1 /*****************************************************************************
 
   5  * $Date: 2005/06/22 00:43:25 $                                              *
 
   7  *  Chelsio 10Gb Ethernet Driver.                                            *
 
   9  * This program is free software; you can redistribute it and/or modify      *
 
  10  * it under the terms of the GNU General Public License, version 2, as       *
 
  11  * published by the Free Software Foundation.                                *
 
  13  * You should have received a copy of the GNU General Public License along   *
 
  14  * with this program; if not, write to the Free Software Foundation, Inc.,   *
 
  15  * 59 Temple Place - Suite 330, Boston, MA  02111-1307, USA.                 *
 
  17  * THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED    *
 
  18  * WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF      *
 
  19  * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.                     *
 
  21  * http://www.chelsio.com                                                    *
 
  23  * Copyright (c) 2003 - 2005 Chelsio Communications, Inc.                    *
 
  24  * All rights reserved.                                                      *
 
  26  * Maintainers: maintainers@chelsio.com                                      *
 
  28  * Authors: Dimitrios Michailidis   <dm@chelsio.com>                         *
 
  29  *          Tina Yang               <tainay@chelsio.com>                     *
 
  30  *          Felix Marti             <felix@chelsio.com>                      *
 
  31  *          Scott Bardone           <sbardone@chelsio.com>                   *
 
  32  *          Kurt Ottaway            <kottaway@chelsio.com>                   *
 
  33  *          Frank DiMambro          <frank@chelsio.com>                      *
 
  37  ****************************************************************************/
 
  40 #include <linux/module.h>
 
  41 #include <linux/init.h>
 
  42 #include <linux/pci.h>
 
  43 #include <linux/netdevice.h>
 
  44 #include <linux/etherdevice.h>
 
  45 #include <linux/if_vlan.h>
 
  46 #include <linux/mii.h>
 
  47 #include <linux/sockios.h>
 
  48 #include <linux/dma-mapping.h>
 
  49 #include <asm/uaccess.h>
 
  60 #include <linux/workqueue.h>
 
  62 static inline void schedule_mac_stats_update(struct adapter *ap, int secs)
 
  64         schedule_delayed_work(&ap->stats_update_task, secs * HZ);
 
  67 static inline void cancel_mac_stats_update(struct adapter *ap)
 
  69         cancel_delayed_work(&ap->stats_update_task);
 
  72 #define MAX_CMDQ_ENTRIES        16384
 
  73 #define MAX_CMDQ1_ENTRIES       1024
 
  74 #define MAX_RX_BUFFERS          16384
 
  75 #define MAX_RX_JUMBO_BUFFERS    16384
 
  76 #define MAX_TX_BUFFERS_HIGH     16384U
 
  77 #define MAX_TX_BUFFERS_LOW      1536U
 
  78 #define MAX_TX_BUFFERS          1460U
 
  79 #define MIN_FL_ENTRIES          32
 
  81 #define DFLT_MSG_ENABLE (NETIF_MSG_DRV | NETIF_MSG_PROBE | NETIF_MSG_LINK | \
 
  82                          NETIF_MSG_TIMER | NETIF_MSG_IFDOWN | NETIF_MSG_IFUP |\
 
  83                          NETIF_MSG_RX_ERR | NETIF_MSG_TX_ERR)
 
  86  * The EEPROM is actually bigger but only the first few bytes are used so we
 
  89 #define EEPROM_SIZE 32
 
  91 MODULE_DESCRIPTION(DRV_DESCRIPTION);
 
  92 MODULE_AUTHOR("Chelsio Communications");
 
  93 MODULE_LICENSE("GPL");
 
  95 static int dflt_msg_enable = DFLT_MSG_ENABLE;
 
  97 module_param(dflt_msg_enable, int, 0);
 
  98 MODULE_PARM_DESC(dflt_msg_enable, "Chelsio T1 default message enable bitmap");
 
 103 /* T1 cards powersave mode */
 
 104 static int t1_clock(struct adapter *adapter, int mode);
 
 105 static int t1powersave = 1;     /* HW default is powersave mode. */
 
 107 module_param(t1powersave, int, 0);
 
 108 MODULE_PARM_DESC(t1powersave, "Enable/Disable T1 powersaving mode");
 
 110 static int disable_msi = 0;
 
 111 module_param(disable_msi, int, 0);
 
 112 MODULE_PARM_DESC(disable_msi, "Disable Message Signaled Interrupt (MSI)");
 
 114 static const char pci_speed[][4] = {
 
 115         "33", "66", "100", "133"
 
 119  * Setup MAC to receive the types of packets we want.
 
 121 static void t1_set_rxmode(struct net_device *dev)
 
 123         struct adapter *adapter = dev->ml_priv;
 
 124         struct cmac *mac = adapter->port[dev->if_port].mac;
 
 125         struct t1_rx_mode rm;
 
 129         rm.list = dev->mc_list;
 
 130         mac->ops->set_rx_mode(mac, &rm);
 
 133 static void link_report(struct port_info *p)
 
 135         if (!netif_carrier_ok(p->dev))
 
 136                 printk(KERN_INFO "%s: link down\n", p->dev->name);
 
 138                 const char *s = "10Mbps";
 
 140                 switch (p->link_config.speed) {
 
 141                         case SPEED_10000: s = "10Gbps"; break;
 
 142                         case SPEED_1000:  s = "1000Mbps"; break;
 
 143                         case SPEED_100:   s = "100Mbps"; break;
 
 146                 printk(KERN_INFO "%s: link up, %s, %s-duplex\n",
 
 148                        p->link_config.duplex == DUPLEX_FULL ? "full" : "half");
 
 152 void t1_link_negotiated(struct adapter *adapter, int port_id, int link_stat,
 
 153                         int speed, int duplex, int pause)
 
 155         struct port_info *p = &adapter->port[port_id];
 
 157         if (link_stat != netif_carrier_ok(p->dev)) {
 
 159                         netif_carrier_on(p->dev);
 
 161                         netif_carrier_off(p->dev);
 
 164                 /* multi-ports: inform toe */
 
 165                 if ((speed > 0) && (adapter->params.nports > 1)) {
 
 166                         unsigned int sched_speed = 10;
 
 178                         t1_sched_update_parms(adapter->sge, port_id, 0, sched_speed);
 
 183 static void link_start(struct port_info *p)
 
 185         struct cmac *mac = p->mac;
 
 187         mac->ops->reset(mac);
 
 188         if (mac->ops->macaddress_set)
 
 189                 mac->ops->macaddress_set(mac, p->dev->dev_addr);
 
 190         t1_set_rxmode(p->dev);
 
 191         t1_link_start(p->phy, mac, &p->link_config);
 
 192         mac->ops->enable(mac, MAC_DIRECTION_RX | MAC_DIRECTION_TX);
 
 195 static void enable_hw_csum(struct adapter *adapter)
 
 197         if (adapter->flags & TSO_CAPABLE)
 
 198                 t1_tp_set_ip_checksum_offload(adapter->tp, 1);  /* for TSO only */
 
 199         if (adapter->flags & UDP_CSUM_CAPABLE)
 
 200                 t1_tp_set_udp_checksum_offload(adapter->tp, 1);
 
 201         t1_tp_set_tcp_checksum_offload(adapter->tp, 1);
 
 205  * Things to do upon first use of a card.
 
 206  * This must run with the rtnl lock held.
 
 208 static int cxgb_up(struct adapter *adapter)
 
 212         if (!(adapter->flags & FULL_INIT_DONE)) {
 
 213                 err = t1_init_hw_modules(adapter);
 
 217                 enable_hw_csum(adapter);
 
 218                 adapter->flags |= FULL_INIT_DONE;
 
 221         t1_interrupts_clear(adapter);
 
 223         adapter->params.has_msi = !disable_msi && !pci_enable_msi(adapter->pdev);
 
 224         err = request_irq(adapter->pdev->irq, t1_interrupt,
 
 225                           adapter->params.has_msi ? 0 : IRQF_SHARED,
 
 226                           adapter->name, adapter);
 
 228                 if (adapter->params.has_msi)
 
 229                         pci_disable_msi(adapter->pdev);
 
 234         t1_sge_start(adapter->sge);
 
 235         t1_interrupts_enable(adapter);
 
 241  * Release resources when all the ports have been stopped.
 
 243 static void cxgb_down(struct adapter *adapter)
 
 245         t1_sge_stop(adapter->sge);
 
 246         t1_interrupts_disable(adapter);
 
 247         free_irq(adapter->pdev->irq, adapter);
 
 248         if (adapter->params.has_msi)
 
 249                 pci_disable_msi(adapter->pdev);
 
 252 static int cxgb_open(struct net_device *dev)
 
 255         struct adapter *adapter = dev->ml_priv;
 
 256         int other_ports = adapter->open_device_map & PORT_MASK;
 
 258         napi_enable(&adapter->napi);
 
 259         if (!adapter->open_device_map && (err = cxgb_up(adapter)) < 0) {
 
 260                 napi_disable(&adapter->napi);
 
 264         __set_bit(dev->if_port, &adapter->open_device_map);
 
 265         link_start(&adapter->port[dev->if_port]);
 
 266         netif_start_queue(dev);
 
 267         if (!other_ports && adapter->params.stats_update_period)
 
 268                 schedule_mac_stats_update(adapter,
 
 269                                           adapter->params.stats_update_period);
 
 273 static int cxgb_close(struct net_device *dev)
 
 275         struct adapter *adapter = dev->ml_priv;
 
 276         struct port_info *p = &adapter->port[dev->if_port];
 
 277         struct cmac *mac = p->mac;
 
 279         netif_stop_queue(dev);
 
 280         napi_disable(&adapter->napi);
 
 281         mac->ops->disable(mac, MAC_DIRECTION_TX | MAC_DIRECTION_RX);
 
 282         netif_carrier_off(dev);
 
 284         clear_bit(dev->if_port, &adapter->open_device_map);
 
 285         if (adapter->params.stats_update_period &&
 
 286             !(adapter->open_device_map & PORT_MASK)) {
 
 287                 /* Stop statistics accumulation. */
 
 288                 smp_mb__after_clear_bit();
 
 289                 spin_lock(&adapter->work_lock);   /* sync with update task */
 
 290                 spin_unlock(&adapter->work_lock);
 
 291                 cancel_mac_stats_update(adapter);
 
 294         if (!adapter->open_device_map)
 
 299 static struct net_device_stats *t1_get_stats(struct net_device *dev)
 
 301         struct adapter *adapter = dev->ml_priv;
 
 302         struct port_info *p = &adapter->port[dev->if_port];
 
 303         struct net_device_stats *ns = &p->netstats;
 
 304         const struct cmac_statistics *pstats;
 
 306         /* Do a full update of the MAC stats */
 
 307         pstats = p->mac->ops->statistics_update(p->mac,
 
 308                                                 MAC_STATS_UPDATE_FULL);
 
 310         ns->tx_packets = pstats->TxUnicastFramesOK +
 
 311                 pstats->TxMulticastFramesOK + pstats->TxBroadcastFramesOK;
 
 313         ns->rx_packets = pstats->RxUnicastFramesOK +
 
 314                 pstats->RxMulticastFramesOK + pstats->RxBroadcastFramesOK;
 
 316         ns->tx_bytes = pstats->TxOctetsOK;
 
 317         ns->rx_bytes = pstats->RxOctetsOK;
 
 319         ns->tx_errors = pstats->TxLateCollisions + pstats->TxLengthErrors +
 
 320                 pstats->TxUnderrun + pstats->TxFramesAbortedDueToXSCollisions;
 
 321         ns->rx_errors = pstats->RxDataErrors + pstats->RxJabberErrors +
 
 322                 pstats->RxFCSErrors + pstats->RxAlignErrors +
 
 323                 pstats->RxSequenceErrors + pstats->RxFrameTooLongErrors +
 
 324                 pstats->RxSymbolErrors + pstats->RxRuntErrors;
 
 326         ns->multicast  = pstats->RxMulticastFramesOK;
 
 327         ns->collisions = pstats->TxTotalCollisions;
 
 329         /* detailed rx_errors */
 
 330         ns->rx_length_errors = pstats->RxFrameTooLongErrors +
 
 331                 pstats->RxJabberErrors;
 
 332         ns->rx_over_errors   = 0;
 
 333         ns->rx_crc_errors    = pstats->RxFCSErrors;
 
 334         ns->rx_frame_errors  = pstats->RxAlignErrors;
 
 335         ns->rx_fifo_errors   = 0;
 
 336         ns->rx_missed_errors = 0;
 
 338         /* detailed tx_errors */
 
 339         ns->tx_aborted_errors   = pstats->TxFramesAbortedDueToXSCollisions;
 
 340         ns->tx_carrier_errors   = 0;
 
 341         ns->tx_fifo_errors      = pstats->TxUnderrun;
 
 342         ns->tx_heartbeat_errors = 0;
 
 343         ns->tx_window_errors    = pstats->TxLateCollisions;
 
 347 static u32 get_msglevel(struct net_device *dev)
 
 349         struct adapter *adapter = dev->ml_priv;
 
 351         return adapter->msg_enable;
 
 354 static void set_msglevel(struct net_device *dev, u32 val)
 
 356         struct adapter *adapter = dev->ml_priv;
 
 358         adapter->msg_enable = val;
 
 361 static char stats_strings[][ETH_GSTRING_LEN] = {
 
 365         "TxMulticastFramesOK",
 
 366         "TxBroadcastFramesOK",
 
 368         "TxFramesWithDeferredXmissions",
 
 371         "TxFramesAbortedDueToXSCollisions",
 
 374         "TxInternalMACXmitError",
 
 375         "TxFramesWithExcessiveDeferral",
 
 383         "RxMulticastFramesOK",
 
 384         "RxBroadcastFramesOK",
 
 393         "RxInternalMACRcvError",
 
 394         "RxInRangeLengthErrors",
 
 395         "RxOutOfRangeLengthField",
 
 396         "RxFrameTooLongErrors",
 
 408         /* Interrupt stats */
 
 420         "espi_DIP2ParityErr",
 
 428 #define T2_REGMAP_SIZE (3 * 1024)
 
 430 static int get_regs_len(struct net_device *dev)
 
 432         return T2_REGMAP_SIZE;
 
 435 static void get_drvinfo(struct net_device *dev, struct ethtool_drvinfo *info)
 
 437         struct adapter *adapter = dev->ml_priv;
 
 439         strcpy(info->driver, DRV_NAME);
 
 440         strcpy(info->version, DRV_VERSION);
 
 441         strcpy(info->fw_version, "N/A");
 
 442         strcpy(info->bus_info, pci_name(adapter->pdev));
 
 445 static int get_sset_count(struct net_device *dev, int sset)
 
 449                 return ARRAY_SIZE(stats_strings);
 
 455 static void get_strings(struct net_device *dev, u32 stringset, u8 *data)
 
 457         if (stringset == ETH_SS_STATS)
 
 458                 memcpy(data, stats_strings, sizeof(stats_strings));
 
 461 static void get_stats(struct net_device *dev, struct ethtool_stats *stats,
 
 464         struct adapter *adapter = dev->ml_priv;
 
 465         struct cmac *mac = adapter->port[dev->if_port].mac;
 
 466         const struct cmac_statistics *s;
 
 467         const struct sge_intr_counts *t;
 
 468         struct sge_port_stats ss;
 
 470         s = mac->ops->statistics_update(mac, MAC_STATS_UPDATE_FULL);
 
 471         t = t1_sge_get_intr_counts(adapter->sge);
 
 472         t1_sge_get_port_stats(adapter->sge, dev->if_port, &ss);
 
 474         *data++ = s->TxOctetsOK;
 
 475         *data++ = s->TxOctetsBad;
 
 476         *data++ = s->TxUnicastFramesOK;
 
 477         *data++ = s->TxMulticastFramesOK;
 
 478         *data++ = s->TxBroadcastFramesOK;
 
 479         *data++ = s->TxPauseFrames;
 
 480         *data++ = s->TxFramesWithDeferredXmissions;
 
 481         *data++ = s->TxLateCollisions;
 
 482         *data++ = s->TxTotalCollisions;
 
 483         *data++ = s->TxFramesAbortedDueToXSCollisions;
 
 484         *data++ = s->TxUnderrun;
 
 485         *data++ = s->TxLengthErrors;
 
 486         *data++ = s->TxInternalMACXmitError;
 
 487         *data++ = s->TxFramesWithExcessiveDeferral;
 
 488         *data++ = s->TxFCSErrors;
 
 489         *data++ = s->TxJumboFramesOK;
 
 490         *data++ = s->TxJumboOctetsOK;
 
 492         *data++ = s->RxOctetsOK;
 
 493         *data++ = s->RxOctetsBad;
 
 494         *data++ = s->RxUnicastFramesOK;
 
 495         *data++ = s->RxMulticastFramesOK;
 
 496         *data++ = s->RxBroadcastFramesOK;
 
 497         *data++ = s->RxPauseFrames;
 
 498         *data++ = s->RxFCSErrors;
 
 499         *data++ = s->RxAlignErrors;
 
 500         *data++ = s->RxSymbolErrors;
 
 501         *data++ = s->RxDataErrors;
 
 502         *data++ = s->RxSequenceErrors;
 
 503         *data++ = s->RxRuntErrors;
 
 504         *data++ = s->RxJabberErrors;
 
 505         *data++ = s->RxInternalMACRcvError;
 
 506         *data++ = s->RxInRangeLengthErrors;
 
 507         *data++ = s->RxOutOfRangeLengthField;
 
 508         *data++ = s->RxFrameTooLongErrors;
 
 509         *data++ = s->RxJumboFramesOK;
 
 510         *data++ = s->RxJumboOctetsOK;
 
 512         *data++ = ss.rx_cso_good;
 
 515         *data++ = ss.vlan_xtract;
 
 516         *data++ = ss.vlan_insert;
 
 517         *data++ = ss.tx_need_hdrroom;
 
 519         *data++ = t->rx_drops;
 
 520         *data++ = t->pure_rsps;
 
 521         *data++ = t->unhandled_irqs;
 
 522         *data++ = t->respQ_empty;
 
 523         *data++ = t->respQ_overflow;
 
 524         *data++ = t->freelistQ_empty;
 
 525         *data++ = t->pkt_too_big;
 
 526         *data++ = t->pkt_mismatch;
 
 527         *data++ = t->cmdQ_full[0];
 
 528         *data++ = t->cmdQ_full[1];
 
 531                 const struct espi_intr_counts *e;
 
 533                 e = t1_espi_get_intr_counts(adapter->espi);
 
 534                 *data++ = e->DIP2_parity_err;
 
 535                 *data++ = e->DIP4_err;
 
 536                 *data++ = e->rx_drops;
 
 537                 *data++ = e->tx_drops;
 
 538                 *data++ = e->rx_ovflw;
 
 539                 *data++ = e->parity_err;
 
 543 static inline void reg_block_dump(struct adapter *ap, void *buf,
 
 544                                   unsigned int start, unsigned int end)
 
 546         u32 *p = buf + start;
 
 548         for ( ; start <= end; start += sizeof(u32))
 
 549                 *p++ = readl(ap->regs + start);
 
 552 static void get_regs(struct net_device *dev, struct ethtool_regs *regs,
 
 555         struct adapter *ap = dev->ml_priv;
 
 558          * Version scheme: bits 0..9: chip version, bits 10..15: chip revision
 
 562         memset(buf, 0, T2_REGMAP_SIZE);
 
 563         reg_block_dump(ap, buf, 0, A_SG_RESPACCUTIMER);
 
 564         reg_block_dump(ap, buf, A_MC3_CFG, A_MC4_INT_CAUSE);
 
 565         reg_block_dump(ap, buf, A_TPI_ADDR, A_TPI_PAR);
 
 566         reg_block_dump(ap, buf, A_TP_IN_CONFIG, A_TP_TX_DROP_COUNT);
 
 567         reg_block_dump(ap, buf, A_RAT_ROUTE_CONTROL, A_RAT_INTR_CAUSE);
 
 568         reg_block_dump(ap, buf, A_CSPI_RX_AE_WM, A_CSPI_INTR_ENABLE);
 
 569         reg_block_dump(ap, buf, A_ESPI_SCH_TOKEN0, A_ESPI_GOSTAT);
 
 570         reg_block_dump(ap, buf, A_ULP_ULIMIT, A_ULP_PIO_CTRL);
 
 571         reg_block_dump(ap, buf, A_PL_ENABLE, A_PL_CAUSE);
 
 572         reg_block_dump(ap, buf, A_MC5_CONFIG, A_MC5_MASK_WRITE_CMD);
 
 575 static int get_settings(struct net_device *dev, struct ethtool_cmd *cmd)
 
 577         struct adapter *adapter = dev->ml_priv;
 
 578         struct port_info *p = &adapter->port[dev->if_port];
 
 580         cmd->supported = p->link_config.supported;
 
 581         cmd->advertising = p->link_config.advertising;
 
 583         if (netif_carrier_ok(dev)) {
 
 584                 cmd->speed = p->link_config.speed;
 
 585                 cmd->duplex = p->link_config.duplex;
 
 591         cmd->port = (cmd->supported & SUPPORTED_TP) ? PORT_TP : PORT_FIBRE;
 
 592         cmd->phy_address = p->phy->addr;
 
 593         cmd->transceiver = XCVR_EXTERNAL;
 
 594         cmd->autoneg = p->link_config.autoneg;
 
 600 static int speed_duplex_to_caps(int speed, int duplex)
 
 606                 if (duplex == DUPLEX_FULL)
 
 607                         cap = SUPPORTED_10baseT_Full;
 
 609                         cap = SUPPORTED_10baseT_Half;
 
 612                 if (duplex == DUPLEX_FULL)
 
 613                         cap = SUPPORTED_100baseT_Full;
 
 615                         cap = SUPPORTED_100baseT_Half;
 
 618                 if (duplex == DUPLEX_FULL)
 
 619                         cap = SUPPORTED_1000baseT_Full;
 
 621                         cap = SUPPORTED_1000baseT_Half;
 
 624                 if (duplex == DUPLEX_FULL)
 
 625                         cap = SUPPORTED_10000baseT_Full;
 
 630 #define ADVERTISED_MASK (ADVERTISED_10baseT_Half | ADVERTISED_10baseT_Full | \
 
 631                       ADVERTISED_100baseT_Half | ADVERTISED_100baseT_Full | \
 
 632                       ADVERTISED_1000baseT_Half | ADVERTISED_1000baseT_Full | \
 
 633                       ADVERTISED_10000baseT_Full)
 
 635 static int set_settings(struct net_device *dev, struct ethtool_cmd *cmd)
 
 637         struct adapter *adapter = dev->ml_priv;
 
 638         struct port_info *p = &adapter->port[dev->if_port];
 
 639         struct link_config *lc = &p->link_config;
 
 641         if (!(lc->supported & SUPPORTED_Autoneg))
 
 642                 return -EOPNOTSUPP;             /* can't change speed/duplex */
 
 644         if (cmd->autoneg == AUTONEG_DISABLE) {
 
 645                 int cap = speed_duplex_to_caps(cmd->speed, cmd->duplex);
 
 647                 if (!(lc->supported & cap) || cmd->speed == SPEED_1000)
 
 649                 lc->requested_speed = cmd->speed;
 
 650                 lc->requested_duplex = cmd->duplex;
 
 653                 cmd->advertising &= ADVERTISED_MASK;
 
 654                 if (cmd->advertising & (cmd->advertising - 1))
 
 655                         cmd->advertising = lc->supported;
 
 656                 cmd->advertising &= lc->supported;
 
 657                 if (!cmd->advertising)
 
 659                 lc->requested_speed = SPEED_INVALID;
 
 660                 lc->requested_duplex = DUPLEX_INVALID;
 
 661                 lc->advertising = cmd->advertising | ADVERTISED_Autoneg;
 
 663         lc->autoneg = cmd->autoneg;
 
 664         if (netif_running(dev))
 
 665                 t1_link_start(p->phy, p->mac, lc);
 
 669 static void get_pauseparam(struct net_device *dev,
 
 670                            struct ethtool_pauseparam *epause)
 
 672         struct adapter *adapter = dev->ml_priv;
 
 673         struct port_info *p = &adapter->port[dev->if_port];
 
 675         epause->autoneg = (p->link_config.requested_fc & PAUSE_AUTONEG) != 0;
 
 676         epause->rx_pause = (p->link_config.fc & PAUSE_RX) != 0;
 
 677         epause->tx_pause = (p->link_config.fc & PAUSE_TX) != 0;
 
 680 static int set_pauseparam(struct net_device *dev,
 
 681                           struct ethtool_pauseparam *epause)
 
 683         struct adapter *adapter = dev->ml_priv;
 
 684         struct port_info *p = &adapter->port[dev->if_port];
 
 685         struct link_config *lc = &p->link_config;
 
 687         if (epause->autoneg == AUTONEG_DISABLE)
 
 688                 lc->requested_fc = 0;
 
 689         else if (lc->supported & SUPPORTED_Autoneg)
 
 690                 lc->requested_fc = PAUSE_AUTONEG;
 
 694         if (epause->rx_pause)
 
 695                 lc->requested_fc |= PAUSE_RX;
 
 696         if (epause->tx_pause)
 
 697                 lc->requested_fc |= PAUSE_TX;
 
 698         if (lc->autoneg == AUTONEG_ENABLE) {
 
 699                 if (netif_running(dev))
 
 700                         t1_link_start(p->phy, p->mac, lc);
 
 702                 lc->fc = lc->requested_fc & (PAUSE_RX | PAUSE_TX);
 
 703                 if (netif_running(dev))
 
 704                         p->mac->ops->set_speed_duplex_fc(p->mac, -1, -1,
 
 710 static u32 get_rx_csum(struct net_device *dev)
 
 712         struct adapter *adapter = dev->ml_priv;
 
 714         return (adapter->flags & RX_CSUM_ENABLED) != 0;
 
 717 static int set_rx_csum(struct net_device *dev, u32 data)
 
 719         struct adapter *adapter = dev->ml_priv;
 
 722                 adapter->flags |= RX_CSUM_ENABLED;
 
 724                 adapter->flags &= ~RX_CSUM_ENABLED;
 
 728 static int set_tso(struct net_device *dev, u32 value)
 
 730         struct adapter *adapter = dev->ml_priv;
 
 732         if (!(adapter->flags & TSO_CAPABLE))
 
 733                 return value ? -EOPNOTSUPP : 0;
 
 734         return ethtool_op_set_tso(dev, value);
 
 737 static void get_sge_param(struct net_device *dev, struct ethtool_ringparam *e)
 
 739         struct adapter *adapter = dev->ml_priv;
 
 740         int jumbo_fl = t1_is_T1B(adapter) ? 1 : 0;
 
 742         e->rx_max_pending = MAX_RX_BUFFERS;
 
 743         e->rx_mini_max_pending = 0;
 
 744         e->rx_jumbo_max_pending = MAX_RX_JUMBO_BUFFERS;
 
 745         e->tx_max_pending = MAX_CMDQ_ENTRIES;
 
 747         e->rx_pending = adapter->params.sge.freelQ_size[!jumbo_fl];
 
 748         e->rx_mini_pending = 0;
 
 749         e->rx_jumbo_pending = adapter->params.sge.freelQ_size[jumbo_fl];
 
 750         e->tx_pending = adapter->params.sge.cmdQ_size[0];
 
 753 static int set_sge_param(struct net_device *dev, struct ethtool_ringparam *e)
 
 755         struct adapter *adapter = dev->ml_priv;
 
 756         int jumbo_fl = t1_is_T1B(adapter) ? 1 : 0;
 
 758         if (e->rx_pending > MAX_RX_BUFFERS || e->rx_mini_pending ||
 
 759             e->rx_jumbo_pending > MAX_RX_JUMBO_BUFFERS ||
 
 760             e->tx_pending > MAX_CMDQ_ENTRIES ||
 
 761             e->rx_pending < MIN_FL_ENTRIES ||
 
 762             e->rx_jumbo_pending < MIN_FL_ENTRIES ||
 
 763             e->tx_pending < (adapter->params.nports + 1) * (MAX_SKB_FRAGS + 1))
 
 766         if (adapter->flags & FULL_INIT_DONE)
 
 769         adapter->params.sge.freelQ_size[!jumbo_fl] = e->rx_pending;
 
 770         adapter->params.sge.freelQ_size[jumbo_fl] = e->rx_jumbo_pending;
 
 771         adapter->params.sge.cmdQ_size[0] = e->tx_pending;
 
 772         adapter->params.sge.cmdQ_size[1] = e->tx_pending > MAX_CMDQ1_ENTRIES ?
 
 773                 MAX_CMDQ1_ENTRIES : e->tx_pending;
 
 777 static int set_coalesce(struct net_device *dev, struct ethtool_coalesce *c)
 
 779         struct adapter *adapter = dev->ml_priv;
 
 781         adapter->params.sge.rx_coalesce_usecs = c->rx_coalesce_usecs;
 
 782         adapter->params.sge.coalesce_enable = c->use_adaptive_rx_coalesce;
 
 783         adapter->params.sge.sample_interval_usecs = c->rate_sample_interval;
 
 784         t1_sge_set_coalesce_params(adapter->sge, &adapter->params.sge);
 
 788 static int get_coalesce(struct net_device *dev, struct ethtool_coalesce *c)
 
 790         struct adapter *adapter = dev->ml_priv;
 
 792         c->rx_coalesce_usecs = adapter->params.sge.rx_coalesce_usecs;
 
 793         c->rate_sample_interval = adapter->params.sge.sample_interval_usecs;
 
 794         c->use_adaptive_rx_coalesce = adapter->params.sge.coalesce_enable;
 
 798 static int get_eeprom_len(struct net_device *dev)
 
 800         struct adapter *adapter = dev->ml_priv;
 
 802         return t1_is_asic(adapter) ? EEPROM_SIZE : 0;
 
 805 #define EEPROM_MAGIC(ap) \
 
 806         (PCI_VENDOR_ID_CHELSIO | ((ap)->params.chip_version << 16))
 
 808 static int get_eeprom(struct net_device *dev, struct ethtool_eeprom *e,
 
 812         u8 buf[EEPROM_SIZE] __attribute__((aligned(4)));
 
 813         struct adapter *adapter = dev->ml_priv;
 
 815         e->magic = EEPROM_MAGIC(adapter);
 
 816         for (i = e->offset & ~3; i < e->offset + e->len; i += sizeof(u32))
 
 817                 t1_seeprom_read(adapter, i, (__le32 *)&buf[i]);
 
 818         memcpy(data, buf + e->offset, e->len);
 
 822 static const struct ethtool_ops t1_ethtool_ops = {
 
 823         .get_settings      = get_settings,
 
 824         .set_settings      = set_settings,
 
 825         .get_drvinfo       = get_drvinfo,
 
 826         .get_msglevel      = get_msglevel,
 
 827         .set_msglevel      = set_msglevel,
 
 828         .get_ringparam     = get_sge_param,
 
 829         .set_ringparam     = set_sge_param,
 
 830         .get_coalesce      = get_coalesce,
 
 831         .set_coalesce      = set_coalesce,
 
 832         .get_eeprom_len    = get_eeprom_len,
 
 833         .get_eeprom        = get_eeprom,
 
 834         .get_pauseparam    = get_pauseparam,
 
 835         .set_pauseparam    = set_pauseparam,
 
 836         .get_rx_csum       = get_rx_csum,
 
 837         .set_rx_csum       = set_rx_csum,
 
 838         .set_tx_csum       = ethtool_op_set_tx_csum,
 
 839         .set_sg            = ethtool_op_set_sg,
 
 840         .get_link          = ethtool_op_get_link,
 
 841         .get_strings       = get_strings,
 
 842         .get_sset_count    = get_sset_count,
 
 843         .get_ethtool_stats = get_stats,
 
 844         .get_regs_len      = get_regs_len,
 
 845         .get_regs          = get_regs,
 
 849 static int t1_ioctl(struct net_device *dev, struct ifreq *req, int cmd)
 
 851         struct adapter *adapter = dev->ml_priv;
 
 852         struct mii_ioctl_data *data = if_mii(req);
 
 856                 data->phy_id = adapter->port[dev->if_port].phy->addr;
 
 859                 struct cphy *phy = adapter->port[dev->if_port].phy;
 
 864                 phy->mdio_read(adapter, data->phy_id, 0, data->reg_num & 0x1f,
 
 870                 struct cphy *phy = adapter->port[dev->if_port].phy;
 
 872                 if (!capable(CAP_NET_ADMIN))
 
 874                 if (!phy->mdio_write)
 
 876                 phy->mdio_write(adapter, data->phy_id, 0, data->reg_num & 0x1f,
 
 887 static int t1_change_mtu(struct net_device *dev, int new_mtu)
 
 890         struct adapter *adapter = dev->ml_priv;
 
 891         struct cmac *mac = adapter->port[dev->if_port].mac;
 
 893         if (!mac->ops->set_mtu)
 
 897         if ((ret = mac->ops->set_mtu(mac, new_mtu)))
 
 903 static int t1_set_mac_addr(struct net_device *dev, void *p)
 
 905         struct adapter *adapter = dev->ml_priv;
 
 906         struct cmac *mac = adapter->port[dev->if_port].mac;
 
 907         struct sockaddr *addr = p;
 
 909         if (!mac->ops->macaddress_set)
 
 912         memcpy(dev->dev_addr, addr->sa_data, dev->addr_len);
 
 913         mac->ops->macaddress_set(mac, dev->dev_addr);
 
 917 #if defined(CONFIG_VLAN_8021Q) || defined(CONFIG_VLAN_8021Q_MODULE)
 
 918 static void t1_vlan_rx_register(struct net_device *dev,
 
 919                                    struct vlan_group *grp)
 
 921         struct adapter *adapter = dev->ml_priv;
 
 923         spin_lock_irq(&adapter->async_lock);
 
 924         adapter->vlan_grp = grp;
 
 925         t1_set_vlan_accel(adapter, grp != NULL);
 
 926         spin_unlock_irq(&adapter->async_lock);
 
 930 #ifdef CONFIG_NET_POLL_CONTROLLER
 
 931 static void t1_netpoll(struct net_device *dev)
 
 934         struct adapter *adapter = dev->ml_priv;
 
 936         local_irq_save(flags);
 
 937         t1_interrupt(adapter->pdev->irq, adapter);
 
 938         local_irq_restore(flags);
 
 943  * Periodic accumulation of MAC statistics.  This is used only if the MAC
 
 944  * does not have any other way to prevent stats counter overflow.
 
 946 static void mac_stats_task(struct work_struct *work)
 
 949         struct adapter *adapter =
 
 950                 container_of(work, struct adapter, stats_update_task.work);
 
 952         for_each_port(adapter, i) {
 
 953                 struct port_info *p = &adapter->port[i];
 
 955                 if (netif_running(p->dev))
 
 956                         p->mac->ops->statistics_update(p->mac,
 
 957                                                        MAC_STATS_UPDATE_FAST);
 
 960         /* Schedule the next statistics update if any port is active. */
 
 961         spin_lock(&adapter->work_lock);
 
 962         if (adapter->open_device_map & PORT_MASK)
 
 963                 schedule_mac_stats_update(adapter,
 
 964                                           adapter->params.stats_update_period);
 
 965         spin_unlock(&adapter->work_lock);
 
 969  * Processes elmer0 external interrupts in process context.
 
 971 static void ext_intr_task(struct work_struct *work)
 
 973         struct adapter *adapter =
 
 974                 container_of(work, struct adapter, ext_intr_handler_task);
 
 976         t1_elmer0_ext_intr_handler(adapter);
 
 978         /* Now reenable external interrupts */
 
 979         spin_lock_irq(&adapter->async_lock);
 
 980         adapter->slow_intr_mask |= F_PL_INTR_EXT;
 
 981         writel(F_PL_INTR_EXT, adapter->regs + A_PL_CAUSE);
 
 982         writel(adapter->slow_intr_mask | F_PL_INTR_SGE_DATA,
 
 983                    adapter->regs + A_PL_ENABLE);
 
 984         spin_unlock_irq(&adapter->async_lock);
 
 988  * Interrupt-context handler for elmer0 external interrupts.
 
 990 void t1_elmer0_ext_intr(struct adapter *adapter)
 
 993          * Schedule a task to handle external interrupts as we require
 
 994          * a process context.  We disable EXT interrupts in the interim
 
 995          * and let the task reenable them when it's done.
 
 997         adapter->slow_intr_mask &= ~F_PL_INTR_EXT;
 
 998         writel(adapter->slow_intr_mask | F_PL_INTR_SGE_DATA,
 
 999                    adapter->regs + A_PL_ENABLE);
 
1000         schedule_work(&adapter->ext_intr_handler_task);
 
1003 void t1_fatal_err(struct adapter *adapter)
 
1005         if (adapter->flags & FULL_INIT_DONE) {
 
1006                 t1_sge_stop(adapter->sge);
 
1007                 t1_interrupts_disable(adapter);
 
1009         CH_ALERT("%s: encountered fatal error, operation suspended\n",
 
1013 static const struct net_device_ops cxgb_netdev_ops = {
 
1014         .ndo_open               = cxgb_open,
 
1015         .ndo_stop               = cxgb_close,
 
1016         .ndo_start_xmit         = t1_start_xmit,
 
1017         .ndo_get_stats          = t1_get_stats,
 
1018         .ndo_validate_addr      = eth_validate_addr,
 
1019         .ndo_set_multicast_list = t1_set_rxmode,
 
1020         .ndo_do_ioctl           = t1_ioctl,
 
1021         .ndo_change_mtu         = t1_change_mtu,
 
1022         .ndo_set_mac_address    = t1_set_mac_addr,
 
1023 #if defined(CONFIG_VLAN_8021Q) || defined(CONFIG_VLAN_8021Q_MODULE)
 
1024         .ndo_vlan_rx_register   = t1_vlan_rx_register,
 
1026 #ifdef CONFIG_NET_POLL_CONTROLLER
 
1027         .ndo_poll_controller    = t1_netpoll,
 
1031 static int __devinit init_one(struct pci_dev *pdev,
 
1032                               const struct pci_device_id *ent)
 
1034         static int version_printed;
 
1036         int i, err, pci_using_dac = 0;
 
1037         unsigned long mmio_start, mmio_len;
 
1038         const struct board_info *bi;
 
1039         struct adapter *adapter = NULL;
 
1040         struct port_info *pi;
 
1042         if (!version_printed) {
 
1043                 printk(KERN_INFO "%s - version %s\n", DRV_DESCRIPTION,
 
1048         err = pci_enable_device(pdev);
 
1052         if (!(pci_resource_flags(pdev, 0) & IORESOURCE_MEM)) {
 
1053                 CH_ERR("%s: cannot find PCI device memory base address\n",
 
1056                 goto out_disable_pdev;
 
1059         if (!pci_set_dma_mask(pdev, DMA_BIT_MASK(64))) {
 
1062                 if (pci_set_consistent_dma_mask(pdev, DMA_BIT_MASK(64))) {
 
1063                         CH_ERR("%s: unable to obtain 64-bit DMA for "
 
1064                                "consistent allocations\n", pci_name(pdev));
 
1066                         goto out_disable_pdev;
 
1069         } else if ((err = pci_set_dma_mask(pdev, DMA_BIT_MASK(32))) != 0) {
 
1070                 CH_ERR("%s: no usable DMA configuration\n", pci_name(pdev));
 
1071                 goto out_disable_pdev;
 
1074         err = pci_request_regions(pdev, DRV_NAME);
 
1076                 CH_ERR("%s: cannot obtain PCI resources\n", pci_name(pdev));
 
1077                 goto out_disable_pdev;
 
1080         pci_set_master(pdev);
 
1082         mmio_start = pci_resource_start(pdev, 0);
 
1083         mmio_len = pci_resource_len(pdev, 0);
 
1084         bi = t1_get_board_info(ent->driver_data);
 
1086         for (i = 0; i < bi->port_number; ++i) {
 
1087                 struct net_device *netdev;
 
1089                 netdev = alloc_etherdev(adapter ? 0 : sizeof(*adapter));
 
1095                 SET_NETDEV_DEV(netdev, &pdev->dev);
 
1098                         adapter = netdev_priv(netdev);
 
1099                         adapter->pdev = pdev;
 
1100                         adapter->port[0].dev = netdev;  /* so we don't leak it */
 
1102                         adapter->regs = ioremap(mmio_start, mmio_len);
 
1103                         if (!adapter->regs) {
 
1104                                 CH_ERR("%s: cannot map device registers\n",
 
1110                         if (t1_get_board_rev(adapter, bi, &adapter->params)) {
 
1111                                 err = -ENODEV;    /* Can't handle this chip rev */
 
1115                         adapter->name = pci_name(pdev);
 
1116                         adapter->msg_enable = dflt_msg_enable;
 
1117                         adapter->mmio_len = mmio_len;
 
1119                         spin_lock_init(&adapter->tpi_lock);
 
1120                         spin_lock_init(&adapter->work_lock);
 
1121                         spin_lock_init(&adapter->async_lock);
 
1122                         spin_lock_init(&adapter->mac_lock);
 
1124                         INIT_WORK(&adapter->ext_intr_handler_task,
 
1126                         INIT_DELAYED_WORK(&adapter->stats_update_task,
 
1129                         pci_set_drvdata(pdev, netdev);
 
1132                 pi = &adapter->port[i];
 
1134                 netif_carrier_off(netdev);
 
1135                 netdev->irq = pdev->irq;
 
1136                 netdev->if_port = i;
 
1137                 netdev->mem_start = mmio_start;
 
1138                 netdev->mem_end = mmio_start + mmio_len - 1;
 
1139                 netdev->ml_priv = adapter;
 
1140                 netdev->features |= NETIF_F_SG | NETIF_F_IP_CSUM;
 
1141                 netdev->features |= NETIF_F_LLTX;
 
1143                 adapter->flags |= RX_CSUM_ENABLED | TCP_CSUM_CAPABLE;
 
1145                         netdev->features |= NETIF_F_HIGHDMA;
 
1146                 if (vlan_tso_capable(adapter)) {
 
1147 #if defined(CONFIG_VLAN_8021Q) || defined(CONFIG_VLAN_8021Q_MODULE)
 
1148                         adapter->flags |= VLAN_ACCEL_CAPABLE;
 
1150                                 NETIF_F_HW_VLAN_TX | NETIF_F_HW_VLAN_RX;
 
1153                         /* T204: disable TSO */
 
1154                         if (!(is_T2(adapter)) || bi->port_number != 4) {
 
1155                                 adapter->flags |= TSO_CAPABLE;
 
1156                                 netdev->features |= NETIF_F_TSO;
 
1160                 netdev->netdev_ops = &cxgb_netdev_ops;
 
1161                 netdev->hard_header_len += (adapter->flags & TSO_CAPABLE) ?
 
1162                         sizeof(struct cpl_tx_pkt_lso) : sizeof(struct cpl_tx_pkt);
 
1164                 netif_napi_add(netdev, &adapter->napi, t1_poll, 64);
 
1166                 SET_ETHTOOL_OPS(netdev, &t1_ethtool_ops);
 
1169         if (t1_init_sw_modules(adapter, bi) < 0) {
 
1175          * The card is now ready to go.  If any errors occur during device
 
1176          * registration we do not fail the whole card but rather proceed only
 
1177          * with the ports we manage to register successfully.  However we must
 
1178          * register at least one net device.
 
1180         for (i = 0; i < bi->port_number; ++i) {
 
1181                 err = register_netdev(adapter->port[i].dev);
 
1183                         CH_WARN("%s: cannot register net device %s, skipping\n",
 
1184                                 pci_name(pdev), adapter->port[i].dev->name);
 
1187                          * Change the name we use for messages to the name of
 
1188                          * the first successfully registered interface.
 
1190                         if (!adapter->registered_device_map)
 
1191                                 adapter->name = adapter->port[i].dev->name;
 
1193                         __set_bit(i, &adapter->registered_device_map);
 
1196         if (!adapter->registered_device_map) {
 
1197                 CH_ERR("%s: could not register any net devices\n",
 
1199                 goto out_release_adapter_res;
 
1202         printk(KERN_INFO "%s: %s (rev %d), %s %dMHz/%d-bit\n", adapter->name,
 
1203                bi->desc, adapter->params.chip_revision,
 
1204                adapter->params.pci.is_pcix ? "PCIX" : "PCI",
 
1205                adapter->params.pci.speed, adapter->params.pci.width);
 
1208          * Set the T1B ASIC and memory clocks.
 
1211                 adapter->t1powersave = LCLOCK;  /* HW default is powersave mode. */
 
1213                 adapter->t1powersave = HCLOCK;
 
1214         if (t1_is_T1B(adapter))
 
1215                 t1_clock(adapter, t1powersave);
 
1219 out_release_adapter_res:
 
1220         t1_free_sw_modules(adapter);
 
1224                         iounmap(adapter->regs);
 
1225                 for (i = bi->port_number - 1; i >= 0; --i)
 
1226                         if (adapter->port[i].dev)
 
1227                                 free_netdev(adapter->port[i].dev);
 
1229         pci_release_regions(pdev);
 
1231         pci_disable_device(pdev);
 
1232         pci_set_drvdata(pdev, NULL);
 
1236 static void bit_bang(struct adapter *adapter, int bitdata, int nbits)
 
1247         for (i = (nbits - 1); i > -1; i--) {
 
1251                 data = ((bitdata >> i) & 0x1);
 
1252                 __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1261                 /* Set SCLOCK low */
 
1263                 __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1267                 /* Write SCLOCK high */
 
1269                 __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1274 static int t1_clock(struct adapter *adapter, int mode)
 
1292                 S_LOAD_MEM      = 1 << 5,
 
1293                 S_LOAD_CORE     = 1 << 6,
 
1297         if (!t1_is_T1B(adapter))
 
1298                 return -ENODEV; /* Can't re-clock this chip. */
 
1301                 return 0;       /* show current mode. */
 
1303         if ((adapter->t1powersave & 1) == (mode & 1))
 
1304                 return -EALREADY;       /* ASIC already running in mode. */
 
1306         if ((mode & 1) == HCLOCK) {
 
1309                 adapter->t1powersave = HCLOCK;  /* overclock */
 
1313                 adapter->t1powersave = LCLOCK;  /* underclock */
 
1316         /* Don't interrupt this serial stream! */
 
1317         spin_lock(&adapter->tpi_lock);
 
1319         /* Initialize for ASIC core */
 
1320         __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1323         __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1325         __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1326         val &= ~S_LOAD_CORE;
 
1328         __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1331         /* Serial program the ASIC clock synthesizer */
 
1332         bit_bang(adapter, T_CORE_VAL, T_CORE_BITS);
 
1333         bit_bang(adapter, N_CORE_VAL, N_CORE_BITS);
 
1334         bit_bang(adapter, M_CORE_VAL, M_CORE_BITS);
 
1337         /* Finish ASIC core */
 
1338         __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1341         __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1343         __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1344         val &= ~S_LOAD_CORE;
 
1346         __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1349         /* Initialize for memory */
 
1350         __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1353         __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1355         __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1359         __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1362         /* Serial program the memory clock synthesizer */
 
1363         bit_bang(adapter, T_MEM_VAL, T_MEM_BITS);
 
1364         bit_bang(adapter, N_MEM_VAL, N_MEM_BITS);
 
1365         bit_bang(adapter, M_MEM_VAL, M_MEM_BITS);
 
1369         __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1372         __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1374         __t1_tpi_read(adapter, A_ELMER0_GPO, &val);
 
1377         __t1_tpi_write(adapter, A_ELMER0_GPO, val);
 
1379         spin_unlock(&adapter->tpi_lock);
 
1384 static inline void t1_sw_reset(struct pci_dev *pdev)
 
1386         pci_write_config_dword(pdev, A_PCICFG_PM_CSR, 3);
 
1387         pci_write_config_dword(pdev, A_PCICFG_PM_CSR, 0);
 
1390 static void __devexit remove_one(struct pci_dev *pdev)
 
1392         struct net_device *dev = pci_get_drvdata(pdev);
 
1393         struct adapter *adapter = dev->ml_priv;
 
1396         for_each_port(adapter, i) {
 
1397                 if (test_bit(i, &adapter->registered_device_map))
 
1398                         unregister_netdev(adapter->port[i].dev);
 
1401         t1_free_sw_modules(adapter);
 
1402         iounmap(adapter->regs);
 
1405                 if (adapter->port[i].dev)
 
1406                         free_netdev(adapter->port[i].dev);
 
1409         pci_release_regions(pdev);
 
1410         pci_disable_device(pdev);
 
1411         pci_set_drvdata(pdev, NULL);
 
1415 static struct pci_driver driver = {
 
1417         .id_table = t1_pci_tbl,
 
1419         .remove   = __devexit_p(remove_one),
 
1422 static int __init t1_init_module(void)
 
1424         return pci_register_driver(&driver);
 
1427 static void __exit t1_cleanup_module(void)
 
1429         pci_unregister_driver(&driver);
 
1432 module_init(t1_init_module);
 
1433 module_exit(t1_cleanup_module);