infineon,hppass-csg-comp
Description
Infineon HPPASS CSG comparator.
One instance represents the comparator inside a CSG slice. This
node must be a child of an "infineon,hppass-csg" CSG MFD parent.
The comparator's negative input may select either the paired in-slice
DAC output or one of two external analog inputs (AIN_NA, AIN_NB):
- When negative-input = "dac", the paired DAC must also be configured
and enabled.
- When negative-input = "ain-na" or "ain-nb", the comparator operates
as a standalone analog-only comparator and the paired DAC is unused.
The CSG MFD parent owns the combined comparator interrupt and dispatches
callbacks.
Properties
Properties not inherited from the base binding file.
Name |
Type |
Details |
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Selects the comparator's positive input source (CMP_CFG.CMP_POS_SEL):
- "ain-pa": external analog input AIN_PA
- "ain-pb": external analog input AIN_PB
This property is required. Legal values: |
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Selects the comparator's negative input source (CMP_CFG.CMP_NEG_SEL):
- "dac": paired in-slice DAC output (default operating mode)
- "ain-na": external analog input AIN_NA (standalone comparator)
- "ain-nb": external analog input AIN_NB (standalone comparator)
This property is required. Legal values: |
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Invert the digital comparator output before edge detection, blanking
and status visibility (CMP_CFG.CMP_POLARITY).
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Comparator output blanking mode (CMP_CFG.CMP_BLANK_MODE).
Blanking gates the comparator output to inactive while a selected
external trigger is asserted, preventing a trip on a transient condition.
- "disabled": no blanking applied
- "gate-on-one": comparator output is forced inactive while the
selected blanking trigger is high
- "gate-on-zero": comparator output is forced inactive while the
selected blanking trigger is low
Default value: Legal values: |
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Selects which HPPASS trigger input gates the comparator output when
blank-mode is enabled (CMP_CFG.CMP_BLANK_TR_SEL). Trigger sources
"tr0".."tr7" correspond to the eight HPPASS trigger inputs
configured on the parent "infineon,hppass-analog" node.
Default value: Legal values: |
Deprecated properties not inherited from the base binding file.
(None)
Properties inherited from the base binding file, which defines common properties that may be set on many nodes. Not all of these may apply to the “infineon,hppass-csg-comp” compatible.
Name |
Type |
Details |
|---|---|---|
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Register region for this slice's CMP_CFG within the CSG block.
Slice index is derived at compile time from the offset divided
by the CSG slice stride.
This property is required. See Important properties for more information. |
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Indicates the operational status of the hardware or other
resource that the node represents. In particular:
- "okay" means the resource is operational and, for example,
can be used by device drivers
- "disabled" means the resource is not operational and the system
should treat it as if it is not present
For details, see "2.3.4 status" in Devicetree Specification v0.4.
Legal values: See Important properties for more information. |
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This property is a list of strings that essentially define what
type of hardware or other resource this devicetree node
represents. Each device driver checks for specific compatible
property values to find the devicetree nodes that represent
resources that the driver should manage.
The recommended format is "vendor,device", The "vendor" part is
an abbreviated name of the vendor. The "device" is usually from
the datasheet.
The compatible property can have multiple values, ordered from
most- to least-specific. Having additional values is useful when the
device is a specific instance of a more general family, to allow the
system to match the most specific driver available.
For details, see "2.3.1 compatible" in Devicetree Specification v0.4.
This property is required. See Important properties for more information. |
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Optional names given to each register block in the "reg" property.
For example:
/ {
soc {
#address-cells = <1>;
#size-cells = <1>;
uart@1000 {
reg = <0x1000 0x2000>, <0x3000 0x4000>;
reg-names = "foo", "bar";
};
};
};
The uart@1000 node has two register blocks:
- one with base address 0x1000, size 0x2000, and name "foo"
- another with base address 0x3000, size 0x4000, and name "bar"
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Information used to define a mapping (or translation) between the address
space of a bus (the "child address space") and the address space of the
bus node's parent (the "parent address space").
The "ranges" property is typically empty, or a sequence of triplets
(child bus address, parent bus address, length).
If the "ranges" property is empty, it specifies that the parent and child
address spaces are identical and no address translation is required.
If the "ranges" property is not present in a bus node, it is assumed that
no mapping exists between children of the node and the parent address space.
For details, see "2.3.8 ranges" in Devicetree Specification v0.4.
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Information about interrupts generated by the device, encoded as an array
of one or more interrupt specifiers. The format of the data in this property
varies by where the device appears in the interrupt tree. Devices with the same
"interrupt-parent" will use the same format in their interrupts properties.
For details, see "2.4 Interrupts and Interrupt Mapping" in
Devicetree Specification v0.4.
See Important properties for more information. |
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Extended interrupt specifier for device, used as an alternative to
the "interrupts" property.
For details, see "2.4 Interrupts and Interrupt Mapping" in
Devicetree Specification v0.4.
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Optional names given to each interrupt generated by a device.
The interrupts themselves are defined in either "interrupts" or
"interrupts-extended" properties.
For details, see "2.4 Interrupts and Interrupt Mapping" in
Devicetree Specification v0.4.
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If present, this refers to the node which handles interrupts generated
by this device.
For details, see "2.4 Interrupts and Interrupt Mapping" in
Devicetree Specification v0.4.
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Human readable string describing the device. Use of this property is
deprecated except as needed on a case-by-case basis.
For details, see "4.1.2 Miscellaneous Properties" in Devicetree
Specification v0.4.
See Important properties for more information. |
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Information about the device's clock providers. In general, this property
should follow conventions established in the dt-schema binding:
https://github.com/devicetree-org/dt-schema/blob/main/dtschema/schemas/clock/clock.yaml
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Optional names given to each clock provider in the "clocks" property.
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This property encodes the number of <u32> cells used by address fields
in "reg" properties in this node's children.
For details, see "2.3.5 #address-cells and #size-cells" in Devicetree
Specification v0.4.
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This property encodes the number of <u32> cells used by size fields in
"reg" properties in this node's children.
For details, see "2.3.5 #address-cells and #size-cells" in Devicetree
Specification v0.4.
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Indicates that the device is capable of coherent DMA operations.
For details, see "2.3.10 dma-coherent" in Devicetree Specification v0.4.
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DMA channel specifiers relevant to the device.
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Optional names given to the DMA channel specifiers in the "dmas" property.
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IO channel specifiers relevant to the device.
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Optional names given to the IO channel specifiers in the "io-channels" property.
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Mailbox / IPM channel specifiers relevant to the device.
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Optional names given to the mbox specifiers in the "mboxes" property.
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Power domain specifiers relevant to the device.
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Optional names given to the power domain specifiers in the "power-domains" property.
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Number of cells in power-domains property
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HW spinlock id relevant to the device.
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Optional names given to the hwlock specifiers in the "hwlocks" property.
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Do not initialize device automatically on boot. Device should be manually
initialized using device_init().
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Property to identify that a device can be used as wake up source.
When this property is provided a specific flag is set into the
device that tells the system that the device is capable of
wake up the system.
Wake up capable devices are disabled (interruptions will not wake up
the system) by default but they can be enabled at runtime if necessary.
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Automatically configure the device for runtime power management after the
init function runs.
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List of power states that will disable this device power.
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