2 * thermal support for the cell processor
4 * This module adds some sysfs attributes to cpu and spu nodes.
5 * Base for measurements are the digital thermal sensors (DTS)
7 * The accuracy is 2 degrees, starting from 65 up to 125 degrees celsius
8 * The attributes can be found under
9 * /sys/devices/system/cpu/cpuX/thermal
10 * /sys/devices/system/spu/spuX/thermal
12 * The following attributes are added for each node:
14 * contains the current temperature measured by the DTS
16 * throttling begins when temperature is greater or equal to
17 * throttle_begin. Setting this value to 125 prevents throttling.
19 * throttling is being ceased, if the temperature is lower than
20 * throttle_end. Due to a delay between applying throttling and
21 * a reduced temperature this value should be less than throttle_begin.
22 * A value equal to throttle_begin provides only a very little hysteresis.
24 * If the temperatrue is greater or equal to throttle_full_stop,
25 * full throttling is applied to the cpu or spu. This value should be
26 * greater than throttle_begin and throttle_end. Setting this value to
27 * 65 prevents the unit from running code at all.
29 * (C) Copyright IBM Deutschland Entwicklung GmbH 2005
31 * Author: Christian Krafft <krafft@de.ibm.com>
33 * This program is free software; you can redistribute it and/or modify
34 * it under the terms of the GNU General Public License as published by
35 * the Free Software Foundation; either version 2, or (at your option)
38 * This program is distributed in the hope that it will be useful,
39 * but WITHOUT ANY WARRANTY; without even the implied warranty of
40 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
41 * GNU General Public License for more details.
43 * You should have received a copy of the GNU General Public License
44 * along with this program; if not, write to the Free Software
45 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
48 #include <linux/module.h>
49 #include <linux/device.h>
50 #include <linux/kernel.h>
51 #include <linux/cpu.h>
55 #include <asm/cell-regs.h>
57 #include "spu_priv1_mmio.h"
62 #define DEVICE_PREFIX_ATTR(_prefix,_name,_mode) \
63 struct device_attribute attr_ ## _prefix ## _ ## _name = { \
64 .attr = { .name = __stringify(_name), .mode = _mode }, \
65 .show = _prefix ## _show_ ## _name, \
66 .store = _prefix ## _store_ ## _name, \
69 static inline u8
reg_to_temp(u8 reg_value
)
71 return ((reg_value
& 0x3f) << 1) + TEMP_MIN
;
74 static inline u8
temp_to_reg(u8 temp
)
76 return ((temp
- TEMP_MIN
) >> 1) & 0x3f;
79 static struct cbe_pmd_regs __iomem
*get_pmd_regs(struct device
*dev
)
83 spu
= container_of(dev
, struct spu
, dev
);
85 return cbe_get_pmd_regs(spu_devnode(spu
));
88 /* returns the value for a given spu in a given register */
89 static u8
spu_read_register_value(struct device
*dev
, union spe_reg __iomem
*reg
)
94 spu
= container_of(dev
, struct spu
, dev
);
95 value
.val
= in_be64(®
->val
);
97 return value
.spe
[spu
->spe_id
];
100 static ssize_t
spu_show_temp(struct device
*dev
, struct device_attribute
*attr
,
104 struct cbe_pmd_regs __iomem
*pmd_regs
;
106 pmd_regs
= get_pmd_regs(dev
);
108 value
= spu_read_register_value(dev
, &pmd_regs
->ts_ctsr1
);
110 return sprintf(buf
, "%d\n", reg_to_temp(value
));
113 static ssize_t
show_throttle(struct cbe_pmd_regs __iomem
*pmd_regs
, char *buf
, int pos
)
117 value
= in_be64(&pmd_regs
->tm_tpr
.val
);
118 /* access the corresponding byte */
122 return sprintf(buf
, "%d\n", reg_to_temp(value
));
125 static ssize_t
store_throttle(struct cbe_pmd_regs __iomem
*pmd_regs
, const char *buf
, size_t size
, int pos
)
132 ret
= sscanf(buf
, "%u", &temp
);
134 if (ret
!= 1 || temp
< TEMP_MIN
|| temp
> TEMP_MAX
)
137 new_value
= temp_to_reg(temp
);
139 reg_value
= in_be64(&pmd_regs
->tm_tpr
.val
);
141 /* zero out bits for new value */
142 reg_value
&= ~(0xffull
<< pos
);
143 /* set bits to new value */
144 reg_value
|= new_value
<< pos
;
146 out_be64(&pmd_regs
->tm_tpr
.val
, reg_value
);
150 static ssize_t
spu_show_throttle_end(struct device
*dev
,
151 struct device_attribute
*attr
, char *buf
)
153 return show_throttle(get_pmd_regs(dev
), buf
, 0);
156 static ssize_t
spu_show_throttle_begin(struct device
*dev
,
157 struct device_attribute
*attr
, char *buf
)
159 return show_throttle(get_pmd_regs(dev
), buf
, 8);
162 static ssize_t
spu_show_throttle_full_stop(struct device
*dev
,
163 struct device_attribute
*attr
, char *buf
)
165 return show_throttle(get_pmd_regs(dev
), buf
, 16);
168 static ssize_t
spu_store_throttle_end(struct device
*dev
,
169 struct device_attribute
*attr
, const char *buf
, size_t size
)
171 return store_throttle(get_pmd_regs(dev
), buf
, size
, 0);
174 static ssize_t
spu_store_throttle_begin(struct device
*dev
,
175 struct device_attribute
*attr
, const char *buf
, size_t size
)
177 return store_throttle(get_pmd_regs(dev
), buf
, size
, 8);
180 static ssize_t
spu_store_throttle_full_stop(struct device
*dev
,
181 struct device_attribute
*attr
, const char *buf
, size_t size
)
183 return store_throttle(get_pmd_regs(dev
), buf
, size
, 16);
186 static ssize_t
ppe_show_temp(struct device
*dev
, char *buf
, int pos
)
188 struct cbe_pmd_regs __iomem
*pmd_regs
;
191 pmd_regs
= cbe_get_cpu_pmd_regs(dev
->id
);
192 value
= in_be64(&pmd_regs
->ts_ctsr2
);
194 value
= (value
>> pos
) & 0x3f;
196 return sprintf(buf
, "%d\n", reg_to_temp(value
));
200 /* shows the temperature of the DTS on the PPE,
201 * located near the linear thermal sensor */
202 static ssize_t
ppe_show_temp0(struct device
*dev
,
203 struct device_attribute
*attr
, char *buf
)
205 return ppe_show_temp(dev
, buf
, 32);
208 /* shows the temperature of the second DTS on the PPE */
209 static ssize_t
ppe_show_temp1(struct device
*dev
,
210 struct device_attribute
*attr
, char *buf
)
212 return ppe_show_temp(dev
, buf
, 0);
215 static ssize_t
ppe_show_throttle_end(struct device
*dev
,
216 struct device_attribute
*attr
, char *buf
)
218 return show_throttle(cbe_get_cpu_pmd_regs(dev
->id
), buf
, 32);
221 static ssize_t
ppe_show_throttle_begin(struct device
*dev
,
222 struct device_attribute
*attr
, char *buf
)
224 return show_throttle(cbe_get_cpu_pmd_regs(dev
->id
), buf
, 40);
227 static ssize_t
ppe_show_throttle_full_stop(struct device
*dev
,
228 struct device_attribute
*attr
, char *buf
)
230 return show_throttle(cbe_get_cpu_pmd_regs(dev
->id
), buf
, 48);
233 static ssize_t
ppe_store_throttle_end(struct device
*dev
,
234 struct device_attribute
*attr
, const char *buf
, size_t size
)
236 return store_throttle(cbe_get_cpu_pmd_regs(dev
->id
), buf
, size
, 32);
239 static ssize_t
ppe_store_throttle_begin(struct device
*dev
,
240 struct device_attribute
*attr
, const char *buf
, size_t size
)
242 return store_throttle(cbe_get_cpu_pmd_regs(dev
->id
), buf
, size
, 40);
245 static ssize_t
ppe_store_throttle_full_stop(struct device
*dev
,
246 struct device_attribute
*attr
, const char *buf
, size_t size
)
248 return store_throttle(cbe_get_cpu_pmd_regs(dev
->id
), buf
, size
, 48);
252 static struct device_attribute attr_spu_temperature
= {
253 .attr
= {.name
= "temperature", .mode
= 0400 },
254 .show
= spu_show_temp
,
257 static DEVICE_PREFIX_ATTR(spu
, throttle_end
, 0600);
258 static DEVICE_PREFIX_ATTR(spu
, throttle_begin
, 0600);
259 static DEVICE_PREFIX_ATTR(spu
, throttle_full_stop
, 0600);
262 static struct attribute
*spu_attributes
[] = {
263 &attr_spu_temperature
.attr
,
264 &attr_spu_throttle_end
.attr
,
265 &attr_spu_throttle_begin
.attr
,
266 &attr_spu_throttle_full_stop
.attr
,
270 static struct attribute_group spu_attribute_group
= {
272 .attrs
= spu_attributes
,
275 static struct device_attribute attr_ppe_temperature0
= {
276 .attr
= {.name
= "temperature0", .mode
= 0400 },
277 .show
= ppe_show_temp0
,
280 static struct device_attribute attr_ppe_temperature1
= {
281 .attr
= {.name
= "temperature1", .mode
= 0400 },
282 .show
= ppe_show_temp1
,
285 static DEVICE_PREFIX_ATTR(ppe
, throttle_end
, 0600);
286 static DEVICE_PREFIX_ATTR(ppe
, throttle_begin
, 0600);
287 static DEVICE_PREFIX_ATTR(ppe
, throttle_full_stop
, 0600);
289 static struct attribute
*ppe_attributes
[] = {
290 &attr_ppe_temperature0
.attr
,
291 &attr_ppe_temperature1
.attr
,
292 &attr_ppe_throttle_end
.attr
,
293 &attr_ppe_throttle_begin
.attr
,
294 &attr_ppe_throttle_full_stop
.attr
,
298 static struct attribute_group ppe_attribute_group
= {
300 .attrs
= ppe_attributes
,
304 * initialize throttling with default values
306 static int __init
init_default_values(void)
309 struct cbe_pmd_regs __iomem
*pmd_regs
;
311 union ppe_spe_reg tpr
;
320 * 08 - dynamic throttling starts if over 80 degrees
321 * 03 - dynamic throttling ceases if below 70 degrees */
324 * 10 - full stopped when over 96 degrees
325 * 08 - dynamic throttling starts if over 80 degrees
326 * 03 - dynamic throttling ceases if below 70 degrees
332 * 10 - stop 16 of 32 cycles
334 str1
.val
= 0x1010101010101010ull
;
336 * 10 - stop 16 of 32 cycles
342 * 4 - normal operation
344 cr1
.val
= 0x0404040404040404ull
;
346 * 4 - normal operation
350 for_each_possible_cpu (cpu
) {
351 pr_debug("processing cpu %d\n", cpu
);
352 dev
= get_cpu_device(cpu
);
355 pr_info("invalid dev pointer for cbe_thermal\n");
359 pmd_regs
= cbe_get_cpu_pmd_regs(dev
->id
);
362 pr_info("invalid CBE regs pointer for cbe_thermal\n");
366 out_be64(&pmd_regs
->tm_str2
, str2
);
367 out_be64(&pmd_regs
->tm_str1
.val
, str1
.val
);
368 out_be64(&pmd_regs
->tm_tpr
.val
, tpr
.val
);
369 out_be64(&pmd_regs
->tm_cr1
.val
, cr1
.val
);
370 out_be64(&pmd_regs
->tm_cr2
, cr2
);
377 static int __init
thermal_init(void)
379 int rc
= init_default_values();
382 spu_add_dev_attr_group(&spu_attribute_group
);
383 cpu_add_dev_attr_group(&ppe_attribute_group
);
388 module_init(thermal_init
);
390 static void __exit
thermal_exit(void)
392 spu_remove_dev_attr_group(&spu_attribute_group
);
393 cpu_remove_dev_attr_group(&ppe_attribute_group
);
395 module_exit(thermal_exit
);
397 MODULE_LICENSE("GPL");
398 MODULE_AUTHOR("Christian Krafft <krafft@de.ibm.com>");