diff options
author | Daniel Baumann <daniel.baumann@progress-linux.org> | 2024-04-27 10:05:51 +0000 |
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committer | Daniel Baumann <daniel.baumann@progress-linux.org> | 2024-04-27 10:05:51 +0000 |
commit | 5d1646d90e1f2cceb9f0828f4b28318cd0ec7744 (patch) | |
tree | a94efe259b9009378be6d90eb30d2b019d95c194 /drivers/net/dsa/qca | |
parent | Initial commit. (diff) | |
download | linux-5d1646d90e1f2cceb9f0828f4b28318cd0ec7744.tar.xz linux-5d1646d90e1f2cceb9f0828f4b28318cd0ec7744.zip |
Adding upstream version 5.10.209.upstream/5.10.209upstream
Signed-off-by: Daniel Baumann <daniel.baumann@progress-linux.org>
Diffstat (limited to '')
-rw-r--r-- | drivers/net/dsa/qca/Kconfig | 9 | ||||
-rw-r--r-- | drivers/net/dsa/qca/Makefile | 2 | ||||
-rw-r--r-- | drivers/net/dsa/qca/ar9331.c | 882 | ||||
-rw-r--r-- | drivers/net/dsa/qca8k.c | 1528 | ||||
-rw-r--r-- | drivers/net/dsa/qca8k.h | 239 |
5 files changed, 2660 insertions, 0 deletions
diff --git a/drivers/net/dsa/qca/Kconfig b/drivers/net/dsa/qca/Kconfig new file mode 100644 index 000000000..13b7e679b --- /dev/null +++ b/drivers/net/dsa/qca/Kconfig @@ -0,0 +1,9 @@ +# SPDX-License-Identifier: GPL-2.0-only +config NET_DSA_AR9331 + tristate "Qualcomm Atheros AR9331 Ethernet switch support" + depends on NET_DSA + select NET_DSA_TAG_AR9331 + select REGMAP + help + This enables support for the Qualcomm Atheros AR9331 built-in Ethernet + switch. diff --git a/drivers/net/dsa/qca/Makefile b/drivers/net/dsa/qca/Makefile new file mode 100644 index 000000000..274022319 --- /dev/null +++ b/drivers/net/dsa/qca/Makefile @@ -0,0 +1,2 @@ +# SPDX-License-Identifier: GPL-2.0-only +obj-$(CONFIG_NET_DSA_AR9331) += ar9331.o diff --git a/drivers/net/dsa/qca/ar9331.c b/drivers/net/dsa/qca/ar9331.c new file mode 100644 index 000000000..c33bdcf7e --- /dev/null +++ b/drivers/net/dsa/qca/ar9331.c @@ -0,0 +1,882 @@ +// SPDX-License-Identifier: GPL-2.0-only +// Copyright (c) 2019 Pengutronix, Oleksij Rempel <kernel@pengutronix.de> +/* + * +----------------------+ + * GMAC1----RGMII----|--MAC0 | + * \---MDIO1----|--REGs |----MDIO3----\ + * | | | +------+ + * | | +--| | + * | MAC1-|----RMII--M-----| PHY0 |-o P0 + * | | | | +------+ + * | | | +--| | + * | MAC2-|----RMII--------| PHY1 |-o P1 + * | | | | +------+ + * | | | +--| | + * | MAC3-|----RMII--------| PHY2 |-o P2 + * | | | | +------+ + * | | | +--| | + * | MAC4-|----RMII--------| PHY3 |-o P3 + * | | | | +------+ + * | | | +--| | + * | MAC5-|--+-RMII--M-----|-PHY4-|-o P4 + * | | | | +------+ + * +----------------------+ | \--CFG_SW_PHY_SWAP + * GMAC0---------------RMII--------------------/ \-CFG_SW_PHY_ADDR_SWAP + * \---MDIO0--NC + * + * GMAC0 and MAC5 are connected together and use same PHY. Depending on + * configuration it can be PHY4 (default) or PHY0. Only GMAC0 or MAC5 can be + * used at same time. If GMAC0 is used (default) then MAC5 should be disabled. + * + * CFG_SW_PHY_SWAP - swap connections of PHY0 and PHY4. If this bit is not set + * PHY4 is connected to GMAC0/MAC5 bundle and PHY0 is connected to MAC1. If this + * bit is set, PHY4 is connected to MAC1 and PHY0 is connected to GMAC0/MAC5 + * bundle. + * + * CFG_SW_PHY_ADDR_SWAP - swap addresses of PHY0 and PHY4 + * + * CFG_SW_PHY_SWAP and CFG_SW_PHY_ADDR_SWAP are part of SoC specific register + * set and not related to switch internal registers. + */ + +#include <linux/bitfield.h> +#include <linux/module.h> +#include <linux/of_irq.h> +#include <linux/of_mdio.h> +#include <linux/regmap.h> +#include <linux/reset.h> +#include <net/dsa.h> + +#define AR9331_SW_NAME "ar9331_switch" +#define AR9331_SW_PORTS 6 + +/* dummy reg to change page */ +#define AR9331_SW_REG_PAGE 0x40000 + +/* Global Interrupt */ +#define AR9331_SW_REG_GINT 0x10 +#define AR9331_SW_REG_GINT_MASK 0x14 +#define AR9331_SW_GINT_PHY_INT BIT(2) + +#define AR9331_SW_REG_FLOOD_MASK 0x2c +#define AR9331_SW_FLOOD_MASK_BROAD_TO_CPU BIT(26) + +#define AR9331_SW_REG_GLOBAL_CTRL 0x30 +#define AR9331_SW_GLOBAL_CTRL_MFS_M GENMASK(13, 0) + +#define AR9331_SW_REG_MDIO_CTRL 0x98 +#define AR9331_SW_MDIO_CTRL_BUSY BIT(31) +#define AR9331_SW_MDIO_CTRL_MASTER_EN BIT(30) +#define AR9331_SW_MDIO_CTRL_CMD_READ BIT(27) +#define AR9331_SW_MDIO_CTRL_PHY_ADDR_M GENMASK(25, 21) +#define AR9331_SW_MDIO_CTRL_REG_ADDR_M GENMASK(20, 16) +#define AR9331_SW_MDIO_CTRL_DATA_M GENMASK(16, 0) + +#define AR9331_SW_REG_PORT_STATUS(_port) (0x100 + (_port) * 0x100) + +/* FLOW_LINK_EN - enable mac flow control config auto-neg with phy. + * If not set, mac can be config by software. + */ +#define AR9331_SW_PORT_STATUS_FLOW_LINK_EN BIT(12) + +/* LINK_EN - If set, MAC is configured from PHY link status. + * If not set, MAC should be configured by software. + */ +#define AR9331_SW_PORT_STATUS_LINK_EN BIT(9) +#define AR9331_SW_PORT_STATUS_DUPLEX_MODE BIT(6) +#define AR9331_SW_PORT_STATUS_RX_FLOW_EN BIT(5) +#define AR9331_SW_PORT_STATUS_TX_FLOW_EN BIT(4) +#define AR9331_SW_PORT_STATUS_RXMAC BIT(3) +#define AR9331_SW_PORT_STATUS_TXMAC BIT(2) +#define AR9331_SW_PORT_STATUS_SPEED_M GENMASK(1, 0) +#define AR9331_SW_PORT_STATUS_SPEED_1000 2 +#define AR9331_SW_PORT_STATUS_SPEED_100 1 +#define AR9331_SW_PORT_STATUS_SPEED_10 0 + +#define AR9331_SW_PORT_STATUS_MAC_MASK \ + (AR9331_SW_PORT_STATUS_TXMAC | AR9331_SW_PORT_STATUS_RXMAC) + +#define AR9331_SW_PORT_STATUS_LINK_MASK \ + (AR9331_SW_PORT_STATUS_DUPLEX_MODE | \ + AR9331_SW_PORT_STATUS_RX_FLOW_EN | AR9331_SW_PORT_STATUS_TX_FLOW_EN | \ + AR9331_SW_PORT_STATUS_SPEED_M) + +/* Phy bypass mode + * ------------------------------------------------------------------------ + * Bit: | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 |10 |11 |12 |13 |14 |15 | + * + * real | start | OP | PhyAddr | Reg Addr | TA | + * atheros| start | OP | 2'b00 |PhyAdd[2:0]| Reg Addr[4:0] | TA | + * + * + * Bit: |16 |17 |18 |19 |20 |21 |22 |23 |24 |25 |26 |27 |28 |29 |30 |31 | + * real | Data | + * atheros| Data | + * + * ------------------------------------------------------------------------ + * Page address mode + * ------------------------------------------------------------------------ + * Bit: | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 |10 |11 |12 |13 |14 |15 | + * real | start | OP | PhyAddr | Reg Addr | TA | + * atheros| start | OP | 2'b11 | 8'b0 | TA | + * + * Bit: |16 |17 |18 |19 |20 |21 |22 |23 |24 |25 |26 |27 |28 |29 |30 |31 | + * real | Data | + * atheros| | Page [9:0] | + */ +/* In case of Page Address mode, Bit[18:9] of 32 bit register address should be + * written to bits[9:0] of mdio data register. + */ +#define AR9331_SW_ADDR_PAGE GENMASK(18, 9) + +/* ------------------------------------------------------------------------ + * Normal register access mode + * ------------------------------------------------------------------------ + * Bit: | 0 | 1 | 2 | 3 | 4 | 5 | 6 | 7 | 8 | 9 |10 |11 |12 |13 |14 |15 | + * real | start | OP | PhyAddr | Reg Addr | TA | + * atheros| start | OP | 2'b10 | low_addr[7:0] | TA | + * + * Bit: |16 |17 |18 |19 |20 |21 |22 |23 |24 |25 |26 |27 |28 |29 |30 |31 | + * real | Data | + * atheros| Data | + * ------------------------------------------------------------------------ + */ +#define AR9331_SW_LOW_ADDR_PHY GENMASK(8, 6) +#define AR9331_SW_LOW_ADDR_REG GENMASK(5, 1) + +#define AR9331_SW_MDIO_PHY_MODE_M GENMASK(4, 3) +#define AR9331_SW_MDIO_PHY_MODE_PAGE 3 +#define AR9331_SW_MDIO_PHY_MODE_REG 2 +#define AR9331_SW_MDIO_PHY_MODE_BYPASS 0 +#define AR9331_SW_MDIO_PHY_ADDR_M GENMASK(2, 0) + +/* Empirical determined values */ +#define AR9331_SW_MDIO_POLL_SLEEP_US 1 +#define AR9331_SW_MDIO_POLL_TIMEOUT_US 20 + +struct ar9331_sw_priv { + struct device *dev; + struct dsa_switch ds; + struct dsa_switch_ops ops; + struct irq_domain *irqdomain; + u32 irq_mask; + struct mutex lock_irq; + struct mii_bus *mbus; /* mdio master */ + struct mii_bus *sbus; /* mdio slave */ + struct regmap *regmap; + struct reset_control *sw_reset; +}; + +/* Warning: switch reset will reset last AR9331_SW_MDIO_PHY_MODE_PAGE request + * If some kind of optimization is used, the request should be repeated. + */ +static int ar9331_sw_reset(struct ar9331_sw_priv *priv) +{ + int ret; + + ret = reset_control_assert(priv->sw_reset); + if (ret) + goto error; + + /* AR9331 doc do not provide any information about proper reset + * sequence. The AR8136 (the closes switch to the AR9331) doc says: + * reset duration should be greater than 10ms. So, let's use this value + * for now. + */ + usleep_range(10000, 15000); + ret = reset_control_deassert(priv->sw_reset); + if (ret) + goto error; + /* There is no information on how long should we wait after reset. + * AR8136 has an EEPROM and there is an Interrupt for EEPROM load + * status. AR9331 has no EEPROM support. + * For now, do not wait. In case AR8136 will be needed, the after + * reset delay can be added as well. + */ + + return 0; +error: + dev_err_ratelimited(priv->dev, "%s: %i\n", __func__, ret); + return ret; +} + +static int ar9331_sw_mbus_write(struct mii_bus *mbus, int port, int regnum, + u16 data) +{ + struct ar9331_sw_priv *priv = mbus->priv; + struct regmap *regmap = priv->regmap; + u32 val; + int ret; + + ret = regmap_write(regmap, AR9331_SW_REG_MDIO_CTRL, + AR9331_SW_MDIO_CTRL_BUSY | + AR9331_SW_MDIO_CTRL_MASTER_EN | + FIELD_PREP(AR9331_SW_MDIO_CTRL_PHY_ADDR_M, port) | + FIELD_PREP(AR9331_SW_MDIO_CTRL_REG_ADDR_M, regnum) | + FIELD_PREP(AR9331_SW_MDIO_CTRL_DATA_M, data)); + if (ret) + goto error; + + ret = regmap_read_poll_timeout(regmap, AR9331_SW_REG_MDIO_CTRL, val, + !(val & AR9331_SW_MDIO_CTRL_BUSY), + AR9331_SW_MDIO_POLL_SLEEP_US, + AR9331_SW_MDIO_POLL_TIMEOUT_US); + if (ret) + goto error; + + return 0; +error: + dev_err_ratelimited(priv->dev, "PHY write error: %i\n", ret); + return ret; +} + +static int ar9331_sw_mbus_read(struct mii_bus *mbus, int port, int regnum) +{ + struct ar9331_sw_priv *priv = mbus->priv; + struct regmap *regmap = priv->regmap; + u32 val; + int ret; + + ret = regmap_write(regmap, AR9331_SW_REG_MDIO_CTRL, + AR9331_SW_MDIO_CTRL_BUSY | + AR9331_SW_MDIO_CTRL_MASTER_EN | + AR9331_SW_MDIO_CTRL_CMD_READ | + FIELD_PREP(AR9331_SW_MDIO_CTRL_PHY_ADDR_M, port) | + FIELD_PREP(AR9331_SW_MDIO_CTRL_REG_ADDR_M, regnum)); + if (ret) + goto error; + + ret = regmap_read_poll_timeout(regmap, AR9331_SW_REG_MDIO_CTRL, val, + !(val & AR9331_SW_MDIO_CTRL_BUSY), + AR9331_SW_MDIO_POLL_SLEEP_US, + AR9331_SW_MDIO_POLL_TIMEOUT_US); + if (ret) + goto error; + + ret = regmap_read(regmap, AR9331_SW_REG_MDIO_CTRL, &val); + if (ret) + goto error; + + return FIELD_GET(AR9331_SW_MDIO_CTRL_DATA_M, val); + +error: + dev_err_ratelimited(priv->dev, "PHY read error: %i\n", ret); + return ret; +} + +static int ar9331_sw_mbus_init(struct ar9331_sw_priv *priv) +{ + struct device *dev = priv->dev; + struct mii_bus *mbus; + struct device_node *np, *mnp; + int ret; + + np = dev->of_node; + + mbus = devm_mdiobus_alloc(dev); + if (!mbus) + return -ENOMEM; + + mbus->name = np->full_name; + snprintf(mbus->id, MII_BUS_ID_SIZE, "%pOF", np); + + mbus->read = ar9331_sw_mbus_read; + mbus->write = ar9331_sw_mbus_write; + mbus->priv = priv; + mbus->parent = dev; + + mnp = of_get_child_by_name(np, "mdio"); + if (!mnp) + return -ENODEV; + + ret = devm_of_mdiobus_register(dev, mbus, mnp); + of_node_put(mnp); + if (ret) + return ret; + + priv->mbus = mbus; + + return 0; +} + +static int ar9331_sw_setup(struct dsa_switch *ds) +{ + struct ar9331_sw_priv *priv = (struct ar9331_sw_priv *)ds->priv; + struct regmap *regmap = priv->regmap; + int ret; + + ret = ar9331_sw_reset(priv); + if (ret) + return ret; + + /* Reset will set proper defaults. CPU - Port0 will be enabled and + * configured. All other ports (ports 1 - 5) are disabled + */ + ret = ar9331_sw_mbus_init(priv); + if (ret) + return ret; + + /* Do not drop broadcast frames */ + ret = regmap_write_bits(regmap, AR9331_SW_REG_FLOOD_MASK, + AR9331_SW_FLOOD_MASK_BROAD_TO_CPU, + AR9331_SW_FLOOD_MASK_BROAD_TO_CPU); + if (ret) + goto error; + + /* Set max frame size to the maximum supported value */ + ret = regmap_write_bits(regmap, AR9331_SW_REG_GLOBAL_CTRL, + AR9331_SW_GLOBAL_CTRL_MFS_M, + AR9331_SW_GLOBAL_CTRL_MFS_M); + if (ret) + goto error; + + return 0; +error: + dev_err_ratelimited(priv->dev, "%s: %i\n", __func__, ret); + return ret; +} + +static void ar9331_sw_port_disable(struct dsa_switch *ds, int port) +{ + struct ar9331_sw_priv *priv = (struct ar9331_sw_priv *)ds->priv; + struct regmap *regmap = priv->regmap; + int ret; + + ret = regmap_write(regmap, AR9331_SW_REG_PORT_STATUS(port), 0); + if (ret) + dev_err_ratelimited(priv->dev, "%s: %i\n", __func__, ret); +} + +static enum dsa_tag_protocol ar9331_sw_get_tag_protocol(struct dsa_switch *ds, + int port, + enum dsa_tag_protocol m) +{ + return DSA_TAG_PROTO_AR9331; +} + +static void ar9331_sw_phylink_validate(struct dsa_switch *ds, int port, + unsigned long *supported, + struct phylink_link_state *state) +{ + __ETHTOOL_DECLARE_LINK_MODE_MASK(mask) = { 0, }; + + switch (port) { + case 0: + if (state->interface != PHY_INTERFACE_MODE_GMII) + goto unsupported; + + phylink_set(mask, 1000baseT_Full); + phylink_set(mask, 1000baseT_Half); + break; + case 1: + case 2: + case 3: + case 4: + case 5: + if (state->interface != PHY_INTERFACE_MODE_INTERNAL) + goto unsupported; + break; + default: + bitmap_zero(supported, __ETHTOOL_LINK_MODE_MASK_NBITS); + dev_err(ds->dev, "Unsupported port: %i\n", port); + return; + } + + phylink_set_port_modes(mask); + phylink_set(mask, Pause); + phylink_set(mask, Asym_Pause); + + phylink_set(mask, 10baseT_Half); + phylink_set(mask, 10baseT_Full); + phylink_set(mask, 100baseT_Half); + phylink_set(mask, 100baseT_Full); + + bitmap_and(supported, supported, mask, + __ETHTOOL_LINK_MODE_MASK_NBITS); + bitmap_and(state->advertising, state->advertising, mask, + __ETHTOOL_LINK_MODE_MASK_NBITS); + + return; + +unsupported: + bitmap_zero(supported, __ETHTOOL_LINK_MODE_MASK_NBITS); + dev_err(ds->dev, "Unsupported interface: %d, port: %d\n", + state->interface, port); +} + +static void ar9331_sw_phylink_mac_config(struct dsa_switch *ds, int port, + unsigned int mode, + const struct phylink_link_state *state) +{ + struct ar9331_sw_priv *priv = (struct ar9331_sw_priv *)ds->priv; + struct regmap *regmap = priv->regmap; + int ret; + + ret = regmap_update_bits(regmap, AR9331_SW_REG_PORT_STATUS(port), + AR9331_SW_PORT_STATUS_LINK_EN | + AR9331_SW_PORT_STATUS_FLOW_LINK_EN, 0); + if (ret) + dev_err_ratelimited(priv->dev, "%s: %i\n", __func__, ret); +} + +static void ar9331_sw_phylink_mac_link_down(struct dsa_switch *ds, int port, + unsigned int mode, + phy_interface_t interface) +{ + struct ar9331_sw_priv *priv = (struct ar9331_sw_priv *)ds->priv; + struct regmap *regmap = priv->regmap; + int ret; + + ret = regmap_update_bits(regmap, AR9331_SW_REG_PORT_STATUS(port), + AR9331_SW_PORT_STATUS_MAC_MASK, 0); + if (ret) + dev_err_ratelimited(priv->dev, "%s: %i\n", __func__, ret); +} + +static void ar9331_sw_phylink_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 ar9331_sw_priv *priv = (struct ar9331_sw_priv *)ds->priv; + struct regmap *regmap = priv->regmap; + u32 val; + int ret; + + val = AR9331_SW_PORT_STATUS_MAC_MASK; + switch (speed) { + case SPEED_1000: + val |= AR9331_SW_PORT_STATUS_SPEED_1000; + break; + case SPEED_100: + val |= AR9331_SW_PORT_STATUS_SPEED_100; + break; + case SPEED_10: + val |= AR9331_SW_PORT_STATUS_SPEED_10; + break; + default: + return; + } + + if (duplex) + val |= AR9331_SW_PORT_STATUS_DUPLEX_MODE; + + if (tx_pause) + val |= AR9331_SW_PORT_STATUS_TX_FLOW_EN; + + if (rx_pause) + val |= AR9331_SW_PORT_STATUS_RX_FLOW_EN; + + ret = regmap_update_bits(regmap, AR9331_SW_REG_PORT_STATUS(port), + AR9331_SW_PORT_STATUS_MAC_MASK | + AR9331_SW_PORT_STATUS_LINK_MASK, + val); + if (ret) + dev_err_ratelimited(priv->dev, "%s: %i\n", __func__, ret); +} + +static const struct dsa_switch_ops ar9331_sw_ops = { + .get_tag_protocol = ar9331_sw_get_tag_protocol, + .setup = ar9331_sw_setup, + .port_disable = ar9331_sw_port_disable, + .phylink_validate = ar9331_sw_phylink_validate, + .phylink_mac_config = ar9331_sw_phylink_mac_config, + .phylink_mac_link_down = ar9331_sw_phylink_mac_link_down, + .phylink_mac_link_up = ar9331_sw_phylink_mac_link_up, +}; + +static irqreturn_t ar9331_sw_irq(int irq, void *data) +{ + struct ar9331_sw_priv *priv = data; + struct regmap *regmap = priv->regmap; + u32 stat; + int ret; + + ret = regmap_read(regmap, AR9331_SW_REG_GINT, &stat); + if (ret) { + dev_err(priv->dev, "can't read interrupt status\n"); + return IRQ_NONE; + } + + if (!stat) + return IRQ_NONE; + + if (stat & AR9331_SW_GINT_PHY_INT) { + int child_irq; + + child_irq = irq_find_mapping(priv->irqdomain, 0); + handle_nested_irq(child_irq); + } + + ret = regmap_write(regmap, AR9331_SW_REG_GINT, stat); + if (ret) { + dev_err(priv->dev, "can't write interrupt status\n"); + return IRQ_NONE; + } + + return IRQ_HANDLED; +} + +static void ar9331_sw_mask_irq(struct irq_data *d) +{ + struct ar9331_sw_priv *priv = irq_data_get_irq_chip_data(d); + + priv->irq_mask = 0; +} + +static void ar9331_sw_unmask_irq(struct irq_data *d) +{ + struct ar9331_sw_priv *priv = irq_data_get_irq_chip_data(d); + + priv->irq_mask = AR9331_SW_GINT_PHY_INT; +} + +static void ar9331_sw_irq_bus_lock(struct irq_data *d) +{ + struct ar9331_sw_priv *priv = irq_data_get_irq_chip_data(d); + + mutex_lock(&priv->lock_irq); +} + +static void ar9331_sw_irq_bus_sync_unlock(struct irq_data *d) +{ + struct ar9331_sw_priv *priv = irq_data_get_irq_chip_data(d); + struct regmap *regmap = priv->regmap; + int ret; + + ret = regmap_update_bits(regmap, AR9331_SW_REG_GINT_MASK, + AR9331_SW_GINT_PHY_INT, priv->irq_mask); + if (ret) + dev_err(priv->dev, "failed to change IRQ mask\n"); + + mutex_unlock(&priv->lock_irq); +} + +static struct irq_chip ar9331_sw_irq_chip = { + .name = AR9331_SW_NAME, + .irq_mask = ar9331_sw_mask_irq, + .irq_unmask = ar9331_sw_unmask_irq, + .irq_bus_lock = ar9331_sw_irq_bus_lock, + .irq_bus_sync_unlock = ar9331_sw_irq_bus_sync_unlock, +}; + +static int ar9331_sw_irq_map(struct irq_domain *domain, unsigned int irq, + irq_hw_number_t hwirq) +{ + irq_set_chip_data(irq, domain->host_data); + irq_set_chip_and_handler(irq, &ar9331_sw_irq_chip, handle_simple_irq); + irq_set_nested_thread(irq, 1); + irq_set_noprobe(irq); + + return 0; +} + +static void ar9331_sw_irq_unmap(struct irq_domain *d, unsigned int irq) +{ + irq_set_nested_thread(irq, 0); + irq_set_chip_and_handler(irq, NULL, NULL); + irq_set_chip_data(irq, NULL); +} + +static const struct irq_domain_ops ar9331_sw_irqdomain_ops = { + .map = ar9331_sw_irq_map, + .unmap = ar9331_sw_irq_unmap, + .xlate = irq_domain_xlate_onecell, +}; + +static int ar9331_sw_irq_init(struct ar9331_sw_priv *priv) +{ + struct device_node *np = priv->dev->of_node; + struct device *dev = priv->dev; + int ret, irq; + + irq = of_irq_get(np, 0); + if (irq <= 0) { + dev_err(dev, "failed to get parent IRQ\n"); + return irq ? irq : -EINVAL; + } + + mutex_init(&priv->lock_irq); + ret = devm_request_threaded_irq(dev, irq, NULL, ar9331_sw_irq, + IRQF_ONESHOT, AR9331_SW_NAME, priv); + if (ret) { + dev_err(dev, "unable to request irq: %d\n", ret); + return ret; + } + + priv->irqdomain = irq_domain_add_linear(np, 1, &ar9331_sw_irqdomain_ops, + priv); + if (!priv->irqdomain) { + dev_err(dev, "failed to create IRQ domain\n"); + return -EINVAL; + } + + irq_set_parent(irq_create_mapping(priv->irqdomain, 0), irq); + + return 0; +} + +static int __ar9331_mdio_write(struct mii_bus *sbus, u8 mode, u16 reg, u16 val) +{ + u8 r, p; + + p = FIELD_PREP(AR9331_SW_MDIO_PHY_MODE_M, mode) | + FIELD_GET(AR9331_SW_LOW_ADDR_PHY, reg); + r = FIELD_GET(AR9331_SW_LOW_ADDR_REG, reg); + + return mdiobus_write(sbus, p, r, val); +} + +static int __ar9331_mdio_read(struct mii_bus *sbus, u16 reg) +{ + u8 r, p; + + p = FIELD_PREP(AR9331_SW_MDIO_PHY_MODE_M, AR9331_SW_MDIO_PHY_MODE_REG) | + FIELD_GET(AR9331_SW_LOW_ADDR_PHY, reg); + r = FIELD_GET(AR9331_SW_LOW_ADDR_REG, reg); + + return mdiobus_read(sbus, p, r); +} + +static int ar9331_mdio_read(void *ctx, const void *reg_buf, size_t reg_len, + void *val_buf, size_t val_len) +{ + struct ar9331_sw_priv *priv = ctx; + struct mii_bus *sbus = priv->sbus; + u32 reg = *(u32 *)reg_buf; + int ret; + + if (reg == AR9331_SW_REG_PAGE) { + /* We cannot read the page selector register from hardware and + * we cache its value in regmap. Return all bits set here, + * that regmap will always write the page on first use. + */ + *(u32 *)val_buf = GENMASK(9, 0); + return 0; + } + + ret = __ar9331_mdio_read(sbus, reg); + if (ret < 0) + goto error; + + *(u32 *)val_buf = ret; + ret = __ar9331_mdio_read(sbus, reg + 2); + if (ret < 0) + goto error; + + *(u32 *)val_buf |= ret << 16; + + return 0; +error: + dev_err_ratelimited(&sbus->dev, "Bus error. Failed to read register.\n"); + return ret; +} + +static int ar9331_mdio_write(void *ctx, u32 reg, u32 val) +{ + struct ar9331_sw_priv *priv = (struct ar9331_sw_priv *)ctx; + struct mii_bus *sbus = priv->sbus; + int ret; + + if (reg == AR9331_SW_REG_PAGE) { + ret = __ar9331_mdio_write(sbus, AR9331_SW_MDIO_PHY_MODE_PAGE, + 0, val); + if (ret < 0) + goto error; + + return 0; + } + + /* In case of this switch we work with 32bit registers on top of 16bit + * bus. Some registers (for example access to forwarding database) have + * trigger bit on the first 16bit half of request, the result and + * configuration of request in the second half. + * To make it work properly, we should do the second part of transfer + * before the first one is done. + */ + ret = __ar9331_mdio_write(sbus, AR9331_SW_MDIO_PHY_MODE_REG, reg + 2, + val >> 16); + if (ret < 0) + goto error; + + ret = __ar9331_mdio_write(sbus, AR9331_SW_MDIO_PHY_MODE_REG, reg, val); + if (ret < 0) + goto error; + + return 0; + +error: + dev_err_ratelimited(&sbus->dev, "Bus error. Failed to write register.\n"); + return ret; +} + +static int ar9331_sw_bus_write(void *context, const void *data, size_t count) +{ + u32 reg = *(u32 *)data; + u32 val = *((u32 *)data + 1); + + return ar9331_mdio_write(context, reg, val); +} + +static const struct regmap_range ar9331_valid_regs[] = { + regmap_reg_range(0x0, 0x0), + regmap_reg_range(0x10, 0x14), + regmap_reg_range(0x20, 0x24), + regmap_reg_range(0x2c, 0x30), + regmap_reg_range(0x40, 0x44), + regmap_reg_range(0x50, 0x78), + regmap_reg_range(0x80, 0x98), + + regmap_reg_range(0x100, 0x120), + regmap_reg_range(0x200, 0x220), + regmap_reg_range(0x300, 0x320), + regmap_reg_range(0x400, 0x420), + regmap_reg_range(0x500, 0x520), + regmap_reg_range(0x600, 0x620), + + regmap_reg_range(0x20000, 0x200a4), + regmap_reg_range(0x20100, 0x201a4), + regmap_reg_range(0x20200, 0x202a4), + regmap_reg_range(0x20300, 0x203a4), + regmap_reg_range(0x20400, 0x204a4), + regmap_reg_range(0x20500, 0x205a4), + + /* dummy page selector reg */ + regmap_reg_range(AR9331_SW_REG_PAGE, AR9331_SW_REG_PAGE), +}; + +static const struct regmap_range ar9331_nonvolatile_regs[] = { + regmap_reg_range(AR9331_SW_REG_PAGE, AR9331_SW_REG_PAGE), +}; + +static const struct regmap_range_cfg ar9331_regmap_range[] = { + { + .selector_reg = AR9331_SW_REG_PAGE, + .selector_mask = GENMASK(9, 0), + .selector_shift = 0, + + .window_start = 0, + .window_len = 512, + + .range_min = 0, + .range_max = AR9331_SW_REG_PAGE - 4, + }, +}; + +static const struct regmap_access_table ar9331_register_set = { + .yes_ranges = ar9331_valid_regs, + .n_yes_ranges = ARRAY_SIZE(ar9331_valid_regs), +}; + +static const struct regmap_access_table ar9331_volatile_set = { + .no_ranges = ar9331_nonvolatile_regs, + .n_no_ranges = ARRAY_SIZE(ar9331_nonvolatile_regs), +}; + +static const struct regmap_config ar9331_mdio_regmap_config = { + .reg_bits = 32, + .val_bits = 32, + .reg_stride = 4, + .max_register = AR9331_SW_REG_PAGE, + + .ranges = ar9331_regmap_range, + .num_ranges = ARRAY_SIZE(ar9331_regmap_range), + + .volatile_table = &ar9331_volatile_set, + .wr_table = &ar9331_register_set, + .rd_table = &ar9331_register_set, + + .cache_type = REGCACHE_RBTREE, +}; + +static struct regmap_bus ar9331_sw_bus = { + .reg_format_endian_default = REGMAP_ENDIAN_NATIVE, + .val_format_endian_default = REGMAP_ENDIAN_NATIVE, + .read = ar9331_mdio_read, + .write = ar9331_sw_bus_write, + .max_raw_read = 4, + .max_raw_write = 4, +}; + +static int ar9331_sw_probe(struct mdio_device *mdiodev) +{ + struct ar9331_sw_priv *priv; + struct dsa_switch *ds; + int ret; + + priv = devm_kzalloc(&mdiodev->dev, sizeof(*priv), GFP_KERNEL); + if (!priv) + return -ENOMEM; + + priv->regmap = devm_regmap_init(&mdiodev->dev, &ar9331_sw_bus, priv, + &ar9331_mdio_regmap_config); + if (IS_ERR(priv->regmap)) { + ret = PTR_ERR(priv->regmap); + dev_err(&mdiodev->dev, "regmap init failed: %d\n", ret); + return ret; + } + + priv->sw_reset = devm_reset_control_get(&mdiodev->dev, "switch"); + if (IS_ERR(priv->sw_reset)) { + dev_err(&mdiodev->dev, "missing switch reset\n"); + return PTR_ERR(priv->sw_reset); + } + + priv->sbus = mdiodev->bus; + priv->dev = &mdiodev->dev; + + ret = ar9331_sw_irq_init(priv); + if (ret) + return ret; + + ds = &priv->ds; + ds->dev = &mdiodev->dev; + ds->num_ports = AR9331_SW_PORTS; + ds->priv = priv; + priv->ops = ar9331_sw_ops; + ds->ops = &priv->ops; + dev_set_drvdata(&mdiodev->dev, priv); + + ret = dsa_register_switch(ds); + if (ret) + goto err_remove_irq; + + return 0; + +err_remove_irq: + irq_domain_remove(priv->irqdomain); + + return ret; +} + +static void ar9331_sw_remove(struct mdio_device *mdiodev) +{ + struct ar9331_sw_priv *priv = dev_get_drvdata(&mdiodev->dev); + + irq_domain_remove(priv->irqdomain); + dsa_unregister_switch(&priv->ds); + + reset_control_assert(priv->sw_reset); +} + +static const struct of_device_id ar9331_sw_of_match[] = { + { .compatible = "qca,ar9331-switch" }, + { }, +}; + +static struct mdio_driver ar9331_sw_mdio_driver = { + .probe = ar9331_sw_probe, + .remove = ar9331_sw_remove, + .mdiodrv.driver = { + .name = AR9331_SW_NAME, + .of_match_table = ar9331_sw_of_match, + }, +}; + +mdio_module_driver(ar9331_sw_mdio_driver); + +MODULE_AUTHOR("Oleksij Rempel <kernel@pengutronix.de>"); +MODULE_DESCRIPTION("Driver for Atheros AR9331 switch"); +MODULE_LICENSE("GPL v2"); diff --git a/drivers/net/dsa/qca8k.c b/drivers/net/dsa/qca8k.c new file mode 100644 index 000000000..5bdac669a --- /dev/null +++ b/drivers/net/dsa/qca8k.c @@ -0,0 +1,1528 @@ +// SPDX-License-Identifier: GPL-2.0 +/* + * Copyright (C) 2009 Felix Fietkau <nbd@nbd.name> + * Copyright (C) 2011-2012 Gabor Juhos <juhosg@openwrt.org> + * Copyright (c) 2015, 2019, The Linux Foundation. All rights reserved. + * Copyright (c) 2016 John Crispin <john@phrozen.org> + */ + +#include <linux/module.h> +#include <linux/phy.h> +#include <linux/netdevice.h> +#include <net/dsa.h> +#include <linux/of_net.h> +#include <linux/of_platform.h> +#include <linux/if_bridge.h> +#include <linux/mdio.h> +#include <linux/phylink.h> +#include <linux/gpio/consumer.h> +#include <linux/etherdevice.h> + +#include "qca8k.h" + +#define MIB_DESC(_s, _o, _n) \ + { \ + .size = (_s), \ + .offset = (_o), \ + .name = (_n), \ + } + +static const struct qca8k_mib_desc ar8327_mib[] = { + MIB_DESC(1, 0x00, "RxBroad"), + MIB_DESC(1, 0x04, "RxPause"), + MIB_DESC(1, 0x08, "RxMulti"), + MIB_DESC(1, 0x0c, "RxFcsErr"), + MIB_DESC(1, 0x10, "RxAlignErr"), + MIB_DESC(1, 0x14, "RxRunt"), + MIB_DESC(1, 0x18, "RxFragment"), + MIB_DESC(1, 0x1c, "Rx64Byte"), + MIB_DESC(1, 0x20, "Rx128Byte"), + MIB_DESC(1, 0x24, "Rx256Byte"), + MIB_DESC(1, 0x28, "Rx512Byte"), + MIB_DESC(1, 0x2c, "Rx1024Byte"), + MIB_DESC(1, 0x30, "Rx1518Byte"), + MIB_DESC(1, 0x34, "RxMaxByte"), + MIB_DESC(1, 0x38, "RxTooLong"), + MIB_DESC(2, 0x3c, "RxGoodByte"), + MIB_DESC(2, 0x44, "RxBadByte"), + MIB_DESC(1, 0x4c, "RxOverFlow"), + MIB_DESC(1, 0x50, "Filtered"), + MIB_DESC(1, 0x54, "TxBroad"), + MIB_DESC(1, 0x58, "TxPause"), + MIB_DESC(1, 0x5c, "TxMulti"), + MIB_DESC(1, 0x60, "TxUnderRun"), + MIB_DESC(1, 0x64, "Tx64Byte"), + MIB_DESC(1, 0x68, "Tx128Byte"), + MIB_DESC(1, 0x6c, "Tx256Byte"), + MIB_DESC(1, 0x70, "Tx512Byte"), + MIB_DESC(1, 0x74, "Tx1024Byte"), + MIB_DESC(1, 0x78, "Tx1518Byte"), + MIB_DESC(1, 0x7c, "TxMaxByte"), + MIB_DESC(1, 0x80, "TxOverSize"), + MIB_DESC(2, 0x84, "TxByte"), + MIB_DESC(1, 0x8c, "TxCollision"), + MIB_DESC(1, 0x90, "TxAbortCol"), + MIB_DESC(1, 0x94, "TxMultiCol"), + MIB_DESC(1, 0x98, "TxSingleCol"), + MIB_DESC(1, 0x9c, "TxExcDefer"), + MIB_DESC(1, 0xa0, "TxDefer"), + MIB_DESC(1, 0xa4, "TxLateCol"), +}; + +/* The 32bit switch registers are accessed indirectly. To achieve this we need + * to set the page of the register. Track the last page that was set to reduce + * mdio writes + */ +static u16 qca8k_current_page = 0xffff; + +static void +qca8k_split_addr(u32 regaddr, u16 *r1, u16 *r2, u16 *page) +{ + regaddr >>= 1; + *r1 = regaddr & 0x1e; + + regaddr >>= 5; + *r2 = regaddr & 0x7; + + regaddr >>= 3; + *page = regaddr & 0x3ff; +} + +static u32 +qca8k_mii_read32(struct mii_bus *bus, int phy_id, u32 regnum) +{ + u32 val; + int ret; + + ret = bus->read(bus, phy_id, regnum); + if (ret >= 0) { + val = ret; + ret = bus->read(bus, phy_id, regnum + 1); + val |= ret << 16; + } + + if (ret < 0) { + dev_err_ratelimited(&bus->dev, + "failed to read qca8k 32bit register\n"); + return ret; + } + + return val; +} + +static void +qca8k_mii_write32(struct mii_bus *bus, int phy_id, u32 regnum, u32 val) +{ + u16 lo, hi; + int ret; + + lo = val & 0xffff; + hi = (u16)(val >> 16); + + ret = bus->write(bus, phy_id, regnum, lo); + if (ret >= 0) + ret = bus->write(bus, phy_id, regnum + 1, hi); + if (ret < 0) + dev_err_ratelimited(&bus->dev, + "failed to write qca8k 32bit register\n"); +} + +static void +qca8k_set_page(struct mii_bus *bus, u16 page) +{ + if (page == qca8k_current_page) + return; + + if (bus->write(bus, 0x18, 0, page) < 0) + dev_err_ratelimited(&bus->dev, + "failed to set qca8k page\n"); + qca8k_current_page = page; +} + +static u32 +qca8k_read(struct qca8k_priv *priv, u32 reg) +{ + u16 r1, r2, page; + u32 val; + + qca8k_split_addr(reg, &r1, &r2, &page); + + mutex_lock_nested(&priv->bus->mdio_lock, MDIO_MUTEX_NESTED); + + qca8k_set_page(priv->bus, page); + val = qca8k_mii_read32(priv->bus, 0x10 | r2, r1); + + mutex_unlock(&priv->bus->mdio_lock); + + return val; +} + +static void +qca8k_write(struct qca8k_priv *priv, u32 reg, u32 val) +{ + u16 r1, r2, page; + + qca8k_split_addr(reg, &r1, &r2, &page); + + mutex_lock_nested(&priv->bus->mdio_lock, MDIO_MUTEX_NESTED); + + qca8k_set_page(priv->bus, page); + qca8k_mii_write32(priv->bus, 0x10 | r2, r1, val); + + mutex_unlock(&priv->bus->mdio_lock); +} + +static u32 +qca8k_rmw(struct qca8k_priv *priv, u32 reg, u32 mask, u32 val) +{ + u16 r1, r2, page; + u32 ret; + + qca8k_split_addr(reg, &r1, &r2, &page); + + mutex_lock_nested(&priv->bus->mdio_lock, MDIO_MUTEX_NESTED); + + qca8k_set_page(priv->bus, page); + ret = qca8k_mii_read32(priv->bus, 0x10 | r2, r1); + ret &= ~mask; + ret |= val; + qca8k_mii_write32(priv->bus, 0x10 | r2, r1, ret); + + mutex_unlock(&priv->bus->mdio_lock); + + return ret; +} + +static void +qca8k_reg_set(struct qca8k_priv *priv, u32 reg, u32 val) +{ + qca8k_rmw(priv, reg, 0, val); +} + +static void +qca8k_reg_clear(struct qca8k_priv *priv, u32 reg, u32 val) +{ + qca8k_rmw(priv, reg, val, 0); +} + +static int +qca8k_regmap_read(void *ctx, uint32_t reg, uint32_t *val) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ctx; + + *val = qca8k_read(priv, reg); + + return 0; +} + +static int +qca8k_regmap_write(void *ctx, uint32_t reg, uint32_t val) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ctx; + + qca8k_write(priv, reg, val); + + return 0; +} + +static const struct regmap_range qca8k_readable_ranges[] = { + regmap_reg_range(0x0000, 0x00e4), /* Global control */ + regmap_reg_range(0x0100, 0x0168), /* EEE control */ + regmap_reg_range(0x0200, 0x0270), /* Parser control */ + regmap_reg_range(0x0400, 0x0454), /* ACL */ + regmap_reg_range(0x0600, 0x0718), /* Lookup */ + regmap_reg_range(0x0800, 0x0b70), /* QM */ + regmap_reg_range(0x0c00, 0x0c80), /* PKT */ + regmap_reg_range(0x0e00, 0x0e98), /* L3 */ + regmap_reg_range(0x1000, 0x10ac), /* MIB - Port0 */ + regmap_reg_range(0x1100, 0x11ac), /* MIB - Port1 */ + regmap_reg_range(0x1200, 0x12ac), /* MIB - Port2 */ + regmap_reg_range(0x1300, 0x13ac), /* MIB - Port3 */ + regmap_reg_range(0x1400, 0x14ac), /* MIB - Port4 */ + regmap_reg_range(0x1500, 0x15ac), /* MIB - Port5 */ + regmap_reg_range(0x1600, 0x16ac), /* MIB - Port6 */ + +}; + +static const struct regmap_access_table qca8k_readable_table = { + .yes_ranges = qca8k_readable_ranges, + .n_yes_ranges = ARRAY_SIZE(qca8k_readable_ranges), +}; + +static struct regmap_config qca8k_regmap_config = { + .reg_bits = 16, + .val_bits = 32, + .reg_stride = 4, + .max_register = 0x16ac, /* end MIB - Port6 range */ + .reg_read = qca8k_regmap_read, + .reg_write = qca8k_regmap_write, + .rd_table = &qca8k_readable_table, +}; + +static int +qca8k_busy_wait(struct qca8k_priv *priv, u32 reg, u32 mask) +{ + unsigned long timeout; + + timeout = jiffies + msecs_to_jiffies(20); + + /* loop until the busy flag has cleared */ + do { + u32 val = qca8k_read(priv, reg); + int busy = val & mask; + + if (!busy) + break; + cond_resched(); + } while (!time_after_eq(jiffies, timeout)); + + return time_after_eq(jiffies, timeout); +} + +static void +qca8k_fdb_read(struct qca8k_priv *priv, struct qca8k_fdb *fdb) +{ + u32 reg[4]; + int i; + + /* load the ARL table into an array */ + for (i = 0; i < 4; i++) + reg[i] = qca8k_read(priv, QCA8K_REG_ATU_DATA0 + (i * 4)); + + /* vid - 83:72 */ + fdb->vid = (reg[2] >> QCA8K_ATU_VID_S) & QCA8K_ATU_VID_M; + /* aging - 67:64 */ + fdb->aging = reg[2] & QCA8K_ATU_STATUS_M; + /* portmask - 54:48 */ + fdb->port_mask = (reg[1] >> QCA8K_ATU_PORT_S) & QCA8K_ATU_PORT_M; + /* mac - 47:0 */ + fdb->mac[0] = (reg[1] >> QCA8K_ATU_ADDR0_S) & 0xff; + fdb->mac[1] = reg[1] & 0xff; + fdb->mac[2] = (reg[0] >> QCA8K_ATU_ADDR2_S) & 0xff; + fdb->mac[3] = (reg[0] >> QCA8K_ATU_ADDR3_S) & 0xff; + fdb->mac[4] = (reg[0] >> QCA8K_ATU_ADDR4_S) & 0xff; + fdb->mac[5] = reg[0] & 0xff; +} + +static void +qca8k_fdb_write(struct qca8k_priv *priv, u16 vid, u8 port_mask, const u8 *mac, + u8 aging) +{ + u32 reg[3] = { 0 }; + int i; + + /* vid - 83:72 */ + reg[2] = (vid & QCA8K_ATU_VID_M) << QCA8K_ATU_VID_S; + /* aging - 67:64 */ + reg[2] |= aging & QCA8K_ATU_STATUS_M; + /* portmask - 54:48 */ + reg[1] = (port_mask & QCA8K_ATU_PORT_M) << QCA8K_ATU_PORT_S; + /* mac - 47:0 */ + reg[1] |= mac[0] << QCA8K_ATU_ADDR0_S; + reg[1] |= mac[1]; + reg[0] |= mac[2] << QCA8K_ATU_ADDR2_S; + reg[0] |= mac[3] << QCA8K_ATU_ADDR3_S; + reg[0] |= mac[4] << QCA8K_ATU_ADDR4_S; + reg[0] |= mac[5]; + + /* load the array into the ARL table */ + for (i = 0; i < 3; i++) + qca8k_write(priv, QCA8K_REG_ATU_DATA0 + (i * 4), reg[i]); +} + +static int +qca8k_fdb_access(struct qca8k_priv *priv, enum qca8k_fdb_cmd cmd, int port) +{ + u32 reg; + + /* Set the command and FDB index */ + reg = QCA8K_ATU_FUNC_BUSY; + reg |= cmd; + if (port >= 0) { + reg |= QCA8K_ATU_FUNC_PORT_EN; + reg |= (port & QCA8K_ATU_FUNC_PORT_M) << QCA8K_ATU_FUNC_PORT_S; + } + + /* Write the function register triggering the table access */ + qca8k_write(priv, QCA8K_REG_ATU_FUNC, reg); + + /* wait for completion */ + if (qca8k_busy_wait(priv, QCA8K_REG_ATU_FUNC, QCA8K_ATU_FUNC_BUSY)) + return -1; + + /* Check for table full violation when adding an entry */ + if (cmd == QCA8K_FDB_LOAD) { + reg = qca8k_read(priv, QCA8K_REG_ATU_FUNC); + if (reg & QCA8K_ATU_FUNC_FULL) + return -1; + } + + return 0; +} + +static int +qca8k_fdb_next(struct qca8k_priv *priv, struct qca8k_fdb *fdb, int port) +{ + int ret; + + qca8k_fdb_write(priv, fdb->vid, fdb->port_mask, fdb->mac, fdb->aging); + ret = qca8k_fdb_access(priv, QCA8K_FDB_NEXT, port); + if (ret >= 0) + qca8k_fdb_read(priv, fdb); + + return ret; +} + +static int +qca8k_fdb_add(struct qca8k_priv *priv, const u8 *mac, u16 port_mask, + u16 vid, u8 aging) +{ + int ret; + + mutex_lock(&priv->reg_mutex); + qca8k_fdb_write(priv, vid, port_mask, mac, aging); + ret = qca8k_fdb_access(priv, QCA8K_FDB_LOAD, -1); + mutex_unlock(&priv->reg_mutex); + + return ret; +} + +static int +qca8k_fdb_del(struct qca8k_priv *priv, const u8 *mac, u16 port_mask, u16 vid) +{ + int ret; + + mutex_lock(&priv->reg_mutex); + qca8k_fdb_write(priv, vid, port_mask, mac, 0); + ret = qca8k_fdb_access(priv, QCA8K_FDB_PURGE, -1); + mutex_unlock(&priv->reg_mutex); + + return ret; +} + +static void +qca8k_fdb_flush(struct qca8k_priv *priv) +{ + mutex_lock(&priv->reg_mutex); + qca8k_fdb_access(priv, QCA8K_FDB_FLUSH, -1); + mutex_unlock(&priv->reg_mutex); +} + +static int +qca8k_vlan_access(struct qca8k_priv *priv, enum qca8k_vlan_cmd cmd, u16 vid) +{ + u32 reg; + + /* Set the command and VLAN index */ + reg = QCA8K_VTU_FUNC1_BUSY; + reg |= cmd; + reg |= vid << QCA8K_VTU_FUNC1_VID_S; + + /* Write the function register triggering the table access */ + qca8k_write(priv, QCA8K_REG_VTU_FUNC1, reg); + + /* wait for completion */ + if (qca8k_busy_wait(priv, QCA8K_REG_VTU_FUNC1, QCA8K_VTU_FUNC1_BUSY)) + return -ETIMEDOUT; + + /* Check for table full violation when adding an entry */ + if (cmd == QCA8K_VLAN_LOAD) { + reg = qca8k_read(priv, QCA8K_REG_VTU_FUNC1); + if (reg & QCA8K_VTU_FUNC1_FULL) + return -ENOMEM; + } + + return 0; +} + +static int +qca8k_vlan_add(struct qca8k_priv *priv, u8 port, u16 vid, bool untagged) +{ + u32 reg; + int ret; + + /* + We do the right thing with VLAN 0 and treat it as untagged while + preserving the tag on egress. + */ + if (vid == 0) + return 0; + + mutex_lock(&priv->reg_mutex); + ret = qca8k_vlan_access(priv, QCA8K_VLAN_READ, vid); + if (ret < 0) + goto out; + + reg = qca8k_read(priv, QCA8K_REG_VTU_FUNC0); + reg |= QCA8K_VTU_FUNC0_VALID | QCA8K_VTU_FUNC0_IVL_EN; + reg &= ~(QCA8K_VTU_FUNC0_EG_MODE_MASK << QCA8K_VTU_FUNC0_EG_MODE_S(port)); + if (untagged) + reg |= QCA8K_VTU_FUNC0_EG_MODE_UNTAG << + QCA8K_VTU_FUNC0_EG_MODE_S(port); + else + reg |= QCA8K_VTU_FUNC0_EG_MODE_TAG << + QCA8K_VTU_FUNC0_EG_MODE_S(port); + + qca8k_write(priv, QCA8K_REG_VTU_FUNC0, reg); + ret = qca8k_vlan_access(priv, QCA8K_VLAN_LOAD, vid); + +out: + mutex_unlock(&priv->reg_mutex); + + return ret; +} + +static int +qca8k_vlan_del(struct qca8k_priv *priv, u8 port, u16 vid) +{ + u32 reg, mask; + int ret, i; + bool del; + + mutex_lock(&priv->reg_mutex); + ret = qca8k_vlan_access(priv, QCA8K_VLAN_READ, vid); + if (ret < 0) + goto out; + + reg = qca8k_read(priv, QCA8K_REG_VTU_FUNC0); + reg &= ~(3 << QCA8K_VTU_FUNC0_EG_MODE_S(port)); + reg |= QCA8K_VTU_FUNC0_EG_MODE_NOT << + QCA8K_VTU_FUNC0_EG_MODE_S(port); + + /* Check if we're the last member to be removed */ + del = true; + for (i = 0; i < QCA8K_NUM_PORTS; i++) { + mask = QCA8K_VTU_FUNC0_EG_MODE_NOT; + mask <<= QCA8K_VTU_FUNC0_EG_MODE_S(i); + + if ((reg & mask) != mask) { + del = false; + break; + } + } + + if (del) { + ret = qca8k_vlan_access(priv, QCA8K_VLAN_PURGE, vid); + } else { + qca8k_write(priv, QCA8K_REG_VTU_FUNC0, reg); + ret = qca8k_vlan_access(priv, QCA8K_VLAN_LOAD, vid); + } + +out: + mutex_unlock(&priv->reg_mutex); + + return ret; +} + +static void +qca8k_mib_init(struct qca8k_priv *priv) +{ + mutex_lock(&priv->reg_mutex); + qca8k_reg_set(priv, QCA8K_REG_MIB, QCA8K_MIB_FLUSH | QCA8K_MIB_BUSY); + qca8k_busy_wait(priv, QCA8K_REG_MIB, QCA8K_MIB_BUSY); + qca8k_reg_set(priv, QCA8K_REG_MIB, QCA8K_MIB_CPU_KEEP); + qca8k_write(priv, QCA8K_REG_MODULE_EN, QCA8K_MODULE_EN_MIB); + mutex_unlock(&priv->reg_mutex); +} + +static void +qca8k_port_set_status(struct qca8k_priv *priv, int port, int enable) +{ + u32 mask = QCA8K_PORT_STATUS_TXMAC | QCA8K_PORT_STATUS_RXMAC; + + /* Port 0 and 6 have no internal PHY */ + if (port > 0 && port < 6) + mask |= QCA8K_PORT_STATUS_LINK_AUTO; + + if (enable) + qca8k_reg_set(priv, QCA8K_REG_PORT_STATUS(port), mask); + else + qca8k_reg_clear(priv, QCA8K_REG_PORT_STATUS(port), mask); +} + +static u32 +qca8k_port_to_phy(int port) +{ + /* From Andrew Lunn: + * Port 0 has no internal phy. + * Port 1 has an internal PHY at MDIO address 0. + * Port 2 has an internal PHY at MDIO address 1. + * ... + * Port 5 has an internal PHY at MDIO address 4. + * Port 6 has no internal PHY. + */ + + return port - 1; +} + +static int +qca8k_mdio_write(struct qca8k_priv *priv, int port, u32 regnum, u16 data) +{ + u32 phy, val; + + if (regnum >= QCA8K_MDIO_MASTER_MAX_REG) + return -EINVAL; + + /* callee is responsible for not passing bad ports, + * but we still would like to make spills impossible. + */ + phy = qca8k_port_to_phy(port) % PHY_MAX_ADDR; + val = QCA8K_MDIO_MASTER_BUSY | QCA8K_MDIO_MASTER_EN | + QCA8K_MDIO_MASTER_WRITE | QCA8K_MDIO_MASTER_PHY_ADDR(phy) | + QCA8K_MDIO_MASTER_REG_ADDR(regnum) | + QCA8K_MDIO_MASTER_DATA(data); + + qca8k_write(priv, QCA8K_MDIO_MASTER_CTRL, val); + + return qca8k_busy_wait(priv, QCA8K_MDIO_MASTER_CTRL, + QCA8K_MDIO_MASTER_BUSY); +} + +static int +qca8k_mdio_read(struct qca8k_priv *priv, int port, u32 regnum) +{ + u32 phy, val; + + if (regnum >= QCA8K_MDIO_MASTER_MAX_REG) + return -EINVAL; + + /* callee is responsible for not passing bad ports, + * but we still would like to make spills impossible. + */ + phy = qca8k_port_to_phy(port) % PHY_MAX_ADDR; + val = QCA8K_MDIO_MASTER_BUSY | QCA8K_MDIO_MASTER_EN | + QCA8K_MDIO_MASTER_READ | QCA8K_MDIO_MASTER_PHY_ADDR(phy) | + QCA8K_MDIO_MASTER_REG_ADDR(regnum); + + qca8k_write(priv, QCA8K_MDIO_MASTER_CTRL, val); + + if (qca8k_busy_wait(priv, QCA8K_MDIO_MASTER_CTRL, + QCA8K_MDIO_MASTER_BUSY)) + return -ETIMEDOUT; + + val = (qca8k_read(priv, QCA8K_MDIO_MASTER_CTRL) & + QCA8K_MDIO_MASTER_DATA_MASK); + + return val; +} + +static int +qca8k_phy_write(struct dsa_switch *ds, int port, int regnum, u16 data) +{ + struct qca8k_priv *priv = ds->priv; + + return qca8k_mdio_write(priv, port, regnum, data); +} + +static int +qca8k_phy_read(struct dsa_switch *ds, int port, int regnum) +{ + struct qca8k_priv *priv = ds->priv; + int ret; + + ret = qca8k_mdio_read(priv, port, regnum); + + if (ret < 0) + return 0xffff; + + return ret; +} + +static int +qca8k_setup_mdio_bus(struct qca8k_priv *priv) +{ + u32 internal_mdio_mask = 0, external_mdio_mask = 0, reg; + struct device_node *ports, *port; + int err; + + ports = of_get_child_by_name(priv->dev->of_node, "ports"); + if (!ports) + return -EINVAL; + + for_each_available_child_of_node(ports, port) { + err = of_property_read_u32(port, "reg", ®); + if (err) { + of_node_put(port); + of_node_put(ports); + return err; + } + + if (!dsa_is_user_port(priv->ds, reg)) + continue; + + if (of_property_read_bool(port, "phy-handle")) + external_mdio_mask |= BIT(reg); + else + internal_mdio_mask |= BIT(reg); + } + + of_node_put(ports); + if (!external_mdio_mask && !internal_mdio_mask) { + dev_err(priv->dev, "no PHYs are defined.\n"); + return -EINVAL; + } + + /* The QCA8K_MDIO_MASTER_EN Bit, which grants access to PHYs through + * the MDIO_MASTER register also _disconnects_ the external MDC + * passthrough to the internal PHYs. It's not possible to use both + * configurations at the same time! + * + * Because this came up during the review process: + * If the external mdio-bus driver is capable magically disabling + * the QCA8K_MDIO_MASTER_EN and mutex/spin-locking out the qca8k's + * accessors for the time being, it would be possible to pull this + * off. + */ + if (!!external_mdio_mask && !!internal_mdio_mask) { + dev_err(priv->dev, "either internal or external mdio bus configuration is supported.\n"); + return -EINVAL; + } + + if (external_mdio_mask) { + /* Make sure to disable the internal mdio bus in cases + * a dt-overlay and driver reload changed the configuration + */ + + qca8k_reg_clear(priv, QCA8K_MDIO_MASTER_CTRL, + QCA8K_MDIO_MASTER_EN); + return 0; + } + + priv->ops.phy_read = qca8k_phy_read; + priv->ops.phy_write = qca8k_phy_write; + return 0; +} + +static int +qca8k_setup(struct dsa_switch *ds) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + int ret, i; + + /* Make sure that port 0 is the cpu port */ + if (!dsa_is_cpu_port(ds, 0)) { + pr_err("port 0 is not the CPU port\n"); + return -EINVAL; + } + + mutex_init(&priv->reg_mutex); + + /* Start by setting up the register mapping */ + priv->regmap = devm_regmap_init(ds->dev, NULL, priv, + &qca8k_regmap_config); + if (IS_ERR(priv->regmap)) + pr_warn("regmap initialization failed"); + + ret = qca8k_setup_mdio_bus(priv); + if (ret) + return ret; + + /* Enable CPU Port */ + qca8k_reg_set(priv, QCA8K_REG_GLOBAL_FW_CTRL0, + QCA8K_GLOBAL_FW_CTRL0_CPU_PORT_EN); + + /* Enable MIB counters */ + qca8k_mib_init(priv); + + /* Enable QCA header mode on the cpu port */ + qca8k_write(priv, QCA8K_REG_PORT_HDR_CTRL(QCA8K_CPU_PORT), + QCA8K_PORT_HDR_CTRL_ALL << QCA8K_PORT_HDR_CTRL_TX_S | + QCA8K_PORT_HDR_CTRL_ALL << QCA8K_PORT_HDR_CTRL_RX_S); + + /* Disable forwarding by default on all ports */ + for (i = 0; i < QCA8K_NUM_PORTS; i++) + qca8k_rmw(priv, QCA8K_PORT_LOOKUP_CTRL(i), + QCA8K_PORT_LOOKUP_MEMBER, 0); + + /* Disable MAC by default on all ports */ + for (i = 1; i < QCA8K_NUM_PORTS; i++) + qca8k_port_set_status(priv, i, 0); + + /* Forward all unknown frames to CPU port for Linux processing */ + qca8k_write(priv, QCA8K_REG_GLOBAL_FW_CTRL1, + BIT(0) << QCA8K_GLOBAL_FW_CTRL1_IGMP_DP_S | + BIT(0) << QCA8K_GLOBAL_FW_CTRL1_BC_DP_S | + BIT(0) << QCA8K_GLOBAL_FW_CTRL1_MC_DP_S | + BIT(0) << QCA8K_GLOBAL_FW_CTRL1_UC_DP_S); + + /* Setup connection between CPU port & user ports */ + for (i = 0; i < QCA8K_NUM_PORTS; i++) { + /* CPU port gets connected to all user ports of the switch */ + if (dsa_is_cpu_port(ds, i)) { + qca8k_rmw(priv, QCA8K_PORT_LOOKUP_CTRL(QCA8K_CPU_PORT), + QCA8K_PORT_LOOKUP_MEMBER, dsa_user_ports(ds)); + } + + /* Individual user ports get connected to CPU port only */ + if (dsa_is_user_port(ds, i)) { + int shift = 16 * (i % 2); + + qca8k_rmw(priv, QCA8K_PORT_LOOKUP_CTRL(i), + QCA8K_PORT_LOOKUP_MEMBER, + BIT(QCA8K_CPU_PORT)); + + /* Enable ARP Auto-learning by default */ + qca8k_reg_set(priv, QCA8K_PORT_LOOKUP_CTRL(i), + QCA8K_PORT_LOOKUP_LEARN); + + /* For port based vlans to work we need to set the + * default egress vid + */ + qca8k_rmw(priv, QCA8K_EGRESS_VLAN(i), + 0xfff << shift, + QCA8K_PORT_VID_DEF << shift); + qca8k_write(priv, QCA8K_REG_PORT_VLAN_CTRL0(i), + QCA8K_PORT_VLAN_CVID(QCA8K_PORT_VID_DEF) | + QCA8K_PORT_VLAN_SVID(QCA8K_PORT_VID_DEF)); + } + } + + /* Setup our port MTUs to match power on defaults */ + for (i = 0; i < QCA8K_NUM_PORTS; i++) + priv->port_mtu[i] = ETH_FRAME_LEN + ETH_FCS_LEN; + qca8k_write(priv, QCA8K_MAX_FRAME_SIZE, ETH_FRAME_LEN + ETH_FCS_LEN); + + /* Flush the FDB table */ + qca8k_fdb_flush(priv); + + /* We don't have interrupts for link changes, so we need to poll */ + ds->pcs_poll = true; + + return 0; +} + +static void +qca8k_phylink_mac_config(struct dsa_switch *ds, int port, unsigned int mode, + const struct phylink_link_state *state) +{ + struct qca8k_priv *priv = ds->priv; + u32 reg, val; + + switch (port) { + case 0: /* 1st CPU port */ + if (state->interface != PHY_INTERFACE_MODE_RGMII && + state->interface != PHY_INTERFACE_MODE_RGMII_ID && + state->interface != PHY_INTERFACE_MODE_SGMII) + return; + + reg = QCA8K_REG_PORT0_PAD_CTRL; + break; + case 1: + case 2: + case 3: + case 4: + case 5: + /* Internal PHY, nothing to do */ + return; + case 6: /* 2nd CPU port / external PHY */ + if (state->interface != PHY_INTERFACE_MODE_RGMII && + state->interface != PHY_INTERFACE_MODE_RGMII_ID && + state->interface != PHY_INTERFACE_MODE_SGMII && + state->interface != PHY_INTERFACE_MODE_1000BASEX) + return; + + reg = QCA8K_REG_PORT6_PAD_CTRL; + break; + default: + dev_err(ds->dev, "%s: unsupported port: %i\n", __func__, port); + return; + } + + if (port != 6 && phylink_autoneg_inband(mode)) { + dev_err(ds->dev, "%s: in-band negotiation unsupported\n", + __func__); + return; + } + + switch (state->interface) { + case PHY_INTERFACE_MODE_RGMII: + /* RGMII mode means no delay so don't enable the delay */ + qca8k_write(priv, reg, QCA8K_PORT_PAD_RGMII_EN); + break; + case PHY_INTERFACE_MODE_RGMII_ID: + /* RGMII_ID needs internal delay. This is enabled through + * PORT5_PAD_CTRL for all ports, rather than individual port + * registers + */ + qca8k_write(priv, reg, + QCA8K_PORT_PAD_RGMII_EN | + QCA8K_PORT_PAD_RGMII_TX_DELAY(QCA8K_MAX_DELAY) | + QCA8K_PORT_PAD_RGMII_RX_DELAY(QCA8K_MAX_DELAY)); + qca8k_write(priv, QCA8K_REG_PORT5_PAD_CTRL, + QCA8K_PORT_PAD_RGMII_RX_DELAY_EN); + break; + case PHY_INTERFACE_MODE_SGMII: + case PHY_INTERFACE_MODE_1000BASEX: + /* Enable SGMII on the port */ + qca8k_write(priv, reg, QCA8K_PORT_PAD_SGMII_EN); + + /* Enable/disable SerDes auto-negotiation as necessary */ + val = qca8k_read(priv, QCA8K_REG_PWS); + if (phylink_autoneg_inband(mode)) + val &= ~QCA8K_PWS_SERDES_AEN_DIS; + else + val |= QCA8K_PWS_SERDES_AEN_DIS; + qca8k_write(priv, QCA8K_REG_PWS, val); + + /* Configure the SGMII parameters */ + val = qca8k_read(priv, QCA8K_REG_SGMII_CTRL); + + val |= QCA8K_SGMII_EN_PLL | QCA8K_SGMII_EN_RX | + QCA8K_SGMII_EN_TX | QCA8K_SGMII_EN_SD; + + if (dsa_is_cpu_port(ds, port)) { + /* CPU port, we're talking to the CPU MAC, be a PHY */ + val &= ~QCA8K_SGMII_MODE_CTRL_MASK; + val |= QCA8K_SGMII_MODE_CTRL_PHY; + } else if (state->interface == PHY_INTERFACE_MODE_SGMII) { + val &= ~QCA8K_SGMII_MODE_CTRL_MASK; + val |= QCA8K_SGMII_MODE_CTRL_MAC; + } else if (state->interface == PHY_INTERFACE_MODE_1000BASEX) { + val &= ~QCA8K_SGMII_MODE_CTRL_MASK; + val |= QCA8K_SGMII_MODE_CTRL_BASEX; + } + + qca8k_write(priv, QCA8K_REG_SGMII_CTRL, val); + break; + default: + dev_err(ds->dev, "xMII mode %s not supported for port %d\n", + phy_modes(state->interface), port); + return; + } +} + +static void +qca8k_phylink_validate(struct dsa_switch *ds, int port, + unsigned long *supported, + struct phylink_link_state *state) +{ + __ETHTOOL_DECLARE_LINK_MODE_MASK(mask) = { 0, }; + + switch (port) { + case 0: /* 1st CPU port */ + if (state->interface != PHY_INTERFACE_MODE_NA && + state->interface != PHY_INTERFACE_MODE_RGMII && + state->interface != PHY_INTERFACE_MODE_RGMII_ID && + state->interface != PHY_INTERFACE_MODE_SGMII) + goto unsupported; + break; + case 1: + case 2: + case 3: + case 4: + case 5: + /* Internal PHY */ + if (state->interface != PHY_INTERFACE_MODE_NA && + state->interface != PHY_INTERFACE_MODE_GMII) + goto unsupported; + break; + case 6: /* 2nd CPU port / external PHY */ + if (state->interface != PHY_INTERFACE_MODE_NA && + state->interface != PHY_INTERFACE_MODE_RGMII && + state->interface != PHY_INTERFACE_MODE_RGMII_ID && + state->interface != PHY_INTERFACE_MODE_SGMII && + state->interface != PHY_INTERFACE_MODE_1000BASEX) + goto unsupported; + break; + default: +unsupported: + linkmode_zero(supported); + return; + } + + phylink_set_port_modes(mask); + phylink_set(mask, Autoneg); + + phylink_set(mask, 1000baseT_Full); + phylink_set(mask, 10baseT_Half); + phylink_set(mask, 10baseT_Full); + phylink_set(mask, 100baseT_Half); + phylink_set(mask, 100baseT_Full); + + if (state->interface == PHY_INTERFACE_MODE_1000BASEX) + phylink_set(mask, 1000baseX_Full); + + phylink_set(mask, Pause); + phylink_set(mask, Asym_Pause); + + linkmode_and(supported, supported, mask); + linkmode_and(state->advertising, state->advertising, mask); +} + +static int +qca8k_phylink_mac_link_state(struct dsa_switch *ds, int port, + struct phylink_link_state *state) +{ + struct qca8k_priv *priv = ds->priv; + u32 reg; + + reg = qca8k_read(priv, QCA8K_REG_PORT_STATUS(port)); + + state->link = !!(reg & QCA8K_PORT_STATUS_LINK_UP); + state->an_complete = state->link; + state->an_enabled = !!(reg & QCA8K_PORT_STATUS_LINK_AUTO); + state->duplex = (reg & QCA8K_PORT_STATUS_DUPLEX) ? DUPLEX_FULL : + DUPLEX_HALF; + + switch (reg & QCA8K_PORT_STATUS_SPEED) { + case QCA8K_PORT_STATUS_SPEED_10: + state->speed = SPEED_10; + break; + case QCA8K_PORT_STATUS_SPEED_100: + state->speed = SPEED_100; + break; + case QCA8K_PORT_STATUS_SPEED_1000: + state->speed = SPEED_1000; + break; + default: + state->speed = SPEED_UNKNOWN; + break; + } + + state->pause = MLO_PAUSE_NONE; + if (reg & QCA8K_PORT_STATUS_RXFLOW) + state->pause |= MLO_PAUSE_RX; + if (reg & QCA8K_PORT_STATUS_TXFLOW) + state->pause |= MLO_PAUSE_TX; + + return 1; +} + +static void +qca8k_phylink_mac_link_down(struct dsa_switch *ds, int port, unsigned int mode, + phy_interface_t interface) +{ + struct qca8k_priv *priv = ds->priv; + + qca8k_port_set_status(priv, port, 0); +} + +static void +qca8k_phylink_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 qca8k_priv *priv = ds->priv; + u32 reg; + + if (phylink_autoneg_inband(mode)) { + reg = QCA8K_PORT_STATUS_LINK_AUTO; + } else { + switch (speed) { + case SPEED_10: + reg = QCA8K_PORT_STATUS_SPEED_10; + break; + case SPEED_100: + reg = QCA8K_PORT_STATUS_SPEED_100; + break; + case SPEED_1000: + reg = QCA8K_PORT_STATUS_SPEED_1000; + break; + default: + reg = QCA8K_PORT_STATUS_LINK_AUTO; + break; + } + + if (duplex == DUPLEX_FULL) + reg |= QCA8K_PORT_STATUS_DUPLEX; + + if (rx_pause || dsa_is_cpu_port(ds, port)) + reg |= QCA8K_PORT_STATUS_RXFLOW; + + if (tx_pause || dsa_is_cpu_port(ds, port)) + reg |= QCA8K_PORT_STATUS_TXFLOW; + } + + reg |= QCA8K_PORT_STATUS_TXMAC | QCA8K_PORT_STATUS_RXMAC; + + qca8k_write(priv, QCA8K_REG_PORT_STATUS(port), reg); +} + +static void +qca8k_get_strings(struct dsa_switch *ds, int port, u32 stringset, uint8_t *data) +{ + int i; + + if (stringset != ETH_SS_STATS) + return; + + for (i = 0; i < ARRAY_SIZE(ar8327_mib); i++) + strncpy(data + i * ETH_GSTRING_LEN, ar8327_mib[i].name, + ETH_GSTRING_LEN); +} + +static void +qca8k_get_ethtool_stats(struct dsa_switch *ds, int port, + uint64_t *data) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + const struct qca8k_mib_desc *mib; + u32 reg, i; + u64 hi; + + for (i = 0; i < ARRAY_SIZE(ar8327_mib); i++) { + mib = &ar8327_mib[i]; + reg = QCA8K_PORT_MIB_COUNTER(port) + mib->offset; + + data[i] = qca8k_read(priv, reg); + if (mib->size == 2) { + hi = qca8k_read(priv, reg + 4); + data[i] |= hi << 32; + } + } +} + +static int +qca8k_get_sset_count(struct dsa_switch *ds, int port, int sset) +{ + if (sset != ETH_SS_STATS) + return 0; + + return ARRAY_SIZE(ar8327_mib); +} + +static int +qca8k_set_mac_eee(struct dsa_switch *ds, int port, struct ethtool_eee *eee) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + u32 lpi_en = QCA8K_REG_EEE_CTRL_LPI_EN(port); + u32 reg; + + mutex_lock(&priv->reg_mutex); + reg = qca8k_read(priv, QCA8K_REG_EEE_CTRL); + if (eee->eee_enabled) + reg |= lpi_en; + else + reg &= ~lpi_en; + qca8k_write(priv, QCA8K_REG_EEE_CTRL, reg); + mutex_unlock(&priv->reg_mutex); + + return 0; +} + +static int +qca8k_get_mac_eee(struct dsa_switch *ds, int port, struct ethtool_eee *e) +{ + /* Nothing to do on the port's MAC */ + return 0; +} + +static void +qca8k_port_stp_state_set(struct dsa_switch *ds, int port, u8 state) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + u32 stp_state; + + switch (state) { + case BR_STATE_DISABLED: + stp_state = QCA8K_PORT_LOOKUP_STATE_DISABLED; + break; + case BR_STATE_BLOCKING: + stp_state = QCA8K_PORT_LOOKUP_STATE_BLOCKING; + break; + case BR_STATE_LISTENING: + stp_state = QCA8K_PORT_LOOKUP_STATE_LISTENING; + break; + case BR_STATE_LEARNING: + stp_state = QCA8K_PORT_LOOKUP_STATE_LEARNING; + break; + case BR_STATE_FORWARDING: + default: + stp_state = QCA8K_PORT_LOOKUP_STATE_FORWARD; + break; + } + + qca8k_rmw(priv, QCA8K_PORT_LOOKUP_CTRL(port), + QCA8K_PORT_LOOKUP_STATE_MASK, stp_state); +} + +static int +qca8k_port_bridge_join(struct dsa_switch *ds, int port, struct net_device *br) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + int port_mask = BIT(QCA8K_CPU_PORT); + int i; + + for (i = 1; i < QCA8K_NUM_PORTS; i++) { + if (dsa_to_port(ds, i)->bridge_dev != br) + continue; + /* Add this port to the portvlan mask of the other ports + * in the bridge + */ + qca8k_reg_set(priv, + QCA8K_PORT_LOOKUP_CTRL(i), + BIT(port)); + if (i != port) + port_mask |= BIT(i); + } + /* Add all other ports to this ports portvlan mask */ + qca8k_rmw(priv, QCA8K_PORT_LOOKUP_CTRL(port), + QCA8K_PORT_LOOKUP_MEMBER, port_mask); + + return 0; +} + +static void +qca8k_port_bridge_leave(struct dsa_switch *ds, int port, struct net_device *br) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + int i; + + for (i = 1; i < QCA8K_NUM_PORTS; i++) { + if (dsa_to_port(ds, i)->bridge_dev != br) + continue; + /* Remove this port to the portvlan mask of the other ports + * in the bridge + */ + qca8k_reg_clear(priv, + QCA8K_PORT_LOOKUP_CTRL(i), + BIT(port)); + } + + /* Set the cpu port to be the only one in the portvlan mask of + * this port + */ + qca8k_rmw(priv, QCA8K_PORT_LOOKUP_CTRL(port), + QCA8K_PORT_LOOKUP_MEMBER, BIT(QCA8K_CPU_PORT)); +} + +static int +qca8k_port_enable(struct dsa_switch *ds, int port, + struct phy_device *phy) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + + qca8k_port_set_status(priv, port, 1); + priv->port_sts[port].enabled = 1; + + if (dsa_is_user_port(ds, port)) + phy_support_asym_pause(phy); + + return 0; +} + +static void +qca8k_port_disable(struct dsa_switch *ds, int port) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + + qca8k_port_set_status(priv, port, 0); + priv->port_sts[port].enabled = 0; +} + +static int +qca8k_port_change_mtu(struct dsa_switch *ds, int port, int new_mtu) +{ + struct qca8k_priv *priv = ds->priv; + int i, mtu = 0; + + priv->port_mtu[port] = new_mtu; + + for (i = 0; i < QCA8K_NUM_PORTS; i++) + if (priv->port_mtu[i] > mtu) + mtu = priv->port_mtu[i]; + + /* Include L2 header / FCS length */ + qca8k_write(priv, QCA8K_MAX_FRAME_SIZE, mtu + ETH_HLEN + ETH_FCS_LEN); + + return 0; +} + +static int +qca8k_port_max_mtu(struct dsa_switch *ds, int port) +{ + return QCA8K_MAX_MTU; +} + +static int +qca8k_port_fdb_insert(struct qca8k_priv *priv, const u8 *addr, + u16 port_mask, u16 vid) +{ + /* Set the vid to the port vlan id if no vid is set */ + if (!vid) + vid = QCA8K_PORT_VID_DEF; + + return qca8k_fdb_add(priv, addr, port_mask, vid, + QCA8K_ATU_STATUS_STATIC); +} + +static int +qca8k_port_fdb_add(struct dsa_switch *ds, int port, + const unsigned char *addr, u16 vid) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + u16 port_mask = BIT(port); + + return qca8k_port_fdb_insert(priv, addr, port_mask, vid); +} + +static int +qca8k_port_fdb_del(struct dsa_switch *ds, int port, + const unsigned char *addr, u16 vid) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + u16 port_mask = BIT(port); + + if (!vid) + vid = QCA8K_PORT_VID_DEF; + + return qca8k_fdb_del(priv, addr, port_mask, vid); +} + +static int +qca8k_port_fdb_dump(struct dsa_switch *ds, int port, + dsa_fdb_dump_cb_t *cb, void *data) +{ + struct qca8k_priv *priv = (struct qca8k_priv *)ds->priv; + struct qca8k_fdb _fdb = { 0 }; + int cnt = QCA8K_NUM_FDB_RECORDS; + bool is_static; + int ret = 0; + + mutex_lock(&priv->reg_mutex); + while (cnt-- && !qca8k_fdb_next(priv, &_fdb, port)) { + if (!_fdb.aging) + break; + is_static = (_fdb.aging == QCA8K_ATU_STATUS_STATIC); + ret = cb(_fdb.mac, _fdb.vid, is_static, data); + if (ret) + break; + } + mutex_unlock(&priv->reg_mutex); + + return 0; +} + +static int +qca8k_port_vlan_filtering(struct dsa_switch *ds, int port, bool vlan_filtering, + struct switchdev_trans *trans) +{ + struct qca8k_priv *priv = ds->priv; + + if (switchdev_trans_ph_prepare(trans)) + return 0; + + if (vlan_filtering) { + qca8k_rmw(priv, QCA8K_PORT_LOOKUP_CTRL(port), + QCA8K_PORT_LOOKUP_VLAN_MODE, + QCA8K_PORT_LOOKUP_VLAN_MODE_SECURE); + } else { + qca8k_rmw(priv, QCA8K_PORT_LOOKUP_CTRL(port), + QCA8K_PORT_LOOKUP_VLAN_MODE, + QCA8K_PORT_LOOKUP_VLAN_MODE_NONE); + } + + return 0; +} + +static int +qca8k_port_vlan_prepare(struct dsa_switch *ds, int port, + const struct switchdev_obj_port_vlan *vlan) +{ + return 0; +} + +static void +qca8k_port_vlan_add(struct dsa_switch *ds, int port, + const struct switchdev_obj_port_vlan *vlan) +{ + bool untagged = vlan->flags & BRIDGE_VLAN_INFO_UNTAGGED; + bool pvid = vlan->flags & BRIDGE_VLAN_INFO_PVID; + struct qca8k_priv *priv = ds->priv; + int ret = 0; + u16 vid; + + for (vid = vlan->vid_begin; vid <= vlan->vid_end && !ret; ++vid) + ret = qca8k_vlan_add(priv, port, vid, untagged); + + if (ret) + dev_err(priv->dev, "Failed to add VLAN to port %d (%d)", port, ret); + + if (pvid) { + int shift = 16 * (port % 2); + + qca8k_rmw(priv, QCA8K_EGRESS_VLAN(port), + 0xfff << shift, + vlan->vid_end << shift); + qca8k_write(priv, QCA8K_REG_PORT_VLAN_CTRL0(port), + QCA8K_PORT_VLAN_CVID(vlan->vid_end) | + QCA8K_PORT_VLAN_SVID(vlan->vid_end)); + } +} + +static int +qca8k_port_vlan_del(struct dsa_switch *ds, int port, + const struct switchdev_obj_port_vlan *vlan) +{ + struct qca8k_priv *priv = ds->priv; + int ret = 0; + u16 vid; + + for (vid = vlan->vid_begin; vid <= vlan->vid_end && !ret; ++vid) + ret = qca8k_vlan_del(priv, port, vid); + + if (ret) + dev_err(priv->dev, "Failed to delete VLAN from port %d (%d)", port, ret); + + return ret; +} + +static enum dsa_tag_protocol +qca8k_get_tag_protocol(struct dsa_switch *ds, int port, + enum dsa_tag_protocol mp) +{ + return DSA_TAG_PROTO_QCA; +} + +static const struct dsa_switch_ops qca8k_switch_ops = { + .get_tag_protocol = qca8k_get_tag_protocol, + .setup = qca8k_setup, + .get_strings = qca8k_get_strings, + .get_ethtool_stats = qca8k_get_ethtool_stats, + .get_sset_count = qca8k_get_sset_count, + .get_mac_eee = qca8k_get_mac_eee, + .set_mac_eee = qca8k_set_mac_eee, + .port_enable = qca8k_port_enable, + .port_disable = qca8k_port_disable, + .port_change_mtu = qca8k_port_change_mtu, + .port_max_mtu = qca8k_port_max_mtu, + .port_stp_state_set = qca8k_port_stp_state_set, + .port_bridge_join = qca8k_port_bridge_join, + .port_bridge_leave = qca8k_port_bridge_leave, + .port_fdb_add = qca8k_port_fdb_add, + .port_fdb_del = qca8k_port_fdb_del, + .port_fdb_dump = qca8k_port_fdb_dump, + .port_vlan_filtering = qca8k_port_vlan_filtering, + .port_vlan_prepare = qca8k_port_vlan_prepare, + .port_vlan_add = qca8k_port_vlan_add, + .port_vlan_del = qca8k_port_vlan_del, + .phylink_validate = qca8k_phylink_validate, + .phylink_mac_link_state = qca8k_phylink_mac_link_state, + .phylink_mac_config = qca8k_phylink_mac_config, + .phylink_mac_link_down = qca8k_phylink_mac_link_down, + .phylink_mac_link_up = qca8k_phylink_mac_link_up, +}; + +static int +qca8k_sw_probe(struct mdio_device *mdiodev) +{ + struct qca8k_priv *priv; + u32 id; + + /* allocate the private data struct so that we can probe the switches + * ID register + */ + priv = devm_kzalloc(&mdiodev->dev, sizeof(*priv), GFP_KERNEL); + if (!priv) + return -ENOMEM; + + priv->bus = mdiodev->bus; + priv->dev = &mdiodev->dev; + + priv->reset_gpio = devm_gpiod_get_optional(priv->dev, "reset", + GPIOD_ASIS); + if (IS_ERR(priv->reset_gpio)) + return PTR_ERR(priv->reset_gpio); + + if (priv->reset_gpio) { + gpiod_set_value_cansleep(priv->reset_gpio, 1); + /* The active low duration must be greater than 10 ms + * and checkpatch.pl wants 20 ms. + */ + msleep(20); + gpiod_set_value_cansleep(priv->reset_gpio, 0); + } + + /* read the switches ID register */ + id = qca8k_read(priv, QCA8K_REG_MASK_CTRL); + id >>= QCA8K_MASK_CTRL_ID_S; + id &= QCA8K_MASK_CTRL_ID_M; + if (id != QCA8K_ID_QCA8337) + return -ENODEV; + + priv->ds = devm_kzalloc(&mdiodev->dev, sizeof(*priv->ds), GFP_KERNEL); + if (!priv->ds) + return -ENOMEM; + + priv->ds->dev = &mdiodev->dev; + priv->ds->num_ports = QCA8K_NUM_PORTS; + priv->ds->configure_vlan_while_not_filtering = true; + priv->ds->priv = priv; + priv->ops = qca8k_switch_ops; + priv->ds->ops = &priv->ops; + mutex_init(&priv->reg_mutex); + dev_set_drvdata(&mdiodev->dev, priv); + + return dsa_register_switch(priv->ds); +} + +static void +qca8k_sw_remove(struct mdio_device *mdiodev) +{ + struct qca8k_priv *priv = dev_get_drvdata(&mdiodev->dev); + int i; + + for (i = 0; i < QCA8K_NUM_PORTS; i++) + qca8k_port_set_status(priv, i, 0); + + dsa_unregister_switch(priv->ds); +} + +#ifdef CONFIG_PM_SLEEP +static void +qca8k_set_pm(struct qca8k_priv *priv, int enable) +{ + int i; + + for (i = 0; i < QCA8K_NUM_PORTS; i++) { + if (!priv->port_sts[i].enabled) + continue; + + qca8k_port_set_status(priv, i, enable); + } +} + +static int qca8k_suspend(struct device *dev) +{ + struct qca8k_priv *priv = dev_get_drvdata(dev); + + qca8k_set_pm(priv, 0); + + return dsa_switch_suspend(priv->ds); +} + +static int qca8k_resume(struct device *dev) +{ + struct qca8k_priv *priv = dev_get_drvdata(dev); + + qca8k_set_pm(priv, 1); + + return dsa_switch_resume(priv->ds); +} +#endif /* CONFIG_PM_SLEEP */ + +static SIMPLE_DEV_PM_OPS(qca8k_pm_ops, + qca8k_suspend, qca8k_resume); + +static const struct of_device_id qca8k_of_match[] = { + { .compatible = "qca,qca8334" }, + { .compatible = "qca,qca8337" }, + { /* sentinel */ }, +}; + +static struct mdio_driver qca8kmdio_driver = { + .probe = qca8k_sw_probe, + .remove = qca8k_sw_remove, + .mdiodrv.driver = { + .name = "qca8k", + .of_match_table = qca8k_of_match, + .pm = &qca8k_pm_ops, + }, +}; + +mdio_module_driver(qca8kmdio_driver); + +MODULE_AUTHOR("Mathieu Olivari, John Crispin <john@phrozen.org>"); +MODULE_DESCRIPTION("Driver for QCA8K ethernet switch family"); +MODULE_LICENSE("GPL v2"); +MODULE_ALIAS("platform:qca8k"); diff --git a/drivers/net/dsa/qca8k.h b/drivers/net/dsa/qca8k.h new file mode 100644 index 000000000..7ca4b93e0 --- /dev/null +++ b/drivers/net/dsa/qca8k.h @@ -0,0 +1,239 @@ +/* SPDX-License-Identifier: GPL-2.0-only */ +/* + * Copyright (C) 2009 Felix Fietkau <nbd@nbd.name> + * Copyright (C) 2011-2012 Gabor Juhos <juhosg@openwrt.org> + * Copyright (c) 2015, The Linux Foundation. All rights reserved. + */ + +#ifndef __QCA8K_H +#define __QCA8K_H + +#include <linux/delay.h> +#include <linux/regmap.h> +#include <linux/gpio.h> + +#define QCA8K_NUM_PORTS 7 +#define QCA8K_MAX_MTU 9000 + +#define PHY_ID_QCA8337 0x004dd036 +#define QCA8K_ID_QCA8337 0x13 + +#define QCA8K_NUM_FDB_RECORDS 2048 + +#define QCA8K_CPU_PORT 0 + +#define QCA8K_PORT_VID_DEF 1 + +/* Global control registers */ +#define QCA8K_REG_MASK_CTRL 0x000 +#define QCA8K_MASK_CTRL_ID_M 0xff +#define QCA8K_MASK_CTRL_ID_S 8 +#define QCA8K_REG_PORT0_PAD_CTRL 0x004 +#define QCA8K_REG_PORT5_PAD_CTRL 0x008 +#define QCA8K_REG_PORT6_PAD_CTRL 0x00c +#define QCA8K_PORT_PAD_RGMII_EN BIT(26) +#define QCA8K_PORT_PAD_RGMII_TX_DELAY(x) \ + ((0x8 + (x & 0x3)) << 22) +#define QCA8K_PORT_PAD_RGMII_RX_DELAY(x) \ + ((0x10 + (x & 0x3)) << 20) +#define QCA8K_MAX_DELAY 3 +#define QCA8K_PORT_PAD_RGMII_RX_DELAY_EN BIT(24) +#define QCA8K_PORT_PAD_SGMII_EN BIT(7) +#define QCA8K_REG_PWS 0x010 +#define QCA8K_PWS_SERDES_AEN_DIS BIT(7) +#define QCA8K_REG_MODULE_EN 0x030 +#define QCA8K_MODULE_EN_MIB BIT(0) +#define QCA8K_REG_MIB 0x034 +#define QCA8K_MIB_FLUSH BIT(24) +#define QCA8K_MIB_CPU_KEEP BIT(20) +#define QCA8K_MIB_BUSY BIT(17) +#define QCA8K_MDIO_MASTER_CTRL 0x3c +#define QCA8K_MDIO_MASTER_BUSY BIT(31) +#define QCA8K_MDIO_MASTER_EN BIT(30) +#define QCA8K_MDIO_MASTER_READ BIT(27) +#define QCA8K_MDIO_MASTER_WRITE 0 +#define QCA8K_MDIO_MASTER_SUP_PRE BIT(26) +#define QCA8K_MDIO_MASTER_PHY_ADDR(x) ((x) << 21) +#define QCA8K_MDIO_MASTER_REG_ADDR(x) ((x) << 16) +#define QCA8K_MDIO_MASTER_DATA(x) (x) +#define QCA8K_MDIO_MASTER_DATA_MASK GENMASK(15, 0) +#define QCA8K_MDIO_MASTER_MAX_PORTS 5 +#define QCA8K_MDIO_MASTER_MAX_REG 32 +#define QCA8K_GOL_MAC_ADDR0 0x60 +#define QCA8K_GOL_MAC_ADDR1 0x64 +#define QCA8K_MAX_FRAME_SIZE 0x78 +#define QCA8K_REG_PORT_STATUS(_i) (0x07c + (_i) * 4) +#define QCA8K_PORT_STATUS_SPEED GENMASK(1, 0) +#define QCA8K_PORT_STATUS_SPEED_10 0 +#define QCA8K_PORT_STATUS_SPEED_100 0x1 +#define QCA8K_PORT_STATUS_SPEED_1000 0x2 +#define QCA8K_PORT_STATUS_TXMAC BIT(2) +#define QCA8K_PORT_STATUS_RXMAC BIT(3) +#define QCA8K_PORT_STATUS_TXFLOW BIT(4) +#define QCA8K_PORT_STATUS_RXFLOW BIT(5) +#define QCA8K_PORT_STATUS_DUPLEX BIT(6) +#define QCA8K_PORT_STATUS_LINK_UP BIT(8) +#define QCA8K_PORT_STATUS_LINK_AUTO BIT(9) +#define QCA8K_PORT_STATUS_LINK_PAUSE BIT(10) +#define QCA8K_PORT_STATUS_FLOW_AUTO BIT(12) +#define QCA8K_REG_PORT_HDR_CTRL(_i) (0x9c + (_i * 4)) +#define QCA8K_PORT_HDR_CTRL_RX_MASK GENMASK(3, 2) +#define QCA8K_PORT_HDR_CTRL_RX_S 2 +#define QCA8K_PORT_HDR_CTRL_TX_MASK GENMASK(1, 0) +#define QCA8K_PORT_HDR_CTRL_TX_S 0 +#define QCA8K_PORT_HDR_CTRL_ALL 2 +#define QCA8K_PORT_HDR_CTRL_MGMT 1 +#define QCA8K_PORT_HDR_CTRL_NONE 0 +#define QCA8K_REG_SGMII_CTRL 0x0e0 +#define QCA8K_SGMII_EN_PLL BIT(1) +#define QCA8K_SGMII_EN_RX BIT(2) +#define QCA8K_SGMII_EN_TX BIT(3) +#define QCA8K_SGMII_EN_SD BIT(4) +#define QCA8K_SGMII_CLK125M_DELAY BIT(7) +#define QCA8K_SGMII_MODE_CTRL_MASK (BIT(22) | BIT(23)) +#define QCA8K_SGMII_MODE_CTRL_BASEX (0 << 22) +#define QCA8K_SGMII_MODE_CTRL_PHY (1 << 22) +#define QCA8K_SGMII_MODE_CTRL_MAC (2 << 22) + +/* EEE control registers */ +#define QCA8K_REG_EEE_CTRL 0x100 +#define QCA8K_REG_EEE_CTRL_LPI_EN(_i) ((_i + 1) * 2) + +/* ACL registers */ +#define QCA8K_REG_PORT_VLAN_CTRL0(_i) (0x420 + (_i * 8)) +#define QCA8K_PORT_VLAN_CVID(x) (x << 16) +#define QCA8K_PORT_VLAN_SVID(x) x +#define QCA8K_REG_PORT_VLAN_CTRL1(_i) (0x424 + (_i * 8)) +#define QCA8K_REG_IPV4_PRI_BASE_ADDR 0x470 +#define QCA8K_REG_IPV4_PRI_ADDR_MASK 0x474 + +/* Lookup registers */ +#define QCA8K_REG_ATU_DATA0 0x600 +#define QCA8K_ATU_ADDR2_S 24 +#define QCA8K_ATU_ADDR3_S 16 +#define QCA8K_ATU_ADDR4_S 8 +#define QCA8K_REG_ATU_DATA1 0x604 +#define QCA8K_ATU_PORT_M 0x7f +#define QCA8K_ATU_PORT_S 16 +#define QCA8K_ATU_ADDR0_S 8 +#define QCA8K_REG_ATU_DATA2 0x608 +#define QCA8K_ATU_VID_M 0xfff +#define QCA8K_ATU_VID_S 8 +#define QCA8K_ATU_STATUS_M 0xf +#define QCA8K_ATU_STATUS_STATIC 0xf +#define QCA8K_REG_ATU_FUNC 0x60c +#define QCA8K_ATU_FUNC_BUSY BIT(31) +#define QCA8K_ATU_FUNC_PORT_EN BIT(14) +#define QCA8K_ATU_FUNC_MULTI_EN BIT(13) +#define QCA8K_ATU_FUNC_FULL BIT(12) +#define QCA8K_ATU_FUNC_PORT_M 0xf +#define QCA8K_ATU_FUNC_PORT_S 8 +#define QCA8K_REG_VTU_FUNC0 0x610 +#define QCA8K_VTU_FUNC0_VALID BIT(20) +#define QCA8K_VTU_FUNC0_IVL_EN BIT(19) +#define QCA8K_VTU_FUNC0_EG_MODE_S(_i) (4 + (_i) * 2) +#define QCA8K_VTU_FUNC0_EG_MODE_MASK 3 +#define QCA8K_VTU_FUNC0_EG_MODE_UNMOD 0 +#define QCA8K_VTU_FUNC0_EG_MODE_UNTAG 1 +#define QCA8K_VTU_FUNC0_EG_MODE_TAG 2 +#define QCA8K_VTU_FUNC0_EG_MODE_NOT 3 +#define QCA8K_REG_VTU_FUNC1 0x614 +#define QCA8K_VTU_FUNC1_BUSY BIT(31) +#define QCA8K_VTU_FUNC1_VID_S 16 +#define QCA8K_VTU_FUNC1_FULL BIT(4) +#define QCA8K_REG_GLOBAL_FW_CTRL0 0x620 +#define QCA8K_GLOBAL_FW_CTRL0_CPU_PORT_EN BIT(10) +#define QCA8K_REG_GLOBAL_FW_CTRL1 0x624 +#define QCA8K_GLOBAL_FW_CTRL1_IGMP_DP_S 24 +#define QCA8K_GLOBAL_FW_CTRL1_BC_DP_S 16 +#define QCA8K_GLOBAL_FW_CTRL1_MC_DP_S 8 +#define QCA8K_GLOBAL_FW_CTRL1_UC_DP_S 0 +#define QCA8K_PORT_LOOKUP_CTRL(_i) (0x660 + (_i) * 0xc) +#define QCA8K_PORT_LOOKUP_MEMBER GENMASK(6, 0) +#define QCA8K_PORT_LOOKUP_VLAN_MODE GENMASK(9, 8) +#define QCA8K_PORT_LOOKUP_VLAN_MODE_NONE (0 << 8) +#define QCA8K_PORT_LOOKUP_VLAN_MODE_FALLBACK (1 << 8) +#define QCA8K_PORT_LOOKUP_VLAN_MODE_CHECK (2 << 8) +#define QCA8K_PORT_LOOKUP_VLAN_MODE_SECURE (3 << 8) +#define QCA8K_PORT_LOOKUP_STATE_MASK GENMASK(18, 16) +#define QCA8K_PORT_LOOKUP_STATE_DISABLED (0 << 16) +#define QCA8K_PORT_LOOKUP_STATE_BLOCKING (1 << 16) +#define QCA8K_PORT_LOOKUP_STATE_LISTENING (2 << 16) +#define QCA8K_PORT_LOOKUP_STATE_LEARNING (3 << 16) +#define QCA8K_PORT_LOOKUP_STATE_FORWARD (4 << 16) +#define QCA8K_PORT_LOOKUP_STATE GENMASK(18, 16) +#define QCA8K_PORT_LOOKUP_LEARN BIT(20) + +/* Pkt edit registers */ +#define QCA8K_EGRESS_VLAN(x) (0x0c70 + (4 * (x / 2))) + +/* L3 registers */ +#define QCA8K_HROUTER_CONTROL 0xe00 +#define QCA8K_HROUTER_CONTROL_GLB_LOCKTIME_M GENMASK(17, 16) +#define QCA8K_HROUTER_CONTROL_GLB_LOCKTIME_S 16 +#define QCA8K_HROUTER_CONTROL_ARP_AGE_MODE 1 +#define QCA8K_HROUTER_PBASED_CONTROL1 0xe08 +#define QCA8K_HROUTER_PBASED_CONTROL2 0xe0c +#define QCA8K_HNAT_CONTROL 0xe38 + +/* MIB registers */ +#define QCA8K_PORT_MIB_COUNTER(_i) (0x1000 + (_i) * 0x100) + +/* QCA specific MII registers */ +#define MII_ATH_MMD_ADDR 0x0d +#define MII_ATH_MMD_DATA 0x0e + +enum { + QCA8K_PORT_SPEED_10M = 0, + QCA8K_PORT_SPEED_100M = 1, + QCA8K_PORT_SPEED_1000M = 2, + QCA8K_PORT_SPEED_ERR = 3, +}; + +enum qca8k_fdb_cmd { + QCA8K_FDB_FLUSH = 1, + QCA8K_FDB_LOAD = 2, + QCA8K_FDB_PURGE = 3, + QCA8K_FDB_NEXT = 6, + QCA8K_FDB_SEARCH = 7, +}; + +enum qca8k_vlan_cmd { + QCA8K_VLAN_FLUSH = 1, + QCA8K_VLAN_LOAD = 2, + QCA8K_VLAN_PURGE = 3, + QCA8K_VLAN_REMOVE_PORT = 4, + QCA8K_VLAN_NEXT = 5, + QCA8K_VLAN_READ = 6, +}; + +struct ar8xxx_port_status { + int enabled; +}; + +struct qca8k_priv { + struct regmap *regmap; + struct mii_bus *bus; + struct ar8xxx_port_status port_sts[QCA8K_NUM_PORTS]; + struct dsa_switch *ds; + struct mutex reg_mutex; + struct device *dev; + struct dsa_switch_ops ops; + struct gpio_desc *reset_gpio; + unsigned int port_mtu[QCA8K_NUM_PORTS]; +}; + +struct qca8k_mib_desc { + unsigned int size; + unsigned int offset; + const char *name; +}; + +struct qca8k_fdb { + u16 vid; + u8 port_mask; + u8 aging; + u8 mac[6]; +}; + +#endif /* __QCA8K_H */ |