if_ure.c revision 1.60 1 1.60 christos /* $NetBSD: if_ure.c,v 1.60 2024/05/12 17:17:56 christos Exp $ */
2 1.15 mrg /* $OpenBSD: if_ure.c,v 1.10 2018/11/02 21:32:30 jcs Exp $ */
3 1.11 mrg
4 1.1 rin /*-
5 1.1 rin * Copyright (c) 2015-2016 Kevin Lo <kevlo (at) FreeBSD.org>
6 1.1 rin * All rights reserved.
7 1.1 rin *
8 1.1 rin * Redistribution and use in source and binary forms, with or without
9 1.1 rin * modification, are permitted provided that the following conditions
10 1.1 rin * are met:
11 1.1 rin * 1. Redistributions of source code must retain the above copyright
12 1.1 rin * notice, this list of conditions and the following disclaimer.
13 1.1 rin * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 rin * notice, this list of conditions and the following disclaimer in the
15 1.1 rin * documentation and/or other materials provided with the distribution.
16 1.1 rin *
17 1.1 rin * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
18 1.1 rin * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
19 1.1 rin * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
20 1.1 rin * ARE DISCLAIMED. IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
21 1.1 rin * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
22 1.1 rin * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
23 1.1 rin * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
24 1.1 rin * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
25 1.1 rin * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
26 1.1 rin * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
27 1.1 rin * SUCH DAMAGE.
28 1.1 rin */
29 1.1 rin
30 1.1 rin /* RealTek RTL8152/RTL8153 10/100/Gigabit USB Ethernet device */
31 1.1 rin
32 1.1 rin #include <sys/cdefs.h>
33 1.60 christos __KERNEL_RCSID(0, "$NetBSD: if_ure.c,v 1.60 2024/05/12 17:17:56 christos Exp $");
34 1.1 rin
35 1.1 rin #ifdef _KERNEL_OPT
36 1.1 rin #include "opt_usb.h"
37 1.1 rin #include "opt_inet.h"
38 1.1 rin #endif
39 1.1 rin
40 1.1 rin #include <sys/param.h>
41 1.33 bad #include <sys/cprng.h>
42 1.1 rin
43 1.15 mrg #include <net/route.h>
44 1.1 rin
45 1.16 mrg #include <dev/usb/usbnet.h>
46 1.16 mrg
47 1.1 rin #include <netinet/in_offload.h> /* XXX for in_undefer_cksum() */
48 1.1 rin #ifdef INET6
49 1.16 mrg #include <netinet/in.h>
50 1.1 rin #include <netinet6/in6_offload.h> /* XXX for in6_undefer_cksum() */
51 1.1 rin #endif
52 1.1 rin
53 1.1 rin #include <dev/ic/rtl81x9reg.h> /* XXX for RTK_GMEDIASTAT */
54 1.1 rin #include <dev/usb/if_urereg.h>
55 1.1 rin #include <dev/usb/if_urevar.h>
56 1.1 rin
57 1.15 mrg #define URE_PRINTF(un, fmt, args...) \
58 1.15 mrg device_printf((un)->un_dev, "%s: " fmt, __func__, ##args);
59 1.1 rin
60 1.1 rin #define URE_DEBUG
61 1.1 rin #ifdef URE_DEBUG
62 1.1 rin #define DPRINTF(x) do { if (uredebug) printf x; } while (0)
63 1.1 rin #define DPRINTFN(n, x) do { if (uredebug >= (n)) printf x; } while (0)
64 1.28 mrg int uredebug = 0;
65 1.1 rin #else
66 1.1 rin #define DPRINTF(x)
67 1.1 rin #define DPRINTFN(n, x)
68 1.1 rin #endif
69 1.1 rin
70 1.33 bad #define ETHER_IS_ZERO(addr) \
71 1.33 bad (!(addr[0] | addr[1] | addr[2] | addr[3] | addr[4] | addr[5]))
72 1.33 bad
73 1.1 rin static const struct usb_devno ure_devs[] = {
74 1.1 rin { USB_VENDOR_REALTEK, USB_PRODUCT_REALTEK_RTL8152 },
75 1.60 christos { USB_VENDOR_REALTEK, USB_PRODUCT_REALTEK_RTL8153 },
76 1.60 christos { USB_VENDOR_TPLINK, USB_PRODUCT_TPLINK_UE300 },
77 1.1 rin };
78 1.1 rin
79 1.19 mrg #define URE_BUFSZ (16 * 1024)
80 1.19 mrg
81 1.15 mrg static void ure_reset(struct usbnet *);
82 1.1 rin static uint32_t ure_txcsum(struct mbuf *);
83 1.1 rin static int ure_rxcsum(struct ifnet *, struct ure_rxpkt *);
84 1.20 mrg static void ure_rtl8152_init(struct usbnet *);
85 1.20 mrg static void ure_rtl8153_init(struct usbnet *);
86 1.20 mrg static void ure_disable_teredo(struct usbnet *);
87 1.20 mrg static void ure_init_fifo(struct usbnet *);
88 1.19 mrg
89 1.38 thorpej static void ure_uno_stop(struct ifnet *, int);
90 1.43 riastrad static void ure_uno_mcast(struct ifnet *);
91 1.38 thorpej static int ure_uno_mii_read_reg(struct usbnet *, int, int, uint16_t *);
92 1.38 thorpej static int ure_uno_mii_write_reg(struct usbnet *, int, int, uint16_t);
93 1.38 thorpej static void ure_uno_miibus_statchg(struct ifnet *);
94 1.38 thorpej static unsigned ure_uno_tx_prepare(struct usbnet *, struct mbuf *,
95 1.38 thorpej struct usbnet_chain *);
96 1.38 thorpej static void ure_uno_rx_loop(struct usbnet *, struct usbnet_chain *,
97 1.38 thorpej uint32_t);
98 1.38 thorpej static int ure_uno_init(struct ifnet *);
99 1.19 mrg
100 1.19 mrg static int ure_match(device_t, cfdata_t, void *);
101 1.19 mrg static void ure_attach(device_t, device_t, void *);
102 1.1 rin
103 1.20 mrg CFATTACH_DECL_NEW(ure, sizeof(struct usbnet), ure_match, ure_attach,
104 1.15 mrg usbnet_detach, usbnet_activate);
105 1.1 rin
106 1.34 maxv static const struct usbnet_ops ure_ops = {
107 1.38 thorpej .uno_stop = ure_uno_stop,
108 1.43 riastrad .uno_mcast = ure_uno_mcast,
109 1.38 thorpej .uno_read_reg = ure_uno_mii_read_reg,
110 1.38 thorpej .uno_write_reg = ure_uno_mii_write_reg,
111 1.38 thorpej .uno_statchg = ure_uno_miibus_statchg,
112 1.38 thorpej .uno_tx_prepare = ure_uno_tx_prepare,
113 1.38 thorpej .uno_rx_loop = ure_uno_rx_loop,
114 1.38 thorpej .uno_init = ure_uno_init,
115 1.19 mrg };
116 1.19 mrg
117 1.1 rin static int
118 1.15 mrg ure_ctl(struct usbnet *un, uint8_t rw, uint16_t val, uint16_t index,
119 1.1 rin void *buf, int len)
120 1.1 rin {
121 1.1 rin usb_device_request_t req;
122 1.1 rin usbd_status err;
123 1.1 rin
124 1.19 mrg if (usbnet_isdying(un))
125 1.1 rin return 0;
126 1.1 rin
127 1.1 rin if (rw == URE_CTL_WRITE)
128 1.1 rin req.bmRequestType = UT_WRITE_VENDOR_DEVICE;
129 1.1 rin else
130 1.1 rin req.bmRequestType = UT_READ_VENDOR_DEVICE;
131 1.1 rin req.bRequest = UR_SET_ADDRESS;
132 1.1 rin USETW(req.wValue, val);
133 1.1 rin USETW(req.wIndex, index);
134 1.1 rin USETW(req.wLength, len);
135 1.1 rin
136 1.37 martin DPRINTFN(5, ("ure_ctl: rw %d, val %04hu, index %04hu, len %d\n",
137 1.1 rin rw, val, index, len));
138 1.15 mrg err = usbd_do_request(un->un_udev, &req, buf);
139 1.1 rin if (err) {
140 1.1 rin DPRINTF(("ure_ctl: error %d\n", err));
141 1.51 riastrad if (rw == URE_CTL_READ)
142 1.51 riastrad memset(buf, 0, len);
143 1.1 rin return -1;
144 1.1 rin }
145 1.1 rin
146 1.1 rin return 0;
147 1.1 rin }
148 1.1 rin
149 1.1 rin static int
150 1.15 mrg ure_read_mem(struct usbnet *un, uint16_t addr, uint16_t index,
151 1.1 rin void *buf, int len)
152 1.1 rin {
153 1.15 mrg return ure_ctl(un, URE_CTL_READ, addr, index, buf, len);
154 1.1 rin }
155 1.1 rin
156 1.1 rin static int
157 1.15 mrg ure_write_mem(struct usbnet *un, uint16_t addr, uint16_t index,
158 1.1 rin void *buf, int len)
159 1.1 rin {
160 1.15 mrg return ure_ctl(un, URE_CTL_WRITE, addr, index, buf, len);
161 1.1 rin }
162 1.1 rin
163 1.1 rin static uint8_t
164 1.15 mrg ure_read_1(struct usbnet *un, uint16_t reg, uint16_t index)
165 1.1 rin {
166 1.1 rin uint32_t val;
167 1.1 rin uint8_t temp[4];
168 1.1 rin uint8_t shift;
169 1.1 rin
170 1.1 rin shift = (reg & 3) << 3;
171 1.1 rin reg &= ~3;
172 1.5 msaitoh
173 1.15 mrg ure_read_mem(un, reg, index, &temp, 4);
174 1.1 rin val = UGETDW(temp);
175 1.1 rin val >>= shift;
176 1.1 rin
177 1.1 rin return val & 0xff;
178 1.1 rin }
179 1.1 rin
180 1.1 rin static uint16_t
181 1.15 mrg ure_read_2(struct usbnet *un, uint16_t reg, uint16_t index)
182 1.1 rin {
183 1.1 rin uint32_t val;
184 1.1 rin uint8_t temp[4];
185 1.1 rin uint8_t shift;
186 1.1 rin
187 1.1 rin shift = (reg & 2) << 3;
188 1.1 rin reg &= ~3;
189 1.1 rin
190 1.15 mrg ure_read_mem(un, reg, index, &temp, 4);
191 1.1 rin val = UGETDW(temp);
192 1.1 rin val >>= shift;
193 1.1 rin
194 1.1 rin return val & 0xffff;
195 1.1 rin }
196 1.1 rin
197 1.1 rin static uint32_t
198 1.15 mrg ure_read_4(struct usbnet *un, uint16_t reg, uint16_t index)
199 1.1 rin {
200 1.1 rin uint8_t temp[4];
201 1.1 rin
202 1.15 mrg ure_read_mem(un, reg, index, &temp, 4);
203 1.1 rin return UGETDW(temp);
204 1.1 rin }
205 1.1 rin
206 1.1 rin static int
207 1.15 mrg ure_write_1(struct usbnet *un, uint16_t reg, uint16_t index, uint32_t val)
208 1.1 rin {
209 1.1 rin uint16_t byen;
210 1.1 rin uint8_t temp[4];
211 1.1 rin uint8_t shift;
212 1.1 rin
213 1.1 rin byen = URE_BYTE_EN_BYTE;
214 1.1 rin shift = reg & 3;
215 1.1 rin val &= 0xff;
216 1.1 rin
217 1.1 rin if (reg & 3) {
218 1.1 rin byen <<= shift;
219 1.1 rin val <<= (shift << 3);
220 1.1 rin reg &= ~3;
221 1.1 rin }
222 1.1 rin
223 1.1 rin USETDW(temp, val);
224 1.15 mrg return ure_write_mem(un, reg, index | byen, &temp, 4);
225 1.1 rin }
226 1.1 rin
227 1.1 rin static int
228 1.15 mrg ure_write_2(struct usbnet *un, uint16_t reg, uint16_t index, uint32_t val)
229 1.1 rin {
230 1.1 rin uint16_t byen;
231 1.1 rin uint8_t temp[4];
232 1.1 rin uint8_t shift;
233 1.1 rin
234 1.1 rin byen = URE_BYTE_EN_WORD;
235 1.1 rin shift = reg & 2;
236 1.1 rin val &= 0xffff;
237 1.1 rin
238 1.1 rin if (reg & 2) {
239 1.1 rin byen <<= shift;
240 1.1 rin val <<= (shift << 3);
241 1.1 rin reg &= ~3;
242 1.1 rin }
243 1.1 rin
244 1.1 rin USETDW(temp, val);
245 1.15 mrg return ure_write_mem(un, reg, index | byen, &temp, 4);
246 1.1 rin }
247 1.1 rin
248 1.1 rin static int
249 1.15 mrg ure_write_4(struct usbnet *un, uint16_t reg, uint16_t index, uint32_t val)
250 1.1 rin {
251 1.1 rin uint8_t temp[4];
252 1.1 rin
253 1.1 rin USETDW(temp, val);
254 1.15 mrg return ure_write_mem(un, reg, index | URE_BYTE_EN_DWORD, &temp, 4);
255 1.1 rin }
256 1.1 rin
257 1.1 rin static uint16_t
258 1.15 mrg ure_ocp_reg_read(struct usbnet *un, uint16_t addr)
259 1.1 rin {
260 1.1 rin uint16_t reg;
261 1.1 rin
262 1.15 mrg ure_write_2(un, URE_PLA_OCP_GPHY_BASE, URE_MCU_TYPE_PLA, addr & 0xf000);
263 1.1 rin reg = (addr & 0x0fff) | 0xb000;
264 1.1 rin
265 1.15 mrg return ure_read_2(un, reg, URE_MCU_TYPE_PLA);
266 1.1 rin }
267 1.1 rin
268 1.1 rin static void
269 1.15 mrg ure_ocp_reg_write(struct usbnet *un, uint16_t addr, uint16_t data)
270 1.1 rin {
271 1.1 rin uint16_t reg;
272 1.1 rin
273 1.15 mrg ure_write_2(un, URE_PLA_OCP_GPHY_BASE, URE_MCU_TYPE_PLA, addr & 0xf000);
274 1.1 rin reg = (addr & 0x0fff) | 0xb000;
275 1.1 rin
276 1.15 mrg ure_write_2(un, reg, URE_MCU_TYPE_PLA, data);
277 1.1 rin }
278 1.1 rin
279 1.30 mrg static int
280 1.38 thorpej ure_uno_mii_read_reg(struct usbnet *un, int phy, int reg, uint16_t *val)
281 1.1 rin {
282 1.29 mrg
283 1.51 riastrad if (un->un_phyno != phy) {
284 1.51 riastrad *val = 0;
285 1.30 mrg return EINVAL;
286 1.51 riastrad }
287 1.29 mrg
288 1.1 rin /* Let the rgephy driver read the URE_PLA_PHYSTATUS register. */
289 1.1 rin if (reg == RTK_GMEDIASTAT) {
290 1.15 mrg *val = ure_read_1(un, URE_PLA_PHYSTATUS, URE_MCU_TYPE_PLA);
291 1.15 mrg return USBD_NORMAL_COMPLETION;
292 1.1 rin }
293 1.1 rin
294 1.15 mrg *val = ure_ocp_reg_read(un, URE_OCP_BASE_MII + reg * 2);
295 1.1 rin
296 1.30 mrg return 0;
297 1.1 rin }
298 1.1 rin
299 1.30 mrg static int
300 1.38 thorpej ure_uno_mii_write_reg(struct usbnet *un, int phy, int reg, uint16_t val)
301 1.1 rin {
302 1.29 mrg
303 1.29 mrg if (un->un_phyno != phy)
304 1.30 mrg return EINVAL;
305 1.29 mrg
306 1.15 mrg ure_ocp_reg_write(un, URE_OCP_BASE_MII + reg * 2, val);
307 1.1 rin
308 1.30 mrg return 0;
309 1.1 rin }
310 1.1 rin
311 1.1 rin static void
312 1.38 thorpej ure_uno_miibus_statchg(struct ifnet *ifp)
313 1.1 rin {
314 1.15 mrg struct usbnet * const un = ifp->if_softc;
315 1.15 mrg struct mii_data * const mii = usbnet_mii(un);
316 1.1 rin
317 1.19 mrg if (usbnet_isdying(un))
318 1.1 rin return;
319 1.1 rin
320 1.1 rin if ((mii->mii_media_status & (IFM_ACTIVE | IFM_AVALID)) ==
321 1.1 rin (IFM_ACTIVE | IFM_AVALID)) {
322 1.1 rin switch (IFM_SUBTYPE(mii->mii_media_active)) {
323 1.1 rin case IFM_10_T:
324 1.1 rin case IFM_100_TX:
325 1.21 mrg usbnet_set_link(un, true);
326 1.1 rin break;
327 1.1 rin case IFM_1000_T:
328 1.20 mrg if ((un->un_flags & URE_FLAG_8152) != 0)
329 1.1 rin break;
330 1.21 mrg usbnet_set_link(un, true);
331 1.1 rin break;
332 1.1 rin default:
333 1.1 rin break;
334 1.1 rin }
335 1.1 rin }
336 1.1 rin }
337 1.1 rin
338 1.1 rin static void
339 1.48 riastrad ure_uno_mcast(struct ifnet *ifp)
340 1.1 rin {
341 1.48 riastrad struct usbnet *un = ifp->if_softc;
342 1.15 mrg struct ethercom *ec = usbnet_ec(un);
343 1.1 rin struct ether_multi *enm;
344 1.1 rin struct ether_multistep step;
345 1.40 nisimura uint32_t mchash[2] = { 0, 0 };
346 1.40 nisimura uint32_t h = 0, rxmode;
347 1.1 rin
348 1.19 mrg if (usbnet_isdying(un))
349 1.1 rin return;
350 1.1 rin
351 1.15 mrg rxmode = ure_read_4(un, URE_PLA_RCR, URE_MCU_TYPE_PLA);
352 1.40 nisimura rxmode &= ~(URE_RCR_AAP | URE_RCR_AM);
353 1.40 nisimura /* continue to accept my own DA and bcast frames */
354 1.1 rin
355 1.40 nisimura ETHER_LOCK(ec);
356 1.57 riastrad if (usbnet_ispromisc(un)) {
357 1.13 mrg ec->ec_flags |= ETHER_F_ALLMULTI;
358 1.13 mrg ETHER_UNLOCK(ec);
359 1.40 nisimura /* run promisc. mode */
360 1.40 nisimura rxmode |= URE_RCR_AM; /* ??? */
361 1.40 nisimura rxmode |= URE_RCR_AAP;
362 1.59 riastrad mchash[0] = mchash[1] = 0xffffffff;
363 1.40 nisimura goto update;
364 1.40 nisimura }
365 1.40 nisimura ec->ec_flags &= ~ETHER_F_ALLMULTI;
366 1.40 nisimura ETHER_FIRST_MULTI(step, ec, enm);
367 1.40 nisimura while (enm != NULL) {
368 1.40 nisimura if (memcmp(enm->enm_addrlo, enm->enm_addrhi, ETHER_ADDR_LEN)) {
369 1.40 nisimura ec->ec_flags |= ETHER_F_ALLMULTI;
370 1.40 nisimura ETHER_UNLOCK(ec);
371 1.40 nisimura /* accept all mcast frames */
372 1.40 nisimura rxmode |= URE_RCR_AM;
373 1.40 nisimura mchash[0] = mchash[1] = ~0U; /* necessary ?? */
374 1.40 nisimura goto update;
375 1.1 rin }
376 1.40 nisimura h = ether_crc32_be(enm->enm_addrlo, ETHER_ADDR_LEN);
377 1.58 msaitoh mchash[h >> 31] |= 1U << ((h >> 26) & 0x1f);
378 1.40 nisimura ETHER_NEXT_MULTI(step, enm);
379 1.40 nisimura }
380 1.40 nisimura ETHER_UNLOCK(ec);
381 1.40 nisimura if (h != 0) {
382 1.40 nisimura rxmode |= URE_RCR_AM; /* activate mcast hash filter */
383 1.40 nisimura h = bswap32(mchash[0]);
384 1.40 nisimura mchash[0] = bswap32(mchash[1]);
385 1.40 nisimura mchash[1] = h;
386 1.40 nisimura }
387 1.40 nisimura update:
388 1.40 nisimura ure_write_4(un, URE_PLA_MAR0, URE_MCU_TYPE_PLA, mchash[0]);
389 1.40 nisimura ure_write_4(un, URE_PLA_MAR4, URE_MCU_TYPE_PLA, mchash[1]);
390 1.15 mrg ure_write_4(un, URE_PLA_RCR, URE_MCU_TYPE_PLA, rxmode);
391 1.1 rin }
392 1.1 rin
393 1.1 rin static void
394 1.15 mrg ure_reset(struct usbnet *un)
395 1.1 rin {
396 1.1 rin int i;
397 1.1 rin
398 1.15 mrg ure_write_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA, URE_CR_RST);
399 1.1 rin
400 1.1 rin for (i = 0; i < URE_TIMEOUT; i++) {
401 1.42 riastrad if (usbnet_isdying(un))
402 1.42 riastrad return;
403 1.15 mrg if (!(ure_read_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA) &
404 1.1 rin URE_CR_RST))
405 1.1 rin break;
406 1.15 mrg usbd_delay_ms(un->un_udev, 10);
407 1.1 rin }
408 1.1 rin if (i == URE_TIMEOUT)
409 1.15 mrg URE_PRINTF(un, "reset never completed\n");
410 1.1 rin }
411 1.1 rin
412 1.1 rin static int
413 1.46 riastrad ure_uno_init(struct ifnet *ifp)
414 1.1 rin {
415 1.15 mrg struct usbnet * const un = ifp->if_softc;
416 1.1 rin uint8_t eaddr[8];
417 1.1 rin
418 1.1 rin /* Set MAC address. */
419 1.1 rin memset(eaddr, 0, sizeof(eaddr));
420 1.1 rin memcpy(eaddr, CLLADDR(ifp->if_sadl), ETHER_ADDR_LEN);
421 1.15 mrg ure_write_1(un, URE_PLA_CRWECR, URE_MCU_TYPE_PLA, URE_CRWECR_CONFIG);
422 1.15 mrg ure_write_mem(un, URE_PLA_IDR, URE_MCU_TYPE_PLA | URE_BYTE_EN_SIX_BYTES,
423 1.1 rin eaddr, 8);
424 1.15 mrg ure_write_1(un, URE_PLA_CRWECR, URE_MCU_TYPE_PLA, URE_CRWECR_NORAML);
425 1.1 rin
426 1.1 rin /* Reset the packet filter. */
427 1.15 mrg ure_write_2(un, URE_PLA_FMC, URE_MCU_TYPE_PLA,
428 1.15 mrg ure_read_2(un, URE_PLA_FMC, URE_MCU_TYPE_PLA) &
429 1.1 rin ~URE_FMC_FCR_MCU_EN);
430 1.15 mrg ure_write_2(un, URE_PLA_FMC, URE_MCU_TYPE_PLA,
431 1.15 mrg ure_read_2(un, URE_PLA_FMC, URE_MCU_TYPE_PLA) |
432 1.1 rin URE_FMC_FCR_MCU_EN);
433 1.5 msaitoh
434 1.1 rin /* Enable transmit and receive. */
435 1.15 mrg ure_write_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA,
436 1.15 mrg ure_read_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA) | URE_CR_RE |
437 1.1 rin URE_CR_TE);
438 1.1 rin
439 1.15 mrg ure_write_2(un, URE_PLA_MISC_1, URE_MCU_TYPE_PLA,
440 1.15 mrg ure_read_2(un, URE_PLA_MISC_1, URE_MCU_TYPE_PLA) &
441 1.1 rin ~URE_RXDY_GATED_EN);
442 1.1 rin
443 1.55 riastrad return 0;
444 1.1 rin }
445 1.1 rin
446 1.1 rin static void
447 1.38 thorpej ure_uno_stop(struct ifnet *ifp, int disable __unused)
448 1.1 rin {
449 1.15 mrg struct usbnet * const un = ifp->if_softc;
450 1.1 rin
451 1.15 mrg ure_reset(un);
452 1.11 mrg }
453 1.11 mrg
454 1.11 mrg static void
455 1.20 mrg ure_rtl8152_init(struct usbnet *un)
456 1.1 rin {
457 1.1 rin uint32_t pwrctrl;
458 1.1 rin
459 1.1 rin /* Disable ALDPS. */
460 1.15 mrg ure_ocp_reg_write(un, URE_OCP_ALDPS_CONFIG, URE_ENPDNPS | URE_LINKENA |
461 1.1 rin URE_DIS_SDSAVE);
462 1.15 mrg usbd_delay_ms(un->un_udev, 20);
463 1.1 rin
464 1.20 mrg if (un->un_flags & URE_FLAG_VER_4C00) {
465 1.15 mrg ure_write_2(un, URE_PLA_LED_FEATURE, URE_MCU_TYPE_PLA,
466 1.15 mrg ure_read_2(un, URE_PLA_LED_FEATURE, URE_MCU_TYPE_PLA) &
467 1.1 rin ~URE_LED_MODE_MASK);
468 1.1 rin }
469 1.1 rin
470 1.15 mrg ure_write_2(un, URE_USB_UPS_CTRL, URE_MCU_TYPE_USB,
471 1.15 mrg ure_read_2(un, URE_USB_UPS_CTRL, URE_MCU_TYPE_USB) &
472 1.1 rin ~URE_POWER_CUT);
473 1.15 mrg ure_write_2(un, URE_USB_PM_CTRL_STATUS, URE_MCU_TYPE_USB,
474 1.15 mrg ure_read_2(un, URE_USB_PM_CTRL_STATUS, URE_MCU_TYPE_USB) &
475 1.1 rin ~URE_RESUME_INDICATE);
476 1.1 rin
477 1.15 mrg ure_write_2(un, URE_PLA_PHY_PWR, URE_MCU_TYPE_PLA,
478 1.15 mrg ure_read_2(un, URE_PLA_PHY_PWR, URE_MCU_TYPE_PLA) |
479 1.1 rin URE_TX_10M_IDLE_EN | URE_PFM_PWM_SWITCH);
480 1.15 mrg pwrctrl = ure_read_4(un, URE_PLA_MAC_PWR_CTRL, URE_MCU_TYPE_PLA);
481 1.1 rin pwrctrl &= ~URE_MCU_CLK_RATIO_MASK;
482 1.1 rin pwrctrl |= URE_MCU_CLK_RATIO | URE_D3_CLK_GATED_EN;
483 1.15 mrg ure_write_4(un, URE_PLA_MAC_PWR_CTRL, URE_MCU_TYPE_PLA, pwrctrl);
484 1.15 mrg ure_write_2(un, URE_PLA_GPHY_INTR_IMR, URE_MCU_TYPE_PLA,
485 1.1 rin URE_GPHY_STS_MSK | URE_SPEED_DOWN_MSK | URE_SPDWN_RXDV_MSK |
486 1.1 rin URE_SPDWN_LINKCHG_MSK);
487 1.1 rin
488 1.1 rin /* Enable Rx aggregation. */
489 1.15 mrg ure_write_2(un, URE_USB_USB_CTRL, URE_MCU_TYPE_USB,
490 1.15 mrg ure_read_2(un, URE_USB_USB_CTRL, URE_MCU_TYPE_USB) &
491 1.1 rin ~URE_RX_AGG_DISABLE);
492 1.1 rin
493 1.1 rin /* Disable ALDPS. */
494 1.15 mrg ure_ocp_reg_write(un, URE_OCP_ALDPS_CONFIG, URE_ENPDNPS | URE_LINKENA |
495 1.1 rin URE_DIS_SDSAVE);
496 1.15 mrg usbd_delay_ms(un->un_udev, 20);
497 1.1 rin
498 1.20 mrg ure_init_fifo(un);
499 1.1 rin
500 1.15 mrg ure_write_1(un, URE_USB_TX_AGG, URE_MCU_TYPE_USB,
501 1.1 rin URE_TX_AGG_MAX_THRESHOLD);
502 1.15 mrg ure_write_4(un, URE_USB_RX_BUF_TH, URE_MCU_TYPE_USB, URE_RX_THR_HIGH);
503 1.15 mrg ure_write_4(un, URE_USB_TX_DMA, URE_MCU_TYPE_USB,
504 1.1 rin URE_TEST_MODE_DISABLE | URE_TX_SIZE_ADJUST1);
505 1.1 rin }
506 1.1 rin
507 1.1 rin static void
508 1.20 mrg ure_rtl8153_init(struct usbnet *un)
509 1.1 rin {
510 1.1 rin uint16_t val;
511 1.1 rin uint8_t u1u2[8];
512 1.1 rin int i;
513 1.1 rin
514 1.1 rin /* Disable ALDPS. */
515 1.15 mrg ure_ocp_reg_write(un, URE_OCP_POWER_CFG,
516 1.15 mrg ure_ocp_reg_read(un, URE_OCP_POWER_CFG) & ~URE_EN_ALDPS);
517 1.15 mrg usbd_delay_ms(un->un_udev, 20);
518 1.1 rin
519 1.1 rin memset(u1u2, 0x00, sizeof(u1u2));
520 1.15 mrg ure_write_mem(un, URE_USB_TOLERANCE,
521 1.1 rin URE_MCU_TYPE_USB | URE_BYTE_EN_SIX_BYTES, u1u2, sizeof(u1u2));
522 1.1 rin
523 1.6 msaitoh for (i = 0; i < URE_TIMEOUT; i++) {
524 1.42 riastrad if (usbnet_isdying(un))
525 1.42 riastrad return;
526 1.15 mrg if (ure_read_2(un, URE_PLA_BOOT_CTRL, URE_MCU_TYPE_PLA) &
527 1.1 rin URE_AUTOLOAD_DONE)
528 1.1 rin break;
529 1.15 mrg usbd_delay_ms(un->un_udev, 10);
530 1.1 rin }
531 1.1 rin if (i == URE_TIMEOUT)
532 1.15 mrg URE_PRINTF(un, "timeout waiting for chip autoload\n");
533 1.1 rin
534 1.1 rin for (i = 0; i < URE_TIMEOUT; i++) {
535 1.42 riastrad if (usbnet_isdying(un))
536 1.42 riastrad return;
537 1.15 mrg val = ure_ocp_reg_read(un, URE_OCP_PHY_STATUS) &
538 1.1 rin URE_PHY_STAT_MASK;
539 1.1 rin if (val == URE_PHY_STAT_LAN_ON || val == URE_PHY_STAT_PWRDN)
540 1.1 rin break;
541 1.15 mrg usbd_delay_ms(un->un_udev, 10);
542 1.1 rin }
543 1.1 rin if (i == URE_TIMEOUT)
544 1.15 mrg URE_PRINTF(un, "timeout waiting for phy to stabilize\n");
545 1.5 msaitoh
546 1.15 mrg ure_write_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB,
547 1.15 mrg ure_read_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB) &
548 1.1 rin ~URE_U2P3_ENABLE);
549 1.1 rin
550 1.20 mrg if (un->un_flags & URE_FLAG_VER_5C10) {
551 1.15 mrg val = ure_read_2(un, URE_USB_SSPHYLINK2, URE_MCU_TYPE_USB);
552 1.1 rin val &= ~URE_PWD_DN_SCALE_MASK;
553 1.1 rin val |= URE_PWD_DN_SCALE(96);
554 1.15 mrg ure_write_2(un, URE_USB_SSPHYLINK2, URE_MCU_TYPE_USB, val);
555 1.1 rin
556 1.15 mrg ure_write_1(un, URE_USB_USB2PHY, URE_MCU_TYPE_USB,
557 1.15 mrg ure_read_1(un, URE_USB_USB2PHY, URE_MCU_TYPE_USB) |
558 1.1 rin URE_USB2PHY_L1 | URE_USB2PHY_SUSPEND);
559 1.20 mrg } else if (un->un_flags & URE_FLAG_VER_5C20) {
560 1.15 mrg ure_write_1(un, URE_PLA_DMY_REG0, URE_MCU_TYPE_PLA,
561 1.15 mrg ure_read_1(un, URE_PLA_DMY_REG0, URE_MCU_TYPE_PLA) &
562 1.1 rin ~URE_ECM_ALDPS);
563 1.1 rin }
564 1.20 mrg if (un->un_flags & (URE_FLAG_VER_5C20 | URE_FLAG_VER_5C30)) {
565 1.15 mrg val = ure_read_1(un, URE_USB_CSR_DUMMY1, URE_MCU_TYPE_USB);
566 1.15 mrg if (ure_read_2(un, URE_USB_BURST_SIZE, URE_MCU_TYPE_USB) ==
567 1.1 rin 0)
568 1.1 rin val &= ~URE_DYNAMIC_BURST;
569 1.1 rin else
570 1.1 rin val |= URE_DYNAMIC_BURST;
571 1.15 mrg ure_write_1(un, URE_USB_CSR_DUMMY1, URE_MCU_TYPE_USB, val);
572 1.1 rin }
573 1.1 rin
574 1.15 mrg ure_write_1(un, URE_USB_CSR_DUMMY2, URE_MCU_TYPE_USB,
575 1.15 mrg ure_read_1(un, URE_USB_CSR_DUMMY2, URE_MCU_TYPE_USB) |
576 1.1 rin URE_EP4_FULL_FC);
577 1.5 msaitoh
578 1.15 mrg ure_write_2(un, URE_USB_WDT11_CTRL, URE_MCU_TYPE_USB,
579 1.15 mrg ure_read_2(un, URE_USB_WDT11_CTRL, URE_MCU_TYPE_USB) &
580 1.1 rin ~URE_TIMER11_EN);
581 1.1 rin
582 1.15 mrg ure_write_2(un, URE_PLA_LED_FEATURE, URE_MCU_TYPE_PLA,
583 1.15 mrg ure_read_2(un, URE_PLA_LED_FEATURE, URE_MCU_TYPE_PLA) &
584 1.1 rin ~URE_LED_MODE_MASK);
585 1.5 msaitoh
586 1.20 mrg if ((un->un_flags & URE_FLAG_VER_5C10) &&
587 1.15 mrg un->un_udev->ud_speed != USB_SPEED_SUPER)
588 1.1 rin val = URE_LPM_TIMER_500MS;
589 1.1 rin else
590 1.1 rin val = URE_LPM_TIMER_500US;
591 1.15 mrg ure_write_1(un, URE_USB_LPM_CTRL, URE_MCU_TYPE_USB,
592 1.1 rin val | URE_FIFO_EMPTY_1FB | URE_ROK_EXIT_LPM);
593 1.1 rin
594 1.15 mrg val = ure_read_2(un, URE_USB_AFE_CTRL2, URE_MCU_TYPE_USB);
595 1.1 rin val &= ~URE_SEN_VAL_MASK;
596 1.1 rin val |= URE_SEN_VAL_NORMAL | URE_SEL_RXIDLE;
597 1.15 mrg ure_write_2(un, URE_USB_AFE_CTRL2, URE_MCU_TYPE_USB, val);
598 1.1 rin
599 1.15 mrg ure_write_2(un, URE_USB_CONNECT_TIMER, URE_MCU_TYPE_USB, 0x0001);
600 1.1 rin
601 1.15 mrg ure_write_2(un, URE_USB_POWER_CUT, URE_MCU_TYPE_USB,
602 1.15 mrg ure_read_2(un, URE_USB_POWER_CUT, URE_MCU_TYPE_USB) &
603 1.1 rin ~(URE_PWR_EN | URE_PHASE2_EN));
604 1.15 mrg ure_write_2(un, URE_USB_MISC_0, URE_MCU_TYPE_USB,
605 1.15 mrg ure_read_2(un, URE_USB_MISC_0, URE_MCU_TYPE_USB) &
606 1.1 rin ~URE_PCUT_STATUS);
607 1.1 rin
608 1.1 rin memset(u1u2, 0xff, sizeof(u1u2));
609 1.15 mrg ure_write_mem(un, URE_USB_TOLERANCE,
610 1.1 rin URE_MCU_TYPE_USB | URE_BYTE_EN_SIX_BYTES, u1u2, sizeof(u1u2));
611 1.1 rin
612 1.15 mrg ure_write_2(un, URE_PLA_MAC_PWR_CTRL, URE_MCU_TYPE_PLA,
613 1.1 rin URE_ALDPS_SPDWN_RATIO);
614 1.15 mrg ure_write_2(un, URE_PLA_MAC_PWR_CTRL2, URE_MCU_TYPE_PLA,
615 1.1 rin URE_EEE_SPDWN_RATIO);
616 1.15 mrg ure_write_2(un, URE_PLA_MAC_PWR_CTRL3, URE_MCU_TYPE_PLA,
617 1.1 rin URE_PKT_AVAIL_SPDWN_EN | URE_SUSPEND_SPDWN_EN |
618 1.1 rin URE_U1U2_SPDWN_EN | URE_L1_SPDWN_EN);
619 1.15 mrg ure_write_2(un, URE_PLA_MAC_PWR_CTRL4, URE_MCU_TYPE_PLA,
620 1.1 rin URE_PWRSAVE_SPDWN_EN | URE_RXDV_SPDWN_EN | URE_TX10MIDLE_EN |
621 1.1 rin URE_TP100_SPDWN_EN | URE_TP500_SPDWN_EN | URE_TP1000_SPDWN_EN |
622 1.1 rin URE_EEE_SPDWN_EN);
623 1.1 rin
624 1.15 mrg val = ure_read_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB);
625 1.20 mrg if (!(un->un_flags & (URE_FLAG_VER_5C00 | URE_FLAG_VER_5C10)))
626 1.1 rin val |= URE_U2P3_ENABLE;
627 1.1 rin else
628 1.1 rin val &= ~URE_U2P3_ENABLE;
629 1.15 mrg ure_write_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB, val);
630 1.1 rin
631 1.1 rin memset(u1u2, 0x00, sizeof(u1u2));
632 1.15 mrg ure_write_mem(un, URE_USB_TOLERANCE,
633 1.1 rin URE_MCU_TYPE_USB | URE_BYTE_EN_SIX_BYTES, u1u2, sizeof(u1u2));
634 1.1 rin
635 1.1 rin /* Disable ALDPS. */
636 1.15 mrg ure_ocp_reg_write(un, URE_OCP_POWER_CFG,
637 1.15 mrg ure_ocp_reg_read(un, URE_OCP_POWER_CFG) & ~URE_EN_ALDPS);
638 1.15 mrg usbd_delay_ms(un->un_udev, 20);
639 1.1 rin
640 1.20 mrg ure_init_fifo(un);
641 1.1 rin
642 1.1 rin /* Enable Rx aggregation. */
643 1.15 mrg ure_write_2(un, URE_USB_USB_CTRL, URE_MCU_TYPE_USB,
644 1.15 mrg ure_read_2(un, URE_USB_USB_CTRL, URE_MCU_TYPE_USB) &
645 1.1 rin ~URE_RX_AGG_DISABLE);
646 1.1 rin
647 1.15 mrg val = ure_read_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB);
648 1.20 mrg if (!(un->un_flags & (URE_FLAG_VER_5C00 | URE_FLAG_VER_5C10)))
649 1.1 rin val |= URE_U2P3_ENABLE;
650 1.1 rin else
651 1.1 rin val &= ~URE_U2P3_ENABLE;
652 1.15 mrg ure_write_2(un, URE_USB_U2P3_CTRL, URE_MCU_TYPE_USB, val);
653 1.1 rin
654 1.1 rin memset(u1u2, 0xff, sizeof(u1u2));
655 1.15 mrg ure_write_mem(un, URE_USB_TOLERANCE,
656 1.1 rin URE_MCU_TYPE_USB | URE_BYTE_EN_SIX_BYTES, u1u2, sizeof(u1u2));
657 1.1 rin }
658 1.1 rin
659 1.1 rin static void
660 1.20 mrg ure_disable_teredo(struct usbnet *un)
661 1.1 rin {
662 1.15 mrg ure_write_4(un, URE_PLA_TEREDO_CFG, URE_MCU_TYPE_PLA,
663 1.15 mrg ure_read_4(un, URE_PLA_TEREDO_CFG, URE_MCU_TYPE_PLA) &
664 1.1 rin ~(URE_TEREDO_SEL | URE_TEREDO_RS_EVENT_MASK | URE_OOB_TEREDO_EN));
665 1.15 mrg ure_write_2(un, URE_PLA_WDT6_CTRL, URE_MCU_TYPE_PLA,
666 1.1 rin URE_WDT6_SET_MODE);
667 1.15 mrg ure_write_2(un, URE_PLA_REALWOW_TIMER, URE_MCU_TYPE_PLA, 0);
668 1.15 mrg ure_write_4(un, URE_PLA_TEREDO_TIMER, URE_MCU_TYPE_PLA, 0);
669 1.1 rin }
670 1.1 rin
671 1.1 rin static void
672 1.20 mrg ure_init_fifo(struct usbnet *un)
673 1.1 rin {
674 1.40 nisimura uint32_t rxmode, rx_fifo1, rx_fifo2;
675 1.1 rin int i;
676 1.1 rin
677 1.15 mrg ure_write_2(un, URE_PLA_MISC_1, URE_MCU_TYPE_PLA,
678 1.15 mrg ure_read_2(un, URE_PLA_MISC_1, URE_MCU_TYPE_PLA) |
679 1.1 rin URE_RXDY_GATED_EN);
680 1.1 rin
681 1.20 mrg ure_disable_teredo(un);
682 1.1 rin
683 1.40 nisimura rxmode = ure_read_4(un, URE_PLA_RCR, URE_MCU_TYPE_PLA);
684 1.40 nisimura rxmode &= ~URE_RCR_ACPT_ALL;
685 1.40 nisimura rxmode |= URE_RCR_APM | URE_RCR_AB; /* accept my own DA and bcast */
686 1.40 nisimura ure_write_4(un, URE_PLA_RCR, URE_MCU_TYPE_PLA, rxmode);
687 1.1 rin
688 1.20 mrg if (!(un->un_flags & URE_FLAG_8152)) {
689 1.20 mrg if (un->un_flags & (URE_FLAG_VER_5C00 | URE_FLAG_VER_5C10 |
690 1.20 mrg URE_FLAG_VER_5C20))
691 1.15 mrg ure_ocp_reg_write(un, URE_OCP_ADC_CFG,
692 1.1 rin URE_CKADSEL_L | URE_ADC_EN | URE_EN_EMI_L);
693 1.20 mrg if (un->un_flags & URE_FLAG_VER_5C00)
694 1.15 mrg ure_ocp_reg_write(un, URE_OCP_EEE_CFG,
695 1.15 mrg ure_ocp_reg_read(un, URE_OCP_EEE_CFG) &
696 1.1 rin ~URE_CTAP_SHORT_EN);
697 1.15 mrg ure_ocp_reg_write(un, URE_OCP_POWER_CFG,
698 1.15 mrg ure_ocp_reg_read(un, URE_OCP_POWER_CFG) |
699 1.1 rin URE_EEE_CLKDIV_EN);
700 1.15 mrg ure_ocp_reg_write(un, URE_OCP_DOWN_SPEED,
701 1.15 mrg ure_ocp_reg_read(un, URE_OCP_DOWN_SPEED) |
702 1.1 rin URE_EN_10M_BGOFF);
703 1.15 mrg ure_ocp_reg_write(un, URE_OCP_POWER_CFG,
704 1.15 mrg ure_ocp_reg_read(un, URE_OCP_POWER_CFG) |
705 1.1 rin URE_EN_10M_PLLOFF);
706 1.15 mrg ure_ocp_reg_write(un, URE_OCP_SRAM_ADDR, URE_SRAM_IMPEDANCE);
707 1.15 mrg ure_ocp_reg_write(un, URE_OCP_SRAM_DATA, 0x0b13);
708 1.15 mrg ure_write_2(un, URE_PLA_PHY_PWR, URE_MCU_TYPE_PLA,
709 1.15 mrg ure_read_2(un, URE_PLA_PHY_PWR, URE_MCU_TYPE_PLA) |
710 1.1 rin URE_PFM_PWM_SWITCH);
711 1.1 rin
712 1.1 rin /* Enable LPF corner auto tune. */
713 1.15 mrg ure_ocp_reg_write(un, URE_OCP_SRAM_ADDR, URE_SRAM_LPF_CFG);
714 1.15 mrg ure_ocp_reg_write(un, URE_OCP_SRAM_DATA, 0xf70f);
715 1.1 rin
716 1.1 rin /* Adjust 10M amplitude. */
717 1.15 mrg ure_ocp_reg_write(un, URE_OCP_SRAM_ADDR, URE_SRAM_10M_AMP1);
718 1.15 mrg ure_ocp_reg_write(un, URE_OCP_SRAM_DATA, 0x00af);
719 1.15 mrg ure_ocp_reg_write(un, URE_OCP_SRAM_ADDR, URE_SRAM_10M_AMP2);
720 1.15 mrg ure_ocp_reg_write(un, URE_OCP_SRAM_DATA, 0x0208);
721 1.1 rin }
722 1.1 rin
723 1.15 mrg ure_reset(un);
724 1.1 rin
725 1.15 mrg ure_write_1(un, URE_PLA_CR, URE_MCU_TYPE_PLA, 0);
726 1.1 rin
727 1.15 mrg ure_write_1(un, URE_PLA_OOB_CTRL, URE_MCU_TYPE_PLA,
728 1.15 mrg ure_read_1(un, URE_PLA_OOB_CTRL, URE_MCU_TYPE_PLA) &
729 1.1 rin ~URE_NOW_IS_OOB);
730 1.1 rin
731 1.15 mrg ure_write_2(un, URE_PLA_SFF_STS_7, URE_MCU_TYPE_PLA,
732 1.15 mrg ure_read_2(un, URE_PLA_SFF_STS_7, URE_MCU_TYPE_PLA) &
733 1.1 rin ~URE_MCU_BORW_EN);
734 1.1 rin for (i = 0; i < URE_TIMEOUT; i++) {
735 1.42 riastrad if (usbnet_isdying(un))
736 1.42 riastrad return;
737 1.15 mrg if (ure_read_1(un, URE_PLA_OOB_CTRL, URE_MCU_TYPE_PLA) &
738 1.1 rin URE_LINK_LIST_READY)
739 1.1 rin break;
740 1.15 mrg usbd_delay_ms(un->un_udev, 10);
741 1.1 rin }
742 1.1 rin if (i == URE_TIMEOUT)
743 1.15 mrg URE_PRINTF(un, "timeout waiting for OOB control\n");
744 1.15 mrg ure_write_2(un, URE_PLA_SFF_STS_7, URE_MCU_TYPE_PLA,
745 1.15 mrg ure_read_2(un, URE_PLA_SFF_STS_7, URE_MCU_TYPE_PLA) |
746 1.1 rin URE_RE_INIT_LL);
747 1.1 rin for (i = 0; i < URE_TIMEOUT; i++) {
748 1.42 riastrad if (usbnet_isdying(un))
749 1.42 riastrad return;
750 1.15 mrg if (ure_read_1(un, URE_PLA_OOB_CTRL, URE_MCU_TYPE_PLA) &
751 1.1 rin URE_LINK_LIST_READY)
752 1.1 rin break;
753 1.15 mrg usbd_delay_ms(un->un_udev, 10);
754 1.1 rin }
755 1.1 rin if (i == URE_TIMEOUT)
756 1.15 mrg URE_PRINTF(un, "timeout waiting for OOB control\n");
757 1.1 rin
758 1.15 mrg ure_write_2(un, URE_PLA_CPCR, URE_MCU_TYPE_PLA,
759 1.15 mrg ure_read_2(un, URE_PLA_CPCR, URE_MCU_TYPE_PLA) &
760 1.1 rin ~URE_CPCR_RX_VLAN);
761 1.15 mrg ure_write_2(un, URE_PLA_TCR0, URE_MCU_TYPE_PLA,
762 1.15 mrg ure_read_2(un, URE_PLA_TCR0, URE_MCU_TYPE_PLA) |
763 1.1 rin URE_TCR0_AUTO_FIFO);
764 1.1 rin
765 1.1 rin /* Configure Rx FIFO threshold and coalescing. */
766 1.15 mrg ure_write_4(un, URE_PLA_RXFIFO_CTRL0, URE_MCU_TYPE_PLA,
767 1.1 rin URE_RXFIFO_THR1_NORMAL);
768 1.15 mrg if (un->un_udev->ud_speed == USB_SPEED_FULL) {
769 1.1 rin rx_fifo1 = URE_RXFIFO_THR2_FULL;
770 1.1 rin rx_fifo2 = URE_RXFIFO_THR3_FULL;
771 1.1 rin } else {
772 1.1 rin rx_fifo1 = URE_RXFIFO_THR2_HIGH;
773 1.1 rin rx_fifo2 = URE_RXFIFO_THR3_HIGH;
774 1.1 rin }
775 1.15 mrg ure_write_4(un, URE_PLA_RXFIFO_CTRL1, URE_MCU_TYPE_PLA, rx_fifo1);
776 1.15 mrg ure_write_4(un, URE_PLA_RXFIFO_CTRL2, URE_MCU_TYPE_PLA, rx_fifo2);
777 1.1 rin
778 1.1 rin /* Configure Tx FIFO threshold. */
779 1.15 mrg ure_write_4(un, URE_PLA_TXFIFO_CTRL, URE_MCU_TYPE_PLA,
780 1.1 rin URE_TXFIFO_THR_NORMAL);
781 1.1 rin }
782 1.1 rin
783 1.1 rin static int
784 1.1 rin ure_match(device_t parent, cfdata_t match, void *aux)
785 1.1 rin {
786 1.1 rin struct usb_attach_arg *uaa = aux;
787 1.1 rin
788 1.1 rin return usb_lookup(ure_devs, uaa->uaa_vendor, uaa->uaa_product) != NULL ?
789 1.1 rin UMATCH_VENDOR_PRODUCT : UMATCH_NONE;
790 1.1 rin }
791 1.1 rin
792 1.1 rin static void
793 1.1 rin ure_attach(device_t parent, device_t self, void *aux)
794 1.1 rin {
795 1.31 mrg USBNET_MII_DECL_DEFAULT(unm);
796 1.20 mrg struct usbnet * const un = device_private(self);
797 1.1 rin struct usb_attach_arg *uaa = aux;
798 1.1 rin struct usbd_device *dev = uaa->uaa_device;
799 1.1 rin usb_interface_descriptor_t *id;
800 1.1 rin usb_endpoint_descriptor_t *ed;
801 1.11 mrg int error, i;
802 1.1 rin uint16_t ver;
803 1.1 rin uint8_t eaddr[8]; /* 2byte padded */
804 1.1 rin char *devinfop;
805 1.33 bad uint32_t maclo, machi;
806 1.1 rin
807 1.1 rin aprint_naive("\n");
808 1.1 rin aprint_normal("\n");
809 1.15 mrg devinfop = usbd_devinfo_alloc(dev, 0);
810 1.1 rin aprint_normal_dev(self, "%s\n", devinfop);
811 1.1 rin usbd_devinfo_free(devinfop);
812 1.1 rin
813 1.15 mrg un->un_dev = self;
814 1.15 mrg un->un_udev = dev;
815 1.20 mrg un->un_sc = un;
816 1.19 mrg un->un_ops = &ure_ops;
817 1.21 mrg un->un_rx_xfer_flags = USBD_SHORT_XFER_OK;
818 1.21 mrg un->un_tx_xfer_flags = USBD_FORCE_SHORT_XFER;
819 1.21 mrg un->un_rx_list_cnt = URE_RX_LIST_CNT;
820 1.21 mrg un->un_tx_list_cnt = URE_TX_LIST_CNT;
821 1.21 mrg un->un_rx_bufsz = URE_BUFSZ;
822 1.21 mrg un->un_tx_bufsz = URE_BUFSZ;
823 1.8 mrg
824 1.1 rin #define URE_CONFIG_NO 1 /* XXX */
825 1.1 rin error = usbd_set_config_no(dev, URE_CONFIG_NO, 1);
826 1.1 rin if (error) {
827 1.1 rin aprint_error_dev(self, "failed to set configuration: %s\n",
828 1.1 rin usbd_errstr(error));
829 1.1 rin return; /* XXX */
830 1.1 rin }
831 1.1 rin
832 1.1 rin if (uaa->uaa_product == USB_PRODUCT_REALTEK_RTL8152)
833 1.20 mrg un->un_flags |= URE_FLAG_8152;
834 1.1 rin
835 1.1 rin #define URE_IFACE_IDX 0 /* XXX */
836 1.15 mrg error = usbd_device2interface_handle(dev, URE_IFACE_IDX, &un->un_iface);
837 1.1 rin if (error) {
838 1.1 rin aprint_error_dev(self, "failed to get interface handle: %s\n",
839 1.1 rin usbd_errstr(error));
840 1.1 rin return; /* XXX */
841 1.1 rin }
842 1.1 rin
843 1.15 mrg id = usbd_get_interface_descriptor(un->un_iface);
844 1.1 rin for (i = 0; i < id->bNumEndpoints; i++) {
845 1.15 mrg ed = usbd_interface2endpoint_descriptor(un->un_iface, i);
846 1.1 rin if (ed == NULL) {
847 1.1 rin aprint_error_dev(self, "couldn't get ep %d\n", i);
848 1.1 rin return; /* XXX */
849 1.1 rin }
850 1.1 rin if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_IN &&
851 1.1 rin UE_GET_XFERTYPE(ed->bmAttributes) == UE_BULK) {
852 1.15 mrg un->un_ed[USBNET_ENDPT_RX] = ed->bEndpointAddress;
853 1.1 rin } else if (UE_GET_DIR(ed->bEndpointAddress) == UE_DIR_OUT &&
854 1.1 rin UE_GET_XFERTYPE(ed->bmAttributes) == UE_BULK) {
855 1.15 mrg un->un_ed[USBNET_ENDPT_TX] = ed->bEndpointAddress;
856 1.1 rin }
857 1.1 rin }
858 1.1 rin
859 1.15 mrg /* Set these up now for ure_ctl(). */
860 1.56 riastrad usbnet_attach(un);
861 1.1 rin
862 1.15 mrg un->un_phyno = 0;
863 1.15 mrg
864 1.15 mrg ver = ure_read_2(un, URE_PLA_TCR1, URE_MCU_TYPE_PLA) & URE_VERSION_MASK;
865 1.1 rin switch (ver) {
866 1.1 rin case 0x4c00:
867 1.20 mrg un->un_flags |= URE_FLAG_VER_4C00;
868 1.1 rin break;
869 1.1 rin case 0x4c10:
870 1.20 mrg un->un_flags |= URE_FLAG_VER_4C10;
871 1.1 rin break;
872 1.1 rin case 0x5c00:
873 1.20 mrg un->un_flags |= URE_FLAG_VER_5C00;
874 1.1 rin break;
875 1.1 rin case 0x5c10:
876 1.20 mrg un->un_flags |= URE_FLAG_VER_5C10;
877 1.1 rin break;
878 1.1 rin case 0x5c20:
879 1.20 mrg un->un_flags |= URE_FLAG_VER_5C20;
880 1.1 rin break;
881 1.1 rin case 0x5c30:
882 1.20 mrg un->un_flags |= URE_FLAG_VER_5C30;
883 1.1 rin break;
884 1.1 rin default:
885 1.1 rin /* fake addr? or just fail? */
886 1.1 rin break;
887 1.1 rin }
888 1.3 rin aprint_normal_dev(self, "RTL%d %sver %04x\n",
889 1.20 mrg (un->un_flags & URE_FLAG_8152) ? 8152 : 8153,
890 1.20 mrg (un->un_flags != 0) ? "" : "unknown ",
891 1.3 rin ver);
892 1.1 rin
893 1.20 mrg if (un->un_flags & URE_FLAG_8152)
894 1.20 mrg ure_rtl8152_init(un);
895 1.1 rin else
896 1.20 mrg ure_rtl8153_init(un);
897 1.1 rin
898 1.32 bad if ((un->un_flags & URE_FLAG_VER_4C00) ||
899 1.32 bad (un->un_flags & URE_FLAG_VER_4C10))
900 1.15 mrg ure_read_mem(un, URE_PLA_IDR, URE_MCU_TYPE_PLA, eaddr,
901 1.1 rin sizeof(eaddr));
902 1.1 rin else
903 1.15 mrg ure_read_mem(un, URE_PLA_BACKUP, URE_MCU_TYPE_PLA, eaddr,
904 1.1 rin sizeof(eaddr));
905 1.33 bad if (ETHER_IS_ZERO(eaddr)) {
906 1.33 bad maclo = 0x00f2 | (cprng_strong32() & 0xffff0000);
907 1.33 bad machi = cprng_strong32() & 0xffff;
908 1.33 bad eaddr[0] = maclo & 0xff;
909 1.33 bad eaddr[1] = (maclo >> 8) & 0xff;
910 1.33 bad eaddr[2] = (maclo >> 16) & 0xff;
911 1.33 bad eaddr[3] = (maclo >> 24) & 0xff;
912 1.33 bad eaddr[4] = machi & 0xff;
913 1.33 bad eaddr[5] = (machi >> 8) & 0xff;
914 1.33 bad }
915 1.39 skrll memcpy(un->un_eaddr, eaddr, sizeof(un->un_eaddr));
916 1.1 rin
917 1.15 mrg struct ifnet *ifp = usbnet_ifp(un);
918 1.1 rin
919 1.1 rin /*
920 1.1 rin * We don't support TSOv4 and v6 for now, that are required to
921 1.1 rin * be handled in software for some cases.
922 1.1 rin */
923 1.1 rin ifp->if_capabilities = IFCAP_CSUM_IPv4_Tx |
924 1.1 rin IFCAP_CSUM_TCPv4_Tx | IFCAP_CSUM_UDPv4_Tx;
925 1.1 rin #ifdef INET6
926 1.1 rin ifp->if_capabilities |= IFCAP_CSUM_TCPv6_Tx | IFCAP_CSUM_UDPv6_Tx;
927 1.1 rin #endif
928 1.20 mrg if (un->un_flags & ~URE_FLAG_VER_4C00) {
929 1.1 rin ifp->if_capabilities |= IFCAP_CSUM_IPv4_Rx |
930 1.1 rin IFCAP_CSUM_TCPv4_Rx | IFCAP_CSUM_UDPv4_Rx |
931 1.1 rin IFCAP_CSUM_TCPv6_Rx | IFCAP_CSUM_UDPv6_Rx;
932 1.1 rin }
933 1.15 mrg struct ethercom *ec = usbnet_ec(un);
934 1.15 mrg ec->ec_capabilities = ETHERCAP_VLAN_MTU;
935 1.1 rin #ifdef notyet
936 1.15 mrg ec->ec_capabilities |= ETHERCAP_JUMBO_MTU;
937 1.1 rin #endif
938 1.1 rin
939 1.30 mrg unm.un_mii_phyloc = un->un_phyno;
940 1.30 mrg usbnet_attach_ifp(un, IFF_SIMPLEX | IFF_BROADCAST | IFF_MULTICAST,
941 1.30 mrg 0, &unm);
942 1.1 rin }
943 1.1 rin
944 1.1 rin static void
945 1.38 thorpej ure_uno_rx_loop(struct usbnet *un, struct usbnet_chain *c, uint32_t total_len)
946 1.1 rin {
947 1.15 mrg struct ifnet *ifp = usbnet_ifp(un);
948 1.15 mrg uint8_t *buf = c->unc_buf;
949 1.15 mrg uint16_t pkt_len = 0;
950 1.15 mrg uint16_t pkt_count = 0;
951 1.1 rin struct ure_rxpkt rxhdr;
952 1.5 msaitoh
953 1.1 rin do {
954 1.1 rin if (total_len < sizeof(rxhdr)) {
955 1.1 rin DPRINTF(("too few bytes left for a packet header\n"));
956 1.35 thorpej if_statinc(ifp, if_ierrors);
957 1.15 mrg return;
958 1.1 rin }
959 1.1 rin
960 1.15 mrg buf += roundup(pkt_len, 8);
961 1.1 rin
962 1.1 rin memcpy(&rxhdr, buf, sizeof(rxhdr));
963 1.1 rin total_len -= sizeof(rxhdr);
964 1.1 rin
965 1.15 mrg pkt_len = le32toh(rxhdr.ure_pktlen) & URE_RXPKT_LEN_MASK;
966 1.15 mrg DPRINTFN(4, ("next packet is %d bytes\n", pkt_len));
967 1.15 mrg if (pkt_len > total_len) {
968 1.1 rin DPRINTF(("not enough bytes left for next packet\n"));
969 1.35 thorpej if_statinc(ifp, if_ierrors);
970 1.15 mrg return;
971 1.1 rin }
972 1.1 rin
973 1.15 mrg total_len -= roundup(pkt_len, 8);
974 1.1 rin buf += sizeof(rxhdr);
975 1.1 rin
976 1.15 mrg usbnet_enqueue(un, buf, pkt_len - ETHER_CRC_LEN,
977 1.17 mrg ure_rxcsum(ifp, &rxhdr), 0, 0);
978 1.11 mrg
979 1.15 mrg pkt_count++;
980 1.11 mrg
981 1.1 rin } while (total_len > 0);
982 1.1 rin
983 1.15 mrg if (pkt_count)
984 1.19 mrg rnd_add_uint32(usbnet_rndsrc(un), pkt_count);
985 1.1 rin }
986 1.1 rin
987 1.1 rin static int
988 1.1 rin ure_rxcsum(struct ifnet *ifp, struct ure_rxpkt *rp)
989 1.1 rin {
990 1.1 rin int enabled = ifp->if_csum_flags_rx, flags = 0;
991 1.1 rin uint32_t csum, misc;
992 1.1 rin
993 1.1 rin if (enabled == 0)
994 1.1 rin return 0;
995 1.1 rin
996 1.1 rin csum = le32toh(rp->ure_csum);
997 1.1 rin misc = le32toh(rp->ure_misc);
998 1.1 rin
999 1.1 rin if (csum & URE_RXPKT_IPV4_CS) {
1000 1.1 rin flags |= M_CSUM_IPv4;
1001 1.1 rin if (csum & URE_RXPKT_TCP_CS)
1002 1.1 rin flags |= M_CSUM_TCPv4;
1003 1.1 rin if (csum & URE_RXPKT_UDP_CS)
1004 1.1 rin flags |= M_CSUM_UDPv4;
1005 1.6 msaitoh } else if (csum & URE_RXPKT_IPV6_CS) {
1006 1.1 rin flags = 0;
1007 1.1 rin if (csum & URE_RXPKT_TCP_CS)
1008 1.1 rin flags |= M_CSUM_TCPv6;
1009 1.1 rin if (csum & URE_RXPKT_UDP_CS)
1010 1.1 rin flags |= M_CSUM_UDPv6;
1011 1.6 msaitoh }
1012 1.1 rin
1013 1.1 rin flags &= enabled;
1014 1.1 rin if (__predict_false((flags & M_CSUM_IPv4) &&
1015 1.1 rin (misc & URE_RXPKT_IP_F)))
1016 1.1 rin flags |= M_CSUM_IPv4_BAD;
1017 1.1 rin if (__predict_false(
1018 1.1 rin ((flags & (M_CSUM_TCPv4 | M_CSUM_TCPv6)) && (misc & URE_RXPKT_TCP_F))
1019 1.1 rin || ((flags & (M_CSUM_UDPv4 | M_CSUM_UDPv6)) && (misc & URE_RXPKT_UDP_F))
1020 1.1 rin ))
1021 1.1 rin flags |= M_CSUM_TCP_UDP_BAD;
1022 1.1 rin
1023 1.1 rin return flags;
1024 1.1 rin }
1025 1.1 rin
1026 1.15 mrg static unsigned
1027 1.38 thorpej ure_uno_tx_prepare(struct usbnet *un, struct mbuf *m, struct usbnet_chain *c)
1028 1.1 rin {
1029 1.1 rin struct ure_txpkt txhdr;
1030 1.1 rin uint32_t frm_len = 0;
1031 1.15 mrg uint8_t *buf = c->unc_buf;
1032 1.1 rin
1033 1.24 skrll if ((unsigned)m->m_pkthdr.len > un->un_tx_bufsz - sizeof(txhdr))
1034 1.22 mrg return 0;
1035 1.22 mrg
1036 1.1 rin /* header */
1037 1.1 rin txhdr.ure_pktlen = htole32(m->m_pkthdr.len | URE_TXPKT_TX_FS |
1038 1.1 rin URE_TXPKT_TX_LS);
1039 1.1 rin txhdr.ure_csum = htole32(ure_txcsum(m));
1040 1.1 rin memcpy(buf, &txhdr, sizeof(txhdr));
1041 1.1 rin buf += sizeof(txhdr);
1042 1.1 rin frm_len = sizeof(txhdr);
1043 1.1 rin
1044 1.1 rin /* packet */
1045 1.1 rin m_copydata(m, 0, m->m_pkthdr.len, buf);
1046 1.1 rin frm_len += m->m_pkthdr.len;
1047 1.1 rin
1048 1.1 rin DPRINTFN(2, ("tx %d bytes\n", frm_len));
1049 1.1 rin
1050 1.15 mrg return frm_len;
1051 1.1 rin }
1052 1.1 rin
1053 1.1 rin /*
1054 1.1 rin * We need to calculate L4 checksum in software, if the offset of
1055 1.1 rin * L4 header is larger than 0x7ff = 2047.
1056 1.1 rin */
1057 1.1 rin static uint32_t
1058 1.1 rin ure_txcsum(struct mbuf *m)
1059 1.1 rin {
1060 1.1 rin struct ether_header *eh;
1061 1.1 rin int flags = m->m_pkthdr.csum_flags;
1062 1.1 rin uint32_t data = m->m_pkthdr.csum_data;
1063 1.1 rin uint32_t reg = 0;
1064 1.1 rin int l3off, l4off;
1065 1.1 rin uint16_t type;
1066 1.1 rin
1067 1.1 rin if (flags == 0)
1068 1.1 rin return 0;
1069 1.1 rin
1070 1.2 rin if (__predict_true(m->m_len >= (int)sizeof(*eh))) {
1071 1.1 rin eh = mtod(m, struct ether_header *);
1072 1.1 rin type = eh->ether_type;
1073 1.1 rin } else
1074 1.1 rin m_copydata(m, offsetof(struct ether_header, ether_type),
1075 1.1 rin sizeof(type), &type);
1076 1.1 rin switch (type = htons(type)) {
1077 1.1 rin case ETHERTYPE_IP:
1078 1.1 rin case ETHERTYPE_IPV6:
1079 1.1 rin l3off = ETHER_HDR_LEN;
1080 1.1 rin break;
1081 1.1 rin case ETHERTYPE_VLAN:
1082 1.1 rin l3off = ETHER_HDR_LEN + ETHER_VLAN_ENCAP_LEN;
1083 1.1 rin break;
1084 1.1 rin default:
1085 1.1 rin return 0;
1086 1.1 rin }
1087 1.1 rin
1088 1.1 rin if (flags & (M_CSUM_TCPv4 | M_CSUM_UDPv4)) {
1089 1.1 rin l4off = l3off + M_CSUM_DATA_IPv4_IPHL(data);
1090 1.1 rin if (__predict_false(l4off > URE_L4_OFFSET_MAX)) {
1091 1.1 rin in_undefer_cksum(m, l3off, flags);
1092 1.1 rin return 0;
1093 1.1 rin }
1094 1.1 rin reg |= URE_TXPKT_IPV4_CS;
1095 1.1 rin if (flags & M_CSUM_TCPv4)
1096 1.1 rin reg |= URE_TXPKT_TCP_CS;
1097 1.1 rin else
1098 1.1 rin reg |= URE_TXPKT_UDP_CS;
1099 1.1 rin reg |= l4off << URE_L4_OFFSET_SHIFT;
1100 1.1 rin }
1101 1.1 rin #ifdef INET6
1102 1.1 rin else if (flags & (M_CSUM_TCPv6 | M_CSUM_UDPv6)) {
1103 1.1 rin l4off = l3off + M_CSUM_DATA_IPv6_IPHL(data);
1104 1.1 rin if (__predict_false(l4off > URE_L4_OFFSET_MAX)) {
1105 1.1 rin in6_undefer_cksum(m, l3off, flags);
1106 1.1 rin return 0;
1107 1.1 rin }
1108 1.1 rin reg |= URE_TXPKT_IPV6_CS;
1109 1.1 rin if (flags & M_CSUM_TCPv6)
1110 1.1 rin reg |= URE_TXPKT_TCP_CS;
1111 1.1 rin else
1112 1.1 rin reg |= URE_TXPKT_UDP_CS;
1113 1.1 rin reg |= l4off << URE_L4_OFFSET_SHIFT;
1114 1.1 rin }
1115 1.1 rin #endif
1116 1.1 rin else if (flags & M_CSUM_IPv4)
1117 1.1 rin reg |= URE_TXPKT_IPV4_CS;
1118 1.1 rin
1119 1.1 rin return reg;
1120 1.1 rin }
1121 1.20 mrg
1122 1.26 mrg #ifdef _MODULE
1123 1.26 mrg #include "ioconf.c"
1124 1.26 mrg #endif
1125 1.26 mrg
1126 1.26 mrg USBNET_MODULE(ure)
1127