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asltransform.c revision 1.1.1.10.2.2
      1           1.1    jruoho /******************************************************************************
      2           1.1    jruoho  *
      3           1.1    jruoho  * Module Name: asltransform - Parse tree transforms
      4           1.1    jruoho  *
      5           1.1    jruoho  *****************************************************************************/
      6           1.1    jruoho 
      7       1.1.1.2    jruoho /*
      8  1.1.1.10.2.2    martin  * Copyright (C) 2000 - 2020, 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 "aslcompiler.h"
     45           1.1    jruoho #include "aslcompiler.y.h"
     46  1.1.1.10.2.2    martin #include "acnamesp.h"
     47           1.1    jruoho 
     48           1.1    jruoho #define _COMPONENT          ACPI_COMPILER
     49           1.1    jruoho         ACPI_MODULE_NAME    ("asltransform")
     50           1.1    jruoho 
     51           1.1    jruoho /* Local prototypes */
     52           1.1    jruoho 
     53           1.1    jruoho static void
     54           1.1    jruoho TrTransformSubtree (
     55           1.1    jruoho     ACPI_PARSE_OBJECT       *Op);
     56           1.1    jruoho 
     57           1.1    jruoho static char *
     58           1.1    jruoho TrAmlGetNextTempName (
     59           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
     60           1.1    jruoho     UINT8                   *TempCount);
     61           1.1    jruoho 
     62           1.1    jruoho static void
     63           1.1    jruoho TrAmlInitLineNumbers (
     64           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
     65           1.1    jruoho     ACPI_PARSE_OBJECT       *Neighbor);
     66           1.1    jruoho 
     67           1.1    jruoho static void
     68           1.1    jruoho TrAmlInitNode (
     69           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
     70           1.1    jruoho     UINT16                  ParseOpcode);
     71           1.1    jruoho 
     72           1.1    jruoho static void
     73           1.1    jruoho TrAmlSetSubtreeParent (
     74           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
     75           1.1    jruoho     ACPI_PARSE_OBJECT       *Parent);
     76           1.1    jruoho 
     77           1.1    jruoho static void
     78           1.1    jruoho TrAmlInsertPeer (
     79           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
     80           1.1    jruoho     ACPI_PARSE_OBJECT       *NewPeer);
     81           1.1    jruoho 
     82           1.1    jruoho static void
     83           1.1    jruoho TrDoDefinitionBlock (
     84           1.1    jruoho     ACPI_PARSE_OBJECT       *Op);
     85           1.1    jruoho 
     86           1.1    jruoho static void
     87           1.1    jruoho TrDoSwitch (
     88           1.1    jruoho     ACPI_PARSE_OBJECT       *StartNode);
     89           1.1    jruoho 
     90  1.1.1.10.2.2    martin static void
     91  1.1.1.10.2.2    martin TrCheckForDuplicateCase (
     92  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *CaseOp,
     93  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Predicate1);
     94  1.1.1.10.2.2    martin 
     95  1.1.1.10.2.2    martin static BOOLEAN
     96  1.1.1.10.2.2    martin TrCheckForBufferMatch (
     97  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Next1,
     98  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Next2);
     99  1.1.1.10.2.2    martin 
    100  1.1.1.10.2.2    martin static void
    101  1.1.1.10.2.2    martin TrDoMethod (
    102  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Op);
    103  1.1.1.10.2.2    martin 
    104           1.1    jruoho 
    105           1.1    jruoho /*******************************************************************************
    106           1.1    jruoho  *
    107           1.1    jruoho  * FUNCTION:    TrAmlGetNextTempName
    108           1.1    jruoho  *
    109           1.1    jruoho  * PARAMETERS:  Op              - Current parse op
    110           1.1    jruoho  *              TempCount       - Current temporary counter. Was originally
    111           1.1    jruoho  *                                per-module; Currently per method, could be
    112           1.1    jruoho  *                                expanded to per-scope.
    113           1.1    jruoho  *
    114           1.1    jruoho  * RETURN:      A pointer to name (allocated here).
    115           1.1    jruoho  *
    116       1.1.1.3  christos  * DESCRIPTION: Generate an ACPI name of the form _T_x. These names are
    117           1.1    jruoho  *              reserved for use by the ASL compiler. (_T_0 through _T_Z)
    118           1.1    jruoho  *
    119           1.1    jruoho  ******************************************************************************/
    120           1.1    jruoho 
    121           1.1    jruoho static char *
    122           1.1    jruoho TrAmlGetNextTempName (
    123           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
    124           1.1    jruoho     UINT8                   *TempCount)
    125           1.1    jruoho {
    126           1.1    jruoho     char                    *TempName;
    127           1.1    jruoho 
    128           1.1    jruoho 
    129       1.1.1.6  christos     if (*TempCount >= (10 + 26))  /* 0-35 valid: 0-9 and A-Z for TempName[3] */
    130           1.1    jruoho     {
    131           1.1    jruoho         /* Too many temps */
    132           1.1    jruoho 
    133           1.1    jruoho         AslError (ASL_ERROR, ASL_MSG_TOO_MANY_TEMPS, Op, NULL);
    134           1.1    jruoho         return (NULL);
    135           1.1    jruoho     }
    136           1.1    jruoho 
    137           1.1    jruoho     TempName = UtLocalCalloc (5);
    138           1.1    jruoho 
    139           1.1    jruoho     if (*TempCount < 10)    /* 0-9 */
    140           1.1    jruoho     {
    141           1.1    jruoho         TempName[3] = (char) (*TempCount + '0');
    142           1.1    jruoho     }
    143           1.1    jruoho     else                    /* 10-35: A-Z */
    144           1.1    jruoho     {
    145           1.1    jruoho         TempName[3] = (char) (*TempCount + ('A' - 10));
    146           1.1    jruoho     }
    147       1.1.1.6  christos 
    148           1.1    jruoho     (*TempCount)++;
    149           1.1    jruoho 
    150           1.1    jruoho     /* First three characters are always "_T_" */
    151           1.1    jruoho 
    152           1.1    jruoho     TempName[0] = '_';
    153           1.1    jruoho     TempName[1] = 'T';
    154           1.1    jruoho     TempName[2] = '_';
    155           1.1    jruoho 
    156           1.1    jruoho     return (TempName);
    157           1.1    jruoho }
    158           1.1    jruoho 
    159           1.1    jruoho 
    160           1.1    jruoho /*******************************************************************************
    161           1.1    jruoho  *
    162           1.1    jruoho  * FUNCTION:    TrAmlInitLineNumbers
    163           1.1    jruoho  *
    164           1.1    jruoho  * PARAMETERS:  Op              - Op to be initialized
    165           1.1    jruoho  *              Neighbor        - Op used for initialization values
    166           1.1    jruoho  *
    167           1.1    jruoho  * RETURN:      None
    168           1.1    jruoho  *
    169           1.1    jruoho  * DESCRIPTION: Initialized the various line numbers for a parse node.
    170           1.1    jruoho  *
    171           1.1    jruoho  ******************************************************************************/
    172           1.1    jruoho 
    173           1.1    jruoho static void
    174           1.1    jruoho TrAmlInitLineNumbers (
    175           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
    176           1.1    jruoho     ACPI_PARSE_OBJECT       *Neighbor)
    177           1.1    jruoho {
    178           1.1    jruoho 
    179           1.1    jruoho     Op->Asl.EndLine           = Neighbor->Asl.EndLine;
    180           1.1    jruoho     Op->Asl.EndLogicalLine    = Neighbor->Asl.EndLogicalLine;
    181           1.1    jruoho     Op->Asl.LineNumber        = Neighbor->Asl.LineNumber;
    182           1.1    jruoho     Op->Asl.LogicalByteOffset = Neighbor->Asl.LogicalByteOffset;
    183           1.1    jruoho     Op->Asl.LogicalLineNumber = Neighbor->Asl.LogicalLineNumber;
    184           1.1    jruoho }
    185           1.1    jruoho 
    186           1.1    jruoho 
    187           1.1    jruoho /*******************************************************************************
    188           1.1    jruoho  *
    189           1.1    jruoho  * FUNCTION:    TrAmlInitNode
    190           1.1    jruoho  *
    191           1.1    jruoho  * PARAMETERS:  Op              - Op to be initialized
    192           1.1    jruoho  *              ParseOpcode     - Opcode for this node
    193           1.1    jruoho  *
    194           1.1    jruoho  * RETURN:      None
    195           1.1    jruoho  *
    196           1.1    jruoho  * DESCRIPTION: Initialize a node with the parse opcode and opcode name.
    197           1.1    jruoho  *
    198           1.1    jruoho  ******************************************************************************/
    199           1.1    jruoho 
    200           1.1    jruoho static void
    201           1.1    jruoho TrAmlInitNode (
    202           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
    203           1.1    jruoho     UINT16                  ParseOpcode)
    204           1.1    jruoho {
    205           1.1    jruoho 
    206           1.1    jruoho     Op->Asl.ParseOpcode = ParseOpcode;
    207           1.1    jruoho     UtSetParseOpName (Op);
    208           1.1    jruoho }
    209           1.1    jruoho 
    210           1.1    jruoho 
    211           1.1    jruoho /*******************************************************************************
    212           1.1    jruoho  *
    213           1.1    jruoho  * FUNCTION:    TrAmlSetSubtreeParent
    214           1.1    jruoho  *
    215           1.1    jruoho  * PARAMETERS:  Op              - First node in a list of peer nodes
    216           1.1    jruoho  *              Parent          - Parent of the subtree
    217           1.1    jruoho  *
    218           1.1    jruoho  * RETURN:      None
    219           1.1    jruoho  *
    220           1.1    jruoho  * DESCRIPTION: Set the parent for all peer nodes in a subtree
    221           1.1    jruoho  *
    222           1.1    jruoho  ******************************************************************************/
    223           1.1    jruoho 
    224           1.1    jruoho static void
    225           1.1    jruoho TrAmlSetSubtreeParent (
    226           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
    227           1.1    jruoho     ACPI_PARSE_OBJECT       *Parent)
    228           1.1    jruoho {
    229           1.1    jruoho     ACPI_PARSE_OBJECT       *Next;
    230           1.1    jruoho 
    231           1.1    jruoho 
    232           1.1    jruoho     Next = Op;
    233           1.1    jruoho     while (Next)
    234           1.1    jruoho     {
    235           1.1    jruoho         Next->Asl.Parent = Parent;
    236       1.1.1.6  christos         Next = Next->Asl.Next;
    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:    TrAmlInsertPeer
    244           1.1    jruoho  *
    245           1.1    jruoho  * PARAMETERS:  Op              - First node in a list of peer nodes
    246           1.1    jruoho  *              NewPeer         - Peer node to insert
    247           1.1    jruoho  *
    248           1.1    jruoho  * RETURN:      None
    249           1.1    jruoho  *
    250           1.1    jruoho  * DESCRIPTION: Insert a new peer node into a list of peers.
    251           1.1    jruoho  *
    252           1.1    jruoho  ******************************************************************************/
    253           1.1    jruoho 
    254           1.1    jruoho static void
    255           1.1    jruoho TrAmlInsertPeer (
    256           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
    257           1.1    jruoho     ACPI_PARSE_OBJECT       *NewPeer)
    258           1.1    jruoho {
    259           1.1    jruoho 
    260           1.1    jruoho     NewPeer->Asl.Next = Op->Asl.Next;
    261       1.1.1.6  christos     Op->Asl.Next = NewPeer;
    262           1.1    jruoho }
    263           1.1    jruoho 
    264           1.1    jruoho 
    265           1.1    jruoho /*******************************************************************************
    266           1.1    jruoho  *
    267       1.1.1.7  christos  * FUNCTION:    TrAmlTransformWalkBegin
    268           1.1    jruoho  *
    269           1.1    jruoho  * PARAMETERS:  ASL_WALK_CALLBACK
    270           1.1    jruoho  *
    271           1.1    jruoho  * RETURN:      None
    272           1.1    jruoho  *
    273           1.1    jruoho  * DESCRIPTION: Parse tree walk to generate both the AML opcodes and the AML
    274           1.1    jruoho  *              operands.
    275           1.1    jruoho  *
    276           1.1    jruoho  ******************************************************************************/
    277           1.1    jruoho 
    278           1.1    jruoho ACPI_STATUS
    279       1.1.1.7  christos TrAmlTransformWalkBegin (
    280           1.1    jruoho     ACPI_PARSE_OBJECT       *Op,
    281           1.1    jruoho     UINT32                  Level,
    282           1.1    jruoho     void                    *Context)
    283           1.1    jruoho {
    284           1.1    jruoho 
    285           1.1    jruoho     TrTransformSubtree (Op);
    286           1.1    jruoho     return (AE_OK);
    287           1.1    jruoho }
    288           1.1    jruoho 
    289           1.1    jruoho 
    290           1.1    jruoho /*******************************************************************************
    291           1.1    jruoho  *
    292       1.1.1.7  christos  * FUNCTION:    TrAmlTransformWalkEnd
    293       1.1.1.7  christos  *
    294       1.1.1.7  christos  * PARAMETERS:  ASL_WALK_CALLBACK
    295       1.1.1.7  christos  *
    296       1.1.1.7  christos  * RETURN:      None
    297       1.1.1.7  christos  *
    298       1.1.1.7  christos  * DESCRIPTION: Parse tree walk to generate both the AML opcodes and the AML
    299       1.1.1.7  christos  *              operands.
    300       1.1.1.7  christos  *
    301       1.1.1.7  christos  ******************************************************************************/
    302       1.1.1.7  christos 
    303       1.1.1.7  christos ACPI_STATUS
    304       1.1.1.7  christos TrAmlTransformWalkEnd (
    305       1.1.1.7  christos     ACPI_PARSE_OBJECT       *Op,
    306       1.1.1.7  christos     UINT32                  Level,
    307       1.1.1.7  christos     void                    *Context)
    308       1.1.1.7  christos {
    309       1.1.1.7  christos 
    310       1.1.1.7  christos     /* Save possible Externals list in the DefintionBlock Op */
    311       1.1.1.7  christos 
    312       1.1.1.7  christos     if (Op->Asl.ParseOpcode == PARSEOP_DEFINITION_BLOCK)
    313       1.1.1.7  christos     {
    314  1.1.1.10.2.1  christos         Op->Asl.Value.Arg = AslGbl_ExternalsListHead;
    315  1.1.1.10.2.1  christos         AslGbl_ExternalsListHead = NULL;
    316       1.1.1.7  christos     }
    317       1.1.1.7  christos 
    318       1.1.1.7  christos     return (AE_OK);
    319       1.1.1.7  christos }
    320       1.1.1.7  christos 
    321       1.1.1.7  christos 
    322       1.1.1.7  christos /*******************************************************************************
    323       1.1.1.7  christos  *
    324           1.1    jruoho  * FUNCTION:    TrTransformSubtree
    325           1.1    jruoho  *
    326           1.1    jruoho  * PARAMETERS:  Op        - The parent parse node
    327           1.1    jruoho  *
    328           1.1    jruoho  * RETURN:      None
    329           1.1    jruoho  *
    330       1.1.1.3  christos  * DESCRIPTION: Prepare nodes to be output as AML data and operands. The more
    331           1.1    jruoho  *              complex AML opcodes require processing of the child nodes
    332           1.1    jruoho  *              (arguments/operands).
    333           1.1    jruoho  *
    334           1.1    jruoho  ******************************************************************************/
    335           1.1    jruoho 
    336           1.1    jruoho static void
    337           1.1    jruoho TrTransformSubtree (
    338           1.1    jruoho     ACPI_PARSE_OBJECT           *Op)
    339           1.1    jruoho {
    340       1.1.1.9  christos     ACPI_PARSE_OBJECT           *MethodOp;
    341  1.1.1.10.2.2    martin     ACPI_NAMESTRING_INFO        Info;
    342       1.1.1.9  christos 
    343           1.1    jruoho 
    344           1.1    jruoho     if (Op->Asl.AmlOpcode == AML_RAW_DATA_BYTE)
    345           1.1    jruoho     {
    346           1.1    jruoho         return;
    347           1.1    jruoho     }
    348           1.1    jruoho 
    349           1.1    jruoho     switch (Op->Asl.ParseOpcode)
    350           1.1    jruoho     {
    351       1.1.1.6  christos     case PARSEOP_DEFINITION_BLOCK:
    352       1.1.1.3  christos 
    353           1.1    jruoho         TrDoDefinitionBlock (Op);
    354           1.1    jruoho         break;
    355           1.1    jruoho 
    356           1.1    jruoho     case PARSEOP_SWITCH:
    357       1.1.1.3  christos 
    358           1.1    jruoho         TrDoSwitch (Op);
    359           1.1    jruoho         break;
    360           1.1    jruoho 
    361           1.1    jruoho     case PARSEOP_METHOD:
    362  1.1.1.10.2.2    martin 
    363  1.1.1.10.2.2    martin         TrDoMethod (Op);
    364           1.1    jruoho         break;
    365           1.1    jruoho 
    366       1.1.1.7  christos     case PARSEOP_EXTERNAL:
    367       1.1.1.7  christos 
    368  1.1.1.10.2.1  christos         ExDoExternal (Op);
    369       1.1.1.7  christos         break;
    370       1.1.1.7  christos 
    371       1.1.1.9  christos     case PARSEOP___METHOD__:
    372       1.1.1.9  christos 
    373       1.1.1.9  christos         /* Transform to a string op containing the parent method name */
    374       1.1.1.9  christos 
    375       1.1.1.9  christos         Op->Asl.ParseOpcode = PARSEOP_STRING_LITERAL;
    376       1.1.1.9  christos         UtSetParseOpName (Op);
    377       1.1.1.9  christos 
    378       1.1.1.9  christos         /* Find the parent control method op */
    379       1.1.1.9  christos 
    380       1.1.1.9  christos         MethodOp = Op;
    381       1.1.1.9  christos         while (MethodOp)
    382       1.1.1.9  christos         {
    383       1.1.1.9  christos             if (MethodOp->Asl.ParseOpcode == PARSEOP_METHOD)
    384       1.1.1.9  christos             {
    385       1.1.1.9  christos                 /* First child contains the method name */
    386       1.1.1.9  christos 
    387       1.1.1.9  christos                 MethodOp = MethodOp->Asl.Child;
    388       1.1.1.9  christos                 Op->Asl.Value.String = MethodOp->Asl.Value.String;
    389       1.1.1.9  christos                 return;
    390       1.1.1.9  christos             }
    391       1.1.1.9  christos 
    392       1.1.1.9  christos             MethodOp = MethodOp->Asl.Parent;
    393       1.1.1.9  christos         }
    394       1.1.1.9  christos 
    395       1.1.1.9  christos         /* At the root, invocation not within a control method */
    396       1.1.1.9  christos 
    397       1.1.1.9  christos         Op->Asl.Value.String = "\\";
    398       1.1.1.9  christos         break;
    399       1.1.1.9  christos 
    400  1.1.1.10.2.2    martin     case PARSEOP_NAMESTRING:
    401  1.1.1.10.2.2    martin         /*
    402  1.1.1.10.2.2    martin          * A NameString can be up to 255 (0xFF) individual NameSegs maximum
    403  1.1.1.10.2.2    martin          * (with 254 dot separators) - as per the ACPI specification. Note:
    404  1.1.1.10.2.2    martin          * Cannot check for NumSegments == 0 because things like
    405  1.1.1.10.2.2    martin          * Scope(\) are legal and OK.
    406  1.1.1.10.2.2    martin          */
    407  1.1.1.10.2.2    martin         Info.ExternalName = Op->Asl.Value.String;
    408  1.1.1.10.2.2    martin         AcpiNsGetInternalNameLength (&Info);
    409  1.1.1.10.2.2    martin 
    410  1.1.1.10.2.2    martin         if (Info.NumSegments > 255)
    411  1.1.1.10.2.2    martin         {
    412  1.1.1.10.2.2    martin             AslError (ASL_ERROR, ASL_MSG_NAMESTRING_LENGTH, Op, NULL);
    413  1.1.1.10.2.2    martin         }
    414  1.1.1.10.2.2    martin         break;
    415  1.1.1.10.2.2    martin 
    416  1.1.1.10.2.1  christos     case PARSEOP_UNLOAD:
    417  1.1.1.10.2.1  christos 
    418  1.1.1.10.2.1  christos         AslError (ASL_WARNING, ASL_MSG_UNLOAD, Op, NULL);
    419  1.1.1.10.2.1  christos         break;
    420  1.1.1.10.2.1  christos 
    421  1.1.1.10.2.1  christos     case PARSEOP_SLEEP:
    422  1.1.1.10.2.1  christos 
    423  1.1.1.10.2.1  christos         /* Remark for very long sleep values */
    424  1.1.1.10.2.1  christos 
    425  1.1.1.10.2.1  christos         if (Op->Asl.Child->Asl.Value.Integer > 1000)
    426  1.1.1.10.2.1  christos         {
    427  1.1.1.10.2.1  christos             AslError (ASL_REMARK, ASL_MSG_LONG_SLEEP, Op, NULL);
    428  1.1.1.10.2.1  christos         }
    429  1.1.1.10.2.1  christos         break;
    430  1.1.1.10.2.1  christos 
    431  1.1.1.10.2.2    martin     case PARSEOP_PROCESSOR:
    432  1.1.1.10.2.2    martin 
    433  1.1.1.10.2.2    martin         AslError (ASL_WARNING, ASL_MSG_LEGACY_PROCESSOR_OP, Op, Op->Asl.ExternalName);
    434  1.1.1.10.2.2    martin         break;
    435  1.1.1.10.2.2    martin 
    436           1.1    jruoho     default:
    437       1.1.1.3  christos 
    438           1.1    jruoho         /* Nothing to do here for other opcodes */
    439       1.1.1.3  christos 
    440           1.1    jruoho         break;
    441           1.1    jruoho     }
    442           1.1    jruoho }
    443           1.1    jruoho 
    444           1.1    jruoho 
    445           1.1    jruoho /*******************************************************************************
    446           1.1    jruoho  *
    447           1.1    jruoho  * FUNCTION:    TrDoDefinitionBlock
    448           1.1    jruoho  *
    449           1.1    jruoho  * PARAMETERS:  Op        - Parse node
    450           1.1    jruoho  *
    451           1.1    jruoho  * RETURN:      None
    452           1.1    jruoho  *
    453           1.1    jruoho  * DESCRIPTION: Find the end of the definition block and set a global to this
    454       1.1.1.3  christos  *              node. It is used by the compiler to insert compiler-generated
    455           1.1    jruoho  *              names at the root level of the namespace.
    456           1.1    jruoho  *
    457           1.1    jruoho  ******************************************************************************/
    458           1.1    jruoho 
    459           1.1    jruoho static void
    460           1.1    jruoho TrDoDefinitionBlock (
    461           1.1    jruoho     ACPI_PARSE_OBJECT       *Op)
    462           1.1    jruoho {
    463           1.1    jruoho     ACPI_PARSE_OBJECT       *Next;
    464           1.1    jruoho     UINT32                  i;
    465           1.1    jruoho 
    466           1.1    jruoho 
    467       1.1.1.7  christos     /* Reset external list when starting a definition block */
    468       1.1.1.7  christos 
    469  1.1.1.10.2.1  christos     AslGbl_ExternalsListHead = NULL;
    470       1.1.1.7  christos 
    471           1.1    jruoho     Next = Op->Asl.Child;
    472           1.1    jruoho     for (i = 0; i < 5; i++)
    473           1.1    jruoho     {
    474           1.1    jruoho         Next = Next->Asl.Next;
    475           1.1    jruoho         if (i == 0)
    476           1.1    jruoho         {
    477           1.1    jruoho             /*
    478           1.1    jruoho              * This is the table signature. Only the DSDT can be assumed
    479           1.1    jruoho              * to be at the root of the namespace;  Therefore, namepath
    480           1.1    jruoho              * optimization can only be performed on the DSDT.
    481           1.1    jruoho              */
    482  1.1.1.10.2.1  christos             if (!ACPI_COMPARE_NAMESEG (Next->Asl.Value.String, ACPI_SIG_DSDT))
    483           1.1    jruoho             {
    484  1.1.1.10.2.1  christos                 AslGbl_ReferenceOptimizationFlag = FALSE;
    485           1.1    jruoho             }
    486           1.1    jruoho         }
    487           1.1    jruoho     }
    488           1.1    jruoho 
    489  1.1.1.10.2.1  christos     AslGbl_FirstLevelInsertionNode = Next;
    490           1.1    jruoho }
    491           1.1    jruoho 
    492           1.1    jruoho 
    493           1.1    jruoho /*******************************************************************************
    494           1.1    jruoho  *
    495           1.1    jruoho  * FUNCTION:    TrDoSwitch
    496           1.1    jruoho  *
    497           1.1    jruoho  * PARAMETERS:  StartNode        - Parse node for SWITCH
    498           1.1    jruoho  *
    499           1.1    jruoho  * RETURN:      None
    500           1.1    jruoho  *
    501       1.1.1.3  christos  * DESCRIPTION: Translate ASL SWITCH statement to if/else pairs. There is
    502           1.1    jruoho  *              no actual AML opcode for SWITCH -- it must be simulated.
    503           1.1    jruoho  *
    504           1.1    jruoho  ******************************************************************************/
    505           1.1    jruoho 
    506           1.1    jruoho static void
    507           1.1    jruoho TrDoSwitch (
    508           1.1    jruoho     ACPI_PARSE_OBJECT       *StartNode)
    509           1.1    jruoho {
    510           1.1    jruoho     ACPI_PARSE_OBJECT       *Next;
    511           1.1    jruoho     ACPI_PARSE_OBJECT       *CaseOp = NULL;
    512           1.1    jruoho     ACPI_PARSE_OBJECT       *CaseBlock = NULL;
    513           1.1    jruoho     ACPI_PARSE_OBJECT       *DefaultOp = NULL;
    514           1.1    jruoho     ACPI_PARSE_OBJECT       *CurrentParentNode;
    515           1.1    jruoho     ACPI_PARSE_OBJECT       *Conditional = NULL;
    516           1.1    jruoho     ACPI_PARSE_OBJECT       *Predicate;
    517           1.1    jruoho     ACPI_PARSE_OBJECT       *Peer;
    518           1.1    jruoho     ACPI_PARSE_OBJECT       *NewOp;
    519           1.1    jruoho     ACPI_PARSE_OBJECT       *NewOp2;
    520           1.1    jruoho     ACPI_PARSE_OBJECT       *MethodOp;
    521           1.1    jruoho     ACPI_PARSE_OBJECT       *StoreOp;
    522           1.1    jruoho     ACPI_PARSE_OBJECT       *BreakOp;
    523       1.1.1.3  christos     ACPI_PARSE_OBJECT       *BufferOp;
    524           1.1    jruoho     char                    *PredicateValueName;
    525           1.1    jruoho     UINT16                  Index;
    526           1.1    jruoho     UINT32                  Btype;
    527           1.1    jruoho 
    528           1.1    jruoho 
    529           1.1    jruoho     /* Start node is the Switch() node */
    530           1.1    jruoho 
    531           1.1    jruoho     CurrentParentNode  = StartNode;
    532           1.1    jruoho 
    533           1.1    jruoho     /* Create a new temp name of the form _T_x */
    534           1.1    jruoho 
    535  1.1.1.10.2.1  christos     PredicateValueName = TrAmlGetNextTempName (StartNode, &AslGbl_TempCount);
    536           1.1    jruoho     if (!PredicateValueName)
    537           1.1    jruoho     {
    538           1.1    jruoho         return;
    539           1.1    jruoho     }
    540           1.1    jruoho 
    541           1.1    jruoho     /* First child is the Switch() predicate */
    542           1.1    jruoho 
    543           1.1    jruoho     Next = StartNode->Asl.Child;
    544           1.1    jruoho 
    545           1.1    jruoho     /*
    546           1.1    jruoho      * Examine the return type of the Switch Value -
    547           1.1    jruoho      * must be Integer/Buffer/String
    548           1.1    jruoho      */
    549           1.1    jruoho     Index = (UINT16) (Next->Asl.ParseOpcode - ASL_PARSE_OPCODE_BASE);
    550           1.1    jruoho     Btype = AslKeywordMapping[Index].AcpiBtype;
    551           1.1    jruoho     if ((Btype != ACPI_BTYPE_INTEGER) &&
    552           1.1    jruoho         (Btype != ACPI_BTYPE_STRING)  &&
    553           1.1    jruoho         (Btype != ACPI_BTYPE_BUFFER))
    554           1.1    jruoho     {
    555           1.1    jruoho         AslError (ASL_WARNING, ASL_MSG_SWITCH_TYPE, Next, NULL);
    556           1.1    jruoho         Btype = ACPI_BTYPE_INTEGER;
    557           1.1    jruoho     }
    558           1.1    jruoho 
    559           1.1    jruoho     /* CASE statements start at next child */
    560           1.1    jruoho 
    561           1.1    jruoho     Peer = Next->Asl.Next;
    562           1.1    jruoho     while (Peer)
    563           1.1    jruoho     {
    564           1.1    jruoho         Next = Peer;
    565           1.1    jruoho         Peer = Next->Asl.Next;
    566           1.1    jruoho 
    567           1.1    jruoho         if (Next->Asl.ParseOpcode == PARSEOP_CASE)
    568           1.1    jruoho         {
    569  1.1.1.10.2.2    martin             TrCheckForDuplicateCase (Next, Next->Asl.Child);
    570  1.1.1.10.2.2    martin 
    571           1.1    jruoho             if (CaseOp)
    572           1.1    jruoho             {
    573           1.1    jruoho                 /* Add an ELSE to complete the previous CASE */
    574           1.1    jruoho 
    575       1.1.1.9  christos                 NewOp = TrCreateLeafOp (PARSEOP_ELSE);
    576           1.1    jruoho                 NewOp->Asl.Parent = Conditional->Asl.Parent;
    577           1.1    jruoho                 TrAmlInitLineNumbers (NewOp, NewOp->Asl.Parent);
    578           1.1    jruoho 
    579           1.1    jruoho                 /* Link ELSE node as a peer to the previous IF */
    580           1.1    jruoho 
    581           1.1    jruoho                 TrAmlInsertPeer (Conditional, NewOp);
    582           1.1    jruoho                 CurrentParentNode = NewOp;
    583           1.1    jruoho             }
    584           1.1    jruoho 
    585       1.1.1.6  christos             CaseOp = Next;
    586           1.1    jruoho             Conditional = CaseOp;
    587       1.1.1.6  christos             CaseBlock = CaseOp->Asl.Child->Asl.Next;
    588           1.1    jruoho             Conditional->Asl.Child->Asl.Next = NULL;
    589           1.1    jruoho             Predicate = CaseOp->Asl.Child;
    590           1.1    jruoho 
    591           1.1    jruoho             if ((Predicate->Asl.ParseOpcode == PARSEOP_PACKAGE) ||
    592           1.1    jruoho                 (Predicate->Asl.ParseOpcode == PARSEOP_VAR_PACKAGE))
    593           1.1    jruoho             {
    594           1.1    jruoho                 /*
    595           1.1    jruoho                  * Convert the package declaration to this form:
    596           1.1    jruoho                  *
    597           1.1    jruoho                  * If (LNotEqual (Match (Package(<size>){<data>},
    598           1.1    jruoho                  *                       MEQ, _T_x, MTR, Zero, Zero), Ones))
    599           1.1    jruoho                  */
    600       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_MATCHTYPE_MEQ);
    601           1.1    jruoho                 Predicate->Asl.Next = NewOp2;
    602           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Conditional);
    603           1.1    jruoho 
    604           1.1    jruoho                 NewOp               = NewOp2;
    605       1.1.1.9  christos                 NewOp2              = TrCreateValuedLeafOp (PARSEOP_NAMESTRING,
    606           1.1    jruoho                                         (UINT64) ACPI_TO_INTEGER (PredicateValueName));
    607           1.1    jruoho                 NewOp->Asl.Next     = NewOp2;
    608           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Predicate);
    609           1.1    jruoho 
    610           1.1    jruoho                 NewOp               = NewOp2;
    611       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_MATCHTYPE_MTR);
    612           1.1    jruoho                 NewOp->Asl.Next     = NewOp2;
    613           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Predicate);
    614           1.1    jruoho 
    615           1.1    jruoho                 NewOp               = NewOp2;
    616       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_ZERO);
    617           1.1    jruoho                 NewOp->Asl.Next     = NewOp2;
    618           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Predicate);
    619           1.1    jruoho 
    620           1.1    jruoho                 NewOp               = NewOp2;
    621       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_ZERO);
    622           1.1    jruoho                 NewOp->Asl.Next     = NewOp2;
    623           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Predicate);
    624           1.1    jruoho 
    625       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_MATCH);
    626           1.1    jruoho                 NewOp2->Asl.Child   = Predicate;  /* PARSEOP_PACKAGE */
    627           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Conditional);
    628           1.1    jruoho                 TrAmlSetSubtreeParent (Predicate, NewOp2);
    629           1.1    jruoho 
    630           1.1    jruoho                 NewOp               = NewOp2;
    631       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_ONES);
    632           1.1    jruoho                 NewOp->Asl.Next     = NewOp2;
    633           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Conditional);
    634           1.1    jruoho 
    635       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_LEQUAL);
    636           1.1    jruoho                 NewOp2->Asl.Child   = NewOp;
    637           1.1    jruoho                 NewOp->Asl.Parent   = NewOp2;
    638           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Conditional);
    639           1.1    jruoho                 TrAmlSetSubtreeParent (NewOp, NewOp2);
    640           1.1    jruoho 
    641           1.1    jruoho                 NewOp               = NewOp2;
    642       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_LNOT);
    643           1.1    jruoho                 NewOp2->Asl.Child   = NewOp;
    644           1.1    jruoho                 NewOp2->Asl.Parent  = Conditional;
    645           1.1    jruoho                 NewOp->Asl.Parent   = NewOp2;
    646           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Conditional);
    647           1.1    jruoho 
    648           1.1    jruoho                 Conditional->Asl.Child = NewOp2;
    649           1.1    jruoho                 NewOp2->Asl.Next = CaseBlock;
    650           1.1    jruoho             }
    651           1.1    jruoho             else
    652           1.1    jruoho             {
    653           1.1    jruoho                 /*
    654           1.1    jruoho                  * Integer and Buffer case.
    655           1.1    jruoho                  *
    656           1.1    jruoho                  * Change CaseOp() to:  If (LEqual (SwitchValue, CaseValue)) {...}
    657           1.1    jruoho                  * Note: SwitchValue is first to allow the CaseValue to be implicitly
    658           1.1    jruoho                  * converted to the type of SwitchValue if necessary.
    659           1.1    jruoho                  *
    660           1.1    jruoho                  * CaseOp->Child is the case value
    661           1.1    jruoho                  * CaseOp->Child->Peer is the beginning of the case block
    662           1.1    jruoho                  */
    663       1.1.1.9  christos                 NewOp = TrCreateValuedLeafOp (PARSEOP_NAMESTRING,
    664       1.1.1.6  christos                     (UINT64) ACPI_TO_INTEGER (PredicateValueName));
    665           1.1    jruoho                 NewOp->Asl.Next = Predicate;
    666           1.1    jruoho                 TrAmlInitLineNumbers (NewOp, Predicate);
    667           1.1    jruoho 
    668       1.1.1.9  christos                 NewOp2              = TrCreateLeafOp (PARSEOP_LEQUAL);
    669           1.1    jruoho                 NewOp2->Asl.Parent  = Conditional;
    670           1.1    jruoho                 NewOp2->Asl.Child   = NewOp;
    671           1.1    jruoho                 TrAmlInitLineNumbers (NewOp2, Conditional);
    672           1.1    jruoho 
    673           1.1    jruoho                 TrAmlSetSubtreeParent (NewOp, NewOp2);
    674           1.1    jruoho 
    675           1.1    jruoho                 Predicate           = NewOp2;
    676           1.1    jruoho                 Predicate->Asl.Next = CaseBlock;
    677           1.1    jruoho 
    678           1.1    jruoho                 TrAmlSetSubtreeParent (Predicate, Conditional);
    679           1.1    jruoho                 Conditional->Asl.Child = Predicate;
    680           1.1    jruoho             }
    681           1.1    jruoho 
    682           1.1    jruoho             /* Reinitialize the CASE node to an IF node */
    683           1.1    jruoho 
    684           1.1    jruoho             TrAmlInitNode (Conditional, PARSEOP_IF);
    685           1.1    jruoho 
    686           1.1    jruoho             /*
    687           1.1    jruoho              * The first CASE(IF) is not nested under an ELSE.
    688           1.1    jruoho              * All other CASEs are children of a parent ELSE.
    689           1.1    jruoho              */
    690           1.1    jruoho             if (CurrentParentNode == StartNode)
    691           1.1    jruoho             {
    692           1.1    jruoho                 Conditional->Asl.Next = NULL;
    693           1.1    jruoho             }
    694           1.1    jruoho             else
    695           1.1    jruoho             {
    696           1.1    jruoho                 /*
    697       1.1.1.3  christos                  * The IF is a child of previous IF/ELSE. It
    698           1.1    jruoho                  * is therefore without peer.
    699           1.1    jruoho                  */
    700           1.1    jruoho                 CurrentParentNode->Asl.Child = Conditional;
    701           1.1    jruoho                 Conditional->Asl.Parent      = CurrentParentNode;
    702           1.1    jruoho                 Conditional->Asl.Next        = NULL;
    703           1.1    jruoho             }
    704           1.1    jruoho         }
    705           1.1    jruoho         else if (Next->Asl.ParseOpcode == PARSEOP_DEFAULT)
    706           1.1    jruoho         {
    707           1.1    jruoho             if (DefaultOp)
    708           1.1    jruoho             {
    709           1.1    jruoho                 /*
    710           1.1    jruoho                  * More than one Default
    711           1.1    jruoho                  * (Parser does not catch this, must check here)
    712           1.1    jruoho                  */
    713           1.1    jruoho                 AslError (ASL_ERROR, ASL_MSG_MULTIPLE_DEFAULT, Next, NULL);
    714           1.1    jruoho             }
    715           1.1    jruoho             else
    716           1.1    jruoho             {
    717           1.1    jruoho                 /* Save the DEFAULT node for later, after CASEs */
    718           1.1    jruoho 
    719           1.1    jruoho                 DefaultOp = Next;
    720           1.1    jruoho             }
    721           1.1    jruoho         }
    722           1.1    jruoho         else
    723           1.1    jruoho         {
    724           1.1    jruoho             /* Unknown peer opcode */
    725           1.1    jruoho 
    726           1.1    jruoho             AcpiOsPrintf ("Unknown parse opcode for switch statement: %s (%u)\n",
    727       1.1.1.6  christos                 Next->Asl.ParseOpName, Next->Asl.ParseOpcode);
    728           1.1    jruoho         }
    729           1.1    jruoho     }
    730           1.1    jruoho 
    731           1.1    jruoho     /* Add the default case at the end of the if/else construct */
    732           1.1    jruoho 
    733           1.1    jruoho     if (DefaultOp)
    734           1.1    jruoho     {
    735           1.1    jruoho         /* If no CASE statements, this is an error - see below */
    736           1.1    jruoho 
    737           1.1    jruoho         if (CaseOp)
    738           1.1    jruoho         {
    739           1.1    jruoho             /* Convert the DEFAULT node to an ELSE */
    740           1.1    jruoho 
    741           1.1    jruoho             TrAmlInitNode (DefaultOp, PARSEOP_ELSE);
    742           1.1    jruoho             DefaultOp->Asl.Parent = Conditional->Asl.Parent;
    743           1.1    jruoho 
    744           1.1    jruoho             /* Link ELSE node as a peer to the previous IF */
    745           1.1    jruoho 
    746           1.1    jruoho             TrAmlInsertPeer (Conditional, DefaultOp);
    747           1.1    jruoho         }
    748           1.1    jruoho     }
    749           1.1    jruoho 
    750           1.1    jruoho     if (!CaseOp)
    751           1.1    jruoho     {
    752           1.1    jruoho         AslError (ASL_ERROR, ASL_MSG_NO_CASES, StartNode, NULL);
    753           1.1    jruoho     }
    754           1.1    jruoho 
    755           1.1    jruoho 
    756           1.1    jruoho     /*
    757           1.1    jruoho      * Create a Name(_T_x, ...) statement. This statement must appear at the
    758           1.1    jruoho      * method level, in case a loop surrounds the switch statement and could
    759           1.1    jruoho      * cause the name to be created twice (error).
    760           1.1    jruoho      */
    761           1.1    jruoho 
    762           1.1    jruoho     /* Create the Name node */
    763           1.1    jruoho 
    764           1.1    jruoho     Predicate = StartNode->Asl.Child;
    765       1.1.1.9  christos     NewOp = TrCreateLeafOp (PARSEOP_NAME);
    766       1.1.1.3  christos     TrAmlInitLineNumbers (NewOp, StartNode);
    767           1.1    jruoho 
    768           1.1    jruoho     /* Find the parent method */
    769           1.1    jruoho 
    770           1.1    jruoho     Next = StartNode;
    771           1.1    jruoho     while ((Next->Asl.ParseOpcode != PARSEOP_METHOD) &&
    772       1.1.1.6  christos            (Next->Asl.ParseOpcode != PARSEOP_DEFINITION_BLOCK))
    773           1.1    jruoho     {
    774           1.1    jruoho         Next = Next->Asl.Parent;
    775           1.1    jruoho     }
    776           1.1    jruoho     MethodOp = Next;
    777           1.1    jruoho 
    778       1.1.1.9  christos     NewOp->Asl.CompileFlags |= OP_COMPILER_EMITTED;
    779           1.1    jruoho     NewOp->Asl.Parent = Next;
    780           1.1    jruoho 
    781           1.1    jruoho     /* Insert name after the method name and arguments */
    782           1.1    jruoho 
    783           1.1    jruoho     Next = Next->Asl.Child; /* Name */
    784           1.1    jruoho     Next = Next->Asl.Next;  /* NumArgs */
    785           1.1    jruoho     Next = Next->Asl.Next;  /* SerializeRule */
    786           1.1    jruoho 
    787           1.1    jruoho     /*
    788           1.1    jruoho      * If method is not Serialized, we must make is so, because of the way
    789           1.1    jruoho      * that Switch() must be implemented -- we cannot allow multiple threads
    790           1.1    jruoho      * to execute this method concurrently since we need to create local
    791           1.1    jruoho      * temporary name(s).
    792           1.1    jruoho      */
    793           1.1    jruoho     if (Next->Asl.ParseOpcode != PARSEOP_SERIALIZERULE_SERIAL)
    794           1.1    jruoho     {
    795       1.1.1.6  christos         AslError (ASL_REMARK, ASL_MSG_SERIALIZED, MethodOp,
    796       1.1.1.6  christos             "Due to use of Switch operator");
    797           1.1    jruoho         Next->Asl.ParseOpcode = PARSEOP_SERIALIZERULE_SERIAL;
    798           1.1    jruoho     }
    799           1.1    jruoho 
    800           1.1    jruoho     Next = Next->Asl.Next;  /* SyncLevel */
    801           1.1    jruoho     Next = Next->Asl.Next;  /* ReturnType */
    802           1.1    jruoho     Next = Next->Asl.Next;  /* ParameterTypes */
    803           1.1    jruoho 
    804           1.1    jruoho     TrAmlInsertPeer (Next, NewOp);
    805           1.1    jruoho     TrAmlInitLineNumbers (NewOp, Next);
    806           1.1    jruoho 
    807           1.1    jruoho     /* Create the NameSeg child for the Name node */
    808           1.1    jruoho 
    809       1.1.1.9  christos     NewOp2 = TrCreateValuedLeafOp (PARSEOP_NAMESEG,
    810       1.1.1.6  christos         (UINT64) ACPI_TO_INTEGER (PredicateValueName));
    811       1.1.1.3  christos     TrAmlInitLineNumbers (NewOp2, NewOp);
    812       1.1.1.9  christos     NewOp2->Asl.CompileFlags |= OP_IS_NAME_DECLARATION;
    813           1.1    jruoho     NewOp->Asl.Child  = NewOp2;
    814           1.1    jruoho 
    815           1.1    jruoho     /* Create the initial value for the Name. Btype was already validated above */
    816           1.1    jruoho 
    817           1.1    jruoho     switch (Btype)
    818           1.1    jruoho     {
    819           1.1    jruoho     case ACPI_BTYPE_INTEGER:
    820       1.1.1.3  christos 
    821       1.1.1.9  christos         NewOp2->Asl.Next = TrCreateValuedLeafOp (PARSEOP_ZERO,
    822       1.1.1.6  christos             (UINT64) 0);
    823       1.1.1.3  christos         TrAmlInitLineNumbers (NewOp2->Asl.Next, NewOp);
    824           1.1    jruoho         break;
    825           1.1    jruoho 
    826           1.1    jruoho     case ACPI_BTYPE_STRING:
    827       1.1.1.3  christos 
    828       1.1.1.9  christos         NewOp2->Asl.Next = TrCreateValuedLeafOp (PARSEOP_STRING_LITERAL,
    829       1.1.1.6  christos             (UINT64) ACPI_TO_INTEGER (""));
    830       1.1.1.3  christos         TrAmlInitLineNumbers (NewOp2->Asl.Next, NewOp);
    831           1.1    jruoho         break;
    832           1.1    jruoho 
    833           1.1    jruoho     case ACPI_BTYPE_BUFFER:
    834       1.1.1.3  christos 
    835       1.1.1.9  christos         (void) TrLinkPeerOp (NewOp2, TrCreateValuedLeafOp (PARSEOP_BUFFER,
    836       1.1.1.6  christos             (UINT64) 0));
    837           1.1    jruoho         Next = NewOp2->Asl.Next;
    838       1.1.1.3  christos         TrAmlInitLineNumbers (Next, NewOp2);
    839       1.1.1.9  christos 
    840       1.1.1.9  christos         (void) TrLinkOpChildren (Next, 1, TrCreateValuedLeafOp (PARSEOP_ZERO,
    841       1.1.1.6  christos             (UINT64) 1));
    842       1.1.1.3  christos         TrAmlInitLineNumbers (Next->Asl.Child, Next);
    843       1.1.1.3  christos 
    844       1.1.1.9  christos         BufferOp = TrCreateValuedLeafOp (PARSEOP_DEFAULT_ARG, (UINT64) 0);
    845       1.1.1.3  christos         TrAmlInitLineNumbers (BufferOp, Next->Asl.Child);
    846       1.1.1.9  christos         (void) TrLinkPeerOp (Next->Asl.Child, BufferOp);
    847           1.1    jruoho 
    848           1.1    jruoho         TrAmlSetSubtreeParent (Next->Asl.Child, Next);
    849           1.1    jruoho         break;
    850           1.1    jruoho 
    851           1.1    jruoho     default:
    852       1.1.1.3  christos 
    853           1.1    jruoho         break;
    854           1.1    jruoho     }
    855           1.1    jruoho 
    856           1.1    jruoho     TrAmlSetSubtreeParent (NewOp2, NewOp);
    857           1.1    jruoho 
    858           1.1    jruoho     /*
    859           1.1    jruoho      * Transform the Switch() into a While(One)-Break node.
    860           1.1    jruoho      * And create a Store() node which will be used to save the
    861       1.1.1.3  christos      * Switch() value. The store is of the form: Store (Value, _T_x)
    862           1.1    jruoho      * where _T_x is the temp variable.
    863           1.1    jruoho      */
    864           1.1    jruoho     TrAmlInitNode (StartNode, PARSEOP_WHILE);
    865       1.1.1.9  christos     NewOp = TrCreateLeafOp (PARSEOP_ONE);
    866       1.1.1.3  christos     TrAmlInitLineNumbers (NewOp, StartNode);
    867           1.1    jruoho     NewOp->Asl.Next = Predicate->Asl.Next;
    868           1.1    jruoho     NewOp->Asl.Parent = StartNode;
    869           1.1    jruoho     StartNode->Asl.Child = NewOp;
    870           1.1    jruoho 
    871           1.1    jruoho     /* Create a Store() node */
    872           1.1    jruoho 
    873       1.1.1.9  christos     StoreOp = TrCreateLeafOp (PARSEOP_STORE);
    874       1.1.1.3  christos     TrAmlInitLineNumbers (StoreOp, NewOp);
    875           1.1    jruoho     StoreOp->Asl.Parent = StartNode;
    876           1.1    jruoho     TrAmlInsertPeer (NewOp, StoreOp);
    877           1.1    jruoho 
    878           1.1    jruoho     /* Complete the Store subtree */
    879           1.1    jruoho 
    880           1.1    jruoho     StoreOp->Asl.Child = Predicate;
    881           1.1    jruoho     Predicate->Asl.Parent = StoreOp;
    882           1.1    jruoho 
    883       1.1.1.9  christos     NewOp = TrCreateValuedLeafOp (PARSEOP_NAMESEG,
    884       1.1.1.6  christos         (UINT64) ACPI_TO_INTEGER (PredicateValueName));
    885       1.1.1.3  christos     TrAmlInitLineNumbers (NewOp, StoreOp);
    886           1.1    jruoho     NewOp->Asl.Parent    = StoreOp;
    887           1.1    jruoho     Predicate->Asl.Next  = NewOp;
    888           1.1    jruoho 
    889           1.1    jruoho     /* Create a Break() node and insert it into the end of While() */
    890           1.1    jruoho 
    891           1.1    jruoho     Conditional = StartNode->Asl.Child;
    892           1.1    jruoho     while (Conditional->Asl.Next)
    893           1.1    jruoho     {
    894           1.1    jruoho         Conditional = Conditional->Asl.Next;
    895           1.1    jruoho     }
    896           1.1    jruoho 
    897       1.1.1.9  christos     BreakOp = TrCreateLeafOp (PARSEOP_BREAK);
    898       1.1.1.3  christos     TrAmlInitLineNumbers (BreakOp, NewOp);
    899           1.1    jruoho     BreakOp->Asl.Parent = StartNode;
    900           1.1    jruoho     TrAmlInsertPeer (Conditional, BreakOp);
    901           1.1    jruoho }
    902  1.1.1.10.2.2    martin 
    903  1.1.1.10.2.2    martin 
    904  1.1.1.10.2.2    martin /*******************************************************************************
    905  1.1.1.10.2.2    martin  *
    906  1.1.1.10.2.2    martin  * FUNCTION:    TrCheckForDuplicateCase
    907  1.1.1.10.2.2    martin  *
    908  1.1.1.10.2.2    martin  * PARAMETERS:  CaseOp          - Parse node for first Case statement in list
    909  1.1.1.10.2.2    martin  *              Predicate1      - Case value for the input CaseOp
    910  1.1.1.10.2.2    martin  *
    911  1.1.1.10.2.2    martin  * RETURN:      None
    912  1.1.1.10.2.2    martin  *
    913  1.1.1.10.2.2    martin  * DESCRIPTION: Check for duplicate case values. Currently, only handles
    914  1.1.1.10.2.2    martin  *              Integers, Strings and Buffers. No support for Package objects.
    915  1.1.1.10.2.2    martin  *
    916  1.1.1.10.2.2    martin  ******************************************************************************/
    917  1.1.1.10.2.2    martin 
    918  1.1.1.10.2.2    martin static void
    919  1.1.1.10.2.2    martin TrCheckForDuplicateCase (
    920  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *CaseOp,
    921  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Predicate1)
    922  1.1.1.10.2.2    martin {
    923  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Next;
    924  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Predicate2;
    925  1.1.1.10.2.2    martin 
    926  1.1.1.10.2.2    martin 
    927  1.1.1.10.2.2    martin     /* Walk the list of CASE opcodes */
    928  1.1.1.10.2.2    martin 
    929  1.1.1.10.2.2    martin     Next = CaseOp->Asl.Next;
    930  1.1.1.10.2.2    martin     while (Next)
    931  1.1.1.10.2.2    martin     {
    932  1.1.1.10.2.2    martin         if (Next->Asl.ParseOpcode == PARSEOP_CASE)
    933  1.1.1.10.2.2    martin         {
    934  1.1.1.10.2.2    martin             /* Emit error only once */
    935  1.1.1.10.2.2    martin 
    936  1.1.1.10.2.2    martin             if (Next->Asl.CompileFlags & OP_IS_DUPLICATE)
    937  1.1.1.10.2.2    martin             {
    938  1.1.1.10.2.2    martin                 goto NextCase;
    939  1.1.1.10.2.2    martin             }
    940  1.1.1.10.2.2    martin 
    941  1.1.1.10.2.2    martin             /* Check for a duplicate plain integer */
    942  1.1.1.10.2.2    martin 
    943  1.1.1.10.2.2    martin             Predicate2 = Next->Asl.Child;
    944  1.1.1.10.2.2    martin             if ((Predicate1->Asl.ParseOpcode == PARSEOP_INTEGER) &&
    945  1.1.1.10.2.2    martin                 (Predicate2->Asl.ParseOpcode == PARSEOP_INTEGER))
    946  1.1.1.10.2.2    martin             {
    947  1.1.1.10.2.2    martin                 if (Predicate1->Asl.Value.Integer == Predicate2->Asl.Value.Integer)
    948  1.1.1.10.2.2    martin                 {
    949  1.1.1.10.2.2    martin                     goto FoundDuplicate;
    950  1.1.1.10.2.2    martin                 }
    951  1.1.1.10.2.2    martin             }
    952  1.1.1.10.2.2    martin 
    953  1.1.1.10.2.2    martin             /* Check for pairs of the constants ZERO, ONE, ONES */
    954  1.1.1.10.2.2    martin 
    955  1.1.1.10.2.2    martin             else if (((Predicate1->Asl.ParseOpcode == PARSEOP_ZERO) &&
    956  1.1.1.10.2.2    martin                 (Predicate2->Asl.ParseOpcode == PARSEOP_ZERO)) ||
    957  1.1.1.10.2.2    martin                 ((Predicate1->Asl.ParseOpcode == PARSEOP_ONE) &&
    958  1.1.1.10.2.2    martin                 (Predicate2->Asl.ParseOpcode == PARSEOP_ONE)) ||
    959  1.1.1.10.2.2    martin                 ((Predicate1->Asl.ParseOpcode == PARSEOP_ONES) &&
    960  1.1.1.10.2.2    martin                 (Predicate2->Asl.ParseOpcode == PARSEOP_ONES)))
    961  1.1.1.10.2.2    martin             {
    962  1.1.1.10.2.2    martin                 goto FoundDuplicate;
    963  1.1.1.10.2.2    martin             }
    964  1.1.1.10.2.2    martin 
    965  1.1.1.10.2.2    martin             /* Check for a duplicate string constant (literal) */
    966  1.1.1.10.2.2    martin 
    967  1.1.1.10.2.2    martin             else if ((Predicate1->Asl.ParseOpcode == PARSEOP_STRING_LITERAL) &&
    968  1.1.1.10.2.2    martin                 (Predicate2->Asl.ParseOpcode == PARSEOP_STRING_LITERAL))
    969  1.1.1.10.2.2    martin             {
    970  1.1.1.10.2.2    martin                 if (!strcmp (Predicate1->Asl.Value.String,
    971  1.1.1.10.2.2    martin                         Predicate2->Asl.Value.String))
    972  1.1.1.10.2.2    martin                 {
    973  1.1.1.10.2.2    martin                     goto FoundDuplicate;
    974  1.1.1.10.2.2    martin                 }
    975  1.1.1.10.2.2    martin             }
    976  1.1.1.10.2.2    martin 
    977  1.1.1.10.2.2    martin             /* Check for a duplicate buffer constant */
    978  1.1.1.10.2.2    martin 
    979  1.1.1.10.2.2    martin             else if ((Predicate1->Asl.ParseOpcode == PARSEOP_BUFFER) &&
    980  1.1.1.10.2.2    martin                 (Predicate2->Asl.ParseOpcode == PARSEOP_BUFFER))
    981  1.1.1.10.2.2    martin             {
    982  1.1.1.10.2.2    martin                 if (TrCheckForBufferMatch (Predicate1->Asl.Child,
    983  1.1.1.10.2.2    martin                         Predicate2->Asl.Child))
    984  1.1.1.10.2.2    martin                 {
    985  1.1.1.10.2.2    martin                     goto FoundDuplicate;
    986  1.1.1.10.2.2    martin                 }
    987  1.1.1.10.2.2    martin             }
    988  1.1.1.10.2.2    martin         }
    989  1.1.1.10.2.2    martin         goto NextCase;
    990  1.1.1.10.2.2    martin 
    991  1.1.1.10.2.2    martin FoundDuplicate:
    992  1.1.1.10.2.2    martin         /* Emit error message only once */
    993  1.1.1.10.2.2    martin 
    994  1.1.1.10.2.2    martin         Next->Asl.CompileFlags |= OP_IS_DUPLICATE;
    995  1.1.1.10.2.2    martin 
    996  1.1.1.10.2.2    martin         AslDualParseOpError (ASL_ERROR, ASL_MSG_DUPLICATE_CASE, Next,
    997  1.1.1.10.2.2    martin             Next->Asl.Value.String, ASL_MSG_CASE_FOUND_HERE, CaseOp,
    998  1.1.1.10.2.2    martin             CaseOp->Asl.ExternalName);
    999  1.1.1.10.2.2    martin 
   1000  1.1.1.10.2.2    martin NextCase:
   1001  1.1.1.10.2.2    martin         Next = Next->Asl.Next;
   1002  1.1.1.10.2.2    martin     }
   1003  1.1.1.10.2.2    martin }
   1004  1.1.1.10.2.2    martin 
   1005  1.1.1.10.2.2    martin /*******************************************************************************
   1006  1.1.1.10.2.2    martin  *
   1007  1.1.1.10.2.2    martin  * FUNCTION:    TrBufferIsAllZero
   1008  1.1.1.10.2.2    martin  *
   1009  1.1.1.10.2.2    martin  * PARAMETERS:  Op          - Parse node for first opcode in buffer initializer
   1010  1.1.1.10.2.2    martin  *                            list
   1011  1.1.1.10.2.2    martin  *
   1012  1.1.1.10.2.2    martin  * RETURN:      TRUE if buffer contains all zeros or a DEFAULT_ARG
   1013  1.1.1.10.2.2    martin  *
   1014  1.1.1.10.2.2    martin  * DESCRIPTION: Check for duplicate Buffer case values.
   1015  1.1.1.10.2.2    martin  *
   1016  1.1.1.10.2.2    martin  ******************************************************************************/
   1017  1.1.1.10.2.2    martin 
   1018  1.1.1.10.2.2    martin static BOOLEAN
   1019  1.1.1.10.2.2    martin TrBufferIsAllZero (
   1020  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Op)
   1021  1.1.1.10.2.2    martin {
   1022  1.1.1.10.2.2    martin     while (Op)
   1023  1.1.1.10.2.2    martin     {
   1024  1.1.1.10.2.2    martin         if (Op->Asl.ParseOpcode == PARSEOP_DEFAULT_ARG)
   1025  1.1.1.10.2.2    martin         {
   1026  1.1.1.10.2.2    martin             return (TRUE);
   1027  1.1.1.10.2.2    martin         }
   1028  1.1.1.10.2.2    martin         else if (Op->Asl.Value.Integer != 0)
   1029  1.1.1.10.2.2    martin         {
   1030  1.1.1.10.2.2    martin             return (FALSE);
   1031  1.1.1.10.2.2    martin         }
   1032  1.1.1.10.2.2    martin 
   1033  1.1.1.10.2.2    martin         Op = Op->Asl.Next;
   1034  1.1.1.10.2.2    martin     }
   1035  1.1.1.10.2.2    martin 
   1036  1.1.1.10.2.2    martin     return (TRUE);
   1037  1.1.1.10.2.2    martin }
   1038  1.1.1.10.2.2    martin 
   1039  1.1.1.10.2.2    martin 
   1040  1.1.1.10.2.2    martin /*******************************************************************************
   1041  1.1.1.10.2.2    martin  *
   1042  1.1.1.10.2.2    martin  * FUNCTION:    TrCheckForBufferMatch
   1043  1.1.1.10.2.2    martin  *
   1044  1.1.1.10.2.2    martin  * PARAMETERS:  Next1       - Parse node for first opcode in first buffer list
   1045  1.1.1.10.2.2    martin  *                              (The DEFAULT_ARG or INTEGER node)
   1046  1.1.1.10.2.2    martin  *              Next2       - Parse node for first opcode in second buffer list
   1047  1.1.1.10.2.2    martin  *                              (The DEFAULT_ARG or INTEGER node)
   1048  1.1.1.10.2.2    martin  *
   1049  1.1.1.10.2.2    martin  * RETURN:      TRUE if buffers match, FALSE otherwise
   1050  1.1.1.10.2.2    martin  *
   1051  1.1.1.10.2.2    martin  * DESCRIPTION: Check for duplicate Buffer case values.
   1052  1.1.1.10.2.2    martin  *
   1053  1.1.1.10.2.2    martin  ******************************************************************************/
   1054  1.1.1.10.2.2    martin 
   1055  1.1.1.10.2.2    martin static BOOLEAN
   1056  1.1.1.10.2.2    martin TrCheckForBufferMatch (
   1057  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *NextOp1,
   1058  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *NextOp2)
   1059  1.1.1.10.2.2    martin {
   1060  1.1.1.10.2.2    martin     /*
   1061  1.1.1.10.2.2    martin      * The buffer length can be a DEFAULT_ARG or INTEGER. If any of the nodes
   1062  1.1.1.10.2.2    martin      * are DEFAULT_ARG, it means that the length has yet to be computed.
   1063  1.1.1.10.2.2    martin      * However, the initializer list can be compared to determine if these two
   1064  1.1.1.10.2.2    martin      * buffers match.
   1065  1.1.1.10.2.2    martin      */
   1066  1.1.1.10.2.2    martin     if ((NextOp1->Asl.ParseOpcode == PARSEOP_INTEGER &&
   1067  1.1.1.10.2.2    martin         NextOp2->Asl.ParseOpcode == PARSEOP_INTEGER) &&
   1068  1.1.1.10.2.2    martin         NextOp1->Asl.Value.Integer != NextOp2->Asl.Value.Integer)
   1069  1.1.1.10.2.2    martin     {
   1070  1.1.1.10.2.2    martin         return (FALSE);
   1071  1.1.1.10.2.2    martin     }
   1072  1.1.1.10.2.2    martin 
   1073  1.1.1.10.2.2    martin     /*
   1074  1.1.1.10.2.2    martin      * Buffers that have explicit lengths but no initializer lists are
   1075  1.1.1.10.2.2    martin      * filled with zeros at runtime. This is equivalent to buffers that have the
   1076  1.1.1.10.2.2    martin      * same length that are filled with zeros.
   1077  1.1.1.10.2.2    martin      *
   1078  1.1.1.10.2.2    martin      * In other words, the following buffers are equivalent:
   1079  1.1.1.10.2.2    martin      *
   1080  1.1.1.10.2.2    martin      * Buffer(0x4) {}
   1081  1.1.1.10.2.2    martin      * Buffer() {0x0, 0x0, 0x0, 0x0}
   1082  1.1.1.10.2.2    martin      *
   1083  1.1.1.10.2.2    martin      * This statement checks for matches where one buffer does not have an
   1084  1.1.1.10.2.2    martin      * initializer list and another buffer contains all zeros.
   1085  1.1.1.10.2.2    martin      */
   1086  1.1.1.10.2.2    martin     if (NextOp1->Asl.ParseOpcode != NextOp2->Asl.ParseOpcode &&
   1087  1.1.1.10.2.2    martin         TrBufferIsAllZero (NextOp1->Asl.Next) &&
   1088  1.1.1.10.2.2    martin         TrBufferIsAllZero (NextOp2->Asl.Next))
   1089  1.1.1.10.2.2    martin     {
   1090  1.1.1.10.2.2    martin         return (TRUE);
   1091  1.1.1.10.2.2    martin     }
   1092  1.1.1.10.2.2    martin 
   1093  1.1.1.10.2.2    martin     /* Start at the BYTECONST initializer node list */
   1094  1.1.1.10.2.2    martin 
   1095  1.1.1.10.2.2    martin     NextOp1 = NextOp1->Asl.Next;
   1096  1.1.1.10.2.2    martin     NextOp2 = NextOp2->Asl.Next;
   1097  1.1.1.10.2.2    martin 
   1098  1.1.1.10.2.2    martin     /*
   1099  1.1.1.10.2.2    martin      * Walk both lists until either a mismatch is found, or one or more
   1100  1.1.1.10.2.2    martin      * end-of-lists are found
   1101  1.1.1.10.2.2    martin      */
   1102  1.1.1.10.2.2    martin     while (NextOp1 && NextOp2)
   1103  1.1.1.10.2.2    martin     {
   1104  1.1.1.10.2.2    martin         if ((NextOp1->Asl.ParseOpcode == PARSEOP_STRING_LITERAL) &&
   1105  1.1.1.10.2.2    martin             (NextOp2->Asl.ParseOpcode == PARSEOP_STRING_LITERAL))
   1106  1.1.1.10.2.2    martin         {
   1107  1.1.1.10.2.2    martin             if (!strcmp (NextOp1->Asl.Value.String, NextOp2->Asl.Value.String))
   1108  1.1.1.10.2.2    martin             {
   1109  1.1.1.10.2.2    martin                 return (TRUE);
   1110  1.1.1.10.2.2    martin             }
   1111  1.1.1.10.2.2    martin             else
   1112  1.1.1.10.2.2    martin             {
   1113  1.1.1.10.2.2    martin                 return (FALSE);
   1114  1.1.1.10.2.2    martin             }
   1115  1.1.1.10.2.2    martin         }
   1116  1.1.1.10.2.2    martin         if ((UINT8) NextOp1->Asl.Value.Integer != (UINT8) NextOp2->Asl.Value.Integer)
   1117  1.1.1.10.2.2    martin         {
   1118  1.1.1.10.2.2    martin             return (FALSE);
   1119  1.1.1.10.2.2    martin         }
   1120  1.1.1.10.2.2    martin 
   1121  1.1.1.10.2.2    martin         NextOp1 = NextOp1->Asl.Next;
   1122  1.1.1.10.2.2    martin         NextOp2 = NextOp2->Asl.Next;
   1123  1.1.1.10.2.2    martin     }
   1124  1.1.1.10.2.2    martin 
   1125  1.1.1.10.2.2    martin     /* Not a match if one of the lists is not at end-of-list */
   1126  1.1.1.10.2.2    martin 
   1127  1.1.1.10.2.2    martin     if (NextOp1 || NextOp2)
   1128  1.1.1.10.2.2    martin     {
   1129  1.1.1.10.2.2    martin         return (FALSE);
   1130  1.1.1.10.2.2    martin     }
   1131  1.1.1.10.2.2    martin 
   1132  1.1.1.10.2.2    martin     /* Otherwise, the buffers match */
   1133  1.1.1.10.2.2    martin 
   1134  1.1.1.10.2.2    martin     return (TRUE);
   1135  1.1.1.10.2.2    martin }
   1136  1.1.1.10.2.2    martin 
   1137  1.1.1.10.2.2    martin 
   1138  1.1.1.10.2.2    martin /*******************************************************************************
   1139  1.1.1.10.2.2    martin  *
   1140  1.1.1.10.2.2    martin  * FUNCTION:    TrDoMethod
   1141  1.1.1.10.2.2    martin  *
   1142  1.1.1.10.2.2    martin  * PARAMETERS:  Op               - Parse node for SWITCH
   1143  1.1.1.10.2.2    martin  *
   1144  1.1.1.10.2.2    martin  * RETURN:      None
   1145  1.1.1.10.2.2    martin  *
   1146  1.1.1.10.2.2    martin  * DESCRIPTION: Determine that parameter count of an ASL method node by
   1147  1.1.1.10.2.2    martin  *              translating the parameter count parse node from
   1148  1.1.1.10.2.2    martin  *              PARSEOP_DEFAULT_ARG to PARSEOP_BYTECONST.
   1149  1.1.1.10.2.2    martin  *
   1150  1.1.1.10.2.2    martin  ******************************************************************************/
   1151  1.1.1.10.2.2    martin 
   1152  1.1.1.10.2.2    martin static void
   1153  1.1.1.10.2.2    martin TrDoMethod (
   1154  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT       *Op)
   1155  1.1.1.10.2.2    martin {
   1156  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT           *ArgCountOp;
   1157  1.1.1.10.2.2    martin     UINT8                       ArgCount;
   1158  1.1.1.10.2.2    martin     ACPI_PARSE_OBJECT           *ParameterOp;
   1159  1.1.1.10.2.2    martin 
   1160  1.1.1.10.2.2    martin 
   1161  1.1.1.10.2.2    martin     /*
   1162  1.1.1.10.2.2    martin      * TBD: Zero the tempname (_T_x) count. Probably shouldn't be a global,
   1163  1.1.1.10.2.2    martin      * however
   1164  1.1.1.10.2.2    martin      */
   1165  1.1.1.10.2.2    martin     AslGbl_TempCount = 0;
   1166  1.1.1.10.2.2    martin 
   1167  1.1.1.10.2.2    martin     ArgCountOp = Op->Asl.Child->Asl.Next;
   1168  1.1.1.10.2.2    martin     if (ArgCountOp->Asl.ParseOpcode == PARSEOP_BYTECONST)
   1169  1.1.1.10.2.2    martin     {
   1170  1.1.1.10.2.2    martin         /*
   1171  1.1.1.10.2.2    martin          * Parameter count for this method has already been recorded in the
   1172  1.1.1.10.2.2    martin          * method declaration.
   1173  1.1.1.10.2.2    martin          */
   1174  1.1.1.10.2.2    martin         return;
   1175  1.1.1.10.2.2    martin     }
   1176  1.1.1.10.2.2    martin 
   1177  1.1.1.10.2.2    martin     /*
   1178  1.1.1.10.2.2    martin      * Parameter count has been omitted in the method declaration.
   1179  1.1.1.10.2.2    martin      * Count the amount of arguments here.
   1180  1.1.1.10.2.2    martin      */
   1181  1.1.1.10.2.2    martin     ParameterOp = ArgCountOp->Asl.Next->Asl.Next->Asl.Next->Asl.Next;
   1182  1.1.1.10.2.2    martin     if (ParameterOp->Asl.ParseOpcode == PARSEOP_DEFAULT_ARG)
   1183  1.1.1.10.2.2    martin     {
   1184  1.1.1.10.2.2    martin         ArgCount = 0;
   1185  1.1.1.10.2.2    martin         ParameterOp = ParameterOp->Asl.Child;
   1186  1.1.1.10.2.2    martin 
   1187  1.1.1.10.2.2    martin         while (ParameterOp)
   1188  1.1.1.10.2.2    martin         {
   1189  1.1.1.10.2.2    martin             ParameterOp = ParameterOp->Asl.Next;
   1190  1.1.1.10.2.2    martin             ArgCount++;
   1191  1.1.1.10.2.2    martin         }
   1192  1.1.1.10.2.2    martin 
   1193  1.1.1.10.2.2    martin         ArgCountOp->Asl.Value.Integer = ArgCount;
   1194  1.1.1.10.2.2    martin         ArgCountOp->Asl.ParseOpcode = PARSEOP_BYTECONST;
   1195  1.1.1.10.2.2    martin     }
   1196  1.1.1.10.2.2    martin     else
   1197  1.1.1.10.2.2    martin     {
   1198  1.1.1.10.2.2    martin         /*
   1199  1.1.1.10.2.2    martin          * Method parameters can be counted by analyzing the Parameter type
   1200  1.1.1.10.2.2    martin          * list. If the Parameter list contains more than 1 parameter, it
   1201  1.1.1.10.2.2    martin          * is nested under PARSEOP_DEFAULT_ARG. When there is only 1
   1202  1.1.1.10.2.2    martin          * parameter, the parse tree contains a single node representing
   1203  1.1.1.10.2.2    martin          * that type.
   1204  1.1.1.10.2.2    martin          */
   1205  1.1.1.10.2.2    martin         ArgCountOp->Asl.Value.Integer = 1;
   1206  1.1.1.10.2.2    martin         ArgCountOp->Asl.ParseOpcode = PARSEOP_BYTECONST;
   1207  1.1.1.10.2.2    martin     }
   1208  1.1.1.10.2.2    martin }
   1209