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📄 dsopcode.c

📁 microwindows移植到S3C44B0的源码
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		bit_count   = 32;		field_flags = ACCESS_DWORD_ACC;		break;	/* Def_create_qWord_field */	case AML_CREATE_QWORD_FIELD_OP:		/* Offset is in bytes, field is one qword */		bit_offset  = 8 * offset;		bit_count   = 64;		field_flags = ACCESS_QWORD_ACC;		break;	default:		ACPI_DEBUG_PRINT ((ACPI_DB_ERROR,			"Internal error - unknown field creation opcode %02x\n",			op->opcode));		status = AE_AML_BAD_OPCODE;		goto cleanup;	}	/*	 * Setup field according to the object type	 */	switch (src_desc->common.type) {	/* Source_buff :=  Term_arg=>Buffer */	case ACPI_TYPE_BUFFER:		if ((bit_offset + bit_count) >			(8 * (u32) src_desc->buffer.length)) {			ACPI_DEBUG_PRINT ((ACPI_DB_ERROR,				"Field size %d exceeds Buffer size %d (bits)\n",				 bit_offset + bit_count, 8 * (u32) src_desc->buffer.length));			status = AE_AML_BUFFER_LIMIT;			goto cleanup;		}		/*		 * Initialize areas of the field object that are common to all fields		 * For Field_flags, use LOCK_RULE = 0 (NO_LOCK), UPDATE_RULE = 0 (UPDATE_PRESERVE)		 */		status = acpi_ex_prep_common_field_object (obj_desc, field_flags,				  bit_offset, bit_count);		if (ACPI_FAILURE (status)) {			return_ACPI_STATUS (status);		}		obj_desc->buffer_field.buffer_obj = src_desc;		/* Reference count for Src_desc inherits Obj_desc count */		src_desc->common.reference_count = (u16) (src_desc->common.reference_count +				  obj_desc->common.reference_count);		break;	/* Improper object type */	default:		if ((src_desc->common.type > (u8) INTERNAL_TYPE_REFERENCE) || !acpi_ut_valid_object_type (src_desc->common.type)) /* TBD: This line MUST be a single line until Acpi_src can handle it (block deletion) */ {			ACPI_DEBUG_PRINT ((ACPI_DB_ERROR,				"Tried to create field in invalid object type %X\n",				src_desc->common.type));		}		else {			ACPI_DEBUG_PRINT ((ACPI_DB_ERROR,				"Tried to create field in improper object type - %s\n",				acpi_ut_get_type_name (src_desc->common.type)));		}		status = AE_AML_OPERAND_TYPE;		goto cleanup;	}	if (AML_CREATE_FIELD_OP == op->opcode) {		/* Delete object descriptor unique to Create_field */		acpi_ut_remove_reference (cnt_desc);		cnt_desc = NULL;	}cleanup:	/* Always delete the operands */	acpi_ut_remove_reference (off_desc);	acpi_ut_remove_reference (src_desc);	if (AML_CREATE_FIELD_OP == op->opcode) {		acpi_ut_remove_reference (cnt_desc);	}	/* On failure, delete the result descriptor */	if (ACPI_FAILURE (status)) {		acpi_ut_remove_reference (res_desc); /* Result descriptor */	}	else {		/* Now the address and length are valid for this Buffer_field */		obj_desc->buffer_field.flags |= AOPOBJ_DATA_VALID;	}	return_ACPI_STATUS (status);}/***************************************************************************** * * FUNCTION:    Acpi_ds_eval_region_operands * * PARAMETERS:  Op              - A valid region Op object * * RETURN:      Status * * DESCRIPTION: Get region address and length *              Called from Acpi_ds_exec_end_op during Op_region parse tree walk * ****************************************************************************/acpi_statusacpi_ds_eval_region_operands (	acpi_walk_state         *walk_state,	acpi_parse_object       *op){	acpi_status             status;	acpi_operand_object     *obj_desc;	acpi_operand_object     *operand_desc;	acpi_namespace_node     *node;	acpi_parse_object       *next_op;	FUNCTION_TRACE_PTR ("Ds_eval_region_operands", op);	/*	 * This is where we evaluate the address and length fields of the Op_region declaration	 */	node =  op->node;	/* Next_op points to the op that holds the Space_iD */	next_op = op->value.arg;	/* Next_op points to address op */	next_op = next_op->next;	/* Acpi_evaluate/create the address and length operands */	status = acpi_ds_create_operands (walk_state, next_op);	if (ACPI_FAILURE (status)) {		return_ACPI_STATUS (status);	}	/* Resolve the length and address operands to numbers */	status = acpi_ex_resolve_operands (op->opcode, WALK_OPERANDS, walk_state);	if (ACPI_FAILURE (status)) {		return_ACPI_STATUS (status);	}	DUMP_OPERANDS (WALK_OPERANDS, IMODE_EXECUTE,			  acpi_ps_get_opcode_name (op->opcode),			  1, "after Acpi_ex_resolve_operands");	obj_desc = acpi_ns_get_attached_object (node);	if (!obj_desc) {		return_ACPI_STATUS (AE_NOT_EXIST);	}	/*	 * Get the length operand and save it	 * (at Top of stack)	 */	operand_desc = walk_state->operands[walk_state->num_operands - 1];	obj_desc->region.length = (u32) operand_desc->integer.value;	acpi_ut_remove_reference (operand_desc);	/*	 * Get the address and save it	 * (at top of stack - 1)	 */	operand_desc = walk_state->operands[walk_state->num_operands - 2];	obj_desc->region.address = (ACPI_PHYSICAL_ADDRESS) operand_desc->integer.value;	acpi_ut_remove_reference (operand_desc);	ACPI_DEBUG_PRINT ((ACPI_DB_EXEC, "Rgn_obj %p Addr %8.8X%8.8X Len %X\n",		obj_desc, HIDWORD(obj_desc->region.address), LODWORD(obj_desc->region.address),		obj_desc->region.length));	/* Now the address and length are valid for this opregion */	obj_desc->region.flags |= AOPOBJ_DATA_VALID;	return_ACPI_STATUS (status);}/******************************************************************************* * * FUNCTION:    Acpi_ds_exec_begin_control_op * * PARAMETERS:  Walk_list       - The list that owns the walk stack *              Op              - The control Op * * RETURN:      Status * * DESCRIPTION: Handles all control ops encountered during control method *              execution. * ******************************************************************************/acpi_statusacpi_ds_exec_begin_control_op (	acpi_walk_state         *walk_state,	acpi_parse_object       *op){	acpi_status             status = AE_OK;	acpi_generic_state      *control_state;	PROC_NAME ("Ds_exec_begin_control_op");	ACPI_DEBUG_PRINT ((ACPI_DB_DISPATCH, "Op=%p Opcode=%2.2X State=%p\n", op,		op->opcode, walk_state));	switch (op->opcode) {	case AML_IF_OP:	case AML_WHILE_OP:		/*		 * IF/WHILE: Create a new control state to manage these		 * constructs. We need to manage these as a stack, in order		 * to handle nesting.		 */		control_state = acpi_ut_create_control_state ();		if (!control_state) {			status = AE_NO_MEMORY;			break;		}		acpi_ut_push_generic_state (&walk_state->control_state, control_state);		/*		 * Save a pointer to the predicate for multiple executions		 * of a loop		 */		walk_state->control_state->control.aml_predicate_start =				 walk_state->parser_state.aml - 1;				 /* TBD: can this be removed? */				 /*Acpi_ps_pkg_length_encoding_size (GET8 (Walk_state->Parser_state->Aml));*/		break;	case AML_ELSE_OP:		/* Predicate is in the state object */		/* If predicate is true, the IF was executed, ignore ELSE part */		if (walk_state->last_predicate) {			status = AE_CTRL_TRUE;		}		break;	case AML_RETURN_OP:		break;	default:		break;	}	return (status);}/******************************************************************************* * * FUNCTION:    Acpi_ds_exec_end_control_op * * PARAMETERS:  Walk_list       - The list that owns the walk stack *              Op              - The control Op * * RETURN:      Status * * DESCRIPTION: Handles all control ops encountered during control method *              execution. * * ******************************************************************************/acpi_statusacpi_ds_exec_end_control_op (	acpi_walk_state         *walk_state,	acpi_parse_object       *op){	acpi_status             status = AE_OK;	acpi_generic_state      *control_state;	PROC_NAME ("Ds_exec_end_control_op");	switch (op->opcode) {	case AML_IF_OP:		ACPI_DEBUG_PRINT ((ACPI_DB_DISPATCH, "[IF_OP] Op=%p\n", op));		/*		 * Save the result of the predicate in case there is an		 * ELSE to come		 */		walk_state->last_predicate =			(u8) walk_state->control_state->common.value;		/*		 * Pop the control state that was created at the start		 * of the IF and free it		 */		control_state = acpi_ut_pop_generic_state (&walk_state->control_state);		acpi_ut_delete_generic_state (control_state);		break;	case AML_ELSE_OP:		break;	case AML_WHILE_OP:		ACPI_DEBUG_PRINT ((ACPI_DB_DISPATCH, "[WHILE_OP] Op=%p\n", op));		if (walk_state->control_state->common.value) {			/* Predicate was true, go back and evaluate it again! */			status = AE_CTRL_PENDING;		}		ACPI_DEBUG_PRINT ((ACPI_DB_DISPATCH, "[WHILE_OP] termination! Op=%p\n", op));		/* Pop this control state and free it */		control_state = acpi_ut_pop_generic_state (&walk_state->control_state);		walk_state->aml_last_while = control_state->control.aml_predicate_start;		acpi_ut_delete_generic_state (control_state);		break;	case AML_RETURN_OP:		ACPI_DEBUG_PRINT ((ACPI_DB_DISPATCH,			"[RETURN_OP] Op=%p Arg=%p\n",op, op->value.arg));		/*		 * One optional operand -- the return value		 * It can be either an immediate operand or a result that		 * has been bubbled up the tree		 */		if (op->value.arg) {			/* Return statement has an immediate operand */			status = acpi_ds_create_operands (walk_state, op->value.arg);			if (ACPI_FAILURE (status)) {				return (status);			}			/*			 * If value being returned is a Reference (such as			 * an arg or local), resolve it now because it may			 * cease to exist at the end of the method.			 */			status = acpi_ex_resolve_to_value (&walk_state->operands [0], walk_state);			if (ACPI_FAILURE (status)) {				return (status);			}			/*			 * Get the return value and save as the last result			 * value.  This is the only place where Walk_state->Return_desc			 * is set to anything other than zero!			 */			walk_state->return_desc = walk_state->operands[0];		}		else if ((walk_state->results) &&				 (walk_state->results->results.num_results > 0)) {			/*			 * The return value has come from a previous calculation.			 *			 * If value being returned is a Reference (such as			 * an arg or local), resolve it now because it may			 * cease to exist at the end of the method.			 *			 * Allow references created by the Index operator to return unchanged.			 */			if (VALID_DESCRIPTOR_TYPE (walk_state->results->results.obj_desc [0], ACPI_DESC_TYPE_INTERNAL) &&				((walk_state->results->results.obj_desc [0])->common.type == INTERNAL_TYPE_REFERENCE) &&				((walk_state->results->results.obj_desc [0])->reference.opcode != AML_INDEX_OP)) {					status = acpi_ex_resolve_to_value (&walk_state->results->results.obj_desc [0], walk_state);					if (ACPI_FAILURE (status)) {						return (status);					}			}			walk_state->return_desc = walk_state->results->results.obj_desc [0];		}		else {			/* No return operand */			if (walk_state->num_operands) {				acpi_ut_remove_reference (walk_state->operands [0]);			}			walk_state->operands [0]    = NULL;			walk_state->num_operands    = 0;			walk_state->return_desc     = NULL;		}		ACPI_DEBUG_PRINT ((ACPI_DB_DISPATCH,			"Completed RETURN_OP State=%p, Ret_val=%p\n",			walk_state, walk_state->return_desc));		/* End the control method execution right now */		status = AE_CTRL_TERMINATE;		break;	case AML_NOOP_OP:		/* Just do nothing! */		break;	case AML_BREAK_POINT_OP:		/* Call up to the OS service layer to handle this */		acpi_os_signal (ACPI_SIGNAL_BREAKPOINT, "Executed AML Breakpoint opcode");		/* If and when it returns, all done. */		break;	case AML_BREAK_OP:		ACPI_DEBUG_PRINT ((ACPI_DB_INFO,			"Break to end of current package, Op=%p\n", op));		/* TBD: update behavior for ACPI 2.0 */		/*		 * As per the ACPI specification:		 *      "The break operation causes the current package		 *          execution to complete"		 *      "Break -- Stop executing the current code package		 *          at this point"		 *		 * Returning AE_FALSE here will cause termination of		 * the current package, and execution will continue one		 * level up, starting with the completion of the parent Op.		 */		status = AE_CTRL_FALSE;		break;	case AML_CONTINUE_OP: /* ACPI 2.0 */		status = AE_NOT_IMPLEMENTED;		break;	default:		ACPI_DEBUG_PRINT ((ACPI_DB_ERROR, "Unknown control opcode=%X Op=%p\n",			op->opcode, op));		status = AE_AML_BAD_OPCODE;		break;	}	return (status);}

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