1 //============================================================================
2 // Copyright (c) 1996-2002 Winbond Electronic Corporation
8 // Processing the Rx message from down layer
10 //============================================================================
11 #include <linux/usb.h>
17 static void packet_came(struct ieee80211_hw
*hw
, char *pRxBufferAddress
, int PacketSize
)
19 struct wbsoft_priv
*priv
= hw
->priv
;
21 struct ieee80211_rx_status rx_status
= {0};
26 skb
= dev_alloc_skb(PacketSize
);
28 printk("Not enough memory for packet, FIXME\n");
32 memcpy(skb_put(skb
, PacketSize
),
38 rx_status.channel = 1;
39 rx_status.freq = 12345;
40 rx_status.phymode = MODE_IEEE80211B;
43 ieee80211_rx_irqsafe(hw
, skb
, &rx_status
);
46 static void Wb35Rx_adjust(PDESCRIPTOR pRxDes
)
48 u32
* pRxBufferAddress
;
53 DecryptionMethod
= pRxDes
->R01
.R01_decryption_method
;
54 pRxBufferAddress
= pRxDes
->buffer_address
[0];
55 BufferSize
= pRxDes
->buffer_size
[0];
57 // Adjust the last part of data. Only data left
58 BufferSize
-= 4; // For CRC-32
61 if (DecryptionMethod
== 3) // For CCMP
64 // Adjust the IV field which after 802.11 header and ICV field.
65 if (DecryptionMethod
== 1) // For WEP
68 pRxBufferAddress
[i
] = pRxBufferAddress
[i
-1];
69 pRxDes
->buffer_address
[0] = pRxBufferAddress
+ 1;
70 BufferSize
-= 4; // 4 byte for IV
72 else if( DecryptionMethod
) // For TKIP and CCMP
75 pRxBufferAddress
[i
] = pRxBufferAddress
[i
-2];
76 pRxDes
->buffer_address
[0] = pRxBufferAddress
+ 2;//Update the descriptor, shift 8 byte
77 BufferSize
-= 8; // 8 byte for IV + ICV
79 pRxDes
->buffer_size
[0] = BufferSize
;
82 static u16
Wb35Rx_indicate(struct ieee80211_hw
*hw
)
84 struct wbsoft_priv
*priv
= hw
->priv
;
85 struct hw_data
* pHwData
= &priv
->sHwData
;
87 struct wb35_rx
*pWb35Rx
= &pHwData
->Wb35Rx
;
88 u8
* pRxBufferAddress
;
90 u16 stmp
, BufferSize
, stmp2
= 0;
93 // Only one thread be allowed to run into the following
95 RxBufferId
= pWb35Rx
->RxProcessIndex
;
96 if (pWb35Rx
->RxOwner
[ RxBufferId
]) //Owner by VM
99 pWb35Rx
->RxProcessIndex
++;
100 pWb35Rx
->RxProcessIndex
%= MAX_USB_RX_BUFFER_NUMBER
;
102 pRxBufferAddress
= pWb35Rx
->pDRx
;
103 BufferSize
= pWb35Rx
->RxBufferSize
[ RxBufferId
];
105 // Parse the bulkin buffer
106 while (BufferSize
>= 4) {
107 if ((cpu_to_le32(*(u32
*)pRxBufferAddress
) & 0x0fffffff) == RX_END_TAG
) //Is ending? 921002.9.a
110 // Get the R00 R01 first
111 RxDes
.R00
.value
= le32_to_cpu(*(u32
*)pRxBufferAddress
);
112 PacketSize
= (u16
)RxDes
.R00
.R00_receive_byte_count
;
113 RxDes
.R01
.value
= le32_to_cpu(*((u32
*)(pRxBufferAddress
+4)));
115 if ((PacketSize
& 0x03) > 0)
118 // Basic check for Rx length. Is length valid?
119 if (PacketSize
> MAX_PACKET_SIZE
) {
121 printk("Serious ERROR : Rx data size too long, size =%d\n", PacketSize
);
124 pWb35Rx
->EP3vm_state
= VM_STOP
;
125 pWb35Rx
->Ep3ErrorCount2
++;
129 // Start to process Rx buffer
130 // RxDes.Descriptor_ID = RxBufferId; // Due to synchronous indicate, the field doesn't necessary to use.
131 BufferSize
-= 8; //subtract 8 byte for 35's USB header length
132 pRxBufferAddress
+= 8;
134 RxDes
.buffer_address
[0] = pRxBufferAddress
;
135 RxDes
.buffer_size
[0] = PacketSize
;
136 RxDes
.buffer_number
= 1;
137 RxDes
.buffer_start_index
= 0;
138 RxDes
.buffer_total_size
= RxDes
.buffer_size
[0];
139 Wb35Rx_adjust(&RxDes
);
141 packet_came(hw
, pRxBufferAddress
, PacketSize
);
143 // Move RxBuffer point to the next
144 stmp
= PacketSize
+ 3;
145 stmp
&= ~0x03; // 4n alignment
146 pRxBufferAddress
+= stmp
;
152 pWb35Rx
->RxOwner
[ RxBufferId
] = 1;
158 static void Wb35Rx(struct ieee80211_hw
*hw
);
160 static void Wb35Rx_Complete(struct urb
*urb
)
162 struct ieee80211_hw
*hw
= urb
->context
;
163 struct wbsoft_priv
*priv
= hw
->priv
;
164 struct hw_data
* pHwData
= &priv
->sHwData
;
165 struct wb35_rx
*pWb35Rx
= &pHwData
->Wb35Rx
;
166 u8
* pRxBufferAddress
;
173 pWb35Rx
->EP3vm_state
= VM_COMPLETED
;
174 pWb35Rx
->EP3VM_status
= urb
->status
;//Store the last result of Irp
176 RxBufferId
= pWb35Rx
->CurrentRxBufferId
;
178 pRxBufferAddress
= pWb35Rx
->pDRx
;
179 BulkLength
= (u16
)urb
->actual_length
;
181 // The IRP is completed
182 pWb35Rx
->EP3vm_state
= VM_COMPLETED
;
184 if (pHwData
->SurpriseRemove
|| pHwData
->HwStop
) // Must be here, or RxBufferId is invalid
187 if (pWb35Rx
->rx_halt
)
190 // Start to process the data only in successful condition
191 pWb35Rx
->RxOwner
[ RxBufferId
] = 0; // Set the owner to driver
192 R00
.value
= le32_to_cpu(*(u32
*)pRxBufferAddress
);
194 // The URB is completed, check the result
195 if (pWb35Rx
->EP3VM_status
!= 0) {
196 #ifdef _PE_USB_STATE_DUMP_
197 printk("EP3 IoCompleteRoutine return error\n");
199 pWb35Rx
->EP3vm_state
= VM_STOP
;
203 // 20060220 For recovering. check if operating in single USB mode
204 if (!HAL_USB_MODE_BURST(pHwData
)) {
205 SizeCheck
= R00
.R00_receive_byte_count
; //20060926 anson's endian
206 if ((SizeCheck
& 0x03) > 0)
208 SizeCheck
= (SizeCheck
+ 3) & ~0x03;
209 SizeCheck
+= 12; // 8 + 4 badbeef
210 if ((BulkLength
> 1600) ||
211 (SizeCheck
> 1600) ||
212 (BulkLength
!= SizeCheck
) ||
213 (BulkLength
== 0)) { // Add for fail Urb
214 pWb35Rx
->EP3vm_state
= VM_STOP
;
215 pWb35Rx
->Ep3ErrorCount2
++;
219 // Indicating the receiving data
220 pWb35Rx
->ByteReceived
+= BulkLength
;
221 pWb35Rx
->RxBufferSize
[ RxBufferId
] = BulkLength
;
223 if (!pWb35Rx
->RxOwner
[ RxBufferId
])
226 kfree(pWb35Rx
->pDRx
);
227 // Do the next receive
232 pWb35Rx
->RxOwner
[ RxBufferId
] = 1; // Set the owner to hardware
233 atomic_dec(&pWb35Rx
->RxFireCounter
);
234 pWb35Rx
->EP3vm_state
= VM_STOP
;
237 // This function cannot reentrain
238 static void Wb35Rx(struct ieee80211_hw
*hw
)
240 struct wbsoft_priv
*priv
= hw
->priv
;
241 struct hw_data
* pHwData
= &priv
->sHwData
;
242 struct wb35_rx
*pWb35Rx
= &pHwData
->Wb35Rx
;
243 u8
* pRxBufferAddress
;
244 struct urb
*urb
= pWb35Rx
->RxUrb
;
251 if (pHwData
->SurpriseRemove
|| pHwData
->HwStop
)
254 if (pWb35Rx
->rx_halt
)
258 RxBufferId
= pWb35Rx
->RxBufferId
;
259 if (!pWb35Rx
->RxOwner
[RxBufferId
]) {
260 // It's impossible to run here.
262 printk("Rx driver fifo unavailable\n");
267 // Update buffer point, then start to bulkin the data from USB
268 pWb35Rx
->RxBufferId
++;
269 pWb35Rx
->RxBufferId
%= MAX_USB_RX_BUFFER_NUMBER
;
271 pWb35Rx
->CurrentRxBufferId
= RxBufferId
;
273 pWb35Rx
->pDRx
= kzalloc(MAX_USB_RX_BUFFER
, GFP_ATOMIC
);
274 if (!pWb35Rx
->pDRx
) {
275 printk("w35und: Rx memory alloc failed\n");
278 pRxBufferAddress
= pWb35Rx
->pDRx
;
280 usb_fill_bulk_urb(urb
, pHwData
->WbUsb
.udev
,
281 usb_rcvbulkpipe(pHwData
->WbUsb
.udev
, 3),
282 pRxBufferAddress
, MAX_USB_RX_BUFFER
,
283 Wb35Rx_Complete
, hw
);
285 pWb35Rx
->EP3vm_state
= VM_RUNNING
;
287 retv
= usb_submit_urb(urb
, GFP_ATOMIC
);
290 printk("Rx URB sending error\n");
297 pWb35Rx
->EP3vm_state
= VM_STOP
;
298 atomic_dec(&pWb35Rx
->RxFireCounter
);
301 void Wb35Rx_start(struct ieee80211_hw
*hw
)
303 struct wbsoft_priv
*priv
= hw
->priv
;
304 struct hw_data
* pHwData
= &priv
->sHwData
;
305 struct wb35_rx
*pWb35Rx
= &pHwData
->Wb35Rx
;
307 // Allow only one thread to run into the Wb35Rx() function
308 if (atomic_inc_return(&pWb35Rx
->RxFireCounter
) == 1) {
309 pWb35Rx
->EP3vm_state
= VM_RUNNING
;
312 atomic_dec(&pWb35Rx
->RxFireCounter
);
315 //=====================================================================================
316 static void Wb35Rx_reset_descriptor( struct hw_data
* pHwData
)
318 struct wb35_rx
*pWb35Rx
= &pHwData
->Wb35Rx
;
321 pWb35Rx
->ByteReceived
= 0;
322 pWb35Rx
->RxProcessIndex
= 0;
323 pWb35Rx
->RxBufferId
= 0;
324 pWb35Rx
->EP3vm_state
= VM_STOP
;
325 pWb35Rx
->rx_halt
= 0;
327 // Initial the Queue. The last buffer is reserved for used if the Rx resource is unavailable.
328 for( i
=0; i
<MAX_USB_RX_BUFFER_NUMBER
; i
++ )
329 pWb35Rx
->RxOwner
[i
] = 1;
332 unsigned char Wb35Rx_initial(struct hw_data
* pHwData
)
334 struct wb35_rx
*pWb35Rx
= &pHwData
->Wb35Rx
;
336 // Initial the Buffer Queue
337 Wb35Rx_reset_descriptor( pHwData
);
339 pWb35Rx
->RxUrb
= usb_alloc_urb(0, GFP_ATOMIC
);
340 return (!!pWb35Rx
->RxUrb
);
343 void Wb35Rx_stop(struct hw_data
* pHwData
)
345 struct wb35_rx
*pWb35Rx
= &pHwData
->Wb35Rx
;
347 // Canceling the Irp if already sends it out.
348 if (pWb35Rx
->EP3vm_state
== VM_RUNNING
) {
349 usb_unlink_urb( pWb35Rx
->RxUrb
); // Only use unlink, let Wb35Rx_destroy to free them
351 printk("EP3 Rx stop\n");
356 // Needs process context
357 void Wb35Rx_destroy(struct hw_data
* pHwData
)
359 struct wb35_rx
*pWb35Rx
= &pHwData
->Wb35Rx
;
362 msleep(10); // Delay for waiting function enter 940623.1.a
363 } while (pWb35Rx
->EP3vm_state
!= VM_STOP
);
364 msleep(10); // Delay for waiting function exit 940623.1.b
367 usb_free_urb( pWb35Rx
->RxUrb
);
369 printk("Wb35Rx_destroy OK\n");