Merge branch 'master' of git://git.denx.de/u-boot-x86
[platform/kernel/u-boot.git] / board / freescale / ls2080aqds / eth.c
1 /*
2  * Copyright 2015 Freescale Semiconductor, Inc.
3  *
4  * SPDX-License-Identifier:     GPL-2.0+
5  */
6
7 #include <common.h>
8 #include <netdev.h>
9 #include <asm/io.h>
10 #include <asm/arch/fsl_serdes.h>
11 #include <hwconfig.h>
12 #include <fsl_mdio.h>
13 #include <malloc.h>
14 #include <fm_eth.h>
15 #include <i2c.h>
16 #include <miiphy.h>
17 #include <fsl-mc/ldpaa_wriop.h>
18
19 #include "../common/qixis.h"
20
21 #include "ls2080aqds_qixis.h"
22
23 #define MC_BOOT_ENV_VAR "mcinitcmd"
24
25 #ifdef CONFIG_FSL_MC_ENET
26  /* - In LS2080A there are only 16 SERDES lanes, spread across 2 SERDES banks.
27  *   Bank 1 -> Lanes A, B, C, D, E, F, G, H
28  *   Bank 2 -> Lanes A,B, C, D, E, F, G, H
29  */
30
31  /* Mapping of 16 SERDES lanes to LS2080A QDS board slots. A value of '0' here
32   * means that the mapping must be determined dynamically, or that the lane
33   * maps to something other than a board slot.
34   */
35
36 static u8 lane_to_slot_fsm1[] = {
37         0, 0, 0, 0, 0, 0, 0, 0
38 };
39
40 static u8 lane_to_slot_fsm2[] = {
41         0, 0, 0, 0, 0, 0, 0, 0
42 };
43
44 /* On the Vitesse VSC8234XHG SGMII riser card there are 4 SGMII PHYs
45  * housed.
46  */
47
48 static int xqsgii_riser_phy_addr[] = {
49         XQSGMII_CARD_PHY1_PORT0_ADDR,
50         XQSGMII_CARD_PHY2_PORT0_ADDR,
51         XQSGMII_CARD_PHY3_PORT0_ADDR,
52         XQSGMII_CARD_PHY4_PORT0_ADDR,
53         XQSGMII_CARD_PHY3_PORT2_ADDR,
54         XQSGMII_CARD_PHY1_PORT2_ADDR,
55         XQSGMII_CARD_PHY4_PORT2_ADDR,
56         XQSGMII_CARD_PHY2_PORT2_ADDR,
57 };
58
59 static int sgmii_riser_phy_addr[] = {
60         SGMII_CARD_PORT1_PHY_ADDR,
61         SGMII_CARD_PORT2_PHY_ADDR,
62         SGMII_CARD_PORT3_PHY_ADDR,
63         SGMII_CARD_PORT4_PHY_ADDR,
64 };
65
66 /* Slot2 does not have EMI connections */
67 #define EMI_NONE        0xFFFFFFFF
68 #define EMI1_SLOT1      0
69 #define EMI1_SLOT2      1
70 #define EMI1_SLOT3      2
71 #define EMI1_SLOT4      3
72 #define EMI1_SLOT5      4
73 #define EMI1_SLOT6      5
74 #define EMI2            6
75 #define SFP_TX          0
76
77 static const char * const mdio_names[] = {
78         "LS2080A_QDS_MDIO0",
79         "LS2080A_QDS_MDIO1",
80         "LS2080A_QDS_MDIO2",
81         "LS2080A_QDS_MDIO3",
82         "LS2080A_QDS_MDIO4",
83         "LS2080A_QDS_MDIO5",
84         DEFAULT_WRIOP_MDIO2_NAME,
85 };
86
87 struct ls2080a_qds_mdio {
88         u8 muxval;
89         struct mii_dev *realbus;
90 };
91
92 static void sgmii_configure_repeater(int serdes_port)
93 {
94         struct mii_dev *bus;
95         uint8_t a = 0xf;
96         int i, j, ret;
97         int dpmac_id = 0, dpmac, mii_bus = 0;
98         unsigned short value;
99         char dev[2][20] = {"LS2080A_QDS_MDIO0", "LS2080A_QDS_MDIO3"};
100         uint8_t i2c_addr[] = {0x58, 0x59, 0x5a, 0x5b, 0x5c, 0x5d, 0x5f, 0x60};
101
102         uint8_t ch_a_eq[] = {0x1, 0x2, 0x3, 0x7};
103         uint8_t ch_a_ctl2[] = {0x81, 0x82, 0x83, 0x84};
104         uint8_t ch_b_eq[] = {0x1, 0x2, 0x3, 0x7};
105         uint8_t ch_b_ctl2[] = {0x81, 0x82, 0x83, 0x84};
106
107         int *riser_phy_addr = &xqsgii_riser_phy_addr[0];
108
109         /* Set I2c to Slot 1 */
110         i2c_write(0x77, 0, 0, &a, 1);
111
112         for (dpmac = 0; dpmac < 8; dpmac++) {
113                 /* Check the PHY status */
114                 switch (serdes_port) {
115                 case 1:
116                         mii_bus = 0;
117                         dpmac_id = dpmac + 1;
118                         break;
119                 case 2:
120                         mii_bus = 1;
121                         dpmac_id = dpmac + 9;
122                         a = 0xb;
123                         i2c_write(0x76, 0, 0, &a, 1);
124                         break;
125                 }
126
127                 ret = miiphy_set_current_dev(dev[mii_bus]);
128                 if (ret > 0)
129                         goto error;
130
131                 bus = mdio_get_current_dev();
132                 debug("Reading from bus %s\n", bus->name);
133
134                 ret = miiphy_write(dev[mii_bus], riser_phy_addr[dpmac], 0x1f,
135                                    3);
136                 if (ret > 0)
137                         goto error;
138
139                 mdelay(10);
140                 ret = miiphy_read(dev[mii_bus], riser_phy_addr[dpmac], 0x11,
141                                   &value);
142                 if (ret > 0)
143                         goto error;
144
145                 mdelay(10);
146
147                 if ((value & 0xfff) == 0x40f) {
148                         printf("DPMAC %d:PHY is ..... Configured\n", dpmac_id);
149                         continue;
150                 }
151
152                 for (i = 0; i < 4; i++) {
153                         for (j = 0; j < 4; j++) {
154                                 a = 0x18;
155                                 i2c_write(i2c_addr[dpmac], 6, 1, &a, 1);
156                                 a = 0x38;
157                                 i2c_write(i2c_addr[dpmac], 4, 1, &a, 1);
158                                 a = 0x4;
159                                 i2c_write(i2c_addr[dpmac], 8, 1, &a, 1);
160
161                                 i2c_write(i2c_addr[dpmac], 0xf, 1,
162                                           &ch_a_eq[i], 1);
163                                 i2c_write(i2c_addr[dpmac], 0x11, 1,
164                                           &ch_a_ctl2[j], 1);
165
166                                 i2c_write(i2c_addr[dpmac], 0x16, 1,
167                                           &ch_b_eq[i], 1);
168                                 i2c_write(i2c_addr[dpmac], 0x18, 1,
169                                           &ch_b_ctl2[j], 1);
170
171                                 a = 0x14;
172                                 i2c_write(i2c_addr[dpmac], 0x23, 1, &a, 1);
173                                 a = 0xb5;
174                                 i2c_write(i2c_addr[dpmac], 0x2d, 1, &a, 1);
175                                 a = 0x20;
176                                 i2c_write(i2c_addr[dpmac], 4, 1, &a, 1);
177                                 mdelay(100);
178                                 ret = miiphy_read(dev[mii_bus],
179                                                   riser_phy_addr[dpmac],
180                                                   0x11, &value);
181                                 if (ret > 0)
182                                         goto error;
183
184                                 mdelay(1);
185                                 ret = miiphy_read(dev[mii_bus],
186                                                   riser_phy_addr[dpmac],
187                                                   0x11, &value);
188                                 if (ret > 0)
189                                         goto error;
190                                 mdelay(10);
191
192                                 if ((value & 0xfff) == 0x40f) {
193                                         printf("DPMAC %d :PHY is configured ",
194                                                dpmac_id);
195                                         printf("after setting repeater 0x%x\n",
196                                                value);
197                                         i = 5;
198                                         j = 5;
199                                 } else
200                                         printf("DPMAC %d :PHY is failed to ",
201                                                dpmac_id);
202                                         printf("configure the repeater 0x%x\n",
203                                                value);
204                                 }
205                 }
206         }
207 error:
208         if (ret)
209                 printf("DPMAC %d ..... FAILED to configure PHY\n", dpmac_id);
210         return;
211 }
212
213 static void qsgmii_configure_repeater(int dpmac)
214 {
215         uint8_t a = 0xf;
216         int i, j;
217         int i2c_phy_addr = 0;
218         int phy_addr = 0;
219         int i2c_addr[] = {0x58, 0x59, 0x5a, 0x5b};
220
221         uint8_t ch_a_eq[] = {0x1, 0x2, 0x3, 0x7};
222         uint8_t ch_a_ctl2[] = {0x81, 0x82, 0x83, 0x84};
223         uint8_t ch_b_eq[] = {0x1, 0x2, 0x3, 0x7};
224         uint8_t ch_b_ctl2[] = {0x81, 0x82, 0x83, 0x84};
225
226         const char *dev = "LS2080A_QDS_MDIO0";
227         int ret = 0;
228         unsigned short value;
229
230         /* Set I2c to Slot 1 */
231         i2c_write(0x77, 0, 0, &a, 1);
232
233         switch (dpmac) {
234         case 1:
235         case 2:
236         case 3:
237         case 4:
238                 i2c_phy_addr = i2c_addr[0];
239                 phy_addr = 0;
240                 break;
241
242         case 5:
243         case 6:
244         case 7:
245         case 8:
246                 i2c_phy_addr = i2c_addr[1];
247                 phy_addr = 4;
248                 break;
249
250         case 9:
251         case 10:
252         case 11:
253         case 12:
254                 i2c_phy_addr = i2c_addr[2];
255                 phy_addr = 8;
256                 break;
257
258         case 13:
259         case 14:
260         case 15:
261         case 16:
262                 i2c_phy_addr = i2c_addr[3];
263                 phy_addr = 0xc;
264                 break;
265         }
266
267         /* Check the PHY status */
268         ret = miiphy_set_current_dev(dev);
269         ret = miiphy_write(dev, phy_addr, 0x1f, 3);
270         mdelay(10);
271         ret = miiphy_read(dev, phy_addr, 0x11, &value);
272         mdelay(10);
273         ret = miiphy_read(dev, phy_addr, 0x11, &value);
274         mdelay(10);
275         if ((value & 0xf) == 0xf) {
276                 printf("DPMAC %d :PHY is ..... Configured\n", dpmac);
277                 return;
278         }
279
280         for (i = 0; i < 4; i++) {
281                 for (j = 0; j < 4; j++) {
282                         a = 0x18;
283                         i2c_write(i2c_phy_addr, 6, 1, &a, 1);
284                         a = 0x38;
285                         i2c_write(i2c_phy_addr, 4, 1, &a, 1);
286                         a = 0x4;
287                         i2c_write(i2c_phy_addr, 8, 1, &a, 1);
288
289                         i2c_write(i2c_phy_addr, 0xf, 1, &ch_a_eq[i], 1);
290                         i2c_write(i2c_phy_addr, 0x11, 1, &ch_a_ctl2[j], 1);
291
292                         i2c_write(i2c_phy_addr, 0x16, 1, &ch_b_eq[i], 1);
293                         i2c_write(i2c_phy_addr, 0x18, 1, &ch_b_ctl2[j], 1);
294
295                         a = 0x14;
296                         i2c_write(i2c_phy_addr, 0x23, 1, &a, 1);
297                         a = 0xb5;
298                         i2c_write(i2c_phy_addr, 0x2d, 1, &a, 1);
299                         a = 0x20;
300                         i2c_write(i2c_phy_addr, 4, 1, &a, 1);
301                         mdelay(100);
302                         ret = miiphy_read(dev, phy_addr, 0x11, &value);
303                         if (ret > 0)
304                                 goto error;
305                         mdelay(1);
306                         ret = miiphy_read(dev, phy_addr, 0x11, &value);
307                         if (ret > 0)
308                                 goto error;
309                         mdelay(10);
310                         if ((value & 0xf) == 0xf) {
311                                 printf("DPMAC %d :PHY is ..... Configured\n",
312                                        dpmac);
313                                 return;
314                         }
315                 }
316         }
317 error:
318         printf("DPMAC %d :PHY ..... FAILED to configure PHY\n", dpmac);
319         return;
320 }
321
322 static const char *ls2080a_qds_mdio_name_for_muxval(u8 muxval)
323 {
324         return mdio_names[muxval];
325 }
326
327 struct mii_dev *mii_dev_for_muxval(u8 muxval)
328 {
329         struct mii_dev *bus;
330         const char *name = ls2080a_qds_mdio_name_for_muxval(muxval);
331
332         if (!name) {
333                 printf("No bus for muxval %x\n", muxval);
334                 return NULL;
335         }
336
337         bus = miiphy_get_dev_by_name(name);
338
339         if (!bus) {
340                 printf("No bus by name %s\n", name);
341                 return NULL;
342         }
343
344         return bus;
345 }
346
347 static void ls2080a_qds_enable_SFP_TX(u8 muxval)
348 {
349         u8 brdcfg9;
350
351         brdcfg9 = QIXIS_READ(brdcfg[9]);
352         brdcfg9 &= ~BRDCFG9_SFPTX_MASK;
353         brdcfg9 |= (muxval << BRDCFG9_SFPTX_SHIFT);
354         QIXIS_WRITE(brdcfg[9], brdcfg9);
355 }
356
357 static void ls2080a_qds_mux_mdio(u8 muxval)
358 {
359         u8 brdcfg4;
360
361         if (muxval <= 5) {
362                 brdcfg4 = QIXIS_READ(brdcfg[4]);
363                 brdcfg4 &= ~BRDCFG4_EMISEL_MASK;
364                 brdcfg4 |= (muxval << BRDCFG4_EMISEL_SHIFT);
365                 QIXIS_WRITE(brdcfg[4], brdcfg4);
366         }
367 }
368
369 static int ls2080a_qds_mdio_read(struct mii_dev *bus, int addr,
370                                  int devad, int regnum)
371 {
372         struct ls2080a_qds_mdio *priv = bus->priv;
373
374         ls2080a_qds_mux_mdio(priv->muxval);
375
376         return priv->realbus->read(priv->realbus, addr, devad, regnum);
377 }
378
379 static int ls2080a_qds_mdio_write(struct mii_dev *bus, int addr, int devad,
380                                   int regnum, u16 value)
381 {
382         struct ls2080a_qds_mdio *priv = bus->priv;
383
384         ls2080a_qds_mux_mdio(priv->muxval);
385
386         return priv->realbus->write(priv->realbus, addr, devad, regnum, value);
387 }
388
389 static int ls2080a_qds_mdio_reset(struct mii_dev *bus)
390 {
391         struct ls2080a_qds_mdio *priv = bus->priv;
392
393         return priv->realbus->reset(priv->realbus);
394 }
395
396 static int ls2080a_qds_mdio_init(char *realbusname, u8 muxval)
397 {
398         struct ls2080a_qds_mdio *pmdio;
399         struct mii_dev *bus = mdio_alloc();
400
401         if (!bus) {
402                 printf("Failed to allocate ls2080a_qds MDIO bus\n");
403                 return -1;
404         }
405
406         pmdio = malloc(sizeof(*pmdio));
407         if (!pmdio) {
408                 printf("Failed to allocate ls2080a_qds private data\n");
409                 free(bus);
410                 return -1;
411         }
412
413         bus->read = ls2080a_qds_mdio_read;
414         bus->write = ls2080a_qds_mdio_write;
415         bus->reset = ls2080a_qds_mdio_reset;
416         strcpy(bus->name, ls2080a_qds_mdio_name_for_muxval(muxval));
417
418         pmdio->realbus = miiphy_get_dev_by_name(realbusname);
419
420         if (!pmdio->realbus) {
421                 printf("No bus with name %s\n", realbusname);
422                 free(bus);
423                 free(pmdio);
424                 return -1;
425         }
426
427         pmdio->muxval = muxval;
428         bus->priv = pmdio;
429
430         return mdio_register(bus);
431 }
432
433 /*
434  * Initialize the dpmac_info array.
435  *
436  */
437 static void initialize_dpmac_to_slot(void)
438 {
439         struct ccsr_gur __iomem *gur = (void *)CONFIG_SYS_FSL_GUTS_ADDR;
440         int serdes1_prtcl = (in_le32(&gur->rcwsr[28]) &
441                                 FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_MASK)
442                 >> FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_SHIFT;
443         int serdes2_prtcl = (in_le32(&gur->rcwsr[28]) &
444                                 FSL_CHASSIS3_RCWSR28_SRDS2_PRTCL_MASK)
445                 >> FSL_CHASSIS3_RCWSR28_SRDS2_PRTCL_SHIFT;
446
447         char *env_hwconfig;
448         env_hwconfig = getenv("hwconfig");
449
450         switch (serdes1_prtcl) {
451         case 0x07:
452         case 0x09:
453         case 0x33:
454                 printf("qds: WRIOP: Supported SerDes1 Protocol 0x%02x\n",
455                        serdes1_prtcl);
456                 lane_to_slot_fsm1[0] = EMI1_SLOT1;
457                 lane_to_slot_fsm1[1] = EMI1_SLOT1;
458                 lane_to_slot_fsm1[2] = EMI1_SLOT1;
459                 lane_to_slot_fsm1[3] = EMI1_SLOT1;
460                 if (hwconfig_f("xqsgmii", env_hwconfig)) {
461                         lane_to_slot_fsm1[4] = EMI1_SLOT1;
462                         lane_to_slot_fsm1[5] = EMI1_SLOT1;
463                         lane_to_slot_fsm1[6] = EMI1_SLOT1;
464                         lane_to_slot_fsm1[7] = EMI1_SLOT1;
465                 } else {
466                         lane_to_slot_fsm1[4] = EMI1_SLOT2;
467                         lane_to_slot_fsm1[5] = EMI1_SLOT2;
468                         lane_to_slot_fsm1[6] = EMI1_SLOT2;
469                         lane_to_slot_fsm1[7] = EMI1_SLOT2;
470                 }
471                 break;
472
473         case 0x2A:
474                 printf("qds: WRIOP: Supported SerDes1 Protocol 0x%02x\n",
475                        serdes1_prtcl);
476                 break;
477         default:
478                 printf("%s qds: WRIOP: Unsupported SerDes1 Protocol 0x%02x\n",
479                        __func__, serdes1_prtcl);
480                 break;
481         }
482
483         switch (serdes2_prtcl) {
484         case 0x07:
485         case 0x08:
486         case 0x09:
487         case 0x49:
488                 printf("qds: WRIOP: Supported SerDes2 Protocol 0x%02x\n",
489                        serdes2_prtcl);
490                 lane_to_slot_fsm2[0] = EMI1_SLOT4;
491                 lane_to_slot_fsm2[1] = EMI1_SLOT4;
492                 lane_to_slot_fsm2[2] = EMI1_SLOT4;
493                 lane_to_slot_fsm2[3] = EMI1_SLOT4;
494
495                 if (hwconfig_f("xqsgmii", env_hwconfig)) {
496                         lane_to_slot_fsm2[4] = EMI1_SLOT4;
497                         lane_to_slot_fsm2[5] = EMI1_SLOT4;
498                         lane_to_slot_fsm2[6] = EMI1_SLOT4;
499                         lane_to_slot_fsm2[7] = EMI1_SLOT4;
500                 } else {
501                         /* No MDIO physical connection */
502                         lane_to_slot_fsm2[4] = EMI1_SLOT6;
503                         lane_to_slot_fsm2[5] = EMI1_SLOT6;
504                         lane_to_slot_fsm2[6] = EMI1_SLOT6;
505                         lane_to_slot_fsm2[7] = EMI1_SLOT6;
506                 }
507                 break;
508         default:
509                 printf(" %s qds: WRIOP: Unsupported SerDes2 Protocol 0x%02x\n",
510                        __func__ , serdes2_prtcl);
511                 break;
512         }
513 }
514
515 void ls2080a_handle_phy_interface_sgmii(int dpmac_id)
516 {
517         int lane, slot;
518         struct mii_dev *bus;
519         struct ccsr_gur __iomem *gur = (void *)CONFIG_SYS_FSL_GUTS_ADDR;
520         int serdes1_prtcl = (in_le32(&gur->rcwsr[28]) &
521                                 FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_MASK)
522                 >> FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_SHIFT;
523         int serdes2_prtcl = (in_le32(&gur->rcwsr[28]) &
524                                 FSL_CHASSIS3_RCWSR28_SRDS2_PRTCL_MASK)
525                 >> FSL_CHASSIS3_RCWSR28_SRDS2_PRTCL_SHIFT;
526
527         int *riser_phy_addr;
528         char *env_hwconfig = getenv("hwconfig");
529
530         if (hwconfig_f("xqsgmii", env_hwconfig))
531                 riser_phy_addr = &xqsgii_riser_phy_addr[0];
532         else
533                 riser_phy_addr = &sgmii_riser_phy_addr[0];
534
535         if (dpmac_id > WRIOP1_DPMAC9)
536                 goto serdes2;
537
538         switch (serdes1_prtcl) {
539         case 0x07:
540
541                 lane = serdes_get_first_lane(FSL_SRDS_1, SGMII1 + dpmac_id);
542                 slot = lane_to_slot_fsm1[lane];
543
544                 switch (++slot) {
545                 case 1:
546                         /* Slot housing a SGMII riser card? */
547                         wriop_set_phy_address(dpmac_id,
548                                               riser_phy_addr[dpmac_id - 1]);
549                         dpmac_info[dpmac_id].board_mux = EMI1_SLOT1;
550                         bus = mii_dev_for_muxval(EMI1_SLOT1);
551                         wriop_set_mdio(dpmac_id, bus);
552                         break;
553                 case 2:
554                         /* Slot housing a SGMII riser card? */
555                         wriop_set_phy_address(dpmac_id,
556                                               riser_phy_addr[dpmac_id - 1]);
557                         dpmac_info[dpmac_id].board_mux = EMI1_SLOT2;
558                         bus = mii_dev_for_muxval(EMI1_SLOT2);
559                         wriop_set_mdio(dpmac_id, bus);
560                         break;
561                 case 3:
562                         break;
563                 case 4:
564                         break;
565                 case 5:
566                         break;
567                 case 6:
568                         break;
569                 }
570         break;
571         default:
572                 printf("%s qds: WRIOP: Unsupported SerDes1 Protocol 0x%02x\n",
573                        __func__ , serdes1_prtcl);
574         break;
575         }
576
577 serdes2:
578         switch (serdes2_prtcl) {
579         case 0x07:
580         case 0x08:
581         case 0x49:
582                 lane = serdes_get_first_lane(FSL_SRDS_2, SGMII9 +
583                                                         (dpmac_id - 9));
584                 slot = lane_to_slot_fsm2[lane];
585
586                 switch (++slot) {
587                 case 1:
588                         break;
589                 case 3:
590                         break;
591                 case 4:
592                         /* Slot housing a SGMII riser card? */
593                         wriop_set_phy_address(dpmac_id,
594                                               riser_phy_addr[dpmac_id - 9]);
595                         dpmac_info[dpmac_id].board_mux = EMI1_SLOT4;
596                         bus = mii_dev_for_muxval(EMI1_SLOT4);
597                         wriop_set_mdio(dpmac_id, bus);
598                 break;
599                 case 5:
600                 break;
601                 case 6:
602                         /* Slot housing a SGMII riser card? */
603                         wriop_set_phy_address(dpmac_id,
604                                               riser_phy_addr[dpmac_id - 13]);
605                         dpmac_info[dpmac_id].board_mux = EMI1_SLOT6;
606                         bus = mii_dev_for_muxval(EMI1_SLOT6);
607                         wriop_set_mdio(dpmac_id, bus);
608                 break;
609         }
610         break;
611         default:
612                 printf("%s qds: WRIOP: Unsupported SerDes2 Protocol 0x%02x\n",
613                        __func__, serdes2_prtcl);
614         break;
615         }
616 }
617
618 void ls2080a_handle_phy_interface_qsgmii(int dpmac_id)
619 {
620         int lane = 0, slot;
621         struct mii_dev *bus;
622         struct ccsr_gur __iomem *gur = (void *)CONFIG_SYS_FSL_GUTS_ADDR;
623         int serdes1_prtcl = (in_le32(&gur->rcwsr[28]) &
624                                 FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_MASK)
625                 >> FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_SHIFT;
626
627         switch (serdes1_prtcl) {
628         case 0x33:
629                 switch (dpmac_id) {
630                 case 1:
631                 case 2:
632                 case 3:
633                 case 4:
634                         lane = serdes_get_first_lane(FSL_SRDS_1, QSGMII_A);
635                 break;
636                 case 5:
637                 case 6:
638                 case 7:
639                 case 8:
640                         lane = serdes_get_first_lane(FSL_SRDS_1, QSGMII_B);
641                 break;
642                 case 9:
643                 case 10:
644                 case 11:
645                 case 12:
646                         lane = serdes_get_first_lane(FSL_SRDS_1, QSGMII_C);
647                 break;
648                 case 13:
649                 case 14:
650                 case 15:
651                 case 16:
652                         lane = serdes_get_first_lane(FSL_SRDS_1, QSGMII_D);
653                 break;
654         }
655
656                 slot = lane_to_slot_fsm1[lane];
657
658                 switch (++slot) {
659                 case 1:
660                         /* Slot housing a QSGMII riser card? */
661                         wriop_set_phy_address(dpmac_id, dpmac_id - 1);
662                         dpmac_info[dpmac_id].board_mux = EMI1_SLOT1;
663                         bus = mii_dev_for_muxval(EMI1_SLOT1);
664                         wriop_set_mdio(dpmac_id, bus);
665                         break;
666                 case 3:
667                         break;
668                 case 4:
669                         break;
670                 case 5:
671                 break;
672                 case 6:
673                         break;
674         }
675         break;
676         default:
677                 printf("qds: WRIOP: Unsupported SerDes Protocol 0x%02x\n",
678                        serdes1_prtcl);
679         break;
680         }
681
682         qsgmii_configure_repeater(dpmac_id);
683 }
684
685 void ls2080a_handle_phy_interface_xsgmii(int i)
686 {
687         struct ccsr_gur __iomem *gur = (void *)CONFIG_SYS_FSL_GUTS_ADDR;
688         int serdes1_prtcl = (in_le32(&gur->rcwsr[28]) &
689                                 FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_MASK)
690                 >> FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_SHIFT;
691
692         switch (serdes1_prtcl) {
693         case 0x2A:
694                 /*
695                  * XFI does not need a PHY to work, but to avoid U-Boot use
696                  * default PHY address which is zero to a MAC when it found
697                  * a MAC has no PHY address, we give a PHY address to XFI
698                  * MAC, and should not use a real XAUI PHY address, since
699                  * MDIO can access it successfully, and then MDIO thinks
700                  * the XAUI card is used for the XFI MAC, which will cause
701                  * error.
702                  */
703                 wriop_set_phy_address(i, i + 4);
704                 ls2080a_qds_enable_SFP_TX(SFP_TX);
705
706                 break;
707         default:
708                 printf("qds: WRIOP: Unsupported SerDes Protocol 0x%02x\n",
709                        serdes1_prtcl);
710                 break;
711         }
712 }
713 #endif
714
715 int board_eth_init(bd_t *bis)
716 {
717         int error;
718         char *mc_boot_env_var;
719 #ifdef CONFIG_FSL_MC_ENET
720         struct ccsr_gur __iomem *gur = (void *)CONFIG_SYS_FSL_GUTS_ADDR;
721         int serdes1_prtcl = (in_le32(&gur->rcwsr[28]) &
722                                 FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_MASK)
723                 >> FSL_CHASSIS3_RCWSR28_SRDS1_PRTCL_SHIFT;
724         int serdes2_prtcl = (in_le32(&gur->rcwsr[28]) &
725                                 FSL_CHASSIS3_RCWSR28_SRDS2_PRTCL_MASK)
726                 >> FSL_CHASSIS3_RCWSR28_SRDS2_PRTCL_SHIFT;
727
728         struct memac_mdio_info *memac_mdio0_info;
729         struct memac_mdio_info *memac_mdio1_info;
730         unsigned int i;
731         char *env_hwconfig;
732
733         env_hwconfig = getenv("hwconfig");
734
735         initialize_dpmac_to_slot();
736
737         memac_mdio0_info = (struct memac_mdio_info *)malloc(
738                                         sizeof(struct memac_mdio_info));
739         memac_mdio0_info->regs =
740                 (struct memac_mdio_controller *)
741                                         CONFIG_SYS_FSL_WRIOP1_MDIO1;
742         memac_mdio0_info->name = DEFAULT_WRIOP_MDIO1_NAME;
743
744         /* Register the real MDIO1 bus */
745         fm_memac_mdio_init(bis, memac_mdio0_info);
746
747         memac_mdio1_info = (struct memac_mdio_info *)malloc(
748                                         sizeof(struct memac_mdio_info));
749         memac_mdio1_info->regs =
750                 (struct memac_mdio_controller *)
751                                         CONFIG_SYS_FSL_WRIOP1_MDIO2;
752         memac_mdio1_info->name = DEFAULT_WRIOP_MDIO2_NAME;
753
754         /* Register the real MDIO2 bus */
755         fm_memac_mdio_init(bis, memac_mdio1_info);
756
757         /* Register the muxing front-ends to the MDIO buses */
758         ls2080a_qds_mdio_init(DEFAULT_WRIOP_MDIO1_NAME, EMI1_SLOT1);
759         ls2080a_qds_mdio_init(DEFAULT_WRIOP_MDIO1_NAME, EMI1_SLOT2);
760         ls2080a_qds_mdio_init(DEFAULT_WRIOP_MDIO1_NAME, EMI1_SLOT3);
761         ls2080a_qds_mdio_init(DEFAULT_WRIOP_MDIO1_NAME, EMI1_SLOT4);
762         ls2080a_qds_mdio_init(DEFAULT_WRIOP_MDIO1_NAME, EMI1_SLOT5);
763         ls2080a_qds_mdio_init(DEFAULT_WRIOP_MDIO1_NAME, EMI1_SLOT6);
764
765         ls2080a_qds_mdio_init(DEFAULT_WRIOP_MDIO2_NAME, EMI2);
766
767         for (i = WRIOP1_DPMAC1; i < NUM_WRIOP_PORTS; i++) {
768                 switch (wriop_get_enet_if(i)) {
769                 case PHY_INTERFACE_MODE_QSGMII:
770                         ls2080a_handle_phy_interface_qsgmii(i);
771                         break;
772                 case PHY_INTERFACE_MODE_SGMII:
773                         ls2080a_handle_phy_interface_sgmii(i);
774                         break;
775                 case PHY_INTERFACE_MODE_XGMII:
776                         ls2080a_handle_phy_interface_xsgmii(i);
777                         break;
778                 default:
779                         break;
780
781                 if (i == 16)
782                         i = NUM_WRIOP_PORTS;
783                 }
784         }
785
786         mc_boot_env_var = getenv(MC_BOOT_ENV_VAR);
787         if (mc_boot_env_var)
788                 run_command_list(mc_boot_env_var, -1, 0);
789         error = cpu_eth_init(bis);
790
791         if (hwconfig_f("xqsgmii", env_hwconfig)) {
792                 if (serdes1_prtcl == 0x7)
793                         sgmii_configure_repeater(1);
794                 if (serdes2_prtcl == 0x7 || serdes2_prtcl == 0x8 ||
795                     serdes2_prtcl == 0x49)
796                         sgmii_configure_repeater(2);
797         }
798 #endif
799         error = pci_eth_init(bis);
800         return error;
801 }
802
803 #ifdef CONFIG_FSL_MC_ENET
804
805 #endif