pub struct FacetSpec {
    pub facet_key: Option<FacetKey>,
    pub limit: i32,
    pub excluded_filter_keys: Vec<String>,
    pub enable_dynamic_position: bool,
}
Expand description

A facet specification to perform faceted search.

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§facet_key: Option<FacetKey>

Required. The facet key specification.

§limit: i32

Maximum of facet values that should be returned for this facet. If unspecified, defaults to 20. The maximum allowed value is 300. Values above 300 are coerced to 300.

If this field is negative, an INVALID_ARGUMENT is returned.

§excluded_filter_keys: Vec<String>

List of keys to exclude when faceting.

By default, [FacetKey.key][google.cloud.discoveryengine.v1beta.SearchRequest.FacetSpec.FacetKey.key] is not excluded from the filter unless it is listed in this field.

Listing a facet key in this field allows its values to appear as facet results, even when they are filtered out of search results. Using this field does not affect what search results are returned.

For example, suppose there are 100 documents with the color facet “Red” and 200 documents with the color facet “Blue”. A query containing the filter “color:ANY(“Red”)“ and having “color” as [FacetKey.key][google.cloud.discoveryengine.v1beta.SearchRequest.FacetSpec.FacetKey.key] would by default return only “Red” documents in the search results, and also return “Red” with count 100 as the only color facet. Although there are also blue documents available, “Blue” would not be shown as an available facet value.

If “color” is listed in “excludedFilterKeys”, then the query returns the facet values “Red” with count 100 and “Blue” with count 200, because the “color” key is now excluded from the filter. Because this field doesn’t affect search results, the search results are still correctly filtered to return only “Red” documents.

A maximum of 100 values are allowed. Otherwise, an INVALID_ARGUMENT error is returned.

§enable_dynamic_position: bool

Enables dynamic position for this facet. If set to true, the position of this facet among all facets in the response is determined automatically. If dynamic facets are enabled, it is ordered together. If set to false, the position of this facet in the response is the same as in the request, and it is ranked before the facets with dynamic position enable and all dynamic facets.

For example, you may always want to have rating facet returned in the response, but it’s not necessarily to always display the rating facet at the top. In that case, you can set enable_dynamic_position to true so that the position of rating facet in response is determined automatically.

Another example, assuming you have the following facets in the request:

  • “rating”, enable_dynamic_position = true

  • “price”, enable_dynamic_position = false

  • “brands”, enable_dynamic_position = false

And also you have a dynamic facets enabled, which generates a facet gender. Then the final order of the facets in the response can be (“price”, “brands”, “rating”, “gender”) or (“price”, “brands”, “gender”, “rating”) depends on how API orders “gender” and “rating” facets. However, notice that “price” and “brands” are always ranked at first and second position because their enable_dynamic_position is false.

Trait Implementations§

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impl Clone for FacetSpec

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fn clone(&self) -> FacetSpec

Returns a copy of the value. Read more
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fn clone_from(&mut self, source: &Self)

Performs copy-assignment from source. Read more
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impl Debug for FacetSpec

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fn fmt(&self, f: &mut Formatter<'_>) -> Result

Formats the value using the given formatter. Read more
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impl Default for FacetSpec

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fn default() -> Self

Returns the “default value” for a type. Read more
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impl Message for FacetSpec

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fn encoded_len(&self) -> usize

Returns the encoded length of the message without a length delimiter.
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fn clear(&mut self)

Clears the message, resetting all fields to their default.
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fn encode<B>(&self, buf: &mut B) -> Result<(), EncodeError>
where B: BufMut, Self: Sized,

Encodes the message to a buffer. Read more
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fn encode_to_vec(&self) -> Vec<u8>
where Self: Sized,

Encodes the message to a newly allocated buffer.
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fn encode_length_delimited<B>(&self, buf: &mut B) -> Result<(), EncodeError>
where B: BufMut, Self: Sized,

Encodes the message with a length-delimiter to a buffer. Read more
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fn encode_length_delimited_to_vec(&self) -> Vec<u8>
where Self: Sized,

Encodes the message with a length-delimiter to a newly allocated buffer.
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fn decode<B>(buf: B) -> Result<Self, DecodeError>
where B: Buf, Self: Default,

Decodes an instance of the message from a buffer. Read more
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fn decode_length_delimited<B>(buf: B) -> Result<Self, DecodeError>
where B: Buf, Self: Default,

Decodes a length-delimited instance of the message from the buffer.
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fn merge<B>(&mut self, buf: B) -> Result<(), DecodeError>
where B: Buf, Self: Sized,

Decodes an instance of the message from a buffer, and merges it into self. Read more
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fn merge_length_delimited<B>(&mut self, buf: B) -> Result<(), DecodeError>
where B: Buf, Self: Sized,

Decodes a length-delimited instance of the message from buffer, and merges it into self.
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impl PartialEq for FacetSpec

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fn eq(&self, other: &FacetSpec) -> bool

This method tests for self and other values to be equal, and is used by ==.
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fn ne(&self, other: &Rhs) -> bool

This method tests for !=. The default implementation is almost always sufficient, and should not be overridden without very good reason.
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impl StructuralPartialEq for FacetSpec

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where T: 'static + ?Sized,

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Gets the TypeId of self. Read more
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Instruments this type with the provided [Span], returning an Instrumented wrapper. Read more
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fn into(self) -> U

Calls U::from(self).

That is, this conversion is whatever the implementation of From<T> for U chooses to do.

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fn into_request(self) -> Request<T>

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where T: Clone,

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type Owned = T

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