linux/drivers/net/ethernet/smsc/smc911x.c
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   1/*
   2 * smc911x.c
   3 * This is a driver for SMSC's LAN911{5,6,7,8} single-chip Ethernet devices.
   4 *
   5 * Copyright (C) 2005 Sensoria Corp
   6 *         Derived from the unified SMC91x driver by Nicolas Pitre
   7 *         and the smsc911x.c reference driver by SMSC
   8 *
   9 * This program is free software; you can redistribute it and/or modify
  10 * it under the terms of the GNU General Public License as published by
  11 * the Free Software Foundation; either version 2 of the License, or
  12 * (at your option) any later version.
  13 *
  14 * This program is distributed in the hope that it will be useful,
  15 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  16 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  17 * GNU General Public License for more details.
  18 *
  19 * You should have received a copy of the GNU General Public License
  20 * along with this program; if not, write to the Free Software
  21 * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA  02111-1307  USA
  22 *
  23 * Arguments:
  24 *       watchdog  = TX watchdog timeout
  25 *       tx_fifo_kb = Size of TX FIFO in KB
  26 *
  27 * History:
  28 *        04/16/05      Dustin McIntire          Initial version
  29 */
  30static const char version[] =
  31         "smc911x.c: v1.0 04-16-2005 by Dustin McIntire <dustin@sensoria.com>\n";
  32
  33/* Debugging options */
  34#define ENABLE_SMC_DEBUG_RX             0
  35#define ENABLE_SMC_DEBUG_TX             0
  36#define ENABLE_SMC_DEBUG_DMA            0
  37#define ENABLE_SMC_DEBUG_PKTS           0
  38#define ENABLE_SMC_DEBUG_MISC           0
  39#define ENABLE_SMC_DEBUG_FUNC           0
  40
  41#define SMC_DEBUG_RX            ((ENABLE_SMC_DEBUG_RX   ? 1 : 0) << 0)
  42#define SMC_DEBUG_TX            ((ENABLE_SMC_DEBUG_TX   ? 1 : 0) << 1)
  43#define SMC_DEBUG_DMA           ((ENABLE_SMC_DEBUG_DMA  ? 1 : 0) << 2)
  44#define SMC_DEBUG_PKTS          ((ENABLE_SMC_DEBUG_PKTS ? 1 : 0) << 3)
  45#define SMC_DEBUG_MISC          ((ENABLE_SMC_DEBUG_MISC ? 1 : 0) << 4)
  46#define SMC_DEBUG_FUNC          ((ENABLE_SMC_DEBUG_FUNC ? 1 : 0) << 5)
  47
  48#ifndef SMC_DEBUG
  49#define SMC_DEBUG        ( SMC_DEBUG_RX   | \
  50                           SMC_DEBUG_TX   | \
  51                           SMC_DEBUG_DMA  | \
  52                           SMC_DEBUG_PKTS | \
  53                           SMC_DEBUG_MISC | \
  54                           SMC_DEBUG_FUNC   \
  55                         )
  56#endif
  57
  58#include <linux/init.h>
  59#include <linux/module.h>
  60#include <linux/kernel.h>
  61#include <linux/sched.h>
  62#include <linux/delay.h>
  63#include <linux/interrupt.h>
  64#include <linux/errno.h>
  65#include <linux/ioport.h>
  66#include <linux/crc32.h>
  67#include <linux/device.h>
  68#include <linux/platform_device.h>
  69#include <linux/spinlock.h>
  70#include <linux/ethtool.h>
  71#include <linux/mii.h>
  72#include <linux/workqueue.h>
  73
  74#include <linux/netdevice.h>
  75#include <linux/etherdevice.h>
  76#include <linux/skbuff.h>
  77
  78#include <asm/io.h>
  79
  80#include "smc911x.h"
  81
  82/*
  83 * Transmit timeout, default 5 seconds.
  84 */
  85static int watchdog = 5000;
  86module_param(watchdog, int, 0400);
  87MODULE_PARM_DESC(watchdog, "transmit timeout in milliseconds");
  88
  89static int tx_fifo_kb=8;
  90module_param(tx_fifo_kb, int, 0400);
  91MODULE_PARM_DESC(tx_fifo_kb,"transmit FIFO size in KB (1<x<15)(default=8)");
  92
  93MODULE_LICENSE("GPL");
  94MODULE_ALIAS("platform:smc911x");
  95
  96/*
  97 * The internal workings of the driver.  If you are changing anything
  98 * here with the SMC stuff, you should have the datasheet and know
  99 * what you are doing.
 100 */
 101#define CARDNAME "smc911x"
 102
 103/*
 104 * Use power-down feature of the chip
 105 */
 106#define POWER_DOWN               1
 107
 108#if SMC_DEBUG > 0
 109#define DBG(n, dev, args...)                     \
 110        do {                                     \
 111                if (SMC_DEBUG & (n))             \
 112                        netdev_dbg(dev, args);   \
 113        } while (0)
 114
 115#define PRINTK(dev, args...)   netdev_info(dev, args)
 116#else
 117#define DBG(n, dev, args...)   do { } while (0)
 118#define PRINTK(dev, args...)   netdev_dbg(dev, args)
 119#endif
 120
 121#if SMC_DEBUG_PKTS > 0
 122static void PRINT_PKT(u_char *buf, int length)
 123{
 124        int i;
 125        int remainder;
 126        int lines;
 127
 128        lines = length / 16;
 129        remainder = length % 16;
 130
 131        for (i = 0; i < lines ; i ++) {
 132                int cur;
 133                printk(KERN_DEBUG);
 134                for (cur = 0; cur < 8; cur++) {
 135                        u_char a, b;
 136                        a = *buf++;
 137                        b = *buf++;
 138                        pr_cont("%02x%02x ", a, b);
 139                }
 140                pr_cont("\n");
 141        }
 142        printk(KERN_DEBUG);
 143        for (i = 0; i < remainder/2 ; i++) {
 144                u_char a, b;
 145                a = *buf++;
 146                b = *buf++;
 147                pr_cont("%02x%02x ", a, b);
 148        }
 149        pr_cont("\n");
 150}
 151#else
 152#define PRINT_PKT(x...)  do { } while (0)
 153#endif
 154
 155
 156/* this enables an interrupt in the interrupt mask register */
 157#define SMC_ENABLE_INT(lp, x) do {                      \
 158        unsigned int  __mask;                           \
 159        __mask = SMC_GET_INT_EN((lp));                  \
 160        __mask |= (x);                                  \
 161        SMC_SET_INT_EN((lp), __mask);                   \
 162} while (0)
 163
 164/* this disables an interrupt from the interrupt mask register */
 165#define SMC_DISABLE_INT(lp, x) do {                     \
 166        unsigned int  __mask;                           \
 167        __mask = SMC_GET_INT_EN((lp));                  \
 168        __mask &= ~(x);                                 \
 169        SMC_SET_INT_EN((lp), __mask);                   \
 170} while (0)
 171
 172/*
 173 * this does a soft reset on the device
 174 */
 175static void smc911x_reset(struct net_device *dev)
 176{
 177        struct smc911x_local *lp = netdev_priv(dev);
 178        unsigned int reg, timeout=0, resets=1, irq_cfg;
 179        unsigned long flags;
 180
 181        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
 182
 183        /*       Take out of PM setting first */
 184        if ((SMC_GET_PMT_CTRL(lp) & PMT_CTRL_READY_) == 0) {
 185                /* Write to the bytetest will take out of powerdown */
 186                SMC_SET_BYTE_TEST(lp, 0);
 187                timeout=10;
 188                do {
 189                        udelay(10);
 190                        reg = SMC_GET_PMT_CTRL(lp) & PMT_CTRL_READY_;
 191                } while (--timeout && !reg);
 192                if (timeout == 0) {
 193                        PRINTK(dev, "smc911x_reset timeout waiting for PM restore\n");
 194                        return;
 195                }
 196        }
 197
 198        /* Disable all interrupts */
 199        spin_lock_irqsave(&lp->lock, flags);
 200        SMC_SET_INT_EN(lp, 0);
 201        spin_unlock_irqrestore(&lp->lock, flags);
 202
 203        while (resets--) {
 204                SMC_SET_HW_CFG(lp, HW_CFG_SRST_);
 205                timeout=10;
 206                do {
 207                        udelay(10);
 208                        reg = SMC_GET_HW_CFG(lp);
 209                        /* If chip indicates reset timeout then try again */
 210                        if (reg & HW_CFG_SRST_TO_) {
 211                                PRINTK(dev, "chip reset timeout, retrying...\n");
 212                                resets++;
 213                                break;
 214                        }
 215                } while (--timeout && (reg & HW_CFG_SRST_));
 216        }
 217        if (timeout == 0) {
 218                PRINTK(dev, "smc911x_reset timeout waiting for reset\n");
 219                return;
 220        }
 221
 222        /* make sure EEPROM has finished loading before setting GPIO_CFG */
 223        timeout=1000;
 224        while (--timeout && (SMC_GET_E2P_CMD(lp) & E2P_CMD_EPC_BUSY_))
 225                udelay(10);
 226
 227        if (timeout == 0){
 228                PRINTK(dev, "smc911x_reset timeout waiting for EEPROM busy\n");
 229                return;
 230        }
 231
 232        /* Initialize interrupts */
 233        SMC_SET_INT_EN(lp, 0);
 234        SMC_ACK_INT(lp, -1);
 235
 236        /* Reset the FIFO level and flow control settings */
 237        SMC_SET_HW_CFG(lp, (lp->tx_fifo_kb & 0xF) << 16);
 238//TODO: Figure out what appropriate pause time is
 239        SMC_SET_FLOW(lp, FLOW_FCPT_ | FLOW_FCEN_);
 240        SMC_SET_AFC_CFG(lp, lp->afc_cfg);
 241
 242
 243        /* Set to LED outputs */
 244        SMC_SET_GPIO_CFG(lp, 0x70070000);
 245
 246        /*
 247         * Deassert IRQ for 1*10us for edge type interrupts
 248         * and drive IRQ pin push-pull
 249         */
 250        irq_cfg = (1 << 24) | INT_CFG_IRQ_EN_ | INT_CFG_IRQ_TYPE_;
 251#ifdef SMC_DYNAMIC_BUS_CONFIG
 252        if (lp->cfg.irq_polarity)
 253                irq_cfg |= INT_CFG_IRQ_POL_;
 254#endif
 255        SMC_SET_IRQ_CFG(lp, irq_cfg);
 256
 257        /* clear anything saved */
 258        if (lp->pending_tx_skb != NULL) {
 259                dev_kfree_skb (lp->pending_tx_skb);
 260                lp->pending_tx_skb = NULL;
 261                dev->stats.tx_errors++;
 262                dev->stats.tx_aborted_errors++;
 263        }
 264}
 265
 266/*
 267 * Enable Interrupts, Receive, and Transmit
 268 */
 269static void smc911x_enable(struct net_device *dev)
 270{
 271        struct smc911x_local *lp = netdev_priv(dev);
 272        unsigned mask, cfg, cr;
 273        unsigned long flags;
 274
 275        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
 276
 277        spin_lock_irqsave(&lp->lock, flags);
 278
 279        SMC_SET_MAC_ADDR(lp, dev->dev_addr);
 280
 281        /* Enable TX */
 282        cfg = SMC_GET_HW_CFG(lp);
 283        cfg &= HW_CFG_TX_FIF_SZ_ | 0xFFF;
 284        cfg |= HW_CFG_SF_;
 285        SMC_SET_HW_CFG(lp, cfg);
 286        SMC_SET_FIFO_TDA(lp, 0xFF);
 287        /* Update TX stats on every 64 packets received or every 1 sec */
 288        SMC_SET_FIFO_TSL(lp, 64);
 289        SMC_SET_GPT_CFG(lp, GPT_CFG_TIMER_EN_ | 10000);
 290
 291        SMC_GET_MAC_CR(lp, cr);
 292        cr |= MAC_CR_TXEN_ | MAC_CR_HBDIS_;
 293        SMC_SET_MAC_CR(lp, cr);
 294        SMC_SET_TX_CFG(lp, TX_CFG_TX_ON_);
 295
 296        /* Add 2 byte padding to start of packets */
 297        SMC_SET_RX_CFG(lp, (2<<8) & RX_CFG_RXDOFF_);
 298
 299        /* Turn on receiver and enable RX */
 300        if (cr & MAC_CR_RXEN_)
 301                DBG(SMC_DEBUG_RX, dev, "Receiver already enabled\n");
 302
 303        SMC_SET_MAC_CR(lp, cr | MAC_CR_RXEN_);
 304
 305        /* Interrupt on every received packet */
 306        SMC_SET_FIFO_RSA(lp, 0x01);
 307        SMC_SET_FIFO_RSL(lp, 0x00);
 308
 309        /* now, enable interrupts */
 310        mask = INT_EN_TDFA_EN_ | INT_EN_TSFL_EN_ | INT_EN_RSFL_EN_ |
 311                INT_EN_GPT_INT_EN_ | INT_EN_RXDFH_INT_EN_ | INT_EN_RXE_EN_ |
 312                INT_EN_PHY_INT_EN_;
 313        if (IS_REV_A(lp->revision))
 314                mask|=INT_EN_RDFL_EN_;
 315        else {
 316                mask|=INT_EN_RDFO_EN_;
 317        }
 318        SMC_ENABLE_INT(lp, mask);
 319
 320        spin_unlock_irqrestore(&lp->lock, flags);
 321}
 322
 323/*
 324 * this puts the device in an inactive state
 325 */
 326static void smc911x_shutdown(struct net_device *dev)
 327{
 328        struct smc911x_local *lp = netdev_priv(dev);
 329        unsigned cr;
 330        unsigned long flags;
 331
 332        DBG(SMC_DEBUG_FUNC, dev, "%s: --> %s\n", CARDNAME, __func__);
 333
 334        /* Disable IRQ's */
 335        SMC_SET_INT_EN(lp, 0);
 336
 337        /* Turn of Rx and TX */
 338        spin_lock_irqsave(&lp->lock, flags);
 339        SMC_GET_MAC_CR(lp, cr);
 340        cr &= ~(MAC_CR_TXEN_ | MAC_CR_RXEN_ | MAC_CR_HBDIS_);
 341        SMC_SET_MAC_CR(lp, cr);
 342        SMC_SET_TX_CFG(lp, TX_CFG_STOP_TX_);
 343        spin_unlock_irqrestore(&lp->lock, flags);
 344}
 345
 346static inline void smc911x_drop_pkt(struct net_device *dev)
 347{
 348        struct smc911x_local *lp = netdev_priv(dev);
 349        unsigned int fifo_count, timeout, reg;
 350
 351        DBG(SMC_DEBUG_FUNC | SMC_DEBUG_RX, dev, "%s: --> %s\n",
 352            CARDNAME, __func__);
 353        fifo_count = SMC_GET_RX_FIFO_INF(lp) & 0xFFFF;
 354        if (fifo_count <= 4) {
 355                /* Manually dump the packet data */
 356                while (fifo_count--)
 357                        SMC_GET_RX_FIFO(lp);
 358        } else   {
 359                /* Fast forward through the bad packet */
 360                SMC_SET_RX_DP_CTRL(lp, RX_DP_CTRL_FFWD_BUSY_);
 361                timeout=50;
 362                do {
 363                        udelay(10);
 364                        reg = SMC_GET_RX_DP_CTRL(lp) & RX_DP_CTRL_FFWD_BUSY_;
 365                } while (--timeout && reg);
 366                if (timeout == 0) {
 367                        PRINTK(dev, "timeout waiting for RX fast forward\n");
 368                }
 369        }
 370}
 371
 372/*
 373 * This is the procedure to handle the receipt of a packet.
 374 * It should be called after checking for packet presence in
 375 * the RX status FIFO.   It must be called with the spin lock
 376 * already held.
 377 */
 378static inline void       smc911x_rcv(struct net_device *dev)
 379{
 380        struct smc911x_local *lp = netdev_priv(dev);
 381        unsigned int pkt_len, status;
 382        struct sk_buff *skb;
 383        unsigned char *data;
 384
 385        DBG(SMC_DEBUG_FUNC | SMC_DEBUG_RX, dev, "--> %s\n",
 386            __func__);
 387        status = SMC_GET_RX_STS_FIFO(lp);
 388        DBG(SMC_DEBUG_RX, dev, "Rx pkt len %d status 0x%08x\n",
 389            (status & 0x3fff0000) >> 16, status & 0xc000ffff);
 390        pkt_len = (status & RX_STS_PKT_LEN_) >> 16;
 391        if (status & RX_STS_ES_) {
 392                /* Deal with a bad packet */
 393                dev->stats.rx_errors++;
 394                if (status & RX_STS_CRC_ERR_)
 395                        dev->stats.rx_crc_errors++;
 396                else {
 397                        if (status & RX_STS_LEN_ERR_)
 398                                dev->stats.rx_length_errors++;
 399                        if (status & RX_STS_MCAST_)
 400                                dev->stats.multicast++;
 401                }
 402                /* Remove the bad packet data from the RX FIFO */
 403                smc911x_drop_pkt(dev);
 404        } else {
 405                /* Receive a valid packet */
 406                /* Alloc a buffer with extra room for DMA alignment */
 407                skb = netdev_alloc_skb(dev, pkt_len+32);
 408                if (unlikely(skb == NULL)) {
 409                        PRINTK(dev, "Low memory, rcvd packet dropped.\n");
 410                        dev->stats.rx_dropped++;
 411                        smc911x_drop_pkt(dev);
 412                        return;
 413                }
 414                /* Align IP header to 32 bits
 415                 * Note that the device is configured to add a 2
 416                 * byte padding to the packet start, so we really
 417                 * want to write to the orignal data pointer */
 418                data = skb->data;
 419                skb_reserve(skb, 2);
 420                skb_put(skb,pkt_len-4);
 421#ifdef SMC_USE_DMA
 422                {
 423                unsigned int fifo;
 424                /* Lower the FIFO threshold if possible */
 425                fifo = SMC_GET_FIFO_INT(lp);
 426                if (fifo & 0xFF) fifo--;
 427                DBG(SMC_DEBUG_RX, dev, "Setting RX stat FIFO threshold to %d\n",
 428                    fifo & 0xff);
 429                SMC_SET_FIFO_INT(lp, fifo);
 430                /* Setup RX DMA */
 431                SMC_SET_RX_CFG(lp, RX_CFG_RX_END_ALGN16_ | ((2<<8) & RX_CFG_RXDOFF_));
 432                lp->rxdma_active = 1;
 433                lp->current_rx_skb = skb;
 434                SMC_PULL_DATA(lp, data, (pkt_len+2+15) & ~15);
 435                /* Packet processing deferred to DMA RX interrupt */
 436                }
 437#else
 438                SMC_SET_RX_CFG(lp, RX_CFG_RX_END_ALGN4_ | ((2<<8) & RX_CFG_RXDOFF_));
 439                SMC_PULL_DATA(lp, data, pkt_len+2+3);
 440
 441                DBG(SMC_DEBUG_PKTS, dev, "Received packet\n");
 442                PRINT_PKT(data, ((pkt_len - 4) <= 64) ? pkt_len - 4 : 64);
 443                skb->protocol = eth_type_trans(skb, dev);
 444                netif_rx(skb);
 445                dev->stats.rx_packets++;
 446                dev->stats.rx_bytes += pkt_len-4;
 447#endif
 448        }
 449}
 450
 451/*
 452 * This is called to actually send a packet to the chip.
 453 */
 454static void smc911x_hardware_send_pkt(struct net_device *dev)
 455{
 456        struct smc911x_local *lp = netdev_priv(dev);
 457        struct sk_buff *skb;
 458        unsigned int cmdA, cmdB, len;
 459        unsigned char *buf;
 460
 461        DBG(SMC_DEBUG_FUNC | SMC_DEBUG_TX, dev, "--> %s\n", __func__);
 462        BUG_ON(lp->pending_tx_skb == NULL);
 463
 464        skb = lp->pending_tx_skb;
 465        lp->pending_tx_skb = NULL;
 466
 467        /* cmdA {25:24] data alignment [20:16] start offset [10:0] buffer length */
 468        /* cmdB {31:16] pkt tag [10:0] length */
 469#ifdef SMC_USE_DMA
 470        /* 16 byte buffer alignment mode */
 471        buf = (char*)((u32)(skb->data) & ~0xF);
 472        len = (skb->len + 0xF + ((u32)skb->data & 0xF)) & ~0xF;
 473        cmdA = (1<<24) | (((u32)skb->data & 0xF)<<16) |
 474                        TX_CMD_A_INT_FIRST_SEG_ | TX_CMD_A_INT_LAST_SEG_ |
 475                        skb->len;
 476#else
 477        buf = (char*)((u32)skb->data & ~0x3);
 478        len = (skb->len + 3 + ((u32)skb->data & 3)) & ~0x3;
 479        cmdA = (((u32)skb->data & 0x3) << 16) |
 480                        TX_CMD_A_INT_FIRST_SEG_ | TX_CMD_A_INT_LAST_SEG_ |
 481                        skb->len;
 482#endif
 483        /* tag is packet length so we can use this in stats update later */
 484        cmdB = (skb->len  << 16) | (skb->len & 0x7FF);
 485
 486        DBG(SMC_DEBUG_TX, dev, "TX PKT LENGTH 0x%04x (%d) BUF 0x%p CMDA 0x%08x CMDB 0x%08x\n",
 487            len, len, buf, cmdA, cmdB);
 488        SMC_SET_TX_FIFO(lp, cmdA);
 489        SMC_SET_TX_FIFO(lp, cmdB);
 490
 491        DBG(SMC_DEBUG_PKTS, dev, "Transmitted packet\n");
 492        PRINT_PKT(buf, len <= 64 ? len : 64);
 493
 494        /* Send pkt via PIO or DMA */
 495#ifdef SMC_USE_DMA
 496        lp->current_tx_skb = skb;
 497        SMC_PUSH_DATA(lp, buf, len);
 498        /* DMA complete IRQ will free buffer and set jiffies */
 499#else
 500        SMC_PUSH_DATA(lp, buf, len);
 501        dev->trans_start = jiffies;
 502        dev_kfree_skb_irq(skb);
 503#endif
 504        if (!lp->tx_throttle) {
 505                netif_wake_queue(dev);
 506        }
 507        SMC_ENABLE_INT(lp, INT_EN_TDFA_EN_ | INT_EN_TSFL_EN_);
 508}
 509
 510/*
 511 * Since I am not sure if I will have enough room in the chip's ram
 512 * to store the packet, I call this routine which either sends it
 513 * now, or set the card to generates an interrupt when ready
 514 * for the packet.
 515 */
 516static int smc911x_hard_start_xmit(struct sk_buff *skb, struct net_device *dev)
 517{
 518        struct smc911x_local *lp = netdev_priv(dev);
 519        unsigned int free;
 520        unsigned long flags;
 521
 522        DBG(SMC_DEBUG_FUNC | SMC_DEBUG_TX, dev, "--> %s\n",
 523            __func__);
 524
 525        spin_lock_irqsave(&lp->lock, flags);
 526
 527        BUG_ON(lp->pending_tx_skb != NULL);
 528
 529        free = SMC_GET_TX_FIFO_INF(lp) & TX_FIFO_INF_TDFREE_;
 530        DBG(SMC_DEBUG_TX, dev, "TX free space %d\n", free);
 531
 532        /* Turn off the flow when running out of space in FIFO */
 533        if (free <= SMC911X_TX_FIFO_LOW_THRESHOLD) {
 534                DBG(SMC_DEBUG_TX, dev, "Disabling data flow due to low FIFO space (%d)\n",
 535                    free);
 536                /* Reenable when at least 1 packet of size MTU present */
 537                SMC_SET_FIFO_TDA(lp, (SMC911X_TX_FIFO_LOW_THRESHOLD)/64);
 538                lp->tx_throttle = 1;
 539                netif_stop_queue(dev);
 540        }
 541
 542        /* Drop packets when we run out of space in TX FIFO
 543         * Account for overhead required for:
 544         *
 545         *        Tx command words                       8 bytes
 546         *        Start offset                           15 bytes
 547         *        End padding                            15 bytes
 548         */
 549        if (unlikely(free < (skb->len + 8 + 15 + 15))) {
 550                netdev_warn(dev, "No Tx free space %d < %d\n",
 551                            free, skb->len);
 552                lp->pending_tx_skb = NULL;
 553                dev->stats.tx_errors++;
 554                dev->stats.tx_dropped++;
 555                spin_unlock_irqrestore(&lp->lock, flags);
 556                dev_kfree_skb(skb);
 557                return NETDEV_TX_OK;
 558        }
 559
 560#ifdef SMC_USE_DMA
 561        {
 562                /* If the DMA is already running then defer this packet Tx until
 563                 * the DMA IRQ starts it
 564                 */
 565                if (lp->txdma_active) {
 566                        DBG(SMC_DEBUG_TX | SMC_DEBUG_DMA, dev, "Tx DMA running, deferring packet\n");
 567                        lp->pending_tx_skb = skb;
 568                        netif_stop_queue(dev);
 569                        spin_unlock_irqrestore(&lp->lock, flags);
 570                        return NETDEV_TX_OK;
 571                } else {
 572                        DBG(SMC_DEBUG_TX | SMC_DEBUG_DMA, dev, "Activating Tx DMA\n");
 573                        lp->txdma_active = 1;
 574                }
 575        }
 576#endif
 577        lp->pending_tx_skb = skb;
 578        smc911x_hardware_send_pkt(dev);
 579        spin_unlock_irqrestore(&lp->lock, flags);
 580
 581        return NETDEV_TX_OK;
 582}
 583
 584/*
 585 * This handles a TX status interrupt, which is only called when:
 586 * - a TX error occurred, or
 587 * - TX of a packet completed.
 588 */
 589static void smc911x_tx(struct net_device *dev)
 590{
 591        struct smc911x_local *lp = netdev_priv(dev);
 592        unsigned int tx_status;
 593
 594        DBG(SMC_DEBUG_FUNC | SMC_DEBUG_TX, dev, "--> %s\n",
 595            __func__);
 596
 597        /* Collect the TX status */
 598        while (((SMC_GET_TX_FIFO_INF(lp) & TX_FIFO_INF_TSUSED_) >> 16) != 0) {
 599                DBG(SMC_DEBUG_TX, dev, "Tx stat FIFO used 0x%04x\n",
 600                    (SMC_GET_TX_FIFO_INF(lp) & TX_FIFO_INF_TSUSED_) >> 16);
 601                tx_status = SMC_GET_TX_STS_FIFO(lp);
 602                dev->stats.tx_packets++;
 603                dev->stats.tx_bytes+=tx_status>>16;
 604                DBG(SMC_DEBUG_TX, dev, "Tx FIFO tag 0x%04x status 0x%04x\n",
 605                    (tx_status & 0xffff0000) >> 16,
 606                    tx_status & 0x0000ffff);
 607                /* count Tx errors, but ignore lost carrier errors when in
 608                 * full-duplex mode */
 609                if ((tx_status & TX_STS_ES_) && !(lp->ctl_rfduplx &&
 610                    !(tx_status & 0x00000306))) {
 611                        dev->stats.tx_errors++;
 612                }
 613                if (tx_status & TX_STS_MANY_COLL_) {
 614                        dev->stats.collisions+=16;
 615                        dev->stats.tx_aborted_errors++;
 616                } else {
 617                        dev->stats.collisions+=(tx_status & TX_STS_COLL_CNT_) >> 3;
 618                }
 619                /* carrier error only has meaning for half-duplex communication */
 620                if ((tx_status & (TX_STS_LOC_ | TX_STS_NO_CARR_)) &&
 621                    !lp->ctl_rfduplx) {
 622                        dev->stats.tx_carrier_errors++;
 623                }
 624                if (tx_status & TX_STS_LATE_COLL_) {
 625                        dev->stats.collisions++;
 626                        dev->stats.tx_aborted_errors++;
 627                }
 628        }
 629}
 630
 631
 632/*---PHY CONTROL AND CONFIGURATION-----------------------------------------*/
 633/*
 634 * Reads a register from the MII Management serial interface
 635 */
 636
 637static int smc911x_phy_read(struct net_device *dev, int phyaddr, int phyreg)
 638{
 639        struct smc911x_local *lp = netdev_priv(dev);
 640        unsigned int phydata;
 641
 642        SMC_GET_MII(lp, phyreg, phyaddr, phydata);
 643
 644        DBG(SMC_DEBUG_MISC, dev, "%s: phyaddr=0x%x, phyreg=0x%02x, phydata=0x%04x\n",
 645            __func__, phyaddr, phyreg, phydata);
 646        return phydata;
 647}
 648
 649
 650/*
 651 * Writes a register to the MII Management serial interface
 652 */
 653static void smc911x_phy_write(struct net_device *dev, int phyaddr, int phyreg,
 654                        int phydata)
 655{
 656        struct smc911x_local *lp = netdev_priv(dev);
 657
 658        DBG(SMC_DEBUG_MISC, dev, "%s: phyaddr=0x%x, phyreg=0x%x, phydata=0x%x\n",
 659            __func__, phyaddr, phyreg, phydata);
 660
 661        SMC_SET_MII(lp, phyreg, phyaddr, phydata);
 662}
 663
 664/*
 665 * Finds and reports the PHY address (115 and 117 have external
 666 * PHY interface 118 has internal only
 667 */
 668static void smc911x_phy_detect(struct net_device *dev)
 669{
 670        struct smc911x_local *lp = netdev_priv(dev);
 671        int phyaddr;
 672        unsigned int cfg, id1, id2;
 673
 674        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
 675
 676        lp->phy_type = 0;
 677
 678        /*
 679         * Scan all 32 PHY addresses if necessary, starting at
 680         * PHY#1 to PHY#31, and then PHY#0 last.
 681         */
 682        switch(lp->version) {
 683                case CHIP_9115:
 684                case CHIP_9117:
 685                case CHIP_9215:
 686                case CHIP_9217:
 687                        cfg = SMC_GET_HW_CFG(lp);
 688                        if (cfg & HW_CFG_EXT_PHY_DET_) {
 689                                cfg &= ~HW_CFG_PHY_CLK_SEL_;
 690                                cfg |= HW_CFG_PHY_CLK_SEL_CLK_DIS_;
 691                                SMC_SET_HW_CFG(lp, cfg);
 692                                udelay(10); /* Wait for clocks to stop */
 693
 694                                cfg |= HW_CFG_EXT_PHY_EN_;
 695                                SMC_SET_HW_CFG(lp, cfg);
 696                                udelay(10); /* Wait for clocks to stop */
 697
 698                                cfg &= ~HW_CFG_PHY_CLK_SEL_;
 699                                cfg |= HW_CFG_PHY_CLK_SEL_EXT_PHY_;
 700                                SMC_SET_HW_CFG(lp, cfg);
 701                                udelay(10); /* Wait for clocks to stop */
 702
 703                                cfg |= HW_CFG_SMI_SEL_;
 704                                SMC_SET_HW_CFG(lp, cfg);
 705
 706                                for (phyaddr = 1; phyaddr < 32; ++phyaddr) {
 707
 708                                        /* Read the PHY identifiers */
 709                                        SMC_GET_PHY_ID1(lp, phyaddr & 31, id1);
 710                                        SMC_GET_PHY_ID2(lp, phyaddr & 31, id2);
 711
 712                                        /* Make sure it is a valid identifier */
 713                                        if (id1 != 0x0000 && id1 != 0xffff &&
 714                                            id1 != 0x8000 && id2 != 0x0000 &&
 715                                            id2 != 0xffff && id2 != 0x8000) {
 716                                                /* Save the PHY's address */
 717                                                lp->mii.phy_id = phyaddr & 31;
 718                                                lp->phy_type = id1 << 16 | id2;
 719                                                break;
 720                                        }
 721                                }
 722                                if (phyaddr < 32)
 723                                        /* Found an external PHY */
 724                                        break;
 725                        }
 726                default:
 727                        /* Internal media only */
 728                        SMC_GET_PHY_ID1(lp, 1, id1);
 729                        SMC_GET_PHY_ID2(lp, 1, id2);
 730                        /* Save the PHY's address */
 731                        lp->mii.phy_id = 1;
 732                        lp->phy_type = id1 << 16 | id2;
 733        }
 734
 735        DBG(SMC_DEBUG_MISC, dev, "phy_id1=0x%x, phy_id2=0x%x phyaddr=0x%d\n",
 736            id1, id2, lp->mii.phy_id);
 737}
 738
 739/*
 740 * Sets the PHY to a configuration as determined by the user.
 741 * Called with spin_lock held.
 742 */
 743static int smc911x_phy_fixed(struct net_device *dev)
 744{
 745        struct smc911x_local *lp = netdev_priv(dev);
 746        int phyaddr = lp->mii.phy_id;
 747        int bmcr;
 748
 749        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
 750
 751        /* Enter Link Disable state */
 752        SMC_GET_PHY_BMCR(lp, phyaddr, bmcr);
 753        bmcr |= BMCR_PDOWN;
 754        SMC_SET_PHY_BMCR(lp, phyaddr, bmcr);
 755
 756        /*
 757         * Set our fixed capabilities
 758         * Disable auto-negotiation
 759         */
 760        bmcr &= ~BMCR_ANENABLE;
 761        if (lp->ctl_rfduplx)
 762                bmcr |= BMCR_FULLDPLX;
 763
 764        if (lp->ctl_rspeed == 100)
 765                bmcr |= BMCR_SPEED100;
 766
 767        /* Write our capabilities to the phy control register */
 768        SMC_SET_PHY_BMCR(lp, phyaddr, bmcr);
 769
 770        /* Re-Configure the Receive/Phy Control register */
 771        bmcr &= ~BMCR_PDOWN;
 772        SMC_SET_PHY_BMCR(lp, phyaddr, bmcr);
 773
 774        return 1;
 775}
 776
 777/**
 778 * smc911x_phy_reset - reset the phy
 779 * @dev: net device
 780 * @phy: phy address
 781 *
 782 * Issue a software reset for the specified PHY and
 783 * wait up to 100ms for the reset to complete.   We should
 784 * not access the PHY for 50ms after issuing the reset.
 785 *
 786 * The time to wait appears to be dependent on the PHY.
 787 *
 788 */
 789static int smc911x_phy_reset(struct net_device *dev, int phy)
 790{
 791        struct smc911x_local *lp = netdev_priv(dev);
 792        int timeout;
 793        unsigned long flags;
 794        unsigned int reg;
 795
 796        DBG(SMC_DEBUG_FUNC, dev, "--> %s()\n", __func__);
 797
 798        spin_lock_irqsave(&lp->lock, flags);
 799        reg = SMC_GET_PMT_CTRL(lp);
 800        reg &= ~0xfffff030;
 801        reg |= PMT_CTRL_PHY_RST_;
 802        SMC_SET_PMT_CTRL(lp, reg);
 803        spin_unlock_irqrestore(&lp->lock, flags);
 804        for (timeout = 2; timeout; timeout--) {
 805                msleep(50);
 806                spin_lock_irqsave(&lp->lock, flags);
 807                reg = SMC_GET_PMT_CTRL(lp);
 808                spin_unlock_irqrestore(&lp->lock, flags);
 809                if (!(reg & PMT_CTRL_PHY_RST_)) {
 810                        /* extra delay required because the phy may
 811                         * not be completed with its reset
 812                         * when PHY_BCR_RESET_ is cleared. 256us
 813                         * should suffice, but use 500us to be safe
 814                         */
 815                        udelay(500);
 816                break;
 817                }
 818        }
 819
 820        return reg & PMT_CTRL_PHY_RST_;
 821}
 822
 823/**
 824 * smc911x_phy_powerdown - powerdown phy
 825 * @dev: net device
 826 * @phy: phy address
 827 *
 828 * Power down the specified PHY
 829 */
 830static void smc911x_phy_powerdown(struct net_device *dev, int phy)
 831{
 832        struct smc911x_local *lp = netdev_priv(dev);
 833        unsigned int bmcr;
 834
 835        /* Enter Link Disable state */
 836        SMC_GET_PHY_BMCR(lp, phy, bmcr);
 837        bmcr |= BMCR_PDOWN;
 838        SMC_SET_PHY_BMCR(lp, phy, bmcr);
 839}
 840
 841/**
 842 * smc911x_phy_check_media - check the media status and adjust BMCR
 843 * @dev: net device
 844 * @init: set true for initialisation
 845 *
 846 * Select duplex mode depending on negotiation state.   This
 847 * also updates our carrier state.
 848 */
 849static void smc911x_phy_check_media(struct net_device *dev, int init)
 850{
 851        struct smc911x_local *lp = netdev_priv(dev);
 852        int phyaddr = lp->mii.phy_id;
 853        unsigned int bmcr, cr;
 854
 855        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
 856
 857        if (mii_check_media(&lp->mii, netif_msg_link(lp), init)) {
 858                /* duplex state has changed */
 859                SMC_GET_PHY_BMCR(lp, phyaddr, bmcr);
 860                SMC_GET_MAC_CR(lp, cr);
 861                if (lp->mii.full_duplex) {
 862                        DBG(SMC_DEBUG_MISC, dev, "Configuring for full-duplex mode\n");
 863                        bmcr |= BMCR_FULLDPLX;
 864                        cr |= MAC_CR_RCVOWN_;
 865                } else {
 866                        DBG(SMC_DEBUG_MISC, dev, "Configuring for half-duplex mode\n");
 867                        bmcr &= ~BMCR_FULLDPLX;
 868                        cr &= ~MAC_CR_RCVOWN_;
 869                }
 870                SMC_SET_PHY_BMCR(lp, phyaddr, bmcr);
 871                SMC_SET_MAC_CR(lp, cr);
 872        }
 873}
 874
 875/*
 876 * Configures the specified PHY through the MII management interface
 877 * using Autonegotiation.
 878 * Calls smc911x_phy_fixed() if the user has requested a certain config.
 879 * If RPC ANEG bit is set, the media selection is dependent purely on
 880 * the selection by the MII (either in the MII BMCR reg or the result
 881 * of autonegotiation.)  If the RPC ANEG bit is cleared, the selection
 882 * is controlled by the RPC SPEED and RPC DPLX bits.
 883 */
 884static void smc911x_phy_configure(struct work_struct *work)
 885{
 886        struct smc911x_local *lp = container_of(work, struct smc911x_local,
 887                                                phy_configure);
 888        struct net_device *dev = lp->netdev;
 889        int phyaddr = lp->mii.phy_id;
 890        int my_phy_caps; /* My PHY capabilities */
 891        int my_ad_caps; /* My Advertised capabilities */
 892        int status;
 893        unsigned long flags;
 894
 895        DBG(SMC_DEBUG_FUNC, dev, "--> %s()\n", __func__);
 896
 897        /*
 898         * We should not be called if phy_type is zero.
 899         */
 900        if (lp->phy_type == 0)
 901                return;
 902
 903        if (smc911x_phy_reset(dev, phyaddr)) {
 904                netdev_info(dev, "PHY reset timed out\n");
 905                return;
 906        }
 907        spin_lock_irqsave(&lp->lock, flags);
 908
 909        /*
 910         * Enable PHY Interrupts (for register 18)
 911         * Interrupts listed here are enabled
 912         */
 913        SMC_SET_PHY_INT_MASK(lp, phyaddr, PHY_INT_MASK_ENERGY_ON_ |
 914                 PHY_INT_MASK_ANEG_COMP_ | PHY_INT_MASK_REMOTE_FAULT_ |
 915                 PHY_INT_MASK_LINK_DOWN_);
 916
 917        /* If the user requested no auto neg, then go set his request */
 918        if (lp->mii.force_media) {
 919                smc911x_phy_fixed(dev);
 920                goto smc911x_phy_configure_exit;
 921        }
 922
 923        /* Copy our capabilities from MII_BMSR to MII_ADVERTISE */
 924        SMC_GET_PHY_BMSR(lp, phyaddr, my_phy_caps);
 925        if (!(my_phy_caps & BMSR_ANEGCAPABLE)) {
 926                netdev_info(dev, "Auto negotiation NOT supported\n");
 927                smc911x_phy_fixed(dev);
 928                goto smc911x_phy_configure_exit;
 929        }
 930
 931        /* CSMA capable w/ both pauses */
 932        my_ad_caps = ADVERTISE_CSMA | ADVERTISE_PAUSE_CAP | ADVERTISE_PAUSE_ASYM;
 933
 934        if (my_phy_caps & BMSR_100BASE4)
 935                my_ad_caps |= ADVERTISE_100BASE4;
 936        if (my_phy_caps & BMSR_100FULL)
 937                my_ad_caps |= ADVERTISE_100FULL;
 938        if (my_phy_caps & BMSR_100HALF)
 939                my_ad_caps |= ADVERTISE_100HALF;
 940        if (my_phy_caps & BMSR_10FULL)
 941                my_ad_caps |= ADVERTISE_10FULL;
 942        if (my_phy_caps & BMSR_10HALF)
 943                my_ad_caps |= ADVERTISE_10HALF;
 944
 945        /* Disable capabilities not selected by our user */
 946        if (lp->ctl_rspeed != 100)
 947                my_ad_caps &= ~(ADVERTISE_100BASE4|ADVERTISE_100FULL|ADVERTISE_100HALF);
 948
 949         if (!lp->ctl_rfduplx)
 950                my_ad_caps &= ~(ADVERTISE_100FULL|ADVERTISE_10FULL);
 951
 952        /* Update our Auto-Neg Advertisement Register */
 953        SMC_SET_PHY_MII_ADV(lp, phyaddr, my_ad_caps);
 954        lp->mii.advertising = my_ad_caps;
 955
 956        /*
 957         * Read the register back.       Without this, it appears that when
 958         * auto-negotiation is restarted, sometimes it isn't ready and
 959         * the link does not come up.
 960         */
 961        udelay(10);
 962        SMC_GET_PHY_MII_ADV(lp, phyaddr, status);
 963
 964        DBG(SMC_DEBUG_MISC, dev, "phy caps=0x%04x\n", my_phy_caps);
 965        DBG(SMC_DEBUG_MISC, dev, "phy advertised caps=0x%04x\n", my_ad_caps);
 966
 967        /* Restart auto-negotiation process in order to advertise my caps */
 968        SMC_SET_PHY_BMCR(lp, phyaddr, BMCR_ANENABLE | BMCR_ANRESTART);
 969
 970        smc911x_phy_check_media(dev, 1);
 971
 972smc911x_phy_configure_exit:
 973        spin_unlock_irqrestore(&lp->lock, flags);
 974}
 975
 976/*
 977 * smc911x_phy_interrupt
 978 *
 979 * Purpose:  Handle interrupts relating to PHY register 18. This is
 980 *       called from the "hard" interrupt handler under our private spinlock.
 981 */
 982static void smc911x_phy_interrupt(struct net_device *dev)
 983{
 984        struct smc911x_local *lp = netdev_priv(dev);
 985        int phyaddr = lp->mii.phy_id;
 986        int status;
 987
 988        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
 989
 990        if (lp->phy_type == 0)
 991                return;
 992
 993        smc911x_phy_check_media(dev, 0);
 994        /* read to clear status bits */
 995        SMC_GET_PHY_INT_SRC(lp, phyaddr,status);
 996        DBG(SMC_DEBUG_MISC, dev, "PHY interrupt status 0x%04x\n",
 997            status & 0xffff);
 998        DBG(SMC_DEBUG_MISC, dev, "AFC_CFG 0x%08x\n",
 999            SMC_GET_AFC_CFG(lp));
1000}
1001
1002/*--- END PHY CONTROL AND CONFIGURATION-------------------------------------*/
1003
1004/*
1005 * This is the main routine of the driver, to handle the device when
1006 * it needs some attention.
1007 */
1008static irqreturn_t smc911x_interrupt(int irq, void *dev_id)
1009{
1010        struct net_device *dev = dev_id;
1011        struct smc911x_local *lp = netdev_priv(dev);
1012        unsigned int status, mask, timeout;
1013        unsigned int rx_overrun=0, cr, pkts;
1014        unsigned long flags;
1015
1016        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1017
1018        spin_lock_irqsave(&lp->lock, flags);
1019
1020        /* Spurious interrupt check */
1021        if ((SMC_GET_IRQ_CFG(lp) & (INT_CFG_IRQ_INT_ | INT_CFG_IRQ_EN_)) !=
1022                (INT_CFG_IRQ_INT_ | INT_CFG_IRQ_EN_)) {
1023                spin_unlock_irqrestore(&lp->lock, flags);
1024                return IRQ_NONE;
1025        }
1026
1027        mask = SMC_GET_INT_EN(lp);
1028        SMC_SET_INT_EN(lp, 0);
1029
1030        /* set a timeout value, so I don't stay here forever */
1031        timeout = 8;
1032
1033
1034        do {
1035                status = SMC_GET_INT(lp);
1036
1037                DBG(SMC_DEBUG_MISC, dev, "INT 0x%08x MASK 0x%08x OUTSIDE MASK 0x%08x\n",
1038                    status, mask, status & ~mask);
1039
1040                status &= mask;
1041                if (!status)
1042                        break;
1043
1044                /* Handle SW interrupt condition */
1045                if (status & INT_STS_SW_INT_) {
1046                        SMC_ACK_INT(lp, INT_STS_SW_INT_);
1047                        mask &= ~INT_EN_SW_INT_EN_;
1048                }
1049                /* Handle various error conditions */
1050                if (status & INT_STS_RXE_) {
1051                        SMC_ACK_INT(lp, INT_STS_RXE_);
1052                        dev->stats.rx_errors++;
1053                }
1054                if (status & INT_STS_RXDFH_INT_) {
1055                        SMC_ACK_INT(lp, INT_STS_RXDFH_INT_);
1056                        dev->stats.rx_dropped+=SMC_GET_RX_DROP(lp);
1057                 }
1058                /* Undocumented interrupt-what is the right thing to do here? */
1059                if (status & INT_STS_RXDF_INT_) {
1060                        SMC_ACK_INT(lp, INT_STS_RXDF_INT_);
1061                }
1062
1063                /* Rx Data FIFO exceeds set level */
1064                if (status & INT_STS_RDFL_) {
1065                        if (IS_REV_A(lp->revision)) {
1066                                rx_overrun=1;
1067                                SMC_GET_MAC_CR(lp, cr);
1068                                cr &= ~MAC_CR_RXEN_;
1069                                SMC_SET_MAC_CR(lp, cr);
1070                                DBG(SMC_DEBUG_RX, dev, "RX overrun\n");
1071                                dev->stats.rx_errors++;
1072                                dev->stats.rx_fifo_errors++;
1073                        }
1074                        SMC_ACK_INT(lp, INT_STS_RDFL_);
1075                }
1076                if (status & INT_STS_RDFO_) {
1077                        if (!IS_REV_A(lp->revision)) {
1078                                SMC_GET_MAC_CR(lp, cr);
1079                                cr &= ~MAC_CR_RXEN_;
1080                                SMC_SET_MAC_CR(lp, cr);
1081                                rx_overrun=1;
1082                                DBG(SMC_DEBUG_RX, dev, "RX overrun\n");
1083                                dev->stats.rx_errors++;
1084                                dev->stats.rx_fifo_errors++;
1085                        }
1086                        SMC_ACK_INT(lp, INT_STS_RDFO_);
1087                }
1088                /* Handle receive condition */
1089                if ((status & INT_STS_RSFL_) || rx_overrun) {
1090                        unsigned int fifo;
1091                        DBG(SMC_DEBUG_RX, dev, "RX irq\n");
1092                        fifo = SMC_GET_RX_FIFO_INF(lp);
1093                        pkts = (fifo & RX_FIFO_INF_RXSUSED_) >> 16;
1094                        DBG(SMC_DEBUG_RX, dev, "Rx FIFO pkts %d, bytes %d\n",
1095                            pkts, fifo & 0xFFFF);
1096                        if (pkts != 0) {
1097#ifdef SMC_USE_DMA
1098                                unsigned int fifo;
1099                                if (lp->rxdma_active){
1100                                        DBG(SMC_DEBUG_RX | SMC_DEBUG_DMA, dev,
1101                                            "RX DMA active\n");
1102                                        /* The DMA is already running so up the IRQ threshold */
1103                                        fifo = SMC_GET_FIFO_INT(lp) & ~0xFF;
1104                                        fifo |= pkts & 0xFF;
1105                                        DBG(SMC_DEBUG_RX, dev,
1106                                            "Setting RX stat FIFO threshold to %d\n",
1107                                            fifo & 0xff);
1108                                        SMC_SET_FIFO_INT(lp, fifo);
1109                                } else
1110#endif
1111                                smc911x_rcv(dev);
1112                        }
1113                        SMC_ACK_INT(lp, INT_STS_RSFL_);
1114                }
1115                /* Handle transmit FIFO available */
1116                if (status & INT_STS_TDFA_) {
1117                        DBG(SMC_DEBUG_TX, dev, "TX data FIFO space available irq\n");
1118                        SMC_SET_FIFO_TDA(lp, 0xFF);
1119                        lp->tx_throttle = 0;
1120#ifdef SMC_USE_DMA
1121                        if (!lp->txdma_active)
1122#endif
1123                                netif_wake_queue(dev);
1124                        SMC_ACK_INT(lp, INT_STS_TDFA_);
1125                }
1126                /* Handle transmit done condition */
1127#if 1
1128                if (status & (INT_STS_TSFL_ | INT_STS_GPT_INT_)) {
1129                        DBG(SMC_DEBUG_TX | SMC_DEBUG_MISC, dev,
1130                            "Tx stat FIFO limit (%d) /GPT irq\n",
1131                            (SMC_GET_FIFO_INT(lp) & 0x00ff0000) >> 16);
1132                        smc911x_tx(dev);
1133                        SMC_SET_GPT_CFG(lp, GPT_CFG_TIMER_EN_ | 10000);
1134                        SMC_ACK_INT(lp, INT_STS_TSFL_);
1135                        SMC_ACK_INT(lp, INT_STS_TSFL_ | INT_STS_GPT_INT_);
1136                }
1137#else
1138                if (status & INT_STS_TSFL_) {
1139                        DBG(SMC_DEBUG_TX, dev, "TX status FIFO limit (%d) irq\n", ?);
1140                        smc911x_tx(dev);
1141                        SMC_ACK_INT(lp, INT_STS_TSFL_);
1142                }
1143
1144                if (status & INT_STS_GPT_INT_) {
1145                        DBG(SMC_DEBUG_RX, dev, "IRQ_CFG 0x%08x FIFO_INT 0x%08x RX_CFG 0x%08x\n",
1146                            SMC_GET_IRQ_CFG(lp),
1147                            SMC_GET_FIFO_INT(lp),
1148                            SMC_GET_RX_CFG(lp));
1149                        DBG(SMC_DEBUG_RX, dev, "Rx Stat FIFO Used 0x%02x Data FIFO Used 0x%04x Stat FIFO 0x%08x\n",
1150                            (SMC_GET_RX_FIFO_INF(lp) & 0x00ff0000) >> 16,
1151                            SMC_GET_RX_FIFO_INF(lp) & 0xffff,
1152                            SMC_GET_RX_STS_FIFO_PEEK(lp));
1153                        SMC_SET_GPT_CFG(lp, GPT_CFG_TIMER_EN_ | 10000);
1154                        SMC_ACK_INT(lp, INT_STS_GPT_INT_);
1155                }
1156#endif
1157
1158                /* Handle PHY interrupt condition */
1159                if (status & INT_STS_PHY_INT_) {
1160                        DBG(SMC_DEBUG_MISC, dev, "PHY irq\n");
1161                        smc911x_phy_interrupt(dev);
1162                        SMC_ACK_INT(lp, INT_STS_PHY_INT_);
1163                }
1164        } while (--timeout);
1165
1166        /* restore mask state */
1167        SMC_SET_INT_EN(lp, mask);
1168
1169        DBG(SMC_DEBUG_MISC, dev, "Interrupt done (%d loops)\n",
1170            8-timeout);
1171
1172        spin_unlock_irqrestore(&lp->lock, flags);
1173
1174        return IRQ_HANDLED;
1175}
1176
1177#ifdef SMC_USE_DMA
1178static void
1179smc911x_tx_dma_irq(int dma, void *data)
1180{
1181        struct net_device *dev = (struct net_device *)data;
1182        struct smc911x_local *lp = netdev_priv(dev);
1183        struct sk_buff *skb = lp->current_tx_skb;
1184        unsigned long flags;
1185
1186        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1187
1188        DBG(SMC_DEBUG_TX | SMC_DEBUG_DMA, dev, "TX DMA irq handler\n");
1189        /* Clear the DMA interrupt sources */
1190        SMC_DMA_ACK_IRQ(dev, dma);
1191        BUG_ON(skb == NULL);
1192        dma_unmap_single(NULL, tx_dmabuf, tx_dmalen, DMA_TO_DEVICE);
1193        dev->trans_start = jiffies;
1194        dev_kfree_skb_irq(skb);
1195        lp->current_tx_skb = NULL;
1196        if (lp->pending_tx_skb != NULL)
1197                smc911x_hardware_send_pkt(dev);
1198        else {
1199                DBG(SMC_DEBUG_TX | SMC_DEBUG_DMA, dev,
1200                    "No pending Tx packets. DMA disabled\n");
1201                spin_lock_irqsave(&lp->lock, flags);
1202                lp->txdma_active = 0;
1203                if (!lp->tx_throttle) {
1204                        netif_wake_queue(dev);
1205                }
1206                spin_unlock_irqrestore(&lp->lock, flags);
1207        }
1208
1209        DBG(SMC_DEBUG_TX | SMC_DEBUG_DMA, dev,
1210            "TX DMA irq completed\n");
1211}
1212static void
1213smc911x_rx_dma_irq(int dma, void *data)
1214{
1215        struct net_device *dev = (struct net_device *)data;
1216        unsigned long ioaddr = dev->base_addr;
1217        struct smc911x_local *lp = netdev_priv(dev);
1218        struct sk_buff *skb = lp->current_rx_skb;
1219        unsigned long flags;
1220        unsigned int pkts;
1221
1222        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1223        DBG(SMC_DEBUG_RX | SMC_DEBUG_DMA, dev, "RX DMA irq handler\n");
1224        /* Clear the DMA interrupt sources */
1225        SMC_DMA_ACK_IRQ(dev, dma);
1226        dma_unmap_single(NULL, rx_dmabuf, rx_dmalen, DMA_FROM_DEVICE);
1227        BUG_ON(skb == NULL);
1228        lp->current_rx_skb = NULL;
1229        PRINT_PKT(skb->data, skb->len);
1230        skb->protocol = eth_type_trans(skb, dev);
1231        dev->stats.rx_packets++;
1232        dev->stats.rx_bytes += skb->len;
1233        netif_rx(skb);
1234
1235        spin_lock_irqsave(&lp->lock, flags);
1236        pkts = (SMC_GET_RX_FIFO_INF(lp) & RX_FIFO_INF_RXSUSED_) >> 16;
1237        if (pkts != 0) {
1238                smc911x_rcv(dev);
1239        }else {
1240                lp->rxdma_active = 0;
1241        }
1242        spin_unlock_irqrestore(&lp->lock, flags);
1243        DBG(SMC_DEBUG_RX | SMC_DEBUG_DMA, dev,
1244            "RX DMA irq completed. DMA RX FIFO PKTS %d\n",
1245            pkts);
1246}
1247#endif   /* SMC_USE_DMA */
1248
1249#ifdef CONFIG_NET_POLL_CONTROLLER
1250/*
1251 * Polling receive - used by netconsole and other diagnostic tools
1252 * to allow network i/o with interrupts disabled.
1253 */
1254static void smc911x_poll_controller(struct net_device *dev)
1255{
1256        disable_irq(dev->irq);
1257        smc911x_interrupt(dev->irq, dev);
1258        enable_irq(dev->irq);
1259}
1260#endif
1261
1262/* Our watchdog timed out. Called by the networking layer */
1263static void smc911x_timeout(struct net_device *dev)
1264{
1265        struct smc911x_local *lp = netdev_priv(dev);
1266        int status, mask;
1267        unsigned long flags;
1268
1269        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1270
1271        spin_lock_irqsave(&lp->lock, flags);
1272        status = SMC_GET_INT(lp);
1273        mask = SMC_GET_INT_EN(lp);
1274        spin_unlock_irqrestore(&lp->lock, flags);
1275        DBG(SMC_DEBUG_MISC, dev, "INT 0x%02x MASK 0x%02x\n",
1276            status, mask);
1277
1278        /* Dump the current TX FIFO contents and restart */
1279        mask = SMC_GET_TX_CFG(lp);
1280        SMC_SET_TX_CFG(lp, mask | TX_CFG_TXS_DUMP_ | TX_CFG_TXD_DUMP_);
1281        /*
1282         * Reconfiguring the PHY doesn't seem like a bad idea here, but
1283         * smc911x_phy_configure() calls msleep() which calls schedule_timeout()
1284         * which calls schedule().       Hence we use a work queue.
1285         */
1286        if (lp->phy_type != 0)
1287                schedule_work(&lp->phy_configure);
1288
1289        /* We can accept TX packets again */
1290        dev->trans_start = jiffies; /* prevent tx timeout */
1291        netif_wake_queue(dev);
1292}
1293
1294/*
1295 * This routine will, depending on the values passed to it,
1296 * either make it accept multicast packets, go into
1297 * promiscuous mode (for TCPDUMP and cousins) or accept
1298 * a select set of multicast packets
1299 */
1300static void smc911x_set_multicast_list(struct net_device *dev)
1301{
1302        struct smc911x_local *lp = netdev_priv(dev);
1303        unsigned int multicast_table[2];
1304        unsigned int mcr, update_multicast = 0;
1305        unsigned long flags;
1306
1307        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1308
1309        spin_lock_irqsave(&lp->lock, flags);
1310        SMC_GET_MAC_CR(lp, mcr);
1311        spin_unlock_irqrestore(&lp->lock, flags);
1312
1313        if (dev->flags & IFF_PROMISC) {
1314
1315                DBG(SMC_DEBUG_MISC, dev, "RCR_PRMS\n");
1316                mcr |= MAC_CR_PRMS_;
1317        }
1318        /*
1319         * Here, I am setting this to accept all multicast packets.
1320         * I don't need to zero the multicast table, because the flag is
1321         * checked before the table is
1322         */
1323        else if (dev->flags & IFF_ALLMULTI || netdev_mc_count(dev) > 16) {
1324                DBG(SMC_DEBUG_MISC, dev, "RCR_ALMUL\n");
1325                mcr |= MAC_CR_MCPAS_;
1326        }
1327
1328        /*
1329         * This sets the internal hardware table to filter out unwanted
1330         * multicast packets before they take up memory.
1331         *
1332         * The SMC chip uses a hash table where the high 6 bits of the CRC of
1333         * address are the offset into the table.       If that bit is 1, then the
1334         * multicast packet is accepted.  Otherwise, it's dropped silently.
1335         *
1336         * To use the 6 bits as an offset into the table, the high 1 bit is
1337         * the number of the 32 bit register, while the low 5 bits are the bit
1338         * within that register.
1339         */
1340        else if (!netdev_mc_empty(dev)) {
1341                struct netdev_hw_addr *ha;
1342
1343                /* Set the Hash perfec mode */
1344                mcr |= MAC_CR_HPFILT_;
1345
1346                /* start with a table of all zeros: reject all */
1347                memset(multicast_table, 0, sizeof(multicast_table));
1348
1349                netdev_for_each_mc_addr(ha, dev) {
1350                        u32 position;
1351
1352                        /* upper 6 bits are used as hash index */
1353                        position = ether_crc(ETH_ALEN, ha->addr)>>26;
1354
1355                        multicast_table[position>>5] |= 1 << (position&0x1f);
1356                }
1357
1358                /* be sure I get rid of flags I might have set */
1359                mcr &= ~(MAC_CR_PRMS_ | MAC_CR_MCPAS_);
1360
1361                /* now, the table can be loaded into the chipset */
1362                update_multicast = 1;
1363        } else   {
1364                DBG(SMC_DEBUG_MISC, dev, "~(MAC_CR_PRMS_|MAC_CR_MCPAS_)\n");
1365                mcr &= ~(MAC_CR_PRMS_ | MAC_CR_MCPAS_);
1366
1367                /*
1368                 * since I'm disabling all multicast entirely, I need to
1369                 * clear the multicast list
1370                 */
1371                memset(multicast_table, 0, sizeof(multicast_table));
1372                update_multicast = 1;
1373        }
1374
1375        spin_lock_irqsave(&lp->lock, flags);
1376        SMC_SET_MAC_CR(lp, mcr);
1377        if (update_multicast) {
1378                DBG(SMC_DEBUG_MISC, dev,
1379                    "update mcast hash table 0x%08x 0x%08x\n",
1380                    multicast_table[0], multicast_table[1]);
1381                SMC_SET_HASHL(lp, multicast_table[0]);
1382                SMC_SET_HASHH(lp, multicast_table[1]);
1383        }
1384        spin_unlock_irqrestore(&lp->lock, flags);
1385}
1386
1387
1388/*
1389 * Open and Initialize the board
1390 *
1391 * Set up everything, reset the card, etc..
1392 */
1393static int
1394smc911x_open(struct net_device *dev)
1395{
1396        struct smc911x_local *lp = netdev_priv(dev);
1397
1398        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1399
1400        /* reset the hardware */
1401        smc911x_reset(dev);
1402
1403        /* Configure the PHY, initialize the link state */
1404        smc911x_phy_configure(&lp->phy_configure);
1405
1406        /* Turn on Tx + Rx */
1407        smc911x_enable(dev);
1408
1409        netif_start_queue(dev);
1410
1411        return 0;
1412}
1413
1414/*
1415 * smc911x_close
1416 *
1417 * this makes the board clean up everything that it can
1418 * and not talk to the outside world.    Caused by
1419 * an 'ifconfig ethX down'
1420 */
1421static int smc911x_close(struct net_device *dev)
1422{
1423        struct smc911x_local *lp = netdev_priv(dev);
1424
1425        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1426
1427        netif_stop_queue(dev);
1428        netif_carrier_off(dev);
1429
1430        /* clear everything */
1431        smc911x_shutdown(dev);
1432
1433        if (lp->phy_type != 0) {
1434                /* We need to ensure that no calls to
1435                 * smc911x_phy_configure are pending.
1436                 */
1437                cancel_work_sync(&lp->phy_configure);
1438                smc911x_phy_powerdown(dev, lp->mii.phy_id);
1439        }
1440
1441        if (lp->pending_tx_skb) {
1442                dev_kfree_skb(lp->pending_tx_skb);
1443                lp->pending_tx_skb = NULL;
1444        }
1445
1446        return 0;
1447}
1448
1449/*
1450 * Ethtool support
1451 */
1452static int
1453smc911x_ethtool_getsettings(struct net_device *dev, struct ethtool_cmd *cmd)
1454{
1455        struct smc911x_local *lp = netdev_priv(dev);
1456        int ret, status;
1457        unsigned long flags;
1458
1459        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1460        cmd->maxtxpkt = 1;
1461        cmd->maxrxpkt = 1;
1462
1463        if (lp->phy_type != 0) {
1464                spin_lock_irqsave(&lp->lock, flags);
1465                ret = mii_ethtool_gset(&lp->mii, cmd);
1466                spin_unlock_irqrestore(&lp->lock, flags);
1467        } else {
1468                cmd->supported = SUPPORTED_10baseT_Half |
1469                                SUPPORTED_10baseT_Full |
1470                                SUPPORTED_TP | SUPPORTED_AUI;
1471
1472                if (lp->ctl_rspeed == 10)
1473                        ethtool_cmd_speed_set(cmd, SPEED_10);
1474                else if (lp->ctl_rspeed == 100)
1475                        ethtool_cmd_speed_set(cmd, SPEED_100);
1476
1477                cmd->autoneg = AUTONEG_DISABLE;
1478                if (lp->mii.phy_id==1)
1479                        cmd->transceiver = XCVR_INTERNAL;
1480                else
1481                        cmd->transceiver = XCVR_EXTERNAL;
1482                cmd->port = 0;
1483                SMC_GET_PHY_SPECIAL(lp, lp->mii.phy_id, status);
1484                cmd->duplex =
1485                        (status & (PHY_SPECIAL_SPD_10FULL_ | PHY_SPECIAL_SPD_100FULL_)) ?
1486                                DUPLEX_FULL : DUPLEX_HALF;
1487                ret = 0;
1488        }
1489
1490        return ret;
1491}
1492
1493static int
1494smc911x_ethtool_setsettings(struct net_device *dev, struct ethtool_cmd *cmd)
1495{
1496        struct smc911x_local *lp = netdev_priv(dev);
1497        int ret;
1498        unsigned long flags;
1499
1500        if (lp->phy_type != 0) {
1501                spin_lock_irqsave(&lp->lock, flags);
1502                ret = mii_ethtool_sset(&lp->mii, cmd);
1503                spin_unlock_irqrestore(&lp->lock, flags);
1504        } else {
1505                if (cmd->autoneg != AUTONEG_DISABLE ||
1506                        cmd->speed != SPEED_10 ||
1507                        (cmd->duplex != DUPLEX_HALF && cmd->duplex != DUPLEX_FULL) ||
1508                        (cmd->port != PORT_TP && cmd->port != PORT_AUI))
1509                        return -EINVAL;
1510
1511                lp->ctl_rfduplx = cmd->duplex == DUPLEX_FULL;
1512
1513                ret = 0;
1514        }
1515
1516        return ret;
1517}
1518
1519static void
1520smc911x_ethtool_getdrvinfo(struct net_device *dev, struct ethtool_drvinfo *info)
1521{
1522        strlcpy(info->driver, CARDNAME, sizeof(info->driver));
1523        strlcpy(info->version, version, sizeof(info->version));
1524        strlcpy(info->bus_info, dev_name(dev->dev.parent),
1525                sizeof(info->bus_info));
1526}
1527
1528static int smc911x_ethtool_nwayreset(struct net_device *dev)
1529{
1530        struct smc911x_local *lp = netdev_priv(dev);
1531        int ret = -EINVAL;
1532        unsigned long flags;
1533
1534        if (lp->phy_type != 0) {
1535                spin_lock_irqsave(&lp->lock, flags);
1536                ret = mii_nway_restart(&lp->mii);
1537                spin_unlock_irqrestore(&lp->lock, flags);
1538        }
1539
1540        return ret;
1541}
1542
1543static u32 smc911x_ethtool_getmsglevel(struct net_device *dev)
1544{
1545        struct smc911x_local *lp = netdev_priv(dev);
1546        return lp->msg_enable;
1547}
1548
1549static void smc911x_ethtool_setmsglevel(struct net_device *dev, u32 level)
1550{
1551        struct smc911x_local *lp = netdev_priv(dev);
1552        lp->msg_enable = level;
1553}
1554
1555static int smc911x_ethtool_getregslen(struct net_device *dev)
1556{
1557        /* System regs + MAC regs + PHY regs */
1558        return (((E2P_CMD - ID_REV)/4 + 1) +
1559                        (WUCSR - MAC_CR)+1 + 32) * sizeof(u32);
1560}
1561
1562static void smc911x_ethtool_getregs(struct net_device *dev,
1563                                                                                 struct ethtool_regs* regs, void *buf)
1564{
1565        struct smc911x_local *lp = netdev_priv(dev);
1566        unsigned long flags;
1567        u32 reg,i,j=0;
1568        u32 *data = (u32*)buf;
1569
1570        regs->version = lp->version;
1571        for(i=ID_REV;i<=E2P_CMD;i+=4) {
1572                data[j++] = SMC_inl(lp, i);
1573        }
1574        for(i=MAC_CR;i<=WUCSR;i++) {
1575                spin_lock_irqsave(&lp->lock, flags);
1576                SMC_GET_MAC_CSR(lp, i, reg);
1577                spin_unlock_irqrestore(&lp->lock, flags);
1578                data[j++] = reg;
1579        }
1580        for(i=0;i<=31;i++) {
1581                spin_lock_irqsave(&lp->lock, flags);
1582                SMC_GET_MII(lp, i, lp->mii.phy_id, reg);
1583                spin_unlock_irqrestore(&lp->lock, flags);
1584                data[j++] = reg & 0xFFFF;
1585        }
1586}
1587
1588static int smc911x_ethtool_wait_eeprom_ready(struct net_device *dev)
1589{
1590        struct smc911x_local *lp = netdev_priv(dev);
1591        unsigned int timeout;
1592        int e2p_cmd;
1593
1594        e2p_cmd = SMC_GET_E2P_CMD(lp);
1595        for(timeout=10;(e2p_cmd & E2P_CMD_EPC_BUSY_) && timeout; timeout--) {
1596                if (e2p_cmd & E2P_CMD_EPC_TIMEOUT_) {
1597                        PRINTK(dev, "%s timeout waiting for EEPROM to respond\n",
1598                               __func__);
1599                        return -EFAULT;
1600                }
1601                mdelay(1);
1602                e2p_cmd = SMC_GET_E2P_CMD(lp);
1603        }
1604        if (timeout == 0) {
1605                PRINTK(dev, "%s timeout waiting for EEPROM CMD not busy\n",
1606                       __func__);
1607                return -ETIMEDOUT;
1608        }
1609        return 0;
1610}
1611
1612static inline int smc911x_ethtool_write_eeprom_cmd(struct net_device *dev,
1613                                                                                                        int cmd, int addr)
1614{
1615        struct smc911x_local *lp = netdev_priv(dev);
1616        int ret;
1617
1618        if ((ret = smc911x_ethtool_wait_eeprom_ready(dev))!=0)
1619                return ret;
1620        SMC_SET_E2P_CMD(lp, E2P_CMD_EPC_BUSY_ |
1621                ((cmd) & (0x7<<28)) |
1622                ((addr) & 0xFF));
1623        return 0;
1624}
1625
1626static inline int smc911x_ethtool_read_eeprom_byte(struct net_device *dev,
1627                                                                                                        u8 *data)
1628{
1629        struct smc911x_local *lp = netdev_priv(dev);
1630        int ret;
1631
1632        if ((ret = smc911x_ethtool_wait_eeprom_ready(dev))!=0)
1633                return ret;
1634        *data = SMC_GET_E2P_DATA(lp);
1635        return 0;
1636}
1637
1638static inline int smc911x_ethtool_write_eeprom_byte(struct net_device *dev,
1639                                                                                                         u8 data)
1640{
1641        struct smc911x_local *lp = netdev_priv(dev);
1642        int ret;
1643
1644        if ((ret = smc911x_ethtool_wait_eeprom_ready(dev))!=0)
1645                return ret;
1646        SMC_SET_E2P_DATA(lp, data);
1647        return 0;
1648}
1649
1650static int smc911x_ethtool_geteeprom(struct net_device *dev,
1651                                                                          struct ethtool_eeprom *eeprom, u8 *data)
1652{
1653        u8 eebuf[SMC911X_EEPROM_LEN];
1654        int i, ret;
1655
1656        for(i=0;i<SMC911X_EEPROM_LEN;i++) {
1657                if ((ret=smc911x_ethtool_write_eeprom_cmd(dev, E2P_CMD_EPC_CMD_READ_, i ))!=0)
1658                        return ret;
1659                if ((ret=smc911x_ethtool_read_eeprom_byte(dev, &eebuf[i]))!=0)
1660                        return ret;
1661                }
1662        memcpy(data, eebuf+eeprom->offset, eeprom->len);
1663        return 0;
1664}
1665
1666static int smc911x_ethtool_seteeprom(struct net_device *dev,
1667                                                                           struct ethtool_eeprom *eeprom, u8 *data)
1668{
1669        int i, ret;
1670
1671        /* Enable erase */
1672        if ((ret=smc911x_ethtool_write_eeprom_cmd(dev, E2P_CMD_EPC_CMD_EWEN_, 0 ))!=0)
1673                return ret;
1674        for(i=eeprom->offset;i<(eeprom->offset+eeprom->len);i++) {
1675                /* erase byte */
1676                if ((ret=smc911x_ethtool_write_eeprom_cmd(dev, E2P_CMD_EPC_CMD_ERASE_, i ))!=0)
1677                        return ret;
1678                /* write byte */
1679                if ((ret=smc911x_ethtool_write_eeprom_byte(dev, *data))!=0)
1680                         return ret;
1681                if ((ret=smc911x_ethtool_write_eeprom_cmd(dev, E2P_CMD_EPC_CMD_WRITE_, i ))!=0)
1682                        return ret;
1683                }
1684         return 0;
1685}
1686
1687static int smc911x_ethtool_geteeprom_len(struct net_device *dev)
1688{
1689         return SMC911X_EEPROM_LEN;
1690}
1691
1692static const struct ethtool_ops smc911x_ethtool_ops = {
1693        .get_settings    = smc911x_ethtool_getsettings,
1694        .set_settings    = smc911x_ethtool_setsettings,
1695        .get_drvinfo     = smc911x_ethtool_getdrvinfo,
1696        .get_msglevel    = smc911x_ethtool_getmsglevel,
1697        .set_msglevel    = smc911x_ethtool_setmsglevel,
1698        .nway_reset = smc911x_ethtool_nwayreset,
1699        .get_link        = ethtool_op_get_link,
1700        .get_regs_len    = smc911x_ethtool_getregslen,
1701        .get_regs        = smc911x_ethtool_getregs,
1702        .get_eeprom_len = smc911x_ethtool_geteeprom_len,
1703        .get_eeprom = smc911x_ethtool_geteeprom,
1704        .set_eeprom = smc911x_ethtool_seteeprom,
1705};
1706
1707/*
1708 * smc911x_findirq
1709 *
1710 * This routine has a simple purpose -- make the SMC chip generate an
1711 * interrupt, so an auto-detect routine can detect it, and find the IRQ,
1712 */
1713static int smc911x_findirq(struct net_device *dev)
1714{
1715        struct smc911x_local *lp = netdev_priv(dev);
1716        int timeout = 20;
1717        unsigned long cookie;
1718
1719        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1720
1721        cookie = probe_irq_on();
1722
1723        /*
1724         * Force a SW interrupt
1725         */
1726
1727        SMC_SET_INT_EN(lp, INT_EN_SW_INT_EN_);
1728
1729        /*
1730         * Wait until positive that the interrupt has been generated
1731         */
1732        do {
1733                int int_status;
1734                udelay(10);
1735                int_status = SMC_GET_INT_EN(lp);
1736                if (int_status & INT_EN_SW_INT_EN_)
1737                         break;         /* got the interrupt */
1738        } while (--timeout);
1739
1740        /*
1741         * there is really nothing that I can do here if timeout fails,
1742         * as autoirq_report will return a 0 anyway, which is what I
1743         * want in this case.    Plus, the clean up is needed in both
1744         * cases.
1745         */
1746
1747        /* and disable all interrupts again */
1748        SMC_SET_INT_EN(lp, 0);
1749
1750        /* and return what I found */
1751        return probe_irq_off(cookie);
1752}
1753
1754static const struct net_device_ops smc911x_netdev_ops = {
1755        .ndo_open               = smc911x_open,
1756        .ndo_stop               = smc911x_close,
1757        .ndo_start_xmit         = smc911x_hard_start_xmit,
1758        .ndo_tx_timeout         = smc911x_timeout,
1759        .ndo_set_rx_mode        = smc911x_set_multicast_list,
1760        .ndo_change_mtu         = eth_change_mtu,
1761        .ndo_validate_addr      = eth_validate_addr,
1762        .ndo_set_mac_address    = eth_mac_addr,
1763#ifdef CONFIG_NET_POLL_CONTROLLER
1764        .ndo_poll_controller    = smc911x_poll_controller,
1765#endif
1766};
1767
1768/*
1769 * Function: smc911x_probe(unsigned long ioaddr)
1770 *
1771 * Purpose:
1772 *       Tests to see if a given ioaddr points to an SMC911x chip.
1773 *       Returns a 0 on success
1774 *
1775 * Algorithm:
1776 *       (1) see if the endian word is OK
1777 *       (1) see if I recognize the chip ID in the appropriate register
1778 *
1779 * Here I do typical initialization tasks.
1780 *
1781 * o  Initialize the structure if needed
1782 * o  print out my vanity message if not done so already
1783 * o  print out what type of hardware is detected
1784 * o  print out the ethernet address
1785 * o  find the IRQ
1786 * o  set up my private data
1787 * o  configure the dev structure with my subroutines
1788 * o  actually GRAB the irq.
1789 * o  GRAB the region
1790 */
1791static int smc911x_probe(struct net_device *dev)
1792{
1793        struct smc911x_local *lp = netdev_priv(dev);
1794        int i, retval;
1795        unsigned int val, chip_id, revision;
1796        const char *version_string;
1797        unsigned long irq_flags;
1798
1799        DBG(SMC_DEBUG_FUNC, dev, "--> %s\n", __func__);
1800
1801        /* First, see if the endian word is recognized */
1802        val = SMC_GET_BYTE_TEST(lp);
1803        DBG(SMC_DEBUG_MISC, dev, "%s: endian probe returned 0x%04x\n",
1804            CARDNAME, val);
1805        if (val != 0x87654321) {
1806                netdev_err(dev, "Invalid chip endian 0x%08x\n", val);
1807                retval = -ENODEV;
1808                goto err_out;
1809        }
1810
1811        /*
1812         * check if the revision register is something that I
1813         * recognize.   These might need to be added to later,
1814         * as future revisions could be added.
1815         */
1816        chip_id = SMC_GET_PN(lp);
1817        DBG(SMC_DEBUG_MISC, dev, "%s: id probe returned 0x%04x\n",
1818            CARDNAME, chip_id);
1819        for(i=0;chip_ids[i].id != 0; i++) {
1820                if (chip_ids[i].id == chip_id) break;
1821        }
1822        if (!chip_ids[i].id) {
1823                netdev_err(dev, "Unknown chip ID %04x\n", chip_id);
1824                retval = -ENODEV;
1825                goto err_out;
1826        }
1827        version_string = chip_ids[i].name;
1828
1829        revision = SMC_GET_REV(lp);
1830        DBG(SMC_DEBUG_MISC, dev, "%s: revision = 0x%04x\n", CARDNAME, revision);
1831
1832        /* At this point I'll assume that the chip is an SMC911x. */
1833        DBG(SMC_DEBUG_MISC, dev, "%s: Found a %s\n",
1834            CARDNAME, chip_ids[i].name);
1835
1836        /* Validate the TX FIFO size requested */
1837        if ((tx_fifo_kb < 2) || (tx_fifo_kb > 14)) {
1838                netdev_err(dev, "Invalid TX FIFO size requested %d\n",
1839                           tx_fifo_kb);
1840                retval = -EINVAL;
1841                goto err_out;
1842        }
1843
1844        /* fill in some of the fields */
1845        lp->version = chip_ids[i].id;
1846        lp->revision = revision;
1847        lp->tx_fifo_kb = tx_fifo_kb;
1848        /* Reverse calculate the RX FIFO size from the TX */
1849        lp->tx_fifo_size=(lp->tx_fifo_kb<<10) - 512;
1850        lp->rx_fifo_size= ((0x4000 - 512 - lp->tx_fifo_size) / 16) * 15;
1851
1852        /* Set the automatic flow control values */
1853        switch(lp->tx_fifo_kb) {
1854                /*
1855                 *       AFC_HI is about ((Rx Data Fifo Size)*2/3)/64
1856                 *       AFC_LO is AFC_HI/2
1857                 *       BACK_DUR is about 5uS*(AFC_LO) rounded down
1858                 */
1859                case 2:/* 13440 Rx Data Fifo Size */
1860                        lp->afc_cfg=0x008C46AF;break;
1861                case 3:/* 12480 Rx Data Fifo Size */
1862                        lp->afc_cfg=0x0082419F;break;
1863                case 4:/* 11520 Rx Data Fifo Size */
1864                        lp->afc_cfg=0x00783C9F;break;
1865                case 5:/* 10560 Rx Data Fifo Size */
1866                        lp->afc_cfg=0x006E374F;break;
1867                case 6:/* 9600 Rx Data Fifo Size */
1868                        lp->afc_cfg=0x0064328F;break;
1869                case 7:/* 8640 Rx Data Fifo Size */
1870                        lp->afc_cfg=0x005A2D7F;break;
1871                case 8:/* 7680 Rx Data Fifo Size */
1872                        lp->afc_cfg=0x0050287F;break;
1873                case 9:/* 6720 Rx Data Fifo Size */
1874                        lp->afc_cfg=0x0046236F;break;
1875                case 10:/* 5760 Rx Data Fifo Size */
1876                        lp->afc_cfg=0x003C1E6F;break;
1877                case 11:/* 4800 Rx Data Fifo Size */
1878                        lp->afc_cfg=0x0032195F;break;
1879                /*
1880                 *       AFC_HI is ~1520 bytes less than RX Data Fifo Size
1881                 *       AFC_LO is AFC_HI/2
1882                 *       BACK_DUR is about 5uS*(AFC_LO) rounded down
1883                 */
1884                case 12:/* 3840 Rx Data Fifo Size */
1885                        lp->afc_cfg=0x0024124F;break;
1886                case 13:/* 2880 Rx Data Fifo Size */
1887                        lp->afc_cfg=0x0015073F;break;
1888                case 14:/* 1920 Rx Data Fifo Size */
1889                        lp->afc_cfg=0x0006032F;break;
1890                 default:
1891                         PRINTK(dev, "ERROR -- no AFC_CFG setting found");
1892                         break;
1893        }
1894
1895        DBG(SMC_DEBUG_MISC | SMC_DEBUG_TX | SMC_DEBUG_RX, dev,
1896            "%s: tx_fifo %d rx_fifo %d afc_cfg 0x%08x\n", CARDNAME,
1897            lp->tx_fifo_size, lp->rx_fifo_size, lp->afc_cfg);
1898
1899        spin_lock_init(&lp->lock);
1900
1901        /* Get the MAC address */
1902        SMC_GET_MAC_ADDR(lp, dev->dev_addr);
1903
1904        /* now, reset the chip, and put it into a known state */
1905        smc911x_reset(dev);
1906
1907        /*
1908         * If dev->irq is 0, then the device has to be banged on to see
1909         * what the IRQ is.
1910         *
1911         * Specifying an IRQ is done with the assumption that the user knows
1912         * what (s)he is doing.  No checking is done!!!!
1913         */
1914        if (dev->irq < 1) {
1915                int trials;
1916
1917                trials = 3;
1918                while (trials--) {
1919                        dev->irq = smc911x_findirq(dev);
1920                        if (dev->irq)
1921                                break;
1922                        /* kick the card and try again */
1923                        smc911x_reset(dev);
1924                }
1925        }
1926        if (dev->irq == 0) {
1927                netdev_warn(dev, "Couldn't autodetect your IRQ. Use irq=xx.\n");
1928                retval = -ENODEV;
1929                goto err_out;
1930        }
1931        dev->irq = irq_canonicalize(dev->irq);
1932
1933        /* Fill in the fields of the device structure with ethernet values. */
1934        ether_setup(dev);
1935
1936        dev->netdev_ops = &smc911x_netdev_ops;
1937        dev->watchdog_timeo = msecs_to_jiffies(watchdog);
1938        dev->ethtool_ops = &smc911x_ethtool_ops;
1939
1940        INIT_WORK(&lp->phy_configure, smc911x_phy_configure);
1941        lp->mii.phy_id_mask = 0x1f;
1942        lp->mii.reg_num_mask = 0x1f;
1943        lp->mii.force_media = 0;
1944        lp->mii.full_duplex = 0;
1945        lp->mii.dev = dev;
1946        lp->mii.mdio_read = smc911x_phy_read;
1947        lp->mii.mdio_write = smc911x_phy_write;
1948
1949        /*
1950         * Locate the phy, if any.
1951         */
1952        smc911x_phy_detect(dev);
1953
1954        /* Set default parameters */
1955        lp->msg_enable = NETIF_MSG_LINK;
1956        lp->ctl_rfduplx = 1;
1957        lp->ctl_rspeed = 100;
1958
1959#ifdef SMC_DYNAMIC_BUS_CONFIG
1960        irq_flags = lp->cfg.irq_flags;
1961#else
1962        irq_flags = IRQF_SHARED | SMC_IRQ_SENSE;
1963#endif
1964
1965        /* Grab the IRQ */
1966        retval = request_irq(dev->irq, smc911x_interrupt,
1967                             irq_flags, dev->name, dev);
1968        if (retval)
1969                goto err_out;
1970
1971#ifdef SMC_USE_DMA
1972        lp->rxdma = SMC_DMA_REQUEST(dev, smc911x_rx_dma_irq);
1973        lp->txdma = SMC_DMA_REQUEST(dev, smc911x_tx_dma_irq);
1974        lp->rxdma_active = 0;
1975        lp->txdma_active = 0;
1976        dev->dma = lp->rxdma;
1977#endif
1978
1979        retval = register_netdev(dev);
1980        if (retval == 0) {
1981                /* now, print out the card info, in a short format.. */
1982                netdev_info(dev, "%s (rev %d) at %#lx IRQ %d",
1983                            version_string, lp->revision,
1984                            dev->base_addr, dev->irq);
1985
1986#ifdef SMC_USE_DMA
1987                if (lp->rxdma != -1)
1988                        pr_cont(" RXDMA %d", lp->rxdma);
1989
1990                if (lp->txdma != -1)
1991                        pr_cont(" TXDMA %d", lp->txdma);
1992#endif
1993                pr_cont("\n");
1994                if (!is_valid_ether_addr(dev->dev_addr)) {
1995                        netdev_warn(dev, "Invalid ethernet MAC address. Please set using ifconfig\n");
1996                } else {
1997                        /* Print the Ethernet address */
1998                        netdev_info(dev, "Ethernet addr: %pM\n",
1999                                    dev->dev_addr);
2000                }
2001
2002                if (lp->phy_type == 0) {
2003                        PRINTK(dev, "No PHY found\n");
2004                } else if ((lp->phy_type & ~0xff) == LAN911X_INTERNAL_PHY_ID) {
2005                        PRINTK(dev, "LAN911x Internal PHY\n");
2006                } else {
2007                        PRINTK(dev, "External PHY 0x%08x\n", lp->phy_type);
2008                }
2009        }
2010
2011err_out:
2012#ifdef SMC_USE_DMA
2013        if (retval) {
2014                if (lp->rxdma != -1) {
2015                        SMC_DMA_FREE(dev, lp->rxdma);
2016                }
2017                if (lp->txdma != -1) {
2018                        SMC_DMA_FREE(dev, lp->txdma);
2019                }
2020        }
2021#endif
2022        return retval;
2023}
2024
2025/*
2026 * smc911x_drv_probe(void)
2027 *
2028 *        Output:
2029 *       0 --> there is a device
2030 *       anything else, error
2031 */
2032static int smc911x_drv_probe(struct platform_device *pdev)
2033{
2034        struct net_device *ndev;
2035        struct resource *res;
2036        struct smc911x_local *lp;
2037        void __iomem *addr;
2038        int ret;
2039
2040        /* ndev is not valid yet, so avoid passing it in. */
2041        DBG(SMC_DEBUG_FUNC, "--> %s\n",  __func__);
2042        res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
2043        if (!res) {
2044                ret = -ENODEV;
2045                goto out;
2046        }
2047
2048        /*
2049         * Request the regions.
2050         */
2051        if (!request_mem_region(res->start, SMC911X_IO_EXTENT, CARDNAME)) {
2052                 ret = -EBUSY;
2053                 goto out;
2054        }
2055
2056        ndev = alloc_etherdev(sizeof(struct smc911x_local));
2057        if (!ndev) {
2058                ret = -ENOMEM;
2059                goto release_1;
2060        }
2061        SET_NETDEV_DEV(ndev, &pdev->dev);
2062
2063        ndev->dma = (unsigned char)-1;
2064        ndev->irq = platform_get_irq(pdev, 0);
2065        lp = netdev_priv(ndev);
2066        lp->netdev = ndev;
2067#ifdef SMC_DYNAMIC_BUS_CONFIG
2068        {
2069                struct smc911x_platdata *pd = dev_get_platdata(&pdev->dev);
2070                if (!pd) {
2071                        ret = -EINVAL;
2072                        goto release_both;
2073                }
2074                memcpy(&lp->cfg, pd, sizeof(lp->cfg));
2075        }
2076#endif
2077
2078        addr = ioremap(res->start, SMC911X_IO_EXTENT);
2079        if (!addr) {
2080                ret = -ENOMEM;
2081                goto release_both;
2082        }
2083
2084        platform_set_drvdata(pdev, ndev);
2085        lp->base = addr;
2086        ndev->base_addr = res->start;
2087        ret = smc911x_probe(ndev);
2088        if (ret != 0) {
2089                iounmap(addr);
2090release_both:
2091                free_netdev(ndev);
2092release_1:
2093                release_mem_region(res->start, SMC911X_IO_EXTENT);
2094out:
2095                pr_info("%s: not found (%d).\n", CARDNAME, ret);
2096        }
2097#ifdef SMC_USE_DMA
2098        else {
2099                lp->physaddr = res->start;
2100                lp->dev = &pdev->dev;
2101        }
2102#endif
2103
2104        return ret;
2105}
2106
2107static int smc911x_drv_remove(struct platform_device *pdev)
2108{
2109        struct net_device *ndev = platform_get_drvdata(pdev);
2110        struct smc911x_local *lp = netdev_priv(ndev);
2111        struct resource *res;
2112
2113        DBG(SMC_DEBUG_FUNC, ndev, "--> %s\n", __func__);
2114
2115        unregister_netdev(ndev);
2116
2117        free_irq(ndev->irq, ndev);
2118
2119#ifdef SMC_USE_DMA
2120        {
2121                if (lp->rxdma != -1) {
2122                        SMC_DMA_FREE(dev, lp->rxdma);
2123                }
2124                if (lp->txdma != -1) {
2125                        SMC_DMA_FREE(dev, lp->txdma);
2126                }
2127        }
2128#endif
2129        iounmap(lp->base);
2130        res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
2131        release_mem_region(res->start, SMC911X_IO_EXTENT);
2132
2133        free_netdev(ndev);
2134        return 0;
2135}
2136
2137static int smc911x_drv_suspend(struct platform_device *dev, pm_message_t state)
2138{
2139        struct net_device *ndev = platform_get_drvdata(dev);
2140        struct smc911x_local *lp = netdev_priv(ndev);
2141
2142        DBG(SMC_DEBUG_FUNC, ndev, "--> %s\n", __func__);
2143        if (ndev) {
2144                if (netif_running(ndev)) {
2145                        netif_device_detach(ndev);
2146                        smc911x_shutdown(ndev);
2147#if POWER_DOWN
2148                        /* Set D2 - Energy detect only setting */
2149                        SMC_SET_PMT_CTRL(lp, 2<<12);
2150#endif
2151                }
2152        }
2153        return 0;
2154}
2155
2156static int smc911x_drv_resume(struct platform_device *dev)
2157{
2158        struct net_device *ndev = platform_get_drvdata(dev);
2159
2160        DBG(SMC_DEBUG_FUNC, ndev, "--> %s\n", __func__);
2161        if (ndev) {
2162                struct smc911x_local *lp = netdev_priv(ndev);
2163
2164                if (netif_running(ndev)) {
2165                        smc911x_reset(ndev);
2166                        if (lp->phy_type != 0)
2167                                smc911x_phy_configure(&lp->phy_configure);
2168                        smc911x_enable(ndev);
2169                        netif_device_attach(ndev);
2170                }
2171        }
2172        return 0;
2173}
2174
2175static struct platform_driver smc911x_driver = {
2176        .probe           = smc911x_drv_probe,
2177        .remove  = smc911x_drv_remove,
2178        .suspend         = smc911x_drv_suspend,
2179        .resume  = smc911x_drv_resume,
2180        .driver  = {
2181                .name    = CARDNAME,
2182                .owner  = THIS_MODULE,
2183        },
2184};
2185
2186module_platform_driver(smc911x_driver);
2187