1bc36eafdSMike Gerdts /******************************************************************************
2bc36eafdSMike Gerdts *
3bc36eafdSMike Gerdts * Module Name: aslopcode - AML opcode generation
4bc36eafdSMike Gerdts *
5bc36eafdSMike Gerdts *****************************************************************************/
6bc36eafdSMike Gerdts
7*35786f68SRobert Mustacchi /******************************************************************************
8*35786f68SRobert Mustacchi *
9*35786f68SRobert Mustacchi * 1. Copyright Notice
10*35786f68SRobert Mustacchi *
11*35786f68SRobert Mustacchi * Some or all of this work - Copyright (c) 1999 - 2018, Intel Corp.
12bc36eafdSMike Gerdts * All rights reserved.
13bc36eafdSMike Gerdts *
14*35786f68SRobert Mustacchi * 2. License
15*35786f68SRobert Mustacchi *
16*35786f68SRobert Mustacchi * 2.1. This is your license from Intel Corp. under its intellectual property
17*35786f68SRobert Mustacchi * rights. You may have additional license terms from the party that provided
18*35786f68SRobert Mustacchi * you this software, covering your right to use that party's intellectual
19*35786f68SRobert Mustacchi * property rights.
20*35786f68SRobert Mustacchi *
21*35786f68SRobert Mustacchi * 2.2. Intel grants, free of charge, to any person ("Licensee") obtaining a
22*35786f68SRobert Mustacchi * copy of the source code appearing in this file ("Covered Code") an
23*35786f68SRobert Mustacchi * irrevocable, perpetual, worldwide license under Intel's copyrights in the
24*35786f68SRobert Mustacchi * base code distributed originally by Intel ("Original Intel Code") to copy,
25*35786f68SRobert Mustacchi * make derivatives, distribute, use and display any portion of the Covered
26*35786f68SRobert Mustacchi * Code in any form, with the right to sublicense such rights; and
27*35786f68SRobert Mustacchi *
28*35786f68SRobert Mustacchi * 2.3. Intel grants Licensee a non-exclusive and non-transferable patent
29*35786f68SRobert Mustacchi * license (with the right to sublicense), under only those claims of Intel
30*35786f68SRobert Mustacchi * patents that are infringed by the Original Intel Code, to make, use, sell,
31*35786f68SRobert Mustacchi * offer to sell, and import the Covered Code and derivative works thereof
32*35786f68SRobert Mustacchi * solely to the minimum extent necessary to exercise the above copyright
33*35786f68SRobert Mustacchi * license, and in no event shall the patent license extend to any additions
34*35786f68SRobert Mustacchi * to or modifications of the Original Intel Code. No other license or right
35*35786f68SRobert Mustacchi * is granted directly or by implication, estoppel or otherwise;
36*35786f68SRobert Mustacchi *
37*35786f68SRobert Mustacchi * The above copyright and patent license is granted only if the following
38*35786f68SRobert Mustacchi * conditions are met:
39*35786f68SRobert Mustacchi *
40*35786f68SRobert Mustacchi * 3. Conditions
41*35786f68SRobert Mustacchi *
42*35786f68SRobert Mustacchi * 3.1. Redistribution of Source with Rights to Further Distribute Source.
43*35786f68SRobert Mustacchi * Redistribution of source code of any substantial portion of the Covered
44*35786f68SRobert Mustacchi * Code or modification with rights to further distribute source must include
45*35786f68SRobert Mustacchi * the above Copyright Notice, the above License, this list of Conditions,
46*35786f68SRobert Mustacchi * and the following Disclaimer and Export Compliance provision. In addition,
47*35786f68SRobert Mustacchi * Licensee must cause all Covered Code to which Licensee contributes to
48*35786f68SRobert Mustacchi * contain a file documenting the changes Licensee made to create that Covered
49*35786f68SRobert Mustacchi * Code and the date of any change. Licensee must include in that file the
50*35786f68SRobert Mustacchi * documentation of any changes made by any predecessor Licensee. Licensee
51*35786f68SRobert Mustacchi * must include a prominent statement that the modification is derived,
52*35786f68SRobert Mustacchi * directly or indirectly, from Original Intel Code.
53*35786f68SRobert Mustacchi *
54*35786f68SRobert Mustacchi * 3.2. Redistribution of Source with no Rights to Further Distribute Source.
55*35786f68SRobert Mustacchi * Redistribution of source code of any substantial portion of the Covered
56*35786f68SRobert Mustacchi * Code or modification without rights to further distribute source must
57*35786f68SRobert Mustacchi * include the following Disclaimer and Export Compliance provision in the
58*35786f68SRobert Mustacchi * documentation and/or other materials provided with distribution. In
59*35786f68SRobert Mustacchi * addition, Licensee may not authorize further sublicense of source of any
60*35786f68SRobert Mustacchi * portion of the Covered Code, and must include terms to the effect that the
61*35786f68SRobert Mustacchi * license from Licensee to its licensee is limited to the intellectual
62*35786f68SRobert Mustacchi * property embodied in the software Licensee provides to its licensee, and
63*35786f68SRobert Mustacchi * not to intellectual property embodied in modifications its licensee may
64*35786f68SRobert Mustacchi * make.
65*35786f68SRobert Mustacchi *
66*35786f68SRobert Mustacchi * 3.3. Redistribution of Executable. Redistribution in executable form of any
67*35786f68SRobert Mustacchi * substantial portion of the Covered Code or modification must reproduce the
68*35786f68SRobert Mustacchi * above Copyright Notice, and the following Disclaimer and Export Compliance
69*35786f68SRobert Mustacchi * provision in the documentation and/or other materials provided with the
70*35786f68SRobert Mustacchi * distribution.
71*35786f68SRobert Mustacchi *
72*35786f68SRobert Mustacchi * 3.4. Intel retains all right, title, and interest in and to the Original
73*35786f68SRobert Mustacchi * Intel Code.
74*35786f68SRobert Mustacchi *
75*35786f68SRobert Mustacchi * 3.5. Neither the name Intel nor any other trademark owned or controlled by
76*35786f68SRobert Mustacchi * Intel shall be used in advertising or otherwise to promote the sale, use or
77*35786f68SRobert Mustacchi * other dealings in products derived from or relating to the Covered Code
78*35786f68SRobert Mustacchi * without prior written authorization from Intel.
79*35786f68SRobert Mustacchi *
80*35786f68SRobert Mustacchi * 4. Disclaimer and Export Compliance
81*35786f68SRobert Mustacchi *
82*35786f68SRobert Mustacchi * 4.1. INTEL MAKES NO WARRANTY OF ANY KIND REGARDING ANY SOFTWARE PROVIDED
83*35786f68SRobert Mustacchi * HERE. ANY SOFTWARE ORIGINATING FROM INTEL OR DERIVED FROM INTEL SOFTWARE
84*35786f68SRobert Mustacchi * IS PROVIDED "AS IS," AND INTEL WILL NOT PROVIDE ANY SUPPORT, ASSISTANCE,
85*35786f68SRobert Mustacchi * INSTALLATION, TRAINING OR OTHER SERVICES. INTEL WILL NOT PROVIDE ANY
86*35786f68SRobert Mustacchi * UPDATES, ENHANCEMENTS OR EXTENSIONS. INTEL SPECIFICALLY DISCLAIMS ANY
87*35786f68SRobert Mustacchi * IMPLIED WARRANTIES OF MERCHANTABILITY, NONINFRINGEMENT AND FITNESS FOR A
88*35786f68SRobert Mustacchi * PARTICULAR PURPOSE.
89*35786f68SRobert Mustacchi *
90*35786f68SRobert Mustacchi * 4.2. IN NO EVENT SHALL INTEL HAVE ANY LIABILITY TO LICENSEE, ITS LICENSEES
91*35786f68SRobert Mustacchi * OR ANY OTHER THIRD PARTY, FOR ANY LOST PROFITS, LOST DATA, LOSS OF USE OR
92*35786f68SRobert Mustacchi * COSTS OF PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES, OR FOR ANY INDIRECT,
93*35786f68SRobert Mustacchi * SPECIAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THIS AGREEMENT, UNDER ANY
94*35786f68SRobert Mustacchi * CAUSE OF ACTION OR THEORY OF LIABILITY, AND IRRESPECTIVE OF WHETHER INTEL
95*35786f68SRobert Mustacchi * HAS ADVANCE NOTICE OF THE POSSIBILITY OF SUCH DAMAGES. THESE LIMITATIONS
96*35786f68SRobert Mustacchi * SHALL APPLY NOTWITHSTANDING THE FAILURE OF THE ESSENTIAL PURPOSE OF ANY
97*35786f68SRobert Mustacchi * LIMITED REMEDY.
98*35786f68SRobert Mustacchi *
99*35786f68SRobert Mustacchi * 4.3. Licensee shall not export, either directly or indirectly, any of this
100*35786f68SRobert Mustacchi * software or system incorporating such software without first obtaining any
101*35786f68SRobert Mustacchi * required license or other approval from the U. S. Department of Commerce or
102*35786f68SRobert Mustacchi * any other agency or department of the United States Government. In the
103*35786f68SRobert Mustacchi * event Licensee exports any such software from the United States or
104*35786f68SRobert Mustacchi * re-exports any such software from a foreign destination, Licensee shall
105*35786f68SRobert Mustacchi * ensure that the distribution and export/re-export of the software is in
106*35786f68SRobert Mustacchi * compliance with all laws, regulations, orders, or other restrictions of the
107*35786f68SRobert Mustacchi * U.S. Export Administration Regulations. Licensee agrees that neither it nor
108*35786f68SRobert Mustacchi * any of its subsidiaries will export/re-export any technical data, process,
109*35786f68SRobert Mustacchi * software, or service, directly or indirectly, to any country for which the
110*35786f68SRobert Mustacchi * United States government or any agency thereof requires an export license,
111*35786f68SRobert Mustacchi * other governmental approval, or letter of assurance, without first obtaining
112*35786f68SRobert Mustacchi * such license, approval or letter.
113*35786f68SRobert Mustacchi *
114*35786f68SRobert Mustacchi *****************************************************************************
115*35786f68SRobert Mustacchi *
116*35786f68SRobert Mustacchi * Alternatively, you may choose to be licensed under the terms of the
117*35786f68SRobert Mustacchi * following license:
118*35786f68SRobert Mustacchi *
119bc36eafdSMike Gerdts * Redistribution and use in source and binary forms, with or without
120bc36eafdSMike Gerdts * modification, are permitted provided that the following conditions
121bc36eafdSMike Gerdts * are met:
122bc36eafdSMike Gerdts * 1. Redistributions of source code must retain the above copyright
123bc36eafdSMike Gerdts * notice, this list of conditions, and the following disclaimer,
124bc36eafdSMike Gerdts * without modification.
125bc36eafdSMike Gerdts * 2. Redistributions in binary form must reproduce at minimum a disclaimer
126bc36eafdSMike Gerdts * substantially similar to the "NO WARRANTY" disclaimer below
127bc36eafdSMike Gerdts * ("Disclaimer") and any redistribution must be conditioned upon
128bc36eafdSMike Gerdts * including a substantially similar Disclaimer requirement for further
129bc36eafdSMike Gerdts * binary redistribution.
130bc36eafdSMike Gerdts * 3. Neither the names of the above-listed copyright holders nor the names
131bc36eafdSMike Gerdts * of any contributors may be used to endorse or promote products derived
132bc36eafdSMike Gerdts * from this software without specific prior written permission.
133bc36eafdSMike Gerdts *
134*35786f68SRobert Mustacchi * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
135*35786f68SRobert Mustacchi * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
136*35786f68SRobert Mustacchi * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
137*35786f68SRobert Mustacchi * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
138*35786f68SRobert Mustacchi * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
139*35786f68SRobert Mustacchi * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
140*35786f68SRobert Mustacchi * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
141*35786f68SRobert Mustacchi * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
142*35786f68SRobert Mustacchi * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
143*35786f68SRobert Mustacchi * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
144*35786f68SRobert Mustacchi * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
145*35786f68SRobert Mustacchi *
146*35786f68SRobert Mustacchi * Alternatively, you may choose to be licensed under the terms of the
147bc36eafdSMike Gerdts * GNU General Public License ("GPL") version 2 as published by the Free
148bc36eafdSMike Gerdts * Software Foundation.
149bc36eafdSMike Gerdts *
150*35786f68SRobert Mustacchi *****************************************************************************/
151bc36eafdSMike Gerdts
152bc36eafdSMike Gerdts #include "aslcompiler.h"
153bc36eafdSMike Gerdts #include "aslcompiler.y.h"
154bc36eafdSMike Gerdts #include "amlcode.h"
155bc36eafdSMike Gerdts
156bc36eafdSMike Gerdts #define _COMPONENT ACPI_COMPILER
157bc36eafdSMike Gerdts ACPI_MODULE_NAME ("aslopcodes")
158bc36eafdSMike Gerdts
159bc36eafdSMike Gerdts
160bc36eafdSMike Gerdts /* Local prototypes */
161bc36eafdSMike Gerdts
162bc36eafdSMike Gerdts static void
163bc36eafdSMike Gerdts OpcDoAccessAs (
164bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op);
165bc36eafdSMike Gerdts
166bc36eafdSMike Gerdts static void
167bc36eafdSMike Gerdts OpcDoConnection (
168bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op);
169bc36eafdSMike Gerdts
170bc36eafdSMike Gerdts static void
171bc36eafdSMike Gerdts OpcDoUnicode (
172bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op);
173bc36eafdSMike Gerdts
174bc36eafdSMike Gerdts static void
175bc36eafdSMike Gerdts OpcDoEisaId (
176bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op);
177bc36eafdSMike Gerdts
178bc36eafdSMike Gerdts static void
179bc36eafdSMike Gerdts OpcDoUuId (
180bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op);
181bc36eafdSMike Gerdts
182bc36eafdSMike Gerdts
183bc36eafdSMike Gerdts /*******************************************************************************
184bc36eafdSMike Gerdts *
185bc36eafdSMike Gerdts * FUNCTION: OpcAmlOpcodeUpdateWalk
186bc36eafdSMike Gerdts *
187bc36eafdSMike Gerdts * PARAMETERS: ASL_WALK_CALLBACK
188bc36eafdSMike Gerdts *
189bc36eafdSMike Gerdts * RETURN: Status
190bc36eafdSMike Gerdts *
191bc36eafdSMike Gerdts * DESCRIPTION: Opcode update walk, ascending callback
192bc36eafdSMike Gerdts *
193bc36eafdSMike Gerdts ******************************************************************************/
194bc36eafdSMike Gerdts
195bc36eafdSMike Gerdts ACPI_STATUS
OpcAmlOpcodeUpdateWalk(ACPI_PARSE_OBJECT * Op,UINT32 Level,void * Context)196bc36eafdSMike Gerdts OpcAmlOpcodeUpdateWalk (
197bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op,
198bc36eafdSMike Gerdts UINT32 Level,
199bc36eafdSMike Gerdts void *Context)
200bc36eafdSMike Gerdts {
201bc36eafdSMike Gerdts
202bc36eafdSMike Gerdts /*
203bc36eafdSMike Gerdts * Handle the Package() case where the actual opcode cannot be determined
204bc36eafdSMike Gerdts * until the PackageLength operand has been folded and minimized.
205bc36eafdSMike Gerdts * (PackageOp versus VarPackageOp)
206bc36eafdSMike Gerdts *
207bc36eafdSMike Gerdts * This is (as of ACPI 3.0) the only case where the AML opcode can change
208bc36eafdSMike Gerdts * based upon the value of a parameter.
209bc36eafdSMike Gerdts *
210bc36eafdSMike Gerdts * The parser always inserts a VarPackage opcode, which can possibly be
211bc36eafdSMike Gerdts * optimized to a Package opcode.
212bc36eafdSMike Gerdts */
213bc36eafdSMike Gerdts if (Op->Asl.ParseOpcode == PARSEOP_VAR_PACKAGE)
214bc36eafdSMike Gerdts {
215bc36eafdSMike Gerdts OpnDoPackage (Op);
216bc36eafdSMike Gerdts }
217bc36eafdSMike Gerdts
218bc36eafdSMike Gerdts return (AE_OK);
219bc36eafdSMike Gerdts }
220bc36eafdSMike Gerdts
221bc36eafdSMike Gerdts
222bc36eafdSMike Gerdts /*******************************************************************************
223bc36eafdSMike Gerdts *
224bc36eafdSMike Gerdts * FUNCTION: OpcAmlOpcodeWalk
225bc36eafdSMike Gerdts *
226bc36eafdSMike Gerdts * PARAMETERS: ASL_WALK_CALLBACK
227bc36eafdSMike Gerdts *
228bc36eafdSMike Gerdts * RETURN: Status
229bc36eafdSMike Gerdts *
230bc36eafdSMike Gerdts * DESCRIPTION: Parse tree walk to generate both the AML opcodes and the AML
231bc36eafdSMike Gerdts * operands.
232bc36eafdSMike Gerdts *
233bc36eafdSMike Gerdts ******************************************************************************/
234bc36eafdSMike Gerdts
235bc36eafdSMike Gerdts ACPI_STATUS
OpcAmlOpcodeWalk(ACPI_PARSE_OBJECT * Op,UINT32 Level,void * Context)236bc36eafdSMike Gerdts OpcAmlOpcodeWalk (
237bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op,
238bc36eafdSMike Gerdts UINT32 Level,
239bc36eafdSMike Gerdts void *Context)
240bc36eafdSMike Gerdts {
241bc36eafdSMike Gerdts
242bc36eafdSMike Gerdts TotalParseNodes++;
243bc36eafdSMike Gerdts
244bc36eafdSMike Gerdts OpcGenerateAmlOpcode (Op);
245bc36eafdSMike Gerdts OpnGenerateAmlOperands (Op);
246bc36eafdSMike Gerdts return (AE_OK);
247bc36eafdSMike Gerdts }
248bc36eafdSMike Gerdts
249bc36eafdSMike Gerdts
250bc36eafdSMike Gerdts /*******************************************************************************
251bc36eafdSMike Gerdts *
252bc36eafdSMike Gerdts * FUNCTION: OpcGetIntegerWidth
253bc36eafdSMike Gerdts *
254bc36eafdSMike Gerdts * PARAMETERS: Op - DEFINITION BLOCK op
255bc36eafdSMike Gerdts *
256bc36eafdSMike Gerdts * RETURN: none
257bc36eafdSMike Gerdts *
258bc36eafdSMike Gerdts * DESCRIPTION: Extract integer width from the table revision
259bc36eafdSMike Gerdts *
260bc36eafdSMike Gerdts ******************************************************************************/
261bc36eafdSMike Gerdts
262bc36eafdSMike Gerdts void
OpcGetIntegerWidth(ACPI_PARSE_OBJECT * Op)263bc36eafdSMike Gerdts OpcGetIntegerWidth (
264bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op)
265bc36eafdSMike Gerdts {
266bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Child;
267bc36eafdSMike Gerdts
268bc36eafdSMike Gerdts
269bc36eafdSMike Gerdts if (!Op)
270bc36eafdSMike Gerdts {
271bc36eafdSMike Gerdts return;
272bc36eafdSMike Gerdts }
273bc36eafdSMike Gerdts
274bc36eafdSMike Gerdts if (Gbl_RevisionOverride)
275bc36eafdSMike Gerdts {
276bc36eafdSMike Gerdts AcpiUtSetIntegerWidth (Gbl_RevisionOverride);
277bc36eafdSMike Gerdts }
278bc36eafdSMike Gerdts else
279bc36eafdSMike Gerdts {
280bc36eafdSMike Gerdts Child = Op->Asl.Child;
281bc36eafdSMike Gerdts Child = Child->Asl.Next;
282bc36eafdSMike Gerdts Child = Child->Asl.Next;
283bc36eafdSMike Gerdts
284bc36eafdSMike Gerdts /* Use the revision to set the integer width */
285bc36eafdSMike Gerdts
286bc36eafdSMike Gerdts AcpiUtSetIntegerWidth ((UINT8) Child->Asl.Value.Integer);
287bc36eafdSMike Gerdts }
288bc36eafdSMike Gerdts }
289bc36eafdSMike Gerdts
290bc36eafdSMike Gerdts
291bc36eafdSMike Gerdts /*******************************************************************************
292bc36eafdSMike Gerdts *
293bc36eafdSMike Gerdts * FUNCTION: OpcSetOptimalIntegerSize
294bc36eafdSMike Gerdts *
295bc36eafdSMike Gerdts * PARAMETERS: Op - A parse tree node
296bc36eafdSMike Gerdts *
297bc36eafdSMike Gerdts * RETURN: Integer width, in bytes. Also sets the node AML opcode to the
298bc36eafdSMike Gerdts * optimal integer AML prefix opcode.
299bc36eafdSMike Gerdts *
300bc36eafdSMike Gerdts * DESCRIPTION: Determine the optimal AML encoding of an integer. All leading
301bc36eafdSMike Gerdts * zeros can be truncated to squeeze the integer into the
302bc36eafdSMike Gerdts * minimal number of AML bytes.
303bc36eafdSMike Gerdts *
304bc36eafdSMike Gerdts ******************************************************************************/
305bc36eafdSMike Gerdts
306bc36eafdSMike Gerdts UINT32
OpcSetOptimalIntegerSize(ACPI_PARSE_OBJECT * Op)307bc36eafdSMike Gerdts OpcSetOptimalIntegerSize (
308bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op)
309bc36eafdSMike Gerdts {
310bc36eafdSMike Gerdts
311bc36eafdSMike Gerdts #if 0
312bc36eafdSMike Gerdts /*
313bc36eafdSMike Gerdts * TBD: - we don't want to optimize integers in the block header, but the
314bc36eafdSMike Gerdts * code below does not work correctly.
315bc36eafdSMike Gerdts */
316bc36eafdSMike Gerdts if (Op->Asl.Parent &&
317bc36eafdSMike Gerdts Op->Asl.Parent->Asl.Parent &&
318bc36eafdSMike Gerdts (Op->Asl.Parent->Asl.Parent->Asl.ParseOpcode == PARSEOP_DEFINITION_BLOCK))
319bc36eafdSMike Gerdts {
320bc36eafdSMike Gerdts return (0);
321bc36eafdSMike Gerdts }
322bc36eafdSMike Gerdts #endif
323bc36eafdSMike Gerdts
324bc36eafdSMike Gerdts /*
325bc36eafdSMike Gerdts * Check for the special AML integers first - Zero, One, Ones.
326bc36eafdSMike Gerdts * These are single-byte opcodes that are the smallest possible
327bc36eafdSMike Gerdts * representation of an integer.
328bc36eafdSMike Gerdts *
329bc36eafdSMike Gerdts * This optimization is optional.
330bc36eafdSMike Gerdts */
331bc36eafdSMike Gerdts if (Gbl_IntegerOptimizationFlag)
332bc36eafdSMike Gerdts {
333bc36eafdSMike Gerdts switch (Op->Asl.Value.Integer)
334bc36eafdSMike Gerdts {
335bc36eafdSMike Gerdts case 0:
336bc36eafdSMike Gerdts
337bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_ZERO_OP;
338bc36eafdSMike Gerdts AslError (ASL_OPTIMIZATION, ASL_MSG_INTEGER_OPTIMIZATION,
339bc36eafdSMike Gerdts Op, "Zero");
340bc36eafdSMike Gerdts return (1);
341bc36eafdSMike Gerdts
342bc36eafdSMike Gerdts case 1:
343bc36eafdSMike Gerdts
344bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_ONE_OP;
345bc36eafdSMike Gerdts AslError (ASL_OPTIMIZATION, ASL_MSG_INTEGER_OPTIMIZATION,
346bc36eafdSMike Gerdts Op, "One");
347bc36eafdSMike Gerdts return (1);
348bc36eafdSMike Gerdts
349bc36eafdSMike Gerdts case ACPI_UINT32_MAX:
350bc36eafdSMike Gerdts
351bc36eafdSMike Gerdts /* Check for table integer width (32 or 64) */
352bc36eafdSMike Gerdts
353bc36eafdSMike Gerdts if (AcpiGbl_IntegerByteWidth == 4)
354bc36eafdSMike Gerdts {
355bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_ONES_OP;
356bc36eafdSMike Gerdts AslError (ASL_OPTIMIZATION, ASL_MSG_INTEGER_OPTIMIZATION,
357bc36eafdSMike Gerdts Op, "Ones");
358bc36eafdSMike Gerdts return (1);
359bc36eafdSMike Gerdts }
360bc36eafdSMike Gerdts break;
361bc36eafdSMike Gerdts
362bc36eafdSMike Gerdts case ACPI_UINT64_MAX:
363bc36eafdSMike Gerdts
364bc36eafdSMike Gerdts /* Check for table integer width (32 or 64) */
365bc36eafdSMike Gerdts
366bc36eafdSMike Gerdts if (AcpiGbl_IntegerByteWidth == 8)
367bc36eafdSMike Gerdts {
368bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_ONES_OP;
369bc36eafdSMike Gerdts AslError (ASL_OPTIMIZATION, ASL_MSG_INTEGER_OPTIMIZATION,
370bc36eafdSMike Gerdts Op, "Ones");
371bc36eafdSMike Gerdts return (1);
372bc36eafdSMike Gerdts }
373bc36eafdSMike Gerdts break;
374bc36eafdSMike Gerdts
375bc36eafdSMike Gerdts default:
376bc36eafdSMike Gerdts
377bc36eafdSMike Gerdts break;
378bc36eafdSMike Gerdts }
379bc36eafdSMike Gerdts }
380bc36eafdSMike Gerdts
381bc36eafdSMike Gerdts /* Find the best fit using the various AML integer prefixes */
382bc36eafdSMike Gerdts
383bc36eafdSMike Gerdts if (Op->Asl.Value.Integer <= ACPI_UINT8_MAX)
384bc36eafdSMike Gerdts {
385bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_BYTE_OP;
386bc36eafdSMike Gerdts return (1);
387bc36eafdSMike Gerdts }
388bc36eafdSMike Gerdts
389bc36eafdSMike Gerdts if (Op->Asl.Value.Integer <= ACPI_UINT16_MAX)
390bc36eafdSMike Gerdts {
391bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_WORD_OP;
392bc36eafdSMike Gerdts return (2);
393bc36eafdSMike Gerdts }
394bc36eafdSMike Gerdts
395bc36eafdSMike Gerdts if (Op->Asl.Value.Integer <= ACPI_UINT32_MAX)
396bc36eafdSMike Gerdts {
397bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_DWORD_OP;
398bc36eafdSMike Gerdts return (4);
399bc36eafdSMike Gerdts }
400*35786f68SRobert Mustacchi else /* 64-bit integer */
401bc36eafdSMike Gerdts {
402bc36eafdSMike Gerdts if (AcpiGbl_IntegerByteWidth == 4)
403bc36eafdSMike Gerdts {
404bc36eafdSMike Gerdts AslError (ASL_WARNING, ASL_MSG_INTEGER_LENGTH,
405bc36eafdSMike Gerdts Op, NULL);
406bc36eafdSMike Gerdts
407bc36eafdSMike Gerdts if (!Gbl_IgnoreErrors)
408bc36eafdSMike Gerdts {
409bc36eafdSMike Gerdts /* Truncate the integer to 32-bit */
410*35786f68SRobert Mustacchi
411*35786f68SRobert Mustacchi Op->Asl.Value.Integer &= ACPI_UINT32_MAX;
412*35786f68SRobert Mustacchi
413*35786f68SRobert Mustacchi /* Now set the optimal integer size */
414*35786f68SRobert Mustacchi
415*35786f68SRobert Mustacchi return (OpcSetOptimalIntegerSize (Op));
416bc36eafdSMike Gerdts }
417bc36eafdSMike Gerdts }
418bc36eafdSMike Gerdts
419bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_QWORD_OP;
420bc36eafdSMike Gerdts return (8);
421bc36eafdSMike Gerdts }
422bc36eafdSMike Gerdts }
423bc36eafdSMike Gerdts
424bc36eafdSMike Gerdts
425bc36eafdSMike Gerdts /*******************************************************************************
426bc36eafdSMike Gerdts *
427bc36eafdSMike Gerdts * FUNCTION: OpcDoAccessAs
428bc36eafdSMike Gerdts *
429bc36eafdSMike Gerdts * PARAMETERS: Op - Parse node
430bc36eafdSMike Gerdts *
431bc36eafdSMike Gerdts * RETURN: None
432bc36eafdSMike Gerdts *
433bc36eafdSMike Gerdts * DESCRIPTION: Implement the ACCESS_AS ASL keyword.
434bc36eafdSMike Gerdts *
435bc36eafdSMike Gerdts ******************************************************************************/
436bc36eafdSMike Gerdts
437bc36eafdSMike Gerdts static void
OpcDoAccessAs(ACPI_PARSE_OBJECT * Op)438bc36eafdSMike Gerdts OpcDoAccessAs (
439bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op)
440bc36eafdSMike Gerdts {
441bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *TypeOp;
442bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *AttribOp;
443bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *LengthOp;
444bc36eafdSMike Gerdts UINT8 Attribute;
445bc36eafdSMike Gerdts
446bc36eafdSMike Gerdts
447bc36eafdSMike Gerdts Op->Asl.AmlOpcodeLength = 1;
448bc36eafdSMike Gerdts TypeOp = Op->Asl.Child;
449bc36eafdSMike Gerdts
450bc36eafdSMike Gerdts /* First child is the access type */
451bc36eafdSMike Gerdts
452bc36eafdSMike Gerdts TypeOp->Asl.AmlOpcode = AML_RAW_DATA_BYTE;
453bc36eafdSMike Gerdts TypeOp->Asl.ParseOpcode = PARSEOP_RAW_DATA;
454bc36eafdSMike Gerdts
455bc36eafdSMike Gerdts /* Second child is the optional access attribute */
456bc36eafdSMike Gerdts
457bc36eafdSMike Gerdts AttribOp = TypeOp->Asl.Next;
458bc36eafdSMike Gerdts if (AttribOp->Asl.ParseOpcode == PARSEOP_DEFAULT_ARG)
459bc36eafdSMike Gerdts {
460bc36eafdSMike Gerdts AttribOp->Asl.Value.Integer = 0;
461bc36eafdSMike Gerdts }
462bc36eafdSMike Gerdts
463bc36eafdSMike Gerdts AttribOp->Asl.AmlOpcode = AML_RAW_DATA_BYTE;
464bc36eafdSMike Gerdts AttribOp->Asl.ParseOpcode = PARSEOP_RAW_DATA;
465bc36eafdSMike Gerdts
466bc36eafdSMike Gerdts /* Only a few AccessAttributes support AccessLength */
467bc36eafdSMike Gerdts
468bc36eafdSMike Gerdts Attribute = (UINT8) AttribOp->Asl.Value.Integer;
469bc36eafdSMike Gerdts if ((Attribute != AML_FIELD_ATTRIB_MULTIBYTE) &&
470bc36eafdSMike Gerdts (Attribute != AML_FIELD_ATTRIB_RAW_BYTES) &&
471bc36eafdSMike Gerdts (Attribute != AML_FIELD_ATTRIB_RAW_PROCESS))
472bc36eafdSMike Gerdts {
473bc36eafdSMike Gerdts return;
474bc36eafdSMike Gerdts }
475bc36eafdSMike Gerdts
476bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AML_FIELD_EXT_ACCESS_OP;
477bc36eafdSMike Gerdts
478bc36eafdSMike Gerdts /*
479bc36eafdSMike Gerdts * Child of Attributes is the AccessLength (required for Multibyte,
480bc36eafdSMike Gerdts * RawBytes, RawProcess.)
481bc36eafdSMike Gerdts */
482bc36eafdSMike Gerdts LengthOp = AttribOp->Asl.Child;
483bc36eafdSMike Gerdts if (!LengthOp)
484bc36eafdSMike Gerdts {
485bc36eafdSMike Gerdts return;
486bc36eafdSMike Gerdts }
487bc36eafdSMike Gerdts
488bc36eafdSMike Gerdts /* TBD: probably can remove */
489bc36eafdSMike Gerdts
490bc36eafdSMike Gerdts if (LengthOp->Asl.ParseOpcode == PARSEOP_DEFAULT_ARG)
491bc36eafdSMike Gerdts {
492bc36eafdSMike Gerdts LengthOp->Asl.Value.Integer = 16;
493bc36eafdSMike Gerdts }
494bc36eafdSMike Gerdts
495bc36eafdSMike Gerdts LengthOp->Asl.AmlOpcode = AML_RAW_DATA_BYTE;
496bc36eafdSMike Gerdts LengthOp->Asl.ParseOpcode = PARSEOP_RAW_DATA;
497bc36eafdSMike Gerdts }
498bc36eafdSMike Gerdts
499bc36eafdSMike Gerdts
500bc36eafdSMike Gerdts /*******************************************************************************
501bc36eafdSMike Gerdts *
502bc36eafdSMike Gerdts * FUNCTION: OpcDoConnection
503bc36eafdSMike Gerdts *
504bc36eafdSMike Gerdts * PARAMETERS: Op - Parse node
505bc36eafdSMike Gerdts *
506bc36eafdSMike Gerdts * RETURN: None
507bc36eafdSMike Gerdts *
508bc36eafdSMike Gerdts * DESCRIPTION: Implement the Connection ASL keyword.
509bc36eafdSMike Gerdts *
510bc36eafdSMike Gerdts ******************************************************************************/
511bc36eafdSMike Gerdts
512bc36eafdSMike Gerdts static void
OpcDoConnection(ACPI_PARSE_OBJECT * Op)513bc36eafdSMike Gerdts OpcDoConnection (
514bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op)
515bc36eafdSMike Gerdts {
516bc36eafdSMike Gerdts ASL_RESOURCE_NODE *Rnode;
517bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *BufferOp;
518bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *BufferLengthOp;
519bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *BufferDataOp;
520bc36eafdSMike Gerdts ASL_RESOURCE_INFO Info;
521bc36eafdSMike Gerdts UINT8 State;
522bc36eafdSMike Gerdts
523bc36eafdSMike Gerdts
524bc36eafdSMike Gerdts Op->Asl.AmlOpcodeLength = 1;
525bc36eafdSMike Gerdts
526bc36eafdSMike Gerdts if (Op->Asl.Child->Asl.AmlOpcode == AML_INT_NAMEPATH_OP)
527bc36eafdSMike Gerdts {
528bc36eafdSMike Gerdts return;
529bc36eafdSMike Gerdts }
530bc36eafdSMike Gerdts
531bc36eafdSMike Gerdts BufferOp = Op->Asl.Child;
532bc36eafdSMike Gerdts BufferLengthOp = BufferOp->Asl.Child;
533bc36eafdSMike Gerdts BufferDataOp = BufferLengthOp->Asl.Next;
534bc36eafdSMike Gerdts
535bc36eafdSMike Gerdts Info.DescriptorTypeOp = BufferDataOp->Asl.Next;
536bc36eafdSMike Gerdts Info.CurrentByteOffset = 0;
537bc36eafdSMike Gerdts State = ACPI_RSTATE_NORMAL;
538bc36eafdSMike Gerdts Rnode = RsDoOneResourceDescriptor (&Info, &State);
539bc36eafdSMike Gerdts if (!Rnode)
540bc36eafdSMike Gerdts {
541bc36eafdSMike Gerdts return; /* error */
542bc36eafdSMike Gerdts }
543bc36eafdSMike Gerdts
544bc36eafdSMike Gerdts /*
545bc36eafdSMike Gerdts * Transform the nodes into the following
546bc36eafdSMike Gerdts *
547bc36eafdSMike Gerdts * Op -> AML_BUFFER_OP
548bc36eafdSMike Gerdts * First Child -> BufferLength
549bc36eafdSMike Gerdts * Second Child -> Descriptor Buffer (raw byte data)
550bc36eafdSMike Gerdts */
551bc36eafdSMike Gerdts BufferOp->Asl.ParseOpcode = PARSEOP_BUFFER;
552bc36eafdSMike Gerdts BufferOp->Asl.AmlOpcode = AML_BUFFER_OP;
553*35786f68SRobert Mustacchi BufferOp->Asl.CompileFlags = OP_AML_PACKAGE | OP_IS_RESOURCE_DESC;
554bc36eafdSMike Gerdts UtSetParseOpName (BufferOp);
555bc36eafdSMike Gerdts
556bc36eafdSMike Gerdts BufferLengthOp->Asl.ParseOpcode = PARSEOP_INTEGER;
557bc36eafdSMike Gerdts BufferLengthOp->Asl.Value.Integer = Rnode->BufferLength;
558bc36eafdSMike Gerdts (void) OpcSetOptimalIntegerSize (BufferLengthOp);
559bc36eafdSMike Gerdts UtSetParseOpName (BufferLengthOp);
560bc36eafdSMike Gerdts
561bc36eafdSMike Gerdts BufferDataOp->Asl.ParseOpcode = PARSEOP_RAW_DATA;
562bc36eafdSMike Gerdts BufferDataOp->Asl.AmlOpcode = AML_RAW_DATA_CHAIN;
563bc36eafdSMike Gerdts BufferDataOp->Asl.AmlOpcodeLength = 0;
564bc36eafdSMike Gerdts BufferDataOp->Asl.AmlLength = Rnode->BufferLength;
565bc36eafdSMike Gerdts BufferDataOp->Asl.Value.Buffer = (UINT8 *) Rnode;
566bc36eafdSMike Gerdts UtSetParseOpName (BufferDataOp);
567bc36eafdSMike Gerdts }
568bc36eafdSMike Gerdts
569bc36eafdSMike Gerdts
570bc36eafdSMike Gerdts /*******************************************************************************
571bc36eafdSMike Gerdts *
572bc36eafdSMike Gerdts * FUNCTION: OpcDoUnicode
573bc36eafdSMike Gerdts *
574bc36eafdSMike Gerdts * PARAMETERS: Op - Parse node
575bc36eafdSMike Gerdts *
576bc36eafdSMike Gerdts * RETURN: None
577bc36eafdSMike Gerdts *
578bc36eafdSMike Gerdts * DESCRIPTION: Implement the UNICODE ASL "macro". Convert the input string
579bc36eafdSMike Gerdts * to a unicode buffer. There is no Unicode AML opcode.
580bc36eafdSMike Gerdts *
581bc36eafdSMike Gerdts * Note: The Unicode string is 16 bits per character, no leading signature,
582bc36eafdSMike Gerdts * with a 16-bit terminating NULL.
583bc36eafdSMike Gerdts *
584bc36eafdSMike Gerdts ******************************************************************************/
585bc36eafdSMike Gerdts
586bc36eafdSMike Gerdts static void
OpcDoUnicode(ACPI_PARSE_OBJECT * Op)587bc36eafdSMike Gerdts OpcDoUnicode (
588bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op)
589bc36eafdSMike Gerdts {
590bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *InitializerOp;
591bc36eafdSMike Gerdts UINT32 Length;
592bc36eafdSMike Gerdts UINT32 Count;
593bc36eafdSMike Gerdts UINT32 i;
594bc36eafdSMike Gerdts UINT8 *AsciiString;
595bc36eafdSMike Gerdts UINT16 *UnicodeString;
596bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *BufferLengthOp;
597bc36eafdSMike Gerdts
598bc36eafdSMike Gerdts
599bc36eafdSMike Gerdts /* Change op into a buffer object */
600bc36eafdSMike Gerdts
601*35786f68SRobert Mustacchi Op->Asl.CompileFlags &= ~OP_COMPILE_TIME_CONST;
602bc36eafdSMike Gerdts Op->Asl.ParseOpcode = PARSEOP_BUFFER;
603bc36eafdSMike Gerdts UtSetParseOpName (Op);
604bc36eafdSMike Gerdts
605bc36eafdSMike Gerdts /* Buffer Length is first, followed by the string */
606bc36eafdSMike Gerdts
607bc36eafdSMike Gerdts BufferLengthOp = Op->Asl.Child;
608bc36eafdSMike Gerdts InitializerOp = BufferLengthOp->Asl.Next;
609bc36eafdSMike Gerdts
610bc36eafdSMike Gerdts AsciiString = (UINT8 *) InitializerOp->Asl.Value.String;
611bc36eafdSMike Gerdts
612bc36eafdSMike Gerdts /* Create a new buffer for the Unicode string */
613bc36eafdSMike Gerdts
614bc36eafdSMike Gerdts Count = strlen (InitializerOp->Asl.Value.String) + 1;
615bc36eafdSMike Gerdts Length = Count * sizeof (UINT16);
616bc36eafdSMike Gerdts UnicodeString = UtLocalCalloc (Length);
617bc36eafdSMike Gerdts
618bc36eafdSMike Gerdts /* Convert to Unicode string (including null terminator) */
619bc36eafdSMike Gerdts
620bc36eafdSMike Gerdts for (i = 0; i < Count; i++)
621bc36eafdSMike Gerdts {
622bc36eafdSMike Gerdts UnicodeString[i] = (UINT16) AsciiString[i];
623bc36eafdSMike Gerdts }
624bc36eafdSMike Gerdts
625bc36eafdSMike Gerdts /*
626bc36eafdSMike Gerdts * Just set the buffer size node to be the buffer length, regardless
627bc36eafdSMike Gerdts * of whether it was previously an integer or a default_arg placeholder
628bc36eafdSMike Gerdts */
629bc36eafdSMike Gerdts BufferLengthOp->Asl.ParseOpcode = PARSEOP_INTEGER;
630bc36eafdSMike Gerdts BufferLengthOp->Asl.AmlOpcode = AML_DWORD_OP;
631bc36eafdSMike Gerdts BufferLengthOp->Asl.Value.Integer = Length;
632bc36eafdSMike Gerdts UtSetParseOpName (BufferLengthOp);
633bc36eafdSMike Gerdts
634bc36eafdSMike Gerdts (void) OpcSetOptimalIntegerSize (BufferLengthOp);
635bc36eafdSMike Gerdts
636bc36eafdSMike Gerdts /* The Unicode string is a raw data buffer */
637bc36eafdSMike Gerdts
638bc36eafdSMike Gerdts InitializerOp->Asl.Value.Buffer = (UINT8 *) UnicodeString;
639bc36eafdSMike Gerdts InitializerOp->Asl.AmlOpcode = AML_RAW_DATA_BUFFER;
640bc36eafdSMike Gerdts InitializerOp->Asl.AmlLength = Length;
641bc36eafdSMike Gerdts InitializerOp->Asl.ParseOpcode = PARSEOP_RAW_DATA;
642bc36eafdSMike Gerdts InitializerOp->Asl.Child = NULL;
643bc36eafdSMike Gerdts UtSetParseOpName (InitializerOp);
644bc36eafdSMike Gerdts }
645bc36eafdSMike Gerdts
646bc36eafdSMike Gerdts
647bc36eafdSMike Gerdts /*******************************************************************************
648bc36eafdSMike Gerdts *
649bc36eafdSMike Gerdts * FUNCTION: OpcDoEisaId
650bc36eafdSMike Gerdts *
651bc36eafdSMike Gerdts * PARAMETERS: Op - Parse node
652bc36eafdSMike Gerdts *
653bc36eafdSMike Gerdts * RETURN: None
654bc36eafdSMike Gerdts *
655bc36eafdSMike Gerdts * DESCRIPTION: Convert a string EISA ID to numeric representation. See the
656bc36eafdSMike Gerdts * Pnp BIOS Specification for details. Here is an excerpt:
657bc36eafdSMike Gerdts *
658bc36eafdSMike Gerdts * A seven character ASCII representation of the product
659bc36eafdSMike Gerdts * identifier compressed into a 32-bit identifier. The seven
660bc36eafdSMike Gerdts * character ID consists of a three character manufacturer code,
661bc36eafdSMike Gerdts * a three character hexadecimal product identifier, and a one
662bc36eafdSMike Gerdts * character hexadecimal revision number. The manufacturer code
663bc36eafdSMike Gerdts * is a 3 uppercase character code that is compressed into 3 5-bit
664bc36eafdSMike Gerdts * values as follows:
665bc36eafdSMike Gerdts * 1) Find hex ASCII value for each letter
666bc36eafdSMike Gerdts * 2) Subtract 40h from each ASCII value
667bc36eafdSMike Gerdts * 3) Retain 5 least significant bits for each letter by
668bc36eafdSMike Gerdts * discarding upper 3 bits because they are always 0.
669bc36eafdSMike Gerdts * 4) Compressed code = concatenate 0 and the 3 5-bit values
670bc36eafdSMike Gerdts *
671bc36eafdSMike Gerdts * The format of the compressed product identifier is as follows:
672bc36eafdSMike Gerdts * Byte 0: Bit 7 - Reserved (0)
673bc36eafdSMike Gerdts * Bits 6-2: - 1st character of compressed mfg code
674bc36eafdSMike Gerdts * Bits 1-0 - Upper 2 bits of 2nd character of mfg code
675bc36eafdSMike Gerdts * Byte 1: Bits 7-5 - Lower 3 bits of 2nd character of mfg code
676bc36eafdSMike Gerdts * Bits 4-0 - 3rd character of mfg code
677bc36eafdSMike Gerdts * Byte 2: Bits 7-4 - 1st hex digit of product number
678bc36eafdSMike Gerdts * Bits 3-0 - 2nd hex digit of product number
679bc36eafdSMike Gerdts * Byte 3: Bits 7-4 - 3st hex digit of product number
680bc36eafdSMike Gerdts * Bits 3-0 - Hex digit of the revision number
681bc36eafdSMike Gerdts *
682bc36eafdSMike Gerdts ******************************************************************************/
683bc36eafdSMike Gerdts
684bc36eafdSMike Gerdts static void
OpcDoEisaId(ACPI_PARSE_OBJECT * Op)685bc36eafdSMike Gerdts OpcDoEisaId (
686bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op)
687bc36eafdSMike Gerdts {
688bc36eafdSMike Gerdts UINT32 EisaId = 0;
689bc36eafdSMike Gerdts UINT32 BigEndianId;
690bc36eafdSMike Gerdts char *InString;
691bc36eafdSMike Gerdts ACPI_STATUS Status = AE_OK;
692bc36eafdSMike Gerdts UINT32 i;
693bc36eafdSMike Gerdts
694bc36eafdSMike Gerdts
695bc36eafdSMike Gerdts InString = (char *) Op->Asl.Value.String;
696bc36eafdSMike Gerdts
697bc36eafdSMike Gerdts /*
698bc36eafdSMike Gerdts * The EISAID string must be exactly 7 characters and of the form
699bc36eafdSMike Gerdts * "UUUXXXX" -- 3 uppercase letters and 4 hex digits (e.g., "PNP0001")
700bc36eafdSMike Gerdts */
701bc36eafdSMike Gerdts if (strlen (InString) != 7)
702bc36eafdSMike Gerdts {
703bc36eafdSMike Gerdts Status = AE_BAD_PARAMETER;
704bc36eafdSMike Gerdts }
705bc36eafdSMike Gerdts else
706bc36eafdSMike Gerdts {
707bc36eafdSMike Gerdts /* Check all 7 characters for correct format */
708bc36eafdSMike Gerdts
709bc36eafdSMike Gerdts for (i = 0; i < 7; i++)
710bc36eafdSMike Gerdts {
711bc36eafdSMike Gerdts /* First 3 characters must be uppercase letters */
712bc36eafdSMike Gerdts
713bc36eafdSMike Gerdts if (i < 3)
714bc36eafdSMike Gerdts {
715bc36eafdSMike Gerdts if (!isupper ((int) InString[i]))
716bc36eafdSMike Gerdts {
717bc36eafdSMike Gerdts Status = AE_BAD_PARAMETER;
718bc36eafdSMike Gerdts }
719bc36eafdSMike Gerdts }
720bc36eafdSMike Gerdts
721bc36eafdSMike Gerdts /* Last 4 characters must be hex digits */
722bc36eafdSMike Gerdts
723bc36eafdSMike Gerdts else if (!isxdigit ((int) InString[i]))
724bc36eafdSMike Gerdts {
725bc36eafdSMike Gerdts Status = AE_BAD_PARAMETER;
726bc36eafdSMike Gerdts }
727bc36eafdSMike Gerdts }
728bc36eafdSMike Gerdts }
729bc36eafdSMike Gerdts
730bc36eafdSMike Gerdts if (ACPI_FAILURE (Status))
731bc36eafdSMike Gerdts {
732bc36eafdSMike Gerdts AslError (ASL_ERROR, ASL_MSG_INVALID_EISAID, Op, Op->Asl.Value.String);
733bc36eafdSMike Gerdts }
734bc36eafdSMike Gerdts else
735bc36eafdSMike Gerdts {
736bc36eafdSMike Gerdts /* Create ID big-endian first (bits are contiguous) */
737bc36eafdSMike Gerdts
738bc36eafdSMike Gerdts BigEndianId =
739bc36eafdSMike Gerdts (UINT32) ((UINT8) (InString[0] - 0x40)) << 26 |
740bc36eafdSMike Gerdts (UINT32) ((UINT8) (InString[1] - 0x40)) << 21 |
741bc36eafdSMike Gerdts (UINT32) ((UINT8) (InString[2] - 0x40)) << 16 |
742bc36eafdSMike Gerdts
743bc36eafdSMike Gerdts (AcpiUtAsciiCharToHex (InString[3])) << 12 |
744bc36eafdSMike Gerdts (AcpiUtAsciiCharToHex (InString[4])) << 8 |
745bc36eafdSMike Gerdts (AcpiUtAsciiCharToHex (InString[5])) << 4 |
746bc36eafdSMike Gerdts AcpiUtAsciiCharToHex (InString[6]);
747bc36eafdSMike Gerdts
748bc36eafdSMike Gerdts /* Swap to little-endian to get final ID (see function header) */
749bc36eafdSMike Gerdts
750bc36eafdSMike Gerdts EisaId = AcpiUtDwordByteSwap (BigEndianId);
751bc36eafdSMike Gerdts }
752bc36eafdSMike Gerdts
753bc36eafdSMike Gerdts /*
754bc36eafdSMike Gerdts * Morph the Op into an integer, regardless of whether there
755bc36eafdSMike Gerdts * was an error in the EISAID string
756bc36eafdSMike Gerdts */
757bc36eafdSMike Gerdts Op->Asl.Value.Integer = EisaId;
758bc36eafdSMike Gerdts
759*35786f68SRobert Mustacchi Op->Asl.CompileFlags &= ~OP_COMPILE_TIME_CONST;
760bc36eafdSMike Gerdts Op->Asl.ParseOpcode = PARSEOP_INTEGER;
761bc36eafdSMike Gerdts (void) OpcSetOptimalIntegerSize (Op);
762bc36eafdSMike Gerdts
763bc36eafdSMike Gerdts /* Op is now an integer */
764bc36eafdSMike Gerdts
765bc36eafdSMike Gerdts UtSetParseOpName (Op);
766bc36eafdSMike Gerdts }
767bc36eafdSMike Gerdts
768bc36eafdSMike Gerdts
769bc36eafdSMike Gerdts /*******************************************************************************
770bc36eafdSMike Gerdts *
771bc36eafdSMike Gerdts * FUNCTION: OpcDoUuId
772bc36eafdSMike Gerdts *
773bc36eafdSMike Gerdts * PARAMETERS: Op - Parse node
774bc36eafdSMike Gerdts *
775bc36eafdSMike Gerdts * RETURN: None
776bc36eafdSMike Gerdts *
777bc36eafdSMike Gerdts * DESCRIPTION: Convert UUID string to 16-byte buffer
778bc36eafdSMike Gerdts *
779bc36eafdSMike Gerdts ******************************************************************************/
780bc36eafdSMike Gerdts
781bc36eafdSMike Gerdts static void
OpcDoUuId(ACPI_PARSE_OBJECT * Op)782bc36eafdSMike Gerdts OpcDoUuId (
783bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op)
784bc36eafdSMike Gerdts {
785bc36eafdSMike Gerdts char *InString;
786bc36eafdSMike Gerdts UINT8 *Buffer;
787bc36eafdSMike Gerdts ACPI_STATUS Status = AE_OK;
788bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *NewOp;
789bc36eafdSMike Gerdts
790bc36eafdSMike Gerdts
791bc36eafdSMike Gerdts InString = ACPI_CAST_PTR (char, Op->Asl.Value.String);
792bc36eafdSMike Gerdts Buffer = UtLocalCalloc (16);
793bc36eafdSMike Gerdts
794bc36eafdSMike Gerdts Status = AuValidateUuid (InString);
795bc36eafdSMike Gerdts if (ACPI_FAILURE (Status))
796bc36eafdSMike Gerdts {
797bc36eafdSMike Gerdts AslError (ASL_ERROR, ASL_MSG_INVALID_UUID, Op, Op->Asl.Value.String);
798bc36eafdSMike Gerdts }
799bc36eafdSMike Gerdts else
800bc36eafdSMike Gerdts {
801bc36eafdSMike Gerdts AcpiUtConvertStringToUuid (InString, Buffer);
802bc36eafdSMike Gerdts }
803bc36eafdSMike Gerdts
804bc36eafdSMike Gerdts /* Change Op to a Buffer */
805bc36eafdSMike Gerdts
806bc36eafdSMike Gerdts Op->Asl.ParseOpcode = PARSEOP_BUFFER;
807bc36eafdSMike Gerdts Op->Common.AmlOpcode = AML_BUFFER_OP;
808bc36eafdSMike Gerdts
809bc36eafdSMike Gerdts /* Disable further optimization */
810bc36eafdSMike Gerdts
811*35786f68SRobert Mustacchi Op->Asl.CompileFlags &= ~OP_COMPILE_TIME_CONST;
812bc36eafdSMike Gerdts UtSetParseOpName (Op);
813bc36eafdSMike Gerdts
814bc36eafdSMike Gerdts /* Child node is the buffer length */
815bc36eafdSMike Gerdts
816*35786f68SRobert Mustacchi NewOp = TrAllocateOp (PARSEOP_INTEGER);
817bc36eafdSMike Gerdts
818bc36eafdSMike Gerdts NewOp->Asl.AmlOpcode = AML_BYTE_OP;
819bc36eafdSMike Gerdts NewOp->Asl.Value.Integer = 16;
820bc36eafdSMike Gerdts NewOp->Asl.Parent = Op;
821bc36eafdSMike Gerdts
822bc36eafdSMike Gerdts Op->Asl.Child = NewOp;
823bc36eafdSMike Gerdts Op = NewOp;
824bc36eafdSMike Gerdts
825bc36eafdSMike Gerdts /* Peer to the child is the raw buffer data */
826bc36eafdSMike Gerdts
827*35786f68SRobert Mustacchi NewOp = TrAllocateOp (PARSEOP_RAW_DATA);
828bc36eafdSMike Gerdts NewOp->Asl.AmlOpcode = AML_RAW_DATA_BUFFER;
829bc36eafdSMike Gerdts NewOp->Asl.AmlLength = 16;
830bc36eafdSMike Gerdts NewOp->Asl.Value.String = ACPI_CAST_PTR (char, Buffer);
831bc36eafdSMike Gerdts NewOp->Asl.Parent = Op->Asl.Parent;
832bc36eafdSMike Gerdts
833bc36eafdSMike Gerdts Op->Asl.Next = NewOp;
834bc36eafdSMike Gerdts }
835bc36eafdSMike Gerdts
836bc36eafdSMike Gerdts
837bc36eafdSMike Gerdts /*******************************************************************************
838bc36eafdSMike Gerdts *
839bc36eafdSMike Gerdts * FUNCTION: OpcGenerateAmlOpcode
840bc36eafdSMike Gerdts *
841bc36eafdSMike Gerdts * PARAMETERS: Op - Parse node
842bc36eafdSMike Gerdts *
843bc36eafdSMike Gerdts * RETURN: None
844bc36eafdSMike Gerdts *
845bc36eafdSMike Gerdts * DESCRIPTION: Generate the AML opcode associated with the node and its
846bc36eafdSMike Gerdts * parse (lex/flex) keyword opcode. Essentially implements
847bc36eafdSMike Gerdts * a mapping between the parse opcodes and the actual AML opcodes.
848bc36eafdSMike Gerdts *
849bc36eafdSMike Gerdts ******************************************************************************/
850bc36eafdSMike Gerdts
851bc36eafdSMike Gerdts void
OpcGenerateAmlOpcode(ACPI_PARSE_OBJECT * Op)852bc36eafdSMike Gerdts OpcGenerateAmlOpcode (
853bc36eafdSMike Gerdts ACPI_PARSE_OBJECT *Op)
854bc36eafdSMike Gerdts {
855bc36eafdSMike Gerdts UINT16 Index;
856bc36eafdSMike Gerdts
857bc36eafdSMike Gerdts
858bc36eafdSMike Gerdts Index = (UINT16) (Op->Asl.ParseOpcode - ASL_PARSE_OPCODE_BASE);
859bc36eafdSMike Gerdts
860bc36eafdSMike Gerdts Op->Asl.AmlOpcode = AslKeywordMapping[Index].AmlOpcode;
861bc36eafdSMike Gerdts Op->Asl.AcpiBtype = AslKeywordMapping[Index].AcpiBtype;
862bc36eafdSMike Gerdts Op->Asl.CompileFlags |= AslKeywordMapping[Index].Flags;
863bc36eafdSMike Gerdts
864bc36eafdSMike Gerdts if (!Op->Asl.Value.Integer)
865bc36eafdSMike Gerdts {
866bc36eafdSMike Gerdts Op->Asl.Value.Integer = AslKeywordMapping[Index].Value;
867bc36eafdSMike Gerdts }
868bc36eafdSMike Gerdts
869bc36eafdSMike Gerdts /* Special handling for some opcodes */
870bc36eafdSMike Gerdts
871bc36eafdSMike Gerdts switch (Op->Asl.ParseOpcode)
872bc36eafdSMike Gerdts {
873bc36eafdSMike Gerdts case PARSEOP_INTEGER:
874bc36eafdSMike Gerdts /*
875bc36eafdSMike Gerdts * Set the opcode based on the size of the integer
876bc36eafdSMike Gerdts */
877bc36eafdSMike Gerdts (void) OpcSetOptimalIntegerSize (Op);
878bc36eafdSMike Gerdts break;
879bc36eafdSMike Gerdts
880bc36eafdSMike Gerdts case PARSEOP_OFFSET:
881bc36eafdSMike Gerdts
882bc36eafdSMike Gerdts Op->Asl.AmlOpcodeLength = 1;
883bc36eafdSMike Gerdts break;
884bc36eafdSMike Gerdts
885bc36eafdSMike Gerdts case PARSEOP_ACCESSAS:
886bc36eafdSMike Gerdts
887bc36eafdSMike Gerdts OpcDoAccessAs (Op);
888bc36eafdSMike Gerdts break;
889bc36eafdSMike Gerdts
890bc36eafdSMike Gerdts case PARSEOP_CONNECTION:
891bc36eafdSMike Gerdts
892bc36eafdSMike Gerdts OpcDoConnection (Op);
893bc36eafdSMike Gerdts break;
894bc36eafdSMike Gerdts
895bc36eafdSMike Gerdts case PARSEOP_EISAID:
896bc36eafdSMike Gerdts
897bc36eafdSMike Gerdts OpcDoEisaId (Op);
898bc36eafdSMike Gerdts break;
899bc36eafdSMike Gerdts
900bc36eafdSMike Gerdts case PARSEOP_PRINTF:
901bc36eafdSMike Gerdts
902bc36eafdSMike Gerdts OpcDoPrintf (Op);
903bc36eafdSMike Gerdts break;
904bc36eafdSMike Gerdts
905bc36eafdSMike Gerdts case PARSEOP_FPRINTF:
906bc36eafdSMike Gerdts
907bc36eafdSMike Gerdts OpcDoFprintf (Op);
908bc36eafdSMike Gerdts break;
909bc36eafdSMike Gerdts
910bc36eafdSMike Gerdts case PARSEOP_TOPLD:
911bc36eafdSMike Gerdts
912bc36eafdSMike Gerdts OpcDoPld (Op);
913bc36eafdSMike Gerdts break;
914bc36eafdSMike Gerdts
915bc36eafdSMike Gerdts case PARSEOP_TOUUID:
916bc36eafdSMike Gerdts
917bc36eafdSMike Gerdts OpcDoUuId (Op);
918bc36eafdSMike Gerdts break;
919bc36eafdSMike Gerdts
920bc36eafdSMike Gerdts case PARSEOP_UNICODE:
921bc36eafdSMike Gerdts
922bc36eafdSMike Gerdts OpcDoUnicode (Op);
923bc36eafdSMike Gerdts break;
924bc36eafdSMike Gerdts
925bc36eafdSMike Gerdts case PARSEOP_INCLUDE:
926bc36eafdSMike Gerdts
927bc36eafdSMike Gerdts Gbl_HasIncludeFiles = TRUE;
928bc36eafdSMike Gerdts break;
929bc36eafdSMike Gerdts
930bc36eafdSMike Gerdts case PARSEOP_EXTERNAL:
931bc36eafdSMike Gerdts
932bc36eafdSMike Gerdts if (Gbl_DoExternals == FALSE)
933bc36eafdSMike Gerdts {
934bc36eafdSMike Gerdts Op->Asl.Child->Asl.ParseOpcode = PARSEOP_DEFAULT_ARG;
935bc36eafdSMike Gerdts Op->Asl.Child->Asl.Next->Asl.ParseOpcode = PARSEOP_DEFAULT_ARG;
936bc36eafdSMike Gerdts }
937bc36eafdSMike Gerdts break;
938bc36eafdSMike Gerdts
939bc36eafdSMike Gerdts case PARSEOP_TIMER:
940bc36eafdSMike Gerdts
941bc36eafdSMike Gerdts if (AcpiGbl_IntegerBitWidth == 32)
942bc36eafdSMike Gerdts {
943bc36eafdSMike Gerdts AslError (ASL_REMARK, ASL_MSG_TRUNCATION, Op, NULL);
944bc36eafdSMike Gerdts }
945bc36eafdSMike Gerdts break;
946bc36eafdSMike Gerdts
947bc36eafdSMike Gerdts default:
948bc36eafdSMike Gerdts
949bc36eafdSMike Gerdts /* Nothing to do for other opcodes */
950bc36eafdSMike Gerdts
951bc36eafdSMike Gerdts break;
952bc36eafdSMike Gerdts }
953bc36eafdSMike Gerdts
954bc36eafdSMike Gerdts return;
955bc36eafdSMike Gerdts }
956