1 /******************************************************************************
3 * Module Name: exfield - ACPI AML (p-code) execution - field manipulation
5 *****************************************************************************/
8 * Copyright (C) 2000 - 2016, Intel Corp.
11 * Redistribution and use in source and binary forms, with or without
12 * modification, are permitted provided that the following conditions
14 * 1. Redistributions of source code must retain the above copyright
15 * notice, this list of conditions, and the following disclaimer,
16 * without modification.
17 * 2. Redistributions in binary form must reproduce at minimum a disclaimer
18 * substantially similar to the "NO WARRANTY" disclaimer below
19 * ("Disclaimer") and any redistribution must be conditioned upon
20 * including a substantially similar Disclaimer requirement for further
21 * binary redistribution.
22 * 3. Neither the names of the above-listed copyright holders nor the names
23 * of any contributors may be used to endorse or promote products derived
24 * from this software without specific prior written permission.
26 * Alternatively, this software may be distributed under the terms of the
27 * GNU General Public License ("GPL") version 2 as published by the Free
28 * Software Foundation.
31 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
32 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
33 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
34 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
35 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
36 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
37 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
38 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
39 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
40 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
41 * POSSIBILITY OF SUCH DAMAGES.
44 #include <acpi/acpi.h>
50 #define _COMPONENT ACPI_EXECUTER
51 ACPI_MODULE_NAME("exfield")
53 /* Local prototypes */
55 acpi_ex_get_serial_access_length(u32 accessor_type
, u32 access_length
);
57 /*******************************************************************************
59 * FUNCTION: acpi_ex_get_serial_access_length
61 * PARAMETERS: accessor_type - The type of the protocol indicated by region
62 * field access attributes
63 * access_length - The access length of the region field
65 * RETURN: Decoded access length
67 * DESCRIPTION: This routine returns the length of the generic_serial_bus
70 ******************************************************************************/
73 acpi_ex_get_serial_access_length(u32 accessor_type
, u32 access_length
)
77 switch (accessor_type
) {
78 case AML_FIELD_ATTRIB_QUICK
:
83 case AML_FIELD_ATTRIB_SEND_RCV
:
84 case AML_FIELD_ATTRIB_BYTE
:
89 case AML_FIELD_ATTRIB_WORD
:
90 case AML_FIELD_ATTRIB_WORD_CALL
:
95 case AML_FIELD_ATTRIB_MULTIBYTE
:
96 case AML_FIELD_ATTRIB_RAW_BYTES
:
97 case AML_FIELD_ATTRIB_RAW_PROCESS
:
99 length
= access_length
;
102 case AML_FIELD_ATTRIB_BLOCK
:
103 case AML_FIELD_ATTRIB_BLOCK_CALL
:
106 length
= ACPI_GSBUS_BUFFER_SIZE
- 2;
113 /*******************************************************************************
115 * FUNCTION: acpi_ex_read_data_from_field
117 * PARAMETERS: walk_state - Current execution state
118 * obj_desc - The named field
119 * ret_buffer_desc - Where the return data object is stored
123 * DESCRIPTION: Read from a named field. Returns either an Integer or a
124 * Buffer, depending on the size of the field.
126 ******************************************************************************/
129 acpi_ex_read_data_from_field(struct acpi_walk_state
*walk_state
,
130 union acpi_operand_object
*obj_desc
,
131 union acpi_operand_object
**ret_buffer_desc
)
134 union acpi_operand_object
*buffer_desc
;
140 ACPI_FUNCTION_TRACE_PTR(ex_read_data_from_field
, obj_desc
);
142 /* Parameter validation */
145 return_ACPI_STATUS(AE_AML_NO_OPERAND
);
147 if (!ret_buffer_desc
) {
148 return_ACPI_STATUS(AE_BAD_PARAMETER
);
151 if (obj_desc
->common
.type
== ACPI_TYPE_BUFFER_FIELD
) {
153 * If the buffer_field arguments have not been previously evaluated,
154 * evaluate them now and save the results.
156 if (!(obj_desc
->common
.flags
& AOPOBJ_DATA_VALID
)) {
157 status
= acpi_ds_get_buffer_field_arguments(obj_desc
);
158 if (ACPI_FAILURE(status
)) {
159 return_ACPI_STATUS(status
);
162 } else if ((obj_desc
->common
.type
== ACPI_TYPE_LOCAL_REGION_FIELD
) &&
163 (obj_desc
->field
.region_obj
->region
.space_id
==
165 || obj_desc
->field
.region_obj
->region
.space_id
==
167 || obj_desc
->field
.region_obj
->region
.space_id
==
168 ACPI_ADR_SPACE_IPMI
)) {
170 * This is an SMBus, GSBus or IPMI read. We must create a buffer to
171 * hold the data and then directly access the region handler.
173 * Note: SMBus and GSBus protocol value is passed in upper 16-bits
176 if (obj_desc
->field
.region_obj
->region
.space_id
==
177 ACPI_ADR_SPACE_SMBUS
) {
178 length
= ACPI_SMBUS_BUFFER_SIZE
;
180 ACPI_READ
| (obj_desc
->field
.attribute
<< 16);
181 } else if (obj_desc
->field
.region_obj
->region
.space_id
==
182 ACPI_ADR_SPACE_GSBUS
) {
183 accessor_type
= obj_desc
->field
.attribute
;
185 acpi_ex_get_serial_access_length(accessor_type
,
190 * Add additional 2 bytes for the generic_serial_bus data buffer:
192 * Status; (Byte 0 of the data buffer)
193 * Length; (Byte 1 of the data buffer)
194 * Data[x-1]: (Bytes 2-x of the arbitrary length data buffer)
197 function
= ACPI_READ
| (accessor_type
<< 16);
200 length
= ACPI_IPMI_BUFFER_SIZE
;
201 function
= ACPI_READ
;
204 buffer_desc
= acpi_ut_create_buffer_object(length
);
206 return_ACPI_STATUS(AE_NO_MEMORY
);
209 /* Lock entire transaction if requested */
211 acpi_ex_acquire_global_lock(obj_desc
->common_field
.field_flags
);
213 /* Call the region handler for the read */
215 status
= acpi_ex_access_region(obj_desc
, 0,
221 acpi_ex_release_global_lock(obj_desc
->common_field
.field_flags
);
226 * Allocate a buffer for the contents of the field.
228 * If the field is larger than the current integer width, create
229 * a BUFFER to hold it. Otherwise, use an INTEGER. This allows
230 * the use of arithmetic operators on the returned value if the
231 * field size is equal or smaller than an Integer.
233 * Note: Field.length is in bits.
236 (acpi_size
)ACPI_ROUND_BITS_UP_TO_BYTES(obj_desc
->field
.bit_length
);
238 if (length
> acpi_gbl_integer_byte_width
) {
240 /* Field is too large for an Integer, create a Buffer instead */
242 buffer_desc
= acpi_ut_create_buffer_object(length
);
244 return_ACPI_STATUS(AE_NO_MEMORY
);
246 buffer
= buffer_desc
->buffer
.pointer
;
248 /* Field will fit within an Integer (normal case) */
250 buffer_desc
= acpi_ut_create_integer_object((u64
) 0);
252 return_ACPI_STATUS(AE_NO_MEMORY
);
255 length
= acpi_gbl_integer_byte_width
;
256 buffer
= &buffer_desc
->integer
.value
;
259 if ((obj_desc
->common
.type
== ACPI_TYPE_LOCAL_REGION_FIELD
) &&
260 (obj_desc
->field
.region_obj
->region
.space_id
==
261 ACPI_ADR_SPACE_GPIO
)) {
263 * For GPIO (general_purpose_io), the Address will be the bit offset
264 * from the previous Connection() operator, making it effectively a
265 * pin number index. The bit_length is the length of the field, which
266 * is thus the number of pins.
268 ACPI_DEBUG_PRINT((ACPI_DB_BFIELD
,
269 "GPIO FieldRead [FROM]: Pin %u Bits %u\n",
270 obj_desc
->field
.pin_number_index
,
271 obj_desc
->field
.bit_length
));
273 /* Lock entire transaction if requested */
275 acpi_ex_acquire_global_lock(obj_desc
->common_field
.field_flags
);
277 /* Perform the write */
280 acpi_ex_access_region(obj_desc
, 0, (u64
*)buffer
,
283 acpi_ex_release_global_lock(obj_desc
->common_field
.field_flags
);
284 if (ACPI_FAILURE(status
)) {
285 acpi_ut_remove_reference(buffer_desc
);
287 *ret_buffer_desc
= buffer_desc
;
289 return_ACPI_STATUS(status
);
292 ACPI_DEBUG_PRINT((ACPI_DB_BFIELD
,
293 "FieldRead [TO]: Obj %p, Type %X, Buf %p, ByteLen %X\n",
294 obj_desc
, obj_desc
->common
.type
, buffer
,
296 ACPI_DEBUG_PRINT((ACPI_DB_BFIELD
,
297 "FieldRead [FROM]: BitLen %X, BitOff %X, ByteOff %X\n",
298 obj_desc
->common_field
.bit_length
,
299 obj_desc
->common_field
.start_field_bit_offset
,
300 obj_desc
->common_field
.base_byte_offset
));
302 /* Lock entire transaction if requested */
304 acpi_ex_acquire_global_lock(obj_desc
->common_field
.field_flags
);
306 /* Read from the field */
308 status
= acpi_ex_extract_from_field(obj_desc
, buffer
, (u32
) length
);
309 acpi_ex_release_global_lock(obj_desc
->common_field
.field_flags
);
312 if (ACPI_FAILURE(status
)) {
313 acpi_ut_remove_reference(buffer_desc
);
315 *ret_buffer_desc
= buffer_desc
;
318 return_ACPI_STATUS(status
);
321 /*******************************************************************************
323 * FUNCTION: acpi_ex_write_data_to_field
325 * PARAMETERS: source_desc - Contains data to write
326 * obj_desc - The named field
327 * result_desc - Where the return value is returned, if any
331 * DESCRIPTION: Write to a named field
333 ******************************************************************************/
336 acpi_ex_write_data_to_field(union acpi_operand_object
*source_desc
,
337 union acpi_operand_object
*obj_desc
,
338 union acpi_operand_object
**result_desc
)
343 union acpi_operand_object
*buffer_desc
;
347 ACPI_FUNCTION_TRACE_PTR(ex_write_data_to_field
, obj_desc
);
349 /* Parameter validation */
351 if (!source_desc
|| !obj_desc
) {
352 return_ACPI_STATUS(AE_AML_NO_OPERAND
);
355 if (obj_desc
->common
.type
== ACPI_TYPE_BUFFER_FIELD
) {
357 * If the buffer_field arguments have not been previously evaluated,
358 * evaluate them now and save the results.
360 if (!(obj_desc
->common
.flags
& AOPOBJ_DATA_VALID
)) {
361 status
= acpi_ds_get_buffer_field_arguments(obj_desc
);
362 if (ACPI_FAILURE(status
)) {
363 return_ACPI_STATUS(status
);
366 } else if ((obj_desc
->common
.type
== ACPI_TYPE_LOCAL_REGION_FIELD
) &&
367 (obj_desc
->field
.region_obj
->region
.space_id
==
369 || obj_desc
->field
.region_obj
->region
.space_id
==
371 || obj_desc
->field
.region_obj
->region
.space_id
==
372 ACPI_ADR_SPACE_IPMI
)) {
374 * This is an SMBus, GSBus or IPMI write. We will bypass the entire
375 * field mechanism and handoff the buffer directly to the handler.
376 * For these address spaces, the buffer is bi-directional; on a
377 * write, return data is returned in the same buffer.
379 * Source must be a buffer of sufficient size:
380 * ACPI_SMBUS_BUFFER_SIZE, ACPI_GSBUS_BUFFER_SIZE, or
381 * ACPI_IPMI_BUFFER_SIZE.
383 * Note: SMBus and GSBus protocol type is passed in upper 16-bits
386 if (source_desc
->common
.type
!= ACPI_TYPE_BUFFER
) {
388 "SMBus/IPMI/GenericSerialBus write requires "
389 "Buffer, found type %s",
390 acpi_ut_get_object_type_name(source_desc
)));
392 return_ACPI_STATUS(AE_AML_OPERAND_TYPE
);
395 if (obj_desc
->field
.region_obj
->region
.space_id
==
396 ACPI_ADR_SPACE_SMBUS
) {
397 length
= ACPI_SMBUS_BUFFER_SIZE
;
399 ACPI_WRITE
| (obj_desc
->field
.attribute
<< 16);
400 } else if (obj_desc
->field
.region_obj
->region
.space_id
==
401 ACPI_ADR_SPACE_GSBUS
) {
402 accessor_type
= obj_desc
->field
.attribute
;
404 acpi_ex_get_serial_access_length(accessor_type
,
409 * Add additional 2 bytes for the generic_serial_bus data buffer:
411 * Status; (Byte 0 of the data buffer)
412 * Length; (Byte 1 of the data buffer)
413 * Data[x-1]: (Bytes 2-x of the arbitrary length data buffer)
416 function
= ACPI_WRITE
| (accessor_type
<< 16);
419 length
= ACPI_IPMI_BUFFER_SIZE
;
420 function
= ACPI_WRITE
;
423 if (source_desc
->buffer
.length
< length
) {
425 "SMBus/IPMI/GenericSerialBus write requires "
426 "Buffer of length %u, found length %u",
427 length
, source_desc
->buffer
.length
));
429 return_ACPI_STATUS(AE_AML_BUFFER_LIMIT
);
432 /* Create the bi-directional buffer */
434 buffer_desc
= acpi_ut_create_buffer_object(length
);
436 return_ACPI_STATUS(AE_NO_MEMORY
);
439 buffer
= buffer_desc
->buffer
.pointer
;
440 memcpy(buffer
, source_desc
->buffer
.pointer
, length
);
442 /* Lock entire transaction if requested */
444 acpi_ex_acquire_global_lock(obj_desc
->common_field
.field_flags
);
447 * Perform the write (returns status and perhaps data in the
451 acpi_ex_access_region(obj_desc
, 0, (u64
*)buffer
, function
);
452 acpi_ex_release_global_lock(obj_desc
->common_field
.field_flags
);
454 *result_desc
= buffer_desc
;
455 return_ACPI_STATUS(status
);
456 } else if ((obj_desc
->common
.type
== ACPI_TYPE_LOCAL_REGION_FIELD
) &&
457 (obj_desc
->field
.region_obj
->region
.space_id
==
458 ACPI_ADR_SPACE_GPIO
)) {
460 * For GPIO (general_purpose_io), we will bypass the entire field
461 * mechanism and handoff the bit address and bit width directly to
462 * the handler. The Address will be the bit offset
463 * from the previous Connection() operator, making it effectively a
464 * pin number index. The bit_length is the length of the field, which
465 * is thus the number of pins.
467 if (source_desc
->common
.type
!= ACPI_TYPE_INTEGER
) {
468 return_ACPI_STATUS(AE_AML_OPERAND_TYPE
);
471 ACPI_DEBUG_PRINT((ACPI_DB_BFIELD
,
472 "GPIO FieldWrite [FROM]: (%s:%X), Val %.8X [TO]: Pin %u Bits %u\n",
473 acpi_ut_get_type_name(source_desc
->common
.
475 source_desc
->common
.type
,
476 (u32
)source_desc
->integer
.value
,
477 obj_desc
->field
.pin_number_index
,
478 obj_desc
->field
.bit_length
));
480 buffer
= &source_desc
->integer
.value
;
482 /* Lock entire transaction if requested */
484 acpi_ex_acquire_global_lock(obj_desc
->common_field
.field_flags
);
486 /* Perform the write */
489 acpi_ex_access_region(obj_desc
, 0, (u64
*)buffer
,
491 acpi_ex_release_global_lock(obj_desc
->common_field
.field_flags
);
492 return_ACPI_STATUS(status
);
495 /* Get a pointer to the data to be written */
497 switch (source_desc
->common
.type
) {
498 case ACPI_TYPE_INTEGER
:
500 buffer
= &source_desc
->integer
.value
;
501 length
= sizeof(source_desc
->integer
.value
);
504 case ACPI_TYPE_BUFFER
:
506 buffer
= source_desc
->buffer
.pointer
;
507 length
= source_desc
->buffer
.length
;
510 case ACPI_TYPE_STRING
:
512 buffer
= source_desc
->string
.pointer
;
513 length
= source_desc
->string
.length
;
518 return_ACPI_STATUS(AE_AML_OPERAND_TYPE
);
521 ACPI_DEBUG_PRINT((ACPI_DB_BFIELD
,
522 "FieldWrite [FROM]: Obj %p (%s:%X), Buf %p, ByteLen %X\n",
524 acpi_ut_get_type_name(source_desc
->common
.type
),
525 source_desc
->common
.type
, buffer
, length
));
527 ACPI_DEBUG_PRINT((ACPI_DB_BFIELD
,
528 "FieldWrite [TO]: Obj %p (%s:%X), BitLen %X, BitOff %X, ByteOff %X\n",
530 acpi_ut_get_type_name(obj_desc
->common
.type
),
531 obj_desc
->common
.type
,
532 obj_desc
->common_field
.bit_length
,
533 obj_desc
->common_field
.start_field_bit_offset
,
534 obj_desc
->common_field
.base_byte_offset
));
536 /* Lock entire transaction if requested */
538 acpi_ex_acquire_global_lock(obj_desc
->common_field
.field_flags
);
540 /* Write to the field */
542 status
= acpi_ex_insert_into_field(obj_desc
, buffer
, length
);
543 acpi_ex_release_global_lock(obj_desc
->common_field
.field_flags
);
545 return_ACPI_STATUS(status
);