/* Initialise common structures */
memset(efx, 0, sizeof(*efx));
spin_lock_init(&efx->biu_lock);
- mutex_init(&efx->mdio_lock);
#ifdef CONFIG_SFC_MTD
INIT_LIST_HEAD(&efx->mtd_list);
#endif
int prtad, int devad, u16 addr, u16 value)
{
struct efx_nic *efx = netdev_priv(net_dev);
+ struct falcon_nic_data *nic_data = efx->nic_data;
efx_oword_t reg;
int rc;
"writing MDIO %d register %d.%d with 0x%04x\n",
prtad, devad, addr, value);
- mutex_lock(&efx->mdio_lock);
+ mutex_lock(&nic_data->mdio_lock);
/* Check MDIO not currently being accessed */
rc = falcon_gmii_wait(efx);
}
out:
- mutex_unlock(&efx->mdio_lock);
+ mutex_unlock(&nic_data->mdio_lock);
return rc;
}
int prtad, int devad, u16 addr)
{
struct efx_nic *efx = netdev_priv(net_dev);
+ struct falcon_nic_data *nic_data = efx->nic_data;
efx_oword_t reg;
int rc;
- mutex_lock(&efx->mdio_lock);
+ mutex_lock(&nic_data->mdio_lock);
/* Check MDIO not currently being accessed */
rc = falcon_gmii_wait(efx);
}
out:
- mutex_unlock(&efx->mdio_lock);
+ mutex_unlock(&nic_data->mdio_lock);
return rc;
}
}
/* Fill out MDIO structure and loopback modes */
+ mutex_init(&nic_data->mdio_lock);
efx->mdio.mdio_read = falcon_mdio_read;
efx->mdio.mdio_write = falcon_mdio_write;
rc = efx->phy_op->probe(efx);
* @mac_op: MAC interface
* @mac_address: Permanent MAC address
* @phy_type: PHY type
- * @mdio_lock: MDIO lock
* @phy_op: PHY interface
* @phy_data: PHY private data (including PHY-specific stats)
* @mdio: PHY MDIO interface
unsigned char mac_address[ETH_ALEN];
unsigned int phy_type;
- struct mutex mdio_lock;
struct efx_phy_operations *phy_op;
void *phy_data;
struct mdio_if_info mdio;
* @spi_flash: SPI flash device
* @spi_eeprom: SPI EEPROM device
* @spi_lock: SPI bus lock
+ * @mdio_lock: MDIO bus lock
*/
struct falcon_nic_data {
struct pci_dev *pci_dev2;
struct efx_spi_device spi_flash;
struct efx_spi_device spi_eeprom;
struct mutex spi_lock;
+ struct mutex mdio_lock;
};
static inline struct falcon_board *falcon_board(struct efx_nic *efx)