dsa.h 33.2 KB
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/* SPDX-License-Identifier: GPL-2.0-or-later */
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/*
 * include/net/dsa.h - Driver for Distributed Switch Architecture switch chips
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 * Copyright (c) 2008-2009 Marvell Semiconductor
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 */

#ifndef __LINUX_NET_DSA_H
#define __LINUX_NET_DSA_H

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#include <linux/if.h>
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#include <linux/if_ether.h>
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#include <linux/list.h>
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#include <linux/notifier.h>
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#include <linux/timer.h>
#include <linux/workqueue.h>
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#include <linux/of.h>
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#include <linux/ethtool.h>
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#include <linux/net_tstamp.h>
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#include <linux/phy.h>
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#include <linux/platform_data/dsa.h>
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#include <linux/phylink.h>
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#include <net/devlink.h>
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#include <net/switchdev.h>
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struct tc_action;
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struct phy_device;
struct fixed_phy_status;
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struct phylink_link_state;
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#define DSA_TAG_PROTO_NONE_VALUE		0
#define DSA_TAG_PROTO_BRCM_VALUE		1
#define DSA_TAG_PROTO_BRCM_PREPEND_VALUE	2
#define DSA_TAG_PROTO_DSA_VALUE			3
#define DSA_TAG_PROTO_EDSA_VALUE		4
#define DSA_TAG_PROTO_GSWIP_VALUE		5
#define DSA_TAG_PROTO_KSZ9477_VALUE		6
#define DSA_TAG_PROTO_KSZ9893_VALUE		7
#define DSA_TAG_PROTO_LAN9303_VALUE		8
#define DSA_TAG_PROTO_MTK_VALUE			9
#define DSA_TAG_PROTO_QCA_VALUE			10
#define DSA_TAG_PROTO_TRAILER_VALUE		11
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#define DSA_TAG_PROTO_8021Q_VALUE		12
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#define DSA_TAG_PROTO_SJA1105_VALUE		13
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#define DSA_TAG_PROTO_KSZ8795_VALUE		14
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#define DSA_TAG_PROTO_OCELOT_VALUE		15
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#define DSA_TAG_PROTO_AR9331_VALUE		16
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#define DSA_TAG_PROTO_RTL4_A_VALUE		17
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#define DSA_TAG_PROTO_HELLCREEK_VALUE		18
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#define DSA_TAG_PROTO_XRS700X_VALUE		19
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#define DSA_TAG_PROTO_OCELOT_8021Q_VALUE	20
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#define DSA_TAG_PROTO_SEVILLE_VALUE		21
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#define DSA_TAG_PROTO_BRCM_LEGACY_VALUE		22
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#define DSA_TAG_PROTO_SJA1110_VALUE		23
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enum dsa_tag_protocol {
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	DSA_TAG_PROTO_NONE		= DSA_TAG_PROTO_NONE_VALUE,
	DSA_TAG_PROTO_BRCM		= DSA_TAG_PROTO_BRCM_VALUE,
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	DSA_TAG_PROTO_BRCM_LEGACY	= DSA_TAG_PROTO_BRCM_LEGACY_VALUE,
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	DSA_TAG_PROTO_BRCM_PREPEND	= DSA_TAG_PROTO_BRCM_PREPEND_VALUE,
	DSA_TAG_PROTO_DSA		= DSA_TAG_PROTO_DSA_VALUE,
	DSA_TAG_PROTO_EDSA		= DSA_TAG_PROTO_EDSA_VALUE,
	DSA_TAG_PROTO_GSWIP		= DSA_TAG_PROTO_GSWIP_VALUE,
	DSA_TAG_PROTO_KSZ9477		= DSA_TAG_PROTO_KSZ9477_VALUE,
	DSA_TAG_PROTO_KSZ9893		= DSA_TAG_PROTO_KSZ9893_VALUE,
	DSA_TAG_PROTO_LAN9303		= DSA_TAG_PROTO_LAN9303_VALUE,
	DSA_TAG_PROTO_MTK		= DSA_TAG_PROTO_MTK_VALUE,
	DSA_TAG_PROTO_QCA		= DSA_TAG_PROTO_QCA_VALUE,
	DSA_TAG_PROTO_TRAILER		= DSA_TAG_PROTO_TRAILER_VALUE,
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	DSA_TAG_PROTO_8021Q		= DSA_TAG_PROTO_8021Q_VALUE,
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	DSA_TAG_PROTO_SJA1105		= DSA_TAG_PROTO_SJA1105_VALUE,
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	DSA_TAG_PROTO_KSZ8795		= DSA_TAG_PROTO_KSZ8795_VALUE,
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	DSA_TAG_PROTO_OCELOT		= DSA_TAG_PROTO_OCELOT_VALUE,
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	DSA_TAG_PROTO_AR9331		= DSA_TAG_PROTO_AR9331_VALUE,
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	DSA_TAG_PROTO_RTL4_A		= DSA_TAG_PROTO_RTL4_A_VALUE,
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	DSA_TAG_PROTO_HELLCREEK		= DSA_TAG_PROTO_HELLCREEK_VALUE,
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	DSA_TAG_PROTO_XRS700X		= DSA_TAG_PROTO_XRS700X_VALUE,
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	DSA_TAG_PROTO_OCELOT_8021Q	= DSA_TAG_PROTO_OCELOT_8021Q_VALUE,
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	DSA_TAG_PROTO_SEVILLE		= DSA_TAG_PROTO_SEVILLE_VALUE,
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	DSA_TAG_PROTO_SJA1110		= DSA_TAG_PROTO_SJA1110_VALUE,
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};
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struct packet_type;
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struct dsa_switch;
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struct dsa_device_ops {
	struct sk_buff *(*xmit)(struct sk_buff *skb, struct net_device *dev);
	struct sk_buff *(*rcv)(struct sk_buff *skb, struct net_device *dev,
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			       struct packet_type *pt);
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	void (*flow_dissect)(const struct sk_buff *skb, __be16 *proto,
			     int *offset);
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	/* Used to determine which traffic should match the DSA filter in
	 * eth_type_trans, and which, if any, should bypass it and be processed
	 * as regular on the master net device.
	 */
	bool (*filter)(const struct sk_buff *skb, struct net_device *dev);
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	unsigned int needed_headroom;
	unsigned int needed_tailroom;
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	const char *name;
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	enum dsa_tag_protocol proto;
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	/* Some tagging protocols either mangle or shift the destination MAC
	 * address, in which case the DSA master would drop packets on ingress
	 * if what it understands out of the destination MAC address is not in
	 * its RX filter.
	 */
	bool promisc_on_master;
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};

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/* This structure defines the control interfaces that are overlayed by the
 * DSA layer on top of the DSA CPU/management net_device instance. This is
 * used by the core net_device layer while calling various net_device_ops
 * function pointers.
 */
struct dsa_netdevice_ops {
	int (*ndo_do_ioctl)(struct net_device *dev, struct ifreq *ifr,
			    int cmd);
};

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#define DSA_TAG_DRIVER_ALIAS "dsa_tag-"
#define MODULE_ALIAS_DSA_TAG_DRIVER(__proto)				\
	MODULE_ALIAS(DSA_TAG_DRIVER_ALIAS __stringify(__proto##_VALUE))

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struct dsa_switch_tree {
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	struct list_head	list;

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	/* Notifier chain for switch-wide events */
	struct raw_notifier_head	nh;

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	/* Tree identifier */
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	unsigned int index;
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	/* Number of switches attached to this tree */
	struct kref refcount;

	/* Has this tree been applied to the hardware? */
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	bool setup;
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	/* Tagging protocol operations */
	const struct dsa_device_ops *tag_ops;

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	/* Default tagging protocol preferred by the switches in this
	 * tree.
	 */
	enum dsa_tag_protocol default_proto;

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	/*
	 * Configuration data for the platform device that owns
	 * this dsa switch tree instance.
	 */
	struct dsa_platform_data	*pd;

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	/* List of switch ports */
	struct list_head ports;

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	/* List of DSA links composing the routing table */
	struct list_head rtable;
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	/* Maps offloaded LAG netdevs to a zero-based linear ID for
	 * drivers that need it.
	 */
	struct net_device **lags;
	unsigned int lags_len;
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};

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#define dsa_lags_foreach_id(_id, _dst)				\
	for ((_id) = 0; (_id) < (_dst)->lags_len; (_id)++)	\
		if ((_dst)->lags[(_id)])

#define dsa_lag_foreach_port(_dp, _dst, _lag)			\
	list_for_each_entry((_dp), &(_dst)->ports, list)	\
		if ((_dp)->lag_dev == (_lag))

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#define dsa_hsr_foreach_port(_dp, _ds, _hsr)			\
	list_for_each_entry((_dp), &(_ds)->dst->ports, list)	\
		if ((_dp)->ds == (_ds) && (_dp)->hsr_dev == (_hsr))

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static inline struct net_device *dsa_lag_dev(struct dsa_switch_tree *dst,
					     unsigned int id)
{
	return dst->lags[id];
}

static inline int dsa_lag_id(struct dsa_switch_tree *dst,
			     struct net_device *lag)
{
	unsigned int id;

	dsa_lags_foreach_id(id, dst) {
		if (dsa_lag_dev(dst, id) == lag)
			return id;
	}

	return -ENODEV;
}

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/* TC matchall action types */
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enum dsa_port_mall_action_type {
	DSA_PORT_MALL_MIRROR,
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	DSA_PORT_MALL_POLICER,
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};

/* TC mirroring entry */
struct dsa_mall_mirror_tc_entry {
	u8 to_local_port;
	bool ingress;
};

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/* TC port policer entry */
struct dsa_mall_policer_tc_entry {
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	u32 burst;
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	u64 rate_bytes_per_sec;
};

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/* TC matchall entry */
struct dsa_mall_tc_entry {
	struct list_head list;
	unsigned long cookie;
	enum dsa_port_mall_action_type type;
	union {
		struct dsa_mall_mirror_tc_entry mirror;
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		struct dsa_mall_policer_tc_entry policer;
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	};
};


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struct dsa_port {
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	/* A CPU port is physically connected to a master device.
	 * A user port exposed to userspace has a slave device.
	 */
	union {
		struct net_device *master;
		struct net_device *slave;
	};

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	/* Copy of the tagging protocol operations, for quicker access
	 * in the data path. Valid only for the CPU ports.
	 */
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	const struct dsa_device_ops *tag_ops;

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	/* Copies for faster access in master receive hot path */
	struct dsa_switch_tree *dst;
	struct sk_buff *(*rcv)(struct sk_buff *skb, struct net_device *dev,
			       struct packet_type *pt);
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	bool (*filter)(const struct sk_buff *skb, struct net_device *dev);
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	enum {
		DSA_PORT_TYPE_UNUSED = 0,
		DSA_PORT_TYPE_CPU,
		DSA_PORT_TYPE_DSA,
		DSA_PORT_TYPE_USER,
	} type;

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	struct dsa_switch	*ds;
	unsigned int		index;
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	const char		*name;
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	struct dsa_port		*cpu_dp;
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	u8			mac[ETH_ALEN];
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	struct device_node	*dn;
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	unsigned int		ageing_time;
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	bool			vlan_filtering;
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	u8			stp_state;
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	struct net_device	*bridge_dev;
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	struct devlink_port	devlink_port;
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	bool			devlink_port_setup;
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	struct phylink		*pl;
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	struct phylink_config	pl_config;
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	struct net_device	*lag_dev;
	bool			lag_tx_enabled;
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	struct net_device	*hsr_dev;
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	struct list_head list;

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	/*
	 * Give the switch driver somewhere to hang its per-port private data
	 * structures (accessible from the tagger).
	 */
	void *priv;

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	/*
	 * Original copy of the master netdev ethtool_ops
	 */
	const struct ethtool_ops *orig_ethtool_ops;
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	/*
	 * Original copy of the master netdev net_device_ops
	 */
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	const struct dsa_netdevice_ops *netdev_ops;
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	/* List of MAC addresses that must be forwarded on this port.
	 * These are only valid on CPU ports and DSA links.
	 */
	struct list_head	mdbs;

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	bool setup;
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};

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/* TODO: ideally DSA ports would have a single dp->link_dp member,
 * and no dst->rtable nor this struct dsa_link would be needed,
 * but this would require some more complex tree walking,
 * so keep it stupid at the moment and list them all.
 */
struct dsa_link {
	struct dsa_port *dp;
	struct dsa_port *link_dp;
	struct list_head list;
};

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struct dsa_mac_addr {
	unsigned char addr[ETH_ALEN];
	u16 vid;
	refcount_t refcount;
	struct list_head list;
};

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struct dsa_switch {
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	bool setup;

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	struct device *dev;

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	/*
	 * Parent switch tree, and switch index.
	 */
	struct dsa_switch_tree	*dst;
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	unsigned int		index;
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	/* Listener for switch fabric events */
	struct notifier_block	nb;

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	/*
	 * Give the switch driver somewhere to hang its private data
	 * structure.
	 */
	void *priv;

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	/*
	 * Configuration data for this switch.
	 */
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	struct dsa_chip_data	*cd;
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	/*
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	 * The switch operations.
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	 */
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	const struct dsa_switch_ops	*ops;
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	/*
	 * Slave mii_bus and devices for the individual ports.
	 */
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	u32			phys_mii_mask;
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	struct mii_bus		*slave_mii_bus;
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	/* Ageing Time limits in msecs */
	unsigned int ageing_time_min;
	unsigned int ageing_time_max;

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	/* devlink used to represent this switch device */
	struct devlink		*devlink;

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	/* Number of switch port queues */
	unsigned int		num_tx_queues;

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	/* Disallow bridge core from requesting different VLAN awareness
	 * settings on ports if not hardware-supported
	 */
	bool			vlan_filtering_is_global;

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	/* Pass .port_vlan_add and .port_vlan_del to drivers even for bridges
	 * that have vlan_filtering=0. All drivers should ideally set this (and
	 * then the option would get removed), but it is unknown whether this
	 * would break things or not.
	 */
	bool			configure_vlan_while_not_filtering;

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	/* If the switch driver always programs the CPU port as egress tagged
	 * despite the VLAN configuration indicating otherwise, then setting
	 * @untag_bridge_pvid will force the DSA receive path to pop the bridge's
	 * default_pvid VLAN tagged frames to offer a consistent behavior
	 * between a vlan_filtering=0 and vlan_filtering=1 bridge device.
	 */
	bool			untag_bridge_pvid;

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	/* Let DSA manage the FDB entries towards the CPU, based on the
	 * software bridge database.
	 */
	bool			assisted_learning_on_cpu_port;

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	/* In case vlan_filtering_is_global is set, the VLAN awareness state
	 * should be retrieved from here and not from the per-port settings.
	 */
	bool			vlan_filtering;

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	/* MAC PCS does not provide link state change interrupt, and requires
	 * polling. Flag passed on to PHYLINK.
	 */
	bool			pcs_poll;

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	/* For switches that only have the MRU configurable. To ensure the
	 * configured MTU is not exceeded, normalization of MRU on all bridged
	 * interfaces is needed.
	 */
	bool			mtu_enforcement_ingress;

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	/* Drivers that benefit from having an ID associated with each
	 * offloaded LAG should set this to the maximum number of
	 * supported IDs. DSA will then maintain a mapping of _at
	 * least_ these many IDs, accessible to drivers via
	 * dsa_lag_id().
	 */
	unsigned int		num_lag_ids;

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	size_t num_ports;
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};

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static inline struct dsa_port *dsa_to_port(struct dsa_switch *ds, int p)
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{
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	struct dsa_switch_tree *dst = ds->dst;
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	struct dsa_port *dp;
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	list_for_each_entry(dp, &dst->ports, list)
		if (dp->ds == ds && dp->index == p)
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			return dp;
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	return NULL;
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}
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static inline bool dsa_port_is_dsa(struct dsa_port *port)
{
	return port->type == DSA_PORT_TYPE_DSA;
}

static inline bool dsa_port_is_cpu(struct dsa_port *port)
{
	return port->type == DSA_PORT_TYPE_CPU;
}

static inline bool dsa_port_is_user(struct dsa_port *dp)
{
	return dp->type == DSA_PORT_TYPE_USER;
}

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static inline bool dsa_is_unused_port(struct dsa_switch *ds, int p)
{
	return dsa_to_port(ds, p)->type == DSA_PORT_TYPE_UNUSED;
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}

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static inline bool dsa_is_cpu_port(struct dsa_switch *ds, int p)
{
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	return dsa_to_port(ds, p)->type == DSA_PORT_TYPE_CPU;
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}

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static inline bool dsa_is_dsa_port(struct dsa_switch *ds, int p)
{
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	return dsa_to_port(ds, p)->type == DSA_PORT_TYPE_DSA;
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}

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static inline bool dsa_is_user_port(struct dsa_switch *ds, int p)
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{
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	return dsa_to_port(ds, p)->type == DSA_PORT_TYPE_USER;
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}

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static inline u32 dsa_user_ports(struct dsa_switch *ds)
{
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	u32 mask = 0;
	int p;
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	for (p = 0; p < ds->num_ports; p++)
		if (dsa_is_user_port(ds, p))
			mask |= BIT(p);

	return mask;
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}

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/* Return the local port used to reach an arbitrary switch device */
static inline unsigned int dsa_routing_port(struct dsa_switch *ds, int device)
{
	struct dsa_switch_tree *dst = ds->dst;
	struct dsa_link *dl;

	list_for_each_entry(dl, &dst->rtable, list)
		if (dl->dp->ds == ds && dl->link_dp->ds->index == device)
			return dl->dp->index;

	return ds->num_ports;
}

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/* Return the local port used to reach an arbitrary switch port */
static inline unsigned int dsa_towards_port(struct dsa_switch *ds, int device,
					    int port)
{
	if (device == ds->index)
		return port;
	else
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		return dsa_routing_port(ds, device);
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}

/* Return the local port used to reach the dedicated CPU port */
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static inline unsigned int dsa_upstream_port(struct dsa_switch *ds, int port)
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{
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	const struct dsa_port *dp = dsa_to_port(ds, port);
	const struct dsa_port *cpu_dp = dp->cpu_dp;

	if (!cpu_dp)
		return port;
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	return dsa_towards_port(ds, cpu_dp->ds->index, cpu_dp->index);
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}

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/* Return true if this is the local port used to reach the CPU port */
static inline bool dsa_is_upstream_port(struct dsa_switch *ds, int port)
{
	if (dsa_is_unused_port(ds, port))
		return false;

	return port == dsa_upstream_port(ds, port);
}

/* Return true if @upstream_ds is an upstream switch of @downstream_ds, meaning
 * that the routing port from @downstream_ds to @upstream_ds is also the port
 * which @downstream_ds uses to reach its dedicated CPU.
 */
static inline bool dsa_switch_is_upstream_of(struct dsa_switch *upstream_ds,
					     struct dsa_switch *downstream_ds)
{
	int routing_port;

	if (upstream_ds == downstream_ds)
		return true;

	routing_port = dsa_routing_port(downstream_ds, upstream_ds->index);

	return dsa_is_upstream_port(downstream_ds, routing_port);
}

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static inline bool dsa_port_is_vlan_filtering(const struct dsa_port *dp)
{
	const struct dsa_switch *ds = dp->ds;

	if (ds->vlan_filtering_is_global)
		return ds->vlan_filtering;
	else
		return dp->vlan_filtering;
}

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static inline
struct net_device *dsa_port_to_bridge_port(const struct dsa_port *dp)
{
	if (!dp->bridge_dev)
		return NULL;

	if (dp->lag_dev)
		return dp->lag_dev;
	else if (dp->hsr_dev)
		return dp->hsr_dev;

	return dp->slave;
}

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typedef int dsa_fdb_dump_cb_t(const unsigned char *addr, u16 vid,
			      bool is_static, void *data);
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struct dsa_switch_ops {
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	/*
	 * Tagging protocol helpers called for the CPU ports and DSA links.
	 * @get_tag_protocol retrieves the initial tagging protocol and is
	 * mandatory. Switches which can operate using multiple tagging
	 * protocols should implement @change_tag_protocol and report in
	 * @get_tag_protocol the tagger in current use.
	 */
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	enum dsa_tag_protocol (*get_tag_protocol)(struct dsa_switch *ds,
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						  int port,
						  enum dsa_tag_protocol mprot);
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	int	(*change_tag_protocol)(struct dsa_switch *ds, int port,
				       enum dsa_tag_protocol proto);
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	int	(*setup)(struct dsa_switch *ds);
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	void	(*teardown)(struct dsa_switch *ds);
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	u32	(*get_phy_flags)(struct dsa_switch *ds, int port);
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	/*
	 * Access to the switch's PHY registers.
	 */
	int	(*phy_read)(struct dsa_switch *ds, int port, int regnum);
	int	(*phy_write)(struct dsa_switch *ds, int port,
			     int regnum, u16 val);

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	/*
	 * Link state adjustment (called from libphy)
	 */
	void	(*adjust_link)(struct dsa_switch *ds, int port,
				struct phy_device *phydev);
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	void	(*fixed_link_update)(struct dsa_switch *ds, int port,
				struct fixed_phy_status *st);
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	/*
	 * PHYLINK integration
	 */
	void	(*phylink_validate)(struct dsa_switch *ds, int port,
				    unsigned long *supported,
				    struct phylink_link_state *state);
	int	(*phylink_mac_link_state)(struct dsa_switch *ds, int port,
					  struct phylink_link_state *state);
	void	(*phylink_mac_config)(struct dsa_switch *ds, int port,
				      unsigned int mode,
				      const struct phylink_link_state *state);
	void	(*phylink_mac_an_restart)(struct dsa_switch *ds, int port);
	void	(*phylink_mac_link_down)(struct dsa_switch *ds, int port,
					 unsigned int mode,
					 phy_interface_t interface);
	void	(*phylink_mac_link_up)(struct dsa_switch *ds, int port,
				       unsigned int mode,
				       phy_interface_t interface,
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				       struct phy_device *phydev,
				       int speed, int duplex,
				       bool tx_pause, bool rx_pause);
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	void	(*phylink_fixed_state)(struct dsa_switch *ds, int port,
				       struct phylink_link_state *state);
614
	/*
615
	 * Port statistics counters.
616
	 */
617 618
	void	(*get_strings)(struct dsa_switch *ds, int port,
			       u32 stringset, uint8_t *data);
619 620
	void	(*get_ethtool_stats)(struct dsa_switch *ds,
				     int port, uint64_t *data);
621
	int	(*get_sset_count)(struct dsa_switch *ds, int port, int sset);
622 623
	void	(*get_ethtool_phy_stats)(struct dsa_switch *ds,
					 int port, uint64_t *data);
624 625
	void	(*get_stats64)(struct dsa_switch *ds, int port,
				   struct rtnl_link_stats64 *s);
626 627
	void	(*self_test)(struct dsa_switch *ds, int port,
			     struct ethtool_test *etest, u64 *data);
628

629 630 631 632 633 634 635 636
	/*
	 * ethtool Wake-on-LAN
	 */
	void	(*get_wol)(struct dsa_switch *ds, int port,
			   struct ethtool_wolinfo *w);
	int	(*set_wol)(struct dsa_switch *ds, int port,
			   struct ethtool_wolinfo *w);

637 638 639 640 641 642
	/*
	 * ethtool timestamp info
	 */
	int	(*get_ts_info)(struct dsa_switch *ds, int port,
			       struct ethtool_ts_info *ts);

643 644 645 646 647
	/*
	 * Suspend and resume
	 */
	int	(*suspend)(struct dsa_switch *ds);
	int	(*resume)(struct dsa_switch *ds);
648 649 650 651 652 653

	/*
	 * Port enable/disable
	 */
	int	(*port_enable)(struct dsa_switch *ds, int port,
			       struct phy_device *phy);
654
	void	(*port_disable)(struct dsa_switch *ds, int port);
655 656

	/*
V
Vivien Didelot 已提交
657
	 * Port's MAC EEE settings
658
	 */
V
Vivien Didelot 已提交
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	int	(*set_mac_eee)(struct dsa_switch *ds, int port,
			       struct ethtool_eee *e);
	int	(*get_mac_eee)(struct dsa_switch *ds, int port,
			       struct ethtool_eee *e);
663

664 665 666 667 668 669
	/* EEPROM access */
	int	(*get_eeprom_len)(struct dsa_switch *ds);
	int	(*get_eeprom)(struct dsa_switch *ds,
			      struct ethtool_eeprom *eeprom, u8 *data);
	int	(*set_eeprom)(struct dsa_switch *ds,
			      struct ethtool_eeprom *eeprom, u8 *data);
670 671 672 673 674 675 676

	/*
	 * Register access.
	 */
	int	(*get_regs_len)(struct dsa_switch *ds, int port);
	void	(*get_regs)(struct dsa_switch *ds, int port,
			    struct ethtool_regs *regs, void *p);
677

678 679 680 681 682 683
	/*
	 * Upper device tracking.
	 */
	int	(*port_prechangeupper)(struct dsa_switch *ds, int port,
				       struct netdev_notifier_changeupper_info *info);

684 685 686
	/*
	 * Bridge integration
	 */
687
	int	(*set_ageing_time)(struct dsa_switch *ds, unsigned int msecs);
688
	int	(*port_bridge_join)(struct dsa_switch *ds, int port,
689
				    struct net_device *bridge);
690 691
	void	(*port_bridge_leave)(struct dsa_switch *ds, int port,
				     struct net_device *bridge);
692 693
	void	(*port_stp_state_set)(struct dsa_switch *ds, int port,
				      u8 state);
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Vivien Didelot 已提交
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	void	(*port_fast_age)(struct dsa_switch *ds, int port);
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	int	(*port_pre_bridge_flags)(struct dsa_switch *ds, int port,
					 struct switchdev_brport_flags flags,
					 struct netlink_ext_ack *extack);
	int	(*port_bridge_flags)(struct dsa_switch *ds, int port,
				     struct switchdev_brport_flags flags,
				     struct netlink_ext_ack *extack);
	int	(*port_set_mrouter)(struct dsa_switch *ds, int port, bool mrouter,
				    struct netlink_ext_ack *extack);
703

704 705 706
	/*
	 * VLAN support
	 */
707
	int	(*port_vlan_filtering)(struct dsa_switch *ds, int port,
708 709
				       bool vlan_filtering,
				       struct netlink_ext_ack *extack);
710
	int	(*port_vlan_add)(struct dsa_switch *ds, int port,
711 712
				 const struct switchdev_obj_port_vlan *vlan,
				 struct netlink_ext_ack *extack);
713 714
	int	(*port_vlan_del)(struct dsa_switch *ds, int port,
				 const struct switchdev_obj_port_vlan *vlan);
715 716 717
	/*
	 * Forwarding database
	 */
718
	int	(*port_fdb_add)(struct dsa_switch *ds, int port,
719
				const unsigned char *addr, u16 vid);
720
	int	(*port_fdb_del)(struct dsa_switch *ds, int port,
721
				const unsigned char *addr, u16 vid);
722
	int	(*port_fdb_dump)(struct dsa_switch *ds, int port,
723
				 dsa_fdb_dump_cb_t *cb, void *data);
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Vivien Didelot 已提交
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	/*
	 * Multicast database
	 */
728
	int	(*port_mdb_add)(struct dsa_switch *ds, int port,
729
				const struct switchdev_obj_port_mdb *mdb);
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Vivien Didelot 已提交
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	int	(*port_mdb_del)(struct dsa_switch *ds, int port,
				const struct switchdev_obj_port_mdb *mdb);
732 733 734 735 736 737 738
	/*
	 * RXNFC
	 */
	int	(*get_rxnfc)(struct dsa_switch *ds, int port,
			     struct ethtool_rxnfc *nfc, u32 *rule_locs);
	int	(*set_rxnfc)(struct dsa_switch *ds, int port,
			     struct ethtool_rxnfc *nfc);
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	/*
	 * TC integration
	 */
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	int	(*cls_flower_add)(struct dsa_switch *ds, int port,
				  struct flow_cls_offload *cls, bool ingress);
	int	(*cls_flower_del)(struct dsa_switch *ds, int port,
				  struct flow_cls_offload *cls, bool ingress);
	int	(*cls_flower_stats)(struct dsa_switch *ds, int port,
				    struct flow_cls_offload *cls, bool ingress);
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	int	(*port_mirror_add)(struct dsa_switch *ds, int port,
				   struct dsa_mall_mirror_tc_entry *mirror,
				   bool ingress);
	void	(*port_mirror_del)(struct dsa_switch *ds, int port,
				   struct dsa_mall_mirror_tc_entry *mirror);
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Vladimir Oltean 已提交
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	int	(*port_policer_add)(struct dsa_switch *ds, int port,
				    struct dsa_mall_policer_tc_entry *policer);
	void	(*port_policer_del)(struct dsa_switch *ds, int port);
757 758
	int	(*port_setup_tc)(struct dsa_switch *ds, int port,
				 enum tc_setup_type type, void *type_data);
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	/*
	 * Cross-chip operations
	 */
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	int	(*crosschip_bridge_join)(struct dsa_switch *ds, int tree_index,
					 int sw_index, int port,
					 struct net_device *br);
	void	(*crosschip_bridge_leave)(struct dsa_switch *ds, int tree_index,
					  int sw_index, int port,
					  struct net_device *br);
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	int	(*crosschip_lag_change)(struct dsa_switch *ds, int sw_index,
					int port);
	int	(*crosschip_lag_join)(struct dsa_switch *ds, int sw_index,
				      int port, struct net_device *lag,
				      struct netdev_lag_upper_info *info);
	int	(*crosschip_lag_leave)(struct dsa_switch *ds, int sw_index,
				       int port, struct net_device *lag);
776 777 778 779 780 781 782 783

	/*
	 * PTP functionality
	 */
	int	(*port_hwtstamp_get)(struct dsa_switch *ds, int port,
				     struct ifreq *ifr);
	int	(*port_hwtstamp_set)(struct dsa_switch *ds, int port,
				     struct ifreq *ifr);
784 785
	void	(*port_txtstamp)(struct dsa_switch *ds, int port,
				 struct sk_buff *skb);
786 787
	bool	(*port_rxtstamp)(struct dsa_switch *ds, int port,
				 struct sk_buff *skb, unsigned int type);
788

A
Andrew Lunn 已提交
789
	/* Devlink parameters, etc */
790 791 792 793
	int	(*devlink_param_get)(struct dsa_switch *ds, u32 id,
				     struct devlink_param_gset_ctx *ctx);
	int	(*devlink_param_set)(struct dsa_switch *ds, u32 id,
				     struct devlink_param_gset_ctx *ctx);
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Andrew Lunn 已提交
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	int	(*devlink_info_get)(struct dsa_switch *ds,
				    struct devlink_info_req *req,
				    struct netlink_ext_ack *extack);
797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830
	int	(*devlink_sb_pool_get)(struct dsa_switch *ds,
				       unsigned int sb_index, u16 pool_index,
				       struct devlink_sb_pool_info *pool_info);
	int	(*devlink_sb_pool_set)(struct dsa_switch *ds, unsigned int sb_index,
				       u16 pool_index, u32 size,
				       enum devlink_sb_threshold_type threshold_type,
				       struct netlink_ext_ack *extack);
	int	(*devlink_sb_port_pool_get)(struct dsa_switch *ds, int port,
					    unsigned int sb_index, u16 pool_index,
					    u32 *p_threshold);
	int	(*devlink_sb_port_pool_set)(struct dsa_switch *ds, int port,
					    unsigned int sb_index, u16 pool_index,
					    u32 threshold,
					    struct netlink_ext_ack *extack);
	int	(*devlink_sb_tc_pool_bind_get)(struct dsa_switch *ds, int port,
					       unsigned int sb_index, u16 tc_index,
					       enum devlink_sb_pool_type pool_type,
					       u16 *p_pool_index, u32 *p_threshold);
	int	(*devlink_sb_tc_pool_bind_set)(struct dsa_switch *ds, int port,
					       unsigned int sb_index, u16 tc_index,
					       enum devlink_sb_pool_type pool_type,
					       u16 pool_index, u32 threshold,
					       struct netlink_ext_ack *extack);
	int	(*devlink_sb_occ_snapshot)(struct dsa_switch *ds,
					   unsigned int sb_index);
	int	(*devlink_sb_occ_max_clear)(struct dsa_switch *ds,
					    unsigned int sb_index);
	int	(*devlink_sb_occ_port_pool_get)(struct dsa_switch *ds, int port,
						unsigned int sb_index, u16 pool_index,
						u32 *p_cur, u32 *p_max);
	int	(*devlink_sb_occ_tc_port_bind_get)(struct dsa_switch *ds, int port,
						   unsigned int sb_index, u16 tc_index,
						   enum devlink_sb_pool_type pool_type,
						   u32 *p_cur, u32 *p_max);
831 832 833 834 835

	/*
	 * MTU change functionality. Switches can also adjust their MRU through
	 * this method. By MTU, one understands the SDU (L2 payload) length.
	 * If the switch needs to account for the DSA tag on the CPU port, this
836
	 * method needs to do so privately.
837 838 839 840
	 */
	int	(*port_change_mtu)(struct dsa_switch *ds, int port,
				   int new_mtu);
	int	(*port_max_mtu)(struct dsa_switch *ds, int port);
841 842 843 844 845 846 847 848 849 850

	/*
	 * LAG integration
	 */
	int	(*port_lag_change)(struct dsa_switch *ds, int port);
	int	(*port_lag_join)(struct dsa_switch *ds, int port,
				 struct net_device *lag,
				 struct netdev_lag_upper_info *info);
	int	(*port_lag_leave)(struct dsa_switch *ds, int port,
				  struct net_device *lag);
851 852 853 854 855 856 857 858

	/*
	 * HSR integration
	 */
	int	(*port_hsr_join)(struct dsa_switch *ds, int port,
				 struct net_device *hsr);
	int	(*port_hsr_leave)(struct dsa_switch *ds, int port,
				  struct net_device *hsr);
H
Horatiu Vultur 已提交
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	/*
	 * MRP integration
	 */
	int	(*port_mrp_add)(struct dsa_switch *ds, int port,
				const struct switchdev_obj_mrp *mrp);
	int	(*port_mrp_del)(struct dsa_switch *ds, int port,
				const struct switchdev_obj_mrp *mrp);
	int	(*port_mrp_add_ring_role)(struct dsa_switch *ds, int port,
					  const struct switchdev_obj_ring_role_mrp *mrp);
	int	(*port_mrp_del_ring_role)(struct dsa_switch *ds, int port,
					  const struct switchdev_obj_ring_role_mrp *mrp);
871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886
};

#define DSA_DEVLINK_PARAM_DRIVER(_id, _name, _type, _cmodes)		\
	DEVLINK_PARAM_DRIVER(_id, _name, _type, _cmodes,		\
			     dsa_devlink_param_get, dsa_devlink_param_set, NULL)

int dsa_devlink_param_get(struct devlink *dl, u32 id,
			  struct devlink_param_gset_ctx *ctx);
int dsa_devlink_param_set(struct devlink *dl, u32 id,
			  struct devlink_param_gset_ctx *ctx);
int dsa_devlink_params_register(struct dsa_switch *ds,
				const struct devlink_param *params,
				size_t params_count);
void dsa_devlink_params_unregister(struct dsa_switch *ds,
				   const struct devlink_param *params,
				   size_t params_count);
887 888 889 890 891 892 893 894 895 896 897 898 899 900 901
int dsa_devlink_resource_register(struct dsa_switch *ds,
				  const char *resource_name,
				  u64 resource_size,
				  u64 resource_id,
				  u64 parent_resource_id,
				  const struct devlink_resource_size_params *size_params);

void dsa_devlink_resources_unregister(struct dsa_switch *ds);

void dsa_devlink_resource_occ_get_register(struct dsa_switch *ds,
					   u64 resource_id,
					   devlink_resource_occ_get_t *occ_get,
					   void *occ_get_priv);
void dsa_devlink_resource_occ_get_unregister(struct dsa_switch *ds,
					     u64 resource_id);
902 903 904 905
struct devlink_region *
dsa_devlink_region_create(struct dsa_switch *ds,
			  const struct devlink_region_ops *ops,
			  u32 region_max_snapshots, u64 region_size);
906 907 908 909 910
struct devlink_region *
dsa_devlink_port_region_create(struct dsa_switch *ds,
			       int port,
			       const struct devlink_port_region_ops *ops,
			       u32 region_max_snapshots, u64 region_size);
911 912
void dsa_devlink_region_destroy(struct devlink_region *region);

913
struct dsa_port *dsa_port_from_netdev(struct net_device *netdev);
914

915 916
struct dsa_devlink_priv {
	struct dsa_switch *ds;
917 918
};

919 920 921 922 923 924 925
static inline struct dsa_switch *dsa_devlink_to_ds(struct devlink *dl)
{
	struct dsa_devlink_priv *dl_priv = devlink_priv(dl);

	return dl_priv->ds;
}

926 927 928 929 930 931 932 933 934 935 936 937 938 939
static inline
struct dsa_switch *dsa_devlink_port_to_ds(struct devlink_port *port)
{
	struct devlink *dl = port->devlink;
	struct dsa_devlink_priv *dl_priv = devlink_priv(dl);

	return dl_priv->ds;
}

static inline int dsa_devlink_port_to_port(struct devlink_port *port)
{
	return port->index;
}

940 941
struct dsa_switch_driver {
	struct list_head	list;
942
	const struct dsa_switch_ops *ops;
943 944
};

945
struct net_device *dsa_dev_to_net_device(struct device *dev);
946

947
/* Keep inline for faster access in hot path */
948
static inline bool netdev_uses_dsa(const struct net_device *dev)
949 950
{
#if IS_ENABLED(CONFIG_NET_DSA)
951
	return dev->dsa_ptr && dev->dsa_ptr->rcv;
952 953 954 955
#endif
	return false;
}

956 957 958 959 960 961 962 963 964
static inline bool dsa_can_decode(const struct sk_buff *skb,
				  struct net_device *dev)
{
#if IS_ENABLED(CONFIG_NET_DSA)
	return !dev->dsa_ptr->filter || dev->dsa_ptr->filter(skb, dev);
#endif
	return false;
}

965 966 967 968 969 970 971 972 973 974 975 976 977 978 979 980 981 982 983
/* All DSA tags that push the EtherType to the right (basically all except tail
 * tags, which don't break dissection) can be treated the same from the
 * perspective of the flow dissector.
 *
 * We need to return:
 *  - offset: the (B - A) difference between:
 *    A. the position of the real EtherType and
 *    B. the current skb->data (aka ETH_HLEN bytes into the frame, aka 2 bytes
 *       after the normal EtherType was supposed to be)
 *    The offset in bytes is exactly equal to the tagger overhead (and half of
 *    that, in __be16 shorts).
 *
 *  - proto: the value of the real EtherType.
 */
static inline void dsa_tag_generic_flow_dissect(const struct sk_buff *skb,
						__be16 *proto, int *offset)
{
#if IS_ENABLED(CONFIG_NET_DSA)
	const struct dsa_device_ops *ops = skb->dev->dsa_ptr->tag_ops;
984
	int tag_len = ops->needed_headroom;
985 986 987 988 989 990

	*offset = tag_len;
	*proto = ((__be16 *)skb->data)[(tag_len / 2) - 1];
#endif
}

991 992 993 994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026
#if IS_ENABLED(CONFIG_NET_DSA)
static inline int __dsa_netdevice_ops_check(struct net_device *dev)
{
	int err = -EOPNOTSUPP;

	if (!dev->dsa_ptr)
		return err;

	if (!dev->dsa_ptr->netdev_ops)
		return err;

	return 0;
}

static inline int dsa_ndo_do_ioctl(struct net_device *dev, struct ifreq *ifr,
				   int cmd)
{
	const struct dsa_netdevice_ops *ops;
	int err;

	err = __dsa_netdevice_ops_check(dev);
	if (err)
		return err;

	ops = dev->dsa_ptr->netdev_ops;

	return ops->ndo_do_ioctl(dev, ifr, cmd);
}
#else
static inline int dsa_ndo_do_ioctl(struct net_device *dev, struct ifreq *ifr,
				   int cmd)
{
	return -EOPNOTSUPP;
}
#endif

1027
void dsa_unregister_switch(struct dsa_switch *ds);
1028
int dsa_register_switch(struct dsa_switch *ds);
1029
struct dsa_switch *dsa_switch_find(int tree_index, int sw_index);
1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043
#ifdef CONFIG_PM_SLEEP
int dsa_switch_suspend(struct dsa_switch *ds);
int dsa_switch_resume(struct dsa_switch *ds);
#else
static inline int dsa_switch_suspend(struct dsa_switch *ds)
{
	return 0;
}
static inline int dsa_switch_resume(struct dsa_switch *ds)
{
	return 0;
}
#endif /* CONFIG_PM_SLEEP */

1044
#if IS_ENABLED(CONFIG_NET_DSA)
1045
bool dsa_slave_dev_check(const struct net_device *dev);
1046
#else
1047 1048 1049 1050
static inline bool dsa_slave_dev_check(const struct net_device *dev)
{
	return false;
}
1051 1052
#endif

1053
netdev_tx_t dsa_enqueue_skb(struct sk_buff *skb, struct net_device *dev);
1054 1055 1056
int dsa_port_get_phy_strings(struct dsa_port *dp, uint8_t *data);
int dsa_port_get_ethtool_phy_stats(struct dsa_port *dp, uint64_t *data);
int dsa_port_get_phy_sset_count(struct dsa_port *dp);
1057
void dsa_port_phylink_mac_change(struct dsa_switch *ds, int port, bool up);
1058

1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123
struct dsa_tag_driver {
	const struct dsa_device_ops *ops;
	struct list_head list;
	struct module *owner;
};

void dsa_tag_drivers_register(struct dsa_tag_driver *dsa_tag_driver_array[],
			      unsigned int count,
			      struct module *owner);
void dsa_tag_drivers_unregister(struct dsa_tag_driver *dsa_tag_driver_array[],
				unsigned int count);

#define dsa_tag_driver_module_drivers(__dsa_tag_drivers_array, __count)	\
static int __init dsa_tag_driver_module_init(void)			\
{									\
	dsa_tag_drivers_register(__dsa_tag_drivers_array, __count,	\
				 THIS_MODULE);				\
	return 0;							\
}									\
module_init(dsa_tag_driver_module_init);				\
									\
static void __exit dsa_tag_driver_module_exit(void)			\
{									\
	dsa_tag_drivers_unregister(__dsa_tag_drivers_array, __count);	\
}									\
module_exit(dsa_tag_driver_module_exit)

/**
 * module_dsa_tag_drivers() - Helper macro for registering DSA tag
 * drivers
 * @__ops_array: Array of tag driver strucutres
 *
 * Helper macro for DSA tag drivers which do not do anything special
 * in module init/exit. Each module may only use this macro once, and
 * calling it replaces module_init() and module_exit().
 */
#define module_dsa_tag_drivers(__ops_array)				\
dsa_tag_driver_module_drivers(__ops_array, ARRAY_SIZE(__ops_array))

#define DSA_TAG_DRIVER_NAME(__ops) dsa_tag_driver ## _ ## __ops

/* Create a static structure we can build a linked list of dsa_tag
 * drivers
 */
#define DSA_TAG_DRIVER(__ops)						\
static struct dsa_tag_driver DSA_TAG_DRIVER_NAME(__ops) = {		\
	.ops = &__ops,							\
}

/**
 * module_dsa_tag_driver() - Helper macro for registering a single DSA tag
 * driver
 * @__ops: Single tag driver structures
 *
 * Helper macro for DSA tag drivers which do not do anything special
 * in module init/exit. Each module may only use this macro once, and
 * calling it replaces module_init() and module_exit().
 */
#define module_dsa_tag_driver(__ops)					\
DSA_TAG_DRIVER(__ops);							\
									\
static struct dsa_tag_driver *dsa_tag_driver_array[] =	{		\
	&DSA_TAG_DRIVER_NAME(__ops)					\
};									\
module_dsa_tag_drivers(dsa_tag_driver_array)
1124
#endif
1125