thermal: Convert to devm_ioremap_resource()
[linux-2.6.git] / drivers / net / usb / smsc75xx.c
blob251a3354a4b049b2299233aa90606f400e5ccf2b
1 /***************************************************************************
3 * Copyright (C) 2007-2010 SMSC
5 * This program is free software; you can redistribute it and/or
6 * modify it under the terms of the GNU General Public License
7 * as published by the Free Software Foundation; either version 2
8 * of the License, or (at your option) any later version.
10 * This program is distributed in the hope that it will be useful,
11 * but WITHOUT ANY WARRANTY; without even the implied warranty of
12 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
13 * GNU General Public License for more details.
15 * You should have received a copy of the GNU General Public License
16 * along with this program; if not, write to the Free Software
17 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
19 *****************************************************************************/
21 #include <linux/module.h>
22 #include <linux/kmod.h>
23 #include <linux/init.h>
24 #include <linux/netdevice.h>
25 #include <linux/etherdevice.h>
26 #include <linux/ethtool.h>
27 #include <linux/mii.h>
28 #include <linux/usb.h>
29 #include <linux/bitrev.h>
30 #include <linux/crc16.h>
31 #include <linux/crc32.h>
32 #include <linux/usb/usbnet.h>
33 #include <linux/slab.h>
34 #include "smsc75xx.h"
36 #define SMSC_CHIPNAME "smsc75xx"
37 #define SMSC_DRIVER_VERSION "1.0.0"
38 #define HS_USB_PKT_SIZE (512)
39 #define FS_USB_PKT_SIZE (64)
40 #define DEFAULT_HS_BURST_CAP_SIZE (16 * 1024 + 5 * HS_USB_PKT_SIZE)
41 #define DEFAULT_FS_BURST_CAP_SIZE (6 * 1024 + 33 * FS_USB_PKT_SIZE)
42 #define DEFAULT_BULK_IN_DELAY (0x00002000)
43 #define MAX_SINGLE_PACKET_SIZE (9000)
44 #define LAN75XX_EEPROM_MAGIC (0x7500)
45 #define EEPROM_MAC_OFFSET (0x01)
46 #define DEFAULT_TX_CSUM_ENABLE (true)
47 #define DEFAULT_RX_CSUM_ENABLE (true)
48 #define DEFAULT_TSO_ENABLE (true)
49 #define SMSC75XX_INTERNAL_PHY_ID (1)
50 #define SMSC75XX_TX_OVERHEAD (8)
51 #define MAX_RX_FIFO_SIZE (20 * 1024)
52 #define MAX_TX_FIFO_SIZE (12 * 1024)
53 #define USB_VENDOR_ID_SMSC (0x0424)
54 #define USB_PRODUCT_ID_LAN7500 (0x7500)
55 #define USB_PRODUCT_ID_LAN7505 (0x7505)
56 #define RXW_PADDING 2
57 #define SUPPORTED_WAKE (WAKE_PHY | WAKE_UCAST | WAKE_BCAST | \
58 WAKE_MCAST | WAKE_ARP | WAKE_MAGIC)
60 #define SUSPEND_SUSPEND0 (0x01)
61 #define SUSPEND_SUSPEND1 (0x02)
62 #define SUSPEND_SUSPEND2 (0x04)
63 #define SUSPEND_SUSPEND3 (0x08)
64 #define SUSPEND_ALLMODES (SUSPEND_SUSPEND0 | SUSPEND_SUSPEND1 | \
65 SUSPEND_SUSPEND2 | SUSPEND_SUSPEND3)
67 struct smsc75xx_priv {
68 struct usbnet *dev;
69 u32 rfe_ctl;
70 u32 wolopts;
71 u32 multicast_hash_table[DP_SEL_VHF_HASH_LEN];
72 struct mutex dataport_mutex;
73 spinlock_t rfe_ctl_lock;
74 struct work_struct set_multicast;
75 u8 suspend_flags;
78 struct usb_context {
79 struct usb_ctrlrequest req;
80 struct usbnet *dev;
83 static bool turbo_mode = true;
84 module_param(turbo_mode, bool, 0644);
85 MODULE_PARM_DESC(turbo_mode, "Enable multiple frames per Rx transaction");
87 static int __must_check __smsc75xx_read_reg(struct usbnet *dev, u32 index,
88 u32 *data, int in_pm)
90 u32 buf;
91 int ret;
92 int (*fn)(struct usbnet *, u8, u8, u16, u16, void *, u16);
94 BUG_ON(!dev);
96 if (!in_pm)
97 fn = usbnet_read_cmd;
98 else
99 fn = usbnet_read_cmd_nopm;
101 ret = fn(dev, USB_VENDOR_REQUEST_READ_REGISTER, USB_DIR_IN
102 | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
103 0, index, &buf, 4);
104 if (unlikely(ret < 0))
105 netdev_warn(dev->net, "Failed to read reg index 0x%08x: %d\n",
106 index, ret);
108 le32_to_cpus(&buf);
109 *data = buf;
111 return ret;
114 static int __must_check __smsc75xx_write_reg(struct usbnet *dev, u32 index,
115 u32 data, int in_pm)
117 u32 buf;
118 int ret;
119 int (*fn)(struct usbnet *, u8, u8, u16, u16, const void *, u16);
121 BUG_ON(!dev);
123 if (!in_pm)
124 fn = usbnet_write_cmd;
125 else
126 fn = usbnet_write_cmd_nopm;
128 buf = data;
129 cpu_to_le32s(&buf);
131 ret = fn(dev, USB_VENDOR_REQUEST_WRITE_REGISTER, USB_DIR_OUT
132 | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
133 0, index, &buf, 4);
134 if (unlikely(ret < 0))
135 netdev_warn(dev->net, "Failed to write reg index 0x%08x: %d\n",
136 index, ret);
138 return ret;
141 static int __must_check smsc75xx_read_reg_nopm(struct usbnet *dev, u32 index,
142 u32 *data)
144 return __smsc75xx_read_reg(dev, index, data, 1);
147 static int __must_check smsc75xx_write_reg_nopm(struct usbnet *dev, u32 index,
148 u32 data)
150 return __smsc75xx_write_reg(dev, index, data, 1);
153 static int __must_check smsc75xx_read_reg(struct usbnet *dev, u32 index,
154 u32 *data)
156 return __smsc75xx_read_reg(dev, index, data, 0);
159 static int __must_check smsc75xx_write_reg(struct usbnet *dev, u32 index,
160 u32 data)
162 return __smsc75xx_write_reg(dev, index, data, 0);
165 /* Loop until the read is completed with timeout
166 * called with phy_mutex held */
167 static __must_check int __smsc75xx_phy_wait_not_busy(struct usbnet *dev,
168 int in_pm)
170 unsigned long start_time = jiffies;
171 u32 val;
172 int ret;
174 do {
175 ret = __smsc75xx_read_reg(dev, MII_ACCESS, &val, in_pm);
176 if (ret < 0) {
177 netdev_warn(dev->net, "Error reading MII_ACCESS\n");
178 return ret;
181 if (!(val & MII_ACCESS_BUSY))
182 return 0;
183 } while (!time_after(jiffies, start_time + HZ));
185 return -EIO;
188 static int __smsc75xx_mdio_read(struct net_device *netdev, int phy_id, int idx,
189 int in_pm)
191 struct usbnet *dev = netdev_priv(netdev);
192 u32 val, addr;
193 int ret;
195 mutex_lock(&dev->phy_mutex);
197 /* confirm MII not busy */
198 ret = __smsc75xx_phy_wait_not_busy(dev, in_pm);
199 if (ret < 0) {
200 netdev_warn(dev->net, "MII is busy in smsc75xx_mdio_read\n");
201 goto done;
204 /* set the address, index & direction (read from PHY) */
205 phy_id &= dev->mii.phy_id_mask;
206 idx &= dev->mii.reg_num_mask;
207 addr = ((phy_id << MII_ACCESS_PHY_ADDR_SHIFT) & MII_ACCESS_PHY_ADDR)
208 | ((idx << MII_ACCESS_REG_ADDR_SHIFT) & MII_ACCESS_REG_ADDR)
209 | MII_ACCESS_READ | MII_ACCESS_BUSY;
210 ret = __smsc75xx_write_reg(dev, MII_ACCESS, addr, in_pm);
211 if (ret < 0) {
212 netdev_warn(dev->net, "Error writing MII_ACCESS\n");
213 goto done;
216 ret = __smsc75xx_phy_wait_not_busy(dev, in_pm);
217 if (ret < 0) {
218 netdev_warn(dev->net, "Timed out reading MII reg %02X\n", idx);
219 goto done;
222 ret = __smsc75xx_read_reg(dev, MII_DATA, &val, in_pm);
223 if (ret < 0) {
224 netdev_warn(dev->net, "Error reading MII_DATA\n");
225 goto done;
228 ret = (u16)(val & 0xFFFF);
230 done:
231 mutex_unlock(&dev->phy_mutex);
232 return ret;
235 static void __smsc75xx_mdio_write(struct net_device *netdev, int phy_id,
236 int idx, int regval, int in_pm)
238 struct usbnet *dev = netdev_priv(netdev);
239 u32 val, addr;
240 int ret;
242 mutex_lock(&dev->phy_mutex);
244 /* confirm MII not busy */
245 ret = __smsc75xx_phy_wait_not_busy(dev, in_pm);
246 if (ret < 0) {
247 netdev_warn(dev->net, "MII is busy in smsc75xx_mdio_write\n");
248 goto done;
251 val = regval;
252 ret = __smsc75xx_write_reg(dev, MII_DATA, val, in_pm);
253 if (ret < 0) {
254 netdev_warn(dev->net, "Error writing MII_DATA\n");
255 goto done;
258 /* set the address, index & direction (write to PHY) */
259 phy_id &= dev->mii.phy_id_mask;
260 idx &= dev->mii.reg_num_mask;
261 addr = ((phy_id << MII_ACCESS_PHY_ADDR_SHIFT) & MII_ACCESS_PHY_ADDR)
262 | ((idx << MII_ACCESS_REG_ADDR_SHIFT) & MII_ACCESS_REG_ADDR)
263 | MII_ACCESS_WRITE | MII_ACCESS_BUSY;
264 ret = __smsc75xx_write_reg(dev, MII_ACCESS, addr, in_pm);
265 if (ret < 0) {
266 netdev_warn(dev->net, "Error writing MII_ACCESS\n");
267 goto done;
270 ret = __smsc75xx_phy_wait_not_busy(dev, in_pm);
271 if (ret < 0) {
272 netdev_warn(dev->net, "Timed out writing MII reg %02X\n", idx);
273 goto done;
276 done:
277 mutex_unlock(&dev->phy_mutex);
280 static int smsc75xx_mdio_read_nopm(struct net_device *netdev, int phy_id,
281 int idx)
283 return __smsc75xx_mdio_read(netdev, phy_id, idx, 1);
286 static void smsc75xx_mdio_write_nopm(struct net_device *netdev, int phy_id,
287 int idx, int regval)
289 __smsc75xx_mdio_write(netdev, phy_id, idx, regval, 1);
292 static int smsc75xx_mdio_read(struct net_device *netdev, int phy_id, int idx)
294 return __smsc75xx_mdio_read(netdev, phy_id, idx, 0);
297 static void smsc75xx_mdio_write(struct net_device *netdev, int phy_id, int idx,
298 int regval)
300 __smsc75xx_mdio_write(netdev, phy_id, idx, regval, 0);
303 static int smsc75xx_wait_eeprom(struct usbnet *dev)
305 unsigned long start_time = jiffies;
306 u32 val;
307 int ret;
309 do {
310 ret = smsc75xx_read_reg(dev, E2P_CMD, &val);
311 if (ret < 0) {
312 netdev_warn(dev->net, "Error reading E2P_CMD\n");
313 return ret;
316 if (!(val & E2P_CMD_BUSY) || (val & E2P_CMD_TIMEOUT))
317 break;
318 udelay(40);
319 } while (!time_after(jiffies, start_time + HZ));
321 if (val & (E2P_CMD_TIMEOUT | E2P_CMD_BUSY)) {
322 netdev_warn(dev->net, "EEPROM read operation timeout\n");
323 return -EIO;
326 return 0;
329 static int smsc75xx_eeprom_confirm_not_busy(struct usbnet *dev)
331 unsigned long start_time = jiffies;
332 u32 val;
333 int ret;
335 do {
336 ret = smsc75xx_read_reg(dev, E2P_CMD, &val);
337 if (ret < 0) {
338 netdev_warn(dev->net, "Error reading E2P_CMD\n");
339 return ret;
342 if (!(val & E2P_CMD_BUSY))
343 return 0;
345 udelay(40);
346 } while (!time_after(jiffies, start_time + HZ));
348 netdev_warn(dev->net, "EEPROM is busy\n");
349 return -EIO;
352 static int smsc75xx_read_eeprom(struct usbnet *dev, u32 offset, u32 length,
353 u8 *data)
355 u32 val;
356 int i, ret;
358 BUG_ON(!dev);
359 BUG_ON(!data);
361 ret = smsc75xx_eeprom_confirm_not_busy(dev);
362 if (ret)
363 return ret;
365 for (i = 0; i < length; i++) {
366 val = E2P_CMD_BUSY | E2P_CMD_READ | (offset & E2P_CMD_ADDR);
367 ret = smsc75xx_write_reg(dev, E2P_CMD, val);
368 if (ret < 0) {
369 netdev_warn(dev->net, "Error writing E2P_CMD\n");
370 return ret;
373 ret = smsc75xx_wait_eeprom(dev);
374 if (ret < 0)
375 return ret;
377 ret = smsc75xx_read_reg(dev, E2P_DATA, &val);
378 if (ret < 0) {
379 netdev_warn(dev->net, "Error reading E2P_DATA\n");
380 return ret;
383 data[i] = val & 0xFF;
384 offset++;
387 return 0;
390 static int smsc75xx_write_eeprom(struct usbnet *dev, u32 offset, u32 length,
391 u8 *data)
393 u32 val;
394 int i, ret;
396 BUG_ON(!dev);
397 BUG_ON(!data);
399 ret = smsc75xx_eeprom_confirm_not_busy(dev);
400 if (ret)
401 return ret;
403 /* Issue write/erase enable command */
404 val = E2P_CMD_BUSY | E2P_CMD_EWEN;
405 ret = smsc75xx_write_reg(dev, E2P_CMD, val);
406 if (ret < 0) {
407 netdev_warn(dev->net, "Error writing E2P_CMD\n");
408 return ret;
411 ret = smsc75xx_wait_eeprom(dev);
412 if (ret < 0)
413 return ret;
415 for (i = 0; i < length; i++) {
417 /* Fill data register */
418 val = data[i];
419 ret = smsc75xx_write_reg(dev, E2P_DATA, val);
420 if (ret < 0) {
421 netdev_warn(dev->net, "Error writing E2P_DATA\n");
422 return ret;
425 /* Send "write" command */
426 val = E2P_CMD_BUSY | E2P_CMD_WRITE | (offset & E2P_CMD_ADDR);
427 ret = smsc75xx_write_reg(dev, E2P_CMD, val);
428 if (ret < 0) {
429 netdev_warn(dev->net, "Error writing E2P_CMD\n");
430 return ret;
433 ret = smsc75xx_wait_eeprom(dev);
434 if (ret < 0)
435 return ret;
437 offset++;
440 return 0;
443 static int smsc75xx_dataport_wait_not_busy(struct usbnet *dev)
445 int i, ret;
447 for (i = 0; i < 100; i++) {
448 u32 dp_sel;
449 ret = smsc75xx_read_reg(dev, DP_SEL, &dp_sel);
450 if (ret < 0) {
451 netdev_warn(dev->net, "Error reading DP_SEL\n");
452 return ret;
455 if (dp_sel & DP_SEL_DPRDY)
456 return 0;
458 udelay(40);
461 netdev_warn(dev->net, "smsc75xx_dataport_wait_not_busy timed out\n");
463 return -EIO;
466 static int smsc75xx_dataport_write(struct usbnet *dev, u32 ram_select, u32 addr,
467 u32 length, u32 *buf)
469 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
470 u32 dp_sel;
471 int i, ret;
473 mutex_lock(&pdata->dataport_mutex);
475 ret = smsc75xx_dataport_wait_not_busy(dev);
476 if (ret < 0) {
477 netdev_warn(dev->net, "smsc75xx_dataport_write busy on entry\n");
478 goto done;
481 ret = smsc75xx_read_reg(dev, DP_SEL, &dp_sel);
482 if (ret < 0) {
483 netdev_warn(dev->net, "Error reading DP_SEL\n");
484 goto done;
487 dp_sel &= ~DP_SEL_RSEL;
488 dp_sel |= ram_select;
489 ret = smsc75xx_write_reg(dev, DP_SEL, dp_sel);
490 if (ret < 0) {
491 netdev_warn(dev->net, "Error writing DP_SEL\n");
492 goto done;
495 for (i = 0; i < length; i++) {
496 ret = smsc75xx_write_reg(dev, DP_ADDR, addr + i);
497 if (ret < 0) {
498 netdev_warn(dev->net, "Error writing DP_ADDR\n");
499 goto done;
502 ret = smsc75xx_write_reg(dev, DP_DATA, buf[i]);
503 if (ret < 0) {
504 netdev_warn(dev->net, "Error writing DP_DATA\n");
505 goto done;
508 ret = smsc75xx_write_reg(dev, DP_CMD, DP_CMD_WRITE);
509 if (ret < 0) {
510 netdev_warn(dev->net, "Error writing DP_CMD\n");
511 goto done;
514 ret = smsc75xx_dataport_wait_not_busy(dev);
515 if (ret < 0) {
516 netdev_warn(dev->net, "smsc75xx_dataport_write timeout\n");
517 goto done;
521 done:
522 mutex_unlock(&pdata->dataport_mutex);
523 return ret;
526 /* returns hash bit number for given MAC address */
527 static u32 smsc75xx_hash(char addr[ETH_ALEN])
529 return (ether_crc(ETH_ALEN, addr) >> 23) & 0x1ff;
532 static void smsc75xx_deferred_multicast_write(struct work_struct *param)
534 struct smsc75xx_priv *pdata =
535 container_of(param, struct smsc75xx_priv, set_multicast);
536 struct usbnet *dev = pdata->dev;
537 int ret;
539 netif_dbg(dev, drv, dev->net, "deferred multicast write 0x%08x\n",
540 pdata->rfe_ctl);
542 smsc75xx_dataport_write(dev, DP_SEL_VHF, DP_SEL_VHF_VLAN_LEN,
543 DP_SEL_VHF_HASH_LEN, pdata->multicast_hash_table);
545 ret = smsc75xx_write_reg(dev, RFE_CTL, pdata->rfe_ctl);
546 if (ret < 0)
547 netdev_warn(dev->net, "Error writing RFE_CRL\n");
550 static void smsc75xx_set_multicast(struct net_device *netdev)
552 struct usbnet *dev = netdev_priv(netdev);
553 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
554 unsigned long flags;
555 int i;
557 spin_lock_irqsave(&pdata->rfe_ctl_lock, flags);
559 pdata->rfe_ctl &=
560 ~(RFE_CTL_AU | RFE_CTL_AM | RFE_CTL_DPF | RFE_CTL_MHF);
561 pdata->rfe_ctl |= RFE_CTL_AB;
563 for (i = 0; i < DP_SEL_VHF_HASH_LEN; i++)
564 pdata->multicast_hash_table[i] = 0;
566 if (dev->net->flags & IFF_PROMISC) {
567 netif_dbg(dev, drv, dev->net, "promiscuous mode enabled\n");
568 pdata->rfe_ctl |= RFE_CTL_AM | RFE_CTL_AU;
569 } else if (dev->net->flags & IFF_ALLMULTI) {
570 netif_dbg(dev, drv, dev->net, "receive all multicast enabled\n");
571 pdata->rfe_ctl |= RFE_CTL_AM | RFE_CTL_DPF;
572 } else if (!netdev_mc_empty(dev->net)) {
573 struct netdev_hw_addr *ha;
575 netif_dbg(dev, drv, dev->net, "receive multicast hash filter\n");
577 pdata->rfe_ctl |= RFE_CTL_MHF | RFE_CTL_DPF;
579 netdev_for_each_mc_addr(ha, netdev) {
580 u32 bitnum = smsc75xx_hash(ha->addr);
581 pdata->multicast_hash_table[bitnum / 32] |=
582 (1 << (bitnum % 32));
584 } else {
585 netif_dbg(dev, drv, dev->net, "receive own packets only\n");
586 pdata->rfe_ctl |= RFE_CTL_DPF;
589 spin_unlock_irqrestore(&pdata->rfe_ctl_lock, flags);
591 /* defer register writes to a sleepable context */
592 schedule_work(&pdata->set_multicast);
595 static int smsc75xx_update_flowcontrol(struct usbnet *dev, u8 duplex,
596 u16 lcladv, u16 rmtadv)
598 u32 flow = 0, fct_flow = 0;
599 int ret;
601 if (duplex == DUPLEX_FULL) {
602 u8 cap = mii_resolve_flowctrl_fdx(lcladv, rmtadv);
604 if (cap & FLOW_CTRL_TX) {
605 flow = (FLOW_TX_FCEN | 0xFFFF);
606 /* set fct_flow thresholds to 20% and 80% */
607 fct_flow = (8 << 8) | 32;
610 if (cap & FLOW_CTRL_RX)
611 flow |= FLOW_RX_FCEN;
613 netif_dbg(dev, link, dev->net, "rx pause %s, tx pause %s\n",
614 (cap & FLOW_CTRL_RX ? "enabled" : "disabled"),
615 (cap & FLOW_CTRL_TX ? "enabled" : "disabled"));
616 } else {
617 netif_dbg(dev, link, dev->net, "half duplex\n");
620 ret = smsc75xx_write_reg(dev, FLOW, flow);
621 if (ret < 0) {
622 netdev_warn(dev->net, "Error writing FLOW\n");
623 return ret;
626 ret = smsc75xx_write_reg(dev, FCT_FLOW, fct_flow);
627 if (ret < 0) {
628 netdev_warn(dev->net, "Error writing FCT_FLOW\n");
629 return ret;
632 return 0;
635 static int smsc75xx_link_reset(struct usbnet *dev)
637 struct mii_if_info *mii = &dev->mii;
638 struct ethtool_cmd ecmd = { .cmd = ETHTOOL_GSET };
639 u16 lcladv, rmtadv;
640 int ret;
642 /* write to clear phy interrupt status */
643 smsc75xx_mdio_write(dev->net, mii->phy_id, PHY_INT_SRC,
644 PHY_INT_SRC_CLEAR_ALL);
646 ret = smsc75xx_write_reg(dev, INT_STS, INT_STS_CLEAR_ALL);
647 if (ret < 0) {
648 netdev_warn(dev->net, "Error writing INT_STS\n");
649 return ret;
652 mii_check_media(mii, 1, 1);
653 mii_ethtool_gset(&dev->mii, &ecmd);
654 lcladv = smsc75xx_mdio_read(dev->net, mii->phy_id, MII_ADVERTISE);
655 rmtadv = smsc75xx_mdio_read(dev->net, mii->phy_id, MII_LPA);
657 netif_dbg(dev, link, dev->net, "speed: %u duplex: %d lcladv: %04x rmtadv: %04x\n",
658 ethtool_cmd_speed(&ecmd), ecmd.duplex, lcladv, rmtadv);
660 return smsc75xx_update_flowcontrol(dev, ecmd.duplex, lcladv, rmtadv);
663 static void smsc75xx_status(struct usbnet *dev, struct urb *urb)
665 u32 intdata;
667 if (urb->actual_length != 4) {
668 netdev_warn(dev->net, "unexpected urb length %d\n",
669 urb->actual_length);
670 return;
673 memcpy(&intdata, urb->transfer_buffer, 4);
674 le32_to_cpus(&intdata);
676 netif_dbg(dev, link, dev->net, "intdata: 0x%08X\n", intdata);
678 if (intdata & INT_ENP_PHY_INT)
679 usbnet_defer_kevent(dev, EVENT_LINK_RESET);
680 else
681 netdev_warn(dev->net, "unexpected interrupt, intdata=0x%08X\n",
682 intdata);
685 static int smsc75xx_ethtool_get_eeprom_len(struct net_device *net)
687 return MAX_EEPROM_SIZE;
690 static int smsc75xx_ethtool_get_eeprom(struct net_device *netdev,
691 struct ethtool_eeprom *ee, u8 *data)
693 struct usbnet *dev = netdev_priv(netdev);
695 ee->magic = LAN75XX_EEPROM_MAGIC;
697 return smsc75xx_read_eeprom(dev, ee->offset, ee->len, data);
700 static int smsc75xx_ethtool_set_eeprom(struct net_device *netdev,
701 struct ethtool_eeprom *ee, u8 *data)
703 struct usbnet *dev = netdev_priv(netdev);
705 if (ee->magic != LAN75XX_EEPROM_MAGIC) {
706 netdev_warn(dev->net, "EEPROM: magic value mismatch: 0x%x\n",
707 ee->magic);
708 return -EINVAL;
711 return smsc75xx_write_eeprom(dev, ee->offset, ee->len, data);
714 static void smsc75xx_ethtool_get_wol(struct net_device *net,
715 struct ethtool_wolinfo *wolinfo)
717 struct usbnet *dev = netdev_priv(net);
718 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
720 wolinfo->supported = SUPPORTED_WAKE;
721 wolinfo->wolopts = pdata->wolopts;
724 static int smsc75xx_ethtool_set_wol(struct net_device *net,
725 struct ethtool_wolinfo *wolinfo)
727 struct usbnet *dev = netdev_priv(net);
728 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
729 int ret;
731 pdata->wolopts = wolinfo->wolopts & SUPPORTED_WAKE;
733 ret = device_set_wakeup_enable(&dev->udev->dev, pdata->wolopts);
734 if (ret < 0)
735 netdev_warn(dev->net, "device_set_wakeup_enable error %d\n", ret);
737 return ret;
740 static const struct ethtool_ops smsc75xx_ethtool_ops = {
741 .get_link = usbnet_get_link,
742 .nway_reset = usbnet_nway_reset,
743 .get_drvinfo = usbnet_get_drvinfo,
744 .get_msglevel = usbnet_get_msglevel,
745 .set_msglevel = usbnet_set_msglevel,
746 .get_settings = usbnet_get_settings,
747 .set_settings = usbnet_set_settings,
748 .get_eeprom_len = smsc75xx_ethtool_get_eeprom_len,
749 .get_eeprom = smsc75xx_ethtool_get_eeprom,
750 .set_eeprom = smsc75xx_ethtool_set_eeprom,
751 .get_wol = smsc75xx_ethtool_get_wol,
752 .set_wol = smsc75xx_ethtool_set_wol,
755 static int smsc75xx_ioctl(struct net_device *netdev, struct ifreq *rq, int cmd)
757 struct usbnet *dev = netdev_priv(netdev);
759 if (!netif_running(netdev))
760 return -EINVAL;
762 return generic_mii_ioctl(&dev->mii, if_mii(rq), cmd, NULL);
765 static void smsc75xx_init_mac_address(struct usbnet *dev)
767 /* try reading mac address from EEPROM */
768 if (smsc75xx_read_eeprom(dev, EEPROM_MAC_OFFSET, ETH_ALEN,
769 dev->net->dev_addr) == 0) {
770 if (is_valid_ether_addr(dev->net->dev_addr)) {
771 /* eeprom values are valid so use them */
772 netif_dbg(dev, ifup, dev->net,
773 "MAC address read from EEPROM\n");
774 return;
778 /* no eeprom, or eeprom values are invalid. generate random MAC */
779 eth_hw_addr_random(dev->net);
780 netif_dbg(dev, ifup, dev->net, "MAC address set to eth_random_addr\n");
783 static int smsc75xx_set_mac_address(struct usbnet *dev)
785 u32 addr_lo = dev->net->dev_addr[0] | dev->net->dev_addr[1] << 8 |
786 dev->net->dev_addr[2] << 16 | dev->net->dev_addr[3] << 24;
787 u32 addr_hi = dev->net->dev_addr[4] | dev->net->dev_addr[5] << 8;
789 int ret = smsc75xx_write_reg(dev, RX_ADDRH, addr_hi);
790 if (ret < 0) {
791 netdev_warn(dev->net, "Failed to write RX_ADDRH: %d\n", ret);
792 return ret;
795 ret = smsc75xx_write_reg(dev, RX_ADDRL, addr_lo);
796 if (ret < 0) {
797 netdev_warn(dev->net, "Failed to write RX_ADDRL: %d\n", ret);
798 return ret;
801 addr_hi |= ADDR_FILTX_FB_VALID;
802 ret = smsc75xx_write_reg(dev, ADDR_FILTX, addr_hi);
803 if (ret < 0) {
804 netdev_warn(dev->net, "Failed to write ADDR_FILTX: %d\n", ret);
805 return ret;
808 ret = smsc75xx_write_reg(dev, ADDR_FILTX + 4, addr_lo);
809 if (ret < 0)
810 netdev_warn(dev->net, "Failed to write ADDR_FILTX+4: %d\n", ret);
812 return ret;
815 static int smsc75xx_phy_initialize(struct usbnet *dev)
817 int bmcr, ret, timeout = 0;
819 /* Initialize MII structure */
820 dev->mii.dev = dev->net;
821 dev->mii.mdio_read = smsc75xx_mdio_read;
822 dev->mii.mdio_write = smsc75xx_mdio_write;
823 dev->mii.phy_id_mask = 0x1f;
824 dev->mii.reg_num_mask = 0x1f;
825 dev->mii.supports_gmii = 1;
826 dev->mii.phy_id = SMSC75XX_INTERNAL_PHY_ID;
828 /* reset phy and wait for reset to complete */
829 smsc75xx_mdio_write(dev->net, dev->mii.phy_id, MII_BMCR, BMCR_RESET);
831 do {
832 msleep(10);
833 bmcr = smsc75xx_mdio_read(dev->net, dev->mii.phy_id, MII_BMCR);
834 if (bmcr < 0) {
835 netdev_warn(dev->net, "Error reading MII_BMCR\n");
836 return bmcr;
838 timeout++;
839 } while ((bmcr & BMCR_RESET) && (timeout < 100));
841 if (timeout >= 100) {
842 netdev_warn(dev->net, "timeout on PHY Reset\n");
843 return -EIO;
846 smsc75xx_mdio_write(dev->net, dev->mii.phy_id, MII_ADVERTISE,
847 ADVERTISE_ALL | ADVERTISE_CSMA | ADVERTISE_PAUSE_CAP |
848 ADVERTISE_PAUSE_ASYM);
849 smsc75xx_mdio_write(dev->net, dev->mii.phy_id, MII_CTRL1000,
850 ADVERTISE_1000FULL);
852 /* read and write to clear phy interrupt status */
853 ret = smsc75xx_mdio_read(dev->net, dev->mii.phy_id, PHY_INT_SRC);
854 if (ret < 0) {
855 netdev_warn(dev->net, "Error reading PHY_INT_SRC\n");
856 return ret;
859 smsc75xx_mdio_write(dev->net, dev->mii.phy_id, PHY_INT_SRC, 0xffff);
861 smsc75xx_mdio_write(dev->net, dev->mii.phy_id, PHY_INT_MASK,
862 PHY_INT_MASK_DEFAULT);
863 mii_nway_restart(&dev->mii);
865 netif_dbg(dev, ifup, dev->net, "phy initialised successfully\n");
866 return 0;
869 static int smsc75xx_set_rx_max_frame_length(struct usbnet *dev, int size)
871 int ret = 0;
872 u32 buf;
873 bool rxenabled;
875 ret = smsc75xx_read_reg(dev, MAC_RX, &buf);
876 if (ret < 0) {
877 netdev_warn(dev->net, "Failed to read MAC_RX: %d\n", ret);
878 return ret;
881 rxenabled = ((buf & MAC_RX_RXEN) != 0);
883 if (rxenabled) {
884 buf &= ~MAC_RX_RXEN;
885 ret = smsc75xx_write_reg(dev, MAC_RX, buf);
886 if (ret < 0) {
887 netdev_warn(dev->net, "Failed to write MAC_RX: %d\n", ret);
888 return ret;
892 /* add 4 to size for FCS */
893 buf &= ~MAC_RX_MAX_SIZE;
894 buf |= (((size + 4) << MAC_RX_MAX_SIZE_SHIFT) & MAC_RX_MAX_SIZE);
896 ret = smsc75xx_write_reg(dev, MAC_RX, buf);
897 if (ret < 0) {
898 netdev_warn(dev->net, "Failed to write MAC_RX: %d\n", ret);
899 return ret;
902 if (rxenabled) {
903 buf |= MAC_RX_RXEN;
904 ret = smsc75xx_write_reg(dev, MAC_RX, buf);
905 if (ret < 0) {
906 netdev_warn(dev->net, "Failed to write MAC_RX: %d\n", ret);
907 return ret;
911 return 0;
914 static int smsc75xx_change_mtu(struct net_device *netdev, int new_mtu)
916 struct usbnet *dev = netdev_priv(netdev);
918 int ret = smsc75xx_set_rx_max_frame_length(dev, new_mtu);
919 if (ret < 0) {
920 netdev_warn(dev->net, "Failed to set mac rx frame length\n");
921 return ret;
924 return usbnet_change_mtu(netdev, new_mtu);
927 /* Enable or disable Rx checksum offload engine */
928 static int smsc75xx_set_features(struct net_device *netdev,
929 netdev_features_t features)
931 struct usbnet *dev = netdev_priv(netdev);
932 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
933 unsigned long flags;
934 int ret;
936 spin_lock_irqsave(&pdata->rfe_ctl_lock, flags);
938 if (features & NETIF_F_RXCSUM)
939 pdata->rfe_ctl |= RFE_CTL_TCPUDP_CKM | RFE_CTL_IP_CKM;
940 else
941 pdata->rfe_ctl &= ~(RFE_CTL_TCPUDP_CKM | RFE_CTL_IP_CKM);
943 spin_unlock_irqrestore(&pdata->rfe_ctl_lock, flags);
944 /* it's racing here! */
946 ret = smsc75xx_write_reg(dev, RFE_CTL, pdata->rfe_ctl);
947 if (ret < 0)
948 netdev_warn(dev->net, "Error writing RFE_CTL\n");
950 return ret;
953 static int smsc75xx_wait_ready(struct usbnet *dev, int in_pm)
955 int timeout = 0;
957 do {
958 u32 buf;
959 int ret;
961 ret = __smsc75xx_read_reg(dev, PMT_CTL, &buf, in_pm);
963 if (ret < 0) {
964 netdev_warn(dev->net, "Failed to read PMT_CTL: %d\n", ret);
965 return ret;
968 if (buf & PMT_CTL_DEV_RDY)
969 return 0;
971 msleep(10);
972 timeout++;
973 } while (timeout < 100);
975 netdev_warn(dev->net, "timeout waiting for device ready\n");
976 return -EIO;
979 static int smsc75xx_reset(struct usbnet *dev)
981 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
982 u32 buf;
983 int ret = 0, timeout;
985 netif_dbg(dev, ifup, dev->net, "entering smsc75xx_reset\n");
987 ret = smsc75xx_wait_ready(dev, 0);
988 if (ret < 0) {
989 netdev_warn(dev->net, "device not ready in smsc75xx_reset\n");
990 return ret;
993 ret = smsc75xx_read_reg(dev, HW_CFG, &buf);
994 if (ret < 0) {
995 netdev_warn(dev->net, "Failed to read HW_CFG: %d\n", ret);
996 return ret;
999 buf |= HW_CFG_LRST;
1001 ret = smsc75xx_write_reg(dev, HW_CFG, buf);
1002 if (ret < 0) {
1003 netdev_warn(dev->net, "Failed to write HW_CFG: %d\n", ret);
1004 return ret;
1007 timeout = 0;
1008 do {
1009 msleep(10);
1010 ret = smsc75xx_read_reg(dev, HW_CFG, &buf);
1011 if (ret < 0) {
1012 netdev_warn(dev->net, "Failed to read HW_CFG: %d\n", ret);
1013 return ret;
1015 timeout++;
1016 } while ((buf & HW_CFG_LRST) && (timeout < 100));
1018 if (timeout >= 100) {
1019 netdev_warn(dev->net, "timeout on completion of Lite Reset\n");
1020 return -EIO;
1023 netif_dbg(dev, ifup, dev->net, "Lite reset complete, resetting PHY\n");
1025 ret = smsc75xx_read_reg(dev, PMT_CTL, &buf);
1026 if (ret < 0) {
1027 netdev_warn(dev->net, "Failed to read PMT_CTL: %d\n", ret);
1028 return ret;
1031 buf |= PMT_CTL_PHY_RST;
1033 ret = smsc75xx_write_reg(dev, PMT_CTL, buf);
1034 if (ret < 0) {
1035 netdev_warn(dev->net, "Failed to write PMT_CTL: %d\n", ret);
1036 return ret;
1039 timeout = 0;
1040 do {
1041 msleep(10);
1042 ret = smsc75xx_read_reg(dev, PMT_CTL, &buf);
1043 if (ret < 0) {
1044 netdev_warn(dev->net, "Failed to read PMT_CTL: %d\n", ret);
1045 return ret;
1047 timeout++;
1048 } while ((buf & PMT_CTL_PHY_RST) && (timeout < 100));
1050 if (timeout >= 100) {
1051 netdev_warn(dev->net, "timeout waiting for PHY Reset\n");
1052 return -EIO;
1055 netif_dbg(dev, ifup, dev->net, "PHY reset complete\n");
1057 ret = smsc75xx_set_mac_address(dev);
1058 if (ret < 0) {
1059 netdev_warn(dev->net, "Failed to set mac address\n");
1060 return ret;
1063 netif_dbg(dev, ifup, dev->net, "MAC Address: %pM\n",
1064 dev->net->dev_addr);
1066 ret = smsc75xx_read_reg(dev, HW_CFG, &buf);
1067 if (ret < 0) {
1068 netdev_warn(dev->net, "Failed to read HW_CFG: %d\n", ret);
1069 return ret;
1072 netif_dbg(dev, ifup, dev->net, "Read Value from HW_CFG : 0x%08x\n",
1073 buf);
1075 buf |= HW_CFG_BIR;
1077 ret = smsc75xx_write_reg(dev, HW_CFG, buf);
1078 if (ret < 0) {
1079 netdev_warn(dev->net, "Failed to write HW_CFG: %d\n", ret);
1080 return ret;
1083 ret = smsc75xx_read_reg(dev, HW_CFG, &buf);
1084 if (ret < 0) {
1085 netdev_warn(dev->net, "Failed to read HW_CFG: %d\n", ret);
1086 return ret;
1089 netif_dbg(dev, ifup, dev->net, "Read Value from HW_CFG after writing HW_CFG_BIR: 0x%08x\n",
1090 buf);
1092 if (!turbo_mode) {
1093 buf = 0;
1094 dev->rx_urb_size = MAX_SINGLE_PACKET_SIZE;
1095 } else if (dev->udev->speed == USB_SPEED_HIGH) {
1096 buf = DEFAULT_HS_BURST_CAP_SIZE / HS_USB_PKT_SIZE;
1097 dev->rx_urb_size = DEFAULT_HS_BURST_CAP_SIZE;
1098 } else {
1099 buf = DEFAULT_FS_BURST_CAP_SIZE / FS_USB_PKT_SIZE;
1100 dev->rx_urb_size = DEFAULT_FS_BURST_CAP_SIZE;
1103 netif_dbg(dev, ifup, dev->net, "rx_urb_size=%ld\n",
1104 (ulong)dev->rx_urb_size);
1106 ret = smsc75xx_write_reg(dev, BURST_CAP, buf);
1107 if (ret < 0) {
1108 netdev_warn(dev->net, "Failed to write BURST_CAP: %d\n", ret);
1109 return ret;
1112 ret = smsc75xx_read_reg(dev, BURST_CAP, &buf);
1113 if (ret < 0) {
1114 netdev_warn(dev->net, "Failed to read BURST_CAP: %d\n", ret);
1115 return ret;
1118 netif_dbg(dev, ifup, dev->net,
1119 "Read Value from BURST_CAP after writing: 0x%08x\n", buf);
1121 ret = smsc75xx_write_reg(dev, BULK_IN_DLY, DEFAULT_BULK_IN_DELAY);
1122 if (ret < 0) {
1123 netdev_warn(dev->net, "Failed to write BULK_IN_DLY: %d\n", ret);
1124 return ret;
1127 ret = smsc75xx_read_reg(dev, BULK_IN_DLY, &buf);
1128 if (ret < 0) {
1129 netdev_warn(dev->net, "Failed to read BULK_IN_DLY: %d\n", ret);
1130 return ret;
1133 netif_dbg(dev, ifup, dev->net,
1134 "Read Value from BULK_IN_DLY after writing: 0x%08x\n", buf);
1136 if (turbo_mode) {
1137 ret = smsc75xx_read_reg(dev, HW_CFG, &buf);
1138 if (ret < 0) {
1139 netdev_warn(dev->net, "Failed to read HW_CFG: %d\n", ret);
1140 return ret;
1143 netif_dbg(dev, ifup, dev->net, "HW_CFG: 0x%08x\n", buf);
1145 buf |= (HW_CFG_MEF | HW_CFG_BCE);
1147 ret = smsc75xx_write_reg(dev, HW_CFG, buf);
1148 if (ret < 0) {
1149 netdev_warn(dev->net, "Failed to write HW_CFG: %d\n", ret);
1150 return ret;
1153 ret = smsc75xx_read_reg(dev, HW_CFG, &buf);
1154 if (ret < 0) {
1155 netdev_warn(dev->net, "Failed to read HW_CFG: %d\n", ret);
1156 return ret;
1159 netif_dbg(dev, ifup, dev->net, "HW_CFG: 0x%08x\n", buf);
1162 /* set FIFO sizes */
1163 buf = (MAX_RX_FIFO_SIZE - 512) / 512;
1164 ret = smsc75xx_write_reg(dev, FCT_RX_FIFO_END, buf);
1165 if (ret < 0) {
1166 netdev_warn(dev->net, "Failed to write FCT_RX_FIFO_END: %d\n", ret);
1167 return ret;
1170 netif_dbg(dev, ifup, dev->net, "FCT_RX_FIFO_END set to 0x%08x\n", buf);
1172 buf = (MAX_TX_FIFO_SIZE - 512) / 512;
1173 ret = smsc75xx_write_reg(dev, FCT_TX_FIFO_END, buf);
1174 if (ret < 0) {
1175 netdev_warn(dev->net, "Failed to write FCT_TX_FIFO_END: %d\n", ret);
1176 return ret;
1179 netif_dbg(dev, ifup, dev->net, "FCT_TX_FIFO_END set to 0x%08x\n", buf);
1181 ret = smsc75xx_write_reg(dev, INT_STS, INT_STS_CLEAR_ALL);
1182 if (ret < 0) {
1183 netdev_warn(dev->net, "Failed to write INT_STS: %d\n", ret);
1184 return ret;
1187 ret = smsc75xx_read_reg(dev, ID_REV, &buf);
1188 if (ret < 0) {
1189 netdev_warn(dev->net, "Failed to read ID_REV: %d\n", ret);
1190 return ret;
1193 netif_dbg(dev, ifup, dev->net, "ID_REV = 0x%08x\n", buf);
1195 ret = smsc75xx_read_reg(dev, E2P_CMD, &buf);
1196 if (ret < 0) {
1197 netdev_warn(dev->net, "Failed to read E2P_CMD: %d\n", ret);
1198 return ret;
1201 /* only set default GPIO/LED settings if no EEPROM is detected */
1202 if (!(buf & E2P_CMD_LOADED)) {
1203 ret = smsc75xx_read_reg(dev, LED_GPIO_CFG, &buf);
1204 if (ret < 0) {
1205 netdev_warn(dev->net, "Failed to read LED_GPIO_CFG: %d\n", ret);
1206 return ret;
1209 buf &= ~(LED_GPIO_CFG_LED2_FUN_SEL | LED_GPIO_CFG_LED10_FUN_SEL);
1210 buf |= LED_GPIO_CFG_LEDGPIO_EN | LED_GPIO_CFG_LED2_FUN_SEL;
1212 ret = smsc75xx_write_reg(dev, LED_GPIO_CFG, buf);
1213 if (ret < 0) {
1214 netdev_warn(dev->net, "Failed to write LED_GPIO_CFG: %d\n", ret);
1215 return ret;
1219 ret = smsc75xx_write_reg(dev, FLOW, 0);
1220 if (ret < 0) {
1221 netdev_warn(dev->net, "Failed to write FLOW: %d\n", ret);
1222 return ret;
1225 ret = smsc75xx_write_reg(dev, FCT_FLOW, 0);
1226 if (ret < 0) {
1227 netdev_warn(dev->net, "Failed to write FCT_FLOW: %d\n", ret);
1228 return ret;
1231 /* Don't need rfe_ctl_lock during initialisation */
1232 ret = smsc75xx_read_reg(dev, RFE_CTL, &pdata->rfe_ctl);
1233 if (ret < 0) {
1234 netdev_warn(dev->net, "Failed to read RFE_CTL: %d\n", ret);
1235 return ret;
1238 pdata->rfe_ctl |= RFE_CTL_AB | RFE_CTL_DPF;
1240 ret = smsc75xx_write_reg(dev, RFE_CTL, pdata->rfe_ctl);
1241 if (ret < 0) {
1242 netdev_warn(dev->net, "Failed to write RFE_CTL: %d\n", ret);
1243 return ret;
1246 ret = smsc75xx_read_reg(dev, RFE_CTL, &pdata->rfe_ctl);
1247 if (ret < 0) {
1248 netdev_warn(dev->net, "Failed to read RFE_CTL: %d\n", ret);
1249 return ret;
1252 netif_dbg(dev, ifup, dev->net, "RFE_CTL set to 0x%08x\n",
1253 pdata->rfe_ctl);
1255 /* Enable or disable checksum offload engines */
1256 smsc75xx_set_features(dev->net, dev->net->features);
1258 smsc75xx_set_multicast(dev->net);
1260 ret = smsc75xx_phy_initialize(dev);
1261 if (ret < 0) {
1262 netdev_warn(dev->net, "Failed to initialize PHY: %d\n", ret);
1263 return ret;
1266 ret = smsc75xx_read_reg(dev, INT_EP_CTL, &buf);
1267 if (ret < 0) {
1268 netdev_warn(dev->net, "Failed to read INT_EP_CTL: %d\n", ret);
1269 return ret;
1272 /* enable PHY interrupts */
1273 buf |= INT_ENP_PHY_INT;
1275 ret = smsc75xx_write_reg(dev, INT_EP_CTL, buf);
1276 if (ret < 0) {
1277 netdev_warn(dev->net, "Failed to write INT_EP_CTL: %d\n", ret);
1278 return ret;
1281 /* allow mac to detect speed and duplex from phy */
1282 ret = smsc75xx_read_reg(dev, MAC_CR, &buf);
1283 if (ret < 0) {
1284 netdev_warn(dev->net, "Failed to read MAC_CR: %d\n", ret);
1285 return ret;
1288 buf |= (MAC_CR_ADD | MAC_CR_ASD);
1289 ret = smsc75xx_write_reg(dev, MAC_CR, buf);
1290 if (ret < 0) {
1291 netdev_warn(dev->net, "Failed to write MAC_CR: %d\n", ret);
1292 return ret;
1295 ret = smsc75xx_read_reg(dev, MAC_TX, &buf);
1296 if (ret < 0) {
1297 netdev_warn(dev->net, "Failed to read MAC_TX: %d\n", ret);
1298 return ret;
1301 buf |= MAC_TX_TXEN;
1303 ret = smsc75xx_write_reg(dev, MAC_TX, buf);
1304 if (ret < 0) {
1305 netdev_warn(dev->net, "Failed to write MAC_TX: %d\n", ret);
1306 return ret;
1309 netif_dbg(dev, ifup, dev->net, "MAC_TX set to 0x%08x\n", buf);
1311 ret = smsc75xx_read_reg(dev, FCT_TX_CTL, &buf);
1312 if (ret < 0) {
1313 netdev_warn(dev->net, "Failed to read FCT_TX_CTL: %d\n", ret);
1314 return ret;
1317 buf |= FCT_TX_CTL_EN;
1319 ret = smsc75xx_write_reg(dev, FCT_TX_CTL, buf);
1320 if (ret < 0) {
1321 netdev_warn(dev->net, "Failed to write FCT_TX_CTL: %d\n", ret);
1322 return ret;
1325 netif_dbg(dev, ifup, dev->net, "FCT_TX_CTL set to 0x%08x\n", buf);
1327 ret = smsc75xx_set_rx_max_frame_length(dev, 1514);
1328 if (ret < 0) {
1329 netdev_warn(dev->net, "Failed to set max rx frame length\n");
1330 return ret;
1333 ret = smsc75xx_read_reg(dev, MAC_RX, &buf);
1334 if (ret < 0) {
1335 netdev_warn(dev->net, "Failed to read MAC_RX: %d\n", ret);
1336 return ret;
1339 buf |= MAC_RX_RXEN;
1341 ret = smsc75xx_write_reg(dev, MAC_RX, buf);
1342 if (ret < 0) {
1343 netdev_warn(dev->net, "Failed to write MAC_RX: %d\n", ret);
1344 return ret;
1347 netif_dbg(dev, ifup, dev->net, "MAC_RX set to 0x%08x\n", buf);
1349 ret = smsc75xx_read_reg(dev, FCT_RX_CTL, &buf);
1350 if (ret < 0) {
1351 netdev_warn(dev->net, "Failed to read FCT_RX_CTL: %d\n", ret);
1352 return ret;
1355 buf |= FCT_RX_CTL_EN;
1357 ret = smsc75xx_write_reg(dev, FCT_RX_CTL, buf);
1358 if (ret < 0) {
1359 netdev_warn(dev->net, "Failed to write FCT_RX_CTL: %d\n", ret);
1360 return ret;
1363 netif_dbg(dev, ifup, dev->net, "FCT_RX_CTL set to 0x%08x\n", buf);
1365 netif_dbg(dev, ifup, dev->net, "smsc75xx_reset, return 0\n");
1366 return 0;
1369 static const struct net_device_ops smsc75xx_netdev_ops = {
1370 .ndo_open = usbnet_open,
1371 .ndo_stop = usbnet_stop,
1372 .ndo_start_xmit = usbnet_start_xmit,
1373 .ndo_tx_timeout = usbnet_tx_timeout,
1374 .ndo_change_mtu = smsc75xx_change_mtu,
1375 .ndo_set_mac_address = eth_mac_addr,
1376 .ndo_validate_addr = eth_validate_addr,
1377 .ndo_do_ioctl = smsc75xx_ioctl,
1378 .ndo_set_rx_mode = smsc75xx_set_multicast,
1379 .ndo_set_features = smsc75xx_set_features,
1382 static int smsc75xx_bind(struct usbnet *dev, struct usb_interface *intf)
1384 struct smsc75xx_priv *pdata = NULL;
1385 int ret;
1387 printk(KERN_INFO SMSC_CHIPNAME " v" SMSC_DRIVER_VERSION "\n");
1389 ret = usbnet_get_endpoints(dev, intf);
1390 if (ret < 0) {
1391 netdev_warn(dev->net, "usbnet_get_endpoints failed: %d\n", ret);
1392 return ret;
1395 dev->data[0] = (unsigned long)kzalloc(sizeof(struct smsc75xx_priv),
1396 GFP_KERNEL);
1398 pdata = (struct smsc75xx_priv *)(dev->data[0]);
1399 if (!pdata) {
1400 netdev_warn(dev->net, "Unable to allocate smsc75xx_priv\n");
1401 return -ENOMEM;
1404 pdata->dev = dev;
1406 spin_lock_init(&pdata->rfe_ctl_lock);
1407 mutex_init(&pdata->dataport_mutex);
1409 INIT_WORK(&pdata->set_multicast, smsc75xx_deferred_multicast_write);
1411 if (DEFAULT_TX_CSUM_ENABLE) {
1412 dev->net->features |= NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM;
1413 if (DEFAULT_TSO_ENABLE)
1414 dev->net->features |= NETIF_F_SG |
1415 NETIF_F_TSO | NETIF_F_TSO6;
1417 if (DEFAULT_RX_CSUM_ENABLE)
1418 dev->net->features |= NETIF_F_RXCSUM;
1420 dev->net->hw_features = NETIF_F_IP_CSUM | NETIF_F_IPV6_CSUM |
1421 NETIF_F_SG | NETIF_F_TSO | NETIF_F_TSO6 | NETIF_F_RXCSUM;
1423 ret = smsc75xx_wait_ready(dev, 0);
1424 if (ret < 0) {
1425 netdev_warn(dev->net, "device not ready in smsc75xx_bind\n");
1426 return ret;
1429 smsc75xx_init_mac_address(dev);
1431 /* Init all registers */
1432 ret = smsc75xx_reset(dev);
1433 if (ret < 0) {
1434 netdev_warn(dev->net, "smsc75xx_reset error %d\n", ret);
1435 return ret;
1438 dev->net->netdev_ops = &smsc75xx_netdev_ops;
1439 dev->net->ethtool_ops = &smsc75xx_ethtool_ops;
1440 dev->net->flags |= IFF_MULTICAST;
1441 dev->net->hard_header_len += SMSC75XX_TX_OVERHEAD;
1442 dev->hard_mtu = dev->net->mtu + dev->net->hard_header_len;
1443 return 0;
1446 static void smsc75xx_unbind(struct usbnet *dev, struct usb_interface *intf)
1448 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
1449 if (pdata) {
1450 netif_dbg(dev, ifdown, dev->net, "free pdata\n");
1451 kfree(pdata);
1452 pdata = NULL;
1453 dev->data[0] = 0;
1457 static u16 smsc_crc(const u8 *buffer, size_t len)
1459 return bitrev16(crc16(0xFFFF, buffer, len));
1462 static int smsc75xx_write_wuff(struct usbnet *dev, int filter, u32 wuf_cfg,
1463 u32 wuf_mask1)
1465 int cfg_base = WUF_CFGX + filter * 4;
1466 int mask_base = WUF_MASKX + filter * 16;
1467 int ret;
1469 ret = smsc75xx_write_reg(dev, cfg_base, wuf_cfg);
1470 if (ret < 0) {
1471 netdev_warn(dev->net, "Error writing WUF_CFGX\n");
1472 return ret;
1475 ret = smsc75xx_write_reg(dev, mask_base, wuf_mask1);
1476 if (ret < 0) {
1477 netdev_warn(dev->net, "Error writing WUF_MASKX\n");
1478 return ret;
1481 ret = smsc75xx_write_reg(dev, mask_base + 4, 0);
1482 if (ret < 0) {
1483 netdev_warn(dev->net, "Error writing WUF_MASKX\n");
1484 return ret;
1487 ret = smsc75xx_write_reg(dev, mask_base + 8, 0);
1488 if (ret < 0) {
1489 netdev_warn(dev->net, "Error writing WUF_MASKX\n");
1490 return ret;
1493 ret = smsc75xx_write_reg(dev, mask_base + 12, 0);
1494 if (ret < 0) {
1495 netdev_warn(dev->net, "Error writing WUF_MASKX\n");
1496 return ret;
1499 return 0;
1502 static int smsc75xx_enter_suspend0(struct usbnet *dev)
1504 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
1505 u32 val;
1506 int ret;
1508 ret = smsc75xx_read_reg_nopm(dev, PMT_CTL, &val);
1509 if (ret < 0) {
1510 netdev_warn(dev->net, "Error reading PMT_CTL\n");
1511 return ret;
1514 val &= (~(PMT_CTL_SUS_MODE | PMT_CTL_PHY_RST));
1515 val |= PMT_CTL_SUS_MODE_0 | PMT_CTL_WOL_EN | PMT_CTL_WUPS;
1517 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
1518 if (ret < 0) {
1519 netdev_warn(dev->net, "Error writing PMT_CTL\n");
1520 return ret;
1523 pdata->suspend_flags |= SUSPEND_SUSPEND0;
1525 return 0;
1528 static int smsc75xx_enter_suspend1(struct usbnet *dev)
1530 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
1531 u32 val;
1532 int ret;
1534 ret = smsc75xx_read_reg_nopm(dev, PMT_CTL, &val);
1535 if (ret < 0) {
1536 netdev_warn(dev->net, "Error reading PMT_CTL\n");
1537 return ret;
1540 val &= ~(PMT_CTL_SUS_MODE | PMT_CTL_WUPS | PMT_CTL_PHY_RST);
1541 val |= PMT_CTL_SUS_MODE_1;
1543 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
1544 if (ret < 0) {
1545 netdev_warn(dev->net, "Error writing PMT_CTL\n");
1546 return ret;
1549 /* clear wol status, enable energy detection */
1550 val &= ~PMT_CTL_WUPS;
1551 val |= (PMT_CTL_WUPS_ED | PMT_CTL_ED_EN);
1553 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
1554 if (ret < 0) {
1555 netdev_warn(dev->net, "Error writing PMT_CTL\n");
1556 return ret;
1559 pdata->suspend_flags |= SUSPEND_SUSPEND1;
1561 return 0;
1564 static int smsc75xx_enter_suspend2(struct usbnet *dev)
1566 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
1567 u32 val;
1568 int ret;
1570 ret = smsc75xx_read_reg_nopm(dev, PMT_CTL, &val);
1571 if (ret < 0) {
1572 netdev_warn(dev->net, "Error reading PMT_CTL\n");
1573 return ret;
1576 val &= ~(PMT_CTL_SUS_MODE | PMT_CTL_WUPS | PMT_CTL_PHY_RST);
1577 val |= PMT_CTL_SUS_MODE_2;
1579 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
1580 if (ret < 0) {
1581 netdev_warn(dev->net, "Error writing PMT_CTL\n");
1582 return ret;
1585 pdata->suspend_flags |= SUSPEND_SUSPEND2;
1587 return 0;
1590 static int smsc75xx_enter_suspend3(struct usbnet *dev)
1592 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
1593 u32 val;
1594 int ret;
1596 ret = smsc75xx_read_reg_nopm(dev, FCT_RX_CTL, &val);
1597 if (ret < 0) {
1598 netdev_warn(dev->net, "Error reading FCT_RX_CTL\n");
1599 return ret;
1602 if (val & FCT_RX_CTL_RXUSED) {
1603 netdev_dbg(dev->net, "rx fifo not empty in autosuspend\n");
1604 return -EBUSY;
1607 ret = smsc75xx_read_reg_nopm(dev, PMT_CTL, &val);
1608 if (ret < 0) {
1609 netdev_warn(dev->net, "Error reading PMT_CTL\n");
1610 return ret;
1613 val &= ~(PMT_CTL_SUS_MODE | PMT_CTL_WUPS | PMT_CTL_PHY_RST);
1614 val |= PMT_CTL_SUS_MODE_3 | PMT_CTL_RES_CLR_WKP_EN;
1616 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
1617 if (ret < 0) {
1618 netdev_warn(dev->net, "Error writing PMT_CTL\n");
1619 return ret;
1622 /* clear wol status */
1623 val &= ~PMT_CTL_WUPS;
1624 val |= PMT_CTL_WUPS_WOL;
1626 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
1627 if (ret < 0) {
1628 netdev_warn(dev->net, "Error writing PMT_CTL\n");
1629 return ret;
1632 pdata->suspend_flags |= SUSPEND_SUSPEND3;
1634 return 0;
1637 static int smsc75xx_enable_phy_wakeup_interrupts(struct usbnet *dev, u16 mask)
1639 struct mii_if_info *mii = &dev->mii;
1640 int ret;
1642 netdev_dbg(dev->net, "enabling PHY wakeup interrupts\n");
1644 /* read to clear */
1645 ret = smsc75xx_mdio_read_nopm(dev->net, mii->phy_id, PHY_INT_SRC);
1646 if (ret < 0) {
1647 netdev_warn(dev->net, "Error reading PHY_INT_SRC\n");
1648 return ret;
1651 /* enable interrupt source */
1652 ret = smsc75xx_mdio_read_nopm(dev->net, mii->phy_id, PHY_INT_MASK);
1653 if (ret < 0) {
1654 netdev_warn(dev->net, "Error reading PHY_INT_MASK\n");
1655 return ret;
1658 ret |= mask;
1660 smsc75xx_mdio_write_nopm(dev->net, mii->phy_id, PHY_INT_MASK, ret);
1662 return 0;
1665 static int smsc75xx_link_ok_nopm(struct usbnet *dev)
1667 struct mii_if_info *mii = &dev->mii;
1668 int ret;
1670 /* first, a dummy read, needed to latch some MII phys */
1671 ret = smsc75xx_mdio_read_nopm(dev->net, mii->phy_id, MII_BMSR);
1672 if (ret < 0) {
1673 netdev_warn(dev->net, "Error reading MII_BMSR\n");
1674 return ret;
1677 ret = smsc75xx_mdio_read_nopm(dev->net, mii->phy_id, MII_BMSR);
1678 if (ret < 0) {
1679 netdev_warn(dev->net, "Error reading MII_BMSR\n");
1680 return ret;
1683 return !!(ret & BMSR_LSTATUS);
1686 static int smsc75xx_autosuspend(struct usbnet *dev, u32 link_up)
1688 int ret;
1690 if (!netif_running(dev->net)) {
1691 /* interface is ifconfig down so fully power down hw */
1692 netdev_dbg(dev->net, "autosuspend entering SUSPEND2\n");
1693 return smsc75xx_enter_suspend2(dev);
1696 if (!link_up) {
1697 /* link is down so enter EDPD mode */
1698 netdev_dbg(dev->net, "autosuspend entering SUSPEND1\n");
1700 /* enable PHY wakeup events for if cable is attached */
1701 ret = smsc75xx_enable_phy_wakeup_interrupts(dev,
1702 PHY_INT_MASK_ANEG_COMP);
1703 if (ret < 0) {
1704 netdev_warn(dev->net, "error enabling PHY wakeup ints\n");
1705 return ret;
1708 netdev_info(dev->net, "entering SUSPEND1 mode\n");
1709 return smsc75xx_enter_suspend1(dev);
1712 /* enable PHY wakeup events so we remote wakeup if cable is pulled */
1713 ret = smsc75xx_enable_phy_wakeup_interrupts(dev,
1714 PHY_INT_MASK_LINK_DOWN);
1715 if (ret < 0) {
1716 netdev_warn(dev->net, "error enabling PHY wakeup ints\n");
1717 return ret;
1720 netdev_dbg(dev->net, "autosuspend entering SUSPEND3\n");
1721 return smsc75xx_enter_suspend3(dev);
1724 static int smsc75xx_suspend(struct usb_interface *intf, pm_message_t message)
1726 struct usbnet *dev = usb_get_intfdata(intf);
1727 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
1728 u32 val, link_up;
1729 int ret;
1731 ret = usbnet_suspend(intf, message);
1732 if (ret < 0) {
1733 netdev_warn(dev->net, "usbnet_suspend error\n");
1734 return ret;
1737 if (pdata->suspend_flags) {
1738 netdev_warn(dev->net, "error during last resume\n");
1739 pdata->suspend_flags = 0;
1742 /* determine if link is up using only _nopm functions */
1743 link_up = smsc75xx_link_ok_nopm(dev);
1745 if (message.event == PM_EVENT_AUTO_SUSPEND) {
1746 ret = smsc75xx_autosuspend(dev, link_up);
1747 goto done;
1750 /* if we get this far we're not autosuspending */
1751 /* if no wol options set, or if link is down and we're not waking on
1752 * PHY activity, enter lowest power SUSPEND2 mode
1754 if (!(pdata->wolopts & SUPPORTED_WAKE) ||
1755 !(link_up || (pdata->wolopts & WAKE_PHY))) {
1756 netdev_info(dev->net, "entering SUSPEND2 mode\n");
1758 /* disable energy detect (link up) & wake up events */
1759 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
1760 if (ret < 0) {
1761 netdev_warn(dev->net, "Error reading WUCSR\n");
1762 goto done;
1765 val &= ~(WUCSR_MPEN | WUCSR_WUEN);
1767 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
1768 if (ret < 0) {
1769 netdev_warn(dev->net, "Error writing WUCSR\n");
1770 goto done;
1773 ret = smsc75xx_read_reg_nopm(dev, PMT_CTL, &val);
1774 if (ret < 0) {
1775 netdev_warn(dev->net, "Error reading PMT_CTL\n");
1776 goto done;
1779 val &= ~(PMT_CTL_ED_EN | PMT_CTL_WOL_EN);
1781 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
1782 if (ret < 0) {
1783 netdev_warn(dev->net, "Error writing PMT_CTL\n");
1784 goto done;
1787 ret = smsc75xx_enter_suspend2(dev);
1788 goto done;
1791 if (pdata->wolopts & WAKE_PHY) {
1792 ret = smsc75xx_enable_phy_wakeup_interrupts(dev,
1793 (PHY_INT_MASK_ANEG_COMP | PHY_INT_MASK_LINK_DOWN));
1794 if (ret < 0) {
1795 netdev_warn(dev->net, "error enabling PHY wakeup ints\n");
1796 goto done;
1799 /* if link is down then configure EDPD and enter SUSPEND1,
1800 * otherwise enter SUSPEND0 below
1802 if (!link_up) {
1803 struct mii_if_info *mii = &dev->mii;
1804 netdev_info(dev->net, "entering SUSPEND1 mode\n");
1806 /* enable energy detect power-down mode */
1807 ret = smsc75xx_mdio_read_nopm(dev->net, mii->phy_id,
1808 PHY_MODE_CTRL_STS);
1809 if (ret < 0) {
1810 netdev_warn(dev->net, "Error reading PHY_MODE_CTRL_STS\n");
1811 goto done;
1814 ret |= MODE_CTRL_STS_EDPWRDOWN;
1816 smsc75xx_mdio_write_nopm(dev->net, mii->phy_id,
1817 PHY_MODE_CTRL_STS, ret);
1819 /* enter SUSPEND1 mode */
1820 ret = smsc75xx_enter_suspend1(dev);
1821 goto done;
1825 if (pdata->wolopts & (WAKE_MCAST | WAKE_ARP)) {
1826 int i, filter = 0;
1828 /* disable all filters */
1829 for (i = 0; i < WUF_NUM; i++) {
1830 ret = smsc75xx_write_reg_nopm(dev, WUF_CFGX + i * 4, 0);
1831 if (ret < 0) {
1832 netdev_warn(dev->net, "Error writing WUF_CFGX\n");
1833 goto done;
1837 if (pdata->wolopts & WAKE_MCAST) {
1838 const u8 mcast[] = {0x01, 0x00, 0x5E};
1839 netdev_info(dev->net, "enabling multicast detection\n");
1841 val = WUF_CFGX_EN | WUF_CFGX_ATYPE_MULTICAST
1842 | smsc_crc(mcast, 3);
1843 ret = smsc75xx_write_wuff(dev, filter++, val, 0x0007);
1844 if (ret < 0) {
1845 netdev_warn(dev->net, "Error writing wakeup filter\n");
1846 goto done;
1850 if (pdata->wolopts & WAKE_ARP) {
1851 const u8 arp[] = {0x08, 0x06};
1852 netdev_info(dev->net, "enabling ARP detection\n");
1854 val = WUF_CFGX_EN | WUF_CFGX_ATYPE_ALL | (0x0C << 16)
1855 | smsc_crc(arp, 2);
1856 ret = smsc75xx_write_wuff(dev, filter++, val, 0x0003);
1857 if (ret < 0) {
1858 netdev_warn(dev->net, "Error writing wakeup filter\n");
1859 goto done;
1863 /* clear any pending pattern match packet status */
1864 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
1865 if (ret < 0) {
1866 netdev_warn(dev->net, "Error reading WUCSR\n");
1867 goto done;
1870 val |= WUCSR_WUFR;
1872 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
1873 if (ret < 0) {
1874 netdev_warn(dev->net, "Error writing WUCSR\n");
1875 goto done;
1878 netdev_info(dev->net, "enabling packet match detection\n");
1879 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
1880 if (ret < 0) {
1881 netdev_warn(dev->net, "Error reading WUCSR\n");
1882 goto done;
1885 val |= WUCSR_WUEN;
1887 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
1888 if (ret < 0) {
1889 netdev_warn(dev->net, "Error writing WUCSR\n");
1890 goto done;
1892 } else {
1893 netdev_info(dev->net, "disabling packet match detection\n");
1894 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
1895 if (ret < 0) {
1896 netdev_warn(dev->net, "Error reading WUCSR\n");
1897 goto done;
1900 val &= ~WUCSR_WUEN;
1902 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
1903 if (ret < 0) {
1904 netdev_warn(dev->net, "Error writing WUCSR\n");
1905 goto done;
1909 /* disable magic, bcast & unicast wakeup sources */
1910 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
1911 if (ret < 0) {
1912 netdev_warn(dev->net, "Error reading WUCSR\n");
1913 goto done;
1916 val &= ~(WUCSR_MPEN | WUCSR_BCST_EN | WUCSR_PFDA_EN);
1918 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
1919 if (ret < 0) {
1920 netdev_warn(dev->net, "Error writing WUCSR\n");
1921 goto done;
1924 if (pdata->wolopts & WAKE_PHY) {
1925 netdev_info(dev->net, "enabling PHY wakeup\n");
1927 ret = smsc75xx_read_reg_nopm(dev, PMT_CTL, &val);
1928 if (ret < 0) {
1929 netdev_warn(dev->net, "Error reading PMT_CTL\n");
1930 goto done;
1933 /* clear wol status, enable energy detection */
1934 val &= ~PMT_CTL_WUPS;
1935 val |= (PMT_CTL_WUPS_ED | PMT_CTL_ED_EN);
1937 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
1938 if (ret < 0) {
1939 netdev_warn(dev->net, "Error writing PMT_CTL\n");
1940 goto done;
1944 if (pdata->wolopts & WAKE_MAGIC) {
1945 netdev_info(dev->net, "enabling magic packet wakeup\n");
1946 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
1947 if (ret < 0) {
1948 netdev_warn(dev->net, "Error reading WUCSR\n");
1949 goto done;
1952 /* clear any pending magic packet status */
1953 val |= WUCSR_MPR | WUCSR_MPEN;
1955 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
1956 if (ret < 0) {
1957 netdev_warn(dev->net, "Error writing WUCSR\n");
1958 goto done;
1962 if (pdata->wolopts & WAKE_BCAST) {
1963 netdev_info(dev->net, "enabling broadcast detection\n");
1964 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
1965 if (ret < 0) {
1966 netdev_warn(dev->net, "Error reading WUCSR\n");
1967 goto done;
1970 val |= WUCSR_BCAST_FR | WUCSR_BCST_EN;
1972 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
1973 if (ret < 0) {
1974 netdev_warn(dev->net, "Error writing WUCSR\n");
1975 goto done;
1979 if (pdata->wolopts & WAKE_UCAST) {
1980 netdev_info(dev->net, "enabling unicast detection\n");
1981 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
1982 if (ret < 0) {
1983 netdev_warn(dev->net, "Error reading WUCSR\n");
1984 goto done;
1987 val |= WUCSR_WUFR | WUCSR_PFDA_EN;
1989 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
1990 if (ret < 0) {
1991 netdev_warn(dev->net, "Error writing WUCSR\n");
1992 goto done;
1996 /* enable receiver to enable frame reception */
1997 ret = smsc75xx_read_reg_nopm(dev, MAC_RX, &val);
1998 if (ret < 0) {
1999 netdev_warn(dev->net, "Failed to read MAC_RX: %d\n", ret);
2000 goto done;
2003 val |= MAC_RX_RXEN;
2005 ret = smsc75xx_write_reg_nopm(dev, MAC_RX, val);
2006 if (ret < 0) {
2007 netdev_warn(dev->net, "Failed to write MAC_RX: %d\n", ret);
2008 goto done;
2011 /* some wol options are enabled, so enter SUSPEND0 */
2012 netdev_info(dev->net, "entering SUSPEND0 mode\n");
2013 ret = smsc75xx_enter_suspend0(dev);
2015 done:
2016 if (ret)
2017 usbnet_resume(intf);
2018 return ret;
2021 static int smsc75xx_resume(struct usb_interface *intf)
2023 struct usbnet *dev = usb_get_intfdata(intf);
2024 struct smsc75xx_priv *pdata = (struct smsc75xx_priv *)(dev->data[0]);
2025 u8 suspend_flags = pdata->suspend_flags;
2026 int ret;
2027 u32 val;
2029 netdev_dbg(dev->net, "resume suspend_flags=0x%02x\n", suspend_flags);
2031 /* do this first to ensure it's cleared even in error case */
2032 pdata->suspend_flags = 0;
2034 if (suspend_flags & SUSPEND_ALLMODES) {
2035 /* Disable wakeup sources */
2036 ret = smsc75xx_read_reg_nopm(dev, WUCSR, &val);
2037 if (ret < 0) {
2038 netdev_warn(dev->net, "Error reading WUCSR\n");
2039 return ret;
2042 val &= ~(WUCSR_WUEN | WUCSR_MPEN | WUCSR_PFDA_EN
2043 | WUCSR_BCST_EN);
2045 ret = smsc75xx_write_reg_nopm(dev, WUCSR, val);
2046 if (ret < 0) {
2047 netdev_warn(dev->net, "Error writing WUCSR\n");
2048 return ret;
2051 /* clear wake-up status */
2052 ret = smsc75xx_read_reg_nopm(dev, PMT_CTL, &val);
2053 if (ret < 0) {
2054 netdev_warn(dev->net, "Error reading PMT_CTL\n");
2055 return ret;
2058 val &= ~PMT_CTL_WOL_EN;
2059 val |= PMT_CTL_WUPS;
2061 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
2062 if (ret < 0) {
2063 netdev_warn(dev->net, "Error writing PMT_CTL\n");
2064 return ret;
2068 if (suspend_flags & SUSPEND_SUSPEND2) {
2069 netdev_info(dev->net, "resuming from SUSPEND2\n");
2071 ret = smsc75xx_read_reg_nopm(dev, PMT_CTL, &val);
2072 if (ret < 0) {
2073 netdev_warn(dev->net, "Error reading PMT_CTL\n");
2074 return ret;
2077 val |= PMT_CTL_PHY_PWRUP;
2079 ret = smsc75xx_write_reg_nopm(dev, PMT_CTL, val);
2080 if (ret < 0) {
2081 netdev_warn(dev->net, "Error writing PMT_CTL\n");
2082 return ret;
2086 ret = smsc75xx_wait_ready(dev, 1);
2087 if (ret < 0) {
2088 netdev_warn(dev->net, "device not ready in smsc75xx_resume\n");
2089 return ret;
2092 return usbnet_resume(intf);
2095 static void smsc75xx_rx_csum_offload(struct usbnet *dev, struct sk_buff *skb,
2096 u32 rx_cmd_a, u32 rx_cmd_b)
2098 if (!(dev->net->features & NETIF_F_RXCSUM) ||
2099 unlikely(rx_cmd_a & RX_CMD_A_LCSM)) {
2100 skb->ip_summed = CHECKSUM_NONE;
2101 } else {
2102 skb->csum = ntohs((u16)(rx_cmd_b >> RX_CMD_B_CSUM_SHIFT));
2103 skb->ip_summed = CHECKSUM_COMPLETE;
2107 static int smsc75xx_rx_fixup(struct usbnet *dev, struct sk_buff *skb)
2109 while (skb->len > 0) {
2110 u32 rx_cmd_a, rx_cmd_b, align_count, size;
2111 struct sk_buff *ax_skb;
2112 unsigned char *packet;
2114 memcpy(&rx_cmd_a, skb->data, sizeof(rx_cmd_a));
2115 le32_to_cpus(&rx_cmd_a);
2116 skb_pull(skb, 4);
2118 memcpy(&rx_cmd_b, skb->data, sizeof(rx_cmd_b));
2119 le32_to_cpus(&rx_cmd_b);
2120 skb_pull(skb, 4 + RXW_PADDING);
2122 packet = skb->data;
2124 /* get the packet length */
2125 size = (rx_cmd_a & RX_CMD_A_LEN) - RXW_PADDING;
2126 align_count = (4 - ((size + RXW_PADDING) % 4)) % 4;
2128 if (unlikely(rx_cmd_a & RX_CMD_A_RED)) {
2129 netif_dbg(dev, rx_err, dev->net,
2130 "Error rx_cmd_a=0x%08x\n", rx_cmd_a);
2131 dev->net->stats.rx_errors++;
2132 dev->net->stats.rx_dropped++;
2134 if (rx_cmd_a & RX_CMD_A_FCS)
2135 dev->net->stats.rx_crc_errors++;
2136 else if (rx_cmd_a & (RX_CMD_A_LONG | RX_CMD_A_RUNT))
2137 dev->net->stats.rx_frame_errors++;
2138 } else {
2139 /* ETH_FRAME_LEN + 4(CRC) + 2(COE) + 4(Vlan) */
2140 if (unlikely(size > (ETH_FRAME_LEN + 12))) {
2141 netif_dbg(dev, rx_err, dev->net,
2142 "size err rx_cmd_a=0x%08x\n",
2143 rx_cmd_a);
2144 return 0;
2147 /* last frame in this batch */
2148 if (skb->len == size) {
2149 smsc75xx_rx_csum_offload(dev, skb, rx_cmd_a,
2150 rx_cmd_b);
2152 skb_trim(skb, skb->len - 4); /* remove fcs */
2153 skb->truesize = size + sizeof(struct sk_buff);
2155 return 1;
2158 ax_skb = skb_clone(skb, GFP_ATOMIC);
2159 if (unlikely(!ax_skb)) {
2160 netdev_warn(dev->net, "Error allocating skb\n");
2161 return 0;
2164 ax_skb->len = size;
2165 ax_skb->data = packet;
2166 skb_set_tail_pointer(ax_skb, size);
2168 smsc75xx_rx_csum_offload(dev, ax_skb, rx_cmd_a,
2169 rx_cmd_b);
2171 skb_trim(ax_skb, ax_skb->len - 4); /* remove fcs */
2172 ax_skb->truesize = size + sizeof(struct sk_buff);
2174 usbnet_skb_return(dev, ax_skb);
2177 skb_pull(skb, size);
2179 /* padding bytes before the next frame starts */
2180 if (skb->len)
2181 skb_pull(skb, align_count);
2184 if (unlikely(skb->len < 0)) {
2185 netdev_warn(dev->net, "invalid rx length<0 %d\n", skb->len);
2186 return 0;
2189 return 1;
2192 static struct sk_buff *smsc75xx_tx_fixup(struct usbnet *dev,
2193 struct sk_buff *skb, gfp_t flags)
2195 u32 tx_cmd_a, tx_cmd_b;
2197 skb_linearize(skb);
2199 if (skb_headroom(skb) < SMSC75XX_TX_OVERHEAD) {
2200 struct sk_buff *skb2 =
2201 skb_copy_expand(skb, SMSC75XX_TX_OVERHEAD, 0, flags);
2202 dev_kfree_skb_any(skb);
2203 skb = skb2;
2204 if (!skb)
2205 return NULL;
2208 tx_cmd_a = (u32)(skb->len & TX_CMD_A_LEN) | TX_CMD_A_FCS;
2210 if (skb->ip_summed == CHECKSUM_PARTIAL)
2211 tx_cmd_a |= TX_CMD_A_IPE | TX_CMD_A_TPE;
2213 if (skb_is_gso(skb)) {
2214 u16 mss = max(skb_shinfo(skb)->gso_size, TX_MSS_MIN);
2215 tx_cmd_b = (mss << TX_CMD_B_MSS_SHIFT) & TX_CMD_B_MSS;
2217 tx_cmd_a |= TX_CMD_A_LSO;
2218 } else {
2219 tx_cmd_b = 0;
2222 skb_push(skb, 4);
2223 cpu_to_le32s(&tx_cmd_b);
2224 memcpy(skb->data, &tx_cmd_b, 4);
2226 skb_push(skb, 4);
2227 cpu_to_le32s(&tx_cmd_a);
2228 memcpy(skb->data, &tx_cmd_a, 4);
2230 return skb;
2233 static int smsc75xx_manage_power(struct usbnet *dev, int on)
2235 dev->intf->needs_remote_wakeup = on;
2236 return 0;
2239 static const struct driver_info smsc75xx_info = {
2240 .description = "smsc75xx USB 2.0 Gigabit Ethernet",
2241 .bind = smsc75xx_bind,
2242 .unbind = smsc75xx_unbind,
2243 .link_reset = smsc75xx_link_reset,
2244 .reset = smsc75xx_reset,
2245 .rx_fixup = smsc75xx_rx_fixup,
2246 .tx_fixup = smsc75xx_tx_fixup,
2247 .status = smsc75xx_status,
2248 .manage_power = smsc75xx_manage_power,
2249 .flags = FLAG_ETHER | FLAG_SEND_ZLP | FLAG_LINK_INTR,
2252 static const struct usb_device_id products[] = {
2254 /* SMSC7500 USB Gigabit Ethernet Device */
2255 USB_DEVICE(USB_VENDOR_ID_SMSC, USB_PRODUCT_ID_LAN7500),
2256 .driver_info = (unsigned long) &smsc75xx_info,
2259 /* SMSC7500 USB Gigabit Ethernet Device */
2260 USB_DEVICE(USB_VENDOR_ID_SMSC, USB_PRODUCT_ID_LAN7505),
2261 .driver_info = (unsigned long) &smsc75xx_info,
2263 { }, /* END */
2265 MODULE_DEVICE_TABLE(usb, products);
2267 static struct usb_driver smsc75xx_driver = {
2268 .name = SMSC_CHIPNAME,
2269 .id_table = products,
2270 .probe = usbnet_probe,
2271 .suspend = smsc75xx_suspend,
2272 .resume = smsc75xx_resume,
2273 .reset_resume = smsc75xx_resume,
2274 .disconnect = usbnet_disconnect,
2275 .disable_hub_initiated_lpm = 1,
2276 .supports_autosuspend = 1,
2279 module_usb_driver(smsc75xx_driver);
2281 MODULE_AUTHOR("Nancy Lin");
2282 MODULE_AUTHOR("Steve Glendinning <steve.glendinning@shawell.net>");
2283 MODULE_DESCRIPTION("SMSC75XX USB 2.0 Gigabit Ethernet Devices");
2284 MODULE_LICENSE("GPL");