net: dsa: mv88e6xxx: add support for mv88e6250
This adds support for the Marvell 88E6250. I've checked that each member in the ops-structure makes sense, and basic switchdev functionality works fine. It uses the new dual_chip option, and since its port registers start at SMI address 0x08 or 0x18 (i.e., always sw_addr + 0x08), we need to introduce a new compatible string in order for the auto-identification in mv88e6xxx_detect() to work. The chip has four per port 16-bits statistics registers, two of which correspond to the existing "sw_in_filtered" and "sw_out_filtered" (but at offsets 0x13 and 0x10 rather than 0x12 and 0x13, because why should this be easy...). Wiring up those four statistics seems to require introducing a STATS_TYPE_PORT_6250 bit or similar, which seems a tad ugly, so for now this just allows access to the STATS_TYPE_BANK0 ones. The chip does have ptp support, and the existing mv88e6352_{gpio,avb,ptp}_ops at first glance seem like they would work out-of-the-box, but for simplicity (and lack of testing) I'm eliding this. Reviewed-by: Andrew Lunn <andrew@lunn.ch> Signed-off-by: Rasmus Villemoes <rasmus.villemoes@prevas.dk> Signed-off-by: David S. Miller <davem@davemloft.net>
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@ -829,6 +829,12 @@ static int mv88e6095_stats_get_strings(struct mv88e6xxx_chip *chip,
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STATS_TYPE_BANK0 | STATS_TYPE_PORT);
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}
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static int mv88e6250_stats_get_strings(struct mv88e6xxx_chip *chip,
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uint8_t *data)
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{
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return mv88e6xxx_stats_get_strings(chip, data, STATS_TYPE_BANK0);
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}
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static int mv88e6320_stats_get_strings(struct mv88e6xxx_chip *chip,
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uint8_t *data)
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{
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@ -899,6 +905,11 @@ static int mv88e6095_stats_get_sset_count(struct mv88e6xxx_chip *chip)
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STATS_TYPE_PORT);
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}
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static int mv88e6250_stats_get_sset_count(struct mv88e6xxx_chip *chip)
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{
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return mv88e6xxx_stats_get_sset_count(chip, STATS_TYPE_BANK0);
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}
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static int mv88e6320_stats_get_sset_count(struct mv88e6xxx_chip *chip)
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{
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return mv88e6xxx_stats_get_sset_count(chip, STATS_TYPE_BANK0 |
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@ -966,6 +977,13 @@ static int mv88e6095_stats_get_stats(struct mv88e6xxx_chip *chip, int port,
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0, MV88E6XXX_G1_STATS_OP_HIST_RX_TX);
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}
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static int mv88e6250_stats_get_stats(struct mv88e6xxx_chip *chip, int port,
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uint64_t *data)
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{
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return mv88e6xxx_stats_get_stats(chip, port, data, STATS_TYPE_BANK0,
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0, MV88E6XXX_G1_STATS_OP_HIST_RX_TX);
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}
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static int mv88e6320_stats_get_stats(struct mv88e6xxx_chip *chip, int port,
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uint64_t *data)
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{
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@ -3448,6 +3466,44 @@ static const struct mv88e6xxx_ops mv88e6240_ops = {
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.phylink_validate = mv88e6352_phylink_validate,
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};
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static const struct mv88e6xxx_ops mv88e6250_ops = {
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/* MV88E6XXX_FAMILY_6250 */
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.ieee_pri_map = mv88e6250_g1_ieee_pri_map,
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.ip_pri_map = mv88e6085_g1_ip_pri_map,
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.irl_init_all = mv88e6352_g2_irl_init_all,
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.get_eeprom = mv88e6xxx_g2_get_eeprom16,
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.set_eeprom = mv88e6xxx_g2_set_eeprom16,
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.set_switch_mac = mv88e6xxx_g2_set_switch_mac,
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.phy_read = mv88e6xxx_g2_smi_phy_read,
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.phy_write = mv88e6xxx_g2_smi_phy_write,
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.port_set_link = mv88e6xxx_port_set_link,
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.port_set_duplex = mv88e6xxx_port_set_duplex,
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.port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay,
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.port_set_speed = mv88e6250_port_set_speed,
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.port_tag_remap = mv88e6095_port_tag_remap,
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.port_set_frame_mode = mv88e6351_port_set_frame_mode,
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.port_set_egress_floods = mv88e6352_port_set_egress_floods,
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.port_set_ether_type = mv88e6351_port_set_ether_type,
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.port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting,
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.port_pause_limit = mv88e6097_port_pause_limit,
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.port_disable_pri_override = mv88e6xxx_port_disable_pri_override,
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.port_link_state = mv88e6250_port_link_state,
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.stats_snapshot = mv88e6320_g1_stats_snapshot,
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.stats_set_histogram = mv88e6095_g1_stats_set_histogram,
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.stats_get_sset_count = mv88e6250_stats_get_sset_count,
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.stats_get_strings = mv88e6250_stats_get_strings,
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.stats_get_stats = mv88e6250_stats_get_stats,
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.set_cpu_port = mv88e6095_g1_set_cpu_port,
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.set_egress_port = mv88e6095_g1_set_egress_port,
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.watchdog_ops = &mv88e6250_watchdog_ops,
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.mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu,
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.pot_clear = mv88e6xxx_g2_pot_clear,
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.reset = mv88e6250_g1_reset,
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.vtu_getnext = mv88e6250_g1_vtu_getnext,
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.vtu_loadpurge = mv88e6250_g1_vtu_loadpurge,
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.phylink_validate = mv88e6065_phylink_validate,
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};
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static const struct mv88e6xxx_ops mv88e6290_ops = {
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/* MV88E6XXX_FAMILY_6390 */
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.setup_errata = mv88e6390_setup_errata,
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@ -4233,6 +4289,27 @@ static const struct mv88e6xxx_info mv88e6xxx_table[] = {
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.ops = &mv88e6240_ops,
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},
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[MV88E6250] = {
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.prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6250,
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.family = MV88E6XXX_FAMILY_6250,
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.name = "Marvell 88E6250",
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.num_databases = 64,
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.num_ports = 7,
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.num_internal_phys = 5,
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.max_vid = 4095,
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.port_base_addr = 0x08,
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.phy_base_addr = 0x00,
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.global1_addr = 0x0f,
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.global2_addr = 0x07,
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.age_time_coeff = 15000,
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.g1_irqs = 9,
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.g2_irqs = 10,
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.atu_move_port_mask = 0xf,
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.dual_chip = true,
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.tag_protocol = DSA_TAG_PROTO_DSA,
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.ops = &mv88e6250_ops,
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},
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[MV88E6290] = {
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.prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6290,
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.family = MV88E6XXX_FAMILY_6390,
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@ -4841,6 +4918,10 @@ static const struct of_device_id mv88e6xxx_of_match[] = {
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.compatible = "marvell,mv88e6190",
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.data = &mv88e6xxx_table[MV88E6190],
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},
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{
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.compatible = "marvell,mv88e6250",
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.data = &mv88e6xxx_table[MV88E6250],
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},
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{ /* sentinel */ },
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};
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@ -62,6 +62,7 @@ enum mv88e6xxx_model {
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MV88E6190X,
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MV88E6191,
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MV88E6240,
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MV88E6250,
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MV88E6290,
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MV88E6320,
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MV88E6321,
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@ -80,6 +81,7 @@ enum mv88e6xxx_family {
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MV88E6XXX_FAMILY_6097, /* 6046 6085 6096 6097 */
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MV88E6XXX_FAMILY_6165, /* 6123 6161 6165 */
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MV88E6XXX_FAMILY_6185, /* 6108 6121 6122 6131 6152 6155 6182 6185 */
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MV88E6XXX_FAMILY_6250, /* 6250 */
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MV88E6XXX_FAMILY_6320, /* 6320 6321 */
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MV88E6XXX_FAMILY_6341, /* 6141 6341 */
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MV88E6XXX_FAMILY_6351, /* 6171 6175 6350 6351 */
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@ -182,6 +182,25 @@ int mv88e6185_g1_reset(struct mv88e6xxx_chip *chip)
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return mv88e6185_g1_wait_ppu_polling(chip);
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}
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int mv88e6250_g1_reset(struct mv88e6xxx_chip *chip)
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{
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u16 val;
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int err;
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/* Set the SWReset bit 15 */
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err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &val);
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if (err)
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return err;
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val |= MV88E6XXX_G1_CTL1_SW_RESET;
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err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, val);
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if (err)
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return err;
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return mv88e6xxx_g1_wait_init_ready(chip);
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}
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int mv88e6352_g1_reset(struct mv88e6xxx_chip *chip)
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{
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u16 val;
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@ -259,6 +259,7 @@ int mv88e6xxx_g1_set_switch_mac(struct mv88e6xxx_chip *chip, u8 *addr);
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int mv88e6185_g1_reset(struct mv88e6xxx_chip *chip);
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int mv88e6352_g1_reset(struct mv88e6xxx_chip *chip);
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int mv88e6250_g1_reset(struct mv88e6xxx_chip *chip);
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int mv88e6185_g1_ppu_enable(struct mv88e6xxx_chip *chip);
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int mv88e6185_g1_ppu_disable(struct mv88e6xxx_chip *chip);
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@ -122,6 +122,7 @@
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#define MV88E6XXX_PORT_SWITCH_ID_PROD_6191 0x1910
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#define MV88E6XXX_PORT_SWITCH_ID_PROD_6185 0x1a70
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#define MV88E6XXX_PORT_SWITCH_ID_PROD_6240 0x2400
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#define MV88E6XXX_PORT_SWITCH_ID_PROD_6250 0x2500
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#define MV88E6XXX_PORT_SWITCH_ID_PROD_6290 0x2900
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#define MV88E6XXX_PORT_SWITCH_ID_PROD_6321 0x3100
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#define MV88E6XXX_PORT_SWITCH_ID_PROD_6141 0x3400
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