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📄 sonypi.c

📁 linux和2410结合开发 用他可以生成2410所需的zImage文件
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/*  * Sony Programmable I/O Control Device driver for VAIO * * Copyright (C) 2001 Stelian Pop <stelian.pop@fr.alcove.com>, Alc魐e * * Copyright (C) 2001 Michael Ashley <m.ashley@unsw.edu.au> * * Copyright (C) 2001 Junichi Morita <jun1m@mars.dti.ne.jp> * * Copyright (C) 2000 Takaya Kinjo <t-kinjo@tc4.so-net.ne.jp> * * Copyright (C) 2000 Andrew Tridgell <tridge@valinux.com> * * Earlier work by Werner Almesberger, Paul `Rusty' Russell and Paul Mackerras. * * This program is free software; you can redistribute it and/or modify * it under the terms of the GNU General Public License as published by * the Free Software Foundation; either version 2 of the License, or * (at your option) any later version. *  * This program is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the * GNU General Public License for more details. *  * You should have received a copy of the GNU General Public License * along with this program; if not, write to the Free Software * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. * */#include <linux/config.h>#include <linux/module.h>#include <linux/pci.h>#include <linux/sched.h>#include <linux/init.h>#include <linux/miscdevice.h>#include <linux/poll.h>#include <linux/delay.h>#include <asm/uaccess.h>#include <asm/io.h>#include <asm/system.h>#include "sonypi.h"#include <linux/sonypi.h>static struct sonypi_device sonypi_device;static int minor = -1;static int verbose; /* = 0 */static int fnkeyinit; /* = 0 */static int camera; /* = 0 */static int compat; /* = 0 *//* Inits the queue */static inline void sonypi_initq(void) {        sonypi_device.queue.head = sonypi_device.queue.tail = 0;	sonypi_device.queue.len = 0;	sonypi_device.queue.s_lock = (spinlock_t)SPIN_LOCK_UNLOCKED;	init_waitqueue_head(&sonypi_device.queue.proc_list);}/* Pulls an event from the queue */static inline unsigned char sonypi_pullq(void) {        unsigned char result;	unsigned long flags;	spin_lock_irqsave(&sonypi_device.queue.s_lock, flags);	if (!sonypi_device.queue.len) {		spin_unlock_irqrestore(&sonypi_device.queue.s_lock, flags);		return 0;	}	result = sonypi_device.queue.buf[sonypi_device.queue.head];        sonypi_device.queue.head++;	sonypi_device.queue.head &= (SONYPI_BUF_SIZE - 1);	sonypi_device.queue.len--;	spin_unlock_irqrestore(&sonypi_device.queue.s_lock, flags);        return result;}/* Pushes an event into the queue */static inline void sonypi_pushq(unsigned char event) {	unsigned long flags;	spin_lock_irqsave(&sonypi_device.queue.s_lock, flags);	if (sonypi_device.queue.len == SONYPI_BUF_SIZE) {		/* remove the first element */        	sonypi_device.queue.head++;		sonypi_device.queue.head &= (SONYPI_BUF_SIZE - 1);		sonypi_device.queue.len--;	}	sonypi_device.queue.buf[sonypi_device.queue.tail] = event;	sonypi_device.queue.tail++;	sonypi_device.queue.tail &= (SONYPI_BUF_SIZE - 1);	sonypi_device.queue.len++;	kill_fasync(&sonypi_device.queue.fasync, SIGIO, POLL_IN);	wake_up_interruptible(&sonypi_device.queue.proc_list);	spin_unlock_irqrestore(&sonypi_device.queue.s_lock, flags);}/* Tests if the queue is empty */static inline int sonypi_emptyq(void) {        int result;	unsigned long flags;	spin_lock_irqsave(&sonypi_device.queue.s_lock, flags);        result = (sonypi_device.queue.len == 0);	spin_unlock_irqrestore(&sonypi_device.queue.s_lock, flags);        return result;}static void sonypi_ecrset(u8 addr, u8 value) {	wait_on_command(1, inb_p(SONYPI_CST_IOPORT) & 3);	outb_p(0x81, SONYPI_CST_IOPORT);	wait_on_command(0, inb_p(SONYPI_CST_IOPORT) & 2);	outb_p(addr, SONYPI_DATA_IOPORT);	wait_on_command(0, inb_p(SONYPI_CST_IOPORT) & 2);	outb_p(value, SONYPI_DATA_IOPORT);	wait_on_command(0, inb_p(SONYPI_CST_IOPORT) & 2);}static u8 sonypi_ecrget(u8 addr) {	wait_on_command(1, inb_p(SONYPI_CST_IOPORT) & 3);	outb_p(0x80, SONYPI_CST_IOPORT);	wait_on_command(0, inb_p(SONYPI_CST_IOPORT) & 2);	outb_p(addr, SONYPI_DATA_IOPORT);	wait_on_command(0, inb_p(SONYPI_CST_IOPORT) & 2);	return inb_p(SONYPI_DATA_IOPORT);}static u16 sonypi_ecrget16(u8 addr) {	return sonypi_ecrget(addr) | (sonypi_ecrget(addr + 1) << 8);}/* Initializes the device - this comes from the AML code in the ACPI bios */static void __devinit sonypi_type1_srs(void) {	u32 v;	pci_read_config_dword(sonypi_device.dev, SONYPI_G10A, &v);	v = (v & 0xFFFF0000) | ((u32)sonypi_device.ioport1);	pci_write_config_dword(sonypi_device.dev, SONYPI_G10A, v);	pci_read_config_dword(sonypi_device.dev, SONYPI_G10A, &v);	v = (v & 0xFFF0FFFF) | 	    (((u32)sonypi_device.ioport1 ^ sonypi_device.ioport2) << 16);	pci_write_config_dword(sonypi_device.dev, SONYPI_G10A, v);	v = inl(SONYPI_IRQ_PORT);	v &= ~(((u32)0x3) << SONYPI_IRQ_SHIFT);	v |= (((u32)sonypi_device.bits) << SONYPI_IRQ_SHIFT);	outl(v, SONYPI_IRQ_PORT);	pci_read_config_dword(sonypi_device.dev, SONYPI_G10A, &v);	v = (v & 0xFF1FFFFF) | 0x00C00000;	pci_write_config_dword(sonypi_device.dev, SONYPI_G10A, v);}static void __devinit sonypi_type2_srs(void) {	sonypi_ecrset(SONYPI_SHIB, (sonypi_device.ioport1 & 0xFF00) >> 8);	sonypi_ecrset(SONYPI_SLOB,  sonypi_device.ioport1 & 0x00FF);	sonypi_ecrset(SONYPI_SIRQ,  sonypi_device.bits);	udelay(10);}/* Disables the device - this comes from the AML code in the ACPI bios */static void __devexit sonypi_type1_dis(void) {	u32 v;	pci_read_config_dword(sonypi_device.dev, SONYPI_G10A, &v);	v = v & 0xFF3FFFFF;	pci_write_config_dword(sonypi_device.dev, SONYPI_G10A, v);	v = inl(SONYPI_IRQ_PORT);	v |= (0x3 << SONYPI_IRQ_SHIFT);	outl(v, SONYPI_IRQ_PORT);}static void __devexit sonypi_type2_dis(void) {	sonypi_ecrset(SONYPI_SHIB, 0);	sonypi_ecrset(SONYPI_SLOB, 0);	sonypi_ecrset(SONYPI_SIRQ, 0);}static u8 sonypi_call1(u8 dev) {	u8 v1, v2;	wait_on_command(0, inb_p(sonypi_device.ioport2) & 2);	outb(dev, sonypi_device.ioport2);	v1 = inb_p(sonypi_device.ioport2);	v2 = inb_p(sonypi_device.ioport1);	return v2;}static u8 sonypi_call2(u8 dev, u8 fn) {	u8 v1;	wait_on_command(0, inb_p(sonypi_device.ioport2) & 2);	outb(dev, sonypi_device.ioport2);	wait_on_command(0, inb_p(sonypi_device.ioport2) & 2);	outb(fn, sonypi_device.ioport1);	v1 = inb_p(sonypi_device.ioport1);	return v1;}static u8 sonypi_call3(u8 dev, u8 fn, u8 v) {	u8 v1;	wait_on_command(0, inb_p(sonypi_device.ioport2) & 2);	outb(dev, sonypi_device.ioport2);	wait_on_command(0, inb_p(sonypi_device.ioport2) & 2);	outb(fn, sonypi_device.ioport1);	wait_on_command(0, inb_p(sonypi_device.ioport2) & 2);	outb(v, sonypi_device.ioport1);	v1 = inb_p(sonypi_device.ioport1);	return v1;}static u8 sonypi_read(u8 fn) {	u8 v1, v2;	int n = 100;	while (n--) {		v1 = sonypi_call2(0x8f, fn);		v2 = sonypi_call2(0x8f, fn);		if (v1 == v2 && v1 != 0xff)			return v1;	}	return 0xff;}/* Set brightness, hue etc */static void sonypi_set(u8 fn, u8 v) {		wait_on_command(0, sonypi_call3(0x90, fn, v));}/* Tests if the camera is ready */static int sonypi_camera_ready(void) {	u8 v;	v = sonypi_call2(0x8f, SONYPI_CAMERA_STATUS);	return (v != 0xff && (v & SONYPI_CAMERA_STATUS_READY));}/* Turns the camera off */static void sonypi_camera_off(void) {	sonypi_set(SONYPI_CAMERA_PICTURE, SONYPI_CAMERA_MUTE_MASK);	if (!sonypi_device.camera_power)		return;	sonypi_call2(0x91, 0); 	sonypi_device.camera_power = 0;}/* Turns the camera on */static void sonypi_camera_on(void) {	int i, j;	if (sonypi_device.camera_power)		return;	for (j = 5; j > 0; j--) {		while (sonypi_call2(0x91, 0x1) != 0) {			set_current_state(TASK_UNINTERRUPTIBLE);			schedule_timeout(1);		}		sonypi_call1(0x93);		for (i = 400; i > 0; i--) {			if (sonypi_camera_ready())				break;			set_current_state(TASK_UNINTERRUPTIBLE);			schedule_timeout(1);		}		if (i != 0)			break;	}		if (j == 0) {		printk(KERN_WARNING "sonypi: failed to power on camera\n");		return;	}	sonypi_set(0x10, 0x5a);	sonypi_device.camera_power = 1;}/* sets the bluetooth subsystem power state */static void sonypi_setbluetoothpower(u8 state) {	state = (state != 0);	if (sonypi_device.bluetooth_power && state) 		return;	if (!sonypi_device.bluetooth_power && !state) 		return;		sonypi_call2(0x96, state);	sonypi_call1(0x93);	sonypi_device.bluetooth_power = state;}/* Interrupt handler: some event is available */void sonypi_irq(int irq, void *dev_id, struct pt_regs *regs) {	u8 v1, v2, event = 0;	int i;	u8 sonypi_jogger_ev, sonypi_fnkey_ev;	u8 sonypi_capture_ev, sonypi_bluetooth_ev;	if (sonypi_device.model == SONYPI_DEVICE_MODEL_TYPE2) {		sonypi_jogger_ev = SONYPI_TYPE2_JOGGER_EV;		sonypi_fnkey_ev = SONYPI_TYPE2_FNKEY_EV;		sonypi_capture_ev = SONYPI_TYPE2_CAPTURE_EV;		sonypi_bluetooth_ev = SONYPI_TYPE2_BLUETOOTH_EV;	}	else {		sonypi_jogger_ev = SONYPI_TYPE1_JOGGER_EV;		sonypi_fnkey_ev = SONYPI_TYPE1_FNKEY_EV;		sonypi_capture_ev = SONYPI_TYPE1_CAPTURE_EV;		sonypi_bluetooth_ev = SONYPI_TYPE1_BLUETOOTH_EV;	}	v1 = inb_p(sonypi_device.ioport1);	v2 = inb_p(sonypi_device.ioport2);	if ((v2 & SONYPI_TYPE1_PKEY_EV) == SONYPI_TYPE1_PKEY_EV) {		for (i = 0; sonypi_pkeyev[i].event; i++)			if (sonypi_pkeyev[i].data == v1) {				event = sonypi_pkeyev[i].event;				goto found;			}	}	if ((v2 & sonypi_jogger_ev) == sonypi_jogger_ev) {		for (i = 0; sonypi_joggerev[i].event; i++)			if (sonypi_joggerev[i].data == v1) {				event = sonypi_joggerev[i].event;				goto found;			}	}	if ((v2 & sonypi_capture_ev) == sonypi_capture_ev) {		for (i = 0; sonypi_captureev[i].event; i++)			if (sonypi_captureev[i].data == v1) {				event = sonypi_captureev[i].event;				goto found;			}	}	if ((v2 & sonypi_fnkey_ev) == sonypi_fnkey_ev) {		for (i = 0; sonypi_fnkeyev[i].event; i++)			if (sonypi_fnkeyev[i].data == v1) {				event = sonypi_fnkeyev[i].event;				goto found;			}	}	if ((v2 & sonypi_bluetooth_ev) == sonypi_bluetooth_ev) {		for (i = 0; sonypi_blueev[i].event; i++)			if (sonypi_blueev[i].data == v1) {				event = sonypi_blueev[i].event;				goto found;			}	}	if ((v2 & SONYPI_BACK_EV) == SONYPI_BACK_EV) {		for (i = 0; sonypi_backev[i].event; i++)			if (sonypi_backev[i].data == v1) {				event = sonypi_backev[i].event;				goto found;			}	}	if ((v2 & SONYPI_LID_EV) == SONYPI_LID_EV) {		for (i = 0; sonypi_lidev[i].event; i++)			if (sonypi_lidev[i].data == v1) {				event = sonypi_lidev[i].event;				goto found;			}	}	if (verbose)		printk(KERN_WARNING 		       "sonypi: unknown event port1=0x%02x,port2=0x%02x\n",v1,v2);	return;found:	sonypi_pushq(event);}/* External camera command (exported to the motion eye v4l driver) */u8 sonypi_camera_command(int command, u8 value) {	u8 ret = 0;	if (!camera)		return 0;	down(&sonypi_device.lock);	switch(command) {		case SONYPI_COMMAND_GETCAMERA:			ret = sonypi_camera_ready();			break;		case SONYPI_COMMAND_SETCAMERA:			if (value)				sonypi_camera_on();			else				sonypi_camera_off();			break;		case SONYPI_COMMAND_GETCAMERABRIGHTNESS:			ret = sonypi_read(SONYPI_CAMERA_BRIGHTNESS);			break;		case SONYPI_COMMAND_SETCAMERABRIGHTNESS:			sonypi_set(SONYPI_CAMERA_BRIGHTNESS, value);

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