auto
  	   gˆ¾Î0¿Ð     iˆÏÎƒ`Í¿Ð Þ    i/* SPDX-License-Identifier: GPL-2.0 */
/*
 * NFS protocol definitions
 *
 * This file contains constants mostly for Version 2 of the protocol,
 * but also has a couple of NFSv3 bits in (notably the error codes).
 */
#ifndef _LINUX_NFS_H
#define _LINUX_NFS_H

#include <linux/sunrpc/msg_prot.h>
#include <linux/string.h>
#include <linux/crc32.h>
#include <uapi/linux/nfs.h>

/*
 * This is the kernel NFS client file handle representation
 */
#define NFS_MAXFHSIZE		128
struct nfs_fh {
	unsigned short		size;
	unsigned char		data[NFS_MAXFHSIZE];
};

/*
 * Returns a zero iff the size and data fields match.
 * Checks only "size" bytes in the data field.
 */
static inline int nfs_compare_fh(const struct nfs_fh *a, const struct nfs_fh *b)
{
	return a->size != b->size || memcmp(a->data, b->data, a->size) != 0;
}

static inline void nfs_copy_fh(struct nfs_fh *target, const struct nfs_fh *source)
{
	target->size = source->size;
	memcpy(target->data, source->data, source->size);
}

enum nfs3_stable_how {
	NFS_UNSTABLE = 0,
	NFS_DATA_SYNC = 1,
	NFS_FILE_SYNC = 2,

	/* used by direct.c to mark verf as invalid */
	NFS_INVALID_STABLE_HOW = -1
};

/**
 * nfs_fhandle_hash - calculate the crc32 hash for the filehandle
 * @fh - pointer to filehandle
 *
 * returns a crc32 hash for the filehandle that is compatible with
 * the one displayed by "wireshark".
 */
static inline u32 nfs_fhandle_hash(const struct nfs_fh *fh)
{
	return ~crc32_le(0xFFFFFFFF, &fh->data[0], fh->size);
}
#endif /* _LINUX_NFS_H */
     k�Ì¿Ð      kFile not found.
      mˆl–äY>”êe¶…8 ]¸.Å1hßÏ0ÀÑ     o�ÍÀÑ      oFile not found.
     qˆÐÏƒ|/ƒÎÀÑ #æ    q/* SPDX-License-Identifier: GPL-2.0-only */
/*
 * HID Sensors Driver
 * Copyright (c) 2012, Intel Corporation.
 */
#ifndef _HID_SENSORS_HUB_H
#define _HID_SENSORS_HUB_H

#include <linux/hid.h>
#include <linux/hid-sensor-ids.h>
#include <linux/iio/iio.h>
#include <linux/iio/trigger.h>

/**
 * struct hid_sensor_hub_attribute_info - Attribute info
 * @usage_id:		Parent usage id of a physical device.
 * @attrib_id:		Attribute id for this attribute.
 * @report_id:		Report id in which this information resides.
 * @index:		Field index in the report.
 * @units:		Measurment unit for this attribute.
 * @unit_expo:		Exponent used in the data.
 * @size:		Size in bytes for data size.
 * @logical_minimum:	Logical minimum value for this attribute.
 * @logical_maximum:	Logical maximum value for this attribute.
 */
struct hid_sensor_hub_attribute_info {
	u32 usage_id;
	u32 attrib_id;
	s32 report_id;
	s32 index;
	s32 units;
	s32 unit_expo;
	s32 size;
	s32 logical_minimum;
	s32 logical_maximum;
};

/**
 * struct sensor_hub_pending - Synchronous read pending information
 * @status:		Pending status true/false.
 * @ready:		Completion synchronization data.
 * @usage_id:		Usage id for physical device, E.g. Gyro usage id.
 * @attr_usage_id:	Usage Id of a field, E.g. X-AXIS for a gyro.
 * @raw_size:		Response size for a read request.
 * @raw_data:		Place holder for received response.
 */
struct sensor_hub_pending {
	bool status;
	struct completion ready;
	u32 usage_id;
	u32 attr_usage_id;
	int raw_size;
	u8  *raw_data;
};

/**
 * struct hid_sensor_hub_device - Stores the hub instance data
 * @hdev:		Stores the hid instance.
 * @vendor_id:		Vendor id of hub device.
 * @product_id:		Product id of hub device.
 * @usage:		Usage id for this hub device instance.
 * @start_collection_index: Starting index for a phy type collection
 * @end_collection_index: Last index for a phy type collection
 * @mutex_ptr:		synchronizing mutex pointer.
 * @pending:		Holds information of pending sync read request.
 */
struct hid_sensor_hub_device {
	struct hid_device *hdev;
	u32 vendor_id;
	u32 product_id;
	u32 usage;
	int start_collection_index;
	int end_collection_index;
	struct mutex *mutex_ptr;
	struct sensor_hub_pending pending;
};

/**
 * struct hid_sensor_hub_callbacks - Client callback functions
 * @pdev:		Platform device instance of the client driver.
 * @suspend:		Suspend callback.
 * @resum