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gas/ * config/tc-aarch64.c (enum aarch64_abi_type): New enumeration tag. (AARCH64_ABI_LP64, AARCH64_ABI_ILP32): New enumerators. (aarch64_abi): New variable. (ilp32_p): Change to be a macro. (aarch64_opts): Remove the support for option -milp32 and -mlp64. (struct aarch64_option_abi_value_table): New struct. (aarch64_abis): New table. (aarch64_parse_abi): New function. (aarch64_long_opts): Add entry for -mabi=. * doc/as.texinfo (Target AArch64 options): Document -mabi. * doc/c-aarch64.texi: Likewise. gas/testsuite/ * gas/aarch64/ilp32-basic.d (#as): Update to use -mabi=ilp32
282 lines
7.6 KiB
Plaintext
282 lines
7.6 KiB
Plaintext
@c Copyright 2009, 2010, 2011, 2012 Free Software Foundation, Inc.
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@c Contributed by ARM Ltd.
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@c This is part of the GAS manual.
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@c For copying conditions, see the file as.texinfo.
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@c man end
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@ifset GENERIC
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@page
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@node AArch64-Dependent
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@chapter AArch64 Dependent Features
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@end ifset
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@ifclear GENERIC
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@node Machine Dependencies
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@chapter AArch64 Dependent Features
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@end ifclear
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@cindex AArch64 support
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@cindex Thumb support
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@menu
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* AArch64 Options:: Options
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* AArch64 Syntax:: Syntax
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* AArch64 Floating Point:: Floating Point
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* AArch64 Directives:: AArch64 Machine Directives
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* AArch64 Opcodes:: Opcodes
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* AArch64 Mapping Symbols:: Mapping Symbols
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@end menu
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@node AArch64 Options
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@section Options
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@cindex AArch64 options (none)
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@cindex options for AArch64 (none)
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@c man begin OPTIONS
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@table @gcctabopt
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@cindex @code{-EB} command line option, AArch64
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@item -EB
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This option specifies that the output generated by the assembler should
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be marked as being encoded for a big-endian processor.
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@cindex @code{-EL} command line option, AArch64
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@item -EL
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This option specifies that the output generated by the assembler should
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be marked as being encoded for a little-endian processor.
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@cindex @code{-mabi=} command line option, AArch64
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@item -mabi=@var{abi}
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Specify which ABI the source code uses. The recognized arguments
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are: @code{ilp32} and @code{lp64}, which decides the generated object
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file in ELF32 and ELF64 format respectively. The default is @code{lp64}.
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@end table
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@c man end
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@node AArch64 Syntax
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@section Syntax
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@menu
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* AArch64-Chars:: Special Characters
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* AArch64-Regs:: Register Names
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* AArch64-Relocations:: Relocations
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@end menu
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@node AArch64-Chars
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@subsection Special Characters
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@cindex line comment character, AArch64
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@cindex AArch64 line comment character
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The presence of a @samp{//} on a line indicates the start of a comment
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that extends to the end of the current line. If a @samp{#} appears as
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the first character of a line, the whole line is treated as a comment.
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@cindex line separator, AArch64
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@cindex statement separator, AArch64
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@cindex AArch64 line separator
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The @samp{;} character can be used instead of a newline to separate
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statements.
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@cindex immediate character, AArch64
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@cindex AArch64 immediate character
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The @samp{#} can be optionally used to indicate immediate operands.
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@node AArch64-Regs
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@subsection Register Names
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@cindex AArch64 register names
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@cindex register names, AArch64
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Please refer to the section @samp{4.4 Register Names} of
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@samp{ARMv8 Instruction Set Overview}, which is available at
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@uref{http://infocenter.arm.com}.
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@node AArch64-Relocations
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@subsection Relocations
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@cindex relocations, AArch64
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@cindex AArch64 relocations
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@cindex MOVN, MOVZ and MOVK group relocations, AArch64
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Relocations for @samp{MOVZ} and @samp{MOVK} instructions can be generated
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by prefixing the label with @samp{#:abs_g2:} etc.
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For example to load the 48-bit absolute address of @var{foo} into x0:
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@smallexample
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movz x0, #:abs_g2:foo // bits 32-47, overflow check
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movk x0, #:abs_g1_nc:foo // bits 16-31, no overflow check
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movk x0, #:abs_g0_nc:foo // bits 0-15, no overflow check
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@end smallexample
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@cindex ADRP, ADD, LDR/STR group relocations, AArch64
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Relocations for @samp{ADRP}, and @samp{ADD}, @samp{LDR} or @samp{STR}
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instructions can be generated by prefixing the label with
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@samp{#:pg_hi21:} and @samp{#:lo12:} respectively.
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For example to use 33-bit (+/-4GB) pc-relative addressing to
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load the address of @var{foo} into x0:
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@smallexample
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adrp x0, #:pg_hi21:foo
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add x0, x0, #:lo12:foo
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@end smallexample
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Or to load the value of @var{foo} into x0:
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@smallexample
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adrp x0, #:pg_hi21:foo
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ldr x0, [x0, #:lo12:foo]
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@end smallexample
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Note that @samp{#:pg_hi21:} is optional.
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@smallexample
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adrp x0, foo
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@end smallexample
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is equivalent to
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@smallexample
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adrp x0, #:pg_hi21:foo
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@end smallexample
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@node AArch64 Floating Point
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@section Floating Point
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@cindex floating point, AArch64 (@sc{ieee})
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@cindex AArch64 floating point (@sc{ieee})
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The AArch64 architecture uses @sc{ieee} floating-point numbers.
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@node AArch64 Directives
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@section AArch64 Machine Directives
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@cindex machine directives, AArch64
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@cindex AArch64 machine directives
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@table @code
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@c AAAAAAAAAAAAAAAAAAAAAAAAA
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@c BBBBBBBBBBBBBBBBBBBBBBBBBB
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@cindex @code{.bss} directive, AArch64
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@item .bss
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This directive switches to the @code{.bss} section.
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@c CCCCCCCCCCCCCCCCCCCCCCCCCC
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@c DDDDDDDDDDDDDDDDDDDDDDDDDD
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@c EEEEEEEEEEEEEEEEEEEEEEEEEE
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@c FFFFFFFFFFFFFFFFFFFFFFFFFF
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@c GGGGGGGGGGGGGGGGGGGGGGGGGG
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@c HHHHHHHHHHHHHHHHHHHHHHHHHH
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@c IIIIIIIIIIIIIIIIIIIIIIIIII
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@c JJJJJJJJJJJJJJJJJJJJJJJJJJ
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@c KKKKKKKKKKKKKKKKKKKKKKKKKK
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@c LLLLLLLLLLLLLLLLLLLLLLLLLL
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@cindex @code{.ltorg} directive, AArch64
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@item .ltorg
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This directive causes the current contents of the literal pool to be
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dumped into the current section (which is assumed to be the .text
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section) at the current location (aligned to a word boundary).
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@code{GAS} maintains a separate literal pool for each section and each
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sub-section. The @code{.ltorg} directive will only affect the literal
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pool of the current section and sub-section. At the end of assembly
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all remaining, un-empty literal pools will automatically be dumped.
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Note - older versions of @code{GAS} would dump the current literal
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pool any time a section change occurred. This is no longer done, since
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it prevents accurate control of the placement of literal pools.
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@c MMMMMMMMMMMMMMMMMMMMMMMMMM
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@c NNNNNNNNNNNNNNNNNNNNNNNNNN
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@c OOOOOOOOOOOOOOOOOOOOOOOOOO
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@c PPPPPPPPPPPPPPPPPPPPPPPPPP
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@cindex @code{.pool} directive, AArch64
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@item .pool
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This is a synonym for .ltorg.
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@c QQQQQQQQQQQQQQQQQQQQQQQQQQ
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@c RRRRRRRRRRRRRRRRRRRRRRRRRR
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@cindex @code{.req} directive, AArch64
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@item @var{name} .req @var{register name}
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This creates an alias for @var{register name} called @var{name}. For
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example:
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@smallexample
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foo .req w0
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@end smallexample
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@c SSSSSSSSSSSSSSSSSSSSSSSSSS
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@c TTTTTTTTTTTTTTTTTTTTTTTTTT
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@c UUUUUUUUUUUUUUUUUUUUUUUUUU
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@cindex @code{.unreq} directive, AArch64
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@item .unreq @var{alias-name}
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This undefines a register alias which was previously defined using the
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@code{req} directive. For example:
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@smallexample
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foo .req w0
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.unreq foo
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@end smallexample
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An error occurs if the name is undefined. Note - this pseudo op can
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be used to delete builtin in register name aliases (eg 'w0'). This
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should only be done if it is really necessary.
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@c VVVVVVVVVVVVVVVVVVVVVVVVVV
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@c WWWWWWWWWWWWWWWWWWWWWWWWWW
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@c XXXXXXXXXXXXXXXXXXXXXXXXXX
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@c YYYYYYYYYYYYYYYYYYYYYYYYYY
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@c ZZZZZZZZZZZZZZZZZZZZZZZZZZ
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@end table
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@node AArch64 Opcodes
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@section Opcodes
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@cindex AArch64 opcodes
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@cindex opcodes for AArch64
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@code{@value{AS}} implements all the standard AArch64 opcodes. It also
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implements several pseudo opcodes, including several synthetic load
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instructions.
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@table @code
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@cindex @code{LDR reg,=<expr>} pseudo op, AArch64
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@item LDR =
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@smallexample
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ldr <register> , =<expression>
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@end smallexample
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The constant expression will be placed into the nearest literal pool (if it not
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already there) and a PC-relative LDR instruction will be generated.
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@end table
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For more information on the AArch64 instruction set and assembly language
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notation, see @samp{ARMv8 Instruction Set Overview} available at
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@uref{http://infocenter.arm.com}.
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@node AArch64 Mapping Symbols
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@section Mapping Symbols
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The AArch64 ELF specification requires that special symbols be inserted
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into object files to mark certain features:
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@table @code
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@cindex @code{$x}
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@item $x
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At the start of a region of code containing AArch64 instructions.
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@cindex @code{$d}
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@item $d
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At the start of a region of data.
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@end table
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