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hwxface.c revision 1.1
      1  1.1  jruoho 
      2  1.1  jruoho /******************************************************************************
      3  1.1  jruoho  *
      4  1.1  jruoho  * Module Name: hwxface - Public ACPICA hardware interfaces
      5  1.1  jruoho  *
      6  1.1  jruoho  *****************************************************************************/
      7  1.1  jruoho 
      8  1.1  jruoho /******************************************************************************
      9  1.1  jruoho  *
     10  1.1  jruoho  * 1. Copyright Notice
     11  1.1  jruoho  *
     12  1.1  jruoho  * Some or all of this work - Copyright (c) 1999 - 2010, Intel Corp.
     13  1.1  jruoho  * All rights reserved.
     14  1.1  jruoho  *
     15  1.1  jruoho  * 2. License
     16  1.1  jruoho  *
     17  1.1  jruoho  * 2.1. This is your license from Intel Corp. under its intellectual property
     18  1.1  jruoho  * rights.  You may have additional license terms from the party that provided
     19  1.1  jruoho  * you this software, covering your right to use that party's intellectual
     20  1.1  jruoho  * property rights.
     21  1.1  jruoho  *
     22  1.1  jruoho  * 2.2. Intel grants, free of charge, to any person ("Licensee") obtaining a
     23  1.1  jruoho  * copy of the source code appearing in this file ("Covered Code") an
     24  1.1  jruoho  * irrevocable, perpetual, worldwide license under Intel's copyrights in the
     25  1.1  jruoho  * base code distributed originally by Intel ("Original Intel Code") to copy,
     26  1.1  jruoho  * make derivatives, distribute, use and display any portion of the Covered
     27  1.1  jruoho  * Code in any form, with the right to sublicense such rights; and
     28  1.1  jruoho  *
     29  1.1  jruoho  * 2.3. Intel grants Licensee a non-exclusive and non-transferable patent
     30  1.1  jruoho  * license (with the right to sublicense), under only those claims of Intel
     31  1.1  jruoho  * patents that are infringed by the Original Intel Code, to make, use, sell,
     32  1.1  jruoho  * offer to sell, and import the Covered Code and derivative works thereof
     33  1.1  jruoho  * solely to the minimum extent necessary to exercise the above copyright
     34  1.1  jruoho  * license, and in no event shall the patent license extend to any additions
     35  1.1  jruoho  * to or modifications of the Original Intel Code.  No other license or right
     36  1.1  jruoho  * is granted directly or by implication, estoppel or otherwise;
     37  1.1  jruoho  *
     38  1.1  jruoho  * The above copyright and patent license is granted only if the following
     39  1.1  jruoho  * conditions are met:
     40  1.1  jruoho  *
     41  1.1  jruoho  * 3. Conditions
     42  1.1  jruoho  *
     43  1.1  jruoho  * 3.1. Redistribution of Source with Rights to Further Distribute Source.
     44  1.1  jruoho  * Redistribution of source code of any substantial portion of the Covered
     45  1.1  jruoho  * Code or modification with rights to further distribute source must include
     46  1.1  jruoho  * the above Copyright Notice, the above License, this list of Conditions,
     47  1.1  jruoho  * and the following Disclaimer and Export Compliance provision.  In addition,
     48  1.1  jruoho  * Licensee must cause all Covered Code to which Licensee contributes to
     49  1.1  jruoho  * contain a file documenting the changes Licensee made to create that Covered
     50  1.1  jruoho  * Code and the date of any change.  Licensee must include in that file the
     51  1.1  jruoho  * documentation of any changes made by any predecessor Licensee.  Licensee
     52  1.1  jruoho  * must include a prominent statement that the modification is derived,
     53  1.1  jruoho  * directly or indirectly, from Original Intel Code.
     54  1.1  jruoho  *
     55  1.1  jruoho  * 3.2. Redistribution of Source with no Rights to Further Distribute Source.
     56  1.1  jruoho  * Redistribution of source code of any substantial portion of the Covered
     57  1.1  jruoho  * Code or modification without rights to further distribute source must
     58  1.1  jruoho  * include the following Disclaimer and Export Compliance provision in the
     59  1.1  jruoho  * documentation and/or other materials provided with distribution.  In
     60  1.1  jruoho  * addition, Licensee may not authorize further sublicense of source of any
     61  1.1  jruoho  * portion of the Covered Code, and must include terms to the effect that the
     62  1.1  jruoho  * license from Licensee to its licensee is limited to the intellectual
     63  1.1  jruoho  * property embodied in the software Licensee provides to its licensee, and
     64  1.1  jruoho  * not to intellectual property embodied in modifications its licensee may
     65  1.1  jruoho  * make.
     66  1.1  jruoho  *
     67  1.1  jruoho  * 3.3. Redistribution of Executable. Redistribution in executable form of any
     68  1.1  jruoho  * substantial portion of the Covered Code or modification must reproduce the
     69  1.1  jruoho  * above Copyright Notice, and the following Disclaimer and Export Compliance
     70  1.1  jruoho  * provision in the documentation and/or other materials provided with the
     71  1.1  jruoho  * distribution.
     72  1.1  jruoho  *
     73  1.1  jruoho  * 3.4. Intel retains all right, title, and interest in and to the Original
     74  1.1  jruoho  * Intel Code.
     75  1.1  jruoho  *
     76  1.1  jruoho  * 3.5. Neither the name Intel nor any other trademark owned or controlled by
     77  1.1  jruoho  * Intel shall be used in advertising or otherwise to promote the sale, use or
     78  1.1  jruoho  * other dealings in products derived from or relating to the Covered Code
     79  1.1  jruoho  * without prior written authorization from Intel.
     80  1.1  jruoho  *
     81  1.1  jruoho  * 4. Disclaimer and Export Compliance
     82  1.1  jruoho  *
     83  1.1  jruoho  * 4.1. INTEL MAKES NO WARRANTY OF ANY KIND REGARDING ANY SOFTWARE PROVIDED
     84  1.1  jruoho  * HERE.  ANY SOFTWARE ORIGINATING FROM INTEL OR DERIVED FROM INTEL SOFTWARE
     85  1.1  jruoho  * IS PROVIDED "AS IS," AND INTEL WILL NOT PROVIDE ANY SUPPORT,  ASSISTANCE,
     86  1.1  jruoho  * INSTALLATION, TRAINING OR OTHER SERVICES.  INTEL WILL NOT PROVIDE ANY
     87  1.1  jruoho  * UPDATES, ENHANCEMENTS OR EXTENSIONS.  INTEL SPECIFICALLY DISCLAIMS ANY
     88  1.1  jruoho  * IMPLIED WARRANTIES OF MERCHANTABILITY, NONINFRINGEMENT AND FITNESS FOR A
     89  1.1  jruoho  * PARTICULAR PURPOSE.
     90  1.1  jruoho  *
     91  1.1  jruoho  * 4.2. IN NO EVENT SHALL INTEL HAVE ANY LIABILITY TO LICENSEE, ITS LICENSEES
     92  1.1  jruoho  * OR ANY OTHER THIRD PARTY, FOR ANY LOST PROFITS, LOST DATA, LOSS OF USE OR
     93  1.1  jruoho  * COSTS OF PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES, OR FOR ANY INDIRECT,
     94  1.1  jruoho  * SPECIAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THIS AGREEMENT, UNDER ANY
     95  1.1  jruoho  * CAUSE OF ACTION OR THEORY OF LIABILITY, AND IRRESPECTIVE OF WHETHER INTEL
     96  1.1  jruoho  * HAS ADVANCE NOTICE OF THE POSSIBILITY OF SUCH DAMAGES.  THESE LIMITATIONS
     97  1.1  jruoho  * SHALL APPLY NOTWITHSTANDING THE FAILURE OF THE ESSENTIAL PURPOSE OF ANY
     98  1.1  jruoho  * LIMITED REMEDY.
     99  1.1  jruoho  *
    100  1.1  jruoho  * 4.3. Licensee shall not export, either directly or indirectly, any of this
    101  1.1  jruoho  * software or system incorporating such software without first obtaining any
    102  1.1  jruoho  * required license or other approval from the U. S. Department of Commerce or
    103  1.1  jruoho  * any other agency or department of the United States Government.  In the
    104  1.1  jruoho  * event Licensee exports any such software from the United States or
    105  1.1  jruoho  * re-exports any such software from a foreign destination, Licensee shall
    106  1.1  jruoho  * ensure that the distribution and export/re-export of the software is in
    107  1.1  jruoho  * compliance with all laws, regulations, orders, or other restrictions of the
    108  1.1  jruoho  * U.S. Export Administration Regulations. Licensee agrees that neither it nor
    109  1.1  jruoho  * any of its subsidiaries will export/re-export any technical data, process,
    110  1.1  jruoho  * software, or service, directly or indirectly, to any country for which the
    111  1.1  jruoho  * United States government or any agency thereof requires an export license,
    112  1.1  jruoho  * other governmental approval, or letter of assurance, without first obtaining
    113  1.1  jruoho  * such license, approval or letter.
    114  1.1  jruoho  *
    115  1.1  jruoho  *****************************************************************************/
    116  1.1  jruoho 
    117  1.1  jruoho #include "acpi.h"
    118  1.1  jruoho #include "accommon.h"
    119  1.1  jruoho #include "acnamesp.h"
    120  1.1  jruoho 
    121  1.1  jruoho #define _COMPONENT          ACPI_HARDWARE
    122  1.1  jruoho         ACPI_MODULE_NAME    ("hwxface")
    123  1.1  jruoho 
    124  1.1  jruoho 
    125  1.1  jruoho /******************************************************************************
    126  1.1  jruoho  *
    127  1.1  jruoho  * FUNCTION:    AcpiReset
    128  1.1  jruoho  *
    129  1.1  jruoho  * PARAMETERS:  None
    130  1.1  jruoho  *
    131  1.1  jruoho  * RETURN:      Status
    132  1.1  jruoho  *
    133  1.1  jruoho  * DESCRIPTION: Set reset register in memory or IO space. Note: Does not
    134  1.1  jruoho  *              support reset register in PCI config space, this must be
    135  1.1  jruoho  *              handled separately.
    136  1.1  jruoho  *
    137  1.1  jruoho  ******************************************************************************/
    138  1.1  jruoho 
    139  1.1  jruoho ACPI_STATUS
    140  1.1  jruoho AcpiReset (
    141  1.1  jruoho     void)
    142  1.1  jruoho {
    143  1.1  jruoho     ACPI_GENERIC_ADDRESS    *ResetReg;
    144  1.1  jruoho     ACPI_STATUS             Status;
    145  1.1  jruoho 
    146  1.1  jruoho 
    147  1.1  jruoho     ACPI_FUNCTION_TRACE (AcpiReset);
    148  1.1  jruoho 
    149  1.1  jruoho 
    150  1.1  jruoho     ResetReg = &AcpiGbl_FADT.ResetRegister;
    151  1.1  jruoho 
    152  1.1  jruoho     /* Check if the reset register is supported */
    153  1.1  jruoho 
    154  1.1  jruoho     if (!(AcpiGbl_FADT.Flags & ACPI_FADT_RESET_REGISTER) ||
    155  1.1  jruoho         !ResetReg->Address)
    156  1.1  jruoho     {
    157  1.1  jruoho         return_ACPI_STATUS (AE_NOT_EXIST);
    158  1.1  jruoho     }
    159  1.1  jruoho 
    160  1.1  jruoho     if (ResetReg->SpaceId == ACPI_ADR_SPACE_SYSTEM_IO)
    161  1.1  jruoho     {
    162  1.1  jruoho         /*
    163  1.1  jruoho          * For I/O space, write directly to the OSL. This bypasses the port
    164  1.1  jruoho          * validation mechanism, which may block a valid write to the reset
    165  1.1  jruoho          * register.
    166  1.1  jruoho          */
    167  1.1  jruoho         Status = AcpiOsWritePort ((ACPI_IO_ADDRESS) ResetReg->Address,
    168  1.1  jruoho                     AcpiGbl_FADT.ResetValue, ResetReg->BitWidth);
    169  1.1  jruoho     }
    170  1.1  jruoho     else
    171  1.1  jruoho     {
    172  1.1  jruoho         /* Write the reset value to the reset register */
    173  1.1  jruoho 
    174  1.1  jruoho         Status = AcpiHwWrite (AcpiGbl_FADT.ResetValue, ResetReg);
    175  1.1  jruoho     }
    176  1.1  jruoho 
    177  1.1  jruoho     return_ACPI_STATUS (Status);
    178  1.1  jruoho }
    179  1.1  jruoho 
    180  1.1  jruoho ACPI_EXPORT_SYMBOL (AcpiReset)
    181  1.1  jruoho 
    182  1.1  jruoho 
    183  1.1  jruoho /******************************************************************************
    184  1.1  jruoho  *
    185  1.1  jruoho  * FUNCTION:    AcpiRead
    186  1.1  jruoho  *
    187  1.1  jruoho  * PARAMETERS:  Value               - Where the value is returned
    188  1.1  jruoho  *              Reg                 - GAS register structure
    189  1.1  jruoho  *
    190  1.1  jruoho  * RETURN:      Status
    191  1.1  jruoho  *
    192  1.1  jruoho  * DESCRIPTION: Read from either memory or IO space.
    193  1.1  jruoho  *
    194  1.1  jruoho  * LIMITATIONS: <These limitations also apply to AcpiWrite>
    195  1.1  jruoho  *      BitWidth must be exactly 8, 16, 32, or 64.
    196  1.1  jruoho  *      SpaceID must be SystemMemory or SystemIO.
    197  1.1  jruoho  *      BitOffset and AccessWidth are currently ignored, as there has
    198  1.1  jruoho  *          not been a need to implement these.
    199  1.1  jruoho  *
    200  1.1  jruoho  ******************************************************************************/
    201  1.1  jruoho 
    202  1.1  jruoho ACPI_STATUS
    203  1.1  jruoho AcpiRead (
    204  1.1  jruoho     UINT64                  *ReturnValue,
    205  1.1  jruoho     ACPI_GENERIC_ADDRESS    *Reg)
    206  1.1  jruoho {
    207  1.1  jruoho     UINT32                  Value;
    208  1.1  jruoho     UINT32                  Width;
    209  1.1  jruoho     UINT64                  Address;
    210  1.1  jruoho     ACPI_STATUS             Status;
    211  1.1  jruoho 
    212  1.1  jruoho 
    213  1.1  jruoho     ACPI_FUNCTION_NAME (AcpiRead);
    214  1.1  jruoho 
    215  1.1  jruoho 
    216  1.1  jruoho     if (!ReturnValue)
    217  1.1  jruoho     {
    218  1.1  jruoho         return (AE_BAD_PARAMETER);
    219  1.1  jruoho     }
    220  1.1  jruoho 
    221  1.1  jruoho     /* Validate contents of the GAS register. Allow 64-bit transfers */
    222  1.1  jruoho 
    223  1.1  jruoho     Status = AcpiHwValidateRegister (Reg, 64, &Address);
    224  1.1  jruoho     if (ACPI_FAILURE (Status))
    225  1.1  jruoho     {
    226  1.1  jruoho         return (Status);
    227  1.1  jruoho     }
    228  1.1  jruoho 
    229  1.1  jruoho     Width = Reg->BitWidth;
    230  1.1  jruoho     if (Width == 64)
    231  1.1  jruoho     {
    232  1.1  jruoho         Width = 32; /* Break into two 32-bit transfers */
    233  1.1  jruoho     }
    234  1.1  jruoho 
    235  1.1  jruoho     /* Initialize entire 64-bit return value to zero */
    236  1.1  jruoho 
    237  1.1  jruoho     *ReturnValue = 0;
    238  1.1  jruoho     Value = 0;
    239  1.1  jruoho 
    240  1.1  jruoho     /*
    241  1.1  jruoho      * Two address spaces supported: Memory or IO. PCI_Config is
    242  1.1  jruoho      * not supported here because the GAS structure is insufficient
    243  1.1  jruoho      */
    244  1.1  jruoho     if (Reg->SpaceId == ACPI_ADR_SPACE_SYSTEM_MEMORY)
    245  1.1  jruoho     {
    246  1.1  jruoho         Status = AcpiOsReadMemory ((ACPI_PHYSICAL_ADDRESS)
    247  1.1  jruoho                     Address, &Value, Width);
    248  1.1  jruoho         if (ACPI_FAILURE (Status))
    249  1.1  jruoho         {
    250  1.1  jruoho             return (Status);
    251  1.1  jruoho         }
    252  1.1  jruoho         *ReturnValue = Value;
    253  1.1  jruoho 
    254  1.1  jruoho         if (Reg->BitWidth == 64)
    255  1.1  jruoho         {
    256  1.1  jruoho             /* Read the top 32 bits */
    257  1.1  jruoho 
    258  1.1  jruoho             Status = AcpiOsReadMemory ((ACPI_PHYSICAL_ADDRESS)
    259  1.1  jruoho                         (Address + 4), &Value, 32);
    260  1.1  jruoho             if (ACPI_FAILURE (Status))
    261  1.1  jruoho             {
    262  1.1  jruoho                 return (Status);
    263  1.1  jruoho             }
    264  1.1  jruoho             *ReturnValue |= ((UINT64) Value << 32);
    265  1.1  jruoho         }
    266  1.1  jruoho     }
    267  1.1  jruoho     else /* ACPI_ADR_SPACE_SYSTEM_IO, validated earlier */
    268  1.1  jruoho     {
    269  1.1  jruoho         Status = AcpiHwReadPort ((ACPI_IO_ADDRESS)
    270  1.1  jruoho                     Address, &Value, Width);
    271  1.1  jruoho         if (ACPI_FAILURE (Status))
    272  1.1  jruoho         {
    273  1.1  jruoho             return (Status);
    274  1.1  jruoho         }
    275  1.1  jruoho         *ReturnValue = Value;
    276  1.1  jruoho 
    277  1.1  jruoho         if (Reg->BitWidth == 64)
    278  1.1  jruoho         {
    279  1.1  jruoho             /* Read the top 32 bits */
    280  1.1  jruoho 
    281  1.1  jruoho             Status = AcpiHwReadPort ((ACPI_IO_ADDRESS)
    282  1.1  jruoho                         (Address + 4), &Value, 32);
    283  1.1  jruoho             if (ACPI_FAILURE (Status))
    284  1.1  jruoho             {
    285  1.1  jruoho                 return (Status);
    286  1.1  jruoho             }
    287  1.1  jruoho             *ReturnValue |= ((UINT64) Value << 32);
    288  1.1  jruoho         }
    289  1.1  jruoho     }
    290  1.1  jruoho 
    291  1.1  jruoho     ACPI_DEBUG_PRINT ((ACPI_DB_IO,
    292  1.1  jruoho         "Read:  %8.8X%8.8X width %2d from %8.8X%8.8X (%s)\n",
    293  1.1  jruoho         ACPI_FORMAT_UINT64 (*ReturnValue), Reg->BitWidth,
    294  1.1  jruoho         ACPI_FORMAT_UINT64 (Address),
    295  1.1  jruoho         AcpiUtGetRegionName (Reg->SpaceId)));
    296  1.1  jruoho 
    297  1.1  jruoho     return (Status);
    298  1.1  jruoho }
    299  1.1  jruoho 
    300  1.1  jruoho ACPI_EXPORT_SYMBOL (AcpiRead)
    301  1.1  jruoho 
    302  1.1  jruoho 
    303  1.1  jruoho /******************************************************************************
    304  1.1  jruoho  *
    305  1.1  jruoho  * FUNCTION:    AcpiWrite
    306  1.1  jruoho  *
    307  1.1  jruoho  * PARAMETERS:  Value               - Value to be written
    308  1.1  jruoho  *              Reg                 - GAS register structure
    309  1.1  jruoho  *
    310  1.1  jruoho  * RETURN:      Status
    311  1.1  jruoho  *
    312  1.1  jruoho  * DESCRIPTION: Write to either memory or IO space.
    313  1.1  jruoho  *
    314  1.1  jruoho  ******************************************************************************/
    315  1.1  jruoho 
    316  1.1  jruoho ACPI_STATUS
    317  1.1  jruoho AcpiWrite (
    318  1.1  jruoho     UINT64                  Value,
    319  1.1  jruoho     ACPI_GENERIC_ADDRESS    *Reg)
    320  1.1  jruoho {
    321  1.1  jruoho     UINT32                  Width;
    322  1.1  jruoho     UINT64                  Address;
    323  1.1  jruoho     ACPI_STATUS             Status;
    324  1.1  jruoho 
    325  1.1  jruoho 
    326  1.1  jruoho     ACPI_FUNCTION_NAME (AcpiWrite);
    327  1.1  jruoho 
    328  1.1  jruoho 
    329  1.1  jruoho     /* Validate contents of the GAS register. Allow 64-bit transfers */
    330  1.1  jruoho 
    331  1.1  jruoho     Status = AcpiHwValidateRegister (Reg, 64, &Address);
    332  1.1  jruoho     if (ACPI_FAILURE (Status))
    333  1.1  jruoho     {
    334  1.1  jruoho         return (Status);
    335  1.1  jruoho     }
    336  1.1  jruoho 
    337  1.1  jruoho     Width = Reg->BitWidth;
    338  1.1  jruoho     if (Width == 64)
    339  1.1  jruoho     {
    340  1.1  jruoho         Width = 32; /* Break into two 32-bit transfers */
    341  1.1  jruoho     }
    342  1.1  jruoho 
    343  1.1  jruoho     /*
    344  1.1  jruoho      * Two address spaces supported: Memory or IO. PCI_Config is
    345  1.1  jruoho      * not supported here because the GAS structure is insufficient
    346  1.1  jruoho      */
    347  1.1  jruoho     if (Reg->SpaceId == ACPI_ADR_SPACE_SYSTEM_MEMORY)
    348  1.1  jruoho     {
    349  1.1  jruoho         Status = AcpiOsWriteMemory ((ACPI_PHYSICAL_ADDRESS)
    350  1.1  jruoho                     Address, ACPI_LODWORD (Value), Width);
    351  1.1  jruoho         if (ACPI_FAILURE (Status))
    352  1.1  jruoho         {
    353  1.1  jruoho             return (Status);
    354  1.1  jruoho         }
    355  1.1  jruoho 
    356  1.1  jruoho         if (Reg->BitWidth == 64)
    357  1.1  jruoho         {
    358  1.1  jruoho             Status = AcpiOsWriteMemory ((ACPI_PHYSICAL_ADDRESS)
    359  1.1  jruoho                         (Address + 4), ACPI_HIDWORD (Value), 32);
    360  1.1  jruoho             if (ACPI_FAILURE (Status))
    361  1.1  jruoho             {
    362  1.1  jruoho                 return (Status);
    363  1.1  jruoho             }
    364  1.1  jruoho         }
    365  1.1  jruoho     }
    366  1.1  jruoho     else /* ACPI_ADR_SPACE_SYSTEM_IO, validated earlier */
    367  1.1  jruoho     {
    368  1.1  jruoho         Status = AcpiHwWritePort ((ACPI_IO_ADDRESS)
    369  1.1  jruoho                     Address, ACPI_LODWORD (Value), Width);
    370  1.1  jruoho         if (ACPI_FAILURE (Status))
    371  1.1  jruoho         {
    372  1.1  jruoho             return (Status);
    373  1.1  jruoho         }
    374  1.1  jruoho 
    375  1.1  jruoho         if (Reg->BitWidth == 64)
    376  1.1  jruoho         {
    377  1.1  jruoho             Status = AcpiHwWritePort ((ACPI_IO_ADDRESS)
    378  1.1  jruoho                         (Address + 4), ACPI_HIDWORD (Value), 32);
    379  1.1  jruoho             if (ACPI_FAILURE (Status))
    380  1.1  jruoho             {
    381  1.1  jruoho                 return (Status);
    382  1.1  jruoho             }
    383  1.1  jruoho         }
    384  1.1  jruoho     }
    385  1.1  jruoho 
    386  1.1  jruoho     ACPI_DEBUG_PRINT ((ACPI_DB_IO,
    387  1.1  jruoho         "Wrote: %8.8X%8.8X width %2d   to %8.8X%8.8X (%s)\n",
    388  1.1  jruoho         ACPI_FORMAT_UINT64 (Value), Reg->BitWidth,
    389  1.1  jruoho         ACPI_FORMAT_UINT64 (Address),
    390  1.1  jruoho         AcpiUtGetRegionName (Reg->SpaceId)));
    391  1.1  jruoho 
    392  1.1  jruoho     return (Status);
    393  1.1  jruoho }
    394  1.1  jruoho 
    395  1.1  jruoho ACPI_EXPORT_SYMBOL (AcpiWrite)
    396  1.1  jruoho 
    397  1.1  jruoho 
    398  1.1  jruoho /*******************************************************************************
    399  1.1  jruoho  *
    400  1.1  jruoho  * FUNCTION:    AcpiReadBitRegister
    401  1.1  jruoho  *
    402  1.1  jruoho  * PARAMETERS:  RegisterId      - ID of ACPI Bit Register to access
    403  1.1  jruoho  *              ReturnValue     - Value that was read from the register,
    404  1.1  jruoho  *                                normalized to bit position zero.
    405  1.1  jruoho  *
    406  1.1  jruoho  * RETURN:      Status and the value read from the specified Register. Value
    407  1.1  jruoho  *              returned is normalized to bit0 (is shifted all the way right)
    408  1.1  jruoho  *
    409  1.1  jruoho  * DESCRIPTION: ACPI BitRegister read function. Does not acquire the HW lock.
    410  1.1  jruoho  *
    411  1.1  jruoho  * SUPPORTS:    Bit fields in PM1 Status, PM1 Enable, PM1 Control, and
    412  1.1  jruoho  *              PM2 Control.
    413  1.1  jruoho  *
    414  1.1  jruoho  * Note: The hardware lock is not required when reading the ACPI bit registers
    415  1.1  jruoho  *       since almost all of them are single bit and it does not matter that
    416  1.1  jruoho  *       the parent hardware register can be split across two physical
    417  1.1  jruoho  *       registers. The only multi-bit field is SLP_TYP in the PM1 control
    418  1.1  jruoho  *       register, but this field does not cross an 8-bit boundary (nor does
    419  1.1  jruoho  *       it make much sense to actually read this field.)
    420  1.1  jruoho  *
    421  1.1  jruoho  ******************************************************************************/
    422  1.1  jruoho 
    423  1.1  jruoho ACPI_STATUS
    424  1.1  jruoho AcpiReadBitRegister (
    425  1.1  jruoho     UINT32                  RegisterId,
    426  1.1  jruoho     UINT32                  *ReturnValue)
    427  1.1  jruoho {
    428  1.1  jruoho     ACPI_BIT_REGISTER_INFO  *BitRegInfo;
    429  1.1  jruoho     UINT32                  RegisterValue;
    430  1.1  jruoho     UINT32                  Value;
    431  1.1  jruoho     ACPI_STATUS             Status;
    432  1.1  jruoho 
    433  1.1  jruoho 
    434  1.1  jruoho     ACPI_FUNCTION_TRACE_U32 (AcpiReadBitRegister, RegisterId);
    435  1.1  jruoho 
    436  1.1  jruoho 
    437  1.1  jruoho     /* Get the info structure corresponding to the requested ACPI Register */
    438  1.1  jruoho 
    439  1.1  jruoho     BitRegInfo = AcpiHwGetBitRegisterInfo (RegisterId);
    440  1.1  jruoho     if (!BitRegInfo)
    441  1.1  jruoho     {
    442  1.1  jruoho         return_ACPI_STATUS (AE_BAD_PARAMETER);
    443  1.1  jruoho     }
    444  1.1  jruoho 
    445  1.1  jruoho     /* Read the entire parent register */
    446  1.1  jruoho 
    447  1.1  jruoho     Status = AcpiHwRegisterRead (BitRegInfo->ParentRegister,
    448  1.1  jruoho                 &RegisterValue);
    449  1.1  jruoho     if (ACPI_FAILURE (Status))
    450  1.1  jruoho     {
    451  1.1  jruoho         return_ACPI_STATUS (Status);
    452  1.1  jruoho     }
    453  1.1  jruoho 
    454  1.1  jruoho     /* Normalize the value that was read, mask off other bits */
    455  1.1  jruoho 
    456  1.1  jruoho     Value = ((RegisterValue & BitRegInfo->AccessBitMask)
    457  1.1  jruoho                 >> BitRegInfo->BitPosition);
    458  1.1  jruoho 
    459  1.1  jruoho     ACPI_DEBUG_PRINT ((ACPI_DB_IO,
    460  1.1  jruoho         "BitReg %X, ParentReg %X, Actual %8.8X, ReturnValue %8.8X\n",
    461  1.1  jruoho         RegisterId, BitRegInfo->ParentRegister, RegisterValue, Value));
    462  1.1  jruoho 
    463  1.1  jruoho     *ReturnValue = Value;
    464  1.1  jruoho     return_ACPI_STATUS (AE_OK);
    465  1.1  jruoho }
    466  1.1  jruoho 
    467  1.1  jruoho ACPI_EXPORT_SYMBOL (AcpiReadBitRegister)
    468  1.1  jruoho 
    469  1.1  jruoho 
    470  1.1  jruoho /*******************************************************************************
    471  1.1  jruoho  *
    472  1.1  jruoho  * FUNCTION:    AcpiWriteBitRegister
    473  1.1  jruoho  *
    474  1.1  jruoho  * PARAMETERS:  RegisterId      - ID of ACPI Bit Register to access
    475  1.1  jruoho  *              Value           - Value to write to the register, in bit
    476  1.1  jruoho  *                                position zero. The bit is automaticallly
    477  1.1  jruoho  *                                shifted to the correct position.
    478  1.1  jruoho  *
    479  1.1  jruoho  * RETURN:      Status
    480  1.1  jruoho  *
    481  1.1  jruoho  * DESCRIPTION: ACPI Bit Register write function. Acquires the hardware lock
    482  1.1  jruoho  *              since most operations require a read/modify/write sequence.
    483  1.1  jruoho  *
    484  1.1  jruoho  * SUPPORTS:    Bit fields in PM1 Status, PM1 Enable, PM1 Control, and
    485  1.1  jruoho  *              PM2 Control.
    486  1.1  jruoho  *
    487  1.1  jruoho  * Note that at this level, the fact that there may be actually two
    488  1.1  jruoho  * hardware registers (A and B - and B may not exist) is abstracted.
    489  1.1  jruoho  *
    490  1.1  jruoho  ******************************************************************************/
    491  1.1  jruoho 
    492  1.1  jruoho ACPI_STATUS
    493  1.1  jruoho AcpiWriteBitRegister (
    494  1.1  jruoho     UINT32                  RegisterId,
    495  1.1  jruoho     UINT32                  Value)
    496  1.1  jruoho {
    497  1.1  jruoho     ACPI_BIT_REGISTER_INFO  *BitRegInfo;
    498  1.1  jruoho     ACPI_CPU_FLAGS          LockFlags;
    499  1.1  jruoho     UINT32                  RegisterValue;
    500  1.1  jruoho     ACPI_STATUS             Status = AE_OK;
    501  1.1  jruoho 
    502  1.1  jruoho 
    503  1.1  jruoho     ACPI_FUNCTION_TRACE_U32 (AcpiWriteBitRegister, RegisterId);
    504  1.1  jruoho 
    505  1.1  jruoho 
    506  1.1  jruoho     /* Get the info structure corresponding to the requested ACPI Register */
    507  1.1  jruoho 
    508  1.1  jruoho     BitRegInfo = AcpiHwGetBitRegisterInfo (RegisterId);
    509  1.1  jruoho     if (!BitRegInfo)
    510  1.1  jruoho     {
    511  1.1  jruoho         return_ACPI_STATUS (AE_BAD_PARAMETER);
    512  1.1  jruoho     }
    513  1.1  jruoho 
    514  1.1  jruoho     LockFlags = AcpiOsAcquireLock (AcpiGbl_HardwareLock);
    515  1.1  jruoho 
    516  1.1  jruoho     /*
    517  1.1  jruoho      * At this point, we know that the parent register is one of the
    518  1.1  jruoho      * following: PM1 Status, PM1 Enable, PM1 Control, or PM2 Control
    519  1.1  jruoho      */
    520  1.1  jruoho     if (BitRegInfo->ParentRegister != ACPI_REGISTER_PM1_STATUS)
    521  1.1  jruoho     {
    522  1.1  jruoho         /*
    523  1.1  jruoho          * 1) Case for PM1 Enable, PM1 Control, and PM2 Control
    524  1.1  jruoho          *
    525  1.1  jruoho          * Perform a register read to preserve the bits that we are not
    526  1.1  jruoho          * interested in
    527  1.1  jruoho          */
    528  1.1  jruoho         Status = AcpiHwRegisterRead (BitRegInfo->ParentRegister,
    529  1.1  jruoho                     &RegisterValue);
    530  1.1  jruoho         if (ACPI_FAILURE (Status))
    531  1.1  jruoho         {
    532  1.1  jruoho             goto UnlockAndExit;
    533  1.1  jruoho         }
    534  1.1  jruoho 
    535  1.1  jruoho         /*
    536  1.1  jruoho          * Insert the input bit into the value that was just read
    537  1.1  jruoho          * and write the register
    538  1.1  jruoho          */
    539  1.1  jruoho         ACPI_REGISTER_INSERT_VALUE (RegisterValue, BitRegInfo->BitPosition,
    540  1.1  jruoho             BitRegInfo->AccessBitMask, Value);
    541  1.1  jruoho 
    542  1.1  jruoho         Status = AcpiHwRegisterWrite (BitRegInfo->ParentRegister,
    543  1.1  jruoho                     RegisterValue);
    544  1.1  jruoho     }
    545  1.1  jruoho     else
    546  1.1  jruoho     {
    547  1.1  jruoho         /*
    548  1.1  jruoho          * 2) Case for PM1 Status
    549  1.1  jruoho          *
    550  1.1  jruoho          * The Status register is different from the rest. Clear an event
    551  1.1  jruoho          * by writing 1, writing 0 has no effect. So, the only relevant
    552  1.1  jruoho          * information is the single bit we're interested in, all others
    553  1.1  jruoho          * should be written as 0 so they will be left unchanged.
    554  1.1  jruoho          */
    555  1.1  jruoho         RegisterValue = ACPI_REGISTER_PREPARE_BITS (Value,
    556  1.1  jruoho             BitRegInfo->BitPosition, BitRegInfo->AccessBitMask);
    557  1.1  jruoho 
    558  1.1  jruoho         /* No need to write the register if value is all zeros */
    559  1.1  jruoho 
    560  1.1  jruoho         if (RegisterValue)
    561  1.1  jruoho         {
    562  1.1  jruoho             Status = AcpiHwRegisterWrite (ACPI_REGISTER_PM1_STATUS,
    563  1.1  jruoho                         RegisterValue);
    564  1.1  jruoho         }
    565  1.1  jruoho     }
    566  1.1  jruoho 
    567  1.1  jruoho     ACPI_DEBUG_PRINT ((ACPI_DB_IO,
    568  1.1  jruoho         "BitReg %X, ParentReg %X, Value %8.8X, Actual %8.8X\n",
    569  1.1  jruoho         RegisterId, BitRegInfo->ParentRegister, Value, RegisterValue));
    570  1.1  jruoho 
    571  1.1  jruoho 
    572  1.1  jruoho UnlockAndExit:
    573  1.1  jruoho 
    574  1.1  jruoho     AcpiOsReleaseLock (AcpiGbl_HardwareLock, LockFlags);
    575  1.1  jruoho     return_ACPI_STATUS (Status);
    576  1.1  jruoho }
    577  1.1  jruoho 
    578  1.1  jruoho ACPI_EXPORT_SYMBOL (AcpiWriteBitRegister)
    579  1.1  jruoho 
    580  1.1  jruoho 
    581  1.1  jruoho /*******************************************************************************
    582  1.1  jruoho  *
    583  1.1  jruoho  * FUNCTION:    AcpiGetSleepTypeData
    584  1.1  jruoho  *
    585  1.1  jruoho  * PARAMETERS:  SleepState          - Numeric sleep state
    586  1.1  jruoho  *              *SleepTypeA         - Where SLP_TYPa is returned
    587  1.1  jruoho  *              *SleepTypeB         - Where SLP_TYPb is returned
    588  1.1  jruoho  *
    589  1.1  jruoho  * RETURN:      Status - ACPI status
    590  1.1  jruoho  *
    591  1.1  jruoho  * DESCRIPTION: Obtain the SLP_TYPa and SLP_TYPb values for the requested sleep
    592  1.1  jruoho  *              state.
    593  1.1  jruoho  *
    594  1.1  jruoho  ******************************************************************************/
    595  1.1  jruoho 
    596  1.1  jruoho ACPI_STATUS
    597  1.1  jruoho AcpiGetSleepTypeData (
    598  1.1  jruoho     UINT8                   SleepState,
    599  1.1  jruoho     UINT8                   *SleepTypeA,
    600  1.1  jruoho     UINT8                   *SleepTypeB)
    601  1.1  jruoho {
    602  1.1  jruoho     ACPI_STATUS             Status = AE_OK;
    603  1.1  jruoho     ACPI_EVALUATE_INFO      *Info;
    604  1.1  jruoho 
    605  1.1  jruoho 
    606  1.1  jruoho     ACPI_FUNCTION_TRACE (AcpiGetSleepTypeData);
    607  1.1  jruoho 
    608  1.1  jruoho 
    609  1.1  jruoho     /* Validate parameters */
    610  1.1  jruoho 
    611  1.1  jruoho     if ((SleepState > ACPI_S_STATES_MAX) ||
    612  1.1  jruoho         !SleepTypeA ||
    613  1.1  jruoho         !SleepTypeB)
    614  1.1  jruoho     {
    615  1.1  jruoho         return_ACPI_STATUS (AE_BAD_PARAMETER);
    616  1.1  jruoho     }
    617  1.1  jruoho 
    618  1.1  jruoho     /* Allocate the evaluation information block */
    619  1.1  jruoho 
    620  1.1  jruoho     Info = ACPI_ALLOCATE_ZEROED (sizeof (ACPI_EVALUATE_INFO));
    621  1.1  jruoho     if (!Info)
    622  1.1  jruoho     {
    623  1.1  jruoho         return_ACPI_STATUS (AE_NO_MEMORY);
    624  1.1  jruoho     }
    625  1.1  jruoho 
    626  1.1  jruoho     Info->Pathname = ACPI_CAST_PTR (char, AcpiGbl_SleepStateNames[SleepState]);
    627  1.1  jruoho 
    628  1.1  jruoho     /* Evaluate the namespace object containing the values for this state */
    629  1.1  jruoho 
    630  1.1  jruoho     Status = AcpiNsEvaluate (Info);
    631  1.1  jruoho     if (ACPI_FAILURE (Status))
    632  1.1  jruoho     {
    633  1.1  jruoho         ACPI_DEBUG_PRINT ((ACPI_DB_EXEC,
    634  1.1  jruoho             "%s while evaluating SleepState [%s]\n",
    635  1.1  jruoho             AcpiFormatException (Status), Info->Pathname));
    636  1.1  jruoho 
    637  1.1  jruoho         goto Cleanup;
    638  1.1  jruoho     }
    639  1.1  jruoho 
    640  1.1  jruoho     /* Must have a return object */
    641  1.1  jruoho 
    642  1.1  jruoho     if (!Info->ReturnObject)
    643  1.1  jruoho     {
    644  1.1  jruoho         ACPI_ERROR ((AE_INFO, "No Sleep State object returned from [%s]",
    645  1.1  jruoho             Info->Pathname));
    646  1.1  jruoho         Status = AE_NOT_EXIST;
    647  1.1  jruoho     }
    648  1.1  jruoho 
    649  1.1  jruoho     /* It must be of type Package */
    650  1.1  jruoho 
    651  1.1  jruoho     else if (Info->ReturnObject->Common.Type != ACPI_TYPE_PACKAGE)
    652  1.1  jruoho     {
    653  1.1  jruoho         ACPI_ERROR ((AE_INFO, "Sleep State return object is not a Package"));
    654  1.1  jruoho         Status = AE_AML_OPERAND_TYPE;
    655  1.1  jruoho     }
    656  1.1  jruoho 
    657  1.1  jruoho     /*
    658  1.1  jruoho      * The package must have at least two elements. NOTE (March 2005): This
    659  1.1  jruoho      * goes against the current ACPI spec which defines this object as a
    660  1.1  jruoho      * package with one encoded DWORD element. However, existing practice
    661  1.1  jruoho      * by BIOS vendors seems to be to have 2 or more elements, at least
    662  1.1  jruoho      * one per sleep type (A/B).
    663  1.1  jruoho      */
    664  1.1  jruoho     else if (Info->ReturnObject->Package.Count < 2)
    665  1.1  jruoho     {
    666  1.1  jruoho         ACPI_ERROR ((AE_INFO,
    667  1.1  jruoho             "Sleep State return package does not have at least two elements"));
    668  1.1  jruoho         Status = AE_AML_NO_OPERAND;
    669  1.1  jruoho     }
    670  1.1  jruoho 
    671  1.1  jruoho     /* The first two elements must both be of type Integer */
    672  1.1  jruoho 
    673  1.1  jruoho     else if (((Info->ReturnObject->Package.Elements[0])->Common.Type
    674  1.1  jruoho                 != ACPI_TYPE_INTEGER) ||
    675  1.1  jruoho              ((Info->ReturnObject->Package.Elements[1])->Common.Type
    676  1.1  jruoho                 != ACPI_TYPE_INTEGER))
    677  1.1  jruoho     {
    678  1.1  jruoho         ACPI_ERROR ((AE_INFO,
    679  1.1  jruoho             "Sleep State return package elements are not both Integers "
    680  1.1  jruoho             "(%s, %s)",
    681  1.1  jruoho             AcpiUtGetObjectTypeName (Info->ReturnObject->Package.Elements[0]),
    682  1.1  jruoho             AcpiUtGetObjectTypeName (Info->ReturnObject->Package.Elements[1])));
    683  1.1  jruoho         Status = AE_AML_OPERAND_TYPE;
    684  1.1  jruoho     }
    685  1.1  jruoho     else
    686  1.1  jruoho     {
    687  1.1  jruoho         /* Valid _Sx_ package size, type, and value */
    688  1.1  jruoho 
    689  1.1  jruoho         *SleepTypeA = (UINT8)
    690  1.1  jruoho             (Info->ReturnObject->Package.Elements[0])->Integer.Value;
    691  1.1  jruoho         *SleepTypeB = (UINT8)
    692  1.1  jruoho             (Info->ReturnObject->Package.Elements[1])->Integer.Value;
    693  1.1  jruoho     }
    694  1.1  jruoho 
    695  1.1  jruoho     if (ACPI_FAILURE (Status))
    696  1.1  jruoho     {
    697  1.1  jruoho         ACPI_EXCEPTION ((AE_INFO, Status,
    698  1.1  jruoho             "While evaluating SleepState [%s], bad Sleep object %p type %s",
    699  1.1  jruoho             Info->Pathname, Info->ReturnObject,
    700  1.1  jruoho             AcpiUtGetObjectTypeName (Info->ReturnObject)));
    701  1.1  jruoho     }
    702  1.1  jruoho 
    703  1.1  jruoho     AcpiUtRemoveReference (Info->ReturnObject);
    704  1.1  jruoho 
    705  1.1  jruoho Cleanup:
    706  1.1  jruoho     ACPI_FREE (Info);
    707  1.1  jruoho     return_ACPI_STATUS (Status);
    708  1.1  jruoho }
    709  1.1  jruoho 
    710  1.1  jruoho ACPI_EXPORT_SYMBOL (AcpiGetSleepTypeData)
    711