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public static final class DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder extends GeneratedMessageV3.Builder<DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder> implements DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfoOrBuilder
DoubleFieldInfo defines output for any double type field.
Protobuf type
google.cloud.dataplex.v1.DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo
Inheritance
Object > AbstractMessageLite.Builder<MessageType,BuilderType> > AbstractMessage.Builder<BuilderType> > GeneratedMessageV3.Builder > DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.BuilderStatic Methods
getDescriptor()
public static final Descriptors.Descriptor getDescriptor()
Returns | |
---|---|
Type | Description |
Descriptor |
Methods
addAllQuartiles(Iterable<? extends Double> values)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder addAllQuartiles(Iterable<? extends Double> values)
A quartile divide the numebr of data points into four parts, or quarters, of more-or-less equal size. Three main quartiles used are: The first quartile (Q1) splits off the lowest 25% of data from the highest 75%. It is also known as the lower or 25th empirical quartile, as 25% of the data is below this point. The second quartile (Q2) is the median of a data set. So, 50% of the data lies below this point. The third quartile (Q3) splits off the highest 25% of data from the lowest 75%. It is known as the upper or 75th empirical quartile, as 75% of the data lies below this point. So, here the quartiles is provided as an ordered list of quartile values, occurring in order Q1, median, Q3.
repeated double quartiles = 6;
Parameter | |
---|---|
Name | Description |
values | Iterable<? extends java.lang.Double> The quartiles to add. |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
addQuartiles(double value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder addQuartiles(double value)
A quartile divide the numebr of data points into four parts, or quarters, of more-or-less equal size. Three main quartiles used are: The first quartile (Q1) splits off the lowest 25% of data from the highest 75%. It is also known as the lower or 25th empirical quartile, as 25% of the data is below this point. The second quartile (Q2) is the median of a data set. So, 50% of the data lies below this point. The third quartile (Q3) splits off the highest 25% of data from the lowest 75%. It is known as the upper or 75th empirical quartile, as 75% of the data lies below this point. So, here the quartiles is provided as an ordered list of quartile values, occurring in order Q1, median, Q3.
repeated double quartiles = 6;
Parameter | |
---|---|
Name | Description |
value | double The quartiles to add. |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
addRepeatedField(Descriptors.FieldDescriptor field, Object value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder addRepeatedField(Descriptors.FieldDescriptor field, Object value)
Parameters | |
---|---|
Name | Description |
field | FieldDescriptor |
value | Object |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
build()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo build()
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo |
buildPartial()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo buildPartial()
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo |
clear()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clear()
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
clearAverage()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clearAverage()
The average of non-null values of double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double average = 1;
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
clearField(Descriptors.FieldDescriptor field)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clearField(Descriptors.FieldDescriptor field)
Parameter | |
---|---|
Name | Description |
field | FieldDescriptor |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
clearMax()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clearMax()
The maximum value of a double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double max = 5;
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
clearMin()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clearMin()
The minimum value of a double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double min = 4;
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
clearOneof(Descriptors.OneofDescriptor oneof)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clearOneof(Descriptors.OneofDescriptor oneof)
Parameter | |
---|---|
Name | Description |
oneof | OneofDescriptor |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
clearQuartiles()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clearQuartiles()
A quartile divide the numebr of data points into four parts, or quarters, of more-or-less equal size. Three main quartiles used are: The first quartile (Q1) splits off the lowest 25% of data from the highest 75%. It is also known as the lower or 25th empirical quartile, as 25% of the data is below this point. The second quartile (Q2) is the median of a data set. So, 50% of the data lies below this point. The third quartile (Q3) splits off the highest 25% of data from the lowest 75%. It is known as the upper or 75th empirical quartile, as 75% of the data lies below this point. So, here the quartiles is provided as an ordered list of quartile values, occurring in order Q1, median, Q3.
repeated double quartiles = 6;
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
clearStandardDeviation()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clearStandardDeviation()
The standard deviation of non-null of double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double standard_deviation = 3;
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
clone()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder clone()
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
getAverage()
public double getAverage()
The average of non-null values of double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double average = 1;
Returns | |
---|---|
Type | Description |
double | The average. |
getDefaultInstanceForType()
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo getDefaultInstanceForType()
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo |
getDescriptorForType()
public Descriptors.Descriptor getDescriptorForType()
Returns | |
---|---|
Type | Description |
Descriptor |
getMax()
public double getMax()
The maximum value of a double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double max = 5;
Returns | |
---|---|
Type | Description |
double | The max. |
getMin()
public double getMin()
The minimum value of a double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double min = 4;
Returns | |
---|---|
Type | Description |
double | The min. |
getQuartiles(int index)
public double getQuartiles(int index)
A quartile divide the numebr of data points into four parts, or quarters, of more-or-less equal size. Three main quartiles used are: The first quartile (Q1) splits off the lowest 25% of data from the highest 75%. It is also known as the lower or 25th empirical quartile, as 25% of the data is below this point. The second quartile (Q2) is the median of a data set. So, 50% of the data lies below this point. The third quartile (Q3) splits off the highest 25% of data from the lowest 75%. It is known as the upper or 75th empirical quartile, as 75% of the data lies below this point. So, here the quartiles is provided as an ordered list of quartile values, occurring in order Q1, median, Q3.
repeated double quartiles = 6;
Parameter | |
---|---|
Name | Description |
index | int The index of the element to return. |
Returns | |
---|---|
Type | Description |
double | The quartiles at the given index. |
getQuartilesCount()
public int getQuartilesCount()
A quartile divide the numebr of data points into four parts, or quarters, of more-or-less equal size. Three main quartiles used are: The first quartile (Q1) splits off the lowest 25% of data from the highest 75%. It is also known as the lower or 25th empirical quartile, as 25% of the data is below this point. The second quartile (Q2) is the median of a data set. So, 50% of the data lies below this point. The third quartile (Q3) splits off the highest 25% of data from the lowest 75%. It is known as the upper or 75th empirical quartile, as 75% of the data lies below this point. So, here the quartiles is provided as an ordered list of quartile values, occurring in order Q1, median, Q3.
repeated double quartiles = 6;
Returns | |
---|---|
Type | Description |
int | The count of quartiles. |
getQuartilesList()
public List<Double> getQuartilesList()
A quartile divide the numebr of data points into four parts, or quarters, of more-or-less equal size. Three main quartiles used are: The first quartile (Q1) splits off the lowest 25% of data from the highest 75%. It is also known as the lower or 25th empirical quartile, as 25% of the data is below this point. The second quartile (Q2) is the median of a data set. So, 50% of the data lies below this point. The third quartile (Q3) splits off the highest 25% of data from the lowest 75%. It is known as the upper or 75th empirical quartile, as 75% of the data lies below this point. So, here the quartiles is provided as an ordered list of quartile values, occurring in order Q1, median, Q3.
repeated double quartiles = 6;
Returns | |
---|---|
Type | Description |
List<Double> | A list containing the quartiles. |
getStandardDeviation()
public double getStandardDeviation()
The standard deviation of non-null of double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double standard_deviation = 3;
Returns | |
---|---|
Type | Description |
double | The standardDeviation. |
internalGetFieldAccessorTable()
protected GeneratedMessageV3.FieldAccessorTable internalGetFieldAccessorTable()
Returns | |
---|---|
Type | Description |
FieldAccessorTable |
isInitialized()
public final boolean isInitialized()
Returns | |
---|---|
Type | Description |
boolean |
mergeFrom(DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo other)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder mergeFrom(DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo other)
Parameter | |
---|---|
Name | Description |
other | DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
mergeFrom(CodedInputStream input, ExtensionRegistryLite extensionRegistry)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder mergeFrom(CodedInputStream input, ExtensionRegistryLite extensionRegistry)
Parameters | |
---|---|
Name | Description |
input | CodedInputStream |
extensionRegistry | ExtensionRegistryLite |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
Exceptions | |
---|---|
Type | Description |
IOException |
mergeFrom(Message other)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder mergeFrom(Message other)
Parameter | |
---|---|
Name | Description |
other | Message |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
mergeUnknownFields(UnknownFieldSet unknownFields)
public final DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder mergeUnknownFields(UnknownFieldSet unknownFields)
Parameter | |
---|---|
Name | Description |
unknownFields | UnknownFieldSet |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
setAverage(double value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder setAverage(double value)
The average of non-null values of double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double average = 1;
Parameter | |
---|---|
Name | Description |
value | double The average to set. |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
setField(Descriptors.FieldDescriptor field, Object value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder setField(Descriptors.FieldDescriptor field, Object value)
Parameters | |
---|---|
Name | Description |
field | FieldDescriptor |
value | Object |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
setMax(double value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder setMax(double value)
The maximum value of a double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double max = 5;
Parameter | |
---|---|
Name | Description |
value | double The max to set. |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
setMin(double value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder setMin(double value)
The minimum value of a double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double min = 4;
Parameter | |
---|---|
Name | Description |
value | double The min to set. |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
setQuartiles(int index, double value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder setQuartiles(int index, double value)
A quartile divide the numebr of data points into four parts, or quarters, of more-or-less equal size. Three main quartiles used are: The first quartile (Q1) splits off the lowest 25% of data from the highest 75%. It is also known as the lower or 25th empirical quartile, as 25% of the data is below this point. The second quartile (Q2) is the median of a data set. So, 50% of the data lies below this point. The third quartile (Q3) splits off the highest 25% of data from the lowest 75%. It is known as the upper or 75th empirical quartile, as 75% of the data lies below this point. So, here the quartiles is provided as an ordered list of quartile values, occurring in order Q1, median, Q3.
repeated double quartiles = 6;
Parameters | |
---|---|
Name | Description |
index | int The index to set the value at. |
value | double The quartiles to set. |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
setRepeatedField(Descriptors.FieldDescriptor field, int index, Object value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder setRepeatedField(Descriptors.FieldDescriptor field, int index, Object value)
Parameters | |
---|---|
Name | Description |
field | FieldDescriptor |
index | int |
value | Object |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |
setStandardDeviation(double value)
public DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder setStandardDeviation(double value)
The standard deviation of non-null of double field in the sampled data. Return NaN, if the field has a NaN. Optional if zero non-null rows.
double standard_deviation = 3;
Parameter | |
---|---|
Name | Description |
value | double The standardDeviation to set. |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder | This builder for chaining. |
setUnknownFields(UnknownFieldSet unknownFields)
public final DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder setUnknownFields(UnknownFieldSet unknownFields)
Parameter | |
---|---|
Name | Description |
unknownFields | UnknownFieldSet |
Returns | |
---|---|
Type | Description |
DataProfileResult.Profile.Field.ProfileInfo.DoubleFieldInfo.Builder |