linux/drivers/net/ehea/ehea_main.c
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   1/*
   2 *  linux/drivers/net/ehea/ehea_main.c
   3 *
   4 *  eHEA ethernet device driver for IBM eServer System p
   5 *
   6 *  (C) Copyright IBM Corp. 2006
   7 *
   8 *  Authors:
   9 *       Christoph Raisch <raisch@de.ibm.com>
  10 *       Jan-Bernd Themann <themann@de.ibm.com>
  11 *       Thomas Klein <tklein@de.ibm.com>
  12 *
  13 *
  14 * This program is free software; you can redistribute it and/or modify
  15 * it under the terms of the GNU General Public License as published by
  16 * the Free Software Foundation; either version 2, or (at your option)
  17 * any later version.
  18 *
  19 * This program is distributed in the hope that it will be useful,
  20 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  21 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  22 * GNU General Public License for more details.
  23 *
  24 * You should have received a copy of the GNU General Public License
  25 * along with this program; if not, write to the Free Software
  26 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  27 */
  28
  29#include <linux/in.h>
  30#include <linux/ip.h>
  31#include <linux/tcp.h>
  32#include <linux/udp.h>
  33#include <linux/if.h>
  34#include <linux/list.h>
  35#include <linux/if_ether.h>
  36#include <linux/notifier.h>
  37#include <linux/reboot.h>
  38#include <asm/kexec.h>
  39
  40#include <net/ip.h>
  41
  42#include "ehea.h"
  43#include "ehea_qmr.h"
  44#include "ehea_phyp.h"
  45
  46
  47MODULE_LICENSE("GPL");
  48MODULE_AUTHOR("Christoph Raisch <raisch@de.ibm.com>");
  49MODULE_DESCRIPTION("IBM eServer HEA Driver");
  50MODULE_VERSION(DRV_VERSION);
  51
  52
  53static int msg_level = -1;
  54static int rq1_entries = EHEA_DEF_ENTRIES_RQ1;
  55static int rq2_entries = EHEA_DEF_ENTRIES_RQ2;
  56static int rq3_entries = EHEA_DEF_ENTRIES_RQ3;
  57static int sq_entries = EHEA_DEF_ENTRIES_SQ;
  58static int use_mcs;
  59static int use_lro;
  60static int lro_max_aggr = EHEA_LRO_MAX_AGGR;
  61static int num_tx_qps = EHEA_NUM_TX_QP;
  62static int prop_carrier_state;
  63
  64module_param(msg_level, int, 0);
  65module_param(rq1_entries, int, 0);
  66module_param(rq2_entries, int, 0);
  67module_param(rq3_entries, int, 0);
  68module_param(sq_entries, int, 0);
  69module_param(prop_carrier_state, int, 0);
  70module_param(use_mcs, int, 0);
  71module_param(use_lro, int, 0);
  72module_param(lro_max_aggr, int, 0);
  73module_param(num_tx_qps, int, 0);
  74
  75MODULE_PARM_DESC(num_tx_qps, "Number of TX-QPS");
  76MODULE_PARM_DESC(msg_level, "msg_level");
  77MODULE_PARM_DESC(prop_carrier_state, "Propagate carrier state of physical "
  78                 "port to stack. 1:yes, 0:no.  Default = 0 ");
  79MODULE_PARM_DESC(rq3_entries, "Number of entries for Receive Queue 3 "
  80                 "[2^x - 1], x = [6..14]. Default = "
  81                 __MODULE_STRING(EHEA_DEF_ENTRIES_RQ3) ")");
  82MODULE_PARM_DESC(rq2_entries, "Number of entries for Receive Queue 2 "
  83                 "[2^x - 1], x = [6..14]. Default = "
  84                 __MODULE_STRING(EHEA_DEF_ENTRIES_RQ2) ")");
  85MODULE_PARM_DESC(rq1_entries, "Number of entries for Receive Queue 1 "
  86                 "[2^x - 1], x = [6..14]. Default = "
  87                 __MODULE_STRING(EHEA_DEF_ENTRIES_RQ1) ")");
  88MODULE_PARM_DESC(sq_entries, " Number of entries for the Send Queue  "
  89                 "[2^x - 1], x = [6..14]. Default = "
  90                 __MODULE_STRING(EHEA_DEF_ENTRIES_SQ) ")");
  91MODULE_PARM_DESC(use_mcs, " 0:NAPI, 1:Multiple receive queues, Default = 0 ");
  92
  93MODULE_PARM_DESC(lro_max_aggr, " LRO: Max packets to be aggregated. Default = "
  94                 __MODULE_STRING(EHEA_LRO_MAX_AGGR));
  95MODULE_PARM_DESC(use_lro, " Large Receive Offload, 1: enable, 0: disable, "
  96                 "Default = 0");
  97
  98static int port_name_cnt;
  99static LIST_HEAD(adapter_list);
 100u64 ehea_driver_flags;
 101struct work_struct ehea_rereg_mr_task;
 102struct semaphore dlpar_mem_lock;
 103struct ehea_fw_handle_array ehea_fw_handles;
 104struct ehea_bcmc_reg_array ehea_bcmc_regs;
 105
 106
 107static int __devinit ehea_probe_adapter(struct of_device *dev,
 108                                        const struct of_device_id *id);
 109
 110static int __devexit ehea_remove(struct of_device *dev);
 111
 112static struct of_device_id ehea_device_table[] = {
 113        {
 114                .name = "lhea",
 115                .compatible = "IBM,lhea",
 116        },
 117        {},
 118};
 119
 120static struct of_platform_driver ehea_driver = {
 121        .name = "ehea",
 122        .match_table = ehea_device_table,
 123        .probe = ehea_probe_adapter,
 124        .remove = ehea_remove,
 125};
 126
 127void ehea_dump(void *adr, int len, char *msg)
 128{
 129        int x;
 130        unsigned char *deb = adr;
 131        for (x = 0; x < len; x += 16) {
 132                printk(DRV_NAME " %s adr=%p ofs=%04x %016lx %016lx\n", msg,
 133                          deb, x, *((u64 *)&deb[0]), *((u64 *)&deb[8]));
 134                deb += 16;
 135        }
 136}
 137
 138static void ehea_update_firmware_handles(void)
 139{
 140        struct ehea_fw_handle_entry *arr = NULL;
 141        struct ehea_adapter *adapter;
 142        int num_adapters = 0;
 143        int num_ports = 0;
 144        int num_portres = 0;
 145        int i = 0;
 146        int num_fw_handles, k, l;
 147
 148        /* Determine number of handles */
 149        list_for_each_entry(adapter, &adapter_list, list) {
 150                num_adapters++;
 151
 152                for (k = 0; k < EHEA_MAX_PORTS; k++) {
 153                        struct ehea_port *port = adapter->port[k];
 154
 155                        if (!port || (port->state != EHEA_PORT_UP))
 156                                continue;
 157
 158                        num_ports++;
 159                        num_portres += port->num_def_qps + port->num_add_tx_qps;
 160                }
 161        }
 162
 163        num_fw_handles = num_adapters * EHEA_NUM_ADAPTER_FW_HANDLES +
 164                         num_ports * EHEA_NUM_PORT_FW_HANDLES +
 165                         num_portres * EHEA_NUM_PORTRES_FW_HANDLES;
 166
 167        if (num_fw_handles) {
 168                arr = kzalloc(num_fw_handles * sizeof(*arr), GFP_KERNEL);
 169                if (!arr)
 170                        return;  /* Keep the existing array */
 171        } else
 172                goto out_update;
 173
 174        list_for_each_entry(adapter, &adapter_list, list) {
 175                for (k = 0; k < EHEA_MAX_PORTS; k++) {
 176                        struct ehea_port *port = adapter->port[k];
 177
 178                        if (!port || (port->state != EHEA_PORT_UP))
 179                                continue;
 180
 181                        for (l = 0;
 182                             l < port->num_def_qps + port->num_add_tx_qps;
 183                             l++) {
 184                                struct ehea_port_res *pr = &port->port_res[l];
 185
 186                                arr[i].adh = adapter->handle;
 187                                arr[i++].fwh = pr->qp->fw_handle;
 188                                arr[i].adh = adapter->handle;
 189                                arr[i++].fwh = pr->send_cq->fw_handle;
 190                                arr[i].adh = adapter->handle;
 191                                arr[i++].fwh = pr->recv_cq->fw_handle;
 192                                arr[i].adh = adapter->handle;
 193                                arr[i++].fwh = pr->eq->fw_handle;
 194                                arr[i].adh = adapter->handle;
 195                                arr[i++].fwh = pr->send_mr.handle;
 196                                arr[i].adh = adapter->handle;
 197                                arr[i++].fwh = pr->recv_mr.handle;
 198                        }
 199                        arr[i].adh = adapter->handle;
 200                        arr[i++].fwh = port->qp_eq->fw_handle;
 201                }
 202
 203                arr[i].adh = adapter->handle;
 204                arr[i++].fwh = adapter->neq->fw_handle;
 205
 206                if (adapter->mr.handle) {
 207                        arr[i].adh = adapter->handle;
 208                        arr[i++].fwh = adapter->mr.handle;
 209                }
 210        }
 211
 212out_update:
 213        kfree(ehea_fw_handles.arr);
 214        ehea_fw_handles.arr = arr;
 215        ehea_fw_handles.num_entries = i;
 216}
 217
 218static void ehea_update_bcmc_registrations(void)
 219{
 220        struct ehea_bcmc_reg_entry *arr = NULL;
 221        struct ehea_adapter *adapter;
 222        struct ehea_mc_list *mc_entry;
 223        int num_registrations = 0;
 224        int i = 0;
 225        int k;
 226
 227        /* Determine number of registrations */
 228        list_for_each_entry(adapter, &adapter_list, list)
 229                for (k = 0; k < EHEA_MAX_PORTS; k++) {
 230                        struct ehea_port *port = adapter->port[k];
 231
 232                        if (!port || (port->state != EHEA_PORT_UP))
 233                                continue;
 234
 235                        num_registrations += 2; /* Broadcast registrations */
 236
 237                        list_for_each_entry(mc_entry, &port->mc_list->list,list)
 238                                num_registrations += 2;
 239                }
 240
 241        if (num_registrations) {
 242                arr = kzalloc(num_registrations * sizeof(*arr), GFP_KERNEL);
 243                if (!arr)
 244                        return;  /* Keep the existing array */
 245        } else
 246                goto out_update;
 247
 248        list_for_each_entry(adapter, &adapter_list, list) {
 249                for (k = 0; k < EHEA_MAX_PORTS; k++) {
 250                        struct ehea_port *port = adapter->port[k];
 251
 252                        if (!port || (port->state != EHEA_PORT_UP))
 253                                continue;
 254
 255                        arr[i].adh = adapter->handle;
 256                        arr[i].port_id = port->logical_port_id;
 257                        arr[i].reg_type = EHEA_BCMC_BROADCAST |
 258                                          EHEA_BCMC_UNTAGGED;
 259                        arr[i++].macaddr = port->mac_addr;
 260
 261                        arr[i].adh = adapter->handle;
 262                        arr[i].port_id = port->logical_port_id;
 263                        arr[i].reg_type = EHEA_BCMC_BROADCAST |
 264                                          EHEA_BCMC_VLANID_ALL;
 265                        arr[i++].macaddr = port->mac_addr;
 266
 267                        list_for_each_entry(mc_entry,
 268                                            &port->mc_list->list, list) {
 269                                arr[i].adh = adapter->handle;
 270                                arr[i].port_id = port->logical_port_id;
 271                                arr[i].reg_type = EHEA_BCMC_SCOPE_ALL |
 272                                                  EHEA_BCMC_MULTICAST |
 273                                                  EHEA_BCMC_UNTAGGED;
 274                                arr[i++].macaddr = mc_entry->macaddr;
 275
 276                                arr[i].adh = adapter->handle;
 277                                arr[i].port_id = port->logical_port_id;
 278                                arr[i].reg_type = EHEA_BCMC_SCOPE_ALL |
 279                                                  EHEA_BCMC_MULTICAST |
 280                                                  EHEA_BCMC_VLANID_ALL;
 281                                arr[i++].macaddr = mc_entry->macaddr;
 282                        }
 283                }
 284        }
 285
 286out_update:
 287        kfree(ehea_bcmc_regs.arr);
 288        ehea_bcmc_regs.arr = arr;
 289        ehea_bcmc_regs.num_entries = i;
 290}
 291
 292static struct net_device_stats *ehea_get_stats(struct net_device *dev)
 293{
 294        struct ehea_port *port = netdev_priv(dev);
 295        struct net_device_stats *stats = &port->stats;
 296        struct hcp_ehea_port_cb2 *cb2;
 297        u64 hret, rx_packets, tx_packets;
 298        int i;
 299
 300        memset(stats, 0, sizeof(*stats));
 301
 302        cb2 = kzalloc(PAGE_SIZE, GFP_KERNEL);
 303        if (!cb2) {
 304                ehea_error("no mem for cb2");
 305                goto out;
 306        }
 307
 308        hret = ehea_h_query_ehea_port(port->adapter->handle,
 309                                      port->logical_port_id,
 310                                      H_PORT_CB2, H_PORT_CB2_ALL, cb2);
 311        if (hret != H_SUCCESS) {
 312                ehea_error("query_ehea_port failed");
 313                goto out_herr;
 314        }
 315
 316        if (netif_msg_hw(port))
 317                ehea_dump(cb2, sizeof(*cb2), "net_device_stats");
 318
 319        rx_packets = 0;
 320        for (i = 0; i < port->num_def_qps; i++)
 321                rx_packets += port->port_res[i].rx_packets;
 322
 323        tx_packets = 0;
 324        for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++)
 325                tx_packets += port->port_res[i].tx_packets;
 326
 327        stats->tx_packets = tx_packets;
 328        stats->multicast = cb2->rxmcp;
 329        stats->rx_errors = cb2->rxuerr;
 330        stats->rx_bytes = cb2->rxo;
 331        stats->tx_bytes = cb2->txo;
 332        stats->rx_packets = rx_packets;
 333
 334out_herr:
 335        kfree(cb2);
 336out:
 337        return stats;
 338}
 339
 340static void ehea_refill_rq1(struct ehea_port_res *pr, int index, int nr_of_wqes)
 341{
 342        struct sk_buff **skb_arr_rq1 = pr->rq1_skba.arr;
 343        struct net_device *dev = pr->port->netdev;
 344        int max_index_mask = pr->rq1_skba.len - 1;
 345        int fill_wqes = pr->rq1_skba.os_skbs + nr_of_wqes;
 346        int adder = 0;
 347        int i;
 348
 349        pr->rq1_skba.os_skbs = 0;
 350
 351        if (unlikely(test_bit(__EHEA_STOP_XFER, &ehea_driver_flags))) {
 352                if (nr_of_wqes > 0)
 353                        pr->rq1_skba.index = index;
 354                pr->rq1_skba.os_skbs = fill_wqes;
 355                return;
 356        }
 357
 358        for (i = 0; i < fill_wqes; i++) {
 359                if (!skb_arr_rq1[index]) {
 360                        skb_arr_rq1[index] = netdev_alloc_skb(dev,
 361                                                              EHEA_L_PKT_SIZE);
 362                        if (!skb_arr_rq1[index]) {
 363                                pr->rq1_skba.os_skbs = fill_wqes - i;
 364                                ehea_error("%s: no mem for skb/%d wqes filled",
 365                                           dev->name, i);
 366                                break;
 367                        }
 368                }
 369                index--;
 370                index &= max_index_mask;
 371                adder++;
 372        }
 373
 374        if (adder == 0)
 375                return;
 376
 377        /* Ring doorbell */
 378        ehea_update_rq1a(pr->qp, adder);
 379}
 380
 381static int ehea_init_fill_rq1(struct ehea_port_res *pr, int nr_rq1a)
 382{
 383        int ret = 0;
 384        struct sk_buff **skb_arr_rq1 = pr->rq1_skba.arr;
 385        struct net_device *dev = pr->port->netdev;
 386        int i;
 387
 388        for (i = 0; i < pr->rq1_skba.len; i++) {
 389                skb_arr_rq1[i] = netdev_alloc_skb(dev, EHEA_L_PKT_SIZE);
 390                if (!skb_arr_rq1[i]) {
 391                        ehea_error("%s: no mem for skb/%d wqes filled",
 392                                   dev->name, i);
 393                        ret = -ENOMEM;
 394                        goto out;
 395                }
 396        }
 397        /* Ring doorbell */
 398        ehea_update_rq1a(pr->qp, nr_rq1a);
 399out:
 400        return ret;
 401}
 402
 403static int ehea_refill_rq_def(struct ehea_port_res *pr,
 404                              struct ehea_q_skb_arr *q_skba, int rq_nr,
 405                              int num_wqes, int wqe_type, int packet_size)
 406{
 407        struct net_device *dev = pr->port->netdev;
 408        struct ehea_qp *qp = pr->qp;
 409        struct sk_buff **skb_arr = q_skba->arr;
 410        struct ehea_rwqe *rwqe;
 411        int i, index, max_index_mask, fill_wqes;
 412        int adder = 0;
 413        int ret = 0;
 414
 415        fill_wqes = q_skba->os_skbs + num_wqes;
 416        q_skba->os_skbs = 0;
 417
 418        if (unlikely(test_bit(__EHEA_STOP_XFER, &ehea_driver_flags))) {
 419                q_skba->os_skbs = fill_wqes;
 420                return ret;
 421        }
 422
 423        index = q_skba->index;
 424        max_index_mask = q_skba->len - 1;
 425        for (i = 0; i < fill_wqes; i++) {
 426                u64 tmp_addr;
 427                struct sk_buff *skb = netdev_alloc_skb(dev, packet_size);
 428                if (!skb) {
 429                        ehea_error("%s: no mem for skb/%d wqes filled",
 430                                   pr->port->netdev->name, i);
 431                        q_skba->os_skbs = fill_wqes - i;
 432                        ret = -ENOMEM;
 433                        break;
 434                }
 435                skb_reserve(skb, NET_IP_ALIGN);
 436
 437                skb_arr[index] = skb;
 438                tmp_addr = ehea_map_vaddr(skb->data);
 439                if (tmp_addr == -1) {
 440                        dev_kfree_skb(skb);
 441                        q_skba->os_skbs = fill_wqes - i;
 442                        ret = 0;
 443                        break;
 444                }
 445
 446                rwqe = ehea_get_next_rwqe(qp, rq_nr);
 447                rwqe->wr_id = EHEA_BMASK_SET(EHEA_WR_ID_TYPE, wqe_type)
 448                            | EHEA_BMASK_SET(EHEA_WR_ID_INDEX, index);
 449                rwqe->sg_list[0].l_key = pr->recv_mr.lkey;
 450                rwqe->sg_list[0].vaddr = tmp_addr;
 451                rwqe->sg_list[0].len = packet_size;
 452                rwqe->data_segments = 1;
 453
 454                index++;
 455                index &= max_index_mask;
 456                adder++;
 457        }
 458
 459        q_skba->index = index;
 460        if (adder == 0)
 461                goto out;
 462
 463        /* Ring doorbell */
 464        iosync();
 465        if (rq_nr == 2)
 466                ehea_update_rq2a(pr->qp, adder);
 467        else
 468                ehea_update_rq3a(pr->qp, adder);
 469out:
 470        return ret;
 471}
 472
 473
 474static int ehea_refill_rq2(struct ehea_port_res *pr, int nr_of_wqes)
 475{
 476        return ehea_refill_rq_def(pr, &pr->rq2_skba, 2,
 477                                  nr_of_wqes, EHEA_RWQE2_TYPE,
 478                                  EHEA_RQ2_PKT_SIZE + NET_IP_ALIGN);
 479}
 480
 481
 482static int ehea_refill_rq3(struct ehea_port_res *pr, int nr_of_wqes)
 483{
 484        return ehea_refill_rq_def(pr, &pr->rq3_skba, 3,
 485                                  nr_of_wqes, EHEA_RWQE3_TYPE,
 486                                  EHEA_MAX_PACKET_SIZE + NET_IP_ALIGN);
 487}
 488
 489static inline int ehea_check_cqe(struct ehea_cqe *cqe, int *rq_num)
 490{
 491        *rq_num = (cqe->type & EHEA_CQE_TYPE_RQ) >> 5;
 492        if ((cqe->status & EHEA_CQE_STAT_ERR_MASK) == 0)
 493                return 0;
 494        if (((cqe->status & EHEA_CQE_STAT_ERR_TCP) != 0) &&
 495            (cqe->header_length == 0))
 496                return 0;
 497        return -EINVAL;
 498}
 499
 500static inline void ehea_fill_skb(struct net_device *dev,
 501                                 struct sk_buff *skb, struct ehea_cqe *cqe)
 502{
 503        int length = cqe->num_bytes_transfered - 4;     /*remove CRC */
 504
 505        skb_put(skb, length);
 506        skb->ip_summed = CHECKSUM_UNNECESSARY;
 507        skb->protocol = eth_type_trans(skb, dev);
 508}
 509
 510static inline struct sk_buff *get_skb_by_index(struct sk_buff **skb_array,
 511                                               int arr_len,
 512                                               struct ehea_cqe *cqe)
 513{
 514        int skb_index = EHEA_BMASK_GET(EHEA_WR_ID_INDEX, cqe->wr_id);
 515        struct sk_buff *skb;
 516        void *pref;
 517        int x;
 518
 519        x = skb_index + 1;
 520        x &= (arr_len - 1);
 521
 522        pref = skb_array[x];
 523        prefetchw(pref);
 524        prefetchw(pref + EHEA_CACHE_LINE);
 525
 526        pref = (skb_array[x]->data);
 527        prefetch(pref);
 528        prefetch(pref + EHEA_CACHE_LINE);
 529        prefetch(pref + EHEA_CACHE_LINE * 2);
 530        prefetch(pref + EHEA_CACHE_LINE * 3);
 531        skb = skb_array[skb_index];
 532        skb_array[skb_index] = NULL;
 533        return skb;
 534}
 535
 536static inline struct sk_buff *get_skb_by_index_ll(struct sk_buff **skb_array,
 537                                                  int arr_len, int wqe_index)
 538{
 539        struct sk_buff *skb;
 540        void *pref;
 541        int x;
 542
 543        x = wqe_index + 1;
 544        x &= (arr_len - 1);
 545
 546        pref = skb_array[x];
 547        prefetchw(pref);
 548        prefetchw(pref + EHEA_CACHE_LINE);
 549
 550        pref = (skb_array[x]->data);
 551        prefetchw(pref);
 552        prefetchw(pref + EHEA_CACHE_LINE);
 553
 554        skb = skb_array[wqe_index];
 555        skb_array[wqe_index] = NULL;
 556        return skb;
 557}
 558
 559static int ehea_treat_poll_error(struct ehea_port_res *pr, int rq,
 560                                 struct ehea_cqe *cqe, int *processed_rq2,
 561                                 int *processed_rq3)
 562{
 563        struct sk_buff *skb;
 564
 565        if (cqe->status & EHEA_CQE_STAT_ERR_TCP)
 566                pr->p_stats.err_tcp_cksum++;
 567        if (cqe->status & EHEA_CQE_STAT_ERR_IP)
 568                pr->p_stats.err_ip_cksum++;
 569        if (cqe->status & EHEA_CQE_STAT_ERR_CRC)
 570                pr->p_stats.err_frame_crc++;
 571
 572        if (rq == 2) {
 573                *processed_rq2 += 1;
 574                skb = get_skb_by_index(pr->rq2_skba.arr, pr->rq2_skba.len, cqe);
 575                dev_kfree_skb(skb);
 576        } else if (rq == 3) {
 577                *processed_rq3 += 1;
 578                skb = get_skb_by_index(pr->rq3_skba.arr, pr->rq3_skba.len, cqe);
 579                dev_kfree_skb(skb);
 580        }
 581
 582        if (cqe->status & EHEA_CQE_STAT_FAT_ERR_MASK) {
 583                if (netif_msg_rx_err(pr->port)) {
 584                        ehea_error("Critical receive error for QP %d. "
 585                                   "Resetting port.", pr->qp->init_attr.qp_nr);
 586                        ehea_dump(cqe, sizeof(*cqe), "CQE");
 587                }
 588                schedule_work(&pr->port->reset_task);
 589                return 1;
 590        }
 591
 592        return 0;
 593}
 594
 595static int get_skb_hdr(struct sk_buff *skb, void **iphdr,
 596                       void **tcph, u64 *hdr_flags, void *priv)
 597{
 598        struct ehea_cqe *cqe = priv;
 599        unsigned int ip_len;
 600        struct iphdr *iph;
 601
 602        /* non tcp/udp packets */
 603        if (!cqe->header_length)
 604                return -1;
 605
 606        /* non tcp packet */
 607        skb_reset_network_header(skb);
 608        iph = ip_hdr(skb);
 609        if (iph->protocol != IPPROTO_TCP)
 610                return -1;
 611
 612        ip_len = ip_hdrlen(skb);
 613        skb_set_transport_header(skb, ip_len);
 614        *tcph = tcp_hdr(skb);
 615
 616        /* check if ip header and tcp header are complete */
 617        if (iph->tot_len < ip_len + tcp_hdrlen(skb))
 618                return -1;
 619
 620        *hdr_flags = LRO_IPV4 | LRO_TCP;
 621        *iphdr = iph;
 622
 623        return 0;
 624}
 625
 626static void ehea_proc_skb(struct ehea_port_res *pr, struct ehea_cqe *cqe,
 627                          struct sk_buff *skb)
 628{
 629        int vlan_extracted = (cqe->status & EHEA_CQE_VLAN_TAG_XTRACT)
 630                && pr->port->vgrp;
 631
 632        if (use_lro) {
 633                if (vlan_extracted)
 634                        lro_vlan_hwaccel_receive_skb(&pr->lro_mgr, skb,
 635                                                     pr->port->vgrp,
 636                                                     cqe->vlan_tag,
 637                                                     cqe);
 638                else
 639                        lro_receive_skb(&pr->lro_mgr, skb, cqe);
 640        } else {
 641                if (vlan_extracted)
 642                        vlan_hwaccel_receive_skb(skb, pr->port->vgrp,
 643                                                 cqe->vlan_tag);
 644                else
 645                        netif_receive_skb(skb);
 646        }
 647}
 648
 649static int ehea_proc_rwqes(struct net_device *dev,
 650                           struct ehea_port_res *pr,
 651                           int budget)
 652{
 653        struct ehea_port *port = pr->port;
 654        struct ehea_qp *qp = pr->qp;
 655        struct ehea_cqe *cqe;
 656        struct sk_buff *skb;
 657        struct sk_buff **skb_arr_rq1 = pr->rq1_skba.arr;
 658        struct sk_buff **skb_arr_rq2 = pr->rq2_skba.arr;
 659        struct sk_buff **skb_arr_rq3 = pr->rq3_skba.arr;
 660        int skb_arr_rq1_len = pr->rq1_skba.len;
 661        int skb_arr_rq2_len = pr->rq2_skba.len;
 662        int skb_arr_rq3_len = pr->rq3_skba.len;
 663        int processed, processed_rq1, processed_rq2, processed_rq3;
 664        int wqe_index, last_wqe_index, rq, port_reset;
 665
 666        processed = processed_rq1 = processed_rq2 = processed_rq3 = 0;
 667        last_wqe_index = 0;
 668
 669        cqe = ehea_poll_rq1(qp, &wqe_index);
 670        while ((processed < budget) && cqe) {
 671                ehea_inc_rq1(qp);
 672                processed_rq1++;
 673                processed++;
 674                if (netif_msg_rx_status(port))
 675                        ehea_dump(cqe, sizeof(*cqe), "CQE");
 676
 677                last_wqe_index = wqe_index;
 678                rmb();
 679                if (!ehea_check_cqe(cqe, &rq)) {
 680                        if (rq == 1) {
 681                                /* LL RQ1 */
 682                                skb = get_skb_by_index_ll(skb_arr_rq1,
 683                                                          skb_arr_rq1_len,
 684                                                          wqe_index);
 685                                if (unlikely(!skb)) {
 686                                        if (netif_msg_rx_err(port))
 687                                                ehea_error("LL rq1: skb=NULL");
 688
 689                                        skb = netdev_alloc_skb(dev,
 690                                                               EHEA_L_PKT_SIZE);
 691                                        if (!skb)
 692                                                break;
 693                                }
 694                                skb_copy_to_linear_data(skb, ((char *)cqe) + 64,
 695                                                 cqe->num_bytes_transfered - 4);
 696                                ehea_fill_skb(dev, skb, cqe);
 697                        } else if (rq == 2) {
 698                                /* RQ2 */
 699                                skb = get_skb_by_index(skb_arr_rq2,
 700                                                       skb_arr_rq2_len, cqe);
 701                                if (unlikely(!skb)) {
 702                                        if (netif_msg_rx_err(port))
 703                                                ehea_error("rq2: skb=NULL");
 704                                        break;
 705                                }
 706                                ehea_fill_skb(dev, skb, cqe);
 707                                processed_rq2++;
 708                        } else {
 709                                /* RQ3 */
 710                                skb = get_skb_by_index(skb_arr_rq3,
 711                                                       skb_arr_rq3_len, cqe);
 712                                if (unlikely(!skb)) {
 713                                        if (netif_msg_rx_err(port))
 714                                                ehea_error("rq3: skb=NULL");
 715                                        break;
 716                                }
 717                                ehea_fill_skb(dev, skb, cqe);
 718                                processed_rq3++;
 719                        }
 720
 721                        ehea_proc_skb(pr, cqe, skb);
 722                        dev->last_rx = jiffies;
 723                } else {
 724                        pr->p_stats.poll_receive_errors++;
 725                        port_reset = ehea_treat_poll_error(pr, rq, cqe,
 726                                                           &processed_rq2,
 727                                                           &processed_rq3);
 728                        if (port_reset)
 729                                break;
 730                }
 731                cqe = ehea_poll_rq1(qp, &wqe_index);
 732        }
 733        if (use_lro)
 734                lro_flush_all(&pr->lro_mgr);
 735
 736        pr->rx_packets += processed;
 737
 738        ehea_refill_rq1(pr, last_wqe_index, processed_rq1);
 739        ehea_refill_rq2(pr, processed_rq2);
 740        ehea_refill_rq3(pr, processed_rq3);
 741
 742        return processed;
 743}
 744
 745static struct ehea_cqe *ehea_proc_cqes(struct ehea_port_res *pr, int my_quota)
 746{
 747        struct sk_buff *skb;
 748        struct ehea_cq *send_cq = pr->send_cq;
 749        struct ehea_cqe *cqe;
 750        int quota = my_quota;
 751        int cqe_counter = 0;
 752        int swqe_av = 0;
 753        int index;
 754        unsigned long flags;
 755
 756        cqe = ehea_poll_cq(send_cq);
 757        while (cqe && (quota > 0)) {
 758                ehea_inc_cq(send_cq);
 759
 760                cqe_counter++;
 761                rmb();
 762                if (cqe->status & EHEA_CQE_STAT_ERR_MASK) {
 763                        ehea_error("Send Completion Error: Resetting port");
 764                        if (netif_msg_tx_err(pr->port))
 765                                ehea_dump(cqe, sizeof(*cqe), "Send CQE");
 766                        schedule_work(&pr->port->reset_task);
 767                        break;
 768                }
 769
 770                if (netif_msg_tx_done(pr->port))
 771                        ehea_dump(cqe, sizeof(*cqe), "CQE");
 772
 773                if (likely(EHEA_BMASK_GET(EHEA_WR_ID_TYPE, cqe->wr_id)
 774                           == EHEA_SWQE2_TYPE)) {
 775
 776                        index = EHEA_BMASK_GET(EHEA_WR_ID_INDEX, cqe->wr_id);
 777                        skb = pr->sq_skba.arr[index];
 778                        dev_kfree_skb(skb);
 779                        pr->sq_skba.arr[index] = NULL;
 780                }
 781
 782                swqe_av += EHEA_BMASK_GET(EHEA_WR_ID_REFILL, cqe->wr_id);
 783                quota--;
 784
 785                cqe = ehea_poll_cq(send_cq);
 786        };
 787
 788        ehea_update_feca(send_cq, cqe_counter);
 789        atomic_add(swqe_av, &pr->swqe_avail);
 790
 791        spin_lock_irqsave(&pr->netif_queue, flags);
 792
 793        if (pr->queue_stopped && (atomic_read(&pr->swqe_avail)
 794                                  >= pr->swqe_refill_th)) {
 795                netif_wake_queue(pr->port->netdev);
 796                pr->queue_stopped = 0;
 797        }
 798        spin_unlock_irqrestore(&pr->netif_queue, flags);
 799
 800        return cqe;
 801}
 802
 803#define EHEA_NAPI_POLL_NUM_BEFORE_IRQ 16
 804#define EHEA_POLL_MAX_CQES 65535
 805
 806static int ehea_poll(struct napi_struct *napi, int budget)
 807{
 808        struct ehea_port_res *pr = container_of(napi, struct ehea_port_res,
 809                                                napi);
 810        struct net_device *dev = pr->port->netdev;
 811        struct ehea_cqe *cqe;
 812        struct ehea_cqe *cqe_skb = NULL;
 813        int force_irq, wqe_index;
 814        int rx = 0;
 815
 816        force_irq = (pr->poll_counter > EHEA_NAPI_POLL_NUM_BEFORE_IRQ);
 817        cqe_skb = ehea_proc_cqes(pr, EHEA_POLL_MAX_CQES);
 818
 819        if (!force_irq)
 820                rx += ehea_proc_rwqes(dev, pr, budget - rx);
 821
 822        while ((rx != budget) || force_irq) {
 823                pr->poll_counter = 0;
 824                force_irq = 0;
 825                netif_rx_complete(dev, napi);
 826                ehea_reset_cq_ep(pr->recv_cq);
 827                ehea_reset_cq_ep(pr->send_cq);
 828                ehea_reset_cq_n1(pr->recv_cq);
 829                ehea_reset_cq_n1(pr->send_cq);
 830                cqe = ehea_poll_rq1(pr->qp, &wqe_index);
 831                cqe_skb = ehea_poll_cq(pr->send_cq);
 832
 833                if (!cqe && !cqe_skb)
 834                        return rx;
 835
 836                if (!netif_rx_reschedule(dev, napi))
 837                        return rx;
 838
 839                cqe_skb = ehea_proc_cqes(pr, EHEA_POLL_MAX_CQES);
 840                rx += ehea_proc_rwqes(dev, pr, budget - rx);
 841        }
 842
 843        pr->poll_counter++;
 844        return rx;
 845}
 846
 847#ifdef CONFIG_NET_POLL_CONTROLLER
 848static void ehea_netpoll(struct net_device *dev)
 849{
 850        struct ehea_port *port = netdev_priv(dev);
 851        int i;
 852
 853        for (i = 0; i < port->num_def_qps; i++)
 854                netif_rx_schedule(dev, &port->port_res[i].napi);
 855}
 856#endif
 857
 858static irqreturn_t ehea_recv_irq_handler(int irq, void *param)
 859{
 860        struct ehea_port_res *pr = param;
 861
 862        netif_rx_schedule(pr->port->netdev, &pr->napi);
 863
 864        return IRQ_HANDLED;
 865}
 866
 867static irqreturn_t ehea_qp_aff_irq_handler(int irq, void *param)
 868{
 869        struct ehea_port *port = param;
 870        struct ehea_eqe *eqe;
 871        struct ehea_qp *qp;
 872        u32 qp_token;
 873
 874        eqe = ehea_poll_eq(port->qp_eq);
 875
 876        while (eqe) {
 877                qp_token = EHEA_BMASK_GET(EHEA_EQE_QP_TOKEN, eqe->entry);
 878                ehea_error("QP aff_err: entry=0x%lx, token=0x%x",
 879                           eqe->entry, qp_token);
 880
 881                qp = port->port_res[qp_token].qp;
 882                ehea_error_data(port->adapter, qp->fw_handle);
 883                eqe = ehea_poll_eq(port->qp_eq);
 884        }
 885
 886        schedule_work(&port->reset_task);
 887
 888        return IRQ_HANDLED;
 889}
 890
 891static struct ehea_port *ehea_get_port(struct ehea_adapter *adapter,
 892                                       int logical_port)
 893{
 894        int i;
 895
 896        for (i = 0; i < EHEA_MAX_PORTS; i++)
 897                if (adapter->port[i])
 898                        if (adapter->port[i]->logical_port_id == logical_port)
 899                                return adapter->port[i];
 900        return NULL;
 901}
 902
 903int ehea_sense_port_attr(struct ehea_port *port)
 904{
 905        int ret;
 906        u64 hret;
 907        struct hcp_ehea_port_cb0 *cb0;
 908
 909        /* may be called via ehea_neq_tasklet() */
 910        cb0 = kzalloc(PAGE_SIZE, GFP_ATOMIC);
 911        if (!cb0) {
 912                ehea_error("no mem for cb0");
 913                ret = -ENOMEM;
 914                goto out;
 915        }
 916
 917        hret = ehea_h_query_ehea_port(port->adapter->handle,
 918                                      port->logical_port_id, H_PORT_CB0,
 919                                      EHEA_BMASK_SET(H_PORT_CB0_ALL, 0xFFFF),
 920                                      cb0);
 921        if (hret != H_SUCCESS) {
 922                ret = -EIO;
 923                goto out_free;
 924        }
 925
 926        /* MAC address */
 927        port->mac_addr = cb0->port_mac_addr << 16;
 928
 929        if (!is_valid_ether_addr((u8 *)&port->mac_addr)) {
 930                ret = -EADDRNOTAVAIL;
 931                goto out_free;
 932        }
 933
 934        /* Port speed */
 935        switch (cb0->port_speed) {
 936        case H_SPEED_10M_H:
 937                port->port_speed = EHEA_SPEED_10M;
 938                port->full_duplex = 0;
 939                break;
 940        case H_SPEED_10M_F:
 941                port->port_speed = EHEA_SPEED_10M;
 942                port->full_duplex = 1;
 943                break;
 944        case H_SPEED_100M_H:
 945                port->port_speed = EHEA_SPEED_100M;
 946                port->full_duplex = 0;
 947                break;
 948        case H_SPEED_100M_F:
 949                port->port_speed = EHEA_SPEED_100M;
 950                port->full_duplex = 1;
 951                break;
 952        case H_SPEED_1G_F:
 953                port->port_speed = EHEA_SPEED_1G;
 954                port->full_duplex = 1;
 955                break;
 956        case H_SPEED_10G_F:
 957                port->port_speed = EHEA_SPEED_10G;
 958                port->full_duplex = 1;
 959                break;
 960        default:
 961                port->port_speed = 0;
 962                port->full_duplex = 0;
 963                break;
 964        }
 965
 966        port->autoneg = 1;
 967        port->num_mcs = cb0->num_default_qps;
 968
 969        /* Number of default QPs */
 970        if (use_mcs)
 971                port->num_def_qps = cb0->num_default_qps;
 972        else
 973                port->num_def_qps = 1;
 974
 975        if (!port->num_def_qps) {
 976                ret = -EINVAL;
 977                goto out_free;
 978        }
 979
 980        port->num_tx_qps = num_tx_qps;
 981
 982        if (port->num_def_qps >= port->num_tx_qps)
 983                port->num_add_tx_qps = 0;
 984        else
 985                port->num_add_tx_qps = port->num_tx_qps - port->num_def_qps;
 986
 987        ret = 0;
 988out_free:
 989        if (ret || netif_msg_probe(port))
 990                ehea_dump(cb0, sizeof(*cb0), "ehea_sense_port_attr");
 991        kfree(cb0);
 992out:
 993        return ret;
 994}
 995
 996int ehea_set_portspeed(struct ehea_port *port, u32 port_speed)
 997{
 998        struct hcp_ehea_port_cb4 *cb4;
 999        u64 hret;
1000        int ret = 0;
1001
1002        cb4 = kzalloc(PAGE_SIZE, GFP_KERNEL);
1003        if (!cb4) {
1004                ehea_error("no mem for cb4");
1005                ret = -ENOMEM;
1006                goto out;
1007        }
1008
1009        cb4->port_speed = port_speed;
1010
1011        netif_carrier_off(port->netdev);
1012
1013        hret = ehea_h_modify_ehea_port(port->adapter->handle,
1014                                       port->logical_port_id,
1015                                       H_PORT_CB4, H_PORT_CB4_SPEED, cb4);
1016        if (hret == H_SUCCESS) {
1017                port->autoneg = port_speed == EHEA_SPEED_AUTONEG ? 1 : 0;
1018
1019                hret = ehea_h_query_ehea_port(port->adapter->handle,
1020                                              port->logical_port_id,
1021                                              H_PORT_CB4, H_PORT_CB4_SPEED,
1022                                              cb4);
1023                if (hret == H_SUCCESS) {
1024                        switch (cb4->port_speed) {
1025                        case H_SPEED_10M_H:
1026                                port->port_speed = EHEA_SPEED_10M;
1027                                port->full_duplex = 0;
1028                                break;
1029                        case H_SPEED_10M_F:
1030                                port->port_speed = EHEA_SPEED_10M;
1031                                port->full_duplex = 1;
1032                                break;
1033                        case H_SPEED_100M_H:
1034                                port->port_speed = EHEA_SPEED_100M;
1035                                port->full_duplex = 0;
1036                                break;
1037                        case H_SPEED_100M_F:
1038                                port->port_speed = EHEA_SPEED_100M;
1039                                port->full_duplex = 1;
1040                                break;
1041                        case H_SPEED_1G_F:
1042                                port->port_speed = EHEA_SPEED_1G;
1043                                port->full_duplex = 1;
1044                                break;
1045                        case H_SPEED_10G_F:
1046                                port->port_speed = EHEA_SPEED_10G;
1047                                port->full_duplex = 1;
1048                                break;
1049                        default:
1050                                port->port_speed = 0;
1051                                port->full_duplex = 0;
1052                                break;
1053                        }
1054                } else {
1055                        ehea_error("Failed sensing port speed");
1056                        ret = -EIO;
1057                }
1058        } else {
1059                if (hret == H_AUTHORITY) {
1060                        ehea_info("Hypervisor denied setting port speed");
1061                        ret = -EPERM;
1062                } else {
1063                        ret = -EIO;
1064                        ehea_error("Failed setting port speed");
1065                }
1066        }
1067        if (!prop_carrier_state || (port->phy_link == EHEA_PHY_LINK_UP))
1068                netif_carrier_on(port->netdev);
1069
1070        kfree(cb4);
1071out:
1072        return ret;
1073}
1074
1075static void ehea_parse_eqe(struct ehea_adapter *adapter, u64 eqe)
1076{
1077        int ret;
1078        u8 ec;
1079        u8 portnum;
1080        struct ehea_port *port;
1081
1082        ec = EHEA_BMASK_GET(NEQE_EVENT_CODE, eqe);
1083        portnum = EHEA_BMASK_GET(NEQE_PORTNUM, eqe);
1084        port = ehea_get_port(adapter, portnum);
1085
1086        switch (ec) {
1087        case EHEA_EC_PORTSTATE_CHG:     /* port state change */
1088
1089                if (!port) {
1090                        ehea_error("unknown portnum %x", portnum);
1091                        break;
1092                }
1093
1094                if (EHEA_BMASK_GET(NEQE_PORT_UP, eqe)) {
1095                        if (!netif_carrier_ok(port->netdev)) {
1096                                ret = ehea_sense_port_attr(port);
1097                                if (ret) {
1098                                        ehea_error("failed resensing port "
1099                                                   "attributes");
1100                                        break;
1101                                }
1102
1103                                if (netif_msg_link(port))
1104                                        ehea_info("%s: Logical port up: %dMbps "
1105                                                  "%s Duplex",
1106                                                  port->netdev->name,
1107                                                  port->port_speed,
1108                                                  port->full_duplex ==
1109                                                  1 ? "Full" : "Half");
1110
1111                                netif_carrier_on(port->netdev);
1112                                netif_wake_queue(port->netdev);
1113                        }
1114                } else
1115                        if (netif_carrier_ok(port->netdev)) {
1116                                if (netif_msg_link(port))
1117                                        ehea_info("%s: Logical port down",
1118                                                  port->netdev->name);
1119                                netif_carrier_off(port->netdev);
1120                                netif_stop_queue(port->netdev);
1121                        }
1122
1123                if (EHEA_BMASK_GET(NEQE_EXTSWITCH_PORT_UP, eqe)) {
1124                        port->phy_link = EHEA_PHY_LINK_UP;
1125                        if (netif_msg_link(port))
1126                                ehea_info("%s: Physical port up",
1127                                          port->netdev->name);
1128                        if (prop_carrier_state)
1129                                netif_carrier_on(port->netdev);
1130                } else {
1131                        port->phy_link = EHEA_PHY_LINK_DOWN;
1132                        if (netif_msg_link(port))
1133                                ehea_info("%s: Physical port down",
1134                                          port->netdev->name);
1135                        if (prop_carrier_state)
1136                                netif_carrier_off(port->netdev);
1137                }
1138
1139                if (EHEA_BMASK_GET(NEQE_EXTSWITCH_PRIMARY, eqe))
1140                        ehea_info("External switch port is primary port");
1141                else
1142                        ehea_info("External switch port is backup port");
1143
1144                break;
1145        case EHEA_EC_ADAPTER_MALFUNC:
1146                ehea_error("Adapter malfunction");
1147                break;
1148        case EHEA_EC_PORT_MALFUNC:
1149                ehea_info("Port malfunction: Device: %s", port->netdev->name);
1150                netif_carrier_off(port->netdev);
1151                netif_stop_queue(port->netdev);
1152                break;
1153        default:
1154                ehea_error("unknown event code %x, eqe=0x%lX", ec, eqe);
1155                break;
1156        }
1157}
1158
1159static void ehea_neq_tasklet(unsigned long data)
1160{
1161        struct ehea_adapter *adapter = (struct ehea_adapter *)data;
1162        struct ehea_eqe *eqe;
1163        u64 event_mask;
1164
1165        eqe = ehea_poll_eq(adapter->neq);
1166        ehea_debug("eqe=%p", eqe);
1167
1168        while (eqe) {
1169                ehea_debug("*eqe=%lx", eqe->entry);
1170                ehea_parse_eqe(adapter, eqe->entry);
1171                eqe = ehea_poll_eq(adapter->neq);
1172                ehea_debug("next eqe=%p", eqe);
1173        }
1174
1175        event_mask = EHEA_BMASK_SET(NELR_PORTSTATE_CHG, 1)
1176                   | EHEA_BMASK_SET(NELR_ADAPTER_MALFUNC, 1)
1177                   | EHEA_BMASK_SET(NELR_PORT_MALFUNC, 1);
1178
1179        ehea_h_reset_events(adapter->handle,
1180                            adapter->neq->fw_handle, event_mask);
1181}
1182
1183static irqreturn_t ehea_interrupt_neq(int irq, void *param)
1184{
1185        struct ehea_adapter *adapter = param;
1186        tasklet_hi_schedule(&adapter->neq_tasklet);
1187        return IRQ_HANDLED;
1188}
1189
1190
1191static int ehea_fill_port_res(struct ehea_port_res *pr)
1192{
1193        int ret;
1194        struct ehea_qp_init_attr *init_attr = &pr->qp->init_attr;
1195
1196        ret = ehea_init_fill_rq1(pr, init_attr->act_nr_rwqes_rq1
1197                                     - init_attr->act_nr_rwqes_rq2
1198                                     - init_attr->act_nr_rwqes_rq3 - 1);
1199
1200        ret |= ehea_refill_rq2(pr, init_attr->act_nr_rwqes_rq2 - 1);
1201
1202        ret |= ehea_refill_rq3(pr, init_attr->act_nr_rwqes_rq3 - 1);
1203
1204        return ret;
1205}
1206
1207static int ehea_reg_interrupts(struct net_device *dev)
1208{
1209        struct ehea_port *port = netdev_priv(dev);
1210        struct ehea_port_res *pr;
1211        int i, ret;
1212
1213
1214        snprintf(port->int_aff_name, EHEA_IRQ_NAME_SIZE - 1, "%s-aff",
1215                 dev->name);
1216
1217        ret = ibmebus_request_irq(port->qp_eq->attr.ist1,
1218                                  ehea_qp_aff_irq_handler,
1219                                  IRQF_DISABLED, port->int_aff_name, port);
1220        if (ret) {
1221                ehea_error("failed registering irq for qp_aff_irq_handler:"
1222                           "ist=%X", port->qp_eq->attr.ist1);
1223                goto out_free_qpeq;
1224        }
1225
1226        if (netif_msg_ifup(port))
1227                ehea_info("irq_handle 0x%X for function qp_aff_irq_handler "
1228                          "registered", port->qp_eq->attr.ist1);
1229
1230
1231        for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++) {
1232                pr = &port->port_res[i];
1233                snprintf(pr->int_send_name, EHEA_IRQ_NAME_SIZE - 1,
1234                         "%s-queue%d", dev->name, i);
1235                ret = ibmebus_request_irq(pr->eq->attr.ist1,
1236                                          ehea_recv_irq_handler,
1237                                          IRQF_DISABLED, pr->int_send_name,
1238                                          pr);
1239                if (ret) {
1240                        ehea_error("failed registering irq for ehea_queue "
1241                                   "port_res_nr:%d, ist=%X", i,
1242                                   pr->eq->attr.ist1);
1243                        goto out_free_req;
1244                }
1245                if (netif_msg_ifup(port))
1246                        ehea_info("irq_handle 0x%X for function ehea_queue_int "
1247                                  "%d registered", pr->eq->attr.ist1, i);
1248        }
1249out:
1250        return ret;
1251
1252
1253out_free_req:
1254        while (--i >= 0) {
1255                u32 ist = port->port_res[i].eq->attr.ist1;
1256                ibmebus_free_irq(ist, &port->port_res[i]);
1257        }
1258
1259out_free_qpeq:
1260        ibmebus_free_irq(port->qp_eq->attr.ist1, port);
1261        i = port->num_def_qps;
1262
1263        goto out;
1264
1265}
1266
1267static void ehea_free_interrupts(struct net_device *dev)
1268{
1269        struct ehea_port *port = netdev_priv(dev);
1270        struct ehea_port_res *pr;
1271        int i;
1272
1273        /* send */
1274
1275        for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++) {
1276                pr = &port->port_res[i];
1277                ibmebus_free_irq(pr->eq->attr.ist1, pr);
1278                if (netif_msg_intr(port))
1279                        ehea_info("free send irq for res %d with handle 0x%X",
1280                                  i, pr->eq->attr.ist1);
1281        }
1282
1283        /* associated events */
1284        ibmebus_free_irq(port->qp_eq->attr.ist1, port);
1285        if (netif_msg_intr(port))
1286                ehea_info("associated event interrupt for handle 0x%X freed",
1287                          port->qp_eq->attr.ist1);
1288}
1289
1290static int ehea_configure_port(struct ehea_port *port)
1291{
1292        int ret, i;
1293        u64 hret, mask;
1294        struct hcp_ehea_port_cb0 *cb0;
1295
1296        ret = -ENOMEM;
1297        cb0 = kzalloc(PAGE_SIZE, GFP_KERNEL);
1298        if (!cb0)
1299                goto out;
1300
1301        cb0->port_rc = EHEA_BMASK_SET(PXLY_RC_VALID, 1)
1302                     | EHEA_BMASK_SET(PXLY_RC_IP_CHKSUM, 1)
1303                     | EHEA_BMASK_SET(PXLY_RC_TCP_UDP_CHKSUM, 1)
1304                     | EHEA_BMASK_SET(PXLY_RC_VLAN_XTRACT, 1)
1305                     | EHEA_BMASK_SET(PXLY_RC_VLAN_TAG_FILTER,
1306                                      PXLY_RC_VLAN_FILTER)
1307                     | EHEA_BMASK_SET(PXLY_RC_JUMBO_FRAME, 1);
1308
1309        for (i = 0; i < port->num_mcs; i++)
1310                if (use_mcs)
1311                        cb0->default_qpn_arr[i] =
1312                                port->port_res[i].qp->init_attr.qp_nr;
1313                else
1314                        cb0->default_qpn_arr[i] =
1315                                port->port_res[0].qp->init_attr.qp_nr;
1316
1317        if (netif_msg_ifup(port))
1318                ehea_dump(cb0, sizeof(*cb0), "ehea_configure_port");
1319
1320        mask = EHEA_BMASK_SET(H_PORT_CB0_PRC, 1)
1321             | EHEA_BMASK_SET(H_PORT_CB0_DEFQPNARRAY, 1);
1322
1323        hret = ehea_h_modify_ehea_port(port->adapter->handle,
1324                                       port->logical_port_id,
1325                                       H_PORT_CB0, mask, cb0);
1326        ret = -EIO;
1327        if (hret != H_SUCCESS)
1328                goto out_free;
1329
1330        ret = 0;
1331
1332out_free:
1333        kfree(cb0);
1334out:
1335        return ret;
1336}
1337
1338int ehea_gen_smrs(struct ehea_port_res *pr)
1339{
1340        int ret;
1341        struct ehea_adapter *adapter = pr->port->adapter;
1342
1343        ret = ehea_gen_smr(adapter, &adapter->mr, &pr->send_mr);
1344        if (ret)
1345                goto out;
1346
1347        ret = ehea_gen_smr(adapter, &adapter->mr, &pr->recv_mr);
1348        if (ret)
1349                goto out_free;
1350
1351        return 0;
1352
1353out_free:
1354        ehea_rem_mr(&pr->send_mr);
1355out:
1356        ehea_error("Generating SMRS failed\n");
1357        return -EIO;
1358}
1359
1360int ehea_rem_smrs(struct ehea_port_res *pr)
1361{
1362        if ((ehea_rem_mr(&pr->send_mr))
1363            || (ehea_rem_mr(&pr->recv_mr)))
1364                return -EIO;
1365        else
1366                return 0;
1367}
1368
1369static int ehea_init_q_skba(struct ehea_q_skb_arr *q_skba, int max_q_entries)
1370{
1371        int arr_size = sizeof(void *) * max_q_entries;
1372
1373        q_skba->arr = vmalloc(arr_size);
1374        if (!q_skba->arr)
1375                return -ENOMEM;
1376
1377        memset(q_skba->arr, 0, arr_size);
1378
1379        q_skba->len = max_q_entries;
1380        q_skba->index = 0;
1381        q_skba->os_skbs = 0;
1382
1383        return 0;
1384}
1385
1386static int ehea_init_port_res(struct ehea_port *port, struct ehea_port_res *pr,
1387                              struct port_res_cfg *pr_cfg, int queue_token)
1388{
1389        struct ehea_adapter *adapter = port->adapter;
1390        enum ehea_eq_type eq_type = EHEA_EQ;
1391        struct ehea_qp_init_attr *init_attr = NULL;
1392        int ret = -EIO;
1393
1394        memset(pr, 0, sizeof(struct ehea_port_res));
1395
1396        pr->port = port;
1397        spin_lock_init(&pr->xmit_lock);
1398        spin_lock_init(&pr->netif_queue);
1399
1400        pr->eq = ehea_create_eq(adapter, eq_type, EHEA_MAX_ENTRIES_EQ, 0);
1401        if (!pr->eq) {
1402                ehea_error("create_eq failed (eq)");
1403                goto out_free;
1404        }
1405
1406        pr->recv_cq = ehea_create_cq(adapter, pr_cfg->max_entries_rcq,
1407                                     pr->eq->fw_handle,
1408                                     port->logical_port_id);
1409        if (!pr->recv_cq) {
1410                ehea_error("create_cq failed (cq_recv)");
1411                goto out_free;
1412        }
1413
1414        pr->send_cq = ehea_create_cq(adapter, pr_cfg->max_entries_scq,
1415                                     pr->eq->fw_handle,
1416                                     port->logical_port_id);
1417        if (!pr->send_cq) {
1418                ehea_error("create_cq failed (cq_send)");
1419                goto out_free;
1420        }
1421
1422        if (netif_msg_ifup(port))
1423                ehea_info("Send CQ: act_nr_cqes=%d, Recv CQ: act_nr_cqes=%d",
1424                          pr->send_cq->attr.act_nr_of_cqes,
1425                          pr->recv_cq->attr.act_nr_of_cqes);
1426
1427        init_attr = kzalloc(sizeof(*init_attr), GFP_KERNEL);
1428        if (!init_attr) {
1429                ret = -ENOMEM;
1430                ehea_error("no mem for ehea_qp_init_attr");
1431                goto out_free;
1432        }
1433
1434        init_attr->low_lat_rq1 = 1;
1435        init_attr->signalingtype = 1;   /* generate CQE if specified in WQE */
1436        init_attr->rq_count = 3;
1437        init_attr->qp_token = queue_token;
1438        init_attr->max_nr_send_wqes = pr_cfg->max_entries_sq;
1439        init_attr->max_nr_rwqes_rq1 = pr_cfg->max_entries_rq1;
1440        init_attr->max_nr_rwqes_rq2 = pr_cfg->max_entries_rq2;
1441        init_attr->max_nr_rwqes_rq3 = pr_cfg->max_entries_rq3;
1442        init_attr->wqe_size_enc_sq = EHEA_SG_SQ;
1443        init_attr->wqe_size_enc_rq1 = EHEA_SG_RQ1;
1444        init_attr->wqe_size_enc_rq2 = EHEA_SG_RQ2;
1445        init_attr->wqe_size_enc_rq3 = EHEA_SG_RQ3;
1446        init_attr->rq2_threshold = EHEA_RQ2_THRESHOLD;
1447        init_attr->rq3_threshold = EHEA_RQ3_THRESHOLD;
1448        init_attr->port_nr = port->logical_port_id;
1449        init_attr->send_cq_handle = pr->send_cq->fw_handle;
1450        init_attr->recv_cq_handle = pr->recv_cq->fw_handle;
1451        init_attr->aff_eq_handle = port->qp_eq->fw_handle;
1452
1453        pr->qp = ehea_create_qp(adapter, adapter->pd, init_attr);
1454        if (!pr->qp) {
1455                ehea_error("create_qp failed");
1456                ret = -EIO;
1457                goto out_free;
1458        }
1459
1460        if (netif_msg_ifup(port))
1461                ehea_info("QP: qp_nr=%d\n act_nr_snd_wqe=%d\n nr_rwqe_rq1=%d\n "
1462                          "nr_rwqe_rq2=%d\n nr_rwqe_rq3=%d", init_attr->qp_nr,
1463                          init_attr->act_nr_send_wqes,
1464                          init_attr->act_nr_rwqes_rq1,
1465                          init_attr->act_nr_rwqes_rq2,
1466                          init_attr->act_nr_rwqes_rq3);
1467
1468        pr->sq_skba_size = init_attr->act_nr_send_wqes + 1;
1469
1470        ret = ehea_init_q_skba(&pr->sq_skba, pr->sq_skba_size);
1471        ret |= ehea_init_q_skba(&pr->rq1_skba, init_attr->act_nr_rwqes_rq1 + 1);
1472        ret |= ehea_init_q_skba(&pr->rq2_skba, init_attr->act_nr_rwqes_rq2 + 1);
1473        ret |= ehea_init_q_skba(&pr->rq3_skba, init_attr->act_nr_rwqes_rq3 + 1);
1474        if (ret)
1475                goto out_free;
1476
1477        pr->swqe_refill_th = init_attr->act_nr_send_wqes / 10;
1478        if (ehea_gen_smrs(pr) != 0) {
1479                ret = -EIO;
1480                goto out_free;
1481        }
1482
1483        atomic_set(&pr->swqe_avail, init_attr->act_nr_send_wqes - 1);
1484
1485        kfree(init_attr);
1486
1487        netif_napi_add(pr->port->netdev, &pr->napi, ehea_poll, 64);
1488
1489        pr->lro_mgr.max_aggr = pr->port->lro_max_aggr;
1490        pr->lro_mgr.max_desc = MAX_LRO_DESCRIPTORS;
1491        pr->lro_mgr.lro_arr = pr->lro_desc;
1492        pr->lro_mgr.get_skb_header = get_skb_hdr;
1493        pr->lro_mgr.features = LRO_F_NAPI | LRO_F_EXTRACT_VLAN_ID;
1494        pr->lro_mgr.dev = port->netdev;
1495        pr->lro_mgr.ip_summed = CHECKSUM_UNNECESSARY;
1496        pr->lro_mgr.ip_summed_aggr = CHECKSUM_UNNECESSARY;
1497
1498        ret = 0;
1499        goto out;
1500
1501out_free:
1502        kfree(init_attr);
1503        vfree(pr->sq_skba.arr);
1504        vfree(pr->rq1_skba.arr);
1505        vfree(pr->rq2_skba.arr);
1506        vfree(pr->rq3_skba.arr);
1507        ehea_destroy_qp(pr->qp);
1508        ehea_destroy_cq(pr->send_cq);
1509        ehea_destroy_cq(pr->recv_cq);
1510        ehea_destroy_eq(pr->eq);
1511out:
1512        return ret;
1513}
1514
1515static int ehea_clean_portres(struct ehea_port *port, struct ehea_port_res *pr)
1516{
1517        int ret, i;
1518
1519        ret = ehea_destroy_qp(pr->qp);
1520
1521        if (!ret) {
1522                ehea_destroy_cq(pr->send_cq);
1523                ehea_destroy_cq(pr->recv_cq);
1524                ehea_destroy_eq(pr->eq);
1525
1526                for (i = 0; i < pr->rq1_skba.len; i++)
1527                        if (pr->rq1_skba.arr[i])
1528                                dev_kfree_skb(pr->rq1_skba.arr[i]);
1529
1530                for (i = 0; i < pr->rq2_skba.len; i++)
1531                        if (pr->rq2_skba.arr[i])
1532                                dev_kfree_skb(pr->rq2_skba.arr[i]);
1533
1534                for (i = 0; i < pr->rq3_skba.len; i++)
1535                        if (pr->rq3_skba.arr[i])
1536                                dev_kfree_skb(pr->rq3_skba.arr[i]);
1537
1538                for (i = 0; i < pr->sq_skba.len; i++)
1539                        if (pr->sq_skba.arr[i])
1540                                dev_kfree_skb(pr->sq_skba.arr[i]);
1541
1542                vfree(pr->rq1_skba.arr);
1543                vfree(pr->rq2_skba.arr);
1544                vfree(pr->rq3_skba.arr);
1545                vfree(pr->sq_skba.arr);
1546                ret = ehea_rem_smrs(pr);
1547        }
1548        return ret;
1549}
1550
1551/*
1552 * The write_* functions store information in swqe which is used by
1553 * the hardware to calculate the ip/tcp/udp checksum
1554 */
1555
1556static inline void write_ip_start_end(struct ehea_swqe *swqe,
1557                                      const struct sk_buff *skb)
1558{
1559        swqe->ip_start = skb_network_offset(skb);
1560        swqe->ip_end = (u8)(swqe->ip_start + ip_hdrlen(skb) - 1);
1561}
1562
1563static inline void write_tcp_offset_end(struct ehea_swqe *swqe,
1564                                        const struct sk_buff *skb)
1565{
1566        swqe->tcp_offset =
1567                (u8)(swqe->ip_end + 1 + offsetof(struct tcphdr, check));
1568
1569        swqe->tcp_end = (u16)skb->len - 1;
1570}
1571
1572static inline void write_udp_offset_end(struct ehea_swqe *swqe,
1573                                        const struct sk_buff *skb)
1574{
1575        swqe->tcp_offset =
1576                (u8)(swqe->ip_end + 1 + offsetof(struct udphdr, check));
1577
1578        swqe->tcp_end = (u16)skb->len - 1;
1579}
1580
1581
1582static void write_swqe2_TSO(struct sk_buff *skb,
1583                            struct ehea_swqe *swqe, u32 lkey)
1584{
1585        struct ehea_vsgentry *sg1entry = &swqe->u.immdata_desc.sg_entry;
1586        u8 *imm_data = &swqe->u.immdata_desc.immediate_data[0];
1587        int skb_data_size = skb->len - skb->data_len;
1588        int headersize;
1589
1590        /* Packet is TCP with TSO enabled */
1591        swqe->tx_control |= EHEA_SWQE_TSO;
1592        swqe->mss = skb_shinfo(skb)->gso_size;
1593        /* copy only eth/ip/tcp headers to immediate data and
1594         * the rest of skb->data to sg1entry
1595         */
1596        headersize = ETH_HLEN + ip_hdrlen(skb) + tcp_hdrlen(skb);
1597
1598        skb_data_size = skb->len - skb->data_len;
1599
1600        if (skb_data_size >= headersize) {
1601                /* copy immediate data */
1602                skb_copy_from_linear_data(skb, imm_data, headersize);
1603                swqe->immediate_data_length = headersize;
1604
1605                if (skb_data_size > headersize) {
1606                        /* set sg1entry data */
1607                        sg1entry->l_key = lkey;
1608                        sg1entry->len = skb_data_size - headersize;
1609                        sg1entry->vaddr =
1610                                ehea_map_vaddr(skb->data + headersize);
1611                        swqe->descriptors++;
1612                }
1613        } else
1614                ehea_error("cannot handle fragmented headers");
1615}
1616
1617static void write_swqe2_nonTSO(struct sk_buff *skb,
1618                               struct ehea_swqe *swqe, u32 lkey)
1619{
1620        int skb_data_size = skb->len - skb->data_len;
1621        u8 *imm_data = &swqe->u.immdata_desc.immediate_data[0];
1622        struct ehea_vsgentry *sg1entry = &swqe->u.immdata_desc.sg_entry;
1623
1624        /* Packet is any nonTSO type
1625         *
1626         * Copy as much as possible skb->data to immediate data and
1627         * the rest to sg1entry
1628         */
1629        if (skb_data_size >= SWQE2_MAX_IMM) {
1630                /* copy immediate data */
1631                skb_copy_from_linear_data(skb, imm_data, SWQE2_MAX_IMM);
1632
1633                swqe->immediate_data_length = SWQE2_MAX_IMM;
1634
1635                if (skb_data_size > SWQE2_MAX_IMM) {
1636                        /* copy sg1entry data */
1637                        sg1entry->l_key = lkey;
1638                        sg1entry->len = skb_data_size - SWQE2_MAX_IMM;
1639                        sg1entry->vaddr =
1640                                ehea_map_vaddr(skb->data + SWQE2_MAX_IMM);
1641                        swqe->descriptors++;
1642                }
1643        } else {
1644                skb_copy_from_linear_data(skb, imm_data, skb_data_size);
1645                swqe->immediate_data_length = skb_data_size;
1646        }
1647}
1648
1649static inline void write_swqe2_data(struct sk_buff *skb, struct net_device *dev,
1650                                    struct ehea_swqe *swqe, u32 lkey)
1651{
1652        struct ehea_vsgentry *sg_list, *sg1entry, *sgentry;
1653        skb_frag_t *frag;
1654        int nfrags, sg1entry_contains_frag_data, i;
1655
1656        nfrags = skb_shinfo(skb)->nr_frags;
1657        sg1entry = &swqe->u.immdata_desc.sg_entry;
1658        sg_list = (struct ehea_vsgentry *)&swqe->u.immdata_desc.sg_list;
1659        swqe->descriptors = 0;
1660        sg1entry_contains_frag_data = 0;
1661
1662        if ((dev->features & NETIF_F_TSO) && skb_shinfo(skb)->gso_size)
1663                write_swqe2_TSO(skb, swqe, lkey);
1664        else
1665                write_swqe2_nonTSO(skb, swqe, lkey);
1666
1667        /* write descriptors */
1668        if (nfrags > 0) {
1669                if (swqe->descriptors == 0) {
1670                        /* sg1entry not yet used */
1671                        frag = &skb_shinfo(skb)->frags[0];
1672
1673                        /* copy sg1entry data */
1674                        sg1entry->l_key = lkey;
1675                        sg1entry->len = frag->size;
1676                        sg1entry->vaddr =
1677                                ehea_map_vaddr(page_address(frag->page)
1678                                               + frag->page_offset);
1679                        swqe->descriptors++;
1680                        sg1entry_contains_frag_data = 1;
1681                }
1682
1683                for (i = sg1entry_contains_frag_data; i < nfrags; i++) {
1684
1685                        frag = &skb_shinfo(skb)->frags[i];
1686                        sgentry = &sg_list[i - sg1entry_contains_frag_data];
1687
1688                        sgentry->l_key = lkey;
1689                        sgentry->len = frag->size;
1690                        sgentry->vaddr =
1691                                ehea_map_vaddr(page_address(frag->page)
1692                                               + frag->page_offset);
1693                        swqe->descriptors++;
1694                }
1695        }
1696}
1697
1698static int ehea_broadcast_reg_helper(struct ehea_port *port, u32 hcallid)
1699{
1700        int ret = 0;
1701        u64 hret;
1702        u8 reg_type;
1703
1704        /* De/Register untagged packets */
1705        reg_type = EHEA_BCMC_BROADCAST | EHEA_BCMC_UNTAGGED;
1706        hret = ehea_h_reg_dereg_bcmc(port->adapter->handle,
1707                                     port->logical_port_id,
1708                                     reg_type, port->mac_addr, 0, hcallid);
1709        if (hret != H_SUCCESS) {
1710                ehea_error("%sregistering bc address failed (tagged)",
1711                           hcallid == H_REG_BCMC ? "" : "de");
1712                ret = -EIO;
1713                goto out_herr;
1714        }
1715
1716        /* De/Register VLAN packets */
1717        reg_type = EHEA_BCMC_BROADCAST | EHEA_BCMC_VLANID_ALL;
1718        hret = ehea_h_reg_dereg_bcmc(port->adapter->handle,
1719                                     port->logical_port_id,
1720                                     reg_type, port->mac_addr, 0, hcallid);
1721        if (hret != H_SUCCESS) {
1722                ehea_error("%sregistering bc address failed (vlan)",
1723                           hcallid == H_REG_BCMC ? "" : "de");
1724                ret = -EIO;
1725        }
1726out_herr:
1727        return ret;
1728}
1729
1730static int ehea_set_mac_addr(struct net_device *dev, void *sa)
1731{
1732        struct ehea_port *port = netdev_priv(dev);
1733        struct sockaddr *mac_addr = sa;
1734        struct hcp_ehea_port_cb0 *cb0;
1735        int ret;
1736        u64 hret;
1737
1738        if (!is_valid_ether_addr(mac_addr->sa_data)) {
1739                ret = -EADDRNOTAVAIL;
1740                goto out;
1741        }
1742
1743        cb0 = kzalloc(PAGE_SIZE, GFP_KERNEL);
1744        if (!cb0) {
1745                ehea_error("no mem for cb0");
1746                ret = -ENOMEM;
1747                goto out;
1748        }
1749
1750        memcpy(&(cb0->port_mac_addr), &(mac_addr->sa_data[0]), ETH_ALEN);
1751
1752        cb0->port_mac_addr = cb0->port_mac_addr >> 16;
1753
1754        hret = ehea_h_modify_ehea_port(port->adapter->handle,
1755                                       port->logical_port_id, H_PORT_CB0,
1756                                       EHEA_BMASK_SET(H_PORT_CB0_MAC, 1), cb0);
1757        if (hret != H_SUCCESS) {
1758                ret = -EIO;
1759                goto out_free;
1760        }
1761
1762        memcpy(dev->dev_addr, mac_addr->sa_data, dev->addr_len);
1763
1764        down(&ehea_bcmc_regs.lock);
1765
1766        /* Deregister old MAC in pHYP */
1767        ret = ehea_broadcast_reg_helper(port, H_DEREG_BCMC);
1768        if (ret)
1769                goto out_upregs;
1770
1771        port->mac_addr = cb0->port_mac_addr << 16;
1772
1773        /* Register new MAC in pHYP */
1774        ret = ehea_broadcast_reg_helper(port, H_REG_BCMC);
1775        if (ret)
1776                goto out_upregs;
1777
1778        ret = 0;
1779
1780out_upregs:
1781        ehea_update_bcmc_registrations();
1782        up(&ehea_bcmc_regs.lock);
1783out_free:
1784        kfree(cb0);
1785out:
1786        return ret;
1787}
1788
1789static void ehea_promiscuous_error(u64 hret, int enable)
1790{
1791        if (hret == H_AUTHORITY)
1792                ehea_info("Hypervisor denied %sabling promiscuous mode",
1793                          enable == 1 ? "en" : "dis");
1794        else
1795                ehea_error("failed %sabling promiscuous mode",
1796                           enable == 1 ? "en" : "dis");
1797}
1798
1799static void ehea_promiscuous(struct net_device *dev, int enable)
1800{
1801        struct ehea_port *port = netdev_priv(dev);
1802        struct hcp_ehea_port_cb7 *cb7;
1803        u64 hret;
1804
1805        if ((enable && port->promisc) || (!enable && !port->promisc))
1806                return;
1807
1808        cb7 = kzalloc(PAGE_SIZE, GFP_ATOMIC);
1809        if (!cb7) {
1810                ehea_error("no mem for cb7");
1811                goto out;
1812        }
1813
1814        /* Modify Pxs_DUCQPN in CB7 */
1815        cb7->def_uc_qpn = enable == 1 ? port->port_res[0].qp->fw_handle : 0;
1816
1817        hret = ehea_h_modify_ehea_port(port->adapter->handle,
1818                                       port->logical_port_id,
1819                                       H_PORT_CB7, H_PORT_CB7_DUCQPN, cb7);
1820        if (hret) {
1821                ehea_promiscuous_error(hret, enable);
1822                goto out;
1823        }
1824
1825        port->promisc = enable;
1826out:
1827        kfree(cb7);
1828        return;
1829}
1830
1831static u64 ehea_multicast_reg_helper(struct ehea_port *port, u64 mc_mac_addr,
1832                                     u32 hcallid)
1833{
1834        u64 hret;
1835        u8 reg_type;
1836
1837        reg_type = EHEA_BCMC_SCOPE_ALL | EHEA_BCMC_MULTICAST
1838                 | EHEA_BCMC_UNTAGGED;
1839
1840        hret = ehea_h_reg_dereg_bcmc(port->adapter->handle,
1841                                     port->logical_port_id,
1842                                     reg_type, mc_mac_addr, 0, hcallid);
1843        if (hret)
1844                goto out;
1845
1846        reg_type = EHEA_BCMC_SCOPE_ALL | EHEA_BCMC_MULTICAST
1847                 | EHEA_BCMC_VLANID_ALL;
1848
1849        hret = ehea_h_reg_dereg_bcmc(port->adapter->handle,
1850                                     port->logical_port_id,
1851                                     reg_type, mc_mac_addr, 0, hcallid);
1852out:
1853        return hret;
1854}
1855
1856static int ehea_drop_multicast_list(struct net_device *dev)
1857{
1858        struct ehea_port *port = netdev_priv(dev);
1859        struct ehea_mc_list *mc_entry = port->mc_list;
1860        struct list_head *pos;
1861        struct list_head *temp;
1862        int ret = 0;
1863        u64 hret;
1864
1865        list_for_each_safe(pos, temp, &(port->mc_list->list)) {
1866                mc_entry = list_entry(pos, struct ehea_mc_list, list);
1867
1868                hret = ehea_multicast_reg_helper(port, mc_entry->macaddr,
1869                                                 H_DEREG_BCMC);
1870                if (hret) {
1871                        ehea_error("failed deregistering mcast MAC");
1872                        ret = -EIO;
1873                }
1874
1875                list_del(pos);
1876                kfree(mc_entry);
1877        }
1878        return ret;
1879}
1880
1881static void ehea_allmulti(struct net_device *dev, int enable)
1882{
1883        struct ehea_port *port = netdev_priv(dev);
1884        u64 hret;
1885
1886        if (!port->allmulti) {
1887                if (enable) {
1888                        /* Enable ALLMULTI */
1889                        ehea_drop_multicast_list(dev);
1890                        hret = ehea_multicast_reg_helper(port, 0, H_REG_BCMC);
1891                        if (!hret)
1892                                port->allmulti = 1;
1893                        else
1894                                ehea_error("failed enabling IFF_ALLMULTI");
1895                }
1896        } else
1897                if (!enable) {
1898                        /* Disable ALLMULTI */
1899                        hret = ehea_multicast_reg_helper(port, 0, H_DEREG_BCMC);
1900                        if (!hret)
1901                                port->allmulti = 0;
1902                        else
1903                                ehea_error("failed disabling IFF_ALLMULTI");
1904                }
1905}
1906
1907static void ehea_add_multicast_entry(struct ehea_port *port, u8 *mc_mac_addr)
1908{
1909        struct ehea_mc_list *ehea_mcl_entry;
1910        u64 hret;
1911
1912        ehea_mcl_entry = kzalloc(sizeof(*ehea_mcl_entry), GFP_ATOMIC);
1913        if (!ehea_mcl_entry) {
1914                ehea_error("no mem for mcl_entry");
1915                return;
1916        }
1917
1918        INIT_LIST_HEAD(&ehea_mcl_entry->list);
1919
1920        memcpy(&ehea_mcl_entry->macaddr, mc_mac_addr, ETH_ALEN);
1921
1922        hret = ehea_multicast_reg_helper(port, ehea_mcl_entry->macaddr,
1923                                         H_REG_BCMC);
1924        if (!hret)
1925                list_add(&ehea_mcl_entry->list, &port->mc_list->list);
1926        else {
1927                ehea_error("failed registering mcast MAC");
1928                kfree(ehea_mcl_entry);
1929        }
1930}
1931
1932static void ehea_set_multicast_list(struct net_device *dev)
1933{
1934        struct ehea_port *port = netdev_priv(dev);
1935        struct dev_mc_list *k_mcl_entry;
1936        int ret, i;
1937
1938        if (dev->flags & IFF_PROMISC) {
1939                ehea_promiscuous(dev, 1);
1940                return;
1941        }
1942        ehea_promiscuous(dev, 0);
1943
1944        down(&ehea_bcmc_regs.lock);
1945
1946        if (dev->flags & IFF_ALLMULTI) {
1947                ehea_allmulti(dev, 1);
1948                goto out;
1949        }
1950        ehea_allmulti(dev, 0);
1951
1952        if (dev->mc_count) {
1953                ret = ehea_drop_multicast_list(dev);
1954                if (ret) {
1955                        /* Dropping the current multicast list failed.
1956                         * Enabling ALL_MULTI is the best we can do.
1957                         */
1958                        ehea_allmulti(dev, 1);
1959                }
1960
1961                if (dev->mc_count > port->adapter->max_mc_mac) {
1962                        ehea_info("Mcast registration limit reached (0x%lx). "
1963                                  "Use ALLMULTI!",
1964                                  port->adapter->max_mc_mac);
1965                        goto out;
1966                }
1967
1968                for (i = 0, k_mcl_entry = dev->mc_list; i < dev->mc_count; i++,
1969                             k_mcl_entry = k_mcl_entry->next)
1970                        ehea_add_multicast_entry(port, k_mcl_entry->dmi_addr);
1971
1972        }
1973out:
1974        ehea_update_bcmc_registrations();
1975        up(&ehea_bcmc_regs.lock);
1976        return;
1977}
1978
1979static int ehea_change_mtu(struct net_device *dev, int new_mtu)
1980{
1981        if ((new_mtu < 68) || (new_mtu > EHEA_MAX_PACKET_SIZE))
1982                return -EINVAL;
1983        dev->mtu = new_mtu;
1984        return 0;
1985}
1986
1987static void ehea_xmit2(struct sk_buff *skb, struct net_device *dev,
1988                       struct ehea_swqe *swqe, u32 lkey)
1989{
1990        if (skb->protocol == htons(ETH_P_IP)) {
1991                const struct iphdr *iph = ip_hdr(skb);
1992
1993                /* IPv4 */
1994                swqe->tx_control |= EHEA_SWQE_CRC
1995                                 | EHEA_SWQE_IP_CHECKSUM
1996                                 | EHEA_SWQE_TCP_CHECKSUM
1997                                 | EHEA_SWQE_IMM_DATA_PRESENT
1998                                 | EHEA_SWQE_DESCRIPTORS_PRESENT;
1999
2000                write_ip_start_end(swqe, skb);
2001
2002                if (iph->protocol == IPPROTO_UDP) {
2003                        if ((iph->frag_off & IP_MF)
2004                            || (iph->frag_off & IP_OFFSET))
2005                                /* IP fragment, so don't change cs */
2006                                swqe->tx_control &= ~EHEA_SWQE_TCP_CHECKSUM;
2007                        else
2008                                write_udp_offset_end(swqe, skb);
2009                } else if (iph->protocol == IPPROTO_TCP) {
2010                        write_tcp_offset_end(swqe, skb);
2011                }
2012
2013                /* icmp (big data) and ip segmentation packets (all other ip
2014                   packets) do not require any special handling */
2015
2016        } else {
2017                /* Other Ethernet Protocol */
2018                swqe->tx_control |= EHEA_SWQE_CRC
2019                                 | EHEA_SWQE_IMM_DATA_PRESENT
2020                                 | EHEA_SWQE_DESCRIPTORS_PRESENT;
2021        }
2022
2023        write_swqe2_data(skb, dev, swqe, lkey);
2024}
2025
2026static void ehea_xmit3(struct sk_buff *skb, struct net_device *dev,
2027                       struct ehea_swqe *swqe)
2028{
2029        int nfrags = skb_shinfo(skb)->nr_frags;
2030        u8 *imm_data = &swqe->u.immdata_nodesc.immediate_data[0];
2031        skb_frag_t *frag;
2032        int i;
2033
2034        if (skb->protocol == htons(ETH_P_IP)) {
2035                const struct iphdr *iph = ip_hdr(skb);
2036
2037                /* IPv4 */
2038                write_ip_start_end(swqe, skb);
2039
2040                if (iph->protocol == IPPROTO_TCP) {
2041                        swqe->tx_control |= EHEA_SWQE_CRC
2042                                         | EHEA_SWQE_IP_CHECKSUM
2043                                         | EHEA_SWQE_TCP_CHECKSUM
2044                                         | EHEA_SWQE_IMM_DATA_PRESENT;
2045
2046                        write_tcp_offset_end(swqe, skb);
2047
2048                } else if (iph->protocol == IPPROTO_UDP) {
2049                        if ((iph->frag_off & IP_MF)
2050                            || (iph->frag_off & IP_OFFSET))
2051                                /* IP fragment, so don't change cs */
2052                                swqe->tx_control |= EHEA_SWQE_CRC
2053                                                 | EHEA_SWQE_IMM_DATA_PRESENT;
2054                        else {
2055                                swqe->tx_control |= EHEA_SWQE_CRC
2056                                                 | EHEA_SWQE_IP_CHECKSUM
2057                                                 | EHEA_SWQE_TCP_CHECKSUM
2058                                                 | EHEA_SWQE_IMM_DATA_PRESENT;
2059
2060                                write_udp_offset_end(swqe, skb);
2061                        }
2062                } else {
2063                        /* icmp (big data) and
2064                           ip segmentation packets (all other ip packets) */
2065                        swqe->tx_control |= EHEA_SWQE_CRC
2066                                         | EHEA_SWQE_IP_CHECKSUM
2067                                         | EHEA_SWQE_IMM_DATA_PRESENT;
2068                }
2069        } else {
2070                /* Other Ethernet Protocol */
2071                swqe->tx_control |= EHEA_SWQE_CRC | EHEA_SWQE_IMM_DATA_PRESENT;
2072        }
2073        /* copy (immediate) data */
2074        if (nfrags == 0) {
2075                /* data is in a single piece */
2076                skb_copy_from_linear_data(skb, imm_data, skb->len);
2077        } else {
2078                /* first copy data from the skb->data buffer ... */
2079                skb_copy_from_linear_data(skb, imm_data,
2080                                          skb->len - skb->data_len);
2081                imm_data += skb->len - skb->data_len;
2082
2083                /* ... then copy data from the fragments */
2084                for (i = 0; i < nfrags; i++) {
2085                        frag = &skb_shinfo(skb)->frags[i];
2086                        memcpy(imm_data,
2087                               page_address(frag->page) + frag->page_offset,
2088                               frag->size);
2089                        imm_data += frag->size;
2090                }
2091        }
2092        swqe->immediate_data_length = skb->len;
2093        dev_kfree_skb(skb);
2094}
2095
2096static inline int ehea_hash_skb(struct sk_buff *skb, int num_qps)
2097{
2098        struct tcphdr *tcp;
2099        u32 tmp;
2100
2101        if ((skb->protocol == htons(ETH_P_IP)) &&
2102            (ip_hdr(skb)->protocol == IPPROTO_TCP)) {
2103                tcp = (struct tcphdr *)(skb_network_header(skb) +
2104                                        (ip_hdr(skb)->ihl * 4));
2105                tmp = (tcp->source + (tcp->dest << 16)) % 31;
2106                tmp += ip_hdr(skb)->daddr % 31;
2107                return tmp % num_qps;
2108        } else
2109                return 0;
2110}
2111
2112static int ehea_start_xmit(struct sk_buff *skb, struct net_device *dev)
2113{
2114        struct ehea_port *port = netdev_priv(dev);
2115        struct ehea_swqe *swqe;
2116        unsigned long flags;
2117        u32 lkey;
2118        int swqe_index;
2119        struct ehea_port_res *pr;
2120
2121        pr = &port->port_res[ehea_hash_skb(skb, port->num_tx_qps)];
2122
2123        if (!spin_trylock(&pr->xmit_lock))
2124                return NETDEV_TX_BUSY;
2125
2126        if (pr->queue_stopped) {
2127                spin_unlock(&pr->xmit_lock);
2128                return NETDEV_TX_BUSY;
2129        }
2130
2131        swqe = ehea_get_swqe(pr->qp, &swqe_index);
2132        memset(swqe, 0, SWQE_HEADER_SIZE);
2133        atomic_dec(&pr->swqe_avail);
2134
2135        if (skb->len <= SWQE3_MAX_IMM) {
2136                u32 sig_iv = port->sig_comp_iv;
2137                u32 swqe_num = pr->swqe_id_counter;
2138                ehea_xmit3(skb, dev, swqe);
2139                swqe->wr_id = EHEA_BMASK_SET(EHEA_WR_ID_TYPE, EHEA_SWQE3_TYPE)
2140                        | EHEA_BMASK_SET(EHEA_WR_ID_COUNT, swqe_num);
2141                if (pr->swqe_ll_count >= (sig_iv - 1)) {
2142                        swqe->wr_id |= EHEA_BMASK_SET(EHEA_WR_ID_REFILL,
2143                                                      sig_iv);
2144                        swqe->tx_control |= EHEA_SWQE_SIGNALLED_COMPLETION;
2145                        pr->swqe_ll_count = 0;
2146                } else
2147                        pr->swqe_ll_count += 1;
2148        } else {
2149                swqe->wr_id =
2150                        EHEA_BMASK_SET(EHEA_WR_ID_TYPE, EHEA_SWQE2_TYPE)
2151                      | EHEA_BMASK_SET(EHEA_WR_ID_COUNT, pr->swqe_id_counter)
2152                      | EHEA_BMASK_SET(EHEA_WR_ID_REFILL, 1)
2153                      | EHEA_BMASK_SET(EHEA_WR_ID_INDEX, pr->sq_skba.index);
2154                pr->sq_skba.arr[pr->sq_skba.index] = skb;
2155
2156                pr->sq_skba.index++;
2157                pr->sq_skba.index &= (pr->sq_skba.len - 1);
2158
2159                lkey = pr->send_mr.lkey;
2160                ehea_xmit2(skb, dev, swqe, lkey);
2161                swqe->tx_control |= EHEA_SWQE_SIGNALLED_COMPLETION;
2162        }
2163        pr->swqe_id_counter += 1;
2164
2165        if (port->vgrp && vlan_tx_tag_present(skb)) {
2166                swqe->tx_control |= EHEA_SWQE_VLAN_INSERT;
2167                swqe->vlan_tag = vlan_tx_tag_get(skb);
2168        }
2169
2170        if (netif_msg_tx_queued(port)) {
2171                ehea_info("post swqe on QP %d", pr->qp->init_attr.qp_nr);
2172                ehea_dump(swqe, 512, "swqe");
2173        }
2174
2175        if (unlikely(test_bit(__EHEA_STOP_XFER, &ehea_driver_flags))) {
2176                netif_stop_queue(dev);
2177                swqe->tx_control |= EHEA_SWQE_PURGE;
2178        }
2179
2180        ehea_post_swqe(pr->qp, swqe);
2181        pr->tx_packets++;
2182
2183        if (unlikely(atomic_read(&pr->swqe_avail) <= 1)) {
2184                spin_lock_irqsave(&pr->netif_queue, flags);
2185                if (unlikely(atomic_read(&pr->swqe_avail) <= 1)) {
2186                        pr->p_stats.queue_stopped++;
2187                        netif_stop_queue(dev);
2188                        pr->queue_stopped = 1;
2189                }
2190                spin_unlock_irqrestore(&pr->netif_queue, flags);
2191        }
2192        dev->trans_start = jiffies;
2193        spin_unlock(&pr->xmit_lock);
2194
2195        return NETDEV_TX_OK;
2196}
2197
2198static void ehea_vlan_rx_register(struct net_device *dev,
2199                                  struct vlan_group *grp)
2200{
2201        struct ehea_port *port = netdev_priv(dev);
2202        struct ehea_adapter *adapter = port->adapter;
2203        struct hcp_ehea_port_cb1 *cb1;
2204        u64 hret;
2205
2206        port->vgrp = grp;
2207
2208        cb1 = kzalloc(PAGE_SIZE, GFP_KERNEL);
2209        if (!cb1) {
2210                ehea_error("no mem for cb1");
2211                goto out;
2212        }
2213
2214        memset(cb1->vlan_filter, 0, sizeof(cb1->vlan_filter));
2215
2216        hret = ehea_h_modify_ehea_port(adapter->handle, port->logical_port_id,
2217                                       H_PORT_CB1, H_PORT_CB1_ALL, cb1);
2218        if (hret != H_SUCCESS)
2219                ehea_error("modify_ehea_port failed");
2220
2221        kfree(cb1);
2222out:
2223        return;
2224}
2225
2226static void ehea_vlan_rx_add_vid(struct net_device *dev, unsigned short vid)
2227{
2228        struct ehea_port *port = netdev_priv(dev);
2229        struct ehea_adapter *adapter = port->adapter;
2230        struct hcp_ehea_port_cb1 *cb1;
2231        int index;
2232        u64 hret;
2233
2234        cb1 = kzalloc(PAGE_SIZE, GFP_KERNEL);
2235        if (!cb1) {
2236                ehea_error("no mem for cb1");
2237                goto out;
2238        }
2239
2240        hret = ehea_h_query_ehea_port(adapter->handle, port->logical_port_id,
2241                                      H_PORT_CB1, H_PORT_CB1_ALL, cb1);
2242        if (hret != H_SUCCESS) {
2243                ehea_error("query_ehea_port failed");
2244                goto out;
2245        }
2246
2247        index = (vid / 64);
2248        cb1->vlan_filter[index] |= ((u64)(0x8000000000000000 >> (vid & 0x3F)));
2249
2250        hret = ehea_h_modify_ehea_port(adapter->handle, port->logical_port_id,
2251                                       H_PORT_CB1, H_PORT_CB1_ALL, cb1);
2252        if (hret != H_SUCCESS)
2253                ehea_error("modify_ehea_port failed");
2254out:
2255        kfree(cb1);
2256        return;
2257}
2258
2259static void ehea_vlan_rx_kill_vid(struct net_device *dev, unsigned short vid)
2260{
2261        struct ehea_port *port = netdev_priv(dev);
2262        struct ehea_adapter *adapter = port->adapter;
2263        struct hcp_ehea_port_cb1 *cb1;
2264        int index;
2265        u64 hret;
2266
2267        vlan_group_set_device(port->vgrp, vid, NULL);
2268
2269        cb1 = kzalloc(PAGE_SIZE, GFP_KERNEL);
2270        if (!cb1) {
2271                ehea_error("no mem for cb1");
2272                goto out;
2273        }
2274
2275        hret = ehea_h_query_ehea_port(adapter->handle, port->logical_port_id,
2276                                      H_PORT_CB1, H_PORT_CB1_ALL, cb1);
2277        if (hret != H_SUCCESS) {
2278                ehea_error("query_ehea_port failed");
2279                goto out;
2280        }
2281
2282        index = (vid / 64);
2283        cb1->vlan_filter[index] &= ~((u64)(0x8000000000000000 >> (vid & 0x3F)));
2284
2285        hret = ehea_h_modify_ehea_port(adapter->handle, port->logical_port_id,
2286                                       H_PORT_CB1, H_PORT_CB1_ALL, cb1);
2287        if (hret != H_SUCCESS)
2288                ehea_error("modify_ehea_port failed");
2289out:
2290        kfree(cb1);
2291        return;
2292}
2293
2294int ehea_activate_qp(struct ehea_adapter *adapter, struct ehea_qp *qp)
2295{
2296        int ret = -EIO;
2297        u64 hret;
2298        u16 dummy16 = 0;
2299        u64 dummy64 = 0;
2300        struct hcp_modify_qp_cb0 *cb0;
2301
2302        cb0 = kzalloc(PAGE_SIZE, GFP_KERNEL);
2303        if (!cb0) {
2304                ret = -ENOMEM;
2305                goto out;
2306        }
2307
2308        hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
2309                                    EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF), cb0);
2310        if (hret != H_SUCCESS) {
2311                ehea_error("query_ehea_qp failed (1)");
2312                goto out;
2313        }
2314
2315        cb0->qp_ctl_reg = H_QP_CR_STATE_INITIALIZED;
2316        hret = ehea_h_modify_ehea_qp(adapter->handle, 0, qp->fw_handle,
2317                                     EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG, 1), cb0,
2318                                     &dummy64, &dummy64, &dummy16, &dummy16);
2319        if (hret != H_SUCCESS) {
2320                ehea_error("modify_ehea_qp failed (1)");
2321                goto out;
2322        }
2323
2324        hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
2325                                    EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF), cb0);
2326        if (hret != H_SUCCESS) {
2327                ehea_error("query_ehea_qp failed (2)");
2328                goto out;
2329        }
2330
2331        cb0->qp_ctl_reg = H_QP_CR_ENABLED | H_QP_CR_STATE_INITIALIZED;
2332        hret = ehea_h_modify_ehea_qp(adapter->handle, 0, qp->fw_handle,
2333                                     EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG, 1), cb0,
2334                                     &dummy64, &dummy64, &dummy16, &dummy16);
2335        if (hret != H_SUCCESS) {
2336                ehea_error("modify_ehea_qp failed (2)");
2337                goto out;
2338        }
2339
2340        hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
2341                                    EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF), cb0);
2342        if (hret != H_SUCCESS) {
2343                ehea_error("query_ehea_qp failed (3)");
2344                goto out;
2345        }
2346
2347        cb0->qp_ctl_reg = H_QP_CR_ENABLED | H_QP_CR_STATE_RDY2SND;
2348        hret = ehea_h_modify_ehea_qp(adapter->handle, 0, qp->fw_handle,
2349                                     EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG, 1), cb0,
2350                                     &dummy64, &dummy64, &dummy16, &dummy16);
2351        if (hret != H_SUCCESS) {
2352                ehea_error("modify_ehea_qp failed (3)");
2353                goto out;
2354        }
2355
2356        hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
2357                                    EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF), cb0);
2358        if (hret != H_SUCCESS) {
2359                ehea_error("query_ehea_qp failed (4)");
2360                goto out;
2361        }
2362
2363        ret = 0;
2364out:
2365        kfree(cb0);
2366        return ret;
2367}
2368
2369static int ehea_port_res_setup(struct ehea_port *port, int def_qps,
2370                               int add_tx_qps)
2371{
2372        int ret, i;
2373        struct port_res_cfg pr_cfg, pr_cfg_small_rx;
2374        enum ehea_eq_type eq_type = EHEA_EQ;
2375
2376        port->qp_eq = ehea_create_eq(port->adapter, eq_type,
2377                                   EHEA_MAX_ENTRIES_EQ, 1);
2378        if (!port->qp_eq) {
2379                ret = -EINVAL;
2380                ehea_error("ehea_create_eq failed (qp_eq)");
2381                goto out_kill_eq;
2382        }
2383
2384        pr_cfg.max_entries_rcq = rq1_entries + rq2_entries + rq3_entries;
2385        pr_cfg.max_entries_scq = sq_entries * 2;
2386        pr_cfg.max_entries_sq = sq_entries;
2387        pr_cfg.max_entries_rq1 = rq1_entries;
2388        pr_cfg.max_entries_rq2 = rq2_entries;
2389        pr_cfg.max_entries_rq3 = rq3_entries;
2390
2391        pr_cfg_small_rx.max_entries_rcq = 1;
2392        pr_cfg_small_rx.max_entries_scq = sq_entries;
2393        pr_cfg_small_rx.max_entries_sq = sq_entries;
2394        pr_cfg_small_rx.max_entries_rq1 = 1;
2395        pr_cfg_small_rx.max_entries_rq2 = 1;
2396        pr_cfg_small_rx.max_entries_rq3 = 1;
2397
2398        for (i = 0; i < def_qps; i++) {
2399                ret = ehea_init_port_res(port, &port->port_res[i], &pr_cfg, i);
2400                if (ret)
2401                        goto out_clean_pr;
2402        }
2403        for (i = def_qps; i < def_qps + add_tx_qps; i++) {
2404                ret = ehea_init_port_res(port, &port->port_res[i],
2405                                         &pr_cfg_small_rx, i);
2406                if (ret)
2407                        goto out_clean_pr;
2408        }
2409
2410        return 0;
2411
2412out_clean_pr:
2413        while (--i >= 0)
2414                ehea_clean_portres(port, &port->port_res[i]);
2415
2416out_kill_eq:
2417        ehea_destroy_eq(port->qp_eq);
2418        return ret;
2419}
2420
2421static int ehea_clean_all_portres(struct ehea_port *port)
2422{
2423        int ret = 0;
2424        int i;
2425
2426        for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++)
2427                ret |= ehea_clean_portres(port, &port->port_res[i]);
2428
2429        ret |= ehea_destroy_eq(port->qp_eq);
2430
2431        return ret;
2432}
2433
2434static void ehea_remove_adapter_mr(struct ehea_adapter *adapter)
2435{
2436        if (adapter->active_ports)
2437                return;
2438
2439        ehea_rem_mr(&adapter->mr);
2440}
2441
2442static int ehea_add_adapter_mr(struct ehea_adapter *adapter)
2443{
2444        if (adapter->active_ports)
2445                return 0;
2446
2447        return ehea_reg_kernel_mr(adapter, &adapter->mr);
2448}
2449
2450static int ehea_up(struct net_device *dev)
2451{
2452        int ret, i;
2453        struct ehea_port *port = netdev_priv(dev);
2454
2455        if (port->state == EHEA_PORT_UP)
2456                return 0;
2457
2458        down(&ehea_fw_handles.lock);
2459
2460        ret = ehea_port_res_setup(port, port->num_def_qps,
2461                                  port->num_add_tx_qps);
2462        if (ret) {
2463                ehea_error("port_res_failed");
2464                goto out;
2465        }
2466
2467        /* Set default QP for this port */
2468        ret = ehea_configure_port(port);
2469        if (ret) {
2470                ehea_error("ehea_configure_port failed. ret:%d", ret);
2471                goto out_clean_pr;
2472        }
2473
2474        ret = ehea_reg_interrupts(dev);
2475        if (ret) {
2476                ehea_error("reg_interrupts failed. ret:%d", ret);
2477                goto out_clean_pr;
2478        }
2479
2480        for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++) {
2481                ret = ehea_activate_qp(port->adapter, port->port_res[i].qp);
2482                if (ret) {
2483                        ehea_error("activate_qp failed");
2484                        goto out_free_irqs;
2485                }
2486        }
2487
2488        for (i = 0; i < port->num_def_qps; i++) {
2489                ret = ehea_fill_port_res(&port->port_res[i]);
2490                if (ret) {
2491                        ehea_error("out_free_irqs");
2492                        goto out_free_irqs;
2493                }
2494        }
2495
2496        down(&ehea_bcmc_regs.lock);
2497
2498        ret = ehea_broadcast_reg_helper(port, H_REG_BCMC);
2499        if (ret) {
2500                ret = -EIO;
2501                goto out_free_irqs;
2502        }
2503
2504        port->state = EHEA_PORT_UP;
2505
2506        ret = 0;
2507        goto out;
2508
2509out_free_irqs:
2510        ehea_free_interrupts(dev);
2511
2512out_clean_pr:
2513        ehea_clean_all_portres(port);
2514out:
2515        if (ret)
2516                ehea_info("Failed starting %s. ret=%i", dev->name, ret);
2517
2518        ehea_update_bcmc_registrations();
2519        up(&ehea_bcmc_regs.lock);
2520
2521        ehea_update_firmware_handles();
2522        up(&ehea_fw_handles.lock);
2523
2524        return ret;
2525}
2526
2527static void port_napi_disable(struct ehea_port *port)
2528{
2529        int i;
2530
2531        for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++)
2532                napi_disable(&port->port_res[i].napi);
2533}
2534
2535static void port_napi_enable(struct ehea_port *port)
2536{
2537        int i;
2538
2539        for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++)
2540                napi_enable(&port->port_res[i].napi);
2541}
2542
2543static int ehea_open(struct net_device *dev)
2544{
2545        int ret;
2546        struct ehea_port *port = netdev_priv(dev);
2547
2548        down(&port->port_lock);
2549
2550        if (netif_msg_ifup(port))
2551                ehea_info("enabling port %s", dev->name);
2552
2553        ret = ehea_up(dev);
2554        if (!ret) {
2555                port_napi_enable(port);
2556                netif_start_queue(dev);
2557        }
2558
2559        up(&port->port_lock);
2560
2561        return ret;
2562}
2563
2564static int ehea_down(struct net_device *dev)
2565{
2566        int ret;
2567        struct ehea_port *port = netdev_priv(dev);
2568
2569        if (port->state == EHEA_PORT_DOWN)
2570                return 0;
2571
2572        down(&ehea_bcmc_regs.lock);
2573        ehea_drop_multicast_list(dev);
2574        ehea_broadcast_reg_helper(port, H_DEREG_BCMC);
2575
2576        ehea_free_interrupts(dev);
2577
2578        down(&ehea_fw_handles.lock);
2579
2580        port->state = EHEA_PORT_DOWN;
2581
2582        ehea_update_bcmc_registrations();
2583        up(&ehea_bcmc_regs.lock);
2584
2585        ret = ehea_clean_all_portres(port);
2586        if (ret)
2587                ehea_info("Failed freeing resources for %s. ret=%i",
2588                          dev->name, ret);
2589
2590        ehea_update_firmware_handles();
2591        up(&ehea_fw_handles.lock);
2592
2593        return ret;
2594}
2595
2596static int ehea_stop(struct net_device *dev)
2597{
2598        int ret;
2599        struct ehea_port *port = netdev_priv(dev);
2600
2601        if (netif_msg_ifdown(port))
2602                ehea_info("disabling port %s", dev->name);
2603
2604        flush_scheduled_work();
2605        down(&port->port_lock);
2606        netif_stop_queue(dev);
2607        port_napi_disable(port);
2608        ret = ehea_down(dev);
2609        up(&port->port_lock);
2610        return ret;
2611}
2612
2613void ehea_purge_sq(struct ehea_qp *orig_qp)
2614{
2615        struct ehea_qp qp = *orig_qp;
2616        struct ehea_qp_init_attr *init_attr = &qp.init_attr;
2617        struct ehea_swqe *swqe;
2618        int wqe_index;
2619        int i;
2620
2621        for (i = 0; i < init_attr->act_nr_send_wqes; i++) {
2622                swqe = ehea_get_swqe(&qp, &wqe_index);
2623                swqe->tx_control |= EHEA_SWQE_PURGE;
2624        }
2625}
2626
2627void ehea_flush_sq(struct ehea_port *port)
2628{
2629        int i;
2630
2631        for (i = 0; i < port->num_def_qps + port->num_add_tx_qps; i++) {
2632                struct ehea_port_res *pr = &port->port_res[i];
2633                int swqe_max = pr->sq_skba_size - 2 - pr->swqe_ll_count;
2634                int k = 0;
2635                while (atomic_read(&pr->swqe_avail) < swqe_max) {
2636                        msleep(5);
2637                        if (++k == 20)
2638                                break;
2639                }
2640        }
2641}
2642
2643int ehea_stop_qps(struct net_device *dev)
2644{
2645        struct ehea_port *port = netdev_priv(dev);
2646        struct ehea_adapter *adapter = port->adapter;
2647        struct hcp_modify_qp_cb0 *cb0;
2648        int ret = -EIO;
2649        int dret;
2650        int i;
2651        u64 hret;
2652        u64 dummy64 = 0;
2653        u16 dummy16 = 0;
2654
2655        cb0 = kzalloc(PAGE_SIZE, GFP_KERNEL);
2656        if (!cb0) {
2657                ret = -ENOMEM;
2658                goto out;
2659        }
2660
2661        for (i = 0; i < (port->num_def_qps + port->num_add_tx_qps); i++) {
2662                struct ehea_port_res *pr =  &port->port_res[i];
2663                struct ehea_qp *qp = pr->qp;
2664
2665                /* Purge send queue */
2666                ehea_purge_sq(qp);
2667
2668                /* Disable queue pair */
2669                hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
2670                                            EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF),
2671                                            cb0);
2672                if (hret != H_SUCCESS) {
2673                        ehea_error("query_ehea_qp failed (1)");
2674                        goto out;
2675                }
2676
2677                cb0->qp_ctl_reg = (cb0->qp_ctl_reg & H_QP_CR_RES_STATE) << 8;
2678                cb0->qp_ctl_reg &= ~H_QP_CR_ENABLED;
2679
2680                hret = ehea_h_modify_ehea_qp(adapter->handle, 0, qp->fw_handle,
2681                                             EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG,
2682                                                            1), cb0, &dummy64,
2683                                             &dummy64, &dummy16, &dummy16);
2684                if (hret != H_SUCCESS) {
2685                        ehea_error("modify_ehea_qp failed (1)");
2686                        goto out;
2687                }
2688
2689                hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
2690                                            EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF),
2691                                            cb0);
2692                if (hret != H_SUCCESS) {
2693                        ehea_error("query_ehea_qp failed (2)");
2694                        goto out;
2695                }
2696
2697                /* deregister shared memory regions */
2698                dret = ehea_rem_smrs(pr);
2699                if (dret) {
2700                        ehea_error("unreg shared memory region failed");
2701                        goto out;
2702                }
2703        }
2704
2705        ret = 0;
2706out:
2707        kfree(cb0);
2708
2709        return ret;
2710}
2711
2712void ehea_update_rqs(struct ehea_qp *orig_qp, struct ehea_port_res *pr)
2713{
2714        struct ehea_qp qp = *orig_qp;
2715        struct ehea_qp_init_attr *init_attr = &qp.init_attr;
2716        struct ehea_rwqe *rwqe;
2717        struct sk_buff **skba_rq2 = pr->rq2_skba.arr;
2718        struct sk_buff **skba_rq3 = pr->rq3_skba.arr;
2719        struct sk_buff *skb;
2720        u32 lkey = pr->recv_mr.lkey;
2721
2722
2723        int i;
2724        int index;
2725
2726        for (i = 0; i < init_attr->act_nr_rwqes_rq2 + 1; i++) {
2727                rwqe = ehea_get_next_rwqe(&qp, 2);
2728                rwqe->sg_list[0].l_key = lkey;
2729                index = EHEA_BMASK_GET(EHEA_WR_ID_INDEX, rwqe->wr_id);
2730                skb = skba_rq2[index];
2731                if (skb)
2732                        rwqe->sg_list[0].vaddr = ehea_map_vaddr(skb->data);
2733        }
2734
2735        for (i = 0; i < init_attr->act_nr_rwqes_rq3 + 1; i++) {
2736                rwqe = ehea_get_next_rwqe(&qp, 3);
2737                rwqe->sg_list[0].l_key = lkey;
2738                index = EHEA_BMASK_GET(EHEA_WR_ID_INDEX, rwqe->wr_id);
2739                skb = skba_rq3[index];
2740                if (skb)
2741                        rwqe->sg_list[0].vaddr = ehea_map_vaddr(skb->data);
2742        }
2743}
2744
2745int ehea_restart_qps(struct net_device *dev)
2746{
2747        struct ehea_port *port = netdev_priv(dev);
2748        struct ehea_adapter *adapter = port->adapter;
2749        int ret = 0;
2750        int i;
2751
2752        struct hcp_modify_qp_cb0 *cb0;
2753        u64 hret;
2754        u64 dummy64 = 0;
2755        u16 dummy16 = 0;
2756
2757        cb0 = kzalloc(PAGE_SIZE, GFP_KERNEL);
2758        if (!cb0) {
2759                ret = -ENOMEM;
2760                goto out;
2761        }
2762
2763        for (i = 0; i < (port->num_def_qps + port->num_add_tx_qps); i++) {
2764                struct ehea_port_res *pr =  &port->port_res[i];
2765                struct ehea_qp *qp = pr->qp;
2766
2767                ret = ehea_gen_smrs(pr);
2768                if (ret) {
2769                        ehea_error("creation of shared memory regions failed");
2770                        goto out;
2771                }
2772
2773                ehea_update_rqs(qp, pr);
2774
2775                /* Enable queue pair */
2776                hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
2777                                            EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF),
2778                                            cb0);
2779                if (hret != H_SUCCESS) {
2780                        ehea_error("query_ehea_qp failed (1)");
2781                        goto out;
2782                }
2783
2784                cb0->qp_ctl_reg = (cb0->qp_ctl_reg & H_QP_CR_RES_STATE) << 8;
2785                cb0->qp_ctl_reg |= H_QP_CR_ENABLED;
2786
2787                hret = ehea_h_modify_ehea_qp(adapter->handle, 0, qp->fw_handle,
2788                                             EHEA_BMASK_SET(H_QPCB0_QP_CTL_REG,
2789                                                            1), cb0, &dummy64,
2790                                             &dummy64, &dummy16, &dummy16);
2791                if (hret != H_SUCCESS) {
2792                        ehea_error("modify_ehea_qp failed (1)");
2793                        goto out;
2794                }
2795
2796                hret = ehea_h_query_ehea_qp(adapter->handle, 0, qp->fw_handle,
2797                                            EHEA_BMASK_SET(H_QPCB0_ALL, 0xFFFF),
2798                                            cb0);
2799                if (hret != H_SUCCESS) {
2800                        ehea_error("query_ehea_qp failed (2)");
2801                        goto out;
2802                }
2803
2804                /* refill entire queue */
2805                ehea_refill_rq1(pr, pr->rq1_skba.index, 0);
2806                ehea_refill_rq2(pr, 0);
2807                ehea_refill_rq3(pr, 0);
2808        }
2809out:
2810        kfree(cb0);
2811
2812        return ret;
2813}
2814
2815static void ehea_reset_port(struct work_struct *work)
2816{
2817        int ret;
2818        struct ehea_port *port =
2819                container_of(work, struct ehea_port, reset_task);
2820        struct net_device *dev = port->netdev;
2821
2822        port->resets++;
2823        down(&port->port_lock);
2824        netif_stop_queue(dev);
2825
2826        port_napi_disable(port);
2827
2828        ehea_down(dev);
2829
2830        ret = ehea_up(dev);
2831        if (ret)
2832                goto out;
2833
2834        ehea_set_multicast_list(dev);
2835
2836        if (netif_msg_timer(port))
2837                ehea_info("Device %s resetted successfully", dev->name);
2838
2839        port_napi_enable(port);
2840
2841        netif_wake_queue(dev);
2842out:
2843        up(&port->port_lock);
2844        return;
2845}
2846
2847static void ehea_rereg_mrs(struct work_struct *work)
2848{
2849        int ret, i;
2850        struct ehea_adapter *adapter;
2851
2852        down(&dlpar_mem_lock);
2853        ehea_info("LPAR memory enlarged - re-initializing driver");
2854
2855        list_for_each_entry(adapter, &adapter_list, list)
2856                if (adapter->active_ports) {
2857                        /* Shutdown all ports */
2858                        for (i = 0; i < EHEA_MAX_PORTS; i++) {
2859                                struct ehea_port *port = adapter->port[i];
2860
2861                                if (port) {
2862                                        struct net_device *dev = port->netdev;
2863
2864                                        if (dev->flags & IFF_UP) {
2865                                                down(&port->port_lock);
2866                                                netif_stop_queue(dev);
2867                                                ehea_flush_sq(port);
2868                                                ret = ehea_stop_qps(dev);
2869                                                if (ret) {
2870                                                        up(&port->port_lock);
2871                                                        goto out;
2872                                                }
2873                                                port_napi_disable(port);
2874                                                up(&port->port_lock);
2875                                        }
2876                                }
2877                        }
2878
2879                        /* Unregister old memory region */
2880                        ret = ehea_rem_mr(&adapter->mr);
2881                        if (ret) {
2882                                ehea_error("unregister MR failed - driver"
2883                                           " inoperable!");
2884                                goto out;
2885                        }
2886                }
2887
2888        ehea_destroy_busmap();
2889        ret = ehea_create_busmap();
2890        if (ret) {
2891                ehea_error("creating ehea busmap failed");
2892                goto out;
2893        }
2894
2895        clear_bit(__EHEA_STOP_XFER, &ehea_driver_flags);
2896
2897        list_for_each_entry(adapter, &adapter_list, list)
2898                if (adapter->active_ports) {
2899                        /* Register new memory region */
2900                        ret = ehea_reg_kernel_mr(adapter, &adapter->mr);
2901                        if (ret) {
2902                                ehea_error("register MR failed - driver"
2903                                           " inoperable!");
2904                                goto out;
2905                        }
2906
2907                        /* Restart all ports */
2908                        for (i = 0; i < EHEA_MAX_PORTS; i++) {
2909                                struct ehea_port *port = adapter->port[i];
2910
2911                                if (port) {
2912                                        struct net_device *dev = port->netdev;
2913
2914                                        if (dev->flags & IFF_UP) {
2915                                                down(&port->port_lock);
2916                                                port_napi_enable(port);
2917                                                ret = ehea_restart_qps(dev);
2918                                                if (!ret)
2919                                                        netif_wake_queue(dev);
2920                                                up(&port->port_lock);
2921                                        }
2922                                }
2923                        }
2924                }
2925       up(&dlpar_mem_lock);
2926       ehea_info("re-initializing driver complete");
2927out:
2928        return;
2929}
2930
2931static void ehea_tx_watchdog(struct net_device *dev)
2932{
2933        struct ehea_port *port = netdev_priv(dev);
2934
2935        if (netif_carrier_ok(dev) &&
2936            !test_bit(__EHEA_STOP_XFER, &ehea_driver_flags))
2937                schedule_work(&port->reset_task);
2938}
2939
2940int ehea_sense_adapter_attr(struct ehea_adapter *adapter)
2941{
2942        struct hcp_query_ehea *cb;
2943        u64 hret;
2944        int ret;
2945
2946        cb = kzalloc(PAGE_SIZE, GFP_KERNEL);
2947        if (!cb) {
2948                ret = -ENOMEM;
2949                goto out;
2950        }
2951
2952        hret = ehea_h_query_ehea(adapter->handle, cb);
2953
2954        if (hret != H_SUCCESS) {
2955                ret = -EIO;
2956                goto out_herr;
2957        }
2958
2959        adapter->max_mc_mac = cb->max_mc_mac - 1;
2960        ret = 0;
2961
2962out_herr:
2963        kfree(cb);
2964out:
2965        return ret;
2966}
2967
2968int ehea_get_jumboframe_status(struct ehea_port *port, int *jumbo)
2969{
2970        struct hcp_ehea_port_cb4 *cb4;
2971        u64 hret;
2972        int ret = 0;
2973
2974        *jumbo = 0;
2975
2976        /* (Try to) enable *jumbo frames */
2977        cb4 = kzalloc(PAGE_SIZE, GFP_KERNEL);
2978        if (!cb4) {
2979                ehea_error("no mem for cb4");
2980                ret = -ENOMEM;
2981                goto out;
2982        } else {
2983                hret = ehea_h_query_ehea_port(port->adapter->handle,
2984                                              port->logical_port_id,
2985                                              H_PORT_CB4,
2986                                              H_PORT_CB4_JUMBO, cb4);
2987                if (hret == H_SUCCESS) {
2988                        if (cb4->jumbo_frame)
2989                                *jumbo = 1;
2990                        else {
2991                                cb4->jumbo_frame = 1;
2992                                hret = ehea_h_modify_ehea_port(port->adapter->
2993                                                               handle,
2994                                                               port->
2995                                                               logical_port_id,
2996                                                               H_PORT_CB4,
2997                                                               H_PORT_CB4_JUMBO,
2998                                                               cb4);
2999                                if (hret == H_SUCCESS)
3000                                        *jumbo = 1;
3001                        }
3002                } else
3003                        ret = -EINVAL;
3004
3005                kfree(cb4);
3006        }
3007out:
3008        return ret;
3009}
3010
3011static ssize_t ehea_show_port_id(struct device *dev,
3012                                 struct device_attribute *attr, char *buf)
3013{
3014        struct ehea_port *port = container_of(dev, struct ehea_port, ofdev.dev);
3015        return sprintf(buf, "%d", port->logical_port_id);
3016}
3017
3018static DEVICE_ATTR(log_port_id, S_IRUSR | S_IRGRP | S_IROTH, ehea_show_port_id,
3019                   NULL);
3020
3021static void __devinit logical_port_release(struct device *dev)
3022{
3023        struct ehea_port *port = container_of(dev, struct ehea_port, ofdev.dev);
3024        of_node_put(port->ofdev.node);
3025}
3026
3027static struct device *ehea_register_port(struct ehea_port *port,
3028                                         struct device_node *dn)
3029{
3030        int ret;
3031
3032        port->ofdev.node = of_node_get(dn);
3033        port->ofdev.dev.parent = &port->adapter->ofdev->dev;
3034        port->ofdev.dev.bus = &ibmebus_bus_type;
3035
3036        sprintf(port->ofdev.dev.bus_id, "port%d", port_name_cnt++);
3037        port->ofdev.dev.release = logical_port_release;
3038
3039        ret = of_device_register(&port->ofdev);
3040        if (ret) {
3041                ehea_error("failed to register device. ret=%d", ret);
3042                goto out;
3043        }
3044
3045        ret = device_create_file(&port->ofdev.dev, &dev_attr_log_port_id);
3046        if (ret) {
3047                ehea_error("failed to register attributes, ret=%d", ret);
3048                goto out_unreg_of_dev;
3049        }
3050
3051        return &port->ofdev.dev;
3052
3053out_unreg_of_dev:
3054        of_device_unregister(&port->ofdev);
3055out:
3056        return NULL;
3057}
3058
3059static void ehea_unregister_port(struct ehea_port *port)
3060{
3061        device_remove_file(&port->ofdev.dev, &dev_attr_log_port_id);
3062        of_device_unregister(&port->ofdev);
3063}
3064
3065struct ehea_port *ehea_setup_single_port(struct ehea_adapter *adapter,
3066                                         u32 logical_port_id,
3067                                         struct device_node *dn)
3068{
3069        int ret;
3070        struct net_device *dev;
3071        struct ehea_port *port;
3072        struct device *port_dev;
3073        int jumbo;
3074
3075        /* allocate memory for the port structures */
3076        dev = alloc_etherdev(sizeof(struct ehea_port));
3077
3078        if (!dev) {
3079                ehea_error("no mem for net_device");
3080                ret = -ENOMEM;
3081                goto out_err;
3082        }
3083
3084        port = netdev_priv(dev);
3085
3086        sema_init(&port->port_lock, 1);
3087        port->state = EHEA_PORT_DOWN;
3088        port->sig_comp_iv = sq_entries / 10;
3089
3090        port->adapter = adapter;
3091        port->netdev = dev;
3092        port->logical_port_id = logical_port_id;
3093
3094        port->msg_enable = netif_msg_init(msg_level, EHEA_MSG_DEFAULT);
3095
3096        port->mc_list = kzalloc(sizeof(struct ehea_mc_list), GFP_KERNEL);
3097        if (!port->mc_list) {
3098                ret = -ENOMEM;
3099                goto out_free_ethdev;
3100        }
3101
3102        INIT_LIST_HEAD(&port->mc_list->list);
3103
3104        ret = ehea_sense_port_attr(port);
3105        if (ret)
3106                goto out_free_mc_list;
3107
3108        port_dev = ehea_register_port(port, dn);
3109        if (!port_dev)
3110                goto out_free_mc_list;
3111
3112        SET_NETDEV_DEV(dev, port_dev);
3113
3114        /* initialize net_device structure */
3115        memcpy(dev->dev_addr, &port->mac_addr, ETH_ALEN);
3116
3117        dev->open = ehea_open;
3118#ifdef CONFIG_NET_POLL_CONTROLLER
3119        dev->poll_controller = ehea_netpoll;
3120#endif
3121        dev->stop = ehea_stop;
3122        dev->hard_start_xmit = ehea_start_xmit;
3123        dev->get_stats = ehea_get_stats;
3124        dev->set_multicast_list = ehea_set_multicast_list;
3125        dev->set_mac_address = ehea_set_mac_addr;
3126        dev->change_mtu = ehea_change_mtu;
3127        dev->vlan_rx_register = ehea_vlan_rx_register;
3128        dev->vlan_rx_add_vid = ehea_vlan_rx_add_vid;
3129        dev->vlan_rx_kill_vid = ehea_vlan_rx_kill_vid;
3130        dev->features = NETIF_F_SG | NETIF_F_FRAGLIST | NETIF_F_TSO
3131                      | NETIF_F_HIGHDMA | NETIF_F_IP_CSUM | NETIF_F_HW_VLAN_TX
3132                      | NETIF_F_HW_VLAN_RX | NETIF_F_HW_VLAN_FILTER
3133                      | NETIF_F_LLTX;
3134        dev->tx_timeout = &ehea_tx_watchdog;
3135        dev->watchdog_timeo = EHEA_WATCH_DOG_TIMEOUT;
3136
3137        INIT_WORK(&port->reset_task, ehea_reset_port);
3138        ehea_set_ethtool_ops(dev);
3139
3140        ret = register_netdev(dev);
3141        if (ret) {
3142                ehea_error("register_netdev failed. ret=%d", ret);
3143                goto out_unreg_port;
3144        }
3145
3146        port->lro_max_aggr = lro_max_aggr;
3147
3148        ret = ehea_get_jumboframe_status(port, &jumbo);
3149        if (ret)
3150                ehea_error("failed determining jumbo frame status for %s",
3151                           port->netdev->name);
3152
3153        ehea_info("%s: Jumbo frames are %sabled", dev->name,
3154                  jumbo == 1 ? "en" : "dis");
3155
3156        adapter->active_ports++;
3157
3158        return port;
3159
3160out_unreg_port:
3161        ehea_unregister_port(port);
3162
3163out_free_mc_list:
3164        kfree(port->mc_list);
3165
3166out_free_ethdev:
3167        free_netdev(dev);
3168
3169out_err:
3170        ehea_error("setting up logical port with id=%d failed, ret=%d",
3171                   logical_port_id, ret);
3172        return NULL;
3173}
3174
3175static void ehea_shutdown_single_port(struct ehea_port *port)
3176{
3177        unregister_netdev(port->netdev);
3178        ehea_unregister_port(port);
3179        kfree(port->mc_list);
3180        free_netdev(port->netdev);
3181        port->adapter->active_ports--;
3182}
3183
3184static int ehea_setup_ports(struct ehea_adapter *adapter)
3185{
3186        struct device_node *lhea_dn;
3187        struct device_node *eth_dn = NULL;
3188
3189        const u32 *dn_log_port_id;
3190        int i = 0;
3191
3192        lhea_dn = adapter->ofdev->node;
3193        while ((eth_dn = of_get_next_child(lhea_dn, eth_dn))) {
3194
3195                dn_log_port_id = of_get_property(eth_dn, "ibm,hea-port-no",
3196                                                 NULL);
3197                if (!dn_log_port_id) {
3198                        ehea_error("bad device node: eth_dn name=%s",
3199                                   eth_dn->full_name);
3200                        continue;
3201                }
3202
3203                if (ehea_add_adapter_mr(adapter)) {
3204                        ehea_error("creating MR failed");
3205                        of_node_put(eth_dn);
3206                        return -EIO;
3207                }
3208
3209                adapter->port[i] = ehea_setup_single_port(adapter,
3210                                                          *dn_log_port_id,
3211                                                          eth_dn);
3212                if (adapter->port[i])
3213                        ehea_info("%s -> logical port id #%d",
3214                                  adapter->port[i]->netdev->name,
3215                                  *dn_log_port_id);
3216                else
3217                        ehea_remove_adapter_mr(adapter);
3218
3219                i++;
3220        };
3221        return 0;
3222}
3223
3224static struct device_node *ehea_get_eth_dn(struct ehea_adapter *adapter,
3225                                           u32 logical_port_id)
3226{
3227        struct device_node *lhea_dn;
3228        struct device_node *eth_dn = NULL;
3229        const u32 *dn_log_port_id;
3230
3231        lhea_dn = adapter->ofdev->node;
3232        while ((eth_dn = of_get_next_child(lhea_dn, eth_dn))) {
3233
3234                dn_log_port_id = of_get_property(eth_dn, "ibm,hea-port-no",
3235                                                 NULL);
3236                if (dn_log_port_id)
3237                        if (*dn_log_port_id == logical_port_id)
3238                                return eth_dn;
3239        };
3240
3241        return NULL;
3242}
3243
3244static ssize_t ehea_probe_port(struct device *dev,
3245                               struct device_attribute *attr,
3246                               const char *buf, size_t count)
3247{
3248        struct ehea_adapter *adapter = dev->driver_data;
3249        struct ehea_port *port;
3250        struct device_node *eth_dn = NULL;
3251        int i;
3252
3253        u32 logical_port_id;
3254
3255        sscanf(buf, "%d", &logical_port_id);
3256
3257        port = ehea_get_port(adapter, logical_port_id);
3258
3259        if (port) {
3260                ehea_info("adding port with logical port id=%d failed. port "
3261                          "already configured as %s.", logical_port_id,
3262                          port->netdev->name);
3263                return -EINVAL;
3264        }
3265
3266        eth_dn = ehea_get_eth_dn(adapter, logical_port_id);
3267
3268        if (!eth_dn) {
3269                ehea_info("no logical port with id %d found", logical_port_id);
3270                return -EINVAL;
3271        }
3272
3273        if (ehea_add_adapter_mr(adapter)) {
3274                ehea_error("creating MR failed");
3275                return -EIO;
3276        }
3277
3278        port = ehea_setup_single_port(adapter, logical_port_id, eth_dn);
3279
3280        of_node_put(eth_dn);
3281
3282        if (port) {
3283                for (i = 0; i < EHEA_MAX_PORTS; i++)
3284                        if (!adapter->port[i]) {
3285                                adapter->port[i] = port;
3286                                break;
3287                        }
3288
3289                ehea_info("added %s (logical port id=%d)", port->netdev->name,
3290                          logical_port_id);
3291        } else {
3292                ehea_remove_adapter_mr(adapter);
3293                return -EIO;
3294        }
3295
3296        return (ssize_t) count;
3297}
3298
3299static ssize_t ehea_remove_port(struct device *dev,
3300                                struct device_attribute *attr,
3301                                const char *buf, size_t count)
3302{
3303        struct ehea_adapter *adapter = dev->driver_data;
3304        struct ehea_port *port;
3305        int i;
3306        u32 logical_port_id;
3307
3308        sscanf(buf, "%d", &logical_port_id);
3309
3310        port = ehea_get_port(adapter, logical_port_id);
3311
3312        if (port) {
3313                ehea_info("removed %s (logical port id=%d)", port->netdev->name,
3314                          logical_port_id);
3315
3316                ehea_shutdown_single_port(port);
3317
3318                for (i = 0; i < EHEA_MAX_PORTS; i++)
3319                        if (adapter->port[i] == port) {
3320                                adapter->port[i] = NULL;
3321                                break;
3322                        }
3323        } else {
3324                ehea_error("removing port with logical port id=%d failed. port "
3325                           "not configured.", logical_port_id);
3326                return -EINVAL;
3327        }
3328
3329        ehea_remove_adapter_mr(adapter);
3330
3331        return (ssize_t) count;
3332}
3333
3334static DEVICE_ATTR(probe_port, S_IWUSR, NULL, ehea_probe_port);
3335static DEVICE_ATTR(remove_port, S_IWUSR, NULL, ehea_remove_port);
3336
3337int ehea_create_device_sysfs(struct of_device *dev)
3338{
3339        int ret = device_create_file(&dev->dev, &dev_attr_probe_port);
3340        if (ret)
3341                goto out;
3342
3343        ret = device_create_file(&dev->dev, &dev_attr_remove_port);
3344out:
3345        return ret;
3346}
3347
3348void ehea_remove_device_sysfs(struct of_device *dev)
3349{
3350        device_remove_file(&dev->dev, &dev_attr_probe_port);
3351        device_remove_file(&dev->dev, &dev_attr_remove_port);
3352}
3353
3354static int __devinit ehea_probe_adapter(struct of_device *dev,
3355                                        const struct of_device_id *id)
3356{
3357        struct ehea_adapter *adapter;
3358        const u64 *adapter_handle;
3359        int ret;
3360
3361        if (!dev || !dev->node) {
3362                ehea_error("Invalid ibmebus device probed");
3363                return -EINVAL;
3364        }
3365        down(&ehea_fw_handles.lock);
3366
3367        adapter = kzalloc(sizeof(*adapter), GFP_KERNEL);
3368        if (!adapter) {
3369                ret = -ENOMEM;
3370                dev_err(&dev->dev, "no mem for ehea_adapter\n");
3371                goto out;
3372        }
3373
3374        list_add(&adapter->list, &adapter_list);
3375
3376        adapter->ofdev = dev;
3377
3378        adapter_handle = of_get_property(dev->node, "ibm,hea-handle",
3379                                         NULL);
3380        if (adapter_handle)
3381                adapter->handle = *adapter_handle;
3382
3383        if (!adapter->handle) {
3384                dev_err(&dev->dev, "failed getting handle for adapter"
3385                        " '%s'\n", dev->node->full_name);
3386                ret = -ENODEV;
3387                goto out_free_ad;
3388        }
3389
3390        adapter->pd = EHEA_PD_ID;
3391
3392        dev->dev.driver_data = adapter;
3393
3394
3395        /* initialize adapter and ports */
3396        /* get adapter properties */
3397        ret = ehea_sense_adapter_attr(adapter);
3398        if (ret) {
3399                dev_err(&dev->dev, "sense_adapter_attr failed: %d\n", ret);
3400                goto out_free_ad;
3401        }
3402
3403        adapter->neq = ehea_create_eq(adapter,
3404                                      EHEA_NEQ, EHEA_MAX_ENTRIES_EQ, 1);
3405        if (!adapter->neq) {
3406                ret = -EIO;
3407                dev_err(&dev->dev, "NEQ creation failed\n");
3408                goto out_free_ad;
3409        }
3410
3411        tasklet_init(&adapter->neq_tasklet, ehea_neq_tasklet,
3412                     (unsigned long)adapter);
3413
3414        ret = ibmebus_request_irq(adapter->neq->attr.ist1,
3415                                  ehea_interrupt_neq, IRQF_DISABLED,
3416                                  "ehea_neq", adapter);
3417        if (ret) {
3418                dev_err(&dev->dev, "requesting NEQ IRQ failed\n");
3419                goto out_kill_eq;
3420        }
3421
3422        ret = ehea_create_device_sysfs(dev);
3423        if (ret)
3424                goto out_free_irq;
3425
3426        ret = ehea_setup_ports(adapter);
3427        if (ret) {
3428                dev_err(&dev->dev, "setup_ports failed\n");
3429                goto out_rem_dev_sysfs;
3430        }
3431
3432        ret = 0;
3433        goto out;
3434
3435out_rem_dev_sysfs:
3436        ehea_remove_device_sysfs(dev);
3437
3438out_free_irq:
3439        ibmebus_free_irq(adapter->neq->attr.ist1, adapter);
3440
3441out_kill_eq:
3442        ehea_destroy_eq(adapter->neq);
3443
3444out_free_ad:
3445        kfree(adapter);
3446
3447out:
3448        ehea_update_firmware_handles();
3449        up(&ehea_fw_handles.lock);
3450        return ret;
3451}
3452
3453static int __devexit ehea_remove(struct of_device *dev)
3454{
3455        struct ehea_adapter *adapter = dev->dev.driver_data;
3456        int i;
3457
3458        for (i = 0; i < EHEA_MAX_PORTS; i++)
3459                if (adapter->port[i]) {
3460                        ehea_shutdown_single_port(adapter->port[i]);
3461                        adapter->port[i] = NULL;
3462                }
3463
3464        ehea_remove_device_sysfs(dev);
3465
3466        flush_scheduled_work();
3467
3468        down(&ehea_fw_handles.lock);
3469
3470        ibmebus_free_irq(adapter->neq->attr.ist1, adapter);
3471        tasklet_kill(&adapter->neq_tasklet);
3472
3473        ehea_destroy_eq(adapter->neq);
3474        ehea_remove_adapter_mr(adapter);
3475        list_del(&adapter->list);
3476        kfree(adapter);
3477
3478        ehea_update_firmware_handles();
3479        up(&ehea_fw_handles.lock);
3480
3481        return 0;
3482}
3483
3484void ehea_crash_handler(void)
3485{
3486        int i;
3487
3488        if (ehea_fw_handles.arr)
3489                for (i = 0; i < ehea_fw_handles.num_entries; i++)
3490                        ehea_h_free_resource(ehea_fw_handles.arr[i].adh,
3491                                             ehea_fw_handles.arr[i].fwh,
3492                                             FORCE_FREE);
3493
3494        if (ehea_bcmc_regs.arr)
3495                for (i = 0; i < ehea_bcmc_regs.num_entries; i++)
3496                        ehea_h_reg_dereg_bcmc(ehea_bcmc_regs.arr[i].adh,
3497                                              ehea_bcmc_regs.arr[i].port_id,
3498                                              ehea_bcmc_regs.arr[i].reg_type,
3499                                              ehea_bcmc_regs.arr[i].macaddr,
3500                                              0, H_DEREG_BCMC);
3501}
3502
3503static int ehea_reboot_notifier(struct notifier_block *nb,
3504                                unsigned long action, void *unused)
3505{
3506        if (action == SYS_RESTART) {
3507                ehea_info("Reboot: freeing all eHEA resources");
3508                ibmebus_unregister_driver(&ehea_driver);
3509        }
3510        return NOTIFY_DONE;
3511}
3512
3513static struct notifier_block ehea_reboot_nb = {
3514        .notifier_call = ehea_reboot_notifier,
3515};
3516
3517static int check_module_parm(void)
3518{
3519        int ret = 0;
3520
3521        if ((rq1_entries < EHEA_MIN_ENTRIES_QP) ||
3522            (rq1_entries > EHEA_MAX_ENTRIES_RQ1)) {
3523                ehea_info("Bad parameter: rq1_entries");
3524                ret = -EINVAL;
3525        }
3526        if ((rq2_entries < EHEA_MIN_ENTRIES_QP) ||
3527            (rq2_entries > EHEA_MAX_ENTRIES_RQ2)) {
3528                ehea_info("Bad parameter: rq2_entries");
3529                ret = -EINVAL;
3530        }
3531        if ((rq3_entries < EHEA_MIN_ENTRIES_QP) ||
3532            (rq3_entries > EHEA_MAX_ENTRIES_RQ3)) {
3533                ehea_info("Bad parameter: rq3_entries");
3534                ret = -EINVAL;
3535        }
3536        if ((sq_entries < EHEA_MIN_ENTRIES_QP) ||
3537            (sq_entries > EHEA_MAX_ENTRIES_SQ)) {
3538                ehea_info("Bad parameter: sq_entries");
3539                ret = -EINVAL;
3540        }
3541
3542        return ret;
3543}
3544
3545static ssize_t ehea_show_capabilities(struct device_driver *drv,
3546                                      char *buf)
3547{
3548        return sprintf(buf, "%d", EHEA_CAPABILITIES);
3549}
3550
3551static DRIVER_ATTR(capabilities, S_IRUSR | S_IRGRP | S_IROTH,
3552                   ehea_show_capabilities, NULL);
3553
3554int __init ehea_module_init(void)
3555{
3556        int ret;
3557
3558        printk(KERN_INFO "IBM eHEA ethernet device driver (Release %s)\n",
3559               DRV_VERSION);
3560
3561
3562        INIT_WORK(&ehea_rereg_mr_task, ehea_rereg_mrs);
3563        memset(&ehea_fw_handles, 0, sizeof(ehea_fw_handles));
3564        memset(&ehea_bcmc_regs, 0, sizeof(ehea_bcmc_regs));
3565
3566        sema_init(&dlpar_mem_lock, 1);
3567        sema_init(&ehea_fw_handles.lock, 1);
3568        sema_init(&ehea_bcmc_regs.lock, 1);
3569
3570        ret = check_module_parm();
3571        if (ret)
3572                goto out;
3573
3574        ret = ehea_create_busmap();
3575        if (ret)
3576                goto out;
3577
3578        ret = register_reboot_notifier(&ehea_reboot_nb);
3579        if (ret)
3580                ehea_info("failed registering reboot notifier");
3581
3582        ret = crash_shutdown_register(&ehea_crash_handler);
3583        if (ret)
3584                ehea_info("failed registering crash handler");
3585
3586        ret = ibmebus_register_driver(&ehea_driver);
3587        if (ret) {
3588                ehea_error("failed registering eHEA device driver on ebus");
3589                goto out2;
3590        }
3591
3592        ret = driver_create_file(&ehea_driver.driver,
3593                                 &driver_attr_capabilities);
3594        if (ret) {
3595                ehea_error("failed to register capabilities attribute, ret=%d",
3596                           ret);
3597                goto out3;
3598        }
3599
3600        return ret;
3601
3602out3:
3603        ibmebus_unregister_driver(&ehea_driver);
3604out2:
3605        unregister_reboot_notifier(&ehea_reboot_nb);
3606        crash_shutdown_unregister(&ehea_crash_handler);
3607out:
3608        return ret;
3609}
3610
3611static void __exit ehea_module_exit(void)
3612{
3613        int ret;
3614
3615        flush_scheduled_work();
3616        driver_remove_file(&ehea_driver.driver, &driver_attr_capabilities);
3617        ibmebus_unregister_driver(&ehea_driver);
3618        unregister_reboot_notifier(&ehea_reboot_nb);
3619        ret = crash_shutdown_unregister(&ehea_crash_handler);
3620        if (ret)
3621                ehea_info("failed unregistering crash handler");
3622        kfree(ehea_fw_handles.arr);
3623        kfree(ehea_bcmc_regs.arr);
3624        ehea_destroy_busmap();
3625}
3626
3627module_init(ehea_module_init);
3628module_exit(ehea_module_exit);
3629
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