rgephy.c revision 1.54 1 1.54 msaitoh /* $NetBSD: rgephy.c,v 1.54 2019/04/11 09:14:07 msaitoh Exp $ */
2 1.1 jonathan
3 1.1 jonathan /*
4 1.1 jonathan * Copyright (c) 2003
5 1.1 jonathan * Bill Paul <wpaul (at) windriver.com>. All rights reserved.
6 1.1 jonathan *
7 1.1 jonathan * Redistribution and use in source and binary forms, with or without
8 1.1 jonathan * modification, are permitted provided that the following conditions
9 1.1 jonathan * are met:
10 1.1 jonathan * 1. Redistributions of source code must retain the above copyright
11 1.1 jonathan * notice, this list of conditions and the following disclaimer.
12 1.1 jonathan * 2. Redistributions in binary form must reproduce the above copyright
13 1.1 jonathan * notice, this list of conditions and the following disclaimer in the
14 1.1 jonathan * documentation and/or other materials provided with the distribution.
15 1.1 jonathan * 3. All advertising materials mentioning features or use of this software
16 1.1 jonathan * must display the following acknowledgement:
17 1.1 jonathan * This product includes software developed by Bill Paul.
18 1.1 jonathan * 4. Neither the name of the author nor the names of any co-contributors
19 1.1 jonathan * may be used to endorse or promote products derived from this software
20 1.1 jonathan * without specific prior written permission.
21 1.1 jonathan *
22 1.1 jonathan * THIS SOFTWARE IS PROVIDED BY Bill Paul AND CONTRIBUTORS ``AS IS'' AND
23 1.1 jonathan * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
24 1.1 jonathan * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
25 1.1 jonathan * ARE DISCLAIMED. IN NO EVENT SHALL Bill Paul OR THE VOICES IN HIS HEAD
26 1.1 jonathan * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
27 1.1 jonathan * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
28 1.1 jonathan * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
29 1.1 jonathan * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
30 1.1 jonathan * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
31 1.1 jonathan * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
32 1.1 jonathan * THE POSSIBILITY OF SUCH DAMAGE.
33 1.1 jonathan */
34 1.1 jonathan
35 1.1 jonathan #include <sys/cdefs.h>
36 1.54 msaitoh __KERNEL_RCSID(0, "$NetBSD: rgephy.c,v 1.54 2019/04/11 09:14:07 msaitoh Exp $");
37 1.1 jonathan
38 1.1 jonathan
39 1.1 jonathan /*
40 1.1 jonathan * Driver for the RealTek 8169S/8110S internal 10/100/1000 PHY.
41 1.1 jonathan */
42 1.1 jonathan
43 1.1 jonathan #include <sys/param.h>
44 1.1 jonathan #include <sys/systm.h>
45 1.1 jonathan #include <sys/kernel.h>
46 1.10 tsutsui #include <sys/device.h>
47 1.1 jonathan #include <sys/socket.h>
48 1.1 jonathan
49 1.1 jonathan
50 1.1 jonathan #include <net/if.h>
51 1.1 jonathan #include <net/if_media.h>
52 1.1 jonathan
53 1.1 jonathan #include <dev/mii/mii.h>
54 1.44 msaitoh #include <dev/mii/mdio.h>
55 1.1 jonathan #include <dev/mii/miivar.h>
56 1.1 jonathan #include <dev/mii/miidevs.h>
57 1.1 jonathan
58 1.1 jonathan #include <dev/mii/rgephyreg.h>
59 1.1 jonathan
60 1.1 jonathan #include <dev/ic/rtl81x9reg.h>
61 1.1 jonathan
62 1.21 xtraeme static int rgephy_match(device_t, cfdata_t, void *);
63 1.21 xtraeme static void rgephy_attach(device_t, device_t, void *);
64 1.1 jonathan
65 1.19 tsutsui struct rgephy_softc {
66 1.19 tsutsui struct mii_softc mii_sc;
67 1.42 jmcneill bool mii_no_rx_delay;
68 1.19 tsutsui };
69 1.19 tsutsui
70 1.21 xtraeme CFATTACH_DECL_NEW(rgephy, sizeof(struct rgephy_softc),
71 1.1 jonathan rgephy_match, rgephy_attach, mii_phy_detach, mii_phy_activate);
72 1.1 jonathan
73 1.1 jonathan
74 1.1 jonathan static int rgephy_service(struct mii_softc *, struct mii_data *, int);
75 1.1 jonathan static void rgephy_status(struct mii_softc *);
76 1.1 jonathan static int rgephy_mii_phy_auto(struct mii_softc *);
77 1.1 jonathan static void rgephy_reset(struct mii_softc *);
78 1.1 jonathan static void rgephy_loop(struct mii_softc *);
79 1.1 jonathan static void rgephy_load_dspcode(struct mii_softc *);
80 1.15 tsutsui
81 1.1 jonathan static const struct mii_phy_funcs rgephy_funcs = {
82 1.1 jonathan rgephy_service, rgephy_status, rgephy_reset,
83 1.1 jonathan };
84 1.1 jonathan
85 1.1 jonathan static const struct mii_phydesc rgephys[] = {
86 1.48 christos MII_PHY_DESC(xxREALTEK, RTL8169S),
87 1.48 christos MII_PHY_DESC(REALTEK, RTL8169S),
88 1.48 christos MII_PHY_DESC(REALTEK, RTL8251),
89 1.48 christos MII_PHY_END,
90 1.1 jonathan };
91 1.1 jonathan
92 1.1 jonathan static int
93 1.21 xtraeme rgephy_match(device_t parent, cfdata_t match, void *aux)
94 1.1 jonathan {
95 1.1 jonathan struct mii_attach_args *ma = aux;
96 1.1 jonathan
97 1.1 jonathan if (mii_phy_match(ma, rgephys) != NULL)
98 1.15 tsutsui return 10;
99 1.1 jonathan
100 1.15 tsutsui return 0;
101 1.1 jonathan }
102 1.1 jonathan
103 1.1 jonathan static void
104 1.21 xtraeme rgephy_attach(device_t parent, device_t self, void *aux)
105 1.1 jonathan {
106 1.19 tsutsui struct rgephy_softc *rsc = device_private(self);
107 1.42 jmcneill prop_dictionary_t prop = device_properties(self);
108 1.19 tsutsui struct mii_softc *sc = &rsc->mii_sc;
109 1.1 jonathan struct mii_attach_args *ma = aux;
110 1.1 jonathan struct mii_data *mii = ma->mii_data;
111 1.1 jonathan const struct mii_phydesc *mpd;
112 1.1 jonathan int rev;
113 1.1 jonathan const char *sep = "";
114 1.1 jonathan
115 1.19 tsutsui ma = aux;
116 1.19 tsutsui mii = ma->mii_data;
117 1.19 tsutsui
118 1.1 jonathan rev = MII_REV(ma->mii_id2);
119 1.1 jonathan mpd = mii_phy_match(ma, rgephys);
120 1.1 jonathan aprint_naive(": Media interface\n");
121 1.1 jonathan
122 1.21 xtraeme sc->mii_dev = self;
123 1.1 jonathan sc->mii_inst = mii->mii_instance;
124 1.1 jonathan sc->mii_phy = ma->mii_phyno;
125 1.34 jakllsch sc->mii_mpd_oui = MII_OUI(ma->mii_id1, ma->mii_id2);
126 1.34 jakllsch sc->mii_mpd_model = MII_MODEL(ma->mii_id2);
127 1.34 jakllsch sc->mii_mpd_rev = MII_REV(ma->mii_id2);
128 1.47 msaitoh
129 1.47 msaitoh if (sc->mii_mpd_model == MII_MODEL_REALTEK_RTL8169S) {
130 1.47 msaitoh aprint_normal(": RTL8211");
131 1.47 msaitoh if (sc->mii_mpd_rev != 0)
132 1.47 msaitoh aprint_normal("%c",'@' + sc->mii_mpd_rev);
133 1.47 msaitoh aprint_normal(" 1000BASE-T media interface\n");
134 1.47 msaitoh } else
135 1.47 msaitoh aprint_normal(": %s, rev. %d\n", mpd->mpd_name, rev);
136 1.47 msaitoh
137 1.1 jonathan sc->mii_pdata = mii;
138 1.45 msaitoh sc->mii_flags = ma->mii_flags;
139 1.24 cegger sc->mii_anegticks = MII_ANEGTICKS_GIGE;
140 1.1 jonathan
141 1.1 jonathan sc->mii_funcs = &rgephy_funcs;
142 1.1 jonathan
143 1.42 jmcneill prop_dictionary_get_bool(prop, "no-rx-delay", &rsc->mii_no_rx_delay);
144 1.42 jmcneill
145 1.1 jonathan #define ADD(m, c) ifmedia_add(&mii->mii_media, (m), (c), NULL)
146 1.1 jonathan #define PRINT(n) aprint_normal("%s%s", sep, (n)); sep = ", "
147 1.1 jonathan
148 1.1 jonathan #ifdef __FreeBSD__
149 1.1 jonathan ADD(IFM_MAKEWORD(IFM_ETHER, IFM_100_TX, IFM_LOOP, sc->mii_inst),
150 1.52 msaitoh BMCR_LOOP | BMCR_S100);
151 1.1 jonathan #endif
152 1.1 jonathan
153 1.46 msaitoh PHY_READ(sc, MII_BMSR, &sc->mii_capabilities);
154 1.46 msaitoh sc->mii_capabilities &= ma->mii_capmask;
155 1.1 jonathan sc->mii_capabilities &= ~BMSR_ANEG;
156 1.1 jonathan
157 1.1 jonathan /*
158 1.1 jonathan * FreeBSD does not check EXSTAT, but instead adds gigabit
159 1.5 perry * media explicitly. Why?
160 1.1 jonathan */
161 1.21 xtraeme aprint_normal_dev(self, "");
162 1.46 msaitoh if (sc->mii_capabilities & BMSR_EXTSTAT)
163 1.46 msaitoh PHY_READ(sc, MII_EXTSR, &sc->mii_extcapabilities);
164 1.46 msaitoh
165 1.1 jonathan mii_phy_add_media(sc);
166 1.16 tsutsui
167 1.1 jonathan /* rtl8169S does not report auto-sense; add manually. */
168 1.1 jonathan ADD(IFM_MAKEWORD(IFM_ETHER, IFM_AUTO, 0, sc->mii_inst), MII_NMEDIA);
169 1.1 jonathan sep =", ";
170 1.1 jonathan PRINT("auto");
171 1.1 jonathan
172 1.1 jonathan #undef ADD
173 1.1 jonathan #undef PRINT
174 1.1 jonathan
175 1.25 cegger rgephy_reset(sc);
176 1.1 jonathan aprint_normal("\n");
177 1.1 jonathan }
178 1.1 jonathan
179 1.1 jonathan static int
180 1.15 tsutsui rgephy_service(struct mii_softc *sc, struct mii_data *mii, int cmd)
181 1.1 jonathan {
182 1.1 jonathan struct ifmedia_entry *ife = mii->mii_media.ifm_cur;
183 1.46 msaitoh uint16_t reg, speed, gig, anar;
184 1.1 jonathan
185 1.1 jonathan switch (cmd) {
186 1.1 jonathan case MII_POLLSTAT:
187 1.52 msaitoh /* If we're not polling our PHY instance, just return. */
188 1.1 jonathan if (IFM_INST(ife->ifm_media) != sc->mii_inst)
189 1.15 tsutsui return 0;
190 1.1 jonathan break;
191 1.1 jonathan
192 1.1 jonathan case MII_MEDIACHG:
193 1.1 jonathan /*
194 1.1 jonathan * If the media indicates a different PHY instance,
195 1.1 jonathan * isolate ourselves.
196 1.1 jonathan */
197 1.1 jonathan if (IFM_INST(ife->ifm_media) != sc->mii_inst) {
198 1.46 msaitoh PHY_READ(sc, MII_BMCR, ®);
199 1.1 jonathan PHY_WRITE(sc, MII_BMCR, reg | BMCR_ISO);
200 1.15 tsutsui return 0;
201 1.1 jonathan }
202 1.1 jonathan
203 1.52 msaitoh /* If the interface is not up, don't do anything. */
204 1.1 jonathan if ((mii->mii_ifp->if_flags & IFF_UP) == 0)
205 1.1 jonathan break;
206 1.1 jonathan
207 1.25 cegger rgephy_reset(sc); /* XXX hardware bug work-around */
208 1.1 jonathan
209 1.46 msaitoh PHY_READ(sc, MII_ANAR, &anar);
210 1.29 jakllsch anar &= ~(ANAR_TX_FD | ANAR_TX | ANAR_10_FD | ANAR_10);
211 1.13 tsutsui
212 1.1 jonathan switch (IFM_SUBTYPE(ife->ifm_media)) {
213 1.1 jonathan case IFM_AUTO:
214 1.1 jonathan #ifdef foo
215 1.52 msaitoh /* If we're already in auto mode, just return. */
216 1.46 msaitoh PHY_READ(sc, MII_BMCR, ®);
217 1.46 msaitoh if (reg & BMCR_AUTOEN)
218 1.15 tsutsui return 0;
219 1.1 jonathan #endif
220 1.15 tsutsui (void)rgephy_mii_phy_auto(sc);
221 1.1 jonathan break;
222 1.1 jonathan case IFM_1000_T:
223 1.29 jakllsch speed = BMCR_S1000;
224 1.1 jonathan goto setit;
225 1.1 jonathan case IFM_100_TX:
226 1.29 jakllsch speed = BMCR_S100;
227 1.29 jakllsch anar |= ANAR_TX_FD | ANAR_TX;
228 1.1 jonathan goto setit;
229 1.1 jonathan case IFM_10_T:
230 1.29 jakllsch speed = BMCR_S10;
231 1.29 jakllsch anar |= ANAR_10_FD | ANAR_10;
232 1.15 tsutsui setit:
233 1.1 jonathan rgephy_loop(sc);
234 1.53 msaitoh if ((ife->ifm_media & IFM_FDX) != 0) {
235 1.29 jakllsch speed |= BMCR_FDX;
236 1.29 jakllsch gig = GTCR_ADV_1000TFDX;
237 1.29 jakllsch anar &= ~(ANAR_TX | ANAR_10);
238 1.1 jonathan } else {
239 1.29 jakllsch gig = GTCR_ADV_1000THDX;
240 1.29 jakllsch anar &= ~(ANAR_TX_FD | ANAR_10_FD);
241 1.1 jonathan }
242 1.1 jonathan
243 1.13 tsutsui if (IFM_SUBTYPE(ife->ifm_media) != IFM_1000_T) {
244 1.29 jakllsch PHY_WRITE(sc, MII_100T2CR, 0);
245 1.29 jakllsch PHY_WRITE(sc, MII_ANAR, anar);
246 1.52 msaitoh PHY_WRITE(sc, MII_BMCR,
247 1.52 msaitoh speed | BMCR_AUTOEN | BMCR_STARTNEG);
248 1.1 jonathan break;
249 1.13 tsutsui }
250 1.1 jonathan
251 1.1 jonathan /*
252 1.52 msaitoh * When setting the link manually, one side must be the
253 1.52 msaitoh * master and the other the slave. However ifmedia
254 1.52 msaitoh * doesn't give us a good way to specify this, so we
255 1.52 msaitoh * fake it by using one of the LINK flags. If LINK0 is
256 1.52 msaitoh * set, we program the PHY to be a master, otherwise
257 1.52 msaitoh * it's a slave.
258 1.1 jonathan */
259 1.1 jonathan if ((mii->mii_ifp->if_flags & IFF_LINK0)) {
260 1.29 jakllsch PHY_WRITE(sc, MII_100T2CR,
261 1.52 msaitoh gig | GTCR_MAN_MS | GTCR_ADV_MS);
262 1.54 msaitoh } else
263 1.52 msaitoh PHY_WRITE(sc, MII_100T2CR, gig | GTCR_MAN_MS);
264 1.52 msaitoh PHY_WRITE(sc, MII_BMCR,
265 1.52 msaitoh speed | BMCR_AUTOEN | BMCR_STARTNEG);
266 1.1 jonathan break;
267 1.1 jonathan case IFM_NONE:
268 1.52 msaitoh PHY_WRITE(sc, MII_BMCR, BMCR_ISO | BMCR_PDOWN);
269 1.1 jonathan break;
270 1.1 jonathan case IFM_100_T4:
271 1.1 jonathan default:
272 1.15 tsutsui return EINVAL;
273 1.1 jonathan }
274 1.1 jonathan break;
275 1.1 jonathan
276 1.1 jonathan case MII_TICK:
277 1.52 msaitoh /* If we're not currently selected, just return. */
278 1.1 jonathan if (IFM_INST(ife->ifm_media) != sc->mii_inst)
279 1.15 tsutsui return 0;
280 1.1 jonathan
281 1.52 msaitoh /* Is the interface even up? */
282 1.1 jonathan if ((mii->mii_ifp->if_flags & IFF_UP) == 0)
283 1.15 tsutsui return 0;
284 1.1 jonathan
285 1.52 msaitoh /* Only used for autonegotiation. */
286 1.31 msaitoh if ((IFM_SUBTYPE(ife->ifm_media) != IFM_AUTO) &&
287 1.32 msaitoh (IFM_SUBTYPE(ife->ifm_media) != IFM_1000_T)) {
288 1.32 msaitoh /*
289 1.32 msaitoh * Reset autonegotiation timer to 0 to make sure
290 1.32 msaitoh * the future autonegotiation start with 0.
291 1.32 msaitoh */
292 1.32 msaitoh sc->mii_ticks = 0;
293 1.1 jonathan break;
294 1.32 msaitoh }
295 1.1 jonathan
296 1.1 jonathan /*
297 1.1 jonathan * Check to see if we have link. If we do, we don't
298 1.1 jonathan * need to restart the autonegotiation process. Read
299 1.1 jonathan * the BMSR twice in case it's latched.
300 1.1 jonathan */
301 1.43 jmcneill if (sc->mii_mpd_rev >= RGEPHY_8211F) {
302 1.38 jmcneill /* RTL8211F */
303 1.46 msaitoh PHY_READ(sc, RGEPHY_MII_PHYSR, ®);
304 1.38 jmcneill if (reg & RGEPHY_PHYSR_LINK) {
305 1.38 jmcneill sc->mii_ticks = 0;
306 1.38 jmcneill break;
307 1.38 jmcneill }
308 1.43 jmcneill } else if (sc->mii_mpd_rev >= RGEPHY_8211B) {
309 1.19 tsutsui /* RTL8211B(L) */
310 1.46 msaitoh PHY_READ(sc, RGEPHY_MII_SSR, ®);
311 1.19 tsutsui if (reg & RGEPHY_SSR_LINK) {
312 1.19 tsutsui sc->mii_ticks = 0;
313 1.19 tsutsui break;
314 1.19 tsutsui }
315 1.19 tsutsui } else {
316 1.46 msaitoh PHY_READ(sc, RTK_GMEDIASTAT, ®);
317 1.19 tsutsui if ((reg & RTK_GMEDIASTAT_LINK) != 0) {
318 1.19 tsutsui sc->mii_ticks = 0;
319 1.19 tsutsui break;
320 1.19 tsutsui }
321 1.19 tsutsui }
322 1.1 jonathan
323 1.25 cegger /* Announce link loss right after it happens. */
324 1.25 cegger if (sc->mii_ticks++ == 0)
325 1.1 jonathan break;
326 1.5 perry
327 1.25 cegger /* Only retry autonegotiation every mii_anegticks seconds. */
328 1.25 cegger if (sc->mii_ticks <= sc->mii_anegticks)
329 1.25 cegger return 0;
330 1.25 cegger
331 1.1 jonathan rgephy_mii_phy_auto(sc);
332 1.25 cegger break;
333 1.1 jonathan }
334 1.1 jonathan
335 1.1 jonathan /* Update the media status. */
336 1.1 jonathan rgephy_status(sc);
337 1.1 jonathan
338 1.1 jonathan /*
339 1.1 jonathan * Callback if something changed. Note that we need to poke
340 1.1 jonathan * the DSP on the RealTek PHYs if the media changes.
341 1.1 jonathan */
342 1.5 perry if (sc->mii_media_active != mii->mii_media_active ||
343 1.1 jonathan sc->mii_media_status != mii->mii_media_status ||
344 1.1 jonathan cmd == MII_MEDIACHG) {
345 1.1 jonathan rgephy_load_dspcode(sc);
346 1.1 jonathan }
347 1.1 jonathan mii_phy_update(sc, cmd);
348 1.15 tsutsui return 0;
349 1.1 jonathan }
350 1.1 jonathan
351 1.1 jonathan static void
352 1.15 tsutsui rgephy_status(struct mii_softc *sc)
353 1.1 jonathan {
354 1.1 jonathan struct mii_data *mii = sc->mii_pdata;
355 1.46 msaitoh uint16_t gstat, bmsr, bmcr, physr, ssr;
356 1.1 jonathan
357 1.1 jonathan mii->mii_media_status = IFM_AVALID;
358 1.1 jonathan mii->mii_media_active = IFM_ETHER;
359 1.1 jonathan
360 1.43 jmcneill if (sc->mii_mpd_rev >= RGEPHY_8211F) {
361 1.46 msaitoh PHY_READ(sc, RGEPHY_MII_PHYSR, &physr);
362 1.38 jmcneill if (physr & RGEPHY_PHYSR_LINK)
363 1.38 jmcneill mii->mii_media_status |= IFM_ACTIVE;
364 1.43 jmcneill } else if (sc->mii_mpd_rev >= RGEPHY_8211B) {
365 1.46 msaitoh PHY_READ(sc, RGEPHY_MII_SSR, &ssr);
366 1.19 tsutsui if (ssr & RGEPHY_SSR_LINK)
367 1.19 tsutsui mii->mii_media_status |= IFM_ACTIVE;
368 1.19 tsutsui } else {
369 1.46 msaitoh PHY_READ(sc, RTK_GMEDIASTAT, &gstat);
370 1.19 tsutsui if ((gstat & RTK_GMEDIASTAT_LINK) != 0)
371 1.19 tsutsui mii->mii_media_status |= IFM_ACTIVE;
372 1.19 tsutsui }
373 1.1 jonathan
374 1.46 msaitoh PHY_READ(sc, MII_BMSR, &bmsr);
375 1.46 msaitoh PHY_READ(sc, MII_BMCR, &bmcr);
376 1.1 jonathan
377 1.29 jakllsch if ((bmcr & BMCR_ISO) != 0) {
378 1.3 kanaoka mii->mii_media_active |= IFM_NONE;
379 1.3 kanaoka mii->mii_media_status = 0;
380 1.3 kanaoka return;
381 1.3 kanaoka }
382 1.3 kanaoka
383 1.29 jakllsch if ((bmcr & BMCR_LOOP) != 0)
384 1.1 jonathan mii->mii_media_active |= IFM_LOOP;
385 1.1 jonathan
386 1.29 jakllsch if ((bmcr & BMCR_AUTOEN) != 0) {
387 1.29 jakllsch if ((bmsr & BMSR_ACOMP) == 0) {
388 1.1 jonathan /* Erg, still trying, I guess... */
389 1.1 jonathan mii->mii_media_active |= IFM_NONE;
390 1.1 jonathan return;
391 1.1 jonathan }
392 1.1 jonathan }
393 1.1 jonathan
394 1.43 jmcneill if (sc->mii_mpd_rev >= RGEPHY_8211F) {
395 1.46 msaitoh PHY_READ(sc, RGEPHY_MII_PHYSR, &physr);
396 1.38 jmcneill switch (__SHIFTOUT(physr, RGEPHY_PHYSR_SPEED)) {
397 1.38 jmcneill case RGEPHY_PHYSR_SPEED_1000:
398 1.38 jmcneill mii->mii_media_active |= IFM_1000_T;
399 1.38 jmcneill break;
400 1.38 jmcneill case RGEPHY_PHYSR_SPEED_100:
401 1.38 jmcneill mii->mii_media_active |= IFM_100_TX;
402 1.38 jmcneill break;
403 1.38 jmcneill case RGEPHY_PHYSR_SPEED_10:
404 1.38 jmcneill mii->mii_media_active |= IFM_10_T;
405 1.38 jmcneill break;
406 1.38 jmcneill default:
407 1.38 jmcneill mii->mii_media_active |= IFM_NONE;
408 1.38 jmcneill break;
409 1.38 jmcneill }
410 1.38 jmcneill if (physr & RGEPHY_PHYSR_DUPLEX)
411 1.38 jmcneill mii->mii_media_active |= mii_phy_flowstatus(sc) |
412 1.38 jmcneill IFM_FDX;
413 1.38 jmcneill else
414 1.38 jmcneill mii->mii_media_active |= IFM_HDX;
415 1.43 jmcneill } else if (sc->mii_mpd_rev >= RGEPHY_8211B) {
416 1.46 msaitoh PHY_READ(sc, RGEPHY_MII_SSR, &ssr);
417 1.19 tsutsui switch (ssr & RGEPHY_SSR_SPD_MASK) {
418 1.19 tsutsui case RGEPHY_SSR_S1000:
419 1.19 tsutsui mii->mii_media_active |= IFM_1000_T;
420 1.19 tsutsui break;
421 1.19 tsutsui case RGEPHY_SSR_S100:
422 1.19 tsutsui mii->mii_media_active |= IFM_100_TX;
423 1.19 tsutsui break;
424 1.19 tsutsui case RGEPHY_SSR_S10:
425 1.19 tsutsui mii->mii_media_active |= IFM_10_T;
426 1.19 tsutsui break;
427 1.19 tsutsui default:
428 1.19 tsutsui mii->mii_media_active |= IFM_NONE;
429 1.19 tsutsui break;
430 1.19 tsutsui }
431 1.19 tsutsui if (ssr & RGEPHY_SSR_FDX)
432 1.24 cegger mii->mii_media_active |= mii_phy_flowstatus(sc) |
433 1.24 cegger IFM_FDX;
434 1.19 tsutsui else
435 1.19 tsutsui mii->mii_media_active |= IFM_HDX;
436 1.19 tsutsui } else {
437 1.46 msaitoh PHY_READ(sc, RTK_GMEDIASTAT, &gstat);
438 1.19 tsutsui if ((gstat & RTK_GMEDIASTAT_1000MBPS) != 0)
439 1.19 tsutsui mii->mii_media_active |= IFM_1000_T;
440 1.19 tsutsui else if ((gstat & RTK_GMEDIASTAT_100MBPS) != 0)
441 1.19 tsutsui mii->mii_media_active |= IFM_100_TX;
442 1.19 tsutsui else if ((gstat & RTK_GMEDIASTAT_10MBPS) != 0)
443 1.19 tsutsui mii->mii_media_active |= IFM_10_T;
444 1.19 tsutsui else
445 1.19 tsutsui mii->mii_media_active |= IFM_NONE;
446 1.19 tsutsui if ((gstat & RTK_GMEDIASTAT_FDX) != 0)
447 1.24 cegger mii->mii_media_active |= mii_phy_flowstatus(sc) |
448 1.24 cegger IFM_FDX;
449 1.24 cegger else
450 1.24 cegger mii->mii_media_active |= IFM_HDX;
451 1.19 tsutsui }
452 1.1 jonathan }
453 1.1 jonathan
454 1.1 jonathan static int
455 1.15 tsutsui rgephy_mii_phy_auto(struct mii_softc *mii)
456 1.1 jonathan {
457 1.24 cegger int anar;
458 1.15 tsutsui
459 1.30 msaitoh mii->mii_ticks = 0;
460 1.1 jonathan rgephy_loop(mii);
461 1.25 cegger rgephy_reset(mii);
462 1.1 jonathan
463 1.24 cegger anar = BMSR_MEDIA_TO_ANAR(mii->mii_capabilities) | ANAR_CSMA;
464 1.24 cegger if (mii->mii_flags & MIIF_DOPAUSE)
465 1.33 msaitoh anar |= ANAR_FC | ANAR_PAUSE_ASYM;
466 1.24 cegger
467 1.29 jakllsch PHY_WRITE(mii, MII_ANAR, anar);
468 1.1 jonathan DELAY(1000);
469 1.29 jakllsch PHY_WRITE(mii, MII_100T2CR, GTCR_ADV_1000THDX | GTCR_ADV_1000TFDX);
470 1.1 jonathan DELAY(1000);
471 1.29 jakllsch PHY_WRITE(mii, MII_BMCR, BMCR_AUTOEN | BMCR_STARTNEG);
472 1.1 jonathan DELAY(100);
473 1.1 jonathan
474 1.15 tsutsui return EJUSTRETURN;
475 1.1 jonathan }
476 1.1 jonathan
477 1.1 jonathan static void
478 1.1 jonathan rgephy_loop(struct mii_softc *sc)
479 1.1 jonathan {
480 1.46 msaitoh uint16_t bmsr;
481 1.1 jonathan int i;
482 1.1 jonathan
483 1.37 nonaka if (sc->mii_mpd_model != MII_MODEL_REALTEK_RTL8251 &&
484 1.43 jmcneill sc->mii_mpd_rev < RGEPHY_8211B) {
485 1.29 jakllsch PHY_WRITE(sc, MII_BMCR, BMCR_PDOWN);
486 1.19 tsutsui DELAY(1000);
487 1.19 tsutsui }
488 1.1 jonathan
489 1.1 jonathan for (i = 0; i < 15000; i++) {
490 1.46 msaitoh PHY_READ(sc, MII_BMSR, &bmsr);
491 1.29 jakllsch if ((bmsr & BMSR_LINK) == 0) {
492 1.1 jonathan #if 0
493 1.1 jonathan device_printf(sc->mii_dev, "looped %d\n", i);
494 1.1 jonathan #endif
495 1.1 jonathan break;
496 1.1 jonathan }
497 1.1 jonathan DELAY(10);
498 1.1 jonathan }
499 1.1 jonathan }
500 1.1 jonathan
501 1.46 msaitoh static inline int
502 1.46 msaitoh PHY_SETBIT(struct mii_softc *sc, int y, uint16_t z)
503 1.46 msaitoh {
504 1.46 msaitoh uint16_t _tmp;
505 1.46 msaitoh int rv;
506 1.46 msaitoh
507 1.46 msaitoh if ((rv = PHY_READ(sc, y, &_tmp)) != 0)
508 1.46 msaitoh return rv;
509 1.46 msaitoh return PHY_WRITE(sc, y, _tmp | z);
510 1.46 msaitoh }
511 1.46 msaitoh
512 1.46 msaitoh static inline int
513 1.46 msaitoh PHY_CLRBIT(struct mii_softc *sc, int y, uint16_t z)
514 1.46 msaitoh {
515 1.46 msaitoh uint16_t _tmp;
516 1.46 msaitoh int rv;
517 1.46 msaitoh
518 1.46 msaitoh if ((rv = PHY_READ(sc, y, &_tmp)) != 0)
519 1.46 msaitoh return rv;
520 1.46 msaitoh return PHY_WRITE(sc, y, _tmp & ~z);
521 1.46 msaitoh }
522 1.1 jonathan
523 1.1 jonathan /*
524 1.52 msaitoh * Initialize RealTek PHY per the datasheet. The DSP in the PHYs of existing
525 1.52 msaitoh * revisions of the 8169S/8110S chips need to be tuned in order to reliably
526 1.52 msaitoh * negotiate a 1000Mbps link. This is only needed for rev 0 and rev 1 of the
527 1.52 msaitoh * PHY. Later versions work without any fixups.
528 1.1 jonathan */
529 1.1 jonathan static void
530 1.1 jonathan rgephy_load_dspcode(struct mii_softc *sc)
531 1.1 jonathan {
532 1.46 msaitoh uint16_t val;
533 1.1 jonathan
534 1.36 nonaka if (sc->mii_mpd_model == MII_MODEL_REALTEK_RTL8251 ||
535 1.43 jmcneill sc->mii_mpd_rev >= RGEPHY_8211B)
536 1.23 cegger return;
537 1.23 cegger
538 1.1 jonathan #if 1
539 1.1 jonathan PHY_WRITE(sc, 31, 0x0001);
540 1.1 jonathan PHY_WRITE(sc, 21, 0x1000);
541 1.1 jonathan PHY_WRITE(sc, 24, 0x65C7);
542 1.1 jonathan PHY_CLRBIT(sc, 4, 0x0800);
543 1.46 msaitoh PHY_READ(sc, 4, &val);
544 1.46 msaitoh val &= 0xFFF;
545 1.1 jonathan PHY_WRITE(sc, 4, val);
546 1.1 jonathan PHY_WRITE(sc, 3, 0x00A1);
547 1.1 jonathan PHY_WRITE(sc, 2, 0x0008);
548 1.1 jonathan PHY_WRITE(sc, 1, 0x1020);
549 1.1 jonathan PHY_WRITE(sc, 0, 0x1000);
550 1.1 jonathan PHY_SETBIT(sc, 4, 0x0800);
551 1.1 jonathan PHY_CLRBIT(sc, 4, 0x0800);
552 1.46 msaitoh PHY_READ(sc, 4, &val);
553 1.46 msaitoh val = (val & 0xFFF) | 0x7000;
554 1.1 jonathan PHY_WRITE(sc, 4, val);
555 1.1 jonathan PHY_WRITE(sc, 3, 0xFF41);
556 1.1 jonathan PHY_WRITE(sc, 2, 0xDE60);
557 1.1 jonathan PHY_WRITE(sc, 1, 0x0140);
558 1.1 jonathan PHY_WRITE(sc, 0, 0x0077);
559 1.46 msaitoh PHY_READ(sc, 4, &val);
560 1.46 msaitoh val = (val & 0xFFF) | 0xA000;
561 1.1 jonathan PHY_WRITE(sc, 4, val);
562 1.1 jonathan PHY_WRITE(sc, 3, 0xDF01);
563 1.1 jonathan PHY_WRITE(sc, 2, 0xDF20);
564 1.1 jonathan PHY_WRITE(sc, 1, 0xFF95);
565 1.1 jonathan PHY_WRITE(sc, 0, 0xFA00);
566 1.46 msaitoh PHY_READ(sc, 4, &val);
567 1.46 msaitoh val = (val & 0xFFF) | 0xB000;
568 1.1 jonathan PHY_WRITE(sc, 4, val);
569 1.1 jonathan PHY_WRITE(sc, 3, 0xFF41);
570 1.1 jonathan PHY_WRITE(sc, 2, 0xDE20);
571 1.1 jonathan PHY_WRITE(sc, 1, 0x0140);
572 1.1 jonathan PHY_WRITE(sc, 0, 0x00BB);
573 1.46 msaitoh PHY_READ(sc, 4, &val);
574 1.46 msaitoh val = (val & 0xFFF) | 0xF000;
575 1.1 jonathan PHY_WRITE(sc, 4, val);
576 1.1 jonathan PHY_WRITE(sc, 3, 0xDF01);
577 1.1 jonathan PHY_WRITE(sc, 2, 0xDF20);
578 1.1 jonathan PHY_WRITE(sc, 1, 0xFF95);
579 1.1 jonathan PHY_WRITE(sc, 0, 0xBF00);
580 1.1 jonathan PHY_SETBIT(sc, 4, 0x0800);
581 1.1 jonathan PHY_CLRBIT(sc, 4, 0x0800);
582 1.1 jonathan PHY_WRITE(sc, 31, 0x0000);
583 1.1 jonathan #else
584 1.1 jonathan (void)val;
585 1.1 jonathan PHY_WRITE(sc, 0x1f, 0x0001);
586 1.1 jonathan PHY_WRITE(sc, 0x15, 0x1000);
587 1.1 jonathan PHY_WRITE(sc, 0x18, 0x65c7);
588 1.1 jonathan PHY_WRITE(sc, 0x04, 0x0000);
589 1.1 jonathan PHY_WRITE(sc, 0x03, 0x00a1);
590 1.1 jonathan PHY_WRITE(sc, 0x02, 0x0008);
591 1.1 jonathan PHY_WRITE(sc, 0x01, 0x1020);
592 1.1 jonathan PHY_WRITE(sc, 0x00, 0x1000);
593 1.1 jonathan PHY_WRITE(sc, 0x04, 0x0800);
594 1.1 jonathan PHY_WRITE(sc, 0x04, 0x0000);
595 1.1 jonathan PHY_WRITE(sc, 0x04, 0x7000);
596 1.1 jonathan PHY_WRITE(sc, 0x03, 0xff41);
597 1.1 jonathan PHY_WRITE(sc, 0x02, 0xde60);
598 1.1 jonathan PHY_WRITE(sc, 0x01, 0x0140);
599 1.1 jonathan PHY_WRITE(sc, 0x00, 0x0077);
600 1.1 jonathan PHY_WRITE(sc, 0x04, 0x7800);
601 1.1 jonathan PHY_WRITE(sc, 0x04, 0x7000);
602 1.1 jonathan PHY_WRITE(sc, 0x04, 0xa000);
603 1.1 jonathan PHY_WRITE(sc, 0x03, 0xdf01);
604 1.1 jonathan PHY_WRITE(sc, 0x02, 0xdf20);
605 1.1 jonathan PHY_WRITE(sc, 0x01, 0xff95);
606 1.1 jonathan PHY_WRITE(sc, 0x00, 0xfa00);
607 1.1 jonathan PHY_WRITE(sc, 0x04, 0xa800);
608 1.1 jonathan PHY_WRITE(sc, 0x04, 0xa000);
609 1.1 jonathan PHY_WRITE(sc, 0x04, 0xb000);
610 1.1 jonathan PHY_WRITE(sc, 0x0e, 0xff41);
611 1.1 jonathan PHY_WRITE(sc, 0x02, 0xde20);
612 1.1 jonathan PHY_WRITE(sc, 0x01, 0x0140);
613 1.1 jonathan PHY_WRITE(sc, 0x00, 0x00bb);
614 1.1 jonathan PHY_WRITE(sc, 0x04, 0xb800);
615 1.1 jonathan PHY_WRITE(sc, 0x04, 0xb000);
616 1.1 jonathan PHY_WRITE(sc, 0x04, 0xf000);
617 1.1 jonathan PHY_WRITE(sc, 0x03, 0xdf01);
618 1.1 jonathan PHY_WRITE(sc, 0x02, 0xdf20);
619 1.1 jonathan PHY_WRITE(sc, 0x01, 0xff95);
620 1.1 jonathan PHY_WRITE(sc, 0x00, 0xbf00);
621 1.1 jonathan PHY_WRITE(sc, 0x04, 0xf800);
622 1.1 jonathan PHY_WRITE(sc, 0x04, 0xf000);
623 1.1 jonathan PHY_WRITE(sc, 0x04, 0x0000);
624 1.1 jonathan PHY_WRITE(sc, 0x1f, 0x0000);
625 1.1 jonathan PHY_WRITE(sc, 0x0b, 0x0000);
626 1.1 jonathan
627 1.1 jonathan #endif
628 1.5 perry
629 1.1 jonathan DELAY(40);
630 1.1 jonathan }
631 1.1 jonathan
632 1.1 jonathan static void
633 1.1 jonathan rgephy_reset(struct mii_softc *sc)
634 1.1 jonathan {
635 1.42 jmcneill struct rgephy_softc *rsc = (struct rgephy_softc *)sc;
636 1.39 jmcneill uint16_t ssr, phycr1;
637 1.15 tsutsui
638 1.26 cegger mii_phy_reset(sc);
639 1.26 cegger DELAY(1000);
640 1.26 cegger
641 1.36 nonaka if (sc->mii_mpd_model != MII_MODEL_REALTEK_RTL8251 &&
642 1.43 jmcneill sc->mii_mpd_rev < RGEPHY_8211B) {
643 1.26 cegger rgephy_load_dspcode(sc);
644 1.43 jmcneill } else if (sc->mii_mpd_rev == RGEPHY_8211C) {
645 1.23 cegger /* RTL8211C(L) */
646 1.46 msaitoh PHY_READ(sc, RGEPHY_MII_SSR, &ssr);
647 1.23 cegger if ((ssr & RGEPHY_SSR_ALDPS) != 0) {
648 1.23 cegger ssr &= ~RGEPHY_SSR_ALDPS;
649 1.23 cegger PHY_WRITE(sc, RGEPHY_MII_SSR, ssr);
650 1.23 cegger }
651 1.43 jmcneill } else if (sc->mii_mpd_rev == RGEPHY_8211E) {
652 1.41 jmcneill /* RTL8211E */
653 1.42 jmcneill if (rsc->mii_no_rx_delay) {
654 1.41 jmcneill /* Disable RX internal delay (undocumented) */
655 1.41 jmcneill PHY_WRITE(sc, 0x1f, 0x0007);
656 1.41 jmcneill PHY_WRITE(sc, 0x1e, 0x00a4);
657 1.41 jmcneill PHY_WRITE(sc, 0x1c, 0xb591);
658 1.41 jmcneill PHY_WRITE(sc, 0x1f, 0x0000);
659 1.41 jmcneill }
660 1.43 jmcneill } else if (sc->mii_mpd_rev == RGEPHY_8211F) {
661 1.39 jmcneill /* RTL8211F */
662 1.46 msaitoh PHY_READ(sc, RGEPHY_MII_PHYCR1, &phycr1);
663 1.40 jmcneill phycr1 &= ~RGEPHY_PHYCR1_MDI_MMCE;
664 1.40 jmcneill phycr1 &= ~RGEPHY_PHYCR1_ALDPS_EN;
665 1.40 jmcneill PHY_WRITE(sc, RGEPHY_MII_PHYCR1, phycr1);
666 1.26 cegger } else {
667 1.1 jonathan PHY_WRITE(sc, 0x1F, 0x0000);
668 1.18 tsutsui PHY_WRITE(sc, 0x0e, 0x0000);
669 1.1 jonathan }
670 1.1 jonathan
671 1.1 jonathan /* Reset capabilities */
672 1.1 jonathan /* Step1: write our capability */
673 1.14 tsutsui /* 10/100 capability */
674 1.29 jakllsch PHY_WRITE(sc, MII_ANAR,
675 1.29 jakllsch ANAR_TX_FD | ANAR_TX | ANAR_10_FD | ANAR_10 | ANAR_CSMA);
676 1.14 tsutsui /* 1000 capability */
677 1.29 jakllsch PHY_WRITE(sc, MII_100T2CR, GTCR_ADV_1000TFDX | GTCR_ADV_1000THDX);
678 1.1 jonathan
679 1.1 jonathan /* Step2: Restart NWay */
680 1.14 tsutsui /* NWay enable and Restart NWay */
681 1.29 jakllsch PHY_WRITE(sc, MII_BMCR, BMCR_RESET | BMCR_AUTOEN | BMCR_STARTNEG);
682 1.40 jmcneill
683 1.49 msaitoh if (sc->mii_mpd_rev >= RGEPHY_8211D) {
684 1.40 jmcneill /* RTL8211F */
685 1.40 jmcneill delay(10000);
686 1.40 jmcneill /* disable EEE */
687 1.51 msaitoh MMD_INDIRECT_WRITE(sc, MDIO_MMD_AN | MMDACR_FN_DATA,
688 1.51 msaitoh MDIO_AN_EEEADVERT, 0x0000);
689 1.40 jmcneill }
690 1.1 jonathan }
691