GNU Linux-libre 4.9.314-gnu1
[releases.git] / drivers / staging / wilc1000 / wilc_wlan.c
1 #include <linux/completion.h>
2 #include "wilc_wlan_if.h"
3 #include "wilc_wlan.h"
4 #include "wilc_wfi_netdevice.h"
5 #include "wilc_wlan_cfg.h"
6
7 static CHIP_PS_STATE_T chip_ps_state = CHIP_WAKEDUP;
8
9 static inline void acquire_bus(struct wilc *wilc, BUS_ACQUIRE_T acquire)
10 {
11         mutex_lock(&wilc->hif_cs);
12         if (acquire == ACQUIRE_AND_WAKEUP)
13                 chip_wakeup(wilc);
14 }
15
16 static inline void release_bus(struct wilc *wilc, BUS_RELEASE_T release)
17 {
18         if (release == RELEASE_ALLOW_SLEEP)
19                 chip_allow_sleep(wilc);
20         mutex_unlock(&wilc->hif_cs);
21 }
22
23 static void wilc_wlan_txq_remove(struct wilc *wilc, struct txq_entry_t *tqe)
24 {
25         if (tqe == wilc->txq_head) {
26                 wilc->txq_head = tqe->next;
27                 if (wilc->txq_head)
28                         wilc->txq_head->prev = NULL;
29         } else if (tqe == wilc->txq_tail) {
30                 wilc->txq_tail = (tqe->prev);
31                 if (wilc->txq_tail)
32                         wilc->txq_tail->next = NULL;
33         } else {
34                 tqe->prev->next = tqe->next;
35                 tqe->next->prev = tqe->prev;
36         }
37         wilc->txq_entries -= 1;
38 }
39
40 static struct txq_entry_t *
41 wilc_wlan_txq_remove_from_head(struct net_device *dev)
42 {
43         struct txq_entry_t *tqe;
44         unsigned long flags;
45         struct wilc_vif *vif;
46         struct wilc *wilc;
47
48         vif = netdev_priv(dev);
49         wilc = vif->wilc;
50
51         spin_lock_irqsave(&wilc->txq_spinlock, flags);
52         if (wilc->txq_head) {
53                 tqe = wilc->txq_head;
54                 wilc->txq_head = tqe->next;
55                 if (wilc->txq_head)
56                         wilc->txq_head->prev = NULL;
57
58                 wilc->txq_entries -= 1;
59         } else {
60                 tqe = NULL;
61         }
62         spin_unlock_irqrestore(&wilc->txq_spinlock, flags);
63         return tqe;
64 }
65
66 static void wilc_wlan_txq_add_to_tail(struct net_device *dev,
67                                       struct txq_entry_t *tqe)
68 {
69         unsigned long flags;
70         struct wilc_vif *vif;
71         struct wilc *wilc;
72
73         vif = netdev_priv(dev);
74         wilc = vif->wilc;
75
76         spin_lock_irqsave(&wilc->txq_spinlock, flags);
77
78         if (!wilc->txq_head) {
79                 tqe->next = NULL;
80                 tqe->prev = NULL;
81                 wilc->txq_head = tqe;
82                 wilc->txq_tail = tqe;
83         } else {
84                 tqe->next = NULL;
85                 tqe->prev = wilc->txq_tail;
86                 wilc->txq_tail->next = tqe;
87                 wilc->txq_tail = tqe;
88         }
89         wilc->txq_entries += 1;
90
91         spin_unlock_irqrestore(&wilc->txq_spinlock, flags);
92
93         complete(&wilc->txq_event);
94 }
95
96 static int wilc_wlan_txq_add_to_head(struct wilc_vif *vif,
97                                      struct txq_entry_t *tqe)
98 {
99         unsigned long flags;
100         struct wilc *wilc = vif->wilc;
101
102         mutex_lock(&wilc->txq_add_to_head_cs);
103
104         spin_lock_irqsave(&wilc->txq_spinlock, flags);
105
106         if (!wilc->txq_head) {
107                 tqe->next = NULL;
108                 tqe->prev = NULL;
109                 wilc->txq_head = tqe;
110                 wilc->txq_tail = tqe;
111         } else {
112                 tqe->next = wilc->txq_head;
113                 tqe->prev = NULL;
114                 wilc->txq_head->prev = tqe;
115                 wilc->txq_head = tqe;
116         }
117         wilc->txq_entries += 1;
118
119         spin_unlock_irqrestore(&wilc->txq_spinlock, flags);
120         mutex_unlock(&wilc->txq_add_to_head_cs);
121         complete(&wilc->txq_event);
122
123         return 0;
124 }
125
126 struct ack_session_info;
127 struct ack_session_info {
128         u32 seq_num;
129         u32 bigger_ack_num;
130         u16 src_port;
131         u16 dst_port;
132         u16 status;
133 };
134
135 struct pending_acks_info {
136         u32 ack_num;
137         u32 session_index;
138         struct txq_entry_t  *txqe;
139 };
140
141 #define NOT_TCP_ACK                     (-1)
142
143 #define MAX_TCP_SESSION         25
144 #define MAX_PENDING_ACKS                256
145 static struct ack_session_info ack_session_info[2 * MAX_TCP_SESSION];
146 static struct pending_acks_info pending_acks_info[MAX_PENDING_ACKS];
147
148 static u32 pending_base;
149 static u32 tcp_session;
150 static u32 pending_acks;
151
152 static inline int add_tcp_session(u32 src_prt, u32 dst_prt, u32 seq)
153 {
154         if (tcp_session < 2 * MAX_TCP_SESSION) {
155                 ack_session_info[tcp_session].seq_num = seq;
156                 ack_session_info[tcp_session].bigger_ack_num = 0;
157                 ack_session_info[tcp_session].src_port = src_prt;
158                 ack_session_info[tcp_session].dst_port = dst_prt;
159                 tcp_session++;
160         }
161         return 0;
162 }
163
164 static inline int update_tcp_session(u32 index, u32 ack)
165 {
166         if (index < 2 * MAX_TCP_SESSION &&
167             ack > ack_session_info[index].bigger_ack_num)
168                 ack_session_info[index].bigger_ack_num = ack;
169         return 0;
170 }
171
172 static inline int add_tcp_pending_ack(u32 ack, u32 session_index,
173                                       struct txq_entry_t *txqe)
174 {
175         if (pending_base + pending_acks < MAX_PENDING_ACKS) {
176                 pending_acks_info[pending_base + pending_acks].ack_num = ack;
177                 pending_acks_info[pending_base + pending_acks].txqe = txqe;
178                 pending_acks_info[pending_base + pending_acks].session_index = session_index;
179                 txqe->tcp_pending_ack_idx = pending_base + pending_acks;
180                 pending_acks++;
181         }
182         return 0;
183 }
184
185 static inline void tcp_process(struct net_device *dev, struct txq_entry_t *tqe)
186 {
187         u8 *eth_hdr_ptr;
188         u8 *buffer = tqe->buffer;
189         unsigned short h_proto;
190         int i;
191         unsigned long flags;
192         struct wilc_vif *vif;
193         struct wilc *wilc;
194
195         vif = netdev_priv(dev);
196         wilc = vif->wilc;
197
198         spin_lock_irqsave(&wilc->txq_spinlock, flags);
199
200         eth_hdr_ptr = &buffer[0];
201         h_proto = ntohs(*((unsigned short *)&eth_hdr_ptr[12]));
202         if (h_proto == ETH_P_IP) {
203                 u8 *ip_hdr_ptr;
204                 u8 protocol;
205
206                 ip_hdr_ptr = &buffer[ETHERNET_HDR_LEN];
207                 protocol = ip_hdr_ptr[9];
208
209                 if (protocol == 0x06) {
210                         u8 *tcp_hdr_ptr;
211                         u32 IHL, total_length, data_offset;
212
213                         tcp_hdr_ptr = &ip_hdr_ptr[IP_HDR_LEN];
214                         IHL = (ip_hdr_ptr[0] & 0xf) << 2;
215                         total_length = ((u32)ip_hdr_ptr[2] << 8) +
216                                         (u32)ip_hdr_ptr[3];
217                         data_offset = ((u32)tcp_hdr_ptr[12] & 0xf0) >> 2;
218                         if (total_length == (IHL + data_offset)) {
219                                 u32 seq_no, ack_no;
220
221                                 seq_no = ((u32)tcp_hdr_ptr[4] << 24) +
222                                          ((u32)tcp_hdr_ptr[5] << 16) +
223                                          ((u32)tcp_hdr_ptr[6] << 8) +
224                                          (u32)tcp_hdr_ptr[7];
225
226                                 ack_no = ((u32)tcp_hdr_ptr[8] << 24) +
227                                          ((u32)tcp_hdr_ptr[9] << 16) +
228                                          ((u32)tcp_hdr_ptr[10] << 8) +
229                                          (u32)tcp_hdr_ptr[11];
230
231                                 for (i = 0; i < tcp_session; i++) {
232                                         if (i < 2 * MAX_TCP_SESSION &&
233                                             ack_session_info[i].seq_num == seq_no) {
234                                                 update_tcp_session(i, ack_no);
235                                                 break;
236                                         }
237                                 }
238                                 if (i == tcp_session)
239                                         add_tcp_session(0, 0, seq_no);
240
241                                 add_tcp_pending_ack(ack_no, i, tqe);
242                         }
243                 }
244         }
245         spin_unlock_irqrestore(&wilc->txq_spinlock, flags);
246 }
247
248 static int wilc_wlan_txq_filter_dup_tcp_ack(struct net_device *dev)
249 {
250         struct wilc_vif *vif;
251         struct wilc *wilc;
252         u32 i = 0;
253         u32 dropped = 0;
254
255         vif = netdev_priv(dev);
256         wilc = vif->wilc;
257
258         spin_lock_irqsave(&wilc->txq_spinlock, wilc->txq_spinlock_flags);
259         for (i = pending_base; i < (pending_base + pending_acks); i++) {
260                 if (i >= MAX_PENDING_ACKS ||
261                     pending_acks_info[i].session_index >= 2 * MAX_TCP_SESSION)
262                         break;
263                 if (pending_acks_info[i].ack_num < ack_session_info[pending_acks_info[i].session_index].bigger_ack_num) {
264                         struct txq_entry_t *tqe;
265
266                         tqe = pending_acks_info[i].txqe;
267                         if (tqe) {
268                                 wilc_wlan_txq_remove(wilc, tqe);
269                                 tqe->status = 1;
270                                 if (tqe->tx_complete_func)
271                                         tqe->tx_complete_func(tqe->priv,
272                                                               tqe->status);
273                                 kfree(tqe);
274                                 dropped++;
275                         }
276                 }
277         }
278         pending_acks = 0;
279         tcp_session = 0;
280
281         if (pending_base == 0)
282                 pending_base = MAX_TCP_SESSION;
283         else
284                 pending_base = 0;
285
286         spin_unlock_irqrestore(&wilc->txq_spinlock, wilc->txq_spinlock_flags);
287
288         while (dropped > 0) {
289                 wait_for_completion_timeout(&wilc->txq_event,
290                                                 msecs_to_jiffies(1));
291                 dropped--;
292         }
293
294         return 1;
295 }
296
297 static bool enabled;
298
299 void wilc_enable_tcp_ack_filter(bool value)
300 {
301         enabled = value;
302 }
303
304 static int wilc_wlan_txq_add_cfg_pkt(struct wilc_vif *vif, u8 *buffer,
305                                      u32 buffer_size)
306 {
307         struct txq_entry_t *tqe;
308         struct wilc *wilc = vif->wilc;
309
310         netdev_dbg(vif->ndev, "Adding config packet ...\n");
311         if (wilc->quit) {
312                 netdev_dbg(vif->ndev, "Return due to clear function\n");
313                 complete(&wilc->cfg_event);
314                 return 0;
315         }
316
317         tqe = kmalloc(sizeof(*tqe), GFP_ATOMIC);
318         if (!tqe)
319                 return 0;
320
321         tqe->type = WILC_CFG_PKT;
322         tqe->buffer = buffer;
323         tqe->buffer_size = buffer_size;
324         tqe->tx_complete_func = NULL;
325         tqe->priv = NULL;
326         tqe->tcp_pending_ack_idx = NOT_TCP_ACK;
327
328         if (wilc_wlan_txq_add_to_head(vif, tqe)) {
329                 kfree(tqe);
330                 return 0;
331         }
332
333         return 1;
334 }
335
336 int wilc_wlan_txq_add_net_pkt(struct net_device *dev, void *priv, u8 *buffer,
337                               u32 buffer_size, wilc_tx_complete_func_t func)
338 {
339         struct txq_entry_t *tqe;
340         struct wilc_vif *vif = netdev_priv(dev);
341         struct wilc *wilc;
342
343         wilc = vif->wilc;
344
345         if (wilc->quit)
346                 return 0;
347
348         tqe = kmalloc(sizeof(*tqe), GFP_ATOMIC);
349
350         if (!tqe)
351                 return 0;
352         tqe->type = WILC_NET_PKT;
353         tqe->buffer = buffer;
354         tqe->buffer_size = buffer_size;
355         tqe->tx_complete_func = func;
356         tqe->priv = priv;
357
358         tqe->tcp_pending_ack_idx = NOT_TCP_ACK;
359         if (enabled)
360                 tcp_process(dev, tqe);
361         wilc_wlan_txq_add_to_tail(dev, tqe);
362         return wilc->txq_entries;
363 }
364
365 int wilc_wlan_txq_add_mgmt_pkt(struct net_device *dev, void *priv, u8 *buffer,
366                                u32 buffer_size, wilc_tx_complete_func_t func)
367 {
368         struct txq_entry_t *tqe;
369         struct wilc_vif *vif = netdev_priv(dev);
370         struct wilc *wilc;
371
372         wilc = vif->wilc;
373
374         if (wilc->quit)
375                 return 0;
376
377         tqe = kmalloc(sizeof(*tqe), GFP_KERNEL);
378
379         if (!tqe)
380                 return 0;
381         tqe->type = WILC_MGMT_PKT;
382         tqe->buffer = buffer;
383         tqe->buffer_size = buffer_size;
384         tqe->tx_complete_func = func;
385         tqe->priv = priv;
386         tqe->tcp_pending_ack_idx = NOT_TCP_ACK;
387         wilc_wlan_txq_add_to_tail(dev, tqe);
388         return 1;
389 }
390
391 static struct txq_entry_t *wilc_wlan_txq_get_first(struct wilc *wilc)
392 {
393         struct txq_entry_t *tqe;
394         unsigned long flags;
395
396         spin_lock_irqsave(&wilc->txq_spinlock, flags);
397
398         tqe = wilc->txq_head;
399
400         spin_unlock_irqrestore(&wilc->txq_spinlock, flags);
401
402         return tqe;
403 }
404
405 static struct txq_entry_t *wilc_wlan_txq_get_next(struct wilc *wilc,
406                                                   struct txq_entry_t *tqe)
407 {
408         unsigned long flags;
409
410         spin_lock_irqsave(&wilc->txq_spinlock, flags);
411
412         tqe = tqe->next;
413         spin_unlock_irqrestore(&wilc->txq_spinlock, flags);
414
415         return tqe;
416 }
417
418 static int wilc_wlan_rxq_add(struct wilc *wilc, struct rxq_entry_t *rqe)
419 {
420         if (wilc->quit)
421                 return 0;
422
423         mutex_lock(&wilc->rxq_cs);
424         if (!wilc->rxq_head) {
425                 rqe->next = NULL;
426                 wilc->rxq_head = rqe;
427                 wilc->rxq_tail = rqe;
428         } else {
429                 wilc->rxq_tail->next = rqe;
430                 rqe->next = NULL;
431                 wilc->rxq_tail = rqe;
432         }
433         wilc->rxq_entries += 1;
434         mutex_unlock(&wilc->rxq_cs);
435         return wilc->rxq_entries;
436 }
437
438 static struct rxq_entry_t *wilc_wlan_rxq_remove(struct wilc *wilc)
439 {
440         if (wilc->rxq_head) {
441                 struct rxq_entry_t *rqe;
442
443                 mutex_lock(&wilc->rxq_cs);
444                 rqe = wilc->rxq_head;
445                 wilc->rxq_head = wilc->rxq_head->next;
446                 wilc->rxq_entries -= 1;
447                 mutex_unlock(&wilc->rxq_cs);
448                 return rqe;
449         }
450         return NULL;
451 }
452
453 void chip_allow_sleep(struct wilc *wilc)
454 {
455         u32 reg = 0;
456
457         wilc->hif_func->hif_read_reg(wilc, 0xf0, &reg);
458
459         wilc->hif_func->hif_write_reg(wilc, 0xf0, reg & ~BIT(0));
460         wilc->hif_func->hif_write_reg(wilc, 0xfa, 0);
461 }
462 EXPORT_SYMBOL_GPL(chip_allow_sleep);
463
464 void chip_wakeup(struct wilc *wilc)
465 {
466         u32 reg, clk_status_reg;
467
468         if ((wilc->io_type & 0x1) == HIF_SPI) {
469                 do {
470                         wilc->hif_func->hif_read_reg(wilc, 1, &reg);
471                         wilc->hif_func->hif_write_reg(wilc, 1, reg | BIT(1));
472                         wilc->hif_func->hif_write_reg(wilc, 1, reg & ~BIT(1));
473
474                         do {
475                                 usleep_range(2 * 1000, 2 * 1000);
476                                 wilc_get_chipid(wilc, true);
477                         } while (wilc_get_chipid(wilc, true) == 0);
478                 } while (wilc_get_chipid(wilc, true) == 0);
479         } else if ((wilc->io_type & 0x1) == HIF_SDIO)    {
480                 wilc->hif_func->hif_write_reg(wilc, 0xfa, 1);
481                 udelay(200);
482                 wilc->hif_func->hif_read_reg(wilc, 0xf0, &reg);
483                 do {
484                         wilc->hif_func->hif_write_reg(wilc, 0xf0,
485                                                       reg | BIT(0));
486                         wilc->hif_func->hif_read_reg(wilc, 0xf1,
487                                                      &clk_status_reg);
488
489                         while ((clk_status_reg & 0x1) == 0) {
490                                 usleep_range(2 * 1000, 2 * 1000);
491
492                                 wilc->hif_func->hif_read_reg(wilc, 0xf1,
493                                                              &clk_status_reg);
494                         }
495                         if ((clk_status_reg & 0x1) == 0) {
496                                 wilc->hif_func->hif_write_reg(wilc, 0xf0,
497                                                               reg & (~BIT(0)));
498                         }
499                 } while ((clk_status_reg & 0x1) == 0);
500         }
501
502         if (chip_ps_state == CHIP_SLEEPING_MANUAL) {
503                 if (wilc_get_chipid(wilc, false) < 0x1002b0) {
504                         u32 val32;
505
506                         wilc->hif_func->hif_read_reg(wilc, 0x1e1c, &val32);
507                         val32 |= BIT(6);
508                         wilc->hif_func->hif_write_reg(wilc, 0x1e1c, val32);
509
510                         wilc->hif_func->hif_read_reg(wilc, 0x1e9c, &val32);
511                         val32 |= BIT(6);
512                         wilc->hif_func->hif_write_reg(wilc, 0x1e9c, val32);
513                 }
514         }
515         chip_ps_state = CHIP_WAKEDUP;
516 }
517 EXPORT_SYMBOL_GPL(chip_wakeup);
518
519 void wilc_chip_sleep_manually(struct wilc *wilc)
520 {
521         if (chip_ps_state != CHIP_WAKEDUP)
522                 return;
523         acquire_bus(wilc, ACQUIRE_ONLY);
524
525         chip_allow_sleep(wilc);
526         wilc->hif_func->hif_write_reg(wilc, 0x10a8, 1);
527
528         chip_ps_state = CHIP_SLEEPING_MANUAL;
529         release_bus(wilc, RELEASE_ONLY);
530 }
531 EXPORT_SYMBOL_GPL(wilc_chip_sleep_manually);
532
533 void host_wakeup_notify(struct wilc *wilc)
534 {
535         acquire_bus(wilc, ACQUIRE_ONLY);
536         wilc->hif_func->hif_write_reg(wilc, 0x10b0, 1);
537         release_bus(wilc, RELEASE_ONLY);
538 }
539 EXPORT_SYMBOL_GPL(host_wakeup_notify);
540
541 void host_sleep_notify(struct wilc *wilc)
542 {
543         acquire_bus(wilc, ACQUIRE_ONLY);
544         wilc->hif_func->hif_write_reg(wilc, 0x10ac, 1);
545         release_bus(wilc, RELEASE_ONLY);
546 }
547 EXPORT_SYMBOL_GPL(host_sleep_notify);
548
549 int wilc_wlan_handle_txq(struct net_device *dev, u32 *txq_count)
550 {
551         int i, entries = 0;
552         u32 sum;
553         u32 reg;
554         u8 *txb;
555         u32 offset = 0;
556         int vmm_sz = 0;
557         struct txq_entry_t *tqe;
558         int ret = 0;
559         int counter;
560         int timeout;
561         u32 vmm_table[WILC_VMM_TBL_SIZE];
562         struct wilc_vif *vif;
563         struct wilc *wilc;
564
565         vif = netdev_priv(dev);
566         wilc = vif->wilc;
567
568         txb = wilc->tx_buffer;
569         wilc->txq_exit = 0;
570         do {
571                 if (wilc->quit)
572                         break;
573
574                 mutex_lock(&wilc->txq_add_to_head_cs);
575                 wilc_wlan_txq_filter_dup_tcp_ack(dev);
576                 tqe = wilc_wlan_txq_get_first(wilc);
577                 i = 0;
578                 sum = 0;
579                 do {
580                         if (tqe && (i < (WILC_VMM_TBL_SIZE - 1))) {
581                                 if (tqe->type == WILC_CFG_PKT)
582                                         vmm_sz = ETH_CONFIG_PKT_HDR_OFFSET;
583
584                                 else if (tqe->type == WILC_NET_PKT)
585                                         vmm_sz = ETH_ETHERNET_HDR_OFFSET;
586
587                                 else
588                                         vmm_sz = HOST_HDR_OFFSET;
589
590                                 vmm_sz += tqe->buffer_size;
591
592                                 if (vmm_sz & 0x3)
593                                         vmm_sz = (vmm_sz + 4) & ~0x3;
594
595                                 if ((sum + vmm_sz) > LINUX_TX_SIZE)
596                                         break;
597
598                                 vmm_table[i] = vmm_sz / 4;
599                                 if (tqe->type == WILC_CFG_PKT)
600                                         vmm_table[i] |= BIT(10);
601                                 vmm_table[i] = cpu_to_le32(vmm_table[i]);
602
603                                 i++;
604                                 sum += vmm_sz;
605                                 tqe = wilc_wlan_txq_get_next(wilc, tqe);
606                         } else {
607                                 break;
608                         }
609                 } while (1);
610
611                 if (i == 0)
612                         break;
613                 vmm_table[i] = 0x0;
614
615                 acquire_bus(wilc, ACQUIRE_AND_WAKEUP);
616                 counter = 0;
617                 do {
618                         ret = wilc->hif_func->hif_read_reg(wilc,
619                                                            WILC_HOST_TX_CTRL,
620                                                            &reg);
621                         if (!ret)
622                                 break;
623
624                         if ((reg & 0x1) == 0)
625                                 break;
626
627                         counter++;
628                         if (counter > 200) {
629                                 counter = 0;
630                                 ret = wilc->hif_func->hif_write_reg(wilc, WILC_HOST_TX_CTRL, 0);
631                                 break;
632                         }
633                 } while (!wilc->quit);
634
635                 if (!ret)
636                         goto _end_;
637
638                 timeout = 200;
639                 do {
640                         ret = wilc->hif_func->hif_block_tx(wilc, WILC_VMM_TBL_RX_SHADOW_BASE, (u8 *)vmm_table, ((i + 1) * 4));
641                         if (!ret)
642                                 break;
643
644                         ret = wilc->hif_func->hif_write_reg(wilc,
645                                                             WILC_HOST_VMM_CTL,
646                                                             0x2);
647                         if (!ret)
648                                 break;
649
650                         do {
651                                 ret = wilc->hif_func->hif_read_reg(wilc, WILC_HOST_VMM_CTL, &reg);
652                                 if (!ret)
653                                         break;
654                                 if ((reg >> 2) & 0x1) {
655                                         entries = ((reg >> 3) & 0x3f);
656                                         break;
657                                 }
658                                 release_bus(wilc, RELEASE_ALLOW_SLEEP);
659                         } while (--timeout);
660                         if (timeout <= 0) {
661                                 ret = wilc->hif_func->hif_write_reg(wilc, WILC_HOST_VMM_CTL, 0x0);
662                                 break;
663                         }
664
665                         if (!ret)
666                                 break;
667
668                         if (entries == 0) {
669                                 ret = wilc->hif_func->hif_read_reg(wilc, WILC_HOST_TX_CTRL, &reg);
670                                 if (!ret)
671                                         break;
672                                 reg &= ~BIT(0);
673                                 ret = wilc->hif_func->hif_write_reg(wilc, WILC_HOST_TX_CTRL, reg);
674                                 if (!ret)
675                                         break;
676                                 break;
677                         }
678                         break;
679                 } while (1);
680
681                 if (!ret)
682                         goto _end_;
683
684                 if (entries == 0) {
685                         ret = WILC_TX_ERR_NO_BUF;
686                         goto _end_;
687                 }
688
689                 release_bus(wilc, RELEASE_ALLOW_SLEEP);
690
691                 offset = 0;
692                 i = 0;
693                 do {
694                         tqe = wilc_wlan_txq_remove_from_head(dev);
695                         if (tqe && (vmm_table[i] != 0)) {
696                                 u32 header, buffer_offset;
697
698                                 vmm_table[i] = cpu_to_le32(vmm_table[i]);
699                                 vmm_sz = (vmm_table[i] & 0x3ff);
700                                 vmm_sz *= 4;
701                                 header = (tqe->type << 31) |
702                                          (tqe->buffer_size << 15) |
703                                          vmm_sz;
704                                 if (tqe->type == WILC_MGMT_PKT)
705                                         header |= BIT(30);
706                                 else
707                                         header &= ~BIT(30);
708
709                                 header = cpu_to_le32(header);
710                                 memcpy(&txb[offset], &header, 4);
711                                 if (tqe->type == WILC_CFG_PKT) {
712                                         buffer_offset = ETH_CONFIG_PKT_HDR_OFFSET;
713                                 } else if (tqe->type == WILC_NET_PKT) {
714                                         char *bssid = ((struct tx_complete_data *)(tqe->priv))->bssid;
715
716                                         buffer_offset = ETH_ETHERNET_HDR_OFFSET;
717                                         memcpy(&txb[offset + 4], bssid, 6);
718                                 } else {
719                                         buffer_offset = HOST_HDR_OFFSET;
720                                 }
721
722                                 memcpy(&txb[offset + buffer_offset],
723                                        tqe->buffer, tqe->buffer_size);
724                                 offset += vmm_sz;
725                                 i++;
726                                 tqe->status = 1;
727                                 if (tqe->tx_complete_func)
728                                         tqe->tx_complete_func(tqe->priv,
729                                                               tqe->status);
730                                 if (tqe->tcp_pending_ack_idx != NOT_TCP_ACK &&
731                                     tqe->tcp_pending_ack_idx < MAX_PENDING_ACKS)
732                                         pending_acks_info[tqe->tcp_pending_ack_idx].txqe = NULL;
733                                 kfree(tqe);
734                         } else {
735                                 break;
736                         }
737                 } while (--entries);
738
739                 acquire_bus(wilc, ACQUIRE_AND_WAKEUP);
740
741                 ret = wilc->hif_func->hif_clear_int_ext(wilc, ENABLE_TX_VMM);
742                 if (!ret)
743                         goto _end_;
744
745                 ret = wilc->hif_func->hif_block_tx_ext(wilc, 0, txb, offset);
746                 if (!ret)
747                         goto _end_;
748
749 _end_:
750
751                 release_bus(wilc, RELEASE_ALLOW_SLEEP);
752                 if (ret != 1)
753                         break;
754         } while (0);
755         mutex_unlock(&wilc->txq_add_to_head_cs);
756
757         wilc->txq_exit = 1;
758         *txq_count = wilc->txq_entries;
759         return ret;
760 }
761
762 static void wilc_wlan_handle_rxq(struct wilc *wilc)
763 {
764         int offset = 0, size;
765         u8 *buffer;
766         struct rxq_entry_t *rqe;
767
768         wilc->rxq_exit = 0;
769
770         do {
771                 if (wilc->quit) {
772                         complete(&wilc->cfg_event);
773                         break;
774                 }
775                 rqe = wilc_wlan_rxq_remove(wilc);
776                 if (!rqe)
777                         break;
778
779                 buffer = rqe->buffer;
780                 size = rqe->buffer_size;
781                 offset = 0;
782
783                 do {
784                         u32 header;
785                         u32 pkt_len, pkt_offset, tp_len;
786                         int is_cfg_packet;
787
788                         memcpy(&header, &buffer[offset], 4);
789                         header = cpu_to_le32(header);
790
791                         is_cfg_packet = (header >> 31) & 0x1;
792                         pkt_offset = (header >> 22) & 0x1ff;
793                         tp_len = (header >> 11) & 0x7ff;
794                         pkt_len = header & 0x7ff;
795
796                         if (pkt_len == 0 || tp_len == 0)
797                                 break;
798
799                         #define IS_MANAGMEMENT                          0x100
800                         #define IS_MANAGMEMENT_CALLBACK                 0x080
801                         #define IS_MGMT_STATUS_SUCCES                   0x040
802
803                         if (pkt_offset & IS_MANAGMEMENT) {
804                                 pkt_offset &= ~(IS_MANAGMEMENT |
805                                                 IS_MANAGMEMENT_CALLBACK |
806                                                 IS_MGMT_STATUS_SUCCES);
807
808                                 WILC_WFI_mgmt_rx(wilc, &buffer[offset + HOST_HDR_OFFSET], pkt_len);
809                         } else {
810                                 if (!is_cfg_packet) {
811                                         if (pkt_len > 0) {
812                                                 wilc_frmw_to_linux(wilc,
813                                                               &buffer[offset],
814                                                               pkt_len,
815                                                               pkt_offset);
816                                         }
817                                 } else {
818                                         struct wilc_cfg_rsp rsp;
819
820                                         wilc_wlan_cfg_indicate_rx(wilc, &buffer[pkt_offset + offset], pkt_len, &rsp);
821                                         if (rsp.type == WILC_CFG_RSP) {
822                                                 if (wilc->cfg_seq_no == rsp.seq_no)
823                                                         complete(&wilc->cfg_event);
824                                         } else if (rsp.type == WILC_CFG_RSP_STATUS) {
825                                                 wilc_mac_indicate(wilc, WILC_MAC_INDICATE_STATUS);
826
827                                         } else if (rsp.type == WILC_CFG_RSP_SCAN) {
828                                                 wilc_mac_indicate(wilc, WILC_MAC_INDICATE_SCAN);
829                                         }
830                                 }
831                         }
832                         offset += tp_len;
833                         if (offset >= size)
834                                 break;
835                 } while (1);
836                 kfree(rqe);
837         } while (1);
838
839         wilc->rxq_exit = 1;
840 }
841
842 static void wilc_unknown_isr_ext(struct wilc *wilc)
843 {
844         wilc->hif_func->hif_clear_int_ext(wilc, 0);
845 }
846
847 static void wilc_pllupdate_isr_ext(struct wilc *wilc, u32 int_stats)
848 {
849         int trials = 10;
850
851         wilc->hif_func->hif_clear_int_ext(wilc, PLL_INT_CLR);
852
853         if (wilc->io_type == HIF_SDIO)
854                 mdelay(WILC_PLL_TO_SDIO);
855         else
856                 mdelay(WILC_PLL_TO_SPI);
857
858         while (!(ISWILC1000(wilc_get_chipid(wilc, true)) && --trials))
859                 mdelay(1);
860 }
861
862 static void wilc_sleeptimer_isr_ext(struct wilc *wilc, u32 int_stats1)
863 {
864         wilc->hif_func->hif_clear_int_ext(wilc, SLEEP_INT_CLR);
865 }
866
867 static void wilc_wlan_handle_isr_ext(struct wilc *wilc, u32 int_status)
868 {
869         u32 offset = wilc->rx_buffer_offset;
870         u8 *buffer = NULL;
871         u32 size;
872         u32 retries = 0;
873         int ret = 0;
874         struct rxq_entry_t *rqe;
875
876         size = (int_status & 0x7fff) << 2;
877
878         while (!size && retries < 10) {
879                 wilc->hif_func->hif_read_size(wilc, &size);
880                 size = (size & 0x7fff) << 2;
881                 retries++;
882         }
883
884         if (size > 0) {
885                 if (LINUX_RX_SIZE - offset < size)
886                         offset = 0;
887
888                 if (wilc->rx_buffer)
889                         buffer = &wilc->rx_buffer[offset];
890                 else
891                         goto _end_;
892
893                 wilc->hif_func->hif_clear_int_ext(wilc,
894                                               DATA_INT_CLR | ENABLE_RX_VMM);
895                 ret = wilc->hif_func->hif_block_rx_ext(wilc, 0, buffer, size);
896
897 _end_:
898                 if (ret) {
899                         offset += size;
900                         wilc->rx_buffer_offset = offset;
901                         rqe = kmalloc(sizeof(*rqe), GFP_KERNEL);
902                         if (rqe) {
903                                 rqe->buffer = buffer;
904                                 rqe->buffer_size = size;
905                                 wilc_wlan_rxq_add(wilc, rqe);
906                         }
907                 }
908         }
909         wilc_wlan_handle_rxq(wilc);
910 }
911
912 void wilc_handle_isr(struct wilc *wilc)
913 {
914         u32 int_status;
915
916         acquire_bus(wilc, ACQUIRE_AND_WAKEUP);
917         wilc->hif_func->hif_read_int(wilc, &int_status);
918
919         if (int_status & PLL_INT_EXT)
920                 wilc_pllupdate_isr_ext(wilc, int_status);
921
922         if (int_status & DATA_INT_EXT)
923                 wilc_wlan_handle_isr_ext(wilc, int_status);
924
925         if (int_status & SLEEP_INT_EXT)
926                 wilc_sleeptimer_isr_ext(wilc, int_status);
927
928         if (!(int_status & (ALL_INT_EXT)))
929                 wilc_unknown_isr_ext(wilc);
930
931         release_bus(wilc, RELEASE_ALLOW_SLEEP);
932 }
933 EXPORT_SYMBOL_GPL(wilc_handle_isr);
934
935 int wilc_wlan_firmware_download(struct wilc *wilc, const u8 *buffer,
936                                 u32 buffer_size)
937 {
938         u32 offset;
939         u32 addr, size, size2, blksz;
940         u8 *dma_buffer;
941         int ret = 0;
942
943         blksz = BIT(12);
944
945         dma_buffer = kmalloc(blksz, GFP_KERNEL);
946         if (!dma_buffer)
947                 return -EIO;
948
949         offset = 0;
950         do {
951                 memcpy(&addr, &buffer[offset], 4);
952                 memcpy(&size, &buffer[offset + 4], 4);
953                 addr = cpu_to_le32(addr);
954                 size = cpu_to_le32(size);
955                 acquire_bus(wilc, ACQUIRE_ONLY);
956                 offset += 8;
957                 while (((int)size) && (offset < buffer_size)) {
958                         if (size <= blksz)
959                                 size2 = size;
960                         else
961                                 size2 = blksz;
962
963                         memcpy(dma_buffer, &buffer[offset], size2);
964                         ret = wilc->hif_func->hif_block_tx(wilc, addr,
965                                                            dma_buffer, size2);
966                         if (!ret)
967                                 break;
968
969                         addr += size2;
970                         offset += size2;
971                         size -= size2;
972                 }
973                 release_bus(wilc, RELEASE_ONLY);
974
975                 if (!ret) {
976                         ret = -EIO;
977                         goto _fail_;
978                 }
979         } while (offset < buffer_size);
980
981 _fail_:
982
983         kfree(dma_buffer);
984
985         return (ret < 0) ? ret : 0;
986 }
987
988 int wilc_wlan_start(struct wilc *wilc)
989 {
990         u32 reg = 0;
991         int ret;
992         u32 chipid;
993
994         if (wilc->io_type == HIF_SDIO) {
995                 reg = 0;
996                 reg |= BIT(3);
997         } else if (wilc->io_type == HIF_SPI) {
998                 reg = 1;
999         }
1000         acquire_bus(wilc, ACQUIRE_ONLY);
1001         ret = wilc->hif_func->hif_write_reg(wilc, WILC_VMM_CORE_CFG, reg);
1002         if (!ret) {
1003                 release_bus(wilc, RELEASE_ONLY);
1004                 return -EIO;
1005         }
1006         reg = 0;
1007         if (wilc->io_type == HIF_SDIO && wilc->dev_irq_num)
1008                 reg |= WILC_HAVE_SDIO_IRQ_GPIO;
1009
1010 #ifdef WILC_DISABLE_PMU
1011 #else
1012         reg |= WILC_HAVE_USE_PMU;
1013 #endif
1014
1015 #ifdef WILC_SLEEP_CLK_SRC_XO
1016         reg |= WILC_HAVE_SLEEP_CLK_SRC_XO;
1017 #elif defined WILC_SLEEP_CLK_SRC_RTC
1018         reg |= WILC_HAVE_SLEEP_CLK_SRC_RTC;
1019 #endif
1020
1021 #ifdef WILC_EXT_PA_INV_TX_RX
1022         reg |= WILC_HAVE_EXT_PA_INV_TX_RX;
1023 #endif
1024         reg |= WILC_HAVE_USE_IRQ_AS_HOST_WAKE;
1025         reg |= WILC_HAVE_LEGACY_RF_SETTINGS;
1026 #ifdef XTAL_24
1027         reg |= WILC_HAVE_XTAL_24;
1028 #endif
1029 #ifdef DISABLE_WILC_UART
1030         reg |= WILC_HAVE_DISABLE_WILC_UART;
1031 #endif
1032
1033         ret = wilc->hif_func->hif_write_reg(wilc, WILC_GP_REG_1, reg);
1034         if (!ret) {
1035                 release_bus(wilc, RELEASE_ONLY);
1036                 return -EIO;
1037         }
1038
1039         wilc->hif_func->hif_sync_ext(wilc, NUM_INT_EXT);
1040
1041         ret = wilc->hif_func->hif_read_reg(wilc, 0x1000, &chipid);
1042         if (!ret) {
1043                 release_bus(wilc, RELEASE_ONLY);
1044                 return -EIO;
1045         }
1046
1047         wilc->hif_func->hif_read_reg(wilc, WILC_GLB_RESET_0, &reg);
1048         if ((reg & BIT(10)) == BIT(10)) {
1049                 reg &= ~BIT(10);
1050                 wilc->hif_func->hif_write_reg(wilc, WILC_GLB_RESET_0, reg);
1051                 wilc->hif_func->hif_read_reg(wilc, WILC_GLB_RESET_0, &reg);
1052         }
1053
1054         reg |= BIT(10);
1055         ret = wilc->hif_func->hif_write_reg(wilc, WILC_GLB_RESET_0, reg);
1056         wilc->hif_func->hif_read_reg(wilc, WILC_GLB_RESET_0, &reg);
1057         release_bus(wilc, RELEASE_ONLY);
1058
1059         return (ret < 0) ? ret : 0;
1060 }
1061
1062 int wilc_wlan_stop(struct wilc *wilc)
1063 {
1064         u32 reg = 0;
1065         int ret;
1066         u8 timeout = 10;
1067
1068         acquire_bus(wilc, ACQUIRE_AND_WAKEUP);
1069
1070         ret = wilc->hif_func->hif_read_reg(wilc, WILC_GLB_RESET_0, &reg);
1071         if (!ret) {
1072                 release_bus(wilc, RELEASE_ALLOW_SLEEP);
1073                 return ret;
1074         }
1075
1076         reg &= ~BIT(10);
1077         ret = wilc->hif_func->hif_write_reg(wilc, WILC_GLB_RESET_0, reg);
1078         if (!ret) {
1079                 release_bus(wilc, RELEASE_ALLOW_SLEEP);
1080                 return ret;
1081         }
1082
1083         do {
1084                 ret = wilc->hif_func->hif_read_reg(wilc,
1085                                                    WILC_GLB_RESET_0, &reg);
1086                 if (!ret) {
1087                         release_bus(wilc, RELEASE_ALLOW_SLEEP);
1088                         return ret;
1089                 }
1090
1091                 if ((reg & BIT(10))) {
1092                         reg &= ~BIT(10);
1093                         ret = wilc->hif_func->hif_write_reg(wilc,
1094                                                             WILC_GLB_RESET_0,
1095                                                             reg);
1096                         timeout--;
1097                 } else {
1098                         ret = wilc->hif_func->hif_read_reg(wilc,
1099                                                            WILC_GLB_RESET_0,
1100                                                            &reg);
1101                         if (!ret) {
1102                                 release_bus(wilc, RELEASE_ALLOW_SLEEP);
1103                                 return ret;
1104                         }
1105                         break;
1106                 }
1107
1108         } while (timeout);
1109         reg = (BIT(0) | BIT(1) | BIT(2) | BIT(3) | BIT(8) | BIT(9) | BIT(26) |
1110                BIT(29) | BIT(30) | BIT(31));
1111
1112         wilc->hif_func->hif_write_reg(wilc, WILC_GLB_RESET_0, reg);
1113         reg = (u32)~BIT(10);
1114
1115         ret = wilc->hif_func->hif_write_reg(wilc, WILC_GLB_RESET_0, reg);
1116
1117         release_bus(wilc, RELEASE_ALLOW_SLEEP);
1118
1119         return ret;
1120 }
1121
1122 void wilc_wlan_cleanup(struct net_device *dev)
1123 {
1124         struct txq_entry_t *tqe;
1125         struct rxq_entry_t *rqe;
1126         u32 reg = 0;
1127         int ret;
1128         struct wilc_vif *vif;
1129         struct wilc *wilc;
1130
1131         vif = netdev_priv(dev);
1132         wilc = vif->wilc;
1133
1134         wilc->quit = 1;
1135         do {
1136                 tqe = wilc_wlan_txq_remove_from_head(dev);
1137                 if (!tqe)
1138                         break;
1139                 if (tqe->tx_complete_func)
1140                         tqe->tx_complete_func(tqe->priv, 0);
1141                 kfree(tqe);
1142         } while (1);
1143
1144         do {
1145                 rqe = wilc_wlan_rxq_remove(wilc);
1146                 if (!rqe)
1147                         break;
1148                 kfree(rqe);
1149         } while (1);
1150
1151         kfree(wilc->rx_buffer);
1152         wilc->rx_buffer = NULL;
1153         kfree(wilc->tx_buffer);
1154         wilc->tx_buffer = NULL;
1155
1156         acquire_bus(wilc, ACQUIRE_AND_WAKEUP);
1157
1158         ret = wilc->hif_func->hif_read_reg(wilc, WILC_GP_REG_0, &reg);
1159         if (!ret)
1160                 release_bus(wilc, RELEASE_ALLOW_SLEEP);
1161
1162         ret = wilc->hif_func->hif_write_reg(wilc, WILC_GP_REG_0,
1163                                         (reg | ABORT_INT));
1164         if (!ret)
1165                 release_bus(wilc, RELEASE_ALLOW_SLEEP);
1166
1167         release_bus(wilc, RELEASE_ALLOW_SLEEP);
1168         wilc->hif_func->hif_deinit(NULL);
1169 }
1170
1171 static int wilc_wlan_cfg_commit(struct wilc_vif *vif, int type,
1172                                 u32 drv_handler)
1173 {
1174         struct wilc *wilc = vif->wilc;
1175         struct wilc_cfg_frame *cfg = &wilc->cfg_frame;
1176         int total_len = wilc->cfg_frame_offset + 4 + DRIVER_HANDLER_SIZE;
1177         int seq_no = wilc->cfg_seq_no % 256;
1178         int driver_handler = (u32)drv_handler;
1179
1180         if (type == WILC_CFG_SET)
1181                 cfg->wid_header[0] = 'W';
1182         else
1183                 cfg->wid_header[0] = 'Q';
1184         cfg->wid_header[1] = seq_no;
1185         cfg->wid_header[2] = (u8)total_len;
1186         cfg->wid_header[3] = (u8)(total_len >> 8);
1187         cfg->wid_header[4] = (u8)driver_handler;
1188         cfg->wid_header[5] = (u8)(driver_handler >> 8);
1189         cfg->wid_header[6] = (u8)(driver_handler >> 16);
1190         cfg->wid_header[7] = (u8)(driver_handler >> 24);
1191         wilc->cfg_seq_no = seq_no;
1192
1193         if (!wilc_wlan_txq_add_cfg_pkt(vif, &cfg->wid_header[0], total_len))
1194                 return -1;
1195
1196         return 0;
1197 }
1198
1199 int wilc_wlan_cfg_set(struct wilc_vif *vif, int start, u16 wid, u8 *buffer,
1200                       u32 buffer_size, int commit, u32 drv_handler)
1201 {
1202         u32 offset;
1203         int ret_size;
1204         struct wilc *wilc = vif->wilc;
1205
1206         if (wilc->cfg_frame_in_use)
1207                 return 0;
1208
1209         if (start)
1210                 wilc->cfg_frame_offset = 0;
1211
1212         offset = wilc->cfg_frame_offset;
1213         ret_size = wilc_wlan_cfg_set_wid(wilc->cfg_frame.frame, offset,
1214                                          wid, buffer, buffer_size);
1215         offset += ret_size;
1216         wilc->cfg_frame_offset = offset;
1217
1218         if (commit) {
1219                 netdev_dbg(vif->ndev,
1220                            "[WILC]PACKET Commit with sequence number %d\n",
1221                            wilc->cfg_seq_no);
1222                 netdev_dbg(vif->ndev, "Processing cfg_set()\n");
1223                 wilc->cfg_frame_in_use = 1;
1224
1225                 if (wilc_wlan_cfg_commit(vif, WILC_CFG_SET, drv_handler))
1226                         ret_size = 0;
1227
1228                 if (!wait_for_completion_timeout(&wilc->cfg_event,
1229                                         msecs_to_jiffies(CFG_PKTS_TIMEOUT))) {
1230                         netdev_dbg(vif->ndev, "Set Timed Out\n");
1231                         ret_size = 0;
1232                 }
1233
1234                 wilc->cfg_frame_in_use = 0;
1235                 wilc->cfg_frame_offset = 0;
1236                 wilc->cfg_seq_no += 1;
1237         }
1238
1239         return ret_size;
1240 }
1241
1242 int wilc_wlan_cfg_get(struct wilc_vif *vif, int start, u16 wid, int commit,
1243                       u32 drv_handler)
1244 {
1245         u32 offset;
1246         int ret_size;
1247         struct wilc *wilc = vif->wilc;
1248
1249         if (wilc->cfg_frame_in_use)
1250                 return 0;
1251
1252         if (start)
1253                 wilc->cfg_frame_offset = 0;
1254
1255         offset = wilc->cfg_frame_offset;
1256         ret_size = wilc_wlan_cfg_get_wid(wilc->cfg_frame.frame, offset, wid);
1257         offset += ret_size;
1258         wilc->cfg_frame_offset = offset;
1259
1260         if (commit) {
1261                 wilc->cfg_frame_in_use = 1;
1262
1263                 if (wilc_wlan_cfg_commit(vif, WILC_CFG_QUERY, drv_handler))
1264                         ret_size = 0;
1265
1266                 if (!wait_for_completion_timeout(&wilc->cfg_event,
1267                                         msecs_to_jiffies(CFG_PKTS_TIMEOUT))) {
1268                         netdev_dbg(vif->ndev, "Get Timed Out\n");
1269                         ret_size = 0;
1270                 }
1271                 wilc->cfg_frame_in_use = 0;
1272                 wilc->cfg_frame_offset = 0;
1273                 wilc->cfg_seq_no += 1;
1274         }
1275
1276         return ret_size;
1277 }
1278
1279 int wilc_wlan_cfg_get_val(u16 wid, u8 *buffer, u32 buffer_size)
1280 {
1281         return wilc_wlan_cfg_get_wid_value(wid, buffer, buffer_size);
1282 }
1283
1284 int wilc_send_config_pkt(struct wilc_vif *vif, u8 mode, struct wid *wids,
1285                          u32 count, u32 drv)
1286 {
1287         int i;
1288         int ret = 0;
1289
1290         if (mode == GET_CFG) {
1291                 for (i = 0; i < count; i++) {
1292                         if (!wilc_wlan_cfg_get(vif, !i,
1293                                                wids[i].id,
1294                                                (i == count - 1),
1295                                                drv)) {
1296                                 ret = -ETIMEDOUT;
1297                                 break;
1298                         }
1299                 }
1300                 for (i = 0; i < count; i++) {
1301                         wids[i].size = wilc_wlan_cfg_get_val(wids[i].id,
1302                                                              wids[i].val,
1303                                                              wids[i].size);
1304                 }
1305         } else if (mode == SET_CFG) {
1306                 for (i = 0; i < count; i++) {
1307                         if (!wilc_wlan_cfg_set(vif, !i,
1308                                                wids[i].id,
1309                                                wids[i].val,
1310                                                wids[i].size,
1311                                                (i == count - 1),
1312                                                drv)) {
1313                                 ret = -ETIMEDOUT;
1314                                 break;
1315                         }
1316                 }
1317         }
1318
1319         return ret;
1320 }
1321
1322 static u32 init_chip(struct net_device *dev)
1323 {
1324         u32 chipid;
1325         u32 reg, ret = 0;
1326         struct wilc_vif *vif;
1327         struct wilc *wilc;
1328
1329         vif = netdev_priv(dev);
1330         wilc = vif->wilc;
1331
1332         acquire_bus(wilc, ACQUIRE_ONLY);
1333
1334         chipid = wilc_get_chipid(wilc, true);
1335
1336         if ((chipid & 0xfff) != 0xa0) {
1337                 ret = wilc->hif_func->hif_read_reg(wilc, 0x1118, &reg);
1338                 if (!ret) {
1339                         netdev_err(dev, "fail read reg 0x1118\n");
1340                         return ret;
1341                 }
1342                 reg |= BIT(0);
1343                 ret = wilc->hif_func->hif_write_reg(wilc, 0x1118, reg);
1344                 if (!ret) {
1345                         netdev_err(dev, "fail write reg 0x1118\n");
1346                         return ret;
1347                 }
1348                 ret = wilc->hif_func->hif_write_reg(wilc, 0xc0000, 0x71);
1349                 if (!ret) {
1350                         netdev_err(dev, "fail write reg 0xc0000\n");
1351                         return ret;
1352                 }
1353         }
1354
1355         release_bus(wilc, RELEASE_ONLY);
1356
1357         return ret;
1358 }
1359
1360 u32 wilc_get_chipid(struct wilc *wilc, bool update)
1361 {
1362         static u32 chipid;
1363         u32 tempchipid = 0;
1364         u32 rfrevid = 0;
1365
1366         if (chipid == 0 || update) {
1367                 wilc->hif_func->hif_read_reg(wilc, 0x1000, &tempchipid);
1368                 wilc->hif_func->hif_read_reg(wilc, 0x13f4, &rfrevid);
1369                 if (!ISWILC1000(tempchipid)) {
1370                         chipid = 0;
1371                         return chipid;
1372                 }
1373                 if (tempchipid == 0x1002a0) {
1374                         if (rfrevid != 0x1)
1375                                 tempchipid = 0x1002a1;
1376                 } else if (tempchipid == 0x1002b0) {
1377                         if (rfrevid == 0x4)
1378                                 tempchipid = 0x1002b1;
1379                         else if (rfrevid != 0x3)
1380                                 tempchipid = 0x1002b2;
1381                 }
1382
1383                 chipid = tempchipid;
1384         }
1385         return chipid;
1386 }
1387
1388 int wilc_wlan_init(struct net_device *dev)
1389 {
1390         int ret = 0;
1391         struct wilc_vif *vif = netdev_priv(dev);
1392         struct wilc *wilc;
1393
1394         wilc = vif->wilc;
1395
1396         wilc->quit = 0;
1397
1398         if (!wilc->hif_func->hif_init(wilc, false)) {
1399                 ret = -EIO;
1400                 goto _fail_;
1401         }
1402
1403         if (!wilc_wlan_cfg_init()) {
1404                 ret = -ENOBUFS;
1405                 goto _fail_;
1406         }
1407
1408         if (!wilc->tx_buffer)
1409                 wilc->tx_buffer = kmalloc(LINUX_TX_SIZE, GFP_KERNEL);
1410
1411         if (!wilc->tx_buffer) {
1412                 ret = -ENOBUFS;
1413                 goto _fail_;
1414         }
1415
1416         if (!wilc->rx_buffer)
1417                 wilc->rx_buffer = kmalloc(LINUX_RX_SIZE, GFP_KERNEL);
1418
1419         if (!wilc->rx_buffer) {
1420                 ret = -ENOBUFS;
1421                 goto _fail_;
1422         }
1423
1424         if (!init_chip(dev)) {
1425                 ret = -EIO;
1426                 goto _fail_;
1427         }
1428
1429         return 1;
1430
1431 _fail_:
1432
1433         kfree(wilc->rx_buffer);
1434         wilc->rx_buffer = NULL;
1435         kfree(wilc->tx_buffer);
1436         wilc->tx_buffer = NULL;
1437
1438         return ret;
1439 }