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net: mscc: ocelot: fix untagged packet drops when enslaving to vlan aware bridge
To rehash a previous explanation given in commit1c44ce560b
("net: mscc: ocelot: fix vlan_filtering when enslaving to bridge before link is up"), the switch driver operates the in a mode where a single VLAN can be transmitted as untagged on a particular egress port. That is the "native VLAN on trunk port" use case. The configuration for this native VLAN is driven in 2 ways: - Set the egress port rewriter to strip the VLAN tag for the native VID (as it is egress-untagged, after all). - Configure the ingress port to drop untagged and priority-tagged traffic, if there is no native VLAN. The intention of this setting is that a trunk port with no native VLAN should not accept untagged traffic. Since both of the above configurations for the native VLAN should only be done if VLAN awareness is requested, they are actually done from the ocelot_port_vlan_filtering function, after the basic procedure of toggling the VLAN awareness flag of the port. But there's a problem with that simplistic approach: we are trying to juggle with 2 independent variables from a single function: - Native VLAN of the port - its value is held in port->vid. - VLAN awareness state of the port - currently there are some issues here, more on that later*. The actual problem can be seen when enslaving the switch ports to a VLAN filtering bridge: 0. The driver configures a pvid of zero for each port, when in standalone mode. While the bridge configures a default_pvid of 1 for each port that gets added as a slave to it. 1. The bridge calls ocelot_port_vlan_filtering with vlan_aware=true. The VLAN-filtering-dependent portion of the native VLAN configuration is done, considering that the native VLAN is 0. 2. The bridge calls ocelot_vlan_add with vid=1, pvid=true, untagged=true. The native VLAN changes to 1 (change which gets propagated to hardware). 3. ??? - nobody calls ocelot_port_vlan_filtering again, to reapply the VLAN-filtering-dependent portion of the native VLAN configuration, for the new native VLAN of 1. One can notice that after toggling "ip link set dev br0 type bridge vlan_filtering 0 && ip link set dev br0 type bridge vlan_filtering 1", the new native VLAN finally makes it through and untagged traffic finally starts flowing again. But obviously that shouldn't be needed. So it is clear that 2 independent variables need to both re-trigger the native VLAN configuration. So we introduce the second variable as ocelot_port->vlan_aware. *Actually both the DSA Felix driver and the Ocelot driver already had each its own variable: - Ocelot: ocelot_port_private->vlan_aware - Felix: dsa_port->vlan_filtering but the common Ocelot library needs to work with a single, common, variable, so there is some refactoring done to move the vlan_aware property from the private structure into the common ocelot_port structure. Fixes:97bb69e1e3
("net: mscc: ocelot: break apart ocelot_vlan_port_apply") Signed-off-by: Vladimir Oltean <vladimir.oltean@nxp.com> Reviewed-by: Horatiu Vultur <horatiu.vultur@microchip.com> Signed-off-by: David S. Miller <davem@davemloft.net>
This commit is contained in:
parent
78b877113f
commit
87b0f983f6
@ -46,11 +46,8 @@ static int felix_fdb_add(struct dsa_switch *ds, int port,
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const unsigned char *addr, u16 vid)
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{
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struct ocelot *ocelot = ds->priv;
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bool vlan_aware;
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vlan_aware = dsa_port_is_vlan_filtering(dsa_to_port(ds, port));
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return ocelot_fdb_add(ocelot, port, addr, vid, vlan_aware);
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return ocelot_fdb_add(ocelot, port, addr, vid);
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}
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static int felix_fdb_del(struct dsa_switch *ds, int port,
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@ -183,58 +183,11 @@ static void ocelot_vlan_mode(struct ocelot *ocelot, int port,
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ocelot_write(ocelot, val, ANA_VLANMASK);
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}
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void ocelot_port_vlan_filtering(struct ocelot *ocelot, int port,
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bool vlan_aware)
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{
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struct ocelot_port *ocelot_port = ocelot->ports[port];
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u32 val;
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if (vlan_aware)
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val = ANA_PORT_VLAN_CFG_VLAN_AWARE_ENA |
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ANA_PORT_VLAN_CFG_VLAN_POP_CNT(1);
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else
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val = 0;
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ocelot_rmw_gix(ocelot, val,
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ANA_PORT_VLAN_CFG_VLAN_AWARE_ENA |
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ANA_PORT_VLAN_CFG_VLAN_POP_CNT_M,
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ANA_PORT_VLAN_CFG, port);
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if (vlan_aware && !ocelot_port->vid)
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/* If port is vlan-aware and tagged, drop untagged and priority
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* tagged frames.
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*/
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val = ANA_PORT_DROP_CFG_DROP_UNTAGGED_ENA |
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ANA_PORT_DROP_CFG_DROP_PRIO_S_TAGGED_ENA |
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ANA_PORT_DROP_CFG_DROP_PRIO_C_TAGGED_ENA;
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else
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val = 0;
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ocelot_rmw_gix(ocelot, val,
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ANA_PORT_DROP_CFG_DROP_UNTAGGED_ENA |
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ANA_PORT_DROP_CFG_DROP_PRIO_S_TAGGED_ENA |
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ANA_PORT_DROP_CFG_DROP_PRIO_C_TAGGED_ENA,
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ANA_PORT_DROP_CFG, port);
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if (vlan_aware) {
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if (ocelot_port->vid)
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/* Tag all frames except when VID == DEFAULT_VLAN */
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val |= REW_TAG_CFG_TAG_CFG(1);
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else
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/* Tag all frames */
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val |= REW_TAG_CFG_TAG_CFG(3);
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} else {
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/* Port tagging disabled. */
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val = REW_TAG_CFG_TAG_CFG(0);
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}
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ocelot_rmw_gix(ocelot, val,
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REW_TAG_CFG_TAG_CFG_M,
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REW_TAG_CFG, port);
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}
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EXPORT_SYMBOL(ocelot_port_vlan_filtering);
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static int ocelot_port_set_native_vlan(struct ocelot *ocelot, int port,
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u16 vid)
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{
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struct ocelot_port *ocelot_port = ocelot->ports[port];
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u32 val = 0;
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if (ocelot_port->vid != vid) {
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/* Always permit deleting the native VLAN (vid = 0) */
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@ -251,9 +204,59 @@ static int ocelot_port_set_native_vlan(struct ocelot *ocelot, int port,
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REW_PORT_VLAN_CFG_PORT_VID_M,
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REW_PORT_VLAN_CFG, port);
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if (ocelot_port->vlan_aware && !ocelot_port->vid)
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/* If port is vlan-aware and tagged, drop untagged and priority
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* tagged frames.
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*/
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val = ANA_PORT_DROP_CFG_DROP_UNTAGGED_ENA |
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ANA_PORT_DROP_CFG_DROP_PRIO_S_TAGGED_ENA |
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ANA_PORT_DROP_CFG_DROP_PRIO_C_TAGGED_ENA;
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ocelot_rmw_gix(ocelot, val,
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ANA_PORT_DROP_CFG_DROP_UNTAGGED_ENA |
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ANA_PORT_DROP_CFG_DROP_PRIO_S_TAGGED_ENA |
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ANA_PORT_DROP_CFG_DROP_PRIO_C_TAGGED_ENA,
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ANA_PORT_DROP_CFG, port);
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if (ocelot_port->vlan_aware) {
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if (ocelot_port->vid)
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/* Tag all frames except when VID == DEFAULT_VLAN */
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val = REW_TAG_CFG_TAG_CFG(1);
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else
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/* Tag all frames */
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val = REW_TAG_CFG_TAG_CFG(3);
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} else {
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/* Port tagging disabled. */
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val = REW_TAG_CFG_TAG_CFG(0);
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}
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ocelot_rmw_gix(ocelot, val,
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REW_TAG_CFG_TAG_CFG_M,
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REW_TAG_CFG, port);
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return 0;
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}
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void ocelot_port_vlan_filtering(struct ocelot *ocelot, int port,
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bool vlan_aware)
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{
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struct ocelot_port *ocelot_port = ocelot->ports[port];
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u32 val;
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ocelot_port->vlan_aware = vlan_aware;
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if (vlan_aware)
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val = ANA_PORT_VLAN_CFG_VLAN_AWARE_ENA |
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ANA_PORT_VLAN_CFG_VLAN_POP_CNT(1);
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else
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val = 0;
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ocelot_rmw_gix(ocelot, val,
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ANA_PORT_VLAN_CFG_VLAN_AWARE_ENA |
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ANA_PORT_VLAN_CFG_VLAN_POP_CNT_M,
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ANA_PORT_VLAN_CFG, port);
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ocelot_port_set_native_vlan(ocelot, port, ocelot_port->vid);
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}
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EXPORT_SYMBOL(ocelot_port_vlan_filtering);
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/* Default vlan to clasify for untagged frames (may be zero) */
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static void ocelot_port_set_pvid(struct ocelot *ocelot, int port, u16 pvid)
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{
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@ -873,12 +876,12 @@ static void ocelot_get_stats64(struct net_device *dev,
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}
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int ocelot_fdb_add(struct ocelot *ocelot, int port,
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const unsigned char *addr, u16 vid, bool vlan_aware)
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const unsigned char *addr, u16 vid)
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{
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struct ocelot_port *ocelot_port = ocelot->ports[port];
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if (!vid) {
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if (!vlan_aware)
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if (!ocelot_port->vlan_aware)
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/* If the bridge is not VLAN aware and no VID was
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* provided, set it to pvid to ensure the MAC entry
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* matches incoming untagged packets
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@ -905,7 +908,7 @@ static int ocelot_port_fdb_add(struct ndmsg *ndm, struct nlattr *tb[],
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struct ocelot *ocelot = priv->port.ocelot;
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int port = priv->chip_port;
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return ocelot_fdb_add(ocelot, port, addr, vid, priv->vlan_aware);
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return ocelot_fdb_add(ocelot, port, addr, vid);
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}
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int ocelot_fdb_del(struct ocelot *ocelot, int port,
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@ -1496,8 +1499,8 @@ static int ocelot_port_attr_set(struct net_device *dev,
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ocelot_port_attr_ageing_set(ocelot, port, attr->u.ageing_time);
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break;
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case SWITCHDEV_ATTR_ID_BRIDGE_VLAN_FILTERING:
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priv->vlan_aware = attr->u.vlan_filtering;
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ocelot_port_vlan_filtering(ocelot, port, priv->vlan_aware);
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ocelot_port_vlan_filtering(ocelot, port,
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attr->u.vlan_filtering);
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break;
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case SWITCHDEV_ATTR_ID_BRIDGE_MC_DISABLED:
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ocelot_port_attr_mc_set(ocelot, port, !attr->u.mc_disabled);
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@ -1868,7 +1871,6 @@ static int ocelot_netdevice_port_event(struct net_device *dev,
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} else {
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err = ocelot_port_bridge_leave(ocelot, port,
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info->upper_dev);
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priv->vlan_aware = false;
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}
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}
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if (netif_is_lag_master(info->upper_dev)) {
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@ -56,8 +56,6 @@ struct ocelot_port_private {
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struct phy_device *phy;
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u8 chip_port;
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u8 vlan_aware;
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struct phy *serdes;
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struct ocelot_port_tc tc;
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@ -476,6 +476,8 @@ struct ocelot_port {
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void __iomem *regs;
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bool vlan_aware;
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/* Ingress default VLAN (pvid) */
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u16 pvid;
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@ -610,7 +612,7 @@ int ocelot_port_bridge_leave(struct ocelot *ocelot, int port,
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int ocelot_fdb_dump(struct ocelot *ocelot, int port,
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dsa_fdb_dump_cb_t *cb, void *data);
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int ocelot_fdb_add(struct ocelot *ocelot, int port,
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const unsigned char *addr, u16 vid, bool vlan_aware);
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const unsigned char *addr, u16 vid);
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int ocelot_fdb_del(struct ocelot *ocelot, int port,
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const unsigned char *addr, u16 vid);
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int ocelot_vlan_add(struct ocelot *ocelot, int port, u16 vid, bool pvid,
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