ksz_common.c 38.8 KB
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// SPDX-License-Identifier: GPL-2.0
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/*
 * Microchip switch driver main logic
 *
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 * Copyright (C) 2017-2019 Microchip Technology Inc.
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 */

#include <linux/delay.h>
#include <linux/export.h>
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#include <linux/gpio/consumer.h>
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#include <linux/kernel.h>
#include <linux/module.h>
#include <linux/platform_data/microchip-ksz.h>
#include <linux/phy.h>
#include <linux/etherdevice.h>
#include <linux/if_bridge.h>
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#include <linux/of_device.h>
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#include <linux/of_net.h>
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#include <linux/micrel_phy.h>
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#include <net/dsa.h>
#include <net/switchdev.h>

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#include "ksz_common.h"
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#include "ksz8.h"
#include "ksz9477.h"
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#define MIB_COUNTER_NUM 0x20

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struct ksz_stats_raw {
	u64 rx_hi;
	u64 rx_undersize;
	u64 rx_fragments;
	u64 rx_oversize;
	u64 rx_jabbers;
	u64 rx_symbol_err;
	u64 rx_crc_err;
	u64 rx_align_err;
	u64 rx_mac_ctrl;
	u64 rx_pause;
	u64 rx_bcast;
	u64 rx_mcast;
	u64 rx_ucast;
	u64 rx_64_or_less;
	u64 rx_65_127;
	u64 rx_128_255;
	u64 rx_256_511;
	u64 rx_512_1023;
	u64 rx_1024_1522;
	u64 rx_1523_2000;
	u64 rx_2001;
	u64 tx_hi;
	u64 tx_late_col;
	u64 tx_pause;
	u64 tx_bcast;
	u64 tx_mcast;
	u64 tx_ucast;
	u64 tx_deferred;
	u64 tx_total_col;
	u64 tx_exc_col;
	u64 tx_single_col;
	u64 tx_mult_col;
	u64 rx_total;
	u64 tx_total;
	u64 rx_discards;
	u64 tx_discards;
};

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static const struct ksz_mib_names ksz88xx_mib_names[] = {
	{ 0x00, "rx" },
	{ 0x01, "rx_hi" },
	{ 0x02, "rx_undersize" },
	{ 0x03, "rx_fragments" },
	{ 0x04, "rx_oversize" },
	{ 0x05, "rx_jabbers" },
	{ 0x06, "rx_symbol_err" },
	{ 0x07, "rx_crc_err" },
	{ 0x08, "rx_align_err" },
	{ 0x09, "rx_mac_ctrl" },
	{ 0x0a, "rx_pause" },
	{ 0x0b, "rx_bcast" },
	{ 0x0c, "rx_mcast" },
	{ 0x0d, "rx_ucast" },
	{ 0x0e, "rx_64_or_less" },
	{ 0x0f, "rx_65_127" },
	{ 0x10, "rx_128_255" },
	{ 0x11, "rx_256_511" },
	{ 0x12, "rx_512_1023" },
	{ 0x13, "rx_1024_1522" },
	{ 0x14, "tx" },
	{ 0x15, "tx_hi" },
	{ 0x16, "tx_late_col" },
	{ 0x17, "tx_pause" },
	{ 0x18, "tx_bcast" },
	{ 0x19, "tx_mcast" },
	{ 0x1a, "tx_ucast" },
	{ 0x1b, "tx_deferred" },
	{ 0x1c, "tx_total_col" },
	{ 0x1d, "tx_exc_col" },
	{ 0x1e, "tx_single_col" },
	{ 0x1f, "tx_mult_col" },
	{ 0x100, "rx_discards" },
	{ 0x101, "tx_discards" },
};

static const struct ksz_mib_names ksz9477_mib_names[] = {
	{ 0x00, "rx_hi" },
	{ 0x01, "rx_undersize" },
	{ 0x02, "rx_fragments" },
	{ 0x03, "rx_oversize" },
	{ 0x04, "rx_jabbers" },
	{ 0x05, "rx_symbol_err" },
	{ 0x06, "rx_crc_err" },
	{ 0x07, "rx_align_err" },
	{ 0x08, "rx_mac_ctrl" },
	{ 0x09, "rx_pause" },
	{ 0x0A, "rx_bcast" },
	{ 0x0B, "rx_mcast" },
	{ 0x0C, "rx_ucast" },
	{ 0x0D, "rx_64_or_less" },
	{ 0x0E, "rx_65_127" },
	{ 0x0F, "rx_128_255" },
	{ 0x10, "rx_256_511" },
	{ 0x11, "rx_512_1023" },
	{ 0x12, "rx_1024_1522" },
	{ 0x13, "rx_1523_2000" },
	{ 0x14, "rx_2001" },
	{ 0x15, "tx_hi" },
	{ 0x16, "tx_late_col" },
	{ 0x17, "tx_pause" },
	{ 0x18, "tx_bcast" },
	{ 0x19, "tx_mcast" },
	{ 0x1A, "tx_ucast" },
	{ 0x1B, "tx_deferred" },
	{ 0x1C, "tx_total_col" },
	{ 0x1D, "tx_exc_col" },
	{ 0x1E, "tx_single_col" },
	{ 0x1F, "tx_mult_col" },
	{ 0x80, "rx_total" },
	{ 0x81, "tx_total" },
	{ 0x82, "rx_discards" },
	{ 0x83, "tx_discards" },
};

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static const struct ksz_dev_ops ksz8_dev_ops = {
	.setup = ksz8_setup,
	.get_port_addr = ksz8_get_port_addr,
	.cfg_port_member = ksz8_cfg_port_member,
	.flush_dyn_mac_table = ksz8_flush_dyn_mac_table,
	.port_setup = ksz8_port_setup,
	.r_phy = ksz8_r_phy,
	.w_phy = ksz8_w_phy,
	.r_mib_pkt = ksz8_r_mib_pkt,
	.freeze_mib = ksz8_freeze_mib,
	.port_init_cnt = ksz8_port_init_cnt,
	.fdb_dump = ksz8_fdb_dump,
	.mdb_add = ksz8_mdb_add,
	.mdb_del = ksz8_mdb_del,
	.vlan_filtering = ksz8_port_vlan_filtering,
	.vlan_add = ksz8_port_vlan_add,
	.vlan_del = ksz8_port_vlan_del,
	.mirror_add = ksz8_port_mirror_add,
	.mirror_del = ksz8_port_mirror_del,
	.get_caps = ksz8_get_caps,
	.config_cpu_port = ksz8_config_cpu_port,
	.enable_stp_addr = ksz8_enable_stp_addr,
	.reset = ksz8_reset_switch,
	.init = ksz8_switch_init,
	.exit = ksz8_switch_exit,
};

static const struct ksz_dev_ops ksz9477_dev_ops = {
	.setup = ksz9477_setup,
	.get_port_addr = ksz9477_get_port_addr,
	.cfg_port_member = ksz9477_cfg_port_member,
	.flush_dyn_mac_table = ksz9477_flush_dyn_mac_table,
	.port_setup = ksz9477_port_setup,
	.r_phy = ksz9477_r_phy,
	.w_phy = ksz9477_w_phy,
	.r_mib_cnt = ksz9477_r_mib_cnt,
	.r_mib_pkt = ksz9477_r_mib_pkt,
	.r_mib_stat64 = ksz_r_mib_stats64,
	.freeze_mib = ksz9477_freeze_mib,
	.port_init_cnt = ksz9477_port_init_cnt,
	.vlan_filtering = ksz9477_port_vlan_filtering,
	.vlan_add = ksz9477_port_vlan_add,
	.vlan_del = ksz9477_port_vlan_del,
	.mirror_add = ksz9477_port_mirror_add,
	.mirror_del = ksz9477_port_mirror_del,
	.get_caps = ksz9477_get_caps,
	.fdb_dump = ksz9477_fdb_dump,
	.fdb_add = ksz9477_fdb_add,
	.fdb_del = ksz9477_fdb_del,
	.mdb_add = ksz9477_mdb_add,
	.mdb_del = ksz9477_mdb_del,
	.change_mtu = ksz9477_change_mtu,
	.max_mtu = ksz9477_max_mtu,
	.config_cpu_port = ksz9477_config_cpu_port,
	.enable_stp_addr = ksz9477_enable_stp_addr,
	.reset = ksz9477_reset_switch,
	.init = ksz9477_switch_init,
	.exit = ksz9477_switch_exit,
};

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static const u16 ksz8795_regs[] = {
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	[REG_IND_CTRL_0]		= 0x6E,
	[REG_IND_DATA_8]		= 0x70,
	[REG_IND_DATA_CHECK]		= 0x72,
	[REG_IND_DATA_HI]		= 0x71,
	[REG_IND_DATA_LO]		= 0x75,
	[REG_IND_MIB_CHECK]		= 0x74,
	[REG_IND_BYTE]			= 0xA0,
	[P_FORCE_CTRL]			= 0x0C,
	[P_LINK_STATUS]			= 0x0E,
	[P_LOCAL_CTRL]			= 0x07,
	[P_NEG_RESTART_CTRL]		= 0x0D,
	[P_REMOTE_STATUS]		= 0x08,
	[P_SPEED_STATUS]		= 0x09,
	[S_TAIL_TAG_CTRL]		= 0x0C,
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	[P_STP_CTRL]			= 0x02,
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	[S_START_CTRL]			= 0x01,
	[S_BROADCAST_CTRL]		= 0x06,
	[S_MULTICAST_CTRL]		= 0x04,
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};

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static const u32 ksz8795_masks[] = {
	[PORT_802_1P_REMAPPING]		= BIT(7),
	[SW_TAIL_TAG_ENABLE]		= BIT(1),
	[MIB_COUNTER_OVERFLOW]		= BIT(6),
	[MIB_COUNTER_VALID]		= BIT(5),
	[VLAN_TABLE_FID]		= GENMASK(6, 0),
	[VLAN_TABLE_MEMBERSHIP]		= GENMASK(11, 7),
	[VLAN_TABLE_VALID]		= BIT(12),
	[STATIC_MAC_TABLE_VALID]	= BIT(21),
	[STATIC_MAC_TABLE_USE_FID]	= BIT(23),
	[STATIC_MAC_TABLE_FID]		= GENMASK(30, 24),
	[STATIC_MAC_TABLE_OVERRIDE]	= BIT(26),
	[STATIC_MAC_TABLE_FWD_PORTS]	= GENMASK(24, 20),
	[DYNAMIC_MAC_TABLE_ENTRIES_H]	= GENMASK(6, 0),
	[DYNAMIC_MAC_TABLE_MAC_EMPTY]	= BIT(8),
	[DYNAMIC_MAC_TABLE_NOT_READY]	= BIT(7),
	[DYNAMIC_MAC_TABLE_ENTRIES]	= GENMASK(31, 29),
	[DYNAMIC_MAC_TABLE_FID]		= GENMASK(26, 20),
	[DYNAMIC_MAC_TABLE_SRC_PORT]	= GENMASK(26, 24),
	[DYNAMIC_MAC_TABLE_TIMESTAMP]	= GENMASK(28, 27),
};

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static const u8 ksz8795_shifts[] = {
	[VLAN_TABLE_MEMBERSHIP_S]	= 7,
	[VLAN_TABLE]			= 16,
	[STATIC_MAC_FWD_PORTS]		= 16,
	[STATIC_MAC_FID]		= 24,
	[DYNAMIC_MAC_ENTRIES_H]		= 3,
	[DYNAMIC_MAC_ENTRIES]		= 29,
	[DYNAMIC_MAC_FID]		= 16,
	[DYNAMIC_MAC_TIMESTAMP]		= 27,
	[DYNAMIC_MAC_SRC_PORT]		= 24,
};

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static const u16 ksz8863_regs[] = {
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	[REG_IND_CTRL_0]		= 0x79,
	[REG_IND_DATA_8]		= 0x7B,
	[REG_IND_DATA_CHECK]		= 0x7B,
	[REG_IND_DATA_HI]		= 0x7C,
	[REG_IND_DATA_LO]		= 0x80,
	[REG_IND_MIB_CHECK]		= 0x80,
	[P_FORCE_CTRL]			= 0x0C,
	[P_LINK_STATUS]			= 0x0E,
	[P_LOCAL_CTRL]			= 0x0C,
	[P_NEG_RESTART_CTRL]		= 0x0D,
	[P_REMOTE_STATUS]		= 0x0E,
	[P_SPEED_STATUS]		= 0x0F,
	[S_TAIL_TAG_CTRL]		= 0x03,
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	[P_STP_CTRL]			= 0x02,
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	[S_START_CTRL]			= 0x01,
	[S_BROADCAST_CTRL]		= 0x06,
	[S_MULTICAST_CTRL]		= 0x04,
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};

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static const u32 ksz8863_masks[] = {
	[PORT_802_1P_REMAPPING]		= BIT(3),
	[SW_TAIL_TAG_ENABLE]		= BIT(6),
	[MIB_COUNTER_OVERFLOW]		= BIT(7),
	[MIB_COUNTER_VALID]		= BIT(6),
	[VLAN_TABLE_FID]		= GENMASK(15, 12),
	[VLAN_TABLE_MEMBERSHIP]		= GENMASK(18, 16),
	[VLAN_TABLE_VALID]		= BIT(19),
	[STATIC_MAC_TABLE_VALID]	= BIT(19),
	[STATIC_MAC_TABLE_USE_FID]	= BIT(21),
	[STATIC_MAC_TABLE_FID]		= GENMASK(29, 26),
	[STATIC_MAC_TABLE_OVERRIDE]	= BIT(20),
	[STATIC_MAC_TABLE_FWD_PORTS]	= GENMASK(18, 16),
	[DYNAMIC_MAC_TABLE_ENTRIES_H]	= GENMASK(5, 0),
	[DYNAMIC_MAC_TABLE_MAC_EMPTY]	= BIT(7),
	[DYNAMIC_MAC_TABLE_NOT_READY]	= BIT(7),
	[DYNAMIC_MAC_TABLE_ENTRIES]	= GENMASK(31, 28),
	[DYNAMIC_MAC_TABLE_FID]		= GENMASK(19, 16),
	[DYNAMIC_MAC_TABLE_SRC_PORT]	= GENMASK(21, 20),
	[DYNAMIC_MAC_TABLE_TIMESTAMP]	= GENMASK(23, 22),
};

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static u8 ksz8863_shifts[] = {
	[VLAN_TABLE_MEMBERSHIP_S]	= 16,
	[STATIC_MAC_FWD_PORTS]		= 16,
	[STATIC_MAC_FID]		= 22,
	[DYNAMIC_MAC_ENTRIES_H]		= 3,
	[DYNAMIC_MAC_ENTRIES]		= 24,
	[DYNAMIC_MAC_FID]		= 16,
	[DYNAMIC_MAC_TIMESTAMP]		= 24,
	[DYNAMIC_MAC_SRC_PORT]		= 20,
};

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static const u16 ksz9477_regs[] = {
	[P_STP_CTRL]			= 0x0B04,
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	[S_START_CTRL]			= 0x0300,
	[S_BROADCAST_CTRL]		= 0x0332,
	[S_MULTICAST_CTRL]		= 0x0331,
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};

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const struct ksz_chip_data ksz_switch_chips[] = {
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	[KSZ8795] = {
		.chip_id = KSZ8795_CHIP_ID,
		.dev_name = "KSZ8795",
		.num_vlans = 4096,
		.num_alus = 0,
		.num_statics = 8,
		.cpu_ports = 0x10,	/* can be configured as cpu port */
		.port_cnt = 5,		/* total cpu and user ports */
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		.ops = &ksz8_dev_ops,
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		.ksz87xx_eee_link_erratum = true,
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		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
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		.regs = ksz8795_regs,
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		.masks = ksz8795_masks,
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		.shifts = ksz8795_shifts,
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		.supports_mii = {false, false, false, false, true},
		.supports_rmii = {false, false, false, false, true},
		.supports_rgmii = {false, false, false, false, true},
		.internal_phy = {true, true, true, true, false},
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	},

	[KSZ8794] = {
		/* WARNING
		 * =======
		 * KSZ8794 is similar to KSZ8795, except the port map
		 * contains a gap between external and CPU ports, the
		 * port map is NOT continuous. The per-port register
		 * map is shifted accordingly too, i.e. registers at
		 * offset 0x40 are NOT used on KSZ8794 and they ARE
		 * used on KSZ8795 for external port 3.
		 *           external  cpu
		 * KSZ8794   0,1,2      4
		 * KSZ8795   0,1,2,3    4
		 * KSZ8765   0,1,2,3    4
		 * port_cnt is configured as 5, even though it is 4
		 */
		.chip_id = KSZ8794_CHIP_ID,
		.dev_name = "KSZ8794",
		.num_vlans = 4096,
		.num_alus = 0,
		.num_statics = 8,
		.cpu_ports = 0x10,	/* can be configured as cpu port */
		.port_cnt = 5,		/* total cpu and user ports */
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		.ops = &ksz8_dev_ops,
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		.ksz87xx_eee_link_erratum = true,
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		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
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		.regs = ksz8795_regs,
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		.masks = ksz8795_masks,
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		.shifts = ksz8795_shifts,
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		.supports_mii = {false, false, false, false, true},
		.supports_rmii = {false, false, false, false, true},
		.supports_rgmii = {false, false, false, false, true},
		.internal_phy = {true, true, true, false, false},
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	},

	[KSZ8765] = {
		.chip_id = KSZ8765_CHIP_ID,
		.dev_name = "KSZ8765",
		.num_vlans = 4096,
		.num_alus = 0,
		.num_statics = 8,
		.cpu_ports = 0x10,	/* can be configured as cpu port */
		.port_cnt = 5,		/* total cpu and user ports */
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		.ops = &ksz8_dev_ops,
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		.ksz87xx_eee_link_erratum = true,
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		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
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		.regs = ksz8795_regs,
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		.masks = ksz8795_masks,
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		.shifts = ksz8795_shifts,
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		.supports_mii = {false, false, false, false, true},
		.supports_rmii = {false, false, false, false, true},
		.supports_rgmii = {false, false, false, false, true},
		.internal_phy = {true, true, true, true, false},
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	},

	[KSZ8830] = {
		.chip_id = KSZ8830_CHIP_ID,
		.dev_name = "KSZ8863/KSZ8873",
		.num_vlans = 16,
		.num_alus = 0,
		.num_statics = 8,
		.cpu_ports = 0x4,	/* can be configured as cpu port */
		.port_cnt = 3,
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		.ops = &ksz8_dev_ops,
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		.mib_names = ksz88xx_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz88xx_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
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		.regs = ksz8863_regs,
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		.masks = ksz8863_masks,
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		.shifts = ksz8863_shifts,
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		.supports_mii = {false, false, true},
		.supports_rmii = {false, false, true},
		.internal_phy = {true, true, false},
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	},

	[KSZ9477] = {
		.chip_id = KSZ9477_CHIP_ID,
		.dev_name = "KSZ9477",
		.num_vlans = 4096,
		.num_alus = 4096,
		.num_statics = 16,
		.cpu_ports = 0x7F,	/* can be configured as cpu port */
		.port_cnt = 7,		/* total physical port count */
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		.ops = &ksz9477_dev_ops,
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		.phy_errata_9477 = true,
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		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
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		.regs = ksz9477_regs,
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		.supports_mii	= {false, false, false, false,
				   false, true, false},
		.supports_rmii	= {false, false, false, false,
				   false, true, false},
		.supports_rgmii = {false, false, false, false,
				   false, true, false},
		.internal_phy	= {true, true, true, true,
				   true, false, false},
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	},

	[KSZ9897] = {
		.chip_id = KSZ9897_CHIP_ID,
		.dev_name = "KSZ9897",
		.num_vlans = 4096,
		.num_alus = 4096,
		.num_statics = 16,
		.cpu_ports = 0x7F,	/* can be configured as cpu port */
		.port_cnt = 7,		/* total physical port count */
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		.ops = &ksz9477_dev_ops,
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		.phy_errata_9477 = true,
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		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
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		.regs = ksz9477_regs,
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		.supports_mii	= {false, false, false, false,
				   false, true, true},
		.supports_rmii	= {false, false, false, false,
				   false, true, true},
		.supports_rgmii = {false, false, false, false,
				   false, true, true},
		.internal_phy	= {true, true, true, true,
				   true, false, false},
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	},

	[KSZ9893] = {
		.chip_id = KSZ9893_CHIP_ID,
		.dev_name = "KSZ9893",
		.num_vlans = 4096,
		.num_alus = 4096,
		.num_statics = 16,
		.cpu_ports = 0x07,	/* can be configured as cpu port */
		.port_cnt = 3,		/* total port count */
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		.ops = &ksz9477_dev_ops,
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		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
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		.regs = ksz9477_regs,
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		.supports_mii = {false, false, true},
		.supports_rmii = {false, false, true},
		.supports_rgmii = {false, false, true},
		.internal_phy = {true, true, false},
486 487 488 489 490 491 492 493 494 495
	},

	[KSZ9567] = {
		.chip_id = KSZ9567_CHIP_ID,
		.dev_name = "KSZ9567",
		.num_vlans = 4096,
		.num_alus = 4096,
		.num_statics = 16,
		.cpu_ports = 0x7F,	/* can be configured as cpu port */
		.port_cnt = 7,		/* total physical port count */
496
		.ops = &ksz9477_dev_ops,
497
		.phy_errata_9477 = true,
498 499 500
		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
501
		.regs = ksz9477_regs,
502 503 504 505 506 507 508 509
		.supports_mii	= {false, false, false, false,
				   false, true, true},
		.supports_rmii	= {false, false, false, false,
				   false, true, true},
		.supports_rgmii = {false, false, false, false,
				   false, true, true},
		.internal_phy	= {true, true, true, true,
				   true, false, false},
510 511 512 513 514 515 516 517 518 519
	},

	[LAN9370] = {
		.chip_id = LAN9370_CHIP_ID,
		.dev_name = "LAN9370",
		.num_vlans = 4096,
		.num_alus = 1024,
		.num_statics = 256,
		.cpu_ports = 0x10,	/* can be configured as cpu port */
		.port_cnt = 5,		/* total physical port count */
520 521 522
		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
523
		.regs = ksz9477_regs,
524 525 526 527
		.supports_mii = {false, false, false, false, true},
		.supports_rmii = {false, false, false, false, true},
		.supports_rgmii = {false, false, false, false, true},
		.internal_phy = {true, true, true, true, false},
528 529 530 531 532 533 534 535 536 537
	},

	[LAN9371] = {
		.chip_id = LAN9371_CHIP_ID,
		.dev_name = "LAN9371",
		.num_vlans = 4096,
		.num_alus = 1024,
		.num_statics = 256,
		.cpu_ports = 0x30,	/* can be configured as cpu port */
		.port_cnt = 6,		/* total physical port count */
538 539 540
		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
541
		.regs = ksz9477_regs,
542 543 544 545
		.supports_mii = {false, false, false, false, true, true},
		.supports_rmii = {false, false, false, false, true, true},
		.supports_rgmii = {false, false, false, false, true, true},
		.internal_phy = {true, true, true, true, false, false},
546 547 548 549 550 551 552 553 554 555
	},

	[LAN9372] = {
		.chip_id = LAN9372_CHIP_ID,
		.dev_name = "LAN9372",
		.num_vlans = 4096,
		.num_alus = 1024,
		.num_statics = 256,
		.cpu_ports = 0x30,	/* can be configured as cpu port */
		.port_cnt = 8,		/* total physical port count */
556 557 558
		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
559
		.regs = ksz9477_regs,
560 561 562 563 564 565 566 567
		.supports_mii	= {false, false, false, false,
				   true, true, false, false},
		.supports_rmii	= {false, false, false, false,
				   true, true, false, false},
		.supports_rgmii = {false, false, false, false,
				   true, true, false, false},
		.internal_phy	= {true, true, true, true,
				   false, false, true, true},
568 569 570 571 572 573 574 575 576 577
	},

	[LAN9373] = {
		.chip_id = LAN9373_CHIP_ID,
		.dev_name = "LAN9373",
		.num_vlans = 4096,
		.num_alus = 1024,
		.num_statics = 256,
		.cpu_ports = 0x38,	/* can be configured as cpu port */
		.port_cnt = 5,		/* total physical port count */
578 579 580
		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
581
		.regs = ksz9477_regs,
582 583 584 585 586 587 588 589
		.supports_mii	= {false, false, false, false,
				   true, true, false, false},
		.supports_rmii	= {false, false, false, false,
				   true, true, false, false},
		.supports_rgmii = {false, false, false, false,
				   true, true, false, false},
		.internal_phy	= {true, true, true, false,
				   false, false, true, true},
590 591 592 593 594 595 596 597 598 599
	},

	[LAN9374] = {
		.chip_id = LAN9374_CHIP_ID,
		.dev_name = "LAN9374",
		.num_vlans = 4096,
		.num_alus = 1024,
		.num_statics = 256,
		.cpu_ports = 0x30,	/* can be configured as cpu port */
		.port_cnt = 8,		/* total physical port count */
600 601 602
		.mib_names = ksz9477_mib_names,
		.mib_cnt = ARRAY_SIZE(ksz9477_mib_names),
		.reg_mib_cnt = MIB_COUNTER_NUM,
603
		.regs = ksz9477_regs,
604 605 606 607 608 609 610 611
		.supports_mii	= {false, false, false, false,
				   true, true, false, false},
		.supports_rmii	= {false, false, false, false,
				   true, true, false, false},
		.supports_rgmii = {false, false, false, false,
				   true, true, false, false},
		.internal_phy	= {true, true, true, true,
				   false, false, true, true},
612 613
	},
};
614
EXPORT_SYMBOL_GPL(ksz_switch_chips);
615 616 617 618 619 620 621 622 623 624 625 626 627 628 629

static const struct ksz_chip_data *ksz_lookup_info(unsigned int prod_num)
{
	int i;

	for (i = 0; i < ARRAY_SIZE(ksz_switch_chips); i++) {
		const struct ksz_chip_data *chip = &ksz_switch_chips[i];

		if (chip->chip_id == prod_num)
			return chip;
	}

	return NULL;
}

630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646
static int ksz_check_device_id(struct ksz_device *dev)
{
	const struct ksz_chip_data *dt_chip_data;

	dt_chip_data = of_device_get_match_data(dev->dev);

	/* Check for Device Tree and Chip ID */
	if (dt_chip_data->chip_id != dev->chip_id) {
		dev_err(dev->dev,
			"Device tree specifies chip %s but found %s, please fix it!\n",
			dt_chip_data->dev_name, dev->info->dev_name);
		return -ENODEV;
	}

	return 0;
}

647 648
static void ksz_phylink_get_caps(struct dsa_switch *ds, int port,
				 struct phylink_config *config)
649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664 665 666
{
	struct ksz_device *dev = ds->priv;

	config->legacy_pre_march2020 = false;

	if (dev->info->supports_mii[port])
		__set_bit(PHY_INTERFACE_MODE_MII, config->supported_interfaces);

	if (dev->info->supports_rmii[port])
		__set_bit(PHY_INTERFACE_MODE_RMII,
			  config->supported_interfaces);

	if (dev->info->supports_rgmii[port])
		phy_interface_set_rgmii(config->supported_interfaces);

	if (dev->info->internal_phy[port])
		__set_bit(PHY_INTERFACE_MODE_INTERNAL,
			  config->supported_interfaces);
667 668 669

	if (dev->dev_ops->get_caps)
		dev->dev_ops->get_caps(dev, port, config);
670 671
}

672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713
void ksz_r_mib_stats64(struct ksz_device *dev, int port)
{
	struct rtnl_link_stats64 *stats;
	struct ksz_stats_raw *raw;
	struct ksz_port_mib *mib;

	mib = &dev->ports[port].mib;
	stats = &mib->stats64;
	raw = (struct ksz_stats_raw *)mib->counters;

	spin_lock(&mib->stats64_lock);

	stats->rx_packets = raw->rx_bcast + raw->rx_mcast + raw->rx_ucast;
	stats->tx_packets = raw->tx_bcast + raw->tx_mcast + raw->tx_ucast;

	/* HW counters are counting bytes + FCS which is not acceptable
	 * for rtnl_link_stats64 interface
	 */
	stats->rx_bytes = raw->rx_total - stats->rx_packets * ETH_FCS_LEN;
	stats->tx_bytes = raw->tx_total - stats->tx_packets * ETH_FCS_LEN;

	stats->rx_length_errors = raw->rx_undersize + raw->rx_fragments +
		raw->rx_oversize;

	stats->rx_crc_errors = raw->rx_crc_err;
	stats->rx_frame_errors = raw->rx_align_err;
	stats->rx_dropped = raw->rx_discards;
	stats->rx_errors = stats->rx_length_errors + stats->rx_crc_errors +
		stats->rx_frame_errors  + stats->rx_dropped;

	stats->tx_window_errors = raw->tx_late_col;
	stats->tx_fifo_errors = raw->tx_discards;
	stats->tx_aborted_errors = raw->tx_exc_col;
	stats->tx_errors = stats->tx_window_errors + stats->tx_fifo_errors +
		stats->tx_aborted_errors;

	stats->multicast = raw->rx_mcast;
	stats->collisions = raw->tx_total_col;

	spin_unlock(&mib->stats64_lock);
}

714 715
static void ksz_get_stats64(struct dsa_switch *ds, int port,
			    struct rtnl_link_stats64 *s)
716 717 718 719 720 721 722 723 724 725 726
{
	struct ksz_device *dev = ds->priv;
	struct ksz_port_mib *mib;

	mib = &dev->ports[port].mib;

	spin_lock(&mib->stats64_lock);
	memcpy(s, &mib->stats64, sizeof(*s));
	spin_unlock(&mib->stats64_lock);
}

727 728
static void ksz_get_strings(struct dsa_switch *ds, int port,
			    u32 stringset, uint8_t *buf)
729 730 731 732 733 734 735 736 737 738 739 740 741
{
	struct ksz_device *dev = ds->priv;
	int i;

	if (stringset != ETH_SS_STATS)
		return;

	for (i = 0; i < dev->info->mib_cnt; i++) {
		memcpy(buf + i * ETH_GSTRING_LEN,
		       dev->info->mib_names[i].string, ETH_GSTRING_LEN);
	}
}

742
static void ksz_update_port_member(struct ksz_device *dev, int port)
743
{
744 745 746 747
	struct ksz_port *p = &dev->ports[port];
	struct dsa_switch *ds = dev->ds;
	u8 port_member = 0, cpu_port;
	const struct dsa_port *dp;
748
	int i, j;
749

750 751 752 753 754 755 756 757 758 759 760 761
	if (!dsa_is_user_port(ds, port))
		return;

	dp = dsa_to_port(ds, port);
	cpu_port = BIT(dsa_upstream_port(ds, port));

	for (i = 0; i < ds->num_ports; i++) {
		const struct dsa_port *other_dp = dsa_to_port(ds, i);
		struct ksz_port *other_p = &dev->ports[i];
		u8 val = 0;

		if (!dsa_is_user_port(ds, i))
762
			continue;
763 764
		if (port == i)
			continue;
765
		if (!dsa_port_bridge_same(dp, other_dp))
766
			continue;
767 768
		if (other_p->stp_state != BR_STATE_FORWARDING)
			continue;
769

770
		if (p->stp_state == BR_STATE_FORWARDING) {
771 772 773 774
			val |= BIT(port);
			port_member |= BIT(i);
		}

775 776 777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793
		/* Retain port [i]'s relationship to other ports than [port] */
		for (j = 0; j < ds->num_ports; j++) {
			const struct dsa_port *third_dp;
			struct ksz_port *third_p;

			if (j == i)
				continue;
			if (j == port)
				continue;
			if (!dsa_is_user_port(ds, j))
				continue;
			third_p = &dev->ports[j];
			if (third_p->stp_state != BR_STATE_FORWARDING)
				continue;
			third_dp = dsa_to_port(ds, j);
			if (dsa_port_bridge_same(other_dp, third_dp))
				val |= BIT(j);
		}

794
		dev->dev_ops->cfg_port_member(dev, i, val | cpu_port);
795
	}
796 797

	dev->dev_ops->cfg_port_member(dev, port, port_member | cpu_port);
798 799
}

800
static int ksz_setup(struct dsa_switch *ds)
801 802
{
	struct ksz_device *dev = ds->priv;
803
	const u16 *regs;
804 805
	int ret;

806 807
	regs = dev->info->regs;

808 809 810 811 812 813 814 815 816 817 818
	dev->vlan_cache = devm_kcalloc(dev->dev, sizeof(struct vlan_table),
				       dev->info->num_vlans, GFP_KERNEL);
	if (!dev->vlan_cache)
		return -ENOMEM;

	ret = dev->dev_ops->reset(dev);
	if (ret) {
		dev_err(ds->dev, "failed to reset switch\n");
		return ret;
	}

819
	/* set broadcast storm protection 10% rate */
820
	regmap_update_bits(dev->regmap[1], regs[S_BROADCAST_CTRL],
821 822 823 824
			   BROADCAST_STORM_RATE,
			   (BROADCAST_STORM_VALUE *
			   BROADCAST_STORM_PROT_RATE) / 100);

825 826 827 828
	dev->dev_ops->config_cpu_port(ds);

	dev->dev_ops->enable_stp_addr(dev);

829
	regmap_update_bits(dev->regmap[0], regs[S_MULTICAST_CTRL],
830 831
			   MULTICAST_STORM_DISABLE, MULTICAST_STORM_DISABLE);

832 833 834 835 836 837 838 839 840 841
	ksz_init_mib_timer(dev);

	ds->configure_vlan_while_not_filtering = false;

	if (dev->dev_ops->setup) {
		ret = dev->dev_ops->setup(ds);
		if (ret)
			return ret;
	}

842
	/* start switch */
843
	regmap_update_bits(dev->regmap[0], regs[S_START_CTRL],
844 845
			   SW_START, SW_START);

846 847 848
	return 0;
}

849 850 851 852 853 854
static void port_r_cnt(struct ksz_device *dev, int port)
{
	struct ksz_port_mib *mib = &dev->ports[port].mib;
	u64 *dropped;

	/* Some ports may not have MIB counters before SWITCH_COUNTER_NUM. */
855
	while (mib->cnt_ptr < dev->info->reg_mib_cnt) {
856 857 858 859 860 861
		dev->dev_ops->r_mib_cnt(dev, port, mib->cnt_ptr,
					&mib->counters[mib->cnt_ptr]);
		++mib->cnt_ptr;
	}

	/* last one in storage */
862
	dropped = &mib->counters[dev->info->mib_cnt];
863 864

	/* Some ports may not have MIB counters after SWITCH_COUNTER_NUM. */
865
	while (mib->cnt_ptr < dev->info->mib_cnt) {
866 867 868 869 870 871 872 873 874 875
		dev->dev_ops->r_mib_pkt(dev, port, mib->cnt_ptr,
					dropped, &mib->counters[mib->cnt_ptr]);
		++mib->cnt_ptr;
	}
	mib->cnt_ptr = 0;
}

static void ksz_mib_read_work(struct work_struct *work)
{
	struct ksz_device *dev = container_of(work, struct ksz_device,
876
					      mib_read.work);
877 878 879 880
	struct ksz_port_mib *mib;
	struct ksz_port *p;
	int i;

881
	for (i = 0; i < dev->info->port_cnt; i++) {
882 883 884
		if (dsa_is_unused_port(dev->ds, i))
			continue;

885 886 887 888 889 890 891 892 893 894 895
		p = &dev->ports[i];
		mib = &p->mib;
		mutex_lock(&mib->cnt_mutex);

		/* Only read MIB counters when the port is told to do.
		 * If not, read only dropped counters when link is not up.
		 */
		if (!p->read) {
			const struct dsa_port *dp = dsa_to_port(dev->ds, i);

			if (!netif_carrier_ok(dp->slave))
896
				mib->cnt_ptr = dev->info->reg_mib_cnt;
897 898 899
		}
		port_r_cnt(dev, i);
		p->read = false;
900 901 902 903

		if (dev->dev_ops->r_mib_stat64)
			dev->dev_ops->r_mib_stat64(dev, i);

904 905 906
		mutex_unlock(&mib->cnt_mutex);
	}

907
	schedule_delayed_work(&dev->mib_read, dev->mib_read_interval);
908 909 910 911 912 913
}

void ksz_init_mib_timer(struct ksz_device *dev)
{
	int i;

914 915
	INIT_DELAYED_WORK(&dev->mib_read, ksz_mib_read_work);

916 917 918
	for (i = 0; i < dev->info->port_cnt; i++) {
		struct ksz_port_mib *mib = &dev->ports[i].mib;

919
		dev->dev_ops->port_init_cnt(dev, i);
920 921 922 923

		mib->cnt_ptr = 0;
		memset(mib->counters, 0, dev->info->mib_cnt * sizeof(u64));
	}
924 925
}

926
static int ksz_phy_read16(struct dsa_switch *ds, int addr, int reg)
927 928
{
	struct ksz_device *dev = ds->priv;
929
	u16 val = 0xffff;
930

931
	dev->dev_ops->r_phy(dev, addr, reg, &val);
932 933 934 935

	return val;
}

936
static int ksz_phy_write16(struct dsa_switch *ds, int addr, int reg, u16 val)
937 938 939
{
	struct ksz_device *dev = ds->priv;

940
	dev->dev_ops->w_phy(dev, addr, reg, val);
941 942 943 944

	return 0;
}

945
static u32 ksz_get_phy_flags(struct dsa_switch *ds, int port)
946 947 948 949 950 951 952 953 954 955 956 957 958 959 960
{
	struct ksz_device *dev = ds->priv;

	if (dev->chip_id == KSZ8830_CHIP_ID) {
		/* Silicon Errata Sheet (DS80000830A):
		 * Port 1 does not work with LinkMD Cable-Testing.
		 * Port 1 does not respond to received PAUSE control frames.
		 */
		if (!port)
			return MICREL_KSZ8_P1_ERRATA;
	}

	return 0;
}

961 962
static void ksz_mac_link_down(struct dsa_switch *ds, int port,
			      unsigned int mode, phy_interface_t interface)
963 964 965 966 967
{
	struct ksz_device *dev = ds->priv;
	struct ksz_port *p = &dev->ports[port];

	/* Read all MIB counters when the link is going down. */
968
	p->read = true;
969 970 971
	/* timer started */
	if (dev->mib_read_interval)
		schedule_delayed_work(&dev->mib_read, 0);
972 973
}

974
static int ksz_sset_count(struct dsa_switch *ds, int port, int sset)
975 976 977
{
	struct ksz_device *dev = ds->priv;

978 979 980
	if (sset != ETH_SS_STATS)
		return 0;

981
	return dev->info->mib_cnt;
982 983
}

984 985
static void ksz_get_ethtool_stats(struct dsa_switch *ds, int port,
				  uint64_t *buf)
986 987 988 989 990 991 992 993 994 995
{
	const struct dsa_port *dp = dsa_to_port(ds, port);
	struct ksz_device *dev = ds->priv;
	struct ksz_port_mib *mib;

	mib = &dev->ports[port].mib;
	mutex_lock(&mib->cnt_mutex);

	/* Only read dropped counters if no link. */
	if (!netif_carrier_ok(dp->slave))
996
		mib->cnt_ptr = dev->info->reg_mib_cnt;
997
	port_r_cnt(dev, port);
998
	memcpy(buf, mib->counters, dev->info->mib_cnt * sizeof(u64));
999 1000 1001
	mutex_unlock(&mib->cnt_mutex);
}

1002 1003 1004 1005
static int ksz_port_bridge_join(struct dsa_switch *ds, int port,
				struct dsa_bridge bridge,
				bool *tx_fwd_offload,
				struct netlink_ext_ack *extack)
1006
{
1007 1008 1009
	/* port_stp_state_set() will be called after to put the port in
	 * appropriate state so there is no need to do anything.
	 */
1010

1011
	return 0;
1012 1013
}

1014 1015
static void ksz_port_bridge_leave(struct dsa_switch *ds, int port,
				  struct dsa_bridge bridge)
1016
{
1017 1018 1019
	/* port_stp_state_set() will be called after to put the port in
	 * forwarding state so there is no need to do anything.
	 */
1020 1021
}

1022
static void ksz_port_fast_age(struct dsa_switch *ds, int port)
1023 1024 1025
{
	struct ksz_device *dev = ds->priv;

1026
	dev->dev_ops->flush_dyn_mac_table(dev, port);
1027 1028
}

1029 1030 1031
static int ksz_port_fdb_add(struct dsa_switch *ds, int port,
			    const unsigned char *addr, u16 vid,
			    struct dsa_db db)
1032 1033 1034 1035 1036 1037 1038 1039 1040
{
	struct ksz_device *dev = ds->priv;

	if (!dev->dev_ops->fdb_add)
		return -EOPNOTSUPP;

	return dev->dev_ops->fdb_add(dev, port, addr, vid, db);
}

1041 1042 1043
static int ksz_port_fdb_del(struct dsa_switch *ds, int port,
			    const unsigned char *addr,
			    u16 vid, struct dsa_db db)
1044 1045 1046 1047 1048 1049 1050 1051 1052
{
	struct ksz_device *dev = ds->priv;

	if (!dev->dev_ops->fdb_del)
		return -EOPNOTSUPP;

	return dev->dev_ops->fdb_del(dev, port, addr, vid, db);
}

1053 1054
static int ksz_port_fdb_dump(struct dsa_switch *ds, int port,
			     dsa_fdb_dump_cb_t *cb, void *data)
1055 1056 1057
{
	struct ksz_device *dev = ds->priv;

1058 1059 1060 1061
	if (!dev->dev_ops->fdb_dump)
		return -EOPNOTSUPP;

	return dev->dev_ops->fdb_dump(dev, port, cb, data);
1062 1063
}

1064 1065 1066
static int ksz_port_mdb_add(struct dsa_switch *ds, int port,
			    const struct switchdev_obj_port_mdb *mdb,
			    struct dsa_db db)
1067 1068 1069
{
	struct ksz_device *dev = ds->priv;

1070 1071
	if (!dev->dev_ops->mdb_add)
		return -EOPNOTSUPP;
1072

1073
	return dev->dev_ops->mdb_add(dev, port, mdb, db);
1074 1075
}

1076 1077 1078
static int ksz_port_mdb_del(struct dsa_switch *ds, int port,
			    const struct switchdev_obj_port_mdb *mdb,
			    struct dsa_db db)
1079 1080 1081
{
	struct ksz_device *dev = ds->priv;

1082 1083
	if (!dev->dev_ops->mdb_del)
		return -EOPNOTSUPP;
1084

1085
	return dev->dev_ops->mdb_del(dev, port, mdb, db);
1086 1087
}

1088 1089
static int ksz_enable_port(struct dsa_switch *ds, int port,
			   struct phy_device *phy)
1090 1091 1092
{
	struct ksz_device *dev = ds->priv;

1093 1094 1095
	if (!dsa_is_user_port(ds, port))
		return 0;

1096 1097
	/* setup slave port */
	dev->dev_ops->port_setup(dev, port, false);
1098

1099 1100 1101
	/* port_stp_state_set() will be called after to enable the port so
	 * there is no need to do anything.
	 */
1102 1103 1104 1105

	return 0;
}

1106
void ksz_port_stp_state_set(struct dsa_switch *ds, int port, u8 state)
1107 1108 1109
{
	struct ksz_device *dev = ds->priv;
	struct ksz_port *p;
1110
	const u16 *regs;
1111
	u8 data;
1112

1113
	regs = dev->info->regs;
1114

1115
	ksz_pread8(dev, port, regs[P_STP_CTRL], &data);
1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138
	data &= ~(PORT_TX_ENABLE | PORT_RX_ENABLE | PORT_LEARN_DISABLE);

	switch (state) {
	case BR_STATE_DISABLED:
		data |= PORT_LEARN_DISABLE;
		break;
	case BR_STATE_LISTENING:
		data |= (PORT_RX_ENABLE | PORT_LEARN_DISABLE);
		break;
	case BR_STATE_LEARNING:
		data |= PORT_RX_ENABLE;
		break;
	case BR_STATE_FORWARDING:
		data |= (PORT_TX_ENABLE | PORT_RX_ENABLE);
		break;
	case BR_STATE_BLOCKING:
		data |= PORT_LEARN_DISABLE;
		break;
	default:
		dev_err(ds->dev, "invalid STP state: %d\n", state);
		return;
	}

1139
	ksz_pwrite8(dev, port, regs[P_STP_CTRL], data);
1140 1141 1142 1143 1144 1145 1146

	p = &dev->ports[port];
	p->stp_state = state;

	ksz_update_port_member(dev, port);
}

1147 1148 1149
static enum dsa_tag_protocol ksz_get_tag_protocol(struct dsa_switch *ds,
						  int port,
						  enum dsa_tag_protocol mp)
1150 1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170
{
	struct ksz_device *dev = ds->priv;
	enum dsa_tag_protocol proto = DSA_TAG_PROTO_NONE;

	if (dev->chip_id == KSZ8795_CHIP_ID ||
	    dev->chip_id == KSZ8794_CHIP_ID ||
	    dev->chip_id == KSZ8765_CHIP_ID)
		proto = DSA_TAG_PROTO_KSZ8795;

	if (dev->chip_id == KSZ8830_CHIP_ID ||
	    dev->chip_id == KSZ9893_CHIP_ID)
		proto = DSA_TAG_PROTO_KSZ9893;

	if (dev->chip_id == KSZ9477_CHIP_ID ||
	    dev->chip_id == KSZ9897_CHIP_ID ||
	    dev->chip_id == KSZ9567_CHIP_ID)
		proto = DSA_TAG_PROTO_KSZ9477;

	return proto;
}

1171 1172
static int ksz_port_vlan_filtering(struct dsa_switch *ds, int port,
				   bool flag, struct netlink_ext_ack *extack)
1173 1174 1175 1176 1177 1178 1179 1180 1181
{
	struct ksz_device *dev = ds->priv;

	if (!dev->dev_ops->vlan_filtering)
		return -EOPNOTSUPP;

	return dev->dev_ops->vlan_filtering(dev, port, flag, extack);
}

1182 1183 1184
static int ksz_port_vlan_add(struct dsa_switch *ds, int port,
			     const struct switchdev_obj_port_vlan *vlan,
			     struct netlink_ext_ack *extack)
1185 1186 1187 1188 1189 1190 1191 1192 1193
{
	struct ksz_device *dev = ds->priv;

	if (!dev->dev_ops->vlan_add)
		return -EOPNOTSUPP;

	return dev->dev_ops->vlan_add(dev, port, vlan, extack);
}

1194 1195
static int ksz_port_vlan_del(struct dsa_switch *ds, int port,
			     const struct switchdev_obj_port_vlan *vlan)
1196 1197 1198 1199 1200 1201 1202 1203 1204
{
	struct ksz_device *dev = ds->priv;

	if (!dev->dev_ops->vlan_del)
		return -EOPNOTSUPP;

	return dev->dev_ops->vlan_del(dev, port, vlan);
}

1205 1206 1207
static int ksz_port_mirror_add(struct dsa_switch *ds, int port,
			       struct dsa_mall_mirror_tc_entry *mirror,
			       bool ingress, struct netlink_ext_ack *extack)
1208 1209 1210 1211 1212 1213 1214 1215 1216
{
	struct ksz_device *dev = ds->priv;

	if (!dev->dev_ops->mirror_add)
		return -EOPNOTSUPP;

	return dev->dev_ops->mirror_add(dev, port, mirror, ingress, extack);
}

1217 1218
static void ksz_port_mirror_del(struct dsa_switch *ds, int port,
				struct dsa_mall_mirror_tc_entry *mirror)
1219 1220 1221 1222 1223 1224 1225
{
	struct ksz_device *dev = ds->priv;

	if (dev->dev_ops->mirror_del)
		dev->dev_ops->mirror_del(dev, port, mirror);
}

1226
static int ksz_change_mtu(struct dsa_switch *ds, int port, int mtu)
1227 1228 1229 1230 1231 1232 1233 1234 1235
{
	struct ksz_device *dev = ds->priv;

	if (!dev->dev_ops->change_mtu)
		return -EOPNOTSUPP;

	return dev->dev_ops->change_mtu(dev, port, mtu);
}

1236
static int ksz_max_mtu(struct dsa_switch *ds, int port)
1237 1238 1239 1240 1241 1242 1243 1244 1245
{
	struct ksz_device *dev = ds->priv;

	if (!dev->dev_ops->max_mtu)
		return -EOPNOTSUPP;

	return dev->dev_ops->max_mtu(dev, port);
}

1246 1247 1248 1249 1250 1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264 1265 1266 1267 1268 1269 1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308 1309 1310 1311
static int ksz_switch_detect(struct ksz_device *dev)
{
	u8 id1, id2;
	u16 id16;
	u32 id32;
	int ret;

	/* read chip id */
	ret = ksz_read16(dev, REG_CHIP_ID0, &id16);
	if (ret)
		return ret;

	id1 = FIELD_GET(SW_FAMILY_ID_M, id16);
	id2 = FIELD_GET(SW_CHIP_ID_M, id16);

	switch (id1) {
	case KSZ87_FAMILY_ID:
		if (id2 == KSZ87_CHIP_ID_95) {
			u8 val;

			dev->chip_id = KSZ8795_CHIP_ID;

			ksz_read8(dev, KSZ8_PORT_STATUS_0, &val);
			if (val & KSZ8_PORT_FIBER_MODE)
				dev->chip_id = KSZ8765_CHIP_ID;
		} else if (id2 == KSZ87_CHIP_ID_94) {
			dev->chip_id = KSZ8794_CHIP_ID;
		} else {
			return -ENODEV;
		}
		break;
	case KSZ88_FAMILY_ID:
		if (id2 == KSZ88_CHIP_ID_63)
			dev->chip_id = KSZ8830_CHIP_ID;
		else
			return -ENODEV;
		break;
	default:
		ret = ksz_read32(dev, REG_CHIP_ID0, &id32);
		if (ret)
			return ret;

		dev->chip_rev = FIELD_GET(SW_REV_ID_M, id32);
		id32 &= ~0xFF;

		switch (id32) {
		case KSZ9477_CHIP_ID:
		case KSZ9897_CHIP_ID:
		case KSZ9893_CHIP_ID:
		case KSZ9567_CHIP_ID:
		case LAN9370_CHIP_ID:
		case LAN9371_CHIP_ID:
		case LAN9372_CHIP_ID:
		case LAN9373_CHIP_ID:
		case LAN9374_CHIP_ID:
			dev->chip_id = id32;
			break;
		default:
			dev_err(dev->dev,
				"unsupported switch detected %x)\n", id32);
			return -ENODEV;
		}
	}
	return 0;
}

1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342
static const struct dsa_switch_ops ksz_switch_ops = {
	.get_tag_protocol	= ksz_get_tag_protocol,
	.get_phy_flags		= ksz_get_phy_flags,
	.setup			= ksz_setup,
	.phy_read		= ksz_phy_read16,
	.phy_write		= ksz_phy_write16,
	.phylink_get_caps	= ksz_phylink_get_caps,
	.phylink_mac_link_down	= ksz_mac_link_down,
	.port_enable		= ksz_enable_port,
	.get_strings		= ksz_get_strings,
	.get_ethtool_stats	= ksz_get_ethtool_stats,
	.get_sset_count		= ksz_sset_count,
	.port_bridge_join	= ksz_port_bridge_join,
	.port_bridge_leave	= ksz_port_bridge_leave,
	.port_stp_state_set	= ksz_port_stp_state_set,
	.port_fast_age		= ksz_port_fast_age,
	.port_vlan_filtering	= ksz_port_vlan_filtering,
	.port_vlan_add		= ksz_port_vlan_add,
	.port_vlan_del		= ksz_port_vlan_del,
	.port_fdb_dump		= ksz_port_fdb_dump,
	.port_fdb_add		= ksz_port_fdb_add,
	.port_fdb_del		= ksz_port_fdb_del,
	.port_mdb_add           = ksz_port_mdb_add,
	.port_mdb_del           = ksz_port_mdb_del,
	.port_mirror_add	= ksz_port_mirror_add,
	.port_mirror_del	= ksz_port_mirror_del,
	.get_stats64		= ksz_get_stats64,
	.port_change_mtu	= ksz_change_mtu,
	.port_max_mtu		= ksz_max_mtu,
};

1343
struct ksz_device *ksz_switch_alloc(struct device *base, void *priv)
1344 1345 1346 1347
{
	struct dsa_switch *ds;
	struct ksz_device *swdev;

1348
	ds = devm_kzalloc(base, sizeof(*ds), GFP_KERNEL);
1349 1350 1351
	if (!ds)
		return NULL;

1352 1353
	ds->dev = base;
	ds->num_ports = DSA_MAX_PORTS;
1354
	ds->ops = &ksz_switch_ops;
1355

1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369
	swdev = devm_kzalloc(base, sizeof(*swdev), GFP_KERNEL);
	if (!swdev)
		return NULL;

	ds->priv = swdev;
	swdev->dev = base;

	swdev->ds = ds;
	swdev->priv = priv;

	return swdev;
}
EXPORT_SYMBOL(ksz_switch_alloc);

1370
int ksz_switch_register(struct ksz_device *dev)
1371
{
1372
	const struct ksz_chip_data *info;
1373
	struct device_node *port, *ports;
1374
	phy_interface_t interface;
1375
	unsigned int port_num;
1376
	int ret;
1377
	int i;
1378 1379 1380 1381

	if (dev->pdata)
		dev->chip_id = dev->pdata->chip_id;

1382 1383 1384 1385 1386 1387
	dev->reset_gpio = devm_gpiod_get_optional(dev->dev, "reset",
						  GPIOD_OUT_LOW);
	if (IS_ERR(dev->reset_gpio))
		return PTR_ERR(dev->reset_gpio);

	if (dev->reset_gpio) {
1388
		gpiod_set_value_cansleep(dev->reset_gpio, 1);
1389
		usleep_range(10000, 12000);
1390
		gpiod_set_value_cansleep(dev->reset_gpio, 0);
1391
		msleep(100);
1392 1393
	}

1394
	mutex_init(&dev->dev_mutex);
1395
	mutex_init(&dev->regmap_mutex);
1396 1397 1398
	mutex_init(&dev->alu_mutex);
	mutex_init(&dev->vlan_mutex);

1399 1400 1401
	ret = ksz_switch_detect(dev);
	if (ret)
		return ret;
1402

1403 1404 1405 1406 1407 1408 1409
	info = ksz_lookup_info(dev->chip_id);
	if (!info)
		return -ENODEV;

	/* Update the compatible info with the probed one */
	dev->info = info;

1410 1411 1412
	dev_info(dev->dev, "found switch: %s, rev %i\n",
		 dev->info->dev_name, dev->chip_rev);

1413 1414 1415 1416
	ret = ksz_check_device_id(dev);
	if (ret)
		return ret;

1417
	dev->dev_ops = dev->info->ops;
1418

1419
	ret = dev->dev_ops->init(dev);
1420 1421 1422
	if (ret)
		return ret;

1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442
	dev->ports = devm_kzalloc(dev->dev,
				  dev->info->port_cnt * sizeof(struct ksz_port),
				  GFP_KERNEL);
	if (!dev->ports)
		return -ENOMEM;

	for (i = 0; i < dev->info->port_cnt; i++) {
		spin_lock_init(&dev->ports[i].mib.stats64_lock);
		mutex_init(&dev->ports[i].mib.cnt_mutex);
		dev->ports[i].mib.counters =
			devm_kzalloc(dev->dev,
				     sizeof(u64) * (dev->info->mib_cnt + 1),
				     GFP_KERNEL);
		if (!dev->ports[i].mib.counters)
			return -ENOMEM;
	}

	/* set the real number of ports */
	dev->ds->num_ports = dev->info->port_cnt;

1443 1444 1445
	/* Host port interface will be self detected, or specifically set in
	 * device tree.
	 */
1446
	for (port_num = 0; port_num < dev->info->port_cnt; ++port_num)
1447
		dev->ports[port_num].interface = PHY_INTERFACE_MODE_NA;
1448
	if (dev->dev->of_node) {
1449 1450
		ret = of_get_phy_mode(dev->dev->of_node, &interface);
		if (ret == 0)
1451
			dev->compat_interface = interface;
1452 1453 1454
		ports = of_get_child_by_name(dev->dev->of_node, "ethernet-ports");
		if (!ports)
			ports = of_get_child_by_name(dev->dev->of_node, "ports");
1455 1456 1457 1458 1459
		if (ports)
			for_each_available_child_of_node(ports, port) {
				if (of_property_read_u32(port, "reg",
							 &port_num))
					continue;
1460 1461
				if (!(dev->port_mask & BIT(port_num))) {
					of_node_put(port);
1462
					return -EINVAL;
1463
				}
1464 1465 1466
				of_get_phy_mode(port,
						&dev->ports[port_num].interface);
			}
1467 1468
		dev->synclko_125 = of_property_read_bool(dev->dev->of_node,
							 "microchip,synclko-125");
1469 1470 1471 1472 1473 1474
		dev->synclko_disable = of_property_read_bool(dev->dev->of_node,
							     "microchip,synclko-disable");
		if (dev->synclko_125 && dev->synclko_disable) {
			dev_err(dev->dev, "inconsistent synclko settings\n");
			return -EINVAL;
		}
1475 1476 1477 1478 1479 1480 1481 1482
	}

	ret = dsa_register_switch(dev->ds);
	if (ret) {
		dev->dev_ops->exit(dev);
		return ret;
	}

1483
	/* Read MIB counters every 30 seconds to avoid overflow. */
1484
	dev->mib_read_interval = msecs_to_jiffies(5000);
1485 1486 1487 1488

	/* Start the MIB timer. */
	schedule_delayed_work(&dev->mib_read, 0);

1489
	return ret;
1490 1491 1492 1493 1494
}
EXPORT_SYMBOL(ksz_switch_register);

void ksz_switch_remove(struct ksz_device *dev)
{
1495
	/* timer started */
1496 1497
	if (dev->mib_read_interval) {
		dev->mib_read_interval = 0;
1498
		cancel_delayed_work_sync(&dev->mib_read);
1499
	}
1500

1501
	dev->dev_ops->exit(dev);
1502
	dsa_unregister_switch(dev->ds);
1503 1504

	if (dev->reset_gpio)
1505
		gpiod_set_value_cansleep(dev->reset_gpio, 1);
1506

1507 1508 1509 1510 1511 1512
}
EXPORT_SYMBOL(ksz_switch_remove);

MODULE_AUTHOR("Woojung Huh <Woojung.Huh@microchip.com>");
MODULE_DESCRIPTION("Microchip KSZ Series Switch DSA Driver");
MODULE_LICENSE("GPL");