diff options
| author | Linus Torvalds <torvalds@linux-foundation.org> | 2025-05-08 08:33:56 -0700 |
|---|---|---|
| committer | Linus Torvalds <torvalds@linux-foundation.org> | 2025-05-08 08:33:56 -0700 |
| commit | 2c89c1b655c0b06823f4ee8b055140d8628fc4da (patch) | |
| tree | 7888dd29bce2f54967877ce31c78cb62d225bcdb | |
| parent | 26a9a47ccd485759df22ff2be73a74753869976f (diff) | |
| parent | 3c44b2d615e6ee08d650c2864fdc4e68493eac0c (diff) | |
| download | linux-2c89c1b655c0b06823f4ee8b055140d8628fc4da.tar.gz linux-2c89c1b655c0b06823f4ee8b055140d8628fc4da.tar.bz2 linux-2c89c1b655c0b06823f4ee8b055140d8628fc4da.zip | |
Merge tag 'net-6.15-rc6' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net
Pull networking fixes from Paolo Abeni:
"Including fixes from CAN, WiFi and netfilter.
We have still a comple of regressions open due to the recent
drivers locking refactor. The patches are in-flight, but not
ready yet.
Current release - regressions:
- core: lock netdevices during dev_shutdown
- sch_htb: make htb_deactivate() idempotent
- eth: virtio-net: don't re-enable refill work too early
Current release - new code bugs:
- eth: icssg-prueth: fix kernel panic during concurrent Tx queue
access
Previous releases - regressions:
- gre: fix again IPv6 link-local address generation.
- eth: b53: fix learning on VLAN unaware bridges
Previous releases - always broken:
- wifi: fix out-of-bounds access during multi-link element
defragmentation
- can:
- initialize spin lock on device probe
- fix order of unregistration calls
- openvswitch: fix unsafe attribute parsing in output_userspace()
- eth:
- virtio-net: fix total qstat values
- mtk_eth_soc: reset all TX queues on DMA free
- fbnic: firmware IPC mailbox fixes"
* tag 'net-6.15-rc6' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net: (55 commits)
virtio-net: fix total qstat values
net: export a helper for adding up queue stats
fbnic: Do not allow mailbox to toggle to ready outside fbnic_mbx_poll_tx_ready
fbnic: Pull fbnic_fw_xmit_cap_msg use out of interrupt context
fbnic: Improve responsiveness of fbnic_mbx_poll_tx_ready
fbnic: Cleanup handling of completions
fbnic: Actually flush_tx instead of stalling out
fbnic: Add additional handling of IRQs
fbnic: Gate AXI read/write enabling on FW mailbox
fbnic: Fix initialization of mailbox descriptor rings
net: dsa: b53: do not set learning and unicast/multicast on up
net: dsa: b53: fix learning on VLAN unaware bridges
net: dsa: b53: fix toggling vlan_filtering
net: dsa: b53: do not program vlans when vlan filtering is off
net: dsa: b53: do not allow to configure VLAN 0
net: dsa: b53: always rejoin default untagged VLAN on bridge leave
net: dsa: b53: fix VLAN ID for untagged vlan on bridge leave
net: dsa: b53: fix flushing old pvid VLAN on pvid change
net: dsa: b53: fix clearing PVID of a port
net: dsa: b53: keep CPU port always tagged again
...
44 files changed, 1049 insertions, 429 deletions
diff --git a/Documentation/devicetree/bindings/net/ethernet-controller.yaml b/Documentation/devicetree/bindings/net/ethernet-controller.yaml index 45819b235800..a2d4c626f659 100644 --- a/Documentation/devicetree/bindings/net/ethernet-controller.yaml +++ b/Documentation/devicetree/bindings/net/ethernet-controller.yaml @@ -74,19 +74,17 @@ properties: - rev-rmii - moca - # RX and TX delays are added by the MAC when required + # RX and TX delays are provided by the PCB. See below - rgmii - # RGMII with internal RX and TX delays provided by the PHY, - # the MAC should not add the RX or TX delays in this case + # RX and TX delays are not provided by the PCB. This is the most + # frequent case. See below - rgmii-id - # RGMII with internal RX delay provided by the PHY, the MAC - # should not add an RX delay in this case + # TX delay is provided by the PCB. See below - rgmii-rxid - # RGMII with internal TX delay provided by the PHY, the MAC - # should not add an TX delay in this case + # RX delay is provided by the PCB. See below - rgmii-txid - rtbi - smii @@ -286,4 +284,89 @@ allOf: additionalProperties: true +# Informative +# =========== +# +# 'phy-modes' & 'phy-connection-type' properties 'rgmii', 'rgmii-id', +# 'rgmii-rxid', and 'rgmii-txid' are frequently used wrongly by +# developers. This informative section clarifies their usage. +# +# The RGMII specification requires a 2ns delay between the data and +# clock signals on the RGMII bus. How this delay is implemented is not +# specified. +# +# One option is to make the clock traces on the PCB longer than the +# data traces. A sufficiently difference in length can provide the 2ns +# delay. If both the RX and TX delays are implemented in this manner, +# 'rgmii' should be used, so indicating the PCB adds the delays. +# +# If the PCB does not add these delays via extra long traces, +# 'rgmii-id' should be used. Here, 'id' refers to 'internal delay', +# where either the MAC or PHY adds the delay. +# +# If only one of the two delays are implemented via extra long clock +# lines, either 'rgmii-rxid' or 'rgmii-txid' should be used, +# indicating the MAC or PHY should implement one of the delays +# internally, while the PCB implements the other delay. +# +# Device Tree describes hardware, and in this case, it describes the +# PCB between the MAC and the PHY, if the PCB implements delays or +# not. +# +# In practice, very few PCBs make use of extra long clock lines. Hence +# any RGMII phy mode other than 'rgmii-id' is probably wrong, and is +# unlikely to be accepted during review without details provided in +# the commit description and comments in the .dts file. +# +# When the PCB does not implement the delays, the MAC or PHY must. As +# such, this is software configuration, and so not described in Device +# Tree. +# +# The following describes how Linux implements the configuration of +# the MAC and PHY to add these delays when the PCB does not. As stated +# above, developers often get this wrong, and the aim of this section +# is reduce the frequency of these errors by Linux developers. Other +# users of the Device Tree may implement it differently, and still be +# consistent with both the normative and informative description +# above. +# +# By default in Linux, when using phylib/phylink, the MAC is expected +# to read the 'phy-mode' from Device Tree, not implement any delays, +# and pass the value to the PHY. The PHY will then implement delays as +# specified by the 'phy-mode'. The PHY should always be reconfigured +# to implement the needed delays, replacing any setting performed by +# strapping or the bootloader, etc. +# +# Experience to date is that all PHYs which implement RGMII also +# implement the ability to add or not add the needed delays. Hence +# this default is expected to work in all cases. Ignoring this default +# is likely to be questioned by Reviews, and require a strong argument +# to be accepted. +# +# There are a small number of cases where the MAC has hard coded +# delays which cannot be disabled. The 'phy-mode' only describes the +# PCB. The inability to disable the delays in the MAC does not change +# the meaning of 'phy-mode'. It does however mean that a 'phy-mode' of +# 'rgmii' is now invalid, it cannot be supported, since both the PCB +# and the MAC and PHY adding delays cannot result in a functional +# link. Thus the MAC should report a fatal error for any modes which +# cannot be supported. When the MAC implements the delay, it must +# ensure that the PHY does not also implement the same delay. So it +# must modify the phy-mode it passes to the PHY, removing the delay it +# has added. Failure to remove the delay will result in a +# non-functioning link. +# +# Sometimes there is a need to fine tune the delays. Often the MAC or +# PHY can perform this fine tuning. In the MAC node, the Device Tree +# properties 'rx-internal-delay-ps' and 'tx-internal-delay-ps' should +# be used to indicate fine tuning performed by the MAC. The values +# expected here are small. A value of 2000ps, i.e 2ns, and a phy-mode +# of 'rgmii' will not be accepted by Reviewers. +# +# If the PHY is to perform fine tuning, the properties +# 'rx-internal-delay-ps' and 'tx-internal-delay-ps' in the PHY node +# should be used. When the PHY is implementing delays, e.g. 'rgmii-id' +# these properties should have a value near to 2000ps. If the PCB is +# implementing delays, e.g. 'rgmii', a small value can be used to fine +# tune the delay added by the PCB. ... diff --git a/drivers/net/can/m_can/m_can.c b/drivers/net/can/m_can/m_can.c index 884a6352c42b..c2c116ce1087 100644 --- a/drivers/net/can/m_can/m_can.c +++ b/drivers/net/can/m_can/m_can.c @@ -2379,6 +2379,7 @@ struct m_can_classdev *m_can_class_allocate_dev(struct device *dev, SET_NETDEV_DEV(net_dev, dev); m_can_of_parse_mram(class_dev, mram_config_vals); + spin_lock_init(&class_dev->tx_handling_spinlock); out: return class_dev; } @@ -2462,9 +2463,9 @@ EXPORT_SYMBOL_GPL(m_can_class_register); void m_can_class_unregister(struct m_can_classdev *cdev) { + unregister_candev(cdev->net); if (cdev->is_peripheral) can_rx_offload_del(&cdev->offload); - unregister_candev(cdev->net); } EXPORT_SYMBOL_GPL(m_can_class_unregister); diff --git a/drivers/net/can/rockchip/rockchip_canfd-core.c b/drivers/net/can/rockchip/rockchip_canfd-core.c index 7107a37da36c..c3fb3176ce42 100644 --- a/drivers/net/can/rockchip/rockchip_canfd-core.c +++ b/drivers/net/can/rockchip/rockchip_canfd-core.c @@ -937,8 +937,8 @@ static void rkcanfd_remove(struct platform_device *pdev) struct rkcanfd_priv *priv = platform_get_drvdata(pdev); struct net_device *ndev = priv->ndev; - can_rx_offload_del(&priv->offload); rkcanfd_unregister(priv); + can_rx_offload_del(&priv->offload); free_candev(ndev); } diff --git a/drivers/net/can/spi/mcp251xfd/mcp251xfd-core.c b/drivers/net/can/spi/mcp251xfd/mcp251xfd-core.c index 3bc56517fe7a..c30b04f8fc0d 100644 --- a/drivers/net/can/spi/mcp251xfd/mcp251xfd-core.c +++ b/drivers/net/can/spi/mcp251xfd/mcp251xfd-core.c @@ -75,6 +75,24 @@ static const struct can_bittiming_const mcp251xfd_data_bittiming_const = { .brp_inc = 1, }; +/* The datasheet of the mcp2518fd (DS20006027B) specifies a range of + * [-64,63] for TDCO, indicating a relative TDCO. + * + * Manual tests have shown, that using a relative TDCO configuration + * results in bus off, while an absolute configuration works. + * + * For TDCO use the max value (63) from the data sheet, but 0 as the + * minimum. + */ +static const struct can_tdc_const mcp251xfd_tdc_const = { + .tdcv_min = 0, + .tdcv_max = 63, + .tdco_min = 0, + .tdco_max = 63, + .tdcf_min = 0, + .tdcf_max = 0, +}; + static const char *__mcp251xfd_get_model_str(enum mcp251xfd_model model) { switch (model) { @@ -510,8 +528,7 @@ static int mcp251xfd_set_bittiming(const struct mcp251xfd_priv *priv) { const struct can_bittiming *bt = &priv->can.bittiming; const struct can_bittiming *dbt = &priv->can.data_bittiming; - u32 val = 0; - s8 tdco; + u32 tdcmod, val = 0; int err; /* CAN Control Register @@ -575,11 +592,16 @@ static int mcp251xfd_set_bittiming(const struct mcp251xfd_priv *priv) return err; /* Transmitter Delay Compensation */ - tdco = clamp_t(int, dbt->brp * (dbt->prop_seg + dbt->phase_seg1), - -64, 63); - val = FIELD_PREP(MCP251XFD_REG_TDC_TDCMOD_MASK, - MCP251XFD_REG_TDC_TDCMOD_AUTO) | - FIELD_PREP(MCP251XFD_REG_TDC_TDCO_MASK, tdco); + if (priv->can.ctrlmode & CAN_CTRLMODE_TDC_AUTO) + tdcmod = MCP251XFD_REG_TDC_TDCMOD_AUTO; + else if (priv->can.ctrlmode & CAN_CTRLMODE_TDC_MANUAL) + tdcmod = MCP251XFD_REG_TDC_TDCMOD_MANUAL; + else + tdcmod = MCP251XFD_REG_TDC_TDCMOD_DISABLED; + + val = FIELD_PREP(MCP251XFD_REG_TDC_TDCMOD_MASK, tdcmod) | + FIELD_PREP(MCP251XFD_REG_TDC_TDCV_MASK, priv->can.tdc.tdcv) | + FIELD_PREP(MCP251XFD_REG_TDC_TDCO_MASK, priv->can.tdc.tdco); return regmap_write(priv->map_reg, MCP251XFD_REG_TDC, val); } @@ -2083,10 +2105,12 @@ static int mcp251xfd_probe(struct spi_device *spi) priv->can.do_get_berr_counter = mcp251xfd_get_berr_counter; priv->can.bittiming_const = &mcp251xfd_bittiming_const; priv->can.data_bittiming_const = &mcp251xfd_data_bittiming_const; + priv->can.tdc_const = &mcp251xfd_tdc_const; priv->can.ctrlmode_supported = CAN_CTRLMODE_LOOPBACK | CAN_CTRLMODE_LISTENONLY | CAN_CTRLMODE_BERR_REPORTING | CAN_CTRLMODE_FD | CAN_CTRLMODE_FD_NON_ISO | - CAN_CTRLMODE_CC_LEN8_DLC; + CAN_CTRLMODE_CC_LEN8_DLC | CAN_CTRLMODE_TDC_AUTO | + CAN_CTRLMODE_TDC_MANUAL; set_bit(MCP251XFD_FLAGS_DOWN, priv->flags); priv->ndev = ndev; priv->spi = spi; @@ -2174,8 +2198,8 @@ static void mcp251xfd_remove(struct spi_device *spi) struct mcp251xfd_priv *priv = spi_get_drvdata(spi); struct net_device *ndev = priv->ndev; - can_rx_offload_del(&priv->offload); mcp251xfd_unregister(priv); + can_rx_offload_del(&priv->offload); spi->max_speed_hz = priv->spi_max_speed_hz_orig; free_candev(ndev); } diff --git a/drivers/net/dsa/b53/b53_common.c b/drivers/net/dsa/b53/b53_common.c index e5ba71897906..9eb39cfa5fb2 100644 --- a/drivers/net/dsa/b53/b53_common.c +++ b/drivers/net/dsa/b53/b53_common.c @@ -373,15 +373,17 @@ static void b53_enable_vlan(struct b53_device *dev, int port, bool enable, b53_read8(dev, B53_VLAN_PAGE, B53_VLAN_CTRL5, &vc5); } + vc1 &= ~VC1_RX_MCST_FWD_EN; + if (enable) { vc0 |= VC0_VLAN_EN | VC0_VID_CHK_EN | VC0_VID_HASH_VID; - vc1 |= VC1_RX_MCST_UNTAG_EN | VC1_RX_MCST_FWD_EN; + vc1 |= VC1_RX_MCST_UNTAG_EN; vc4 &= ~VC4_ING_VID_CHECK_MASK; if (enable_filtering) { vc4 |= VC4_ING_VID_VIO_DROP << VC4_ING_VID_CHECK_S; vc5 |= VC5_DROP_VTABLE_MISS; } else { - vc4 |= VC4_ING_VID_VIO_FWD << VC4_ING_VID_CHECK_S; + vc4 |= VC4_NO_ING_VID_CHK << VC4_ING_VID_CHECK_S; vc5 &= ~VC5_DROP_VTABLE_MISS; } @@ -393,7 +395,7 @@ static void b53_enable_vlan(struct b53_device *dev, int port, bool enable, } else { vc0 &= ~(VC0_VLAN_EN | VC0_VID_CHK_EN | VC0_VID_HASH_VID); - vc1 &= ~(VC1_RX_MCST_UNTAG_EN | VC1_RX_MCST_FWD_EN); + vc1 &= ~VC1_RX_MCST_UNTAG_EN; vc4 &= ~VC4_ING_VID_CHECK_MASK; vc5 &= ~VC5_DROP_VTABLE_MISS; @@ -576,6 +578,18 @@ static void b53_eee_enable_set(struct dsa_switch *ds, int port, bool enable) b53_write16(dev, B53_EEE_PAGE, B53_EEE_EN_CTRL, reg); } +int b53_setup_port(struct dsa_switch *ds, int port) +{ + struct b53_device *dev = ds->priv; + + b53_port_set_ucast_flood(dev, port, true); + b53_port_set_mcast_flood(dev, port, true); + b53_port_set_learning(dev, port, false); + + return 0; +} +EXPORT_SYMBOL(b53_setup_port); + int b53_enable_port(struct dsa_switch *ds, int port, struct phy_device *phy) { struct b53_device *dev = ds->priv; @@ -588,10 +602,6 @@ int b53_enable_port(struct dsa_switch *ds, int port, struct phy_device *phy) cpu_port = dsa_to_port(ds, port)->cpu_dp->index; - b53_port_set_ucast_flood(dev, port, true); - b53_port_set_mcast_flood(dev, port, true); - b53_port_set_learning(dev, port, false); - if (dev->ops->irq_enable) ret = dev->ops->irq_enable(dev, port); if (ret) @@ -722,10 +732,6 @@ static void b53_enable_cpu_port(struct b53_device *dev, int port) b53_write8(dev, B53_CTRL_PAGE, B53_PORT_CTRL(port), port_ctrl); b53_brcm_hdr_setup(dev->ds, port); - - b53_port_set_ucast_flood(dev, port, true); - b53_port_set_mcast_flood(dev, port, true); - b53_port_set_learning(dev, port, false); } static void b53_enable_mib(struct b53_device *dev) @@ -761,6 +767,22 @@ static bool b53_vlan_port_needs_forced_tagged(struct dsa_switch *ds, int port) return dev->tag_protocol == DSA_TAG_PROTO_NONE && dsa_is_cpu_port(ds, port); } +static bool b53_vlan_port_may_join_untagged(struct dsa_switch *ds, int port) +{ + struct b53_device *dev = ds->priv; + struct dsa_port *dp; + + if (!dev->vlan_filtering) + return true; + + dp = dsa_to_port(ds, port); + + if (dsa_port_is_cpu(dp)) + return true; + + return dp->bridge == NULL; +} + int b53_configure_vlan(struct dsa_switch *ds) { struct b53_device *dev = ds->priv; @@ -779,7 +801,7 @@ int b53_configure_vlan(struct dsa_switch *ds) b53_do_vlan_op(dev, VTA_CMD_CLEAR); } - b53_enable_vlan(dev, -1, dev->vlan_enabled, ds->vlan_filtering); + b53_enable_vlan(dev, -1, dev->vlan_enabled, dev->vlan_filtering); /* Create an untagged VLAN entry for the default PVID in case * CONFIG_VLAN_8021Q is disabled and there are no calls to @@ -787,26 +809,39 @@ int b53_configure_vlan(struct dsa_switch *ds) * entry. Do this only when the tagging protocol is not * DSA_TAG_PROTO_NONE */ + v = &dev->vlans[def_vid]; b53_for_each_port(dev, i) { - v = &dev->vlans[def_vid]; - v->members |= BIT(i); + if (!b53_vlan_port_may_join_untagged(ds, i)) + continue; + + vl.members |= BIT(i); if (!b53_vlan_port_needs_forced_tagged(ds, i)) - v->untag = v->members; - b53_write16(dev, B53_VLAN_PAGE, - B53_VLAN_PORT_DEF_TAG(i), def_vid); + vl.untag = vl.members; + b53_write16(dev, B53_VLAN_PAGE, B53_VLAN_PORT_DEF_TAG(i), + def_vid); } + b53_set_vlan_entry(dev, def_vid, &vl); - /* Upon initial call we have not set-up any VLANs, but upon - * system resume, we need to restore all VLAN entries. - */ - for (vid = def_vid; vid < dev->num_vlans; vid++) { - v = &dev->vlans[vid]; + if (dev->vlan_filtering) { + /* Upon initial call we have not set-up any VLANs, but upon + * system resume, we need to restore all VLAN entries. + */ + for (vid = def_vid + 1; vid < dev->num_vlans; vid++) { + v = &dev->vlans[vid]; - if (!v->members) - continue; + if (!v->members) + continue; + + b53_set_vlan_entry(dev, vid, v); + b53_fast_age_vlan(dev, vid); + } - b53_set_vlan_entry(dev, vid, v); - b53_fast_age_vlan(dev, vid); + b53_for_each_port(dev, i) { + if (!dsa_is_cpu_port(ds, i)) + b53_write16(dev, B53_VLAN_PAGE, + B53_VLAN_PORT_DEF_TAG(i), + dev->ports[i].pvid); + } } return 0; @@ -1125,7 +1160,9 @@ EXPORT_SYMBOL(b53_setup_devlink_resources); static int b53_setup(struct dsa_switch *ds) { struct b53_device *dev = ds->priv; + struct b53_vlan *vl; unsigned int port; + u16 pvid; int ret; /* Request bridge PVID untagged when DSA_TAG_PROTO_NONE is set @@ -1133,12 +1170,26 @@ static int b53_setup(struct dsa_switch *ds) */ ds->untag_bridge_pvid = dev->tag_protocol == DSA_TAG_PROTO_NONE; + /* The switch does not tell us the original VLAN for untagged + * packets, so keep the CPU port always tagged. + */ + ds->untag_vlan_aware_bridge_pvid = true; + ret = b53_reset_switch(dev); if (ret) { dev_err(ds->dev, "failed to reset switch\n"); return ret; } + /* setup default vlan for filtering mode */ + pvid = b53_default_pvid(dev); + vl = &dev->vlans[pvid]; + b53_for_each_port(dev, port) { + vl->members |= BIT(port); + if (!b53_vlan_port_needs_forced_tagged(ds, port)) + vl->untag |= BIT(port); + } + b53_reset_mib(dev); ret = b53_apply_config(dev); @@ -1492,7 +1543,10 @@ int b53_vlan_filtering(struct dsa_switch *ds, int port, bool vlan_filtering, { struct b53_device *dev = ds->priv; - b53_enable_vlan(dev, port, dev->vlan_enabled, vlan_filtering); + if (dev->vlan_filtering != vlan_filtering) { + dev->vlan_filtering = vlan_filtering; + b53_apply_config(dev); + } return 0; } @@ -1517,7 +1571,7 @@ static int b53_vlan_prepare(struct dsa_switch *ds, int port, if (vlan->vid >= dev->num_vlans) return -ERANGE; - b53_enable_vlan(dev, port, true, ds->vlan_filtering); + b53_enable_vlan(dev, port, true, dev->vlan_filtering); return 0; } @@ -1530,18 +1584,29 @@ int b53_vlan_add(struct dsa_switch *ds, int port, bool untagged = vlan->flags & BRIDGE_VLAN_INFO_UNTAGGED; bool pvid = vlan->flags & BRIDGE_VLAN_INFO_PVID; struct b53_vlan *vl; + u16 old_pvid, new_pvid; int err; err = b53_vlan_prepare(ds, port, vlan); if (err) return err; - vl = &dev->vlans[vlan->vid]; + if (vlan->vid == 0) + return 0; - b53_get_vlan_entry(dev, vlan->vid, vl); + old_pvid = dev->ports[port].pvid; + if (pvid) + new_pvid = vlan->vid; + else if (!pvid && vlan->vid == old_pvid) + new_pvid = b53_default_pvid(dev); + else + new_pvid = old_pvid; + dev->ports[port].pvid = new_pvid; + + vl = &dev->vlans[vlan->vid]; - if (vlan->vid == 0 && vlan->vid == b53_default_pvid(dev)) - untagged = true; + if (dsa_is_cpu_port(ds, port)) + untagged = false; vl->members |= BIT(port); if (untagged && !b53_vlan_port_needs_forced_tagged(ds, port)) @@ -1549,13 +1614,16 @@ int b53_vlan_add(struct dsa_switch *ds, int port, else vl->untag &= ~BIT(port); + if (!dev->vlan_filtering) + return 0; + b53_set_vlan_entry(dev, vlan->vid, vl); b53_fast_age_vlan(dev, vlan->vid); - if (pvid && !dsa_is_cpu_port(ds, port)) { + if (!dsa_is_cpu_port(ds, port) && new_pvid != old_pvid) { b53_write16(dev, B53_VLAN_PAGE, B53_VLAN_PORT_DEF_TAG(port), - vlan->vid); - b53_fast_age_vlan(dev, vlan->vid); + new_pvid); + b53_fast_age_vlan(dev, old_pvid); } return 0; @@ -1570,20 +1638,25 @@ int b53_vlan_del(struct dsa_switch *ds, int port, struct b53_vlan *vl; u16 pvid; - b53_read16(dev, B53_VLAN_PAGE, B53_VLAN_PORT_DEF_TAG(port), &pvid); + if (vlan->vid == 0) + return 0; - vl = &dev->vlans[vlan->vid]; + pvid = dev->ports[port].pvid; - b53_get_vlan_entry(dev, vlan->vid, vl); + vl = &dev->vlans[vlan->vid]; vl->members &= ~BIT(port); if (pvid == vlan->vid) pvid = b53_default_pvid(dev); + dev->ports[port].pvid = pvid; if (untagged && !b53_vlan_port_needs_forced_tagged(ds, port)) vl->untag &= ~(BIT(port)); + if (!dev->vlan_filtering) + return 0; + b53_set_vlan_entry(dev, vlan->vid, vl); b53_fast_age_vlan(dev, vlan->vid); @@ -1916,8 +1989,9 @@ int b53_br_join(struct dsa_switch *ds, int port, struct dsa_bridge bridge, bool *tx_fwd_offload, struct netlink_ext_ack *extack) { struct b53_device *dev = ds->priv; + struct b53_vlan *vl; s8 cpu_port = dsa_to_port(ds, port)->cpu_dp->index; - u16 pvlan, reg; + u16 pvlan, reg, pvid; unsigned int i; /* On 7278, port 7 which connects to the ASP should only receive @@ -1926,15 +2000,29 @@ int b53_br_join(struct dsa_switch *ds, int port, struct dsa_bridge bridge, if (dev->chip_id == BCM7278_DEVICE_ID && port == 7) return -EINVAL; - /* Make this port leave the all VLANs join since we will have proper - * VLAN entries from now on - */ - if (is58xx(dev)) { - b53_read16(dev, B53_VLAN_PAGE, B53_JOIN_ALL_VLAN_EN, ®); - reg &= ~BIT(port); - if ((reg & BIT(cpu_port)) == BIT(cpu_port)) - reg &= ~BIT(cpu_port); - b53_write16(dev, B53_VLAN_PAGE, B53_JOIN_ALL_VLAN_EN, reg); + pvid = b53_default_pvid(dev); + vl = &dev->vlans[pvid]; + + if (dev->vlan_filtering) { + /* Make this port leave the all VLANs join since we will have + * proper VLAN entries from now on + */ + if (is58xx(dev)) { + b53_read16(dev, B53_VLAN_PAGE, B53_JOIN_ALL_VLAN_EN, + ®); + reg &= ~BIT(port); + if ((reg & BIT(cpu_port)) == BIT(cpu_port)) + reg &= ~BIT(cpu_port); + b53_write16(dev, B53_VLAN_PAGE, B53_JOIN_ALL_VLAN_EN, + reg); + } + + |
