2 * intel_menlow.c - Intel menlow Driver for thermal management extension
4 * Copyright (C) 2008 Intel Corp
5 * Copyright (C) 2008 Sujith Thomas <sujith.thomas@intel.com>
6 * Copyright (C) 2008 Zhang Rui <rui.zhang@intel.com>
7 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
9 * This program is free software; you can redistribute it and/or modify
10 * it under the terms of the GNU General Public License as published by
11 * the Free Software Foundation; version 2 of the License.
13 * This program is distributed in the hope that it will be useful, but
14 * WITHOUT ANY WARRANTY; without even the implied warranty of
15 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
16 * General Public License for more details.
18 * You should have received a copy of the GNU General Public License along
19 * with this program; if not, write to the Free Software Foundation, Inc.,
20 * 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
22 * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
24 * This driver creates the sys I/F for programming the sensors.
25 * It also implements the driver for intel menlow memory controller (hardware
26 * id is INT0002) which makes use of the platform specific ACPI methods
27 * to get/set bandwidth.
30 #include <linux/kernel.h>
31 #include <linux/module.h>
32 #include <linux/init.h>
33 #include <linux/types.h>
34 #include <linux/pci.h>
37 #include <linux/thermal.h>
38 #include <acpi/acpi_bus.h>
39 #include <acpi/acpi_drivers.h>
41 MODULE_AUTHOR("Thomas Sujith");
42 MODULE_AUTHOR("Zhang Rui");
43 MODULE_DESCRIPTION("Intel Menlow platform specific driver");
44 MODULE_LICENSE("GPL");
47 * Memory controller device control
50 #define MEMORY_GET_BANDWIDTH "GTHS"
51 #define MEMORY_SET_BANDWIDTH "STHS"
52 #define MEMORY_ARG_CUR_BANDWIDTH 1
53 #define MEMORY_ARG_MAX_BANDWIDTH 0
55 static int memory_get_int_max_bandwidth(struct thermal_cooling_device
*cdev
,
56 unsigned long *max_state
)
58 struct acpi_device
*device
= cdev
->devdata
;
59 acpi_handle handle
= device
->handle
;
61 struct acpi_object_list arg_list
;
62 union acpi_object arg
;
63 acpi_status status
= AE_OK
;
66 arg_list
.pointer
= &arg
;
67 arg
.type
= ACPI_TYPE_INTEGER
;
68 arg
.integer
.value
= MEMORY_ARG_MAX_BANDWIDTH
;
69 status
= acpi_evaluate_integer(handle
, MEMORY_GET_BANDWIDTH
,
71 if (ACPI_FAILURE(status
))
74 *max_state
= value
- 1;
78 static int memory_get_max_bandwidth(struct thermal_cooling_device
*cdev
,
82 if (memory_get_int_max_bandwidth(cdev
, &value
))
85 return sprintf(buf
, "%ld\n", value
);
88 static int memory_get_cur_bandwidth(struct thermal_cooling_device
*cdev
,
91 struct acpi_device
*device
= cdev
->devdata
;
92 acpi_handle handle
= device
->handle
;
94 struct acpi_object_list arg_list
;
95 union acpi_object arg
;
96 acpi_status status
= AE_OK
;
99 arg_list
.pointer
= &arg
;
100 arg
.type
= ACPI_TYPE_INTEGER
;
101 arg
.integer
.value
= MEMORY_ARG_CUR_BANDWIDTH
;
102 status
= acpi_evaluate_integer(handle
, MEMORY_GET_BANDWIDTH
,
104 if (ACPI_FAILURE(status
))
107 return sprintf(buf
, "%ld\n", value
);
110 static int memory_set_cur_bandwidth(struct thermal_cooling_device
*cdev
,
113 struct acpi_device
*device
= cdev
->devdata
;
114 acpi_handle handle
= device
->handle
;
115 struct acpi_object_list arg_list
;
116 union acpi_object arg
;
119 unsigned long max_state
;
121 if (memory_get_int_max_bandwidth(cdev
, &max_state
))
124 if (max_state
< 0 || state
> max_state
)
128 arg_list
.pointer
= &arg
;
129 arg
.type
= ACPI_TYPE_INTEGER
;
130 arg
.integer
.value
= state
;
133 acpi_evaluate_integer(handle
, MEMORY_SET_BANDWIDTH
, &arg_list
,
134 (unsigned long *)&temp
);
137 "Bandwidth value was %d: status is %d\n", state
, status
);
138 if (ACPI_FAILURE(status
))
144 static struct thermal_cooling_device_ops memory_cooling_ops
= {
145 .get_max_state
= memory_get_max_bandwidth
,
146 .get_cur_state
= memory_get_cur_bandwidth
,
147 .set_cur_state
= memory_set_cur_bandwidth
,
151 * Memory Device Management
153 static int intel_menlow_memory_add(struct acpi_device
*device
)
155 int result
= -ENODEV
;
156 acpi_status status
= AE_OK
;
158 struct thermal_cooling_device
*cdev
;
163 status
= acpi_get_handle(device
->handle
, MEMORY_GET_BANDWIDTH
, &dummy
);
164 if (ACPI_FAILURE(status
))
167 status
= acpi_get_handle(device
->handle
, MEMORY_SET_BANDWIDTH
, &dummy
);
168 if (ACPI_FAILURE(status
))
171 cdev
= thermal_cooling_device_register("Memory controller", device
,
172 &memory_cooling_ops
);
173 acpi_driver_data(device
) = cdev
;
177 result
= sysfs_create_link(&device
->dev
.kobj
,
178 &cdev
->device
.kobj
, "thermal_cooling");
182 result
= sysfs_create_link(&cdev
->device
.kobj
,
183 &device
->dev
.kobj
, "device");
185 sysfs_remove_link(&device
->dev
.kobj
, "thermal_cooling");
194 thermal_cooling_device_unregister(cdev
);
199 static int intel_menlow_memory_remove(struct acpi_device
*device
, int type
)
201 struct thermal_cooling_device
*cdev
= acpi_driver_data(device
);
203 if (!device
|| !cdev
)
206 sysfs_remove_link(&device
->dev
.kobj
, "thermal_cooling");
207 sysfs_remove_link(&cdev
->device
.kobj
, "device");
208 thermal_cooling_device_unregister(cdev
);
213 const static struct acpi_device_id intel_menlow_memory_ids
[] = {
218 static struct acpi_driver intel_menlow_memory_driver
= {
219 .name
= "intel_menlow_thermal_control",
220 .ids
= intel_menlow_memory_ids
,
222 .add
= intel_menlow_memory_add
,
223 .remove
= intel_menlow_memory_remove
,
228 * Sensor control on menlow platform
231 #define THERMAL_AUX0 0
232 #define THERMAL_AUX1 1
233 #define GET_AUX0 "GAX0"
234 #define GET_AUX1 "GAX1"
235 #define SET_AUX0 "SAX0"
236 #define SET_AUX1 "SAX1"
238 struct intel_menlow_attribute
{
239 struct device_attribute attr
;
240 struct device
*device
;
242 struct list_head node
;
245 static LIST_HEAD(intel_menlow_attr_list
);
246 static DEFINE_MUTEX(intel_menlow_attr_lock
);
249 * sensor_get_auxtrip - get the current auxtrip value from sensor
250 * @name: Thermalzone name
251 * @auxtype : AUX0/AUX1
254 static int sensor_get_auxtrip(acpi_handle handle
, int index
, int *value
)
258 if ((index
!= 0 && index
!= 1) || !value
)
261 status
= acpi_evaluate_integer(handle
, index
? GET_AUX1
: GET_AUX0
,
262 NULL
, (unsigned long *)value
);
263 if (ACPI_FAILURE(status
))
270 * sensor_set_auxtrip - set the new auxtrip value to sensor
271 * @name: Thermalzone name
272 * @auxtype : AUX0/AUX1
275 static int sensor_set_auxtrip(acpi_handle handle
, int index
, int value
)
278 union acpi_object arg
= {
281 struct acpi_object_list args
= {
286 if (index
!= 0 && index
!= 1)
289 status
= acpi_evaluate_integer(handle
, index
? GET_AUX0
: GET_AUX1
,
290 NULL
, (unsigned long *)&temp
);
291 if (ACPI_FAILURE(status
))
293 if ((index
&& value
< temp
) || (!index
&& value
> temp
))
296 arg
.integer
.value
= value
;
297 status
= acpi_evaluate_integer(handle
, index
? SET_AUX1
: SET_AUX0
,
298 &args
, (unsigned long *)&temp
);
299 if (ACPI_FAILURE(status
))
302 /* do we need to check the return value of SAX0/SAX1 ? */
307 #define to_intel_menlow_attr(_attr) \
308 container_of(_attr, struct intel_menlow_attribute, attr)
310 static ssize_t
aux0_show(struct device
*dev
,
311 struct device_attribute
*dev_attr
, char *buf
)
313 struct intel_menlow_attribute
*attr
= to_intel_menlow_attr(dev_attr
);
317 result
= sensor_get_auxtrip(attr
->handle
, 0, &value
);
319 return result
? result
: sprintf(buf
, "%lu", KELVIN_TO_CELSIUS(value
));
322 static ssize_t
aux1_show(struct device
*dev
,
323 struct device_attribute
*dev_attr
, char *buf
)
325 struct intel_menlow_attribute
*attr
= to_intel_menlow_attr(dev_attr
);
329 result
= sensor_get_auxtrip(attr
->handle
, 1, &value
);
331 return result
? result
: sprintf(buf
, "%lu", KELVIN_TO_CELSIUS(value
));
334 static ssize_t
aux0_store(struct device
*dev
,
335 struct device_attribute
*dev_attr
,
336 const char *buf
, size_t count
)
338 struct intel_menlow_attribute
*attr
= to_intel_menlow_attr(dev_attr
);
342 /*Sanity check; should be a positive integer */
343 if (!sscanf(buf
, "%d", &value
))
349 result
= sensor_set_auxtrip(attr
->handle
, 0, CELSIUS_TO_KELVIN(value
));
350 return result
? result
: count
;
353 static ssize_t
aux1_store(struct device
*dev
,
354 struct device_attribute
*dev_attr
,
355 const char *buf
, size_t count
)
357 struct intel_menlow_attribute
*attr
= to_intel_menlow_attr(dev_attr
);
361 /*Sanity check; should be a positive integer */
362 if (!sscanf(buf
, "%d", &value
))
368 result
= sensor_set_auxtrip(attr
->handle
, 1, CELSIUS_TO_KELVIN(value
));
369 return result
? result
: count
;
372 /* BIOS can enable/disable the thermal user application in dabney platform */
373 #define BIOS_ENABLED "\\_TZ.GSTS"
374 static ssize_t
bios_enabled_show(struct device
*dev
,
375 struct device_attribute
*attr
, char *buf
)
378 unsigned long bios_enabled
;
380 status
= acpi_evaluate_integer(NULL
, BIOS_ENABLED
, NULL
, &bios_enabled
);
381 if (ACPI_FAILURE(status
))
384 return sprintf(buf
, "%s\n", bios_enabled
? "enabled" : "disabled");
387 static int intel_menlow_add_one_attribute(char *name
, int mode
, void *show
,
388 void *store
, struct device
*dev
,
391 struct intel_menlow_attribute
*attr
;
394 attr
= kzalloc(sizeof(struct intel_menlow_attribute
), GFP_KERNEL
);
398 attr
->attr
.attr
.name
= name
;
399 attr
->attr
.attr
.mode
= mode
;
400 attr
->attr
.show
= show
;
401 attr
->attr
.store
= store
;
403 attr
->handle
= handle
;
405 result
= device_create_file(dev
, &attr
->attr
);
409 mutex_lock(&intel_menlow_attr_lock
);
410 list_add_tail(&attr
->node
, &intel_menlow_attr_list
);
411 mutex_unlock(&intel_menlow_attr_lock
);
416 static acpi_status
intel_menlow_register_sensor(acpi_handle handle
, u32 lvl
,
417 void *context
, void **rv
)
421 struct thermal_zone_device
*thermal
;
424 result
= acpi_bus_get_private_data(handle
, (void **)&thermal
);
428 /* _TZ must have the AUX0/1 methods */
429 status
= acpi_get_handle(handle
, GET_AUX0
, &dummy
);
430 if (ACPI_FAILURE(status
))
433 status
= acpi_get_handle(handle
, SET_AUX0
, &dummy
);
434 if (ACPI_FAILURE(status
))
437 result
= intel_menlow_add_one_attribute("aux0", 0644,
438 aux0_show
, aux0_store
,
439 &thermal
->device
, handle
);
443 status
= acpi_get_handle(handle
, GET_AUX1
, &dummy
);
444 if (ACPI_FAILURE(status
))
447 status
= acpi_get_handle(handle
, SET_AUX1
, &dummy
);
448 if (ACPI_FAILURE(status
))
451 result
= intel_menlow_add_one_attribute("aux1", 0644,
452 aux1_show
, aux1_store
,
453 &thermal
->device
, handle
);
458 * create the "dabney_enabled" attribute which means the user app
459 * should be loaded or not
462 result
= intel_menlow_add_one_attribute("bios_enabled", 0444,
463 bios_enabled_show
, NULL
,
464 &thermal
->device
, handle
);
469 if (status
== AE_NOT_FOUND
)
475 static void intel_menlow_unregister_sensor(void)
477 struct intel_menlow_attribute
*pos
, *next
;
479 mutex_lock(&intel_menlow_attr_lock
);
480 list_for_each_entry_safe(pos
, next
, &intel_menlow_attr_list
, node
) {
481 list_del(&pos
->node
);
482 device_remove_file(pos
->device
, &pos
->attr
);
485 mutex_unlock(&intel_menlow_attr_lock
);
490 static int __init
intel_menlow_module_init(void)
492 int result
= -ENODEV
;
494 unsigned long enable
;
499 /* Looking for the \_TZ.GSTS method */
500 status
= acpi_evaluate_integer(NULL
, BIOS_ENABLED
, NULL
, &enable
);
501 if (ACPI_FAILURE(status
) || !enable
)
504 /* Looking for ACPI device MEM0 with hardware id INT0002 */
505 result
= acpi_bus_register_driver(&intel_menlow_memory_driver
);
509 /* Looking for sensors in each ACPI thermal zone */
510 status
= acpi_walk_namespace(ACPI_TYPE_THERMAL
, ACPI_ROOT_OBJECT
,
512 intel_menlow_register_sensor
, NULL
, NULL
);
513 if (ACPI_FAILURE(status
))
519 static void __exit
intel_menlow_module_exit(void)
521 acpi_bus_unregister_driver(&intel_menlow_memory_driver
);
522 intel_menlow_unregister_sensor();
525 module_init(intel_menlow_module_init
);
526 module_exit(intel_menlow_module_exit
);