static inline void
 claw_set_busy(struct net_device *dev)
 {
- ((struct claw_privbk *) dev->priv)->tbusy=1;
+ ((struct claw_privbk *)dev->ml_priv)->tbusy = 1;
  eieio();
 }
 
 static inline void
 claw_clear_busy(struct net_device *dev)
 {
-       clear_bit(0, &(((struct claw_privbk *) dev->priv)->tbusy));
+       clear_bit(0, &(((struct claw_privbk *) dev->ml_priv)->tbusy));
        netif_wake_queue(dev);
        eieio();
 }
 claw_check_busy(struct net_device *dev)
 {
        eieio();
-       return ((struct claw_privbk *) dev->priv)->tbusy;
+       return ((struct claw_privbk *) dev->ml_priv)->tbusy;
 }
 
 static inline void
 claw_setbit_busy(int nr,struct net_device *dev)
 {
        netif_stop_queue(dev);
-       set_bit(nr, (void *)&(((struct claw_privbk *)dev->priv)->tbusy));
+       set_bit(nr, (void *)&(((struct claw_privbk *)dev->ml_priv)->tbusy));
 }
 
 static inline void
 claw_clearbit_busy(int nr,struct net_device *dev)
 {
-       clear_bit(nr,(void *)&(((struct claw_privbk *)dev->priv)->tbusy));
+       clear_bit(nr, (void *)&(((struct claw_privbk *)dev->ml_priv)->tbusy));
        netif_wake_queue(dev);
 }
 
 {
        netif_stop_queue(dev);
        return test_and_set_bit(nr,
-               (void *)&(((struct claw_privbk *) dev->priv)->tbusy));
+               (void *)&(((struct claw_privbk *) dev->ml_priv)->tbusy));
 }
 
 
 claw_tx(struct sk_buff *skb, struct net_device *dev)
 {
         int             rc;
-        struct claw_privbk *privptr=dev->priv;
+       struct claw_privbk *privptr = dev->ml_priv;
        unsigned long saveflags;
         struct chbk *p_ch;
 
 static int
 claw_change_mtu(struct net_device *dev, int new_mtu)
 {
-       struct claw_privbk  *privptr=dev->priv;
+       struct claw_privbk *privptr = dev->ml_priv;
        int buff_size;
        CLAW_DBF_TEXT(4, trace, "setmtu");
        buff_size = privptr->p_env->write_size;
         struct ccwbk *p_buf;
 
        CLAW_DBF_TEXT(4, trace, "open");
-       privptr = (struct claw_privbk *)dev->priv;
+       privptr = (struct claw_privbk *)dev->ml_priv;
         /*   allocate and initialize CCW blocks */
        if (privptr->buffs_alloc == 0) {
                rc=init_ccw_bk(dev);
        p_ch = (struct chbk *) data;
         dev = (struct net_device *)p_ch->ndev;
        CLAW_DBF_TEXT(4, trace, "IRQtask");
-        privptr = (struct claw_privbk *) dev->priv;
+       privptr = (struct claw_privbk *)dev->ml_priv;
         unpack_read(dev);
         clear_bit(CLAW_BH_ACTIVE, (void *)&p_ch->flag_a);
        CLAW_DBF_TEXT(4, trace, "TskletXt");
 
        if (!dev)
                 return 0;
-        privptr = (struct claw_privbk *) dev->priv;
+       privptr = (struct claw_privbk *)dev->ml_priv;
         if (!privptr)
                 return 0;
        CLAW_DBF_TEXT(4, trace, "release");
         if (p_ch->claw_state == CLAW_STOP)
                 return;
         dev = (struct net_device *) p_ch->ndev;
-       privptr = (struct claw_privbk *) dev->priv;
+       privptr = (struct claw_privbk *) dev->ml_priv;
         claw_free_wrt_buf( dev );
        if ((privptr->write_free_count > 0) &&
            !skb_queue_empty(&p_ch->collect_queue)) {
         struct ccw1  temp_ccw;
         struct endccw * p_end;
        CLAW_DBF_TEXT(4, trace, "addreads");
-        privptr = dev->priv;
+       privptr = dev->ml_priv;
         p_end = privptr->p_end_ccw;
 
         /* first CCW and last CCW contains a new set of read channel programs
        int    rc=0;
 
        CLAW_DBF_TEXT(2, setup, "findlink");
-        privptr=dev->priv;
+       privptr = dev->ml_priv;
         p_env=privptr->p_env;
        switch (p_env->packing)
        {
        struct chbk                     *ch;
 
        CLAW_DBF_TEXT(4, trace, "hw_tx");
-        privptr = (struct claw_privbk *) (dev->priv);
+       privptr = (struct claw_privbk *)(dev->ml_priv);
         p_ch=(struct chbk *)&privptr->channel[WRITE];
        p_env =privptr->p_env;
        claw_free_wrt_buf(dev); /* Clean up free chain if posible */
        struct ccwbk*p_last_CCWB;
        struct ccwbk*p_first_CCWB;
         struct endccw *p_endccw=NULL;
-        addr_t  real_address;
-        struct claw_privbk *privptr=dev->priv;
+       addr_t  real_address;
+       struct claw_privbk *privptr = dev->ml_priv;
         struct clawh *pClawH=NULL;
         addr_t   real_TIC_address;
         int i,j;
        CLAW_DBF_TEXT(2, setup, "clw_cntl");
         udelay(1000);  /* Wait a ms for the control packets to
                        *catch up to each other */
-        privptr=dev->priv;
+       privptr = dev->ml_priv;
         p_env=privptr->p_env;
        tdev = &privptr->channel[READ].cdev->dev;
        memcpy( &temp_host_name, p_env->host_name, 8);
         struct sk_buff                         *skb;
 
        CLAW_DBF_TEXT(2, setup, "sndcntl");
-        privptr=dev->priv;
+       privptr = dev->ml_priv;
         p_ctl=(struct clawctl *)&privptr->ctl_bk;
 
         p_ctl->command=type;
 claw_snd_conn_req(struct net_device *dev, __u8 link)
 {
         int                rc;
-        struct claw_privbk *privptr=dev->priv;
+       struct claw_privbk *privptr = dev->ml_priv;
         struct clawctl            *p_ctl;
 
        CLAW_DBF_TEXT(2, setup, "snd_conn");
         int    rc;
 
        CLAW_DBF_TEXT(2, setup, "chkresp");
-        privptr = dev->priv;
+       privptr = dev->ml_priv;
         p_env=privptr->p_env;
         rc=claw_send_control(dev, SYSTEM_VALIDATE_RESPONSE,
                p_ctl->linkid,
         struct claw_privbk *privptr;
 
        CLAW_DBF_TEXT(4, trace, "stats");
-        privptr = dev->priv;
+       privptr = dev->ml_priv;
         return &privptr->stats;
 }     /*   end of claw_stats   */
 
         p_last_ccw=NULL;
        p_packh=NULL;
        p_packd=NULL;
-        privptr=dev->priv;
+       privptr = dev->ml_priv;
 
        p_dev = &privptr->channel[READ].cdev->dev;
        p_env = privptr->p_env;
         int        rc = 0;
         __u32      parm;
         unsigned long  saveflags = 0;
-        struct claw_privbk *privptr=dev->priv;
+       struct claw_privbk *privptr = dev->ml_priv;
         struct ccwbk*p_ccwbk;
         struct chbk *p_ch;
         struct clawh *p_clawh;
        if (!dev) {
                return;
        }
-        privptr=(struct claw_privbk *)dev->priv;
+       privptr = (struct claw_privbk *)dev->ml_priv;
         p_ch=&privptr->channel[WRITE];
 
        CLAW_DBF_TEXT(4, trace, "strt_io");
 claw_free_wrt_buf( struct net_device *dev )
 {
 
-        struct claw_privbk *privptr=(struct claw_privbk *)dev->priv;
+       struct claw_privbk *privptr = (struct claw_privbk *)dev->ml_priv;
         struct ccwbk*p_first_ccw;
        struct ccwbk*p_last_ccw;
        struct ccwbk*p_this_ccw;
        if (!dev)
                return;
        CLAW_DBF_TEXT_(2, setup, "%s", dev->name);
-       privptr = dev->priv;
+       privptr = dev->ml_priv;
        if (dev->flags & IFF_RUNNING)
                claw_release(dev);
        if (privptr) {
                privptr->channel[READ].ndev = NULL;  /* say it's free */
        }
-       dev->priv=NULL;
+       dev->ml_priv = NULL;
 #ifdef MODULE
        if (free_dev) {
                free_netdev(dev);
                printk(KERN_WARNING "%s:alloc_netdev failed\n",__func__);
                goto out;
        }
-       dev->priv = privptr;
+       dev->ml_priv = privptr;
        cgdev->dev.driver_data = privptr;
         cgdev->cdev[READ]->dev.driver_data = privptr;
         cgdev->cdev[WRITE]->dev.driver_data = privptr;
                        ret = claw_release(ndev);
                ndev->flags &=~IFF_RUNNING;
                unregister_netdev(ndev);
-               ndev->priv = NULL;  /* cgdev data, not ndev's to free */
+               ndev->ml_priv = NULL;  /* cgdev data, not ndev's to free */
                claw_free_netdevice(ndev, 1);
                priv->channel[READ].ndev = NULL;
                priv->channel[WRITE].ndev = NULL;