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1da177e4 LT |
1 | /* |
2 | * processor_perflib.c - ACPI Processor P-States Library ($Revision: 71 $) | |
3 | * | |
4 | * Copyright (C) 2001, 2002 Andy Grover <[email protected]> | |
5 | * Copyright (C) 2001, 2002 Paul Diefenbaugh <[email protected]> | |
6 | * Copyright (C) 2004 Dominik Brodowski <[email protected]> | |
7 | * Copyright (C) 2004 Anil S Keshavamurthy <[email protected]> | |
8 | * - Added processor hotplug support | |
9 | * | |
10 | * | |
11 | * ~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~ | |
12 | * | |
13 | * This program is free software; you can redistribute it and/or modify | |
14 | * it under the terms of the GNU General Public License as published by | |
15 | * the Free Software Foundation; either version 2 of the License, or (at | |
16 | * your option) any later version. | |
17 | * | |
18 | * This program is distributed in the hope that it will be useful, but | |
19 | * WITHOUT ANY WARRANTY; without even the implied warranty of | |
20 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU | |
21 | * General Public License for more details. | |
22 | * | |
1da177e4 LT |
23 | */ |
24 | ||
1da177e4 LT |
25 | #include <linux/kernel.h> |
26 | #include <linux/module.h> | |
27 | #include <linux/init.h> | |
28 | #include <linux/cpufreq.h> | |
5a0e3ad6 | 29 | #include <linux/slab.h> |
8b48463f LZ |
30 | #include <linux/acpi.h> |
31 | #include <acpi/processor.h> | |
16be87ea | 32 | #ifdef CONFIG_X86 |
910dfae2 | 33 | #include <asm/cpufeature.h> |
16be87ea | 34 | #endif |
1da177e4 | 35 | |
a192a958 LB |
36 | #define PREFIX "ACPI: " |
37 | ||
1da177e4 | 38 | #define ACPI_PROCESSOR_CLASS "processor" |
1da177e4 LT |
39 | #define ACPI_PROCESSOR_FILE_PERFORMANCE "performance" |
40 | #define _COMPONENT ACPI_PROCESSOR_COMPONENT | |
f52fd66d | 41 | ACPI_MODULE_NAME("processor_perflib"); |
1da177e4 | 42 | |
65c19bbd | 43 | static DEFINE_MUTEX(performance_mutex); |
1da177e4 LT |
44 | |
45 | /* | |
46 | * _PPC support is implemented as a CPUfreq policy notifier: | |
47 | * This means each time a CPUfreq driver registered also with | |
48 | * the ACPI core is asked to change the speed policy, the maximum | |
49 | * value is adjusted so that it is within the platform limit. | |
50 | * | |
51 | * Also, when a new platform limit value is detected, the CPUfreq | |
52 | * policy is adjusted accordingly. | |
53 | */ | |
54 | ||
a1531acd TR |
55 | /* ignore_ppc: |
56 | * -1 -> cpufreq low level drivers not initialized -> _PSS, etc. not called yet | |
57 | * ignore _PPC | |
58 | * 0 -> cpufreq low level drivers initialized -> consider _PPC values | |
59 | * 1 -> ignore _PPC totally -> forced by user through boot param | |
60 | */ | |
9f497bcc | 61 | static int ignore_ppc = -1; |
613e5f33 | 62 | module_param(ignore_ppc, int, 0644); |
623b78c3 TR |
63 | MODULE_PARM_DESC(ignore_ppc, "If the frequency of your machine gets wrongly" \ |
64 | "limited by BIOS, this should help"); | |
65 | ||
1da177e4 LT |
66 | #define PPC_REGISTERED 1 |
67 | #define PPC_IN_USE 2 | |
68 | ||
a1531acd | 69 | static int acpi_processor_ppc_status; |
1da177e4 LT |
70 | |
71 | static int acpi_processor_ppc_notifier(struct notifier_block *nb, | |
4be44fcd | 72 | unsigned long event, void *data) |
1da177e4 LT |
73 | { |
74 | struct cpufreq_policy *policy = data; | |
75 | struct acpi_processor *pr; | |
76 | unsigned int ppc = 0; | |
77 | ||
fa29ae5f | 78 | if (ignore_ppc < 0) |
a1531acd | 79 | ignore_ppc = 0; |
a1531acd | 80 | |
623b78c3 TR |
81 | if (ignore_ppc) |
82 | return 0; | |
83 | ||
6bfb7c74 | 84 | if (event != CPUFREQ_ADJUST) |
9b67c5d4 TR |
85 | return 0; |
86 | ||
87 | mutex_lock(&performance_mutex); | |
1da177e4 | 88 | |
706546d0 | 89 | pr = per_cpu(processors, policy->cpu); |
1da177e4 LT |
90 | if (!pr || !pr->performance) |
91 | goto out; | |
92 | ||
4be44fcd | 93 | ppc = (unsigned int)pr->performance_platform_limit; |
1da177e4 | 94 | |
0916bd3e | 95 | if (ppc >= pr->performance->state_count) |
1da177e4 LT |
96 | goto out; |
97 | ||
98 | cpufreq_verify_within_limits(policy, 0, | |
4be44fcd LB |
99 | pr->performance->states[ppc]. |
100 | core_frequency * 1000); | |
1da177e4 | 101 | |
4be44fcd | 102 | out: |
65c19bbd | 103 | mutex_unlock(&performance_mutex); |
1da177e4 LT |
104 | |
105 | return 0; | |
106 | } | |
107 | ||
1da177e4 LT |
108 | static struct notifier_block acpi_ppc_notifier_block = { |
109 | .notifier_call = acpi_processor_ppc_notifier, | |
110 | }; | |
111 | ||
4be44fcd | 112 | static int acpi_processor_get_platform_limit(struct acpi_processor *pr) |
1da177e4 | 113 | { |
4be44fcd | 114 | acpi_status status = 0; |
27663c58 | 115 | unsigned long long ppc = 0; |
1da177e4 | 116 | |
1da177e4 LT |
117 | |
118 | if (!pr) | |
d550d98d | 119 | return -EINVAL; |
1da177e4 LT |
120 | |
121 | /* | |
122 | * _PPC indicates the maximum state currently supported by the platform | |
123 | * (e.g. 0 = states 0..n; 1 = states 1..n; etc. | |
124 | */ | |
125 | status = acpi_evaluate_integer(pr->handle, "_PPC", NULL, &ppc); | |
126 | ||
127 | if (status != AE_NOT_FOUND) | |
128 | acpi_processor_ppc_status |= PPC_IN_USE; | |
129 | ||
4be44fcd | 130 | if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) { |
a6fc6720 | 131 | ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PPC")); |
d550d98d | 132 | return -ENODEV; |
1da177e4 LT |
133 | } |
134 | ||
2d06d8c4 | 135 | pr_debug("CPU %d: _PPC is %d - frequency %s limited\n", pr->id, |
919158d1 TR |
136 | (int)ppc, ppc ? "" : "not"); |
137 | ||
4be44fcd | 138 | pr->performance_platform_limit = (int)ppc; |
1da177e4 | 139 | |
d550d98d | 140 | return 0; |
1da177e4 LT |
141 | } |
142 | ||
d81c45e1 ZY |
143 | #define ACPI_PROCESSOR_NOTIFY_PERFORMANCE 0x80 |
144 | /* | |
145 | * acpi_processor_ppc_ost: Notify firmware the _PPC evaluation status | |
146 | * @handle: ACPI processor handle | |
147 | * @status: the status code of _PPC evaluation | |
148 | * 0: success. OSPM is now using the performance state specificed. | |
149 | * 1: failure. OSPM has not changed the number of P-states in use | |
150 | */ | |
151 | static void acpi_processor_ppc_ost(acpi_handle handle, int status) | |
152 | { | |
4a6172a4 JL |
153 | if (acpi_has_method(handle, "_OST")) |
154 | acpi_evaluate_ost(handle, ACPI_PROCESSOR_NOTIFY_PERFORMANCE, | |
155 | status, NULL); | |
d81c45e1 ZY |
156 | } |
157 | ||
bca5f557 | 158 | void acpi_processor_ppc_has_changed(struct acpi_processor *pr, int event_flag) |
1da177e4 | 159 | { |
623b78c3 TR |
160 | int ret; |
161 | ||
ba1edb9a | 162 | if (ignore_ppc || !pr->performance) { |
d81c45e1 ZY |
163 | /* |
164 | * Only when it is notification event, the _OST object | |
165 | * will be evaluated. Otherwise it is skipped. | |
166 | */ | |
167 | if (event_flag) | |
168 | acpi_processor_ppc_ost(pr->handle, 1); | |
bca5f557 | 169 | return; |
d81c45e1 | 170 | } |
623b78c3 TR |
171 | |
172 | ret = acpi_processor_get_platform_limit(pr); | |
d81c45e1 ZY |
173 | /* |
174 | * Only when it is notification event, the _OST object | |
175 | * will be evaluated. Otherwise it is skipped. | |
176 | */ | |
177 | if (event_flag) { | |
178 | if (ret < 0) | |
179 | acpi_processor_ppc_ost(pr->handle, 1); | |
180 | else | |
181 | acpi_processor_ppc_ost(pr->handle, 0); | |
182 | } | |
bca5f557 RW |
183 | if (ret >= 0) |
184 | cpufreq_update_policy(pr->id); | |
1da177e4 LT |
185 | } |
186 | ||
e2f74f35 TR |
187 | int acpi_processor_get_bios_limit(int cpu, unsigned int *limit) |
188 | { | |
189 | struct acpi_processor *pr; | |
190 | ||
191 | pr = per_cpu(processors, cpu); | |
192 | if (!pr || !pr->performance || !pr->performance->state_count) | |
193 | return -ENODEV; | |
194 | *limit = pr->performance->states[pr->performance_platform_limit]. | |
195 | core_frequency * 1000; | |
196 | return 0; | |
197 | } | |
198 | EXPORT_SYMBOL(acpi_processor_get_bios_limit); | |
199 | ||
4be44fcd LB |
200 | void acpi_processor_ppc_init(void) |
201 | { | |
202 | if (!cpufreq_register_notifier | |
203 | (&acpi_ppc_notifier_block, CPUFREQ_POLICY_NOTIFIER)) | |
1da177e4 LT |
204 | acpi_processor_ppc_status |= PPC_REGISTERED; |
205 | else | |
4be44fcd LB |
206 | printk(KERN_DEBUG |
207 | "Warning: Processor Platform Limit not supported.\n"); | |
1da177e4 LT |
208 | } |
209 | ||
4be44fcd LB |
210 | void acpi_processor_ppc_exit(void) |
211 | { | |
1da177e4 | 212 | if (acpi_processor_ppc_status & PPC_REGISTERED) |
4be44fcd LB |
213 | cpufreq_unregister_notifier(&acpi_ppc_notifier_block, |
214 | CPUFREQ_POLICY_NOTIFIER); | |
1da177e4 LT |
215 | |
216 | acpi_processor_ppc_status &= ~PPC_REGISTERED; | |
217 | } | |
218 | ||
4be44fcd | 219 | static int acpi_processor_get_performance_control(struct acpi_processor *pr) |
1da177e4 | 220 | { |
4be44fcd LB |
221 | int result = 0; |
222 | acpi_status status = 0; | |
223 | struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL }; | |
224 | union acpi_object *pct = NULL; | |
225 | union acpi_object obj = { 0 }; | |
1da177e4 | 226 | |
1da177e4 LT |
227 | |
228 | status = acpi_evaluate_object(pr->handle, "_PCT", NULL, &buffer); | |
4be44fcd | 229 | if (ACPI_FAILURE(status)) { |
a6fc6720 | 230 | ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PCT")); |
d550d98d | 231 | return -ENODEV; |
1da177e4 LT |
232 | } |
233 | ||
4be44fcd | 234 | pct = (union acpi_object *)buffer.pointer; |
1da177e4 | 235 | if (!pct || (pct->type != ACPI_TYPE_PACKAGE) |
4be44fcd | 236 | || (pct->package.count != 2)) { |
6468463a | 237 | printk(KERN_ERR PREFIX "Invalid _PCT data\n"); |
1da177e4 LT |
238 | result = -EFAULT; |
239 | goto end; | |
240 | } | |
241 | ||
242 | /* | |
243 | * control_register | |
244 | */ | |
245 | ||
246 | obj = pct->package.elements[0]; | |
247 | ||
248 | if ((obj.type != ACPI_TYPE_BUFFER) | |
4be44fcd LB |
249 | || (obj.buffer.length < sizeof(struct acpi_pct_register)) |
250 | || (obj.buffer.pointer == NULL)) { | |
6468463a | 251 | printk(KERN_ERR PREFIX "Invalid _PCT data (control_register)\n"); |
1da177e4 LT |
252 | result = -EFAULT; |
253 | goto end; | |
254 | } | |
4be44fcd LB |
255 | memcpy(&pr->performance->control_register, obj.buffer.pointer, |
256 | sizeof(struct acpi_pct_register)); | |
1da177e4 LT |
257 | |
258 | /* | |
259 | * status_register | |
260 | */ | |
261 | ||
262 | obj = pct->package.elements[1]; | |
263 | ||
264 | if ((obj.type != ACPI_TYPE_BUFFER) | |
4be44fcd LB |
265 | || (obj.buffer.length < sizeof(struct acpi_pct_register)) |
266 | || (obj.buffer.pointer == NULL)) { | |
6468463a | 267 | printk(KERN_ERR PREFIX "Invalid _PCT data (status_register)\n"); |
1da177e4 LT |
268 | result = -EFAULT; |
269 | goto end; | |
270 | } | |
271 | ||
4be44fcd LB |
272 | memcpy(&pr->performance->status_register, obj.buffer.pointer, |
273 | sizeof(struct acpi_pct_register)); | |
1da177e4 | 274 | |
4be44fcd | 275 | end: |
02438d87 | 276 | kfree(buffer.pointer); |
1da177e4 | 277 | |
d550d98d | 278 | return result; |
1da177e4 LT |
279 | } |
280 | ||
f594065f MG |
281 | #ifdef CONFIG_X86 |
282 | /* | |
283 | * Some AMDs have 50MHz frequency multiples, but only provide 100MHz rounding | |
284 | * in their ACPI data. Calculate the real values and fix up the _PSS data. | |
285 | */ | |
286 | static void amd_fixup_frequency(struct acpi_processor_px *px, int i) | |
287 | { | |
288 | u32 hi, lo, fid, did; | |
289 | int index = px->control & 0x00000007; | |
290 | ||
291 | if (boot_cpu_data.x86_vendor != X86_VENDOR_AMD) | |
292 | return; | |
293 | ||
294 | if ((boot_cpu_data.x86 == 0x10 && boot_cpu_data.x86_model < 10) | |
295 | || boot_cpu_data.x86 == 0x11) { | |
296 | rdmsr(MSR_AMD_PSTATE_DEF_BASE + index, lo, hi); | |
9855d8ce SB |
297 | /* |
298 | * MSR C001_0064+: | |
299 | * Bit 63: PstateEn. Read-write. If set, the P-state is valid. | |
300 | */ | |
301 | if (!(hi & BIT(31))) | |
302 | return; | |
303 | ||
f594065f MG |
304 | fid = lo & 0x3f; |
305 | did = (lo >> 6) & 7; | |
306 | if (boot_cpu_data.x86 == 0x10) | |
307 | px->core_frequency = (100 * (fid + 0x10)) >> did; | |
308 | else | |
309 | px->core_frequency = (100 * (fid + 8)) >> did; | |
310 | } | |
311 | } | |
312 | #else | |
313 | static void amd_fixup_frequency(struct acpi_processor_px *px, int i) {}; | |
314 | #endif | |
315 | ||
4be44fcd | 316 | static int acpi_processor_get_performance_states(struct acpi_processor *pr) |
1da177e4 | 317 | { |
4be44fcd LB |
318 | int result = 0; |
319 | acpi_status status = AE_OK; | |
320 | struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL }; | |
321 | struct acpi_buffer format = { sizeof("NNNNNN"), "NNNNNN" }; | |
322 | struct acpi_buffer state = { 0, NULL }; | |
323 | union acpi_object *pss = NULL; | |
324 | int i; | |
d8e725f3 | 325 | int last_invalid = -1; |
1da177e4 | 326 | |
1da177e4 LT |
327 | |
328 | status = acpi_evaluate_object(pr->handle, "_PSS", NULL, &buffer); | |
4be44fcd | 329 | if (ACPI_FAILURE(status)) { |
a6fc6720 | 330 | ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PSS")); |
d550d98d | 331 | return -ENODEV; |
1da177e4 LT |
332 | } |
333 | ||
50dd0969 | 334 | pss = buffer.pointer; |
1da177e4 | 335 | if (!pss || (pss->type != ACPI_TYPE_PACKAGE)) { |
6468463a | 336 | printk(KERN_ERR PREFIX "Invalid _PSS data\n"); |
1da177e4 LT |
337 | result = -EFAULT; |
338 | goto end; | |
339 | } | |
340 | ||
341 | ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found %d performance states\n", | |
4be44fcd | 342 | pss->package.count)); |
1da177e4 LT |
343 | |
344 | pr->performance->state_count = pss->package.count; | |
4be44fcd | 345 | pr->performance->states = |
6da2ec56 KC |
346 | kmalloc_array(pss->package.count, |
347 | sizeof(struct acpi_processor_px), | |
348 | GFP_KERNEL); | |
1da177e4 LT |
349 | if (!pr->performance->states) { |
350 | result = -ENOMEM; | |
351 | goto end; | |
352 | } | |
353 | ||
354 | for (i = 0; i < pr->performance->state_count; i++) { | |
355 | ||
356 | struct acpi_processor_px *px = &(pr->performance->states[i]); | |
357 | ||
358 | state.length = sizeof(struct acpi_processor_px); | |
359 | state.pointer = px; | |
360 | ||
361 | ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Extracting state %d\n", i)); | |
362 | ||
363 | status = acpi_extract_package(&(pss->package.elements[i]), | |
4be44fcd | 364 | &format, &state); |
1da177e4 | 365 | if (ACPI_FAILURE(status)) { |
a6fc6720 | 366 | ACPI_EXCEPTION((AE_INFO, status, "Invalid _PSS data")); |
1da177e4 LT |
367 | result = -EFAULT; |
368 | kfree(pr->performance->states); | |
369 | goto end; | |
370 | } | |
371 | ||
f594065f MG |
372 | amd_fixup_frequency(px, i); |
373 | ||
1da177e4 | 374 | ACPI_DEBUG_PRINT((ACPI_DB_INFO, |
4be44fcd LB |
375 | "State [%d]: core_frequency[%d] power[%d] transition_latency[%d] bus_master_latency[%d] control[0x%x] status[0x%x]\n", |
376 | i, | |
377 | (u32) px->core_frequency, | |
378 | (u32) px->power, | |
379 | (u32) px->transition_latency, | |
380 | (u32) px->bus_master_latency, | |
381 | (u32) px->control, (u32) px->status)); | |
1da177e4 | 382 | |
34d531e6 LB |
383 | /* |
384 | * Check that ACPI's u64 MHz will be valid as u32 KHz in cpufreq | |
385 | */ | |
386 | if (!px->core_frequency || | |
387 | ((u32)(px->core_frequency * 1000) != | |
388 | (px->core_frequency * 1000))) { | |
389 | printk(KERN_ERR FW_BUG PREFIX | |
d8e725f3 MAC |
390 | "Invalid BIOS _PSS frequency found for processor %d: 0x%llx MHz\n", |
391 | pr->id, px->core_frequency); | |
392 | if (last_invalid == -1) | |
393 | last_invalid = i; | |
394 | } else { | |
395 | if (last_invalid != -1) { | |
396 | /* | |
397 | * Copy this valid entry over last_invalid entry | |
398 | */ | |
399 | memcpy(&(pr->performance->states[last_invalid]), | |
400 | px, sizeof(struct acpi_processor_px)); | |
401 | ++last_invalid; | |
402 | } | |
1da177e4 LT |
403 | } |
404 | } | |
405 | ||
d8e725f3 MAC |
406 | if (last_invalid == 0) { |
407 | printk(KERN_ERR FW_BUG PREFIX | |
408 | "No valid BIOS _PSS frequency found for processor %d\n", pr->id); | |
409 | result = -EFAULT; | |
410 | kfree(pr->performance->states); | |
411 | pr->performance->states = NULL; | |
412 | } | |
413 | ||
414 | if (last_invalid > 0) | |
415 | pr->performance->state_count = last_invalid; | |
416 | ||
4be44fcd | 417 | end: |
02438d87 | 418 | kfree(buffer.pointer); |
1da177e4 | 419 | |
d550d98d | 420 | return result; |
1da177e4 LT |
421 | } |
422 | ||
c705c78c | 423 | int acpi_processor_get_performance_info(struct acpi_processor *pr) |
1da177e4 | 424 | { |
4be44fcd | 425 | int result = 0; |
1da177e4 | 426 | |
1da177e4 | 427 | if (!pr || !pr->performance || !pr->handle) |
d550d98d | 428 | return -EINVAL; |
1da177e4 | 429 | |
952c63e9 | 430 | if (!acpi_has_method(pr->handle, "_PCT")) { |
1da177e4 | 431 | ACPI_DEBUG_PRINT((ACPI_DB_INFO, |
4be44fcd | 432 | "ACPI-based processor performance control unavailable\n")); |
d550d98d | 433 | return -ENODEV; |
1da177e4 LT |
434 | } |
435 | ||
436 | result = acpi_processor_get_performance_control(pr); | |
437 | if (result) | |
910dfae2 | 438 | goto update_bios; |
1da177e4 LT |
439 | |
440 | result = acpi_processor_get_performance_states(pr); | |
441 | if (result) | |
910dfae2 | 442 | goto update_bios; |
1da177e4 | 443 | |
455c0d71 DW |
444 | /* We need to call _PPC once when cpufreq starts */ |
445 | if (ignore_ppc != 1) | |
446 | result = acpi_processor_get_platform_limit(pr); | |
447 | ||
448 | return result; | |
910dfae2 TR |
449 | |
450 | /* | |
451 | * Having _PPC but missing frequencies (_PSS, _PCT) is a very good hint that | |
452 | * the BIOS is older than the CPU and does not know its frequencies | |
453 | */ | |
454 | update_bios: | |
16be87ea | 455 | #ifdef CONFIG_X86 |
952c63e9 | 456 | if (acpi_has_method(pr->handle, "_PPC")) { |
910dfae2 TR |
457 | if(boot_cpu_has(X86_FEATURE_EST)) |
458 | printk(KERN_WARNING FW_BUG "BIOS needs update for CPU " | |
459 | "frequency support\n"); | |
460 | } | |
16be87ea | 461 | #endif |
910dfae2 | 462 | return result; |
1da177e4 | 463 | } |
c705c78c | 464 | EXPORT_SYMBOL_GPL(acpi_processor_get_performance_info); |
d0ea59e1 RW |
465 | |
466 | int acpi_processor_pstate_control(void) | |
4be44fcd LB |
467 | { |
468 | acpi_status status; | |
1da177e4 | 469 | |
d0ea59e1 RW |
470 | if (!acpi_gbl_FADT.smi_command || !acpi_gbl_FADT.pstate_control) |
471 | return 0; | |
472 | ||
473 | ACPI_DEBUG_PRINT((ACPI_DB_INFO, | |
474 | "Writing pstate_control [0x%x] to smi_command [0x%x]\n", | |
475 | acpi_gbl_FADT.pstate_control, acpi_gbl_FADT.smi_command)); | |
476 | ||
477 | status = acpi_os_write_port(acpi_gbl_FADT.smi_command, | |
478 | (u32)acpi_gbl_FADT.pstate_control, 8); | |
479 | if (ACPI_SUCCESS(status)) | |
480 | return 1; | |
481 | ||
482 | ACPI_EXCEPTION((AE_INFO, status, | |
483 | "Failed to write pstate_control [0x%x] to smi_command [0x%x]", | |
484 | acpi_gbl_FADT.pstate_control, acpi_gbl_FADT.smi_command)); | |
485 | return -EIO; | |
486 | } | |
487 | ||
488 | int acpi_processor_notify_smm(struct module *calling_module) | |
489 | { | |
490 | static int is_done = 0; | |
491 | int result; | |
1da177e4 LT |
492 | |
493 | if (!(acpi_processor_ppc_status & PPC_REGISTERED)) | |
d550d98d | 494 | return -EBUSY; |
1da177e4 LT |
495 | |
496 | if (!try_module_get(calling_module)) | |
d550d98d | 497 | return -EINVAL; |
1da177e4 | 498 | |
58f87ed0 LDM |
499 | /* is_done is set to negative if an error occurred, |
500 | * and to postitive if _no_ error occurred, but SMM | |
1da177e4 LT |
501 | * was already notified. This avoids double notification |
502 | * which might lead to unexpected results... | |
503 | */ | |
504 | if (is_done > 0) { | |
505 | module_put(calling_module); | |
d550d98d | 506 | return 0; |
4be44fcd | 507 | } else if (is_done < 0) { |
1da177e4 | 508 | module_put(calling_module); |
d550d98d | 509 | return is_done; |
1da177e4 LT |
510 | } |
511 | ||
512 | is_done = -EIO; | |
513 | ||
d0ea59e1 RW |
514 | result = acpi_processor_pstate_control(); |
515 | if (!result) { | |
ad71860a | 516 | ACPI_DEBUG_PRINT((ACPI_DB_INFO, "No SMI port or pstate_control\n")); |
1da177e4 | 517 | module_put(calling_module); |
d550d98d | 518 | return 0; |
1da177e4 | 519 | } |
d0ea59e1 | 520 | if (result < 0) { |
1da177e4 | 521 | module_put(calling_module); |
d0ea59e1 | 522 | return result; |
1da177e4 LT |
523 | } |
524 | ||
525 | /* Success. If there's no _PPC, we need to fear nothing, so | |
526 | * we can allow the cpufreq driver to be rmmod'ed. */ | |
527 | is_done = 1; | |
528 | ||
529 | if (!(acpi_processor_ppc_status & PPC_IN_USE)) | |
530 | module_put(calling_module); | |
531 | ||
d550d98d | 532 | return 0; |
1da177e4 | 533 | } |
1da177e4 | 534 | |
4be44fcd | 535 | EXPORT_SYMBOL(acpi_processor_notify_smm); |
1da177e4 | 536 | |
4d0f1ce6 | 537 | int acpi_processor_get_psd(acpi_handle handle, struct acpi_psd_package *pdomain) |
3b2d9942 VP |
538 | { |
539 | int result = 0; | |
540 | acpi_status status = AE_OK; | |
541 | struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL}; | |
542 | struct acpi_buffer format = {sizeof("NNNNN"), "NNNNN"}; | |
543 | struct acpi_buffer state = {0, NULL}; | |
544 | union acpi_object *psd = NULL; | |
3b2d9942 | 545 | |
4d0f1ce6 | 546 | status = acpi_evaluate_object(handle, "_PSD", NULL, &buffer); |
3b2d9942 | 547 | if (ACPI_FAILURE(status)) { |
9011bff4 | 548 | return -ENODEV; |
3b2d9942 VP |
549 | } |
550 | ||
50dd0969 | 551 | psd = buffer.pointer; |
3b2d9942 | 552 | if (!psd || (psd->type != ACPI_TYPE_PACKAGE)) { |
55ac9a01 | 553 | printk(KERN_ERR PREFIX "Invalid _PSD data\n"); |
3b2d9942 VP |
554 | result = -EFAULT; |
555 | goto end; | |
556 | } | |
557 | ||
558 | if (psd->package.count != 1) { | |
55ac9a01 | 559 | printk(KERN_ERR PREFIX "Invalid _PSD data\n"); |
3b2d9942 VP |
560 | result = -EFAULT; |
561 | goto end; | |
562 | } | |
563 | ||
3b2d9942 VP |
564 | state.length = sizeof(struct acpi_psd_package); |
565 | state.pointer = pdomain; | |
566 | ||
567 | status = acpi_extract_package(&(psd->package.elements[0]), | |
568 | &format, &state); | |
569 | if (ACPI_FAILURE(status)) { | |
55ac9a01 | 570 | printk(KERN_ERR PREFIX "Invalid _PSD data\n"); |
3b2d9942 VP |
571 | result = -EFAULT; |
572 | goto end; | |
573 | } | |
574 | ||
575 | if (pdomain->num_entries != ACPI_PSD_REV0_ENTRIES) { | |
55ac9a01 | 576 | printk(KERN_ERR PREFIX "Unknown _PSD:num_entries\n"); |
3b2d9942 VP |
577 | result = -EFAULT; |
578 | goto end; | |
579 | } | |
580 | ||
581 | if (pdomain->revision != ACPI_PSD_REV0_REVISION) { | |
55ac9a01 | 582 | printk(KERN_ERR PREFIX "Unknown _PSD:revision\n"); |
3b2d9942 VP |
583 | result = -EFAULT; |
584 | goto end; | |
585 | } | |
586 | ||
e1eb4779 SG |
587 | if (pdomain->coord_type != DOMAIN_COORD_TYPE_SW_ALL && |
588 | pdomain->coord_type != DOMAIN_COORD_TYPE_SW_ANY && | |
589 | pdomain->coord_type != DOMAIN_COORD_TYPE_HW_ALL) { | |
590 | printk(KERN_ERR PREFIX "Invalid _PSD:coord_type\n"); | |
591 | result = -EFAULT; | |
592 | goto end; | |
593 | } | |
3b2d9942 | 594 | end: |
02438d87 | 595 | kfree(buffer.pointer); |
9011bff4 | 596 | return result; |
3b2d9942 | 597 | } |
4d0f1ce6 | 598 | EXPORT_SYMBOL(acpi_processor_get_psd); |
3b2d9942 VP |
599 | |
600 | int acpi_processor_preregister_performance( | |
a29d8b8e | 601 | struct acpi_processor_performance __percpu *performance) |
3b2d9942 | 602 | { |
09d5ca80 | 603 | int count_target; |
3b2d9942 VP |
604 | int retval = 0; |
605 | unsigned int i, j; | |
2fdf66b4 | 606 | cpumask_var_t covered_cpus; |
3b2d9942 VP |
607 | struct acpi_processor *pr; |
608 | struct acpi_psd_package *pdomain; | |
609 | struct acpi_processor *match_pr; | |
610 | struct acpi_psd_package *match_pdomain; | |
611 | ||
79f55997 | 612 | if (!zalloc_cpumask_var(&covered_cpus, GFP_KERNEL)) |
2fdf66b4 RR |
613 | return -ENOMEM; |
614 | ||
785fcccd | 615 | mutex_lock(&performance_mutex); |
3b2d9942 | 616 | |
e1eb4779 SG |
617 | /* |
618 | * Check if another driver has already registered, and abort before | |
619 | * changing pr->performance if it has. Check input data as well. | |
620 | */ | |
193de0c7 | 621 | for_each_possible_cpu(i) { |
706546d0 | 622 | pr = per_cpu(processors, i); |
3b2d9942 VP |
623 | if (!pr) { |
624 | /* Look only at processors in ACPI namespace */ | |
625 | continue; | |
626 | } | |
627 | ||
628 | if (pr->performance) { | |
629 | retval = -EBUSY; | |
e1eb4779 | 630 | goto err_out; |
3b2d9942 VP |
631 | } |
632 | ||
b36128c8 | 633 | if (!performance || !per_cpu_ptr(performance, i)) { |
3b2d9942 | 634 | retval = -EINVAL; |
e1eb4779 | 635 | goto err_out; |
3b2d9942 | 636 | } |
e1eb4779 SG |
637 | } |
638 | ||
639 | /* Call _PSD for all CPUs */ | |
640 | for_each_possible_cpu(i) { | |
641 | pr = per_cpu(processors, i); | |
642 | if (!pr) | |
643 | continue; | |
3b2d9942 | 644 | |
b36128c8 | 645 | pr->performance = per_cpu_ptr(performance, i); |
2fdf66b4 | 646 | cpumask_set_cpu(i, pr->performance->shared_cpu_map); |
4d0f1ce6 JM |
647 | pdomain = &(pr->performance->domain_info); |
648 | if (acpi_processor_get_psd(pr->handle, pdomain)) { | |
3b2d9942 VP |
649 | retval = -EINVAL; |
650 | continue; | |
651 | } | |
652 | } | |
653 | if (retval) | |
654 | goto err_ret; | |
655 | ||
656 | /* | |
657 | * Now that we have _PSD data from all CPUs, lets setup P-state | |
658 | * domain info. | |
659 | */ | |
193de0c7 | 660 | for_each_possible_cpu(i) { |
706546d0 | 661 | pr = per_cpu(processors, i); |
3b2d9942 VP |
662 | if (!pr) |
663 | continue; | |
664 | ||
2fdf66b4 | 665 | if (cpumask_test_cpu(i, covered_cpus)) |
3b2d9942 VP |
666 | continue; |
667 | ||
668 | pdomain = &(pr->performance->domain_info); | |
2fdf66b4 RR |
669 | cpumask_set_cpu(i, pr->performance->shared_cpu_map); |
670 | cpumask_set_cpu(i, covered_cpus); | |
3b2d9942 VP |
671 | if (pdomain->num_processors <= 1) |
672 | continue; | |
673 | ||
674 | /* Validate the Domain info */ | |
675 | count_target = pdomain->num_processors; | |
46f18e3a | 676 | if (pdomain->coord_type == DOMAIN_COORD_TYPE_SW_ALL) |
3b2d9942 | 677 | pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ALL; |
46f18e3a VP |
678 | else if (pdomain->coord_type == DOMAIN_COORD_TYPE_HW_ALL) |
679 | pr->performance->shared_type = CPUFREQ_SHARED_TYPE_HW; | |
680 | else if (pdomain->coord_type == DOMAIN_COORD_TYPE_SW_ANY) | |
3b2d9942 | 681 | pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ANY; |
3b2d9942 | 682 | |
193de0c7 | 683 | for_each_possible_cpu(j) { |
3b2d9942 VP |
684 | if (i == j) |
685 | continue; | |
686 | ||
706546d0 | 687 | match_pr = per_cpu(processors, j); |
3b2d9942 VP |
688 | if (!match_pr) |
689 | continue; | |
690 | ||
691 | match_pdomain = &(match_pr->performance->domain_info); | |
692 | if (match_pdomain->domain != pdomain->domain) | |
693 | continue; | |
694 | ||
695 | /* Here i and j are in the same domain */ | |
696 | ||
697 | if (match_pdomain->num_processors != count_target) { | |
698 | retval = -EINVAL; | |
699 | goto err_ret; | |
700 | } | |
701 | ||
702 | if (pdomain->coord_type != match_pdomain->coord_type) { | |
703 | retval = -EINVAL; | |
704 | goto err_ret; | |
705 | } | |
706 | ||
2fdf66b4 RR |
707 | cpumask_set_cpu(j, covered_cpus); |
708 | cpumask_set_cpu(j, pr->performance->shared_cpu_map); | |
3b2d9942 VP |
709 | } |
710 | ||
193de0c7 | 711 | for_each_possible_cpu(j) { |
3b2d9942 VP |
712 | if (i == j) |
713 | continue; | |
714 | ||
706546d0 | 715 | match_pr = per_cpu(processors, j); |
3b2d9942 VP |
716 | if (!match_pr) |
717 | continue; | |
718 | ||
719 | match_pdomain = &(match_pr->performance->domain_info); | |
720 | if (match_pdomain->domain != pdomain->domain) | |
721 | continue; | |
722 | ||
723 | match_pr->performance->shared_type = | |
724 | pr->performance->shared_type; | |
2fdf66b4 RR |
725 | cpumask_copy(match_pr->performance->shared_cpu_map, |
726 | pr->performance->shared_cpu_map); | |
3b2d9942 VP |
727 | } |
728 | } | |
729 | ||
730 | err_ret: | |
193de0c7 | 731 | for_each_possible_cpu(i) { |
706546d0 | 732 | pr = per_cpu(processors, i); |
3b2d9942 VP |
733 | if (!pr || !pr->performance) |
734 | continue; | |
735 | ||
736 | /* Assume no coordination on any error parsing domain info */ | |
737 | if (retval) { | |
2fdf66b4 RR |
738 | cpumask_clear(pr->performance->shared_cpu_map); |
739 | cpumask_set_cpu(i, pr->performance->shared_cpu_map); | |
3b2d9942 VP |
740 | pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ALL; |
741 | } | |
742 | pr->performance = NULL; /* Will be set for real in register */ | |
743 | } | |
744 | ||
e1eb4779 | 745 | err_out: |
785fcccd | 746 | mutex_unlock(&performance_mutex); |
2fdf66b4 | 747 | free_cpumask_var(covered_cpus); |
9011bff4 | 748 | return retval; |
3b2d9942 VP |
749 | } |
750 | EXPORT_SYMBOL(acpi_processor_preregister_performance); | |
751 | ||
1da177e4 | 752 | int |
4be44fcd LB |
753 | acpi_processor_register_performance(struct acpi_processor_performance |
754 | *performance, unsigned int cpu) | |
1da177e4 LT |
755 | { |
756 | struct acpi_processor *pr; | |
757 | ||
1da177e4 | 758 | if (!(acpi_processor_ppc_status & PPC_REGISTERED)) |
d550d98d | 759 | return -EINVAL; |
1da177e4 | 760 | |
65c19bbd | 761 | mutex_lock(&performance_mutex); |
1da177e4 | 762 | |
706546d0 | 763 | pr = per_cpu(processors, cpu); |
1da177e4 | 764 | if (!pr) { |
65c19bbd | 765 | mutex_unlock(&performance_mutex); |
d550d98d | 766 | return -ENODEV; |
1da177e4 LT |
767 | } |
768 | ||
769 | if (pr->performance) { | |
65c19bbd | 770 | mutex_unlock(&performance_mutex); |
d550d98d | 771 | return -EBUSY; |
1da177e4 LT |
772 | } |
773 | ||
a913f507 AM |
774 | WARN_ON(!performance); |
775 | ||
1da177e4 LT |
776 | pr->performance = performance; |
777 | ||
778 | if (acpi_processor_get_performance_info(pr)) { | |
779 | pr->performance = NULL; | |
65c19bbd | 780 | mutex_unlock(&performance_mutex); |
d550d98d | 781 | return -EIO; |
1da177e4 LT |
782 | } |
783 | ||
65c19bbd | 784 | mutex_unlock(&performance_mutex); |
d550d98d | 785 | return 0; |
1da177e4 | 786 | } |
1da177e4 | 787 | |
4be44fcd | 788 | EXPORT_SYMBOL(acpi_processor_register_performance); |
1da177e4 | 789 | |
b2f8dc4c | 790 | void acpi_processor_unregister_performance(unsigned int cpu) |
1da177e4 LT |
791 | { |
792 | struct acpi_processor *pr; | |
793 | ||
65c19bbd | 794 | mutex_lock(&performance_mutex); |
1da177e4 | 795 | |
706546d0 | 796 | pr = per_cpu(processors, cpu); |
1da177e4 | 797 | if (!pr) { |
65c19bbd | 798 | mutex_unlock(&performance_mutex); |
d550d98d | 799 | return; |
1da177e4 LT |
800 | } |
801 | ||
a913f507 AM |
802 | if (pr->performance) |
803 | kfree(pr->performance->states); | |
1da177e4 LT |
804 | pr->performance = NULL; |
805 | ||
65c19bbd | 806 | mutex_unlock(&performance_mutex); |
1da177e4 | 807 | |
d550d98d | 808 | return; |
1da177e4 | 809 | } |
4be44fcd | 810 | |
1da177e4 | 811 | EXPORT_SYMBOL(acpi_processor_unregister_performance); |