{
        PWB35REG pWb35Reg = &pHwData->Wb35Reg;
        struct urb      *urb = NULL;
-       PREG_QUEUE      pRegQueue = NULL;
+       struct wb35_reg_queue *reg_queue = NULL;
        u16             UrbSize;
        struct      usb_ctrlrequest *dr;
        u16             i, DataSize = NumberOfData*4;
                return FALSE;
 
        // Trying to use burst write function if use new hardware
-       UrbSize = sizeof(REG_QUEUE) + DataSize + sizeof(struct usb_ctrlrequest);
-       OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
+       UrbSize = sizeof(struct wb35_reg_queue) + DataSize + sizeof(struct usb_ctrlrequest);
+       OS_MEMORY_ALLOC( (void* *)®_queue, UrbSize );
        urb = wb_usb_alloc_urb(0);
-       if( urb && pRegQueue ) {
-               pRegQueue->DIRECT = 2;// burst write register
-               pRegQueue->INDEX = RegisterNo;
-               pRegQueue->pBuffer = (u32 *)((u8 *)pRegQueue + sizeof(REG_QUEUE));
-               memcpy( pRegQueue->pBuffer, pRegisterData, DataSize );
+       if( urb && reg_queue ) {
+               reg_queue->DIRECT = 2;// burst write register
+               reg_queue->INDEX = RegisterNo;
+               reg_queue->pBuffer = (u32 *)((u8 *)reg_queue + sizeof(struct wb35_reg_queue));
+               memcpy( reg_queue->pBuffer, pRegisterData, DataSize );
                //the function for reversing register data from little endian to big endian
                for( i=0; i<NumberOfData ; i++ )
-                       pRegQueue->pBuffer[i] = cpu_to_le32( pRegQueue->pBuffer[i] );
+                       reg_queue->pBuffer[i] = cpu_to_le32( reg_queue->pBuffer[i] );
 
-               dr = (struct usb_ctrlrequest *)((u8 *)pRegQueue + sizeof(REG_QUEUE) + DataSize);
+               dr = (struct usb_ctrlrequest *)((u8 *)reg_queue + sizeof(struct wb35_reg_queue) + DataSize);
                dr->bRequestType = USB_TYPE_VENDOR | USB_DIR_OUT | USB_RECIP_DEVICE;
                dr->bRequest = 0x04; // USB or vendor-defined request code, burst mode
                dr->wValue = cpu_to_le16( Flag ); // 0: Register number auto-increment, 1: No auto increment
                dr->wIndex = cpu_to_le16( RegisterNo );
                dr->wLength = cpu_to_le16( DataSize );
-               pRegQueue->Next = NULL;
-               pRegQueue->pUsbReq = dr;
-               pRegQueue->urb = urb;
+               reg_queue->Next = NULL;
+               reg_queue->pUsbReq = dr;
+               reg_queue->urb = urb;
 
                spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
-               if (pWb35Reg->pRegFirst == NULL)
-                       pWb35Reg->pRegFirst = pRegQueue;
+               if (pWb35Reg->reg_first == NULL)
+                       pWb35Reg->reg_first = reg_queue;
                else
-                       pWb35Reg->pRegLast->Next = pRegQueue;
-               pWb35Reg->pRegLast = pRegQueue;
+                       pWb35Reg->reg_last->Next = reg_queue;
+               pWb35Reg->reg_last = reg_queue;
 
                spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
 
        } else {
                if (urb)
                        usb_free_urb(urb);
-               if (pRegQueue)
-                       kfree(pRegQueue);
+               if (reg_queue)
+                       kfree(reg_queue);
                return FALSE;
        }
    return FALSE;
        PWB35REG        pWb35Reg = &pHwData->Wb35Reg;
        struct usb_ctrlrequest *dr;
        struct urb      *urb = NULL;
-       PREG_QUEUE      pRegQueue = NULL;
+       struct wb35_reg_queue *reg_queue = NULL;
        u16             UrbSize;
 
 
                return FALSE;
 
        // update the register by send urb request------------------------------------
-       UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
-       OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
+       UrbSize = sizeof(struct wb35_reg_queue) + sizeof(struct usb_ctrlrequest);
+       OS_MEMORY_ALLOC( (void* *)®_queue, UrbSize );
        urb = wb_usb_alloc_urb(0);
-       if (urb && pRegQueue) {
-               pRegQueue->DIRECT = 1;// burst write register
-               pRegQueue->INDEX = RegisterNo;
-               pRegQueue->VALUE = cpu_to_le32(RegisterValue);
-               pRegQueue->RESERVED_VALID = FALSE;
-               dr = (struct usb_ctrlrequest *)((u8 *)pRegQueue + sizeof(REG_QUEUE));
+       if (urb && reg_queue) {
+               reg_queue->DIRECT = 1;// burst write register
+               reg_queue->INDEX = RegisterNo;
+               reg_queue->VALUE = cpu_to_le32(RegisterValue);
+               reg_queue->RESERVED_VALID = FALSE;
+               dr = (struct usb_ctrlrequest *)((u8 *)reg_queue + sizeof(struct wb35_reg_queue));
                dr->bRequestType = USB_TYPE_VENDOR|USB_DIR_OUT |USB_RECIP_DEVICE;
                dr->bRequest = 0x03; // USB or vendor-defined request code, burst mode
                dr->wValue = cpu_to_le16(0x0);
                dr->wLength = cpu_to_le16(4);
 
                // Enter the sending queue
-               pRegQueue->Next = NULL;
-               pRegQueue->pUsbReq = dr;
-               pRegQueue->urb = urb;
+               reg_queue->Next = NULL;
+               reg_queue->pUsbReq = dr;
+               reg_queue->urb = urb;
 
                spin_lock_irq(&pWb35Reg->EP0VM_spin_lock );
-               if (pWb35Reg->pRegFirst == NULL)
-                       pWb35Reg->pRegFirst = pRegQueue;
+               if (pWb35Reg->reg_first == NULL)
+                       pWb35Reg->reg_first = reg_queue;
                else
-                       pWb35Reg->pRegLast->Next = pRegQueue;
-               pWb35Reg->pRegLast = pRegQueue;
+                       pWb35Reg->reg_last->Next = reg_queue;
+               pWb35Reg->reg_last = reg_queue;
 
                spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
 
        } else {
                if (urb)
                        usb_free_urb(urb);
-               kfree(pRegQueue);
+               kfree(reg_queue);
                return FALSE;
        }
 }
        PWB35REG        pWb35Reg = &pHwData->Wb35Reg;
        struct usb_ctrlrequest *dr;
        struct urb      *urb = NULL;
-       PREG_QUEUE      pRegQueue = NULL;
+       struct wb35_reg_queue *reg_queue = NULL;
        u16             UrbSize;
 
        // Module shutdown
                return FALSE;
 
        // update the register by send urb request------------------------------------
-       UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
-       OS_MEMORY_ALLOC((void* *) &pRegQueue, UrbSize );
+       UrbSize = sizeof(struct wb35_reg_queue) + sizeof(struct usb_ctrlrequest);
+       OS_MEMORY_ALLOC((void* *) ®_queue, UrbSize );
        urb = wb_usb_alloc_urb(0);
-       if (urb && pRegQueue) {
-               pRegQueue->DIRECT = 1;// burst write register
-               pRegQueue->INDEX = RegisterNo;
-               pRegQueue->VALUE = cpu_to_le32(RegisterValue);
+       if (urb && reg_queue) {
+               reg_queue->DIRECT = 1;// burst write register
+               reg_queue->INDEX = RegisterNo;
+               reg_queue->VALUE = cpu_to_le32(RegisterValue);
                //NOTE : Users must guarantee the size of value will not exceed the buffer size.
-               memcpy(pRegQueue->RESERVED, pValue, Len);
-               pRegQueue->RESERVED_VALID = TRUE;
-               dr = (struct usb_ctrlrequest *)((u8 *)pRegQueue + sizeof(REG_QUEUE));
+               memcpy(reg_queue->RESERVED, pValue, Len);
+               reg_queue->RESERVED_VALID = TRUE;
+               dr = (struct usb_ctrlrequest *)((u8 *)reg_queue + sizeof(struct wb35_reg_queue));
                dr->bRequestType = USB_TYPE_VENDOR|USB_DIR_OUT |USB_RECIP_DEVICE;
                dr->bRequest = 0x03; // USB or vendor-defined request code, burst mode
                dr->wValue = cpu_to_le16(0x0);
                dr->wLength = cpu_to_le16(4);
 
                // Enter the sending queue
-               pRegQueue->Next = NULL;
-               pRegQueue->pUsbReq = dr;
-               pRegQueue->urb = urb;
+               reg_queue->Next = NULL;
+               reg_queue->pUsbReq = dr;
+               reg_queue->urb = urb;
                spin_lock_irq (&pWb35Reg->EP0VM_spin_lock );
-               if( pWb35Reg->pRegFirst == NULL )
-                       pWb35Reg->pRegFirst = pRegQueue;
+               if( pWb35Reg->reg_first == NULL )
+                       pWb35Reg->reg_first = reg_queue;
                else
-                       pWb35Reg->pRegLast->Next = pRegQueue;
-               pWb35Reg->pRegLast = pRegQueue;
+                       pWb35Reg->reg_last->Next = reg_queue;
+               pWb35Reg->reg_last = reg_queue;
 
                spin_unlock_irq ( &pWb35Reg->EP0VM_spin_lock );
 
        } else {
                if (urb)
                        usb_free_urb(urb);
-               kfree(pRegQueue);
+               kfree(reg_queue);
                return FALSE;
        }
 }
        PWB35REG        pWb35Reg = &pHwData->Wb35Reg;
        struct usb_ctrlrequest * dr;
        struct urb      *urb;
-       PREG_QUEUE      pRegQueue;
+       struct wb35_reg_queue *reg_queue;
        u16             UrbSize;
 
        // Module shutdown
                return FALSE;
 
        // update the variable by send Urb to read register ------------------------------------
-       UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
-       OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
+       UrbSize = sizeof(struct wb35_reg_queue) + sizeof(struct usb_ctrlrequest);
+       OS_MEMORY_ALLOC( (void* *)®_queue, UrbSize );
        urb = wb_usb_alloc_urb(0);
-       if( urb && pRegQueue )
+       if( urb && reg_queue )
        {
-               pRegQueue->DIRECT = 0;// read register
-               pRegQueue->INDEX = RegisterNo;
-               pRegQueue->pBuffer = pRegisterValue;
-               dr = (struct usb_ctrlrequest *)((u8 *)pRegQueue + sizeof(REG_QUEUE));
+               reg_queue->DIRECT = 0;// read register
+               reg_queue->INDEX = RegisterNo;
+               reg_queue->pBuffer = pRegisterValue;
+               dr = (struct usb_ctrlrequest *)((u8 *)reg_queue + sizeof(struct wb35_reg_queue));
                dr->bRequestType = USB_TYPE_VENDOR|USB_RECIP_DEVICE|USB_DIR_IN;
                dr->bRequest = 0x01; // USB or vendor-defined request code, burst mode
                dr->wValue = cpu_to_le16(0x0);
                dr->wLength = cpu_to_le16 (4);
 
                // Enter the sending queue
-               pRegQueue->Next = NULL;
-               pRegQueue->pUsbReq = dr;
-               pRegQueue->urb = urb;
+               reg_queue->Next = NULL;
+               reg_queue->pUsbReq = dr;
+               reg_queue->urb = urb;
                spin_lock_irq ( &pWb35Reg->EP0VM_spin_lock );
-               if( pWb35Reg->pRegFirst == NULL )
-                       pWb35Reg->pRegFirst = pRegQueue;
+               if( pWb35Reg->reg_first == NULL )
+                       pWb35Reg->reg_first = reg_queue;
                else
-                       pWb35Reg->pRegLast->Next = pRegQueue;
-               pWb35Reg->pRegLast = pRegQueue;
+                       pWb35Reg->reg_last->Next = reg_queue;
+               pWb35Reg->reg_last = reg_queue;
 
                spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
 
        } else {
                if (urb)
                        usb_free_urb( urb );
-               kfree(pRegQueue);
+               kfree(reg_queue);
                return FALSE;
        }
 }
        struct usb_ctrlrequest *dr;
        u32 *           pBuffer;
        int                     ret = -1;
-       PREG_QUEUE      pRegQueue;
+       struct wb35_reg_queue *reg_queue;
 
 
        if (pWb35Reg->SyncIoPause)
 
        // Get the register data and send to USB through Irp
        spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
-       pRegQueue = pWb35Reg->pRegFirst;
+       reg_queue = pWb35Reg->reg_first;
        spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
 
-       if (!pRegQueue)
+       if (!reg_queue)
                goto cleanup;
 
        // Get an Urb, send it
-       urb = (struct urb *)pRegQueue->urb;
+       urb = (struct urb *)reg_queue->urb;
 
-       dr = pRegQueue->pUsbReq;
-       urb = pRegQueue->urb;
-       pBuffer = pRegQueue->pBuffer;
-       if (pRegQueue->DIRECT == 1) // output
-               pBuffer = &pRegQueue->VALUE;
+       dr = reg_queue->pUsbReq;
+       urb = reg_queue->urb;
+       pBuffer = reg_queue->pBuffer;
+       if (reg_queue->DIRECT == 1) // output
+               pBuffer = ®_queue->VALUE;
 
        usb_fill_control_urb( urb, pHwData->WbUsb.udev,
-                             REG_DIRECTION(pHwData->WbUsb.udev,pRegQueue),
+                             REG_DIRECTION(pHwData->WbUsb.udev,reg_queue),
                              (u8 *)dr,pBuffer,cpu_to_le16(dr->wLength),
                              Wb35Reg_EP0VM_complete, (void*)pHwData);
 
 {
        phw_data_t  pHwData = (phw_data_t)urb->context;
        PWB35REG        pWb35Reg = &pHwData->Wb35Reg;
-       PREG_QUEUE      pRegQueue;
+       struct wb35_reg_queue *reg_queue;
 
 
        // Variable setting
        } else {
                // Complete to send, remove the URB from the first
                spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
-               pRegQueue = pWb35Reg->pRegFirst;
-               if (pRegQueue == pWb35Reg->pRegLast)
-                       pWb35Reg->pRegLast = NULL;
-               pWb35Reg->pRegFirst = pWb35Reg->pRegFirst->Next;
+               reg_queue = pWb35Reg->reg_first;
+               if (reg_queue == pWb35Reg->reg_last)
+                       pWb35Reg->reg_last = NULL;
+               pWb35Reg->reg_first = pWb35Reg->reg_first->Next;
                spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
 
                if (pWb35Reg->EP0VM_status) {
                        Wb35Reg_EP0VM(pHwData);
                }
 
-               kfree(pRegQueue);
+               kfree(reg_queue);
        }
 
        usb_free_urb(urb);
 {
        PWB35REG        pWb35Reg = &pHwData->Wb35Reg;
        struct urb      *urb;
-       PREG_QUEUE      pRegQueue;
+       struct wb35_reg_queue *reg_queue;
 
 
        Uxx_power_off_procedure(pHwData);
 
        // Release all the data in RegQueue
        spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
-       pRegQueue = pWb35Reg->pRegFirst;
-       while (pRegQueue) {
-               if (pRegQueue == pWb35Reg->pRegLast)
-                       pWb35Reg->pRegLast = NULL;
-               pWb35Reg->pRegFirst = pWb35Reg->pRegFirst->Next;
+       reg_queue = pWb35Reg->reg_first;
+       while (reg_queue) {
+               if (reg_queue == pWb35Reg->reg_last)
+                       pWb35Reg->reg_last = NULL;
+               pWb35Reg->reg_first = pWb35Reg->reg_first->Next;
 
-               urb = pRegQueue->urb;
+               urb = reg_queue->urb;
                spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
                if (urb) {
                        usb_free_urb(urb);
-                       kfree(pRegQueue);
+                       kfree(reg_queue);
                } else {
                        #ifdef _PE_REG_DUMP_
                        WBDEBUG(("EP0 queue release error\n"));
                }
                spin_lock_irq( &pWb35Reg->EP0VM_spin_lock );
 
-               pRegQueue = pWb35Reg->pRegFirst;
+               reg_queue = pWb35Reg->reg_first;
        }
        spin_unlock_irq( &pWb35Reg->EP0VM_spin_lock );
 }