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* Patches by David Müller, 31 Jan 2003:
- minimal setup for CardBus bridges - add EEPROM read/write support in the CS8900 driver - add support for the builtin I2C controller in the Samsung s3c24x0 chips - add support for MPL's VCMA9 (Samsung s3c2410 based) board * Patch by Steven Scholz, 04 Feb 2003: add support for RTC DS1307 * Patch by Reinhard Meyer, 5 Feb 2003: fix PLPRCR/SCCR init sequence on 8xx to allow for changes of EBDF by software * Patch by Vladimir Gurevich, 07 Feb 2003: "API-compatibility patch" for 4xx I2C driver
This commit is contained in:
113
include/asm-arm/arch-xscale/bitfield.h
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113
include/asm-arm/arch-xscale/bitfield.h
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/*
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* FILE bitfield.h
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*
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* Version 1.1
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* Author Copyright (c) Marc A. Viredaz, 1998
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* DEC Western Research Laboratory, Palo Alto, CA
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* Date April 1998 (April 1997)
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* System Advanced RISC Machine (ARM)
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* Language C or ARM Assembly
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* Purpose Definition of macros to operate on bit fields.
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*/
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#ifndef __BITFIELD_H
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#define __BITFIELD_H
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#ifndef __ASSEMBLY__
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#define UData(Data) ((unsigned long) (Data))
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#else
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#define UData(Data) (Data)
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#endif
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/*
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* MACRO: Fld
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*
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* Purpose
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* The macro "Fld" encodes a bit field, given its size and its shift value
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* with respect to bit 0.
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*
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* Note
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* A more intuitive way to encode bit fields would have been to use their
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* mask. However, extracting size and shift value information from a bit
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* field's mask is cumbersome and might break the assembler (255-character
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* line-size limit).
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*
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* Input
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* Size Size of the bit field, in number of bits.
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* Shft Shift value of the bit field with respect to bit 0.
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*
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* Output
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* Fld Encoded bit field.
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*/
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#define Fld(Size, Shft) (((Size) << 16) + (Shft))
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/*
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* MACROS: FSize, FShft, FMsk, FAlnMsk, F1stBit
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*
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* Purpose
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* The macros "FSize", "FShft", "FMsk", "FAlnMsk", and "F1stBit" return
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* the size, shift value, mask, aligned mask, and first bit of a
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* bit field.
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*
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* Input
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* Field Encoded bit field (using the macro "Fld").
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*
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* Output
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* FSize Size of the bit field, in number of bits.
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* FShft Shift value of the bit field with respect to bit 0.
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* FMsk Mask for the bit field.
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* FAlnMsk Mask for the bit field, aligned on bit 0.
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* F1stBit First bit of the bit field.
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*/
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#define FSize(Field) ((Field) >> 16)
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#define FShft(Field) ((Field) & 0x0000FFFF)
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#define FMsk(Field) (((UData (1) << FSize (Field)) - 1) << FShft (Field))
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#define FAlnMsk(Field) ((UData (1) << FSize (Field)) - 1)
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#define F1stBit(Field) (UData (1) << FShft (Field))
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/*
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* MACRO: FInsrt
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*
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* Purpose
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* The macro "FInsrt" inserts a value into a bit field by shifting the
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* former appropriately.
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*
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* Input
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* Value Bit-field value.
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* Field Encoded bit field (using the macro "Fld").
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*
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* Output
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* FInsrt Bit-field value positioned appropriately.
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*/
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#define FInsrt(Value, Field) \
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(UData (Value) << FShft (Field))
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/*
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* MACRO: FExtr
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*
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* Purpose
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* The macro "FExtr" extracts the value of a bit field by masking and
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* shifting it appropriately.
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*
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* Input
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* Data Data containing the bit-field to be extracted.
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* Field Encoded bit field (using the macro "Fld").
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*
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* Output
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* FExtr Bit-field value.
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*/
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#define FExtr(Data, Field) \
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((UData (Data) >> FShft (Field)) & FAlnMsk (Field))
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#endif /* __BITFIELD_H */
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153
include/asm-arm/arch-xscale/hardware.h
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153
include/asm-arm/arch-xscale/hardware.h
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/*
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* linux/include/asm-arm/arch-pxa/hardware.h
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*
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* Author: Nicolas Pitre
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* Created: Jun 15, 2001
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* Copyright: MontaVista Software Inc.
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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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* Note: This file was taken from linux-2.4.19-rmk4-pxa1
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*
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* - 2003/01/20 implementation specifics activated
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* Robert Schwebel <r.schwebel@pengutronix.de>
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*/
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#ifndef __ASM_ARCH_HARDWARE_H
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#define __ASM_ARCH_HARDWARE_H
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#include <linux/config.h>
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#include <asm/mach-types.h>
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/*
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* These are statically mapped PCMCIA IO space for designs using it as a
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* generic IO bus, typically with ISA parts, hardwired IDE interfaces, etc.
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* The actual PCMCIA code is mapping required IO region at run time.
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*/
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#define PCMCIA_IO_0_BASE 0xf6000000
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#define PCMCIA_IO_1_BASE 0xf7000000
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/*
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* We requires absolute addresses.
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*/
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#define PCIO_BASE 0
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/*
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* Workarounds for at least 2 errata so far require this.
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* The mapping is set in mach-pxa/generic.c.
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*/
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#define UNCACHED_PHYS_0 0xff000000
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#define UNCACHED_ADDR UNCACHED_PHYS_0
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/*
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* Intel PXA internal I/O mappings:
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*
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* 0x40000000 - 0x41ffffff <--> 0xf8000000 - 0xf9ffffff
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* 0x44000000 - 0x45ffffff <--> 0xfa000000 - 0xfbffffff
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* 0x48000000 - 0x49ffffff <--> 0xfc000000 - 0xfdffffff
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*/
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/* FIXME: Only this does work for u-boot... find out why... [RS] */
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#define UBOOT_REG_FIX 1
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#ifndef UBOOT_REG_FIX
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#ifndef __ASSEMBLY__
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#define io_p2v(x) ( ((x) | 0xbe000000) ^ (~((x) >> 1) & 0x06000000) )
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#define io_v2p( x ) ( ((x) & 0x41ffffff) ^ ( ((x) & 0x06000000) << 1) )
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/*
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* This __REG() version gives the same results as the one above, except
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* that we are fooling gcc somehow so it generates far better and smaller
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* assembly code for access to contigous registers. It's a shame that gcc
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* doesn't guess this by itself.
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*/
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#include <asm/types.h>
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typedef struct { volatile u32 offset[4096]; } __regbase;
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# define __REGP(x) ((__regbase *)((x)&~4095))->offset[((x)&4095)>>2]
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# define __REG(x) __REGP(io_p2v(x))
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#endif
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/* Let's kick gcc's ass again... */
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# define __REG2(x,y) \
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( __builtin_constant_p(y) ? (__REG((x) + (y))) \
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: (*(volatile u32 *)((u32)&__REG(x) + (y))) )
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# define __PREG(x) (io_v2p((u32)&(x)))
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#else
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# define __REG(x) io_p2v(x)
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# define __PREG(x) io_v2p(x)
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#endif
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#endif /* UBOOT_REG_FIX */
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#ifdef UBOOT_REG_FIX
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# undef io_p2v
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# undef __REG
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# ifndef __ASSEMBLY__
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# define io_p2v(PhAdd) (PhAdd)
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# define __REG(x) (*((volatile u32 *)io_p2v(x)))
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# define __REG2(x,y) (*(volatile u32 *)((u32)&__REG(x) + (y)))
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# else
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# define __REG(x) (x)
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#endif /* UBOOT_REG_FIX */
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#include "pxa-regs.h"
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#ifndef __ASSEMBLY__
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/*
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* GPIO edge detection for IRQs:
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* IRQs are generated on Falling-Edge, Rising-Edge, or both.
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* This must be called *before* the corresponding IRQ is registered.
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* Use this instead of directly setting GRER/GFER.
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*/
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#define GPIO_FALLING_EDGE 1
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#define GPIO_RISING_EDGE 2
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#define GPIO_BOTH_EDGES 3
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extern void set_GPIO_IRQ_edge( int gpio_nr, int edge_mask );
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/*
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* Handy routine to set GPIO alternate functions
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*/
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extern void set_GPIO_mode( int gpio_mode );
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/*
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* return current lclk frequency in units of 10kHz
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*/
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extern unsigned int get_lclk_frequency_10khz(void);
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#endif
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/*
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* Implementation specifics
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*/
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#ifdef CONFIG_ARCH_LUBBOCK
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#include "lubbock.h"
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#endif
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#ifdef CONFIG_ARCH_PXA_IDP
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#include "idp.h"
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#endif
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#ifdef CONFIG_ARCH_PXA_CERF
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#include "cerf.h"
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#endif
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#ifdef CONFIG_ARCH_CSB226
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#include "csb226.h"
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#endif
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#ifdef CONFIG_ARCH_INNOKOM
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#include "innokom.h"
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#endif
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#endif /* _ASM_ARCH_HARDWARE_H */
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3367
include/asm-arm/mach-types.h
Normal file
3367
include/asm-arm/mach-types.h
Normal file
File diff suppressed because it is too large
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