input:b0011v0001p0001eAB41-e0,1,4,11,14,k71,72,73,74,75,76,77,79,7A,7B,7C,7D,7E,7F,80,8C,8E,8F,9B,9C,9D,9E,9F,A3,A4,A5,A6,AC,AD,B7,B8,B9,D9,E2,ram4,l0,1,2,sfw
      -ˆl–ßi~”Je¶…8 �q¦î	•1hßÇ0ÀÉ     /ˆÈÇ440ÆÀÉ ¸    //* SPDX-License-Identifier: GPL-2.0-only */
/* include/video/platform_lcd.h
 *
 * Copyright 2008 Simtec Electronics
 *	Ben Dooks <ben@simtec.co.uk>
 *
 * Generic platform-device LCD power control interface.
*/

struct plat_lcd_data;
struct fb_info;

struct plat_lcd_data {
	int	(*probe)(struct plat_lcd_data *);
	void	(*set_power)(struct plat_lcd_data *, unsigned int power);
	int	(*match_fb)(struct plat_lcd_data *, struct fb_info *);
};

  	   1ˆÄÇ0ÀÉ     3ˆÈÇ„ŸlÆÀÉ 2–    3/* SPDX-License-Identifier: GPL-2.0 */
#ifndef _NET_FLOW_DISSECTOR_H
#define _NET_FLOW_DISSECTOR_H

#include <linux/types.h>
#include <linux/in6.h>
#include <linux/siphash.h>
#include <linux/string.h>
#include <uapi/linux/if_ether.h>
#include <uapi/linux/pkt_cls.h>

struct bpf_prog;
struct net;
struct sk_buff;

/**
 * struct flow_dissector_key_control:
 * @thoff:     Transport header offset
 * @addr_type: Type of key. One of FLOW_DISSECTOR_KEY_*
 * @flags:     Key flags.
 *             Any of FLOW_DIS_(IS_FRAGMENT|FIRST_FRAG|ENCAPSULATION|F_*)
 */
struct flow_dissector_key_control {
	u16	thoff;
	u16	addr_type;
	u32	flags;
};

/* The control flags are kept in sync with TCA_FLOWER_KEY_FLAGS_*, as those
 * flags are exposed to userspace in some error paths, ie. unsupported flags.
 */
enum flow_dissector_ctrl_flags {
	FLOW_DIS_IS_FRAGMENT		= TCA_FLOWER_KEY_FLAGS_IS_FRAGMENT,
	FLOW_DIS_FIRST_FRAG		= TCA_FLOWER_KEY_FLAGS_FRAG_IS_FIRST,
	FLOW_DIS_F_TUNNEL_CSUM		= TCA_FLOWER_KEY_FLAGS_TUNNEL_CSUM,
	FLOW_DIS_F_TUNNEL_DONT_FRAGMENT	= TCA_FLOWER_KEY_FLAGS_TUNNEL_DONT_FRAGMENT,
	FLOW_DIS_F_TUNNEL_OAM		= TCA_FLOWER_KEY_FLAGS_TUNNEL_OAM,
	FLOW_DIS_F_TUNNEL_CRIT_OPT	= TCA_FLOWER_KEY_FLAGS_TUNNEL_CRIT_OPT,

	/* These flags are internal to the kernel */
	FLOW_DIS_ENCAPSULATION		= (TCA_FLOWER_KEY_FLAGS_MAX << 1),
};

enum flow_dissect_ret {
	FLOW_DISSECT_RET_OUT_GOOD,
	FLOW_DISSECT_RET_OUT_BAD,
	FLOW_DISSECT_RET_PROTO_AGAIN,
	FLOW_DISSECT_RET_IPPROTO_AGAIN,
	FLOW_DISSECT_RET_CONTINUE,
};

/**
 * struct flow_dissector_key_basic:
 * @n_proto:  Network header protocol (eg. IPv4/IPv6)
 * @ip_proto: Transport header protocol (eg. TCP/UDP)
 * @padding:  Unused
 */
struct flow_dissector_key_basic {
	__be16	n_proto;
	u8	ip_proto;
	u8	padding;
};

struct flow_dissector_key_tags {
	u32	flow_label;
};

struct flow_dissector_key_vlan {
	union {
		struct {
			u16	vlan_id:12,
				vlan_dei:1,
				vlan_priority:3;
		};
		__be16	vlan_tci;
	};
	__be16	vlan_tpid;
	__be16	vlan_eth_type;
	u16	padding;
};

struct flow_dissector_mpls_lse {
	u32	mpls_ttl:8,
		mpls_bos:1,
		mpls_tc:3,
		mpls_label:20;
};

#define FLOW_DIS_MPLS_MAX 7
struct flow_dissector_key_mpls {
	struct flow_dissector_mpls_lse ls[FLOW_DIS_MPLS_MAX]; /* Label Stack */
	u8 used_lses; /* One bit set for each Label Stack Entry in use */
};

static inline void dissector_set_mpls_lse(struct flow_dissector_key_mpls *mpls,
					  int lse_index)
{
	mpls->used_lses |= 1 << lse_index;
}

#define FLOW_DIS_TUN_OPTS_MAX 255
/**
 * struct flow_dissector_key_enc_opts:
 * @data: tunnel option data
 * @len: length of tunnel option data
 * @dst_opt_type: tunnel option type
 */
struct flow_dissector_key_enc_opts {
	u8 data[FLOW_DIS_TUN_OPTS_MAX];	/* Using IP_TUNNEL_OPTS_MAX is desired
					 * here but seems difficult to #include
					 */
	u8 len;
	u32 dst_opt_type;
};

struct flow_dissector_key_keyid {
	__be32	keyid;
};

/**
 * struct flow_dissector_key_ipv4_addrs:
 * @src: source ip address
 * @dst: destination ip address
 */
struct flow_dissector_key_ipv4_addrs {
	/* (src,dst) must be grouped, in the same way than in IP header */
	__be32 src;
	__be32 dst;
};

/**
 * struct flow_dissector_key_ipv6_addrs:
 * @src: source ip address
 * @dst: destination ip address
 */
struct flow_dissector_key_ipv6_addrs {
	/* (src,dst) must be grouped, in the same way than in IP header */
	struct in6_addr src;
	struct in6_ad