linux/include/acpi/actbl.h
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   1/* SPDX-License-Identifier: BSD-3-Clause OR GPL-2.0 */
   2/******************************************************************************
   3 *
   4 * Name: actbl.h - Basic ACPI Table Definitions
   5 *
   6 * Copyright (C) 2000 - 2019, Intel Corp.
   7 *
   8 *****************************************************************************/
   9
  10#ifndef __ACTBL_H__
  11#define __ACTBL_H__
  12
  13/*******************************************************************************
  14 *
  15 * Fundamental ACPI tables
  16 *
  17 * This file contains definitions for the ACPI tables that are directly consumed
  18 * by ACPICA. All other tables are consumed by the OS-dependent ACPI-related
  19 * device drivers and other OS support code.
  20 *
  21 * The RSDP and FACS do not use the common ACPI table header. All other ACPI
  22 * tables use the header.
  23 *
  24 ******************************************************************************/
  25
  26/*
  27 * Values for description table header signatures for tables defined in this
  28 * file. Useful because they make it more difficult to inadvertently type in
  29 * the wrong signature.
  30 */
  31#define ACPI_SIG_DSDT           "DSDT"  /* Differentiated System Description Table */
  32#define ACPI_SIG_FADT           "FACP"  /* Fixed ACPI Description Table */
  33#define ACPI_SIG_FACS           "FACS"  /* Firmware ACPI Control Structure */
  34#define ACPI_SIG_OSDT           "OSDT"  /* Override System Description Table */
  35#define ACPI_SIG_PSDT           "PSDT"  /* Persistent System Description Table */
  36#define ACPI_SIG_RSDP           "RSD PTR "      /* Root System Description Pointer */
  37#define ACPI_SIG_RSDT           "RSDT"  /* Root System Description Table */
  38#define ACPI_SIG_XSDT           "XSDT"  /* Extended  System Description Table */
  39#define ACPI_SIG_SSDT           "SSDT"  /* Secondary System Description Table */
  40#define ACPI_RSDP_NAME          "RSDP"  /* Short name for RSDP, not signature */
  41#define ACPI_OEM_NAME           "OEM"   /* Short name for OEM, not signature */
  42
  43/*
  44 * All tables and structures must be byte-packed to match the ACPI
  45 * specification, since the tables are provided by the system BIOS
  46 */
  47#pragma pack(1)
  48
  49/*
  50 * Note: C bitfields are not used for this reason:
  51 *
  52 * "Bitfields are great and easy to read, but unfortunately the C language
  53 * does not specify the layout of bitfields in memory, which means they are
  54 * essentially useless for dealing with packed data in on-disk formats or
  55 * binary wire protocols." (Or ACPI tables and buffers.) "If you ask me,
  56 * this decision was a design error in C. Ritchie could have picked an order
  57 * and stuck with it." Norman Ramsey.
  58 * See http://stackoverflow.com/a/1053662/41661
  59 */
  60
  61/*******************************************************************************
  62 *
  63 * Master ACPI Table Header. This common header is used by all ACPI tables
  64 * except the RSDP and FACS.
  65 *
  66 ******************************************************************************/
  67
  68struct acpi_table_header {
  69        char signature[ACPI_NAMESEG_SIZE];      /* ASCII table signature */
  70        u32 length;             /* Length of table in bytes, including this header */
  71        u8 revision;            /* ACPI Specification minor version number */
  72        u8 checksum;            /* To make sum of entire table == 0 */
  73        char oem_id[ACPI_OEM_ID_SIZE];  /* ASCII OEM identification */
  74        char oem_table_id[ACPI_OEM_TABLE_ID_SIZE];      /* ASCII OEM table identification */
  75        u32 oem_revision;       /* OEM revision number */
  76        char asl_compiler_id[ACPI_NAMESEG_SIZE];        /* ASCII ASL compiler vendor ID */
  77        u32 asl_compiler_revision;      /* ASL compiler version */
  78};
  79
  80/*******************************************************************************
  81 *
  82 * GAS - Generic Address Structure (ACPI 2.0+)
  83 *
  84 * Note: Since this structure is used in the ACPI tables, it is byte aligned.
  85 * If misaligned access is not supported by the hardware, accesses to the
  86 * 64-bit Address field must be performed with care.
  87 *
  88 ******************************************************************************/
  89
  90struct acpi_generic_address {
  91        u8 space_id;            /* Address space where struct or register exists */
  92        u8 bit_width;           /* Size in bits of given register */
  93        u8 bit_offset;          /* Bit offset within the register */
  94        u8 access_width;        /* Minimum Access size (ACPI 3.0) */
  95        u64 address;            /* 64-bit address of struct or register */
  96};
  97
  98/*******************************************************************************
  99 *
 100 * RSDP - Root System Description Pointer (Signature is "RSD PTR ")
 101 *        Version 2
 102 *
 103 ******************************************************************************/
 104
 105struct acpi_table_rsdp {
 106        char signature[8];      /* ACPI signature, contains "RSD PTR " */
 107        u8 checksum;            /* ACPI 1.0 checksum */
 108        char oem_id[ACPI_OEM_ID_SIZE];  /* OEM identification */
 109        u8 revision;            /* Must be (0) for ACPI 1.0 or (2) for ACPI 2.0+ */
 110        u32 rsdt_physical_address;      /* 32-bit physical address of the RSDT */
 111        u32 length;             /* Table length in bytes, including header (ACPI 2.0+) */
 112        u64 xsdt_physical_address;      /* 64-bit physical address of the XSDT (ACPI 2.0+) */
 113        u8 extended_checksum;   /* Checksum of entire table (ACPI 2.0+) */
 114        u8 reserved[3];         /* Reserved, must be zero */
 115};
 116
 117/* Standalone struct for the ACPI 1.0 RSDP */
 118
 119struct acpi_rsdp_common {
 120        char signature[8];
 121        u8 checksum;
 122        char oem_id[ACPI_OEM_ID_SIZE];
 123        u8 revision;
 124        u32 rsdt_physical_address;
 125};
 126
 127/* Standalone struct for the extended part of the RSDP (ACPI 2.0+) */
 128
 129struct acpi_rsdp_extension {
 130        u32 length;
 131        u64 xsdt_physical_address;
 132        u8 extended_checksum;
 133        u8 reserved[3];
 134};
 135
 136/*******************************************************************************
 137 *
 138 * RSDT/XSDT - Root System Description Tables
 139 *             Version 1 (both)
 140 *
 141 ******************************************************************************/
 142
 143struct acpi_table_rsdt {
 144        struct acpi_table_header header;        /* Common ACPI table header */
 145        u32 table_offset_entry[1];      /* Array of pointers to ACPI tables */
 146};
 147
 148struct acpi_table_xsdt {
 149        struct acpi_table_header header;        /* Common ACPI table header */
 150        u64 table_offset_entry[1];      /* Array of pointers to ACPI tables */
 151};
 152
 153#define ACPI_RSDT_ENTRY_SIZE        (sizeof (u32))
 154#define ACPI_XSDT_ENTRY_SIZE        (sizeof (u64))
 155
 156/*******************************************************************************
 157 *
 158 * FACS - Firmware ACPI Control Structure (FACS)
 159 *
 160 ******************************************************************************/
 161
 162struct acpi_table_facs {
 163        char signature[4];      /* ASCII table signature */
 164        u32 length;             /* Length of structure, in bytes */
 165        u32 hardware_signature; /* Hardware configuration signature */
 166        u32 firmware_waking_vector;     /* 32-bit physical address of the Firmware Waking Vector */
 167        u32 global_lock;        /* Global Lock for shared hardware resources */
 168        u32 flags;
 169        u64 xfirmware_waking_vector;    /* 64-bit version of the Firmware Waking Vector (ACPI 2.0+) */
 170        u8 version;             /* Version of this table (ACPI 2.0+) */
 171        u8 reserved[3];         /* Reserved, must be zero */
 172        u32 ospm_flags;         /* Flags to be set by OSPM (ACPI 4.0) */
 173        u8 reserved1[24];       /* Reserved, must be zero */
 174};
 175
 176/* Masks for global_lock flag field above */
 177
 178#define ACPI_GLOCK_PENDING          (1) /* 00: Pending global lock ownership */
 179#define ACPI_GLOCK_OWNED            (1<<1)      /* 01: Global lock is owned */
 180
 181/* Masks for Flags field above  */
 182
 183#define ACPI_FACS_S4_BIOS_PRESENT   (1) /* 00: S4BIOS support is present */
 184#define ACPI_FACS_64BIT_WAKE        (1<<1)      /* 01: 64-bit wake vector supported (ACPI 4.0) */
 185
 186/* Masks for ospm_flags field above */
 187
 188#define ACPI_FACS_64BIT_ENVIRONMENT (1) /* 00: 64-bit wake environment is required (ACPI 4.0) */
 189
 190/*******************************************************************************
 191 *
 192 * FADT - Fixed ACPI Description Table (Signature "FACP")
 193 *        Version 6
 194 *
 195 ******************************************************************************/
 196
 197/* Fields common to all versions of the FADT */
 198
 199struct acpi_table_fadt {
 200        struct acpi_table_header header;        /* Common ACPI table header */
 201        u32 facs;               /* 32-bit physical address of FACS */
 202        u32 dsdt;               /* 32-bit physical address of DSDT */
 203        u8 model;               /* System Interrupt Model (ACPI 1.0) - not used in ACPI 2.0+ */
 204        u8 preferred_profile;   /* Conveys preferred power management profile to OSPM. */
 205        u16 sci_interrupt;      /* System vector of SCI interrupt */
 206        u32 smi_command;        /* 32-bit Port address of SMI command port */
 207        u8 acpi_enable;         /* Value to write to SMI_CMD to enable ACPI */
 208        u8 acpi_disable;        /* Value to write to SMI_CMD to disable ACPI */
 209        u8 s4_bios_request;     /* Value to write to SMI_CMD to enter S4BIOS state */
 210        u8 pstate_control;      /* Processor performance state control */
 211        u32 pm1a_event_block;   /* 32-bit port address of Power Mgt 1a Event Reg Blk */
 212        u32 pm1b_event_block;   /* 32-bit port address of Power Mgt 1b Event Reg Blk */
 213        u32 pm1a_control_block; /* 32-bit port address of Power Mgt 1a Control Reg Blk */
 214        u32 pm1b_control_block; /* 32-bit port address of Power Mgt 1b Control Reg Blk */
 215        u32 pm2_control_block;  /* 32-bit port address of Power Mgt 2 Control Reg Blk */
 216        u32 pm_timer_block;     /* 32-bit port address of Power Mgt Timer Ctrl Reg Blk */
 217        u32 gpe0_block;         /* 32-bit port address of General Purpose Event 0 Reg Blk */
 218        u32 gpe1_block;         /* 32-bit port address of General Purpose Event 1 Reg Blk */
 219        u8 pm1_event_length;    /* Byte Length of ports at pm1x_event_block */
 220        u8 pm1_control_length;  /* Byte Length of ports at pm1x_control_block */
 221        u8 pm2_control_length;  /* Byte Length of ports at pm2_control_block */
 222        u8 pm_timer_length;     /* Byte Length of ports at pm_timer_block */
 223        u8 gpe0_block_length;   /* Byte Length of ports at gpe0_block */
 224        u8 gpe1_block_length;   /* Byte Length of ports at gpe1_block */
 225        u8 gpe1_base;           /* Offset in GPE number space where GPE1 events start */
 226        u8 cst_control;         /* Support for the _CST object and C-States change notification */
 227        u16 c2_latency;         /* Worst case HW latency to enter/exit C2 state */
 228        u16 c3_latency;         /* Worst case HW latency to enter/exit C3 state */
 229        u16 flush_size;         /* Processor memory cache line width, in bytes */
 230        u16 flush_stride;       /* Number of flush strides that need to be read */
 231        u8 duty_offset;         /* Processor duty cycle index in processor P_CNT reg */
 232        u8 duty_width;          /* Processor duty cycle value bit width in P_CNT register */
 233        u8 day_alarm;           /* Index to day-of-month alarm in RTC CMOS RAM */
 234        u8 month_alarm;         /* Index to month-of-year alarm in RTC CMOS RAM */
 235        u8 century;             /* Index to century in RTC CMOS RAM */
 236        u16 boot_flags;         /* IA-PC Boot Architecture Flags (see below for individual flags) */
 237        u8 reserved;            /* Reserved, must be zero */
 238        u32 flags;              /* Miscellaneous flag bits (see below for individual flags) */
 239        struct acpi_generic_address reset_register;     /* 64-bit address of the Reset register */
 240        u8 reset_value;         /* Value to write to the reset_register port to reset the system */
 241        u16 arm_boot_flags;     /* ARM-Specific Boot Flags (see below for individual flags) (ACPI 5.1) */
 242        u8 minor_revision;      /* FADT Minor Revision (ACPI 5.1) */
 243        u64 Xfacs;              /* 64-bit physical address of FACS */
 244        u64 Xdsdt;              /* 64-bit physical address of DSDT */
 245        struct acpi_generic_address xpm1a_event_block;  /* 64-bit Extended Power Mgt 1a Event Reg Blk address */
 246        struct acpi_generic_address xpm1b_event_block;  /* 64-bit Extended Power Mgt 1b Event Reg Blk address */
 247        struct acpi_generic_address xpm1a_control_block;        /* 64-bit Extended Power Mgt 1a Control Reg Blk address */
 248        struct acpi_generic_address xpm1b_control_block;        /* 64-bit Extended Power Mgt 1b Control Reg Blk address */
 249        struct acpi_generic_address xpm2_control_block; /* 64-bit Extended Power Mgt 2 Control Reg Blk address */
 250        struct acpi_generic_address xpm_timer_block;    /* 64-bit Extended Power Mgt Timer Ctrl Reg Blk address */
 251        struct acpi_generic_address xgpe0_block;        /* 64-bit Extended General Purpose Event 0 Reg Blk address */
 252        struct acpi_generic_address xgpe1_block;        /* 64-bit Extended General Purpose Event 1 Reg Blk address */
 253        struct acpi_generic_address sleep_control;      /* 64-bit Sleep Control register (ACPI 5.0) */
 254        struct acpi_generic_address sleep_status;       /* 64-bit Sleep Status register (ACPI 5.0) */
 255        u64 hypervisor_id;      /* Hypervisor Vendor ID (ACPI 6.0) */
 256};
 257
 258/* Masks for FADT IA-PC Boot Architecture Flags (boot_flags) [Vx]=Introduced in this FADT revision */
 259
 260#define ACPI_FADT_LEGACY_DEVICES    (1)         /* 00: [V2] System has LPC or ISA bus devices */
 261#define ACPI_FADT_8042              (1<<1)      /* 01: [V3] System has an 8042 controller on port 60/64 */
 262#define ACPI_FADT_NO_VGA            (1<<2)      /* 02: [V4] It is not safe to probe for VGA hardware */
 263#define ACPI_FADT_NO_MSI            (1<<3)      /* 03: [V4] Message Signaled Interrupts (MSI) must not be enabled */
 264#define ACPI_FADT_NO_ASPM           (1<<4)      /* 04: [V4] PCIe ASPM control must not be enabled */
 265#define ACPI_FADT_NO_CMOS_RTC       (1<<5)      /* 05: [V5] No CMOS real-time clock present */
 266
 267#define FADT2_REVISION_ID               3
 268
 269/* Masks for FADT ARM Boot Architecture Flags (arm_boot_flags) ACPI 5.1 */
 270
 271#define ACPI_FADT_PSCI_COMPLIANT    (1) /* 00: [V5+] PSCI 0.2+ is implemented */
 272#define ACPI_FADT_PSCI_USE_HVC      (1<<1)      /* 01: [V5+] HVC must be used instead of SMC as the PSCI conduit */
 273
 274/* Masks for FADT flags */
 275
 276#define ACPI_FADT_WBINVD            (1) /* 00: [V1] The WBINVD instruction works properly */
 277#define ACPI_FADT_WBINVD_FLUSH      (1<<1)      /* 01: [V1] WBINVD flushes but does not invalidate caches */
 278#define ACPI_FADT_C1_SUPPORTED      (1<<2)      /* 02: [V1] All processors support C1 state */
 279#define ACPI_FADT_C2_MP_SUPPORTED   (1<<3)      /* 03: [V1] C2 state works on MP system */
 280#define ACPI_FADT_POWER_BUTTON      (1<<4)      /* 04: [V1] Power button is handled as a control method device */
 281#define ACPI_FADT_SLEEP_BUTTON      (1<<5)      /* 05: [V1] Sleep button is handled as a control method device */
 282#define ACPI_FADT_FIXED_RTC         (1<<6)      /* 06: [V1] RTC wakeup status is not in fixed register space */
 283#define ACPI_FADT_S4_RTC_WAKE       (1<<7)      /* 07: [V1] RTC alarm can wake system from S4 */
 284#define ACPI_FADT_32BIT_TIMER       (1<<8)      /* 08: [V1] ACPI timer width is 32-bit (0=24-bit) */
 285#define ACPI_FADT_DOCKING_SUPPORTED (1<<9)      /* 09: [V1] Docking supported */
 286#define ACPI_FADT_RESET_REGISTER    (1<<10)     /* 10: [V2] System reset via the FADT RESET_REG supported */
 287#define ACPI_FADT_SEALED_CASE       (1<<11)     /* 11: [V3] No internal expansion capabilities and case is sealed */
 288#define ACPI_FADT_HEADLESS          (1<<12)     /* 12: [V3] No local video capabilities or local input devices */
 289#define ACPI_FADT_SLEEP_TYPE        (1<<13)     /* 13: [V3] Must execute native instruction after writing  SLP_TYPx register */
 290#define ACPI_FADT_PCI_EXPRESS_WAKE  (1<<14)     /* 14: [V4] System supports PCIEXP_WAKE (STS/EN) bits (ACPI 3.0) */
 291#define ACPI_FADT_PLATFORM_CLOCK    (1<<15)     /* 15: [V4] OSPM should use platform-provided timer (ACPI 3.0) */
 292#define ACPI_FADT_S4_RTC_VALID      (1<<16)     /* 16: [V4] Contents of RTC_STS valid after S4 wake (ACPI 3.0) */
 293#define ACPI_FADT_REMOTE_POWER_ON   (1<<17)     /* 17: [V4] System is compatible with remote power on (ACPI 3.0) */
 294#define ACPI_FADT_APIC_CLUSTER      (1<<18)     /* 18: [V4] All local APICs must use cluster model (ACPI 3.0) */
 295#define ACPI_FADT_APIC_PHYSICAL     (1<<19)     /* 19: [V4] All local xAPICs must use physical dest mode (ACPI 3.0) */
 296#define ACPI_FADT_HW_REDUCED        (1<<20)     /* 20: [V5] ACPI hardware is not implemented (ACPI 5.0) */
 297#define ACPI_FADT_LOW_POWER_S0      (1<<21)     /* 21: [V5] S0 power savings are equal or better than S3 (ACPI 5.0) */
 298
 299/* Values for preferred_profile (Preferred Power Management Profiles) */
 300
 301enum acpi_preferred_pm_profiles {
 302        PM_UNSPECIFIED = 0,
 303        PM_DESKTOP = 1,
 304        PM_MOBILE = 2,
 305        PM_WORKSTATION = 3,
 306        PM_ENTERPRISE_SERVER = 4,
 307        PM_SOHO_SERVER = 5,
 308        PM_APPLIANCE_PC = 6,
 309        PM_PERFORMANCE_SERVER = 7,
 310        PM_TABLET = 8
 311};
 312
 313/* Values for sleep_status and sleep_control registers (V5+ FADT) */
 314
 315#define ACPI_X_WAKE_STATUS          0x80
 316#define ACPI_X_SLEEP_TYPE_MASK      0x1C
 317#define ACPI_X_SLEEP_TYPE_POSITION  0x02
 318#define ACPI_X_SLEEP_ENABLE         0x20
 319
 320/* Reset to default packing */
 321
 322#pragma pack()
 323
 324/*
 325 * Internal table-related structures
 326 */
 327union acpi_name_union {
 328        u32 integer;
 329        char ascii[4];
 330};
 331
 332/* Internal ACPI Table Descriptor. One per ACPI table. */
 333
 334struct acpi_table_desc {
 335        acpi_physical_address address;
 336        struct acpi_table_header *pointer;
 337        u32 length;             /* Length fixed at 32 bits (fixed in table header) */
 338        union acpi_name_union signature;
 339        acpi_owner_id owner_id;
 340        u8 flags;
 341        u16 validation_count;
 342};
 343
 344/*
 345 * Maximum value of the validation_count field in struct acpi_table_desc.
 346 * When reached, validation_count cannot be changed any more and the table will
 347 * be permanently regarded as validated.
 348 *
 349 * This is to prevent situations in which unbalanced table get/put operations
 350 * may cause premature table unmapping in the OS to happen.
 351 *
 352 * The maximum validation count can be defined to any value, but should be
 353 * greater than the maximum number of OS early stage mapping slots to avoid
 354 * leaking early stage table mappings to the late stage.
 355 */
 356#define ACPI_MAX_TABLE_VALIDATIONS          ACPI_UINT16_MAX
 357
 358/* Masks for Flags field above */
 359
 360#define ACPI_TABLE_ORIGIN_EXTERNAL_VIRTUAL  (0) /* Virtual address, external maintained */
 361#define ACPI_TABLE_ORIGIN_INTERNAL_PHYSICAL (1) /* Physical address, internally mapped */
 362#define ACPI_TABLE_ORIGIN_INTERNAL_VIRTUAL  (2) /* Virtual address, internallly allocated */
 363#define ACPI_TABLE_ORIGIN_MASK              (3)
 364#define ACPI_TABLE_IS_VERIFIED              (4)
 365#define ACPI_TABLE_IS_LOADED                (8)
 366
 367/*
 368 * Get the remaining ACPI tables
 369 */
 370#include <acpi/actbl1.h>
 371#include <acpi/actbl2.h>
 372#include <acpi/actbl3.h>
 373
 374/* Macros used to generate offsets to specific table fields */
 375
 376#define ACPI_FADT_OFFSET(f)             (u16) ACPI_OFFSET (struct acpi_table_fadt, f)
 377
 378/*
 379 * Sizes of the various flavors of FADT. We need to look closely
 380 * at the FADT length because the version number essentially tells
 381 * us nothing because of many BIOS bugs where the version does not
 382 * match the expected length. In other words, the length of the
 383 * FADT is the bottom line as to what the version really is.
 384 *
 385 * For reference, the values below are as follows:
 386 *     FADT V1 size: 0x074
 387 *     FADT V2 size: 0x084
 388 *     FADT V3 size: 0x0F4
 389 *     FADT V4 size: 0x0F4
 390 *     FADT V5 size: 0x10C
 391 *     FADT V6 size: 0x114
 392 */
 393#define ACPI_FADT_V1_SIZE       (u32) (ACPI_FADT_OFFSET (flags) + 4)
 394#define ACPI_FADT_V2_SIZE       (u32) (ACPI_FADT_OFFSET (minor_revision) + 1)
 395#define ACPI_FADT_V3_SIZE       (u32) (ACPI_FADT_OFFSET (sleep_control))
 396#define ACPI_FADT_V5_SIZE       (u32) (ACPI_FADT_OFFSET (hypervisor_id))
 397#define ACPI_FADT_V6_SIZE       (u32) (sizeof (struct acpi_table_fadt))
 398
 399#define ACPI_FADT_CONFORMANCE   "ACPI 6.1 (FADT version 6)"
 400
 401#endif                          /* __ACTBL_H__ */
 402