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@@ -0,0 +1,97 @@
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/*
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* linux/include/asm-arm/assembler.h
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*
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* Copyright (C) 1996-2000 Russell King
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*
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* This file contains arm architecture specific defines
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* for the different processors.
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*
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* Do not include any C declarations in this file - it is included by
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* assembler source.
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*/
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#ifndef __ASSEMBLY__
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#error "Only include this from assembly code"
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#endif
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#include <asm/ptrace.h>
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#define pull lsl
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#define push lsr
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#define get_byte_0 lsr #24
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#define get_byte_1 lsr #16
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#define get_byte_2 lsr #8
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#define get_byte_3 lsl #0
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#define put_byte_0 lsl #24
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#define put_byte_1 lsl #16
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#define put_byte_2 lsl #8
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#define put_byte_3 lsl #0
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#define PLD(code...)
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#define MODE_USR USR_MODE
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#define MODE_FIQ FIQ_MODE
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#define MODE_IRQ IRQ_MODE
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#define MODE_SVC SVC_MODE
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#define DEFAULT_FIQ MODE_FIQ
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/*
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* LOADREGS - ldm with PC in register list (eg, ldmfd sp!, {pc})
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*/
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#ifdef __STDC__
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#define LOADREGS(cond, base, reglist...)\
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ldm##cond base,reglist
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#else
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#define LOADREGS(cond, base, reglist...)\
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ldm/**/cond base,reglist
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#endif
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/*
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* Build a return instruction for this processor type.
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*/
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#define RETINSTR(instr, regs...)\
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instr regs
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/*
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* Enable and disable interrupts
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*/
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.macro disable_irq
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msr cpsr_c, #PSR_I_BIT | SVC_MODE
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.endm
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.macro enable_irq
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msr cpsr_c, #SVC_MODE
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.endm
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/*
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* Save the current IRQ state and disable IRQs. Note that this macro
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* assumes FIQs are enabled, and that the processor is in SVC mode.
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*/
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.macro save_and_disable_irqs, oldcpsr
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mrs \oldcpsr, cpsr
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disable_irq
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.endm
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/*
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* Restore interrupt state previously stored in a register. We don't
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* guarantee that this will preserve the flags.
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*/
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.macro restore_irqs, oldcpsr
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msr cpsr_c, \oldcpsr
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.endm
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/*
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* These two are used to save LR/restore PC over a user-based access.
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* The old 26-bit architecture requires that we do. On 32-bit
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* architecture, we can safely ignore this requirement.
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*/
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.macro save_lr
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.endm
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.macro restore_pc
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mov pc, lr
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.endm
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@@ -0,0 +1,106 @@
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/*
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* linux/include/asm-arm/atomic.h
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*
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* Copyright (C) 1996 Russell King.
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* Copyright (C) 2002 Deep Blue Solutions Ltd.
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*
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License version 2 as
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* published by the Free Software Foundation.
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*/
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#ifndef __ASM_ARM_ATOMIC_H
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#define __ASM_ARM_ATOMIC_H
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typedef struct { volatile int counter; } atomic_t;
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#define ATOMIC_INIT(i) { (i) }
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#define atomic_read(v) ((v)->counter)
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#include <asm/system.h>
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#include <asm/compiler.h>
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#define atomic_set(v,i) (((v)->counter) = (i))
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static inline int atomic_add_return(int i, atomic_t *v)
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{
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unsigned long flags;
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int val;
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local_irq_save(flags);
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val = v->counter;
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v->counter = val += i;
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local_irq_restore(flags);
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return val;
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}
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static inline int atomic_sub_return(int i, atomic_t *v)
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{
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unsigned long flags;
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int val;
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local_irq_save(flags);
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val = v->counter;
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v->counter = val -= i;
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local_irq_restore(flags);
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return val;
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}
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static inline int atomic_cmpxchg(atomic_t *v, int old, int new)
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{
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int ret;
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unsigned long flags;
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local_irq_save(flags);
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ret = v->counter;
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if (likely(ret == old))
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v->counter = new;
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local_irq_restore(flags);
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return ret;
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}
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static inline void atomic_clear_mask(unsigned long mask, unsigned long *addr)
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{
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unsigned long flags;
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local_irq_save(flags);
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*addr &= ~mask;
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local_irq_restore(flags);
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}
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#define atomic_xchg(v, new) (xchg(&((v)->counter), new))
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static inline int atomic_add_unless(atomic_t *v, int a, int u)
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{
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int c, old;
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c = atomic_read(v);
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while (c != u && (old = atomic_cmpxchg((v), c, c + a)) != c)
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c = old;
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return c != u;
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}
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#define atomic_inc_not_zero(v) atomic_add_unless((v), 1, 0)
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#define atomic_add(i, v) (void) atomic_add_return(i, v)
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#define atomic_inc(v) (void) atomic_add_return(1, v)
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#define atomic_sub(i, v) (void) atomic_sub_return(i, v)
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#define atomic_dec(v) (void) atomic_sub_return(1, v)
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#define atomic_inc_and_test(v) (atomic_add_return(1, v) == 0)
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#define atomic_dec_and_test(v) (atomic_sub_return(1, v) == 0)
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#define atomic_inc_return(v) (atomic_add_return(1, v))
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#define atomic_dec_return(v) (atomic_sub_return(1, v))
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#define atomic_sub_and_test(i, v) (atomic_sub_return(i, v) == 0)
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#define atomic_add_negative(i,v) (atomic_add_return(i, v) < 0)
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/* Atomic operations are already serializing on ARM */
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#define smp_mb__before_atomic_dec() barrier()
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#define smp_mb__after_atomic_dec() barrier()
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#define smp_mb__before_atomic_inc() barrier()
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#define smp_mb__after_atomic_inc() barrier()
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#endif
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@@ -0,0 +1,225 @@
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/*
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* Copyright 1995, Russell King.
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* Various bits and pieces copyrights include:
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* Linus Torvalds (test_bit).
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* Big endian support: Copyright 2001, Nicolas Pitre
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* reworked by rmk.
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*
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* bit 0 is the LSB of an "unsigned long" quantity.
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*
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* Please note that the code in this file should never be included
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* from user space. Many of these are not implemented in assembler
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* since they would be too costly. Also, they require privileged
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* instructions (which are not available from user mode) to ensure
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* that they are atomic.
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*/
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#ifndef __ASM_ARM_BITOPS_H
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#define __ASM_ARM_BITOPS_H
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#include <asm/system.h>
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#define smp_mb__before_clear_bit() mb()
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#define smp_mb__after_clear_bit() mb()
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/*
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* These functions are the basis of our bit ops.
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*
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* First, the atomic bitops. These use native endian.
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*/
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static inline void ____atomic_set_bit(unsigned int bit, volatile unsigned long *p)
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{
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unsigned long flags;
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unsigned long mask = 1UL << (bit & 31);
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p += bit >> 5;
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local_irq_save(flags);
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*p |= mask;
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local_irq_restore(flags);
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}
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static inline void ____atomic_clear_bit(unsigned int bit, volatile unsigned long *p)
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{
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unsigned long flags;
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unsigned long mask = 1UL << (bit & 31);
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p += bit >> 5;
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local_irq_save(flags);
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*p &= ~mask;
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local_irq_restore(flags);
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}
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static inline void ____atomic_change_bit(unsigned int bit, volatile unsigned long *p)
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{
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unsigned long flags;
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unsigned long mask = 1UL << (bit & 31);
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p += bit >> 5;
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local_irq_save(flags);
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*p ^= mask;
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local_irq_restore(flags);
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}
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static inline int
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____atomic_test_and_set_bit(unsigned int bit, volatile unsigned long *p)
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{
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unsigned long flags;
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unsigned int res;
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unsigned long mask = 1UL << (bit & 31);
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p += bit >> 5;
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local_irq_save(flags);
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res = *p;
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*p = res | mask;
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local_irq_restore(flags);
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return res & mask;
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}
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static inline int
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____atomic_test_and_clear_bit(unsigned int bit, volatile unsigned long *p)
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{
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unsigned long flags;
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unsigned int res;
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unsigned long mask = 1UL << (bit & 31);
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p += bit >> 5;
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local_irq_save(flags);
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res = *p;
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*p = res & ~mask;
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local_irq_restore(flags);
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return res & mask;
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}
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static inline int
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____atomic_test_and_change_bit(unsigned int bit, volatile unsigned long *p)
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{
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unsigned long flags;
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unsigned int res;
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unsigned long mask = 1UL << (bit & 31);
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p += bit >> 5;
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local_irq_save(flags);
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res = *p;
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*p = res ^ mask;
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local_irq_restore(flags);
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return res & mask;
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}
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//#include <asm-generic/bitops/non-atomic.h>
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/*
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* A note about Endian-ness.
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* -------------------------
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*
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* When the ARM is put into big endian mode via CR15, the processor
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* merely swaps the order of bytes within words, thus:
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*
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* ------------ physical data bus bits -----------
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* D31 ... D24 D23 ... D16 D15 ... D8 D7 ... D0
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* little byte 3 byte 2 byte 1 byte 0
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* big byte 0 byte 1 byte 2 byte 3
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*
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* This means that reading a 32-bit word at address 0 returns the same
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* value irrespective of the endian mode bit.
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*
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* Peripheral devices should be connected with the data bus reversed in
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* "Big Endian" mode. ARM Application Note 61 is applicable, and is
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* available from http://www.arm.com/.
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*
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* The following assumes that the data bus connectivity for big endian
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* mode has been followed.
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*
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* Note that bit 0 is defined to be 32-bit word bit 0, not byte 0 bit 0.
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*/
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/*
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* Little endian assembly bitops. nr = 0 -> byte 0 bit 0.
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*/
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extern void _set_bit_le(int nr, volatile unsigned long * p);
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extern void _clear_bit_le(int nr, volatile unsigned long * p);
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extern void _change_bit_le(int nr, volatile unsigned long * p);
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extern int _test_and_set_bit_le(int nr, volatile unsigned long * p);
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extern int _test_and_clear_bit_le(int nr, volatile unsigned long * p);
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extern int _test_and_change_bit_le(int nr, volatile unsigned long * p);
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extern int _find_first_zero_bit_le(const void * p, unsigned size);
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extern int _find_next_zero_bit_le(const void * p, int size, int offset);
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extern int _find_first_bit_le(const unsigned long *p, unsigned size);
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extern int _find_next_bit_le(const unsigned long *p, int size, int offset);
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/*
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* Big endian assembly bitops. nr = 0 -> byte 3 bit 0.
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*/
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extern void _set_bit_be(int nr, volatile unsigned long * p);
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extern void _clear_bit_be(int nr, volatile unsigned long * p);
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extern void _change_bit_be(int nr, volatile unsigned long * p);
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extern int _test_and_set_bit_be(int nr, volatile unsigned long * p);
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extern int _test_and_clear_bit_be(int nr, volatile unsigned long * p);
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extern int _test_and_change_bit_be(int nr, volatile unsigned long * p);
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extern int _find_first_zero_bit_be(const void * p, unsigned size);
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extern int _find_next_zero_bit_be(const void * p, int size, int offset);
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extern int _find_first_bit_be(const unsigned long *p, unsigned size);
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extern int _find_next_bit_be(const unsigned long *p, int size, int offset);
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/*
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* The __* form of bitops are non-atomic and may be reordered.
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*/
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#define ATOMIC_BITOP_LE(name,nr,p) \
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(__builtin_constant_p(nr) ? \
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____atomic_##name(nr, p) : \
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_##name##_le(nr,p))
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#define ATOMIC_BITOP_BE(name,nr,p) \
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(__builtin_constant_p(nr) ? \
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____atomic_##name(nr, p) : \
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_##name##_be(nr,p))
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||||
|
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#define NONATOMIC_BITOP(name,nr,p) \
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(____nonatomic_##name(nr, p))
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|
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/*
|
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* These are the little endian, atomic definitions.
|
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*/
|
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#define set_bit(nr,p) ATOMIC_BITOP_LE(set_bit,nr,p)
|
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#define clear_bit(nr,p) ATOMIC_BITOP_LE(clear_bit,nr,p)
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#define change_bit(nr,p) ATOMIC_BITOP_LE(change_bit,nr,p)
|
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#define test_and_set_bit(nr,p) ATOMIC_BITOP_LE(test_and_set_bit,nr,p)
|
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#define test_and_clear_bit(nr,p) ATOMIC_BITOP_LE(test_and_clear_bit,nr,p)
|
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#define test_and_change_bit(nr,p) ATOMIC_BITOP_LE(test_and_change_bit,nr,p)
|
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#define find_first_zero_bit(p,sz) _find_first_zero_bit_le(p,sz)
|
||||
#define find_next_zero_bit(p,sz,off) _find_next_zero_bit_le(p,sz,off)
|
||||
#define find_first_bit(p,sz) _find_first_bit_le(p,sz)
|
||||
#define find_next_bit(p,sz,off) _find_next_bit_le(p,sz,off)
|
||||
|
||||
#define WORD_BITOFF_TO_LE(x) ((x))
|
||||
|
||||
#if 0
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||||
#include <asm-generic/bitops/ffz.h>
|
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#include <asm-generic/bitops/__ffs.h>
|
||||
#include <asm-generic/bitops/fls.h>
|
||||
#include <asm-generic/bitops/ffs.h>
|
||||
|
||||
#include <asm-generic/bitops/fls64.h>
|
||||
|
||||
#include <asm-generic/bitops/sched.h>
|
||||
#include <asm-generic/bitops/hweight.h>
|
||||
#endif
|
||||
|
||||
#define BITS_PER_LONG 32
|
||||
#define BITOP_MASK(nr) (1UL << ((nr) % BITS_PER_LONG))
|
||||
#define BITOP_WORD(nr) ((nr) / BITS_PER_LONG)
|
||||
|
||||
static inline int test_bit(int nr, const volatile unsigned long *addr)
|
||||
{
|
||||
return 1UL & (addr[BITOP_WORD(nr)] >> (nr & (BITS_PER_LONG-1)));
|
||||
}
|
||||
|
||||
#endif /* _ARM_BITOPS_H */
|
||||
@@ -0,0 +1,7 @@
|
||||
#ifndef _ASM_COMPILER_H
|
||||
#define _ASM_COMPILER_H
|
||||
|
||||
#define likely(x) __builtin_expect(!!(x), 1)
|
||||
#define unlikely(x) __builtin_expect(!!(x), 0)
|
||||
|
||||
#endif
|
||||
@@ -0,0 +1,54 @@
|
||||
#ifndef _LINUX_CTYPE_H
|
||||
#define _LINUX_CTYPE_H
|
||||
|
||||
/*
|
||||
* NOTE! This ctype does not handle EOF like the standard C
|
||||
* library is required to.
|
||||
*/
|
||||
|
||||
#define _U 0x01 /* upper */
|
||||
#define _L 0x02 /* lower */
|
||||
#define _D 0x04 /* digit */
|
||||
#define _C 0x08 /* cntrl */
|
||||
#define _P 0x10 /* punct */
|
||||
#define _S 0x20 /* white space (space/lf/tab) */
|
||||
#define _X 0x40 /* hex digit */
|
||||
#define _SP 0x80 /* hard space (0x20) */
|
||||
|
||||
extern unsigned char _ctype[];
|
||||
|
||||
#define __ismask(x) (_ctype[(int)(unsigned char)(x)])
|
||||
|
||||
#define isalnum(c) ((__ismask(c)&(_U|_L|_D)) != 0)
|
||||
#define isalpha(c) ((__ismask(c)&(_U|_L)) != 0)
|
||||
#define iscntrl(c) ((__ismask(c)&(_C)) != 0)
|
||||
#define isdigit(c) ((__ismask(c)&(_D)) != 0)
|
||||
#define isgraph(c) ((__ismask(c)&(_P|_U|_L|_D)) != 0)
|
||||
#define islower(c) ((__ismask(c)&(_L)) != 0)
|
||||
#define isprint(c) ((__ismask(c)&(_P|_U|_L|_D|_SP)) != 0)
|
||||
#define ispunct(c) ((__ismask(c)&(_P)) != 0)
|
||||
#define isspace(c) ((__ismask(c)&(_S)) != 0)
|
||||
#define isupper(c) ((__ismask(c)&(_U)) != 0)
|
||||
#define isxdigit(c) ((__ismask(c)&(_D|_X)) != 0)
|
||||
|
||||
#define isascii(c) (((unsigned char)(c))<=0x7f)
|
||||
#define toascii(c) (((unsigned char)(c))&0x7f)
|
||||
|
||||
static inline unsigned char __tolower(unsigned char c)
|
||||
{
|
||||
if (isupper(c))
|
||||
c -= 'A'-'a';
|
||||
return c;
|
||||
}
|
||||
|
||||
static inline unsigned char __toupper(unsigned char c)
|
||||
{
|
||||
if (islower(c))
|
||||
c -= 'a'-'A';
|
||||
return c;
|
||||
}
|
||||
|
||||
#define tolower(c) __tolower(c)
|
||||
#define toupper(c) __toupper(c)
|
||||
|
||||
#endif
|
||||
@@ -0,0 +1,48 @@
|
||||
#ifndef __ASM_ARM_DIV64
|
||||
#define __ASM_ARM_DIV64
|
||||
|
||||
#include <asm/system.h>
|
||||
|
||||
/*
|
||||
* The semantics of do_div() are:
|
||||
*
|
||||
* uint32_t do_div(uint64_t *n, uint32_t base)
|
||||
* {
|
||||
* uint32_t remainder = *n % base;
|
||||
* *n = *n / base;
|
||||
* return remainder;
|
||||
* }
|
||||
*
|
||||
* In other words, a 64-bit dividend with a 32-bit divisor producing
|
||||
* a 64-bit result and a 32-bit remainder. To accomplish this optimally
|
||||
* we call a special __do_div64 helper with completely non standard
|
||||
* calling convention for arguments and results (beware).
|
||||
*/
|
||||
|
||||
#ifdef __ARMEB__
|
||||
#define __xh "r0"
|
||||
#define __xl "r1"
|
||||
#else
|
||||
#define __xl "r0"
|
||||
#define __xh "r1"
|
||||
#endif
|
||||
|
||||
#define do_div(n,base) \
|
||||
({ \
|
||||
register unsigned int __base asm("r4") = base; \
|
||||
register unsigned long long __n asm("r0") = n; \
|
||||
register unsigned long long __res asm("r2"); \
|
||||
register unsigned int __rem asm(__xh); \
|
||||
asm( __asmeq("%0", __xh) \
|
||||
__asmeq("%1", "r2") \
|
||||
__asmeq("%2", "r0") \
|
||||
__asmeq("%3", "r4") \
|
||||
"bl __do_div64" \
|
||||
: "=r" (__rem), "=r" (__res) \
|
||||
: "r" (__n), "r" (__base) \
|
||||
: "ip", "lr", "cc"); \
|
||||
n = __res; \
|
||||
__rem; \
|
||||
})
|
||||
|
||||
#endif
|
||||
@@ -0,0 +1,18 @@
|
||||
#ifndef __ASM_LINKAGE_H
|
||||
#define __ASM_LINKAGE_H
|
||||
|
||||
/* asm-arm/linkage.h */
|
||||
|
||||
#define __ALIGN .align 0
|
||||
#define __ALIGN_STR ".align 0"
|
||||
|
||||
/* linux/linkage.h */
|
||||
|
||||
#define ALIGN __ALIGN
|
||||
|
||||
#define ENTRY(name) \
|
||||
.globl name; \
|
||||
ALIGN; \
|
||||
name:
|
||||
|
||||
#endif
|
||||
@@ -0,0 +1,128 @@
|
||||
/*
|
||||
* linux/include/asm-arm/ptrace.h
|
||||
*
|
||||
* Copyright (C) 1996-2003 Russell King
|
||||
*
|
||||
* This program is free software; you can redistribute it and/or modify
|
||||
* it under the terms of the GNU General Public License version 2 as
|
||||
* published by the Free Software Foundation.
|
||||
*/
|
||||
#ifndef __ASM_ARM_PTRACE_H
|
||||
#define __ASM_ARM_PTRACE_H
|
||||
|
||||
/*
|
||||
* PSR bits
|
||||
*/
|
||||
#define USR26_MODE 0x00000000
|
||||
#define FIQ26_MODE 0x00000001
|
||||
#define IRQ26_MODE 0x00000002
|
||||
#define SVC26_MODE 0x00000003
|
||||
#define USR_MODE 0x00000010
|
||||
#define FIQ_MODE 0x00000011
|
||||
#define IRQ_MODE 0x00000012
|
||||
#define SVC_MODE 0x00000013
|
||||
#define ABT_MODE 0x00000017
|
||||
#define UND_MODE 0x0000001b
|
||||
#define SYSTEM_MODE 0x0000001f
|
||||
#define MODE32_BIT 0x00000010
|
||||
#define MODE_MASK 0x0000001f
|
||||
#define PSR_T_BIT 0x00000020
|
||||
#define PSR_F_BIT 0x00000040
|
||||
#define PSR_I_BIT 0x00000080
|
||||
#define PSR_J_BIT 0x01000000
|
||||
#define PSR_Q_BIT 0x08000000
|
||||
#define PSR_V_BIT 0x10000000
|
||||
#define PSR_C_BIT 0x20000000
|
||||
#define PSR_Z_BIT 0x40000000
|
||||
#define PSR_N_BIT 0x80000000
|
||||
#define PCMASK 0
|
||||
|
||||
/*
|
||||
* Groups of PSR bits
|
||||
*/
|
||||
#define PSR_f 0xff000000 /* Flags */
|
||||
#define PSR_s 0x00ff0000 /* Status */
|
||||
#define PSR_x 0x0000ff00 /* Extension */
|
||||
#define PSR_c 0x000000ff /* Control */
|
||||
|
||||
#ifndef __ASSEMBLY__
|
||||
|
||||
/*
|
||||
* This struct defines the way the registers are stored on the
|
||||
* stack during a system call. Note that sizeof(struct pt_regs)
|
||||
* has to be a multiple of 8.
|
||||
*/
|
||||
struct pt_regs {
|
||||
long uregs[18];
|
||||
};
|
||||
|
||||
#define ARM_cpsr uregs[16]
|
||||
#define ARM_pc uregs[15]
|
||||
#define ARM_lr uregs[14]
|
||||
#define ARM_sp uregs[13]
|
||||
#define ARM_ip uregs[12]
|
||||
#define ARM_fp uregs[11]
|
||||
#define ARM_r10 uregs[10]
|
||||
#define ARM_r9 uregs[9]
|
||||
#define ARM_r8 uregs[8]
|
||||
#define ARM_r7 uregs[7]
|
||||
#define ARM_r6 uregs[6]
|
||||
#define ARM_r5 uregs[5]
|
||||
#define ARM_r4 uregs[4]
|
||||
#define ARM_r3 uregs[3]
|
||||
#define ARM_r2 uregs[2]
|
||||
#define ARM_r1 uregs[1]
|
||||
#define ARM_r0 uregs[0]
|
||||
#define ARM_ORIG_r0 uregs[17]
|
||||
|
||||
#define user_mode(regs) \
|
||||
(((regs)->ARM_cpsr & 0xf) == 0)
|
||||
|
||||
#ifdef CONFIG_ARM_THUMB
|
||||
#define thumb_mode(regs) \
|
||||
(((regs)->ARM_cpsr & PSR_T_BIT))
|
||||
#else
|
||||
#define thumb_mode(regs) (0)
|
||||
#endif
|
||||
|
||||
#define processor_mode(regs) \
|
||||
((regs)->ARM_cpsr & MODE_MASK)
|
||||
|
||||
#define interrupts_enabled(regs) \
|
||||
(!((regs)->ARM_cpsr & PSR_I_BIT))
|
||||
|
||||
#define fast_interrupts_enabled(regs) \
|
||||
(!((regs)->ARM_cpsr & PSR_F_BIT))
|
||||
|
||||
#define condition_codes(regs) \
|
||||
((regs)->ARM_cpsr & (PSR_V_BIT|PSR_C_BIT|PSR_Z_BIT|PSR_N_BIT))
|
||||
|
||||
/* Are the current registers suitable for user mode?
|
||||
* (used to maintain security in signal handlers)
|
||||
*/
|
||||
static inline int valid_user_regs(struct pt_regs *regs)
|
||||
{
|
||||
if (user_mode(regs) &&
|
||||
(regs->ARM_cpsr & (PSR_F_BIT|PSR_I_BIT)) == 0)
|
||||
return 1;
|
||||
|
||||
/*
|
||||
* Force CPSR to something logical...
|
||||
*/
|
||||
regs->ARM_cpsr &= PSR_f | PSR_s | PSR_x | PSR_T_BIT | MODE32_BIT;
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
#define pc_pointer(v) \
|
||||
((v) & ~PCMASK)
|
||||
|
||||
#define instruction_pointer(regs) \
|
||||
(pc_pointer((regs)->ARM_pc))
|
||||
|
||||
#define profile_pc(regs) instruction_pointer(regs)
|
||||
|
||||
#endif /* __ASSEMBLY__ */
|
||||
|
||||
#endif
|
||||
|
||||
@@ -0,0 +1,109 @@
|
||||
#ifndef __ASM_ARM_SYSTEM_H
|
||||
#define __ASM_ARM_SYSTEM_H
|
||||
|
||||
/* Generic ARM7TDMI (ARMv4T) synchronisation primitives, mostly
|
||||
* taken from Linux kernel source, licensed under GPL */
|
||||
|
||||
#define local_irq_save(x) \
|
||||
({ \
|
||||
unsigned long temp; \
|
||||
(void) (&temp == &x); \
|
||||
__asm__ __volatile__( \
|
||||
"mrs %0, cpsr @ local_irq_save\n" \
|
||||
" orr %1, %0, #128\n" \
|
||||
" msr cpsr_c, %1" \
|
||||
: "=r" (x), "=r" (temp) \
|
||||
: \
|
||||
: "memory", "cc"); \
|
||||
})
|
||||
|
||||
/*
|
||||
* Enable IRQs
|
||||
*/
|
||||
#define local_irq_enable() \
|
||||
({ \
|
||||
unsigned long temp; \
|
||||
__asm__ __volatile__( \
|
||||
"mrs %0, cpsr @ local_irq_enable\n" \
|
||||
" bic %0, %0, #128\n" \
|
||||
" msr cpsr_c, %0" \
|
||||
: "=r" (temp) \
|
||||
: \
|
||||
: "memory", "cc"); \
|
||||
})
|
||||
|
||||
/*
|
||||
* Disable IRQs
|
||||
*/
|
||||
#define local_irq_disable() \
|
||||
({ \
|
||||
unsigned long temp; \
|
||||
__asm__ __volatile__( \
|
||||
"mrs %0, cpsr @ local_irq_disable\n" \
|
||||
" orr %0, %0, #128\n" \
|
||||
" msr cpsr_c, %0" \
|
||||
: "=r" (temp) \
|
||||
: \
|
||||
: "memory", "cc"); \
|
||||
})
|
||||
|
||||
/*
|
||||
* Enable FIQs
|
||||
*/
|
||||
#define local_fiq_enable() \
|
||||
({ \
|
||||
unsigned long temp; \
|
||||
__asm__ __volatile__( \
|
||||
"mrs %0, cpsr @ stf\n" \
|
||||
" bic %0, %0, #64\n" \
|
||||
" msr cpsr_c, %0" \
|
||||
: "=r" (temp) \
|
||||
: \
|
||||
: "memory", "cc"); \
|
||||
})
|
||||
|
||||
/*
|
||||
* Disable FIQs
|
||||
*/
|
||||
#define local_fiq_disable() \
|
||||
({ \
|
||||
unsigned long temp; \
|
||||
__asm__ __volatile__( \
|
||||
"mrs %0, cpsr @ clf\n" \
|
||||
" orr %0, %0, #64\n" \
|
||||
" msr cpsr_c, %0" \
|
||||
: "=r" (temp) \
|
||||
: \
|
||||
: "memory", "cc"); \
|
||||
})
|
||||
|
||||
/*
|
||||
* Save the current interrupt enable state.
|
||||
*/
|
||||
#define local_save_flags(x) \
|
||||
({ \
|
||||
__asm__ __volatile__( \
|
||||
"mrs %0, cpsr @ local_save_flags" \
|
||||
: "=r" (x) : : "memory", "cc"); \
|
||||
})
|
||||
|
||||
/*
|
||||
* restore saved IRQ & FIQ state
|
||||
*/
|
||||
#define local_irq_restore(x) \
|
||||
__asm__ __volatile__( \
|
||||
"msr cpsr_c, %0 @ local_irq_restore\n" \
|
||||
: \
|
||||
: "r" (x) \
|
||||
: "memory", "cc")
|
||||
|
||||
#define irqs_disabled() \
|
||||
({ \
|
||||
unsigned long flags; \
|
||||
local_save_flags(flags); \
|
||||
(int)(flags & PSR_I_BIT); \
|
||||
})
|
||||
|
||||
#define __asmeq(x, y) ".ifnc " x "," y " ; .err ; .endif\n\t"
|
||||
|
||||
#endif
|
||||
Reference in New Issue
Block a user