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1 /******************************************************************************
2  *
3  * Copyright(c) 2009-2012  Realtek Corporation. All rights reserved.
4  *
5  * This program is free software; you can redistribute it and/or modify it
6  * under the terms of version 2 of the GNU General Public License as
7  * published by the Free Software Foundation.
8  *
9  * This program is distributed in the hope that it will be useful, but WITHOUT
10  * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
11  * FITNESS FOR A PARTICULAR PURPOSE.  See the GNU General Public License for
12  * more details.
13  *
14  * You should have received a copy of the GNU General Public License along with
15  * this program; if not, write to the Free Software Foundation, Inc.,
16  * 51 Franklin Street, Fifth Floor, Boston, MA 02110, USA
17  *
18  * The full GNU General Public License is included in this distribution in the
19  * file called LICENSE.
20  *
21  * Contact Information:
22  * wlanfae <wlanfae@realtek.com>
23  * Realtek Corporation, No. 2, Innovation Road II, Hsinchu Science Park,
24  * Hsinchu 300, Taiwan.
25  *
26  *****************************************************************************/
27 
28 #include "wifi.h"
29 #include "core.h"
30 #include "usb.h"
31 #include "base.h"
32 #include "ps.h"
33 #include "rtl8192c/fw_common.h"
34 #include <linux/export.h>
35 
36 #define	REALTEK_USB_VENQT_READ			0xC0
37 #define	REALTEK_USB_VENQT_WRITE			0x40
38 #define REALTEK_USB_VENQT_CMD_REQ		0x05
39 #define	REALTEK_USB_VENQT_CMD_IDX		0x00
40 
41 #define MAX_USBCTRL_VENDORREQ_TIMES		10
42 
usbctrl_async_callback(struct urb * urb)43 static void usbctrl_async_callback(struct urb *urb)
44 {
45 	if (urb) {
46 		/* free dr */
47 		kfree(urb->setup_packet);
48 		/* free databuf */
49 		kfree(urb->transfer_buffer);
50 	}
51 }
52 
_usbctrl_vendorreq_async_write(struct usb_device * udev,u8 request,u16 value,u16 index,void * pdata,u16 len)53 static int _usbctrl_vendorreq_async_write(struct usb_device *udev, u8 request,
54 					  u16 value, u16 index, void *pdata,
55 					  u16 len)
56 {
57 	int rc;
58 	unsigned int pipe;
59 	u8 reqtype;
60 	struct usb_ctrlrequest *dr;
61 	struct urb *urb;
62 	const u16 databuf_maxlen = REALTEK_USB_VENQT_MAX_BUF_SIZE;
63 	u8 *databuf;
64 
65 	if (WARN_ON_ONCE(len > databuf_maxlen))
66 		len = databuf_maxlen;
67 
68 	pipe = usb_sndctrlpipe(udev, 0); /* write_out */
69 	reqtype =  REALTEK_USB_VENQT_WRITE;
70 
71 	dr = kmalloc(sizeof(*dr), GFP_ATOMIC);
72 	if (!dr)
73 		return -ENOMEM;
74 
75 	databuf = kmalloc(databuf_maxlen, GFP_ATOMIC);
76 	if (!databuf) {
77 		kfree(dr);
78 		return -ENOMEM;
79 	}
80 
81 	urb = usb_alloc_urb(0, GFP_ATOMIC);
82 	if (!urb) {
83 		kfree(databuf);
84 		kfree(dr);
85 		return -ENOMEM;
86 	}
87 
88 	dr->bRequestType = reqtype;
89 	dr->bRequest = request;
90 	dr->wValue = cpu_to_le16(value);
91 	dr->wIndex = cpu_to_le16(index);
92 	dr->wLength = cpu_to_le16(len);
93 	/* data are already in little-endian order */
94 	memcpy(databuf, pdata, len);
95 	usb_fill_control_urb(urb, udev, pipe,
96 			     (unsigned char *)dr, databuf, len,
97 			     usbctrl_async_callback, NULL);
98 	rc = usb_submit_urb(urb, GFP_ATOMIC);
99 	if (rc < 0) {
100 		kfree(databuf);
101 		kfree(dr);
102 	}
103 	usb_free_urb(urb);
104 	return rc;
105 }
106 
_usbctrl_vendorreq_sync_read(struct usb_device * udev,u8 request,u16 value,u16 index,void * pdata,u16 len)107 static int _usbctrl_vendorreq_sync_read(struct usb_device *udev, u8 request,
108 					u16 value, u16 index, void *pdata,
109 					u16 len)
110 {
111 	unsigned int pipe;
112 	int status;
113 	u8 reqtype;
114 	int vendorreq_times = 0;
115 	static int count;
116 
117 	pipe = usb_rcvctrlpipe(udev, 0); /* read_in */
118 	reqtype =  REALTEK_USB_VENQT_READ;
119 
120 	do {
121 		status = usb_control_msg(udev, pipe, request, reqtype, value,
122 					 index, pdata, len, 0); /*max. timeout*/
123 		if (status < 0) {
124 			/* firmware download is checksumed, don't retry */
125 			if ((value >= FW_8192C_START_ADDRESS &&
126 			    value <= FW_8192C_END_ADDRESS))
127 				break;
128 		} else {
129 			break;
130 		}
131 	} while (++vendorreq_times < MAX_USBCTRL_VENDORREQ_TIMES);
132 
133 	if (status < 0 && count++ < 4)
134 		pr_err("reg 0x%x, usbctrl_vendorreq TimeOut! status:0x%x value=0x%x\n",
135 		       value, status, *(u32 *)pdata);
136 	return status;
137 }
138 
_usb_read_sync(struct rtl_priv * rtlpriv,u32 addr,u16 len)139 static u32 _usb_read_sync(struct rtl_priv *rtlpriv, u32 addr, u16 len)
140 {
141 	struct device *dev = rtlpriv->io.dev;
142 	struct usb_device *udev = to_usb_device(dev);
143 	u8 request;
144 	u16 wvalue;
145 	u16 index;
146 	__le32 *data;
147 	unsigned long flags;
148 
149 	spin_lock_irqsave(&rtlpriv->locks.usb_lock, flags);
150 	if (++rtlpriv->usb_data_index >= RTL_USB_MAX_RX_COUNT)
151 		rtlpriv->usb_data_index = 0;
152 	data = &rtlpriv->usb_data[rtlpriv->usb_data_index];
153 	spin_unlock_irqrestore(&rtlpriv->locks.usb_lock, flags);
154 	request = REALTEK_USB_VENQT_CMD_REQ;
155 	index = REALTEK_USB_VENQT_CMD_IDX; /* n/a */
156 
157 	wvalue = (u16)addr;
158 	_usbctrl_vendorreq_sync_read(udev, request, wvalue, index, data, len);
159 	return le32_to_cpu(*data);
160 }
161 
_usb_read8_sync(struct rtl_priv * rtlpriv,u32 addr)162 static u8 _usb_read8_sync(struct rtl_priv *rtlpriv, u32 addr)
163 {
164 	return (u8)_usb_read_sync(rtlpriv, addr, 1);
165 }
166 
_usb_read16_sync(struct rtl_priv * rtlpriv,u32 addr)167 static u16 _usb_read16_sync(struct rtl_priv *rtlpriv, u32 addr)
168 {
169 	return (u16)_usb_read_sync(rtlpriv, addr, 2);
170 }
171 
_usb_read32_sync(struct rtl_priv * rtlpriv,u32 addr)172 static u32 _usb_read32_sync(struct rtl_priv *rtlpriv, u32 addr)
173 {
174 	return _usb_read_sync(rtlpriv, addr, 4);
175 }
176 
_usb_write_async(struct usb_device * udev,u32 addr,u32 val,u16 len)177 static void _usb_write_async(struct usb_device *udev, u32 addr, u32 val,
178 			     u16 len)
179 {
180 	u8 request;
181 	u16 wvalue;
182 	u16 index;
183 	__le32 data;
184 
185 	request = REALTEK_USB_VENQT_CMD_REQ;
186 	index = REALTEK_USB_VENQT_CMD_IDX; /* n/a */
187 	wvalue = (u16)(addr&0x0000ffff);
188 	data = cpu_to_le32(val);
189 	_usbctrl_vendorreq_async_write(udev, request, wvalue, index, &data,
190 				       len);
191 }
192 
_usb_write8_async(struct rtl_priv * rtlpriv,u32 addr,u8 val)193 static void _usb_write8_async(struct rtl_priv *rtlpriv, u32 addr, u8 val)
194 {
195 	struct device *dev = rtlpriv->io.dev;
196 
197 	_usb_write_async(to_usb_device(dev), addr, val, 1);
198 }
199 
_usb_write16_async(struct rtl_priv * rtlpriv,u32 addr,u16 val)200 static void _usb_write16_async(struct rtl_priv *rtlpriv, u32 addr, u16 val)
201 {
202 	struct device *dev = rtlpriv->io.dev;
203 
204 	_usb_write_async(to_usb_device(dev), addr, val, 2);
205 }
206 
_usb_write32_async(struct rtl_priv * rtlpriv,u32 addr,u32 val)207 static void _usb_write32_async(struct rtl_priv *rtlpriv, u32 addr, u32 val)
208 {
209 	struct device *dev = rtlpriv->io.dev;
210 
211 	_usb_write_async(to_usb_device(dev), addr, val, 4);
212 }
213 
_usb_writeN_sync(struct rtl_priv * rtlpriv,u32 addr,void * data,u16 len)214 static void _usb_writeN_sync(struct rtl_priv *rtlpriv, u32 addr, void *data,
215 			     u16 len)
216 {
217 	struct device *dev = rtlpriv->io.dev;
218 	struct usb_device *udev = to_usb_device(dev);
219 	u8 request = REALTEK_USB_VENQT_CMD_REQ;
220 	u8 reqtype =  REALTEK_USB_VENQT_WRITE;
221 	u16 wvalue;
222 	u16 index = REALTEK_USB_VENQT_CMD_IDX;
223 	int pipe = usb_sndctrlpipe(udev, 0); /* write_out */
224 	u8 *buffer;
225 
226 	wvalue = (u16)(addr & 0x0000ffff);
227 	buffer = kmemdup(data, len, GFP_ATOMIC);
228 	if (!buffer)
229 		return;
230 	usb_control_msg(udev, pipe, request, reqtype, wvalue,
231 			index, buffer, len, 50);
232 
233 	kfree(buffer);
234 }
235 
_rtl_usb_io_handler_init(struct device * dev,struct ieee80211_hw * hw)236 static void _rtl_usb_io_handler_init(struct device *dev,
237 				     struct ieee80211_hw *hw)
238 {
239 	struct rtl_priv *rtlpriv = rtl_priv(hw);
240 
241 	rtlpriv->io.dev = dev;
242 	mutex_init(&rtlpriv->io.bb_mutex);
243 	rtlpriv->io.write8_async	= _usb_write8_async;
244 	rtlpriv->io.write16_async	= _usb_write16_async;
245 	rtlpriv->io.write32_async	= _usb_write32_async;
246 	rtlpriv->io.read8_sync		= _usb_read8_sync;
247 	rtlpriv->io.read16_sync		= _usb_read16_sync;
248 	rtlpriv->io.read32_sync		= _usb_read32_sync;
249 	rtlpriv->io.writeN_sync		= _usb_writeN_sync;
250 }
251 
_rtl_usb_io_handler_release(struct ieee80211_hw * hw)252 static void _rtl_usb_io_handler_release(struct ieee80211_hw *hw)
253 {
254 	struct rtl_priv __maybe_unused *rtlpriv = rtl_priv(hw);
255 
256 	mutex_destroy(&rtlpriv->io.bb_mutex);
257 }
258 
259 /**
260  *
261  *	Default aggregation handler. Do nothing and just return the oldest skb.
262  */
_none_usb_tx_aggregate_hdl(struct ieee80211_hw * hw,struct sk_buff_head * list)263 static struct sk_buff *_none_usb_tx_aggregate_hdl(struct ieee80211_hw *hw,
264 						  struct sk_buff_head *list)
265 {
266 	return skb_dequeue(list);
267 }
268 
269 #define IS_HIGH_SPEED_USB(udev) \
270 		((USB_SPEED_HIGH == (udev)->speed) ? true : false)
271 
_rtl_usb_init_tx(struct ieee80211_hw * hw)272 static int _rtl_usb_init_tx(struct ieee80211_hw *hw)
273 {
274 	u32 i;
275 	struct rtl_priv *rtlpriv = rtl_priv(hw);
276 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
277 
278 	rtlusb->max_bulk_out_size = IS_HIGH_SPEED_USB(rtlusb->udev)
279 						    ? USB_HIGH_SPEED_BULK_SIZE
280 						    : USB_FULL_SPEED_BULK_SIZE;
281 
282 	RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG, "USB Max Bulk-out Size=%d\n",
283 		 rtlusb->max_bulk_out_size);
284 
285 	for (i = 0; i < __RTL_TXQ_NUM; i++) {
286 		u32 ep_num = rtlusb->ep_map.ep_mapping[i];
287 		if (!ep_num) {
288 			RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
289 				 "Invalid endpoint map setting!\n");
290 			return -EINVAL;
291 		}
292 	}
293 
294 	rtlusb->usb_tx_post_hdl =
295 		 rtlpriv->cfg->usb_interface_cfg->usb_tx_post_hdl;
296 	rtlusb->usb_tx_cleanup	=
297 		 rtlpriv->cfg->usb_interface_cfg->usb_tx_cleanup;
298 	rtlusb->usb_tx_aggregate_hdl =
299 		 (rtlpriv->cfg->usb_interface_cfg->usb_tx_aggregate_hdl)
300 		 ? rtlpriv->cfg->usb_interface_cfg->usb_tx_aggregate_hdl
301 		 : &_none_usb_tx_aggregate_hdl;
302 
303 	init_usb_anchor(&rtlusb->tx_submitted);
304 	for (i = 0; i < RTL_USB_MAX_EP_NUM; i++) {
305 		skb_queue_head_init(&rtlusb->tx_skb_queue[i]);
306 		init_usb_anchor(&rtlusb->tx_pending[i]);
307 	}
308 	return 0;
309 }
310 
311 static void _rtl_rx_work(unsigned long param);
312 
_rtl_usb_init_rx(struct ieee80211_hw * hw)313 static int _rtl_usb_init_rx(struct ieee80211_hw *hw)
314 {
315 	struct rtl_priv *rtlpriv = rtl_priv(hw);
316 	struct rtl_usb_priv *usb_priv = rtl_usbpriv(hw);
317 	struct rtl_usb *rtlusb = rtl_usbdev(usb_priv);
318 
319 	rtlusb->rx_max_size = rtlpriv->cfg->usb_interface_cfg->rx_max_size;
320 	rtlusb->rx_urb_num = rtlpriv->cfg->usb_interface_cfg->rx_urb_num;
321 	rtlusb->in_ep = rtlpriv->cfg->usb_interface_cfg->in_ep_num;
322 	rtlusb->usb_rx_hdl = rtlpriv->cfg->usb_interface_cfg->usb_rx_hdl;
323 	rtlusb->usb_rx_segregate_hdl =
324 		rtlpriv->cfg->usb_interface_cfg->usb_rx_segregate_hdl;
325 
326 	pr_info("rx_max_size %d, rx_urb_num %d, in_ep %d\n",
327 		rtlusb->rx_max_size, rtlusb->rx_urb_num, rtlusb->in_ep);
328 	init_usb_anchor(&rtlusb->rx_submitted);
329 	init_usb_anchor(&rtlusb->rx_cleanup_urbs);
330 
331 	skb_queue_head_init(&rtlusb->rx_queue);
332 	rtlusb->rx_work_tasklet.func = _rtl_rx_work;
333 	rtlusb->rx_work_tasklet.data = (unsigned long)rtlusb;
334 
335 	return 0;
336 }
337 
_rtl_usb_init(struct ieee80211_hw * hw)338 static int _rtl_usb_init(struct ieee80211_hw *hw)
339 {
340 	struct rtl_priv *rtlpriv = rtl_priv(hw);
341 	struct rtl_usb_priv *usb_priv = rtl_usbpriv(hw);
342 	struct rtl_usb *rtlusb = rtl_usbdev(usb_priv);
343 	int err;
344 	u8 epidx;
345 	struct usb_interface	*usb_intf = rtlusb->intf;
346 	u8 epnums = usb_intf->cur_altsetting->desc.bNumEndpoints;
347 
348 	rtlusb->out_ep_nums = rtlusb->in_ep_nums = 0;
349 	for (epidx = 0; epidx < epnums; epidx++) {
350 		struct usb_endpoint_descriptor *pep_desc;
351 		pep_desc = &usb_intf->cur_altsetting->endpoint[epidx].desc;
352 
353 		if (usb_endpoint_dir_in(pep_desc))
354 			rtlusb->in_ep_nums++;
355 		else if (usb_endpoint_dir_out(pep_desc))
356 			rtlusb->out_ep_nums++;
357 
358 		RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
359 			 "USB EP(0x%02x), MaxPacketSize=%d, Interval=%d\n",
360 			 pep_desc->bEndpointAddress, pep_desc->wMaxPacketSize,
361 			 pep_desc->bInterval);
362 	}
363 	if (rtlusb->in_ep_nums <  rtlpriv->cfg->usb_interface_cfg->in_ep_num) {
364 		pr_err("Too few input end points found\n");
365 		return -EINVAL;
366 	}
367 	if (rtlusb->out_ep_nums == 0) {
368 		pr_err("No output end points found\n");
369 		return -EINVAL;
370 	}
371 	/* usb endpoint mapping */
372 	err = rtlpriv->cfg->usb_interface_cfg->usb_endpoint_mapping(hw);
373 	rtlusb->usb_mq_to_hwq =  rtlpriv->cfg->usb_interface_cfg->usb_mq_to_hwq;
374 	_rtl_usb_init_tx(hw);
375 	_rtl_usb_init_rx(hw);
376 	return err;
377 }
378 
rtl_usb_init_sw(struct ieee80211_hw * hw)379 static void rtl_usb_init_sw(struct ieee80211_hw *hw)
380 {
381 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
382 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
383 	struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
384 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
385 
386 	rtlhal->hw = hw;
387 	ppsc->inactiveps = false;
388 	ppsc->leisure_ps = false;
389 	ppsc->fwctrl_lps = false;
390 	ppsc->reg_fwctrl_lps = 3;
391 	ppsc->reg_max_lps_awakeintvl = 5;
392 	ppsc->fwctrl_psmode = FW_PS_DTIM_MODE;
393 
394 	 /* IBSS */
395 	mac->beacon_interval = 100;
396 
397 	 /* AMPDU */
398 	mac->min_space_cfg = 0;
399 	mac->max_mss_density = 0;
400 
401 	/* set sane AMPDU defaults */
402 	mac->current_ampdu_density = 7;
403 	mac->current_ampdu_factor = 3;
404 
405 	/* QOS */
406 	rtlusb->acm_method = eAcmWay2_SW;
407 
408 	/* IRQ */
409 	/* HIMR - turn all on */
410 	rtlusb->irq_mask[0] = 0xFFFFFFFF;
411 	/* HIMR_EX - turn all on */
412 	rtlusb->irq_mask[1] = 0xFFFFFFFF;
413 	rtlusb->disableHWSM =  true;
414 }
415 
416 static void _rtl_rx_completed(struct urb *urb);
417 
_rtl_prep_rx_urb(struct ieee80211_hw * hw,struct rtl_usb * rtlusb,struct urb * urb,gfp_t gfp_mask)418 static int _rtl_prep_rx_urb(struct ieee80211_hw *hw, struct rtl_usb *rtlusb,
419 			      struct urb *urb, gfp_t gfp_mask)
420 {
421 	struct rtl_priv *rtlpriv = rtl_priv(hw);
422 	void *buf;
423 
424 	buf = usb_alloc_coherent(rtlusb->udev, rtlusb->rx_max_size, gfp_mask,
425 				 &urb->transfer_dma);
426 	if (!buf) {
427 		RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
428 			 "Failed to usb_alloc_coherent!!\n");
429 		return -ENOMEM;
430 	}
431 
432 	usb_fill_bulk_urb(urb, rtlusb->udev,
433 			  usb_rcvbulkpipe(rtlusb->udev, rtlusb->in_ep),
434 			  buf, rtlusb->rx_max_size, _rtl_rx_completed, rtlusb);
435 	urb->transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
436 
437 	return 0;
438 }
439 
_rtl_usb_rx_process_agg(struct ieee80211_hw * hw,struct sk_buff * skb)440 static void _rtl_usb_rx_process_agg(struct ieee80211_hw *hw,
441 				    struct sk_buff *skb)
442 {
443 	struct rtl_priv *rtlpriv = rtl_priv(hw);
444 	u8 *rxdesc = skb->data;
445 	struct ieee80211_hdr *hdr;
446 	bool unicast = false;
447 	__le16 fc;
448 	struct ieee80211_rx_status rx_status = {0};
449 	struct rtl_stats stats = {
450 		.signal = 0,
451 		.noise = -98,
452 		.rate = 0,
453 	};
454 
455 	skb_pull(skb, RTL_RX_DESC_SIZE);
456 	rtlpriv->cfg->ops->query_rx_desc(hw, &stats, &rx_status, rxdesc, skb);
457 	skb_pull(skb, (stats.rx_drvinfo_size + stats.rx_bufshift));
458 	hdr = (struct ieee80211_hdr *)(skb->data);
459 	fc = hdr->frame_control;
460 	if (!stats.crc) {
461 		memcpy(IEEE80211_SKB_RXCB(skb), &rx_status, sizeof(rx_status));
462 
463 		if (is_broadcast_ether_addr(hdr->addr1)) {
464 			/*TODO*/;
465 		} else if (is_multicast_ether_addr(hdr->addr1)) {
466 			/*TODO*/
467 		} else {
468 			unicast = true;
469 			rtlpriv->stats.rxbytesunicast +=  skb->len;
470 		}
471 
472 		rtl_is_special_data(hw, skb, false);
473 
474 		if (ieee80211_is_data(fc)) {
475 			rtlpriv->cfg->ops->led_control(hw, LED_CTL_RX);
476 
477 			if (unicast)
478 				rtlpriv->link_info.num_rx_inperiod++;
479 		}
480 	}
481 }
482 
_rtl_usb_rx_process_noagg(struct ieee80211_hw * hw,struct sk_buff * skb)483 static void _rtl_usb_rx_process_noagg(struct ieee80211_hw *hw,
484 				      struct sk_buff *skb)
485 {
486 	struct rtl_priv *rtlpriv = rtl_priv(hw);
487 	u8 *rxdesc = skb->data;
488 	struct ieee80211_hdr *hdr;
489 	bool unicast = false;
490 	__le16 fc;
491 	struct ieee80211_rx_status rx_status = {0};
492 	struct rtl_stats stats = {
493 		.signal = 0,
494 		.noise = -98,
495 		.rate = 0,
496 	};
497 
498 	skb_pull(skb, RTL_RX_DESC_SIZE);
499 	rtlpriv->cfg->ops->query_rx_desc(hw, &stats, &rx_status, rxdesc, skb);
500 	skb_pull(skb, (stats.rx_drvinfo_size + stats.rx_bufshift));
501 	hdr = (struct ieee80211_hdr *)(skb->data);
502 	fc = hdr->frame_control;
503 	if (!stats.crc) {
504 		memcpy(IEEE80211_SKB_RXCB(skb), &rx_status, sizeof(rx_status));
505 
506 		if (is_broadcast_ether_addr(hdr->addr1)) {
507 			/*TODO*/;
508 		} else if (is_multicast_ether_addr(hdr->addr1)) {
509 			/*TODO*/
510 		} else {
511 			unicast = true;
512 			rtlpriv->stats.rxbytesunicast +=  skb->len;
513 		}
514 
515 		rtl_is_special_data(hw, skb, false);
516 
517 		if (ieee80211_is_data(fc)) {
518 			rtlpriv->cfg->ops->led_control(hw, LED_CTL_RX);
519 
520 			if (unicast)
521 				rtlpriv->link_info.num_rx_inperiod++;
522 		}
523 
524 		/* static bcn for roaming */
525 		rtl_beacon_statistic(hw, skb);
526 
527 		if (likely(rtl_action_proc(hw, skb, false)))
528 			ieee80211_rx(hw, skb);
529 		else
530 			dev_kfree_skb_any(skb);
531 	}
532 }
533 
_rtl_rx_pre_process(struct ieee80211_hw * hw,struct sk_buff * skb)534 static void _rtl_rx_pre_process(struct ieee80211_hw *hw, struct sk_buff *skb)
535 {
536 	struct sk_buff *_skb;
537 	struct sk_buff_head rx_queue;
538 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
539 
540 	skb_queue_head_init(&rx_queue);
541 	if (rtlusb->usb_rx_segregate_hdl)
542 		rtlusb->usb_rx_segregate_hdl(hw, skb, &rx_queue);
543 	WARN_ON(skb_queue_empty(&rx_queue));
544 	while (!skb_queue_empty(&rx_queue)) {
545 		_skb = skb_dequeue(&rx_queue);
546 		_rtl_usb_rx_process_agg(hw, _skb);
547 		ieee80211_rx(hw, _skb);
548 	}
549 }
550 
551 #define __RX_SKB_MAX_QUEUED	32
552 
_rtl_rx_work(unsigned long param)553 static void _rtl_rx_work(unsigned long param)
554 {
555 	struct rtl_usb *rtlusb = (struct rtl_usb *)param;
556 	struct ieee80211_hw *hw = usb_get_intfdata(rtlusb->intf);
557 	struct sk_buff *skb;
558 
559 	while ((skb = skb_dequeue(&rtlusb->rx_queue))) {
560 		if (unlikely(IS_USB_STOP(rtlusb))) {
561 			dev_kfree_skb_any(skb);
562 			continue;
563 		}
564 
565 		if (likely(!rtlusb->usb_rx_segregate_hdl)) {
566 			_rtl_usb_rx_process_noagg(hw, skb);
567 		} else {
568 			/* TO DO */
569 			_rtl_rx_pre_process(hw, skb);
570 			pr_err("rx agg not supported\n");
571 		}
572 	}
573 }
574 
_rtl_rx_get_padding(struct ieee80211_hdr * hdr,unsigned int len)575 static unsigned int _rtl_rx_get_padding(struct ieee80211_hdr *hdr,
576 					unsigned int len)
577 {
578 	unsigned int padding = 0;
579 
580 	/* make function no-op when possible */
581 	if (NET_IP_ALIGN == 0 || len < sizeof(*hdr))
582 		return 0;
583 
584 	/* alignment calculation as in lbtf_rx() / carl9170_rx_copy_data() */
585 	/* TODO: deduplicate common code, define helper function instead? */
586 
587 	if (ieee80211_is_data_qos(hdr->frame_control)) {
588 		u8 *qc = ieee80211_get_qos_ctl(hdr);
589 
590 		padding ^= NET_IP_ALIGN;
591 
592 		/* Input might be invalid, avoid accessing memory outside
593 		 * the buffer.
594 		 */
595 		if ((unsigned long)qc - (unsigned long)hdr < len &&
596 		    *qc & IEEE80211_QOS_CTL_A_MSDU_PRESENT)
597 			padding ^= NET_IP_ALIGN;
598 	}
599 
600 	if (ieee80211_has_a4(hdr->frame_control))
601 		padding ^= NET_IP_ALIGN;
602 
603 	return padding;
604 }
605 
606 #define __RADIO_TAP_SIZE_RSV	32
607 
_rtl_rx_completed(struct urb * _urb)608 static void _rtl_rx_completed(struct urb *_urb)
609 {
610 	struct rtl_usb *rtlusb = (struct rtl_usb *)_urb->context;
611 	struct ieee80211_hw *hw = usb_get_intfdata(rtlusb->intf);
612 	struct rtl_priv *rtlpriv = rtl_priv(hw);
613 	int err = 0;
614 
615 	if (unlikely(IS_USB_STOP(rtlusb)))
616 		goto free;
617 
618 	if (likely(0 == _urb->status)) {
619 		unsigned int padding;
620 		struct sk_buff *skb;
621 		unsigned int qlen;
622 		unsigned int size = _urb->actual_length;
623 		struct ieee80211_hdr *hdr;
624 
625 		if (size < RTL_RX_DESC_SIZE + sizeof(struct ieee80211_hdr)) {
626 			RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
627 				 "Too short packet from bulk IN! (len: %d)\n",
628 				 size);
629 			goto resubmit;
630 		}
631 
632 		qlen = skb_queue_len(&rtlusb->rx_queue);
633 		if (qlen >= __RX_SKB_MAX_QUEUED) {
634 			RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
635 				 "Pending RX skbuff queue full! (qlen: %d)\n",
636 				 qlen);
637 			goto resubmit;
638 		}
639 
640 		hdr = (void *)(_urb->transfer_buffer + RTL_RX_DESC_SIZE);
641 		padding = _rtl_rx_get_padding(hdr, size - RTL_RX_DESC_SIZE);
642 
643 		skb = dev_alloc_skb(size + __RADIO_TAP_SIZE_RSV + padding);
644 		if (!skb) {
645 			RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
646 				 "Can't allocate skb for bulk IN!\n");
647 			goto resubmit;
648 		}
649 
650 		_rtl_install_trx_info(rtlusb, skb, rtlusb->in_ep);
651 
652 		/* Make sure the payload data is 4 byte aligned. */
653 		skb_reserve(skb, padding);
654 
655 		/* reserve some space for mac80211's radiotap */
656 		skb_reserve(skb, __RADIO_TAP_SIZE_RSV);
657 
658 		memcpy(skb_put(skb, size), _urb->transfer_buffer, size);
659 
660 		skb_queue_tail(&rtlusb->rx_queue, skb);
661 		tasklet_schedule(&rtlusb->rx_work_tasklet);
662 
663 		goto resubmit;
664 	}
665 
666 	switch (_urb->status) {
667 	/* disconnect */
668 	case -ENOENT:
669 	case -ECONNRESET:
670 	case -ENODEV:
671 	case -ESHUTDOWN:
672 		goto free;
673 	default:
674 		break;
675 	}
676 
677 resubmit:
678 	usb_anchor_urb(_urb, &rtlusb->rx_submitted);
679 	err = usb_submit_urb(_urb, GFP_ATOMIC);
680 	if (unlikely(err)) {
681 		usb_unanchor_urb(_urb);
682 		goto free;
683 	}
684 	return;
685 
686 free:
687 	/* On some architectures, usb_free_coherent must not be called from
688 	 * hardirq context. Queue urb to cleanup list.
689 	 */
690 	usb_anchor_urb(_urb, &rtlusb->rx_cleanup_urbs);
691 }
692 
693 #undef __RADIO_TAP_SIZE_RSV
694 
_rtl_usb_cleanup_rx(struct ieee80211_hw * hw)695 static void _rtl_usb_cleanup_rx(struct ieee80211_hw *hw)
696 {
697 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
698 	struct urb *urb;
699 
700 	usb_kill_anchored_urbs(&rtlusb->rx_submitted);
701 
702 	tasklet_kill(&rtlusb->rx_work_tasklet);
703 	skb_queue_purge(&rtlusb->rx_queue);
704 
705 	while ((urb = usb_get_from_anchor(&rtlusb->rx_cleanup_urbs))) {
706 		usb_free_coherent(urb->dev, urb->transfer_buffer_length,
707 				urb->transfer_buffer, urb->transfer_dma);
708 		usb_free_urb(urb);
709 	}
710 }
711 
_rtl_usb_receive(struct ieee80211_hw * hw)712 static int _rtl_usb_receive(struct ieee80211_hw *hw)
713 {
714 	struct urb *urb;
715 	int err;
716 	int i;
717 	struct rtl_priv *rtlpriv = rtl_priv(hw);
718 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
719 
720 	WARN_ON(0 == rtlusb->rx_urb_num);
721 	/* 1600 == 1514 + max WLAN header + rtk info */
722 	WARN_ON(rtlusb->rx_max_size < 1600);
723 
724 	for (i = 0; i < rtlusb->rx_urb_num; i++) {
725 		err = -ENOMEM;
726 		urb = usb_alloc_urb(0, GFP_KERNEL);
727 		if (!urb) {
728 			RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
729 				 "Failed to alloc URB!!\n");
730 			goto err_out;
731 		}
732 
733 		err = _rtl_prep_rx_urb(hw, rtlusb, urb, GFP_KERNEL);
734 		if (err < 0) {
735 			RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
736 				 "Failed to prep_rx_urb!!\n");
737 			usb_free_urb(urb);
738 			goto err_out;
739 		}
740 
741 		usb_anchor_urb(urb, &rtlusb->rx_submitted);
742 		err = usb_submit_urb(urb, GFP_KERNEL);
743 		if (err)
744 			goto err_out;
745 		usb_free_urb(urb);
746 	}
747 	return 0;
748 
749 err_out:
750 	usb_kill_anchored_urbs(&rtlusb->rx_submitted);
751 	_rtl_usb_cleanup_rx(hw);
752 	return err;
753 }
754 
rtl_usb_start(struct ieee80211_hw * hw)755 static int rtl_usb_start(struct ieee80211_hw *hw)
756 {
757 	int err;
758 	struct rtl_priv *rtlpriv = rtl_priv(hw);
759 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
760 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
761 
762 	err = rtlpriv->cfg->ops->hw_init(hw);
763 	if (!err) {
764 		rtl_init_rx_config(hw);
765 
766 		/* Enable software */
767 		SET_USB_START(rtlusb);
768 		/* should after adapter start and interrupt enable. */
769 		set_hal_start(rtlhal);
770 
771 		/* Start bulk IN */
772 		err = _rtl_usb_receive(hw);
773 	}
774 
775 	return err;
776 }
777 /**
778  *
779  *
780  */
781 
782 /*=======================  tx =========================================*/
rtl_usb_cleanup(struct ieee80211_hw * hw)783 static void rtl_usb_cleanup(struct ieee80211_hw *hw)
784 {
785 	u32 i;
786 	struct sk_buff *_skb;
787 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
788 	struct ieee80211_tx_info *txinfo;
789 
790 	SET_USB_STOP(rtlusb);
791 
792 	/* clean up rx stuff. */
793 	_rtl_usb_cleanup_rx(hw);
794 
795 	/* clean up tx stuff */
796 	for (i = 0; i < RTL_USB_MAX_EP_NUM; i++) {
797 		while ((_skb = skb_dequeue(&rtlusb->tx_skb_queue[i]))) {
798 			rtlusb->usb_tx_cleanup(hw, _skb);
799 			txinfo = IEEE80211_SKB_CB(_skb);
800 			ieee80211_tx_info_clear_status(txinfo);
801 			txinfo->flags |= IEEE80211_TX_STAT_ACK;
802 			ieee80211_tx_status_irqsafe(hw, _skb);
803 		}
804 		usb_kill_anchored_urbs(&rtlusb->tx_pending[i]);
805 	}
806 	usb_kill_anchored_urbs(&rtlusb->tx_submitted);
807 }
808 
809 /**
810  *
811  * We may add some struct into struct rtl_usb later. Do deinit here.
812  *
813  */
rtl_usb_deinit(struct ieee80211_hw * hw)814 static void rtl_usb_deinit(struct ieee80211_hw *hw)
815 {
816 	rtl_usb_cleanup(hw);
817 }
818 
rtl_usb_stop(struct ieee80211_hw * hw)819 static void rtl_usb_stop(struct ieee80211_hw *hw)
820 {
821 	struct rtl_priv *rtlpriv = rtl_priv(hw);
822 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
823 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
824 
825 	/* should after adapter start and interrupt enable. */
826 	set_hal_stop(rtlhal);
827 	cancel_work_sync(&rtlpriv->works.fill_h2c_cmd);
828 	/* Enable software */
829 	SET_USB_STOP(rtlusb);
830 	rtl_usb_deinit(hw);
831 	rtlpriv->cfg->ops->hw_disable(hw);
832 }
833 
_rtl_submit_tx_urb(struct ieee80211_hw * hw,struct urb * _urb)834 static void _rtl_submit_tx_urb(struct ieee80211_hw *hw, struct urb *_urb)
835 {
836 	int err;
837 	struct rtl_priv *rtlpriv = rtl_priv(hw);
838 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
839 
840 	usb_anchor_urb(_urb, &rtlusb->tx_submitted);
841 	err = usb_submit_urb(_urb, GFP_ATOMIC);
842 	if (err < 0) {
843 		struct sk_buff *skb;
844 
845 		RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
846 			 "Failed to submit urb\n");
847 		usb_unanchor_urb(_urb);
848 		skb = (struct sk_buff *)_urb->context;
849 		kfree_skb(skb);
850 	}
851 	usb_free_urb(_urb);
852 }
853 
_usb_tx_post(struct ieee80211_hw * hw,struct urb * urb,struct sk_buff * skb)854 static int _usb_tx_post(struct ieee80211_hw *hw, struct urb *urb,
855 			struct sk_buff *skb)
856 {
857 	struct rtl_priv *rtlpriv = rtl_priv(hw);
858 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
859 	struct ieee80211_tx_info *txinfo;
860 
861 	rtlusb->usb_tx_post_hdl(hw, urb, skb);
862 	skb_pull(skb, RTL_TX_HEADER_SIZE);
863 	txinfo = IEEE80211_SKB_CB(skb);
864 	ieee80211_tx_info_clear_status(txinfo);
865 	txinfo->flags |= IEEE80211_TX_STAT_ACK;
866 
867 	if (urb->status) {
868 		RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
869 			 "Urb has error status 0x%X\n", urb->status);
870 		goto out;
871 	}
872 	/*  TODO:	statistics */
873 out:
874 	ieee80211_tx_status_irqsafe(hw, skb);
875 	return urb->status;
876 }
877 
_rtl_tx_complete(struct urb * urb)878 static void _rtl_tx_complete(struct urb *urb)
879 {
880 	struct sk_buff *skb = (struct sk_buff *)urb->context;
881 	struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
882 	struct rtl_usb *rtlusb = (struct rtl_usb *)info->rate_driver_data[0];
883 	struct ieee80211_hw *hw = usb_get_intfdata(rtlusb->intf);
884 	int err;
885 
886 	if (unlikely(IS_USB_STOP(rtlusb)))
887 		return;
888 	err = _usb_tx_post(hw, urb, skb);
889 	if (err) {
890 		/* Ignore error and keep issuiing other urbs */
891 		return;
892 	}
893 }
894 
_rtl_usb_tx_urb_setup(struct ieee80211_hw * hw,struct sk_buff * skb,u32 ep_num)895 static struct urb *_rtl_usb_tx_urb_setup(struct ieee80211_hw *hw,
896 				struct sk_buff *skb, u32 ep_num)
897 {
898 	struct rtl_priv *rtlpriv = rtl_priv(hw);
899 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
900 	struct urb *_urb;
901 
902 	WARN_ON(NULL == skb);
903 	_urb = usb_alloc_urb(0, GFP_ATOMIC);
904 	if (!_urb) {
905 		RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
906 			 "Can't allocate URB for bulk out!\n");
907 		kfree_skb(skb);
908 		return NULL;
909 	}
910 	_rtl_install_trx_info(rtlusb, skb, ep_num);
911 	usb_fill_bulk_urb(_urb, rtlusb->udev, usb_sndbulkpipe(rtlusb->udev,
912 			  ep_num), skb->data, skb->len, _rtl_tx_complete, skb);
913 	_urb->transfer_flags |= URB_ZERO_PACKET;
914 	return _urb;
915 }
916 
_rtl_usb_transmit(struct ieee80211_hw * hw,struct sk_buff * skb,enum rtl_txq qnum)917 static void _rtl_usb_transmit(struct ieee80211_hw *hw, struct sk_buff *skb,
918 		       enum rtl_txq qnum)
919 {
920 	struct rtl_priv *rtlpriv = rtl_priv(hw);
921 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
922 	u32 ep_num;
923 	struct urb *_urb = NULL;
924 	struct sk_buff *_skb = NULL;
925 
926 	WARN_ON(NULL == rtlusb->usb_tx_aggregate_hdl);
927 	if (unlikely(IS_USB_STOP(rtlusb))) {
928 		RT_TRACE(rtlpriv, COMP_USB, DBG_EMERG,
929 			 "USB device is stopping...\n");
930 		kfree_skb(skb);
931 		return;
932 	}
933 	ep_num = rtlusb->ep_map.ep_mapping[qnum];
934 	_skb = skb;
935 	_urb = _rtl_usb_tx_urb_setup(hw, _skb, ep_num);
936 	if (unlikely(!_urb)) {
937 		RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
938 			 "Can't allocate urb. Drop skb!\n");
939 		kfree_skb(skb);
940 		return;
941 	}
942 	_rtl_submit_tx_urb(hw, _urb);
943 }
944 
_rtl_usb_tx_preprocess(struct ieee80211_hw * hw,struct ieee80211_sta * sta,struct sk_buff * skb,u16 hw_queue)945 static void _rtl_usb_tx_preprocess(struct ieee80211_hw *hw,
946 				   struct ieee80211_sta *sta,
947 				   struct sk_buff *skb,
948 				   u16 hw_queue)
949 {
950 	struct rtl_priv *rtlpriv = rtl_priv(hw);
951 	struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
952 	struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
953 	struct rtl_tx_desc *pdesc = NULL;
954 	struct rtl_tcb_desc tcb_desc;
955 	struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)(skb->data);
956 	__le16 fc = hdr->frame_control;
957 	u8 *pda_addr = hdr->addr1;
958 	/* ssn */
959 	u8 *qc = NULL;
960 	u8 tid = 0;
961 	u16 seq_number = 0;
962 
963 	memset(&tcb_desc, 0, sizeof(struct rtl_tcb_desc));
964 	if (ieee80211_is_auth(fc)) {
965 		RT_TRACE(rtlpriv, COMP_SEND, DBG_DMESG, "MAC80211_LINKING\n");
966 		rtl_ips_nic_on(hw);
967 	}
968 
969 	if (rtlpriv->psc.sw_ps_enabled) {
970 		if (ieee80211_is_data(fc) && !ieee80211_is_nullfunc(fc) &&
971 		    !ieee80211_has_pm(fc))
972 			hdr->frame_control |= cpu_to_le16(IEEE80211_FCTL_PM);
973 	}
974 
975 	rtl_action_proc(hw, skb, true);
976 	if (is_multicast_ether_addr(pda_addr))
977 		rtlpriv->stats.txbytesmulticast += skb->len;
978 	else if (is_broadcast_ether_addr(pda_addr))
979 		rtlpriv->stats.txbytesbroadcast += skb->len;
980 	else
981 		rtlpriv->stats.txbytesunicast += skb->len;
982 	if (ieee80211_is_data_qos(fc)) {
983 		qc = ieee80211_get_qos_ctl(hdr);
984 		tid = qc[0] & IEEE80211_QOS_CTL_TID_MASK;
985 		seq_number = (le16_to_cpu(hdr->seq_ctrl) &
986 			     IEEE80211_SCTL_SEQ) >> 4;
987 		seq_number += 1;
988 		seq_number <<= 4;
989 	}
990 	rtlpriv->cfg->ops->fill_tx_desc(hw, hdr, (u8 *)pdesc, info, sta, skb,
991 					hw_queue, &tcb_desc);
992 	if (!ieee80211_has_morefrags(hdr->frame_control)) {
993 		if (qc)
994 			mac->tids[tid].seq_number = seq_number;
995 	}
996 	if (ieee80211_is_data(fc))
997 		rtlpriv->cfg->ops->led_control(hw, LED_CTL_TX);
998 }
999 
rtl_usb_tx(struct ieee80211_hw * hw,struct ieee80211_sta * sta,struct sk_buff * skb,struct rtl_tcb_desc * dummy)1000 static int rtl_usb_tx(struct ieee80211_hw *hw,
1001 		      struct ieee80211_sta *sta,
1002 		      struct sk_buff *skb,
1003 		      struct rtl_tcb_desc *dummy)
1004 {
1005 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
1006 	struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1007 	struct ieee80211_hdr *hdr = (struct ieee80211_hdr *)(skb->data);
1008 	__le16 fc = hdr->frame_control;
1009 	u16 hw_queue;
1010 
1011 	if (unlikely(is_hal_stop(rtlhal)))
1012 		goto err_free;
1013 	hw_queue = rtlusb->usb_mq_to_hwq(fc, skb_get_queue_mapping(skb));
1014 	_rtl_usb_tx_preprocess(hw, sta, skb, hw_queue);
1015 	_rtl_usb_transmit(hw, skb, hw_queue);
1016 	return NETDEV_TX_OK;
1017 
1018 err_free:
1019 	dev_kfree_skb_any(skb);
1020 	return NETDEV_TX_OK;
1021 }
1022 
rtl_usb_tx_chk_waitq_insert(struct ieee80211_hw * hw,struct ieee80211_sta * sta,struct sk_buff * skb)1023 static bool rtl_usb_tx_chk_waitq_insert(struct ieee80211_hw *hw,
1024 					struct ieee80211_sta *sta,
1025 					struct sk_buff *skb)
1026 {
1027 	return false;
1028 }
1029 
rtl_fill_h2c_cmd_work_callback(struct work_struct * work)1030 static void rtl_fill_h2c_cmd_work_callback(struct work_struct *work)
1031 {
1032 	struct rtl_works *rtlworks =
1033 	    container_of(work, struct rtl_works, fill_h2c_cmd);
1034 	struct ieee80211_hw *hw = rtlworks->hw;
1035 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1036 
1037 	rtlpriv->cfg->ops->fill_h2c_cmd(hw, H2C_RA_MASK, 5, rtlpriv->rate_mask);
1038 }
1039 
1040 static struct rtl_intf_ops rtl_usb_ops = {
1041 	.adapter_start = rtl_usb_start,
1042 	.adapter_stop = rtl_usb_stop,
1043 	.adapter_tx = rtl_usb_tx,
1044 	.waitq_insert = rtl_usb_tx_chk_waitq_insert,
1045 };
1046 
rtl_usb_probe(struct usb_interface * intf,const struct usb_device_id * id,struct rtl_hal_cfg * rtl_hal_cfg)1047 int rtl_usb_probe(struct usb_interface *intf,
1048 		  const struct usb_device_id *id,
1049 		  struct rtl_hal_cfg *rtl_hal_cfg)
1050 {
1051 	int err;
1052 	struct ieee80211_hw *hw = NULL;
1053 	struct rtl_priv *rtlpriv = NULL;
1054 	struct usb_device	*udev;
1055 	struct rtl_usb_priv *usb_priv;
1056 
1057 	hw = ieee80211_alloc_hw(sizeof(struct rtl_priv) +
1058 				sizeof(struct rtl_usb_priv), &rtl_ops);
1059 	if (!hw) {
1060 		RT_ASSERT(false, "ieee80211 alloc failed\n");
1061 		return -ENOMEM;
1062 	}
1063 	rtlpriv = hw->priv;
1064 	rtlpriv->usb_data = kzalloc(RTL_USB_MAX_RX_COUNT * sizeof(u32),
1065 				    GFP_KERNEL);
1066 	if (!rtlpriv->usb_data)
1067 		return -ENOMEM;
1068 
1069 	/* this spin lock must be initialized early */
1070 	spin_lock_init(&rtlpriv->locks.usb_lock);
1071 	INIT_WORK(&rtlpriv->works.fill_h2c_cmd,
1072 		  rtl_fill_h2c_cmd_work_callback);
1073 
1074 	rtlpriv->usb_data_index = 0;
1075 	init_completion(&rtlpriv->firmware_loading_complete);
1076 	SET_IEEE80211_DEV(hw, &intf->dev);
1077 	udev = interface_to_usbdev(intf);
1078 	usb_get_dev(udev);
1079 	usb_priv = rtl_usbpriv(hw);
1080 	memset(usb_priv, 0, sizeof(*usb_priv));
1081 	usb_priv->dev.intf = intf;
1082 	usb_priv->dev.udev = udev;
1083 	usb_set_intfdata(intf, hw);
1084 	/* init cfg & intf_ops */
1085 	rtlpriv->rtlhal.interface = INTF_USB;
1086 	rtlpriv->cfg = rtl_hal_cfg;
1087 	rtlpriv->intf_ops = &rtl_usb_ops;
1088 	rtl_dbgp_flag_init(hw);
1089 	/* Init IO handler */
1090 	_rtl_usb_io_handler_init(&udev->dev, hw);
1091 	rtlpriv->cfg->ops->read_chip_version(hw);
1092 	/*like read eeprom and so on */
1093 	rtlpriv->cfg->ops->read_eeprom_info(hw);
1094 	err = _rtl_usb_init(hw);
1095 	if (err)
1096 		goto error_out;
1097 	rtl_usb_init_sw(hw);
1098 	/* Init mac80211 sw */
1099 	err = rtl_init_core(hw);
1100 	if (err) {
1101 		RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
1102 			 "Can't allocate sw for mac80211\n");
1103 		goto error_out;
1104 	}
1105 	if (rtlpriv->cfg->ops->init_sw_vars(hw)) {
1106 		RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG, "Can't init_sw_vars\n");
1107 		goto error_out;
1108 	}
1109 	rtlpriv->cfg->ops->init_sw_leds(hw);
1110 
1111 	return 0;
1112 error_out:
1113 	rtl_deinit_core(hw);
1114 	_rtl_usb_io_handler_release(hw);
1115 	usb_put_dev(udev);
1116 	complete(&rtlpriv->firmware_loading_complete);
1117 	return -ENODEV;
1118 }
1119 EXPORT_SYMBOL(rtl_usb_probe);
1120 
rtl_usb_disconnect(struct usb_interface * intf)1121 void rtl_usb_disconnect(struct usb_interface *intf)
1122 {
1123 	struct ieee80211_hw *hw = usb_get_intfdata(intf);
1124 	struct rtl_priv *rtlpriv = rtl_priv(hw);
1125 	struct rtl_mac *rtlmac = rtl_mac(rtl_priv(hw));
1126 	struct rtl_usb *rtlusb = rtl_usbdev(rtl_usbpriv(hw));
1127 
1128 	if (unlikely(!rtlpriv))
1129 		return;
1130 
1131 	/* just in case driver is removed before firmware callback */
1132 	wait_for_completion(&rtlpriv->firmware_loading_complete);
1133 	/*ieee80211_unregister_hw will call ops_stop */
1134 	if (rtlmac->mac80211_registered == 1) {
1135 		ieee80211_unregister_hw(hw);
1136 		rtlmac->mac80211_registered = 0;
1137 	} else {
1138 		rtl_deinit_deferred_work(hw);
1139 		rtlpriv->intf_ops->adapter_stop(hw);
1140 	}
1141 	/*deinit rfkill */
1142 	/* rtl_deinit_rfkill(hw); */
1143 	rtl_usb_deinit(hw);
1144 	rtl_deinit_core(hw);
1145 	kfree(rtlpriv->usb_data);
1146 	rtlpriv->cfg->ops->deinit_sw_leds(hw);
1147 	rtlpriv->cfg->ops->deinit_sw_vars(hw);
1148 	_rtl_usb_io_handler_release(hw);
1149 	usb_put_dev(rtlusb->udev);
1150 	usb_set_intfdata(intf, NULL);
1151 	ieee80211_free_hw(hw);
1152 }
1153 EXPORT_SYMBOL(rtl_usb_disconnect);
1154 
rtl_usb_suspend(struct usb_interface * pusb_intf,pm_message_t message)1155 int rtl_usb_suspend(struct usb_interface *pusb_intf, pm_message_t message)
1156 {
1157 	return 0;
1158 }
1159 EXPORT_SYMBOL(rtl_usb_suspend);
1160 
rtl_usb_resume(struct usb_interface * pusb_intf)1161 int rtl_usb_resume(struct usb_interface *pusb_intf)
1162 {
1163 	return 0;
1164 }
1165 EXPORT_SYMBOL(rtl_usb_resume);
1166