linux-loongson/arch/arm/boot/dts/rockchip/rk3066a.dtsi
Linus Torvalds 51835949dd Networking changes for 6.11. Not much excitement - a handful of large
patchsets (devmem among them) did not make it in time.
 
 Core & protocols
 ----------------
 
  - Use local_lock in addition to local_bh_disable() to protect per-CPU
    resources in networking, a step closer for local_bh_disable() not
    to act as a big lock on PREEMPT_RT.
 
  - Use flex array for netdevice priv area, ensure its cache alignment.
 
  - Add a sysctl knob to allow user to specify a default rto_min at socket
    init time. Bit of a big hammer but multiple companies were
    independently carrying such patch downstream so clearly it's useful.
 
  - Support scheduling transmission of packets based on CLOCK_TAI.
 
  - Un-pin TCP TIMEWAIT timer to avoid it firing on CPUs later cordoned off
    using cpusets.
 
  - Support multiple L2TPv3 UDP tunnels using the same 5-tuple address.
 
  - Allow configuration of multipath hash seed, to both allow synchronizing
    hashing of two routers, and preventing partial accidental sync.
 
  - Improve TCP compliance with RFC 9293 for simultaneous connect().
 
  - Support sending NAT keepalives in IPsec ESP in UDP states. Userspace
    IKE daemon had to do this before, but the kernel can better keep
    track of it.
 
  - Support sending supervision HSR frames with MAC addresses stored in
    ProxyNodeTable when RedBox (i.e. HSR-SAN) is enabled.
 
  - Introduce IPPROTO_SMC for selecting SMC when socket is created.
 
  - Allow UDP GSO transmit from devices with no checksum offload.
 
  - openvswitch: add packet sampling via psample, separating the sampled
    traffic from "upcall" packets sent to user space for forwarding.
 
  - nf_tables: shrink memory consumption for transaction objects.
 
 Things we sprinkled into general kernel code
 --------------------------------------------
 
  - Power Sequencing subsystem (used by Qualcomm Bluetooth driver
    for QCA6390).
 
  - Add IRQ information in sysfs for auxiliary bus.
 
  - Introduce guard definition for local_lock.
 
  - Add aligned flavor of __cacheline_group_{begin, end}() markings for
    grouping fields in structures.
 
 BPF
 ---
 
  - Notify user space (via epoll) when a struct_ops object is getting
    detached/unregistered.
 
  - Add new kfuncs for a generic, open-coded bits iterator.
 
  - Enable BPF programs to declare arrays of kptr, bpf_rb_root, and
    bpf_list_head.
 
  - Support resilient split BTF which cuts down on duplication and makes
    BTF as compact as possible WRT BTF from modules.
 
  - Add support for dumping kfunc prototypes from BTF which enables both
    detecting as well as dumping compilable prototypes for kfuncs.
 
  - riscv64 BPF JIT improvements in particular to add 12-argument support
    for BPF trampolines and to utilize bpf_prog_pack for the latter.
 
  - Add the capability to offload the netfilter flowtable in XDP layer
    through kfuncs.
 
 Driver API
 ----------
 
  - Allow users to configure IRQ tresholds between which automatic IRQ
    moderation can choose.
 
  - Expand Power Sourcing (PoE) status with power, class and failure
    reason. Support setting power limits.
 
  - Track additional RSS contexts in the core, make sure configuration
    changes don't break them.
 
  - Support IPsec crypto offload for IPv6 ESP and IPv4 UDP-encapsulated ESP
    data paths.
 
  - Support updating firmware on SFP modules.
 
 Tests and tooling
 -----------------
 
  - mptcp: use net/lib.sh to manage netns.
 
  - TCP-AO and TCP-MD5: replace debug prints used by tests with
    tracepoints.
 
  - openvswitch: make test self-contained (don't depend on OvS CLI tools).
 
 Drivers
 -------
 
  - Ethernet high-speed NICs:
    - Broadcom (bnxt):
      - increase the max total outstanding PTP TX packets to 4
      - add timestamping statistics support
      - implement netdev_queue_mgmt_ops
      - support new RSS context API
    - Intel (100G, ice, idpf):
      - implement FEC statistics and dumping signal quality indicators
      - support E825C products (with 56Gbps PHYs)
    - nVidia/Mellanox:
      - support HW-GRO
      - mlx4/mlx5: support per-queue statistics via netlink
      - obey the max number of EQs setting in sub-functions
    - AMD/Solarflare:
      - support new RSS context API
    - AMD/Pensando:
      - ionic: rework fix for doorbell miss to lower overhead
        and skip it on new HW
    - Wangxun:
      - txgbe: support Flow Director perfect filters
 
  - Ethernet NICs consumer, embedded and virtual:
    - Add driver for Tehuti Networks TN40xx chips
    - Add driver for Meta's internal NIC chips
    - Add driver for Ethernet MAC on Airoha EN7581 SoCs
    - Add driver for Renesas Ethernet-TSN devices
    - Google cloud vNIC:
      - flow steering support
    - Microsoft vNIC:
      - support page sizes other than 4KB on ARM64
    - vmware vNIC:
      - support latency measurement (update to version 9)
    - VirtIO net:
      - support for Byte Queue Limits
      - support configuring thresholds for automatic IRQ moderation
      - support for AF_XDP Rx zero-copy
    - Synopsys (stmmac):
      - support for STM32MP13 SoC
      - let platforms select the right PCS implementation
    - TI:
      - icssg-prueth: add multicast filtering support
      - icssg-prueth: enable PTP timestamping and PPS
    - Renesas:
      - ravb: improve Rx performance 30-400% by using page pool,
        theaded NAPI and timer-based IRQ coalescing
      - ravb: add MII support for R-Car V4M
    - Cadence (macb):
      - macb: add ARP support to Wake-On-LAN
    - Cortina:
      - use phylib for RX and TX pause configuration
 
  - Ethernet switches:
    - nVidia/Mellanox:
      - support configuration of multipath hash seed
      - report more accurate max MTU
      - use page_pool to improve Rx performance
    - MediaTek:
      - mt7530: add support for bridge port isolation
    - Qualcomm:
      - qca8k: add support for bridge port isolation
    - Microchip:
      - lan9371/2: add 100BaseTX PHY support
    - NXP:
      - vsc73xx: implement VLAN operations
 
  - Ethernet PHYs:
    - aquantia: enable support for aqr115c
    - aquantia: add support for PHY LEDs
    - realtek: add support for rtl8224 2.5Gbps PHY
    - xpcs: add memory-mapped device support
    - add BroadR-Reach link mode and support in Broadcom's PHY driver
 
  - CAN:
    - add document for ISO 15765-2 protocol support
    - mcp251xfd: workaround for erratum DS80000789E, use timestamps
      to catch when device returns incorrect FIFO status
 
  - WiFi:
    - mac80211/cfg80211:
      - parse Transmit Power Envelope (TPE) data in mac80211 instead of
        in drivers
      - improvements for 6 GHz regulatory flexibility
      - multi-link improvements
      - support multiple radios per wiphy
      - remove DEAUTH_NEED_MGD_TX_PREP flag
    - Intel (iwlwifi):
      - bump FW API to 91 for BZ/SC devices
      - report 64-bit radiotap timestamp
      - enable P2P low latency by default
      - handle Transmit Power Envelope (TPE) advertised by AP
      - remove support for older FW for new devices
      - fast resume (keeping the device configured)
      - mvm: re-enable Multi-Link Operation (MLO)
      - aggregation (A-MSDU) optimizations
    - MediaTek (mt76):
      - mt7925 Multi-Link Operation (MLO) support
    - Qualcomm (ath10k):
      - LED support for various chipsets
    - Qualcomm (ath12k):
      - remove unsupported Tx monitor handling
      - support channel 2 in 6 GHz band
      - support Spatial Multiplexing Power Save (SMPS) in 6 GHz band
      - supprt multiple BSSID (MBSSID) and Enhanced Multi-BSSID
        Advertisements (EMA)
      - support dynamic VLAN
      - add panic handler for resetting the firmware state
      - DebugFS support for datapath statistics
      - WCN7850: support for Wake on WLAN
    - Microchip (wilc1000):
      - read MAC address during probe to make it visible to user space
      - suspend/resume improvements
    - TI (wl18xx):
      - support newer firmware versions
    - RealTek (rtw89):
      - preparation for RTL8852BE-VT support
      - Wake on WLAN support for WiFi 6 chips
      - 36-bit PCI DMA support
    - RealTek (rtlwifi):
      - RTL8192DU support
    - Broadcom (brcmfmac):
      - Management Frame Protection support (to enable WPA3)
 
  - Bluetooth:
    - qualcomm: use the power sequencer for QCA6390
    - btusb: mediatek: add ISO data transmission functions
    - hci_bcm4377: add BCM4388 support
    - btintel: add support for BlazarU core
    - btintel: add support for Whale Peak2
    - btnxpuart: add support for AW693 A1 chipset
    - btnxpuart: add support for IW615 chipset
    - btusb: add Realtek RTL8852BE support ID 0x13d3:0x3591
 
 Signed-off-by: Jakub Kicinski <kuba@kernel.org>
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Merge tag 'net-next-6.11' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next

Pull networking updates from Jakub Kicinski:
 "Not much excitement - a handful of large patchsets (devmem among them)
  did not make it in time.

  Core & protocols:

   - Use local_lock in addition to local_bh_disable() to protect per-CPU
     resources in networking, a step closer for local_bh_disable() not
     to act as a big lock on PREEMPT_RT

   - Use flex array for netdevice priv area, ensure its cache alignment

   - Add a sysctl knob to allow user to specify a default rto_min at
     socket init time. Bit of a big hammer but multiple companies were
     independently carrying such patch downstream so clearly it's useful

   - Support scheduling transmission of packets based on CLOCK_TAI

   - Un-pin TCP TIMEWAIT timer to avoid it firing on CPUs later cordoned
     off using cpusets

   - Support multiple L2TPv3 UDP tunnels using the same 5-tuple address

   - Allow configuration of multipath hash seed, to both allow
     synchronizing hashing of two routers, and preventing partial
     accidental sync

   - Improve TCP compliance with RFC 9293 for simultaneous connect()

   - Support sending NAT keepalives in IPsec ESP in UDP states.
     Userspace IKE daemon had to do this before, but the kernel can
     better keep track of it

   - Support sending supervision HSR frames with MAC addresses stored in
     ProxyNodeTable when RedBox (i.e. HSR-SAN) is enabled

   - Introduce IPPROTO_SMC for selecting SMC when socket is created

   - Allow UDP GSO transmit from devices with no checksum offload

   - openvswitch: add packet sampling via psample, separating the
     sampled traffic from "upcall" packets sent to user space for
     forwarding

   - nf_tables: shrink memory consumption for transaction objects

  Things we sprinkled into general kernel code:

   - Power Sequencing subsystem (used by Qualcomm Bluetooth driver for
     QCA6390)           [ Already merged separately - Linus ]

   - Add IRQ information in sysfs for auxiliary bus

   - Introduce guard definition for local_lock

   - Add aligned flavor of __cacheline_group_{begin, end}() markings for
     grouping fields in structures

  BPF:

   - Notify user space (via epoll) when a struct_ops object is getting
     detached/unregistered

   - Add new kfuncs for a generic, open-coded bits iterator

   - Enable BPF programs to declare arrays of kptr, bpf_rb_root, and
     bpf_list_head

   - Support resilient split BTF which cuts down on duplication and
     makes BTF as compact as possible WRT BTF from modules

   - Add support for dumping kfunc prototypes from BTF which enables
     both detecting as well as dumping compilable prototypes for kfuncs

   - riscv64 BPF JIT improvements in particular to add 12-argument
     support for BPF trampolines and to utilize bpf_prog_pack for the
     latter

   - Add the capability to offload the netfilter flowtable in XDP layer
     through kfuncs

  Driver API:

   - Allow users to configure IRQ tresholds between which automatic IRQ
     moderation can choose

   - Expand Power Sourcing (PoE) status with power, class and failure
     reason. Support setting power limits

   - Track additional RSS contexts in the core, make sure configuration
     changes don't break them

   - Support IPsec crypto offload for IPv6 ESP and IPv4 UDP-encapsulated
     ESP data paths

   - Support updating firmware on SFP modules

  Tests and tooling:

   - mptcp: use net/lib.sh to manage netns

   - TCP-AO and TCP-MD5: replace debug prints used by tests with
     tracepoints

   - openvswitch: make test self-contained (don't depend on OvS CLI
     tools)

  Drivers:

   - Ethernet high-speed NICs:
      - Broadcom (bnxt):
         - increase the max total outstanding PTP TX packets to 4
         - add timestamping statistics support
         - implement netdev_queue_mgmt_ops
         - support new RSS context API
      - Intel (100G, ice, idpf):
         - implement FEC statistics and dumping signal quality indicators
         - support E825C products (with 56Gbps PHYs)
      - nVidia/Mellanox:
         - support HW-GRO
         - mlx4/mlx5: support per-queue statistics via netlink
         - obey the max number of EQs setting in sub-functions
      - AMD/Solarflare:
         - support new RSS context API
      - AMD/Pensando:
         - ionic: rework fix for doorbell miss to lower overhead and
           skip it on new HW
      - Wangxun:
         - txgbe: support Flow Director perfect filters

   - Ethernet NICs consumer, embedded and virtual:
      - Add driver for Tehuti Networks TN40xx chips
      - Add driver for Meta's internal NIC chips
      - Add driver for Ethernet MAC on Airoha EN7581 SoCs
      - Add driver for Renesas Ethernet-TSN devices
      - Google cloud vNIC:
         - flow steering support
      - Microsoft vNIC:
         - support page sizes other than 4KB on ARM64
      - vmware vNIC:
         - support latency measurement (update to version 9)
      - VirtIO net:
         - support for Byte Queue Limits
         - support configuring thresholds for automatic IRQ moderation
         - support for AF_XDP Rx zero-copy
      - Synopsys (stmmac):
         - support for STM32MP13 SoC
         - let platforms select the right PCS implementation
      - TI:
         - icssg-prueth: add multicast filtering support
         - icssg-prueth: enable PTP timestamping and PPS
      - Renesas:
         - ravb: improve Rx performance 30-400% by using page pool,
           theaded NAPI and timer-based IRQ coalescing
         - ravb: add MII support for R-Car V4M
      - Cadence (macb):
         - macb: add ARP support to Wake-On-LAN
      - Cortina:
         - use phylib for RX and TX pause configuration

   - Ethernet switches:
      - nVidia/Mellanox:
         - support configuration of multipath hash seed
         - report more accurate max MTU
         - use page_pool to improve Rx performance
      - MediaTek:
         - mt7530: add support for bridge port isolation
      - Qualcomm:
         - qca8k: add support for bridge port isolation
      - Microchip:
         - lan9371/2: add 100BaseTX PHY support
      - NXP:
         - vsc73xx: implement VLAN operations

   - Ethernet PHYs:
      - aquantia: enable support for aqr115c
      - aquantia: add support for PHY LEDs
      - realtek: add support for rtl8224 2.5Gbps PHY
      - xpcs: add memory-mapped device support
      - add BroadR-Reach link mode and support in Broadcom's PHY driver

   - CAN:
      - add document for ISO 15765-2 protocol support
      - mcp251xfd: workaround for erratum DS80000789E, use timestamps to
        catch when device returns incorrect FIFO status

   - WiFi:
      - mac80211/cfg80211:
         - parse Transmit Power Envelope (TPE) data in mac80211 instead
           of in drivers
         - improvements for 6 GHz regulatory flexibility
         - multi-link improvements
         - support multiple radios per wiphy
         - remove DEAUTH_NEED_MGD_TX_PREP flag
      - Intel (iwlwifi):
         - bump FW API to 91 for BZ/SC devices
         - report 64-bit radiotap timestamp
         - enable P2P low latency by default
         - handle Transmit Power Envelope (TPE) advertised by AP
         - remove support for older FW for new devices
         - fast resume (keeping the device configured)
         - mvm: re-enable Multi-Link Operation (MLO)
         - aggregation (A-MSDU) optimizations
      - MediaTek (mt76):
         - mt7925 Multi-Link Operation (MLO) support
      - Qualcomm (ath10k):
         - LED support for various chipsets
      - Qualcomm (ath12k):
         - remove unsupported Tx monitor handling
         - support channel 2 in 6 GHz band
         - support Spatial Multiplexing Power Save (SMPS) in 6 GHz band
         - supprt multiple BSSID (MBSSID) and Enhanced Multi-BSSID
           Advertisements (EMA)
         - support dynamic VLAN
         - add panic handler for resetting the firmware state
         - DebugFS support for datapath statistics
         - WCN7850: support for Wake on WLAN
      - Microchip (wilc1000):
         - read MAC address during probe to make it visible to user space
         - suspend/resume improvements
      - TI (wl18xx):
         - support newer firmware versions
      - RealTek (rtw89):
         - preparation for RTL8852BE-VT support
         - Wake on WLAN support for WiFi 6 chips
         - 36-bit PCI DMA support
      - RealTek (rtlwifi):
         - RTL8192DU support
      - Broadcom (brcmfmac):
         - Management Frame Protection support (to enable WPA3)

   - Bluetooth:
      - qualcomm: use the power sequencer for QCA6390
      - btusb: mediatek: add ISO data transmission functions
      - hci_bcm4377: add BCM4388 support
      - btintel: add support for BlazarU core
      - btintel: add support for Whale Peak2
      - btnxpuart: add support for AW693 A1 chipset
      - btnxpuart: add support for IW615 chipset
      - btusb: add Realtek RTL8852BE support ID 0x13d3:0x3591"

* tag 'net-next-6.11' of git://git.kernel.org/pub/scm/linux/kernel/git/netdev/net-next: (1589 commits)
  eth: fbnic: Fix spelling mistake "tiggerring" -> "triggering"
  tcp: Replace strncpy() with strscpy()
  wifi: ath12k: fix build vs old compiler
  tcp: Don't access uninit tcp_rsk(req)->ao_keyid in tcp_create_openreq_child().
  eth: fbnic: Write the TCAM tables used for RSS control and Rx to host
  eth: fbnic: Add L2 address programming
  eth: fbnic: Add basic Rx handling
  eth: fbnic: Add basic Tx handling
  eth: fbnic: Add link detection
  eth: fbnic: Add initial messaging to notify FW of our presence
  eth: fbnic: Implement Rx queue alloc/start/stop/free
  eth: fbnic: Implement Tx queue alloc/start/stop/free
  eth: fbnic: Allocate a netdevice and napi vectors with queues
  eth: fbnic: Add FW communication mechanism
  eth: fbnic: Add message parsing for FW messages
  eth: fbnic: Add register init to set PCIe/Ethernet device config
  eth: fbnic: Allocate core device specific structures and devlink interface
  eth: fbnic: Add scaffolding for Meta's NIC driver
  PCI: Add Meta Platforms vendor ID
  net/sched: cls_flower: propagate tca[TCA_OPTIONS] to NL_REQ_ATTR_CHECK
  ...
2024-07-16 19:28:34 -07:00

899 lines
19 KiB
Plaintext

// SPDX-License-Identifier: (GPL-2.0+ OR MIT)
/*
* Copyright (c) 2013 MundoReader S.L.
* Author: Heiko Stuebner <heiko@sntech.de>
*/
#include <dt-bindings/gpio/gpio.h>
#include <dt-bindings/pinctrl/rockchip.h>
#include <dt-bindings/clock/rk3066a-cru.h>
#include <dt-bindings/power/rk3066-power.h>
#include "rk3xxx.dtsi"
/ {
compatible = "rockchip,rk3066a";
aliases {
gpio4 = &gpio4;
gpio6 = &gpio6;
};
cpus {
#address-cells = <1>;
#size-cells = <0>;
enable-method = "rockchip,rk3066-smp";
cpu0: cpu@0 {
device_type = "cpu";
compatible = "arm,cortex-a9";
next-level-cache = <&L2>;
reg = <0x0>;
operating-points =
/* kHz uV */
<1416000 1300000>,
<1200000 1175000>,
<1008000 1125000>,
<816000 1125000>,
<600000 1100000>,
<504000 1100000>,
<312000 1075000>;
clock-latency = <40000>;
clocks = <&cru ARMCLK>;
};
cpu1: cpu@1 {
device_type = "cpu";
compatible = "arm,cortex-a9";
next-level-cache = <&L2>;
reg = <0x1>;
};
};
display-subsystem {
compatible = "rockchip,display-subsystem";
ports = <&vop0_out>, <&vop1_out>;
};
hdmi_sound: hdmi-sound {
compatible = "simple-audio-card";
simple-audio-card,name = "HDMI";
simple-audio-card,format = "i2s";
simple-audio-card,mclk-fs = <256>;
status = "disabled";
simple-audio-card,codec {
sound-dai = <&hdmi>;
};
simple-audio-card,cpu {
sound-dai = <&i2s0>;
};
};
sram: sram@10080000 {
compatible = "mmio-sram";
reg = <0x10080000 0x10000>;
#address-cells = <1>;
#size-cells = <1>;
ranges = <0 0x10080000 0x10000>;
smp-sram@0 {
compatible = "rockchip,rk3066-smp-sram";
reg = <0x0 0x50>;
};
};
vop0: vop@1010c000 {
compatible = "rockchip,rk3066-vop";
reg = <0x1010c000 0x19c>;
interrupts = <GIC_SPI 13 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru ACLK_LCDC0>,
<&cru DCLK_LCDC0>,
<&cru HCLK_LCDC0>;
clock-names = "aclk_vop", "dclk_vop", "hclk_vop";
power-domains = <&power RK3066_PD_VIO>;
resets = <&cru SRST_LCDC0_AXI>,
<&cru SRST_LCDC0_AHB>,
<&cru SRST_LCDC0_DCLK>;
reset-names = "axi", "ahb", "dclk";
status = "disabled";
vop0_out: port {
#address-cells = <1>;
#size-cells = <0>;
vop0_out_hdmi: endpoint@0 {
reg = <0>;
remote-endpoint = <&hdmi_in_vop0>;
};
};
};
vop1: vop@1010e000 {
compatible = "rockchip,rk3066-vop";
reg = <0x1010e000 0x19c>;
interrupts = <GIC_SPI 14 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru ACLK_LCDC1>,
<&cru DCLK_LCDC1>,
<&cru HCLK_LCDC1>;
clock-names = "aclk_vop", "dclk_vop", "hclk_vop";
power-domains = <&power RK3066_PD_VIO>;
resets = <&cru SRST_LCDC1_AXI>,
<&cru SRST_LCDC1_AHB>,
<&cru SRST_LCDC1_DCLK>;
reset-names = "axi", "ahb", "dclk";
status = "disabled";
vop1_out: port {
#address-cells = <1>;
#size-cells = <0>;
vop1_out_hdmi: endpoint@0 {
reg = <0>;
remote-endpoint = <&hdmi_in_vop1>;
};
};
};
hdmi: hdmi@10116000 {
compatible = "rockchip,rk3066-hdmi";
reg = <0x10116000 0x2000>;
interrupts = <GIC_SPI 64 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru HCLK_HDMI>;
clock-names = "hclk";
pinctrl-names = "default";
pinctrl-0 = <&hdmii2c_xfer>, <&hdmi_hpd>;
power-domains = <&power RK3066_PD_VIO>;
rockchip,grf = <&grf>;
#sound-dai-cells = <0>;
status = "disabled";
ports {
#address-cells = <1>;
#size-cells = <0>;
hdmi_in: port@0 {
reg = <0>;
#address-cells = <1>;
#size-cells = <0>;
hdmi_in_vop0: endpoint@0 {
reg = <0>;
remote-endpoint = <&vop0_out_hdmi>;
};
hdmi_in_vop1: endpoint@1 {
reg = <1>;
remote-endpoint = <&vop1_out_hdmi>;
};
};
hdmi_out: port@1 {
reg = <1>;
};
};
};
i2s0: i2s@10118000 {
compatible = "rockchip,rk3066-i2s";
reg = <0x10118000 0x2000>;
interrupts = <GIC_SPI 31 IRQ_TYPE_LEVEL_HIGH>;
pinctrl-names = "default";
pinctrl-0 = <&i2s0_bus>;
clocks = <&cru SCLK_I2S0>, <&cru HCLK_I2S0>;
clock-names = "i2s_clk", "i2s_hclk";
dmas = <&dmac1_s 4>, <&dmac1_s 5>;
dma-names = "tx", "rx";
rockchip,playback-channels = <8>;
rockchip,capture-channels = <2>;
#sound-dai-cells = <0>;
status = "disabled";
};
i2s1: i2s@1011a000 {
compatible = "rockchip,rk3066-i2s";
reg = <0x1011a000 0x2000>;
interrupts = <GIC_SPI 32 IRQ_TYPE_LEVEL_HIGH>;
pinctrl-names = "default";
pinctrl-0 = <&i2s1_bus>;
clocks = <&cru SCLK_I2S1>, <&cru HCLK_I2S1>;
clock-names = "i2s_clk", "i2s_hclk";
dmas = <&dmac1_s 6>, <&dmac1_s 7>;
dma-names = "tx", "rx";
rockchip,playback-channels = <2>;
rockchip,capture-channels = <2>;
#sound-dai-cells = <0>;
status = "disabled";
};
i2s2: i2s@1011c000 {
compatible = "rockchip,rk3066-i2s";
reg = <0x1011c000 0x2000>;
interrupts = <GIC_SPI 20 IRQ_TYPE_LEVEL_HIGH>;
pinctrl-names = "default";
pinctrl-0 = <&i2s2_bus>;
clocks = <&cru SCLK_I2S2>, <&cru HCLK_I2S2>;
clock-names = "i2s_clk", "i2s_hclk";
dmas = <&dmac1_s 9>, <&dmac1_s 10>;
dma-names = "tx", "rx";
rockchip,playback-channels = <2>;
rockchip,capture-channels = <2>;
#sound-dai-cells = <0>;
status = "disabled";
};
cru: clock-controller@20000000 {
compatible = "rockchip,rk3066a-cru";
reg = <0x20000000 0x1000>;
clocks = <&xin24m>;
clock-names = "xin24m";
rockchip,grf = <&grf>;
#clock-cells = <1>;
#reset-cells = <1>;
assigned-clocks = <&cru PLL_CPLL>, <&cru PLL_GPLL>,
<&cru ACLK_CPU>, <&cru HCLK_CPU>,
<&cru PCLK_CPU>, <&cru ACLK_PERI>,
<&cru HCLK_PERI>, <&cru PCLK_PERI>;
assigned-clock-rates = <400000000>, <594000000>,
<300000000>, <150000000>,
<75000000>, <300000000>,
<150000000>, <75000000>;
};
timer2: timer@2000e000 {
compatible = "snps,dw-apb-timer";
reg = <0x2000e000 0x100>;
interrupts = <GIC_SPI 46 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru SCLK_TIMER2>, <&cru PCLK_TIMER2>;
clock-names = "timer", "pclk";
};
efuse: efuse@20010000 {
compatible = "rockchip,rk3066a-efuse";
reg = <0x20010000 0x4000>;
#address-cells = <1>;
#size-cells = <1>;
clocks = <&cru PCLK_EFUSE>;
clock-names = "pclk_efuse";
cpu_leakage: cpu_leakage@17 {
reg = <0x17 0x1>;
};
};
timer0: timer@20038000 {
compatible = "snps,dw-apb-timer";
reg = <0x20038000 0x100>;
interrupts = <GIC_SPI 44 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru SCLK_TIMER0>, <&cru PCLK_TIMER0>;
clock-names = "timer", "pclk";
};
timer1: timer@2003a000 {
compatible = "snps,dw-apb-timer";
reg = <0x2003a000 0x100>;
interrupts = <GIC_SPI 45 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru SCLK_TIMER1>, <&cru PCLK_TIMER1>;
clock-names = "timer", "pclk";
};
tsadc: tsadc@20060000 {
compatible = "rockchip,rk3066-tsadc";
reg = <0x20060000 0x100>;
clocks = <&cru SCLK_TSADC>, <&cru PCLK_TSADC>;
clock-names = "saradc", "apb_pclk";
interrupts = <GIC_SPI 21 IRQ_TYPE_LEVEL_HIGH>;
#io-channel-cells = <1>;
resets = <&cru SRST_TSADC>;
reset-names = "saradc-apb";
status = "disabled";
};
pinctrl: pinctrl {
compatible = "rockchip,rk3066a-pinctrl";
rockchip,grf = <&grf>;
#address-cells = <1>;
#size-cells = <1>;
ranges;
gpio0: gpio@20034000 {
compatible = "rockchip,gpio-bank";
reg = <0x20034000 0x100>;
interrupts = <GIC_SPI 54 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru PCLK_GPIO0>;
gpio-controller;
#gpio-cells = <2>;
interrupt-controller;
#interrupt-cells = <2>;
};
gpio1: gpio@2003c000 {
compatible = "rockchip,gpio-bank";
reg = <0x2003c000 0x100>;
interrupts = <GIC_SPI 55 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru PCLK_GPIO1>;
gpio-controller;
#gpio-cells = <2>;
interrupt-controller;
#interrupt-cells = <2>;
};
gpio2: gpio@2003e000 {
compatible = "rockchip,gpio-bank";
reg = <0x2003e000 0x100>;
interrupts = <GIC_SPI 56 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru PCLK_GPIO2>;
gpio-controller;
#gpio-cells = <2>;
interrupt-controller;
#interrupt-cells = <2>;
};
gpio3: gpio@20080000 {
compatible = "rockchip,gpio-bank";
reg = <0x20080000 0x100>;
interrupts = <GIC_SPI 57 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru PCLK_GPIO3>;
gpio-controller;
#gpio-cells = <2>;
interrupt-controller;
#interrupt-cells = <2>;
};
gpio4: gpio@20084000 {
compatible = "rockchip,gpio-bank";
reg = <0x20084000 0x100>;
interrupts = <GIC_SPI 58 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru PCLK_GPIO4>;
gpio-controller;
#gpio-cells = <2>;
interrupt-controller;
#interrupt-cells = <2>;
};
gpio6: gpio@2000a000 {
compatible = "rockchip,gpio-bank";
reg = <0x2000a000 0x100>;
interrupts = <GIC_SPI 60 IRQ_TYPE_LEVEL_HIGH>;
clocks = <&cru PCLK_GPIO6>;
gpio-controller;
#gpio-cells = <2>;
interrupt-controller;
#interrupt-cells = <2>;
};
pcfg_pull_default: pcfg-pull-default {
bias-pull-pin-default;
};
pcfg_pull_none: pcfg-pull-none {
bias-disable;
};
emac {
emac_xfer: emac-xfer {
rockchip,pins = <1 RK_PC0 2 &pcfg_pull_none>, /* mac_clk */
<1 RK_PC1 2 &pcfg_pull_none>, /* tx_en */
<1 RK_PC2 2 &pcfg_pull_none>, /* txd1 */
<1 RK_PC3 2 &pcfg_pull_none>, /* txd0 */
<1 RK_PC4 2 &pcfg_pull_none>, /* rx_err */
<1 RK_PC5 2 &pcfg_pull_none>, /* crs_dvalid */
<1 RK_PC6 2 &pcfg_pull_none>, /* rxd1 */
<1 RK_PC7 2 &pcfg_pull_none>; /* rxd0 */
};
emac_mdio: emac-mdio {
rockchip,pins = <1 RK_PD0 2 &pcfg_pull_none>, /* mac_md */
<1 RK_PD1 2 &pcfg_pull_none>; /* mac_mdclk */
};
};
emmc {
emmc_clk: emmc-clk {
rockchip,pins = <3 RK_PD7 2 &pcfg_pull_default>;
};
emmc_cmd: emmc-cmd {
rockchip,pins = <4 RK_PB1 2 &pcfg_pull_default>;
};
emmc_rst: emmc-rst {
rockchip,pins = <4 RK_PB2 2 &pcfg_pull_default>;
};
/*
* The data pins are shared between nandc and emmc and
* not accessible through pinctrl. Also they should've
* been already set correctly by firmware, as
* flash/emmc is the boot-device.
*/
};
hdmi {
hdmi_hpd: hdmi-hpd {
rockchip,pins = <0 RK_PA0 1 &pcfg_pull_default>;
};
hdmii2c_xfer: hdmii2c-xfer {
rockchip,pins = <0 RK_PA1 1 &pcfg_pull_none>,
<0 RK_PA2 1 &pcfg_pull_none>;
};
};
i2c0 {
i2c0_xfer: i2c0-xfer {
rockchip,pins = <2 RK_PD4 1 &pcfg_pull_none>,
<2 RK_PD5 1 &pcfg_pull_none>;
};
};
i2c1 {
i2c1_xfer: i2c1-xfer {
rockchip,pins = <2 RK_PD6 1 &pcfg_pull_none>,
<2 RK_PD7 1 &pcfg_pull_none>;
};
};
i2c2 {
i2c2_xfer: i2c2-xfer {
rockchip,pins = <3 RK_PA0 1 &pcfg_pull_none>,
<3 RK_PA1 1 &pcfg_pull_none>;
};
};
i2c3 {
i2c3_xfer: i2c3-xfer {
rockchip,pins = <3 RK_PA2 2 &pcfg_pull_none>,
<3 RK_PA3 2 &pcfg_pull_none>;
};
};
i2c4 {
i2c4_xfer: i2c4-xfer {
rockchip,pins = <3 RK_PA4 1 &pcfg_pull_none>,
<3 RK_PA5 1 &pcfg_pull_none>;
};
};
pwm0 {
pwm0_out: pwm0-out {
rockchip,pins = <0 RK_PA3 1 &pcfg_pull_none>;
};
};
pwm1 {
pwm1_out: pwm1-out {
rockchip,pins = <0 RK_PA4 1 &pcfg_pull_none>;
};
};
pwm2 {
pwm2_out: pwm2-out {
rockchip,pins = <0 RK_PD6 1 &pcfg_pull_none>;
};
};
pwm3 {
pwm3_out: pwm3-out {
rockchip,pins = <0 RK_PD7 1 &pcfg_pull_none>;
};
};
spi0 {
spi0_clk: spi0-clk {
rockchip,pins = <1 RK_PA5 2 &pcfg_pull_default>;
};
spi0_cs0: spi0-cs0 {
rockchip,pins = <1 RK_PA4 2 &pcfg_pull_default>;
};
spi0_tx: spi0-tx {
rockchip,pins = <1 RK_PA7 2 &pcfg_pull_default>;
};
spi0_rx: spi0-rx {
rockchip,pins = <1 RK_PA6 2 &pcfg_pull_default>;
};
spi0_cs1: spi0-cs1 {
rockchip,pins = <4 RK_PB7 1 &pcfg_pull_default>;
};
};
spi1 {
spi1_clk: spi1-clk {
rockchip,pins = <2 RK_PC3 2 &pcfg_pull_default>;
};
spi1_cs0: spi1-cs0 {
rockchip,pins = <2 RK_PC4 2 &pcfg_pull_default>;
};
spi1_rx: spi1-rx {
rockchip,pins = <2 RK_PC6 2 &pcfg_pull_default>;
};
spi1_tx: spi1-tx {
rockchip,pins = <2 RK_PC5 2 &pcfg_pull_default>;
};
spi1_cs1: spi1-cs1 {
rockchip,pins = <2 RK_PC7 2 &pcfg_pull_default>;
};
};
uart0 {
uart0_xfer: uart0-xfer {
rockchip,pins = <1 RK_PA0 1 &pcfg_pull_default>,
<1 RK_PA1 1 &pcfg_pull_default>;
};
uart0_cts: uart0-cts {
rockchip,pins = <1 RK_PA2 1 &pcfg_pull_default>;
};
uart0_rts: uart0-rts {
rockchip,pins = <1 RK_PA3 1 &pcfg_pull_default>;
};
};
uart1 {
uart1_xfer: uart1-xfer {
rockchip,pins = <1 RK_PA4 1 &pcfg_pull_default>,
<1 RK_PA5 1 &pcfg_pull_default>;
};
uart1_cts: uart1-cts {
rockchip,pins = <1 RK_PA6 1 &pcfg_pull_default>;
};
uart1_rts: uart1-rts {
rockchip,pins = <1 RK_PA7 1 &pcfg_pull_default>;
};
};
uart2 {
uart2_xfer: uart2-xfer {
rockchip,pins = <1 RK_PB0 1 &pcfg_pull_default>,
<1 RK_PB1 1 &pcfg_pull_default>;
};
/* no rts / cts for uart2 */
};
uart3 {
uart3_xfer: uart3-xfer {
rockchip,pins = <3 RK_PD3 1 &pcfg_pull_default>,
<3 RK_PD4 1 &pcfg_pull_default>;
};
uart3_cts: uart3-cts {
rockchip,pins = <3 RK_PD5 1 &pcfg_pull_default>;
};
uart3_rts: uart3-rts {
rockchip,pins = <3 RK_PD6 1 &pcfg_pull_default>;
};
};
sd0 {
sd0_clk: sd0-clk {
rockchip,pins = <3 RK_PB0 1 &pcfg_pull_default>;
};
sd0_cmd: sd0-cmd {
rockchip,pins = <3 RK_PB1 1 &pcfg_pull_default>;
};
sd0_cd: sd0-cd {
rockchip,pins = <3 RK_PB6 1 &pcfg_pull_default>;
};
sd0_wp: sd0-wp {
rockchip,pins = <3 RK_PB7 1 &pcfg_pull_default>;
};
sd0_bus1: sd0-bus-width1 {
rockchip,pins = <3 RK_PB2 1 &pcfg_pull_default>;
};
sd0_bus4: sd0-bus-width4 {
rockchip,pins = <3 RK_PB2 1 &pcfg_pull_default>,
<3 RK_PB3 1 &pcfg_pull_default>,
<3 RK_PB4 1 &pcfg_pull_default>,
<3 RK_PB5 1 &pcfg_pull_default>;
};
};
sd1 {
sd1_clk: sd1-clk {
rockchip,pins = <3 RK_PC5 1 &pcfg_pull_default>;
};
sd1_cmd: sd1-cmd {
rockchip,pins = <3 RK_PC0 1 &pcfg_pull_default>;
};
sd1_cd: sd1-cd {
rockchip,pins = <3 RK_PC6 1 &pcfg_pull_default>;
};
sd1_wp: sd1-wp {
rockchip,pins = <3 RK_PC7 1 &pcfg_pull_default>;
};
sd1_bus1: sd1-bus-width1 {
rockchip,pins = <3 RK_PC1 1 &pcfg_pull_default>;
};
sd1_bus4: sd1-bus-width4 {
rockchip,pins = <3 RK_PC1 1 &pcfg_pull_default>,
<3 RK_PC2 1 &pcfg_pull_default>,
<3 RK_PC3 1 &pcfg_pull_default>,
<3 RK_PC4 1 &pcfg_pull_default>;
};
};
i2s0 {
i2s0_bus: i2s0-bus {
rockchip,pins = <0 RK_PA7 1 &pcfg_pull_default>,
<0 RK_PB0 1 &pcfg_pull_default>,
<0 RK_PB1 1 &pcfg_pull_default>,
<0 RK_PB2 1 &pcfg_pull_default>,
<0 RK_PB3 1 &pcfg_pull_default>,
<0 RK_PB4 1 &pcfg_pull_default>,
<0 RK_PB5 1 &pcfg_pull_default>,
<0 RK_PB6 1 &pcfg_pull_default>,
<0 RK_PB7 1 &pcfg_pull_default>;
};
};
i2s1 {
i2s1_bus: i2s1-bus {
rockchip,pins = <0 RK_PC0 1 &pcfg_pull_default>,
<0 RK_PC1 1 &pcfg_pull_default>,
<0 RK_PC2 1 &pcfg_pull_default>,
<0 RK_PC3 1 &pcfg_pull_default>,
<0 RK_PC4 1 &pcfg_pull_default>,
<0 RK_PC5 1 &pcfg_pull_default>;
};
};
i2s2 {
i2s2_bus: i2s2-bus {
rockchip,pins = <0 RK_PD0 1 &pcfg_pull_default>,
<0 RK_PD1 1 &pcfg_pull_default>,
<0 RK_PD2 1 &pcfg_pull_default>,
<0 RK_PD3 1 &pcfg_pull_default>,
<0 RK_PD4 1 &pcfg_pull_default>,
<0 RK_PD5 1 &pcfg_pull_default>;
};
};
};
};
&gpu {
compatible = "rockchip,rk3066-mali", "arm,mali-400";
interrupts = <GIC_SPI 5 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 6 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 7 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 6 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 7 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 6 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 7 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 6 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 7 IRQ_TYPE_LEVEL_HIGH>,
<GIC_SPI 6 IRQ_TYPE_LEVEL_HIGH>;
interrupt-names = "gp",
"gpmmu",
"pp0",
"ppmmu0",
"pp1",
"ppmmu1",
"pp2",
"ppmmu2",
"pp3",
"ppmmu3";
power-domains = <&power RK3066_PD_GPU>;
};
&grf {
compatible = "rockchip,rk3066-grf", "syscon", "simple-mfd";
usbphy: usbphy {
compatible = "rockchip,rk3066a-usb-phy";
#address-cells = <1>;
#size-cells = <0>;
status = "disabled";
usbphy0: usb-phy@17c {
reg = <0x17c>;
clocks = <&cru SCLK_OTGPHY0>;
clock-names = "phyclk";
#clock-cells = <0>;
#phy-cells = <0>;
};
usbphy1: usb-phy@188 {
reg = <0x188>;
clocks = <&cru SCLK_OTGPHY1>;
clock-names = "phyclk";
#clock-cells = <0>;
#phy-cells = <0>;
};
};
};
&i2c0 {
pinctrl-names = "default";
pinctrl-0 = <&i2c0_xfer>;
};
&i2c1 {
pinctrl-names = "default";
pinctrl-0 = <&i2c1_xfer>;
};
&i2c2 {
pinctrl-names = "default";
pinctrl-0 = <&i2c2_xfer>;
};
&i2c3 {
pinctrl-names = "default";
pinctrl-0 = <&i2c3_xfer>;
};
&i2c4 {
pinctrl-names = "default";
pinctrl-0 = <&i2c4_xfer>;
};
&mmc0 {
clock-frequency = <50000000>;
dmas = <&dmac2 1>;
dma-names = "rx-tx";
max-frequency = <50000000>;
pinctrl-names = "default";
pinctrl-0 = <&sd0_clk &sd0_cmd &sd0_cd &sd0_bus4>;
};
&mmc1 {
dmas = <&dmac2 3>;
dma-names = "rx-tx";
pinctrl-names = "default";
pinctrl-0 = <&sd1_clk &sd1_cmd &sd1_cd &sd1_bus4>;
};
&emmc {
dmas = <&dmac2 4>;
dma-names = "rx-tx";
};
&pmu {
power: power-controller {
compatible = "rockchip,rk3066-power-controller";
#power-domain-cells = <1>;
#address-cells = <1>;
#size-cells = <0>;
power-domain@RK3066_PD_VIO {
reg = <RK3066_PD_VIO>;
clocks = <&cru ACLK_LCDC0>,
<&cru ACLK_LCDC1>,
<&cru DCLK_LCDC0>,
<&cru DCLK_LCDC1>,
<&cru HCLK_LCDC0>,
<&cru HCLK_LCDC1>,
<&cru SCLK_CIF1>,
<&cru ACLK_CIF1>,
<&cru HCLK_CIF1>,
<&cru SCLK_CIF0>,
<&cru ACLK_CIF0>,
<&cru HCLK_CIF0>,
<&cru HCLK_HDMI>,
<&cru ACLK_IPP>,
<&cru HCLK_IPP>,
<&cru ACLK_RGA>,
<&cru HCLK_RGA>;
pm_qos = <&qos_lcdc0>,
<&qos_lcdc1>,
<&qos_cif0>,
<&qos_cif1>,
<&qos_ipp>,
<&qos_rga>;
#power-domain-cells = <0>;
};
power-domain@RK3066_PD_VIDEO {
reg = <RK3066_PD_VIDEO>;
clocks = <&cru ACLK_VDPU>,
<&cru ACLK_VEPU>,
<&cru HCLK_VDPU>,
<&cru HCLK_VEPU>;
pm_qos = <&qos_vpu>;
#power-domain-cells = <0>;
};
power-domain@RK3066_PD_GPU {
reg = <RK3066_PD_GPU>;
clocks = <&cru ACLK_GPU>;
pm_qos = <&qos_gpu>;
#power-domain-cells = <0>;
};
};
};
&pwm0 {
pinctrl-names = "default";
pinctrl-0 = <&pwm0_out>;
};
&pwm1 {
pinctrl-names = "default";
pinctrl-0 = <&pwm1_out>;
};
&pwm2 {
pinctrl-names = "default";
pinctrl-0 = <&pwm2_out>;
};
&pwm3 {
pinctrl-names = "default";
pinctrl-0 = <&pwm3_out>;
};
&spi0 {
pinctrl-names = "default";
pinctrl-0 = <&spi0_clk &spi0_tx &spi0_rx &spi0_cs0>;
};
&spi1 {
pinctrl-names = "default";
pinctrl-0 = <&spi1_clk &spi1_tx &spi1_rx &spi1_cs0>;
};
&uart0 {
compatible = "rockchip,rk3066-uart", "snps,dw-apb-uart";
dmas = <&dmac1_s 0>, <&dmac1_s 1>;
dma-names = "tx", "rx";
pinctrl-names = "default";
pinctrl-0 = <&uart0_xfer>;
};
&uart1 {
compatible = "rockchip,rk3066-uart", "snps,dw-apb-uart";
dmas = <&dmac1_s 2>, <&dmac1_s 3>;
dma-names = "tx", "rx";
pinctrl-names = "default";
pinctrl-0 = <&uart1_xfer>;
};
&uart2 {
compatible = "rockchip,rk3066-uart", "snps,dw-apb-uart";
dmas = <&dmac2 6>, <&dmac2 7>;
dma-names = "tx", "rx";
pinctrl-names = "default";
pinctrl-0 = <&uart2_xfer>;
};
&uart3 {
compatible = "rockchip,rk3066-uart", "snps,dw-apb-uart";
dmas = <&dmac2 8>, <&dmac2 9>;
dma-names = "tx", "rx";
pinctrl-names = "default";
pinctrl-0 = <&uart3_xfer>;
};
&vpu {
power-domains = <&power RK3066_PD_VIDEO>;
};
&wdt {
compatible = "rockchip,rk3066-wdt", "snps,dw-wdt";
};