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v3.1
   1
   2/******************************************************************************
   3 *
   4 * Module Name: exoparg1 - AML execution - opcodes with 1 argument
   5 *
 
 
   6 *****************************************************************************/
   7
   8/*
   9 * Copyright (C) 2000 - 2011, Intel Corp.
  10 * All rights reserved.
  11 *
  12 * Redistribution and use in source and binary forms, with or without
  13 * modification, are permitted provided that the following conditions
  14 * are met:
  15 * 1. Redistributions of source code must retain the above copyright
  16 *    notice, this list of conditions, and the following disclaimer,
  17 *    without modification.
  18 * 2. Redistributions in binary form must reproduce at minimum a disclaimer
  19 *    substantially similar to the "NO WARRANTY" disclaimer below
  20 *    ("Disclaimer") and any redistribution must be conditioned upon
  21 *    including a substantially similar Disclaimer requirement for further
  22 *    binary redistribution.
  23 * 3. Neither the names of the above-listed copyright holders nor the names
  24 *    of any contributors may be used to endorse or promote products derived
  25 *    from this software without specific prior written permission.
  26 *
  27 * Alternatively, this software may be distributed under the terms of the
  28 * GNU General Public License ("GPL") version 2 as published by the Free
  29 * Software Foundation.
  30 *
  31 * NO WARRANTY
  32 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
  33 * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
  34 * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR
  35 * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
  36 * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
  37 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
  38 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
  39 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
  40 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
  41 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  42 * POSSIBILITY OF SUCH DAMAGES.
  43 */
  44
  45#include <acpi/acpi.h>
  46#include "accommon.h"
  47#include "acparser.h"
  48#include "acdispat.h"
  49#include "acinterp.h"
  50#include "amlcode.h"
  51#include "acnamesp.h"
  52
  53#define _COMPONENT          ACPI_EXECUTER
  54ACPI_MODULE_NAME("exoparg1")
  55
  56/*!
  57 * Naming convention for AML interpreter execution routines.
  58 *
  59 * The routines that begin execution of AML opcodes are named with a common
  60 * convention based upon the number of arguments, the number of target operands,
  61 * and whether or not a value is returned:
  62 *
  63 *      AcpiExOpcode_xA_yT_zR
  64 *
  65 * Where:
  66 *
  67 * xA - ARGUMENTS:    The number of arguments (input operands) that are
  68 *                    required for this opcode type (0 through 6 args).
  69 * yT - TARGETS:      The number of targets (output operands) that are required
  70 *                    for this opcode type (0, 1, or 2 targets).
  71 * zR - RETURN VALUE: Indicates whether this opcode type returns a value
  72 *                    as the function return (0 or 1).
  73 *
  74 * The AcpiExOpcode* functions are called via the Dispatcher component with
  75 * fully resolved operands.
  76!*/
  77/*******************************************************************************
  78 *
  79 * FUNCTION:    acpi_ex_opcode_0A_0T_1R
  80 *
  81 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
  82 *
  83 * RETURN:      Status
  84 *
  85 * DESCRIPTION: Execute operator with no operands, one return value
  86 *
  87 ******************************************************************************/
  88acpi_status acpi_ex_opcode_0A_0T_1R(struct acpi_walk_state *walk_state)
  89{
  90	acpi_status status = AE_OK;
  91	union acpi_operand_object *return_desc = NULL;
  92
  93	ACPI_FUNCTION_TRACE_STR(ex_opcode_0A_0T_1R,
  94				acpi_ps_get_opcode_name(walk_state->opcode));
  95
  96	/* Examine the AML opcode */
  97
  98	switch (walk_state->opcode) {
  99	case AML_TIMER_OP:	/*  Timer () */
 100
 101		/* Create a return object of type Integer */
 102
 103		return_desc =
 104		    acpi_ut_create_integer_object(acpi_os_get_timer());
 105		if (!return_desc) {
 106			status = AE_NO_MEMORY;
 107			goto cleanup;
 108		}
 109		break;
 110
 111	default:		/*  Unknown opcode  */
 112
 113		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
 114			    walk_state->opcode));
 115		status = AE_AML_BAD_OPCODE;
 116		break;
 117	}
 118
 119      cleanup:
 120
 121	/* Delete return object on error */
 122
 123	if ((ACPI_FAILURE(status)) || walk_state->result_obj) {
 124		acpi_ut_remove_reference(return_desc);
 125		walk_state->result_obj = NULL;
 126	} else {
 127		/* Save the return value */
 128
 129		walk_state->result_obj = return_desc;
 130	}
 131
 132	return_ACPI_STATUS(status);
 133}
 134
 135/*******************************************************************************
 136 *
 137 * FUNCTION:    acpi_ex_opcode_1A_0T_0R
 138 *
 139 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
 140 *
 141 * RETURN:      Status
 142 *
 143 * DESCRIPTION: Execute Type 1 monadic operator with numeric operand on
 144 *              object stack
 145 *
 146 ******************************************************************************/
 147
 148acpi_status acpi_ex_opcode_1A_0T_0R(struct acpi_walk_state *walk_state)
 149{
 150	union acpi_operand_object **operand = &walk_state->operands[0];
 151	acpi_status status = AE_OK;
 152
 153	ACPI_FUNCTION_TRACE_STR(ex_opcode_1A_0T_0R,
 154				acpi_ps_get_opcode_name(walk_state->opcode));
 155
 156	/* Examine the AML opcode */
 157
 158	switch (walk_state->opcode) {
 159	case AML_RELEASE_OP:	/*  Release (mutex_object) */
 160
 161		status = acpi_ex_release_mutex(operand[0], walk_state);
 162		break;
 163
 164	case AML_RESET_OP:	/*  Reset (event_object) */
 165
 166		status = acpi_ex_system_reset_event(operand[0]);
 167		break;
 168
 169	case AML_SIGNAL_OP:	/*  Signal (event_object) */
 170
 171		status = acpi_ex_system_signal_event(operand[0]);
 172		break;
 173
 174	case AML_SLEEP_OP:	/*  Sleep (msec_time) */
 175
 176		status = acpi_ex_system_do_sleep(operand[0]->integer.value);
 177		break;
 178
 179	case AML_STALL_OP:	/*  Stall (usec_time) */
 180
 181		status =
 182		    acpi_ex_system_do_stall((u32) operand[0]->integer.value);
 183		break;
 184
 185	case AML_UNLOAD_OP:	/*  Unload (Handle) */
 186
 187		status = acpi_ex_unload_table(operand[0]);
 188		break;
 189
 190	default:		/*  Unknown opcode  */
 191
 192		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
 193			    walk_state->opcode));
 194		status = AE_AML_BAD_OPCODE;
 195		break;
 196	}
 197
 198	return_ACPI_STATUS(status);
 199}
 200
 
 201/*******************************************************************************
 202 *
 203 * FUNCTION:    acpi_ex_opcode_1A_1T_0R
 204 *
 205 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
 206 *
 207 * RETURN:      Status
 208 *
 209 * DESCRIPTION: Execute opcode with one argument, one target, and no
 210 *              return value.
 211 *
 212 ******************************************************************************/
 213
 214acpi_status acpi_ex_opcode_1A_1T_0R(struct acpi_walk_state *walk_state)
 215{
 216	acpi_status status = AE_OK;
 217	union acpi_operand_object **operand = &walk_state->operands[0];
 218
 219	ACPI_FUNCTION_TRACE_STR(ex_opcode_1A_1T_0R,
 220				acpi_ps_get_opcode_name(walk_state->opcode));
 221
 222	/* Examine the AML opcode */
 223
 224	switch (walk_state->opcode) {
 
 225	case AML_LOAD_OP:
 226
 227		status = acpi_ex_load_op(operand[0], operand[1], walk_state);
 228		break;
 
 229
 230	default:		/* Unknown opcode */
 231
 232		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
 233			    walk_state->opcode));
 234		status = AE_AML_BAD_OPCODE;
 235		goto cleanup;
 236	}
 237
 238      cleanup:
 239
 240	return_ACPI_STATUS(status);
 241}
 
 242
 243/*******************************************************************************
 244 *
 245 * FUNCTION:    acpi_ex_opcode_1A_1T_1R
 246 *
 247 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
 248 *
 249 * RETURN:      Status
 250 *
 251 * DESCRIPTION: Execute opcode with one argument, one target, and a
 252 *              return value.
 
 
 253 *
 254 ******************************************************************************/
 255
 256acpi_status acpi_ex_opcode_1A_1T_1R(struct acpi_walk_state *walk_state)
 257{
 258	acpi_status status = AE_OK;
 259	union acpi_operand_object **operand = &walk_state->operands[0];
 260	union acpi_operand_object *return_desc = NULL;
 261	union acpi_operand_object *return_desc2 = NULL;
 262	u32 temp32;
 263	u32 i;
 264	u64 power_of_ten;
 265	u64 digit;
 266
 267	ACPI_FUNCTION_TRACE_STR(ex_opcode_1A_1T_1R,
 268				acpi_ps_get_opcode_name(walk_state->opcode));
 269
 270	/* Examine the AML opcode */
 271
 272	switch (walk_state->opcode) {
 273	case AML_BIT_NOT_OP:
 274	case AML_FIND_SET_LEFT_BIT_OP:
 275	case AML_FIND_SET_RIGHT_BIT_OP:
 276	case AML_FROM_BCD_OP:
 
 277	case AML_TO_BCD_OP:
 278	case AML_COND_REF_OF_OP:
 279
 280		/* Create a return object of type Integer for these opcodes */
 281
 282		return_desc = acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 283		if (!return_desc) {
 284			status = AE_NO_MEMORY;
 285			goto cleanup;
 286		}
 287
 288		switch (walk_state->opcode) {
 289		case AML_BIT_NOT_OP:	/* Not (Operand, Result)  */
 290
 291			return_desc->integer.value = ~operand[0]->integer.value;
 292			break;
 293
 294		case AML_FIND_SET_LEFT_BIT_OP:	/* find_set_left_bit (Operand, Result) */
 295
 296			return_desc->integer.value = operand[0]->integer.value;
 297
 298			/*
 299			 * Acpi specification describes Integer type as a little
 300			 * endian unsigned value, so this boundary condition is valid.
 301			 */
 302			for (temp32 = 0; return_desc->integer.value &&
 303			     temp32 < ACPI_INTEGER_BIT_SIZE; ++temp32) {
 304				return_desc->integer.value >>= 1;
 305			}
 306
 307			return_desc->integer.value = temp32;
 308			break;
 309
 310		case AML_FIND_SET_RIGHT_BIT_OP:	/* find_set_right_bit (Operand, Result) */
 311
 312			return_desc->integer.value = operand[0]->integer.value;
 313
 314			/*
 315			 * The Acpi specification describes Integer type as a little
 316			 * endian unsigned value, so this boundary condition is valid.
 317			 */
 318			for (temp32 = 0; return_desc->integer.value &&
 319			     temp32 < ACPI_INTEGER_BIT_SIZE; ++temp32) {
 320				return_desc->integer.value <<= 1;
 321			}
 322
 323			/* Since the bit position is one-based, subtract from 33 (65) */
 324
 325			return_desc->integer.value =
 326			    temp32 ==
 327			    0 ? 0 : (ACPI_INTEGER_BIT_SIZE + 1) - temp32;
 328			break;
 329
 330		case AML_FROM_BCD_OP:	/* from_bcd (BCDValue, Result) */
 331
 332			/*
 333			 * The 64-bit ACPI integer can hold 16 4-bit BCD characters
 334			 * (if table is 32-bit, integer can hold 8 BCD characters)
 335			 * Convert each 4-bit BCD value
 336			 */
 337			power_of_ten = 1;
 338			return_desc->integer.value = 0;
 339			digit = operand[0]->integer.value;
 340
 341			/* Convert each BCD digit (each is one nybble wide) */
 342
 343			for (i = 0;
 344			     (i < acpi_gbl_integer_nybble_width) && (digit > 0);
 345			     i++) {
 346
 347				/* Get the least significant 4-bit BCD digit */
 348
 349				temp32 = ((u32) digit) & 0xF;
 350
 351				/* Check the range of the digit */
 352
 353				if (temp32 > 9) {
 354					ACPI_ERROR((AE_INFO,
 355						    "BCD digit too large (not decimal): 0x%X",
 356						    temp32));
 357
 358					status = AE_AML_NUMERIC_OVERFLOW;
 359					goto cleanup;
 360				}
 361
 362				/* Sum the digit into the result with the current power of 10 */
 363
 364				return_desc->integer.value +=
 365				    (((u64) temp32) * power_of_ten);
 366
 367				/* Shift to next BCD digit */
 368
 369				digit >>= 4;
 370
 371				/* Next power of 10 */
 372
 373				power_of_ten *= 10;
 374			}
 375			break;
 376
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 377		case AML_TO_BCD_OP:	/* to_bcd (Operand, Result) */
 378
 379			return_desc->integer.value = 0;
 380			digit = operand[0]->integer.value;
 381
 382			/* Each BCD digit is one nybble wide */
 383
 384			for (i = 0;
 385			     (i < acpi_gbl_integer_nybble_width) && (digit > 0);
 386			     i++) {
 387				(void)acpi_ut_short_divide(digit, 10, &digit,
 388							   &temp32);
 389
 390				/*
 391				 * Insert the BCD digit that resides in the
 392				 * remainder from above
 393				 */
 394				return_desc->integer.value |=
 395				    (((u64) temp32) << ACPI_MUL_4(i));
 396			}
 397
 398			/* Overflow if there is any data left in Digit */
 399
 400			if (digit > 0) {
 401				ACPI_ERROR((AE_INFO,
 402					    "Integer too large to convert to BCD: 0x%8.8X%8.8X",
 403					    ACPI_FORMAT_UINT64(operand[0]->
 404							       integer.value)));
 405				status = AE_AML_NUMERIC_OVERFLOW;
 406				goto cleanup;
 407			}
 408			break;
 409
 410		case AML_COND_REF_OF_OP:	/* cond_ref_of (source_object, Result) */
 411
 412			/*
 413			 * This op is a little strange because the internal return value is
 414			 * different than the return value stored in the result descriptor
 415			 * (There are really two return values)
 416			 */
 417			if ((struct acpi_namespace_node *)operand[0] ==
 418			    acpi_gbl_root_node) {
 419				/*
 420				 * This means that the object does not exist in the namespace,
 421				 * return FALSE
 422				 */
 423				return_desc->integer.value = 0;
 424				goto cleanup;
 425			}
 426
 427			/* Get the object reference, store it, and remove our reference */
 428
 429			status = acpi_ex_get_object_reference(operand[0],
 430							      &return_desc2,
 431							      walk_state);
 432			if (ACPI_FAILURE(status)) {
 433				goto cleanup;
 434			}
 435
 436			status =
 437			    acpi_ex_store(return_desc2, operand[1], walk_state);
 438			acpi_ut_remove_reference(return_desc2);
 439
 440			/* The object exists in the namespace, return TRUE */
 441
 442			return_desc->integer.value = ACPI_UINT64_MAX;
 443			goto cleanup;
 444
 445		default:
 
 446			/* No other opcodes get here */
 
 447			break;
 448		}
 449		break;
 450
 451	case AML_STORE_OP:	/* Store (Source, Target) */
 452
 453		/*
 454		 * A store operand is typically a number, string, buffer or lvalue
 455		 * Be careful about deleting the source object,
 456		 * since the object itself may have been stored.
 457		 */
 458		status = acpi_ex_store(operand[0], operand[1], walk_state);
 459		if (ACPI_FAILURE(status)) {
 460			return_ACPI_STATUS(status);
 461		}
 462
 463		/* It is possible that the Store already produced a return object */
 464
 465		if (!walk_state->result_obj) {
 466			/*
 467			 * Normally, we would remove a reference on the Operand[0]
 468			 * parameter; But since it is being used as the internal return
 469			 * object (meaning we would normally increment it), the two
 470			 * cancel out, and we simply don't do anything.
 471			 */
 472			walk_state->result_obj = operand[0];
 473			walk_state->operands[0] = NULL;	/* Prevent deletion */
 474		}
 475		return_ACPI_STATUS(status);
 476
 477		/*
 478		 * ACPI 2.0 Opcodes
 479		 */
 480	case AML_COPY_OP:	/* Copy (Source, Target) */
 481
 482		status =
 483		    acpi_ut_copy_iobject_to_iobject(operand[0], &return_desc,
 484						    walk_state);
 485		break;
 486
 487	case AML_TO_DECSTRING_OP:	/* to_decimal_string (Data, Result) */
 488
 489		status = acpi_ex_convert_to_string(operand[0], &return_desc,
 490						   ACPI_EXPLICIT_CONVERT_DECIMAL);
 
 491		if (return_desc == operand[0]) {
 492
 493			/* No conversion performed, add ref to handle return value */
 
 494			acpi_ut_add_reference(return_desc);
 495		}
 496		break;
 497
 498	case AML_TO_HEXSTRING_OP:	/* to_hex_string (Data, Result) */
 499
 500		status = acpi_ex_convert_to_string(operand[0], &return_desc,
 501						   ACPI_EXPLICIT_CONVERT_HEX);
 
 502		if (return_desc == operand[0]) {
 503
 504			/* No conversion performed, add ref to handle return value */
 
 505			acpi_ut_add_reference(return_desc);
 506		}
 507		break;
 508
 509	case AML_TO_BUFFER_OP:	/* to_buffer (Data, Result) */
 510
 511		status = acpi_ex_convert_to_buffer(operand[0], &return_desc);
 512		if (return_desc == operand[0]) {
 513
 514			/* No conversion performed, add ref to handle return value */
 
 515			acpi_ut_add_reference(return_desc);
 516		}
 517		break;
 518
 519	case AML_TO_INTEGER_OP:	/* to_integer (Data, Result) */
 520
 521		status = acpi_ex_convert_to_integer(operand[0], &return_desc,
 522						    ACPI_ANY_BASE);
 
 
 523		if (return_desc == operand[0]) {
 524
 525			/* No conversion performed, add ref to handle return value */
 
 526			acpi_ut_add_reference(return_desc);
 527		}
 528		break;
 529
 530	case AML_SHIFT_LEFT_BIT_OP:	/* shift_left_bit (Source, bit_num) */
 531	case AML_SHIFT_RIGHT_BIT_OP:	/* shift_right_bit (Source, bit_num) */
 532
 533		/* These are two obsolete opcodes */
 534
 535		ACPI_ERROR((AE_INFO,
 536			    "%s is obsolete and not implemented",
 537			    acpi_ps_get_opcode_name(walk_state->opcode)));
 538		status = AE_SUPPORT;
 539		goto cleanup;
 540
 541	default:		/* Unknown opcode */
 542
 543		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
 544			    walk_state->opcode));
 545		status = AE_AML_BAD_OPCODE;
 546		goto cleanup;
 547	}
 548
 549	if (ACPI_SUCCESS(status)) {
 550
 551		/* Store the return value computed above into the target object */
 552
 553		status = acpi_ex_store(return_desc, operand[1], walk_state);
 554	}
 555
 556      cleanup:
 557
 558	/* Delete return object on error */
 559
 560	if (ACPI_FAILURE(status)) {
 561		acpi_ut_remove_reference(return_desc);
 562	}
 563
 564	/* Save return object on success */
 565
 566	else if (!walk_state->result_obj) {
 567		walk_state->result_obj = return_desc;
 568	}
 569
 570	return_ACPI_STATUS(status);
 571}
 572
 573/*******************************************************************************
 574 *
 575 * FUNCTION:    acpi_ex_opcode_1A_0T_1R
 576 *
 577 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
 578 *
 579 * RETURN:      Status
 580 *
 581 * DESCRIPTION: Execute opcode with one argument, no target, and a return value
 582 *
 583 ******************************************************************************/
 584
 585acpi_status acpi_ex_opcode_1A_0T_1R(struct acpi_walk_state *walk_state)
 586{
 587	union acpi_operand_object **operand = &walk_state->operands[0];
 588	union acpi_operand_object *temp_desc;
 589	union acpi_operand_object *return_desc = NULL;
 590	acpi_status status = AE_OK;
 591	u32 type;
 592	u64 value;
 593
 594	ACPI_FUNCTION_TRACE_STR(ex_opcode_1A_0T_1R,
 595				acpi_ps_get_opcode_name(walk_state->opcode));
 596
 597	/* Examine the AML opcode */
 598
 599	switch (walk_state->opcode) {
 600	case AML_LNOT_OP:	/* LNot (Operand) */
 601
 602		return_desc = acpi_ut_create_integer_object((u64) 0);
 603		if (!return_desc) {
 604			status = AE_NO_MEMORY;
 605			goto cleanup;
 606		}
 607
 608		/*
 609		 * Set result to ONES (TRUE) if Value == 0.  Note:
 610		 * return_desc->Integer.Value is initially == 0 (FALSE) from above.
 611		 */
 612		if (!operand[0]->integer.value) {
 613			return_desc->integer.value = ACPI_UINT64_MAX;
 614		}
 615		break;
 616
 617	case AML_DECREMENT_OP:	/* Decrement (Operand)  */
 618	case AML_INCREMENT_OP:	/* Increment (Operand)  */
 619
 620		/*
 621		 * Create a new integer.  Can't just get the base integer and
 622		 * increment it because it may be an Arg or Field.
 623		 */
 624		return_desc = acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 625		if (!return_desc) {
 626			status = AE_NO_MEMORY;
 627			goto cleanup;
 628		}
 629
 630		/*
 631		 * Since we are expecting a Reference operand, it can be either a
 632		 * NS Node or an internal object.
 633		 */
 634		temp_desc = operand[0];
 635		if (ACPI_GET_DESCRIPTOR_TYPE(temp_desc) ==
 636		    ACPI_DESC_TYPE_OPERAND) {
 637
 638			/* Internal reference object - prevent deletion */
 639
 640			acpi_ut_add_reference(temp_desc);
 641		}
 642
 643		/*
 644		 * Convert the Reference operand to an Integer (This removes a
 645		 * reference on the Operand[0] object)
 646		 *
 647		 * NOTE:  We use LNOT_OP here in order to force resolution of the
 648		 * reference operand to an actual integer.
 649		 */
 650		status =
 651		    acpi_ex_resolve_operands(AML_LNOT_OP, &temp_desc,
 652					     walk_state);
 653		if (ACPI_FAILURE(status)) {
 654			ACPI_EXCEPTION((AE_INFO, status,
 655					"While resolving operands for [%s]",
 656					acpi_ps_get_opcode_name(walk_state->
 657								opcode)));
 658
 659			goto cleanup;
 660		}
 661
 662		/*
 663		 * temp_desc is now guaranteed to be an Integer object --
 664		 * Perform the actual increment or decrement
 665		 */
 666		if (walk_state->opcode == AML_INCREMENT_OP) {
 667			return_desc->integer.value =
 668			    temp_desc->integer.value + 1;
 669		} else {
 670			return_desc->integer.value =
 671			    temp_desc->integer.value - 1;
 672		}
 673
 674		/* Finished with this Integer object */
 675
 676		acpi_ut_remove_reference(temp_desc);
 677
 678		/*
 679		 * Store the result back (indirectly) through the original
 680		 * Reference object
 681		 */
 682		status = acpi_ex_store(return_desc, operand[0], walk_state);
 683		break;
 684
 685	case AML_TYPE_OP:	/* object_type (source_object) */
 686
 687		/*
 688		 * Note: The operand is not resolved at this point because we want to
 689		 * get the associated object, not its value.  For example, we don't
 690		 * want to resolve a field_unit to its value, we want the actual
 691		 * field_unit object.
 692		 */
 693
 694		/* Get the type of the base object */
 695
 696		status =
 697		    acpi_ex_resolve_multiple(walk_state, operand[0], &type,
 698					     NULL);
 699		if (ACPI_FAILURE(status)) {
 700			goto cleanup;
 701		}
 702
 703		/* Allocate a descriptor to hold the type. */
 704
 705		return_desc = acpi_ut_create_integer_object((u64) type);
 706		if (!return_desc) {
 707			status = AE_NO_MEMORY;
 708			goto cleanup;
 709		}
 710		break;
 711
 712	case AML_SIZE_OF_OP:	/* size_of (source_object) */
 713
 714		/*
 715		 * Note: The operand is not resolved at this point because we want to
 716		 * get the associated object, not its value.
 717		 */
 718
 719		/* Get the base object */
 720
 721		status = acpi_ex_resolve_multiple(walk_state,
 722						  operand[0], &type,
 723						  &temp_desc);
 724		if (ACPI_FAILURE(status)) {
 725			goto cleanup;
 726		}
 727
 728		/*
 729		 * The type of the base object must be integer, buffer, string, or
 730		 * package.  All others are not supported.
 731		 *
 732		 * NOTE: Integer is not specifically supported by the ACPI spec,
 733		 * but is supported implicitly via implicit operand conversion.
 734		 * rather than bother with conversion, we just use the byte width
 735		 * global (4 or 8 bytes).
 736		 */
 737		switch (type) {
 738		case ACPI_TYPE_INTEGER:
 
 739			value = acpi_gbl_integer_byte_width;
 740			break;
 741
 742		case ACPI_TYPE_STRING:
 
 743			value = temp_desc->string.length;
 744			break;
 745
 746		case ACPI_TYPE_BUFFER:
 747
 748			/* Buffer arguments may not be evaluated at this point */
 749
 750			status = acpi_ds_get_buffer_arguments(temp_desc);
 751			value = temp_desc->buffer.length;
 752			break;
 753
 754		case ACPI_TYPE_PACKAGE:
 755
 756			/* Package arguments may not be evaluated at this point */
 757
 758			status = acpi_ds_get_package_arguments(temp_desc);
 759			value = temp_desc->package.count;
 760			break;
 761
 762		default:
 
 763			ACPI_ERROR((AE_INFO,
 764				    "Operand must be Buffer/Integer/String/Package - found type %s",
 
 765				    acpi_ut_get_type_name(type)));
 
 766			status = AE_AML_OPERAND_TYPE;
 767			goto cleanup;
 768		}
 769
 770		if (ACPI_FAILURE(status)) {
 771			goto cleanup;
 772		}
 773
 774		/*
 775		 * Now that we have the size of the object, create a result
 776		 * object to hold the value
 777		 */
 778		return_desc = acpi_ut_create_integer_object(value);
 779		if (!return_desc) {
 780			status = AE_NO_MEMORY;
 781			goto cleanup;
 782		}
 783		break;
 784
 785	case AML_REF_OF_OP:	/* ref_of (source_object) */
 786
 787		status =
 788		    acpi_ex_get_object_reference(operand[0], &return_desc,
 789						 walk_state);
 790		if (ACPI_FAILURE(status)) {
 791			goto cleanup;
 792		}
 793		break;
 794
 795	case AML_DEREF_OF_OP:	/* deref_of (obj_reference | String) */
 796
 797		/* Check for a method local or argument, or standalone String */
 798
 799		if (ACPI_GET_DESCRIPTOR_TYPE(operand[0]) ==
 800		    ACPI_DESC_TYPE_NAMED) {
 801			temp_desc =
 802			    acpi_ns_get_attached_object((struct
 803							 acpi_namespace_node *)
 804							operand[0]);
 805			if (temp_desc
 806			    && ((temp_desc->common.type == ACPI_TYPE_STRING)
 807				|| (temp_desc->common.type ==
 808				    ACPI_TYPE_LOCAL_REFERENCE))) {
 809				operand[0] = temp_desc;
 810				acpi_ut_add_reference(temp_desc);
 811			} else {
 812				status = AE_AML_OPERAND_TYPE;
 813				goto cleanup;
 814			}
 815		} else {
 816			switch ((operand[0])->common.type) {
 817			case ACPI_TYPE_LOCAL_REFERENCE:
 818				/*
 819				 * This is a deref_of (local_x | arg_x)
 820				 *
 821				 * Must resolve/dereference the local/arg reference first
 822				 */
 823				switch (operand[0]->reference.class) {
 824				case ACPI_REFCLASS_LOCAL:
 825				case ACPI_REFCLASS_ARG:
 826
 827					/* Set Operand[0] to the value of the local/arg */
 828
 829					status =
 830					    acpi_ds_method_data_get_value
 831					    (operand[0]->reference.class,
 832					     operand[0]->reference.value,
 833					     walk_state, &temp_desc);
 834					if (ACPI_FAILURE(status)) {
 835						goto cleanup;
 836					}
 837
 838					/*
 839					 * Delete our reference to the input object and
 840					 * point to the object just retrieved
 841					 */
 842					acpi_ut_remove_reference(operand[0]);
 843					operand[0] = temp_desc;
 844					break;
 845
 846				case ACPI_REFCLASS_REFOF:
 847
 848					/* Get the object to which the reference refers */
 849
 850					temp_desc =
 851					    operand[0]->reference.object;
 852					acpi_ut_remove_reference(operand[0]);
 853					operand[0] = temp_desc;
 854					break;
 855
 856				default:
 857
 858					/* Must be an Index op - handled below */
 859					break;
 860				}
 861				break;
 862
 863			case ACPI_TYPE_STRING:
 
 864				break;
 865
 866			default:
 
 867				status = AE_AML_OPERAND_TYPE;
 868				goto cleanup;
 869			}
 870		}
 871
 872		if (ACPI_GET_DESCRIPTOR_TYPE(operand[0]) !=
 873		    ACPI_DESC_TYPE_NAMED) {
 874			if ((operand[0])->common.type == ACPI_TYPE_STRING) {
 875				/*
 876				 * This is a deref_of (String). The string is a reference
 877				 * to a named ACPI object.
 878				 *
 879				 * 1) Find the owning Node
 880				 * 2) Dereference the node to an actual object. Could be a
 881				 *    Field, so we need to resolve the node to a value.
 882				 */
 883				status =
 884				    acpi_ns_get_node(walk_state->scope_info->
 885						     scope.node,
 886						     operand[0]->string.pointer,
 887						     ACPI_NS_SEARCH_PARENT,
 888						     ACPI_CAST_INDIRECT_PTR
 889						     (struct
 890						      acpi_namespace_node,
 891						      &return_desc));
 
 
 892				if (ACPI_FAILURE(status)) {
 893					goto cleanup;
 894				}
 895
 896				status =
 897				    acpi_ex_resolve_node_to_value
 898				    (ACPI_CAST_INDIRECT_PTR
 899				     (struct acpi_namespace_node, &return_desc),
 900				     walk_state);
 901				goto cleanup;
 902			}
 903		}
 904
 905		/* Operand[0] may have changed from the code above */
 906
 907		if (ACPI_GET_DESCRIPTOR_TYPE(operand[0]) ==
 908		    ACPI_DESC_TYPE_NAMED) {
 909			/*
 910			 * This is a deref_of (object_reference)
 911			 * Get the actual object from the Node (This is the dereference).
 912			 * This case may only happen when a local_x or arg_x is
 913			 * dereferenced above.
 
 914			 */
 915			return_desc = acpi_ns_get_attached_object((struct
 916								   acpi_namespace_node
 917								   *)
 918								  operand[0]);
 919			acpi_ut_add_reference(return_desc);
 
 
 
 
 
 
 
 
 
 
 
 
 920		} else {
 921			/*
 922			 * This must be a reference object produced by either the
 923			 * Index() or ref_of() operator
 924			 */
 925			switch (operand[0]->reference.class) {
 926			case ACPI_REFCLASS_INDEX:
 927
 928				/*
 929				 * The target type for the Index operator must be
 930				 * either a Buffer or a Package
 931				 */
 932				switch (operand[0]->reference.target_type) {
 933				case ACPI_TYPE_BUFFER_FIELD:
 934
 935					temp_desc =
 936					    operand[0]->reference.object;
 937
 938					/*
 939					 * Create a new object that contains one element of the
 940					 * buffer -- the element pointed to by the index.
 941					 *
 942					 * NOTE: index into a buffer is NOT a pointer to a
 943					 * sub-buffer of the main buffer, it is only a pointer to a
 944					 * single element (byte) of the buffer!
 945					 *
 946					 * Since we are returning the value of the buffer at the
 947					 * indexed location, we don't need to add an additional
 948					 * reference to the buffer itself.
 949					 */
 950					return_desc =
 951					    acpi_ut_create_integer_object((u64)
 952									  temp_desc->
 953									  buffer.
 954									  pointer
 955									  [operand
 956									   [0]->
 957									   reference.
 958									   value]);
 959					if (!return_desc) {
 960						status = AE_NO_MEMORY;
 961						goto cleanup;
 962					}
 963					break;
 964
 965				case ACPI_TYPE_PACKAGE:
 966
 967					/*
 968					 * Return the referenced element of the package.  We must
 969					 * add another reference to the referenced object, however.
 970					 */
 971					return_desc =
 972					    *(operand[0]->reference.where);
 973					if (return_desc) {
 974						acpi_ut_add_reference
 975						    (return_desc);
 
 
 
 
 
 976					}
 
 
 977					break;
 978
 979				default:
 980
 981					ACPI_ERROR((AE_INFO,
 982						    "Unknown Index TargetType 0x%X in reference object %p",
 983						    operand[0]->reference.
 984						    target_type, operand[0]));
 
 985					status = AE_AML_OPERAND_TYPE;
 986					goto cleanup;
 987				}
 988				break;
 989
 990			case ACPI_REFCLASS_REFOF:
 991
 992				return_desc = operand[0]->reference.object;
 993
 994				if (ACPI_GET_DESCRIPTOR_TYPE(return_desc) ==
 995				    ACPI_DESC_TYPE_NAMED) {
 996					return_desc =
 997					    acpi_ns_get_attached_object((struct
 998									 acpi_namespace_node
 999									 *)
1000									return_desc);
1001				}
 
 
1002
1003				/* Add another reference to the object! */
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1004
1005				acpi_ut_add_reference(return_desc);
 
 
 
 
 
 
 
 
 
 
 
1006				break;
1007
1008			default:
 
1009				ACPI_ERROR((AE_INFO,
1010					    "Unknown class in reference(%p) - 0x%2.2X",
1011					    operand[0],
1012					    operand[0]->reference.class));
1013
1014				status = AE_TYPE;
1015				goto cleanup;
1016			}
1017		}
1018		break;
1019
1020	default:
1021
1022		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
1023			    walk_state->opcode));
 
1024		status = AE_AML_BAD_OPCODE;
1025		goto cleanup;
1026	}
1027
1028      cleanup:
1029
1030	/* Delete return object on error */
1031
1032	if (ACPI_FAILURE(status)) {
1033		acpi_ut_remove_reference(return_desc);
1034	}
1035
1036	/* Save return object on success */
1037
1038	else {
1039		walk_state->result_obj = return_desc;
1040	}
1041
1042	return_ACPI_STATUS(status);
1043}
v6.13.7
   1// SPDX-License-Identifier: BSD-3-Clause OR GPL-2.0
   2/******************************************************************************
   3 *
   4 * Module Name: exoparg1 - AML execution - opcodes with 1 argument
   5 *
   6 * Copyright (C) 2000 - 2023, Intel Corp.
   7 *
   8 *****************************************************************************/
   9
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  10#include <acpi/acpi.h>
  11#include "accommon.h"
  12#include "acparser.h"
  13#include "acdispat.h"
  14#include "acinterp.h"
  15#include "amlcode.h"
  16#include "acnamesp.h"
  17
  18#define _COMPONENT          ACPI_EXECUTER
  19ACPI_MODULE_NAME("exoparg1")
  20
  21/*!
  22 * Naming convention for AML interpreter execution routines.
  23 *
  24 * The routines that begin execution of AML opcodes are named with a common
  25 * convention based upon the number of arguments, the number of target operands,
  26 * and whether or not a value is returned:
  27 *
  28 *      AcpiExOpcode_xA_yT_zR
  29 *
  30 * Where:
  31 *
  32 * xA - ARGUMENTS:    The number of arguments (input operands) that are
  33 *                    required for this opcode type (0 through 6 args).
  34 * yT - TARGETS:      The number of targets (output operands) that are required
  35 *                    for this opcode type (0, 1, or 2 targets).
  36 * zR - RETURN VALUE: Indicates whether this opcode type returns a value
  37 *                    as the function return (0 or 1).
  38 *
  39 * The AcpiExOpcode* functions are called via the Dispatcher component with
  40 * fully resolved operands.
  41!*/
  42/*******************************************************************************
  43 *
  44 * FUNCTION:    acpi_ex_opcode_0A_0T_1R
  45 *
  46 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
  47 *
  48 * RETURN:      Status
  49 *
  50 * DESCRIPTION: Execute operator with no operands, one return value
  51 *
  52 ******************************************************************************/
  53acpi_status acpi_ex_opcode_0A_0T_1R(struct acpi_walk_state *walk_state)
  54{
  55	acpi_status status = AE_OK;
  56	union acpi_operand_object *return_desc = NULL;
  57
  58	ACPI_FUNCTION_TRACE_STR(ex_opcode_0A_0T_1R,
  59				acpi_ps_get_opcode_name(walk_state->opcode));
  60
  61	/* Examine the AML opcode */
  62
  63	switch (walk_state->opcode) {
  64	case AML_TIMER_OP:	/*  Timer () */
  65
  66		/* Create a return object of type Integer */
  67
  68		return_desc =
  69		    acpi_ut_create_integer_object(acpi_os_get_timer());
  70		if (!return_desc) {
  71			status = AE_NO_MEMORY;
  72			goto cleanup;
  73		}
  74		break;
  75
  76	default:		/*  Unknown opcode  */
  77
  78		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
  79			    walk_state->opcode));
  80		status = AE_AML_BAD_OPCODE;
  81		break;
  82	}
  83
  84cleanup:
  85
  86	/* Delete return object on error */
  87
  88	if ((ACPI_FAILURE(status)) || walk_state->result_obj) {
  89		acpi_ut_remove_reference(return_desc);
  90		walk_state->result_obj = NULL;
  91	} else {
  92		/* Save the return value */
  93
  94		walk_state->result_obj = return_desc;
  95	}
  96
  97	return_ACPI_STATUS(status);
  98}
  99
 100/*******************************************************************************
 101 *
 102 * FUNCTION:    acpi_ex_opcode_1A_0T_0R
 103 *
 104 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
 105 *
 106 * RETURN:      Status
 107 *
 108 * DESCRIPTION: Execute Type 1 monadic operator with numeric operand on
 109 *              object stack
 110 *
 111 ******************************************************************************/
 112
 113acpi_status acpi_ex_opcode_1A_0T_0R(struct acpi_walk_state *walk_state)
 114{
 115	union acpi_operand_object **operand = &walk_state->operands[0];
 116	acpi_status status = AE_OK;
 117
 118	ACPI_FUNCTION_TRACE_STR(ex_opcode_1A_0T_0R,
 119				acpi_ps_get_opcode_name(walk_state->opcode));
 120
 121	/* Examine the AML opcode */
 122
 123	switch (walk_state->opcode) {
 124	case AML_RELEASE_OP:	/*  Release (mutex_object) */
 125
 126		status = acpi_ex_release_mutex(operand[0], walk_state);
 127		break;
 128
 129	case AML_RESET_OP:	/*  Reset (event_object) */
 130
 131		status = acpi_ex_system_reset_event(operand[0]);
 132		break;
 133
 134	case AML_SIGNAL_OP:	/*  Signal (event_object) */
 135
 136		status = acpi_ex_system_signal_event(operand[0]);
 137		break;
 138
 139	case AML_SLEEP_OP:	/*  Sleep (msec_time) */
 140
 141		status = acpi_ex_system_do_sleep(operand[0]->integer.value);
 142		break;
 143
 144	case AML_STALL_OP:	/*  Stall (usec_time) */
 145
 146		status =
 147		    acpi_ex_system_do_stall((u32) operand[0]->integer.value);
 148		break;
 149
 150	case AML_UNLOAD_OP:	/*  Unload (Handle) */
 151
 152		status = acpi_ex_unload_table(operand[0]);
 153		break;
 154
 155	default:		/*  Unknown opcode  */
 156
 157		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
 158			    walk_state->opcode));
 159		status = AE_AML_BAD_OPCODE;
 160		break;
 161	}
 162
 163	return_ACPI_STATUS(status);
 164}
 165
 166#ifdef _OBSOLETE_CODE		/* Was originally used for Load() operator */
 167/*******************************************************************************
 168 *
 169 * FUNCTION:    acpi_ex_opcode_1A_1T_0R
 170 *
 171 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
 172 *
 173 * RETURN:      Status
 174 *
 175 * DESCRIPTION: Execute opcode with one argument, one target, and no
 176 *              return value.
 177 *
 178 ******************************************************************************/
 179
 180acpi_status acpi_ex_opcode_1A_1T_0R(struct acpi_walk_state *walk_state)
 181{
 182	acpi_status status = AE_OK;
 183	union acpi_operand_object **operand = &walk_state->operands[0];
 184
 185	ACPI_FUNCTION_TRACE_STR(ex_opcode_1A_1T_0R,
 186				acpi_ps_get_opcode_name(walk_state->opcode));
 187
 188	/* Examine the AML opcode */
 189
 190	switch (walk_state->opcode) {
 191#ifdef _OBSOLETE_CODE
 192	case AML_LOAD_OP:
 193
 194		status = acpi_ex_load_op(operand[0], operand[1], walk_state);
 195		break;
 196#endif
 197
 198	default:		/* Unknown opcode */
 199
 200		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
 201			    walk_state->opcode));
 202		status = AE_AML_BAD_OPCODE;
 203		goto cleanup;
 204	}
 205
 206cleanup:
 207
 208	return_ACPI_STATUS(status);
 209}
 210#endif
 211
 212/*******************************************************************************
 213 *
 214 * FUNCTION:    acpi_ex_opcode_1A_1T_1R
 215 *
 216 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
 217 *
 218 * RETURN:      Status
 219 *
 220 * DESCRIPTION: Execute opcode with one argument, one target, and a
 221 *              return value.
 222 *              January 2022: Added Load operator, with new ACPI 6.4
 223 *              semantics.
 224 *
 225 ******************************************************************************/
 226
 227acpi_status acpi_ex_opcode_1A_1T_1R(struct acpi_walk_state *walk_state)
 228{
 229	acpi_status status = AE_OK;
 230	union acpi_operand_object **operand = &walk_state->operands[0];
 231	union acpi_operand_object *return_desc = NULL;
 232	union acpi_operand_object *return_desc2 = NULL;
 233	u32 temp32;
 234	u32 i;
 235	u64 power_of_ten;
 236	u64 digit;
 237
 238	ACPI_FUNCTION_TRACE_STR(ex_opcode_1A_1T_1R,
 239				acpi_ps_get_opcode_name(walk_state->opcode));
 240
 241	/* Examine the AML opcode */
 242
 243	switch (walk_state->opcode) {
 244	case AML_BIT_NOT_OP:
 245	case AML_FIND_SET_LEFT_BIT_OP:
 246	case AML_FIND_SET_RIGHT_BIT_OP:
 247	case AML_FROM_BCD_OP:
 248	case AML_LOAD_OP:
 249	case AML_TO_BCD_OP:
 250	case AML_CONDITIONAL_REF_OF_OP:
 251
 252		/* Create a return object of type Integer for these opcodes */
 253
 254		return_desc = acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 255		if (!return_desc) {
 256			status = AE_NO_MEMORY;
 257			goto cleanup;
 258		}
 259
 260		switch (walk_state->opcode) {
 261		case AML_BIT_NOT_OP:	/* Not (Operand, Result)  */
 262
 263			return_desc->integer.value = ~operand[0]->integer.value;
 264			break;
 265
 266		case AML_FIND_SET_LEFT_BIT_OP:	/* find_set_left_bit (Operand, Result) */
 267
 268			return_desc->integer.value = operand[0]->integer.value;
 269
 270			/*
 271			 * Acpi specification describes Integer type as a little
 272			 * endian unsigned value, so this boundary condition is valid.
 273			 */
 274			for (temp32 = 0; return_desc->integer.value &&
 275			     temp32 < ACPI_INTEGER_BIT_SIZE; ++temp32) {
 276				return_desc->integer.value >>= 1;
 277			}
 278
 279			return_desc->integer.value = temp32;
 280			break;
 281
 282		case AML_FIND_SET_RIGHT_BIT_OP:	/* find_set_right_bit (Operand, Result) */
 283
 284			return_desc->integer.value = operand[0]->integer.value;
 285
 286			/*
 287			 * The Acpi specification describes Integer type as a little
 288			 * endian unsigned value, so this boundary condition is valid.
 289			 */
 290			for (temp32 = 0; return_desc->integer.value &&
 291			     temp32 < ACPI_INTEGER_BIT_SIZE; ++temp32) {
 292				return_desc->integer.value <<= 1;
 293			}
 294
 295			/* Since the bit position is one-based, subtract from 33 (65) */
 296
 297			return_desc->integer.value =
 298			    temp32 ==
 299			    0 ? 0 : (ACPI_INTEGER_BIT_SIZE + 1) - temp32;
 300			break;
 301
 302		case AML_FROM_BCD_OP:	/* from_bcd (BCDValue, Result) */
 
 303			/*
 304			 * The 64-bit ACPI integer can hold 16 4-bit BCD characters
 305			 * (if table is 32-bit, integer can hold 8 BCD characters)
 306			 * Convert each 4-bit BCD value
 307			 */
 308			power_of_ten = 1;
 309			return_desc->integer.value = 0;
 310			digit = operand[0]->integer.value;
 311
 312			/* Convert each BCD digit (each is one nybble wide) */
 313
 314			for (i = 0;
 315			     (i < acpi_gbl_integer_nybble_width) && (digit > 0);
 316			     i++) {
 317
 318				/* Get the least significant 4-bit BCD digit */
 319
 320				temp32 = ((u32) digit) & 0xF;
 321
 322				/* Check the range of the digit */
 323
 324				if (temp32 > 9) {
 325					ACPI_ERROR((AE_INFO,
 326						    "BCD digit too large (not decimal): 0x%X",
 327						    temp32));
 328
 329					status = AE_AML_NUMERIC_OVERFLOW;
 330					goto cleanup;
 331				}
 332
 333				/* Sum the digit into the result with the current power of 10 */
 334
 335				return_desc->integer.value +=
 336				    (((u64) temp32) * power_of_ten);
 337
 338				/* Shift to next BCD digit */
 339
 340				digit >>= 4;
 341
 342				/* Next power of 10 */
 343
 344				power_of_ten *= 10;
 345			}
 346			break;
 347
 348		case AML_LOAD_OP:	/* Result1 = Load (Operand[0], Result1) */
 349
 350			return_desc->integer.value = 0;
 351			status =
 352			    acpi_ex_load_op(operand[0], return_desc,
 353					    walk_state);
 354			if (ACPI_SUCCESS(status)) {
 355
 356				/* Return -1 (non-zero) indicates success */
 357
 358				return_desc->integer.value = 0xFFFFFFFFFFFFFFFF;
 359			}
 360			break;
 361
 362		case AML_TO_BCD_OP:	/* to_bcd (Operand, Result) */
 363
 364			return_desc->integer.value = 0;
 365			digit = operand[0]->integer.value;
 366
 367			/* Each BCD digit is one nybble wide */
 368
 369			for (i = 0;
 370			     (i < acpi_gbl_integer_nybble_width) && (digit > 0);
 371			     i++) {
 372				(void)acpi_ut_short_divide(digit, 10, &digit,
 373							   &temp32);
 374
 375				/*
 376				 * Insert the BCD digit that resides in the
 377				 * remainder from above
 378				 */
 379				return_desc->integer.value |=
 380				    (((u64) temp32) << ACPI_MUL_4(i));
 381			}
 382
 383			/* Overflow if there is any data left in Digit */
 384
 385			if (digit > 0) {
 386				ACPI_ERROR((AE_INFO,
 387					    "Integer too large to convert to BCD: 0x%8.8X%8.8X",
 388					    ACPI_FORMAT_UINT64(operand[0]->
 389							       integer.value)));
 390				status = AE_AML_NUMERIC_OVERFLOW;
 391				goto cleanup;
 392			}
 393			break;
 394
 395		case AML_CONDITIONAL_REF_OF_OP:	/* cond_ref_of (source_object, Result) */
 
 396			/*
 397			 * This op is a little strange because the internal return value is
 398			 * different than the return value stored in the result descriptor
 399			 * (There are really two return values)
 400			 */
 401			if ((struct acpi_namespace_node *)operand[0] ==
 402			    acpi_gbl_root_node) {
 403				/*
 404				 * This means that the object does not exist in the namespace,
 405				 * return FALSE
 406				 */
 407				return_desc->integer.value = 0;
 408				goto cleanup;
 409			}
 410
 411			/* Get the object reference, store it, and remove our reference */
 412
 413			status = acpi_ex_get_object_reference(operand[0],
 414							      &return_desc2,
 415							      walk_state);
 416			if (ACPI_FAILURE(status)) {
 417				goto cleanup;
 418			}
 419
 420			status =
 421			    acpi_ex_store(return_desc2, operand[1], walk_state);
 422			acpi_ut_remove_reference(return_desc2);
 423
 424			/* The object exists in the namespace, return TRUE */
 425
 426			return_desc->integer.value = ACPI_UINT64_MAX;
 427			goto cleanup;
 428
 429		default:
 430
 431			/* No other opcodes get here */
 432
 433			break;
 434		}
 435		break;
 436
 437	case AML_STORE_OP:	/* Store (Source, Target) */
 
 438		/*
 439		 * A store operand is typically a number, string, buffer or lvalue
 440		 * Be careful about deleting the source object,
 441		 * since the object itself may have been stored.
 442		 */
 443		status = acpi_ex_store(operand[0], operand[1], walk_state);
 444		if (ACPI_FAILURE(status)) {
 445			return_ACPI_STATUS(status);
 446		}
 447
 448		/* It is possible that the Store already produced a return object */
 449
 450		if (!walk_state->result_obj) {
 451			/*
 452			 * Normally, we would remove a reference on the Operand[0]
 453			 * parameter; But since it is being used as the internal return
 454			 * object (meaning we would normally increment it), the two
 455			 * cancel out, and we simply don't do anything.
 456			 */
 457			walk_state->result_obj = operand[0];
 458			walk_state->operands[0] = NULL;	/* Prevent deletion */
 459		}
 460		return_ACPI_STATUS(status);
 461
 462		/*
 463		 * ACPI 2.0 Opcodes
 464		 */
 465	case AML_COPY_OBJECT_OP:	/* copy_object (Source, Target) */
 466
 467		status =
 468		    acpi_ut_copy_iobject_to_iobject(operand[0], &return_desc,
 469						    walk_state);
 470		break;
 471
 472	case AML_TO_DECIMAL_STRING_OP:	/* to_decimal_string (Data, Result) */
 473
 474		status =
 475		    acpi_ex_convert_to_string(operand[0], &return_desc,
 476					      ACPI_EXPLICIT_CONVERT_DECIMAL);
 477		if (return_desc == operand[0]) {
 478
 479			/* No conversion performed, add ref to handle return value */
 480
 481			acpi_ut_add_reference(return_desc);
 482		}
 483		break;
 484
 485	case AML_TO_HEX_STRING_OP:	/* to_hex_string (Data, Result) */
 486
 487		status =
 488		    acpi_ex_convert_to_string(operand[0], &return_desc,
 489					      ACPI_EXPLICIT_CONVERT_HEX);
 490		if (return_desc == operand[0]) {
 491
 492			/* No conversion performed, add ref to handle return value */
 493
 494			acpi_ut_add_reference(return_desc);
 495		}
 496		break;
 497
 498	case AML_TO_BUFFER_OP:	/* to_buffer (Data, Result) */
 499
 500		status = acpi_ex_convert_to_buffer(operand[0], &return_desc);
 501		if (return_desc == operand[0]) {
 502
 503			/* No conversion performed, add ref to handle return value */
 504
 505			acpi_ut_add_reference(return_desc);
 506		}
 507		break;
 508
 509	case AML_TO_INTEGER_OP:	/* to_integer (Data, Result) */
 510
 511		/* Perform "explicit" conversion */
 512
 513		status =
 514		    acpi_ex_convert_to_integer(operand[0], &return_desc, 0);
 515		if (return_desc == operand[0]) {
 516
 517			/* No conversion performed, add ref to handle return value */
 518
 519			acpi_ut_add_reference(return_desc);
 520		}
 521		break;
 522
 523	case AML_SHIFT_LEFT_BIT_OP:	/* shift_left_bit (Source, bit_num) */
 524	case AML_SHIFT_RIGHT_BIT_OP:	/* shift_right_bit (Source, bit_num) */
 525
 526		/* These are two obsolete opcodes */
 527
 528		ACPI_ERROR((AE_INFO,
 529			    "%s is obsolete and not implemented",
 530			    acpi_ps_get_opcode_name(walk_state->opcode)));
 531		status = AE_SUPPORT;
 532		goto cleanup;
 533
 534	default:		/* Unknown opcode */
 535
 536		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
 537			    walk_state->opcode));
 538		status = AE_AML_BAD_OPCODE;
 539		goto cleanup;
 540	}
 541
 542	if (ACPI_SUCCESS(status)) {
 543
 544		/* Store the return value computed above into the target object */
 545
 546		status = acpi_ex_store(return_desc, operand[1], walk_state);
 547	}
 548
 549cleanup:
 550
 551	/* Delete return object on error */
 552
 553	if (ACPI_FAILURE(status)) {
 554		acpi_ut_remove_reference(return_desc);
 555	}
 556
 557	/* Save return object on success */
 558
 559	else if (!walk_state->result_obj) {
 560		walk_state->result_obj = return_desc;
 561	}
 562
 563	return_ACPI_STATUS(status);
 564}
 565
 566/*******************************************************************************
 567 *
 568 * FUNCTION:    acpi_ex_opcode_1A_0T_1R
 569 *
 570 * PARAMETERS:  walk_state          - Current state (contains AML opcode)
 571 *
 572 * RETURN:      Status
 573 *
 574 * DESCRIPTION: Execute opcode with one argument, no target, and a return value
 575 *
 576 ******************************************************************************/
 577
 578acpi_status acpi_ex_opcode_1A_0T_1R(struct acpi_walk_state *walk_state)
 579{
 580	union acpi_operand_object **operand = &walk_state->operands[0];
 581	union acpi_operand_object *temp_desc;
 582	union acpi_operand_object *return_desc = NULL;
 583	acpi_status status = AE_OK;
 584	u32 type;
 585	u64 value;
 586
 587	ACPI_FUNCTION_TRACE_STR(ex_opcode_1A_0T_1R,
 588				acpi_ps_get_opcode_name(walk_state->opcode));
 589
 590	/* Examine the AML opcode */
 591
 592	switch (walk_state->opcode) {
 593	case AML_LOGICAL_NOT_OP:	/* LNot (Operand) */
 594
 595		return_desc = acpi_ut_create_integer_object((u64) 0);
 596		if (!return_desc) {
 597			status = AE_NO_MEMORY;
 598			goto cleanup;
 599		}
 600
 601		/*
 602		 * Set result to ONES (TRUE) if Value == 0. Note:
 603		 * return_desc->Integer.Value is initially == 0 (FALSE) from above.
 604		 */
 605		if (!operand[0]->integer.value) {
 606			return_desc->integer.value = ACPI_UINT64_MAX;
 607		}
 608		break;
 609
 610	case AML_DECREMENT_OP:	/* Decrement (Operand)  */
 611	case AML_INCREMENT_OP:	/* Increment (Operand)  */
 
 612		/*
 613		 * Create a new integer. Can't just get the base integer and
 614		 * increment it because it may be an Arg or Field.
 615		 */
 616		return_desc = acpi_ut_create_internal_object(ACPI_TYPE_INTEGER);
 617		if (!return_desc) {
 618			status = AE_NO_MEMORY;
 619			goto cleanup;
 620		}
 621
 622		/*
 623		 * Since we are expecting a Reference operand, it can be either a
 624		 * NS Node or an internal object.
 625		 */
 626		temp_desc = operand[0];
 627		if (ACPI_GET_DESCRIPTOR_TYPE(temp_desc) ==
 628		    ACPI_DESC_TYPE_OPERAND) {
 629
 630			/* Internal reference object - prevent deletion */
 631
 632			acpi_ut_add_reference(temp_desc);
 633		}
 634
 635		/*
 636		 * Convert the Reference operand to an Integer (This removes a
 637		 * reference on the Operand[0] object)
 638		 *
 639		 * NOTE:  We use LNOT_OP here in order to force resolution of the
 640		 * reference operand to an actual integer.
 641		 */
 642		status = acpi_ex_resolve_operands(AML_LOGICAL_NOT_OP,
 643						  &temp_desc, walk_state);
 
 644		if (ACPI_FAILURE(status)) {
 645			ACPI_EXCEPTION((AE_INFO, status,
 646					"While resolving operands for [%s]",
 647					acpi_ps_get_opcode_name(walk_state->
 648								opcode)));
 649
 650			goto cleanup;
 651		}
 652
 653		/*
 654		 * temp_desc is now guaranteed to be an Integer object --
 655		 * Perform the actual increment or decrement
 656		 */
 657		if (walk_state->opcode == AML_INCREMENT_OP) {
 658			return_desc->integer.value =
 659			    temp_desc->integer.value + 1;
 660		} else {
 661			return_desc->integer.value =
 662			    temp_desc->integer.value - 1;
 663		}
 664
 665		/* Finished with this Integer object */
 666
 667		acpi_ut_remove_reference(temp_desc);
 668
 669		/*
 670		 * Store the result back (indirectly) through the original
 671		 * Reference object
 672		 */
 673		status = acpi_ex_store(return_desc, operand[0], walk_state);
 674		break;
 675
 676	case AML_OBJECT_TYPE_OP:	/* object_type (source_object) */
 
 677		/*
 678		 * Note: The operand is not resolved at this point because we want to
 679		 * get the associated object, not its value. For example, we don't
 680		 * want to resolve a field_unit to its value, we want the actual
 681		 * field_unit object.
 682		 */
 683
 684		/* Get the type of the base object */
 685
 686		status =
 687		    acpi_ex_resolve_multiple(walk_state, operand[0], &type,
 688					     NULL);
 689		if (ACPI_FAILURE(status)) {
 690			goto cleanup;
 691		}
 692
 693		/* Allocate a descriptor to hold the type. */
 694
 695		return_desc = acpi_ut_create_integer_object((u64) type);
 696		if (!return_desc) {
 697			status = AE_NO_MEMORY;
 698			goto cleanup;
 699		}
 700		break;
 701
 702	case AML_SIZE_OF_OP:	/* size_of (source_object) */
 
 703		/*
 704		 * Note: The operand is not resolved at this point because we want to
 705		 * get the associated object, not its value.
 706		 */
 707
 708		/* Get the base object */
 709
 710		status =
 711		    acpi_ex_resolve_multiple(walk_state, operand[0], &type,
 712					     &temp_desc);
 713		if (ACPI_FAILURE(status)) {
 714			goto cleanup;
 715		}
 716
 717		/*
 718		 * The type of the base object must be integer, buffer, string, or
 719		 * package. All others are not supported.
 720		 *
 721		 * NOTE: Integer is not specifically supported by the ACPI spec,
 722		 * but is supported implicitly via implicit operand conversion.
 723		 * rather than bother with conversion, we just use the byte width
 724		 * global (4 or 8 bytes).
 725		 */
 726		switch (type) {
 727		case ACPI_TYPE_INTEGER:
 728
 729			value = acpi_gbl_integer_byte_width;
 730			break;
 731
 732		case ACPI_TYPE_STRING:
 733
 734			value = temp_desc->string.length;
 735			break;
 736
 737		case ACPI_TYPE_BUFFER:
 738
 739			/* Buffer arguments may not be evaluated at this point */
 740
 741			status = acpi_ds_get_buffer_arguments(temp_desc);
 742			value = temp_desc->buffer.length;
 743			break;
 744
 745		case ACPI_TYPE_PACKAGE:
 746
 747			/* Package arguments may not be evaluated at this point */
 748
 749			status = acpi_ds_get_package_arguments(temp_desc);
 750			value = temp_desc->package.count;
 751			break;
 752
 753		default:
 754
 755			ACPI_ERROR((AE_INFO,
 756				    "Operand must be Buffer/Integer/String/Package"
 757				    " - found type %s",
 758				    acpi_ut_get_type_name(type)));
 759
 760			status = AE_AML_OPERAND_TYPE;
 761			goto cleanup;
 762		}
 763
 764		if (ACPI_FAILURE(status)) {
 765			goto cleanup;
 766		}
 767
 768		/*
 769		 * Now that we have the size of the object, create a result
 770		 * object to hold the value
 771		 */
 772		return_desc = acpi_ut_create_integer_object(value);
 773		if (!return_desc) {
 774			status = AE_NO_MEMORY;
 775			goto cleanup;
 776		}
 777		break;
 778
 779	case AML_REF_OF_OP:	/* ref_of (source_object) */
 780
 781		status =
 782		    acpi_ex_get_object_reference(operand[0], &return_desc,
 783						 walk_state);
 784		if (ACPI_FAILURE(status)) {
 785			goto cleanup;
 786		}
 787		break;
 788
 789	case AML_DEREF_OF_OP:	/* deref_of (obj_reference | String) */
 790
 791		/* Check for a method local or argument, or standalone String */
 792
 793		if (ACPI_GET_DESCRIPTOR_TYPE(operand[0]) ==
 794		    ACPI_DESC_TYPE_NAMED) {
 795			temp_desc =
 796			    acpi_ns_get_attached_object((struct
 797							 acpi_namespace_node *)
 798							operand[0]);
 799			if (temp_desc
 800			    && ((temp_desc->common.type == ACPI_TYPE_STRING)
 801				|| (temp_desc->common.type ==
 802				    ACPI_TYPE_LOCAL_REFERENCE))) {
 803				operand[0] = temp_desc;
 804				acpi_ut_add_reference(temp_desc);
 805			} else {
 806				status = AE_AML_OPERAND_TYPE;
 807				goto cleanup;
 808			}
 809		} else {
 810			switch ((operand[0])->common.type) {
 811			case ACPI_TYPE_LOCAL_REFERENCE:
 812				/*
 813				 * This is a deref_of (local_x | arg_x)
 814				 *
 815				 * Must resolve/dereference the local/arg reference first
 816				 */
 817				switch (operand[0]->reference.class) {
 818				case ACPI_REFCLASS_LOCAL:
 819				case ACPI_REFCLASS_ARG:
 820
 821					/* Set Operand[0] to the value of the local/arg */
 822
 823					status =
 824					    acpi_ds_method_data_get_value
 825					    (operand[0]->reference.class,
 826					     operand[0]->reference.value,
 827					     walk_state, &temp_desc);
 828					if (ACPI_FAILURE(status)) {
 829						goto cleanup;
 830					}
 831
 832					/*
 833					 * Delete our reference to the input object and
 834					 * point to the object just retrieved
 835					 */
 836					acpi_ut_remove_reference(operand[0]);
 837					operand[0] = temp_desc;
 838					break;
 839
 840				case ACPI_REFCLASS_REFOF:
 841
 842					/* Get the object to which the reference refers */
 843
 844					temp_desc =
 845					    operand[0]->reference.object;
 846					acpi_ut_remove_reference(operand[0]);
 847					operand[0] = temp_desc;
 848					break;
 849
 850				default:
 851
 852					/* Must be an Index op - handled below */
 853					break;
 854				}
 855				break;
 856
 857			case ACPI_TYPE_STRING:
 858
 859				break;
 860
 861			default:
 862
 863				status = AE_AML_OPERAND_TYPE;
 864				goto cleanup;
 865			}
 866		}
 867
 868		if (ACPI_GET_DESCRIPTOR_TYPE(operand[0]) !=
 869		    ACPI_DESC_TYPE_NAMED) {
 870			if ((operand[0])->common.type == ACPI_TYPE_STRING) {
 871				/*
 872				 * This is a deref_of (String). The string is a reference
 873				 * to a named ACPI object.
 874				 *
 875				 * 1) Find the owning Node
 876				 * 2) Dereference the node to an actual object. Could be a
 877				 *    Field, so we need to resolve the node to a value.
 878				 */
 879				status =
 880				    acpi_ns_get_node_unlocked(walk_state->
 881							      scope_info->scope.
 882							      node,
 883							      operand[0]->
 884							      string.pointer,
 885							      ACPI_NS_SEARCH_PARENT,
 886							      ACPI_CAST_INDIRECT_PTR
 887							      (struct
 888							       acpi_namespace_node,
 889							       &return_desc));
 890				if (ACPI_FAILURE(status)) {
 891					goto cleanup;
 892				}
 893
 894				status =
 895				    acpi_ex_resolve_node_to_value
 896				    (ACPI_CAST_INDIRECT_PTR
 897				     (struct acpi_namespace_node, &return_desc),
 898				     walk_state);
 899				goto cleanup;
 900			}
 901		}
 902
 903		/* Operand[0] may have changed from the code above */
 904
 905		if (ACPI_GET_DESCRIPTOR_TYPE(operand[0]) ==
 906		    ACPI_DESC_TYPE_NAMED) {
 907			/*
 908			 * This is a deref_of (object_reference)
 909			 * Get the actual object from the Node (This is the dereference).
 910			 * This case may only happen when a local_x or arg_x is
 911			 * dereferenced above, or for references to device and
 912			 * thermal objects.
 913			 */
 914			switch (((struct acpi_namespace_node *)operand[0])->
 915				type) {
 916			case ACPI_TYPE_DEVICE:
 917			case ACPI_TYPE_THERMAL:
 918
 919				/* These types have no node subobject, return the NS node */
 920
 921				return_desc = operand[0];
 922				break;
 923
 924			default:
 925				/* For most types, get the object attached to the node */
 926
 927				return_desc = acpi_ns_get_attached_object((struct acpi_namespace_node *)operand[0]);
 928				acpi_ut_add_reference(return_desc);
 929				break;
 930			}
 931		} else {
 932			/*
 933			 * This must be a reference object produced by either the
 934			 * Index() or ref_of() operator
 935			 */
 936			switch (operand[0]->reference.class) {
 937			case ACPI_REFCLASS_INDEX:
 
 938				/*
 939				 * The target type for the Index operator must be
 940				 * either a Buffer or a Package
 941				 */
 942				switch (operand[0]->reference.target_type) {
 943				case ACPI_TYPE_BUFFER_FIELD:
 944
 945					temp_desc =
 946					    operand[0]->reference.object;
 947
 948					/*
 949					 * Create a new object that contains one element of the
 950					 * buffer -- the element pointed to by the index.
 951					 *
 952					 * NOTE: index into a buffer is NOT a pointer to a
 953					 * sub-buffer of the main buffer, it is only a pointer to a
 954					 * single element (byte) of the buffer!
 955					 *
 956					 * Since we are returning the value of the buffer at the
 957					 * indexed location, we don't need to add an additional
 958					 * reference to the buffer itself.
 959					 */
 960					return_desc =
 961					    acpi_ut_create_integer_object((u64)
 962									  temp_desc->buffer.pointer[operand[0]->reference.value]);
 
 
 
 
 
 
 963					if (!return_desc) {
 964						status = AE_NO_MEMORY;
 965						goto cleanup;
 966					}
 967					break;
 968
 969				case ACPI_TYPE_PACKAGE:
 
 970					/*
 971					 * Return the referenced element of the package. We must
 972					 * add another reference to the referenced object, however.
 973					 */
 974					return_desc =
 975					    *(operand[0]->reference.where);
 976					if (!return_desc) {
 977						/*
 978						 * Element is NULL, do not allow the dereference.
 979						 * This provides compatibility with other ACPI
 980						 * implementations.
 981						 */
 982						return_ACPI_STATUS
 983						    (AE_AML_UNINITIALIZED_ELEMENT);
 984					}
 985
 986					acpi_ut_add_reference(return_desc);
 987					break;
 988
 989				default:
 990
 991					ACPI_ERROR((AE_INFO,
 992						    "Unknown Index TargetType 0x%X in reference object %p",
 993						    operand[0]->reference.
 994						    target_type, operand[0]));
 995
 996					status = AE_AML_OPERAND_TYPE;
 997					goto cleanup;
 998				}
 999				break;
1000
1001			case ACPI_REFCLASS_REFOF:
1002
1003				return_desc = operand[0]->reference.object;
1004
1005				if (ACPI_GET_DESCRIPTOR_TYPE(return_desc) ==
1006				    ACPI_DESC_TYPE_NAMED) {
1007					return_desc =
1008					    acpi_ns_get_attached_object((struct
1009									 acpi_namespace_node
1010									 *)
1011									return_desc);
1012					if (!return_desc) {
1013						break;
1014					}
1015
1016					/*
1017					 * June 2013:
1018					 * buffer_fields/field_units require additional resolution
1019					 */
1020					switch (return_desc->common.type) {
1021					case ACPI_TYPE_BUFFER_FIELD:
1022					case ACPI_TYPE_LOCAL_REGION_FIELD:
1023					case ACPI_TYPE_LOCAL_BANK_FIELD:
1024					case ACPI_TYPE_LOCAL_INDEX_FIELD:
1025
1026						status =
1027						    acpi_ex_read_data_from_field
1028						    (walk_state, return_desc,
1029						     &temp_desc);
1030						if (ACPI_FAILURE(status)) {
1031							return_ACPI_STATUS
1032							    (status);
1033						}
1034
1035						return_desc = temp_desc;
1036						break;
1037
1038					default:
1039
1040						/* Add another reference to the object */
1041
1042						acpi_ut_add_reference
1043						    (return_desc);
1044						break;
1045					}
1046				}
1047				break;
1048
1049			default:
1050
1051				ACPI_ERROR((AE_INFO,
1052					    "Unknown class in reference(%p) - 0x%2.2X",
1053					    operand[0],
1054					    operand[0]->reference.class));
1055
1056				status = AE_TYPE;
1057				goto cleanup;
1058			}
1059		}
1060		break;
1061
1062	default:
1063
1064		ACPI_ERROR((AE_INFO, "Unknown AML opcode 0x%X",
1065			    walk_state->opcode));
1066
1067		status = AE_AML_BAD_OPCODE;
1068		goto cleanup;
1069	}
1070
1071cleanup:
1072
1073	/* Delete return object on error */
1074
1075	if (ACPI_FAILURE(status)) {
1076		acpi_ut_remove_reference(return_desc);
1077	}
1078
1079	/* Save return object on success */
1080
1081	else {
1082		walk_state->result_obj = return_desc;
1083	}
1084
1085	return_ACPI_STATUS(status);
1086}