thermal.c 36.5 KB
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/*
 *  acpi_thermal.c - ACPI Thermal Zone Driver ($Revision: 41 $)
 *
 *  Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
 *  Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
 *
 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
 *
 *  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.,
 *  59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
 *
 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
 *
 *  This driver fully implements the ACPI thermal policy as described in the
 *  ACPI 2.0 Specification.
 *
 *  TBD: 1. Implement passive cooling hysteresis.
 *       2. Enhance passive cooling (CPU) states/limit interface to support
 *          concepts of 'multiple limiters', upper/lower limits, etc.
 *
 */

#include <linux/kernel.h>
#include <linux/module.h>
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#include <linux/dmi.h>
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#include <linux/init.h>
#include <linux/types.h>
#include <linux/proc_fs.h>
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#include <linux/timer.h>
#include <linux/jiffies.h>
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#include <linux/kmod.h>
#include <linux/seq_file.h>
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#include <linux/reboot.h>
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#include <asm/uaccess.h>

#include <acpi/acpi_bus.h>
#include <acpi/acpi_drivers.h>

#define ACPI_THERMAL_COMPONENT		0x04000000
#define ACPI_THERMAL_CLASS		"thermal_zone"
#define ACPI_THERMAL_DEVICE_NAME	"Thermal Zone"
#define ACPI_THERMAL_FILE_STATE		"state"
#define ACPI_THERMAL_FILE_TEMPERATURE	"temperature"
#define ACPI_THERMAL_FILE_TRIP_POINTS	"trip_points"
#define ACPI_THERMAL_FILE_COOLING_MODE	"cooling_mode"
#define ACPI_THERMAL_FILE_POLLING_FREQ	"polling_frequency"
#define ACPI_THERMAL_NOTIFY_TEMPERATURE	0x80
#define ACPI_THERMAL_NOTIFY_THRESHOLDS	0x81
#define ACPI_THERMAL_NOTIFY_DEVICES	0x82
#define ACPI_THERMAL_NOTIFY_CRITICAL	0xF0
#define ACPI_THERMAL_NOTIFY_HOT		0xF1
#define ACPI_THERMAL_MODE_ACTIVE	0x00

#define ACPI_THERMAL_MAX_ACTIVE	10
#define ACPI_THERMAL_MAX_LIMIT_STR_LEN 65

#define KELVIN_TO_CELSIUS(t)    (long)(((long)t-2732>=0) ? ((long)t-2732+5)/10 : ((long)t-2732-5)/10)
#define CELSIUS_TO_KELVIN(t)	((t+273)*10)

#define _COMPONENT		ACPI_THERMAL_COMPONENT
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ACPI_MODULE_NAME("thermal");
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MODULE_AUTHOR("Paul Diefenbaugh");
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MODULE_DESCRIPTION("ACPI Thermal Zone Driver");
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MODULE_LICENSE("GPL");

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static int act;
module_param(act, int, 0644);
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MODULE_PARM_DESC(act, "Disable or override all lowest active trip points.");
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static int crt;
module_param(crt, int, 0644);
MODULE_PARM_DESC(crt, "Disable or lower all critical trip points.");

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static int tzp;
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module_param(tzp, int, 0444);
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MODULE_PARM_DESC(tzp, "Thermal zone polling frequency, in 1/10 seconds.");
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static int nocrt;
module_param(nocrt, int, 0);
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MODULE_PARM_DESC(nocrt, "Set to take no action upon ACPI thermal zone critical trips points.");
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static int off;
module_param(off, int, 0);
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MODULE_PARM_DESC(off, "Set to disable ACPI thermal support.");
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static int psv;
module_param(psv, int, 0644);
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MODULE_PARM_DESC(psv, "Disable or override all passive trip points.");
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static int acpi_thermal_add(struct acpi_device *device);
static int acpi_thermal_remove(struct acpi_device *device, int type);
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static int acpi_thermal_resume(struct acpi_device *device);
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static int acpi_thermal_state_open_fs(struct inode *inode, struct file *file);
static int acpi_thermal_temp_open_fs(struct inode *inode, struct file *file);
static int acpi_thermal_trip_open_fs(struct inode *inode, struct file *file);
static int acpi_thermal_cooling_open_fs(struct inode *inode, struct file *file);
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static ssize_t acpi_thermal_write_cooling_mode(struct file *,
					       const char __user *, size_t,
					       loff_t *);
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static int acpi_thermal_polling_open_fs(struct inode *inode, struct file *file);
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static ssize_t acpi_thermal_write_polling(struct file *, const char __user *,
					  size_t, loff_t *);
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static const struct acpi_device_id  thermal_device_ids[] = {
	{ACPI_THERMAL_HID, 0},
	{"", 0},
};
MODULE_DEVICE_TABLE(acpi, thermal_device_ids);

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static struct acpi_driver acpi_thermal_driver = {
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	.name = "thermal",
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	.class = ACPI_THERMAL_CLASS,
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	.ids = thermal_device_ids,
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	.ops = {
		.add = acpi_thermal_add,
		.remove = acpi_thermal_remove,
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		.resume = acpi_thermal_resume,
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		},
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};

struct acpi_thermal_state {
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	u8 critical:1;
	u8 hot:1;
	u8 passive:1;
	u8 active:1;
	u8 reserved:4;
	int active_index;
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};

struct acpi_thermal_state_flags {
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	u8 valid:1;
	u8 enabled:1;
	u8 reserved:6;
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};

struct acpi_thermal_critical {
	struct acpi_thermal_state_flags flags;
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	unsigned long temperature;
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};

struct acpi_thermal_hot {
	struct acpi_thermal_state_flags flags;
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	unsigned long temperature;
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};

struct acpi_thermal_passive {
	struct acpi_thermal_state_flags flags;
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	unsigned long temperature;
	unsigned long tc1;
	unsigned long tc2;
	unsigned long tsp;
	struct acpi_handle_list devices;
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};

struct acpi_thermal_active {
	struct acpi_thermal_state_flags flags;
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	unsigned long temperature;
	struct acpi_handle_list devices;
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};

struct acpi_thermal_trips {
	struct acpi_thermal_critical critical;
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	struct acpi_thermal_hot hot;
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	struct acpi_thermal_passive passive;
	struct acpi_thermal_active active[ACPI_THERMAL_MAX_ACTIVE];
};

struct acpi_thermal_flags {
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	u8 cooling_mode:1;	/* _SCP */
	u8 devices:1;		/* _TZD */
	u8 reserved:6;
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};

struct acpi_thermal {
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	struct acpi_device * device;
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	acpi_bus_id name;
	unsigned long temperature;
	unsigned long last_temperature;
	unsigned long polling_frequency;
	volatile u8 zombie;
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	struct acpi_thermal_flags flags;
	struct acpi_thermal_state state;
	struct acpi_thermal_trips trips;
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	struct acpi_handle_list devices;
	struct timer_list timer;
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};

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static const struct file_operations acpi_thermal_state_fops = {
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	.open = acpi_thermal_state_open_fs,
	.read = seq_read,
	.llseek = seq_lseek,
	.release = single_release,
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};

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static const struct file_operations acpi_thermal_temp_fops = {
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	.open = acpi_thermal_temp_open_fs,
	.read = seq_read,
	.llseek = seq_lseek,
	.release = single_release,
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};

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static const struct file_operations acpi_thermal_trip_fops = {
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	.open = acpi_thermal_trip_open_fs,
	.read = seq_read,
	.llseek = seq_lseek,
	.release = single_release,
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};

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static const struct file_operations acpi_thermal_cooling_fops = {
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	.open = acpi_thermal_cooling_open_fs,
	.read = seq_read,
	.write = acpi_thermal_write_cooling_mode,
	.llseek = seq_lseek,
	.release = single_release,
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};

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static const struct file_operations acpi_thermal_polling_fops = {
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	.open = acpi_thermal_polling_open_fs,
	.read = seq_read,
	.write = acpi_thermal_write_polling,
	.llseek = seq_lseek,
	.release = single_release,
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};

/* --------------------------------------------------------------------------
                             Thermal Zone Management
   -------------------------------------------------------------------------- */

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static int acpi_thermal_get_temperature(struct acpi_thermal *tz)
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{
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	acpi_status status = AE_OK;
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	if (!tz)
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		return -EINVAL;
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	tz->last_temperature = tz->temperature;

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	status =
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	    acpi_evaluate_integer(tz->device->handle, "_TMP", NULL, &tz->temperature);
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	if (ACPI_FAILURE(status))
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		return -ENODEV;
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	ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Temperature is %lu dK\n",
			  tz->temperature));
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	return 0;
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}

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static int acpi_thermal_get_polling_frequency(struct acpi_thermal *tz)
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{
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	acpi_status status = AE_OK;
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	if (!tz)
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		return -EINVAL;
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	status =
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	    acpi_evaluate_integer(tz->device->handle, "_TZP", NULL,
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				  &tz->polling_frequency);
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	if (ACPI_FAILURE(status))
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		return -ENODEV;
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	ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Polling frequency is %lu dS\n",
			  tz->polling_frequency));
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	return 0;
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}

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static int acpi_thermal_set_polling(struct acpi_thermal *tz, int seconds)
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{

	if (!tz)
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		return -EINVAL;
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	tz->polling_frequency = seconds * 10;	/* Convert value to deci-seconds */

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	ACPI_DEBUG_PRINT((ACPI_DB_INFO,
			  "Polling frequency set to %lu seconds\n",
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			  tz->polling_frequency/10));
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	return 0;
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}

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static int acpi_thermal_set_cooling_mode(struct acpi_thermal *tz, int mode)
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{
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	acpi_status status = AE_OK;
	union acpi_object arg0 = { ACPI_TYPE_INTEGER };
	struct acpi_object_list arg_list = { 1, &arg0 };
	acpi_handle handle = NULL;
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	if (!tz)
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		return -EINVAL;
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	status = acpi_get_handle(tz->device->handle, "_SCP", &handle);
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	if (ACPI_FAILURE(status)) {
		ACPI_DEBUG_PRINT((ACPI_DB_INFO, "_SCP not present\n"));
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		return -ENODEV;
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	}

	arg0.integer.value = mode;

	status = acpi_evaluate_object(handle, NULL, &arg_list, NULL);
	if (ACPI_FAILURE(status))
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		return -ENODEV;
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	return 0;
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}

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static int acpi_thermal_get_trip_points(struct acpi_thermal *tz)
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{
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	acpi_status status = AE_OK;
	int i = 0;
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	if (!tz)
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		return -EINVAL;
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	/* Critical Shutdown (required) */

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	status = acpi_evaluate_integer(tz->device->handle, "_CRT", NULL,
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				       &tz->trips.critical.temperature);
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	if (ACPI_FAILURE(status)) {
		tz->trips.critical.flags.valid = 0;
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		ACPI_EXCEPTION((AE_INFO, status, "No critical threshold"));
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		return -ENODEV;
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	} else {
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		tz->trips.critical.flags.valid = 1;
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		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
				  "Found critical threshold [%lu]\n",
				  tz->trips.critical.temperature));
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	}

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	if (tz->trips.critical.flags.valid == 1) {
		if (crt == -1) {
			tz->trips.critical.flags.valid = 0;
		} else if (crt > 0) {
			unsigned long crt_k = CELSIUS_TO_KELVIN(crt);

			/*
			 * Allow override to lower critical threshold
			 */
			if (crt_k < tz->trips.critical.temperature)
				tz->trips.critical.temperature = crt_k;
		}
	}

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	/* Critical Sleep (optional) */

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	status =
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	    acpi_evaluate_integer(tz->device->handle, "_HOT", NULL,
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				  &tz->trips.hot.temperature);
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	if (ACPI_FAILURE(status)) {
		tz->trips.hot.flags.valid = 0;
		ACPI_DEBUG_PRINT((ACPI_DB_INFO, "No hot threshold\n"));
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	} else {
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		tz->trips.hot.flags.valid = 1;
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		ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found hot threshold [%lu]\n",
				  tz->trips.hot.temperature));
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	}

	/* Passive: Processors (optional) */

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	if (psv == -1) {
		status = AE_SUPPORT;
	} else if (psv > 0) {
		tz->trips.passive.temperature = CELSIUS_TO_KELVIN(psv);
		status = AE_OK;
	} else {
		status = acpi_evaluate_integer(tz->device->handle,
			"_PSV", NULL, &tz->trips.passive.temperature);
	}

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	if (ACPI_FAILURE(status)) {
		tz->trips.passive.flags.valid = 0;
		ACPI_DEBUG_PRINT((ACPI_DB_INFO, "No passive threshold\n"));
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	} else {
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		tz->trips.passive.flags.valid = 1;

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		status =
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		    acpi_evaluate_integer(tz->device->handle, "_TC1", NULL,
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					  &tz->trips.passive.tc1);
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		if (ACPI_FAILURE(status))
			tz->trips.passive.flags.valid = 0;

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		status =
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		    acpi_evaluate_integer(tz->device->handle, "_TC2", NULL,
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					  &tz->trips.passive.tc2);
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		if (ACPI_FAILURE(status))
			tz->trips.passive.flags.valid = 0;

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		status =
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		    acpi_evaluate_integer(tz->device->handle, "_TSP", NULL,
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					  &tz->trips.passive.tsp);
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		if (ACPI_FAILURE(status))
			tz->trips.passive.flags.valid = 0;

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		status =
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		    acpi_evaluate_reference(tz->device->handle, "_PSL", NULL,
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					    &tz->trips.passive.devices);
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		if (ACPI_FAILURE(status))
			tz->trips.passive.flags.valid = 0;

		if (!tz->trips.passive.flags.valid)
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			printk(KERN_WARNING PREFIX "Invalid passive threshold\n");
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		else
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			ACPI_DEBUG_PRINT((ACPI_DB_INFO,
					  "Found passive threshold [%lu]\n",
					  tz->trips.passive.temperature));
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	}

	/* Active: Fans, etc. (optional) */

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	for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++) {
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		char name[5] = { '_', 'A', 'C', ('0' + i), '\0' };
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		if (act == -1)
			break;	/* disable all active trip points */

		status = acpi_evaluate_integer(tz->device->handle,
			name, NULL, &tz->trips.active[i].temperature);

		if (ACPI_FAILURE(status)) {
			if (i == 0)	/* no active trip points */
				break;
			if (act <= 0)	/* no override requested */
				break;
			if (i == 1) {	/* 1 trip point */
				tz->trips.active[0].temperature =
					CELSIUS_TO_KELVIN(act);
			} else {	/* multiple trips */
				/*
				 * Don't allow override higher than
				 * the next higher trip point
				 */
				tz->trips.active[i - 1].temperature =
				    (tz->trips.active[i - 2].temperature <
					CELSIUS_TO_KELVIN(act) ?
					tz->trips.active[i - 2].temperature :
					CELSIUS_TO_KELVIN(act));
			}
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			break;
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		}
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		name[2] = 'L';
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		status =
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		    acpi_evaluate_reference(tz->device->handle, name, NULL,
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					    &tz->trips.active[i].devices);
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		if (ACPI_SUCCESS(status)) {
			tz->trips.active[i].flags.valid = 1;
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			ACPI_DEBUG_PRINT((ACPI_DB_INFO,
					  "Found active threshold [%d]:[%lu]\n",
					  i, tz->trips.active[i].temperature));
		} else
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			ACPI_EXCEPTION((AE_INFO, status,
					"Invalid active threshold [%d]", i));
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	}

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	return 0;
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}

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static int acpi_thermal_get_devices(struct acpi_thermal *tz)
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{
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	acpi_status status = AE_OK;
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	if (!tz)
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		return -EINVAL;
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	status =
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	    acpi_evaluate_reference(tz->device->handle, "_TZD", NULL, &tz->devices);
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	if (ACPI_FAILURE(status))
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		return -ENODEV;
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	return 0;
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}

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static int acpi_thermal_critical(struct acpi_thermal *tz)
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{
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	if (!tz || !tz->trips.critical.flags.valid || nocrt)
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		return -EINVAL;
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	if (tz->temperature >= tz->trips.critical.temperature) {
498
		printk(KERN_WARNING PREFIX "Critical trip point\n");
L
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499
		tz->trips.critical.flags.enabled = 1;
L
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500
	} else if (tz->trips.critical.flags.enabled)
L
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501 502
		tz->trips.critical.flags.enabled = 0;

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	printk(KERN_EMERG
	       "Critical temperature reached (%ld C), shutting down.\n",
	       KELVIN_TO_CELSIUS(tz->temperature));
506
	acpi_bus_generate_event(tz->device, ACPI_THERMAL_NOTIFY_CRITICAL,
L
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507
				tz->trips.critical.flags.enabled);
L
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508

509
	orderly_poweroff(true);
L
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510

511
	return 0;
L
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512 513
}

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514
static int acpi_thermal_hot(struct acpi_thermal *tz)
L
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515
{
516
	if (!tz || !tz->trips.hot.flags.valid || nocrt)
517
		return -EINVAL;
L
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518 519

	if (tz->temperature >= tz->trips.hot.temperature) {
520
		printk(KERN_WARNING PREFIX "Hot trip point\n");
L
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521
		tz->trips.hot.flags.enabled = 1;
L
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522
	} else if (tz->trips.hot.flags.enabled)
L
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523 524
		tz->trips.hot.flags.enabled = 0;

525
	acpi_bus_generate_event(tz->device, ACPI_THERMAL_NOTIFY_HOT,
L
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526
				tz->trips.hot.flags.enabled);
L
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	/* TBD: Call user-mode "sleep(S4)" function */

530
	return 0;
L
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531 532
}

533
static void acpi_thermal_passive(struct acpi_thermal *tz)
L
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534
{
535
	int result = 1;
L
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536
	struct acpi_thermal_passive *passive = NULL;
L
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537 538
	int trend = 0;
	int i = 0;
L
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539 540 541


	if (!tz || !tz->trips.passive.flags.valid)
542
		return;
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543 544 545 546 547 548 549 550 551 552 553

	passive = &(tz->trips.passive);

	/*
	 * Above Trip?
	 * -----------
	 * Calculate the thermal trend (using the passive cooling equation)
	 * and modify the performance limit for all passive cooling devices
	 * accordingly.  Note that we assume symmetry.
	 */
	if (tz->temperature >= passive->temperature) {
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554 555 556 557 558 559 560 561
		trend =
		    (passive->tc1 * (tz->temperature - tz->last_temperature)) +
		    (passive->tc2 * (tz->temperature - passive->temperature));
		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
				  "trend[%d]=(tc1[%lu]*(tmp[%lu]-last[%lu]))+(tc2[%lu]*(tmp[%lu]-psv[%lu]))\n",
				  trend, passive->tc1, tz->temperature,
				  tz->last_temperature, passive->tc2,
				  tz->temperature, passive->temperature));
562
		passive->flags.enabled = 1;
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563 564
		/* Heating up? */
		if (trend > 0)
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565 566 567 568 569
			for (i = 0; i < passive->devices.count; i++)
				acpi_processor_set_thermal_limit(passive->
								 devices.
								 handles[i],
								 ACPI_PROCESSOR_LIMIT_INCREMENT);
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570
		/* Cooling off? */
571
		else if (trend < 0) {
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			for (i = 0; i < passive->devices.count; i++)
573 574 575 576 577 578 579 580 581 582 583 584 585 586 587 588 589 590 591 592 593 594 595 596
				/*
				 * assume that we are on highest
				 * freq/lowest thrott and can leave
				 * passive mode, even in error case
				 */
				if (!acpi_processor_set_thermal_limit
				    (passive->devices.handles[i],
				     ACPI_PROCESSOR_LIMIT_DECREMENT))
					result = 0;
			/*
			 * Leave cooling mode, even if the temp might
			 * higher than trip point This is because some
			 * machines might have long thermal polling
			 * frequencies (tsp) defined. We will fall back
			 * into passive mode in next cycle (probably quicker)
			 */
			if (result) {
				passive->flags.enabled = 0;
				ACPI_DEBUG_PRINT((ACPI_DB_INFO,
						  "Disabling passive cooling, still above threshold,"
						  " but we are cooling down\n"));
			}
		}
		return;
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	}

	/*
	 * Below Trip?
	 * -----------
	 * Implement passive cooling hysteresis to slowly increase performance
	 * and avoid thrashing around the passive trip point.  Note that we
	 * assume symmetry.
	 */
606 607 608 609 610 611 612 613 614 615 616
	if (!passive->flags.enabled)
		return;
	for (i = 0; i < passive->devices.count; i++)
		if (!acpi_processor_set_thermal_limit
		    (passive->devices.handles[i],
		     ACPI_PROCESSOR_LIMIT_DECREMENT))
			result = 0;
	if (result) {
		passive->flags.enabled = 0;
		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
				  "Disabling passive cooling (zone is cool)\n"));
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	}
}

620
static void acpi_thermal_active(struct acpi_thermal *tz)
L
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621
{
L
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622
	int result = 0;
L
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623
	struct acpi_thermal_active *active = NULL;
L
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624 625 626
	int i = 0;
	int j = 0;
	unsigned long maxtemp = 0;
L
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627 628 629


	if (!tz)
630
		return;
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631

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632
	for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++) {
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		active = &(tz->trips.active[i]);
		if (!active || !active->flags.valid)
			break;
		if (tz->temperature >= active->temperature) {
637 638 639 640 641 642
			/*
			 * Above Threshold?
			 * ----------------
			 * If not already enabled, turn ON all cooling devices
			 * associated with this active threshold.
			 */
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643
			if (active->temperature > maxtemp)
644 645 646 647
				tz->state.active_index = i;
			maxtemp = active->temperature;
			if (active->flags.enabled)
				continue;
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648
			for (j = 0; j < active->devices.count; j++) {
L
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649 650 651
				result =
				    acpi_bus_set_power(active->devices.
						       handles[j],
652
						       ACPI_STATE_D0);
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653
				if (result) {
654 655
					printk(KERN_WARNING PREFIX
						      "Unable to turn cooling device [%p] 'on'\n",
656
						      active->devices.
657
						      handles[j]);
L
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658 659
					continue;
				}
660
				active->flags.enabled = 1;
L
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661
				ACPI_DEBUG_PRINT((ACPI_DB_INFO,
662
						  "Cooling device [%p] now 'on'\n",
L
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663
						  active->devices.handles[j]));
L
Linus Torvalds 已提交
664
			}
665 666 667 668 669 670 671 672 673 674 675 676 677 678
			continue;
		}
		if (!active->flags.enabled)
			continue;
		/*
		 * Below Threshold?
		 * ----------------
		 * Turn OFF all cooling devices associated with this
		 * threshold.
		 */
		for (j = 0; j < active->devices.count; j++) {
			result = acpi_bus_set_power(active->devices.handles[j],
						    ACPI_STATE_D3);
			if (result) {
679 680 681
				printk(KERN_WARNING PREFIX
					      "Unable to turn cooling device [%p] 'off'\n",
					      active->devices.handles[j]);
682 683 684 685 686 687
				continue;
			}
			active->flags.enabled = 0;
			ACPI_DEBUG_PRINT((ACPI_DB_INFO,
					  "Cooling device [%p] now 'off'\n",
					  active->devices.handles[j]));
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688 689 690 691
		}
	}
}

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static void acpi_thermal_check(void *context);
L
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693

L
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694
static void acpi_thermal_run(unsigned long data)
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695 696 697
{
	struct acpi_thermal *tz = (struct acpi_thermal *)data;
	if (!tz->zombie)
698
		acpi_os_execute(OSL_GPE_HANDLER, acpi_thermal_check, (void *)data);
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699 700
}

L
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701
static void acpi_thermal_check(void *data)
L
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702
{
L
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703
	int result = 0;
704
	struct acpi_thermal *tz = data;
L
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705 706
	unsigned long sleep_time = 0;
	int i = 0;
L
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707 708 709 710
	struct acpi_thermal_state state;


	if (!tz) {
711
		printk(KERN_ERR PREFIX "Invalid (NULL) context\n");
712
		return;
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713 714 715 716 717 718
	}

	state = tz->state;

	result = acpi_thermal_get_temperature(tz);
	if (result)
719
		return;
L
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720

L
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721
	memset(&tz->state, 0, sizeof(tz->state));
L
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722

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723 724 725 726 727 728 729 730 731
	/*
	 * Check Trip Points
	 * -----------------
	 * Compare the current temperature to the trip point values to see
	 * if we've entered one of the thermal policy states.  Note that
	 * this function determines when a state is entered, but the 
	 * individual policy decides when it is exited (e.g. hysteresis).
	 */
	if (tz->trips.critical.flags.valid)
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		state.critical |=
		    (tz->temperature >= tz->trips.critical.temperature);
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734 735 736
	if (tz->trips.hot.flags.valid)
		state.hot |= (tz->temperature >= tz->trips.hot.temperature);
	if (tz->trips.passive.flags.valid)
L
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737 738 739
		state.passive |=
		    (tz->temperature >= tz->trips.passive.temperature);
	for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++)
L
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740
		if (tz->trips.active[i].flags.valid)
L
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741 742 743
			state.active |=
			    (tz->temperature >=
			     tz->trips.active[i].temperature);
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744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765

	/*
	 * Invoke Policy
	 * -------------
	 * Separated from the above check to allow individual policy to 
	 * determine when to exit a given state.
	 */
	if (state.critical)
		acpi_thermal_critical(tz);
	if (state.hot)
		acpi_thermal_hot(tz);
	if (state.passive)
		acpi_thermal_passive(tz);
	if (state.active)
		acpi_thermal_active(tz);

	/*
	 * Calculate State
	 * ---------------
	 * Again, separated from the above two to allow independent policy
	 * decisions.
	 */
766 767 768 769
	tz->state.critical = tz->trips.critical.flags.enabled;
	tz->state.hot = tz->trips.hot.flags.enabled;
	tz->state.passive = tz->trips.passive.flags.enabled;
	tz->state.active = 0;
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	for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++)
771
		tz->state.active |= tz->trips.active[i].flags.enabled;
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772 773 774 775 776 777 778 779 780 781 782 783 784 785 786

	/*
	 * Calculate Sleep Time
	 * --------------------
	 * If we're in the passive state, use _TSP's value.  Otherwise
	 * use the default polling frequency (e.g. _TZP).  If no polling
	 * frequency is specified then we'll wait forever (at least until
	 * a thermal event occurs).  Note that _TSP and _TZD values are
	 * given in 1/10th seconds (we must covert to milliseconds).
	 */
	if (tz->state.passive)
		sleep_time = tz->trips.passive.tsp * 100;
	else if (tz->polling_frequency > 0)
		sleep_time = tz->polling_frequency * 100;

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787 788
	ACPI_DEBUG_PRINT((ACPI_DB_INFO, "%s: temperature[%lu] sleep[%lu]\n",
			  tz->name, tz->temperature, sleep_time));
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789 790 791 792 793 794 795 796

	/*
	 * Schedule Next Poll
	 * ------------------
	 */
	if (!sleep_time) {
		if (timer_pending(&(tz->timer)))
			del_timer(&(tz->timer));
L
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797
	} else {
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798
		if (timer_pending(&(tz->timer)))
799 800
			mod_timer(&(tz->timer),
					jiffies + (HZ * sleep_time) / 1000);
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801
		else {
L
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802
			tz->timer.data = (unsigned long)tz;
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803 804 805 806 807 808
			tz->timer.function = acpi_thermal_run;
			tz->timer.expires = jiffies + (HZ * sleep_time) / 1000;
			add_timer(&(tz->timer));
		}
	}

809
	return;
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}

/* --------------------------------------------------------------------------
                              FS Interface (/proc)
   -------------------------------------------------------------------------- */

L
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816
static struct proc_dir_entry *acpi_thermal_dir;
L
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817 818 819

static int acpi_thermal_state_seq_show(struct seq_file *seq, void *offset)
{
820
	struct acpi_thermal *tz = seq->private;
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821 822 823 824 825 826 827


	if (!tz)
		goto end;

	seq_puts(seq, "state:                   ");

L
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828 829
	if (!tz->state.critical && !tz->state.hot && !tz->state.passive
	    && !tz->state.active)
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830 831 832 833 834 835 836 837 838 839 840 841 842
		seq_puts(seq, "ok\n");
	else {
		if (tz->state.critical)
			seq_puts(seq, "critical ");
		if (tz->state.hot)
			seq_puts(seq, "hot ");
		if (tz->state.passive)
			seq_puts(seq, "passive ");
		if (tz->state.active)
			seq_printf(seq, "active[%d]", tz->state.active_index);
		seq_puts(seq, "\n");
	}

L
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      end:
844
	return 0;
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845 846 847 848 849 850 851 852 853
}

static int acpi_thermal_state_open_fs(struct inode *inode, struct file *file)
{
	return single_open(file, acpi_thermal_state_seq_show, PDE(inode)->data);
}

static int acpi_thermal_temp_seq_show(struct seq_file *seq, void *offset)
{
L
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854
	int result = 0;
855
	struct acpi_thermal *tz = seq->private;
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856 857 858 859 860 861 862 863 864


	if (!tz)
		goto end;

	result = acpi_thermal_get_temperature(tz);
	if (result)
		goto end;

L
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865 866
	seq_printf(seq, "temperature:             %ld C\n",
		   KELVIN_TO_CELSIUS(tz->temperature));
L
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867

L
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868
      end:
869
	return 0;
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}

static int acpi_thermal_temp_open_fs(struct inode *inode, struct file *file)
{
	return single_open(file, acpi_thermal_temp_seq_show, PDE(inode)->data);
}

static int acpi_thermal_trip_seq_show(struct seq_file *seq, void *offset)
{
879
	struct acpi_thermal *tz = seq->private;
880
	struct acpi_device *device;
881 882
	acpi_status status;

L
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883 884
	int i = 0;
	int j = 0;
L
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885 886 887 888 889 890


	if (!tz)
		goto end;

	if (tz->trips.critical.flags.valid)
891 892 893
		seq_printf(seq, "critical (S5):           %ld C%s",
			   KELVIN_TO_CELSIUS(tz->trips.critical.temperature),
			   nocrt ? " <disabled>\n" : "\n");
L
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894 895

	if (tz->trips.hot.flags.valid)
896 897 898
		seq_printf(seq, "hot (S4):                %ld C%s",
			   KELVIN_TO_CELSIUS(tz->trips.hot.temperature),
			   nocrt ? " <disabled>\n" : "\n");
L
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899 900

	if (tz->trips.passive.flags.valid) {
L
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901 902 903 904 905 906
		seq_printf(seq,
			   "passive:                 %ld C: tc1=%lu tc2=%lu tsp=%lu devices=",
			   KELVIN_TO_CELSIUS(tz->trips.passive.temperature),
			   tz->trips.passive.tc1, tz->trips.passive.tc2,
			   tz->trips.passive.tsp);
		for (j = 0; j < tz->trips.passive.devices.count; j++) {
907 908 909 910
			status = acpi_bus_get_device(tz->trips.passive.devices.
						     handles[j], &device);
			seq_printf(seq, "%4.4s ", status ? "" :
				   acpi_device_bid(device));
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911 912 913 914 915 916 917 918
		}
		seq_puts(seq, "\n");
	}

	for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++) {
		if (!(tz->trips.active[i].flags.valid))
			break;
		seq_printf(seq, "active[%d]:               %ld C: devices=",
L
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919 920
			   i,
			   KELVIN_TO_CELSIUS(tz->trips.active[i].temperature));
921
		for (j = 0; j < tz->trips.active[i].devices.count; j++){
922 923 924 925 926
			status = acpi_bus_get_device(tz->trips.active[i].
						     devices.handles[j],
						     &device);
			seq_printf(seq, "%4.4s ", status ? "" :
				   acpi_device_bid(device));
927
		}
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928 929 930
		seq_puts(seq, "\n");
	}

L
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931
      end:
932
	return 0;
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933 934 935 936 937 938 939 940 941
}

static int acpi_thermal_trip_open_fs(struct inode *inode, struct file *file)
{
	return single_open(file, acpi_thermal_trip_seq_show, PDE(inode)->data);
}

static int acpi_thermal_cooling_seq_show(struct seq_file *seq, void *offset)
{
942
	struct acpi_thermal *tz = seq->private;
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943 944 945 946 947


	if (!tz)
		goto end;

948
	if (!tz->flags.cooling_mode)
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949 950
		seq_puts(seq, "<setting not supported>\n");
	else
951
		seq_puts(seq, "0 - Active; 1 - Passive\n");
L
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952

L
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953
      end:
954
	return 0;
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955 956 957 958 959
}

static int acpi_thermal_cooling_open_fs(struct inode *inode, struct file *file)
{
	return single_open(file, acpi_thermal_cooling_seq_show,
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			   PDE(inode)->data);
L
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961 962 963
}

static ssize_t
L
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acpi_thermal_write_cooling_mode(struct file *file,
				const char __user * buffer,
				size_t count, loff_t * ppos)
L
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967
{
968 969
	struct seq_file *m = file->private_data;
	struct acpi_thermal *tz = m->private;
L
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970 971
	int result = 0;
	char mode_string[12] = { '\0' };
L
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972 973 974


	if (!tz || (count > sizeof(mode_string) - 1))
975
		return -EINVAL;
L
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976 977

	if (!tz->flags.cooling_mode)
978
		return -ENODEV;
L
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979 980

	if (copy_from_user(mode_string, buffer, count))
981
		return -EFAULT;
L
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982

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983
	mode_string[count] = '\0';
L
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984 985 986 987

	result = acpi_thermal_set_cooling_mode(tz,
					       simple_strtoul(mode_string, NULL,
							      0));
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988
	if (result)
989
		return result;
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990 991 992

	acpi_thermal_check(tz);

993
	return count;
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}

static int acpi_thermal_polling_seq_show(struct seq_file *seq, void *offset)
{
998
	struct acpi_thermal *tz = seq->private;
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999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009


	if (!tz)
		goto end;

	if (!tz->polling_frequency) {
		seq_puts(seq, "<polling disabled>\n");
		goto end;
	}

	seq_printf(seq, "polling frequency:       %lu seconds\n",
L
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1010
		   (tz->polling_frequency / 10));
L
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1011

L
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      end:
1013
	return 0;
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}

static int acpi_thermal_polling_open_fs(struct inode *inode, struct file *file)
{
	return single_open(file, acpi_thermal_polling_seq_show,
L
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1019
			   PDE(inode)->data);
L
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1020 1021 1022
}

static ssize_t
L
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1023 1024 1025
acpi_thermal_write_polling(struct file *file,
			   const char __user * buffer,
			   size_t count, loff_t * ppos)
L
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1026
{
1027 1028
	struct seq_file *m = file->private_data;
	struct acpi_thermal *tz = m->private;
L
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1029 1030 1031
	int result = 0;
	char polling_string[12] = { '\0' };
	int seconds = 0;
L
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1032 1033 1034


	if (!tz || (count > sizeof(polling_string) - 1))
1035
		return -EINVAL;
L
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1036

L
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1037
	if (copy_from_user(polling_string, buffer, count))
1038
		return -EFAULT;
L
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1039

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1040 1041 1042
	polling_string[count] = '\0';

	seconds = simple_strtoul(polling_string, NULL, 0);
L
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1043

L
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1044 1045
	result = acpi_thermal_set_polling(tz, seconds);
	if (result)
1046
		return result;
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1047 1048 1049

	acpi_thermal_check(tz);

1050
	return count;
L
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1051 1052
}

L
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1053
static int acpi_thermal_add_fs(struct acpi_device *device)
L
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1054
{
L
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1055
	struct proc_dir_entry *entry = NULL;
L
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1056 1057 1058 1059


	if (!acpi_device_dir(device)) {
		acpi_device_dir(device) = proc_mkdir(acpi_device_bid(device),
L
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1060
						     acpi_thermal_dir);
L
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1061
		if (!acpi_device_dir(device))
1062
			return -ENODEV;
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1063 1064 1065 1066 1067
		acpi_device_dir(device)->owner = THIS_MODULE;
	}

	/* 'state' [R] */
	entry = create_proc_entry(ACPI_THERMAL_FILE_STATE,
L
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1068
				  S_IRUGO, acpi_device_dir(device));
L
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1069
	if (!entry)
1070
		return -ENODEV;
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1071 1072 1073 1074 1075 1076 1077 1078
	else {
		entry->proc_fops = &acpi_thermal_state_fops;
		entry->data = acpi_driver_data(device);
		entry->owner = THIS_MODULE;
	}

	/* 'temperature' [R] */
	entry = create_proc_entry(ACPI_THERMAL_FILE_TEMPERATURE,
L
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1079
				  S_IRUGO, acpi_device_dir(device));
L
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1080
	if (!entry)
1081
		return -ENODEV;
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1082 1083 1084 1085 1086 1087 1088 1089
	else {
		entry->proc_fops = &acpi_thermal_temp_fops;
		entry->data = acpi_driver_data(device);
		entry->owner = THIS_MODULE;
	}

	/* 'trip_points' [R/W] */
	entry = create_proc_entry(ACPI_THERMAL_FILE_TRIP_POINTS,
L
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1090 1091
				  S_IFREG | S_IRUGO | S_IWUSR,
				  acpi_device_dir(device));
L
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1092
	if (!entry)
1093
		return -ENODEV;
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1094 1095 1096 1097 1098 1099 1100 1101
	else {
		entry->proc_fops = &acpi_thermal_trip_fops;
		entry->data = acpi_driver_data(device);
		entry->owner = THIS_MODULE;
	}

	/* 'cooling_mode' [R/W] */
	entry = create_proc_entry(ACPI_THERMAL_FILE_COOLING_MODE,
L
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1102 1103
				  S_IFREG | S_IRUGO | S_IWUSR,
				  acpi_device_dir(device));
L
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1104
	if (!entry)
1105
		return -ENODEV;
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1106 1107 1108 1109 1110 1111 1112 1113
	else {
		entry->proc_fops = &acpi_thermal_cooling_fops;
		entry->data = acpi_driver_data(device);
		entry->owner = THIS_MODULE;
	}

	/* 'polling_frequency' [R/W] */
	entry = create_proc_entry(ACPI_THERMAL_FILE_POLLING_FREQ,
L
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1114 1115
				  S_IFREG | S_IRUGO | S_IWUSR,
				  acpi_device_dir(device));
L
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1116
	if (!entry)
1117
		return -ENODEV;
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1118 1119 1120 1121 1122 1123
	else {
		entry->proc_fops = &acpi_thermal_polling_fops;
		entry->data = acpi_driver_data(device);
		entry->owner = THIS_MODULE;
	}

1124
	return 0;
L
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1125 1126
}

L
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1127
static int acpi_thermal_remove_fs(struct acpi_device *device)
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1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144
{

	if (acpi_device_dir(device)) {
		remove_proc_entry(ACPI_THERMAL_FILE_POLLING_FREQ,
				  acpi_device_dir(device));
		remove_proc_entry(ACPI_THERMAL_FILE_COOLING_MODE,
				  acpi_device_dir(device));
		remove_proc_entry(ACPI_THERMAL_FILE_TRIP_POINTS,
				  acpi_device_dir(device));
		remove_proc_entry(ACPI_THERMAL_FILE_TEMPERATURE,
				  acpi_device_dir(device));
		remove_proc_entry(ACPI_THERMAL_FILE_STATE,
				  acpi_device_dir(device));
		remove_proc_entry(acpi_device_bid(device), acpi_thermal_dir);
		acpi_device_dir(device) = NULL;
	}

1145
	return 0;
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1146 1147 1148 1149 1150 1151
}

/* --------------------------------------------------------------------------
                                 Driver Interface
   -------------------------------------------------------------------------- */

L
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1152
static void acpi_thermal_notify(acpi_handle handle, u32 event, void *data)
L
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1153
{
1154
	struct acpi_thermal *tz = data;
L
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1155
	struct acpi_device *device = NULL;
L
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1156 1157 1158


	if (!tz)
1159
		return;
L
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1160

1161
	device = tz->device;
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1162 1163 1164 1165 1166 1167 1168 1169 1170 1171 1172 1173 1174 1175 1176 1177 1178

	switch (event) {
	case ACPI_THERMAL_NOTIFY_TEMPERATURE:
		acpi_thermal_check(tz);
		break;
	case ACPI_THERMAL_NOTIFY_THRESHOLDS:
		acpi_thermal_get_trip_points(tz);
		acpi_thermal_check(tz);
		acpi_bus_generate_event(device, event, 0);
		break;
	case ACPI_THERMAL_NOTIFY_DEVICES:
		if (tz->flags.devices)
			acpi_thermal_get_devices(tz);
		acpi_bus_generate_event(device, event, 0);
		break;
	default:
		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
L
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1179
				  "Unsupported event [0x%x]\n", event));
L
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1180 1181 1182
		break;
	}

1183
	return;
L
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1184 1185
}

L
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1186
static int acpi_thermal_get_info(struct acpi_thermal *tz)
L
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1187
{
L
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1188
	int result = 0;
L
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1189 1190 1191


	if (!tz)
1192
		return -EINVAL;
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1193 1194 1195 1196

	/* Get temperature [_TMP] (required) */
	result = acpi_thermal_get_temperature(tz);
	if (result)
1197
		return result;
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1198 1199 1200 1201

	/* Get trip points [_CRT, _PSV, etc.] (required) */
	result = acpi_thermal_get_trip_points(tz);
	if (result)
1202
		return result;
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1203 1204 1205

	/* Set the cooling mode [_SCP] to active cooling (default) */
	result = acpi_thermal_set_cooling_mode(tz, ACPI_THERMAL_MODE_ACTIVE);
L
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1206
	if (!result)
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1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219
		tz->flags.cooling_mode = 1;

	/* Get default polling frequency [_TZP] (optional) */
	if (tzp)
		tz->polling_frequency = tzp;
	else
		acpi_thermal_get_polling_frequency(tz);

	/* Get devices in this thermal zone [_TZD] (optional) */
	result = acpi_thermal_get_devices(tz);
	if (!result)
		tz->flags.devices = 1;

1220
	return 0;
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1221 1222
}

L
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1223
static int acpi_thermal_add(struct acpi_device *device)
L
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1224
{
L
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1225 1226 1227
	int result = 0;
	acpi_status status = AE_OK;
	struct acpi_thermal *tz = NULL;
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1228 1229 1230


	if (!device)
1231
		return -EINVAL;
L
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1232

1233
	tz = kzalloc(sizeof(struct acpi_thermal), GFP_KERNEL);
L
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1234
	if (!tz)
1235
		return -ENOMEM;
L
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1236

1237
	tz->device = device;
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	strcpy(tz->name, device->pnp.bus_id);
	strcpy(acpi_device_name(device), ACPI_THERMAL_DEVICE_NAME);
	strcpy(acpi_device_class(device), ACPI_THERMAL_CLASS);
	acpi_driver_data(device) = tz;

	result = acpi_thermal_get_info(tz);
	if (result)
		goto end;

	result = acpi_thermal_add_fs(device);
	if (result)
1249
		goto end;
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	init_timer(&tz->timer);

	acpi_thermal_check(tz);

1255
	status = acpi_install_notify_handler(device->handle,
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1256 1257
					     ACPI_DEVICE_NOTIFY,
					     acpi_thermal_notify, tz);
L
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1258 1259 1260 1261 1262 1263
	if (ACPI_FAILURE(status)) {
		result = -ENODEV;
		goto end;
	}

	printk(KERN_INFO PREFIX "%s [%s] (%ld C)\n",
L
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1264 1265
	       acpi_device_name(device), acpi_device_bid(device),
	       KELVIN_TO_CELSIUS(tz->temperature));
L
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1266

L
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1267
      end:
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1268 1269 1270 1271 1272
	if (result) {
		acpi_thermal_remove_fs(device);
		kfree(tz);
	}

1273
	return result;
L
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1274 1275
}

L
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1276
static int acpi_thermal_remove(struct acpi_device *device, int type)
L
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1277
{
L
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1278 1279
	acpi_status status = AE_OK;
	struct acpi_thermal *tz = NULL;
L
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1280 1281 1282


	if (!device || !acpi_driver_data(device))
1283
		return -EINVAL;
L
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1284

1285
	tz = acpi_driver_data(device);
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1286 1287 1288 1289 1290 1291 1292 1293 1294 1295

	/* avoid timer adding new defer task */
	tz->zombie = 1;
	/* wait for running timer (on other CPUs) finish */
	del_timer_sync(&(tz->timer));
	/* synchronize deferred task */
	acpi_os_wait_events_complete(NULL);
	/* deferred task may reinsert timer */
	del_timer_sync(&(tz->timer));

1296
	status = acpi_remove_notify_handler(device->handle,
L
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1297 1298
					    ACPI_DEVICE_NOTIFY,
					    acpi_thermal_notify);
L
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1299 1300

	/* Terminate policy */
L
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1301
	if (tz->trips.passive.flags.valid && tz->trips.passive.flags.enabled) {
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1302 1303 1304 1305
		tz->trips.passive.flags.enabled = 0;
		acpi_thermal_passive(tz);
	}
	if (tz->trips.active[0].flags.valid
L
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1306
	    && tz->trips.active[0].flags.enabled) {
L
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		tz->trips.active[0].flags.enabled = 0;
		acpi_thermal_active(tz);
	}

	acpi_thermal_remove_fs(device);

	kfree(tz);
1314
	return 0;
L
Linus Torvalds 已提交
1315 1316
}

1317
static int acpi_thermal_resume(struct acpi_device *device)
1318 1319
{
	struct acpi_thermal *tz = NULL;
1320 1321
	int i, j, power_state, result;

1322 1323

	if (!device || !acpi_driver_data(device))
1324
		return -EINVAL;
1325

1326
	tz = acpi_driver_data(device);
1327

1328
	for (i = 0; i < ACPI_THERMAL_MAX_ACTIVE; i++) {
1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340
		if (!(&tz->trips.active[i]))
			break;
		if (!tz->trips.active[i].flags.valid)
			break;
		tz->trips.active[i].flags.enabled = 1;
		for (j = 0; j < tz->trips.active[i].devices.count; j++) {
			result = acpi_bus_get_power(tz->trips.active[i].devices.
			    handles[j], &power_state);
			if (result || (power_state != ACPI_STATE_D0)) {
				tz->trips.active[i].flags.enabled = 0;
				break;
			}
1341
		}
1342
		tz->state.active |= tz->trips.active[i].flags.enabled;
1343 1344
	}

1345
	acpi_thermal_check(tz);
1346 1347 1348 1349

	return AE_OK;
}

1350 1351 1352 1353 1354 1355 1356 1357 1358 1359
#ifdef CONFIG_DMI
static int thermal_act(struct dmi_system_id *d) {

	if (act == 0) {
		printk(KERN_NOTICE "ACPI: %s detected: "
			"disabling all active thermal trip points\n", d->ident);
		act = -1;
	}
	return 0;
}
1360 1361 1362 1363 1364 1365 1366
static int thermal_nocrt(struct dmi_system_id *d) {

	printk(KERN_NOTICE "ACPI: %s detected: "
		"disabling all critical thermal trip point actions.\n", d->ident);
	nocrt = 1;
	return 0;
}
1367 1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414
static int thermal_tzp(struct dmi_system_id *d) {

	if (tzp == 0) {
		printk(KERN_NOTICE "ACPI: %s detected: "
			"enabling thermal zone polling\n", d->ident);
		tzp = 300;	/* 300 dS = 30 Seconds */
	}
	return 0;
}
static int thermal_psv(struct dmi_system_id *d) {

	if (psv == 0) {
		printk(KERN_NOTICE "ACPI: %s detected: "
			"disabling all passive thermal trip points\n", d->ident);
		psv = -1;
	}
	return 0;
}

static struct dmi_system_id thermal_dmi_table[] __initdata = {
	/*
	 * Award BIOS on this AOpen makes thermal control almost worthless.
	 * http://bugzilla.kernel.org/show_bug.cgi?id=8842
	 */
	{
	 .callback = thermal_act,
	 .ident = "AOpen i915GMm-HFS",
	 .matches = {
		DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
		DMI_MATCH(DMI_BOARD_NAME, "i915GMm-HFS"),
		},
	},
	{
	 .callback = thermal_psv,
	 .ident = "AOpen i915GMm-HFS",
	 .matches = {
		DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
		DMI_MATCH(DMI_BOARD_NAME, "i915GMm-HFS"),
		},
	},
	{
	 .callback = thermal_tzp,
	 .ident = "AOpen i915GMm-HFS",
	 .matches = {
		DMI_MATCH(DMI_BOARD_VENDOR, "AOpen"),
		DMI_MATCH(DMI_BOARD_NAME, "i915GMm-HFS"),
		},
	},
1415 1416 1417 1418 1419 1420 1421 1422
	{
	 .callback = thermal_nocrt,
	 .ident = "Gigabyte GA-7ZX",
	 .matches = {
		DMI_MATCH(DMI_BOARD_VENDOR, "Gigabyte Technology Co., Ltd."),
		DMI_MATCH(DMI_BOARD_NAME, "7ZX"),
		},
	},
1423 1424 1425 1426
	{}
};
#endif /* CONFIG_DMI */

L
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1427
static int __init acpi_thermal_init(void)
L
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1428
{
L
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1429
	int result = 0;
L
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1430

1431 1432
	dmi_check_system(thermal_dmi_table);

1433 1434 1435 1436
	if (off) {
		printk(KERN_NOTICE "ACPI: thermal control disabled\n");
		return -ENODEV;
	}
L
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1437 1438
	acpi_thermal_dir = proc_mkdir(ACPI_THERMAL_CLASS, acpi_root_dir);
	if (!acpi_thermal_dir)
1439
		return -ENODEV;
L
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1440 1441 1442 1443 1444
	acpi_thermal_dir->owner = THIS_MODULE;

	result = acpi_bus_register_driver(&acpi_thermal_driver);
	if (result < 0) {
		remove_proc_entry(ACPI_THERMAL_CLASS, acpi_root_dir);
1445
		return -ENODEV;
L
Linus Torvalds 已提交
1446 1447
	}

1448
	return 0;
L
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1449 1450
}

L
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1451
static void __exit acpi_thermal_exit(void)
L
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1452 1453 1454 1455 1456 1457
{

	acpi_bus_unregister_driver(&acpi_thermal_driver);

	remove_proc_entry(ACPI_THERMAL_CLASS, acpi_root_dir);

1458
	return;
L
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1459 1460 1461 1462
}

module_init(acpi_thermal_init);
module_exit(acpi_thermal_exit);