| Author | Tokens | Token Proportion | Commits | Commit Proportion |
|---|---|---|---|---|
| Alvin Šipraga | 1627 | 48.87% | 9 | 20.93% |
| Luiz Angelo Daros de Luca | 1058 | 31.78% | 22 | 51.16% |
| Linus Walleij | 510 | 15.32% | 2 | 4.65% |
| Vladimir Oltean | 59 | 1.77% | 2 | 4.65% |
| Peter Zijlstra | 18 | 0.54% | 1 | 2.33% |
| Johan Hovold | 15 | 0.45% | 1 | 2.33% |
| Andrew Lunn | 10 | 0.30% | 1 | 2.33% |
| Russell King | 10 | 0.30% | 1 | 2.33% |
| Ahmad Fatoum | 7 | 0.21% | 1 | 2.33% |
| Vivien Didelot | 6 | 0.18% | 1 | 2.33% |
| Randy Dunlap | 5 | 0.15% | 1 | 2.33% |
| Hongbo Li | 4 | 0.12% | 1 | 2.33% |
| Total | 3329 | 43 |
// SPDX-License-Identifier: GPL-2.0+ #include <linux/module.h> #include <linux/regmap.h> #include <linux/of_mdio.h> #include <linux/if_bridge.h> #include <linux/etherdevice.h> #include "realtek.h" #include "rtl83xx.h" /** * rtl83xx_lock() - Locks the mutex used by regmaps * @ctx: realtek_priv pointer * * This function is passed to regmap to be used as the lock function. * It is also used externally to block regmap before executing multiple * operations that must happen in sequence (which will use * realtek_priv.map_nolock instead). * * Context: Can sleep. Holds priv->map_lock lock. * Return: nothing */ void rtl83xx_lock(void *ctx) { struct realtek_priv *priv = ctx; mutex_lock(&priv->map_lock); } EXPORT_SYMBOL_NS_GPL(rtl83xx_lock, "REALTEK_DSA"); /** * rtl83xx_unlock() - Unlocks the mutex used by regmaps * @ctx: realtek_priv pointer * * This function unlocks the lock acquired by rtl83xx_lock. * * Context: Releases priv->map_lock lock. * Return: nothing */ void rtl83xx_unlock(void *ctx) { struct realtek_priv *priv = ctx; mutex_unlock(&priv->map_lock); } EXPORT_SYMBOL_NS_GPL(rtl83xx_unlock, "REALTEK_DSA"); static int rtl83xx_user_mdio_read(struct mii_bus *bus, int addr, int regnum) { struct realtek_priv *priv = bus->priv; return priv->ops->phy_read(priv, addr, regnum); } static int rtl83xx_user_mdio_write(struct mii_bus *bus, int addr, int regnum, u16 val) { struct realtek_priv *priv = bus->priv; return priv->ops->phy_write(priv, addr, regnum, val); } /** * rtl83xx_setup_user_mdio() - register the user mii bus driver * @ds: DSA switch associated with this user_mii_bus * * Registers the MDIO bus for built-in Ethernet PHYs, and associates it with * the mandatory 'mdio' child OF node of the switch. * * Context: Can sleep. * Return: 0 on success, negative value for failure. */ int rtl83xx_setup_user_mdio(struct dsa_switch *ds) { struct realtek_priv *priv = ds->priv; struct device_node *mdio_np; struct mii_bus *bus; int ret = 0; mdio_np = of_get_child_by_name(priv->dev->of_node, "mdio"); if (!mdio_np) { dev_err(priv->dev, "no MDIO bus node\n"); return -ENODEV; } bus = devm_mdiobus_alloc(priv->dev); if (!bus) { ret = -ENOMEM; goto err_put_node; } bus->priv = priv; bus->name = "Realtek user MII"; bus->read = rtl83xx_user_mdio_read; bus->write = rtl83xx_user_mdio_write; snprintf(bus->id, MII_BUS_ID_SIZE, "%s:user_mii", dev_name(priv->dev)); bus->parent = priv->dev; ret = devm_of_mdiobus_register(priv->dev, bus, mdio_np); if (ret) { dev_err(priv->dev, "unable to register MDIO bus %s\n", bus->id); goto err_put_node; } priv->user_mii_bus = bus; err_put_node: of_node_put(mdio_np); return ret; } EXPORT_SYMBOL_NS_GPL(rtl83xx_setup_user_mdio, "REALTEK_DSA"); /** * rtl83xx_probe() - probe a Realtek switch * @dev: the device being probed * @interface_info: specific management interface info. * * This function initializes realtek_priv and reads data from the device tree * node. The switch is hard resetted if a method is provided. * * Context: Can sleep. * Return: Pointer to the realtek_priv or ERR_PTR() in case of failure. * * The realtek_priv pointer does not need to be freed as it is controlled by * devres. */ struct realtek_priv * rtl83xx_probe(struct device *dev, const struct realtek_interface_info *interface_info) { const struct realtek_variant *var; struct realtek_priv *priv; struct regmap_config rc = { .reg_bits = 10, /* A4..A0 R4..R0 */ .val_bits = 16, .reg_stride = 1, .max_register = 0xffff, .reg_format_endian = REGMAP_ENDIAN_BIG, .reg_read = interface_info->reg_read, .reg_write = interface_info->reg_write, .cache_type = REGCACHE_NONE, .lock = rtl83xx_lock, .unlock = rtl83xx_unlock, }; int ret; var = of_device_get_match_data(dev); if (!var) return ERR_PTR(-EINVAL); priv = devm_kzalloc(dev, size_add(sizeof(*priv), var->chip_data_sz), GFP_KERNEL); if (!priv) return ERR_PTR(-ENOMEM); ret = devm_mutex_init(dev, &priv->map_lock); if (ret) return ERR_PTR(ret); ret = devm_mutex_init(dev, &priv->vlan_lock); if (ret) return ERR_PTR(ret); ret = devm_mutex_init(dev, &priv->l2_lock); if (ret) return ERR_PTR(ret); rc.lock_arg = priv; priv->map = devm_regmap_init(dev, NULL, priv, &rc); if (IS_ERR(priv->map)) { ret = PTR_ERR(priv->map); dev_err(dev, "regmap init failed: %d\n", ret); return ERR_PTR(ret); } rc.disable_locking = true; priv->map_nolock = devm_regmap_init(dev, NULL, priv, &rc); if (IS_ERR(priv->map_nolock)) { ret = PTR_ERR(priv->map_nolock); dev_err(dev, "regmap init failed: %d\n", ret); return ERR_PTR(ret); } /* Link forward and backward */ priv->dev = dev; priv->variant = var; priv->ops = var->ops; priv->chip_data = (void *)priv + sizeof(*priv); spin_lock_init(&priv->lock); priv->leds_disabled = of_property_read_bool(dev->of_node, "realtek,disable-leds"); /* TODO: if power is software controlled, set up any regulators here */ priv->reset_ctl = devm_reset_control_get_optional(dev, NULL); if (IS_ERR(priv->reset_ctl)) return dev_err_cast_probe(dev, priv->reset_ctl, "failed to get reset control\n"); priv->reset = devm_gpiod_get_optional(dev, "reset", GPIOD_OUT_LOW); if (IS_ERR(priv->reset)) { dev_err(dev, "failed to get RESET GPIO\n"); return ERR_CAST(priv->reset); } dev_set_drvdata(dev, priv); if (priv->reset_ctl || priv->reset) { rtl83xx_reset_assert(priv); dev_dbg(dev, "asserted RESET\n"); msleep(REALTEK_HW_STOP_DELAY); rtl83xx_reset_deassert(priv); msleep(REALTEK_HW_START_DELAY); dev_dbg(dev, "deasserted RESET\n"); } return priv; } EXPORT_SYMBOL_NS_GPL(rtl83xx_probe, "REALTEK_DSA"); /** * rtl83xx_register_switch() - detects and register a switch * @priv: realtek_priv pointer * * This function first checks the switch chip ID and register a DSA * switch. * * Context: Can sleep. Takes and releases priv->map_lock. * Return: 0 on success, negative value for failure. */ int rtl83xx_register_switch(struct realtek_priv *priv) { struct dsa_switch *ds = &priv->ds; int ret; ret = priv->ops->detect(priv); if (ret) { dev_err_probe(priv->dev, ret, "unable to detect switch\n"); return ret; } ds->priv = priv; ds->dev = priv->dev; ds->ops = priv->variant->ds_ops; ds->phylink_mac_ops = priv->variant->phylink_mac_ops; ds->num_ports = priv->num_ports; ret = dsa_register_switch(ds); if (ret) { dev_err_probe(priv->dev, ret, "unable to register switch\n"); return ret; } return 0; } EXPORT_SYMBOL_NS_GPL(rtl83xx_register_switch, "REALTEK_DSA"); /** * rtl83xx_unregister_switch() - unregister a switch * @priv: realtek_priv pointer * * This function unregister a DSA switch. * * Context: Can sleep. * Return: Nothing. */ void rtl83xx_unregister_switch(struct realtek_priv *priv) { struct dsa_switch *ds = &priv->ds; dsa_unregister_switch(ds); } EXPORT_SYMBOL_NS_GPL(rtl83xx_unregister_switch, "REALTEK_DSA"); /** * rtl83xx_shutdown() - shutdown a switch * @priv: realtek_priv pointer * * This function shuts down the DSA switch and cleans the platform driver data, * to prevent realtek_{smi,mdio}_remove() from running afterwards, which is * possible if the parent bus implements its own .shutdown() as .remove(). * * Context: Can sleep. * Return: Nothing. */ void rtl83xx_shutdown(struct realtek_priv *priv) { struct dsa_switch *ds = &priv->ds; dsa_switch_shutdown(ds); dev_set_drvdata(priv->dev, NULL); } EXPORT_SYMBOL_NS_GPL(rtl83xx_shutdown, "REALTEK_DSA"); /** * rtl83xx_remove() - Cleanup a realtek switch driver * @priv: realtek_priv pointer * * Placehold for common cleanup procedures. * * Context: Any * Return: nothing */ void rtl83xx_remove(struct realtek_priv *priv) { } EXPORT_SYMBOL_NS_GPL(rtl83xx_remove, "REALTEK_DSA"); void rtl83xx_reset_assert(struct realtek_priv *priv) { int ret; ret = reset_control_assert(priv->reset_ctl); if (ret) dev_warn(priv->dev, "Failed to assert the switch reset control: %pe\n", ERR_PTR(ret)); gpiod_set_value(priv->reset, true); } void rtl83xx_reset_deassert(struct realtek_priv *priv) { int ret; ret = reset_control_deassert(priv->reset_ctl); if (ret) dev_warn(priv->dev, "Failed to deassert the switch reset control: %pe\n", ERR_PTR(ret)); gpiod_set_value(priv->reset, false); } /** * rtl83xx_port_bridge_join() - join a port to a bridge * @ds: DSA switch instance * @port: port index * @bridge: bridge being joined * @tx_forward_offload: if the switch can offload TX forwarding * @extack: netlink extended ack for reporting errors * * This function handles joining a port to a bridge. It updates the port * isolation masks and EFID. * * Context: Can sleep. * Return: 0 on success, negative value for failure. */ int rtl83xx_port_bridge_join(struct dsa_switch *ds, int port, struct dsa_bridge bridge, bool *tx_forward_offload, struct netlink_ext_ack *extack) { struct realtek_priv *priv = ds->priv; struct dsa_port *dp; u32 mask = 0; int ret; if (!priv->ops->port_add_isolation) return -EOPNOTSUPP; if (!priv->ops->port_set_learning) return -EOPNOTSUPP; dev_dbg(priv->dev, "bridge %d join port %d\n", bridge.num, port); /* Add this port to the isolation group of every other port * offloading this bridge. */ dsa_switch_for_each_user_port(dp, ds) { /* Handle this port after */ if (dp->index == port) continue; /* Skip ports that are not in this bridge */ if (!dsa_port_offloads_bridge(dp, &bridge)) continue; ret = priv->ops->port_add_isolation(priv, dp->index, BIT(port)); if (ret) goto undo_isolation; mask |= BIT(dp->index); } /* If we support cascade switches, it should also include the * downstream DSA ports to the isolation group. */ /* Add those ports to the isolation group of this port */ ret = priv->ops->port_add_isolation(priv, port, mask); if (ret) goto undo_isolation; /* Use the bridge number as the EFID for this port */ if (priv->ops->port_set_efid) { ret = priv->ops->port_set_efid(priv, port, bridge.num); if (ret) goto undo_self_isolation; } ret = priv->ops->port_set_learning(priv, port, true); if (ret) goto undo_efid; return 0; undo_efid: if (priv->ops->port_set_efid) priv->ops->port_set_efid(priv, port, 0); undo_self_isolation: priv->ops->port_remove_isolation(priv, port, mask); undo_isolation: dsa_switch_for_each_port(dp, ds) { if (mask & BIT(dp->index)) priv->ops->port_remove_isolation(priv, dp->index, BIT(port)); } return ret; } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_bridge_join, "REALTEK_DSA"); /** * rtl83xx_port_bridge_leave() - leave a bridge * @ds: DSA switch instance * @port: port index * @bridge: bridge being left * * This function handles removing a port from a bridge. It updates the port * isolation masks and EFID. * * Context: Can sleep. * Return: nothing */ void rtl83xx_port_bridge_leave(struct dsa_switch *ds, int port, struct dsa_bridge bridge) { struct realtek_priv *priv = ds->priv; struct dsa_port *dp; u32 mask = 0; int ret; if (!priv->ops->port_remove_isolation) return; if (!priv->ops->port_set_learning) return; dev_dbg(priv->dev, "bridge %d leave port %d\n", bridge.num, port); /* Remove this port from the isolation group of every other * port offloading this bridge. */ dsa_switch_for_each_user_port(dp, ds) { /* Handle this port after */ if (dp->index == port) continue; /* Skip ports that are not in this bridge */ if (!dsa_port_offloads_bridge(dp, &bridge)) continue; ret = priv->ops->port_remove_isolation(priv, dp->index, BIT(port)); if (ret) dev_err(priv->dev, "failed to isolate port %d from port %d: %pe\n", port, dp->index, ERR_PTR(ret)); mask |= BIT(dp->index); } /* If we support cascade switches, it should also exclude the * downstream DSA ports from the isolation group. */ ret = priv->ops->port_set_learning(priv, port, false); if (ret) dev_err(priv->dev, "failed to disable learning on port %d: %pe\n", port, ERR_PTR(ret)); /* Remove those ports from the isolation group of this port */ ret = priv->ops->port_remove_isolation(priv, port, mask); if (ret) dev_err(priv->dev, "failed to remove isolation mask from port %d: %pe\n", port, ERR_PTR(ret)); /* Revert to the default EFID 0 for standalone mode */ if (priv->ops->port_set_efid) { ret = priv->ops->port_set_efid(priv, port, 0); if (ret) dev_err(priv->dev, "failed to clear EFID on port %d: %pe\n", port, ERR_PTR(ret)); } } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_bridge_leave, "REALTEK_DSA"); /** * rtl83xx_port_fast_age() - flush dynamic FDB entries learned on a port * @ds: DSA switch instance * @port: port index * * This function requests the switch to age out dynamic FDB entries learned on * @port. * * Context: Can sleep. * Return: Nothing. */ void rtl83xx_port_fast_age(struct dsa_switch *ds, int port) { struct realtek_priv *priv = ds->priv; int ret; if (!priv->ops->l2_flush) { dev_warn_once(priv->dev, "l2_flush op not defined\n"); return; } dev_dbg(priv->dev, "fast_age port %d\n", port); mutex_lock(&priv->l2_lock); ret = priv->ops->l2_flush(priv, port, 0); mutex_unlock(&priv->l2_lock); if (ret) dev_err(priv->dev, "failed to fast age on port %d: %d\n", port, ret); } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_fast_age, "REALTEK_DSA"); /** * rtl83xx_port_fdb_add() - add a static FDB entry to a port database * @ds: DSA switch instance * @port: port index * @addr: MAC address to add * @vid: VLAN ID associated with @addr * @db: database where the entry should be added * * This function adds a static unicast FDB entry to the standalone port * database or to a bridge database. * * Context: Can sleep. * Return: 0 on success, negative value for failure. */ int rtl83xx_port_fdb_add(struct dsa_switch *ds, int port, const unsigned char *addr, u16 vid, struct dsa_db db) { struct realtek_priv *priv = ds->priv; int efid; int ret; if (is_multicast_ether_addr(addr)) return -EOPNOTSUPP; if (!priv->ops->l2_add_uc) return -EOPNOTSUPP; if (db.type != DSA_DB_PORT && db.type != DSA_DB_BRIDGE) return -EOPNOTSUPP; /* Bridge ports use bridge.num as EFID, while standalone ports use * EFID 0. FDB entries for the CPU port follow the bridge EFID due * to assisted learning. */ efid = db.type == DSA_DB_BRIDGE ? db.bridge.num : 0; dev_dbg(priv->dev, "%s: port:%d addr:%pM efid:%d vid:%d dbtype:%d\n", __func__, port, addr, efid, vid, db.type); mutex_lock(&priv->l2_lock); ret = priv->ops->l2_add_uc(priv, port, addr, efid, vid); mutex_unlock(&priv->l2_lock); if (ret) dev_err(priv->dev, "fdb_add ERROR %pe\n", ERR_PTR(ret)); return ret; } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_fdb_add, "REALTEK_DSA"); /** * rtl83xx_port_fdb_del() - delete a static FDB entry from a port database * @ds: DSA switch instance * @port: port index * @addr: MAC address to delete * @vid: VLAN ID associated with @addr * @db: database where the entry should be removed * * This function deletes a static unicast FDB entry from the standalone port * database or from a bridge database. * * Context: Can sleep. * Return: 0 on success, negative value for failure. */ int rtl83xx_port_fdb_del(struct dsa_switch *ds, int port, const unsigned char *addr, u16 vid, struct dsa_db db) { struct realtek_priv *priv = ds->priv; int efid; int ret; if (is_multicast_ether_addr(addr)) return -EOPNOTSUPP; if (!priv->ops->l2_del_uc) return -EOPNOTSUPP; if (db.type != DSA_DB_PORT && db.type != DSA_DB_BRIDGE) return -EOPNOTSUPP; /* * DSA_DB_BRIDGE ports use bridge number [1..N] as EFID, while * DSA_DB_PORT use the default EFID (0), not used by any bridge. */ efid = db.type == DSA_DB_BRIDGE ? db.bridge.num : 0; dev_dbg(priv->dev, "%s: port:%d addr:%pM efid:%d vid:%d dbtype:%d\n", __func__, port, addr, efid, vid, db.type); mutex_lock(&priv->l2_lock); ret = priv->ops->l2_del_uc(priv, port, addr, efid, vid); mutex_unlock(&priv->l2_lock); if (ret) dev_err(priv->dev, "fdb_del ERROR %pe\n", ERR_PTR(ret)); return ret; } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_fdb_del, "REALTEK_DSA"); /** * rtl83xx_port_fdb_dump() - iterate over FDB entries associated with a port * @ds: DSA switch instance * @port: port index * @cb: callback invoked for each entry * @data: opaque pointer passed to @cb * * This function walks the unicast FDB entries associated with @port and calls * @cb for each matching entry. * * Context: Can sleep. * Return: 0 on success, or negative value for failure. */ int rtl83xx_port_fdb_dump(struct dsa_switch *ds, int port, dsa_fdb_dump_cb_t *cb, void *data) { struct realtek_fdb_entry entry = { 0 }; struct realtek_priv *priv = ds->priv; u16 start_addr, addr = 0; int ret = 0; if (!priv->ops->l2_get_next_uc) return -EOPNOTSUPP; mutex_lock(&priv->l2_lock); while (true) { start_addr = addr; dev_dbg(priv->dev, "l2_get_next_uc, addr:%d, port:%d\n", addr, port); ret = priv->ops->l2_get_next_uc(priv, &addr, port, &entry); dev_dbg(priv->dev, "%s addr:%d mac:%pM vid:%d static:%d ret:%pe\n", __func__, addr, entry.mac_addr, entry.vid, entry.is_static, ERR_PTR(ret)); if (ret == -ENOENT) { /* If the table is empty, returns without errors. Note * that the l2_get_next_uc overflow to the first match * when it reaches the end of the table. */ ret = 0; break; } if (ret) break; /* When the addr returned is before the requested one, it * indicates that we reached the end. */ if (addr < start_addr) break; ret = cb(entry.mac_addr, entry.vid, entry.is_static, data); if (ret) break; addr++; } mutex_unlock(&priv->l2_lock); return ret; } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_fdb_dump, "REALTEK_DSA"); /** * rtl83xx_port_mdb_add() - add a multicast database entry to a port database * @ds: DSA switch instance * @port: port index * @mdb: multicast database entry to add * @db: database where the entry should be added * * This function adds a multicast database entry to the standalone port * database or to a bridge database. * * Context: Can sleep. * Return: 0 on success, negative value for failure. */ int rtl83xx_port_mdb_add(struct dsa_switch *ds, int port, const struct switchdev_obj_port_mdb *mdb, struct dsa_db db) { struct realtek_priv *priv = ds->priv; const unsigned char *addr = mdb->addr; u16 vid = mdb->vid; int efid; int ret; if (!priv->ops->l2_add_mc) return -EOPNOTSUPP; if (db.type != DSA_DB_PORT && db.type != DSA_DB_BRIDGE) return -EOPNOTSUPP; /* EFID is not used by hardware MDB entries; debugging only */ efid = db.type == DSA_DB_BRIDGE ? db.bridge.num : 0; dev_dbg(priv->dev, "%s: port:%d addr:%pM efid:%d vid:%d dbtype:%d\n", __func__, port, addr, efid, vid, db.type); mutex_lock(&priv->l2_lock); ret = priv->ops->l2_add_mc(priv, port, addr, vid); mutex_unlock(&priv->l2_lock); if (ret) dev_err(priv->dev, "mdb_add ERROR %pe\n", ERR_PTR(ret)); return ret; } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_mdb_add, "REALTEK_DSA"); /** * rtl83xx_port_mdb_del() - delete a multicast database entry from a port * database * @ds: DSA switch instance * @port: port index * @mdb: multicast database entry to delete * @db: database where the entry should be removed * * This function deletes a multicast database entry from the standalone port * database or from a bridge database. * * Context: Can sleep. * Return: 0 on success, negative value for failure. */ int rtl83xx_port_mdb_del(struct dsa_switch *ds, int port, const struct switchdev_obj_port_mdb *mdb, struct dsa_db db) { struct realtek_priv *priv = ds->priv; const unsigned char *addr = mdb->addr; u16 vid = mdb->vid; int efid; int ret; if (!priv->ops->l2_del_mc) return -EOPNOTSUPP; if (db.type != DSA_DB_PORT && db.type != DSA_DB_BRIDGE) return -EOPNOTSUPP; /* EFID is not used by hardware MDB entries; debugging only */ efid = db.type == DSA_DB_BRIDGE ? db.bridge.num : 0; dev_dbg(priv->dev, "%s: port:%d addr:%pM efid:%d vid:%d dbtype:%d\n", __func__, port, addr, efid, vid, db.type); mutex_lock(&priv->l2_lock); ret = priv->ops->l2_del_mc(priv, port, addr, vid); mutex_unlock(&priv->l2_lock); if (ret) dev_err(priv->dev, "mdb_del ERROR %pe\n", ERR_PTR(ret)); return ret; } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_mdb_del, "REALTEK_DSA"); /** * rtl83xx_port_bridge_flags() - set port bridge flags * @ds: DSA switch instance * @port: port index * @flags: bridge port flags * @extack: netlink extended ack for reporting errors * * This function handles setting bridge port flags like learning and flooding. * * Context: Can sleep. * Return: 0 on success, negative value for failure. */ int rtl83xx_port_bridge_flags(struct dsa_switch *ds, int port, struct switchdev_brport_flags flags, struct netlink_ext_ack *extack) { struct realtek_priv *priv = ds->priv; bool enable; int ret; if (flags.mask & BR_LEARNING) { if (!priv->ops->port_set_learning) return -EOPNOTSUPP; enable = !!(flags.val & BR_LEARNING); ret = priv->ops->port_set_learning(priv, port, enable); if (ret) return ret; } if (flags.mask & BR_FLOOD) { if (!priv->ops->port_set_ucast_flood) return -EOPNOTSUPP; enable = !!(flags.val & BR_FLOOD); ret = priv->ops->port_set_ucast_flood(priv, port, enable); if (ret) return ret; } if (flags.mask & BR_MCAST_FLOOD) { if (!priv->ops->port_set_mcast_flood) return -EOPNOTSUPP; enable = !!(flags.val & BR_MCAST_FLOOD); ret = priv->ops->port_set_mcast_flood(priv, port, enable); if (ret) return ret; } if (flags.mask & BR_BCAST_FLOOD) { if (!priv->ops->port_set_bcast_flood) return -EOPNOTSUPP; enable = !!(flags.val & BR_BCAST_FLOOD); ret = priv->ops->port_set_bcast_flood(priv, port, enable); if (ret) return ret; } return 0; } EXPORT_SYMBOL_NS_GPL(rtl83xx_port_bridge_flags, "REALTEK_DSA"); /** * rtl83xx_setup_port_flood_control() - setup default flood control for a port * @priv: realtek_priv pointer * @port: port index * * This function enables flooding for a given port. * * Context: Can sleep. * Return: 0 on success, negative value for failure. */ int rtl83xx_setup_port_flood_control(struct realtek_priv *priv, int port) { int ret; if (priv->ops->port_set_ucast_flood) { ret = priv->ops->port_set_ucast_flood(priv, port, true); if (ret) return ret; } if (priv->ops->port_set_mcast_flood) { ret = priv->ops->port_set_mcast_flood(priv, port, true); if (ret) return ret; } if (priv->ops->port_set_bcast_flood) { ret = priv->ops->port_set_bcast_flood(priv, port, true); if (ret) return ret; } return 0; } EXPORT_SYMBOL_NS_GPL(rtl83xx_setup_port_flood_control, "REALTEK_DSA"); MODULE_AUTHOR("Luiz Angelo Daros de Luca <luizluca@gmail.com>"); MODULE_AUTHOR("Linus Walleij <linus.walleij@linaro.org>"); MODULE_DESCRIPTION("Realtek DSA switches common module"); MODULE_LICENSE("GPL");
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