xref: /openbmc/u-boot/common/miiphyutil.c (revision 461fa68d)
1 /*
2  * (C) Copyright 2001
3  * Gerald Van Baren, Custom IDEAS, vanbaren@cideas.com.
4  *
5  * See file CREDITS for list of people who contributed to this
6  * project.
7  *
8  * This program is free software; you can redistribute it and/or
9  * modify it under the terms of the GNU General Public License as
10  * published by the Free Software Foundation; either version 2 of
11  * the License, or (at your option) any later version.
12  *
13  * This program is distributed in the hope that it will be useful,
14  * but WITHOUT ANY WARRANTY; without even the implied warranty of
15  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
16  * GNU General Public License for more details.
17  *
18  * You should have received a copy of the GNU General Public License
19  * along with this program; if not, write to the Free Software
20  * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
21  * MA 02111-1307 USA
22  */
23 
24 /*
25  * This provides a bit-banged interface to the ethernet MII management
26  * channel.
27  */
28 
29 #include <common.h>
30 #include <miiphy.h>
31 
32 #if defined(CONFIG_MII) || defined(CONFIG_CMD_MII)
33 #include <asm/types.h>
34 #include <linux/list.h>
35 #include <malloc.h>
36 #include <net.h>
37 
38 /* local debug macro */
39 #undef MII_DEBUG
40 
41 #undef debug
42 #ifdef MII_DEBUG
43 #define debug(fmt,args...)	printf (fmt ,##args)
44 #else
45 #define debug(fmt,args...)
46 #endif /* MII_DEBUG */
47 
48 struct mii_dev {
49 	struct list_head link;
50 	char *name;
51 	int (*read) (char *devname, unsigned char addr,
52 		     unsigned char reg, unsigned short *value);
53 	int (*write) (char *devname, unsigned char addr,
54 		      unsigned char reg, unsigned short value);
55 };
56 
57 static struct list_head mii_devs;
58 static struct mii_dev *current_mii;
59 
60 /*****************************************************************************
61  *
62  * Initialize global data. Need to be called before any other miiphy routine.
63  */
64 void miiphy_init ()
65 {
66 	INIT_LIST_HEAD (&mii_devs);
67 	current_mii = NULL;
68 }
69 
70 /*****************************************************************************
71  *
72  * Register read and write MII access routines for the device <name>.
73  */
74 void miiphy_register (char *name,
75 		      int (*read) (char *devname, unsigned char addr,
76 				   unsigned char reg, unsigned short *value),
77 		      int (*write) (char *devname, unsigned char addr,
78 				    unsigned char reg, unsigned short value))
79 {
80 	struct list_head *entry;
81 	struct mii_dev *new_dev;
82 	struct mii_dev *miidev;
83 	unsigned int name_len;
84 
85 	/* check if we have unique name */
86 	list_for_each (entry, &mii_devs) {
87 		miidev = list_entry (entry, struct mii_dev, link);
88 		if (strcmp (miidev->name, name) == 0) {
89 			printf ("miiphy_register: non unique device name "
90 				"'%s'\n", name);
91 			return;
92 		}
93 	}
94 
95 	/* allocate memory */
96 	name_len = strlen (name);
97 	new_dev =
98 	    (struct mii_dev *)malloc (sizeof (struct mii_dev) + name_len + 1);
99 
100 	if (new_dev == NULL) {
101 		printf ("miiphy_register: cannot allocate memory for '%s'\n",
102 			name);
103 		return;
104 	}
105 	memset (new_dev, 0, sizeof (struct mii_dev) + name_len);
106 
107 	/* initalize mii_dev struct fields */
108 	INIT_LIST_HEAD (&new_dev->link);
109 	new_dev->read = read;
110 	new_dev->write = write;
111 	new_dev->name = (char *)(new_dev + 1);
112 	strncpy (new_dev->name, name, name_len);
113 	new_dev->name[name_len] = '\0';
114 
115 	debug ("miiphy_register: added '%s', read=0x%08lx, write=0x%08lx\n",
116 	       new_dev->name, new_dev->read, new_dev->write);
117 
118 	/* add it to the list */
119 	list_add_tail (&new_dev->link, &mii_devs);
120 
121 	if (!current_mii)
122 		current_mii = new_dev;
123 }
124 
125 int miiphy_set_current_dev (char *devname)
126 {
127 	struct list_head *entry;
128 	struct mii_dev *dev;
129 
130 	list_for_each (entry, &mii_devs) {
131 		dev = list_entry (entry, struct mii_dev, link);
132 
133 		if (strcmp (devname, dev->name) == 0) {
134 			current_mii = dev;
135 			return 0;
136 		}
137 	}
138 
139 	printf ("No such device: %s\n", devname);
140 	return 1;
141 }
142 
143 char *miiphy_get_current_dev ()
144 {
145 	if (current_mii)
146 		return current_mii->name;
147 
148 	return NULL;
149 }
150 
151 /*****************************************************************************
152  *
153  * Read to variable <value> from the PHY attached to device <devname>,
154  * use PHY address <addr> and register <reg>.
155  *
156  * Returns:
157  *   0 on success
158  */
159 int miiphy_read (char *devname, unsigned char addr, unsigned char reg,
160 		 unsigned short *value)
161 {
162 	struct list_head *entry;
163 	struct mii_dev *dev;
164 	int found_dev = 0;
165 	int read_ret = 0;
166 
167 	if (!devname) {
168 		printf ("NULL device name!\n");
169 		return 1;
170 	}
171 
172 	list_for_each (entry, &mii_devs) {
173 		dev = list_entry (entry, struct mii_dev, link);
174 
175 		if (strcmp (devname, dev->name) == 0) {
176 			found_dev = 1;
177 			read_ret = dev->read (devname, addr, reg, value);
178 			break;
179 		}
180 	}
181 
182 	if (found_dev == 0)
183 		printf ("No such device: %s\n", devname);
184 
185 	return ((found_dev) ? read_ret : 1);
186 }
187 
188 /*****************************************************************************
189  *
190  * Write <value> to the PHY attached to device <devname>,
191  * use PHY address <addr> and register <reg>.
192  *
193  * Returns:
194  *   0 on success
195  */
196 int miiphy_write (char *devname, unsigned char addr, unsigned char reg,
197 		  unsigned short value)
198 {
199 	struct list_head *entry;
200 	struct mii_dev *dev;
201 	int found_dev = 0;
202 	int write_ret = 0;
203 
204 	if (!devname) {
205 		printf ("NULL device name!\n");
206 		return 1;
207 	}
208 
209 	list_for_each (entry, &mii_devs) {
210 		dev = list_entry (entry, struct mii_dev, link);
211 
212 		if (strcmp (devname, dev->name) == 0) {
213 			found_dev = 1;
214 			write_ret = dev->write (devname, addr, reg, value);
215 			break;
216 		}
217 	}
218 
219 	if (found_dev == 0)
220 		printf ("No such device: %s\n", devname);
221 
222 	return ((found_dev) ? write_ret : 1);
223 }
224 
225 /*****************************************************************************
226  *
227  * Print out list of registered MII capable devices.
228  */
229 void miiphy_listdev (void)
230 {
231 	struct list_head *entry;
232 	struct mii_dev *dev;
233 
234 	puts ("MII devices: ");
235 	list_for_each (entry, &mii_devs) {
236 		dev = list_entry (entry, struct mii_dev, link);
237 		printf ("'%s' ", dev->name);
238 	}
239 	puts ("\n");
240 
241 	if (current_mii)
242 		printf ("Current device: '%s'\n", current_mii->name);
243 }
244 
245 /*****************************************************************************
246  *
247  * Read the OUI, manufacture's model number, and revision number.
248  *
249  * OUI:     22 bits (unsigned int)
250  * Model:    6 bits (unsigned char)
251  * Revision: 4 bits (unsigned char)
252  *
253  * Returns:
254  *   0 on success
255  */
256 int miiphy_info (char *devname, unsigned char addr, unsigned int *oui,
257 		 unsigned char *model, unsigned char *rev)
258 {
259 	unsigned int reg = 0;
260 	unsigned short tmp;
261 
262 	if (miiphy_read (devname, addr, PHY_PHYIDR2, &tmp) != 0) {
263 		debug ("PHY ID register 2 read failed\n");
264 		return (-1);
265 	}
266 	reg = tmp;
267 
268 	debug ("PHY_PHYIDR2 @ 0x%x = 0x%04x\n", addr, reg);
269 
270 	if (reg == 0xFFFF) {
271 		/* No physical device present at this address */
272 		return (-1);
273 	}
274 
275 	if (miiphy_read (devname, addr, PHY_PHYIDR1, &tmp) != 0) {
276 		debug ("PHY ID register 1 read failed\n");
277 		return (-1);
278 	}
279 	reg |= tmp << 16;
280 	debug ("PHY_PHYIDR[1,2] @ 0x%x = 0x%08x\n", addr, reg);
281 
282 	*oui = (reg >> 10);
283 	*model = (unsigned char)((reg >> 4) & 0x0000003F);
284 	*rev = (unsigned char)(reg & 0x0000000F);
285 	return (0);
286 }
287 
288 /*****************************************************************************
289  *
290  * Reset the PHY.
291  * Returns:
292  *   0 on success
293  */
294 int miiphy_reset (char *devname, unsigned char addr)
295 {
296 	unsigned short reg;
297 	int loop_cnt;
298 
299 	if (miiphy_read (devname, addr, PHY_BMCR, &reg) != 0) {
300 		debug ("PHY status read failed\n");
301 		return (-1);
302 	}
303 	if (miiphy_write (devname, addr, PHY_BMCR, reg | 0x8000) != 0) {
304 		debug ("PHY reset failed\n");
305 		return (-1);
306 	}
307 #ifdef CONFIG_PHY_RESET_DELAY
308 	udelay (CONFIG_PHY_RESET_DELAY);	/* Intel LXT971A needs this */
309 #endif
310 	/*
311 	 * Poll the control register for the reset bit to go to 0 (it is
312 	 * auto-clearing).  This should happen within 0.5 seconds per the
313 	 * IEEE spec.
314 	 */
315 	loop_cnt = 0;
316 	reg = 0x8000;
317 	while (((reg & 0x8000) != 0) && (loop_cnt++ < 1000000)) {
318 		if (miiphy_read (devname, addr, PHY_BMCR, &reg) != 0) {
319 			debug ("PHY status read failed\n");
320 			return (-1);
321 		}
322 	}
323 	if ((reg & 0x8000) == 0) {
324 		return (0);
325 	} else {
326 		puts ("PHY reset timed out\n");
327 		return (-1);
328 	}
329 	return (0);
330 }
331 
332 /*****************************************************************************
333  *
334  * Determine the ethernet speed (10/100/1000).  Return 10 on error.
335  */
336 int miiphy_speed (char *devname, unsigned char addr)
337 {
338 	u16 bmcr, anlpar;
339 
340 #if defined(CONFIG_PHY_GIGE)
341 	u16 btsr;
342 
343 	/*
344 	 * Check for 1000BASE-X.  If it is supported, then assume that the speed
345 	 * is 1000.
346 	 */
347 	if (miiphy_is_1000base_x (devname, addr)) {
348 		return _1000BASET;
349 	}
350 	/*
351 	 * No 1000BASE-X, so assume 1000BASE-T/100BASE-TX/10BASE-T register set.
352 	 */
353 	/* Check for 1000BASE-T. */
354 	if (miiphy_read (devname, addr, PHY_1000BTSR, &btsr)) {
355 		printf ("PHY 1000BT status");
356 		goto miiphy_read_failed;
357 	}
358 	if (btsr != 0xFFFF &&
359 	    (btsr & (PHY_1000BTSR_1000FD | PHY_1000BTSR_1000HD))) {
360 		return _1000BASET;
361 	}
362 #endif /* CONFIG_PHY_GIGE */
363 
364 	/* Check Basic Management Control Register first. */
365 	if (miiphy_read (devname, addr, PHY_BMCR, &bmcr)) {
366 		printf ("PHY speed");
367 		goto miiphy_read_failed;
368 	}
369 	/* Check if auto-negotiation is on. */
370 	if (bmcr & PHY_BMCR_AUTON) {
371 		/* Get auto-negotiation results. */
372 		if (miiphy_read (devname, addr, PHY_ANLPAR, &anlpar)) {
373 			printf ("PHY AN speed");
374 			goto miiphy_read_failed;
375 		}
376 		return (anlpar & PHY_ANLPAR_100) ? _100BASET : _10BASET;
377 	}
378 	/* Get speed from basic control settings. */
379 	return (bmcr & PHY_BMCR_100MB) ? _100BASET : _10BASET;
380 
381       miiphy_read_failed:
382 	printf (" read failed, assuming 10BASE-T\n");
383 	return _10BASET;
384 }
385 
386 /*****************************************************************************
387  *
388  * Determine full/half duplex.  Return half on error.
389  */
390 int miiphy_duplex (char *devname, unsigned char addr)
391 {
392 	u16 bmcr, anlpar;
393 
394 #if defined(CONFIG_PHY_GIGE)
395 	u16 btsr;
396 
397 	/* Check for 1000BASE-X. */
398 	if (miiphy_is_1000base_x (devname, addr)) {
399 		/* 1000BASE-X */
400 		if (miiphy_read (devname, addr, PHY_ANLPAR, &anlpar)) {
401 			printf ("1000BASE-X PHY AN duplex");
402 			goto miiphy_read_failed;
403 		}
404 	}
405 	/*
406 	 * No 1000BASE-X, so assume 1000BASE-T/100BASE-TX/10BASE-T register set.
407 	 */
408 	/* Check for 1000BASE-T. */
409 	if (miiphy_read (devname, addr, PHY_1000BTSR, &btsr)) {
410 		printf ("PHY 1000BT status");
411 		goto miiphy_read_failed;
412 	}
413 	if (btsr != 0xFFFF) {
414 		if (btsr & PHY_1000BTSR_1000FD) {
415 			return FULL;
416 		} else if (btsr & PHY_1000BTSR_1000HD) {
417 			return HALF;
418 		}
419 	}
420 #endif /* CONFIG_PHY_GIGE */
421 
422 	/* Check Basic Management Control Register first. */
423 	if (miiphy_read (devname, addr, PHY_BMCR, &bmcr)) {
424 		puts ("PHY duplex");
425 		goto miiphy_read_failed;
426 	}
427 	/* Check if auto-negotiation is on. */
428 	if (bmcr & PHY_BMCR_AUTON) {
429 		/* Get auto-negotiation results. */
430 		if (miiphy_read (devname, addr, PHY_ANLPAR, &anlpar)) {
431 			puts ("PHY AN duplex");
432 			goto miiphy_read_failed;
433 		}
434 		return (anlpar & (PHY_ANLPAR_10FD | PHY_ANLPAR_TXFD)) ?
435 		    FULL : HALF;
436 	}
437 	/* Get speed from basic control settings. */
438 	return (bmcr & PHY_BMCR_DPLX) ? FULL : HALF;
439 
440       miiphy_read_failed:
441 	printf (" read failed, assuming half duplex\n");
442 	return HALF;
443 }
444 
445 /*****************************************************************************
446  *
447  * Return 1 if PHY supports 1000BASE-X, 0 if PHY supports 10BASE-T/100BASE-TX/
448  * 1000BASE-T, or on error.
449  */
450 int miiphy_is_1000base_x (char *devname, unsigned char addr)
451 {
452 #if defined(CONFIG_PHY_GIGE)
453 	u16 exsr;
454 
455 	if (miiphy_read (devname, addr, PHY_EXSR, &exsr)) {
456 		printf ("PHY extended status read failed, assuming no "
457 			"1000BASE-X\n");
458 		return 0;
459 	}
460 	return 0 != (exsr & (PHY_EXSR_1000XF | PHY_EXSR_1000XH));
461 #else
462 	return 0;
463 #endif
464 }
465 
466 #ifdef CFG_FAULT_ECHO_LINK_DOWN
467 /*****************************************************************************
468  *
469  * Determine link status
470  */
471 int miiphy_link (char *devname, unsigned char addr)
472 {
473 	unsigned short reg;
474 
475 	/* dummy read; needed to latch some phys */
476 	(void)miiphy_read (devname, addr, PHY_BMSR, &reg);
477 	if (miiphy_read (devname, addr, PHY_BMSR, &reg)) {
478 		puts ("PHY_BMSR read failed, assuming no link\n");
479 		return (0);
480 	}
481 
482 	/* Determine if a link is active */
483 	if ((reg & PHY_BMSR_LS) != 0) {
484 		return (1);
485 	} else {
486 		return (0);
487 	}
488 }
489 #endif
490 #endif /* CONFIG_MII */
491