Files
eternalwrt-mt798x/target/linux/realtek/dts/rtl9301_linksys_lgs328c.dts
T
Markus StockhausenandRobert Marko b3f6ae604f realtek: dts: convert nand targets to PHY_C22() macro
Make use of the newly invented PHY_C22() macro for the
RTL93xx Linksys LGS3xxC NAND devices.

Signed-off-by: Markus Stockhausen <markus.stockhausen@gmx.de>
Link: https://github.com/openwrt/openwrt/pull/22698
Signed-off-by: Robert Marko <robimarko@gmail.com>
2026-03-31 12:56:24 +02:00

177 lines
3.1 KiB
Devicetree

// SPDX-License-Identifier: (GPL-2.0-or-later or MIT)
/dts-v1/;
#include "rtl930x.dtsi"
#include "rtl93xx_linksys_lgs3xxc_nand_common.dtsi"
/ {
compatible = "linksys,lgs328c", "realtek,rtl9301-soc";
model = "Linksys LGS328C";
memory@0 {
device_type = "memory";
reg = <0x00000000 0x10000000>, /* 256 MiB lowmem */
<0x20000000 0x10000000>; /* 256 MiB highmem */
};
};
&i2c_mst1 {
status = "okay";
i2c2: i2c@2 {
reg = <2>;
};
i2c3: i2c@3 {
reg = <3>;
};
i2c4: i2c@4 {
reg = <4>;
};
i2c5: i2c@5 {
reg = <5>;
};
};
&sfp0 {
i2c-bus = <&i2c2>;
};
&sfp1 {
i2c-bus = <&i2c3>;
};
&sfp2 {
i2c-bus = <&i2c4>;
};
&sfp3 {
i2c-bus = <&i2c5>;
};
&mdio_aux {
status = "okay";
gpio1: expander@0 {
compatible = "realtek,rtl8231";
reg = <0>;
gpio-controller;
#gpio-cells = <2>;
gpio-ranges = <&gpio1 0 0 37>;
led-controller {
compatible = "realtek,rtl8231-leds";
status = "disabled";
};
};
};
&mdio_bus0 {
PHY_C22(0, 0)
PHY_C22(1, 1)
PHY_C22(2, 2)
PHY_C22(3, 3)
PHY_C22(4, 4)
PHY_C22(5, 5)
PHY_C22(6, 6)
PHY_C22(7, 7)
};
&mdio_bus1 {
PHY_C22(8, 8)
PHY_C22(9, 9)
PHY_C22(10, 10)
PHY_C22(11, 11)
PHY_C22(12, 12)
PHY_C22(13, 13)
PHY_C22(14, 14)
PHY_C22(15, 15)
};
&mdio_bus2 {
PHY_C22(16, 16)
PHY_C22(17, 17)
PHY_C22(18, 18)
PHY_C22(19, 19)
PHY_C22(20, 20)
PHY_C22(21, 21)
PHY_C22(22, 22)
PHY_C22(23, 23)
};
&switch0 {
ethernet-ports {
#address-cells = <1>;
#size-cells = <0>;
SWITCH_PORT_SDS(0, 1, 0, qsgmii)
SWITCH_PORT_SDS(1, 2, 0, qsgmii)
SWITCH_PORT_SDS(2, 3, 0, qsgmii)
SWITCH_PORT_SDS(3, 4, 0, qsgmii)
SWITCH_PORT_SDS(4, 5, 1, qsgmii)
SWITCH_PORT_SDS(5, 6, 1, qsgmii)
SWITCH_PORT_SDS(6, 7, 1, qsgmii)
SWITCH_PORT_SDS(7, 8, 1, qsgmii)
SWITCH_PORT_SDS(8, 9, 2, usxgmii)
SWITCH_PORT_SDS(9, 10, 2, usxgmii)
SWITCH_PORT_SDS(10, 11, 2, usxgmii)
SWITCH_PORT_SDS(11, 12, 2, usxgmii)
SWITCH_PORT_SDS(12, 13, 2, usxgmii)
SWITCH_PORT_SDS(13, 14, 2, usxgmii)
SWITCH_PORT_SDS(14, 15, 2, usxgmii)
SWITCH_PORT_SDS(15, 16, 2, usxgmii)
SWITCH_PORT_SDS(16, 17, 3, usxgmii)
SWITCH_PORT_SDS(17, 18, 3, usxgmii)
SWITCH_PORT_SDS(18, 19, 3, usxgmii)
SWITCH_PORT_SDS(19, 20, 3, usxgmii)
SWITCH_PORT_SDS(20, 21, 3, usxgmii)
SWITCH_PORT_SDS(21, 22, 3, usxgmii)
SWITCH_PORT_SDS(22, 23, 3, usxgmii)
SWITCH_PORT_SDS(23, 24, 3, usxgmii)
port@24 {
reg = <24>;
label = "lan25";
pcs-handle = <&serdes4>;
phy-mode = "1000base-x";
managed = "in-band-status";
sfp = <&sfp0>;
};
port@25 {
reg = <25>;
label = "lan26";
pcs-handle = <&serdes6>;
phy-mode = "1000base-x";
managed = "in-band-status";
sfp = <&sfp1>;
};
port@26 {
reg = <26>;
label = "lan27";
pcs-handle = <&serdes8>;
phy-mode = "1000base-x";
managed = "in-band-status";
sfp = <&sfp2>;
};
port@27 {
reg = <27>;
label = "lan28";
pcs-handle = <&serdes9>;
phy-mode = "1000base-x";
managed = "in-band-status";
sfp = <&sfp3>;
};
port@28 {
reg = <28>;
ethernet = <&ethernet0>;
phy-mode = "internal";
fixed-link {
speed = <1000>;
full-duplex;
};
};
};
};