struct xlr_net_priv *priv;
u32 port, length;
unsigned char *addr;
- struct xlr_adapter *adapter = (struct xlr_adapter *) arg;
+ struct xlr_adapter *adapter = (struct xlr_adapter *)arg;
length = (msg->msg0 >> 40) & 0x3fff;
if (length == 0) {
addr = bus_to_virt(msg->msg0 & 0xffffffffffULL);
addr = addr - MAC_SKB_BACK_PTR_SIZE;
- skb = (struct sk_buff *) *(unsigned long *)addr;
+ skb = (struct sk_buff *)(*(unsigned long *)addr);
dev_kfree_skb_any((struct sk_buff *)addr);
} else {
addr = (unsigned char *)
length = length - BYTE_OFFSET - MAC_CRC_LEN;
port = ((int)msg->msg0) & 0x0f;
addr = addr - MAC_SKB_BACK_PTR_SIZE;
- skb = (struct sk_buff *) *(unsigned long *)addr;
+ skb = (struct sk_buff *)(*(unsigned long *)addr);
skb->dev = adapter->netdev[port];
if (skb->dev == NULL)
return;
static void __maybe_unused xlr_wakeup_queue(unsigned long dev)
{
- struct net_device *ndev = (struct net_device *) dev;
+ struct net_device *ndev = (struct net_device *)dev;
struct xlr_net_priv *priv = netdev_priv(ndev);
struct phy_device *phydev = xlr_get_phydev(priv);
xlr_nae_wreg(base_addr, R_MII_MGMT_ADDRESS, (phy_addr << 8) | regnum);
/* Write the data which starts the write cycle */
- xlr_nae_wreg(base_addr, R_MII_MGMT_WRITE_DATA, (u32) val);
+ xlr_nae_wreg(base_addr, R_MII_MGMT_WRITE_DATA, (u32)val);
/* poll for the read cycle to complete */
while (!timedout) {