862
252b5132
RH
3863* String:: @code{.string "@var{str}"}
3864* Struct:: @code{.struct @var{expression}}
3865@ifset ELF
c91d2e08 3866* SubSection:: @code{.subsection}
252b5132
RH
3867* Symver:: @code{.symver @var{name},@var{name2@@nodename}}
3868@end ifset
f0dc282c 3869
252b5132
RH
3870@ifset COFF
3871* Tag:: @code{.tag @var{structname}}
3872@end ifset
f0dc282c 3873
252b5132
RH
3874* Text:: @code{.text @var{subsection}}
3875* Title:: @code{.title "@var{heading}"}
c1253627 3876@ifset COFF-ELF
c91d2e08 3877* Type:: @code{.type <@var{int} | @var{name} , @var{type description}>}
c1253627
NC
3878@end ifset
3879
c91d2e08 3880* Uleb128:: @code{.uleb128 @var{expressions}}
252b5132 3881@ifset COFF
252b5132
RH
3882* Val:: @code{.val @var{addr}}
3883@end ifset
f0dc282c 3884
2e13b764 3885@ifset ELF
c91d2e08 3886* Version:: @code{.version "@var{string}"}
c91d2e08
NC
3887* VTableEntry:: @code{.vtable_entry @var{table}, @var{offset}}
3888* VTableInherit:: @code{.vtable_inherit @var{child}, @var{parent}}
2e13b764 3889@end ifset
f0dc282c 3890
d190d046 3891* Warning:: @code{.warning @var{string}}
c87db184 3892* Weak:: @code{.weak @var{names}}
06e77878 3893* Weakref:: @code{.weakref @var{alias}, @var{symbol}}
252b5132
RH
3894* Word:: @code{.word @var{expressions}}
3895* Deprecated:: Deprecated Directives
3896@end menu
3897
3898@node Abort
3899@section @code{.abort}
3900
3901@cindex @code{abort} directive
3902@cindex stopping the assembly
3903This directive stops the assembly immediately. It is for
3904compatibility with other assemblers. The original idea was that the
3905assembly language source would be piped into the assembler. If the sender
a4fb0134 3906of the source quit, it could use this directive tells @command{@value{AS}} to
252b5132
RH
3907quit also. One day @code{.abort} will not be supported.
3908
3909@ifset COFF
3910@node ABORT
3911@section @code{.ABORT}
3912
3913@cindex @code{ABORT} directive
a4fb0134 3914When producing COFF output, @command{@value{AS}} accepts this directive as a
252b5132
RH
3915synonym for @samp{.abort}.
3916
3917@ifset BOUT
a4fb0134 3918When producing @code{b.out} output, @command{@value{AS}} accepts this directive,
252b5132
RH
3919but ignores it.
3920@end ifset
3921@end ifset
3922
3923@node Align
3924@section @code{.align @var{abs-expr}, @var{abs-expr}, @var{abs-expr}}
3925
3926@cindex padding the location counter
3927@cindex @code{align} directive
3928Pad the location counter (in the current subsection) to a particular storage
3929boundary. The first expression (which must be absolute) is the alignment
3930required, as described below.
3931
3932The second expression (also absolute) gives the fill value to be stored in the
3933padding bytes. It (and the comma) may be omitted. If it is omitted, the
3934padding bytes are normally zero. However, on some systems, if the section is
3935marked as containing code and the fill value is omitted, the space is filled
3936with no-op instructions.
3937
3938The third expression is also absolute, and is also optional. If it is present,
3939it is the maximum number of bytes that should be skipped by this alignment
3940directive. If doing the alignment would require skipping more bytes than the
3941specified maximum, then the alignment is not done at all. You can omit the
3942fill value (the second argument) entirely by simply using two commas after the
3943required alignment; this can be useful if you want the alignment to be filled
3944with no-op instructions when appropriate.
3945
3946The way the required alignment is specified varies from system to system.
7be1c489 3947For the arc, hppa, i386 using ELF, i860, iq2000, m68k, or32,
60946ad0 3948s390, sparc, tic4x, tic80 and xtensa, the first expression is the
252b5132
RH
3949alignment request in bytes. For example @samp{.align 8} advances
3950the location counter until it is a multiple of 8. If the location counter
60946ad0
AM
3951is already a multiple of 8, no change is needed. For the tic54x, the
3952first expression is the alignment request in words.
252b5132 3953
adcf07e6
NC
3954For other systems, including the i386 using a.out format, and the arm and
3955strongarm, it is the
252b5132
RH
3956number of low-order zero bits the location counter must have after
3957advancement. For example @samp{.align 3} advances the location
3958counter until it a multiple of 8. If the location counter is already a
3959multiple of 8, no change is needed.
3960
3961This inconsistency is due to the different behaviors of the various
3962native assemblers for these systems which GAS must emulate.
3963GAS also provides @code{.balign} and @code{.p2align} directives,
3964described later, which have a consistent behavior across all
3965architectures (but are specific to GAS).
3966
3967@node Ascii
3968@section @code{.ascii "@var{string}"}@dots{}
3969
3970@cindex @code{ascii} directive
3971@cindex string literals
3972@code{.ascii} expects zero or more string literals (@pxref{Strings})
3973separated by commas. It assembles each string (with no automatic
3974trailing zero byte) into consecutive addresses.
3975
3976@node Asciz
3977@section @code{.asciz "@var{string}"}@dots{}
3978
3979@cindex @code{asciz} directive
3980@cindex zero-terminated strings
3981@cindex null-terminated strings
3982@code{.asciz} is just like @code{.ascii}, but each string is followed by
3983a zero byte. The ``z'' in @samp{.asciz} stands for ``zero''.
3984
3985@node Balign
3986@section @code{.balign[wl] @var{abs-expr}, @var{abs-expr}, @var{abs-expr}}
3987
3988@cindex padding the location counter given number of bytes
3989@cindex @code{balign} directive
3990Pad the location counter (in the current subsection) to a particular
3991storage boundary. The first expression (which must be absolute) is the
3992alignment request in bytes. For example @samp{.balign 8} advances
3993the location counter until it is a multiple of 8. If the location counter
3994is already a multiple of 8, no change is needed.
3995
3996The second expression (also absolute) gives the fill value to be stored in the
3997padding bytes. It (and the comma) may be omitted. If it is omitted, the
3998padding bytes are normally zero. However, on some systems, if the section is
3999marked as containing code and the fill value is omitted, the space is filled
4000with no-op instructions.
4001
4002The third expression is also absolute, and is also optional. If it is present,
4003it is the maximum number of bytes that should be skipped by this alignment
4004directive. If doing the alignment would require skipping more bytes than the
4005specified maximum, then the alignment is not done at all. You can omit the
4006fill value (the second argument) entirely by simply using two commas after the
4007required alignment; this can be useful if you want the alignment to be filled
4008with no-op instructions when appropriate.
4009
4010@cindex @code{balignw} directive
4011@cindex @code{balignl} directive
4012The @code{.balignw} and @code{.balignl} directives are variants of the
4013@code{.balign} directive. The @code{.balignw} directive treats the fill
4014pattern as a two byte word value. The @code{.balignl} directives treats the
4015fill pattern as a four byte longword value. For example, @code{.balignw
40164,0x368d} will align to a multiple of 4. If it skips two bytes, they will be
4017filled in with the value 0x368d (the exact placement of the bytes depends upon
4018the endianness of the processor). If it skips 1 or 3 bytes, the fill value is
4019undefined.
4020
4021@node Byte
4022@section @code{.byte @var{expressions}}
4023
4024@cindex @code{byte} directive
4025@cindex integers, one byte
4026@code{.byte} expects zero or more expressions, separated by commas.
4027Each expression is assembled into the next byte.
4028
d88ef7a6
TT
4029@node Comm
4030@section @code{.comm @var{symbol} , @var{length} }
4031
4032@cindex @code{comm} directive
4033@cindex symbol, common
4034@code{.comm} declares a common symbol named @var{symbol}. When linking, a
4035common symbol in one object file may be merged with a defined or common symbol
4036of the same name in another object file. If @code{@value{LD}} does not see a
4037definition for the symbol--just one or more common symbols--then it will
4038allocate @var{length} bytes of uninitialized memory. @var{length} must be an
4039absolute expression. If @code{@value{LD}} sees multiple common symbols with
4040the same name, and they do not all have the same size, it will allocate space
4041using the largest size.
4042
4043@ifset ELF
4044When using ELF, the @code{.comm} directive takes an optional third argument.
4045This is the desired alignment of the symbol, specified as a byte boundary (for
4046example, an alignment of 16 means that the least significant 4 bits of the
4047address should be zero). The alignment must be an absolute expression, and it
4048must be a power of two. If @code{@value{LD}} allocates uninitialized memory
4049for the common symbol, it will use the alignment when placing the symbol. If
4050no alignment is specified, @command{@value{AS}} will set the alignment to the
4051largest power of two less than or equal to the size of the symbol, up to a
4052maximum of 16.
4053@end ifset
4054
4055@ifset HPPA
4056The syntax for @code{.comm} differs slightly on the HPPA. The syntax is
4057@samp{@var{symbol} .comm, @var{length}}; @var{symbol} is optional.
4058@end ifset
4059
54cfded0
AM
4060@node CFI directives
4061@section @code{.cfi_startproc}
4062@cindex @code{cfi_startproc} directive
4063@code{.cfi_startproc} is used at the beginning of each function that
4064should have an entry in @code{.eh_frame}. It initializes some internal
4065data structures and emits architecture dependent initial CFI instructions.
4066Don't forget to close the function by
4067@code{.cfi_endproc}.
4068
4069@section @code{.cfi_endproc}
4070@cindex @code{cfi_endproc} directive
4071@code{.cfi_endproc} is used at the end of a function where it closes its
4072unwind entry previously opened by
4073@code{.cfi_startproc}. and emits it to @code{.eh_frame}.
4074
4075@section @code{.cfi_def_cfa @var{register}, @var{offset}}
4076@code{.cfi_def_cfa} defines a rule for computing CFA as: @i{take
4077address from @var{register} and add @var{offset} to it}.
4078
4079@section @code{.cfi_def_cfa_register @var{register}}
4080@code{.cfi_def_cfa_register} modifies a rule for computing CFA. From
4081now on @var{register} will be used instead of the old one. Offset
4082remains the same.
4083
4084@section @code{.cfi_def_cfa_offset @var{offset}}
4085@code{.cfi_def_cfa_offset} modifies a rule for computing CFA. Register
4086remains the same, but @var{offset} is new. Note that it is the
4087absolute offset that will be added to a defined register to compute
4088CFA address.
4089
4090@section @code{.cfi_adjust_cfa_offset @var{offset}}
4091Same as @code{.cfi_def_cfa_offset} but @var{offset} is a relative
4092value that is added/substracted from the previous offset.
4093
4094@section @code{.cfi_offset @var{register}, @var{offset}}
4095Previous value of @var{register} is saved at offset @var{offset} from
4096CFA.
4097
17076204
RH
4098@section @code{.cfi_rel_offset @var{register}, @var{offset}}
4099Previous value of @var{register} is saved at offset @var{offset} from
4100the current CFA register. This is transformed to @code{.cfi_offset}
4101using the known displacement of the CFA register from the CFA.
4102This is often easier to use, because the number will match the
4103code it's annotating.
54cfded0 4104
6749011b 4105@section @code{.cfi_window_save}
364b6d8b
JJ
4106SPARC register window has been saved.
4107
cdfbf930
RH
4108@section @code{.cfi_escape} @var{expression}[, @dots{}]
4109Allows the user to add arbitrary bytes to the unwind info. One
4110might use this to add OS-specific CFI opcodes, or generic CFI
4111opcodes that GAS does not yet support.
252b5132 4112
bd0eb99b
RH
4113@node LNS directives
4114@section @code{.file @var{fileno} @var{filename}}
4115@cindex @code{file} directive
4116When emitting dwarf2 line number information @code{.file} assigns filenames
4117to the @code{.debug_line} file name table. The @var{fileno} operand should
4118be a unique positive integer to use as the index of the entry in the table.
4119The @var{filename} operand is a C string literal.
4120
4121The detail of filename indicies is exposed to the user because the filename
4122table is shared with the @code{.debug_info} section of the dwarf2 debugging
4123information, and thus the user must know the exact indicies that table
4124entries will have.
4125
ecea7679 4126@section @code{.loc @var{fileno} @var{lineno} [@var{column}] [@var{options}]}
bd0eb99b
RH
4127@cindex @code{loc} directive
4128The @code{.loc} directive will add row to the @code{.debug_line} line
4129number matrix corresponding to the immediately following assembly
4130instruction. The @var{fileno}, @var{lineno}, and optional @var{column}
4131arguments will be applied to the @code{.debug_line} state machine before
4132the row is added.
4133
ecea7679
RH
4134The @var{options} are a sequence of the following tokens in any order:
4135
4136@table @code
4137@item basic_block
4138This option will set the @code{basic_block} register in the
bd0eb99b
RH
4139@code{.debug_line} state machine to @code{true}.
4140
ecea7679
RH
4141@item prologue_end
4142This option will set the @code{prologue_end} register in the
bd0eb99b
RH
4143@code{.debug_line} state machine to @code{true}.
4144
ecea7679
RH
4145@item epilogue_begin
4146This option will set the @code{epilogue_begin} register in the
bd0eb99b
RH
4147@code{.debug_line} state machine to @code{true}.
4148
ecea7679
RH
4149@item is_stmt @var{value}
4150This option will set the @code{is_stmt} register in the
bd0eb99b
RH
4151@code{.debug_line} state machine to @code{value}, which must be
4152either 0 or 1.
4153
ecea7679 4154@item isa @var{value}
bd0eb99b
RH
4155This directive will set the @code{isa} register in the @code{.debug_line}
4156state machine to @var{value}, which must be an unsigned integer.
07a53e5c 4157
cd1fcb49
NC
4158@end table
4159
07a53e5c
RH
4160@section @code{.loc_mark_blocks @var{enable}}
4161@cindex @code{loc_mark_blocks} directive
4162The @code{.loc_mark_blocks} directive makes the assembler emit an entry
4163to the @code{.debug_line} line number matrix with the @code{basic_block}
4164register in the state machine set whenever a code label is seen.
4165The @var{enable} argument should be either 1 or 0, to enable or disable
4166this function respectively.
4167
252b5132
RH
4168@node Data
4169@section @code{.data @var{subsection}}
4170
4171@cindex @code{data} directive
a4fb0134 4172@code{.data} tells @command{@value{AS}} to assemble the following statements onto the
252b5132
RH
4173end of the data subsection numbered @var{subsection} (which is an
4174absolute expression). If @var{subsection} is omitted, it defaults
4175to zero.
4176
4177@ifset COFF
4178@node Def
4179@section @code{.def @var{name}}
4180
4181@cindex @code{def} directive
4182@cindex COFF symbols, debugging
4183@cindex debugging COFF symbols
4184Begin defining debugging information for a symbol @var{name}; the
4185definition extends until the @code{.endef} directive is encountered.
4186@ifset BOUT
4187
a4fb0134 4188This directive is only observed when @command{@value{AS}} is configured for COFF
252b5132
RH
4189format output; when producing @code{b.out}, @samp{.def} is recognized,
4190but ignored.
4191@end ifset
4192@end ifset
4193
4194@ifset aout-bout
4195@node Desc
4196@section @code{.desc @var{symbol}, @var{abs-expression}}
4197
4198@cindex @code{desc} directive
4199@cindex COFF symbol descriptor
4200@cindex symbol descriptor, COFF
4201This directive sets the descriptor of the symbol (@pxref{Symbol Attributes})
4202to the low 16 bits of an absolute expression.
4203
4204@ifset COFF
a4fb0134 4205The @samp{.desc} directive is not available when @command{@value{AS}} is
252b5132 4206configured for COFF output; it is only for @code{a.out} or @code{b.out}
a4fb0134 4207object format. For the sake of compatibility, @command{@value{AS}} accepts
252b5132
RH
4208it, but produces no output, when configured for COFF.
4209@end ifset
4210@end ifset
4211
4212@ifset COFF
4213@node Dim
4214@section @code{.dim}
4215
4216@cindex @code{dim} directive
4217@cindex COFF auxiliary symbol information
4218@cindex auxiliary symbol information, COFF
4219This directive is generated by compilers to include auxiliary debugging
4220information in the symbol table. It is only permitted inside
4221@code{.def}/@code{.endef} pairs.
4222@ifset BOUT
4223
4224@samp{.dim} is only meaningful when generating COFF format output; when
a4fb0134 4225@command{@value{AS}} is generating @code{b.out}, it accepts this directive but
252b5132
RH
4226ignores it.
4227@end ifset
4228@end ifset
4229
4230@node Double
4231@section @code{.double @var{flonums}}
4232
4233@cindex @code{double} directive
4234@cindex floating point numbers (double)
4235@code{.double} expects zero or more flonums, separated by commas. It
4236assembles floating point numbers.
4237@ifset GENERIC
4238The exact kind of floating point numbers emitted depends on how
a4fb0134 4239@command{@value{AS}} is configured. @xref{Machine Dependencies}.
252b5132
RH
4240@end ifset
4241@ifclear GENERIC
4242@ifset IEEEFLOAT
4243On the @value{TARGET} family @samp{.double} emits 64-bit floating-point numbers
4244in @sc{ieee} format.
4245@end ifset
4246@end ifclear
4247
4248@node Eject
4249@section @code{.eject}
4250
4251@cindex @code{eject} directive
4252@cindex new page, in listings
4253@cindex page, in listings
4254@cindex listing control: new page
4255Force a page break at this point, when generating assembly listings.
4256
4257@node Else
4258@section @code{.else}
4259
4260@cindex @code{else} directive
a4fb0134 4261@code{.else} is part of the @command{@value{AS}} support for conditional
252b5132
RH
4262assembly; @pxref{If,,@code{.if}}. It marks the beginning of a section
4263of code to be assembled if the condition for the preceding @code{.if}
4264was false.
4265
3fd9f047
TW
4266@node Elseif
4267@section @code{.elseif}
4268
4269@cindex @code{elseif} directive
a4fb0134 4270@code{.elseif} is part of the @command{@value{AS}} support for conditional
3fd9f047
TW
4271assembly; @pxref{If,,@code{.if}}. It is shorthand for beginning a new
4272@code{.if} block that would otherwise fill the entire @code{.else} section.
4273
252b5132
RH
4274@node End
4275@section @code{.end}
4276
4277@cindex @code{end} directive
a4fb0134 4278@code{.end} marks the end of the assembly file. @command{@value{AS}} does not
252b5132
RH
4279process anything in the file past the @code{.end} directive.
4280
4281@ifset COFF
4282@node Endef
4283@section @code{.endef}
4284
4285@cindex @code{endef} directive
4286This directive flags the end of a symbol definition begun with
4287@code{.def}.
4288@ifset BOUT
4289
4290@samp{.endef} is only meaningful when generating COFF format output; if
a4fb0134 4291@command{@value{AS}} is configured to generate @code{b.out}, it accepts this
252b5132
RH
4292directive but ignores it.
4293@end ifset
4294@end ifset
4295
4296@node Endfunc
4297@section @code{.endfunc}
4298@cindex @code{endfunc} directive
4299@code{.endfunc} marks the end of a function specified with @code{.func}.
4300
4301@node Endif
4302@section @code{.endif}
4303
4304@cindex @code{endif} directive
a4fb0134 4305@code{.endif} is part of the @command{@value{AS}} support for conditional assembly;
252b5132
RH
4306it marks the end of a block of code that is only assembled
4307conditionally. @xref{If,,@code{.if}}.
4308
4309@node Equ
4310@section @code{.equ @var{symbol}, @var{expression}}
4311
4312@cindex @code{equ} directive
4313@cindex assigning values to symbols
4314@cindex symbols, assigning values to
4315This directive sets the value of @var{symbol} to @var{expression}.
4316It is synonymous with @samp{.set}; @pxref{Set,,@code{.set}}.
4317
4318@ifset HPPA
4319The syntax for @code{equ} on the HPPA is
4320@samp{@var{symbol} .equ @var{expression}}.
4321@end ifset
4322
3c9b82ba
NC
4323@ifset Z80
4324The syntax for @code{equ} on the Z80 is
4325@samp{@var{symbol} equ @var{expression}}.
4326On the Z80 it is an eror if @var{symbol} is already defined,
f9eb6721 4327but the symbol is not protected from later redefinition,
3c9b82ba
NC
4328compare @xref{Equiv}.
4329@end ifset
4330
252b5132
RH
4331@node Equiv
4332@section @code{.equiv @var{symbol}, @var{expression}}
4333@cindex @code{equiv} directive
4334The @code{.equiv} directive is like @code{.equ} and @code{.set}, except that
8dfa0188
NC
4335the assembler will signal an error if @var{symbol} is already defined. Note a
4336symbol which has been referenced but not actually defined is considered to be
4337undefined.
252b5132
RH
4338
4339Except for the contents of the error message, this is roughly equivalent to
4340@smallexample
4341.ifdef SYM
4342.err
4343.endif
4344.equ SYM,VAL
4345@end smallexample
9497f5ac
NC
4346plus it protects the symbol from later redefinition.
4347
4348@node Eqv
4349@section @code{.eqv @var{symbol}, @var{expression}}
4350@cindex @code{eqv} directive
4351The @code{.eqv} directive is like @code{.equiv}, but no attempt is made to
4352evaluate the expression or any part of it immediately. Instead each time
4353the resulting symbol is used in an expression, a snapshot of its current
4354value is taken.
252b5132
RH
4355
4356@node Err
4357@section @code{.err}
4358@cindex @code{err} directive
a4fb0134
SC
4359If @command{@value{AS}} assembles a @code{.err} directive, it will print an error
4360message and, unless the @option{-Z} option was used, it will not generate an
f9eb6721 4361object file. This can be used to signal an error in conditionally compiled code.
252b5132 4362
d190d046
HPN
4363@node Error
4364@section @code{.error "@var{string}"}
4365@cindex error directive
4366
4367Similarly to @code{.err}, this directive emits an error, but you can specify a
4368string that will be emitted as the error message. If you don't specify the
4369message, it defaults to @code{".error directive invoked in source file"}.
4370@xref{Errors, ,Error and Warning Messages}.
4371
4372@smallexample
4373 .error "This code has not been assembled and tested."
4374@end smallexample
4375
252b5132
RH
4376@node Exitm
4377@section @code{.exitm}
4378Exit early from the current macro definition. @xref{Macro}.
4379
4380@node Extern
4381@section @code{.extern}
4382
4383@cindex @code{extern} directive
4384@code{.extern} is accepted in the source program---for compatibility
a4fb0134 4385with other assemblers---but it is ignored. @command{@value{AS}} treats
252b5132
RH
4386all undefined symbols as external.
4387
4388@node Fail
4389@section @code{.fail @var{expression}}
4390
4391@cindex @code{fail} directive
4392Generates an error or a warning. If the value of the @var{expression} is 500
a4fb0134
SC
4393or more, @command{@value{AS}} will print a warning message. If the value is less
4394than 500, @command{@value{AS}} will print an error message. The message will
252b5132
RH
4395include the value of @var{expression}. This can occasionally be useful inside
4396complex nested macros or conditional assembly.
4397
4398@ifclear no-file-dir
4399@node File
4400@section @code{.file @var{string}}
4401
4402@cindex @code{file} directive
4403@cindex logical file name
4404@cindex file name, logical
a4fb0134 4405@code{.file} tells @command{@value{AS}} that we are about to start a new logical
252b5132
RH
4406file. @var{string} is the new file name. In general, the filename is
4407recognized whether or not it is surrounded by quotes @samp{"}; but if you wish
4408to specify an empty file name, you must give the quotes--@code{""}. This
4409statement may go away in future: it is only recognized to be compatible with
a4fb0134 4410old @command{@value{AS}} programs.
252b5132
RH
4411@end ifclear
4412
4413@node Fill
4414@section @code{.fill @var{repeat} , @var{size} , @var{value}}
4415
4416@cindex @code{fill} directive
4417@cindex writing patterns in memory
4418@cindex patterns, writing in memory
bc64be0c 4419@var{repeat}, @var{size} and @var{value} are absolute expressions.
252b5132
RH
4420This emits @var{repeat} copies of @var{size} bytes. @var{Repeat}
4421may be zero or more. @var{Size} may be zero or more, but if it is
4422more than 8, then it is deemed to have the value 8, compatible with
4423other people's assemblers. The contents of each @var{repeat} bytes
4424is taken from an 8-byte number. The highest order 4 bytes are
4425zero. The lowest order 4 bytes are @var{value} rendered in the
a4fb0134 4426byte-order of an integer on the computer @command{@value{AS}} is assembling for.
252b5132
RH
4427Each @var{size} bytes in a repetition is taken from the lowest order
4428@var{size} bytes of this number. Again, this bizarre behavior is
4429compatible with other people's assemblers.
4430
4431@var{size} and @var{value} are optional.
4432If the second comma and @var{value} are absent, @var{value} is
4433assumed zero. If the first comma and following tokens are absent,
4434@var{size} is assumed to be 1.
4435
4436@node Float
4437@section @code{.float @var{flonums}}
4438
4439@cindex floating point numbers (single)
4440@cindex @code{float} directive
4441This directive assembles zero or more flonums, separated by commas. It
4442has the same effect as @code{.single}.
4443@ifset GENERIC
4444The exact kind of floating point numbers emitted depends on how
a4fb0134 4445@command{@value{AS}} is configured.
252b5132
RH
4446@xref{Machine Dependencies}.
4447@end ifset
4448@ifclear GENERIC
4449@ifset IEEEFLOAT
4450On the @value{TARGET} family, @code{.float} emits 32-bit floating point numbers
4451in @sc{ieee} format.
4452@end ifset
4453@end ifclear
4454
4455@node Func
4456@section @code{.func @var{name}[,@var{label}]}
4457@cindex @code{func} directive
4458@code{.func} emits debugging information to denote function @var{name}, and
4459is ignored unless the file is assembled with debugging enabled.
05da4302 4460Only @samp{--gstabs[+]} is currently supported.
252b5132
RH
4461@var{label} is the entry point of the function and if omitted @var{name}
4462prepended with the @samp{leading char} is used.
4463@samp{leading char} is usually @code{_} or nothing, depending on the target.
4464All functions are currently defined to have @code{void} return type.
4465The function must be terminated with @code{.endfunc}.
4466
4467@node Global
4468@section @code{.global @var{symbol}}, @code{.globl @var{symbol}}
4469
4470@cindex @code{global} directive
4471@cindex symbol, making visible to linker
4472@code{.global} makes the symbol visible to @code{@value{LD}}. If you define
4473@var{symbol} in your partial program, its value is made available to
4474other partial programs that are linked with it. Otherwise,
4475@var{symbol} takes its attributes from a symbol of the same name
4476from another file linked into the same program.
4477
4478Both spellings (@samp{.globl} and @samp{.global}) are accepted, for
4479compatibility with other assemblers.
4480
4481@ifset HPPA
4482On the HPPA, @code{.global} is not always enough to make it accessible to other
4483partial programs. You may need the HPPA-only @code{.EXPORT} directive as well.
4484@xref{HPPA Directives,, HPPA Assembler Directives}.
4485@end ifset
4486
c91d2e08
NC
4487@ifset ELF
4488@node Hidden
4489@section @code{.hidden @var{names}}
4490
c1253627
NC
4491@cindex @code{hidden} directive
4492@cindex visibility
ed9589d4 4493This is one of the ELF visibility directives. The other two are
a349d9dd
PB
4494@code{.internal} (@pxref{Internal,,@code{.internal}}) and
4495@code{.protected} (@pxref{Protected,,@code{.protected}}).
c91d2e08
NC
4496
4497This directive overrides the named symbols default visibility (which is set by
4498their binding: local, global or weak). The directive sets the visibility to
4499@code{hidden} which means that the symbols are not visible to other components.
4500Such symbols are always considered to be @code{protected} as well.
4501@end ifset
4502
252b5132
RH
4503@node hword
4504@section @code{.hword @var{expressions}}
4505
4506@cindex @code{hword} directive
4507@cindex integers, 16-bit
4508@cindex numbers, 16-bit
4509@cindex sixteen bit integers
4510This expects zero or more @var{expressions}, and emits
4511a 16 bit number for each.
4512
4513@ifset GENERIC
4514This directive is a synonym for @samp{.short}; depending on the target
4515architecture, it may also be a synonym for @samp{.word}.
4516@end ifset
4517@ifclear GENERIC
4518@ifset W32
4519This directive is a synonym for @samp{.short}.
4520@end ifset
4521@ifset W16
4522This directive is a synonym for both @samp{.short} and @samp{.word}.
4523@end ifset
4524@end ifclear
4525
4526@node Ident
4527@section @code{.ident}
4528
4529@cindex @code{ident} directive
4530This directive is used by some assemblers to place tags in object files.
a4fb0134 4531@command{@value{AS}} simply accepts the directive for source-file
252b5132
RH
4532compatibility with such assemblers, but does not actually emit anything
4533for it.
4534
4535@node If
4536@section @code{.if @var{absolute expression}}
4537
4538@cindex conditional assembly
4539@cindex @code{if} directive
4540@code{.if} marks the beginning of a section of code which is only
4541considered part of the source program being assembled if the argument
4542(which must be an @var{absolute expression}) is non-zero. The end of
4543the conditional section of code must be marked by @code{.endif}
4544(@pxref{Endif,,@code{.endif}}); optionally, you may include code for the
4545alternative condition, flagged by @code{.else} (@pxref{Else,,@code{.else}}).
3fd9f047
TW
4546If you have several conditions to check, @code{.elseif} may be used to avoid
4547nesting blocks if/else within each subsequent @code{.else} block.
252b5132
RH
4548
4549The following variants of @code{.if} are also supported:
4550@table @code
4551@cindex @code{ifdef} directive
4552@item .ifdef @var{symbol}
4553Assembles the following section of code if the specified @var{symbol}
8dfa0188
NC
4554has been defined. Note a symbol which has been referenced but not yet defined
4555is considered to be undefined.
252b5132 4556
26aca5f6
JB
4557@cindex @code{ifb} directive
4558@item .ifb @var{text}
4559Assembles the following section of code if the operand is blank (empty).
4560
252b5132
RH
4561@cindex @code{ifc} directive
4562@item .ifc @var{string1},@var{string2}
4563Assembles the following section of code if the two strings are the same. The
4564strings may be optionally quoted with single quotes. If they are not quoted,
4565the first string stops at the first comma, and the second string stops at the
4566end of the line. Strings which contain whitespace should be quoted. The
4567string comparison is case sensitive.
4568
4569@cindex @code{ifeq} directive
4570@item .ifeq @var{absolute expression}
4571Assembles the following section of code if the argument is zero.
4572
4573@cindex @code{ifeqs} directive
4574@item .ifeqs @var{string1},@var{string2}
4575Another form of @code{.ifc}. The strings must be quoted using double quotes.
4576
4577@cindex @code{ifge} directive
4578@item .ifge @var{absolute expression}
4579Assembles the following section of code if the argument is greater than or
4580equal to zero.
4581
4582@cindex @code{ifgt} directive
4583@item .ifgt @var{absolute expression}
4584Assembles the following section of code if the argument is greater than zero.
4585
4586@cindex @code{ifle} directive
4587@item .ifle @var{absolute expression}
4588Assembles the following section of code if the argument is less than or equal
4589to zero.
4590
4591@cindex @code{iflt} directive
4592@item .iflt @var{absolute expression}
4593Assembles the following section of code if the argument is less than zero.
4594
26aca5f6
JB
4595@cindex @code{ifnb} directive
4596@item .ifnb @var{text}
4597Like @code{.ifb}, but the sense of the test is reversed: this assembles the
4598following section of code if the operand is non-blank (non-empty).
4599
252b5132
RH
4600@cindex @code{ifnc} directive
4601@item .ifnc @var{string1},@var{string2}.
4602Like @code{.ifc}, but the sense of the test is reversed: this assembles the
4603following section of code if the two strings are not the same.
4604
4605@cindex @code{ifndef} directive
4606@cindex @code{ifnotdef} directive
4607@item .ifndef @var{symbol}
4608@itemx .ifnotdef @var{symbol}
4609Assembles the following section of code if the specified @var{symbol}
8dfa0188
NC
4610has not been defined. Both spelling variants are equivalent. Note a symbol
4611which has been referenced but not yet defined is considered to be undefined.
252b5132
RH
4612
4613@cindex @code{ifne} directive
4614@item .ifne @var{absolute expression}
4615Assembles the following section of code if the argument is not equal to zero
4616(in other words, this is equivalent to @code{.if}).
4617
4618@cindex @code{ifnes} directive
4619@item .ifnes @var{string1},@var{string2}
4620Like @code{.ifeqs}, but the sense of the test is reversed: this assembles the
4621following section of code if the two strings are not the same.
4622@end table
4623
7e005732
NC
4624@node Incbin
4625@section @code{.incbin "@var{file}"[,@var{skip}[,@var{count}]]}
4626
4627@cindex @code{incbin} directive
4628@cindex binary files, including
4629The @code{incbin} directive includes @var{file} verbatim at the current
4630location. You can control the search paths used with the @samp{-I} command-line
4631option (@pxref{Invoking,,Command-Line Options}). Quotation marks are required
4632around @var{file}.
4633
4634The @var{skip} argument skips a number of bytes from the start of the
4635@var{file}. The @var{count} argument indicates the maximum number of bytes to
15dcfbc3
NC
4636read. Note that the data is not aligned in any way, so it is the user's
4637responsibility to make sure that proper alignment is provided both before and
4638after the @code{incbin} directive.
7e005732 4639
252b5132
RH
4640@node Include
4641@section @code{.include "@var{file}"}
4642
4643@cindex @code{include} directive
4644@cindex supporting files, including
4645@cindex files, including
4646This directive provides a way to include supporting files at specified
4647points in your source program. The code from @var{file} is assembled as
4648if it followed the point of the @code{.include}; when the end of the
4649included file is reached, assembly of the original file continues. You
4650can control the search paths used with the @samp{-I} command-line option
4651(@pxref{Invoking,,Command-Line Options}). Quotation marks are required
4652around @var{file}.
4653
4654@node Int
4655@section @code{.int @var{expressions}}
4656
4657@cindex @code{int} directive
4658@cindex integers, 32-bit
4659Expect zero or more @var{expressions}, of any section, separated by commas.
4660For each expression, emit a number that, at run time, is the value of that
4661expression. The byte order and bit size of the number depends on what kind
4662of target the assembly is for.
4663
4664@ifclear GENERIC
4665@ifset H8
7be1c489 4666On most forms of the H8/300, @code{.int} emits 16-bit
c2dcd04e 4667integers. On the H8/300H and the Renesas SH, however, @code{.int} emits
252b5132
RH
466832-bit integers.
4669@end ifset
4670@end ifclear
4671
c91d2e08
NC
4672@ifset ELF
4673@node Internal
4674@section @code{.internal @var{names}}
4675
c1253627
NC
4676@cindex @code{internal} directive
4677@cindex visibility
ed9589d4 4678This is one of the ELF visibility directives. The other two are
a349d9dd
PB
4679@code{.hidden} (@pxref{Hidden,,@code{.hidden}}) and
4680@code{.protected} (@pxref{Protected,,@code{.protected}}).
c91d2e08
NC
4681
4682This directive overrides the named symbols default visibility (which is set by
4683their binding: local, global or weak). The directive sets the visibility to
4684@code{internal} which means that the symbols are considered to be @code{hidden}
c1253627 4685(i.e., not visible to other components), and that some extra, processor specific
c91d2e08
NC
4686processing must also be performed upon the symbols as well.
4687@end ifset
4688
252b5132
RH
4689@node Irp
4690@section @code{.irp @var{symbol},@var{values}}@dots{}
4691
4692@cindex @code{irp} directive
4693Evaluate a sequence of statements assigning different values to @var{symbol}.
4694The sequence of statements starts at the @code{.irp} directive, and is
4695terminated by an @code{.endr} directive. For each @var{value}, @var{symbol} is
4696set to @var{value}, and the sequence of statements is assembled. If no
4697@var{value} is listed, the sequence of statements is assembled once, with
4698@var{symbol} set to the null string. To refer to @var{symbol} within the
4699sequence of statements, use @var{\symbol}.
4700
4701For example, assembling
4702
4703@example
4704 .irp param,1,2,3
4705 move d\param,sp@@-
4706 .endr
4707@end example
4708
4709is equivalent to assembling
4710
4711@example
4712 move d1,sp@@-
4713 move d2,sp@@-
4714 move d3,sp@@-
4715@end example
4716
5e75c3ab
JB
4717For some caveats with the spelling of @var{symbol}, see also the discussion
4718at @xref{Macro}.
4719
252b5132
RH
4720@node Irpc
4721@section @code{.irpc @var{symbol},@var{values}}@dots{}
4722
4723@cindex @code{irpc} directive
4724Evaluate a sequence of statements assigning different values to @var{symbol}.
4725The sequence of statements starts at the @code{.irpc} directive, and is
4726terminated by an @code{.endr} directive. For each character in @var{value},
4727@var{symbol} is set to the character, and the sequence of statements is
4728assembled. If no @var{value} is listed, the sequence of statements is
4729assembled once, with @var{symbol} set to the null string. To refer to
4730@var{symbol} within the sequence of statements, use @var{\symbol}.
4731
4732For example, assembling
4733
4734@example
4735 .irpc param,123
4736 move d\param,sp@@-
4737 .endr
4738@end example
4739
4740is equivalent to assembling
4741
4742@example
4743 move d1,sp@@-
4744 move d2,sp@@-
4745 move d3,sp@@-
4746@end example
4747
5e75c3ab
JB
4748For some caveats with the spelling of @var{symbol}, see also the discussion
4749at @xref{Macro}.
4750
252b5132
RH
4751@node Lcomm
4752@section @code{.lcomm @var{symbol} , @var{length}}
4753
4754@cindex @code{lcomm} directive
4755@cindex local common symbols
4756@cindex symbols, local common
4757Reserve @var{length} (an absolute expression) bytes for a local common
4758denoted by @var{symbol}. The section and value of @var{symbol} are
4759those of the new local common. The addresses are allocated in the bss
4760section, so that at run-time the bytes start off zeroed. @var{Symbol}
4761is not declared global (@pxref{Global,,@code{.global}}), so is normally
4762not visible to @code{@value{LD}}.
4763
4764@ifset GENERIC
4765Some targets permit a third argument to be used with @code{.lcomm}. This
4766argument specifies the desired alignment of the symbol in the bss section.
4767@end ifset
4768
4769@ifset HPPA
4770The syntax for @code{.lcomm} differs slightly on the HPPA. The syntax is
4771@samp{@var{symbol} .lcomm, @var{length}}; @var{symbol} is optional.
4772@end ifset
4773
4774@node Lflags
4775@section @code{.lflags}
4776
4777@cindex @code{lflags} directive (ignored)
a4fb0134 4778@command{@value{AS}} accepts this directive, for compatibility with other
252b5132
RH
4779assemblers, but ignores it.
4780
4781@ifclear no-line-dir
4782@node Line
4783@section @code{.line @var{line-number}}
4784
4785@cindex @code{line} directive
4786@end ifclear
4787@ifset no-line-dir
4788@node Ln
4789@section @code{.ln @var{line-number}}
4790
4791@cindex @code{ln} directive
4792@end ifset
4793@cindex logical line number
4794@ifset aout-bout
4795Change the logical line number. @var{line-number} must be an absolute
4796expression. The next line has that logical line number. Therefore any other
4797statements on the current line (after a statement separator character) are
4798reported as on logical line number @var{line-number} @minus{} 1. One day
a4fb0134 4799@command{@value{AS}} will no longer support this directive: it is recognized only
252b5132
RH
4800for compatibility with existing assembler programs.
4801
252b5132
RH
4802@end ifset
4803
4804@ifclear no-line-dir
4805Even though this is a directive associated with the @code{a.out} or
a4fb0134 4806@code{b.out} object-code formats, @command{@value{AS}} still recognizes it
252b5132
RH
4807when producing COFF output, and treats @samp{.line} as though it
4808were the COFF @samp{.ln} @emph{if} it is found outside a
4809@code{.def}/@code{.endef} pair.
4810
4811Inside a @code{.def}, @samp{.line} is, instead, one of the directives
4812used by compilers to generate auxiliary symbol information for
4813debugging.
4814@end ifclear
4815
4816@node Linkonce
4817@section @code{.linkonce [@var{type}]}
4818@cindex COMDAT
4819@cindex @code{linkonce} directive
4820@cindex common sections
4821Mark the current section so that the linker only includes a single copy of it.
4822This may be used to include the same section in several different object files,
4823but ensure that the linker will only include it once in the final output file.
4824The @code{.linkonce} pseudo-op must be used for each instance of the section.
4825Duplicate sections are detected based on the section name, so it should be
4826unique.
4827
4828This directive is only supported by a few object file formats; as of this
4829writing, the only object file format which supports it is the Portable
4830Executable format used on Windows NT.
4831
4832The @var{type} argument is optional. If specified, it must be one of the
4833following strings. For example:
4834@smallexample
4835.linkonce same_size
4836@end smallexample
4837Not all types may be supported on all object file formats.
4838
4839@table @code
4840@item discard
4841Silently discard duplicate sections. This is the default.
4842
4843@item one_only
4844Warn if there are duplicate sections, but still keep only one copy.
4845
4846@item same_size
4847Warn if any of the duplicates have different sizes.
4848
4849@item same_contents
4850Warn if any of the duplicates do not have exactly the same contents.
4851@end table
4852
4853@node Ln
4854@section @code{.ln @var{line-number}}
4855
4856@cindex @code{ln} directive
4857@ifclear no-line-dir
4858@samp{.ln} is a synonym for @samp{.line}.
4859@end ifclear
4860@ifset no-line-dir
a4fb0134 4861Tell @command{@value{AS}} to change the logical line number. @var{line-number}
252b5132
RH
4862must be an absolute expression. The next line has that logical
4863line number, so any other statements on the current line (after a
4864statement separator character @code{;}) are reported as on logical
4865line number @var{line-number} @minus{} 1.
4866@ifset BOUT
4867
a4fb0134 4868This directive is accepted, but ignored, when @command{@value{AS}} is
252b5132
RH
4869configured for @code{b.out}; its effect is only associated with COFF
4870output format.
4871@end ifset
4872@end ifset
4873
4874@node MRI
4875@section @code{.mri @var{val}}
4876
4877@cindex @code{mri} directive
4878@cindex MRI mode, temporarily
a4fb0134
SC
4879If @var{val} is non-zero, this tells @command{@value{AS}} to enter MRI mode. If
4880@var{val} is zero, this tells @command{@value{AS}} to exit MRI mode. This change
252b5132
RH
4881affects code assembled until the next @code{.mri} directive, or until the end
4882of the file. @xref{M, MRI mode, MRI mode}.
4883
4884@node List
4885@section @code{.list}
4886
4887@cindex @code{list} directive
4888@cindex listing control, turning on
4889Control (in conjunction with the @code{.nolist} directive) whether or
4890not assembly listings are generated. These two directives maintain an
4891internal counter (which is zero initially). @code{.list} increments the
4892counter, and @code{.nolist} decrements it. Assembly listings are
4893generated whenever the counter is greater than zero.
4894
4895By default, listings are disabled. When you enable them (with the
4896@samp{-a} command line option; @pxref{Invoking,,Command-Line Options}),
4897the initial value of the listing counter is one.
4898
4899@node Long
4900@section @code{.long @var{expressions}}
4901
4902@cindex @code{long} directive
4903@code{.long} is the same as @samp{.int}, @pxref{Int,,@code{.int}}.
4904
4905@ignore
4906@c no one seems to know what this is for or whether this description is
4907@c what it really ought to do
4908@node Lsym
4909@section @code{.lsym @var{symbol}, @var{expression}}
4910
4911@cindex @code{lsym} directive
4912@cindex symbol, not referenced in assembly
4913@code{.lsym} creates a new symbol named @var{symbol}, but does not put it in
4914the hash table, ensuring it cannot be referenced by name during the
4915rest of the assembly. This sets the attributes of the symbol to be
4916the same as the expression value:
4917@smallexample
4918@var{other} = @var{descriptor} = 0
4919@var{type} = @r{(section of @var{expression})}
4920@var{value} = @var{expression}
4921@end smallexample
4922@noindent
4923The new symbol is not flagged as external.
4924@end ignore
4925
4926@node Macro
4927@section @code{.macro}
4928
4929@cindex macros
4930The commands @code{.macro} and @code{.endm} allow you to define macros that
4931generate assembly output. For example, this definition specifies a macro
4932@code{sum} that puts a sequence of numbers into memory:
4933
4934@example
4935 .macro sum from=0, to=5
4936 .long \from
4937 .if \to-\from
4938 sum "(\from+1)",\to
4939 .endif
4940 .endm
4941@end example
4942
4943@noindent
4944With that definition, @samp{SUM 0,5} is equivalent to this assembly input:
4945
4946@example
4947 .long 0
4948 .long 1
4949 .long 2
4950 .long 3
4951 .long 4
4952 .long 5
4953@end example
4954
4955@ftable @code
4956@item .macro @var{macname}
4957@itemx .macro @var{macname} @var{macargs} @dots{}
4958@cindex @code{macro} directive
4959Begin the definition of a macro called @var{macname}. If your macro
4960definition requires arguments, specify their names after the macro name,
6eaeac8a
JB
4961separated by commas or spaces. You can qualify the macro argument to
4962indicate whether all invocations must specify a non-blank value (through
4963@samp{:@code{req}}), or whether it takes all of the remaining arguments
4964(through @samp{:@code{vararg}}). You can supply a default value for any
fffeaa5f
JB
4965macro argument by following the name with @samp{=@var{deflt}}. You
4966cannot define two macros with the same @var{macname} unless it has been
4967subject to the @code{.purgem} directive (@xref{Purgem}.) between the two
4968definitions. For example, these are all valid @code{.macro} statements:
252b5132
RH
4969
4970@table @code
4971@item .macro comm
4972Begin the definition of a macro called @code{comm}, which takes no
4973arguments.
4974
4975@item .macro plus1 p, p1
4976@itemx .macro plus1 p p1
4977Either statement begins the definition of a macro called @code{plus1},
4978which takes two arguments; within the macro definition, write
4979@samp{\p} or @samp{\p1} to evaluate the arguments.
4980
4981@item .macro reserve_str p1=0 p2
4982Begin the definition of a macro called @code{reserve_str}, with two
4983arguments. The first argument has a default value, but not the second.
4984After the definition is complete, you can call the macro either as
4985@samp{reserve_str @var{a},@var{b}} (with @samp{\p1} evaluating to
4986@var{a} and @samp{\p2} evaluating to @var{b}), or as @samp{reserve_str
4987,@var{b}} (with @samp{\p1} evaluating as the default, in this case
4988@samp{0}, and @samp{\p2} evaluating to @var{b}).
4989@end table
4990
6eaeac8a
JB
4991@item .macro m p1:req, p2=0, p3:vararg
4992Begin the definition of a macro called @code{m}, with at least three
4993arguments. The first argument must always have a value specified, but
4994not the second, which instead has a default value. The third formal
4995will get assigned all remaining arguments specified at invocation time.
4996
252b5132
RH
4997When you call a macro, you can specify the argument values either by
4998position, or by keyword. For example, @samp{sum 9,17} is equivalent to
4999@samp{sum to=17, from=9}.
5000
5e75c3ab
JB
5001Note that since each of the @var{macargs} can be an identifier exactly
5002as any other one permitted by the target architecture, there may be
5003occasional problems if the target hand-crafts special meanings to certain
5004characters when they occur in a special position. For example, if colon
5005(@code{:}) is generally permitted to be part of a symbol name, but the
5006architecture specific code special-cases it when occuring as the final
5007character of a symbol (to denote a label), then the macro parameter
5008replacement code will have no way of knowing that and consider the whole
5009construct (including the colon) an identifier, and check only this
5010identifier for being the subject to parameter substitution. In this
5011example, besides the potential of just separating identifier and colon
5012by white space, using alternate macro syntax (@xref{Altmacro}.) and
5013ampersand (@code{&}) as the character to separate literal text from macro
5014parameters (or macro parameters from one another) would provide a way to
5015achieve the same effect:
5016
5017@example
5018 .altmacro
5019 .macro label l
5020l&:
5021 .endm
5022@end example
5023
5024This applies identically to the identifiers used in @code{.irp} (@xref{Irp}.)
5025and @code{.irpc} (@xref{Irpc}.).
5026
252b5132
RH
5027@item .endm
5028@cindex @code{endm} directive
5029Mark the end of a macro definition.
5030
5031@item .exitm
5032@cindex @code{exitm} directive
5033Exit early from the current macro definition.
5034
5035@cindex number of macros executed
5036@cindex macros, count executed
5037@item \@@
a4fb0134 5038@command{@value{AS}} maintains a counter of how many macros it has
252b5132
RH
5039executed in this pseudo-variable; you can copy that number to your
5040output with @samp{\@@}, but @emph{only within a macro definition}.
5041
252b5132
RH
5042@item LOCAL @var{name} [ , @dots{} ]
5043@emph{Warning: @code{LOCAL} is only available if you select ``alternate
caa32fe5
NC
5044macro syntax'' with @samp{--alternate} or @code{.altmacro}.}
5045@xref{Altmacro,,@code{.altmacro}}.
5046@end ftable
252b5132 5047
caa32fe5
NC
5048@node Altmacro
5049@section @code{.altmacro}
5050Enable alternate macro mode, enabling:
5051
5052@ftable @code
5053@item LOCAL @var{name} [ , @dots{} ]
5054One additional directive, @code{LOCAL}, is available. It is used to
5055generate a string replacement for each of the @var{name} arguments, and
252b5132
RH
5056replace any instances of @var{name} in each macro expansion. The
5057replacement string is unique in the assembly, and different for each
5058separate macro expansion. @code{LOCAL} allows you to write macros that
5059define symbols, without fear of conflict between separate macro expansions.
caa32fe5
NC
5060
5061@item String delimiters
5062You can write strings delimited in these other ways besides
5063@code{"@var{string}"}:
5064
5065@table @code
5066@item '@var{string}'
5067You can delimit strings with single-quote charaters.
5068
5069@item <@var{string}>
5070You can delimit strings with matching angle brackets.
5071@end table
5072
5073@item single-character string escape
5074To include any single character literally in a string (even if the
5075character would otherwise have some special meaning), you can prefix the
5076character with @samp{!} (an exclamation mark). For example, you can
5077write @samp{<4.3 !> 5.4!!>} to get the literal text @samp{4.3 > 5.4!}.
5078
5079@item Expression results as strings
5080You can write @samp{%@var{expr}} to evaluate the expression @var{expr}
5081and use the result as a string.
252b5132
RH
5082@end ftable
5083
caa32fe5
NC
5084@node Noaltmacro
5085@section @code{.noaltmacro}
5086Disable alternate macro mode. @ref{Altmacro}
5087
252b5132
RH
5088@node Nolist
5089@section @code{.nolist}
5090
5091@cindex @code{nolist} directive
5092@cindex listing control, turning off
5093Control (in conjunction with the @code{.list} directive) whether or
5094not assembly listings are generated. These two directives maintain an
5095internal counter (which is zero initially). @code{.list} increments the
5096counter, and @code{.nolist} decrements it. Assembly listings are
5097generated whenever the counter is greater than zero.
5098
5099@node Octa
5100@section @code{.octa @var{bignums}}
5101
5102@c FIXME: double size emitted for "octa" on i960, others? Or warn?
5103@cindex @code{octa} directive
5104@cindex integer, 16-byte
5105@cindex sixteen byte integer
5106This directive expects zero or more bignums, separated by commas. For each
5107bignum, it emits a 16-byte integer.
5108
5109The term ``octa'' comes from contexts in which a ``word'' is two bytes;
5110hence @emph{octa}-word for 16 bytes.
5111
5112@node Org
5113@section @code{.org @var{new-lc} , @var{fill}}
5114
5115@cindex @code{org} directive
5116@cindex location counter, advancing
5117@cindex advancing location counter
5118@cindex current address, advancing
5119Advance the location counter of the current section to
5120@var{new-lc}. @var{new-lc} is either an absolute expression or an
5121expression with the same section as the current subsection. That is,
5122you can't use @code{.org} to cross sections: if @var{new-lc} has the
5123wrong section, the @code{.org} directive is ignored. To be compatible
5124with former assemblers, if the section of @var{new-lc} is absolute,
a4fb0134 5125@command{@value{AS}} issues a warning, then pretends the section of @var{new-lc}
252b5132
RH
5126is the same as the current subsection.
5127
5128@code{.org} may only increase the location counter, or leave it
5129unchanged; you cannot use @code{.org} to move the location counter
5130backwards.
5131
5132@c double negative used below "not undefined" because this is a specific
5133@c reference to "undefined" (as SEG_UNKNOWN is called in this manual)
5134@c section. doc@cygnus.com 18feb91
a4fb0134 5135Because @command{@value{AS}} tries to assemble programs in one pass, @var{new-lc}
252b5132
RH
5136may not be undefined. If you really detest this restriction we eagerly await
5137a chance to share your improved assembler.
5138
5139Beware that the origin is relative to the start of the section, not
5140to the start of the subsection. This is compatible with other
5141people's assemblers.
5142
5143When the location counter (of the current subsection) is advanced, the
5144intervening bytes are filled with @var{fill} which should be an
5145absolute expression. If the comma and @var{fill} are omitted,
5146@var{fill} defaults to zero.
5147
5148@node P2align
5149@section @code{.p2align[wl] @var{abs-expr}, @var{abs-expr}, @var{abs-expr}}
5150
5151@cindex padding the location counter given a power of two
5152@cindex @code{p2align} directive
5153Pad the location counter (in the current subsection) to a particular
5154storage boundary. The first expression (which must be absolute) is the
5155number of low-order zero bits the location counter must have after
5156advancement. For example @samp{.p2align 3} advances the location
5157counter until it a multiple of 8. If the location counter is already a
5158multiple of 8, no change is needed.
5159
5160The second expression (also absolute) gives the fill value to be stored in the
5161padding bytes. It (and the comma) may be omitted. If it is omitted, the
5162padding bytes are normally zero. However, on some systems, if the section is
5163marked as containing code and the fill value is omitted, the space is filled
5164with no-op instructions.
5165
5166The third expression is also absolute, and is also optional. If it is present,
5167it is the maximum number of bytes that should be skipped by this alignment
5168directive. If doing the alignment would require skipping more bytes than the
5169specified maximum, then the alignment is not done at all. You can omit the
5170fill value (the second argument) entirely by simply using two commas after the
5171required alignment; this can be useful if you want the alignment to be filled
5172with no-op instructions when appropriate.
5173
5174@cindex @code{p2alignw} directive
5175@cindex @code{p2alignl} directive
5176The @code{.p2alignw} and @code{.p2alignl} directives are variants of the
5177@code{.p2align} directive. The @code{.p2alignw} directive treats the fill
5178pattern as a two byte word value. The @code{.p2alignl} directives treats the
5179fill pattern as a four byte longword value. For example, @code{.p2alignw
51802,0x368d} will align to a multiple of 4. If it skips two bytes, they will be
5181filled in with the value 0x368d (the exact placement of the bytes depends upon
5182the endianness of the processor). If it skips 1 or 3 bytes, the fill value is
5183undefined.
5184
c91d2e08
NC
5185@ifset ELF
5186@node Previous
5187@section @code{.previous}
5188
c1253627 5189@cindex @code{previous} directive
c91d2e08
NC
5190@cindex Section Stack
5191This is one of the ELF section stack manipulation directives. The others are
a349d9dd
PB
5192@code{.section} (@pxref{Section}), @code{.subsection} (@pxref{SubSection}),
5193@code{.pushsection} (@pxref{PushSection}), and @code{.popsection}
5194(@pxref{PopSection}).
c91d2e08
NC
5195
5196This directive swaps the current section (and subsection) with most recently
5197referenced section (and subsection) prior to this one. Multiple
5198@code{.previous} directives in a row will flip between two sections (and their
5199subsections).
5200
5201In terms of the section stack, this directive swaps the current section with
5202the top section on the section stack.
5203@end ifset
5204
5205@ifset ELF
5206@node PopSection
5207@section @code{.popsection}
5208
c1253627 5209@cindex @code{popsection} directive
c91d2e08
NC
5210@cindex Section Stack
5211This is one of the ELF section stack manipulation directives. The others are
a349d9dd
PB
5212@code{.section} (@pxref{Section}), @code{.subsection} (@pxref{SubSection}),
5213@code{.pushsection} (@pxref{PushSection}), and @code{.previous}
5214(@pxref{Previous}).
c91d2e08
NC
5215
5216This directive replaces the current section (and subsection) with the top
5217section (and subsection) on the section stack. This section is popped off the
5218stack.
c91d2e08
NC
5219@end ifset
5220
252b5132
RH
5221@node Print
5222@section @code{.print @var{string}}
5223
5224@cindex @code{print} directive
a4fb0134 5225@command{@value{AS}} will print @var{string} on the standard output during
252b5132
RH
5226assembly. You must put @var{string} in double quotes.
5227
c91d2e08
NC
5228@ifset ELF
5229@node Protected
5230@section @code{.protected @var{names}}
5231
c1253627
NC
5232@cindex @code{protected} directive
5233@cindex visibility
ed9589d4 5234This is one of the ELF visibility directives. The other two are
a349d9dd 5235@code{.hidden} (@pxref{Hidden}) and @code{.internal} (@pxref{Internal}).
c91d2e08
NC
5236
5237This directive overrides the named symbols default visibility (which is set by
5238their binding: local, global or weak). The directive sets the visibility to
5239@code{protected} which means that any references to the symbols from within the
5240components that defines them must be resolved to the definition in that
5241component, even if a definition in another component would normally preempt
5242this.
5243@end ifset
5244
252b5132
RH
5245@node Psize
5246@section @code{.psize @var{lines} , @var{columns}}
5247
5248@cindex @code{psize} directive
5249@cindex listing control: paper size
5250@cindex paper size, for listings
5251Use this directive to declare the number of lines---and, optionally, the
5252number of columns---to use for each page, when generating listings.
5253
5254If you do not use @code{.psize}, listings use a default line-count
5255of 60. You may omit the comma and @var{columns} specification; the
5256default width is 200 columns.
5257
a4fb0134 5258@command{@value{AS}} generates formfeeds whenever the specified number of
252b5132
RH
5259lines is exceeded (or whenever you explicitly request one, using
5260@code{.eject}).
5261
5262If you specify @var{lines} as @code{0}, no formfeeds are generated save
5263those explicitly specified with @code{.eject}.
5264
5265@node Purgem
5266@section @code{.purgem @var{name}}
5267
5268@cindex @code{purgem} directive
5269Undefine the macro @var{name}, so that later uses of the string will not be
5270expanded. @xref{Macro}.
5271
c91d2e08
NC
5272@ifset ELF
5273@node PushSection
5274@section @code{.pushsection @var{name} , @var{subsection}}
5275
c1253627 5276@cindex @code{pushsection} directive
c91d2e08
NC
5277@cindex Section Stack
5278This is one of the ELF section stack manipulation directives. The others are
a349d9dd
PB
5279@code{.section} (@pxref{Section}), @code{.subsection} (@pxref{SubSection}),
5280@code{.popsection} (@pxref{PopSection}), and @code{.previous}
5281(@pxref{Previous}).
c91d2e08 5282
e9863d7f
DJ
5283This directive pushes the current section (and subsection) onto the
5284top of the section stack, and then replaces the current section and
5285subsection with @code{name} and @code{subsection}.
c91d2e08
NC
5286@end ifset
5287
252b5132
RH
5288@node Quad
5289@section @code{.quad @var{bignums}}
5290
5291@cindex @code{quad} directive
5292@code{.quad} expects zero or more bignums, separated by commas. For
5293each bignum, it emits
5294@ifclear bignum-16
5295an 8-byte integer. If the bignum won't fit in 8 bytes, it prints a
5296warning message; and just takes the lowest order 8 bytes of the bignum.
5297@cindex eight-byte integer
5298@cindex integer, 8-byte
5299
5300The term ``quad'' comes from contexts in which a ``word'' is two bytes;
5301hence @emph{quad}-word for 8 bytes.
5302@end ifclear
5303@ifset bignum-16
5304a 16-byte integer. If the bignum won't fit in 16 bytes, it prints a
5305warning message; and just takes the lowest order 16 bytes of the bignum.
5306@cindex sixteen-byte integer
5307@cindex integer, 16-byte
5308@end ifset
5309
5310@node Rept
5311@section @code{.rept @var{count}}
5312
5313@cindex @code{rept} directive
5314Repeat the sequence of lines between the @code{.rept} directive and the next
5315@code{.endr} directive @var{count} times.
5316
5317For example, assembling
5318
5319@example
5320 .rept 3
5321 .long 0
5322 .endr
5323@end example
5324
5325is equivalent to assembling
5326
5327@example
5328 .long 0
5329 .long 0
5330 .long 0
5331@end example
5332
5333@node Sbttl
5334@section @code{.sbttl "@var{subheading}"}
5335
5336@cindex @code{sbttl} directive
5337@cindex subtitles for listings
5338@cindex listing control: subtitle
5339Use @var{subheading} as the title (third line, immediately after the
5340title line) when generating assembly listings.
5341
5342This directive affects subsequent pages, as well as the current page if
5343it appears within ten lines of the top of a page.
5344
5345@ifset COFF
5346@node Scl
5347@section @code{.scl @var{class}}
5348
5349@cindex @code{scl} directive
5350@cindex symbol storage class (COFF)
5351@cindex COFF symbol storage class
5352Set the storage-class value for a symbol. This directive may only be
5353used inside a @code{.def}/@code{.endef} pair. Storage class may flag
5354whether a symbol is static or external, or it may record further
5355symbolic debugging information.
5356@ifset BOUT
5357
5358The @samp{.scl} directive is primarily associated with COFF output; when
a4fb0134 5359configured to generate @code{b.out} output format, @command{@value{AS}}
252b5132
RH
5360accepts this directive but ignores it.
5361@end ifset
5362@end ifset
5363
c1253627 5364@ifset COFF-ELF
252b5132 5365@node Section
c1253627 5366@section @code{.section @var{name}}
252b5132 5367
252b5132
RH
5368@cindex named section
5369Use the @code{.section} directive to assemble the following code into a section
5370named @var{name}.
5371
5372This directive is only supported for targets that actually support arbitrarily
5373named sections; on @code{a.out} targets, for example, it is not accepted, even
5374with a standard @code{a.out} section name.
5375
c1253627
NC
5376@ifset COFF
5377@ifset ELF
5378@c only print the extra heading if both COFF and ELF are set
5379@subheading COFF Version
5380@end ifset
5381
5382@cindex @code{section} directive (COFF version)
252b5132
RH
5383For COFF targets, the @code{.section} directive is used in one of the following
5384ways:
c91d2e08 5385
252b5132
RH
5386@smallexample
5387.section @var{name}[, "@var{flags}"]
5388.section @var{name}[, @var{subsegment}]
5389@end smallexample
5390
5391If the optional argument is quoted, it is taken as flags to use for the
5392section. Each flag is a single character. The following flags are recognized:
5393@table @code
5394@item b
5395bss section (uninitialized data)
5396@item n
5397section is not loaded
5398@item w
5399writable section
5400@item d
5401data section
5402@item r
5403read-only section
5404@item x
5405executable section
2dcc60be
ILT
5406@item s
5407shared section (meaningful for PE targets)
6ff96af6
NC
5408@item a
5409ignored. (For compatibility with the ELF version)
252b5132
RH
5410@end table
5411
5412If no flags are specified, the default flags depend upon the section name. If
5413the section name is not recognized, the default will be for the section to be
7e84d676
NC
5414loaded and writable. Note the @code{n} and @code{w} flags remove attributes
5415from the section, rather than adding them, so if they are used on their own it
5416will be as if no flags had been specified at all.
252b5132
RH
5417
5418If the optional argument to the @code{.section} directive is not quoted, it is
5419taken as a subsegment number (@pxref{Sub-Sections}).
c1253627 5420@end ifset
252b5132
RH
5421
5422@ifset ELF
c1253627
NC
5423@ifset COFF
5424@c only print the extra heading if both COFF and ELF are set
5425@subheading ELF Version
5426@end ifset
5427
c91d2e08
NC
5428@cindex Section Stack
5429This is one of the ELF section stack manipulation directives. The others are
a349d9dd
PB
5430@code{.subsection} (@pxref{SubSection}), @code{.pushsection}
5431(@pxref{PushSection}), @code{.popsection} (@pxref{PopSection}), and
5432@code{.previous} (@pxref{Previous}).
c91d2e08 5433
c1253627 5434@cindex @code{section} directive (ELF version)
252b5132 5435For ELF targets, the @code{.section} directive is used like this:
c91d2e08 5436
252b5132 5437@smallexample
7047dd1e 5438.section @var{name} [, "@var{flags}"[, @@@var{type}[,@var{flag_specific_arguments}]]]
252b5132 5439@end smallexample
c91d2e08 5440
252b5132 5441The optional @var{flags} argument is a quoted string which may contain any
a349d9dd 5442combination of the following characters:
252b5132
RH
5443@table @code
5444@item a
5445section is allocatable
5446@item w
5447section is writable
5448@item x
5449section is executable
ec38dd05
JJ
5450@item M
5451section is mergeable
5452@item S
5453section contains zero terminated strings
22fe14ad
NC
5454@item G
5455section is a member of a section group
5456@item T
5457section is used for thread-local-storage
252b5132
RH
5458@end table
5459
5460The optional @var{type} argument may contain one of the following constants:
5461@table @code
5462@item @@progbits
5463section contains data
5464@item @@nobits
5465section does not contain data (i.e., section only occupies space)
22fe14ad
NC
5466@item @@note
5467section contains data which is used by things other than the program
10b016c2
PB
5468@item @@init_array
5469section contains an array of pointers to init functions
5470@item @@fini_array
5471section contains an array of pointers to finish functions
5472@item @@preinit_array
5473section contains an array of pointers to pre-init functions
252b5132
RH
5474@end table
5475
10b016c2
PB
5476Many targets only support the first three section types.
5477
ececec60
NC
5478Note on targets where the @code{@@} character is the start of a comment (eg
5479ARM) then another character is used instead. For example the ARM port uses the
5480@code{%} character.
5481
22fe14ad
NC
5482If @var{flags} contains the @code{M} symbol then the @var{type} argument must
5483be specified as well as an extra argument - @var{entsize} - like this:
5484
5485@smallexample
5486.section @var{name} , "@var{flags}"M, @@@var{type}, @var{entsize}
5487@end smallexample
5488
5489Sections with the @code{M} flag but not @code{S} flag must contain fixed size
5490constants, each @var{entsize} octets long. Sections with both @code{M} and
5491@code{S} must contain zero terminated strings where each character is
5492@var{entsize} bytes long. The linker may remove duplicates within sections with
5493the same name, same entity size and same flags. @var{entsize} must be an
5494absolute expression.
5495
5496If @var{flags} contains the @code{G} symbol then the @var{type} argument must
5497be present along with an additional field like this:
5498
5499@smallexample
5500.section @var{name} , "@var{flags}"G, @@@var{type}, @var{GroupName}[, @var{linkage}]
5501@end smallexample
5502
5503The @var{GroupName} field specifies the name of the section group to which this
5504particular section belongs. The optional linkage field can contain:
5505@table @code
5506@item comdat
5507indicates that only one copy of this section should be retained
5508@item .gnu.linkonce
5509an alias for comdat
5510@end table
5511
5512Note - if both the @var{M} and @var{G} flags are present then the fields for
5513the Merge flag should come first, like this:
5514
5515@smallexample
5516.section @var{name} , "@var{flags}"MG, @@@var{type}, @var{entsize}, @var{GroupName}[, @var{linkage}]
5517@end smallexample
ec38dd05 5518
252b5132
RH
5519If no flags are specified, the default flags depend upon the section name. If
5520the section name is not recognized, the default will be for the section to have
5521none of the above flags: it will not be allocated in memory, nor writable, nor
5522executable. The section will contain data.
5523
5524For ELF targets, the assembler supports another type of @code{.section}
5525directive for compatibility with the Solaris assembler:
c91d2e08 5526
252b5132
RH
5527@smallexample
5528.section "@var{name}"[, @var{flags}...]
5529@end smallexample
c91d2e08 5530
252b5132
RH
5531Note that the section name is quoted. There may be a sequence of comma
5532separated flags:
5533@table @code
5534@item #alloc
5535section is allocatable
5536@item #write
5537section is writable
5538@item #execinstr
5539section is executable
22fe14ad
NC
5540@item #tls
5541section is used for thread local storage
252b5132 5542@end table
c91d2e08 5543
e9863d7f
DJ
5544This directive replaces the current section and subsection. See the
5545contents of the gas testsuite directory @code{gas/testsuite/gas/elf} for
5546some examples of how this directive and the other section stack directives
5547work.
c1253627
NC
5548@end ifset
5549@end ifset
252b5132
RH
5550
5551@node Set
5552@section @code{.set @var{symbol}, @var{expression}}
5553
5554@cindex @code{set} directive
5555@cindex symbol value, setting
5556Set the value of @var{symbol} to @var{expression}. This
5557changes @var{symbol}'s value and type to conform to
5558@var{expression}. If @var{symbol} was flagged as external, it remains
5559flagged (@pxref{Symbol Attributes}).
5560
5561You may @code{.set} a symbol many times in the same assembly.
5562
5563If you @code{.set} a global symbol, the value stored in the object
5564file is the last value stored into it.
5565
5566@ifset HPPA
5567The syntax for @code{set} on the HPPA is
5568@samp{@var{symbol} .set @var{expression}}.
5569@end ifset
5570
3c9b82ba
NC
5571@ifset Z80
5572On Z80 @code{set} is a real instruction, use
5573@samp{@var{symbol} defl @var{expression}} instead.
5574@end ifset
5575
252b5132
RH
5576@node Short
5577@section @code{.short @var{expressions}}
5578
5579@cindex @code{short} directive
5580@ifset GENERIC
5581@code{.short} is normally the same as @samp{.word}.
5582@xref{Word,,@code{.word}}.
5583
5584In some configurations, however, @code{.short} and @code{.word} generate
5585numbers of different lengths; @pxref{Machine Dependencies}.
5586@end ifset
5587@ifclear GENERIC
5588@ifset W16
5589@code{.short} is the same as @samp{.word}. @xref{Word,,@code{.word}}.
5590@end ifset
5591@ifset W32
5592This expects zero or more @var{expressions}, and emits
5593a 16 bit number for each.
5594@end ifset
5595@end ifclear
5596
5597@node Single
5598@section @code{.single @var{flonums}}
5599
5600@cindex @code{single} directive
5601@cindex floating point numbers (single)
5602This directive assembles zero or more flonums, separated by commas. It
5603has the same effect as @code{.float}.
5604@ifset GENERIC
5605The exact kind of floating point numbers emitted depends on how
a4fb0134 5606@command{@value{AS}} is configured. @xref{Machine Dependencies}.
252b5132
RH
5607@end ifset
5608@ifclear GENERIC
5609@ifset IEEEFLOAT
5610On the @value{TARGET} family, @code{.single} emits 32-bit floating point
5611numbers in @sc{ieee} format.
5612@end ifset
5613@end ifclear
5614
c1253627 5615@ifset COFF-ELF
252b5132 5616@node Size
c1253627 5617@section @code{.size}
c91d2e08 5618
c1253627
NC
5619This directive is used to set the size associated with a symbol.
5620
5621@ifset COFF
5622@ifset ELF
5623@c only print the extra heading if both COFF and ELF are set
5624@subheading COFF Version
5625@end ifset
5626
5627@cindex @code{size} directive (COFF version)
5628For COFF targets, the @code{.size} directive is only permitted inside
5629@code{.def}/@code{.endef} pairs. It is used like this:
5630
5631@smallexample
5632.size @var{expression}
5633@end smallexample
252b5132 5634
c91d2e08 5635@ifset BOUT
252b5132 5636@samp{.size} is only meaningful when generating COFF format output; when
a4fb0134 5637@command{@value{AS}} is generating @code{b.out}, it accepts this directive but
252b5132
RH
5638ignores it.
5639@end ifset
c1253627 5640@end ifset
c91d2e08 5641
c1253627
NC
5642@ifset ELF
5643@ifset COFF
5644@c only print the extra heading if both COFF and ELF are set
5645@subheading ELF Version
5646@end ifset
5647
5648@cindex @code{size} directive (ELF version)
5649For ELF targets, the @code{.size} directive is used like this:
c91d2e08 5650
c1253627
NC
5651@smallexample
5652.size @var{name} , @var{expression}
5653@end smallexample
5654
5655This directive sets the size associated with a symbol @var{name}.
c91d2e08
NC
5656The size in bytes is computed from @var{expression} which can make use of label
5657arithmetic. This directive is typically used to set the size of function
5658symbols.
c1253627
NC
5659@end ifset
5660@end ifset
252b5132
RH
5661
5662@node Sleb128
5663@section @code{.sleb128 @var{expressions}}
5664
5665@cindex @code{sleb128} directive
5666@var{sleb128} stands for ``signed little endian base 128.'' This is a
5667compact, variable length representation of numbers used by the DWARF
5668symbolic debugging format. @xref{Uleb128,@code{.uleb128}}.
5669
5670@ifclear no-space-dir
5671@node Skip
5672@section @code{.skip @var{size} , @var{fill}}
5673
5674@cindex @code{skip} directive
5675@cindex filling memory
5676This directive emits @var{size} bytes, each of value @var{fill}. Both
5677@var{size} and @var{fill} are absolute expressions. If the comma and
5678@var{fill} are omitted, @var{fill} is assumed to be zero. This is the same as
5679@samp{.space}.
5680
5681@node Space
5682@section @code{.space @var{size} , @var{fill}}
5683
5684@cindex @code{space} directive
5685@cindex filling memory
5686This directive emits @var{size} bytes, each of value @var{fill}. Both
5687@var{size} and @var{fill} are absolute expressions. If the comma
5688and @var{fill} are omitted, @var{fill} is assumed to be zero. This is the same
5689as @samp{.skip}.
5690
5691@ifset HPPA
5692@quotation
5693@emph{Warning:} @code{.space} has a completely different meaning for HPPA
5694targets; use @code{.block} as a substitute. See @cite{HP9000 Series 800
5695Assembly Language Reference Manual} (HP 92432-90001) for the meaning of the
5696@code{.space} directive. @xref{HPPA Directives,,HPPA Assembler Directives},
5697for a summary.
5698@end quotation
5699@end ifset
5700@end ifclear
5701
252b5132
RH
5702@ifset have-stabs
5703@node Stab
5704@section @code{.stabd, .stabn, .stabs}
5705
5706@cindex symbolic debuggers, information for
5707@cindex @code{stab@var{x}} directives
5708There are three directives that begin @samp{.stab}.
5709All emit symbols (@pxref{Symbols}), for use by symbolic debuggers.
a4fb0134 5710The symbols are not entered in the @command{@value{AS}} hash table: they
252b5132
RH
5711cannot be referenced elsewhere in the source file.
5712Up to five fields are required:
5713
5714@table @var
5715@item string
5716This is the symbol's name. It may contain any character except
5717@samp{\000}, so is more general than ordinary symbol names. Some
5718debuggers used to code arbitrarily complex structures into symbol names
5719using this field.
5720
5721@item type
5722An absolute expression. The symbol's type is set to the low 8 bits of
5723this expression. Any bit pattern is permitted, but @code{@value{LD}}
5724and debuggers choke on silly bit patterns.
5725
5726@item other
5727An absolute expression. The symbol's ``other'' attribute is set to the
5728low 8 bits of this expression.
5729
5730@item desc
5731An absolute expression. The symbol's descriptor is set to the low 16
5732bits of this expression.
5733
5734@item value
5735An absolute expression which becomes the symbol's value.
5736@end table
5737
5738If a warning is detected while reading a @code{.stabd}, @code{.stabn},
5739or @code{.stabs} statement, the symbol has probably already been created;
5740you get a half-formed symbol in your object file. This is
5741compatible with earlier assemblers!
5742
5743@table @code
5744@cindex @code{stabd} directive
5745@item .stabd @var{type} , @var{other} , @var{desc}
5746
5747The ``name'' of the symbol generated is not even an empty string.
5748It is a null pointer, for compatibility. Older assemblers used a
5749null pointer so they didn't waste space in object files with empty
5750strings.
5751
5752The symbol's value is set to the location counter,
5753relocatably. When your program is linked, the value of this symbol
5754is the address of the location counter when the @code{.stabd} was
5755assembled.
5756
5757@cindex @code{stabn} directive
5758@item .stabn @var{type} , @var{other} , @var{desc} , @var{value}
5759The name of the symbol is set to the empty string @code{""}.
5760
5761@cindex @code{stabs} directive
5762@item .stabs @var{string} , @var{type} , @var{other} , @var{desc} , @var{value}
5763All five fields are specified.
5764@end table
5765@end ifset
5766@c end have-stabs
5767
5768@node String
5769@section @code{.string} "@var{str}"
5770
5771@cindex string, copying to object file
5772@cindex @code{string} directive
5773
5774Copy the characters in @var{str} to the object file. You may specify more than
5775one string to copy, separated by commas. Unless otherwise specified for a
5776particular machine, the assembler marks the end of each string with a 0 byte.
5777You can use any of the escape sequences described in @ref{Strings,,Strings}.
5778
5779@node Struct
5780@section @code{.struct @var{expression}}
5781
5782@cindex @code{struct} directive
5783Switch to the absolute section, and set the section offset to @var{expression},
5784which must be an absolute expression. You might use this as follows:
5785@smallexample
5786 .struct 0
5787field1:
5788 .struct field1 + 4
5789field2:
5790 .struct field2 + 4
5791field3:
5792@end smallexample
5793This would define the symbol @code{field1} to have the value 0, the symbol
5794@code{field2} to have the value 4, and the symbol @code{field3} to have the
5795value 8. Assembly would be left in the absolute section, and you would need to
5796use a @code{.section} directive of some sort to change to some other section
5797before further assembly.
5798
c91d2e08
NC
5799@ifset ELF
5800@node SubSection
5801@section @code{.subsection @var{name}}
5802
c1253627 5803@cindex @code{subsection} directive
c91d2e08
NC
5804@cindex Section Stack
5805This is one of the ELF section stack manipulation directives. The others are
a349d9dd
PB
5806@code{.section} (@pxref{Section}), @code{.pushsection} (@pxref{PushSection}),
5807@code{.popsection} (@pxref{PopSection}), and @code{.previous}
5808(@pxref{Previous}).
c91d2e08
NC
5809
5810This directive replaces the current subsection with @code{name}. The current
5811section is not changed. The replaced subsection is put onto the section stack
5812in place of the then current top of stack subsection.
c91d2e08
NC
5813@end ifset
5814
252b5132
RH
5815@ifset ELF
5816@node Symver
5817@section @code{.symver}
5818@cindex @code{symver} directive
5819@cindex symbol versioning
5820@cindex versions of symbols
5821Use the @code{.symver} directive to bind symbols to specific version nodes
5822within a source file. This is only supported on ELF platforms, and is
5823typically used when assembling files to be linked into a shared library.
5824There are cases where it may make sense to use this in objects to be bound
5825into an application itself so as to override a versioned symbol from a
5826shared library.
5827
79082ff0 5828For ELF targets, the @code{.symver} directive can be used like this:
252b5132
RH
5829@smallexample
5830.symver @var{name}, @var{name2@@nodename}
5831@end smallexample
339681c0 5832If the symbol @var{name} is defined within the file
79082ff0 5833being assembled, the @code{.symver} directive effectively creates a symbol
252b5132
RH
5834alias with the name @var{name2@@nodename}, and in fact the main reason that we
5835just don't try and create a regular alias is that the @var{@@} character isn't
5836permitted in symbol names. The @var{name2} part of the name is the actual name
5837of the symbol by which it will be externally referenced. The name @var{name}
5838itself is merely a name of convenience that is used so that it is possible to
5839have definitions for multiple versions of a function within a single source
5840file, and so that the compiler can unambiguously know which version of a
5841function is being mentioned. The @var{nodename} portion of the alias should be
5842the name of a node specified in the version script supplied to the linker when
5843building a shared library. If you are attempting to override a versioned
5844symbol from a shared library, then @var{nodename} should correspond to the
5845nodename of the symbol you are trying to override.
339681c0
L
5846
5847If the symbol @var{name} is not defined within the file being assembled, all
5848references to @var{name} will be changed to @var{name2@@nodename}. If no
5849reference to @var{name} is made, @var{name2@@nodename} will be removed from the
5850symbol table.
79082ff0
L
5851
5852Another usage of the @code{.symver} directive is:
5853@smallexample
5854.symver @var{name}, @var{name2@@@@nodename}
5855@end smallexample
5856In this case, the symbol @var{name} must exist and be defined within
a349d9dd 5857the file being assembled. It is similar to @var{name2@@nodename}. The
79082ff0
L
5858difference is @var{name2@@@@nodename} will also be used to resolve
5859references to @var{name2} by the linker.
5860
5861The third usage of the @code{.symver} directive is:
5862@smallexample
5863.symver @var{name}, @var{name2@@@@@@nodename}
5864@end smallexample
5865When @var{name} is not defined within the
5866file being assembled, it is treated as @var{name2@@nodename}. When
5867@var{name} is defined within the file being assembled, the symbol
5868name, @var{name}, will be changed to @var{name2@@@@nodename}.
252b5132
RH
5869@end ifset
5870
5871@ifset COFF
5872@node Tag
5873@section @code{.tag @var{structname}}
5874
5875@cindex COFF structure debugging
5876@cindex structure debugging, COFF
5877@cindex @code{tag} directive
5878This directive is generated by compilers to include auxiliary debugging
5879information in the symbol table. It is only permitted inside
5880@code{.def}/@code{.endef} pairs. Tags are used to link structure
5881definitions in the symbol table with instances of those structures.
5882@ifset BOUT
5883
5884@samp{.tag} is only used when generating COFF format output; when
a4fb0134 5885@command{@value{AS}} is generating @code{b.out}, it accepts this directive but
252b5132
RH
5886ignores it.
5887@end ifset
5888@end ifset
5889
5890@node Text
5891@section @code{.text @var{subsection}}
5892
5893@cindex @code{text} directive
a4fb0134 5894Tells @command{@value{AS}} to assemble the following statements onto the end of
252b5132
RH
5895the text subsection numbered @var{subsection}, which is an absolute
5896expression. If @var{subsection} is omitted, subsection number zero
5897is used.
5898
5899@node Title
5900@section @code{.title "@var{heading}"}
5901
5902@cindex @code{title} directive
5903@cindex listing control: title line
5904Use @var{heading} as the title (second line, immediately after the
5905source file name and pagenumber) when generating assembly listings.
5906
5907This directive affects subsequent pages, as well as the current page if
5908it appears within ten lines of the top of a page.
5909
c1253627 5910@ifset COFF-ELF
252b5132 5911@node Type
c1253627
NC
5912@section @code{.type}
5913
5914This directive is used to set the type of a symbol.
5915
5916@ifset COFF
5917@ifset ELF
5918@c only print the extra heading if both COFF and ELF are set
5919@subheading COFF Version
5920@end ifset
252b5132
RH
5921
5922@cindex COFF symbol type
5923@cindex symbol type, COFF
c1253627
NC
5924@cindex @code{type} directive (COFF version)
5925For COFF targets, this directive is permitted only within
5926@code{.def}/@code{.endef} pairs. It is used like this:
5927
5928@smallexample
5929.type @var{int}
5930@end smallexample
5931
5932This records the integer @var{int} as the type attribute of a symbol table
5933entry.
252b5132 5934
c91d2e08 5935@ifset BOUT
252b5132 5936@samp{.type} is associated only with COFF format output; when
a4fb0134 5937@command{@value{AS}} is configured for @code{b.out} output, it accepts this
252b5132
RH
5938directive but ignores it.
5939@end ifset
c1253627 5940@end ifset
c91d2e08 5941
c1253627
NC
5942@ifset ELF
5943@ifset COFF
5944@c only print the extra heading if both COFF and ELF are set
5945@subheading ELF Version
5946@end ifset
c91d2e08
NC
5947
5948@cindex ELF symbol type
5949@cindex symbol type, ELF
c1253627
NC
5950@cindex @code{type} directive (ELF version)
5951For ELF targets, the @code{.type} directive is used like this:
5952
5953@smallexample
5954.type @var{name} , @var{type description}
5955@end smallexample
5956
5957This sets the type of symbol @var{name} to be either a
a349d9dd 5958function symbol or an object symbol. There are five different syntaxes
c91d2e08 5959supported for the @var{type description} field, in order to provide
a349d9dd 5960compatibility with various other assemblers. The syntaxes supported are:
c91d2e08
NC
5961
5962@smallexample
5963 .type <name>,#function
5964 .type <name>,#object
5965
5966 .type <name>,@@function
5967 .type <name>,@@object
5968
5969 .type <name>,%function
5970 .type <name>,%object
5971
5972 .type <name>,"function"
5973 .type <name>,"object"
5974
5975 .type <name> STT_FUNCTION
5976 .type <name> STT_OBJECT
5977@end smallexample
c1253627
NC
5978@end ifset
5979@end ifset
c91d2e08
NC
5980
5981@node Uleb128
5982@section @code{.uleb128 @var{expressions}}
5983
5984@cindex @code{uleb128} directive
5985@var{uleb128} stands for ``unsigned little endian base 128.'' This is a
5986compact, variable length representation of numbers used by the DWARF
5987symbolic debugging format. @xref{Sleb128,@code{.sleb128}}.
252b5132
RH
5988
5989@ifset COFF
5990@node Val
5991@section @code{.val @var{addr}}
5992
5993@cindex @code{val} directive
5994@cindex COFF value attribute
5995@cindex value attribute, COFF
5996This directive, permitted only within @code{.def}/@code{.endef} pairs,
5997records the address @var{addr} as the value attribute of a symbol table
5998entry.
5999@ifset BOUT
6000
a4fb0134 6001@samp{.val} is used only for COFF output; when @command{@value{AS}} is
252b5132
RH
6002configured for @code{b.out}, it accepts this directive but ignores it.
6003@end ifset
6004@end ifset
6005
2e13b764 6006@ifset ELF
c91d2e08
NC
6007@node Version
6008@section @code{.version "@var{string}"}
2e13b764 6009
c1253627 6010@cindex @code{version} directive
c91d2e08
NC
6011This directive creates a @code{.note} section and places into it an ELF
6012formatted note of type NT_VERSION. The note's name is set to @code{string}.
9a297610 6013@end ifset
2e13b764 6014
c91d2e08
NC
6015@ifset ELF
6016@node VTableEntry
6017@section @code{.vtable_entry @var{table}, @var{offset}}
2e13b764 6018
653cfe85 6019@cindex @code{vtable_entry} directive
c91d2e08
NC
6020This directive finds or creates a symbol @code{table} and creates a
6021@code{VTABLE_ENTRY} relocation for it with an addend of @code{offset}.
2e13b764 6022
c91d2e08
NC
6023@node VTableInherit
6024@section @code{.vtable_inherit @var{child}, @var{parent}}
2e13b764 6025
653cfe85 6026@cindex @code{vtable_inherit} directive
c91d2e08
NC
6027This directive finds the symbol @code{child} and finds or creates the symbol
6028@code{parent} and then creates a @code{VTABLE_INHERIT} relocation for the
a349d9dd 6029parent whose addend is the value of the child symbol. As a special case the
c91d2e08
NC
6030parent name of @code{0} is treated as refering the @code{*ABS*} section.
6031@end ifset
2e13b764 6032
d190d046
HPN
6033@node Warning
6034@section @code{.warning "@var{string}"}
6035@cindex warning directive
6036Similar to the directive @code{.error}
6037(@pxref{Error,,@code{.error "@var{string}"}}), but just emits a warning.
6038
c91d2e08
NC
6039@node Weak
6040@section @code{.weak @var{names}}
2e13b764 6041
c1253627 6042@cindex @code{weak} directive
a349d9dd 6043This directive sets the weak attribute on the comma separated list of symbol
c91d2e08 6044@code{names}. If the symbols do not already exist, they will be created.
c87db184 6045
977cdf5a
NC
6046On COFF targets other than PE, weak symbols are a GNU extension. This
6047directive sets the weak attribute on the comma separated list of symbol
c87db184
CF
6048@code{names}. If the symbols do not already exist, they will be created.
6049
977cdf5a
NC
6050On the PE target, weak symbols are supported natively as weak aliases.
6051When a weak symbol is created that is not an alias, GAS creates an
6052alternate symbol to hold the default value.
2e13b764 6053
06e77878
AO
6054@node Weakref
6055@section @code{.weakref @var{alias}, @var{target}}
6056
6057@cindex @code{weakref} directive
6058This directive creates an alias to the target symbol that enables the symbol to
6059be referenced with weak-symbol semantics, but without actually making it weak.
6060If direct references or definitions of the symbol are present, then the symbol
6061will not be weak, but if all references to it are through weak references, the
6062symbol will be marked as weak in the symbol table.
6063
6064The effect is equivalent to moving all references to the alias to a separate
6065assembly source file, renaming the alias to the symbol in it, declaring the
6066symbol as weak there, and running a reloadable link to merge the object files
6067resulting from the assembly of the new source file and the old source file that
6068had the references to the alias removed.
6069
6070The alias itself never makes to the symbol table, and is entirely handled
6071within the assembler.
6072
252b5132
RH
6073@node Word
6074@section @code{.word @var{expressions}}
6075
6076@cindex @code{word} directive
6077This directive expects zero or more @var{expressions}, of any section,
6078separated by commas.
6079@ifclear GENERIC
6080@ifset W32
a4fb0134 6081For each expression, @command{@value{AS}} emits a 32-bit number.
252b5132
RH
6082@end ifset
6083@ifset W16
a4fb0134 6084For each expression, @command{@value{AS}} emits a 16-bit number.
252b5132
RH
6085@end ifset
6086@end ifclear
6087@ifset GENERIC
6088
6089The size of the number emitted, and its byte order,
6090depend on what target computer the assembly is for.
6091@end ifset
6092
6093@c on amd29k, i960, sparc the "special treatment to support compilers" doesn't
6094@c happen---32-bit addressability, period; no long/short jumps.
6095@ifset DIFF-TBL-KLUGE
6096@cindex difference tables altered
6097@cindex altered difference tables
6098@quotation
6099@emph{Warning: Special Treatment to support Compilers}
6100@end quotation
6101
6102@ifset GENERIC
6103Machines with a 32-bit address space, but that do less than 32-bit
6104addressing, require the following special treatment. If the machine of
6105interest to you does 32-bit addressing (or doesn't require it;
6106@pxref{Machine Dependencies}), you can ignore this issue.
6107
6108@end ifset
6109In order to assemble compiler output into something that works,
a4fb0134 6110@command{@value{AS}} occasionally does strange things to @samp{.word} directives.
252b5132 6111Directives of the form @samp{.word sym1-sym2} are often emitted by
a4fb0134 6112compilers as part of jump tables. Therefore, when @command{@value{AS}} assembles a
252b5132 6113directive of the form @samp{.word sym1-sym2}, and the difference between
a4fb0134 6114@code{sym1} and @code{sym2} does not fit in 16 bits, @command{@value{AS}}
252b5132
RH
6115creates a @dfn{secondary jump table}, immediately before the next label.
6116This secondary jump table is preceded by a short-jump to the
6117first byte after the secondary table. This short-jump prevents the flow
6118of control from accidentally falling into the new table. Inside the
6119table is a long-jump to @code{sym2}. The original @samp{.word}
6120contains @code{sym1} minus the address of the long-jump to
6121@code{sym2}.
6122
6123If there were several occurrences of @samp{.word sym1-sym2} before the
6124secondary jump table, all of them are adjusted. If there was a
6125@samp{.word sym3-sym4}, that also did not fit in sixteen bits, a
6126long-jump to @code{sym4} is included in the secondary jump table,
6127and the @code{.word} directives are adjusted to contain @code{sym3}
6128minus the address of the long-jump to @code{sym4}; and so on, for as many
6129entries in the original jump table as necessary.
6130
6131@ifset INTERNALS
a4fb0134 6132@emph{This feature may be disabled by compiling @command{@value{AS}} with the
252b5132
RH
6133@samp{-DWORKING_DOT_WORD} option.} This feature is likely to confuse
6134assembly language programmers.
6135@end ifset
6136@end ifset
6137@c end DIFF-TBL-KLUGE
6138
6139@node Deprecated
6140@section Deprecated Directives
6141
6142@cindex deprecated directives
6143@cindex obsolescent directives
6144One day these directives won't work.
6145They are included for compatibility with older assemblers.
6146@table @t
6147@item .abort
6148@item .line
6149@end table
6150
6151@ifset GENERIC
6152@node Machine Dependencies
6153@chapter Machine Dependent Features
6154
6155@cindex machine dependencies
6156The machine instruction sets are (almost by definition) different on
a4fb0134
SC
6157each machine where @command{@value{AS}} runs. Floating point representations
6158vary as well, and @command{@value{AS}} often supports a few additional
252b5132
RH
6159directives or command-line options for compatibility with other
6160assemblers on a particular platform. Finally, some versions of
a4fb0134 6161@command{@value{AS}} support special pseudo-instructions for branch
252b5132
RH
6162optimization.
6163
6164This chapter discusses most of these differences, though it does not
6165include details on any machine's instruction set. For details on that
6166subject, see the hardware manufacturer's manual.
6167
6168@menu
625e1353
RH
6169@ifset ALPHA
6170* Alpha-Dependent:: Alpha Dependent Features
6171@end ifset
252b5132
RH
6172@ifset ARC
6173* ARC-Dependent:: ARC Dependent Features
6174@end ifset
6175@ifset ARM
6176* ARM-Dependent:: ARM Dependent Features
6177@end ifset
07c1b327
CM
6178@ifset BFIN
6179* BFIN-Dependent:: BFIN Dependent Features
6180@end ifset
8bf549a8 6181@ifset CRIS
328eb32e
HPN
6182* CRIS-Dependent:: CRIS Dependent Features
6183@end ifset
252b5132
RH
6184@ifset D10V
6185* D10V-Dependent:: D10V Dependent Features
6186@end ifset
6187@ifset D30V
6188* D30V-Dependent:: D30V Dependent Features
6189@end ifset
6190@ifset H8/300
c2dcd04e 6191* H8/300-Dependent:: Renesas H8/300 Dependent Features
252b5132 6192@end ifset
252b5132
RH
6193@ifset HPPA
6194* HPPA-Dependent:: HPPA Dependent Features
6195@end ifset
5b93d8bb
AM
6196@ifset I370
6197* ESA/390-Dependent:: IBM ESA/390 Dependent Features
6198@end ifset
252b5132 6199@ifset I80386
55b62671 6200* i386-Dependent:: Intel 80386 and AMD x86-64 Dependent Features
252b5132 6201@end ifset
e3308d0d
JE
6202@ifset I860
6203* i860-Dependent:: Intel 80860 Dependent Features
6204@end ifset
252b5132
RH
6205@ifset I960
6206* i960-Dependent:: Intel 80960 Dependent Features
6207@end ifset
5cb53c21
L
6208@ifset IA64
6209* IA-64-Dependent:: Intel IA-64 Dependent Features
6210@end ifset
a40cbfa3
NC
6211@ifset IP2K
6212* IP2K-Dependent:: IP2K Dependent Features
6213@end ifset
49f58d10
JB
6214@ifset M32C
6215* M32C-Dependent:: M32C Dependent Features
6216@end ifset
ec694b89
NC
6217@ifset M32R
6218* M32R-Dependent:: M32R Dependent Features
6219@end ifset
252b5132
RH
6220@ifset M680X0
6221* M68K-Dependent:: M680x0 Dependent Features
6222@end ifset
60bcf0fa
NC
6223@ifset M68HC11
6224* M68HC11-Dependent:: M68HC11 and 68HC12 Dependent Features
6225@end ifset
252b5132
RH
6226@ifset MIPS
6227* MIPS-Dependent:: MIPS Dependent Features
6228@end ifset
3c3bdf30
NC
6229@ifset MMIX
6230* MMIX-Dependent:: MMIX Dependent Features
6231@end ifset
2469cfa2
NC
6232@ifset MSP430
6233* MSP430-Dependent:: MSP430 Dependent Features
6234@end ifset
252b5132 6235@ifset SH
ef230218
JR
6236* SH-Dependent:: Renesas / SuperH SH Dependent Features
6237* SH64-Dependent:: SuperH SH64 Dependent Features
252b5132 6238@end ifset
e135f41b
NC
6239@ifset PDP11
6240* PDP-11-Dependent:: PDP-11 Dependent Features
6241@end ifset
041dd5a9
ILT
6242@ifset PJ
6243* PJ-Dependent:: picoJava Dependent Features
6244@end ifset
418c1742
MG
6245@ifset PPC
6246* PPC-Dependent:: PowerPC Dependent Features
6247@end ifset
252b5132
RH
6248@ifset SPARC
6249* Sparc-Dependent:: SPARC Dependent Features
6250@end ifset
39bec121
TW
6251@ifset TIC54X
6252* TIC54X-Dependent:: TI TMS320C54x Dependent Features
6253@end ifset
252b5132
RH
6254@ifset V850
6255* V850-Dependent:: V850 Dependent Features
6256@end ifset
e0001a05
NC
6257@ifset XTENSA
6258* Xtensa-Dependent:: Xtensa Dependent Features
6259@end ifset
3c9b82ba
NC
6260@ifset Z80
6261* Z80-Dependent:: Z80 Dependent Features
6262@end ifset
252b5132
RH
6263@ifset Z8000
6264* Z8000-Dependent:: Z8000 Dependent Features
6265@end ifset
6266@ifset VAX
6267* Vax-Dependent:: VAX Dependent Features
6268@end ifset
6269@end menu
6270
6271@lowersections
6272@end ifset
6273
6274@c The following major nodes are *sections* in the GENERIC version, *chapters*
6275@c in single-cpu versions. This is mainly achieved by @lowersections. There is a
6276@c peculiarity: to preserve cross-references, there must be a node called
6277@c "Machine Dependencies". Hence the conditional nodenames in each
6278@c major node below. Node defaulting in makeinfo requires adjacency of
6279@c node and sectioning commands; hence the repetition of @chapter BLAH
6280@c in both conditional blocks.
6281
625e1353
RH
6282@ifset ALPHA
6283@include c-alpha.texi
6284@end ifset
6285
6286@ifset ARC
6287@include c-arc.texi
6288@end ifset
6289
252b5132
RH
6290@ifset ARM
6291@include c-arm.texi
6292@end ifset
6293
07c1b327
CM
6294@ifset BFIN
6295@include c-bfin.texi
6296@end ifset
6297
328eb32e
HPN
6298@ifset CRIS
6299@include c-cris.texi
6300@end ifset
6301
c2dcd04e 6302@ifset Renesas-all
252b5132
RH
6303@ifclear GENERIC
6304@node Machine Dependencies
6305@chapter Machine Dependent Features
6306
c2dcd04e 6307The machine instruction sets are different on each Renesas chip family,
252b5132 6308and there are also some syntax differences among the families. This
a4fb0134 6309chapter describes the specific @command{@value{AS}} features for each
252b5132
RH
6310family.
6311
6312@menu
c2dcd04e 6313* H8/300-Dependent:: Renesas H8/300 Dependent Features
c2dcd04e 6314* SH-Dependent:: Renesas SH Dependent Features
252b5132
RH
6315@end menu
6316@lowersections
6317@end ifclear
6318@end ifset
6319
6320@ifset D10V
6321@include c-d10v.texi
6322@end ifset
6323
6324@ifset D30V
6325@include c-d30v.texi
6326@end ifset
6327
6328@ifset H8/300
6329@include c-h8300.texi
6330@end ifset
6331
252b5132
RH
6332@ifset HPPA
6333@include c-hppa.texi
6334@end ifset
6335
5b93d8bb
AM
6336@ifset I370
6337@include c-i370.texi
6338@end ifset
6339
252b5132
RH
6340@ifset I80386
6341@include c-i386.texi
6342@end ifset
6343
e3308d0d
JE
6344@ifset I860
6345@include c-i860.texi
6346@end ifset
6347
252b5132
RH
6348@ifset I960
6349@include c-i960.texi
6350@end ifset
6351
9e32ca89
NC
6352@ifset IA64
6353@include c-ia64.texi
6354@end ifset
6355
a40cbfa3
NC
6356@ifset IP2K
6357@include c-ip2k.texi
6358@end ifset
6359
49f58d10
JB
6360@ifset M32C
6361@include c-m32c.texi
6362@end ifset
6363
ec694b89
NC
6364@ifset M32R
6365@include c-m32r.texi
6366@end ifset
252b5132
RH
6367
6368@ifset M680X0
6369@include c-m68k.texi
6370@end ifset
6371
60bcf0fa
NC
6372@ifset M68HC11
6373@include c-m68hc11.texi
6374@end ifset
6375
252b5132
RH
6376@ifset MIPS
6377@include c-mips.texi
6378@end ifset
6379
3c3bdf30
NC
6380@ifset MMIX
6381@include c-mmix.texi
6382@end ifset
6383
2469cfa2
NC
6384@ifset MSP430
6385@include c-msp430.texi
6386@end ifset
6387
252b5132
RH
6388@ifset NS32K
6389@include c-ns32k.texi
6390@end ifset
6391
e135f41b
NC
6392@ifset PDP11
6393@include c-pdp11.texi
6394@end ifset
6395
041dd5a9
ILT
6396@ifset PJ
6397@include c-pj.texi
6398@end ifset
6399
418c1742
MG
6400@ifset PPC
6401@include c-ppc.texi
6402@end ifset
6403
252b5132
RH
6404@ifset SH
6405@include c-sh.texi
324bfcf3 6406@include c-sh64.texi
252b5132
RH
6407@end ifset
6408
6409@ifset SPARC
6410@include c-sparc.texi
6411@end ifset
6412
39bec121
TW
6413@ifset TIC54X
6414@include c-tic54x.texi
6415@end ifset
6416
3c9b82ba
NC
6417@ifset Z80
6418@include c-z80.texi
6419@end ifset
6420
252b5132
RH
6421@ifset Z8000
6422@include c-z8k.texi
6423@end ifset
6424
6425@ifset VAX
6426@include c-vax.texi
6427@end ifset
6428
6429@ifset V850
6430@include c-v850.texi
6431@end ifset
6432
e0001a05
NC
6433@ifset XTENSA
6434@include c-xtensa.texi
6435@end ifset
6436
252b5132
RH
6437@ifset GENERIC
6438@c reverse effect of @down at top of generic Machine-Dep chapter
6439@raisesections
6440@end ifset
6441
6442@node Reporting Bugs
6443@chapter Reporting Bugs
6444@cindex bugs in assembler
6445@cindex reporting bugs in assembler
6446
a4fb0134 6447Your bug reports play an essential role in making @command{@value{AS}} reliable.
252b5132
RH
6448
6449Reporting a bug may help you by bringing a solution to your problem, or it may
6450not. But in any case the principal function of a bug report is to help the
a4fb0134
SC
6451entire community by making the next version of @command{@value{AS}} work better.
6452Bug reports are your contribution to the maintenance of @command{@value{AS}}.
252b5132
RH
6453
6454In order for a bug report to serve its purpose, you must include the
6455information that enables us to fix the bug.
6456
6457@menu
6458* Bug Criteria:: Have you found a bug?
6459* Bug Reporting:: How to report bugs
6460@end menu
6461
6462@node Bug Criteria
c1253627 6463@section Have You Found a Bug?
252b5132
RH
6464@cindex bug criteria
6465
6466If you are not sure whether you have found a bug, here are some guidelines:
6467
6468@itemize @bullet
6469@cindex fatal signal
6470@cindex assembler crash
6471@cindex crash of assembler
6472@item
6473If the assembler gets a fatal signal, for any input whatever, that is a
a4fb0134 6474@command{@value{AS}} bug. Reliable assemblers never crash.
252b5132
RH
6475
6476@cindex error on valid input
6477@item
a4fb0134 6478If @command{@value{AS}} produces an error message for valid input, that is a bug.
252b5132
RH
6479
6480@cindex invalid input
6481@item
a4fb0134 6482If @command{@value{AS}} does not produce an error message for invalid input, that
252b5132
RH
6483is a bug. However, you should note that your idea of ``invalid input'' might
6484be our idea of ``an extension'' or ``support for traditional practice''.
6485
6486@item
6487If you are an experienced user of assemblers, your suggestions for improvement
a4fb0134 6488of @command{@value{AS}} are welcome in any case.
252b5132
RH
6489@end itemize
6490
6491@node Bug Reporting
c1253627 6492@section How to Report Bugs
252b5132
RH
6493@cindex bug reports
6494@cindex assembler bugs, reporting
6495
6496A number of companies and individuals offer support for @sc{gnu} products. If
a4fb0134 6497you obtained @command{@value{AS}} from a support organization, we recommend you
252b5132
RH
6498contact that organization first.
6499
6500You can find contact information for many support companies and
6501individuals in the file @file{etc/SERVICE} in the @sc{gnu} Emacs
6502distribution.
6503
a4fb0134 6504In any event, we also recommend that you send bug reports for @command{@value{AS}}
46a04e3a 6505to @samp{bug-binutils@@gnu.org}.
252b5132
RH
6506
6507The fundamental principle of reporting bugs usefully is this:
6508@strong{report all the facts}. If you are not sure whether to state a
6509fact or leave it out, state it!
6510
6511Often people omit facts because they think they know what causes the problem
6512and assume that some details do not matter. Thus, you might assume that the
6513name of a symbol you use in an example does not matter. Well, probably it does
6514not, but one cannot be sure. Perhaps the bug is a stray memory reference which
6515happens to fetch from the location where that name is stored in memory;
6516perhaps, if the name were different, the contents of that location would fool
6517the assembler into doing the right thing despite the bug. Play it safe and
6518give a specific, complete example. That is the easiest thing for you to do,
6519and the most helpful.
6520
6521Keep in mind that the purpose of a bug report is to enable us to fix the bug if
6522it is new to us. Therefore, always write your bug reports on the assumption
6523that the bug has not been reported previously.
6524
6525Sometimes people give a few sketchy facts and ask, ``Does this ring a
c1253627
NC
6526bell?'' This cannot help us fix a bug, so it is basically useless. We
6527respond by asking for enough details to enable us to investigate.
6528You might as well expedite matters by sending them to begin with.
252b5132
RH
6529
6530To enable us to fix the bug, you should include all these things:
6531
6532@itemize @bullet
6533@item
a4fb0134 6534The version of @command{@value{AS}}. @command{@value{AS}} announces it if you start
252b5132
RH
6535it with the @samp{--version} argument.
6536
6537Without this, we will not know whether there is any point in looking for
a4fb0134 6538the bug in the current version of @command{@value{AS}}.
252b5132
RH
6539
6540@item
a4fb0134 6541Any patches you may have applied to the @command{@value{AS}} source.
252b5132
RH
6542
6543@item
6544The type of machine you are using, and the operating system name and
6545version number.
6546
6547@item
a4fb0134 6548What compiler (and its version) was used to compile @command{@value{AS}}---e.g.
252b5132
RH
6549``@code{gcc-2.7}''.
6550
6551@item
6552The command arguments you gave the assembler to assemble your example and
6553observe the bug. To guarantee you will not omit something important, list them
6554all. A copy of the Makefile (or the output from make) is sufficient.
6555
6556If we were to try to guess the arguments, we would probably guess wrong
6557and then we might not encounter the bug.
6558
6559@item
6560A complete input file that will reproduce the bug. If the bug is observed when
6561the assembler is invoked via a compiler, send the assembler source, not the
6562high level language source. Most compilers will produce the assembler source
6563when run with the @samp{-S} option. If you are using @code{@value{GCC}}, use
6564the options @samp{-v --save-temps}; this will save the assembler source in a
6565file with an extension of @file{.s}, and also show you exactly how
a4fb0134 6566@command{@value{AS}} is being run.
252b5132
RH
6567
6568@item
6569A description of what behavior you observe that you believe is
6570incorrect. For example, ``It gets a fatal signal.''
6571
a4fb0134 6572Of course, if the bug is that @command{@value{AS}} gets a fatal signal, then we
252b5132
RH
6573will certainly notice it. But if the bug is incorrect output, we might not
6574notice unless it is glaringly wrong. You might as well not give us a chance to
6575make a mistake.
6576
6577Even if the problem you experience is a fatal signal, you should still say so
6578explicitly. Suppose something strange is going on, such as, your copy of
a4fb0134 6579@command{@value{AS}} is out of synch, or you have encountered a bug in the C
252b5132
RH
6580library on your system. (This has happened!) Your copy might crash and ours
6581would not. If you told us to expect a crash, then when ours fails to crash, we
6582would know that the bug was not happening for us. If you had not told us to
6583expect a crash, then we would not be able to draw any conclusion from our
6584observations.
6585
6586@item
a4fb0134 6587If you wish to suggest changes to the @command{@value{AS}} source, send us context
252b5132
RH
6588diffs, as generated by @code{diff} with the @samp{-u}, @samp{-c}, or @samp{-p}
6589option. Always send diffs from the old file to the new file. If you even
a4fb0134 6590discuss something in the @command{@value{AS}} source, refer to it by context, not
252b5132
RH
6591by line number.
6592
6593The line numbers in our development sources will not match those in your
6594sources. Your line numbers would convey no useful information to us.
6595@end itemize
6596
6597Here are some things that are not necessary:
6598
6599@itemize @bullet
6600@item
6601A description of the envelope of the bug.
6602
6603Often people who encounter a bug spend a lot of time investigating
6604which changes to the input file will make the bug go away and which
6605changes will not affect it.
6606
6607This is often time consuming and not very useful, because the way we
6608will find the bug is by running a single example under the debugger
6609with breakpoints, not by pure deduction from a series of examples.
6610We recommend that you save your time for something else.
6611
6612Of course, if you can find a simpler example to report @emph{instead}
6613of the original one, that is a convenience for us. Errors in the
6614output will be easier to spot, running under the debugger will take
6615less time, and so on.
6616
6617However, simplification is not vital; if you do not want to do this,
6618report the bug anyway and send us the entire test case you used.
6619
6620@item
6621A patch for the bug.
6622
6623A patch for the bug does help us if it is a good one. But do not omit
6624the necessary information, such as the test case, on the assumption that
6625a patch is all we need. We might see problems with your patch and decide
6626to fix the problem another way, or we might not understand it at all.
6627
a4fb0134 6628Sometimes with a program as complicated as @command{@value{AS}} it is very hard to
252b5132
RH
6629construct an example that will make the program follow a certain path through
6630the code. If you do not send us the example, we will not be able to construct
6631one, so we will not be able to verify that the bug is fixed.
6632
6633And if we cannot understand what bug you are trying to fix, or why your
6634patch should be an improvement, we will not install it. A test case will
6635help us to understand.
6636
6637@item
6638A guess about what the bug is or what it depends on.
6639
6640Such guesses are usually wrong. Even we cannot guess right about such
6641things without first using the debugger to find the facts.
6642@end itemize
6643
6644@node Acknowledgements
6645@chapter Acknowledgements
6646
653cfe85 6647If you have contributed to GAS and your name isn't listed here,
252b5132
RH
6648it is not meant as a slight. We just don't know about it. Send mail to the
6649maintainer, and we'll correct the situation. Currently
6650@c (January 1994),
6651the maintainer is Ken Raeburn (email address @code{raeburn@@cygnus.com}).
6652
6653Dean Elsner wrote the original @sc{gnu} assembler for the VAX.@footnote{Any
6654more details?}
6655
6656Jay Fenlason maintained GAS for a while, adding support for GDB-specific debug
6657information and the 68k series machines, most of the preprocessing pass, and
6658extensive changes in @file{messages.c}, @file{input-file.c}, @file{write.c}.
6659
6660K. Richard Pixley maintained GAS for a while, adding various enhancements and
6661many bug fixes, including merging support for several processors, breaking GAS
6662up to handle multiple object file format back ends (including heavy rewrite,
6663testing, an integration of the coff and b.out back ends), adding configuration
6664including heavy testing and verification of cross assemblers and file splits
6665and renaming, converted GAS to strictly ANSI C including full prototypes, added
6666support for m680[34]0 and cpu32, did considerable work on i960 including a COFF
6667port (including considerable amounts of reverse engineering), a SPARC opcode
6668file rewrite, DECstation, rs6000, and hp300hpux host ports, updated ``know''
6669assertions and made them work, much other reorganization, cleanup, and lint.
6670
6671Ken Raeburn wrote the high-level BFD interface code to replace most of the code
6672in format-specific I/O modules.
6673
6674The original VMS support was contributed by David L. Kashtan. Eric Youngdale
6675has done much work with it since.
6676
6677The Intel 80386 machine description was written by Eliot Dresselhaus.
6678
6679Minh Tran-Le at IntelliCorp contributed some AIX 386 support.
6680
6681The Motorola 88k machine description was contributed by Devon Bowen of Buffalo
6682University and Torbjorn Granlund of the Swedish Institute of Computer Science.
6683
6684Keith Knowles at the Open Software Foundation wrote the original MIPS back end
6685(@file{tc-mips.c}, @file{tc-mips.h}), and contributed Rose format support
6686(which hasn't been merged in yet). Ralph Campbell worked with the MIPS code to
6687support a.out format.
6688
7be1c489
AM
6689Support for the Zilog Z8k and Renesas H8/300 processors (tc-z8k,
6690tc-h8300), and IEEE 695 object file format (obj-ieee), was written by
252b5132
RH
6691Steve Chamberlain of Cygnus Support. Steve also modified the COFF back end to
6692use BFD for some low-level operations, for use with the H8/300 and AMD 29k
6693targets.
6694
6695John Gilmore built the AMD 29000 support, added @code{.include} support, and
6696simplified the configuration of which versions accept which directives. He
6697updated the 68k machine description so that Motorola's opcodes always produced
c1253627 6698fixed-size instructions (e.g., @code{jsr}), while synthetic instructions
252b5132
RH
6699remained shrinkable (@code{jbsr}). John fixed many bugs, including true tested
6700cross-compilation support, and one bug in relaxation that took a week and
6701required the proverbial one-bit fix.
6702
6703Ian Lance Taylor of Cygnus Support merged the Motorola and MIT syntax for the
670468k, completed support for some COFF targets (68k, i386 SVR3, and SCO Unix),
6705added support for MIPS ECOFF and ELF targets, wrote the initial RS/6000 and
6706PowerPC assembler, and made a few other minor patches.
6707
653cfe85 6708Steve Chamberlain made GAS able to generate listings.
252b5132
RH
6709
6710Hewlett-Packard contributed support for the HP9000/300.
6711
6712Jeff Law wrote GAS and BFD support for the native HPPA object format (SOM)
6713along with a fairly extensive HPPA testsuite (for both SOM and ELF object
6714formats). This work was supported by both the Center for Software Science at
6715the University of Utah and Cygnus Support.
6716
6717Support for ELF format files has been worked on by Mark Eichin of Cygnus
6718Support (original, incomplete implementation for SPARC), Pete Hoogenboom and
6719Jeff Law at the University of Utah (HPPA mainly), Michael Meissner of the Open
6720Software Foundation (i386 mainly), and Ken Raeburn of Cygnus Support (sparc,
6721and some initial 64-bit support).
6722
c1253627 6723Linas Vepstas added GAS support for the ESA/390 ``IBM 370'' architecture.
5b93d8bb 6724
252b5132
RH
6725Richard Henderson rewrote the Alpha assembler. Klaus Kaempf wrote GAS and BFD
6726support for openVMS/Alpha.
6727
39bec121
TW
6728Timothy Wall, Michael Hayes, and Greg Smart contributed to the various tic*
6729flavors.
6730
e0001a05
NC
6731David Heine, Sterling Augustine, Bob Wilson and John Ruttenberg from Tensilica,
6732Inc. added support for Xtensa processors.
6733
252b5132
RH
6734Several engineers at Cygnus Support have also provided many small bug fixes and
6735configuration enhancements.
6736
6737Many others have contributed large or small bugfixes and enhancements. If
6738you have contributed significant work and are not mentioned on this list, and
6739want to be, let us know. Some of the history has been lost; we are not
6740intentionally leaving anyone out.
6741
c1253627 6742@include fdl.texi
cf055d54 6743
252b5132
RH
6744@node Index
6745@unnumbered Index
6746
6747@printindex cp
6748
6749@contents
6750@bye
6751@c Local Variables:
6752@c fill-column: 79
6753@c End: