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/Documentation/PCI/endpoint/
Dpci-endpoint.rst5 This document is a guide to use the PCI Endpoint Framework in order to create
6 endpoint controller driver, endpoint function driver, and using configfs
19 either in Root Complex mode or Endpoint mode. PCI Endpoint Framework will
20 add endpoint mode support in Linux. This will help to run Linux in an
24 PCI Endpoint Core
27 The PCI Endpoint Core layer comprises 3 components: the Endpoint Controller
28 library, the Endpoint Function library, and the configfs layer to bind the
29 endpoint function with the endpoint controller.
31 PCI Endpoint Controller(EPC) Library
35 in endpoint mode. It also provides APIs to be used by function driver/library
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Dpci-ntb-howto.rst4 PCI Non-Transparent Bridge (NTB) Endpoint Function (EPF) User Guide
13 Documentation/PCI/endpoint/pci-ntb-function.rst
15 Endpoint Device
18 Endpoint Controller Devices
21 For implementing NTB functionality at least two endpoint controller devices
24 To find the list of endpoint controller devices in the system::
35 Endpoint Function Drivers
38 To find the list of endpoint function drivers in the system::
52 PCI endpoint function device can be created using the configfs. To create
62 The PCI endpoint framework populates the directory with the following
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Dpci-endpoint-cfs.rst4 Configuring PCI Endpoint Using CONFIGFS
9 The PCI Endpoint Core exposes configfs entry (pci_ep) to configure the
10 PCI endpoint function and to bind the endpoint function
11 with the endpoint controller. (For introducing other mechanisms to
12 configure the PCI Endpoint Function refer to [1]).
17 The PCI Endpoint Core layer creates pci_ep directory in the mounted configfs
55 used to configure the standard configuration header of the endpoint function.
79 Non-transparent bridge), symlink of endpoint controller connected to primary
80 interface should be added in 'primary' directory and symlink of endpoint
110 represent the functions present in the endpoint device. Only <EPF Device>
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/Documentation/devicetree/bindings/media/
Drenesas,isp.yaml53 Single endpoint describing the R-Car VIN connected to output port 0.
58 Single endpoint describing the R-Car VIN connected to output port 1.
63 Single endpoint describing the R-Car VIN connected to output port 2.
68 Single endpoint describing the R-Car VIN connected to output port 3.
73 Single endpoint describing the R-Car VIN connected to output port 4.
78 Single endpoint describing the R-Car VIN connected to output port 5.
83 Single endpoint describing the R-Car VIN connected to output port 6.
88 Single endpoint describing the R-Car VIN connected to output port 7.
135 isp1csi41: endpoint@1 {
137 remote-endpoint = <&csi41isp1>;
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Drenesas,vin.yaml85 endpoint:
131 Input port node, single endpoint describing a parallel input source.
134 endpoint:
172 endpoint@0:
173 $ref: /schemas/graph.yaml#/properties/endpoint
174 description: Endpoint connected to CSI20.
176 endpoint@1:
177 $ref: /schemas/graph.yaml#/properties/endpoint
178 description: Endpoint connected to CSI21.
180 endpoint@2:
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Drenesas,csi2.yaml59 Input port node, single endpoint describing the CSI-2 transmitter.
62 endpoint:
122 csi20_in: endpoint {
125 remote-endpoint = <&adv7482_txb>;
135 csi20vin0: endpoint@0 {
137 remote-endpoint = <&vin0csi20>;
139 csi20vin1: endpoint@1 {
141 remote-endpoint = <&vin1csi20>;
143 csi20vin2: endpoint@2 {
145 remote-endpoint = <&vin2csi20>;
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Dti,da850-vpif.txt20 with child 'endpoint' node. If there are two ports then port@0 must
34 vpif_input_ch0: endpoint@0 {
37 remote-endpoint = <&composite_in>;
40 vpif_input_ch1: endpoint@1 {
48 vpif_output_ch0: endpoint {
50 remote-endpoint = <&composite_out>;
64 composite_in: endpoint {
70 remote-endpoint = <&vpif_input_ch0>;
81 composite_out: endpoint {
85 remote-endpoint = <&vpif_output_ch0>;
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Dcdns,csi2tx.txt38 in the design. Since there is only one endpoint per port,
60 csi2tx_out: endpoint {
61 remote-endpoint = <&remote_in>;
70 csi2tx_in_stream0: endpoint {
71 remote-endpoint = <&stream0_out>;
78 csi2tx_in_stream1: endpoint {
79 remote-endpoint = <&stream1_out>;
86 csi2tx_in_stream2: endpoint {
87 remote-endpoint = <&stream2_out>;
94 csi2tx_in_stream3: endpoint {
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Dmicrochip,csi2dc.yaml34 This port has an 'endpoint' that can be connected to a sink port of another
80 Input port node, single endpoint describing the input port.
83 endpoint:
86 description: Endpoint connected to input device
103 remote-endpoint: true
109 Output port node, single endpoint describing the output port.
112 endpoint:
115 description: Endpoint connected to output device
126 remote-endpoint: true
156 csi2dc_in: endpoint { /* input from IDI interface */
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Dcdns,csi2rx.yaml79 Input port node, single endpoint describing the CSI-2 transmitter.
82 endpoint:
161 csi2rx_in_sensor: endpoint {
162 remote-endpoint = <&sensor_out_csi2rx>;
171 csi2rx_out_grabber0: endpoint {
172 remote-endpoint = <&grabber0_in_csi2rx>;
179 csi2rx_out_grabber1: endpoint {
180 remote-endpoint = <&grabber1_in_csi2rx>;
187 csi2rx_out_grabber2: endpoint {
188 remote-endpoint = <&grabber2_in_csi2rx>;
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/Documentation/devicetree/bindings/media/i2c/
Dtechwell,tw9900.yaml43 endpoint@0:
44 $ref: /schemas/graph.yaml#/properties/endpoint
47 endpoint@1:
48 $ref: /schemas/graph.yaml#/properties/endpoint
51 endpoint@2:
52 $ref: /schemas/graph.yaml#/properties/endpoint
55 endpoint@3:
56 $ref: /schemas/graph.yaml#/properties/endpoint
61 - endpoint@0
63 - endpoint@1
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Dtvp5150.txt29 port must be linked to an endpoint defined in [1]. The port/connector layout is
33 endpoint@0 -----------> Comp0-Con port
34 endpoint@1 ------+----> Svideo-Con port
36 endpoint@1 ------+
37 endpoint@0 -----------> Comp1-Con port
39 endpoint (video bitstream output at YOUT[0-7] parallel bus)
41 Required Endpoint Properties for parallel synchronization on output port:
70 composite0_to_tvp5150: endpoint {
71 remote-endpoint = <&tvp5150_to_composite0>;
82 composite1_to_tvp5150: endpoint {
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Dti,ds90ub960.yaml130 endpoint:
134 Endpoint for FPD-Link port. If the RX mode for this port is RAW,
143 endpoint:
147 Endpoint for FPD-Link port. If the RX mode for this port is RAW,
156 endpoint:
160 Endpoint for FPD-Link port. If the RX mode for this port is RAW,
169 endpoint:
173 Endpoint for FPD-Link port. If the RX mode for this port is RAW,
182 endpoint:
203 endpoint:
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/Documentation/devicetree/bindings/display/
Dallwinner,sun8i-r40-tcon-top.yaml72 Input endpoint for Mixer 0 mux.
77 Output endpoint for Mixer 0 mux
82 Input endpoint for Mixer 1 mux.
87 Output endpoint for Mixer 1 mux
92 Input endpoint for HDMI mux.
97 Output endpoint for HDMI mux
239 tcon_top_mixer0_in_mixer0: endpoint {
240 remote-endpoint = <&mixer0_out_tcon_top>;
249 tcon_top_mixer0_out_tcon_lcd0: endpoint@0 {
253 tcon_top_mixer0_out_tcon_lcd1: endpoint@1 {
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/Documentation/firmware-guide/acpi/dsd/
Dgraph.rst38 The port and endpoint concepts are very similar to those in Devicetree
40 an endpoint represents a connection to that interface. Also see [data-node-ref]
52 data extension key of the endpoint nodes must begin with
53 "endpoint" and must be followed by the "@" character and the number of the
54 endpoint. The object it refers to should be called "EPXY", where "X" is the
55 number of the port and "Y" is the number of the endpoint. An example of such a
58 Package() { "endpoint@0", "EP40" }
61 the number of the port. Each endpoint is similarly numbered with a property
62 extension key "reg", the value of which is the number of the endpoint. Port
63 numbers must be unique within a device and endpoint numbers must be unique
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/Documentation/devicetree/bindings/display/bridge/
Dtoshiba,tc358775.yaml54 DSI Input. The remote endpoint phandle should be a
58 endpoint:
136 d2l_in_test: endpoint {
137 remote-endpoint = <&dsi0_out>;
144 lvds_out: endpoint {
145 remote-endpoint = <&panel_in>;
161 dsi0_out: endpoint {
162 remote-endpoint = <&d2l_in_test>;
195 d2l_in_dual: endpoint {
196 remote-endpoint = <&dsi0_out_dual>;
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Dtoshiba,tc358767.yaml70 DSI input port. The remote endpoint phandle should be a
71 reference to a valid DSI output endpoint node
74 endpoint:
91 DPI input/output port. The remote endpoint phandle should be a
92 reference to a valid DPI output or input endpoint node.
98 eDP/DP output port. The remote endpoint phandle should be a
99 reference to a valid eDP panel input endpoint node. This port is
103 endpoint:
161 bridge_in_0: endpoint {
162 remote-endpoint = <&dpi_out>;
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Dfsl,imx8qxp-pixel-combiner.yaml62 description: Input endpoint of the display stream.
66 description: Output endpoint of the display stream.
109 dc0_pixel_combiner_ch0_dc0_dpu_disp0: endpoint {
110 remote-endpoint = <&dc0_dpu_disp0_dc0_pixel_combiner_ch0>;
117 dc0_pixel_combiner_ch0_dc0_pixel_link0: endpoint {
118 remote-endpoint = <&dc0_pixel_link0_dc0_pixel_combiner_ch0>;
131 dc0_pixel_combiner_ch1_dc0_dpu_disp1: endpoint {
132 remote-endpoint = <&dc0_dpu_disp1_dc0_pixel_combiner_ch1>;
139 dc0_pixel_combiner_ch1_dc0_pixel_link1: endpoint {
140 remote-endpoint = <&dc0_pixel_link1_dc0_pixel_combiner_ch1>;
Dnwl-dsi.yaml94 display controller. Exactly one endpoint must be
97 endpoint@0:
98 $ref: /schemas/graph.yaml#/properties/endpoint
101 endpoint@1:
102 $ref: /schemas/graph.yaml#/properties/endpoint
107 - endpoint@0
109 - endpoint@1
176 panel_in: endpoint {
177 remote-endpoint = <&mipi_dsi_out>;
190 mipi_dsi_in: endpoint@0 {
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/Documentation/devicetree/bindings/display/ti/
Dti,omap-dss.txt113 tfp410_in: endpoint@0 {
114 remote-endpoint = <&dpi_out>;
121 tfp410_out: endpoint@0 {
122 remote-endpoint = <&dvi_connector_in>;
135 dvi_connector_in: endpoint {
136 remote-endpoint = <&tfp410_out>;
158 tpd12s015_in: endpoint@0 {
159 remote-endpoint = <&hdmi_out>;
166 tpd12s015_out: endpoint@0 {
167 remote-endpoint = <&hdmi_connector_in>;
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/Documentation/devicetree/bindings/usb/
Dnxp,ptn36502.yaml31 description: Super Speed (SS) Output endpoint to the Type-C connector
35 description: Super Speed (SS) Input endpoint from the Super-Speed PHY
40 Sideband Use (SBU) AUX lines endpoint to the Type-C connector for the purpose of
73 usb_con_ss: endpoint {
74 remote-endpoint = <&typec_con_ss>;
79 phy_con_ss: endpoint {
80 remote-endpoint = <&usb_phy_ss>;
85 usb_con_sbu: endpoint {
86 remote-endpoint = <&typec_dp_aux>;
Donnn,nb7vpq904m.yaml32 description: Super Speed (SS) Output endpoint to the Type-C connector
36 description: Super Speed (SS) Input endpoint from the Super-Speed PHY
40 endpoint:
41 $ref: /schemas/graph.yaml#/$defs/endpoint-base
85 Sideband Use (SBU) AUX lines endpoint to the Type-C connector for the purpose of
118 usb_con_ss: endpoint {
119 remote-endpoint = <&typec_con_ss>;
124 phy_con_ss: endpoint {
125 remote-endpoint = <&usb_phy_ss>;
131 usb_con_sbu: endpoint {
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Dgr-udc.txt17 endpoint related interrupts and one for OUT endpoint related interrupts.
22 from the default size of 1024. The array is indexed by the OUT endpoint
24 each OUT endpoint of the core. Fewer entries overrides the default sizes
28 from the default size of 1024. The array is indexed by the IN endpoint
30 each IN endpoint of the core. Fewer entries overrides the default sizes
Dgpio-sbu-mux.yaml77 tcpm_hs_out: endpoint {
78 remote-endpoint = <&usb_hs_phy_in>;
84 tcpm_ss_out: endpoint {
85 remote-endpoint = <&usb_ss_phy_in>;
91 tcpm_sbu_out: endpoint {
92 remote-endpoint = <&sbu_mux_in>;
109 sbu_mux_in: endpoint {
110 remote-endpoint = <&tcpm_sbu_out>;
/Documentation/devicetree/bindings/mfd/
Dfsl,imx8qxp-csr.yaml100 mipi_lvds_0_pxl2dpi_dc0_pixel_link0: endpoint@0 {
102 remote-endpoint = <&dc0_pixel_link0_mipi_lvds_0_pxl2dpi>;
105 mipi_lvds_0_pxl2dpi_dc0_pixel_link1: endpoint@1 {
107 remote-endpoint = <&dc0_pixel_link1_mipi_lvds_0_pxl2dpi>;
116 mipi_lvds_0_pxl2dpi_mipi_lvds_0_ldb_ch0: endpoint@0 {
118 remote-endpoint = <&mipi_lvds_0_ldb_ch0_mipi_lvds_0_pxl2dpi>;
121 mipi_lvds_0_pxl2dpi_mipi_lvds_0_ldb_ch1: endpoint@1 {
123 remote-endpoint = <&mipi_lvds_0_ldb_ch1_mipi_lvds_0_pxl2dpi>;
148 mipi_lvds_0_ldb_ch0_mipi_lvds_0_pxl2dpi: endpoint {
149 remote-endpoint = <&mipi_lvds_0_pxl2dpi_mipi_lvds_0_ldb_ch0>;
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