1 // SPDX-License-Identifier: GPL-2.0-or-later
3 * net/dsa/dsa2.c - Hardware switch handling, binding version 2
4 * Copyright (c) 2008-2009 Marvell Semiconductor
5 * Copyright (c) 2013 Florian Fainelli <florian@openwrt.org>
6 * Copyright (c) 2016 Andrew Lunn <andrew@lunn.ch>
9 #include <linux/device.h>
10 #include <linux/err.h>
11 #include <linux/list.h>
12 #include <linux/netdevice.h>
13 #include <linux/slab.h>
14 #include <linux/rtnetlink.h>
16 #include <linux/of_net.h>
17 #include <net/devlink.h>
21 static LIST_HEAD(dsa_tree_list
);
22 static DEFINE_MUTEX(dsa2_mutex
);
24 static const struct devlink_ops dsa_devlink_ops
= {
27 static struct dsa_switch_tree
*dsa_tree_find(int index
)
29 struct dsa_switch_tree
*dst
;
31 list_for_each_entry(dst
, &dsa_tree_list
, list
)
32 if (dst
->index
== index
)
38 static struct dsa_switch_tree
*dsa_tree_alloc(int index
)
40 struct dsa_switch_tree
*dst
;
42 dst
= kzalloc(sizeof(*dst
), GFP_KERNEL
);
48 INIT_LIST_HEAD(&dst
->list
);
49 list_add_tail(&dsa_tree_list
, &dst
->list
);
51 kref_init(&dst
->refcount
);
56 static void dsa_tree_free(struct dsa_switch_tree
*dst
)
62 static struct dsa_switch_tree
*dsa_tree_get(struct dsa_switch_tree
*dst
)
65 kref_get(&dst
->refcount
);
70 static struct dsa_switch_tree
*dsa_tree_touch(int index
)
72 struct dsa_switch_tree
*dst
;
74 dst
= dsa_tree_find(index
);
76 return dsa_tree_get(dst
);
78 return dsa_tree_alloc(index
);
81 static void dsa_tree_release(struct kref
*ref
)
83 struct dsa_switch_tree
*dst
;
85 dst
= container_of(ref
, struct dsa_switch_tree
, refcount
);
90 static void dsa_tree_put(struct dsa_switch_tree
*dst
)
93 kref_put(&dst
->refcount
, dsa_tree_release
);
96 static bool dsa_port_is_dsa(struct dsa_port
*port
)
98 return port
->type
== DSA_PORT_TYPE_DSA
;
101 static bool dsa_port_is_cpu(struct dsa_port
*port
)
103 return port
->type
== DSA_PORT_TYPE_CPU
;
106 static bool dsa_port_is_user(struct dsa_port
*dp
)
108 return dp
->type
== DSA_PORT_TYPE_USER
;
111 static struct dsa_port
*dsa_tree_find_port_by_node(struct dsa_switch_tree
*dst
,
112 struct device_node
*dn
)
114 struct dsa_switch
*ds
;
118 for (device
= 0; device
< DSA_MAX_SWITCHES
; device
++) {
119 ds
= dst
->ds
[device
];
123 for (port
= 0; port
< ds
->num_ports
; port
++) {
124 dp
= &ds
->ports
[port
];
134 static bool dsa_port_setup_routing_table(struct dsa_port
*dp
)
136 struct dsa_switch
*ds
= dp
->ds
;
137 struct dsa_switch_tree
*dst
= ds
->dst
;
138 struct device_node
*dn
= dp
->dn
;
139 struct of_phandle_iterator it
;
140 struct dsa_port
*link_dp
;
143 of_for_each_phandle(&it
, err
, dn
, "link", NULL
, 0) {
144 link_dp
= dsa_tree_find_port_by_node(dst
, it
.node
);
146 of_node_put(it
.node
);
150 ds
->rtable
[link_dp
->ds
->index
] = dp
->index
;
156 static bool dsa_switch_setup_routing_table(struct dsa_switch
*ds
)
158 bool complete
= true;
162 for (i
= 0; i
< DSA_MAX_SWITCHES
; i
++)
163 ds
->rtable
[i
] = DSA_RTABLE_NONE
;
165 for (i
= 0; i
< ds
->num_ports
; i
++) {
168 if (dsa_port_is_dsa(dp
)) {
169 complete
= dsa_port_setup_routing_table(dp
);
178 static bool dsa_tree_setup_routing_table(struct dsa_switch_tree
*dst
)
180 struct dsa_switch
*ds
;
181 bool complete
= true;
184 for (device
= 0; device
< DSA_MAX_SWITCHES
; device
++) {
185 ds
= dst
->ds
[device
];
189 complete
= dsa_switch_setup_routing_table(ds
);
197 static struct dsa_port
*dsa_tree_find_first_cpu(struct dsa_switch_tree
*dst
)
199 struct dsa_switch
*ds
;
203 for (device
= 0; device
< DSA_MAX_SWITCHES
; device
++) {
204 ds
= dst
->ds
[device
];
208 for (port
= 0; port
< ds
->num_ports
; port
++) {
209 dp
= &ds
->ports
[port
];
211 if (dsa_port_is_cpu(dp
))
219 static int dsa_tree_setup_default_cpu(struct dsa_switch_tree
*dst
)
221 struct dsa_switch
*ds
;
225 /* DSA currently only supports a single CPU port */
226 dst
->cpu_dp
= dsa_tree_find_first_cpu(dst
);
228 pr_warn("Tree has no master device\n");
232 /* Assign the default CPU port to all ports of the fabric */
233 for (device
= 0; device
< DSA_MAX_SWITCHES
; device
++) {
234 ds
= dst
->ds
[device
];
238 for (port
= 0; port
< ds
->num_ports
; port
++) {
239 dp
= &ds
->ports
[port
];
241 if (dsa_port_is_user(dp
) || dsa_port_is_dsa(dp
))
242 dp
->cpu_dp
= dst
->cpu_dp
;
249 static void dsa_tree_teardown_default_cpu(struct dsa_switch_tree
*dst
)
251 /* DSA currently only supports a single CPU port */
255 static int dsa_port_setup(struct dsa_port
*dp
)
257 enum devlink_port_flavour flavour
;
258 struct dsa_switch
*ds
= dp
->ds
;
259 struct dsa_switch_tree
*dst
= ds
->dst
;
262 if (dp
->type
== DSA_PORT_TYPE_UNUSED
)
265 memset(&dp
->devlink_port
, 0, sizeof(dp
->devlink_port
));
266 dp
->mac
= of_get_mac_address(dp
->dn
);
269 case DSA_PORT_TYPE_CPU
:
270 flavour
= DEVLINK_PORT_FLAVOUR_CPU
;
272 case DSA_PORT_TYPE_DSA
:
273 flavour
= DEVLINK_PORT_FLAVOUR_DSA
;
275 case DSA_PORT_TYPE_USER
: /* fall-through */
277 flavour
= DEVLINK_PORT_FLAVOUR_PHYSICAL
;
281 /* dp->index is used now as port_number. However
282 * CPU and DSA ports should have separate numbering
283 * independent from front panel port numbers.
285 devlink_port_attrs_set(&dp
->devlink_port
, flavour
,
287 (const char *) &dst
->index
, sizeof(dst
->index
));
288 err
= devlink_port_register(ds
->devlink
, &dp
->devlink_port
,
294 case DSA_PORT_TYPE_UNUSED
:
296 case DSA_PORT_TYPE_CPU
:
297 err
= dsa_port_link_register_of(dp
);
299 dev_err(ds
->dev
, "failed to setup link for port %d.%d\n",
300 ds
->index
, dp
->index
);
304 case DSA_PORT_TYPE_DSA
:
305 err
= dsa_port_link_register_of(dp
);
307 dev_err(ds
->dev
, "failed to setup link for port %d.%d\n",
308 ds
->index
, dp
->index
);
312 case DSA_PORT_TYPE_USER
:
313 err
= dsa_slave_create(dp
);
315 dev_err(ds
->dev
, "failed to create slave for port %d.%d\n",
316 ds
->index
, dp
->index
);
318 devlink_port_type_eth_set(&dp
->devlink_port
, dp
->slave
);
325 static void dsa_port_teardown(struct dsa_port
*dp
)
327 if (dp
->type
!= DSA_PORT_TYPE_UNUSED
)
328 devlink_port_unregister(&dp
->devlink_port
);
331 case DSA_PORT_TYPE_UNUSED
:
333 case DSA_PORT_TYPE_CPU
:
334 dsa_tag_driver_put(dp
->tag_ops
);
336 case DSA_PORT_TYPE_DSA
:
337 dsa_port_link_unregister_of(dp
);
339 case DSA_PORT_TYPE_USER
:
341 dsa_slave_destroy(dp
->slave
);
348 static int dsa_switch_setup(struct dsa_switch
*ds
)
352 /* Initialize ds->phys_mii_mask before registering the slave MDIO bus
353 * driver and before ops->setup() has run, since the switch drivers and
354 * the slave MDIO bus driver rely on these values for probing PHY
357 ds
->phys_mii_mask
|= dsa_user_ports(ds
);
359 /* Add the switch to devlink before calling setup, so that setup can
362 ds
->devlink
= devlink_alloc(&dsa_devlink_ops
, 0);
366 err
= devlink_register(ds
->devlink
, ds
->dev
);
370 err
= dsa_switch_register_notifier(ds
);
374 err
= ds
->ops
->setup(ds
);
378 if (!ds
->slave_mii_bus
&& ds
->ops
->phy_read
) {
379 ds
->slave_mii_bus
= devm_mdiobus_alloc(ds
->dev
);
380 if (!ds
->slave_mii_bus
)
383 dsa_slave_mii_bus_init(ds
);
385 err
= mdiobus_register(ds
->slave_mii_bus
);
393 static void dsa_switch_teardown(struct dsa_switch
*ds
)
395 if (ds
->slave_mii_bus
&& ds
->ops
->phy_read
)
396 mdiobus_unregister(ds
->slave_mii_bus
);
398 dsa_switch_unregister_notifier(ds
);
401 devlink_unregister(ds
->devlink
);
402 devlink_free(ds
->devlink
);
408 static int dsa_tree_setup_switches(struct dsa_switch_tree
*dst
)
410 struct dsa_switch
*ds
;
415 for (device
= 0; device
< DSA_MAX_SWITCHES
; device
++) {
416 ds
= dst
->ds
[device
];
420 err
= dsa_switch_setup(ds
);
424 for (port
= 0; port
< ds
->num_ports
; port
++) {
425 dp
= &ds
->ports
[port
];
427 err
= dsa_port_setup(dp
);
436 static void dsa_tree_teardown_switches(struct dsa_switch_tree
*dst
)
438 struct dsa_switch
*ds
;
442 for (device
= 0; device
< DSA_MAX_SWITCHES
; device
++) {
443 ds
= dst
->ds
[device
];
447 for (port
= 0; port
< ds
->num_ports
; port
++) {
448 dp
= &ds
->ports
[port
];
450 dsa_port_teardown(dp
);
453 dsa_switch_teardown(ds
);
457 static int dsa_tree_setup_master(struct dsa_switch_tree
*dst
)
459 struct dsa_port
*cpu_dp
= dst
->cpu_dp
;
460 struct net_device
*master
= cpu_dp
->master
;
462 /* DSA currently supports a single pair of CPU port and master device */
463 return dsa_master_setup(master
, cpu_dp
);
466 static void dsa_tree_teardown_master(struct dsa_switch_tree
*dst
)
468 struct dsa_port
*cpu_dp
= dst
->cpu_dp
;
469 struct net_device
*master
= cpu_dp
->master
;
471 return dsa_master_teardown(master
);
474 static int dsa_tree_setup(struct dsa_switch_tree
*dst
)
480 pr_err("DSA: tree %d already setup! Disjoint trees?\n",
485 complete
= dsa_tree_setup_routing_table(dst
);
489 err
= dsa_tree_setup_default_cpu(dst
);
493 err
= dsa_tree_setup_switches(dst
);
497 err
= dsa_tree_setup_master(dst
);
503 pr_info("DSA: tree %d setup\n", dst
->index
);
508 static void dsa_tree_teardown(struct dsa_switch_tree
*dst
)
513 dsa_tree_teardown_master(dst
);
515 dsa_tree_teardown_switches(dst
);
517 dsa_tree_teardown_default_cpu(dst
);
519 pr_info("DSA: tree %d torn down\n", dst
->index
);
524 static void dsa_tree_remove_switch(struct dsa_switch_tree
*dst
,
527 dsa_tree_teardown(dst
);
529 dst
->ds
[index
] = NULL
;
533 static int dsa_tree_add_switch(struct dsa_switch_tree
*dst
,
534 struct dsa_switch
*ds
)
536 unsigned int index
= ds
->index
;
545 err
= dsa_tree_setup(dst
);
547 dsa_tree_remove_switch(dst
, index
);
552 static int dsa_port_parse_user(struct dsa_port
*dp
, const char *name
)
557 dp
->type
= DSA_PORT_TYPE_USER
;
563 static int dsa_port_parse_dsa(struct dsa_port
*dp
)
565 dp
->type
= DSA_PORT_TYPE_DSA
;
570 static int dsa_port_parse_cpu(struct dsa_port
*dp
, struct net_device
*master
)
572 struct dsa_switch
*ds
= dp
->ds
;
573 struct dsa_switch_tree
*dst
= ds
->dst
;
574 const struct dsa_device_ops
*tag_ops
;
575 enum dsa_tag_protocol tag_protocol
;
577 tag_protocol
= ds
->ops
->get_tag_protocol(ds
, dp
->index
);
578 tag_ops
= dsa_tag_driver_get(tag_protocol
);
579 if (IS_ERR(tag_ops
)) {
580 dev_warn(ds
->dev
, "No tagger for this switch\n");
581 return PTR_ERR(tag_ops
);
584 dp
->type
= DSA_PORT_TYPE_CPU
;
585 dp
->filter
= tag_ops
->filter
;
586 dp
->rcv
= tag_ops
->rcv
;
587 dp
->tag_ops
= tag_ops
;
594 static int dsa_port_parse_of(struct dsa_port
*dp
, struct device_node
*dn
)
596 struct device_node
*ethernet
= of_parse_phandle(dn
, "ethernet", 0);
597 const char *name
= of_get_property(dn
, "label", NULL
);
598 bool link
= of_property_read_bool(dn
, "link");
603 struct net_device
*master
;
605 master
= of_find_net_device_by_node(ethernet
);
607 return -EPROBE_DEFER
;
609 return dsa_port_parse_cpu(dp
, master
);
613 return dsa_port_parse_dsa(dp
);
615 return dsa_port_parse_user(dp
, name
);
618 static int dsa_switch_parse_ports_of(struct dsa_switch
*ds
,
619 struct device_node
*dn
)
621 struct device_node
*ports
, *port
;
626 ports
= of_get_child_by_name(dn
, "ports");
628 dev_err(ds
->dev
, "no ports child node found\n");
632 for_each_available_child_of_node(ports
, port
) {
633 err
= of_property_read_u32(port
, "reg", ®
);
637 if (reg
>= ds
->num_ports
) {
642 dp
= &ds
->ports
[reg
];
644 err
= dsa_port_parse_of(dp
, port
);
654 static int dsa_switch_parse_member_of(struct dsa_switch
*ds
,
655 struct device_node
*dn
)
660 /* Don't error out if this optional property isn't found */
661 sz
= of_property_read_variable_u32_array(dn
, "dsa,member", m
, 2, 2);
662 if (sz
< 0 && sz
!= -EINVAL
)
666 if (ds
->index
>= DSA_MAX_SWITCHES
)
669 ds
->dst
= dsa_tree_touch(m
[0]);
676 static int dsa_switch_parse_of(struct dsa_switch
*ds
, struct device_node
*dn
)
680 err
= dsa_switch_parse_member_of(ds
, dn
);
684 return dsa_switch_parse_ports_of(ds
, dn
);
687 static int dsa_port_parse(struct dsa_port
*dp
, const char *name
,
690 if (!strcmp(name
, "cpu")) {
691 struct net_device
*master
;
693 master
= dsa_dev_to_net_device(dev
);
695 return -EPROBE_DEFER
;
699 return dsa_port_parse_cpu(dp
, master
);
702 if (!strcmp(name
, "dsa"))
703 return dsa_port_parse_dsa(dp
);
705 return dsa_port_parse_user(dp
, name
);
708 static int dsa_switch_parse_ports(struct dsa_switch
*ds
,
709 struct dsa_chip_data
*cd
)
711 bool valid_name_found
= false;
718 for (i
= 0; i
< DSA_MAX_PORTS
; i
++) {
719 name
= cd
->port_names
[i
];
726 err
= dsa_port_parse(dp
, name
, dev
);
730 valid_name_found
= true;
733 if (!valid_name_found
&& i
== DSA_MAX_PORTS
)
739 static int dsa_switch_parse(struct dsa_switch
*ds
, struct dsa_chip_data
*cd
)
743 /* We don't support interconnected switches nor multiple trees via
744 * platform data, so this is the unique switch of the tree.
747 ds
->dst
= dsa_tree_touch(0);
751 return dsa_switch_parse_ports(ds
, cd
);
754 static int dsa_switch_add(struct dsa_switch
*ds
)
756 struct dsa_switch_tree
*dst
= ds
->dst
;
758 return dsa_tree_add_switch(dst
, ds
);
761 static int dsa_switch_probe(struct dsa_switch
*ds
)
763 struct dsa_chip_data
*pdata
= ds
->dev
->platform_data
;
764 struct device_node
*np
= ds
->dev
->of_node
;
768 err
= dsa_switch_parse_of(ds
, np
);
770 err
= dsa_switch_parse(ds
, pdata
);
777 return dsa_switch_add(ds
);
780 struct dsa_switch
*dsa_switch_alloc(struct device
*dev
, size_t n
)
782 struct dsa_switch
*ds
;
785 ds
= devm_kzalloc(dev
, struct_size(ds
, ports
, n
), GFP_KERNEL
);
789 /* We avoid allocating memory outside dsa_switch
790 * if it is not needed.
792 if (n
<= sizeof(ds
->_bitmap
) * 8) {
793 ds
->bitmap
= &ds
->_bitmap
;
795 ds
->bitmap
= devm_kcalloc(dev
,
797 sizeof(unsigned long),
799 if (unlikely(!ds
->bitmap
))
806 for (i
= 0; i
< ds
->num_ports
; ++i
) {
807 ds
->ports
[i
].index
= i
;
808 ds
->ports
[i
].ds
= ds
;
813 EXPORT_SYMBOL_GPL(dsa_switch_alloc
);
815 int dsa_register_switch(struct dsa_switch
*ds
)
819 mutex_lock(&dsa2_mutex
);
820 err
= dsa_switch_probe(ds
);
821 dsa_tree_put(ds
->dst
);
822 mutex_unlock(&dsa2_mutex
);
826 EXPORT_SYMBOL_GPL(dsa_register_switch
);
828 static void dsa_switch_remove(struct dsa_switch
*ds
)
830 struct dsa_switch_tree
*dst
= ds
->dst
;
831 unsigned int index
= ds
->index
;
833 dsa_tree_remove_switch(dst
, index
);
836 void dsa_unregister_switch(struct dsa_switch
*ds
)
838 mutex_lock(&dsa2_mutex
);
839 dsa_switch_remove(ds
);
840 mutex_unlock(&dsa2_mutex
);
842 EXPORT_SYMBOL_GPL(dsa_unregister_switch
);