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net: dsa: add support for bridge TX forwarding offload
For a DSA switch, to offload the forwarding process of a bridge device means to send the packets coming from the software bridge as data plane packets. This is contrary to everything that DSA has done so far, because the current taggers only know to send control packets (ones that target a specific destination port), whereas data plane packets are supposed to be forwarded according to the FDB lookup, much like packets ingressing on any regular ingress port. If the FDB lookup process returns multiple destination ports (flooding, multicast), then replication is also handled by the switch hardware - the bridge only sends a single packet and avoids the skb_clone(). DSA keeps for each bridge port a zero-based index (the number of the bridge). Multiple ports performing TX forwarding offload to the same bridge have the same dp->bridge_num value, and ports not offloading the TX data plane of a bridge have dp->bridge_num = -1. The tagger can check if the packet that is being transmitted on has skb->offload_fwd_mark = true or not. If it does, it can be sure that the packet belongs to the data plane of a bridge, further information about which can be obtained based on dp->bridge_dev and dp->bridge_num. It can then compose a DSA tag for injecting a data plane packet into that bridge number. For the switch driver side, we offer two new dsa_switch_ops methods, called .port_bridge_fwd_offload_{add,del}, which are modeled after .port_bridge_{join,leave}. These methods are provided in case the driver needs to configure the hardware to treat packets coming from that bridge software interface as data plane packets. The switchdev <-> bridge interaction happens during the netdev_master_upper_dev_link() call, so to switch drivers, the effect is that the .port_bridge_fwd_offload_add() method is called immediately after .port_bridge_join(). If the bridge number exceeds the number of bridges for which the switch driver can offload the TX data plane (and this includes the case where the driver can offload none), DSA falls back to simply returning tx_fwd_offload = false in the switchdev_bridge_port_offload() call. Signed-off-by: Vladimir Oltean <vladimir.oltean@nxp.com> Reviewed-by: Florian Fainelli <f.fainelli@gmail.com> Signed-off-by: David S. Miller <davem@davemloft.net>
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@ -162,6 +162,9 @@ struct dsa_switch_tree {
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/* Track the largest switch index within a tree */
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unsigned int last_switch;
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/* Track the bridges with forwarding offload enabled */
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unsigned long fwd_offloading_bridges;
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};
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#define dsa_lags_foreach_id(_id, _dst) \
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@ -262,6 +265,7 @@ struct dsa_port {
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bool vlan_filtering;
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u8 stp_state;
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struct net_device *bridge_dev;
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int bridge_num;
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struct devlink_port devlink_port;
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bool devlink_port_setup;
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struct phylink *pl;
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@ -413,6 +417,12 @@ struct dsa_switch {
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*/
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unsigned int num_lag_ids;
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/* Drivers that support bridge forwarding offload should set this to
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* the maximum number of bridges spanning the same switch tree that can
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* be offloaded.
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*/
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unsigned int num_fwd_offloading_bridges;
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size_t num_ports;
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};
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@ -696,6 +706,14 @@ struct dsa_switch_ops {
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struct net_device *bridge);
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void (*port_bridge_leave)(struct dsa_switch *ds, int port,
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struct net_device *bridge);
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/* Called right after .port_bridge_join() */
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int (*port_bridge_tx_fwd_offload)(struct dsa_switch *ds, int port,
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struct net_device *bridge,
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int bridge_num);
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/* Called right before .port_bridge_leave() */
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void (*port_bridge_tx_fwd_unoffload)(struct dsa_switch *ds, int port,
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struct net_device *bridge,
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int bridge_num);
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void (*port_stp_state_set)(struct dsa_switch *ds, int port,
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u8 state);
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void (*port_fast_age)(struct dsa_switch *ds, int port);
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@ -1044,6 +1044,7 @@ static struct dsa_port *dsa_port_touch(struct dsa_switch *ds, int index)
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dp->ds = ds;
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dp->index = index;
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dp->bridge_num = -1;
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INIT_LIST_HEAD(&dp->list);
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list_add_tail(&dp->list, &dst->ports);
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@ -14,6 +14,8 @@
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#include <net/dsa.h>
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#include <net/gro_cells.h>
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#define DSA_MAX_NUM_OFFLOADING_BRIDGES BITS_PER_LONG
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enum {
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DSA_NOTIFIER_AGEING_TIME,
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DSA_NOTIFIER_BRIDGE_JOIN,
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@ -230,6 +230,83 @@ static void dsa_port_switchdev_unsync_attrs(struct dsa_port *dp)
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*/
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}
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static int dsa_tree_find_bridge_num(struct dsa_switch_tree *dst,
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struct net_device *bridge_dev)
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{
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struct dsa_port *dp;
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/* When preparing the offload for a port, it will have a valid
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* dp->bridge_dev pointer but a not yet valid dp->bridge_num.
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* However there might be other ports having the same dp->bridge_dev
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* and a valid dp->bridge_num, so just ignore this port.
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*/
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list_for_each_entry(dp, &dst->ports, list)
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if (dp->bridge_dev == bridge_dev && dp->bridge_num != -1)
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return dp->bridge_num;
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return -1;
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}
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static void dsa_port_bridge_tx_fwd_unoffload(struct dsa_port *dp,
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struct net_device *bridge_dev)
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{
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struct dsa_switch_tree *dst = dp->ds->dst;
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int bridge_num = dp->bridge_num;
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struct dsa_switch *ds = dp->ds;
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/* No bridge TX forwarding offload => do nothing */
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if (!ds->ops->port_bridge_tx_fwd_unoffload || dp->bridge_num == -1)
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return;
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dp->bridge_num = -1;
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/* Check if the bridge is still in use, otherwise it is time
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* to clean it up so we can reuse this bridge_num later.
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*/
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if (!dsa_tree_find_bridge_num(dst, bridge_dev))
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clear_bit(bridge_num, &dst->fwd_offloading_bridges);
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/* Notify the chips only once the offload has been deactivated, so
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* that they can update their configuration accordingly.
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*/
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ds->ops->port_bridge_tx_fwd_unoffload(ds, dp->index, bridge_dev,
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bridge_num);
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}
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static bool dsa_port_bridge_tx_fwd_offload(struct dsa_port *dp,
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struct net_device *bridge_dev)
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{
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struct dsa_switch_tree *dst = dp->ds->dst;
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struct dsa_switch *ds = dp->ds;
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int bridge_num, err;
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if (!ds->ops->port_bridge_tx_fwd_offload)
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return false;
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bridge_num = dsa_tree_find_bridge_num(dst, bridge_dev);
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if (bridge_num < 0) {
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/* First port that offloads TX forwarding for this bridge */
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bridge_num = find_first_zero_bit(&dst->fwd_offloading_bridges,
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DSA_MAX_NUM_OFFLOADING_BRIDGES);
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if (bridge_num >= ds->num_fwd_offloading_bridges)
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return false;
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set_bit(bridge_num, &dst->fwd_offloading_bridges);
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}
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dp->bridge_num = bridge_num;
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/* Notify the driver */
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err = ds->ops->port_bridge_tx_fwd_offload(ds, dp->index, bridge_dev,
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bridge_num);
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if (err) {
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dsa_port_bridge_tx_fwd_unoffload(dp, bridge_dev);
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return false;
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}
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return true;
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}
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int dsa_port_bridge_join(struct dsa_port *dp, struct net_device *br,
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struct netlink_ext_ack *extack)
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{
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@ -241,6 +318,7 @@ int dsa_port_bridge_join(struct dsa_port *dp, struct net_device *br,
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};
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struct net_device *dev = dp->slave;
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struct net_device *brport_dev;
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bool tx_fwd_offload;
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int err;
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/* Here the interface is already bridged. Reflect the current
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@ -254,10 +332,12 @@ int dsa_port_bridge_join(struct dsa_port *dp, struct net_device *br,
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if (err)
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goto out_rollback;
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tx_fwd_offload = dsa_port_bridge_tx_fwd_offload(dp, br);
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err = switchdev_bridge_port_offload(brport_dev, dev, dp,
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&dsa_slave_switchdev_notifier,
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&dsa_slave_switchdev_blocking_notifier,
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false, extack);
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tx_fwd_offload, extack);
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if (err)
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goto out_rollback_unbridge;
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@ -302,6 +382,8 @@ void dsa_port_bridge_leave(struct dsa_port *dp, struct net_device *br)
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*/
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dp->bridge_dev = NULL;
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dsa_port_bridge_tx_fwd_unoffload(dp, br);
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err = dsa_broadcast(DSA_NOTIFIER_BRIDGE_LEAVE, &info);
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if (err)
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pr_err("DSA: failed to notify DSA_NOTIFIER_BRIDGE_LEAVE\n");
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