2 * OF helpers for the MDIO (Ethernet PHY) API
4 * Copyright (c) 2009 Secret Lab Technologies, Ltd.
6 * This file is released under the GPLv2
8 * This file provides helper functions for extracting PHY device information
9 * out of the OpenFirmware device tree and using it to populate an mii_bus.
12 #include <linux/kernel.h>
13 #include <linux/device.h>
14 #include <linux/netdevice.h>
15 #include <linux/err.h>
16 #include <linux/phy.h>
17 #include <linux/phy_fixed.h>
19 #include <linux/of_gpio.h>
20 #include <linux/of_irq.h>
21 #include <linux/of_mdio.h>
22 #include <linux/module.h>
24 MODULE_AUTHOR("Grant Likely <grant.likely@secretlab.ca>");
25 MODULE_LICENSE("GPL");
27 /* Extract the clause 22 phy ID from the compatible string of the form
28 * ethernet-phy-idAAAA.BBBB */
29 static int of_get_phy_id(struct device_node
*device
, u32
*phy_id
)
31 struct property
*prop
;
33 unsigned int upper
, lower
;
35 of_property_for_each_string(device
, "compatible", prop
, cp
) {
36 if (sscanf(cp
, "ethernet-phy-id%4x.%4x", &upper
, &lower
) == 2) {
37 *phy_id
= ((upper
& 0xFFFF) << 16) | (lower
& 0xFFFF);
44 static int of_mdiobus_register_phy(struct mii_bus
*mdio
, struct device_node
*child
,
47 struct phy_device
*phy
;
52 is_c45
= of_device_is_compatible(child
,
53 "ethernet-phy-ieee802.3-c45");
55 if (!is_c45
&& !of_get_phy_id(child
, &phy_id
))
56 phy
= phy_device_create(mdio
, addr
, phy_id
, 0, NULL
);
58 phy
= get_phy_device(mdio
, addr
, is_c45
);
59 if (!phy
|| IS_ERR(phy
))
62 rc
= irq_of_parse_and_map(child
, 0);
67 phy
->irq
= mdio
->irq
[addr
];
70 if (of_property_read_bool(child
, "broken-turn-around"))
71 mdio
->phy_ignore_ta_mask
|= 1 << addr
;
73 /* Associate the OF node with the device structure so it
74 * can be looked up later */
76 phy
->mdio
.dev
.of_node
= child
;
78 /* All data is now stored in the phy struct;
80 rc
= phy_device_register(phy
);
87 dev_dbg(&mdio
->dev
, "registered phy %s at address %i\n",
93 static int of_mdiobus_register_device(struct mii_bus
*mdio
,
94 struct device_node
*child
,
97 struct mdio_device
*mdiodev
;
100 mdiodev
= mdio_device_create(mdio
, addr
);
101 if (!mdiodev
|| IS_ERR(mdiodev
))
104 /* Associate the OF node with the device structure so it
105 * can be looked up later.
108 mdiodev
->dev
.of_node
= child
;
110 /* All data is now stored in the mdiodev struct; register it. */
111 rc
= mdio_device_register(mdiodev
);
113 mdio_device_free(mdiodev
);
118 dev_dbg(&mdio
->dev
, "registered mdio device %s at address %i\n",
124 int of_mdio_parse_addr(struct device
*dev
, const struct device_node
*np
)
129 ret
= of_property_read_u32(np
, "reg", &addr
);
131 dev_err(dev
, "%s has invalid PHY address\n", np
->full_name
);
135 /* A PHY must have a reg property in the range [0-31] */
136 if (addr
>= PHY_MAX_ADDR
) {
137 dev_err(dev
, "%s PHY address %i is too large\n",
138 np
->full_name
, addr
);
144 EXPORT_SYMBOL(of_mdio_parse_addr
);
147 * Return true if the child node is for a phy. It must either:
148 * o Compatible string of "ethernet-phy-idX.X"
149 * o Compatible string of "ethernet-phy-ieee802.3-c45"
150 * o Compatible string of "ethernet-phy-ieee802.3-c22"
151 * o No compatibility string
153 * A device which is not a phy is expected to have a compatible string
154 * indicating what sort of device it is.
156 static bool of_mdiobus_child_is_phy(struct device_node
*child
)
160 if (of_get_phy_id(child
, &phy_id
) != -EINVAL
)
163 if (of_device_is_compatible(child
, "ethernet-phy-ieee802.3-c45"))
166 if (of_device_is_compatible(child
, "ethernet-phy-ieee802.3-c22"))
169 if (!of_find_property(child
, "compatible", NULL
))
176 * of_mdiobus_register - Register mii_bus and create PHYs from the device tree
177 * @mdio: pointer to mii_bus structure
178 * @np: pointer to device_node of MDIO bus.
180 * This function registers the mii_bus structure and registers a phy_device
181 * for each child node of @np.
183 int of_mdiobus_register(struct mii_bus
*mdio
, struct device_node
*np
)
185 struct device_node
*child
;
187 bool scanphys
= false;
190 /* Mask out all PHYs from auto probing. Instead the PHYs listed in
191 * the device tree are populated after the bus has been registered */
194 mdio
->dev
.of_node
= np
;
196 /* Register the MDIO bus */
197 rc
= mdiobus_register(mdio
);
201 /* Loop over the child nodes and register a phy_device for each phy */
202 for_each_available_child_of_node(np
, child
) {
203 addr
= of_mdio_parse_addr(&mdio
->dev
, child
);
209 if (of_mdiobus_child_is_phy(child
))
210 of_mdiobus_register_phy(mdio
, child
, addr
);
212 of_mdiobus_register_device(mdio
, child
, addr
);
218 /* auto scan for PHYs with empty reg property */
219 for_each_available_child_of_node(np
, child
) {
220 /* Skip PHYs with reg property set */
221 paddr
= of_get_property(child
, "reg", NULL
);
225 for (addr
= 0; addr
< PHY_MAX_ADDR
; addr
++) {
226 /* skip already registered PHYs */
227 if (mdiobus_is_registered_device(mdio
, addr
))
230 /* be noisy to encourage people to set reg property */
231 dev_info(&mdio
->dev
, "scan phy %s at address %i\n",
234 if (of_mdiobus_child_is_phy(child
))
235 of_mdiobus_register_phy(mdio
, child
, addr
);
241 EXPORT_SYMBOL(of_mdiobus_register
);
243 /* Helper function for of_phy_find_device */
244 static int of_phy_match(struct device
*dev
, void *phy_np
)
246 return dev
->of_node
== phy_np
;
250 * of_phy_find_device - Give a PHY node, find the phy_device
251 * @phy_np: Pointer to the phy's device tree node
253 * If successful, returns a pointer to the phy_device with the embedded
254 * struct device refcount incremented by one, or NULL on failure.
256 struct phy_device
*of_phy_find_device(struct device_node
*phy_np
)
262 d
= bus_find_device(&mdio_bus_type
, NULL
, phy_np
, of_phy_match
);
263 return d
? to_phy_device(d
) : NULL
;
265 EXPORT_SYMBOL(of_phy_find_device
);
268 * of_phy_connect - Connect to the phy described in the device tree
269 * @dev: pointer to net_device claiming the phy
270 * @phy_np: Pointer to device tree node for the PHY
271 * @hndlr: Link state callback for the network device
272 * @iface: PHY data interface type
274 * If successful, returns a pointer to the phy_device with the embedded
275 * struct device refcount incremented by one, or NULL on failure. The
276 * refcount must be dropped by calling phy_disconnect() or phy_detach().
278 struct phy_device
*of_phy_connect(struct net_device
*dev
,
279 struct device_node
*phy_np
,
280 void (*hndlr
)(struct net_device
*), u32 flags
,
281 phy_interface_t iface
)
283 struct phy_device
*phy
= of_phy_find_device(phy_np
);
289 phy
->dev_flags
= flags
;
291 ret
= phy_connect_direct(dev
, phy
, hndlr
, iface
);
293 /* refcount is held by phy_connect_direct() on success */
294 put_device(&phy
->mdio
.dev
);
296 return ret
? NULL
: phy
;
298 EXPORT_SYMBOL(of_phy_connect
);
301 * of_phy_attach - Attach to a PHY without starting the state machine
302 * @dev: pointer to net_device claiming the phy
303 * @phy_np: Node pointer for the PHY
304 * @flags: flags to pass to the PHY
305 * @iface: PHY data interface type
307 * If successful, returns a pointer to the phy_device with the embedded
308 * struct device refcount incremented by one, or NULL on failure. The
309 * refcount must be dropped by calling phy_disconnect() or phy_detach().
311 struct phy_device
*of_phy_attach(struct net_device
*dev
,
312 struct device_node
*phy_np
, u32 flags
,
313 phy_interface_t iface
)
315 struct phy_device
*phy
= of_phy_find_device(phy_np
);
321 ret
= phy_attach_direct(dev
, phy
, flags
, iface
);
323 /* refcount is held by phy_attach_direct() on success */
324 put_device(&phy
->mdio
.dev
);
326 return ret
? NULL
: phy
;
328 EXPORT_SYMBOL(of_phy_attach
);
330 #if defined(CONFIG_FIXED_PHY)
332 * of_phy_is_fixed_link() and of_phy_register_fixed_link() must
333 * support two DT bindings:
334 * - the old DT binding, where 'fixed-link' was a property with 5
335 * cells encoding various informations about the fixed PHY
336 * - the new DT binding, where 'fixed-link' is a sub-node of the
339 bool of_phy_is_fixed_link(struct device_node
*np
)
341 struct device_node
*dn
;
346 dn
= of_get_child_by_name(np
, "fixed-link");
352 err
= of_property_read_string(np
, "managed", &managed
);
353 if (err
== 0 && strcmp(managed
, "auto") != 0)
357 if (of_get_property(np
, "fixed-link", &len
) &&
358 len
== (5 * sizeof(__be32
)))
363 EXPORT_SYMBOL(of_phy_is_fixed_link
);
365 int of_phy_register_fixed_link(struct device_node
*np
)
367 struct fixed_phy_status status
= {};
368 struct device_node
*fixed_link_node
;
369 const __be32
*fixed_link_prop
;
372 struct phy_device
*phy
;
375 err
= of_property_read_string(np
, "managed", &managed
);
377 if (strcmp(managed
, "in-band-status") == 0) {
378 /* status is zeroed, namely its .link member */
379 phy
= fixed_phy_register(PHY_POLL
, &status
, -1, np
);
380 return IS_ERR(phy
) ? PTR_ERR(phy
) : 0;
385 fixed_link_node
= of_get_child_by_name(np
, "fixed-link");
386 if (fixed_link_node
) {
388 status
.duplex
= of_property_read_bool(fixed_link_node
,
390 if (of_property_read_u32(fixed_link_node
, "speed", &status
.speed
))
392 status
.pause
= of_property_read_bool(fixed_link_node
, "pause");
393 status
.asym_pause
= of_property_read_bool(fixed_link_node
,
395 link_gpio
= of_get_named_gpio_flags(fixed_link_node
,
396 "link-gpios", 0, NULL
);
397 of_node_put(fixed_link_node
);
398 if (link_gpio
== -EPROBE_DEFER
)
399 return -EPROBE_DEFER
;
401 phy
= fixed_phy_register(PHY_POLL
, &status
, link_gpio
, np
);
402 return IS_ERR(phy
) ? PTR_ERR(phy
) : 0;
406 fixed_link_prop
= of_get_property(np
, "fixed-link", &len
);
407 if (fixed_link_prop
&& len
== (5 * sizeof(__be32
))) {
409 status
.duplex
= be32_to_cpu(fixed_link_prop
[1]);
410 status
.speed
= be32_to_cpu(fixed_link_prop
[2]);
411 status
.pause
= be32_to_cpu(fixed_link_prop
[3]);
412 status
.asym_pause
= be32_to_cpu(fixed_link_prop
[4]);
413 phy
= fixed_phy_register(PHY_POLL
, &status
, -1, np
);
414 return IS_ERR(phy
) ? PTR_ERR(phy
) : 0;
419 EXPORT_SYMBOL(of_phy_register_fixed_link
);