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1 /*
2  * Broadcom Dongle Host Driver (DHD), Linux-specific network interface
3  * Basically selected code segments from usb-cdc.c and usb-rndis.c
4  *
5  * Copyright (C) 1999-2010, Broadcom Corporation
6  *
7  *      Unless you and Broadcom execute a separate written software license
8  * agreement governing use of this software, this software is licensed to you
9  * under the terms of the GNU General Public License version 2 (the "GPL"),
10  * available at http://www.broadcom.com/licenses/GPLv2.php, with the
11  * following added to such license:
12  *
13  *      As a special exception, the copyright holders of this software give you
14  * permission to link this software with independent modules, and to copy and
15  * distribute the resulting executable under terms of your choice, provided that
16  * you also meet, for each linked independent module, the terms and conditions of
17  * the license of that module.  An independent module is a module which is not
18  * derived from this software.  The special exception does not apply to any
19  * modifications of the software.
20  *
21  *      Notwithstanding the above, under no circumstances may you combine this
22  * software in any way with any other Broadcom software provided under a license
23  * other than the GPL, without Broadcom's express prior written consent.
24  *
25  * $Id: dhd_linux.c,v 1.65.4.9.2.12.2.104 2010/08/20 19:15:40 Exp $
26  */
27 
28 #ifdef CONFIG_WIFI_CONTROL_FUNC
29 #include <linux/platform_device.h>
30 #endif
31 #include <typedefs.h>
32 #include <linuxver.h>
33 #include <osl.h>
34 
35 #include <linux/init.h>
36 #include <linux/kernel.h>
37 #include <linux/slab.h>
38 #include <linux/skbuff.h>
39 #include <linux/netdevice.h>
40 #include <linux/etherdevice.h>
41 #include <linux/random.h>
42 #include <linux/spinlock.h>
43 #include <linux/ethtool.h>
44 #include <linux/fcntl.h>
45 #include <linux/fs.h>
46 
47 #include <asm/uaccess.h>
48 #include <asm/unaligned.h>
49 
50 #include <epivers.h>
51 #include <bcmutils.h>
52 #include <bcmendian.h>
53 
54 #include <proto/ethernet.h>
55 #include <dngl_stats.h>
56 #include <dhd.h>
57 #include <dhd_bus.h>
58 #include <dhd_proto.h>
59 #include <dhd_dbg.h>
60 #include <wl_iw.h>
61 #ifdef CONFIG_HAS_WAKELOCK
62 #include <linux/wakelock.h>
63 #endif
64 #if defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC)
65 #include <linux/wlan_plat.h>
66 
67 struct semaphore wifi_control_sem;
68 
69 struct dhd_bus *g_bus;
70 
71 static struct wifi_platform_data *wifi_control_data = NULL;
72 static struct resource *wifi_irqres = NULL;
73 
wifi_get_irq_number(unsigned long * irq_flags_ptr)74 int wifi_get_irq_number(unsigned long *irq_flags_ptr)
75 {
76 	if (wifi_irqres) {
77 		*irq_flags_ptr = wifi_irqres->flags & IRQF_TRIGGER_MASK;
78 		return (int)wifi_irqres->start;
79 	}
80 #ifdef CUSTOM_OOB_GPIO_NUM
81 	return CUSTOM_OOB_GPIO_NUM;
82 #else
83 	return -1;
84 #endif
85 }
86 
wifi_set_carddetect(int on)87 int wifi_set_carddetect(int on)
88 {
89 	printk("%s = %d\n", __FUNCTION__, on);
90 	if (wifi_control_data && wifi_control_data->set_carddetect) {
91 		wifi_control_data->set_carddetect(on);
92 	}
93 	return 0;
94 }
95 
wifi_set_power(int on,unsigned long msec)96 int wifi_set_power(int on, unsigned long msec)
97 {
98 	printk("%s = %d\n", __FUNCTION__, on);
99 	if (wifi_control_data && wifi_control_data->set_power) {
100 		wifi_control_data->set_power(on);
101 	}
102 	if (msec)
103 		mdelay(msec);
104 	return 0;
105 }
106 
wifi_set_reset(int on,unsigned long msec)107 int wifi_set_reset(int on, unsigned long msec)
108 {
109 	printk("%s = %d\n", __FUNCTION__, on);
110 	if (wifi_control_data && wifi_control_data->set_reset) {
111 		wifi_control_data->set_reset(on);
112 	}
113 	if (msec)
114 		mdelay(msec);
115 	return 0;
116 }
117 
wifi_get_mac_addr(unsigned char * buf)118 int wifi_get_mac_addr(unsigned char *buf)
119 {
120 	printk("%s\n", __FUNCTION__);
121 	if (!buf)
122 		return -EINVAL;
123 	if (wifi_control_data && wifi_control_data->get_mac_addr) {
124 		return wifi_control_data->get_mac_addr(buf);
125 	}
126 	return -EOPNOTSUPP;
127 }
128 
wifi_probe(struct platform_device * pdev)129 static int wifi_probe(struct platform_device *pdev)
130 {
131 	struct wifi_platform_data *wifi_ctrl =
132 		(struct wifi_platform_data *)(pdev->dev.platform_data);
133 
134 	DHD_TRACE(("## %s\n", __FUNCTION__));
135 	wifi_irqres = platform_get_resource_byname(pdev, IORESOURCE_IRQ, "bcm4329_wlan_irq");
136 	wifi_control_data = wifi_ctrl;
137 
138 	wifi_set_power(1, 0);	/* Power On */
139 	wifi_set_carddetect(1);	/* CardDetect (0->1) */
140 
141 	up(&wifi_control_sem);
142 	return 0;
143 }
144 
wifi_remove(struct platform_device * pdev)145 static int wifi_remove(struct platform_device *pdev)
146 {
147 	struct wifi_platform_data *wifi_ctrl =
148 		(struct wifi_platform_data *)(pdev->dev.platform_data);
149 
150 	DHD_TRACE(("## %s\n", __FUNCTION__));
151 	wifi_control_data = wifi_ctrl;
152 
153 	wifi_set_power(0, 0);	/* Power Off */
154 	wifi_set_carddetect(0);	/* CardDetect (1->0) */
155 
156 	up(&wifi_control_sem);
157 	return 0;
158 }
wifi_suspend(struct platform_device * pdev,pm_message_t state)159 static int wifi_suspend(struct platform_device *pdev, pm_message_t state)
160 {
161 	DHD_TRACE(("##> %s\n", __FUNCTION__));
162 	return 0;
163 }
wifi_resume(struct platform_device * pdev)164 static int wifi_resume(struct platform_device *pdev)
165 {
166 	DHD_TRACE(("##> %s\n", __FUNCTION__));
167 	return 0;
168 }
169 
170 static struct platform_driver wifi_device = {
171 	.probe          = wifi_probe,
172 	.remove         = wifi_remove,
173 	.suspend        = wifi_suspend,
174 	.resume         = wifi_resume,
175 	.driver         = {
176 	.name   = "bcm4329_wlan",
177 	}
178 };
179 
wifi_add_dev(void)180 int wifi_add_dev(void)
181 {
182 	DHD_TRACE(("## Calling platform_driver_register\n"));
183 	return platform_driver_register(&wifi_device);
184 }
185 
wifi_del_dev(void)186 void wifi_del_dev(void)
187 {
188 	DHD_TRACE(("## Unregister platform_driver_register\n"));
189 	platform_driver_unregister(&wifi_device);
190 }
191 #endif /* defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC) */
192 
193 
194 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && defined(CONFIG_PM_SLEEP)
195 #include <linux/suspend.h>
196 volatile bool dhd_mmc_suspend = FALSE;
197 DECLARE_WAIT_QUEUE_HEAD(dhd_dpc_wait);
198 #endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && defined(CONFIG_PM_SLEEP) */
199 
200 #if defined(OOB_INTR_ONLY)
201 extern void dhd_enable_oob_intr(struct dhd_bus *bus, bool enable);
202 #endif /* defined(OOB_INTR_ONLY) */
203 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0))
204 MODULE_LICENSE("GPL v2");
205 #endif /* LinuxVer */
206 
207 #if LINUX_VERSION_CODE == KERNEL_VERSION(2, 6, 15)
208 const char *
print_tainted()209 print_tainted()
210 {
211 	return "";
212 }
213 #endif	/* LINUX_VERSION_CODE == KERNEL_VERSION(2, 6, 15) */
214 
215 /* Linux wireless extension support */
216 #if defined(CONFIG_WIRELESS_EXT)
217 #include <wl_iw.h>
218 #endif /* defined(CONFIG_WIRELESS_EXT) */
219 
220 #if defined(CONFIG_HAS_EARLYSUSPEND)
221 #include <linux/earlysuspend.h>
222 extern int dhdcdc_set_ioctl(dhd_pub_t *dhd, int ifidx, uint cmd, void *buf, uint len);
223 #endif /* defined(CONFIG_HAS_EARLYSUSPEND) */
224 
225 #ifdef PKT_FILTER_SUPPORT
226 extern void dhd_pktfilter_offload_set(dhd_pub_t * dhd, char *arg);
227 extern void dhd_pktfilter_offload_enable(dhd_pub_t * dhd, char *arg, int enable, int master_mode);
228 #endif
229 
230 /* Interface control information */
231 typedef struct dhd_if {
232 	struct dhd_info *info;			/* back pointer to dhd_info */
233 	/* OS/stack specifics */
234 	struct net_device *net;
235 	struct net_device_stats stats;
236 	int 			idx;			/* iface idx in dongle */
237 	int 			state;			/* interface state */
238 	uint 			subunit;		/* subunit */
239 	uint8			mac_addr[ETHER_ADDR_LEN];	/* assigned MAC address */
240 	bool			attached;		/* Delayed attachment when unset */
241 	bool			txflowcontrol;	/* Per interface flow control indicator */
242 	char			name[IFNAMSIZ+1]; /* linux interface name */
243 } dhd_if_t;
244 
245 /* Local private structure (extension of pub) */
246 typedef struct dhd_info {
247 #if defined(CONFIG_WIRELESS_EXT)
248 	wl_iw_t		iw;		/* wireless extensions state (must be first) */
249 #endif /* defined(CONFIG_WIRELESS_EXT) */
250 
251 	dhd_pub_t pub;
252 
253 	/* OS/stack specifics */
254 	dhd_if_t *iflist[DHD_MAX_IFS];
255 
256 	struct semaphore proto_sem;
257 	wait_queue_head_t ioctl_resp_wait;
258 	struct timer_list timer;
259 	bool wd_timer_valid;
260 	struct tasklet_struct tasklet;
261 	spinlock_t	sdlock;
262 	spinlock_t	txqlock;
263 	/* Thread based operation */
264 	bool threads_only;
265 	struct semaphore sdsem;
266 	long watchdog_pid;
267 	struct semaphore watchdog_sem;
268 	struct completion watchdog_exited;
269 	long dpc_pid;
270 	struct semaphore dpc_sem;
271 	struct completion dpc_exited;
272 
273 	/* Wakelocks */
274 #ifdef CONFIG_HAS_WAKELOCK
275 	struct wake_lock wl_wifi;   /* Wifi wakelock */
276 	struct wake_lock wl_rxwake; /* Wifi rx wakelock */
277 #endif
278 	spinlock_t wl_lock;
279 	int wl_count;
280 	int wl_packet;
281 
282 	int hang_was_sent;
283 
284 	/* Thread to issue ioctl for multicast */
285 	long sysioc_pid;
286 	struct semaphore sysioc_sem;
287 	struct completion sysioc_exited;
288 	bool set_multicast;
289 	bool set_macaddress;
290 	struct ether_addr macvalue;
291 	wait_queue_head_t ctrl_wait;
292 	atomic_t pend_8021x_cnt;
293 
294 #ifdef CONFIG_HAS_EARLYSUSPEND
295 	struct early_suspend early_suspend;
296 #endif /* CONFIG_HAS_EARLYSUSPEND */
297 } dhd_info_t;
298 
299 /* Definitions to provide path to the firmware and nvram
300  * example nvram_path[MOD_PARAM_PATHLEN]="/projects/wlan/nvram.txt"
301  */
302 char firmware_path[MOD_PARAM_PATHLEN];
303 char nvram_path[MOD_PARAM_PATHLEN];
304 
305 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27))
306 struct semaphore dhd_registration_sem;
307 #define DHD_REGISTRATION_TIMEOUT  8000  /* msec : allowed time to finished dhd registration */
308 #endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) */
309 /* load firmware and/or nvram values from the filesystem */
310 module_param_string(firmware_path, firmware_path, MOD_PARAM_PATHLEN, 0);
311 module_param_string(nvram_path, nvram_path, MOD_PARAM_PATHLEN, 0);
312 
313 /* Error bits */
314 module_param(dhd_msg_level, int, 0);
315 
316 /* Spawn a thread for system ioctls (set mac, set mcast) */
317 uint dhd_sysioc = TRUE;
318 module_param(dhd_sysioc, uint, 0);
319 
320 /* Watchdog interval */
321 uint dhd_watchdog_ms = 10;
322 module_param(dhd_watchdog_ms, uint, 0);
323 
324 #ifdef DHD_DEBUG
325 /* Console poll interval */
326 uint dhd_console_ms = 0;
327 module_param(dhd_console_ms, uint, 0);
328 #endif /* DHD_DEBUG */
329 
330 /* ARP offload agent mode : Enable ARP Host Auto-Reply and ARP Peer Auto-Reply */
331 uint dhd_arp_mode = 0xb;
332 module_param(dhd_arp_mode, uint, 0);
333 
334 /* ARP offload enable */
335 uint dhd_arp_enable = TRUE;
336 module_param(dhd_arp_enable, uint, 0);
337 
338 /* Global Pkt filter enable control */
339 uint dhd_pkt_filter_enable = TRUE;
340 module_param(dhd_pkt_filter_enable, uint, 0);
341 
342 /*  Pkt filter init setup */
343 uint dhd_pkt_filter_init = 0;
344 module_param(dhd_pkt_filter_init, uint, 0);
345 
346 /* Pkt filter mode control */
347 uint dhd_master_mode = TRUE;
348 module_param(dhd_master_mode, uint, 1);
349 
350 /* Watchdog thread priority, -1 to use kernel timer */
351 int dhd_watchdog_prio = 97;
352 module_param(dhd_watchdog_prio, int, 0);
353 
354 /* DPC thread priority, -1 to use tasklet */
355 int dhd_dpc_prio = 98;
356 module_param(dhd_dpc_prio, int, 0);
357 
358 /* DPC thread priority, -1 to use tasklet */
359 extern int dhd_dongle_memsize;
360 module_param(dhd_dongle_memsize, int, 0);
361 
362 /* Control fw roaming */
363 #ifdef CUSTOMER_HW2
364 uint dhd_roam = 0;
365 #else
366 uint dhd_roam = 1;
367 #endif
368 
369 /* Control radio state */
370 uint dhd_radio_up = 1;
371 
372 /* Network inteface name */
373 char iface_name[IFNAMSIZ];
374 module_param_string(iface_name, iface_name, IFNAMSIZ, 0);
375 
376 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0))
377 #define DAEMONIZE(a) daemonize(a); \
378 	allow_signal(SIGKILL); \
379 	allow_signal(SIGTERM);
380 #else /* Linux 2.4 (w/o preemption patch) */
381 #define RAISE_RX_SOFTIRQ() \
382 	cpu_raise_softirq(smp_processor_id(), NET_RX_SOFTIRQ)
383 #define DAEMONIZE(a) daemonize(); \
384 	do { if (a) \
385 		strncpy(current->comm, a, MIN(sizeof(current->comm), (strlen(a) + 1))); \
386 	} while (0);
387 #endif /* LINUX_VERSION_CODE  */
388 
389 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0))
390 #define BLOCKABLE()	(!in_atomic())
391 #else
392 #define BLOCKABLE()	(!in_interrupt())
393 #endif
394 
395 /* The following are specific to the SDIO dongle */
396 
397 /* IOCTL response timeout */
398 int dhd_ioctl_timeout_msec = IOCTL_RESP_TIMEOUT;
399 
400 /* Idle timeout for backplane clock */
401 int dhd_idletime = DHD_IDLETIME_TICKS;
402 module_param(dhd_idletime, int, 0);
403 
404 /* Use polling */
405 uint dhd_poll = FALSE;
406 module_param(dhd_poll, uint, 0);
407 
408 /* Use interrupts */
409 uint dhd_intr = TRUE;
410 module_param(dhd_intr, uint, 0);
411 
412 /* SDIO Drive Strength (in milliamps) */
413 uint dhd_sdiod_drive_strength = 6;
414 module_param(dhd_sdiod_drive_strength, uint, 0);
415 
416 /* Tx/Rx bounds */
417 extern uint dhd_txbound;
418 extern uint dhd_rxbound;
419 module_param(dhd_txbound, uint, 0);
420 module_param(dhd_rxbound, uint, 0);
421 
422 /* Deferred transmits */
423 extern uint dhd_deferred_tx;
424 module_param(dhd_deferred_tx, uint, 0);
425 
426 
427 
428 #ifdef SDTEST
429 /* Echo packet generator (pkts/s) */
430 uint dhd_pktgen = 0;
431 module_param(dhd_pktgen, uint, 0);
432 
433 /* Echo packet len (0 => sawtooth, max 2040) */
434 uint dhd_pktgen_len = 0;
435 module_param(dhd_pktgen_len, uint, 0);
436 #endif
437 
438 /* Version string to report */
439 #ifdef DHD_DEBUG
440 #ifndef SRCBASE
441 #define SRCBASE        "drivers/net/wireless/bcm4329"
442 #endif
443 #define DHD_COMPILED "\nCompiled in " SRCBASE
444 #else
445 #define DHD_COMPILED
446 #endif
447 
448 static char dhd_version[] = "Dongle Host Driver, version " EPI_VERSION_STR
449 #ifdef DHD_DEBUG
450 "\nCompiled in " SRCBASE " on " __DATE__ " at " __TIME__
451 #endif
452 ;
453 
454 
455 #if defined(CONFIG_WIRELESS_EXT)
456 struct iw_statistics *dhd_get_wireless_stats(struct net_device *dev);
457 #endif /* defined(CONFIG_WIRELESS_EXT) */
458 
459 static void dhd_dpc(ulong data);
460 /* forward decl */
461 extern int dhd_wait_pend8021x(struct net_device *dev);
462 
463 #ifdef TOE
464 #ifndef BDC
465 #error TOE requires BDC
466 #endif /* !BDC */
467 static int dhd_toe_get(dhd_info_t *dhd, int idx, uint32 *toe_ol);
468 static int dhd_toe_set(dhd_info_t *dhd, int idx, uint32 toe_ol);
469 #endif /* TOE */
470 
471 static int dhd_wl_host_event(dhd_info_t *dhd, int *ifidx, void *pktdata,
472                              wl_event_msg_t *event_ptr, void **data_ptr);
473 
474 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && defined(CONFIG_PM_SLEEP)
dhd_sleep_pm_callback(struct notifier_block * nfb,unsigned long action,void * ignored)475 static int dhd_sleep_pm_callback(struct notifier_block *nfb, unsigned long action, void *ignored)
476 {
477 	int ret = NOTIFY_DONE;
478 
479 	switch (action) {
480 	case PM_HIBERNATION_PREPARE:
481 	case PM_SUSPEND_PREPARE:
482 		dhd_mmc_suspend = TRUE;
483 		ret = NOTIFY_OK;
484 		break;
485 	case PM_POST_HIBERNATION:
486 	case PM_POST_SUSPEND:
487 		dhd_mmc_suspend = FALSE;
488 		ret = NOTIFY_OK;
489 		break;
490 	}
491 	smp_mb();
492 	return ret;
493 }
494 
495 static struct notifier_block dhd_sleep_pm_notifier = {
496 	.notifier_call = dhd_sleep_pm_callback,
497 	.priority = 0
498 };
499 extern int register_pm_notifier(struct notifier_block *nb);
500 extern int unregister_pm_notifier(struct notifier_block *nb);
501 #endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && defined(CONFIG_PM_SLEEP) */
502 
dhd_set_packet_filter(int value,dhd_pub_t * dhd)503 static void dhd_set_packet_filter(int value, dhd_pub_t *dhd)
504 {
505 #ifdef PKT_FILTER_SUPPORT
506 	DHD_TRACE(("%s: %d\n", __FUNCTION__, value));
507 	/* 1 - Enable packet filter, only allow unicast packet to send up */
508 	/* 0 - Disable packet filter */
509 	if (dhd_pkt_filter_enable) {
510 		int i;
511 
512 		for (i = 0; i < dhd->pktfilter_count; i++) {
513 			dhd_pktfilter_offload_set(dhd, dhd->pktfilter[i]);
514 			dhd_pktfilter_offload_enable(dhd, dhd->pktfilter[i],
515 					value, dhd_master_mode);
516 		}
517 	}
518 #endif
519 }
520 
521 #if defined(CONFIG_HAS_EARLYSUSPEND)
dhd_set_suspend(int value,dhd_pub_t * dhd)522 static int dhd_set_suspend(int value, dhd_pub_t *dhd)
523 {
524 	int power_mode = PM_MAX;
525 	/* wl_pkt_filter_enable_t	enable_parm; */
526 	char iovbuf[32];
527 	int bcn_li_dtim = 3;
528 #ifdef CUSTOMER_HW2
529 	uint roamvar = 1;
530 #endif /* CUSTOMER_HW2 */
531 
532 	DHD_TRACE(("%s: enter, value = %d in_suspend = %d\n",
533 			__FUNCTION__, value, dhd->in_suspend));
534 
535 	if (dhd && dhd->up) {
536 		if (value && dhd->in_suspend) {
537 
538 			/* Kernel suspended */
539 				DHD_TRACE(("%s: force extra Suspend setting \n", __FUNCTION__));
540 
541 			dhdcdc_set_ioctl(dhd, 0, WLC_SET_PM,
542 				(char *)&power_mode, sizeof(power_mode));
543 
544 			/* Enable packet filter, only allow unicast packet to send up */
545 			dhd_set_packet_filter(1, dhd);
546 
547 				/* if dtim skip setup as default force it to wake each thrid dtim
548 				 *  for better power saving.
549 				 *  Note that side effect is chance to miss BC/MC packet
550 				*/
551 				if ((dhd->dtim_skip == 0) || (dhd->dtim_skip == 1))
552 					bcn_li_dtim = 3;
553 				else
554 					bcn_li_dtim = dhd->dtim_skip;
555 			bcm_mkiovar("bcn_li_dtim", (char *)&bcn_li_dtim,
556 				4, iovbuf, sizeof(iovbuf));
557 			dhdcdc_set_ioctl(dhd, 0, WLC_SET_VAR, iovbuf, sizeof(iovbuf));
558 #ifdef CUSTOMER_HW2
559 			/* Disable build-in roaming to allowed ext supplicant to take of roaming */
560 			bcm_mkiovar("roam_off", (char *)&roamvar, 4, iovbuf, sizeof(iovbuf));
561 			dhdcdc_set_ioctl(dhd, 0, WLC_SET_VAR, iovbuf, sizeof(iovbuf));
562 #endif /* CUSTOMER_HW2 */
563 		} else {
564 
565 			/* Kernel resumed  */
566 				DHD_TRACE(("%s: Remove extra suspend setting \n", __FUNCTION__));
567 
568 			power_mode = PM_FAST;
569 			dhdcdc_set_ioctl(dhd, 0, WLC_SET_PM, (char *)&power_mode,
570 				sizeof(power_mode));
571 
572 			/* disable pkt filter */
573 			dhd_set_packet_filter(0, dhd);
574 
575 				/* restore pre-suspend setting for dtim_skip */
576 				bcm_mkiovar("bcn_li_dtim", (char *)&dhd->dtim_skip,
577 					4, iovbuf, sizeof(iovbuf));
578 
579 				dhdcdc_set_ioctl(dhd, 0, WLC_SET_VAR, iovbuf, sizeof(iovbuf));
580 #ifdef CUSTOMER_HW2
581 			roamvar = dhd_roam;
582 			bcm_mkiovar("roam_off", (char *)&roamvar, 4, iovbuf, sizeof(iovbuf));
583 			dhdcdc_set_ioctl(dhd, 0, WLC_SET_VAR, iovbuf, sizeof(iovbuf));
584 #endif /* CUSTOMER_HW2 */
585 		}
586 	}
587 
588 	return 0;
589 }
590 
dhd_suspend_resume_helper(struct dhd_info * dhd,int val)591 static void dhd_suspend_resume_helper(struct dhd_info *dhd, int val)
592 {
593 	dhd_pub_t *dhdp = &dhd->pub;
594 
595 	dhd_os_wake_lock(dhdp);
596 	dhd_os_proto_block(dhdp);
597 	/* Set flag when early suspend was called */
598 	dhdp->in_suspend = val;
599 	if (!dhdp->suspend_disable_flag)
600 		dhd_set_suspend(val, dhdp);
601 	dhd_os_proto_unblock(dhdp);
602 	dhd_os_wake_unlock(dhdp);
603 }
604 
dhd_early_suspend(struct early_suspend * h)605 static void dhd_early_suspend(struct early_suspend *h)
606 {
607 	struct dhd_info *dhd = container_of(h, struct dhd_info, early_suspend);
608 
609 	DHD_TRACE(("%s: enter\n", __FUNCTION__));
610 
611 	if (dhd)
612 		dhd_suspend_resume_helper(dhd, 1);
613 }
614 
dhd_late_resume(struct early_suspend * h)615 static void dhd_late_resume(struct early_suspend *h)
616 {
617 	struct dhd_info *dhd = container_of(h, struct dhd_info, early_suspend);
618 
619 	DHD_TRACE(("%s: enter\n", __FUNCTION__));
620 
621 	if (dhd)
622 		dhd_suspend_resume_helper(dhd, 0);
623 }
624 #endif /* defined(CONFIG_HAS_EARLYSUSPEND) */
625 
626 /*
627  * Generalized timeout mechanism.  Uses spin sleep with exponential back-off until
628  * the sleep time reaches one jiffy, then switches over to task delay.  Usage:
629  *
630  *      dhd_timeout_start(&tmo, usec);
631  *      while (!dhd_timeout_expired(&tmo))
632  *              if (poll_something())
633  *                      break;
634  *      if (dhd_timeout_expired(&tmo))
635  *              fatal();
636  */
637 
638 void
dhd_timeout_start(dhd_timeout_t * tmo,uint usec)639 dhd_timeout_start(dhd_timeout_t *tmo, uint usec)
640 {
641 	tmo->limit = usec;
642 	tmo->increment = 0;
643 	tmo->elapsed = 0;
644 	tmo->tick = 1000000 / HZ;
645 }
646 
647 int
dhd_timeout_expired(dhd_timeout_t * tmo)648 dhd_timeout_expired(dhd_timeout_t *tmo)
649 {
650 	/* Does nothing the first call */
651 	if (tmo->increment == 0) {
652 		tmo->increment = 1;
653 		return 0;
654 	}
655 
656 	if (tmo->elapsed >= tmo->limit)
657 		return 1;
658 
659 	/* Add the delay that's about to take place */
660 	tmo->elapsed += tmo->increment;
661 
662 	if (tmo->increment < tmo->tick) {
663 		OSL_DELAY(tmo->increment);
664 		tmo->increment *= 2;
665 		if (tmo->increment > tmo->tick)
666 			tmo->increment = tmo->tick;
667 	} else {
668 		wait_queue_head_t delay_wait;
669 		DECLARE_WAITQUEUE(wait, current);
670 		int pending;
671 		init_waitqueue_head(&delay_wait);
672 		add_wait_queue(&delay_wait, &wait);
673 		set_current_state(TASK_INTERRUPTIBLE);
674 		schedule_timeout(1);
675 		pending = signal_pending(current);
676 		remove_wait_queue(&delay_wait, &wait);
677 		set_current_state(TASK_RUNNING);
678 		if (pending)
679 			return 1;	/* Interrupted */
680 	}
681 
682 	return 0;
683 }
684 
685 static int
dhd_net2idx(dhd_info_t * dhd,struct net_device * net)686 dhd_net2idx(dhd_info_t *dhd, struct net_device *net)
687 {
688 	int i = 0;
689 
690 	ASSERT(dhd);
691 	while (i < DHD_MAX_IFS) {
692 		if (dhd->iflist[i] && (dhd->iflist[i]->net == net))
693 			return i;
694 		i++;
695 	}
696 
697 	return DHD_BAD_IF;
698 }
699 
700 int
dhd_ifname2idx(dhd_info_t * dhd,char * name)701 dhd_ifname2idx(dhd_info_t *dhd, char *name)
702 {
703 	int i = DHD_MAX_IFS;
704 
705 	ASSERT(dhd);
706 
707 	if (name == NULL || *name == '\0')
708 		return 0;
709 
710 	while (--i > 0)
711 		if (dhd->iflist[i] && !strncmp(dhd->iflist[i]->name, name, IFNAMSIZ))
712 				break;
713 
714 	DHD_TRACE(("%s: return idx %d for \"%s\"\n", __FUNCTION__, i, name));
715 
716 	return i;	/* default - the primary interface */
717 }
718 
719 char *
dhd_ifname(dhd_pub_t * dhdp,int ifidx)720 dhd_ifname(dhd_pub_t *dhdp, int ifidx)
721 {
722 	dhd_info_t *dhd = (dhd_info_t *)dhdp->info;
723 
724 	ASSERT(dhd);
725 
726 	if (ifidx < 0 || ifidx >= DHD_MAX_IFS) {
727 		DHD_ERROR(("%s: ifidx %d out of range\n", __FUNCTION__, ifidx));
728 		return "<if_bad>";
729 	}
730 
731 	if (dhd->iflist[ifidx] == NULL) {
732 		DHD_ERROR(("%s: null i/f %d\n", __FUNCTION__, ifidx));
733 		return "<if_null>";
734 	}
735 
736 	if (dhd->iflist[ifidx]->net)
737 		return dhd->iflist[ifidx]->net->name;
738 
739 	return "<if_none>";
740 }
741 
742 static void
_dhd_set_multicast_list(dhd_info_t * dhd,int ifidx)743 _dhd_set_multicast_list(dhd_info_t *dhd, int ifidx)
744 {
745 	struct net_device *dev;
746 #if LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 35)
747 	struct netdev_hw_addr *ha;
748 #else
749 	struct dev_mc_list *mclist;
750 #endif
751 	uint32 allmulti, cnt;
752 
753 	wl_ioctl_t ioc;
754 	char *buf, *bufp;
755 	uint buflen;
756 	int ret;
757 
758 	ASSERT(dhd && dhd->iflist[ifidx]);
759 	dev = dhd->iflist[ifidx]->net;
760 
761 	netif_addr_lock_bh(dev);
762 #if LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 35)
763 	cnt = netdev_mc_count(dev);
764 #else
765 	cnt = dev->mc_count;
766 #endif
767 	netif_addr_unlock_bh(dev);
768 
769 	/* Determine initial value of allmulti flag */
770 	allmulti = (dev->flags & IFF_ALLMULTI) ? TRUE : FALSE;
771 
772 	/* Send down the multicast list first. */
773 	buflen = sizeof("mcast_list") + sizeof(cnt) + (cnt * ETHER_ADDR_LEN);
774 	if (!(bufp = buf = MALLOC(dhd->pub.osh, buflen))) {
775 		DHD_ERROR(("%s: out of memory for mcast_list, cnt %d\n",
776 		           dhd_ifname(&dhd->pub, ifidx), cnt));
777 		return;
778 	}
779 
780 	strcpy(bufp, "mcast_list");
781 	bufp += strlen("mcast_list") + 1;
782 
783 	cnt = htol32(cnt);
784 	memcpy(bufp, &cnt, sizeof(cnt));
785 	bufp += sizeof(cnt);
786 
787 	netif_addr_lock_bh(dev);
788 #if LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 35)
789 	netdev_for_each_mc_addr(ha, dev) {
790 		if (!cnt)
791 			break;
792 		memcpy(bufp, ha->addr, ETHER_ADDR_LEN);
793 		bufp += ETHER_ADDR_LEN;
794 		cnt--;
795 	}
796 #else
797 	for (mclist = dev->mc_list;(mclist && (cnt > 0)); cnt--, mclist = mclist->next) {
798 		memcpy(bufp, (void *)mclist->dmi_addr, ETHER_ADDR_LEN);
799 		bufp += ETHER_ADDR_LEN;
800 	}
801 #endif
802 	netif_addr_unlock_bh(dev);
803 
804 	memset(&ioc, 0, sizeof(ioc));
805 	ioc.cmd = WLC_SET_VAR;
806 	ioc.buf = buf;
807 	ioc.len = buflen;
808 	ioc.set = TRUE;
809 
810 	ret = dhd_prot_ioctl(&dhd->pub, ifidx, &ioc, ioc.buf, ioc.len);
811 	if (ret < 0) {
812 		DHD_ERROR(("%s: set mcast_list failed, cnt %d\n",
813 			dhd_ifname(&dhd->pub, ifidx), cnt));
814 		allmulti = cnt ? TRUE : allmulti;
815 	}
816 
817 	MFREE(dhd->pub.osh, buf, buflen);
818 
819 	/* Now send the allmulti setting.  This is based on the setting in the
820 	 * net_device flags, but might be modified above to be turned on if we
821 	 * were trying to set some addresses and dongle rejected it...
822 	 */
823 
824 	buflen = sizeof("allmulti") + sizeof(allmulti);
825 	if (!(buf = MALLOC(dhd->pub.osh, buflen))) {
826 		DHD_ERROR(("%s: out of memory for allmulti\n", dhd_ifname(&dhd->pub, ifidx)));
827 		return;
828 	}
829 	allmulti = htol32(allmulti);
830 
831 	if (!bcm_mkiovar("allmulti", (void*)&allmulti, sizeof(allmulti), buf, buflen)) {
832 		DHD_ERROR(("%s: mkiovar failed for allmulti, datalen %d buflen %u\n",
833 		           dhd_ifname(&dhd->pub, ifidx), (int)sizeof(allmulti), buflen));
834 		MFREE(dhd->pub.osh, buf, buflen);
835 		return;
836 	}
837 
838 
839 	memset(&ioc, 0, sizeof(ioc));
840 	ioc.cmd = WLC_SET_VAR;
841 	ioc.buf = buf;
842 	ioc.len = buflen;
843 	ioc.set = TRUE;
844 
845 	ret = dhd_prot_ioctl(&dhd->pub, ifidx, &ioc, ioc.buf, ioc.len);
846 	if (ret < 0) {
847 		DHD_ERROR(("%s: set allmulti %d failed\n",
848 		           dhd_ifname(&dhd->pub, ifidx), ltoh32(allmulti)));
849 	}
850 
851 	MFREE(dhd->pub.osh, buf, buflen);
852 
853 	/* Finally, pick up the PROMISC flag as well, like the NIC driver does */
854 
855 	allmulti = (dev->flags & IFF_PROMISC) ? TRUE : FALSE;
856 	allmulti = htol32(allmulti);
857 
858 	memset(&ioc, 0, sizeof(ioc));
859 	ioc.cmd = WLC_SET_PROMISC;
860 	ioc.buf = &allmulti;
861 	ioc.len = sizeof(allmulti);
862 	ioc.set = TRUE;
863 
864 	ret = dhd_prot_ioctl(&dhd->pub, ifidx, &ioc, ioc.buf, ioc.len);
865 	if (ret < 0) {
866 		DHD_ERROR(("%s: set promisc %d failed\n",
867 		           dhd_ifname(&dhd->pub, ifidx), ltoh32(allmulti)));
868 	}
869 }
870 
871 static int
_dhd_set_mac_address(dhd_info_t * dhd,int ifidx,struct ether_addr * addr)872 _dhd_set_mac_address(dhd_info_t *dhd, int ifidx, struct ether_addr *addr)
873 {
874 	char buf[32];
875 	wl_ioctl_t ioc;
876 	int ret;
877 
878 	DHD_TRACE(("%s enter\n", __FUNCTION__));
879 	if (!bcm_mkiovar("cur_etheraddr", (char*)addr, ETHER_ADDR_LEN, buf, 32)) {
880 		DHD_ERROR(("%s: mkiovar failed for cur_etheraddr\n", dhd_ifname(&dhd->pub, ifidx)));
881 		return -1;
882 	}
883 	memset(&ioc, 0, sizeof(ioc));
884 	ioc.cmd = WLC_SET_VAR;
885 	ioc.buf = buf;
886 	ioc.len = 32;
887 	ioc.set = TRUE;
888 
889 	ret = dhd_prot_ioctl(&dhd->pub, ifidx, &ioc, ioc.buf, ioc.len);
890 	if (ret < 0) {
891 		DHD_ERROR(("%s: set cur_etheraddr failed\n", dhd_ifname(&dhd->pub, ifidx)));
892 	} else {
893 		memcpy(dhd->iflist[ifidx]->net->dev_addr, addr, ETHER_ADDR_LEN);
894 	}
895 
896 	return ret;
897 }
898 
899 #ifdef SOFTAP
900 extern struct net_device *ap_net_dev;
901 #endif
902 
903 static void
dhd_op_if(dhd_if_t * ifp)904 dhd_op_if(dhd_if_t *ifp)
905 {
906 	dhd_info_t	*dhd;
907 	int			ret = 0, err = 0;
908 
909 	ASSERT(ifp && ifp->info && ifp->idx);	/* Virtual interfaces only */
910 
911 	dhd = ifp->info;
912 
913 	DHD_TRACE(("%s: idx %d, state %d\n", __FUNCTION__, ifp->idx, ifp->state));
914 
915 	switch (ifp->state) {
916 	case WLC_E_IF_ADD:
917 		/*
918 		 * Delete the existing interface before overwriting it
919 		 * in case we missed the WLC_E_IF_DEL event.
920 		 */
921 		if (ifp->net != NULL) {
922 			DHD_ERROR(("%s: ERROR: netdev:%s already exists, try free & unregister \n",
923 			 __FUNCTION__, ifp->net->name));
924 			netif_stop_queue(ifp->net);
925 			unregister_netdev(ifp->net);
926 			free_netdev(ifp->net);
927 		}
928 		/* Allocate etherdev, including space for private structure */
929 		if (!(ifp->net = alloc_etherdev(sizeof(dhd)))) {
930 			DHD_ERROR(("%s: OOM - alloc_etherdev\n", __FUNCTION__));
931 			ret = -ENOMEM;
932 		}
933 		if (ret == 0) {
934 			strcpy(ifp->net->name, ifp->name);
935 			memcpy(netdev_priv(ifp->net), &dhd, sizeof(dhd));
936 			if ((err = dhd_net_attach(&dhd->pub, ifp->idx)) != 0) {
937 				DHD_ERROR(("%s: dhd_net_attach failed, err %d\n",
938 					__FUNCTION__, err));
939 				ret = -EOPNOTSUPP;
940 			} else {
941 #ifdef SOFTAP
942 				 /* semaphore that the soft AP CODE waits on */
943 				extern struct semaphore  ap_eth_sema;
944 
945 				/* save ptr to wl0.1 netdev for use in wl_iw.c  */
946 				ap_net_dev = ifp->net;
947 				 /* signal to the SOFTAP 'sleeper' thread, wl0.1 is ready */
948 				up(&ap_eth_sema);
949 #endif
950 				DHD_TRACE(("\n ==== pid:%x, net_device for if:%s created ===\n\n",
951 					current->pid, ifp->net->name));
952 				ifp->state = 0;
953 			}
954 		}
955 		break;
956 	case WLC_E_IF_DEL:
957 		if (ifp->net != NULL) {
958 			DHD_TRACE(("\n%s: got 'WLC_E_IF_DEL' state\n", __FUNCTION__));
959 			netif_stop_queue(ifp->net);
960 			unregister_netdev(ifp->net);
961 			ret = DHD_DEL_IF;	/* Make sure the free_netdev() is called */
962 		}
963 		break;
964 	default:
965 		DHD_ERROR(("%s: bad op %d\n", __FUNCTION__, ifp->state));
966 		ASSERT(!ifp->state);
967 		break;
968 	}
969 
970 	if (ret < 0) {
971 		if (ifp->net) {
972 			free_netdev(ifp->net);
973 		}
974 		dhd->iflist[ifp->idx] = NULL;
975 		MFREE(dhd->pub.osh, ifp, sizeof(*ifp));
976 #ifdef SOFTAP
977 		if (ifp->net == ap_net_dev)
978 			ap_net_dev = NULL;     /* NULL SOFTAP global as well */
979 #endif /*  SOFTAP */
980 	}
981 }
982 
983 static int
_dhd_sysioc_thread(void * data)984 _dhd_sysioc_thread(void *data)
985 {
986 	dhd_info_t *dhd = (dhd_info_t *)data;
987 	int i;
988 #ifdef SOFTAP
989 	bool in_ap = FALSE;
990 #endif
991 
992 	DAEMONIZE("dhd_sysioc");
993 
994 	while (down_interruptible(&dhd->sysioc_sem) == 0) {
995 		dhd_os_wake_lock(&dhd->pub);
996 		for (i = 0; i < DHD_MAX_IFS; i++) {
997 			if (dhd->iflist[i]) {
998 #ifdef SOFTAP
999 				in_ap = (ap_net_dev != NULL);
1000 #endif /* SOFTAP */
1001 				if (dhd->iflist[i]->state)
1002 					dhd_op_if(dhd->iflist[i]);
1003 #ifdef SOFTAP
1004 				if (dhd->iflist[i] == NULL) {
1005 					DHD_TRACE(("%s: interface %d just been removed!\n\n", __FUNCTION__, i));
1006 					continue;
1007 				}
1008 
1009 				if (in_ap && dhd->set_macaddress) {
1010 					DHD_TRACE(("attempt to set MAC for %s in AP Mode blocked.\n", dhd->iflist[i]->net->name));
1011 					dhd->set_macaddress = FALSE;
1012 					continue;
1013 				}
1014 
1015 				if (in_ap && dhd->set_multicast)  {
1016 					DHD_TRACE(("attempt to set MULTICAST list for %s in AP Mode blocked.\n", dhd->iflist[i]->net->name));
1017 					dhd->set_multicast = FALSE;
1018 					continue;
1019 				}
1020 #endif /* SOFTAP */
1021 				if (dhd->set_multicast) {
1022 					dhd->set_multicast = FALSE;
1023 					_dhd_set_multicast_list(dhd, i);
1024 				}
1025 				if (dhd->set_macaddress) {
1026 					dhd->set_macaddress = FALSE;
1027 					_dhd_set_mac_address(dhd, i, &dhd->macvalue);
1028 				}
1029 			}
1030 		}
1031 		dhd_os_wake_unlock(&dhd->pub);
1032 	}
1033 	complete_and_exit(&dhd->sysioc_exited, 0);
1034 }
1035 
1036 static int
dhd_set_mac_address(struct net_device * dev,void * addr)1037 dhd_set_mac_address(struct net_device *dev, void *addr)
1038 {
1039 	int ret = 0;
1040 
1041 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
1042 	struct sockaddr *sa = (struct sockaddr *)addr;
1043 	int ifidx;
1044 
1045 	ifidx = dhd_net2idx(dhd, dev);
1046 	if (ifidx == DHD_BAD_IF)
1047 		return -1;
1048 
1049 	ASSERT(dhd->sysioc_pid >= 0);
1050 	memcpy(&dhd->macvalue, sa->sa_data, ETHER_ADDR_LEN);
1051 	dhd->set_macaddress = TRUE;
1052 	up(&dhd->sysioc_sem);
1053 
1054 	return ret;
1055 }
1056 
1057 static void
dhd_set_multicast_list(struct net_device * dev)1058 dhd_set_multicast_list(struct net_device *dev)
1059 {
1060 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
1061 	int ifidx;
1062 
1063 	ifidx = dhd_net2idx(dhd, dev);
1064 	if (ifidx == DHD_BAD_IF)
1065 		return;
1066 
1067 	ASSERT(dhd->sysioc_pid >= 0);
1068 	dhd->set_multicast = TRUE;
1069 	up(&dhd->sysioc_sem);
1070 }
1071 
1072 int
dhd_sendpkt(dhd_pub_t * dhdp,int ifidx,void * pktbuf)1073 dhd_sendpkt(dhd_pub_t *dhdp, int ifidx, void *pktbuf)
1074 {
1075 	int ret;
1076 	dhd_info_t *dhd = (dhd_info_t *)(dhdp->info);
1077 
1078 	/* Reject if down */
1079 	if (!dhdp->up || (dhdp->busstate == DHD_BUS_DOWN)) {
1080 		return -ENODEV;
1081 	}
1082 
1083 	/* Update multicast statistic */
1084 	if (PKTLEN(dhdp->osh, pktbuf) >= ETHER_ADDR_LEN) {
1085 		uint8 *pktdata = (uint8 *)PKTDATA(dhdp->osh, pktbuf);
1086 		struct ether_header *eh = (struct ether_header *)pktdata;
1087 
1088 		if (ETHER_ISMULTI(eh->ether_dhost))
1089 			dhdp->tx_multicast++;
1090 		if (ntoh16(eh->ether_type) == ETHER_TYPE_802_1X)
1091 			atomic_inc(&dhd->pend_8021x_cnt);
1092 	}
1093 
1094 	/* Look into the packet and update the packet priority */
1095 	if ((PKTPRIO(pktbuf) == 0))
1096 		pktsetprio(pktbuf, FALSE);
1097 
1098 	/* If the protocol uses a data header, apply it */
1099 	dhd_prot_hdrpush(dhdp, ifidx, pktbuf);
1100 
1101 	/* Use bus module to send data frame */
1102 #ifdef BCMDBUS
1103 	ret = dbus_send_pkt(dhdp->dbus, pktbuf, NULL /* pktinfo */);
1104 #else
1105 	ret = dhd_bus_txdata(dhdp->bus, pktbuf);
1106 #endif /* BCMDBUS */
1107 
1108 	return ret;
1109 }
1110 
1111 static int
dhd_start_xmit(struct sk_buff * skb,struct net_device * net)1112 dhd_start_xmit(struct sk_buff *skb, struct net_device *net)
1113 {
1114 	int ret;
1115 	void *pktbuf;
1116 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(net);
1117 	int ifidx;
1118 
1119 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
1120 
1121 	dhd_os_wake_lock(&dhd->pub);
1122 
1123 	/* Reject if down */
1124 	if (!dhd->pub.up || (dhd->pub.busstate == DHD_BUS_DOWN)) {
1125 		DHD_ERROR(("%s: xmit rejected pub.up=%d busstate=%d\n",
1126 			 __FUNCTION__, dhd->pub.up, dhd->pub.busstate));
1127 		netif_stop_queue(net);
1128 		/* Send Event when bus down detected during data session */
1129 		if (dhd->pub.busstate == DHD_BUS_DOWN)  {
1130 			DHD_ERROR(("%s: Event HANG send up\n", __FUNCTION__));
1131 			net_os_send_hang_message(net);
1132 		}
1133 		dhd_os_wake_unlock(&dhd->pub);
1134 		return -ENODEV;
1135 	}
1136 
1137 	ifidx = dhd_net2idx(dhd, net);
1138 	if (ifidx == DHD_BAD_IF) {
1139 		DHD_ERROR(("%s: bad ifidx %d\n", __FUNCTION__, ifidx));
1140 		netif_stop_queue(net);
1141 		dhd_os_wake_unlock(&dhd->pub);
1142 		return -ENODEV;
1143 	}
1144 
1145 	/* Make sure there's enough room for any header */
1146 	if (skb_headroom(skb) < dhd->pub.hdrlen) {
1147 		struct sk_buff *skb2;
1148 
1149 		DHD_INFO(("%s: insufficient headroom\n",
1150 		          dhd_ifname(&dhd->pub, ifidx)));
1151 		dhd->pub.tx_realloc++;
1152 		skb2 = skb_realloc_headroom(skb, dhd->pub.hdrlen);
1153 		dev_kfree_skb(skb);
1154 		if ((skb = skb2) == NULL) {
1155 			DHD_ERROR(("%s: skb_realloc_headroom failed\n",
1156 			           dhd_ifname(&dhd->pub, ifidx)));
1157 			ret = -ENOMEM;
1158 			goto done;
1159 		}
1160 	}
1161 
1162 	/* Convert to packet */
1163 	if (!(pktbuf = PKTFRMNATIVE(dhd->pub.osh, skb))) {
1164 		DHD_ERROR(("%s: PKTFRMNATIVE failed\n",
1165 		           dhd_ifname(&dhd->pub, ifidx)));
1166 		dev_kfree_skb_any(skb);
1167 		ret = -ENOMEM;
1168 		goto done;
1169 	}
1170 
1171 	ret = dhd_sendpkt(&dhd->pub, ifidx, pktbuf);
1172 
1173 done:
1174 	if (ret)
1175 		dhd->pub.dstats.tx_dropped++;
1176 	else
1177 		dhd->pub.tx_packets++;
1178 
1179 	dhd_os_wake_unlock(&dhd->pub);
1180 
1181 	/* Return ok: we always eat the packet */
1182 	return 0;
1183 }
1184 
1185 void
dhd_txflowcontrol(dhd_pub_t * dhdp,int ifidx,bool state)1186 dhd_txflowcontrol(dhd_pub_t *dhdp, int ifidx, bool state)
1187 {
1188 	struct net_device *net;
1189 	dhd_info_t *dhd = dhdp->info;
1190 
1191 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
1192 
1193 	dhdp->txoff = state;
1194 	ASSERT(dhd && dhd->iflist[ifidx]);
1195 	net = dhd->iflist[ifidx]->net;
1196 	if (state == ON)
1197 		netif_stop_queue(net);
1198 	else
1199 		netif_wake_queue(net);
1200 }
1201 
1202 void
dhd_rx_frame(dhd_pub_t * dhdp,int ifidx,void * pktbuf,int numpkt)1203 dhd_rx_frame(dhd_pub_t *dhdp, int ifidx, void *pktbuf, int numpkt)
1204 {
1205 	dhd_info_t *dhd = (dhd_info_t *)dhdp->info;
1206 	struct sk_buff *skb;
1207 	uchar *eth;
1208 	uint len;
1209 	void * data, *pnext, *save_pktbuf;
1210 	int i;
1211 	dhd_if_t *ifp;
1212 	wl_event_msg_t event;
1213 
1214 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
1215 
1216 	save_pktbuf = pktbuf;
1217 
1218 	for (i = 0; pktbuf && i < numpkt; i++, pktbuf = pnext) {
1219 
1220 		pnext = PKTNEXT(dhdp->osh, pktbuf);
1221 		PKTSETNEXT(wl->sh.osh, pktbuf, NULL);
1222 
1223 
1224 		skb = PKTTONATIVE(dhdp->osh, pktbuf);
1225 
1226 		/* Get the protocol, maintain skb around eth_type_trans()
1227 		 * The main reason for this hack is for the limitation of
1228 		 * Linux 2.4 where 'eth_type_trans' uses the 'net->hard_header_len'
1229 		 * to perform skb_pull inside vs ETH_HLEN. Since to avoid
1230 		 * coping of the packet coming from the network stack to add
1231 		 * BDC, Hardware header etc, during network interface registration
1232 		 * we set the 'net->hard_header_len' to ETH_HLEN + extra space required
1233 		 * for BDC, Hardware header etc. and not just the ETH_HLEN
1234 		 */
1235 		eth = skb->data;
1236 		len = skb->len;
1237 
1238 		ifp = dhd->iflist[ifidx];
1239 		if (ifp == NULL)
1240 			ifp = dhd->iflist[0];
1241 
1242 		ASSERT(ifp);
1243 		skb->dev = ifp->net;
1244 		skb->protocol = eth_type_trans(skb, skb->dev);
1245 
1246 		if (skb->pkt_type == PACKET_MULTICAST) {
1247 			dhd->pub.rx_multicast++;
1248 		}
1249 
1250 		skb->data = eth;
1251 		skb->len = len;
1252 
1253 		/* Strip header, count, deliver upward */
1254 		skb_pull(skb, ETH_HLEN);
1255 
1256 		/* Process special event packets and then discard them */
1257 		if (ntoh16(skb->protocol) == ETHER_TYPE_BRCM)
1258 			dhd_wl_host_event(dhd, &ifidx,
1259 #if LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 24)
1260 			skb->mac_header,
1261 #else
1262 			skb->mac.raw,
1263 #endif
1264 			&event,
1265 			&data);
1266 
1267 		ASSERT(ifidx < DHD_MAX_IFS && dhd->iflist[ifidx]);
1268 		if (dhd->iflist[ifidx] && !dhd->iflist[ifidx]->state)
1269 			ifp = dhd->iflist[ifidx];
1270 
1271 		if (ifp->net)
1272 			ifp->net->last_rx = jiffies;
1273 
1274 		dhdp->dstats.rx_bytes += skb->len;
1275 		dhdp->rx_packets++; /* Local count */
1276 
1277 		if (in_interrupt()) {
1278 			netif_rx(skb);
1279 		} else {
1280 			/* If the receive is not processed inside an ISR,
1281 			 * the softirqd must be woken explicitly to service
1282 			 * the NET_RX_SOFTIRQ.  In 2.6 kernels, this is handled
1283 			 * by netif_rx_ni(), but in earlier kernels, we need
1284 			 * to do it manually.
1285 			 */
1286 #if LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0)
1287 			netif_rx_ni(skb);
1288 #else
1289 			ulong flags;
1290 			netif_rx(skb);
1291 			local_irq_save(flags);
1292 			RAISE_RX_SOFTIRQ();
1293 			local_irq_restore(flags);
1294 #endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0) */
1295 		}
1296 	}
1297 	dhd_os_wake_lock_timeout_enable(dhdp);
1298 }
1299 
1300 void
dhd_event(struct dhd_info * dhd,char * evpkt,int evlen,int ifidx)1301 dhd_event(struct dhd_info *dhd, char *evpkt, int evlen, int ifidx)
1302 {
1303 	/* Linux version has nothing to do */
1304 	return;
1305 }
1306 
1307 void
dhd_txcomplete(dhd_pub_t * dhdp,void * txp,bool success)1308 dhd_txcomplete(dhd_pub_t *dhdp, void *txp, bool success)
1309 {
1310 	uint ifidx;
1311 	dhd_info_t *dhd = (dhd_info_t *)(dhdp->info);
1312 	struct ether_header *eh;
1313 	uint16 type;
1314 
1315 	dhd_prot_hdrpull(dhdp, &ifidx, txp);
1316 
1317 	eh = (struct ether_header *)PKTDATA(dhdp->osh, txp);
1318 	type  = ntoh16(eh->ether_type);
1319 
1320 	if (type == ETHER_TYPE_802_1X)
1321 		atomic_dec(&dhd->pend_8021x_cnt);
1322 
1323 }
1324 
1325 static struct net_device_stats *
dhd_get_stats(struct net_device * net)1326 dhd_get_stats(struct net_device *net)
1327 {
1328 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(net);
1329 	dhd_if_t *ifp;
1330 	int ifidx;
1331 
1332 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
1333 
1334 	ifidx = dhd_net2idx(dhd, net);
1335 	if (ifidx == DHD_BAD_IF)
1336 		return NULL;
1337 
1338 	ifp = dhd->iflist[ifidx];
1339 	ASSERT(dhd && ifp);
1340 
1341 	if (dhd->pub.up) {
1342 		/* Use the protocol to get dongle stats */
1343 		dhd_prot_dstats(&dhd->pub);
1344 	}
1345 
1346 	/* Copy dongle stats to net device stats */
1347 	ifp->stats.rx_packets = dhd->pub.dstats.rx_packets;
1348 	ifp->stats.tx_packets = dhd->pub.dstats.tx_packets;
1349 	ifp->stats.rx_bytes = dhd->pub.dstats.rx_bytes;
1350 	ifp->stats.tx_bytes = dhd->pub.dstats.tx_bytes;
1351 	ifp->stats.rx_errors = dhd->pub.dstats.rx_errors;
1352 	ifp->stats.tx_errors = dhd->pub.dstats.tx_errors;
1353 	ifp->stats.rx_dropped = dhd->pub.dstats.rx_dropped;
1354 	ifp->stats.tx_dropped = dhd->pub.dstats.tx_dropped;
1355 	ifp->stats.multicast = dhd->pub.dstats.multicast;
1356 
1357 	return &ifp->stats;
1358 }
1359 
1360 static int
dhd_watchdog_thread(void * data)1361 dhd_watchdog_thread(void *data)
1362 {
1363 	dhd_info_t *dhd = (dhd_info_t *)data;
1364 
1365 	/* This thread doesn't need any user-level access,
1366 	 * so get rid of all our resources
1367 	 */
1368 #ifdef DHD_SCHED
1369 	if (dhd_watchdog_prio > 0) {
1370 		struct sched_param param;
1371 		param.sched_priority = (dhd_watchdog_prio < MAX_RT_PRIO)?
1372 			dhd_watchdog_prio:(MAX_RT_PRIO-1);
1373 		setScheduler(current, SCHED_FIFO, &param);
1374 	}
1375 #endif /* DHD_SCHED */
1376 
1377 	DAEMONIZE("dhd_watchdog");
1378 
1379 	/* Run until signal received */
1380 	while (1) {
1381 		if (down_interruptible (&dhd->watchdog_sem) == 0) {
1382 
1383 			if (dhd->pub.dongle_reset == FALSE) {
1384 				/* Call the bus module watchdog */
1385 				dhd_bus_watchdog(&dhd->pub);
1386 			}
1387 			/* Count the tick for reference */
1388 			dhd->pub.tickcnt++;
1389 
1390 			/* Reschedule the watchdog */
1391 			if (dhd->wd_timer_valid)
1392 				mod_timer(&dhd->timer, jiffies + dhd_watchdog_ms * HZ / 1000);
1393 
1394 			dhd_os_wake_unlock(&dhd->pub);
1395 		}
1396 		else
1397 			break;
1398 	}
1399 
1400 	complete_and_exit(&dhd->watchdog_exited, 0);
1401 }
1402 
1403 static void
dhd_watchdog(ulong data)1404 dhd_watchdog(ulong data)
1405 {
1406 	dhd_info_t *dhd = (dhd_info_t *)data;
1407 
1408 	dhd_os_wake_lock(&dhd->pub);
1409 	if (dhd->watchdog_pid >= 0) {
1410 		up(&dhd->watchdog_sem);
1411 		return;
1412 	}
1413 
1414 	/* Call the bus module watchdog */
1415 	dhd_bus_watchdog(&dhd->pub);
1416 
1417 	/* Count the tick for reference */
1418 	dhd->pub.tickcnt++;
1419 
1420 	/* Reschedule the watchdog */
1421 	if (dhd->wd_timer_valid)
1422 		mod_timer(&dhd->timer, jiffies + dhd_watchdog_ms * HZ / 1000);
1423 	dhd_os_wake_unlock(&dhd->pub);
1424 }
1425 
1426 static int
dhd_dpc_thread(void * data)1427 dhd_dpc_thread(void *data)
1428 {
1429 	dhd_info_t *dhd = (dhd_info_t *)data;
1430 
1431 	/* This thread doesn't need any user-level access,
1432 	 * so get rid of all our resources
1433 	 */
1434 #ifdef DHD_SCHED
1435 	if (dhd_dpc_prio > 0)
1436 	{
1437 		struct sched_param param;
1438 		param.sched_priority = (dhd_dpc_prio < MAX_RT_PRIO)?dhd_dpc_prio:(MAX_RT_PRIO-1);
1439 		setScheduler(current, SCHED_FIFO, &param);
1440 	}
1441 #endif /* DHD_SCHED */
1442 
1443 	DAEMONIZE("dhd_dpc");
1444 
1445 	/* Run until signal received */
1446 	while (1) {
1447 		if (down_interruptible(&dhd->dpc_sem) == 0) {
1448 			/* Call bus dpc unless it indicated down (then clean stop) */
1449 			if (dhd->pub.busstate != DHD_BUS_DOWN) {
1450 				if (dhd_bus_dpc(dhd->pub.bus)) {
1451 					up(&dhd->dpc_sem);
1452 				}
1453 				else {
1454 					dhd_os_wake_unlock(&dhd->pub);
1455 				}
1456 			} else {
1457 				dhd_bus_stop(dhd->pub.bus, TRUE);
1458 				dhd_os_wake_unlock(&dhd->pub);
1459 			}
1460 		}
1461 		else
1462 			break;
1463 	}
1464 
1465 	complete_and_exit(&dhd->dpc_exited, 0);
1466 }
1467 
1468 static void
dhd_dpc(ulong data)1469 dhd_dpc(ulong data)
1470 {
1471 	dhd_info_t *dhd;
1472 
1473 	dhd = (dhd_info_t *)data;
1474 
1475 	/* Call bus dpc unless it indicated down (then clean stop) */
1476 	if (dhd->pub.busstate != DHD_BUS_DOWN) {
1477 		if (dhd_bus_dpc(dhd->pub.bus))
1478 			tasklet_schedule(&dhd->tasklet);
1479 	} else {
1480 		dhd_bus_stop(dhd->pub.bus, TRUE);
1481 	}
1482 }
1483 
1484 void
dhd_sched_dpc(dhd_pub_t * dhdp)1485 dhd_sched_dpc(dhd_pub_t *dhdp)
1486 {
1487 	dhd_info_t *dhd = (dhd_info_t *)dhdp->info;
1488 
1489 	dhd_os_wake_lock(dhdp);
1490 	if (dhd->dpc_pid >= 0) {
1491 		up(&dhd->dpc_sem);
1492 		return;
1493 	}
1494 
1495 	tasklet_schedule(&dhd->tasklet);
1496 }
1497 
1498 #ifdef TOE
1499 /* Retrieve current toe component enables, which are kept as a bitmap in toe_ol iovar */
1500 static int
dhd_toe_get(dhd_info_t * dhd,int ifidx,uint32 * toe_ol)1501 dhd_toe_get(dhd_info_t *dhd, int ifidx, uint32 *toe_ol)
1502 {
1503 	wl_ioctl_t ioc;
1504 	char buf[32];
1505 	int ret;
1506 
1507 	memset(&ioc, 0, sizeof(ioc));
1508 
1509 	ioc.cmd = WLC_GET_VAR;
1510 	ioc.buf = buf;
1511 	ioc.len = (uint)sizeof(buf);
1512 	ioc.set = FALSE;
1513 
1514 	strcpy(buf, "toe_ol");
1515 	if ((ret = dhd_prot_ioctl(&dhd->pub, ifidx, &ioc, ioc.buf, ioc.len)) < 0) {
1516 		/* Check for older dongle image that doesn't support toe_ol */
1517 		if (ret == -EIO) {
1518 			DHD_ERROR(("%s: toe not supported by device\n",
1519 				dhd_ifname(&dhd->pub, ifidx)));
1520 			return -EOPNOTSUPP;
1521 		}
1522 
1523 		DHD_INFO(("%s: could not get toe_ol: ret=%d\n", dhd_ifname(&dhd->pub, ifidx), ret));
1524 		return ret;
1525 	}
1526 
1527 	memcpy(toe_ol, buf, sizeof(uint32));
1528 	return 0;
1529 }
1530 
1531 /* Set current toe component enables in toe_ol iovar, and set toe global enable iovar */
1532 static int
dhd_toe_set(dhd_info_t * dhd,int ifidx,uint32 toe_ol)1533 dhd_toe_set(dhd_info_t *dhd, int ifidx, uint32 toe_ol)
1534 {
1535 	wl_ioctl_t ioc;
1536 	char buf[32];
1537 	int toe, ret;
1538 
1539 	memset(&ioc, 0, sizeof(ioc));
1540 
1541 	ioc.cmd = WLC_SET_VAR;
1542 	ioc.buf = buf;
1543 	ioc.len = (uint)sizeof(buf);
1544 	ioc.set = TRUE;
1545 
1546 	/* Set toe_ol as requested */
1547 
1548 	strcpy(buf, "toe_ol");
1549 	memcpy(&buf[sizeof("toe_ol")], &toe_ol, sizeof(uint32));
1550 
1551 	if ((ret = dhd_prot_ioctl(&dhd->pub, ifidx, &ioc, ioc.buf, ioc.len)) < 0) {
1552 		DHD_ERROR(("%s: could not set toe_ol: ret=%d\n",
1553 			dhd_ifname(&dhd->pub, ifidx), ret));
1554 		return ret;
1555 	}
1556 
1557 	/* Enable toe globally only if any components are enabled. */
1558 
1559 	toe = (toe_ol != 0);
1560 
1561 	strcpy(buf, "toe");
1562 	memcpy(&buf[sizeof("toe")], &toe, sizeof(uint32));
1563 
1564 	if ((ret = dhd_prot_ioctl(&dhd->pub, ifidx, &ioc, ioc.buf, ioc.len)) < 0) {
1565 		DHD_ERROR(("%s: could not set toe: ret=%d\n", dhd_ifname(&dhd->pub, ifidx), ret));
1566 		return ret;
1567 	}
1568 
1569 	return 0;
1570 }
1571 #endif /* TOE */
1572 
1573 #if LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 24)
dhd_ethtool_get_drvinfo(struct net_device * net,struct ethtool_drvinfo * info)1574 static void dhd_ethtool_get_drvinfo(struct net_device *net,
1575                                     struct ethtool_drvinfo *info)
1576 {
1577 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(net);
1578 
1579 	sprintf(info->driver, "wl");
1580 	sprintf(info->version, "%lu", dhd->pub.drv_version);
1581 }
1582 
1583 struct ethtool_ops dhd_ethtool_ops = {
1584 	.get_drvinfo = dhd_ethtool_get_drvinfo
1585 };
1586 #endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 24) */
1587 
1588 
1589 #if LINUX_VERSION_CODE > KERNEL_VERSION(2, 4, 2)
1590 static int
dhd_ethtool(dhd_info_t * dhd,void * uaddr)1591 dhd_ethtool(dhd_info_t *dhd, void *uaddr)
1592 {
1593 	struct ethtool_drvinfo info;
1594 	char drvname[sizeof(info.driver)];
1595 	uint32 cmd;
1596 #ifdef TOE
1597 	struct ethtool_value edata;
1598 	uint32 toe_cmpnt, csum_dir;
1599 	int ret;
1600 #endif
1601 
1602 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
1603 
1604 	/* all ethtool calls start with a cmd word */
1605 	if (copy_from_user(&cmd, uaddr, sizeof (uint32)))
1606 		return -EFAULT;
1607 
1608 	switch (cmd) {
1609 	case ETHTOOL_GDRVINFO:
1610 		/* Copy out any request driver name */
1611 		if (copy_from_user(&info, uaddr, sizeof(info)))
1612 			return -EFAULT;
1613 		strncpy(drvname, info.driver, sizeof(info.driver));
1614 		drvname[sizeof(info.driver)-1] = '\0';
1615 
1616 		/* clear struct for return */
1617 		memset(&info, 0, sizeof(info));
1618 		info.cmd = cmd;
1619 
1620 		/* if dhd requested, identify ourselves */
1621 		if (strcmp(drvname, "?dhd") == 0) {
1622 			sprintf(info.driver, "dhd");
1623 			strcpy(info.version, EPI_VERSION_STR);
1624 		}
1625 
1626 		/* otherwise, require dongle to be up */
1627 		else if (!dhd->pub.up) {
1628 			DHD_ERROR(("%s: dongle is not up\n", __FUNCTION__));
1629 			return -ENODEV;
1630 		}
1631 
1632 		/* finally, report dongle driver type */
1633 		else if (dhd->pub.iswl)
1634 			sprintf(info.driver, "wl");
1635 		else
1636 			sprintf(info.driver, "xx");
1637 
1638 		sprintf(info.version, "%lu", dhd->pub.drv_version);
1639 		if (copy_to_user(uaddr, &info, sizeof(info)))
1640 			return -EFAULT;
1641 		DHD_CTL(("%s: given %*s, returning %s\n", __FUNCTION__,
1642 		         (int)sizeof(drvname), drvname, info.driver));
1643 		break;
1644 
1645 #ifdef TOE
1646 	/* Get toe offload components from dongle */
1647 	case ETHTOOL_GRXCSUM:
1648 	case ETHTOOL_GTXCSUM:
1649 		if ((ret = dhd_toe_get(dhd, 0, &toe_cmpnt)) < 0)
1650 			return ret;
1651 
1652 		csum_dir = (cmd == ETHTOOL_GTXCSUM) ? TOE_TX_CSUM_OL : TOE_RX_CSUM_OL;
1653 
1654 		edata.cmd = cmd;
1655 		edata.data = (toe_cmpnt & csum_dir) ? 1 : 0;
1656 
1657 		if (copy_to_user(uaddr, &edata, sizeof(edata)))
1658 			return -EFAULT;
1659 		break;
1660 
1661 	/* Set toe offload components in dongle */
1662 	case ETHTOOL_SRXCSUM:
1663 	case ETHTOOL_STXCSUM:
1664 		if (copy_from_user(&edata, uaddr, sizeof(edata)))
1665 			return -EFAULT;
1666 
1667 		/* Read the current settings, update and write back */
1668 		if ((ret = dhd_toe_get(dhd, 0, &toe_cmpnt)) < 0)
1669 			return ret;
1670 
1671 		csum_dir = (cmd == ETHTOOL_STXCSUM) ? TOE_TX_CSUM_OL : TOE_RX_CSUM_OL;
1672 
1673 		if (edata.data != 0)
1674 			toe_cmpnt |= csum_dir;
1675 		else
1676 			toe_cmpnt &= ~csum_dir;
1677 
1678 		if ((ret = dhd_toe_set(dhd, 0, toe_cmpnt)) < 0)
1679 			return ret;
1680 
1681 		/* If setting TX checksum mode, tell Linux the new mode */
1682 		if (cmd == ETHTOOL_STXCSUM) {
1683 			if (edata.data)
1684 				dhd->iflist[0]->net->features |= NETIF_F_IP_CSUM;
1685 			else
1686 				dhd->iflist[0]->net->features &= ~NETIF_F_IP_CSUM;
1687 		}
1688 
1689 		break;
1690 #endif /* TOE */
1691 
1692 	default:
1693 		return -EOPNOTSUPP;
1694 	}
1695 
1696 	return 0;
1697 }
1698 #endif /* LINUX_VERSION_CODE > KERNEL_VERSION(2, 4, 2) */
1699 
1700 static int
dhd_ioctl_entry(struct net_device * net,struct ifreq * ifr,int cmd)1701 dhd_ioctl_entry(struct net_device *net, struct ifreq *ifr, int cmd)
1702 {
1703 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(net);
1704 	dhd_ioctl_t ioc;
1705 	int bcmerror = 0;
1706 	int buflen = 0;
1707 	void *buf = NULL;
1708 	uint driver = 0;
1709 	int ifidx;
1710 	bool is_set_key_cmd;
1711 	int ret;
1712 
1713 	dhd_os_wake_lock(&dhd->pub);
1714 
1715 	ifidx = dhd_net2idx(dhd, net);
1716 	DHD_TRACE(("%s: ifidx %d, cmd 0x%04x\n", __FUNCTION__, ifidx, cmd));
1717 
1718 	if (ifidx == DHD_BAD_IF) {
1719 		dhd_os_wake_unlock(&dhd->pub);
1720 		return -1;
1721 	}
1722 
1723 #if defined(CONFIG_WIRELESS_EXT)
1724 	/* linux wireless extensions */
1725 	if ((cmd >= SIOCIWFIRST) && (cmd <= SIOCIWLAST)) {
1726 		/* may recurse, do NOT lock */
1727 		ret = wl_iw_ioctl(net, ifr, cmd);
1728 		dhd_os_wake_unlock(&dhd->pub);
1729 		return ret;
1730 	}
1731 #endif /* defined(CONFIG_WIRELESS_EXT) */
1732 
1733 #if LINUX_VERSION_CODE > KERNEL_VERSION(2, 4, 2)
1734 	if (cmd == SIOCETHTOOL) {
1735 		ret = dhd_ethtool(dhd, (void*)ifr->ifr_data);
1736 		dhd_os_wake_unlock(&dhd->pub);
1737 		return ret;
1738 	}
1739 #endif /* LINUX_VERSION_CODE > KERNEL_VERSION(2, 4, 2) */
1740 
1741 	if (cmd != SIOCDEVPRIVATE) {
1742 		dhd_os_wake_unlock(&dhd->pub);
1743 		return -EOPNOTSUPP;
1744 	}
1745 
1746 	memset(&ioc, 0, sizeof(ioc));
1747 
1748 	/* Copy the ioc control structure part of ioctl request */
1749 	if (copy_from_user(&ioc, ifr->ifr_data, sizeof(wl_ioctl_t))) {
1750 		bcmerror = -BCME_BADADDR;
1751 		goto done;
1752 	}
1753 
1754 	/* Copy out any buffer passed */
1755 	if (ioc.buf) {
1756 		buflen = MIN(ioc.len, DHD_IOCTL_MAXLEN);
1757 		/* optimization for direct ioctl calls from kernel */
1758 		/*
1759 		if (segment_eq(get_fs(), KERNEL_DS)) {
1760 			buf = ioc.buf;
1761 		} else {
1762 		*/
1763 		{
1764 			if (!(buf = (char*)MALLOC(dhd->pub.osh, buflen))) {
1765 				bcmerror = -BCME_NOMEM;
1766 				goto done;
1767 			}
1768 			if (copy_from_user(buf, ioc.buf, buflen)) {
1769 				bcmerror = -BCME_BADADDR;
1770 				goto done;
1771 			}
1772 		}
1773 	}
1774 
1775 	/* To differentiate between wl and dhd read 4 more byes */
1776 	if ((copy_from_user(&driver, (char *)ifr->ifr_data + sizeof(wl_ioctl_t),
1777 		sizeof(uint)) != 0)) {
1778 		bcmerror = -BCME_BADADDR;
1779 		goto done;
1780 	}
1781 
1782 	if (!capable(CAP_NET_ADMIN)) {
1783 		bcmerror = -BCME_EPERM;
1784 		goto done;
1785 	}
1786 
1787 	/* check for local dhd ioctl and handle it */
1788 	if (driver == DHD_IOCTL_MAGIC) {
1789 		bcmerror = dhd_ioctl((void *)&dhd->pub, &ioc, buf, buflen);
1790 		if (bcmerror)
1791 			dhd->pub.bcmerror = bcmerror;
1792 		goto done;
1793 	}
1794 
1795 	/* send to dongle (must be up, and wl) */
1796 	if (dhd->pub.busstate != DHD_BUS_DATA) {
1797 		DHD_ERROR(("%s DONGLE_DOWN\n", __FUNCTION__));
1798 		bcmerror = BCME_DONGLE_DOWN;
1799 		goto done;
1800 	}
1801 
1802 	if (!dhd->pub.iswl) {
1803 		bcmerror = BCME_DONGLE_DOWN;
1804 		goto done;
1805 	}
1806 
1807 	/* Intercept WLC_SET_KEY IOCTL - serialize M4 send and set key IOCTL to
1808 	 * prevent M4 encryption.
1809 	 */
1810 	is_set_key_cmd = ((ioc.cmd == WLC_SET_KEY) ||
1811 	                 ((ioc.cmd == WLC_SET_VAR) &&
1812 	                        !(strncmp("wsec_key", ioc.buf, 9))) ||
1813 	                 ((ioc.cmd == WLC_SET_VAR) &&
1814 	                        !(strncmp("bsscfg:wsec_key", ioc.buf, 15))));
1815 	if (is_set_key_cmd) {
1816 		dhd_wait_pend8021x(net);
1817 	}
1818 
1819 	bcmerror = dhd_prot_ioctl(&dhd->pub, ifidx, (wl_ioctl_t *)&ioc, buf, buflen);
1820 
1821 done:
1822 	if ((bcmerror == -ETIMEDOUT) || ((dhd->pub.busstate == DHD_BUS_DOWN) &&
1823 			(!dhd->pub.dongle_reset))) {
1824 		DHD_ERROR(("%s: Event HANG send up\n", __FUNCTION__));
1825 		net_os_send_hang_message(net);
1826 	}
1827 
1828 	if (!bcmerror && buf && ioc.buf) {
1829 		if (copy_to_user(ioc.buf, buf, buflen))
1830 			bcmerror = -EFAULT;
1831 	}
1832 
1833 	if (buf)
1834 		MFREE(dhd->pub.osh, buf, buflen);
1835 
1836 	dhd_os_wake_unlock(&dhd->pub);
1837 
1838 	return OSL_ERROR(bcmerror);
1839 }
1840 
1841 static int
dhd_stop(struct net_device * net)1842 dhd_stop(struct net_device *net)
1843 {
1844 #if !defined(IGNORE_ETH0_DOWN)
1845 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(net);
1846 
1847 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
1848 	if (dhd->pub.up == 0) {
1849 		return 0;
1850 	}
1851 
1852 	/* Set state and stop OS transmissions */
1853 	dhd->pub.up = 0;
1854 	netif_stop_queue(net);
1855 #else
1856 	DHD_ERROR(("BYPASS %s:due to BRCM compilation : under investigation ...\n", __FUNCTION__));
1857 #endif /* !defined(IGNORE_ETH0_DOWN) */
1858 
1859 	OLD_MOD_DEC_USE_COUNT;
1860 	return 0;
1861 }
1862 
1863 static int
dhd_open(struct net_device * net)1864 dhd_open(struct net_device *net)
1865 {
1866 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(net);
1867 #ifdef TOE
1868 	uint32 toe_ol;
1869 #endif
1870 	int ifidx;
1871 
1872 	wl_control_wl_start(net);  /* start if needed */
1873 
1874 	ifidx = dhd_net2idx(dhd, net);
1875 	DHD_TRACE(("%s: ifidx %d\n", __FUNCTION__, ifidx));
1876 
1877 	if ((dhd->iflist[ifidx]) && (dhd->iflist[ifidx]->state == WLC_E_IF_DEL)) {
1878 		DHD_ERROR(("%s: Error: called when IF already deleted\n", __FUNCTION__));
1879 		return -1;
1880 	}
1881 
1882 
1883 	if (ifidx == 0) { /* do it only for primary eth0 */
1884 
1885 		atomic_set(&dhd->pend_8021x_cnt, 0);
1886 
1887 	memcpy(net->dev_addr, dhd->pub.mac.octet, ETHER_ADDR_LEN);
1888 
1889 #ifdef TOE
1890 	/* Get current TOE mode from dongle */
1891 	if (dhd_toe_get(dhd, ifidx, &toe_ol) >= 0 && (toe_ol & TOE_TX_CSUM_OL) != 0)
1892 		dhd->iflist[ifidx]->net->features |= NETIF_F_IP_CSUM;
1893 	else
1894 		dhd->iflist[ifidx]->net->features &= ~NETIF_F_IP_CSUM;
1895 #endif
1896 	}
1897 	/* Allow transmit calls */
1898 	netif_start_queue(net);
1899 	dhd->pub.up = 1;
1900 
1901 	OLD_MOD_INC_USE_COUNT;
1902 	return 0;
1903 }
1904 
1905 osl_t *
dhd_osl_attach(void * pdev,uint bustype)1906 dhd_osl_attach(void *pdev, uint bustype)
1907 {
1908 	return osl_attach(pdev, bustype, TRUE);
1909 }
1910 
1911 void
dhd_osl_detach(osl_t * osh)1912 dhd_osl_detach(osl_t *osh)
1913 {
1914 	if (MALLOCED(osh)) {
1915 		DHD_ERROR(("%s: MEMORY LEAK %d bytes\n", __FUNCTION__, MALLOCED(osh)));
1916 	}
1917 	osl_detach(osh);
1918 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && 1
1919 	up(&dhd_registration_sem);
1920 #endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) */
1921 }
1922 
1923 int
dhd_add_if(dhd_info_t * dhd,int ifidx,void * handle,char * name,uint8 * mac_addr,uint32 flags,uint8 bssidx)1924 dhd_add_if(dhd_info_t *dhd, int ifidx, void *handle, char *name,
1925 	uint8 *mac_addr, uint32 flags, uint8 bssidx)
1926 {
1927 	dhd_if_t *ifp;
1928 
1929 	DHD_TRACE(("%s: idx %d, handle->%p\n", __FUNCTION__, ifidx, handle));
1930 
1931 	ASSERT(dhd && (ifidx < DHD_MAX_IFS));
1932 
1933 	ifp = dhd->iflist[ifidx];
1934 	if (!ifp && !(ifp = MALLOC(dhd->pub.osh, sizeof(dhd_if_t)))) {
1935 		DHD_ERROR(("%s: OOM - dhd_if_t\n", __FUNCTION__));
1936 		return -ENOMEM;
1937 	}
1938 
1939 	memset(ifp, 0, sizeof(dhd_if_t));
1940 	ifp->info = dhd;
1941 	dhd->iflist[ifidx] = ifp;
1942 	strncpy(ifp->name, name, IFNAMSIZ);
1943 	ifp->name[IFNAMSIZ] = '\0';
1944 	if (mac_addr != NULL)
1945 		memcpy(&ifp->mac_addr, mac_addr, ETHER_ADDR_LEN);
1946 
1947 	if (handle == NULL) {
1948 		ifp->state = WLC_E_IF_ADD;
1949 		ifp->idx = ifidx;
1950 		ASSERT(dhd->sysioc_pid >= 0);
1951 		up(&dhd->sysioc_sem);
1952 	} else
1953 		ifp->net = (struct net_device *)handle;
1954 
1955 	return 0;
1956 }
1957 
1958 void
dhd_del_if(dhd_info_t * dhd,int ifidx)1959 dhd_del_if(dhd_info_t *dhd, int ifidx)
1960 {
1961 	dhd_if_t *ifp;
1962 
1963 	DHD_TRACE(("%s: idx %d\n", __FUNCTION__, ifidx));
1964 
1965 	ASSERT(dhd && ifidx && (ifidx < DHD_MAX_IFS));
1966 	ifp = dhd->iflist[ifidx];
1967 	if (!ifp) {
1968 		DHD_ERROR(("%s: Null interface\n", __FUNCTION__));
1969 		return;
1970 	}
1971 
1972 	ifp->state = WLC_E_IF_DEL;
1973 	ifp->idx = ifidx;
1974 	ASSERT(dhd->sysioc_pid >= 0);
1975 	up(&dhd->sysioc_sem);
1976 }
1977 
1978 dhd_pub_t *
dhd_attach(osl_t * osh,struct dhd_bus * bus,uint bus_hdrlen)1979 dhd_attach(osl_t *osh, struct dhd_bus *bus, uint bus_hdrlen)
1980 {
1981 	dhd_info_t *dhd = NULL;
1982 	struct net_device *net;
1983 
1984 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
1985 	/* updates firmware nvram path if it was provided as module paramters */
1986 	if ((firmware_path != NULL) && (firmware_path[0] != '\0'))
1987 		strcpy(fw_path, firmware_path);
1988 	if ((nvram_path != NULL) && (nvram_path[0] != '\0'))
1989 		strcpy(nv_path, nvram_path);
1990 
1991 	/* Allocate etherdev, including space for private structure */
1992 	if (!(net = alloc_etherdev(sizeof(dhd)))) {
1993 		DHD_ERROR(("%s: OOM - alloc_etherdev\n", __FUNCTION__));
1994 		goto fail;
1995 	}
1996 
1997 	/* Allocate primary dhd_info */
1998 	if (!(dhd = MALLOC(osh, sizeof(dhd_info_t)))) {
1999 		DHD_ERROR(("%s: OOM - alloc dhd_info\n", __FUNCTION__));
2000 		goto fail;
2001 	}
2002 
2003 	memset(dhd, 0, sizeof(dhd_info_t));
2004 
2005 	/*
2006 	 * Save the dhd_info into the priv
2007 	 */
2008 	memcpy(netdev_priv(net), &dhd, sizeof(dhd));
2009 	dhd->pub.osh = osh;
2010 
2011 	/* Set network interface name if it was provided as module parameter */
2012 	if (iface_name[0]) {
2013 		int len;
2014 		char ch;
2015 		strncpy(net->name, iface_name, IFNAMSIZ);
2016 		net->name[IFNAMSIZ - 1] = 0;
2017 		len = strlen(net->name);
2018 		ch = net->name[len - 1];
2019 		if ((ch > '9' || ch < '0') && (len < IFNAMSIZ - 2))
2020 			strcat(net->name, "%d");
2021 	}
2022 
2023 	if (dhd_add_if(dhd, 0, (void *)net, net->name, NULL, 0, 0) == DHD_BAD_IF)
2024 		goto fail;
2025 
2026 #if (LINUX_VERSION_CODE <= KERNEL_VERSION(2, 6, 31))
2027 	net->open = NULL;
2028 #else
2029 	net->netdev_ops = NULL;
2030 #endif
2031 
2032 	init_MUTEX(&dhd->proto_sem);
2033 	/* Initialize other structure content */
2034 	init_waitqueue_head(&dhd->ioctl_resp_wait);
2035 	init_waitqueue_head(&dhd->ctrl_wait);
2036 
2037 	/* Initialize the spinlocks */
2038 	spin_lock_init(&dhd->sdlock);
2039 	spin_lock_init(&dhd->txqlock);
2040 
2041 	/* Initialize Wakelock stuff */
2042 	spin_lock_init(&dhd->wl_lock);
2043 	dhd->wl_count = 0;
2044 	dhd->wl_packet = 0;
2045 #ifdef CONFIG_HAS_WAKELOCK
2046 	wake_lock_init(&dhd->wl_wifi, WAKE_LOCK_SUSPEND, "wlan_wake");
2047 	wake_lock_init(&dhd->wl_rxwake, WAKE_LOCK_SUSPEND, "wlan_rx_wake");
2048 #endif
2049 
2050 	/* Link to info module */
2051 	dhd->pub.info = dhd;
2052 
2053 	/* Link to bus module */
2054 	dhd->pub.bus = bus;
2055 	dhd->pub.hdrlen = bus_hdrlen;
2056 
2057 	/* Attach and link in the protocol */
2058 	if (dhd_prot_attach(&dhd->pub) != 0) {
2059 		DHD_ERROR(("dhd_prot_attach failed\n"));
2060 		goto fail;
2061 	}
2062 #if defined(CONFIG_WIRELESS_EXT)
2063 	/* Attach and link in the iw */
2064 	if (wl_iw_attach(net, (void *)&dhd->pub) != 0) {
2065 		DHD_ERROR(("wl_iw_attach failed\n"));
2066 		goto fail;
2067 	}
2068 #endif /* defined(CONFIG_WIRELESS_EXT) */
2069 
2070 	/* Set up the watchdog timer */
2071 	init_timer(&dhd->timer);
2072 	dhd->timer.data = (ulong)dhd;
2073 	dhd->timer.function = dhd_watchdog;
2074 
2075 	/* Initialize thread based operation and lock */
2076 	init_MUTEX(&dhd->sdsem);
2077 	if ((dhd_watchdog_prio >= 0) && (dhd_dpc_prio >= 0)) {
2078 		dhd->threads_only = TRUE;
2079 	}
2080 	else {
2081 		dhd->threads_only = FALSE;
2082 	}
2083 
2084 	if (dhd_dpc_prio >= 0) {
2085 		/* Initialize watchdog thread */
2086 		sema_init(&dhd->watchdog_sem, 0);
2087 		init_completion(&dhd->watchdog_exited);
2088 		dhd->watchdog_pid = kernel_thread(dhd_watchdog_thread, dhd, 0);
2089 	} else {
2090 		dhd->watchdog_pid = -1;
2091 	}
2092 
2093 	/* Set up the bottom half handler */
2094 	if (dhd_dpc_prio >= 0) {
2095 		/* Initialize DPC thread */
2096 		sema_init(&dhd->dpc_sem, 0);
2097 		init_completion(&dhd->dpc_exited);
2098 		dhd->dpc_pid = kernel_thread(dhd_dpc_thread, dhd, 0);
2099 	} else {
2100 		tasklet_init(&dhd->tasklet, dhd_dpc, (ulong)dhd);
2101 		dhd->dpc_pid = -1;
2102 	}
2103 
2104 	if (dhd_sysioc) {
2105 		sema_init(&dhd->sysioc_sem, 0);
2106 		init_completion(&dhd->sysioc_exited);
2107 		dhd->sysioc_pid = kernel_thread(_dhd_sysioc_thread, dhd, 0);
2108 	} else {
2109 		dhd->sysioc_pid = -1;
2110 	}
2111 
2112 	/*
2113 	 * Save the dhd_info into the priv
2114 	 */
2115 	memcpy(netdev_priv(net), &dhd, sizeof(dhd));
2116 
2117 #if defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC)
2118 	g_bus = bus;
2119 #endif
2120 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && defined(CONFIG_PM_SLEEP)
2121 	register_pm_notifier(&dhd_sleep_pm_notifier);
2122 #endif /*  (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && defined(CONFIG_PM_SLEEP) */
2123 
2124 #ifdef CONFIG_HAS_EARLYSUSPEND
2125 	dhd->early_suspend.level = EARLY_SUSPEND_LEVEL_BLANK_SCREEN + 20;
2126 	dhd->early_suspend.suspend = dhd_early_suspend;
2127 	dhd->early_suspend.resume = dhd_late_resume;
2128 	register_early_suspend(&dhd->early_suspend);
2129 #endif
2130 
2131 	return &dhd->pub;
2132 
2133 fail:
2134 	if (net)
2135 		free_netdev(net);
2136 	if (dhd)
2137 		dhd_detach(&dhd->pub);
2138 
2139 	return NULL;
2140 }
2141 
2142 
2143 int
dhd_bus_start(dhd_pub_t * dhdp)2144 dhd_bus_start(dhd_pub_t *dhdp)
2145 {
2146 	int ret = -1;
2147 	dhd_info_t *dhd = (dhd_info_t*)dhdp->info;
2148 #ifdef EMBEDDED_PLATFORM
2149 	char iovbuf[WL_EVENTING_MASK_LEN + 12];	/*  Room for "event_msgs" + '\0' + bitvec  */
2150 #endif /* EMBEDDED_PLATFORM */
2151 
2152 	ASSERT(dhd);
2153 
2154 	DHD_TRACE(("%s: \n", __FUNCTION__));
2155 
2156 	/* try to download image and nvram to the dongle */
2157 	if  (dhd->pub.busstate == DHD_BUS_DOWN) {
2158 		if (!(dhd_bus_download_firmware(dhd->pub.bus, dhd->pub.osh,
2159 		                                fw_path, nv_path))) {
2160 			DHD_ERROR(("%s: dhdsdio_probe_download failed. firmware = %s nvram = %s\n",
2161 			           __FUNCTION__, fw_path, nv_path));
2162 			return -1;
2163 		}
2164 	}
2165 
2166 	/* Start the watchdog timer */
2167 	dhd->pub.tickcnt = 0;
2168 	dhd_os_wd_timer(&dhd->pub, dhd_watchdog_ms);
2169 
2170 	/* Bring up the bus */
2171 	if ((ret = dhd_bus_init(&dhd->pub, TRUE)) != 0) {
2172 		DHD_ERROR(("%s, dhd_bus_init failed %d\n", __FUNCTION__, ret));
2173 		return ret;
2174 	}
2175 #if defined(OOB_INTR_ONLY)
2176 	/* Host registration for OOB interrupt */
2177 	if (bcmsdh_register_oob_intr(dhdp)) {
2178 		del_timer_sync(&dhd->timer);
2179 		dhd->wd_timer_valid = FALSE;
2180 		DHD_ERROR(("%s Host failed to resgister for OOB\n", __FUNCTION__));
2181 		return -ENODEV;
2182 	}
2183 
2184 	/* Enable oob at firmware */
2185 	dhd_enable_oob_intr(dhd->pub.bus, TRUE);
2186 #endif /* defined(OOB_INTR_ONLY) */
2187 
2188 	/* If bus is not ready, can't come up */
2189 	if (dhd->pub.busstate != DHD_BUS_DATA) {
2190 		del_timer_sync(&dhd->timer);
2191 		dhd->wd_timer_valid = FALSE;
2192 		DHD_ERROR(("%s failed bus is not ready\n", __FUNCTION__));
2193 		return -ENODEV;
2194 	}
2195 
2196 #ifdef EMBEDDED_PLATFORM
2197 	bcm_mkiovar("event_msgs", dhdp->eventmask, WL_EVENTING_MASK_LEN, iovbuf, sizeof(iovbuf));
2198 	dhdcdc_query_ioctl(dhdp, 0, WLC_GET_VAR, iovbuf, sizeof(iovbuf));
2199 	bcopy(iovbuf, dhdp->eventmask, WL_EVENTING_MASK_LEN);
2200 
2201 	setbit(dhdp->eventmask, WLC_E_SET_SSID);
2202 	setbit(dhdp->eventmask, WLC_E_PRUNE);
2203 	setbit(dhdp->eventmask, WLC_E_AUTH);
2204 	setbit(dhdp->eventmask, WLC_E_REASSOC);
2205 	setbit(dhdp->eventmask, WLC_E_REASSOC_IND);
2206 	setbit(dhdp->eventmask, WLC_E_DEAUTH_IND);
2207 	setbit(dhdp->eventmask, WLC_E_DISASSOC_IND);
2208 	setbit(dhdp->eventmask, WLC_E_DISASSOC);
2209 	setbit(dhdp->eventmask, WLC_E_JOIN);
2210 	setbit(dhdp->eventmask, WLC_E_ASSOC_IND);
2211 	setbit(dhdp->eventmask, WLC_E_PSK_SUP);
2212 	setbit(dhdp->eventmask, WLC_E_LINK);
2213 	setbit(dhdp->eventmask, WLC_E_NDIS_LINK);
2214 	setbit(dhdp->eventmask, WLC_E_MIC_ERROR);
2215 	setbit(dhdp->eventmask, WLC_E_PMKID_CACHE);
2216 	setbit(dhdp->eventmask, WLC_E_TXFAIL);
2217 	setbit(dhdp->eventmask, WLC_E_JOIN_START);
2218 	setbit(dhdp->eventmask, WLC_E_SCAN_COMPLETE);
2219 #ifdef PNO_SUPPORT
2220 	setbit(dhdp->eventmask, WLC_E_PFN_NET_FOUND);
2221 #endif /* PNO_SUPPORT */
2222 
2223 /* enable dongle roaming event */
2224 	setbit(dhdp->eventmask, WLC_E_ROAM);
2225 
2226 	dhdp->pktfilter_count = 1;
2227 	/* Setup filter to allow only unicast */
2228 	dhdp->pktfilter[0] = "100 0 0 0 0x01 0x00";
2229 #endif /* EMBEDDED_PLATFORM */
2230 
2231 	/* Bus is ready, do any protocol initialization */
2232 	if ((ret = dhd_prot_init(&dhd->pub)) < 0)
2233 		return ret;
2234 
2235 	return 0;
2236 }
2237 
2238 int
dhd_iovar(dhd_pub_t * pub,int ifidx,char * name,char * cmd_buf,uint cmd_len,int set)2239 dhd_iovar(dhd_pub_t *pub, int ifidx, char *name, char *cmd_buf, uint cmd_len, int set)
2240 {
2241 	char buf[strlen(name) + 1 + cmd_len];
2242 	int len = sizeof(buf);
2243 	wl_ioctl_t ioc;
2244 	int ret;
2245 
2246 	len = bcm_mkiovar(name, cmd_buf, cmd_len, buf, len);
2247 
2248 	memset(&ioc, 0, sizeof(ioc));
2249 
2250 	ioc.cmd = set? WLC_SET_VAR : WLC_GET_VAR;
2251 	ioc.buf = buf;
2252 	ioc.len = len;
2253 	ioc.set = set;
2254 
2255 	ret = dhd_prot_ioctl(pub, ifidx, &ioc, ioc.buf, ioc.len);
2256 	if (!set && ret >= 0)
2257 		memcpy(cmd_buf, buf, cmd_len);
2258 
2259 	return ret;
2260 }
2261 
2262 #if (LINUX_VERSION_CODE > KERNEL_VERSION(2, 6, 31))
2263 static struct net_device_ops dhd_ops_pri = {
2264 	.ndo_open = dhd_open,
2265 	.ndo_stop = dhd_stop,
2266 	.ndo_get_stats = dhd_get_stats,
2267 	.ndo_do_ioctl = dhd_ioctl_entry,
2268 	.ndo_start_xmit = dhd_start_xmit,
2269 	.ndo_set_mac_address = dhd_set_mac_address,
2270 	.ndo_set_multicast_list = dhd_set_multicast_list,
2271 };
2272 
2273 static struct net_device_ops dhd_ops_virt = {
2274 	.ndo_get_stats = dhd_get_stats,
2275 	.ndo_do_ioctl = dhd_ioctl_entry,
2276 	.ndo_start_xmit = dhd_start_xmit,
2277 	.ndo_set_mac_address = dhd_set_mac_address,
2278 	.ndo_set_multicast_list = dhd_set_multicast_list,
2279 };
2280 #endif
2281 
2282 int
dhd_net_attach(dhd_pub_t * dhdp,int ifidx)2283 dhd_net_attach(dhd_pub_t *dhdp, int ifidx)
2284 {
2285 	dhd_info_t *dhd = (dhd_info_t *)dhdp->info;
2286 	struct net_device *net;
2287 	uint8 temp_addr[ETHER_ADDR_LEN] = { 0x00, 0x90, 0x4c, 0x11, 0x22, 0x33 };
2288 
2289 	DHD_TRACE(("%s: ifidx %d\n", __FUNCTION__, ifidx));
2290 
2291 	ASSERT(dhd && dhd->iflist[ifidx]);
2292 	net = dhd->iflist[ifidx]->net;
2293 
2294 	ASSERT(net);
2295 #if (LINUX_VERSION_CODE <= KERNEL_VERSION(2, 6, 31))
2296 	ASSERT(!net->open);
2297 	net->get_stats = dhd_get_stats;
2298 	net->do_ioctl = dhd_ioctl_entry;
2299 	net->hard_start_xmit = dhd_start_xmit;
2300 	net->set_mac_address = dhd_set_mac_address;
2301 	net->set_multicast_list = dhd_set_multicast_list;
2302 	net->open = net->stop = NULL;
2303 #else
2304 	ASSERT(!net->netdev_ops);
2305 	net->netdev_ops = &dhd_ops_virt;
2306 #endif
2307 
2308 #if (LINUX_VERSION_CODE <= KERNEL_VERSION(2, 6, 31))
2309 		net->open = dhd_open;
2310 		net->stop = dhd_stop;
2311 #else
2312 		net->netdev_ops = &dhd_ops_pri;
2313 #endif
2314 
2315 	/*
2316 	 * We have to use the primary MAC for virtual interfaces
2317 	 */
2318 	if (ifidx != 0) {
2319 		/* for virtual interfaces use the primary MAC  */
2320 		memcpy(temp_addr, dhd->pub.mac.octet, ETHER_ADDR_LEN);
2321 	}
2322 
2323 	if (ifidx == 1) {
2324 		DHD_TRACE(("%s ACCESS POINT MAC: \n", __FUNCTION__));
2325 		/*  ACCESSPOINT INTERFACE CASE */
2326 		temp_addr[0] |= 0x02;  /* set bit 2 , - Locally Administered address  */
2327 	}
2328 	net->hard_header_len = ETH_HLEN + dhd->pub.hdrlen;
2329 #if LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 24)
2330 	net->ethtool_ops = &dhd_ethtool_ops;
2331 #endif /* LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 24) */
2332 
2333 #if defined(CONFIG_WIRELESS_EXT)
2334 #if WIRELESS_EXT < 19
2335 	net->get_wireless_stats = dhd_get_wireless_stats;
2336 #endif /* WIRELESS_EXT < 19 */
2337 #if WIRELESS_EXT > 12
2338 	net->wireless_handlers = (struct iw_handler_def *)&wl_iw_handler_def;
2339 #endif /* WIRELESS_EXT > 12 */
2340 #endif /* defined(CONFIG_WIRELESS_EXT) */
2341 
2342 	dhd->pub.rxsz = net->mtu + net->hard_header_len + dhd->pub.hdrlen;
2343 
2344 	memcpy(net->dev_addr, temp_addr, ETHER_ADDR_LEN);
2345 
2346 	if (register_netdev(net) != 0) {
2347 		DHD_ERROR(("%s: couldn't register the net device\n", __FUNCTION__));
2348 		goto fail;
2349 	}
2350 
2351 	printf("%s: Broadcom Dongle Host Driver mac=%.2x:%.2x:%.2x:%.2x:%.2x:%.2x\n", net->name,
2352 	       dhd->pub.mac.octet[0], dhd->pub.mac.octet[1], dhd->pub.mac.octet[2],
2353 	       dhd->pub.mac.octet[3], dhd->pub.mac.octet[4], dhd->pub.mac.octet[5]);
2354 
2355 #if defined(CONFIG_WIRELESS_EXT)
2356 #ifdef SOFTAP
2357 	if (ifidx == 0)
2358 		/* Don't call for SOFTAP Interface in SOFTAP MODE */
2359 		wl_iw_iscan_set_scan_broadcast_prep(net, 1);
2360 #else
2361 		wl_iw_iscan_set_scan_broadcast_prep(net, 1);
2362 #endif /* SOFTAP */
2363 #endif /* CONFIG_WIRELESS_EXT */
2364 
2365 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27))
2366 	up(&dhd_registration_sem);
2367 #endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) */
2368 	return 0;
2369 
2370 fail:
2371 #if (LINUX_VERSION_CODE <= KERNEL_VERSION(2, 6, 31))
2372 	net->open = NULL;
2373 #else
2374 	net->netdev_ops = NULL;
2375 #endif
2376 	return BCME_ERROR;
2377 }
2378 
2379 void
dhd_bus_detach(dhd_pub_t * dhdp)2380 dhd_bus_detach(dhd_pub_t *dhdp)
2381 {
2382 	dhd_info_t *dhd;
2383 
2384 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
2385 
2386 	if (dhdp) {
2387 		dhd = (dhd_info_t *)dhdp->info;
2388 		if (dhd) {
2389 			/* Stop the protocol module */
2390 			dhd_prot_stop(&dhd->pub);
2391 
2392 			/* Stop the bus module */
2393 			dhd_bus_stop(dhd->pub.bus, TRUE);
2394 #if defined(OOB_INTR_ONLY)
2395 			bcmsdh_unregister_oob_intr();
2396 #endif /* defined(OOB_INTR_ONLY) */
2397 
2398 			/* Clear the watchdog timer */
2399 			del_timer_sync(&dhd->timer);
2400 			dhd->wd_timer_valid = FALSE;
2401 		}
2402 	}
2403 }
2404 
2405 void
dhd_detach(dhd_pub_t * dhdp)2406 dhd_detach(dhd_pub_t *dhdp)
2407 {
2408 	dhd_info_t *dhd;
2409 
2410 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
2411 
2412 	if (dhdp) {
2413 		dhd = (dhd_info_t *)dhdp->info;
2414 		if (dhd) {
2415 			dhd_if_t *ifp;
2416 			int i;
2417 
2418 #if defined(CONFIG_HAS_EARLYSUSPEND)
2419 			if (dhd->early_suspend.suspend)
2420 				unregister_early_suspend(&dhd->early_suspend);
2421 #endif	/* defined(CONFIG_HAS_EARLYSUSPEND) */
2422 #if defined(CONFIG_WIRELESS_EXT)
2423 			/* Attach and link in the iw */
2424 			wl_iw_detach();
2425 #endif
2426 
2427 			for (i = 1; i < DHD_MAX_IFS; i++)
2428 				if (dhd->iflist[i])
2429 					dhd_del_if(dhd, i);
2430 
2431 			if (dhd->sysioc_pid >= 0) {
2432 				KILL_PROC(dhd->sysioc_pid, SIGTERM);
2433 				wait_for_completion(&dhd->sysioc_exited);
2434 			}
2435 
2436 			ifp = dhd->iflist[0];
2437 			ASSERT(ifp);
2438 #if (LINUX_VERSION_CODE <= KERNEL_VERSION(2, 6, 31))
2439 			if (ifp->net->open) {
2440 #else
2441 			if (ifp->net->netdev_ops == &dhd_ops_pri) {
2442 #endif
2443 				dhd_stop(ifp->net);
2444 				unregister_netdev(ifp->net);
2445 			}
2446 
2447 			if (dhd->watchdog_pid >= 0)
2448 			{
2449 				KILL_PROC(dhd->watchdog_pid, SIGTERM);
2450 				wait_for_completion(&dhd->watchdog_exited);
2451 			}
2452 
2453 			if (dhd->dpc_pid >= 0)
2454 			{
2455 				KILL_PROC(dhd->dpc_pid, SIGTERM);
2456 				wait_for_completion(&dhd->dpc_exited);
2457 			}
2458 			else
2459 				tasklet_kill(&dhd->tasklet);
2460 
2461 			dhd_bus_detach(dhdp);
2462 
2463 			if (dhdp->prot)
2464 				dhd_prot_detach(dhdp);
2465 
2466 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && defined(CONFIG_PM_SLEEP)
2467 			unregister_pm_notifier(&dhd_sleep_pm_notifier);
2468 #endif /* (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27)) && defined(CONFIG_PM_SLEEP) */
2469 			free_netdev(ifp->net);
2470 #ifdef CONFIG_HAS_WAKELOCK
2471 			wake_lock_destroy(&dhd->wl_wifi);
2472 			wake_lock_destroy(&dhd->wl_rxwake);
2473 #endif
2474 			MFREE(dhd->pub.osh, ifp, sizeof(*ifp));
2475 			MFREE(dhd->pub.osh, dhd, sizeof(*dhd));
2476 		}
2477 	}
2478 }
2479 
2480 static void __exit
2481 dhd_module_cleanup(void)
2482 {
2483 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
2484 
2485 	dhd_bus_unregister();
2486 #if defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC)
2487 	wifi_del_dev();
2488 #endif
2489 	/* Call customer gpio to turn off power with WL_REG_ON signal */
2490 	dhd_customer_gpio_wlan_ctrl(WLAN_POWER_OFF);
2491 }
2492 
2493 static int __init
2494 dhd_module_init(void)
2495 {
2496 	int error;
2497 
2498 	DHD_TRACE(("%s: Enter\n", __FUNCTION__));
2499 
2500 	/* Sanity check on the module parameters */
2501 	do {
2502 		/* Both watchdog and DPC as tasklets are ok */
2503 		if ((dhd_watchdog_prio < 0) && (dhd_dpc_prio < 0))
2504 			break;
2505 
2506 		/* If both watchdog and DPC are threads, TX must be deferred */
2507 		if ((dhd_watchdog_prio >= 0) && (dhd_dpc_prio >= 0) && dhd_deferred_tx)
2508 			break;
2509 
2510 		DHD_ERROR(("Invalid module parameters.\n"));
2511 		return -EINVAL;
2512 	} while (0);
2513 
2514 	/* Call customer gpio to turn on power with WL_REG_ON signal */
2515 	dhd_customer_gpio_wlan_ctrl(WLAN_POWER_ON);
2516 
2517 #if defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC)
2518 	sema_init(&wifi_control_sem, 0);
2519 
2520 	error = wifi_add_dev();
2521 	if (error) {
2522 		DHD_ERROR(("%s: platform_driver_register failed\n", __FUNCTION__));
2523 		goto fail_0;
2524 	}
2525 
2526 	/* Waiting callback after platform_driver_register is done or exit with error */
2527 	if (down_timeout(&wifi_control_sem,  msecs_to_jiffies(5000)) != 0) {
2528 		error = -EINVAL;
2529 		DHD_ERROR(("%s: platform_driver_register timeout\n", __FUNCTION__));
2530 		goto fail_1;
2531 	}
2532 #endif /* #if defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC) */
2533 
2534 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27))
2535 	sema_init(&dhd_registration_sem, 0);
2536 #endif
2537 
2538 	error = dhd_bus_register();
2539 
2540 	if (!error)
2541 		printf("\n%s\n", dhd_version);
2542 	else {
2543 		DHD_ERROR(("%s: sdio_register_driver failed\n", __FUNCTION__));
2544 		goto fail_1;
2545 	}
2546 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27))
2547 	/*
2548 	 * Wait till MMC sdio_register_driver callback called and made driver attach.
2549 	 * It's needed to make sync up exit from dhd insmod  and
2550 	 * Kernel MMC sdio device callback registration
2551 	 */
2552 	if (down_timeout(&dhd_registration_sem,  msecs_to_jiffies(DHD_REGISTRATION_TIMEOUT)) != 0) {
2553 		error = -EINVAL;
2554 		DHD_ERROR(("%s: sdio_register_driver timeout\n", __FUNCTION__));
2555 		goto fail_2;
2556 	}
2557 #endif
2558 	return error;
2559 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 27))
2560 fail_2:
2561 	dhd_bus_unregister();
2562 #endif
2563 fail_1:
2564 #if defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC)
2565 	wifi_del_dev();
2566 fail_0:
2567 #endif /* defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC) */
2568 
2569 	/* Call customer gpio to turn off power with WL_REG_ON signal */
2570 	dhd_customer_gpio_wlan_ctrl(WLAN_POWER_OFF);
2571 
2572 	return error;
2573 }
2574 
2575 module_init(dhd_module_init);
2576 module_exit(dhd_module_cleanup);
2577 
2578 /*
2579  * OS specific functions required to implement DHD driver in OS independent way
2580  */
2581 int
2582 dhd_os_proto_block(dhd_pub_t *pub)
2583 {
2584 	dhd_info_t *dhd = (dhd_info_t *)(pub->info);
2585 
2586 	if (dhd) {
2587 		down(&dhd->proto_sem);
2588 		return 1;
2589 	}
2590 
2591 	return 0;
2592 }
2593 
2594 int
2595 dhd_os_proto_unblock(dhd_pub_t *pub)
2596 {
2597 	dhd_info_t *dhd = (dhd_info_t *)(pub->info);
2598 
2599 	if (dhd) {
2600 		up(&dhd->proto_sem);
2601 		return 1;
2602 	}
2603 
2604 	return 0;
2605 }
2606 
2607 unsigned int
2608 dhd_os_get_ioctl_resp_timeout(void)
2609 {
2610 	return ((unsigned int)dhd_ioctl_timeout_msec);
2611 }
2612 
2613 void
2614 dhd_os_set_ioctl_resp_timeout(unsigned int timeout_msec)
2615 {
2616 	dhd_ioctl_timeout_msec = (int)timeout_msec;
2617 }
2618 
2619 int
2620 dhd_os_ioctl_resp_wait(dhd_pub_t *pub, uint *condition, bool *pending)
2621 {
2622 	dhd_info_t *dhd = (dhd_info_t *)(pub->info);
2623 	DECLARE_WAITQUEUE(wait, current);
2624 	int timeout = dhd_ioctl_timeout_msec;
2625 
2626 	/* Convert timeout in millsecond to jiffies */
2627 	/* timeout = timeout * HZ / 1000; */
2628 	timeout = msecs_to_jiffies(timeout);
2629 
2630 	/* Wait until control frame is available */
2631 	add_wait_queue(&dhd->ioctl_resp_wait, &wait);
2632 	set_current_state(TASK_INTERRUPTIBLE);
2633 	smp_mb();
2634 	while (!(*condition) && (!signal_pending(current) && timeout)) {
2635 		timeout = schedule_timeout(timeout);
2636 		smp_mb();
2637 	}
2638 
2639 	if (signal_pending(current))
2640 		*pending = TRUE;
2641 
2642 	set_current_state(TASK_RUNNING);
2643 	remove_wait_queue(&dhd->ioctl_resp_wait, &wait);
2644 
2645 	return timeout;
2646 }
2647 
2648 int
2649 dhd_os_ioctl_resp_wake(dhd_pub_t *pub)
2650 {
2651 	dhd_info_t *dhd = (dhd_info_t *)(pub->info);
2652 
2653 	if (waitqueue_active(&dhd->ioctl_resp_wait)) {
2654 		wake_up_interruptible(&dhd->ioctl_resp_wait);
2655 	}
2656 
2657 	return 0;
2658 }
2659 
2660 void
2661 dhd_os_wd_timer(void *bus, uint wdtick)
2662 {
2663 	dhd_pub_t *pub = bus;
2664 	static uint save_dhd_watchdog_ms = 0;
2665 	dhd_info_t *dhd = (dhd_info_t *)pub->info;
2666 
2667 	/* don't start the wd until fw is loaded */
2668 	if (pub->busstate == DHD_BUS_DOWN)
2669 		return;
2670 
2671 	/* Totally stop the timer */
2672 	if (!wdtick && dhd->wd_timer_valid == TRUE) {
2673 		del_timer_sync(&dhd->timer);
2674 		dhd->wd_timer_valid = FALSE;
2675 		save_dhd_watchdog_ms = wdtick;
2676 		return;
2677 	}
2678 
2679 	if (wdtick) {
2680 		dhd_watchdog_ms = (uint)wdtick;
2681 
2682 		/* Re arm the timer, at last watchdog period */
2683 		mod_timer(&dhd->timer, jiffies + dhd_watchdog_ms * HZ / 1000);
2684 
2685 		dhd->wd_timer_valid = TRUE;
2686 		save_dhd_watchdog_ms = wdtick;
2687 	}
2688 }
2689 
2690 void *
2691 dhd_os_open_image(char *filename)
2692 {
2693 	struct file *fp;
2694 
2695 	fp = filp_open(filename, O_RDONLY, 0);
2696 	/*
2697 	 * 2.6.11 (FC4) supports filp_open() but later revs don't?
2698 	 * Alternative:
2699 	 * fp = open_namei(AT_FDCWD, filename, O_RD, 0);
2700 	 * ???
2701 	 */
2702 	 if (IS_ERR(fp))
2703 		 fp = NULL;
2704 
2705 	 return fp;
2706 }
2707 
2708 int
2709 dhd_os_get_image_block(char *buf, int len, void *image)
2710 {
2711 	struct file *fp = (struct file *)image;
2712 	int rdlen;
2713 
2714 	if (!image)
2715 		return 0;
2716 
2717 	rdlen = kernel_read(fp, fp->f_pos, buf, len);
2718 	if (rdlen > 0)
2719 		fp->f_pos += rdlen;
2720 
2721 	return rdlen;
2722 }
2723 
2724 void
2725 dhd_os_close_image(void *image)
2726 {
2727 	if (image)
2728 		filp_close((struct file *)image, NULL);
2729 }
2730 
2731 
2732 void
2733 dhd_os_sdlock(dhd_pub_t *pub)
2734 {
2735 	dhd_info_t *dhd;
2736 
2737 	dhd = (dhd_info_t *)(pub->info);
2738 
2739 	if (dhd->threads_only)
2740 		down(&dhd->sdsem);
2741 	else
2742 		spin_lock_bh(&dhd->sdlock);
2743 }
2744 
2745 void
2746 dhd_os_sdunlock(dhd_pub_t *pub)
2747 {
2748 	dhd_info_t *dhd;
2749 
2750 	dhd = (dhd_info_t *)(pub->info);
2751 
2752 	if (dhd->threads_only)
2753 		up(&dhd->sdsem);
2754 	else
2755 		spin_unlock_bh(&dhd->sdlock);
2756 }
2757 
2758 void
2759 dhd_os_sdlock_txq(dhd_pub_t *pub)
2760 {
2761 	dhd_info_t *dhd;
2762 
2763 	dhd = (dhd_info_t *)(pub->info);
2764 	spin_lock_bh(&dhd->txqlock);
2765 }
2766 
2767 void
2768 dhd_os_sdunlock_txq(dhd_pub_t *pub)
2769 {
2770 	dhd_info_t *dhd;
2771 
2772 	dhd = (dhd_info_t *)(pub->info);
2773 	spin_unlock_bh(&dhd->txqlock);
2774 }
2775 void
2776 dhd_os_sdlock_rxq(dhd_pub_t *pub)
2777 {
2778 }
2779 void
2780 dhd_os_sdunlock_rxq(dhd_pub_t *pub)
2781 {
2782 }
2783 
2784 void
2785 dhd_os_sdtxlock(dhd_pub_t *pub)
2786 {
2787 	dhd_os_sdlock(pub);
2788 }
2789 
2790 void
2791 dhd_os_sdtxunlock(dhd_pub_t *pub)
2792 {
2793 	dhd_os_sdunlock(pub);
2794 }
2795 
2796 #ifdef DHD_USE_STATIC_BUF
2797 void * dhd_os_prealloc(int section, unsigned long size)
2798 {
2799 #if defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC)
2800 	void *alloc_ptr = NULL;
2801 	if (wifi_control_data && wifi_control_data->mem_prealloc)
2802 	{
2803 		alloc_ptr = wifi_control_data->mem_prealloc(section, size);
2804 		if (alloc_ptr)
2805 		{
2806 			DHD_INFO(("success alloc section %d\n", section));
2807 			bzero(alloc_ptr, size);
2808 			return alloc_ptr;
2809 		}
2810 	}
2811 
2812 	DHD_ERROR(("can't alloc section %d\n", section));
2813 	return 0;
2814 #else
2815 return MALLOC(0, size);
2816 #endif /* #if defined(CUSTOMER_HW2) && defined(CONFIG_WIFI_CONTROL_FUNC) */
2817 }
2818 #endif /* DHD_USE_STATIC_BUF */
2819 #if defined(CONFIG_WIRELESS_EXT)
2820 struct iw_statistics *
2821 dhd_get_wireless_stats(struct net_device *dev)
2822 {
2823 	int res = 0;
2824 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2825 
2826 	res = wl_iw_get_wireless_stats(dev, &dhd->iw.wstats);
2827 
2828 	if (res == 0)
2829 		return &dhd->iw.wstats;
2830 	else
2831 		return NULL;
2832 }
2833 #endif /* defined(CONFIG_WIRELESS_EXT) */
2834 
2835 static int
2836 dhd_wl_host_event(dhd_info_t *dhd, int *ifidx, void *pktdata,
2837 	wl_event_msg_t *event, void **data)
2838 {
2839 	int bcmerror = 0;
2840 
2841 	ASSERT(dhd != NULL);
2842 
2843 	bcmerror = wl_host_event(dhd, ifidx, pktdata, event, data);
2844 	if (bcmerror != BCME_OK)
2845 		return (bcmerror);
2846 
2847 #if defined(CONFIG_WIRELESS_EXT)
2848 	ASSERT(dhd->iflist[*ifidx] != NULL);
2849 
2850 	if (ntoh32(event->event_type) == WLC_E_IF) {
2851 		DHD_INFO(("<0> interface:%d OP:%d don't pass to wext,"
2852 			"net_device might not be created yet\n",
2853 				*ifidx, ntoh32(event->event_type)));
2854 		return bcmerror;
2855 	}
2856 
2857 	ASSERT(dhd->iflist[*ifidx]->net != NULL);
2858 
2859 	if (dhd->iflist[*ifidx]->net)
2860 		wl_iw_event(dhd->iflist[*ifidx]->net, event, *data);
2861 #endif /* defined(CONFIG_WIRELESS_EXT) */
2862 
2863 	return (bcmerror);
2864 }
2865 
2866 /* send up locally generated event */
2867 void
2868 dhd_sendup_event(dhd_pub_t *dhdp, wl_event_msg_t *event, void *data)
2869 {
2870 	switch (ntoh32(event->event_type)) {
2871 	default:
2872 		break;
2873 	}
2874 }
2875 
2876 void dhd_wait_for_event(dhd_pub_t *dhd, bool *lockvar)
2877 {
2878 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0))
2879 	struct dhd_info *dhdinfo =  dhd->info;
2880 	dhd_os_sdunlock(dhd);
2881 	wait_event_interruptible_timeout(dhdinfo->ctrl_wait, (*lockvar == FALSE), HZ * 2);
2882 	dhd_os_sdlock(dhd);
2883 #endif
2884 	return;
2885 }
2886 
2887 void dhd_wait_event_wakeup(dhd_pub_t *dhd)
2888 {
2889 #if (LINUX_VERSION_CODE >= KERNEL_VERSION(2, 6, 0))
2890 	struct dhd_info *dhdinfo =  dhd->info;
2891 	if (waitqueue_active(&dhdinfo->ctrl_wait))
2892 		wake_up_interruptible(&dhdinfo->ctrl_wait);
2893 #endif
2894 	return;
2895 }
2896 
2897 int
2898 dhd_dev_reset(struct net_device *dev, uint8 flag)
2899 {
2900 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2901 
2902 	/* Turning off watchdog */
2903 	if (flag)
2904 		dhd_os_wd_timer(&dhd->pub, 0);
2905 
2906 	dhd_bus_devreset(&dhd->pub, flag);
2907 
2908 	/* Turning on watchdog back */
2909 	if (!flag)
2910 		dhd_os_wd_timer(&dhd->pub, dhd_watchdog_ms);
2911 	DHD_ERROR(("%s:  WLAN OFF DONE\n", __FUNCTION__));
2912 
2913 	return 1;
2914 }
2915 
2916 int net_os_set_suspend_disable(struct net_device *dev, int val)
2917 {
2918 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2919 	int ret = 0;
2920 
2921 	if (dhd) {
2922 		ret = dhd->pub.suspend_disable_flag;
2923 		dhd->pub.suspend_disable_flag = val;
2924 	}
2925 	return ret;
2926 }
2927 
2928 int net_os_set_suspend(struct net_device *dev, int val)
2929 {
2930 	int ret = 0;
2931 #if defined(CONFIG_HAS_EARLYSUSPEND)
2932 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2933 
2934 	if (dhd) {
2935 		dhd_os_proto_block(&dhd->pub);
2936 		ret = dhd_set_suspend(val, &dhd->pub);
2937 		dhd_os_proto_unblock(&dhd->pub);
2938 	}
2939 #endif /* defined(CONFIG_HAS_EARLYSUSPEND) */
2940 	return ret;
2941 }
2942 
2943 int net_os_set_dtim_skip(struct net_device *dev, int val)
2944 {
2945 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2946 
2947 	if (dhd)
2948 		dhd->pub.dtim_skip = val;
2949 
2950 	return 0;
2951 }
2952 
2953 int net_os_set_packet_filter(struct net_device *dev, int val)
2954 {
2955 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2956 	int ret = 0;
2957 
2958 	/* Packet filtering is set only if we still in early-suspend and
2959 	 * we need either to turn it ON or turn it OFF
2960 	 * We can always turn it OFF in case of early-suspend, but we turn it
2961 	 * back ON only if suspend_disable_flag was not set
2962 	*/
2963 	if (dhd && dhd->pub.up) {
2964 		dhd_os_proto_block(&dhd->pub);
2965 		if (dhd->pub.in_suspend) {
2966 			if (!val || (val && !dhd->pub.suspend_disable_flag))
2967 				dhd_set_packet_filter(val, &dhd->pub);
2968 		}
2969 		dhd_os_proto_unblock(&dhd->pub);
2970 	}
2971 	return ret;
2972 }
2973 
2974 
2975 void
2976 dhd_dev_init_ioctl(struct net_device *dev)
2977 {
2978 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2979 
2980 	dhd_preinit_ioctls(&dhd->pub);
2981 }
2982 
2983 #ifdef PNO_SUPPORT
2984 /* Linux wrapper to call common dhd_pno_clean */
2985 int
2986 dhd_dev_pno_reset(struct net_device *dev)
2987 {
2988 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2989 
2990 	return (dhd_pno_clean(&dhd->pub));
2991 }
2992 
2993 
2994 /* Linux wrapper to call common dhd_pno_enable */
2995 int
2996 dhd_dev_pno_enable(struct net_device *dev,  int pfn_enabled)
2997 {
2998 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
2999 
3000 	return (dhd_pno_enable(&dhd->pub, pfn_enabled));
3001 }
3002 
3003 
3004 /* Linux wrapper to call common dhd_pno_set */
3005 int
3006 dhd_dev_pno_set(struct net_device *dev, wlc_ssid_t* ssids_local, int nssid, ushort  scan_fr)
3007 {
3008 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
3009 
3010 	return (dhd_pno_set(&dhd->pub, ssids_local, nssid, scan_fr));
3011 }
3012 
3013 /* Linux wrapper to get  pno status */
3014 int
3015 dhd_dev_get_pno_status(struct net_device *dev)
3016 {
3017 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
3018 
3019 	return (dhd_pno_get_status(&dhd->pub));
3020 }
3021 
3022 #endif /* PNO_SUPPORT */
3023 
3024 static int
3025 dhd_get_pend_8021x_cnt(dhd_info_t *dhd)
3026 {
3027 	return (atomic_read(&dhd->pend_8021x_cnt));
3028 }
3029 
3030 #define MAX_WAIT_FOR_8021X_TX	10
3031 
3032 int
3033 dhd_wait_pend8021x(struct net_device *dev)
3034 {
3035 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
3036 	int timeout = 10 * HZ / 1000;
3037 	int ntimes = MAX_WAIT_FOR_8021X_TX;
3038 	int pend = dhd_get_pend_8021x_cnt(dhd);
3039 
3040 	while (ntimes && pend) {
3041 		if (pend) {
3042 			set_current_state(TASK_INTERRUPTIBLE);
3043 			schedule_timeout(timeout);
3044 			set_current_state(TASK_RUNNING);
3045 			ntimes--;
3046 		}
3047 		pend = dhd_get_pend_8021x_cnt(dhd);
3048 	}
3049 	return pend;
3050 }
3051 
3052 #ifdef DHD_DEBUG
3053 int
3054 write_to_file(dhd_pub_t *dhd, uint8 *buf, int size)
3055 {
3056 	int ret = 0;
3057 	struct file *fp;
3058 	mm_segment_t old_fs;
3059 	loff_t pos = 0;
3060 
3061 	/* change to KERNEL_DS address limit */
3062 	old_fs = get_fs();
3063 	set_fs(KERNEL_DS);
3064 
3065 	/* open file to write */
3066 	fp = filp_open("/tmp/mem_dump", O_WRONLY|O_CREAT, 0640);
3067 	if (!fp) {
3068 		printf("%s: open file error\n", __FUNCTION__);
3069 		ret = -1;
3070 		goto exit;
3071 	}
3072 
3073 	/* Write buf to file */
3074 	fp->f_op->write(fp, buf, size, &pos);
3075 
3076 exit:
3077 	/* free buf before return */
3078 	MFREE(dhd->osh, buf, size);
3079 	/* close file before return */
3080 	if (fp)
3081 		filp_close(fp, current->files);
3082 	/* restore previous address limit */
3083 	set_fs(old_fs);
3084 
3085 	return ret;
3086 }
3087 #endif /* DHD_DEBUG */
3088 
3089 int dhd_os_wake_lock_timeout(dhd_pub_t *pub)
3090 {
3091 	dhd_info_t *dhd = (dhd_info_t *)(pub->info);
3092 	unsigned long flags;
3093 	int ret = 0;
3094 
3095 	if (dhd) {
3096 		spin_lock_irqsave(&dhd->wl_lock, flags);
3097 		ret = dhd->wl_packet;
3098 #ifdef CONFIG_HAS_WAKELOCK
3099 		if (dhd->wl_packet)
3100 			wake_lock_timeout(&dhd->wl_rxwake, HZ);
3101 #endif
3102 		dhd->wl_packet = 0;
3103 		spin_unlock_irqrestore(&dhd->wl_lock, flags);
3104 	}
3105 	/* printk("%s: %d\n", __FUNCTION__, ret); */
3106 	return ret;
3107 }
3108 
3109 int net_os_wake_lock_timeout(struct net_device *dev)
3110 {
3111 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
3112 	int ret = 0;
3113 
3114 	if (dhd)
3115 		ret = dhd_os_wake_lock_timeout(&dhd->pub);
3116 	return ret;
3117 }
3118 
3119 int dhd_os_wake_lock_timeout_enable(dhd_pub_t *pub)
3120 {
3121 	dhd_info_t *dhd = (dhd_info_t *)(pub->info);
3122 	unsigned long flags;
3123 
3124 	if (dhd) {
3125 		spin_lock_irqsave(&dhd->wl_lock, flags);
3126 		dhd->wl_packet = 1;
3127 		spin_unlock_irqrestore(&dhd->wl_lock, flags);
3128 	}
3129 	/* printk("%s\n",__func__); */
3130 	return 0;
3131 }
3132 
3133 int net_os_wake_lock_timeout_enable(struct net_device *dev)
3134 {
3135 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
3136 	int ret = 0;
3137 
3138 	if (dhd)
3139 		ret = dhd_os_wake_lock_timeout_enable(&dhd->pub);
3140 	return ret;
3141 }
3142 
3143 int dhd_os_wake_lock(dhd_pub_t *pub)
3144 {
3145 	dhd_info_t *dhd = (dhd_info_t *)(pub->info);
3146 	unsigned long flags;
3147 	int ret = 0;
3148 
3149 	if (dhd) {
3150 		spin_lock_irqsave(&dhd->wl_lock, flags);
3151 #ifdef CONFIG_HAS_WAKELOCK
3152 		if (!dhd->wl_count)
3153 			wake_lock(&dhd->wl_wifi);
3154 #endif
3155 		dhd->wl_count++;
3156 		ret = dhd->wl_count;
3157 		spin_unlock_irqrestore(&dhd->wl_lock, flags);
3158 	}
3159 	/* printk("%s: %d\n", __FUNCTION__, ret); */
3160 	return ret;
3161 }
3162 
3163 int net_os_wake_lock(struct net_device *dev)
3164 {
3165 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
3166 	int ret = 0;
3167 
3168 	if (dhd)
3169 		ret = dhd_os_wake_lock(&dhd->pub);
3170 	return ret;
3171 }
3172 
3173 int dhd_os_wake_unlock(dhd_pub_t *pub)
3174 {
3175 	dhd_info_t *dhd = (dhd_info_t *)(pub->info);
3176 	unsigned long flags;
3177 	int ret = 0;
3178 
3179 	dhd_os_wake_lock_timeout(pub);
3180 	if (dhd) {
3181 		spin_lock_irqsave(&dhd->wl_lock, flags);
3182 		if (dhd->wl_count) {
3183 			dhd->wl_count--;
3184 #ifdef CONFIG_HAS_WAKELOCK
3185 			if (!dhd->wl_count)
3186 				wake_unlock(&dhd->wl_wifi);
3187 #endif
3188 			ret = dhd->wl_count;
3189 		}
3190 		spin_unlock_irqrestore(&dhd->wl_lock, flags);
3191 	}
3192 	/* printk("%s: %d\n", __FUNCTION__, ret); */
3193 	return ret;
3194 }
3195 
3196 int net_os_wake_unlock(struct net_device *dev)
3197 {
3198 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
3199 	int ret = 0;
3200 
3201 	if (dhd)
3202 		ret = dhd_os_wake_unlock(&dhd->pub);
3203 	return ret;
3204 }
3205 
3206 int net_os_send_hang_message(struct net_device *dev)
3207 {
3208 	dhd_info_t *dhd = *(dhd_info_t **)netdev_priv(dev);
3209 	int ret = 0;
3210 
3211 	if (dhd) {
3212 		if (!dhd->hang_was_sent) {
3213 			dhd->hang_was_sent = 1;
3214 			ret = wl_iw_send_priv_event(dev, "HANG");
3215 		}
3216 	}
3217 	return ret;
3218 }
3219