@stdlib/math-base-ops-caddf
Add two single-precision complex floating-point numbers.
@stdlib/constants-float16-num-bytes
Size (in bytes) of a half-precision floating-point number.
@stdlib/math-iter-special-riemann-zeta
Create an iterator which evaluates the Riemann zeta function for each iterated value.
@stdlib/stats-base-dists-signrank-quantile
Wilcoxon signed rank test statistic quantile function.
stats-base-nanmskrange
Calculate the range of a strided array according to a mask, ignoring NaN values.
@stdlib/stats-base-dists-degenerate-mgf
Degenerate distribution moment-generating function (MGF).
@stdlib/math-base-special-rsqrtf
Compute the reciprocal square root of a single-precision floating-point number.
@stdlib/strided-base-dmskmap
Apply a unary function accepting and returning double-precision floating-point numbers to each element in a double-precision floating-point strided input array according to a corresponding element in a strided mask array and assign each result to an element in a double-precision floating-point strided output array.
@stdlib/math-iter-special-gamma1pm1
Create an iterator which computes `gamma(x+1) - 1` for each iterated value.
@stdlib/ndarray-base-dtype-desc
Return the description for a provided data type.
@stdlib/stats-base-dists-rayleigh-mgf
Rayleigh distribution moment-generating function (MGF).
@stdlib/stats-base-dists-arcsine-logpdf
Arcsine distribution logarithm of probability density function (PDF).
@stdlib/constants-float16
Half-precision floating-point mathematical constants.
@stdlib/utils-nonenumerable-property-symbols-in
Return an array of an object's own and inherited non-enumerable symbol properties.
@stdlib/stats-base-dists-hypergeometric-mode
Hypergeometric distribution mode.
@stdlib/math-strided-special-dcbrt
Compute the cube root of each element in a double-precision floating-point strided array.
@stdlib/math-strided-special-sdeg2rad
Convert each element in a single-precision floating-point strided array from degrees to radians.
@stdlib/math-iter-special-hacovercos
Create an iterator which computes the half-value coversed cosine for each iterated value.
stats-base-mskrange
Calculate the range of a strided array according to a mask.
@stdlib/math-base-special-pdifff
Return the positive difference between `x` and `y`.
@stdlib/math-base-special-cidentityf
Evaluate the identity function for a single-precision complex floating-point number.
@stdlib/stats-base-dists-geometric-mean
Geometric distribution expected value.
@stdlib/utils-async-some-by
Test whether a collection contains `n` elements which pass a test implemented by a predicate function.
@stdlib/constants-float64-precision
Effective number of bits in the significand of a double-precision floating-point number.
@stdlib/stats-iter
Standard library functions for computing statistics over iterators.
@stdlib/array-base-assert-is-mostly-safe-data-type-cast
Determine if an array data type can be safely cast or, for floating-point data types, downcast to another array data type.
@stdlib/stats-base-dists-rayleigh-entropy
Rayleigh distribution differential entropy.
@stdlib/random-streams-pareto-type1
Create a readable stream for generating pseudorandom numbers drawn from a Pareto (Type I) distribution.
@stdlib/stats-base-dists-hypergeometric-cdf
Hypergeometric distribution cumulative distribution function (CDF).
@stdlib/math-base-special-acosf
Compute the arccosine of a single-precision floating-point number.
@stdlib/math-base-special-fast-alpha-max-plus-beta-min
Compute the hypotenuse using the alpha max plus beta min algorithm.
@stdlib/blas-ext-base-sdsnansum
Calculate the sum of single-precision floating-point strided array elements, ignoring NaN values and using extended accumulation.
@stdlib/stats-base-dists-arcsine-entropy
Arcsine distribution differential entropy.
@stdlib/utils-async-reduce
Apply a function against an accumulator and each element in a collection and return the accumulated result.
@stdlib/namespace-pkg2standalone
Return the standalone package name associated with a provided internal package name.
@stdlib/utils-async-any-by
Test whether at least one element in a collection passes a test implemented by a predicate function.
@stdlib/stats-base-nanmin-by
Calculate the minimum value of a strided array via a callback function, ignoring NaN values.
@stdlib/math-strided-special-avercos-by
Compute the inverse versed cosine of each element retrieved from an input strided array via a callback function.
@stdlib/stats-base-dists-laplace-kurtosis
Laplace distribution excess kurtosis.
@stdlib/math-iter-special-coversin
Create an iterator which computes the coversed sine for each iterated value.
@stdlib/math-iter-special-havercos
Create an iterator which computes the half-value versed cosine for each iterated value.
@stdlib/blas-ext-base-snansum
Calculate the sum of single-precision floating-point strided array elements, ignoring NaN values.
@stdlib/math-base-special-kronecker-deltaf
Evaluate the Kronecker delta (single-precision).
@stdlib/stats-base-dists-pareto-type1-ctor
Pareto (Type I) distribution constructor.
@stdlib/stats-base-dists-pareto-type1-entropy
Pareto (Type I) distribution differential entropy.
@stdlib/number-float32-base-significand
Return an integer corresponding to the significand of a single-precision floating-point number.
@stdlib/math-base-ops-csubf
Subtract two single-precision complex floating-point numbers.
@stdlib/stats-base-dsnanmeanors
Calculate the arithmetic mean of a single-precision floating-point strided array, ignoring NaN values, using ordinary recursive summation with extended accumulation, and returning an extended precision result.
@stdlib/constants-float16-precision
Effective number of bits in the significand of a half-precision floating-point number.
@stdlib/stats-base-dists-laplace-mgf
Laplace (Double Exponential) distribution moment-generating function (MGF).
@stdlib/ndarray-base-napi-addon-arguments
C API for validating, extracting, and transforming (to native C types) function arguments provided to an ndarray N-API add-on interface.
math-iter-ops-mod
Create an iterator which performs an element-wise modulo operation of two or more iterators.