linux/drivers/net/ethernet/atheros/atl1e/atl1e_main.c
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   1/*
   2 * Copyright(c) 2007 Atheros Corporation. All rights reserved.
   3 *
   4 * Derived from Intel e1000 driver
   5 * Copyright(c) 1999 - 2005 Intel Corporation. All rights reserved.
   6 *
   7 * This program is free software; you can redistribute it and/or modify it
   8 * under the terms of the GNU General Public License as published by the Free
   9 * Software Foundation; either version 2 of the License, or (at your option)
  10 * any later version.
  11 *
  12 * This program is distributed in the hope that it will be useful, but WITHOUT
  13 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  14 * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
  15 * more details.
  16 *
  17 * You should have received a copy of the GNU General Public License along with
  18 * this program; if not, write to the Free Software Foundation, Inc., 59
  19 * Temple Place - Suite 330, Boston, MA  02111-1307, USA.
  20 */
  21
  22#include "atl1e.h"
  23
  24#define DRV_VERSION "1.0.0.7-NAPI"
  25
  26char atl1e_driver_name[] = "ATL1E";
  27char atl1e_driver_version[] = DRV_VERSION;
  28#define PCI_DEVICE_ID_ATTANSIC_L1E      0x1026
  29/*
  30 * atl1e_pci_tbl - PCI Device ID Table
  31 *
  32 * Wildcard entries (PCI_ANY_ID) should come last
  33 * Last entry must be all 0s
  34 *
  35 * { Vendor ID, Device ID, SubVendor ID, SubDevice ID,
  36 *   Class, Class Mask, private data (not used) }
  37 */
  38static const struct pci_device_id atl1e_pci_tbl[] = {
  39        {PCI_DEVICE(PCI_VENDOR_ID_ATTANSIC, PCI_DEVICE_ID_ATTANSIC_L1E)},
  40        {PCI_DEVICE(PCI_VENDOR_ID_ATTANSIC, 0x1066)},
  41        /* required last entry */
  42        { 0 }
  43};
  44MODULE_DEVICE_TABLE(pci, atl1e_pci_tbl);
  45
  46MODULE_AUTHOR("Atheros Corporation, <xiong.huang@atheros.com>, Jie Yang <jie.yang@atheros.com>");
  47MODULE_DESCRIPTION("Atheros 1000M Ethernet Network Driver");
  48MODULE_LICENSE("GPL");
  49MODULE_VERSION(DRV_VERSION);
  50
  51static void atl1e_setup_mac_ctrl(struct atl1e_adapter *adapter);
  52
  53static const u16
  54atl1e_rx_page_vld_regs[AT_MAX_RECEIVE_QUEUE][AT_PAGE_NUM_PER_QUEUE] =
  55{
  56        {REG_HOST_RXF0_PAGE0_VLD, REG_HOST_RXF0_PAGE1_VLD},
  57        {REG_HOST_RXF1_PAGE0_VLD, REG_HOST_RXF1_PAGE1_VLD},
  58        {REG_HOST_RXF2_PAGE0_VLD, REG_HOST_RXF2_PAGE1_VLD},
  59        {REG_HOST_RXF3_PAGE0_VLD, REG_HOST_RXF3_PAGE1_VLD}
  60};
  61
  62static const u16 atl1e_rx_page_hi_addr_regs[AT_MAX_RECEIVE_QUEUE] =
  63{
  64        REG_RXF0_BASE_ADDR_HI,
  65        REG_RXF1_BASE_ADDR_HI,
  66        REG_RXF2_BASE_ADDR_HI,
  67        REG_RXF3_BASE_ADDR_HI
  68};
  69
  70static const u16
  71atl1e_rx_page_lo_addr_regs[AT_MAX_RECEIVE_QUEUE][AT_PAGE_NUM_PER_QUEUE] =
  72{
  73        {REG_HOST_RXF0_PAGE0_LO, REG_HOST_RXF0_PAGE1_LO},
  74        {REG_HOST_RXF1_PAGE0_LO, REG_HOST_RXF1_PAGE1_LO},
  75        {REG_HOST_RXF2_PAGE0_LO, REG_HOST_RXF2_PAGE1_LO},
  76        {REG_HOST_RXF3_PAGE0_LO, REG_HOST_RXF3_PAGE1_LO}
  77};
  78
  79static const u16
  80atl1e_rx_page_write_offset_regs[AT_MAX_RECEIVE_QUEUE][AT_PAGE_NUM_PER_QUEUE] =
  81{
  82        {REG_HOST_RXF0_MB0_LO,  REG_HOST_RXF0_MB1_LO},
  83        {REG_HOST_RXF1_MB0_LO,  REG_HOST_RXF1_MB1_LO},
  84        {REG_HOST_RXF2_MB0_LO,  REG_HOST_RXF2_MB1_LO},
  85        {REG_HOST_RXF3_MB0_LO,  REG_HOST_RXF3_MB1_LO}
  86};
  87
  88static const u16 atl1e_pay_load_size[] = {
  89        128, 256, 512, 1024, 2048, 4096,
  90};
  91
  92/**
  93 * atl1e_irq_enable - Enable default interrupt generation settings
  94 * @adapter: board private structure
  95 */
  96static inline void atl1e_irq_enable(struct atl1e_adapter *adapter)
  97{
  98        if (likely(atomic_dec_and_test(&adapter->irq_sem))) {
  99                AT_WRITE_REG(&adapter->hw, REG_ISR, 0);
 100                AT_WRITE_REG(&adapter->hw, REG_IMR, IMR_NORMAL_MASK);
 101                AT_WRITE_FLUSH(&adapter->hw);
 102        }
 103}
 104
 105/**
 106 * atl1e_irq_disable - Mask off interrupt generation on the NIC
 107 * @adapter: board private structure
 108 */
 109static inline void atl1e_irq_disable(struct atl1e_adapter *adapter)
 110{
 111        atomic_inc(&adapter->irq_sem);
 112        AT_WRITE_REG(&adapter->hw, REG_IMR, 0);
 113        AT_WRITE_FLUSH(&adapter->hw);
 114        synchronize_irq(adapter->pdev->irq);
 115}
 116
 117/**
 118 * atl1e_irq_reset - reset interrupt confiure on the NIC
 119 * @adapter: board private structure
 120 */
 121static inline void atl1e_irq_reset(struct atl1e_adapter *adapter)
 122{
 123        atomic_set(&adapter->irq_sem, 0);
 124        AT_WRITE_REG(&adapter->hw, REG_ISR, 0);
 125        AT_WRITE_REG(&adapter->hw, REG_IMR, 0);
 126        AT_WRITE_FLUSH(&adapter->hw);
 127}
 128
 129/**
 130 * atl1e_phy_config - Timer Call-back
 131 * @data: pointer to netdev cast into an unsigned long
 132 */
 133static void atl1e_phy_config(unsigned long data)
 134{
 135        struct atl1e_adapter *adapter = (struct atl1e_adapter *) data;
 136        struct atl1e_hw *hw = &adapter->hw;
 137        unsigned long flags;
 138
 139        spin_lock_irqsave(&adapter->mdio_lock, flags);
 140        atl1e_restart_autoneg(hw);
 141        spin_unlock_irqrestore(&adapter->mdio_lock, flags);
 142}
 143
 144void atl1e_reinit_locked(struct atl1e_adapter *adapter)
 145{
 146
 147        WARN_ON(in_interrupt());
 148        while (test_and_set_bit(__AT_RESETTING, &adapter->flags))
 149                msleep(1);
 150        atl1e_down(adapter);
 151        atl1e_up(adapter);
 152        clear_bit(__AT_RESETTING, &adapter->flags);
 153}
 154
 155static void atl1e_reset_task(struct work_struct *work)
 156{
 157        struct atl1e_adapter *adapter;
 158        adapter = container_of(work, struct atl1e_adapter, reset_task);
 159
 160        atl1e_reinit_locked(adapter);
 161}
 162
 163static int atl1e_check_link(struct atl1e_adapter *adapter)
 164{
 165        struct atl1e_hw *hw = &adapter->hw;
 166        struct net_device *netdev = adapter->netdev;
 167        int err = 0;
 168        u16 speed, duplex, phy_data;
 169
 170        /* MII_BMSR must read twice */
 171        atl1e_read_phy_reg(hw, MII_BMSR, &phy_data);
 172        atl1e_read_phy_reg(hw, MII_BMSR, &phy_data);
 173        if ((phy_data & BMSR_LSTATUS) == 0) {
 174                /* link down */
 175                if (netif_carrier_ok(netdev)) { /* old link state: Up */
 176                        u32 value;
 177                        /* disable rx */
 178                        value = AT_READ_REG(hw, REG_MAC_CTRL);
 179                        value &= ~MAC_CTRL_RX_EN;
 180                        AT_WRITE_REG(hw, REG_MAC_CTRL, value);
 181                        adapter->link_speed = SPEED_0;
 182                        netif_carrier_off(netdev);
 183                        netif_stop_queue(netdev);
 184                }
 185        } else {
 186                /* Link Up */
 187                err = atl1e_get_speed_and_duplex(hw, &speed, &duplex);
 188                if (unlikely(err))
 189                        return err;
 190
 191                /* link result is our setting */
 192                if (adapter->link_speed != speed ||
 193                    adapter->link_duplex != duplex) {
 194                        adapter->link_speed  = speed;
 195                        adapter->link_duplex = duplex;
 196                        atl1e_setup_mac_ctrl(adapter);
 197                        netdev_info(netdev,
 198                                    "NIC Link is Up <%d Mbps %s Duplex>\n",
 199                                    adapter->link_speed,
 200                                    adapter->link_duplex == FULL_DUPLEX ?
 201                                    "Full" : "Half");
 202                }
 203
 204                if (!netif_carrier_ok(netdev)) {
 205                        /* Link down -> Up */
 206                        netif_carrier_on(netdev);
 207                        netif_wake_queue(netdev);
 208                }
 209        }
 210        return 0;
 211}
 212
 213/**
 214 * atl1e_link_chg_task - deal with link change event Out of interrupt context
 215 * @netdev: network interface device structure
 216 */
 217static void atl1e_link_chg_task(struct work_struct *work)
 218{
 219        struct atl1e_adapter *adapter;
 220        unsigned long flags;
 221
 222        adapter = container_of(work, struct atl1e_adapter, link_chg_task);
 223        spin_lock_irqsave(&adapter->mdio_lock, flags);
 224        atl1e_check_link(adapter);
 225        spin_unlock_irqrestore(&adapter->mdio_lock, flags);
 226}
 227
 228static void atl1e_link_chg_event(struct atl1e_adapter *adapter)
 229{
 230        struct net_device *netdev = adapter->netdev;
 231        u16 phy_data = 0;
 232        u16 link_up = 0;
 233
 234        spin_lock(&adapter->mdio_lock);
 235        atl1e_read_phy_reg(&adapter->hw, MII_BMSR, &phy_data);
 236        atl1e_read_phy_reg(&adapter->hw, MII_BMSR, &phy_data);
 237        spin_unlock(&adapter->mdio_lock);
 238        link_up = phy_data & BMSR_LSTATUS;
 239        /* notify upper layer link down ASAP */
 240        if (!link_up) {
 241                if (netif_carrier_ok(netdev)) {
 242                        /* old link state: Up */
 243                        netdev_info(netdev, "NIC Link is Down\n");
 244                        adapter->link_speed = SPEED_0;
 245                        netif_stop_queue(netdev);
 246                }
 247        }
 248        schedule_work(&adapter->link_chg_task);
 249}
 250
 251static void atl1e_del_timer(struct atl1e_adapter *adapter)
 252{
 253        del_timer_sync(&adapter->phy_config_timer);
 254}
 255
 256static void atl1e_cancel_work(struct atl1e_adapter *adapter)
 257{
 258        cancel_work_sync(&adapter->reset_task);
 259        cancel_work_sync(&adapter->link_chg_task);
 260}
 261
 262/**
 263 * atl1e_tx_timeout - Respond to a Tx Hang
 264 * @netdev: network interface device structure
 265 */
 266static void atl1e_tx_timeout(struct net_device *netdev)
 267{
 268        struct atl1e_adapter *adapter = netdev_priv(netdev);
 269
 270        /* Do the reset outside of interrupt context */
 271        schedule_work(&adapter->reset_task);
 272}
 273
 274/**
 275 * atl1e_set_multi - Multicast and Promiscuous mode set
 276 * @netdev: network interface device structure
 277 *
 278 * The set_multi entry point is called whenever the multicast address
 279 * list or the network interface flags are updated.  This routine is
 280 * responsible for configuring the hardware for proper multicast,
 281 * promiscuous mode, and all-multi behavior.
 282 */
 283static void atl1e_set_multi(struct net_device *netdev)
 284{
 285        struct atl1e_adapter *adapter = netdev_priv(netdev);
 286        struct atl1e_hw *hw = &adapter->hw;
 287        struct netdev_hw_addr *ha;
 288        u32 mac_ctrl_data = 0;
 289        u32 hash_value;
 290
 291        /* Check for Promiscuous and All Multicast modes */
 292        mac_ctrl_data = AT_READ_REG(hw, REG_MAC_CTRL);
 293
 294        if (netdev->flags & IFF_PROMISC) {
 295                mac_ctrl_data |= MAC_CTRL_PROMIS_EN;
 296        } else if (netdev->flags & IFF_ALLMULTI) {
 297                mac_ctrl_data |= MAC_CTRL_MC_ALL_EN;
 298                mac_ctrl_data &= ~MAC_CTRL_PROMIS_EN;
 299        } else {
 300                mac_ctrl_data &= ~(MAC_CTRL_PROMIS_EN | MAC_CTRL_MC_ALL_EN);
 301        }
 302
 303        AT_WRITE_REG(hw, REG_MAC_CTRL, mac_ctrl_data);
 304
 305        /* clear the old settings from the multicast hash table */
 306        AT_WRITE_REG(hw, REG_RX_HASH_TABLE, 0);
 307        AT_WRITE_REG_ARRAY(hw, REG_RX_HASH_TABLE, 1, 0);
 308
 309        /* comoute mc addresses' hash value ,and put it into hash table */
 310        netdev_for_each_mc_addr(ha, netdev) {
 311                hash_value = atl1e_hash_mc_addr(hw, ha->addr);
 312                atl1e_hash_set(hw, hash_value);
 313        }
 314}
 315
 316static void __atl1e_rx_mode(netdev_features_t features, u32 *mac_ctrl_data)
 317{
 318
 319        if (features & NETIF_F_RXALL) {
 320                /* enable RX of ALL frames */
 321                *mac_ctrl_data |= MAC_CTRL_DBG;
 322        } else {
 323                /* disable RX of ALL frames */
 324                *mac_ctrl_data &= ~MAC_CTRL_DBG;
 325        }
 326}
 327
 328static void atl1e_rx_mode(struct net_device *netdev,
 329        netdev_features_t features)
 330{
 331        struct atl1e_adapter *adapter = netdev_priv(netdev);
 332        u32 mac_ctrl_data = 0;
 333
 334        netdev_dbg(adapter->netdev, "%s\n", __func__);
 335
 336        atl1e_irq_disable(adapter);
 337        mac_ctrl_data = AT_READ_REG(&adapter->hw, REG_MAC_CTRL);
 338        __atl1e_rx_mode(features, &mac_ctrl_data);
 339        AT_WRITE_REG(&adapter->hw, REG_MAC_CTRL, mac_ctrl_data);
 340        atl1e_irq_enable(adapter);
 341}
 342
 343
 344static void __atl1e_vlan_mode(netdev_features_t features, u32 *mac_ctrl_data)
 345{
 346        if (features & NETIF_F_HW_VLAN_CTAG_RX) {
 347                /* enable VLAN tag insert/strip */
 348                *mac_ctrl_data |= MAC_CTRL_RMV_VLAN;
 349        } else {
 350                /* disable VLAN tag insert/strip */
 351                *mac_ctrl_data &= ~MAC_CTRL_RMV_VLAN;
 352        }
 353}
 354
 355static void atl1e_vlan_mode(struct net_device *netdev,
 356        netdev_features_t features)
 357{
 358        struct atl1e_adapter *adapter = netdev_priv(netdev);
 359        u32 mac_ctrl_data = 0;
 360
 361        netdev_dbg(adapter->netdev, "%s\n", __func__);
 362
 363        atl1e_irq_disable(adapter);
 364        mac_ctrl_data = AT_READ_REG(&adapter->hw, REG_MAC_CTRL);
 365        __atl1e_vlan_mode(features, &mac_ctrl_data);
 366        AT_WRITE_REG(&adapter->hw, REG_MAC_CTRL, mac_ctrl_data);
 367        atl1e_irq_enable(adapter);
 368}
 369
 370static void atl1e_restore_vlan(struct atl1e_adapter *adapter)
 371{
 372        netdev_dbg(adapter->netdev, "%s\n", __func__);
 373        atl1e_vlan_mode(adapter->netdev, adapter->netdev->features);
 374}
 375
 376/**
 377 * atl1e_set_mac - Change the Ethernet Address of the NIC
 378 * @netdev: network interface device structure
 379 * @p: pointer to an address structure
 380 *
 381 * Returns 0 on success, negative on failure
 382 */
 383static int atl1e_set_mac_addr(struct net_device *netdev, void *p)
 384{
 385        struct atl1e_adapter *adapter = netdev_priv(netdev);
 386        struct sockaddr *addr = p;
 387
 388        if (!is_valid_ether_addr(addr->sa_data))
 389                return -EADDRNOTAVAIL;
 390
 391        if (netif_running(netdev))
 392                return -EBUSY;
 393
 394        memcpy(netdev->dev_addr, addr->sa_data, netdev->addr_len);
 395        memcpy(adapter->hw.mac_addr, addr->sa_data, netdev->addr_len);
 396
 397        atl1e_hw_set_mac_addr(&adapter->hw);
 398
 399        return 0;
 400}
 401
 402static netdev_features_t atl1e_fix_features(struct net_device *netdev,
 403        netdev_features_t features)
 404{
 405        /*
 406         * Since there is no support for separate rx/tx vlan accel
 407         * enable/disable make sure tx flag is always in same state as rx.
 408         */
 409        if (features & NETIF_F_HW_VLAN_CTAG_RX)
 410                features |= NETIF_F_HW_VLAN_CTAG_TX;
 411        else
 412                features &= ~NETIF_F_HW_VLAN_CTAG_TX;
 413
 414        return features;
 415}
 416
 417static int atl1e_set_features(struct net_device *netdev,
 418        netdev_features_t features)
 419{
 420        netdev_features_t changed = netdev->features ^ features;
 421
 422        if (changed & NETIF_F_HW_VLAN_CTAG_RX)
 423                atl1e_vlan_mode(netdev, features);
 424
 425        if (changed & NETIF_F_RXALL)
 426                atl1e_rx_mode(netdev, features);
 427
 428
 429        return 0;
 430}
 431
 432/**
 433 * atl1e_change_mtu - Change the Maximum Transfer Unit
 434 * @netdev: network interface device structure
 435 * @new_mtu: new value for maximum frame size
 436 *
 437 * Returns 0 on success, negative on failure
 438 */
 439static int atl1e_change_mtu(struct net_device *netdev, int new_mtu)
 440{
 441        struct atl1e_adapter *adapter = netdev_priv(netdev);
 442        int old_mtu   = netdev->mtu;
 443        int max_frame = new_mtu + ETH_HLEN + ETH_FCS_LEN + VLAN_HLEN;
 444
 445        if ((max_frame < ETH_ZLEN + ETH_FCS_LEN) ||
 446                        (max_frame > MAX_JUMBO_FRAME_SIZE)) {
 447                netdev_warn(adapter->netdev, "invalid MTU setting\n");
 448                return -EINVAL;
 449        }
 450        /* set MTU */
 451        if (old_mtu != new_mtu && netif_running(netdev)) {
 452                while (test_and_set_bit(__AT_RESETTING, &adapter->flags))
 453                        msleep(1);
 454                netdev->mtu = new_mtu;
 455                adapter->hw.max_frame_size = new_mtu;
 456                adapter->hw.rx_jumbo_th = (max_frame + 7) >> 3;
 457                atl1e_down(adapter);
 458                atl1e_up(adapter);
 459                clear_bit(__AT_RESETTING, &adapter->flags);
 460        }
 461        return 0;
 462}
 463
 464/*
 465 *  caller should hold mdio_lock
 466 */
 467static int atl1e_mdio_read(struct net_device *netdev, int phy_id, int reg_num)
 468{
 469        struct atl1e_adapter *adapter = netdev_priv(netdev);
 470        u16 result;
 471
 472        atl1e_read_phy_reg(&adapter->hw, reg_num & MDIO_REG_ADDR_MASK, &result);
 473        return result;
 474}
 475
 476static void atl1e_mdio_write(struct net_device *netdev, int phy_id,
 477                             int reg_num, int val)
 478{
 479        struct atl1e_adapter *adapter = netdev_priv(netdev);
 480
 481        atl1e_write_phy_reg(&adapter->hw, reg_num & MDIO_REG_ADDR_MASK, val);
 482}
 483
 484static int atl1e_mii_ioctl(struct net_device *netdev,
 485                           struct ifreq *ifr, int cmd)
 486{
 487        struct atl1e_adapter *adapter = netdev_priv(netdev);
 488        struct mii_ioctl_data *data = if_mii(ifr);
 489        unsigned long flags;
 490        int retval = 0;
 491
 492        if (!netif_running(netdev))
 493                return -EINVAL;
 494
 495        spin_lock_irqsave(&adapter->mdio_lock, flags);
 496        switch (cmd) {
 497        case SIOCGMIIPHY:
 498                data->phy_id = 0;
 499                break;
 500
 501        case SIOCGMIIREG:
 502                if (atl1e_read_phy_reg(&adapter->hw, data->reg_num & 0x1F,
 503                                    &data->val_out)) {
 504                        retval = -EIO;
 505                        goto out;
 506                }
 507                break;
 508
 509        case SIOCSMIIREG:
 510                if (data->reg_num & ~(0x1F)) {
 511                        retval = -EFAULT;
 512                        goto out;
 513                }
 514
 515                netdev_dbg(adapter->netdev, "<atl1e_mii_ioctl> write %x %x\n",
 516                           data->reg_num, data->val_in);
 517                if (atl1e_write_phy_reg(&adapter->hw,
 518                                     data->reg_num, data->val_in)) {
 519                        retval = -EIO;
 520                        goto out;
 521                }
 522                break;
 523
 524        default:
 525                retval = -EOPNOTSUPP;
 526                break;
 527        }
 528out:
 529        spin_unlock_irqrestore(&adapter->mdio_lock, flags);
 530        return retval;
 531
 532}
 533
 534static int atl1e_ioctl(struct net_device *netdev, struct ifreq *ifr, int cmd)
 535{
 536        switch (cmd) {
 537        case SIOCGMIIPHY:
 538        case SIOCGMIIREG:
 539        case SIOCSMIIREG:
 540                return atl1e_mii_ioctl(netdev, ifr, cmd);
 541        default:
 542                return -EOPNOTSUPP;
 543        }
 544}
 545
 546static void atl1e_setup_pcicmd(struct pci_dev *pdev)
 547{
 548        u16 cmd;
 549
 550        pci_read_config_word(pdev, PCI_COMMAND, &cmd);
 551        cmd &= ~(PCI_COMMAND_INTX_DISABLE | PCI_COMMAND_IO);
 552        cmd |=  (PCI_COMMAND_MEMORY | PCI_COMMAND_MASTER);
 553        pci_write_config_word(pdev, PCI_COMMAND, cmd);
 554
 555        /*
 556         * some motherboards BIOS(PXE/EFI) driver may set PME
 557         * while they transfer control to OS (Windows/Linux)
 558         * so we should clear this bit before NIC work normally
 559         */
 560        pci_write_config_dword(pdev, REG_PM_CTRLSTAT, 0);
 561        msleep(1);
 562}
 563
 564/**
 565 * atl1e_alloc_queues - Allocate memory for all rings
 566 * @adapter: board private structure to initialize
 567 *
 568 */
 569static int atl1e_alloc_queues(struct atl1e_adapter *adapter)
 570{
 571        return 0;
 572}
 573
 574/**
 575 * atl1e_sw_init - Initialize general software structures (struct atl1e_adapter)
 576 * @adapter: board private structure to initialize
 577 *
 578 * atl1e_sw_init initializes the Adapter private data structure.
 579 * Fields are initialized based on PCI device information and
 580 * OS network device settings (MTU size).
 581 */
 582static int atl1e_sw_init(struct atl1e_adapter *adapter)
 583{
 584        struct atl1e_hw *hw   = &adapter->hw;
 585        struct pci_dev  *pdev = adapter->pdev;
 586        u32 phy_status_data = 0;
 587
 588        adapter->wol = 0;
 589        adapter->link_speed = SPEED_0;   /* hardware init */
 590        adapter->link_duplex = FULL_DUPLEX;
 591        adapter->num_rx_queues = 1;
 592
 593        /* PCI config space info */
 594        hw->vendor_id = pdev->vendor;
 595        hw->device_id = pdev->device;
 596        hw->subsystem_vendor_id = pdev->subsystem_vendor;
 597        hw->subsystem_id = pdev->subsystem_device;
 598        hw->revision_id  = pdev->revision;
 599
 600        pci_read_config_word(pdev, PCI_COMMAND, &hw->pci_cmd_word);
 601
 602        phy_status_data = AT_READ_REG(hw, REG_PHY_STATUS);
 603        /* nic type */
 604        if (hw->revision_id >= 0xF0) {
 605                hw->nic_type = athr_l2e_revB;
 606        } else {
 607                if (phy_status_data & PHY_STATUS_100M)
 608                        hw->nic_type = athr_l1e;
 609                else
 610                        hw->nic_type = athr_l2e_revA;
 611        }
 612
 613        phy_status_data = AT_READ_REG(hw, REG_PHY_STATUS);
 614
 615        if (phy_status_data & PHY_STATUS_EMI_CA)
 616                hw->emi_ca = true;
 617        else
 618                hw->emi_ca = false;
 619
 620        hw->phy_configured = false;
 621        hw->preamble_len = 7;
 622        hw->max_frame_size = adapter->netdev->mtu;
 623        hw->rx_jumbo_th = (hw->max_frame_size + ETH_HLEN +
 624                                VLAN_HLEN + ETH_FCS_LEN + 7) >> 3;
 625
 626        hw->rrs_type = atl1e_rrs_disable;
 627        hw->indirect_tab = 0;
 628        hw->base_cpu = 0;
 629
 630        /* need confirm */
 631
 632        hw->ict = 50000;                 /* 100ms */
 633        hw->smb_timer = 200000;          /* 200ms  */
 634        hw->tpd_burst = 5;
 635        hw->rrd_thresh = 1;
 636        hw->tpd_thresh = adapter->tx_ring.count / 2;
 637        hw->rx_count_down = 4;  /* 2us resolution */
 638        hw->tx_count_down = hw->imt * 4 / 3;
 639        hw->dmar_block = atl1e_dma_req_1024;
 640        hw->dmaw_block = atl1e_dma_req_1024;
 641        hw->dmar_dly_cnt = 15;
 642        hw->dmaw_dly_cnt = 4;
 643
 644        if (atl1e_alloc_queues(adapter)) {
 645                netdev_err(adapter->netdev, "Unable to allocate memory for queues\n");
 646                return -ENOMEM;
 647        }
 648
 649        atomic_set(&adapter->irq_sem, 1);
 650        spin_lock_init(&adapter->mdio_lock);
 651
 652        set_bit(__AT_DOWN, &adapter->flags);
 653
 654        return 0;
 655}
 656
 657/**
 658 * atl1e_clean_tx_ring - Free Tx-skb
 659 * @adapter: board private structure
 660 */
 661static void atl1e_clean_tx_ring(struct atl1e_adapter *adapter)
 662{
 663        struct atl1e_tx_ring *tx_ring = &adapter->tx_ring;
 664        struct atl1e_tx_buffer *tx_buffer = NULL;
 665        struct pci_dev *pdev = adapter->pdev;
 666        u16 index, ring_count;
 667
 668        if (tx_ring->desc == NULL || tx_ring->tx_buffer == NULL)
 669                return;
 670
 671        ring_count = tx_ring->count;
 672        /* first unmmap dma */
 673        for (index = 0; index < ring_count; index++) {
 674                tx_buffer = &tx_ring->tx_buffer[index];
 675                if (tx_buffer->dma) {
 676                        if (tx_buffer->flags & ATL1E_TX_PCIMAP_SINGLE)
 677                                pci_unmap_single(pdev, tx_buffer->dma,
 678                                        tx_buffer->length, PCI_DMA_TODEVICE);
 679                        else if (tx_buffer->flags & ATL1E_TX_PCIMAP_PAGE)
 680                                pci_unmap_page(pdev, tx_buffer->dma,
 681                                        tx_buffer->length, PCI_DMA_TODEVICE);
 682                        tx_buffer->dma = 0;
 683                }
 684        }
 685        /* second free skb */
 686        for (index = 0; index < ring_count; index++) {
 687                tx_buffer = &tx_ring->tx_buffer[index];
 688                if (tx_buffer->skb) {
 689                        dev_kfree_skb_any(tx_buffer->skb);
 690                        tx_buffer->skb = NULL;
 691                }
 692        }
 693        /* Zero out Tx-buffers */
 694        memset(tx_ring->desc, 0, sizeof(struct atl1e_tpd_desc) *
 695                                ring_count);
 696        memset(tx_ring->tx_buffer, 0, sizeof(struct atl1e_tx_buffer) *
 697                                ring_count);
 698}
 699
 700/**
 701 * atl1e_clean_rx_ring - Free rx-reservation skbs
 702 * @adapter: board private structure
 703 */
 704static void atl1e_clean_rx_ring(struct atl1e_adapter *adapter)
 705{
 706        struct atl1e_rx_ring *rx_ring =
 707                &adapter->rx_ring;
 708        struct atl1e_rx_page_desc *rx_page_desc = rx_ring->rx_page_desc;
 709        u16 i, j;
 710
 711
 712        if (adapter->ring_vir_addr == NULL)
 713                return;
 714        /* Zero out the descriptor ring */
 715        for (i = 0; i < adapter->num_rx_queues; i++) {
 716                for (j = 0; j < AT_PAGE_NUM_PER_QUEUE; j++) {
 717                        if (rx_page_desc[i].rx_page[j].addr != NULL) {
 718                                memset(rx_page_desc[i].rx_page[j].addr, 0,
 719                                                rx_ring->real_page_size);
 720                        }
 721                }
 722        }
 723}
 724
 725static void atl1e_cal_ring_size(struct atl1e_adapter *adapter, u32 *ring_size)
 726{
 727        *ring_size = ((u32)(adapter->tx_ring.count *
 728                     sizeof(struct atl1e_tpd_desc) + 7
 729                        /* tx ring, qword align */
 730                     + adapter->rx_ring.real_page_size * AT_PAGE_NUM_PER_QUEUE *
 731                        adapter->num_rx_queues + 31
 732                        /* rx ring,  32 bytes align */
 733                     + (1 + AT_PAGE_NUM_PER_QUEUE * adapter->num_rx_queues) *
 734                        sizeof(u32) + 3));
 735                        /* tx, rx cmd, dword align   */
 736}
 737
 738static void atl1e_init_ring_resources(struct atl1e_adapter *adapter)
 739{
 740        struct atl1e_rx_ring *rx_ring = NULL;
 741
 742        rx_ring = &adapter->rx_ring;
 743
 744        rx_ring->real_page_size = adapter->rx_ring.page_size
 745                                 + adapter->hw.max_frame_size
 746                                 + ETH_HLEN + VLAN_HLEN
 747                                 + ETH_FCS_LEN;
 748        rx_ring->real_page_size = roundup(rx_ring->real_page_size, 32);
 749        atl1e_cal_ring_size(adapter, &adapter->ring_size);
 750
 751        adapter->ring_vir_addr = NULL;
 752        adapter->rx_ring.desc = NULL;
 753        rwlock_init(&adapter->tx_ring.tx_lock);
 754}
 755
 756/*
 757 * Read / Write Ptr Initialize:
 758 */
 759static void atl1e_init_ring_ptrs(struct atl1e_adapter *adapter)
 760{
 761        struct atl1e_tx_ring *tx_ring = NULL;
 762        struct atl1e_rx_ring *rx_ring = NULL;
 763        struct atl1e_rx_page_desc *rx_page_desc = NULL;
 764        int i, j;
 765
 766        tx_ring = &adapter->tx_ring;
 767        rx_ring = &adapter->rx_ring;
 768        rx_page_desc = rx_ring->rx_page_desc;
 769
 770        tx_ring->next_to_use = 0;
 771        atomic_set(&tx_ring->next_to_clean, 0);
 772
 773        for (i = 0; i < adapter->num_rx_queues; i++) {
 774                rx_page_desc[i].rx_using  = 0;
 775                rx_page_desc[i].rx_nxseq = 0;
 776                for (j = 0; j < AT_PAGE_NUM_PER_QUEUE; j++) {
 777                        *rx_page_desc[i].rx_page[j].write_offset_addr = 0;
 778                        rx_page_desc[i].rx_page[j].read_offset = 0;
 779                }
 780        }
 781}
 782
 783/**
 784 * atl1e_free_ring_resources - Free Tx / RX descriptor Resources
 785 * @adapter: board private structure
 786 *
 787 * Free all transmit software resources
 788 */
 789static void atl1e_free_ring_resources(struct atl1e_adapter *adapter)
 790{
 791        struct pci_dev *pdev = adapter->pdev;
 792
 793        atl1e_clean_tx_ring(adapter);
 794        atl1e_clean_rx_ring(adapter);
 795
 796        if (adapter->ring_vir_addr) {
 797                pci_free_consistent(pdev, adapter->ring_size,
 798                                adapter->ring_vir_addr, adapter->ring_dma);
 799                adapter->ring_vir_addr = NULL;
 800        }
 801
 802        if (adapter->tx_ring.tx_buffer) {
 803                kfree(adapter->tx_ring.tx_buffer);
 804                adapter->tx_ring.tx_buffer = NULL;
 805        }
 806}
 807
 808/**
 809 * atl1e_setup_mem_resources - allocate Tx / RX descriptor resources
 810 * @adapter: board private structure
 811 *
 812 * Return 0 on success, negative on failure
 813 */
 814static int atl1e_setup_ring_resources(struct atl1e_adapter *adapter)
 815{
 816        struct pci_dev *pdev = adapter->pdev;
 817        struct atl1e_tx_ring *tx_ring;
 818        struct atl1e_rx_ring *rx_ring;
 819        struct atl1e_rx_page_desc  *rx_page_desc;
 820        int size, i, j;
 821        u32 offset = 0;
 822        int err = 0;
 823
 824        if (adapter->ring_vir_addr != NULL)
 825                return 0; /* alloced already */
 826
 827        tx_ring = &adapter->tx_ring;
 828        rx_ring = &adapter->rx_ring;
 829
 830        /* real ring DMA buffer */
 831
 832        size = adapter->ring_size;
 833        adapter->ring_vir_addr = pci_zalloc_consistent(pdev, adapter->ring_size,
 834                                                       &adapter->ring_dma);
 835        if (adapter->ring_vir_addr == NULL) {
 836                netdev_err(adapter->netdev,
 837                           "pci_alloc_consistent failed, size = D%d\n", size);
 838                return -ENOMEM;
 839        }
 840
 841        rx_page_desc = rx_ring->rx_page_desc;
 842
 843        /* Init TPD Ring */
 844        tx_ring->dma = roundup(adapter->ring_dma, 8);
 845        offset = tx_ring->dma - adapter->ring_dma;
 846        tx_ring->desc = adapter->ring_vir_addr + offset;
 847        size = sizeof(struct atl1e_tx_buffer) * (tx_ring->count);
 848        tx_ring->tx_buffer = kzalloc(size, GFP_KERNEL);
 849        if (tx_ring->tx_buffer == NULL) {
 850                err = -ENOMEM;
 851                goto failed;
 852        }
 853
 854        /* Init RXF-Pages */
 855        offset += (sizeof(struct atl1e_tpd_desc) * tx_ring->count);
 856        offset = roundup(offset, 32);
 857
 858        for (i = 0; i < adapter->num_rx_queues; i++) {
 859                for (j = 0; j < AT_PAGE_NUM_PER_QUEUE; j++) {
 860                        rx_page_desc[i].rx_page[j].dma =
 861                                adapter->ring_dma + offset;
 862                        rx_page_desc[i].rx_page[j].addr =
 863                                adapter->ring_vir_addr + offset;
 864                        offset += rx_ring->real_page_size;
 865                }
 866        }
 867
 868        /* Init CMB dma address */
 869        tx_ring->cmb_dma = adapter->ring_dma + offset;
 870        tx_ring->cmb = adapter->ring_vir_addr + offset;
 871        offset += sizeof(u32);
 872
 873        for (i = 0; i < adapter->num_rx_queues; i++) {
 874                for (j = 0; j < AT_PAGE_NUM_PER_QUEUE; j++) {
 875                        rx_page_desc[i].rx_page[j].write_offset_dma =
 876                                adapter->ring_dma + offset;
 877                        rx_page_desc[i].rx_page[j].write_offset_addr =
 878                                adapter->ring_vir_addr + offset;
 879                        offset += sizeof(u32);
 880                }
 881        }
 882
 883        if (unlikely(offset > adapter->ring_size)) {
 884                netdev_err(adapter->netdev, "offset(%d) > ring size(%d) !!\n",
 885                           offset, adapter->ring_size);
 886                err = -1;
 887                goto failed;
 888        }
 889
 890        return 0;
 891failed:
 892        if (adapter->ring_vir_addr != NULL) {
 893                pci_free_consistent(pdev, adapter->ring_size,
 894                                adapter->ring_vir_addr, adapter->ring_dma);
 895                adapter->ring_vir_addr = NULL;
 896        }
 897        return err;
 898}
 899
 900static inline void atl1e_configure_des_ring(struct atl1e_adapter *adapter)
 901{
 902
 903        struct atl1e_hw *hw = &adapter->hw;
 904        struct atl1e_rx_ring *rx_ring = &adapter->rx_ring;
 905        struct atl1e_tx_ring *tx_ring = &adapter->tx_ring;
 906        struct atl1e_rx_page_desc *rx_page_desc = NULL;
 907        int i, j;
 908
 909        AT_WRITE_REG(hw, REG_DESC_BASE_ADDR_HI,
 910                        (u32)((adapter->ring_dma & AT_DMA_HI_ADDR_MASK) >> 32));
 911        AT_WRITE_REG(hw, REG_TPD_BASE_ADDR_LO,
 912                        (u32)((tx_ring->dma) & AT_DMA_LO_ADDR_MASK));
 913        AT_WRITE_REG(hw, REG_TPD_RING_SIZE, (u16)(tx_ring->count));
 914        AT_WRITE_REG(hw, REG_HOST_TX_CMB_LO,
 915                        (u32)((tx_ring->cmb_dma) & AT_DMA_LO_ADDR_MASK));
 916
 917        rx_page_desc = rx_ring->rx_page_desc;
 918        /* RXF Page Physical address / Page Length */
 919        for (i = 0; i < AT_MAX_RECEIVE_QUEUE; i++) {
 920                AT_WRITE_REG(hw, atl1e_rx_page_hi_addr_regs[i],
 921                                 (u32)((adapter->ring_dma &
 922                                 AT_DMA_HI_ADDR_MASK) >> 32));
 923                for (j = 0; j < AT_PAGE_NUM_PER_QUEUE; j++) {
 924                        u32 page_phy_addr;
 925                        u32 offset_phy_addr;
 926
 927                        page_phy_addr = rx_page_desc[i].rx_page[j].dma;
 928                        offset_phy_addr =
 929                                   rx_page_desc[i].rx_page[j].write_offset_dma;
 930
 931                        AT_WRITE_REG(hw, atl1e_rx_page_lo_addr_regs[i][j],
 932                                        page_phy_addr & AT_DMA_LO_ADDR_MASK);
 933                        AT_WRITE_REG(hw, atl1e_rx_page_write_offset_regs[i][j],
 934                                        offset_phy_addr & AT_DMA_LO_ADDR_MASK);
 935                        AT_WRITE_REGB(hw, atl1e_rx_page_vld_regs[i][j], 1);
 936                }
 937        }
 938        /* Page Length */
 939        AT_WRITE_REG(hw, REG_HOST_RXFPAGE_SIZE, rx_ring->page_size);
 940        /* Load all of base address above */
 941        AT_WRITE_REG(hw, REG_LOAD_PTR, 1);
 942}
 943
 944static inline void atl1e_configure_tx(struct atl1e_adapter *adapter)
 945{
 946        struct atl1e_hw *hw = &adapter->hw;
 947        u32 dev_ctrl_data = 0;
 948        u32 max_pay_load = 0;
 949        u32 jumbo_thresh = 0;
 950        u32 extra_size = 0;     /* Jumbo frame threshold in QWORD unit */
 951
 952        /* configure TXQ param */
 953        if (hw->nic_type != athr_l2e_revB) {
 954                extra_size = ETH_HLEN + VLAN_HLEN + ETH_FCS_LEN;
 955                if (hw->max_frame_size <= 1500) {
 956                        jumbo_thresh = hw->max_frame_size + extra_size;
 957                } else if (hw->max_frame_size < 6*1024) {
 958                        jumbo_thresh =
 959                                (hw->max_frame_size + extra_size) * 2 / 3;
 960                } else {
 961                        jumbo_thresh = (hw->max_frame_size + extra_size) / 2;
 962                }
 963                AT_WRITE_REG(hw, REG_TX_EARLY_TH, (jumbo_thresh + 7) >> 3);
 964        }
 965
 966        dev_ctrl_data = AT_READ_REG(hw, REG_DEVICE_CTRL);
 967
 968        max_pay_load  = ((dev_ctrl_data >> DEVICE_CTRL_MAX_PAYLOAD_SHIFT)) &
 969                        DEVICE_CTRL_MAX_PAYLOAD_MASK;
 970
 971        hw->dmaw_block = min_t(u32, max_pay_load, hw->dmaw_block);
 972
 973        max_pay_load  = ((dev_ctrl_data >> DEVICE_CTRL_MAX_RREQ_SZ_SHIFT)) &
 974                        DEVICE_CTRL_MAX_RREQ_SZ_MASK;
 975        hw->dmar_block = min_t(u32, max_pay_load, hw->dmar_block);
 976
 977        if (hw->nic_type != athr_l2e_revB)
 978                AT_WRITE_REGW(hw, REG_TXQ_CTRL + 2,
 979                              atl1e_pay_load_size[hw->dmar_block]);
 980        /* enable TXQ */
 981        AT_WRITE_REGW(hw, REG_TXQ_CTRL,
 982                        (((u16)hw->tpd_burst & TXQ_CTRL_NUM_TPD_BURST_MASK)
 983                         << TXQ_CTRL_NUM_TPD_BURST_SHIFT)
 984                        | TXQ_CTRL_ENH_MODE | TXQ_CTRL_EN);
 985}
 986
 987static inline void atl1e_configure_rx(struct atl1e_adapter *adapter)
 988{
 989        struct atl1e_hw *hw = &adapter->hw;
 990        u32 rxf_len  = 0;
 991        u32 rxf_low  = 0;
 992        u32 rxf_high = 0;
 993        u32 rxf_thresh_data = 0;
 994        u32 rxq_ctrl_data = 0;
 995
 996        if (hw->nic_type != athr_l2e_revB) {
 997                AT_WRITE_REGW(hw, REG_RXQ_JMBOSZ_RRDTIM,
 998                              (u16)((hw->rx_jumbo_th & RXQ_JMBOSZ_TH_MASK) <<
 999                              RXQ_JMBOSZ_TH_SHIFT |
1000                              (1 & RXQ_JMBO_LKAH_MASK) <<
1001                              RXQ_JMBO_LKAH_SHIFT));
1002
1003                rxf_len  = AT_READ_REG(hw, REG_SRAM_RXF_LEN);
1004                rxf_high = rxf_len * 4 / 5;
1005                rxf_low  = rxf_len / 5;
1006                rxf_thresh_data = ((rxf_high  & RXQ_RXF_PAUSE_TH_HI_MASK)
1007                                  << RXQ_RXF_PAUSE_TH_HI_SHIFT) |
1008                                  ((rxf_low & RXQ_RXF_PAUSE_TH_LO_MASK)
1009                                  << RXQ_RXF_PAUSE_TH_LO_SHIFT);
1010
1011                AT_WRITE_REG(hw, REG_RXQ_RXF_PAUSE_THRESH, rxf_thresh_data);
1012        }
1013
1014        /* RRS */
1015        AT_WRITE_REG(hw, REG_IDT_TABLE, hw->indirect_tab);
1016        AT_WRITE_REG(hw, REG_BASE_CPU_NUMBER, hw->base_cpu);
1017
1018        if (hw->rrs_type & atl1e_rrs_ipv4)
1019                rxq_ctrl_data |= RXQ_CTRL_HASH_TYPE_IPV4;
1020
1021        if (hw->rrs_type & atl1e_rrs_ipv4_tcp)
1022                rxq_ctrl_data |= RXQ_CTRL_HASH_TYPE_IPV4_TCP;
1023
1024        if (hw->rrs_type & atl1e_rrs_ipv6)
1025                rxq_ctrl_data |= RXQ_CTRL_HASH_TYPE_IPV6;
1026
1027        if (hw->rrs_type & atl1e_rrs_ipv6_tcp)
1028                rxq_ctrl_data |= RXQ_CTRL_HASH_TYPE_IPV6_TCP;
1029
1030        if (hw->rrs_type != atl1e_rrs_disable)
1031                rxq_ctrl_data |=
1032                        (RXQ_CTRL_HASH_ENABLE | RXQ_CTRL_RSS_MODE_MQUESINT);
1033
1034        rxq_ctrl_data |= RXQ_CTRL_IPV6_XSUM_VERIFY_EN | RXQ_CTRL_PBA_ALIGN_32 |
1035                         RXQ_CTRL_CUT_THRU_EN | RXQ_CTRL_EN;
1036
1037        AT_WRITE_REG(hw, REG_RXQ_CTRL, rxq_ctrl_data);
1038}
1039
1040static inline void atl1e_configure_dma(struct atl1e_adapter *adapter)
1041{
1042        struct atl1e_hw *hw = &adapter->hw;
1043        u32 dma_ctrl_data = 0;
1044
1045        dma_ctrl_data = DMA_CTRL_RXCMB_EN;
1046        dma_ctrl_data |= (((u32)hw->dmar_block) & DMA_CTRL_DMAR_BURST_LEN_MASK)
1047                << DMA_CTRL_DMAR_BURST_LEN_SHIFT;
1048        dma_ctrl_data |= (((u32)hw->dmaw_block) & DMA_CTRL_DMAW_BURST_LEN_MASK)
1049                << DMA_CTRL_DMAW_BURST_LEN_SHIFT;
1050        dma_ctrl_data |= DMA_CTRL_DMAR_REQ_PRI | DMA_CTRL_DMAR_OUT_ORDER;
1051        dma_ctrl_data |= (((u32)hw->dmar_dly_cnt) & DMA_CTRL_DMAR_DLY_CNT_MASK)
1052                << DMA_CTRL_DMAR_DLY_CNT_SHIFT;
1053        dma_ctrl_data |= (((u32)hw->dmaw_dly_cnt) & DMA_CTRL_DMAW_DLY_CNT_MASK)
1054                << DMA_CTRL_DMAW_DLY_CNT_SHIFT;
1055
1056        AT_WRITE_REG(hw, REG_DMA_CTRL, dma_ctrl_data);
1057}
1058
1059static void atl1e_setup_mac_ctrl(struct atl1e_adapter *adapter)
1060{
1061        u32 value;
1062        struct atl1e_hw *hw = &adapter->hw;
1063        struct net_device *netdev = adapter->netdev;
1064
1065        /* Config MAC CTRL Register */
1066        value = MAC_CTRL_TX_EN |
1067                MAC_CTRL_RX_EN ;
1068
1069        if (FULL_DUPLEX == adapter->link_duplex)
1070                value |= MAC_CTRL_DUPLX;
1071
1072        value |= ((u32)((SPEED_1000 == adapter->link_speed) ?
1073                          MAC_CTRL_SPEED_1000 : MAC_CTRL_SPEED_10_100) <<
1074                          MAC_CTRL_SPEED_SHIFT);
1075        value |= (MAC_CTRL_TX_FLOW | MAC_CTRL_RX_FLOW);
1076
1077        value |= (MAC_CTRL_ADD_CRC | MAC_CTRL_PAD);
1078        value |= (((u32)adapter->hw.preamble_len &
1079                  MAC_CTRL_PRMLEN_MASK) << MAC_CTRL_PRMLEN_SHIFT);
1080
1081        __atl1e_vlan_mode(netdev->features, &value);
1082
1083        value |= MAC_CTRL_BC_EN;
1084        if (netdev->flags & IFF_PROMISC)
1085                value |= MAC_CTRL_PROMIS_EN;
1086        if (netdev->flags & IFF_ALLMULTI)
1087                value |= MAC_CTRL_MC_ALL_EN;
1088        if (netdev->features & NETIF_F_RXALL)
1089                value |= MAC_CTRL_DBG;
1090        AT_WRITE_REG(hw, REG_MAC_CTRL, value);
1091}
1092
1093/**
1094 * atl1e_configure - Configure Transmit&Receive Unit after Reset
1095 * @adapter: board private structure
1096 *
1097 * Configure the Tx /Rx unit of the MAC after a reset.
1098 */
1099static int atl1e_configure(struct atl1e_adapter *adapter)
1100{
1101        struct atl1e_hw *hw = &adapter->hw;
1102
1103        u32 intr_status_data = 0;
1104
1105        /* clear interrupt status */
1106        AT_WRITE_REG(hw, REG_ISR, ~0);
1107
1108        /* 1. set MAC Address */
1109        atl1e_hw_set_mac_addr(hw);
1110
1111        /* 2. Init the Multicast HASH table done by set_muti */
1112
1113        /* 3. Clear any WOL status */
1114        AT_WRITE_REG(hw, REG_WOL_CTRL, 0);
1115
1116        /* 4. Descripter Ring BaseMem/Length/Read ptr/Write ptr
1117         *    TPD Ring/SMB/RXF0 Page CMBs, they use the same
1118         *    High 32bits memory */
1119        atl1e_configure_des_ring(adapter);
1120
1121        /* 5. set Interrupt Moderator Timer */
1122        AT_WRITE_REGW(hw, REG_IRQ_MODU_TIMER_INIT, hw->imt);
1123        AT_WRITE_REGW(hw, REG_IRQ_MODU_TIMER2_INIT, hw->imt);
1124        AT_WRITE_REG(hw, REG_MASTER_CTRL, MASTER_CTRL_LED_MODE |
1125                        MASTER_CTRL_ITIMER_EN | MASTER_CTRL_ITIMER2_EN);
1126
1127        /* 6. rx/tx threshold to trig interrupt */
1128        AT_WRITE_REGW(hw, REG_TRIG_RRD_THRESH, hw->rrd_thresh);
1129        AT_WRITE_REGW(hw, REG_TRIG_TPD_THRESH, hw->tpd_thresh);
1130        AT_WRITE_REGW(hw, REG_TRIG_RXTIMER, hw->rx_count_down);
1131        AT_WRITE_REGW(hw, REG_TRIG_TXTIMER, hw->tx_count_down);
1132
1133        /* 7. set Interrupt Clear Timer */
1134        AT_WRITE_REGW(hw, REG_CMBDISDMA_TIMER, hw->ict);
1135
1136        /* 8. set MTU */
1137        AT_WRITE_REG(hw, REG_MTU, hw->max_frame_size + ETH_HLEN +
1138                        VLAN_HLEN + ETH_FCS_LEN);
1139
1140        /* 9. config TXQ early tx threshold */
1141        atl1e_configure_tx(adapter);
1142
1143        /* 10. config RXQ */
1144        atl1e_configure_rx(adapter);
1145
1146        /* 11. config  DMA Engine */
1147        atl1e_configure_dma(adapter);
1148
1149        /* 12. smb timer to trig interrupt */
1150        AT_WRITE_REG(hw, REG_SMB_STAT_TIMER, hw->smb_timer);
1151
1152        intr_status_data = AT_READ_REG(hw, REG_ISR);
1153        if (unlikely((intr_status_data & ISR_PHY_LINKDOWN) != 0)) {
1154                netdev_err(adapter->netdev,
1155                           "atl1e_configure failed, PCIE phy link down\n");
1156                return -1;
1157        }
1158
1159        AT_WRITE_REG(hw, REG_ISR, 0x7fffffff);
1160        return 0;
1161}
1162
1163/**
1164 * atl1e_get_stats - Get System Network Statistics
1165 * @netdev: network interface device structure
1166 *
1167 * Returns the address of the device statistics structure.
1168 * The statistics are actually updated from the timer callback.
1169 */
1170static struct net_device_stats *atl1e_get_stats(struct net_device *netdev)
1171{
1172        struct atl1e_adapter *adapter = netdev_priv(netdev);
1173        struct atl1e_hw_stats  *hw_stats = &adapter->hw_stats;
1174        struct net_device_stats *net_stats = &netdev->stats;
1175
1176        net_stats->rx_bytes   = hw_stats->rx_byte_cnt;
1177        net_stats->tx_bytes   = hw_stats->tx_byte_cnt;
1178        net_stats->multicast  = hw_stats->rx_mcast;
1179        net_stats->collisions = hw_stats->tx_1_col +
1180                                hw_stats->tx_2_col +
1181                                hw_stats->tx_late_col +
1182                                hw_stats->tx_abort_col;
1183
1184        net_stats->rx_errors  = hw_stats->rx_frag +
1185                                hw_stats->rx_fcs_err +
1186                                hw_stats->rx_len_err +
1187                                hw_stats->rx_sz_ov +
1188                                hw_stats->rx_rrd_ov +
1189                                hw_stats->rx_align_err +
1190                                hw_stats->rx_rxf_ov;
1191
1192        net_stats->rx_fifo_errors   = hw_stats->rx_rxf_ov;
1193        net_stats->rx_length_errors = hw_stats->rx_len_err;
1194        net_stats->rx_crc_errors    = hw_stats->rx_fcs_err;
1195        net_stats->rx_frame_errors  = hw_stats->rx_align_err;
1196        net_stats->rx_dropped       = hw_stats->rx_rrd_ov;
1197
1198        net_stats->tx_errors = hw_stats->tx_late_col +
1199                               hw_stats->tx_abort_col +
1200                               hw_stats->tx_underrun +
1201                               hw_stats->tx_trunc;
1202
1203        net_stats->tx_fifo_errors    = hw_stats->tx_underrun;
1204        net_stats->tx_aborted_errors = hw_stats->tx_abort_col;
1205        net_stats->tx_window_errors  = hw_stats->tx_late_col;
1206
1207        net_stats->rx_packets = hw_stats->rx_ok + net_stats->rx_errors;
1208        net_stats->tx_packets = hw_stats->tx_ok + net_stats->tx_errors;
1209
1210        return net_stats;
1211}
1212
1213static void atl1e_update_hw_stats(struct atl1e_adapter *adapter)
1214{
1215        u16 hw_reg_addr = 0;
1216        unsigned long *stats_item = NULL;
1217
1218        /* update rx status */
1219        hw_reg_addr = REG_MAC_RX_STATUS_BIN;
1220        stats_item  = &adapter->hw_stats.rx_ok;
1221        while (hw_reg_addr <= REG_MAC_RX_STATUS_END) {
1222                *stats_item += AT_READ_REG(&adapter->hw, hw_reg_addr);
1223                stats_item++;
1224                hw_reg_addr += 4;
1225        }
1226        /* update tx status */
1227        hw_reg_addr = REG_MAC_TX_STATUS_BIN;
1228        stats_item  = &adapter->hw_stats.tx_ok;
1229        while (hw_reg_addr <= REG_MAC_TX_STATUS_END) {
1230                *stats_item += AT_READ_REG(&adapter->hw, hw_reg_addr);
1231                stats_item++;
1232                hw_reg_addr += 4;
1233        }
1234}
1235
1236static inline void atl1e_clear_phy_int(struct atl1e_adapter *adapter)
1237{
1238        u16 phy_data;
1239
1240        spin_lock(&adapter->mdio_lock);
1241        atl1e_read_phy_reg(&adapter->hw, MII_INT_STATUS, &phy_data);
1242        spin_unlock(&adapter->mdio_lock);
1243}
1244
1245static bool atl1e_clean_tx_irq(struct atl1e_adapter *adapter)
1246{
1247        struct atl1e_tx_ring *tx_ring = &adapter->tx_ring;
1248        struct atl1e_tx_buffer *tx_buffer = NULL;
1249        u16 hw_next_to_clean = AT_READ_REGW(&adapter->hw, REG_TPD_CONS_IDX);
1250        u16 next_to_clean = atomic_read(&tx_ring->next_to_clean);
1251
1252        while (next_to_clean != hw_next_to_clean) {
1253                tx_buffer = &tx_ring->tx_buffer[next_to_clean];
1254                if (tx_buffer->dma) {
1255                        if (tx_buffer->flags & ATL1E_TX_PCIMAP_SINGLE)
1256                                pci_unmap_single(adapter->pdev, tx_buffer->dma,
1257                                        tx_buffer->length, PCI_DMA_TODEVICE);
1258                        else if (tx_buffer->flags & ATL1E_TX_PCIMAP_PAGE)
1259                                pci_unmap_page(adapter->pdev, tx_buffer->dma,
1260                                        tx_buffer->length, PCI_DMA_TODEVICE);
1261                        tx_buffer->dma = 0;
1262                }
1263
1264                if (tx_buffer->skb) {
1265                        dev_kfree_skb_irq(tx_buffer->skb);
1266                        tx_buffer->skb = NULL;
1267                }
1268
1269                if (++next_to_clean == tx_ring->count)
1270                        next_to_clean = 0;
1271        }
1272
1273        atomic_set(&tx_ring->next_to_clean, next_to_clean);
1274
1275        if (netif_queue_stopped(adapter->netdev) &&
1276                        netif_carrier_ok(adapter->netdev)) {
1277                netif_wake_queue(adapter->netdev);
1278        }
1279
1280        return true;
1281}
1282
1283/**
1284 * atl1e_intr - Interrupt Handler
1285 * @irq: interrupt number
1286 * @data: pointer to a network interface device structure
1287 */
1288static irqreturn_t atl1e_intr(int irq, void *data)
1289{
1290        struct net_device *netdev  = data;
1291        struct atl1e_adapter *adapter = netdev_priv(netdev);
1292        struct atl1e_hw *hw = &adapter->hw;
1293        int max_ints = AT_MAX_INT_WORK;
1294        int handled = IRQ_NONE;
1295        u32 status;
1296
1297        do {
1298                status = AT_READ_REG(hw, REG_ISR);
1299                if ((status & IMR_NORMAL_MASK) == 0 ||
1300                                (status & ISR_DIS_INT) != 0) {
1301                        if (max_ints != AT_MAX_INT_WORK)
1302                                handled = IRQ_HANDLED;
1303                        break;
1304                }
1305                /* link event */
1306                if (status & ISR_GPHY)
1307                        atl1e_clear_phy_int(adapter);
1308                /* Ack ISR */
1309                AT_WRITE_REG(hw, REG_ISR, status | ISR_DIS_INT);
1310
1311                handled = IRQ_HANDLED;
1312                /* check if PCIE PHY Link down */
1313                if (status & ISR_PHY_LINKDOWN) {
1314                        netdev_err(adapter->netdev,
1315                                   "pcie phy linkdown %x\n", status);
1316                        if (netif_running(adapter->netdev)) {
1317                                /* reset MAC */
1318                                atl1e_irq_reset(adapter);
1319                                schedule_work(&adapter->reset_task);
1320                                break;
1321                        }
1322                }
1323
1324                /* check if DMA read/write error */
1325                if (status & (ISR_DMAR_TO_RST | ISR_DMAW_TO_RST)) {
1326                        netdev_err(adapter->netdev,
1327                                   "PCIE DMA RW error (status = 0x%x)\n",
1328                                   status);
1329                        atl1e_irq_reset(adapter);
1330                        schedule_work(&adapter->reset_task);
1331                        break;
1332                }
1333
1334                if (status & ISR_SMB)
1335                        atl1e_update_hw_stats(adapter);
1336
1337                /* link event */
1338                if (status & (ISR_GPHY | ISR_MANUAL)) {
1339                        netdev->stats.tx_carrier_errors++;
1340                        atl1e_link_chg_event(adapter);
1341                        break;
1342                }
1343
1344                /* transmit event */
1345                if (status & ISR_TX_EVENT)
1346                        atl1e_clean_tx_irq(adapter);
1347
1348                if (status & ISR_RX_EVENT) {
1349                        /*
1350                         * disable rx interrupts, without
1351                         * the synchronize_irq bit
1352                         */
1353                        AT_WRITE_REG(hw, REG_IMR,
1354                                     IMR_NORMAL_MASK & ~ISR_RX_EVENT);
1355                        AT_WRITE_FLUSH(hw);
1356                        if (likely(napi_schedule_prep(
1357                                   &adapter->napi)))
1358                                __napi_schedule(&adapter->napi);
1359                }
1360        } while (--max_ints > 0);
1361        /* re-enable Interrupt*/
1362        AT_WRITE_REG(&adapter->hw, REG_ISR, 0);
1363
1364        return handled;
1365}
1366
1367static inline void atl1e_rx_checksum(struct atl1e_adapter *adapter,
1368                  struct sk_buff *skb, struct atl1e_recv_ret_status *prrs)
1369{
1370        u8 *packet = (u8 *)(prrs + 1);
1371        struct iphdr *iph;
1372        u16 head_len = ETH_HLEN;
1373        u16 pkt_flags;
1374        u16 err_flags;
1375
1376        skb_checksum_none_assert(skb);
1377        pkt_flags = prrs->pkt_flag;
1378        err_flags = prrs->err_flag;
1379        if (((pkt_flags & RRS_IS_IPV4) || (pkt_flags & RRS_IS_IPV6)) &&
1380                ((pkt_flags & RRS_IS_TCP) || (pkt_flags & RRS_IS_UDP))) {
1381                if (pkt_flags & RRS_IS_IPV4) {
1382                        if (pkt_flags & RRS_IS_802_3)
1383                                head_len += 8;
1384                        iph = (struct iphdr *) (packet + head_len);
1385                        if (iph->frag_off != 0 && !(pkt_flags & RRS_IS_IP_DF))
1386                                goto hw_xsum;
1387                }
1388                if (!(err_flags & (RRS_ERR_IP_CSUM | RRS_ERR_L4_CSUM))) {
1389                        skb->ip_summed = CHECKSUM_UNNECESSARY;
1390                        return;
1391                }
1392        }
1393
1394hw_xsum :
1395        return;
1396}
1397
1398static struct atl1e_rx_page *atl1e_get_rx_page(struct atl1e_adapter *adapter,
1399                                               u8 que)
1400{
1401        struct atl1e_rx_page_desc *rx_page_desc =
1402                (struct atl1e_rx_page_desc *) adapter->rx_ring.rx_page_desc;
1403        u8 rx_using = rx_page_desc[que].rx_using;
1404
1405        return &(rx_page_desc[que].rx_page[rx_using]);
1406}
1407
1408static void atl1e_clean_rx_irq(struct atl1e_adapter *adapter, u8 que,
1409                   int *work_done, int work_to_do)
1410{
1411        struct net_device *netdev  = adapter->netdev;
1412        struct atl1e_rx_ring *rx_ring = &adapter->rx_ring;
1413        struct atl1e_rx_page_desc *rx_page_desc =
1414                (struct atl1e_rx_page_desc *) rx_ring->rx_page_desc;
1415        struct sk_buff *skb = NULL;
1416        struct atl1e_rx_page *rx_page = atl1e_get_rx_page(adapter, que);
1417        u32 packet_size, write_offset;
1418        struct atl1e_recv_ret_status *prrs;
1419
1420        write_offset = *(rx_page->write_offset_addr);
1421        if (likely(rx_page->read_offset < write_offset)) {
1422                do {
1423                        if (*work_done >= work_to_do)
1424                                break;
1425                        (*work_done)++;
1426                        /* get new packet's  rrs */
1427                        prrs = (struct atl1e_recv_ret_status *) (rx_page->addr +
1428                                                 rx_page->read_offset);
1429                        /* check sequence number */
1430                        if (prrs->seq_num != rx_page_desc[que].rx_nxseq) {
1431                                netdev_err(netdev,
1432                                           "rx sequence number error (rx=%d) (expect=%d)\n",
1433                                           prrs->seq_num,
1434                                           rx_page_desc[que].rx_nxseq);
1435                                rx_page_desc[que].rx_nxseq++;
1436                                /* just for debug use */
1437                                AT_WRITE_REG(&adapter->hw, REG_DEBUG_DATA0,
1438                                             (((u32)prrs->seq_num) << 16) |
1439                                             rx_page_desc[que].rx_nxseq);
1440                                goto fatal_err;
1441                        }
1442                        rx_page_desc[que].rx_nxseq++;
1443
1444                        /* error packet */
1445                        if ((prrs->pkt_flag & RRS_IS_ERR_FRAME) &&
1446                            !(netdev->features & NETIF_F_RXALL)) {
1447                                if (prrs->err_flag & (RRS_ERR_BAD_CRC |
1448                                        RRS_ERR_DRIBBLE | RRS_ERR_CODE |
1449                                        RRS_ERR_TRUNC)) {
1450                                /* hardware error, discard this packet*/
1451                                        netdev_err(netdev,
1452                                                   "rx packet desc error %x\n",
1453                                                   *((u32 *)prrs + 1));
1454                                        goto skip_pkt;
1455                                }
1456                        }
1457
1458                        packet_size = ((prrs->word1 >> RRS_PKT_SIZE_SHIFT) &
1459                                        RRS_PKT_SIZE_MASK);
1460                        if (likely(!(netdev->features & NETIF_F_RXFCS)))
1461                                packet_size -= 4; /* CRC */
1462
1463                        skb = netdev_alloc_skb_ip_align(netdev, packet_size);
1464                        if (skb == NULL)
1465                                goto skip_pkt;
1466
1467                        memcpy(skb->data, (u8 *)(prrs + 1), packet_size);
1468                        skb_put(skb, packet_size);
1469                        skb->protocol = eth_type_trans(skb, netdev);
1470                        atl1e_rx_checksum(adapter, skb, prrs);
1471
1472                        if (prrs->pkt_flag & RRS_IS_VLAN_TAG) {
1473                                u16 vlan_tag = (prrs->vtag >> 4) |
1474                                               ((prrs->vtag & 7) << 13) |
1475                                               ((prrs->vtag & 8) << 9);
1476                                netdev_dbg(netdev,
1477                                           "RXD VLAN TAG<RRD>=0x%04x\n",
1478                                           prrs->vtag);
1479                                __vlan_hwaccel_put_tag(skb, htons(ETH_P_8021Q), vlan_tag);
1480                        }
1481                        netif_receive_skb(skb);
1482
1483skip_pkt:
1484        /* skip current packet whether it's ok or not. */
1485                        rx_page->read_offset +=
1486                                (((u32)((prrs->word1 >> RRS_PKT_SIZE_SHIFT) &
1487                                RRS_PKT_SIZE_MASK) +
1488                                sizeof(struct atl1e_recv_ret_status) + 31) &
1489                                                0xFFFFFFE0);
1490
1491                        if (rx_page->read_offset >= rx_ring->page_size) {
1492                                /* mark this page clean */
1493                                u16 reg_addr;
1494                                u8  rx_using;
1495
1496                                rx_page->read_offset =
1497                                        *(rx_page->write_offset_addr) = 0;
1498                                rx_using = rx_page_desc[que].rx_using;
1499                                reg_addr =
1500                                        atl1e_rx_page_vld_regs[que][rx_using];
1501                                AT_WRITE_REGB(&adapter->hw, reg_addr, 1);
1502                                rx_page_desc[que].rx_using ^= 1;
1503                                rx_page = atl1e_get_rx_page(adapter, que);
1504                        }
1505                        write_offset = *(rx_page->write_offset_addr);
1506                } while (rx_page->read_offset < write_offset);
1507        }
1508
1509        return;
1510
1511fatal_err:
1512        if (!test_bit(__AT_DOWN, &adapter->flags))
1513                schedule_work(&adapter->reset_task);
1514}
1515
1516/**
1517 * atl1e_clean - NAPI Rx polling callback
1518 */
1519static int atl1e_clean(struct napi_struct *napi, int budget)
1520{
1521        struct atl1e_adapter *adapter =
1522                        container_of(napi, struct atl1e_adapter, napi);
1523        u32 imr_data;
1524        int work_done = 0;
1525
1526        /* Keep link state information with original netdev */
1527        if (!netif_carrier_ok(adapter->netdev))
1528                goto quit_polling;
1529
1530        atl1e_clean_rx_irq(adapter, 0, &work_done, budget);
1531
1532        /* If no Tx and not enough Rx work done, exit the polling mode */
1533        if (work_done < budget) {
1534quit_polling:
1535                napi_complete(napi);
1536                imr_data = AT_READ_REG(&adapter->hw, REG_IMR);
1537                AT_WRITE_REG(&adapter->hw, REG_IMR, imr_data | ISR_RX_EVENT);
1538                /* test debug */
1539                if (test_bit(__AT_DOWN, &adapter->flags)) {
1540                        atomic_dec(&adapter->irq_sem);
1541                        netdev_err(adapter->netdev,
1542                                   "atl1e_clean is called when AT_DOWN\n");
1543                }
1544                /* reenable RX intr */
1545                /*atl1e_irq_enable(adapter); */
1546
1547        }
1548        return work_done;
1549}
1550
1551#ifdef CONFIG_NET_POLL_CONTROLLER
1552
1553/*
1554 * Polling 'interrupt' - used by things like netconsole to send skbs
1555 * without having to re-enable interrupts. It's not called while
1556 * the interrupt routine is executing.
1557 */
1558static void atl1e_netpoll(struct net_device *netdev)
1559{
1560        struct atl1e_adapter *adapter = netdev_priv(netdev);
1561
1562        disable_irq(adapter->pdev->irq);
1563        atl1e_intr(adapter->pdev->irq, netdev);
1564        enable_irq(adapter->pdev->irq);
1565}
1566#endif
1567
1568static inline u16 atl1e_tpd_avail(struct atl1e_adapter *adapter)
1569{
1570        struct atl1e_tx_ring *tx_ring = &adapter->tx_ring;
1571        u16 next_to_use = 0;
1572        u16 next_to_clean = 0;
1573
1574        next_to_clean = atomic_read(&tx_ring->next_to_clean);
1575        next_to_use   = tx_ring->next_to_use;
1576
1577        return (u16)(next_to_clean > next_to_use) ?
1578                (next_to_clean - next_to_use - 1) :
1579                (tx_ring->count + next_to_clean - next_to_use - 1);
1580}
1581
1582/*
1583 * get next usable tpd
1584 * Note: should call atl1e_tdp_avail to make sure
1585 * there is enough tpd to use
1586 */
1587static struct atl1e_tpd_desc *atl1e_get_tpd(struct atl1e_adapter *adapter)
1588{
1589        struct atl1e_tx_ring *tx_ring = &adapter->tx_ring;
1590        u16 next_to_use = 0;
1591
1592        next_to_use = tx_ring->next_to_use;
1593        if (++tx_ring->next_to_use == tx_ring->count)
1594                tx_ring->next_to_use = 0;
1595
1596        memset(&tx_ring->desc[next_to_use], 0, sizeof(struct atl1e_tpd_desc));
1597        return &tx_ring->desc[next_to_use];
1598}
1599
1600static struct atl1e_tx_buffer *
1601atl1e_get_tx_buffer(struct atl1e_adapter *adapter, struct atl1e_tpd_desc *tpd)
1602{
1603        struct atl1e_tx_ring *tx_ring = &adapter->tx_ring;
1604
1605        return &tx_ring->tx_buffer[tpd - tx_ring->desc];
1606}
1607
1608/* Calculate the transmit packet descript needed*/
1609static u16 atl1e_cal_tdp_req(const struct sk_buff *skb)
1610{
1611        int i = 0;
1612        u16 tpd_req = 1;
1613        u16 fg_size = 0;
1614        u16 proto_hdr_len = 0;
1615
1616        for (i = 0; i < skb_shinfo(skb)->nr_frags; i++) {
1617                fg_size = skb_frag_size(&skb_shinfo(skb)->frags[i]);
1618                tpd_req += ((fg_size + MAX_TX_BUF_LEN - 1) >> MAX_TX_BUF_SHIFT);
1619        }
1620
1621        if (skb_is_gso(skb)) {
1622                if (skb->protocol == htons(ETH_P_IP) ||
1623                   (skb_shinfo(skb)->gso_type == SKB_GSO_TCPV6)) {
1624                        proto_hdr_len = skb_transport_offset(skb) +
1625                                        tcp_hdrlen(skb);
1626                        if (proto_hdr_len < skb_headlen(skb)) {
1627                                tpd_req += ((skb_headlen(skb) - proto_hdr_len +
1628                                           MAX_TX_BUF_LEN - 1) >>
1629                                           MAX_TX_BUF_SHIFT);
1630                        }
1631                }
1632
1633        }
1634        return tpd_req;
1635}
1636
1637static int atl1e_tso_csum(struct atl1e_adapter *adapter,
1638                       struct sk_buff *skb, struct atl1e_tpd_desc *tpd)
1639{
1640        unsigned short offload_type;
1641        u8 hdr_len;
1642        u32 real_len;
1643
1644        if (skb_is_gso(skb)) {
1645                int err;
1646
1647                err = skb_cow_head(skb, 0);
1648                if (err < 0)
1649                        return err;
1650
1651                offload_type = skb_shinfo(skb)->gso_type;
1652
1653                if (offload_type & SKB_GSO_TCPV4) {
1654                        real_len = (((unsigned char *)ip_hdr(skb) - skb->data)
1655                                        + ntohs(ip_hdr(skb)->tot_len));
1656
1657                        if (real_len < skb->len)
1658                                pskb_trim(skb, real_len);
1659
1660                        hdr_len = (skb_transport_offset(skb) + tcp_hdrlen(skb));
1661                        if (unlikely(skb->len == hdr_len)) {
1662                                /* only xsum need */
1663                                netdev_warn(adapter->netdev,
1664                                            "IPV4 tso with zero data??\n");
1665                                goto check_sum;
1666                        } else {
1667                                ip_hdr(skb)->check = 0;
1668                                ip_hdr(skb)->tot_len = 0;
1669                                tcp_hdr(skb)->check = ~csum_tcpudp_magic(
1670                                                        ip_hdr(skb)->saddr,
1671                                                        ip_hdr(skb)->daddr,
1672                                                        0, IPPROTO_TCP, 0);
1673                                tpd->word3 |= (ip_hdr(skb)->ihl &
1674                                        TDP_V4_IPHL_MASK) <<
1675                                        TPD_V4_IPHL_SHIFT;
1676                                tpd->word3 |= ((tcp_hdrlen(skb) >> 2) &
1677                                        TPD_TCPHDRLEN_MASK) <<
1678                                        TPD_TCPHDRLEN_SHIFT;
1679                                tpd->word3 |= ((skb_shinfo(skb)->gso_size) &
1680                                        TPD_MSS_MASK) << TPD_MSS_SHIFT;
1681                                tpd->word3 |= 1 << TPD_SEGMENT_EN_SHIFT;
1682                        }
1683                        return 0;
1684                }
1685        }
1686
1687check_sum:
1688        if (likely(skb->ip_summed == CHECKSUM_PARTIAL)) {
1689                u8 css, cso;
1690
1691                cso = skb_checksum_start_offset(skb);
1692                if (unlikely(cso & 0x1)) {
1693                        netdev_err(adapter->netdev,
1694                                   "payload offset should not ant event number\n");
1695                        return -1;
1696                } else {
1697                        css = cso + skb->csum_offset;
1698                        tpd->word3 |= (cso & TPD_PLOADOFFSET_MASK) <<
1699                                        TPD_PLOADOFFSET_SHIFT;
1700                        tpd->word3 |= (css & TPD_CCSUMOFFSET_MASK) <<
1701                                        TPD_CCSUMOFFSET_SHIFT;
1702                        tpd->word3 |= 1 << TPD_CC_SEGMENT_EN_SHIFT;
1703                }
1704        }
1705
1706        return 0;
1707}
1708
1709static int atl1e_tx_map(struct atl1e_adapter *adapter,
1710                        struct sk_buff *skb, struct atl1e_tpd_desc *tpd)
1711{
1712        struct atl1e_tpd_desc *use_tpd = NULL;
1713        struct atl1e_tx_buffer *tx_buffer = NULL;
1714        u16 buf_len = skb_headlen(skb);
1715        u16 map_len = 0;
1716        u16 mapped_len = 0;
1717        u16 hdr_len = 0;
1718        u16 nr_frags;
1719        u16 f;
1720        int segment;
1721        int ring_start = adapter->tx_ring.next_to_use;
1722        int ring_end;
1723
1724        nr_frags = skb_shinfo(skb)->nr_frags;
1725        segment = (tpd->word3 >> TPD_SEGMENT_EN_SHIFT) & TPD_SEGMENT_EN_MASK;
1726        if (segment) {
1727                /* TSO */
1728                map_len = hdr_len = skb_transport_offset(skb) + tcp_hdrlen(skb);
1729                use_tpd = tpd;
1730
1731                tx_buffer = atl1e_get_tx_buffer(adapter, use_tpd);
1732                tx_buffer->length = map_len;
1733                tx_buffer->dma = pci_map_single(adapter->pdev,
1734                                        skb->data, hdr_len, PCI_DMA_TODEVICE);
1735                if (dma_mapping_error(&adapter->pdev->dev, tx_buffer->dma))
1736                        return -ENOSPC;
1737
1738                ATL1E_SET_PCIMAP_TYPE(tx_buffer, ATL1E_TX_PCIMAP_SINGLE);
1739                mapped_len += map_len;
1740                use_tpd->buffer_addr = cpu_to_le64(tx_buffer->dma);
1741                use_tpd->word2 = (use_tpd->word2 & (~TPD_BUFLEN_MASK)) |
1742                        ((cpu_to_le32(tx_buffer->length) &
1743                        TPD_BUFLEN_MASK) << TPD_BUFLEN_SHIFT);
1744        }
1745
1746        while (mapped_len < buf_len) {
1747                /* mapped_len == 0, means we should use the first tpd,
1748                   which is given by caller  */
1749                if (mapped_len == 0) {
1750                        use_tpd = tpd;
1751                } else {
1752                        use_tpd = atl1e_get_tpd(adapter);
1753                        memcpy(use_tpd, tpd, sizeof(struct atl1e_tpd_desc));
1754                }
1755                tx_buffer = atl1e_get_tx_buffer(adapter, use_tpd);
1756                tx_buffer->skb = NULL;
1757
1758                tx_buffer->length = map_len =
1759                        ((buf_len - mapped_len) >= MAX_TX_BUF_LEN) ?
1760                        MAX_TX_BUF_LEN : (buf_len - mapped_len);
1761                tx_buffer->dma =
1762                        pci_map_single(adapter->pdev, skb->data + mapped_len,
1763                                        map_len, PCI_DMA_TODEVICE);
1764
1765                if (dma_mapping_error(&adapter->pdev->dev, tx_buffer->dma)) {
1766                        /* We need to unwind the mappings we've done */
1767                        ring_end = adapter->tx_ring.next_to_use;
1768                        adapter->tx_ring.next_to_use = ring_start;
1769                        while (adapter->tx_ring.next_to_use != ring_end) {
1770                                tpd = atl1e_get_tpd(adapter);
1771                                tx_buffer = atl1e_get_tx_buffer(adapter, tpd);
1772                                pci_unmap_single(adapter->pdev, tx_buffer->dma,
1773                                                 tx_buffer->length, PCI_DMA_TODEVICE);
1774                        }
1775                        /* Reset the tx rings next pointer */
1776                        adapter->tx_ring.next_to_use = ring_start;
1777                        return -ENOSPC;
1778                }
1779
1780                ATL1E_SET_PCIMAP_TYPE(tx_buffer, ATL1E_TX_PCIMAP_SINGLE);
1781                mapped_len  += map_len;
1782                use_tpd->buffer_addr = cpu_to_le64(tx_buffer->dma);
1783                use_tpd->word2 = (use_tpd->word2 & (~TPD_BUFLEN_MASK)) |
1784                        ((cpu_to_le32(tx_buffer->length) &
1785                        TPD_BUFLEN_MASK) << TPD_BUFLEN_SHIFT);
1786        }
1787
1788        for (f = 0; f < nr_frags; f++) {
1789                const struct skb_frag_struct *frag;
1790                u16 i;
1791                u16 seg_num;
1792
1793                frag = &skb_shinfo(skb)->frags[f];
1794                buf_len = skb_frag_size(frag);
1795
1796                seg_num = (buf_len + MAX_TX_BUF_LEN - 1) / MAX_TX_BUF_LEN;
1797                for (i = 0; i < seg_num; i++) {
1798                        use_tpd = atl1e_get_tpd(adapter);
1799                        memcpy(use_tpd, tpd, sizeof(struct atl1e_tpd_desc));
1800
1801                        tx_buffer = atl1e_get_tx_buffer(adapter, use_tpd);
1802                        BUG_ON(tx_buffer->skb);
1803
1804                        tx_buffer->skb = NULL;
1805                        tx_buffer->length =
1806                                (buf_len > MAX_TX_BUF_LEN) ?
1807                                MAX_TX_BUF_LEN : buf_len;
1808                        buf_len -= tx_buffer->length;
1809
1810                        tx_buffer->dma = skb_frag_dma_map(&adapter->pdev->dev,
1811                                                          frag,
1812                                                          (i * MAX_TX_BUF_LEN),
1813                                                          tx_buffer->length,
1814                                                          DMA_TO_DEVICE);
1815
1816                        if (dma_mapping_error(&adapter->pdev->dev, tx_buffer->dma)) {
1817                                /* We need to unwind the mappings we've done */
1818                                ring_end = adapter->tx_ring.next_to_use;
1819                                adapter->tx_ring.next_to_use = ring_start;
1820                                while (adapter->tx_ring.next_to_use != ring_end) {
1821                                        tpd = atl1e_get_tpd(adapter);
1822                                        tx_buffer = atl1e_get_tx_buffer(adapter, tpd);
1823                                        dma_unmap_page(&adapter->pdev->dev, tx_buffer->dma,
1824                                                       tx_buffer->length, DMA_TO_DEVICE);
1825                                }
1826
1827                                /* Reset the ring next to use pointer */
1828                                adapter->tx_ring.next_to_use = ring_start;
1829                                return -ENOSPC;
1830                        }
1831
1832                        ATL1E_SET_PCIMAP_TYPE(tx_buffer, ATL1E_TX_PCIMAP_PAGE);
1833                        use_tpd->buffer_addr = cpu_to_le64(tx_buffer->dma);
1834                        use_tpd->word2 = (use_tpd->word2 & (~TPD_BUFLEN_MASK)) |
1835                                        ((cpu_to_le32(tx_buffer->length) &
1836                                        TPD_BUFLEN_MASK) << TPD_BUFLEN_SHIFT);
1837                }
1838        }
1839
1840        if ((tpd->word3 >> TPD_SEGMENT_EN_SHIFT) & TPD_SEGMENT_EN_MASK)
1841                /* note this one is a tcp header */
1842                tpd->word3 |= 1 << TPD_HDRFLAG_SHIFT;
1843        /* The last tpd */
1844
1845        use_tpd->word3 |= 1 << TPD_EOP_SHIFT;
1846        /* The last buffer info contain the skb address,
1847           so it will be free after unmap */
1848        tx_buffer->skb = skb;
1849        return 0;
1850}
1851
1852static void atl1e_tx_queue(struct atl1e_adapter *adapter, u16 count,
1853                           struct atl1e_tpd_desc *tpd)
1854{
1855        struct atl1e_tx_ring *tx_ring = &adapter->tx_ring;
1856        /* Force memory writes to complete before letting h/w
1857         * know there are new descriptors to fetch.  (Only
1858         * applicable for weak-ordered memory model archs,
1859         * such as IA-64). */
1860        wmb();
1861        AT_WRITE_REG(&adapter->hw, REG_MB_TPD_PROD_IDX, tx_ring->next_to_use);
1862}
1863
1864static netdev_tx_t atl1e_xmit_frame(struct sk_buff *skb,
1865                                          struct net_device *netdev)
1866{
1867        struct atl1e_adapter *adapter = netdev_priv(netdev);
1868        u16 tpd_req = 1;
1869        struct atl1e_tpd_desc *tpd;
1870
1871        if (test_bit(__AT_DOWN, &adapter->flags)) {
1872                dev_kfree_skb_any(skb);
1873                return NETDEV_TX_OK;
1874        }
1875
1876        if (unlikely(skb->len <= 0)) {
1877                dev_kfree_skb_any(skb);
1878                return NETDEV_TX_OK;
1879        }
1880        tpd_req = atl1e_cal_tdp_req(skb);
1881
1882        if (atl1e_tpd_avail(adapter) < tpd_req) {
1883                /* no enough descriptor, just stop queue */
1884                netif_stop_queue(netdev);
1885                return NETDEV_TX_BUSY;
1886        }
1887
1888        tpd = atl1e_get_tpd(adapter);
1889
1890        if (skb_vlan_tag_present(skb)) {
1891                u16 vlan_tag = skb_vlan_tag_get(skb);
1892                u16 atl1e_vlan_tag;
1893
1894                tpd->word3 |= 1 << TPD_INS_VL_TAG_SHIFT;
1895                AT_VLAN_TAG_TO_TPD_TAG(vlan_tag, atl1e_vlan_tag);
1896                tpd->word2 |= (atl1e_vlan_tag & TPD_VLANTAG_MASK) <<
1897                                TPD_VLAN_SHIFT;
1898        }
1899
1900        if (skb->protocol == htons(ETH_P_8021Q))
1901                tpd->word3 |= 1 << TPD_VL_TAGGED_SHIFT;
1902
1903        if (skb_network_offset(skb) != ETH_HLEN)
1904                tpd->word3 |= 1 << TPD_ETHTYPE_SHIFT; /* 802.3 frame */
1905
1906        /* do TSO and check sum */
1907        if (atl1e_tso_csum(adapter, skb, tpd) != 0) {
1908                dev_kfree_skb_any(skb);
1909                return NETDEV_TX_OK;
1910        }
1911
1912        if (atl1e_tx_map(adapter, skb, tpd)) {
1913                dev_kfree_skb_any(skb);
1914                goto out;
1915        }
1916
1917        atl1e_tx_queue(adapter, tpd_req, tpd);
1918out:
1919        return NETDEV_TX_OK;
1920}
1921
1922static void atl1e_free_irq(struct atl1e_adapter *adapter)
1923{
1924        struct net_device *netdev = adapter->netdev;
1925
1926        free_irq(adapter->pdev->irq, netdev);
1927}
1928
1929static int atl1e_request_irq(struct atl1e_adapter *adapter)
1930{
1931        struct pci_dev    *pdev   = adapter->pdev;
1932        struct net_device *netdev = adapter->netdev;
1933        int err = 0;
1934
1935        err = request_irq(pdev->irq, atl1e_intr, IRQF_SHARED, netdev->name,
1936                          netdev);
1937        if (err) {
1938                netdev_dbg(adapter->netdev,
1939                           "Unable to allocate interrupt Error: %d\n", err);
1940                return err;
1941        }
1942        netdev_dbg(netdev, "atl1e_request_irq OK\n");
1943        return err;
1944}
1945
1946int atl1e_up(struct atl1e_adapter *adapter)
1947{
1948        struct net_device *netdev = adapter->netdev;
1949        int err = 0;
1950        u32 val;
1951
1952        /* hardware has been reset, we need to reload some things */
1953        err = atl1e_init_hw(&adapter->hw);
1954        if (err) {
1955                err = -EIO;
1956                return err;
1957        }
1958        atl1e_init_ring_ptrs(adapter);
1959        atl1e_set_multi(netdev);
1960        atl1e_restore_vlan(adapter);
1961
1962        if (atl1e_configure(adapter)) {
1963                err = -EIO;
1964                goto err_up;
1965        }
1966
1967        clear_bit(__AT_DOWN, &adapter->flags);
1968        napi_enable(&adapter->napi);
1969        atl1e_irq_enable(adapter);
1970        val = AT_READ_REG(&adapter->hw, REG_MASTER_CTRL);
1971        AT_WRITE_REG(&adapter->hw, REG_MASTER_CTRL,
1972                      val | MASTER_CTRL_MANUAL_INT);
1973
1974err_up:
1975        return err;
1976}
1977
1978void atl1e_down(struct atl1e_adapter *adapter)
1979{
1980        struct net_device *netdev = adapter->netdev;
1981
1982        /* signal that we're down so the interrupt handler does not
1983         * reschedule our watchdog timer */
1984        set_bit(__AT_DOWN, &adapter->flags);
1985
1986        netif_stop_queue(netdev);
1987
1988        /* reset MAC to disable all RX/TX */
1989        atl1e_reset_hw(&adapter->hw);
1990        msleep(1);
1991
1992        napi_disable(&adapter->napi);
1993        atl1e_del_timer(adapter);
1994        atl1e_irq_disable(adapter);
1995
1996        netif_carrier_off(netdev);
1997        adapter->link_speed = SPEED_0;
1998        adapter->link_duplex = -1;
1999        atl1e_clean_tx_ring(adapter);
2000        atl1e_clean_rx_ring(adapter);
2001}
2002
2003/**
2004 * atl1e_open - Called when a network interface is made active
2005 * @netdev: network interface device structure
2006 *
2007 * Returns 0 on success, negative value on failure
2008 *
2009 * The open entry point is called when a network interface is made
2010 * active by the system (IFF_UP).  At this point all resources needed
2011 * for transmit and receive operations are allocated, the interrupt
2012 * handler is registered with the OS, the watchdog timer is started,
2013 * and the stack is notified that the interface is ready.
2014 */
2015static int atl1e_open(struct net_device *netdev)
2016{
2017        struct atl1e_adapter *adapter = netdev_priv(netdev);
2018        int err;
2019
2020        /* disallow open during test */
2021        if (test_bit(__AT_TESTING, &adapter->flags))
2022                return -EBUSY;
2023
2024        /* allocate rx/tx dma buffer & descriptors */
2025        atl1e_init_ring_resources(adapter);
2026        err = atl1e_setup_ring_resources(adapter);
2027        if (unlikely(err))
2028                return err;
2029
2030        err = atl1e_request_irq(adapter);
2031        if (unlikely(err))
2032                goto err_req_irq;
2033
2034        err = atl1e_up(adapter);
2035        if (unlikely(err))
2036                goto err_up;
2037
2038        return 0;
2039
2040err_up:
2041        atl1e_free_irq(adapter);
2042err_req_irq:
2043        atl1e_free_ring_resources(adapter);
2044        atl1e_reset_hw(&adapter->hw);
2045
2046        return err;
2047}
2048
2049/**
2050 * atl1e_close - Disables a network interface
2051 * @netdev: network interface device structure
2052 *
2053 * Returns 0, this is not allowed to fail
2054 *
2055 * The close entry point is called when an interface is de-activated
2056 * by the OS.  The hardware is still under the drivers control, but
2057 * needs to be disabled.  A global MAC reset is issued to stop the
2058 * hardware, and all transmit and receive resources are freed.
2059 */
2060static int atl1e_close(struct net_device *netdev)
2061{
2062        struct atl1e_adapter *adapter = netdev_priv(netdev);
2063
2064        WARN_ON(test_bit(__AT_RESETTING, &adapter->flags));
2065        atl1e_down(adapter);
2066        atl1e_free_irq(adapter);
2067        atl1e_free_ring_resources(adapter);
2068
2069        return 0;
2070}
2071
2072static int atl1e_suspend(struct pci_dev *pdev, pm_message_t state)
2073{
2074        struct net_device *netdev = pci_get_drvdata(pdev);
2075        struct atl1e_adapter *adapter = netdev_priv(netdev);
2076        struct atl1e_hw *hw = &adapter->hw;
2077        u32 ctrl = 0;
2078        u32 mac_ctrl_data = 0;
2079        u32 wol_ctrl_data = 0;
2080        u16 mii_advertise_data = 0;
2081        u16 mii_bmsr_data = 0;
2082        u16 mii_intr_status_data = 0;
2083        u32 wufc = adapter->wol;
2084        u32 i;
2085#ifdef CONFIG_PM
2086        int retval = 0;
2087#endif
2088
2089        if (netif_running(netdev)) {
2090                WARN_ON(test_bit(__AT_RESETTING, &adapter->flags));
2091                atl1e_down(adapter);
2092        }
2093        netif_device_detach(netdev);
2094
2095#ifdef CONFIG_PM
2096        retval = pci_save_state(pdev);
2097        if (retval)
2098                return retval;
2099#endif
2100
2101        if (wufc) {
2102                /* get link status */
2103                atl1e_read_phy_reg(hw, MII_BMSR, &mii_bmsr_data);
2104                atl1e_read_phy_reg(hw, MII_BMSR, &mii_bmsr_data);
2105
2106                mii_advertise_data = ADVERTISE_10HALF;
2107
2108                if ((atl1e_write_phy_reg(hw, MII_CTRL1000, 0) != 0) ||
2109                    (atl1e_write_phy_reg(hw,
2110                           MII_ADVERTISE, mii_advertise_data) != 0) ||
2111                    (atl1e_phy_commit(hw)) != 0) {
2112                        netdev_dbg(adapter->netdev, "set phy register failed\n");
2113                        goto wol_dis;
2114                }
2115
2116                hw->phy_configured = false; /* re-init PHY when resume */
2117
2118                /* turn on magic packet wol */
2119                if (wufc & AT_WUFC_MAG)
2120                        wol_ctrl_data |= WOL_MAGIC_EN | WOL_MAGIC_PME_EN;
2121
2122                if (wufc & AT_WUFC_LNKC) {
2123                /* if orignal link status is link, just wait for retrive link */
2124                        if (mii_bmsr_data & BMSR_LSTATUS) {
2125                                for (i = 0; i < AT_SUSPEND_LINK_TIMEOUT; i++) {
2126                                        msleep(100);
2127                                        atl1e_read_phy_reg(hw, MII_BMSR,
2128                                                        &mii_bmsr_data);
2129                                        if (mii_bmsr_data & BMSR_LSTATUS)
2130                                                break;
2131                                }
2132
2133                                if ((mii_bmsr_data & BMSR_LSTATUS) == 0)
2134                                        netdev_dbg(adapter->netdev,
2135                                                   "Link may change when suspend\n");
2136                        }
2137                        wol_ctrl_data |=  WOL_LINK_CHG_EN | WOL_LINK_CHG_PME_EN;
2138                        /* only link up can wake up */
2139                        if (atl1e_write_phy_reg(hw, MII_INT_CTRL, 0x400) != 0) {
2140                                netdev_dbg(adapter->netdev,
2141                                           "read write phy register failed\n");
2142                                goto wol_dis;
2143                        }
2144                }
2145                /* clear phy interrupt */
2146                atl1e_read_phy_reg(hw, MII_INT_STATUS, &mii_intr_status_data);
2147                /* Config MAC Ctrl register */
2148                mac_ctrl_data = MAC_CTRL_RX_EN;
2149                /* set to 10/100M halt duplex */
2150                mac_ctrl_data |= MAC_CTRL_SPEED_10_100 << MAC_CTRL_SPEED_SHIFT;
2151                mac_ctrl_data |= (((u32)adapter->hw.preamble_len &
2152                                 MAC_CTRL_PRMLEN_MASK) <<
2153                                 MAC_CTRL_PRMLEN_SHIFT);
2154
2155                __atl1e_vlan_mode(netdev->features, &mac_ctrl_data);
2156
2157                /* magic packet maybe Broadcast&multicast&Unicast frame */
2158                if (wufc & AT_WUFC_MAG)
2159                        mac_ctrl_data |= MAC_CTRL_BC_EN;
2160
2161                netdev_dbg(adapter->netdev, "suspend MAC=0x%x\n",
2162                           mac_ctrl_data);
2163
2164                AT_WRITE_REG(hw, REG_WOL_CTRL, wol_ctrl_data);
2165                AT_WRITE_REG(hw, REG_MAC_CTRL, mac_ctrl_data);
2166                /* pcie patch */
2167                ctrl = AT_READ_REG(hw, REG_PCIE_PHYMISC);
2168                ctrl |= PCIE_PHYMISC_FORCE_RCV_DET;
2169                AT_WRITE_REG(hw, REG_PCIE_PHYMISC, ctrl);
2170                pci_enable_wake(pdev, pci_choose_state(pdev, state), 1);
2171                goto suspend_exit;
2172        }
2173wol_dis:
2174
2175        /* WOL disabled */
2176        AT_WRITE_REG(hw, REG_WOL_CTRL, 0);
2177
2178        /* pcie patch */
2179        ctrl = AT_READ_REG(hw, REG_PCIE_PHYMISC);
2180        ctrl |= PCIE_PHYMISC_FORCE_RCV_DET;
2181        AT_WRITE_REG(hw, REG_PCIE_PHYMISC, ctrl);
2182
2183        atl1e_force_ps(hw);
2184        hw->phy_configured = false; /* re-init PHY when resume */
2185
2186        pci_enable_wake(pdev, pci_choose_state(pdev, state), 0);
2187
2188suspend_exit:
2189
2190        if (netif_running(netdev))
2191                atl1e_free_irq(adapter);
2192
2193        pci_disable_device(pdev);
2194
2195        pci_set_power_state(pdev, pci_choose_state(pdev, state));
2196
2197        return 0;
2198}
2199
2200#ifdef CONFIG_PM
2201static int atl1e_resume(struct pci_dev *pdev)
2202{
2203        struct net_device *netdev = pci_get_drvdata(pdev);
2204        struct atl1e_adapter *adapter = netdev_priv(netdev);
2205        u32 err;
2206
2207        pci_set_power_state(pdev, PCI_D0);
2208        pci_restore_state(pdev);
2209
2210        err = pci_enable_device(pdev);
2211        if (err) {
2212                netdev_err(adapter->netdev,
2213                           "Cannot enable PCI device from suspend\n");
2214                return err;
2215        }
2216
2217        pci_set_master(pdev);
2218
2219        AT_READ_REG(&adapter->hw, REG_WOL_CTRL); /* clear WOL status */
2220
2221        pci_enable_wake(pdev, PCI_D3hot, 0);
2222        pci_enable_wake(pdev, PCI_D3cold, 0);
2223
2224        AT_WRITE_REG(&adapter->hw, REG_WOL_CTRL, 0);
2225
2226        if (netif_running(netdev)) {
2227                err = atl1e_request_irq(adapter);
2228                if (err)
2229                        return err;
2230        }
2231
2232        atl1e_reset_hw(&adapter->hw);
2233
2234        if (netif_running(netdev))
2235                atl1e_up(adapter);
2236
2237        netif_device_attach(netdev);
2238
2239        return 0;
2240}
2241#endif
2242
2243static void atl1e_shutdown(struct pci_dev *pdev)
2244{
2245        atl1e_suspend(pdev, PMSG_SUSPEND);
2246}
2247
2248static const struct net_device_ops atl1e_netdev_ops = {
2249        .ndo_open               = atl1e_open,
2250        .ndo_stop               = atl1e_close,
2251        .ndo_start_xmit         = atl1e_xmit_frame,
2252        .ndo_get_stats          = atl1e_get_stats,
2253        .ndo_set_rx_mode        = atl1e_set_multi,
2254        .ndo_validate_addr      = eth_validate_addr,
2255        .ndo_set_mac_address    = atl1e_set_mac_addr,
2256        .ndo_fix_features       = atl1e_fix_features,
2257        .ndo_set_features       = atl1e_set_features,
2258        .ndo_change_mtu         = atl1e_change_mtu,
2259        .ndo_do_ioctl           = atl1e_ioctl,
2260        .ndo_tx_timeout         = atl1e_tx_timeout,
2261#ifdef CONFIG_NET_POLL_CONTROLLER
2262        .ndo_poll_controller    = atl1e_netpoll,
2263#endif
2264
2265};
2266
2267static int atl1e_init_netdev(struct net_device *netdev, struct pci_dev *pdev)
2268{
2269        SET_NETDEV_DEV(netdev, &pdev->dev);
2270        pci_set_drvdata(pdev, netdev);
2271
2272        netdev->netdev_ops = &atl1e_netdev_ops;
2273
2274        netdev->watchdog_timeo = AT_TX_WATCHDOG;
2275        atl1e_set_ethtool_ops(netdev);
2276
2277        netdev->hw_features = NETIF_F_SG | NETIF_F_HW_CSUM | NETIF_F_TSO |
2278                              NETIF_F_HW_VLAN_CTAG_RX;
2279        netdev->features = netdev->hw_features | NETIF_F_HW_VLAN_CTAG_TX;
2280        /* not enabled by default */
2281        netdev->hw_features |= NETIF_F_RXALL | NETIF_F_RXFCS;
2282        return 0;
2283}
2284
2285/**
2286 * atl1e_probe - Device Initialization Routine
2287 * @pdev: PCI device information struct
2288 * @ent: entry in atl1e_pci_tbl
2289 *
2290 * Returns 0 on success, negative on failure
2291 *
2292 * atl1e_probe initializes an adapter identified by a pci_dev structure.
2293 * The OS initialization, configuring of the adapter private structure,
2294 * and a hardware reset occur.
2295 */
2296static int atl1e_probe(struct pci_dev *pdev, const struct pci_device_id *ent)
2297{
2298        struct net_device *netdev;
2299        struct atl1e_adapter *adapter = NULL;
2300        static int cards_found;
2301
2302        int err = 0;
2303
2304        err = pci_enable_device(pdev);
2305        if (err) {
2306                dev_err(&pdev->dev, "cannot enable PCI device\n");
2307                return err;
2308        }
2309
2310        /*
2311         * The atl1e chip can DMA to 64-bit addresses, but it uses a single
2312         * shared register for the high 32 bits, so only a single, aligned,
2313         * 4 GB physical address range can be used at a time.
2314         *
2315         * Supporting 64-bit DMA on this hardware is more trouble than it's
2316         * worth.  It is far easier to limit to 32-bit DMA than update
2317         * various kernel subsystems to support the mechanics required by a
2318         * fixed-high-32-bit system.
2319         */
2320        if ((pci_set_dma_mask(pdev, DMA_BIT_MASK(32)) != 0) ||
2321            (pci_set_consistent_dma_mask(pdev, DMA_BIT_MASK(32)) != 0)) {
2322                dev_err(&pdev->dev, "No usable DMA configuration,aborting\n");
2323                goto err_dma;
2324        }
2325
2326        err = pci_request_regions(pdev, atl1e_driver_name);
2327        if (err) {
2328                dev_err(&pdev->dev, "cannot obtain PCI resources\n");
2329                goto err_pci_reg;
2330        }
2331
2332        pci_set_master(pdev);
2333
2334        netdev = alloc_etherdev(sizeof(struct atl1e_adapter));
2335        if (netdev == NULL) {
2336                err = -ENOMEM;
2337                goto err_alloc_etherdev;
2338        }
2339
2340        err = atl1e_init_netdev(netdev, pdev);
2341        if (err) {
2342                netdev_err(netdev, "init netdevice failed\n");
2343                goto err_init_netdev;
2344        }
2345        adapter = netdev_priv(netdev);
2346        adapter->bd_number = cards_found;
2347        adapter->netdev = netdev;
2348        adapter->pdev = pdev;
2349        adapter->hw.adapter = adapter;
2350        adapter->hw.hw_addr = pci_iomap(pdev, BAR_0, 0);
2351        if (!adapter->hw.hw_addr) {
2352                err = -EIO;
2353                netdev_err(netdev, "cannot map device registers\n");
2354                goto err_ioremap;
2355        }
2356
2357        /* init mii data */
2358        adapter->mii.dev = netdev;
2359        adapter->mii.mdio_read  = atl1e_mdio_read;
2360        adapter->mii.mdio_write = atl1e_mdio_write;
2361        adapter->mii.phy_id_mask = 0x1f;
2362        adapter->mii.reg_num_mask = MDIO_REG_ADDR_MASK;
2363
2364        netif_napi_add(netdev, &adapter->napi, atl1e_clean, 64);
2365
2366        setup_timer(&adapter->phy_config_timer, atl1e_phy_config,
2367                    (unsigned long)adapter);
2368
2369        /* get user settings */
2370        atl1e_check_options(adapter);
2371        /*
2372         * Mark all PCI regions associated with PCI device
2373         * pdev as being reserved by owner atl1e_driver_name
2374         * Enables bus-mastering on the device and calls
2375         * pcibios_set_master to do the needed arch specific settings
2376         */
2377        atl1e_setup_pcicmd(pdev);
2378        /* setup the private structure */
2379        err = atl1e_sw_init(adapter);
2380        if (err) {
2381                netdev_err(netdev, "net device private data init failed\n");
2382                goto err_sw_init;
2383        }
2384
2385        /* Init GPHY as early as possible due to power saving issue  */
2386        atl1e_phy_init(&adapter->hw);
2387        /* reset the controller to
2388         * put the device in a known good starting state */
2389        err = atl1e_reset_hw(&adapter->hw);
2390        if (err) {
2391                err = -EIO;
2392                goto err_reset;
2393        }
2394
2395        if (atl1e_read_mac_addr(&adapter->hw) != 0) {
2396                err = -EIO;
2397                netdev_err(netdev, "get mac address failed\n");
2398                goto err_eeprom;
2399        }
2400
2401        memcpy(netdev->dev_addr, adapter->hw.mac_addr, netdev->addr_len);
2402        netdev_dbg(netdev, "mac address : %pM\n", adapter->hw.mac_addr);
2403
2404        INIT_WORK(&adapter->reset_task, atl1e_reset_task);
2405        INIT_WORK(&adapter->link_chg_task, atl1e_link_chg_task);
2406        netif_set_gso_max_size(netdev, MAX_TSO_SEG_SIZE);
2407        err = register_netdev(netdev);
2408        if (err) {
2409                netdev_err(netdev, "register netdevice failed\n");
2410                goto err_register;
2411        }
2412
2413        /* assume we have no link for now */
2414        netif_stop_queue(netdev);
2415        netif_carrier_off(netdev);
2416
2417        cards_found++;
2418
2419        return 0;
2420
2421err_reset:
2422err_register:
2423err_sw_init:
2424err_eeprom:
2425        pci_iounmap(pdev, adapter->hw.hw_addr);
2426err_init_netdev:
2427err_ioremap:
2428        free_netdev(netdev);
2429err_alloc_etherdev:
2430        pci_release_regions(pdev);
2431err_pci_reg:
2432err_dma:
2433        pci_disable_device(pdev);
2434        return err;
2435}
2436
2437/**
2438 * atl1e_remove - Device Removal Routine
2439 * @pdev: PCI device information struct
2440 *
2441 * atl1e_remove is called by the PCI subsystem to alert the driver
2442 * that it should release a PCI device.  The could be caused by a
2443 * Hot-Plug event, or because the driver is going to be removed from
2444 * memory.
2445 */
2446static void atl1e_remove(struct pci_dev *pdev)
2447{
2448        struct net_device *netdev = pci_get_drvdata(pdev);
2449        struct atl1e_adapter *adapter = netdev_priv(netdev);
2450
2451        /*
2452         * flush_scheduled work may reschedule our watchdog task, so
2453         * explicitly disable watchdog tasks from being rescheduled
2454         */
2455        set_bit(__AT_DOWN, &adapter->flags);
2456
2457        atl1e_del_timer(adapter);
2458        atl1e_cancel_work(adapter);
2459
2460        unregister_netdev(netdev);
2461        atl1e_free_ring_resources(adapter);
2462        atl1e_force_ps(&adapter->hw);
2463        pci_iounmap(pdev, adapter->hw.hw_addr);
2464        pci_release_regions(pdev);
2465        free_netdev(netdev);
2466        pci_disable_device(pdev);
2467}
2468
2469/**
2470 * atl1e_io_error_detected - called when PCI error is detected
2471 * @pdev: Pointer to PCI device
2472 * @state: The current pci connection state
2473 *
2474 * This function is called after a PCI bus error affecting
2475 * this device has been detected.
2476 */
2477static pci_ers_result_t
2478atl1e_io_error_detected(struct pci_dev *pdev, pci_channel_state_t state)
2479{
2480        struct net_device *netdev = pci_get_drvdata(pdev);
2481        struct atl1e_adapter *adapter = netdev_priv(netdev);
2482
2483        netif_device_detach(netdev);
2484
2485        if (state == pci_channel_io_perm_failure)
2486                return PCI_ERS_RESULT_DISCONNECT;
2487
2488        if (netif_running(netdev))
2489                atl1e_down(adapter);
2490
2491        pci_disable_device(pdev);
2492
2493        /* Request a slot slot reset. */
2494        return PCI_ERS_RESULT_NEED_RESET;
2495}
2496
2497/**
2498 * atl1e_io_slot_reset - called after the pci bus has been reset.
2499 * @pdev: Pointer to PCI device
2500 *
2501 * Restart the card from scratch, as if from a cold-boot. Implementation
2502 * resembles the first-half of the e1000_resume routine.
2503 */
2504static pci_ers_result_t atl1e_io_slot_reset(struct pci_dev *pdev)
2505{
2506        struct net_device *netdev = pci_get_drvdata(pdev);
2507        struct atl1e_adapter *adapter = netdev_priv(netdev);
2508
2509        if (pci_enable_device(pdev)) {
2510                netdev_err(adapter->netdev,
2511                           "Cannot re-enable PCI device after reset\n");
2512                return PCI_ERS_RESULT_DISCONNECT;
2513        }
2514        pci_set_master(pdev);
2515
2516        pci_enable_wake(pdev, PCI_D3hot, 0);
2517        pci_enable_wake(pdev, PCI_D3cold, 0);
2518
2519        atl1e_reset_hw(&adapter->hw);
2520
2521        return PCI_ERS_RESULT_RECOVERED;
2522}
2523
2524/**
2525 * atl1e_io_resume - called when traffic can start flowing again.
2526 * @pdev: Pointer to PCI device
2527 *
2528 * This callback is called when the error recovery driver tells us that
2529 * its OK to resume normal operation. Implementation resembles the
2530 * second-half of the atl1e_resume routine.
2531 */
2532static void atl1e_io_resume(struct pci_dev *pdev)
2533{
2534        struct net_device *netdev = pci_get_drvdata(pdev);
2535        struct atl1e_adapter *adapter = netdev_priv(netdev);
2536
2537        if (netif_running(netdev)) {
2538                if (atl1e_up(adapter)) {
2539                        netdev_err(adapter->netdev,
2540                                   "can't bring device back up after reset\n");
2541                        return;
2542                }
2543        }
2544
2545        netif_device_attach(netdev);
2546}
2547
2548static const struct pci_error_handlers atl1e_err_handler = {
2549        .error_detected = atl1e_io_error_detected,
2550        .slot_reset = atl1e_io_slot_reset,
2551        .resume = atl1e_io_resume,
2552};
2553
2554static struct pci_driver atl1e_driver = {
2555        .name     = atl1e_driver_name,
2556        .id_table = atl1e_pci_tbl,
2557        .probe    = atl1e_probe,
2558        .remove   = atl1e_remove,
2559        /* Power Management Hooks */
2560#ifdef CONFIG_PM
2561        .suspend  = atl1e_suspend,
2562        .resume   = atl1e_resume,
2563#endif
2564        .shutdown = atl1e_shutdown,
2565        .err_handler = &atl1e_err_handler
2566};
2567
2568module_pci_driver(atl1e_driver);
2569