165 lines
6.5 KiB
Plaintext
165 lines
6.5 KiB
Plaintext
[[search-aggregations-pipeline]]
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== Pipeline Aggregations
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coming[2.0.0]
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experimental[]
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Pipeline aggregations work on the outputs produced from other aggregations rather than from document sets, adding
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information to the output tree. There are many different types of pipeline aggregation, each computing different information from
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other aggregations, but these types can broken down into two families:
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_Parent_::
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A family of pipeline aggregations that is provided with the output of its parent aggregation and is able
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to compute new buckets or new aggregations to add to existing buckets.
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_Sibling_::
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Pipeline aggregations that are provided with the output of a sibling aggregation and are able to compute a
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new aggregation which will be at the same level as the sibling aggregation.
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Pipeline aggregations can reference the aggregations they need to perform their computation by using the `buckets_paths`
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parameter to indicate the paths to the required metrics. The syntax for defining these paths can be found in the
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<<bucket-path-syntax, `buckets_path` Syntax>> section below.
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Pipeline aggregations cannot have sub-aggregations but depending on the type it can reference another pipeline in the `buckets_path`
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allowing pipeline aggregations to be chained. For example, you can chain together two derivatives to calculate the second derivative
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(e.g. a derivative of a derivative).
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NOTE: Because pipeline aggregations only add to the output, when chaining pipeline aggregations the output of each pipeline aggregation
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will be included in the final output.
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[[bucket-path-syntax]]
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[float]
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=== `buckets_path` Syntax
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Most pipeline aggregations require another aggregation as their input. The input aggregation is defined via the `buckets_path`
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parameter, which follows a specific format:
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--------------------------------------------------
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AGG_SEPARATOR := '>'
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METRIC_SEPARATOR := '.'
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AGG_NAME := <the name of the aggregation>
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METRIC := <the name of the metric (in case of multi-value metrics aggregation)>
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PATH := <AGG_NAME>[<AGG_SEPARATOR><AGG_NAME>]*[<METRIC_SEPARATOR><METRIC>]
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--------------------------------------------------
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For example, the path `"my_bucket>my_stats.avg"` will path to the `avg` value in the `"my_stats"` metric, which is
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contained in the `"my_bucket"` bucket aggregation.
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Paths are relative from the position of the pipeline aggregation; they are not absolute paths, and the path cannot go back "up" the
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aggregation tree. For example, this moving average is embedded inside a date_histogram and refers to a "sibling"
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metric `"the_sum"`:
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[source,js]
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--------------------------------------------------
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{
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"my_date_histo":{
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"date_histogram":{
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"field":"timestamp",
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"interval":"day"
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},
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"aggs":{
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"the_sum":{
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"sum":{ "field": "lemmings" } <1>
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},
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"the_movavg":{
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"moving_avg":{ "buckets_path": "the_sum" } <2>
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}
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}
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}
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}
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--------------------------------------------------
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<1> The metric is called `"the_sum"`
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<2> The `buckets_path` refers to the metric via a relative path `"the_sum"`
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`buckets_path` is also used for Sibling pipeline aggregations, where the aggregation is "next" to a series of buckets
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instead of embedded "inside" them. For example, the `max_bucket` aggregation uses the `buckets_path` to specify
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a metric embedded inside a sibling aggregation:
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[source,js]
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--------------------------------------------------
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{
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"aggs" : {
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"sales_per_month" : {
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"date_histogram" : {
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"field" : "date",
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"interval" : "month"
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},
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"aggs": {
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"sales": {
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"sum": {
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"field": "price"
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}
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}
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}
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},
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"max_monthly_sales": {
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"max_bucket": {
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"buckets_paths": "sales_per_month>sales" <1>
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}
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}
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}
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}
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--------------------------------------------------
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<1> `bucket_paths` instructs this max_bucket aggregation that we want the maximum value of the `sales` aggregation in the
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`sales_per_month` date histogram.
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[float]
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==== Special Paths
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Instead of pathing to a metric, `buckets_path` can use a special `"_count"` path. This instructs
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the pipeline aggregation to use the document count as it's input. For example, a moving average can be calculated on the document
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count of each bucket, instead of a specific metric:
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[source,js]
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--------------------------------------------------
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{
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"my_date_histo":{
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"date_histogram":{
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"field":"timestamp",
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"interval":"day"
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},
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"aggs":{
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"the_movavg":{
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"moving_avg":{ "buckets_path": "_count" } <1>
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}
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}
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}
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}
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--------------------------------------------------
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<1> By using `_count` instead of a metric name, we can calculate the moving average of document counts in the histogram
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[[gap-policy]]
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[float]
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=== Dealing with gaps in the data
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There are a couple of reasons why the data output by the enclosing histogram may have gaps:
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* There are no documents matching the query for some buckets
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* The data for a metric is missing in all of the documents falling into a bucket (this is most likely with either a small interval
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on the enclosing histogram or with a query matching only a small number of documents)
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Where there is no data available in a bucket for a given metric it presents a problem for calculating the derivative value for both
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the current bucket and the next bucket. In the derivative pipeline aggregation has a `gap policy` parameter to define what the behavior
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should be when a gap in the data is found. There are currently two options for controlling the gap policy:
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_skip_::
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This option will not produce a derivative value for any buckets where the value in the current or previous bucket is
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missing
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_insert_zeros_::
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This option will assume the missing value is `0` and calculate the derivative with the value `0`.
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include::pipeline/avg-bucket-aggregation.asciidoc[]
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include::pipeline/derivative-aggregation.asciidoc[]
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include::pipeline/max-bucket-aggregation.asciidoc[]
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include::pipeline/min-bucket-aggregation.asciidoc[]
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include::pipeline/sum-bucket-aggregation.asciidoc[]
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include::pipeline/movavg-aggregation.asciidoc[]
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include::pipeline/cumulative-sum-aggregation.asciidoc[]
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include::pipeline/bucket-script-aggregation.asciidoc[]
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