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/Documentation/devicetree/bindings/remoteproc/
Dqcom,smd-edge.yaml4 $id: http://devicetree.org/schemas/remoteproc/qcom,smd-edge.yaml#
7 title: Qualcomm SMD Edge communication channel nodes
14 some sort - or in SMD language an "edge". The name of the edges are not
18 that "edge". The names of the devices are not important. The properties of
24 const: smd-edge
45 Name of the edge, used for debugging and identification purposes. The
66 qcom,smd-edge:
94 - qcom,smd-edge
112 smd-edge {
116 qcom,smd-edge = <1>;
Dqcom,pas-common.yaml66 smd-edge:
67 $ref: /schemas/remoteproc/qcom,smd-edge.yaml#
69 Qualcomm Shared Memory subnode which represents communication edge,
73 glink-edge:
74 $ref: /schemas/remoteproc/qcom,glink-edge.yaml#
76 Qualcomm G-Link subnode which represents communication edge, channels
Dqcom,glink-edge.yaml4 $id: http://devicetree.org/schemas/remoteproc/qcom,glink-edge.yaml#
7 title: Qualcomm G-Link Edge communication channel nodes
13 Qualcomm G-Link subnode represents communication edge, channels and devices
43 Name of the edge, used for debugging and identification purposes. The
87 glink-edge {
Dqcom,glink-rpm-edge.yaml4 $id: http://devicetree.org/schemas/remoteproc/qcom,glink-rpm-edge.yaml#
7 title: Qualcomm G-Link RPM edge
10 Qualcomm G-Link edge, a FIFO based mechanism for communication with Resource
22 Name of the edge, used for debugging and identification purposes. The
86 glink-edge {
Dqcom,msm8996-mss-pil.yaml134 smd-edge:
135 $ref: /schemas/remoteproc/qcom,smd-edge.yaml#
137 Qualcomm Shared Memory subnode which represents communication edge,
141 glink-edge:
142 $ref: /schemas/remoteproc/qcom,glink-edge.yaml#
144 Qualcomm G-Link subnode which represents communication edge, channels
236 - smd-edge
240 smd-edge: false
271 - glink-edge
309 - glink-edge
[all …]
Dqcom,rpm-proc.yaml95 smd-edge:
96 $ref: /schemas/remoteproc/qcom,smd-edge.yaml#
98 Qualcomm Shared Memory subnode which represents communication edge,
101 glink-edge:
102 $ref: /schemas/remoteproc/qcom,glink-rpm-edge.yaml#
104 Qualcomm G-Link subnode which represents communication edge,
124 - smd-edge
126 - glink-edge
139 smd-edge {
142 qcom,smd-edge = <15>;
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/Documentation/gpu/dp-mst/
Dtopology-figure-3.dot6 edge [dir=none];
9 edge [dir=""];
13 edge [style=dashed];
20 edge [style=""];
29 edge [color=grey];
32 edge [color=""];
35 edge [style=dashed;dir=back];
40 edge [color=grey];
Dtopology-figure-2.dot10 edge [style=dashed];
18 edge [style=""];
27 edge [color=red];
30 edge [color=""];
33 edge [style=dashed;dir=back];
37 edge [color=red];
/Documentation/userspace-api/gpio/
Dgpio-v2-line-event-read.rst12 GPIO_V2_LINE_EVENT_READ - Read edge detection events for lines from a request.
36 Read edge detection events for lines from a request.
38 Edge detection must be enabled for the input line using either
40 both. Edge events are then generated whenever edge interrupts are detected on
44 to active transition is a rising edge. If ``GPIO_V2_LINE_FLAG_ACTIVE_LOW`` is
46 ``GPIO_V2_LINE_FLAG_EDGE_RISING`` then corresponds to a falling physical edge.
48 The kernel captures and timestamps edge events as close as possible to their
71 Changing the edge detection flags using gpio-v2-line-set-config-ioctl.rst
Dgpio-lineevent-data-read.rst16 GPIO_LINEEVENT_DATA_READ - Read edge detection events from a line event.
40 Read edge detection events for a line from a line event.
42 Edge detection must be enabled for the input line using either
44 both. Edge events are then generated whenever edge interrupts are detected on
48 to active transition is a rising edge. If ``GPIOHANDLE_REQUEST_ACTIVE_LOW`` is
50 ``GPIOEVENT_REQUEST_RISING_EDGE`` then corresponds to a falling physical edge.
52 The kernel captures and timestamps edge events as close as possible to their
Dgpio-get-lineevent-ioctl.rst16 GPIO_GET_LINEEVENT_IOCTL - Request a line with edge detection from the kernel.
38 Request a line with edge detection from the kernel.
51 Requesting edge detection on a line that does not support interrupts is an
71 The edge flags, ``GPIOEVENT_REQUEST_RISING_EDGE`` and
/Documentation/devicetree/bindings/net/
Dmscc-phy-vsc8531.txt7 with the 'edge-slowdown' property.
9 - vsc8531,edge-slowdown : % the edge should be slowed down relative to
10 the fastest possible edge time.
11 Edge rate sets the drive strength of the MAC
13 drive strength will affect the edge rate of
17 and in effect slow down the edge rate if
19 To adjust the edge-slowdown, the 'vddmac'
21 supported edge-slowdown values for a given
24 Ref: Table:1 - Edge rate change (below).
38 Table: 1 - Edge rate change
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/Documentation/devicetree/bindings/gpio/
Dcavium-octeon-gpio.txt21 1 - edge triggered on the rising edge.
22 2 - edge triggered on the falling edge
37 * 2) Triggering (1 - edge rising
38 * 2 - edge falling
/Documentation/devicetree/bindings/soc/fsl/cpm_qe/
Dfsl,cpm1-tsa.yaml96 fsl,clock-falling-edge:
99 Data is sent on falling edge of the clock (and received on the rising
100 edge). If 'clock-falling-edge' is not present, data is sent on the
101 rising edge (and received on the falling edge).
103 fsl,fsync-rising-edge:
106 Frame sync pulses are sampled with the rising edge of the channel
107 clock. If 'fsync-rising-edge' is not present, pulses are sampled with
108 the falling edge.
193 fsl,fsync-rising-edge;
Dfsl,qe-tsa.yaml96 fsl,clock-falling-edge:
99 Data is sent on falling edge of the clock (and received on the rising
100 edge). If not present, data is sent on the rising edge (and received
101 on the falling edge).
103 fsl,fsync-rising-edge:
106 Frame sync pulses are sampled with the rising edge of the channel
107 clock. If not present, pulses are sampled with the falling edge.
198 fsl,fsync-rising-edge;
/Documentation/devicetree/bindings/pps/
Dpps-gpio.yaml27 assert-falling-edge:
28 description: Indicates a falling edge assert, when present. Rising edge if absent.
46 assert-falling-edge;
/Documentation/devicetree/bindings/iio/adc/
Dst,stm32-dfsdm-adc.yaml132 - "SPI_R": SPI with data on rising edge (default)
133 - "SPI_F": SPI with data on falling edge
134 - "MANCH_R": manchester codec, rising edge = logic 0, falling edge = logic 1
135 - "MANCH_F": manchester codec, rising edge = logic 1, falling edge = logic 0
146 - "CLKOUT_F": internal SPI clock divided by 2 (falling edge).
147 - "CLKOUT_R": internal SPI clock divided by 2 (rising edge).
200 - "SPI_R": SPI with data on rising edge (default)
201 - "SPI_F": SPI with data on falling edge
202 - "MANCH_R": manchester codec, rising edge = logic 0, falling edge = logic 1
203 - "MANCH_F": manchester codec, rising edge = logic 1, falling edge = logic 0
[all …]
Datmel,sama5d2-adc.yaml43 atmel,trigger-edge-type:
46 One of possible edge types for the ADTRG hardware trigger pin.
47 When the specific edge type is detected, the conversion will
94 atmel,trigger-edge-type = <IRQ_TYPE_EDGE_BOTH>;
/Documentation/devicetree/bindings/soc/qcom/
Dqcom,smd.yaml29 "^smd-edge|rpm$":
30 $ref: /schemas/remoteproc/qcom,smd-edge.yaml#
34 processor of some sort - or in SMD language an "edge". The name of the
43 # The following example represents a smd node, with one edge representing the
56 qcom,smd-edge = <15>;
/Documentation/devicetree/bindings/sound/
Dti,tlv320adcx140.yaml65 ti,pdm-edge-select:
67 Defines the PDMCLK sampling edge configuration for the PDM inputs. This
70 0 - (default) Odd channel is latched on the negative edge and even
71 channel is latched on the positive edge.
72 1 - Odd channel is latched on the positive edge and even channel is
73 latched on the negative edge.
75 PDMIN1 - PDMCLK latching edge used for channel 1 and 2 data
76 PDMIN2 - PDMCLK latching edge used for channel 3 and 4 data
77 PDMIN3 - PDMCLK latching edge used for channel 5 and 6 data
78 PDMIN4 - PDMCLK latching edge used for channel 7 and 8 data
[all …]
Dcirrus,cs42l43.yaml133 Time in milliseconds a falling edge on the tip detect should be hardware
134 debounced for. Note the falling edge is considered after the invert.
140 Time in milliseconds a rising edge on the tip detect should be hardware
141 debounced for. Note the rising edge is considered after the invert.
163 Time in milliseconds a falling edge on the ring detect should be hardware
164 debounced for. Note the falling edge is considered after the invert.
170 Time in milliseconds a rising edge on the ring detect should be hardware
171 debounced for. Note the rising edge is considered after the invert.
/Documentation/devicetree/bindings/power/reset/
Dgpio-restart.yaml15 This binding supports level and edge triggered reset. At driver load time, the driver will
22 This will also cause an inactive->active edge condition, triggering positive edge triggered
24 active->inactive edge, triggering negative edge triggered reset. After a delay specified by
/Documentation/devicetree/bindings/display/bridge/
Dti,tfp410.yaml50 Endpoint sampling edge.
52 - 0 # Falling edge
53 - 1 # Rising edge
60 - 12 # 12 data lines connected and dual-edge mode
61 - 24 # 24 data lines connected and single-edge mode
/Documentation/devicetree/bindings/display/panel/
Dpanel-timing.yaml170 Data driving on rising or falling edge.
171 Use 0 to drive pixel data on falling edge and
172 sample data on rising edge.
173 Use 1 to drive pixel data on rising edge and
174 sample data on falling edge
180 Drive sync on rising or sample sync on falling edge.
182 Use 0 to drive sync on falling edge and
183 sample sync on rising edge of pixel clock.
184 Use 1 to drive sync on rising edge and
185 sample sync on falling edge of pixel clock
/Documentation/ABI/testing/
Dsysfs-bus-coresight-devices-tpdm66 (RW) Set/Get the index number of the edge detection for the DSB
67 subunit TPDM. Since there are at most 256 edge detections, this
75 Write a data to control the edge detection corresponding to
78 number of the edge detection which needs to be controlled.
81 0 - Rising edge detection
82 1 - Falling edge detection
83 2 - Rising and falling edge detection (toggle detection)
91 Write a data to mask the edge detection corresponding to the index
93 be written first to configure the index number of the edge detection
103 Read a set of the edge control value of the DSB in TPDM.
[all …]

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