#define ROBO_PHY_ADDR 0x1E /* robo switch phy address */
#define ROBO_PHY_ADDR_TG3 0x01 /* Tigon3 PHY address */
+#define ROBO_PHY_ADDR_BCM63XX 0x00 /* BCM63XX PHY address */
/* MII registers */
#define REG_MII_PAGE 0x10 /* MII Page register */
#define bool int
#endif
+
+extern char *nvram_get(const char *name);
+
/* Data structure for a Roboswitch device. */
struct robo_switch {
char *device; /* The device name string (ethX) */
robo_write16(ROBO_CTRL_PAGE, i, 0);
}
- /* WAN port LED */
- robo_write16(ROBO_CTRL_PAGE, 0x16, 0x1F);
+ /* WAN port LED, except for Netgear WGT634U */
+ if (strcmp(nvram_get("nvram_type"), "cfe"))
+ robo_write16(ROBO_CTRL_PAGE, 0x16, 0x1F);
return 0;
}
printk(KERN_INFO PFX "Probing device %s: ", devname);
strcpy(robo.ifr.ifr_name, devname);
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,24)
if ((robo.dev = dev_get_by_name(devname)) == NULL) {
+#else
+ if ((robo.dev = dev_get_by_name(&init_net, devname)) == NULL) {
+#endif
printk("No such device\n");
return 1;
}
/* got phy address check for robo address */
struct mii_ioctl_data *mii = (struct mii_ioctl_data *) &robo.ifr.ifr_data;
if ((mii->phy_id != ROBO_PHY_ADDR) &&
+ (mii->phy_id != ROBO_PHY_ADDR_BCM63XX) &&
(mii->phy_id != ROBO_PHY_ADDR_TG3)) {
printk("Invalid phy address (%d)\n", mii->phy_id);
return 1;
}
robo.use_et = 0;
/* The robo has a fixed PHY address that is different from the
- * Tigon3 PHY address. */
+ * Tigon3 and BCM63xx PHY address. */
robo.phy_addr = ROBO_PHY_ADDR;
}
(mdio_read(robo.phy_addr, 0x3) << 16);
if (phyid == 0xffffffff || phyid == 0x55210022) {
- printk("No Robo switch in managed mode found\n");
+ printk("No Robo switch in managed mode found, phy_id = 0x%08x\n", phyid);
return 1;
}
device = strdup("ethX");
for (device[3] = '0'; (device[3] <= '3') && notfound; device[3]++) {
- notfound = robo_probe(device);
+ if (! switch_device_registered (device))
+ notfound = robo_probe(device);
}
device[3]--;