1 // SPDX-License-Identifier: GPL-2.0
2 /* Driver for the Texas Instruments DP83822, DP83825 and DP83826 PHYs.
3 *
4 * Copyright (C) 2017 Texas Instruments Inc.
5 */
6
7 #include <linux/ethtool.h>
8 #include <linux/etherdevice.h>
9 #include <linux/kernel.h>
10 #include <linux/mii.h>
11 #include <linux/module.h>
12 #include <linux/of.h>
13 #include <linux/phy.h>
14 #include <linux/netdevice.h>
15 #include <linux/bitfield.h>
16
17 #define DP83822_PHY_ID 0x2000a240
18 #define DP83825S_PHY_ID 0x2000a140
19 #define DP83825I_PHY_ID 0x2000a150
20 #define DP83825CM_PHY_ID 0x2000a160
21 #define DP83825CS_PHY_ID 0x2000a170
22 #define DP83826C_PHY_ID 0x2000a130
23 #define DP83826NC_PHY_ID 0x2000a110
24
25 #define DP83822_DEVADDR 0x1f
26
27 #define MII_DP83822_CTRL_2 0x0a
28 #define MII_DP83822_PHYSTS 0x10
29 #define MII_DP83822_PHYSCR 0x11
30 #define MII_DP83822_MISR1 0x12
31 #define MII_DP83822_MISR2 0x13
32 #define MII_DP83822_FCSCR 0x14
33 #define MII_DP83822_RCSR 0x17
34 #define MII_DP83822_RESET_CTRL 0x1f
35 #define MII_DP83822_GENCFG 0x465
36 #define MII_DP83822_SOR1 0x467
37
38 /* DP83826 specific registers */
39 #define MII_DP83826_VOD_CFG1 0x30b
40 #define MII_DP83826_VOD_CFG2 0x30c
41
42 /* GENCFG */
43 #define DP83822_SIG_DET_LOW BIT(0)
44
45 /* Control Register 2 bits */
46 #define DP83822_FX_ENABLE BIT(14)
47
48 #define DP83822_SW_RESET BIT(15)
49 #define DP83822_DIG_RESTART BIT(14)
50
51 /* PHY STS bits */
52 #define DP83822_PHYSTS_DUPLEX BIT(2)
53 #define DP83822_PHYSTS_10 BIT(1)
54 #define DP83822_PHYSTS_LINK BIT(0)
55
56 /* PHYSCR Register Fields */
57 #define DP83822_PHYSCR_INT_OE BIT(0) /* Interrupt Output Enable */
58 #define DP83822_PHYSCR_INTEN BIT(1) /* Interrupt Enable */
59
60 /* MISR1 bits */
61 #define DP83822_RX_ERR_HF_INT_EN BIT(0)
62 #define DP83822_FALSE_CARRIER_HF_INT_EN BIT(1)
63 #define DP83822_ANEG_COMPLETE_INT_EN BIT(2)
64 #define DP83822_DUP_MODE_CHANGE_INT_EN BIT(3)
65 #define DP83822_SPEED_CHANGED_INT_EN BIT(4)
66 #define DP83822_LINK_STAT_INT_EN BIT(5)
67 #define DP83822_ENERGY_DET_INT_EN BIT(6)
68 #define DP83822_LINK_QUAL_INT_EN BIT(7)
69
70 /* MISR2 bits */
71 #define DP83822_JABBER_DET_INT_EN BIT(0)
72 #define DP83822_WOL_PKT_INT_EN BIT(1)
73 #define DP83822_SLEEP_MODE_INT_EN BIT(2)
74 #define DP83822_MDI_XOVER_INT_EN BIT(3)
75 #define DP83822_LB_FIFO_INT_EN BIT(4)
76 #define DP83822_PAGE_RX_INT_EN BIT(5)
77 #define DP83822_ANEG_ERR_INT_EN BIT(6)
78 #define DP83822_EEE_ERROR_CHANGE_INT_EN BIT(7)
79
80 /* INT_STAT1 bits */
81 #define DP83822_WOL_INT_EN BIT(4)
82 #define DP83822_WOL_INT_STAT BIT(12)
83
84 #define MII_DP83822_RXSOP1 0x04a5
85 #define MII_DP83822_RXSOP2 0x04a6
86 #define MII_DP83822_RXSOP3 0x04a7
87
88 /* WoL Registers */
89 #define MII_DP83822_WOL_CFG 0x04a0
90 #define MII_DP83822_WOL_STAT 0x04a1
91 #define MII_DP83822_WOL_DA1 0x04a2
92 #define MII_DP83822_WOL_DA2 0x04a3
93 #define MII_DP83822_WOL_DA3 0x04a4
94
95 /* WoL bits */
96 #define DP83822_WOL_MAGIC_EN BIT(0)
97 #define DP83822_WOL_SECURE_ON BIT(5)
98 #define DP83822_WOL_EN BIT(7)
99 #define DP83822_WOL_INDICATION_SEL BIT(8)
100 #define DP83822_WOL_CLR_INDICATION BIT(11)
101
102 /* RCSR bits */
103 #define DP83822_RMII_MODE_EN BIT(5)
104 #define DP83822_RMII_MODE_SEL BIT(7)
105 #define DP83822_RGMII_MODE_EN BIT(9)
106 #define DP83822_RX_CLK_SHIFT BIT(12)
107 #define DP83822_TX_CLK_SHIFT BIT(11)
108
109 /* SOR1 mode */
110 #define DP83822_STRAP_MODE1 0
111 #define DP83822_STRAP_MODE2 BIT(0)
112 #define DP83822_STRAP_MODE3 BIT(1)
113 #define DP83822_STRAP_MODE4 GENMASK(1, 0)
114
115 #define DP83822_COL_STRAP_MASK GENMASK(11, 10)
116 #define DP83822_COL_SHIFT 10
117 #define DP83822_RX_ER_STR_MASK GENMASK(9, 8)
118 #define DP83822_RX_ER_SHIFT 8
119
120 /* DP83826: VOD_CFG1 & VOD_CFG2 */
121 #define DP83826_VOD_CFG1_MINUS_MDIX_MASK GENMASK(13, 12)
122 #define DP83826_VOD_CFG1_MINUS_MDI_MASK GENMASK(11, 6)
123 #define DP83826_VOD_CFG2_MINUS_MDIX_MASK GENMASK(15, 12)
124 #define DP83826_VOD_CFG2_PLUS_MDIX_MASK GENMASK(11, 6)
125 #define DP83826_VOD_CFG2_PLUS_MDI_MASK GENMASK(5, 0)
126 #define DP83826_CFG_DAC_MINUS_MDIX_5_TO_4 GENMASK(5, 4)
127 #define DP83826_CFG_DAC_MINUS_MDIX_3_TO_0 GENMASK(3, 0)
128 #define DP83826_CFG_DAC_PERCENT_PER_STEP 625
129 #define DP83826_CFG_DAC_PERCENT_DEFAULT 10000
130 #define DP83826_CFG_DAC_MINUS_DEFAULT 0x30
131 #define DP83826_CFG_DAC_PLUS_DEFAULT 0x10
132
133 #define MII_DP83822_FIBER_ADVERTISE (ADVERTISED_TP | ADVERTISED_MII | \
134 ADVERTISED_FIBRE | \
135 ADVERTISED_Pause | ADVERTISED_Asym_Pause)
136
137 struct dp83822_private {
138 bool fx_signal_det_low;
139 int fx_enabled;
140 u16 fx_sd_enable;
141 u8 cfg_dac_minus;
142 u8 cfg_dac_plus;
143 struct ethtool_wolinfo wol;
144 };
145
dp83822_config_wol(struct phy_device * phydev,struct ethtool_wolinfo * wol)146 static int dp83822_config_wol(struct phy_device *phydev,
147 struct ethtool_wolinfo *wol)
148 {
149 struct net_device *ndev = phydev->attached_dev;
150 u16 value;
151 const u8 *mac;
152
153 if (wol->wolopts & (WAKE_MAGIC | WAKE_MAGICSECURE)) {
154 mac = (const u8 *)ndev->dev_addr;
155
156 if (!is_valid_ether_addr(mac))
157 return -EINVAL;
158
159 /* MAC addresses start with byte 5, but stored in mac[0].
160 * 822 PHYs store bytes 4|5, 2|3, 0|1
161 */
162 phy_write_mmd(phydev, DP83822_DEVADDR, MII_DP83822_WOL_DA1,
163 (mac[1] << 8) | mac[0]);
164 phy_write_mmd(phydev, DP83822_DEVADDR, MII_DP83822_WOL_DA2,
165 (mac[3] << 8) | mac[2]);
166 phy_write_mmd(phydev, DP83822_DEVADDR, MII_DP83822_WOL_DA3,
167 (mac[5] << 8) | mac[4]);
168
169 value = phy_read_mmd(phydev, DP83822_DEVADDR,
170 MII_DP83822_WOL_CFG);
171 if (wol->wolopts & WAKE_MAGIC)
172 value |= DP83822_WOL_MAGIC_EN;
173 else
174 value &= ~DP83822_WOL_MAGIC_EN;
175
176 if (wol->wolopts & WAKE_MAGICSECURE) {
177 phy_write_mmd(phydev, DP83822_DEVADDR,
178 MII_DP83822_RXSOP1,
179 (wol->sopass[1] << 8) | wol->sopass[0]);
180 phy_write_mmd(phydev, DP83822_DEVADDR,
181 MII_DP83822_RXSOP2,
182 (wol->sopass[3] << 8) | wol->sopass[2]);
183 phy_write_mmd(phydev, DP83822_DEVADDR,
184 MII_DP83822_RXSOP3,
185 (wol->sopass[5] << 8) | wol->sopass[4]);
186 value |= DP83822_WOL_SECURE_ON;
187 } else {
188 value &= ~DP83822_WOL_SECURE_ON;
189 }
190
191 /* Clear any pending WoL interrupt */
192 phy_read(phydev, MII_DP83822_MISR2);
193
194 value |= DP83822_WOL_EN | DP83822_WOL_INDICATION_SEL |
195 DP83822_WOL_CLR_INDICATION;
196
197 return phy_write_mmd(phydev, DP83822_DEVADDR,
198 MII_DP83822_WOL_CFG, value);
199 } else {
200 return phy_clear_bits_mmd(phydev, DP83822_DEVADDR,
201 MII_DP83822_WOL_CFG,
202 DP83822_WOL_EN |
203 DP83822_WOL_MAGIC_EN |
204 DP83822_WOL_SECURE_ON);
205 }
206 }
207
dp83822_set_wol(struct phy_device * phydev,struct ethtool_wolinfo * wol)208 static int dp83822_set_wol(struct phy_device *phydev,
209 struct ethtool_wolinfo *wol)
210 {
211 struct dp83822_private *dp83822 = phydev->priv;
212 int ret;
213
214 ret = dp83822_config_wol(phydev, wol);
215 if (!ret)
216 memcpy(&dp83822->wol, wol, sizeof(*wol));
217 return ret;
218 }
219
dp83822_get_wol(struct phy_device * phydev,struct ethtool_wolinfo * wol)220 static void dp83822_get_wol(struct phy_device *phydev,
221 struct ethtool_wolinfo *wol)
222 {
223 int value;
224 u16 sopass_val;
225
226 wol->supported = (WAKE_MAGIC | WAKE_MAGICSECURE);
227 wol->wolopts = 0;
228
229 value = phy_read_mmd(phydev, DP83822_DEVADDR, MII_DP83822_WOL_CFG);
230
231 if (value & DP83822_WOL_MAGIC_EN)
232 wol->wolopts |= WAKE_MAGIC;
233
234 if (value & DP83822_WOL_SECURE_ON) {
235 sopass_val = phy_read_mmd(phydev, DP83822_DEVADDR,
236 MII_DP83822_RXSOP1);
237 wol->sopass[0] = (sopass_val & 0xff);
238 wol->sopass[1] = (sopass_val >> 8);
239
240 sopass_val = phy_read_mmd(phydev, DP83822_DEVADDR,
241 MII_DP83822_RXSOP2);
242 wol->sopass[2] = (sopass_val & 0xff);
243 wol->sopass[3] = (sopass_val >> 8);
244
245 sopass_val = phy_read_mmd(phydev, DP83822_DEVADDR,
246 MII_DP83822_RXSOP3);
247 wol->sopass[4] = (sopass_val & 0xff);
248 wol->sopass[5] = (sopass_val >> 8);
249
250 wol->wolopts |= WAKE_MAGICSECURE;
251 }
252
253 /* WoL is not enabled so set wolopts to 0 */
254 if (!(value & DP83822_WOL_EN))
255 wol->wolopts = 0;
256 }
257
dp83822_config_intr(struct phy_device * phydev)258 static int dp83822_config_intr(struct phy_device *phydev)
259 {
260 struct dp83822_private *dp83822 = phydev->priv;
261 int misr_status;
262 int physcr_status;
263 int err;
264
265 if (phydev->interrupts == PHY_INTERRUPT_ENABLED) {
266 misr_status = phy_read(phydev, MII_DP83822_MISR1);
267 if (misr_status < 0)
268 return misr_status;
269
270 misr_status |= (DP83822_LINK_STAT_INT_EN |
271 DP83822_ENERGY_DET_INT_EN |
272 DP83822_LINK_QUAL_INT_EN);
273
274 if (!dp83822->fx_enabled)
275 misr_status |= DP83822_ANEG_COMPLETE_INT_EN |
276 DP83822_DUP_MODE_CHANGE_INT_EN |
277 DP83822_SPEED_CHANGED_INT_EN;
278
279
280 err = phy_write(phydev, MII_DP83822_MISR1, misr_status);
281 if (err < 0)
282 return err;
283
284 misr_status = phy_read(phydev, MII_DP83822_MISR2);
285 if (misr_status < 0)
286 return misr_status;
287
288 misr_status |= (DP83822_JABBER_DET_INT_EN |
289 DP83822_SLEEP_MODE_INT_EN |
290 DP83822_LB_FIFO_INT_EN |
291 DP83822_PAGE_RX_INT_EN |
292 DP83822_EEE_ERROR_CHANGE_INT_EN);
293
294 if (!dp83822->fx_enabled)
295 misr_status |= DP83822_ANEG_ERR_INT_EN |
296 DP83822_WOL_PKT_INT_EN;
297
298 err = phy_write(phydev, MII_DP83822_MISR2, misr_status);
299 if (err < 0)
300 return err;
301
302 physcr_status = phy_read(phydev, MII_DP83822_PHYSCR);
303 if (physcr_status < 0)
304 return physcr_status;
305
306 physcr_status |= DP83822_PHYSCR_INT_OE | DP83822_PHYSCR_INTEN;
307
308 } else {
309 err = phy_write(phydev, MII_DP83822_MISR1, 0);
310 if (err < 0)
311 return err;
312
313 err = phy_write(phydev, MII_DP83822_MISR2, 0);
314 if (err < 0)
315 return err;
316
317 physcr_status = phy_read(phydev, MII_DP83822_PHYSCR);
318 if (physcr_status < 0)
319 return physcr_status;
320
321 physcr_status &= ~DP83822_PHYSCR_INTEN;
322 }
323
324 return phy_write(phydev, MII_DP83822_PHYSCR, physcr_status);
325 }
326
dp83822_handle_interrupt(struct phy_device * phydev)327 static irqreturn_t dp83822_handle_interrupt(struct phy_device *phydev)
328 {
329 bool trigger_machine = false;
330 int irq_status;
331
332 /* The MISR1 and MISR2 registers are holding the interrupt status in
333 * the upper half (15:8), while the lower half (7:0) is used for
334 * controlling the interrupt enable state of those individual interrupt
335 * sources. To determine the possible interrupt sources, just read the
336 * MISR* register and use it directly to know which interrupts have
337 * been enabled previously or not.
338 */
339 irq_status = phy_read(phydev, MII_DP83822_MISR1);
340 if (irq_status < 0) {
341 phy_error(phydev);
342 return IRQ_NONE;
343 }
344 if (irq_status & ((irq_status & GENMASK(7, 0)) << 8))
345 trigger_machine = true;
346
347 irq_status = phy_read(phydev, MII_DP83822_MISR2);
348 if (irq_status < 0) {
349 phy_error(phydev);
350 return IRQ_NONE;
351 }
352 if (irq_status & ((irq_status & GENMASK(7, 0)) << 8))
353 trigger_machine = true;
354
355 if (!trigger_machine)
356 return IRQ_NONE;
357
358 phy_trigger_machine(phydev);
359
360 return IRQ_HANDLED;
361 }
362
dp83822_read_status(struct phy_device * phydev)363 static int dp83822_read_status(struct phy_device *phydev)
364 {
365 struct dp83822_private *dp83822 = phydev->priv;
366 int status = phy_read(phydev, MII_DP83822_PHYSTS);
367 int ctrl2;
368 int ret;
369
370 if (dp83822->fx_enabled) {
371 if (status & DP83822_PHYSTS_LINK) {
372 phydev->speed = SPEED_UNKNOWN;
373 phydev->duplex = DUPLEX_UNKNOWN;
374 } else {
375 ctrl2 = phy_read(phydev, MII_DP83822_CTRL_2);
376 if (ctrl2 < 0)
377 return ctrl2;
378
379 if (!(ctrl2 & DP83822_FX_ENABLE)) {
380 ret = phy_write(phydev, MII_DP83822_CTRL_2,
381 DP83822_FX_ENABLE | ctrl2);
382 if (ret < 0)
383 return ret;
384 }
385 }
386 }
387
388 ret = genphy_read_status(phydev);
389 if (ret)
390 return ret;
391
392 if (status < 0)
393 return status;
394
395 if (status & DP83822_PHYSTS_DUPLEX)
396 phydev->duplex = DUPLEX_FULL;
397 else
398 phydev->duplex = DUPLEX_HALF;
399
400 if (status & DP83822_PHYSTS_10)
401 phydev->speed = SPEED_10;
402 else
403 phydev->speed = SPEED_100;
404
405 return 0;
406 }
407
dp83822_config_init(struct phy_device * phydev)408 static int dp83822_config_init(struct phy_device *phydev)
409 {
410 struct dp83822_private *dp83822 = phydev->priv;
411 struct device *dev = &phydev->mdio.dev;
412 int rgmii_delay = 0;
413 s32 rx_int_delay;
414 s32 tx_int_delay;
415 int err = 0;
416 int bmcr;
417
418 if (phy_interface_is_rgmii(phydev)) {
419 rx_int_delay = phy_get_internal_delay(phydev, dev, NULL, 0,
420 true);
421
422 /* Set DP83822_RX_CLK_SHIFT to enable rx clk internal delay */
423 if (rx_int_delay > 0)
424 rgmii_delay |= DP83822_RX_CLK_SHIFT;
425
426 tx_int_delay = phy_get_internal_delay(phydev, dev, NULL, 0,
427 false);
428
429 /* Set DP83822_TX_CLK_SHIFT to disable tx clk internal delay */
430 if (tx_int_delay <= 0)
431 rgmii_delay |= DP83822_TX_CLK_SHIFT;
432
433 err = phy_modify_mmd(phydev, DP83822_DEVADDR, MII_DP83822_RCSR,
434 DP83822_RX_CLK_SHIFT | DP83822_TX_CLK_SHIFT, rgmii_delay);
435 if (err)
436 return err;
437
438 err = phy_set_bits_mmd(phydev, DP83822_DEVADDR,
439 MII_DP83822_RCSR, DP83822_RGMII_MODE_EN);
440
441 if (err)
442 return err;
443 } else {
444 err = phy_clear_bits_mmd(phydev, DP83822_DEVADDR,
445 MII_DP83822_RCSR, DP83822_RGMII_MODE_EN);
446
447 if (err)
448 return err;
449 }
450
451 if (dp83822->fx_enabled) {
452 err = phy_modify(phydev, MII_DP83822_CTRL_2,
453 DP83822_FX_ENABLE, 1);
454 if (err < 0)
455 return err;
456
457 /* Only allow advertising what this PHY supports */
458 linkmode_and(phydev->advertising, phydev->advertising,
459 phydev->supported);
460
461 linkmode_set_bit(ETHTOOL_LINK_MODE_FIBRE_BIT,
462 phydev->supported);
463 linkmode_set_bit(ETHTOOL_LINK_MODE_FIBRE_BIT,
464 phydev->advertising);
465 linkmode_set_bit(ETHTOOL_LINK_MODE_100baseFX_Full_BIT,
466 phydev->supported);
467 linkmode_set_bit(ETHTOOL_LINK_MODE_100baseFX_Half_BIT,
468 phydev->supported);
469 linkmode_set_bit(ETHTOOL_LINK_MODE_100baseFX_Full_BIT,
470 phydev->advertising);
471 linkmode_set_bit(ETHTOOL_LINK_MODE_100baseFX_Half_BIT,
472 phydev->advertising);
473
474 /* Auto neg is not supported in fiber mode */
475 bmcr = phy_read(phydev, MII_BMCR);
476 if (bmcr < 0)
477 return bmcr;
478
479 if (bmcr & BMCR_ANENABLE) {
480 err = phy_modify(phydev, MII_BMCR, BMCR_ANENABLE, 0);
481 if (err < 0)
482 return err;
483 }
484 phydev->autoneg = AUTONEG_DISABLE;
485 linkmode_clear_bit(ETHTOOL_LINK_MODE_Autoneg_BIT,
486 phydev->supported);
487 linkmode_clear_bit(ETHTOOL_LINK_MODE_Autoneg_BIT,
488 phydev->advertising);
489
490 /* Setup fiber advertisement */
491 err = phy_modify_changed(phydev, MII_ADVERTISE,
492 MII_DP83822_FIBER_ADVERTISE,
493 MII_DP83822_FIBER_ADVERTISE);
494
495 if (err < 0)
496 return err;
497
498 if (dp83822->fx_signal_det_low) {
499 err = phy_set_bits_mmd(phydev, DP83822_DEVADDR,
500 MII_DP83822_GENCFG,
501 DP83822_SIG_DET_LOW);
502 if (err)
503 return err;
504 }
505 }
506 return dp83822_config_wol(phydev, &dp83822->wol);
507 }
508
dp83826_config_rmii_mode(struct phy_device * phydev)509 static int dp83826_config_rmii_mode(struct phy_device *phydev)
510 {
511 struct device *dev = &phydev->mdio.dev;
512 const char *of_val;
513 int ret;
514
515 if (!device_property_read_string(dev, "ti,rmii-mode", &of_val)) {
516 if (strcmp(of_val, "master") == 0) {
517 ret = phy_clear_bits_mmd(phydev, DP83822_DEVADDR, MII_DP83822_RCSR,
518 DP83822_RMII_MODE_SEL);
519 } else if (strcmp(of_val, "slave") == 0) {
520 ret = phy_set_bits_mmd(phydev, DP83822_DEVADDR, MII_DP83822_RCSR,
521 DP83822_RMII_MODE_SEL);
522 } else {
523 phydev_err(phydev, "Invalid value for ti,rmii-mode property (%s)\n",
524 of_val);
525 ret = -EINVAL;
526 }
527
528 if (ret)
529 return ret;
530 }
531
532 return 0;
533 }
534
dp83826_config_init(struct phy_device * phydev)535 static int dp83826_config_init(struct phy_device *phydev)
536 {
537 struct dp83822_private *dp83822 = phydev->priv;
538 u16 val, mask;
539 int ret;
540
541 if (phydev->interface == PHY_INTERFACE_MODE_RMII) {
542 ret = phy_set_bits_mmd(phydev, DP83822_DEVADDR, MII_DP83822_RCSR,
543 DP83822_RMII_MODE_EN);
544 if (ret)
545 return ret;
546
547 ret = dp83826_config_rmii_mode(phydev);
548 if (ret)
549 return ret;
550 } else {
551 ret = phy_clear_bits_mmd(phydev, DP83822_DEVADDR, MII_DP83822_RCSR,
552 DP83822_RMII_MODE_EN);
553 if (ret)
554 return ret;
555 }
556
557 if (dp83822->cfg_dac_minus != DP83826_CFG_DAC_MINUS_DEFAULT) {
558 val = FIELD_PREP(DP83826_VOD_CFG1_MINUS_MDI_MASK, dp83822->cfg_dac_minus) |
559 FIELD_PREP(DP83826_VOD_CFG1_MINUS_MDIX_MASK,
560 FIELD_GET(DP83826_CFG_DAC_MINUS_MDIX_5_TO_4,
561 dp83822->cfg_dac_minus));
562 mask = DP83826_VOD_CFG1_MINUS_MDIX_MASK | DP83826_VOD_CFG1_MINUS_MDI_MASK;
563 ret = phy_modify_mmd(phydev, DP83822_DEVADDR, MII_DP83826_VOD_CFG1, mask, val);
564 if (ret)
565 return ret;
566
567 val = FIELD_PREP(DP83826_VOD_CFG2_MINUS_MDIX_MASK,
568 FIELD_GET(DP83826_CFG_DAC_MINUS_MDIX_3_TO_0,
569 dp83822->cfg_dac_minus));
570 mask = DP83826_VOD_CFG2_MINUS_MDIX_MASK;
571 ret = phy_modify_mmd(phydev, DP83822_DEVADDR, MII_DP83826_VOD_CFG2, mask, val);
572 if (ret)
573 return ret;
574 }
575
576 if (dp83822->cfg_dac_plus != DP83826_CFG_DAC_PLUS_DEFAULT) {
577 val = FIELD_PREP(DP83826_VOD_CFG2_PLUS_MDIX_MASK, dp83822->cfg_dac_plus) |
578 FIELD_PREP(DP83826_VOD_CFG2_PLUS_MDI_MASK, dp83822->cfg_dac_plus);
579 mask = DP83826_VOD_CFG2_PLUS_MDIX_MASK | DP83826_VOD_CFG2_PLUS_MDI_MASK;
580 ret = phy_modify_mmd(phydev, DP83822_DEVADDR, MII_DP83826_VOD_CFG2, mask, val);
581 if (ret)
582 return ret;
583 }
584
585 return dp83822_config_wol(phydev, &dp83822->wol);
586 }
587
dp8382x_config_init(struct phy_device * phydev)588 static int dp8382x_config_init(struct phy_device *phydev)
589 {
590 struct dp83822_private *dp83822 = phydev->priv;
591
592 return dp83822_config_wol(phydev, &dp83822->wol);
593 }
594
dp83822_phy_reset(struct phy_device * phydev)595 static int dp83822_phy_reset(struct phy_device *phydev)
596 {
597 int err;
598
599 err = phy_write(phydev, MII_DP83822_RESET_CTRL, DP83822_SW_RESET);
600 if (err < 0)
601 return err;
602
603 return phydev->drv->config_init(phydev);
604 }
605
606 #ifdef CONFIG_OF_MDIO
dp83822_of_init(struct phy_device * phydev)607 static int dp83822_of_init(struct phy_device *phydev)
608 {
609 struct dp83822_private *dp83822 = phydev->priv;
610 struct device *dev = &phydev->mdio.dev;
611
612 /* Signal detection for the PHY is only enabled if the FX_EN and the
613 * SD_EN pins are strapped. Signal detection can only enabled if FX_EN
614 * is strapped otherwise signal detection is disabled for the PHY.
615 */
616 if (dp83822->fx_enabled && dp83822->fx_sd_enable)
617 dp83822->fx_signal_det_low = device_property_present(dev,
618 "ti,link-loss-low");
619 if (!dp83822->fx_enabled)
620 dp83822->fx_enabled = device_property_present(dev,
621 "ti,fiber-mode");
622
623 return 0;
624 }
625
dp83826_to_dac_minus_one_regval(int percent)626 static int dp83826_to_dac_minus_one_regval(int percent)
627 {
628 int tmp = DP83826_CFG_DAC_PERCENT_DEFAULT - percent;
629
630 return tmp / DP83826_CFG_DAC_PERCENT_PER_STEP;
631 }
632
dp83826_to_dac_plus_one_regval(int percent)633 static int dp83826_to_dac_plus_one_regval(int percent)
634 {
635 int tmp = percent - DP83826_CFG_DAC_PERCENT_DEFAULT;
636
637 return tmp / DP83826_CFG_DAC_PERCENT_PER_STEP;
638 }
639
dp83826_of_init(struct phy_device * phydev)640 static void dp83826_of_init(struct phy_device *phydev)
641 {
642 struct dp83822_private *dp83822 = phydev->priv;
643 struct device *dev = &phydev->mdio.dev;
644 u32 val;
645
646 dp83822->cfg_dac_minus = DP83826_CFG_DAC_MINUS_DEFAULT;
647 if (!device_property_read_u32(dev, "ti,cfg-dac-minus-one-bp", &val))
648 dp83822->cfg_dac_minus += dp83826_to_dac_minus_one_regval(val);
649
650 dp83822->cfg_dac_plus = DP83826_CFG_DAC_PLUS_DEFAULT;
651 if (!device_property_read_u32(dev, "ti,cfg-dac-plus-one-bp", &val))
652 dp83822->cfg_dac_plus += dp83826_to_dac_plus_one_regval(val);
653 }
654 #else
dp83822_of_init(struct phy_device * phydev)655 static int dp83822_of_init(struct phy_device *phydev)
656 {
657 return 0;
658 }
659
dp83826_of_init(struct phy_device * phydev)660 static void dp83826_of_init(struct phy_device *phydev)
661 {
662 }
663 #endif /* CONFIG_OF_MDIO */
664
dp83822_read_straps(struct phy_device * phydev)665 static int dp83822_read_straps(struct phy_device *phydev)
666 {
667 struct dp83822_private *dp83822 = phydev->priv;
668 int fx_enabled, fx_sd_enable;
669 int val;
670
671 val = phy_read_mmd(phydev, DP83822_DEVADDR, MII_DP83822_SOR1);
672 if (val < 0)
673 return val;
674
675 phydev_dbg(phydev, "SOR1 strap register: 0x%04x\n", val);
676
677 fx_enabled = (val & DP83822_COL_STRAP_MASK) >> DP83822_COL_SHIFT;
678 if (fx_enabled == DP83822_STRAP_MODE2 ||
679 fx_enabled == DP83822_STRAP_MODE3)
680 dp83822->fx_enabled = 1;
681
682 if (dp83822->fx_enabled) {
683 fx_sd_enable = (val & DP83822_RX_ER_STR_MASK) >> DP83822_RX_ER_SHIFT;
684 if (fx_sd_enable == DP83822_STRAP_MODE3 ||
685 fx_sd_enable == DP83822_STRAP_MODE4)
686 dp83822->fx_sd_enable = 1;
687 }
688
689 return 0;
690 }
691
dp8382x_probe(struct phy_device * phydev)692 static int dp8382x_probe(struct phy_device *phydev)
693 {
694 struct dp83822_private *dp83822;
695
696 dp83822 = devm_kzalloc(&phydev->mdio.dev, sizeof(*dp83822),
697 GFP_KERNEL);
698 if (!dp83822)
699 return -ENOMEM;
700
701 phydev->priv = dp83822;
702
703 return 0;
704 }
705
dp83822_probe(struct phy_device * phydev)706 static int dp83822_probe(struct phy_device *phydev)
707 {
708 struct dp83822_private *dp83822;
709 int ret;
710
711 ret = dp8382x_probe(phydev);
712 if (ret)
713 return ret;
714
715 dp83822 = phydev->priv;
716
717 ret = dp83822_read_straps(phydev);
718 if (ret)
719 return ret;
720
721 dp83822_of_init(phydev);
722
723 if (dp83822->fx_enabled)
724 phydev->port = PORT_FIBRE;
725
726 return 0;
727 }
728
dp83826_probe(struct phy_device * phydev)729 static int dp83826_probe(struct phy_device *phydev)
730 {
731 int ret;
732
733 ret = dp8382x_probe(phydev);
734 if (ret)
735 return ret;
736
737 dp83826_of_init(phydev);
738
739 return 0;
740 }
741
dp83822_suspend(struct phy_device * phydev)742 static int dp83822_suspend(struct phy_device *phydev)
743 {
744 int value;
745
746 value = phy_read_mmd(phydev, DP83822_DEVADDR, MII_DP83822_WOL_CFG);
747
748 if (!(value & DP83822_WOL_EN))
749 genphy_suspend(phydev);
750
751 return 0;
752 }
753
dp83822_resume(struct phy_device * phydev)754 static int dp83822_resume(struct phy_device *phydev)
755 {
756 int value;
757
758 genphy_resume(phydev);
759
760 value = phy_read_mmd(phydev, DP83822_DEVADDR, MII_DP83822_WOL_CFG);
761
762 phy_write_mmd(phydev, DP83822_DEVADDR, MII_DP83822_WOL_CFG, value |
763 DP83822_WOL_CLR_INDICATION);
764
765 return 0;
766 }
767
768 #define DP83822_PHY_DRIVER(_id, _name) \
769 { \
770 PHY_ID_MATCH_MODEL(_id), \
771 .name = (_name), \
772 /* PHY_BASIC_FEATURES */ \
773 .probe = dp83822_probe, \
774 .soft_reset = dp83822_phy_reset, \
775 .config_init = dp83822_config_init, \
776 .read_status = dp83822_read_status, \
777 .get_wol = dp83822_get_wol, \
778 .set_wol = dp83822_set_wol, \
779 .config_intr = dp83822_config_intr, \
780 .handle_interrupt = dp83822_handle_interrupt, \
781 .suspend = dp83822_suspend, \
782 .resume = dp83822_resume, \
783 }
784
785 #define DP83826_PHY_DRIVER(_id, _name) \
786 { \
787 PHY_ID_MATCH_MODEL(_id), \
788 .name = (_name), \
789 /* PHY_BASIC_FEATURES */ \
790 .probe = dp83826_probe, \
791 .soft_reset = dp83822_phy_reset, \
792 .config_init = dp83826_config_init, \
793 .get_wol = dp83822_get_wol, \
794 .set_wol = dp83822_set_wol, \
795 .config_intr = dp83822_config_intr, \
796 .handle_interrupt = dp83822_handle_interrupt, \
797 .suspend = dp83822_suspend, \
798 .resume = dp83822_resume, \
799 }
800
801 #define DP8382X_PHY_DRIVER(_id, _name) \
802 { \
803 PHY_ID_MATCH_MODEL(_id), \
804 .name = (_name), \
805 /* PHY_BASIC_FEATURES */ \
806 .probe = dp8382x_probe, \
807 .soft_reset = dp83822_phy_reset, \
808 .config_init = dp8382x_config_init, \
809 .get_wol = dp83822_get_wol, \
810 .set_wol = dp83822_set_wol, \
811 .config_intr = dp83822_config_intr, \
812 .handle_interrupt = dp83822_handle_interrupt, \
813 .suspend = dp83822_suspend, \
814 .resume = dp83822_resume, \
815 }
816
817 static struct phy_driver dp83822_driver[] = {
818 DP83822_PHY_DRIVER(DP83822_PHY_ID, "TI DP83822"),
819 DP8382X_PHY_DRIVER(DP83825I_PHY_ID, "TI DP83825I"),
820 DP83826_PHY_DRIVER(DP83826C_PHY_ID, "TI DP83826C"),
821 DP83826_PHY_DRIVER(DP83826NC_PHY_ID, "TI DP83826NC"),
822 DP8382X_PHY_DRIVER(DP83825S_PHY_ID, "TI DP83825S"),
823 DP8382X_PHY_DRIVER(DP83825CM_PHY_ID, "TI DP83825M"),
824 DP8382X_PHY_DRIVER(DP83825CS_PHY_ID, "TI DP83825CS"),
825 };
826 module_phy_driver(dp83822_driver);
827
828 static struct mdio_device_id __maybe_unused dp83822_tbl[] = {
829 { DP83822_PHY_ID, 0xfffffff0 },
830 { DP83825I_PHY_ID, 0xfffffff0 },
831 { DP83826C_PHY_ID, 0xfffffff0 },
832 { DP83826NC_PHY_ID, 0xfffffff0 },
833 { DP83825S_PHY_ID, 0xfffffff0 },
834 { DP83825CM_PHY_ID, 0xfffffff0 },
835 { DP83825CS_PHY_ID, 0xfffffff0 },
836 { },
837 };
838 MODULE_DEVICE_TABLE(mdio, dp83822_tbl);
839
840 MODULE_DESCRIPTION("Texas Instruments DP83822 PHY driver");
841 MODULE_AUTHOR("Dan Murphy <dmurphy@ti.com");
842 MODULE_LICENSE("GPL v2");
843