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author | Daniel Baumann <daniel.baumann@progress-linux.org> | 2024-04-07 18:49:45 +0000 |
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committer | Daniel Baumann <daniel.baumann@progress-linux.org> | 2024-04-07 18:49:45 +0000 |
commit | 2c3c1048746a4622d8c89a29670120dc8fab93c4 (patch) | |
tree | 848558de17fb3008cdf4d861b01ac7781903ce39 /drivers/net/dsa/mv88e6xxx | |
parent | Initial commit. (diff) | |
download | linux-2c3c1048746a4622d8c89a29670120dc8fab93c4.tar.xz linux-2c3c1048746a4622d8c89a29670120dc8fab93c4.zip |
Adding upstream version 6.1.76.upstream/6.1.76
Signed-off-by: Daniel Baumann <daniel.baumann@progress-linux.org>
Diffstat (limited to 'drivers/net/dsa/mv88e6xxx')
29 files changed, 19483 insertions, 0 deletions
diff --git a/drivers/net/dsa/mv88e6xxx/Kconfig b/drivers/net/dsa/mv88e6xxx/Kconfig new file mode 100644 index 000000000..e3181d547 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/Kconfig @@ -0,0 +1,19 @@ +# SPDX-License-Identifier: GPL-2.0-only +config NET_DSA_MV88E6XXX + tristate "Marvell 88E6xxx Ethernet switch fabric support" + depends on NET_DSA + select IRQ_DOMAIN + select NET_DSA_TAG_EDSA + select NET_DSA_TAG_DSA + help + This driver adds support for most of the Marvell 88E6xxx models of + Ethernet switch chips, except 88E6060. + +config NET_DSA_MV88E6XXX_PTP + bool "PTP support for Marvell 88E6xxx" + default n + depends on (NET_DSA_MV88E6XXX = y && PTP_1588_CLOCK = y) || \ + (NET_DSA_MV88E6XXX = m && PTP_1588_CLOCK) + help + Say Y to enable PTP hardware timestamping on Marvell 88E6xxx switch + chips that support it. diff --git a/drivers/net/dsa/mv88e6xxx/Makefile b/drivers/net/dsa/mv88e6xxx/Makefile new file mode 100644 index 000000000..49bf358b9 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/Makefile @@ -0,0 +1,21 @@ +# SPDX-License-Identifier: GPL-2.0 +obj-$(CONFIG_NET_DSA_MV88E6XXX) += mv88e6xxx.o +mv88e6xxx-objs := chip.o +mv88e6xxx-objs += devlink.o +mv88e6xxx-objs += global1.o +mv88e6xxx-objs += global1_atu.o +mv88e6xxx-objs += global1_vtu.o +mv88e6xxx-objs += global2.o +mv88e6xxx-objs += global2_avb.o +mv88e6xxx-objs += global2_scratch.o +mv88e6xxx-$(CONFIG_NET_DSA_MV88E6XXX_PTP) += hwtstamp.o +mv88e6xxx-objs += phy.o +mv88e6xxx-objs += port.o +mv88e6xxx-objs += port_hidden.o +mv88e6xxx-$(CONFIG_NET_DSA_MV88E6XXX_PTP) += ptp.o +mv88e6xxx-objs += serdes.o +mv88e6xxx-objs += smi.o +mv88e6xxx-objs += trace.o + +# for tracing framework to find trace.h +CFLAGS_trace.o := -I$(src) diff --git a/drivers/net/dsa/mv88e6xxx/chip.c b/drivers/net/dsa/mv88e6xxx/chip.c new file mode 100644 index 000000000..ba906dfab --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/chip.c @@ -0,0 +1,7270 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88e6xxx Ethernet switch single-chip support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016 Andrew Lunn <andrew@lunn.ch> + * + * Copyright (c) 2016-2017 Savoir-faire Linux Inc. + * Vivien Didelot <vivien.didelot@savoirfairelinux.com> + */ + +#include <linux/bitfield.h> +#include <linux/delay.h> +#include <linux/dsa/mv88e6xxx.h> +#include <linux/etherdevice.h> +#include <linux/ethtool.h> +#include <linux/if_bridge.h> +#include <linux/interrupt.h> +#include <linux/irq.h> +#include <linux/irqdomain.h> +#include <linux/jiffies.h> +#include <linux/list.h> +#include <linux/mdio.h> +#include <linux/module.h> +#include <linux/of_device.h> +#include <linux/of_irq.h> +#include <linux/of_mdio.h> +#include <linux/platform_data/mv88e6xxx.h> +#include <linux/netdevice.h> +#include <linux/gpio/consumer.h> +#include <linux/phylink.h> +#include <net/dsa.h> + +#include "chip.h" +#include "devlink.h" +#include "global1.h" +#include "global2.h" +#include "hwtstamp.h" +#include "phy.h" +#include "port.h" +#include "ptp.h" +#include "serdes.h" +#include "smi.h" + +static void assert_reg_lock(struct mv88e6xxx_chip *chip) +{ + if (unlikely(!mutex_is_locked(&chip->reg_lock))) { + dev_err(chip->dev, "Switch registers lock not held!\n"); + dump_stack(); + } +} + +int mv88e6xxx_read(struct mv88e6xxx_chip *chip, int addr, int reg, u16 *val) +{ + int err; + + assert_reg_lock(chip); + + err = mv88e6xxx_smi_read(chip, addr, reg, val); + if (err) + return err; + + dev_dbg(chip->dev, "<- addr: 0x%.2x reg: 0x%.2x val: 0x%.4x\n", + addr, reg, *val); + + return 0; +} + +int mv88e6xxx_write(struct mv88e6xxx_chip *chip, int addr, int reg, u16 val) +{ + int err; + + assert_reg_lock(chip); + + err = mv88e6xxx_smi_write(chip, addr, reg, val); + if (err) + return err; + + dev_dbg(chip->dev, "-> addr: 0x%.2x reg: 0x%.2x val: 0x%.4x\n", + addr, reg, val); + + return 0; +} + +int mv88e6xxx_wait_mask(struct mv88e6xxx_chip *chip, int addr, int reg, + u16 mask, u16 val) +{ + const unsigned long timeout = jiffies + msecs_to_jiffies(50); + u16 data; + int err; + int i; + + /* There's no bus specific operation to wait for a mask. Even + * if the initial poll takes longer than 50ms, always do at + * least one more attempt. + */ + for (i = 0; time_before(jiffies, timeout) || (i < 2); i++) { + err = mv88e6xxx_read(chip, addr, reg, &data); + if (err) + return err; + + if ((data & mask) == val) + return 0; + + if (i < 2) + cpu_relax(); + else + usleep_range(1000, 2000); + } + + err = mv88e6xxx_read(chip, addr, reg, &data); + if (err) + return err; + + if ((data & mask) == val) + return 0; + + dev_err(chip->dev, "Timeout while waiting for switch\n"); + return -ETIMEDOUT; +} + +int mv88e6xxx_wait_bit(struct mv88e6xxx_chip *chip, int addr, int reg, + int bit, int val) +{ + return mv88e6xxx_wait_mask(chip, addr, reg, BIT(bit), + val ? BIT(bit) : 0x0000); +} + +struct mii_bus *mv88e6xxx_default_mdio_bus(struct mv88e6xxx_chip *chip) +{ + struct mv88e6xxx_mdio_bus *mdio_bus; + + mdio_bus = list_first_entry(&chip->mdios, struct mv88e6xxx_mdio_bus, + list); + if (!mdio_bus) + return NULL; + + return mdio_bus->bus; +} + +static void mv88e6xxx_g1_irq_mask(struct irq_data *d) +{ + struct mv88e6xxx_chip *chip = irq_data_get_irq_chip_data(d); + unsigned int n = d->hwirq; + + chip->g1_irq.masked |= (1 << n); +} + +static void mv88e6xxx_g1_irq_unmask(struct irq_data *d) +{ + struct mv88e6xxx_chip *chip = irq_data_get_irq_chip_data(d); + unsigned int n = d->hwirq; + + chip->g1_irq.masked &= ~(1 << n); +} + +static irqreturn_t mv88e6xxx_g1_irq_thread_work(struct mv88e6xxx_chip *chip) +{ + unsigned int nhandled = 0; + unsigned int sub_irq; + unsigned int n; + u16 reg; + u16 ctl1; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_STS, ®); + mv88e6xxx_reg_unlock(chip); + + if (err) + goto out; + + do { + for (n = 0; n < chip->g1_irq.nirqs; ++n) { + if (reg & (1 << n)) { + sub_irq = irq_find_mapping(chip->g1_irq.domain, + n); + handle_nested_irq(sub_irq); + ++nhandled; + } + } + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &ctl1); + if (err) + goto unlock; + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_STS, ®); +unlock: + mv88e6xxx_reg_unlock(chip); + if (err) + goto out; + ctl1 &= GENMASK(chip->g1_irq.nirqs, 0); + } while (reg & ctl1); + +out: + return (nhandled > 0 ? IRQ_HANDLED : IRQ_NONE); +} + +static irqreturn_t mv88e6xxx_g1_irq_thread_fn(int irq, void *dev_id) +{ + struct mv88e6xxx_chip *chip = dev_id; + + return mv88e6xxx_g1_irq_thread_work(chip); +} + +static void mv88e6xxx_g1_irq_bus_lock(struct irq_data *d) +{ + struct mv88e6xxx_chip *chip = irq_data_get_irq_chip_data(d); + + mv88e6xxx_reg_lock(chip); +} + +static void mv88e6xxx_g1_irq_bus_sync_unlock(struct irq_data *d) +{ + struct mv88e6xxx_chip *chip = irq_data_get_irq_chip_data(d); + u16 mask = GENMASK(chip->g1_irq.nirqs, 0); + u16 reg; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, ®); + if (err) + goto out; + + reg &= ~mask; + reg |= (~chip->g1_irq.masked & mask); + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, reg); + if (err) + goto out; + +out: + mv88e6xxx_reg_unlock(chip); +} + +static const struct irq_chip mv88e6xxx_g1_irq_chip = { + .name = "mv88e6xxx-g1", + .irq_mask = mv88e6xxx_g1_irq_mask, + .irq_unmask = mv88e6xxx_g1_irq_unmask, + .irq_bus_lock = mv88e6xxx_g1_irq_bus_lock, + .irq_bus_sync_unlock = mv88e6xxx_g1_irq_bus_sync_unlock, +}; + +static int mv88e6xxx_g1_irq_domain_map(struct irq_domain *d, + unsigned int irq, + irq_hw_number_t hwirq) +{ + struct mv88e6xxx_chip *chip = d->host_data; + + irq_set_chip_data(irq, d->host_data); + irq_set_chip_and_handler(irq, &chip->g1_irq.chip, handle_level_irq); + irq_set_noprobe(irq); + + return 0; +} + +static const struct irq_domain_ops mv88e6xxx_g1_irq_domain_ops = { + .map = mv88e6xxx_g1_irq_domain_map, + .xlate = irq_domain_xlate_twocell, +}; + +/* To be called with reg_lock held */ +static void mv88e6xxx_g1_irq_free_common(struct mv88e6xxx_chip *chip) +{ + int irq, virq; + u16 mask; + + mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &mask); + mask &= ~GENMASK(chip->g1_irq.nirqs, 0); + mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, mask); + + for (irq = 0; irq < chip->g1_irq.nirqs; irq++) { + virq = irq_find_mapping(chip->g1_irq.domain, irq); + irq_dispose_mapping(virq); + } + + irq_domain_remove(chip->g1_irq.domain); +} + +static void mv88e6xxx_g1_irq_free(struct mv88e6xxx_chip *chip) +{ + /* + * free_irq must be called without reg_lock taken because the irq + * handler takes this lock, too. + */ + free_irq(chip->irq, chip); + + mv88e6xxx_reg_lock(chip); + mv88e6xxx_g1_irq_free_common(chip); + mv88e6xxx_reg_unlock(chip); +} + +static int mv88e6xxx_g1_irq_setup_common(struct mv88e6xxx_chip *chip) +{ + int err, irq, virq; + u16 reg, mask; + + chip->g1_irq.nirqs = chip->info->g1_irqs; + chip->g1_irq.domain = irq_domain_add_simple( + NULL, chip->g1_irq.nirqs, 0, + &mv88e6xxx_g1_irq_domain_ops, chip); + if (!chip->g1_irq.domain) + return -ENOMEM; + + for (irq = 0; irq < chip->g1_irq.nirqs; irq++) + irq_create_mapping(chip->g1_irq.domain, irq); + + chip->g1_irq.chip = mv88e6xxx_g1_irq_chip; + chip->g1_irq.masked = ~0; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &mask); + if (err) + goto out_mapping; + + mask &= ~GENMASK(chip->g1_irq.nirqs, 0); + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, mask); + if (err) + goto out_disable; + + /* Reading the interrupt status clears (most of) them */ + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_STS, ®); + if (err) + goto out_disable; + + return 0; + +out_disable: + mask &= ~GENMASK(chip->g1_irq.nirqs, 0); + mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, mask); + +out_mapping: + for (irq = 0; irq < 16; irq++) { + virq = irq_find_mapping(chip->g1_irq.domain, irq); + irq_dispose_mapping(virq); + } + + irq_domain_remove(chip->g1_irq.domain); + + return err; +} + +static int mv88e6xxx_g1_irq_setup(struct mv88e6xxx_chip *chip) +{ + static struct lock_class_key lock_key; + static struct lock_class_key request_key; + int err; + + err = mv88e6xxx_g1_irq_setup_common(chip); + if (err) + return err; + + /* These lock classes tells lockdep that global 1 irqs are in + * a different category than their parent GPIO, so it won't + * report false recursion. + */ + irq_set_lockdep_class(chip->irq, &lock_key, &request_key); + + snprintf(chip->irq_name, sizeof(chip->irq_name), + "mv88e6xxx-%s", dev_name(chip->dev)); + + mv88e6xxx_reg_unlock(chip); + err = request_threaded_irq(chip->irq, NULL, + mv88e6xxx_g1_irq_thread_fn, + IRQF_ONESHOT | IRQF_SHARED, + chip->irq_name, chip); + mv88e6xxx_reg_lock(chip); + if (err) + mv88e6xxx_g1_irq_free_common(chip); + + return err; +} + +static void mv88e6xxx_irq_poll(struct kthread_work *work) +{ + struct mv88e6xxx_chip *chip = container_of(work, + struct mv88e6xxx_chip, + irq_poll_work.work); + mv88e6xxx_g1_irq_thread_work(chip); + + kthread_queue_delayed_work(chip->kworker, &chip->irq_poll_work, + msecs_to_jiffies(100)); +} + +static int mv88e6xxx_irq_poll_setup(struct mv88e6xxx_chip *chip) +{ + int err; + + err = mv88e6xxx_g1_irq_setup_common(chip); + if (err) + return err; + + kthread_init_delayed_work(&chip->irq_poll_work, + mv88e6xxx_irq_poll); + + chip->kworker = kthread_create_worker(0, "%s", dev_name(chip->dev)); + if (IS_ERR(chip->kworker)) + return PTR_ERR(chip->kworker); + + kthread_queue_delayed_work(chip->kworker, &chip->irq_poll_work, + msecs_to_jiffies(100)); + + return 0; +} + +static void mv88e6xxx_irq_poll_free(struct mv88e6xxx_chip *chip) +{ + kthread_cancel_delayed_work_sync(&chip->irq_poll_work); + kthread_destroy_worker(chip->kworker); + + mv88e6xxx_reg_lock(chip); + mv88e6xxx_g1_irq_free_common(chip); + mv88e6xxx_reg_unlock(chip); +} + +static int mv88e6xxx_port_config_interface(struct mv88e6xxx_chip *chip, + int port, phy_interface_t interface) +{ + int err; + + if (chip->info->ops->port_set_rgmii_delay) { + err = chip->info->ops->port_set_rgmii_delay(chip, port, + interface); + if (err && err != -EOPNOTSUPP) + return err; + } + + if (chip->info->ops->port_set_cmode) { + err = chip->info->ops->port_set_cmode(chip, port, + interface); + if (err && err != -EOPNOTSUPP) + return err; + } + + return 0; +} + +static int mv88e6xxx_port_setup_mac(struct mv88e6xxx_chip *chip, int port, + int link, int speed, int duplex, int pause, + phy_interface_t mode) +{ + int err; + + if (!chip->info->ops->port_set_link) + return 0; + + /* Port's MAC control must not be changed unless the link is down */ + err = chip->info->ops->port_set_link(chip, port, LINK_FORCED_DOWN); + if (err) + return err; + + if (chip->info->ops->port_set_speed_duplex) { + err = chip->info->ops->port_set_speed_duplex(chip, port, + speed, duplex); + if (err && err != -EOPNOTSUPP) + goto restore_link; + } + + if (chip->info->ops->port_set_pause) { + err = chip->info->ops->port_set_pause(chip, port, pause); + if (err) + goto restore_link; + } + + err = mv88e6xxx_port_config_interface(chip, port, mode); +restore_link: + if (chip->info->ops->port_set_link(chip, port, link)) + dev_err(chip->dev, "p%d: failed to restore MAC's link\n", port); + + return err; +} + +static int mv88e6xxx_phy_is_internal(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + + return port < chip->info->num_internal_phys; +} + +static int mv88e6xxx_port_ppu_updates(struct mv88e6xxx_chip *chip, int port) +{ + u16 reg; + int err; + + /* The 88e6250 family does not have the PHY detect bit. Instead, + * report whether the port is internal. + */ + if (chip->info->family == MV88E6XXX_FAMILY_6250) + return port < chip->info->num_internal_phys; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_STS, ®); + if (err) { + dev_err(chip->dev, + "p%d: %s: failed to read port status\n", + port, __func__); + return err; + } + + return !!(reg & MV88E6XXX_PORT_STS_PHY_DETECT); +} + +static int mv88e6xxx_serdes_pcs_get_state(struct dsa_switch *ds, int port, + struct phylink_link_state *state) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int lane; + int err; + + mv88e6xxx_reg_lock(chip); + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane >= 0 && chip->info->ops->serdes_pcs_get_state) + err = chip->info->ops->serdes_pcs_get_state(chip, port, lane, + state); + else + err = -EOPNOTSUPP; + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_serdes_pcs_config(struct mv88e6xxx_chip *chip, int port, + unsigned int mode, + phy_interface_t interface, + const unsigned long *advertise) +{ + const struct mv88e6xxx_ops *ops = chip->info->ops; + int lane; + + if (ops->serdes_pcs_config) { + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane >= 0) + return ops->serdes_pcs_config(chip, port, lane, mode, + interface, advertise); + } + + return 0; +} + +static void mv88e6xxx_serdes_pcs_an_restart(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + const struct mv88e6xxx_ops *ops; + int err = 0; + int lane; + + ops = chip->info->ops; + + if (ops->serdes_pcs_an_restart) { + mv88e6xxx_reg_lock(chip); + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane >= 0) + err = ops->serdes_pcs_an_restart(chip, port, lane); + mv88e6xxx_reg_unlock(chip); + + if (err) + dev_err(ds->dev, "p%d: failed to restart AN\n", port); + } +} + +static int mv88e6xxx_serdes_pcs_link_up(struct mv88e6xxx_chip *chip, int port, + unsigned int mode, + int speed, int duplex) +{ + const struct mv88e6xxx_ops *ops = chip->info->ops; + int lane; + + if (!phylink_autoneg_inband(mode) && ops->serdes_pcs_link_up) { + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane >= 0) + return ops->serdes_pcs_link_up(chip, port, lane, + speed, duplex); + } + + return 0; +} + +static const u8 mv88e6185_phy_interface_modes[] = { + [MV88E6185_PORT_STS_CMODE_GMII_FD] = PHY_INTERFACE_MODE_GMII, + [MV88E6185_PORT_STS_CMODE_MII_100_FD_PS] = PHY_INTERFACE_MODE_MII, + [MV88E6185_PORT_STS_CMODE_MII_100] = PHY_INTERFACE_MODE_MII, + [MV88E6185_PORT_STS_CMODE_MII_10] = PHY_INTERFACE_MODE_MII, + [MV88E6185_PORT_STS_CMODE_SERDES] = PHY_INTERFACE_MODE_1000BASEX, + [MV88E6185_PORT_STS_CMODE_1000BASE_X] = PHY_INTERFACE_MODE_1000BASEX, + [MV88E6185_PORT_STS_CMODE_PHY] = PHY_INTERFACE_MODE_SGMII, +}; + +static void mv88e6095_phylink_get_caps(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config) +{ + u8 cmode = chip->ports[port].cmode; + + config->mac_capabilities = MAC_SYM_PAUSE | MAC_10 | MAC_100; + + if (mv88e6xxx_phy_is_internal(chip->ds, port)) { + __set_bit(PHY_INTERFACE_MODE_MII, config->supported_interfaces); + } else { + if (cmode < ARRAY_SIZE(mv88e6185_phy_interface_modes) && + mv88e6185_phy_interface_modes[cmode]) + __set_bit(mv88e6185_phy_interface_modes[cmode], + config->supported_interfaces); + + config->mac_capabilities |= MAC_1000FD; + } +} + +static void mv88e6185_phylink_get_caps(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config) +{ + u8 cmode = chip->ports[port].cmode; + + if (cmode < ARRAY_SIZE(mv88e6185_phy_interface_modes) && + mv88e6185_phy_interface_modes[cmode]) + __set_bit(mv88e6185_phy_interface_modes[cmode], + config->supported_interfaces); + + config->mac_capabilities = MAC_SYM_PAUSE | MAC_10 | MAC_100 | + MAC_1000FD; +} + +static const u8 mv88e6xxx_phy_interface_modes[] = { + [MV88E6XXX_PORT_STS_CMODE_MII_PHY] = PHY_INTERFACE_MODE_MII, + [MV88E6XXX_PORT_STS_CMODE_MII] = PHY_INTERFACE_MODE_MII, + [MV88E6XXX_PORT_STS_CMODE_GMII] = PHY_INTERFACE_MODE_GMII, + [MV88E6XXX_PORT_STS_CMODE_RMII_PHY] = PHY_INTERFACE_MODE_RMII, + [MV88E6XXX_PORT_STS_CMODE_RMII] = PHY_INTERFACE_MODE_RMII, + [MV88E6XXX_PORT_STS_CMODE_100BASEX] = PHY_INTERFACE_MODE_100BASEX, + [MV88E6XXX_PORT_STS_CMODE_1000BASEX] = PHY_INTERFACE_MODE_1000BASEX, + [MV88E6XXX_PORT_STS_CMODE_SGMII] = PHY_INTERFACE_MODE_SGMII, + /* higher interface modes are not needed here, since ports supporting + * them are writable, and so the supported interfaces are filled in the + * corresponding .phylink_set_interfaces() implementation below + */ +}; + +static void mv88e6xxx_translate_cmode(u8 cmode, unsigned long *supported) +{ + if (cmode < ARRAY_SIZE(mv88e6xxx_phy_interface_modes) && + mv88e6xxx_phy_interface_modes[cmode]) + __set_bit(mv88e6xxx_phy_interface_modes[cmode], supported); + else if (cmode == MV88E6XXX_PORT_STS_CMODE_RGMII) + phy_interface_set_rgmii(supported); +} + +static void mv88e6250_phylink_get_caps(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config) +{ + unsigned long *supported = config->supported_interfaces; + + /* Translate the default cmode */ + mv88e6xxx_translate_cmode(chip->ports[port].cmode, supported); + + config->mac_capabilities = MAC_SYM_PAUSE | MAC_10 | MAC_100; +} + +static int mv88e6352_get_port4_serdes_cmode(struct mv88e6xxx_chip *chip) +{ + u16 reg, val; + int err; + + err = mv88e6xxx_port_read(chip, 4, MV88E6XXX_PORT_STS, ®); + if (err) + return err; + + /* If PHY_DETECT is zero, then we are not in auto-media mode */ + if (!(reg & MV88E6XXX_PORT_STS_PHY_DETECT)) + return 0xf; + + val = reg & ~MV88E6XXX_PORT_STS_PHY_DETECT; + err = mv88e6xxx_port_write(chip, 4, MV88E6XXX_PORT_STS, val); + if (err) + return err; + + err = mv88e6xxx_port_read(chip, 4, MV88E6XXX_PORT_STS, &val); + if (err) + return err; + + /* Restore PHY_DETECT value */ + err = mv88e6xxx_port_write(chip, 4, MV88E6XXX_PORT_STS, reg); + if (err) + return err; + + return val & MV88E6XXX_PORT_STS_CMODE_MASK; +} + +static void mv88e6352_phylink_get_caps(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config) +{ + unsigned long *supported = config->supported_interfaces; + int err, cmode; + + /* Translate the default cmode */ + mv88e6xxx_translate_cmode(chip->ports[port].cmode, supported); + + config->mac_capabilities = MAC_SYM_PAUSE | MAC_10 | MAC_100 | + MAC_1000FD; + + /* Port 4 supports automedia if the serdes is associated with it. */ + if (port == 4) { + err = mv88e6352_g2_scratch_port_has_serdes(chip, port); + if (err < 0) + dev_err(chip->dev, "p%d: failed to read scratch\n", + port); + if (err <= 0) + return; + + cmode = mv88e6352_get_port4_serdes_cmode(chip); + if (cmode < 0) + dev_err(chip->dev, "p%d: failed to read serdes cmode\n", + port); + else + mv88e6xxx_translate_cmode(cmode, supported); + } +} + +static void mv88e6341_phylink_get_caps(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config) +{ + unsigned long *supported = config->supported_interfaces; + + /* Translate the default cmode */ + mv88e6xxx_translate_cmode(chip->ports[port].cmode, supported); + + /* No ethtool bits for 200Mbps */ + config->mac_capabilities = MAC_SYM_PAUSE | MAC_10 | MAC_100 | + MAC_1000FD; + + /* The C_Mode field is programmable on port 5 */ + if (port == 5) { + __set_bit(PHY_INTERFACE_MODE_SGMII, supported); + __set_bit(PHY_INTERFACE_MODE_1000BASEX, supported); + __set_bit(PHY_INTERFACE_MODE_2500BASEX, supported); + + config->mac_capabilities |= MAC_2500FD; + } +} + +static void mv88e6390_phylink_get_caps(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config) +{ + unsigned long *supported = config->supported_interfaces; + + /* Translate the default cmode */ + mv88e6xxx_translate_cmode(chip->ports[port].cmode, supported); + + /* No ethtool bits for 200Mbps */ + config->mac_capabilities = MAC_SYM_PAUSE | MAC_10 | MAC_100 | + MAC_1000FD; + + /* The C_Mode field is programmable on ports 9 and 10 */ + if (port == 9 || port == 10) { + __set_bit(PHY_INTERFACE_MODE_SGMII, supported); + __set_bit(PHY_INTERFACE_MODE_1000BASEX, supported); + __set_bit(PHY_INTERFACE_MODE_2500BASEX, supported); + + config->mac_capabilities |= MAC_2500FD; + } +} + +static void mv88e6390x_phylink_get_caps(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config) +{ + unsigned long *supported = config->supported_interfaces; + + mv88e6390_phylink_get_caps(chip, port, config); + + /* For the 6x90X, ports 2-7 can be in automedia mode. + * (Note that 6x90 doesn't support RXAUI nor XAUI). + * + * Port 2 can also support 1000BASE-X in automedia mode if port 9 is + * configured for 1000BASE-X, SGMII or 2500BASE-X. + * Port 3-4 can also support 1000BASE-X in automedia mode if port 9 is + * configured for RXAUI, 1000BASE-X, SGMII or 2500BASE-X. + * + * Port 5 can also support 1000BASE-X in automedia mode if port 10 is + * configured for 1000BASE-X, SGMII or 2500BASE-X. + * Port 6-7 can also support 1000BASE-X in automedia mode if port 10 is + * configured for RXAUI, 1000BASE-X, SGMII or 2500BASE-X. + * + * For now, be permissive (as the old code was) and allow 1000BASE-X + * on ports 2..7. + */ + if (port >= 2 && port <= 7) + __set_bit(PHY_INTERFACE_MODE_1000BASEX, supported); + + /* The C_Mode field can also be programmed for 10G speeds */ + if (port == 9 || port == 10) { + __set_bit(PHY_INTERFACE_MODE_XAUI, supported); + __set_bit(PHY_INTERFACE_MODE_RXAUI, supported); + + config->mac_capabilities |= MAC_10000FD; + } +} + +static void mv88e6393x_phylink_get_caps(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config) +{ + unsigned long *supported = config->supported_interfaces; + bool is_6191x = + chip->info->prod_num == MV88E6XXX_PORT_SWITCH_ID_PROD_6191X; + + mv88e6xxx_translate_cmode(chip->ports[port].cmode, supported); + + config->mac_capabilities = MAC_SYM_PAUSE | MAC_10 | MAC_100 | + MAC_1000FD; + + /* The C_Mode field can be programmed for ports 0, 9 and 10 */ + if (port == 0 || port == 9 || port == 10) { + __set_bit(PHY_INTERFACE_MODE_SGMII, supported); + __set_bit(PHY_INTERFACE_MODE_1000BASEX, supported); + + /* 6191X supports >1G modes only on port 10 */ + if (!is_6191x || port == 10) { + __set_bit(PHY_INTERFACE_MODE_2500BASEX, supported); + __set_bit(PHY_INTERFACE_MODE_5GBASER, supported); + __set_bit(PHY_INTERFACE_MODE_10GBASER, supported); + /* FIXME: USXGMII is not supported yet */ + /* __set_bit(PHY_INTERFACE_MODE_USXGMII, supported); */ + + config->mac_capabilities |= MAC_2500FD | MAC_5000FD | + MAC_10000FD; + } + } + + if (port == 0) { + __set_bit(PHY_INTERFACE_MODE_RMII, supported); + __set_bit(PHY_INTERFACE_MODE_RGMII, supported); + __set_bit(PHY_INTERFACE_MODE_RGMII_ID, supported); + __set_bit(PHY_INTERFACE_MODE_RGMII_RXID, supported); + __set_bit(PHY_INTERFACE_MODE_RGMII_TXID, supported); + } +} + +static void mv88e6xxx_get_caps(struct dsa_switch *ds, int port, + struct phylink_config *config) +{ + struct mv88e6xxx_chip *chip = ds->priv; + + mv88e6xxx_reg_lock(chip); + chip->info->ops->phylink_get_caps(chip, port, config); + mv88e6xxx_reg_unlock(chip); + + if (mv88e6xxx_phy_is_internal(ds, port)) { + __set_bit(PHY_INTERFACE_MODE_INTERNAL, + config->supported_interfaces); + /* Internal ports with no phy-mode need GMII for PHYLIB */ + __set_bit(PHY_INTERFACE_MODE_GMII, + config->supported_interfaces); + } +} + +static void mv88e6xxx_mac_config(struct dsa_switch *ds, int port, + unsigned int mode, + const struct phylink_link_state *state) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_port *p; + int err = 0; + + p = &chip->ports[port]; + + mv88e6xxx_reg_lock(chip); + + if (mode != MLO_AN_PHY || !mv88e6xxx_phy_is_internal(ds, port)) { + /* In inband mode, the link may come up at any time while the + * link is not forced down. Force the link down while we + * reconfigure the interface mode. + */ + if (mode == MLO_AN_INBAND && + p->interface != state->interface && + chip->info->ops->port_set_link) + chip->info->ops->port_set_link(chip, port, + LINK_FORCED_DOWN); + + err = mv88e6xxx_port_config_interface(chip, port, + state->interface); + if (err && err != -EOPNOTSUPP) + goto err_unlock; + + err = mv88e6xxx_serdes_pcs_config(chip, port, mode, + state->interface, + state->advertising); + /* FIXME: we should restart negotiation if something changed - + * which is something we get if we convert to using phylinks + * PCS operations. + */ + if (err > 0) + err = 0; + } + + /* Undo the forced down state above after completing configuration + * irrespective of its state on entry, which allows the link to come + * up in the in-band case where there is no separate SERDES. Also + * ensure that the link can come up if the PPU is in use and we are + * in PHY mode (we treat the PPU as an effective in-band mechanism.) + */ + if (chip->info->ops->port_set_link && + ((mode == MLO_AN_INBAND && p->interface != state->interface) || + (mode == MLO_AN_PHY && mv88e6xxx_port_ppu_updates(chip, port)))) + chip->info->ops->port_set_link(chip, port, LINK_UNFORCED); + + p->interface = state->interface; + +err_unlock: + mv88e6xxx_reg_unlock(chip); + + if (err && err != -EOPNOTSUPP) + dev_err(ds->dev, "p%d: failed to configure MAC/PCS\n", port); +} + +static void mv88e6xxx_mac_link_down(struct dsa_switch *ds, int port, + unsigned int mode, + phy_interface_t interface) +{ + struct mv88e6xxx_chip *chip = ds->priv; + const struct mv88e6xxx_ops *ops; + int err = 0; + + ops = chip->info->ops; + + mv88e6xxx_reg_lock(chip); + /* Force the link down if we know the port may not be automatically + * updated by the switch or if we are using fixed-link mode. + */ + if ((!mv88e6xxx_port_ppu_updates(chip, port) || + mode == MLO_AN_FIXED) && ops->port_sync_link) + err = ops->port_sync_link(chip, port, mode, false); + + if (!err && ops->port_set_speed_duplex) + err = ops->port_set_speed_duplex(chip, port, SPEED_UNFORCED, + DUPLEX_UNFORCED); + mv88e6xxx_reg_unlock(chip); + + if (err) + dev_err(chip->dev, + "p%d: failed to force MAC link down\n", port); +} + +static void mv88e6xxx_mac_link_up(struct dsa_switch *ds, int port, + unsigned int mode, phy_interface_t interface, + struct phy_device *phydev, + int speed, int duplex, + bool tx_pause, bool rx_pause) +{ + struct mv88e6xxx_chip *chip = ds->priv; + const struct mv88e6xxx_ops *ops; + int err = 0; + + ops = chip->info->ops; + + mv88e6xxx_reg_lock(chip); + /* Configure and force the link up if we know that the port may not + * automatically updated by the switch or if we are using fixed-link + * mode. + */ + if (!mv88e6xxx_port_ppu_updates(chip, port) || + mode == MLO_AN_FIXED) { + /* FIXME: for an automedia port, should we force the link + * down here - what if the link comes up due to "other" media + * while we're bringing the port up, how is the exclusivity + * handled in the Marvell hardware? E.g. port 2 on 88E6390 + * shared between internal PHY and Serdes. + */ + err = mv88e6xxx_serdes_pcs_link_up(chip, port, mode, speed, + duplex); + if (err) + goto error; + + if (ops->port_set_speed_duplex) { + err = ops->port_set_speed_duplex(chip, port, + speed, duplex); + if (err && err != -EOPNOTSUPP) + goto error; + } + + if (ops->port_sync_link) + err = ops->port_sync_link(chip, port, mode, true); + } +error: + mv88e6xxx_reg_unlock(chip); + + if (err && err != -EOPNOTSUPP) + dev_err(ds->dev, + "p%d: failed to configure MAC link up\n", port); +} + +static int mv88e6xxx_stats_snapshot(struct mv88e6xxx_chip *chip, int port) +{ + if (!chip->info->ops->stats_snapshot) + return -EOPNOTSUPP; + + return chip->info->ops->stats_snapshot(chip, port); +} + +static struct mv88e6xxx_hw_stat mv88e6xxx_hw_stats[] = { + { "in_good_octets", 8, 0x00, STATS_TYPE_BANK0, }, + { "in_bad_octets", 4, 0x02, STATS_TYPE_BANK0, }, + { "in_unicast", 4, 0x04, STATS_TYPE_BANK0, }, + { "in_broadcasts", 4, 0x06, STATS_TYPE_BANK0, }, + { "in_multicasts", 4, 0x07, STATS_TYPE_BANK0, }, + { "in_pause", 4, 0x16, STATS_TYPE_BANK0, }, + { "in_undersize", 4, 0x18, STATS_TYPE_BANK0, }, + { "in_fragments", 4, 0x19, STATS_TYPE_BANK0, }, + { "in_oversize", 4, 0x1a, STATS_TYPE_BANK0, }, + { "in_jabber", 4, 0x1b, STATS_TYPE_BANK0, }, + { "in_rx_error", 4, 0x1c, STATS_TYPE_BANK0, }, + { "in_fcs_error", 4, 0x1d, STATS_TYPE_BANK0, }, + { "out_octets", 8, 0x0e, STATS_TYPE_BANK0, }, + { "out_unicast", 4, 0x10, STATS_TYPE_BANK0, }, + { "out_broadcasts", 4, 0x13, STATS_TYPE_BANK0, }, + { "out_multicasts", 4, 0x12, STATS_TYPE_BANK0, }, + { "out_pause", 4, 0x15, STATS_TYPE_BANK0, }, + { "excessive", 4, 0x11, STATS_TYPE_BANK0, }, + { "collisions", 4, 0x1e, STATS_TYPE_BANK0, }, + { "deferred", 4, 0x05, STATS_TYPE_BANK0, }, + { "single", 4, 0x14, STATS_TYPE_BANK0, }, + { "multiple", 4, 0x17, STATS_TYPE_BANK0, }, + { "out_fcs_error", 4, 0x03, STATS_TYPE_BANK0, }, + { "late", 4, 0x1f, STATS_TYPE_BANK0, }, + { "hist_64bytes", 4, 0x08, STATS_TYPE_BANK0, }, + { "hist_65_127bytes", 4, 0x09, STATS_TYPE_BANK0, }, + { "hist_128_255bytes", 4, 0x0a, STATS_TYPE_BANK0, }, + { "hist_256_511bytes", 4, 0x0b, STATS_TYPE_BANK0, }, + { "hist_512_1023bytes", 4, 0x0c, STATS_TYPE_BANK0, }, + { "hist_1024_max_bytes", 4, 0x0d, STATS_TYPE_BANK0, }, + { "sw_in_discards", 4, 0x10, STATS_TYPE_PORT, }, + { "sw_in_filtered", 2, 0x12, STATS_TYPE_PORT, }, + { "sw_out_filtered", 2, 0x13, STATS_TYPE_PORT, }, + { "in_discards", 4, 0x00, STATS_TYPE_BANK1, }, + { "in_filtered", 4, 0x01, STATS_TYPE_BANK1, }, + { "in_accepted", 4, 0x02, STATS_TYPE_BANK1, }, + { "in_bad_accepted", 4, 0x03, STATS_TYPE_BANK1, }, + { "in_good_avb_class_a", 4, 0x04, STATS_TYPE_BANK1, }, + { "in_good_avb_class_b", 4, 0x05, STATS_TYPE_BANK1, }, + { "in_bad_avb_class_a", 4, 0x06, STATS_TYPE_BANK1, }, + { "in_bad_avb_class_b", 4, 0x07, STATS_TYPE_BANK1, }, + { "tcam_counter_0", 4, 0x08, STATS_TYPE_BANK1, }, + { "tcam_counter_1", 4, 0x09, STATS_TYPE_BANK1, }, + { "tcam_counter_2", 4, 0x0a, STATS_TYPE_BANK1, }, + { "tcam_counter_3", 4, 0x0b, STATS_TYPE_BANK1, }, + { "in_da_unknown", 4, 0x0e, STATS_TYPE_BANK1, }, + { "in_management", 4, 0x0f, STATS_TYPE_BANK1, }, + { "out_queue_0", 4, 0x10, STATS_TYPE_BANK1, }, + { "out_queue_1", 4, 0x11, STATS_TYPE_BANK1, }, + { "out_queue_2", 4, 0x12, STATS_TYPE_BANK1, }, + { "out_queue_3", 4, 0x13, STATS_TYPE_BANK1, }, + { "out_queue_4", 4, 0x14, STATS_TYPE_BANK1, }, + { "out_queue_5", 4, 0x15, STATS_TYPE_BANK1, }, + { "out_queue_6", 4, 0x16, STATS_TYPE_BANK1, }, + { "out_queue_7", 4, 0x17, STATS_TYPE_BANK1, }, + { "out_cut_through", 4, 0x18, STATS_TYPE_BANK1, }, + { "out_octets_a", 4, 0x1a, STATS_TYPE_BANK1, }, + { "out_octets_b", 4, 0x1b, STATS_TYPE_BANK1, }, + { "out_management", 4, 0x1f, STATS_TYPE_BANK1, }, +}; + +static uint64_t _mv88e6xxx_get_ethtool_stat(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_hw_stat *s, + int port, u16 bank1_select, + u16 histogram) +{ + u32 low; + u32 high = 0; + u16 reg = 0; + int err; + u64 value; + + switch (s->type) { + case STATS_TYPE_PORT: + err = mv88e6xxx_port_read(chip, port, s->reg, ®); + if (err) + return U64_MAX; + + low = reg; + if (s->size == 4) { + err = mv88e6xxx_port_read(chip, port, s->reg + 1, ®); + if (err) + return U64_MAX; + low |= ((u32)reg) << 16; + } + break; + case STATS_TYPE_BANK1: + reg = bank1_select; + fallthrough; + case STATS_TYPE_BANK0: + reg |= s->reg | histogram; + mv88e6xxx_g1_stats_read(chip, reg, &low); + if (s->size == 8) + mv88e6xxx_g1_stats_read(chip, reg + 1, &high); + break; + default: + return U64_MAX; + } + value = (((u64)high) << 32) | low; + return value; +} + +static int mv88e6xxx_stats_get_strings(struct mv88e6xxx_chip *chip, + uint8_t *data, int types) +{ + struct mv88e6xxx_hw_stat *stat; + int i, j; + + for (i = 0, j = 0; i < ARRAY_SIZE(mv88e6xxx_hw_stats); i++) { + stat = &mv88e6xxx_hw_stats[i]; + if (stat->type & types) { + memcpy(data + j * ETH_GSTRING_LEN, stat->string, + ETH_GSTRING_LEN); + j++; + } + } + + return j; +} + +static int mv88e6095_stats_get_strings(struct mv88e6xxx_chip *chip, + uint8_t *data) +{ + return mv88e6xxx_stats_get_strings(chip, data, + STATS_TYPE_BANK0 | STATS_TYPE_PORT); +} + +static int mv88e6250_stats_get_strings(struct mv88e6xxx_chip *chip, + uint8_t *data) +{ + return mv88e6xxx_stats_get_strings(chip, data, STATS_TYPE_BANK0); +} + +static int mv88e6320_stats_get_strings(struct mv88e6xxx_chip *chip, + uint8_t *data) +{ + return mv88e6xxx_stats_get_strings(chip, data, + STATS_TYPE_BANK0 | STATS_TYPE_BANK1); +} + +static const uint8_t *mv88e6xxx_atu_vtu_stats_strings[] = { + "atu_member_violation", + "atu_miss_violation", + "atu_full_violation", + "vtu_member_violation", + "vtu_miss_violation", +}; + +static void mv88e6xxx_atu_vtu_get_strings(uint8_t *data) +{ + unsigned int i; + + for (i = 0; i < ARRAY_SIZE(mv88e6xxx_atu_vtu_stats_strings); i++) + strscpy(data + i * ETH_GSTRING_LEN, + mv88e6xxx_atu_vtu_stats_strings[i], + ETH_GSTRING_LEN); +} + +static void mv88e6xxx_get_strings(struct dsa_switch *ds, int port, + u32 stringset, uint8_t *data) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int count = 0; + + if (stringset != ETH_SS_STATS) + return; + + mv88e6xxx_reg_lock(chip); + + if (chip->info->ops->stats_get_strings) + count = chip->info->ops->stats_get_strings(chip, data); + + if (chip->info->ops->serdes_get_strings) { + data += count * ETH_GSTRING_LEN; + count = chip->info->ops->serdes_get_strings(chip, port, data); + } + + data += count * ETH_GSTRING_LEN; + mv88e6xxx_atu_vtu_get_strings(data); + + mv88e6xxx_reg_unlock(chip); +} + +static int mv88e6xxx_stats_get_sset_count(struct mv88e6xxx_chip *chip, + int types) +{ + struct mv88e6xxx_hw_stat *stat; + int i, j; + + for (i = 0, j = 0; i < ARRAY_SIZE(mv88e6xxx_hw_stats); i++) { + stat = &mv88e6xxx_hw_stats[i]; + if (stat->type & types) + j++; + } + return j; +} + +static int mv88e6095_stats_get_sset_count(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_stats_get_sset_count(chip, STATS_TYPE_BANK0 | + STATS_TYPE_PORT); +} + +static int mv88e6250_stats_get_sset_count(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_stats_get_sset_count(chip, STATS_TYPE_BANK0); +} + +static int mv88e6320_stats_get_sset_count(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_stats_get_sset_count(chip, STATS_TYPE_BANK0 | + STATS_TYPE_BANK1); +} + +static int mv88e6xxx_get_sset_count(struct dsa_switch *ds, int port, int sset) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int serdes_count = 0; + int count = 0; + + if (sset != ETH_SS_STATS) + return 0; + + mv88e6xxx_reg_lock(chip); + if (chip->info->ops->stats_get_sset_count) + count = chip->info->ops->stats_get_sset_count(chip); + if (count < 0) + goto out; + + if (chip->info->ops->serdes_get_sset_count) + serdes_count = chip->info->ops->serdes_get_sset_count(chip, + port); + if (serdes_count < 0) { + count = serdes_count; + goto out; + } + count += serdes_count; + count += ARRAY_SIZE(mv88e6xxx_atu_vtu_stats_strings); + +out: + mv88e6xxx_reg_unlock(chip); + + return count; +} + +static int mv88e6xxx_stats_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data, int types, + u16 bank1_select, u16 histogram) +{ + struct mv88e6xxx_hw_stat *stat; + int i, j; + + for (i = 0, j = 0; i < ARRAY_SIZE(mv88e6xxx_hw_stats); i++) { + stat = &mv88e6xxx_hw_stats[i]; + if (stat->type & types) { + mv88e6xxx_reg_lock(chip); + data[j] = _mv88e6xxx_get_ethtool_stat(chip, stat, port, + bank1_select, + histogram); + mv88e6xxx_reg_unlock(chip); + + j++; + } + } + return j; +} + +static int mv88e6095_stats_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data) +{ + return mv88e6xxx_stats_get_stats(chip, port, data, + STATS_TYPE_BANK0 | STATS_TYPE_PORT, + 0, MV88E6XXX_G1_STATS_OP_HIST_RX_TX); +} + +static int mv88e6250_stats_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data) +{ + return mv88e6xxx_stats_get_stats(chip, port, data, STATS_TYPE_BANK0, + 0, MV88E6XXX_G1_STATS_OP_HIST_RX_TX); +} + +static int mv88e6320_stats_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data) +{ + return mv88e6xxx_stats_get_stats(chip, port, data, + STATS_TYPE_BANK0 | STATS_TYPE_BANK1, + MV88E6XXX_G1_STATS_OP_BANK_1_BIT_9, + MV88E6XXX_G1_STATS_OP_HIST_RX_TX); +} + +static int mv88e6390_stats_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data) +{ + return mv88e6xxx_stats_get_stats(chip, port, data, + STATS_TYPE_BANK0 | STATS_TYPE_BANK1, + MV88E6XXX_G1_STATS_OP_BANK_1_BIT_10, + 0); +} + +static void mv88e6xxx_atu_vtu_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data) +{ + *data++ = chip->ports[port].atu_member_violation; + *data++ = chip->ports[port].atu_miss_violation; + *data++ = chip->ports[port].atu_full_violation; + *data++ = chip->ports[port].vtu_member_violation; + *data++ = chip->ports[port].vtu_miss_violation; +} + +static void mv88e6xxx_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data) +{ + int count = 0; + + if (chip->info->ops->stats_get_stats) + count = chip->info->ops->stats_get_stats(chip, port, data); + + mv88e6xxx_reg_lock(chip); + if (chip->info->ops->serdes_get_stats) { + data += count; + count = chip->info->ops->serdes_get_stats(chip, port, data); + } + data += count; + mv88e6xxx_atu_vtu_get_stats(chip, port, data); + mv88e6xxx_reg_unlock(chip); +} + +static void mv88e6xxx_get_ethtool_stats(struct dsa_switch *ds, int port, + uint64_t *data) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int ret; + + mv88e6xxx_reg_lock(chip); + + ret = mv88e6xxx_stats_snapshot(chip, port); + mv88e6xxx_reg_unlock(chip); + + if (ret < 0) + return; + + mv88e6xxx_get_stats(chip, port, data); + +} + +static int mv88e6xxx_get_regs_len(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int len; + + len = 32 * sizeof(u16); + if (chip->info->ops->serdes_get_regs_len) + len += chip->info->ops->serdes_get_regs_len(chip, port); + + return len; +} + +static void mv88e6xxx_get_regs(struct dsa_switch *ds, int port, + struct ethtool_regs *regs, void *_p) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + u16 reg; + u16 *p = _p; + int i; + + regs->version = chip->info->prod_num; + + memset(p, 0xff, 32 * sizeof(u16)); + + mv88e6xxx_reg_lock(chip); + + for (i = 0; i < 32; i++) { + + err = mv88e6xxx_port_read(chip, port, i, ®); + if (!err) + p[i] = reg; + } + + if (chip->info->ops->serdes_get_regs) + chip->info->ops->serdes_get_regs(chip, port, &p[i]); + + mv88e6xxx_reg_unlock(chip); +} + +static int mv88e6xxx_get_mac_eee(struct dsa_switch *ds, int port, + struct ethtool_eee *e) +{ + /* Nothing to do on the port's MAC */ + return 0; +} + +static int mv88e6xxx_set_mac_eee(struct dsa_switch *ds, int port, + struct ethtool_eee *e) +{ + /* Nothing to do on the port's MAC */ + return 0; +} + +/* Mask of the local ports allowed to receive frames from a given fabric port */ +static u16 mv88e6xxx_port_vlan(struct mv88e6xxx_chip *chip, int dev, int port) +{ + struct dsa_switch *ds = chip->ds; + struct dsa_switch_tree *dst = ds->dst; + struct dsa_port *dp, *other_dp; + bool found = false; + u16 pvlan; + + /* dev is a physical switch */ + if (dev <= dst->last_switch) { + list_for_each_entry(dp, &dst->ports, list) { + if (dp->ds->index == dev && dp->index == port) { + /* dp might be a DSA link or a user port, so it + * might or might not have a bridge. + * Use the "found" variable for both cases. + */ + found = true; + break; + } + } + /* dev is a virtual bridge */ + } else { + list_for_each_entry(dp, &dst->ports, list) { + unsigned int bridge_num = dsa_port_bridge_num_get(dp); + + if (!bridge_num) + continue; + + if (bridge_num + dst->last_switch != dev) + continue; + + found = true; + break; + } + } + + /* Prevent frames from unknown switch or virtual bridge */ + if (!found) + return 0; + + /* Frames from DSA links and CPU ports can egress any local port */ + if (dp->type == DSA_PORT_TYPE_CPU || dp->type == DSA_PORT_TYPE_DSA) + return mv88e6xxx_port_mask(chip); + + pvlan = 0; + + /* Frames from standalone user ports can only egress on the + * upstream port. + */ + if (!dsa_port_bridge_dev_get(dp)) + return BIT(dsa_switch_upstream_port(ds)); + + /* Frames from bridged user ports can egress any local DSA + * links and CPU ports, as well as any local member of their + * bridge group. + */ + dsa_switch_for_each_port(other_dp, ds) + if (other_dp->type == DSA_PORT_TYPE_CPU || + other_dp->type == DSA_PORT_TYPE_DSA || + dsa_port_bridge_same(dp, other_dp)) + pvlan |= BIT(other_dp->index); + + return pvlan; +} + +static int mv88e6xxx_port_vlan_map(struct mv88e6xxx_chip *chip, int port) +{ + u16 output_ports = mv88e6xxx_port_vlan(chip, chip->ds->index, port); + + /* prevent frames from going back out of the port they came in on */ + output_ports &= ~BIT(port); + + return mv88e6xxx_port_set_vlan_map(chip, port, output_ports); +} + +static void mv88e6xxx_port_stp_state_set(struct dsa_switch *ds, int port, + u8 state) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_set_state(chip, port, state); + mv88e6xxx_reg_unlock(chip); + + if (err) + dev_err(ds->dev, "p%d: failed to update state\n", port); +} + +static int mv88e6xxx_pri_setup(struct mv88e6xxx_chip *chip) +{ + int err; + + if (chip->info->ops->ieee_pri_map) { + err = chip->info->ops->ieee_pri_map(chip); + if (err) + return err; + } + + if (chip->info->ops->ip_pri_map) { + err = chip->info->ops->ip_pri_map(chip); + if (err) + return err; + } + + return 0; +} + +static int mv88e6xxx_devmap_setup(struct mv88e6xxx_chip *chip) +{ + struct dsa_switch *ds = chip->ds; + int target, port; + int err; + + if (!chip->info->global2_addr) + return 0; + + /* Initialize the routing port to the 32 possible target devices */ + for (target = 0; target < 32; target++) { + port = dsa_routing_port(ds, target); + if (port == ds->num_ports) + port = 0x1f; + + err = mv88e6xxx_g2_device_mapping_write(chip, target, port); + if (err) + return err; + } + + if (chip->info->ops->set_cascade_port) { + port = MV88E6XXX_CASCADE_PORT_MULTIPLE; + err = chip->info->ops->set_cascade_port(chip, port); + if (err) + return err; + } + + err = mv88e6xxx_g1_set_device_number(chip, chip->ds->index); + if (err) + return err; + + return 0; +} + +static int mv88e6xxx_trunk_setup(struct mv88e6xxx_chip *chip) +{ + /* Clear all trunk masks and mapping */ + if (chip->info->global2_addr) + return mv88e6xxx_g2_trunk_clear(chip); + + return 0; +} + +static int mv88e6xxx_rmu_setup(struct mv88e6xxx_chip *chip) +{ + if (chip->info->ops->rmu_disable) + return chip->info->ops->rmu_disable(chip); + + return 0; +} + +static int mv88e6xxx_pot_setup(struct mv88e6xxx_chip *chip) +{ + if (chip->info->ops->pot_clear) + return chip->info->ops->pot_clear(chip); + + return 0; +} + +static int mv88e6xxx_rsvd2cpu_setup(struct mv88e6xxx_chip *chip) +{ + if (chip->info->ops->mgmt_rsvd2cpu) + return chip->info->ops->mgmt_rsvd2cpu(chip); + + return 0; +} + +static int mv88e6xxx_atu_setup(struct mv88e6xxx_chip *chip) +{ + int err; + + err = mv88e6xxx_g1_atu_flush(chip, 0, true); + if (err) + return err; + + /* The chips that have a "learn2all" bit in Global1, ATU + * Control are precisely those whose port registers have a + * Message Port bit in Port Control 1 and hence implement + * ->port_setup_message_port. + */ + if (chip->info->ops->port_setup_message_port) { + err = mv88e6xxx_g1_atu_set_learn2all(chip, true); + if (err) + return err; + } + + return mv88e6xxx_g1_atu_set_age_time(chip, 300000); +} + +static int mv88e6xxx_irl_setup(struct mv88e6xxx_chip *chip) +{ + int port; + int err; + + if (!chip->info->ops->irl_init_all) + return 0; + + for (port = 0; port < mv88e6xxx_num_ports(chip); port++) { + /* Disable ingress rate limiting by resetting all per port + * ingress rate limit resources to their initial state. + */ + err = chip->info->ops->irl_init_all(chip, port); + if (err) + return err; + } + + return 0; +} + +static int mv88e6xxx_mac_setup(struct mv88e6xxx_chip *chip) +{ + if (chip->info->ops->set_switch_mac) { + u8 addr[ETH_ALEN]; + + eth_random_addr(addr); + + return chip->info->ops->set_switch_mac(chip, addr); + } + + return 0; +} + +static int mv88e6xxx_pvt_map(struct mv88e6xxx_chip *chip, int dev, int port) +{ + struct dsa_switch_tree *dst = chip->ds->dst; + struct dsa_switch *ds; + struct dsa_port *dp; + u16 pvlan = 0; + + if (!mv88e6xxx_has_pvt(chip)) + return 0; + + /* Skip the local source device, which uses in-chip port VLAN */ + if (dev != chip->ds->index) { + pvlan = mv88e6xxx_port_vlan(chip, dev, port); + + ds = dsa_switch_find(dst->index, dev); + dp = ds ? dsa_to_port(ds, port) : NULL; + if (dp && dp->lag) { + /* As the PVT is used to limit flooding of + * FORWARD frames, which use the LAG ID as the + * source port, we must translate dev/port to + * the special "LAG device" in the PVT, using + * the LAG ID (one-based) as the port number + * (zero-based). + */ + dev = MV88E6XXX_G2_PVT_ADDR_DEV_TRUNK; + port = dsa_port_lag_id_get(dp) - 1; + } + } + + return mv88e6xxx_g2_pvt_write(chip, dev, port, pvlan); +} + +static int mv88e6xxx_pvt_setup(struct mv88e6xxx_chip *chip) +{ + int dev, port; + int err; + + if (!mv88e6xxx_has_pvt(chip)) + return 0; + + /* Clear 5 Bit Port for usage with Marvell Link Street devices: + * use 4 bits for the Src_Port/Src_Trunk and 5 bits for the Src_Dev. + */ + err = mv88e6xxx_g2_misc_4_bit_port(chip); + if (err) + return err; + + for (dev = 0; dev < MV88E6XXX_MAX_PVT_SWITCHES; ++dev) { + for (port = 0; port < MV88E6XXX_MAX_PVT_PORTS; ++port) { + err = mv88e6xxx_pvt_map(chip, dev, port); + if (err) + return err; + } + } + + return 0; +} + +static int mv88e6xxx_port_fast_age_fid(struct mv88e6xxx_chip *chip, int port, + u16 fid) +{ + if (dsa_to_port(chip->ds, port)->lag) + /* Hardware is incapable of fast-aging a LAG through a + * regular ATU move operation. Until we have something + * more fancy in place this is a no-op. + */ + return -EOPNOTSUPP; + + return mv88e6xxx_g1_atu_remove(chip, fid, port, false); +} + +static void mv88e6xxx_port_fast_age(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_fast_age_fid(chip, port, 0); + mv88e6xxx_reg_unlock(chip); + + if (err) + dev_err(chip->ds->dev, "p%d: failed to flush ATU: %d\n", + port, err); +} + +static int mv88e6xxx_vtu_setup(struct mv88e6xxx_chip *chip) +{ + if (!mv88e6xxx_max_vid(chip)) + return 0; + + return mv88e6xxx_g1_vtu_flush(chip); +} + +static int mv88e6xxx_vtu_get(struct mv88e6xxx_chip *chip, u16 vid, + struct mv88e6xxx_vtu_entry *entry) +{ + int err; + + if (!chip->info->ops->vtu_getnext) + return -EOPNOTSUPP; + + entry->vid = vid ? vid - 1 : mv88e6xxx_max_vid(chip); + entry->valid = false; + + err = chip->info->ops->vtu_getnext(chip, entry); + + if (entry->vid != vid) + entry->valid = false; + + return err; +} + +static int mv88e6xxx_vtu_walk(struct mv88e6xxx_chip *chip, + int (*cb)(struct mv88e6xxx_chip *chip, + const struct mv88e6xxx_vtu_entry *entry, + void *priv), + void *priv) +{ + struct mv88e6xxx_vtu_entry entry = { + .vid = mv88e6xxx_max_vid(chip), + .valid = false, + }; + int err; + + if (!chip->info->ops->vtu_getnext) + return -EOPNOTSUPP; + + do { + err = chip->info->ops->vtu_getnext(chip, &entry); + if (err) + return err; + + if (!entry.valid) + break; + + err = cb(chip, &entry, priv); + if (err) + return err; + } while (entry.vid < mv88e6xxx_max_vid(chip)); + + return 0; +} + +static int mv88e6xxx_vtu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + if (!chip->info->ops->vtu_loadpurge) + return -EOPNOTSUPP; + + return chip->info->ops->vtu_loadpurge(chip, entry); +} + +static int mv88e6xxx_fid_map_vlan(struct mv88e6xxx_chip *chip, + const struct mv88e6xxx_vtu_entry *entry, + void *_fid_bitmap) +{ + unsigned long *fid_bitmap = _fid_bitmap; + + set_bit(entry->fid, fid_bitmap); + return 0; +} + +int mv88e6xxx_fid_map(struct mv88e6xxx_chip *chip, unsigned long *fid_bitmap) +{ + bitmap_zero(fid_bitmap, MV88E6XXX_N_FID); + + /* Every FID has an associated VID, so walking the VTU + * will discover the full set of FIDs in use. + */ + return mv88e6xxx_vtu_walk(chip, mv88e6xxx_fid_map_vlan, fid_bitmap); +} + +static int mv88e6xxx_atu_new(struct mv88e6xxx_chip *chip, u16 *fid) +{ + DECLARE_BITMAP(fid_bitmap, MV88E6XXX_N_FID); + int err; + + err = mv88e6xxx_fid_map(chip, fid_bitmap); + if (err) + return err; + + *fid = find_first_zero_bit(fid_bitmap, MV88E6XXX_N_FID); + if (unlikely(*fid >= mv88e6xxx_num_databases(chip))) + return -ENOSPC; + + /* Clear the database */ + return mv88e6xxx_g1_atu_flush(chip, *fid, true); +} + +static int mv88e6xxx_stu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry) +{ + if (!chip->info->ops->stu_loadpurge) + return -EOPNOTSUPP; + + return chip->info->ops->stu_loadpurge(chip, entry); +} + +static int mv88e6xxx_stu_setup(struct mv88e6xxx_chip *chip) +{ + struct mv88e6xxx_stu_entry stu = { + .valid = true, + .sid = 0 + }; + + if (!mv88e6xxx_has_stu(chip)) + return 0; + + /* Make sure that SID 0 is always valid. This is used by VTU + * entries that do not make use of the STU, e.g. when creating + * a VLAN upper on a port that is also part of a VLAN + * filtering bridge. + */ + return mv88e6xxx_stu_loadpurge(chip, &stu); +} + +static int mv88e6xxx_sid_get(struct mv88e6xxx_chip *chip, u8 *sid) +{ + DECLARE_BITMAP(busy, MV88E6XXX_N_SID) = { 0 }; + struct mv88e6xxx_mst *mst; + + __set_bit(0, busy); + + list_for_each_entry(mst, &chip->msts, node) + __set_bit(mst->stu.sid, busy); + + *sid = find_first_zero_bit(busy, MV88E6XXX_N_SID); + + return (*sid >= mv88e6xxx_max_sid(chip)) ? -ENOSPC : 0; +} + +static int mv88e6xxx_mst_put(struct mv88e6xxx_chip *chip, u8 sid) +{ + struct mv88e6xxx_mst *mst, *tmp; + int err; + + if (!sid) + return 0; + + list_for_each_entry_safe(mst, tmp, &chip->msts, node) { + if (mst->stu.sid != sid) + continue; + + if (!refcount_dec_and_test(&mst->refcnt)) + return 0; + + mst->stu.valid = false; + err = mv88e6xxx_stu_loadpurge(chip, &mst->stu); + if (err) { + refcount_set(&mst->refcnt, 1); + return err; + } + + list_del(&mst->node); + kfree(mst); + return 0; + } + + return -ENOENT; +} + +static int mv88e6xxx_mst_get(struct mv88e6xxx_chip *chip, struct net_device *br, + u16 msti, u8 *sid) +{ + struct mv88e6xxx_mst *mst; + int err, i; + + if (!mv88e6xxx_has_stu(chip)) { + err = -EOPNOTSUPP; + goto err; + } + + if (!msti) { + *sid = 0; + return 0; + } + + list_for_each_entry(mst, &chip->msts, node) { + if (mst->br == br && mst->msti == msti) { + refcount_inc(&mst->refcnt); + *sid = mst->stu.sid; + return 0; + } + } + + err = mv88e6xxx_sid_get(chip, sid); + if (err) + goto err; + + mst = kzalloc(sizeof(*mst), GFP_KERNEL); + if (!mst) { + err = -ENOMEM; + goto err; + } + + INIT_LIST_HEAD(&mst->node); + refcount_set(&mst->refcnt, 1); + mst->br = br; + mst->msti = msti; + mst->stu.valid = true; + mst->stu.sid = *sid; + + /* The bridge starts out all ports in the disabled state. But + * a STU state of disabled means to go by the port-global + * state. So we set all user port's initial state to blocking, + * to match the bridge's behavior. + */ + for (i = 0; i < mv88e6xxx_num_ports(chip); i++) + mst->stu.state[i] = dsa_is_user_port(chip->ds, i) ? + MV88E6XXX_PORT_CTL0_STATE_BLOCKING : + MV88E6XXX_PORT_CTL0_STATE_DISABLED; + + err = mv88e6xxx_stu_loadpurge(chip, &mst->stu); + if (err) + goto err_free; + + list_add_tail(&mst->node, &chip->msts); + return 0; + +err_free: + kfree(mst); +err: + return err; +} + +static int mv88e6xxx_port_mst_state_set(struct dsa_switch *ds, int port, + const struct switchdev_mst_state *st) +{ + struct dsa_port *dp = dsa_to_port(ds, port); + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_mst *mst; + u8 state; + int err; + + if (!mv88e6xxx_has_stu(chip)) + return -EOPNOTSUPP; + + switch (st->state) { + case BR_STATE_DISABLED: + case BR_STATE_BLOCKING: + case BR_STATE_LISTENING: + state = MV88E6XXX_PORT_CTL0_STATE_BLOCKING; + break; + case BR_STATE_LEARNING: + state = MV88E6XXX_PORT_CTL0_STATE_LEARNING; + break; + case BR_STATE_FORWARDING: + state = MV88E6XXX_PORT_CTL0_STATE_FORWARDING; + break; + default: + return -EINVAL; + } + + list_for_each_entry(mst, &chip->msts, node) { + if (mst->br == dsa_port_bridge_dev_get(dp) && + mst->msti == st->msti) { + if (mst->stu.state[port] == state) + return 0; + + mst->stu.state[port] = state; + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_stu_loadpurge(chip, &mst->stu); + mv88e6xxx_reg_unlock(chip); + return err; + } + } + + return -ENOENT; +} + +static int mv88e6xxx_port_check_hw_vlan(struct dsa_switch *ds, int port, + u16 vid) +{ + struct dsa_port *dp = dsa_to_port(ds, port), *other_dp; + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_vtu_entry vlan; + int err; + + /* DSA and CPU ports have to be members of multiple vlans */ + if (dsa_port_is_dsa(dp) || dsa_port_is_cpu(dp)) + return 0; + + err = mv88e6xxx_vtu_get(chip, vid, &vlan); + if (err) + return err; + + if (!vlan.valid) + return 0; + + dsa_switch_for_each_user_port(other_dp, ds) { + struct net_device *other_br; + + if (vlan.member[other_dp->index] == + MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_NON_MEMBER) + continue; + + if (dsa_port_bridge_same(dp, other_dp)) + break; /* same bridge, check next VLAN */ + + other_br = dsa_port_bridge_dev_get(other_dp); + if (!other_br) + continue; + + dev_err(ds->dev, "p%d: hw VLAN %d already used by port %d in %s\n", + port, vlan.vid, other_dp->index, netdev_name(other_br)); + return -EOPNOTSUPP; + } + + return 0; +} + +static int mv88e6xxx_port_commit_pvid(struct mv88e6xxx_chip *chip, int port) +{ + struct dsa_port *dp = dsa_to_port(chip->ds, port); + struct net_device *br = dsa_port_bridge_dev_get(dp); + struct mv88e6xxx_port *p = &chip->ports[port]; + u16 pvid = MV88E6XXX_VID_STANDALONE; + bool drop_untagged = false; + int err; + + if (br) { + if (br_vlan_enabled(br)) { + pvid = p->bridge_pvid.vid; + drop_untagged = !p->bridge_pvid.valid; + } else { + pvid = MV88E6XXX_VID_BRIDGED; + } + } + + err = mv88e6xxx_port_set_pvid(chip, port, pvid); + if (err) + return err; + + return mv88e6xxx_port_drop_untagged(chip, port, drop_untagged); +} + +static int mv88e6xxx_port_vlan_filtering(struct dsa_switch *ds, int port, + bool vlan_filtering, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + u16 mode = vlan_filtering ? MV88E6XXX_PORT_CTL2_8021Q_MODE_SECURE : + MV88E6XXX_PORT_CTL2_8021Q_MODE_DISABLED; + int err; + + if (!mv88e6xxx_max_vid(chip)) + return -EOPNOTSUPP; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_port_set_8021q_mode(chip, port, mode); + if (err) + goto unlock; + + err = mv88e6xxx_port_commit_pvid(chip, port); + if (err) + goto unlock; + +unlock: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int +mv88e6xxx_port_vlan_prepare(struct dsa_switch *ds, int port, + const struct switchdev_obj_port_vlan *vlan) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + if (!mv88e6xxx_max_vid(chip)) + return -EOPNOTSUPP; + + /* If the requested port doesn't belong to the same bridge as the VLAN + * members, do not support it (yet) and fallback to software VLAN. + */ + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_check_hw_vlan(ds, port, vlan->vid); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_db_load_purge(struct mv88e6xxx_chip *chip, int port, + const unsigned char *addr, u16 vid, + u8 state) +{ + struct mv88e6xxx_atu_entry entry; + struct mv88e6xxx_vtu_entry vlan; + u16 fid; + int err; + + /* Ports have two private address databases: one for when the port is + * standalone and one for when the port is under a bridge and the + * 802.1Q mode is disabled. When the port is standalone, DSA wants its + * address database to remain 100% empty, so we never load an ATU entry + * into a standalone port's database. Therefore, translate the null + * VLAN ID into the port's database used for VLAN-unaware bridging. + */ + if (vid == 0) { + fid = MV88E6XXX_FID_BRIDGED; + } else { + err = mv88e6xxx_vtu_get(chip, vid, &vlan); + if (err) + return err; + + /* switchdev expects -EOPNOTSUPP to honor software VLANs */ + if (!vlan.valid) + return -EOPNOTSUPP; + + fid = vlan.fid; + } + + entry.state = 0; + ether_addr_copy(entry.mac, addr); + eth_addr_dec(entry.mac); + + err = mv88e6xxx_g1_atu_getnext(chip, fid, &entry); + if (err) + return err; + + /* Initialize a fresh ATU entry if it isn't found */ + if (!entry.state || !ether_addr_equal(entry.mac, addr)) { + memset(&entry, 0, sizeof(entry)); + ether_addr_copy(entry.mac, addr); + } + + /* Purge the ATU entry only if no port is using it anymore */ + if (!state) { + entry.portvec &= ~BIT(port); + if (!entry.portvec) + entry.state = 0; + } else { + if (state == MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC) + entry.portvec = BIT(port); + else + entry.portvec |= BIT(port); + + entry.state = state; + } + + return mv88e6xxx_g1_atu_loadpurge(chip, fid, &entry); +} + +static int mv88e6xxx_policy_apply(struct mv88e6xxx_chip *chip, int port, + const struct mv88e6xxx_policy *policy) +{ + enum mv88e6xxx_policy_mapping mapping = policy->mapping; + enum mv88e6xxx_policy_action action = policy->action; + const u8 *addr = policy->addr; + u16 vid = policy->vid; + u8 state; + int err; + int id; + + if (!chip->info->ops->port_set_policy) + return -EOPNOTSUPP; + + switch (mapping) { + case MV88E6XXX_POLICY_MAPPING_DA: + case MV88E6XXX_POLICY_MAPPING_SA: + if (action == MV88E6XXX_POLICY_ACTION_NORMAL) + state = 0; /* Dissociate the port and address */ + else if (action == MV88E6XXX_POLICY_ACTION_DISCARD && + is_multicast_ether_addr(addr)) + state = MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC_POLICY; + else if (action == MV88E6XXX_POLICY_ACTION_DISCARD && + is_unicast_ether_addr(addr)) + state = MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC_POLICY; + else + return -EOPNOTSUPP; + + err = mv88e6xxx_port_db_load_purge(chip, port, addr, vid, + state); + if (err) + return err; + break; + default: + return -EOPNOTSUPP; + } + + /* Skip the port's policy clearing if the mapping is still in use */ + if (action == MV88E6XXX_POLICY_ACTION_NORMAL) + idr_for_each_entry(&chip->policies, policy, id) + if (policy->port == port && + policy->mapping == mapping && + policy->action != action) + return 0; + + return chip->info->ops->port_set_policy(chip, port, mapping, action); +} + +static int mv88e6xxx_policy_insert(struct mv88e6xxx_chip *chip, int port, + struct ethtool_rx_flow_spec *fs) +{ + struct ethhdr *mac_entry = &fs->h_u.ether_spec; + struct ethhdr *mac_mask = &fs->m_u.ether_spec; + enum mv88e6xxx_policy_mapping mapping; + enum mv88e6xxx_policy_action action; + struct mv88e6xxx_policy *policy; + u16 vid = 0; + u8 *addr; + int err; + int id; + + if (fs->location != RX_CLS_LOC_ANY) + return -EINVAL; + + if (fs->ring_cookie == RX_CLS_FLOW_DISC) + action = MV88E6XXX_POLICY_ACTION_DISCARD; + else + return -EOPNOTSUPP; + + switch (fs->flow_type & ~FLOW_EXT) { + case ETHER_FLOW: + if (!is_zero_ether_addr(mac_mask->h_dest) && + is_zero_ether_addr(mac_mask->h_source)) { + mapping = MV88E6XXX_POLICY_MAPPING_DA; + addr = mac_entry->h_dest; + } else if (is_zero_ether_addr(mac_mask->h_dest) && + !is_zero_ether_addr(mac_mask->h_source)) { + mapping = MV88E6XXX_POLICY_MAPPING_SA; + addr = mac_entry->h_source; + } else { + /* Cannot support DA and SA mapping in the same rule */ + return -EOPNOTSUPP; + } + break; + default: + return -EOPNOTSUPP; + } + + if ((fs->flow_type & FLOW_EXT) && fs->m_ext.vlan_tci) { + if (fs->m_ext.vlan_tci != htons(0xffff)) + return -EOPNOTSUPP; + vid = be16_to_cpu(fs->h_ext.vlan_tci) & VLAN_VID_MASK; + } + + idr_for_each_entry(&chip->policies, policy, id) { + if (policy->port == port && policy->mapping == mapping && + policy->action == action && policy->vid == vid && + ether_addr_equal(policy->addr, addr)) + return -EEXIST; + } + + policy = devm_kzalloc(chip->dev, sizeof(*policy), GFP_KERNEL); + if (!policy) + return -ENOMEM; + + fs->location = 0; + err = idr_alloc_u32(&chip->policies, policy, &fs->location, 0xffffffff, + GFP_KERNEL); + if (err) { + devm_kfree(chip->dev, policy); + return err; + } + + memcpy(&policy->fs, fs, sizeof(*fs)); + ether_addr_copy(policy->addr, addr); + policy->mapping = mapping; + policy->action = action; + policy->port = port; + policy->vid = vid; + + err = mv88e6xxx_policy_apply(chip, port, policy); + if (err) { + idr_remove(&chip->policies, fs->location); + devm_kfree(chip->dev, policy); + return err; + } + + return 0; +} + +static int mv88e6xxx_get_rxnfc(struct dsa_switch *ds, int port, + struct ethtool_rxnfc *rxnfc, u32 *rule_locs) +{ + struct ethtool_rx_flow_spec *fs = &rxnfc->fs; + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_policy *policy; + int err; + int id; + + mv88e6xxx_reg_lock(chip); + + switch (rxnfc->cmd) { + case ETHTOOL_GRXCLSRLCNT: + rxnfc->data = 0; + rxnfc->data |= RX_CLS_LOC_SPECIAL; + rxnfc->rule_cnt = 0; + idr_for_each_entry(&chip->policies, policy, id) + if (policy->port == port) + rxnfc->rule_cnt++; + err = 0; + break; + case ETHTOOL_GRXCLSRULE: + err = -ENOENT; + policy = idr_find(&chip->policies, fs->location); + if (policy) { + memcpy(fs, &policy->fs, sizeof(*fs)); + err = 0; + } + break; + case ETHTOOL_GRXCLSRLALL: + rxnfc->data = 0; + rxnfc->rule_cnt = 0; + idr_for_each_entry(&chip->policies, policy, id) + if (policy->port == port) + rule_locs[rxnfc->rule_cnt++] = id; + err = 0; + break; + default: + err = -EOPNOTSUPP; + break; + } + + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_set_rxnfc(struct dsa_switch *ds, int port, + struct ethtool_rxnfc *rxnfc) +{ + struct ethtool_rx_flow_spec *fs = &rxnfc->fs; + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_policy *policy; + int err; + + mv88e6xxx_reg_lock(chip); + + switch (rxnfc->cmd) { + case ETHTOOL_SRXCLSRLINS: + err = mv88e6xxx_policy_insert(chip, port, fs); + break; + case ETHTOOL_SRXCLSRLDEL: + err = -ENOENT; + policy = idr_remove(&chip->policies, fs->location); + if (policy) { + policy->action = MV88E6XXX_POLICY_ACTION_NORMAL; + err = mv88e6xxx_policy_apply(chip, port, policy); + devm_kfree(chip->dev, policy); + } + break; + default: + err = -EOPNOTSUPP; + break; + } + + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_add_broadcast(struct mv88e6xxx_chip *chip, int port, + u16 vid) +{ + u8 state = MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC; + u8 broadcast[ETH_ALEN]; + + eth_broadcast_addr(broadcast); + + return mv88e6xxx_port_db_load_purge(chip, port, broadcast, vid, state); +} + +static int mv88e6xxx_broadcast_setup(struct mv88e6xxx_chip *chip, u16 vid) +{ + int port; + int err; + + for (port = 0; port < mv88e6xxx_num_ports(chip); port++) { + struct dsa_port *dp = dsa_to_port(chip->ds, port); + struct net_device *brport; + + if (dsa_is_unused_port(chip->ds, port)) + continue; + + brport = dsa_port_to_bridge_port(dp); + if (brport && !br_port_flag_is_set(brport, BR_BCAST_FLOOD)) + /* Skip bridged user ports where broadcast + * flooding is disabled. + */ + continue; + + err = mv88e6xxx_port_add_broadcast(chip, port, vid); + if (err) + return err; + } + + return 0; +} + +struct mv88e6xxx_port_broadcast_sync_ctx { + int port; + bool flood; +}; + +static int +mv88e6xxx_port_broadcast_sync_vlan(struct mv88e6xxx_chip *chip, + const struct mv88e6xxx_vtu_entry *vlan, + void *_ctx) +{ + struct mv88e6xxx_port_broadcast_sync_ctx *ctx = _ctx; + u8 broadcast[ETH_ALEN]; + u8 state; + + if (ctx->flood) + state = MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC; + else + state = MV88E6XXX_G1_ATU_DATA_STATE_MC_UNUSED; + + eth_broadcast_addr(broadcast); + + return mv88e6xxx_port_db_load_purge(chip, ctx->port, broadcast, + vlan->vid, state); +} + +static int mv88e6xxx_port_broadcast_sync(struct mv88e6xxx_chip *chip, int port, + bool flood) +{ + struct mv88e6xxx_port_broadcast_sync_ctx ctx = { + .port = port, + .flood = flood, + }; + struct mv88e6xxx_vtu_entry vid0 = { + .vid = 0, + }; + int err; + + /* Update the port's private database... */ + err = mv88e6xxx_port_broadcast_sync_vlan(chip, &vid0, &ctx); + if (err) + return err; + + /* ...and the database for all VLANs. */ + return mv88e6xxx_vtu_walk(chip, mv88e6xxx_port_broadcast_sync_vlan, + &ctx); +} + +static int mv88e6xxx_port_vlan_join(struct mv88e6xxx_chip *chip, int port, + u16 vid, u8 member, bool warn) +{ + const u8 non_member = MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_NON_MEMBER; + struct mv88e6xxx_vtu_entry vlan; + int i, err; + + err = mv88e6xxx_vtu_get(chip, vid, &vlan); + if (err) + return err; + + if (!vlan.valid) { + memset(&vlan, 0, sizeof(vlan)); + + if (vid == MV88E6XXX_VID_STANDALONE) + vlan.policy = true; + + err = mv88e6xxx_atu_new(chip, &vlan.fid); + if (err) + return err; + + for (i = 0; i < mv88e6xxx_num_ports(chip); ++i) + if (i == port) + vlan.member[i] = member; + else + vlan.member[i] = non_member; + + vlan.vid = vid; + vlan.valid = true; + + err = mv88e6xxx_vtu_loadpurge(chip, &vlan); + if (err) + return err; + + err = mv88e6xxx_broadcast_setup(chip, vlan.vid); + if (err) + return err; + } else if (vlan.member[port] != member) { + vlan.member[port] = member; + + err = mv88e6xxx_vtu_loadpurge(chip, &vlan); + if (err) + return err; + } else if (warn) { + dev_info(chip->dev, "p%d: already a member of VLAN %d\n", + port, vid); + } + + return 0; +} + +static int mv88e6xxx_port_vlan_add(struct dsa_switch *ds, int port, + const struct switchdev_obj_port_vlan *vlan, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + bool untagged = vlan->flags & BRIDGE_VLAN_INFO_UNTAGGED; + bool pvid = vlan->flags & BRIDGE_VLAN_INFO_PVID; + struct mv88e6xxx_port *p = &chip->ports[port]; + bool warn; + u8 member; + int err; + + if (!vlan->vid) + return 0; + + err = mv88e6xxx_port_vlan_prepare(ds, port, vlan); + if (err) + return err; + + if (dsa_is_dsa_port(ds, port) || dsa_is_cpu_port(ds, port)) + member = MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_UNMODIFIED; + else if (untagged) + member = MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_UNTAGGED; + else + member = MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_TAGGED; + + /* net/dsa/slave.c will call dsa_port_vlan_add() for the affected port + * and then the CPU port. Do not warn for duplicates for the CPU port. + */ + warn = !dsa_is_cpu_port(ds, port) && !dsa_is_dsa_port(ds, port); + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_port_vlan_join(chip, port, vlan->vid, member, warn); + if (err) { + dev_err(ds->dev, "p%d: failed to add VLAN %d%c\n", port, + vlan->vid, untagged ? 'u' : 't'); + goto out; + } + + if (pvid) { + p->bridge_pvid.vid = vlan->vid; + p->bridge_pvid.valid = true; + + err = mv88e6xxx_port_commit_pvid(chip, port); + if (err) + goto out; + } else if (vlan->vid && p->bridge_pvid.vid == vlan->vid) { + /* The old pvid was reinstalled as a non-pvid VLAN */ + p->bridge_pvid.valid = false; + + err = mv88e6xxx_port_commit_pvid(chip, port); + if (err) + goto out; + } + +out: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_vlan_leave(struct mv88e6xxx_chip *chip, + int port, u16 vid) +{ + struct mv88e6xxx_vtu_entry vlan; + int i, err; + + if (!vid) + return 0; + + err = mv88e6xxx_vtu_get(chip, vid, &vlan); + if (err) + return err; + + /* If the VLAN doesn't exist in hardware or the port isn't a member, + * tell switchdev that this VLAN is likely handled in software. + */ + if (!vlan.valid || + vlan.member[port] == MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_NON_MEMBER) + return -EOPNOTSUPP; + + vlan.member[port] = MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_NON_MEMBER; + + /* keep the VLAN unless all ports are excluded */ + vlan.valid = false; + for (i = 0; i < mv88e6xxx_num_ports(chip); ++i) { + if (vlan.member[i] != + MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_NON_MEMBER) { + vlan.valid = true; + break; + } + } + + err = mv88e6xxx_vtu_loadpurge(chip, &vlan); + if (err) + return err; + + if (!vlan.valid) { + err = mv88e6xxx_mst_put(chip, vlan.sid); + if (err) + return err; + } + + return mv88e6xxx_g1_atu_remove(chip, vlan.fid, port, false); +} + +static int mv88e6xxx_port_vlan_del(struct dsa_switch *ds, int port, + const struct switchdev_obj_port_vlan *vlan) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_port *p = &chip->ports[port]; + int err = 0; + u16 pvid; + + if (!mv88e6xxx_max_vid(chip)) + return -EOPNOTSUPP; + + /* The ATU removal procedure needs the FID to be mapped in the VTU, + * but FDB deletion runs concurrently with VLAN deletion. Flush the DSA + * switchdev workqueue to ensure that all FDB entries are deleted + * before we remove the VLAN. + */ + dsa_flush_workqueue(); + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_port_get_pvid(chip, port, &pvid); + if (err) + goto unlock; + + err = mv88e6xxx_port_vlan_leave(chip, port, vlan->vid); + if (err) + goto unlock; + + if (vlan->vid == pvid) { + p->bridge_pvid.valid = false; + + err = mv88e6xxx_port_commit_pvid(chip, port); + if (err) + goto unlock; + } + +unlock: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_vlan_fast_age(struct dsa_switch *ds, int port, u16 vid) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_vtu_entry vlan; + int err; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_vtu_get(chip, vid, &vlan); + if (err) + goto unlock; + + err = mv88e6xxx_port_fast_age_fid(chip, port, vlan.fid); + +unlock: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_vlan_msti_set(struct dsa_switch *ds, + struct dsa_bridge bridge, + const struct switchdev_vlan_msti *msti) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_vtu_entry vlan; + u8 old_sid, new_sid; + int err; + + if (!mv88e6xxx_has_stu(chip)) + return -EOPNOTSUPP; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_vtu_get(chip, msti->vid, &vlan); + if (err) + goto unlock; + + if (!vlan.valid) { + err = -EINVAL; + goto unlock; + } + + old_sid = vlan.sid; + + err = mv88e6xxx_mst_get(chip, bridge.dev, msti->msti, &new_sid); + if (err) + goto unlock; + + if (new_sid != old_sid) { + vlan.sid = new_sid; + + err = mv88e6xxx_vtu_loadpurge(chip, &vlan); + if (err) { + mv88e6xxx_mst_put(chip, new_sid); + goto unlock; + } + } + + err = mv88e6xxx_mst_put(chip, old_sid); + +unlock: + mv88e6xxx_reg_unlock(chip); + return err; +} + +static int mv88e6xxx_port_fdb_add(struct dsa_switch *ds, int port, + const unsigned char *addr, u16 vid, + struct dsa_db db) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_db_load_purge(chip, port, addr, vid, + MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_fdb_del(struct dsa_switch *ds, int port, + const unsigned char *addr, u16 vid, + struct dsa_db db) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_db_load_purge(chip, port, addr, vid, 0); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_db_dump_fid(struct mv88e6xxx_chip *chip, + u16 fid, u16 vid, int port, + dsa_fdb_dump_cb_t *cb, void *data) +{ + struct mv88e6xxx_atu_entry addr; + bool is_static; + int err; + + addr.state = 0; + eth_broadcast_addr(addr.mac); + + do { + err = mv88e6xxx_g1_atu_getnext(chip, fid, &addr); + if (err) + return err; + + if (!addr.state) + break; + + if (addr.trunk || (addr.portvec & BIT(port)) == 0) + continue; + + if (!is_unicast_ether_addr(addr.mac)) + continue; + + is_static = (addr.state == + MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC); + err = cb(addr.mac, vid, is_static, data); + if (err) + return err; + } while (!is_broadcast_ether_addr(addr.mac)); + + return err; +} + +struct mv88e6xxx_port_db_dump_vlan_ctx { + int port; + dsa_fdb_dump_cb_t *cb; + void *data; +}; + +static int mv88e6xxx_port_db_dump_vlan(struct mv88e6xxx_chip *chip, + const struct mv88e6xxx_vtu_entry *entry, + void *_data) +{ + struct mv88e6xxx_port_db_dump_vlan_ctx *ctx = _data; + + return mv88e6xxx_port_db_dump_fid(chip, entry->fid, entry->vid, + ctx->port, ctx->cb, ctx->data); +} + +static int mv88e6xxx_port_db_dump(struct mv88e6xxx_chip *chip, int port, + dsa_fdb_dump_cb_t *cb, void *data) +{ + struct mv88e6xxx_port_db_dump_vlan_ctx ctx = { + .port = port, + .cb = cb, + .data = data, + }; + u16 fid; + int err; + + /* Dump port's default Filtering Information Database (VLAN ID 0) */ + err = mv88e6xxx_port_get_fid(chip, port, &fid); + if (err) + return err; + + err = mv88e6xxx_port_db_dump_fid(chip, fid, 0, port, cb, data); + if (err) + return err; + + return mv88e6xxx_vtu_walk(chip, mv88e6xxx_port_db_dump_vlan, &ctx); +} + +static int mv88e6xxx_port_fdb_dump(struct dsa_switch *ds, int port, + dsa_fdb_dump_cb_t *cb, void *data) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_db_dump(chip, port, cb, data); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_bridge_map(struct mv88e6xxx_chip *chip, + struct dsa_bridge bridge) +{ + struct dsa_switch *ds = chip->ds; + struct dsa_switch_tree *dst = ds->dst; + struct dsa_port *dp; + int err; + + list_for_each_entry(dp, &dst->ports, list) { + if (dsa_port_offloads_bridge(dp, &bridge)) { + if (dp->ds == ds) { + /* This is a local bridge group member, + * remap its Port VLAN Map. + */ + err = mv88e6xxx_port_vlan_map(chip, dp->index); + if (err) + return err; + } else { + /* This is an external bridge group member, + * remap its cross-chip Port VLAN Table entry. + */ + err = mv88e6xxx_pvt_map(chip, dp->ds->index, + dp->index); + if (err) + return err; + } + } + } + + return 0; +} + +/* Treat the software bridge as a virtual single-port switch behind the + * CPU and map in the PVT. First dst->last_switch elements are taken by + * physical switches, so start from beyond that range. + */ +static int mv88e6xxx_map_virtual_bridge_to_pvt(struct dsa_switch *ds, + unsigned int bridge_num) +{ + u8 dev = bridge_num + ds->dst->last_switch; + struct mv88e6xxx_chip *chip = ds->priv; + + return mv88e6xxx_pvt_map(chip, dev, 0); +} + +static int mv88e6xxx_port_bridge_join(struct dsa_switch *ds, int port, + struct dsa_bridge bridge, + bool *tx_fwd_offload, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_bridge_map(chip, bridge); + if (err) + goto unlock; + + err = mv88e6xxx_port_set_map_da(chip, port, true); + if (err) + goto unlock; + + err = mv88e6xxx_port_commit_pvid(chip, port); + if (err) + goto unlock; + + if (mv88e6xxx_has_pvt(chip)) { + err = mv88e6xxx_map_virtual_bridge_to_pvt(ds, bridge.num); + if (err) + goto unlock; + + *tx_fwd_offload = true; + } + +unlock: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static void mv88e6xxx_port_bridge_leave(struct dsa_switch *ds, int port, + struct dsa_bridge bridge) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + + if (bridge.tx_fwd_offload && + mv88e6xxx_map_virtual_bridge_to_pvt(ds, bridge.num)) + dev_err(ds->dev, "failed to remap cross-chip Port VLAN\n"); + + if (mv88e6xxx_bridge_map(chip, bridge) || + mv88e6xxx_port_vlan_map(chip, port)) + dev_err(ds->dev, "failed to remap in-chip Port VLAN\n"); + + err = mv88e6xxx_port_set_map_da(chip, port, false); + if (err) + dev_err(ds->dev, + "port %d failed to restore map-DA: %pe\n", + port, ERR_PTR(err)); + + err = mv88e6xxx_port_commit_pvid(chip, port); + if (err) + dev_err(ds->dev, + "port %d failed to restore standalone pvid: %pe\n", + port, ERR_PTR(err)); + + mv88e6xxx_reg_unlock(chip); +} + +static int mv88e6xxx_crosschip_bridge_join(struct dsa_switch *ds, + int tree_index, int sw_index, + int port, struct dsa_bridge bridge, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + if (tree_index != ds->dst->index) + return 0; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_pvt_map(chip, sw_index, port); + err = err ? : mv88e6xxx_map_virtual_bridge_to_pvt(ds, bridge.num); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static void mv88e6xxx_crosschip_bridge_leave(struct dsa_switch *ds, + int tree_index, int sw_index, + int port, struct dsa_bridge bridge) +{ + struct mv88e6xxx_chip *chip = ds->priv; + + if (tree_index != ds->dst->index) + return; + + mv88e6xxx_reg_lock(chip); + if (mv88e6xxx_pvt_map(chip, sw_index, port) || + mv88e6xxx_map_virtual_bridge_to_pvt(ds, bridge.num)) + dev_err(ds->dev, "failed to remap cross-chip Port VLAN\n"); + mv88e6xxx_reg_unlock(chip); +} + +static int mv88e6xxx_software_reset(struct mv88e6xxx_chip *chip) +{ + if (chip->info->ops->reset) + return chip->info->ops->reset(chip); + + return 0; +} + +static void mv88e6xxx_hardware_reset(struct mv88e6xxx_chip *chip) +{ + struct gpio_desc *gpiod = chip->reset; + + /* If there is a GPIO connected to the reset pin, toggle it */ + if (gpiod) { + /* If the switch has just been reset and not yet completed + * loading EEPROM, the reset may interrupt the I2C transaction + * mid-byte, causing the first EEPROM read after the reset + * from the wrong location resulting in the switch booting + * to wrong mode and inoperable. + */ + if (chip->info->ops->get_eeprom) + mv88e6xxx_g2_eeprom_wait(chip); + + gpiod_set_value_cansleep(gpiod, 1); + usleep_range(10000, 20000); + gpiod_set_value_cansleep(gpiod, 0); + usleep_range(10000, 20000); + + if (chip->info->ops->get_eeprom) + mv88e6xxx_g2_eeprom_wait(chip); + } +} + +static int mv88e6xxx_disable_ports(struct mv88e6xxx_chip *chip) +{ + int i, err; + + /* Set all ports to the Disabled state */ + for (i = 0; i < mv88e6xxx_num_ports(chip); i++) { + err = mv88e6xxx_port_set_state(chip, i, BR_STATE_DISABLED); + if (err) + return err; + } + + /* Wait for transmit queues to drain, + * i.e. 2ms for a maximum frame to be transmitted at 10 Mbps. + */ + usleep_range(2000, 4000); + + return 0; +} + +static int mv88e6xxx_switch_reset(struct mv88e6xxx_chip *chip) +{ + int err; + + err = mv88e6xxx_disable_ports(chip); + if (err) + return err; + + mv88e6xxx_hardware_reset(chip); + + return mv88e6xxx_software_reset(chip); +} + +static int mv88e6xxx_set_port_mode(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_frame_mode frame, + enum mv88e6xxx_egress_mode egress, u16 etype) +{ + int err; + + if (!chip->info->ops->port_set_frame_mode) + return -EOPNOTSUPP; + + err = mv88e6xxx_port_set_egress_mode(chip, port, egress); + if (err) + return err; + + err = chip->info->ops->port_set_frame_mode(chip, port, frame); + if (err) + return err; + + if (chip->info->ops->port_set_ether_type) + return chip->info->ops->port_set_ether_type(chip, port, etype); + + return 0; +} + +static int mv88e6xxx_set_port_mode_normal(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_set_port_mode(chip, port, MV88E6XXX_FRAME_MODE_NORMAL, + MV88E6XXX_EGRESS_MODE_UNMODIFIED, + MV88E6XXX_PORT_ETH_TYPE_DEFAULT); +} + +static int mv88e6xxx_set_port_mode_dsa(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_set_port_mode(chip, port, MV88E6XXX_FRAME_MODE_DSA, + MV88E6XXX_EGRESS_MODE_UNMODIFIED, + MV88E6XXX_PORT_ETH_TYPE_DEFAULT); +} + +static int mv88e6xxx_set_port_mode_edsa(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_set_port_mode(chip, port, + MV88E6XXX_FRAME_MODE_ETHERTYPE, + MV88E6XXX_EGRESS_MODE_ETHERTYPE, + ETH_P_EDSA); +} + +static int mv88e6xxx_setup_port_mode(struct mv88e6xxx_chip *chip, int port) +{ + if (dsa_is_dsa_port(chip->ds, port)) + return mv88e6xxx_set_port_mode_dsa(chip, port); + + if (dsa_is_user_port(chip->ds, port)) + return mv88e6xxx_set_port_mode_normal(chip, port); + + /* Setup CPU port mode depending on its supported tag format */ + if (chip->tag_protocol == DSA_TAG_PROTO_DSA) + return mv88e6xxx_set_port_mode_dsa(chip, port); + + if (chip->tag_protocol == DSA_TAG_PROTO_EDSA) + return mv88e6xxx_set_port_mode_edsa(chip, port); + + return -EINVAL; +} + +static int mv88e6xxx_setup_message_port(struct mv88e6xxx_chip *chip, int port) +{ + bool message = dsa_is_dsa_port(chip->ds, port); + + return mv88e6xxx_port_set_message_port(chip, port, message); +} + +static int mv88e6xxx_setup_egress_floods(struct mv88e6xxx_chip *chip, int port) +{ + int err; + + if (chip->info->ops->port_set_ucast_flood) { + err = chip->info->ops->port_set_ucast_flood(chip, port, true); + if (err) + return err; + } + if (chip->info->ops->port_set_mcast_flood) { + err = chip->info->ops->port_set_mcast_flood(chip, port, true); + if (err) + return err; + } + + return 0; +} + +static irqreturn_t mv88e6xxx_serdes_irq_thread_fn(int irq, void *dev_id) +{ + struct mv88e6xxx_port *mvp = dev_id; + struct mv88e6xxx_chip *chip = mvp->chip; + irqreturn_t ret = IRQ_NONE; + int port = mvp->port; + int lane; + + mv88e6xxx_reg_lock(chip); + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane >= 0) + ret = mv88e6xxx_serdes_irq_status(chip, port, lane); + mv88e6xxx_reg_unlock(chip); + + return ret; +} + +static int mv88e6xxx_serdes_irq_request(struct mv88e6xxx_chip *chip, int port, + int lane) +{ + struct mv88e6xxx_port *dev_id = &chip->ports[port]; + unsigned int irq; + int err; + + /* Nothing to request if this SERDES port has no IRQ */ + irq = mv88e6xxx_serdes_irq_mapping(chip, port); + if (!irq) + return 0; + + snprintf(dev_id->serdes_irq_name, sizeof(dev_id->serdes_irq_name), + "mv88e6xxx-%s-serdes-%d", dev_name(chip->dev), port); + + /* Requesting the IRQ will trigger IRQ callbacks, so release the lock */ + mv88e6xxx_reg_unlock(chip); + err = request_threaded_irq(irq, NULL, mv88e6xxx_serdes_irq_thread_fn, + IRQF_ONESHOT, dev_id->serdes_irq_name, + dev_id); + mv88e6xxx_reg_lock(chip); + if (err) + return err; + + dev_id->serdes_irq = irq; + + return mv88e6xxx_serdes_irq_enable(chip, port, lane); +} + +static int mv88e6xxx_serdes_irq_free(struct mv88e6xxx_chip *chip, int port, + int lane) +{ + struct mv88e6xxx_port *dev_id = &chip->ports[port]; + unsigned int irq = dev_id->serdes_irq; + int err; + + /* Nothing to free if no IRQ has been requested */ + if (!irq) + return 0; + + err = mv88e6xxx_serdes_irq_disable(chip, port, lane); + + /* Freeing the IRQ will trigger IRQ callbacks, so release the lock */ + mv88e6xxx_reg_unlock(chip); + free_irq(irq, dev_id); + mv88e6xxx_reg_lock(chip); + + dev_id->serdes_irq = 0; + + return err; +} + +static int mv88e6xxx_serdes_power(struct mv88e6xxx_chip *chip, int port, + bool on) +{ + int lane; + int err; + + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane < 0) + return 0; + + if (on) { + err = mv88e6xxx_serdes_power_up(chip, port, lane); + if (err) + return err; + + err = mv88e6xxx_serdes_irq_request(chip, port, lane); + } else { + err = mv88e6xxx_serdes_irq_free(chip, port, lane); + if (err) + return err; + + err = mv88e6xxx_serdes_power_down(chip, port, lane); + } + + return err; +} + +static int mv88e6xxx_set_egress_port(struct mv88e6xxx_chip *chip, + enum mv88e6xxx_egress_direction direction, + int port) +{ + int err; + + if (!chip->info->ops->set_egress_port) + return -EOPNOTSUPP; + + err = chip->info->ops->set_egress_port(chip, direction, port); + if (err) + return err; + + if (direction == MV88E6XXX_EGRESS_DIR_INGRESS) + chip->ingress_dest_port = port; + else + chip->egress_dest_port = port; + + return 0; +} + +static int mv88e6xxx_setup_upstream_port(struct mv88e6xxx_chip *chip, int port) +{ + struct dsa_switch *ds = chip->ds; + int upstream_port; + int err; + + upstream_port = dsa_upstream_port(ds, port); + if (chip->info->ops->port_set_upstream_port) { + err = chip->info->ops->port_set_upstream_port(chip, port, + upstream_port); + if (err) + return err; + } + + if (port == upstream_port) { + if (chip->info->ops->set_cpu_port) { + err = chip->info->ops->set_cpu_port(chip, + upstream_port); + if (err) + return err; + } + + err = mv88e6xxx_set_egress_port(chip, + MV88E6XXX_EGRESS_DIR_INGRESS, + upstream_port); + if (err && err != -EOPNOTSUPP) + return err; + + err = mv88e6xxx_set_egress_port(chip, + MV88E6XXX_EGRESS_DIR_EGRESS, + upstream_port); + if (err && err != -EOPNOTSUPP) + return err; + } + + return 0; +} + +static int mv88e6xxx_setup_port(struct mv88e6xxx_chip *chip, int port) +{ + struct device_node *phy_handle = NULL; + struct dsa_switch *ds = chip->ds; + phy_interface_t mode; + struct dsa_port *dp; + int tx_amp, speed; + int err; + u16 reg; + + chip->ports[port].chip = chip; + chip->ports[port].port = port; + + dp = dsa_to_port(ds, port); + + /* MAC Forcing register: don't force link, speed, duplex or flow control + * state to any particular values on physical ports, but force the CPU + * port and all DSA ports to their maximum bandwidth and full duplex. + */ + if (dsa_is_cpu_port(ds, port) || dsa_is_dsa_port(ds, port)) { + struct phylink_config pl_config = {}; + unsigned long caps; + + chip->info->ops->phylink_get_caps(chip, port, &pl_config); + + caps = pl_config.mac_capabilities; + + if (chip->info->ops->port_max_speed_mode) + mode = chip->info->ops->port_max_speed_mode(port); + else + mode = PHY_INTERFACE_MODE_NA; + + if (caps & MAC_10000FD) + speed = SPEED_10000; + else if (caps & MAC_5000FD) + speed = SPEED_5000; + else if (caps & MAC_2500FD) + speed = SPEED_2500; + else if (caps & MAC_1000) + speed = SPEED_1000; + else if (caps & MAC_100) + speed = SPEED_100; + else + speed = SPEED_10; + + err = mv88e6xxx_port_setup_mac(chip, port, LINK_FORCED_UP, + speed, DUPLEX_FULL, + PAUSE_OFF, mode); + } else { + err = mv88e6xxx_port_setup_mac(chip, port, LINK_UNFORCED, + SPEED_UNFORCED, DUPLEX_UNFORCED, + PAUSE_ON, + PHY_INTERFACE_MODE_NA); + } + if (err) + return err; + + /* Port Control: disable Drop-on-Unlock, disable Drop-on-Lock, + * disable Header mode, enable IGMP/MLD snooping, disable VLAN + * tunneling, determine priority by looking at 802.1p and IP + * priority fields (IP prio has precedence), and set STP state + * to Forwarding. + * + * If this is the CPU link, use DSA or EDSA tagging depending + * on which tagging mode was configured. + * + * If this is a link to another switch, use DSA tagging mode. + * + * If this is the upstream port for this switch, enable + * forwarding of unknown unicasts and multicasts. + */ + reg = MV88E6185_PORT_CTL0_USE_TAG | MV88E6185_PORT_CTL0_USE_IP | + MV88E6XXX_PORT_CTL0_STATE_FORWARDING; + /* Forward any IPv4 IGMP or IPv6 MLD frames received + * by a USER port to the CPU port to allow snooping. + */ + if (dsa_is_user_port(ds, port)) + reg |= MV88E6XXX_PORT_CTL0_IGMP_MLD_SNOOP; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); + if (err) + return err; + + err = mv88e6xxx_setup_port_mode(chip, port); + if (err) + return err; + + err = mv88e6xxx_setup_egress_floods(chip, port); + if (err) + return err; + + /* Port Control 2: don't force a good FCS, set the MTU size to + * 10222 bytes, disable 802.1q tags checking, don't discard + * tagged or untagged frames on this port, skip destination + * address lookup on user ports, disable ARP mirroring and don't + * send a copy of all transmitted/received frames on this port + * to the CPU. + */ + err = mv88e6xxx_port_set_map_da(chip, port, !dsa_is_user_port(ds, port)); + if (err) + return err; + + err = mv88e6xxx_setup_upstream_port(chip, port); + if (err) + return err; + + /* On chips that support it, set all downstream DSA ports' + * VLAN policy to TRAP. In combination with loading + * MV88E6XXX_VID_STANDALONE as a policy entry in the VTU, this + * provides a better isolation barrier between standalone + * ports, as the ATU is bypassed on any intermediate switches + * between the incoming port and the CPU. + */ + if (dsa_is_downstream_port(ds, port) && + chip->info->ops->port_set_policy) { + err = chip->info->ops->port_set_policy(chip, port, + MV88E6XXX_POLICY_MAPPING_VTU, + MV88E6XXX_POLICY_ACTION_TRAP); + if (err) + return err; + } + + /* User ports start out in standalone mode and 802.1Q is + * therefore disabled. On DSA ports, all valid VIDs are always + * loaded in the VTU - therefore, enable 802.1Q in order to take + * advantage of VLAN policy on chips that supports it. + */ + err = mv88e6xxx_port_set_8021q_mode(chip, port, + dsa_is_user_port(ds, port) ? + MV88E6XXX_PORT_CTL2_8021Q_MODE_DISABLED : + MV88E6XXX_PORT_CTL2_8021Q_MODE_SECURE); + if (err) + return err; + + /* Bind MV88E6XXX_VID_STANDALONE to MV88E6XXX_FID_STANDALONE by + * virtue of the fact that mv88e6xxx_atu_new() will pick it as + * the first free FID. This will be used as the private PVID for + * unbridged ports. Shared (DSA and CPU) ports must also be + * members of this VID, in order to trap all frames assigned to + * it to the CPU. + */ + err = mv88e6xxx_port_vlan_join(chip, port, MV88E6XXX_VID_STANDALONE, + MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_UNMODIFIED, + false); + if (err) + return err; + + /* Associate MV88E6XXX_VID_BRIDGED with MV88E6XXX_FID_BRIDGED in the + * ATU by virtue of the fact that mv88e6xxx_atu_new() will pick it as + * the first free FID after MV88E6XXX_FID_STANDALONE. This will be used + * as the private PVID on ports under a VLAN-unaware bridge. + * Shared (DSA and CPU) ports must also be members of it, to translate + * the VID from the DSA tag into MV88E6XXX_FID_BRIDGED, instead of + * relying on their port default FID. + */ + err = mv88e6xxx_port_vlan_join(chip, port, MV88E6XXX_VID_BRIDGED, + MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_UNMODIFIED, + false); + if (err) + return err; + + if (chip->info->ops->port_set_jumbo_size) { + err = chip->info->ops->port_set_jumbo_size(chip, port, 10218); + if (err) + return err; + } + + /* Port Association Vector: disable automatic address learning + * on all user ports since they start out in standalone + * mode. When joining a bridge, learning will be configured to + * match the bridge port settings. Enable learning on all + * DSA/CPU ports. NOTE: FROM_CPU frames always bypass the + * learning process. + * + * Disable HoldAt1, IntOnAgeOut, LockedPort, IgnoreWrongData, + * and RefreshLocked. I.e. setup standard automatic learning. + */ + if (dsa_is_user_port(ds, port)) + reg = 0; + else + reg = 1 << port; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_ASSOC_VECTOR, + reg); + if (err) + return err; + + /* Egress rate control 2: disable egress rate control. */ + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_EGRESS_RATE_CTL2, + 0x0000); + if (err) + return err; + + if (chip->info->ops->port_pause_limit) { + err = chip->info->ops->port_pause_limit(chip, port, 0, 0); + if (err) + return err; + } + + if (chip->info->ops->port_disable_learn_limit) { + err = chip->info->ops->port_disable_learn_limit(chip, port); + if (err) + return err; + } + + if (chip->info->ops->port_disable_pri_override) { + err = chip->info->ops->port_disable_pri_override(chip, port); + if (err) + return err; + } + + if (chip->info->ops->port_tag_remap) { + err = chip->info->ops->port_tag_remap(chip, port); + if (err) + return err; + } + + if (chip->info->ops->port_egress_rate_limiting) { + err = chip->info->ops->port_egress_rate_limiting(chip, port); + if (err) + return err; + } + + if (chip->info->ops->port_setup_message_port) { + err = chip->info->ops->port_setup_message_port(chip, port); + if (err) + return err; + } + + if (chip->info->ops->serdes_set_tx_amplitude) { + if (dp) + phy_handle = of_parse_phandle(dp->dn, "phy-handle", 0); + + if (phy_handle && !of_property_read_u32(phy_handle, + "tx-p2p-microvolt", + &tx_amp)) + err = chip->info->ops->serdes_set_tx_amplitude(chip, + port, tx_amp); + if (phy_handle) { + of_node_put(phy_handle); + if (err) + return err; + } + } + + /* Port based VLAN map: give each port the same default address + * database, and allow bidirectional communication between the + * CPU and DSA port(s), and the other ports. + */ + err = mv88e6xxx_port_set_fid(chip, port, MV88E6XXX_FID_STANDALONE); + if (err) + return err; + + err = mv88e6xxx_port_vlan_map(chip, port); + if (err) + return err; + + /* Default VLAN ID and priority: don't set a default VLAN + * ID, and set the default packet priority to zero. + */ + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_DEFAULT_VLAN, 0); +} + +static int mv88e6xxx_get_max_mtu(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + + if (chip->info->ops->port_set_jumbo_size) + return 10240 - VLAN_ETH_HLEN - EDSA_HLEN - ETH_FCS_LEN; + else if (chip->info->ops->set_max_frame_size) + return 1632 - VLAN_ETH_HLEN - EDSA_HLEN - ETH_FCS_LEN; + return ETH_DATA_LEN; +} + +static int mv88e6xxx_change_mtu(struct dsa_switch *ds, int port, int new_mtu) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int ret = 0; + + /* For families where we don't know how to alter the MTU, + * just accept any value up to ETH_DATA_LEN + */ + if (!chip->info->ops->port_set_jumbo_size && + !chip->info->ops->set_max_frame_size) { + if (new_mtu > ETH_DATA_LEN) + return -EINVAL; + + return 0; + } + + if (dsa_is_dsa_port(ds, port) || dsa_is_cpu_port(ds, port)) + new_mtu += EDSA_HLEN; + + mv88e6xxx_reg_lock(chip); + if (chip->info->ops->port_set_jumbo_size) + ret = chip->info->ops->port_set_jumbo_size(chip, port, new_mtu); + else if (chip->info->ops->set_max_frame_size) + ret = chip->info->ops->set_max_frame_size(chip, new_mtu); + mv88e6xxx_reg_unlock(chip); + + return ret; +} + +static int mv88e6xxx_port_enable(struct dsa_switch *ds, int port, + struct phy_device *phydev) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_serdes_power(chip, port, true); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static void mv88e6xxx_port_disable(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + + mv88e6xxx_reg_lock(chip); + if (mv88e6xxx_serdes_power(chip, port, false)) + dev_err(chip->dev, "failed to power off SERDES\n"); + mv88e6xxx_reg_unlock(chip); +} + +static int mv88e6xxx_set_ageing_time(struct dsa_switch *ds, + unsigned int ageing_time) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_g1_atu_set_age_time(chip, ageing_time); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_stats_setup(struct mv88e6xxx_chip *chip) +{ + int err; + + /* Initialize the statistics unit */ + if (chip->info->ops->stats_set_histogram) { + err = chip->info->ops->stats_set_histogram(chip); + if (err) + return err; + } + + return mv88e6xxx_g1_stats_clear(chip); +} + +/* Check if the errata has already been applied. */ +static bool mv88e6390_setup_errata_applied(struct mv88e6xxx_chip *chip) +{ + int port; + int err; + u16 val; + + for (port = 0; port < mv88e6xxx_num_ports(chip); port++) { + err = mv88e6xxx_port_hidden_read(chip, 0xf, port, 0, &val); + if (err) { + dev_err(chip->dev, + "Error reading hidden register: %d\n", err); + return false; + } + if (val != 0x01c0) + return false; + } + + return true; +} + +/* The 6390 copper ports have an errata which require poking magic + * values into undocumented hidden registers and then performing a + * software reset. + */ +static int mv88e6390_setup_errata(struct mv88e6xxx_chip *chip) +{ + int port; + int err; + + if (mv88e6390_setup_errata_applied(chip)) + return 0; + + /* Set the ports into blocking mode */ + for (port = 0; port < mv88e6xxx_num_ports(chip); port++) { + err = mv88e6xxx_port_set_state(chip, port, BR_STATE_DISABLED); + if (err) + return err; + } + + for (port = 0; port < mv88e6xxx_num_ports(chip); port++) { + err = mv88e6xxx_port_hidden_write(chip, 0xf, port, 0, 0x01c0); + if (err) + return err; + } + + return mv88e6xxx_software_reset(chip); +} + +static void mv88e6xxx_teardown(struct dsa_switch *ds) +{ + mv88e6xxx_teardown_devlink_params(ds); + dsa_devlink_resources_unregister(ds); + mv88e6xxx_teardown_devlink_regions_global(ds); +} + +static int mv88e6xxx_setup(struct dsa_switch *ds) +{ + struct mv88e6xxx_chip *chip = ds->priv; + u8 cmode; + int err; + int i; + + chip->ds = ds; + ds->slave_mii_bus = mv88e6xxx_default_mdio_bus(chip); + + /* Since virtual bridges are mapped in the PVT, the number we support + * depends on the physical switch topology. We need to let DSA figure + * that out and therefore we cannot set this at dsa_register_switch() + * time. + */ + if (mv88e6xxx_has_pvt(chip)) + ds->max_num_bridges = MV88E6XXX_MAX_PVT_SWITCHES - + ds->dst->last_switch - 1; + + mv88e6xxx_reg_lock(chip); + + if (chip->info->ops->setup_errata) { + err = chip->info->ops->setup_errata(chip); + if (err) + goto unlock; + } + + /* Cache the cmode of each port. */ + for (i = 0; i < mv88e6xxx_num_ports(chip); i++) { + if (chip->info->ops->port_get_cmode) { + err = chip->info->ops->port_get_cmode(chip, i, &cmode); + if (err) + goto unlock; + + chip->ports[i].cmode = cmode; + } + } + + err = mv88e6xxx_vtu_setup(chip); + if (err) + goto unlock; + + /* Must be called after mv88e6xxx_vtu_setup (which flushes the + * VTU, thereby also flushing the STU). + */ + err = mv88e6xxx_stu_setup(chip); + if (err) + goto unlock; + + /* Setup Switch Port Registers */ + for (i = 0; i < mv88e6xxx_num_ports(chip); i++) { + if (dsa_is_unused_port(ds, i)) + continue; + + /* Prevent the use of an invalid port. */ + if (mv88e6xxx_is_invalid_port(chip, i)) { + dev_err(chip->dev, "port %d is invalid\n", i); + err = -EINVAL; + goto unlock; + } + + err = mv88e6xxx_setup_port(chip, i); + if (err) + goto unlock; + } + + err = mv88e6xxx_irl_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_mac_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_phy_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_pvt_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_atu_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_broadcast_setup(chip, 0); + if (err) + goto unlock; + + err = mv88e6xxx_pot_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_rmu_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_rsvd2cpu_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_trunk_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_devmap_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_pri_setup(chip); + if (err) + goto unlock; + + /* Setup PTP Hardware Clock and timestamping */ + if (chip->info->ptp_support) { + err = mv88e6xxx_ptp_setup(chip); + if (err) + goto unlock; + + err = mv88e6xxx_hwtstamp_setup(chip); + if (err) + goto unlock; + } + + err = mv88e6xxx_stats_setup(chip); + if (err) + goto unlock; + +unlock: + mv88e6xxx_reg_unlock(chip); + + if (err) + return err; + + /* Have to be called without holding the register lock, since + * they take the devlink lock, and we later take the locks in + * the reverse order when getting/setting parameters or + * resource occupancy. + */ + err = mv88e6xxx_setup_devlink_resources(ds); + if (err) + return err; + + err = mv88e6xxx_setup_devlink_params(ds); + if (err) + goto out_resources; + + err = mv88e6xxx_setup_devlink_regions_global(ds); + if (err) + goto out_params; + + return 0; + +out_params: + mv88e6xxx_teardown_devlink_params(ds); +out_resources: + dsa_devlink_resources_unregister(ds); + + return err; +} + +static int mv88e6xxx_port_setup(struct dsa_switch *ds, int port) +{ + return mv88e6xxx_setup_devlink_regions_port(ds, port); +} + +static void mv88e6xxx_port_teardown(struct dsa_switch *ds, int port) +{ + mv88e6xxx_teardown_devlink_regions_port(ds, port); +} + +/* prod_id for switch families which do not have a PHY model number */ +static const u16 family_prod_id_table[] = { + [MV88E6XXX_FAMILY_6341] = MV88E6XXX_PORT_SWITCH_ID_PROD_6341, + [MV88E6XXX_FAMILY_6390] = MV88E6XXX_PORT_SWITCH_ID_PROD_6390, + [MV88E6XXX_FAMILY_6393] = MV88E6XXX_PORT_SWITCH_ID_PROD_6393X, +}; + +static int mv88e6xxx_mdio_read(struct mii_bus *bus, int phy, int reg) +{ + struct mv88e6xxx_mdio_bus *mdio_bus = bus->priv; + struct mv88e6xxx_chip *chip = mdio_bus->chip; + u16 prod_id; + u16 val; + int err; + + if (!chip->info->ops->phy_read) + return -EOPNOTSUPP; + + mv88e6xxx_reg_lock(chip); + err = chip->info->ops->phy_read(chip, bus, phy, reg, &val); + mv88e6xxx_reg_unlock(chip); + + /* Some internal PHYs don't have a model number. */ + if (reg == MII_PHYSID2 && !(val & 0x3f0) && + chip->info->family < ARRAY_SIZE(family_prod_id_table)) { + prod_id = family_prod_id_table[chip->info->family]; + if (prod_id) + val |= prod_id >> 4; + } + + return err ? err : val; +} + +static int mv88e6xxx_mdio_write(struct mii_bus *bus, int phy, int reg, u16 val) +{ + struct mv88e6xxx_mdio_bus *mdio_bus = bus->priv; + struct mv88e6xxx_chip *chip = mdio_bus->chip; + int err; + + if (!chip->info->ops->phy_write) + return -EOPNOTSUPP; + + mv88e6xxx_reg_lock(chip); + err = chip->info->ops->phy_write(chip, bus, phy, reg, val); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_mdio_register(struct mv88e6xxx_chip *chip, + struct device_node *np, + bool external) +{ + static int index; + struct mv88e6xxx_mdio_bus *mdio_bus; + struct mii_bus *bus; + int err; + + if (external) { + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_g2_scratch_gpio_set_smi(chip, true); + mv88e6xxx_reg_unlock(chip); + + if (err) + return err; + } + + bus = mdiobus_alloc_size(sizeof(*mdio_bus)); + if (!bus) + return -ENOMEM; + + mdio_bus = bus->priv; + mdio_bus->bus = bus; + mdio_bus->chip = chip; + INIT_LIST_HEAD(&mdio_bus->list); + mdio_bus->external = external; + + if (np) { + bus->name = np->full_name; + snprintf(bus->id, MII_BUS_ID_SIZE, "%pOF", np); + } else { + bus->name = "mv88e6xxx SMI"; + snprintf(bus->id, MII_BUS_ID_SIZE, "mv88e6xxx-%d", index++); + } + + bus->read = mv88e6xxx_mdio_read; + bus->write = mv88e6xxx_mdio_write; + bus->parent = chip->dev; + + if (!external) { + err = mv88e6xxx_g2_irq_mdio_setup(chip, bus); + if (err) + goto out; + } + + err = of_mdiobus_register(bus, np); + if (err) { + dev_err(chip->dev, "Cannot register MDIO bus (%d)\n", err); + mv88e6xxx_g2_irq_mdio_free(chip, bus); + goto out; + } + + if (external) + list_add_tail(&mdio_bus->list, &chip->mdios); + else + list_add(&mdio_bus->list, &chip->mdios); + + return 0; + +out: + mdiobus_free(bus); + return err; +} + +static void mv88e6xxx_mdios_unregister(struct mv88e6xxx_chip *chip) + +{ + struct mv88e6xxx_mdio_bus *mdio_bus, *p; + struct mii_bus *bus; + + list_for_each_entry_safe(mdio_bus, p, &chip->mdios, list) { + bus = mdio_bus->bus; + + if (!mdio_bus->external) + mv88e6xxx_g2_irq_mdio_free(chip, bus); + + mdiobus_unregister(bus); + mdiobus_free(bus); + } +} + +static int mv88e6xxx_mdios_register(struct mv88e6xxx_chip *chip, + struct device_node *np) +{ + struct device_node *child; + int err; + + /* Always register one mdio bus for the internal/default mdio + * bus. This maybe represented in the device tree, but is + * optional. + */ + child = of_get_child_by_name(np, "mdio"); + err = mv88e6xxx_mdio_register(chip, child, false); + of_node_put(child); + if (err) + return err; + + /* Walk the device tree, and see if there are any other nodes + * which say they are compatible with the external mdio + * bus. + */ + for_each_available_child_of_node(np, child) { + if (of_device_is_compatible( + child, "marvell,mv88e6xxx-mdio-external")) { + err = mv88e6xxx_mdio_register(chip, child, true); + if (err) { + mv88e6xxx_mdios_unregister(chip); + of_node_put(child); + return err; + } + } + } + + return 0; +} + +static int mv88e6xxx_get_eeprom_len(struct dsa_switch *ds) +{ + struct mv88e6xxx_chip *chip = ds->priv; + + return chip->eeprom_len; +} + +static int mv88e6xxx_get_eeprom(struct dsa_switch *ds, + struct ethtool_eeprom *eeprom, u8 *data) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + if (!chip->info->ops->get_eeprom) + return -EOPNOTSUPP; + + mv88e6xxx_reg_lock(chip); + err = chip->info->ops->get_eeprom(chip, eeprom, data); + mv88e6xxx_reg_unlock(chip); + + if (err) + return err; + + eeprom->magic = 0xc3ec4951; + + return 0; +} + +static int mv88e6xxx_set_eeprom(struct dsa_switch *ds, + struct ethtool_eeprom *eeprom, u8 *data) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + if (!chip->info->ops->set_eeprom) + return -EOPNOTSUPP; + + if (eeprom->magic != 0xc3ec4951) + return -EINVAL; + + mv88e6xxx_reg_lock(chip); + err = chip->info->ops->set_eeprom(chip, eeprom, data); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static const struct mv88e6xxx_ops mv88e6085_ops = { + /* MV88E6XXX_FAMILY_6097 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g1_set_switch_mac, + .phy_read = mv88e6185_phy_ppu_read, + .phy_write = mv88e6185_phy_ppu_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6185_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6xxx_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .ppu_enable = mv88e6185_g1_ppu_enable, + .ppu_disable = mv88e6185_g1_ppu_disable, + .reset = mv88e6185_g1_reset, + .rmu_disable = mv88e6085_g1_rmu_disable, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .phylink_get_caps = mv88e6185_phylink_get_caps, + .set_max_frame_size = mv88e6185_g1_set_max_frame_size, +}; + +static const struct mv88e6xxx_ops mv88e6095_ops = { + /* MV88E6XXX_FAMILY_6095 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .set_switch_mac = mv88e6xxx_g1_set_switch_mac, + .phy_read = mv88e6185_phy_ppu_read, + .phy_write = mv88e6185_phy_ppu_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6185_port_sync_link, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_set_frame_mode = mv88e6085_port_set_frame_mode, + .port_set_ucast_flood = mv88e6185_port_set_forward_unknown, + .port_set_mcast_flood = mv88e6185_port_set_default_forward, + .port_set_upstream_port = mv88e6095_port_set_upstream_port, + .port_get_cmode = mv88e6185_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6xxx_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .mgmt_rsvd2cpu = mv88e6185_g2_mgmt_rsvd2cpu, + .serdes_power = mv88e6185_serdes_power, + .serdes_get_lane = mv88e6185_serdes_get_lane, + .serdes_pcs_get_state = mv88e6185_serdes_pcs_get_state, + .ppu_enable = mv88e6185_g1_ppu_enable, + .ppu_disable = mv88e6185_g1_ppu_disable, + .reset = mv88e6185_g1_reset, + .vtu_getnext = mv88e6185_g1_vtu_getnext, + .vtu_loadpurge = mv88e6185_g1_vtu_loadpurge, + .phylink_get_caps = mv88e6095_phylink_get_caps, + .set_max_frame_size = mv88e6185_g1_set_max_frame_size, +}; + +static const struct mv88e6xxx_ops mv88e6097_ops = { + /* MV88E6XXX_FAMILY_6097 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6185_port_sync_link, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_egress_rate_limiting = mv88e6095_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6185_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6xxx_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .serdes_power = mv88e6185_serdes_power, + .serdes_get_lane = mv88e6185_serdes_get_lane, + .serdes_pcs_get_state = mv88e6185_serdes_pcs_get_state, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6097_serdes_irq_enable, + .serdes_irq_status = mv88e6097_serdes_irq_status, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6085_g1_rmu_disable, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .phylink_get_caps = mv88e6095_phylink_get_caps, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .set_max_frame_size = mv88e6185_g1_set_max_frame_size, +}; + +static const struct mv88e6xxx_ops mv88e6123_ops = { + /* MV88E6XXX_FAMILY_6165 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_set_frame_mode = mv88e6085_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6185_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .phylink_get_caps = mv88e6185_phylink_get_caps, + .set_max_frame_size = mv88e6185_g1_set_max_frame_size, +}; + +static const struct mv88e6xxx_ops mv88e6131_ops = { + /* MV88E6XXX_FAMILY_6185 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .set_switch_mac = mv88e6xxx_g1_set_switch_mac, + .phy_read = mv88e6185_phy_ppu_read, + .phy_write = mv88e6185_phy_ppu_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6185_port_set_forward_unknown, + .port_set_mcast_flood = mv88e6185_port_set_default_forward, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_upstream_port = mv88e6095_port_set_upstream_port, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_set_pause = mv88e6185_port_set_pause, + .port_get_cmode = mv88e6185_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6xxx_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6185_g2_mgmt_rsvd2cpu, + .ppu_enable = mv88e6185_g1_ppu_enable, + .set_cascade_port = mv88e6185_g1_set_cascade_port, + .ppu_disable = mv88e6185_g1_ppu_disable, + .reset = mv88e6185_g1_reset, + .vtu_getnext = mv88e6185_g1_vtu_getnext, + .vtu_loadpurge = mv88e6185_g1_vtu_loadpurge, + .phylink_get_caps = mv88e6185_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6141_ops = { + /* MV88E6XXX_FAMILY_6341 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6341_port_set_speed_duplex, + .port_max_speed_mode = mv88e6341_port_max_speed_mode, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6341_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + .set_cpu_port = mv88e6390_g1_set_cpu_port, + .set_egress_port = mv88e6390_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6390_g1_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .serdes_power = mv88e6390_serdes_power, + .serdes_get_lane = mv88e6341_serdes_get_lane, + /* Check status register pause & lpa register */ + .serdes_pcs_get_state = mv88e6390_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6390_serdes_irq_enable, + .serdes_irq_status = mv88e6390_serdes_irq_status, + .gpio_ops = &mv88e6352_gpio_ops, + .serdes_get_sset_count = mv88e6390_serdes_get_sset_count, + .serdes_get_strings = mv88e6390_serdes_get_strings, + .serdes_get_stats = mv88e6390_serdes_get_stats, + .serdes_get_regs_len = mv88e6390_serdes_get_regs_len, + .serdes_get_regs = mv88e6390_serdes_get_regs, + .phylink_get_caps = mv88e6341_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6161_ops = { + /* MV88E6XXX_FAMILY_6165 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6185_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6xxx_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .avb_ops = &mv88e6165_avb_ops, + .ptp_ops = &mv88e6165_ptp_ops, + .phylink_get_caps = mv88e6185_phylink_get_caps, + .set_max_frame_size = mv88e6185_g1_set_max_frame_size, +}; + +static const struct mv88e6xxx_ops mv88e6165_ops = { + /* MV88E6XXX_FAMILY_6165 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6165_phy_read, + .phy_write = mv88e6165_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6185_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6xxx_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .avb_ops = &mv88e6165_avb_ops, + .ptp_ops = &mv88e6165_ptp_ops, + .phylink_get_caps = mv88e6185_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6171_ops = { + /* MV88E6XXX_FAMILY_6351 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .phylink_get_caps = mv88e6185_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6172_ops = { + /* MV88E6XXX_FAMILY_6352 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom16, + .set_eeprom = mv88e6xxx_g2_set_eeprom16, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6352_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6352_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .serdes_get_lane = mv88e6352_serdes_get_lane, + .serdes_pcs_get_state = mv88e6352_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6352_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6352_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6352_serdes_pcs_link_up, + .serdes_power = mv88e6352_serdes_power, + .serdes_get_regs_len = mv88e6352_serdes_get_regs_len, + .serdes_get_regs = mv88e6352_serdes_get_regs, + .gpio_ops = &mv88e6352_gpio_ops, + .phylink_get_caps = mv88e6352_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6175_ops = { + /* MV88E6XXX_FAMILY_6351 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .phylink_get_caps = mv88e6185_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6176_ops = { + /* MV88E6XXX_FAMILY_6352 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom16, + .set_eeprom = mv88e6xxx_g2_set_eeprom16, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6352_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6352_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .serdes_get_lane = mv88e6352_serdes_get_lane, + .serdes_pcs_get_state = mv88e6352_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6352_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6352_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6352_serdes_pcs_link_up, + .serdes_power = mv88e6352_serdes_power, + .serdes_irq_mapping = mv88e6352_serdes_irq_mapping, + .serdes_irq_enable = mv88e6352_serdes_irq_enable, + .serdes_irq_status = mv88e6352_serdes_irq_status, + .serdes_get_regs_len = mv88e6352_serdes_get_regs_len, + .serdes_get_regs = mv88e6352_serdes_get_regs, + .serdes_set_tx_amplitude = mv88e6352_serdes_set_tx_amplitude, + .gpio_ops = &mv88e6352_gpio_ops, + .phylink_get_caps = mv88e6352_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6185_ops = { + /* MV88E6XXX_FAMILY_6185 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .set_switch_mac = mv88e6xxx_g1_set_switch_mac, + .phy_read = mv88e6185_phy_ppu_read, + .phy_write = mv88e6185_phy_ppu_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6185_port_sync_link, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_set_frame_mode = mv88e6085_port_set_frame_mode, + .port_set_ucast_flood = mv88e6185_port_set_forward_unknown, + .port_set_mcast_flood = mv88e6185_port_set_default_forward, + .port_egress_rate_limiting = mv88e6095_port_egress_rate_limiting, + .port_set_upstream_port = mv88e6095_port_set_upstream_port, + .port_set_pause = mv88e6185_port_set_pause, + .port_get_cmode = mv88e6185_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6xxx_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6185_g2_mgmt_rsvd2cpu, + .serdes_power = mv88e6185_serdes_power, + .serdes_get_lane = mv88e6185_serdes_get_lane, + .serdes_pcs_get_state = mv88e6185_serdes_pcs_get_state, + .set_cascade_port = mv88e6185_g1_set_cascade_port, + .ppu_enable = mv88e6185_g1_ppu_enable, + .ppu_disable = mv88e6185_g1_ppu_disable, + .reset = mv88e6185_g1_reset, + .vtu_getnext = mv88e6185_g1_vtu_getnext, + .vtu_loadpurge = mv88e6185_g1_vtu_loadpurge, + .phylink_get_caps = mv88e6185_phylink_get_caps, + .set_max_frame_size = mv88e6185_g1_set_max_frame_size, +}; + +static const struct mv88e6xxx_ops mv88e6190_ops = { + /* MV88E6XXX_FAMILY_6390 */ + .setup_errata = mv88e6390_setup_errata, + .irl_init_all = mv88e6390_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6390_port_set_speed_duplex, + .port_max_speed_mode = mv88e6390_port_max_speed_mode, + .port_tag_remap = mv88e6390_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_pause_limit = mv88e6390_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6390_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + .set_cpu_port = mv88e6390_g1_set_cpu_port, + .set_egress_port = mv88e6390_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6390_g1_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6390_g1_vtu_getnext, + .vtu_loadpurge = mv88e6390_g1_vtu_loadpurge, + .stu_getnext = mv88e6390_g1_stu_getnext, + .stu_loadpurge = mv88e6390_g1_stu_loadpurge, + .serdes_power = mv88e6390_serdes_power, + .serdes_get_lane = mv88e6390_serdes_get_lane, + /* Check status register pause & lpa register */ + .serdes_pcs_get_state = mv88e6390_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6390_serdes_irq_enable, + .serdes_irq_status = mv88e6390_serdes_irq_status, + .serdes_get_strings = mv88e6390_serdes_get_strings, + .serdes_get_stats = mv88e6390_serdes_get_stats, + .serdes_get_regs_len = mv88e6390_serdes_get_regs_len, + .serdes_get_regs = mv88e6390_serdes_get_regs, + .gpio_ops = &mv88e6352_gpio_ops, + .phylink_get_caps = mv88e6390_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6190x_ops = { + /* MV88E6XXX_FAMILY_6390 */ + .setup_errata = mv88e6390_setup_errata, + .irl_init_all = mv88e6390_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6390x_port_set_speed_duplex, + .port_max_speed_mode = mv88e6390x_port_max_speed_mode, + .port_tag_remap = mv88e6390_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_pause_limit = mv88e6390_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6390x_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + .set_cpu_port = mv88e6390_g1_set_cpu_port, + .set_egress_port = mv88e6390_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6390_g1_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6390_g1_vtu_getnext, + .vtu_loadpurge = mv88e6390_g1_vtu_loadpurge, + .stu_getnext = mv88e6390_g1_stu_getnext, + .stu_loadpurge = mv88e6390_g1_stu_loadpurge, + .serdes_power = mv88e6390_serdes_power, + .serdes_get_lane = mv88e6390x_serdes_get_lane, + /* Check status register pause & lpa register */ + .serdes_pcs_get_state = mv88e6390_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6390_serdes_irq_enable, + .serdes_irq_status = mv88e6390_serdes_irq_status, + .serdes_get_strings = mv88e6390_serdes_get_strings, + .serdes_get_stats = mv88e6390_serdes_get_stats, + .serdes_get_regs_len = mv88e6390_serdes_get_regs_len, + .serdes_get_regs = mv88e6390_serdes_get_regs, + .gpio_ops = &mv88e6352_gpio_ops, + .phylink_get_caps = mv88e6390x_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6191_ops = { + /* MV88E6XXX_FAMILY_6390 */ + .setup_errata = mv88e6390_setup_errata, + .irl_init_all = mv88e6390_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6390_port_set_speed_duplex, + .port_max_speed_mode = mv88e6390_port_max_speed_mode, + .port_tag_remap = mv88e6390_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_pause_limit = mv88e6390_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6390_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + .set_cpu_port = mv88e6390_g1_set_cpu_port, + .set_egress_port = mv88e6390_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6390_g1_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6390_g1_vtu_getnext, + .vtu_loadpurge = mv88e6390_g1_vtu_loadpurge, + .stu_getnext = mv88e6390_g1_stu_getnext, + .stu_loadpurge = mv88e6390_g1_stu_loadpurge, + .serdes_power = mv88e6390_serdes_power, + .serdes_get_lane = mv88e6390_serdes_get_lane, + /* Check status register pause & lpa register */ + .serdes_pcs_get_state = mv88e6390_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6390_serdes_irq_enable, + .serdes_irq_status = mv88e6390_serdes_irq_status, + .serdes_get_strings = mv88e6390_serdes_get_strings, + .serdes_get_stats = mv88e6390_serdes_get_stats, + .serdes_get_regs_len = mv88e6390_serdes_get_regs_len, + .serdes_get_regs = mv88e6390_serdes_get_regs, + .avb_ops = &mv88e6390_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .phylink_get_caps = mv88e6390_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6240_ops = { + /* MV88E6XXX_FAMILY_6352 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom16, + .set_eeprom = mv88e6xxx_g2_set_eeprom16, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6352_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6352_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .serdes_get_lane = mv88e6352_serdes_get_lane, + .serdes_pcs_get_state = mv88e6352_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6352_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6352_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6352_serdes_pcs_link_up, + .serdes_power = mv88e6352_serdes_power, + .serdes_irq_mapping = mv88e6352_serdes_irq_mapping, + .serdes_irq_enable = mv88e6352_serdes_irq_enable, + .serdes_irq_status = mv88e6352_serdes_irq_status, + .serdes_get_regs_len = mv88e6352_serdes_get_regs_len, + .serdes_get_regs = mv88e6352_serdes_get_regs, + .serdes_set_tx_amplitude = mv88e6352_serdes_set_tx_amplitude, + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6352_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .phylink_get_caps = mv88e6352_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6250_ops = { + /* MV88E6XXX_FAMILY_6250 */ + .ieee_pri_map = mv88e6250_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom16, + .set_eeprom = mv88e6xxx_g2_set_eeprom16, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6250_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6250_stats_get_sset_count, + .stats_get_strings = mv88e6250_stats_get_strings, + .stats_get_stats = mv88e6250_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6250_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6250_g1_reset, + .vtu_getnext = mv88e6185_g1_vtu_getnext, + .vtu_loadpurge = mv88e6185_g1_vtu_loadpurge, + .avb_ops = &mv88e6352_avb_ops, + .ptp_ops = &mv88e6250_ptp_ops, + .phylink_get_caps = mv88e6250_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6290_ops = { + /* MV88E6XXX_FAMILY_6390 */ + .setup_errata = mv88e6390_setup_errata, + .irl_init_all = mv88e6390_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6390_port_set_speed_duplex, + .port_max_speed_mode = mv88e6390_port_max_speed_mode, + .port_tag_remap = mv88e6390_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_pause_limit = mv88e6390_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6390_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + .set_cpu_port = mv88e6390_g1_set_cpu_port, + .set_egress_port = mv88e6390_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6390_g1_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6390_g1_vtu_getnext, + .vtu_loadpurge = mv88e6390_g1_vtu_loadpurge, + .stu_getnext = mv88e6390_g1_stu_getnext, + .stu_loadpurge = mv88e6390_g1_stu_loadpurge, + .serdes_power = mv88e6390_serdes_power, + .serdes_get_lane = mv88e6390_serdes_get_lane, + /* Check status register pause & lpa register */ + .serdes_pcs_get_state = mv88e6390_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6390_serdes_irq_enable, + .serdes_irq_status = mv88e6390_serdes_irq_status, + .serdes_get_strings = mv88e6390_serdes_get_strings, + .serdes_get_stats = mv88e6390_serdes_get_stats, + .serdes_get_regs_len = mv88e6390_serdes_get_regs_len, + .serdes_get_regs = mv88e6390_serdes_get_regs, + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6390_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .phylink_get_caps = mv88e6390_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6320_ops = { + /* MV88E6XXX_FAMILY_6320 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom16, + .set_eeprom = mv88e6xxx_g2_set_eeprom16, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6320_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6320_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .vtu_getnext = mv88e6185_g1_vtu_getnext, + .vtu_loadpurge = mv88e6185_g1_vtu_loadpurge, + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6352_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .phylink_get_caps = mv88e6185_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6321_ops = { + /* MV88E6XXX_FAMILY_6320 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom16, + .set_eeprom = mv88e6xxx_g2_set_eeprom16, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6320_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6320_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .reset = mv88e6352_g1_reset, + .vtu_getnext = mv88e6185_g1_vtu_getnext, + .vtu_loadpurge = mv88e6185_g1_vtu_loadpurge, + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6352_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .phylink_get_caps = mv88e6185_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6341_ops = { + /* MV88E6XXX_FAMILY_6341 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6341_port_set_speed_duplex, + .port_max_speed_mode = mv88e6341_port_max_speed_mode, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6341_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + .set_cpu_port = mv88e6390_g1_set_cpu_port, + .set_egress_port = mv88e6390_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6390_g1_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .serdes_power = mv88e6390_serdes_power, + .serdes_get_lane = mv88e6341_serdes_get_lane, + /* Check status register pause & lpa register */ + .serdes_pcs_get_state = mv88e6390_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6390_serdes_irq_enable, + .serdes_irq_status = mv88e6390_serdes_irq_status, + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6390_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .serdes_get_sset_count = mv88e6390_serdes_get_sset_count, + .serdes_get_strings = mv88e6390_serdes_get_strings, + .serdes_get_stats = mv88e6390_serdes_get_stats, + .serdes_get_regs_len = mv88e6390_serdes_get_regs_len, + .serdes_get_regs = mv88e6390_serdes_get_regs, + .phylink_get_caps = mv88e6341_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6350_ops = { + /* MV88E6XXX_FAMILY_6351 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .phylink_get_caps = mv88e6185_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6351_ops = { + /* MV88E6XXX_FAMILY_6351 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6185_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .avb_ops = &mv88e6352_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .phylink_get_caps = mv88e6185_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6352_ops = { + /* MV88E6XXX_FAMILY_6352 */ + .ieee_pri_map = mv88e6085_g1_ieee_pri_map, + .ip_pri_map = mv88e6085_g1_ip_pri_map, + .irl_init_all = mv88e6352_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom16, + .set_eeprom = mv88e6xxx_g2_set_eeprom16, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6352_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6352_port_set_speed_duplex, + .port_tag_remap = mv88e6095_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6097_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6320_g1_stats_snapshot, + .stats_set_histogram = mv88e6095_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6095_stats_get_sset_count, + .stats_get_strings = mv88e6095_stats_get_strings, + .stats_get_stats = mv88e6095_stats_get_stats, + .set_cpu_port = mv88e6095_g1_set_cpu_port, + .set_egress_port = mv88e6095_g1_set_egress_port, + .watchdog_ops = &mv88e6097_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6352_g2_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6352_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6352_g1_vtu_getnext, + .vtu_loadpurge = mv88e6352_g1_vtu_loadpurge, + .stu_getnext = mv88e6352_g1_stu_getnext, + .stu_loadpurge = mv88e6352_g1_stu_loadpurge, + .serdes_get_lane = mv88e6352_serdes_get_lane, + .serdes_pcs_get_state = mv88e6352_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6352_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6352_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6352_serdes_pcs_link_up, + .serdes_power = mv88e6352_serdes_power, + .serdes_irq_mapping = mv88e6352_serdes_irq_mapping, + .serdes_irq_enable = mv88e6352_serdes_irq_enable, + .serdes_irq_status = mv88e6352_serdes_irq_status, + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6352_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .serdes_get_sset_count = mv88e6352_serdes_get_sset_count, + .serdes_get_strings = mv88e6352_serdes_get_strings, + .serdes_get_stats = mv88e6352_serdes_get_stats, + .serdes_get_regs_len = mv88e6352_serdes_get_regs_len, + .serdes_get_regs = mv88e6352_serdes_get_regs, + .serdes_set_tx_amplitude = mv88e6352_serdes_set_tx_amplitude, + .phylink_get_caps = mv88e6352_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6390_ops = { + /* MV88E6XXX_FAMILY_6390 */ + .setup_errata = mv88e6390_setup_errata, + .irl_init_all = mv88e6390_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6390_port_set_speed_duplex, + .port_max_speed_mode = mv88e6390_port_max_speed_mode, + .port_tag_remap = mv88e6390_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6390_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6390_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + .set_cpu_port = mv88e6390_g1_set_cpu_port, + .set_egress_port = mv88e6390_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6390_g1_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6390_g1_vtu_getnext, + .vtu_loadpurge = mv88e6390_g1_vtu_loadpurge, + .stu_getnext = mv88e6390_g1_stu_getnext, + .stu_loadpurge = mv88e6390_g1_stu_loadpurge, + .serdes_power = mv88e6390_serdes_power, + .serdes_get_lane = mv88e6390_serdes_get_lane, + /* Check status register pause & lpa register */ + .serdes_pcs_get_state = mv88e6390_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6390_serdes_irq_enable, + .serdes_irq_status = mv88e6390_serdes_irq_status, + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6390_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .serdes_get_sset_count = mv88e6390_serdes_get_sset_count, + .serdes_get_strings = mv88e6390_serdes_get_strings, + .serdes_get_stats = mv88e6390_serdes_get_stats, + .serdes_get_regs_len = mv88e6390_serdes_get_regs_len, + .serdes_get_regs = mv88e6390_serdes_get_regs, + .phylink_get_caps = mv88e6390_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6390x_ops = { + /* MV88E6XXX_FAMILY_6390 */ + .setup_errata = mv88e6390_setup_errata, + .irl_init_all = mv88e6390_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6390x_port_set_speed_duplex, + .port_max_speed_mode = mv88e6390x_port_max_speed_mode, + .port_tag_remap = mv88e6390_port_tag_remap, + .port_set_policy = mv88e6352_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6351_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6390_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6390x_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + .set_cpu_port = mv88e6390_g1_set_cpu_port, + .set_egress_port = mv88e6390_g1_set_egress_port, + .watchdog_ops = &mv88e6390_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6390_g1_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6390_g1_vtu_getnext, + .vtu_loadpurge = mv88e6390_g1_vtu_loadpurge, + .stu_getnext = mv88e6390_g1_stu_getnext, + .stu_loadpurge = mv88e6390_g1_stu_loadpurge, + .serdes_power = mv88e6390_serdes_power, + .serdes_get_lane = mv88e6390x_serdes_get_lane, + .serdes_pcs_get_state = mv88e6390_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6390_serdes_irq_enable, + .serdes_irq_status = mv88e6390_serdes_irq_status, + .serdes_get_sset_count = mv88e6390_serdes_get_sset_count, + .serdes_get_strings = mv88e6390_serdes_get_strings, + .serdes_get_stats = mv88e6390_serdes_get_stats, + .serdes_get_regs_len = mv88e6390_serdes_get_regs_len, + .serdes_get_regs = mv88e6390_serdes_get_regs, + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6390_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .phylink_get_caps = mv88e6390x_phylink_get_caps, +}; + +static const struct mv88e6xxx_ops mv88e6393x_ops = { + /* MV88E6XXX_FAMILY_6393 */ + .setup_errata = mv88e6393x_serdes_setup_errata, + .irl_init_all = mv88e6390_g2_irl_init_all, + .get_eeprom = mv88e6xxx_g2_get_eeprom8, + .set_eeprom = mv88e6xxx_g2_set_eeprom8, + .set_switch_mac = mv88e6xxx_g2_set_switch_mac, + .phy_read = mv88e6xxx_g2_smi_phy_read, + .phy_write = mv88e6xxx_g2_smi_phy_write, + .port_set_link = mv88e6xxx_port_set_link, + .port_sync_link = mv88e6xxx_port_sync_link, + .port_set_rgmii_delay = mv88e6390_port_set_rgmii_delay, + .port_set_speed_duplex = mv88e6393x_port_set_speed_duplex, + .port_max_speed_mode = mv88e6393x_port_max_speed_mode, + .port_tag_remap = mv88e6390_port_tag_remap, + .port_set_policy = mv88e6393x_port_set_policy, + .port_set_frame_mode = mv88e6351_port_set_frame_mode, + .port_set_ucast_flood = mv88e6352_port_set_ucast_flood, + .port_set_mcast_flood = mv88e6352_port_set_mcast_flood, + .port_set_ether_type = mv88e6393x_port_set_ether_type, + .port_set_jumbo_size = mv88e6165_port_set_jumbo_size, + .port_egress_rate_limiting = mv88e6097_port_egress_rate_limiting, + .port_pause_limit = mv88e6390_port_pause_limit, + .port_disable_learn_limit = mv88e6xxx_port_disable_learn_limit, + .port_disable_pri_override = mv88e6xxx_port_disable_pri_override, + .port_get_cmode = mv88e6352_port_get_cmode, + .port_set_cmode = mv88e6393x_port_set_cmode, + .port_setup_message_port = mv88e6xxx_setup_message_port, + .port_set_upstream_port = mv88e6393x_port_set_upstream_port, + .stats_snapshot = mv88e6390_g1_stats_snapshot, + .stats_set_histogram = mv88e6390_g1_stats_set_histogram, + .stats_get_sset_count = mv88e6320_stats_get_sset_count, + .stats_get_strings = mv88e6320_stats_get_strings, + .stats_get_stats = mv88e6390_stats_get_stats, + /* .set_cpu_port is missing because this family does not support a global + * CPU port, only per port CPU port which is set via + * .port_set_upstream_port method. + */ + .set_egress_port = mv88e6393x_set_egress_port, + .watchdog_ops = &mv88e6393x_watchdog_ops, + .mgmt_rsvd2cpu = mv88e6393x_port_mgmt_rsvd2cpu, + .pot_clear = mv88e6xxx_g2_pot_clear, + .reset = mv88e6352_g1_reset, + .rmu_disable = mv88e6390_g1_rmu_disable, + .atu_get_hash = mv88e6165_g1_atu_get_hash, + .atu_set_hash = mv88e6165_g1_atu_set_hash, + .vtu_getnext = mv88e6390_g1_vtu_getnext, + .vtu_loadpurge = mv88e6390_g1_vtu_loadpurge, + .stu_getnext = mv88e6390_g1_stu_getnext, + .stu_loadpurge = mv88e6390_g1_stu_loadpurge, + .serdes_power = mv88e6393x_serdes_power, + .serdes_get_lane = mv88e6393x_serdes_get_lane, + .serdes_pcs_get_state = mv88e6393x_serdes_pcs_get_state, + .serdes_pcs_config = mv88e6390_serdes_pcs_config, + .serdes_pcs_an_restart = mv88e6390_serdes_pcs_an_restart, + .serdes_pcs_link_up = mv88e6390_serdes_pcs_link_up, + .serdes_irq_mapping = mv88e6390_serdes_irq_mapping, + .serdes_irq_enable = mv88e6393x_serdes_irq_enable, + .serdes_irq_status = mv88e6393x_serdes_irq_status, + /* TODO: serdes stats */ + .gpio_ops = &mv88e6352_gpio_ops, + .avb_ops = &mv88e6390_avb_ops, + .ptp_ops = &mv88e6352_ptp_ops, + .phylink_get_caps = mv88e6393x_phylink_get_caps, +}; + +static const struct mv88e6xxx_info mv88e6xxx_table[] = { + [MV88E6085] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6085, + .family = MV88E6XXX_FAMILY_6097, + .name = "Marvell 88E6085", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 10, + .num_internal_phys = 5, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 8, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .ops = &mv88e6085_ops, + }, + + [MV88E6095] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6095, + .family = MV88E6XXX_FAMILY_6095, + .name = "Marvell 88E6095/88E6095F", + .num_databases = 256, + .num_macs = 8192, + .num_ports = 11, + .num_internal_phys = 0, + .max_vid = 4095, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 8, + .atu_move_port_mask = 0xf, + .multi_chip = true, + .ops = &mv88e6095_ops, + }, + + [MV88E6097] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6097, + .family = MV88E6XXX_FAMILY_6097, + .name = "Marvell 88E6097/88E6097F", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 11, + .num_internal_phys = 8, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 8, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6097_ops, + }, + + [MV88E6123] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6123, + .family = MV88E6XXX_FAMILY_6165, + .name = "Marvell 88E6123", + .num_databases = 4096, + .num_macs = 1024, + .num_ports = 3, + .num_internal_phys = 5, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6123_ops, + }, + + [MV88E6131] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6131, + .family = MV88E6XXX_FAMILY_6185, + .name = "Marvell 88E6131", + .num_databases = 256, + .num_macs = 8192, + .num_ports = 8, + .num_internal_phys = 0, + .max_vid = 4095, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .atu_move_port_mask = 0xf, + .multi_chip = true, + .ops = &mv88e6131_ops, + }, + + [MV88E6141] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6141, + .family = MV88E6XXX_FAMILY_6341, + .name = "Marvell 88E6141", + .num_databases = 4096, + .num_macs = 2048, + .num_ports = 6, + .num_internal_phys = 5, + .num_gpio = 11, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x10, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .atu_move_port_mask = 0x1f, + .g1_irqs = 9, + .g2_irqs = 10, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6141_ops, + }, + + [MV88E6161] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6161, + .family = MV88E6XXX_FAMILY_6165, + .name = "Marvell 88E6161", + .num_databases = 4096, + .num_macs = 1024, + .num_ports = 6, + .num_internal_phys = 5, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ptp_support = true, + .ops = &mv88e6161_ops, + }, + + [MV88E6165] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6165, + .family = MV88E6XXX_FAMILY_6165, + .name = "Marvell 88E6165", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 6, + .num_internal_phys = 0, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .ptp_support = true, + .ops = &mv88e6165_ops, + }, + + [MV88E6171] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6171, + .family = MV88E6XXX_FAMILY_6351, + .name = "Marvell 88E6171", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6171_ops, + }, + + [MV88E6172] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6172, + .family = MV88E6XXX_FAMILY_6352, + .name = "Marvell 88E6172", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .num_gpio = 15, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6172_ops, + }, + + [MV88E6175] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6175, + .family = MV88E6XXX_FAMILY_6351, + .name = "Marvell 88E6175", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6175_ops, + }, + + [MV88E6176] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6176, + .family = MV88E6XXX_FAMILY_6352, + .name = "Marvell 88E6176", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .num_gpio = 15, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6176_ops, + }, + + [MV88E6185] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6185, + .family = MV88E6XXX_FAMILY_6185, + .name = "Marvell 88E6185", + .num_databases = 256, + .num_macs = 8192, + .num_ports = 10, + .num_internal_phys = 0, + .max_vid = 4095, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 8, + .atu_move_port_mask = 0xf, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6185_ops, + }, + + [MV88E6190] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6190, + .family = MV88E6XXX_FAMILY_6390, + .name = "Marvell 88E6190", + .num_databases = 4096, + .num_macs = 16384, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .num_gpio = 16, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 9, + .g2_irqs = 14, + .pvt = true, + .multi_chip = true, + .atu_move_port_mask = 0x1f, + .ops = &mv88e6190_ops, + }, + + [MV88E6190X] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6190X, + .family = MV88E6XXX_FAMILY_6390, + .name = "Marvell 88E6190X", + .num_databases = 4096, + .num_macs = 16384, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .num_gpio = 16, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 9, + .g2_irqs = 14, + .atu_move_port_mask = 0x1f, + .pvt = true, + .multi_chip = true, + .ops = &mv88e6190x_ops, + }, + + [MV88E6191] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6191, + .family = MV88E6XXX_FAMILY_6390, + .name = "Marvell 88E6191", + .num_databases = 4096, + .num_macs = 16384, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 9, + .g2_irqs = 14, + .atu_move_port_mask = 0x1f, + .pvt = true, + .multi_chip = true, + .ptp_support = true, + .ops = &mv88e6191_ops, + }, + + [MV88E6191X] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6191X, + .family = MV88E6XXX_FAMILY_6393, + .name = "Marvell 88E6191X", + .num_databases = 4096, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 10, + .g2_irqs = 14, + .atu_move_port_mask = 0x1f, + .pvt = true, + .multi_chip = true, + .ptp_support = true, + .ops = &mv88e6393x_ops, + }, + + [MV88E6193X] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6193X, + .family = MV88E6XXX_FAMILY_6393, + .name = "Marvell 88E6193X", + .num_databases = 4096, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 10, + .g2_irqs = 14, + .atu_move_port_mask = 0x1f, + .pvt = true, + .multi_chip = true, + .ptp_support = true, + .ops = &mv88e6393x_ops, + }, + + [MV88E6220] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6220, + .family = MV88E6XXX_FAMILY_6250, + .name = "Marvell 88E6220", + .num_databases = 64, + + /* Ports 2-4 are not routed to pins + * => usable ports 0, 1, 5, 6 + */ + .num_ports = 7, + .num_internal_phys = 2, + .invalid_port_mask = BIT(2) | BIT(3) | BIT(4), + .max_vid = 4095, + .port_base_addr = 0x08, + .phy_base_addr = 0x00, + .global1_addr = 0x0f, + .global2_addr = 0x07, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .dual_chip = true, + .ptp_support = true, + .ops = &mv88e6250_ops, + }, + + [MV88E6240] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6240, + .family = MV88E6XXX_FAMILY_6352, + .name = "Marvell 88E6240", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .num_gpio = 15, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ptp_support = true, + .ops = &mv88e6240_ops, + }, + + [MV88E6250] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6250, + .family = MV88E6XXX_FAMILY_6250, + .name = "Marvell 88E6250", + .num_databases = 64, + .num_ports = 7, + .num_internal_phys = 5, + .max_vid = 4095, + .port_base_addr = 0x08, + .phy_base_addr = 0x00, + .global1_addr = 0x0f, + .global2_addr = 0x07, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .dual_chip = true, + .ptp_support = true, + .ops = &mv88e6250_ops, + }, + + [MV88E6290] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6290, + .family = MV88E6XXX_FAMILY_6390, + .name = "Marvell 88E6290", + .num_databases = 4096, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .num_gpio = 16, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 9, + .g2_irqs = 14, + .atu_move_port_mask = 0x1f, + .pvt = true, + .multi_chip = true, + .ptp_support = true, + .ops = &mv88e6290_ops, + }, + + [MV88E6320] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6320, + .family = MV88E6XXX_FAMILY_6320, + .name = "Marvell 88E6320", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .num_gpio = 15, + .max_vid = 4095, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 8, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ptp_support = true, + .ops = &mv88e6320_ops, + }, + + [MV88E6321] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6321, + .family = MV88E6XXX_FAMILY_6320, + .name = "Marvell 88E6321", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .num_gpio = 15, + .max_vid = 4095, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 8, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ptp_support = true, + .ops = &mv88e6321_ops, + }, + + [MV88E6341] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6341, + .family = MV88E6XXX_FAMILY_6341, + .name = "Marvell 88E6341", + .num_databases = 4096, + .num_macs = 2048, + .num_internal_phys = 5, + .num_ports = 6, + .num_gpio = 11, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x10, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .atu_move_port_mask = 0x1f, + .g1_irqs = 9, + .g2_irqs = 10, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ptp_support = true, + .ops = &mv88e6341_ops, + }, + + [MV88E6350] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6350, + .family = MV88E6XXX_FAMILY_6351, + .name = "Marvell 88E6350", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6350_ops, + }, + + [MV88E6351] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6351, + .family = MV88E6XXX_FAMILY_6351, + .name = "Marvell 88E6351", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ops = &mv88e6351_ops, + }, + + [MV88E6352] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6352, + .family = MV88E6XXX_FAMILY_6352, + .name = "Marvell 88E6352", + .num_databases = 4096, + .num_macs = 8192, + .num_ports = 7, + .num_internal_phys = 5, + .num_gpio = 15, + .max_vid = 4095, + .max_sid = 63, + .port_base_addr = 0x10, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 15000, + .g1_irqs = 9, + .g2_irqs = 10, + .atu_move_port_mask = 0xf, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_SUPPORTED, + .ptp_support = true, + .ops = &mv88e6352_ops, + }, + [MV88E6390] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6390, + .family = MV88E6XXX_FAMILY_6390, + .name = "Marvell 88E6390", + .num_databases = 4096, + .num_macs = 16384, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .num_gpio = 16, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 9, + .g2_irqs = 14, + .atu_move_port_mask = 0x1f, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_UNDOCUMENTED, + .ptp_support = true, + .ops = &mv88e6390_ops, + }, + [MV88E6390X] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6390X, + .family = MV88E6XXX_FAMILY_6390, + .name = "Marvell 88E6390X", + .num_databases = 4096, + .num_macs = 16384, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .num_gpio = 16, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 9, + .g2_irqs = 14, + .atu_move_port_mask = 0x1f, + .pvt = true, + .multi_chip = true, + .edsa_support = MV88E6XXX_EDSA_UNDOCUMENTED, + .ptp_support = true, + .ops = &mv88e6390x_ops, + }, + + [MV88E6393X] = { + .prod_num = MV88E6XXX_PORT_SWITCH_ID_PROD_6393X, + .family = MV88E6XXX_FAMILY_6393, + .name = "Marvell 88E6393X", + .num_databases = 4096, + .num_ports = 11, /* 10 + Z80 */ + .num_internal_phys = 9, + .max_vid = 8191, + .max_sid = 63, + .port_base_addr = 0x0, + .phy_base_addr = 0x0, + .global1_addr = 0x1b, + .global2_addr = 0x1c, + .age_time_coeff = 3750, + .g1_irqs = 10, + .g2_irqs = 14, + .atu_move_port_mask = 0x1f, + .pvt = true, + .multi_chip = true, + .ptp_support = true, + .ops = &mv88e6393x_ops, + }, +}; + +static const struct mv88e6xxx_info *mv88e6xxx_lookup_info(unsigned int prod_num) +{ + int i; + + for (i = 0; i < ARRAY_SIZE(mv88e6xxx_table); ++i) + if (mv88e6xxx_table[i].prod_num == prod_num) + return &mv88e6xxx_table[i]; + + return NULL; +} + +static int mv88e6xxx_detect(struct mv88e6xxx_chip *chip) +{ + const struct mv88e6xxx_info *info; + unsigned int prod_num, rev; + u16 id; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_read(chip, 0, MV88E6XXX_PORT_SWITCH_ID, &id); + mv88e6xxx_reg_unlock(chip); + if (err) + return err; + + prod_num = id & MV88E6XXX_PORT_SWITCH_ID_PROD_MASK; + rev = id & MV88E6XXX_PORT_SWITCH_ID_REV_MASK; + + info = mv88e6xxx_lookup_info(prod_num); + if (!info) + return -ENODEV; + + /* Update the compatible info with the probed one */ + chip->info = info; + + dev_info(chip->dev, "switch 0x%x detected: %s, revision %u\n", + chip->info->prod_num, chip->info->name, rev); + + return 0; +} + +static int mv88e6xxx_single_chip_detect(struct mv88e6xxx_chip *chip, + struct mdio_device *mdiodev) +{ + int err; + + /* dual_chip takes precedence over single/multi-chip modes */ + if (chip->info->dual_chip) + return -EINVAL; + + /* If the mdio addr is 16 indicating the first port address of a switch + * (e.g. mv88e6*41) in single chip addressing mode the device may be + * configured in single chip addressing mode. Setup the smi access as + * single chip addressing mode and attempt to detect the model of the + * switch, if this fails the device is not configured in single chip + * addressing mode. + */ + if (mdiodev->addr != 16) + return -EINVAL; + + err = mv88e6xxx_smi_init(chip, mdiodev->bus, 0); + if (err) + return err; + + return mv88e6xxx_detect(chip); +} + +static struct mv88e6xxx_chip *mv88e6xxx_alloc_chip(struct device *dev) +{ + struct mv88e6xxx_chip *chip; + + chip = devm_kzalloc(dev, sizeof(*chip), GFP_KERNEL); + if (!chip) + return NULL; + + chip->dev = dev; + + mutex_init(&chip->reg_lock); + INIT_LIST_HEAD(&chip->mdios); + idr_init(&chip->policies); + INIT_LIST_HEAD(&chip->msts); + + return chip; +} + +static enum dsa_tag_protocol mv88e6xxx_get_tag_protocol(struct dsa_switch *ds, + int port, + enum dsa_tag_protocol m) +{ + struct mv88e6xxx_chip *chip = ds->priv; + + return chip->tag_protocol; +} + +static int mv88e6xxx_change_tag_protocol(struct dsa_switch *ds, + enum dsa_tag_protocol proto) +{ + struct mv88e6xxx_chip *chip = ds->priv; + enum dsa_tag_protocol old_protocol; + struct dsa_port *cpu_dp; + int err; + + switch (proto) { + case DSA_TAG_PROTO_EDSA: + switch (chip->info->edsa_support) { + case MV88E6XXX_EDSA_UNSUPPORTED: + return -EPROTONOSUPPORT; + case MV88E6XXX_EDSA_UNDOCUMENTED: + dev_warn(chip->dev, "Relying on undocumented EDSA tagging behavior\n"); + fallthrough; + case MV88E6XXX_EDSA_SUPPORTED: + break; + } + break; + case DSA_TAG_PROTO_DSA: + break; + default: + return -EPROTONOSUPPORT; + } + + old_protocol = chip->tag_protocol; + chip->tag_protocol = proto; + + mv88e6xxx_reg_lock(chip); + dsa_switch_for_each_cpu_port(cpu_dp, ds) { + err = mv88e6xxx_setup_port_mode(chip, cpu_dp->index); + if (err) { + mv88e6xxx_reg_unlock(chip); + goto unwind; + } + } + mv88e6xxx_reg_unlock(chip); + + return 0; + +unwind: + chip->tag_protocol = old_protocol; + + mv88e6xxx_reg_lock(chip); + dsa_switch_for_each_cpu_port_continue_reverse(cpu_dp, ds) + mv88e6xxx_setup_port_mode(chip, cpu_dp->index); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_mdb_add(struct dsa_switch *ds, int port, + const struct switchdev_obj_port_mdb *mdb, + struct dsa_db db) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_db_load_purge(chip, port, mdb->addr, mdb->vid, + MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_mdb_del(struct dsa_switch *ds, int port, + const struct switchdev_obj_port_mdb *mdb, + struct dsa_db db) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_db_load_purge(chip, port, mdb->addr, mdb->vid, 0); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6xxx_port_mirror_add(struct dsa_switch *ds, int port, + struct dsa_mall_mirror_tc_entry *mirror, + bool ingress, + struct netlink_ext_ack *extack) +{ + enum mv88e6xxx_egress_direction direction = ingress ? + MV88E6XXX_EGRESS_DIR_INGRESS : + MV88E6XXX_EGRESS_DIR_EGRESS; + struct mv88e6xxx_chip *chip = ds->priv; + bool other_mirrors = false; + int i; + int err; + + mutex_lock(&chip->reg_lock); + if ((ingress ? chip->ingress_dest_port : chip->egress_dest_port) != + mirror->to_local_port) { + for (i = 0; i < mv88e6xxx_num_ports(chip); i++) + other_mirrors |= ingress ? + chip->ports[i].mirror_ingress : + chip->ports[i].mirror_egress; + + /* Can't change egress port when other mirror is active */ + if (other_mirrors) { + err = -EBUSY; + goto out; + } + + err = mv88e6xxx_set_egress_port(chip, direction, + mirror->to_local_port); + if (err) + goto out; + } + + err = mv88e6xxx_port_set_mirror(chip, port, direction, true); +out: + mutex_unlock(&chip->reg_lock); + + return err; +} + +static void mv88e6xxx_port_mirror_del(struct dsa_switch *ds, int port, + struct dsa_mall_mirror_tc_entry *mirror) +{ + enum mv88e6xxx_egress_direction direction = mirror->ingress ? + MV88E6XXX_EGRESS_DIR_INGRESS : + MV88E6XXX_EGRESS_DIR_EGRESS; + struct mv88e6xxx_chip *chip = ds->priv; + bool other_mirrors = false; + int i; + + mutex_lock(&chip->reg_lock); + if (mv88e6xxx_port_set_mirror(chip, port, direction, false)) + dev_err(ds->dev, "p%d: failed to disable mirroring\n", port); + + for (i = 0; i < mv88e6xxx_num_ports(chip); i++) + other_mirrors |= mirror->ingress ? + chip->ports[i].mirror_ingress : + chip->ports[i].mirror_egress; + + /* Reset egress port when no other mirror is active */ + if (!other_mirrors) { + if (mv88e6xxx_set_egress_port(chip, direction, + dsa_upstream_port(ds, port))) + dev_err(ds->dev, "failed to set egress port\n"); + } + + mutex_unlock(&chip->reg_lock); +} + +static int mv88e6xxx_port_pre_bridge_flags(struct dsa_switch *ds, int port, + struct switchdev_brport_flags flags, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + const struct mv88e6xxx_ops *ops; + + if (flags.mask & ~(BR_LEARNING | BR_FLOOD | BR_MCAST_FLOOD | + BR_BCAST_FLOOD | BR_PORT_LOCKED)) + return -EINVAL; + + ops = chip->info->ops; + + if ((flags.mask & BR_FLOOD) && !ops->port_set_ucast_flood) + return -EINVAL; + + if ((flags.mask & BR_MCAST_FLOOD) && !ops->port_set_mcast_flood) + return -EINVAL; + + return 0; +} + +static int mv88e6xxx_port_bridge_flags(struct dsa_switch *ds, int port, + struct switchdev_brport_flags flags, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err = -EOPNOTSUPP; + + mv88e6xxx_reg_lock(chip); + + if (flags.mask & BR_LEARNING) { + bool learning = !!(flags.val & BR_LEARNING); + u16 pav = learning ? (1 << port) : 0; + + err = mv88e6xxx_port_set_assoc_vector(chip, port, pav); + if (err) + goto out; + } + + if (flags.mask & BR_FLOOD) { + bool unicast = !!(flags.val & BR_FLOOD); + + err = chip->info->ops->port_set_ucast_flood(chip, port, + unicast); + if (err) + goto out; + } + + if (flags.mask & BR_MCAST_FLOOD) { + bool multicast = !!(flags.val & BR_MCAST_FLOOD); + + err = chip->info->ops->port_set_mcast_flood(chip, port, + multicast); + if (err) + goto out; + } + + if (flags.mask & BR_BCAST_FLOOD) { + bool broadcast = !!(flags.val & BR_BCAST_FLOOD); + + err = mv88e6xxx_port_broadcast_sync(chip, port, broadcast); + if (err) + goto out; + } + + if (flags.mask & BR_PORT_LOCKED) { + bool locked = !!(flags.val & BR_PORT_LOCKED); + + err = mv88e6xxx_port_set_lock(chip, port, locked); + if (err) + goto out; + } +out: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static bool mv88e6xxx_lag_can_offload(struct dsa_switch *ds, + struct dsa_lag lag, + struct netdev_lag_upper_info *info, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct dsa_port *dp; + int members = 0; + + if (!mv88e6xxx_has_lag(chip)) { + NL_SET_ERR_MSG_MOD(extack, "Chip does not support LAG offload"); + return false; + } + + if (!lag.id) + return false; + + dsa_lag_foreach_port(dp, ds->dst, &lag) + /* Includes the port joining the LAG */ + members++; + + if (members > 8) { + NL_SET_ERR_MSG_MOD(extack, + "Cannot offload more than 8 LAG ports"); + return false; + } + + /* We could potentially relax this to include active + * backup in the future. + */ + if (info->tx_type != NETDEV_LAG_TX_TYPE_HASH) { + NL_SET_ERR_MSG_MOD(extack, + "Can only offload LAG using hash TX type"); + return false; + } + + /* Ideally we would also validate that the hash type matches + * the hardware. Alas, this is always set to unknown on team + * interfaces. + */ + return true; +} + +static int mv88e6xxx_lag_sync_map(struct dsa_switch *ds, struct dsa_lag lag) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct dsa_port *dp; + u16 map = 0; + int id; + + /* DSA LAG IDs are one-based, hardware is zero-based */ + id = lag.id - 1; + + /* Build the map of all ports to distribute flows destined for + * this LAG. This can be either a local user port, or a DSA + * port if the LAG port is on a remote chip. + */ + dsa_lag_foreach_port(dp, ds->dst, &lag) + map |= BIT(dsa_towards_port(ds, dp->ds->index, dp->index)); + + return mv88e6xxx_g2_trunk_mapping_write(chip, id, map); +} + +static const u8 mv88e6xxx_lag_mask_table[8][8] = { + /* Row number corresponds to the number of active members in a + * LAG. Each column states which of the eight hash buckets are + * mapped to the column:th port in the LAG. + * + * Example: In a LAG with three active ports, the second port + * ([2][1]) would be selected for traffic mapped to buckets + * 3,4,5 (0x38). + */ + { 0xff, 0, 0, 0, 0, 0, 0, 0 }, + { 0x0f, 0xf0, 0, 0, 0, 0, 0, 0 }, + { 0x07, 0x38, 0xc0, 0, 0, 0, 0, 0 }, + { 0x03, 0x0c, 0x30, 0xc0, 0, 0, 0, 0 }, + { 0x03, 0x0c, 0x30, 0x40, 0x80, 0, 0, 0 }, + { 0x03, 0x0c, 0x10, 0x20, 0x40, 0x80, 0, 0 }, + { 0x03, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80, 0 }, + { 0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80 }, +}; + +static void mv88e6xxx_lag_set_port_mask(u16 *mask, int port, + int num_tx, int nth) +{ + u8 active = 0; + int i; + + num_tx = num_tx <= 8 ? num_tx : 8; + if (nth < num_tx) + active = mv88e6xxx_lag_mask_table[num_tx - 1][nth]; + + for (i = 0; i < 8; i++) { + if (BIT(i) & active) + mask[i] |= BIT(port); + } +} + +static int mv88e6xxx_lag_sync_masks(struct dsa_switch *ds) +{ + struct mv88e6xxx_chip *chip = ds->priv; + unsigned int id, num_tx; + struct dsa_port *dp; + struct dsa_lag *lag; + int i, err, nth; + u16 mask[8]; + u16 ivec; + + /* Assume no port is a member of any LAG. */ + ivec = BIT(mv88e6xxx_num_ports(chip)) - 1; + + /* Disable all masks for ports that _are_ members of a LAG. */ + dsa_switch_for_each_port(dp, ds) { + if (!dp->lag) + continue; + + ivec &= ~BIT(dp->index); + } + + for (i = 0; i < 8; i++) + mask[i] = ivec; + + /* Enable the correct subset of masks for all LAG ports that + * are in the Tx set. + */ + dsa_lags_foreach_id(id, ds->dst) { + lag = dsa_lag_by_id(ds->dst, id); + if (!lag) + continue; + + num_tx = 0; + dsa_lag_foreach_port(dp, ds->dst, lag) { + if (dp->lag_tx_enabled) + num_tx++; + } + + if (!num_tx) + continue; + + nth = 0; + dsa_lag_foreach_port(dp, ds->dst, lag) { + if (!dp->lag_tx_enabled) + continue; + + if (dp->ds == ds) + mv88e6xxx_lag_set_port_mask(mask, dp->index, + num_tx, nth); + + nth++; + } + } + + for (i = 0; i < 8; i++) { + err = mv88e6xxx_g2_trunk_mask_write(chip, i, true, mask[i]); + if (err) + return err; + } + + return 0; +} + +static int mv88e6xxx_lag_sync_masks_map(struct dsa_switch *ds, + struct dsa_lag lag) +{ + int err; + + err = mv88e6xxx_lag_sync_masks(ds); + + if (!err) + err = mv88e6xxx_lag_sync_map(ds, lag); + + return err; +} + +static int mv88e6xxx_port_lag_change(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_lag_sync_masks(ds); + mv88e6xxx_reg_unlock(chip); + return err; +} + +static int mv88e6xxx_port_lag_join(struct dsa_switch *ds, int port, + struct dsa_lag lag, + struct netdev_lag_upper_info *info, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err, id; + + if (!mv88e6xxx_lag_can_offload(ds, lag, info, extack)) + return -EOPNOTSUPP; + + /* DSA LAG IDs are one-based */ + id = lag.id - 1; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_port_set_trunk(chip, port, true, id); + if (err) + goto err_unlock; + + err = mv88e6xxx_lag_sync_masks_map(ds, lag); + if (err) + goto err_clear_trunk; + + mv88e6xxx_reg_unlock(chip); + return 0; + +err_clear_trunk: + mv88e6xxx_port_set_trunk(chip, port, false, 0); +err_unlock: + mv88e6xxx_reg_unlock(chip); + return err; +} + +static int mv88e6xxx_port_lag_leave(struct dsa_switch *ds, int port, + struct dsa_lag lag) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err_sync, err_trunk; + + mv88e6xxx_reg_lock(chip); + err_sync = mv88e6xxx_lag_sync_masks_map(ds, lag); + err_trunk = mv88e6xxx_port_set_trunk(chip, port, false, 0); + mv88e6xxx_reg_unlock(chip); + return err_sync ? : err_trunk; +} + +static int mv88e6xxx_crosschip_lag_change(struct dsa_switch *ds, int sw_index, + int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_lag_sync_masks(ds); + mv88e6xxx_reg_unlock(chip); + return err; +} + +static int mv88e6xxx_crosschip_lag_join(struct dsa_switch *ds, int sw_index, + int port, struct dsa_lag lag, + struct netdev_lag_upper_info *info, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + if (!mv88e6xxx_lag_can_offload(ds, lag, info, extack)) + return -EOPNOTSUPP; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_lag_sync_masks_map(ds, lag); + if (err) + goto unlock; + + err = mv88e6xxx_pvt_map(chip, sw_index, port); + +unlock: + mv88e6xxx_reg_unlock(chip); + return err; +} + +static int mv88e6xxx_crosschip_lag_leave(struct dsa_switch *ds, int sw_index, + int port, struct dsa_lag lag) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err_sync, err_pvt; + + mv88e6xxx_reg_lock(chip); + err_sync = mv88e6xxx_lag_sync_masks_map(ds, lag); + err_pvt = mv88e6xxx_pvt_map(chip, sw_index, port); + mv88e6xxx_reg_unlock(chip); + return err_sync ? : err_pvt; +} + +static const struct dsa_switch_ops mv88e6xxx_switch_ops = { + .get_tag_protocol = mv88e6xxx_get_tag_protocol, + .change_tag_protocol = mv88e6xxx_change_tag_protocol, + .setup = mv88e6xxx_setup, + .teardown = mv88e6xxx_teardown, + .port_setup = mv88e6xxx_port_setup, + .port_teardown = mv88e6xxx_port_teardown, + .phylink_get_caps = mv88e6xxx_get_caps, + .phylink_mac_link_state = mv88e6xxx_serdes_pcs_get_state, + .phylink_mac_config = mv88e6xxx_mac_config, + .phylink_mac_an_restart = mv88e6xxx_serdes_pcs_an_restart, + .phylink_mac_link_down = mv88e6xxx_mac_link_down, + .phylink_mac_link_up = mv88e6xxx_mac_link_up, + .get_strings = mv88e6xxx_get_strings, + .get_ethtool_stats = mv88e6xxx_get_ethtool_stats, + .get_sset_count = mv88e6xxx_get_sset_count, + .port_enable = mv88e6xxx_port_enable, + .port_disable = mv88e6xxx_port_disable, + .port_max_mtu = mv88e6xxx_get_max_mtu, + .port_change_mtu = mv88e6xxx_change_mtu, + .get_mac_eee = mv88e6xxx_get_mac_eee, + .set_mac_eee = mv88e6xxx_set_mac_eee, + .get_eeprom_len = mv88e6xxx_get_eeprom_len, + .get_eeprom = mv88e6xxx_get_eeprom, + .set_eeprom = mv88e6xxx_set_eeprom, + .get_regs_len = mv88e6xxx_get_regs_len, + .get_regs = mv88e6xxx_get_regs, + .get_rxnfc = mv88e6xxx_get_rxnfc, + .set_rxnfc = mv88e6xxx_set_rxnfc, + .set_ageing_time = mv88e6xxx_set_ageing_time, + .port_bridge_join = mv88e6xxx_port_bridge_join, + .port_bridge_leave = mv88e6xxx_port_bridge_leave, + .port_pre_bridge_flags = mv88e6xxx_port_pre_bridge_flags, + .port_bridge_flags = mv88e6xxx_port_bridge_flags, + .port_stp_state_set = mv88e6xxx_port_stp_state_set, + .port_mst_state_set = mv88e6xxx_port_mst_state_set, + .port_fast_age = mv88e6xxx_port_fast_age, + .port_vlan_fast_age = mv88e6xxx_port_vlan_fast_age, + .port_vlan_filtering = mv88e6xxx_port_vlan_filtering, + .port_vlan_add = mv88e6xxx_port_vlan_add, + .port_vlan_del = mv88e6xxx_port_vlan_del, + .vlan_msti_set = mv88e6xxx_vlan_msti_set, + .port_fdb_add = mv88e6xxx_port_fdb_add, + .port_fdb_del = mv88e6xxx_port_fdb_del, + .port_fdb_dump = mv88e6xxx_port_fdb_dump, + .port_mdb_add = mv88e6xxx_port_mdb_add, + .port_mdb_del = mv88e6xxx_port_mdb_del, + .port_mirror_add = mv88e6xxx_port_mirror_add, + .port_mirror_del = mv88e6xxx_port_mirror_del, + .crosschip_bridge_join = mv88e6xxx_crosschip_bridge_join, + .crosschip_bridge_leave = mv88e6xxx_crosschip_bridge_leave, + .port_hwtstamp_set = mv88e6xxx_port_hwtstamp_set, + .port_hwtstamp_get = mv88e6xxx_port_hwtstamp_get, + .port_txtstamp = mv88e6xxx_port_txtstamp, + .port_rxtstamp = mv88e6xxx_port_rxtstamp, + .get_ts_info = mv88e6xxx_get_ts_info, + .devlink_param_get = mv88e6xxx_devlink_param_get, + .devlink_param_set = mv88e6xxx_devlink_param_set, + .devlink_info_get = mv88e6xxx_devlink_info_get, + .port_lag_change = mv88e6xxx_port_lag_change, + .port_lag_join = mv88e6xxx_port_lag_join, + .port_lag_leave = mv88e6xxx_port_lag_leave, + .crosschip_lag_change = mv88e6xxx_crosschip_lag_change, + .crosschip_lag_join = mv88e6xxx_crosschip_lag_join, + .crosschip_lag_leave = mv88e6xxx_crosschip_lag_leave, +}; + +static int mv88e6xxx_register_switch(struct mv88e6xxx_chip *chip) +{ + struct device *dev = chip->dev; + struct dsa_switch *ds; + + ds = devm_kzalloc(dev, sizeof(*ds), GFP_KERNEL); + if (!ds) + return -ENOMEM; + + ds->dev = dev; + ds->num_ports = mv88e6xxx_num_ports(chip); + ds->priv = chip; + ds->dev = dev; + ds->ops = &mv88e6xxx_switch_ops; + ds->ageing_time_min = chip->info->age_time_coeff; + ds->ageing_time_max = chip->info->age_time_coeff * U8_MAX; + + /* Some chips support up to 32, but that requires enabling the + * 5-bit port mode, which we do not support. 640k^W16 ought to + * be enough for anyone. + */ + ds->num_lag_ids = mv88e6xxx_has_lag(chip) ? 16 : 0; + + dev_set_drvdata(dev, ds); + + return dsa_register_switch(ds); +} + +static void mv88e6xxx_unregister_switch(struct mv88e6xxx_chip *chip) +{ + dsa_unregister_switch(chip->ds); +} + +static const void *pdata_device_get_match_data(struct device *dev) +{ + const struct of_device_id *matches = dev->driver->of_match_table; + const struct dsa_mv88e6xxx_pdata *pdata = dev->platform_data; + + for (; matches->name[0] || matches->type[0] || matches->compatible[0]; + matches++) { + if (!strcmp(pdata->compatible, matches->compatible)) + return matches->data; + } + return NULL; +} + +/* There is no suspend to RAM support at DSA level yet, the switch configuration + * would be lost after a power cycle so prevent it to be suspended. + */ +static int __maybe_unused mv88e6xxx_suspend(struct device *dev) +{ + return -EOPNOTSUPP; +} + +static int __maybe_unused mv88e6xxx_resume(struct device *dev) +{ + return 0; +} + +static SIMPLE_DEV_PM_OPS(mv88e6xxx_pm_ops, mv88e6xxx_suspend, mv88e6xxx_resume); + +static int mv88e6xxx_probe(struct mdio_device *mdiodev) +{ + struct dsa_mv88e6xxx_pdata *pdata = mdiodev->dev.platform_data; + const struct mv88e6xxx_info *compat_info = NULL; + struct device *dev = &mdiodev->dev; + struct device_node *np = dev->of_node; + struct mv88e6xxx_chip *chip; + int port; + int err; + + if (!np && !pdata) + return -EINVAL; + + if (np) + compat_info = of_device_get_match_data(dev); + + if (pdata) { + compat_info = pdata_device_get_match_data(dev); + + if (!pdata->netdev) + return -EINVAL; + + for (port = 0; port < DSA_MAX_PORTS; port++) { + if (!(pdata->enabled_ports & (1 << port))) + continue; + if (strcmp(pdata->cd.port_names[port], "cpu")) + continue; + pdata->cd.netdev[port] = &pdata->netdev->dev; + break; + } + } + + if (!compat_info) + return -EINVAL; + + chip = mv88e6xxx_alloc_chip(dev); + if (!chip) { + err = -ENOMEM; + goto out; + } + + chip->info = compat_info; + + chip->reset = devm_gpiod_get_optional(dev, "reset", GPIOD_OUT_LOW); + if (IS_ERR(chip->reset)) { + err = PTR_ERR(chip->reset); + goto out; + } + if (chip->reset) + usleep_range(10000, 20000); + + /* Detect if the device is configured in single chip addressing mode, + * otherwise continue with address specific smi init/detection. + */ + err = mv88e6xxx_single_chip_detect(chip, mdiodev); + if (err) { + err = mv88e6xxx_smi_init(chip, mdiodev->bus, mdiodev->addr); + if (err) + goto out; + + err = mv88e6xxx_detect(chip); + if (err) + goto out; + } + + if (chip->info->edsa_support == MV88E6XXX_EDSA_SUPPORTED) + chip->tag_protocol = DSA_TAG_PROTO_EDSA; + else + chip->tag_protocol = DSA_TAG_PROTO_DSA; + + mv88e6xxx_phy_init(chip); + + if (chip->info->ops->get_eeprom) { + if (np) + of_property_read_u32(np, "eeprom-length", + &chip->eeprom_len); + else + chip->eeprom_len = pdata->eeprom_len; + } + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_switch_reset(chip); + mv88e6xxx_reg_unlock(chip); + if (err) + goto out; + + if (np) { + chip->irq = of_irq_get(np, 0); + if (chip->irq == -EPROBE_DEFER) { + err = chip->irq; + goto out; + } + } + + if (pdata) + chip->irq = pdata->irq; + + /* Has to be performed before the MDIO bus is created, because + * the PHYs will link their interrupts to these interrupt + * controllers + */ + mv88e6xxx_reg_lock(chip); + if (chip->irq > 0) + err = mv88e6xxx_g1_irq_setup(chip); + else + err = mv88e6xxx_irq_poll_setup(chip); + mv88e6xxx_reg_unlock(chip); + + if (err) + goto out; + + if (chip->info->g2_irqs > 0) { + err = mv88e6xxx_g2_irq_setup(chip); + if (err) + goto out_g1_irq; + } + + err = mv88e6xxx_g1_atu_prob_irq_setup(chip); + if (err) + goto out_g2_irq; + + err = mv88e6xxx_g1_vtu_prob_irq_setup(chip); + if (err) + goto out_g1_atu_prob_irq; + + err = mv88e6xxx_mdios_register(chip, np); + if (err) + goto out_g1_vtu_prob_irq; + + err = mv88e6xxx_register_switch(chip); + if (err) + goto out_mdio; + + return 0; + +out_mdio: + mv88e6xxx_mdios_unregister(chip); +out_g1_vtu_prob_irq: + mv88e6xxx_g1_vtu_prob_irq_free(chip); +out_g1_atu_prob_irq: + mv88e6xxx_g1_atu_prob_irq_free(chip); +out_g2_irq: + if (chip->info->g2_irqs > 0) + mv88e6xxx_g2_irq_free(chip); +out_g1_irq: + if (chip->irq > 0) + mv88e6xxx_g1_irq_free(chip); + else + mv88e6xxx_irq_poll_free(chip); +out: + if (pdata) + dev_put(pdata->netdev); + + return err; +} + +static void mv88e6xxx_remove(struct mdio_device *mdiodev) +{ + struct dsa_switch *ds = dev_get_drvdata(&mdiodev->dev); + struct mv88e6xxx_chip *chip; + + if (!ds) + return; + + chip = ds->priv; + + if (chip->info->ptp_support) { + mv88e6xxx_hwtstamp_free(chip); + mv88e6xxx_ptp_free(chip); + } + + mv88e6xxx_phy_destroy(chip); + mv88e6xxx_unregister_switch(chip); + mv88e6xxx_mdios_unregister(chip); + + mv88e6xxx_g1_vtu_prob_irq_free(chip); + mv88e6xxx_g1_atu_prob_irq_free(chip); + + if (chip->info->g2_irqs > 0) + mv88e6xxx_g2_irq_free(chip); + + if (chip->irq > 0) + mv88e6xxx_g1_irq_free(chip); + else + mv88e6xxx_irq_poll_free(chip); +} + +static void mv88e6xxx_shutdown(struct mdio_device *mdiodev) +{ + struct dsa_switch *ds = dev_get_drvdata(&mdiodev->dev); + + if (!ds) + return; + + dsa_switch_shutdown(ds); + + dev_set_drvdata(&mdiodev->dev, NULL); +} + +static const struct of_device_id mv88e6xxx_of_match[] = { + { + .compatible = "marvell,mv88e6085", + .data = &mv88e6xxx_table[MV88E6085], + }, + { + .compatible = "marvell,mv88e6190", + .data = &mv88e6xxx_table[MV88E6190], + }, + { + .compatible = "marvell,mv88e6250", + .data = &mv88e6xxx_table[MV88E6250], + }, + { /* sentinel */ }, +}; + +MODULE_DEVICE_TABLE(of, mv88e6xxx_of_match); + +static struct mdio_driver mv88e6xxx_driver = { + .probe = mv88e6xxx_probe, + .remove = mv88e6xxx_remove, + .shutdown = mv88e6xxx_shutdown, + .mdiodrv.driver = { + .name = "mv88e6085", + .of_match_table = mv88e6xxx_of_match, + .pm = &mv88e6xxx_pm_ops, + }, +}; + +mdio_module_driver(mv88e6xxx_driver); + +MODULE_AUTHOR("Lennert Buytenhek <buytenh@wantstofly.org>"); +MODULE_DESCRIPTION("Driver for Marvell 88E6XXX ethernet switch chips"); +MODULE_LICENSE("GPL"); diff --git a/drivers/net/dsa/mv88e6xxx/chip.h b/drivers/net/dsa/mv88e6xxx/chip.h new file mode 100644 index 000000000..e693154cf --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/chip.h @@ -0,0 +1,807 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx Ethernet switch single-chip definition + * + * Copyright (c) 2008 Marvell Semiconductor + */ + +#ifndef _MV88E6XXX_CHIP_H +#define _MV88E6XXX_CHIP_H + +#include <linux/idr.h> +#include <linux/if_vlan.h> +#include <linux/irq.h> +#include <linux/gpio/consumer.h> +#include <linux/kthread.h> +#include <linux/phy.h> +#include <linux/ptp_clock_kernel.h> +#include <linux/timecounter.h> +#include <net/dsa.h> + +#define EDSA_HLEN 8 +#define MV88E6XXX_N_FID 4096 +#define MV88E6XXX_N_SID 64 + +#define MV88E6XXX_FID_STANDALONE 0 +#define MV88E6XXX_FID_BRIDGED 1 + +/* PVT limits for 4-bit port and 5-bit switch */ +#define MV88E6XXX_MAX_PVT_SWITCHES 32 +#define MV88E6XXX_MAX_PVT_PORTS 16 +#define MV88E6XXX_MAX_PVT_ENTRIES \ + (MV88E6XXX_MAX_PVT_SWITCHES * MV88E6XXX_MAX_PVT_PORTS) + +#define MV88E6XXX_MAX_GPIO 16 + +enum mv88e6xxx_egress_mode { + MV88E6XXX_EGRESS_MODE_UNMODIFIED, + MV88E6XXX_EGRESS_MODE_UNTAGGED, + MV88E6XXX_EGRESS_MODE_TAGGED, + MV88E6XXX_EGRESS_MODE_ETHERTYPE, +}; + +enum mv88e6xxx_egress_direction { + MV88E6XXX_EGRESS_DIR_INGRESS, + MV88E6XXX_EGRESS_DIR_EGRESS, +}; + +enum mv88e6xxx_frame_mode { + MV88E6XXX_FRAME_MODE_NORMAL, + MV88E6XXX_FRAME_MODE_DSA, + MV88E6XXX_FRAME_MODE_PROVIDER, + MV88E6XXX_FRAME_MODE_ETHERTYPE, +}; + +/* List of supported models */ +enum mv88e6xxx_model { + MV88E6085, + MV88E6095, + MV88E6097, + MV88E6123, + MV88E6131, + MV88E6141, + MV88E6161, + MV88E6165, + MV88E6171, + MV88E6172, + MV88E6175, + MV88E6176, + MV88E6185, + MV88E6190, + MV88E6190X, + MV88E6191, + MV88E6191X, + MV88E6193X, + MV88E6220, + MV88E6240, + MV88E6250, + MV88E6290, + MV88E6320, + MV88E6321, + MV88E6341, + MV88E6350, + MV88E6351, + MV88E6352, + MV88E6390, + MV88E6390X, + MV88E6393X, +}; + +enum mv88e6xxx_family { + MV88E6XXX_FAMILY_NONE, + MV88E6XXX_FAMILY_6065, /* 6031 6035 6061 6065 */ + MV88E6XXX_FAMILY_6095, /* 6092 6095 */ + MV88E6XXX_FAMILY_6097, /* 6046 6085 6096 6097 */ + MV88E6XXX_FAMILY_6165, /* 6123 6161 6165 */ + MV88E6XXX_FAMILY_6185, /* 6108 6121 6122 6131 6152 6155 6182 6185 */ + MV88E6XXX_FAMILY_6250, /* 6220 6250 */ + MV88E6XXX_FAMILY_6320, /* 6320 6321 */ + MV88E6XXX_FAMILY_6341, /* 6141 6341 */ + MV88E6XXX_FAMILY_6351, /* 6171 6175 6350 6351 */ + MV88E6XXX_FAMILY_6352, /* 6172 6176 6240 6352 */ + MV88E6XXX_FAMILY_6390, /* 6190 6190X 6191 6290 6390 6390X */ + MV88E6XXX_FAMILY_6393, /* 6191X 6193X 6393X */ +}; + +/** + * enum mv88e6xxx_edsa_support - Ethertype DSA tag support level + * @MV88E6XXX_EDSA_UNSUPPORTED: Device has no support for EDSA tags + * @MV88E6XXX_EDSA_UNDOCUMENTED: Documentation indicates that + * egressing FORWARD frames with an EDSA + * tag is reserved for future use, but + * empirical data shows that this mode + * is supported. + * @MV88E6XXX_EDSA_SUPPORTED: EDSA tags are fully supported. + */ +enum mv88e6xxx_edsa_support { + MV88E6XXX_EDSA_UNSUPPORTED = 0, + MV88E6XXX_EDSA_UNDOCUMENTED, + MV88E6XXX_EDSA_SUPPORTED, +}; + +struct mv88e6xxx_ops; + +struct mv88e6xxx_info { + enum mv88e6xxx_family family; + u16 prod_num; + const char *name; + unsigned int num_databases; + unsigned int num_macs; + unsigned int num_ports; + unsigned int num_internal_phys; + unsigned int num_gpio; + unsigned int max_vid; + unsigned int max_sid; + unsigned int port_base_addr; + unsigned int phy_base_addr; + unsigned int global1_addr; + unsigned int global2_addr; + unsigned int age_time_coeff; + unsigned int g1_irqs; + unsigned int g2_irqs; + bool pvt; + + /* Mark certain ports as invalid. This is required for example for the + * MV88E6220 (which is in general a MV88E6250 with 7 ports) but the + * ports 2-4 are not routet to pins. + */ + unsigned int invalid_port_mask; + /* Multi-chip Addressing Mode. + * Some chips respond to only 2 registers of its own SMI device address + * when it is non-zero, and use indirect access to internal registers. + */ + bool multi_chip; + /* Dual-chip Addressing Mode + * Some chips respond to only half of the 32 SMI addresses, + * allowing two to coexist on the same SMI interface. + */ + bool dual_chip; + + enum mv88e6xxx_edsa_support edsa_support; + + /* Mask for FromPort and ToPort value of PortVec used in ATU Move + * operation. 0 means that the ATU Move operation is not supported. + */ + u8 atu_move_port_mask; + const struct mv88e6xxx_ops *ops; + + /* Supports PTP */ + bool ptp_support; +}; + +struct mv88e6xxx_atu_entry { + u8 state; + bool trunk; + u16 portvec; + u8 mac[ETH_ALEN]; +}; + +struct mv88e6xxx_vtu_entry { + u16 vid; + u16 fid; + u8 sid; + bool valid; + bool policy; + u8 member[DSA_MAX_PORTS]; + u8 state[DSA_MAX_PORTS]; /* Older silicon has no STU */ +}; + +struct mv88e6xxx_stu_entry { + u8 sid; + bool valid; + u8 state[DSA_MAX_PORTS]; +}; + +struct mv88e6xxx_bus_ops; +struct mv88e6xxx_irq_ops; +struct mv88e6xxx_gpio_ops; +struct mv88e6xxx_avb_ops; +struct mv88e6xxx_ptp_ops; + +struct mv88e6xxx_irq { + u16 masked; + struct irq_chip chip; + struct irq_domain *domain; + int nirqs; +}; + +/* state flags for mv88e6xxx_port_hwtstamp::state */ +enum { + MV88E6XXX_HWTSTAMP_ENABLED, + MV88E6XXX_HWTSTAMP_TX_IN_PROGRESS, +}; + +struct mv88e6xxx_port_hwtstamp { + /* Port index */ + int port_id; + + /* Timestamping state */ + unsigned long state; + + /* Resources for receive timestamping */ + struct sk_buff_head rx_queue; + struct sk_buff_head rx_queue2; + + /* Resources for transmit timestamping */ + unsigned long tx_tstamp_start; + struct sk_buff *tx_skb; + u16 tx_seq_id; + + /* Current timestamp configuration */ + struct hwtstamp_config tstamp_config; +}; + +enum mv88e6xxx_policy_mapping { + MV88E6XXX_POLICY_MAPPING_DA, + MV88E6XXX_POLICY_MAPPING_SA, + MV88E6XXX_POLICY_MAPPING_VTU, + MV88E6XXX_POLICY_MAPPING_ETYPE, + MV88E6XXX_POLICY_MAPPING_PPPOE, + MV88E6XXX_POLICY_MAPPING_VBAS, + MV88E6XXX_POLICY_MAPPING_OPT82, + MV88E6XXX_POLICY_MAPPING_UDP, +}; + +enum mv88e6xxx_policy_action { + MV88E6XXX_POLICY_ACTION_NORMAL, + MV88E6XXX_POLICY_ACTION_MIRROR, + MV88E6XXX_POLICY_ACTION_TRAP, + MV88E6XXX_POLICY_ACTION_DISCARD, +}; + +struct mv88e6xxx_policy { + enum mv88e6xxx_policy_mapping mapping; + enum mv88e6xxx_policy_action action; + struct ethtool_rx_flow_spec fs; + u8 addr[ETH_ALEN]; + int port; + u16 vid; +}; + +struct mv88e6xxx_vlan { + u16 vid; + bool valid; +}; + +struct mv88e6xxx_port { + struct mv88e6xxx_chip *chip; + int port; + struct mv88e6xxx_vlan bridge_pvid; + u64 serdes_stats[2]; + u64 atu_member_violation; + u64 atu_miss_violation; + u64 atu_full_violation; + u64 vtu_member_violation; + u64 vtu_miss_violation; + phy_interface_t interface; + u8 cmode; + bool mirror_ingress; + bool mirror_egress; + unsigned int serdes_irq; + char serdes_irq_name[64]; + struct devlink_region *region; +}; + +enum mv88e6xxx_region_id { + MV88E6XXX_REGION_GLOBAL1 = 0, + MV88E6XXX_REGION_GLOBAL2, + MV88E6XXX_REGION_ATU, + MV88E6XXX_REGION_VTU, + MV88E6XXX_REGION_STU, + MV88E6XXX_REGION_PVT, + + _MV88E6XXX_REGION_MAX, +}; + +struct mv88e6xxx_region_priv { + enum mv88e6xxx_region_id id; +}; + +struct mv88e6xxx_mst { + struct list_head node; + + refcount_t refcnt; + struct net_device *br; + u16 msti; + + struct mv88e6xxx_stu_entry stu; +}; + +struct mv88e6xxx_chip { + const struct mv88e6xxx_info *info; + + /* Currently configured tagging protocol */ + enum dsa_tag_protocol tag_protocol; + + /* The dsa_switch this private structure is related to */ + struct dsa_switch *ds; + + /* The device this structure is associated to */ + struct device *dev; + + /* This mutex protects the access to the switch registers */ + struct mutex reg_lock; + + /* The MII bus and the address on the bus that is used to + * communication with the switch + */ + const struct mv88e6xxx_bus_ops *smi_ops; + struct mii_bus *bus; + int sw_addr; + + /* Handles automatic disabling and re-enabling of the PHY + * polling unit. + */ + const struct mv88e6xxx_bus_ops *phy_ops; + struct mutex ppu_mutex; + int ppu_disabled; + struct work_struct ppu_work; + struct timer_list ppu_timer; + + /* This mutex serialises access to the statistics unit. + * Hold this mutex over snapshot + dump sequences. + */ + struct mutex stats_mutex; + + /* A switch may have a GPIO line tied to its reset pin. Parse + * this from the device tree, and use it before performing + * switch soft reset. + */ + struct gpio_desc *reset; + + /* set to size of eeprom if supported by the switch */ + u32 eeprom_len; + + /* List of mdio busses */ + struct list_head mdios; + + /* Policy Control List IDs and rules */ + struct idr policies; + + /* There can be two interrupt controllers, which are chained + * off a GPIO as interrupt source + */ + struct mv88e6xxx_irq g1_irq; + struct mv88e6xxx_irq g2_irq; + int irq; + char irq_name[64]; + int device_irq; + char device_irq_name[64]; + int watchdog_irq; + char watchdog_irq_name[64]; + + int atu_prob_irq; + char atu_prob_irq_name[64]; + int vtu_prob_irq; + char vtu_prob_irq_name[64]; + struct kthread_worker *kworker; + struct kthread_delayed_work irq_poll_work; + + /* GPIO resources */ + u8 gpio_data[2]; + + /* This cyclecounter abstracts the switch PTP time. + * reg_lock must be held for any operation that read()s. + */ + struct cyclecounter tstamp_cc; + struct timecounter tstamp_tc; + struct delayed_work overflow_work; + + struct ptp_clock *ptp_clock; + struct ptp_clock_info ptp_clock_info; + struct delayed_work tai_event_work; + struct ptp_pin_desc pin_config[MV88E6XXX_MAX_GPIO]; + u16 trig_config; + u16 evcap_config; + u16 enable_count; + + /* Current ingress and egress monitor ports */ + int egress_dest_port; + int ingress_dest_port; + + /* Per-port timestamping resources. */ + struct mv88e6xxx_port_hwtstamp port_hwtstamp[DSA_MAX_PORTS]; + + /* Array of port structures. */ + struct mv88e6xxx_port ports[DSA_MAX_PORTS]; + + /* devlink regions */ + struct devlink_region *regions[_MV88E6XXX_REGION_MAX]; + + /* Bridge MST to SID mappings */ + struct list_head msts; +}; + +struct mv88e6xxx_bus_ops { + int (*read)(struct mv88e6xxx_chip *chip, int addr, int reg, u16 *val); + int (*write)(struct mv88e6xxx_chip *chip, int addr, int reg, u16 val); + int (*init)(struct mv88e6xxx_chip *chip); +}; + +struct mv88e6xxx_mdio_bus { + struct mii_bus *bus; + struct mv88e6xxx_chip *chip; + struct list_head list; + bool external; +}; + +struct mv88e6xxx_ops { + /* Switch Setup Errata, called early in the switch setup to + * allow any errata actions to be performed + */ + int (*setup_errata)(struct mv88e6xxx_chip *chip); + + int (*ieee_pri_map)(struct mv88e6xxx_chip *chip); + int (*ip_pri_map)(struct mv88e6xxx_chip *chip); + + /* Ingress Rate Limit unit (IRL) operations */ + int (*irl_init_all)(struct mv88e6xxx_chip *chip, int port); + + int (*get_eeprom)(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data); + int (*set_eeprom)(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data); + + int (*set_switch_mac)(struct mv88e6xxx_chip *chip, u8 *addr); + + int (*phy_read)(struct mv88e6xxx_chip *chip, + struct mii_bus *bus, + int addr, int reg, u16 *val); + int (*phy_write)(struct mv88e6xxx_chip *chip, + struct mii_bus *bus, + int addr, int reg, u16 val); + + /* Priority Override Table operations */ + int (*pot_clear)(struct mv88e6xxx_chip *chip); + + /* PHY Polling Unit (PPU) operations */ + int (*ppu_enable)(struct mv88e6xxx_chip *chip); + int (*ppu_disable)(struct mv88e6xxx_chip *chip); + + /* Switch Software Reset */ + int (*reset)(struct mv88e6xxx_chip *chip); + + /* RGMII Receive/Transmit Timing Control + * Add delay on PHY_INTERFACE_MODE_RGMII_*ID, no delay otherwise. + */ + int (*port_set_rgmii_delay)(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); + +#define LINK_FORCED_DOWN 0 +#define LINK_FORCED_UP 1 +#define LINK_UNFORCED -2 + + /* Port's MAC link state + * Use LINK_FORCED_UP or LINK_FORCED_DOWN to force link up or down, + * or LINK_UNFORCED for normal link detection. + */ + int (*port_set_link)(struct mv88e6xxx_chip *chip, int port, int link); + + /* Synchronise the port link state with that of the SERDES + */ + int (*port_sync_link)(struct mv88e6xxx_chip *chip, int port, unsigned int mode, bool isup); + +#define PAUSE_ON 1 +#define PAUSE_OFF 0 + + /* Enable/disable sending Pause */ + int (*port_set_pause)(struct mv88e6xxx_chip *chip, int port, + int pause); + +#define SPEED_UNFORCED -2 +#define DUPLEX_UNFORCED -2 + + /* Port's MAC speed (in Mbps) and MAC duplex mode + * + * Depending on the chip, 10, 100, 200, 1000, 2500, 10000 are valid. + * Use SPEED_UNFORCED for normal detection. + * + * Use DUPLEX_HALF or DUPLEX_FULL to force half or full duplex, + * or DUPLEX_UNFORCED for normal duplex detection. + */ + int (*port_set_speed_duplex)(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex); + + /* What interface mode should be used for maximum speed? */ + phy_interface_t (*port_max_speed_mode)(int port); + + int (*port_tag_remap)(struct mv88e6xxx_chip *chip, int port); + + int (*port_set_policy)(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_policy_mapping mapping, + enum mv88e6xxx_policy_action action); + + int (*port_set_frame_mode)(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_frame_mode mode); + int (*port_set_ucast_flood)(struct mv88e6xxx_chip *chip, int port, + bool unicast); + int (*port_set_mcast_flood)(struct mv88e6xxx_chip *chip, int port, + bool multicast); + int (*port_set_ether_type)(struct mv88e6xxx_chip *chip, int port, + u16 etype); + int (*port_set_jumbo_size)(struct mv88e6xxx_chip *chip, int port, + size_t size); + + int (*port_egress_rate_limiting)(struct mv88e6xxx_chip *chip, int port); + int (*port_pause_limit)(struct mv88e6xxx_chip *chip, int port, u8 in, + u8 out); + int (*port_disable_learn_limit)(struct mv88e6xxx_chip *chip, int port); + int (*port_disable_pri_override)(struct mv88e6xxx_chip *chip, int port); + int (*port_setup_message_port)(struct mv88e6xxx_chip *chip, int port); + + /* CMODE control what PHY mode the MAC will use, eg. SGMII, RGMII, etc. + * Some chips allow this to be configured on specific ports. + */ + int (*port_set_cmode)(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); + int (*port_get_cmode)(struct mv88e6xxx_chip *chip, int port, u8 *cmode); + + /* Some devices have a per port register indicating what is + * the upstream port this port should forward to. + */ + int (*port_set_upstream_port)(struct mv88e6xxx_chip *chip, int port, + int upstream_port); + + /* Snapshot the statistics for a port. The statistics can then + * be read back a leisure but still with a consistent view. + */ + int (*stats_snapshot)(struct mv88e6xxx_chip *chip, int port); + + /* Set the histogram mode for statistics, when the control registers + * are separated out of the STATS_OP register. + */ + int (*stats_set_histogram)(struct mv88e6xxx_chip *chip); + + /* Return the number of strings describing statistics */ + int (*stats_get_sset_count)(struct mv88e6xxx_chip *chip); + int (*stats_get_strings)(struct mv88e6xxx_chip *chip, uint8_t *data); + int (*stats_get_stats)(struct mv88e6xxx_chip *chip, int port, + uint64_t *data); + int (*set_cpu_port)(struct mv88e6xxx_chip *chip, int port); + int (*set_egress_port)(struct mv88e6xxx_chip *chip, + enum mv88e6xxx_egress_direction direction, + int port); + +#define MV88E6XXX_CASCADE_PORT_NONE 0xe +#define MV88E6XXX_CASCADE_PORT_MULTIPLE 0xf + + int (*set_cascade_port)(struct mv88e6xxx_chip *chip, int port); + + const struct mv88e6xxx_irq_ops *watchdog_ops; + + int (*mgmt_rsvd2cpu)(struct mv88e6xxx_chip *chip); + + /* Power on/off a SERDES interface */ + int (*serdes_power)(struct mv88e6xxx_chip *chip, int port, int lane, + bool up); + + /* SERDES lane mapping */ + int (*serdes_get_lane)(struct mv88e6xxx_chip *chip, int port); + + int (*serdes_pcs_get_state)(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state); + int (*serdes_pcs_config)(struct mv88e6xxx_chip *chip, int port, + int lane, unsigned int mode, + phy_interface_t interface, + const unsigned long *advertise); + int (*serdes_pcs_an_restart)(struct mv88e6xxx_chip *chip, int port, + int lane); + int (*serdes_pcs_link_up)(struct mv88e6xxx_chip *chip, int port, + int lane, int speed, int duplex); + + /* SERDES interrupt handling */ + unsigned int (*serdes_irq_mapping)(struct mv88e6xxx_chip *chip, + int port); + int (*serdes_irq_enable)(struct mv88e6xxx_chip *chip, int port, int lane, + bool enable); + irqreturn_t (*serdes_irq_status)(struct mv88e6xxx_chip *chip, int port, + int lane); + + /* Statistics from the SERDES interface */ + int (*serdes_get_sset_count)(struct mv88e6xxx_chip *chip, int port); + int (*serdes_get_strings)(struct mv88e6xxx_chip *chip, int port, + uint8_t *data); + int (*serdes_get_stats)(struct mv88e6xxx_chip *chip, int port, + uint64_t *data); + + /* SERDES registers for ethtool */ + int (*serdes_get_regs_len)(struct mv88e6xxx_chip *chip, int port); + void (*serdes_get_regs)(struct mv88e6xxx_chip *chip, int port, + void *_p); + + /* SERDES SGMII/Fiber Output Amplitude */ + int (*serdes_set_tx_amplitude)(struct mv88e6xxx_chip *chip, int port, + int val); + + /* Address Translation Unit operations */ + int (*atu_get_hash)(struct mv88e6xxx_chip *chip, u8 *hash); + int (*atu_set_hash)(struct mv88e6xxx_chip *chip, u8 hash); + + /* VLAN Translation Unit operations */ + int (*vtu_getnext)(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); + int (*vtu_loadpurge)(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); + + /* Spanning Tree Unit operations */ + int (*stu_getnext)(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry); + int (*stu_loadpurge)(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry); + + /* GPIO operations */ + const struct mv88e6xxx_gpio_ops *gpio_ops; + + /* Interface to the AVB/PTP registers */ + const struct mv88e6xxx_avb_ops *avb_ops; + + /* Remote Management Unit operations */ + int (*rmu_disable)(struct mv88e6xxx_chip *chip); + + /* Precision Time Protocol operations */ + const struct mv88e6xxx_ptp_ops *ptp_ops; + + /* Phylink */ + void (*phylink_get_caps)(struct mv88e6xxx_chip *chip, int port, + struct phylink_config *config); + + /* Max Frame Size */ + int (*set_max_frame_size)(struct mv88e6xxx_chip *chip, int mtu); +}; + +struct mv88e6xxx_irq_ops { + /* Action to be performed when the interrupt happens */ + int (*irq_action)(struct mv88e6xxx_chip *chip, int irq); + /* Setup the hardware to generate the interrupt */ + int (*irq_setup)(struct mv88e6xxx_chip *chip); + /* Reset the hardware to stop generating the interrupt */ + void (*irq_free)(struct mv88e6xxx_chip *chip); +}; + +struct mv88e6xxx_gpio_ops { + /* Get/set data on GPIO pin */ + int (*get_data)(struct mv88e6xxx_chip *chip, unsigned int pin); + int (*set_data)(struct mv88e6xxx_chip *chip, unsigned int pin, + int value); + + /* get/set GPIO direction */ + int (*get_dir)(struct mv88e6xxx_chip *chip, unsigned int pin); + int (*set_dir)(struct mv88e6xxx_chip *chip, unsigned int pin, + bool input); + + /* get/set GPIO pin control */ + int (*get_pctl)(struct mv88e6xxx_chip *chip, unsigned int pin, + int *func); + int (*set_pctl)(struct mv88e6xxx_chip *chip, unsigned int pin, + int func); +}; + +struct mv88e6xxx_avb_ops { + /* Access port-scoped Precision Time Protocol registers */ + int (*port_ptp_read)(struct mv88e6xxx_chip *chip, int port, int addr, + u16 *data, int len); + int (*port_ptp_write)(struct mv88e6xxx_chip *chip, int port, int addr, + u16 data); + + /* Access global Precision Time Protocol registers */ + int (*ptp_read)(struct mv88e6xxx_chip *chip, int addr, u16 *data, + int len); + int (*ptp_write)(struct mv88e6xxx_chip *chip, int addr, u16 data); + + /* Access global Time Application Interface registers */ + int (*tai_read)(struct mv88e6xxx_chip *chip, int addr, u16 *data, + int len); + int (*tai_write)(struct mv88e6xxx_chip *chip, int addr, u16 data); +}; + +struct mv88e6xxx_ptp_ops { + u64 (*clock_read)(const struct cyclecounter *cc); + int (*ptp_enable)(struct ptp_clock_info *ptp, + struct ptp_clock_request *rq, int on); + int (*ptp_verify)(struct ptp_clock_info *ptp, unsigned int pin, + enum ptp_pin_function func, unsigned int chan); + void (*event_work)(struct work_struct *ugly); + int (*port_enable)(struct mv88e6xxx_chip *chip, int port); + int (*port_disable)(struct mv88e6xxx_chip *chip, int port); + int (*global_enable)(struct mv88e6xxx_chip *chip); + int (*global_disable)(struct mv88e6xxx_chip *chip); + int n_ext_ts; + int arr0_sts_reg; + int arr1_sts_reg; + int dep_sts_reg; + u32 rx_filters; + u32 cc_shift; + u32 cc_mult; + u32 cc_mult_num; + u32 cc_mult_dem; +}; + +#define STATS_TYPE_PORT BIT(0) +#define STATS_TYPE_BANK0 BIT(1) +#define STATS_TYPE_BANK1 BIT(2) + +struct mv88e6xxx_hw_stat { + char string[ETH_GSTRING_LEN]; + size_t size; + int reg; + int type; +}; + +static inline bool mv88e6xxx_has_stu(struct mv88e6xxx_chip *chip) +{ + return chip->info->max_sid > 0 && + chip->info->ops->stu_loadpurge && + chip->info->ops->stu_getnext; +} + +static inline bool mv88e6xxx_has_pvt(struct mv88e6xxx_chip *chip) +{ + return chip->info->pvt; +} + +static inline bool mv88e6xxx_has_lag(struct mv88e6xxx_chip *chip) +{ + return !!chip->info->global2_addr; +} + +static inline unsigned int mv88e6xxx_num_databases(struct mv88e6xxx_chip *chip) +{ + return chip->info->num_databases; +} + +static inline unsigned int mv88e6xxx_num_macs(struct mv88e6xxx_chip *chip) +{ + return chip->info->num_macs; +} + +static inline unsigned int mv88e6xxx_num_ports(struct mv88e6xxx_chip *chip) +{ + return chip->info->num_ports; +} + +static inline unsigned int mv88e6xxx_max_vid(struct mv88e6xxx_chip *chip) +{ + return chip->info->max_vid; +} + +static inline unsigned int mv88e6xxx_max_sid(struct mv88e6xxx_chip *chip) +{ + return chip->info->max_sid; +} + +static inline u16 mv88e6xxx_port_mask(struct mv88e6xxx_chip *chip) +{ + return GENMASK((s32)mv88e6xxx_num_ports(chip) - 1, 0); +} + +static inline unsigned int mv88e6xxx_num_gpio(struct mv88e6xxx_chip *chip) +{ + return chip->info->num_gpio; +} + +static inline bool mv88e6xxx_is_invalid_port(struct mv88e6xxx_chip *chip, int port) +{ + return (chip->info->invalid_port_mask & BIT(port)) != 0; +} + +int mv88e6xxx_read(struct mv88e6xxx_chip *chip, int addr, int reg, u16 *val); +int mv88e6xxx_write(struct mv88e6xxx_chip *chip, int addr, int reg, u16 val); +int mv88e6xxx_wait_mask(struct mv88e6xxx_chip *chip, int addr, int reg, + u16 mask, u16 val); +int mv88e6xxx_wait_bit(struct mv88e6xxx_chip *chip, int addr, int reg, + int bit, int val); +struct mii_bus *mv88e6xxx_default_mdio_bus(struct mv88e6xxx_chip *chip); + +static inline void mv88e6xxx_reg_lock(struct mv88e6xxx_chip *chip) +{ + mutex_lock(&chip->reg_lock); +} + +static inline void mv88e6xxx_reg_unlock(struct mv88e6xxx_chip *chip) +{ + mutex_unlock(&chip->reg_lock); +} + +int mv88e6xxx_fid_map(struct mv88e6xxx_chip *chip, unsigned long *bitmap); + +#endif /* _MV88E6XXX_CHIP_H */ diff --git a/drivers/net/dsa/mv88e6xxx/devlink.c b/drivers/net/dsa/mv88e6xxx/devlink.c new file mode 100644 index 000000000..1266eabee --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/devlink.c @@ -0,0 +1,833 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +#include <net/dsa.h> + +#include "chip.h" +#include "devlink.h" +#include "global1.h" +#include "global2.h" +#include "port.h" + +static int mv88e6xxx_atu_get_hash(struct mv88e6xxx_chip *chip, u8 *hash) +{ + if (chip->info->ops->atu_get_hash) + return chip->info->ops->atu_get_hash(chip, hash); + + return -EOPNOTSUPP; +} + +static int mv88e6xxx_atu_set_hash(struct mv88e6xxx_chip *chip, u8 hash) +{ + if (chip->info->ops->atu_set_hash) + return chip->info->ops->atu_set_hash(chip, hash); + + return -EOPNOTSUPP; +} + +enum mv88e6xxx_devlink_param_id { + MV88E6XXX_DEVLINK_PARAM_ID_BASE = DEVLINK_PARAM_GENERIC_ID_MAX, + MV88E6XXX_DEVLINK_PARAM_ID_ATU_HASH, +}; + +int mv88e6xxx_devlink_param_get(struct dsa_switch *ds, u32 id, + struct devlink_param_gset_ctx *ctx) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + + switch (id) { + case MV88E6XXX_DEVLINK_PARAM_ID_ATU_HASH: + err = mv88e6xxx_atu_get_hash(chip, &ctx->val.vu8); + break; + default: + err = -EOPNOTSUPP; + break; + } + + mv88e6xxx_reg_unlock(chip); + + return err; +} + +int mv88e6xxx_devlink_param_set(struct dsa_switch *ds, u32 id, + struct devlink_param_gset_ctx *ctx) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + mv88e6xxx_reg_lock(chip); + + switch (id) { + case MV88E6XXX_DEVLINK_PARAM_ID_ATU_HASH: + err = mv88e6xxx_atu_set_hash(chip, ctx->val.vu8); + break; + default: + err = -EOPNOTSUPP; + break; + } + + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static const struct devlink_param mv88e6xxx_devlink_params[] = { + DSA_DEVLINK_PARAM_DRIVER(MV88E6XXX_DEVLINK_PARAM_ID_ATU_HASH, + "ATU_hash", DEVLINK_PARAM_TYPE_U8, + BIT(DEVLINK_PARAM_CMODE_RUNTIME)), +}; + +int mv88e6xxx_setup_devlink_params(struct dsa_switch *ds) +{ + return dsa_devlink_params_register(ds, mv88e6xxx_devlink_params, + ARRAY_SIZE(mv88e6xxx_devlink_params)); +} + +void mv88e6xxx_teardown_devlink_params(struct dsa_switch *ds) +{ + dsa_devlink_params_unregister(ds, mv88e6xxx_devlink_params, + ARRAY_SIZE(mv88e6xxx_devlink_params)); +} + +enum mv88e6xxx_devlink_resource_id { + MV88E6XXX_RESOURCE_ID_ATU, + MV88E6XXX_RESOURCE_ID_ATU_BIN_0, + MV88E6XXX_RESOURCE_ID_ATU_BIN_1, + MV88E6XXX_RESOURCE_ID_ATU_BIN_2, + MV88E6XXX_RESOURCE_ID_ATU_BIN_3, +}; + +static u64 mv88e6xxx_devlink_atu_bin_get(struct mv88e6xxx_chip *chip, + u16 bin) +{ + u16 occupancy = 0; + int err; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_g2_atu_stats_set(chip, MV88E6XXX_G2_ATU_STATS_MODE_ALL, + bin); + if (err) { + dev_err(chip->dev, "failed to set ATU stats kind/bin\n"); + goto unlock; + } + + err = mv88e6xxx_g1_atu_get_next(chip, 0); + if (err) { + dev_err(chip->dev, "failed to perform ATU get next\n"); + goto unlock; + } + + err = mv88e6xxx_g2_atu_stats_get(chip, &occupancy); + if (err) { + dev_err(chip->dev, "failed to get ATU stats\n"); + goto unlock; + } + + occupancy &= MV88E6XXX_G2_ATU_STATS_MASK; + +unlock: + mv88e6xxx_reg_unlock(chip); + + return occupancy; +} + +static u64 mv88e6xxx_devlink_atu_bin_0_get(void *priv) +{ + struct mv88e6xxx_chip *chip = priv; + + return mv88e6xxx_devlink_atu_bin_get(chip, + MV88E6XXX_G2_ATU_STATS_BIN_0); +} + +static u64 mv88e6xxx_devlink_atu_bin_1_get(void *priv) +{ + struct mv88e6xxx_chip *chip = priv; + + return mv88e6xxx_devlink_atu_bin_get(chip, + MV88E6XXX_G2_ATU_STATS_BIN_1); +} + +static u64 mv88e6xxx_devlink_atu_bin_2_get(void *priv) +{ + struct mv88e6xxx_chip *chip = priv; + + return mv88e6xxx_devlink_atu_bin_get(chip, + MV88E6XXX_G2_ATU_STATS_BIN_2); +} + +static u64 mv88e6xxx_devlink_atu_bin_3_get(void *priv) +{ + struct mv88e6xxx_chip *chip = priv; + + return mv88e6xxx_devlink_atu_bin_get(chip, + MV88E6XXX_G2_ATU_STATS_BIN_3); +} + +static u64 mv88e6xxx_devlink_atu_get(void *priv) +{ + return mv88e6xxx_devlink_atu_bin_0_get(priv) + + mv88e6xxx_devlink_atu_bin_1_get(priv) + + mv88e6xxx_devlink_atu_bin_2_get(priv) + + mv88e6xxx_devlink_atu_bin_3_get(priv); +} + +int mv88e6xxx_setup_devlink_resources(struct dsa_switch *ds) +{ + struct devlink_resource_size_params size_params; + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + devlink_resource_size_params_init(&size_params, + mv88e6xxx_num_macs(chip), + mv88e6xxx_num_macs(chip), + 1, DEVLINK_RESOURCE_UNIT_ENTRY); + + err = dsa_devlink_resource_register(ds, "ATU", + mv88e6xxx_num_macs(chip), + MV88E6XXX_RESOURCE_ID_ATU, + DEVLINK_RESOURCE_ID_PARENT_TOP, + &size_params); + if (err) + goto out; + + devlink_resource_size_params_init(&size_params, + mv88e6xxx_num_macs(chip) / 4, + mv88e6xxx_num_macs(chip) / 4, + 1, DEVLINK_RESOURCE_UNIT_ENTRY); + + err = dsa_devlink_resource_register(ds, "ATU_bin_0", + mv88e6xxx_num_macs(chip) / 4, + MV88E6XXX_RESOURCE_ID_ATU_BIN_0, + MV88E6XXX_RESOURCE_ID_ATU, + &size_params); + if (err) + goto out; + + err = dsa_devlink_resource_register(ds, "ATU_bin_1", + mv88e6xxx_num_macs(chip) / 4, + MV88E6XXX_RESOURCE_ID_ATU_BIN_1, + MV88E6XXX_RESOURCE_ID_ATU, + &size_params); + if (err) + goto out; + + err = dsa_devlink_resource_register(ds, "ATU_bin_2", + mv88e6xxx_num_macs(chip) / 4, + MV88E6XXX_RESOURCE_ID_ATU_BIN_2, + MV88E6XXX_RESOURCE_ID_ATU, + &size_params); + if (err) + goto out; + + err = dsa_devlink_resource_register(ds, "ATU_bin_3", + mv88e6xxx_num_macs(chip) / 4, + MV88E6XXX_RESOURCE_ID_ATU_BIN_3, + MV88E6XXX_RESOURCE_ID_ATU, + &size_params); + if (err) + goto out; + + dsa_devlink_resource_occ_get_register(ds, + MV88E6XXX_RESOURCE_ID_ATU, + mv88e6xxx_devlink_atu_get, + chip); + + dsa_devlink_resource_occ_get_register(ds, + MV88E6XXX_RESOURCE_ID_ATU_BIN_0, + mv88e6xxx_devlink_atu_bin_0_get, + chip); + + dsa_devlink_resource_occ_get_register(ds, + MV88E6XXX_RESOURCE_ID_ATU_BIN_1, + mv88e6xxx_devlink_atu_bin_1_get, + chip); + + dsa_devlink_resource_occ_get_register(ds, + MV88E6XXX_RESOURCE_ID_ATU_BIN_2, + mv88e6xxx_devlink_atu_bin_2_get, + chip); + + dsa_devlink_resource_occ_get_register(ds, + MV88E6XXX_RESOURCE_ID_ATU_BIN_3, + mv88e6xxx_devlink_atu_bin_3_get, + chip); + + return 0; + +out: + dsa_devlink_resources_unregister(ds); + return err; +} + +static int mv88e6xxx_region_global_snapshot(struct devlink *dl, + const struct devlink_region_ops *ops, + struct netlink_ext_ack *extack, + u8 **data) +{ + struct mv88e6xxx_region_priv *region_priv = ops->priv; + struct dsa_switch *ds = dsa_devlink_to_ds(dl); + struct mv88e6xxx_chip *chip = ds->priv; + u16 *registers; + int i, err; + + registers = kmalloc_array(32, sizeof(u16), GFP_KERNEL); + if (!registers) + return -ENOMEM; + + mv88e6xxx_reg_lock(chip); + for (i = 0; i < 32; i++) { + switch (region_priv->id) { + case MV88E6XXX_REGION_GLOBAL1: + err = mv88e6xxx_g1_read(chip, i, ®isters[i]); + break; + case MV88E6XXX_REGION_GLOBAL2: + err = mv88e6xxx_g2_read(chip, i, ®isters[i]); + break; + default: + err = -EOPNOTSUPP; + } + + if (err) { + kfree(registers); + goto out; + } + } + *data = (u8 *)registers; +out: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +/* The ATU entry varies between mv88e6xxx chipset generations. Define + * a generic format which covers all the current and hopefully future + * mv88e6xxx generations + */ + +struct mv88e6xxx_devlink_atu_entry { + /* The FID is scattered over multiple registers. */ + u16 fid; + u16 atu_op; + u16 atu_data; + u16 atu_01; + u16 atu_23; + u16 atu_45; +}; + +static int mv88e6xxx_region_atu_snapshot_fid(struct mv88e6xxx_chip *chip, + int fid, + struct mv88e6xxx_devlink_atu_entry *table, + int *count) +{ + u16 atu_op, atu_data, atu_01, atu_23, atu_45; + struct mv88e6xxx_atu_entry addr; + int err; + + addr.state = 0; + eth_broadcast_addr(addr.mac); + + do { + err = mv88e6xxx_g1_atu_getnext(chip, fid, &addr); + if (err) + return err; + + if (!addr.state) + break; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_OP, &atu_op); + if (err) + return err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_DATA, &atu_data); + if (err) + return err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_MAC01, &atu_01); + if (err) + return err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_MAC23, &atu_23); + if (err) + return err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_MAC45, &atu_45); + if (err) + return err; + + table[*count].fid = fid; + table[*count].atu_op = atu_op; + table[*count].atu_data = atu_data; + table[*count].atu_01 = atu_01; + table[*count].atu_23 = atu_23; + table[*count].atu_45 = atu_45; + (*count)++; + } while (!is_broadcast_ether_addr(addr.mac)); + + return 0; +} + +static int mv88e6xxx_region_atu_snapshot(struct devlink *dl, + const struct devlink_region_ops *ops, + struct netlink_ext_ack *extack, + u8 **data) +{ + struct dsa_switch *ds = dsa_devlink_to_ds(dl); + DECLARE_BITMAP(fid_bitmap, MV88E6XXX_N_FID); + struct mv88e6xxx_devlink_atu_entry *table; + struct mv88e6xxx_chip *chip = ds->priv; + int fid = -1, count, err; + + table = kmalloc_array(mv88e6xxx_num_databases(chip), + sizeof(struct mv88e6xxx_devlink_atu_entry), + GFP_KERNEL); + if (!table) + return -ENOMEM; + + memset(table, 0, mv88e6xxx_num_databases(chip) * + sizeof(struct mv88e6xxx_devlink_atu_entry)); + + count = 0; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_fid_map(chip, fid_bitmap); + if (err) { + kfree(table); + goto out; + } + + while (1) { + fid = find_next_bit(fid_bitmap, MV88E6XXX_N_FID, fid + 1); + if (fid == MV88E6XXX_N_FID) + break; + + err = mv88e6xxx_region_atu_snapshot_fid(chip, fid, table, + &count); + if (err) { + kfree(table); + goto out; + } + } + *data = (u8 *)table; +out: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +/** + * struct mv88e6xxx_devlink_vtu_entry - Devlink VTU entry + * @fid: Global1/2: FID and VLAN policy. + * @sid: Global1/3: SID, unknown filters and learning. + * @op: Global1/5: FID (old chipsets). + * @vid: Global1/6: VID, valid, and page. + * @data: Global1/7-9: Membership data and priority override. + * @resvd: Reserved. Also happens to align the size to 16B. + * + * The VTU entry format varies between chipset generations, the + * descriptions above represent the superset of all possible + * information, not all fields are valid on all devices. Since this is + * a low-level debug interface, copy all data verbatim and defer + * parsing to the consumer. + */ +struct mv88e6xxx_devlink_vtu_entry { + u16 fid; + u16 sid; + u16 op; + u16 vid; + u16 data[3]; + u16 resvd; +}; + +static int mv88e6xxx_region_vtu_snapshot(struct devlink *dl, + const struct devlink_region_ops *ops, + struct netlink_ext_ack *extack, + u8 **data) +{ + struct mv88e6xxx_devlink_vtu_entry *table, *entry; + struct dsa_switch *ds = dsa_devlink_to_ds(dl); + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_vtu_entry vlan; + int err; + + table = kcalloc(mv88e6xxx_max_vid(chip) + 1, + sizeof(struct mv88e6xxx_devlink_vtu_entry), + GFP_KERNEL); + if (!table) + return -ENOMEM; + + entry = table; + vlan.vid = mv88e6xxx_max_vid(chip); + vlan.valid = false; + + mv88e6xxx_reg_lock(chip); + + do { + err = mv88e6xxx_g1_vtu_getnext(chip, &vlan); + if (err) + break; + + if (!vlan.valid) + break; + + err = err ? : mv88e6xxx_g1_read(chip, MV88E6352_G1_VTU_FID, + &entry->fid); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6352_G1_VTU_SID, + &entry->sid); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_OP, + &entry->op); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_VID, + &entry->vid); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_DATA1, + &entry->data[0]); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_DATA2, + &entry->data[1]); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_DATA3, + &entry->data[2]); + if (err) + break; + + entry++; + } while (vlan.vid < mv88e6xxx_max_vid(chip)); + + mv88e6xxx_reg_unlock(chip); + + if (err) { + kfree(table); + return err; + } + + *data = (u8 *)table; + return 0; +} + +/** + * struct mv88e6xxx_devlink_stu_entry - Devlink STU entry + * @sid: Global1/3: SID, unknown filters and learning. + * @vid: Global1/6: Valid bit. + * @data: Global1/7-9: Membership data and priority override. + * @resvd: Reserved. In case we forgot something. + * + * The STU entry format varies between chipset generations. Peridot + * and Amethyst packs the STU data into Global1/7-8. Older silicon + * spreads the information across all three VTU data registers - + * inheriting the layout of even older hardware that had no STU at + * all. Since this is a low-level debug interface, copy all data + * verbatim and defer parsing to the consumer. + */ +struct mv88e6xxx_devlink_stu_entry { + u16 sid; + u16 vid; + u16 data[3]; + u16 resvd; +}; + +static int mv88e6xxx_region_stu_snapshot(struct devlink *dl, + const struct devlink_region_ops *ops, + struct netlink_ext_ack *extack, + u8 **data) +{ + struct mv88e6xxx_devlink_stu_entry *table, *entry; + struct dsa_switch *ds = dsa_devlink_to_ds(dl); + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_stu_entry stu; + int err; + + table = kcalloc(mv88e6xxx_max_sid(chip) + 1, + sizeof(struct mv88e6xxx_devlink_stu_entry), + GFP_KERNEL); + if (!table) + return -ENOMEM; + + entry = table; + stu.sid = mv88e6xxx_max_sid(chip); + stu.valid = false; + + mv88e6xxx_reg_lock(chip); + + do { + err = mv88e6xxx_g1_stu_getnext(chip, &stu); + if (err) + break; + + if (!stu.valid) + break; + + err = err ? : mv88e6xxx_g1_read(chip, MV88E6352_G1_VTU_SID, + &entry->sid); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_VID, + &entry->vid); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_DATA1, + &entry->data[0]); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_DATA2, + &entry->data[1]); + err = err ? : mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_DATA3, + &entry->data[2]); + if (err) + break; + + entry++; + } while (stu.sid < mv88e6xxx_max_sid(chip)); + + mv88e6xxx_reg_unlock(chip); + + if (err) { + kfree(table); + return err; + } + + *data = (u8 *)table; + return 0; +} + +static int mv88e6xxx_region_pvt_snapshot(struct devlink *dl, + const struct devlink_region_ops *ops, + struct netlink_ext_ack *extack, + u8 **data) +{ + struct dsa_switch *ds = dsa_devlink_to_ds(dl); + struct mv88e6xxx_chip *chip = ds->priv; + int dev, port, err; + u16 *pvt, *cur; + + pvt = kcalloc(MV88E6XXX_MAX_PVT_ENTRIES, sizeof(*pvt), GFP_KERNEL); + if (!pvt) + return -ENOMEM; + + mv88e6xxx_reg_lock(chip); + + cur = pvt; + for (dev = 0; dev < MV88E6XXX_MAX_PVT_SWITCHES; dev++) { + for (port = 0; port < MV88E6XXX_MAX_PVT_PORTS; port++) { + err = mv88e6xxx_g2_pvt_read(chip, dev, port, cur); + if (err) + break; + + cur++; + } + } + + mv88e6xxx_reg_unlock(chip); + + if (err) { + kfree(pvt); + return err; + } + + *data = (u8 *)pvt; + return 0; +} + +static int mv88e6xxx_region_port_snapshot(struct devlink_port *devlink_port, + const struct devlink_port_region_ops *ops, + struct netlink_ext_ack *extack, + u8 **data) +{ + struct dsa_switch *ds = dsa_devlink_port_to_ds(devlink_port); + int port = dsa_devlink_port_to_port(devlink_port); + struct mv88e6xxx_chip *chip = ds->priv; + u16 *registers; + int i, err; + + registers = kmalloc_array(32, sizeof(u16), GFP_KERNEL); + if (!registers) + return -ENOMEM; + + mv88e6xxx_reg_lock(chip); + for (i = 0; i < 32; i++) { + err = mv88e6xxx_port_read(chip, port, i, ®isters[i]); + if (err) { + kfree(registers); + goto out; + } + } + *data = (u8 *)registers; +out: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static struct mv88e6xxx_region_priv mv88e6xxx_region_global1_priv = { + .id = MV88E6XXX_REGION_GLOBAL1, +}; + +static struct devlink_region_ops mv88e6xxx_region_global1_ops = { + .name = "global1", + .snapshot = mv88e6xxx_region_global_snapshot, + .destructor = kfree, + .priv = &mv88e6xxx_region_global1_priv, +}; + +static struct mv88e6xxx_region_priv mv88e6xxx_region_global2_priv = { + .id = MV88E6XXX_REGION_GLOBAL2, +}; + +static struct devlink_region_ops mv88e6xxx_region_global2_ops = { + .name = "global2", + .snapshot = mv88e6xxx_region_global_snapshot, + .destructor = kfree, + .priv = &mv88e6xxx_region_global2_priv, +}; + +static struct devlink_region_ops mv88e6xxx_region_atu_ops = { + .name = "atu", + .snapshot = mv88e6xxx_region_atu_snapshot, + .destructor = kfree, +}; + +static struct devlink_region_ops mv88e6xxx_region_vtu_ops = { + .name = "vtu", + .snapshot = mv88e6xxx_region_vtu_snapshot, + .destructor = kfree, +}; + +static struct devlink_region_ops mv88e6xxx_region_stu_ops = { + .name = "stu", + .snapshot = mv88e6xxx_region_stu_snapshot, + .destructor = kfree, +}; + +static struct devlink_region_ops mv88e6xxx_region_pvt_ops = { + .name = "pvt", + .snapshot = mv88e6xxx_region_pvt_snapshot, + .destructor = kfree, +}; + +static const struct devlink_port_region_ops mv88e6xxx_region_port_ops = { + .name = "port", + .snapshot = mv88e6xxx_region_port_snapshot, + .destructor = kfree, +}; + +struct mv88e6xxx_region { + struct devlink_region_ops *ops; + u64 size; + + bool (*cond)(struct mv88e6xxx_chip *chip); +}; + +static struct mv88e6xxx_region mv88e6xxx_regions[] = { + [MV88E6XXX_REGION_GLOBAL1] = { + .ops = &mv88e6xxx_region_global1_ops, + .size = 32 * sizeof(u16) + }, + [MV88E6XXX_REGION_GLOBAL2] = { + .ops = &mv88e6xxx_region_global2_ops, + .size = 32 * sizeof(u16) }, + [MV88E6XXX_REGION_ATU] = { + .ops = &mv88e6xxx_region_atu_ops + /* calculated at runtime */ + }, + [MV88E6XXX_REGION_VTU] = { + .ops = &mv88e6xxx_region_vtu_ops + /* calculated at runtime */ + }, + [MV88E6XXX_REGION_STU] = { + .ops = &mv88e6xxx_region_stu_ops, + .cond = mv88e6xxx_has_stu, + /* calculated at runtime */ + }, + [MV88E6XXX_REGION_PVT] = { + .ops = &mv88e6xxx_region_pvt_ops, + .size = MV88E6XXX_MAX_PVT_ENTRIES * sizeof(u16), + .cond = mv88e6xxx_has_pvt, + }, +}; + +void mv88e6xxx_teardown_devlink_regions_global(struct dsa_switch *ds) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int i; + + for (i = 0; i < ARRAY_SIZE(mv88e6xxx_regions); i++) + dsa_devlink_region_destroy(chip->regions[i]); +} + +void mv88e6xxx_teardown_devlink_regions_port(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + + dsa_devlink_region_destroy(chip->ports[port].region); +} + +int mv88e6xxx_setup_devlink_regions_port(struct dsa_switch *ds, int port) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct devlink_region *region; + + region = dsa_devlink_port_region_create(ds, + port, + &mv88e6xxx_region_port_ops, 1, + 32 * sizeof(u16)); + if (IS_ERR(region)) + return PTR_ERR(region); + + chip->ports[port].region = region; + + return 0; +} + +int mv88e6xxx_setup_devlink_regions_global(struct dsa_switch *ds) +{ + bool (*cond)(struct mv88e6xxx_chip *chip); + struct mv88e6xxx_chip *chip = ds->priv; + struct devlink_region_ops *ops; + struct devlink_region *region; + u64 size; + int i, j; + + for (i = 0; i < ARRAY_SIZE(mv88e6xxx_regions); i++) { + ops = mv88e6xxx_regions[i].ops; + size = mv88e6xxx_regions[i].size; + cond = mv88e6xxx_regions[i].cond; + + if (cond && !cond(chip)) + continue; + + switch (i) { + case MV88E6XXX_REGION_ATU: + size = mv88e6xxx_num_databases(chip) * + sizeof(struct mv88e6xxx_devlink_atu_entry); + break; + case MV88E6XXX_REGION_VTU: + size = (mv88e6xxx_max_vid(chip) + 1) * + sizeof(struct mv88e6xxx_devlink_vtu_entry); + break; + case MV88E6XXX_REGION_STU: + size = (mv88e6xxx_max_sid(chip) + 1) * + sizeof(struct mv88e6xxx_devlink_stu_entry); + break; + } + + region = dsa_devlink_region_create(ds, ops, 1, size); + if (IS_ERR(region)) + goto out; + chip->regions[i] = region; + } + return 0; + +out: + for (j = 0; j < i; j++) + dsa_devlink_region_destroy(chip->regions[j]); + + return PTR_ERR(region); +} + +int mv88e6xxx_devlink_info_get(struct dsa_switch *ds, + struct devlink_info_req *req, + struct netlink_ext_ack *extack) +{ + struct mv88e6xxx_chip *chip = ds->priv; + int err; + + err = devlink_info_driver_name_put(req, "mv88e6xxx"); + if (err) + return err; + + return devlink_info_version_fixed_put(req, + DEVLINK_INFO_VERSION_GENERIC_ASIC_ID, + chip->info->name); +} diff --git a/drivers/net/dsa/mv88e6xxx/devlink.h b/drivers/net/dsa/mv88e6xxx/devlink.h new file mode 100644 index 000000000..65ce6a685 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/devlink.h @@ -0,0 +1,23 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ + +/* Marvell 88E6xxx Switch devlink support. */ + +#ifndef _MV88E6XXX_DEVLINK_H +#define _MV88E6XXX_DEVLINK_H + +int mv88e6xxx_setup_devlink_params(struct dsa_switch *ds); +void mv88e6xxx_teardown_devlink_params(struct dsa_switch *ds); +int mv88e6xxx_setup_devlink_resources(struct dsa_switch *ds); +int mv88e6xxx_devlink_param_get(struct dsa_switch *ds, u32 id, + struct devlink_param_gset_ctx *ctx); +int mv88e6xxx_devlink_param_set(struct dsa_switch *ds, u32 id, + struct devlink_param_gset_ctx *ctx); +int mv88e6xxx_setup_devlink_regions_global(struct dsa_switch *ds); +void mv88e6xxx_teardown_devlink_regions_global(struct dsa_switch *ds); +int mv88e6xxx_setup_devlink_regions_port(struct dsa_switch *ds, int port); +void mv88e6xxx_teardown_devlink_regions_port(struct dsa_switch *ds, int port); + +int mv88e6xxx_devlink_info_get(struct dsa_switch *ds, + struct devlink_info_req *req, + struct netlink_ext_ack *extack); +#endif /* _MV88E6XXX_DEVLINK_H */ diff --git a/drivers/net/dsa/mv88e6xxx/global1.c b/drivers/net/dsa/mv88e6xxx/global1.c new file mode 100644 index 000000000..964928285 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/global1.c @@ -0,0 +1,579 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Switch Global (1) Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016-2017 Savoir-faire Linux Inc. + * Vivien Didelot <vivien.didelot@savoirfairelinux.com> + */ + +#include <linux/bitfield.h> + +#include "chip.h" +#include "global1.h" + +int mv88e6xxx_g1_read(struct mv88e6xxx_chip *chip, int reg, u16 *val) +{ + int addr = chip->info->global1_addr; + + return mv88e6xxx_read(chip, addr, reg, val); +} + +int mv88e6xxx_g1_write(struct mv88e6xxx_chip *chip, int reg, u16 val) +{ + int addr = chip->info->global1_addr; + + return mv88e6xxx_write(chip, addr, reg, val); +} + +int mv88e6xxx_g1_wait_bit(struct mv88e6xxx_chip *chip, int reg, int + bit, int val) +{ + return mv88e6xxx_wait_bit(chip, chip->info->global1_addr, reg, + bit, val); +} + +int mv88e6xxx_g1_wait_mask(struct mv88e6xxx_chip *chip, int reg, + u16 mask, u16 val) +{ + return mv88e6xxx_wait_mask(chip, chip->info->global1_addr, reg, + mask, val); +} + +/* Offset 0x00: Switch Global Status Register */ + +static int mv88e6185_g1_wait_ppu_disabled(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g1_wait_mask(chip, MV88E6XXX_G1_STS, + MV88E6185_G1_STS_PPU_STATE_MASK, + MV88E6185_G1_STS_PPU_STATE_DISABLED); +} + +static int mv88e6185_g1_wait_ppu_polling(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g1_wait_mask(chip, MV88E6XXX_G1_STS, + MV88E6185_G1_STS_PPU_STATE_MASK, + MV88E6185_G1_STS_PPU_STATE_POLLING); +} + +static int mv88e6352_g1_wait_ppu_polling(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6352_G1_STS_PPU_STATE); + + return mv88e6xxx_g1_wait_bit(chip, MV88E6XXX_G1_STS, bit, 1); +} + +static int mv88e6xxx_g1_wait_init_ready(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_G1_STS_INIT_READY); + + /* Wait up to 1 second for the switch to be ready. The InitReady bit 11 + * is set to a one when all units inside the device (ATU, VTU, etc.) + * have finished their initialization and are ready to accept frames. + */ + return mv88e6xxx_g1_wait_bit(chip, MV88E6XXX_G1_STS, bit, 1); +} + +/* Offset 0x01: Switch MAC Address Register Bytes 0 & 1 + * Offset 0x02: Switch MAC Address Register Bytes 2 & 3 + * Offset 0x03: Switch MAC Address Register Bytes 4 & 5 + */ +int mv88e6xxx_g1_set_switch_mac(struct mv88e6xxx_chip *chip, u8 *addr) +{ + u16 reg; + int err; + + reg = (addr[0] << 8) | addr[1]; + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_MAC_01, reg); + if (err) + return err; + + reg = (addr[2] << 8) | addr[3]; + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_MAC_23, reg); + if (err) + return err; + + reg = (addr[4] << 8) | addr[5]; + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_MAC_45, reg); + if (err) + return err; + + return 0; +} + +/* Offset 0x04: Switch Global Control Register */ + +int mv88e6185_g1_reset(struct mv88e6xxx_chip *chip) +{ + u16 val; + int err; + + /* Set the SWReset bit 15 along with the PPUEn bit 14, to also restart + * the PPU, including re-doing PHY detection and initialization + */ + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &val); + if (err) + return err; + + val |= MV88E6XXX_G1_CTL1_SW_RESET; + val |= MV88E6XXX_G1_CTL1_PPU_ENABLE; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, val); + if (err) + return err; + + err = mv88e6xxx_g1_wait_init_ready(chip); + if (err) + return err; + + return mv88e6185_g1_wait_ppu_polling(chip); +} + +int mv88e6250_g1_reset(struct mv88e6xxx_chip *chip) +{ + u16 val; + int err; + + /* Set the SWReset bit 15 */ + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &val); + if (err) + return err; + + val |= MV88E6XXX_G1_CTL1_SW_RESET; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, val); + if (err) + return err; + + return mv88e6xxx_g1_wait_init_ready(chip); +} + +int mv88e6352_g1_reset(struct mv88e6xxx_chip *chip) +{ + int err; + + err = mv88e6250_g1_reset(chip); + if (err) + return err; + + return mv88e6352_g1_wait_ppu_polling(chip); +} + +int mv88e6185_g1_ppu_enable(struct mv88e6xxx_chip *chip) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &val); + if (err) + return err; + + val |= MV88E6XXX_G1_CTL1_PPU_ENABLE; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, val); + if (err) + return err; + + return mv88e6185_g1_wait_ppu_polling(chip); +} + +int mv88e6185_g1_ppu_disable(struct mv88e6xxx_chip *chip) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &val); + if (err) + return err; + + val &= ~MV88E6XXX_G1_CTL1_PPU_ENABLE; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, val); + if (err) + return err; + + return mv88e6185_g1_wait_ppu_disabled(chip); +} + +int mv88e6185_g1_set_max_frame_size(struct mv88e6xxx_chip *chip, int mtu) +{ + u16 val; + int err; + + mtu += ETH_HLEN + ETH_FCS_LEN; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL1, &val); + if (err) + return err; + + val &= ~MV88E6185_G1_CTL1_MAX_FRAME_1632; + + if (mtu > 1518) + val |= MV88E6185_G1_CTL1_MAX_FRAME_1632; + + return mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL1, val); +} + +/* Offset 0x10: IP-PRI Mapping Register 0 + * Offset 0x11: IP-PRI Mapping Register 1 + * Offset 0x12: IP-PRI Mapping Register 2 + * Offset 0x13: IP-PRI Mapping Register 3 + * Offset 0x14: IP-PRI Mapping Register 4 + * Offset 0x15: IP-PRI Mapping Register 5 + * Offset 0x16: IP-PRI Mapping Register 6 + * Offset 0x17: IP-PRI Mapping Register 7 + */ + +int mv88e6085_g1_ip_pri_map(struct mv88e6xxx_chip *chip) +{ + int err; + + /* Reset the IP TOS/DiffServ/Traffic priorities to defaults */ + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IP_PRI_0, 0x0000); + if (err) + return err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IP_PRI_1, 0x0000); + if (err) + return err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IP_PRI_2, 0x5555); + if (err) + return err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IP_PRI_3, 0x5555); + if (err) + return err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IP_PRI_4, 0xaaaa); + if (err) + return err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IP_PRI_5, 0xaaaa); + if (err) + return err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IP_PRI_6, 0xffff); + if (err) + return err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IP_PRI_7, 0xffff); + if (err) + return err; + + return 0; +} + +/* Offset 0x18: IEEE-PRI Register */ + +int mv88e6085_g1_ieee_pri_map(struct mv88e6xxx_chip *chip) +{ + /* Reset the IEEE Tag priorities to defaults */ + return mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IEEE_PRI, 0xfa41); +} + +int mv88e6250_g1_ieee_pri_map(struct mv88e6xxx_chip *chip) +{ + /* Reset the IEEE Tag priorities to defaults */ + return mv88e6xxx_g1_write(chip, MV88E6XXX_G1_IEEE_PRI, 0xfa50); +} + +/* Offset 0x1a: Monitor Control */ +/* Offset 0x1a: Monitor & MGMT Control on some devices */ + +int mv88e6095_g1_set_egress_port(struct mv88e6xxx_chip *chip, + enum mv88e6xxx_egress_direction direction, + int port) +{ + u16 reg; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6185_G1_MONITOR_CTL, ®); + if (err) + return err; + + switch (direction) { + case MV88E6XXX_EGRESS_DIR_INGRESS: + reg &= ~MV88E6185_G1_MONITOR_CTL_INGRESS_DEST_MASK; + reg |= port << + __bf_shf(MV88E6185_G1_MONITOR_CTL_INGRESS_DEST_MASK); + break; + case MV88E6XXX_EGRESS_DIR_EGRESS: + reg &= ~MV88E6185_G1_MONITOR_CTL_EGRESS_DEST_MASK; + reg |= port << + __bf_shf(MV88E6185_G1_MONITOR_CTL_EGRESS_DEST_MASK); + break; + default: + return -EINVAL; + } + + return mv88e6xxx_g1_write(chip, MV88E6185_G1_MONITOR_CTL, reg); +} + +/* Older generations also call this the ARP destination. It has been + * generalized in more modern devices such that more than ARP can + * egress it + */ +int mv88e6095_g1_set_cpu_port(struct mv88e6xxx_chip *chip, int port) +{ + u16 reg; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6185_G1_MONITOR_CTL, ®); + if (err) + return err; + + reg &= ~MV88E6185_G1_MONITOR_CTL_ARP_DEST_MASK; + reg |= port << __bf_shf(MV88E6185_G1_MONITOR_CTL_ARP_DEST_MASK); + + return mv88e6xxx_g1_write(chip, MV88E6185_G1_MONITOR_CTL, reg); +} + +static int mv88e6390_g1_monitor_write(struct mv88e6xxx_chip *chip, + u16 pointer, u8 data) +{ + u16 reg; + + reg = MV88E6390_G1_MONITOR_MGMT_CTL_UPDATE | pointer | data; + + return mv88e6xxx_g1_write(chip, MV88E6390_G1_MONITOR_MGMT_CTL, reg); +} + +int mv88e6390_g1_set_egress_port(struct mv88e6xxx_chip *chip, + enum mv88e6xxx_egress_direction direction, + int port) +{ + u16 ptr; + + switch (direction) { + case MV88E6XXX_EGRESS_DIR_INGRESS: + ptr = MV88E6390_G1_MONITOR_MGMT_CTL_PTR_INGRESS_DEST; + break; + case MV88E6XXX_EGRESS_DIR_EGRESS: + ptr = MV88E6390_G1_MONITOR_MGMT_CTL_PTR_EGRESS_DEST; + break; + default: + return -EINVAL; + } + + return mv88e6390_g1_monitor_write(chip, ptr, port); +} + +int mv88e6390_g1_set_cpu_port(struct mv88e6xxx_chip *chip, int port) +{ + u16 ptr = MV88E6390_G1_MONITOR_MGMT_CTL_PTR_CPU_DEST; + + /* Use the default high priority for management frames sent to + * the CPU. + */ + port |= MV88E6390_G1_MONITOR_MGMT_CTL_PTR_CPU_DEST_MGMTPRI; + + return mv88e6390_g1_monitor_write(chip, ptr, port); +} + +int mv88e6390_g1_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip) +{ + u16 ptr; + int err; + + /* 01:80:c2:00:00:00-01:80:c2:00:00:07 are Management */ + ptr = MV88E6390_G1_MONITOR_MGMT_CTL_PTR_0180C200000XLO; + err = mv88e6390_g1_monitor_write(chip, ptr, 0xff); + if (err) + return err; + + /* 01:80:c2:00:00:08-01:80:c2:00:00:0f are Management */ + ptr = MV88E6390_G1_MONITOR_MGMT_CTL_PTR_0180C200000XHI; + err = mv88e6390_g1_monitor_write(chip, ptr, 0xff); + if (err) + return err; + + /* 01:80:c2:00:00:20-01:80:c2:00:00:27 are Management */ + ptr = MV88E6390_G1_MONITOR_MGMT_CTL_PTR_0180C200002XLO; + err = mv88e6390_g1_monitor_write(chip, ptr, 0xff); + if (err) + return err; + + /* 01:80:c2:00:00:28-01:80:c2:00:00:2f are Management */ + ptr = MV88E6390_G1_MONITOR_MGMT_CTL_PTR_0180C200002XHI; + err = mv88e6390_g1_monitor_write(chip, ptr, 0xff); + if (err) + return err; + + return 0; +} + +/* Offset 0x1c: Global Control 2 */ + +static int mv88e6xxx_g1_ctl2_mask(struct mv88e6xxx_chip *chip, u16 mask, + u16 val) +{ + u16 reg; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_CTL2, ®); + if (err) + return err; + + reg &= ~mask; + reg |= val & mask; + + return mv88e6xxx_g1_write(chip, MV88E6XXX_G1_CTL2, reg); +} + +int mv88e6185_g1_set_cascade_port(struct mv88e6xxx_chip *chip, int port) +{ + const u16 mask = MV88E6185_G1_CTL2_CASCADE_PORT_MASK; + + return mv88e6xxx_g1_ctl2_mask(chip, mask, port << __bf_shf(mask)); +} + +int mv88e6085_g1_rmu_disable(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g1_ctl2_mask(chip, MV88E6085_G1_CTL2_P10RM | + MV88E6085_G1_CTL2_RM_ENABLE, 0); +} + +int mv88e6352_g1_rmu_disable(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g1_ctl2_mask(chip, MV88E6352_G1_CTL2_RMU_MODE_MASK, + MV88E6352_G1_CTL2_RMU_MODE_DISABLED); +} + +int mv88e6390_g1_rmu_disable(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g1_ctl2_mask(chip, MV88E6390_G1_CTL2_RMU_MODE_MASK, + MV88E6390_G1_CTL2_RMU_MODE_DISABLED); +} + +int mv88e6390_g1_stats_set_histogram(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g1_ctl2_mask(chip, MV88E6390_G1_CTL2_HIST_MODE_MASK, + MV88E6390_G1_CTL2_HIST_MODE_RX | + MV88E6390_G1_CTL2_HIST_MODE_TX); +} + +int mv88e6xxx_g1_set_device_number(struct mv88e6xxx_chip *chip, int index) +{ + return mv88e6xxx_g1_ctl2_mask(chip, + MV88E6XXX_G1_CTL2_DEVICE_NUMBER_MASK, + index); +} + +/* Offset 0x1d: Statistics Operation 2 */ + +static int mv88e6xxx_g1_stats_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_G1_STATS_OP_BUSY); + + return mv88e6xxx_g1_wait_bit(chip, MV88E6XXX_G1_STATS_OP, bit, 0); +} + +int mv88e6095_g1_stats_set_histogram(struct mv88e6xxx_chip *chip) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_STATS_OP, &val); + if (err) + return err; + + val |= MV88E6XXX_G1_STATS_OP_HIST_RX_TX; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_STATS_OP, val); + + return err; +} + +int mv88e6xxx_g1_stats_snapshot(struct mv88e6xxx_chip *chip, int port) +{ + int err; + + /* Snapshot the hardware statistics counters for this port. */ + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_STATS_OP, + MV88E6XXX_G1_STATS_OP_BUSY | + MV88E6XXX_G1_STATS_OP_CAPTURE_PORT | + MV88E6XXX_G1_STATS_OP_HIST_RX_TX | port); + if (err) + return err; + + /* Wait for the snapshotting to complete. */ + return mv88e6xxx_g1_stats_wait(chip); +} + +int mv88e6320_g1_stats_snapshot(struct mv88e6xxx_chip *chip, int port) +{ + port = (port + 1) << 5; + + return mv88e6xxx_g1_stats_snapshot(chip, port); +} + +int mv88e6390_g1_stats_snapshot(struct mv88e6xxx_chip *chip, int port) +{ + int err; + + port = (port + 1) << 5; + + /* Snapshot the hardware statistics counters for this port. */ + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_STATS_OP, + MV88E6XXX_G1_STATS_OP_BUSY | + MV88E6XXX_G1_STATS_OP_CAPTURE_PORT | port); + if (err) + return err; + + /* Wait for the snapshotting to complete. */ + return mv88e6xxx_g1_stats_wait(chip); +} + +void mv88e6xxx_g1_stats_read(struct mv88e6xxx_chip *chip, int stat, u32 *val) +{ + u32 value; + u16 reg; + int err; + + *val = 0; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_STATS_OP, + MV88E6XXX_G1_STATS_OP_BUSY | + MV88E6XXX_G1_STATS_OP_READ_CAPTURED | stat); + if (err) + return; + + err = mv88e6xxx_g1_stats_wait(chip); + if (err) + return; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_STATS_COUNTER_32, ®); + if (err) + return; + + value = reg << 16; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_STATS_COUNTER_01, ®); + if (err) + return; + + *val = value | reg; +} + +int mv88e6xxx_g1_stats_clear(struct mv88e6xxx_chip *chip) +{ + int err; + u16 val; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_STATS_OP, &val); + if (err) + return err; + + /* Keep the histogram mode bits */ + val &= MV88E6XXX_G1_STATS_OP_HIST_RX_TX; + val |= MV88E6XXX_G1_STATS_OP_BUSY | MV88E6XXX_G1_STATS_OP_FLUSH_ALL; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_STATS_OP, val); + if (err) + return err; + + /* Wait for the flush to complete. */ + return mv88e6xxx_g1_stats_wait(chip); +} diff --git a/drivers/net/dsa/mv88e6xxx/global1.h b/drivers/net/dsa/mv88e6xxx/global1.h new file mode 100644 index 000000000..04b57a21f --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/global1.h @@ -0,0 +1,364 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx Switch Global (1) Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016-2017 Savoir-faire Linux Inc. + * Vivien Didelot <vivien.didelot@savoirfairelinux.com> + */ + +#ifndef _MV88E6XXX_GLOBAL1_H +#define _MV88E6XXX_GLOBAL1_H + +#include "chip.h" + +/* Offset 0x00: Switch Global Status Register */ +#define MV88E6XXX_G1_STS 0x00 +#define MV88E6352_G1_STS_PPU_STATE 0x8000 +#define MV88E6185_G1_STS_PPU_STATE_MASK 0xc000 +#define MV88E6185_G1_STS_PPU_STATE_DISABLED_RST 0x0000 +#define MV88E6185_G1_STS_PPU_STATE_INITIALIZING 0x4000 +#define MV88E6185_G1_STS_PPU_STATE_DISABLED 0x8000 +#define MV88E6185_G1_STS_PPU_STATE_POLLING 0xc000 +#define MV88E6XXX_G1_STS_INIT_READY 0x0800 +#define MV88E6393X_G1_STS_IRQ_DEVICE_2 9 +#define MV88E6XXX_G1_STS_IRQ_AVB 8 +#define MV88E6XXX_G1_STS_IRQ_DEVICE 7 +#define MV88E6XXX_G1_STS_IRQ_STATS 6 +#define MV88E6XXX_G1_STS_IRQ_VTU_PROB 5 +#define MV88E6XXX_G1_STS_IRQ_VTU_DONE 4 +#define MV88E6XXX_G1_STS_IRQ_ATU_PROB 3 +#define MV88E6XXX_G1_STS_IRQ_ATU_DONE 2 +#define MV88E6XXX_G1_STS_IRQ_TCAM_DONE 1 +#define MV88E6XXX_G1_STS_IRQ_EEPROM_DONE 0 + +/* Offset 0x01: Switch MAC Address Register Bytes 0 & 1 + * Offset 0x02: Switch MAC Address Register Bytes 2 & 3 + * Offset 0x03: Switch MAC Address Register Bytes 4 & 5 + */ +#define MV88E6XXX_G1_MAC_01 0x01 +#define MV88E6XXX_G1_MAC_23 0x02 +#define MV88E6XXX_G1_MAC_45 0x03 + +/* Offset 0x01: ATU FID Register */ +#define MV88E6352_G1_ATU_FID 0x01 + +/* Offset 0x02: VTU FID Register */ +#define MV88E6352_G1_VTU_FID 0x02 +#define MV88E6352_G1_VTU_FID_VID_POLICY 0x1000 +#define MV88E6352_G1_VTU_FID_MASK 0x0fff + +/* Offset 0x03: VTU SID Register */ +#define MV88E6352_G1_VTU_SID 0x03 +#define MV88E6352_G1_VTU_SID_MASK 0x3f + +/* Offset 0x04: Switch Global Control Register */ +#define MV88E6XXX_G1_CTL1 0x04 +#define MV88E6XXX_G1_CTL1_SW_RESET 0x8000 +#define MV88E6XXX_G1_CTL1_PPU_ENABLE 0x4000 +#define MV88E6352_G1_CTL1_DISCARD_EXCESS 0x2000 +#define MV88E6185_G1_CTL1_SCHED_PRIO 0x0800 +#define MV88E6185_G1_CTL1_MAX_FRAME_1632 0x0400 +#define MV88E6185_G1_CTL1_RELOAD_EEPROM 0x0200 +#define MV88E6393X_G1_CTL1_DEVICE2_EN 0x0200 +#define MV88E6XXX_G1_CTL1_DEVICE_EN 0x0080 +#define MV88E6XXX_G1_CTL1_STATS_DONE_EN 0x0040 +#define MV88E6XXX_G1_CTL1_VTU_PROBLEM_EN 0x0020 +#define MV88E6XXX_G1_CTL1_VTU_DONE_EN 0x0010 +#define MV88E6XXX_G1_CTL1_ATU_PROBLEM_EN 0x0008 +#define MV88E6XXX_G1_CTL1_ATU_DONE_EN 0x0004 +#define MV88E6XXX_G1_CTL1_TCAM_EN 0x0002 +#define MV88E6XXX_G1_CTL1_EEPROM_DONE_EN 0x0001 + +/* Offset 0x05: VTU Operation Register */ +#define MV88E6XXX_G1_VTU_OP 0x05 +#define MV88E6XXX_G1_VTU_OP_BUSY 0x8000 +#define MV88E6XXX_G1_VTU_OP_MASK 0x7000 +#define MV88E6XXX_G1_VTU_OP_FLUSH_ALL 0x1000 +#define MV88E6XXX_G1_VTU_OP_NOOP 0x2000 +#define MV88E6XXX_G1_VTU_OP_VTU_LOAD_PURGE 0x3000 +#define MV88E6XXX_G1_VTU_OP_VTU_GET_NEXT 0x4000 +#define MV88E6XXX_G1_VTU_OP_STU_LOAD_PURGE 0x5000 +#define MV88E6XXX_G1_VTU_OP_STU_GET_NEXT 0x6000 +#define MV88E6XXX_G1_VTU_OP_GET_CLR_VIOLATION 0x7000 +#define MV88E6XXX_G1_VTU_OP_MEMBER_VIOLATION BIT(6) +#define MV88E6XXX_G1_VTU_OP_MISS_VIOLATION BIT(5) +#define MV88E6XXX_G1_VTU_OP_SPID_MASK 0xf + +/* Offset 0x06: VTU VID Register */ +#define MV88E6XXX_G1_VTU_VID 0x06 +#define MV88E6XXX_G1_VTU_VID_MASK 0x0fff +#define MV88E6390_G1_VTU_VID_PAGE 0x2000 +#define MV88E6XXX_G1_VTU_VID_VALID 0x1000 + +/* Offset 0x07: VTU/STU Data Register 1 + * Offset 0x08: VTU/STU Data Register 2 + * Offset 0x09: VTU/STU Data Register 3 + */ +#define MV88E6XXX_G1_VTU_DATA1 0x07 +#define MV88E6XXX_G1_VTU_DATA2 0x08 +#define MV88E6XXX_G1_VTU_DATA3 0x09 +#define MV88E6XXX_G1_VTU_STU_DATA_MASK 0x0003 +#define MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_UNMODIFIED 0x0000 +#define MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_UNTAGGED 0x0001 +#define MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_TAGGED 0x0002 +#define MV88E6XXX_G1_VTU_DATA_MEMBER_TAG_NON_MEMBER 0x0003 +#define MV88E6XXX_G1_STU_DATA_PORT_STATE_DISABLED 0x0000 +#define MV88E6XXX_G1_STU_DATA_PORT_STATE_BLOCKING 0x0001 +#define MV88E6XXX_G1_STU_DATA_PORT_STATE_LEARNING 0x0002 +#define MV88E6XXX_G1_STU_DATA_PORT_STATE_FORWARDING 0x0003 + +/* Offset 0x0A: ATU Control Register */ +#define MV88E6XXX_G1_ATU_CTL 0x0a +#define MV88E6XXX_G1_ATU_CTL_LEARN2ALL 0x0008 +#define MV88E6161_G1_ATU_CTL_HASH_MASK 0x0003 + +/* Offset 0x0B: ATU Operation Register */ +#define MV88E6XXX_G1_ATU_OP 0x0b +#define MV88E6XXX_G1_ATU_OP_BUSY 0x8000 +#define MV88E6XXX_G1_ATU_OP_MASK 0x7000 +#define MV88E6XXX_G1_ATU_OP_NOOP 0x0000 +#define MV88E6XXX_G1_ATU_OP_FLUSH_MOVE_ALL 0x1000 +#define MV88E6XXX_G1_ATU_OP_FLUSH_MOVE_NON_STATIC 0x2000 +#define MV88E6XXX_G1_ATU_OP_LOAD_DB 0x3000 +#define MV88E6XXX_G1_ATU_OP_GET_NEXT_DB 0x4000 +#define MV88E6XXX_G1_ATU_OP_FLUSH_MOVE_ALL_DB 0x5000 +#define MV88E6XXX_G1_ATU_OP_FLUSH_MOVE_NON_STATIC_DB 0x6000 +#define MV88E6XXX_G1_ATU_OP_GET_CLR_VIOLATION 0x7000 +#define MV88E6XXX_G1_ATU_OP_AGE_OUT_VIOLATION BIT(7) +#define MV88E6XXX_G1_ATU_OP_MEMBER_VIOLATION BIT(6) +#define MV88E6XXX_G1_ATU_OP_MISS_VIOLATION BIT(5) +#define MV88E6XXX_G1_ATU_OP_FULL_VIOLATION BIT(4) + +/* Offset 0x0C: ATU Data Register */ +#define MV88E6XXX_G1_ATU_DATA 0x0c +#define MV88E6XXX_G1_ATU_DATA_TRUNK 0x8000 +#define MV88E6XXX_G1_ATU_DATA_TRUNK_ID_MASK 0x00f0 +#define MV88E6XXX_G1_ATU_DATA_PORT_VECTOR_MASK 0x3ff0 +#define MV88E6XXX_G1_ATU_DATA_STATE_MASK 0x000f +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_UNUSED 0x0000 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_AGE_1_OLDEST 0x0001 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_AGE_2 0x0002 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_AGE_3 0x0003 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_AGE_4 0x0004 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_AGE_5 0x0005 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_AGE_6 0x0006 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_AGE_7_NEWEST 0x0007 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC_POLICY 0x0008 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC_POLICY_PO 0x0009 +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC_AVB_NRL 0x000a +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC_AVB_NRL_PO 0x000b +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC_DA_MGMT 0x000c +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC_DA_MGMT_PO 0x000d +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC 0x000e +#define MV88E6XXX_G1_ATU_DATA_STATE_UC_STATIC_PO 0x000f +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_UNUSED 0x0000 +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC_POLICY 0x0004 +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC_AVB_NRL 0x0005 +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC_DA_MGMT 0x0006 +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC 0x0007 +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC_POLICY_PO 0x000c +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC_AVB_NRL_PO 0x000d +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC_DA_MGMT_PO 0x000e +#define MV88E6XXX_G1_ATU_DATA_STATE_MC_STATIC_PO 0x000f + +/* Offset 0x0D: ATU MAC Address Register Bytes 0 & 1 + * Offset 0x0E: ATU MAC Address Register Bytes 2 & 3 + * Offset 0x0F: ATU MAC Address Register Bytes 4 & 5 + */ +#define MV88E6XXX_G1_ATU_MAC01 0x0d +#define MV88E6XXX_G1_ATU_MAC23 0x0e +#define MV88E6XXX_G1_ATU_MAC45 0x0f + +/* Offset 0x10: IP-PRI Mapping Register 0 + * Offset 0x11: IP-PRI Mapping Register 1 + * Offset 0x12: IP-PRI Mapping Register 2 + * Offset 0x13: IP-PRI Mapping Register 3 + * Offset 0x14: IP-PRI Mapping Register 4 + * Offset 0x15: IP-PRI Mapping Register 5 + * Offset 0x16: IP-PRI Mapping Register 6 + * Offset 0x17: IP-PRI Mapping Register 7 + */ +#define MV88E6XXX_G1_IP_PRI_0 0x10 +#define MV88E6XXX_G1_IP_PRI_1 0x11 +#define MV88E6XXX_G1_IP_PRI_2 0x12 +#define MV88E6XXX_G1_IP_PRI_3 0x13 +#define MV88E6XXX_G1_IP_PRI_4 0x14 +#define MV88E6XXX_G1_IP_PRI_5 0x15 +#define MV88E6XXX_G1_IP_PRI_6 0x16 +#define MV88E6XXX_G1_IP_PRI_7 0x17 + +/* Offset 0x18: IEEE-PRI Register */ +#define MV88E6XXX_G1_IEEE_PRI 0x18 + +/* Offset 0x19: Core Tag Type */ +#define MV88E6185_G1_CORE_TAG_TYPE 0x19 + +/* Offset 0x1A: Monitor Control */ +#define MV88E6185_G1_MONITOR_CTL 0x1a +#define MV88E6185_G1_MONITOR_CTL_INGRESS_DEST_MASK 0xf000 +#define MV88E6185_G1_MONITOR_CTL_EGRESS_DEST_MASK 0x0f00 +#define MV88E6185_G1_MONITOR_CTL_ARP_DEST_MASK 0x00f0 +#define MV88E6352_G1_MONITOR_CTL_CPU_DEST_MASK 0x00f0 +#define MV88E6352_G1_MONITOR_CTL_MIRROR_DEST_MASK 0x000f + +/* Offset 0x1A: Monitor & MGMT Control Register */ +#define MV88E6390_G1_MONITOR_MGMT_CTL 0x1a +#define MV88E6390_G1_MONITOR_MGMT_CTL_UPDATE 0x8000 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_MASK 0x3f00 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_0180C200000XLO 0x0000 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_0180C200000XHI 0x0100 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_0180C200002XLO 0x0200 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_0180C200002XHI 0x0300 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_INGRESS_DEST 0x2000 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_EGRESS_DEST 0x2100 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_CPU_DEST 0x3000 +#define MV88E6390_G1_MONITOR_MGMT_CTL_PTR_CPU_DEST_MGMTPRI 0x00e0 +#define MV88E6390_G1_MONITOR_MGMT_CTL_DATA_MASK 0x00ff + +/* Offset 0x1C: Global Control 2 */ +#define MV88E6XXX_G1_CTL2 0x1c +#define MV88E6185_G1_CTL2_CASCADE_PORT_MASK 0xf000 +#define MV88E6185_G1_CTL2_CASCADE_PORT_NONE 0xe000 +#define MV88E6185_G1_CTL2_CASCADE_PORT_MULTI 0xf000 +#define MV88E6352_G1_CTL2_HEADER_TYPE_MASK 0xc000 +#define MV88E6352_G1_CTL2_HEADER_TYPE_ORIG 0x0000 +#define MV88E6352_G1_CTL2_HEADER_TYPE_MGMT 0x4000 +#define MV88E6390_G1_CTL2_HEADER_TYPE_LAG 0x8000 +#define MV88E6352_G1_CTL2_RMU_MODE_MASK 0x3000 +#define MV88E6352_G1_CTL2_RMU_MODE_DISABLED 0x0000 +#define MV88E6352_G1_CTL2_RMU_MODE_PORT_4 0x1000 +#define MV88E6352_G1_CTL2_RMU_MODE_PORT_5 0x2000 +#define MV88E6352_G1_CTL2_RMU_MODE_PORT_6 0x3000 +#define MV88E6085_G1_CTL2_DA_CHECK 0x4000 +#define MV88E6085_G1_CTL2_P10RM 0x2000 +#define MV88E6085_G1_CTL2_RM_ENABLE 0x1000 +#define MV88E6352_G1_CTL2_DA_CHECK 0x0800 +#define MV88E6390_G1_CTL2_RMU_MODE_MASK 0x0700 +#define MV88E6390_G1_CTL2_RMU_MODE_PORT_0 0x0000 +#define MV88E6390_G1_CTL2_RMU_MODE_PORT_1 0x0100 +#define MV88E6390_G1_CTL2_RMU_MODE_PORT_9 0x0200 +#define MV88E6390_G1_CTL2_RMU_MODE_PORT_10 0x0300 +#define MV88E6390_G1_CTL2_RMU_MODE_ALL_DSA 0x0600 +#define MV88E6390_G1_CTL2_RMU_MODE_DISABLED 0x0700 +#define MV88E6390_G1_CTL2_HIST_MODE_MASK 0x00c0 +#define MV88E6390_G1_CTL2_HIST_MODE_RX 0x0040 +#define MV88E6390_G1_CTL2_HIST_MODE_TX 0x0080 +#define MV88E6352_G1_CTL2_CTR_MODE_MASK 0x0060 +#define MV88E6390_G1_CTL2_CTR_MODE 0x0020 +#define MV88E6XXX_G1_CTL2_DEVICE_NUMBER_MASK 0x001f + +/* Offset 0x1D: Stats Operation Register */ +#define MV88E6XXX_G1_STATS_OP 0x1d +#define MV88E6XXX_G1_STATS_OP_BUSY 0x8000 +#define MV88E6XXX_G1_STATS_OP_NOP 0x0000 +#define MV88E6XXX_G1_STATS_OP_FLUSH_ALL 0x1000 +#define MV88E6XXX_G1_STATS_OP_FLUSH_PORT 0x2000 +#define MV88E6XXX_G1_STATS_OP_READ_CAPTURED 0x4000 +#define MV88E6XXX_G1_STATS_OP_CAPTURE_PORT 0x5000 +#define MV88E6XXX_G1_STATS_OP_HIST_RX 0x0400 +#define MV88E6XXX_G1_STATS_OP_HIST_TX 0x0800 +#define MV88E6XXX_G1_STATS_OP_HIST_RX_TX 0x0c00 +#define MV88E6XXX_G1_STATS_OP_BANK_1_BIT_9 0x0200 +#define MV88E6XXX_G1_STATS_OP_BANK_1_BIT_10 0x0400 + +/* Offset 0x1E: Stats Counter Register Bytes 3 & 2 + * Offset 0x1F: Stats Counter Register Bytes 1 & 0 + */ +#define MV88E6XXX_G1_STATS_COUNTER_32 0x1e +#define MV88E6XXX_G1_STATS_COUNTER_01 0x1f + +int mv88e6xxx_g1_read(struct mv88e6xxx_chip *chip, int reg, u16 *val); +int mv88e6xxx_g1_write(struct mv88e6xxx_chip *chip, int reg, u16 val); +int mv88e6xxx_g1_wait_bit(struct mv88e6xxx_chip *chip, int reg, int + bit, int val); +int mv88e6xxx_g1_wait_mask(struct mv88e6xxx_chip *chip, int reg, + u16 mask, u16 val); + +int mv88e6xxx_g1_set_switch_mac(struct mv88e6xxx_chip *chip, u8 *addr); + +int mv88e6185_g1_reset(struct mv88e6xxx_chip *chip); +int mv88e6352_g1_reset(struct mv88e6xxx_chip *chip); +int mv88e6250_g1_reset(struct mv88e6xxx_chip *chip); + +int mv88e6185_g1_ppu_enable(struct mv88e6xxx_chip *chip); +int mv88e6185_g1_ppu_disable(struct mv88e6xxx_chip *chip); + +int mv88e6185_g1_set_max_frame_size(struct mv88e6xxx_chip *chip, int mtu); + +int mv88e6xxx_g1_stats_snapshot(struct mv88e6xxx_chip *chip, int port); +int mv88e6320_g1_stats_snapshot(struct mv88e6xxx_chip *chip, int port); +int mv88e6390_g1_stats_snapshot(struct mv88e6xxx_chip *chip, int port); +int mv88e6095_g1_stats_set_histogram(struct mv88e6xxx_chip *chip); +int mv88e6390_g1_stats_set_histogram(struct mv88e6xxx_chip *chip); +void mv88e6xxx_g1_stats_read(struct mv88e6xxx_chip *chip, int stat, u32 *val); +int mv88e6xxx_g1_stats_clear(struct mv88e6xxx_chip *chip); +int mv88e6095_g1_set_egress_port(struct mv88e6xxx_chip *chip, + enum mv88e6xxx_egress_direction direction, + int port); +int mv88e6390_g1_set_egress_port(struct mv88e6xxx_chip *chip, + enum mv88e6xxx_egress_direction direction, + int port); +int mv88e6095_g1_set_cpu_port(struct mv88e6xxx_chip *chip, int port); +int mv88e6390_g1_set_cpu_port(struct mv88e6xxx_chip *chip, int port); +int mv88e6390_g1_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip); + +int mv88e6085_g1_ip_pri_map(struct mv88e6xxx_chip *chip); + +int mv88e6085_g1_ieee_pri_map(struct mv88e6xxx_chip *chip); +int mv88e6250_g1_ieee_pri_map(struct mv88e6xxx_chip *chip); + +int mv88e6185_g1_set_cascade_port(struct mv88e6xxx_chip *chip, int port); + +int mv88e6085_g1_rmu_disable(struct mv88e6xxx_chip *chip); +int mv88e6352_g1_rmu_disable(struct mv88e6xxx_chip *chip); +int mv88e6390_g1_rmu_disable(struct mv88e6xxx_chip *chip); + +int mv88e6xxx_g1_set_device_number(struct mv88e6xxx_chip *chip, int index); + +int mv88e6xxx_g1_atu_set_learn2all(struct mv88e6xxx_chip *chip, bool learn2all); +int mv88e6xxx_g1_atu_set_age_time(struct mv88e6xxx_chip *chip, + unsigned int msecs); +int mv88e6xxx_g1_atu_getnext(struct mv88e6xxx_chip *chip, u16 fid, + struct mv88e6xxx_atu_entry *entry); +int mv88e6xxx_g1_atu_loadpurge(struct mv88e6xxx_chip *chip, u16 fid, + struct mv88e6xxx_atu_entry *entry); +int mv88e6xxx_g1_atu_flush(struct mv88e6xxx_chip *chip, u16 fid, bool all); +int mv88e6xxx_g1_atu_remove(struct mv88e6xxx_chip *chip, u16 fid, int port, + bool all); +int mv88e6xxx_g1_atu_prob_irq_setup(struct mv88e6xxx_chip *chip); +void mv88e6xxx_g1_atu_prob_irq_free(struct mv88e6xxx_chip *chip); +int mv88e6165_g1_atu_get_hash(struct mv88e6xxx_chip *chip, u8 *hash); +int mv88e6165_g1_atu_set_hash(struct mv88e6xxx_chip *chip, u8 hash); + +int mv88e6xxx_g1_vtu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); +int mv88e6185_g1_vtu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); +int mv88e6185_g1_vtu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); +int mv88e6352_g1_vtu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); +int mv88e6352_g1_vtu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); +int mv88e6390_g1_vtu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); +int mv88e6390_g1_vtu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry); +int mv88e6xxx_g1_vtu_flush(struct mv88e6xxx_chip *chip); +int mv88e6xxx_g1_stu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry); +int mv88e6352_g1_stu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry); +int mv88e6352_g1_stu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry); +int mv88e6390_g1_stu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry); +int mv88e6390_g1_stu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry); +int mv88e6xxx_g1_vtu_prob_irq_setup(struct mv88e6xxx_chip *chip); +void mv88e6xxx_g1_vtu_prob_irq_free(struct mv88e6xxx_chip *chip); +int mv88e6xxx_g1_atu_get_next(struct mv88e6xxx_chip *chip, u16 fid); + +#endif /* _MV88E6XXX_GLOBAL1_H */ diff --git a/drivers/net/dsa/mv88e6xxx/global1_atu.c b/drivers/net/dsa/mv88e6xxx/global1_atu.c new file mode 100644 index 000000000..7c513a037 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/global1_atu.c @@ -0,0 +1,496 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Address Translation Unit (ATU) support + * + * Copyright (c) 2008 Marvell Semiconductor + * Copyright (c) 2017 Savoir-faire Linux, Inc. + */ + +#include <linux/bitfield.h> +#include <linux/interrupt.h> +#include <linux/irqdomain.h> + +#include "chip.h" +#include "global1.h" +#include "trace.h" + +/* Offset 0x01: ATU FID Register */ + +static int mv88e6xxx_g1_atu_fid_write(struct mv88e6xxx_chip *chip, u16 fid) +{ + return mv88e6xxx_g1_write(chip, MV88E6352_G1_ATU_FID, fid & 0xfff); +} + +/* Offset 0x0A: ATU Control Register */ + +int mv88e6xxx_g1_atu_set_learn2all(struct mv88e6xxx_chip *chip, bool learn2all) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_CTL, &val); + if (err) + return err; + + if (learn2all) + val |= MV88E6XXX_G1_ATU_CTL_LEARN2ALL; + else + val &= ~MV88E6XXX_G1_ATU_CTL_LEARN2ALL; + + return mv88e6xxx_g1_write(chip, MV88E6XXX_G1_ATU_CTL, val); +} + +int mv88e6xxx_g1_atu_set_age_time(struct mv88e6xxx_chip *chip, + unsigned int msecs) +{ + const unsigned int coeff = chip->info->age_time_coeff; + const unsigned int min = 0x01 * coeff; + const unsigned int max = 0xff * coeff; + u8 age_time; + u16 val; + int err; + + if (msecs < min || msecs > max) + return -ERANGE; + + /* Round to nearest multiple of coeff */ + age_time = (msecs + coeff / 2) / coeff; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_CTL, &val); + if (err) + return err; + + /* AgeTime is 11:4 bits */ + val &= ~0xff0; + val |= age_time << 4; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_ATU_CTL, val); + if (err) + return err; + + dev_dbg(chip->dev, "AgeTime set to 0x%02x (%d ms)\n", age_time, + age_time * coeff); + + return 0; +} + +int mv88e6165_g1_atu_get_hash(struct mv88e6xxx_chip *chip, u8 *hash) +{ + int err; + u16 val; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_CTL, &val); + if (err) + return err; + + *hash = val & MV88E6161_G1_ATU_CTL_HASH_MASK; + + return 0; +} + +int mv88e6165_g1_atu_set_hash(struct mv88e6xxx_chip *chip, u8 hash) +{ + int err; + u16 val; + + if (hash & ~MV88E6161_G1_ATU_CTL_HASH_MASK) + return -EINVAL; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_CTL, &val); + if (err) + return err; + + val &= ~MV88E6161_G1_ATU_CTL_HASH_MASK; + val |= hash; + + return mv88e6xxx_g1_write(chip, MV88E6XXX_G1_ATU_CTL, val); +} + +/* Offset 0x0B: ATU Operation Register */ + +static int mv88e6xxx_g1_atu_op_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_G1_ATU_OP_BUSY); + + return mv88e6xxx_g1_wait_bit(chip, MV88E6XXX_G1_ATU_OP, bit, 0); +} + +static int mv88e6xxx_g1_read_atu_violation(struct mv88e6xxx_chip *chip) +{ + int err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_ATU_OP, + MV88E6XXX_G1_ATU_OP_BUSY | + MV88E6XXX_G1_ATU_OP_GET_CLR_VIOLATION); + if (err) + return err; + + return mv88e6xxx_g1_atu_op_wait(chip); +} + +static int mv88e6xxx_g1_atu_op(struct mv88e6xxx_chip *chip, u16 fid, u16 op) +{ + u16 val; + int err; + + /* FID bits are dispatched all around gradually as more are supported */ + if (mv88e6xxx_num_databases(chip) > 256) { + err = mv88e6xxx_g1_atu_fid_write(chip, fid); + if (err) + return err; + } else { + if (mv88e6xxx_num_databases(chip) > 64) { + /* ATU DBNum[7:4] are located in ATU Control 15:12 */ + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_CTL, + &val); + if (err) + return err; + + val = (val & 0x0fff) | ((fid << 8) & 0xf000); + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_ATU_CTL, + val); + if (err) + return err; + } else if (mv88e6xxx_num_databases(chip) > 16) { + /* ATU DBNum[5:4] are located in ATU Operation 9:8 */ + op |= (fid & 0x30) << 4; + } + + /* ATU DBNum[3:0] are located in ATU Operation 3:0 */ + op |= fid & 0xf; + } + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_ATU_OP, + MV88E6XXX_G1_ATU_OP_BUSY | op); + if (err) + return err; + + return mv88e6xxx_g1_atu_op_wait(chip); +} + +int mv88e6xxx_g1_atu_get_next(struct mv88e6xxx_chip *chip, u16 fid) +{ + return mv88e6xxx_g1_atu_op(chip, fid, MV88E6XXX_G1_ATU_OP_GET_NEXT_DB); +} + +static int mv88e6xxx_g1_atu_fid_read(struct mv88e6xxx_chip *chip, u16 *fid) +{ + u16 val = 0, upper = 0, op = 0; + int err = -EOPNOTSUPP; + + if (mv88e6xxx_num_databases(chip) > 256) { + err = mv88e6xxx_g1_read(chip, MV88E6352_G1_ATU_FID, &val); + val &= 0xfff; + if (err) + return err; + } else { + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_OP, &op); + if (err) + return err; + if (mv88e6xxx_num_databases(chip) > 64) { + /* ATU DBNum[7:4] are located in ATU Control 15:12 */ + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_CTL, + &upper); + if (err) + return err; + + upper = (upper >> 8) & 0x00f0; + } else if (mv88e6xxx_num_databases(chip) > 16) { + /* ATU DBNum[5:4] are located in ATU Operation 9:8 */ + upper = (op >> 4) & 0x30; + } + + /* ATU DBNum[3:0] are located in ATU Operation 3:0 */ + val = (op & 0xf) | upper; + } + *fid = val; + + return err; +} + +/* Offset 0x0C: ATU Data Register */ + +static int mv88e6xxx_g1_atu_data_read(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_atu_entry *entry) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_DATA, &val); + if (err) + return err; + + entry->state = val & 0xf; + if (entry->state) { + entry->trunk = !!(val & MV88E6XXX_G1_ATU_DATA_TRUNK); + entry->portvec = (val >> 4) & mv88e6xxx_port_mask(chip); + } + + return 0; +} + +static int mv88e6xxx_g1_atu_data_write(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_atu_entry *entry) +{ + u16 data = entry->state & 0xf; + + if (entry->state) { + if (entry->trunk) + data |= MV88E6XXX_G1_ATU_DATA_TRUNK; + + data |= (entry->portvec & mv88e6xxx_port_mask(chip)) << 4; + } + + return mv88e6xxx_g1_write(chip, MV88E6XXX_G1_ATU_DATA, data); +} + +/* Offset 0x0D: ATU MAC Address Register Bytes 0 & 1 + * Offset 0x0E: ATU MAC Address Register Bytes 2 & 3 + * Offset 0x0F: ATU MAC Address Register Bytes 4 & 5 + */ + +static int mv88e6xxx_g1_atu_mac_read(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_atu_entry *entry) +{ + u16 val; + int i, err; + + for (i = 0; i < 3; i++) { + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_MAC01 + i, &val); + if (err) + return err; + + entry->mac[i * 2] = val >> 8; + entry->mac[i * 2 + 1] = val & 0xff; + } + + return 0; +} + +static int mv88e6xxx_g1_atu_mac_write(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_atu_entry *entry) +{ + u16 val; + int i, err; + + for (i = 0; i < 3; i++) { + val = (entry->mac[i * 2] << 8) | entry->mac[i * 2 + 1]; + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_ATU_MAC01 + i, val); + if (err) + return err; + } + + return 0; +} + +/* Address Translation Unit operations */ + +int mv88e6xxx_g1_atu_getnext(struct mv88e6xxx_chip *chip, u16 fid, + struct mv88e6xxx_atu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_atu_op_wait(chip); + if (err) + return err; + + /* Write the MAC address to iterate from only once */ + if (!entry->state) { + err = mv88e6xxx_g1_atu_mac_write(chip, entry); + if (err) + return err; + } + + err = mv88e6xxx_g1_atu_op(chip, fid, MV88E6XXX_G1_ATU_OP_GET_NEXT_DB); + if (err) + return err; + + err = mv88e6xxx_g1_atu_data_read(chip, entry); + if (err) + return err; + + return mv88e6xxx_g1_atu_mac_read(chip, entry); +} + +int mv88e6xxx_g1_atu_loadpurge(struct mv88e6xxx_chip *chip, u16 fid, + struct mv88e6xxx_atu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_atu_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g1_atu_mac_write(chip, entry); + if (err) + return err; + + err = mv88e6xxx_g1_atu_data_write(chip, entry); + if (err) + return err; + + return mv88e6xxx_g1_atu_op(chip, fid, MV88E6XXX_G1_ATU_OP_LOAD_DB); +} + +static int mv88e6xxx_g1_atu_flushmove(struct mv88e6xxx_chip *chip, u16 fid, + struct mv88e6xxx_atu_entry *entry, + bool all) +{ + u16 op; + int err; + + err = mv88e6xxx_g1_atu_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g1_atu_data_write(chip, entry); + if (err) + return err; + + /* Flush/Move all or non-static entries from all or a given database */ + if (all && fid) + op = MV88E6XXX_G1_ATU_OP_FLUSH_MOVE_ALL_DB; + else if (fid) + op = MV88E6XXX_G1_ATU_OP_FLUSH_MOVE_NON_STATIC_DB; + else if (all) + op = MV88E6XXX_G1_ATU_OP_FLUSH_MOVE_ALL; + else + op = MV88E6XXX_G1_ATU_OP_FLUSH_MOVE_NON_STATIC; + + return mv88e6xxx_g1_atu_op(chip, fid, op); +} + +int mv88e6xxx_g1_atu_flush(struct mv88e6xxx_chip *chip, u16 fid, bool all) +{ + struct mv88e6xxx_atu_entry entry = { + .state = 0, /* Null EntryState means Flush */ + }; + + return mv88e6xxx_g1_atu_flushmove(chip, fid, &entry, all); +} + +static int mv88e6xxx_g1_atu_move(struct mv88e6xxx_chip *chip, u16 fid, + int from_port, int to_port, bool all) +{ + struct mv88e6xxx_atu_entry entry = { 0 }; + unsigned long mask; + int shift; + + if (!chip->info->atu_move_port_mask) + return -EOPNOTSUPP; + + mask = chip->info->atu_move_port_mask; + shift = bitmap_weight(&mask, 16); + + entry.state = 0xf; /* Full EntryState means Move */ + entry.portvec = from_port & mask; + entry.portvec |= (to_port & mask) << shift; + + return mv88e6xxx_g1_atu_flushmove(chip, fid, &entry, all); +} + +int mv88e6xxx_g1_atu_remove(struct mv88e6xxx_chip *chip, u16 fid, int port, + bool all) +{ + int from_port = port; + int to_port = chip->info->atu_move_port_mask; + + return mv88e6xxx_g1_atu_move(chip, fid, from_port, to_port, all); +} + +static irqreturn_t mv88e6xxx_g1_atu_prob_irq_thread_fn(int irq, void *dev_id) +{ + struct mv88e6xxx_chip *chip = dev_id; + struct mv88e6xxx_atu_entry entry; + int err, spid; + u16 val, fid; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_g1_read_atu_violation(chip); + if (err) + goto out; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_ATU_OP, &val); + if (err) + goto out; + + err = mv88e6xxx_g1_atu_fid_read(chip, &fid); + if (err) + goto out; + + err = mv88e6xxx_g1_atu_data_read(chip, &entry); + if (err) + goto out; + + err = mv88e6xxx_g1_atu_mac_read(chip, &entry); + if (err) + goto out; + + spid = entry.state; + + if (val & MV88E6XXX_G1_ATU_OP_AGE_OUT_VIOLATION) { + dev_err_ratelimited(chip->dev, + "ATU age out violation for %pM\n", + entry.mac); + } + + if (val & MV88E6XXX_G1_ATU_OP_MEMBER_VIOLATION) { + trace_mv88e6xxx_atu_member_violation(chip->dev, spid, + entry.portvec, entry.mac, + fid); + chip->ports[spid].atu_member_violation++; + } + + if (val & MV88E6XXX_G1_ATU_OP_MISS_VIOLATION) { + trace_mv88e6xxx_atu_miss_violation(chip->dev, spid, + entry.portvec, entry.mac, + fid); + chip->ports[spid].atu_miss_violation++; + } + + if (val & MV88E6XXX_G1_ATU_OP_FULL_VIOLATION) { + trace_mv88e6xxx_atu_full_violation(chip->dev, spid, + entry.portvec, entry.mac, + fid); + chip->ports[spid].atu_full_violation++; + } + mv88e6xxx_reg_unlock(chip); + + return IRQ_HANDLED; + +out: + mv88e6xxx_reg_unlock(chip); + + dev_err(chip->dev, "ATU problem: error %d while handling interrupt\n", + err); + return IRQ_HANDLED; +} + +int mv88e6xxx_g1_atu_prob_irq_setup(struct mv88e6xxx_chip *chip) +{ + int err; + + chip->atu_prob_irq = irq_find_mapping(chip->g1_irq.domain, + MV88E6XXX_G1_STS_IRQ_ATU_PROB); + if (chip->atu_prob_irq < 0) + return chip->atu_prob_irq; + + snprintf(chip->atu_prob_irq_name, sizeof(chip->atu_prob_irq_name), + "mv88e6xxx-%s-g1-atu-prob", dev_name(chip->dev)); + + err = request_threaded_irq(chip->atu_prob_irq, NULL, + mv88e6xxx_g1_atu_prob_irq_thread_fn, + IRQF_ONESHOT, chip->atu_prob_irq_name, + chip); + if (err) + irq_dispose_mapping(chip->atu_prob_irq); + + return err; +} + +void mv88e6xxx_g1_atu_prob_irq_free(struct mv88e6xxx_chip *chip) +{ + free_irq(chip->atu_prob_irq, chip); + irq_dispose_mapping(chip->atu_prob_irq); +} diff --git a/drivers/net/dsa/mv88e6xxx/global1_vtu.c b/drivers/net/dsa/mv88e6xxx/global1_vtu.c new file mode 100644 index 000000000..bcfb4a812 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/global1_vtu.c @@ -0,0 +1,680 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx VLAN [Spanning Tree] Translation Unit (VTU [STU]) support + * + * Copyright (c) 2008 Marvell Semiconductor + * Copyright (c) 2015 CMC Electronics, Inc. + * Copyright (c) 2017 Savoir-faire Linux, Inc. + */ + +#include <linux/bitfield.h> +#include <linux/interrupt.h> +#include <linux/irqdomain.h> + +#include "chip.h" +#include "global1.h" +#include "trace.h" + +/* Offset 0x02: VTU FID Register */ + +static int mv88e6xxx_g1_vtu_fid_read(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6352_G1_VTU_FID, &val); + if (err) + return err; + + entry->fid = val & MV88E6352_G1_VTU_FID_MASK; + entry->policy = !!(val & MV88E6352_G1_VTU_FID_VID_POLICY); + return 0; +} + +static int mv88e6xxx_g1_vtu_fid_write(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + u16 val = entry->fid & MV88E6352_G1_VTU_FID_MASK; + + if (entry->policy) + val |= MV88E6352_G1_VTU_FID_VID_POLICY; + + return mv88e6xxx_g1_write(chip, MV88E6352_G1_VTU_FID, val); +} + +/* Offset 0x03: VTU SID Register */ + +static int mv88e6xxx_g1_vtu_sid_read(struct mv88e6xxx_chip *chip, u8 *sid) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6352_G1_VTU_SID, &val); + if (err) + return err; + + *sid = val & MV88E6352_G1_VTU_SID_MASK; + + return 0; +} + +static int mv88e6xxx_g1_vtu_sid_write(struct mv88e6xxx_chip *chip, u8 sid) +{ + u16 val = sid & MV88E6352_G1_VTU_SID_MASK; + + return mv88e6xxx_g1_write(chip, MV88E6352_G1_VTU_SID, val); +} + +/* Offset 0x05: VTU Operation Register */ + +static int mv88e6xxx_g1_vtu_op_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_G1_VTU_OP_BUSY); + + return mv88e6xxx_g1_wait_bit(chip, MV88E6XXX_G1_VTU_OP, bit, 0); +} + +static int mv88e6xxx_g1_vtu_op(struct mv88e6xxx_chip *chip, u16 op) +{ + int err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_VTU_OP, + MV88E6XXX_G1_VTU_OP_BUSY | op); + if (err) + return err; + + return mv88e6xxx_g1_vtu_op_wait(chip); +} + +/* Offset 0x06: VTU VID Register */ + +static int mv88e6xxx_g1_vtu_vid_read(struct mv88e6xxx_chip *chip, + bool *valid, u16 *vid) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_VID, &val); + if (err) + return err; + + if (vid) { + *vid = val & 0xfff; + + if (val & MV88E6390_G1_VTU_VID_PAGE) + *vid |= 0x1000; + } + + if (valid) + *valid = !!(val & MV88E6XXX_G1_VTU_VID_VALID); + + return 0; +} + +static int mv88e6xxx_g1_vtu_vid_write(struct mv88e6xxx_chip *chip, + bool valid, u16 vid) +{ + u16 val = vid & 0xfff; + + if (vid & 0x1000) + val |= MV88E6390_G1_VTU_VID_PAGE; + + if (valid) + val |= MV88E6XXX_G1_VTU_VID_VALID; + + return mv88e6xxx_g1_write(chip, MV88E6XXX_G1_VTU_VID, val); +} + +/* Offset 0x07: VTU/STU Data Register 1 + * Offset 0x08: VTU/STU Data Register 2 + * Offset 0x09: VTU/STU Data Register 3 + */ +static int mv88e6185_g1_vtu_stu_data_read(struct mv88e6xxx_chip *chip, + u16 *regs) +{ + int i; + + /* Read all 3 VTU/STU Data registers */ + for (i = 0; i < 3; ++i) { + u16 *reg = ®s[i]; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_DATA1 + i, reg); + if (err) + return err; + } + + return 0; +} + +static int mv88e6185_g1_vtu_data_read(struct mv88e6xxx_chip *chip, + u8 *member, u8 *state) +{ + u16 regs[3]; + int err; + int i; + + err = mv88e6185_g1_vtu_stu_data_read(chip, regs); + if (err) + return err; + + /* Extract MemberTag data */ + for (i = 0; i < mv88e6xxx_num_ports(chip); ++i) { + unsigned int member_offset = (i % 4) * 4; + unsigned int state_offset = member_offset + 2; + + if (member) + member[i] = (regs[i / 4] >> member_offset) & 0x3; + + if (state) + state[i] = (regs[i / 4] >> state_offset) & 0x3; + } + + return 0; +} + +static int mv88e6185_g1_vtu_data_write(struct mv88e6xxx_chip *chip, + u8 *member, u8 *state) +{ + u16 regs[3] = { 0 }; + int i; + + /* Insert MemberTag and PortState data */ + for (i = 0; i < mv88e6xxx_num_ports(chip); ++i) { + unsigned int member_offset = (i % 4) * 4; + unsigned int state_offset = member_offset + 2; + + if (member) + regs[i / 4] |= (member[i] & 0x3) << member_offset; + + if (state) + regs[i / 4] |= (state[i] & 0x3) << state_offset; + } + + /* Write all 3 VTU/STU Data registers */ + for (i = 0; i < 3; ++i) { + u16 reg = regs[i]; + int err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_VTU_DATA1 + i, reg); + if (err) + return err; + } + + return 0; +} + +static int mv88e6390_g1_vtu_data_read(struct mv88e6xxx_chip *chip, u8 *data) +{ + u16 regs[2]; + int i; + + /* Read the 2 VTU/STU Data registers */ + for (i = 0; i < 2; ++i) { + u16 *reg = ®s[i]; + int err; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_DATA1 + i, reg); + if (err) + return err; + } + + /* Extract data */ + for (i = 0; i < mv88e6xxx_num_ports(chip); ++i) { + unsigned int offset = (i % 8) * 2; + + data[i] = (regs[i / 8] >> offset) & 0x3; + } + + return 0; +} + +static int mv88e6390_g1_vtu_data_write(struct mv88e6xxx_chip *chip, u8 *data) +{ + u16 regs[2] = { 0 }; + int i; + + /* Insert data */ + for (i = 0; i < mv88e6xxx_num_ports(chip); ++i) { + unsigned int offset = (i % 8) * 2; + + regs[i / 8] |= (data[i] & 0x3) << offset; + } + + /* Write the 2 VTU/STU Data registers */ + for (i = 0; i < 2; ++i) { + u16 reg = regs[i]; + int err; + + err = mv88e6xxx_g1_write(chip, MV88E6XXX_G1_VTU_DATA1 + i, reg); + if (err) + return err; + } + + return 0; +} + +/* VLAN Translation Unit Operations */ + +int mv88e6xxx_g1_vtu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_vtu_op_wait(chip); + if (err) + return err; + + /* To get the next higher active VID, the VTU GetNext operation can be + * started again without setting the VID registers since it already + * contains the last VID. + * + * To save a few hardware accesses and abstract this to the caller, + * write the VID only once, when the entry is given as invalid. + */ + if (!entry->valid) { + err = mv88e6xxx_g1_vtu_vid_write(chip, false, entry->vid); + if (err) + return err; + } + + err = mv88e6xxx_g1_vtu_op(chip, MV88E6XXX_G1_VTU_OP_VTU_GET_NEXT); + if (err) + return err; + + return mv88e6xxx_g1_vtu_vid_read(chip, &entry->valid, &entry->vid); +} + +int mv88e6185_g1_vtu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + u16 val; + int err; + + err = mv88e6xxx_g1_vtu_getnext(chip, entry); + if (err) + return err; + + if (entry->valid) { + err = mv88e6185_g1_vtu_data_read(chip, entry->member, entry->state); + if (err) + return err; + + /* VTU DBNum[3:0] are located in VTU Operation 3:0 + * VTU DBNum[7:4] ([5:4] for 6250) are located in VTU Operation 11:8 (9:8) + */ + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_OP, &val); + if (err) + return err; + + entry->fid = val & 0x000f; + entry->fid |= (val & 0x0f00) >> 4; + entry->fid &= mv88e6xxx_num_databases(chip) - 1; + } + + return 0; +} + +int mv88e6352_g1_vtu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + int err; + + /* Fetch VLAN MemberTag data from the VTU */ + err = mv88e6xxx_g1_vtu_getnext(chip, entry); + if (err) + return err; + + if (entry->valid) { + err = mv88e6185_g1_vtu_data_read(chip, entry->member, NULL); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_fid_read(chip, entry); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_sid_read(chip, &entry->sid); + if (err) + return err; + } + + return 0; +} + +int mv88e6390_g1_vtu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + int err; + + /* Fetch VLAN MemberTag data from the VTU */ + err = mv88e6xxx_g1_vtu_getnext(chip, entry); + if (err) + return err; + + if (entry->valid) { + err = mv88e6390_g1_vtu_data_read(chip, entry->member); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_fid_read(chip, entry); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_sid_read(chip, &entry->sid); + if (err) + return err; + } + + return 0; +} + +int mv88e6185_g1_vtu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + u16 op = MV88E6XXX_G1_VTU_OP_VTU_LOAD_PURGE; + int err; + + err = mv88e6xxx_g1_vtu_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_vid_write(chip, entry->valid, entry->vid); + if (err) + return err; + + if (entry->valid) { + err = mv88e6185_g1_vtu_data_write(chip, entry->member, entry->state); + if (err) + return err; + + /* VTU DBNum[3:0] are located in VTU Operation 3:0 + * VTU DBNum[7:4] are located in VTU Operation 11:8 + * + * For the 6250/6220, the latter are really [5:4] and + * 9:8, but in those cases bits 7:6 of entry->fid are + * 0 since they have num_databases = 64. + */ + op |= entry->fid & 0x000f; + op |= (entry->fid & 0x00f0) << 4; + } + + return mv88e6xxx_g1_vtu_op(chip, op); +} + +int mv88e6352_g1_vtu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_vtu_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_vid_write(chip, entry->valid, entry->vid); + if (err) + return err; + + if (entry->valid) { + /* Write MemberTag data */ + err = mv88e6185_g1_vtu_data_write(chip, entry->member, NULL); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_fid_write(chip, entry); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_sid_write(chip, entry->sid); + if (err) + return err; + } + + /* Load/Purge VTU entry */ + return mv88e6xxx_g1_vtu_op(chip, MV88E6XXX_G1_VTU_OP_VTU_LOAD_PURGE); +} + +int mv88e6390_g1_vtu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_vtu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_vtu_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_vid_write(chip, entry->valid, entry->vid); + if (err) + return err; + + if (entry->valid) { + /* Write MemberTag data */ + err = mv88e6390_g1_vtu_data_write(chip, entry->member); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_fid_write(chip, entry); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_sid_write(chip, entry->sid); + if (err) + return err; + } + + /* Load/Purge VTU entry */ + return mv88e6xxx_g1_vtu_op(chip, MV88E6XXX_G1_VTU_OP_VTU_LOAD_PURGE); +} + +int mv88e6xxx_g1_vtu_flush(struct mv88e6xxx_chip *chip) +{ + int err; + + err = mv88e6xxx_g1_vtu_op_wait(chip); + if (err) + return err; + + return mv88e6xxx_g1_vtu_op(chip, MV88E6XXX_G1_VTU_OP_FLUSH_ALL); +} + +/* Spanning Tree Unit Operations */ + +int mv88e6xxx_g1_stu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_vtu_op_wait(chip); + if (err) + return err; + + /* To get the next higher active SID, the STU GetNext operation can be + * started again without setting the SID registers since it already + * contains the last SID. + * + * To save a few hardware accesses and abstract this to the caller, + * write the SID only once, when the entry is given as invalid. + */ + if (!entry->valid) { + err = mv88e6xxx_g1_vtu_sid_write(chip, entry->sid); + if (err) + return err; + } + + err = mv88e6xxx_g1_vtu_op(chip, MV88E6XXX_G1_VTU_OP_STU_GET_NEXT); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_vid_read(chip, &entry->valid, NULL); + if (err) + return err; + + if (entry->valid) { + err = mv88e6xxx_g1_vtu_sid_read(chip, &entry->sid); + if (err) + return err; + } + + return 0; +} + +int mv88e6352_g1_stu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_stu_getnext(chip, entry); + if (err) + return err; + + if (!entry->valid) + return 0; + + return mv88e6185_g1_vtu_data_read(chip, NULL, entry->state); +} + +int mv88e6390_g1_stu_getnext(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_stu_getnext(chip, entry); + if (err) + return err; + + if (!entry->valid) + return 0; + + return mv88e6390_g1_vtu_data_read(chip, entry->state); +} + +int mv88e6352_g1_stu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_vtu_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_vid_write(chip, entry->valid, 0); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_sid_write(chip, entry->sid); + if (err) + return err; + + if (entry->valid) { + err = mv88e6185_g1_vtu_data_write(chip, NULL, entry->state); + if (err) + return err; + } + + /* Load/Purge STU entry */ + return mv88e6xxx_g1_vtu_op(chip, MV88E6XXX_G1_VTU_OP_STU_LOAD_PURGE); +} + +int mv88e6390_g1_stu_loadpurge(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_stu_entry *entry) +{ + int err; + + err = mv88e6xxx_g1_vtu_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_vid_write(chip, entry->valid, 0); + if (err) + return err; + + err = mv88e6xxx_g1_vtu_sid_write(chip, entry->sid); + if (err) + return err; + + if (entry->valid) { + err = mv88e6390_g1_vtu_data_write(chip, entry->state); + if (err) + return err; + } + + /* Load/Purge STU entry */ + return mv88e6xxx_g1_vtu_op(chip, MV88E6XXX_G1_VTU_OP_STU_LOAD_PURGE); +} + +/* VTU Violation Management */ + +static irqreturn_t mv88e6xxx_g1_vtu_prob_irq_thread_fn(int irq, void *dev_id) +{ + struct mv88e6xxx_chip *chip = dev_id; + u16 val, vid; + int spid; + int err; + + mv88e6xxx_reg_lock(chip); + + err = mv88e6xxx_g1_vtu_op(chip, MV88E6XXX_G1_VTU_OP_GET_CLR_VIOLATION); + if (err) + goto out; + + err = mv88e6xxx_g1_read(chip, MV88E6XXX_G1_VTU_OP, &val); + if (err) + goto out; + + err = mv88e6xxx_g1_vtu_vid_read(chip, NULL, &vid); + if (err) + goto out; + + spid = val & MV88E6XXX_G1_VTU_OP_SPID_MASK; + + if (val & MV88E6XXX_G1_VTU_OP_MEMBER_VIOLATION) { + trace_mv88e6xxx_vtu_member_violation(chip->dev, spid, vid); + chip->ports[spid].vtu_member_violation++; + } + + if (val & MV88E6XXX_G1_VTU_OP_MISS_VIOLATION) { + trace_mv88e6xxx_vtu_miss_violation(chip->dev, spid, vid); + chip->ports[spid].vtu_miss_violation++; + } + + mv88e6xxx_reg_unlock(chip); + + return IRQ_HANDLED; + +out: + mv88e6xxx_reg_unlock(chip); + + dev_err(chip->dev, "VTU problem: error %d while handling interrupt\n", + err); + + return IRQ_HANDLED; +} + +int mv88e6xxx_g1_vtu_prob_irq_setup(struct mv88e6xxx_chip *chip) +{ + int err; + + chip->vtu_prob_irq = irq_find_mapping(chip->g1_irq.domain, + MV88E6XXX_G1_STS_IRQ_VTU_PROB); + if (chip->vtu_prob_irq < 0) + return chip->vtu_prob_irq; + + snprintf(chip->vtu_prob_irq_name, sizeof(chip->vtu_prob_irq_name), + "mv88e6xxx-%s-g1-vtu-prob", dev_name(chip->dev)); + + err = request_threaded_irq(chip->vtu_prob_irq, NULL, + mv88e6xxx_g1_vtu_prob_irq_thread_fn, + IRQF_ONESHOT, chip->vtu_prob_irq_name, + chip); + if (err) + irq_dispose_mapping(chip->vtu_prob_irq); + + return err; +} + +void mv88e6xxx_g1_vtu_prob_irq_free(struct mv88e6xxx_chip *chip) +{ + free_irq(chip->vtu_prob_irq, chip); + irq_dispose_mapping(chip->vtu_prob_irq); +} diff --git a/drivers/net/dsa/mv88e6xxx/global2.c b/drivers/net/dsa/mv88e6xxx/global2.c new file mode 100644 index 000000000..ac302a935 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/global2.c @@ -0,0 +1,1214 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Switch Global 2 Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016-2017 Savoir-faire Linux Inc. + * Vivien Didelot <vivien.didelot@savoirfairelinux.com> + */ + +#include <linux/bitfield.h> +#include <linux/interrupt.h> +#include <linux/irqdomain.h> + +#include "chip.h" +#include "global1.h" /* for MV88E6XXX_G1_STS_IRQ_DEVICE */ +#include "global2.h" + +int mv88e6xxx_g2_read(struct mv88e6xxx_chip *chip, int reg, u16 *val) +{ + return mv88e6xxx_read(chip, chip->info->global2_addr, reg, val); +} + +int mv88e6xxx_g2_write(struct mv88e6xxx_chip *chip, int reg, u16 val) +{ + return mv88e6xxx_write(chip, chip->info->global2_addr, reg, val); +} + +int mv88e6xxx_g2_wait_bit(struct mv88e6xxx_chip *chip, int reg, int + bit, int val) +{ + return mv88e6xxx_wait_bit(chip, chip->info->global2_addr, reg, + bit, val); +} + +/* Offset 0x00: Interrupt Source Register */ + +static int mv88e6xxx_g2_int_source(struct mv88e6xxx_chip *chip, u16 *src) +{ + /* Read (and clear most of) the Interrupt Source bits */ + return mv88e6xxx_g2_read(chip, MV88E6XXX_G2_INT_SRC, src); +} + +/* Offset 0x01: Interrupt Mask Register */ + +static int mv88e6xxx_g2_int_mask(struct mv88e6xxx_chip *chip, u16 mask) +{ + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_INT_MASK, mask); +} + +/* Offset 0x02: Management Enable 2x */ + +static int mv88e6xxx_g2_mgmt_enable_2x(struct mv88e6xxx_chip *chip, u16 en2x) +{ + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_MGMT_EN_2X, en2x); +} + +/* Offset 0x03: Management Enable 0x */ + +static int mv88e6xxx_g2_mgmt_enable_0x(struct mv88e6xxx_chip *chip, u16 en0x) +{ + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_MGMT_EN_0X, en0x); +} + +/* Offset 0x05: Switch Management Register */ + +static int mv88e6xxx_g2_switch_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip, + bool enable) +{ + u16 val; + int err; + + err = mv88e6xxx_g2_read(chip, MV88E6XXX_G2_SWITCH_MGMT, &val); + if (err) + return err; + + if (enable) + val |= MV88E6XXX_G2_SWITCH_MGMT_RSVD2CPU; + else + val &= ~MV88E6XXX_G2_SWITCH_MGMT_RSVD2CPU; + + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_SWITCH_MGMT, val); +} + +int mv88e6185_g2_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip) +{ + int err; + + /* Consider the frames with reserved multicast destination + * addresses matching 01:80:c2:00:00:0x as MGMT. + */ + err = mv88e6xxx_g2_mgmt_enable_0x(chip, 0xffff); + if (err) + return err; + + return mv88e6xxx_g2_switch_mgmt_rsvd2cpu(chip, true); +} + +int mv88e6352_g2_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip) +{ + int err; + + /* Consider the frames with reserved multicast destination + * addresses matching 01:80:c2:00:00:2x as MGMT. + */ + err = mv88e6xxx_g2_mgmt_enable_2x(chip, 0xffff); + if (err) + return err; + + return mv88e6185_g2_mgmt_rsvd2cpu(chip); +} + +/* Offset 0x06: Device Mapping Table register */ + +int mv88e6xxx_g2_device_mapping_write(struct mv88e6xxx_chip *chip, int target, + int port) +{ + u16 val = (target << 8) | (port & 0x1f); + /* Modern chips use 5 bits to define a device mapping port, + * but bit 4 is reserved on older chips, so it is safe to use. + */ + + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_DEVICE_MAPPING, + MV88E6XXX_G2_DEVICE_MAPPING_UPDATE | val); +} + +/* Offset 0x07: Trunk Mask Table register */ + +int mv88e6xxx_g2_trunk_mask_write(struct mv88e6xxx_chip *chip, int num, + bool hash, u16 mask) +{ + u16 val = (num << 12) | (mask & mv88e6xxx_port_mask(chip)); + + if (hash) + val |= MV88E6XXX_G2_TRUNK_MASK_HASH; + + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_TRUNK_MASK, + MV88E6XXX_G2_TRUNK_MASK_UPDATE | val); +} + +/* Offset 0x08: Trunk Mapping Table register */ + +int mv88e6xxx_g2_trunk_mapping_write(struct mv88e6xxx_chip *chip, int id, + u16 map) +{ + const u16 port_mask = BIT(mv88e6xxx_num_ports(chip)) - 1; + u16 val = (id << 11) | (map & port_mask); + + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_TRUNK_MAPPING, + MV88E6XXX_G2_TRUNK_MAPPING_UPDATE | val); +} + +int mv88e6xxx_g2_trunk_clear(struct mv88e6xxx_chip *chip) +{ + const u16 port_mask = BIT(mv88e6xxx_num_ports(chip)) - 1; + int i, err; + + /* Clear all eight possible Trunk Mask vectors */ + for (i = 0; i < 8; ++i) { + err = mv88e6xxx_g2_trunk_mask_write(chip, i, false, port_mask); + if (err) + return err; + } + + /* Clear all sixteen possible Trunk ID routing vectors */ + for (i = 0; i < 16; ++i) { + err = mv88e6xxx_g2_trunk_mapping_write(chip, i, 0); + if (err) + return err; + } + + return 0; +} + +/* Offset 0x09: Ingress Rate Command register + * Offset 0x0A: Ingress Rate Data register + */ + +static int mv88e6xxx_g2_irl_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_G2_IRL_CMD_BUSY); + + return mv88e6xxx_g2_wait_bit(chip, MV88E6XXX_G2_IRL_CMD, bit, 0); +} + +static int mv88e6xxx_g2_irl_op(struct mv88e6xxx_chip *chip, u16 op, int port, + int res, int reg) +{ + int err; + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_IRL_CMD, + MV88E6XXX_G2_IRL_CMD_BUSY | op | (port << 8) | + (res << 5) | reg); + if (err) + return err; + + return mv88e6xxx_g2_irl_wait(chip); +} + +int mv88e6352_g2_irl_init_all(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_g2_irl_op(chip, MV88E6352_G2_IRL_CMD_OP_INIT_ALL, port, + 0, 0); +} + +int mv88e6390_g2_irl_init_all(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_g2_irl_op(chip, MV88E6390_G2_IRL_CMD_OP_INIT_ALL, port, + 0, 0); +} + +/* Offset 0x0B: Cross-chip Port VLAN (Addr) Register + * Offset 0x0C: Cross-chip Port VLAN Data Register + */ + +static int mv88e6xxx_g2_pvt_op_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_G2_PVT_ADDR_BUSY); + + return mv88e6xxx_g2_wait_bit(chip, MV88E6XXX_G2_PVT_ADDR, bit, 0); +} + +static int mv88e6xxx_g2_pvt_op(struct mv88e6xxx_chip *chip, int src_dev, + int src_port, u16 op) +{ + int err; + + /* 9-bit Cross-chip PVT pointer: with MV88E6XXX_G2_MISC_5_BIT_PORT + * cleared, source device is 5-bit, source port is 4-bit. + */ + op |= MV88E6XXX_G2_PVT_ADDR_BUSY; + op |= (src_dev & 0x1f) << 4; + op |= (src_port & 0xf); + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_PVT_ADDR, op); + if (err) + return err; + + return mv88e6xxx_g2_pvt_op_wait(chip); +} + +int mv88e6xxx_g2_pvt_read(struct mv88e6xxx_chip *chip, int src_dev, + int src_port, u16 *data) +{ + int err; + + err = mv88e6xxx_g2_pvt_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_pvt_op(chip, src_dev, src_port, + MV88E6XXX_G2_PVT_ADDR_OP_READ); + if (err) + return err; + + return mv88e6xxx_g2_read(chip, MV88E6XXX_G2_PVT_DATA, data); +} + +int mv88e6xxx_g2_pvt_write(struct mv88e6xxx_chip *chip, int src_dev, + int src_port, u16 data) +{ + int err; + + err = mv88e6xxx_g2_pvt_op_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_PVT_DATA, data); + if (err) + return err; + + return mv88e6xxx_g2_pvt_op(chip, src_dev, src_port, + MV88E6XXX_G2_PVT_ADDR_OP_WRITE_PVLAN); +} + +/* Offset 0x0D: Switch MAC/WoL/WoF register */ + +static int mv88e6xxx_g2_switch_mac_write(struct mv88e6xxx_chip *chip, + unsigned int pointer, u8 data) +{ + u16 val = (pointer << 8) | data; + + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_SWITCH_MAC, + MV88E6XXX_G2_SWITCH_MAC_UPDATE | val); +} + +int mv88e6xxx_g2_set_switch_mac(struct mv88e6xxx_chip *chip, u8 *addr) +{ + int i, err; + + for (i = 0; i < 6; i++) { + err = mv88e6xxx_g2_switch_mac_write(chip, i, addr[i]); + if (err) + break; + } + + return err; +} + +/* Offset 0x0E: ATU Statistics */ + +int mv88e6xxx_g2_atu_stats_set(struct mv88e6xxx_chip *chip, u16 kind, u16 bin) +{ + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_ATU_STATS, + kind | bin); +} + +int mv88e6xxx_g2_atu_stats_get(struct mv88e6xxx_chip *chip, u16 *stats) +{ + return mv88e6xxx_g2_read(chip, MV88E6XXX_G2_ATU_STATS, stats); +} + +/* Offset 0x0F: Priority Override Table */ + +static int mv88e6xxx_g2_pot_write(struct mv88e6xxx_chip *chip, int pointer, + u8 data) +{ + u16 val = (pointer << 8) | (data & 0x7); + + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_PRIO_OVERRIDE, + MV88E6XXX_G2_PRIO_OVERRIDE_UPDATE | val); +} + +int mv88e6xxx_g2_pot_clear(struct mv88e6xxx_chip *chip) +{ + int i, err; + + /* Clear all sixteen possible Priority Override entries */ + for (i = 0; i < 16; i++) { + err = mv88e6xxx_g2_pot_write(chip, i, 0); + if (err) + break; + } + + return err; +} + +/* Offset 0x14: EEPROM Command + * Offset 0x15: EEPROM Data (for 16-bit data access) + * Offset 0x15: EEPROM Addr (for 8-bit data access) + */ + +int mv88e6xxx_g2_eeprom_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_G2_EEPROM_CMD_BUSY); + int err; + + err = mv88e6xxx_g2_wait_bit(chip, MV88E6XXX_G2_EEPROM_CMD, bit, 0); + if (err) + return err; + + bit = __bf_shf(MV88E6XXX_G2_EEPROM_CMD_RUNNING); + + return mv88e6xxx_g2_wait_bit(chip, MV88E6XXX_G2_EEPROM_CMD, bit, 0); +} + +static int mv88e6xxx_g2_eeprom_cmd(struct mv88e6xxx_chip *chip, u16 cmd) +{ + int err; + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_EEPROM_CMD, + MV88E6XXX_G2_EEPROM_CMD_BUSY | cmd); + if (err) + return err; + + return mv88e6xxx_g2_eeprom_wait(chip); +} + +static int mv88e6xxx_g2_eeprom_read8(struct mv88e6xxx_chip *chip, + u16 addr, u8 *data) +{ + u16 cmd = MV88E6XXX_G2_EEPROM_CMD_OP_READ; + int err; + + err = mv88e6xxx_g2_eeprom_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_write(chip, MV88E6390_G2_EEPROM_ADDR, addr); + if (err) + return err; + + err = mv88e6xxx_g2_eeprom_cmd(chip, cmd); + if (err) + return err; + + err = mv88e6xxx_g2_read(chip, MV88E6XXX_G2_EEPROM_CMD, &cmd); + if (err) + return err; + + *data = cmd & 0xff; + + return 0; +} + +static int mv88e6xxx_g2_eeprom_write8(struct mv88e6xxx_chip *chip, + u16 addr, u8 data) +{ + u16 cmd = MV88E6XXX_G2_EEPROM_CMD_OP_WRITE | + MV88E6XXX_G2_EEPROM_CMD_WRITE_EN; + int err; + + err = mv88e6xxx_g2_eeprom_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_write(chip, MV88E6390_G2_EEPROM_ADDR, addr); + if (err) + return err; + + return mv88e6xxx_g2_eeprom_cmd(chip, cmd | data); +} + +static int mv88e6xxx_g2_eeprom_read16(struct mv88e6xxx_chip *chip, + u8 addr, u16 *data) +{ + u16 cmd = MV88E6XXX_G2_EEPROM_CMD_OP_READ | addr; + int err; + + err = mv88e6xxx_g2_eeprom_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_eeprom_cmd(chip, cmd); + if (err) + return err; + + return mv88e6xxx_g2_read(chip, MV88E6352_G2_EEPROM_DATA, data); +} + +static int mv88e6xxx_g2_eeprom_write16(struct mv88e6xxx_chip *chip, + u8 addr, u16 data) +{ + u16 cmd = MV88E6XXX_G2_EEPROM_CMD_OP_WRITE | addr; + int err; + + err = mv88e6xxx_g2_eeprom_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_write(chip, MV88E6352_G2_EEPROM_DATA, data); + if (err) + return err; + + return mv88e6xxx_g2_eeprom_cmd(chip, cmd); +} + +int mv88e6xxx_g2_get_eeprom8(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data) +{ + unsigned int offset = eeprom->offset; + unsigned int len = eeprom->len; + int err; + + eeprom->len = 0; + + while (len) { + err = mv88e6xxx_g2_eeprom_read8(chip, offset, data); + if (err) + return err; + + eeprom->len++; + offset++; + data++; + len--; + } + + return 0; +} + +int mv88e6xxx_g2_set_eeprom8(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data) +{ + unsigned int offset = eeprom->offset; + unsigned int len = eeprom->len; + int err; + + eeprom->len = 0; + + while (len) { + err = mv88e6xxx_g2_eeprom_write8(chip, offset, *data); + if (err) + return err; + + eeprom->len++; + offset++; + data++; + len--; + } + + return 0; +} + +int mv88e6xxx_g2_get_eeprom16(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data) +{ + unsigned int offset = eeprom->offset; + unsigned int len = eeprom->len; + u16 val; + int err; + + eeprom->len = 0; + + if (offset & 1) { + err = mv88e6xxx_g2_eeprom_read16(chip, offset >> 1, &val); + if (err) + return err; + + *data++ = (val >> 8) & 0xff; + + offset++; + len--; + eeprom->len++; + } + + while (len >= 2) { + err = mv88e6xxx_g2_eeprom_read16(chip, offset >> 1, &val); + if (err) + return err; + + *data++ = val & 0xff; + *data++ = (val >> 8) & 0xff; + + offset += 2; + len -= 2; + eeprom->len += 2; + } + + if (len) { + err = mv88e6xxx_g2_eeprom_read16(chip, offset >> 1, &val); + if (err) + return err; + + *data++ = val & 0xff; + + offset++; + len--; + eeprom->len++; + } + + return 0; +} + +int mv88e6xxx_g2_set_eeprom16(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data) +{ + unsigned int offset = eeprom->offset; + unsigned int len = eeprom->len; + u16 val; + int err; + + /* Ensure the RO WriteEn bit is set */ + err = mv88e6xxx_g2_read(chip, MV88E6XXX_G2_EEPROM_CMD, &val); + if (err) + return err; + + if (!(val & MV88E6XXX_G2_EEPROM_CMD_WRITE_EN)) + return -EROFS; + + eeprom->len = 0; + + if (offset & 1) { + err = mv88e6xxx_g2_eeprom_read16(chip, offset >> 1, &val); + if (err) + return err; + + val = (*data++ << 8) | (val & 0xff); + + err = mv88e6xxx_g2_eeprom_write16(chip, offset >> 1, val); + if (err) + return err; + + offset++; + len--; + eeprom->len++; + } + + while (len >= 2) { + val = *data++; + val |= *data++ << 8; + + err = mv88e6xxx_g2_eeprom_write16(chip, offset >> 1, val); + if (err) + return err; + + offset += 2; + len -= 2; + eeprom->len += 2; + } + + if (len) { + err = mv88e6xxx_g2_eeprom_read16(chip, offset >> 1, &val); + if (err) + return err; + + val = (val & 0xff00) | *data++; + + err = mv88e6xxx_g2_eeprom_write16(chip, offset >> 1, val); + if (err) + return err; + + offset++; + len--; + eeprom->len++; + } + + return 0; +} + +/* Offset 0x18: SMI PHY Command Register + * Offset 0x19: SMI PHY Data Register + */ + +static int mv88e6xxx_g2_smi_phy_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_G2_SMI_PHY_CMD_BUSY); + + return mv88e6xxx_g2_wait_bit(chip, MV88E6XXX_G2_SMI_PHY_CMD, bit, 0); +} + +static int mv88e6xxx_g2_smi_phy_cmd(struct mv88e6xxx_chip *chip, u16 cmd) +{ + int err; + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_SMI_PHY_CMD, + MV88E6XXX_G2_SMI_PHY_CMD_BUSY | cmd); + if (err) + return err; + + return mv88e6xxx_g2_smi_phy_wait(chip); +} + +static int mv88e6xxx_g2_smi_phy_access(struct mv88e6xxx_chip *chip, + bool external, bool c45, u16 op, int dev, + int reg) +{ + u16 cmd = op; + + if (external) + cmd |= MV88E6390_G2_SMI_PHY_CMD_FUNC_EXTERNAL; + else + cmd |= MV88E6390_G2_SMI_PHY_CMD_FUNC_INTERNAL; /* empty mask */ + + if (c45) + cmd |= MV88E6XXX_G2_SMI_PHY_CMD_MODE_45; /* empty mask */ + else + cmd |= MV88E6XXX_G2_SMI_PHY_CMD_MODE_22; + + dev <<= __bf_shf(MV88E6XXX_G2_SMI_PHY_CMD_DEV_ADDR_MASK); + cmd |= dev & MV88E6XXX_G2_SMI_PHY_CMD_DEV_ADDR_MASK; + cmd |= reg & MV88E6XXX_G2_SMI_PHY_CMD_REG_ADDR_MASK; + + return mv88e6xxx_g2_smi_phy_cmd(chip, cmd); +} + +static int mv88e6xxx_g2_smi_phy_access_c22(struct mv88e6xxx_chip *chip, + bool external, u16 op, int dev, + int reg) +{ + return mv88e6xxx_g2_smi_phy_access(chip, external, false, op, dev, reg); +} + +/* IEEE 802.3 Clause 22 Read Data Register */ +static int mv88e6xxx_g2_smi_phy_read_data_c22(struct mv88e6xxx_chip *chip, + bool external, int dev, int reg, + u16 *data) +{ + u16 op = MV88E6XXX_G2_SMI_PHY_CMD_OP_22_READ_DATA; + int err; + + err = mv88e6xxx_g2_smi_phy_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_smi_phy_access_c22(chip, external, op, dev, reg); + if (err) + return err; + + return mv88e6xxx_g2_read(chip, MV88E6XXX_G2_SMI_PHY_DATA, data); +} + +/* IEEE 802.3 Clause 22 Write Data Register */ +static int mv88e6xxx_g2_smi_phy_write_data_c22(struct mv88e6xxx_chip *chip, + bool external, int dev, int reg, + u16 data) +{ + u16 op = MV88E6XXX_G2_SMI_PHY_CMD_OP_22_WRITE_DATA; + int err; + + err = mv88e6xxx_g2_smi_phy_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_SMI_PHY_DATA, data); + if (err) + return err; + + return mv88e6xxx_g2_smi_phy_access_c22(chip, external, op, dev, reg); +} + +static int mv88e6xxx_g2_smi_phy_access_c45(struct mv88e6xxx_chip *chip, + bool external, u16 op, int port, + int dev) +{ + return mv88e6xxx_g2_smi_phy_access(chip, external, true, op, port, dev); +} + +/* IEEE 802.3 Clause 45 Write Address Register */ +static int mv88e6xxx_g2_smi_phy_write_addr_c45(struct mv88e6xxx_chip *chip, + bool external, int port, int dev, + int addr) +{ + u16 op = MV88E6XXX_G2_SMI_PHY_CMD_OP_45_WRITE_ADDR; + int err; + + err = mv88e6xxx_g2_smi_phy_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_SMI_PHY_DATA, addr); + if (err) + return err; + + return mv88e6xxx_g2_smi_phy_access_c45(chip, external, op, port, dev); +} + +/* IEEE 802.3 Clause 45 Read Data Register */ +static int mv88e6xxx_g2_smi_phy_read_data_c45(struct mv88e6xxx_chip *chip, + bool external, int port, int dev, + u16 *data) +{ + u16 op = MV88E6XXX_G2_SMI_PHY_CMD_OP_45_READ_DATA; + int err; + + err = mv88e6xxx_g2_smi_phy_access_c45(chip, external, op, port, dev); + if (err) + return err; + + return mv88e6xxx_g2_read(chip, MV88E6XXX_G2_SMI_PHY_DATA, data); +} + +static int mv88e6xxx_g2_smi_phy_read_c45(struct mv88e6xxx_chip *chip, + bool external, int port, int reg, + u16 *data) +{ + int dev = (reg >> 16) & 0x1f; + int addr = reg & 0xffff; + int err; + + err = mv88e6xxx_g2_smi_phy_write_addr_c45(chip, external, port, dev, + addr); + if (err) + return err; + + return mv88e6xxx_g2_smi_phy_read_data_c45(chip, external, port, dev, + data); +} + +/* IEEE 802.3 Clause 45 Write Data Register */ +static int mv88e6xxx_g2_smi_phy_write_data_c45(struct mv88e6xxx_chip *chip, + bool external, int port, int dev, + u16 data) +{ + u16 op = MV88E6XXX_G2_SMI_PHY_CMD_OP_45_WRITE_DATA; + int err; + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_SMI_PHY_DATA, data); + if (err) + return err; + + return mv88e6xxx_g2_smi_phy_access_c45(chip, external, op, port, dev); +} + +static int mv88e6xxx_g2_smi_phy_write_c45(struct mv88e6xxx_chip *chip, + bool external, int port, int reg, + u16 data) +{ + int dev = (reg >> 16) & 0x1f; + int addr = reg & 0xffff; + int err; + + err = mv88e6xxx_g2_smi_phy_write_addr_c45(chip, external, port, dev, + addr); + if (err) + return err; + + return mv88e6xxx_g2_smi_phy_write_data_c45(chip, external, port, dev, + data); +} + +int mv88e6xxx_g2_smi_phy_read(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 *val) +{ + struct mv88e6xxx_mdio_bus *mdio_bus = bus->priv; + bool external = mdio_bus->external; + + if (reg & MII_ADDR_C45) + return mv88e6xxx_g2_smi_phy_read_c45(chip, external, addr, reg, + val); + + return mv88e6xxx_g2_smi_phy_read_data_c22(chip, external, addr, reg, + val); +} + +int mv88e6xxx_g2_smi_phy_write(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 val) +{ + struct mv88e6xxx_mdio_bus *mdio_bus = bus->priv; + bool external = mdio_bus->external; + + if (reg & MII_ADDR_C45) + return mv88e6xxx_g2_smi_phy_write_c45(chip, external, addr, reg, + val); + + return mv88e6xxx_g2_smi_phy_write_data_c22(chip, external, addr, reg, + val); +} + +/* Offset 0x1B: Watchdog Control */ +static int mv88e6097_watchdog_action(struct mv88e6xxx_chip *chip, int irq) +{ + u16 reg; + + mv88e6xxx_g2_read(chip, MV88E6352_G2_WDOG_CTL, ®); + + dev_info(chip->dev, "Watchdog event: 0x%04x", reg); + + return IRQ_HANDLED; +} + +static void mv88e6097_watchdog_free(struct mv88e6xxx_chip *chip) +{ + u16 reg; + + mv88e6xxx_g2_read(chip, MV88E6352_G2_WDOG_CTL, ®); + + reg &= ~(MV88E6352_G2_WDOG_CTL_EGRESS_ENABLE | + MV88E6352_G2_WDOG_CTL_QC_ENABLE); + + mv88e6xxx_g2_write(chip, MV88E6352_G2_WDOG_CTL, reg); +} + +static int mv88e6097_watchdog_setup(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g2_write(chip, MV88E6352_G2_WDOG_CTL, + MV88E6352_G2_WDOG_CTL_EGRESS_ENABLE | + MV88E6352_G2_WDOG_CTL_QC_ENABLE | + MV88E6352_G2_WDOG_CTL_SWRESET); +} + +const struct mv88e6xxx_irq_ops mv88e6097_watchdog_ops = { + .irq_action = mv88e6097_watchdog_action, + .irq_setup = mv88e6097_watchdog_setup, + .irq_free = mv88e6097_watchdog_free, +}; + +static void mv88e6250_watchdog_free(struct mv88e6xxx_chip *chip) +{ + u16 reg; + + mv88e6xxx_g2_read(chip, MV88E6250_G2_WDOG_CTL, ®); + + reg &= ~(MV88E6250_G2_WDOG_CTL_EGRESS_ENABLE | + MV88E6250_G2_WDOG_CTL_QC_ENABLE); + + mv88e6xxx_g2_write(chip, MV88E6250_G2_WDOG_CTL, reg); +} + +static int mv88e6250_watchdog_setup(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g2_write(chip, MV88E6250_G2_WDOG_CTL, + MV88E6250_G2_WDOG_CTL_EGRESS_ENABLE | + MV88E6250_G2_WDOG_CTL_QC_ENABLE | + MV88E6250_G2_WDOG_CTL_SWRESET); +} + +const struct mv88e6xxx_irq_ops mv88e6250_watchdog_ops = { + .irq_action = mv88e6097_watchdog_action, + .irq_setup = mv88e6250_watchdog_setup, + .irq_free = mv88e6250_watchdog_free, +}; + +static int mv88e6390_watchdog_setup(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g2_write(chip, MV88E6390_G2_WDOG_CTL, + MV88E6390_G2_WDOG_CTL_UPDATE | + MV88E6390_G2_WDOG_CTL_PTR_INT_ENABLE | + MV88E6390_G2_WDOG_CTL_CUT_THROUGH | + MV88E6390_G2_WDOG_CTL_QUEUE_CONTROLLER | + MV88E6390_G2_WDOG_CTL_EGRESS | + MV88E6390_G2_WDOG_CTL_FORCE_IRQ); +} + +static int mv88e6390_watchdog_action(struct mv88e6xxx_chip *chip, int irq) +{ + u16 reg; + + mv88e6xxx_g2_write(chip, MV88E6390_G2_WDOG_CTL, + MV88E6390_G2_WDOG_CTL_PTR_EVENT); + mv88e6xxx_g2_read(chip, MV88E6390_G2_WDOG_CTL, ®); + + dev_info(chip->dev, "Watchdog event: 0x%04x", + reg & MV88E6390_G2_WDOG_CTL_DATA_MASK); + + mv88e6xxx_g2_write(chip, MV88E6390_G2_WDOG_CTL, + MV88E6390_G2_WDOG_CTL_PTR_HISTORY); + mv88e6xxx_g2_read(chip, MV88E6390_G2_WDOG_CTL, ®); + + dev_info(chip->dev, "Watchdog history: 0x%04x", + reg & MV88E6390_G2_WDOG_CTL_DATA_MASK); + + /* Trigger a software reset to try to recover the switch */ + if (chip->info->ops->reset) + chip->info->ops->reset(chip); + + mv88e6390_watchdog_setup(chip); + + return IRQ_HANDLED; +} + +static void mv88e6390_watchdog_free(struct mv88e6xxx_chip *chip) +{ + mv88e6xxx_g2_write(chip, MV88E6390_G2_WDOG_CTL, + MV88E6390_G2_WDOG_CTL_UPDATE | + MV88E6390_G2_WDOG_CTL_PTR_INT_ENABLE); +} + +const struct mv88e6xxx_irq_ops mv88e6390_watchdog_ops = { + .irq_action = mv88e6390_watchdog_action, + .irq_setup = mv88e6390_watchdog_setup, + .irq_free = mv88e6390_watchdog_free, +}; + +static int mv88e6393x_watchdog_action(struct mv88e6xxx_chip *chip, int irq) +{ + mv88e6390_watchdog_action(chip, irq); + + /* Fix for clearing the force WD event bit. + * Unreleased erratum on mv88e6393x. + */ + mv88e6xxx_g2_write(chip, MV88E6390_G2_WDOG_CTL, + MV88E6390_G2_WDOG_CTL_UPDATE | + MV88E6390_G2_WDOG_CTL_PTR_EVENT); + + return IRQ_HANDLED; +} + +const struct mv88e6xxx_irq_ops mv88e6393x_watchdog_ops = { + .irq_action = mv88e6393x_watchdog_action, + .irq_setup = mv88e6390_watchdog_setup, + .irq_free = mv88e6390_watchdog_free, +}; + +static irqreturn_t mv88e6xxx_g2_watchdog_thread_fn(int irq, void *dev_id) +{ + struct mv88e6xxx_chip *chip = dev_id; + irqreturn_t ret = IRQ_NONE; + + mv88e6xxx_reg_lock(chip); + if (chip->info->ops->watchdog_ops->irq_action) + ret = chip->info->ops->watchdog_ops->irq_action(chip, irq); + mv88e6xxx_reg_unlock(chip); + + return ret; +} + +static void mv88e6xxx_g2_watchdog_free(struct mv88e6xxx_chip *chip) +{ + mv88e6xxx_reg_lock(chip); + if (chip->info->ops->watchdog_ops->irq_free) + chip->info->ops->watchdog_ops->irq_free(chip); + mv88e6xxx_reg_unlock(chip); + + free_irq(chip->watchdog_irq, chip); + irq_dispose_mapping(chip->watchdog_irq); +} + +static int mv88e6xxx_g2_watchdog_setup(struct mv88e6xxx_chip *chip) +{ + int err; + + chip->watchdog_irq = irq_find_mapping(chip->g2_irq.domain, + MV88E6XXX_G2_INT_SOURCE_WATCHDOG); + if (chip->watchdog_irq < 0) + return chip->watchdog_irq; + + snprintf(chip->watchdog_irq_name, sizeof(chip->watchdog_irq_name), + "mv88e6xxx-%s-watchdog", dev_name(chip->dev)); + + err = request_threaded_irq(chip->watchdog_irq, NULL, + mv88e6xxx_g2_watchdog_thread_fn, + IRQF_ONESHOT | IRQF_TRIGGER_FALLING, + chip->watchdog_irq_name, chip); + if (err) + return err; + + mv88e6xxx_reg_lock(chip); + if (chip->info->ops->watchdog_ops->irq_setup) + err = chip->info->ops->watchdog_ops->irq_setup(chip); + mv88e6xxx_reg_unlock(chip); + + return err; +} + +/* Offset 0x1D: Misc Register */ + +static int mv88e6xxx_g2_misc_5_bit_port(struct mv88e6xxx_chip *chip, + bool port_5_bit) +{ + u16 val; + int err; + + err = mv88e6xxx_g2_read(chip, MV88E6XXX_G2_MISC, &val); + if (err) + return err; + + if (port_5_bit) + val |= MV88E6XXX_G2_MISC_5_BIT_PORT; + else + val &= ~MV88E6XXX_G2_MISC_5_BIT_PORT; + + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_MISC, val); +} + +int mv88e6xxx_g2_misc_4_bit_port(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_g2_misc_5_bit_port(chip, false); +} + +static void mv88e6xxx_g2_irq_mask(struct irq_data *d) +{ + struct mv88e6xxx_chip *chip = irq_data_get_irq_chip_data(d); + unsigned int n = d->hwirq; + + chip->g2_irq.masked |= (1 << n); +} + +static void mv88e6xxx_g2_irq_unmask(struct irq_data *d) +{ + struct mv88e6xxx_chip *chip = irq_data_get_irq_chip_data(d); + unsigned int n = d->hwirq; + + chip->g2_irq.masked &= ~(1 << n); +} + +static irqreturn_t mv88e6xxx_g2_irq_thread_fn(int irq, void *dev_id) +{ + struct mv88e6xxx_chip *chip = dev_id; + unsigned int nhandled = 0; + unsigned int sub_irq; + unsigned int n; + int err; + u16 reg; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_g2_int_source(chip, ®); + mv88e6xxx_reg_unlock(chip); + if (err) + goto out; + + for (n = 0; n < 16; ++n) { + if (reg & (1 << n)) { + sub_irq = irq_find_mapping(chip->g2_irq.domain, n); + handle_nested_irq(sub_irq); + ++nhandled; + } + } +out: + return (nhandled > 0 ? IRQ_HANDLED : IRQ_NONE); +} + +static void mv88e6xxx_g2_irq_bus_lock(struct irq_data *d) +{ + struct mv88e6xxx_chip *chip = irq_data_get_irq_chip_data(d); + + mv88e6xxx_reg_lock(chip); +} + +static void mv88e6xxx_g2_irq_bus_sync_unlock(struct irq_data *d) +{ + struct mv88e6xxx_chip *chip = irq_data_get_irq_chip_data(d); + int err; + + err = mv88e6xxx_g2_int_mask(chip, ~chip->g2_irq.masked); + if (err) + dev_err(chip->dev, "failed to mask interrupts\n"); + + mv88e6xxx_reg_unlock(chip); +} + +static const struct irq_chip mv88e6xxx_g2_irq_chip = { + .name = "mv88e6xxx-g2", + .irq_mask = mv88e6xxx_g2_irq_mask, + .irq_unmask = mv88e6xxx_g2_irq_unmask, + .irq_bus_lock = mv88e6xxx_g2_irq_bus_lock, + .irq_bus_sync_unlock = mv88e6xxx_g2_irq_bus_sync_unlock, +}; + +static int mv88e6xxx_g2_irq_domain_map(struct irq_domain *d, + unsigned int irq, + irq_hw_number_t hwirq) +{ + struct mv88e6xxx_chip *chip = d->host_data; + + irq_set_chip_data(irq, d->host_data); + irq_set_chip_and_handler(irq, &chip->g2_irq.chip, handle_level_irq); + irq_set_noprobe(irq); + + return 0; +} + +static const struct irq_domain_ops mv88e6xxx_g2_irq_domain_ops = { + .map = mv88e6xxx_g2_irq_domain_map, + .xlate = irq_domain_xlate_twocell, +}; + +void mv88e6xxx_g2_irq_free(struct mv88e6xxx_chip *chip) +{ + int irq, virq; + + mv88e6xxx_g2_watchdog_free(chip); + + free_irq(chip->device_irq, chip); + irq_dispose_mapping(chip->device_irq); + + for (irq = 0; irq < 16; irq++) { + virq = irq_find_mapping(chip->g2_irq.domain, irq); + irq_dispose_mapping(virq); + } + + irq_domain_remove(chip->g2_irq.domain); +} + +int mv88e6xxx_g2_irq_setup(struct mv88e6xxx_chip *chip) +{ + int err, irq, virq; + + chip->g2_irq.masked = ~0; + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_g2_int_mask(chip, ~chip->g2_irq.masked); + mv88e6xxx_reg_unlock(chip); + if (err) + return err; + + chip->g2_irq.domain = irq_domain_add_simple( + chip->dev->of_node, 16, 0, &mv88e6xxx_g2_irq_domain_ops, chip); + if (!chip->g2_irq.domain) + return -ENOMEM; + + for (irq = 0; irq < 16; irq++) + irq_create_mapping(chip->g2_irq.domain, irq); + + chip->g2_irq.chip = mv88e6xxx_g2_irq_chip; + + chip->device_irq = irq_find_mapping(chip->g1_irq.domain, + MV88E6XXX_G1_STS_IRQ_DEVICE); + if (chip->device_irq < 0) { + err = chip->device_irq; + goto out; + } + + snprintf(chip->device_irq_name, sizeof(chip->device_irq_name), + "mv88e6xxx-%s-g2", dev_name(chip->dev)); + + err = request_threaded_irq(chip->device_irq, NULL, + mv88e6xxx_g2_irq_thread_fn, + IRQF_ONESHOT, chip->device_irq_name, chip); + if (err) + goto out; + + return mv88e6xxx_g2_watchdog_setup(chip); + +out: + for (irq = 0; irq < 16; irq++) { + virq = irq_find_mapping(chip->g2_irq.domain, irq); + irq_dispose_mapping(virq); + } + + irq_domain_remove(chip->g2_irq.domain); + + return err; +} + +int mv88e6xxx_g2_irq_mdio_setup(struct mv88e6xxx_chip *chip, + struct mii_bus *bus) +{ + int phy, irq, err, err_phy; + + for (phy = 0; phy < chip->info->num_internal_phys; phy++) { + irq = irq_find_mapping(chip->g2_irq.domain, phy); + if (irq < 0) { + err = irq; + goto out; + } + bus->irq[chip->info->phy_base_addr + phy] = irq; + } + return 0; +out: + err_phy = phy; + + for (phy = 0; phy < err_phy; phy++) + irq_dispose_mapping(bus->irq[phy]); + + return err; +} + +void mv88e6xxx_g2_irq_mdio_free(struct mv88e6xxx_chip *chip, + struct mii_bus *bus) +{ + int phy; + + for (phy = 0; phy < chip->info->num_internal_phys; phy++) + irq_dispose_mapping(bus->irq[phy]); +} diff --git a/drivers/net/dsa/mv88e6xxx/global2.h b/drivers/net/dsa/mv88e6xxx/global2.h new file mode 100644 index 000000000..751a6c988 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/global2.h @@ -0,0 +1,381 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx Switch Global 2 Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016-2017 Savoir-faire Linux Inc. + * Vivien Didelot <vivien.didelot@savoirfairelinux.com> + */ + +#ifndef _MV88E6XXX_GLOBAL2_H +#define _MV88E6XXX_GLOBAL2_H + +#include "chip.h" + +/* Offset 0x00: Interrupt Source Register */ +#define MV88E6XXX_G2_INT_SRC 0x00 +#define MV88E6XXX_G2_INT_SRC_WDOG 0x8000 +#define MV88E6XXX_G2_INT_SRC_JAM_LIMIT 0x4000 +#define MV88E6XXX_G2_INT_SRC_DUPLEX_MISMATCH 0x2000 +#define MV88E6XXX_G2_INT_SRC_WAKE_EVENT 0x1000 +#define MV88E6352_G2_INT_SRC_SERDES 0x0800 +#define MV88E6352_G2_INT_SRC_PHY 0x001f +#define MV88E6390_G2_INT_SRC_PHY 0x07fe + +#define MV88E6XXX_G2_INT_SOURCE_WATCHDOG 15 + +/* Offset 0x01: Interrupt Mask Register */ +#define MV88E6XXX_G2_INT_MASK 0x01 +#define MV88E6XXX_G2_INT_MASK_WDOG 0x8000 +#define MV88E6XXX_G2_INT_MASK_JAM_LIMIT 0x4000 +#define MV88E6XXX_G2_INT_MASK_DUPLEX_MISMATCH 0x2000 +#define MV88E6XXX_G2_INT_MASK_WAKE_EVENT 0x1000 +#define MV88E6352_G2_INT_MASK_SERDES 0x0800 +#define MV88E6352_G2_INT_MASK_PHY 0x001f +#define MV88E6390_G2_INT_MASK_PHY 0x07fe + +/* Offset 0x02: MGMT Enable Register 2x */ +#define MV88E6XXX_G2_MGMT_EN_2X 0x02 + +/* Offset 0x02: MAC LINK change IRQ Register for MV88E6393X */ +#define MV88E6393X_G2_MACLINK_INT_SRC 0x02 + +/* Offset 0x03: MGMT Enable Register 0x */ +#define MV88E6XXX_G2_MGMT_EN_0X 0x03 + +/* Offset 0x03: MAC LINK change IRQ Mask Register for MV88E6393X */ +#define MV88E6393X_G2_MACLINK_INT_MASK 0x03 + +/* Offset 0x04: Flow Control Delay Register */ +#define MV88E6XXX_G2_FLOW_CTL 0x04 + +/* Offset 0x05: Switch Management Register */ +#define MV88E6XXX_G2_SWITCH_MGMT 0x05 +#define MV88E6XXX_G2_SWITCH_MGMT_USE_DOUBLE_TAG_DATA 0x8000 +#define MV88E6XXX_G2_SWITCH_MGMT_PREVENT_LOOPS 0x4000 +#define MV88E6XXX_G2_SWITCH_MGMT_FLOW_CTL_MSG 0x2000 +#define MV88E6XXX_G2_SWITCH_MGMT_FORCE_FLOW_CTL_PRI 0x0080 +#define MV88E6XXX_G2_SWITCH_MGMT_RSVD2CPU 0x0008 + +#define MV88E6393X_G2_EGRESS_MONITOR_DEST 0x05 + +/* Offset 0x06: Device Mapping Table Register */ +#define MV88E6XXX_G2_DEVICE_MAPPING 0x06 +#define MV88E6XXX_G2_DEVICE_MAPPING_UPDATE 0x8000 +#define MV88E6XXX_G2_DEVICE_MAPPING_DEV_MASK 0x1f00 +#define MV88E6352_G2_DEVICE_MAPPING_PORT_MASK 0x000f +#define MV88E6390_G2_DEVICE_MAPPING_PORT_MASK 0x001f + +/* Offset 0x07: Trunk Mask Table Register */ +#define MV88E6XXX_G2_TRUNK_MASK 0x07 +#define MV88E6XXX_G2_TRUNK_MASK_UPDATE 0x8000 +#define MV88E6XXX_G2_TRUNK_MASK_NUM_MASK 0x7000 +#define MV88E6XXX_G2_TRUNK_MASK_HASH 0x0800 + +/* Offset 0x08: Trunk Mapping Table Register */ +#define MV88E6XXX_G2_TRUNK_MAPPING 0x08 +#define MV88E6XXX_G2_TRUNK_MAPPING_UPDATE 0x8000 +#define MV88E6XXX_G2_TRUNK_MAPPING_ID_MASK 0x7800 + +/* Offset 0x09: Ingress Rate Command Register */ +#define MV88E6XXX_G2_IRL_CMD 0x09 +#define MV88E6XXX_G2_IRL_CMD_BUSY 0x8000 +#define MV88E6352_G2_IRL_CMD_OP_MASK 0x7000 +#define MV88E6352_G2_IRL_CMD_OP_NOOP 0x0000 +#define MV88E6352_G2_IRL_CMD_OP_INIT_ALL 0x1000 +#define MV88E6352_G2_IRL_CMD_OP_INIT_RES 0x2000 +#define MV88E6352_G2_IRL_CMD_OP_WRITE_REG 0x3000 +#define MV88E6352_G2_IRL_CMD_OP_READ_REG 0x4000 +#define MV88E6390_G2_IRL_CMD_OP_MASK 0x6000 +#define MV88E6390_G2_IRL_CMD_OP_READ_REG 0x0000 +#define MV88E6390_G2_IRL_CMD_OP_INIT_ALL 0x2000 +#define MV88E6390_G2_IRL_CMD_OP_INIT_RES 0x4000 +#define MV88E6390_G2_IRL_CMD_OP_WRITE_REG 0x6000 +#define MV88E6352_G2_IRL_CMD_PORT_MASK 0x0f00 +#define MV88E6390_G2_IRL_CMD_PORT_MASK 0x1f00 +#define MV88E6XXX_G2_IRL_CMD_RES_MASK 0x00e0 +#define MV88E6XXX_G2_IRL_CMD_REG_MASK 0x000f + +/* Offset 0x0A: Ingress Rate Data Register */ +#define MV88E6XXX_G2_IRL_DATA 0x0a +#define MV88E6XXX_G2_IRL_DATA_MASK 0xffff + +/* Offset 0x0B: Cross-chip Port VLAN Register */ +#define MV88E6XXX_G2_PVT_ADDR 0x0b +#define MV88E6XXX_G2_PVT_ADDR_BUSY 0x8000 +#define MV88E6XXX_G2_PVT_ADDR_OP_MASK 0x7000 +#define MV88E6XXX_G2_PVT_ADDR_OP_INIT_ONES 0x1000 +#define MV88E6XXX_G2_PVT_ADDR_OP_WRITE_PVLAN 0x3000 +#define MV88E6XXX_G2_PVT_ADDR_OP_READ 0x4000 +#define MV88E6XXX_G2_PVT_ADDR_PTR_MASK 0x01ff +#define MV88E6XXX_G2_PVT_ADDR_DEV_TRUNK 0x1f + +/* Offset 0x0C: Cross-chip Port VLAN Data Register */ +#define MV88E6XXX_G2_PVT_DATA 0x0c +#define MV88E6XXX_G2_PVT_DATA_MASK 0x7f + +/* Offset 0x0D: Switch MAC/WoL/WoF Register */ +#define MV88E6XXX_G2_SWITCH_MAC 0x0d +#define MV88E6XXX_G2_SWITCH_MAC_UPDATE 0x8000 +#define MV88E6XXX_G2_SWITCH_MAC_PTR_MASK 0x1f00 +#define MV88E6XXX_G2_SWITCH_MAC_DATA_MASK 0x00ff + +/* Offset 0x0E: ATU Stats Register */ +#define MV88E6XXX_G2_ATU_STATS 0x0e +#define MV88E6XXX_G2_ATU_STATS_BIN_0 (0x0 << 14) +#define MV88E6XXX_G2_ATU_STATS_BIN_1 (0x1 << 14) +#define MV88E6XXX_G2_ATU_STATS_BIN_2 (0x2 << 14) +#define MV88E6XXX_G2_ATU_STATS_BIN_3 (0x3 << 14) +#define MV88E6XXX_G2_ATU_STATS_MODE_ALL (0x0 << 12) +#define MV88E6XXX_G2_ATU_STATS_MODE_ALL_DYNAMIC (0x1 << 12) +#define MV88E6XXX_G2_ATU_STATS_MODE_FID_ALL (0x2 << 12) +#define MV88E6XXX_G2_ATU_STATS_MODE_FID_ALL_DYNAMIC (0x3 << 12) +#define MV88E6XXX_G2_ATU_STATS_MASK 0x0fff + +/* Offset 0x0F: Priority Override Table */ +#define MV88E6XXX_G2_PRIO_OVERRIDE 0x0f +#define MV88E6XXX_G2_PRIO_OVERRIDE_UPDATE 0x8000 +#define MV88E6XXX_G2_PRIO_OVERRIDE_FPRISET 0x1000 +#define MV88E6XXX_G2_PRIO_OVERRIDE_PTR_MASK 0x0f00 +#define MV88E6352_G2_PRIO_OVERRIDE_QPRIAVBEN 0x0080 +#define MV88E6352_G2_PRIO_OVERRIDE_DATAAVB_MASK 0x0030 +#define MV88E6XXX_G2_PRIO_OVERRIDE_QFPRIEN 0x0008 +#define MV88E6XXX_G2_PRIO_OVERRIDE_DATA_MASK 0x0007 + +/* Offset 0x14: EEPROM Command */ +#define MV88E6XXX_G2_EEPROM_CMD 0x14 +#define MV88E6XXX_G2_EEPROM_CMD_BUSY 0x8000 +#define MV88E6XXX_G2_EEPROM_CMD_OP_MASK 0x7000 +#define MV88E6XXX_G2_EEPROM_CMD_OP_WRITE 0x3000 +#define MV88E6XXX_G2_EEPROM_CMD_OP_READ 0x4000 +#define MV88E6XXX_G2_EEPROM_CMD_OP_LOAD 0x6000 +#define MV88E6XXX_G2_EEPROM_CMD_RUNNING 0x0800 +#define MV88E6XXX_G2_EEPROM_CMD_WRITE_EN 0x0400 +#define MV88E6352_G2_EEPROM_CMD_ADDR_MASK 0x00ff +#define MV88E6390_G2_EEPROM_CMD_DATA_MASK 0x00ff + +/* Offset 0x15: EEPROM Data */ +#define MV88E6352_G2_EEPROM_DATA 0x15 +#define MV88E6352_G2_EEPROM_DATA_MASK 0xffff + +/* Offset 0x15: EEPROM Addr */ +#define MV88E6390_G2_EEPROM_ADDR 0x15 +#define MV88E6390_G2_EEPROM_ADDR_MASK 0xffff + +/* Offset 0x16: AVB Command Register */ +#define MV88E6352_G2_AVB_CMD 0x16 +#define MV88E6352_G2_AVB_CMD_BUSY 0x8000 +#define MV88E6352_G2_AVB_CMD_OP_READ 0x4000 +#define MV88E6352_G2_AVB_CMD_OP_READ_INCR 0x6000 +#define MV88E6352_G2_AVB_CMD_OP_WRITE 0x3000 +#define MV88E6390_G2_AVB_CMD_OP_READ 0x0000 +#define MV88E6390_G2_AVB_CMD_OP_READ_INCR 0x4000 +#define MV88E6390_G2_AVB_CMD_OP_WRITE 0x6000 +#define MV88E6352_G2_AVB_CMD_PORT_MASK 0x0f00 +#define MV88E6352_G2_AVB_CMD_PORT_TAIGLOBAL 0xe +#define MV88E6165_G2_AVB_CMD_PORT_PTPGLOBAL 0xf +#define MV88E6352_G2_AVB_CMD_PORT_PTPGLOBAL 0xf +#define MV88E6390_G2_AVB_CMD_PORT_MASK 0x1f00 +#define MV88E6390_G2_AVB_CMD_PORT_TAIGLOBAL 0x1e +#define MV88E6390_G2_AVB_CMD_PORT_PTPGLOBAL 0x1f +#define MV88E6352_G2_AVB_CMD_BLOCK_PTP 0 +#define MV88E6352_G2_AVB_CMD_BLOCK_AVB 1 +#define MV88E6352_G2_AVB_CMD_BLOCK_QAV 2 +#define MV88E6352_G2_AVB_CMD_BLOCK_QVB 3 +#define MV88E6352_G2_AVB_CMD_BLOCK_MASK 0x00e0 +#define MV88E6352_G2_AVB_CMD_ADDR_MASK 0x001f + +/* Offset 0x17: AVB Data Register */ +#define MV88E6352_G2_AVB_DATA 0x17 + +/* Offset 0x18: SMI PHY Command Register */ +#define MV88E6XXX_G2_SMI_PHY_CMD 0x18 +#define MV88E6XXX_G2_SMI_PHY_CMD_BUSY 0x8000 +#define MV88E6390_G2_SMI_PHY_CMD_FUNC_MASK 0x6000 +#define MV88E6390_G2_SMI_PHY_CMD_FUNC_INTERNAL 0x0000 +#define MV88E6390_G2_SMI_PHY_CMD_FUNC_EXTERNAL 0x2000 +#define MV88E6390_G2_SMI_PHY_CMD_FUNC_SETUP 0x4000 +#define MV88E6XXX_G2_SMI_PHY_CMD_MODE_MASK 0x1000 +#define MV88E6XXX_G2_SMI_PHY_CMD_MODE_45 0x0000 +#define MV88E6XXX_G2_SMI_PHY_CMD_MODE_22 0x1000 +#define MV88E6XXX_G2_SMI_PHY_CMD_OP_MASK 0x0c00 +#define MV88E6XXX_G2_SMI_PHY_CMD_OP_22_WRITE_DATA 0x0400 +#define MV88E6XXX_G2_SMI_PHY_CMD_OP_22_READ_DATA 0x0800 +#define MV88E6XXX_G2_SMI_PHY_CMD_OP_45_WRITE_ADDR 0x0000 +#define MV88E6XXX_G2_SMI_PHY_CMD_OP_45_WRITE_DATA 0x0400 +#define MV88E6XXX_G2_SMI_PHY_CMD_OP_45_READ_DATA_INC 0x0800 +#define MV88E6XXX_G2_SMI_PHY_CMD_OP_45_READ_DATA 0x0c00 +#define MV88E6XXX_G2_SMI_PHY_CMD_DEV_ADDR_MASK 0x03e0 +#define MV88E6XXX_G2_SMI_PHY_CMD_REG_ADDR_MASK 0x001f +#define MV88E6XXX_G2_SMI_PHY_CMD_SETUP_PTR_MASK 0x03ff + +/* Offset 0x19: SMI PHY Data Register */ +#define MV88E6XXX_G2_SMI_PHY_DATA 0x19 + +/* Offset 0x1A: Scratch and Misc. Register */ +#define MV88E6XXX_G2_SCRATCH_MISC_MISC 0x1a +#define MV88E6XXX_G2_SCRATCH_MISC_UPDATE 0x8000 +#define MV88E6XXX_G2_SCRATCH_MISC_PTR_MASK 0x7f00 +#define MV88E6XXX_G2_SCRATCH_MISC_DATA_MASK 0x00ff + +/* Offset 0x1B: Watch Dog Control Register */ +#define MV88E6250_G2_WDOG_CTL 0x1b +#define MV88E6250_G2_WDOG_CTL_QC_HISTORY 0x0100 +#define MV88E6250_G2_WDOG_CTL_QC_EVENT 0x0080 +#define MV88E6250_G2_WDOG_CTL_QC_ENABLE 0x0040 +#define MV88E6250_G2_WDOG_CTL_EGRESS_HISTORY 0x0020 +#define MV88E6250_G2_WDOG_CTL_EGRESS_EVENT 0x0010 +#define MV88E6250_G2_WDOG_CTL_EGRESS_ENABLE 0x0008 +#define MV88E6250_G2_WDOG_CTL_FORCE_IRQ 0x0004 +#define MV88E6250_G2_WDOG_CTL_HISTORY 0x0002 +#define MV88E6250_G2_WDOG_CTL_SWRESET 0x0001 + +/* Offset 0x1B: Watch Dog Control Register */ +#define MV88E6352_G2_WDOG_CTL 0x1b +#define MV88E6352_G2_WDOG_CTL_EGRESS_EVENT 0x0080 +#define MV88E6352_G2_WDOG_CTL_RMU_TIMEOUT 0x0040 +#define MV88E6352_G2_WDOG_CTL_QC_ENABLE 0x0020 +#define MV88E6352_G2_WDOG_CTL_EGRESS_HISTORY 0x0010 +#define MV88E6352_G2_WDOG_CTL_EGRESS_ENABLE 0x0008 +#define MV88E6352_G2_WDOG_CTL_FORCE_IRQ 0x0004 +#define MV88E6352_G2_WDOG_CTL_HISTORY 0x0002 +#define MV88E6352_G2_WDOG_CTL_SWRESET 0x0001 + +/* Offset 0x1B: Watch Dog Control Register */ +#define MV88E6390_G2_WDOG_CTL 0x1b +#define MV88E6390_G2_WDOG_CTL_UPDATE 0x8000 +#define MV88E6390_G2_WDOG_CTL_PTR_MASK 0x7f00 +#define MV88E6390_G2_WDOG_CTL_PTR_INT_SOURCE 0x0000 +#define MV88E6390_G2_WDOG_CTL_PTR_INT_STS 0x1000 +#define MV88E6390_G2_WDOG_CTL_PTR_INT_ENABLE 0x1100 +#define MV88E6390_G2_WDOG_CTL_PTR_EVENT 0x1200 +#define MV88E6390_G2_WDOG_CTL_PTR_HISTORY 0x1300 +#define MV88E6390_G2_WDOG_CTL_DATA_MASK 0x00ff +#define MV88E6390_G2_WDOG_CTL_CUT_THROUGH 0x0008 +#define MV88E6390_G2_WDOG_CTL_QUEUE_CONTROLLER 0x0004 +#define MV88E6390_G2_WDOG_CTL_EGRESS 0x0002 +#define MV88E6390_G2_WDOG_CTL_FORCE_IRQ 0x0001 + +/* Offset 0x1C: QoS Weights Register */ +#define MV88E6XXX_G2_QOS_WEIGHTS 0x1c +#define MV88E6XXX_G2_QOS_WEIGHTS_UPDATE 0x8000 +#define MV88E6352_G2_QOS_WEIGHTS_PTR_MASK 0x3f00 +#define MV88E6390_G2_QOS_WEIGHTS_PTR_MASK 0x7f00 +#define MV88E6XXX_G2_QOS_WEIGHTS_DATA_MASK 0x00ff + +/* Offset 0x1D: Misc Register */ +#define MV88E6XXX_G2_MISC 0x1d +#define MV88E6XXX_G2_MISC_5_BIT_PORT 0x4000 +#define MV88E6352_G2_NOEGR_POLICY 0x2000 +#define MV88E6390_G2_LAG_ID_4 0x2000 + +/* Scratch/Misc registers accessed through MV88E6XXX_G2_SCRATCH_MISC */ +/* Offset 0x02: Misc Configuration */ +#define MV88E6352_G2_SCRATCH_MISC_CFG 0x02 +#define MV88E6352_G2_SCRATCH_MISC_CFG_NORMALSMI 0x80 +/* Offset 0x60-0x61: GPIO Configuration */ +#define MV88E6352_G2_SCRATCH_GPIO_CFG0 0x60 +#define MV88E6352_G2_SCRATCH_GPIO_CFG1 0x61 +/* Offset 0x62-0x63: GPIO Direction */ +#define MV88E6352_G2_SCRATCH_GPIO_DIR0 0x62 +#define MV88E6352_G2_SCRATCH_GPIO_DIR1 0x63 +#define MV88E6352_G2_SCRATCH_GPIO_DIR_OUT 0 +#define MV88E6352_G2_SCRATCH_GPIO_DIR_IN 1 +/* Offset 0x64-0x65: GPIO Data */ +#define MV88E6352_G2_SCRATCH_GPIO_DATA0 0x64 +#define MV88E6352_G2_SCRATCH_GPIO_DATA1 0x65 +/* Offset 0x68-0x6F: GPIO Pin Control */ +#define MV88E6352_G2_SCRATCH_GPIO_PCTL0 0x68 +#define MV88E6352_G2_SCRATCH_GPIO_PCTL1 0x69 +#define MV88E6352_G2_SCRATCH_GPIO_PCTL2 0x6A +#define MV88E6352_G2_SCRATCH_GPIO_PCTL3 0x6B +#define MV88E6352_G2_SCRATCH_GPIO_PCTL4 0x6C +#define MV88E6352_G2_SCRATCH_GPIO_PCTL5 0x6D +#define MV88E6352_G2_SCRATCH_GPIO_PCTL6 0x6E +#define MV88E6352_G2_SCRATCH_GPIO_PCTL7 0x6F +#define MV88E6352_G2_SCRATCH_CONFIG_DATA0 0x70 +#define MV88E6352_G2_SCRATCH_CONFIG_DATA1 0x71 +#define MV88E6352_G2_SCRATCH_CONFIG_DATA1_NO_CPU BIT(2) +#define MV88E6352_G2_SCRATCH_CONFIG_DATA2 0x72 +#define MV88E6352_G2_SCRATCH_CONFIG_DATA2_P0_MODE_MASK 0xf +#define MV88E6352_G2_SCRATCH_CONFIG_DATA3 0x73 +#define MV88E6352_G2_SCRATCH_CONFIG_DATA3_S_SEL BIT(1) + +#define MV88E6352_G2_SCRATCH_GPIO_PCTL_GPIO 0 +#define MV88E6352_G2_SCRATCH_GPIO_PCTL_TRIG 1 +#define MV88E6352_G2_SCRATCH_GPIO_PCTL_EVREQ 2 + +int mv88e6xxx_g2_read(struct mv88e6xxx_chip *chip, int reg, u16 *val); +int mv88e6xxx_g2_write(struct mv88e6xxx_chip *chip, int reg, u16 val); +int mv88e6xxx_g2_wait_bit(struct mv88e6xxx_chip *chip, int reg, + int bit, int val); + +int mv88e6352_g2_irl_init_all(struct mv88e6xxx_chip *chip, int port); +int mv88e6390_g2_irl_init_all(struct mv88e6xxx_chip *chip, int port); + +int mv88e6xxx_g2_smi_phy_read(struct mv88e6xxx_chip *chip, + struct mii_bus *bus, + int addr, int reg, u16 *val); +int mv88e6xxx_g2_smi_phy_write(struct mv88e6xxx_chip *chip, + struct mii_bus *bus, + int addr, int reg, u16 val); +int mv88e6xxx_g2_set_switch_mac(struct mv88e6xxx_chip *chip, u8 *addr); + +int mv88e6xxx_g2_get_eeprom8(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data); +int mv88e6xxx_g2_set_eeprom8(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data); + +int mv88e6xxx_g2_get_eeprom16(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data); +int mv88e6xxx_g2_set_eeprom16(struct mv88e6xxx_chip *chip, + struct ethtool_eeprom *eeprom, u8 *data); + +int mv88e6xxx_g2_pvt_read(struct mv88e6xxx_chip *chip, int src_dev, + int src_port, u16 *data); +int mv88e6xxx_g2_pvt_write(struct mv88e6xxx_chip *chip, int src_dev, + int src_port, u16 data); +int mv88e6xxx_g2_misc_4_bit_port(struct mv88e6xxx_chip *chip); + +int mv88e6xxx_g2_irq_setup(struct mv88e6xxx_chip *chip); +void mv88e6xxx_g2_irq_free(struct mv88e6xxx_chip *chip); + +int mv88e6xxx_g2_irq_mdio_setup(struct mv88e6xxx_chip *chip, + struct mii_bus *bus); +void mv88e6xxx_g2_irq_mdio_free(struct mv88e6xxx_chip *chip, + struct mii_bus *bus); + +int mv88e6185_g2_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip); +int mv88e6352_g2_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip); + +int mv88e6xxx_g2_pot_clear(struct mv88e6xxx_chip *chip); + +int mv88e6xxx_g2_trunk_mask_write(struct mv88e6xxx_chip *chip, int num, + bool hash, u16 mask); +int mv88e6xxx_g2_trunk_mapping_write(struct mv88e6xxx_chip *chip, int id, + u16 map); +int mv88e6xxx_g2_trunk_clear(struct mv88e6xxx_chip *chip); + +int mv88e6xxx_g2_device_mapping_write(struct mv88e6xxx_chip *chip, int target, + int port); +int mv88e6xxx_g2_eeprom_wait(struct mv88e6xxx_chip *chip); + +extern const struct mv88e6xxx_irq_ops mv88e6097_watchdog_ops; +extern const struct mv88e6xxx_irq_ops mv88e6250_watchdog_ops; +extern const struct mv88e6xxx_irq_ops mv88e6390_watchdog_ops; +extern const struct mv88e6xxx_irq_ops mv88e6393x_watchdog_ops; + +extern const struct mv88e6xxx_avb_ops mv88e6165_avb_ops; +extern const struct mv88e6xxx_avb_ops mv88e6352_avb_ops; +extern const struct mv88e6xxx_avb_ops mv88e6390_avb_ops; + +extern const struct mv88e6xxx_gpio_ops mv88e6352_gpio_ops; + +int mv88e6xxx_g2_scratch_gpio_set_smi(struct mv88e6xxx_chip *chip, + bool external); +int mv88e6352_g2_scratch_port_has_serdes(struct mv88e6xxx_chip *chip, int port); +int mv88e6xxx_g2_atu_stats_set(struct mv88e6xxx_chip *chip, u16 kind, u16 bin); +int mv88e6xxx_g2_atu_stats_get(struct mv88e6xxx_chip *chip, u16 *stats); + +#endif /* _MV88E6XXX_GLOBAL2_H */ diff --git a/drivers/net/dsa/mv88e6xxx/global2_avb.c b/drivers/net/dsa/mv88e6xxx/global2_avb.c new file mode 100644 index 000000000..657783e04 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/global2_avb.c @@ -0,0 +1,239 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Switch Global 2 Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016-2017 Savoir-faire Linux Inc. + * Vivien Didelot <vivien.didelot@savoirfairelinux.com> + * + * Copyright (c) 2017 National Instruments + * Brandon Streiff <brandon.streiff@ni.com> + */ + +#include <linux/bitfield.h> + +#include "global2.h" + +/* Offset 0x16: AVB Command Register + * Offset 0x17: AVB Data Register + * + * There are two different versions of this register interface: + * "6352": 3-bit "op" field, 4-bit "port" field. + * "6390": 2-bit "op" field, 5-bit "port" field. + * + * The "op" codes are different between the two, as well as the special + * port fields for global PTP and TAI configuration. + */ + +/* mv88e6xxx_g2_avb_read -- Read one or multiple 16-bit words. + * The hardware supports snapshotting up to four contiguous registers. + */ +static int mv88e6xxx_g2_avb_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6352_G2_AVB_CMD_BUSY); + + return mv88e6xxx_g2_wait_bit(chip, MV88E6352_G2_AVB_CMD, bit, 0); +} + +static int mv88e6xxx_g2_avb_read(struct mv88e6xxx_chip *chip, u16 readop, + u16 *data, int len) +{ + int err; + int i; + + err = mv88e6xxx_g2_avb_wait(chip); + if (err) + return err; + + /* Hardware can only snapshot four words. */ + if (len > 4) + return -E2BIG; + + err = mv88e6xxx_g2_write(chip, MV88E6352_G2_AVB_CMD, + MV88E6352_G2_AVB_CMD_BUSY | readop); + if (err) + return err; + + err = mv88e6xxx_g2_avb_wait(chip); + if (err) + return err; + + for (i = 0; i < len; ++i) { + err = mv88e6xxx_g2_read(chip, MV88E6352_G2_AVB_DATA, + &data[i]); + if (err) + return err; + } + + return 0; +} + +/* mv88e6xxx_g2_avb_write -- Write one 16-bit word. */ +static int mv88e6xxx_g2_avb_write(struct mv88e6xxx_chip *chip, u16 writeop, + u16 data) +{ + int err; + + err = mv88e6xxx_g2_avb_wait(chip); + if (err) + return err; + + err = mv88e6xxx_g2_write(chip, MV88E6352_G2_AVB_DATA, data); + if (err) + return err; + + err = mv88e6xxx_g2_write(chip, MV88E6352_G2_AVB_CMD, + MV88E6352_G2_AVB_CMD_BUSY | writeop); + + return mv88e6xxx_g2_avb_wait(chip); +} + +static int mv88e6352_g2_avb_port_ptp_read(struct mv88e6xxx_chip *chip, + int port, int addr, u16 *data, + int len) +{ + u16 readop = (len == 1 ? MV88E6352_G2_AVB_CMD_OP_READ : + MV88E6352_G2_AVB_CMD_OP_READ_INCR) | + (port << 8) | (MV88E6352_G2_AVB_CMD_BLOCK_PTP << 5) | + addr; + + return mv88e6xxx_g2_avb_read(chip, readop, data, len); +} + +static int mv88e6352_g2_avb_port_ptp_write(struct mv88e6xxx_chip *chip, + int port, int addr, u16 data) +{ + u16 writeop = MV88E6352_G2_AVB_CMD_OP_WRITE | (port << 8) | + (MV88E6352_G2_AVB_CMD_BLOCK_PTP << 5) | addr; + + return mv88e6xxx_g2_avb_write(chip, writeop, data); +} + +static int mv88e6352_g2_avb_ptp_read(struct mv88e6xxx_chip *chip, int addr, + u16 *data, int len) +{ + return mv88e6352_g2_avb_port_ptp_read(chip, + MV88E6352_G2_AVB_CMD_PORT_PTPGLOBAL, + addr, data, len); +} + +static int mv88e6352_g2_avb_ptp_write(struct mv88e6xxx_chip *chip, int addr, + u16 data) +{ + return mv88e6352_g2_avb_port_ptp_write(chip, + MV88E6352_G2_AVB_CMD_PORT_PTPGLOBAL, + addr, data); +} + +static int mv88e6352_g2_avb_tai_read(struct mv88e6xxx_chip *chip, int addr, + u16 *data, int len) +{ + return mv88e6352_g2_avb_port_ptp_read(chip, + MV88E6352_G2_AVB_CMD_PORT_TAIGLOBAL, + addr, data, len); +} + +static int mv88e6352_g2_avb_tai_write(struct mv88e6xxx_chip *chip, int addr, + u16 data) +{ + return mv88e6352_g2_avb_port_ptp_write(chip, + MV88E6352_G2_AVB_CMD_PORT_TAIGLOBAL, + addr, data); +} + +const struct mv88e6xxx_avb_ops mv88e6352_avb_ops = { + .port_ptp_read = mv88e6352_g2_avb_port_ptp_read, + .port_ptp_write = mv88e6352_g2_avb_port_ptp_write, + .ptp_read = mv88e6352_g2_avb_ptp_read, + .ptp_write = mv88e6352_g2_avb_ptp_write, + .tai_read = mv88e6352_g2_avb_tai_read, + .tai_write = mv88e6352_g2_avb_tai_write, +}; + +static int mv88e6165_g2_avb_tai_read(struct mv88e6xxx_chip *chip, int addr, + u16 *data, int len) +{ + return mv88e6352_g2_avb_port_ptp_read(chip, + MV88E6165_G2_AVB_CMD_PORT_PTPGLOBAL, + addr, data, len); +} + +static int mv88e6165_g2_avb_tai_write(struct mv88e6xxx_chip *chip, int addr, + u16 data) +{ + return mv88e6352_g2_avb_port_ptp_write(chip, + MV88E6165_G2_AVB_CMD_PORT_PTPGLOBAL, + addr, data); +} + +const struct mv88e6xxx_avb_ops mv88e6165_avb_ops = { + .port_ptp_read = mv88e6352_g2_avb_port_ptp_read, + .port_ptp_write = mv88e6352_g2_avb_port_ptp_write, + .ptp_read = mv88e6352_g2_avb_ptp_read, + .ptp_write = mv88e6352_g2_avb_ptp_write, + .tai_read = mv88e6165_g2_avb_tai_read, + .tai_write = mv88e6165_g2_avb_tai_write, +}; + +static int mv88e6390_g2_avb_port_ptp_read(struct mv88e6xxx_chip *chip, + int port, int addr, u16 *data, + int len) +{ + u16 readop = (len == 1 ? MV88E6390_G2_AVB_CMD_OP_READ : + MV88E6390_G2_AVB_CMD_OP_READ_INCR) | + (port << 8) | (MV88E6352_G2_AVB_CMD_BLOCK_PTP << 5) | + addr; + + return mv88e6xxx_g2_avb_read(chip, readop, data, len); +} + +static int mv88e6390_g2_avb_port_ptp_write(struct mv88e6xxx_chip *chip, + int port, int addr, u16 data) +{ + u16 writeop = MV88E6390_G2_AVB_CMD_OP_WRITE | (port << 8) | + (MV88E6352_G2_AVB_CMD_BLOCK_PTP << 5) | addr; + + return mv88e6xxx_g2_avb_write(chip, writeop, data); +} + +static int mv88e6390_g2_avb_ptp_read(struct mv88e6xxx_chip *chip, int addr, + u16 *data, int len) +{ + return mv88e6390_g2_avb_port_ptp_read(chip, + MV88E6390_G2_AVB_CMD_PORT_PTPGLOBAL, + addr, data, len); +} + +static int mv88e6390_g2_avb_ptp_write(struct mv88e6xxx_chip *chip, int addr, + u16 data) +{ + return mv88e6390_g2_avb_port_ptp_write(chip, + MV88E6390_G2_AVB_CMD_PORT_PTPGLOBAL, + addr, data); +} + +static int mv88e6390_g2_avb_tai_read(struct mv88e6xxx_chip *chip, int addr, + u16 *data, int len) +{ + return mv88e6390_g2_avb_port_ptp_read(chip, + MV88E6390_G2_AVB_CMD_PORT_TAIGLOBAL, + addr, data, len); +} + +static int mv88e6390_g2_avb_tai_write(struct mv88e6xxx_chip *chip, int addr, + u16 data) +{ + return mv88e6390_g2_avb_port_ptp_write(chip, + MV88E6390_G2_AVB_CMD_PORT_TAIGLOBAL, + addr, data); +} + +const struct mv88e6xxx_avb_ops mv88e6390_avb_ops = { + .port_ptp_read = mv88e6390_g2_avb_port_ptp_read, + .port_ptp_write = mv88e6390_g2_avb_port_ptp_write, + .ptp_read = mv88e6390_g2_avb_ptp_read, + .ptp_write = mv88e6390_g2_avb_ptp_write, + .tai_read = mv88e6390_g2_avb_tai_read, + .tai_write = mv88e6390_g2_avb_tai_write, +}; diff --git a/drivers/net/dsa/mv88e6xxx/global2_scratch.c b/drivers/net/dsa/mv88e6xxx/global2_scratch.c new file mode 100644 index 000000000..a9d6e4032 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/global2_scratch.c @@ -0,0 +1,319 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Switch Global 2 Scratch & Misc Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2017 National Instruments + * Brandon Streiff <brandon.streiff@ni.com> + */ + +#include "chip.h" +#include "global2.h" + +/* Offset 0x1A: Scratch and Misc. Register */ +static int mv88e6xxx_g2_scratch_read(struct mv88e6xxx_chip *chip, int reg, + u8 *data) +{ + u16 value; + int err; + + err = mv88e6xxx_g2_write(chip, MV88E6XXX_G2_SCRATCH_MISC_MISC, + reg << 8); + if (err) + return err; + + err = mv88e6xxx_g2_read(chip, MV88E6XXX_G2_SCRATCH_MISC_MISC, &value); + if (err) + return err; + + *data = (value & MV88E6XXX_G2_SCRATCH_MISC_DATA_MASK); + + return 0; +} + +static int mv88e6xxx_g2_scratch_write(struct mv88e6xxx_chip *chip, int reg, + u8 data) +{ + u16 value = (reg << 8) | data; + + return mv88e6xxx_g2_write(chip, MV88E6XXX_G2_SCRATCH_MISC_MISC, + MV88E6XXX_G2_SCRATCH_MISC_UPDATE | value); +} + +/** + * mv88e6xxx_g2_scratch_get_bit - get a bit + * @chip: chip private data + * @base_reg: base of scratch bits + * @offset: index of bit within the register + * @set: is bit set? + */ +static int mv88e6xxx_g2_scratch_get_bit(struct mv88e6xxx_chip *chip, + int base_reg, unsigned int offset, + int *set) +{ + int reg = base_reg + (offset / 8); + u8 mask = (1 << (offset & 0x7)); + u8 val; + int err; + + err = mv88e6xxx_g2_scratch_read(chip, reg, &val); + if (err) + return err; + + *set = !!(mask & val); + + return 0; +} + +/** + * mv88e6xxx_g2_scratch_set_bit - set (or clear) a bit + * @chip: chip private data + * @base_reg: base of scratch bits + * @offset: index of bit within the register + * @set: should this bit be set? + * + * Helper function for dealing with the direction and data registers. + */ +static int mv88e6xxx_g2_scratch_set_bit(struct mv88e6xxx_chip *chip, + int base_reg, unsigned int offset, + int set) +{ + int reg = base_reg + (offset / 8); + u8 mask = (1 << (offset & 0x7)); + u8 val; + int err; + + err = mv88e6xxx_g2_scratch_read(chip, reg, &val); + if (err) + return err; + + if (set) + val |= mask; + else + val &= ~mask; + + return mv88e6xxx_g2_scratch_write(chip, reg, val); +} + +/** + * mv88e6352_g2_scratch_gpio_get_data - get data on gpio pin + * @chip: chip private data + * @pin: gpio index + * + * Return: 0 for low, 1 for high, negative error + */ +static int mv88e6352_g2_scratch_gpio_get_data(struct mv88e6xxx_chip *chip, + unsigned int pin) +{ + int val = 0; + int err; + + err = mv88e6xxx_g2_scratch_get_bit(chip, + MV88E6352_G2_SCRATCH_GPIO_DATA0, + pin, &val); + if (err) + return err; + + return val; +} + +/** + * mv88e6352_g2_scratch_gpio_set_data - set data on gpio pin + * @chip: chip private data + * @pin: gpio index + * @value: value to set + */ +static int mv88e6352_g2_scratch_gpio_set_data(struct mv88e6xxx_chip *chip, + unsigned int pin, int value) +{ + u8 mask = (1 << (pin & 0x7)); + int offset = (pin / 8); + int reg; + + reg = MV88E6352_G2_SCRATCH_GPIO_DATA0 + offset; + + if (value) + chip->gpio_data[offset] |= mask; + else + chip->gpio_data[offset] &= ~mask; + + return mv88e6xxx_g2_scratch_write(chip, reg, chip->gpio_data[offset]); +} + +/** + * mv88e6352_g2_scratch_gpio_get_dir - get direction of gpio pin + * @chip: chip private data + * @pin: gpio index + * + * Return: 0 for output, 1 for input (same as GPIOF_DIR_XXX). + */ +static int mv88e6352_g2_scratch_gpio_get_dir(struct mv88e6xxx_chip *chip, + unsigned int pin) +{ + int val = 0; + int err; + + err = mv88e6xxx_g2_scratch_get_bit(chip, + MV88E6352_G2_SCRATCH_GPIO_DIR0, + pin, &val); + if (err) + return err; + + return val; +} + +/** + * mv88e6352_g2_scratch_gpio_set_dir - set direction of gpio pin + * @chip: chip private data + * @pin: gpio index + * @input: should the gpio be an input, or an output? + */ +static int mv88e6352_g2_scratch_gpio_set_dir(struct mv88e6xxx_chip *chip, + unsigned int pin, bool input) +{ + int value = (input ? MV88E6352_G2_SCRATCH_GPIO_DIR_IN : + MV88E6352_G2_SCRATCH_GPIO_DIR_OUT); + + return mv88e6xxx_g2_scratch_set_bit(chip, + MV88E6352_G2_SCRATCH_GPIO_DIR0, + pin, value); +} + +/** + * mv88e6352_g2_scratch_gpio_get_pctl - get pin control setting + * @chip: chip private data + * @pin: gpio index + * @func: function number + * + * Note that the function numbers themselves may vary by chipset. + */ +static int mv88e6352_g2_scratch_gpio_get_pctl(struct mv88e6xxx_chip *chip, + unsigned int pin, int *func) +{ + int reg = MV88E6352_G2_SCRATCH_GPIO_PCTL0 + (pin / 2); + int offset = (pin & 0x1) ? 4 : 0; + u8 mask = (0x7 << offset); + int err; + u8 val; + + err = mv88e6xxx_g2_scratch_read(chip, reg, &val); + if (err) + return err; + + *func = (val & mask) >> offset; + + return 0; +} + +/** + * mv88e6352_g2_scratch_gpio_set_pctl - set pin control setting + * @chip: chip private data + * @pin: gpio index + * @func: function number + */ +static int mv88e6352_g2_scratch_gpio_set_pctl(struct mv88e6xxx_chip *chip, + unsigned int pin, int func) +{ + int reg = MV88E6352_G2_SCRATCH_GPIO_PCTL0 + (pin / 2); + int offset = (pin & 0x1) ? 4 : 0; + u8 mask = (0x7 << offset); + int err; + u8 val; + + err = mv88e6xxx_g2_scratch_read(chip, reg, &val); + if (err) + return err; + + val = (val & ~mask) | ((func & mask) << offset); + + return mv88e6xxx_g2_scratch_write(chip, reg, val); +} + +const struct mv88e6xxx_gpio_ops mv88e6352_gpio_ops = { + .get_data = mv88e6352_g2_scratch_gpio_get_data, + .set_data = mv88e6352_g2_scratch_gpio_set_data, + .get_dir = mv88e6352_g2_scratch_gpio_get_dir, + .set_dir = mv88e6352_g2_scratch_gpio_set_dir, + .get_pctl = mv88e6352_g2_scratch_gpio_get_pctl, + .set_pctl = mv88e6352_g2_scratch_gpio_set_pctl, +}; + +/** + * mv88e6xxx_g2_scratch_gpio_set_smi - set gpio muxing for external smi + * @chip: chip private data + * @external: set mux for external smi, or free for gpio usage + * + * Some mv88e6xxx models have GPIO pins that may be configured as + * an external SMI interface, or they may be made free for other + * GPIO uses. + */ +int mv88e6xxx_g2_scratch_gpio_set_smi(struct mv88e6xxx_chip *chip, + bool external) +{ + int misc_cfg = MV88E6352_G2_SCRATCH_MISC_CFG; + int config_data1 = MV88E6352_G2_SCRATCH_CONFIG_DATA1; + int config_data2 = MV88E6352_G2_SCRATCH_CONFIG_DATA2; + bool no_cpu; + u8 p0_mode; + int err; + u8 val; + + err = mv88e6xxx_g2_scratch_read(chip, config_data2, &val); + if (err) + return err; + + p0_mode = val & MV88E6352_G2_SCRATCH_CONFIG_DATA2_P0_MODE_MASK; + + if (p0_mode == 0x01 || p0_mode == 0x02) + return -EBUSY; + + err = mv88e6xxx_g2_scratch_read(chip, config_data1, &val); + if (err) + return err; + + no_cpu = !!(val & MV88E6352_G2_SCRATCH_CONFIG_DATA1_NO_CPU); + + err = mv88e6xxx_g2_scratch_read(chip, misc_cfg, &val); + if (err) + return err; + + /* NO_CPU being 0 inverts the meaning of the bit */ + if (!no_cpu) + external = !external; + + if (external) + val |= MV88E6352_G2_SCRATCH_MISC_CFG_NORMALSMI; + else + val &= ~MV88E6352_G2_SCRATCH_MISC_CFG_NORMALSMI; + + return mv88e6xxx_g2_scratch_write(chip, misc_cfg, val); +} + +/** + * mv88e6352_g2_scratch_port_has_serdes - indicate if a port can have a serdes + * @chip: chip private data + * @port: port number to check for serdes + * + * Indicates whether the port may have a serdes attached according to the + * pin strapping. Returns negative error number, 0 if the port is not + * configured to have a serdes, and 1 if the port is configured to have a + * serdes attached. + */ +int mv88e6352_g2_scratch_port_has_serdes(struct mv88e6xxx_chip *chip, int port) +{ + u8 config3, p; + int err; + + err = mv88e6xxx_g2_scratch_read(chip, MV88E6352_G2_SCRATCH_CONFIG_DATA3, + &config3); + if (err) + return err; + + if (config3 & MV88E6352_G2_SCRATCH_CONFIG_DATA3_S_SEL) + p = 5; + else + p = 4; + + return port == p; +} diff --git a/drivers/net/dsa/mv88e6xxx/hwtstamp.c b/drivers/net/dsa/mv88e6xxx/hwtstamp.c new file mode 100644 index 000000000..331b4ca08 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/hwtstamp.c @@ -0,0 +1,615 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Switch hardware timestamping support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2017 National Instruments + * Erik Hons <erik.hons@ni.com> + * Brandon Streiff <brandon.streiff@ni.com> + * Dane Wagner <dane.wagner@ni.com> + */ + +#include "chip.h" +#include "global2.h" +#include "hwtstamp.h" +#include "ptp.h" +#include <linux/ptp_classify.h> + +#define SKB_PTP_TYPE(__skb) (*(unsigned int *)((__skb)->cb)) + +static int mv88e6xxx_port_ptp_read(struct mv88e6xxx_chip *chip, int port, + int addr, u16 *data, int len) +{ + if (!chip->info->ops->avb_ops->port_ptp_read) + return -EOPNOTSUPP; + + return chip->info->ops->avb_ops->port_ptp_read(chip, port, addr, + data, len); +} + +static int mv88e6xxx_port_ptp_write(struct mv88e6xxx_chip *chip, int port, + int addr, u16 data) +{ + if (!chip->info->ops->avb_ops->port_ptp_write) + return -EOPNOTSUPP; + + return chip->info->ops->avb_ops->port_ptp_write(chip, port, addr, + data); +} + +static int mv88e6xxx_ptp_write(struct mv88e6xxx_chip *chip, int addr, + u16 data) +{ + if (!chip->info->ops->avb_ops->ptp_write) + return -EOPNOTSUPP; + + return chip->info->ops->avb_ops->ptp_write(chip, addr, data); +} + +static int mv88e6xxx_ptp_read(struct mv88e6xxx_chip *chip, int addr, + u16 *data) +{ + if (!chip->info->ops->avb_ops->ptp_read) + return -EOPNOTSUPP; + + return chip->info->ops->avb_ops->ptp_read(chip, addr, data, 1); +} + +/* TX_TSTAMP_TIMEOUT: This limits the time spent polling for a TX + * timestamp. When working properly, hardware will produce a timestamp + * within 1ms. Software may enounter delays due to MDIO contention, so + * the timeout is set accordingly. + */ +#define TX_TSTAMP_TIMEOUT msecs_to_jiffies(40) + +int mv88e6xxx_get_ts_info(struct dsa_switch *ds, int port, + struct ethtool_ts_info *info) +{ + const struct mv88e6xxx_ptp_ops *ptp_ops; + struct mv88e6xxx_chip *chip; + + chip = ds->priv; + ptp_ops = chip->info->ops->ptp_ops; + + if (!chip->info->ptp_support) + return -EOPNOTSUPP; + + info->so_timestamping = + SOF_TIMESTAMPING_TX_HARDWARE | + SOF_TIMESTAMPING_RX_HARDWARE | + SOF_TIMESTAMPING_RAW_HARDWARE; + info->phc_index = ptp_clock_index(chip->ptp_clock); + info->tx_types = + (1 << HWTSTAMP_TX_OFF) | + (1 << HWTSTAMP_TX_ON); + info->rx_filters = ptp_ops->rx_filters; + + return 0; +} + +static int mv88e6xxx_set_hwtstamp_config(struct mv88e6xxx_chip *chip, int port, + struct hwtstamp_config *config) +{ + const struct mv88e6xxx_ptp_ops *ptp_ops = chip->info->ops->ptp_ops; + struct mv88e6xxx_port_hwtstamp *ps = &chip->port_hwtstamp[port]; + bool tstamp_enable = false; + + /* Prevent the TX/RX paths from trying to interact with the + * timestamp hardware while we reconfigure it. + */ + clear_bit_unlock(MV88E6XXX_HWTSTAMP_ENABLED, &ps->state); + + switch (config->tx_type) { + case HWTSTAMP_TX_OFF: + tstamp_enable = false; + break; + case HWTSTAMP_TX_ON: + tstamp_enable = true; + break; + default: + return -ERANGE; + } + + /* The switch supports timestamping both L2 and L4; one cannot be + * disabled independently of the other. + */ + + if (!(BIT(config->rx_filter) & ptp_ops->rx_filters)) { + config->rx_filter = HWTSTAMP_FILTER_NONE; + dev_dbg(chip->dev, "Unsupported rx_filter %d\n", + config->rx_filter); + return -ERANGE; + } + + switch (config->rx_filter) { + case HWTSTAMP_FILTER_NONE: + tstamp_enable = false; + break; + case HWTSTAMP_FILTER_PTP_V2_L4_EVENT: + case HWTSTAMP_FILTER_PTP_V2_L4_SYNC: + case HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ: + case HWTSTAMP_FILTER_PTP_V2_L2_EVENT: + case HWTSTAMP_FILTER_PTP_V2_L2_SYNC: + case HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ: + case HWTSTAMP_FILTER_PTP_V2_EVENT: + case HWTSTAMP_FILTER_PTP_V2_SYNC: + case HWTSTAMP_FILTER_PTP_V2_DELAY_REQ: + config->rx_filter = HWTSTAMP_FILTER_PTP_V2_EVENT; + break; + case HWTSTAMP_FILTER_ALL: + default: + config->rx_filter = HWTSTAMP_FILTER_NONE; + return -ERANGE; + } + + mv88e6xxx_reg_lock(chip); + if (tstamp_enable) { + chip->enable_count += 1; + if (chip->enable_count == 1 && ptp_ops->global_enable) + ptp_ops->global_enable(chip); + if (ptp_ops->port_enable) + ptp_ops->port_enable(chip, port); + } else { + if (ptp_ops->port_disable) + ptp_ops->port_disable(chip, port); + chip->enable_count -= 1; + if (chip->enable_count == 0 && ptp_ops->global_disable) + ptp_ops->global_disable(chip); + } + mv88e6xxx_reg_unlock(chip); + + /* Once hardware has been configured, enable timestamp checks + * in the RX/TX paths. + */ + if (tstamp_enable) + set_bit(MV88E6XXX_HWTSTAMP_ENABLED, &ps->state); + + return 0; +} + +int mv88e6xxx_port_hwtstamp_set(struct dsa_switch *ds, int port, + struct ifreq *ifr) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_port_hwtstamp *ps = &chip->port_hwtstamp[port]; + struct hwtstamp_config config; + int err; + + if (!chip->info->ptp_support) + return -EOPNOTSUPP; + + if (copy_from_user(&config, ifr->ifr_data, sizeof(config))) + return -EFAULT; + + err = mv88e6xxx_set_hwtstamp_config(chip, port, &config); + if (err) + return err; + + /* Save the chosen configuration to be returned later. */ + memcpy(&ps->tstamp_config, &config, sizeof(config)); + + return copy_to_user(ifr->ifr_data, &config, sizeof(config)) ? + -EFAULT : 0; +} + +int mv88e6xxx_port_hwtstamp_get(struct dsa_switch *ds, int port, + struct ifreq *ifr) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_port_hwtstamp *ps = &chip->port_hwtstamp[port]; + struct hwtstamp_config *config = &ps->tstamp_config; + + if (!chip->info->ptp_support) + return -EOPNOTSUPP; + + return copy_to_user(ifr->ifr_data, config, sizeof(*config)) ? + -EFAULT : 0; +} + +/* Returns a pointer to the PTP header if the caller should time stamp, + * or NULL if the caller should not. + */ +static struct ptp_header *mv88e6xxx_should_tstamp(struct mv88e6xxx_chip *chip, + int port, struct sk_buff *skb, + unsigned int type) +{ + struct mv88e6xxx_port_hwtstamp *ps = &chip->port_hwtstamp[port]; + struct ptp_header *hdr; + + if (!chip->info->ptp_support) + return NULL; + + hdr = ptp_parse_header(skb, type); + if (!hdr) + return NULL; + + if (!test_bit(MV88E6XXX_HWTSTAMP_ENABLED, &ps->state)) + return NULL; + + return hdr; +} + +static int mv88e6xxx_ts_valid(u16 status) +{ + if (!(status & MV88E6XXX_PTP_TS_VALID)) + return 0; + if (status & MV88E6XXX_PTP_TS_STATUS_MASK) + return 0; + return 1; +} + +static int seq_match(struct sk_buff *skb, u16 ts_seqid) +{ + unsigned int type = SKB_PTP_TYPE(skb); + struct ptp_header *hdr; + + hdr = ptp_parse_header(skb, type); + + return ts_seqid == ntohs(hdr->sequence_id); +} + +static void mv88e6xxx_get_rxts(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_port_hwtstamp *ps, + struct sk_buff *skb, u16 reg, + struct sk_buff_head *rxq) +{ + u16 buf[4] = { 0 }, status, seq_id; + struct skb_shared_hwtstamps *shwt; + struct sk_buff_head received; + u64 ns, timelo, timehi; + unsigned long flags; + int err; + + /* The latched timestamp belongs to one of the received frames. */ + __skb_queue_head_init(&received); + spin_lock_irqsave(&rxq->lock, flags); + skb_queue_splice_tail_init(rxq, &received); + spin_unlock_irqrestore(&rxq->lock, flags); + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_ptp_read(chip, ps->port_id, + reg, buf, ARRAY_SIZE(buf)); + mv88e6xxx_reg_unlock(chip); + if (err) + pr_err("failed to get the receive time stamp\n"); + + status = buf[0]; + timelo = buf[1]; + timehi = buf[2]; + seq_id = buf[3]; + + if (status & MV88E6XXX_PTP_TS_VALID) { + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_ptp_write(chip, ps->port_id, reg, 0); + mv88e6xxx_reg_unlock(chip); + if (err) + pr_err("failed to clear the receive status\n"); + } + /* Since the device can only handle one time stamp at a time, + * we purge any extra frames from the queue. + */ + for ( ; skb; skb = __skb_dequeue(&received)) { + if (mv88e6xxx_ts_valid(status) && seq_match(skb, seq_id)) { + ns = timehi << 16 | timelo; + + mv88e6xxx_reg_lock(chip); + ns = timecounter_cyc2time(&chip->tstamp_tc, ns); + mv88e6xxx_reg_unlock(chip); + shwt = skb_hwtstamps(skb); + memset(shwt, 0, sizeof(*shwt)); + shwt->hwtstamp = ns_to_ktime(ns); + status &= ~MV88E6XXX_PTP_TS_VALID; + } + netif_rx(skb); + } +} + +static void mv88e6xxx_rxtstamp_work(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_port_hwtstamp *ps) +{ + const struct mv88e6xxx_ptp_ops *ptp_ops = chip->info->ops->ptp_ops; + struct sk_buff *skb; + + skb = skb_dequeue(&ps->rx_queue); + + if (skb) + mv88e6xxx_get_rxts(chip, ps, skb, ptp_ops->arr0_sts_reg, + &ps->rx_queue); + + skb = skb_dequeue(&ps->rx_queue2); + if (skb) + mv88e6xxx_get_rxts(chip, ps, skb, ptp_ops->arr1_sts_reg, + &ps->rx_queue2); +} + +static int is_pdelay_resp(const struct ptp_header *hdr) +{ + return (hdr->tsmt & 0xf) == 3; +} + +bool mv88e6xxx_port_rxtstamp(struct dsa_switch *ds, int port, + struct sk_buff *skb, unsigned int type) +{ + struct mv88e6xxx_port_hwtstamp *ps; + struct mv88e6xxx_chip *chip; + struct ptp_header *hdr; + + chip = ds->priv; + ps = &chip->port_hwtstamp[port]; + + if (ps->tstamp_config.rx_filter != HWTSTAMP_FILTER_PTP_V2_EVENT) + return false; + + hdr = mv88e6xxx_should_tstamp(chip, port, skb, type); + if (!hdr) + return false; + + SKB_PTP_TYPE(skb) = type; + + if (is_pdelay_resp(hdr)) + skb_queue_tail(&ps->rx_queue2, skb); + else + skb_queue_tail(&ps->rx_queue, skb); + + ptp_schedule_worker(chip->ptp_clock, 0); + + return true; +} + +static int mv88e6xxx_txtstamp_work(struct mv88e6xxx_chip *chip, + struct mv88e6xxx_port_hwtstamp *ps) +{ + const struct mv88e6xxx_ptp_ops *ptp_ops = chip->info->ops->ptp_ops; + struct skb_shared_hwtstamps shhwtstamps; + u16 departure_block[4], status; + struct sk_buff *tmp_skb; + u32 time_raw; + int err; + u64 ns; + + if (!ps->tx_skb) + return 0; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_port_ptp_read(chip, ps->port_id, + ptp_ops->dep_sts_reg, + departure_block, + ARRAY_SIZE(departure_block)); + mv88e6xxx_reg_unlock(chip); + + if (err) + goto free_and_clear_skb; + + if (!(departure_block[0] & MV88E6XXX_PTP_TS_VALID)) { + if (time_is_before_jiffies(ps->tx_tstamp_start + + TX_TSTAMP_TIMEOUT)) { + dev_warn(chip->dev, "p%d: clearing tx timestamp hang\n", + ps->port_id); + goto free_and_clear_skb; + } + /* The timestamp should be available quickly, while getting it + * is high priority and time bounded to only 10ms. A poll is + * warranted so restart the work. + */ + return 1; + } + + /* We have the timestamp; go ahead and clear valid now */ + mv88e6xxx_reg_lock(chip); + mv88e6xxx_port_ptp_write(chip, ps->port_id, ptp_ops->dep_sts_reg, 0); + mv88e6xxx_reg_unlock(chip); + + status = departure_block[0] & MV88E6XXX_PTP_TS_STATUS_MASK; + if (status != MV88E6XXX_PTP_TS_STATUS_NORMAL) { + dev_warn(chip->dev, "p%d: tx timestamp overrun\n", ps->port_id); + goto free_and_clear_skb; + } + + if (departure_block[3] != ps->tx_seq_id) { + dev_warn(chip->dev, "p%d: unexpected seq. id\n", ps->port_id); + goto free_and_clear_skb; + } + + memset(&shhwtstamps, 0, sizeof(shhwtstamps)); + time_raw = ((u32)departure_block[2] << 16) | departure_block[1]; + mv88e6xxx_reg_lock(chip); + ns = timecounter_cyc2time(&chip->tstamp_tc, time_raw); + mv88e6xxx_reg_unlock(chip); + shhwtstamps.hwtstamp = ns_to_ktime(ns); + + dev_dbg(chip->dev, + "p%d: txtstamp %llx status 0x%04x skb ID 0x%04x hw ID 0x%04x\n", + ps->port_id, ktime_to_ns(shhwtstamps.hwtstamp), + departure_block[0], ps->tx_seq_id, departure_block[3]); + + /* skb_complete_tx_timestamp() will free up the client to make + * another timestamp-able transmit. We have to be ready for it + * -- by clearing the ps->tx_skb "flag" -- beforehand. + */ + + tmp_skb = ps->tx_skb; + ps->tx_skb = NULL; + clear_bit_unlock(MV88E6XXX_HWTSTAMP_TX_IN_PROGRESS, &ps->state); + skb_complete_tx_timestamp(tmp_skb, &shhwtstamps); + + return 0; + +free_and_clear_skb: + dev_kfree_skb_any(ps->tx_skb); + ps->tx_skb = NULL; + clear_bit_unlock(MV88E6XXX_HWTSTAMP_TX_IN_PROGRESS, &ps->state); + + return 0; +} + +long mv88e6xxx_hwtstamp_work(struct ptp_clock_info *ptp) +{ + struct mv88e6xxx_chip *chip = ptp_to_chip(ptp); + struct dsa_switch *ds = chip->ds; + struct mv88e6xxx_port_hwtstamp *ps; + int i, restart = 0; + + for (i = 0; i < ds->num_ports; i++) { + if (!dsa_is_user_port(ds, i)) + continue; + + ps = &chip->port_hwtstamp[i]; + if (test_bit(MV88E6XXX_HWTSTAMP_TX_IN_PROGRESS, &ps->state)) + restart |= mv88e6xxx_txtstamp_work(chip, ps); + + mv88e6xxx_rxtstamp_work(chip, ps); + } + + return restart ? 1 : -1; +} + +void mv88e6xxx_port_txtstamp(struct dsa_switch *ds, int port, + struct sk_buff *skb) +{ + struct mv88e6xxx_chip *chip = ds->priv; + struct mv88e6xxx_port_hwtstamp *ps = &chip->port_hwtstamp[port]; + struct ptp_header *hdr; + struct sk_buff *clone; + unsigned int type; + + type = ptp_classify_raw(skb); + if (type == PTP_CLASS_NONE) + return; + + hdr = mv88e6xxx_should_tstamp(chip, port, skb, type); + if (!hdr) + return; + + clone = skb_clone_sk(skb); + if (!clone) + return; + + if (test_and_set_bit_lock(MV88E6XXX_HWTSTAMP_TX_IN_PROGRESS, + &ps->state)) { + kfree_skb(clone); + return; + } + + ps->tx_skb = clone; + ps->tx_tstamp_start = jiffies; + ps->tx_seq_id = be16_to_cpu(hdr->sequence_id); + + ptp_schedule_worker(chip->ptp_clock, 0); +} + +int mv88e6165_global_disable(struct mv88e6xxx_chip *chip) +{ + u16 val; + int err; + + err = mv88e6xxx_ptp_read(chip, MV88E6165_PTP_CFG, &val); + if (err) + return err; + val |= MV88E6165_PTP_CFG_DISABLE_PTP; + + return mv88e6xxx_ptp_write(chip, MV88E6165_PTP_CFG, val); +} + +int mv88e6165_global_enable(struct mv88e6xxx_chip *chip) +{ + u16 val; + int err; + + err = mv88e6xxx_ptp_read(chip, MV88E6165_PTP_CFG, &val); + if (err) + return err; + + val &= ~(MV88E6165_PTP_CFG_DISABLE_PTP | MV88E6165_PTP_CFG_TSPEC_MASK); + + return mv88e6xxx_ptp_write(chip, MV88E6165_PTP_CFG, val); +} + +int mv88e6352_hwtstamp_port_disable(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_port_ptp_write(chip, port, MV88E6XXX_PORT_PTP_CFG0, + MV88E6XXX_PORT_PTP_CFG0_DISABLE_PTP); +} + +int mv88e6352_hwtstamp_port_enable(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_port_ptp_write(chip, port, MV88E6XXX_PORT_PTP_CFG0, + MV88E6XXX_PORT_PTP_CFG0_DISABLE_TSPEC_MATCH); +} + +static int mv88e6xxx_hwtstamp_port_setup(struct mv88e6xxx_chip *chip, int port) +{ + const struct mv88e6xxx_ptp_ops *ptp_ops = chip->info->ops->ptp_ops; + struct mv88e6xxx_port_hwtstamp *ps = &chip->port_hwtstamp[port]; + + ps->port_id = port; + + skb_queue_head_init(&ps->rx_queue); + skb_queue_head_init(&ps->rx_queue2); + + if (ptp_ops->port_disable) + return ptp_ops->port_disable(chip, port); + + return 0; +} + +int mv88e6xxx_hwtstamp_setup(struct mv88e6xxx_chip *chip) +{ + const struct mv88e6xxx_ptp_ops *ptp_ops = chip->info->ops->ptp_ops; + int err; + int i; + + /* Disable timestamping on all ports. */ + for (i = 0; i < mv88e6xxx_num_ports(chip); ++i) { + err = mv88e6xxx_hwtstamp_port_setup(chip, i); + if (err) + return err; + } + + /* Disable PTP globally */ + if (ptp_ops->global_disable) { + err = ptp_ops->global_disable(chip); + if (err) + return err; + } + + /* Set the ethertype of L2 PTP messages */ + err = mv88e6xxx_ptp_write(chip, MV88E6XXX_PTP_GC_ETYPE, ETH_P_1588); + if (err) + return err; + + /* MV88E6XXX_PTP_MSG_TYPE is a mask of PTP message types to + * timestamp. This affects all ports that have timestamping enabled, + * but the timestamp config is per-port; thus we configure all events + * here and only support the HWTSTAMP_FILTER_*_EVENT filter types. + */ + err = mv88e6xxx_ptp_write(chip, MV88E6XXX_PTP_MSGTYPE, + MV88E6XXX_PTP_MSGTYPE_ALL_EVENT); + if (err) + return err; + + /* Use ARRIVAL1 for peer delay response messages. */ + err = mv88e6xxx_ptp_write(chip, MV88E6XXX_PTP_TS_ARRIVAL_PTR, + MV88E6XXX_PTP_MSGTYPE_PDLAY_RES); + if (err) + return err; + + /* 88E6341 devices default to timestamping at the PHY, but this has + * a hardware issue that results in unreliable timestamps. Force + * these devices to timestamp at the MAC. + */ + if (chip->info->family == MV88E6XXX_FAMILY_6341) { + u16 val = MV88E6341_PTP_CFG_UPDATE | + MV88E6341_PTP_CFG_MODE_IDX | + MV88E6341_PTP_CFG_MODE_TS_AT_MAC; + err = mv88e6xxx_ptp_write(chip, MV88E6341_PTP_CFG, val); + if (err) + return err; + } + + return 0; +} + +void mv88e6xxx_hwtstamp_free(struct mv88e6xxx_chip *chip) +{ +} diff --git a/drivers/net/dsa/mv88e6xxx/hwtstamp.h b/drivers/net/dsa/mv88e6xxx/hwtstamp.h new file mode 100644 index 000000000..cf7fb6d66 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/hwtstamp.h @@ -0,0 +1,176 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx Switch hardware timestamping support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2017 National Instruments + * Erik Hons <erik.hons@ni.com> + * Brandon Streiff <brandon.streiff@ni.com> + * Dane Wagner <dane.wagner@ni.com> + */ + +#ifndef _MV88E6XXX_HWTSTAMP_H +#define _MV88E6XXX_HWTSTAMP_H + +#include "chip.h" + +/* Global 6352 PTP registers */ +/* Offset 0x00: PTP EtherType */ +#define MV88E6XXX_PTP_ETHERTYPE 0x00 + +/* Offset 0x01: Message Type Timestamp Enables */ +#define MV88E6XXX_PTP_MSGTYPE 0x01 +#define MV88E6XXX_PTP_MSGTYPE_SYNC 0x0001 +#define MV88E6XXX_PTP_MSGTYPE_DELAY_REQ 0x0002 +#define MV88E6XXX_PTP_MSGTYPE_PDLAY_REQ 0x0004 +#define MV88E6XXX_PTP_MSGTYPE_PDLAY_RES 0x0008 +#define MV88E6XXX_PTP_MSGTYPE_ALL_EVENT 0x000f + +/* Offset 0x02: Timestamp Arrival Capture Pointers */ +#define MV88E6XXX_PTP_TS_ARRIVAL_PTR 0x02 + +/* Offset 0x05: PTP Global Configuration */ +#define MV88E6165_PTP_CFG 0x05 +#define MV88E6165_PTP_CFG_TSPEC_MASK 0xf000 +#define MV88E6165_PTP_CFG_DISABLE_TS_OVERWRITE BIT(1) +#define MV88E6165_PTP_CFG_DISABLE_PTP BIT(0) + +/* Offset 0x07: PTP Global Configuration */ +#define MV88E6341_PTP_CFG 0x07 +#define MV88E6341_PTP_CFG_UPDATE 0x8000 +#define MV88E6341_PTP_CFG_IDX_MASK 0x7f00 +#define MV88E6341_PTP_CFG_DATA_MASK 0x00ff +#define MV88E6341_PTP_CFG_MODE_IDX 0x0 +#define MV88E6341_PTP_CFG_MODE_TS_AT_PHY 0x00 +#define MV88E6341_PTP_CFG_MODE_TS_AT_MAC 0x80 + +/* Offset 0x08: PTP Interrupt Status */ +#define MV88E6XXX_PTP_IRQ_STATUS 0x08 + +/* Per-Port 6352 PTP Registers */ +/* Offset 0x00: PTP Configuration 0 */ +#define MV88E6XXX_PORT_PTP_CFG0 0x00 +#define MV88E6XXX_PORT_PTP_CFG0_TSPEC_SHIFT 12 +#define MV88E6XXX_PORT_PTP_CFG0_TSPEC_MASK 0xf000 +#define MV88E6XXX_PORT_PTP_CFG0_TSPEC_1588 0x0000 +#define MV88E6XXX_PORT_PTP_CFG0_TSPEC_8021AS 0x1000 +#define MV88E6XXX_PORT_PTP_CFG0_DISABLE_TSPEC_MATCH 0x0800 +#define MV88E6XXX_PORT_PTP_CFG0_DISABLE_OVERWRITE 0x0002 +#define MV88E6XXX_PORT_PTP_CFG0_DISABLE_PTP 0x0001 + +/* Offset 0x01: PTP Configuration 1 */ +#define MV88E6XXX_PORT_PTP_CFG1 0x01 + +/* Offset 0x02: PTP Configuration 2 */ +#define MV88E6XXX_PORT_PTP_CFG2 0x02 +#define MV88E6XXX_PORT_PTP_CFG2_EMBED_ARRIVAL 0x1000 +#define MV88E6XXX_PORT_PTP_CFG2_DEP_IRQ_EN 0x0002 +#define MV88E6XXX_PORT_PTP_CFG2_ARR_IRQ_EN 0x0001 + +/* Offset 0x03: PTP LED Configuration */ +#define MV88E6XXX_PORT_PTP_LED_CFG 0x03 + +/* Offset 0x08: PTP Arrival 0 Status */ +#define MV88E6XXX_PORT_PTP_ARR0_STS 0x08 + +/* Offset 0x09/0x0A: PTP Arrival 0 Time */ +#define MV88E6XXX_PORT_PTP_ARR0_TIME_LO 0x09 +#define MV88E6XXX_PORT_PTP_ARR0_TIME_HI 0x0a + +/* Offset 0x0B: PTP Arrival 0 Sequence ID */ +#define MV88E6XXX_PORT_PTP_ARR0_SEQID 0x0b + +/* Offset 0x0C: PTP Arrival 1 Status */ +#define MV88E6XXX_PORT_PTP_ARR1_STS 0x0c + +/* Offset 0x0D/0x0E: PTP Arrival 1 Time */ +#define MV88E6XXX_PORT_PTP_ARR1_TIME_LO 0x0d +#define MV88E6XXX_PORT_PTP_ARR1_TIME_HI 0x0e + +/* Offset 0x0F: PTP Arrival 1 Sequence ID */ +#define MV88E6XXX_PORT_PTP_ARR1_SEQID 0x0f + +/* Offset 0x10: PTP Departure Status */ +#define MV88E6XXX_PORT_PTP_DEP_STS 0x10 + +/* Offset 0x11/0x12: PTP Deperture Time */ +#define MV88E6XXX_PORT_PTP_DEP_TIME_LO 0x11 +#define MV88E6XXX_PORT_PTP_DEP_TIME_HI 0x12 + +/* Offset 0x13: PTP Departure Sequence ID */ +#define MV88E6XXX_PORT_PTP_DEP_SEQID 0x13 + +/* Status fields for arrival and depature timestamp status registers */ +#define MV88E6XXX_PTP_TS_STATUS_MASK 0x0006 +#define MV88E6XXX_PTP_TS_STATUS_NORMAL 0x0000 +#define MV88E6XXX_PTP_TS_STATUS_OVERWITTEN 0x0002 +#define MV88E6XXX_PTP_TS_STATUS_DISCARDED 0x0004 +#define MV88E6XXX_PTP_TS_VALID 0x0001 + +#ifdef CONFIG_NET_DSA_MV88E6XXX_PTP + +int mv88e6xxx_port_hwtstamp_set(struct dsa_switch *ds, int port, + struct ifreq *ifr); +int mv88e6xxx_port_hwtstamp_get(struct dsa_switch *ds, int port, + struct ifreq *ifr); + +bool mv88e6xxx_port_rxtstamp(struct dsa_switch *ds, int port, + struct sk_buff *clone, unsigned int type); +void mv88e6xxx_port_txtstamp(struct dsa_switch *ds, int port, + struct sk_buff *skb); + +int mv88e6xxx_get_ts_info(struct dsa_switch *ds, int port, + struct ethtool_ts_info *info); + +int mv88e6xxx_hwtstamp_setup(struct mv88e6xxx_chip *chip); +void mv88e6xxx_hwtstamp_free(struct mv88e6xxx_chip *chip); +int mv88e6352_hwtstamp_port_enable(struct mv88e6xxx_chip *chip, int port); +int mv88e6352_hwtstamp_port_disable(struct mv88e6xxx_chip *chip, int port); +int mv88e6165_global_enable(struct mv88e6xxx_chip *chip); +int mv88e6165_global_disable(struct mv88e6xxx_chip *chip); + +#else /* !CONFIG_NET_DSA_MV88E6XXX_PTP */ + +static inline int mv88e6xxx_port_hwtstamp_set(struct dsa_switch *ds, + int port, struct ifreq *ifr) +{ + return -EOPNOTSUPP; +} + +static inline int mv88e6xxx_port_hwtstamp_get(struct dsa_switch *ds, + int port, struct ifreq *ifr) +{ + return -EOPNOTSUPP; +} + +static inline bool mv88e6xxx_port_rxtstamp(struct dsa_switch *ds, int port, + struct sk_buff *clone, + unsigned int type) +{ + return false; +} + +static inline void mv88e6xxx_port_txtstamp(struct dsa_switch *ds, int port, + struct sk_buff *skb) +{ +} + +static inline int mv88e6xxx_get_ts_info(struct dsa_switch *ds, int port, + struct ethtool_ts_info *info) +{ + return -EOPNOTSUPP; +} + +static inline int mv88e6xxx_hwtstamp_setup(struct mv88e6xxx_chip *chip) +{ + return 0; +} + +static inline void mv88e6xxx_hwtstamp_free(struct mv88e6xxx_chip *chip) +{ +} + +#endif /* CONFIG_NET_DSA_MV88E6XXX_PTP */ + +#endif /* _MV88E6XXX_HWTSTAMP_H */ diff --git a/drivers/net/dsa/mv88e6xxx/phy.c b/drivers/net/dsa/mv88e6xxx/phy.c new file mode 100644 index 000000000..252b5b3a3 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/phy.c @@ -0,0 +1,246 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88e6xxx Ethernet switch PHY and PPU support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2017 Andrew Lunn <andrew@lunn.ch> + */ + +#include <linux/mdio.h> +#include <linux/module.h> + +#include "chip.h" +#include "phy.h" + +int mv88e6165_phy_read(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 *val) +{ + return mv88e6xxx_read(chip, addr, reg, val); +} + +int mv88e6165_phy_write(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 val) +{ + return mv88e6xxx_write(chip, addr, reg, val); +} + +int mv88e6xxx_phy_read(struct mv88e6xxx_chip *chip, int phy, int reg, u16 *val) +{ + int addr = phy; /* PHY devices addresses start at 0x0 */ + struct mii_bus *bus; + + bus = mv88e6xxx_default_mdio_bus(chip); + if (!bus) + return -EOPNOTSUPP; + + if (!chip->info->ops->phy_read) + return -EOPNOTSUPP; + + return chip->info->ops->phy_read(chip, bus, addr, reg, val); +} + +int mv88e6xxx_phy_write(struct mv88e6xxx_chip *chip, int phy, int reg, u16 val) +{ + int addr = phy; /* PHY devices addresses start at 0x0 */ + struct mii_bus *bus; + + bus = mv88e6xxx_default_mdio_bus(chip); + if (!bus) + return -EOPNOTSUPP; + + if (!chip->info->ops->phy_write) + return -EOPNOTSUPP; + + return chip->info->ops->phy_write(chip, bus, addr, reg, val); +} + +static int mv88e6xxx_phy_page_get(struct mv88e6xxx_chip *chip, int phy, u8 page) +{ + return mv88e6xxx_phy_write(chip, phy, MV88E6XXX_PHY_PAGE, page); +} + +static void mv88e6xxx_phy_page_put(struct mv88e6xxx_chip *chip, int phy) +{ + int err; + + /* Restore PHY page Copper 0x0 for access via the registered + * MDIO bus + */ + err = mv88e6xxx_phy_write(chip, phy, MV88E6XXX_PHY_PAGE, + MV88E6XXX_PHY_PAGE_COPPER); + if (unlikely(err)) { + dev_err(chip->dev, + "failed to restore PHY %d page Copper (%d)\n", + phy, err); + } +} + +int mv88e6xxx_phy_page_read(struct mv88e6xxx_chip *chip, int phy, + u8 page, int reg, u16 *val) +{ + int err; + + /* There is no paging for registers 22 */ + if (reg == MV88E6XXX_PHY_PAGE) + return -EINVAL; + + err = mv88e6xxx_phy_page_get(chip, phy, page); + if (!err) { + err = mv88e6xxx_phy_read(chip, phy, reg, val); + mv88e6xxx_phy_page_put(chip, phy); + } + + return err; +} + +int mv88e6xxx_phy_page_write(struct mv88e6xxx_chip *chip, int phy, + u8 page, int reg, u16 val) +{ + int err; + + /* There is no paging for registers 22 */ + if (reg == MV88E6XXX_PHY_PAGE) + return -EINVAL; + + err = mv88e6xxx_phy_page_get(chip, phy, page); + if (!err) { + err = mv88e6xxx_phy_write(chip, phy, MV88E6XXX_PHY_PAGE, page); + if (!err) + err = mv88e6xxx_phy_write(chip, phy, reg, val); + + mv88e6xxx_phy_page_put(chip, phy); + } + + return err; +} + +static int mv88e6xxx_phy_ppu_disable(struct mv88e6xxx_chip *chip) +{ + if (!chip->info->ops->ppu_disable) + return 0; + + return chip->info->ops->ppu_disable(chip); +} + +static int mv88e6xxx_phy_ppu_enable(struct mv88e6xxx_chip *chip) +{ + if (!chip->info->ops->ppu_enable) + return 0; + + return chip->info->ops->ppu_enable(chip); +} + +static void mv88e6xxx_phy_ppu_reenable_work(struct work_struct *ugly) +{ + struct mv88e6xxx_chip *chip; + + chip = container_of(ugly, struct mv88e6xxx_chip, ppu_work); + + mv88e6xxx_reg_lock(chip); + + if (mutex_trylock(&chip->ppu_mutex)) { + if (mv88e6xxx_phy_ppu_enable(chip) == 0) + chip->ppu_disabled = 0; + mutex_unlock(&chip->ppu_mutex); + } + + mv88e6xxx_reg_unlock(chip); +} + +static void mv88e6xxx_phy_ppu_reenable_timer(struct timer_list *t) +{ + struct mv88e6xxx_chip *chip = from_timer(chip, t, ppu_timer); + + schedule_work(&chip->ppu_work); +} + +static int mv88e6xxx_phy_ppu_access_get(struct mv88e6xxx_chip *chip) +{ + int ret; + + mutex_lock(&chip->ppu_mutex); + + /* If the PHY polling unit is enabled, disable it so that + * we can access the PHY registers. If it was already + * disabled, cancel the timer that is going to re-enable + * it. + */ + if (!chip->ppu_disabled) { + ret = mv88e6xxx_phy_ppu_disable(chip); + if (ret < 0) { + mutex_unlock(&chip->ppu_mutex); + return ret; + } + chip->ppu_disabled = 1; + } else { + del_timer(&chip->ppu_timer); + ret = 0; + } + + return ret; +} + +static void mv88e6xxx_phy_ppu_access_put(struct mv88e6xxx_chip *chip) +{ + /* Schedule a timer to re-enable the PHY polling unit. */ + mod_timer(&chip->ppu_timer, jiffies + msecs_to_jiffies(10)); + mutex_unlock(&chip->ppu_mutex); +} + +static void mv88e6xxx_phy_ppu_state_init(struct mv88e6xxx_chip *chip) +{ + mutex_init(&chip->ppu_mutex); + INIT_WORK(&chip->ppu_work, mv88e6xxx_phy_ppu_reenable_work); + timer_setup(&chip->ppu_timer, mv88e6xxx_phy_ppu_reenable_timer, 0); +} + +static void mv88e6xxx_phy_ppu_state_destroy(struct mv88e6xxx_chip *chip) +{ + del_timer_sync(&chip->ppu_timer); +} + +int mv88e6185_phy_ppu_read(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 *val) +{ + int err; + + err = mv88e6xxx_phy_ppu_access_get(chip); + if (!err) { + err = mv88e6xxx_read(chip, addr, reg, val); + mv88e6xxx_phy_ppu_access_put(chip); + } + + return err; +} + +int mv88e6185_phy_ppu_write(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 val) +{ + int err; + + err = mv88e6xxx_phy_ppu_access_get(chip); + if (!err) { + err = mv88e6xxx_write(chip, addr, reg, val); + mv88e6xxx_phy_ppu_access_put(chip); + } + + return err; +} + +void mv88e6xxx_phy_init(struct mv88e6xxx_chip *chip) +{ + if (chip->info->ops->ppu_enable && chip->info->ops->ppu_disable) + mv88e6xxx_phy_ppu_state_init(chip); +} + +void mv88e6xxx_phy_destroy(struct mv88e6xxx_chip *chip) +{ + if (chip->info->ops->ppu_enable && chip->info->ops->ppu_disable) + mv88e6xxx_phy_ppu_state_destroy(chip); +} + +int mv88e6xxx_phy_setup(struct mv88e6xxx_chip *chip) +{ + return mv88e6xxx_phy_ppu_enable(chip); +} diff --git a/drivers/net/dsa/mv88e6xxx/phy.h b/drivers/net/dsa/mv88e6xxx/phy.h new file mode 100644 index 000000000..05ea0d546 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/phy.h @@ -0,0 +1,39 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx PHY access + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2017 Andrew Lunn <andrew@lunn.ch> + */ + +#ifndef _MV88E6XXX_PHY_H +#define _MV88E6XXX_PHY_H + +#define MV88E6XXX_PHY_PAGE 0x16 +#define MV88E6XXX_PHY_PAGE_COPPER 0x00 + +/* PHY Registers accesses implementations */ +int mv88e6165_phy_read(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 *val); +int mv88e6165_phy_write(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 val); +int mv88e6185_phy_ppu_read(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 *val); +int mv88e6185_phy_ppu_write(struct mv88e6xxx_chip *chip, struct mii_bus *bus, + int addr, int reg, u16 val); + +/* Generic PHY operations */ +int mv88e6xxx_phy_read(struct mv88e6xxx_chip *chip, int phy, + int reg, u16 *val); +int mv88e6xxx_phy_write(struct mv88e6xxx_chip *chip, int phy, + int reg, u16 val); +int mv88e6xxx_phy_page_read(struct mv88e6xxx_chip *chip, int phy, + u8 page, int reg, u16 *val); +int mv88e6xxx_phy_page_write(struct mv88e6xxx_chip *chip, int phy, + u8 page, int reg, u16 val); +void mv88e6xxx_phy_init(struct mv88e6xxx_chip *chip); +void mv88e6xxx_phy_destroy(struct mv88e6xxx_chip *chip); +int mv88e6xxx_phy_setup(struct mv88e6xxx_chip *chip); + +#endif /*_MV88E6XXX_PHY_H */ diff --git a/drivers/net/dsa/mv88e6xxx/port.c b/drivers/net/dsa/mv88e6xxx/port.c new file mode 100644 index 000000000..f79cf716c --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/port.c @@ -0,0 +1,1740 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Switch Port Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016-2017 Savoir-faire Linux Inc. + * Vivien Didelot <vivien.didelot@savoirfairelinux.com> + */ + +#include <linux/bitfield.h> +#include <linux/if_bridge.h> +#include <linux/phy.h> +#include <linux/phylink.h> + +#include "chip.h" +#include "global2.h" +#include "port.h" +#include "serdes.h" + +int mv88e6xxx_port_read(struct mv88e6xxx_chip *chip, int port, int reg, + u16 *val) +{ + int addr = chip->info->port_base_addr + port; + + return mv88e6xxx_read(chip, addr, reg, val); +} + +int mv88e6xxx_port_wait_bit(struct mv88e6xxx_chip *chip, int port, int reg, + int bit, int val) +{ + int addr = chip->info->port_base_addr + port; + + return mv88e6xxx_wait_bit(chip, addr, reg, bit, val); +} + +int mv88e6xxx_port_write(struct mv88e6xxx_chip *chip, int port, int reg, + u16 val) +{ + int addr = chip->info->port_base_addr + port; + + return mv88e6xxx_write(chip, addr, reg, val); +} + +/* Offset 0x00: MAC (or PCS or Physical) Status Register + * + * For most devices, this is read only. However the 6185 has the MyPause + * bit read/write. + */ +int mv88e6185_port_set_pause(struct mv88e6xxx_chip *chip, int port, + int pause) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_STS, ®); + if (err) + return err; + + if (pause) + reg |= MV88E6XXX_PORT_STS_MY_PAUSE; + else + reg &= ~MV88E6XXX_PORT_STS_MY_PAUSE; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_STS, reg); +} + +/* Offset 0x01: MAC (or PCS or Physical) Control Register + * + * Link, Duplex and Flow Control have one force bit, one value bit. + * + * For port's MAC speed, ForceSpd (or SpdValue) bits 1:0 program the value. + * Alternative values require the 200BASE (or AltSpeed) bit 12 set. + * Newer chips need a ForcedSpd bit 13 set to consider the value. + */ + +static int mv88e6xxx_port_set_rgmii_delay(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_MAC_CTL, ®); + if (err) + return err; + + reg &= ~(MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_RXCLK | + MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_TXCLK); + + switch (mode) { + case PHY_INTERFACE_MODE_RGMII_RXID: + reg |= MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_RXCLK; + break; + case PHY_INTERFACE_MODE_RGMII_TXID: + reg |= MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_TXCLK; + break; + case PHY_INTERFACE_MODE_RGMII_ID: + reg |= MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_RXCLK | + MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_TXCLK; + break; + case PHY_INTERFACE_MODE_RGMII: + break; + default: + return 0; + } + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_MAC_CTL, reg); + if (err) + return err; + + dev_dbg(chip->dev, "p%d: delay RXCLK %s, TXCLK %s\n", port, + reg & MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_RXCLK ? "yes" : "no", + reg & MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_TXCLK ? "yes" : "no"); + + return 0; +} + +int mv88e6352_port_set_rgmii_delay(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode) +{ + if (port < 5) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_rgmii_delay(chip, port, mode); +} + +int mv88e6390_port_set_rgmii_delay(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode) +{ + if (port != 0) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_rgmii_delay(chip, port, mode); +} + +int mv88e6320_port_set_rgmii_delay(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode) +{ + if (port != 2 && port != 5 && port != 6) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_rgmii_delay(chip, port, mode); +} + +int mv88e6xxx_port_set_link(struct mv88e6xxx_chip *chip, int port, int link) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_MAC_CTL, ®); + if (err) + return err; + + reg &= ~(MV88E6XXX_PORT_MAC_CTL_FORCE_LINK | + MV88E6XXX_PORT_MAC_CTL_LINK_UP); + + switch (link) { + case LINK_FORCED_DOWN: + reg |= MV88E6XXX_PORT_MAC_CTL_FORCE_LINK; + break; + case LINK_FORCED_UP: + reg |= MV88E6XXX_PORT_MAC_CTL_FORCE_LINK | + MV88E6XXX_PORT_MAC_CTL_LINK_UP; + break; + case LINK_UNFORCED: + /* normal link detection */ + break; + default: + return -EINVAL; + } + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_MAC_CTL, reg); + if (err) + return err; + + dev_dbg(chip->dev, "p%d: %s link %s\n", port, + reg & MV88E6XXX_PORT_MAC_CTL_FORCE_LINK ? "Force" : "Unforce", + reg & MV88E6XXX_PORT_MAC_CTL_LINK_UP ? "up" : "down"); + + return 0; +} + +int mv88e6xxx_port_sync_link(struct mv88e6xxx_chip *chip, int port, unsigned int mode, bool isup) +{ + const struct mv88e6xxx_ops *ops = chip->info->ops; + int err = 0; + int link; + + if (isup) + link = LINK_FORCED_UP; + else + link = LINK_FORCED_DOWN; + + if (ops->port_set_link) + err = ops->port_set_link(chip, port, link); + + return err; +} + +int mv88e6185_port_sync_link(struct mv88e6xxx_chip *chip, int port, unsigned int mode, bool isup) +{ + const struct mv88e6xxx_ops *ops = chip->info->ops; + int err = 0; + int link; + + if (mode == MLO_AN_INBAND) + link = LINK_UNFORCED; + else if (isup) + link = LINK_FORCED_UP; + else + link = LINK_FORCED_DOWN; + + if (ops->port_set_link) + err = ops->port_set_link(chip, port, link); + + return err; +} + +static int mv88e6xxx_port_set_speed_duplex(struct mv88e6xxx_chip *chip, + int port, int speed, bool alt_bit, + bool force_bit, int duplex) +{ + u16 reg, ctrl; + int err; + + switch (speed) { + case 10: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_10; + break; + case 100: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_100; + break; + case 200: + if (alt_bit) + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_100 | + MV88E6390_PORT_MAC_CTL_ALTSPEED; + else + ctrl = MV88E6065_PORT_MAC_CTL_SPEED_200; + break; + case 1000: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_1000; + break; + case 2500: + if (alt_bit) + ctrl = MV88E6390_PORT_MAC_CTL_SPEED_10000 | + MV88E6390_PORT_MAC_CTL_ALTSPEED; + else + ctrl = MV88E6390_PORT_MAC_CTL_SPEED_10000; + break; + case 10000: + /* all bits set, fall through... */ + case SPEED_UNFORCED: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_UNFORCED; + break; + default: + return -EOPNOTSUPP; + } + + switch (duplex) { + case DUPLEX_HALF: + ctrl |= MV88E6XXX_PORT_MAC_CTL_FORCE_DUPLEX; + break; + case DUPLEX_FULL: + ctrl |= MV88E6XXX_PORT_MAC_CTL_FORCE_DUPLEX | + MV88E6XXX_PORT_MAC_CTL_DUPLEX_FULL; + break; + case DUPLEX_UNFORCED: + /* normal duplex detection */ + break; + default: + return -EOPNOTSUPP; + } + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_MAC_CTL, ®); + if (err) + return err; + + reg &= ~(MV88E6XXX_PORT_MAC_CTL_SPEED_MASK | + MV88E6XXX_PORT_MAC_CTL_FORCE_DUPLEX | + MV88E6XXX_PORT_MAC_CTL_DUPLEX_FULL); + + if (alt_bit) + reg &= ~MV88E6390_PORT_MAC_CTL_ALTSPEED; + if (force_bit) { + reg &= ~MV88E6390_PORT_MAC_CTL_FORCE_SPEED; + if (speed != SPEED_UNFORCED) + ctrl |= MV88E6390_PORT_MAC_CTL_FORCE_SPEED; + } + reg |= ctrl; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_MAC_CTL, reg); + if (err) + return err; + + if (speed != SPEED_UNFORCED) + dev_dbg(chip->dev, "p%d: Speed set to %d Mbps\n", port, speed); + else + dev_dbg(chip->dev, "p%d: Speed unforced\n", port); + dev_dbg(chip->dev, "p%d: %s %s duplex\n", port, + reg & MV88E6XXX_PORT_MAC_CTL_FORCE_DUPLEX ? "Force" : "Unforce", + reg & MV88E6XXX_PORT_MAC_CTL_DUPLEX_FULL ? "full" : "half"); + + return 0; +} + +/* Support 10, 100, 1000 Mbps (e.g. 88E6185 family) */ +int mv88e6185_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex) +{ + if (speed == 200 || speed > 1000) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_speed_duplex(chip, port, speed, false, false, + duplex); +} + +/* Support 10, 100 Mbps (e.g. 88E6250 family) */ +int mv88e6250_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex) +{ + if (speed > 100) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_speed_duplex(chip, port, speed, false, false, + duplex); +} + +/* Support 10, 100, 200, 1000, 2500 Mbps (e.g. 88E6341) */ +int mv88e6341_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex) +{ + if (speed > 2500) + return -EOPNOTSUPP; + + if (speed == 200 && port != 0) + return -EOPNOTSUPP; + + if (speed == 2500 && port < 5) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_speed_duplex(chip, port, speed, !port, true, + duplex); +} + +phy_interface_t mv88e6341_port_max_speed_mode(int port) +{ + if (port == 5) + return PHY_INTERFACE_MODE_2500BASEX; + + return PHY_INTERFACE_MODE_NA; +} + +/* Support 10, 100, 200, 1000 Mbps (e.g. 88E6352 family) */ +int mv88e6352_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex) +{ + if (speed > 1000) + return -EOPNOTSUPP; + + if (speed == 200 && port < 5) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_speed_duplex(chip, port, speed, true, false, + duplex); +} + +/* Support 10, 100, 200, 1000, 2500 Mbps (e.g. 88E6390) */ +int mv88e6390_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex) +{ + if (speed > 2500) + return -EOPNOTSUPP; + + if (speed == 200 && port != 0) + return -EOPNOTSUPP; + + if (speed == 2500 && port < 9) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_speed_duplex(chip, port, speed, true, true, + duplex); +} + +phy_interface_t mv88e6390_port_max_speed_mode(int port) +{ + if (port == 9 || port == 10) + return PHY_INTERFACE_MODE_2500BASEX; + + return PHY_INTERFACE_MODE_NA; +} + +/* Support 10, 100, 200, 1000, 2500, 10000 Mbps (e.g. 88E6190X) */ +int mv88e6390x_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex) +{ + if (speed == 200 && port != 0) + return -EOPNOTSUPP; + + if (speed >= 2500 && port < 9) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_speed_duplex(chip, port, speed, true, true, + duplex); +} + +phy_interface_t mv88e6390x_port_max_speed_mode(int port) +{ + if (port == 9 || port == 10) + return PHY_INTERFACE_MODE_XAUI; + + return PHY_INTERFACE_MODE_NA; +} + +/* Support 10, 100, 200, 1000, 2500, 5000, 10000 Mbps (e.g. 88E6393X) + * Function mv88e6xxx_port_set_speed_duplex() can't be used as the register + * values for speeds 2500 & 5000 conflict. + */ +int mv88e6393x_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex) +{ + u16 reg, ctrl; + int err; + + if (speed == 200 && port != 0) + return -EOPNOTSUPP; + + if (speed >= 2500 && port > 0 && port < 9) + return -EOPNOTSUPP; + + switch (speed) { + case 10: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_10; + break; + case 100: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_100; + break; + case 200: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_100 | + MV88E6390_PORT_MAC_CTL_ALTSPEED; + break; + case 1000: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_1000; + break; + case 2500: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_1000 | + MV88E6390_PORT_MAC_CTL_ALTSPEED; + break; + case 5000: + ctrl = MV88E6390_PORT_MAC_CTL_SPEED_10000 | + MV88E6390_PORT_MAC_CTL_ALTSPEED; + break; + case 10000: + case SPEED_UNFORCED: + ctrl = MV88E6XXX_PORT_MAC_CTL_SPEED_UNFORCED; + break; + default: + return -EOPNOTSUPP; + } + + switch (duplex) { + case DUPLEX_HALF: + ctrl |= MV88E6XXX_PORT_MAC_CTL_FORCE_DUPLEX; + break; + case DUPLEX_FULL: + ctrl |= MV88E6XXX_PORT_MAC_CTL_FORCE_DUPLEX | + MV88E6XXX_PORT_MAC_CTL_DUPLEX_FULL; + break; + case DUPLEX_UNFORCED: + /* normal duplex detection */ + break; + default: + return -EOPNOTSUPP; + } + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_MAC_CTL, ®); + if (err) + return err; + + reg &= ~(MV88E6XXX_PORT_MAC_CTL_SPEED_MASK | + MV88E6390_PORT_MAC_CTL_ALTSPEED | + MV88E6390_PORT_MAC_CTL_FORCE_SPEED); + + if (speed != SPEED_UNFORCED) + reg |= MV88E6390_PORT_MAC_CTL_FORCE_SPEED; + + reg |= ctrl; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_MAC_CTL, reg); + if (err) + return err; + + if (speed != SPEED_UNFORCED) + dev_dbg(chip->dev, "p%d: Speed set to %d Mbps\n", port, speed); + else + dev_dbg(chip->dev, "p%d: Speed unforced\n", port); + dev_dbg(chip->dev, "p%d: %s %s duplex\n", port, + reg & MV88E6XXX_PORT_MAC_CTL_FORCE_DUPLEX ? "Force" : "Unforce", + reg & MV88E6XXX_PORT_MAC_CTL_DUPLEX_FULL ? "full" : "half"); + + return 0; +} + +phy_interface_t mv88e6393x_port_max_speed_mode(int port) +{ + if (port == 0 || port == 9 || port == 10) + return PHY_INTERFACE_MODE_10GBASER; + + return PHY_INTERFACE_MODE_NA; +} + +static int mv88e6xxx_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode, bool force) +{ + u16 cmode; + int lane; + u16 reg; + int err; + + /* Default to a slow mode, so freeing up SERDES interfaces for + * other ports which might use them for SFPs. + */ + if (mode == PHY_INTERFACE_MODE_NA) + mode = PHY_INTERFACE_MODE_1000BASEX; + + switch (mode) { + case PHY_INTERFACE_MODE_RMII: + cmode = MV88E6XXX_PORT_STS_CMODE_RMII; + break; + case PHY_INTERFACE_MODE_RGMII: + case PHY_INTERFACE_MODE_RGMII_ID: + case PHY_INTERFACE_MODE_RGMII_RXID: + case PHY_INTERFACE_MODE_RGMII_TXID: + cmode = MV88E6XXX_PORT_STS_CMODE_RGMII; + break; + case PHY_INTERFACE_MODE_1000BASEX: + cmode = MV88E6XXX_PORT_STS_CMODE_1000BASEX; + break; + case PHY_INTERFACE_MODE_SGMII: + cmode = MV88E6XXX_PORT_STS_CMODE_SGMII; + break; + case PHY_INTERFACE_MODE_2500BASEX: + cmode = MV88E6XXX_PORT_STS_CMODE_2500BASEX; + break; + case PHY_INTERFACE_MODE_5GBASER: + cmode = MV88E6393X_PORT_STS_CMODE_5GBASER; + break; + case PHY_INTERFACE_MODE_XGMII: + case PHY_INTERFACE_MODE_XAUI: + cmode = MV88E6XXX_PORT_STS_CMODE_XAUI; + break; + case PHY_INTERFACE_MODE_RXAUI: + cmode = MV88E6XXX_PORT_STS_CMODE_RXAUI; + break; + case PHY_INTERFACE_MODE_10GBASER: + cmode = MV88E6393X_PORT_STS_CMODE_10GBASER; + break; + default: + cmode = 0; + } + + /* cmode doesn't change, nothing to do for us unless forced */ + if (cmode == chip->ports[port].cmode && !force) + return 0; + + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane >= 0) { + if (chip->ports[port].serdes_irq) { + err = mv88e6xxx_serdes_irq_disable(chip, port, lane); + if (err) + return err; + } + + err = mv88e6xxx_serdes_power_down(chip, port, lane); + if (err) + return err; + } + + chip->ports[port].cmode = 0; + + if (cmode) { + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_STS, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_STS_CMODE_MASK; + reg |= cmode; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_STS, reg); + if (err) + return err; + + chip->ports[port].cmode = cmode; + + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane == -ENODEV) + return 0; + if (lane < 0) + return lane; + + err = mv88e6xxx_serdes_power_up(chip, port, lane); + if (err) + return err; + + if (chip->ports[port].serdes_irq) { + err = mv88e6xxx_serdes_irq_enable(chip, port, lane); + if (err) + return err; + } + } + + return 0; +} + +int mv88e6390x_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode) +{ + if (port != 9 && port != 10) + return -EOPNOTSUPP; + + return mv88e6xxx_port_set_cmode(chip, port, mode, false); +} + +int mv88e6390_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode) +{ + if (port != 9 && port != 10) + return -EOPNOTSUPP; + + switch (mode) { + case PHY_INTERFACE_MODE_NA: + return 0; + case PHY_INTERFACE_MODE_XGMII: + case PHY_INTERFACE_MODE_XAUI: + case PHY_INTERFACE_MODE_RXAUI: + return -EINVAL; + default: + break; + } + + return mv88e6xxx_port_set_cmode(chip, port, mode, false); +} + +int mv88e6393x_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode) +{ + int err; + u16 reg; + + if (port != 0 && port != 9 && port != 10) + return -EOPNOTSUPP; + + if (port == 9 || port == 10) { + switch (mode) { + case PHY_INTERFACE_MODE_RMII: + case PHY_INTERFACE_MODE_RGMII: + case PHY_INTERFACE_MODE_RGMII_ID: + case PHY_INTERFACE_MODE_RGMII_RXID: + case PHY_INTERFACE_MODE_RGMII_TXID: + return -EINVAL; + default: + break; + } + } + + /* mv88e6393x errata 4.5: EEE should be disabled on SERDES ports */ + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_MAC_CTL, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_MAC_CTL_EEE; + reg |= MV88E6XXX_PORT_MAC_CTL_FORCE_EEE; + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_MAC_CTL, reg); + if (err) + return err; + + return mv88e6xxx_port_set_cmode(chip, port, mode, false); +} + +static int mv88e6341_port_set_cmode_writable(struct mv88e6xxx_chip *chip, + int port) +{ + int err, addr; + u16 reg, bits; + + if (port != 5) + return -EOPNOTSUPP; + + addr = chip->info->port_base_addr + port; + + err = mv88e6xxx_port_hidden_read(chip, 0x7, addr, 0, ®); + if (err) + return err; + + bits = MV88E6341_PORT_RESERVED_1A_FORCE_CMODE | + MV88E6341_PORT_RESERVED_1A_SGMII_AN; + + if ((reg & bits) == bits) + return 0; + + reg |= bits; + return mv88e6xxx_port_hidden_write(chip, 0x7, addr, 0, reg); +} + +int mv88e6341_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode) +{ + int err; + + if (port != 5) + return -EOPNOTSUPP; + + switch (mode) { + case PHY_INTERFACE_MODE_NA: + return 0; + case PHY_INTERFACE_MODE_XGMII: + case PHY_INTERFACE_MODE_XAUI: + case PHY_INTERFACE_MODE_RXAUI: + return -EINVAL; + default: + break; + } + + err = mv88e6341_port_set_cmode_writable(chip, port); + if (err) + return err; + + return mv88e6xxx_port_set_cmode(chip, port, mode, true); +} + +int mv88e6185_port_get_cmode(struct mv88e6xxx_chip *chip, int port, u8 *cmode) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_STS, ®); + if (err) + return err; + + *cmode = reg & MV88E6185_PORT_STS_CMODE_MASK; + + return 0; +} + +int mv88e6352_port_get_cmode(struct mv88e6xxx_chip *chip, int port, u8 *cmode) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_STS, ®); + if (err) + return err; + + *cmode = reg & MV88E6XXX_PORT_STS_CMODE_MASK; + + return 0; +} + +/* Offset 0x02: Jamming Control + * + * Do not limit the period of time that this port can be paused for by + * the remote end or the period of time that this port can pause the + * remote end. + */ +int mv88e6097_port_pause_limit(struct mv88e6xxx_chip *chip, int port, u8 in, + u8 out) +{ + return mv88e6xxx_port_write(chip, port, MV88E6097_PORT_JAM_CTL, + out << 8 | in); +} + +int mv88e6390_port_pause_limit(struct mv88e6xxx_chip *chip, int port, u8 in, + u8 out) +{ + int err; + + err = mv88e6xxx_port_write(chip, port, MV88E6390_PORT_FLOW_CTL, + MV88E6390_PORT_FLOW_CTL_UPDATE | + MV88E6390_PORT_FLOW_CTL_LIMIT_IN | in); + if (err) + return err; + + return mv88e6xxx_port_write(chip, port, MV88E6390_PORT_FLOW_CTL, + MV88E6390_PORT_FLOW_CTL_UPDATE | + MV88E6390_PORT_FLOW_CTL_LIMIT_OUT | out); +} + +/* Offset 0x04: Port Control Register */ + +static const char * const mv88e6xxx_port_state_names[] = { + [MV88E6XXX_PORT_CTL0_STATE_DISABLED] = "Disabled", + [MV88E6XXX_PORT_CTL0_STATE_BLOCKING] = "Blocking/Listening", + [MV88E6XXX_PORT_CTL0_STATE_LEARNING] = "Learning", + [MV88E6XXX_PORT_CTL0_STATE_FORWARDING] = "Forwarding", +}; + +int mv88e6xxx_port_set_state(struct mv88e6xxx_chip *chip, int port, u8 state) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL0, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_CTL0_STATE_MASK; + + switch (state) { + case BR_STATE_DISABLED: + state = MV88E6XXX_PORT_CTL0_STATE_DISABLED; + break; + case BR_STATE_BLOCKING: + case BR_STATE_LISTENING: + state = MV88E6XXX_PORT_CTL0_STATE_BLOCKING; + break; + case BR_STATE_LEARNING: + state = MV88E6XXX_PORT_CTL0_STATE_LEARNING; + break; + case BR_STATE_FORWARDING: + state = MV88E6XXX_PORT_CTL0_STATE_FORWARDING; + break; + default: + return -EINVAL; + } + + reg |= state; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); + if (err) + return err; + + dev_dbg(chip->dev, "p%d: PortState set to %s\n", port, + mv88e6xxx_port_state_names[state]); + + return 0; +} + +int mv88e6xxx_port_set_egress_mode(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_egress_mode mode) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL0, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_CTL0_EGRESS_MODE_MASK; + + switch (mode) { + case MV88E6XXX_EGRESS_MODE_UNMODIFIED: + reg |= MV88E6XXX_PORT_CTL0_EGRESS_MODE_UNMODIFIED; + break; + case MV88E6XXX_EGRESS_MODE_UNTAGGED: + reg |= MV88E6XXX_PORT_CTL0_EGRESS_MODE_UNTAGGED; + break; + case MV88E6XXX_EGRESS_MODE_TAGGED: + reg |= MV88E6XXX_PORT_CTL0_EGRESS_MODE_TAGGED; + break; + case MV88E6XXX_EGRESS_MODE_ETHERTYPE: + reg |= MV88E6XXX_PORT_CTL0_EGRESS_MODE_ETHER_TYPE_DSA; + break; + default: + return -EINVAL; + } + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); +} + +int mv88e6085_port_set_frame_mode(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_frame_mode mode) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL0, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_CTL0_FRAME_MODE_MASK; + + switch (mode) { + case MV88E6XXX_FRAME_MODE_NORMAL: + reg |= MV88E6XXX_PORT_CTL0_FRAME_MODE_NORMAL; + break; + case MV88E6XXX_FRAME_MODE_DSA: + reg |= MV88E6XXX_PORT_CTL0_FRAME_MODE_DSA; + break; + default: + return -EINVAL; + } + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); +} + +int mv88e6351_port_set_frame_mode(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_frame_mode mode) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL0, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_CTL0_FRAME_MODE_MASK; + + switch (mode) { + case MV88E6XXX_FRAME_MODE_NORMAL: + reg |= MV88E6XXX_PORT_CTL0_FRAME_MODE_NORMAL; + break; + case MV88E6XXX_FRAME_MODE_DSA: + reg |= MV88E6XXX_PORT_CTL0_FRAME_MODE_DSA; + break; + case MV88E6XXX_FRAME_MODE_PROVIDER: + reg |= MV88E6XXX_PORT_CTL0_FRAME_MODE_PROVIDER; + break; + case MV88E6XXX_FRAME_MODE_ETHERTYPE: + reg |= MV88E6XXX_PORT_CTL0_FRAME_MODE_ETHER_TYPE_DSA; + break; + default: + return -EINVAL; + } + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); +} + +int mv88e6185_port_set_forward_unknown(struct mv88e6xxx_chip *chip, + int port, bool unicast) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL0, ®); + if (err) + return err; + + if (unicast) + reg |= MV88E6185_PORT_CTL0_FORWARD_UNKNOWN; + else + reg &= ~MV88E6185_PORT_CTL0_FORWARD_UNKNOWN; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); +} + +int mv88e6352_port_set_ucast_flood(struct mv88e6xxx_chip *chip, int port, + bool unicast) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL0, ®); + if (err) + return err; + + if (unicast) + reg |= MV88E6352_PORT_CTL0_EGRESS_FLOODS_UC; + else + reg &= ~MV88E6352_PORT_CTL0_EGRESS_FLOODS_UC; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); +} + +int mv88e6352_port_set_mcast_flood(struct mv88e6xxx_chip *chip, int port, + bool multicast) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL0, ®); + if (err) + return err; + + if (multicast) + reg |= MV88E6352_PORT_CTL0_EGRESS_FLOODS_MC; + else + reg &= ~MV88E6352_PORT_CTL0_EGRESS_FLOODS_MC; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); +} + +/* Offset 0x05: Port Control 1 */ + +int mv88e6xxx_port_set_message_port(struct mv88e6xxx_chip *chip, int port, + bool message_port) +{ + u16 val; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL1, &val); + if (err) + return err; + + if (message_port) + val |= MV88E6XXX_PORT_CTL1_MESSAGE_PORT; + else + val &= ~MV88E6XXX_PORT_CTL1_MESSAGE_PORT; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL1, val); +} + +int mv88e6xxx_port_set_trunk(struct mv88e6xxx_chip *chip, int port, + bool trunk, u8 id) +{ + u16 val; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL1, &val); + if (err) + return err; + + val &= ~MV88E6XXX_PORT_CTL1_TRUNK_ID_MASK; + + if (trunk) + val |= MV88E6XXX_PORT_CTL1_TRUNK_PORT | + (id << MV88E6XXX_PORT_CTL1_TRUNK_ID_SHIFT); + else + val &= ~MV88E6XXX_PORT_CTL1_TRUNK_PORT; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL1, val); +} + +/* Offset 0x06: Port Based VLAN Map */ + +int mv88e6xxx_port_set_vlan_map(struct mv88e6xxx_chip *chip, int port, u16 map) +{ + const u16 mask = mv88e6xxx_port_mask(chip); + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_BASE_VLAN, ®); + if (err) + return err; + + reg &= ~mask; + reg |= map & mask; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_BASE_VLAN, reg); + if (err) + return err; + + dev_dbg(chip->dev, "p%d: VLANTable set to %.3x\n", port, map); + + return 0; +} + +int mv88e6xxx_port_get_fid(struct mv88e6xxx_chip *chip, int port, u16 *fid) +{ + const u16 upper_mask = (mv88e6xxx_num_databases(chip) - 1) >> 4; + u16 reg; + int err; + + /* Port's default FID lower 4 bits are located in reg 0x06, offset 12 */ + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_BASE_VLAN, ®); + if (err) + return err; + + *fid = (reg & 0xf000) >> 12; + + /* Port's default FID upper bits are located in reg 0x05, offset 0 */ + if (upper_mask) { + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL1, + ®); + if (err) + return err; + + *fid |= (reg & upper_mask) << 4; + } + + return 0; +} + +int mv88e6xxx_port_set_fid(struct mv88e6xxx_chip *chip, int port, u16 fid) +{ + const u16 upper_mask = (mv88e6xxx_num_databases(chip) - 1) >> 4; + u16 reg; + int err; + + if (fid >= mv88e6xxx_num_databases(chip)) + return -EINVAL; + + /* Port's default FID lower 4 bits are located in reg 0x06, offset 12 */ + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_BASE_VLAN, ®); + if (err) + return err; + + reg &= 0x0fff; + reg |= (fid & 0x000f) << 12; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_BASE_VLAN, reg); + if (err) + return err; + + /* Port's default FID upper bits are located in reg 0x05, offset 0 */ + if (upper_mask) { + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL1, + ®); + if (err) + return err; + + reg &= ~upper_mask; + reg |= (fid >> 4) & upper_mask; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL1, + reg); + if (err) + return err; + } + + dev_dbg(chip->dev, "p%d: FID set to %u\n", port, fid); + + return 0; +} + +/* Offset 0x07: Default Port VLAN ID & Priority */ + +int mv88e6xxx_port_get_pvid(struct mv88e6xxx_chip *chip, int port, u16 *pvid) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_DEFAULT_VLAN, + ®); + if (err) + return err; + + *pvid = reg & MV88E6XXX_PORT_DEFAULT_VLAN_MASK; + + return 0; +} + +int mv88e6xxx_port_set_pvid(struct mv88e6xxx_chip *chip, int port, u16 pvid) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_DEFAULT_VLAN, + ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_DEFAULT_VLAN_MASK; + reg |= pvid & MV88E6XXX_PORT_DEFAULT_VLAN_MASK; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_DEFAULT_VLAN, + reg); + if (err) + return err; + + dev_dbg(chip->dev, "p%d: DefaultVID set to %u\n", port, pvid); + + return 0; +} + +/* Offset 0x08: Port Control 2 Register */ + +static const char * const mv88e6xxx_port_8021q_mode_names[] = { + [MV88E6XXX_PORT_CTL2_8021Q_MODE_DISABLED] = "Disabled", + [MV88E6XXX_PORT_CTL2_8021Q_MODE_FALLBACK] = "Fallback", + [MV88E6XXX_PORT_CTL2_8021Q_MODE_CHECK] = "Check", + [MV88E6XXX_PORT_CTL2_8021Q_MODE_SECURE] = "Secure", +}; + +int mv88e6185_port_set_default_forward(struct mv88e6xxx_chip *chip, + int port, bool multicast) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL2, ®); + if (err) + return err; + + if (multicast) + reg |= MV88E6XXX_PORT_CTL2_DEFAULT_FORWARD; + else + reg &= ~MV88E6XXX_PORT_CTL2_DEFAULT_FORWARD; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL2, reg); +} + +int mv88e6095_port_set_upstream_port(struct mv88e6xxx_chip *chip, int port, + int upstream_port) +{ + int err; + u16 reg; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL2, ®); + if (err) + return err; + + reg &= ~MV88E6095_PORT_CTL2_CPU_PORT_MASK; + reg |= upstream_port; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL2, reg); +} + +int mv88e6xxx_port_set_mirror(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_egress_direction direction, + bool mirror) +{ + bool *mirror_port; + u16 reg; + u16 bit; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL2, ®); + if (err) + return err; + + switch (direction) { + case MV88E6XXX_EGRESS_DIR_INGRESS: + bit = MV88E6XXX_PORT_CTL2_INGRESS_MONITOR; + mirror_port = &chip->ports[port].mirror_ingress; + break; + case MV88E6XXX_EGRESS_DIR_EGRESS: + bit = MV88E6XXX_PORT_CTL2_EGRESS_MONITOR; + mirror_port = &chip->ports[port].mirror_egress; + break; + default: + return -EINVAL; + } + + reg &= ~bit; + if (mirror) + reg |= bit; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL2, reg); + if (!err) + *mirror_port = mirror; + + return err; +} + +int mv88e6xxx_port_set_lock(struct mv88e6xxx_chip *chip, int port, + bool locked) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL0, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_CTL0_SA_FILT_MASK; + if (locked) + reg |= MV88E6XXX_PORT_CTL0_SA_FILT_DROP_ON_LOCK; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL0, reg); + if (err) + return err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_ASSOC_VECTOR, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_ASSOC_VECTOR_LOCKED_PORT; + if (locked) + reg |= MV88E6XXX_PORT_ASSOC_VECTOR_LOCKED_PORT; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_ASSOC_VECTOR, reg); +} + +int mv88e6xxx_port_set_8021q_mode(struct mv88e6xxx_chip *chip, int port, + u16 mode) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL2, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_CTL2_8021Q_MODE_MASK; + reg |= mode & MV88E6XXX_PORT_CTL2_8021Q_MODE_MASK; + + err = mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL2, reg); + if (err) + return err; + + dev_dbg(chip->dev, "p%d: 802.1QMode set to %s\n", port, + mv88e6xxx_port_8021q_mode_names[mode]); + + return 0; +} + +int mv88e6xxx_port_drop_untagged(struct mv88e6xxx_chip *chip, int port, + bool drop_untagged) +{ + u16 old, new; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL2, &old); + if (err) + return err; + + if (drop_untagged) + new = old | MV88E6XXX_PORT_CTL2_DISCARD_UNTAGGED; + else + new = old & ~MV88E6XXX_PORT_CTL2_DISCARD_UNTAGGED; + + if (new == old) + return 0; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL2, new); +} + +int mv88e6xxx_port_set_map_da(struct mv88e6xxx_chip *chip, int port, bool map) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL2, ®); + if (err) + return err; + + if (map) + reg |= MV88E6XXX_PORT_CTL2_MAP_DA; + else + reg &= ~MV88E6XXX_PORT_CTL2_MAP_DA; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL2, reg); +} + +int mv88e6165_port_set_jumbo_size(struct mv88e6xxx_chip *chip, int port, + size_t size) +{ + u16 reg; + int err; + + size += VLAN_ETH_HLEN + ETH_FCS_LEN; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_CTL2, ®); + if (err) + return err; + + reg &= ~MV88E6XXX_PORT_CTL2_JUMBO_MODE_MASK; + + if (size <= 1522) + reg |= MV88E6XXX_PORT_CTL2_JUMBO_MODE_1522; + else if (size <= 2048) + reg |= MV88E6XXX_PORT_CTL2_JUMBO_MODE_2048; + else if (size <= 10240) + reg |= MV88E6XXX_PORT_CTL2_JUMBO_MODE_10240; + else + return -ERANGE; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_CTL2, reg); +} + +/* Offset 0x09: Port Rate Control */ + +int mv88e6095_port_egress_rate_limiting(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_EGRESS_RATE_CTL1, + 0x0000); +} + +int mv88e6097_port_egress_rate_limiting(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_EGRESS_RATE_CTL1, + 0x0001); +} + +/* Offset 0x0B: Port Association Vector */ + +int mv88e6xxx_port_set_assoc_vector(struct mv88e6xxx_chip *chip, int port, + u16 pav) +{ + u16 reg, mask; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_ASSOC_VECTOR, + ®); + if (err) + return err; + + mask = mv88e6xxx_port_mask(chip); + reg &= ~mask; + reg |= pav & mask; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_ASSOC_VECTOR, + reg); +} + +/* Offset 0x0C: Port ATU Control */ + +int mv88e6xxx_port_disable_learn_limit(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_ATU_CTL, 0); +} + +/* Offset 0x0D: (Priority) Override Register */ + +int mv88e6xxx_port_disable_pri_override(struct mv88e6xxx_chip *chip, int port) +{ + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_PRI_OVERRIDE, 0); +} + +/* Offset 0x0E: Policy & MGMT Control Register for FAMILY 6191X 6193X 6393X */ + +static int mv88e6393x_port_policy_read(struct mv88e6xxx_chip *chip, int port, + u16 pointer, u8 *data) +{ + u16 reg; + int err; + + err = mv88e6xxx_port_write(chip, port, MV88E6393X_PORT_POLICY_MGMT_CTL, + pointer); + if (err) + return err; + + err = mv88e6xxx_port_read(chip, port, MV88E6393X_PORT_POLICY_MGMT_CTL, + ®); + if (err) + return err; + + *data = reg; + + return 0; +} + +static int mv88e6393x_port_policy_write(struct mv88e6xxx_chip *chip, int port, + u16 pointer, u8 data) +{ + u16 reg; + + reg = MV88E6393X_PORT_POLICY_MGMT_CTL_UPDATE | pointer | data; + + return mv88e6xxx_port_write(chip, port, MV88E6393X_PORT_POLICY_MGMT_CTL, + reg); +} + +static int mv88e6393x_port_policy_write_all(struct mv88e6xxx_chip *chip, + u16 pointer, u8 data) +{ + int err, port; + + for (port = 0; port < mv88e6xxx_num_ports(chip); port++) { + if (dsa_is_unused_port(chip->ds, port)) + continue; + + err = mv88e6393x_port_policy_write(chip, port, pointer, data); + if (err) + return err; + } + + return 0; +} + +int mv88e6393x_set_egress_port(struct mv88e6xxx_chip *chip, + enum mv88e6xxx_egress_direction direction, + int port) +{ + u16 ptr; + int err; + + switch (direction) { + case MV88E6XXX_EGRESS_DIR_INGRESS: + ptr = MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_INGRESS_DEST; + err = mv88e6393x_port_policy_write_all(chip, ptr, port); + if (err) + return err; + break; + case MV88E6XXX_EGRESS_DIR_EGRESS: + ptr = MV88E6393X_G2_EGRESS_MONITOR_DEST; + err = mv88e6xxx_g2_write(chip, ptr, port); + if (err) + return err; + break; + } + + return 0; +} + +int mv88e6393x_port_set_upstream_port(struct mv88e6xxx_chip *chip, int port, + int upstream_port) +{ + u16 ptr = MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_CPU_DEST; + u8 data = MV88E6393X_PORT_POLICY_MGMT_CTL_CPU_DEST_MGMTPRI | + upstream_port; + + return mv88e6393x_port_policy_write(chip, port, ptr, data); +} + +int mv88e6393x_port_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip) +{ + u16 ptr; + int err; + + /* Consider the frames with reserved multicast destination + * addresses matching 01:80:c2:00:00:00 and + * 01:80:c2:00:00:02 as MGMT. + */ + ptr = MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_01C280000000XLO; + err = mv88e6393x_port_policy_write_all(chip, ptr, 0xff); + if (err) + return err; + + ptr = MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_01C280000000XHI; + err = mv88e6393x_port_policy_write_all(chip, ptr, 0xff); + if (err) + return err; + + ptr = MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_01C280000002XLO; + err = mv88e6393x_port_policy_write_all(chip, ptr, 0xff); + if (err) + return err; + + ptr = MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_01C280000002XHI; + err = mv88e6393x_port_policy_write_all(chip, ptr, 0xff); + if (err) + return err; + + return 0; +} + +/* Offset 0x10 & 0x11: EPC */ + +static int mv88e6393x_port_epc_wait_ready(struct mv88e6xxx_chip *chip, int port) +{ + int bit = __bf_shf(MV88E6393X_PORT_EPC_CMD_BUSY); + + return mv88e6xxx_port_wait_bit(chip, port, MV88E6393X_PORT_EPC_CMD, bit, 0); +} + +/* Port Ether type for 6393X family */ + +int mv88e6393x_port_set_ether_type(struct mv88e6xxx_chip *chip, int port, + u16 etype) +{ + u16 val; + int err; + + err = mv88e6393x_port_epc_wait_ready(chip, port); + if (err) + return err; + + err = mv88e6xxx_port_write(chip, port, MV88E6393X_PORT_EPC_DATA, etype); + if (err) + return err; + + val = MV88E6393X_PORT_EPC_CMD_BUSY | + MV88E6393X_PORT_EPC_CMD_WRITE | + MV88E6393X_PORT_EPC_INDEX_PORT_ETYPE; + + return mv88e6xxx_port_write(chip, port, MV88E6393X_PORT_EPC_CMD, val); +} + +/* Offset 0x0f: Port Ether type */ + +int mv88e6351_port_set_ether_type(struct mv88e6xxx_chip *chip, int port, + u16 etype) +{ + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_ETH_TYPE, etype); +} + +/* Offset 0x18: Port IEEE Priority Remapping Registers [0-3] + * Offset 0x19: Port IEEE Priority Remapping Registers [4-7] + */ + +int mv88e6095_port_tag_remap(struct mv88e6xxx_chip *chip, int port) +{ + int err; + + /* Use a direct priority mapping for all IEEE tagged frames */ + err = mv88e6xxx_port_write(chip, port, + MV88E6095_PORT_IEEE_PRIO_REMAP_0123, + 0x3210); + if (err) + return err; + + return mv88e6xxx_port_write(chip, port, + MV88E6095_PORT_IEEE_PRIO_REMAP_4567, + 0x7654); +} + +static int mv88e6xxx_port_ieeepmt_write(struct mv88e6xxx_chip *chip, + int port, u16 table, u8 ptr, u16 data) +{ + u16 reg; + + reg = MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_UPDATE | table | + (ptr << __bf_shf(MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_PTR_MASK)) | + (data & MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_DATA_MASK); + + return mv88e6xxx_port_write(chip, port, + MV88E6390_PORT_IEEE_PRIO_MAP_TABLE, reg); +} + +int mv88e6390_port_tag_remap(struct mv88e6xxx_chip *chip, int port) +{ + int err, i; + u16 table; + + for (i = 0; i <= 7; i++) { + table = MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_INGRESS_PCP; + err = mv88e6xxx_port_ieeepmt_write(chip, port, table, i, + (i | i << 4)); + if (err) + return err; + + table = MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_GREEN_PCP; + err = mv88e6xxx_port_ieeepmt_write(chip, port, table, i, i); + if (err) + return err; + + table = MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_YELLOW_PCP; + err = mv88e6xxx_port_ieeepmt_write(chip, port, table, i, i); + if (err) + return err; + + table = MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_AVB_PCP; + err = mv88e6xxx_port_ieeepmt_write(chip, port, table, i, i); + if (err) + return err; + } + + return 0; +} + +/* Offset 0x0E: Policy Control Register */ + +static int +mv88e6xxx_port_policy_mapping_get_pos(enum mv88e6xxx_policy_mapping mapping, + enum mv88e6xxx_policy_action action, + u16 *mask, u16 *val, int *shift) +{ + switch (mapping) { + case MV88E6XXX_POLICY_MAPPING_DA: + *shift = __bf_shf(MV88E6XXX_PORT_POLICY_CTL_DA_MASK); + *mask = MV88E6XXX_PORT_POLICY_CTL_DA_MASK; + break; + case MV88E6XXX_POLICY_MAPPING_SA: + *shift = __bf_shf(MV88E6XXX_PORT_POLICY_CTL_SA_MASK); + *mask = MV88E6XXX_PORT_POLICY_CTL_SA_MASK; + break; + case MV88E6XXX_POLICY_MAPPING_VTU: + *shift = __bf_shf(MV88E6XXX_PORT_POLICY_CTL_VTU_MASK); + *mask = MV88E6XXX_PORT_POLICY_CTL_VTU_MASK; + break; + case MV88E6XXX_POLICY_MAPPING_ETYPE: + *shift = __bf_shf(MV88E6XXX_PORT_POLICY_CTL_ETYPE_MASK); + *mask = MV88E6XXX_PORT_POLICY_CTL_ETYPE_MASK; + break; + case MV88E6XXX_POLICY_MAPPING_PPPOE: + *shift = __bf_shf(MV88E6XXX_PORT_POLICY_CTL_PPPOE_MASK); + *mask = MV88E6XXX_PORT_POLICY_CTL_PPPOE_MASK; + break; + case MV88E6XXX_POLICY_MAPPING_VBAS: + *shift = __bf_shf(MV88E6XXX_PORT_POLICY_CTL_VBAS_MASK); + *mask = MV88E6XXX_PORT_POLICY_CTL_VBAS_MASK; + break; + case MV88E6XXX_POLICY_MAPPING_OPT82: + *shift = __bf_shf(MV88E6XXX_PORT_POLICY_CTL_OPT82_MASK); + *mask = MV88E6XXX_PORT_POLICY_CTL_OPT82_MASK; + break; + case MV88E6XXX_POLICY_MAPPING_UDP: + *shift = __bf_shf(MV88E6XXX_PORT_POLICY_CTL_UDP_MASK); + *mask = MV88E6XXX_PORT_POLICY_CTL_UDP_MASK; + break; + default: + return -EOPNOTSUPP; + } + + switch (action) { + case MV88E6XXX_POLICY_ACTION_NORMAL: + *val = MV88E6XXX_PORT_POLICY_CTL_NORMAL; + break; + case MV88E6XXX_POLICY_ACTION_MIRROR: + *val = MV88E6XXX_PORT_POLICY_CTL_MIRROR; + break; + case MV88E6XXX_POLICY_ACTION_TRAP: + *val = MV88E6XXX_PORT_POLICY_CTL_TRAP; + break; + case MV88E6XXX_POLICY_ACTION_DISCARD: + *val = MV88E6XXX_PORT_POLICY_CTL_DISCARD; + break; + default: + return -EOPNOTSUPP; + } + + return 0; +} + +int mv88e6352_port_set_policy(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_policy_mapping mapping, + enum mv88e6xxx_policy_action action) +{ + u16 reg, mask, val; + int shift; + int err; + + err = mv88e6xxx_port_policy_mapping_get_pos(mapping, action, &mask, + &val, &shift); + if (err) + return err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_POLICY_CTL, ®); + if (err) + return err; + + reg &= ~mask; + reg |= (val << shift) & mask; + + return mv88e6xxx_port_write(chip, port, MV88E6XXX_PORT_POLICY_CTL, reg); +} + +int mv88e6393x_port_set_policy(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_policy_mapping mapping, + enum mv88e6xxx_policy_action action) +{ + u16 mask, val; + int shift; + int err; + u16 ptr; + u8 reg; + + err = mv88e6xxx_port_policy_mapping_get_pos(mapping, action, &mask, + &val, &shift); + if (err) + return err; + + /* The 16-bit Port Policy CTL register from older chips is on 6393x + * changed to Port Policy MGMT CTL, which can access more data, but + * indirectly. The original 16-bit value is divided into two 8-bit + * registers. + */ + ptr = shift / 8; + shift %= 8; + mask >>= ptr * 8; + + err = mv88e6393x_port_policy_read(chip, port, ptr, ®); + if (err) + return err; + + reg &= ~mask; + reg |= (val << shift) & mask; + + return mv88e6393x_port_policy_write(chip, port, ptr, reg); +} diff --git a/drivers/net/dsa/mv88e6xxx/port.h b/drivers/net/dsa/mv88e6xxx/port.h new file mode 100644 index 000000000..d19b6303b --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/port.h @@ -0,0 +1,456 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx Switch Port Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016-2017 Savoir-faire Linux Inc. + * Vivien Didelot <vivien.didelot@savoirfairelinux.com> + */ + +#ifndef _MV88E6XXX_PORT_H +#define _MV88E6XXX_PORT_H + +#include "chip.h" + +/* Offset 0x00: Port Status Register */ +#define MV88E6XXX_PORT_STS 0x00 +#define MV88E6XXX_PORT_STS_PAUSE_EN 0x8000 +#define MV88E6XXX_PORT_STS_MY_PAUSE 0x4000 +#define MV88E6XXX_PORT_STS_HD_FLOW 0x2000 +#define MV88E6XXX_PORT_STS_PHY_DETECT 0x1000 +#define MV88E6250_PORT_STS_LINK 0x1000 +#define MV88E6250_PORT_STS_PORTMODE_MASK 0x0f00 +#define MV88E6250_PORT_STS_PORTMODE_PHY_10_HALF 0x0800 +#define MV88E6250_PORT_STS_PORTMODE_PHY_100_HALF 0x0900 +#define MV88E6250_PORT_STS_PORTMODE_PHY_10_FULL 0x0a00 +#define MV88E6250_PORT_STS_PORTMODE_PHY_100_FULL 0x0b00 +#define MV88E6250_PORT_STS_PORTMODE_MII_10_HALF 0x0c00 +#define MV88E6250_PORT_STS_PORTMODE_MII_100_HALF 0x0d00 +#define MV88E6250_PORT_STS_PORTMODE_MII_10_FULL 0x0e00 +#define MV88E6250_PORT_STS_PORTMODE_MII_100_FULL 0x0f00 +#define MV88E6XXX_PORT_STS_LINK 0x0800 +#define MV88E6XXX_PORT_STS_DUPLEX 0x0400 +#define MV88E6XXX_PORT_STS_SPEED_MASK 0x0300 +#define MV88E6XXX_PORT_STS_SPEED_10 0x0000 +#define MV88E6XXX_PORT_STS_SPEED_100 0x0100 +#define MV88E6XXX_PORT_STS_SPEED_1000 0x0200 +#define MV88E6XXX_PORT_STS_SPEED_10000 0x0300 +#define MV88E6352_PORT_STS_EEE 0x0040 +#define MV88E6165_PORT_STS_AM_DIS 0x0040 +#define MV88E6185_PORT_STS_MGMII 0x0040 +#define MV88E6XXX_PORT_STS_TX_PAUSED 0x0020 +#define MV88E6XXX_PORT_STS_FLOW_CTL 0x0010 +#define MV88E6XXX_PORT_STS_CMODE_MASK 0x000f +#define MV88E6XXX_PORT_STS_CMODE_MII_PHY 0x0001 +#define MV88E6XXX_PORT_STS_CMODE_MII 0x0002 +#define MV88E6XXX_PORT_STS_CMODE_GMII 0x0003 +#define MV88E6XXX_PORT_STS_CMODE_RMII_PHY 0x0004 +#define MV88E6XXX_PORT_STS_CMODE_RMII 0x0005 +#define MV88E6XXX_PORT_STS_CMODE_RGMII 0x0007 +#define MV88E6XXX_PORT_STS_CMODE_100BASEX 0x0008 +#define MV88E6XXX_PORT_STS_CMODE_1000BASEX 0x0009 +#define MV88E6XXX_PORT_STS_CMODE_SGMII 0x000a +#define MV88E6XXX_PORT_STS_CMODE_2500BASEX 0x000b +#define MV88E6XXX_PORT_STS_CMODE_XAUI 0x000c +#define MV88E6XXX_PORT_STS_CMODE_RXAUI 0x000d +#define MV88E6393X_PORT_STS_CMODE_5GBASER 0x000c +#define MV88E6393X_PORT_STS_CMODE_10GBASER 0x000d +#define MV88E6393X_PORT_STS_CMODE_USXGMII 0x000e +#define MV88E6185_PORT_STS_CDUPLEX 0x0008 +#define MV88E6185_PORT_STS_CMODE_MASK 0x0007 +#define MV88E6185_PORT_STS_CMODE_GMII_FD 0x0000 +#define MV88E6185_PORT_STS_CMODE_MII_100_FD_PS 0x0001 +#define MV88E6185_PORT_STS_CMODE_MII_100 0x0002 +#define MV88E6185_PORT_STS_CMODE_MII_10 0x0003 +#define MV88E6185_PORT_STS_CMODE_SERDES 0x0004 +#define MV88E6185_PORT_STS_CMODE_1000BASE_X 0x0005 +#define MV88E6185_PORT_STS_CMODE_PHY 0x0006 +#define MV88E6185_PORT_STS_CMODE_DISABLED 0x0007 + +/* Offset 0x01: MAC (or PCS or Physical) Control Register */ +#define MV88E6XXX_PORT_MAC_CTL 0x01 +#define MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_RXCLK 0x8000 +#define MV88E6XXX_PORT_MAC_CTL_RGMII_DELAY_TXCLK 0x4000 +#define MV88E6185_PORT_MAC_CTL_SYNC_OK 0x4000 +#define MV88E6390_PORT_MAC_CTL_FORCE_SPEED 0x2000 +#define MV88E6390_PORT_MAC_CTL_ALTSPEED 0x1000 +#define MV88E6352_PORT_MAC_CTL_200BASE 0x1000 +#define MV88E6XXX_PORT_MAC_CTL_EEE 0x0200 +#define MV88E6XXX_PORT_MAC_CTL_FORCE_EEE 0x0100 +#define MV88E6185_PORT_MAC_CTL_AN_EN 0x0400 +#define MV88E6185_PORT_MAC_CTL_AN_RESTART 0x0200 +#define MV88E6185_PORT_MAC_CTL_AN_DONE 0x0100 +#define MV88E6XXX_PORT_MAC_CTL_FC 0x0080 +#define MV88E6XXX_PORT_MAC_CTL_FORCE_FC 0x0040 +#define MV88E6XXX_PORT_MAC_CTL_LINK_UP 0x0020 +#define MV88E6XXX_PORT_MAC_CTL_FORCE_LINK 0x0010 +#define MV88E6XXX_PORT_MAC_CTL_DUPLEX_FULL 0x0008 +#define MV88E6XXX_PORT_MAC_CTL_FORCE_DUPLEX 0x0004 +#define MV88E6XXX_PORT_MAC_CTL_SPEED_MASK 0x0003 +#define MV88E6XXX_PORT_MAC_CTL_SPEED_10 0x0000 +#define MV88E6XXX_PORT_MAC_CTL_SPEED_100 0x0001 +#define MV88E6065_PORT_MAC_CTL_SPEED_200 0x0002 +#define MV88E6XXX_PORT_MAC_CTL_SPEED_1000 0x0002 +#define MV88E6390_PORT_MAC_CTL_SPEED_10000 0x0003 +#define MV88E6XXX_PORT_MAC_CTL_SPEED_UNFORCED 0x0003 + +/* Offset 0x02: Jamming Control Register */ +#define MV88E6097_PORT_JAM_CTL 0x02 +#define MV88E6097_PORT_JAM_CTL_LIMIT_OUT_MASK 0xff00 +#define MV88E6097_PORT_JAM_CTL_LIMIT_IN_MASK 0x00ff + +/* Offset 0x02: Flow Control Register */ +#define MV88E6390_PORT_FLOW_CTL 0x02 +#define MV88E6390_PORT_FLOW_CTL_UPDATE 0x8000 +#define MV88E6390_PORT_FLOW_CTL_PTR_MASK 0x7f00 +#define MV88E6390_PORT_FLOW_CTL_LIMIT_IN 0x0000 +#define MV88E6390_PORT_FLOW_CTL_LIMIT_OUT 0x0100 +#define MV88E6390_PORT_FLOW_CTL_DATA_MASK 0x00ff + +/* Offset 0x03: Switch Identifier Register */ +#define MV88E6XXX_PORT_SWITCH_ID 0x03 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_MASK 0xfff0 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6085 0x04a0 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6095 0x0950 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6097 0x0990 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6190X 0x0a00 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6390X 0x0a10 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6131 0x1060 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6320 0x1150 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6123 0x1210 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6161 0x1610 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6165 0x1650 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6171 0x1710 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6172 0x1720 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6175 0x1750 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6176 0x1760 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6190 0x1900 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6191 0x1910 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6191X 0x1920 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6193X 0x1930 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6185 0x1a70 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6220 0x2200 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6240 0x2400 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6250 0x2500 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6290 0x2900 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6321 0x3100 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6141 0x3400 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6341 0x3410 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6352 0x3520 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6350 0x3710 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6351 0x3750 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6390 0x3900 +#define MV88E6XXX_PORT_SWITCH_ID_PROD_6393X 0x3930 +#define MV88E6XXX_PORT_SWITCH_ID_REV_MASK 0x000f + +/* Offset 0x04: Port Control Register */ +#define MV88E6XXX_PORT_CTL0 0x04 +#define MV88E6XXX_PORT_CTL0_USE_CORE_TAG 0x8000 +#define MV88E6XXX_PORT_CTL0_SA_FILT_MASK 0xc000 +#define MV88E6XXX_PORT_CTL0_SA_FILT_DISABLED 0x0000 +#define MV88E6XXX_PORT_CTL0_SA_FILT_DROP_ON_LOCK 0x4000 +#define MV88E6XXX_PORT_CTL0_SA_FILT_DROP_ON_UNLOCK 0x8000 +#define MV88E6XXX_PORT_CTL0_SA_FILT_DROP_ON_CPU 0xc000 +#define MV88E6XXX_PORT_CTL0_EGRESS_MODE_MASK 0x3000 +#define MV88E6XXX_PORT_CTL0_EGRESS_MODE_UNMODIFIED 0x0000 +#define MV88E6XXX_PORT_CTL0_EGRESS_MODE_UNTAGGED 0x1000 +#define MV88E6XXX_PORT_CTL0_EGRESS_MODE_TAGGED 0x2000 +#define MV88E6XXX_PORT_CTL0_EGRESS_MODE_ETHER_TYPE_DSA 0x3000 +#define MV88E6XXX_PORT_CTL0_HEADER 0x0800 +#define MV88E6XXX_PORT_CTL0_IGMP_MLD_SNOOP 0x0400 +#define MV88E6XXX_PORT_CTL0_DOUBLE_TAG 0x0200 +#define MV88E6XXX_PORT_CTL0_FRAME_MODE_MASK 0x0300 +#define MV88E6XXX_PORT_CTL0_FRAME_MODE_NORMAL 0x0000 +#define MV88E6XXX_PORT_CTL0_FRAME_MODE_DSA 0x0100 +#define MV88E6XXX_PORT_CTL0_FRAME_MODE_PROVIDER 0x0200 +#define MV88E6XXX_PORT_CTL0_FRAME_MODE_ETHER_TYPE_DSA 0x0300 +#define MV88E6XXX_PORT_CTL0_DSA_TAG 0x0100 +#define MV88E6XXX_PORT_CTL0_VLAN_TUNNEL 0x0080 +#define MV88E6XXX_PORT_CTL0_TAG_IF_BOTH 0x0040 +#define MV88E6185_PORT_CTL0_USE_IP 0x0020 +#define MV88E6185_PORT_CTL0_USE_TAG 0x0010 +#define MV88E6185_PORT_CTL0_FORWARD_UNKNOWN 0x0004 +#define MV88E6352_PORT_CTL0_EGRESS_FLOODS_UC 0x0004 +#define MV88E6352_PORT_CTL0_EGRESS_FLOODS_MC 0x0008 +#define MV88E6XXX_PORT_CTL0_STATE_MASK 0x0003 +#define MV88E6XXX_PORT_CTL0_STATE_DISABLED 0x0000 +#define MV88E6XXX_PORT_CTL0_STATE_BLOCKING 0x0001 +#define MV88E6XXX_PORT_CTL0_STATE_LEARNING 0x0002 +#define MV88E6XXX_PORT_CTL0_STATE_FORWARDING 0x0003 + +/* Offset 0x05: Port Control 1 */ +#define MV88E6XXX_PORT_CTL1 0x05 +#define MV88E6XXX_PORT_CTL1_MESSAGE_PORT 0x8000 +#define MV88E6XXX_PORT_CTL1_TRUNK_PORT 0x4000 +#define MV88E6XXX_PORT_CTL1_TRUNK_ID_MASK 0x0f00 +#define MV88E6XXX_PORT_CTL1_TRUNK_ID_SHIFT 8 +#define MV88E6XXX_PORT_CTL1_FID_11_4_MASK 0x00ff + +/* Offset 0x06: Port Based VLAN Map */ +#define MV88E6XXX_PORT_BASE_VLAN 0x06 +#define MV88E6XXX_PORT_BASE_VLAN_FID_3_0_MASK 0xf000 + +/* Offset 0x07: Default Port VLAN ID & Priority */ +#define MV88E6XXX_PORT_DEFAULT_VLAN 0x07 +#define MV88E6XXX_PORT_DEFAULT_VLAN_MASK 0x0fff + +/* Offset 0x08: Port Control 2 Register */ +#define MV88E6XXX_PORT_CTL2 0x08 +#define MV88E6XXX_PORT_CTL2_IGNORE_FCS 0x8000 +#define MV88E6XXX_PORT_CTL2_VTU_PRI_OVERRIDE 0x4000 +#define MV88E6XXX_PORT_CTL2_SA_PRIO_OVERRIDE 0x2000 +#define MV88E6XXX_PORT_CTL2_DA_PRIO_OVERRIDE 0x1000 +#define MV88E6XXX_PORT_CTL2_JUMBO_MODE_MASK 0x3000 +#define MV88E6XXX_PORT_CTL2_JUMBO_MODE_1522 0x0000 +#define MV88E6XXX_PORT_CTL2_JUMBO_MODE_2048 0x1000 +#define MV88E6XXX_PORT_CTL2_JUMBO_MODE_10240 0x2000 +#define MV88E6XXX_PORT_CTL2_8021Q_MODE_MASK 0x0c00 +#define MV88E6XXX_PORT_CTL2_8021Q_MODE_DISABLED 0x0000 +#define MV88E6XXX_PORT_CTL2_8021Q_MODE_FALLBACK 0x0400 +#define MV88E6XXX_PORT_CTL2_8021Q_MODE_CHECK 0x0800 +#define MV88E6XXX_PORT_CTL2_8021Q_MODE_SECURE 0x0c00 +#define MV88E6XXX_PORT_CTL2_DISCARD_TAGGED 0x0200 +#define MV88E6XXX_PORT_CTL2_DISCARD_UNTAGGED 0x0100 +#define MV88E6XXX_PORT_CTL2_MAP_DA 0x0080 +#define MV88E6XXX_PORT_CTL2_DEFAULT_FORWARD 0x0040 +#define MV88E6XXX_PORT_CTL2_EGRESS_MONITOR 0x0020 +#define MV88E6XXX_PORT_CTL2_INGRESS_MONITOR 0x0010 +#define MV88E6095_PORT_CTL2_CPU_PORT_MASK 0x000f + +/* Offset 0x09: Egress Rate Control */ +#define MV88E6XXX_PORT_EGRESS_RATE_CTL1 0x09 + +/* Offset 0x0A: Egress Rate Control 2 */ +#define MV88E6XXX_PORT_EGRESS_RATE_CTL2 0x0a + +/* Offset 0x0B: Port Association Vector */ +#define MV88E6XXX_PORT_ASSOC_VECTOR 0x0b +#define MV88E6XXX_PORT_ASSOC_VECTOR_HOLD_AT_1 0x8000 +#define MV88E6XXX_PORT_ASSOC_VECTOR_INT_AGE_OUT 0x4000 +#define MV88E6XXX_PORT_ASSOC_VECTOR_LOCKED_PORT 0x2000 +#define MV88E6XXX_PORT_ASSOC_VECTOR_IGNORE_WRONG 0x1000 +#define MV88E6XXX_PORT_ASSOC_VECTOR_REFRESH_LOCKED 0x0800 + +/* Offset 0x0C: Port ATU Control */ +#define MV88E6XXX_PORT_ATU_CTL 0x0c + +/* Offset 0x0D: Priority Override Register */ +#define MV88E6XXX_PORT_PRI_OVERRIDE 0x0d + +/* Offset 0x0E: Policy Control Register */ +#define MV88E6XXX_PORT_POLICY_CTL 0x0e +#define MV88E6XXX_PORT_POLICY_CTL_DA_MASK 0xc000 +#define MV88E6XXX_PORT_POLICY_CTL_SA_MASK 0x3000 +#define MV88E6XXX_PORT_POLICY_CTL_VTU_MASK 0x0c00 +#define MV88E6XXX_PORT_POLICY_CTL_ETYPE_MASK 0x0300 +#define MV88E6XXX_PORT_POLICY_CTL_PPPOE_MASK 0x00c0 +#define MV88E6XXX_PORT_POLICY_CTL_VBAS_MASK 0x0030 +#define MV88E6XXX_PORT_POLICY_CTL_OPT82_MASK 0x000c +#define MV88E6XXX_PORT_POLICY_CTL_UDP_MASK 0x0003 +#define MV88E6XXX_PORT_POLICY_CTL_NORMAL 0x0000 +#define MV88E6XXX_PORT_POLICY_CTL_MIRROR 0x0001 +#define MV88E6XXX_PORT_POLICY_CTL_TRAP 0x0002 +#define MV88E6XXX_PORT_POLICY_CTL_DISCARD 0x0003 + +/* Offset 0x0E: Policy & MGMT Control Register (FAMILY_6393X) */ +#define MV88E6393X_PORT_POLICY_MGMT_CTL 0x0e +#define MV88E6393X_PORT_POLICY_MGMT_CTL_UPDATE 0x8000 +#define MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_MASK 0x3f00 +#define MV88E6393X_PORT_POLICY_MGMT_CTL_DATA_MASK 0x00ff +#define MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_01C280000000XLO 0x2000 +#define MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_01C280000000XHI 0x2100 +#define MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_01C280000002XLO 0x2400 +#define MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_01C280000002XHI 0x2500 +#define MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_INGRESS_DEST 0x3000 +#define MV88E6393X_PORT_POLICY_MGMT_CTL_PTR_CPU_DEST 0x3800 +#define MV88E6393X_PORT_POLICY_MGMT_CTL_CPU_DEST_MGMTPRI 0x00e0 + +/* Offset 0x0F: Port Special Ether Type */ +#define MV88E6XXX_PORT_ETH_TYPE 0x0f +#define MV88E6XXX_PORT_ETH_TYPE_DEFAULT 0x9100 + +/* Offset 0x10: InDiscards Low Counter */ +#define MV88E6XXX_PORT_IN_DISCARD_LO 0x10 + +/* Offset 0x10: Extended Port Control Command */ +#define MV88E6393X_PORT_EPC_CMD 0x10 +#define MV88E6393X_PORT_EPC_CMD_BUSY 0x8000 +#define MV88E6393X_PORT_EPC_CMD_WRITE 0x3000 +#define MV88E6393X_PORT_EPC_INDEX_PORT_ETYPE 0x02 + +/* Offset 0x11: Extended Port Control Data */ +#define MV88E6393X_PORT_EPC_DATA 0x11 + +/* Offset 0x11: InDiscards High Counter */ +#define MV88E6XXX_PORT_IN_DISCARD_HI 0x11 + +/* Offset 0x12: InFiltered Counter */ +#define MV88E6XXX_PORT_IN_FILTERED 0x12 + +/* Offset 0x13: OutFiltered Counter */ +#define MV88E6XXX_PORT_OUT_FILTERED 0x13 + +/* Offset 0x18: IEEE Priority Mapping Table */ +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE 0x18 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_UPDATE 0x8000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_MASK 0x7000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_INGRESS_PCP 0x0000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_GREEN_PCP 0x1000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_YELLOW_PCP 0x2000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_AVB_PCP 0x3000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_GREEN_DSCP 0x5000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_YELLOW_DSCP 0x6000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_EGRESS_AVB_DSCP 0x7000 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_PTR_MASK 0x0e00 +#define MV88E6390_PORT_IEEE_PRIO_MAP_TABLE_DATA_MASK 0x01ff + +/* Offset 0x18: Port IEEE Priority Remapping Registers (0-3) */ +#define MV88E6095_PORT_IEEE_PRIO_REMAP_0123 0x18 + +/* Offset 0x19: Port IEEE Priority Remapping Registers (4-7) */ +#define MV88E6095_PORT_IEEE_PRIO_REMAP_4567 0x19 + +/* Offset 0x1a: Magic undocumented errata register */ +#define MV88E6XXX_PORT_RESERVED_1A 0x1a +#define MV88E6XXX_PORT_RESERVED_1A_BUSY 0x8000 +#define MV88E6XXX_PORT_RESERVED_1A_WRITE 0x4000 +#define MV88E6XXX_PORT_RESERVED_1A_READ 0x0000 +#define MV88E6XXX_PORT_RESERVED_1A_PORT_SHIFT 5 +#define MV88E6XXX_PORT_RESERVED_1A_BLOCK_SHIFT 10 +#define MV88E6XXX_PORT_RESERVED_1A_CTRL_PORT 0x04 +#define MV88E6XXX_PORT_RESERVED_1A_DATA_PORT 0x05 +#define MV88E6341_PORT_RESERVED_1A_FORCE_CMODE 0x8000 +#define MV88E6341_PORT_RESERVED_1A_SGMII_AN 0x2000 + +int mv88e6xxx_port_read(struct mv88e6xxx_chip *chip, int port, int reg, + u16 *val); +int mv88e6xxx_port_write(struct mv88e6xxx_chip *chip, int port, int reg, + u16 val); +int mv88e6xxx_port_wait_bit(struct mv88e6xxx_chip *chip, int port, int reg, + int bit, int val); + +int mv88e6185_port_set_pause(struct mv88e6xxx_chip *chip, int port, + int pause); +int mv88e6320_port_set_rgmii_delay(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); +int mv88e6352_port_set_rgmii_delay(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); +int mv88e6390_port_set_rgmii_delay(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); + +int mv88e6xxx_port_set_link(struct mv88e6xxx_chip *chip, int port, int link); + +int mv88e6xxx_port_sync_link(struct mv88e6xxx_chip *chip, int port, unsigned int mode, bool isup); +int mv88e6185_port_sync_link(struct mv88e6xxx_chip *chip, int port, unsigned int mode, bool isup); + +int mv88e6185_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex); +int mv88e6250_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex); +int mv88e6341_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex); +int mv88e6352_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex); +int mv88e6390_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex); +int mv88e6390x_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex); +int mv88e6393x_port_set_speed_duplex(struct mv88e6xxx_chip *chip, int port, + int speed, int duplex); + +phy_interface_t mv88e6341_port_max_speed_mode(int port); +phy_interface_t mv88e6390_port_max_speed_mode(int port); +phy_interface_t mv88e6390x_port_max_speed_mode(int port); +phy_interface_t mv88e6393x_port_max_speed_mode(int port); + +int mv88e6xxx_port_set_state(struct mv88e6xxx_chip *chip, int port, u8 state); + +int mv88e6xxx_port_set_vlan_map(struct mv88e6xxx_chip *chip, int port, u16 map); + +int mv88e6xxx_port_get_fid(struct mv88e6xxx_chip *chip, int port, u16 *fid); +int mv88e6xxx_port_set_fid(struct mv88e6xxx_chip *chip, int port, u16 fid); + +int mv88e6xxx_port_get_pvid(struct mv88e6xxx_chip *chip, int port, u16 *pvid); +int mv88e6xxx_port_set_pvid(struct mv88e6xxx_chip *chip, int port, u16 pvid); + +int mv88e6xxx_port_set_lock(struct mv88e6xxx_chip *chip, int port, + bool locked); + +int mv88e6xxx_port_set_8021q_mode(struct mv88e6xxx_chip *chip, int port, + u16 mode); +int mv88e6095_port_tag_remap(struct mv88e6xxx_chip *chip, int port); +int mv88e6390_port_tag_remap(struct mv88e6xxx_chip *chip, int port); +int mv88e6xxx_port_set_egress_mode(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_egress_mode mode); +int mv88e6085_port_set_frame_mode(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_frame_mode mode); +int mv88e6351_port_set_frame_mode(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_frame_mode mode); +int mv88e6185_port_set_forward_unknown(struct mv88e6xxx_chip *chip, + int port, bool unicast); +int mv88e6185_port_set_default_forward(struct mv88e6xxx_chip *chip, + int port, bool multicast); +int mv88e6352_port_set_ucast_flood(struct mv88e6xxx_chip *chip, int port, + bool unicast); +int mv88e6352_port_set_mcast_flood(struct mv88e6xxx_chip *chip, int port, + bool multicast); +int mv88e6352_port_set_policy(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_policy_mapping mapping, + enum mv88e6xxx_policy_action action); +int mv88e6393x_port_set_policy(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_policy_mapping mapping, + enum mv88e6xxx_policy_action action); +int mv88e6351_port_set_ether_type(struct mv88e6xxx_chip *chip, int port, + u16 etype); +int mv88e6393x_set_egress_port(struct mv88e6xxx_chip *chip, + enum mv88e6xxx_egress_direction direction, + int port); +int mv88e6393x_port_set_upstream_port(struct mv88e6xxx_chip *chip, int port, + int upstream_port); +int mv88e6393x_port_mgmt_rsvd2cpu(struct mv88e6xxx_chip *chip); +int mv88e6393x_port_set_ether_type(struct mv88e6xxx_chip *chip, int port, + u16 etype); +int mv88e6xxx_port_set_message_port(struct mv88e6xxx_chip *chip, int port, + bool message_port); +int mv88e6xxx_port_set_trunk(struct mv88e6xxx_chip *chip, int port, + bool trunk, u8 id); +int mv88e6165_port_set_jumbo_size(struct mv88e6xxx_chip *chip, int port, + size_t size); +int mv88e6095_port_egress_rate_limiting(struct mv88e6xxx_chip *chip, int port); +int mv88e6097_port_egress_rate_limiting(struct mv88e6xxx_chip *chip, int port); +int mv88e6xxx_port_set_assoc_vector(struct mv88e6xxx_chip *chip, int port, + u16 pav); +int mv88e6097_port_pause_limit(struct mv88e6xxx_chip *chip, int port, u8 in, + u8 out); +int mv88e6390_port_pause_limit(struct mv88e6xxx_chip *chip, int port, u8 in, + u8 out); +int mv88e6341_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); +int mv88e6390_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); +int mv88e6390x_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); +int mv88e6393x_port_set_cmode(struct mv88e6xxx_chip *chip, int port, + phy_interface_t mode); +int mv88e6185_port_get_cmode(struct mv88e6xxx_chip *chip, int port, u8 *cmode); +int mv88e6352_port_get_cmode(struct mv88e6xxx_chip *chip, int port, u8 *cmode); +int mv88e6xxx_port_drop_untagged(struct mv88e6xxx_chip *chip, int port, + bool drop_untagged); +int mv88e6xxx_port_set_map_da(struct mv88e6xxx_chip *chip, int port, bool map); +int mv88e6095_port_set_upstream_port(struct mv88e6xxx_chip *chip, int port, + int upstream_port); +int mv88e6xxx_port_set_mirror(struct mv88e6xxx_chip *chip, int port, + enum mv88e6xxx_egress_direction direction, + bool mirror); + +int mv88e6xxx_port_disable_learn_limit(struct mv88e6xxx_chip *chip, int port); +int mv88e6xxx_port_disable_pri_override(struct mv88e6xxx_chip *chip, int port); + +int mv88e6xxx_port_hidden_write(struct mv88e6xxx_chip *chip, int block, + int port, int reg, u16 val); +int mv88e6xxx_port_hidden_wait(struct mv88e6xxx_chip *chip); +int mv88e6xxx_port_hidden_read(struct mv88e6xxx_chip *chip, int block, int port, + int reg, u16 *val); + +#endif /* _MV88E6XXX_PORT_H */ diff --git a/drivers/net/dsa/mv88e6xxx/port_hidden.c b/drivers/net/dsa/mv88e6xxx/port_hidden.c new file mode 100644 index 000000000..7a9f9ff6d --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/port_hidden.c @@ -0,0 +1,71 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Switch Hidden Registers support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2019 Andrew Lunn <andrew@lunn.ch> + */ + +#include <linux/bitfield.h> + +#include "chip.h" +#include "port.h" + +/* The mv88e6390 and mv88e6341 have some hidden registers used for debug and + * development. The errata also makes use of them. + */ +int mv88e6xxx_port_hidden_write(struct mv88e6xxx_chip *chip, int block, + int port, int reg, u16 val) +{ + u16 ctrl; + int err; + + err = mv88e6xxx_port_write(chip, MV88E6XXX_PORT_RESERVED_1A_DATA_PORT, + MV88E6XXX_PORT_RESERVED_1A, val); + if (err) + return err; + + ctrl = MV88E6XXX_PORT_RESERVED_1A_BUSY | + MV88E6XXX_PORT_RESERVED_1A_WRITE | + block << MV88E6XXX_PORT_RESERVED_1A_BLOCK_SHIFT | + port << MV88E6XXX_PORT_RESERVED_1A_PORT_SHIFT | + reg; + + return mv88e6xxx_port_write(chip, MV88E6XXX_PORT_RESERVED_1A_CTRL_PORT, + MV88E6XXX_PORT_RESERVED_1A, ctrl); +} + +int mv88e6xxx_port_hidden_wait(struct mv88e6xxx_chip *chip) +{ + int bit = __bf_shf(MV88E6XXX_PORT_RESERVED_1A_BUSY); + + return mv88e6xxx_port_wait_bit(chip, + MV88E6XXX_PORT_RESERVED_1A_CTRL_PORT, + MV88E6XXX_PORT_RESERVED_1A, bit, 0); +} + +int mv88e6xxx_port_hidden_read(struct mv88e6xxx_chip *chip, int block, int port, + int reg, u16 *val) +{ + u16 ctrl; + int err; + + ctrl = MV88E6XXX_PORT_RESERVED_1A_BUSY | + MV88E6XXX_PORT_RESERVED_1A_READ | + block << MV88E6XXX_PORT_RESERVED_1A_BLOCK_SHIFT | + port << MV88E6XXX_PORT_RESERVED_1A_PORT_SHIFT | + reg; + + err = mv88e6xxx_port_write(chip, MV88E6XXX_PORT_RESERVED_1A_CTRL_PORT, + MV88E6XXX_PORT_RESERVED_1A, ctrl); + if (err) + return err; + + err = mv88e6xxx_port_hidden_wait(chip); + if (err) + return err; + + return mv88e6xxx_port_read(chip, MV88E6XXX_PORT_RESERVED_1A_DATA_PORT, + MV88E6XXX_PORT_RESERVED_1A, val); +} diff --git a/drivers/net/dsa/mv88e6xxx/ptp.c b/drivers/net/dsa/mv88e6xxx/ptp.c new file mode 100644 index 000000000..d838c174d --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/ptp.c @@ -0,0 +1,514 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx Switch PTP support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2017 National Instruments + * Erik Hons <erik.hons@ni.com> + * Brandon Streiff <brandon.streiff@ni.com> + * Dane Wagner <dane.wagner@ni.com> + */ + +#include "chip.h" +#include "global2.h" +#include "hwtstamp.h" +#include "ptp.h" + +#define MV88E6XXX_MAX_ADJ_PPB 1000000 + +/* Family MV88E6250: + * Raw timestamps are in units of 10-ns clock periods. + * + * clkadj = scaled_ppm * 10*2^28 / (10^6 * 2^16) + * simplifies to + * clkadj = scaled_ppm * 2^7 / 5^5 + */ +#define MV88E6250_CC_SHIFT 28 +#define MV88E6250_CC_MULT (10 << MV88E6250_CC_SHIFT) +#define MV88E6250_CC_MULT_NUM (1 << 7) +#define MV88E6250_CC_MULT_DEM 3125ULL + +/* Other families: + * Raw timestamps are in units of 8-ns clock periods. + * + * clkadj = scaled_ppm * 8*2^28 / (10^6 * 2^16) + * simplifies to + * clkadj = scaled_ppm * 2^9 / 5^6 + */ +#define MV88E6XXX_CC_SHIFT 28 +#define MV88E6XXX_CC_MULT (8 << MV88E6XXX_CC_SHIFT) +#define MV88E6XXX_CC_MULT_NUM (1 << 9) +#define MV88E6XXX_CC_MULT_DEM 15625ULL + +#define TAI_EVENT_WORK_INTERVAL msecs_to_jiffies(100) + +#define cc_to_chip(cc) container_of(cc, struct mv88e6xxx_chip, tstamp_cc) +#define dw_overflow_to_chip(dw) container_of(dw, struct mv88e6xxx_chip, \ + overflow_work) +#define dw_tai_event_to_chip(dw) container_of(dw, struct mv88e6xxx_chip, \ + tai_event_work) + +static int mv88e6xxx_tai_read(struct mv88e6xxx_chip *chip, int addr, + u16 *data, int len) +{ + if (!chip->info->ops->avb_ops->tai_read) + return -EOPNOTSUPP; + + return chip->info->ops->avb_ops->tai_read(chip, addr, data, len); +} + +static int mv88e6xxx_tai_write(struct mv88e6xxx_chip *chip, int addr, u16 data) +{ + if (!chip->info->ops->avb_ops->tai_write) + return -EOPNOTSUPP; + + return chip->info->ops->avb_ops->tai_write(chip, addr, data); +} + +/* TODO: places where this are called should be using pinctrl */ +static int mv88e6352_set_gpio_func(struct mv88e6xxx_chip *chip, int pin, + int func, int input) +{ + int err; + + if (!chip->info->ops->gpio_ops) + return -EOPNOTSUPP; + + err = chip->info->ops->gpio_ops->set_dir(chip, pin, input); + if (err) + return err; + + return chip->info->ops->gpio_ops->set_pctl(chip, pin, func); +} + +static u64 mv88e6352_ptp_clock_read(const struct cyclecounter *cc) +{ + struct mv88e6xxx_chip *chip = cc_to_chip(cc); + u16 phc_time[2]; + int err; + + err = mv88e6xxx_tai_read(chip, MV88E6XXX_TAI_TIME_LO, phc_time, + ARRAY_SIZE(phc_time)); + if (err) + return 0; + else + return ((u32)phc_time[1] << 16) | phc_time[0]; +} + +static u64 mv88e6165_ptp_clock_read(const struct cyclecounter *cc) +{ + struct mv88e6xxx_chip *chip = cc_to_chip(cc); + u16 phc_time[2]; + int err; + + err = mv88e6xxx_tai_read(chip, MV88E6XXX_PTP_GC_TIME_LO, phc_time, + ARRAY_SIZE(phc_time)); + if (err) + return 0; + else + return ((u32)phc_time[1] << 16) | phc_time[0]; +} + +/* mv88e6352_config_eventcap - configure TAI event capture + * @event: PTP_CLOCK_PPS (internal) or PTP_CLOCK_EXTTS (external) + * @rising: zero for falling-edge trigger, else rising-edge trigger + * + * This will also reset the capture sequence counter. + */ +static int mv88e6352_config_eventcap(struct mv88e6xxx_chip *chip, int event, + int rising) +{ + u16 global_config; + u16 cap_config; + int err; + + chip->evcap_config = MV88E6XXX_TAI_CFG_CAP_OVERWRITE | + MV88E6XXX_TAI_CFG_CAP_CTR_START; + if (!rising) + chip->evcap_config |= MV88E6XXX_TAI_CFG_EVREQ_FALLING; + + global_config = (chip->evcap_config | chip->trig_config); + err = mv88e6xxx_tai_write(chip, MV88E6XXX_TAI_CFG, global_config); + if (err) + return err; + + if (event == PTP_CLOCK_PPS) { + cap_config = MV88E6XXX_TAI_EVENT_STATUS_CAP_TRIG; + } else if (event == PTP_CLOCK_EXTTS) { + /* if STATUS_CAP_TRIG is unset we capture PTP_EVREQ events */ + cap_config = 0; + } else { + return -EINVAL; + } + + /* Write the capture config; this also clears the capture counter */ + err = mv88e6xxx_tai_write(chip, MV88E6XXX_TAI_EVENT_STATUS, + cap_config); + + return err; +} + +static void mv88e6352_tai_event_work(struct work_struct *ugly) +{ + struct delayed_work *dw = to_delayed_work(ugly); + struct mv88e6xxx_chip *chip = dw_tai_event_to_chip(dw); + struct ptp_clock_event ev; + u16 status[4]; + u32 raw_ts; + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_tai_read(chip, MV88E6XXX_TAI_EVENT_STATUS, + status, ARRAY_SIZE(status)); + mv88e6xxx_reg_unlock(chip); + + if (err) { + dev_err(chip->dev, "failed to read TAI status register\n"); + return; + } + if (status[0] & MV88E6XXX_TAI_EVENT_STATUS_ERROR) { + dev_warn(chip->dev, "missed event capture\n"); + return; + } + if (!(status[0] & MV88E6XXX_TAI_EVENT_STATUS_VALID)) + goto out; + + raw_ts = ((u32)status[2] << 16) | status[1]; + + /* Clear the valid bit so the next timestamp can come in */ + status[0] &= ~MV88E6XXX_TAI_EVENT_STATUS_VALID; + mv88e6xxx_reg_lock(chip); + err = mv88e6xxx_tai_write(chip, MV88E6XXX_TAI_EVENT_STATUS, status[0]); + mv88e6xxx_reg_unlock(chip); + + /* This is an external timestamp */ + ev.type = PTP_CLOCK_EXTTS; + + /* We only have one timestamping channel. */ + ev.index = 0; + mv88e6xxx_reg_lock(chip); + ev.timestamp = timecounter_cyc2time(&chip->tstamp_tc, raw_ts); + mv88e6xxx_reg_unlock(chip); + + ptp_clock_event(chip->ptp_clock, &ev); +out: + schedule_delayed_work(&chip->tai_event_work, TAI_EVENT_WORK_INTERVAL); +} + +static int mv88e6xxx_ptp_adjfine(struct ptp_clock_info *ptp, long scaled_ppm) +{ + struct mv88e6xxx_chip *chip = ptp_to_chip(ptp); + const struct mv88e6xxx_ptp_ops *ptp_ops = chip->info->ops->ptp_ops; + int neg_adj = 0; + u32 diff, mult; + u64 adj; + + if (scaled_ppm < 0) { + neg_adj = 1; + scaled_ppm = -scaled_ppm; + } + + mult = ptp_ops->cc_mult; + adj = ptp_ops->cc_mult_num; + adj *= scaled_ppm; + diff = div_u64(adj, ptp_ops->cc_mult_dem); + + mv88e6xxx_reg_lock(chip); + + timecounter_read(&chip->tstamp_tc); + chip->tstamp_cc.mult = neg_adj ? mult - diff : mult + diff; + + mv88e6xxx_reg_unlock(chip); + + return 0; +} + +static int mv88e6xxx_ptp_adjtime(struct ptp_clock_info *ptp, s64 delta) +{ + struct mv88e6xxx_chip *chip = ptp_to_chip(ptp); + + mv88e6xxx_reg_lock(chip); + timecounter_adjtime(&chip->tstamp_tc, delta); + mv88e6xxx_reg_unlock(chip); + + return 0; +} + +static int mv88e6xxx_ptp_gettime(struct ptp_clock_info *ptp, + struct timespec64 *ts) +{ + struct mv88e6xxx_chip *chip = ptp_to_chip(ptp); + u64 ns; + + mv88e6xxx_reg_lock(chip); + ns = timecounter_read(&chip->tstamp_tc); + mv88e6xxx_reg_unlock(chip); + + *ts = ns_to_timespec64(ns); + + return 0; +} + +static int mv88e6xxx_ptp_settime(struct ptp_clock_info *ptp, + const struct timespec64 *ts) +{ + struct mv88e6xxx_chip *chip = ptp_to_chip(ptp); + u64 ns; + + ns = timespec64_to_ns(ts); + + mv88e6xxx_reg_lock(chip); + timecounter_init(&chip->tstamp_tc, &chip->tstamp_cc, ns); + mv88e6xxx_reg_unlock(chip); + + return 0; +} + +static int mv88e6352_ptp_enable_extts(struct mv88e6xxx_chip *chip, + struct ptp_clock_request *rq, int on) +{ + int rising = (rq->extts.flags & PTP_RISING_EDGE); + int func; + int pin; + int err; + + /* Reject requests with unsupported flags */ + if (rq->extts.flags & ~(PTP_ENABLE_FEATURE | + PTP_RISING_EDGE | + PTP_FALLING_EDGE | + PTP_STRICT_FLAGS)) + return -EOPNOTSUPP; + + /* Reject requests to enable time stamping on both edges. */ + if ((rq->extts.flags & PTP_STRICT_FLAGS) && + (rq->extts.flags & PTP_ENABLE_FEATURE) && + (rq->extts.flags & PTP_EXTTS_EDGES) == PTP_EXTTS_EDGES) + return -EOPNOTSUPP; + + pin = ptp_find_pin(chip->ptp_clock, PTP_PF_EXTTS, rq->extts.index); + + if (pin < 0) + return -EBUSY; + + mv88e6xxx_reg_lock(chip); + + if (on) { + func = MV88E6352_G2_SCRATCH_GPIO_PCTL_EVREQ; + + err = mv88e6352_set_gpio_func(chip, pin, func, true); + if (err) + goto out; + + schedule_delayed_work(&chip->tai_event_work, + TAI_EVENT_WORK_INTERVAL); + + err = mv88e6352_config_eventcap(chip, PTP_CLOCK_EXTTS, rising); + } else { + func = MV88E6352_G2_SCRATCH_GPIO_PCTL_GPIO; + + err = mv88e6352_set_gpio_func(chip, pin, func, true); + + cancel_delayed_work_sync(&chip->tai_event_work); + } + +out: + mv88e6xxx_reg_unlock(chip); + + return err; +} + +static int mv88e6352_ptp_enable(struct ptp_clock_info *ptp, + struct ptp_clock_request *rq, int on) +{ + struct mv88e6xxx_chip *chip = ptp_to_chip(ptp); + + switch (rq->type) { + case PTP_CLK_REQ_EXTTS: + return mv88e6352_ptp_enable_extts(chip, rq, on); + default: + return -EOPNOTSUPP; + } +} + +static int mv88e6352_ptp_verify(struct ptp_clock_info *ptp, unsigned int pin, + enum ptp_pin_function func, unsigned int chan) +{ + switch (func) { + case PTP_PF_NONE: + case PTP_PF_EXTTS: + break; + case PTP_PF_PEROUT: + case PTP_PF_PHYSYNC: + return -EOPNOTSUPP; + } + return 0; +} + +const struct mv88e6xxx_ptp_ops mv88e6165_ptp_ops = { + .clock_read = mv88e6165_ptp_clock_read, + .global_enable = mv88e6165_global_enable, + .global_disable = mv88e6165_global_disable, + .arr0_sts_reg = MV88E6165_PORT_PTP_ARR0_STS, + .arr1_sts_reg = MV88E6165_PORT_PTP_ARR1_STS, + .dep_sts_reg = MV88E6165_PORT_PTP_DEP_STS, + .rx_filters = (1 << HWTSTAMP_FILTER_NONE) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_EVENT) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_SYNC) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ) | + (1 << HWTSTAMP_FILTER_PTP_V2_EVENT) | + (1 << HWTSTAMP_FILTER_PTP_V2_SYNC) | + (1 << HWTSTAMP_FILTER_PTP_V2_DELAY_REQ), + .cc_shift = MV88E6XXX_CC_SHIFT, + .cc_mult = MV88E6XXX_CC_MULT, + .cc_mult_num = MV88E6XXX_CC_MULT_NUM, + .cc_mult_dem = MV88E6XXX_CC_MULT_DEM, +}; + +const struct mv88e6xxx_ptp_ops mv88e6250_ptp_ops = { + .clock_read = mv88e6352_ptp_clock_read, + .ptp_enable = mv88e6352_ptp_enable, + .ptp_verify = mv88e6352_ptp_verify, + .event_work = mv88e6352_tai_event_work, + .port_enable = mv88e6352_hwtstamp_port_enable, + .port_disable = mv88e6352_hwtstamp_port_disable, + .n_ext_ts = 1, + .arr0_sts_reg = MV88E6XXX_PORT_PTP_ARR0_STS, + .arr1_sts_reg = MV88E6XXX_PORT_PTP_ARR1_STS, + .dep_sts_reg = MV88E6XXX_PORT_PTP_DEP_STS, + .rx_filters = (1 << HWTSTAMP_FILTER_NONE) | + (1 << HWTSTAMP_FILTER_PTP_V2_L4_EVENT) | + (1 << HWTSTAMP_FILTER_PTP_V2_L4_SYNC) | + (1 << HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_EVENT) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_SYNC) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ) | + (1 << HWTSTAMP_FILTER_PTP_V2_EVENT) | + (1 << HWTSTAMP_FILTER_PTP_V2_SYNC) | + (1 << HWTSTAMP_FILTER_PTP_V2_DELAY_REQ), + .cc_shift = MV88E6250_CC_SHIFT, + .cc_mult = MV88E6250_CC_MULT, + .cc_mult_num = MV88E6250_CC_MULT_NUM, + .cc_mult_dem = MV88E6250_CC_MULT_DEM, +}; + +const struct mv88e6xxx_ptp_ops mv88e6352_ptp_ops = { + .clock_read = mv88e6352_ptp_clock_read, + .ptp_enable = mv88e6352_ptp_enable, + .ptp_verify = mv88e6352_ptp_verify, + .event_work = mv88e6352_tai_event_work, + .port_enable = mv88e6352_hwtstamp_port_enable, + .port_disable = mv88e6352_hwtstamp_port_disable, + .n_ext_ts = 1, + .arr0_sts_reg = MV88E6XXX_PORT_PTP_ARR0_STS, + .arr1_sts_reg = MV88E6XXX_PORT_PTP_ARR1_STS, + .dep_sts_reg = MV88E6XXX_PORT_PTP_DEP_STS, + .rx_filters = (1 << HWTSTAMP_FILTER_NONE) | + (1 << HWTSTAMP_FILTER_PTP_V2_L4_EVENT) | + (1 << HWTSTAMP_FILTER_PTP_V2_L4_SYNC) | + (1 << HWTSTAMP_FILTER_PTP_V2_L4_DELAY_REQ) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_EVENT) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_SYNC) | + (1 << HWTSTAMP_FILTER_PTP_V2_L2_DELAY_REQ) | + (1 << HWTSTAMP_FILTER_PTP_V2_EVENT) | + (1 << HWTSTAMP_FILTER_PTP_V2_SYNC) | + (1 << HWTSTAMP_FILTER_PTP_V2_DELAY_REQ), + .cc_shift = MV88E6XXX_CC_SHIFT, + .cc_mult = MV88E6XXX_CC_MULT, + .cc_mult_num = MV88E6XXX_CC_MULT_NUM, + .cc_mult_dem = MV88E6XXX_CC_MULT_DEM, +}; + +static u64 mv88e6xxx_ptp_clock_read(const struct cyclecounter *cc) +{ + struct mv88e6xxx_chip *chip = cc_to_chip(cc); + + if (chip->info->ops->ptp_ops->clock_read) + return chip->info->ops->ptp_ops->clock_read(cc); + + return 0; +} + +/* With a 125MHz input clock, the 32-bit timestamp counter overflows in ~34.3 + * seconds; this task forces periodic reads so that we don't miss any. + */ +#define MV88E6XXX_TAI_OVERFLOW_PERIOD (HZ * 16) +static void mv88e6xxx_ptp_overflow_check(struct work_struct *work) +{ + struct delayed_work *dw = to_delayed_work(work); + struct mv88e6xxx_chip *chip = dw_overflow_to_chip(dw); + struct timespec64 ts; + + mv88e6xxx_ptp_gettime(&chip->ptp_clock_info, &ts); + + schedule_delayed_work(&chip->overflow_work, + MV88E6XXX_TAI_OVERFLOW_PERIOD); +} + +int mv88e6xxx_ptp_setup(struct mv88e6xxx_chip *chip) +{ + const struct mv88e6xxx_ptp_ops *ptp_ops = chip->info->ops->ptp_ops; + int i; + + /* Set up the cycle counter */ + memset(&chip->tstamp_cc, 0, sizeof(chip->tstamp_cc)); + chip->tstamp_cc.read = mv88e6xxx_ptp_clock_read; + chip->tstamp_cc.mask = CYCLECOUNTER_MASK(32); + chip->tstamp_cc.mult = ptp_ops->cc_mult; + chip->tstamp_cc.shift = ptp_ops->cc_shift; + + timecounter_init(&chip->tstamp_tc, &chip->tstamp_cc, + ktime_to_ns(ktime_get_real())); + + INIT_DELAYED_WORK(&chip->overflow_work, mv88e6xxx_ptp_overflow_check); + if (ptp_ops->event_work) + INIT_DELAYED_WORK(&chip->tai_event_work, ptp_ops->event_work); + + chip->ptp_clock_info.owner = THIS_MODULE; + snprintf(chip->ptp_clock_info.name, sizeof(chip->ptp_clock_info.name), + "%s", dev_name(chip->dev)); + + chip->ptp_clock_info.n_ext_ts = ptp_ops->n_ext_ts; + chip->ptp_clock_info.n_per_out = 0; + chip->ptp_clock_info.n_pins = mv88e6xxx_num_gpio(chip); + chip->ptp_clock_info.pps = 0; + + for (i = 0; i < chip->ptp_clock_info.n_pins; ++i) { + struct ptp_pin_desc *ppd = &chip->pin_config[i]; + + snprintf(ppd->name, sizeof(ppd->name), "mv88e6xxx_gpio%d", i); + ppd->index = i; + ppd->func = PTP_PF_NONE; + } + chip->ptp_clock_info.pin_config = chip->pin_config; + + chip->ptp_clock_info.max_adj = MV88E6XXX_MAX_ADJ_PPB; + chip->ptp_clock_info.adjfine = mv88e6xxx_ptp_adjfine; + chip->ptp_clock_info.adjtime = mv88e6xxx_ptp_adjtime; + chip->ptp_clock_info.gettime64 = mv88e6xxx_ptp_gettime; + chip->ptp_clock_info.settime64 = mv88e6xxx_ptp_settime; + chip->ptp_clock_info.enable = ptp_ops->ptp_enable; + chip->ptp_clock_info.verify = ptp_ops->ptp_verify; + chip->ptp_clock_info.do_aux_work = mv88e6xxx_hwtstamp_work; + + chip->ptp_clock = ptp_clock_register(&chip->ptp_clock_info, chip->dev); + if (IS_ERR(chip->ptp_clock)) + return PTR_ERR(chip->ptp_clock); + + schedule_delayed_work(&chip->overflow_work, + MV88E6XXX_TAI_OVERFLOW_PERIOD); + + return 0; +} + +void mv88e6xxx_ptp_free(struct mv88e6xxx_chip *chip) +{ + if (chip->ptp_clock) { + cancel_delayed_work_sync(&chip->overflow_work); + if (chip->info->ops->ptp_ops->event_work) + cancel_delayed_work_sync(&chip->tai_event_work); + + ptp_clock_unregister(chip->ptp_clock); + chip->ptp_clock = NULL; + } +} diff --git a/drivers/net/dsa/mv88e6xxx/ptp.h b/drivers/net/dsa/mv88e6xxx/ptp.h new file mode 100644 index 000000000..269d5d16a --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/ptp.h @@ -0,0 +1,177 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx Switch PTP support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2017 National Instruments + * Erik Hons <erik.hons@ni.com> + * Brandon Streiff <brandon.streiff@ni.com> + * Dane Wagner <dane.wagner@ni.com> + */ + +#ifndef _MV88E6XXX_PTP_H +#define _MV88E6XXX_PTP_H + +#include "chip.h" + +/* Offset 0x00: TAI Global Config */ +#define MV88E6XXX_TAI_CFG 0x00 +#define MV88E6XXX_TAI_CFG_CAP_OVERWRITE 0x8000 +#define MV88E6XXX_TAI_CFG_CAP_CTR_START 0x4000 +#define MV88E6XXX_TAI_CFG_EVREQ_FALLING 0x2000 +#define MV88E6XXX_TAI_CFG_TRIG_ACTIVE_LO 0x1000 +#define MV88E6XXX_TAI_CFG_IRL_ENABLE 0x0400 +#define MV88E6XXX_TAI_CFG_TRIG_IRQ_EN 0x0200 +#define MV88E6XXX_TAI_CFG_EVREQ_IRQ_EN 0x0100 +#define MV88E6XXX_TAI_CFG_TRIG_LOCK 0x0080 +#define MV88E6XXX_TAI_CFG_BLOCK_UPDATE 0x0008 +#define MV88E6XXX_TAI_CFG_MULTI_PTP 0x0004 +#define MV88E6XXX_TAI_CFG_TRIG_MODE_ONESHOT 0x0002 +#define MV88E6XXX_TAI_CFG_TRIG_ENABLE 0x0001 + +/* Offset 0x01: Timestamp Clock Period (ps) */ +#define MV88E6XXX_TAI_CLOCK_PERIOD 0x01 + +/* Offset 0x02/0x03: Trigger Generation Amount */ +#define MV88E6XXX_TAI_TRIG_GEN_AMOUNT_LO 0x02 +#define MV88E6XXX_TAI_TRIG_GEN_AMOUNT_HI 0x03 + +/* Offset 0x04: Clock Compensation */ +#define MV88E6XXX_TAI_TRIG_CLOCK_COMP 0x04 + +/* Offset 0x05: Trigger Configuration */ +#define MV88E6XXX_TAI_TRIG_CFG 0x05 + +/* Offset 0x06: Ingress Rate Limiter Clock Generation Amount */ +#define MV88E6XXX_TAI_IRL_AMOUNT 0x06 + +/* Offset 0x07: Ingress Rate Limiter Compensation */ +#define MV88E6XXX_TAI_IRL_COMP 0x07 + +/* Offset 0x08: Ingress Rate Limiter Compensation */ +#define MV88E6XXX_TAI_IRL_COMP_PS 0x08 + +/* Offset 0x09: Event Status */ +#define MV88E6XXX_TAI_EVENT_STATUS 0x09 +#define MV88E6XXX_TAI_EVENT_STATUS_CAP_TRIG 0x4000 +#define MV88E6XXX_TAI_EVENT_STATUS_ERROR 0x0200 +#define MV88E6XXX_TAI_EVENT_STATUS_VALID 0x0100 +#define MV88E6XXX_TAI_EVENT_STATUS_CTR_MASK 0x00ff + +/* Offset 0x0A/0x0B: Event Time */ +#define MV88E6XXX_TAI_EVENT_TIME_LO 0x0a +#define MV88E6XXX_TAI_EVENT_TYPE_HI 0x0b + +/* Offset 0x0E/0x0F: PTP Global Time */ +#define MV88E6XXX_TAI_TIME_LO 0x0e +#define MV88E6XXX_TAI_TIME_HI 0x0f + +/* Offset 0x10/0x11: Trig Generation Time */ +#define MV88E6XXX_TAI_TRIG_TIME_LO 0x10 +#define MV88E6XXX_TAI_TRIG_TIME_HI 0x11 + +/* Offset 0x12: Lock Status */ +#define MV88E6XXX_TAI_LOCK_STATUS 0x12 + +/* Offset 0x00: Ether Type */ +#define MV88E6XXX_PTP_GC_ETYPE 0x00 + +/* 6165 Global Control Registers */ +/* Offset 0x00: Ether Type */ +#define MV88E6XXX_PTP_GC_ETYPE 0x00 + +/* Offset 0x01: Message ID */ +#define MV88E6XXX_PTP_GC_MESSAGE_ID 0x01 + +/* Offset 0x02: Time Stamp Arrive Time */ +#define MV88E6XXX_PTP_GC_TS_ARR_PTR 0x02 + +/* Offset 0x03: Port Arrival Interrupt Enable */ +#define MV88E6XXX_PTP_GC_PORT_ARR_INT_EN 0x03 + +/* Offset 0x04: Port Departure Interrupt Enable */ +#define MV88E6XXX_PTP_GC_PORT_DEP_INT_EN 0x04 + +/* Offset 0x05: Configuration */ +#define MV88E6XXX_PTP_GC_CONFIG 0x05 +#define MV88E6XXX_PTP_GC_CONFIG_DIS_OVERWRITE BIT(1) +#define MV88E6XXX_PTP_GC_CONFIG_DIS_TS BIT(0) + +/* Offset 0x8: Interrupt Status */ +#define MV88E6XXX_PTP_GC_INT_STATUS 0x08 + +/* Offset 0x9/0xa: Global Time */ +#define MV88E6XXX_PTP_GC_TIME_LO 0x09 +#define MV88E6XXX_PTP_GC_TIME_HI 0x0A + +/* 6165 Per Port Registers */ +/* Offset 0: Arrival Time 0 Status */ +#define MV88E6165_PORT_PTP_ARR0_STS 0x00 + +/* Offset 0x01/0x02: PTP Arrival 0 Time */ +#define MV88E6165_PORT_PTP_ARR0_TIME_LO 0x01 +#define MV88E6165_PORT_PTP_ARR0_TIME_HI 0x02 + +/* Offset 0x03: PTP Arrival 0 Sequence ID */ +#define MV88E6165_PORT_PTP_ARR0_SEQID 0x03 + +/* Offset 0x04: PTP Arrival 1 Status */ +#define MV88E6165_PORT_PTP_ARR1_STS 0x04 + +/* Offset 0x05/0x6E: PTP Arrival 1 Time */ +#define MV88E6165_PORT_PTP_ARR1_TIME_LO 0x05 +#define MV88E6165_PORT_PTP_ARR1_TIME_HI 0x06 + +/* Offset 0x07: PTP Arrival 1 Sequence ID */ +#define MV88E6165_PORT_PTP_ARR1_SEQID 0x07 + +/* Offset 0x08: PTP Departure Status */ +#define MV88E6165_PORT_PTP_DEP_STS 0x08 + +/* Offset 0x09/0x0a: PTP Deperture Time */ +#define MV88E6165_PORT_PTP_DEP_TIME_LO 0x09 +#define MV88E6165_PORT_PTP_DEP_TIME_HI 0x0a + +/* Offset 0x0b: PTP Departure Sequence ID */ +#define MV88E6165_PORT_PTP_DEP_SEQID 0x0b + +/* Offset 0x0d: Port Status */ +#define MV88E6164_PORT_STATUS 0x0d + +#ifdef CONFIG_NET_DSA_MV88E6XXX_PTP + +long mv88e6xxx_hwtstamp_work(struct ptp_clock_info *ptp); +int mv88e6xxx_ptp_setup(struct mv88e6xxx_chip *chip); +void mv88e6xxx_ptp_free(struct mv88e6xxx_chip *chip); + +#define ptp_to_chip(ptp) container_of(ptp, struct mv88e6xxx_chip, \ + ptp_clock_info) + +extern const struct mv88e6xxx_ptp_ops mv88e6165_ptp_ops; +extern const struct mv88e6xxx_ptp_ops mv88e6250_ptp_ops; +extern const struct mv88e6xxx_ptp_ops mv88e6352_ptp_ops; + +#else /* !CONFIG_NET_DSA_MV88E6XXX_PTP */ + +static inline long mv88e6xxx_hwtstamp_work(struct ptp_clock_info *ptp) +{ + return -1; +} + +static inline int mv88e6xxx_ptp_setup(struct mv88e6xxx_chip *chip) +{ + return 0; +} + +static inline void mv88e6xxx_ptp_free(struct mv88e6xxx_chip *chip) +{ +} + +static const struct mv88e6xxx_ptp_ops mv88e6165_ptp_ops = {}; +static const struct mv88e6xxx_ptp_ops mv88e6250_ptp_ops = {}; +static const struct mv88e6xxx_ptp_ops mv88e6352_ptp_ops = {}; + +#endif /* CONFIG_NET_DSA_MV88E6XXX_PTP */ + +#endif /* _MV88E6XXX_PTP_H */ diff --git a/drivers/net/dsa/mv88e6xxx/serdes.c b/drivers/net/dsa/mv88e6xxx/serdes.c new file mode 100644 index 000000000..d94150d8f --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/serdes.c @@ -0,0 +1,1609 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx SERDES manipulation, via SMI bus + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2017 Andrew Lunn <andrew@lunn.ch> + */ + +#include <linux/interrupt.h> +#include <linux/irqdomain.h> +#include <linux/mii.h> + +#include "chip.h" +#include "global2.h" +#include "phy.h" +#include "port.h" +#include "serdes.h" + +static int mv88e6352_serdes_read(struct mv88e6xxx_chip *chip, int reg, + u16 *val) +{ + return mv88e6xxx_phy_page_read(chip, MV88E6352_ADDR_SERDES, + MV88E6352_SERDES_PAGE_FIBER, + reg, val); +} + +static int mv88e6352_serdes_write(struct mv88e6xxx_chip *chip, int reg, + u16 val) +{ + return mv88e6xxx_phy_page_write(chip, MV88E6352_ADDR_SERDES, + MV88E6352_SERDES_PAGE_FIBER, + reg, val); +} + +static int mv88e6390_serdes_read(struct mv88e6xxx_chip *chip, + int lane, int device, int reg, u16 *val) +{ + int reg_c45 = MII_ADDR_C45 | device << 16 | reg; + + return mv88e6xxx_phy_read(chip, lane, reg_c45, val); +} + +static int mv88e6390_serdes_write(struct mv88e6xxx_chip *chip, + int lane, int device, int reg, u16 val) +{ + int reg_c45 = MII_ADDR_C45 | device << 16 | reg; + + return mv88e6xxx_phy_write(chip, lane, reg_c45, val); +} + +static int mv88e6xxx_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, + u16 bmsr, u16 lpa, u16 status, + struct phylink_link_state *state) +{ + state->link = false; + + /* If the BMSR reports that the link had failed, report this to + * phylink. + */ + if (!(bmsr & BMSR_LSTATUS)) + return 0; + + state->link = !!(status & MV88E6390_SGMII_PHY_STATUS_LINK); + state->an_complete = !!(bmsr & BMSR_ANEGCOMPLETE); + + if (status & MV88E6390_SGMII_PHY_STATUS_SPD_DPL_VALID) { + /* The Spped and Duplex Resolved register is 1 if AN is enabled + * and complete, or if AN is disabled. So with disabled AN we + * still get here on link up. + */ + state->duplex = status & + MV88E6390_SGMII_PHY_STATUS_DUPLEX_FULL ? + DUPLEX_FULL : DUPLEX_HALF; + + if (status & MV88E6390_SGMII_PHY_STATUS_TX_PAUSE) + state->pause |= MLO_PAUSE_TX; + if (status & MV88E6390_SGMII_PHY_STATUS_RX_PAUSE) + state->pause |= MLO_PAUSE_RX; + + switch (status & MV88E6390_SGMII_PHY_STATUS_SPEED_MASK) { + case MV88E6390_SGMII_PHY_STATUS_SPEED_1000: + if (state->interface == PHY_INTERFACE_MODE_2500BASEX) + state->speed = SPEED_2500; + else + state->speed = SPEED_1000; + break; + case MV88E6390_SGMII_PHY_STATUS_SPEED_100: + state->speed = SPEED_100; + break; + case MV88E6390_SGMII_PHY_STATUS_SPEED_10: + state->speed = SPEED_10; + break; + default: + dev_err(chip->dev, "invalid PHY speed\n"); + return -EINVAL; + } + } else if (state->link && + state->interface != PHY_INTERFACE_MODE_SGMII) { + /* If Speed and Duplex Resolved register is 0 and link is up, it + * means that AN was enabled, but link partner had it disabled + * and the PHY invoked the Auto-Negotiation Bypass feature and + * linked anyway. + */ + state->duplex = DUPLEX_FULL; + if (state->interface == PHY_INTERFACE_MODE_2500BASEX) + state->speed = SPEED_2500; + else + state->speed = SPEED_1000; + } else { + state->link = false; + } + + if (state->interface == PHY_INTERFACE_MODE_2500BASEX) + mii_lpa_mod_linkmode_x(state->lp_advertising, lpa, + ETHTOOL_LINK_MODE_2500baseX_Full_BIT); + else if (state->interface == PHY_INTERFACE_MODE_1000BASEX) + mii_lpa_mod_linkmode_x(state->lp_advertising, lpa, + ETHTOOL_LINK_MODE_1000baseX_Full_BIT); + + return 0; +} + +int mv88e6352_serdes_power(struct mv88e6xxx_chip *chip, int port, int lane, + bool up) +{ + u16 val, new_val; + int err; + + err = mv88e6352_serdes_read(chip, MII_BMCR, &val); + if (err) + return err; + + if (up) + new_val = val & ~BMCR_PDOWN; + else + new_val = val | BMCR_PDOWN; + + if (val != new_val) + err = mv88e6352_serdes_write(chip, MII_BMCR, new_val); + + return err; +} + +int mv88e6352_serdes_pcs_config(struct mv88e6xxx_chip *chip, int port, + int lane, unsigned int mode, + phy_interface_t interface, + const unsigned long *advertise) +{ + u16 adv, bmcr, val; + bool changed; + int err; + + switch (interface) { + case PHY_INTERFACE_MODE_SGMII: + adv = 0x0001; + break; + + case PHY_INTERFACE_MODE_1000BASEX: + adv = linkmode_adv_to_mii_adv_x(advertise, + ETHTOOL_LINK_MODE_1000baseX_Full_BIT); + break; + + default: + return 0; + } + + err = mv88e6352_serdes_read(chip, MII_ADVERTISE, &val); + if (err) + return err; + + changed = val != adv; + if (changed) { + err = mv88e6352_serdes_write(chip, MII_ADVERTISE, adv); + if (err) + return err; + } + + err = mv88e6352_serdes_read(chip, MII_BMCR, &val); + if (err) + return err; + + if (phylink_autoneg_inband(mode)) + bmcr = val | BMCR_ANENABLE; + else + bmcr = val & ~BMCR_ANENABLE; + + if (bmcr == val) + return changed; + + return mv88e6352_serdes_write(chip, MII_BMCR, bmcr); +} + +int mv88e6352_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state) +{ + u16 bmsr, lpa, status; + int err; + + err = mv88e6352_serdes_read(chip, MII_BMSR, &bmsr); + if (err) { + dev_err(chip->dev, "can't read Serdes PHY BMSR: %d\n", err); + return err; + } + + err = mv88e6352_serdes_read(chip, 0x11, &status); + if (err) { + dev_err(chip->dev, "can't read Serdes PHY status: %d\n", err); + return err; + } + + err = mv88e6352_serdes_read(chip, MII_LPA, &lpa); + if (err) { + dev_err(chip->dev, "can't read Serdes PHY LPA: %d\n", err); + return err; + } + + return mv88e6xxx_serdes_pcs_get_state(chip, bmsr, lpa, status, state); +} + +int mv88e6352_serdes_pcs_an_restart(struct mv88e6xxx_chip *chip, int port, + int lane) +{ + u16 bmcr; + int err; + + err = mv88e6352_serdes_read(chip, MII_BMCR, &bmcr); + if (err) + return err; + + return mv88e6352_serdes_write(chip, MII_BMCR, bmcr | BMCR_ANRESTART); +} + +int mv88e6352_serdes_pcs_link_up(struct mv88e6xxx_chip *chip, int port, + int lane, int speed, int duplex) +{ + u16 val, bmcr; + int err; + + err = mv88e6352_serdes_read(chip, MII_BMCR, &val); + if (err) + return err; + + bmcr = val & ~(BMCR_SPEED100 | BMCR_FULLDPLX | BMCR_SPEED1000); + switch (speed) { + case SPEED_1000: + bmcr |= BMCR_SPEED1000; + break; + case SPEED_100: + bmcr |= BMCR_SPEED100; + break; + case SPEED_10: + break; + } + + if (duplex == DUPLEX_FULL) + bmcr |= BMCR_FULLDPLX; + + if (bmcr == val) + return 0; + + return mv88e6352_serdes_write(chip, MII_BMCR, bmcr); +} + +int mv88e6352_serdes_get_lane(struct mv88e6xxx_chip *chip, int port) +{ + u8 cmode = chip->ports[port].cmode; + int lane = -ENODEV; + + if ((cmode == MV88E6XXX_PORT_STS_CMODE_100BASEX) || + (cmode == MV88E6XXX_PORT_STS_CMODE_1000BASEX) || + (cmode == MV88E6XXX_PORT_STS_CMODE_SGMII)) + lane = 0xff; /* Unused */ + + return lane; +} + +struct mv88e6352_serdes_hw_stat { + char string[ETH_GSTRING_LEN]; + int sizeof_stat; + int reg; +}; + +static struct mv88e6352_serdes_hw_stat mv88e6352_serdes_hw_stats[] = { + { "serdes_fibre_rx_error", 16, 21 }, + { "serdes_PRBS_error", 32, 24 }, +}; + +int mv88e6352_serdes_get_sset_count(struct mv88e6xxx_chip *chip, int port) +{ + int err; + + err = mv88e6352_g2_scratch_port_has_serdes(chip, port); + if (err <= 0) + return err; + + return ARRAY_SIZE(mv88e6352_serdes_hw_stats); +} + +int mv88e6352_serdes_get_strings(struct mv88e6xxx_chip *chip, + int port, uint8_t *data) +{ + struct mv88e6352_serdes_hw_stat *stat; + int err, i; + + err = mv88e6352_g2_scratch_port_has_serdes(chip, port); + if (err <= 0) + return err; + + for (i = 0; i < ARRAY_SIZE(mv88e6352_serdes_hw_stats); i++) { + stat = &mv88e6352_serdes_hw_stats[i]; + memcpy(data + i * ETH_GSTRING_LEN, stat->string, + ETH_GSTRING_LEN); + } + return ARRAY_SIZE(mv88e6352_serdes_hw_stats); +} + +static uint64_t mv88e6352_serdes_get_stat(struct mv88e6xxx_chip *chip, + struct mv88e6352_serdes_hw_stat *stat) +{ + u64 val = 0; + u16 reg; + int err; + + err = mv88e6352_serdes_read(chip, stat->reg, ®); + if (err) { + dev_err(chip->dev, "failed to read statistic\n"); + return 0; + } + + val = reg; + + if (stat->sizeof_stat == 32) { + err = mv88e6352_serdes_read(chip, stat->reg + 1, ®); + if (err) { + dev_err(chip->dev, "failed to read statistic\n"); + return 0; + } + val = val << 16 | reg; + } + + return val; +} + +int mv88e6352_serdes_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data) +{ + struct mv88e6xxx_port *mv88e6xxx_port = &chip->ports[port]; + struct mv88e6352_serdes_hw_stat *stat; + int i, err; + u64 value; + + err = mv88e6352_g2_scratch_port_has_serdes(chip, port); + if (err <= 0) + return err; + + BUILD_BUG_ON(ARRAY_SIZE(mv88e6352_serdes_hw_stats) > + ARRAY_SIZE(mv88e6xxx_port->serdes_stats)); + + for (i = 0; i < ARRAY_SIZE(mv88e6352_serdes_hw_stats); i++) { + stat = &mv88e6352_serdes_hw_stats[i]; + value = mv88e6352_serdes_get_stat(chip, stat); + mv88e6xxx_port->serdes_stats[i] += value; + data[i] = mv88e6xxx_port->serdes_stats[i]; + } + + return ARRAY_SIZE(mv88e6352_serdes_hw_stats); +} + +static void mv88e6352_serdes_irq_link(struct mv88e6xxx_chip *chip, int port) +{ + u16 bmsr; + int err; + + /* If the link has dropped, we want to know about it. */ + err = mv88e6352_serdes_read(chip, MII_BMSR, &bmsr); + if (err) { + dev_err(chip->dev, "can't read Serdes BMSR: %d\n", err); + return; + } + + dsa_port_phylink_mac_change(chip->ds, port, !!(bmsr & BMSR_LSTATUS)); +} + +irqreturn_t mv88e6352_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, + int lane) +{ + irqreturn_t ret = IRQ_NONE; + u16 status; + int err; + + err = mv88e6352_serdes_read(chip, MV88E6352_SERDES_INT_STATUS, &status); + if (err) + return ret; + + if (status & MV88E6352_SERDES_INT_LINK_CHANGE) { + ret = IRQ_HANDLED; + mv88e6352_serdes_irq_link(chip, port); + } + + return ret; +} + +int mv88e6352_serdes_irq_enable(struct mv88e6xxx_chip *chip, int port, int lane, + bool enable) +{ + u16 val = 0; + + if (enable) + val |= MV88E6352_SERDES_INT_LINK_CHANGE; + + return mv88e6352_serdes_write(chip, MV88E6352_SERDES_INT_ENABLE, val); +} + +unsigned int mv88e6352_serdes_irq_mapping(struct mv88e6xxx_chip *chip, int port) +{ + return irq_find_mapping(chip->g2_irq.domain, MV88E6352_SERDES_IRQ); +} + +int mv88e6352_serdes_get_regs_len(struct mv88e6xxx_chip *chip, int port) +{ + int err; + + mv88e6xxx_reg_lock(chip); + err = mv88e6352_g2_scratch_port_has_serdes(chip, port); + mv88e6xxx_reg_unlock(chip); + if (err <= 0) + return err; + + return 32 * sizeof(u16); +} + +void mv88e6352_serdes_get_regs(struct mv88e6xxx_chip *chip, int port, void *_p) +{ + u16 *p = _p; + u16 reg; + int err; + int i; + + err = mv88e6352_g2_scratch_port_has_serdes(chip, port); + if (err <= 0) + return; + + for (i = 0 ; i < 32; i++) { + err = mv88e6352_serdes_read(chip, i, ®); + if (!err) + p[i] = reg; + } +} + +int mv88e6341_serdes_get_lane(struct mv88e6xxx_chip *chip, int port) +{ + u8 cmode = chip->ports[port].cmode; + int lane = -ENODEV; + + switch (port) { + case 5: + if (cmode == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode == MV88E6XXX_PORT_STS_CMODE_2500BASEX) + lane = MV88E6341_PORT5_LANE; + break; + } + + return lane; +} + +int mv88e6185_serdes_power(struct mv88e6xxx_chip *chip, int port, int lane, + bool up) +{ + /* The serdes power can't be controlled on this switch chip but we need + * to supply this function to avoid returning -EOPNOTSUPP in + * mv88e6xxx_serdes_power_up/mv88e6xxx_serdes_power_down + */ + return 0; +} + +int mv88e6185_serdes_get_lane(struct mv88e6xxx_chip *chip, int port) +{ + /* There are no configurable serdes lanes on this switch chip but we + * need to return a non-negative lane number so that callers of + * mv88e6xxx_serdes_get_lane() know this is a serdes port. + */ + switch (chip->ports[port].cmode) { + case MV88E6185_PORT_STS_CMODE_SERDES: + case MV88E6185_PORT_STS_CMODE_1000BASE_X: + return 0; + default: + return -ENODEV; + } +} + +int mv88e6185_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state) +{ + int err; + u16 status; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_STS, &status); + if (err) + return err; + + state->link = !!(status & MV88E6XXX_PORT_STS_LINK); + + if (state->link) { + state->duplex = status & MV88E6XXX_PORT_STS_DUPLEX ? DUPLEX_FULL : DUPLEX_HALF; + + switch (status & MV88E6XXX_PORT_STS_SPEED_MASK) { + case MV88E6XXX_PORT_STS_SPEED_1000: + state->speed = SPEED_1000; + break; + case MV88E6XXX_PORT_STS_SPEED_100: + state->speed = SPEED_100; + break; + case MV88E6XXX_PORT_STS_SPEED_10: + state->speed = SPEED_10; + break; + default: + dev_err(chip->dev, "invalid PHY speed\n"); + return -EINVAL; + } + } else { + state->duplex = DUPLEX_UNKNOWN; + state->speed = SPEED_UNKNOWN; + } + + return 0; +} + +int mv88e6097_serdes_irq_enable(struct mv88e6xxx_chip *chip, int port, int lane, + bool enable) +{ + u8 cmode = chip->ports[port].cmode; + + /* The serdes interrupts are enabled in the G2_INT_MASK register. We + * need to return 0 to avoid returning -EOPNOTSUPP in + * mv88e6xxx_serdes_irq_enable/mv88e6xxx_serdes_irq_disable + */ + switch (cmode) { + case MV88E6185_PORT_STS_CMODE_SERDES: + case MV88E6185_PORT_STS_CMODE_1000BASE_X: + return 0; + } + + return -EOPNOTSUPP; +} + +static void mv88e6097_serdes_irq_link(struct mv88e6xxx_chip *chip, int port) +{ + u16 status; + int err; + + err = mv88e6xxx_port_read(chip, port, MV88E6XXX_PORT_STS, &status); + if (err) { + dev_err(chip->dev, "can't read port status: %d\n", err); + return; + } + + dsa_port_phylink_mac_change(chip->ds, port, !!(status & MV88E6XXX_PORT_STS_LINK)); +} + +irqreturn_t mv88e6097_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, + int lane) +{ + u8 cmode = chip->ports[port].cmode; + + switch (cmode) { + case MV88E6185_PORT_STS_CMODE_SERDES: + case MV88E6185_PORT_STS_CMODE_1000BASE_X: + mv88e6097_serdes_irq_link(chip, port); + return IRQ_HANDLED; + } + + return IRQ_NONE; +} + +int mv88e6390_serdes_get_lane(struct mv88e6xxx_chip *chip, int port) +{ + u8 cmode = chip->ports[port].cmode; + int lane = -ENODEV; + + switch (port) { + case 9: + if (cmode == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode == MV88E6XXX_PORT_STS_CMODE_2500BASEX) + lane = MV88E6390_PORT9_LANE0; + break; + case 10: + if (cmode == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode == MV88E6XXX_PORT_STS_CMODE_2500BASEX) + lane = MV88E6390_PORT10_LANE0; + break; + } + + return lane; +} + +int mv88e6390x_serdes_get_lane(struct mv88e6xxx_chip *chip, int port) +{ + u8 cmode_port = chip->ports[port].cmode; + u8 cmode_port10 = chip->ports[10].cmode; + u8 cmode_port9 = chip->ports[9].cmode; + int lane = -ENODEV; + + switch (port) { + case 2: + if (cmode_port9 == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_2500BASEX) + if (cmode_port == MV88E6XXX_PORT_STS_CMODE_1000BASEX) + lane = MV88E6390_PORT9_LANE1; + break; + case 3: + if (cmode_port9 == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_2500BASEX || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_RXAUI) + if (cmode_port == MV88E6XXX_PORT_STS_CMODE_1000BASEX) + lane = MV88E6390_PORT9_LANE2; + break; + case 4: + if (cmode_port9 == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_2500BASEX || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_RXAUI) + if (cmode_port == MV88E6XXX_PORT_STS_CMODE_1000BASEX) + lane = MV88E6390_PORT9_LANE3; + break; + case 5: + if (cmode_port10 == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_2500BASEX) + if (cmode_port == MV88E6XXX_PORT_STS_CMODE_1000BASEX) + lane = MV88E6390_PORT10_LANE1; + break; + case 6: + if (cmode_port10 == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_2500BASEX || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_RXAUI) + if (cmode_port == MV88E6XXX_PORT_STS_CMODE_1000BASEX) + lane = MV88E6390_PORT10_LANE2; + break; + case 7: + if (cmode_port10 == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_2500BASEX || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_RXAUI) + if (cmode_port == MV88E6XXX_PORT_STS_CMODE_1000BASEX) + lane = MV88E6390_PORT10_LANE3; + break; + case 9: + if (cmode_port9 == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_2500BASEX || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_XAUI || + cmode_port9 == MV88E6XXX_PORT_STS_CMODE_RXAUI) + lane = MV88E6390_PORT9_LANE0; + break; + case 10: + if (cmode_port10 == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_2500BASEX || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_XAUI || + cmode_port10 == MV88E6XXX_PORT_STS_CMODE_RXAUI) + lane = MV88E6390_PORT10_LANE0; + break; + } + + return lane; +} + +/* Only Ports 0, 9 and 10 have SERDES lanes. Return the SERDES lane address + * a port is using else Returns -ENODEV. + */ +int mv88e6393x_serdes_get_lane(struct mv88e6xxx_chip *chip, int port) +{ + u8 cmode = chip->ports[port].cmode; + int lane = -ENODEV; + + if (port != 0 && port != 9 && port != 10) + return -EOPNOTSUPP; + + if (cmode == MV88E6XXX_PORT_STS_CMODE_1000BASEX || + cmode == MV88E6XXX_PORT_STS_CMODE_SGMII || + cmode == MV88E6XXX_PORT_STS_CMODE_2500BASEX || + cmode == MV88E6393X_PORT_STS_CMODE_5GBASER || + cmode == MV88E6393X_PORT_STS_CMODE_10GBASER) + lane = port; + + return lane; +} + +/* Set power up/down for 10GBASE-R and 10GBASE-X4/X2 */ +static int mv88e6390_serdes_power_10g(struct mv88e6xxx_chip *chip, int lane, + bool up) +{ + u16 val, new_val; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_10G_CTRL1, &val); + + if (err) + return err; + + if (up) + new_val = val & ~(MDIO_CTRL1_RESET | + MDIO_PCS_CTRL1_LOOPBACK | + MDIO_CTRL1_LPOWER); + else + new_val = val | MDIO_CTRL1_LPOWER; + + if (val != new_val) + err = mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_10G_CTRL1, new_val); + + return err; +} + +/* Set power up/down for SGMII and 1000Base-X */ +static int mv88e6390_serdes_power_sgmii(struct mv88e6xxx_chip *chip, int lane, + bool up) +{ + u16 val, new_val; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMCR, &val); + if (err) + return err; + + if (up) + new_val = val & ~(BMCR_RESET | BMCR_LOOPBACK | BMCR_PDOWN); + else + new_val = val | BMCR_PDOWN; + + if (val != new_val) + err = mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMCR, new_val); + + return err; +} + +struct mv88e6390_serdes_hw_stat { + char string[ETH_GSTRING_LEN]; + int reg; +}; + +static struct mv88e6390_serdes_hw_stat mv88e6390_serdes_hw_stats[] = { + { "serdes_rx_pkts", 0xf021 }, + { "serdes_rx_bytes", 0xf024 }, + { "serdes_rx_pkts_error", 0xf027 }, +}; + +int mv88e6390_serdes_get_sset_count(struct mv88e6xxx_chip *chip, int port) +{ + if (mv88e6xxx_serdes_get_lane(chip, port) < 0) + return 0; + + return ARRAY_SIZE(mv88e6390_serdes_hw_stats); +} + +int mv88e6390_serdes_get_strings(struct mv88e6xxx_chip *chip, + int port, uint8_t *data) +{ + struct mv88e6390_serdes_hw_stat *stat; + int i; + + if (mv88e6xxx_serdes_get_lane(chip, port) < 0) + return 0; + + for (i = 0; i < ARRAY_SIZE(mv88e6390_serdes_hw_stats); i++) { + stat = &mv88e6390_serdes_hw_stats[i]; + memcpy(data + i * ETH_GSTRING_LEN, stat->string, + ETH_GSTRING_LEN); + } + return ARRAY_SIZE(mv88e6390_serdes_hw_stats); +} + +static uint64_t mv88e6390_serdes_get_stat(struct mv88e6xxx_chip *chip, int lane, + struct mv88e6390_serdes_hw_stat *stat) +{ + u16 reg[3]; + int err, i; + + for (i = 0; i < 3; i++) { + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + stat->reg + i, ®[i]); + if (err) { + dev_err(chip->dev, "failed to read statistic\n"); + return 0; + } + } + + return reg[0] | ((u64)reg[1] << 16) | ((u64)reg[2] << 32); +} + +int mv88e6390_serdes_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data) +{ + struct mv88e6390_serdes_hw_stat *stat; + int lane; + int i; + + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane < 0) + return 0; + + for (i = 0; i < ARRAY_SIZE(mv88e6390_serdes_hw_stats); i++) { + stat = &mv88e6390_serdes_hw_stats[i]; + data[i] = mv88e6390_serdes_get_stat(chip, lane, stat); + } + + return ARRAY_SIZE(mv88e6390_serdes_hw_stats); +} + +static int mv88e6390_serdes_enable_checker(struct mv88e6xxx_chip *chip, int lane) +{ + u16 reg; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_PG_CONTROL, ®); + if (err) + return err; + + reg |= MV88E6390_PG_CONTROL_ENABLE_PC; + return mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_PG_CONTROL, reg); +} + +int mv88e6390_serdes_power(struct mv88e6xxx_chip *chip, int port, int lane, + bool up) +{ + u8 cmode = chip->ports[port].cmode; + int err; + + switch (cmode) { + case MV88E6XXX_PORT_STS_CMODE_SGMII: + case MV88E6XXX_PORT_STS_CMODE_1000BASEX: + case MV88E6XXX_PORT_STS_CMODE_2500BASEX: + err = mv88e6390_serdes_power_sgmii(chip, lane, up); + break; + case MV88E6XXX_PORT_STS_CMODE_XAUI: + case MV88E6XXX_PORT_STS_CMODE_RXAUI: + err = mv88e6390_serdes_power_10g(chip, lane, up); + break; + default: + err = -EINVAL; + break; + } + + if (!err && up) + err = mv88e6390_serdes_enable_checker(chip, lane); + + return err; +} + +int mv88e6390_serdes_pcs_config(struct mv88e6xxx_chip *chip, int port, + int lane, unsigned int mode, + phy_interface_t interface, + const unsigned long *advertise) +{ + u16 val, bmcr, adv; + bool changed; + int err; + + switch (interface) { + case PHY_INTERFACE_MODE_SGMII: + adv = 0x0001; + break; + + case PHY_INTERFACE_MODE_1000BASEX: + adv = linkmode_adv_to_mii_adv_x(advertise, + ETHTOOL_LINK_MODE_1000baseX_Full_BIT); + break; + + case PHY_INTERFACE_MODE_2500BASEX: + adv = linkmode_adv_to_mii_adv_x(advertise, + ETHTOOL_LINK_MODE_2500baseX_Full_BIT); + break; + + default: + return 0; + } + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_ADVERTISE, &val); + if (err) + return err; + + changed = val != adv; + if (changed) { + err = mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_ADVERTISE, adv); + if (err) + return err; + } + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMCR, &val); + if (err) + return err; + + if (phylink_autoneg_inband(mode)) + bmcr = val | BMCR_ANENABLE; + else + bmcr = val & ~BMCR_ANENABLE; + + /* setting ANENABLE triggers a restart of negotiation */ + if (bmcr == val) + return changed; + + return mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMCR, bmcr); +} + +static int mv88e6390_serdes_pcs_get_state_sgmii(struct mv88e6xxx_chip *chip, + int port, int lane, struct phylink_link_state *state) +{ + u16 bmsr, lpa, status; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMSR, &bmsr); + if (err) { + dev_err(chip->dev, "can't read Serdes PHY BMSR: %d\n", err); + return err; + } + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_PHY_STATUS, &status); + if (err) { + dev_err(chip->dev, "can't read Serdes PHY status: %d\n", err); + return err; + } + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_LPA, &lpa); + if (err) { + dev_err(chip->dev, "can't read Serdes PHY LPA: %d\n", err); + return err; + } + + return mv88e6xxx_serdes_pcs_get_state(chip, bmsr, lpa, status, state); +} + +static int mv88e6390_serdes_pcs_get_state_10g(struct mv88e6xxx_chip *chip, + int port, int lane, struct phylink_link_state *state) +{ + u16 status; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_10G_STAT1, &status); + if (err) + return err; + + state->link = !!(status & MDIO_STAT1_LSTATUS); + if (state->link) { + state->speed = SPEED_10000; + state->duplex = DUPLEX_FULL; + } + + return 0; +} + +static int mv88e6393x_serdes_pcs_get_state_10g(struct mv88e6xxx_chip *chip, + int port, int lane, + struct phylink_link_state *state) +{ + u16 status; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_10G_STAT1, &status); + if (err) + return err; + + state->link = !!(status & MDIO_STAT1_LSTATUS); + if (state->link) { + if (state->interface == PHY_INTERFACE_MODE_5GBASER) + state->speed = SPEED_5000; + else + state->speed = SPEED_10000; + state->duplex = DUPLEX_FULL; + } + + return 0; +} + +int mv88e6390_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state) +{ + switch (state->interface) { + case PHY_INTERFACE_MODE_SGMII: + case PHY_INTERFACE_MODE_1000BASEX: + case PHY_INTERFACE_MODE_2500BASEX: + return mv88e6390_serdes_pcs_get_state_sgmii(chip, port, lane, + state); + case PHY_INTERFACE_MODE_XAUI: + case PHY_INTERFACE_MODE_RXAUI: + return mv88e6390_serdes_pcs_get_state_10g(chip, port, lane, + state); + + default: + return -EOPNOTSUPP; + } +} + +int mv88e6393x_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state) +{ + switch (state->interface) { + case PHY_INTERFACE_MODE_SGMII: + case PHY_INTERFACE_MODE_1000BASEX: + case PHY_INTERFACE_MODE_2500BASEX: + return mv88e6390_serdes_pcs_get_state_sgmii(chip, port, lane, + state); + case PHY_INTERFACE_MODE_5GBASER: + case PHY_INTERFACE_MODE_10GBASER: + return mv88e6393x_serdes_pcs_get_state_10g(chip, port, lane, + state); + + default: + return -EOPNOTSUPP; + } +} + +int mv88e6390_serdes_pcs_an_restart(struct mv88e6xxx_chip *chip, int port, + int lane) +{ + u16 bmcr; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMCR, &bmcr); + if (err) + return err; + + return mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMCR, + bmcr | BMCR_ANRESTART); +} + +int mv88e6390_serdes_pcs_link_up(struct mv88e6xxx_chip *chip, int port, + int lane, int speed, int duplex) +{ + u16 val, bmcr; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMCR, &val); + if (err) + return err; + + bmcr = val & ~(BMCR_SPEED100 | BMCR_FULLDPLX | BMCR_SPEED1000); + switch (speed) { + case SPEED_2500: + case SPEED_1000: + bmcr |= BMCR_SPEED1000; + break; + case SPEED_100: + bmcr |= BMCR_SPEED100; + break; + case SPEED_10: + break; + } + + if (duplex == DUPLEX_FULL) + bmcr |= BMCR_FULLDPLX; + + if (bmcr == val) + return 0; + + return mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMCR, bmcr); +} + +static void mv88e6390_serdes_irq_link_sgmii(struct mv88e6xxx_chip *chip, + int port, int lane) +{ + u16 bmsr; + int err; + + /* If the link has dropped, we want to know about it. */ + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_BMSR, &bmsr); + if (err) { + dev_err(chip->dev, "can't read Serdes BMSR: %d\n", err); + return; + } + + dsa_port_phylink_mac_change(chip->ds, port, !!(bmsr & BMSR_LSTATUS)); +} + +static void mv88e6393x_serdes_irq_link_10g(struct mv88e6xxx_chip *chip, + int port, u8 lane) +{ + u16 status; + int err; + + /* If the link has dropped, we want to know about it. */ + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_10G_STAT1, &status); + if (err) { + dev_err(chip->dev, "can't read Serdes STAT1: %d\n", err); + return; + } + + dsa_port_phylink_mac_change(chip->ds, port, !!(status & MDIO_STAT1_LSTATUS)); +} + +static int mv88e6390_serdes_irq_enable_sgmii(struct mv88e6xxx_chip *chip, + int lane, bool enable) +{ + u16 val = 0; + + if (enable) + val |= MV88E6390_SGMII_INT_LINK_DOWN | + MV88E6390_SGMII_INT_LINK_UP; + + return mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_INT_ENABLE, val); +} + +int mv88e6390_serdes_irq_enable(struct mv88e6xxx_chip *chip, int port, int lane, + bool enable) +{ + u8 cmode = chip->ports[port].cmode; + + switch (cmode) { + case MV88E6XXX_PORT_STS_CMODE_SGMII: + case MV88E6XXX_PORT_STS_CMODE_1000BASEX: + case MV88E6XXX_PORT_STS_CMODE_2500BASEX: + return mv88e6390_serdes_irq_enable_sgmii(chip, lane, enable); + } + + return 0; +} + +static int mv88e6390_serdes_irq_status_sgmii(struct mv88e6xxx_chip *chip, + int lane, u16 *status) +{ + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6390_SGMII_INT_STATUS, status); + + return err; +} + +static int mv88e6393x_serdes_irq_enable_10g(struct mv88e6xxx_chip *chip, + u8 lane, bool enable) +{ + u16 val = 0; + + if (enable) + val |= MV88E6393X_10G_INT_LINK_CHANGE; + + return mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_10G_INT_ENABLE, val); +} + +int mv88e6393x_serdes_irq_enable(struct mv88e6xxx_chip *chip, int port, + int lane, bool enable) +{ + u8 cmode = chip->ports[port].cmode; + + switch (cmode) { + case MV88E6XXX_PORT_STS_CMODE_SGMII: + case MV88E6XXX_PORT_STS_CMODE_1000BASEX: + case MV88E6XXX_PORT_STS_CMODE_2500BASEX: + return mv88e6390_serdes_irq_enable_sgmii(chip, lane, enable); + case MV88E6393X_PORT_STS_CMODE_5GBASER: + case MV88E6393X_PORT_STS_CMODE_10GBASER: + return mv88e6393x_serdes_irq_enable_10g(chip, lane, enable); + } + + return 0; +} + +static int mv88e6393x_serdes_irq_status_10g(struct mv88e6xxx_chip *chip, + u8 lane, u16 *status) +{ + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_10G_INT_STATUS, status); + + return err; +} + +irqreturn_t mv88e6393x_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, + int lane) +{ + u8 cmode = chip->ports[port].cmode; + irqreturn_t ret = IRQ_NONE; + u16 status; + int err; + + switch (cmode) { + case MV88E6XXX_PORT_STS_CMODE_SGMII: + case MV88E6XXX_PORT_STS_CMODE_1000BASEX: + case MV88E6XXX_PORT_STS_CMODE_2500BASEX: + err = mv88e6390_serdes_irq_status_sgmii(chip, lane, &status); + if (err) + return ret; + if (status & (MV88E6390_SGMII_INT_LINK_DOWN | + MV88E6390_SGMII_INT_LINK_UP)) { + ret = IRQ_HANDLED; + mv88e6390_serdes_irq_link_sgmii(chip, port, lane); + } + break; + case MV88E6393X_PORT_STS_CMODE_5GBASER: + case MV88E6393X_PORT_STS_CMODE_10GBASER: + err = mv88e6393x_serdes_irq_status_10g(chip, lane, &status); + if (err) + return err; + if (status & MV88E6393X_10G_INT_LINK_CHANGE) { + ret = IRQ_HANDLED; + mv88e6393x_serdes_irq_link_10g(chip, port, lane); + } + break; + } + + return ret; +} + +irqreturn_t mv88e6390_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, + int lane) +{ + u8 cmode = chip->ports[port].cmode; + irqreturn_t ret = IRQ_NONE; + u16 status; + int err; + + switch (cmode) { + case MV88E6XXX_PORT_STS_CMODE_SGMII: + case MV88E6XXX_PORT_STS_CMODE_1000BASEX: + case MV88E6XXX_PORT_STS_CMODE_2500BASEX: + err = mv88e6390_serdes_irq_status_sgmii(chip, lane, &status); + if (err) + return ret; + if (status & (MV88E6390_SGMII_INT_LINK_DOWN | + MV88E6390_SGMII_INT_LINK_UP)) { + ret = IRQ_HANDLED; + mv88e6390_serdes_irq_link_sgmii(chip, port, lane); + } + } + + return ret; +} + +unsigned int mv88e6390_serdes_irq_mapping(struct mv88e6xxx_chip *chip, int port) +{ + return irq_find_mapping(chip->g2_irq.domain, port); +} + +static const u16 mv88e6390_serdes_regs[] = { + /* SERDES common registers */ + 0xf00a, 0xf00b, 0xf00c, + 0xf010, 0xf011, 0xf012, 0xf013, + 0xf016, 0xf017, 0xf018, + 0xf01b, 0xf01c, 0xf01d, 0xf01e, 0xf01f, + 0xf020, 0xf021, 0xf022, 0xf023, 0xf024, 0xf025, 0xf026, 0xf027, + 0xf028, 0xf029, + 0xf030, 0xf031, 0xf032, 0xf033, 0xf034, 0xf035, 0xf036, 0xf037, + 0xf038, 0xf039, + /* SGMII */ + 0x2000, 0x2001, 0x2002, 0x2003, 0x2004, 0x2005, 0x2006, 0x2007, + 0x2008, + 0x200f, + 0xa000, 0xa001, 0xa002, 0xa003, + /* 10Gbase-X */ + 0x1000, 0x1001, 0x1002, 0x1003, 0x1004, 0x1005, 0x1006, 0x1007, + 0x1008, + 0x100e, 0x100f, + 0x1018, 0x1019, + 0x9000, 0x9001, 0x9002, 0x9003, 0x9004, + 0x9006, + 0x9010, 0x9011, 0x9012, 0x9013, 0x9014, 0x9015, 0x9016, + /* 10Gbase-R */ + 0x1020, 0x1021, 0x1022, 0x1023, 0x1024, 0x1025, 0x1026, 0x1027, + 0x1028, 0x1029, 0x102a, 0x102b, +}; + +int mv88e6390_serdes_get_regs_len(struct mv88e6xxx_chip *chip, int port) +{ + if (mv88e6xxx_serdes_get_lane(chip, port) < 0) + return 0; + + return ARRAY_SIZE(mv88e6390_serdes_regs) * sizeof(u16); +} + +void mv88e6390_serdes_get_regs(struct mv88e6xxx_chip *chip, int port, void *_p) +{ + u16 *p = _p; + int lane; + u16 reg; + int err; + int i; + + lane = mv88e6xxx_serdes_get_lane(chip, port); + if (lane < 0) + return; + + for (i = 0 ; i < ARRAY_SIZE(mv88e6390_serdes_regs); i++) { + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + mv88e6390_serdes_regs[i], ®); + if (!err) + p[i] = reg; + } +} + +static const int mv88e6352_serdes_p2p_to_reg[] = { + /* Index of value in microvolts corresponds to the register value */ + 14000, 112000, 210000, 308000, 406000, 504000, 602000, 700000, +}; + +int mv88e6352_serdes_set_tx_amplitude(struct mv88e6xxx_chip *chip, int port, + int val) +{ + bool found = false; + u16 ctrl, reg; + int err; + int i; + + err = mv88e6352_g2_scratch_port_has_serdes(chip, port); + if (err <= 0) + return err; + + for (i = 0; i < ARRAY_SIZE(mv88e6352_serdes_p2p_to_reg); ++i) { + if (mv88e6352_serdes_p2p_to_reg[i] == val) { + reg = i; + found = true; + break; + } + } + + if (!found) + return -EINVAL; + + err = mv88e6352_serdes_read(chip, MV88E6352_SERDES_SPEC_CTRL2, &ctrl); + if (err) + return err; + + ctrl &= ~MV88E6352_SERDES_OUT_AMP_MASK; + ctrl |= reg; + + return mv88e6352_serdes_write(chip, MV88E6352_SERDES_SPEC_CTRL2, ctrl); +} + +static int mv88e6393x_serdes_power_lane(struct mv88e6xxx_chip *chip, int lane, + bool on) +{ + u16 reg; + int err; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_SERDES_CTRL1, ®); + if (err) + return err; + + if (on) + reg &= ~(MV88E6393X_SERDES_CTRL1_TX_PDOWN | + MV88E6393X_SERDES_CTRL1_RX_PDOWN); + else + reg |= MV88E6393X_SERDES_CTRL1_TX_PDOWN | + MV88E6393X_SERDES_CTRL1_RX_PDOWN; + + return mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_SERDES_CTRL1, reg); +} + +static int mv88e6393x_serdes_erratum_4_6(struct mv88e6xxx_chip *chip, int lane) +{ + u16 reg; + int err; + + /* mv88e6393x family errata 4.6: + * Cannot clear PwrDn bit on SERDES if device is configured CPU_MGD + * mode or P0_mode is configured for [x]MII. + * Workaround: Set SERDES register 4.F002 bit 5=0 and bit 15=1. + * + * It seems that after this workaround the SERDES is automatically + * powered up (the bit is cleared), so power it down. + */ + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_SERDES_POC, ®); + if (err) + return err; + + reg &= ~MV88E6393X_SERDES_POC_PDOWN; + reg |= MV88E6393X_SERDES_POC_RESET; + + err = mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_SERDES_POC, reg); + if (err) + return err; + + err = mv88e6390_serdes_power_sgmii(chip, lane, false); + if (err) + return err; + + return mv88e6393x_serdes_power_lane(chip, lane, false); +} + +int mv88e6393x_serdes_setup_errata(struct mv88e6xxx_chip *chip) +{ + int err; + + err = mv88e6393x_serdes_erratum_4_6(chip, MV88E6393X_PORT0_LANE); + if (err) + return err; + + err = mv88e6393x_serdes_erratum_4_6(chip, MV88E6393X_PORT9_LANE); + if (err) + return err; + + return mv88e6393x_serdes_erratum_4_6(chip, MV88E6393X_PORT10_LANE); +} + +static int mv88e6393x_serdes_erratum_4_8(struct mv88e6xxx_chip *chip, int lane) +{ + u16 reg, pcs; + int err; + + /* mv88e6393x family errata 4.8: + * When a SERDES port is operating in 1000BASE-X or SGMII mode link may + * not come up after hardware reset or software reset of SERDES core. + * Workaround is to write SERDES register 4.F074.14=1 for only those + * modes and 0 in all other modes. + */ + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_SERDES_POC, &pcs); + if (err) + return err; + + pcs &= MV88E6393X_SERDES_POC_PCS_MASK; + + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_ERRATA_4_8_REG, ®); + if (err) + return err; + + if (pcs == MV88E6393X_SERDES_POC_PCS_1000BASEX || + pcs == MV88E6393X_SERDES_POC_PCS_SGMII_PHY || + pcs == MV88E6393X_SERDES_POC_PCS_SGMII_MAC) + reg |= MV88E6393X_ERRATA_4_8_BIT; + else + reg &= ~MV88E6393X_ERRATA_4_8_BIT; + + return mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_ERRATA_4_8_REG, reg); +} + +static int mv88e6393x_serdes_erratum_5_2(struct mv88e6xxx_chip *chip, int lane, + u8 cmode) +{ + static const struct { + u16 dev, reg, val, mask; + } fixes[] = { + { MDIO_MMD_VEND1, 0x8093, 0xcb5a, 0xffff }, + { MDIO_MMD_VEND1, 0x8171, 0x7088, 0xffff }, + { MDIO_MMD_VEND1, 0x80c9, 0x311a, 0xffff }, + { MDIO_MMD_VEND1, 0x80a2, 0x8000, 0xff7f }, + { MDIO_MMD_VEND1, 0x80a9, 0x0000, 0xfff0 }, + { MDIO_MMD_VEND1, 0x80a3, 0x0000, 0xf8ff }, + { MDIO_MMD_PHYXS, MV88E6393X_SERDES_POC, + MV88E6393X_SERDES_POC_RESET, MV88E6393X_SERDES_POC_RESET }, + }; + int err, i; + u16 reg; + + /* mv88e6393x family errata 5.2: + * For optimal signal integrity the following sequence should be applied + * to SERDES operating in 10G mode. These registers only apply to 10G + * operation and have no effect on other speeds. + */ + if (cmode != MV88E6393X_PORT_STS_CMODE_10GBASER) + return 0; + + for (i = 0; i < ARRAY_SIZE(fixes); ++i) { + err = mv88e6390_serdes_read(chip, lane, fixes[i].dev, + fixes[i].reg, ®); + if (err) + return err; + + reg &= ~fixes[i].mask; + reg |= fixes[i].val; + + err = mv88e6390_serdes_write(chip, lane, fixes[i].dev, + fixes[i].reg, reg); + if (err) + return err; + } + + return 0; +} + +static int mv88e6393x_serdes_fix_2500basex_an(struct mv88e6xxx_chip *chip, + int lane, u8 cmode, bool on) +{ + u16 reg; + int err; + + if (cmode != MV88E6XXX_PORT_STS_CMODE_2500BASEX) + return 0; + + /* Inband AN is broken on Amethyst in 2500base-x mode when set by + * standard mechanism (via cmode). + * We can get around this by configuring the PCS mode to 1000base-x + * and then writing value 0x58 to register 1e.8000. (This must be done + * while SerDes receiver and transmitter are disabled, which is, when + * this function is called.) + * It seem that when we do this configuration to 2500base-x mode (by + * changing PCS mode to 1000base-x and frequency to 3.125 GHz from + * 1.25 GHz) and then configure to sgmii or 1000base-x, the device + * thinks that it already has SerDes at 1.25 GHz and does not change + * the 1e.8000 register, leaving SerDes at 3.125 GHz. + * To avoid this, change PCS mode back to 2500base-x when disabling + * SerDes from 2500base-x mode. + */ + err = mv88e6390_serdes_read(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_SERDES_POC, ®); + if (err) + return err; + + reg &= ~(MV88E6393X_SERDES_POC_PCS_MASK | MV88E6393X_SERDES_POC_AN); + if (on) + reg |= MV88E6393X_SERDES_POC_PCS_1000BASEX | + MV88E6393X_SERDES_POC_AN; + else + reg |= MV88E6393X_SERDES_POC_PCS_2500BASEX; + reg |= MV88E6393X_SERDES_POC_RESET; + + err = mv88e6390_serdes_write(chip, lane, MDIO_MMD_PHYXS, + MV88E6393X_SERDES_POC, reg); + if (err) + return err; + + err = mv88e6390_serdes_write(chip, lane, MDIO_MMD_VEND1, 0x8000, 0x58); + if (err) + return err; + + return 0; +} + +int mv88e6393x_serdes_power(struct mv88e6xxx_chip *chip, int port, int lane, + bool on) +{ + u8 cmode = chip->ports[port].cmode; + int err; + + if (port != 0 && port != 9 && port != 10) + return -EOPNOTSUPP; + + if (on) { + err = mv88e6393x_serdes_erratum_4_8(chip, lane); + if (err) + return err; + + err = mv88e6393x_serdes_erratum_5_2(chip, lane, cmode); + if (err) + return err; + + err = mv88e6393x_serdes_fix_2500basex_an(chip, lane, cmode, + true); + if (err) + return err; + + err = mv88e6393x_serdes_power_lane(chip, lane, true); + if (err) + return err; + } + + switch (cmode) { + case MV88E6XXX_PORT_STS_CMODE_SGMII: + case MV88E6XXX_PORT_STS_CMODE_1000BASEX: + case MV88E6XXX_PORT_STS_CMODE_2500BASEX: + err = mv88e6390_serdes_power_sgmii(chip, lane, on); + break; + case MV88E6393X_PORT_STS_CMODE_5GBASER: + case MV88E6393X_PORT_STS_CMODE_10GBASER: + err = mv88e6390_serdes_power_10g(chip, lane, on); + break; + default: + err = -EINVAL; + break; + } + + if (err) + return err; + + if (!on) { + err = mv88e6393x_serdes_power_lane(chip, lane, false); + if (err) + return err; + + err = mv88e6393x_serdes_fix_2500basex_an(chip, lane, cmode, + false); + } + + return err; +} diff --git a/drivers/net/dsa/mv88e6xxx/serdes.h b/drivers/net/dsa/mv88e6xxx/serdes.h new file mode 100644 index 000000000..29bb4e91e --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/serdes.h @@ -0,0 +1,248 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx SERDES manipulation, via SMI bus + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2016 Andrew Lunn <andrew@lunn.ch> + */ + +#ifndef _MV88E6XXX_SERDES_H +#define _MV88E6XXX_SERDES_H + +#include "chip.h" + +#define MV88E6352_ADDR_SERDES 0x0f +#define MV88E6352_SERDES_PAGE_FIBER 0x01 +#define MV88E6352_SERDES_IRQ 0x0b +#define MV88E6352_SERDES_INT_ENABLE 0x12 +#define MV88E6352_SERDES_INT_SPEED_CHANGE BIT(14) +#define MV88E6352_SERDES_INT_DUPLEX_CHANGE BIT(13) +#define MV88E6352_SERDES_INT_PAGE_RX BIT(12) +#define MV88E6352_SERDES_INT_AN_COMPLETE BIT(11) +#define MV88E6352_SERDES_INT_LINK_CHANGE BIT(10) +#define MV88E6352_SERDES_INT_SYMBOL_ERROR BIT(9) +#define MV88E6352_SERDES_INT_FALSE_CARRIER BIT(8) +#define MV88E6352_SERDES_INT_FIFO_OVER_UNDER BIT(7) +#define MV88E6352_SERDES_INT_FIBRE_ENERGY BIT(4) +#define MV88E6352_SERDES_INT_STATUS 0x13 + +#define MV88E6352_SERDES_SPEC_CTRL2 0x1a +#define MV88E6352_SERDES_OUT_AMP_MASK 0x0007 + +#define MV88E6341_PORT5_LANE 0x15 + +#define MV88E6390_PORT9_LANE0 0x09 +#define MV88E6390_PORT9_LANE1 0x12 +#define MV88E6390_PORT9_LANE2 0x13 +#define MV88E6390_PORT9_LANE3 0x14 +#define MV88E6390_PORT10_LANE0 0x0a +#define MV88E6390_PORT10_LANE1 0x15 +#define MV88E6390_PORT10_LANE2 0x16 +#define MV88E6390_PORT10_LANE3 0x17 + +/* 10GBASE-R and 10GBASE-X4/X2 */ +#define MV88E6390_10G_CTRL1 (0x1000 + MDIO_CTRL1) +#define MV88E6390_10G_STAT1 (0x1000 + MDIO_STAT1) +#define MV88E6393X_10G_INT_ENABLE 0x9000 +#define MV88E6393X_10G_INT_LINK_CHANGE BIT(2) +#define MV88E6393X_10G_INT_STATUS 0x9001 + +/* 1000BASE-X and SGMII */ +#define MV88E6390_SGMII_BMCR (0x2000 + MII_BMCR) +#define MV88E6390_SGMII_BMSR (0x2000 + MII_BMSR) +#define MV88E6390_SGMII_ADVERTISE (0x2000 + MII_ADVERTISE) +#define MV88E6390_SGMII_LPA (0x2000 + MII_LPA) +#define MV88E6390_SGMII_INT_ENABLE 0xa001 +#define MV88E6390_SGMII_INT_SPEED_CHANGE BIT(14) +#define MV88E6390_SGMII_INT_DUPLEX_CHANGE BIT(13) +#define MV88E6390_SGMII_INT_PAGE_RX BIT(12) +#define MV88E6390_SGMII_INT_AN_COMPLETE BIT(11) +#define MV88E6390_SGMII_INT_LINK_DOWN BIT(10) +#define MV88E6390_SGMII_INT_LINK_UP BIT(9) +#define MV88E6390_SGMII_INT_SYMBOL_ERROR BIT(8) +#define MV88E6390_SGMII_INT_FALSE_CARRIER BIT(7) +#define MV88E6390_SGMII_INT_STATUS 0xa002 +#define MV88E6390_SGMII_PHY_STATUS 0xa003 +#define MV88E6390_SGMII_PHY_STATUS_SPEED_MASK GENMASK(15, 14) +#define MV88E6390_SGMII_PHY_STATUS_SPEED_1000 0x8000 +#define MV88E6390_SGMII_PHY_STATUS_SPEED_100 0x4000 +#define MV88E6390_SGMII_PHY_STATUS_SPEED_10 0x0000 +#define MV88E6390_SGMII_PHY_STATUS_DUPLEX_FULL BIT(13) +#define MV88E6390_SGMII_PHY_STATUS_SPD_DPL_VALID BIT(11) +#define MV88E6390_SGMII_PHY_STATUS_LINK BIT(10) +#define MV88E6390_SGMII_PHY_STATUS_TX_PAUSE BIT(3) +#define MV88E6390_SGMII_PHY_STATUS_RX_PAUSE BIT(2) + +/* Packet generator pad packet checker */ +#define MV88E6390_PG_CONTROL 0xf010 +#define MV88E6390_PG_CONTROL_ENABLE_PC BIT(0) + +#define MV88E6393X_PORT0_LANE 0x00 +#define MV88E6393X_PORT9_LANE 0x09 +#define MV88E6393X_PORT10_LANE 0x0a + +/* Port Operational Configuration */ +#define MV88E6393X_SERDES_POC 0xf002 +#define MV88E6393X_SERDES_POC_PCS_1000BASEX 0x0000 +#define MV88E6393X_SERDES_POC_PCS_2500BASEX 0x0001 +#define MV88E6393X_SERDES_POC_PCS_SGMII_PHY 0x0002 +#define MV88E6393X_SERDES_POC_PCS_SGMII_MAC 0x0003 +#define MV88E6393X_SERDES_POC_PCS_5GBASER 0x0004 +#define MV88E6393X_SERDES_POC_PCS_10GBASER 0x0005 +#define MV88E6393X_SERDES_POC_PCS_USXGMII_PHY 0x0006 +#define MV88E6393X_SERDES_POC_PCS_USXGMII_MAC 0x0007 +#define MV88E6393X_SERDES_POC_PCS_MASK 0x0007 +#define MV88E6393X_SERDES_POC_RESET BIT(15) +#define MV88E6393X_SERDES_POC_PDOWN BIT(5) +#define MV88E6393X_SERDES_POC_AN BIT(3) +#define MV88E6393X_SERDES_CTRL1 0xf003 +#define MV88E6393X_SERDES_CTRL1_TX_PDOWN BIT(9) +#define MV88E6393X_SERDES_CTRL1_RX_PDOWN BIT(8) + +#define MV88E6393X_ERRATA_4_8_REG 0xF074 +#define MV88E6393X_ERRATA_4_8_BIT BIT(14) + +int mv88e6185_serdes_get_lane(struct mv88e6xxx_chip *chip, int port); +int mv88e6341_serdes_get_lane(struct mv88e6xxx_chip *chip, int port); +int mv88e6352_serdes_get_lane(struct mv88e6xxx_chip *chip, int port); +int mv88e6390_serdes_get_lane(struct mv88e6xxx_chip *chip, int port); +int mv88e6390x_serdes_get_lane(struct mv88e6xxx_chip *chip, int port); +int mv88e6393x_serdes_get_lane(struct mv88e6xxx_chip *chip, int port); +int mv88e6352_serdes_pcs_config(struct mv88e6xxx_chip *chip, int port, + int lane, unsigned int mode, + phy_interface_t interface, + const unsigned long *advertise); +int mv88e6390_serdes_pcs_config(struct mv88e6xxx_chip *chip, int port, + int lane, unsigned int mode, + phy_interface_t interface, + const unsigned long *advertise); +int mv88e6185_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state); +int mv88e6352_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state); +int mv88e6390_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state); +int mv88e6393x_serdes_pcs_get_state(struct mv88e6xxx_chip *chip, int port, + int lane, struct phylink_link_state *state); +int mv88e6352_serdes_pcs_an_restart(struct mv88e6xxx_chip *chip, int port, + int lane); +int mv88e6390_serdes_pcs_an_restart(struct mv88e6xxx_chip *chip, int port, + int lane); +int mv88e6352_serdes_pcs_link_up(struct mv88e6xxx_chip *chip, int port, + int lane, int speed, int duplex); +int mv88e6390_serdes_pcs_link_up(struct mv88e6xxx_chip *chip, int port, + int lane, int speed, int duplex); +unsigned int mv88e6352_serdes_irq_mapping(struct mv88e6xxx_chip *chip, + int port); +unsigned int mv88e6390_serdes_irq_mapping(struct mv88e6xxx_chip *chip, + int port); +int mv88e6185_serdes_power(struct mv88e6xxx_chip *chip, int port, int lane, + bool up); +int mv88e6352_serdes_power(struct mv88e6xxx_chip *chip, int port, int lane, + bool on); +int mv88e6390_serdes_power(struct mv88e6xxx_chip *chip, int port, int lane, + bool on); +int mv88e6393x_serdes_power(struct mv88e6xxx_chip *chip, int port, int lane, + bool on); +int mv88e6393x_serdes_setup_errata(struct mv88e6xxx_chip *chip); +int mv88e6097_serdes_irq_enable(struct mv88e6xxx_chip *chip, int port, int lane, + bool enable); +int mv88e6352_serdes_irq_enable(struct mv88e6xxx_chip *chip, int port, int lane, + bool enable); +int mv88e6390_serdes_irq_enable(struct mv88e6xxx_chip *chip, int port, int lane, + bool enable); +int mv88e6393x_serdes_irq_enable(struct mv88e6xxx_chip *chip, int port, + int lane, bool enable); +irqreturn_t mv88e6097_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, + int lane); +irqreturn_t mv88e6352_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, + int lane); +irqreturn_t mv88e6390_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, + int lane); +irqreturn_t mv88e6393x_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, + int lane); +int mv88e6352_serdes_get_sset_count(struct mv88e6xxx_chip *chip, int port); +int mv88e6352_serdes_get_strings(struct mv88e6xxx_chip *chip, + int port, uint8_t *data); +int mv88e6352_serdes_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data); +int mv88e6390_serdes_get_sset_count(struct mv88e6xxx_chip *chip, int port); +int mv88e6390_serdes_get_strings(struct mv88e6xxx_chip *chip, + int port, uint8_t *data); +int mv88e6390_serdes_get_stats(struct mv88e6xxx_chip *chip, int port, + uint64_t *data); + +int mv88e6352_serdes_get_regs_len(struct mv88e6xxx_chip *chip, int port); +void mv88e6352_serdes_get_regs(struct mv88e6xxx_chip *chip, int port, void *_p); +int mv88e6390_serdes_get_regs_len(struct mv88e6xxx_chip *chip, int port); +void mv88e6390_serdes_get_regs(struct mv88e6xxx_chip *chip, int port, void *_p); + +int mv88e6352_serdes_set_tx_amplitude(struct mv88e6xxx_chip *chip, int port, + int val); + +/* Return the (first) SERDES lane address a port is using, -errno otherwise. */ +static inline int mv88e6xxx_serdes_get_lane(struct mv88e6xxx_chip *chip, + int port) +{ + if (!chip->info->ops->serdes_get_lane) + return -EOPNOTSUPP; + + return chip->info->ops->serdes_get_lane(chip, port); +} + +static inline int mv88e6xxx_serdes_power_up(struct mv88e6xxx_chip *chip, + int port, int lane) +{ + if (!chip->info->ops->serdes_power) + return -EOPNOTSUPP; + + return chip->info->ops->serdes_power(chip, port, lane, true); +} + +static inline int mv88e6xxx_serdes_power_down(struct mv88e6xxx_chip *chip, + int port, int lane) +{ + if (!chip->info->ops->serdes_power) + return -EOPNOTSUPP; + + return chip->info->ops->serdes_power(chip, port, lane, false); +} + +static inline unsigned int +mv88e6xxx_serdes_irq_mapping(struct mv88e6xxx_chip *chip, int port) +{ + if (!chip->info->ops->serdes_irq_mapping) + return 0; + + return chip->info->ops->serdes_irq_mapping(chip, port); +} + +static inline int mv88e6xxx_serdes_irq_enable(struct mv88e6xxx_chip *chip, + int port, int lane) +{ + if (!chip->info->ops->serdes_irq_enable) + return -EOPNOTSUPP; + + return chip->info->ops->serdes_irq_enable(chip, port, lane, true); +} + +static inline int mv88e6xxx_serdes_irq_disable(struct mv88e6xxx_chip *chip, + int port, int lane) +{ + if (!chip->info->ops->serdes_irq_enable) + return -EOPNOTSUPP; + + return chip->info->ops->serdes_irq_enable(chip, port, lane, false); +} + +static inline irqreturn_t +mv88e6xxx_serdes_irq_status(struct mv88e6xxx_chip *chip, int port, int lane) +{ + if (!chip->info->ops->serdes_irq_status) + return IRQ_NONE; + + return chip->info->ops->serdes_irq_status(chip, port, lane); +} + +#endif diff --git a/drivers/net/dsa/mv88e6xxx/smi.c b/drivers/net/dsa/mv88e6xxx/smi.c new file mode 100644 index 000000000..a990271b7 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/smi.c @@ -0,0 +1,190 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* + * Marvell 88E6xxx System Management Interface (SMI) support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2019 Vivien Didelot <vivien.didelot@gmail.com> + */ + +#include "chip.h" +#include "smi.h" + +/* The switch ADDR[4:1] configuration pins define the chip SMI device address + * (ADDR[0] is always zero, thus only even SMI addresses can be strapped). + * + * When ADDR is all zero, the chip uses Single-chip Addressing Mode, assuming it + * is the only device connected to the SMI master. In this mode it responds to + * all 32 possible SMI addresses, and thus maps directly the internal devices. + * + * When ADDR is non-zero, the chip uses Multi-chip Addressing Mode, allowing + * multiple devices to share the SMI interface. In this mode it responds to only + * 2 registers, used to indirectly access the internal SMI devices. + * + * Some chips use a different scheme: Only the ADDR4 pin is used for + * configuration, and the device responds to 16 of the 32 SMI + * addresses, allowing two to coexist on the same SMI interface. + */ + +static int mv88e6xxx_smi_direct_read(struct mv88e6xxx_chip *chip, + int dev, int reg, u16 *data) +{ + int ret; + + ret = mdiobus_read_nested(chip->bus, dev, reg); + if (ret < 0) + return ret; + + *data = ret & 0xffff; + + return 0; +} + +static int mv88e6xxx_smi_direct_write(struct mv88e6xxx_chip *chip, + int dev, int reg, u16 data) +{ + int ret; + + ret = mdiobus_write_nested(chip->bus, dev, reg, data); + if (ret < 0) + return ret; + + return 0; +} + +static int mv88e6xxx_smi_direct_wait(struct mv88e6xxx_chip *chip, + int dev, int reg, int bit, int val) +{ + const unsigned long timeout = jiffies + msecs_to_jiffies(50); + u16 data; + int err; + int i; + + /* Even if the initial poll takes longer than 50ms, always do + * at least one more attempt. + */ + for (i = 0; time_before(jiffies, timeout) || (i < 2); i++) { + err = mv88e6xxx_smi_direct_read(chip, dev, reg, &data); + if (err) + return err; + + if (!!(data & BIT(bit)) == !!val) + return 0; + + if (i < 2) + cpu_relax(); + else + usleep_range(1000, 2000); + } + + return -ETIMEDOUT; +} + +static const struct mv88e6xxx_bus_ops mv88e6xxx_smi_direct_ops = { + .read = mv88e6xxx_smi_direct_read, + .write = mv88e6xxx_smi_direct_write, +}; + +static int mv88e6xxx_smi_dual_direct_read(struct mv88e6xxx_chip *chip, + int dev, int reg, u16 *data) +{ + return mv88e6xxx_smi_direct_read(chip, chip->sw_addr + dev, reg, data); +} + +static int mv88e6xxx_smi_dual_direct_write(struct mv88e6xxx_chip *chip, + int dev, int reg, u16 data) +{ + return mv88e6xxx_smi_direct_write(chip, chip->sw_addr + dev, reg, data); +} + +static const struct mv88e6xxx_bus_ops mv88e6xxx_smi_dual_direct_ops = { + .read = mv88e6xxx_smi_dual_direct_read, + .write = mv88e6xxx_smi_dual_direct_write, +}; + +/* Offset 0x00: SMI Command Register + * Offset 0x01: SMI Data Register + */ + +static int mv88e6xxx_smi_indirect_read(struct mv88e6xxx_chip *chip, + int dev, int reg, u16 *data) +{ + int err; + + err = mv88e6xxx_smi_direct_write(chip, chip->sw_addr, + MV88E6XXX_SMI_CMD, + MV88E6XXX_SMI_CMD_BUSY | + MV88E6XXX_SMI_CMD_MODE_22 | + MV88E6XXX_SMI_CMD_OP_22_READ | + (dev << 5) | reg); + if (err) + return err; + + err = mv88e6xxx_smi_direct_wait(chip, chip->sw_addr, + MV88E6XXX_SMI_CMD, 15, 0); + if (err) + return err; + + return mv88e6xxx_smi_direct_read(chip, chip->sw_addr, + MV88E6XXX_SMI_DATA, data); +} + +static int mv88e6xxx_smi_indirect_write(struct mv88e6xxx_chip *chip, + int dev, int reg, u16 data) +{ + int err; + + err = mv88e6xxx_smi_direct_write(chip, chip->sw_addr, + MV88E6XXX_SMI_DATA, data); + if (err) + return err; + + err = mv88e6xxx_smi_direct_write(chip, chip->sw_addr, + MV88E6XXX_SMI_CMD, + MV88E6XXX_SMI_CMD_BUSY | + MV88E6XXX_SMI_CMD_MODE_22 | + MV88E6XXX_SMI_CMD_OP_22_WRITE | + (dev << 5) | reg); + if (err) + return err; + + return mv88e6xxx_smi_direct_wait(chip, chip->sw_addr, + MV88E6XXX_SMI_CMD, 15, 0); +} + +static int mv88e6xxx_smi_indirect_init(struct mv88e6xxx_chip *chip) +{ + /* Ensure that the chip starts out in the ready state. As both + * reads and writes always ensure this on return, they can + * safely depend on the chip not being busy on entry. + */ + return mv88e6xxx_smi_direct_wait(chip, chip->sw_addr, + MV88E6XXX_SMI_CMD, 15, 0); +} + +static const struct mv88e6xxx_bus_ops mv88e6xxx_smi_indirect_ops = { + .read = mv88e6xxx_smi_indirect_read, + .write = mv88e6xxx_smi_indirect_write, + .init = mv88e6xxx_smi_indirect_init, +}; + +int mv88e6xxx_smi_init(struct mv88e6xxx_chip *chip, + struct mii_bus *bus, int sw_addr) +{ + if (chip->info->dual_chip) + chip->smi_ops = &mv88e6xxx_smi_dual_direct_ops; + else if (sw_addr == 0) + chip->smi_ops = &mv88e6xxx_smi_direct_ops; + else if (chip->info->multi_chip) + chip->smi_ops = &mv88e6xxx_smi_indirect_ops; + else + return -EINVAL; + + chip->bus = bus; + chip->sw_addr = sw_addr; + + if (chip->smi_ops->init) + return chip->smi_ops->init(chip); + + return 0; +} diff --git a/drivers/net/dsa/mv88e6xxx/smi.h b/drivers/net/dsa/mv88e6xxx/smi.h new file mode 100644 index 000000000..c6c71d575 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/smi.h @@ -0,0 +1,55 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* + * Marvell 88E6xxx System Management Interface (SMI) support + * + * Copyright (c) 2008 Marvell Semiconductor + * + * Copyright (c) 2019 Vivien Didelot <vivien.didelot@gmail.com> + */ + +#ifndef _MV88E6XXX_SMI_H +#define _MV88E6XXX_SMI_H + +#include "chip.h" + +/* Offset 0x00: SMI Command Register */ +#define MV88E6XXX_SMI_CMD 0x00 +#define MV88E6XXX_SMI_CMD_BUSY 0x8000 +#define MV88E6XXX_SMI_CMD_MODE_MASK 0x1000 +#define MV88E6XXX_SMI_CMD_MODE_45 0x0000 +#define MV88E6XXX_SMI_CMD_MODE_22 0x1000 +#define MV88E6XXX_SMI_CMD_OP_MASK 0x0c00 +#define MV88E6XXX_SMI_CMD_OP_22_WRITE 0x0400 +#define MV88E6XXX_SMI_CMD_OP_22_READ 0x0800 +#define MV88E6XXX_SMI_CMD_OP_45_WRITE_ADDR 0x0000 +#define MV88E6XXX_SMI_CMD_OP_45_WRITE_DATA 0x0400 +#define MV88E6XXX_SMI_CMD_OP_45_READ_DATA 0x0800 +#define MV88E6XXX_SMI_CMD_OP_45_READ_DATA_INC 0x0c00 +#define MV88E6XXX_SMI_CMD_DEV_ADDR_MASK 0x003e +#define MV88E6XXX_SMI_CMD_REG_ADDR_MASK 0x001f + +/* Offset 0x01: SMI Data Register */ +#define MV88E6XXX_SMI_DATA 0x01 + +int mv88e6xxx_smi_init(struct mv88e6xxx_chip *chip, + struct mii_bus *bus, int sw_addr); + +static inline int mv88e6xxx_smi_read(struct mv88e6xxx_chip *chip, + int dev, int reg, u16 *data) +{ + if (chip->smi_ops && chip->smi_ops->read) + return chip->smi_ops->read(chip, dev, reg, data); + + return -EOPNOTSUPP; +} + +static inline int mv88e6xxx_smi_write(struct mv88e6xxx_chip *chip, + int dev, int reg, u16 data) +{ + if (chip->smi_ops && chip->smi_ops->write) + return chip->smi_ops->write(chip, dev, reg, data); + + return -EOPNOTSUPP; +} + +#endif /* _MV88E6XXX_SMI_H */ diff --git a/drivers/net/dsa/mv88e6xxx/trace.c b/drivers/net/dsa/mv88e6xxx/trace.c new file mode 100644 index 000000000..7833cb50c --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/trace.c @@ -0,0 +1,6 @@ +// SPDX-License-Identifier: GPL-2.0-or-later +/* Copyright 2022 NXP + */ + +#define CREATE_TRACE_POINTS +#include "trace.h" diff --git a/drivers/net/dsa/mv88e6xxx/trace.h b/drivers/net/dsa/mv88e6xxx/trace.h new file mode 100644 index 000000000..f59ca0476 --- /dev/null +++ b/drivers/net/dsa/mv88e6xxx/trace.h @@ -0,0 +1,96 @@ +/* SPDX-License-Identifier: GPL-2.0-or-later */ +/* Copyright 2022 NXP + */ + +#undef TRACE_SYSTEM +#define TRACE_SYSTEM mv88e6xxx + +#if !defined(_MV88E6XXX_TRACE_H) || defined(TRACE_HEADER_MULTI_READ) +#define _MV88E6XXX_TRACE_H + +#include <linux/device.h> +#include <linux/if_ether.h> +#include <linux/tracepoint.h> + +DECLARE_EVENT_CLASS(mv88e6xxx_atu_violation, + + TP_PROTO(const struct device *dev, int spid, u16 portvec, + const unsigned char *addr, u16 fid), + + TP_ARGS(dev, spid, portvec, addr, fid), + + TP_STRUCT__entry( + __string(name, dev_name(dev)) + __field(int, spid) + __field(u16, portvec) + __array(unsigned char, addr, ETH_ALEN) + __field(u16, fid) + ), + + TP_fast_assign( + __assign_str(name, dev_name(dev)); + __entry->spid = spid; + __entry->portvec = portvec; + memcpy(__entry->addr, addr, ETH_ALEN); + __entry->fid = fid; + ), + + TP_printk("dev %s spid %d portvec 0x%x addr %pM fid %u", + __get_str(name), __entry->spid, __entry->portvec, + __entry->addr, __entry->fid) +); + +DEFINE_EVENT(mv88e6xxx_atu_violation, mv88e6xxx_atu_member_violation, + TP_PROTO(const struct device *dev, int spid, u16 portvec, + const unsigned char *addr, u16 fid), + TP_ARGS(dev, spid, portvec, addr, fid)); + +DEFINE_EVENT(mv88e6xxx_atu_violation, mv88e6xxx_atu_miss_violation, + TP_PROTO(const struct device *dev, int spid, u16 portvec, + const unsigned char *addr, u16 fid), + TP_ARGS(dev, spid, portvec, addr, fid)); + +DEFINE_EVENT(mv88e6xxx_atu_violation, mv88e6xxx_atu_full_violation, + TP_PROTO(const struct device *dev, int spid, u16 portvec, + const unsigned char *addr, u16 fid), + TP_ARGS(dev, spid, portvec, addr, fid)); + +DECLARE_EVENT_CLASS(mv88e6xxx_vtu_violation, + + TP_PROTO(const struct device *dev, int spid, u16 vid), + + TP_ARGS(dev, spid, vid), + + TP_STRUCT__entry( + __string(name, dev_name(dev)) + __field(int, spid) + __field(u16, vid) + ), + + TP_fast_assign( + __assign_str(name, dev_name(dev)); + __entry->spid = spid; + __entry->vid = vid; + ), + + TP_printk("dev %s spid %d vid %u", + __get_str(name), __entry->spid, __entry->vid) +); + +DEFINE_EVENT(mv88e6xxx_vtu_violation, mv88e6xxx_vtu_member_violation, + TP_PROTO(const struct device *dev, int spid, u16 vid), + TP_ARGS(dev, spid, vid)); + +DEFINE_EVENT(mv88e6xxx_vtu_violation, mv88e6xxx_vtu_miss_violation, + TP_PROTO(const struct device *dev, int spid, u16 vid), + TP_ARGS(dev, spid, vid)); + +#endif /* _MV88E6XXX_TRACE_H */ + +/* We don't want to use include/trace/events */ +#undef TRACE_INCLUDE_PATH +#define TRACE_INCLUDE_PATH . +#undef TRACE_INCLUDE_FILE +#define TRACE_INCLUDE_FILE trace +/* This part must be outside protection */ +#include <trace/define_trace.h> |