blob: de4040bb762ceaa9c17aec6af54ce779364993ec [file] [log] [blame]
Pavel Machek66101de2008-10-01 14:36:56 +02001#include "sysdef.h"
2
3extern void phy_calibration_winbond(hw_data_t *phw_data, u32 frequency);
4
5// TRUE : read command process successfully
6// FALSE : register not support
7// RegisterNo : start base
8// pRegisterData : data point
9// NumberOfData : number of register data
10// Flag : AUTO_INCREMENT - RegisterNo will auto increment 4
11// NO_INCREMENT - Function will write data into the same register
12unsigned char
Pekka Enberg8b384e02008-10-21 00:03:41 +030013Wb35Reg_BurstWrite(phw_data_t pHwData, u16 RegisterNo, u32 * pRegisterData, u8 NumberOfData, u8 Flag)
Pavel Machek66101de2008-10-01 14:36:56 +020014{
15 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
16 PURB pUrb = NULL;
17 PREG_QUEUE pRegQueue = NULL;
18 u16 UrbSize;
19 struct usb_ctrlrequest *dr;
20 u16 i, DataSize = NumberOfData*4;
21
22 // Module shutdown
23 if (pHwData->SurpriseRemove)
24 return FALSE;
25
26 // Trying to use burst write function if use new hardware
27 UrbSize = sizeof(REG_QUEUE) + DataSize + sizeof(struct usb_ctrlrequest);
28 OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
29 pUrb = wb_usb_alloc_urb(0);
30 if( pUrb && pRegQueue ) {
31 pRegQueue->DIRECT = 2;// burst write register
32 pRegQueue->INDEX = RegisterNo;
Pekka Enberg8b384e02008-10-21 00:03:41 +030033 pRegQueue->pBuffer = (u32 *)((u8 *)pRegQueue + sizeof(REG_QUEUE));
Pavel Machek66101de2008-10-01 14:36:56 +020034 memcpy( pRegQueue->pBuffer, pRegisterData, DataSize );
35 //the function for reversing register data from little endian to big endian
36 for( i=0; i<NumberOfData ; i++ )
37 pRegQueue->pBuffer[i] = cpu_to_le32( pRegQueue->pBuffer[i] );
38
Pekka Enberg8b384e02008-10-21 00:03:41 +030039 dr = (struct usb_ctrlrequest *)((u8 *)pRegQueue + sizeof(REG_QUEUE) + DataSize);
Pavel Machek66101de2008-10-01 14:36:56 +020040 dr->bRequestType = USB_TYPE_VENDOR | USB_DIR_OUT | USB_RECIP_DEVICE;
41 dr->bRequest = 0x04; // USB or vendor-defined request code, burst mode
42 dr->wValue = cpu_to_le16( Flag ); // 0: Register number auto-increment, 1: No auto increment
43 dr->wIndex = cpu_to_le16( RegisterNo );
44 dr->wLength = cpu_to_le16( DataSize );
45 pRegQueue->Next = NULL;
46 pRegQueue->pUsbReq = dr;
47 pRegQueue->pUrb = pUrb;
48
Pekka Enberga1eb2ba2008-10-21 11:45:02 +030049 spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +020050 if (pWb35Reg->pRegFirst == NULL)
51 pWb35Reg->pRegFirst = pRegQueue;
52 else
53 pWb35Reg->pRegLast->Next = pRegQueue;
54 pWb35Reg->pRegLast = pRegQueue;
55
Pekka Enberga1eb2ba2008-10-21 11:45:02 +030056 spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +020057
58 // Start EP0VM
59 Wb35Reg_EP0VM_start(pHwData);
60
61 return TRUE;
62 } else {
63 if (pUrb)
64 usb_free_urb(pUrb);
65 if (pRegQueue)
66 kfree(pRegQueue);
67 return FALSE;
68 }
69 return FALSE;
70}
71
72void
73Wb35Reg_Update(phw_data_t pHwData, u16 RegisterNo, u32 RegisterValue)
74{
75 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
76 switch (RegisterNo) {
77 case 0x3b0: pWb35Reg->U1B0 = RegisterValue; break;
78 case 0x3bc: pWb35Reg->U1BC_LEDConfigure = RegisterValue; break;
79 case 0x400: pWb35Reg->D00_DmaControl = RegisterValue; break;
80 case 0x800: pWb35Reg->M00_MacControl = RegisterValue; break;
81 case 0x804: pWb35Reg->M04_MulticastAddress1 = RegisterValue; break;
82 case 0x808: pWb35Reg->M08_MulticastAddress2 = RegisterValue; break;
83 case 0x824: pWb35Reg->M24_MacControl = RegisterValue; break;
84 case 0x828: pWb35Reg->M28_MacControl = RegisterValue; break;
85 case 0x82c: pWb35Reg->M2C_MacControl = RegisterValue; break;
86 case 0x838: pWb35Reg->M38_MacControl = RegisterValue; break;
87 case 0x840: pWb35Reg->M40_MacControl = RegisterValue; break;
88 case 0x844: pWb35Reg->M44_MacControl = RegisterValue; break;
89 case 0x848: pWb35Reg->M48_MacControl = RegisterValue; break;
90 case 0x84c: pWb35Reg->M4C_MacStatus = RegisterValue; break;
91 case 0x860: pWb35Reg->M60_MacControl = RegisterValue; break;
92 case 0x868: pWb35Reg->M68_MacControl = RegisterValue; break;
93 case 0x870: pWb35Reg->M70_MacControl = RegisterValue; break;
94 case 0x874: pWb35Reg->M74_MacControl = RegisterValue; break;
95 case 0x878: pWb35Reg->M78_ERPInformation = RegisterValue; break;
96 case 0x87C: pWb35Reg->M7C_MacControl = RegisterValue; break;
97 case 0x880: pWb35Reg->M80_MacControl = RegisterValue; break;
98 case 0x884: pWb35Reg->M84_MacControl = RegisterValue; break;
99 case 0x888: pWb35Reg->M88_MacControl = RegisterValue; break;
100 case 0x898: pWb35Reg->M98_MacControl = RegisterValue; break;
101 case 0x100c: pWb35Reg->BB0C = RegisterValue; break;
102 case 0x102c: pWb35Reg->BB2C = RegisterValue; break;
103 case 0x1030: pWb35Reg->BB30 = RegisterValue; break;
104 case 0x103c: pWb35Reg->BB3C = RegisterValue; break;
105 case 0x1048: pWb35Reg->BB48 = RegisterValue; break;
106 case 0x104c: pWb35Reg->BB4C = RegisterValue; break;
107 case 0x1050: pWb35Reg->BB50 = RegisterValue; break;
108 case 0x1054: pWb35Reg->BB54 = RegisterValue; break;
109 case 0x1058: pWb35Reg->BB58 = RegisterValue; break;
110 case 0x105c: pWb35Reg->BB5C = RegisterValue; break;
111 case 0x1060: pWb35Reg->BB60 = RegisterValue; break;
112 }
113}
114
115// TRUE : read command process successfully
116// FALSE : register not support
117unsigned char
118Wb35Reg_WriteSync( phw_data_t pHwData, u16 RegisterNo, u32 RegisterValue )
119{
120 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
121 int ret = -1;
122
123 // Module shutdown
124 if (pHwData->SurpriseRemove)
125 return FALSE;
126
127 RegisterValue = cpu_to_le32(RegisterValue);
128
129 // update the register by send usb message------------------------------------
130 pWb35Reg->SyncIoPause = 1;
131
132 // 20060717.5 Wait until EP0VM stop
133 while (pWb35Reg->EP0vm_state != VM_STOP)
Pekka Enberg34222e02008-10-22 19:07:03 +0300134 msleep(10);
Pavel Machek66101de2008-10-01 14:36:56 +0200135
136 // Sync IoCallDriver
137 pWb35Reg->EP0vm_state = VM_RUNNING;
138 ret = usb_control_msg( pHwData->WbUsb.udev,
139 usb_sndctrlpipe( pHwData->WbUsb.udev, 0 ),
140 0x03, USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT,
141 0x0,RegisterNo, &RegisterValue, 4, HZ*100 );
142 pWb35Reg->EP0vm_state = VM_STOP;
143 pWb35Reg->SyncIoPause = 0;
144
145 Wb35Reg_EP0VM_start(pHwData);
146
147 if (ret < 0) {
148 #ifdef _PE_REG_DUMP_
149 WBDEBUG(("EP0 Write register usb message sending error\n"));
150 #endif
151
152 pHwData->SurpriseRemove = 1; // 20060704.2
153 return FALSE;
154 }
155
156 return TRUE;
157}
158
159// TRUE : read command process successfully
160// FALSE : register not support
161unsigned char
162Wb35Reg_Write( phw_data_t pHwData, u16 RegisterNo, u32 RegisterValue )
163{
164 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
165 struct usb_ctrlrequest *dr;
166 PURB pUrb = NULL;
167 PREG_QUEUE pRegQueue = NULL;
168 u16 UrbSize;
169
170
171 // Module shutdown
172 if (pHwData->SurpriseRemove)
173 return FALSE;
174
175 // update the register by send urb request------------------------------------
176 UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
177 OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
178 pUrb = wb_usb_alloc_urb(0);
179 if (pUrb && pRegQueue) {
180 pRegQueue->DIRECT = 1;// burst write register
181 pRegQueue->INDEX = RegisterNo;
182 pRegQueue->VALUE = cpu_to_le32(RegisterValue);
183 pRegQueue->RESERVED_VALID = FALSE;
Pekka Enberg8b384e02008-10-21 00:03:41 +0300184 dr = (struct usb_ctrlrequest *)((u8 *)pRegQueue + sizeof(REG_QUEUE));
Pavel Machek66101de2008-10-01 14:36:56 +0200185 dr->bRequestType = USB_TYPE_VENDOR|USB_DIR_OUT |USB_RECIP_DEVICE;
186 dr->bRequest = 0x03; // USB or vendor-defined request code, burst mode
187 dr->wValue = cpu_to_le16(0x0);
188 dr->wIndex = cpu_to_le16(RegisterNo);
189 dr->wLength = cpu_to_le16(4);
190
191 // Enter the sending queue
192 pRegQueue->Next = NULL;
193 pRegQueue->pUsbReq = dr;
194 pRegQueue->pUrb = pUrb;
195
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300196 spin_lock_irq(&pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200197 if (pWb35Reg->pRegFirst == NULL)
198 pWb35Reg->pRegFirst = pRegQueue;
199 else
200 pWb35Reg->pRegLast->Next = pRegQueue;
201 pWb35Reg->pRegLast = pRegQueue;
202
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300203 spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200204
205 // Start EP0VM
206 Wb35Reg_EP0VM_start(pHwData);
207
208 return TRUE;
209 } else {
210 if (pUrb)
211 usb_free_urb(pUrb);
212 kfree(pRegQueue);
213 return FALSE;
214 }
215}
216
217//This command will be executed with a user defined value. When it completes,
218//this value is useful. For example, hal_set_current_channel will use it.
219// TRUE : read command process successfully
220// FALSE : register not support
221unsigned char
222Wb35Reg_WriteWithCallbackValue( phw_data_t pHwData, u16 RegisterNo, u32 RegisterValue,
Pekka Enberg8b384e02008-10-21 00:03:41 +0300223 s8 *pValue, s8 Len)
Pavel Machek66101de2008-10-01 14:36:56 +0200224{
225 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
226 struct usb_ctrlrequest *dr;
227 PURB pUrb = NULL;
228 PREG_QUEUE pRegQueue = NULL;
229 u16 UrbSize;
230
231 // Module shutdown
232 if (pHwData->SurpriseRemove)
233 return FALSE;
234
235 // update the register by send urb request------------------------------------
236 UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
237 OS_MEMORY_ALLOC((void* *) &pRegQueue, UrbSize );
238 pUrb = wb_usb_alloc_urb(0);
239 if (pUrb && pRegQueue) {
240 pRegQueue->DIRECT = 1;// burst write register
241 pRegQueue->INDEX = RegisterNo;
242 pRegQueue->VALUE = cpu_to_le32(RegisterValue);
243 //NOTE : Users must guarantee the size of value will not exceed the buffer size.
244 memcpy(pRegQueue->RESERVED, pValue, Len);
245 pRegQueue->RESERVED_VALID = TRUE;
Pekka Enberg8b384e02008-10-21 00:03:41 +0300246 dr = (struct usb_ctrlrequest *)((u8 *)pRegQueue + sizeof(REG_QUEUE));
Pavel Machek66101de2008-10-01 14:36:56 +0200247 dr->bRequestType = USB_TYPE_VENDOR|USB_DIR_OUT |USB_RECIP_DEVICE;
248 dr->bRequest = 0x03; // USB or vendor-defined request code, burst mode
249 dr->wValue = cpu_to_le16(0x0);
250 dr->wIndex = cpu_to_le16(RegisterNo);
251 dr->wLength = cpu_to_le16(4);
252
253 // Enter the sending queue
254 pRegQueue->Next = NULL;
255 pRegQueue->pUsbReq = dr;
256 pRegQueue->pUrb = pUrb;
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300257 spin_lock_irq (&pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200258 if( pWb35Reg->pRegFirst == NULL )
259 pWb35Reg->pRegFirst = pRegQueue;
260 else
261 pWb35Reg->pRegLast->Next = pRegQueue;
262 pWb35Reg->pRegLast = pRegQueue;
263
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300264 spin_unlock_irq ( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200265
266 // Start EP0VM
267 Wb35Reg_EP0VM_start(pHwData);
268 return TRUE;
269 } else {
270 if (pUrb)
271 usb_free_urb(pUrb);
272 kfree(pRegQueue);
273 return FALSE;
274 }
275}
276
277// TRUE : read command process successfully
278// FALSE : register not support
279// pRegisterValue : It must be a resident buffer due to asynchronous read register.
280unsigned char
Pekka Enberg8b384e02008-10-21 00:03:41 +0300281Wb35Reg_ReadSync( phw_data_t pHwData, u16 RegisterNo, u32 * pRegisterValue )
Pavel Machek66101de2008-10-01 14:36:56 +0200282{
283 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
Pekka Enberg8b384e02008-10-21 00:03:41 +0300284 u32 * pltmp = pRegisterValue;
Pavel Machek66101de2008-10-01 14:36:56 +0200285 int ret = -1;
286
287 // Module shutdown
288 if (pHwData->SurpriseRemove)
289 return FALSE;
290
291 // Read the register by send usb message------------------------------------
292
293 pWb35Reg->SyncIoPause = 1;
294
295 // 20060717.5 Wait until EP0VM stop
296 while (pWb35Reg->EP0vm_state != VM_STOP)
Pekka Enberg34222e02008-10-22 19:07:03 +0300297 msleep(10);
Pavel Machek66101de2008-10-01 14:36:56 +0200298
299 pWb35Reg->EP0vm_state = VM_RUNNING;
300 ret = usb_control_msg( pHwData->WbUsb.udev,
301 usb_rcvctrlpipe(pHwData->WbUsb.udev, 0),
302 0x01, USB_TYPE_VENDOR|USB_RECIP_DEVICE|USB_DIR_IN,
303 0x0, RegisterNo, pltmp, 4, HZ*100 );
304
305 *pRegisterValue = cpu_to_le32(*pltmp);
306
307 pWb35Reg->EP0vm_state = VM_STOP;
308
309 Wb35Reg_Update( pHwData, RegisterNo, *pRegisterValue );
310 pWb35Reg->SyncIoPause = 0;
311
312 Wb35Reg_EP0VM_start( pHwData );
313
314 if (ret < 0) {
315 #ifdef _PE_REG_DUMP_
316 WBDEBUG(("EP0 Read register usb message sending error\n"));
317 #endif
318
319 pHwData->SurpriseRemove = 1; // 20060704.2
320 return FALSE;
321 }
322
323 return TRUE;
324}
325
326// TRUE : read command process successfully
327// FALSE : register not support
328// pRegisterValue : It must be a resident buffer due to asynchronous read register.
329unsigned char
Pekka Enberg8b384e02008-10-21 00:03:41 +0300330Wb35Reg_Read(phw_data_t pHwData, u16 RegisterNo, u32 * pRegisterValue )
Pavel Machek66101de2008-10-01 14:36:56 +0200331{
332 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
333 struct usb_ctrlrequest * dr;
334 PURB pUrb;
335 PREG_QUEUE pRegQueue;
336 u16 UrbSize;
337
338 // Module shutdown
339 if (pHwData->SurpriseRemove)
340 return FALSE;
341
342 // update the variable by send Urb to read register ------------------------------------
343 UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
344 OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
345 pUrb = wb_usb_alloc_urb(0);
346 if( pUrb && pRegQueue )
347 {
348 pRegQueue->DIRECT = 0;// read register
349 pRegQueue->INDEX = RegisterNo;
350 pRegQueue->pBuffer = pRegisterValue;
Pekka Enberg8b384e02008-10-21 00:03:41 +0300351 dr = (struct usb_ctrlrequest *)((u8 *)pRegQueue + sizeof(REG_QUEUE));
Pavel Machek66101de2008-10-01 14:36:56 +0200352 dr->bRequestType = USB_TYPE_VENDOR|USB_RECIP_DEVICE|USB_DIR_IN;
353 dr->bRequest = 0x01; // USB or vendor-defined request code, burst mode
354 dr->wValue = cpu_to_le16(0x0);
355 dr->wIndex = cpu_to_le16 (RegisterNo);
356 dr->wLength = cpu_to_le16 (4);
357
358 // Enter the sending queue
359 pRegQueue->Next = NULL;
360 pRegQueue->pUsbReq = dr;
361 pRegQueue->pUrb = pUrb;
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300362 spin_lock_irq ( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200363 if( pWb35Reg->pRegFirst == NULL )
364 pWb35Reg->pRegFirst = pRegQueue;
365 else
366 pWb35Reg->pRegLast->Next = pRegQueue;
367 pWb35Reg->pRegLast = pRegQueue;
368
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300369 spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200370
371 // Start EP0VM
372 Wb35Reg_EP0VM_start( pHwData );
373
374 return TRUE;
375 } else {
376 if (pUrb)
377 usb_free_urb( pUrb );
378 kfree(pRegQueue);
379 return FALSE;
380 }
381}
382
383
384void
385Wb35Reg_EP0VM_start( phw_data_t pHwData )
386{
387 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
388
389 if (OS_ATOMIC_INC( pHwData->Adapter, &pWb35Reg->RegFireCount) == 1) {
390 pWb35Reg->EP0vm_state = VM_RUNNING;
391 Wb35Reg_EP0VM(pHwData);
392 } else
393 OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Reg->RegFireCount );
394}
395
396void
397Wb35Reg_EP0VM(phw_data_t pHwData )
398{
399 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
400 PURB pUrb;
401 struct usb_ctrlrequest *dr;
Pekka Enberg8b384e02008-10-21 00:03:41 +0300402 u32 * pBuffer;
Pavel Machek66101de2008-10-01 14:36:56 +0200403 int ret = -1;
404 PREG_QUEUE pRegQueue;
405
406
407 if (pWb35Reg->SyncIoPause)
408 goto cleanup;
409
410 if (pHwData->SurpriseRemove)
411 goto cleanup;
412
413 // Get the register data and send to USB through Irp
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300414 spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200415 pRegQueue = pWb35Reg->pRegFirst;
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300416 spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200417
418 if (!pRegQueue)
419 goto cleanup;
420
421 // Get an Urb, send it
422 pUrb = (PURB)pRegQueue->pUrb;
423
424 dr = pRegQueue->pUsbReq;
425 pUrb = pRegQueue->pUrb;
426 pBuffer = pRegQueue->pBuffer;
427 if (pRegQueue->DIRECT == 1) // output
428 pBuffer = &pRegQueue->VALUE;
429
430 usb_fill_control_urb( pUrb, pHwData->WbUsb.udev,
431 REG_DIRECTION(pHwData->WbUsb.udev,pRegQueue),
Pekka Enberg8b384e02008-10-21 00:03:41 +0300432 (u8 *)dr,pBuffer,cpu_to_le16(dr->wLength),
Pavel Machek66101de2008-10-01 14:36:56 +0200433 Wb35Reg_EP0VM_complete, (void*)pHwData);
434
435 pWb35Reg->EP0vm_state = VM_RUNNING;
436
437 ret = wb_usb_submit_urb( pUrb );
438
439 if (ret < 0) {
440#ifdef _PE_REG_DUMP_
441 WBDEBUG(("EP0 Irp sending error\n"));
442#endif
443 goto cleanup;
444 }
445
446 return;
447
448 cleanup:
449 pWb35Reg->EP0vm_state = VM_STOP;
450 OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Reg->RegFireCount );
451}
452
453
454void
455Wb35Reg_EP0VM_complete(PURB pUrb)
456{
457 phw_data_t pHwData = (phw_data_t)pUrb->context;
458 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
459 PREG_QUEUE pRegQueue;
460
461
462 // Variable setting
463 pWb35Reg->EP0vm_state = VM_COMPLETED;
464 pWb35Reg->EP0VM_status = pUrb->status;
465
466 if (pHwData->SurpriseRemove) { // Let WbWlanHalt to handle surprise remove
467 pWb35Reg->EP0vm_state = VM_STOP;
468 OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Reg->RegFireCount );
469 } else {
470 // Complete to send, remove the URB from the first
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300471 spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200472 pRegQueue = pWb35Reg->pRegFirst;
473 if (pRegQueue == pWb35Reg->pRegLast)
474 pWb35Reg->pRegLast = NULL;
475 pWb35Reg->pRegFirst = pWb35Reg->pRegFirst->Next;
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300476 spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200477
478 if (pWb35Reg->EP0VM_status) {
479#ifdef _PE_REG_DUMP_
480 WBDEBUG(("EP0 IoCompleteRoutine return error\n"));
481 DebugUsbdStatusInformation( pWb35Reg->EP0VM_status );
482#endif
483 pWb35Reg->EP0vm_state = VM_STOP;
484 pHwData->SurpriseRemove = 1;
485 } else {
486 // Success. Update the result
487
488 // Start the next send
489 Wb35Reg_EP0VM(pHwData);
490 }
491
492 kfree(pRegQueue);
493 }
494
495 usb_free_urb(pUrb);
496}
497
498
499void
500Wb35Reg_destroy(phw_data_t pHwData)
501{
502 PWB35REG pWb35Reg = &pHwData->Wb35Reg;
503 PURB pUrb;
504 PREG_QUEUE pRegQueue;
505
506
507 Uxx_power_off_procedure(pHwData);
508
509 // Wait for Reg operation completed
510 do {
Pekka Enberg34222e02008-10-22 19:07:03 +0300511 msleep(10); // Delay for waiting function enter 940623.1.a
Pavel Machek66101de2008-10-01 14:36:56 +0200512 } while (pWb35Reg->EP0vm_state != VM_STOP);
Pekka Enberg34222e02008-10-22 19:07:03 +0300513 msleep(10); // Delay for waiting function enter 940623.1.b
Pavel Machek66101de2008-10-01 14:36:56 +0200514
515 // Release all the data in RegQueue
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300516 spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200517 pRegQueue = pWb35Reg->pRegFirst;
518 while (pRegQueue) {
519 if (pRegQueue == pWb35Reg->pRegLast)
520 pWb35Reg->pRegLast = NULL;
521 pWb35Reg->pRegFirst = pWb35Reg->pRegFirst->Next;
522
523 pUrb = pRegQueue->pUrb;
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300524 spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200525 if (pUrb) {
526 usb_free_urb(pUrb);
527 kfree(pRegQueue);
528 } else {
529 #ifdef _PE_REG_DUMP_
530 WBDEBUG(("EP0 queue release error\n"));
531 #endif
532 }
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300533 spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200534
535 pRegQueue = pWb35Reg->pRegFirst;
536 }
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300537 spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200538}
539
540//====================================================================================
541// The function can be run in passive-level only.
542//====================================================================================
543unsigned char Wb35Reg_initial(phw_data_t pHwData)
544{
545 PWB35REG pWb35Reg=&pHwData->Wb35Reg;
546 u32 ltmp;
547 u32 SoftwareSet, VCO_trim, TxVga, Region_ScanInterval;
548
549 // Spin lock is acquired for read and write IRP command
Pekka Enberga1eb2ba2008-10-21 11:45:02 +0300550 spin_lock_init( &pWb35Reg->EP0VM_spin_lock );
Pavel Machek66101de2008-10-01 14:36:56 +0200551
552 // Getting RF module type from EEPROM ------------------------------------
553 Wb35Reg_WriteSync( pHwData, 0x03b4, 0x080d0000 ); // Start EEPROM access + Read + address(0x0d)
554 Wb35Reg_ReadSync( pHwData, 0x03b4, &ltmp );
555
556 //Update RF module type and determine the PHY type by inf or EEPROM
557 pWb35Reg->EEPROMPhyType = (u8)( ltmp & 0xff );
558 // 0 V MAX2825, 1 V MAX2827, 2 V MAX2828, 3 V MAX2829
559 // 16V AL2230, 17 - AL7230, 18 - AL2230S
560 // 32 Reserved
561 // 33 - W89RF242(TxVGA 0~19), 34 - W89RF242(TxVGA 0~34)
562 if (pWb35Reg->EEPROMPhyType != RF_DECIDE_BY_INF) {
563 if( (pWb35Reg->EEPROMPhyType == RF_MAXIM_2825) ||
564 (pWb35Reg->EEPROMPhyType == RF_MAXIM_2827) ||
565 (pWb35Reg->EEPROMPhyType == RF_MAXIM_2828) ||
566 (pWb35Reg->EEPROMPhyType == RF_MAXIM_2829) ||
567 (pWb35Reg->EEPROMPhyType == RF_MAXIM_V1) ||
568 (pWb35Reg->EEPROMPhyType == RF_AIROHA_2230) ||
569 (pWb35Reg->EEPROMPhyType == RF_AIROHA_2230S) ||
570 (pWb35Reg->EEPROMPhyType == RF_AIROHA_7230) ||
571 (pWb35Reg->EEPROMPhyType == RF_WB_242) ||
572 (pWb35Reg->EEPROMPhyType == RF_WB_242_1))
573 pHwData->phy_type = pWb35Reg->EEPROMPhyType;
574 }
575
576 // Power On procedure running. The relative parameter will be set according to phy_type
577 Uxx_power_on_procedure( pHwData );
578
579 // Reading MAC address
580 Uxx_ReadEthernetAddress( pHwData );
581
582 // Read VCO trim for RF parameter
583 Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08200000 );
584 Wb35Reg_ReadSync( pHwData, 0x03b4, &VCO_trim );
585
586 // Read Antenna On/Off of software flag
587 Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08210000 );
588 Wb35Reg_ReadSync( pHwData, 0x03b4, &SoftwareSet );
589
590 // Read TXVGA
591 Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08100000 );
592 Wb35Reg_ReadSync( pHwData, 0x03b4, &TxVga );
593
594 // Get Scan interval setting from EEPROM offset 0x1c
595 Wb35Reg_WriteSync( pHwData, 0x03b4, 0x081d0000 );
596 Wb35Reg_ReadSync( pHwData, 0x03b4, &Region_ScanInterval );
597
598 // Update Ethernet address
599 memcpy( pHwData->CurrentMacAddress, pHwData->PermanentMacAddress, ETH_LENGTH_OF_ADDRESS );
600
601 // Update software variable
602 pHwData->SoftwareSet = (u16)(SoftwareSet & 0xffff);
603 TxVga &= 0x000000ff;
604 pHwData->PowerIndexFromEEPROM = (u8)TxVga;
605 pHwData->VCO_trim = (u8)VCO_trim & 0xff;
606 if (pHwData->VCO_trim == 0xff)
607 pHwData->VCO_trim = 0x28;
608
609 pWb35Reg->EEPROMRegion = (u8)(Region_ScanInterval>>8); // 20060720
610 if( pWb35Reg->EEPROMRegion<1 || pWb35Reg->EEPROMRegion>6 )
611 pWb35Reg->EEPROMRegion = REGION_AUTO;
612
613 //For Get Tx VGA from EEPROM 20060315.5 move here
614 GetTxVgaFromEEPROM( pHwData );
615
616 // Set Scan Interval
617 pHwData->Scan_Interval = (u8)(Region_ScanInterval & 0xff) * 10;
618 if ((pHwData->Scan_Interval == 2550) || (pHwData->Scan_Interval < 10)) // Is default setting 0xff * 10
619 pHwData->Scan_Interval = SCAN_MAX_CHNL_TIME;
620
621 // Initial register
622 RFSynthesizer_initial(pHwData);
623
624 BBProcessor_initial(pHwData); // Async write, must wait until complete
625
626 Wb35Reg_phy_calibration(pHwData);
627
628 Mxx_initial(pHwData);
629 Dxx_initial(pHwData);
630
631 if (pHwData->SurpriseRemove)
632 return FALSE;
633 else
634 return TRUE; // Initial fail
635}
636
637//===================================================================================
638// CardComputeCrc --
639//
640// Description:
641// Runs the AUTODIN II CRC algorithm on buffer Buffer of length, Length.
642//
643// Arguments:
644// Buffer - the input buffer
645// Length - the length of Buffer
646//
647// Return Value:
648// The 32-bit CRC value.
649//
650// Note:
651// This is adapted from the comments in the assembly language
652// version in _GENREQ.ASM of the DWB NE1000/2000 driver.
653//==================================================================================
654u32
Pekka Enberg8b384e02008-10-21 00:03:41 +0300655CardComputeCrc(u8 * Buffer, u32 Length)
Pavel Machek66101de2008-10-01 14:36:56 +0200656{
657 u32 Crc, Carry;
658 u32 i, j;
659 u8 CurByte;
660
661 Crc = 0xffffffff;
662
663 for (i = 0; i < Length; i++) {
664
665 CurByte = Buffer[i];
666
667 for (j = 0; j < 8; j++) {
668
669 Carry = ((Crc & 0x80000000) ? 1 : 0) ^ (CurByte & 0x01);
670 Crc <<= 1;
671 CurByte >>= 1;
672
673 if (Carry) {
674 Crc =(Crc ^ 0x04c11db6) | Carry;
675 }
676 }
677 }
678
679 return Crc;
680}
681
682
683//==================================================================
684// BitReverse --
685// Reverse the bits in the input argument, dwData, which is
686// regarded as a string of bits with the length, DataLength.
687//
688// Arguments:
689// dwData :
690// DataLength :
691//
692// Return:
693// The converted value.
694//==================================================================
695u32 BitReverse( u32 dwData, u32 DataLength)
696{
697 u32 HalfLength, i, j;
698 u32 BitA, BitB;
699
700 if ( DataLength <= 0) return 0; // No conversion is done.
701 dwData = dwData & (0xffffffff >> (32 - DataLength));
702
703 HalfLength = DataLength / 2;
704 for ( i = 0, j = DataLength-1 ; i < HalfLength; i++, j--)
705 {
706 BitA = GetBit( dwData, i);
707 BitB = GetBit( dwData, j);
708 if (BitA && !BitB) {
709 dwData = ClearBit( dwData, i);
710 dwData = SetBit( dwData, j);
711 } else if (!BitA && BitB) {
712 dwData = SetBit( dwData, i);
713 dwData = ClearBit( dwData, j);
714 } else
715 {
716 // Do nothing since these two bits are of the save values.
717 }
718 }
719
720 return dwData;
721}
722
723void Wb35Reg_phy_calibration( phw_data_t pHwData )
724{
725 u32 BB3c, BB54;
726
727 if ((pHwData->phy_type == RF_WB_242) ||
728 (pHwData->phy_type == RF_WB_242_1)) {
729 phy_calibration_winbond ( pHwData, 2412 ); // Sync operation
730 Wb35Reg_ReadSync( pHwData, 0x103c, &BB3c );
731 Wb35Reg_ReadSync( pHwData, 0x1054, &BB54 );
732
733 pHwData->BB3c_cal = BB3c;
734 pHwData->BB54_cal = BB54;
735
736 RFSynthesizer_initial(pHwData);
737 BBProcessor_initial(pHwData); // Async operation
738
739 Wb35Reg_WriteSync( pHwData, 0x103c, BB3c );
740 Wb35Reg_WriteSync( pHwData, 0x1054, BB54 );
741 }
742}
743
744