dsa.c 21.1 KB
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/*
 * net/dsa/dsa.c - Hardware switch handling
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 * Copyright (c) 2008-2009 Marvell Semiconductor
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 * Copyright (c) 2013 Florian Fainelli <florian@openwrt.org>
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 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License as published by
 * the Free Software Foundation; either version 2 of the License, or
 * (at your option) any later version.
 */

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#include <linux/device.h>
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#include <linux/list.h>
#include <linux/platform_device.h>
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#include <linux/slab.h>
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#include <linux/module.h>
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#include <net/dsa.h>
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#include <linux/of.h>
#include <linux/of_mdio.h>
#include <linux/of_platform.h>
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#include <linux/of_net.h>
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#include <linux/of_gpio.h>
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#include <linux/sysfs.h>
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#include <linux/phy_fixed.h>
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#include <linux/gpio/consumer.h>
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#include "dsa_priv.h"

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static struct sk_buff *dsa_slave_notag_xmit(struct sk_buff *skb,
					    struct net_device *dev)
{
	/* Just return the original SKB */
	return skb;
}

static const struct dsa_device_ops none_ops = {
	.xmit	= dsa_slave_notag_xmit,
	.rcv	= NULL,
};

const struct dsa_device_ops *dsa_device_ops[DSA_TAG_LAST] = {
#ifdef CONFIG_NET_DSA_TAG_DSA
	[DSA_TAG_PROTO_DSA] = &dsa_netdev_ops,
#endif
#ifdef CONFIG_NET_DSA_TAG_EDSA
	[DSA_TAG_PROTO_EDSA] = &edsa_netdev_ops,
#endif
#ifdef CONFIG_NET_DSA_TAG_TRAILER
	[DSA_TAG_PROTO_TRAILER] = &trailer_netdev_ops,
#endif
#ifdef CONFIG_NET_DSA_TAG_BRCM
	[DSA_TAG_PROTO_BRCM] = &brcm_netdev_ops,
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#endif
#ifdef CONFIG_NET_DSA_TAG_QCA
	[DSA_TAG_PROTO_QCA] = &qca_netdev_ops,
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#endif
	[DSA_TAG_PROTO_NONE] = &none_ops,
};
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/* switch driver registration ***********************************************/
static DEFINE_MUTEX(dsa_switch_drivers_mutex);
static LIST_HEAD(dsa_switch_drivers);

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void register_switch_driver(struct dsa_switch_driver *drv)
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{
	mutex_lock(&dsa_switch_drivers_mutex);
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	list_add_tail(&drv->list, &dsa_switch_drivers);
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	mutex_unlock(&dsa_switch_drivers_mutex);
}
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EXPORT_SYMBOL_GPL(register_switch_driver);
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void unregister_switch_driver(struct dsa_switch_driver *drv)
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{
	mutex_lock(&dsa_switch_drivers_mutex);
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	list_del_init(&drv->list);
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	mutex_unlock(&dsa_switch_drivers_mutex);
}
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EXPORT_SYMBOL_GPL(unregister_switch_driver);
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static const struct dsa_switch_ops *
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dsa_switch_probe(struct device *parent, struct device *host_dev, int sw_addr,
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		 const char **_name, void **priv)
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{
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	const struct dsa_switch_ops *ret;
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	struct list_head *list;
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	const char *name;
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	ret = NULL;
	name = NULL;

	mutex_lock(&dsa_switch_drivers_mutex);
	list_for_each(list, &dsa_switch_drivers) {
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		const struct dsa_switch_ops *ops;
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		struct dsa_switch_driver *drv;
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		drv = list_entry(list, struct dsa_switch_driver, list);
		ops = drv->ops;
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		name = ops->probe(parent, host_dev, sw_addr, priv);
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		if (name != NULL) {
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			ret = ops;
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			break;
		}
	}
	mutex_unlock(&dsa_switch_drivers_mutex);

	*_name = name;

	return ret;
}

/* basic switch operations **************************************************/
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int dsa_cpu_dsa_setup(struct dsa_switch *ds, struct device *dev,
		      struct device_node *port_dn, int port)
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{
	struct phy_device *phydev;
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	int ret, mode;

	if (of_phy_is_fixed_link(port_dn)) {
		ret = of_phy_register_fixed_link(port_dn);
		if (ret) {
			dev_err(dev, "failed to register fixed PHY\n");
			return ret;
		}
		phydev = of_phy_find_device(port_dn);

		mode = of_get_phy_mode(port_dn);
		if (mode < 0)
			mode = PHY_INTERFACE_MODE_NA;
		phydev->interface = mode;

		genphy_config_init(phydev);
		genphy_read_status(phydev);
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		if (ds->ops->adjust_link)
			ds->ops->adjust_link(ds, port, phydev);
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		put_device(&phydev->mdio.dev);
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	}

	return 0;
}

static int dsa_cpu_dsa_setups(struct dsa_switch *ds, struct device *dev)
{
	struct device_node *port_dn;
	int ret, port;
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	for (port = 0; port < DSA_MAX_PORTS; port++) {
		if (!(dsa_is_cpu_port(ds, port) || dsa_is_dsa_port(ds, port)))
			continue;

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		port_dn = ds->ports[port].dn;
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		ret = dsa_cpu_dsa_setup(ds, dev, port_dn, port);
		if (ret)
			return ret;
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	}
	return 0;
}

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const struct dsa_device_ops *dsa_resolve_tag_protocol(int tag_protocol)
{
	const struct dsa_device_ops *ops;

	if (tag_protocol >= DSA_TAG_LAST)
		return ERR_PTR(-EINVAL);
	ops = dsa_device_ops[tag_protocol];

	if (!ops)
		return ERR_PTR(-ENOPROTOOPT);

	return ops;
}

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int dsa_cpu_port_ethtool_setup(struct dsa_switch *ds)
{
	struct net_device *master;
	struct ethtool_ops *cpu_ops;

	master = ds->dst->master_netdev;
	if (ds->master_netdev)
		master = ds->master_netdev;

	cpu_ops = devm_kzalloc(ds->dev, sizeof(*cpu_ops), GFP_KERNEL);
	if (!cpu_ops)
		return -ENOMEM;

	memcpy(&ds->dst->master_ethtool_ops, master->ethtool_ops,
	       sizeof(struct ethtool_ops));
	ds->dst->master_orig_ethtool_ops = master->ethtool_ops;
	memcpy(cpu_ops, &ds->dst->master_ethtool_ops,
	       sizeof(struct ethtool_ops));
	dsa_cpu_port_ethtool_init(cpu_ops);
	master->ethtool_ops = cpu_ops;

	return 0;
}

void dsa_cpu_port_ethtool_restore(struct dsa_switch *ds)
{
	struct net_device *master;

	master = ds->dst->master_netdev;
	if (ds->master_netdev)
		master = ds->master_netdev;

	master->ethtool_ops = ds->dst->master_orig_ethtool_ops;
}

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static int dsa_switch_setup_one(struct dsa_switch *ds, struct device *parent)
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{
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	const struct dsa_switch_ops *ops = ds->ops;
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	struct dsa_switch_tree *dst = ds->dst;
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	struct dsa_chip_data *cd = ds->cd;
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	bool valid_name_found = false;
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	int index = ds->index;
	int i, ret;
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	/*
	 * Validate supplied switch configuration.
	 */
	for (i = 0; i < DSA_MAX_PORTS; i++) {
		char *name;

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		name = cd->port_names[i];
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		if (name == NULL)
			continue;

		if (!strcmp(name, "cpu")) {
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			if (dst->cpu_switch != -1) {
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				netdev_err(dst->master_netdev,
					   "multiple cpu ports?!\n");
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				return -EINVAL;
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			}
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			dst->cpu_switch = index;
			dst->cpu_port = i;
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			ds->cpu_port_mask |= 1 << i;
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		} else if (!strcmp(name, "dsa")) {
			ds->dsa_port_mask |= 1 << i;
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		} else {
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			ds->enabled_port_mask |= 1 << i;
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		}
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		valid_name_found = true;
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	}

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	if (!valid_name_found && i == DSA_MAX_PORTS)
		return -EINVAL;
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	/* Make the built-in MII bus mask match the number of ports,
	 * switch drivers can override this later
	 */
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	ds->phys_mii_mask = ds->enabled_port_mask;
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	/*
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	 * If the CPU connects to this switch, set the switch tree
	 * tagging protocol to the preferred tagging format of this
	 * switch.
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	 */
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	if (dst->cpu_switch == index) {
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		enum dsa_tag_protocol tag_protocol;

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		tag_protocol = ops->get_tag_protocol(ds);
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		dst->tag_ops = dsa_resolve_tag_protocol(tag_protocol);
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		if (IS_ERR(dst->tag_ops))
			return PTR_ERR(dst->tag_ops);
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		dst->rcv = dst->tag_ops->rcv;
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	}
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	memcpy(ds->rtable, cd->rtable, sizeof(ds->rtable));

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	/*
	 * Do basic register setup.
	 */
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	ret = ops->setup(ds);
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	if (ret < 0)
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		return ret;
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	if (ops->set_addr) {
		ret = ops->set_addr(ds, dst->master_netdev->dev_addr);
		if (ret < 0)
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			return ret;
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	}
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	if (!ds->slave_mii_bus && ops->phy_read) {
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		ds->slave_mii_bus = devm_mdiobus_alloc(parent);
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		if (!ds->slave_mii_bus)
			return -ENOMEM;
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		dsa_slave_mii_bus_init(ds);
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		ret = mdiobus_register(ds->slave_mii_bus);
		if (ret < 0)
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			return ret;
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	}
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	/*
	 * Create network devices for physical switch ports.
	 */
	for (i = 0; i < DSA_MAX_PORTS; i++) {
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		ds->ports[i].dn = cd->port_dn[i];

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		if (!(ds->enabled_port_mask & (1 << i)))
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			continue;

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		ret = dsa_slave_create(ds, parent, i, cd->port_names[i]);
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		if (ret < 0)
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			netdev_err(dst->master_netdev, "[%d]: can't create dsa slave device for port %d(%s): %d\n",
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				   index, i, cd->port_names[i], ret);
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	}

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	/* Perform configuration of the CPU and DSA ports */
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	ret = dsa_cpu_dsa_setups(ds, parent);
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	if (ret < 0)
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		netdev_err(dst->master_netdev, "[%d] : can't configure CPU and DSA ports\n",
			   index);

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	ret = dsa_cpu_port_ethtool_setup(ds);
	if (ret)
		return ret;

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	dsa_hwmon_register(ds);
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	return 0;
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}

static struct dsa_switch *
dsa_switch_setup(struct dsa_switch_tree *dst, int index,
		 struct device *parent, struct device *host_dev)
{
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	struct dsa_chip_data *cd = dst->pd->chip + index;
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	const struct dsa_switch_ops *ops;
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	struct dsa_switch *ds;
	int ret;
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	const char *name;
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	void *priv;
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	/*
	 * Probe for switch model.
	 */
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	ops = dsa_switch_probe(parent, host_dev, cd->sw_addr, &name, &priv);
	if (!ops) {
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		netdev_err(dst->master_netdev, "[%d]: could not detect attached switch\n",
			   index);
		return ERR_PTR(-EINVAL);
	}
	netdev_info(dst->master_netdev, "[%d]: detected a %s switch\n",
		    index, name);


	/*
	 * Allocate and initialise switch state.
	 */
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	ds = devm_kzalloc(parent, sizeof(*ds), GFP_KERNEL);
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	if (ds == NULL)
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		return ERR_PTR(-ENOMEM);
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	ds->dst = dst;
	ds->index = index;
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	ds->cd = cd;
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	ds->ops = ops;
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	ds->priv = priv;
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	ds->dev = parent;
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	ret = dsa_switch_setup_one(ds, parent);
	if (ret)
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		return ERR_PTR(ret);
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	return ds;
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}

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void dsa_cpu_dsa_destroy(struct device_node *port_dn)
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{
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	if (of_phy_is_fixed_link(port_dn))
		of_phy_deregister_fixed_link(port_dn);
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}

static void dsa_switch_destroy(struct dsa_switch *ds)
{
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	int port;

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	dsa_hwmon_unregister(ds);
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	/* Destroy network devices for physical switch ports. */
	for (port = 0; port < DSA_MAX_PORTS; port++) {
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		if (!(ds->enabled_port_mask & (1 << port)))
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			continue;

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		if (!ds->ports[port].netdev)
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			continue;

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		dsa_slave_destroy(ds->ports[port].netdev);
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	}

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	/* Disable configuration of the CPU and DSA ports */
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	for (port = 0; port < DSA_MAX_PORTS; port++) {
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		if (!(dsa_is_cpu_port(ds, port) || dsa_is_dsa_port(ds, port)))
			continue;
		dsa_cpu_dsa_destroy(ds->ports[port].dn);
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		/* Clearing a bit which is not set does no harm */
		ds->cpu_port_mask |= ~(1 << port);
		ds->dsa_port_mask |= ~(1 << port);
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	}

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	if (ds->slave_mii_bus && ds->ops->phy_read)
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		mdiobus_unregister(ds->slave_mii_bus);
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}

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#ifdef CONFIG_PM_SLEEP
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int dsa_switch_suspend(struct dsa_switch *ds)
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{
	int i, ret = 0;

	/* Suspend slave network devices */
	for (i = 0; i < DSA_MAX_PORTS; i++) {
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		if (!dsa_is_port_initialized(ds, i))
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			continue;

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		ret = dsa_slave_suspend(ds->ports[i].netdev);
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		if (ret)
			return ret;
	}

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	if (ds->ops->suspend)
		ret = ds->ops->suspend(ds);
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	return ret;
}
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EXPORT_SYMBOL_GPL(dsa_switch_suspend);
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int dsa_switch_resume(struct dsa_switch *ds)
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{
	int i, ret = 0;

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	if (ds->ops->resume)
		ret = ds->ops->resume(ds);
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	if (ret)
		return ret;

	/* Resume slave network devices */
	for (i = 0; i < DSA_MAX_PORTS; i++) {
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		if (!dsa_is_port_initialized(ds, i))
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			continue;

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		ret = dsa_slave_resume(ds->ports[i].netdev);
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		if (ret)
			return ret;
	}

	return 0;
}
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EXPORT_SYMBOL_GPL(dsa_switch_resume);
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#endif
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/* platform driver init and cleanup *****************************************/
static int dev_is_class(struct device *dev, void *class)
{
	if (dev->class != NULL && !strcmp(dev->class->name, class))
		return 1;

	return 0;
}

static struct device *dev_find_class(struct device *parent, char *class)
{
	if (dev_is_class(parent, class)) {
		get_device(parent);
		return parent;
	}

	return device_find_child(parent, class, dev_is_class);
}

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struct mii_bus *dsa_host_dev_to_mii_bus(struct device *dev)
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{
	struct device *d;

	d = dev_find_class(dev, "mdio_bus");
	if (d != NULL) {
		struct mii_bus *bus;

		bus = to_mii_bus(d);
		put_device(d);

		return bus;
	}

	return NULL;
}
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EXPORT_SYMBOL_GPL(dsa_host_dev_to_mii_bus);
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static struct net_device *dev_to_net_device(struct device *dev)
{
	struct device *d;

	d = dev_find_class(dev, "net");
	if (d != NULL) {
		struct net_device *nd;

		nd = to_net_dev(d);
		dev_hold(nd);
		put_device(d);

		return nd;
	}

	return NULL;
}

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#ifdef CONFIG_OF
static int dsa_of_setup_routing_table(struct dsa_platform_data *pd,
					struct dsa_chip_data *cd,
512
					int chip_index, int port_index,
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					struct device_node *link)
{
	const __be32 *reg;
	int link_sw_addr;
	struct device_node *parent_sw;
	int len;

	parent_sw = of_get_parent(link);
	if (!parent_sw)
		return -EINVAL;

	reg = of_get_property(parent_sw, "reg", &len);
	if (!reg || (len != sizeof(*reg) * 2))
		return -EINVAL;

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	/*
	 * Get the destination switch number from the second field of its 'reg'
	 * property, i.e. for "reg = <0x19 1>" sw_addr is '1'.
	 */
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	link_sw_addr = be32_to_cpup(reg + 1);

	if (link_sw_addr >= pd->nr_chips)
		return -EINVAL;

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	cd->rtable[link_sw_addr] = port_index;
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	return 0;
}

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static int dsa_of_probe_links(struct dsa_platform_data *pd,
			      struct dsa_chip_data *cd,
			      int chip_index, int port_index,
			      struct device_node *port,
			      const char *port_name)
{
	struct device_node *link;
	int link_index;
	int ret;

	for (link_index = 0;; link_index++) {
		link = of_parse_phandle(port, "link", link_index);
		if (!link)
			break;

		if (!strcmp(port_name, "dsa") && pd->nr_chips > 1) {
			ret = dsa_of_setup_routing_table(pd, cd, chip_index,
							 port_index, link);
			if (ret)
				return ret;
		}
	}
	return 0;
}

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static void dsa_of_free_platform_data(struct dsa_platform_data *pd)
{
	int i;
	int port_index;

	for (i = 0; i < pd->nr_chips; i++) {
		port_index = 0;
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		while (port_index < DSA_MAX_PORTS) {
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			kfree(pd->chip[i].port_names[port_index]);
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			port_index++;
		}
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		/* Drop our reference to the MDIO bus device */
		if (pd->chip[i].host_dev)
			put_device(pd->chip[i].host_dev);
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	}
	kfree(pd->chip);
}

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static int dsa_of_probe(struct device *dev)
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{
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	struct device_node *np = dev->of_node;
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	struct device_node *child, *mdio, *ethernet, *port;
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	struct mii_bus *mdio_bus, *mdio_bus_switch;
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	struct net_device *ethernet_dev;
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	struct dsa_platform_data *pd;
	struct dsa_chip_data *cd;
	const char *port_name;
	int chip_index, port_index;
	const unsigned int *sw_addr, *port_reg;
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	u32 eeprom_len;
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	int ret;
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	mdio = of_parse_phandle(np, "dsa,mii-bus", 0);
	if (!mdio)
		return -EINVAL;

	mdio_bus = of_mdio_find_bus(mdio);
	if (!mdio_bus)
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		return -EPROBE_DEFER;
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	ethernet = of_parse_phandle(np, "dsa,ethernet", 0);
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	if (!ethernet) {
		ret = -EINVAL;
		goto out_put_mdio;
	}
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	ethernet_dev = of_find_net_device_by_node(ethernet);
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	if (!ethernet_dev) {
		ret = -EPROBE_DEFER;
		goto out_put_mdio;
	}
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	pd = kzalloc(sizeof(*pd), GFP_KERNEL);
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	if (!pd) {
		ret = -ENOMEM;
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		goto out_put_ethernet;
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	}
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	dev->platform_data = pd;
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	pd->of_netdev = ethernet_dev;
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	pd->nr_chips = of_get_available_child_count(np);
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	if (pd->nr_chips > DSA_MAX_SWITCHES)
		pd->nr_chips = DSA_MAX_SWITCHES;

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	pd->chip = kcalloc(pd->nr_chips, sizeof(struct dsa_chip_data),
			   GFP_KERNEL);
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	if (!pd->chip) {
		ret = -ENOMEM;
		goto out_free;
	}

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	chip_index = -1;
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	for_each_available_child_of_node(np, child) {
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		int i;

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		chip_index++;
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		cd = &pd->chip[chip_index];

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		cd->of_node = child;
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		/* Initialize the routing table */
		for (i = 0; i < DSA_MAX_SWITCHES; ++i)
			cd->rtable[i] = DSA_RTABLE_NONE;

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		/* When assigning the host device, increment its refcount */
		cd->host_dev = get_device(&mdio_bus->dev);
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		sw_addr = of_get_property(child, "reg", NULL);
		if (!sw_addr)
			continue;

		cd->sw_addr = be32_to_cpup(sw_addr);
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		if (cd->sw_addr >= PHY_MAX_ADDR)
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			continue;

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		if (!of_property_read_u32(child, "eeprom-length", &eeprom_len))
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			cd->eeprom_len = eeprom_len;

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		mdio = of_parse_phandle(child, "mii-bus", 0);
		if (mdio) {
			mdio_bus_switch = of_mdio_find_bus(mdio);
			if (!mdio_bus_switch) {
				ret = -EPROBE_DEFER;
				goto out_free_chip;
			}
673 674 675 676 677 678

			/* Drop the mdio_bus device ref, replacing the host
			 * device with the mdio_bus_switch device, keeping
			 * the refcount from of_mdio_find_bus() above.
			 */
			put_device(cd->host_dev);
A
Andrew Lunn 已提交
679 680 681
			cd->host_dev = &mdio_bus_switch->dev;
		}

682 683 684 685 686 687
		for_each_available_child_of_node(child, port) {
			port_reg = of_get_property(port, "reg", NULL);
			if (!port_reg)
				continue;

			port_index = be32_to_cpup(port_reg);
688 689
			if (port_index >= DSA_MAX_PORTS)
				break;
690 691 692 693 694

			port_name = of_get_property(port, "label", NULL);
			if (!port_name)
				continue;

695 696
			cd->port_dn[port_index] = port;

697 698 699 700 701 702 703
			cd->port_names[port_index] = kstrdup(port_name,
					GFP_KERNEL);
			if (!cd->port_names[port_index]) {
				ret = -ENOMEM;
				goto out_free_chip;
			}

704 705 706 707
			ret = dsa_of_probe_links(pd, cd, chip_index,
						 port_index, port, port_name);
			if (ret)
				goto out_free_chip;
708 709 710 711

		}
	}

712 713 714 715
	/* The individual chips hold their own refcount on the mdio bus,
	 * so drop ours */
	put_device(&mdio_bus->dev);

716 717 718
	return 0;

out_free_chip:
719
	dsa_of_free_platform_data(pd);
720 721
out_free:
	kfree(pd);
722
	dev->platform_data = NULL;
R
Russell King 已提交
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out_put_ethernet:
	put_device(&ethernet_dev->dev);
725 726
out_put_mdio:
	put_device(&mdio_bus->dev);
727 728 729
	return ret;
}

730
static void dsa_of_remove(struct device *dev)
731
{
732
	struct dsa_platform_data *pd = dev->platform_data;
733

734
	if (!dev->of_node)
735 736
		return;

737
	dsa_of_free_platform_data(pd);
R
Russell King 已提交
738
	put_device(&pd->of_netdev->dev);
739 740 741
	kfree(pd);
}
#else
742
static inline int dsa_of_probe(struct device *dev)
743 744 745 746
{
	return 0;
}

747
static inline void dsa_of_remove(struct device *dev)
748 749 750 751
{
}
#endif

752 753
static int dsa_setup_dst(struct dsa_switch_tree *dst, struct net_device *dev,
			 struct device *parent, struct dsa_platform_data *pd)
754 755
{
	int i;
756
	unsigned configured = 0;
757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773

	dst->pd = pd;
	dst->master_netdev = dev;
	dst->cpu_switch = -1;
	dst->cpu_port = -1;

	for (i = 0; i < pd->nr_chips; i++) {
		struct dsa_switch *ds;

		ds = dsa_switch_setup(dst, i, parent, pd->chip[i].host_dev);
		if (IS_ERR(ds)) {
			netdev_err(dev, "[%d]: couldn't create dsa switch instance (error %ld)\n",
				   i, PTR_ERR(ds));
			continue;
		}

		dst->ds[i] = ds;
774 775

		++configured;
776 777
	}

778 779 780 781 782 783
	/*
	 * If no switch was found, exit cleanly
	 */
	if (!configured)
		return -EPROBE_DEFER;

784 785 786 787 788 789 790 791
	/*
	 * If we use a tagging format that doesn't have an ethertype
	 * field, make sure that all packets from this point on get
	 * sent to the tag format's receive function.
	 */
	wmb();
	dev->dsa_ptr = (void *)dst;

792
	return 0;
793 794
}

795 796 797 798
static int dsa_probe(struct platform_device *pdev)
{
	struct dsa_platform_data *pd = pdev->dev.platform_data;
	struct net_device *dev;
799
	struct dsa_switch_tree *dst;
800
	int ret;
801

802
	if (pdev->dev.of_node) {
803
		ret = dsa_of_probe(&pdev->dev);
804 805 806 807 808 809
		if (ret)
			return ret;

		pd = pdev->dev.platform_data;
	}

810
	if (pd == NULL || (pd->netdev == NULL && pd->of_netdev == NULL))
811 812
		return -EINVAL;

813 814 815 816 817 818
	if (pd->of_netdev) {
		dev = pd->of_netdev;
		dev_hold(dev);
	} else {
		dev = dev_to_net_device(pd->netdev);
	}
819
	if (dev == NULL) {
820
		ret = -EPROBE_DEFER;
821 822
		goto out;
	}
823 824 825

	if (dev->dsa_ptr != NULL) {
		dev_put(dev);
826 827
		ret = -EEXIST;
		goto out;
828 829
	}

830
	dst = devm_kzalloc(&pdev->dev, sizeof(*dst), GFP_KERNEL);
831
	if (dst == NULL) {
832
		dev_put(dev);
833 834
		ret = -ENOMEM;
		goto out;
835 836
	}

837 838
	platform_set_drvdata(pdev, dst);

839
	ret = dsa_setup_dst(dst, dev, &pdev->dev, pd);
840 841
	if (ret) {
		dev_put(dev);
842
		goto out;
843
	}
844 845

	return 0;
846 847

out:
848
	dsa_of_remove(&pdev->dev);
849 850

	return ret;
851 852
}

853
static void dsa_remove_dst(struct dsa_switch_tree *dst)
854
{
855
	int i;
856

857 858 859 860 861 862 863 864
	dst->master_netdev->dsa_ptr = NULL;

	/* If we used a tagging format that doesn't have an ethertype
	 * field, make sure that all packets from this point get sent
	 * without the tag and go through the regular receive path.
	 */
	wmb();

865 866 867
	for (i = 0; i < dst->pd->nr_chips; i++) {
		struct dsa_switch *ds = dst->ds[i];

868
		if (ds)
869 870
			dsa_switch_destroy(ds);
	}
871

872 873
	dsa_cpu_port_ethtool_restore(dst->ds[0]);

874
	dev_put(dst->master_netdev);
875 876 877 878 879
}

static int dsa_remove(struct platform_device *pdev)
{
	struct dsa_switch_tree *dst = platform_get_drvdata(pdev);
880

881
	dsa_remove_dst(dst);
882
	dsa_of_remove(&pdev->dev);
883

884 885 886 887 888 889 890
	return 0;
}

static void dsa_shutdown(struct platform_device *pdev)
{
}

891 892 893 894 895 896 897 898 899 900
static int dsa_switch_rcv(struct sk_buff *skb, struct net_device *dev,
			  struct packet_type *pt, struct net_device *orig_dev)
{
	struct dsa_switch_tree *dst = dev->dsa_ptr;

	if (unlikely(dst == NULL)) {
		kfree_skb(skb);
		return 0;
	}

901
	return dst->rcv(skb, dev, pt, orig_dev);
902 903
}

904
static struct packet_type dsa_pack_type __read_mostly = {
905 906 907 908
	.type	= cpu_to_be16(ETH_P_XDSA),
	.func	= dsa_switch_rcv,
};

909 910 911 912
static struct notifier_block dsa_netdevice_nb __read_mostly = {
	.notifier_call	= dsa_slave_netdevice_event,
};

913 914 915 916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935 936 937 938 939 940 941 942 943 944 945 946 947 948
#ifdef CONFIG_PM_SLEEP
static int dsa_suspend(struct device *d)
{
	struct platform_device *pdev = to_platform_device(d);
	struct dsa_switch_tree *dst = platform_get_drvdata(pdev);
	int i, ret = 0;

	for (i = 0; i < dst->pd->nr_chips; i++) {
		struct dsa_switch *ds = dst->ds[i];

		if (ds != NULL)
			ret = dsa_switch_suspend(ds);
	}

	return ret;
}

static int dsa_resume(struct device *d)
{
	struct platform_device *pdev = to_platform_device(d);
	struct dsa_switch_tree *dst = platform_get_drvdata(pdev);
	int i, ret = 0;

	for (i = 0; i < dst->pd->nr_chips; i++) {
		struct dsa_switch *ds = dst->ds[i];

		if (ds != NULL)
			ret = dsa_switch_resume(ds);
	}

	return ret;
}
#endif

static SIMPLE_DEV_PM_OPS(dsa_pm_ops, dsa_suspend, dsa_resume);

949 950 951 952 953 954
static const struct of_device_id dsa_of_match_table[] = {
	{ .compatible = "marvell,dsa", },
	{}
};
MODULE_DEVICE_TABLE(of, dsa_of_match_table);

955 956 957 958 959 960
static struct platform_driver dsa_driver = {
	.probe		= dsa_probe,
	.remove		= dsa_remove,
	.shutdown	= dsa_shutdown,
	.driver = {
		.name	= "dsa",
961
		.of_match_table = dsa_of_match_table,
962
		.pm	= &dsa_pm_ops,
963 964 965 966 967
	},
};

static int __init dsa_init_module(void)
{
B
Ben Hutchings 已提交
968 969
	int rc;

970 971
	register_netdevice_notifier(&dsa_netdevice_nb);

B
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972 973 974 975
	rc = platform_driver_register(&dsa_driver);
	if (rc)
		return rc;

976 977
	dev_add_pack(&dsa_pack_type);

B
Ben Hutchings 已提交
978
	return 0;
979 980 981 982 983
}
module_init(dsa_init_module);

static void __exit dsa_cleanup_module(void)
{
984
	unregister_netdevice_notifier(&dsa_netdevice_nb);
985
	dev_remove_pack(&dsa_pack_type);
986 987 988 989
	platform_driver_unregister(&dsa_driver);
}
module_exit(dsa_cleanup_module);

990
MODULE_AUTHOR("Lennert Buytenhek <buytenh@wantstofly.org>");
991 992 993
MODULE_DESCRIPTION("Driver for Distributed Switch Architecture switch chips");
MODULE_LICENSE("GPL");
MODULE_ALIAS("platform:dsa");