Fix arch headers.
[linux-flexiantxendom0-3.2.10.git] / drivers / net / tulip / media.c
1 /*
2         drivers/net/tulip/media.c
3
4         Maintained by Jeff Garzik <jgarzik@pobox.com>
5         Copyright 2000,2001  The Linux Kernel Team
6         Written/copyright 1994-2001 by Donald Becker.
7
8         This software may be used and distributed according to the terms
9         of the GNU General Public License, incorporated herein by reference.
10
11         Please refer to Documentation/DocBook/tulip.{pdf,ps,html}
12         for more information on this driver, or visit the project
13         Web page at http://sourceforge.net/projects/tulip/
14
15 */
16
17 #include <linux/kernel.h>
18 #include <linux/mii.h>
19 #include <linux/init.h>
20 #include <linux/delay.h>
21 #include "tulip.h"
22
23
24 /* The maximum data clock rate is 2.5 Mhz.  The minimum timing is usually
25    met by back-to-back PCI I/O cycles, but we insert a delay to avoid
26    "overclocking" issues or future 66Mhz PCI. */
27 #define mdio_delay() inl(mdio_addr)
28
29 /* Read and write the MII registers using software-generated serial
30    MDIO protocol.  It is just different enough from the EEPROM protocol
31    to not share code.  The maxium data clock rate is 2.5 Mhz. */
32 #define MDIO_SHIFT_CLK          0x10000
33 #define MDIO_DATA_WRITE0        0x00000
34 #define MDIO_DATA_WRITE1        0x20000
35 #define MDIO_ENB                0x00000 /* Ignore the 0x02000 databook setting. */
36 #define MDIO_ENB_IN             0x40000
37 #define MDIO_DATA_READ          0x80000
38
39 static const unsigned char comet_miireg2offset[32] = {
40         0xB4, 0xB8, 0xBC, 0xC0,  0xC4, 0xC8, 0xCC, 0,  0,0,0,0,  0,0,0,0,
41         0,0xD0,0,0,  0,0,0,0,  0,0,0,0, 0, 0xD4, 0xD8, 0xDC, };
42
43
44 /* MII transceiver control section.
45    Read and write the MII registers using software-generated serial
46    MDIO protocol.  See the MII specifications or DP83840A data sheet
47    for details. */
48
49 int tulip_mdio_read(struct net_device *dev, int phy_id, int location)
50 {
51         struct tulip_private *tp = (struct tulip_private *)dev->priv;
52         int i;
53         int read_cmd = (0xf6 << 10) | ((phy_id & 0x1f) << 5) | location;
54         int retval = 0;
55         long ioaddr = dev->base_addr;
56         long mdio_addr = ioaddr + CSR9;
57         unsigned long flags;
58
59         if (location & ~0x1f)
60                 return 0xffff;
61
62         if (tp->chip_id == COMET  &&  phy_id == 30) {
63                 if (comet_miireg2offset[location])
64                         return inl(ioaddr + comet_miireg2offset[location]);
65                 return 0xffff;
66         }
67
68         spin_lock_irqsave(&tp->mii_lock, flags);
69         if (tp->chip_id == LC82C168) {
70                 int i = 1000;
71                 outl(0x60020000 + (phy_id<<23) + (location<<18), ioaddr + 0xA0);
72                 inl(ioaddr + 0xA0);
73                 inl(ioaddr + 0xA0);
74                 while (--i > 0) {
75                         barrier();
76                         if ( ! ((retval = inl(ioaddr + 0xA0)) & 0x80000000))
77                                 break;
78                 }
79                 spin_unlock_irqrestore(&tp->mii_lock, flags);
80                 return retval & 0xffff;
81         }
82
83         /* Establish sync by sending at least 32 logic ones. */
84         for (i = 32; i >= 0; i--) {
85                 outl(MDIO_ENB | MDIO_DATA_WRITE1, mdio_addr);
86                 mdio_delay();
87                 outl(MDIO_ENB | MDIO_DATA_WRITE1 | MDIO_SHIFT_CLK, mdio_addr);
88                 mdio_delay();
89         }
90         /* Shift the read command bits out. */
91         for (i = 15; i >= 0; i--) {
92                 int dataval = (read_cmd & (1 << i)) ? MDIO_DATA_WRITE1 : 0;
93
94                 outl(MDIO_ENB | dataval, mdio_addr);
95                 mdio_delay();
96                 outl(MDIO_ENB | dataval | MDIO_SHIFT_CLK, mdio_addr);
97                 mdio_delay();
98         }
99         /* Read the two transition, 16 data, and wire-idle bits. */
100         for (i = 19; i > 0; i--) {
101                 outl(MDIO_ENB_IN, mdio_addr);
102                 mdio_delay();
103                 retval = (retval << 1) | ((inl(mdio_addr) & MDIO_DATA_READ) ? 1 : 0);
104                 outl(MDIO_ENB_IN | MDIO_SHIFT_CLK, mdio_addr);
105                 mdio_delay();
106         }
107
108         spin_unlock_irqrestore(&tp->mii_lock, flags);
109         return (retval>>1) & 0xffff;
110 }
111
112 void tulip_mdio_write(struct net_device *dev, int phy_id, int location, int val)
113 {
114         struct tulip_private *tp = (struct tulip_private *)dev->priv;
115         int i;
116         int cmd = (0x5002 << 16) | ((phy_id & 0x1f) << 23) | (location<<18) | (val & 0xffff);
117         long ioaddr = dev->base_addr;
118         long mdio_addr = ioaddr + CSR9;
119         unsigned long flags;
120
121         if (location & ~0x1f)
122                 return;
123
124         if (tp->chip_id == COMET && phy_id == 30) {
125                 if (comet_miireg2offset[location])
126                         outl(val, ioaddr + comet_miireg2offset[location]);
127                 return;
128         }
129
130         spin_lock_irqsave(&tp->mii_lock, flags);
131         if (tp->chip_id == LC82C168) {
132                 int i = 1000;
133                 outl(cmd, ioaddr + 0xA0);
134                 do {
135                         barrier();
136                         if ( ! (inl(ioaddr + 0xA0) & 0x80000000))
137                                 break;
138                 } while (--i > 0);
139                 spin_unlock_irqrestore(&tp->mii_lock, flags);
140                 return;
141         }
142
143         /* Establish sync by sending 32 logic ones. */
144         for (i = 32; i >= 0; i--) {
145                 outl(MDIO_ENB | MDIO_DATA_WRITE1, mdio_addr);
146                 mdio_delay();
147                 outl(MDIO_ENB | MDIO_DATA_WRITE1 | MDIO_SHIFT_CLK, mdio_addr);
148                 mdio_delay();
149         }
150         /* Shift the command bits out. */
151         for (i = 31; i >= 0; i--) {
152                 int dataval = (cmd & (1 << i)) ? MDIO_DATA_WRITE1 : 0;
153                 outl(MDIO_ENB | dataval, mdio_addr);
154                 mdio_delay();
155                 outl(MDIO_ENB | dataval | MDIO_SHIFT_CLK, mdio_addr);
156                 mdio_delay();
157         }
158         /* Clear out extra bits. */
159         for (i = 2; i > 0; i--) {
160                 outl(MDIO_ENB_IN, mdio_addr);
161                 mdio_delay();
162                 outl(MDIO_ENB_IN | MDIO_SHIFT_CLK, mdio_addr);
163                 mdio_delay();
164         }
165
166         spin_unlock_irqrestore(&tp->mii_lock, flags);
167 }
168
169
170 /* Set up the transceiver control registers for the selected media type. */
171 void tulip_select_media(struct net_device *dev, int startup)
172 {
173         long ioaddr = dev->base_addr;
174         struct tulip_private *tp = (struct tulip_private *)dev->priv;
175         struct mediatable *mtable = tp->mtable;
176         u32 new_csr6;
177         int i;
178
179         if (mtable) {
180                 struct medialeaf *mleaf = &mtable->mleaf[tp->cur_index];
181                 unsigned char *p = mleaf->leafdata;
182                 switch (mleaf->type) {
183                 case 0:                                 /* 21140 non-MII xcvr. */
184                         if (tulip_debug > 1)
185                                 printk(KERN_DEBUG "%s: Using a 21140 non-MII transceiver"
186                                            " with control setting %2.2x.\n",
187                                            dev->name, p[1]);
188                         dev->if_port = p[0];
189                         if (startup)
190                                 outl(mtable->csr12dir | 0x100, ioaddr + CSR12);
191                         outl(p[1], ioaddr + CSR12);
192                         new_csr6 = 0x02000000 | ((p[2] & 0x71) << 18);
193                         break;
194                 case 2: case 4: {
195                         u16 setup[5];
196                         u32 csr13val, csr14val, csr15dir, csr15val;
197                         for (i = 0; i < 5; i++)
198                                 setup[i] = get_u16(&p[i*2 + 1]);
199
200                         dev->if_port = p[0] & MEDIA_MASK;
201                         if (tulip_media_cap[dev->if_port] & MediaAlwaysFD)
202                                 tp->full_duplex = 1;
203
204                         if (startup && mtable->has_reset) {
205                                 struct medialeaf *rleaf = &mtable->mleaf[mtable->has_reset];
206                                 unsigned char *rst = rleaf->leafdata;
207                                 if (tulip_debug > 1)
208                                         printk(KERN_DEBUG "%s: Resetting the transceiver.\n",
209                                                    dev->name);
210                                 for (i = 0; i < rst[0]; i++)
211                                         outl(get_u16(rst + 1 + (i<<1)) << 16, ioaddr + CSR15);
212                         }
213                         if (tulip_debug > 1)
214                                 printk(KERN_DEBUG "%s: 21143 non-MII %s transceiver control "
215                                            "%4.4x/%4.4x.\n",
216                                            dev->name, medianame[dev->if_port], setup[0], setup[1]);
217                         if (p[0] & 0x40) {      /* SIA (CSR13-15) setup values are provided. */
218                                 csr13val = setup[0];
219                                 csr14val = setup[1];
220                                 csr15dir = (setup[3]<<16) | setup[2];
221                                 csr15val = (setup[4]<<16) | setup[2];
222                                 outl(0, ioaddr + CSR13);
223                                 outl(csr14val, ioaddr + CSR14);
224                                 outl(csr15dir, ioaddr + CSR15); /* Direction */
225                                 outl(csr15val, ioaddr + CSR15); /* Data */
226                                 outl(csr13val, ioaddr + CSR13);
227                         } else {
228                                 csr13val = 1;
229                                 csr14val = 0;
230                                 csr15dir = (setup[0]<<16) | 0x0008;
231                                 csr15val = (setup[1]<<16) | 0x0008;
232                                 if (dev->if_port <= 4)
233                                         csr14val = t21142_csr14[dev->if_port];
234                                 if (startup) {
235                                         outl(0, ioaddr + CSR13);
236                                         outl(csr14val, ioaddr + CSR14);
237                                 }
238                                 outl(csr15dir, ioaddr + CSR15); /* Direction */
239                                 outl(csr15val, ioaddr + CSR15); /* Data */
240                                 if (startup) outl(csr13val, ioaddr + CSR13);
241                         }
242                         if (tulip_debug > 1)
243                                 printk(KERN_DEBUG "%s:  Setting CSR15 to %8.8x/%8.8x.\n",
244                                            dev->name, csr15dir, csr15val);
245                         if (mleaf->type == 4)
246                                 new_csr6 = 0x82020000 | ((setup[2] & 0x71) << 18);
247                         else
248                                 new_csr6 = 0x82420000;
249                         break;
250                 }
251                 case 1: case 3: {
252                         int phy_num = p[0];
253                         int init_length = p[1];
254                         u16 *misc_info, tmp_info;
255
256                         dev->if_port = 11;
257                         new_csr6 = 0x020E0000;
258                         if (mleaf->type == 3) { /* 21142 */
259                                 u16 *init_sequence = (u16*)(p+2);
260                                 u16 *reset_sequence = &((u16*)(p+3))[init_length];
261                                 int reset_length = p[2 + init_length*2];
262                                 misc_info = reset_sequence + reset_length;
263                                 if (startup)
264                                         for (i = 0; i < reset_length; i++)
265                                                 outl(get_u16(&reset_sequence[i]) << 16, ioaddr + CSR15);
266                                 for (i = 0; i < init_length; i++)
267                                         outl(get_u16(&init_sequence[i]) << 16, ioaddr + CSR15);
268                         } else {
269                                 u8 *init_sequence = p + 2;
270                                 u8 *reset_sequence = p + 3 + init_length;
271                                 int reset_length = p[2 + init_length];
272                                 misc_info = (u16*)(reset_sequence + reset_length);
273                                 if (startup) {
274                                         outl(mtable->csr12dir | 0x100, ioaddr + CSR12);
275                                         for (i = 0; i < reset_length; i++)
276                                                 outl(reset_sequence[i], ioaddr + CSR12);
277                                 }
278                                 for (i = 0; i < init_length; i++)
279                                         outl(init_sequence[i], ioaddr + CSR12);
280                         }
281
282                         (void) inl(ioaddr + CSR6); /* flush CSR12 writes */
283                         udelay(500);            /* Give MII time to recover */
284
285                         tmp_info = get_u16(&misc_info[1]);
286                         if (tmp_info)
287                                 tp->advertising[phy_num] = tmp_info | 1;
288                         if (tmp_info && startup < 2) {
289                                 if (tp->mii_advertise == 0)
290                                         tp->mii_advertise = tp->advertising[phy_num];
291                                 if (tulip_debug > 1)
292                                         printk(KERN_DEBUG "%s:  Advertising %4.4x on MII %d.\n",
293                                                dev->name, tp->mii_advertise, tp->phys[phy_num]);
294                                 tulip_mdio_write(dev, tp->phys[phy_num], 4, tp->mii_advertise);
295                         }
296                         break;
297                 }
298                 case 5: case 6: {
299                         u16 setup[5];
300
301                         new_csr6 = 0; /* FIXME */
302
303                         for (i = 0; i < 5; i++)
304                                 setup[i] = get_u16(&p[i*2 + 1]);
305
306                         if (startup && mtable->has_reset) {
307                                 struct medialeaf *rleaf = &mtable->mleaf[mtable->has_reset];
308                                 unsigned char *rst = rleaf->leafdata;
309                                 if (tulip_debug > 1)
310                                         printk(KERN_DEBUG "%s: Resetting the transceiver.\n",
311                                                    dev->name);
312                                 for (i = 0; i < rst[0]; i++)
313                                         outl(get_u16(rst + 1 + (i<<1)) << 16, ioaddr + CSR15);
314                         }
315
316                         break;
317                 }
318                 default:
319                         printk(KERN_DEBUG "%s:  Invalid media table selection %d.\n",
320                                            dev->name, mleaf->type);
321                         new_csr6 = 0x020E0000;
322                 }
323                 if (tulip_debug > 1)
324                         printk(KERN_DEBUG "%s: Using media type %s, CSR12 is %2.2x.\n",
325                                    dev->name, medianame[dev->if_port],
326                                    inl(ioaddr + CSR12) & 0xff);
327         } else if (tp->chip_id == LC82C168) {
328                 if (startup && ! tp->medialock)
329                         dev->if_port = tp->mii_cnt ? 11 : 0;
330                 if (tulip_debug > 1)
331                         printk(KERN_DEBUG "%s: PNIC PHY status is %3.3x, media %s.\n",
332                                    dev->name, inl(ioaddr + 0xB8), medianame[dev->if_port]);
333                 if (tp->mii_cnt) {
334                         new_csr6 = 0x810C0000;
335                         outl(0x0001, ioaddr + CSR15);
336                         outl(0x0201B07A, ioaddr + 0xB8);
337                 } else if (startup) {
338                         /* Start with 10mbps to do autonegotiation. */
339                         outl(0x32, ioaddr + CSR12);
340                         new_csr6 = 0x00420000;
341                         outl(0x0001B078, ioaddr + 0xB8);
342                         outl(0x0201B078, ioaddr + 0xB8);
343                 } else if (dev->if_port == 3  ||  dev->if_port == 5) {
344                         outl(0x33, ioaddr + CSR12);
345                         new_csr6 = 0x01860000;
346                         /* Trigger autonegotiation. */
347                         outl(startup ? 0x0201F868 : 0x0001F868, ioaddr + 0xB8);
348                 } else {
349                         outl(0x32, ioaddr + CSR12);
350                         new_csr6 = 0x00420000;
351                         outl(0x1F078, ioaddr + 0xB8);
352                 }
353         } else {                                        /* Unknown chip type with no media table. */
354                 if (tp->default_port == 0)
355                         dev->if_port = tp->mii_cnt ? 11 : 3;
356                 if (tulip_media_cap[dev->if_port] & MediaIsMII) {
357                         new_csr6 = 0x020E0000;
358                 } else if (tulip_media_cap[dev->if_port] & MediaIsFx) {
359                         new_csr6 = 0x02860000;
360                 } else
361                         new_csr6 = 0x03860000;
362                 if (tulip_debug > 1)
363                         printk(KERN_DEBUG "%s: No media description table, assuming "
364                                    "%s transceiver, CSR12 %2.2x.\n",
365                                    dev->name, medianame[dev->if_port],
366                                    inl(ioaddr + CSR12));
367         }
368
369         tp->csr6 = new_csr6 | (tp->csr6 & 0xfdff) | (tp->full_duplex ? 0x0200 : 0);
370         return;
371 }
372
373 /*
374   Check the MII negotiated duplex and change the CSR6 setting if
375   required.
376   Return 0 if everything is OK.
377   Return < 0 if the transceiver is missing or has no link beat.
378   */
379 int tulip_check_duplex(struct net_device *dev)
380 {
381         struct tulip_private *tp = dev->priv;
382         unsigned int bmsr, lpa, negotiated, new_csr6;
383
384         bmsr = tulip_mdio_read(dev, tp->phys[0], MII_BMSR);
385         lpa = tulip_mdio_read(dev, tp->phys[0], MII_LPA);
386         if (tulip_debug > 1)
387                 printk(KERN_INFO "%s: MII status %4.4x, Link partner report "
388                            "%4.4x.\n", dev->name, bmsr, lpa);
389         if (bmsr == 0xffff)
390                 return -2;
391         if ((bmsr & BMSR_LSTATUS) == 0) {
392                 int new_bmsr = tulip_mdio_read(dev, tp->phys[0], MII_BMSR);
393                 if ((new_bmsr & BMSR_LSTATUS) == 0) {
394                         if (tulip_debug  > 1)
395                                 printk(KERN_INFO "%s: No link beat on the MII interface,"
396                                            " status %4.4x.\n", dev->name, new_bmsr);
397                         return -1;
398                 }
399         }
400         negotiated = lpa & tp->advertising[0];
401         tp->full_duplex = mii_duplex(tp->full_duplex_lock, negotiated);
402
403         new_csr6 = tp->csr6;
404
405         if (negotiated & LPA_100) new_csr6 &= ~TxThreshold;
406         else                      new_csr6 |= TxThreshold;
407         if (tp->full_duplex) new_csr6 |= FullDuplex;
408         else                 new_csr6 &= ~FullDuplex;
409
410         if (new_csr6 != tp->csr6) {
411                 tp->csr6 = new_csr6;
412                 tulip_restart_rxtx(tp);
413
414                 if (tulip_debug > 0)
415                         printk(KERN_INFO "%s: Setting %s-duplex based on MII"
416                                    "#%d link partner capability of %4.4x.\n",
417                                    dev->name, tp->full_duplex ? "full" : "half",
418                                    tp->phys[0], lpa);
419                 return 1;
420         }
421
422         return 0;
423 }
424
425 void __devinit tulip_find_mii (struct net_device *dev, int board_idx)
426 {
427         struct tulip_private *tp = dev->priv;
428         int phyn, phy_idx = 0;
429         int mii_reg0;
430         int mii_advert;
431         unsigned int to_advert, new_bmcr, ane_switch;
432
433         /* Find the connected MII xcvrs.
434            Doing this in open() would allow detecting external xcvrs later,
435            but takes much time. */
436         for (phyn = 1; phyn <= 32 && phy_idx < sizeof (tp->phys); phyn++) {
437                 int phy = phyn & 0x1f;
438                 int mii_status = tulip_mdio_read (dev, phy, MII_BMSR);
439                 if ((mii_status & 0x8301) == 0x8001 ||
440                     ((mii_status & BMSR_100BASE4) == 0
441                      && (mii_status & 0x7800) != 0)) {
442                         /* preserve Becker logic, gain indentation level */
443                 } else {
444                         continue;
445                 }
446
447                 mii_reg0 = tulip_mdio_read (dev, phy, MII_BMCR);
448                 mii_advert = tulip_mdio_read (dev, phy, MII_ADVERTISE);
449                 ane_switch = 0;
450
451                 /* if not advertising at all, gen an
452                  * advertising value from the capability
453                  * bits in BMSR
454                  */
455                 if ((mii_advert & ADVERTISE_ALL) == 0) {
456                         unsigned int tmpadv = tulip_mdio_read (dev, phy, MII_BMSR);
457                         mii_advert = ((tmpadv >> 6) & 0x3e0) | 1;
458                 }
459
460                 if (tp->mii_advertise) {
461                         tp->advertising[phy_idx] =
462                         to_advert = tp->mii_advertise;
463                 } else if (tp->advertising[phy_idx]) {
464                         to_advert = tp->advertising[phy_idx];
465                 } else {
466                         tp->advertising[phy_idx] =
467                         tp->mii_advertise =
468                         to_advert = mii_advert;
469                 }
470
471                 tp->phys[phy_idx++] = phy;
472
473                 printk (KERN_INFO "tulip%d:  MII transceiver #%d "
474                         "config %4.4x status %4.4x advertising %4.4x.\n",
475                         board_idx, phy, mii_reg0, mii_status, mii_advert);
476
477                 /* Fixup for DLink with miswired PHY. */
478                 if (mii_advert != to_advert) {
479                         printk (KERN_DEBUG "tulip%d:  Advertising %4.4x on PHY %d,"
480                                 " previously advertising %4.4x.\n",
481                                 board_idx, to_advert, phy, mii_advert);
482                         tulip_mdio_write (dev, phy, 4, to_advert);
483                 }
484
485                 /* Enable autonegotiation: some boards default to off. */
486                 if (tp->default_port == 0) {
487                         new_bmcr = mii_reg0 | BMCR_ANENABLE;
488                         if (new_bmcr != mii_reg0) {
489                                 new_bmcr |= BMCR_ANRESTART;
490                                 ane_switch = 1;
491                         }
492                 }
493                 /* ...or disable nway, if forcing media */
494                 else {
495                         new_bmcr = mii_reg0 & ~BMCR_ANENABLE;
496                         if (new_bmcr != mii_reg0)
497                                 ane_switch = 1;
498                 }
499
500                 /* clear out bits we never want at this point */
501                 new_bmcr &= ~(BMCR_CTST | BMCR_FULLDPLX | BMCR_ISOLATE |
502                               BMCR_PDOWN | BMCR_SPEED100 | BMCR_LOOPBACK |
503                               BMCR_RESET);
504
505                 if (tp->full_duplex)
506                         new_bmcr |= BMCR_FULLDPLX;
507                 if (tulip_media_cap[tp->default_port] & MediaIs100)
508                         new_bmcr |= BMCR_SPEED100;
509
510                 if (new_bmcr != mii_reg0) {
511                         /* some phys need the ANE switch to
512                          * happen before forced media settings
513                          * will "take."  However, we write the
514                          * same value twice in order not to
515                          * confuse the sane phys.
516                          */
517                         if (ane_switch) {
518                                 tulip_mdio_write (dev, phy, MII_BMCR, new_bmcr);
519                                 udelay (10);
520                         }
521                         tulip_mdio_write (dev, phy, MII_BMCR, new_bmcr);
522                 }
523         }
524         tp->mii_cnt = phy_idx;
525         if (tp->mtable && tp->mtable->has_mii && phy_idx == 0) {
526                 printk (KERN_INFO "tulip%d: ***WARNING***: No MII transceiver found!\n",
527                         board_idx);
528                 tp->phys[0] = 1;
529         }
530 }