linux/drivers/acpi/processor_perflib.c
<<
>>
Prefs
   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 *  You should have received a copy of the GNU General Public License along
  24 *  with this program; if not, write to the Free Software Foundation, Inc.,
  25 *  59 Temple Place, Suite 330, Boston, MA 02111-1307 USA.
  26 *
  27 */
  28
  29#include <linux/kernel.h>
  30#include <linux/module.h>
  31#include <linux/init.h>
  32#include <linux/cpufreq.h>
  33#include <linux/slab.h>
  34
  35#ifdef CONFIG_X86
  36#include <asm/cpufeature.h>
  37#endif
  38
  39#include <acpi/acpi_bus.h>
  40#include <acpi/acpi_drivers.h>
  41#include <acpi/processor.h>
  42
  43#define PREFIX "ACPI: "
  44
  45#define ACPI_PROCESSOR_CLASS            "processor"
  46#define ACPI_PROCESSOR_FILE_PERFORMANCE "performance"
  47#define _COMPONENT              ACPI_PROCESSOR_COMPONENT
  48ACPI_MODULE_NAME("processor_perflib");
  49
  50static DEFINE_MUTEX(performance_mutex);
  51
  52/*
  53 * _PPC support is implemented as a CPUfreq policy notifier:
  54 * This means each time a CPUfreq driver registered also with
  55 * the ACPI core is asked to change the speed policy, the maximum
  56 * value is adjusted so that it is within the platform limit.
  57 *
  58 * Also, when a new platform limit value is detected, the CPUfreq
  59 * policy is adjusted accordingly.
  60 */
  61
  62/* ignore_ppc:
  63 * -1 -> cpufreq low level drivers not initialized -> _PSS, etc. not called yet
  64 *       ignore _PPC
  65 *  0 -> cpufreq low level drivers initialized -> consider _PPC values
  66 *  1 -> ignore _PPC totally -> forced by user through boot param
  67 */
  68static int ignore_ppc = -1;
  69module_param(ignore_ppc, int, 0644);
  70MODULE_PARM_DESC(ignore_ppc, "If the frequency of your machine gets wrongly" \
  71                 "limited by BIOS, this should help");
  72
  73#define PPC_REGISTERED   1
  74#define PPC_IN_USE       2
  75
  76static int acpi_processor_ppc_status;
  77
  78static int acpi_processor_ppc_notifier(struct notifier_block *nb,
  79                                       unsigned long event, void *data)
  80{
  81        struct cpufreq_policy *policy = data;
  82        struct acpi_processor *pr;
  83        unsigned int ppc = 0;
  84
  85        if (event == CPUFREQ_START && ignore_ppc <= 0) {
  86                ignore_ppc = 0;
  87                return 0;
  88        }
  89
  90        if (ignore_ppc)
  91                return 0;
  92
  93        if (event != CPUFREQ_INCOMPATIBLE)
  94                return 0;
  95
  96        mutex_lock(&performance_mutex);
  97
  98        pr = per_cpu(processors, policy->cpu);
  99        if (!pr || !pr->performance)
 100                goto out;
 101
 102        ppc = (unsigned int)pr->performance_platform_limit;
 103
 104        if (ppc >= pr->performance->state_count)
 105                goto out;
 106
 107        cpufreq_verify_within_limits(policy, 0,
 108                                     pr->performance->states[ppc].
 109                                     core_frequency * 1000);
 110
 111      out:
 112        mutex_unlock(&performance_mutex);
 113
 114        return 0;
 115}
 116
 117static struct notifier_block acpi_ppc_notifier_block = {
 118        .notifier_call = acpi_processor_ppc_notifier,
 119};
 120
 121static int acpi_processor_get_platform_limit(struct acpi_processor *pr)
 122{
 123        acpi_status status = 0;
 124        unsigned long long ppc = 0;
 125
 126
 127        if (!pr)
 128                return -EINVAL;
 129
 130        /*
 131         * _PPC indicates the maximum state currently supported by the platform
 132         * (e.g. 0 = states 0..n; 1 = states 1..n; etc.
 133         */
 134        status = acpi_evaluate_integer(pr->handle, "_PPC", NULL, &ppc);
 135
 136        if (status != AE_NOT_FOUND)
 137                acpi_processor_ppc_status |= PPC_IN_USE;
 138
 139        if (ACPI_FAILURE(status) && status != AE_NOT_FOUND) {
 140                ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PPC"));
 141                return -ENODEV;
 142        }
 143
 144        pr_debug("CPU %d: _PPC is %d - frequency %s limited\n", pr->id,
 145                       (int)ppc, ppc ? "" : "not");
 146
 147        pr->performance_platform_limit = (int)ppc;
 148
 149        return 0;
 150}
 151
 152#define ACPI_PROCESSOR_NOTIFY_PERFORMANCE       0x80
 153/*
 154 * acpi_processor_ppc_ost: Notify firmware the _PPC evaluation status
 155 * @handle: ACPI processor handle
 156 * @status: the status code of _PPC evaluation
 157 *      0: success. OSPM is now using the performance state specificed.
 158 *      1: failure. OSPM has not changed the number of P-states in use
 159 */
 160static void acpi_processor_ppc_ost(acpi_handle handle, int status)
 161{
 162        if (acpi_has_method(handle, "_OST"))
 163                acpi_evaluate_ost(handle, ACPI_PROCESSOR_NOTIFY_PERFORMANCE,
 164                                  status, NULL);
 165}
 166
 167int acpi_processor_ppc_has_changed(struct acpi_processor *pr, int event_flag)
 168{
 169        int ret;
 170
 171        if (ignore_ppc) {
 172                /*
 173                 * Only when it is notification event, the _OST object
 174                 * will be evaluated. Otherwise it is skipped.
 175                 */
 176                if (event_flag)
 177                        acpi_processor_ppc_ost(pr->handle, 1);
 178                return 0;
 179        }
 180
 181        ret = acpi_processor_get_platform_limit(pr);
 182        /*
 183         * Only when it is notification event, the _OST object
 184         * will be evaluated. Otherwise it is skipped.
 185         */
 186        if (event_flag) {
 187                if (ret < 0)
 188                        acpi_processor_ppc_ost(pr->handle, 1);
 189                else
 190                        acpi_processor_ppc_ost(pr->handle, 0);
 191        }
 192        if (ret < 0)
 193                return (ret);
 194        else
 195                return cpufreq_update_policy(pr->id);
 196}
 197
 198int acpi_processor_get_bios_limit(int cpu, unsigned int *limit)
 199{
 200        struct acpi_processor *pr;
 201
 202        pr = per_cpu(processors, cpu);
 203        if (!pr || !pr->performance || !pr->performance->state_count)
 204                return -ENODEV;
 205        *limit = pr->performance->states[pr->performance_platform_limit].
 206                core_frequency * 1000;
 207        return 0;
 208}
 209EXPORT_SYMBOL(acpi_processor_get_bios_limit);
 210
 211void acpi_processor_ppc_init(void)
 212{
 213        if (!cpufreq_register_notifier
 214            (&acpi_ppc_notifier_block, CPUFREQ_POLICY_NOTIFIER))
 215                acpi_processor_ppc_status |= PPC_REGISTERED;
 216        else
 217                printk(KERN_DEBUG
 218                       "Warning: Processor Platform Limit not supported.\n");
 219}
 220
 221void acpi_processor_ppc_exit(void)
 222{
 223        if (acpi_processor_ppc_status & PPC_REGISTERED)
 224                cpufreq_unregister_notifier(&acpi_ppc_notifier_block,
 225                                            CPUFREQ_POLICY_NOTIFIER);
 226
 227        acpi_processor_ppc_status &= ~PPC_REGISTERED;
 228}
 229
 230/*
 231 * Do a quick check if the systems looks like it should use ACPI
 232 * cpufreq. We look at a _PCT method being available, but don't
 233 * do a whole lot of sanity checks.
 234 */
 235void acpi_processor_load_module(struct acpi_processor *pr)
 236{
 237        static int requested;
 238        acpi_status status = 0;
 239        struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
 240
 241        if (!arch_has_acpi_pdc() || requested)
 242                return;
 243        status = acpi_evaluate_object(pr->handle, "_PCT", NULL, &buffer);
 244        if (!ACPI_FAILURE(status)) {
 245                printk(KERN_INFO PREFIX "Requesting acpi_cpufreq\n");
 246                request_module_nowait("acpi_cpufreq");
 247                requested = 1;
 248        }
 249        kfree(buffer.pointer);
 250}
 251
 252static int acpi_processor_get_performance_control(struct acpi_processor *pr)
 253{
 254        int result = 0;
 255        acpi_status status = 0;
 256        struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
 257        union acpi_object *pct = NULL;
 258        union acpi_object obj = { 0 };
 259
 260
 261        status = acpi_evaluate_object(pr->handle, "_PCT", NULL, &buffer);
 262        if (ACPI_FAILURE(status)) {
 263                ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PCT"));
 264                return -ENODEV;
 265        }
 266
 267        pct = (union acpi_object *)buffer.pointer;
 268        if (!pct || (pct->type != ACPI_TYPE_PACKAGE)
 269            || (pct->package.count != 2)) {
 270                printk(KERN_ERR PREFIX "Invalid _PCT data\n");
 271                result = -EFAULT;
 272                goto end;
 273        }
 274
 275        /*
 276         * control_register
 277         */
 278
 279        obj = pct->package.elements[0];
 280
 281        if ((obj.type != ACPI_TYPE_BUFFER)
 282            || (obj.buffer.length < sizeof(struct acpi_pct_register))
 283            || (obj.buffer.pointer == NULL)) {
 284                printk(KERN_ERR PREFIX "Invalid _PCT data (control_register)\n");
 285                result = -EFAULT;
 286                goto end;
 287        }
 288        memcpy(&pr->performance->control_register, obj.buffer.pointer,
 289               sizeof(struct acpi_pct_register));
 290
 291        /*
 292         * status_register
 293         */
 294
 295        obj = pct->package.elements[1];
 296
 297        if ((obj.type != ACPI_TYPE_BUFFER)
 298            || (obj.buffer.length < sizeof(struct acpi_pct_register))
 299            || (obj.buffer.pointer == NULL)) {
 300                printk(KERN_ERR PREFIX "Invalid _PCT data (status_register)\n");
 301                result = -EFAULT;
 302                goto end;
 303        }
 304
 305        memcpy(&pr->performance->status_register, obj.buffer.pointer,
 306               sizeof(struct acpi_pct_register));
 307
 308      end:
 309        kfree(buffer.pointer);
 310
 311        return result;
 312}
 313
 314#ifdef CONFIG_X86
 315/*
 316 * Some AMDs have 50MHz frequency multiples, but only provide 100MHz rounding
 317 * in their ACPI data. Calculate the real values and fix up the _PSS data.
 318 */
 319static void amd_fixup_frequency(struct acpi_processor_px *px, int i)
 320{
 321        u32 hi, lo, fid, did;
 322        int index = px->control & 0x00000007;
 323
 324        if (boot_cpu_data.x86_vendor != X86_VENDOR_AMD)
 325                return;
 326
 327        if ((boot_cpu_data.x86 == 0x10 && boot_cpu_data.x86_model < 10)
 328            || boot_cpu_data.x86 == 0x11) {
 329                rdmsr(MSR_AMD_PSTATE_DEF_BASE + index, lo, hi);
 330                /*
 331                 * MSR C001_0064+:
 332                 * Bit 63: PstateEn. Read-write. If set, the P-state is valid.
 333                 */
 334                if (!(hi & BIT(31)))
 335                        return;
 336
 337                fid = lo & 0x3f;
 338                did = (lo >> 6) & 7;
 339                if (boot_cpu_data.x86 == 0x10)
 340                        px->core_frequency = (100 * (fid + 0x10)) >> did;
 341                else
 342                        px->core_frequency = (100 * (fid + 8)) >> did;
 343        }
 344}
 345#else
 346static void amd_fixup_frequency(struct acpi_processor_px *px, int i) {};
 347#endif
 348
 349static int acpi_processor_get_performance_states(struct acpi_processor *pr)
 350{
 351        int result = 0;
 352        acpi_status status = AE_OK;
 353        struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
 354        struct acpi_buffer format = { sizeof("NNNNNN"), "NNNNNN" };
 355        struct acpi_buffer state = { 0, NULL };
 356        union acpi_object *pss = NULL;
 357        int i;
 358        int last_invalid = -1;
 359
 360
 361        status = acpi_evaluate_object(pr->handle, "_PSS", NULL, &buffer);
 362        if (ACPI_FAILURE(status)) {
 363                ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PSS"));
 364                return -ENODEV;
 365        }
 366
 367        pss = buffer.pointer;
 368        if (!pss || (pss->type != ACPI_TYPE_PACKAGE)) {
 369                printk(KERN_ERR PREFIX "Invalid _PSS data\n");
 370                result = -EFAULT;
 371                goto end;
 372        }
 373
 374        ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Found %d performance states\n",
 375                          pss->package.count));
 376
 377        pr->performance->state_count = pss->package.count;
 378        pr->performance->states =
 379            kmalloc(sizeof(struct acpi_processor_px) * pss->package.count,
 380                    GFP_KERNEL);
 381        if (!pr->performance->states) {
 382                result = -ENOMEM;
 383                goto end;
 384        }
 385
 386        for (i = 0; i < pr->performance->state_count; i++) {
 387
 388                struct acpi_processor_px *px = &(pr->performance->states[i]);
 389
 390                state.length = sizeof(struct acpi_processor_px);
 391                state.pointer = px;
 392
 393                ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Extracting state %d\n", i));
 394
 395                status = acpi_extract_package(&(pss->package.elements[i]),
 396                                              &format, &state);
 397                if (ACPI_FAILURE(status)) {
 398                        ACPI_EXCEPTION((AE_INFO, status, "Invalid _PSS data"));
 399                        result = -EFAULT;
 400                        kfree(pr->performance->states);
 401                        goto end;
 402                }
 403
 404                amd_fixup_frequency(px, i);
 405
 406                ACPI_DEBUG_PRINT((ACPI_DB_INFO,
 407                                  "State [%d]: core_frequency[%d] power[%d] transition_latency[%d] bus_master_latency[%d] control[0x%x] status[0x%x]\n",
 408                                  i,
 409                                  (u32) px->core_frequency,
 410                                  (u32) px->power,
 411                                  (u32) px->transition_latency,
 412                                  (u32) px->bus_master_latency,
 413                                  (u32) px->control, (u32) px->status));
 414
 415                /*
 416                 * Check that ACPI's u64 MHz will be valid as u32 KHz in cpufreq
 417                 */
 418                if (!px->core_frequency ||
 419                    ((u32)(px->core_frequency * 1000) !=
 420                     (px->core_frequency * 1000))) {
 421                        printk(KERN_ERR FW_BUG PREFIX
 422                               "Invalid BIOS _PSS frequency found for processor %d: 0x%llx MHz\n",
 423                               pr->id, px->core_frequency);
 424                        if (last_invalid == -1)
 425                                last_invalid = i;
 426                } else {
 427                        if (last_invalid != -1) {
 428                                /*
 429                                 * Copy this valid entry over last_invalid entry
 430                                 */
 431                                memcpy(&(pr->performance->states[last_invalid]),
 432                                       px, sizeof(struct acpi_processor_px));
 433                                ++last_invalid;
 434                        }
 435                }
 436        }
 437
 438        if (last_invalid == 0) {
 439                printk(KERN_ERR FW_BUG PREFIX
 440                       "No valid BIOS _PSS frequency found for processor %d\n", pr->id);
 441                result = -EFAULT;
 442                kfree(pr->performance->states);
 443                pr->performance->states = NULL;
 444        }
 445
 446        if (last_invalid > 0)
 447                pr->performance->state_count = last_invalid;
 448
 449      end:
 450        kfree(buffer.pointer);
 451
 452        return result;
 453}
 454
 455int acpi_processor_get_performance_info(struct acpi_processor *pr)
 456{
 457        int result = 0;
 458
 459        if (!pr || !pr->performance || !pr->handle)
 460                return -EINVAL;
 461
 462        if (!acpi_has_method(pr->handle, "_PCT")) {
 463                ACPI_DEBUG_PRINT((ACPI_DB_INFO,
 464                                  "ACPI-based processor performance control unavailable\n"));
 465                return -ENODEV;
 466        }
 467
 468        result = acpi_processor_get_performance_control(pr);
 469        if (result)
 470                goto update_bios;
 471
 472        result = acpi_processor_get_performance_states(pr);
 473        if (result)
 474                goto update_bios;
 475
 476        /* We need to call _PPC once when cpufreq starts */
 477        if (ignore_ppc != 1)
 478                result = acpi_processor_get_platform_limit(pr);
 479
 480        return result;
 481
 482        /*
 483         * Having _PPC but missing frequencies (_PSS, _PCT) is a very good hint that
 484         * the BIOS is older than the CPU and does not know its frequencies
 485         */
 486 update_bios:
 487#ifdef CONFIG_X86
 488        if (acpi_has_method(pr->handle, "_PPC")) {
 489                if(boot_cpu_has(X86_FEATURE_EST))
 490                        printk(KERN_WARNING FW_BUG "BIOS needs update for CPU "
 491                               "frequency support\n");
 492        }
 493#endif
 494        return result;
 495}
 496EXPORT_SYMBOL_GPL(acpi_processor_get_performance_info);
 497
 498int acpi_processor_pstate_control(void)
 499{
 500        acpi_status status;
 501
 502        if (!acpi_gbl_FADT.smi_command || !acpi_gbl_FADT.pstate_control)
 503                return 0;
 504
 505        ACPI_DEBUG_PRINT((ACPI_DB_INFO,
 506                          "Writing pstate_control [0x%x] to smi_command [0x%x]\n",
 507                          acpi_gbl_FADT.pstate_control, acpi_gbl_FADT.smi_command));
 508
 509        status = acpi_os_write_port(acpi_gbl_FADT.smi_command,
 510                                    (u32)acpi_gbl_FADT.pstate_control, 8);
 511        if (ACPI_SUCCESS(status))
 512                return 1;
 513
 514        ACPI_EXCEPTION((AE_INFO, status,
 515                        "Failed to write pstate_control [0x%x] to smi_command [0x%x]",
 516                        acpi_gbl_FADT.pstate_control, acpi_gbl_FADT.smi_command));
 517        return -EIO;
 518}
 519
 520int acpi_processor_notify_smm(struct module *calling_module)
 521{
 522        static int is_done = 0;
 523        int result;
 524
 525        if (!(acpi_processor_ppc_status & PPC_REGISTERED))
 526                return -EBUSY;
 527
 528        if (!try_module_get(calling_module))
 529                return -EINVAL;
 530
 531        /* is_done is set to negative if an error occurred,
 532         * and to postitive if _no_ error occurred, but SMM
 533         * was already notified. This avoids double notification
 534         * which might lead to unexpected results...
 535         */
 536        if (is_done > 0) {
 537                module_put(calling_module);
 538                return 0;
 539        } else if (is_done < 0) {
 540                module_put(calling_module);
 541                return is_done;
 542        }
 543
 544        is_done = -EIO;
 545
 546        result = acpi_processor_pstate_control();
 547        if (!result) {
 548                ACPI_DEBUG_PRINT((ACPI_DB_INFO, "No SMI port or pstate_control\n"));
 549                module_put(calling_module);
 550                return 0;
 551        }
 552        if (result < 0) {
 553                module_put(calling_module);
 554                return result;
 555        }
 556
 557        /* Success. If there's no _PPC, we need to fear nothing, so
 558         * we can allow the cpufreq driver to be rmmod'ed. */
 559        is_done = 1;
 560
 561        if (!(acpi_processor_ppc_status & PPC_IN_USE))
 562                module_put(calling_module);
 563
 564        return 0;
 565}
 566
 567EXPORT_SYMBOL(acpi_processor_notify_smm);
 568
 569static int acpi_processor_get_psd(struct acpi_processor *pr)
 570{
 571        int result = 0;
 572        acpi_status status = AE_OK;
 573        struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL};
 574        struct acpi_buffer format = {sizeof("NNNNN"), "NNNNN"};
 575        struct acpi_buffer state = {0, NULL};
 576        union acpi_object  *psd = NULL;
 577        struct acpi_psd_package *pdomain;
 578
 579        status = acpi_evaluate_object(pr->handle, "_PSD", NULL, &buffer);
 580        if (ACPI_FAILURE(status)) {
 581                return -ENODEV;
 582        }
 583
 584        psd = buffer.pointer;
 585        if (!psd || (psd->type != ACPI_TYPE_PACKAGE)) {
 586                printk(KERN_ERR PREFIX "Invalid _PSD data\n");
 587                result = -EFAULT;
 588                goto end;
 589        }
 590
 591        if (psd->package.count != 1) {
 592                printk(KERN_ERR PREFIX "Invalid _PSD data\n");
 593                result = -EFAULT;
 594                goto end;
 595        }
 596
 597        pdomain = &(pr->performance->domain_info);
 598
 599        state.length = sizeof(struct acpi_psd_package);
 600        state.pointer = pdomain;
 601
 602        status = acpi_extract_package(&(psd->package.elements[0]),
 603                &format, &state);
 604        if (ACPI_FAILURE(status)) {
 605                printk(KERN_ERR PREFIX "Invalid _PSD data\n");
 606                result = -EFAULT;
 607                goto end;
 608        }
 609
 610        if (pdomain->num_entries != ACPI_PSD_REV0_ENTRIES) {
 611                printk(KERN_ERR PREFIX "Unknown _PSD:num_entries\n");
 612                result = -EFAULT;
 613                goto end;
 614        }
 615
 616        if (pdomain->revision != ACPI_PSD_REV0_REVISION) {
 617                printk(KERN_ERR PREFIX "Unknown _PSD:revision\n");
 618                result = -EFAULT;
 619                goto end;
 620        }
 621
 622        if (pdomain->coord_type != DOMAIN_COORD_TYPE_SW_ALL &&
 623            pdomain->coord_type != DOMAIN_COORD_TYPE_SW_ANY &&
 624            pdomain->coord_type != DOMAIN_COORD_TYPE_HW_ALL) {
 625                printk(KERN_ERR PREFIX "Invalid _PSD:coord_type\n");
 626                result = -EFAULT;
 627                goto end;
 628        }
 629end:
 630        kfree(buffer.pointer);
 631        return result;
 632}
 633
 634int acpi_processor_preregister_performance(
 635                struct acpi_processor_performance __percpu *performance)
 636{
 637        int count_target;
 638        int retval = 0;
 639        unsigned int i, j;
 640        cpumask_var_t covered_cpus;
 641        struct acpi_processor *pr;
 642        struct acpi_psd_package *pdomain;
 643        struct acpi_processor *match_pr;
 644        struct acpi_psd_package *match_pdomain;
 645
 646        if (!zalloc_cpumask_var(&covered_cpus, GFP_KERNEL))
 647                return -ENOMEM;
 648
 649        mutex_lock(&performance_mutex);
 650
 651        /*
 652         * Check if another driver has already registered, and abort before
 653         * changing pr->performance if it has. Check input data as well.
 654         */
 655        for_each_possible_cpu(i) {
 656                pr = per_cpu(processors, i);
 657                if (!pr) {
 658                        /* Look only at processors in ACPI namespace */
 659                        continue;
 660                }
 661
 662                if (pr->performance) {
 663                        retval = -EBUSY;
 664                        goto err_out;
 665                }
 666
 667                if (!performance || !per_cpu_ptr(performance, i)) {
 668                        retval = -EINVAL;
 669                        goto err_out;
 670                }
 671        }
 672
 673        /* Call _PSD for all CPUs */
 674        for_each_possible_cpu(i) {
 675                pr = per_cpu(processors, i);
 676                if (!pr)
 677                        continue;
 678
 679                pr->performance = per_cpu_ptr(performance, i);
 680                cpumask_set_cpu(i, pr->performance->shared_cpu_map);
 681                if (acpi_processor_get_psd(pr)) {
 682                        retval = -EINVAL;
 683                        continue;
 684                }
 685        }
 686        if (retval)
 687                goto err_ret;
 688
 689        /*
 690         * Now that we have _PSD data from all CPUs, lets setup P-state 
 691         * domain info.
 692         */
 693        for_each_possible_cpu(i) {
 694                pr = per_cpu(processors, i);
 695                if (!pr)
 696                        continue;
 697
 698                if (cpumask_test_cpu(i, covered_cpus))
 699                        continue;
 700
 701                pdomain = &(pr->performance->domain_info);
 702                cpumask_set_cpu(i, pr->performance->shared_cpu_map);
 703                cpumask_set_cpu(i, covered_cpus);
 704                if (pdomain->num_processors <= 1)
 705                        continue;
 706
 707                /* Validate the Domain info */
 708                count_target = pdomain->num_processors;
 709                if (pdomain->coord_type == DOMAIN_COORD_TYPE_SW_ALL)
 710                        pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ALL;
 711                else if (pdomain->coord_type == DOMAIN_COORD_TYPE_HW_ALL)
 712                        pr->performance->shared_type = CPUFREQ_SHARED_TYPE_HW;
 713                else if (pdomain->coord_type == DOMAIN_COORD_TYPE_SW_ANY)
 714                        pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ANY;
 715
 716                for_each_possible_cpu(j) {
 717                        if (i == j)
 718                                continue;
 719
 720                        match_pr = per_cpu(processors, j);
 721                        if (!match_pr)
 722                                continue;
 723
 724                        match_pdomain = &(match_pr->performance->domain_info);
 725                        if (match_pdomain->domain != pdomain->domain)
 726                                continue;
 727
 728                        /* Here i and j are in the same domain */
 729
 730                        if (match_pdomain->num_processors != count_target) {
 731                                retval = -EINVAL;
 732                                goto err_ret;
 733                        }
 734
 735                        if (pdomain->coord_type != match_pdomain->coord_type) {
 736                                retval = -EINVAL;
 737                                goto err_ret;
 738                        }
 739
 740                        cpumask_set_cpu(j, covered_cpus);
 741                        cpumask_set_cpu(j, pr->performance->shared_cpu_map);
 742                }
 743
 744                for_each_possible_cpu(j) {
 745                        if (i == j)
 746                                continue;
 747
 748                        match_pr = per_cpu(processors, j);
 749                        if (!match_pr)
 750                                continue;
 751
 752                        match_pdomain = &(match_pr->performance->domain_info);
 753                        if (match_pdomain->domain != pdomain->domain)
 754                                continue;
 755
 756                        match_pr->performance->shared_type = 
 757                                        pr->performance->shared_type;
 758                        cpumask_copy(match_pr->performance->shared_cpu_map,
 759                                     pr->performance->shared_cpu_map);
 760                }
 761        }
 762
 763err_ret:
 764        for_each_possible_cpu(i) {
 765                pr = per_cpu(processors, i);
 766                if (!pr || !pr->performance)
 767                        continue;
 768
 769                /* Assume no coordination on any error parsing domain info */
 770                if (retval) {
 771                        cpumask_clear(pr->performance->shared_cpu_map);
 772                        cpumask_set_cpu(i, pr->performance->shared_cpu_map);
 773                        pr->performance->shared_type = CPUFREQ_SHARED_TYPE_ALL;
 774                }
 775                pr->performance = NULL; /* Will be set for real in register */
 776        }
 777
 778err_out:
 779        mutex_unlock(&performance_mutex);
 780        free_cpumask_var(covered_cpus);
 781        return retval;
 782}
 783EXPORT_SYMBOL(acpi_processor_preregister_performance);
 784
 785int
 786acpi_processor_register_performance(struct acpi_processor_performance
 787                                    *performance, unsigned int cpu)
 788{
 789        struct acpi_processor *pr;
 790
 791        if (!(acpi_processor_ppc_status & PPC_REGISTERED))
 792                return -EINVAL;
 793
 794        mutex_lock(&performance_mutex);
 795
 796        pr = per_cpu(processors, cpu);
 797        if (!pr) {
 798                mutex_unlock(&performance_mutex);
 799                return -ENODEV;
 800        }
 801
 802        if (pr->performance) {
 803                mutex_unlock(&performance_mutex);
 804                return -EBUSY;
 805        }
 806
 807        WARN_ON(!performance);
 808
 809        pr->performance = performance;
 810
 811        if (acpi_processor_get_performance_info(pr)) {
 812                pr->performance = NULL;
 813                mutex_unlock(&performance_mutex);
 814                return -EIO;
 815        }
 816
 817        mutex_unlock(&performance_mutex);
 818        return 0;
 819}
 820
 821EXPORT_SYMBOL(acpi_processor_register_performance);
 822
 823void
 824acpi_processor_unregister_performance(struct acpi_processor_performance
 825                                      *performance, unsigned int cpu)
 826{
 827        struct acpi_processor *pr;
 828
 829        mutex_lock(&performance_mutex);
 830
 831        pr = per_cpu(processors, cpu);
 832        if (!pr) {
 833                mutex_unlock(&performance_mutex);
 834                return;
 835        }
 836
 837        if (pr->performance)
 838                kfree(pr->performance->states);
 839        pr->performance = NULL;
 840
 841        mutex_unlock(&performance_mutex);
 842
 843        return;
 844}
 845
 846EXPORT_SYMBOL(acpi_processor_unregister_performance);
 847