2 * This file provides the ACPI based P-state support. This
3 * module works with generic cpufreq infrastructure. Most of
4 * the code is based on i386 version
5 * (arch/i386/kernel/cpu/cpufreq/acpi-cpufreq.c)
7 * Copyright (C) 2005 Intel Corp
8 * Venkatesh Pallipadi <venkatesh.pallipadi@intel.com>
11 #include <linux/kernel.h>
12 #include <linux/slab.h>
13 #include <linux/module.h>
14 #include <linux/init.h>
15 #include <linux/cpufreq.h>
16 #include <linux/proc_fs.h>
17 #include <linux/seq_file.h>
19 #include <asm/uaccess.h>
22 #include <linux/acpi.h>
23 #include <acpi/processor.h>
25 MODULE_AUTHOR("Venkatesh Pallipadi");
26 MODULE_DESCRIPTION("ACPI Processor P-States Driver");
27 MODULE_LICENSE("GPL");
30 struct cpufreq_acpi_io
{
31 struct acpi_processor_performance acpi_data
;
32 struct cpufreq_frequency_table
*freq_table
;
36 static struct cpufreq_acpi_io
*acpi_io_data
[NR_CPUS
];
38 static struct cpufreq_driver acpi_cpufreq_driver
;
42 processor_set_pstate (
47 pr_debug("processor_set_pstate\n");
49 retval
= ia64_pal_set_pstate((u64
)value
);
52 pr_debug("Failed to set freq to 0x%x, with error 0x%lx\n",
61 processor_get_pstate (
67 pr_debug("processor_get_pstate\n");
69 retval
= ia64_pal_get_pstate(&pstate_index
,
70 PAL_GET_PSTATE_TYPE_INSTANT
);
71 *value
= (u32
) pstate_index
;
74 pr_debug("Failed to get current freq with "
75 "error 0x%lx, idx 0x%x\n", retval
, *value
);
81 /* To be used only after data->acpi_data is initialized */
84 struct cpufreq_acpi_io
*data
,
90 pr_debug("extract_clock\n");
92 for (i
= 0; i
< data
->acpi_data
.state_count
; i
++) {
93 if (value
== data
->acpi_data
.states
[i
].status
)
94 return data
->acpi_data
.states
[i
].core_frequency
;
96 return data
->acpi_data
.states
[i
-1].core_frequency
;
102 struct cpufreq_acpi_io
*data
,
107 cpumask_t saved_mask
;
108 unsigned long clock_freq
;
110 pr_debug("processor_get_freq\n");
112 saved_mask
= current
->cpus_allowed
;
113 set_cpus_allowed_ptr(current
, cpumask_of(cpu
));
114 if (smp_processor_id() != cpu
)
117 /* processor_get_pstate gets the instantaneous frequency */
118 ret
= processor_get_pstate(&value
);
121 set_cpus_allowed_ptr(current
, &saved_mask
);
122 printk(KERN_WARNING
"get performance failed with error %d\n",
127 clock_freq
= extract_clock(data
, value
, cpu
);
128 ret
= (clock_freq
*1000);
131 set_cpus_allowed_ptr(current
, &saved_mask
);
138 struct cpufreq_acpi_io
*data
,
139 struct cpufreq_policy
*policy
,
144 struct cpufreq_freqs cpufreq_freqs
;
145 cpumask_t saved_mask
;
148 pr_debug("processor_set_freq\n");
150 saved_mask
= current
->cpus_allowed
;
151 set_cpus_allowed_ptr(current
, cpumask_of(policy
->cpu
));
152 if (smp_processor_id() != policy
->cpu
) {
157 if (state
== data
->acpi_data
.state
) {
158 if (unlikely(data
->resume
)) {
159 pr_debug("Called after resume, resetting to P%d\n", state
);
162 pr_debug("Already at target state (P%d)\n", state
);
168 pr_debug("Transitioning from P%d to P%d\n",
169 data
->acpi_data
.state
, state
);
171 /* cpufreq frequency struct */
172 cpufreq_freqs
.old
= data
->freq_table
[data
->acpi_data
.state
].frequency
;
173 cpufreq_freqs
.new = data
->freq_table
[state
].frequency
;
176 cpufreq_notify_transition(policy
, &cpufreq_freqs
, CPUFREQ_PRECHANGE
);
179 * First we write the target state's 'control' value to the
183 value
= (u32
) data
->acpi_data
.states
[state
].control
;
185 pr_debug("Transitioning to state: 0x%08x\n", value
);
187 ret
= processor_set_pstate(value
);
189 unsigned int tmp
= cpufreq_freqs
.new;
190 cpufreq_notify_transition(policy
, &cpufreq_freqs
,
192 cpufreq_freqs
.new = cpufreq_freqs
.old
;
193 cpufreq_freqs
.old
= tmp
;
194 cpufreq_notify_transition(policy
, &cpufreq_freqs
,
196 cpufreq_notify_transition(policy
, &cpufreq_freqs
,
198 printk(KERN_WARNING
"Transition failed with error %d\n", ret
);
203 cpufreq_notify_transition(policy
, &cpufreq_freqs
, CPUFREQ_POSTCHANGE
);
205 data
->acpi_data
.state
= state
;
210 set_cpus_allowed_ptr(current
, &saved_mask
);
219 struct cpufreq_acpi_io
*data
= acpi_io_data
[cpu
];
221 pr_debug("acpi_cpufreq_get\n");
223 return processor_get_freq(data
, cpu
);
228 acpi_cpufreq_target (
229 struct cpufreq_policy
*policy
,
230 unsigned int target_freq
,
231 unsigned int relation
)
233 struct cpufreq_acpi_io
*data
= acpi_io_data
[policy
->cpu
];
234 unsigned int next_state
= 0;
235 unsigned int result
= 0;
237 pr_debug("acpi_cpufreq_setpolicy\n");
239 result
= cpufreq_frequency_table_target(policy
,
240 data
->freq_table
, target_freq
, relation
, &next_state
);
244 result
= processor_set_freq(data
, policy
, next_state
);
251 acpi_cpufreq_verify (
252 struct cpufreq_policy
*policy
)
254 unsigned int result
= 0;
255 struct cpufreq_acpi_io
*data
= acpi_io_data
[policy
->cpu
];
257 pr_debug("acpi_cpufreq_verify\n");
259 result
= cpufreq_frequency_table_verify(policy
,
267 acpi_cpufreq_cpu_init (
268 struct cpufreq_policy
*policy
)
271 unsigned int cpu
= policy
->cpu
;
272 struct cpufreq_acpi_io
*data
;
273 unsigned int result
= 0;
275 pr_debug("acpi_cpufreq_cpu_init\n");
277 data
= kzalloc(sizeof(struct cpufreq_acpi_io
), GFP_KERNEL
);
281 acpi_io_data
[cpu
] = data
;
283 result
= acpi_processor_register_performance(&data
->acpi_data
, cpu
);
288 /* capability check */
289 if (data
->acpi_data
.state_count
<= 1) {
290 pr_debug("No P-States\n");
295 if ((data
->acpi_data
.control_register
.space_id
!=
296 ACPI_ADR_SPACE_FIXED_HARDWARE
) ||
297 (data
->acpi_data
.status_register
.space_id
!=
298 ACPI_ADR_SPACE_FIXED_HARDWARE
)) {
299 pr_debug("Unsupported address space [%d, %d]\n",
300 (u32
) (data
->acpi_data
.control_register
.space_id
),
301 (u32
) (data
->acpi_data
.status_register
.space_id
));
306 /* alloc freq_table */
307 data
->freq_table
= kmalloc(sizeof(struct cpufreq_frequency_table
) *
308 (data
->acpi_data
.state_count
+ 1),
310 if (!data
->freq_table
) {
315 /* detect transition latency */
316 policy
->cpuinfo
.transition_latency
= 0;
317 for (i
=0; i
<data
->acpi_data
.state_count
; i
++) {
318 if ((data
->acpi_data
.states
[i
].transition_latency
* 1000) >
319 policy
->cpuinfo
.transition_latency
) {
320 policy
->cpuinfo
.transition_latency
=
321 data
->acpi_data
.states
[i
].transition_latency
* 1000;
324 policy
->cur
= processor_get_freq(data
, policy
->cpu
);
327 for (i
= 0; i
<= data
->acpi_data
.state_count
; i
++)
329 data
->freq_table
[i
].index
= i
;
330 if (i
< data
->acpi_data
.state_count
) {
331 data
->freq_table
[i
].frequency
=
332 data
->acpi_data
.states
[i
].core_frequency
* 1000;
334 data
->freq_table
[i
].frequency
= CPUFREQ_TABLE_END
;
338 result
= cpufreq_frequency_table_cpuinfo(policy
, data
->freq_table
);
343 /* notify BIOS that we exist */
344 acpi_processor_notify_smm(THIS_MODULE
);
346 printk(KERN_INFO
"acpi-cpufreq: CPU%u - ACPI performance management "
347 "activated.\n", cpu
);
349 for (i
= 0; i
< data
->acpi_data
.state_count
; i
++)
350 pr_debug(" %cP%d: %d MHz, %d mW, %d uS, %d uS, 0x%x 0x%x\n",
351 (i
== data
->acpi_data
.state
?'*':' '), i
,
352 (u32
) data
->acpi_data
.states
[i
].core_frequency
,
353 (u32
) data
->acpi_data
.states
[i
].power
,
354 (u32
) data
->acpi_data
.states
[i
].transition_latency
,
355 (u32
) data
->acpi_data
.states
[i
].bus_master_latency
,
356 (u32
) data
->acpi_data
.states
[i
].status
,
357 (u32
) data
->acpi_data
.states
[i
].control
);
359 cpufreq_frequency_table_get_attr(data
->freq_table
, policy
->cpu
);
361 /* the first call to ->target() should result in us actually
362 * writing something to the appropriate registers. */
368 kfree(data
->freq_table
);
370 acpi_processor_unregister_performance(&data
->acpi_data
, cpu
);
373 acpi_io_data
[cpu
] = NULL
;
380 acpi_cpufreq_cpu_exit (
381 struct cpufreq_policy
*policy
)
383 struct cpufreq_acpi_io
*data
= acpi_io_data
[policy
->cpu
];
385 pr_debug("acpi_cpufreq_cpu_exit\n");
388 cpufreq_frequency_table_put_attr(policy
->cpu
);
389 acpi_io_data
[policy
->cpu
] = NULL
;
390 acpi_processor_unregister_performance(&data
->acpi_data
,
399 static struct freq_attr
* acpi_cpufreq_attr
[] = {
400 &cpufreq_freq_attr_scaling_available_freqs
,
405 static struct cpufreq_driver acpi_cpufreq_driver
= {
406 .verify
= acpi_cpufreq_verify
,
407 .target
= acpi_cpufreq_target
,
408 .get
= acpi_cpufreq_get
,
409 .init
= acpi_cpufreq_cpu_init
,
410 .exit
= acpi_cpufreq_cpu_exit
,
411 .name
= "acpi-cpufreq",
412 .owner
= THIS_MODULE
,
413 .attr
= acpi_cpufreq_attr
,
418 acpi_cpufreq_init (void)
420 pr_debug("acpi_cpufreq_init\n");
422 return cpufreq_register_driver(&acpi_cpufreq_driver
);
427 acpi_cpufreq_exit (void)
429 pr_debug("acpi_cpufreq_exit\n");
431 cpufreq_unregister_driver(&acpi_cpufreq_driver
);
436 late_initcall(acpi_cpufreq_init
);
437 module_exit(acpi_cpufreq_exit
);