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exmisc.c revision 1.1.1.9
      1      1.1    jruoho /******************************************************************************
      2      1.1    jruoho  *
      3      1.1    jruoho  * Module Name: exmisc - ACPI AML (p-code) execution - specific opcodes
      4      1.1    jruoho  *
      5      1.1    jruoho  *****************************************************************************/
      6      1.1    jruoho 
      7  1.1.1.2    jruoho /*
      8  1.1.1.7  christos  * Copyright (C) 2000 - 2016, Intel Corp.
      9      1.1    jruoho  * All rights reserved.
     10      1.1    jruoho  *
     11  1.1.1.2    jruoho  * Redistribution and use in source and binary forms, with or without
     12  1.1.1.2    jruoho  * modification, are permitted provided that the following conditions
     13  1.1.1.2    jruoho  * are met:
     14  1.1.1.2    jruoho  * 1. Redistributions of source code must retain the above copyright
     15  1.1.1.2    jruoho  *    notice, this list of conditions, and the following disclaimer,
     16  1.1.1.2    jruoho  *    without modification.
     17  1.1.1.2    jruoho  * 2. Redistributions in binary form must reproduce at minimum a disclaimer
     18  1.1.1.2    jruoho  *    substantially similar to the "NO WARRANTY" disclaimer below
     19  1.1.1.2    jruoho  *    ("Disclaimer") and any redistribution must be conditioned upon
     20  1.1.1.2    jruoho  *    including a substantially similar Disclaimer requirement for further
     21  1.1.1.2    jruoho  *    binary redistribution.
     22  1.1.1.2    jruoho  * 3. Neither the names of the above-listed copyright holders nor the names
     23  1.1.1.2    jruoho  *    of any contributors may be used to endorse or promote products derived
     24  1.1.1.2    jruoho  *    from this software without specific prior written permission.
     25  1.1.1.2    jruoho  *
     26  1.1.1.2    jruoho  * Alternatively, this software may be distributed under the terms of the
     27  1.1.1.2    jruoho  * GNU General Public License ("GPL") version 2 as published by the Free
     28  1.1.1.2    jruoho  * Software Foundation.
     29  1.1.1.2    jruoho  *
     30  1.1.1.2    jruoho  * NO WARRANTY
     31  1.1.1.2    jruoho  * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
     32  1.1.1.2    jruoho  * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
     33  1.1.1.2    jruoho  * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
     34  1.1.1.2    jruoho  * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
     35  1.1.1.2    jruoho  * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
     36  1.1.1.2    jruoho  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
     37  1.1.1.2    jruoho  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
     38  1.1.1.2    jruoho  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
     39  1.1.1.2    jruoho  * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
     40  1.1.1.2    jruoho  * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     41  1.1.1.2    jruoho  * POSSIBILITY OF SUCH DAMAGES.
     42  1.1.1.2    jruoho  */
     43      1.1    jruoho 
     44      1.1    jruoho #include "acpi.h"
     45      1.1    jruoho #include "accommon.h"
     46      1.1    jruoho #include "acinterp.h"
     47      1.1    jruoho #include "amlcode.h"
     48      1.1    jruoho 
     49      1.1    jruoho 
     50      1.1    jruoho #define _COMPONENT          ACPI_EXECUTER
     51      1.1    jruoho         ACPI_MODULE_NAME    ("exmisc")
     52      1.1    jruoho 
     53      1.1    jruoho 
     54      1.1    jruoho /*******************************************************************************
     55      1.1    jruoho  *
     56      1.1    jruoho  * FUNCTION:    AcpiExGetObjectReference
     57      1.1    jruoho  *
     58      1.1    jruoho  * PARAMETERS:  ObjDesc             - Create a reference to this object
     59      1.1    jruoho  *              ReturnDesc          - Where to store the reference
     60      1.1    jruoho  *              WalkState           - Current state
     61      1.1    jruoho  *
     62      1.1    jruoho  * RETURN:      Status
     63      1.1    jruoho  *
     64      1.1    jruoho  * DESCRIPTION: Obtain and return a "reference" to the target object
     65      1.1    jruoho  *              Common code for the RefOfOp and the CondRefOfOp.
     66      1.1    jruoho  *
     67      1.1    jruoho  ******************************************************************************/
     68      1.1    jruoho 
     69      1.1    jruoho ACPI_STATUS
     70      1.1    jruoho AcpiExGetObjectReference (
     71      1.1    jruoho     ACPI_OPERAND_OBJECT     *ObjDesc,
     72      1.1    jruoho     ACPI_OPERAND_OBJECT     **ReturnDesc,
     73      1.1    jruoho     ACPI_WALK_STATE         *WalkState)
     74      1.1    jruoho {
     75      1.1    jruoho     ACPI_OPERAND_OBJECT     *ReferenceObj;
     76      1.1    jruoho     ACPI_OPERAND_OBJECT     *ReferencedObj;
     77      1.1    jruoho 
     78      1.1    jruoho 
     79      1.1    jruoho     ACPI_FUNCTION_TRACE_PTR (ExGetObjectReference, ObjDesc);
     80      1.1    jruoho 
     81      1.1    jruoho 
     82      1.1    jruoho     *ReturnDesc = NULL;
     83      1.1    jruoho 
     84      1.1    jruoho     switch (ACPI_GET_DESCRIPTOR_TYPE (ObjDesc))
     85      1.1    jruoho     {
     86      1.1    jruoho     case ACPI_DESC_TYPE_OPERAND:
     87      1.1    jruoho 
     88      1.1    jruoho         if (ObjDesc->Common.Type != ACPI_TYPE_LOCAL_REFERENCE)
     89      1.1    jruoho         {
     90      1.1    jruoho             return_ACPI_STATUS (AE_AML_OPERAND_TYPE);
     91      1.1    jruoho         }
     92      1.1    jruoho 
     93      1.1    jruoho         /*
     94      1.1    jruoho          * Must be a reference to a Local or Arg
     95      1.1    jruoho          */
     96      1.1    jruoho         switch (ObjDesc->Reference.Class)
     97      1.1    jruoho         {
     98      1.1    jruoho         case ACPI_REFCLASS_LOCAL:
     99      1.1    jruoho         case ACPI_REFCLASS_ARG:
    100      1.1    jruoho         case ACPI_REFCLASS_DEBUG:
    101      1.1    jruoho 
    102      1.1    jruoho             /* The referenced object is the pseudo-node for the local/arg */
    103      1.1    jruoho 
    104      1.1    jruoho             ReferencedObj = ObjDesc->Reference.Object;
    105      1.1    jruoho             break;
    106      1.1    jruoho 
    107      1.1    jruoho         default:
    108      1.1    jruoho 
    109  1.1.1.7  christos             ACPI_ERROR ((AE_INFO, "Invalid Reference Class 0x%2.2X",
    110      1.1    jruoho                 ObjDesc->Reference.Class));
    111  1.1.1.7  christos             return_ACPI_STATUS (AE_AML_OPERAND_TYPE);
    112      1.1    jruoho         }
    113      1.1    jruoho         break;
    114      1.1    jruoho 
    115      1.1    jruoho     case ACPI_DESC_TYPE_NAMED:
    116      1.1    jruoho         /*
    117      1.1    jruoho          * A named reference that has already been resolved to a Node
    118      1.1    jruoho          */
    119      1.1    jruoho         ReferencedObj = ObjDesc;
    120      1.1    jruoho         break;
    121      1.1    jruoho 
    122      1.1    jruoho     default:
    123      1.1    jruoho 
    124      1.1    jruoho         ACPI_ERROR ((AE_INFO, "Invalid descriptor type 0x%X",
    125      1.1    jruoho             ACPI_GET_DESCRIPTOR_TYPE (ObjDesc)));
    126      1.1    jruoho         return_ACPI_STATUS (AE_TYPE);
    127      1.1    jruoho     }
    128      1.1    jruoho 
    129      1.1    jruoho 
    130      1.1    jruoho     /* Create a new reference object */
    131      1.1    jruoho 
    132      1.1    jruoho     ReferenceObj = AcpiUtCreateInternalObject (ACPI_TYPE_LOCAL_REFERENCE);
    133      1.1    jruoho     if (!ReferenceObj)
    134      1.1    jruoho     {
    135      1.1    jruoho         return_ACPI_STATUS (AE_NO_MEMORY);
    136      1.1    jruoho     }
    137      1.1    jruoho 
    138      1.1    jruoho     ReferenceObj->Reference.Class = ACPI_REFCLASS_REFOF;
    139      1.1    jruoho     ReferenceObj->Reference.Object = ReferencedObj;
    140      1.1    jruoho     *ReturnDesc = ReferenceObj;
    141      1.1    jruoho 
    142      1.1    jruoho     ACPI_DEBUG_PRINT ((ACPI_DB_EXEC,
    143      1.1    jruoho         "Object %p Type [%s], returning Reference %p\n",
    144      1.1    jruoho         ObjDesc, AcpiUtGetObjectTypeName (ObjDesc), *ReturnDesc));
    145      1.1    jruoho 
    146      1.1    jruoho     return_ACPI_STATUS (AE_OK);
    147      1.1    jruoho }
    148      1.1    jruoho 
    149      1.1    jruoho 
    150      1.1    jruoho /*******************************************************************************
    151      1.1    jruoho  *
    152      1.1    jruoho  * FUNCTION:    AcpiExDoMathOp
    153      1.1    jruoho  *
    154      1.1    jruoho  * PARAMETERS:  Opcode              - AML opcode
    155      1.1    jruoho  *              Integer0            - Integer operand #0
    156      1.1    jruoho  *              Integer1            - Integer operand #1
    157      1.1    jruoho  *
    158      1.1    jruoho  * RETURN:      Integer result of the operation
    159      1.1    jruoho  *
    160      1.1    jruoho  * DESCRIPTION: Execute a math AML opcode. The purpose of having all of the
    161      1.1    jruoho  *              math functions here is to prevent a lot of pointer dereferencing
    162      1.1    jruoho  *              to obtain the operands.
    163      1.1    jruoho  *
    164      1.1    jruoho  ******************************************************************************/
    165      1.1    jruoho 
    166      1.1    jruoho UINT64
    167      1.1    jruoho AcpiExDoMathOp (
    168      1.1    jruoho     UINT16                  Opcode,
    169      1.1    jruoho     UINT64                  Integer0,
    170      1.1    jruoho     UINT64                  Integer1)
    171      1.1    jruoho {
    172      1.1    jruoho 
    173      1.1    jruoho     ACPI_FUNCTION_ENTRY ();
    174      1.1    jruoho 
    175      1.1    jruoho 
    176      1.1    jruoho     switch (Opcode)
    177      1.1    jruoho     {
    178      1.1    jruoho     case AML_ADD_OP:                /* Add (Integer0, Integer1, Result) */
    179      1.1    jruoho 
    180      1.1    jruoho         return (Integer0 + Integer1);
    181      1.1    jruoho 
    182      1.1    jruoho     case AML_BIT_AND_OP:            /* And (Integer0, Integer1, Result) */
    183      1.1    jruoho 
    184      1.1    jruoho         return (Integer0 & Integer1);
    185      1.1    jruoho 
    186      1.1    jruoho     case AML_BIT_NAND_OP:           /* NAnd (Integer0, Integer1, Result) */
    187      1.1    jruoho 
    188      1.1    jruoho         return (~(Integer0 & Integer1));
    189      1.1    jruoho 
    190      1.1    jruoho     case AML_BIT_OR_OP:             /* Or (Integer0, Integer1, Result) */
    191      1.1    jruoho 
    192      1.1    jruoho         return (Integer0 | Integer1);
    193      1.1    jruoho 
    194      1.1    jruoho     case AML_BIT_NOR_OP:            /* NOr (Integer0, Integer1, Result) */
    195      1.1    jruoho 
    196      1.1    jruoho         return (~(Integer0 | Integer1));
    197      1.1    jruoho 
    198      1.1    jruoho     case AML_BIT_XOR_OP:            /* XOr (Integer0, Integer1, Result) */
    199      1.1    jruoho 
    200      1.1    jruoho         return (Integer0 ^ Integer1);
    201      1.1    jruoho 
    202      1.1    jruoho     case AML_MULTIPLY_OP:           /* Multiply (Integer0, Integer1, Result) */
    203      1.1    jruoho 
    204      1.1    jruoho         return (Integer0 * Integer1);
    205      1.1    jruoho 
    206      1.1    jruoho     case AML_SHIFT_LEFT_OP:         /* ShiftLeft (Operand, ShiftCount, Result)*/
    207      1.1    jruoho 
    208      1.1    jruoho         /*
    209      1.1    jruoho          * We need to check if the shiftcount is larger than the integer bit
    210      1.1    jruoho          * width since the behavior of this is not well-defined in the C language.
    211      1.1    jruoho          */
    212      1.1    jruoho         if (Integer1 >= AcpiGbl_IntegerBitWidth)
    213      1.1    jruoho         {
    214      1.1    jruoho             return (0);
    215      1.1    jruoho         }
    216      1.1    jruoho         return (Integer0 << Integer1);
    217      1.1    jruoho 
    218      1.1    jruoho     case AML_SHIFT_RIGHT_OP:        /* ShiftRight (Operand, ShiftCount, Result) */
    219      1.1    jruoho 
    220      1.1    jruoho         /*
    221      1.1    jruoho          * We need to check if the shiftcount is larger than the integer bit
    222      1.1    jruoho          * width since the behavior of this is not well-defined in the C language.
    223      1.1    jruoho          */
    224      1.1    jruoho         if (Integer1 >= AcpiGbl_IntegerBitWidth)
    225      1.1    jruoho         {
    226      1.1    jruoho             return (0);
    227      1.1    jruoho         }
    228      1.1    jruoho         return (Integer0 >> Integer1);
    229      1.1    jruoho 
    230      1.1    jruoho     case AML_SUBTRACT_OP:           /* Subtract (Integer0, Integer1, Result) */
    231      1.1    jruoho 
    232      1.1    jruoho         return (Integer0 - Integer1);
    233      1.1    jruoho 
    234      1.1    jruoho     default:
    235      1.1    jruoho 
    236      1.1    jruoho         return (0);
    237      1.1    jruoho     }
    238      1.1    jruoho }
    239      1.1    jruoho 
    240      1.1    jruoho 
    241      1.1    jruoho /*******************************************************************************
    242      1.1    jruoho  *
    243      1.1    jruoho  * FUNCTION:    AcpiExDoLogicalNumericOp
    244      1.1    jruoho  *
    245      1.1    jruoho  * PARAMETERS:  Opcode              - AML opcode
    246      1.1    jruoho  *              Integer0            - Integer operand #0
    247      1.1    jruoho  *              Integer1            - Integer operand #1
    248      1.1    jruoho  *              LogicalResult       - TRUE/FALSE result of the operation
    249      1.1    jruoho  *
    250      1.1    jruoho  * RETURN:      Status
    251      1.1    jruoho  *
    252      1.1    jruoho  * DESCRIPTION: Execute a logical "Numeric" AML opcode. For these Numeric
    253      1.1    jruoho  *              operators (LAnd and LOr), both operands must be integers.
    254      1.1    jruoho  *
    255      1.1    jruoho  *              Note: cleanest machine code seems to be produced by the code
    256      1.1    jruoho  *              below, rather than using statements of the form:
    257      1.1    jruoho  *                  Result = (Integer0 && Integer1);
    258      1.1    jruoho  *
    259      1.1    jruoho  ******************************************************************************/
    260      1.1    jruoho 
    261      1.1    jruoho ACPI_STATUS
    262      1.1    jruoho AcpiExDoLogicalNumericOp (
    263      1.1    jruoho     UINT16                  Opcode,
    264      1.1    jruoho     UINT64                  Integer0,
    265      1.1    jruoho     UINT64                  Integer1,
    266      1.1    jruoho     BOOLEAN                 *LogicalResult)
    267      1.1    jruoho {
    268      1.1    jruoho     ACPI_STATUS             Status = AE_OK;
    269      1.1    jruoho     BOOLEAN                 LocalResult = FALSE;
    270      1.1    jruoho 
    271      1.1    jruoho 
    272      1.1    jruoho     ACPI_FUNCTION_TRACE (ExDoLogicalNumericOp);
    273      1.1    jruoho 
    274      1.1    jruoho 
    275      1.1    jruoho     switch (Opcode)
    276      1.1    jruoho     {
    277      1.1    jruoho     case AML_LAND_OP:               /* LAnd (Integer0, Integer1) */
    278      1.1    jruoho 
    279      1.1    jruoho         if (Integer0 && Integer1)
    280      1.1    jruoho         {
    281      1.1    jruoho             LocalResult = TRUE;
    282      1.1    jruoho         }
    283      1.1    jruoho         break;
    284      1.1    jruoho 
    285      1.1    jruoho     case AML_LOR_OP:                /* LOr (Integer0, Integer1) */
    286      1.1    jruoho 
    287      1.1    jruoho         if (Integer0 || Integer1)
    288      1.1    jruoho         {
    289      1.1    jruoho             LocalResult = TRUE;
    290      1.1    jruoho         }
    291      1.1    jruoho         break;
    292      1.1    jruoho 
    293      1.1    jruoho     default:
    294  1.1.1.3  christos 
    295      1.1    jruoho         Status = AE_AML_INTERNAL;
    296      1.1    jruoho         break;
    297      1.1    jruoho     }
    298      1.1    jruoho 
    299      1.1    jruoho     /* Return the logical result and status */
    300      1.1    jruoho 
    301      1.1    jruoho     *LogicalResult = LocalResult;
    302      1.1    jruoho     return_ACPI_STATUS (Status);
    303      1.1    jruoho }
    304      1.1    jruoho 
    305      1.1    jruoho 
    306      1.1    jruoho /*******************************************************************************
    307      1.1    jruoho  *
    308      1.1    jruoho  * FUNCTION:    AcpiExDoLogicalOp
    309      1.1    jruoho  *
    310      1.1    jruoho  * PARAMETERS:  Opcode              - AML opcode
    311      1.1    jruoho  *              Operand0            - operand #0
    312      1.1    jruoho  *              Operand1            - operand #1
    313      1.1    jruoho  *              LogicalResult       - TRUE/FALSE result of the operation
    314      1.1    jruoho  *
    315      1.1    jruoho  * RETURN:      Status
    316      1.1    jruoho  *
    317      1.1    jruoho  * DESCRIPTION: Execute a logical AML opcode. The purpose of having all of the
    318      1.1    jruoho  *              functions here is to prevent a lot of pointer dereferencing
    319      1.1    jruoho  *              to obtain the operands and to simplify the generation of the
    320      1.1    jruoho  *              logical value. For the Numeric operators (LAnd and LOr), both
    321      1.1    jruoho  *              operands must be integers. For the other logical operators,
    322      1.1    jruoho  *              operands can be any combination of Integer/String/Buffer. The
    323      1.1    jruoho  *              first operand determines the type to which the second operand
    324      1.1    jruoho  *              will be converted.
    325      1.1    jruoho  *
    326      1.1    jruoho  *              Note: cleanest machine code seems to be produced by the code
    327      1.1    jruoho  *              below, rather than using statements of the form:
    328      1.1    jruoho  *                  Result = (Operand0 == Operand1);
    329      1.1    jruoho  *
    330      1.1    jruoho  ******************************************************************************/
    331      1.1    jruoho 
    332      1.1    jruoho ACPI_STATUS
    333      1.1    jruoho AcpiExDoLogicalOp (
    334      1.1    jruoho     UINT16                  Opcode,
    335      1.1    jruoho     ACPI_OPERAND_OBJECT     *Operand0,
    336      1.1    jruoho     ACPI_OPERAND_OBJECT     *Operand1,
    337      1.1    jruoho     BOOLEAN                 *LogicalResult)
    338      1.1    jruoho {
    339      1.1    jruoho     ACPI_OPERAND_OBJECT     *LocalOperand1 = Operand1;
    340      1.1    jruoho     UINT64                  Integer0;
    341      1.1    jruoho     UINT64                  Integer1;
    342      1.1    jruoho     UINT32                  Length0;
    343      1.1    jruoho     UINT32                  Length1;
    344      1.1    jruoho     ACPI_STATUS             Status = AE_OK;
    345      1.1    jruoho     BOOLEAN                 LocalResult = FALSE;
    346      1.1    jruoho     int                     Compare;
    347      1.1    jruoho 
    348      1.1    jruoho 
    349      1.1    jruoho     ACPI_FUNCTION_TRACE (ExDoLogicalOp);
    350      1.1    jruoho 
    351      1.1    jruoho 
    352      1.1    jruoho     /*
    353  1.1.1.3  christos      * Convert the second operand if necessary. The first operand
    354      1.1    jruoho      * determines the type of the second operand, (See the Data Types
    355      1.1    jruoho      * section of the ACPI 3.0+ specification.)  Both object types are
    356      1.1    jruoho      * guaranteed to be either Integer/String/Buffer by the operand
    357      1.1    jruoho      * resolution mechanism.
    358      1.1    jruoho      */
    359      1.1    jruoho     switch (Operand0->Common.Type)
    360      1.1    jruoho     {
    361      1.1    jruoho     case ACPI_TYPE_INTEGER:
    362  1.1.1.3  christos 
    363  1.1.1.9  christos         Status = AcpiExConvertToInteger (Operand1, &LocalOperand1,
    364  1.1.1.9  christos             ACPI_STRTOUL_BASE16);
    365      1.1    jruoho         break;
    366      1.1    jruoho 
    367      1.1    jruoho     case ACPI_TYPE_STRING:
    368  1.1.1.3  christos 
    369  1.1.1.7  christos         Status = AcpiExConvertToString (
    370  1.1.1.7  christos             Operand1, &LocalOperand1, ACPI_IMPLICIT_CONVERT_HEX);
    371      1.1    jruoho         break;
    372      1.1    jruoho 
    373      1.1    jruoho     case ACPI_TYPE_BUFFER:
    374  1.1.1.3  christos 
    375      1.1    jruoho         Status = AcpiExConvertToBuffer (Operand1, &LocalOperand1);
    376      1.1    jruoho         break;
    377      1.1    jruoho 
    378      1.1    jruoho     default:
    379  1.1.1.3  christos 
    380      1.1    jruoho         Status = AE_AML_INTERNAL;
    381      1.1    jruoho         break;
    382      1.1    jruoho     }
    383      1.1    jruoho 
    384      1.1    jruoho     if (ACPI_FAILURE (Status))
    385      1.1    jruoho     {
    386      1.1    jruoho         goto Cleanup;
    387      1.1    jruoho     }
    388      1.1    jruoho 
    389      1.1    jruoho     /*
    390      1.1    jruoho      * Two cases: 1) Both Integers, 2) Both Strings or Buffers
    391      1.1    jruoho      */
    392      1.1    jruoho     if (Operand0->Common.Type == ACPI_TYPE_INTEGER)
    393      1.1    jruoho     {
    394      1.1    jruoho         /*
    395      1.1    jruoho          * 1) Both operands are of type integer
    396      1.1    jruoho          *    Note: LocalOperand1 may have changed above
    397      1.1    jruoho          */
    398      1.1    jruoho         Integer0 = Operand0->Integer.Value;
    399      1.1    jruoho         Integer1 = LocalOperand1->Integer.Value;
    400      1.1    jruoho 
    401      1.1    jruoho         switch (Opcode)
    402      1.1    jruoho         {
    403      1.1    jruoho         case AML_LEQUAL_OP:             /* LEqual (Operand0, Operand1) */
    404      1.1    jruoho 
    405      1.1    jruoho             if (Integer0 == Integer1)
    406      1.1    jruoho             {
    407      1.1    jruoho                 LocalResult = TRUE;
    408      1.1    jruoho             }
    409      1.1    jruoho             break;
    410      1.1    jruoho 
    411      1.1    jruoho         case AML_LGREATER_OP:           /* LGreater (Operand0, Operand1) */
    412      1.1    jruoho 
    413      1.1    jruoho             if (Integer0 > Integer1)
    414      1.1    jruoho             {
    415      1.1    jruoho                 LocalResult = TRUE;
    416      1.1    jruoho             }
    417      1.1    jruoho             break;
    418      1.1    jruoho 
    419      1.1    jruoho         case AML_LLESS_OP:              /* LLess (Operand0, Operand1) */
    420      1.1    jruoho 
    421      1.1    jruoho             if (Integer0 < Integer1)
    422      1.1    jruoho             {
    423      1.1    jruoho                 LocalResult = TRUE;
    424      1.1    jruoho             }
    425      1.1    jruoho             break;
    426      1.1    jruoho 
    427      1.1    jruoho         default:
    428  1.1.1.3  christos 
    429      1.1    jruoho             Status = AE_AML_INTERNAL;
    430      1.1    jruoho             break;
    431      1.1    jruoho         }
    432      1.1    jruoho     }
    433      1.1    jruoho     else
    434      1.1    jruoho     {
    435      1.1    jruoho         /*
    436      1.1    jruoho          * 2) Both operands are Strings or both are Buffers
    437      1.1    jruoho          *    Note: Code below takes advantage of common Buffer/String
    438      1.1    jruoho          *          object fields. LocalOperand1 may have changed above. Use
    439      1.1    jruoho          *          memcmp to handle nulls in buffers.
    440      1.1    jruoho          */
    441      1.1    jruoho         Length0 = Operand0->Buffer.Length;
    442      1.1    jruoho         Length1 = LocalOperand1->Buffer.Length;
    443      1.1    jruoho 
    444      1.1    jruoho         /* Lexicographic compare: compare the data bytes */
    445      1.1    jruoho 
    446  1.1.1.6  christos         Compare = memcmp (Operand0->Buffer.Pointer,
    447  1.1.1.7  christos             LocalOperand1->Buffer.Pointer,
    448  1.1.1.7  christos             (Length0 > Length1) ? Length1 : Length0);
    449      1.1    jruoho 
    450      1.1    jruoho         switch (Opcode)
    451      1.1    jruoho         {
    452      1.1    jruoho         case AML_LEQUAL_OP:             /* LEqual (Operand0, Operand1) */
    453      1.1    jruoho 
    454      1.1    jruoho             /* Length and all bytes must be equal */
    455      1.1    jruoho 
    456      1.1    jruoho             if ((Length0 == Length1) &&
    457      1.1    jruoho                 (Compare == 0))
    458      1.1    jruoho             {
    459      1.1    jruoho                 /* Length and all bytes match ==> TRUE */
    460      1.1    jruoho 
    461      1.1    jruoho                 LocalResult = TRUE;
    462      1.1    jruoho             }
    463      1.1    jruoho             break;
    464      1.1    jruoho 
    465      1.1    jruoho         case AML_LGREATER_OP:           /* LGreater (Operand0, Operand1) */
    466      1.1    jruoho 
    467      1.1    jruoho             if (Compare > 0)
    468      1.1    jruoho             {
    469      1.1    jruoho                 LocalResult = TRUE;
    470      1.1    jruoho                 goto Cleanup;   /* TRUE */
    471      1.1    jruoho             }
    472      1.1    jruoho             if (Compare < 0)
    473      1.1    jruoho             {
    474      1.1    jruoho                 goto Cleanup;   /* FALSE */
    475      1.1    jruoho             }
    476      1.1    jruoho 
    477      1.1    jruoho             /* Bytes match (to shortest length), compare lengths */
    478      1.1    jruoho 
    479      1.1    jruoho             if (Length0 > Length1)
    480      1.1    jruoho             {
    481      1.1    jruoho                 LocalResult = TRUE;
    482      1.1    jruoho             }
    483      1.1    jruoho             break;
    484      1.1    jruoho 
    485      1.1    jruoho         case AML_LLESS_OP:              /* LLess (Operand0, Operand1) */
    486      1.1    jruoho 
    487      1.1    jruoho             if (Compare > 0)
    488      1.1    jruoho             {
    489      1.1    jruoho                 goto Cleanup;   /* FALSE */
    490      1.1    jruoho             }
    491      1.1    jruoho             if (Compare < 0)
    492      1.1    jruoho             {
    493      1.1    jruoho                 LocalResult = TRUE;
    494      1.1    jruoho                 goto Cleanup;   /* TRUE */
    495      1.1    jruoho             }
    496      1.1    jruoho 
    497      1.1    jruoho             /* Bytes match (to shortest length), compare lengths */
    498      1.1    jruoho 
    499      1.1    jruoho             if (Length0 < Length1)
    500      1.1    jruoho             {
    501      1.1    jruoho                 LocalResult = TRUE;
    502      1.1    jruoho             }
    503      1.1    jruoho             break;
    504      1.1    jruoho 
    505      1.1    jruoho         default:
    506  1.1.1.3  christos 
    507      1.1    jruoho             Status = AE_AML_INTERNAL;
    508      1.1    jruoho             break;
    509      1.1    jruoho         }
    510      1.1    jruoho     }
    511      1.1    jruoho 
    512      1.1    jruoho Cleanup:
    513      1.1    jruoho 
    514      1.1    jruoho     /* New object was created if implicit conversion performed - delete */
    515      1.1    jruoho 
    516      1.1    jruoho     if (LocalOperand1 != Operand1)
    517      1.1    jruoho     {
    518      1.1    jruoho         AcpiUtRemoveReference (LocalOperand1);
    519      1.1    jruoho     }
    520      1.1    jruoho 
    521      1.1    jruoho     /* Return the logical result and status */
    522      1.1    jruoho 
    523      1.1    jruoho     *LogicalResult = LocalResult;
    524      1.1    jruoho     return_ACPI_STATUS (Status);
    525      1.1    jruoho }
    526