1 1.1 jruoho /****************************************************************************** 2 1.1 jruoho * 3 1.1 jruoho * Module Name: exfldio - Aml Field I/O 4 1.1 jruoho * 5 1.1 jruoho *****************************************************************************/ 6 1.1 jruoho 7 1.1.1.17 christos /****************************************************************************** 8 1.1.1.17 christos * 9 1.1.1.17 christos * 1. Copyright Notice 10 1.1.1.17 christos * 11 1.1.1.18 christos * Some or all of this work - Copyright (c) 1999 - 2025, Intel Corp. 12 1.1 jruoho * All rights reserved. 13 1.1 jruoho * 14 1.1.1.17 christos * 2. License 15 1.1.1.17 christos * 16 1.1.1.17 christos * 2.1. This is your license from Intel Corp. under its intellectual property 17 1.1.1.17 christos * rights. You may have additional license terms from the party that provided 18 1.1.1.17 christos * you this software, covering your right to use that party's intellectual 19 1.1.1.17 christos * property rights. 20 1.1.1.17 christos * 21 1.1.1.17 christos * 2.2. Intel grants, free of charge, to any person ("Licensee") obtaining a 22 1.1.1.17 christos * copy of the source code appearing in this file ("Covered Code") an 23 1.1.1.17 christos * irrevocable, perpetual, worldwide license under Intel's copyrights in the 24 1.1.1.17 christos * base code distributed originally by Intel ("Original Intel Code") to copy, 25 1.1.1.17 christos * make derivatives, distribute, use and display any portion of the Covered 26 1.1.1.17 christos * Code in any form, with the right to sublicense such rights; and 27 1.1.1.17 christos * 28 1.1.1.17 christos * 2.3. Intel grants Licensee a non-exclusive and non-transferable patent 29 1.1.1.17 christos * license (with the right to sublicense), under only those claims of Intel 30 1.1.1.17 christos * patents that are infringed by the Original Intel Code, to make, use, sell, 31 1.1.1.17 christos * offer to sell, and import the Covered Code and derivative works thereof 32 1.1.1.17 christos * solely to the minimum extent necessary to exercise the above copyright 33 1.1.1.17 christos * license, and in no event shall the patent license extend to any additions 34 1.1.1.17 christos * to or modifications of the Original Intel Code. No other license or right 35 1.1.1.17 christos * is granted directly or by implication, estoppel or otherwise; 36 1.1.1.17 christos * 37 1.1.1.17 christos * The above copyright and patent license is granted only if the following 38 1.1.1.17 christos * conditions are met: 39 1.1.1.17 christos * 40 1.1.1.17 christos * 3. Conditions 41 1.1.1.17 christos * 42 1.1.1.17 christos * 3.1. Redistribution of Source with Rights to Further Distribute Source. 43 1.1.1.17 christos * Redistribution of source code of any substantial portion of the Covered 44 1.1.1.17 christos * Code or modification with rights to further distribute source must include 45 1.1.1.17 christos * the above Copyright Notice, the above License, this list of Conditions, 46 1.1.1.17 christos * and the following Disclaimer and Export Compliance provision. In addition, 47 1.1.1.17 christos * Licensee must cause all Covered Code to which Licensee contributes to 48 1.1.1.17 christos * contain a file documenting the changes Licensee made to create that Covered 49 1.1.1.17 christos * Code and the date of any change. Licensee must include in that file the 50 1.1.1.17 christos * documentation of any changes made by any predecessor Licensee. Licensee 51 1.1.1.17 christos * must include a prominent statement that the modification is derived, 52 1.1.1.17 christos * directly or indirectly, from Original Intel Code. 53 1.1.1.17 christos * 54 1.1.1.17 christos * 3.2. Redistribution of Source with no Rights to Further Distribute Source. 55 1.1.1.17 christos * Redistribution of source code of any substantial portion of the Covered 56 1.1.1.17 christos * Code or modification without rights to further distribute source must 57 1.1.1.17 christos * include the following Disclaimer and Export Compliance provision in the 58 1.1.1.17 christos * documentation and/or other materials provided with distribution. In 59 1.1.1.17 christos * addition, Licensee may not authorize further sublicense of source of any 60 1.1.1.17 christos * portion of the Covered Code, and must include terms to the effect that the 61 1.1.1.17 christos * license from Licensee to its licensee is limited to the intellectual 62 1.1.1.17 christos * property embodied in the software Licensee provides to its licensee, and 63 1.1.1.17 christos * not to intellectual property embodied in modifications its licensee may 64 1.1.1.17 christos * make. 65 1.1.1.17 christos * 66 1.1.1.17 christos * 3.3. Redistribution of Executable. Redistribution in executable form of any 67 1.1.1.17 christos * substantial portion of the Covered Code or modification must reproduce the 68 1.1.1.17 christos * above Copyright Notice, and the following Disclaimer and Export Compliance 69 1.1.1.17 christos * provision in the documentation and/or other materials provided with the 70 1.1.1.17 christos * distribution. 71 1.1.1.17 christos * 72 1.1.1.17 christos * 3.4. Intel retains all right, title, and interest in and to the Original 73 1.1.1.17 christos * Intel Code. 74 1.1.1.17 christos * 75 1.1.1.17 christos * 3.5. Neither the name Intel nor any other trademark owned or controlled by 76 1.1.1.17 christos * Intel shall be used in advertising or otherwise to promote the sale, use or 77 1.1.1.17 christos * other dealings in products derived from or relating to the Covered Code 78 1.1.1.17 christos * without prior written authorization from Intel. 79 1.1.1.17 christos * 80 1.1.1.17 christos * 4. Disclaimer and Export Compliance 81 1.1.1.17 christos * 82 1.1.1.17 christos * 4.1. INTEL MAKES NO WARRANTY OF ANY KIND REGARDING ANY SOFTWARE PROVIDED 83 1.1.1.17 christos * HERE. ANY SOFTWARE ORIGINATING FROM INTEL OR DERIVED FROM INTEL SOFTWARE 84 1.1.1.17 christos * IS PROVIDED "AS IS," AND INTEL WILL NOT PROVIDE ANY SUPPORT, ASSISTANCE, 85 1.1.1.17 christos * INSTALLATION, TRAINING OR OTHER SERVICES. INTEL WILL NOT PROVIDE ANY 86 1.1.1.17 christos * UPDATES, ENHANCEMENTS OR EXTENSIONS. INTEL SPECIFICALLY DISCLAIMS ANY 87 1.1.1.17 christos * IMPLIED WARRANTIES OF MERCHANTABILITY, NONINFRINGEMENT AND FITNESS FOR A 88 1.1.1.17 christos * PARTICULAR PURPOSE. 89 1.1.1.17 christos * 90 1.1.1.17 christos * 4.2. IN NO EVENT SHALL INTEL HAVE ANY LIABILITY TO LICENSEE, ITS LICENSEES 91 1.1.1.17 christos * OR ANY OTHER THIRD PARTY, FOR ANY LOST PROFITS, LOST DATA, LOSS OF USE OR 92 1.1.1.17 christos * COSTS OF PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES, OR FOR ANY INDIRECT, 93 1.1.1.17 christos * SPECIAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THIS AGREEMENT, UNDER ANY 94 1.1.1.17 christos * CAUSE OF ACTION OR THEORY OF LIABILITY, AND IRRESPECTIVE OF WHETHER INTEL 95 1.1.1.17 christos * HAS ADVANCE NOTICE OF THE POSSIBILITY OF SUCH DAMAGES. THESE LIMITATIONS 96 1.1.1.17 christos * SHALL APPLY NOTWITHSTANDING THE FAILURE OF THE ESSENTIAL PURPOSE OF ANY 97 1.1.1.17 christos * LIMITED REMEDY. 98 1.1.1.17 christos * 99 1.1.1.17 christos * 4.3. Licensee shall not export, either directly or indirectly, any of this 100 1.1.1.17 christos * software or system incorporating such software without first obtaining any 101 1.1.1.17 christos * required license or other approval from the U. S. Department of Commerce or 102 1.1.1.17 christos * any other agency or department of the United States Government. In the 103 1.1.1.17 christos * event Licensee exports any such software from the United States or 104 1.1.1.17 christos * re-exports any such software from a foreign destination, Licensee shall 105 1.1.1.17 christos * ensure that the distribution and export/re-export of the software is in 106 1.1.1.17 christos * compliance with all laws, regulations, orders, or other restrictions of the 107 1.1.1.17 christos * U.S. Export Administration Regulations. Licensee agrees that neither it nor 108 1.1.1.17 christos * any of its subsidiaries will export/re-export any technical data, process, 109 1.1.1.17 christos * software, or service, directly or indirectly, to any country for which the 110 1.1.1.17 christos * United States government or any agency thereof requires an export license, 111 1.1.1.17 christos * other governmental approval, or letter of assurance, without first obtaining 112 1.1.1.17 christos * such license, approval or letter. 113 1.1.1.17 christos * 114 1.1.1.17 christos ***************************************************************************** 115 1.1.1.17 christos * 116 1.1.1.17 christos * Alternatively, you may choose to be licensed under the terms of the 117 1.1.1.17 christos * following license: 118 1.1.1.17 christos * 119 1.1.1.2 jruoho * Redistribution and use in source and binary forms, with or without 120 1.1.1.2 jruoho * modification, are permitted provided that the following conditions 121 1.1.1.2 jruoho * are met: 122 1.1.1.2 jruoho * 1. Redistributions of source code must retain the above copyright 123 1.1.1.2 jruoho * notice, this list of conditions, and the following disclaimer, 124 1.1.1.2 jruoho * without modification. 125 1.1.1.2 jruoho * 2. Redistributions in binary form must reproduce at minimum a disclaimer 126 1.1.1.2 jruoho * substantially similar to the "NO WARRANTY" disclaimer below 127 1.1.1.2 jruoho * ("Disclaimer") and any redistribution must be conditioned upon 128 1.1.1.2 jruoho * including a substantially similar Disclaimer requirement for further 129 1.1.1.2 jruoho * binary redistribution. 130 1.1.1.2 jruoho * 3. Neither the names of the above-listed copyright holders nor the names 131 1.1.1.2 jruoho * of any contributors may be used to endorse or promote products derived 132 1.1.1.2 jruoho * from this software without specific prior written permission. 133 1.1.1.2 jruoho * 134 1.1.1.2 jruoho * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 135 1.1.1.2 jruoho * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 136 1.1.1.14 christos * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 137 1.1.1.2 jruoho * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 138 1.1.1.17 christos * OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 139 1.1.1.17 christos * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 140 1.1.1.17 christos * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 141 1.1.1.17 christos * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 142 1.1.1.17 christos * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 143 1.1.1.17 christos * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 144 1.1.1.17 christos * OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 145 1.1.1.17 christos * 146 1.1.1.17 christos * Alternatively, you may choose to be licensed under the terms of the 147 1.1.1.17 christos * GNU General Public License ("GPL") version 2 as published by the Free 148 1.1.1.17 christos * Software Foundation. 149 1.1.1.17 christos * 150 1.1.1.17 christos *****************************************************************************/ 151 1.1 jruoho 152 1.1 jruoho #include "acpi.h" 153 1.1 jruoho #include "accommon.h" 154 1.1 jruoho #include "acinterp.h" 155 1.1 jruoho #include "amlcode.h" 156 1.1 jruoho #include "acevents.h" 157 1.1 jruoho #include "acdispat.h" 158 1.1 jruoho 159 1.1 jruoho 160 1.1 jruoho #define _COMPONENT ACPI_EXECUTER 161 1.1 jruoho ACPI_MODULE_NAME ("exfldio") 162 1.1 jruoho 163 1.1 jruoho /* Local prototypes */ 164 1.1 jruoho 165 1.1 jruoho static ACPI_STATUS 166 1.1 jruoho AcpiExFieldDatumIo ( 167 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 168 1.1 jruoho UINT32 FieldDatumByteOffset, 169 1.1 jruoho UINT64 *Value, 170 1.1 jruoho UINT32 ReadWrite); 171 1.1 jruoho 172 1.1 jruoho static BOOLEAN 173 1.1 jruoho AcpiExRegisterOverflow ( 174 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 175 1.1 jruoho UINT64 Value); 176 1.1 jruoho 177 1.1 jruoho static ACPI_STATUS 178 1.1 jruoho AcpiExSetupRegion ( 179 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 180 1.1 jruoho UINT32 FieldDatumByteOffset); 181 1.1 jruoho 182 1.1 jruoho 183 1.1 jruoho /******************************************************************************* 184 1.1 jruoho * 185 1.1 jruoho * FUNCTION: AcpiExSetupRegion 186 1.1 jruoho * 187 1.1 jruoho * PARAMETERS: ObjDesc - Field to be read or written 188 1.1 jruoho * FieldDatumByteOffset - Byte offset of this datum within the 189 1.1 jruoho * parent field 190 1.1 jruoho * 191 1.1 jruoho * RETURN: Status 192 1.1 jruoho * 193 1.1 jruoho * DESCRIPTION: Common processing for AcpiExExtractFromField and 194 1.1.1.3 christos * AcpiExInsertIntoField. Initialize the Region if necessary and 195 1.1 jruoho * validate the request. 196 1.1 jruoho * 197 1.1 jruoho ******************************************************************************/ 198 1.1 jruoho 199 1.1 jruoho static ACPI_STATUS 200 1.1 jruoho AcpiExSetupRegion ( 201 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 202 1.1 jruoho UINT32 FieldDatumByteOffset) 203 1.1 jruoho { 204 1.1 jruoho ACPI_STATUS Status = AE_OK; 205 1.1 jruoho ACPI_OPERAND_OBJECT *RgnDesc; 206 1.1.1.3 christos UINT8 SpaceId; 207 1.1 jruoho 208 1.1 jruoho 209 1.1 jruoho ACPI_FUNCTION_TRACE_U32 (ExSetupRegion, FieldDatumByteOffset); 210 1.1 jruoho 211 1.1 jruoho 212 1.1 jruoho RgnDesc = ObjDesc->CommonField.RegionObj; 213 1.1 jruoho 214 1.1 jruoho /* We must have a valid region */ 215 1.1 jruoho 216 1.1 jruoho if (RgnDesc->Common.Type != ACPI_TYPE_REGION) 217 1.1 jruoho { 218 1.1 jruoho ACPI_ERROR ((AE_INFO, "Needed Region, found type 0x%X (%s)", 219 1.1 jruoho RgnDesc->Common.Type, 220 1.1 jruoho AcpiUtGetObjectTypeName (RgnDesc))); 221 1.1 jruoho 222 1.1 jruoho return_ACPI_STATUS (AE_AML_OPERAND_TYPE); 223 1.1 jruoho } 224 1.1 jruoho 225 1.1.1.3 christos SpaceId = RgnDesc->Region.SpaceId; 226 1.1.1.3 christos 227 1.1.1.3 christos /* Validate the Space ID */ 228 1.1.1.3 christos 229 1.1.1.3 christos if (!AcpiIsValidSpaceId (SpaceId)) 230 1.1.1.3 christos { 231 1.1.1.7 christos ACPI_ERROR ((AE_INFO, 232 1.1.1.7 christos "Invalid/unknown Address Space ID: 0x%2.2X", SpaceId)); 233 1.1.1.3 christos return_ACPI_STATUS (AE_AML_INVALID_SPACE_ID); 234 1.1.1.3 christos } 235 1.1.1.3 christos 236 1.1 jruoho /* 237 1.1 jruoho * If the Region Address and Length have not been previously evaluated, 238 1.1 jruoho * evaluate them now and save the results. 239 1.1 jruoho */ 240 1.1 jruoho if (!(RgnDesc->Common.Flags & AOPOBJ_DATA_VALID)) 241 1.1 jruoho { 242 1.1 jruoho Status = AcpiDsGetRegionArguments (RgnDesc); 243 1.1 jruoho if (ACPI_FAILURE (Status)) 244 1.1 jruoho { 245 1.1 jruoho return_ACPI_STATUS (Status); 246 1.1 jruoho } 247 1.1 jruoho } 248 1.1 jruoho 249 1.1 jruoho /* 250 1.1.1.3 christos * Exit now for SMBus, GSBus or IPMI address space, it has a non-linear 251 1.1 jruoho * address space and the request cannot be directly validated 252 1.1 jruoho */ 253 1.1.1.3 christos if (SpaceId == ACPI_ADR_SPACE_SMBUS || 254 1.1.1.3 christos SpaceId == ACPI_ADR_SPACE_GSBUS || 255 1.1.1.3 christos SpaceId == ACPI_ADR_SPACE_IPMI) 256 1.1 jruoho { 257 1.1 jruoho /* SMBus or IPMI has a non-linear address space */ 258 1.1 jruoho 259 1.1 jruoho return_ACPI_STATUS (AE_OK); 260 1.1 jruoho } 261 1.1 jruoho 262 1.1 jruoho #ifdef ACPI_UNDER_DEVELOPMENT 263 1.1 jruoho /* 264 1.1 jruoho * If the Field access is AnyAcc, we can now compute the optimal 265 1.1.1.15 christos * access (because we know the length of the parent region) 266 1.1 jruoho */ 267 1.1 jruoho if (!(ObjDesc->Common.Flags & AOPOBJ_DATA_VALID)) 268 1.1 jruoho { 269 1.1 jruoho if (ACPI_FAILURE (Status)) 270 1.1 jruoho { 271 1.1 jruoho return_ACPI_STATUS (Status); 272 1.1 jruoho } 273 1.1 jruoho } 274 1.1 jruoho #endif 275 1.1 jruoho 276 1.1 jruoho /* 277 1.1.1.3 christos * Validate the request. The entire request from the byte offset for a 278 1.1 jruoho * length of one field datum (access width) must fit within the region. 279 1.1 jruoho * (Region length is specified in bytes) 280 1.1 jruoho */ 281 1.1 jruoho if (RgnDesc->Region.Length < 282 1.1.1.7 christos (ObjDesc->CommonField.BaseByteOffset + FieldDatumByteOffset + 283 1.1.1.7 christos ObjDesc->CommonField.AccessByteWidth)) 284 1.1 jruoho { 285 1.1 jruoho if (AcpiGbl_EnableInterpreterSlack) 286 1.1 jruoho { 287 1.1 jruoho /* 288 1.1 jruoho * Slack mode only: We will go ahead and allow access to this 289 1.1 jruoho * field if it is within the region length rounded up to the next 290 1.1 jruoho * access width boundary. ACPI_SIZE cast for 64-bit compile. 291 1.1 jruoho */ 292 1.1 jruoho if (ACPI_ROUND_UP (RgnDesc->Region.Length, 293 1.1 jruoho ObjDesc->CommonField.AccessByteWidth) >= 294 1.1 jruoho ((ACPI_SIZE) ObjDesc->CommonField.BaseByteOffset + 295 1.1 jruoho ObjDesc->CommonField.AccessByteWidth + 296 1.1 jruoho FieldDatumByteOffset)) 297 1.1 jruoho { 298 1.1 jruoho return_ACPI_STATUS (AE_OK); 299 1.1 jruoho } 300 1.1 jruoho } 301 1.1 jruoho 302 1.1 jruoho if (RgnDesc->Region.Length < ObjDesc->CommonField.AccessByteWidth) 303 1.1 jruoho { 304 1.1 jruoho /* 305 1.1 jruoho * This is the case where the AccessType (AccWord, etc.) is wider 306 1.1.1.3 christos * than the region itself. For example, a region of length one 307 1.1 jruoho * byte, and a field with Dword access specified. 308 1.1 jruoho */ 309 1.1 jruoho ACPI_ERROR ((AE_INFO, 310 1.1.1.7 christos "Field [%4.4s] access width (%u bytes) " 311 1.1.1.7 christos "too large for region [%4.4s] (length %u)", 312 1.1 jruoho AcpiUtGetNodeName (ObjDesc->CommonField.Node), 313 1.1 jruoho ObjDesc->CommonField.AccessByteWidth, 314 1.1 jruoho AcpiUtGetNodeName (RgnDesc->Region.Node), 315 1.1 jruoho RgnDesc->Region.Length)); 316 1.1 jruoho } 317 1.1 jruoho 318 1.1 jruoho /* 319 1.1 jruoho * Offset rounded up to next multiple of field width 320 1.1 jruoho * exceeds region length, indicate an error 321 1.1 jruoho */ 322 1.1 jruoho ACPI_ERROR ((AE_INFO, 323 1.1.1.7 christos "Field [%4.4s] Base+Offset+Width %u+%u+%u " 324 1.1.1.7 christos "is beyond end of region [%4.4s] (length %u)", 325 1.1 jruoho AcpiUtGetNodeName (ObjDesc->CommonField.Node), 326 1.1 jruoho ObjDesc->CommonField.BaseByteOffset, 327 1.1 jruoho FieldDatumByteOffset, ObjDesc->CommonField.AccessByteWidth, 328 1.1 jruoho AcpiUtGetNodeName (RgnDesc->Region.Node), 329 1.1 jruoho RgnDesc->Region.Length)); 330 1.1 jruoho 331 1.1 jruoho return_ACPI_STATUS (AE_AML_REGION_LIMIT); 332 1.1 jruoho } 333 1.1 jruoho 334 1.1 jruoho return_ACPI_STATUS (AE_OK); 335 1.1 jruoho } 336 1.1 jruoho 337 1.1 jruoho 338 1.1 jruoho /******************************************************************************* 339 1.1 jruoho * 340 1.1 jruoho * FUNCTION: AcpiExAccessRegion 341 1.1 jruoho * 342 1.1 jruoho * PARAMETERS: ObjDesc - Field to be read 343 1.1 jruoho * FieldDatumByteOffset - Byte offset of this datum within the 344 1.1 jruoho * parent field 345 1.1 jruoho * Value - Where to store value (must at least 346 1.1 jruoho * 64 bits) 347 1.1 jruoho * Function - Read or Write flag plus other region- 348 1.1 jruoho * dependent flags 349 1.1 jruoho * 350 1.1 jruoho * RETURN: Status 351 1.1 jruoho * 352 1.1 jruoho * DESCRIPTION: Read or Write a single field datum to an Operation Region. 353 1.1 jruoho * 354 1.1 jruoho ******************************************************************************/ 355 1.1 jruoho 356 1.1 jruoho ACPI_STATUS 357 1.1 jruoho AcpiExAccessRegion ( 358 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 359 1.1 jruoho UINT32 FieldDatumByteOffset, 360 1.1 jruoho UINT64 *Value, 361 1.1 jruoho UINT32 Function) 362 1.1 jruoho { 363 1.1 jruoho ACPI_STATUS Status; 364 1.1 jruoho ACPI_OPERAND_OBJECT *RgnDesc; 365 1.1 jruoho UINT32 RegionOffset; 366 1.1 jruoho 367 1.1 jruoho 368 1.1 jruoho ACPI_FUNCTION_TRACE (ExAccessRegion); 369 1.1 jruoho 370 1.1 jruoho 371 1.1 jruoho /* 372 1.1 jruoho * Ensure that the region operands are fully evaluated and verify 373 1.1 jruoho * the validity of the request 374 1.1 jruoho */ 375 1.1 jruoho Status = AcpiExSetupRegion (ObjDesc, FieldDatumByteOffset); 376 1.1 jruoho if (ACPI_FAILURE (Status)) 377 1.1 jruoho { 378 1.1 jruoho return_ACPI_STATUS (Status); 379 1.1 jruoho } 380 1.1 jruoho 381 1.1 jruoho /* 382 1.1 jruoho * The physical address of this field datum is: 383 1.1 jruoho * 384 1.1 jruoho * 1) The base of the region, plus 385 1.1 jruoho * 2) The base offset of the field, plus 386 1.1 jruoho * 3) The current offset into the field 387 1.1 jruoho */ 388 1.1 jruoho RgnDesc = ObjDesc->CommonField.RegionObj; 389 1.1 jruoho RegionOffset = 390 1.1 jruoho ObjDesc->CommonField.BaseByteOffset + 391 1.1 jruoho FieldDatumByteOffset; 392 1.1 jruoho 393 1.1 jruoho if ((Function & ACPI_IO_MASK) == ACPI_READ) 394 1.1 jruoho { 395 1.1 jruoho ACPI_DEBUG_PRINT ((ACPI_DB_BFIELD, "[READ]")); 396 1.1 jruoho } 397 1.1 jruoho else 398 1.1 jruoho { 399 1.1 jruoho ACPI_DEBUG_PRINT ((ACPI_DB_BFIELD, "[WRITE]")); 400 1.1 jruoho } 401 1.1 jruoho 402 1.1 jruoho ACPI_DEBUG_PRINT_RAW ((ACPI_DB_BFIELD, 403 1.1.1.5 christos " Region [%s:%X], Width %X, ByteBase %X, Offset %X at %8.8X%8.8X\n", 404 1.1 jruoho AcpiUtGetRegionName (RgnDesc->Region.SpaceId), 405 1.1 jruoho RgnDesc->Region.SpaceId, 406 1.1 jruoho ObjDesc->CommonField.AccessByteWidth, 407 1.1 jruoho ObjDesc->CommonField.BaseByteOffset, 408 1.1 jruoho FieldDatumByteOffset, 409 1.1.1.5 christos ACPI_FORMAT_UINT64 (RgnDesc->Region.Address + RegionOffset))); 410 1.1 jruoho 411 1.1 jruoho /* Invoke the appropriate AddressSpace/OpRegion handler */ 412 1.1 jruoho 413 1.1.1.3 christos Status = AcpiEvAddressSpaceDispatch (RgnDesc, ObjDesc, 414 1.1.1.7 christos Function, RegionOffset, 415 1.1.1.7 christos ACPI_MUL_8 (ObjDesc->CommonField.AccessByteWidth), Value); 416 1.1 jruoho 417 1.1 jruoho if (ACPI_FAILURE (Status)) 418 1.1 jruoho { 419 1.1 jruoho if (Status == AE_NOT_IMPLEMENTED) 420 1.1 jruoho { 421 1.1 jruoho ACPI_ERROR ((AE_INFO, 422 1.1.1.2 jruoho "Region %s (ID=%u) not implemented", 423 1.1 jruoho AcpiUtGetRegionName (RgnDesc->Region.SpaceId), 424 1.1 jruoho RgnDesc->Region.SpaceId)); 425 1.1 jruoho } 426 1.1 jruoho else if (Status == AE_NOT_EXIST) 427 1.1 jruoho { 428 1.1 jruoho ACPI_ERROR ((AE_INFO, 429 1.1.1.2 jruoho "Region %s (ID=%u) has no handler", 430 1.1 jruoho AcpiUtGetRegionName (RgnDesc->Region.SpaceId), 431 1.1 jruoho RgnDesc->Region.SpaceId)); 432 1.1 jruoho } 433 1.1 jruoho } 434 1.1 jruoho 435 1.1 jruoho return_ACPI_STATUS (Status); 436 1.1 jruoho } 437 1.1 jruoho 438 1.1 jruoho 439 1.1 jruoho /******************************************************************************* 440 1.1 jruoho * 441 1.1 jruoho * FUNCTION: AcpiExRegisterOverflow 442 1.1 jruoho * 443 1.1 jruoho * PARAMETERS: ObjDesc - Register(Field) to be written 444 1.1 jruoho * Value - Value to be stored 445 1.1 jruoho * 446 1.1 jruoho * RETURN: TRUE if value overflows the field, FALSE otherwise 447 1.1 jruoho * 448 1.1 jruoho * DESCRIPTION: Check if a value is out of range of the field being written. 449 1.1 jruoho * Used to check if the values written to Index and Bank registers 450 1.1.1.3 christos * are out of range. Normally, the value is simply truncated 451 1.1 jruoho * to fit the field, but this case is most likely a serious 452 1.1 jruoho * coding error in the ASL. 453 1.1 jruoho * 454 1.1 jruoho ******************************************************************************/ 455 1.1 jruoho 456 1.1 jruoho static BOOLEAN 457 1.1 jruoho AcpiExRegisterOverflow ( 458 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 459 1.1 jruoho UINT64 Value) 460 1.1 jruoho { 461 1.1 jruoho 462 1.1 jruoho if (ObjDesc->CommonField.BitLength >= ACPI_INTEGER_BIT_SIZE) 463 1.1 jruoho { 464 1.1 jruoho /* 465 1.1 jruoho * The field is large enough to hold the maximum integer, so we can 466 1.1 jruoho * never overflow it. 467 1.1 jruoho */ 468 1.1 jruoho return (FALSE); 469 1.1 jruoho } 470 1.1 jruoho 471 1.1 jruoho if (Value >= ((UINT64) 1 << ObjDesc->CommonField.BitLength)) 472 1.1 jruoho { 473 1.1 jruoho /* 474 1.1 jruoho * The Value is larger than the maximum value that can fit into 475 1.1 jruoho * the register. 476 1.1 jruoho */ 477 1.1.1.3 christos ACPI_ERROR ((AE_INFO, 478 1.1.1.3 christos "Index value 0x%8.8X%8.8X overflows field width 0x%X", 479 1.1.1.3 christos ACPI_FORMAT_UINT64 (Value), 480 1.1.1.3 christos ObjDesc->CommonField.BitLength)); 481 1.1.1.3 christos 482 1.1 jruoho return (TRUE); 483 1.1 jruoho } 484 1.1 jruoho 485 1.1 jruoho /* The Value will fit into the field with no truncation */ 486 1.1 jruoho 487 1.1 jruoho return (FALSE); 488 1.1 jruoho } 489 1.1 jruoho 490 1.1 jruoho 491 1.1 jruoho /******************************************************************************* 492 1.1 jruoho * 493 1.1 jruoho * FUNCTION: AcpiExFieldDatumIo 494 1.1 jruoho * 495 1.1 jruoho * PARAMETERS: ObjDesc - Field to be read 496 1.1 jruoho * FieldDatumByteOffset - Byte offset of this datum within the 497 1.1 jruoho * parent field 498 1.1 jruoho * Value - Where to store value (must be 64 bits) 499 1.1 jruoho * ReadWrite - Read or Write flag 500 1.1 jruoho * 501 1.1 jruoho * RETURN: Status 502 1.1 jruoho * 503 1.1.1.3 christos * DESCRIPTION: Read or Write a single datum of a field. The FieldType is 504 1.1 jruoho * demultiplexed here to handle the different types of fields 505 1.1 jruoho * (BufferField, RegionField, IndexField, BankField) 506 1.1 jruoho * 507 1.1 jruoho ******************************************************************************/ 508 1.1 jruoho 509 1.1 jruoho static ACPI_STATUS 510 1.1 jruoho AcpiExFieldDatumIo ( 511 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 512 1.1 jruoho UINT32 FieldDatumByteOffset, 513 1.1 jruoho UINT64 *Value, 514 1.1 jruoho UINT32 ReadWrite) 515 1.1 jruoho { 516 1.1 jruoho ACPI_STATUS Status; 517 1.1 jruoho UINT64 LocalValue; 518 1.1 jruoho 519 1.1 jruoho 520 1.1 jruoho ACPI_FUNCTION_TRACE_U32 (ExFieldDatumIo, FieldDatumByteOffset); 521 1.1 jruoho 522 1.1 jruoho 523 1.1 jruoho if (ReadWrite == ACPI_READ) 524 1.1 jruoho { 525 1.1 jruoho if (!Value) 526 1.1 jruoho { 527 1.1 jruoho LocalValue = 0; 528 1.1 jruoho 529 1.1 jruoho /* To support reads without saving return value */ 530 1.1 jruoho Value = &LocalValue; 531 1.1 jruoho } 532 1.1 jruoho 533 1.1 jruoho /* Clear the entire return buffer first, [Very Important!] */ 534 1.1 jruoho 535 1.1 jruoho *Value = 0; 536 1.1 jruoho } 537 1.1 jruoho 538 1.1 jruoho /* 539 1.1 jruoho * The four types of fields are: 540 1.1 jruoho * 541 1.1 jruoho * BufferField - Read/write from/to a Buffer 542 1.1 jruoho * RegionField - Read/write from/to a Operation Region. 543 1.1 jruoho * BankField - Write to a Bank Register, then read/write from/to an 544 1.1 jruoho * OperationRegion 545 1.1 jruoho * IndexField - Write to an Index Register, then read/write from/to a 546 1.1 jruoho * Data Register 547 1.1 jruoho */ 548 1.1 jruoho switch (ObjDesc->Common.Type) 549 1.1 jruoho { 550 1.1 jruoho case ACPI_TYPE_BUFFER_FIELD: 551 1.1 jruoho /* 552 1.1 jruoho * If the BufferField arguments have not been previously evaluated, 553 1.1 jruoho * evaluate them now and save the results. 554 1.1 jruoho */ 555 1.1 jruoho if (!(ObjDesc->Common.Flags & AOPOBJ_DATA_VALID)) 556 1.1 jruoho { 557 1.1 jruoho Status = AcpiDsGetBufferFieldArguments (ObjDesc); 558 1.1 jruoho if (ACPI_FAILURE (Status)) 559 1.1 jruoho { 560 1.1 jruoho return_ACPI_STATUS (Status); 561 1.1 jruoho } 562 1.1 jruoho } 563 1.1 jruoho 564 1.1 jruoho if (ReadWrite == ACPI_READ) 565 1.1 jruoho { 566 1.1 jruoho /* 567 1.1 jruoho * Copy the data from the source buffer. 568 1.1 jruoho * Length is the field width in bytes. 569 1.1 jruoho */ 570 1.1.1.6 christos memcpy (Value, 571 1.1 jruoho (ObjDesc->BufferField.BufferObj)->Buffer.Pointer + 572 1.1 jruoho ObjDesc->BufferField.BaseByteOffset + 573 1.1 jruoho FieldDatumByteOffset, 574 1.1 jruoho ObjDesc->CommonField.AccessByteWidth); 575 1.1 jruoho } 576 1.1 jruoho else 577 1.1 jruoho { 578 1.1 jruoho /* 579 1.1 jruoho * Copy the data to the target buffer. 580 1.1 jruoho * Length is the field width in bytes. 581 1.1 jruoho */ 582 1.1.1.6 christos memcpy ((ObjDesc->BufferField.BufferObj)->Buffer.Pointer + 583 1.1 jruoho ObjDesc->BufferField.BaseByteOffset + 584 1.1 jruoho FieldDatumByteOffset, 585 1.1 jruoho Value, ObjDesc->CommonField.AccessByteWidth); 586 1.1 jruoho } 587 1.1 jruoho 588 1.1 jruoho Status = AE_OK; 589 1.1 jruoho break; 590 1.1 jruoho 591 1.1 jruoho case ACPI_TYPE_LOCAL_BANK_FIELD: 592 1.1 jruoho /* 593 1.1 jruoho * Ensure that the BankValue is not beyond the capacity of 594 1.1 jruoho * the register 595 1.1 jruoho */ 596 1.1 jruoho if (AcpiExRegisterOverflow (ObjDesc->BankField.BankObj, 597 1.1 jruoho (UINT64) ObjDesc->BankField.Value)) 598 1.1 jruoho { 599 1.1 jruoho return_ACPI_STATUS (AE_AML_REGISTER_LIMIT); 600 1.1 jruoho } 601 1.1 jruoho 602 1.1 jruoho /* 603 1.1 jruoho * For BankFields, we must write the BankValue to the BankRegister 604 1.1 jruoho * (itself a RegionField) before we can access the data. 605 1.1 jruoho */ 606 1.1 jruoho Status = AcpiExInsertIntoField (ObjDesc->BankField.BankObj, 607 1.1 jruoho &ObjDesc->BankField.Value, 608 1.1 jruoho sizeof (ObjDesc->BankField.Value)); 609 1.1 jruoho if (ACPI_FAILURE (Status)) 610 1.1 jruoho { 611 1.1 jruoho return_ACPI_STATUS (Status); 612 1.1 jruoho } 613 1.1 jruoho 614 1.1 jruoho /* 615 1.1 jruoho * Now that the Bank has been selected, fall through to the 616 1.1 jruoho * RegionField case and write the datum to the Operation Region 617 1.1 jruoho */ 618 1.1 jruoho 619 1.1.1.14 christos ACPI_FALLTHROUGH; 620 1.1 jruoho 621 1.1 jruoho case ACPI_TYPE_LOCAL_REGION_FIELD: 622 1.1 jruoho /* 623 1.1 jruoho * For simple RegionFields, we just directly access the owning 624 1.1 jruoho * Operation Region. 625 1.1 jruoho */ 626 1.1.1.7 christos Status = AcpiExAccessRegion ( 627 1.1.1.7 christos ObjDesc, FieldDatumByteOffset, Value, ReadWrite); 628 1.1 jruoho break; 629 1.1 jruoho 630 1.1 jruoho case ACPI_TYPE_LOCAL_INDEX_FIELD: 631 1.1 jruoho /* 632 1.1 jruoho * Ensure that the IndexValue is not beyond the capacity of 633 1.1 jruoho * the register 634 1.1 jruoho */ 635 1.1 jruoho if (AcpiExRegisterOverflow (ObjDesc->IndexField.IndexObj, 636 1.1 jruoho (UINT64) ObjDesc->IndexField.Value)) 637 1.1 jruoho { 638 1.1 jruoho return_ACPI_STATUS (AE_AML_REGISTER_LIMIT); 639 1.1 jruoho } 640 1.1 jruoho 641 1.1 jruoho /* Write the index value to the IndexRegister (itself a RegionField) */ 642 1.1 jruoho 643 1.1 jruoho FieldDatumByteOffset += ObjDesc->IndexField.Value; 644 1.1 jruoho 645 1.1 jruoho ACPI_DEBUG_PRINT ((ACPI_DB_BFIELD, 646 1.1 jruoho "Write to Index Register: Value %8.8X\n", 647 1.1 jruoho FieldDatumByteOffset)); 648 1.1 jruoho 649 1.1 jruoho Status = AcpiExInsertIntoField (ObjDesc->IndexField.IndexObj, 650 1.1.1.7 christos &FieldDatumByteOffset, sizeof (FieldDatumByteOffset)); 651 1.1 jruoho if (ACPI_FAILURE (Status)) 652 1.1 jruoho { 653 1.1 jruoho return_ACPI_STATUS (Status); 654 1.1 jruoho } 655 1.1 jruoho 656 1.1 jruoho if (ReadWrite == ACPI_READ) 657 1.1 jruoho { 658 1.1 jruoho /* Read the datum from the DataRegister */ 659 1.1 jruoho 660 1.1 jruoho ACPI_DEBUG_PRINT ((ACPI_DB_BFIELD, 661 1.1 jruoho "Read from Data Register\n")); 662 1.1 jruoho 663 1.1.1.7 christos Status = AcpiExExtractFromField ( 664 1.1.1.7 christos ObjDesc->IndexField.DataObj, Value, sizeof (UINT64)); 665 1.1 jruoho } 666 1.1 jruoho else 667 1.1 jruoho { 668 1.1 jruoho /* Write the datum to the DataRegister */ 669 1.1 jruoho 670 1.1 jruoho ACPI_DEBUG_PRINT ((ACPI_DB_BFIELD, 671 1.1 jruoho "Write to Data Register: Value %8.8X%8.8X\n", 672 1.1 jruoho ACPI_FORMAT_UINT64 (*Value))); 673 1.1 jruoho 674 1.1.1.7 christos Status = AcpiExInsertIntoField ( 675 1.1.1.7 christos ObjDesc->IndexField.DataObj, Value, sizeof (UINT64)); 676 1.1 jruoho } 677 1.1 jruoho break; 678 1.1 jruoho 679 1.1 jruoho default: 680 1.1 jruoho 681 1.1 jruoho ACPI_ERROR ((AE_INFO, "Wrong object type in field I/O %u", 682 1.1 jruoho ObjDesc->Common.Type)); 683 1.1 jruoho Status = AE_AML_INTERNAL; 684 1.1 jruoho break; 685 1.1 jruoho } 686 1.1 jruoho 687 1.1 jruoho if (ACPI_SUCCESS (Status)) 688 1.1 jruoho { 689 1.1 jruoho if (ReadWrite == ACPI_READ) 690 1.1 jruoho { 691 1.1 jruoho ACPI_DEBUG_PRINT ((ACPI_DB_BFIELD, 692 1.1 jruoho "Value Read %8.8X%8.8X, Width %u\n", 693 1.1 jruoho ACPI_FORMAT_UINT64 (*Value), 694 1.1 jruoho ObjDesc->CommonField.AccessByteWidth)); 695 1.1 jruoho } 696 1.1 jruoho else 697 1.1 jruoho { 698 1.1 jruoho ACPI_DEBUG_PRINT ((ACPI_DB_BFIELD, 699 1.1 jruoho "Value Written %8.8X%8.8X, Width %u\n", 700 1.1 jruoho ACPI_FORMAT_UINT64 (*Value), 701 1.1 jruoho ObjDesc->CommonField.AccessByteWidth)); 702 1.1 jruoho } 703 1.1 jruoho } 704 1.1 jruoho 705 1.1 jruoho return_ACPI_STATUS (Status); 706 1.1 jruoho } 707 1.1 jruoho 708 1.1 jruoho 709 1.1 jruoho /******************************************************************************* 710 1.1 jruoho * 711 1.1 jruoho * FUNCTION: AcpiExWriteWithUpdateRule 712 1.1 jruoho * 713 1.1 jruoho * PARAMETERS: ObjDesc - Field to be written 714 1.1 jruoho * Mask - bitmask within field datum 715 1.1 jruoho * FieldValue - Value to write 716 1.1 jruoho * FieldDatumByteOffset - Offset of datum within field 717 1.1 jruoho * 718 1.1 jruoho * RETURN: Status 719 1.1 jruoho * 720 1.1 jruoho * DESCRIPTION: Apply the field update rule to a field write 721 1.1 jruoho * 722 1.1 jruoho ******************************************************************************/ 723 1.1 jruoho 724 1.1 jruoho ACPI_STATUS 725 1.1 jruoho AcpiExWriteWithUpdateRule ( 726 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 727 1.1 jruoho UINT64 Mask, 728 1.1 jruoho UINT64 FieldValue, 729 1.1 jruoho UINT32 FieldDatumByteOffset) 730 1.1 jruoho { 731 1.1 jruoho ACPI_STATUS Status = AE_OK; 732 1.1 jruoho UINT64 MergedValue; 733 1.1 jruoho UINT64 CurrentValue; 734 1.1 jruoho 735 1.1 jruoho 736 1.1 jruoho ACPI_FUNCTION_TRACE_U32 (ExWriteWithUpdateRule, Mask); 737 1.1 jruoho 738 1.1 jruoho 739 1.1 jruoho /* Start with the new bits */ 740 1.1 jruoho 741 1.1 jruoho MergedValue = FieldValue; 742 1.1 jruoho 743 1.1 jruoho /* If the mask is all ones, we don't need to worry about the update rule */ 744 1.1 jruoho 745 1.1 jruoho if (Mask != ACPI_UINT64_MAX) 746 1.1 jruoho { 747 1.1 jruoho /* Decode the update rule */ 748 1.1 jruoho 749 1.1 jruoho switch (ObjDesc->CommonField.FieldFlags & AML_FIELD_UPDATE_RULE_MASK) 750 1.1 jruoho { 751 1.1 jruoho case AML_FIELD_UPDATE_PRESERVE: 752 1.1 jruoho /* 753 1.1 jruoho * Check if update rule needs to be applied (not if mask is all 754 1.1 jruoho * ones) The left shift drops the bits we want to ignore. 755 1.1 jruoho */ 756 1.1 jruoho if ((~Mask << (ACPI_MUL_8 (sizeof (Mask)) - 757 1.1.1.7 christos ACPI_MUL_8 (ObjDesc->CommonField.AccessByteWidth))) != 0) 758 1.1 jruoho { 759 1.1 jruoho /* 760 1.1 jruoho * Read the current contents of the byte/word/dword containing 761 1.1 jruoho * the field, and merge with the new field value. 762 1.1 jruoho */ 763 1.1.1.7 christos Status = AcpiExFieldDatumIo ( 764 1.1.1.7 christos ObjDesc, FieldDatumByteOffset, &CurrentValue, ACPI_READ); 765 1.1 jruoho if (ACPI_FAILURE (Status)) 766 1.1 jruoho { 767 1.1 jruoho return_ACPI_STATUS (Status); 768 1.1 jruoho } 769 1.1 jruoho 770 1.1 jruoho MergedValue |= (CurrentValue & ~Mask); 771 1.1 jruoho } 772 1.1 jruoho break; 773 1.1 jruoho 774 1.1 jruoho case AML_FIELD_UPDATE_WRITE_AS_ONES: 775 1.1 jruoho 776 1.1 jruoho /* Set positions outside the field to all ones */ 777 1.1 jruoho 778 1.1 jruoho MergedValue |= ~Mask; 779 1.1 jruoho break; 780 1.1 jruoho 781 1.1 jruoho case AML_FIELD_UPDATE_WRITE_AS_ZEROS: 782 1.1 jruoho 783 1.1 jruoho /* Set positions outside the field to all zeros */ 784 1.1 jruoho 785 1.1 jruoho MergedValue &= Mask; 786 1.1 jruoho break; 787 1.1 jruoho 788 1.1 jruoho default: 789 1.1 jruoho 790 1.1 jruoho ACPI_ERROR ((AE_INFO, 791 1.1 jruoho "Unknown UpdateRule value: 0x%X", 792 1.1.1.7 christos (ObjDesc->CommonField.FieldFlags & 793 1.1.1.7 christos AML_FIELD_UPDATE_RULE_MASK))); 794 1.1 jruoho return_ACPI_STATUS (AE_AML_OPERAND_VALUE); 795 1.1 jruoho } 796 1.1 jruoho } 797 1.1 jruoho 798 1.1 jruoho ACPI_DEBUG_PRINT ((ACPI_DB_BFIELD, 799 1.1.1.7 christos "Mask %8.8X%8.8X, DatumOffset %X, Width %X, " 800 1.1.1.7 christos "Value %8.8X%8.8X, MergedValue %8.8X%8.8X\n", 801 1.1 jruoho ACPI_FORMAT_UINT64 (Mask), 802 1.1 jruoho FieldDatumByteOffset, 803 1.1 jruoho ObjDesc->CommonField.AccessByteWidth, 804 1.1 jruoho ACPI_FORMAT_UINT64 (FieldValue), 805 1.1 jruoho ACPI_FORMAT_UINT64 (MergedValue))); 806 1.1 jruoho 807 1.1 jruoho /* Write the merged value */ 808 1.1 jruoho 809 1.1.1.7 christos Status = AcpiExFieldDatumIo ( 810 1.1.1.7 christos ObjDesc, FieldDatumByteOffset, &MergedValue, ACPI_WRITE); 811 1.1 jruoho 812 1.1 jruoho return_ACPI_STATUS (Status); 813 1.1 jruoho } 814 1.1 jruoho 815 1.1 jruoho 816 1.1 jruoho /******************************************************************************* 817 1.1 jruoho * 818 1.1 jruoho * FUNCTION: AcpiExExtractFromField 819 1.1 jruoho * 820 1.1 jruoho * PARAMETERS: ObjDesc - Field to be read 821 1.1 jruoho * Buffer - Where to store the field data 822 1.1 jruoho * BufferLength - Length of Buffer 823 1.1 jruoho * 824 1.1 jruoho * RETURN: Status 825 1.1 jruoho * 826 1.1 jruoho * DESCRIPTION: Retrieve the current value of the given field 827 1.1 jruoho * 828 1.1 jruoho ******************************************************************************/ 829 1.1 jruoho 830 1.1 jruoho ACPI_STATUS 831 1.1 jruoho AcpiExExtractFromField ( 832 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 833 1.1 jruoho void *Buffer, 834 1.1 jruoho UINT32 BufferLength) 835 1.1 jruoho { 836 1.1 jruoho ACPI_STATUS Status; 837 1.1 jruoho UINT64 RawDatum; 838 1.1 jruoho UINT64 MergedDatum; 839 1.1 jruoho UINT32 FieldOffset = 0; 840 1.1 jruoho UINT32 BufferOffset = 0; 841 1.1 jruoho UINT32 BufferTailBits; 842 1.1 jruoho UINT32 DatumCount; 843 1.1 jruoho UINT32 FieldDatumCount; 844 1.1 jruoho UINT32 AccessBitWidth; 845 1.1 jruoho UINT32 i; 846 1.1 jruoho 847 1.1 jruoho 848 1.1 jruoho ACPI_FUNCTION_TRACE (ExExtractFromField); 849 1.1 jruoho 850 1.1 jruoho 851 1.1 jruoho /* Validate target buffer and clear it */ 852 1.1 jruoho 853 1.1 jruoho if (BufferLength < 854 1.1 jruoho ACPI_ROUND_BITS_UP_TO_BYTES (ObjDesc->CommonField.BitLength)) 855 1.1 jruoho { 856 1.1 jruoho ACPI_ERROR ((AE_INFO, 857 1.1 jruoho "Field size %u (bits) is too large for buffer (%u)", 858 1.1 jruoho ObjDesc->CommonField.BitLength, BufferLength)); 859 1.1 jruoho 860 1.1 jruoho return_ACPI_STATUS (AE_BUFFER_OVERFLOW); 861 1.1 jruoho } 862 1.1 jruoho 863 1.1.1.6 christos memset (Buffer, 0, BufferLength); 864 1.1 jruoho AccessBitWidth = ACPI_MUL_8 (ObjDesc->CommonField.AccessByteWidth); 865 1.1 jruoho 866 1.1 jruoho /* Handle the simple case here */ 867 1.1 jruoho 868 1.1 jruoho if ((ObjDesc->CommonField.StartFieldBitOffset == 0) && 869 1.1 jruoho (ObjDesc->CommonField.BitLength == AccessBitWidth)) 870 1.1 jruoho { 871 1.1.1.3 christos if (BufferLength >= sizeof (UINT64)) 872 1.1.1.3 christos { 873 1.1.1.3 christos Status = AcpiExFieldDatumIo (ObjDesc, 0, Buffer, ACPI_READ); 874 1.1.1.3 christos } 875 1.1.1.3 christos else 876 1.1.1.3 christos { 877 1.1.1.3 christos /* Use RawDatum (UINT64) to handle buffers < 64 bits */ 878 1.1.1.3 christos 879 1.1.1.3 christos Status = AcpiExFieldDatumIo (ObjDesc, 0, &RawDatum, ACPI_READ); 880 1.1.1.6 christos memcpy (Buffer, &RawDatum, BufferLength); 881 1.1.1.3 christos } 882 1.1.1.3 christos 883 1.1 jruoho return_ACPI_STATUS (Status); 884 1.1 jruoho } 885 1.1 jruoho 886 1.1 jruoho /* TBD: Move to common setup code */ 887 1.1 jruoho 888 1.1 jruoho /* Field algorithm is limited to sizeof(UINT64), truncate if needed */ 889 1.1 jruoho 890 1.1 jruoho if (ObjDesc->CommonField.AccessByteWidth > sizeof (UINT64)) 891 1.1 jruoho { 892 1.1 jruoho ObjDesc->CommonField.AccessByteWidth = sizeof (UINT64); 893 1.1 jruoho AccessBitWidth = sizeof (UINT64) * 8; 894 1.1 jruoho } 895 1.1 jruoho 896 1.1 jruoho /* Compute the number of datums (access width data items) */ 897 1.1 jruoho 898 1.1 jruoho DatumCount = ACPI_ROUND_UP_TO ( 899 1.1 jruoho ObjDesc->CommonField.BitLength, AccessBitWidth); 900 1.1 jruoho 901 1.1 jruoho FieldDatumCount = ACPI_ROUND_UP_TO ( 902 1.1 jruoho ObjDesc->CommonField.BitLength + 903 1.1 jruoho ObjDesc->CommonField.StartFieldBitOffset, AccessBitWidth); 904 1.1 jruoho 905 1.1 jruoho /* Priming read from the field */ 906 1.1 jruoho 907 1.1 jruoho Status = AcpiExFieldDatumIo (ObjDesc, FieldOffset, &RawDatum, ACPI_READ); 908 1.1 jruoho if (ACPI_FAILURE (Status)) 909 1.1 jruoho { 910 1.1 jruoho return_ACPI_STATUS (Status); 911 1.1 jruoho } 912 1.1 jruoho MergedDatum = RawDatum >> ObjDesc->CommonField.StartFieldBitOffset; 913 1.1 jruoho 914 1.1 jruoho /* Read the rest of the field */ 915 1.1 jruoho 916 1.1 jruoho for (i = 1; i < FieldDatumCount; i++) 917 1.1 jruoho { 918 1.1 jruoho /* Get next input datum from the field */ 919 1.1 jruoho 920 1.1 jruoho FieldOffset += ObjDesc->CommonField.AccessByteWidth; 921 1.1.1.7 christos Status = AcpiExFieldDatumIo ( 922 1.1.1.7 christos ObjDesc, FieldOffset, &RawDatum, ACPI_READ); 923 1.1 jruoho if (ACPI_FAILURE (Status)) 924 1.1 jruoho { 925 1.1 jruoho return_ACPI_STATUS (Status); 926 1.1 jruoho } 927 1.1 jruoho 928 1.1 jruoho /* 929 1.1 jruoho * Merge with previous datum if necessary. 930 1.1 jruoho * 931 1.1 jruoho * Note: Before the shift, check if the shift value will be larger than 932 1.1 jruoho * the integer size. If so, there is no need to perform the operation. 933 1.1 jruoho * This avoids the differences in behavior between different compilers 934 1.1 jruoho * concerning shift values larger than the target data width. 935 1.1 jruoho */ 936 1.1 jruoho if (AccessBitWidth - ObjDesc->CommonField.StartFieldBitOffset < 937 1.1 jruoho ACPI_INTEGER_BIT_SIZE) 938 1.1 jruoho { 939 1.1 jruoho MergedDatum |= RawDatum << 940 1.1 jruoho (AccessBitWidth - ObjDesc->CommonField.StartFieldBitOffset); 941 1.1 jruoho } 942 1.1 jruoho 943 1.1 jruoho if (i == DatumCount) 944 1.1 jruoho { 945 1.1 jruoho break; 946 1.1 jruoho } 947 1.1 jruoho 948 1.1 jruoho /* Write merged datum to target buffer */ 949 1.1 jruoho 950 1.1.1.6 christos memcpy (((char *) Buffer) + BufferOffset, &MergedDatum, 951 1.1 jruoho ACPI_MIN(ObjDesc->CommonField.AccessByteWidth, 952 1.1 jruoho BufferLength - BufferOffset)); 953 1.1 jruoho 954 1.1 jruoho BufferOffset += ObjDesc->CommonField.AccessByteWidth; 955 1.1 jruoho MergedDatum = RawDatum >> ObjDesc->CommonField.StartFieldBitOffset; 956 1.1 jruoho } 957 1.1 jruoho 958 1.1 jruoho /* Mask off any extra bits in the last datum */ 959 1.1 jruoho 960 1.1 jruoho BufferTailBits = ObjDesc->CommonField.BitLength % AccessBitWidth; 961 1.1 jruoho if (BufferTailBits) 962 1.1 jruoho { 963 1.1 jruoho MergedDatum &= ACPI_MASK_BITS_ABOVE (BufferTailBits); 964 1.1 jruoho } 965 1.1 jruoho 966 1.1 jruoho /* Write the last datum to the buffer */ 967 1.1 jruoho 968 1.1.1.6 christos memcpy (((char *) Buffer) + BufferOffset, &MergedDatum, 969 1.1 jruoho ACPI_MIN(ObjDesc->CommonField.AccessByteWidth, 970 1.1 jruoho BufferLength - BufferOffset)); 971 1.1 jruoho 972 1.1 jruoho return_ACPI_STATUS (AE_OK); 973 1.1 jruoho } 974 1.1 jruoho 975 1.1 jruoho 976 1.1 jruoho /******************************************************************************* 977 1.1 jruoho * 978 1.1 jruoho * FUNCTION: AcpiExInsertIntoField 979 1.1 jruoho * 980 1.1 jruoho * PARAMETERS: ObjDesc - Field to be written 981 1.1 jruoho * Buffer - Data to be written 982 1.1 jruoho * BufferLength - Length of Buffer 983 1.1 jruoho * 984 1.1 jruoho * RETURN: Status 985 1.1 jruoho * 986 1.1 jruoho * DESCRIPTION: Store the Buffer contents into the given field 987 1.1 jruoho * 988 1.1 jruoho ******************************************************************************/ 989 1.1 jruoho 990 1.1 jruoho ACPI_STATUS 991 1.1 jruoho AcpiExInsertIntoField ( 992 1.1 jruoho ACPI_OPERAND_OBJECT *ObjDesc, 993 1.1 jruoho void *Buffer, 994 1.1 jruoho UINT32 BufferLength) 995 1.1 jruoho { 996 1.1 jruoho void *NewBuffer; 997 1.1 jruoho ACPI_STATUS Status; 998 1.1 jruoho UINT64 Mask; 999 1.1 jruoho UINT64 WidthMask; 1000 1.1 jruoho UINT64 MergedDatum; 1001 1.1 jruoho UINT64 RawDatum = 0; 1002 1.1 jruoho UINT32 FieldOffset = 0; 1003 1.1 jruoho UINT32 BufferOffset = 0; 1004 1.1 jruoho UINT32 BufferTailBits; 1005 1.1 jruoho UINT32 DatumCount; 1006 1.1 jruoho UINT32 FieldDatumCount; 1007 1.1 jruoho UINT32 AccessBitWidth; 1008 1.1 jruoho UINT32 RequiredLength; 1009 1.1 jruoho UINT32 i; 1010 1.1 jruoho 1011 1.1 jruoho 1012 1.1 jruoho ACPI_FUNCTION_TRACE (ExInsertIntoField); 1013 1.1 jruoho 1014 1.1 jruoho 1015 1.1 jruoho /* Validate input buffer */ 1016 1.1 jruoho 1017 1.1 jruoho NewBuffer = NULL; 1018 1.1 jruoho RequiredLength = ACPI_ROUND_BITS_UP_TO_BYTES ( 1019 1.1.1.7 christos ObjDesc->CommonField.BitLength); 1020 1.1.1.7 christos 1021 1.1 jruoho /* 1022 1.1 jruoho * We must have a buffer that is at least as long as the field 1023 1.1.1.3 christos * we are writing to. This is because individual fields are 1024 1.1 jruoho * indivisible and partial writes are not supported -- as per 1025 1.1 jruoho * the ACPI specification. 1026 1.1 jruoho */ 1027 1.1 jruoho if (BufferLength < RequiredLength) 1028 1.1 jruoho { 1029 1.1 jruoho /* We need to create a new buffer */ 1030 1.1 jruoho 1031 1.1 jruoho NewBuffer = ACPI_ALLOCATE_ZEROED (RequiredLength); 1032 1.1 jruoho if (!NewBuffer) 1033 1.1 jruoho { 1034 1.1 jruoho return_ACPI_STATUS (AE_NO_MEMORY); 1035 1.1 jruoho } 1036 1.1 jruoho 1037 1.1 jruoho /* 1038 1.1 jruoho * Copy the original data to the new buffer, starting 1039 1.1.1.3 christos * at Byte zero. All unused (upper) bytes of the 1040 1.1 jruoho * buffer will be 0. 1041 1.1 jruoho */ 1042 1.1.1.6 christos memcpy ((char *) NewBuffer, (char *) Buffer, BufferLength); 1043 1.1 jruoho Buffer = NewBuffer; 1044 1.1 jruoho BufferLength = RequiredLength; 1045 1.1 jruoho } 1046 1.1 jruoho 1047 1.1 jruoho /* TBD: Move to common setup code */ 1048 1.1 jruoho 1049 1.1 jruoho /* Algo is limited to sizeof(UINT64), so cut the AccessByteWidth */ 1050 1.1 jruoho if (ObjDesc->CommonField.AccessByteWidth > sizeof (UINT64)) 1051 1.1 jruoho { 1052 1.1 jruoho ObjDesc->CommonField.AccessByteWidth = sizeof (UINT64); 1053 1.1 jruoho } 1054 1.1 jruoho 1055 1.1 jruoho AccessBitWidth = ACPI_MUL_8 (ObjDesc->CommonField.AccessByteWidth); 1056 1.1 jruoho 1057 1.1.1.10 christos /* Create the bitmasks used for bit insertion */ 1058 1.1 jruoho 1059 1.1.1.10 christos WidthMask = ACPI_MASK_BITS_ABOVE_64 (AccessBitWidth); 1060 1.1 jruoho Mask = WidthMask & 1061 1.1 jruoho ACPI_MASK_BITS_BELOW (ObjDesc->CommonField.StartFieldBitOffset); 1062 1.1 jruoho 1063 1.1 jruoho /* Compute the number of datums (access width data items) */ 1064 1.1 jruoho 1065 1.1 jruoho DatumCount = ACPI_ROUND_UP_TO (ObjDesc->CommonField.BitLength, 1066 1.1 jruoho AccessBitWidth); 1067 1.1 jruoho 1068 1.1 jruoho FieldDatumCount = ACPI_ROUND_UP_TO (ObjDesc->CommonField.BitLength + 1069 1.1 jruoho ObjDesc->CommonField.StartFieldBitOffset, 1070 1.1 jruoho AccessBitWidth); 1071 1.1 jruoho 1072 1.1 jruoho /* Get initial Datum from the input buffer */ 1073 1.1 jruoho 1074 1.1.1.6 christos memcpy (&RawDatum, Buffer, 1075 1.1 jruoho ACPI_MIN(ObjDesc->CommonField.AccessByteWidth, 1076 1.1 jruoho BufferLength - BufferOffset)); 1077 1.1 jruoho 1078 1.1 jruoho MergedDatum = RawDatum << ObjDesc->CommonField.StartFieldBitOffset; 1079 1.1 jruoho 1080 1.1 jruoho /* Write the entire field */ 1081 1.1 jruoho 1082 1.1 jruoho for (i = 1; i < FieldDatumCount; i++) 1083 1.1 jruoho { 1084 1.1 jruoho /* Write merged datum to the target field */ 1085 1.1 jruoho 1086 1.1 jruoho MergedDatum &= Mask; 1087 1.1.1.7 christos Status = AcpiExWriteWithUpdateRule ( 1088 1.1.1.7 christos ObjDesc, Mask, MergedDatum, FieldOffset); 1089 1.1 jruoho if (ACPI_FAILURE (Status)) 1090 1.1 jruoho { 1091 1.1 jruoho goto Exit; 1092 1.1 jruoho } 1093 1.1 jruoho 1094 1.1 jruoho FieldOffset += ObjDesc->CommonField.AccessByteWidth; 1095 1.1 jruoho 1096 1.1 jruoho /* 1097 1.1 jruoho * Start new output datum by merging with previous input datum 1098 1.1 jruoho * if necessary. 1099 1.1 jruoho * 1100 1.1 jruoho * Note: Before the shift, check if the shift value will be larger than 1101 1.1 jruoho * the integer size. If so, there is no need to perform the operation. 1102 1.1 jruoho * This avoids the differences in behavior between different compilers 1103 1.1 jruoho * concerning shift values larger than the target data width. 1104 1.1 jruoho */ 1105 1.1 jruoho if ((AccessBitWidth - ObjDesc->CommonField.StartFieldBitOffset) < 1106 1.1 jruoho ACPI_INTEGER_BIT_SIZE) 1107 1.1 jruoho { 1108 1.1 jruoho MergedDatum = RawDatum >> 1109 1.1 jruoho (AccessBitWidth - ObjDesc->CommonField.StartFieldBitOffset); 1110 1.1 jruoho } 1111 1.1 jruoho else 1112 1.1 jruoho { 1113 1.1 jruoho MergedDatum = 0; 1114 1.1 jruoho } 1115 1.1 jruoho 1116 1.1 jruoho Mask = WidthMask; 1117 1.1 jruoho 1118 1.1 jruoho if (i == DatumCount) 1119 1.1 jruoho { 1120 1.1 jruoho break; 1121 1.1 jruoho } 1122 1.1 jruoho 1123 1.1 jruoho /* Get the next input datum from the buffer */ 1124 1.1 jruoho 1125 1.1 jruoho BufferOffset += ObjDesc->CommonField.AccessByteWidth; 1126 1.1.1.6 christos memcpy (&RawDatum, ((char *) Buffer) + BufferOffset, 1127 1.1 jruoho ACPI_MIN(ObjDesc->CommonField.AccessByteWidth, 1128 1.1 jruoho BufferLength - BufferOffset)); 1129 1.1 jruoho 1130 1.1 jruoho MergedDatum |= RawDatum << ObjDesc->CommonField.StartFieldBitOffset; 1131 1.1 jruoho } 1132 1.1 jruoho 1133 1.1 jruoho /* Mask off any extra bits in the last datum */ 1134 1.1 jruoho 1135 1.1 jruoho BufferTailBits = (ObjDesc->CommonField.BitLength + 1136 1.1 jruoho ObjDesc->CommonField.StartFieldBitOffset) % AccessBitWidth; 1137 1.1 jruoho if (BufferTailBits) 1138 1.1 jruoho { 1139 1.1 jruoho Mask &= ACPI_MASK_BITS_ABOVE (BufferTailBits); 1140 1.1 jruoho } 1141 1.1 jruoho 1142 1.1 jruoho /* Write the last datum to the field */ 1143 1.1 jruoho 1144 1.1 jruoho MergedDatum &= Mask; 1145 1.1.1.7 christos Status = AcpiExWriteWithUpdateRule ( 1146 1.1.1.7 christos ObjDesc, Mask, MergedDatum, FieldOffset); 1147 1.1 jruoho 1148 1.1 jruoho Exit: 1149 1.1 jruoho /* Free temporary buffer if we used one */ 1150 1.1 jruoho 1151 1.1 jruoho if (NewBuffer) 1152 1.1 jruoho { 1153 1.1 jruoho ACPI_FREE (NewBuffer); 1154 1.1 jruoho } 1155 1.1 jruoho return_ACPI_STATUS (Status); 1156 1.1 jruoho } 1157