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https://github.com/AsahiLinux/u-boot
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2f5d414ccb
This patch replaces the current function definitions with NESTED, LEAF and END macro. They specify some more additional information about the function; an alignment of symbol, type of symbol, stack frame usage, etc. These information explicitly tells the assembler and the debugger about the types of code we want to generate. Signed-off-by: Shinya Kuribayashi <skuribay@ruby.dti.ne.jp>
409 lines
9.3 KiB
C
409 lines
9.3 KiB
C
/*
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* This file is subject to the terms and conditions of the GNU General Public
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* License. See the file "COPYING" in the main directory of this archive
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* for more details.
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*
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* Copyright (C) 1995, 1996, 1997, 1999, 2001 by Ralf Baechle
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* Copyright (C) 1999 by Silicon Graphics, Inc.
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* Copyright (C) 2001 MIPS Technologies, Inc.
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* Copyright (C) 2002 Maciej W. Rozycki
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*
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* Some useful macros for MIPS assembler code
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*
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* Some of the routines below contain useless nops that will be optimized
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* away by gas in -O mode. These nops are however required to fill delay
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* slots in noreorder mode.
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*/
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#ifndef __ASM_ASM_H
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#define __ASM_ASM_H
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#include <asm/sgidefs.h>
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#ifndef CAT
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#ifdef __STDC__
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#define __CAT(str1, str2) str1##str2
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#else
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#define __CAT(str1, str2) str1/**/str2
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#endif
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#define CAT(str1, str2) __CAT(str1, str2)
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#endif
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/*
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* PIC specific declarations
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* Not used for the kernel but here seems to be the right place.
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*/
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#ifdef __PIC__
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#define CPRESTORE(register) \
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.cprestore register
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#define CPADD(register) \
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.cpadd register
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#define CPLOAD(register) \
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.cpload register
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#else
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#define CPRESTORE(register)
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#define CPADD(register)
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#define CPLOAD(register)
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#endif
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/*
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* LEAF - declare leaf routine
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*/
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#define LEAF(symbol) \
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.globl symbol; \
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.align 2; \
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.type symbol, @function; \
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.ent symbol, 0; \
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symbol: .frame sp, 0, ra
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/*
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* NESTED - declare nested routine entry point
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*/
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#define NESTED(symbol, framesize, rpc) \
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.globl symbol; \
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.align 2; \
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.type symbol, @function; \
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.ent symbol, 0; \
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symbol: .frame sp, framesize, rpc
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/*
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* END - mark end of function
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*/
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#define END(function) \
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.end function; \
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.size function, .-function
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/*
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* EXPORT - export definition of symbol
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*/
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#define EXPORT(symbol) \
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.globl symbol; \
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symbol:
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/*
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* FEXPORT - export definition of a function symbol
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*/
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#define FEXPORT(symbol) \
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.globl symbol; \
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.type symbol, @function; \
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symbol:
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/*
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* ABS - export absolute symbol
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*/
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#define ABS(symbol,value) \
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.globl symbol; \
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symbol = value
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#define PANIC(msg) \
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.set push; \
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.set reorder; \
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PTR_LA a0, 8f; \
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jal panic; \
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9: b 9b; \
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.set pop; \
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TEXT(msg)
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/*
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* Print formatted string
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*/
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#ifdef CONFIG_PRINTK
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#define PRINT(string) \
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.set push; \
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.set reorder; \
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PTR_LA a0, 8f; \
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jal printk; \
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.set pop; \
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TEXT(string)
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#else
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#define PRINT(string)
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#endif
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#define TEXT(msg) \
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.pushsection .data; \
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8: .asciiz msg; \
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.popsection;
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/*
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* Build text tables
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*/
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#define TTABLE(string) \
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.pushsection .text; \
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.word 1f; \
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.popsection \
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.pushsection .data; \
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1: .asciiz string; \
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.popsection
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/*
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* MIPS IV pref instruction.
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* Use with .set noreorder only!
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*
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* MIPS IV implementations are free to treat this as a nop. The R5000
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* is one of them. So we should have an option not to use this instruction.
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*/
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#ifdef CONFIG_CPU_HAS_PREFETCH
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#define PREF(hint,addr) \
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.set push; \
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.set mips4; \
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pref hint, addr; \
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.set pop
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#define PREFX(hint,addr) \
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.set push; \
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.set mips4; \
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prefx hint, addr; \
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.set pop
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#else /* !CONFIG_CPU_HAS_PREFETCH */
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#define PREF(hint, addr)
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#define PREFX(hint, addr)
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#endif /* !CONFIG_CPU_HAS_PREFETCH */
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/*
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* MIPS ISA IV/V movn/movz instructions and equivalents for older CPUs.
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*/
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#if (_MIPS_ISA == _MIPS_ISA_MIPS1)
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#define MOVN(rd, rs, rt) \
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.set push; \
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.set reorder; \
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beqz rt, 9f; \
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move rd, rs; \
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.set pop; \
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9:
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#define MOVZ(rd, rs, rt) \
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.set push; \
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.set reorder; \
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bnez rt, 9f; \
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move rd, rs; \
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.set pop; \
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9:
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#endif /* _MIPS_ISA == _MIPS_ISA_MIPS1 */
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#if (_MIPS_ISA == _MIPS_ISA_MIPS2) || (_MIPS_ISA == _MIPS_ISA_MIPS3)
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#define MOVN(rd, rs, rt) \
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.set push; \
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.set noreorder; \
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bnezl rt, 9f; \
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move rd, rs; \
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.set pop; \
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9:
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#define MOVZ(rd, rs, rt) \
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.set push; \
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.set noreorder; \
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beqzl rt, 9f; \
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move rd, rs; \
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.set pop; \
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9:
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#endif /* (_MIPS_ISA == _MIPS_ISA_MIPS2) || (_MIPS_ISA == _MIPS_ISA_MIPS3) */
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#if (_MIPS_ISA == _MIPS_ISA_MIPS4 ) || (_MIPS_ISA == _MIPS_ISA_MIPS5) || \
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(_MIPS_ISA == _MIPS_ISA_MIPS32) || (_MIPS_ISA == _MIPS_ISA_MIPS64)
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#define MOVN(rd, rs, rt) \
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movn rd, rs, rt
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#define MOVZ(rd, rs, rt) \
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movz rd, rs, rt
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#endif /* MIPS IV, MIPS V, MIPS32 or MIPS64 */
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/*
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* Stack alignment
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*/
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#if (_MIPS_SIM == _MIPS_SIM_ABI32)
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#define ALSZ 7
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#define ALMASK ~7
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#endif
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#if (_MIPS_SIM == _MIPS_SIM_NABI32) || (_MIPS_SIM == _MIPS_SIM_ABI64)
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#define ALSZ 15
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#define ALMASK ~15
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#endif
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/*
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* Macros to handle different pointer/register sizes for 32/64-bit code
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*/
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/*
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* Size of a register
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*/
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#ifdef __mips64
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#define SZREG 8
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#else
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#define SZREG 4
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#endif
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/*
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* Use the following macros in assemblercode to load/store registers,
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* pointers etc.
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*/
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#if (_MIPS_SIM == _MIPS_SIM_ABI32)
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#define REG_S sw
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#define REG_L lw
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#define REG_SUBU subu
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#define REG_ADDU addu
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#endif
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#if (_MIPS_SIM == _MIPS_SIM_NABI32) || (_MIPS_SIM == _MIPS_SIM_ABI64)
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#define REG_S sd
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#define REG_L ld
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#define REG_SUBU dsubu
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#define REG_ADDU daddu
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#endif
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/*
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* How to add/sub/load/store/shift C int variables.
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*/
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#if (_MIPS_SZINT == 32)
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#define INT_ADD add
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#define INT_ADDU addu
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#define INT_ADDI addi
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#define INT_ADDIU addiu
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#define INT_SUB sub
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#define INT_SUBU subu
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#define INT_L lw
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#define INT_S sw
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#define INT_SLL sll
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#define INT_SLLV sllv
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#define INT_SRL srl
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#define INT_SRLV srlv
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#define INT_SRA sra
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#define INT_SRAV srav
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#endif
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#if (_MIPS_SZINT == 64)
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#define INT_ADD dadd
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#define INT_ADDU daddu
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#define INT_ADDI daddi
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#define INT_ADDIU daddiu
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#define INT_SUB dsub
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#define INT_SUBU dsubu
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#define INT_L ld
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#define INT_S sd
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#define INT_SLL dsll
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#define INT_SLLV dsllv
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#define INT_SRL dsrl
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#define INT_SRLV dsrlv
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#define INT_SRA dsra
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#define INT_SRAV dsrav
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#endif
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/*
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* How to add/sub/load/store/shift C long variables.
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*/
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#if (_MIPS_SZLONG == 32)
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#define LONG_ADD add
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#define LONG_ADDU addu
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#define LONG_ADDI addi
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#define LONG_ADDIU addiu
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#define LONG_SUB sub
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#define LONG_SUBU subu
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#define LONG_L lw
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#define LONG_S sw
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#define LONG_SLL sll
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#define LONG_SLLV sllv
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#define LONG_SRL srl
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#define LONG_SRLV srlv
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#define LONG_SRA sra
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#define LONG_SRAV srav
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#define LONG .word
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#define LONGSIZE 4
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#define LONGMASK 3
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#define LONGLOG 2
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#endif
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#if (_MIPS_SZLONG == 64)
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#define LONG_ADD dadd
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#define LONG_ADDU daddu
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#define LONG_ADDI daddi
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#define LONG_ADDIU daddiu
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#define LONG_SUB dsub
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#define LONG_SUBU dsubu
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#define LONG_L ld
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#define LONG_S sd
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#define LONG_SLL dsll
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#define LONG_SLLV dsllv
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#define LONG_SRL dsrl
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#define LONG_SRLV dsrlv
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#define LONG_SRA dsra
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#define LONG_SRAV dsrav
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#define LONG .dword
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#define LONGSIZE 8
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#define LONGMASK 7
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#define LONGLOG 3
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#endif
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/*
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* How to add/sub/load/store/shift pointers.
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*/
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#if (_MIPS_SZPTR == 32)
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#define PTR_ADD add
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#define PTR_ADDU addu
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#define PTR_ADDI addi
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#define PTR_ADDIU addiu
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#define PTR_SUB sub
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#define PTR_SUBU subu
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#define PTR_L lw
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#define PTR_S sw
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#define PTR_LA la
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#define PTR_LI li
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#define PTR_SLL sll
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#define PTR_SLLV sllv
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#define PTR_SRL srl
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#define PTR_SRLV srlv
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#define PTR_SRA sra
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#define PTR_SRAV srav
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#define PTR_SCALESHIFT 2
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#define PTR .word
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#define PTRSIZE 4
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#define PTRLOG 2
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#endif
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#if (_MIPS_SZPTR == 64)
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#define PTR_ADD dadd
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#define PTR_ADDU daddu
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#define PTR_ADDI daddi
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#define PTR_ADDIU daddiu
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#define PTR_SUB dsub
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#define PTR_SUBU dsubu
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#define PTR_L ld
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#define PTR_S sd
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#define PTR_LA dla
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#define PTR_LI dli
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#define PTR_SLL dsll
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#define PTR_SLLV dsllv
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#define PTR_SRL dsrl
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#define PTR_SRLV dsrlv
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#define PTR_SRA dsra
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#define PTR_SRAV dsrav
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#define PTR_SCALESHIFT 3
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#define PTR .dword
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#define PTRSIZE 8
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#define PTRLOG 3
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#endif
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/*
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* Some cp0 registers were extended to 64bit for MIPS III.
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*/
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#if (_MIPS_SIM == _MIPS_SIM_ABI32)
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#define MFC0 mfc0
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#define MTC0 mtc0
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#endif
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#if (_MIPS_SIM == _MIPS_SIM_NABI32) || (_MIPS_SIM == _MIPS_SIM_ABI64)
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#define MFC0 dmfc0
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#define MTC0 dmtc0
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#endif
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#define SSNOP sll zero, zero, 1
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#ifdef CONFIG_SGI_IP28
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/* Inhibit speculative stores to volatile (e.g.DMA) or invalid addresses. */
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#include <asm/cacheops.h>
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#define R10KCBARRIER(addr) cache Cache_Barrier, addr;
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#else
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#define R10KCBARRIER(addr)
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#endif
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#endif /* __ASM_ASM_H */
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