1 /* [xirc2ps_cs.c wk 03.11.99] (1.40 1999/11/18 00:06:03)
2 * Xircom CreditCard Ethernet Adapter IIps driver
3 * Xircom Realport 10/100 (RE-100) driver
5 * This driver supports various Xircom CreditCard Ethernet adapters
6 * including the CE2, CE IIps, RE-10, CEM28, CEM33, CE33, CEM56,
7 * CE3-100, CE3B, RE-100, REM10BT, and REM56G-100.
9 * 2000-09-24 <psheer@icon.co.za> The Xircom CE3B-100 may not
10 * autodetect the media properly. In this case use the
11 * if_port=1 (for 10BaseT) or if_port=4 (for 100BaseT) options
12 * to force the media type.
14 * Written originally by Werner Koch based on David Hinds' skeleton of the
17 * Copyright (c) 1997,1998 Werner Koch (dd9jn)
19 * This driver is free software; you can redistribute it and/or modify
20 * it under the terms of the GNU General Public License as published by
21 * the Free Software Foundation; either version 2 of the License, or
22 * (at your option) any later version.
24 * It is distributed in the hope that it will be useful,
25 * but WITHOUT ANY WARRANTY; without even the implied warranty of
26 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
27 * GNU General Public License for more details.
29 * You should have received a copy of the GNU General Public License
30 * along with this program; if not, see <http://www.gnu.org/licenses/>.
33 * ALTERNATIVELY, this driver may be distributed under the terms of
34 * the following license, in which case the provisions of this license
35 * are required INSTEAD OF the GNU General Public License. (This clause
36 * is necessary due to a potential bad interaction between the GPL and
37 * the restrictions contained in a BSD-style copyright.)
39 * Redistribution and use in source and binary forms, with or without
40 * modification, are permitted provided that the following conditions
42 * 1. Redistributions of source code must retain the above copyright
43 * notice, and the entire permission notice in its entirety,
44 * including the disclaimer of warranties.
45 * 2. Redistributions in binary form must reproduce the above copyright
46 * notice, this list of conditions and the following disclaimer in the
47 * documentation and/or other materials provided with the distribution.
48 * 3. The name of the author may not be used to endorse or promote
49 * products derived from this software without specific prior
52 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
53 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
54 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
55 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
56 * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
57 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
58 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
59 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
60 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
61 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
62 * OF THE POSSIBILITY OF SUCH DAMAGE.
65 #define pr_fmt(fmt) KBUILD_MODNAME ": " fmt
67 #include <linux/module.h>
68 #include <linux/kernel.h>
69 #include <linux/init.h>
70 #include <linux/ptrace.h>
71 #include <linux/slab.h>
72 #include <linux/string.h>
73 #include <linux/timer.h>
74 #include <linux/interrupt.h>
76 #include <linux/delay.h>
77 #include <linux/ethtool.h>
78 #include <linux/netdevice.h>
79 #include <linux/etherdevice.h>
80 #include <linux/skbuff.h>
81 #include <linux/if_arp.h>
82 #include <linux/ioport.h>
83 #include <linux/bitops.h>
84 #include <linux/mii.h>
86 #include <pcmcia/cistpl.h>
87 #include <pcmcia/cisreg.h>
88 #include <pcmcia/ciscode.h>
91 #include <linux/uaccess.h>
94 #define MANFID_COMPAQ 0x0138
95 #define MANFID_COMPAQ2 0x0183 /* is this correct? */
98 #include <pcmcia/ds.h>
100 /* Time in jiffies before concluding Tx hung */
101 #define TX_TIMEOUT ((400*HZ)/1000)
104 * Some constants used to access the hardware
107 /* Register offsets and value constans */
108 #define XIRCREG_CR 0 /* Command register (wr) */
110 TransmitPacket = 0x01,
118 #define XIRCREG_ESR 0 /* Ethernet status register (rd) */
120 FullPktRcvd = 0x01, /* full packet in receive buffer */
121 PktRejected = 0x04, /* a packet has been rejected */
122 TxPktPend = 0x08, /* TX Packet Pending */
123 IncorPolarity = 0x10,
124 MediaSelect = 0x20 /* set if TP, clear if AUI */
126 #define XIRCREG_PR 1 /* Page Register select */
127 #define XIRCREG_EDP 4 /* Ethernet Data Port Register */
128 #define XIRCREG_ISR 6 /* Ethernet Interrupt Status Register */
130 TxBufOvr = 0x01, /* TX Buffer Overflow */
131 PktTxed = 0x02, /* Packet Transmitted */
132 MACIntr = 0x04, /* MAC Interrupt occurred */
133 TxResGrant = 0x08, /* Tx Reservation Granted */
134 RxFullPkt = 0x20, /* Rx Full Packet */
135 RxPktRej = 0x40, /* Rx Packet Rejected */
136 ForcedIntr= 0x80 /* Forced Interrupt */
138 #define XIRCREG1_IMR0 12 /* Ethernet Interrupt Mask Register (on page 1)*/
139 #define XIRCREG1_IMR1 13
140 #define XIRCREG0_TSO 8 /* Transmit Space Open Register (on page 0)*/
141 #define XIRCREG0_TRS 10 /* Transmit reservation Size Register (page 0)*/
142 #define XIRCREG0_DO 12 /* Data Offset Register (page 0) (wr) */
143 #define XIRCREG0_RSR 12 /* Receive Status Register (page 0) (rd) */
145 PhyPkt = 0x01, /* set:physical packet, clear: multicast packet */
146 BrdcstPkt = 0x02, /* set if it is a broadcast packet */
147 PktTooLong = 0x04, /* set if packet length > 1518 */
148 AlignErr = 0x10, /* incorrect CRC and last octet not complete */
149 CRCErr = 0x20, /* incorrect CRC and last octet is complete */
150 PktRxOk = 0x80 /* received ok */
152 #define XIRCREG0_PTR 13 /* packets transmitted register (rd) */
153 #define XIRCREG0_RBC 14 /* receive byte count regsister (rd) */
154 #define XIRCREG1_ECR 14 /* ethernet configurationn register */
156 FullDuplex = 0x04, /* enable full duplex mode */
157 LongTPMode = 0x08, /* adjust for longer lengths of TP cable */
158 DisablePolCor = 0x10,/* disable auto polarity correction */
159 DisableLinkPulse = 0x20, /* disable link pulse generation */
160 DisableAutoTx = 0x40, /* disable auto-transmit */
162 #define XIRCREG2_RBS 8 /* receive buffer start register */
163 #define XIRCREG2_LED 10 /* LED Configuration register */
164 /* values for the leds: Bits 2-0 for led 1
165 * 0 disabled Bits 5-3 for led 2
174 #define XIRCREG2_MSR 12 /* Mohawk specific register */
176 #define XIRCREG4_GPR0 8 /* General Purpose Register 0 */
177 #define XIRCREG4_GPR1 9 /* General Purpose Register 1 */
178 #define XIRCREG2_GPR2 13 /* General Purpose Register 2 (page2!)*/
179 #define XIRCREG4_BOV 10 /* Bonding Version Register */
180 #define XIRCREG4_LMA 12 /* Local Memory Address Register */
181 #define XIRCREG4_LMD 14 /* Local Memory Data Port */
182 /* MAC register can only by accessed with 8 bit operations */
183 #define XIRCREG40_CMD0 8 /* Command Register (wr) */
184 enum xirc_cmd { /* Commands */
193 #define XIRCREG5_RHSA0 10 /* Rx Host Start Address */
194 #define XIRCREG40_RXST0 9 /* Receive Status Register */
195 #define XIRCREG40_TXST0 11 /* Transmit Status Register 0 */
196 #define XIRCREG40_TXST1 12 /* Transmit Status Register 10 */
197 #define XIRCREG40_RMASK0 13 /* Receive Mask Register */
198 #define XIRCREG40_TMASK0 14 /* Transmit Mask Register 0 */
199 #define XIRCREG40_TMASK1 15 /* Transmit Mask Register 0 */
200 #define XIRCREG42_SWC0 8 /* Software Configuration 0 */
201 #define XIRCREG42_SWC1 9 /* Software Configuration 1 */
202 #define XIRCREG42_BOC 10 /* Back-Off Configuration */
203 #define XIRCREG44_TDR0 8 /* Time Domain Reflectometry 0 */
204 #define XIRCREG44_TDR1 9 /* Time Domain Reflectometry 1 */
205 #define XIRCREG44_RXBC_LO 10 /* Rx Byte Count 0 (rd) */
206 #define XIRCREG44_RXBC_HI 11 /* Rx Byte Count 1 (rd) */
207 #define XIRCREG45_REV 15 /* Revision Register (rd) */
208 #define XIRCREG50_IA 8 /* Individual Address (8-13) */
210 static const char *if_names[] = { "Auto", "10BaseT", "10Base2", "AUI", "100BaseT" };
213 #define XIR_UNKNOWN 0 /* unknown: not supported */
214 #define XIR_CE 1 /* (prodid 1) different hardware: not supported */
215 #define XIR_CE2 2 /* (prodid 2) */
216 #define XIR_CE3 3 /* (prodid 3) */
217 #define XIR_CEM 4 /* (prodid 1) different hardware: not supported */
218 #define XIR_CEM2 5 /* (prodid 2) */
219 #define XIR_CEM3 6 /* (prodid 3) */
220 #define XIR_CEM33 7 /* (prodid 4) */
221 #define XIR_CEM56M 8 /* (prodid 5) */
222 #define XIR_CEM56 9 /* (prodid 6) */
223 #define XIR_CM28 10 /* (prodid 3) modem only: not supported here */
224 #define XIR_CM33 11 /* (prodid 4) modem only: not supported here */
225 #define XIR_CM56 12 /* (prodid 5) modem only: not supported here */
226 #define XIR_CG 13 /* (prodid 1) GSM modem only: not supported */
227 #define XIR_CBE 14 /* (prodid 1) cardbus ethernet: not supported */
228 /*====================================================================*/
230 /* Module parameters */
232 MODULE_DESCRIPTION("Xircom PCMCIA ethernet driver");
233 MODULE_LICENSE("Dual MPL/GPL");
235 #define INT_MODULE_PARM(n, v) static int n = v; module_param(n, int, 0)
237 INT_MODULE_PARM(if_port, 0);
238 INT_MODULE_PARM(full_duplex, 0);
239 INT_MODULE_PARM(do_sound, 1);
240 INT_MODULE_PARM(lockup_hack, 0); /* anti lockup hack */
242 /*====================================================================*/
244 /* We do not process more than these number of bytes during one
245 * interrupt. (Of course we receive complete packets, so this is not
247 * Something between 2000..22000; first value gives best interrupt latency,
248 * the second enables the usage of the complete on-chip buffer. We use the
249 * high value as the initial value.
251 static unsigned maxrx_bytes = 22000;
253 /* MII management prototypes */
254 static void mii_idle(unsigned int ioaddr);
255 static void mii_putbit(unsigned int ioaddr, unsigned data);
256 static int mii_getbit(unsigned int ioaddr);
257 static void mii_wbits(unsigned int ioaddr, unsigned data, int len);
258 static unsigned mii_rd(unsigned int ioaddr, u_char phyaddr, u_char phyreg);
259 static void mii_wr(unsigned int ioaddr, u_char phyaddr, u_char phyreg,
260 unsigned data, int len);
262 static int has_ce2_string(struct pcmcia_device * link);
263 static int xirc2ps_config(struct pcmcia_device * link);
264 static void xirc2ps_release(struct pcmcia_device * link);
265 static void xirc2ps_detach(struct pcmcia_device *p_dev);
267 static irqreturn_t xirc2ps_interrupt(int irq, void *dev_id);
270 struct net_device *dev;
271 struct pcmcia_device *p_dev;
275 int silicon; /* silicon revision. 0=old CE2, 1=Scipper, 4=Mohawk */
276 int mohawk; /* a CE3 type card */
277 int dingo; /* a CEM56 type card */
278 int new_mii; /* has full 10baseT/100baseT MII */
279 int modem; /* is a multi function card (i.e with a modem) */
280 void __iomem *dingo_ccr; /* only used for CEM56 cards */
281 unsigned last_ptr_value; /* last packets transmitted value */
282 const char *manf_str;
283 struct work_struct tx_timeout_task;
287 * Some more prototypes
289 static netdev_tx_t do_start_xmit(struct sk_buff *skb,
290 struct net_device *dev);
291 static void xirc_tx_timeout(struct net_device *dev, unsigned int txqueue);
292 static void xirc2ps_tx_timeout_task(struct work_struct *work);
293 static void set_addresses(struct net_device *dev);
294 static void set_multicast_list(struct net_device *dev);
295 static int set_card_type(struct pcmcia_device *link);
296 static int do_config(struct net_device *dev, struct ifmap *map);
297 static int do_open(struct net_device *dev);
298 static int do_ioctl(struct net_device *dev, struct ifreq *rq, int cmd);
299 static const struct ethtool_ops netdev_ethtool_ops;
300 static void hardreset(struct net_device *dev);
301 static void do_reset(struct net_device *dev, int full);
302 static int init_mii(struct net_device *dev);
303 static void do_powerdown(struct net_device *dev);
304 static int do_stop(struct net_device *dev);
306 /*=============== Helper functions =========================*/
307 #define SelectPage(pgnr) outb((pgnr), ioaddr + XIRCREG_PR)
308 #define GetByte(reg) ((unsigned)inb(ioaddr + (reg)))
309 #define GetWord(reg) ((unsigned)inw(ioaddr + (reg)))
310 #define PutByte(reg,value) outb((value), ioaddr+(reg))
311 #define PutWord(reg,value) outw((value), ioaddr+(reg))
313 /*====== Functions used for debugging =================================*/
314 #if 0 /* reading regs may change system status */
316 PrintRegisters(struct net_device *dev)
318 unsigned int ioaddr = dev->base_addr;
323 printk(KERN_DEBUG pr_fmt("Register common: "));
324 for (i = 0; i < 8; i++)
325 pr_cont(" %2.2x", GetByte(i));
327 for (page = 0; page <= 8; page++) {
328 printk(KERN_DEBUG pr_fmt("Register page %2x: "), page);
330 for (i = 8; i < 16; i++)
331 pr_cont(" %2.2x", GetByte(i));
334 for (page=0x40 ; page <= 0x5f; page++) {
335 if (page == 0x43 || (page >= 0x46 && page <= 0x4f) ||
336 (page >= 0x51 && page <=0x5e))
338 printk(KERN_DEBUG pr_fmt("Register page %2x: "), page);
340 for (i = 8; i < 16; i++)
341 pr_cont(" %2.2x", GetByte(i));
348 /*============== MII Management functions ===============*/
351 * Turn around for read
354 mii_idle(unsigned int ioaddr)
356 PutByte(XIRCREG2_GPR2, 0x04|0); /* drive MDCK low */
358 PutByte(XIRCREG2_GPR2, 0x04|1); /* and drive MDCK high */
363 * Write a bit to MDI/O
366 mii_putbit(unsigned int ioaddr, unsigned data)
370 PutByte(XIRCREG2_GPR2, 0x0c|2|0); /* set MDIO */
372 PutByte(XIRCREG2_GPR2, 0x0c|2|1); /* and drive MDCK high */
375 PutByte(XIRCREG2_GPR2, 0x0c|0|0); /* clear MDIO */
377 PutByte(XIRCREG2_GPR2, 0x0c|0|1); /* and drive MDCK high */
382 PutWord(XIRCREG2_GPR2-1, 0x0e0e);
384 PutWord(XIRCREG2_GPR2-1, 0x0f0f);
387 PutWord(XIRCREG2_GPR2-1, 0x0c0c);
389 PutWord(XIRCREG2_GPR2-1, 0x0d0d);
396 * Get a bit from MDI/O
399 mii_getbit(unsigned int ioaddr)
403 PutByte(XIRCREG2_GPR2, 4|0); /* drive MDCK low */
405 d = GetByte(XIRCREG2_GPR2); /* read MDIO */
406 PutByte(XIRCREG2_GPR2, 4|1); /* drive MDCK high again */
408 return d & 0x20; /* read MDIO */
412 mii_wbits(unsigned int ioaddr, unsigned data, int len)
414 unsigned m = 1 << (len-1);
416 mii_putbit(ioaddr, data & m);
420 mii_rd(unsigned int ioaddr, u_char phyaddr, u_char phyreg)
426 for (i=0; i < 32; i++) /* 32 bit preamble */
427 mii_putbit(ioaddr, 1);
428 mii_wbits(ioaddr, 0x06, 4); /* Start and opcode for read */
429 mii_wbits(ioaddr, phyaddr, 5); /* PHY address to be accessed */
430 mii_wbits(ioaddr, phyreg, 5); /* PHY register to read */
431 mii_idle(ioaddr); /* turn around */
434 for (m = 1<<15; m; m >>= 1)
435 if (mii_getbit(ioaddr))
442 mii_wr(unsigned int ioaddr, u_char phyaddr, u_char phyreg, unsigned data,
448 for (i=0; i < 32; i++) /* 32 bit preamble */
449 mii_putbit(ioaddr, 1);
450 mii_wbits(ioaddr, 0x05, 4); /* Start and opcode for write */
451 mii_wbits(ioaddr, phyaddr, 5); /* PHY address to be accessed */
452 mii_wbits(ioaddr, phyreg, 5); /* PHY Register to write */
453 mii_putbit(ioaddr, 1); /* turn around */
454 mii_putbit(ioaddr, 0);
455 mii_wbits(ioaddr, data, len); /* And write the data */
459 /*============= Main bulk of functions =========================*/
461 static const struct net_device_ops netdev_ops = {
464 .ndo_start_xmit = do_start_xmit,
465 .ndo_tx_timeout = xirc_tx_timeout,
466 .ndo_set_config = do_config,
467 .ndo_do_ioctl = do_ioctl,
468 .ndo_set_rx_mode = set_multicast_list,
469 .ndo_set_mac_address = eth_mac_addr,
470 .ndo_validate_addr = eth_validate_addr,
474 xirc2ps_probe(struct pcmcia_device *link)
476 struct net_device *dev;
477 struct local_info *local;
479 dev_dbg(&link->dev, "attach()\n");
481 /* Allocate the device structure */
482 dev = alloc_etherdev(sizeof(struct local_info));
485 local = netdev_priv(dev);
490 /* General socket configuration */
491 link->config_index = 1;
493 /* Fill in card specific entries */
494 dev->netdev_ops = &netdev_ops;
495 dev->ethtool_ops = &netdev_ethtool_ops;
496 dev->watchdog_timeo = TX_TIMEOUT;
497 INIT_WORK(&local->tx_timeout_task, xirc2ps_tx_timeout_task);
499 return xirc2ps_config(link);
500 } /* xirc2ps_attach */
503 xirc2ps_detach(struct pcmcia_device *link)
505 struct net_device *dev = link->priv;
507 dev_dbg(&link->dev, "detach\n");
509 unregister_netdev(dev);
511 xirc2ps_release(link);
514 } /* xirc2ps_detach */
517 * Detect the type of the card. s is the buffer with the data of tuple 0x20
518 * Returns: 0 := not supported
519 * mediaid=11 and prodid=47
535 set_card_type(struct pcmcia_device *link)
537 struct net_device *dev = link->priv;
538 struct local_info *local = netdev_priv(dev);
540 unsigned int cisrev, mediaid, prodid;
543 len = pcmcia_get_tuple(link, CISTPL_MANFID, &buf);
545 dev_err(&link->dev, "invalid CIS -- sorry\n");
553 dev_dbg(&link->dev, "cisrev=%02x mediaid=%02x prodid=%02x\n",
554 cisrev, mediaid, prodid);
559 local->card_type = XIR_UNKNOWN;
560 if (!(prodid & 0x40)) {
561 pr_notice("Oops: Not a creditcard\n");
564 if (!(mediaid & 0x01)) {
565 pr_notice("Not an Ethernet card\n");
568 if (mediaid & 0x10) {
570 switch(prodid & 15) {
571 case 1: local->card_type = XIR_CEM ; break;
572 case 2: local->card_type = XIR_CEM2 ; break;
573 case 3: local->card_type = XIR_CEM3 ; break;
574 case 4: local->card_type = XIR_CEM33 ; break;
575 case 5: local->card_type = XIR_CEM56M;
579 case 7: /* 7 is the RealPort 10/56 */
580 local->card_type = XIR_CEM56 ;
586 switch(prodid & 15) {
587 case 1: local->card_type = has_ce2_string(link)? XIR_CE2 : XIR_CE ;
589 case 2: local->card_type = XIR_CE2; break;
590 case 3: local->card_type = XIR_CE3;
595 if (local->card_type == XIR_CE || local->card_type == XIR_CEM) {
596 pr_notice("Sorry, this is an old CE card\n");
599 if (local->card_type == XIR_UNKNOWN)
600 pr_notice("unknown card (mediaid=%02x prodid=%02x)\n", mediaid, prodid);
606 * There are some CE2 cards out which claim to be a CE card.
607 * This function looks for a "CE2" in the 3rd version field.
608 * Returns: true if this is a CE2
611 has_ce2_string(struct pcmcia_device * p_dev)
613 if (p_dev->prod_id[2] && strstr(p_dev->prod_id[2], "CE2"))
619 xirc2ps_config_modem(struct pcmcia_device *p_dev, void *priv_data)
623 if ((p_dev->resource[0]->start & 0xf) == 8)
626 p_dev->resource[0]->end = 16;
627 p_dev->resource[1]->end = 8;
628 p_dev->resource[0]->flags &= ~IO_DATA_PATH_WIDTH;
629 p_dev->resource[0]->flags |= IO_DATA_PATH_WIDTH_16;
630 p_dev->resource[1]->flags &= ~IO_DATA_PATH_WIDTH;
631 p_dev->resource[1]->flags |= IO_DATA_PATH_WIDTH_8;
632 p_dev->io_lines = 10;
634 p_dev->resource[1]->start = p_dev->resource[0]->start;
635 for (ioaddr = 0x300; ioaddr < 0x400; ioaddr += 0x10) {
636 p_dev->resource[0]->start = ioaddr;
637 if (!pcmcia_request_io(p_dev))
644 xirc2ps_config_check(struct pcmcia_device *p_dev, void *priv_data)
646 int *pass = priv_data;
647 resource_size_t tmp = p_dev->resource[1]->start;
649 tmp += (*pass ? (p_dev->config_index & 0x20 ? -24 : 8)
650 : (p_dev->config_index & 0x20 ? 8 : -24));
652 if ((p_dev->resource[0]->start & 0xf) == 8)
655 p_dev->resource[0]->end = 18;
656 p_dev->resource[1]->end = 8;
657 p_dev->resource[0]->flags &= ~IO_DATA_PATH_WIDTH;
658 p_dev->resource[0]->flags |= IO_DATA_PATH_WIDTH_16;
659 p_dev->resource[1]->flags &= ~IO_DATA_PATH_WIDTH;
660 p_dev->resource[1]->flags |= IO_DATA_PATH_WIDTH_8;
661 p_dev->io_lines = 10;
663 p_dev->resource[1]->start = p_dev->resource[0]->start;
664 p_dev->resource[0]->start = tmp;
665 return pcmcia_request_io(p_dev);
669 static int pcmcia_get_mac_ce(struct pcmcia_device *p_dev,
673 struct net_device *dev = priv;
676 if (tuple->TupleDataLen != 13)
678 if ((tuple->TupleData[0] != 2) || (tuple->TupleData[1] != 1) ||
679 (tuple->TupleData[2] != 6))
681 /* another try (James Lehmer's CE2 version 4.1)*/
682 for (i = 2; i < 6; i++)
683 dev->dev_addr[i] = tuple->TupleData[i+2];
689 xirc2ps_config(struct pcmcia_device * link)
691 struct net_device *dev = link->priv;
692 struct local_info *local = netdev_priv(dev);
698 local->dingo_ccr = NULL;
700 dev_dbg(&link->dev, "config\n");
702 /* Is this a valid card */
703 if (link->has_manf_id == 0) {
704 pr_notice("manfid not found in CIS\n");
708 switch (link->manf_id) {
710 local->manf_str = "Xircom";
713 local->manf_str = "Accton";
717 local->manf_str = "Compaq";
720 local->manf_str = "Intel";
723 local->manf_str = "Toshiba";
726 pr_notice("Unknown Card Manufacturer ID: 0x%04x\n",
727 (unsigned)link->manf_id);
730 dev_dbg(&link->dev, "found %s card\n", local->manf_str);
732 if (!set_card_type(link)) {
733 pr_notice("this card is not supported\n");
737 /* get the ethernet address from the CIS */
738 err = pcmcia_get_mac_from_cis(link, dev);
740 /* not found: try to get the node-id from tuple 0x89 */
742 len = pcmcia_get_tuple(link, 0x89, &buf);
743 /* data layout looks like tuple 0x22 */
744 if (buf && len == 8) {
745 if (*buf == CISTPL_FUNCE_LAN_NODE_ID) {
747 for (i = 2; i < 6; i++)
748 dev->dev_addr[i] = buf[i+2];
756 err = pcmcia_loop_tuple(link, CISTPL_FUNCE, pcmcia_get_mac_ce, dev);
759 pr_notice("node-id not found in CIS\n");
765 link->config_flags |= CONF_AUTO_SET_IO;
768 /* Take the Modem IO port from the CIS and scan for a free
770 if (!pcmcia_loop_config(link, xirc2ps_config_modem, NULL))
773 /* We do 2 passes here: The first one uses the regular mapping and
774 * the second tries again, thereby considering that the 32 ports are
775 * mirrored every 32 bytes. Actually we use a mirrored port for
776 * the Mako if (on the first pass) the COR bit 5 is set.
778 for (pass=0; pass < 2; pass++)
779 if (!pcmcia_loop_config(link, xirc2ps_config_check,
782 /* if special option:
783 * try to configure as Ethernet only.
786 pr_notice("no ports available\n");
789 link->resource[0]->end = 16;
790 link->resource[0]->flags |= IO_DATA_PATH_WIDTH_16;
791 for (ioaddr = 0x300; ioaddr < 0x400; ioaddr += 0x10) {
792 link->resource[0]->start = ioaddr;
793 if (!(err = pcmcia_request_io(link)))
796 link->resource[0]->start = 0; /* let CS decide */
797 if ((err = pcmcia_request_io(link)))
803 * Now allocate an interrupt line. Note that this does not
804 * actually assign a handler to the interrupt.
806 if ((err=pcmcia_request_irq(link, xirc2ps_interrupt)))
809 link->config_flags |= CONF_ENABLE_IRQ;
811 link->config_flags |= CONF_ENABLE_SPKR;
813 if ((err = pcmcia_enable_device(link)))
817 /* Reset the modem's BAR to the correct value
818 * This is necessary because in the RequestConfiguration call,
819 * the base address of the ethernet port (BasePort1) is written
820 * to the BAR registers of the modem.
822 err = pcmcia_write_config_byte(link, CISREG_IOBASE_0, (u8)
823 link->resource[1]->start & 0xff);
827 err = pcmcia_write_config_byte(link, CISREG_IOBASE_1,
828 (link->resource[1]->start >> 8) & 0xff);
832 /* There is no config entry for the Ethernet part which
833 * is at 0x0800. So we allocate a window into the attribute
834 * memory and write direct to the CIS registers
836 link->resource[2]->flags = WIN_DATA_WIDTH_8 | WIN_MEMORY_TYPE_AM |
838 link->resource[2]->start = link->resource[2]->end = 0;
839 if ((err = pcmcia_request_window(link, link->resource[2], 0)))
842 local->dingo_ccr = ioremap(link->resource[2]->start, 0x1000) + 0x0800;
843 if ((err = pcmcia_map_mem_page(link, link->resource[2], 0)))
846 /* Setup the CCRs; there are no infos in the CIS about the Ethernet
849 writeb(0x47, local->dingo_ccr + CISREG_COR);
850 ioaddr = link->resource[0]->start;
851 writeb(ioaddr & 0xff , local->dingo_ccr + CISREG_IOBASE_0);
852 writeb((ioaddr >> 8)&0xff , local->dingo_ccr + CISREG_IOBASE_1);
858 for (i=0; i < 7; i++) {
859 tmp = readb(local->dingo_ccr + i*2);
860 pr_cont(" %02x", tmp);
864 for (i=0; i < 4; i++) {
865 tmp = readb(local->dingo_ccr + 0x20 + i*2);
866 pr_cont(" %02x", tmp);
870 for (i=0; i < 10; i++) {
871 tmp = readb(local->dingo_ccr + 0x40 + i*2);
872 pr_cont(" %02x", tmp);
878 writeb(0x01, local->dingo_ccr + 0x20);
879 writeb(0x0c, local->dingo_ccr + 0x22);
880 writeb(0x00, local->dingo_ccr + 0x24);
881 writeb(0x00, local->dingo_ccr + 0x26);
882 writeb(0x00, local->dingo_ccr + 0x28);
885 /* The if_port symbol can be set when the module is loaded */
888 local->probe_port = dev->if_port = 1;
889 } else if ((if_port >= 1 && if_port <= 2) ||
890 (local->mohawk && if_port==4))
891 dev->if_port = if_port;
893 pr_notice("invalid if_port requested\n");
895 /* we can now register the device with the net subsystem */
896 dev->irq = link->irq;
897 dev->base_addr = link->resource[0]->start;
900 do_reset(dev, 1); /* a kludge to make the cem56 work */
902 SET_NETDEV_DEV(dev, &link->dev);
904 if ((err=register_netdev(dev))) {
905 pr_notice("register_netdev() failed\n");
909 /* give some infos about the hardware */
910 netdev_info(dev, "%s: port %#3lx, irq %d, hwaddr %pM\n",
911 local->manf_str, (u_long)dev->base_addr, (int)dev->irq,
917 xirc2ps_release(link);
922 } /* xirc2ps_config */
925 xirc2ps_release(struct pcmcia_device *link)
927 dev_dbg(&link->dev, "release\n");
929 if (link->resource[2]->end) {
930 struct net_device *dev = link->priv;
931 struct local_info *local = netdev_priv(dev);
933 iounmap(local->dingo_ccr - 0x0800);
935 pcmcia_disable_device(link);
936 } /* xirc2ps_release */
938 /*====================================================================*/
941 static int xirc2ps_suspend(struct pcmcia_device *link)
943 struct net_device *dev = link->priv;
946 netif_device_detach(dev);
953 static int xirc2ps_resume(struct pcmcia_device *link)
955 struct net_device *dev = link->priv;
959 netif_device_attach(dev);
966 /*====================================================================*/
969 * This is the Interrupt service route.
972 xirc2ps_interrupt(int irq, void *dev_id)
974 struct net_device *dev = (struct net_device *)dev_id;
975 struct local_info *lp = netdev_priv(dev);
979 unsigned int_status, eth_status, rx_status, tx_status;
980 unsigned rsr, pktlen;
981 ulong start_ticks = jiffies; /* fixme: jiffies rollover every 497 days
982 * is this something to worry about?
986 if (!netif_device_present(dev))
989 ioaddr = dev->base_addr;
990 if (lp->mohawk) { /* must disable the interrupt */
991 PutByte(XIRCREG_CR, 0);
994 pr_debug("%s: interrupt %d at %#x.\n", dev->name, irq, ioaddr);
996 saved_page = GetByte(XIRCREG_PR);
997 /* Read the ISR to see whats the cause for the interrupt.
998 * This also clears the interrupt flags on CE2 cards
1000 int_status = GetByte(XIRCREG_ISR);
1003 if (int_status == 0xff) { /* card may be ejected */
1004 pr_debug("%s: interrupt %d for dead card\n", dev->name, irq);
1007 eth_status = GetByte(XIRCREG_ESR);
1010 rx_status = GetByte(XIRCREG40_RXST0);
1011 PutByte(XIRCREG40_RXST0, (~rx_status & 0xff));
1012 tx_status = GetByte(XIRCREG40_TXST0);
1013 tx_status |= GetByte(XIRCREG40_TXST1) << 8;
1014 PutByte(XIRCREG40_TXST0, 0);
1015 PutByte(XIRCREG40_TXST1, 0);
1017 pr_debug("%s: ISR=%#2.2x ESR=%#2.2x RSR=%#2.2x TSR=%#4.4x\n",
1018 dev->name, int_status, eth_status, rx_status, tx_status);
1020 /***** receive section ******/
1022 while (eth_status & FullPktRcvd) {
1023 rsr = GetByte(XIRCREG0_RSR);
1024 if (bytes_rcvd > maxrx_bytes && (rsr & PktRxOk)) {
1025 /* too many bytes received during this int, drop the rest of the
1027 dev->stats.rx_dropped++;
1028 pr_debug("%s: RX drop, too much done\n", dev->name);
1029 } else if (rsr & PktRxOk) {
1030 struct sk_buff *skb;
1032 pktlen = GetWord(XIRCREG0_RBC);
1033 bytes_rcvd += pktlen;
1035 pr_debug("rsr=%#02x packet_length=%u\n", rsr, pktlen);
1037 /* 1 extra so we can use insw */
1038 skb = netdev_alloc_skb(dev, pktlen + 3);
1040 dev->stats.rx_dropped++;
1041 } else { /* okay get the packet */
1042 skb_reserve(skb, 2);
1043 if (lp->silicon == 0 ) { /* work around a hardware bug */
1044 unsigned rhsa; /* receive start address */
1047 rhsa = GetWord(XIRCREG5_RHSA0);
1049 rhsa += 3; /* skip control infos */
1052 if (rhsa + pktlen > 0x8000) {
1054 u_char *buf = skb_put(skb, pktlen);
1055 for (i=0; i < pktlen ; i++, rhsa++) {
1056 buf[i] = GetByte(XIRCREG_EDP);
1057 if (rhsa == 0x8000) {
1063 insw(ioaddr+XIRCREG_EDP,
1064 skb_put(skb, pktlen), (pktlen+1)>>1);
1068 else if (lp->mohawk) {
1069 /* To use this 32 bit access we should use
1070 * a manual optimized loop
1071 * Also the words are swapped, we can get more
1072 * performance by using 32 bit access and swapping
1073 * the words in a register. Will need this for cardbus
1075 * Note: don't forget to change the ALLOC_SKB to .. +3
1078 u_long *p = skb_put(skb, pktlen);
1080 unsigned int edpreg = ioaddr+XIRCREG_EDP-2;
1081 for (i=0; i < len ; i += 4, p++) {
1083 __asm__("rorl $16,%0\n\t"
1091 insw(ioaddr+XIRCREG_EDP, skb_put(skb, pktlen),
1094 skb->protocol = eth_type_trans(skb, dev);
1096 dev->stats.rx_packets++;
1097 dev->stats.rx_bytes += pktlen;
1098 if (!(rsr & PhyPkt))
1099 dev->stats.multicast++;
1101 } else { /* bad packet */
1102 pr_debug("rsr=%#02x\n", rsr);
1104 if (rsr & PktTooLong) {
1105 dev->stats.rx_frame_errors++;
1106 pr_debug("%s: Packet too long\n", dev->name);
1109 dev->stats.rx_crc_errors++;
1110 pr_debug("%s: CRC error\n", dev->name);
1112 if (rsr & AlignErr) {
1113 dev->stats.rx_fifo_errors++; /* okay ? */
1114 pr_debug("%s: Alignment error\n", dev->name);
1117 /* clear the received/dropped/error packet */
1118 PutWord(XIRCREG0_DO, 0x8000); /* issue cmd: skip_rx_packet */
1120 /* get the new ethernet status */
1121 eth_status = GetByte(XIRCREG_ESR);
1123 if (rx_status & 0x10) { /* Receive overrun */
1124 dev->stats.rx_over_errors++;
1125 PutByte(XIRCREG_CR, ClearRxOvrun);
1126 pr_debug("receive overrun cleared\n");
1129 /***** transmit section ******/
1130 if (int_status & PktTxed) {
1133 n = lp->last_ptr_value;
1134 nn = GetByte(XIRCREG0_PTR);
1135 lp->last_ptr_value = nn;
1136 if (nn < n) /* rollover */
1137 dev->stats.tx_packets += 256 - n;
1138 else if (n == nn) { /* happens sometimes - don't know why */
1139 pr_debug("PTR not changed?\n");
1141 dev->stats.tx_packets += lp->last_ptr_value - n;
1142 netif_wake_queue(dev);
1144 if (tx_status & 0x0002) { /* Excessive collisions */
1145 pr_debug("tx restarted due to excessive collisions\n");
1146 PutByte(XIRCREG_CR, RestartTx); /* restart transmitter process */
1148 if (tx_status & 0x0040)
1149 dev->stats.tx_aborted_errors++;
1151 /* recalculate our work chunk so that we limit the duration of this
1152 * ISR to about 1/10 of a second.
1153 * Calculate only if we received a reasonable amount of bytes.
1155 if (bytes_rcvd > 1000) {
1156 u_long duration = jiffies - start_ticks;
1158 if (duration >= HZ/10) { /* if more than about 1/10 second */
1159 maxrx_bytes = (bytes_rcvd * (HZ/10)) / duration;
1160 if (maxrx_bytes < 2000)
1162 else if (maxrx_bytes > 22000)
1163 maxrx_bytes = 22000;
1164 pr_debug("set maxrx=%u (rcvd=%u ticks=%lu)\n",
1165 maxrx_bytes, bytes_rcvd, duration);
1166 } else if (!duration && maxrx_bytes < 22000) {
1167 /* now much faster */
1168 maxrx_bytes += 2000;
1169 if (maxrx_bytes > 22000)
1170 maxrx_bytes = 22000;
1171 pr_debug("set maxrx=%u\n", maxrx_bytes);
1177 if (int_status != 0xff && (int_status = GetByte(XIRCREG_ISR)) != 0)
1180 SelectPage(saved_page);
1181 PutByte(XIRCREG_CR, EnableIntr); /* re-enable interrupts */
1182 /* Instead of dropping packets during a receive, we could
1183 * force an interrupt with this command:
1184 * PutByte(XIRCREG_CR, EnableIntr|ForceIntr);
1187 } /* xirc2ps_interrupt */
1189 /*====================================================================*/
1192 xirc2ps_tx_timeout_task(struct work_struct *work)
1194 struct local_info *local =
1195 container_of(work, struct local_info, tx_timeout_task);
1196 struct net_device *dev = local->dev;
1197 /* reset the card */
1199 netif_trans_update(dev); /* prevent tx timeout */
1200 netif_wake_queue(dev);
1204 xirc_tx_timeout(struct net_device *dev, unsigned int txqueue)
1206 struct local_info *lp = netdev_priv(dev);
1207 dev->stats.tx_errors++;
1208 netdev_notice(dev, "transmit timed out\n");
1209 schedule_work(&lp->tx_timeout_task);
1213 do_start_xmit(struct sk_buff *skb, struct net_device *dev)
1215 struct local_info *lp = netdev_priv(dev);
1216 unsigned int ioaddr = dev->base_addr;
1219 unsigned pktlen = skb->len;
1221 pr_debug("do_start_xmit(skb=%p, dev=%p) len=%u\n",
1225 /* adjust the packet length to min. required
1226 * and hope that the buffer is large enough
1227 * to provide some random data.
1228 * fixme: For Mohawk we can change this by sending
1229 * a larger packetlen than we actually have; the chip will
1230 * pad this in his buffer with random bytes
1232 if (pktlen < ETH_ZLEN)
1234 if (skb_padto(skb, ETH_ZLEN))
1235 return NETDEV_TX_OK;
1239 netif_stop_queue(dev);
1241 PutWord(XIRCREG0_TRS, (u_short)pktlen+2);
1242 freespace = GetWord(XIRCREG0_TSO);
1243 okay = freespace & 0x8000;
1244 freespace &= 0x7fff;
1245 /* TRS doesn't work - (indeed it is eliminated with sil-rev 1) */
1246 okay = pktlen +2 < freespace;
1247 pr_debug("%s: avail. tx space=%u%s\n",
1248 dev->name, freespace, okay ? " (okay)":" (not enough)");
1249 if (!okay) { /* not enough space */
1250 return NETDEV_TX_BUSY; /* upper layer may decide to requeue this packet */
1252 /* send the packet */
1253 PutWord(XIRCREG_EDP, (u_short)pktlen);
1254 outsw(ioaddr+XIRCREG_EDP, skb->data, pktlen>>1);
1256 PutByte(XIRCREG_EDP, skb->data[pktlen-1]);
1259 PutByte(XIRCREG_CR, TransmitPacket|EnableIntr);
1261 dev_kfree_skb (skb);
1262 dev->stats.tx_bytes += pktlen;
1263 netif_start_queue(dev);
1264 return NETDEV_TX_OK;
1267 struct set_address_info {
1271 unsigned int ioaddr;
1274 static void set_address(struct set_address_info *sa_info, char *addr)
1276 unsigned int ioaddr = sa_info->ioaddr;
1279 for (i = 0; i < 6; i++) {
1280 if (sa_info->reg_nr > 15) {
1281 sa_info->reg_nr = 8;
1283 SelectPage(sa_info->page_nr);
1285 if (sa_info->mohawk)
1286 PutByte(sa_info->reg_nr++, addr[5 - i]);
1288 PutByte(sa_info->reg_nr++, addr[i]);
1293 * Set all addresses: This first one is the individual address,
1294 * the next 9 addresses are taken from the multicast list and
1295 * the rest is filled with the individual address.
1297 static void set_addresses(struct net_device *dev)
1299 unsigned int ioaddr = dev->base_addr;
1300 struct local_info *lp = netdev_priv(dev);
1301 struct netdev_hw_addr *ha;
1302 struct set_address_info sa_info;
1306 * Setup the info structure so that by first set_address call it will do
1307 * SelectPage with the right page number. Hence these ones here.
1309 sa_info.reg_nr = 15 + 1;
1310 sa_info.page_nr = 0x50 - 1;
1311 sa_info.mohawk = lp->mohawk;
1312 sa_info.ioaddr = ioaddr;
1314 set_address(&sa_info, dev->dev_addr);
1316 netdev_for_each_mc_addr(ha, dev) {
1319 set_address(&sa_info, ha->addr);
1322 set_address(&sa_info, dev->dev_addr);
1327 * Set or clear the multicast filter for this adaptor.
1328 * We can filter up to 9 addresses, if more are requested we set
1329 * multicast promiscuous mode.
1333 set_multicast_list(struct net_device *dev)
1335 unsigned int ioaddr = dev->base_addr;
1339 value = GetByte(XIRCREG42_SWC1) & 0xC0;
1341 if (dev->flags & IFF_PROMISC) { /* snoop */
1342 PutByte(XIRCREG42_SWC1, value | 0x06); /* set MPE and PME */
1343 } else if (netdev_mc_count(dev) > 9 || (dev->flags & IFF_ALLMULTI)) {
1344 PutByte(XIRCREG42_SWC1, value | 0x02); /* set MPE */
1345 } else if (!netdev_mc_empty(dev)) {
1346 /* the chip can filter 9 addresses perfectly */
1347 PutByte(XIRCREG42_SWC1, value | 0x01);
1349 PutByte(XIRCREG40_CMD0, Offline);
1352 PutByte(XIRCREG40_CMD0, EnableRecv | Online);
1353 } else { /* standard usage */
1354 PutByte(XIRCREG42_SWC1, value | 0x00);
1360 do_config(struct net_device *dev, struct ifmap *map)
1362 struct local_info *local = netdev_priv(dev);
1364 pr_debug("do_config(%p)\n", dev);
1365 if (map->port != 255 && map->port != dev->if_port) {
1369 local->probe_port = 1;
1372 local->probe_port = 0;
1373 dev->if_port = map->port;
1375 netdev_info(dev, "switching to %s port\n", if_names[dev->if_port]);
1376 do_reset(dev,1); /* not the fine way :-) */
1385 do_open(struct net_device *dev)
1387 struct local_info *lp = netdev_priv(dev);
1388 struct pcmcia_device *link = lp->p_dev;
1390 dev_dbg(&link->dev, "do_open(%p)\n", dev);
1392 /* Check that the PCMCIA card is still here. */
1393 /* Physical device present signature. */
1394 if (!pcmcia_dev_present(link))
1400 netif_start_queue(dev);
1406 static void netdev_get_drvinfo(struct net_device *dev,
1407 struct ethtool_drvinfo *info)
1409 strlcpy(info->driver, "xirc2ps_cs", sizeof(info->driver));
1410 snprintf(info->bus_info, sizeof(info->bus_info), "PCMCIA 0x%lx",
1414 static const struct ethtool_ops netdev_ethtool_ops = {
1415 .get_drvinfo = netdev_get_drvinfo,
1419 do_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
1421 struct local_info *local = netdev_priv(dev);
1422 unsigned int ioaddr = dev->base_addr;
1423 struct mii_ioctl_data *data = if_mii(rq);
1425 pr_debug("%s: ioctl(%-.6s, %#04x) %04x %04x %04x %04x\n",
1426 dev->name, rq->ifr_ifrn.ifrn_name, cmd,
1427 data->phy_id, data->reg_num, data->val_in, data->val_out);
1433 case SIOCGMIIPHY: /* Get the address of the PHY in use. */
1434 data->phy_id = 0; /* we have only this address */
1436 case SIOCGMIIREG: /* Read the specified MII register. */
1437 data->val_out = mii_rd(ioaddr, data->phy_id & 0x1f,
1438 data->reg_num & 0x1f);
1440 case SIOCSMIIREG: /* Write the specified MII register */
1441 mii_wr(ioaddr, data->phy_id & 0x1f, data->reg_num & 0x1f, data->val_in,
1451 hardreset(struct net_device *dev)
1453 struct local_info *local = netdev_priv(dev);
1454 unsigned int ioaddr = dev->base_addr;
1458 PutByte(XIRCREG4_GPR1, 0); /* clear bit 0: power down */
1459 msleep(40); /* wait 40 msec */
1461 PutByte(XIRCREG4_GPR1, 1); /* set bit 0: power up */
1463 PutByte(XIRCREG4_GPR1, 1 | 4); /* set bit 0: power up, bit 2: AIC */
1464 msleep(20); /* wait 20 msec */
1468 do_reset(struct net_device *dev, int full)
1470 struct local_info *local = netdev_priv(dev);
1471 unsigned int ioaddr = dev->base_addr;
1474 pr_debug("%s: do_reset(%p,%d)\n", dev->name, dev, full);
1477 PutByte(XIRCREG_CR, SoftReset); /* set */
1478 msleep(20); /* wait 20 msec */
1479 PutByte(XIRCREG_CR, 0); /* clear */
1480 msleep(40); /* wait 40 msec */
1481 if (local->mohawk) {
1483 /* set pin GP1 and GP2 to output (0x0c)
1484 * set GP1 to low to power up the ML6692 (0x00)
1485 * set GP2 to high to power up the 10Mhz chip (0x02)
1487 PutByte(XIRCREG4_GPR0, 0x0e);
1490 /* give the circuits some time to power up */
1491 msleep(500); /* about 500ms */
1493 local->last_ptr_value = 0;
1494 local->silicon = local->mohawk ? (GetByte(XIRCREG4_BOV) & 0x70) >> 4
1495 : (GetByte(XIRCREG4_BOV) & 0x30) >> 4;
1497 if (local->probe_port) {
1498 if (!local->mohawk) {
1500 PutByte(XIRCREG4_GPR0, 4);
1501 local->probe_port = 0;
1503 } else if (dev->if_port == 2) { /* enable 10Base2 */
1505 PutByte(XIRCREG42_SWC1, 0xC0);
1506 } else { /* enable 10BaseT */
1508 PutByte(XIRCREG42_SWC1, 0x80);
1510 msleep(40); /* wait 40 msec to let it complete */
1515 value = GetByte(XIRCREG_ESR); /* read the ESR */
1516 pr_debug("%s: ESR is: %#02x\n", dev->name, value);
1522 PutByte(XIRCREG1_IMR0, 0xff); /* allow all ints */
1523 PutByte(XIRCREG1_IMR1, 1 ); /* and Set TxUnderrunDetect */
1524 value = GetByte(XIRCREG1_ECR);
1527 value |= DisableLinkPulse;
1528 PutByte(XIRCREG1_ECR, value);
1530 pr_debug("%s: ECR is: %#02x\n", dev->name, value);
1533 PutByte(XIRCREG42_SWC0, 0x20); /* disable source insertion */
1535 if (local->silicon != 1) {
1536 /* set the local memory dividing line.
1537 * The comments in the sample code say that this is only
1538 * settable with the scipper version 2 which is revision 0.
1539 * Always for CE3 cards
1542 PutWord(XIRCREG2_RBS, 0x2000);
1548 /* Hardware workaround:
1549 * The receive byte pointer after reset is off by 1 so we need
1550 * to move the offset pointer back to 0.
1553 PutWord(XIRCREG0_DO, 0x2000); /* change offset command, off=0 */
1555 /* setup MAC IMRs and clear status registers */
1556 SelectPage(0x40); /* Bit 7 ... bit 0 */
1557 PutByte(XIRCREG40_RMASK0, 0xff); /* ROK, RAB, rsv, RO, CRC, AE, PTL, MP */
1558 PutByte(XIRCREG40_TMASK0, 0xff); /* TOK, TAB, SQE, LL, TU, JAB, EXC, CRS */
1559 PutByte(XIRCREG40_TMASK1, 0xb0); /* rsv, rsv, PTD, EXT, rsv,rsv,rsv, rsv*/
1560 PutByte(XIRCREG40_RXST0, 0x00); /* ROK, RAB, REN, RO, CRC, AE, PTL, MP */
1561 PutByte(XIRCREG40_TXST0, 0x00); /* TOK, TAB, SQE, LL, TU, JAB, EXC, CRS */
1562 PutByte(XIRCREG40_TXST1, 0x00); /* TEN, rsv, PTD, EXT, retry_counter:4 */
1564 if (full && local->mohawk && init_mii(dev)) {
1565 if (dev->if_port == 4 || local->dingo || local->new_mii) {
1566 netdev_info(dev, "MII selected\n");
1568 PutByte(XIRCREG2_MSR, GetByte(XIRCREG2_MSR) | 0x08);
1571 netdev_info(dev, "MII detected; using 10mbs\n");
1573 if (dev->if_port == 2) /* enable 10Base2 */
1574 PutByte(XIRCREG42_SWC1, 0xC0);
1575 else /* enable 10BaseT */
1576 PutByte(XIRCREG42_SWC1, 0x80);
1577 msleep(40); /* wait 40 msec to let it complete */
1580 PutByte(XIRCREG1_ECR, GetByte(XIRCREG1_ECR | FullDuplex));
1581 } else { /* No MII */
1583 value = GetByte(XIRCREG_ESR); /* read the ESR */
1584 dev->if_port = (value & MediaSelect) ? 1 : 2;
1587 /* configure the LEDs */
1589 if (dev->if_port == 1 || dev->if_port == 4) /* TP: Link and Activity */
1590 PutByte(XIRCREG2_LED, 0x3b);
1591 else /* Coax: Not-Collision and Activity */
1592 PutByte(XIRCREG2_LED, 0x3a);
1595 PutByte(0x0b, 0x04); /* 100 Mbit LED */
1597 /* enable receiver and put the mac online */
1599 set_multicast_list(dev);
1601 PutByte(XIRCREG40_CMD0, EnableRecv | Online);
1604 /* setup Ethernet IMR and enable interrupts */
1606 PutByte(XIRCREG1_IMR0, 0xff);
1609 PutByte(XIRCREG_CR, EnableIntr);
1610 if (local->modem && !local->dingo) { /* do some magic */
1611 if (!(GetByte(0x10) & 0x01))
1612 PutByte(0x10, 0x11); /* unmask master-int bit */
1616 netdev_info(dev, "media %s, silicon revision %d\n",
1617 if_names[dev->if_port], local->silicon);
1618 /* We should switch back to page 0 to avoid a bug in revision 0
1619 * where regs with offset below 8 can't be read after an access
1620 * to the MAC registers */
1625 * Initialize the Media-Independent-Interface
1626 * Returns: True if we have a good MII
1629 init_mii(struct net_device *dev)
1631 struct local_info *local = netdev_priv(dev);
1632 unsigned int ioaddr = dev->base_addr;
1633 unsigned control, status, linkpartner;
1636 if (if_port == 4 || if_port == 1) { /* force 100BaseT or 10BaseT */
1637 dev->if_port = if_port;
1638 local->probe_port = 0;
1642 status = mii_rd(ioaddr, 0, 1);
1643 if ((status & 0xff00) != 0x7800)
1644 return 0; /* No MII */
1646 local->new_mii = (mii_rd(ioaddr, 0, 2) != 0xffff);
1648 if (local->probe_port)
1649 control = 0x1000; /* auto neg */
1650 else if (dev->if_port == 4)
1651 control = 0x2000; /* no auto neg, 100mbs mode */
1653 control = 0x0000; /* no auto neg, 10mbs mode */
1654 mii_wr(ioaddr, 0, 0, control, 16);
1656 control = mii_rd(ioaddr, 0, 0);
1658 if (control & 0x0400) {
1659 netdev_notice(dev, "can't take PHY out of isolation mode\n");
1660 local->probe_port = 0;
1664 if (local->probe_port) {
1665 /* according to the DP83840A specs the auto negotiation process
1666 * may take up to 3.5 sec, so we use this also for our ML6692
1667 * Fixme: Better to use a timer here!
1669 for (i=0; i < 35; i++) {
1670 msleep(100); /* wait 100 msec */
1671 status = mii_rd(ioaddr, 0, 1);
1672 if ((status & 0x0020) && (status & 0x0004))
1676 if (!(status & 0x0020)) {
1677 netdev_info(dev, "autonegotiation failed; using 10mbs\n");
1678 if (!local->new_mii) {
1680 mii_wr(ioaddr, 0, 0, control, 16);
1683 dev->if_port = (GetByte(XIRCREG_ESR) & MediaSelect) ? 1 : 2;
1686 linkpartner = mii_rd(ioaddr, 0, 5);
1687 netdev_info(dev, "MII link partner: %04x\n", linkpartner);
1688 if (linkpartner & 0x0080) {
1699 do_powerdown(struct net_device *dev)
1702 unsigned int ioaddr = dev->base_addr;
1704 pr_debug("do_powerdown(%p)\n", dev);
1707 PutByte(XIRCREG4_GPR1, 0); /* clear bit 0: power down */
1712 do_stop(struct net_device *dev)
1714 unsigned int ioaddr = dev->base_addr;
1715 struct local_info *lp = netdev_priv(dev);
1716 struct pcmcia_device *link = lp->p_dev;
1718 dev_dbg(&link->dev, "do_stop(%p)\n", dev);
1723 netif_stop_queue(dev);
1726 PutByte(XIRCREG_CR, 0); /* disable interrupts */
1728 PutByte(XIRCREG1_IMR0, 0x00); /* forbid all ints */
1730 PutByte(XIRCREG4_GPR1, 0); /* clear bit 0: power down */
1737 static const struct pcmcia_device_id xirc2ps_ids[] = {
1738 PCMCIA_PFC_DEVICE_MANF_CARD(0, 0x0089, 0x110a),
1739 PCMCIA_PFC_DEVICE_MANF_CARD(0, 0x0138, 0x110a),
1740 PCMCIA_PFC_DEVICE_PROD_ID13(0, "Xircom", "CEM28", 0x2e3ee845, 0x0ea978ea),
1741 PCMCIA_PFC_DEVICE_PROD_ID13(0, "Xircom", "CEM33", 0x2e3ee845, 0x80609023),
1742 PCMCIA_PFC_DEVICE_PROD_ID13(0, "Xircom", "CEM56", 0x2e3ee845, 0xa650c32a),
1743 PCMCIA_PFC_DEVICE_PROD_ID13(0, "Xircom", "REM10", 0x2e3ee845, 0x76df1d29),
1744 PCMCIA_PFC_DEVICE_PROD_ID13(0, "Xircom", "XEM5600", 0x2e3ee845, 0xf1403719),
1745 PCMCIA_PFC_DEVICE_PROD_ID12(0, "Xircom", "CreditCard Ethernet+Modem II", 0x2e3ee845, 0xeca401bf),
1746 PCMCIA_DEVICE_MANF_CARD(0x01bf, 0x010a),
1747 PCMCIA_DEVICE_PROD_ID13("Toshiba Information Systems", "TPCENET", 0x1b3b94fe, 0xf381c1a2),
1748 PCMCIA_DEVICE_PROD_ID13("Xircom", "CE3-10/100", 0x2e3ee845, 0x0ec0ac37),
1749 PCMCIA_DEVICE_PROD_ID13("Xircom", "PS-CE2-10", 0x2e3ee845, 0x947d9073),
1750 PCMCIA_DEVICE_PROD_ID13("Xircom", "R2E-100BTX", 0x2e3ee845, 0x2464a6e3),
1751 PCMCIA_DEVICE_PROD_ID13("Xircom", "RE-10", 0x2e3ee845, 0x3e08d609),
1752 PCMCIA_DEVICE_PROD_ID13("Xircom", "XE2000", 0x2e3ee845, 0xf7188e46),
1753 PCMCIA_DEVICE_PROD_ID12("Compaq", "Ethernet LAN Card", 0x54f7c49c, 0x9fd2f0a2),
1754 PCMCIA_DEVICE_PROD_ID12("Compaq", "Netelligent 10/100 PC Card", 0x54f7c49c, 0xefe96769),
1755 PCMCIA_DEVICE_PROD_ID12("Intel", "EtherExpress(TM) PRO/100 PC Card Mobile Adapter16", 0x816cc815, 0x174397db),
1756 PCMCIA_DEVICE_PROD_ID12("Toshiba", "10/100 Ethernet PC Card", 0x44a09d9c, 0xb44deecf),
1757 /* also matches CFE-10 cards! */
1758 /* PCMCIA_DEVICE_MANF_CARD(0x0105, 0x010a), */
1761 MODULE_DEVICE_TABLE(pcmcia, xirc2ps_ids);
1764 static struct pcmcia_driver xirc2ps_cs_driver = {
1765 .owner = THIS_MODULE,
1766 .name = "xirc2ps_cs",
1767 .probe = xirc2ps_probe,
1768 .remove = xirc2ps_detach,
1769 .id_table = xirc2ps_ids,
1770 .suspend = xirc2ps_suspend,
1771 .resume = xirc2ps_resume,
1773 module_pcmcia_driver(xirc2ps_cs_driver);
1776 static int __init setup_xirc2ps_cs(char *str)
1778 /* if_port, full_duplex, do_sound, lockup_hack
1780 int ints[10] = { -1 };
1782 str = get_options(str, ARRAY_SIZE(ints), ints);
1784 #define MAYBE_SET(X,Y) if (ints[0] >= Y && ints[Y] != -1) { X = ints[Y]; }
1785 MAYBE_SET(if_port, 3);
1786 MAYBE_SET(full_duplex, 4);
1787 MAYBE_SET(do_sound, 5);
1788 MAYBE_SET(lockup_hack, 6);
1794 __setup("xirc2ps_cs=", setup_xirc2ps_cs);