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As defined by Documentation/devicetree/bindings/pci/pci-ep.yaml, PCIe endpoints match this pattern: properties: $nodename: pattern: "^pcie-ep@" Change the existing ones in the DT bindings examples to avoid warnings during DT bindings validation. Signed-off-by: Mauro Carvalho Chehab <mchehab+huawei@kernel.org> Acked-by: Rob Herring <robh@kernel.org> Signed-off-by: Thierry Reding <treding@nvidia.com>
246 lines
9.9 KiB
Plaintext
246 lines
9.9 KiB
Plaintext
NVIDIA Tegra PCIe controller (Synopsys DesignWare Core based)
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This PCIe controller is based on the Synopsis Designware PCIe IP
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and thus inherits all the common properties defined in snps,dw-pcie.yaml and
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snps,dw-pcie-ep.yaml.
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Some of the controller instances are dual mode where in they can work either
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in root port mode or endpoint mode but one at a time.
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Required properties:
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- power-domains: A phandle to the node that controls power to the respective
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PCIe controller and a specifier name for the PCIe controller. Following are
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the specifiers for the different PCIe controllers
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TEGRA194_POWER_DOMAIN_PCIEX8B: C0
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TEGRA194_POWER_DOMAIN_PCIEX1A: C1
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TEGRA194_POWER_DOMAIN_PCIEX1A: C2
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TEGRA194_POWER_DOMAIN_PCIEX1A: C3
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TEGRA194_POWER_DOMAIN_PCIEX4A: C4
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TEGRA194_POWER_DOMAIN_PCIEX8A: C5
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these specifiers are defined in
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"include/dt-bindings/power/tegra194-powergate.h" file.
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- reg: A list of physical base address and length pairs for each set of
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controller registers. Must contain an entry for each entry in the reg-names
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property.
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- reg-names: Must include the following entries:
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"appl": Controller's application logic registers
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"config": As per the definition in snps,dw-pcie.yaml
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"atu_dma": iATU and DMA registers. This is where the iATU (internal Address
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Translation Unit) registers of the PCIe core are made available
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for SW access.
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"dbi": The aperture where root port's own configuration registers are
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available
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- interrupts: A list of interrupt outputs of the controller. Must contain an
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entry for each entry in the interrupt-names property.
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- interrupt-names: Must include the following entries:
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"intr": The Tegra interrupt that is asserted for controller interrupts
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- clocks: Must contain an entry for each entry in clock-names.
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See ../clocks/clock-bindings.txt for details.
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- clock-names: Must include the following entries:
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- core
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- resets: Must contain an entry for each entry in reset-names.
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See ../reset/reset.txt for details.
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- reset-names: Must include the following entries:
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- apb
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- core
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- phys: Must contain a phandle to P2U PHY for each entry in phy-names.
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- phy-names: Must include an entry for each active lane.
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"p2u-N": where N ranges from 0 to one less than the total number of lanes
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- nvidia,bpmp: Must contain a pair of phandle to BPMP controller node followed
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by controller-id. Following are the controller ids for each controller.
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0: C0
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1: C1
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2: C2
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3: C3
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4: C4
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5: C5
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- vddio-pex-ctl-supply: Regulator supply for PCIe side band signals
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RC mode:
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- compatible: Tegra19x must contain "nvidia,tegra194-pcie"
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- device_type: Must be "pci" for RC mode
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- interrupt-names: Must include the following entries:
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"msi": The Tegra interrupt that is asserted when an MSI is received
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- bus-range: Range of bus numbers associated with this controller
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- #address-cells: Address representation for root ports (must be 3)
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- cell 0 specifies the bus and device numbers of the root port:
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[23:16]: bus number
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[15:11]: device number
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- cell 1 denotes the upper 32 address bits and should be 0
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- cell 2 contains the lower 32 address bits and is used to translate to the
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CPU address space
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- #size-cells: Size representation for root ports (must be 2)
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- ranges: Describes the translation of addresses for root ports and standard
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PCI regions. The entries must be 7 cells each, where the first three cells
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correspond to the address as described for the #address-cells property
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above, the fourth and fifth cells are for the physical CPU address to
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translate to and the sixth and seventh cells are as described for the
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#size-cells property above.
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- Entries setup the mapping for the standard I/O, memory and
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prefetchable PCI regions. The first cell determines the type of region
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that is setup:
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- 0x81000000: I/O memory region
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- 0x82000000: non-prefetchable memory region
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- 0xc2000000: prefetchable memory region
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Please refer to the standard PCI bus binding document for a more detailed
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explanation.
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- #interrupt-cells: Size representation for interrupts (must be 1)
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- interrupt-map-mask and interrupt-map: Standard PCI IRQ mapping properties
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Please refer to the standard PCI bus binding document for a more detailed
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explanation.
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EP mode:
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In Tegra194, Only controllers C0, C4 & C5 support EP mode.
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- compatible: Tegra19x must contain "nvidia,tegra194-pcie-ep"
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- reg-names: Must include the following entries:
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"addr_space": Used to map remote RC address space
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- reset-gpios: Must contain a phandle to a GPIO controller followed by
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GPIO that is being used as PERST input signal. Please refer to pci.txt
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document.
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Optional properties:
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- pinctrl-names: A list of pinctrl state names.
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It is mandatory for C5 controller and optional for other controllers.
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- "default": Configures PCIe I/O for proper operation.
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- pinctrl-0: phandle for the 'default' state of pin configuration.
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It is mandatory for C5 controller and optional for other controllers.
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- supports-clkreq: Refer to Documentation/devicetree/bindings/pci/pci.txt
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- nvidia,update-fc-fixup: This is a boolean property and needs to be present to
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improve performance when a platform is designed in such a way that it
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satisfies at least one of the following conditions thereby enabling root
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port to exchange optimum number of FC (Flow Control) credits with
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downstream devices
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1. If C0/C4/C5 run at x1/x2 link widths (irrespective of speed and MPS)
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2. If C0/C1/C2/C3/C4/C5 operate at their respective max link widths and
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a) speed is Gen-2 and MPS is 256B
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b) speed is >= Gen-3 with any MPS
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- nvidia,aspm-cmrt-us: Common Mode Restore Time for proper operation of ASPM
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to be specified in microseconds
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- nvidia,aspm-pwr-on-t-us: Power On time for proper operation of ASPM to be
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specified in microseconds
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- nvidia,aspm-l0s-entrance-latency-us: ASPM L0s entrance latency to be
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specified in microseconds
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RC mode:
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- vpcie3v3-supply: A phandle to the regulator node that supplies 3.3V to the slot
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if the platform has one such slot. (Ex:- x16 slot owned by C5 controller
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in p2972-0000 platform).
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- vpcie12v-supply: A phandle to the regulator node that supplies 12V to the slot
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if the platform has one such slot. (Ex:- x16 slot owned by C5 controller
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in p2972-0000 platform).
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EP mode:
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- nvidia,refclk-select-gpios: Must contain a phandle to a GPIO controller
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followed by GPIO that is being used to enable REFCLK to controller from host
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NOTE:- On Tegra194's P2972-0000 platform, only C5 controller can be enabled to
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operate in the endpoint mode because of the way the platform is designed.
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Examples:
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=========
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Tegra194 RC mode:
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-----------------
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pcie@14180000 {
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compatible = "nvidia,tegra194-pcie";
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power-domains = <&bpmp TEGRA194_POWER_DOMAIN_PCIEX8B>;
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reg = <0x00 0x14180000 0x0 0x00020000 /* appl registers (128K) */
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0x00 0x38000000 0x0 0x00040000 /* configuration space (256K) */
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0x00 0x38040000 0x0 0x00040000>; /* iATU_DMA reg space (256K) */
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reg-names = "appl", "config", "atu_dma";
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#address-cells = <3>;
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#size-cells = <2>;
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device_type = "pci";
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num-lanes = <8>;
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linux,pci-domain = <0>;
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pinctrl-names = "default";
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pinctrl-0 = <&pex_rst_c5_out_state>, <&clkreq_c5_bi_dir_state>;
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clocks = <&bpmp TEGRA194_CLK_PEX0_CORE_0>;
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clock-names = "core";
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resets = <&bpmp TEGRA194_RESET_PEX0_CORE_0_APB>,
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<&bpmp TEGRA194_RESET_PEX0_CORE_0>;
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reset-names = "apb", "core";
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interrupts = <GIC_SPI 72 IRQ_TYPE_LEVEL_HIGH>, /* controller interrupt */
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<GIC_SPI 73 IRQ_TYPE_LEVEL_HIGH>; /* MSI interrupt */
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interrupt-names = "intr", "msi";
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#interrupt-cells = <1>;
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interrupt-map-mask = <0 0 0 0>;
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interrupt-map = <0 0 0 0 &gic GIC_SPI 72 IRQ_TYPE_LEVEL_HIGH>;
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nvidia,bpmp = <&bpmp 0>;
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supports-clkreq;
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nvidia,aspm-cmrt-us = <60>;
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nvidia,aspm-pwr-on-t-us = <20>;
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nvidia,aspm-l0s-entrance-latency-us = <3>;
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bus-range = <0x0 0xff>;
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ranges = <0x81000000 0x0 0x38100000 0x0 0x38100000 0x0 0x00100000 /* downstream I/O (1MB) */
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0x82000000 0x0 0x38200000 0x0 0x38200000 0x0 0x01E00000 /* non-prefetchable memory (30MB) */
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0xc2000000 0x18 0x00000000 0x18 0x00000000 0x4 0x00000000>; /* prefetchable memory (16GB) */
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vddio-pex-ctl-supply = <&vdd_1v8ao>;
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vpcie3v3-supply = <&vdd_3v3_pcie>;
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vpcie12v-supply = <&vdd_12v_pcie>;
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phys = <&p2u_hsio_2>, <&p2u_hsio_3>, <&p2u_hsio_4>,
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<&p2u_hsio_5>;
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phy-names = "p2u-0", "p2u-1", "p2u-2", "p2u-3";
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};
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Tegra194 EP mode:
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-----------------
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pcie-ep@141a0000 {
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compatible = "nvidia,tegra194-pcie-ep", "snps,dw-pcie-ep";
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power-domains = <&bpmp TEGRA194_POWER_DOMAIN_PCIEX8A>;
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reg = <0x00 0x141a0000 0x0 0x00020000 /* appl registers (128K) */
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0x00 0x3a040000 0x0 0x00040000 /* iATU_DMA reg space (256K) */
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0x00 0x3a080000 0x0 0x00040000 /* DBI reg space (256K) */
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0x1c 0x00000000 0x4 0x00000000>; /* Address Space (16G) */
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reg-names = "appl", "atu_dma", "dbi", "addr_space";
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num-lanes = <8>;
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num-ib-windows = <2>;
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num-ob-windows = <8>;
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pinctrl-names = "default";
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pinctrl-0 = <&clkreq_c5_bi_dir_state>;
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clocks = <&bpmp TEGRA194_CLK_PEX1_CORE_5>;
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clock-names = "core";
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resets = <&bpmp TEGRA194_RESET_PEX1_CORE_5_APB>,
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<&bpmp TEGRA194_RESET_PEX1_CORE_5>;
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reset-names = "apb", "core";
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interrupts = <GIC_SPI 53 IRQ_TYPE_LEVEL_HIGH>; /* controller interrupt */
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interrupt-names = "intr";
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nvidia,bpmp = <&bpmp 5>;
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nvidia,aspm-cmrt-us = <60>;
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nvidia,aspm-pwr-on-t-us = <20>;
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nvidia,aspm-l0s-entrance-latency-us = <3>;
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vddio-pex-ctl-supply = <&vdd_1v8ao>;
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reset-gpios = <&gpio TEGRA194_MAIN_GPIO(GG, 1) GPIO_ACTIVE_LOW>;
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nvidia,refclk-select-gpios = <&gpio_aon TEGRA194_AON_GPIO(AA, 5)
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GPIO_ACTIVE_HIGH>;
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phys = <&p2u_nvhs_0>, <&p2u_nvhs_1>, <&p2u_nvhs_2>,
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<&p2u_nvhs_3>, <&p2u_nvhs_4>, <&p2u_nvhs_5>,
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<&p2u_nvhs_6>, <&p2u_nvhs_7>;
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phy-names = "p2u-0", "p2u-1", "p2u-2", "p2u-3", "p2u-4",
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"p2u-5", "p2u-6", "p2u-7";
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};
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