linux/drivers/net/wireless/intersil/hostap/hostap_hw.c
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   1// SPDX-License-Identifier: GPL-2.0-only
   2/*
   3 * Host AP (software wireless LAN access point) driver for
   4 * Intersil Prism2/2.5/3.
   5 *
   6 * Copyright (c) 2001-2002, SSH Communications Security Corp and Jouni Malinen
   7 * <j@w1.fi>
   8 * Copyright (c) 2002-2005, Jouni Malinen <j@w1.fi>
   9 *
  10 * FIX:
  11 * - there is currently no way of associating TX packets to correct wds device
  12 *   when TX Exc/OK event occurs, so all tx_packets and some
  13 *   tx_errors/tx_dropped are added to the main netdevice; using sw_support
  14 *   field in txdesc might be used to fix this (using Alloc event to increment
  15 *   tx_packets would need some further info in txfid table)
  16 *
  17 * Buffer Access Path (BAP) usage:
  18 *   Prism2 cards have two separate BAPs for accessing the card memory. These
  19 *   should allow concurrent access to two different frames and the driver
  20 *   previously used BAP0 for sending data and BAP1 for receiving data.
  21 *   However, there seems to be number of issues with concurrent access and at
  22 *   least one know hardware bug in using BAP0 and BAP1 concurrently with PCI
  23 *   Prism2.5. Therefore, the driver now only uses BAP0 for moving data between
  24 *   host and card memories. BAP0 accesses are protected with local->baplock
  25 *   (spin_lock_bh) to prevent concurrent use.
  26 */
  27
  28
  29
  30#include <asm/delay.h>
  31#include <linux/uaccess.h>
  32
  33#include <linux/slab.h>
  34#include <linux/netdevice.h>
  35#include <linux/etherdevice.h>
  36#include <linux/proc_fs.h>
  37#include <linux/seq_file.h>
  38#include <linux/if_arp.h>
  39#include <linux/delay.h>
  40#include <linux/random.h>
  41#include <linux/wait.h>
  42#include <linux/sched/signal.h>
  43#include <linux/rtnetlink.h>
  44#include <linux/wireless.h>
  45#include <net/iw_handler.h>
  46#include <net/lib80211.h>
  47#include <asm/irq.h>
  48
  49#include "hostap_80211.h"
  50#include "hostap.h"
  51#include "hostap_ap.h"
  52
  53
  54/* #define final_version */
  55
  56static int mtu = 1500;
  57module_param(mtu, int, 0444);
  58MODULE_PARM_DESC(mtu, "Maximum transfer unit");
  59
  60static int channel[MAX_PARM_DEVICES] = { 3, DEF_INTS };
  61module_param_array(channel, int, NULL, 0444);
  62MODULE_PARM_DESC(channel, "Initial channel");
  63
  64static char essid[33] = "test";
  65module_param_string(essid, essid, sizeof(essid), 0444);
  66MODULE_PARM_DESC(essid, "Host AP's ESSID");
  67
  68static int iw_mode[MAX_PARM_DEVICES] = { IW_MODE_MASTER, DEF_INTS };
  69module_param_array(iw_mode, int, NULL, 0444);
  70MODULE_PARM_DESC(iw_mode, "Initial operation mode");
  71
  72static int beacon_int[MAX_PARM_DEVICES] = { 100, DEF_INTS };
  73module_param_array(beacon_int, int, NULL, 0444);
  74MODULE_PARM_DESC(beacon_int, "Beacon interval (1 = 1024 usec)");
  75
  76static int dtim_period[MAX_PARM_DEVICES] = { 1, DEF_INTS };
  77module_param_array(dtim_period, int, NULL, 0444);
  78MODULE_PARM_DESC(dtim_period, "DTIM period");
  79
  80static char dev_template[16] = "wlan%d";
  81module_param_string(dev_template, dev_template, sizeof(dev_template), 0444);
  82MODULE_PARM_DESC(dev_template, "Prefix for network device name (default: "
  83                 "wlan%d)");
  84
  85#ifdef final_version
  86#define EXTRA_EVENTS_WTERR 0
  87#else
  88/* check WTERR events (Wait Time-out) in development versions */
  89#define EXTRA_EVENTS_WTERR HFA384X_EV_WTERR
  90#endif
  91
  92/* Events that will be using BAP0 */
  93#define HFA384X_BAP0_EVENTS \
  94        (HFA384X_EV_TXEXC | HFA384X_EV_RX | HFA384X_EV_INFO | HFA384X_EV_TX)
  95
  96/* event mask, i.e., events that will result in an interrupt */
  97#define HFA384X_EVENT_MASK \
  98        (HFA384X_BAP0_EVENTS | HFA384X_EV_ALLOC | HFA384X_EV_INFDROP | \
  99        HFA384X_EV_CMD | HFA384X_EV_TICK | \
 100        EXTRA_EVENTS_WTERR)
 101
 102/* Default TX control flags: use 802.11 headers and request interrupt for
 103 * failed transmits. Frames that request ACK callback, will add
 104 * _TX_OK flag and _ALT_RTRY flag may be used to select different retry policy.
 105 */
 106#define HFA384X_TX_CTRL_FLAGS \
 107        (HFA384X_TX_CTRL_802_11 | HFA384X_TX_CTRL_TX_EX)
 108
 109
 110/* ca. 1 usec */
 111#define HFA384X_CMD_BUSY_TIMEOUT 5000
 112#define HFA384X_BAP_BUSY_TIMEOUT 50000
 113
 114/* ca. 10 usec */
 115#define HFA384X_CMD_COMPL_TIMEOUT 20000
 116#define HFA384X_DL_COMPL_TIMEOUT 1000000
 117
 118/* Wait times for initialization; yield to other processes to avoid busy
 119 * waiting for long time. */
 120#define HFA384X_INIT_TIMEOUT (HZ / 2) /* 500 ms */
 121#define HFA384X_ALLOC_COMPL_TIMEOUT (HZ / 20) /* 50 ms */
 122
 123
 124static void prism2_hw_reset(struct net_device *dev);
 125static void prism2_check_sta_fw_version(local_info_t *local);
 126
 127#ifdef PRISM2_DOWNLOAD_SUPPORT
 128/* hostap_download.c */
 129static const struct proc_ops prism2_download_aux_dump_proc_ops;
 130static u8 * prism2_read_pda(struct net_device *dev);
 131static int prism2_download(local_info_t *local,
 132                           struct prism2_download_param *param);
 133static void prism2_download_free_data(struct prism2_download_data *dl);
 134static int prism2_download_volatile(local_info_t *local,
 135                                    struct prism2_download_data *param);
 136static int prism2_download_genesis(local_info_t *local,
 137                                   struct prism2_download_data *param);
 138static int prism2_get_ram_size(local_info_t *local);
 139#endif /* PRISM2_DOWNLOAD_SUPPORT */
 140
 141
 142
 143
 144#ifndef final_version
 145/* magic value written to SWSUPPORT0 reg. for detecting whether card is still
 146 * present */
 147#define HFA384X_MAGIC 0x8A32
 148#endif
 149
 150static void hfa384x_read_regs(struct net_device *dev,
 151                              struct hfa384x_regs *regs)
 152{
 153        regs->cmd = HFA384X_INW(HFA384X_CMD_OFF);
 154        regs->evstat = HFA384X_INW(HFA384X_EVSTAT_OFF);
 155        regs->offset0 = HFA384X_INW(HFA384X_OFFSET0_OFF);
 156        regs->offset1 = HFA384X_INW(HFA384X_OFFSET1_OFF);
 157        regs->swsupport0 = HFA384X_INW(HFA384X_SWSUPPORT0_OFF);
 158}
 159
 160
 161/**
 162 * __hostap_cmd_queue_free - Free Prism2 command queue entry (private)
 163 * @local: pointer to private Host AP driver data
 164 * @entry: Prism2 command queue entry to be freed
 165 * @del_req: request the entry to be removed
 166 *
 167 * Internal helper function for freeing Prism2 command queue entries.
 168 * Caller must have acquired local->cmdlock before calling this function.
 169 */
 170static inline void __hostap_cmd_queue_free(local_info_t *local,
 171                                           struct hostap_cmd_queue *entry,
 172                                           int del_req)
 173{
 174        if (del_req) {
 175                entry->del_req = 1;
 176                if (!list_empty(&entry->list)) {
 177                        list_del_init(&entry->list);
 178                        local->cmd_queue_len--;
 179                }
 180        }
 181
 182        if (refcount_dec_and_test(&entry->usecnt) && entry->del_req)
 183                kfree(entry);
 184}
 185
 186
 187/**
 188 * hostap_cmd_queue_free - Free Prism2 command queue entry
 189 * @local: pointer to private Host AP driver data
 190 * @entry: Prism2 command queue entry to be freed
 191 * @del_req: request the entry to be removed
 192 *
 193 * Free a Prism2 command queue entry.
 194 */
 195static inline void hostap_cmd_queue_free(local_info_t *local,
 196                                         struct hostap_cmd_queue *entry,
 197                                         int del_req)
 198{
 199        unsigned long flags;
 200
 201        spin_lock_irqsave(&local->cmdlock, flags);
 202        __hostap_cmd_queue_free(local, entry, del_req);
 203        spin_unlock_irqrestore(&local->cmdlock, flags);
 204}
 205
 206
 207/**
 208 * prism2_clear_cmd_queue - Free all pending Prism2 command queue entries
 209 * @local: pointer to private Host AP driver data
 210 */
 211static void prism2_clear_cmd_queue(local_info_t *local)
 212{
 213        struct list_head *ptr, *n;
 214        unsigned long flags;
 215        struct hostap_cmd_queue *entry;
 216
 217        spin_lock_irqsave(&local->cmdlock, flags);
 218        list_for_each_safe(ptr, n, &local->cmd_queue) {
 219                entry = list_entry(ptr, struct hostap_cmd_queue, list);
 220                refcount_inc(&entry->usecnt);
 221                printk(KERN_DEBUG "%s: removed pending cmd_queue entry "
 222                       "(type=%d, cmd=0x%04x, param0=0x%04x)\n",
 223                       local->dev->name, entry->type, entry->cmd,
 224                       entry->param0);
 225                __hostap_cmd_queue_free(local, entry, 1);
 226        }
 227        if (local->cmd_queue_len) {
 228                /* This should not happen; print debug message and clear
 229                 * queue length. */
 230                printk(KERN_DEBUG "%s: cmd_queue_len (%d) not zero after "
 231                       "flush\n", local->dev->name, local->cmd_queue_len);
 232                local->cmd_queue_len = 0;
 233        }
 234        spin_unlock_irqrestore(&local->cmdlock, flags);
 235}
 236
 237
 238/**
 239 * hfa384x_cmd_issue - Issue a Prism2 command to the hardware
 240 * @dev: pointer to net_device
 241 * @entry: Prism2 command queue entry to be issued
 242 */
 243static int hfa384x_cmd_issue(struct net_device *dev,
 244                                    struct hostap_cmd_queue *entry)
 245{
 246        struct hostap_interface *iface;
 247        local_info_t *local;
 248        int tries;
 249        u16 reg;
 250        unsigned long flags;
 251
 252        iface = netdev_priv(dev);
 253        local = iface->local;
 254
 255        if (local->func->card_present && !local->func->card_present(local))
 256                return -ENODEV;
 257
 258        if (entry->issued) {
 259                printk(KERN_DEBUG "%s: driver bug - re-issuing command @%p\n",
 260                       dev->name, entry);
 261        }
 262
 263        /* wait until busy bit is clear; this should always be clear since the
 264         * commands are serialized */
 265        tries = HFA384X_CMD_BUSY_TIMEOUT;
 266        while (HFA384X_INW(HFA384X_CMD_OFF) & HFA384X_CMD_BUSY && tries > 0) {
 267                tries--;
 268                udelay(1);
 269        }
 270#ifndef final_version
 271        if (tries != HFA384X_CMD_BUSY_TIMEOUT) {
 272                prism2_io_debug_error(dev, 1);
 273                printk(KERN_DEBUG "%s: hfa384x_cmd_issue: cmd reg was busy "
 274                       "for %d usec\n", dev->name,
 275                       HFA384X_CMD_BUSY_TIMEOUT - tries);
 276        }
 277#endif
 278        if (tries == 0) {
 279                reg = HFA384X_INW(HFA384X_CMD_OFF);
 280                prism2_io_debug_error(dev, 2);
 281                printk(KERN_DEBUG "%s: hfa384x_cmd_issue - timeout - "
 282                       "reg=0x%04x\n", dev->name, reg);
 283                return -ETIMEDOUT;
 284        }
 285
 286        /* write command */
 287        spin_lock_irqsave(&local->cmdlock, flags);
 288        HFA384X_OUTW(entry->param0, HFA384X_PARAM0_OFF);
 289        HFA384X_OUTW(entry->param1, HFA384X_PARAM1_OFF);
 290        HFA384X_OUTW(entry->cmd, HFA384X_CMD_OFF);
 291        entry->issued = 1;
 292        spin_unlock_irqrestore(&local->cmdlock, flags);
 293
 294        return 0;
 295}
 296
 297
 298/**
 299 * hfa384x_cmd - Issue a Prism2 command and wait (sleep) for completion
 300 * @dev: pointer to net_device
 301 * @cmd: Prism2 command code (HFA384X_CMD_CODE_*)
 302 * @param0: value for Param0 register
 303 * @param1: value for Param1 register (pointer; %NULL if not used)
 304 * @resp0: pointer for Resp0 data or %NULL if Resp0 is not needed
 305 *
 306 * Issue given command (possibly after waiting in command queue) and sleep
 307 * until the command is completed (or timed out or interrupted). This can be
 308 * called only from user process context.
 309 */
 310static int hfa384x_cmd(struct net_device *dev, u16 cmd, u16 param0,
 311                       u16 *param1, u16 *resp0)
 312{
 313        struct hostap_interface *iface;
 314        local_info_t *local;
 315        int err, res, issue, issued = 0;
 316        unsigned long flags;
 317        struct hostap_cmd_queue *entry;
 318        DECLARE_WAITQUEUE(wait, current);
 319
 320        iface = netdev_priv(dev);
 321        local = iface->local;
 322
 323        if (local->cmd_queue_len >= HOSTAP_CMD_QUEUE_MAX_LEN) {
 324                printk(KERN_DEBUG "%s: hfa384x_cmd: cmd_queue full\n",
 325                       dev->name);
 326                return -1;
 327        }
 328
 329        if (signal_pending(current))
 330                return -EINTR;
 331
 332        entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
 333        if (entry == NULL)
 334                return -ENOMEM;
 335
 336        refcount_set(&entry->usecnt, 1);
 337        entry->type = CMD_SLEEP;
 338        entry->cmd = cmd;
 339        entry->param0 = param0;
 340        if (param1)
 341                entry->param1 = *param1;
 342        init_waitqueue_head(&entry->compl);
 343
 344        /* prepare to wait for command completion event, but do not sleep yet
 345         */
 346        add_wait_queue(&entry->compl, &wait);
 347        set_current_state(TASK_INTERRUPTIBLE);
 348
 349        spin_lock_irqsave(&local->cmdlock, flags);
 350        issue = list_empty(&local->cmd_queue);
 351        if (issue)
 352                entry->issuing = 1;
 353        list_add_tail(&entry->list, &local->cmd_queue);
 354        local->cmd_queue_len++;
 355        spin_unlock_irqrestore(&local->cmdlock, flags);
 356
 357        err = 0;
 358        if (!issue)
 359                goto wait_completion;
 360
 361        if (signal_pending(current))
 362                err = -EINTR;
 363
 364        if (!err) {
 365                if (hfa384x_cmd_issue(dev, entry))
 366                        err = -ETIMEDOUT;
 367                else
 368                        issued = 1;
 369        }
 370
 371 wait_completion:
 372        if (!err && entry->type != CMD_COMPLETED) {
 373                /* sleep until command is completed or timed out */
 374                res = schedule_timeout(2 * HZ);
 375        } else
 376                res = -1;
 377
 378        if (!err && signal_pending(current))
 379                err = -EINTR;
 380
 381        if (err && issued) {
 382                /* the command was issued, so a CmdCompl event should occur
 383                 * soon; however, there's a pending signal and
 384                 * schedule_timeout() would be interrupted; wait a short period
 385                 * of time to avoid removing entry from the list before
 386                 * CmdCompl event */
 387                udelay(300);
 388        }
 389
 390        set_current_state(TASK_RUNNING);
 391        remove_wait_queue(&entry->compl, &wait);
 392
 393        /* If entry->list is still in the list, it must be removed
 394         * first and in this case prism2_cmd_ev() does not yet have
 395         * local reference to it, and the data can be kfree()'d
 396         * here. If the command completion event is still generated,
 397         * it will be assigned to next (possibly) pending command, but
 398         * the driver will reset the card anyway due to timeout
 399         *
 400         * If the entry is not in the list prism2_cmd_ev() has a local
 401         * reference to it, but keeps cmdlock as long as the data is
 402         * needed, so the data can be kfree()'d here. */
 403
 404        /* FIX: if the entry->list is in the list, it has not been completed
 405         * yet, so removing it here is somewhat wrong.. this could cause
 406         * references to freed memory and next list_del() causing NULL pointer
 407         * dereference.. it would probably be better to leave the entry in the
 408         * list and the list should be emptied during hw reset */
 409
 410        spin_lock_irqsave(&local->cmdlock, flags);
 411        if (!list_empty(&entry->list)) {
 412                printk(KERN_DEBUG "%s: hfa384x_cmd: entry still in list? "
 413                       "(entry=%p, type=%d, res=%d)\n", dev->name, entry,
 414                       entry->type, res);
 415                list_del_init(&entry->list);
 416                local->cmd_queue_len--;
 417        }
 418        spin_unlock_irqrestore(&local->cmdlock, flags);
 419
 420        if (err) {
 421                printk(KERN_DEBUG "%s: hfa384x_cmd: interrupted; err=%d\n",
 422                       dev->name, err);
 423                res = err;
 424                goto done;
 425        }
 426
 427        if (entry->type != CMD_COMPLETED) {
 428                u16 reg = HFA384X_INW(HFA384X_EVSTAT_OFF);
 429                printk(KERN_DEBUG "%s: hfa384x_cmd: command was not "
 430                       "completed (res=%d, entry=%p, type=%d, cmd=0x%04x, "
 431                       "param0=0x%04x, EVSTAT=%04x INTEN=%04x)\n", dev->name,
 432                       res, entry, entry->type, entry->cmd, entry->param0, reg,
 433                       HFA384X_INW(HFA384X_INTEN_OFF));
 434                if (reg & HFA384X_EV_CMD) {
 435                        /* Command completion event is pending, but the
 436                         * interrupt was not delivered - probably an issue
 437                         * with pcmcia-cs configuration. */
 438                        printk(KERN_WARNING "%s: interrupt delivery does not "
 439                               "seem to work\n", dev->name);
 440                }
 441                prism2_io_debug_error(dev, 3);
 442                res = -ETIMEDOUT;
 443                goto done;
 444        }
 445
 446        if (resp0 != NULL)
 447                *resp0 = entry->resp0;
 448#ifndef final_version
 449        if (entry->res) {
 450                printk(KERN_DEBUG "%s: CMD=0x%04x => res=0x%02x, "
 451                       "resp0=0x%04x\n",
 452                       dev->name, cmd, entry->res, entry->resp0);
 453        }
 454#endif /* final_version */
 455
 456        res = entry->res;
 457 done:
 458        hostap_cmd_queue_free(local, entry, 1);
 459        return res;
 460}
 461
 462
 463/**
 464 * hfa384x_cmd_callback - Issue a Prism2 command; callback when completed
 465 * @dev: pointer to net_device
 466 * @cmd: Prism2 command code (HFA384X_CMD_CODE_*)
 467 * @param0: value for Param0 register
 468 * @callback: command completion callback function (%NULL = no callback)
 469 * @context: context data to be given to the callback function
 470 *
 471 * Issue given command (possibly after waiting in command queue) and use
 472 * callback function to indicate command completion. This can be called both
 473 * from user and interrupt context. The callback function will be called in
 474 * hardware IRQ context. It can be %NULL, when no function is called when
 475 * command is completed.
 476 */
 477static int hfa384x_cmd_callback(struct net_device *dev, u16 cmd, u16 param0,
 478                                void (*callback)(struct net_device *dev,
 479                                                 long context, u16 resp0,
 480                                                 u16 status),
 481                                long context)
 482{
 483        struct hostap_interface *iface;
 484        local_info_t *local;
 485        int issue, ret;
 486        unsigned long flags;
 487        struct hostap_cmd_queue *entry;
 488
 489        iface = netdev_priv(dev);
 490        local = iface->local;
 491
 492        if (local->cmd_queue_len >= HOSTAP_CMD_QUEUE_MAX_LEN + 2) {
 493                printk(KERN_DEBUG "%s: hfa384x_cmd: cmd_queue full\n",
 494                       dev->name);
 495                return -1;
 496        }
 497
 498        entry = kzalloc(sizeof(*entry), GFP_ATOMIC);
 499        if (entry == NULL)
 500                return -ENOMEM;
 501
 502        refcount_set(&entry->usecnt, 1);
 503        entry->type = CMD_CALLBACK;
 504        entry->cmd = cmd;
 505        entry->param0 = param0;
 506        entry->callback = callback;
 507        entry->context = context;
 508
 509        spin_lock_irqsave(&local->cmdlock, flags);
 510        issue = list_empty(&local->cmd_queue);
 511        if (issue)
 512                entry->issuing = 1;
 513        list_add_tail(&entry->list, &local->cmd_queue);
 514        local->cmd_queue_len++;
 515        spin_unlock_irqrestore(&local->cmdlock, flags);
 516
 517        if (issue && hfa384x_cmd_issue(dev, entry))
 518                ret = -ETIMEDOUT;
 519        else
 520                ret = 0;
 521
 522        hostap_cmd_queue_free(local, entry, ret);
 523
 524        return ret;
 525}
 526
 527
 528/**
 529 * __hfa384x_cmd_no_wait - Issue a Prism2 command (private)
 530 * @dev: pointer to net_device
 531 * @cmd: Prism2 command code (HFA384X_CMD_CODE_*)
 532 * @param0: value for Param0 register
 533 * @io_debug_num: I/O debug error number
 534 *
 535 * Shared helper function for hfa384x_cmd_wait() and hfa384x_cmd_no_wait().
 536 */
 537static int __hfa384x_cmd_no_wait(struct net_device *dev, u16 cmd, u16 param0,
 538                                 int io_debug_num)
 539{
 540        int tries;
 541        u16 reg;
 542
 543        /* wait until busy bit is clear; this should always be clear since the
 544         * commands are serialized */
 545        tries = HFA384X_CMD_BUSY_TIMEOUT;
 546        while (HFA384X_INW(HFA384X_CMD_OFF) & HFA384X_CMD_BUSY && tries > 0) {
 547                tries--;
 548                udelay(1);
 549        }
 550        if (tries == 0) {
 551                reg = HFA384X_INW(HFA384X_CMD_OFF);
 552                prism2_io_debug_error(dev, io_debug_num);
 553                printk(KERN_DEBUG "%s: __hfa384x_cmd_no_wait(%d) - timeout - "
 554                       "reg=0x%04x\n", dev->name, io_debug_num, reg);
 555                return -ETIMEDOUT;
 556        }
 557
 558        /* write command */
 559        HFA384X_OUTW(param0, HFA384X_PARAM0_OFF);
 560        HFA384X_OUTW(cmd, HFA384X_CMD_OFF);
 561
 562        return 0;
 563}
 564
 565
 566/**
 567 * hfa384x_cmd_wait - Issue a Prism2 command and busy wait for completion
 568 * @dev: pointer to net_device
 569 * @cmd: Prism2 command code (HFA384X_CMD_CODE_*)
 570 * @param0: value for Param0 register
 571 */
 572static int hfa384x_cmd_wait(struct net_device *dev, u16 cmd, u16 param0)
 573{
 574        int res, tries;
 575        u16 reg;
 576
 577        res = __hfa384x_cmd_no_wait(dev, cmd, param0, 4);
 578        if (res)
 579                return res;
 580
 581        /* wait for command completion */
 582        if ((cmd & HFA384X_CMDCODE_MASK) == HFA384X_CMDCODE_DOWNLOAD)
 583                tries = HFA384X_DL_COMPL_TIMEOUT;
 584        else
 585                tries = HFA384X_CMD_COMPL_TIMEOUT;
 586
 587        while (!(HFA384X_INW(HFA384X_EVSTAT_OFF) & HFA384X_EV_CMD) &&
 588               tries > 0) {
 589                tries--;
 590                udelay(10);
 591        }
 592        if (tries == 0) {
 593                reg = HFA384X_INW(HFA384X_EVSTAT_OFF);
 594                prism2_io_debug_error(dev, 5);
 595                printk(KERN_DEBUG "%s: hfa384x_cmd_wait - timeout2 - "
 596                       "reg=0x%04x\n", dev->name, reg);
 597                return -ETIMEDOUT;
 598        }
 599
 600        res = (HFA384X_INW(HFA384X_STATUS_OFF) &
 601               (BIT(14) | BIT(13) | BIT(12) | BIT(11) | BIT(10) | BIT(9) |
 602                BIT(8))) >> 8;
 603#ifndef final_version
 604        if (res) {
 605                printk(KERN_DEBUG "%s: CMD=0x%04x => res=0x%02x\n",
 606                       dev->name, cmd, res);
 607        }
 608#endif
 609
 610        HFA384X_OUTW(HFA384X_EV_CMD, HFA384X_EVACK_OFF);
 611
 612        return res;
 613}
 614
 615
 616/**
 617 * hfa384x_cmd_no_wait - Issue a Prism2 command; do not wait for completion
 618 * @dev: pointer to net_device
 619 * @cmd: Prism2 command code (HFA384X_CMD_CODE_*)
 620 * @param0: value for Param0 register
 621 */
 622static inline int hfa384x_cmd_no_wait(struct net_device *dev, u16 cmd,
 623                                      u16 param0)
 624{
 625        return __hfa384x_cmd_no_wait(dev, cmd, param0, 6);
 626}
 627
 628
 629/**
 630 * prism2_cmd_ev - Prism2 command completion event handler
 631 * @dev: pointer to net_device
 632 *
 633 * Interrupt handler for command completion events. Called by the main
 634 * interrupt handler in hardware IRQ context. Read Resp0 and status registers
 635 * from the hardware and ACK the event. Depending on the issued command type
 636 * either wake up the sleeping process that is waiting for command completion
 637 * or call the callback function. Issue the next command, if one is pending.
 638 */
 639static void prism2_cmd_ev(struct net_device *dev)
 640{
 641        struct hostap_interface *iface;
 642        local_info_t *local;
 643        struct hostap_cmd_queue *entry = NULL;
 644
 645        iface = netdev_priv(dev);
 646        local = iface->local;
 647
 648        spin_lock(&local->cmdlock);
 649        if (!list_empty(&local->cmd_queue)) {
 650                entry = list_entry(local->cmd_queue.next,
 651                                   struct hostap_cmd_queue, list);
 652                refcount_inc(&entry->usecnt);
 653                list_del_init(&entry->list);
 654                local->cmd_queue_len--;
 655
 656                if (!entry->issued) {
 657                        printk(KERN_DEBUG "%s: Command completion event, but "
 658                               "cmd not issued\n", dev->name);
 659                        __hostap_cmd_queue_free(local, entry, 1);
 660                        entry = NULL;
 661                }
 662        }
 663        spin_unlock(&local->cmdlock);
 664
 665        if (!entry) {
 666                HFA384X_OUTW(HFA384X_EV_CMD, HFA384X_EVACK_OFF);
 667                printk(KERN_DEBUG "%s: Command completion event, but no "
 668                       "pending commands\n", dev->name);
 669                return;
 670        }
 671
 672        entry->resp0 = HFA384X_INW(HFA384X_RESP0_OFF);
 673        entry->res = (HFA384X_INW(HFA384X_STATUS_OFF) &
 674                      (BIT(14) | BIT(13) | BIT(12) | BIT(11) | BIT(10) |
 675                       BIT(9) | BIT(8))) >> 8;
 676        HFA384X_OUTW(HFA384X_EV_CMD, HFA384X_EVACK_OFF);
 677
 678        /* TODO: rest of the CmdEv handling could be moved to tasklet */
 679        if (entry->type == CMD_SLEEP) {
 680                entry->type = CMD_COMPLETED;
 681                wake_up_interruptible(&entry->compl);
 682        } else if (entry->type == CMD_CALLBACK) {
 683                if (entry->callback)
 684                        entry->callback(dev, entry->context, entry->resp0,
 685                                        entry->res);
 686        } else {
 687                printk(KERN_DEBUG "%s: Invalid command completion type %d\n",
 688                       dev->name, entry->type);
 689        }
 690        hostap_cmd_queue_free(local, entry, 1);
 691
 692        /* issue next command, if pending */
 693        entry = NULL;
 694        spin_lock(&local->cmdlock);
 695        if (!list_empty(&local->cmd_queue)) {
 696                entry = list_entry(local->cmd_queue.next,
 697                                   struct hostap_cmd_queue, list);
 698                if (entry->issuing) {
 699                        /* hfa384x_cmd() has already started issuing this
 700                         * command, so do not start here */
 701                        entry = NULL;
 702                }
 703                if (entry)
 704                        refcount_inc(&entry->usecnt);
 705        }
 706        spin_unlock(&local->cmdlock);
 707
 708        if (entry) {
 709                /* issue next command; if command issuing fails, remove the
 710                 * entry from cmd_queue */
 711                int res = hfa384x_cmd_issue(dev, entry);
 712                spin_lock(&local->cmdlock);
 713                __hostap_cmd_queue_free(local, entry, res);
 714                spin_unlock(&local->cmdlock);
 715        }
 716}
 717
 718
 719static int hfa384x_wait_offset(struct net_device *dev, u16 o_off)
 720{
 721        int tries = HFA384X_BAP_BUSY_TIMEOUT;
 722        int res = HFA384X_INW(o_off) & HFA384X_OFFSET_BUSY;
 723
 724        while (res && tries > 0) {
 725                tries--;
 726                udelay(1);
 727                res = HFA384X_INW(o_off) & HFA384X_OFFSET_BUSY;
 728        }
 729        return res;
 730}
 731
 732
 733/* Offset must be even */
 734static int hfa384x_setup_bap(struct net_device *dev, u16 bap, u16 id,
 735                             int offset)
 736{
 737        u16 o_off, s_off;
 738        int ret = 0;
 739
 740        if (offset % 2 || bap > 1)
 741                return -EINVAL;
 742
 743        if (bap == BAP1) {
 744                o_off = HFA384X_OFFSET1_OFF;
 745                s_off = HFA384X_SELECT1_OFF;
 746        } else {
 747                o_off = HFA384X_OFFSET0_OFF;
 748                s_off = HFA384X_SELECT0_OFF;
 749        }
 750
 751        if (hfa384x_wait_offset(dev, o_off)) {
 752                prism2_io_debug_error(dev, 7);
 753                printk(KERN_DEBUG "%s: hfa384x_setup_bap - timeout before\n",
 754                       dev->name);
 755                ret = -ETIMEDOUT;
 756                goto out;
 757        }
 758
 759        HFA384X_OUTW(id, s_off);
 760        HFA384X_OUTW(offset, o_off);
 761
 762        if (hfa384x_wait_offset(dev, o_off)) {
 763                prism2_io_debug_error(dev, 8);
 764                printk(KERN_DEBUG "%s: hfa384x_setup_bap - timeout after\n",
 765                       dev->name);
 766                ret = -ETIMEDOUT;
 767                goto out;
 768        }
 769#ifndef final_version
 770        if (HFA384X_INW(o_off) & HFA384X_OFFSET_ERR) {
 771                prism2_io_debug_error(dev, 9);
 772                printk(KERN_DEBUG "%s: hfa384x_setup_bap - offset error "
 773                       "(%d,0x04%x,%d); reg=0x%04x\n",
 774                       dev->name, bap, id, offset, HFA384X_INW(o_off));
 775                ret = -EINVAL;
 776        }
 777#endif
 778
 779 out:
 780        return ret;
 781}
 782
 783
 784static int hfa384x_get_rid(struct net_device *dev, u16 rid, void *buf, int len,
 785                           int exact_len)
 786{
 787        struct hostap_interface *iface;
 788        local_info_t *local;
 789        int res, rlen = 0;
 790        struct hfa384x_rid_hdr rec;
 791
 792        iface = netdev_priv(dev);
 793        local = iface->local;
 794
 795        if (local->no_pri) {
 796                printk(KERN_DEBUG "%s: cannot get RID %04x (len=%d) - no PRI "
 797                       "f/w\n", dev->name, rid, len);
 798                return -ENOTTY; /* Well.. not really correct, but return
 799                                 * something unique enough.. */
 800        }
 801
 802        if ((local->func->card_present && !local->func->card_present(local)) ||
 803            local->hw_downloading)
 804                return -ENODEV;
 805
 806        res = mutex_lock_interruptible(&local->rid_bap_mtx);
 807        if (res)
 808                return res;
 809
 810        res = hfa384x_cmd(dev, HFA384X_CMDCODE_ACCESS, rid, NULL, NULL);
 811        if (res) {
 812                printk(KERN_DEBUG "%s: hfa384x_get_rid: CMDCODE_ACCESS failed "
 813                       "(res=%d, rid=%04x, len=%d)\n",
 814                       dev->name, res, rid, len);
 815                mutex_unlock(&local->rid_bap_mtx);
 816                return res;
 817        }
 818
 819        spin_lock_bh(&local->baplock);
 820
 821        res = hfa384x_setup_bap(dev, BAP0, rid, 0);
 822        if (res)
 823                goto unlock;
 824
 825        res = hfa384x_from_bap(dev, BAP0, &rec, sizeof(rec));
 826        if (res)
 827                goto unlock;
 828
 829        if (le16_to_cpu(rec.len) == 0) {
 830                /* RID not available */
 831                res = -ENODATA;
 832                goto unlock;
 833        }
 834
 835        rlen = (le16_to_cpu(rec.len) - 1) * 2;
 836        if (exact_len && rlen != len) {
 837                printk(KERN_DEBUG "%s: hfa384x_get_rid - RID len mismatch: "
 838                       "rid=0x%04x, len=%d (expected %d)\n",
 839                       dev->name, rid, rlen, len);
 840                res = -ENODATA;
 841        }
 842
 843        res = hfa384x_from_bap(dev, BAP0, buf, len);
 844
 845unlock:
 846        spin_unlock_bh(&local->baplock);
 847        mutex_unlock(&local->rid_bap_mtx);
 848
 849        if (res) {
 850                if (res != -ENODATA)
 851                        printk(KERN_DEBUG "%s: hfa384x_get_rid (rid=%04x, "
 852                               "len=%d) - failed - res=%d\n", dev->name, rid,
 853                               len, res);
 854                if (res == -ETIMEDOUT)
 855                        prism2_hw_reset(dev);
 856                return res;
 857        }
 858
 859        return rlen;
 860}
 861
 862
 863static int hfa384x_set_rid(struct net_device *dev, u16 rid, void *buf, int len)
 864{
 865        struct hostap_interface *iface;
 866        local_info_t *local;
 867        struct hfa384x_rid_hdr rec;
 868        int res;
 869
 870        iface = netdev_priv(dev);
 871        local = iface->local;
 872
 873        if (local->no_pri) {
 874                printk(KERN_DEBUG "%s: cannot set RID %04x (len=%d) - no PRI "
 875                       "f/w\n", dev->name, rid, len);
 876                return -ENOTTY; /* Well.. not really correct, but return
 877                                 * something unique enough.. */
 878        }
 879
 880        if ((local->func->card_present && !local->func->card_present(local)) ||
 881            local->hw_downloading)
 882                return -ENODEV;
 883
 884        rec.rid = cpu_to_le16(rid);
 885        /* RID len in words and +1 for rec.rid */
 886        rec.len = cpu_to_le16(len / 2 + len % 2 + 1);
 887
 888        res = mutex_lock_interruptible(&local->rid_bap_mtx);
 889        if (res)
 890                return res;
 891
 892        spin_lock_bh(&local->baplock);
 893        res = hfa384x_setup_bap(dev, BAP0, rid, 0);
 894        if (!res)
 895                res = hfa384x_to_bap(dev, BAP0, &rec, sizeof(rec));
 896        if (!res)
 897                res = hfa384x_to_bap(dev, BAP0, buf, len);
 898        spin_unlock_bh(&local->baplock);
 899
 900        if (res) {
 901                printk(KERN_DEBUG "%s: hfa384x_set_rid (rid=%04x, len=%d) - "
 902                       "failed - res=%d\n", dev->name, rid, len, res);
 903                mutex_unlock(&local->rid_bap_mtx);
 904                return res;
 905        }
 906
 907        res = hfa384x_cmd(dev, HFA384X_CMDCODE_ACCESS_WRITE, rid, NULL, NULL);
 908        mutex_unlock(&local->rid_bap_mtx);
 909
 910        if (res) {
 911                printk(KERN_DEBUG "%s: hfa384x_set_rid: CMDCODE_ACCESS_WRITE "
 912                       "failed (res=%d, rid=%04x, len=%d)\n",
 913                       dev->name, res, rid, len);
 914
 915                if (res == -ETIMEDOUT)
 916                        prism2_hw_reset(dev);
 917        }
 918
 919        return res;
 920}
 921
 922
 923static void hfa384x_disable_interrupts(struct net_device *dev)
 924{
 925        /* disable interrupts and clear event status */
 926        HFA384X_OUTW(0, HFA384X_INTEN_OFF);
 927        HFA384X_OUTW(0xffff, HFA384X_EVACK_OFF);
 928}
 929
 930
 931static void hfa384x_enable_interrupts(struct net_device *dev)
 932{
 933        /* ack pending events and enable interrupts from selected events */
 934        HFA384X_OUTW(0xffff, HFA384X_EVACK_OFF);
 935        HFA384X_OUTW(HFA384X_EVENT_MASK, HFA384X_INTEN_OFF);
 936}
 937
 938
 939static void hfa384x_events_no_bap0(struct net_device *dev)
 940{
 941        HFA384X_OUTW(HFA384X_EVENT_MASK & ~HFA384X_BAP0_EVENTS,
 942                     HFA384X_INTEN_OFF);
 943}
 944
 945
 946static void hfa384x_events_all(struct net_device *dev)
 947{
 948        HFA384X_OUTW(HFA384X_EVENT_MASK, HFA384X_INTEN_OFF);
 949}
 950
 951
 952static void hfa384x_events_only_cmd(struct net_device *dev)
 953{
 954        HFA384X_OUTW(HFA384X_EV_CMD, HFA384X_INTEN_OFF);
 955}
 956
 957
 958static u16 hfa384x_allocate_fid(struct net_device *dev, int len)
 959{
 960        u16 fid;
 961        unsigned long delay;
 962
 963        /* FIX: this could be replace with hfa384x_cmd() if the Alloc event
 964         * below would be handled like CmdCompl event (sleep here, wake up from
 965         * interrupt handler */
 966        if (hfa384x_cmd_wait(dev, HFA384X_CMDCODE_ALLOC, len)) {
 967                printk(KERN_DEBUG "%s: cannot allocate fid, len=%d\n",
 968                       dev->name, len);
 969                return 0xffff;
 970        }
 971
 972        delay = jiffies + HFA384X_ALLOC_COMPL_TIMEOUT;
 973        while (!(HFA384X_INW(HFA384X_EVSTAT_OFF) & HFA384X_EV_ALLOC) &&
 974               time_before(jiffies, delay))
 975                yield();
 976        if (!(HFA384X_INW(HFA384X_EVSTAT_OFF) & HFA384X_EV_ALLOC)) {
 977                printk("%s: fid allocate, len=%d - timeout\n", dev->name, len);
 978                return 0xffff;
 979        }
 980
 981        fid = HFA384X_INW(HFA384X_ALLOCFID_OFF);
 982        HFA384X_OUTW(HFA384X_EV_ALLOC, HFA384X_EVACK_OFF);
 983
 984        return fid;
 985}
 986
 987
 988static int prism2_reset_port(struct net_device *dev)
 989{
 990        struct hostap_interface *iface;
 991        local_info_t *local;
 992        int res;
 993
 994        iface = netdev_priv(dev);
 995        local = iface->local;
 996
 997        if (!local->dev_enabled)
 998                return 0;
 999
1000        res = hfa384x_cmd(dev, HFA384X_CMDCODE_DISABLE, 0,
1001                          NULL, NULL);
1002        if (res)
1003                printk(KERN_DEBUG "%s: reset port failed to disable port\n",
1004                       dev->name);
1005        else {
1006                res = hfa384x_cmd(dev, HFA384X_CMDCODE_ENABLE, 0,
1007                                  NULL, NULL);
1008                if (res)
1009                        printk(KERN_DEBUG "%s: reset port failed to enable "
1010                               "port\n", dev->name);
1011        }
1012
1013        /* It looks like at least some STA firmware versions reset
1014         * fragmentation threshold back to 2346 after enable command. Restore
1015         * the configured value, if it differs from this default. */
1016        if (local->fragm_threshold != 2346 &&
1017            hostap_set_word(dev, HFA384X_RID_FRAGMENTATIONTHRESHOLD,
1018                            local->fragm_threshold)) {
1019                printk(KERN_DEBUG "%s: failed to restore fragmentation "
1020                       "threshold (%d) after Port0 enable\n",
1021                       dev->name, local->fragm_threshold);
1022        }
1023
1024        /* Some firmwares lose antenna selection settings on reset */
1025        (void) hostap_set_antsel(local);
1026
1027        return res;
1028}
1029
1030
1031static int prism2_get_version_info(struct net_device *dev, u16 rid,
1032                                   const char *txt)
1033{
1034        struct hfa384x_comp_ident comp;
1035        struct hostap_interface *iface;
1036        local_info_t *local;
1037
1038        iface = netdev_priv(dev);
1039        local = iface->local;
1040
1041        if (local->no_pri) {
1042                /* PRI f/w not yet available - cannot read RIDs */
1043                return -1;
1044        }
1045        if (hfa384x_get_rid(dev, rid, &comp, sizeof(comp), 1) < 0) {
1046                printk(KERN_DEBUG "Could not get RID for component %s\n", txt);
1047                return -1;
1048        }
1049
1050        printk(KERN_INFO "%s: %s: id=0x%02x v%d.%d.%d\n", dev->name, txt,
1051               __le16_to_cpu(comp.id), __le16_to_cpu(comp.major),
1052               __le16_to_cpu(comp.minor), __le16_to_cpu(comp.variant));
1053        return 0;
1054}
1055
1056
1057static int prism2_setup_rids(struct net_device *dev)
1058{
1059        struct hostap_interface *iface;
1060        local_info_t *local;
1061        __le16 tmp;
1062        int ret = 0;
1063
1064        iface = netdev_priv(dev);
1065        local = iface->local;
1066
1067        hostap_set_word(dev, HFA384X_RID_TICKTIME, 2000);
1068
1069        if (!local->fw_ap) {
1070                u16 tmp1 = hostap_get_porttype(local);
1071                ret = hostap_set_word(dev, HFA384X_RID_CNFPORTTYPE, tmp1);
1072                if (ret) {
1073                        printk("%s: Port type setting to %d failed\n",
1074                               dev->name, tmp1);
1075                        goto fail;
1076                }
1077        }
1078
1079        /* Setting SSID to empty string seems to kill the card in Host AP mode
1080         */
1081        if (local->iw_mode != IW_MODE_MASTER || local->essid[0] != '\0') {
1082                ret = hostap_set_string(dev, HFA384X_RID_CNFOWNSSID,
1083                                        local->essid);
1084                if (ret) {
1085                        printk("%s: AP own SSID setting failed\n", dev->name);
1086                        goto fail;
1087                }
1088        }
1089
1090        ret = hostap_set_word(dev, HFA384X_RID_CNFMAXDATALEN,
1091                              PRISM2_DATA_MAXLEN);
1092        if (ret) {
1093                printk("%s: MAC data length setting to %d failed\n",
1094                       dev->name, PRISM2_DATA_MAXLEN);
1095                goto fail;
1096        }
1097
1098        if (hfa384x_get_rid(dev, HFA384X_RID_CHANNELLIST, &tmp, 2, 1) < 0) {
1099                printk("%s: Channel list read failed\n", dev->name);
1100                ret = -EINVAL;
1101                goto fail;
1102        }
1103        local->channel_mask = le16_to_cpu(tmp);
1104
1105        if (local->channel < 1 || local->channel > 14 ||
1106            !(local->channel_mask & (1 << (local->channel - 1)))) {
1107                printk(KERN_WARNING "%s: Channel setting out of range "
1108                       "(%d)!\n", dev->name, local->channel);
1109                ret = -EBUSY;
1110                goto fail;
1111        }
1112
1113        ret = hostap_set_word(dev, HFA384X_RID_CNFOWNCHANNEL, local->channel);
1114        if (ret) {
1115                printk("%s: Channel setting to %d failed\n",
1116                       dev->name, local->channel);
1117                goto fail;
1118        }
1119
1120        ret = hostap_set_word(dev, HFA384X_RID_CNFBEACONINT,
1121                              local->beacon_int);
1122        if (ret) {
1123                printk("%s: Beacon interval setting to %d failed\n",
1124                       dev->name, local->beacon_int);
1125                /* this may fail with Symbol/Lucent firmware */
1126                if (ret == -ETIMEDOUT)
1127                        goto fail;
1128        }
1129
1130        ret = hostap_set_word(dev, HFA384X_RID_CNFOWNDTIMPERIOD,
1131                              local->dtim_period);
1132        if (ret) {
1133                printk("%s: DTIM period setting to %d failed\n",
1134                       dev->name, local->dtim_period);
1135                /* this may fail with Symbol/Lucent firmware */
1136                if (ret == -ETIMEDOUT)
1137                        goto fail;
1138        }
1139
1140        ret = hostap_set_word(dev, HFA384X_RID_PROMISCUOUSMODE,
1141                              local->is_promisc);
1142        if (ret)
1143                printk(KERN_INFO "%s: Setting promiscuous mode (%d) failed\n",
1144                       dev->name, local->is_promisc);
1145
1146        if (!local->fw_ap) {
1147                ret = hostap_set_string(dev, HFA384X_RID_CNFDESIREDSSID,
1148                                        local->essid);
1149                if (ret) {
1150                        printk("%s: Desired SSID setting failed\n", dev->name);
1151                        goto fail;
1152                }
1153        }
1154
1155        /* Setup TXRateControl, defaults to allow use of 1, 2, 5.5, and
1156         * 11 Mbps in automatic TX rate fallback and 1 and 2 Mbps as basic
1157         * rates */
1158        if (local->tx_rate_control == 0) {
1159                local->tx_rate_control =
1160                        HFA384X_RATES_1MBPS |
1161                        HFA384X_RATES_2MBPS |
1162                        HFA384X_RATES_5MBPS |
1163                        HFA384X_RATES_11MBPS;
1164        }
1165        if (local->basic_rates == 0)
1166                local->basic_rates = HFA384X_RATES_1MBPS | HFA384X_RATES_2MBPS;
1167
1168        if (!local->fw_ap) {
1169                ret = hostap_set_word(dev, HFA384X_RID_TXRATECONTROL,
1170                                      local->tx_rate_control);
1171                if (ret) {
1172                        printk("%s: TXRateControl setting to %d failed\n",
1173                               dev->name, local->tx_rate_control);
1174                        goto fail;
1175                }
1176
1177                ret = hostap_set_word(dev, HFA384X_RID_CNFSUPPORTEDRATES,
1178                                      local->tx_rate_control);
1179                if (ret) {
1180                        printk("%s: cnfSupportedRates setting to %d failed\n",
1181                               dev->name, local->tx_rate_control);
1182                }
1183
1184                ret = hostap_set_word(dev, HFA384X_RID_CNFBASICRATES,
1185                                      local->basic_rates);
1186                if (ret) {
1187                        printk("%s: cnfBasicRates setting to %d failed\n",
1188                               dev->name, local->basic_rates);
1189                }
1190
1191                ret = hostap_set_word(dev, HFA384X_RID_CREATEIBSS, 1);
1192                if (ret) {
1193                        printk("%s: Create IBSS setting to 1 failed\n",
1194                               dev->name);
1195                }
1196        }
1197
1198        if (local->name_set)
1199                (void) hostap_set_string(dev, HFA384X_RID_CNFOWNNAME,
1200                                         local->name);
1201
1202        if (hostap_set_encryption(local)) {
1203                printk(KERN_INFO "%s: could not configure encryption\n",
1204                       dev->name);
1205        }
1206
1207        (void) hostap_set_antsel(local);
1208
1209        if (hostap_set_roaming(local)) {
1210                printk(KERN_INFO "%s: could not set host roaming\n",
1211                       dev->name);
1212        }
1213
1214        if (local->sta_fw_ver >= PRISM2_FW_VER(1,6,3) &&
1215            hostap_set_word(dev, HFA384X_RID_CNFENHSECURITY, local->enh_sec))
1216                printk(KERN_INFO "%s: cnfEnhSecurity setting to 0x%x failed\n",
1217                       dev->name, local->enh_sec);
1218
1219        /* 32-bit tallies were added in STA f/w 0.8.0, but they were apparently
1220         * not working correctly (last seven counters report bogus values).
1221         * This has been fixed in 0.8.2, so enable 32-bit tallies only
1222         * beginning with that firmware version. Another bug fix for 32-bit
1223         * tallies in 1.4.0; should 16-bit tallies be used for some other
1224         * versions, too? */
1225        if (local->sta_fw_ver >= PRISM2_FW_VER(0,8,2)) {
1226                if (hostap_set_word(dev, HFA384X_RID_CNFTHIRTY2TALLY, 1)) {
1227                        printk(KERN_INFO "%s: cnfThirty2Tally setting "
1228                               "failed\n", dev->name);
1229                        local->tallies32 = 0;
1230                } else
1231                        local->tallies32 = 1;
1232        } else
1233                local->tallies32 = 0;
1234
1235        hostap_set_auth_algs(local);
1236
1237        if (hostap_set_word(dev, HFA384X_RID_FRAGMENTATIONTHRESHOLD,
1238                            local->fragm_threshold)) {
1239                printk(KERN_INFO "%s: setting FragmentationThreshold to %d "
1240                       "failed\n", dev->name, local->fragm_threshold);
1241        }
1242
1243        if (hostap_set_word(dev, HFA384X_RID_RTSTHRESHOLD,
1244                            local->rts_threshold)) {
1245                printk(KERN_INFO "%s: setting RTSThreshold to %d failed\n",
1246                       dev->name, local->rts_threshold);
1247        }
1248
1249        if (local->manual_retry_count >= 0 &&
1250            hostap_set_word(dev, HFA384X_RID_CNFALTRETRYCOUNT,
1251                            local->manual_retry_count)) {
1252                printk(KERN_INFO "%s: setting cnfAltRetryCount to %d failed\n",
1253                       dev->name, local->manual_retry_count);
1254        }
1255
1256        if (local->sta_fw_ver >= PRISM2_FW_VER(1,3,1) &&
1257            hfa384x_get_rid(dev, HFA384X_RID_CNFDBMADJUST, &tmp, 2, 1) == 2) {
1258                local->rssi_to_dBm = le16_to_cpu(tmp);
1259        }
1260
1261        if (local->sta_fw_ver >= PRISM2_FW_VER(1,7,0) && local->wpa &&
1262            hostap_set_word(dev, HFA384X_RID_SSNHANDLINGMODE, 1)) {
1263                printk(KERN_INFO "%s: setting ssnHandlingMode to 1 failed\n",
1264                       dev->name);
1265        }
1266
1267        if (local->sta_fw_ver >= PRISM2_FW_VER(1,7,0) && local->generic_elem &&
1268            hfa384x_set_rid(dev, HFA384X_RID_GENERICELEMENT,
1269                            local->generic_elem, local->generic_elem_len)) {
1270                printk(KERN_INFO "%s: setting genericElement failed\n",
1271                       dev->name);
1272        }
1273
1274 fail:
1275        return ret;
1276}
1277
1278
1279static int prism2_hw_init(struct net_device *dev, int initial)
1280{
1281        struct hostap_interface *iface;
1282        local_info_t *local;
1283        int ret, first = 1;
1284        unsigned long start, delay;
1285
1286        PDEBUG(DEBUG_FLOW, "prism2_hw_init()\n");
1287
1288        iface = netdev_priv(dev);
1289        local = iface->local;
1290
1291        clear_bit(HOSTAP_BITS_TRANSMIT, &local->bits);
1292
1293 init:
1294        /* initialize HFA 384x */
1295        ret = hfa384x_cmd_no_wait(dev, HFA384X_CMDCODE_INIT, 0);
1296        if (ret) {
1297                printk(KERN_INFO "%s: first command failed - assuming card "
1298                       "does not have primary firmware\n", dev_info);
1299        }
1300
1301        if (first && (HFA384X_INW(HFA384X_EVSTAT_OFF) & HFA384X_EV_CMD)) {
1302                /* EvStat has Cmd bit set in some cases, so retry once if no
1303                 * wait was needed */
1304                HFA384X_OUTW(HFA384X_EV_CMD, HFA384X_EVACK_OFF);
1305                printk(KERN_DEBUG "%s: init command completed too quickly - "
1306                       "retrying\n", dev->name);
1307                first = 0;
1308                goto init;
1309        }
1310
1311        start = jiffies;
1312        delay = jiffies + HFA384X_INIT_TIMEOUT;
1313        while (!(HFA384X_INW(HFA384X_EVSTAT_OFF) & HFA384X_EV_CMD) &&
1314               time_before(jiffies, delay))
1315                yield();
1316        if (!(HFA384X_INW(HFA384X_EVSTAT_OFF) & HFA384X_EV_CMD)) {
1317                printk(KERN_DEBUG "%s: assuming no Primary image in "
1318                       "flash - card initialization not completed\n",
1319                       dev_info);
1320                local->no_pri = 1;
1321#ifdef PRISM2_DOWNLOAD_SUPPORT
1322                        if (local->sram_type == -1)
1323                                local->sram_type = prism2_get_ram_size(local);
1324#endif /* PRISM2_DOWNLOAD_SUPPORT */
1325                return 1;
1326        }
1327        local->no_pri = 0;
1328        printk(KERN_DEBUG "prism2_hw_init: initialized in %lu ms\n",
1329               (jiffies - start) * 1000 / HZ);
1330        HFA384X_OUTW(HFA384X_EV_CMD, HFA384X_EVACK_OFF);
1331        return 0;
1332}
1333
1334
1335static int prism2_hw_init2(struct net_device *dev, int initial)
1336{
1337        struct hostap_interface *iface;
1338        local_info_t *local;
1339        int i;
1340
1341        iface = netdev_priv(dev);
1342        local = iface->local;
1343
1344#ifdef PRISM2_DOWNLOAD_SUPPORT
1345        kfree(local->pda);
1346        if (local->no_pri)
1347                local->pda = NULL;
1348        else
1349                local->pda = prism2_read_pda(dev);
1350#endif /* PRISM2_DOWNLOAD_SUPPORT */
1351
1352        hfa384x_disable_interrupts(dev);
1353
1354#ifndef final_version
1355        HFA384X_OUTW(HFA384X_MAGIC, HFA384X_SWSUPPORT0_OFF);
1356        if (HFA384X_INW(HFA384X_SWSUPPORT0_OFF) != HFA384X_MAGIC) {
1357                printk("SWSUPPORT0 write/read failed: %04X != %04X\n",
1358                       HFA384X_INW(HFA384X_SWSUPPORT0_OFF), HFA384X_MAGIC);
1359                goto failed;
1360        }
1361#endif
1362
1363        if (initial || local->pri_only) {
1364                hfa384x_events_only_cmd(dev);
1365                /* get card version information */
1366                if (prism2_get_version_info(dev, HFA384X_RID_NICID, "NIC") ||
1367                    prism2_get_version_info(dev, HFA384X_RID_PRIID, "PRI")) {
1368                        hfa384x_disable_interrupts(dev);
1369                        goto failed;
1370                }
1371
1372                if (prism2_get_version_info(dev, HFA384X_RID_STAID, "STA")) {
1373                        printk(KERN_DEBUG "%s: Failed to read STA f/w version "
1374                               "- only Primary f/w present\n", dev->name);
1375                        local->pri_only = 1;
1376                        return 0;
1377                }
1378                local->pri_only = 0;
1379                hfa384x_disable_interrupts(dev);
1380        }
1381
1382        /* FIX: could convert allocate_fid to use sleeping CmdCompl wait and
1383         * enable interrupts before this. This would also require some sort of
1384         * sleeping AllocEv waiting */
1385
1386        /* allocate TX FIDs */
1387        local->txfid_len = PRISM2_TXFID_LEN;
1388        for (i = 0; i < PRISM2_TXFID_COUNT; i++) {
1389                local->txfid[i] = hfa384x_allocate_fid(dev, local->txfid_len);
1390                if (local->txfid[i] == 0xffff && local->txfid_len > 1600) {
1391                        local->txfid[i] = hfa384x_allocate_fid(dev, 1600);
1392                        if (local->txfid[i] != 0xffff) {
1393                                printk(KERN_DEBUG "%s: Using shorter TX FID "
1394                                       "(1600 bytes)\n", dev->name);
1395                                local->txfid_len = 1600;
1396                        }
1397                }
1398                if (local->txfid[i] == 0xffff)
1399                        goto failed;
1400                local->intransmitfid[i] = PRISM2_TXFID_EMPTY;
1401        }
1402
1403        hfa384x_events_only_cmd(dev);
1404
1405        if (initial) {
1406                u8 addr[ETH_ALEN] = {};
1407                struct list_head *ptr;
1408
1409                prism2_check_sta_fw_version(local);
1410
1411                if (hfa384x_get_rid(dev, HFA384X_RID_CNFOWNMACADDR,
1412                                    addr, ETH_ALEN, 1) < 0) {
1413                        printk("%s: could not get own MAC address\n",
1414                               dev->name);
1415                }
1416                eth_hw_addr_set(dev, addr);
1417                list_for_each(ptr, &local->hostap_interfaces) {
1418                        iface = list_entry(ptr, struct hostap_interface, list);
1419                        eth_hw_addr_inherit(iface->dev, dev);
1420                }
1421        } else if (local->fw_ap)
1422                prism2_check_sta_fw_version(local);
1423
1424        prism2_setup_rids(dev);
1425
1426        /* MAC is now configured, but port 0 is not yet enabled */
1427        return 0;
1428
1429 failed:
1430        if (!local->no_pri)
1431                printk(KERN_WARNING "%s: Initialization failed\n", dev_info);
1432        return 1;
1433}
1434
1435
1436static int prism2_hw_enable(struct net_device *dev, int initial)
1437{
1438        struct hostap_interface *iface;
1439        local_info_t *local;
1440        int was_resetting;
1441
1442        iface = netdev_priv(dev);
1443        local = iface->local;
1444        was_resetting = local->hw_resetting;
1445
1446        if (hfa384x_cmd(dev, HFA384X_CMDCODE_ENABLE, 0, NULL, NULL)) {
1447                printk("%s: MAC port 0 enabling failed\n", dev->name);
1448                return 1;
1449        }
1450
1451        local->hw_ready = 1;
1452        local->hw_reset_tries = 0;
1453        local->hw_resetting = 0;
1454        hfa384x_enable_interrupts(dev);
1455
1456        /* at least D-Link DWL-650 seems to require additional port reset
1457         * before it starts acting as an AP, so reset port automatically
1458         * here just in case */
1459        if (initial && prism2_reset_port(dev)) {
1460                printk("%s: MAC port 0 resetting failed\n", dev->name);
1461                return 1;
1462        }
1463
1464        if (was_resetting && netif_queue_stopped(dev)) {
1465                /* If hw_reset() was called during pending transmit, netif
1466                 * queue was stopped. Wake it up now since the wlan card has
1467                 * been resetted. */
1468                netif_wake_queue(dev);
1469        }
1470
1471        return 0;
1472}
1473
1474
1475static int prism2_hw_config(struct net_device *dev, int initial)
1476{
1477        struct hostap_interface *iface;
1478        local_info_t *local;
1479
1480        iface = netdev_priv(dev);
1481        local = iface->local;
1482
1483        if (local->hw_downloading)
1484                return 1;
1485
1486        if (prism2_hw_init(dev, initial)) {
1487                return local->no_pri ? 0 : 1;
1488        }
1489
1490        if (prism2_hw_init2(dev, initial))
1491                return 1;
1492
1493        /* Enable firmware if secondary image is loaded and at least one of the
1494         * netdevices is up. */
1495        if (!local->pri_only &&
1496            (initial == 0 || (initial == 2 && local->num_dev_open > 0))) {
1497                if (!local->dev_enabled)
1498                        prism2_callback(local, PRISM2_CALLBACK_ENABLE);
1499                local->dev_enabled = 1;
1500                return prism2_hw_enable(dev, initial);
1501        }
1502
1503        return 0;
1504}
1505
1506
1507static void prism2_hw_shutdown(struct net_device *dev, int no_disable)
1508{
1509        struct hostap_interface *iface;
1510        local_info_t *local;
1511
1512        iface = netdev_priv(dev);
1513        local = iface->local;
1514
1515        /* Allow only command completion events during disable */
1516        hfa384x_events_only_cmd(dev);
1517
1518        local->hw_ready = 0;
1519        if (local->dev_enabled)
1520                prism2_callback(local, PRISM2_CALLBACK_DISABLE);
1521        local->dev_enabled = 0;
1522
1523        if (local->func->card_present && !local->func->card_present(local)) {
1524                printk(KERN_DEBUG "%s: card already removed or not configured "
1525                       "during shutdown\n", dev->name);
1526                return;
1527        }
1528
1529        if ((no_disable & HOSTAP_HW_NO_DISABLE) == 0 &&
1530            hfa384x_cmd(dev, HFA384X_CMDCODE_DISABLE, 0, NULL, NULL))
1531                printk(KERN_WARNING "%s: Shutdown failed\n", dev_info);
1532
1533        hfa384x_disable_interrupts(dev);
1534
1535        if (no_disable & HOSTAP_HW_ENABLE_CMDCOMPL)
1536                hfa384x_events_only_cmd(dev);
1537        else
1538                prism2_clear_cmd_queue(local);
1539}
1540
1541
1542static void prism2_hw_reset(struct net_device *dev)
1543{
1544        struct hostap_interface *iface;
1545        local_info_t *local;
1546
1547#if 0
1548        static long last_reset = 0;
1549
1550        /* do not reset card more than once per second to avoid ending up in a
1551         * busy loop resetting the card */
1552        if (time_before_eq(jiffies, last_reset + HZ))
1553                return;
1554        last_reset = jiffies;
1555#endif
1556
1557        iface = netdev_priv(dev);
1558        local = iface->local;
1559
1560        if (local->hw_downloading)
1561                return;
1562
1563        if (local->hw_resetting) {
1564                printk(KERN_WARNING "%s: %s: already resetting card - "
1565                       "ignoring reset request\n", dev_info, dev->name);
1566                return;
1567        }
1568
1569        local->hw_reset_tries++;
1570        if (local->hw_reset_tries > 10) {
1571                printk(KERN_WARNING "%s: too many reset tries, skipping\n",
1572                       dev->name);
1573                return;
1574        }
1575
1576        printk(KERN_WARNING "%s: %s: resetting card\n", dev_info, dev->name);
1577        hfa384x_disable_interrupts(dev);
1578        local->hw_resetting = 1;
1579        if (local->func->cor_sreset) {
1580                /* Host system seems to hang in some cases with high traffic
1581                 * load or shared interrupts during COR sreset. Disable shared
1582                 * interrupts during reset to avoid these crashes. COS sreset
1583                 * takes quite a long time, so it is unfortunate that this
1584                 * seems to be needed. Anyway, I do not know of any better way
1585                 * of avoiding the crash. */
1586                disable_irq(dev->irq);
1587                local->func->cor_sreset(local);
1588                enable_irq(dev->irq);
1589        }
1590        prism2_hw_shutdown(dev, 1);
1591        prism2_hw_config(dev, 0);
1592        local->hw_resetting = 0;
1593
1594#ifdef PRISM2_DOWNLOAD_SUPPORT
1595        if (local->dl_pri) {
1596                printk(KERN_DEBUG "%s: persistent download of primary "
1597                       "firmware\n", dev->name);
1598                if (prism2_download_genesis(local, local->dl_pri) < 0)
1599                        printk(KERN_WARNING "%s: download (PRI) failed\n",
1600                               dev->name);
1601        }
1602
1603        if (local->dl_sec) {
1604                printk(KERN_DEBUG "%s: persistent download of secondary "
1605                       "firmware\n", dev->name);
1606                if (prism2_download_volatile(local, local->dl_sec) < 0)
1607                        printk(KERN_WARNING "%s: download (SEC) failed\n",
1608                               dev->name);
1609        }
1610#endif /* PRISM2_DOWNLOAD_SUPPORT */
1611
1612        /* TODO: restore beacon TIM bits for STAs that have buffered frames */
1613}
1614
1615
1616static void prism2_schedule_reset(local_info_t *local)
1617{
1618        schedule_work(&local->reset_queue);
1619}
1620
1621
1622/* Called only as scheduled task after noticing card timeout in interrupt
1623 * context */
1624static void handle_reset_queue(struct work_struct *work)
1625{
1626        local_info_t *local = container_of(work, local_info_t, reset_queue);
1627
1628        printk(KERN_DEBUG "%s: scheduled card reset\n", local->dev->name);
1629        prism2_hw_reset(local->dev);
1630
1631        if (netif_queue_stopped(local->dev)) {
1632                int i;
1633
1634                for (i = 0; i < PRISM2_TXFID_COUNT; i++)
1635                        if (local->intransmitfid[i] == PRISM2_TXFID_EMPTY) {
1636                                PDEBUG(DEBUG_EXTRA, "prism2_tx_timeout: "
1637                                       "wake up queue\n");
1638                                netif_wake_queue(local->dev);
1639                                break;
1640                        }
1641        }
1642}
1643
1644
1645static int prism2_get_txfid_idx(local_info_t *local)
1646{
1647        int idx, end;
1648        unsigned long flags;
1649
1650        spin_lock_irqsave(&local->txfidlock, flags);
1651        end = idx = local->next_txfid;
1652        do {
1653                if (local->intransmitfid[idx] == PRISM2_TXFID_EMPTY) {
1654                        local->intransmitfid[idx] = PRISM2_TXFID_RESERVED;
1655                        spin_unlock_irqrestore(&local->txfidlock, flags);
1656                        return idx;
1657                }
1658                idx++;
1659                if (idx >= PRISM2_TXFID_COUNT)
1660                        idx = 0;
1661        } while (idx != end);
1662        spin_unlock_irqrestore(&local->txfidlock, flags);
1663
1664        PDEBUG(DEBUG_EXTRA2, "prism2_get_txfid_idx: no room in txfid buf: "
1665               "packet dropped\n");
1666        local->dev->stats.tx_dropped++;
1667
1668        return -1;
1669}
1670
1671
1672/* Called only from hardware IRQ */
1673static void prism2_transmit_cb(struct net_device *dev, long context,
1674                               u16 resp0, u16 res)
1675{
1676        struct hostap_interface *iface;
1677        local_info_t *local;
1678        int idx = (int) context;
1679
1680        iface = netdev_priv(dev);
1681        local = iface->local;
1682
1683        if (res) {
1684                printk(KERN_DEBUG "%s: prism2_transmit_cb - res=0x%02x\n",
1685                       dev->name, res);
1686                return;
1687        }
1688
1689        if (idx < 0 || idx >= PRISM2_TXFID_COUNT) {
1690                printk(KERN_DEBUG "%s: prism2_transmit_cb called with invalid "
1691                       "idx=%d\n", dev->name, idx);
1692                return;
1693        }
1694
1695        if (!test_and_clear_bit(HOSTAP_BITS_TRANSMIT, &local->bits)) {
1696                printk(KERN_DEBUG "%s: driver bug: prism2_transmit_cb called "
1697                       "with no pending transmit\n", dev->name);
1698        }
1699
1700        if (netif_queue_stopped(dev)) {
1701                /* ready for next TX, so wake up queue that was stopped in
1702                 * prism2_transmit() */
1703                netif_wake_queue(dev);
1704        }
1705
1706        spin_lock(&local->txfidlock);
1707
1708        /* With reclaim, Resp0 contains new txfid for transmit; the old txfid
1709         * will be automatically allocated for the next TX frame */
1710        local->intransmitfid[idx] = resp0;
1711
1712        PDEBUG(DEBUG_FID, "%s: prism2_transmit_cb: txfid[%d]=0x%04x, "
1713               "resp0=0x%04x, transmit_txfid=0x%04x\n",
1714               dev->name, idx, local->txfid[idx],
1715               resp0, local->intransmitfid[local->next_txfid]);
1716
1717        idx++;
1718        if (idx >= PRISM2_TXFID_COUNT)
1719                idx = 0;
1720        local->next_txfid = idx;
1721
1722        /* check if all TX buffers are occupied */
1723        do {
1724                if (local->intransmitfid[idx] == PRISM2_TXFID_EMPTY) {
1725                        spin_unlock(&local->txfidlock);
1726                        return;
1727                }
1728                idx++;
1729                if (idx >= PRISM2_TXFID_COUNT)
1730                        idx = 0;
1731        } while (idx != local->next_txfid);
1732        spin_unlock(&local->txfidlock);
1733
1734        /* no empty TX buffers, stop queue */
1735        netif_stop_queue(dev);
1736}
1737
1738
1739/* Called only from software IRQ if PCI bus master is not used (with bus master
1740 * this can be called both from software and hardware IRQ) */
1741static int prism2_transmit(struct net_device *dev, int idx)
1742{
1743        struct hostap_interface *iface;
1744        local_info_t *local;
1745        int res;
1746
1747        iface = netdev_priv(dev);
1748        local = iface->local;
1749
1750        /* The driver tries to stop netif queue so that there would not be
1751         * more than one attempt to transmit frames going on; check that this
1752         * is really the case */
1753
1754        if (test_and_set_bit(HOSTAP_BITS_TRANSMIT, &local->bits)) {
1755                printk(KERN_DEBUG "%s: driver bug - prism2_transmit() called "
1756                       "when previous TX was pending\n", dev->name);
1757                return -1;
1758        }
1759
1760        /* stop the queue for the time that transmit is pending */
1761        netif_stop_queue(dev);
1762
1763        /* transmit packet */
1764        res = hfa384x_cmd_callback(
1765                dev,
1766                HFA384X_CMDCODE_TRANSMIT | HFA384X_CMD_TX_RECLAIM,
1767                local->txfid[idx],
1768                prism2_transmit_cb, (long) idx);
1769
1770        if (res) {
1771                printk(KERN_DEBUG "%s: prism2_transmit: CMDCODE_TRANSMIT "
1772                       "failed (res=%d)\n", dev->name, res);
1773                dev->stats.tx_dropped++;
1774                netif_wake_queue(dev);
1775                return -1;
1776        }
1777        netif_trans_update(dev);
1778
1779        /* Since we did not wait for command completion, the card continues
1780         * to process on the background and we will finish handling when
1781         * command completion event is handled (prism2_cmd_ev() function) */
1782
1783        return 0;
1784}
1785
1786
1787/* Send IEEE 802.11 frame (convert the header into Prism2 TX descriptor and
1788 * send the payload with this descriptor) */
1789/* Called only from software IRQ */
1790static int prism2_tx_80211(struct sk_buff *skb, struct net_device *dev)
1791{
1792        struct hostap_interface *iface;
1793        local_info_t *local;
1794        struct hfa384x_tx_frame txdesc;
1795        struct hostap_skb_tx_data *meta;
1796        int hdr_len, data_len, idx, res, ret = -1;
1797        u16 tx_control;
1798
1799        iface = netdev_priv(dev);
1800        local = iface->local;
1801
1802        meta = (struct hostap_skb_tx_data *) skb->cb;
1803
1804        prism2_callback(local, PRISM2_CALLBACK_TX_START);
1805
1806        if ((local->func->card_present && !local->func->card_present(local)) ||
1807            !local->hw_ready || local->hw_downloading || local->pri_only) {
1808                if (net_ratelimit()) {
1809                        printk(KERN_DEBUG "%s: prism2_tx_80211: hw not ready -"
1810                               " skipping\n", dev->name);
1811                }
1812                goto fail;
1813        }
1814
1815        memset(&txdesc, 0, sizeof(txdesc));
1816
1817        /* skb->data starts with txdesc->frame_control */
1818        hdr_len = 24;
1819        skb_copy_from_linear_data(skb, &txdesc.frame_control, hdr_len);
1820        if (ieee80211_is_data(txdesc.frame_control) &&
1821            ieee80211_has_a4(txdesc.frame_control) &&
1822            skb->len >= 30) {
1823                /* Addr4 */
1824                skb_copy_from_linear_data_offset(skb, hdr_len, txdesc.addr4,
1825                                                 ETH_ALEN);
1826                hdr_len += ETH_ALEN;
1827        }
1828
1829        tx_control = local->tx_control;
1830        if (meta->tx_cb_idx) {
1831                tx_control |= HFA384X_TX_CTRL_TX_OK;
1832                txdesc.sw_support = cpu_to_le32(meta->tx_cb_idx);
1833        }
1834        txdesc.tx_control = cpu_to_le16(tx_control);
1835        txdesc.tx_rate = meta->rate;
1836
1837        data_len = skb->len - hdr_len;
1838        txdesc.data_len = cpu_to_le16(data_len);
1839        txdesc.len = cpu_to_be16(data_len);
1840
1841        idx = prism2_get_txfid_idx(local);
1842        if (idx < 0)
1843                goto fail;
1844
1845        if (local->frame_dump & PRISM2_DUMP_TX_HDR)
1846                hostap_dump_tx_header(dev->name, &txdesc);
1847
1848        spin_lock(&local->baplock);
1849        res = hfa384x_setup_bap(dev, BAP0, local->txfid[idx], 0);
1850
1851        if (!res)
1852                res = hfa384x_to_bap(dev, BAP0, &txdesc, sizeof(txdesc));
1853        if (!res)
1854                res = hfa384x_to_bap(dev, BAP0, skb->data + hdr_len,
1855                                     skb->len - hdr_len);
1856        spin_unlock(&local->baplock);
1857
1858        if (!res)
1859                res = prism2_transmit(dev, idx);
1860        if (res) {
1861                printk(KERN_DEBUG "%s: prism2_tx_80211 - to BAP0 failed\n",
1862                       dev->name);
1863                local->intransmitfid[idx] = PRISM2_TXFID_EMPTY;
1864                schedule_work(&local->reset_queue);
1865                goto fail;
1866        }
1867
1868        ret = 0;
1869
1870fail:
1871        prism2_callback(local, PRISM2_CALLBACK_TX_END);
1872        return ret;
1873}
1874
1875
1876/* Some SMP systems have reported number of odd errors with hostap_pci. fid
1877 * register has changed values between consecutive reads for an unknown reason.
1878 * This should really not happen, so more debugging is needed. This test
1879 * version is a bit slower, but it will detect most of such register changes
1880 * and will try to get the correct fid eventually. */
1881#define EXTRA_FID_READ_TESTS
1882
1883static u16 prism2_read_fid_reg(struct net_device *dev, u16 reg)
1884{
1885#ifdef EXTRA_FID_READ_TESTS
1886        u16 val, val2, val3;
1887        int i;
1888
1889        for (i = 0; i < 10; i++) {
1890                val = HFA384X_INW(reg);
1891                val2 = HFA384X_INW(reg);
1892                val3 = HFA384X_INW(reg);
1893
1894                if (val == val2 && val == val3)
1895                        return val;
1896
1897                printk(KERN_DEBUG "%s: detected fid change (try=%d, reg=%04x):"
1898                       " %04x %04x %04x\n",
1899                       dev->name, i, reg, val, val2, val3);
1900                if ((val == val2 || val == val3) && val != 0)
1901                        return val;
1902                if (val2 == val3 && val2 != 0)
1903                        return val2;
1904        }
1905        printk(KERN_WARNING "%s: Uhhuh.. could not read good fid from reg "
1906               "%04x (%04x %04x %04x)\n", dev->name, reg, val, val2, val3);
1907        return val;
1908#else /* EXTRA_FID_READ_TESTS */
1909        return HFA384X_INW(reg);
1910#endif /* EXTRA_FID_READ_TESTS */
1911}
1912
1913
1914/* Called only as a tasklet (software IRQ) */
1915static void prism2_rx(local_info_t *local)
1916{
1917        struct net_device *dev = local->dev;
1918        int res, rx_pending = 0;
1919        u16 len, hdr_len, rxfid, status, macport;
1920        struct hfa384x_rx_frame rxdesc;
1921        struct sk_buff *skb = NULL;
1922
1923        prism2_callback(local, PRISM2_CALLBACK_RX_START);
1924
1925        rxfid = prism2_read_fid_reg(dev, HFA384X_RXFID_OFF);
1926#ifndef final_version
1927        if (rxfid == 0) {
1928                rxfid = HFA384X_INW(HFA384X_RXFID_OFF);
1929                printk(KERN_DEBUG "prism2_rx: rxfid=0 (next 0x%04x)\n",
1930                       rxfid);
1931                if (rxfid == 0) {
1932                        schedule_work(&local->reset_queue);
1933                        goto rx_dropped;
1934                }
1935                /* try to continue with the new rxfid value */
1936        }
1937#endif
1938
1939        spin_lock(&local->baplock);
1940        res = hfa384x_setup_bap(dev, BAP0, rxfid, 0);
1941        if (!res)
1942                res = hfa384x_from_bap(dev, BAP0, &rxdesc, sizeof(rxdesc));
1943
1944        if (res) {
1945                spin_unlock(&local->baplock);
1946                printk(KERN_DEBUG "%s: copy from BAP0 failed %d\n", dev->name,
1947                       res);
1948                if (res == -ETIMEDOUT) {
1949                        schedule_work(&local->reset_queue);
1950                }
1951                goto rx_dropped;
1952        }
1953
1954        len = le16_to_cpu(rxdesc.data_len);
1955        hdr_len = sizeof(rxdesc);
1956        status = le16_to_cpu(rxdesc.status);
1957        macport = (status >> 8) & 0x07;
1958
1959        /* Drop frames with too large reported payload length. Monitor mode
1960         * seems to sometimes pass frames (e.g., ctrl::ack) with signed and
1961         * negative value, so allow also values 65522 .. 65534 (-14 .. -2) for
1962         * macport 7 */
1963        if (len > PRISM2_DATA_MAXLEN + 8 /* WEP */) {
1964                if (macport == 7 && local->iw_mode == IW_MODE_MONITOR) {
1965                        if (len >= (u16) -14) {
1966                                hdr_len -= 65535 - len;
1967                                hdr_len--;
1968                        }
1969                        len = 0;
1970                } else {
1971                        spin_unlock(&local->baplock);
1972                        printk(KERN_DEBUG "%s: Received frame with invalid "
1973                               "length 0x%04x\n", dev->name, len);
1974                        hostap_dump_rx_header(dev->name, &rxdesc);
1975                        goto rx_dropped;
1976                }
1977        }
1978
1979        skb = dev_alloc_skb(len + hdr_len);
1980        if (!skb) {
1981                spin_unlock(&local->baplock);
1982                printk(KERN_DEBUG "%s: RX failed to allocate skb\n",
1983                       dev->name);
1984                goto rx_dropped;
1985        }
1986        skb->dev = dev;
1987        skb_put_data(skb, &rxdesc, hdr_len);
1988
1989        if (len > 0)
1990                res = hfa384x_from_bap(dev, BAP0, skb_put(skb, len), len);
1991        spin_unlock(&local->baplock);
1992        if (res) {
1993                printk(KERN_DEBUG "%s: RX failed to read "
1994                       "frame data\n", dev->name);
1995                goto rx_dropped;
1996        }
1997
1998        skb_queue_tail(&local->rx_list, skb);
1999        tasklet_schedule(&local->rx_tasklet);
2000
2001 rx_exit:
2002        prism2_callback(local, PRISM2_CALLBACK_RX_END);
2003        if (!rx_pending) {
2004                HFA384X_OUTW(HFA384X_EV_RX, HFA384X_EVACK_OFF);
2005        }
2006
2007        return;
2008
2009 rx_dropped:
2010        dev->stats.rx_dropped++;
2011        if (skb)
2012                dev_kfree_skb(skb);
2013        goto rx_exit;
2014}
2015
2016
2017/* Called only as a tasklet (software IRQ) */
2018static void hostap_rx_skb(local_info_t *local, struct sk_buff *skb)
2019{
2020        struct hfa384x_rx_frame *rxdesc;
2021        struct net_device *dev = skb->dev;
2022        struct hostap_80211_rx_status stats;
2023        int hdrlen, rx_hdrlen;
2024
2025        rx_hdrlen = sizeof(*rxdesc);
2026        if (skb->len < sizeof(*rxdesc)) {
2027                /* Allow monitor mode to receive shorter frames */
2028                if (local->iw_mode == IW_MODE_MONITOR &&
2029                    skb->len >= sizeof(*rxdesc) - 30) {
2030                        rx_hdrlen = skb->len;
2031                } else {
2032                        dev_kfree_skb(skb);
2033                        return;
2034                }
2035        }
2036
2037        rxdesc = (struct hfa384x_rx_frame *) skb->data;
2038
2039        if (local->frame_dump & PRISM2_DUMP_RX_HDR &&
2040            skb->len >= sizeof(*rxdesc))
2041                hostap_dump_rx_header(dev->name, rxdesc);
2042
2043        if (le16_to_cpu(rxdesc->status) & HFA384X_RX_STATUS_FCSERR &&
2044            (!local->monitor_allow_fcserr ||
2045             local->iw_mode != IW_MODE_MONITOR))
2046                goto drop;
2047
2048        if (skb->len > PRISM2_DATA_MAXLEN) {
2049                printk(KERN_DEBUG "%s: RX: len(%d) > MAX(%d)\n",
2050                       dev->name, skb->len, PRISM2_DATA_MAXLEN);
2051                goto drop;
2052        }
2053
2054        stats.mac_time = le32_to_cpu(rxdesc->time);
2055        stats.signal = rxdesc->signal - local->rssi_to_dBm;
2056        stats.noise = rxdesc->silence - local->rssi_to_dBm;
2057        stats.rate = rxdesc->rate;
2058
2059        /* Convert Prism2 RX structure into IEEE 802.11 header */
2060        hdrlen = hostap_80211_get_hdrlen(rxdesc->frame_control);
2061        if (hdrlen > rx_hdrlen)
2062                hdrlen = rx_hdrlen;
2063
2064        memmove(skb_pull(skb, rx_hdrlen - hdrlen),
2065                &rxdesc->frame_control, hdrlen);
2066
2067        hostap_80211_rx(dev, skb, &stats);
2068        return;
2069
2070 drop:
2071        dev_kfree_skb(skb);
2072}
2073
2074
2075/* Called only as a tasklet (software IRQ) */
2076static void hostap_rx_tasklet(struct tasklet_struct *t)
2077{
2078        local_info_t *local = from_tasklet(local, t, rx_tasklet);
2079        struct sk_buff *skb;
2080
2081        while ((skb = skb_dequeue(&local->rx_list)) != NULL)
2082                hostap_rx_skb(local, skb);
2083}
2084
2085
2086/* Called only from hardware IRQ */
2087static void prism2_alloc_ev(struct net_device *dev)
2088{
2089        struct hostap_interface *iface;
2090        local_info_t *local;
2091        int idx;
2092        u16 fid;
2093
2094        iface = netdev_priv(dev);
2095        local = iface->local;
2096
2097        fid = prism2_read_fid_reg(dev, HFA384X_ALLOCFID_OFF);
2098
2099        PDEBUG(DEBUG_FID, "FID: interrupt: ALLOC - fid=0x%04x\n", fid);
2100
2101        spin_lock(&local->txfidlock);
2102        idx = local->next_alloc;
2103
2104        do {
2105                if (local->txfid[idx] == fid) {
2106                        PDEBUG(DEBUG_FID, "FID: found matching txfid[%d]\n",
2107                               idx);
2108
2109#ifndef final_version
2110                        if (local->intransmitfid[idx] == PRISM2_TXFID_EMPTY)
2111                                printk("Already released txfid found at idx "
2112                                       "%d\n", idx);
2113                        if (local->intransmitfid[idx] == PRISM2_TXFID_RESERVED)
2114                                printk("Already reserved txfid found at idx "
2115                                       "%d\n", idx);
2116#endif
2117                        local->intransmitfid[idx] = PRISM2_TXFID_EMPTY;
2118                        idx++;
2119                        local->next_alloc = idx >= PRISM2_TXFID_COUNT ? 0 :
2120                                idx;
2121
2122                        if (!test_bit(HOSTAP_BITS_TRANSMIT, &local->bits) &&
2123                            netif_queue_stopped(dev))
2124                                netif_wake_queue(dev);
2125
2126                        spin_unlock(&local->txfidlock);
2127                        return;
2128                }
2129
2130                idx++;
2131                if (idx >= PRISM2_TXFID_COUNT)
2132                        idx = 0;
2133        } while (idx != local->next_alloc);
2134
2135        printk(KERN_WARNING "%s: could not find matching txfid (0x%04x, new "
2136               "read 0x%04x) for alloc event\n", dev->name, fid,
2137               HFA384X_INW(HFA384X_ALLOCFID_OFF));
2138        printk(KERN_DEBUG "TXFIDs:");
2139        for (idx = 0; idx < PRISM2_TXFID_COUNT; idx++)
2140                printk(" %04x[%04x]", local->txfid[idx],
2141                       local->intransmitfid[idx]);
2142        printk("\n");
2143        spin_unlock(&local->txfidlock);
2144
2145        /* FIX: should probably schedule reset; reference to one txfid was lost
2146         * completely.. Bad things will happen if we run out of txfids
2147         * Actually, this will cause netdev watchdog to notice TX timeout and
2148         * then card reset after all txfids have been leaked. */
2149}
2150
2151
2152/* Called only as a tasklet (software IRQ) */
2153static void hostap_tx_callback(local_info_t *local,
2154                               struct hfa384x_tx_frame *txdesc, int ok,
2155                               char *payload)
2156{
2157        u16 sw_support, hdrlen, len;
2158        struct sk_buff *skb;
2159        struct hostap_tx_callback_info *cb;
2160
2161        /* Make sure that frame was from us. */
2162        if (!ether_addr_equal(txdesc->addr2, local->dev->dev_addr)) {
2163                printk(KERN_DEBUG "%s: TX callback - foreign frame\n",
2164                       local->dev->name);
2165                return;
2166        }
2167
2168        sw_support = le32_to_cpu(txdesc->sw_support);
2169
2170        spin_lock(&local->lock);
2171        cb = local->tx_callback;
2172        while (cb != NULL && cb->idx != sw_support)
2173                cb = cb->next;
2174        spin_unlock(&local->lock);
2175
2176        if (cb == NULL) {
2177                printk(KERN_DEBUG "%s: could not find TX callback (idx %d)\n",
2178                       local->dev->name, sw_support);
2179                return;
2180        }
2181
2182        hdrlen = hostap_80211_get_hdrlen(txdesc->frame_control);
2183        len = le16_to_cpu(txdesc->data_len);
2184        skb = dev_alloc_skb(hdrlen + len);
2185        if (skb == NULL) {
2186                printk(KERN_DEBUG "%s: hostap_tx_callback failed to allocate "
2187                       "skb\n", local->dev->name);
2188                return;
2189        }
2190
2191        skb_put_data(skb, (void *)&txdesc->frame_control, hdrlen);
2192        if (payload)
2193                skb_put_data(skb, payload, len);
2194
2195        skb->dev = local->dev;
2196        skb_reset_mac_header(skb);
2197
2198        cb->func(skb, ok, cb->data);
2199}
2200
2201
2202/* Called only as a tasklet (software IRQ) */
2203static int hostap_tx_compl_read(local_info_t *local, int error,
2204                                struct hfa384x_tx_frame *txdesc,
2205                                char **payload)
2206{
2207        u16 fid, len;
2208        int res, ret = 0;
2209        struct net_device *dev = local->dev;
2210
2211        fid = prism2_read_fid_reg(dev, HFA384X_TXCOMPLFID_OFF);
2212
2213        PDEBUG(DEBUG_FID, "interrupt: TX (err=%d) - fid=0x%04x\n", fid, error);
2214
2215        spin_lock(&local->baplock);
2216        res = hfa384x_setup_bap(dev, BAP0, fid, 0);
2217        if (!res)
2218                res = hfa384x_from_bap(dev, BAP0, txdesc, sizeof(*txdesc));
2219        if (res) {
2220                PDEBUG(DEBUG_EXTRA, "%s: TX (err=%d) - fid=0x%04x - could not "
2221                       "read txdesc\n", dev->name, error, fid);
2222                if (res == -ETIMEDOUT) {
2223                        schedule_work(&local->reset_queue);
2224                }
2225                ret = -1;
2226                goto fail;
2227        }
2228        if (txdesc->sw_support) {
2229                len = le16_to_cpu(txdesc->data_len);
2230                if (len < PRISM2_DATA_MAXLEN) {
2231                        *payload = kmalloc(len, GFP_ATOMIC);
2232                        if (*payload == NULL ||
2233                            hfa384x_from_bap(dev, BAP0, *payload, len)) {
2234                                PDEBUG(DEBUG_EXTRA, "%s: could not read TX "
2235                                       "frame payload\n", dev->name);
2236                                kfree(*payload);
2237                                *payload = NULL;
2238                                ret = -1;
2239                                goto fail;
2240                        }
2241                }
2242        }
2243
2244 fail:
2245        spin_unlock(&local->baplock);
2246
2247        return ret;
2248}
2249
2250
2251/* Called only as a tasklet (software IRQ) */
2252static void prism2_tx_ev(local_info_t *local)
2253{
2254        struct net_device *dev = local->dev;
2255        char *payload = NULL;
2256        struct hfa384x_tx_frame txdesc;
2257
2258        if (hostap_tx_compl_read(local, 0, &txdesc, &payload))
2259                goto fail;
2260
2261        if (local->frame_dump & PRISM2_DUMP_TX_HDR) {
2262                PDEBUG(DEBUG_EXTRA, "%s: TX - status=0x%04x "
2263                       "retry_count=%d tx_rate=%d seq_ctrl=%d "
2264                       "duration_id=%d\n",
2265                       dev->name, le16_to_cpu(txdesc.status),
2266                       txdesc.retry_count, txdesc.tx_rate,
2267                       le16_to_cpu(txdesc.seq_ctrl),
2268                       le16_to_cpu(txdesc.duration_id));
2269        }
2270
2271        if (txdesc.sw_support)
2272                hostap_tx_callback(local, &txdesc, 1, payload);
2273        kfree(payload);
2274
2275 fail:
2276        HFA384X_OUTW(HFA384X_EV_TX, HFA384X_EVACK_OFF);
2277}
2278
2279
2280/* Called only as a tasklet (software IRQ) */
2281static void hostap_sta_tx_exc_tasklet(struct tasklet_struct *t)
2282{
2283        local_info_t *local = from_tasklet(local, t, sta_tx_exc_tasklet);
2284        struct sk_buff *skb;
2285
2286        while ((skb = skb_dequeue(&local->sta_tx_exc_list)) != NULL) {
2287                struct hfa384x_tx_frame *txdesc =
2288                        (struct hfa384x_tx_frame *) skb->data;
2289
2290                if (skb->len >= sizeof(*txdesc)) {
2291                        /* Convert Prism2 RX structure into IEEE 802.11 header
2292                         */
2293                        int hdrlen = hostap_80211_get_hdrlen(txdesc->frame_control);
2294                        memmove(skb_pull(skb, sizeof(*txdesc) - hdrlen),
2295                                &txdesc->frame_control, hdrlen);
2296
2297                        hostap_handle_sta_tx_exc(local, skb);
2298                }
2299                dev_kfree_skb(skb);
2300        }
2301}
2302
2303
2304/* Called only as a tasklet (software IRQ) */
2305static void prism2_txexc(local_info_t *local)
2306{
2307        struct net_device *dev = local->dev;
2308        u16 status, fc;
2309        int show_dump, res;
2310        char *payload = NULL;
2311        struct hfa384x_tx_frame txdesc;
2312
2313        show_dump = local->frame_dump & PRISM2_DUMP_TXEXC_HDR;
2314        dev->stats.tx_errors++;
2315
2316        res = hostap_tx_compl_read(local, 1, &txdesc, &payload);
2317        HFA384X_OUTW(HFA384X_EV_TXEXC, HFA384X_EVACK_OFF);
2318        if (res)
2319                return;
2320
2321        status = le16_to_cpu(txdesc.status);
2322
2323        /* We produce a TXDROP event only for retry or lifetime
2324         * exceeded, because that's the only status that really mean
2325         * that this particular node went away.
2326         * Other errors means that *we* screwed up. - Jean II */
2327        if (status & (HFA384X_TX_STATUS_RETRYERR | HFA384X_TX_STATUS_AGEDERR))
2328        {
2329                union iwreq_data wrqu;
2330
2331                /* Copy 802.11 dest address. */
2332                memcpy(wrqu.addr.sa_data, txdesc.addr1, ETH_ALEN);
2333                wrqu.addr.sa_family = ARPHRD_ETHER;
2334                wireless_send_event(dev, IWEVTXDROP, &wrqu, NULL);
2335        } else
2336                show_dump = 1;
2337
2338        if (local->iw_mode == IW_MODE_MASTER ||
2339            local->iw_mode == IW_MODE_REPEAT ||
2340            local->wds_type & HOSTAP_WDS_AP_CLIENT) {
2341                struct sk_buff *skb;
2342                skb = dev_alloc_skb(sizeof(txdesc));
2343                if (skb) {
2344                        skb_put_data(skb, &txdesc, sizeof(txdesc));
2345                        skb_queue_tail(&local->sta_tx_exc_list, skb);
2346                        tasklet_schedule(&local->sta_tx_exc_tasklet);
2347                }
2348        }
2349
2350        if (txdesc.sw_support)
2351                hostap_tx_callback(local, &txdesc, 0, payload);
2352        kfree(payload);
2353
2354        if (!show_dump)
2355                return;
2356
2357        PDEBUG(DEBUG_EXTRA, "%s: TXEXC - status=0x%04x (%s%s%s%s)"
2358               " tx_control=%04x\n",
2359               dev->name, status,
2360               status & HFA384X_TX_STATUS_RETRYERR ? "[RetryErr]" : "",
2361               status & HFA384X_TX_STATUS_AGEDERR ? "[AgedErr]" : "",
2362               status & HFA384X_TX_STATUS_DISCON ? "[Discon]" : "",
2363               status & HFA384X_TX_STATUS_FORMERR ? "[FormErr]" : "",
2364               le16_to_cpu(txdesc.tx_control));
2365
2366        fc = le16_to_cpu(txdesc.frame_control);
2367        PDEBUG(DEBUG_EXTRA, "   retry_count=%d tx_rate=%d fc=0x%04x "
2368               "(%s%s%s::%d%s%s)\n",
2369               txdesc.retry_count, txdesc.tx_rate, fc,
2370               ieee80211_is_mgmt(txdesc.frame_control) ? "Mgmt" : "",
2371               ieee80211_is_ctl(txdesc.frame_control) ? "Ctrl" : "",
2372               ieee80211_is_data(txdesc.frame_control) ? "Data" : "",
2373               (fc & IEEE80211_FCTL_STYPE) >> 4,
2374               ieee80211_has_tods(txdesc.frame_control) ? " ToDS" : "",
2375               ieee80211_has_fromds(txdesc.frame_control) ? " FromDS" : "");
2376        PDEBUG(DEBUG_EXTRA, "   A1=%pM A2=%pM A3=%pM A4=%pM\n",
2377               txdesc.addr1, txdesc.addr2,
2378               txdesc.addr3, txdesc.addr4);
2379}
2380
2381
2382/* Called only as a tasklet (software IRQ) */
2383static void hostap_info_tasklet(struct tasklet_struct *t)
2384{
2385        local_info_t *local = from_tasklet(local, t, info_tasklet);
2386        struct sk_buff *skb;
2387
2388        while ((skb = skb_dequeue(&local->info_list)) != NULL) {
2389                hostap_info_process(local, skb);
2390                dev_kfree_skb(skb);
2391        }
2392}
2393
2394
2395/* Called only as a tasklet (software IRQ) */
2396static void prism2_info(local_info_t *local)
2397{
2398        struct net_device *dev = local->dev;
2399        u16 fid;
2400        int res, left;
2401        struct hfa384x_info_frame info;
2402        struct sk_buff *skb;
2403
2404        fid = HFA384X_INW(HFA384X_INFOFID_OFF);
2405
2406        spin_lock(&local->baplock);
2407        res = hfa384x_setup_bap(dev, BAP0, fid, 0);
2408        if (!res)
2409                res = hfa384x_from_bap(dev, BAP0, &info, sizeof(info));
2410        if (res) {
2411                spin_unlock(&local->baplock);
2412                printk(KERN_DEBUG "Could not get info frame (fid=0x%04x)\n",
2413                       fid);
2414                if (res == -ETIMEDOUT) {
2415                        schedule_work(&local->reset_queue);
2416                }
2417                goto out;
2418        }
2419
2420        left = (le16_to_cpu(info.len) - 1) * 2;
2421
2422        if (info.len & cpu_to_le16(0x8000) || info.len == 0 || left > 2060) {
2423                /* data register seems to give 0x8000 in some error cases even
2424                 * though busy bit is not set in offset register;
2425                 * in addition, length must be at least 1 due to type field */
2426                spin_unlock(&local->baplock);
2427                printk(KERN_DEBUG "%s: Received info frame with invalid "
2428                       "length 0x%04x (type 0x%04x)\n", dev->name,
2429                       le16_to_cpu(info.len), le16_to_cpu(info.type));
2430                goto out;
2431        }
2432
2433        skb = dev_alloc_skb(sizeof(info) + left);
2434        if (skb == NULL) {
2435                spin_unlock(&local->baplock);
2436                printk(KERN_DEBUG "%s: Could not allocate skb for info "
2437                       "frame\n", dev->name);
2438                goto out;
2439        }
2440
2441        skb_put_data(skb, &info, sizeof(info));
2442        if (left > 0 && hfa384x_from_bap(dev, BAP0, skb_put(skb, left), left))
2443        {
2444                spin_unlock(&local->baplock);
2445                printk(KERN_WARNING "%s: Info frame read failed (fid=0x%04x, "
2446                       "len=0x%04x, type=0x%04x\n", dev->name, fid,
2447                       le16_to_cpu(info.len), le16_to_cpu(info.type));
2448                dev_kfree_skb(skb);
2449                goto out;
2450        }
2451        spin_unlock(&local->baplock);
2452
2453        skb_queue_tail(&local->info_list, skb);
2454        tasklet_schedule(&local->info_tasklet);
2455
2456 out:
2457        HFA384X_OUTW(HFA384X_EV_INFO, HFA384X_EVACK_OFF);
2458}
2459
2460
2461/* Called only as a tasklet (software IRQ) */
2462static void hostap_bap_tasklet(struct tasklet_struct *t)
2463{
2464        local_info_t *local = from_tasklet(local, t, bap_tasklet);
2465        struct net_device *dev = local->dev;
2466        u16 ev;
2467        int frames = 30;
2468
2469        if (local->func->card_present && !local->func->card_present(local))
2470                return;
2471
2472        set_bit(HOSTAP_BITS_BAP_TASKLET, &local->bits);
2473
2474        /* Process all pending BAP events without generating new interrupts
2475         * for them */
2476        while (frames-- > 0) {
2477                ev = HFA384X_INW(HFA384X_EVSTAT_OFF);
2478                if (ev == 0xffff || !(ev & HFA384X_BAP0_EVENTS))
2479                        break;
2480                if (ev & HFA384X_EV_RX)
2481                        prism2_rx(local);
2482                if (ev & HFA384X_EV_INFO)
2483                        prism2_info(local);
2484                if (ev & HFA384X_EV_TX)
2485                        prism2_tx_ev(local);
2486                if (ev & HFA384X_EV_TXEXC)
2487                        prism2_txexc(local);
2488        }
2489
2490        set_bit(HOSTAP_BITS_BAP_TASKLET2, &local->bits);
2491        clear_bit(HOSTAP_BITS_BAP_TASKLET, &local->bits);
2492
2493        /* Enable interrupts for new BAP events */
2494        hfa384x_events_all(dev);
2495        clear_bit(HOSTAP_BITS_BAP_TASKLET2, &local->bits);
2496}
2497
2498
2499/* Called only from hardware IRQ */
2500static void prism2_infdrop(struct net_device *dev)
2501{
2502        static unsigned long last_inquire = 0;
2503
2504        PDEBUG(DEBUG_EXTRA, "%s: INFDROP event\n", dev->name);
2505
2506        /* some firmware versions seem to get stuck with
2507         * full CommTallies in high traffic load cases; every
2508         * packet will then cause INFDROP event and CommTallies
2509         * info frame will not be sent automatically. Try to
2510         * get out of this state by inquiring CommTallies. */
2511        if (!last_inquire || time_after(jiffies, last_inquire + HZ)) {
2512                hfa384x_cmd_callback(dev, HFA384X_CMDCODE_INQUIRE,
2513                                     HFA384X_INFO_COMMTALLIES, NULL, 0);
2514                last_inquire = jiffies;
2515        }
2516}
2517
2518
2519/* Called only from hardware IRQ */
2520static void prism2_ev_tick(struct net_device *dev)
2521{
2522        struct hostap_interface *iface;
2523        local_info_t *local;
2524        u16 evstat, inten;
2525        static int prev_stuck = 0;
2526
2527        iface = netdev_priv(dev);
2528        local = iface->local;
2529
2530        if (time_after(jiffies, local->last_tick_timer + 5 * HZ) &&
2531            local->last_tick_timer) {
2532                evstat = HFA384X_INW(HFA384X_EVSTAT_OFF);
2533                inten = HFA384X_INW(HFA384X_INTEN_OFF);
2534                if (!prev_stuck) {
2535                        printk(KERN_INFO "%s: SW TICK stuck? "
2536                               "bits=0x%lx EvStat=%04x IntEn=%04x\n",
2537                               dev->name, local->bits, evstat, inten);
2538                }
2539                local->sw_tick_stuck++;
2540                if ((evstat & HFA384X_BAP0_EVENTS) &&
2541                    (inten & HFA384X_BAP0_EVENTS)) {
2542                        printk(KERN_INFO "%s: trying to recover from IRQ "
2543                               "hang\n", dev->name);
2544                        hfa384x_events_no_bap0(dev);
2545                }
2546                prev_stuck = 1;
2547        } else
2548                prev_stuck = 0;
2549}
2550
2551
2552/* Called only from hardware IRQ */
2553static void prism2_check_magic(local_info_t *local)
2554{
2555        /* at least PCI Prism2.5 with bus mastering seems to sometimes
2556         * return 0x0000 in SWSUPPORT0 for unknown reason, but re-reading the
2557         * register once or twice seems to get the correct value.. PCI cards
2558         * cannot anyway be removed during normal operation, so there is not
2559         * really any need for this verification with them. */
2560
2561#ifndef PRISM2_PCI
2562#ifndef final_version
2563        static unsigned long last_magic_err = 0;
2564        struct net_device *dev = local->dev;
2565
2566        if (HFA384X_INW(HFA384X_SWSUPPORT0_OFF) != HFA384X_MAGIC) {
2567                if (!local->hw_ready)
2568                        return;
2569                HFA384X_OUTW(0xffff, HFA384X_EVACK_OFF);
2570                if (time_after(jiffies, last_magic_err + 10 * HZ)) {
2571                        printk("%s: Interrupt, but SWSUPPORT0 does not match: "
2572                               "%04X != %04X - card removed?\n", dev->name,
2573                               HFA384X_INW(HFA384X_SWSUPPORT0_OFF),
2574                               HFA384X_MAGIC);
2575                        last_magic_err = jiffies;
2576                } else if (net_ratelimit()) {
2577                        printk(KERN_DEBUG "%s: interrupt - SWSUPPORT0=%04x "
2578                               "MAGIC=%04x\n", dev->name,
2579                               HFA384X_INW(HFA384X_SWSUPPORT0_OFF),
2580                               HFA384X_MAGIC);
2581                }
2582                if (HFA384X_INW(HFA384X_SWSUPPORT0_OFF) != 0xffff)
2583                        schedule_work(&local->reset_queue);
2584                return;
2585        }
2586#endif /* final_version */
2587#endif /* !PRISM2_PCI */
2588}
2589
2590
2591/* Called only from hardware IRQ */
2592static irqreturn_t prism2_interrupt(int irq, void *dev_id)
2593{
2594        struct net_device *dev = dev_id;
2595        struct hostap_interface *iface;
2596        local_info_t *local;
2597        int events = 0;
2598        u16 ev;
2599
2600        iface = netdev_priv(dev);
2601        local = iface->local;
2602
2603        /* Detect early interrupt before driver is fully configured */
2604        spin_lock(&local->irq_init_lock);
2605        if (!dev->base_addr) {
2606                if (net_ratelimit()) {
2607                        printk(KERN_DEBUG "%s: Interrupt, but dev not configured\n",
2608                               dev->name);
2609                }
2610                spin_unlock(&local->irq_init_lock);
2611                return IRQ_HANDLED;
2612        }
2613        spin_unlock(&local->irq_init_lock);
2614
2615        prism2_io_debug_add(dev, PRISM2_IO_DEBUG_CMD_INTERRUPT, 0, 0);
2616
2617        if (local->func->card_present && !local->func->card_present(local)) {
2618                if (net_ratelimit()) {
2619                        printk(KERN_DEBUG "%s: Interrupt, but dev not OK\n",
2620                               dev->name);
2621                }
2622                return IRQ_HANDLED;
2623        }
2624
2625        prism2_check_magic(local);
2626
2627        for (;;) {
2628                ev = HFA384X_INW(HFA384X_EVSTAT_OFF);
2629                if (ev == 0xffff) {
2630                        if (local->shutdown)
2631                                return IRQ_HANDLED;
2632                        HFA384X_OUTW(0xffff, HFA384X_EVACK_OFF);
2633                        printk(KERN_DEBUG "%s: prism2_interrupt: ev=0xffff\n",
2634                               dev->name);
2635                        return IRQ_HANDLED;
2636                }
2637
2638                ev &= HFA384X_INW(HFA384X_INTEN_OFF);
2639                if (ev == 0)
2640                        break;
2641
2642                if (ev & HFA384X_EV_CMD) {
2643                        prism2_cmd_ev(dev);
2644                }
2645
2646                /* Above events are needed even before hw is ready, but other
2647                 * events should be skipped during initialization. This may
2648                 * change for AllocEv if allocate_fid is implemented without
2649                 * busy waiting. */
2650                if (!local->hw_ready || local->hw_resetting ||
2651                    !local->dev_enabled) {
2652                        ev = HFA384X_INW(HFA384X_EVSTAT_OFF);
2653                        if (ev & HFA384X_EV_CMD)
2654                                goto next_event;
2655                        if ((ev & HFA384X_EVENT_MASK) == 0)
2656                                return IRQ_HANDLED;
2657                        if (local->dev_enabled && (ev & ~HFA384X_EV_TICK) &&
2658                            net_ratelimit()) {
2659                                printk(KERN_DEBUG "%s: prism2_interrupt: hw "
2660                                       "not ready; skipping events 0x%04x "
2661                                       "(IntEn=0x%04x)%s%s%s\n",
2662                                       dev->name, ev,
2663                                       HFA384X_INW(HFA384X_INTEN_OFF),
2664                                       !local->hw_ready ? " (!hw_ready)" : "",
2665                                       local->hw_resetting ?
2666                                       " (hw_resetting)" : "",
2667                                       !local->dev_enabled ?
2668                                       " (!dev_enabled)" : "");
2669                        }
2670                        HFA384X_OUTW(ev, HFA384X_EVACK_OFF);
2671                        return IRQ_HANDLED;
2672                }
2673
2674                if (ev & HFA384X_EV_TICK) {
2675                        prism2_ev_tick(dev);
2676                        HFA384X_OUTW(HFA384X_EV_TICK, HFA384X_EVACK_OFF);
2677                }
2678
2679                if (ev & HFA384X_EV_ALLOC) {
2680                        prism2_alloc_ev(dev);
2681                        HFA384X_OUTW(HFA384X_EV_ALLOC, HFA384X_EVACK_OFF);
2682                }
2683
2684                /* Reading data from the card is quite time consuming, so do it
2685                 * in tasklets. TX, TXEXC, RX, and INFO events will be ACKed
2686                 * and unmasked after needed data has been read completely. */
2687                if (ev & HFA384X_BAP0_EVENTS) {
2688                        hfa384x_events_no_bap0(dev);
2689                        tasklet_schedule(&local->bap_tasklet);
2690                }
2691
2692#ifndef final_version
2693                if (ev & HFA384X_EV_WTERR) {
2694                        PDEBUG(DEBUG_EXTRA, "%s: WTERR event\n", dev->name);
2695                        HFA384X_OUTW(HFA384X_EV_WTERR, HFA384X_EVACK_OFF);
2696                }
2697#endif /* final_version */
2698
2699                if (ev & HFA384X_EV_INFDROP) {
2700                        prism2_infdrop(dev);
2701                        HFA384X_OUTW(HFA384X_EV_INFDROP, HFA384X_EVACK_OFF);
2702                }
2703
2704        next_event:
2705                events++;
2706                if (events >= PRISM2_MAX_INTERRUPT_EVENTS) {
2707                        PDEBUG(DEBUG_EXTRA, "prism2_interrupt: >%d events "
2708                               "(EvStat=0x%04x)\n",
2709                               PRISM2_MAX_INTERRUPT_EVENTS,
2710                               HFA384X_INW(HFA384X_EVSTAT_OFF));
2711                        break;
2712                }
2713        }
2714        prism2_io_debug_add(dev, PRISM2_IO_DEBUG_CMD_INTERRUPT, 0, 1);
2715        return IRQ_RETVAL(events);
2716}
2717
2718
2719static void prism2_check_sta_fw_version(local_info_t *local)
2720{
2721        struct hfa384x_comp_ident comp;
2722        int id, variant, major, minor;
2723
2724        if (hfa384x_get_rid(local->dev, HFA384X_RID_STAID,
2725                            &comp, sizeof(comp), 1) < 0)
2726                return;
2727
2728        local->fw_ap = 0;
2729        id = le16_to_cpu(comp.id);
2730        if (id != HFA384X_COMP_ID_STA) {
2731                if (id == HFA384X_COMP_ID_FW_AP)
2732                        local->fw_ap = 1;
2733                return;
2734        }
2735
2736        major = __le16_to_cpu(comp.major);
2737        minor = __le16_to_cpu(comp.minor);
2738        variant = __le16_to_cpu(comp.variant);
2739        local->sta_fw_ver = PRISM2_FW_VER(major, minor, variant);
2740
2741        /* Station firmware versions before 1.4.x seem to have a bug in
2742         * firmware-based WEP encryption when using Host AP mode, so use
2743         * host_encrypt as a default for them. Firmware version 1.4.9 is the
2744         * first one that has been seen to produce correct encryption, but the
2745         * bug might be fixed before that (although, at least 1.4.2 is broken).
2746         */
2747        local->fw_encrypt_ok = local->sta_fw_ver >= PRISM2_FW_VER(1,4,9);
2748
2749        if (local->iw_mode == IW_MODE_MASTER && !local->host_encrypt &&
2750            !local->fw_encrypt_ok) {
2751                printk(KERN_DEBUG "%s: defaulting to host-based encryption as "
2752                       "a workaround for firmware bug in Host AP mode WEP\n",
2753                       local->dev->name);
2754                local->host_encrypt = 1;
2755        }
2756
2757        /* IEEE 802.11 standard compliant WDS frames (4 addresses) were broken
2758         * in station firmware versions before 1.5.x. With these versions, the
2759         * driver uses a workaround with bogus frame format (4th address after
2760         * the payload). This is not compatible with other AP devices. Since
2761         * the firmware bug is fixed in the latest station firmware versions,
2762         * automatically enable standard compliant mode for cards using station
2763         * firmware version 1.5.0 or newer. */
2764        if (local->sta_fw_ver >= PRISM2_FW_VER(1,5,0))
2765                local->wds_type |= HOSTAP_WDS_STANDARD_FRAME;
2766        else {
2767                printk(KERN_DEBUG "%s: defaulting to bogus WDS frame as a "
2768                       "workaround for firmware bug in Host AP mode WDS\n",
2769                       local->dev->name);
2770        }
2771
2772        hostap_check_sta_fw_version(local->ap, local->sta_fw_ver);
2773}
2774
2775
2776static void hostap_passive_scan(struct timer_list *t)
2777{
2778        local_info_t *local = from_timer(local, t, passive_scan_timer);
2779        struct net_device *dev = local->dev;
2780        u16 chan;
2781
2782        if (local->passive_scan_interval <= 0)
2783                return;
2784
2785        if (local->passive_scan_state == PASSIVE_SCAN_LISTEN) {
2786                int max_tries = 16;
2787
2788                /* Even though host system does not really know when the WLAN
2789                 * MAC is sending frames, try to avoid changing channels for
2790                 * passive scanning when a host-generated frame is being
2791                 * transmitted */
2792                if (test_bit(HOSTAP_BITS_TRANSMIT, &local->bits)) {
2793                        printk(KERN_DEBUG "%s: passive scan detected pending "
2794                               "TX - delaying\n", dev->name);
2795                        local->passive_scan_timer.expires = jiffies + HZ / 10;
2796                        add_timer(&local->passive_scan_timer);
2797                        return;
2798                }
2799
2800                do {
2801                        local->passive_scan_channel++;
2802                        if (local->passive_scan_channel > 14)
2803                                local->passive_scan_channel = 1;
2804                        max_tries--;
2805                } while (!(local->channel_mask &
2806                           (1 << (local->passive_scan_channel - 1))) &&
2807                         max_tries > 0);
2808
2809                if (max_tries == 0) {
2810                        printk(KERN_INFO "%s: no allowed passive scan channels"
2811                               " found\n", dev->name);
2812                        return;
2813                }
2814
2815                printk(KERN_DEBUG "%s: passive scan channel %d\n",
2816                       dev->name, local->passive_scan_channel);
2817                chan = local->passive_scan_channel;
2818                local->passive_scan_state = PASSIVE_SCAN_WAIT;
2819                local->passive_scan_timer.expires = jiffies + HZ / 10;
2820        } else {
2821                chan = local->channel;
2822                local->passive_scan_state = PASSIVE_SCAN_LISTEN;
2823                local->passive_scan_timer.expires = jiffies +
2824                        local->passive_scan_interval * HZ;
2825        }
2826
2827        if (hfa384x_cmd_callback(dev, HFA384X_CMDCODE_TEST |
2828                                 (HFA384X_TEST_CHANGE_CHANNEL << 8),
2829                                 chan, NULL, 0))
2830                printk(KERN_ERR "%s: passive scan channel set %d "
2831                       "failed\n", dev->name, chan);
2832
2833        add_timer(&local->passive_scan_timer);
2834}
2835
2836
2837/* Called only as a scheduled task when communications quality values should
2838 * be updated. */
2839static void handle_comms_qual_update(struct work_struct *work)
2840{
2841        local_info_t *local =
2842                container_of(work, local_info_t, comms_qual_update);
2843        prism2_update_comms_qual(local->dev);
2844}
2845
2846
2847/* Software watchdog - called as a timer. Hardware interrupt (Tick event) is
2848 * used to monitor that local->last_tick_timer is being updated. If not,
2849 * interrupt busy-loop is assumed and driver tries to recover by masking out
2850 * some events. */
2851static void hostap_tick_timer(struct timer_list *t)
2852{
2853        static unsigned long last_inquire = 0;
2854        local_info_t *local = from_timer(local, t, tick_timer);
2855        local->last_tick_timer = jiffies;
2856
2857        /* Inquire CommTallies every 10 seconds to keep the statistics updated
2858         * more often during low load and when using 32-bit tallies. */
2859        if ((!last_inquire || time_after(jiffies, last_inquire + 10 * HZ)) &&
2860            !local->hw_downloading && local->hw_ready &&
2861            !local->hw_resetting && local->dev_enabled) {
2862                hfa384x_cmd_callback(local->dev, HFA384X_CMDCODE_INQUIRE,
2863                                     HFA384X_INFO_COMMTALLIES, NULL, 0);
2864                last_inquire = jiffies;
2865        }
2866
2867        if ((local->last_comms_qual_update == 0 ||
2868             time_after(jiffies, local->last_comms_qual_update + 10 * HZ)) &&
2869            (local->iw_mode == IW_MODE_INFRA ||
2870             local->iw_mode == IW_MODE_ADHOC)) {
2871                schedule_work(&local->comms_qual_update);
2872        }
2873
2874        local->tick_timer.expires = jiffies + 2 * HZ;
2875        add_timer(&local->tick_timer);
2876}
2877
2878
2879#if !defined(PRISM2_NO_PROCFS_DEBUG) && defined(CONFIG_PROC_FS)
2880static u16 hfa384x_read_reg(struct net_device *dev, u16 reg)
2881{
2882        return HFA384X_INW(reg);
2883}
2884
2885static int prism2_registers_proc_show(struct seq_file *m, void *v)
2886{
2887        local_info_t *local = m->private;
2888
2889#define SHOW_REG(n) \
2890  seq_printf(m, #n "=%04x\n", hfa384x_read_reg(local->dev, HFA384X_##n##_OFF))
2891
2892        SHOW_REG(CMD);
2893        SHOW_REG(PARAM0);
2894        SHOW_REG(PARAM1);
2895        SHOW_REG(PARAM2);
2896        SHOW_REG(STATUS);
2897        SHOW_REG(RESP0);
2898        SHOW_REG(RESP1);
2899        SHOW_REG(RESP2);
2900        SHOW_REG(INFOFID);
2901        SHOW_REG(CONTROL);
2902        SHOW_REG(SELECT0);
2903        SHOW_REG(SELECT1);
2904        SHOW_REG(OFFSET0);
2905        SHOW_REG(OFFSET1);
2906        SHOW_REG(RXFID);
2907        SHOW_REG(ALLOCFID);
2908        SHOW_REG(TXCOMPLFID);
2909        SHOW_REG(SWSUPPORT0);
2910        SHOW_REG(SWSUPPORT1);
2911        SHOW_REG(SWSUPPORT2);
2912        SHOW_REG(EVSTAT);
2913        SHOW_REG(INTEN);
2914        SHOW_REG(EVACK);
2915        /* Do not read data registers, because they change the state of the
2916         * MAC (offset += 2) */
2917        /* SHOW_REG(DATA0); */
2918        /* SHOW_REG(DATA1); */
2919        SHOW_REG(AUXPAGE);
2920        SHOW_REG(AUXOFFSET);
2921        /* SHOW_REG(AUXDATA); */
2922#ifdef PRISM2_PCI
2923        SHOW_REG(PCICOR);
2924        SHOW_REG(PCIHCR);
2925        SHOW_REG(PCI_M0_ADDRH);
2926        SHOW_REG(PCI_M0_ADDRL);
2927        SHOW_REG(PCI_M0_LEN);
2928        SHOW_REG(PCI_M0_CTL);
2929        SHOW_REG(PCI_STATUS);
2930        SHOW_REG(PCI_M1_ADDRH);
2931        SHOW_REG(PCI_M1_ADDRL);
2932        SHOW_REG(PCI_M1_LEN);
2933        SHOW_REG(PCI_M1_CTL);
2934#endif /* PRISM2_PCI */
2935
2936        return 0;
2937}
2938#endif
2939
2940struct set_tim_data {
2941        struct list_head list;
2942        int aid;
2943        int set;
2944};
2945
2946static int prism2_set_tim(struct net_device *dev, int aid, int set)
2947{
2948        struct list_head *ptr;
2949        struct set_tim_data *new_entry;
2950        struct hostap_interface *iface;
2951        local_info_t *local;
2952
2953        iface = netdev_priv(dev);
2954        local = iface->local;
2955
2956        new_entry = kzalloc(sizeof(*new_entry), GFP_ATOMIC);
2957        if (new_entry == NULL)
2958                return -ENOMEM;
2959
2960        new_entry->aid = aid;
2961        new_entry->set = set;
2962
2963        spin_lock_bh(&local->set_tim_lock);
2964        list_for_each(ptr, &local->set_tim_list) {
2965                struct set_tim_data *entry =
2966                        list_entry(ptr, struct set_tim_data, list);
2967                if (entry->aid == aid) {
2968                        PDEBUG(DEBUG_PS2, "%s: prism2_set_tim: aid=%d "
2969                               "set=%d ==> %d\n",
2970                               local->dev->name, aid, entry->set, set);
2971                        entry->set = set;
2972                        kfree(new_entry);
2973                        new_entry = NULL;
2974                        break;
2975                }
2976        }
2977        if (new_entry)
2978                list_add_tail(&new_entry->list, &local->set_tim_list);
2979        spin_unlock_bh(&local->set_tim_lock);
2980
2981        schedule_work(&local->set_tim_queue);
2982
2983        return 0;
2984}
2985
2986
2987static void handle_set_tim_queue(struct work_struct *work)
2988{
2989        local_info_t *local = container_of(work, local_info_t, set_tim_queue);
2990        struct set_tim_data *entry;
2991        u16 val;
2992
2993        for (;;) {
2994                entry = NULL;
2995                spin_lock_bh(&local->set_tim_lock);
2996                if (!list_empty(&local->set_tim_list)) {
2997                        entry = list_entry(local->set_tim_list.next,
2998                                           struct set_tim_data, list);
2999                        list_del(&entry->list);
3000                }
3001                spin_unlock_bh(&local->set_tim_lock);
3002                if (!entry)
3003                        break;
3004
3005                PDEBUG(DEBUG_PS2, "%s: handle_set_tim_queue: aid=%d set=%d\n",
3006                       local->dev->name, entry->aid, entry->set);
3007
3008                val = entry->aid;
3009                if (entry->set)
3010                        val |= 0x8000;
3011                if (hostap_set_word(local->dev, HFA384X_RID_CNFTIMCTRL, val)) {
3012                        printk(KERN_DEBUG "%s: set_tim failed (aid=%d "
3013                               "set=%d)\n",
3014                               local->dev->name, entry->aid, entry->set);
3015                }
3016
3017                kfree(entry);
3018        }
3019}
3020
3021
3022static void prism2_clear_set_tim_queue(local_info_t *local)
3023{
3024        struct list_head *ptr, *n;
3025
3026        list_for_each_safe(ptr, n, &local->set_tim_list) {
3027                struct set_tim_data *entry;
3028                entry = list_entry(ptr, struct set_tim_data, list);
3029                list_del(&entry->list);
3030                kfree(entry);
3031        }
3032}
3033
3034
3035/*
3036 * HostAP uses two layers of net devices, where the inner
3037 * layer gets called all the time from the outer layer.
3038 * This is a natural nesting, which needs a split lock type.
3039 */
3040static struct lock_class_key hostap_netdev_xmit_lock_key;
3041static struct lock_class_key hostap_netdev_addr_lock_key;
3042
3043static void prism2_set_lockdep_class_one(struct net_device *dev,
3044                                         struct netdev_queue *txq,
3045                                         void *_unused)
3046{
3047        lockdep_set_class(&txq->_xmit_lock,
3048                          &hostap_netdev_xmit_lock_key);
3049}
3050
3051static void prism2_set_lockdep_class(struct net_device *dev)
3052{
3053        lockdep_set_class(&dev->addr_list_lock,
3054                          &hostap_netdev_addr_lock_key);
3055        netdev_for_each_tx_queue(dev, prism2_set_lockdep_class_one, NULL);
3056}
3057
3058static struct net_device *
3059prism2_init_local_data(struct prism2_helper_functions *funcs, int card_idx,
3060                       struct device *sdev)
3061{
3062        struct net_device *dev;
3063        struct hostap_interface *iface;
3064        struct local_info *local;
3065        int len, i, ret;
3066
3067        if (funcs == NULL)
3068                return NULL;
3069
3070        len = strlen(dev_template);
3071        if (len >= IFNAMSIZ || strstr(dev_template, "%d") == NULL) {
3072                printk(KERN_WARNING "hostap: Invalid dev_template='%s'\n",
3073                       dev_template);
3074                return NULL;
3075        }
3076
3077        len = sizeof(struct hostap_interface) +
3078                3 + sizeof(struct local_info) +
3079                3 + sizeof(struct ap_data);
3080
3081        dev = alloc_etherdev(len);
3082        if (dev == NULL)
3083                return NULL;
3084
3085        iface = netdev_priv(dev);
3086        local = (struct local_info *) ((((long) (iface + 1)) + 3) & ~3);
3087        local->ap = (struct ap_data *) ((((long) (local + 1)) + 3) & ~3);
3088        local->dev = iface->dev = dev;
3089        iface->local = local;
3090        iface->type = HOSTAP_INTERFACE_MASTER;
3091        INIT_LIST_HEAD(&local->hostap_interfaces);
3092
3093        local->hw_module = THIS_MODULE;
3094
3095#ifdef PRISM2_IO_DEBUG
3096        local->io_debug_enabled = 1;
3097#endif /* PRISM2_IO_DEBUG */
3098
3099        local->func = funcs;
3100        local->func->cmd = hfa384x_cmd;
3101        local->func->read_regs = hfa384x_read_regs;
3102        local->func->get_rid = hfa384x_get_rid;
3103        local->func->set_rid = hfa384x_set_rid;
3104        local->func->hw_enable = prism2_hw_enable;
3105        local->func->hw_config = prism2_hw_config;
3106        local->func->hw_reset = prism2_hw_reset;
3107        local->func->hw_shutdown = prism2_hw_shutdown;
3108        local->func->reset_port = prism2_reset_port;
3109        local->func->schedule_reset = prism2_schedule_reset;
3110#ifdef PRISM2_DOWNLOAD_SUPPORT
3111        local->func->read_aux_proc_ops = &prism2_download_aux_dump_proc_ops;
3112        local->func->download = prism2_download;
3113#endif /* PRISM2_DOWNLOAD_SUPPORT */
3114        local->func->tx = prism2_tx_80211;
3115        local->func->set_tim = prism2_set_tim;
3116        local->func->need_tx_headroom = 0; /* no need to add txdesc in
3117                                            * skb->data (FIX: maybe for DMA bus
3118                                            * mastering? */
3119
3120        local->mtu = mtu;
3121
3122        rwlock_init(&local->iface_lock);
3123        spin_lock_init(&local->txfidlock);
3124        spin_lock_init(&local->cmdlock);
3125        spin_lock_init(&local->baplock);
3126        spin_lock_init(&local->lock);
3127        spin_lock_init(&local->irq_init_lock);
3128        mutex_init(&local->rid_bap_mtx);
3129
3130        if (card_idx < 0 || card_idx >= MAX_PARM_DEVICES)
3131                card_idx = 0;
3132        local->card_idx = card_idx;
3133
3134        len = strlen(essid);
3135        memcpy(local->essid, essid,
3136               len > MAX_SSID_LEN ? MAX_SSID_LEN : len);
3137        local->essid[MAX_SSID_LEN] = '\0';
3138        i = GET_INT_PARM(iw_mode, card_idx);
3139        if ((i >= IW_MODE_ADHOC && i <= IW_MODE_REPEAT) ||
3140            i == IW_MODE_MONITOR) {
3141                local->iw_mode = i;
3142        } else {
3143                printk(KERN_WARNING "prism2: Unknown iw_mode %d; using "
3144                       "IW_MODE_MASTER\n", i);
3145                local->iw_mode = IW_MODE_MASTER;
3146        }
3147        local->channel = GET_INT_PARM(channel, card_idx);
3148        local->beacon_int = GET_INT_PARM(beacon_int, card_idx);
3149        local->dtim_period = GET_INT_PARM(dtim_period, card_idx);
3150        local->wds_max_connections = 16;
3151        local->tx_control = HFA384X_TX_CTRL_FLAGS;
3152        local->manual_retry_count = -1;
3153        local->rts_threshold = 2347;
3154        local->fragm_threshold = 2346;
3155        local->rssi_to_dBm = 100; /* default; to be overriden by
3156                                   * cnfDbmAdjust, if available */
3157        local->auth_algs = PRISM2_AUTH_OPEN | PRISM2_AUTH_SHARED_KEY;
3158        local->sram_type = -1;
3159        local->scan_channel_mask = 0xffff;
3160        local->monitor_type = PRISM2_MONITOR_RADIOTAP;
3161
3162        /* Initialize task queue structures */
3163        INIT_WORK(&local->reset_queue, handle_reset_queue);
3164        INIT_WORK(&local->set_multicast_list_queue,
3165                  hostap_set_multicast_list_queue);
3166
3167        INIT_WORK(&local->set_tim_queue, handle_set_tim_queue);
3168        INIT_LIST_HEAD(&local->set_tim_list);
3169        spin_lock_init(&local->set_tim_lock);
3170
3171        INIT_WORK(&local->comms_qual_update, handle_comms_qual_update);
3172
3173        /* Initialize tasklets for handling hardware IRQ related operations
3174         * outside hw IRQ handler */
3175        tasklet_setup(&local->bap_tasklet, hostap_bap_tasklet);
3176        tasklet_setup(&local->info_tasklet, hostap_info_tasklet);
3177        hostap_info_init(local);
3178
3179        tasklet_setup(&local->rx_tasklet, hostap_rx_tasklet);
3180        skb_queue_head_init(&local->rx_list);
3181
3182        tasklet_setup(&local->sta_tx_exc_tasklet,
3183                            hostap_sta_tx_exc_tasklet);
3184        skb_queue_head_init(&local->sta_tx_exc_list);
3185
3186        INIT_LIST_HEAD(&local->cmd_queue);
3187        init_waitqueue_head(&local->hostscan_wq);
3188
3189        lib80211_crypt_info_init(&local->crypt_info, dev->name, &local->lock);
3190
3191        timer_setup(&local->passive_scan_timer, hostap_passive_scan, 0);
3192        timer_setup(&local->tick_timer, hostap_tick_timer, 0);
3193        local->tick_timer.expires = jiffies + 2 * HZ;
3194        add_timer(&local->tick_timer);
3195
3196        INIT_LIST_HEAD(&local->bss_list);
3197
3198        hostap_setup_dev(dev, local, HOSTAP_INTERFACE_MASTER);
3199
3200        dev->type = ARPHRD_IEEE80211;
3201        dev->header_ops = &hostap_80211_ops;
3202
3203        rtnl_lock();
3204        ret = dev_alloc_name(dev, "wifi%d");
3205        SET_NETDEV_DEV(dev, sdev);
3206        if (ret >= 0)
3207                ret = register_netdevice(dev);
3208
3209        prism2_set_lockdep_class(dev);
3210        rtnl_unlock();
3211        if (ret < 0) {
3212                printk(KERN_WARNING "%s: register netdevice failed!\n",
3213                       dev_info);
3214                goto fail;
3215        }
3216        printk(KERN_INFO "%s: Registered netdevice %s\n", dev_info, dev->name);
3217
3218        hostap_init_data(local);
3219        return dev;
3220
3221 fail:
3222        free_netdev(dev);
3223        return NULL;
3224}
3225
3226
3227static int hostap_hw_ready(struct net_device *dev)
3228{
3229        struct hostap_interface *iface;
3230        struct local_info *local;
3231
3232        iface = netdev_priv(dev);
3233        local = iface->local;
3234        local->ddev = hostap_add_interface(local, HOSTAP_INTERFACE_MAIN, 0,
3235                                           "", dev_template);
3236
3237        if (local->ddev) {
3238                if (local->iw_mode == IW_MODE_INFRA ||
3239                    local->iw_mode == IW_MODE_ADHOC) {
3240                        netif_carrier_off(local->dev);
3241                        netif_carrier_off(local->ddev);
3242                }
3243                hostap_init_proc(local);
3244#ifndef PRISM2_NO_PROCFS_DEBUG
3245                proc_create_single_data("registers", 0, local->proc,
3246                                 prism2_registers_proc_show, local);
3247#endif /* PRISM2_NO_PROCFS_DEBUG */
3248                hostap_init_ap_proc(local);
3249                return 0;
3250        }
3251
3252        return -1;
3253}
3254
3255
3256static void prism2_free_local_data(struct net_device *dev)
3257{
3258        struct hostap_tx_callback_info *tx_cb, *tx_cb_prev;
3259        int i;
3260        struct hostap_interface *iface;
3261        struct local_info *local;
3262        struct list_head *ptr, *n;
3263
3264        if (dev == NULL)
3265                return;
3266
3267        iface = netdev_priv(dev);
3268        local = iface->local;
3269
3270        /* Unregister all netdevs before freeing local data. */
3271        list_for_each_safe(ptr, n, &local->hostap_interfaces) {
3272                iface = list_entry(ptr, struct hostap_interface, list);
3273                if (iface->type == HOSTAP_INTERFACE_MASTER) {
3274                        /* special handling for this interface below */
3275                        continue;
3276                }
3277                hostap_remove_interface(iface->dev, 0, 1);
3278        }
3279
3280        unregister_netdev(local->dev);
3281
3282        flush_work(&local->reset_queue);
3283        flush_work(&local->set_multicast_list_queue);
3284        flush_work(&local->set_tim_queue);
3285#ifndef PRISM2_NO_STATION_MODES
3286        flush_work(&local->info_queue);
3287#endif
3288        flush_work(&local->comms_qual_update);
3289
3290        lib80211_crypt_info_free(&local->crypt_info);
3291
3292        if (timer_pending(&local->passive_scan_timer))
3293                del_timer(&local->passive_scan_timer);
3294
3295        if (timer_pending(&local->tick_timer))
3296                del_timer(&local->tick_timer);
3297
3298        prism2_clear_cmd_queue(local);
3299
3300        skb_queue_purge(&local->info_list);
3301        skb_queue_purge(&local->rx_list);
3302        skb_queue_purge(&local->sta_tx_exc_list);
3303
3304        if (local->dev_enabled)
3305                prism2_callback(local, PRISM2_CALLBACK_DISABLE);
3306
3307        if (local->ap != NULL)
3308                hostap_free_data(local->ap);
3309
3310#ifndef PRISM2_NO_PROCFS_DEBUG
3311        if (local->proc != NULL)
3312                remove_proc_entry("registers", local->proc);
3313#endif /* PRISM2_NO_PROCFS_DEBUG */
3314        hostap_remove_proc(local);
3315
3316        tx_cb = local->tx_callback;
3317        while (tx_cb != NULL) {
3318                tx_cb_prev = tx_cb;
3319                tx_cb = tx_cb->next;
3320                kfree(tx_cb_prev);
3321        }
3322
3323        hostap_set_hostapd(local, 0, 0);
3324        hostap_set_hostapd_sta(local, 0, 0);
3325
3326        for (i = 0; i < PRISM2_FRAG_CACHE_LEN; i++) {
3327                if (local->frag_cache[i].skb != NULL)
3328                        dev_kfree_skb(local->frag_cache[i].skb);
3329        }
3330
3331#ifdef PRISM2_DOWNLOAD_SUPPORT
3332        prism2_download_free_data(local->dl_pri);
3333        prism2_download_free_data(local->dl_sec);
3334#endif /* PRISM2_DOWNLOAD_SUPPORT */
3335
3336        prism2_clear_set_tim_queue(local);
3337
3338        list_for_each_safe(ptr, n, &local->bss_list) {
3339                struct hostap_bss_info *bss =
3340                        list_entry(ptr, struct hostap_bss_info, list);
3341                kfree(bss);
3342        }
3343
3344        kfree(local->pda);
3345        kfree(local->last_scan_results);
3346        kfree(local->generic_elem);
3347
3348        free_netdev(local->dev);
3349}
3350
3351
3352#if defined(PRISM2_PCI) || defined(PRISM2_PCCARD)
3353static void __maybe_unused prism2_suspend(struct net_device *dev)
3354{
3355        struct hostap_interface *iface;
3356        struct local_info *local;
3357        union iwreq_data wrqu;
3358
3359        iface = netdev_priv(dev);
3360        local = iface->local;
3361
3362        /* Send disconnect event, e.g., to trigger reassociation after resume
3363         * if wpa_supplicant is used. */
3364        memset(&wrqu, 0, sizeof(wrqu));
3365        wrqu.ap_addr.sa_family = ARPHRD_ETHER;
3366        wireless_send_event(local->dev, SIOCGIWAP, &wrqu, NULL);
3367
3368        /* Disable hardware and firmware */
3369        prism2_hw_shutdown(dev, 0);
3370}
3371#endif /* PRISM2_PCI || PRISM2_PCCARD */
3372
3373
3374/* These might at some point be compiled separately and used as separate
3375 * kernel modules or linked into one */
3376#ifdef PRISM2_DOWNLOAD_SUPPORT
3377#include "hostap_download.c"
3378#endif /* PRISM2_DOWNLOAD_SUPPORT */
3379
3380#ifdef PRISM2_CALLBACK
3381/* External hostap_callback.c file can be used to, e.g., blink activity led.
3382 * This can use platform specific code and must define prism2_callback()
3383 * function (if PRISM2_CALLBACK is not defined, these function calls are not
3384 * used. */
3385#include "hostap_callback.c"
3386#endif /* PRISM2_CALLBACK */
3387