2 *************************************************************************
4 * 5F., No.36, Taiyuan St., Jhubei City,
8 * (c) Copyright 2002-2007, Ralink Technology, Inc.
10 * This program is free software; you can redistribute it and/or modify *
11 * it under the terms of the GNU General Public License as published by *
12 * the Free Software Foundation; either version 2 of the License, or *
13 * (at your option) any later version. *
15 * This program is distributed in the hope that it will be useful, *
16 * but WITHOUT ANY WARRANTY; without even the implied warranty of *
17 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
18 * GNU General Public License for more details. *
20 * You should have received a copy of the GNU General Public License *
21 * along with this program; if not, write to the *
22 * Free Software Foundation, Inc., *
23 * 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA. *
25 *************************************************************************
32 #include <linux/usb.h>
36 #define BULKAGGRE_ZISE 100
37 #define RT28XX_DRVDATA_SET(_a) usb_set_intfdata(_a, pAd);
38 #define RT28XX_PUT_DEVICE usb_put_dev
39 #define RTUSB_ALLOC_URB(iso) usb_alloc_urb(iso, GFP_ATOMIC)
40 #define RTUSB_SUBMIT_URB(pUrb) usb_submit_urb(pUrb, GFP_ATOMIC)
41 #define RTUSB_URB_ALLOC_BUFFER(pUsb_Dev, BufSize, pDma_addr) usb_buffer_alloc(pUsb_Dev, BufSize, GFP_ATOMIC, pDma_addr)
42 #define RTUSB_URB_FREE_BUFFER(pUsb_Dev, BufSize, pTransferBuf, Dma_addr) usb_buffer_free(pUsb_Dev, BufSize, pTransferBuf, Dma_addr)
44 #define RXBULKAGGRE_ZISE 12
45 #define MAX_TXBULK_LIMIT (LOCAL_TXBUF_SIZE*(BULKAGGRE_ZISE-1))
46 #define MAX_TXBULK_SIZE (LOCAL_TXBUF_SIZE*BULKAGGRE_ZISE)
47 #define MAX_RXBULK_SIZE (LOCAL_TXBUF_SIZE*RXBULKAGGRE_ZISE)
48 #define MAX_MLME_HANDLER_MEMORY 20
50 #define RETRY_LIMIT 10
52 #define BUFFER_SIZE 2400 //2048
57 // Flags for Bulkflags control for bulk out data
59 #define fRTUSB_BULK_OUT_DATA_NULL 0x00000001
60 #define fRTUSB_BULK_OUT_RTS 0x00000002
61 #define fRTUSB_BULK_OUT_MLME 0x00000004
63 #define fRTUSB_BULK_OUT_DATA_NORMAL 0x00010000
64 #define fRTUSB_BULK_OUT_DATA_NORMAL_2 0x00020000
65 #define fRTUSB_BULK_OUT_DATA_NORMAL_3 0x00040000
66 #define fRTUSB_BULK_OUT_DATA_NORMAL_4 0x00080000
68 #define fRTUSB_BULK_OUT_DATA_NORMAL_5 0x00100000
71 #define fRTUSB_BULK_OUT_PSPOLL 0x00000020
72 #define fRTUSB_BULK_OUT_DATA_FRAG 0x00000040
73 #define fRTUSB_BULK_OUT_DATA_FRAG_2 0x00000080
74 #define fRTUSB_BULK_OUT_DATA_FRAG_3 0x00000100
75 #define fRTUSB_BULK_OUT_DATA_FRAG_4 0x00000200
78 #define RT2870_USB_DEVICES \
80 {USB_DEVICE(0x148F,0x2770)}, /* Ralink */ \
81 {USB_DEVICE(0x1737,0x0071)}, /* Linksys WUSB600N */ \
82 {USB_DEVICE(0x148F,0x2870)}, /* Ralink */ \
83 {USB_DEVICE(0x148F,0x3070)}, /* Ralink */ \
84 {USB_DEVICE(0x0B05,0x1731)}, /* Asus */ \
85 {USB_DEVICE(0x0B05,0x1732)}, /* Asus */ \
86 {USB_DEVICE(0x0B05,0x1742)}, /* Asus */ \
87 {USB_DEVICE(0x0DF6,0x0017)}, /* Sitecom */ \
88 {USB_DEVICE(0x0DF6,0x002B)}, /* Sitecom */ \
89 {USB_DEVICE(0x0DF6,0x002C)}, /* Sitecom */ \
90 {USB_DEVICE(0x0DF6,0x002D)}, /* Sitecom */ \
91 {USB_DEVICE(0x0DF6,0x0039)}, /* Sitecom */ \
92 {USB_DEVICE(0x14B2,0x3C06)}, /* Conceptronic */ \
93 {USB_DEVICE(0x14B2,0x3C28)}, /* Conceptronic */ \
94 {USB_DEVICE(0x2019,0xED06)}, /* Planex Communications, Inc. */ \
95 {USB_DEVICE(0x2019,0xAB25)}, /* Planex Communications, Inc. RT3070 */ \
96 {USB_DEVICE(0x07D1,0x3C09)}, /* D-Link */ \
97 {USB_DEVICE(0x07D1,0x3C11)}, /* D-Link */ \
98 {USB_DEVICE(0x14B2,0x3C07)}, /* AL */ \
99 {USB_DEVICE(0x14B2,0x3C12)}, /* AL */ \
100 {USB_DEVICE(0x050D,0x8053)}, /* Belkin */ \
101 {USB_DEVICE(0x14B2,0x3C23)}, /* Airlink */ \
102 {USB_DEVICE(0x14B2,0x3C27)}, /* Airlink */ \
103 {USB_DEVICE(0x07AA,0x002F)}, /* Corega */ \
104 {USB_DEVICE(0x07AA,0x003C)}, /* Corega */ \
105 {USB_DEVICE(0x07AA,0x003F)}, /* Corega */ \
106 {USB_DEVICE(0x18C5,0x0012)}, /* Corega */ \
107 {USB_DEVICE(0x1044,0x800B)}, /* Gigabyte */ \
108 {USB_DEVICE(0x15A9,0x0006)}, /* Sparklan */ \
109 {USB_DEVICE(0x083A,0xB522)}, /* SMC */ \
110 {USB_DEVICE(0x083A,0xA618)}, /* SMC */ \
111 {USB_DEVICE(0x083A,0x7522)}, /* Arcadyan */ \
112 {USB_DEVICE(0x0CDE,0x0022)}, /* ZCOM */ \
113 {USB_DEVICE(0x0586,0x3416)}, /* Zyxel */ \
114 {USB_DEVICE(0x0CDE,0x0025)}, /* Zyxel */ \
115 {USB_DEVICE(0x1740,0x9701)}, /* EnGenius */ \
116 {USB_DEVICE(0x1740,0x9702)}, /* EnGenius */ \
117 {USB_DEVICE(0x0471,0x200f)}, /* Philips */ \
118 {USB_DEVICE(0x14B2,0x3C25)}, /* Draytek */ \
119 {USB_DEVICE(0x13D3,0x3247)}, /* AzureWave */ \
120 {USB_DEVICE(0x083A,0x6618)}, /* Accton */ \
121 {USB_DEVICE(0x15c5,0x0008)}, /* Amit */ \
122 {USB_DEVICE(0x0E66,0x0001)}, /* Hawking */ \
123 {USB_DEVICE(0x0E66,0x0003)}, /* Hawking */ \
124 {USB_DEVICE(0x129B,0x1828)}, /* Siemens */ \
125 {USB_DEVICE(0x157E,0x300E)}, /* U-Media */ \
126 {USB_DEVICE(0x050d,0x805c)}, \
127 {USB_DEVICE(0x1482,0x3C09)}, /* Abocom*/ \
128 {USB_DEVICE(0x14B2,0x3C09)}, /* Alpha */ \
129 {USB_DEVICE(0x04E8,0x2018)}, /* samsung */ \
130 {USB_DEVICE(0x07B8,0x3070)}, /* AboCom */ \
131 {USB_DEVICE(0x07B8,0x3071)}, /* AboCom */ \
132 {USB_DEVICE(0x07B8,0x2870)}, /* AboCom */ \
133 {USB_DEVICE(0x07B8,0x2770)}, /* AboCom */ \
134 {USB_DEVICE(0x7392,0x7711)}, /* Edimax */ \
135 {USB_DEVICE(0x5A57,0x0280)}, /* Zinwell */ \
136 {USB_DEVICE(0x5A57,0x0282)}, /* Zinwell */ \
137 {USB_DEVICE(0x0789,0x0162)}, /* Logitec */ \
138 {USB_DEVICE(0x0789,0x0163)}, /* Logitec */ \
139 {USB_DEVICE(0x0789,0x0164)}, /* Logitec */ \
140 {USB_DEVICE(0x7392,0x7717)}, /* Edimax */ \
141 { }/* Terminating entry */ \
145 #define RT2870_USB_DEVICES \
147 {USB_DEVICE(0x148F,0x2770)}, /* Ralink */ \
148 {USB_DEVICE(0x148F,0x2870)}, /* Ralink */ \
149 {USB_DEVICE(0x148F,0x3070)}, /* Ralink 3070 */ \
150 {USB_DEVICE(0x148F,0x3071)}, /* Ralink 3071 */ \
151 {USB_DEVICE(0x148F,0x3072)}, /* Ralink 3072 */ \
152 {USB_DEVICE(0x0B05,0x1731)}, /* Asus */ \
153 {USB_DEVICE(0x0B05,0x1732)}, /* Asus */ \
154 {USB_DEVICE(0x0B05,0x1742)}, /* Asus */ \
155 {USB_DEVICE(0x0DF6,0x0017)}, /* Sitecom */ \
156 {USB_DEVICE(0x0DF6,0x002B)}, /* Sitecom */ \
157 {USB_DEVICE(0x0DF6,0x002C)}, /* Sitecom */ \
158 {USB_DEVICE(0x0DF6,0x003E)}, /* Sitecom 3070 */ \
159 {USB_DEVICE(0x0DF6,0x002D)}, /* Sitecom */ \
160 {USB_DEVICE(0x0DF6,0x0039)}, /* Sitecom 2770 */ \
161 {USB_DEVICE(0x14B2,0x3C06)}, /* Conceptronic */ \
162 {USB_DEVICE(0x14B2,0x3C28)}, /* Conceptronic */ \
163 {USB_DEVICE(0x2019,0xED06)}, /* Planex Communications, Inc. */ \
164 {USB_DEVICE(0x2019,0xAB25)}, /* Planex Communications, Inc. RT3070 */ \
165 {USB_DEVICE(0x07D1,0x3C09)}, /* D-Link */ \
166 {USB_DEVICE(0x07D1,0x3C11)}, /* D-Link */ \
167 {USB_DEVICE(0x2001,0x3C09)}, /* D-Link */ \
168 {USB_DEVICE(0x2001,0x3C0A)}, /* D-Link 3072*/ \
169 {USB_DEVICE(0x14B2,0x3C07)}, /* AL */ \
170 {USB_DEVICE(0x14B2,0x3C12)}, /* AL 3070 */ \
171 {USB_DEVICE(0x050D,0x8053)}, /* Belkin */ \
172 {USB_DEVICE(0x14B2,0x3C23)}, /* Airlink */ \
173 {USB_DEVICE(0x14B2,0x3C27)}, /* Airlink */ \
174 {USB_DEVICE(0x07AA,0x002F)}, /* Corega */ \
175 {USB_DEVICE(0x07AA,0x003C)}, /* Corega */ \
176 {USB_DEVICE(0x07AA,0x003F)}, /* Corega */ \
177 {USB_DEVICE(0x18C5,0x0012)}, /* Corega 3070 */ \
178 {USB_DEVICE(0x1044,0x800B)}, /* Gigabyte */ \
179 {USB_DEVICE(0x1044,0x800D)}, /* Gigabyte GN-WB32L 3070 */ \
180 {USB_DEVICE(0x15A9,0x0006)}, /* Sparklan */ \
181 {USB_DEVICE(0x083A,0xB522)}, /* SMC */ \
182 {USB_DEVICE(0x083A,0xA618)}, /* SMC */ \
183 {USB_DEVICE(0x083A,0x8522)}, /* Arcadyan */ \
184 {USB_DEVICE(0x083A,0x7512)}, /* Arcadyan 2770 */ \
185 {USB_DEVICE(0x083A,0x7522)}, /* Arcadyan */ \
186 {USB_DEVICE(0x083A,0x7511)}, /* Arcadyan 3070 */ \
187 {USB_DEVICE(0x0CDE,0x0022)}, /* ZCOM */ \
188 {USB_DEVICE(0x0586,0x3416)}, /* Zyxel */ \
189 {USB_DEVICE(0x0CDE,0x0025)}, /* Zyxel */ \
190 {USB_DEVICE(0x1740,0x9701)}, /* EnGenius */ \
191 {USB_DEVICE(0x1740,0x9702)}, /* EnGenius */ \
192 {USB_DEVICE(0x1740,0x9703)}, /* EnGenius 3070 */ \
193 {USB_DEVICE(0x0471,0x200f)}, /* Philips */ \
194 {USB_DEVICE(0x14B2,0x3C25)}, /* Draytek */ \
195 {USB_DEVICE(0x13D3,0x3247)}, /* AzureWave */ \
196 {USB_DEVICE(0x13D3,0x3273)}, /* AzureWave 3070*/ \
197 {USB_DEVICE(0x083A,0x6618)}, /* Accton */ \
198 {USB_DEVICE(0x15c5,0x0008)}, /* Amit */ \
199 {USB_DEVICE(0x0E66,0x0001)}, /* Hawking */ \
200 {USB_DEVICE(0x0E66,0x0003)}, /* Hawking */ \
201 {USB_DEVICE(0x129B,0x1828)}, /* Siemens */ \
202 {USB_DEVICE(0x157E,0x300E)}, /* U-Media */ \
203 {USB_DEVICE(0x050d,0x805c)}, \
204 {USB_DEVICE(0x1482,0x3C09)}, /* Abocom*/ \
205 {USB_DEVICE(0x14B2,0x3C09)}, /* Alpha */ \
206 {USB_DEVICE(0x04E8,0x2018)}, /* samsung */ \
207 {USB_DEVICE(0x07B8,0x3070)}, /* AboCom 3070 */ \
208 {USB_DEVICE(0x07B8,0x3071)}, /* AboCom 3071 */ \
209 {USB_DEVICE(0x07B8,0x3072)}, /* Abocom 3072 */ \
210 {USB_DEVICE(0x7392,0x7711)}, /* Edimax 3070 */ \
211 {USB_DEVICE(0x5A57,0x0280)}, /* Zinwell */ \
212 {USB_DEVICE(0x5A57,0x0282)}, /* Zinwell */ \
213 {USB_DEVICE(0x1A32,0x0304)}, /* Quanta 3070 */ \
214 {USB_DEVICE(0x0789,0x0162)}, /* Logitec 2870 */ \
215 {USB_DEVICE(0x0789,0x0163)}, /* Logitec 2870 */ \
216 {USB_DEVICE(0x0789,0x0164)}, /* Logitec 2870 */ \
217 {USB_DEVICE(0x1EDA,0x2310)}, /* AirTies 3070 */ \
218 { }/* Terminating entry */ \
222 #define FREE_HTTX_RING(_p, _b, _t) \
224 if ((_t)->ENextBulkOutPosition == (_t)->CurWritePosition) \
226 (_t)->bRingEmpty = TRUE; \
228 /*NdisInterlockedDecrement(&(_p)->TxCount); */\
232 // RXINFO appends at the end of each rx packet.
234 typedef struct PACKED _RXINFO_STRUC {
239 UINT32 U2M:1; // 1: this RX frame is unicast to me
240 UINT32 Mcast:1; // 1: this is a multicast frame
241 UINT32 Bcast:1; // 1: this is a broadcast frame
242 UINT32 MyBss:1; // 1: this frame belongs to the same BSSID
243 UINT32 Crc:1; // 1: CRC error
244 UINT32 CipherErr:2; // 0: decryption okay, 1:ICV error, 2:MIC error, 3:KEY not valid
245 UINT32 AMSDU:1; // rx with 802.3 header, not 802.11 header.
249 UINT32 AMPDU:1; // To be moved
254 UINT32 PlcpSignal:12;
255 } RXINFO_STRUC, *PRXINFO_STRUC, RT28XX_RXD_STRUC, *PRT28XX_RXD_STRUC;
260 typedef struct _TXINFO_STRUC {
262 UINT32 USBDMATxPktLen:16; //used ONLY in USB bulk Aggregation, Total byte counts of all sub-frame.
264 UINT32 WIV:1; // Wireless Info Valid. 1 if Driver already fill WI, o if DMA needs to copy WI to correctposition
265 UINT32 QSEL:2; // select on-chip FIFO ID for 2nd-stage output scheduler.0:MGMT, 1:HCCA 2:EDCA
266 UINT32 SwUseLastRound:1; // Software use.
267 UINT32 rsv2:2; // Software use.
268 UINT32 USBDMANextVLD:1; //used ONLY in USB bulk Aggregation, NextValid
269 UINT32 USBDMATxburst:1;//used ONLY in USB bulk Aggre. Force USB DMA transmit frame from current selected endpoint
270 } TXINFO_STRUC, *PTXINFO_STRUC;
272 #define TXINFO_SIZE 4
273 #define RXINFO_SIZE 4
274 #define TXPADDING_SIZE 11
277 // Management ring buffer format
279 typedef struct _MGMT_STRUC {
283 } MGMT_STRUC, *PMGMT_STRUC;
286 /* ----------------- EEPROM Related MACRO ----------------- */
288 #define RT28xx_EEPROM_READ16(pAd, offset, var) \
290 RTUSBReadEEPROM(pAd, offset, (PUCHAR)&(var), 2); \
291 if(!pAd->bUseEfuse) \
292 var = le2cpu16(var); \
295 #define RT28xx_EEPROM_WRITE16(pAd, offset, var) \
297 USHORT _tmpVar=var; \
298 if(!pAd->bUseEfuse) \
299 _tmpVar = cpu2le16(var); \
300 RTUSBWriteEEPROM(pAd, offset, (PUCHAR)&(_tmpVar), 2); \
304 #define RT28xx_EEPROM_READ16(pAd, offset, var) \
306 RTUSBReadEEPROM(pAd, offset, (PUCHAR)&(var), 2); \
307 var = le2cpu16(var); \
310 #define RT28xx_EEPROM_WRITE16(pAd, offset, var) \
313 _tmpVar = cpu2le16(var); \
314 RTUSBWriteEEPROM(pAd, offset, (PUCHAR)&(_tmpVar), 2); \
318 /* ----------------- TASK/THREAD Related MACRO ----------------- */
319 #define RT28XX_TASK_THREAD_INIT(pAd, Status) \
320 Status = CreateThreads(net_dev);
323 /* ----------------- Frimware Related MACRO ----------------- */
324 #define RT28XX_WRITE_FIRMWARE(_pAd, _pFwImage, _FwLen) \
325 RTUSBFirmwareWrite(_pAd, _pFwImage, _FwLen)
327 /* ----------------- TX Related MACRO ----------------- */
328 #define RT28XX_START_DEQUEUE(pAd, QueIdx, irqFlags) \
330 RTMP_IRQ_LOCK(&pAd->DeQueueLock[QueIdx], irqFlags); \
331 if (pAd->DeQueueRunning[QueIdx]) \
333 RTMP_IRQ_UNLOCK(&pAd->DeQueueLock[QueIdx], irqFlags);\
334 printk("DeQueueRunning[%d]= TRUE!\n", QueIdx); \
339 pAd->DeQueueRunning[QueIdx] = TRUE; \
340 RTMP_IRQ_UNLOCK(&pAd->DeQueueLock[QueIdx], irqFlags);\
343 #define RT28XX_STOP_DEQUEUE(pAd, QueIdx, irqFlags) \
345 RTMP_IRQ_LOCK(&pAd->DeQueueLock[QueIdx], irqFlags); \
346 pAd->DeQueueRunning[QueIdx] = FALSE; \
347 RTMP_IRQ_UNLOCK(&pAd->DeQueueLock[QueIdx], irqFlags); \
351 #define RT28XX_HAS_ENOUGH_FREE_DESC(pAd, pTxBlk, freeNum, pPacket) \
352 (RTUSBFreeDescriptorRequest(pAd, pTxBlk->QueIdx, (pTxBlk->TotalFrameLen + GET_OS_PKT_LEN(pPacket))) == NDIS_STATUS_SUCCESS)
354 #define RT28XX_RELEASE_DESC_RESOURCE(pAd, QueIdx) \
357 #define NEED_QUEUE_BACK_FOR_AGG(_pAd, _QueIdx, _freeNum, _TxFrameType) \
358 ((_TxFrameType == TX_RALINK_FRAME) && (RTUSBNeedQueueBackForAgg(_pAd, _QueIdx)))
362 #define fRTMP_ADAPTER_NEED_STOP_TX \
363 (fRTMP_ADAPTER_NIC_NOT_EXIST | fRTMP_ADAPTER_HALT_IN_PROGRESS | \
364 fRTMP_ADAPTER_RESET_IN_PROGRESS | fRTMP_ADAPTER_BULKOUT_RESET | \
365 fRTMP_ADAPTER_RADIO_OFF | fRTMP_ADAPTER_REMOVE_IN_PROGRESS)
368 #define HAL_WriteSubTxResource(pAd, pTxBlk, bIsLast, pFreeNumber) \
369 RtmpUSB_WriteSubTxResource(pAd, pTxBlk, bIsLast, pFreeNumber)
371 #define HAL_WriteTxResource(pAd, pTxBlk,bIsLast, pFreeNumber) \
372 RtmpUSB_WriteSingleTxResource(pAd, pTxBlk,bIsLast, pFreeNumber)
374 #define HAL_WriteFragTxResource(pAd, pTxBlk, fragNum, pFreeNumber) \
375 RtmpUSB_WriteFragTxResource(pAd, pTxBlk, fragNum, pFreeNumber)
377 #define HAL_WriteMultiTxResource(pAd, pTxBlk,frameNum, pFreeNumber) \
378 RtmpUSB_WriteMultiTxResource(pAd, pTxBlk,frameNum, pFreeNumber)
380 #define HAL_FinalWriteTxResource(pAd, pTxBlk, totalMPDUSize, TxIdx) \
381 RtmpUSB_FinalWriteTxResource(pAd, pTxBlk, totalMPDUSize, TxIdx)
383 #define HAL_LastTxIdx(pAd, QueIdx,TxIdx) \
384 /*RtmpUSBDataLastTxIdx(pAd, QueIdx,TxIdx)*/
386 #define HAL_KickOutTx(pAd, pTxBlk, QueIdx) \
387 RtmpUSBDataKickOut(pAd, pTxBlk, QueIdx)
390 #define HAL_KickOutMgmtTx(pAd, QueIdx, pPacket, pSrcBufVA, SrcBufLen) \
391 RtmpUSBMgmtKickOut(pAd, QueIdx, pPacket, pSrcBufVA, SrcBufLen)
393 #define HAL_KickOutNullFrameTx(_pAd, _QueIdx, _pNullFrame, _frameLen) \
394 RtmpUSBNullFrameKickOut(_pAd, _QueIdx, _pNullFrame, _frameLen)
396 #define RTMP_PKT_TAIL_PADDING 11 // 3(max 4 byte padding) + 4 (last packet padding) + 4 (MaxBulkOutsize align padding)
398 extern UCHAR EpToQueue[6];
402 #define GET_TXRING_FREENO(_pAd, _QueIdx) (_QueIdx) //(_pAd->TxRing[_QueIdx].TxSwFreeIdx)
403 #define GET_MGMTRING_FREENO(_pAd) (_pAd->MgmtRing.TxSwFreeIdx)
407 /* ----------------- RX Related MACRO ----------------- */
408 //#define RT28XX_RX_ERROR_CHECK RTMPCheckRxWI
410 #define RT28XX_RV_ALL_BUF_END(bBulkReceive) \
411 /* We return STATUS_MORE_PROCESSING_REQUIRED so that the completion */ \
412 /* routine (IofCompleteRequest) will stop working on the irp. */ \
413 if (bBulkReceive == TRUE) RTUSBBulkReceive(pAd);
416 /* ----------------- ASIC Related MACRO ----------------- */
418 // reset MAC of a station entry to 0xFFFFFFFFFFFF
419 #define RT28XX_STA_ENTRY_MAC_RESET(pAd, Wcid) \
420 { RT_SET_ASIC_WCID SetAsicWcid; \
421 SetAsicWcid.WCID = Wcid; \
422 SetAsicWcid.SetTid = 0xffffffff; \
423 SetAsicWcid.DeleteTid = 0xffffffff; \
424 RTUSBEnqueueInternalCmd(pAd, CMDTHREAD_SET_ASIC_WCID, \
425 &SetAsicWcid, sizeof(RT_SET_ASIC_WCID)); }
427 // add this entry into ASIC RX WCID search table
428 #define RT28XX_STA_ENTRY_ADD(pAd, pEntry) \
429 RTUSBEnqueueInternalCmd(pAd, CMDTHREAD_SET_CLIENT_MAC_ENTRY, \
430 pEntry, sizeof(MAC_TABLE_ENTRY));
433 // add by johnli, fix "in_interrupt" error when call "MacTableDeleteEntry" in Rx tasklet
434 // Set MAC register value according operation mode
435 #define RT28XX_UPDATE_PROTECT(pAd) \
436 RTUSBEnqueueInternalCmd(pAd, CMDTHREAD_UPDATE_PROTECT, NULL, 0);
440 // remove Pair-wise key material from ASIC
442 #define RT28XX_STA_ENTRY_KEY_DEL(pAd, BssIdx, Wcid)
444 // add Client security information into ASIC WCID table and IVEIV table
445 #define RT28XX_STA_SECURITY_INFO_ADD(pAd, apidx, KeyID, pEntry) \
446 { RT28XX_STA_ENTRY_MAC_RESET(pAd, pEntry->Aid); \
447 if (pEntry->Aid >= 1) { \
448 RT_SET_ASIC_WCID_ATTRI SetAsicWcidAttri; \
449 SetAsicWcidAttri.WCID = pEntry->Aid; \
450 if ((pEntry->AuthMode <= Ndis802_11AuthModeAutoSwitch) && \
451 (pEntry->WepStatus == Ndis802_11Encryption1Enabled)) \
453 SetAsicWcidAttri.Cipher = pAd->SharedKey[apidx][KeyID].CipherAlg; \
455 else if (pEntry->AuthMode == Ndis802_11AuthModeWPANone) \
457 SetAsicWcidAttri.Cipher = pAd->SharedKey[apidx][KeyID].CipherAlg; \
459 else SetAsicWcidAttri.Cipher = 0; \
460 DBGPRINT(RT_DEBUG_TRACE, ("aid cipher = %ld\n",SetAsicWcidAttri.Cipher)); \
461 RTUSBEnqueueInternalCmd(pAd, CMDTHREAD_SET_ASIC_WCID_CIPHER, \
462 &SetAsicWcidAttri, sizeof(RT_SET_ASIC_WCID_ATTRI)); } }
464 // Insert the BA bitmap to ASIC for the Wcid entry
465 #define RT28XX_ADD_BA_SESSION_TO_ASIC(_pAd, _Aid, _TID) \
467 RT_SET_ASIC_WCID SetAsicWcid; \
468 SetAsicWcid.WCID = (_Aid); \
469 SetAsicWcid.SetTid = (0x10000<<(_TID)); \
470 SetAsicWcid.DeleteTid = 0xffffffff; \
471 RTUSBEnqueueInternalCmd((_pAd), CMDTHREAD_SET_ASIC_WCID, &SetAsicWcid, sizeof(RT_SET_ASIC_WCID)); \
474 // Remove the BA bitmap from ASIC for the Wcid entry
475 #define RT28XX_DEL_BA_SESSION_FROM_ASIC(_pAd, _Wcid, _TID) \
477 RT_SET_ASIC_WCID SetAsicWcid; \
478 SetAsicWcid.WCID = (_Wcid); \
479 SetAsicWcid.SetTid = (0xffffffff); \
480 SetAsicWcid.DeleteTid = (0x10000<<(_TID) ); \
481 RTUSBEnqueueInternalCmd((_pAd), CMDTHREAD_SET_ASIC_WCID, &SetAsicWcid, sizeof(RT_SET_ASIC_WCID)); \
485 /* ----------------- PCI/USB Related MACRO ----------------- */
486 #define RT28XX_HANDLE_DEV_ASSIGN(handle, dev_p) \
487 ((POS_COOKIE)handle)->pUsb_Dev = dev_p;
490 #define RT28XX_UNMAP()
491 #define RT28XX_IRQ_REQUEST(net_dev)
492 #define RT28XX_IRQ_RELEASE(net_dev)
493 #define RT28XX_IRQ_INIT(pAd)
494 #define RT28XX_IRQ_ENABLE(pAd)
497 /* ----------------- MLME Related MACRO ----------------- */
498 #define RT28XX_MLME_HANDLER(pAd) RTUSBMlmeUp(pAd)
500 #define RT28XX_MLME_PRE_SANITY_CHECK(pAd) \
501 { if ((pAd->CommonCfg.bHardwareRadio == TRUE) && \
502 (!RTMP_TEST_FLAG(pAd, fRTMP_ADAPTER_NIC_NOT_EXIST)) && \
503 (!RTMP_TEST_FLAG(pAd, fRTMP_ADAPTER_HALT_IN_PROGRESS))) { \
504 RTUSBEnqueueInternalCmd(pAd, CMDTHREAD_CHECK_GPIO, NULL, 0); } }
506 #define RT28XX_MLME_STA_QUICK_RSP_WAKE_UP(pAd) \
507 { RTUSBEnqueueInternalCmd(pAd, CMDTHREAD_QKERIODIC_EXECUT, NULL, 0); \
510 #define RT28XX_MLME_RESET_STATE_MACHINE(pAd) \
511 MlmeEnqueue(pAd, MLME_CNTL_STATE_MACHINE, MT2_RESET_CONF, 0, NULL); \
514 #define RT28XX_HANDLE_COUNTER_MEASURE(_pAd, _pEntry) \
515 { RTUSBEnqueueInternalCmd(_pAd, CMDTHREAD_802_11_COUNTER_MEASURE, _pEntry, sizeof(MAC_TABLE_ENTRY)); \
520 /* ----------------- Power Save Related MACRO ----------------- */
521 #define RT28XX_PS_POLL_ENQUEUE(pAd) \
522 { RTUSB_SET_BULK_FLAG(pAd, fRTUSB_BULK_OUT_PSPOLL); \
523 RTUSBKickBulkOut(pAd); }
525 #define RT28xx_CHIP_NAME "RT2870"
526 #define USB_CYC_CFG 0x02a4
528 #define STATUS_SUCCESS 0x00
529 #define STATUS_UNSUCCESSFUL 0x01
531 #define NT_SUCCESS(status) (((status) > 0) ? (1):(0))
532 #define InterlockedIncrement atomic_inc
533 #define NdisInterlockedIncrement atomic_inc
534 #define InterlockedDecrement atomic_dec
535 #define NdisInterlockedDecrement atomic_dec
536 #define InterlockedExchange atomic_set
537 //#define NdisMSendComplete RTMP_SendComplete
538 #define NdisMCancelTimer RTMPCancelTimer
539 #define NdisAllocMemory(_ptr, _size, _flag) \
540 do{_ptr = kmalloc((_size),(_flag));}while(0)
541 #define NdisFreeMemory(a, b, c) kfree((a))
542 #define NdisMSleep RTMPusecDelay /* unit: microsecond */
545 #define USBD_TRANSFER_DIRECTION_OUT 0
546 #define USBD_TRANSFER_DIRECTION_IN 0
547 #define USBD_SHORT_TRANSFER_OK 0
550 #define RTUSB_FREE_URB(pUrb) usb_free_urb(pUrb)
552 //#undef MlmeAllocateMemory
553 //#undef MlmeFreeMemory
556 typedef int NTSTATUS;
558 typedef struct usb_device * PUSB_DEV;
560 /* MACRO for linux usb */
561 typedef struct urb *purbb_t;
562 typedef struct usb_ctrlrequest devctrlrequest;
565 #define NDIS_OID UINT
566 #ifndef USB_ST_NOERROR
567 #define USB_ST_NOERROR 0
570 // vendor-specific control operations
571 #define CONTROL_TIMEOUT_JIFFIES ( (100 * HZ) / 1000)
572 #define UNLINK_TIMEOUT_MS 3
575 #define RTUSB_UNLINK_URB(pUrb) usb_kill_urb(pUrb)
577 // Prototypes of completion funuc.
578 VOID RTUSBBulkOutDataPacketComplete(purbb_t purb, struct pt_regs *pt_regs);
579 VOID RTUSBBulkOutMLMEPacketComplete(purbb_t pUrb, struct pt_regs *pt_regs);
580 VOID RTUSBBulkOutNullFrameComplete(purbb_t pUrb, struct pt_regs *pt_regs);
581 VOID RTUSBBulkOutRTSFrameComplete(purbb_t pUrb, struct pt_regs *pt_regs);
582 VOID RTUSBBulkOutPsPollComplete(purbb_t pUrb, struct pt_regs *pt_regs);
583 VOID RTUSBBulkRxComplete(purbb_t pUrb, struct pt_regs *pt_regs);
586 #define RTUSBMlmeUp(pAd) \
588 POS_COOKIE pObj = (POS_COOKIE) pAd->OS_Cookie; \
589 BUG_ON(pObj->MLMEThr_task == NULL); \
590 CHECK_PID_LEGALITY(task_pid(pObj->MLMEThr_task)) \
591 up(&(pAd->mlme_semaphore)); \
594 #define RTUSBCMDUp(pAd) \
596 POS_COOKIE pObj = (POS_COOKIE) pAd->OS_Cookie; \
597 BUG_ON(pObj->RTUSBCmdThr_task == NULL); \
598 CHECK_PID_LEGALITY(task_pid(pObj->RTUSBCmdThr_task)) \
599 up(&(pAd->RTUSBCmd_semaphore)); \
603 #define RTUSBMlmeUp(pAd) \
605 POS_COOKIE pObj = (POS_COOKIE) pAd->OS_Cookie; \
606 if(pObj->MLMEThr_pid>0) \
607 up(&(pAd->mlme_semaphore)); \
610 #define RTUSBCMDUp(pAd) \
612 POS_COOKIE pObj = (POS_COOKIE) pAd->OS_Cookie; \
613 if(pObj->RTUSBCmdThr_pid>0) \
614 up(&(pAd->RTUSBCmd_semaphore)); \
618 static inline NDIS_STATUS RTMPAllocateMemory(
622 *ptr = kmalloc(size, GFP_ATOMIC);
624 return NDIS_STATUS_SUCCESS;
626 return NDIS_STATUS_RESOURCES;
630 #define BEACON_RING_SIZE 2
631 #define DEVICE_VENDOR_REQUEST_OUT 0x40
632 #define DEVICE_VENDOR_REQUEST_IN 0xc0
633 #define INTERFACE_VENDOR_REQUEST_OUT 0x41
634 #define INTERFACE_VENDOR_REQUEST_IN 0xc1
635 #define MGMTPIPEIDX 0 // EP6 is highest priority
637 #define BULKOUT_MGMT_RESET_FLAG 0x80
639 #define RTUSB_SET_BULK_FLAG(_M, _F) ((_M)->BulkFlags |= (_F))
640 #define RTUSB_CLEAR_BULK_FLAG(_M, _F) ((_M)->BulkFlags &= ~(_F))
641 #define RTUSB_TEST_BULK_FLAG(_M, _F) (((_M)->BulkFlags & (_F)) != 0)
643 #define EnqueueCmd(cmdq, cmdqelmt) \
645 if (cmdq->size == 0) \
646 cmdq->head = cmdqelmt; \
648 cmdq->tail->next = cmdqelmt; \
649 cmdq->tail = cmdqelmt; \
650 cmdqelmt->next = NULL; \
654 typedef struct _RT_SET_ASIC_WCID {
655 ULONG WCID; // mechanism for rekeying: 0:disable, 1: time-based, 2: packet-based
656 ULONG SetTid; // time-based: seconds, packet-based: kilo-packets
657 ULONG DeleteTid; // time-based: seconds, packet-based: kilo-packets
659 UCHAR Addr[MAC_ADDR_LEN]; // avoid in interrupt when write key
661 } RT_SET_ASIC_WCID,*PRT_SET_ASIC_WCID;
663 typedef struct _RT_SET_ASIC_WCID_ATTRI {
664 ULONG WCID; // mechanism for rekeying: 0:disable, 1: time-based, 2: packet-based
665 ULONG Cipher; // ASIC Cipher definition
666 UCHAR Addr[ETH_LENGTH_OF_ADDRESS];
667 } RT_SET_ASIC_WCID_ATTRI,*PRT_SET_ASIC_WCID_ATTRI;
669 typedef struct _MLME_MEMORY_STRUCT {
670 PVOID AllocVa; //Pointer to the base virtual address of the allocated memory
671 struct _MLME_MEMORY_STRUCT *Next; //Pointer to the next virtual address of the allocated memory
672 } MLME_MEMORY_STRUCT, *PMLME_MEMORY_STRUCT;
674 typedef struct _MLME_MEMORY_HANDLER {
675 BOOLEAN MemRunning; //The flag of the Mlme memory handler's status
676 UINT MemoryCount; //Total nonpaged system-space memory not size
677 UINT InUseCount; //Nonpaged system-space memory in used counts
678 UINT UnUseCount; //Nonpaged system-space memory available counts
679 INT PendingCount; //Nonpaged system-space memory for free counts
680 PMLME_MEMORY_STRUCT pInUseHead; //Pointer to the first nonpaed memory not used
681 PMLME_MEMORY_STRUCT pInUseTail; //Pointer to the last nonpaged memory not used
682 PMLME_MEMORY_STRUCT pUnUseHead; //Pointer to the first nonpaged memory in used
683 PMLME_MEMORY_STRUCT pUnUseTail; //Pointer to the last nonpaged memory in used
684 PULONG MemFreePending[MAX_MLME_HANDLER_MEMORY]; //an array to keep pending free-memory's pointer (32bits)
685 } MLME_MEMORY_HANDLER, *PMLME_MEMORY_HANDLER;
687 typedef struct _CmdQElmt {
692 BOOLEAN SetOperation;
693 struct _CmdQElmt *next;
694 } CmdQElmt, *PCmdQElmt;
696 typedef struct _CmdQ {
704 // Cipher suite type for mixed mode group cipher, P802.11i-2004
705 typedef enum _RT_802_11_CIPHER_SUITE_TYPE {
712 } RT_802_11_CIPHER_SUITE_TYPE, *PRT_802_11_CIPHER_SUITE_TYPE;
714 //CMDTHREAD_MULTI_READ_MAC
715 //CMDTHREAD_MULTI_WRITE_MAC
716 //CMDTHREAD_VENDOR_EEPROM_READ
717 //CMDTHREAD_VENDOR_EEPROM_WRITE
718 typedef struct _CMDHandler_TLV {
722 } CMDHandler_TLV, *PCMDHandler_TLV;
724 // New for MeetingHouse Api support
725 #define CMDTHREAD_VENDOR_RESET 0x0D730101 // cmd
726 #define CMDTHREAD_VENDOR_UNPLUG 0x0D730102 // cmd
727 #define CMDTHREAD_VENDOR_SWITCH_FUNCTION 0x0D730103 // cmd
728 #define CMDTHREAD_MULTI_WRITE_MAC 0x0D730107 // cmd
729 #define CMDTHREAD_MULTI_READ_MAC 0x0D730108 // cmd
730 #define CMDTHREAD_VENDOR_EEPROM_WRITE 0x0D73010A // cmd
731 #define CMDTHREAD_VENDOR_EEPROM_READ 0x0D73010B // cmd
732 #define CMDTHREAD_VENDOR_ENTER_TESTMODE 0x0D73010C // cmd
733 #define CMDTHREAD_VENDOR_EXIT_TESTMODE 0x0D73010D // cmd
734 #define CMDTHREAD_VENDOR_WRITE_BBP 0x0D730119 // cmd
735 #define CMDTHREAD_VENDOR_READ_BBP 0x0D730118 // cmd
736 #define CMDTHREAD_VENDOR_WRITE_RF 0x0D73011A // cmd
737 #define CMDTHREAD_VENDOR_FLIP_IQ 0x0D73011D // cmd
738 #define CMDTHREAD_RESET_BULK_OUT 0x0D730210 // cmd
739 #define CMDTHREAD_RESET_BULK_IN 0x0D730211 // cmd
740 #define CMDTHREAD_SET_PSM_BIT_SAVE 0x0D730212 // cmd
741 #define CMDTHREAD_SET_RADIO 0x0D730214 // cmd
742 #define CMDTHREAD_UPDATE_TX_RATE 0x0D730216 // cmd
743 #define CMDTHREAD_802_11_ADD_KEY_WEP 0x0D730218 // cmd
744 #define CMDTHREAD_RESET_FROM_ERROR 0x0D73021A // cmd
745 #define CMDTHREAD_LINK_DOWN 0x0D73021B // cmd
746 #define CMDTHREAD_RESET_FROM_NDIS 0x0D73021C // cmd
747 #define CMDTHREAD_CHECK_GPIO 0x0D730215 // cmd
748 #define CMDTHREAD_FORCE_WAKE_UP 0x0D730222 // cmd
749 #define CMDTHREAD_SET_BW 0x0D730225 // cmd
750 #define CMDTHREAD_SET_ASIC_WCID 0x0D730226 // cmd
751 #define CMDTHREAD_SET_ASIC_WCID_CIPHER 0x0D730227 // cmd
752 #define CMDTHREAD_QKERIODIC_EXECUT 0x0D73023D // cmd
753 #define RT_CMD_SET_KEY_TABLE 0x0D730228 // cmd
754 #define RT_CMD_SET_RX_WCID_TABLE 0x0D730229 // cmd
755 #define CMDTHREAD_SET_CLIENT_MAC_ENTRY 0x0D73023E // cmd
756 #define CMDTHREAD_802_11_QUERY_HARDWARE_REGISTER 0x0D710105 // cmd
757 #define CMDTHREAD_802_11_SET_PHY_MODE 0x0D79010C // cmd
758 #define CMDTHREAD_802_11_SET_STA_CONFIG 0x0D790111 // cmd
759 #define CMDTHREAD_802_11_SET_PREAMBLE 0x0D790101 // cmd
760 #define CMDTHREAD_802_11_COUNTER_MEASURE 0x0D790102 // cmd
763 // add by johnli, fix "in_interrupt" error when call "MacTableDeleteEntry" in Rx tasklet
764 #define CMDTHREAD_UPDATE_PROTECT 0x0D790103 // cmd
768 #define WPA1AKMBIT 0x01
769 #define WPA2AKMBIT 0x02
770 #define WPA1PSKAKMBIT 0x04
771 #define WPA2PSKAKMBIT 0x08
776 #define RT28XX_STA_FORCE_WAKEUP(pAd, bFromTx) \
777 RT28xxUsbStaAsicForceWakeup(pAd, bFromTx);
779 #define RT28XX_STA_SLEEP_THEN_AUTO_WAKEUP(pAd, TbttNumToNextWakeUp) \
780 RT28xxUsbStaAsicSleepThenAutoWakeup(pAd, TbttNumToNextWakeUp);
782 #define RT28XX_MLME_RADIO_ON(pAd) \
783 RT28xxUsbMlmeRadioOn(pAd);
785 #define RT28XX_MLME_RADIO_OFF(pAd) \
786 RT28xxUsbMlmeRadioOFF(pAd);
788 #endif //__RT2870_H__