Interface ExponentialHistogramDataPointOrBuilder
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- All Superinterfaces:
com.google.protobuf.MessageLiteOrBuilder,com.google.protobuf.MessageOrBuilder
- All Known Implementing Classes:
ExponentialHistogramDataPoint,ExponentialHistogramDataPoint.Builder
public interface ExponentialHistogramDataPointOrBuilder extends com.google.protobuf.MessageOrBuilder
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Method Summary
All Methods Instance Methods Abstract Methods Modifier and Type Method Description KeyValuegetAttributes(int index)The set of key/value pairs that uniquely identify the timeseries from where this point belongs.intgetAttributesCount()The set of key/value pairs that uniquely identify the timeseries from where this point belongs.List<KeyValue>getAttributesList()The set of key/value pairs that uniquely identify the timeseries from where this point belongs.KeyValueOrBuildergetAttributesOrBuilder(int index)The set of key/value pairs that uniquely identify the timeseries from where this point belongs.List<? extends KeyValueOrBuilder>getAttributesOrBuilderList()The set of key/value pairs that uniquely identify the timeseries from where this point belongs.longgetCount()count is the number of values in the population.ExemplargetExemplars(int index)(Optional) List of exemplars collected from measurements that were used to form the data pointintgetExemplarsCount()(Optional) List of exemplars collected from measurements that were used to form the data pointList<Exemplar>getExemplarsList()(Optional) List of exemplars collected from measurements that were used to form the data pointExemplarOrBuildergetExemplarsOrBuilder(int index)(Optional) List of exemplars collected from measurements that were used to form the data pointList<? extends ExemplarOrBuilder>getExemplarsOrBuilderList()(Optional) List of exemplars collected from measurements that were used to form the data pointintgetFlags()Flags that apply to this specific data point.ExponentialHistogramDataPoint.BucketsgetNegative()negative carries the negative range of exponential bucket counts.ExponentialHistogramDataPoint.BucketsOrBuildergetNegativeOrBuilder()negative carries the negative range of exponential bucket counts.ExponentialHistogramDataPoint.BucketsgetPositive()positive carries the positive range of exponential bucket counts.ExponentialHistogramDataPoint.BucketsOrBuildergetPositiveOrBuilder()positive carries the positive range of exponential bucket counts.intgetScale()scale describes the resolution of the histogram.longgetStartTimeUnixNano()StartTimeUnixNano is optional but strongly encouraged, see the the detailed comments above Metric.doublegetSum()sum of the values in the population.longgetTimeUnixNano()TimeUnixNano is required, see the detailed comments above Metric.longgetZeroCount()zero_count is the count of values that are either exactly zero or within the region considered zero by the instrumentation at the tolerated degree of precision.booleanhasNegative()negative carries the negative range of exponential bucket counts.booleanhasPositive()positive carries the positive range of exponential bucket counts.-
Methods inherited from interface com.google.protobuf.MessageOrBuilder
findInitializationErrors, getAllFields, getDefaultInstanceForType, getDescriptorForType, getField, getInitializationErrorString, getOneofFieldDescriptor, getRepeatedField, getRepeatedFieldCount, getUnknownFields, hasField, hasOneof
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Method Detail
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getAttributesList
List<KeyValue> getAttributesList()
The set of key/value pairs that uniquely identify the timeseries from where this point belongs. The list may be empty (may contain 0 elements).
repeated .opentelemetry.proto.common.v1.KeyValue attributes = 1;
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getAttributes
KeyValue getAttributes(int index)
The set of key/value pairs that uniquely identify the timeseries from where this point belongs. The list may be empty (may contain 0 elements).
repeated .opentelemetry.proto.common.v1.KeyValue attributes = 1;
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getAttributesCount
int getAttributesCount()
The set of key/value pairs that uniquely identify the timeseries from where this point belongs. The list may be empty (may contain 0 elements).
repeated .opentelemetry.proto.common.v1.KeyValue attributes = 1;
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getAttributesOrBuilderList
List<? extends KeyValueOrBuilder> getAttributesOrBuilderList()
The set of key/value pairs that uniquely identify the timeseries from where this point belongs. The list may be empty (may contain 0 elements).
repeated .opentelemetry.proto.common.v1.KeyValue attributes = 1;
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getAttributesOrBuilder
KeyValueOrBuilder getAttributesOrBuilder(int index)
The set of key/value pairs that uniquely identify the timeseries from where this point belongs. The list may be empty (may contain 0 elements).
repeated .opentelemetry.proto.common.v1.KeyValue attributes = 1;
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getStartTimeUnixNano
long getStartTimeUnixNano()
StartTimeUnixNano is optional but strongly encouraged, see the the detailed comments above Metric. Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970.
fixed64 start_time_unix_nano = 2;
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getTimeUnixNano
long getTimeUnixNano()
TimeUnixNano is required, see the detailed comments above Metric. Value is UNIX Epoch time in nanoseconds since 00:00:00 UTC on 1 January 1970.
fixed64 time_unix_nano = 3;
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getCount
long getCount()
count is the number of values in the population. Must be non-negative. This value must be equal to the sum of the "bucket_counts" values in the positive and negative Buckets plus the "zero_count" field.
fixed64 count = 4;
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getSum
double getSum()
sum of the values in the population. If count is zero then this field must be zero. Note: Sum should only be filled out when measuring non-negative discrete events, and is assumed to be monotonic over the values of these events. Negative events *can* be recorded, but sum should not be filled out when doing so. This is specifically to enforce compatibility w/ OpenMetrics, see: https://github.com/OpenObservability/OpenMetrics/blob/main/specification/OpenMetrics.md#histogram
double sum = 5;
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getScale
int getScale()
scale describes the resolution of the histogram. Boundaries are located at powers of the base, where: base = (2^(2^-scale)) The histogram bucket identified by `index`, a signed integer, contains values that are greater than or equal to (base^index) and less than (base^(index+1)). The positive and negative ranges of the histogram are expressed separately. Negative values are mapped by their absolute value into the negative range using the same scale as the positive range. scale is not restricted by the protocol, as the permissible values depend on the range of the data.
sint32 scale = 6;
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getZeroCount
long getZeroCount()
zero_count is the count of values that are either exactly zero or within the region considered zero by the instrumentation at the tolerated degree of precision. This bucket stores values that cannot be expressed using the standard exponential formula as well as values that have been rounded to zero. Implementations MAY consider the zero bucket to have probability mass equal to (zero_count / count).
fixed64 zero_count = 7;
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hasPositive
boolean hasPositive()
positive carries the positive range of exponential bucket counts.
.opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets positive = 8;
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getPositive
ExponentialHistogramDataPoint.Buckets getPositive()
positive carries the positive range of exponential bucket counts.
.opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets positive = 8;
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getPositiveOrBuilder
ExponentialHistogramDataPoint.BucketsOrBuilder getPositiveOrBuilder()
positive carries the positive range of exponential bucket counts.
.opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets positive = 8;
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hasNegative
boolean hasNegative()
negative carries the negative range of exponential bucket counts.
.opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets negative = 9;
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getNegative
ExponentialHistogramDataPoint.Buckets getNegative()
negative carries the negative range of exponential bucket counts.
.opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets negative = 9;
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getNegativeOrBuilder
ExponentialHistogramDataPoint.BucketsOrBuilder getNegativeOrBuilder()
negative carries the negative range of exponential bucket counts.
.opentelemetry.proto.metrics.v1.ExponentialHistogramDataPoint.Buckets negative = 9;
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getFlags
int getFlags()
Flags that apply to this specific data point. See DataPointFlags for the available flags and their meaning.
uint32 flags = 10;
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getExemplarsList
List<Exemplar> getExemplarsList()
(Optional) List of exemplars collected from measurements that were used to form the data point
repeated .opentelemetry.proto.metrics.v1.Exemplar exemplars = 11;
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getExemplars
Exemplar getExemplars(int index)
(Optional) List of exemplars collected from measurements that were used to form the data point
repeated .opentelemetry.proto.metrics.v1.Exemplar exemplars = 11;
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getExemplarsCount
int getExemplarsCount()
(Optional) List of exemplars collected from measurements that were used to form the data point
repeated .opentelemetry.proto.metrics.v1.Exemplar exemplars = 11;
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getExemplarsOrBuilderList
List<? extends ExemplarOrBuilder> getExemplarsOrBuilderList()
(Optional) List of exemplars collected from measurements that were used to form the data point
repeated .opentelemetry.proto.metrics.v1.Exemplar exemplars = 11;
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getExemplarsOrBuilder
ExemplarOrBuilder getExemplarsOrBuilder(int index)
(Optional) List of exemplars collected from measurements that were used to form the data point
repeated .opentelemetry.proto.metrics.v1.Exemplar exemplars = 11;
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