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v6.13.7
  1// SPDX-License-Identifier: GPL-2.0-or-later
  2/*
  3 * processor_perflib.c - ACPI Processor P-States Library ($Revision: 71 $)
  4 *
  5 *  Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
  6 *  Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
  7 *  Copyright (C) 2004       Dominik Brodowski <linux@brodo.de>
  8 *  Copyright (C) 2004  Anil S Keshavamurthy <anil.s.keshavamurthy@intel.com>
  9 *  			- Added processor hotplug support
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 10 */
 11
 12#define pr_fmt(fmt) "ACPI: " fmt
 13
 14#include <linux/kernel.h>
 15#include <linux/module.h>
 16#include <linux/init.h>
 17#include <linux/cpufreq.h>
 18#include <linux/slab.h>
 19#include <linux/acpi.h>
 20#include <acpi/processor.h>
 21#ifdef CONFIG_X86
 22#include <asm/cpufeature.h>
 23#endif
 24
 
 
 
 25#define ACPI_PROCESSOR_FILE_PERFORMANCE	"performance"
 
 
 
 
 26
 27/*
 28 * _PPC support is implemented as a CPUfreq policy notifier:
 29 * This means each time a CPUfreq driver registered also with
 30 * the ACPI core is asked to change the speed policy, the maximum
 31 * value is adjusted so that it is within the platform limit.
 32 *
 33 * Also, when a new platform limit value is detected, the CPUfreq
 34 * policy is adjusted accordingly.
 35 */
 36
 37/* ignore_ppc:
 38 * -1 -> cpufreq low level drivers not initialized -> _PSS, etc. not called yet
 39 *       ignore _PPC
 40 *  0 -> cpufreq low level drivers initialized -> consider _PPC values
 41 *  1 -> ignore _PPC totally -> forced by user through boot param
 42 */
 43static int ignore_ppc = -1;
 44module_param(ignore_ppc, int, 0644);
 45MODULE_PARM_DESC(ignore_ppc, "If the frequency of your machine gets wrongly" \
 46		 "limited by BIOS, this should help");
 47
 48static bool acpi_processor_ppc_in_use;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 49
 50static int acpi_processor_get_platform_limit(struct acpi_processor *pr)
 51{
 52	acpi_status status = 0;
 53	unsigned long long ppc = 0;
 54	s32 qos_value;
 55	int index;
 56	int ret;
 57
 58	if (!pr)
 59		return -EINVAL;
 60
 61	/*
 62	 * _PPC indicates the maximum state currently supported by the platform
 63	 * (e.g. 0 = states 0..n; 1 = states 1..n; etc.
 64	 */
 65	status = acpi_evaluate_integer(pr->handle, "_PPC", NULL, &ppc);
 66	if (status != AE_NOT_FOUND) {
 67		acpi_processor_ppc_in_use = true;
 68
 69		if (ACPI_FAILURE(status)) {
 70			acpi_evaluation_failure_warn(pr->handle, "_PPC", status);
 71			return -ENODEV;
 72		}
 73	}
 74
 75	index = ppc;
 76
 77	if (pr->performance_platform_limit == index ||
 78	    ppc >= pr->performance->state_count)
 79		return 0;
 
 80
 81	pr_debug("CPU %d: _PPC is %d - frequency %s limited\n", pr->id,
 82		 index, index ? "is" : "is not");
 83
 84	pr->performance_platform_limit = index;
 85
 86	if (unlikely(!freq_qos_request_active(&pr->perflib_req)))
 87		return 0;
 88
 89	/*
 90	 * If _PPC returns 0, it means that all of the available states can be
 91	 * used ("no limit").
 92	 */
 93	if (index == 0)
 94		qos_value = FREQ_QOS_MAX_DEFAULT_VALUE;
 95	else
 96		qos_value = pr->performance->states[index].core_frequency * 1000;
 97
 98	ret = freq_qos_update_request(&pr->perflib_req, qos_value);
 99	if (ret < 0) {
100		pr_warn("Failed to update perflib freq constraint: CPU%d (%d)\n",
101			pr->id, ret);
102	}
103
104	return 0;
105}
106
107#define ACPI_PROCESSOR_NOTIFY_PERFORMANCE	0x80
108/*
109 * acpi_processor_ppc_ost: Notify firmware the _PPC evaluation status
110 * @handle: ACPI processor handle
111 * @status: the status code of _PPC evaluation
112 *	0: success. OSPM is now using the performance state specified.
113 *	1: failure. OSPM has not changed the number of P-states in use
114 */
115static void acpi_processor_ppc_ost(acpi_handle handle, int status)
116{
117	if (acpi_has_method(handle, "_OST"))
118		acpi_evaluate_ost(handle, ACPI_PROCESSOR_NOTIFY_PERFORMANCE,
119				  status, NULL);
120}
121
122void acpi_processor_ppc_has_changed(struct acpi_processor *pr, int event_flag)
123{
124	int ret;
125
126	if (ignore_ppc || !pr->performance) {
127		/*
128		 * Only when it is notification event, the _OST object
129		 * will be evaluated. Otherwise it is skipped.
130		 */
131		if (event_flag)
132			acpi_processor_ppc_ost(pr->handle, 1);
133		return;
134	}
135
136	ret = acpi_processor_get_platform_limit(pr);
137	/*
138	 * Only when it is notification event, the _OST object
139	 * will be evaluated. Otherwise it is skipped.
140	 */
141	if (event_flag) {
142		if (ret < 0)
143			acpi_processor_ppc_ost(pr->handle, 1);
144		else
145			acpi_processor_ppc_ost(pr->handle, 0);
146	}
147	if (ret >= 0)
148		cpufreq_update_limits(pr->id);
149}
150
151int acpi_processor_get_bios_limit(int cpu, unsigned int *limit)
152{
153	struct acpi_processor *pr;
154
155	pr = per_cpu(processors, cpu);
156	if (!pr || !pr->performance || !pr->performance->state_count)
157		return -ENODEV;
158
159	*limit = pr->performance->states[pr->performance_platform_limit].
160		core_frequency * 1000;
161	return 0;
162}
163EXPORT_SYMBOL(acpi_processor_get_bios_limit);
164
165void acpi_processor_ignore_ppc_init(void)
166{
167	if (ignore_ppc < 0)
168		ignore_ppc = 0;
169}
170
171void acpi_processor_ppc_init(struct cpufreq_policy *policy)
172{
173	unsigned int cpu;
174
175	for_each_cpu(cpu, policy->related_cpus) {
176		struct acpi_processor *pr = per_cpu(processors, cpu);
177		int ret;
178
179		if (!pr)
180			continue;
181
182		/*
183		 * Reset performance_platform_limit in case there is a stale
184		 * value in it, so as to make it match the "no limit" QoS value
185		 * below.
186		 */
187		pr->performance_platform_limit = 0;
188
189		ret = freq_qos_add_request(&policy->constraints,
190					   &pr->perflib_req, FREQ_QOS_MAX,
191					   FREQ_QOS_MAX_DEFAULT_VALUE);
192		if (ret < 0)
193			pr_err("Failed to add freq constraint for CPU%d (%d)\n",
194			       cpu, ret);
195	}
196}
197
198void acpi_processor_ppc_exit(struct cpufreq_policy *policy)
199{
200	unsigned int cpu;
201
202	for_each_cpu(cpu, policy->related_cpus) {
203		struct acpi_processor *pr = per_cpu(processors, cpu);
204
205		if (pr)
206			freq_qos_remove_request(&pr->perflib_req);
207	}
208}
209
210#ifdef CONFIG_X86
211
212static DEFINE_MUTEX(performance_mutex);
213
214static int acpi_processor_get_performance_control(struct acpi_processor *pr)
215{
216	int result = 0;
217	acpi_status status = 0;
218	struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
219	union acpi_object *pct = NULL;
220	union acpi_object obj = { 0 };
221
 
222	status = acpi_evaluate_object(pr->handle, "_PCT", NULL, &buffer);
223	if (ACPI_FAILURE(status)) {
224		acpi_evaluation_failure_warn(pr->handle, "_PCT", status);
225		return -ENODEV;
226	}
227
228	pct = (union acpi_object *)buffer.pointer;
229	if (!pct || pct->type != ACPI_TYPE_PACKAGE || pct->package.count != 2) {
230		pr_err("Invalid _PCT data\n");
 
231		result = -EFAULT;
232		goto end;
233	}
234
235	/*
236	 * control_register
237	 */
238
239	obj = pct->package.elements[0];
240
241	if (!obj.buffer.pointer || obj.type != ACPI_TYPE_BUFFER ||
242	    obj.buffer.length < sizeof(struct acpi_pct_register)) {
243		pr_err("Invalid _PCT data (control_register)\n");
 
244		result = -EFAULT;
245		goto end;
246	}
247	memcpy(&pr->performance->control_register, obj.buffer.pointer,
248	       sizeof(struct acpi_pct_register));
249
250	/*
251	 * status_register
252	 */
253
254	obj = pct->package.elements[1];
255
256	if (!obj.buffer.pointer || obj.type != ACPI_TYPE_BUFFER ||
257	    obj.buffer.length < sizeof(struct acpi_pct_register)) {
258		pr_err("Invalid _PCT data (status_register)\n");
 
259		result = -EFAULT;
260		goto end;
261	}
262
263	memcpy(&pr->performance->status_register, obj.buffer.pointer,
264	       sizeof(struct acpi_pct_register));
265
266end:
267	kfree(buffer.pointer);
268
269	return result;
270}
271
 
272/*
273 * Some AMDs have 50MHz frequency multiples, but only provide 100MHz rounding
274 * in their ACPI data. Calculate the real values and fix up the _PSS data.
275 */
276static void amd_fixup_frequency(struct acpi_processor_px *px, int i)
277{
278	u32 hi, lo, fid, did;
279	int index = px->control & 0x00000007;
280
281	if (boot_cpu_data.x86_vendor != X86_VENDOR_AMD)
282		return;
283
284	if ((boot_cpu_data.x86 == 0x10 && boot_cpu_data.x86_model < 10) ||
285	    boot_cpu_data.x86 == 0x11) {
286		rdmsr(MSR_AMD_PSTATE_DEF_BASE + index, lo, hi);
287		/*
288		 * MSR C001_0064+:
289		 * Bit 63: PstateEn. Read-write. If set, the P-state is valid.
290		 */
291		if (!(hi & BIT(31)))
292			return;
293
294		fid = lo & 0x3f;
295		did = (lo >> 6) & 7;
296		if (boot_cpu_data.x86 == 0x10)
297			px->core_frequency = (100 * (fid + 0x10)) >> did;
298		else
299			px->core_frequency = (100 * (fid + 8)) >> did;
300	}
301}
 
 
 
302
303static int acpi_processor_get_performance_states(struct acpi_processor *pr)
304{
305	int result = 0;
306	acpi_status status = AE_OK;
307	struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
308	struct acpi_buffer format = { sizeof("NNNNNN"), "NNNNNN" };
309	struct acpi_buffer state = { 0, NULL };
310	union acpi_object *pss = NULL;
311	int i;
312	int last_invalid = -1;
313
 
314	status = acpi_evaluate_object(pr->handle, "_PSS", NULL, &buffer);
315	if (ACPI_FAILURE(status)) {
316		acpi_evaluation_failure_warn(pr->handle, "_PSS", status);
317		return -ENODEV;
318	}
319
320	pss = buffer.pointer;
321	if (!pss || pss->type != ACPI_TYPE_PACKAGE) {
322		pr_err("Invalid _PSS data\n");
323		result = -EFAULT;
324		goto end;
325	}
326
327	acpi_handle_debug(pr->handle, "Found %d performance states\n",
328			  pss->package.count);
329
330	pr->performance->state_count = pss->package.count;
331	pr->performance->states =
332	    kmalloc_array(pss->package.count,
333			  sizeof(struct acpi_processor_px),
334			  GFP_KERNEL);
335	if (!pr->performance->states) {
336		result = -ENOMEM;
337		goto end;
338	}
339
340	for (i = 0; i < pr->performance->state_count; i++) {
341
342		struct acpi_processor_px *px = &(pr->performance->states[i]);
343
344		state.length = sizeof(struct acpi_processor_px);
345		state.pointer = px;
346
347		acpi_handle_debug(pr->handle, "Extracting state %d\n", i);
348
349		status = acpi_extract_package(&(pss->package.elements[i]),
350					      &format, &state);
351		if (ACPI_FAILURE(status)) {
352			acpi_handle_warn(pr->handle, "Invalid _PSS data: %s\n",
353					 acpi_format_exception(status));
354			result = -EFAULT;
355			kfree(pr->performance->states);
356			goto end;
357		}
358
359		amd_fixup_frequency(px, i);
360
361		acpi_handle_debug(pr->handle,
362				  "State [%d]: core_frequency[%d] power[%d] transition_latency[%d] bus_master_latency[%d] control[0x%x] status[0x%x]\n",
363				  i,
364				  (u32) px->core_frequency,
365				  (u32) px->power,
366				  (u32) px->transition_latency,
367				  (u32) px->bus_master_latency,
368				  (u32) px->control, (u32) px->status);
369
370		/*
371		 * Check that ACPI's u64 MHz will be valid as u32 KHz in cpufreq
372		 */
373		if (!px->core_frequency ||
374		    (u32)(px->core_frequency * 1000) != px->core_frequency * 1000) {
375			pr_err(FW_BUG
 
376			       "Invalid BIOS _PSS frequency found for processor %d: 0x%llx MHz\n",
377			       pr->id, px->core_frequency);
378			if (last_invalid == -1)
379				last_invalid = i;
380		} else {
381			if (last_invalid != -1) {
382				/*
383				 * Copy this valid entry over last_invalid entry
384				 */
385				memcpy(&(pr->performance->states[last_invalid]),
386				       px, sizeof(struct acpi_processor_px));
387				++last_invalid;
388			}
389		}
390	}
391
392	if (last_invalid == 0) {
393		pr_err(FW_BUG
394			   "No valid BIOS _PSS frequency found for processor %d\n", pr->id);
395		result = -EFAULT;
396		kfree(pr->performance->states);
397		pr->performance->states = NULL;
398	}
399
400	if (last_invalid > 0)
401		pr->performance->state_count = last_invalid;
402
403end:
404	kfree(buffer.pointer);
405
406	return result;
407}
408
409int acpi_processor_get_performance_info(struct acpi_processor *pr)
410{
411	int result = 0;
412
413	if (!pr || !pr->performance || !pr->handle)
414		return -EINVAL;
415
416	if (!acpi_has_method(pr->handle, "_PCT")) {
417		acpi_handle_debug(pr->handle,
418				  "ACPI-based processor performance control unavailable\n");
419		return -ENODEV;
420	}
421
422	result = acpi_processor_get_performance_control(pr);
423	if (result)
424		goto update_bios;
425
426	result = acpi_processor_get_performance_states(pr);
427	if (result)
428		goto update_bios;
429
430	/* We need to call _PPC once when cpufreq starts */
431	if (ignore_ppc != 1)
432		result = acpi_processor_get_platform_limit(pr);
433
434	return result;
435
436	/*
437	 * Having _PPC but missing frequencies (_PSS, _PCT) is a very good hint that
438	 * the BIOS is older than the CPU and does not know its frequencies
439	 */
440 update_bios:
 
441	if (acpi_has_method(pr->handle, "_PPC")) {
442		if(boot_cpu_has(X86_FEATURE_EST))
443			pr_warn(FW_BUG "BIOS needs update for CPU "
444			       "frequency support\n");
445	}
 
446	return result;
447}
448EXPORT_SYMBOL_GPL(acpi_processor_get_performance_info);
449
450int acpi_processor_pstate_control(void)
451{
452	acpi_status status;
453
454	if (!acpi_gbl_FADT.smi_command || !acpi_gbl_FADT.pstate_control)
455		return 0;
456
457	pr_debug("Writing pstate_control [0x%x] to smi_command [0x%x]\n",
458		 acpi_gbl_FADT.pstate_control, acpi_gbl_FADT.smi_command);
 
459
460	status = acpi_os_write_port(acpi_gbl_FADT.smi_command,
461				    (u32)acpi_gbl_FADT.pstate_control, 8);
462	if (ACPI_SUCCESS(status))
463		return 1;
464
465	pr_warn("Failed to write pstate_control [0x%x] to smi_command [0x%x]: %s\n",
466		acpi_gbl_FADT.pstate_control, acpi_gbl_FADT.smi_command,
467		acpi_format_exception(status));
468	return -EIO;
469}
470
471int acpi_processor_notify_smm(struct module *calling_module)
472{
473	static int is_done;
474	int result = 0;
475
476	if (!acpi_processor_cpufreq_init)
477		return -EBUSY;
478
479	if (!try_module_get(calling_module))
480		return -EINVAL;
481
482	/*
483	 * is_done is set to negative if an error occurs and to 1 if no error
484	 * occurrs, but SMM has been notified already. This avoids repeated
485	 * notification which might lead to unexpected results.
486	 */
487	if (is_done != 0) {
488		if (is_done < 0)
489			result = is_done;
490
491		goto out_put;
 
492	}
493
 
 
494	result = acpi_processor_pstate_control();
495	if (result <= 0) {
496		if (result) {
497			is_done = result;
498		} else {
499			pr_debug("No SMI port or pstate_control\n");
500			is_done = 1;
501		}
502		goto out_put;
503	}
504
 
 
505	is_done = 1;
506	/*
507	 * Success. If there _PPC, unloading the cpufreq driver would be risky,
508	 * so disallow it in that case.
509	 */
510	if (acpi_processor_ppc_in_use)
511		return 0;
512
513out_put:
514	module_put(calling_module);
515	return result;
 
516}
 
517EXPORT_SYMBOL(acpi_processor_notify_smm);
518
519int acpi_processor_get_psd(acpi_handle handle, struct acpi_psd_package *pdomain)
520{
521	int result = 0;
522	acpi_status status = AE_OK;
523	struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL};
524	struct acpi_buffer format = {sizeof("NNNNN"), "NNNNN"};
525	struct acpi_buffer state = {0, NULL};
526	union acpi_object  *psd = NULL;
 
527
528	status = acpi_evaluate_object(handle, "_PSD", NULL, &buffer);
529	if (ACPI_FAILURE(status)) {
530		return -ENODEV;
531	}
532
533	psd = buffer.pointer;
534	if (!psd || psd->type != ACPI_TYPE_PACKAGE) {
535		pr_err("Invalid _PSD data\n");
536		result = -EFAULT;
537		goto end;
538	}
539
540	if (psd->package.count != 1) {
541		pr_err("Invalid _PSD data\n");
542		result = -EFAULT;
543		goto end;
544	}
545
 
 
546	state.length = sizeof(struct acpi_psd_package);
547	state.pointer = pdomain;
548
549	status = acpi_extract_package(&(psd->package.elements[0]), &format, &state);
 
550	if (ACPI_FAILURE(status)) {
551		pr_err("Invalid _PSD data\n");
552		result = -EFAULT;
553		goto end;
554	}
555
556	if (pdomain->num_entries != ACPI_PSD_REV0_ENTRIES) {
557		pr_err("Unknown _PSD:num_entries\n");
558		result = -EFAULT;
559		goto end;
560	}
561
562	if (pdomain->revision != ACPI_PSD_REV0_REVISION) {
563		pr_err("Unknown _PSD:revision\n");
564		result = -EFAULT;
565		goto end;
566	}
567
568	if (pdomain->coord_type != DOMAIN_COORD_TYPE_SW_ALL &&
569	    pdomain->coord_type != DOMAIN_COORD_TYPE_SW_ANY &&
570	    pdomain->coord_type != DOMAIN_COORD_TYPE_HW_ALL) {
571		pr_err("Invalid _PSD:coord_type\n");
572		result = -EFAULT;
573		goto end;
574	}
575end:
576	kfree(buffer.pointer);
577	return result;
578}
579EXPORT_SYMBOL(acpi_processor_get_psd);
580
581int acpi_processor_preregister_performance(
582		struct acpi_processor_performance __percpu *performance)
583{
584	int count_target;
585	int retval = 0;
586	unsigned int i, j;
587	cpumask_var_t covered_cpus;
588	struct acpi_processor *pr;
589	struct acpi_psd_package *pdomain;
590	struct acpi_processor *match_pr;
591	struct acpi_psd_package *match_pdomain;
592
593	if (!zalloc_cpumask_var(&covered_cpus, GFP_KERNEL))
594		return -ENOMEM;
595
596	mutex_lock(&performance_mutex);
597
598	/*
599	 * Check if another driver has already registered, and abort before
600	 * changing pr->performance if it has. Check input data as well.
601	 */
602	for_each_possible_cpu(i) {
603		pr = per_cpu(processors, i);
604		if (!pr) {
605			/* Look only at processors in ACPI namespace */
606			continue;
607		}
608
609		if (pr->performance) {
610			retval = -EBUSY;
611			goto err_out;
612		}
613
614		if (!performance || !per_cpu_ptr(performance, i)) {
615			retval = -EINVAL;
616			goto err_out;
617		}
618	}
619
620	/* Call _PSD for all CPUs */
621	for_each_possible_cpu(i) {
622		pr = per_cpu(processors, i);
623		if (!pr)
624			continue;
625
626		pr->performance = per_cpu_ptr(performance, i);
627		pdomain = &(pr->performance->domain_info);
628		if (acpi_processor_get_psd(pr->handle, pdomain)) {
629			retval = -EINVAL;
630			continue;
631		}
632	}
633	if (retval)
634		goto err_ret;
635
636	/*
637	 * Now that we have _PSD data from all CPUs, lets setup P-state
638	 * domain info.
639	 */
640	for_each_possible_cpu(i) {
641		pr = per_cpu(processors, i);
642		if (!pr)
643			continue;
644
645		if (cpumask_test_cpu(i, covered_cpus))
646			continue;
647
648		pdomain = &(pr->performance->domain_info);
649		cpumask_set_cpu(i, pr->performance->shared_cpu_map);
650		cpumask_set_cpu(i, covered_cpus);
651		if (pdomain->num_processors <= 1)
652			continue;
653
654		/* Validate the Domain info */
655		count_target = pdomain->num_processors;
656		if (pdomain->coord_type == DOMAIN_COORD_TYPE_SW_ALL)
657			pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ALL;
658		else if (pdomain->coord_type == DOMAIN_COORD_TYPE_HW_ALL)
659			pr->performance->shared_type = CPUFREQ_SHARED_TYPE_HW;
660		else if (pdomain->coord_type == DOMAIN_COORD_TYPE_SW_ANY)
661			pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ANY;
662
663		for_each_possible_cpu(j) {
664			if (i == j)
665				continue;
666
667			match_pr = per_cpu(processors, j);
668			if (!match_pr)
669				continue;
670
671			match_pdomain = &(match_pr->performance->domain_info);
672			if (match_pdomain->domain != pdomain->domain)
673				continue;
674
675			/* Here i and j are in the same domain */
676
677			if (match_pdomain->num_processors != count_target) {
678				retval = -EINVAL;
679				goto err_ret;
680			}
681
682			if (pdomain->coord_type != match_pdomain->coord_type) {
683				retval = -EINVAL;
684				goto err_ret;
685			}
686
687			cpumask_set_cpu(j, covered_cpus);
688			cpumask_set_cpu(j, pr->performance->shared_cpu_map);
689		}
690
691		for_each_possible_cpu(j) {
692			if (i == j)
693				continue;
694
695			match_pr = per_cpu(processors, j);
696			if (!match_pr)
697				continue;
698
699			match_pdomain = &(match_pr->performance->domain_info);
700			if (match_pdomain->domain != pdomain->domain)
701				continue;
702
703			match_pr->performance->shared_type =
704					pr->performance->shared_type;
705			cpumask_copy(match_pr->performance->shared_cpu_map,
706				     pr->performance->shared_cpu_map);
707		}
708	}
709
710err_ret:
711	for_each_possible_cpu(i) {
712		pr = per_cpu(processors, i);
713		if (!pr || !pr->performance)
714			continue;
715
716		/* Assume no coordination on any error parsing domain info */
717		if (retval) {
718			cpumask_clear(pr->performance->shared_cpu_map);
719			cpumask_set_cpu(i, pr->performance->shared_cpu_map);
720			pr->performance->shared_type = CPUFREQ_SHARED_TYPE_NONE;
721		}
722		pr->performance = NULL; /* Will be set for real in register */
723	}
724
725err_out:
726	mutex_unlock(&performance_mutex);
727	free_cpumask_var(covered_cpus);
728	return retval;
729}
730EXPORT_SYMBOL(acpi_processor_preregister_performance);
731
732int acpi_processor_register_performance(struct acpi_processor_performance
733					*performance, unsigned int cpu)
 
734{
735	struct acpi_processor *pr;
736
737	if (!acpi_processor_cpufreq_init)
738		return -EINVAL;
739
740	mutex_lock(&performance_mutex);
741
742	pr = per_cpu(processors, cpu);
743	if (!pr) {
744		mutex_unlock(&performance_mutex);
745		return -ENODEV;
746	}
747
748	if (pr->performance) {
749		mutex_unlock(&performance_mutex);
750		return -EBUSY;
751	}
752
753	WARN_ON(!performance);
754
755	pr->performance = performance;
756
757	if (acpi_processor_get_performance_info(pr)) {
758		pr->performance = NULL;
759		mutex_unlock(&performance_mutex);
760		return -EIO;
761	}
762
763	mutex_unlock(&performance_mutex);
764	return 0;
765}
 
766EXPORT_SYMBOL(acpi_processor_register_performance);
767
768void acpi_processor_unregister_performance(unsigned int cpu)
769{
770	struct acpi_processor *pr;
771
772	mutex_lock(&performance_mutex);
773
774	pr = per_cpu(processors, cpu);
775	if (!pr)
776		goto unlock;
 
 
777
778	if (pr->performance)
779		kfree(pr->performance->states);
780
781	pr->performance = NULL;
782
783unlock:
784	mutex_unlock(&performance_mutex);
 
 
785}
 
786EXPORT_SYMBOL(acpi_processor_unregister_performance);
787#endif
v4.10.11
 
  1/*
  2 * processor_perflib.c - ACPI Processor P-States Library ($Revision: 71 $)
  3 *
  4 *  Copyright (C) 2001, 2002 Andy Grover <andrew.grover@intel.com>
  5 *  Copyright (C) 2001, 2002 Paul Diefenbaugh <paul.s.diefenbaugh@intel.com>
  6 *  Copyright (C) 2004       Dominik Brodowski <linux@brodo.de>
  7 *  Copyright (C) 2004  Anil S Keshavamurthy <anil.s.keshavamurthy@intel.com>
  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 *
 23 */
 24
 
 
 25#include <linux/kernel.h>
 26#include <linux/module.h>
 27#include <linux/init.h>
 28#include <linux/cpufreq.h>
 29#include <linux/slab.h>
 30#include <linux/acpi.h>
 31#include <acpi/processor.h>
 32#ifdef CONFIG_X86
 33#include <asm/cpufeature.h>
 34#endif
 35
 36#define PREFIX "ACPI: "
 37
 38#define ACPI_PROCESSOR_CLASS		"processor"
 39#define ACPI_PROCESSOR_FILE_PERFORMANCE	"performance"
 40#define _COMPONENT		ACPI_PROCESSOR_COMPONENT
 41ACPI_MODULE_NAME("processor_perflib");
 42
 43static DEFINE_MUTEX(performance_mutex);
 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
 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 */
 61static int ignore_ppc = -1;
 62module_param(ignore_ppc, int, 0644);
 63MODULE_PARM_DESC(ignore_ppc, "If the frequency of your machine gets wrongly" \
 64		 "limited by BIOS, this should help");
 65
 66#define PPC_REGISTERED   1
 67#define PPC_IN_USE       2
 68
 69static int acpi_processor_ppc_status;
 70
 71static int acpi_processor_ppc_notifier(struct notifier_block *nb,
 72				       unsigned long event, void *data)
 73{
 74	struct cpufreq_policy *policy = data;
 75	struct acpi_processor *pr;
 76	unsigned int ppc = 0;
 77
 78	if (event == CPUFREQ_START && ignore_ppc <= 0) {
 79		ignore_ppc = 0;
 80		return 0;
 81	}
 82
 83	if (ignore_ppc)
 84		return 0;
 85
 86	if (event != CPUFREQ_ADJUST)
 87		return 0;
 88
 89	mutex_lock(&performance_mutex);
 90
 91	pr = per_cpu(processors, policy->cpu);
 92	if (!pr || !pr->performance)
 93		goto out;
 94
 95	ppc = (unsigned int)pr->performance_platform_limit;
 96
 97	if (ppc >= pr->performance->state_count)
 98		goto out;
 99
100	cpufreq_verify_within_limits(policy, 0,
101				     pr->performance->states[ppc].
102				     core_frequency * 1000);
103
104      out:
105	mutex_unlock(&performance_mutex);
106
107	return 0;
108}
109
110static struct notifier_block acpi_ppc_notifier_block = {
111	.notifier_call = acpi_processor_ppc_notifier,
112};
113
114static int acpi_processor_get_platform_limit(struct acpi_processor *pr)
115{
116	acpi_status status = 0;
117	unsigned long long ppc = 0;
118
 
 
119
120	if (!pr)
121		return -EINVAL;
122
123	/*
124	 * _PPC indicates the maximum state currently supported by the platform
125	 * (e.g. 0 = states 0..n; 1 = states 1..n; etc.
126	 */
127	status = acpi_evaluate_integer(pr->handle, "_PPC", NULL, &ppc);
 
 
128
129	if (status != AE_NOT_FOUND)
130		acpi_processor_ppc_status |= PPC_IN_USE;
 
 
 
 
 
131
132	if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) {
133		ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PPC"));
134		return -ENODEV;
135	}
136
137	pr_debug("CPU %d: _PPC is %d - frequency %s limited\n", pr->id,
138		       (int)ppc, ppc ? "" : "not");
139
140	pr->performance_platform_limit = (int)ppc;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
141
142	return 0;
143}
144
145#define ACPI_PROCESSOR_NOTIFY_PERFORMANCE	0x80
146/*
147 * acpi_processor_ppc_ost: Notify firmware the _PPC evaluation status
148 * @handle: ACPI processor handle
149 * @status: the status code of _PPC evaluation
150 *	0: success. OSPM is now using the performance state specificed.
151 *	1: failure. OSPM has not changed the number of P-states in use
152 */
153static void acpi_processor_ppc_ost(acpi_handle handle, int status)
154{
155	if (acpi_has_method(handle, "_OST"))
156		acpi_evaluate_ost(handle, ACPI_PROCESSOR_NOTIFY_PERFORMANCE,
157				  status, NULL);
158}
159
160void acpi_processor_ppc_has_changed(struct acpi_processor *pr, int event_flag)
161{
162	int ret;
163
164	if (ignore_ppc) {
165		/*
166		 * Only when it is notification event, the _OST object
167		 * will be evaluated. Otherwise it is skipped.
168		 */
169		if (event_flag)
170			acpi_processor_ppc_ost(pr->handle, 1);
171		return;
172	}
173
174	ret = acpi_processor_get_platform_limit(pr);
175	/*
176	 * Only when it is notification event, the _OST object
177	 * will be evaluated. Otherwise it is skipped.
178	 */
179	if (event_flag) {
180		if (ret < 0)
181			acpi_processor_ppc_ost(pr->handle, 1);
182		else
183			acpi_processor_ppc_ost(pr->handle, 0);
184	}
185	if (ret >= 0)
186		cpufreq_update_policy(pr->id);
187}
188
189int acpi_processor_get_bios_limit(int cpu, unsigned int *limit)
190{
191	struct acpi_processor *pr;
192
193	pr = per_cpu(processors, cpu);
194	if (!pr || !pr->performance || !pr->performance->state_count)
195		return -ENODEV;
 
196	*limit = pr->performance->states[pr->performance_platform_limit].
197		core_frequency * 1000;
198	return 0;
199}
200EXPORT_SYMBOL(acpi_processor_get_bios_limit);
201
202void acpi_processor_ppc_init(void)
203{
204	if (!cpufreq_register_notifier
205	    (&acpi_ppc_notifier_block, CPUFREQ_POLICY_NOTIFIER))
206		acpi_processor_ppc_status |= PPC_REGISTERED;
207	else
208		printk(KERN_DEBUG
209		       "Warning: Processor Platform Limit not supported.\n");
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
210}
211
212void acpi_processor_ppc_exit(void)
213{
214	if (acpi_processor_ppc_status & PPC_REGISTERED)
215		cpufreq_unregister_notifier(&acpi_ppc_notifier_block,
216					    CPUFREQ_POLICY_NOTIFIER);
 
217
218	acpi_processor_ppc_status &= ~PPC_REGISTERED;
 
 
219}
220
 
 
 
 
221static int acpi_processor_get_performance_control(struct acpi_processor *pr)
222{
223	int result = 0;
224	acpi_status status = 0;
225	struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
226	union acpi_object *pct = NULL;
227	union acpi_object obj = { 0 };
228
229
230	status = acpi_evaluate_object(pr->handle, "_PCT", NULL, &buffer);
231	if (ACPI_FAILURE(status)) {
232		ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PCT"));
233		return -ENODEV;
234	}
235
236	pct = (union acpi_object *)buffer.pointer;
237	if (!pct || (pct->type != ACPI_TYPE_PACKAGE)
238	    || (pct->package.count != 2)) {
239		printk(KERN_ERR PREFIX "Invalid _PCT data\n");
240		result = -EFAULT;
241		goto end;
242	}
243
244	/*
245	 * control_register
246	 */
247
248	obj = pct->package.elements[0];
249
250	if ((obj.type != ACPI_TYPE_BUFFER)
251	    || (obj.buffer.length < sizeof(struct acpi_pct_register))
252	    || (obj.buffer.pointer == NULL)) {
253		printk(KERN_ERR PREFIX "Invalid _PCT data (control_register)\n");
254		result = -EFAULT;
255		goto end;
256	}
257	memcpy(&pr->performance->control_register, obj.buffer.pointer,
258	       sizeof(struct acpi_pct_register));
259
260	/*
261	 * status_register
262	 */
263
264	obj = pct->package.elements[1];
265
266	if ((obj.type != ACPI_TYPE_BUFFER)
267	    || (obj.buffer.length < sizeof(struct acpi_pct_register))
268	    || (obj.buffer.pointer == NULL)) {
269		printk(KERN_ERR PREFIX "Invalid _PCT data (status_register)\n");
270		result = -EFAULT;
271		goto end;
272	}
273
274	memcpy(&pr->performance->status_register, obj.buffer.pointer,
275	       sizeof(struct acpi_pct_register));
276
277      end:
278	kfree(buffer.pointer);
279
280	return result;
281}
282
283#ifdef CONFIG_X86
284/*
285 * Some AMDs have 50MHz frequency multiples, but only provide 100MHz rounding
286 * in their ACPI data. Calculate the real values and fix up the _PSS data.
287 */
288static void amd_fixup_frequency(struct acpi_processor_px *px, int i)
289{
290	u32 hi, lo, fid, did;
291	int index = px->control & 0x00000007;
292
293	if (boot_cpu_data.x86_vendor != X86_VENDOR_AMD)
294		return;
295
296	if ((boot_cpu_data.x86 == 0x10 && boot_cpu_data.x86_model < 10)
297	    || boot_cpu_data.x86 == 0x11) {
298		rdmsr(MSR_AMD_PSTATE_DEF_BASE + index, lo, hi);
299		/*
300		 * MSR C001_0064+:
301		 * Bit 63: PstateEn. Read-write. If set, the P-state is valid.
302		 */
303		if (!(hi & BIT(31)))
304			return;
305
306		fid = lo & 0x3f;
307		did = (lo >> 6) & 7;
308		if (boot_cpu_data.x86 == 0x10)
309			px->core_frequency = (100 * (fid + 0x10)) >> did;
310		else
311			px->core_frequency = (100 * (fid + 8)) >> did;
312	}
313}
314#else
315static void amd_fixup_frequency(struct acpi_processor_px *px, int i) {};
316#endif
317
318static int acpi_processor_get_performance_states(struct acpi_processor *pr)
319{
320	int result = 0;
321	acpi_status status = AE_OK;
322	struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
323	struct acpi_buffer format = { sizeof("NNNNNN"), "NNNNNN" };
324	struct acpi_buffer state = { 0, NULL };
325	union acpi_object *pss = NULL;
326	int i;
327	int last_invalid = -1;
328
329
330	status = acpi_evaluate_object(pr->handle, "_PSS", NULL, &buffer);
331	if (ACPI_FAILURE(status)) {
332		ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PSS"));
333		return -ENODEV;
334	}
335
336	pss = buffer.pointer;
337	if (!pss || (pss->type != ACPI_TYPE_PACKAGE)) {
338		printk(KERN_ERR PREFIX "Invalid _PSS data\n");
339		result = -EFAULT;
340		goto end;
341	}
342
343	ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found %d performance states\n",
344			  pss->package.count));
345
346	pr->performance->state_count = pss->package.count;
347	pr->performance->states =
348	    kmalloc(sizeof(struct acpi_processor_px) * pss->package.count,
349		    GFP_KERNEL);
 
350	if (!pr->performance->states) {
351		result = -ENOMEM;
352		goto end;
353	}
354
355	for (i = 0; i < pr->performance->state_count; i++) {
356
357		struct acpi_processor_px *px = &(pr->performance->states[i]);
358
359		state.length = sizeof(struct acpi_processor_px);
360		state.pointer = px;
361
362		ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Extracting state %d\n", i));
363
364		status = acpi_extract_package(&(pss->package.elements[i]),
365					      &format, &state);
366		if (ACPI_FAILURE(status)) {
367			ACPI_EXCEPTION((AE_INFO, status, "Invalid _PSS data"));
 
368			result = -EFAULT;
369			kfree(pr->performance->states);
370			goto end;
371		}
372
373		amd_fixup_frequency(px, i);
374
375		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
376				  "State [%d]: core_frequency[%d] power[%d] transition_latency[%d] bus_master_latency[%d] control[0x%x] status[0x%x]\n",
377				  i,
378				  (u32) px->core_frequency,
379				  (u32) px->power,
380				  (u32) px->transition_latency,
381				  (u32) px->bus_master_latency,
382				  (u32) px->control, (u32) px->status));
383
384		/*
385 		 * Check that ACPI's u64 MHz will be valid as u32 KHz in cpufreq
386		 */
387		if (!px->core_frequency ||
388		    ((u32)(px->core_frequency * 1000) !=
389		     (px->core_frequency * 1000))) {
390			printk(KERN_ERR FW_BUG PREFIX
391			       "Invalid BIOS _PSS frequency found for processor %d: 0x%llx MHz\n",
392			       pr->id, px->core_frequency);
393			if (last_invalid == -1)
394				last_invalid = i;
395		} else {
396			if (last_invalid != -1) {
397				/*
398				 * Copy this valid entry over last_invalid entry
399				 */
400				memcpy(&(pr->performance->states[last_invalid]),
401				       px, sizeof(struct acpi_processor_px));
402				++last_invalid;
403			}
404		}
405	}
406
407	if (last_invalid == 0) {
408		printk(KERN_ERR FW_BUG PREFIX
409		       "No valid BIOS _PSS frequency found for processor %d\n", pr->id);
410		result = -EFAULT;
411		kfree(pr->performance->states);
412		pr->performance->states = NULL;
413	}
414
415	if (last_invalid > 0)
416		pr->performance->state_count = last_invalid;
417
418      end:
419	kfree(buffer.pointer);
420
421	return result;
422}
423
424int acpi_processor_get_performance_info(struct acpi_processor *pr)
425{
426	int result = 0;
427
428	if (!pr || !pr->performance || !pr->handle)
429		return -EINVAL;
430
431	if (!acpi_has_method(pr->handle, "_PCT")) {
432		ACPI_DEBUG_PRINT((ACPI_DB_INFO,
433				  "ACPI-based processor performance control unavailable\n"));
434		return -ENODEV;
435	}
436
437	result = acpi_processor_get_performance_control(pr);
438	if (result)
439		goto update_bios;
440
441	result = acpi_processor_get_performance_states(pr);
442	if (result)
443		goto update_bios;
444
445	/* We need to call _PPC once when cpufreq starts */
446	if (ignore_ppc != 1)
447		result = acpi_processor_get_platform_limit(pr);
448
449	return result;
450
451	/*
452	 * Having _PPC but missing frequencies (_PSS, _PCT) is a very good hint that
453	 * the BIOS is older than the CPU and does not know its frequencies
454	 */
455 update_bios:
456#ifdef CONFIG_X86
457	if (acpi_has_method(pr->handle, "_PPC")) {
458		if(boot_cpu_has(X86_FEATURE_EST))
459			printk(KERN_WARNING FW_BUG "BIOS needs update for CPU "
460			       "frequency support\n");
461	}
462#endif
463	return result;
464}
465EXPORT_SYMBOL_GPL(acpi_processor_get_performance_info);
466
467int acpi_processor_pstate_control(void)
468{
469	acpi_status status;
470
471	if (!acpi_gbl_FADT.smi_command || !acpi_gbl_FADT.pstate_control)
472		return 0;
473
474	ACPI_DEBUG_PRINT((ACPI_DB_INFO,
475			  "Writing pstate_control [0x%x] to smi_command [0x%x]\n",
476			  acpi_gbl_FADT.pstate_control, acpi_gbl_FADT.smi_command));
477
478	status = acpi_os_write_port(acpi_gbl_FADT.smi_command,
479				    (u32)acpi_gbl_FADT.pstate_control, 8);
480	if (ACPI_SUCCESS(status))
481		return 1;
482
483	ACPI_EXCEPTION((AE_INFO, status,
484			"Failed to write pstate_control [0x%x] to smi_command [0x%x]",
485			acpi_gbl_FADT.pstate_control, acpi_gbl_FADT.smi_command));
486	return -EIO;
487}
488
489int acpi_processor_notify_smm(struct module *calling_module)
490{
491	static int is_done = 0;
492	int result;
493
494	if (!(acpi_processor_ppc_status & PPC_REGISTERED))
495		return -EBUSY;
496
497	if (!try_module_get(calling_module))
498		return -EINVAL;
499
500	/* is_done is set to negative if an error occurred,
501	 * and to postitive if _no_ error occurred, but SMM
502	 * was already notified. This avoids double notification
503	 * which might lead to unexpected results...
504	 */
505	if (is_done > 0) {
506		module_put(calling_module);
507		return 0;
508	} else if (is_done < 0) {
509		module_put(calling_module);
510		return is_done;
511	}
512
513	is_done = -EIO;
514
515	result = acpi_processor_pstate_control();
516	if (!result) {
517		ACPI_DEBUG_PRINT((ACPI_DB_INFO, "No SMI port or pstate_control\n"));
518		module_put(calling_module);
519		return 0;
520	}
521	if (result < 0) {
522		module_put(calling_module);
523		return result;
524	}
525
526	/* Success. If there's no _PPC, we need to fear nothing, so
527	 * we can allow the cpufreq driver to be rmmod'ed. */
528	is_done = 1;
 
 
 
 
 
 
529
530	if (!(acpi_processor_ppc_status & PPC_IN_USE))
531		module_put(calling_module);
532
533	return 0;
534}
535
536EXPORT_SYMBOL(acpi_processor_notify_smm);
537
538static int acpi_processor_get_psd(struct acpi_processor	*pr)
539{
540	int result = 0;
541	acpi_status status = AE_OK;
542	struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL};
543	struct acpi_buffer format = {sizeof("NNNNN"), "NNNNN"};
544	struct acpi_buffer state = {0, NULL};
545	union acpi_object  *psd = NULL;
546	struct acpi_psd_package *pdomain;
547
548	status = acpi_evaluate_object(pr->handle, "_PSD", NULL, &buffer);
549	if (ACPI_FAILURE(status)) {
550		return -ENODEV;
551	}
552
553	psd = buffer.pointer;
554	if (!psd || (psd->type != ACPI_TYPE_PACKAGE)) {
555		printk(KERN_ERR PREFIX "Invalid _PSD data\n");
556		result = -EFAULT;
557		goto end;
558	}
559
560	if (psd->package.count != 1) {
561		printk(KERN_ERR PREFIX "Invalid _PSD data\n");
562		result = -EFAULT;
563		goto end;
564	}
565
566	pdomain = &(pr->performance->domain_info);
567
568	state.length = sizeof(struct acpi_psd_package);
569	state.pointer = pdomain;
570
571	status = acpi_extract_package(&(psd->package.elements[0]),
572		&format, &state);
573	if (ACPI_FAILURE(status)) {
574		printk(KERN_ERR PREFIX "Invalid _PSD data\n");
575		result = -EFAULT;
576		goto end;
577	}
578
579	if (pdomain->num_entries != ACPI_PSD_REV0_ENTRIES) {
580		printk(KERN_ERR PREFIX "Unknown _PSD:num_entries\n");
581		result = -EFAULT;
582		goto end;
583	}
584
585	if (pdomain->revision != ACPI_PSD_REV0_REVISION) {
586		printk(KERN_ERR PREFIX "Unknown _PSD:revision\n");
587		result = -EFAULT;
588		goto end;
589	}
590
591	if (pdomain->coord_type != DOMAIN_COORD_TYPE_SW_ALL &&
592	    pdomain->coord_type != DOMAIN_COORD_TYPE_SW_ANY &&
593	    pdomain->coord_type != DOMAIN_COORD_TYPE_HW_ALL) {
594		printk(KERN_ERR PREFIX "Invalid _PSD:coord_type\n");
595		result = -EFAULT;
596		goto end;
597	}
598end:
599	kfree(buffer.pointer);
600	return result;
601}
 
602
603int acpi_processor_preregister_performance(
604		struct acpi_processor_performance __percpu *performance)
605{
606	int count_target;
607	int retval = 0;
608	unsigned int i, j;
609	cpumask_var_t covered_cpus;
610	struct acpi_processor *pr;
611	struct acpi_psd_package *pdomain;
612	struct acpi_processor *match_pr;
613	struct acpi_psd_package *match_pdomain;
614
615	if (!zalloc_cpumask_var(&covered_cpus, GFP_KERNEL))
616		return -ENOMEM;
617
618	mutex_lock(&performance_mutex);
619
620	/*
621	 * Check if another driver has already registered, and abort before
622	 * changing pr->performance if it has. Check input data as well.
623	 */
624	for_each_possible_cpu(i) {
625		pr = per_cpu(processors, i);
626		if (!pr) {
627			/* Look only at processors in ACPI namespace */
628			continue;
629		}
630
631		if (pr->performance) {
632			retval = -EBUSY;
633			goto err_out;
634		}
635
636		if (!performance || !per_cpu_ptr(performance, i)) {
637			retval = -EINVAL;
638			goto err_out;
639		}
640	}
641
642	/* Call _PSD for all CPUs */
643	for_each_possible_cpu(i) {
644		pr = per_cpu(processors, i);
645		if (!pr)
646			continue;
647
648		pr->performance = per_cpu_ptr(performance, i);
649		cpumask_set_cpu(i, pr->performance->shared_cpu_map);
650		if (acpi_processor_get_psd(pr)) {
651			retval = -EINVAL;
652			continue;
653		}
654	}
655	if (retval)
656		goto err_ret;
657
658	/*
659	 * Now that we have _PSD data from all CPUs, lets setup P-state 
660	 * domain info.
661	 */
662	for_each_possible_cpu(i) {
663		pr = per_cpu(processors, i);
664		if (!pr)
665			continue;
666
667		if (cpumask_test_cpu(i, covered_cpus))
668			continue;
669
670		pdomain = &(pr->performance->domain_info);
671		cpumask_set_cpu(i, pr->performance->shared_cpu_map);
672		cpumask_set_cpu(i, covered_cpus);
673		if (pdomain->num_processors <= 1)
674			continue;
675
676		/* Validate the Domain info */
677		count_target = pdomain->num_processors;
678		if (pdomain->coord_type == DOMAIN_COORD_TYPE_SW_ALL)
679			pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ALL;
680		else if (pdomain->coord_type == DOMAIN_COORD_TYPE_HW_ALL)
681			pr->performance->shared_type = CPUFREQ_SHARED_TYPE_HW;
682		else if (pdomain->coord_type == DOMAIN_COORD_TYPE_SW_ANY)
683			pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ANY;
684
685		for_each_possible_cpu(j) {
686			if (i == j)
687				continue;
688
689			match_pr = per_cpu(processors, j);
690			if (!match_pr)
691				continue;
692
693			match_pdomain = &(match_pr->performance->domain_info);
694			if (match_pdomain->domain != pdomain->domain)
695				continue;
696
697			/* Here i and j are in the same domain */
698
699			if (match_pdomain->num_processors != count_target) {
700				retval = -EINVAL;
701				goto err_ret;
702			}
703
704			if (pdomain->coord_type != match_pdomain->coord_type) {
705				retval = -EINVAL;
706				goto err_ret;
707			}
708
709			cpumask_set_cpu(j, covered_cpus);
710			cpumask_set_cpu(j, pr->performance->shared_cpu_map);
711		}
712
713		for_each_possible_cpu(j) {
714			if (i == j)
715				continue;
716
717			match_pr = per_cpu(processors, j);
718			if (!match_pr)
719				continue;
720
721			match_pdomain = &(match_pr->performance->domain_info);
722			if (match_pdomain->domain != pdomain->domain)
723				continue;
724
725			match_pr->performance->shared_type = 
726					pr->performance->shared_type;
727			cpumask_copy(match_pr->performance->shared_cpu_map,
728				     pr->performance->shared_cpu_map);
729		}
730	}
731
732err_ret:
733	for_each_possible_cpu(i) {
734		pr = per_cpu(processors, i);
735		if (!pr || !pr->performance)
736			continue;
737
738		/* Assume no coordination on any error parsing domain info */
739		if (retval) {
740			cpumask_clear(pr->performance->shared_cpu_map);
741			cpumask_set_cpu(i, pr->performance->shared_cpu_map);
742			pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ALL;
743		}
744		pr->performance = NULL; /* Will be set for real in register */
745	}
746
747err_out:
748	mutex_unlock(&performance_mutex);
749	free_cpumask_var(covered_cpus);
750	return retval;
751}
752EXPORT_SYMBOL(acpi_processor_preregister_performance);
753
754int
755acpi_processor_register_performance(struct acpi_processor_performance
756				    *performance, unsigned int cpu)
757{
758	struct acpi_processor *pr;
759
760	if (!(acpi_processor_ppc_status & PPC_REGISTERED))
761		return -EINVAL;
762
763	mutex_lock(&performance_mutex);
764
765	pr = per_cpu(processors, cpu);
766	if (!pr) {
767		mutex_unlock(&performance_mutex);
768		return -ENODEV;
769	}
770
771	if (pr->performance) {
772		mutex_unlock(&performance_mutex);
773		return -EBUSY;
774	}
775
776	WARN_ON(!performance);
777
778	pr->performance = performance;
779
780	if (acpi_processor_get_performance_info(pr)) {
781		pr->performance = NULL;
782		mutex_unlock(&performance_mutex);
783		return -EIO;
784	}
785
786	mutex_unlock(&performance_mutex);
787	return 0;
788}
789
790EXPORT_SYMBOL(acpi_processor_register_performance);
791
792void acpi_processor_unregister_performance(unsigned int cpu)
793{
794	struct acpi_processor *pr;
795
796	mutex_lock(&performance_mutex);
797
798	pr = per_cpu(processors, cpu);
799	if (!pr) {
800		mutex_unlock(&performance_mutex);
801		return;
802	}
803
804	if (pr->performance)
805		kfree(pr->performance->states);
 
806	pr->performance = NULL;
807
 
808	mutex_unlock(&performance_mutex);
809
810	return;
811}
812
813EXPORT_SYMBOL(acpi_processor_unregister_performance);