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📄 hwregs.c

📁 xen虚拟机源代码安装包
💻 C
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/******************************************************************************* * * Module Name: hwregs - Read/write access functions for the various ACPI *                       control and status registers. * ******************************************************************************//* * Copyright (C) 2000 - 2006, R. Byron Moore * All rights reserved. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright *    notice, this list of conditions, and the following disclaimer, *    without modification. * 2. Redistributions in binary form must reproduce at minimum a disclaimer *    substantially similar to the "NO WARRANTY" disclaimer below *    ("Disclaimer") and any redistribution must be conditioned upon *    including a substantially similar Disclaimer requirement for further *    binary redistribution. * 3. Neither the names of the above-listed copyright holders nor the names *    of any contributors may be used to endorse or promote products derived *    from this software without specific prior written permission. * * Alternatively, this software may be distributed under the terms of the * GNU General Public License ("GPL") version 2 as published by the Free * Software Foundation. * * NO WARRANTY * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS * "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT * LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTIBILITY AND FITNESS FOR * A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT * HOLDERS OR CONTRIBUTORS BE LIABLE FOR SPECIAL, EXEMPLARY, OR CONSEQUENTIAL * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE * POSSIBILITY OF SUCH DAMAGES. */#include <asm/io.h>#include <xen/config.h>#include <xen/init.h>#include <xen/types.h>#include <xen/errno.h>#include <acpi/acpi.h>#define _COMPONENT          ACPI_HARDWAREACPI_MODULE_NAME("hwregs")/******************************************************************************* * * FUNCTION:    acpi_hw_get_register_bit_mask * * PARAMETERS:  register_id         - Index of ACPI Register to access * * RETURN:      The bitmask to be used when accessing the register * * DESCRIPTION: Map register_id into a register bitmask. * ******************************************************************************/struct acpi_bit_register_info *acpi_hw_get_bit_register_info(u32 register_id){	ACPI_FUNCTION_ENTRY();	if (register_id > ACPI_BITREG_MAX) {		ACPI_DEBUG_PRINT((AE_INFO, "Invalid BitRegister ID: %X",			    register_id));		return (NULL);	}	return (&acpi_gbl_bit_register_info[register_id]);}/******************************************************************************* * * FUNCTION:    acpi_get_register * * PARAMETERS:  register_id     - ID of ACPI bit_register to access *              return_value    - Value that was read from the register * * RETURN:      Status and the value read from specified Register. Value *              returned is normalized to bit0 (is shifted all the way right) * * DESCRIPTION: ACPI bit_register read function. * ******************************************************************************/acpi_status acpi_get_register_unlocked(u32 register_id, u32 * return_value){	u32 register_value = 0;	struct acpi_bit_register_info *bit_reg_info;	acpi_status status;	ACPI_FUNCTION_TRACE(acpi_get_register);	/* Get the info structure corresponding to the requested ACPI Register */	bit_reg_info = acpi_hw_get_bit_register_info(register_id);	if (!bit_reg_info) {		return_ACPI_STATUS(AE_BAD_PARAMETER);	}	/* Read from the register */	status = acpi_hw_register_read(bit_reg_info->parent_register,				       &register_value);	if (ACPI_SUCCESS(status)) {		/* Normalize the value that was read */		register_value =		    ((register_value & bit_reg_info->access_bit_mask)		     >> bit_reg_info->bit_position);		*return_value = register_value;		ACPI_DEBUG_PRINT((ACPI_DB_IO, "Read value %8.8X register %X\n",				  register_value,				  bit_reg_info->parent_register));	}	return_ACPI_STATUS(status);}acpi_status acpi_get_register(u32 register_id, u32 * return_value){	acpi_status status;	//acpi_cpu_flags flags;	//flags = acpi_os_acquire_lock(acpi_gbl_hardware_lock);	status = acpi_get_register_unlocked(register_id, return_value);	//acpi_os_release_lock(acpi_gbl_hardware_lock, flags);	return status;}/******************************************************************************* * * FUNCTION:    acpi_set_register * * PARAMETERS:  register_id     - ID of ACPI bit_register to access *              Value           - (only used on write) value to write to the *                                Register, NOT pre-normalized to the bit pos * * RETURN:      Status * * DESCRIPTION: ACPI Bit Register write function. * ******************************************************************************/acpi_status acpi_set_register(u32 register_id, u32 value){	u32 register_value = 0;	struct acpi_bit_register_info *bit_reg_info;	acpi_status status;	//acpi_cpu_flags lock_flags;	ACPI_FUNCTION_TRACE_U32(acpi_set_register, register_id);	/* Get the info structure corresponding to the requested ACPI Register */	bit_reg_info = acpi_hw_get_bit_register_info(register_id);	if (!bit_reg_info) {		ACPI_DEBUG_PRINT((AE_INFO, "Bad ACPI HW RegisterId: %X",			    register_id));		return_ACPI_STATUS(AE_BAD_PARAMETER);	}	//lock_flags = acpi_os_acquire_lock(acpi_gbl_hardware_lock);	/* Always do a register read first so we can insert the new bits  */	status = acpi_hw_register_read(bit_reg_info->parent_register,				       &register_value);	if (ACPI_FAILURE(status)) {		goto unlock_and_exit;	}	/*	 * Decode the Register ID	 * Register ID = [Register block ID] | [bit ID]	 *	 * Check bit ID to fine locate Register offset.	 * Check Mask to determine Register offset, and then read-write.	 */	switch (bit_reg_info->parent_register) {	case ACPI_REGISTER_PM1_STATUS:		/*		 * Status Registers are different from the rest. Clear by		 * writing 1, and writing 0 has no effect. So, the only relevant		 * information is the single bit we're interested in, all others should		 * be written as 0 so they will be left unchanged.		 */		value = ACPI_REGISTER_PREPARE_BITS(value,						   bit_reg_info->bit_position,						   bit_reg_info->						   access_bit_mask);		if (value) {			status = acpi_hw_register_write(ACPI_REGISTER_PM1_STATUS,							(u16) value);			register_value = 0;		}		break;	case ACPI_REGISTER_PM1_ENABLE:		ACPI_REGISTER_INSERT_VALUE(register_value,					   bit_reg_info->bit_position,					   bit_reg_info->access_bit_mask,					   value);		status = acpi_hw_register_write(ACPI_REGISTER_PM1_ENABLE,						(u16) register_value);		break;	case ACPI_REGISTER_PM1_CONTROL:		/*		 * Write the PM1 Control register.		 * Note that at this level, the fact that there are actually TWO		 * registers (A and B - and B may not exist) is abstracted.		 */		ACPI_DEBUG_PRINT((ACPI_DB_IO, "PM1 control: Read %X\n",				  register_value));		ACPI_REGISTER_INSERT_VALUE(register_value,					   bit_reg_info->bit_position,					   bit_reg_info->access_bit_mask,					   value);		status = acpi_hw_register_write(ACPI_REGISTER_PM1_CONTROL,						(u16) register_value);		break;	case ACPI_REGISTER_PM2_CONTROL:		status = acpi_hw_register_read(ACPI_REGISTER_PM2_CONTROL,					       &register_value);		if (ACPI_FAILURE(status)) {			goto unlock_and_exit;		}		ACPI_DEBUG_PRINT((ACPI_DB_IO,				  "PM2 control: Read %X from %8.8X%8.8X\n",				  register_value,				  ACPI_FORMAT_UINT64(acpi_gbl_FADT.						     xpm2_control_block.						     address)));		ACPI_REGISTER_INSERT_VALUE(register_value,					   bit_reg_info->bit_position,					   bit_reg_info->access_bit_mask,					   value);		ACPI_DEBUG_PRINT((ACPI_DB_IO,				  "About to write %4.4X to %8.8X%8.8X\n",				  register_value,				  ACPI_FORMAT_UINT64(acpi_gbl_FADT.						     xpm2_control_block.						     address)));		status = acpi_hw_register_write(ACPI_REGISTER_PM2_CONTROL,						(u8) (register_value));		break;	default:		break;	}      unlock_and_exit:	//acpi_os_release_lock(acpi_gbl_hardware_lock, lock_flags);	/* Normalize the value that was read */	ACPI_DEBUG_EXEC(register_value =			((register_value & bit_reg_info->access_bit_mask) >>			 bit_reg_info->bit_position));	ACPI_DEBUG_PRINT((ACPI_DB_IO,			  "Set bits: %8.8X actual %8.8X register %X\n", value,			  register_value, bit_reg_info->parent_register));	return_ACPI_STATUS(status);}/****************************************************************************** * * FUNCTION:    acpi_hw_register_read * * PARAMETERS:  register_id         - ACPI Register ID *              return_value        - Where the register value is returned * * RETURN:      Status and the value read. * * DESCRIPTION: Read from the specified ACPI register * ******************************************************************************/acpi_statusacpi_hw_register_read(u32 register_id, u32 * return_value){	u32 value1 = 0;	u32 value2 = 0;	acpi_status status;	ACPI_FUNCTION_TRACE(hw_register_read);	switch (register_id) {	case ACPI_REGISTER_PM1_STATUS:	/* 16-bit access */		status =		    acpi_hw_low_level_read(16, &value1,					   &acpi_gbl_FADT.xpm1a_event_block);		if (ACPI_FAILURE(status)) {			goto exit;		}		/* PM1B is optional */		status =		    acpi_hw_low_level_read(16, &value2,					   &acpi_gbl_FADT.xpm1b_event_block);		value1 |= value2;		break;	case ACPI_REGISTER_PM1_ENABLE:	/* 16-bit access */		status =		    acpi_hw_low_level_read(16, &value1, &acpi_gbl_xpm1a_enable);		if (ACPI_FAILURE(status)) {			goto exit;		}		/* PM1B is optional */		status =		    acpi_hw_low_level_read(16, &value2, &acpi_gbl_xpm1b_enable);		value1 |= value2;		break;

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