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rtlwifi: Modify rtl_pci_init to return 0 on success
[mv-sheeva.git] / drivers / net / wireless / rtlwifi / pci.c
1 /******************************************************************************
2  *
3  * Copyright(c) 2009-2012  Realtek Corporation.
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  * Larry Finger <Larry.Finger@lwfinger.net>
27  *
28  *****************************************************************************/
29
30 #include "wifi.h"
31 #include "core.h"
32 #include "pci.h"
33 #include "base.h"
34 #include "ps.h"
35 #include "efuse.h"
36 #include <linux/export.h>
37
38 static const u16 pcibridge_vendors[PCI_BRIDGE_VENDOR_MAX] = {
39         PCI_VENDOR_ID_INTEL,
40         PCI_VENDOR_ID_ATI,
41         PCI_VENDOR_ID_AMD,
42         PCI_VENDOR_ID_SI
43 };
44
45 static const u8 ac_to_hwq[] = {
46         VO_QUEUE,
47         VI_QUEUE,
48         BE_QUEUE,
49         BK_QUEUE
50 };
51
52 static u8 _rtl_mac_to_hwqueue(struct ieee80211_hw *hw,
53                        struct sk_buff *skb)
54 {
55         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
56         __le16 fc = rtl_get_fc(skb);
57         u8 queue_index = skb_get_queue_mapping(skb);
58
59         if (unlikely(ieee80211_is_beacon(fc)))
60                 return BEACON_QUEUE;
61         if (ieee80211_is_mgmt(fc))
62                 return MGNT_QUEUE;
63         if (rtlhal->hw_type == HARDWARE_TYPE_RTL8192SE)
64                 if (ieee80211_is_nullfunc(fc))
65                         return HIGH_QUEUE;
66
67         return ac_to_hwq[queue_index];
68 }
69
70 /* Update PCI dependent default settings*/
71 static void _rtl_pci_update_default_setting(struct ieee80211_hw *hw)
72 {
73         struct rtl_priv *rtlpriv = rtl_priv(hw);
74         struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
75         struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
76         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
77         u8 pcibridge_vendor = pcipriv->ndis_adapter.pcibridge_vendor;
78         u8 init_aspm;
79
80         ppsc->reg_rfps_level = 0;
81         ppsc->support_aspm = false;
82
83         /*Update PCI ASPM setting */
84         ppsc->const_amdpci_aspm = rtlpci->const_amdpci_aspm;
85         switch (rtlpci->const_pci_aspm) {
86         case 0:
87                 /*No ASPM */
88                 break;
89
90         case 1:
91                 /*ASPM dynamically enabled/disable. */
92                 ppsc->reg_rfps_level |= RT_RF_LPS_LEVEL_ASPM;
93                 break;
94
95         case 2:
96                 /*ASPM with Clock Req dynamically enabled/disable. */
97                 ppsc->reg_rfps_level |= (RT_RF_LPS_LEVEL_ASPM |
98                                          RT_RF_OFF_LEVL_CLK_REQ);
99                 break;
100
101         case 3:
102                 /*
103                  * Always enable ASPM and Clock Req
104                  * from initialization to halt.
105                  * */
106                 ppsc->reg_rfps_level &= ~(RT_RF_LPS_LEVEL_ASPM);
107                 ppsc->reg_rfps_level |= (RT_RF_PS_LEVEL_ALWAYS_ASPM |
108                                          RT_RF_OFF_LEVL_CLK_REQ);
109                 break;
110
111         case 4:
112                 /*
113                  * Always enable ASPM without Clock Req
114                  * from initialization to halt.
115                  * */
116                 ppsc->reg_rfps_level &= ~(RT_RF_LPS_LEVEL_ASPM |
117                                           RT_RF_OFF_LEVL_CLK_REQ);
118                 ppsc->reg_rfps_level |= RT_RF_PS_LEVEL_ALWAYS_ASPM;
119                 break;
120         }
121
122         ppsc->reg_rfps_level |= RT_RF_OFF_LEVL_HALT_NIC;
123
124         /*Update Radio OFF setting */
125         switch (rtlpci->const_hwsw_rfoff_d3) {
126         case 1:
127                 if (ppsc->reg_rfps_level & RT_RF_LPS_LEVEL_ASPM)
128                         ppsc->reg_rfps_level |= RT_RF_OFF_LEVL_ASPM;
129                 break;
130
131         case 2:
132                 if (ppsc->reg_rfps_level & RT_RF_LPS_LEVEL_ASPM)
133                         ppsc->reg_rfps_level |= RT_RF_OFF_LEVL_ASPM;
134                 ppsc->reg_rfps_level |= RT_RF_OFF_LEVL_HALT_NIC;
135                 break;
136
137         case 3:
138                 ppsc->reg_rfps_level |= RT_RF_OFF_LEVL_PCI_D3;
139                 break;
140         }
141
142         /*Set HW definition to determine if it supports ASPM. */
143         switch (rtlpci->const_support_pciaspm) {
144         case 0:{
145                         /*Not support ASPM. */
146                         bool support_aspm = false;
147                         ppsc->support_aspm = support_aspm;
148                         break;
149                 }
150         case 1:{
151                         /*Support ASPM. */
152                         bool support_aspm = true;
153                         bool support_backdoor = true;
154                         ppsc->support_aspm = support_aspm;
155
156                         /*if (priv->oem_id == RT_CID_TOSHIBA &&
157                            !priv->ndis_adapter.amd_l1_patch)
158                            support_backdoor = false; */
159
160                         ppsc->support_backdoor = support_backdoor;
161
162                         break;
163                 }
164         case 2:
165                 /*ASPM value set by chipset. */
166                 if (pcibridge_vendor == PCI_BRIDGE_VENDOR_INTEL) {
167                         bool support_aspm = true;
168                         ppsc->support_aspm = support_aspm;
169                 }
170                 break;
171         default:
172                 RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
173                          "switch case not processed\n");
174                 break;
175         }
176
177         /* toshiba aspm issue, toshiba will set aspm selfly
178          * so we should not set aspm in driver */
179         pci_read_config_byte(rtlpci->pdev, 0x80, &init_aspm);
180         if (rtlpriv->rtlhal.hw_type == HARDWARE_TYPE_RTL8192SE &&
181                 init_aspm == 0x43)
182                 ppsc->support_aspm = false;
183 }
184
185 static bool _rtl_pci_platform_switch_device_pci_aspm(
186                         struct ieee80211_hw *hw,
187                         u8 value)
188 {
189         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
190         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
191
192         if (rtlhal->hw_type != HARDWARE_TYPE_RTL8192SE)
193                 value |= 0x40;
194
195         pci_write_config_byte(rtlpci->pdev, 0x80, value);
196
197         return false;
198 }
199
200 /*When we set 0x01 to enable clk request. Set 0x0 to disable clk req.*/
201 static void _rtl_pci_switch_clk_req(struct ieee80211_hw *hw, u8 value)
202 {
203         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
204         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
205
206         pci_write_config_byte(rtlpci->pdev, 0x81, value);
207
208         if (rtlhal->hw_type == HARDWARE_TYPE_RTL8192SE)
209                 udelay(100);
210 }
211
212 /*Disable RTL8192SE ASPM & Disable Pci Bridge ASPM*/
213 static void rtl_pci_disable_aspm(struct ieee80211_hw *hw)
214 {
215         struct rtl_priv *rtlpriv = rtl_priv(hw);
216         struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
217         struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
218         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
219         u8 pcibridge_vendor = pcipriv->ndis_adapter.pcibridge_vendor;
220         u8 num4bytes = pcipriv->ndis_adapter.num4bytes;
221         /*Retrieve original configuration settings. */
222         u8 linkctrl_reg = pcipriv->ndis_adapter.linkctrl_reg;
223         u16 pcibridge_linkctrlreg = pcipriv->ndis_adapter.
224                                 pcibridge_linkctrlreg;
225         u16 aspmlevel = 0;
226         u8 tmp_u1b = 0;
227
228         if (!ppsc->support_aspm)
229                 return;
230
231         if (pcibridge_vendor == PCI_BRIDGE_VENDOR_UNKNOWN) {
232                 RT_TRACE(rtlpriv, COMP_POWER, DBG_TRACE,
233                          "PCI(Bridge) UNKNOWN\n");
234
235                 return;
236         }
237
238         if (ppsc->reg_rfps_level & RT_RF_OFF_LEVL_CLK_REQ) {
239                 RT_CLEAR_PS_LEVEL(ppsc, RT_RF_OFF_LEVL_CLK_REQ);
240                 _rtl_pci_switch_clk_req(hw, 0x0);
241         }
242
243         /*for promising device will in L0 state after an I/O. */
244         pci_read_config_byte(rtlpci->pdev, 0x80, &tmp_u1b);
245
246         /*Set corresponding value. */
247         aspmlevel |= BIT(0) | BIT(1);
248         linkctrl_reg &= ~aspmlevel;
249         pcibridge_linkctrlreg &= ~(BIT(0) | BIT(1));
250
251         _rtl_pci_platform_switch_device_pci_aspm(hw, linkctrl_reg);
252         udelay(50);
253
254         /*4 Disable Pci Bridge ASPM */
255         pci_write_config_byte(rtlpci->pdev, (num4bytes << 2),
256                               pcibridge_linkctrlreg);
257
258         udelay(50);
259 }
260
261 /*
262  *Enable RTL8192SE ASPM & Enable Pci Bridge ASPM for
263  *power saving We should follow the sequence to enable
264  *RTL8192SE first then enable Pci Bridge ASPM
265  *or the system will show bluescreen.
266  */
267 static void rtl_pci_enable_aspm(struct ieee80211_hw *hw)
268 {
269         struct rtl_priv *rtlpriv = rtl_priv(hw);
270         struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
271         struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
272         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
273         u8 pcibridge_busnum = pcipriv->ndis_adapter.pcibridge_busnum;
274         u8 pcibridge_devnum = pcipriv->ndis_adapter.pcibridge_devnum;
275         u8 pcibridge_funcnum = pcipriv->ndis_adapter.pcibridge_funcnum;
276         u8 pcibridge_vendor = pcipriv->ndis_adapter.pcibridge_vendor;
277         u8 num4bytes = pcipriv->ndis_adapter.num4bytes;
278         u16 aspmlevel;
279         u8 u_pcibridge_aspmsetting;
280         u8 u_device_aspmsetting;
281
282         if (!ppsc->support_aspm)
283                 return;
284
285         if (pcibridge_vendor == PCI_BRIDGE_VENDOR_UNKNOWN) {
286                 RT_TRACE(rtlpriv, COMP_POWER, DBG_TRACE,
287                          "PCI(Bridge) UNKNOWN\n");
288                 return;
289         }
290
291         /*4 Enable Pci Bridge ASPM */
292
293         u_pcibridge_aspmsetting =
294             pcipriv->ndis_adapter.pcibridge_linkctrlreg |
295             rtlpci->const_hostpci_aspm_setting;
296
297         if (pcibridge_vendor == PCI_BRIDGE_VENDOR_INTEL)
298                 u_pcibridge_aspmsetting &= ~BIT(0);
299
300         pci_write_config_byte(rtlpci->pdev, (num4bytes << 2),
301                               u_pcibridge_aspmsetting);
302
303         RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD,
304                  "PlatformEnableASPM():PciBridge busnumber[%x], DevNumbe[%x], funcnumber[%x], Write reg[%x] = %x\n",
305                  pcibridge_busnum, pcibridge_devnum, pcibridge_funcnum,
306                  (pcipriv->ndis_adapter.pcibridge_pciehdr_offset + 0x10),
307                  u_pcibridge_aspmsetting);
308
309         udelay(50);
310
311         /*Get ASPM level (with/without Clock Req) */
312         aspmlevel = rtlpci->const_devicepci_aspm_setting;
313         u_device_aspmsetting = pcipriv->ndis_adapter.linkctrl_reg;
314
315         /*_rtl_pci_platform_switch_device_pci_aspm(dev,*/
316         /*(priv->ndis_adapter.linkctrl_reg | ASPMLevel)); */
317
318         u_device_aspmsetting |= aspmlevel;
319
320         _rtl_pci_platform_switch_device_pci_aspm(hw, u_device_aspmsetting);
321
322         if (ppsc->reg_rfps_level & RT_RF_OFF_LEVL_CLK_REQ) {
323                 _rtl_pci_switch_clk_req(hw, (ppsc->reg_rfps_level &
324                                              RT_RF_OFF_LEVL_CLK_REQ) ? 1 : 0);
325                 RT_SET_PS_LEVEL(ppsc, RT_RF_OFF_LEVL_CLK_REQ);
326         }
327         udelay(100);
328 }
329
330 static bool rtl_pci_get_amd_l1_patch(struct ieee80211_hw *hw)
331 {
332         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
333
334         bool status = false;
335         u8 offset_e0;
336         unsigned offset_e4;
337
338         pci_write_config_byte(rtlpci->pdev, 0xe0, 0xa0);
339
340         pci_read_config_byte(rtlpci->pdev, 0xe0, &offset_e0);
341
342         if (offset_e0 == 0xA0) {
343                 pci_read_config_dword(rtlpci->pdev, 0xe4, &offset_e4);
344                 if (offset_e4 & BIT(23))
345                         status = true;
346         }
347
348         return status;
349 }
350
351 static void rtl_pci_get_linkcontrol_field(struct ieee80211_hw *hw)
352 {
353         struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
354         struct rtl_pci *rtlpci = rtl_pcidev(pcipriv);
355         u8 capabilityoffset = pcipriv->ndis_adapter.pcibridge_pciehdr_offset;
356         u8 linkctrl_reg;
357         u8 num4bbytes;
358
359         num4bbytes = (capabilityoffset + 0x10) / 4;
360
361         /*Read  Link Control Register */
362         pci_read_config_byte(rtlpci->pdev, (num4bbytes << 2), &linkctrl_reg);
363
364         pcipriv->ndis_adapter.pcibridge_linkctrlreg = linkctrl_reg;
365 }
366
367 static void rtl_pci_parse_configuration(struct pci_dev *pdev,
368                 struct ieee80211_hw *hw)
369 {
370         struct rtl_priv *rtlpriv = rtl_priv(hw);
371         struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
372
373         u8 tmp;
374         int pos;
375         u8 linkctrl_reg;
376
377         /*Link Control Register */
378         pos = pci_pcie_cap(pdev);
379         pci_read_config_byte(pdev, pos + PCI_EXP_LNKCTL, &linkctrl_reg);
380         pcipriv->ndis_adapter.linkctrl_reg = linkctrl_reg;
381
382         RT_TRACE(rtlpriv, COMP_INIT, DBG_TRACE, "Link Control Register =%x\n",
383                  pcipriv->ndis_adapter.linkctrl_reg);
384
385         pci_read_config_byte(pdev, 0x98, &tmp);
386         tmp |= BIT(4);
387         pci_write_config_byte(pdev, 0x98, tmp);
388
389         tmp = 0x17;
390         pci_write_config_byte(pdev, 0x70f, tmp);
391 }
392
393 static void rtl_pci_init_aspm(struct ieee80211_hw *hw)
394 {
395         struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
396
397         _rtl_pci_update_default_setting(hw);
398
399         if (ppsc->reg_rfps_level & RT_RF_PS_LEVEL_ALWAYS_ASPM) {
400                 /*Always enable ASPM & Clock Req. */
401                 rtl_pci_enable_aspm(hw);
402                 RT_SET_PS_LEVEL(ppsc, RT_RF_PS_LEVEL_ALWAYS_ASPM);
403         }
404
405 }
406
407 static void _rtl_pci_io_handler_init(struct device *dev,
408                                      struct ieee80211_hw *hw)
409 {
410         struct rtl_priv *rtlpriv = rtl_priv(hw);
411
412         rtlpriv->io.dev = dev;
413
414         rtlpriv->io.write8_async = pci_write8_async;
415         rtlpriv->io.write16_async = pci_write16_async;
416         rtlpriv->io.write32_async = pci_write32_async;
417
418         rtlpriv->io.read8_sync = pci_read8_sync;
419         rtlpriv->io.read16_sync = pci_read16_sync;
420         rtlpriv->io.read32_sync = pci_read32_sync;
421
422 }
423
424 static void _rtl_pci_io_handler_release(struct ieee80211_hw *hw)
425 {
426 }
427
428 static bool _rtl_update_earlymode_info(struct ieee80211_hw *hw,
429                 struct sk_buff *skb, struct rtl_tcb_desc *tcb_desc, u8 tid)
430 {
431         struct rtl_priv *rtlpriv = rtl_priv(hw);
432         struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
433         u8 additionlen = FCS_LEN;
434         struct sk_buff *next_skb;
435
436         /* here open is 4, wep/tkip is 8, aes is 12*/
437         if (info->control.hw_key)
438                 additionlen += info->control.hw_key->icv_len;
439
440         /* The most skb num is 6 */
441         tcb_desc->empkt_num = 0;
442         spin_lock_bh(&rtlpriv->locks.waitq_lock);
443         skb_queue_walk(&rtlpriv->mac80211.skb_waitq[tid], next_skb) {
444                 struct ieee80211_tx_info *next_info;
445
446                 next_info = IEEE80211_SKB_CB(next_skb);
447                 if (next_info->flags & IEEE80211_TX_CTL_AMPDU) {
448                         tcb_desc->empkt_len[tcb_desc->empkt_num] =
449                                 next_skb->len + additionlen;
450                         tcb_desc->empkt_num++;
451                 } else {
452                         break;
453                 }
454
455                 if (skb_queue_is_last(&rtlpriv->mac80211.skb_waitq[tid],
456                                       next_skb))
457                         break;
458
459                 if (tcb_desc->empkt_num >= 5)
460                         break;
461         }
462         spin_unlock_bh(&rtlpriv->locks.waitq_lock);
463
464         return true;
465 }
466
467 /* just for early mode now */
468 static void _rtl_pci_tx_chk_waitq(struct ieee80211_hw *hw)
469 {
470         struct rtl_priv *rtlpriv = rtl_priv(hw);
471         struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
472         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
473         struct sk_buff *skb = NULL;
474         struct ieee80211_tx_info *info = NULL;
475         int tid;
476
477         if (!rtlpriv->rtlhal.earlymode_enable)
478                 return;
479
480         /* we juse use em for BE/BK/VI/VO */
481         for (tid = 7; tid >= 0; tid--) {
482                 u8 hw_queue = ac_to_hwq[rtl_tid_to_ac(hw, tid)];
483                 struct rtl8192_tx_ring *ring = &rtlpci->tx_ring[hw_queue];
484                 while (!mac->act_scanning &&
485                        rtlpriv->psc.rfpwr_state == ERFON) {
486                         struct rtl_tcb_desc tcb_desc;
487                         memset(&tcb_desc, 0, sizeof(struct rtl_tcb_desc));
488
489                         spin_lock_bh(&rtlpriv->locks.waitq_lock);
490                         if (!skb_queue_empty(&mac->skb_waitq[tid]) &&
491                            (ring->entries - skb_queue_len(&ring->queue) > 5)) {
492                                 skb = skb_dequeue(&mac->skb_waitq[tid]);
493                         } else {
494                                 spin_unlock_bh(&rtlpriv->locks.waitq_lock);
495                                 break;
496                         }
497                         spin_unlock_bh(&rtlpriv->locks.waitq_lock);
498
499                         /* Some macaddr can't do early mode. like
500                          * multicast/broadcast/no_qos data */
501                         info = IEEE80211_SKB_CB(skb);
502                         if (info->flags & IEEE80211_TX_CTL_AMPDU)
503                                 _rtl_update_earlymode_info(hw, skb,
504                                                            &tcb_desc, tid);
505
506                         rtlpriv->intf_ops->adapter_tx(hw, skb, &tcb_desc);
507                 }
508         }
509 }
510
511
512 static void _rtl_pci_tx_isr(struct ieee80211_hw *hw, int prio)
513 {
514         struct rtl_priv *rtlpriv = rtl_priv(hw);
515         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
516
517         struct rtl8192_tx_ring *ring = &rtlpci->tx_ring[prio];
518
519         while (skb_queue_len(&ring->queue)) {
520                 struct rtl_tx_desc *entry = &ring->desc[ring->idx];
521                 struct sk_buff *skb;
522                 struct ieee80211_tx_info *info;
523                 __le16 fc;
524                 u8 tid;
525
526                 u8 own = (u8) rtlpriv->cfg->ops->get_desc((u8 *) entry, true,
527                                                           HW_DESC_OWN);
528
529                 /*
530                  *beacon packet will only use the first
531                  *descriptor defautly,and the own may not
532                  *be cleared by the hardware
533                  */
534                 if (own)
535                         return;
536                 ring->idx = (ring->idx + 1) % ring->entries;
537
538                 skb = __skb_dequeue(&ring->queue);
539                 pci_unmap_single(rtlpci->pdev,
540                                  rtlpriv->cfg->ops->
541                                              get_desc((u8 *) entry, true,
542                                                       HW_DESC_TXBUFF_ADDR),
543                                  skb->len, PCI_DMA_TODEVICE);
544
545                 /* remove early mode header */
546                 if (rtlpriv->rtlhal.earlymode_enable)
547                         skb_pull(skb, EM_HDR_LEN);
548
549                 RT_TRACE(rtlpriv, (COMP_INTR | COMP_SEND), DBG_TRACE,
550                          "new ring->idx:%d, free: skb_queue_len:%d, free: seq:%x\n",
551                          ring->idx,
552                          skb_queue_len(&ring->queue),
553                          *(u16 *) (skb->data + 22));
554
555                 if (prio == TXCMD_QUEUE) {
556                         dev_kfree_skb(skb);
557                         goto tx_status_ok;
558
559                 }
560
561                 /* for sw LPS, just after NULL skb send out, we can
562                  * sure AP kown we are sleeped, our we should not let
563                  * rf to sleep*/
564                 fc = rtl_get_fc(skb);
565                 if (ieee80211_is_nullfunc(fc)) {
566                         if (ieee80211_has_pm(fc)) {
567                                 rtlpriv->mac80211.offchan_delay = true;
568                                 rtlpriv->psc.state_inap = true;
569                         } else {
570                                 rtlpriv->psc.state_inap = false;
571                         }
572                 }
573
574                 /* update tid tx pkt num */
575                 tid = rtl_get_tid(skb);
576                 if (tid <= 7)
577                         rtlpriv->link_info.tidtx_inperiod[tid]++;
578
579                 info = IEEE80211_SKB_CB(skb);
580                 ieee80211_tx_info_clear_status(info);
581
582                 info->flags |= IEEE80211_TX_STAT_ACK;
583                 /*info->status.rates[0].count = 1; */
584
585                 ieee80211_tx_status_irqsafe(hw, skb);
586
587                 if ((ring->entries - skb_queue_len(&ring->queue))
588                                 == 2) {
589
590                         RT_TRACE(rtlpriv, COMP_ERR, DBG_LOUD,
591                                  "more desc left, wake skb_queue@%d, ring->idx = %d, skb_queue_len = 0x%d\n",
592                                  prio, ring->idx,
593                                  skb_queue_len(&ring->queue));
594
595                         ieee80211_wake_queue(hw,
596                                         skb_get_queue_mapping
597                                         (skb));
598                 }
599 tx_status_ok:
600                 skb = NULL;
601         }
602
603         if (((rtlpriv->link_info.num_rx_inperiod +
604                 rtlpriv->link_info.num_tx_inperiod) > 8) ||
605                 (rtlpriv->link_info.num_rx_inperiod > 2)) {
606                 schedule_work(&rtlpriv->works.lps_leave_work);
607         }
608 }
609
610 static void _rtl_receive_one(struct ieee80211_hw *hw, struct sk_buff *skb,
611                              struct ieee80211_rx_status rx_status)
612 {
613         struct rtl_priv *rtlpriv = rtl_priv(hw);
614         struct ieee80211_hdr *hdr = rtl_get_hdr(skb);
615         __le16 fc = rtl_get_fc(skb);
616         bool unicast = false;
617         struct sk_buff *uskb = NULL;
618         u8 *pdata;
619
620
621         memcpy(IEEE80211_SKB_RXCB(skb), &rx_status, sizeof(rx_status));
622
623         if (is_broadcast_ether_addr(hdr->addr1)) {
624                 ;/*TODO*/
625         } else if (is_multicast_ether_addr(hdr->addr1)) {
626                 ;/*TODO*/
627         } else {
628                 unicast = true;
629                 rtlpriv->stats.rxbytesunicast += skb->len;
630         }
631
632         rtl_is_special_data(hw, skb, false);
633
634         if (ieee80211_is_data(fc)) {
635                 rtlpriv->cfg->ops->led_control(hw, LED_CTL_RX);
636
637                 if (unicast)
638                         rtlpriv->link_info.num_rx_inperiod++;
639         }
640
641         /* for sw lps */
642         rtl_swlps_beacon(hw, (void *)skb->data, skb->len);
643         rtl_recognize_peer(hw, (void *)skb->data, skb->len);
644         if ((rtlpriv->mac80211.opmode == NL80211_IFTYPE_AP) &&
645             (rtlpriv->rtlhal.current_bandtype == BAND_ON_2_4G) &&
646              (ieee80211_is_beacon(fc) || ieee80211_is_probe_resp(fc)))
647                 return;
648
649         if (unlikely(!rtl_action_proc(hw, skb, false)))
650                 return;
651
652         uskb = dev_alloc_skb(skb->len + 128);
653         if (!uskb)
654                 return;         /* exit if allocation failed */
655         memcpy(IEEE80211_SKB_RXCB(uskb), &rx_status, sizeof(rx_status));
656         pdata = (u8 *)skb_put(uskb, skb->len);
657         memcpy(pdata, skb->data, skb->len);
658
659         ieee80211_rx_irqsafe(hw, uskb);
660 }
661
662 static void _rtl_pci_rx_interrupt(struct ieee80211_hw *hw)
663 {
664         struct rtl_priv *rtlpriv = rtl_priv(hw);
665         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
666         int rx_queue_idx = RTL_PCI_RX_MPDU_QUEUE;
667
668         struct ieee80211_rx_status rx_status = { 0 };
669         unsigned int count = rtlpci->rxringcount;
670         u8 own;
671         u8 tmp_one;
672         u32 bufferaddress;
673
674         struct rtl_stats stats = {
675                 .signal = 0,
676                 .noise = -98,
677                 .rate = 0,
678         };
679         int index = rtlpci->rx_ring[rx_queue_idx].idx;
680
681         /*RX NORMAL PKT */
682         while (count--) {
683                 /*rx descriptor */
684                 struct rtl_rx_desc *pdesc = &rtlpci->rx_ring[rx_queue_idx].desc[
685                                 index];
686                 /*rx pkt */
687                 struct sk_buff *skb = rtlpci->rx_ring[rx_queue_idx].rx_buf[
688                                 index];
689                 struct sk_buff *new_skb = NULL;
690
691                 own = (u8) rtlpriv->cfg->ops->get_desc((u8 *) pdesc,
692                                                        false, HW_DESC_OWN);
693
694                 /*wait data to be filled by hardware */
695                 if (own)
696                         break;
697
698                 rtlpriv->cfg->ops->query_rx_desc(hw, &stats,
699                                                  &rx_status,
700                                                  (u8 *) pdesc, skb);
701
702                 if (stats.crc || stats.hwerror)
703                         goto done;
704
705                 new_skb = dev_alloc_skb(rtlpci->rxbuffersize);
706                 if (unlikely(!new_skb)) {
707                         RT_TRACE(rtlpriv, (COMP_INTR | COMP_RECV), DBG_DMESG,
708                                  "can't alloc skb for rx\n");
709                         goto done;
710                 }
711
712                 pci_unmap_single(rtlpci->pdev,
713                                  *((dma_addr_t *) skb->cb),
714                                  rtlpci->rxbuffersize,
715                                  PCI_DMA_FROMDEVICE);
716
717                 skb_put(skb, rtlpriv->cfg->ops->get_desc((u8 *) pdesc, false,
718                         HW_DESC_RXPKT_LEN));
719                 skb_reserve(skb, stats.rx_drvinfo_size + stats.rx_bufshift);
720
721                 /*
722                  * NOTICE This can not be use for mac80211,
723                  * this is done in mac80211 code,
724                  * if you done here sec DHCP will fail
725                  * skb_trim(skb, skb->len - 4);
726                  */
727
728                 _rtl_receive_one(hw, skb, rx_status);
729
730                 if (((rtlpriv->link_info.num_rx_inperiod +
731                         rtlpriv->link_info.num_tx_inperiod) > 8) ||
732                         (rtlpriv->link_info.num_rx_inperiod > 2)) {
733                         schedule_work(&rtlpriv->works.lps_leave_work);
734                 }
735
736                 dev_kfree_skb_any(skb);
737                 skb = new_skb;
738
739                 rtlpci->rx_ring[rx_queue_idx].rx_buf[index] = skb;
740                 *((dma_addr_t *) skb->cb) =
741                             pci_map_single(rtlpci->pdev, skb_tail_pointer(skb),
742                                            rtlpci->rxbuffersize,
743                                            PCI_DMA_FROMDEVICE);
744
745 done:
746                 bufferaddress = (*((dma_addr_t *)skb->cb));
747                 tmp_one = 1;
748                 rtlpriv->cfg->ops->set_desc((u8 *) pdesc, false,
749                                             HW_DESC_RXBUFF_ADDR,
750                                             (u8 *)&bufferaddress);
751                 rtlpriv->cfg->ops->set_desc((u8 *)pdesc, false,
752                                             HW_DESC_RXPKT_LEN,
753                                             (u8 *)&rtlpci->rxbuffersize);
754
755                 if (index == rtlpci->rxringcount - 1)
756                         rtlpriv->cfg->ops->set_desc((u8 *)pdesc, false,
757                                                     HW_DESC_RXERO,
758                                                     (u8 *)&tmp_one);
759
760                 rtlpriv->cfg->ops->set_desc((u8 *)pdesc, false, HW_DESC_RXOWN,
761                                             (u8 *)&tmp_one);
762
763                 index = (index + 1) % rtlpci->rxringcount;
764         }
765
766         rtlpci->rx_ring[rx_queue_idx].idx = index;
767 }
768
769 static irqreturn_t _rtl_pci_interrupt(int irq, void *dev_id)
770 {
771         struct ieee80211_hw *hw = dev_id;
772         struct rtl_priv *rtlpriv = rtl_priv(hw);
773         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
774         unsigned long flags;
775         u32 inta = 0;
776         u32 intb = 0;
777         irqreturn_t ret = IRQ_HANDLED;
778
779         spin_lock_irqsave(&rtlpriv->locks.irq_th_lock, flags);
780
781         /*read ISR: 4/8bytes */
782         rtlpriv->cfg->ops->interrupt_recognized(hw, &inta, &intb);
783
784         /*Shared IRQ or HW disappared */
785         if (!inta || inta == 0xffff) {
786                 ret = IRQ_NONE;
787                 goto done;
788         }
789
790         /*<1> beacon related */
791         if (inta & rtlpriv->cfg->maps[RTL_IMR_TBDOK]) {
792                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
793                          "beacon ok interrupt!\n");
794         }
795
796         if (unlikely(inta & rtlpriv->cfg->maps[RTL_IMR_TBDER])) {
797                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
798                          "beacon err interrupt!\n");
799         }
800
801         if (inta & rtlpriv->cfg->maps[RTL_IMR_BDOK]) {
802                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE, "beacon interrupt!\n");
803         }
804
805         if (inta & rtlpriv->cfg->maps[RTL_IMR_BcnInt]) {
806                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
807                          "prepare beacon for interrupt!\n");
808                 tasklet_schedule(&rtlpriv->works.irq_prepare_bcn_tasklet);
809         }
810
811         /*<3> Tx related */
812         if (unlikely(inta & rtlpriv->cfg->maps[RTL_IMR_TXFOVW]))
813                 RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING, "IMR_TXFOVW!\n");
814
815         if (inta & rtlpriv->cfg->maps[RTL_IMR_MGNTDOK]) {
816                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
817                          "Manage ok interrupt!\n");
818                 _rtl_pci_tx_isr(hw, MGNT_QUEUE);
819         }
820
821         if (inta & rtlpriv->cfg->maps[RTL_IMR_HIGHDOK]) {
822                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
823                          "HIGH_QUEUE ok interrupt!\n");
824                 _rtl_pci_tx_isr(hw, HIGH_QUEUE);
825         }
826
827         if (inta & rtlpriv->cfg->maps[RTL_IMR_BKDOK]) {
828                 rtlpriv->link_info.num_tx_inperiod++;
829
830                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
831                          "BK Tx OK interrupt!\n");
832                 _rtl_pci_tx_isr(hw, BK_QUEUE);
833         }
834
835         if (inta & rtlpriv->cfg->maps[RTL_IMR_BEDOK]) {
836                 rtlpriv->link_info.num_tx_inperiod++;
837
838                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
839                          "BE TX OK interrupt!\n");
840                 _rtl_pci_tx_isr(hw, BE_QUEUE);
841         }
842
843         if (inta & rtlpriv->cfg->maps[RTL_IMR_VIDOK]) {
844                 rtlpriv->link_info.num_tx_inperiod++;
845
846                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
847                          "VI TX OK interrupt!\n");
848                 _rtl_pci_tx_isr(hw, VI_QUEUE);
849         }
850
851         if (inta & rtlpriv->cfg->maps[RTL_IMR_VODOK]) {
852                 rtlpriv->link_info.num_tx_inperiod++;
853
854                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
855                          "Vo TX OK interrupt!\n");
856                 _rtl_pci_tx_isr(hw, VO_QUEUE);
857         }
858
859         if (rtlhal->hw_type == HARDWARE_TYPE_RTL8192SE) {
860                 if (inta & rtlpriv->cfg->maps[RTL_IMR_COMDOK]) {
861                         rtlpriv->link_info.num_tx_inperiod++;
862
863                         RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE,
864                                  "CMD TX OK interrupt!\n");
865                         _rtl_pci_tx_isr(hw, TXCMD_QUEUE);
866                 }
867         }
868
869         /*<2> Rx related */
870         if (inta & rtlpriv->cfg->maps[RTL_IMR_ROK]) {
871                 RT_TRACE(rtlpriv, COMP_INTR, DBG_TRACE, "Rx ok interrupt!\n");
872                 _rtl_pci_rx_interrupt(hw);
873         }
874
875         if (unlikely(inta & rtlpriv->cfg->maps[RTL_IMR_RDU])) {
876                 RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
877                          "rx descriptor unavailable!\n");
878                 _rtl_pci_rx_interrupt(hw);
879         }
880
881         if (unlikely(inta & rtlpriv->cfg->maps[RTL_IMR_RXFOVW])) {
882                 RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING, "rx overflow !\n");
883                 _rtl_pci_rx_interrupt(hw);
884         }
885
886         if (rtlpriv->rtlhal.earlymode_enable)
887                 tasklet_schedule(&rtlpriv->works.irq_tasklet);
888
889 done:
890         spin_unlock_irqrestore(&rtlpriv->locks.irq_th_lock, flags);
891         return ret;
892 }
893
894 static void _rtl_pci_irq_tasklet(struct ieee80211_hw *hw)
895 {
896         _rtl_pci_tx_chk_waitq(hw);
897 }
898
899 static void _rtl_pci_prepare_bcn_tasklet(struct ieee80211_hw *hw)
900 {
901         struct rtl_priv *rtlpriv = rtl_priv(hw);
902         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
903         struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
904         struct rtl8192_tx_ring *ring = NULL;
905         struct ieee80211_hdr *hdr = NULL;
906         struct ieee80211_tx_info *info = NULL;
907         struct sk_buff *pskb = NULL;
908         struct rtl_tx_desc *pdesc = NULL;
909         struct rtl_tcb_desc tcb_desc;
910         u8 temp_one = 1;
911
912         memset(&tcb_desc, 0, sizeof(struct rtl_tcb_desc));
913         ring = &rtlpci->tx_ring[BEACON_QUEUE];
914         pskb = __skb_dequeue(&ring->queue);
915         if (pskb)
916                 kfree_skb(pskb);
917
918         /*NB: the beacon data buffer must be 32-bit aligned. */
919         pskb = ieee80211_beacon_get(hw, mac->vif);
920         if (pskb == NULL)
921                 return;
922         hdr = rtl_get_hdr(pskb);
923         info = IEEE80211_SKB_CB(pskb);
924         pdesc = &ring->desc[0];
925         rtlpriv->cfg->ops->fill_tx_desc(hw, hdr, (u8 *) pdesc,
926                 info, pskb, BEACON_QUEUE, &tcb_desc);
927
928         __skb_queue_tail(&ring->queue, pskb);
929
930         rtlpriv->cfg->ops->set_desc((u8 *) pdesc, true, HW_DESC_OWN,
931                                     (u8 *)&temp_one);
932
933         return;
934 }
935
936 static void rtl_lps_leave_work_callback(struct work_struct *work)
937 {
938         struct rtl_works *rtlworks =
939             container_of(work, struct rtl_works, lps_leave_work);
940         struct ieee80211_hw *hw = rtlworks->hw;
941
942         rtl_lps_leave(hw);
943 }
944
945 static void _rtl_pci_init_trx_var(struct ieee80211_hw *hw)
946 {
947         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
948         u8 i;
949
950         for (i = 0; i < RTL_PCI_MAX_TX_QUEUE_COUNT; i++)
951                 rtlpci->txringcount[i] = RT_TXDESC_NUM;
952
953         /*
954          *we just alloc 2 desc for beacon queue,
955          *because we just need first desc in hw beacon.
956          */
957         rtlpci->txringcount[BEACON_QUEUE] = 2;
958
959         /*
960          *BE queue need more descriptor for performance
961          *consideration or, No more tx desc will happen,
962          *and may cause mac80211 mem leakage.
963          */
964         rtlpci->txringcount[BE_QUEUE] = RT_TXDESC_NUM_BE_QUEUE;
965
966         rtlpci->rxbuffersize = 9100;    /*2048/1024; */
967         rtlpci->rxringcount = RTL_PCI_MAX_RX_COUNT;     /*64; */
968 }
969
970 static void _rtl_pci_init_struct(struct ieee80211_hw *hw,
971                 struct pci_dev *pdev)
972 {
973         struct rtl_priv *rtlpriv = rtl_priv(hw);
974         struct rtl_mac *mac = rtl_mac(rtl_priv(hw));
975         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
976         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
977
978         rtlpci->up_first_time = true;
979         rtlpci->being_init_adapter = false;
980
981         rtlhal->hw = hw;
982         rtlpci->pdev = pdev;
983
984         /*Tx/Rx related var */
985         _rtl_pci_init_trx_var(hw);
986
987         /*IBSS*/ mac->beacon_interval = 100;
988
989         /*AMPDU*/
990         mac->min_space_cfg = 0;
991         mac->max_mss_density = 0;
992         /*set sane AMPDU defaults */
993         mac->current_ampdu_density = 7;
994         mac->current_ampdu_factor = 3;
995
996         /*QOS*/
997         rtlpci->acm_method = eAcmWay2_SW;
998
999         /*task */
1000         tasklet_init(&rtlpriv->works.irq_tasklet,
1001                      (void (*)(unsigned long))_rtl_pci_irq_tasklet,
1002                      (unsigned long)hw);
1003         tasklet_init(&rtlpriv->works.irq_prepare_bcn_tasklet,
1004                      (void (*)(unsigned long))_rtl_pci_prepare_bcn_tasklet,
1005                      (unsigned long)hw);
1006         INIT_WORK(&rtlpriv->works.lps_leave_work, rtl_lps_leave_work_callback);
1007 }
1008
1009 static int _rtl_pci_init_tx_ring(struct ieee80211_hw *hw,
1010                                  unsigned int prio, unsigned int entries)
1011 {
1012         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1013         struct rtl_priv *rtlpriv = rtl_priv(hw);
1014         struct rtl_tx_desc *ring;
1015         dma_addr_t dma;
1016         u32 nextdescaddress;
1017         int i;
1018
1019         ring = pci_alloc_consistent(rtlpci->pdev,
1020                                     sizeof(*ring) * entries, &dma);
1021
1022         if (!ring || (unsigned long)ring & 0xFF) {
1023                 RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
1024                          "Cannot allocate TX ring (prio = %d)\n", prio);
1025                 return -ENOMEM;
1026         }
1027
1028         memset(ring, 0, sizeof(*ring) * entries);
1029         rtlpci->tx_ring[prio].desc = ring;
1030         rtlpci->tx_ring[prio].dma = dma;
1031         rtlpci->tx_ring[prio].idx = 0;
1032         rtlpci->tx_ring[prio].entries = entries;
1033         skb_queue_head_init(&rtlpci->tx_ring[prio].queue);
1034
1035         RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, "queue:%d, ring_addr:%p\n",
1036                  prio, ring);
1037
1038         for (i = 0; i < entries; i++) {
1039                 nextdescaddress = (u32) dma +
1040                                               ((i + 1) % entries) *
1041                                               sizeof(*ring);
1042
1043                 rtlpriv->cfg->ops->set_desc((u8 *)&(ring[i]),
1044                                             true, HW_DESC_TX_NEXTDESC_ADDR,
1045                                             (u8 *)&nextdescaddress);
1046         }
1047
1048         return 0;
1049 }
1050
1051 static int _rtl_pci_init_rx_ring(struct ieee80211_hw *hw)
1052 {
1053         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1054         struct rtl_priv *rtlpriv = rtl_priv(hw);
1055         struct rtl_rx_desc *entry = NULL;
1056         int i, rx_queue_idx;
1057         u8 tmp_one = 1;
1058
1059         /*
1060          *rx_queue_idx 0:RX_MPDU_QUEUE
1061          *rx_queue_idx 1:RX_CMD_QUEUE
1062          */
1063         for (rx_queue_idx = 0; rx_queue_idx < RTL_PCI_MAX_RX_QUEUE;
1064              rx_queue_idx++) {
1065                 rtlpci->rx_ring[rx_queue_idx].desc =
1066                     pci_alloc_consistent(rtlpci->pdev,
1067                                          sizeof(*rtlpci->rx_ring[rx_queue_idx].
1068                                                 desc) * rtlpci->rxringcount,
1069                                          &rtlpci->rx_ring[rx_queue_idx].dma);
1070
1071                 if (!rtlpci->rx_ring[rx_queue_idx].desc ||
1072                     (unsigned long)rtlpci->rx_ring[rx_queue_idx].desc & 0xFF) {
1073                         RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
1074                                  "Cannot allocate RX ring\n");
1075                         return -ENOMEM;
1076                 }
1077
1078                 memset(rtlpci->rx_ring[rx_queue_idx].desc, 0,
1079                        sizeof(*rtlpci->rx_ring[rx_queue_idx].desc) *
1080                        rtlpci->rxringcount);
1081
1082                 rtlpci->rx_ring[rx_queue_idx].idx = 0;
1083
1084                 /* If amsdu_8k is disabled, set buffersize to 4096. This
1085                  * change will reduce memory fragmentation.
1086                  */
1087                 if (rtlpci->rxbuffersize > 4096 &&
1088                     rtlpriv->rtlhal.disable_amsdu_8k)
1089                         rtlpci->rxbuffersize = 4096;
1090
1091                 for (i = 0; i < rtlpci->rxringcount; i++) {
1092                         struct sk_buff *skb =
1093                             dev_alloc_skb(rtlpci->rxbuffersize);
1094                         u32 bufferaddress;
1095                         if (!skb)
1096                                 return 0;
1097                         entry = &rtlpci->rx_ring[rx_queue_idx].desc[i];
1098
1099                         /*skb->dev = dev; */
1100
1101                         rtlpci->rx_ring[rx_queue_idx].rx_buf[i] = skb;
1102
1103                         /*
1104                          *just set skb->cb to mapping addr
1105                          *for pci_unmap_single use
1106                          */
1107                         *((dma_addr_t *) skb->cb) =
1108                             pci_map_single(rtlpci->pdev, skb_tail_pointer(skb),
1109                                            rtlpci->rxbuffersize,
1110                                            PCI_DMA_FROMDEVICE);
1111
1112                         bufferaddress = (*((dma_addr_t *)skb->cb));
1113                         rtlpriv->cfg->ops->set_desc((u8 *)entry, false,
1114                                                     HW_DESC_RXBUFF_ADDR,
1115                                                     (u8 *)&bufferaddress);
1116                         rtlpriv->cfg->ops->set_desc((u8 *)entry, false,
1117                                                     HW_DESC_RXPKT_LEN,
1118                                                     (u8 *)&rtlpci->
1119                                                     rxbuffersize);
1120                         rtlpriv->cfg->ops->set_desc((u8 *) entry, false,
1121                                                     HW_DESC_RXOWN,
1122                                                     (u8 *)&tmp_one);
1123                 }
1124
1125                 rtlpriv->cfg->ops->set_desc((u8 *) entry, false,
1126                                             HW_DESC_RXERO, (u8 *)&tmp_one);
1127         }
1128         return 0;
1129 }
1130
1131 static void _rtl_pci_free_tx_ring(struct ieee80211_hw *hw,
1132                 unsigned int prio)
1133 {
1134         struct rtl_priv *rtlpriv = rtl_priv(hw);
1135         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1136         struct rtl8192_tx_ring *ring = &rtlpci->tx_ring[prio];
1137
1138         while (skb_queue_len(&ring->queue)) {
1139                 struct rtl_tx_desc *entry = &ring->desc[ring->idx];
1140                 struct sk_buff *skb = __skb_dequeue(&ring->queue);
1141
1142                 pci_unmap_single(rtlpci->pdev,
1143                                  rtlpriv->cfg->
1144                                              ops->get_desc((u8 *) entry, true,
1145                                                    HW_DESC_TXBUFF_ADDR),
1146                                  skb->len, PCI_DMA_TODEVICE);
1147                 kfree_skb(skb);
1148                 ring->idx = (ring->idx + 1) % ring->entries;
1149         }
1150
1151         if (ring->desc) {
1152                 pci_free_consistent(rtlpci->pdev,
1153                                     sizeof(*ring->desc) * ring->entries,
1154                                     ring->desc, ring->dma);
1155                 ring->desc = NULL;
1156         }
1157 }
1158
1159 static void _rtl_pci_free_rx_ring(struct rtl_pci *rtlpci)
1160 {
1161         int i, rx_queue_idx;
1162
1163         /*rx_queue_idx 0:RX_MPDU_QUEUE */
1164         /*rx_queue_idx 1:RX_CMD_QUEUE */
1165         for (rx_queue_idx = 0; rx_queue_idx < RTL_PCI_MAX_RX_QUEUE;
1166              rx_queue_idx++) {
1167                 for (i = 0; i < rtlpci->rxringcount; i++) {
1168                         struct sk_buff *skb =
1169                             rtlpci->rx_ring[rx_queue_idx].rx_buf[i];
1170                         if (!skb)
1171                                 continue;
1172
1173                         pci_unmap_single(rtlpci->pdev,
1174                                          *((dma_addr_t *) skb->cb),
1175                                          rtlpci->rxbuffersize,
1176                                          PCI_DMA_FROMDEVICE);
1177                         kfree_skb(skb);
1178                 }
1179
1180                 if (rtlpci->rx_ring[rx_queue_idx].desc) {
1181                         pci_free_consistent(rtlpci->pdev,
1182                                     sizeof(*rtlpci->rx_ring[rx_queue_idx].
1183                                            desc) * rtlpci->rxringcount,
1184                                     rtlpci->rx_ring[rx_queue_idx].desc,
1185                                     rtlpci->rx_ring[rx_queue_idx].dma);
1186                         rtlpci->rx_ring[rx_queue_idx].desc = NULL;
1187                 }
1188         }
1189 }
1190
1191 static int _rtl_pci_init_trx_ring(struct ieee80211_hw *hw)
1192 {
1193         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1194         int ret;
1195         int i;
1196
1197         ret = _rtl_pci_init_rx_ring(hw);
1198         if (ret)
1199                 return ret;
1200
1201         for (i = 0; i < RTL_PCI_MAX_TX_QUEUE_COUNT; i++) {
1202                 ret = _rtl_pci_init_tx_ring(hw, i,
1203                                  rtlpci->txringcount[i]);
1204                 if (ret)
1205                         goto err_free_rings;
1206         }
1207
1208         return 0;
1209
1210 err_free_rings:
1211         _rtl_pci_free_rx_ring(rtlpci);
1212
1213         for (i = 0; i < RTL_PCI_MAX_TX_QUEUE_COUNT; i++)
1214                 if (rtlpci->tx_ring[i].desc)
1215                         _rtl_pci_free_tx_ring(hw, i);
1216
1217         return 1;
1218 }
1219
1220 static int _rtl_pci_deinit_trx_ring(struct ieee80211_hw *hw)
1221 {
1222         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1223         u32 i;
1224
1225         /*free rx rings */
1226         _rtl_pci_free_rx_ring(rtlpci);
1227
1228         /*free tx rings */
1229         for (i = 0; i < RTL_PCI_MAX_TX_QUEUE_COUNT; i++)
1230                 _rtl_pci_free_tx_ring(hw, i);
1231
1232         return 0;
1233 }
1234
1235 int rtl_pci_reset_trx_ring(struct ieee80211_hw *hw)
1236 {
1237         struct rtl_priv *rtlpriv = rtl_priv(hw);
1238         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1239         int i, rx_queue_idx;
1240         unsigned long flags;
1241         u8 tmp_one = 1;
1242
1243         /*rx_queue_idx 0:RX_MPDU_QUEUE */
1244         /*rx_queue_idx 1:RX_CMD_QUEUE */
1245         for (rx_queue_idx = 0; rx_queue_idx < RTL_PCI_MAX_RX_QUEUE;
1246              rx_queue_idx++) {
1247                 /*
1248                  *force the rx_ring[RX_MPDU_QUEUE/
1249                  *RX_CMD_QUEUE].idx to the first one
1250                  */
1251                 if (rtlpci->rx_ring[rx_queue_idx].desc) {
1252                         struct rtl_rx_desc *entry = NULL;
1253
1254                         for (i = 0; i < rtlpci->rxringcount; i++) {
1255                                 entry = &rtlpci->rx_ring[rx_queue_idx].desc[i];
1256                                 rtlpriv->cfg->ops->set_desc((u8 *) entry,
1257                                                             false,
1258                                                             HW_DESC_RXOWN,
1259                                                             (u8 *)&tmp_one);
1260                         }
1261                         rtlpci->rx_ring[rx_queue_idx].idx = 0;
1262                 }
1263         }
1264
1265         /*
1266          *after reset, release previous pending packet,
1267          *and force the  tx idx to the first one
1268          */
1269         spin_lock_irqsave(&rtlpriv->locks.irq_th_lock, flags);
1270         for (i = 0; i < RTL_PCI_MAX_TX_QUEUE_COUNT; i++) {
1271                 if (rtlpci->tx_ring[i].desc) {
1272                         struct rtl8192_tx_ring *ring = &rtlpci->tx_ring[i];
1273
1274                         while (skb_queue_len(&ring->queue)) {
1275                                 struct rtl_tx_desc *entry =
1276                                     &ring->desc[ring->idx];
1277                                 struct sk_buff *skb =
1278                                     __skb_dequeue(&ring->queue);
1279
1280                                 pci_unmap_single(rtlpci->pdev,
1281                                                  rtlpriv->cfg->ops->
1282                                                          get_desc((u8 *)
1283                                                          entry,
1284                                                          true,
1285                                                          HW_DESC_TXBUFF_ADDR),
1286                                                  skb->len, PCI_DMA_TODEVICE);
1287                                 kfree_skb(skb);
1288                                 ring->idx = (ring->idx + 1) % ring->entries;
1289                         }
1290                         ring->idx = 0;
1291                 }
1292         }
1293
1294         spin_unlock_irqrestore(&rtlpriv->locks.irq_th_lock, flags);
1295
1296         return 0;
1297 }
1298
1299 static bool rtl_pci_tx_chk_waitq_insert(struct ieee80211_hw *hw,
1300                                         struct sk_buff *skb)
1301 {
1302         struct rtl_priv *rtlpriv = rtl_priv(hw);
1303         struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
1304         struct ieee80211_sta *sta = info->control.sta;
1305         struct rtl_sta_info *sta_entry = NULL;
1306         u8 tid = rtl_get_tid(skb);
1307
1308         if (!sta)
1309                 return false;
1310         sta_entry = (struct rtl_sta_info *)sta->drv_priv;
1311
1312         if (!rtlpriv->rtlhal.earlymode_enable)
1313                 return false;
1314         if (sta_entry->tids[tid].agg.agg_state != RTL_AGG_OPERATIONAL)
1315                 return false;
1316         if (_rtl_mac_to_hwqueue(hw, skb) > VO_QUEUE)
1317                 return false;
1318         if (tid > 7)
1319                 return false;
1320
1321         /* maybe every tid should be checked */
1322         if (!rtlpriv->link_info.higher_busytxtraffic[tid])
1323                 return false;
1324
1325         spin_lock_bh(&rtlpriv->locks.waitq_lock);
1326         skb_queue_tail(&rtlpriv->mac80211.skb_waitq[tid], skb);
1327         spin_unlock_bh(&rtlpriv->locks.waitq_lock);
1328
1329         return true;
1330 }
1331
1332 static int rtl_pci_tx(struct ieee80211_hw *hw, struct sk_buff *skb,
1333                 struct rtl_tcb_desc *ptcb_desc)
1334 {
1335         struct rtl_priv *rtlpriv = rtl_priv(hw);
1336         struct rtl_sta_info *sta_entry = NULL;
1337         struct ieee80211_tx_info *info = IEEE80211_SKB_CB(skb);
1338         struct ieee80211_sta *sta = info->control.sta;
1339         struct rtl8192_tx_ring *ring;
1340         struct rtl_tx_desc *pdesc;
1341         u8 idx;
1342         u8 hw_queue = _rtl_mac_to_hwqueue(hw, skb);
1343         unsigned long flags;
1344         struct ieee80211_hdr *hdr = rtl_get_hdr(skb);
1345         __le16 fc = rtl_get_fc(skb);
1346         u8 *pda_addr = hdr->addr1;
1347         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1348         /*ssn */
1349         u8 tid = 0;
1350         u16 seq_number = 0;
1351         u8 own;
1352         u8 temp_one = 1;
1353
1354         if (ieee80211_is_auth(fc)) {
1355                 RT_TRACE(rtlpriv, COMP_SEND, DBG_DMESG, "MAC80211_LINKING\n");
1356                 rtl_ips_nic_on(hw);
1357         }
1358
1359         if (rtlpriv->psc.sw_ps_enabled) {
1360                 if (ieee80211_is_data(fc) && !ieee80211_is_nullfunc(fc) &&
1361                         !ieee80211_has_pm(fc))
1362                         hdr->frame_control |= cpu_to_le16(IEEE80211_FCTL_PM);
1363         }
1364
1365         rtl_action_proc(hw, skb, true);
1366
1367         if (is_multicast_ether_addr(pda_addr))
1368                 rtlpriv->stats.txbytesmulticast += skb->len;
1369         else if (is_broadcast_ether_addr(pda_addr))
1370                 rtlpriv->stats.txbytesbroadcast += skb->len;
1371         else
1372                 rtlpriv->stats.txbytesunicast += skb->len;
1373
1374         spin_lock_irqsave(&rtlpriv->locks.irq_th_lock, flags);
1375         ring = &rtlpci->tx_ring[hw_queue];
1376         if (hw_queue != BEACON_QUEUE)
1377                 idx = (ring->idx + skb_queue_len(&ring->queue)) %
1378                                 ring->entries;
1379         else
1380                 idx = 0;
1381
1382         pdesc = &ring->desc[idx];
1383         own = (u8) rtlpriv->cfg->ops->get_desc((u8 *) pdesc,
1384                         true, HW_DESC_OWN);
1385
1386         if ((own == 1) && (hw_queue != BEACON_QUEUE)) {
1387                 RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
1388                          "No more TX desc@%d, ring->idx = %d, idx = %d, skb_queue_len = 0x%d\n",
1389                          hw_queue, ring->idx, idx,
1390                          skb_queue_len(&ring->queue));
1391
1392                 spin_unlock_irqrestore(&rtlpriv->locks.irq_th_lock, flags);
1393                 return skb->len;
1394         }
1395
1396         if (ieee80211_is_data_qos(fc)) {
1397                 tid = rtl_get_tid(skb);
1398                 if (sta) {
1399                         sta_entry = (struct rtl_sta_info *)sta->drv_priv;
1400                         seq_number = (le16_to_cpu(hdr->seq_ctrl) &
1401                                       IEEE80211_SCTL_SEQ) >> 4;
1402                         seq_number += 1;
1403
1404                         if (!ieee80211_has_morefrags(hdr->frame_control))
1405                                 sta_entry->tids[tid].seq_number = seq_number;
1406                 }
1407         }
1408
1409         if (ieee80211_is_data(fc))
1410                 rtlpriv->cfg->ops->led_control(hw, LED_CTL_TX);
1411
1412         rtlpriv->cfg->ops->fill_tx_desc(hw, hdr, (u8 *)pdesc,
1413                         info, skb, hw_queue, ptcb_desc);
1414
1415         __skb_queue_tail(&ring->queue, skb);
1416
1417         rtlpriv->cfg->ops->set_desc((u8 *)pdesc, true,
1418                                     HW_DESC_OWN, (u8 *)&temp_one);
1419
1420
1421         if ((ring->entries - skb_queue_len(&ring->queue)) < 2 &&
1422             hw_queue != BEACON_QUEUE) {
1423
1424                 RT_TRACE(rtlpriv, COMP_ERR, DBG_LOUD,
1425                          "less desc left, stop skb_queue@%d, ring->idx = %d, idx = %d, skb_queue_len = 0x%d\n",
1426                          hw_queue, ring->idx, idx,
1427                          skb_queue_len(&ring->queue));
1428
1429                 ieee80211_stop_queue(hw, skb_get_queue_mapping(skb));
1430         }
1431
1432         spin_unlock_irqrestore(&rtlpriv->locks.irq_th_lock, flags);
1433
1434         rtlpriv->cfg->ops->tx_polling(hw, hw_queue);
1435
1436         return 0;
1437 }
1438
1439 static void rtl_pci_flush(struct ieee80211_hw *hw, bool drop)
1440 {
1441         struct rtl_priv *rtlpriv = rtl_priv(hw);
1442         struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
1443         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1444         u16 i = 0;
1445         int queue_id;
1446         struct rtl8192_tx_ring *ring;
1447
1448         for (queue_id = RTL_PCI_MAX_TX_QUEUE_COUNT - 1; queue_id >= 0;) {
1449                 u32 queue_len;
1450                 ring = &pcipriv->dev.tx_ring[queue_id];
1451                 queue_len = skb_queue_len(&ring->queue);
1452                 if (queue_len == 0 || queue_id == BEACON_QUEUE ||
1453                         queue_id == TXCMD_QUEUE) {
1454                         queue_id--;
1455                         continue;
1456                 } else {
1457                         msleep(20);
1458                         i++;
1459                 }
1460
1461                 /* we just wait 1s for all queues */
1462                 if (rtlpriv->psc.rfpwr_state == ERFOFF ||
1463                         is_hal_stop(rtlhal) || i >= 200)
1464                         return;
1465         }
1466 }
1467
1468 static void rtl_pci_deinit(struct ieee80211_hw *hw)
1469 {
1470         struct rtl_priv *rtlpriv = rtl_priv(hw);
1471         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1472
1473         _rtl_pci_deinit_trx_ring(hw);
1474
1475         synchronize_irq(rtlpci->pdev->irq);
1476         tasklet_kill(&rtlpriv->works.irq_tasklet);
1477         cancel_work_sync(&rtlpriv->works.lps_leave_work);
1478
1479         flush_workqueue(rtlpriv->works.rtl_wq);
1480         destroy_workqueue(rtlpriv->works.rtl_wq);
1481
1482 }
1483
1484 static int rtl_pci_init(struct ieee80211_hw *hw, struct pci_dev *pdev)
1485 {
1486         struct rtl_priv *rtlpriv = rtl_priv(hw);
1487         int err;
1488
1489         _rtl_pci_init_struct(hw, pdev);
1490
1491         err = _rtl_pci_init_trx_ring(hw);
1492         if (err) {
1493                 RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
1494                          "tx ring initialization failed\n");
1495                 return err;
1496         }
1497
1498         return 0;
1499 }
1500
1501 static int rtl_pci_start(struct ieee80211_hw *hw)
1502 {
1503         struct rtl_priv *rtlpriv = rtl_priv(hw);
1504         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1505         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1506         struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
1507
1508         int err;
1509
1510         rtl_pci_reset_trx_ring(hw);
1511
1512         rtlpci->driver_is_goingto_unload = false;
1513         err = rtlpriv->cfg->ops->hw_init(hw);
1514         if (err) {
1515                 RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1516                          "Failed to config hardware!\n");
1517                 return err;
1518         }
1519
1520         rtlpriv->cfg->ops->enable_interrupt(hw);
1521         RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD, "enable_interrupt OK\n");
1522
1523         rtl_init_rx_config(hw);
1524
1525         /*should be after adapter start and interrupt enable. */
1526         set_hal_start(rtlhal);
1527
1528         RT_CLEAR_PS_LEVEL(ppsc, RT_RF_OFF_LEVL_HALT_NIC);
1529
1530         rtlpci->up_first_time = false;
1531
1532         RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG, "OK\n");
1533         return 0;
1534 }
1535
1536 static void rtl_pci_stop(struct ieee80211_hw *hw)
1537 {
1538         struct rtl_priv *rtlpriv = rtl_priv(hw);
1539         struct rtl_pci *rtlpci = rtl_pcidev(rtl_pcipriv(hw));
1540         struct rtl_ps_ctl *ppsc = rtl_psc(rtl_priv(hw));
1541         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1542         unsigned long flags;
1543         u8 RFInProgressTimeOut = 0;
1544
1545         /*
1546          *should be before disable interrupt&adapter
1547          *and will do it immediately.
1548          */
1549         set_hal_stop(rtlhal);
1550
1551         rtlpriv->cfg->ops->disable_interrupt(hw);
1552         cancel_work_sync(&rtlpriv->works.lps_leave_work);
1553
1554         spin_lock_irqsave(&rtlpriv->locks.rf_ps_lock, flags);
1555         while (ppsc->rfchange_inprogress) {
1556                 spin_unlock_irqrestore(&rtlpriv->locks.rf_ps_lock, flags);
1557                 if (RFInProgressTimeOut > 100) {
1558                         spin_lock_irqsave(&rtlpriv->locks.rf_ps_lock, flags);
1559                         break;
1560                 }
1561                 mdelay(1);
1562                 RFInProgressTimeOut++;
1563                 spin_lock_irqsave(&rtlpriv->locks.rf_ps_lock, flags);
1564         }
1565         ppsc->rfchange_inprogress = true;
1566         spin_unlock_irqrestore(&rtlpriv->locks.rf_ps_lock, flags);
1567
1568         rtlpci->driver_is_goingto_unload = true;
1569         rtlpriv->cfg->ops->hw_disable(hw);
1570         /* some things are not needed if firmware not available */
1571         if (!rtlpriv->max_fw_size)
1572                 return;
1573         rtlpriv->cfg->ops->led_control(hw, LED_CTL_POWER_OFF);
1574
1575         spin_lock_irqsave(&rtlpriv->locks.rf_ps_lock, flags);
1576         ppsc->rfchange_inprogress = false;
1577         spin_unlock_irqrestore(&rtlpriv->locks.rf_ps_lock, flags);
1578
1579         rtl_pci_enable_aspm(hw);
1580 }
1581
1582 static bool _rtl_pci_find_adapter(struct pci_dev *pdev,
1583                 struct ieee80211_hw *hw)
1584 {
1585         struct rtl_priv *rtlpriv = rtl_priv(hw);
1586         struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
1587         struct rtl_hal *rtlhal = rtl_hal(rtl_priv(hw));
1588         struct pci_dev *bridge_pdev = pdev->bus->self;
1589         u16 venderid;
1590         u16 deviceid;
1591         u8 revisionid;
1592         u16 irqline;
1593         u8 tmp;
1594
1595         pcipriv->ndis_adapter.pcibridge_vendor = PCI_BRIDGE_VENDOR_UNKNOWN;
1596         venderid = pdev->vendor;
1597         deviceid = pdev->device;
1598         pci_read_config_byte(pdev, 0x8, &revisionid);
1599         pci_read_config_word(pdev, 0x3C, &irqline);
1600
1601         /* PCI ID 0x10ec:0x8192 occurs for both RTL8192E, which uses
1602          * r8192e_pci, and RTL8192SE, which uses this driver. If the
1603          * revision ID is RTL_PCI_REVISION_ID_8192PCIE (0x01), then
1604          * the correct driver is r8192e_pci, thus this routine should
1605          * return false.
1606          */
1607         if (deviceid == RTL_PCI_8192SE_DID &&
1608             revisionid == RTL_PCI_REVISION_ID_8192PCIE)
1609                 return false;
1610
1611         if (deviceid == RTL_PCI_8192_DID ||
1612             deviceid == RTL_PCI_0044_DID ||
1613             deviceid == RTL_PCI_0047_DID ||
1614             deviceid == RTL_PCI_8192SE_DID ||
1615             deviceid == RTL_PCI_8174_DID ||
1616             deviceid == RTL_PCI_8173_DID ||
1617             deviceid == RTL_PCI_8172_DID ||
1618             deviceid == RTL_PCI_8171_DID) {
1619                 switch (revisionid) {
1620                 case RTL_PCI_REVISION_ID_8192PCIE:
1621                         RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1622                                  "8192 PCI-E is found - vid/did=%x/%x\n",
1623                                  venderid, deviceid);
1624                         rtlhal->hw_type = HARDWARE_TYPE_RTL8192E;
1625                         break;
1626                 case RTL_PCI_REVISION_ID_8192SE:
1627                         RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1628                                  "8192SE is found - vid/did=%x/%x\n",
1629                                  venderid, deviceid);
1630                         rtlhal->hw_type = HARDWARE_TYPE_RTL8192SE;
1631                         break;
1632                 default:
1633                         RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
1634                                  "Err: Unknown device - vid/did=%x/%x\n",
1635                                  venderid, deviceid);
1636                         rtlhal->hw_type = HARDWARE_TYPE_RTL8192SE;
1637                         break;
1638
1639                 }
1640         } else if (deviceid == RTL_PCI_8192CET_DID ||
1641                    deviceid == RTL_PCI_8192CE_DID ||
1642                    deviceid == RTL_PCI_8191CE_DID ||
1643                    deviceid == RTL_PCI_8188CE_DID) {
1644                 rtlhal->hw_type = HARDWARE_TYPE_RTL8192CE;
1645                 RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1646                          "8192C PCI-E is found - vid/did=%x/%x\n",
1647                          venderid, deviceid);
1648         } else if (deviceid == RTL_PCI_8192DE_DID ||
1649                    deviceid == RTL_PCI_8192DE_DID2) {
1650                 rtlhal->hw_type = HARDWARE_TYPE_RTL8192DE;
1651                 RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1652                          "8192D PCI-E is found - vid/did=%x/%x\n",
1653                          venderid, deviceid);
1654         } else {
1655                 RT_TRACE(rtlpriv, COMP_ERR, DBG_WARNING,
1656                          "Err: Unknown device - vid/did=%x/%x\n",
1657                          venderid, deviceid);
1658
1659                 rtlhal->hw_type = RTL_DEFAULT_HARDWARE_TYPE;
1660         }
1661
1662         if (rtlhal->hw_type == HARDWARE_TYPE_RTL8192DE) {
1663                 if (revisionid == 0 || revisionid == 1) {
1664                         if (revisionid == 0) {
1665                                 RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD,
1666                                          "Find 92DE MAC0\n");
1667                                 rtlhal->interfaceindex = 0;
1668                         } else if (revisionid == 1) {
1669                                 RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD,
1670                                          "Find 92DE MAC1\n");
1671                                 rtlhal->interfaceindex = 1;
1672                         }
1673                 } else {
1674                         RT_TRACE(rtlpriv, COMP_INIT, DBG_LOUD,
1675                                  "Unknown device - VendorID/DeviceID=%x/%x, Revision=%x\n",
1676                                  venderid, deviceid, revisionid);
1677                         rtlhal->interfaceindex = 0;
1678                 }
1679         }
1680         /*find bus info */
1681         pcipriv->ndis_adapter.busnumber = pdev->bus->number;
1682         pcipriv->ndis_adapter.devnumber = PCI_SLOT(pdev->devfn);
1683         pcipriv->ndis_adapter.funcnumber = PCI_FUNC(pdev->devfn);
1684
1685         if (bridge_pdev) {
1686                 /*find bridge info if available */
1687                 pcipriv->ndis_adapter.pcibridge_vendorid = bridge_pdev->vendor;
1688                 for (tmp = 0; tmp < PCI_BRIDGE_VENDOR_MAX; tmp++) {
1689                         if (bridge_pdev->vendor == pcibridge_vendors[tmp]) {
1690                                 pcipriv->ndis_adapter.pcibridge_vendor = tmp;
1691                                 RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1692                                          "Pci Bridge Vendor is found index: %d\n",
1693                                          tmp);
1694                                 break;
1695                         }
1696                 }
1697         }
1698
1699         if (pcipriv->ndis_adapter.pcibridge_vendor !=
1700                 PCI_BRIDGE_VENDOR_UNKNOWN) {
1701                 pcipriv->ndis_adapter.pcibridge_busnum =
1702                     bridge_pdev->bus->number;
1703                 pcipriv->ndis_adapter.pcibridge_devnum =
1704                     PCI_SLOT(bridge_pdev->devfn);
1705                 pcipriv->ndis_adapter.pcibridge_funcnum =
1706                     PCI_FUNC(bridge_pdev->devfn);
1707                 pcipriv->ndis_adapter.pcibridge_pciehdr_offset =
1708                     pci_pcie_cap(bridge_pdev);
1709                 pcipriv->ndis_adapter.num4bytes =
1710                     (pcipriv->ndis_adapter.pcibridge_pciehdr_offset + 0x10) / 4;
1711
1712                 rtl_pci_get_linkcontrol_field(hw);
1713
1714                 if (pcipriv->ndis_adapter.pcibridge_vendor ==
1715                     PCI_BRIDGE_VENDOR_AMD) {
1716                         pcipriv->ndis_adapter.amd_l1_patch =
1717                             rtl_pci_get_amd_l1_patch(hw);
1718                 }
1719         }
1720
1721         RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1722                  "pcidev busnumber:devnumber:funcnumber:vendor:link_ctl %d:%d:%d:%x:%x\n",
1723                  pcipriv->ndis_adapter.busnumber,
1724                  pcipriv->ndis_adapter.devnumber,
1725                  pcipriv->ndis_adapter.funcnumber,
1726                  pdev->vendor, pcipriv->ndis_adapter.linkctrl_reg);
1727
1728         RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1729                  "pci_bridge busnumber:devnumber:funcnumber:vendor:pcie_cap:link_ctl_reg:amd %d:%d:%d:%x:%x:%x:%x\n",
1730                  pcipriv->ndis_adapter.pcibridge_busnum,
1731                  pcipriv->ndis_adapter.pcibridge_devnum,
1732                  pcipriv->ndis_adapter.pcibridge_funcnum,
1733                  pcibridge_vendors[pcipriv->ndis_adapter.pcibridge_vendor],
1734                  pcipriv->ndis_adapter.pcibridge_pciehdr_offset,
1735                  pcipriv->ndis_adapter.pcibridge_linkctrlreg,
1736                  pcipriv->ndis_adapter.amd_l1_patch);
1737
1738         rtl_pci_parse_configuration(pdev, hw);
1739
1740         return true;
1741 }
1742
1743 int __devinit rtl_pci_probe(struct pci_dev *pdev,
1744                             const struct pci_device_id *id)
1745 {
1746         struct ieee80211_hw *hw = NULL;
1747
1748         struct rtl_priv *rtlpriv = NULL;
1749         struct rtl_pci_priv *pcipriv = NULL;
1750         struct rtl_pci *rtlpci;
1751         unsigned long pmem_start, pmem_len, pmem_flags;
1752         int err;
1753
1754         err = pci_enable_device(pdev);
1755         if (err) {
1756                 RT_ASSERT(false, "%s : Cannot enable new PCI device\n",
1757                           pci_name(pdev));
1758                 return err;
1759         }
1760
1761         if (!pci_set_dma_mask(pdev, DMA_BIT_MASK(32))) {
1762                 if (pci_set_consistent_dma_mask(pdev, DMA_BIT_MASK(32))) {
1763                         RT_ASSERT(false,
1764                                   "Unable to obtain 32bit DMA for consistent allocations\n");
1765                         err = -ENOMEM;
1766                         goto fail1;
1767                 }
1768         }
1769
1770         pci_set_master(pdev);
1771
1772         hw = ieee80211_alloc_hw(sizeof(struct rtl_pci_priv) +
1773                                 sizeof(struct rtl_priv), &rtl_ops);
1774         if (!hw) {
1775                 RT_ASSERT(false,
1776                           "%s : ieee80211 alloc failed\n", pci_name(pdev));
1777                 err = -ENOMEM;
1778                 goto fail1;
1779         }
1780
1781         SET_IEEE80211_DEV(hw, &pdev->dev);
1782         pci_set_drvdata(pdev, hw);
1783
1784         rtlpriv = hw->priv;
1785         pcipriv = (void *)rtlpriv->priv;
1786         pcipriv->dev.pdev = pdev;
1787         init_completion(&rtlpriv->firmware_loading_complete);
1788
1789         /* init cfg & intf_ops */
1790         rtlpriv->rtlhal.interface = INTF_PCI;
1791         rtlpriv->cfg = (struct rtl_hal_cfg *)(id->driver_data);
1792         rtlpriv->intf_ops = &rtl_pci_ops;
1793
1794         /*
1795          *init dbgp flags before all
1796          *other functions, because we will
1797          *use it in other funtions like
1798          *RT_TRACE/RT_PRINT/RTL_PRINT_DATA
1799          *you can not use these macro
1800          *before this
1801          */
1802         rtl_dbgp_flag_init(hw);
1803
1804         /* MEM map */
1805         err = pci_request_regions(pdev, KBUILD_MODNAME);
1806         if (err) {
1807                 RT_ASSERT(false, "Can't obtain PCI resources\n");
1808                 goto fail1;
1809         }
1810
1811         pmem_start = pci_resource_start(pdev, rtlpriv->cfg->bar_id);
1812         pmem_len = pci_resource_len(pdev, rtlpriv->cfg->bar_id);
1813         pmem_flags = pci_resource_flags(pdev, rtlpriv->cfg->bar_id);
1814
1815         /*shared mem start */
1816         rtlpriv->io.pci_mem_start =
1817                         (unsigned long)pci_iomap(pdev,
1818                         rtlpriv->cfg->bar_id, pmem_len);
1819         if (rtlpriv->io.pci_mem_start == 0) {
1820                 RT_ASSERT(false, "Can't map PCI mem\n");
1821                 err = -ENOMEM;
1822                 goto fail2;
1823         }
1824
1825         RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1826                  "mem mapped space: start: 0x%08lx len:%08lx flags:%08lx, after map:0x%08lx\n",
1827                  pmem_start, pmem_len, pmem_flags,
1828                  rtlpriv->io.pci_mem_start);
1829
1830         /* Disable Clk Request */
1831         pci_write_config_byte(pdev, 0x81, 0);
1832         /* leave D3 mode */
1833         pci_write_config_byte(pdev, 0x44, 0);
1834         pci_write_config_byte(pdev, 0x04, 0x06);
1835         pci_write_config_byte(pdev, 0x04, 0x07);
1836
1837         /* find adapter */
1838         if (!_rtl_pci_find_adapter(pdev, hw)) {
1839                 err = -ENODEV;
1840                 goto fail3;
1841         }
1842
1843         /* Init IO handler */
1844         _rtl_pci_io_handler_init(&pdev->dev, hw);
1845
1846         /*like read eeprom and so on */
1847         rtlpriv->cfg->ops->read_eeprom_info(hw);
1848
1849         if (rtlpriv->cfg->ops->init_sw_vars(hw)) {
1850                 RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG, "Can't init_sw_vars\n");
1851                 err = -ENODEV;
1852                 goto fail3;
1853         }
1854
1855         rtlpriv->cfg->ops->init_sw_leds(hw);
1856
1857         /*aspm */
1858         rtl_pci_init_aspm(hw);
1859
1860         /* Init mac80211 sw */
1861         err = rtl_init_core(hw);
1862         if (err) {
1863                 RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
1864                          "Can't allocate sw for mac80211\n");
1865                 goto fail3;
1866         }
1867
1868         /* Init PCI sw */
1869         err = rtl_pci_init(hw, pdev);
1870         if (err) {
1871                 RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG, "Failed to init PCI\n");
1872                 goto fail3;
1873         }
1874
1875         err = sysfs_create_group(&pdev->dev.kobj, &rtl_attribute_group);
1876         if (err) {
1877                 RT_TRACE(rtlpriv, COMP_ERR, DBG_EMERG,
1878                          "failed to create sysfs device attributes\n");
1879                 goto fail3;
1880         }
1881
1882         rtlpci = rtl_pcidev(pcipriv);
1883         err = request_irq(rtlpci->pdev->irq, &_rtl_pci_interrupt,
1884                           IRQF_SHARED, KBUILD_MODNAME, hw);
1885         if (err) {
1886                 RT_TRACE(rtlpriv, COMP_INIT, DBG_DMESG,
1887                          "%s: failed to register IRQ handler\n",
1888                          wiphy_name(hw->wiphy));
1889                 goto fail3;
1890         }
1891         rtlpci->irq_alloc = 1;
1892
1893         return 0;
1894
1895 fail3:
1896         rtl_deinit_core(hw);
1897         _rtl_pci_io_handler_release(hw);
1898
1899         if (rtlpriv->io.pci_mem_start != 0)
1900                 pci_iounmap(pdev, (void __iomem *)rtlpriv->io.pci_mem_start);
1901
1902 fail2:
1903         pci_release_regions(pdev);
1904         complete(&rtlpriv->firmware_loading_complete);
1905
1906 fail1:
1907         if (hw)
1908                 ieee80211_free_hw(hw);
1909         pci_set_drvdata(pdev, NULL);
1910         pci_disable_device(pdev);
1911
1912         return err;
1913
1914 }
1915 EXPORT_SYMBOL(rtl_pci_probe);
1916
1917 void rtl_pci_disconnect(struct pci_dev *pdev)
1918 {
1919         struct ieee80211_hw *hw = pci_get_drvdata(pdev);
1920         struct rtl_pci_priv *pcipriv = rtl_pcipriv(hw);
1921         struct rtl_priv *rtlpriv = rtl_priv(hw);
1922         struct rtl_pci *rtlpci = rtl_pcidev(pcipriv);
1923         struct rtl_mac *rtlmac = rtl_mac(rtlpriv);
1924
1925         /* just in case driver is removed before firmware callback */
1926         wait_for_completion(&rtlpriv->firmware_loading_complete);
1927         clear_bit(RTL_STATUS_INTERFACE_START, &rtlpriv->status);
1928
1929         sysfs_remove_group(&pdev->dev.kobj, &rtl_attribute_group);
1930
1931         /*ieee80211_unregister_hw will call ops_stop */
1932         if (rtlmac->mac80211_registered == 1) {
1933                 ieee80211_unregister_hw(hw);
1934                 rtlmac->mac80211_registered = 0;
1935         } else {
1936                 rtl_deinit_deferred_work(hw);
1937                 rtlpriv->intf_ops->adapter_stop(hw);
1938         }
1939
1940         /*deinit rfkill */
1941         rtl_deinit_rfkill(hw);
1942
1943         rtl_pci_deinit(hw);
1944         rtl_deinit_core(hw);
1945         _rtl_pci_io_handler_release(hw);
1946         rtlpriv->cfg->ops->deinit_sw_vars(hw);
1947
1948         if (rtlpci->irq_alloc) {
1949                 free_irq(rtlpci->pdev->irq, hw);
1950                 rtlpci->irq_alloc = 0;
1951         }
1952
1953         if (rtlpriv->io.pci_mem_start != 0) {
1954                 pci_iounmap(pdev, (void __iomem *)rtlpriv->io.pci_mem_start);
1955                 pci_release_regions(pdev);
1956         }
1957
1958         pci_disable_device(pdev);
1959
1960         rtl_pci_disable_aspm(hw);
1961
1962         pci_set_drvdata(pdev, NULL);
1963
1964         ieee80211_free_hw(hw);
1965 }
1966 EXPORT_SYMBOL(rtl_pci_disconnect);
1967
1968 /***************************************
1969 kernel pci power state define:
1970 PCI_D0         ((pci_power_t __force) 0)
1971 PCI_D1         ((pci_power_t __force) 1)
1972 PCI_D2         ((pci_power_t __force) 2)
1973 PCI_D3hot      ((pci_power_t __force) 3)
1974 PCI_D3cold     ((pci_power_t __force) 4)
1975 PCI_UNKNOWN    ((pci_power_t __force) 5)
1976
1977 This function is called when system
1978 goes into suspend state mac80211 will
1979 call rtl_mac_stop() from the mac80211
1980 suspend function first, So there is
1981 no need to call hw_disable here.
1982 ****************************************/
1983 int rtl_pci_suspend(struct device *dev)
1984 {
1985         struct pci_dev *pdev = to_pci_dev(dev);
1986         struct ieee80211_hw *hw = pci_get_drvdata(pdev);
1987         struct rtl_priv *rtlpriv = rtl_priv(hw);
1988
1989         rtlpriv->cfg->ops->hw_suspend(hw);
1990         rtl_deinit_rfkill(hw);
1991
1992         return 0;
1993 }
1994 EXPORT_SYMBOL(rtl_pci_suspend);
1995
1996 int rtl_pci_resume(struct device *dev)
1997 {
1998         struct pci_dev *pdev = to_pci_dev(dev);
1999         struct ieee80211_hw *hw = pci_get_drvdata(pdev);
2000         struct rtl_priv *rtlpriv = rtl_priv(hw);
2001
2002         rtlpriv->cfg->ops->hw_resume(hw);
2003         rtl_init_rfkill(hw);
2004         return 0;
2005 }
2006 EXPORT_SYMBOL(rtl_pci_resume);
2007
2008 struct rtl_intf_ops rtl_pci_ops = {
2009         .read_efuse_byte = read_efuse_byte,
2010         .adapter_start = rtl_pci_start,
2011         .adapter_stop = rtl_pci_stop,
2012         .adapter_tx = rtl_pci_tx,
2013         .flush = rtl_pci_flush,
2014         .reset_trx_ring = rtl_pci_reset_trx_ring,
2015         .waitq_insert = rtl_pci_tx_chk_waitq_insert,
2016
2017         .disable_aspm = rtl_pci_disable_aspm,
2018         .enable_aspm = rtl_pci_enable_aspm,
2019 };