1 /******************************************************************************
 
   3  * Module Name: exoparg2 - AML execution - opcodes with 2 arguments
 
   5  *****************************************************************************/
 
   8  * Copyright (C) 2000 - 2008, 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>
 
  45 #include <acpi/acparser.h>
 
  46 #include <acpi/acinterp.h>
 
  47 #include <acpi/acevents.h>
 
  48 #include <acpi/amlcode.h>
 
  50 #define _COMPONENT          ACPI_EXECUTER
 
  51 ACPI_MODULE_NAME("exoparg2")
 
  54  * Naming convention for AML interpreter execution routines.
 
  56  * The routines that begin execution of AML opcodes are named with a common
 
  57  * convention based upon the number of arguments, the number of target operands,
 
  58  * and whether or not a value is returned:
 
  60  *      AcpiExOpcode_xA_yT_zR
 
  64  * xA - ARGUMENTS:    The number of arguments (input operands) that are
 
  65  *                    required for this opcode type (1 through 6 args).
 
  66  * yT - TARGETS:      The number of targets (output operands) that are required
 
  67  *                    for this opcode type (0, 1, or 2 targets).
 
  68  * zR - RETURN VALUE: Indicates whether this opcode type returns a value
 
  69  *                    as the function return (0 or 1).
 
  71  * The AcpiExOpcode* functions are called via the Dispatcher component with
 
  72  * fully resolved operands.
 
  74 /*******************************************************************************
 
  76  * FUNCTION:    acpi_ex_opcode_2A_0T_0R
 
  78  * PARAMETERS:  walk_state          - Current walk state
 
  82  * DESCRIPTION: Execute opcode with two arguments, no target, and no return
 
  85  * ALLOCATION:  Deletes both operands
 
  87  ******************************************************************************/
 
  88 acpi_status acpi_ex_opcode_2A_0T_0R(struct acpi_walk_state *walk_state)
 
  90         union acpi_operand_object **operand = &walk_state->operands[0];
 
  91         struct acpi_namespace_node *node;
 
  93         acpi_status status = AE_OK;
 
  95         ACPI_FUNCTION_TRACE_STR(ex_opcode_2A_0T_0R,
 
  96                                 acpi_ps_get_opcode_name(walk_state->opcode));
 
  98         /* Examine the opcode */
 
 100         switch (walk_state->opcode) {
 
 101         case AML_NOTIFY_OP:     /* Notify (notify_object, notify_value) */
 
 103                 /* The first operand is a namespace node */
 
 105                 node = (struct acpi_namespace_node *)operand[0];
 
 107                 /* Second value is the notify value */
 
 109                 value = (u32) operand[1]->integer.value;
 
 111                 /* Are notifies allowed on this object? */
 
 113                 if (!acpi_ev_is_notify_object(node)) {
 
 115                                     "Unexpected notify object type [%s]",
 
 116                                     acpi_ut_get_type_name(node->type)));
 
 118                         status = AE_AML_OPERAND_TYPE;
 
 121 #ifdef ACPI_GPE_NOTIFY_CHECK
 
 123                  * GPE method wake/notify check.  Here, we want to ensure that we
 
 124                  * don't receive any "DeviceWake" Notifies from a GPE _Lxx or _Exx
 
 125                  * GPE method during system runtime.  If we do, the GPE is marked
 
 126                  * as "wake-only" and disabled.
 
 128                  * 1) Is the Notify() value == device_wake?
 
 129                  * 2) Is this a GPE deferred method?  (An _Lxx or _Exx method)
 
 130                  * 3) Did the original GPE happen at system runtime?
 
 131                  *    (versus during wake)
 
 133                  * If all three cases are true, this is a wake-only GPE that should
 
 134                  * be disabled at runtime.
 
 136                 if (value == 2) {       /* device_wake */
 
 138                             acpi_ev_check_for_wake_only_gpe(walk_state->
 
 140                         if (ACPI_FAILURE(status)) {
 
 142                                 /* AE_WAKE_ONLY_GPE only error, means ignore this notify */
 
 144                                 return_ACPI_STATUS(AE_OK)
 
 150                  * Dispatch the notify to the appropriate handler
 
 151                  * NOTE: the request is queued for execution after this method
 
 152                  * completes.  The notify handlers are NOT invoked synchronously
 
 153                  * from this thread -- because handlers may in turn run other
 
 156                 status = acpi_ev_queue_notify_request(node, value);
 
 161                 ACPI_ERROR((AE_INFO, "Unknown AML opcode %X",
 
 162                             walk_state->opcode));
 
 163                 status = AE_AML_BAD_OPCODE;
 
 166         return_ACPI_STATUS(status);
 
 169 /*******************************************************************************
 
 171  * FUNCTION:    acpi_ex_opcode_2A_2T_1R
 
 173  * PARAMETERS:  walk_state          - Current walk state
 
 177  * DESCRIPTION: Execute a dyadic operator (2 operands) with 2 output targets
 
 178  *              and one implicit return value.
 
 180  ******************************************************************************/
 
 182 acpi_status acpi_ex_opcode_2A_2T_1R(struct acpi_walk_state *walk_state)
 
 184         union acpi_operand_object **operand = &walk_state->operands[0];
 
 185         union acpi_operand_object *return_desc1 = NULL;
 
 186         union acpi_operand_object *return_desc2 = NULL;
 
 189         ACPI_FUNCTION_TRACE_STR(ex_opcode_2A_2T_1R,
 
 190                                 acpi_ps_get_opcode_name(walk_state->opcode));
 
 192         /* Execute the opcode */
 
 194         switch (walk_state->opcode) {
 
 197                 /* Divide (Dividend, Divisor, remainder_result quotient_result) */
 
 200                     acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 
 202                         status = AE_NO_MEMORY;
 
 207                     acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 
 209                         status = AE_NO_MEMORY;
 
 213                 /* Quotient to return_desc1, remainder to return_desc2 */
 
 215                 status = acpi_ut_divide(operand[0]->integer.value,
 
 216                                         operand[1]->integer.value,
 
 217                                         &return_desc1->integer.value,
 
 218                                         &return_desc2->integer.value);
 
 219                 if (ACPI_FAILURE(status)) {
 
 226                 ACPI_ERROR((AE_INFO, "Unknown AML opcode %X",
 
 227                             walk_state->opcode));
 
 228                 status = AE_AML_BAD_OPCODE;
 
 232         /* Store the results to the target reference operands */
 
 234         status = acpi_ex_store(return_desc2, operand[2], walk_state);
 
 235         if (ACPI_FAILURE(status)) {
 
 239         status = acpi_ex_store(return_desc1, operand[3], walk_state);
 
 240         if (ACPI_FAILURE(status)) {
 
 246          * Since the remainder is not returned indirectly, remove a reference to
 
 247          * it. Only the quotient is returned indirectly.
 
 249         acpi_ut_remove_reference(return_desc2);
 
 251         if (ACPI_FAILURE(status)) {
 
 253                 /* Delete the return object */
 
 255                 acpi_ut_remove_reference(return_desc1);
 
 258         /* Save return object (the remainder) on success */
 
 261                 walk_state->result_obj = return_desc1;
 
 264         return_ACPI_STATUS(status);
 
 267 /*******************************************************************************
 
 269  * FUNCTION:    acpi_ex_opcode_2A_1T_1R
 
 271  * PARAMETERS:  walk_state          - Current walk state
 
 275  * DESCRIPTION: Execute opcode with two arguments, one target, and a return
 
 278  ******************************************************************************/
 
 280 acpi_status acpi_ex_opcode_2A_1T_1R(struct acpi_walk_state *walk_state)
 
 282         union acpi_operand_object **operand = &walk_state->operands[0];
 
 283         union acpi_operand_object *return_desc = NULL;
 
 285         acpi_status status = AE_OK;
 
 288         ACPI_FUNCTION_TRACE_STR(ex_opcode_2A_1T_1R,
 
 289                                 acpi_ps_get_opcode_name(walk_state->opcode));
 
 291         /* Execute the opcode */
 
 293         if (walk_state->op_info->flags & AML_MATH) {
 
 295                 /* All simple math opcodes (add, etc.) */
 
 297                 return_desc = acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 
 299                         status = AE_NO_MEMORY;
 
 303                 return_desc->integer.value =
 
 304                     acpi_ex_do_math_op(walk_state->opcode,
 
 305                                        operand[0]->integer.value,
 
 306                                        operand[1]->integer.value);
 
 307                 goto store_result_to_target;
 
 310         switch (walk_state->opcode) {
 
 311         case AML_MOD_OP:        /* Mod (Dividend, Divisor, remainder_result (ACPI 2.0) */
 
 313                 return_desc = acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 
 315                         status = AE_NO_MEMORY;
 
 319                 /* return_desc will contain the remainder */
 
 321                 status = acpi_ut_divide(operand[0]->integer.value,
 
 322                                         operand[1]->integer.value,
 
 323                                         NULL, &return_desc->integer.value);
 
 326         case AML_CONCAT_OP:     /* Concatenate (Data1, Data2, Result) */
 
 328                 status = acpi_ex_do_concatenate(operand[0], operand[1],
 
 329                                                 &return_desc, walk_state);
 
 332         case AML_TO_STRING_OP:  /* to_string (Buffer, Length, Result) (ACPI 2.0) */
 
 335                  * Input object is guaranteed to be a buffer at this point (it may have
 
 336                  * been converted.)  Copy the raw buffer data to a new object of
 
 341                  * Get the length of the new string. It is the smallest of:
 
 342                  * 1) Length of the input buffer
 
 343                  * 2) Max length as specified in the to_string operator
 
 344                  * 3) Length of input buffer up to a zero byte (null terminator)
 
 346                  * NOTE: A length of zero is ok, and will create a zero-length, null
 
 350                 while ((length < operand[0]->buffer.length) &&
 
 351                        (length < operand[1]->integer.value) &&
 
 352                        (operand[0]->buffer.pointer[length])) {
 
 356                 /* Allocate a new string object */
 
 358                 return_desc = acpi_ut_create_string_object(length);
 
 360                         status = AE_NO_MEMORY;
 
 365                  * Copy the raw buffer data with no transform.
 
 366                  * (NULL terminated already)
 
 368                 ACPI_MEMCPY(return_desc->string.pointer,
 
 369                             operand[0]->buffer.pointer, length);
 
 372         case AML_CONCAT_RES_OP:
 
 374                 /* concatenate_res_template (Buffer, Buffer, Result) (ACPI 2.0) */
 
 376                 status = acpi_ex_concat_template(operand[0], operand[1],
 
 377                                                  &return_desc, walk_state);
 
 380         case AML_INDEX_OP:      /* Index (Source Index Result) */
 
 382                 /* Create the internal return object */
 
 385                     acpi_ut_create_internal_object(ACPI_TYPE_LOCAL_REFERENCE);
 
 387                         status = AE_NO_MEMORY;
 
 391                 /* Initialize the Index reference object */
 
 393                 index = operand[1]->integer.value;
 
 394                 return_desc->reference.value = (u32) index;
 
 395                 return_desc->reference.class = ACPI_REFCLASS_INDEX;
 
 398                  * At this point, the Source operand is a String, Buffer, or Package.
 
 399                  * Verify that the index is within range.
 
 401                 switch (ACPI_GET_OBJECT_TYPE(operand[0])) {
 
 402                 case ACPI_TYPE_STRING:
 
 404                         if (index >= operand[0]->string.length) {
 
 405                                 status = AE_AML_STRING_LIMIT;
 
 408                         return_desc->reference.target_type =
 
 409                             ACPI_TYPE_BUFFER_FIELD;
 
 412                 case ACPI_TYPE_BUFFER:
 
 414                         if (index >= operand[0]->buffer.length) {
 
 415                                 status = AE_AML_BUFFER_LIMIT;
 
 418                         return_desc->reference.target_type =
 
 419                             ACPI_TYPE_BUFFER_FIELD;
 
 422                 case ACPI_TYPE_PACKAGE:
 
 424                         if (index >= operand[0]->package.count) {
 
 425                                 status = AE_AML_PACKAGE_LIMIT;
 
 428                         return_desc->reference.target_type = ACPI_TYPE_PACKAGE;
 
 429                         return_desc->reference.where =
 
 430                             &operand[0]->package.elements[index];
 
 435                         status = AE_AML_INTERNAL;
 
 439                 /* Failure means that the Index was beyond the end of the object */
 
 441                 if (ACPI_FAILURE(status)) {
 
 442                         ACPI_EXCEPTION((AE_INFO, status,
 
 443                                         "Index (%X%8.8X) is beyond end of object",
 
 444                                         ACPI_FORMAT_UINT64(index)));
 
 449                  * Save the target object and add a reference to it for the life
 
 452                 return_desc->reference.object = operand[0];
 
 453                 acpi_ut_add_reference(operand[0]);
 
 455                 /* Store the reference to the Target */
 
 457                 status = acpi_ex_store(return_desc, operand[2], walk_state);
 
 459                 /* Return the reference */
 
 461                 walk_state->result_obj = return_desc;
 
 466                 ACPI_ERROR((AE_INFO, "Unknown AML opcode %X",
 
 467                             walk_state->opcode));
 
 468                 status = AE_AML_BAD_OPCODE;
 
 472       store_result_to_target:
 
 474         if (ACPI_SUCCESS(status)) {
 
 476                  * Store the result of the operation (which is now in return_desc) into
 
 477                  * the Target descriptor.
 
 479                 status = acpi_ex_store(return_desc, operand[2], walk_state);
 
 480                 if (ACPI_FAILURE(status)) {
 
 484                 if (!walk_state->result_obj) {
 
 485                         walk_state->result_obj = return_desc;
 
 491         /* Delete return object on error */
 
 493         if (ACPI_FAILURE(status)) {
 
 494                 acpi_ut_remove_reference(return_desc);
 
 495                 walk_state->result_obj = NULL;
 
 498         return_ACPI_STATUS(status);
 
 501 /*******************************************************************************
 
 503  * FUNCTION:    acpi_ex_opcode_2A_0T_1R
 
 505  * PARAMETERS:  walk_state          - Current walk state
 
 509  * DESCRIPTION: Execute opcode with 2 arguments, no target, and a return value
 
 511  ******************************************************************************/
 
 513 acpi_status acpi_ex_opcode_2A_0T_1R(struct acpi_walk_state *walk_state)
 
 515         union acpi_operand_object **operand = &walk_state->operands[0];
 
 516         union acpi_operand_object *return_desc = NULL;
 
 517         acpi_status status = AE_OK;
 
 518         u8 logical_result = FALSE;
 
 520         ACPI_FUNCTION_TRACE_STR(ex_opcode_2A_0T_1R,
 
 521                                 acpi_ps_get_opcode_name(walk_state->opcode));
 
 523         /* Create the internal return object */
 
 525         return_desc = acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 
 527                 status = AE_NO_MEMORY;
 
 531         /* Execute the Opcode */
 
 533         if (walk_state->op_info->flags & AML_LOGICAL_NUMERIC) {
 
 535                 /* logical_op (Operand0, Operand1) */
 
 537                 status = acpi_ex_do_logical_numeric_op(walk_state->opcode,
 
 541                                                        value, &logical_result);
 
 542                 goto store_logical_result;
 
 543         } else if (walk_state->op_info->flags & AML_LOGICAL) {
 
 545                 /* logical_op (Operand0, Operand1) */
 
 547                 status = acpi_ex_do_logical_op(walk_state->opcode, operand[0],
 
 548                                                operand[1], &logical_result);
 
 549                 goto store_logical_result;
 
 552         switch (walk_state->opcode) {
 
 553         case AML_ACQUIRE_OP:    /* Acquire (mutex_object, Timeout) */
 
 556                     acpi_ex_acquire_mutex(operand[1], operand[0], walk_state);
 
 557                 if (status == AE_TIME) {
 
 558                         logical_result = TRUE;  /* TRUE = Acquire timed out */
 
 563         case AML_WAIT_OP:       /* Wait (event_object, Timeout) */
 
 565                 status = acpi_ex_system_wait_event(operand[1], operand[0]);
 
 566                 if (status == AE_TIME) {
 
 567                         logical_result = TRUE;  /* TRUE, Wait timed out */
 
 574                 ACPI_ERROR((AE_INFO, "Unknown AML opcode %X",
 
 575                             walk_state->opcode));
 
 576                 status = AE_AML_BAD_OPCODE;
 
 580       store_logical_result:
 
 582          * Set return value to according to logical_result. logical TRUE (all ones)
 
 583          * Default is FALSE (zero)
 
 585         if (logical_result) {
 
 586                 return_desc->integer.value = ACPI_INTEGER_MAX;
 
 591         /* Delete return object on error */
 
 593         if (ACPI_FAILURE(status)) {
 
 594                 acpi_ut_remove_reference(return_desc);
 
 597         /* Save return object on success */
 
 600                 walk_state->result_obj = return_desc;
 
 603         return_ACPI_STATUS(status);