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// // A rust binding for the GSL library by Guillaume Gomez (guillaume1.gomez@gmail.com) // use ffi; use types::Rng; /// This function returns a random variate from the Pareto distribution of order a. The distribution function is, /// /// p(x) dx = (a/b) / (x/b)^{a+1} dx /// /// for x >= b. pub fn pareto(r: &Rng, a: f64, b: f64) -> f64 { unsafe { ffi::gsl_ran_pareto(ffi::FFI::unwrap(r), a, b) } } /// This function computes the probability density p(x) at x for a Pareto distribution with exponent a and scale b, using the formula given above. pub fn pareto_pdf(x: f64, a: f64, b: f64) -> f64 { unsafe { ffi::gsl_ran_pareto_pdf(x, a, b) } } /// This function computes the cumulative distribution functions P(x), Q(x) and their inverses for the Pareto distribution with exponent a and scale b. pub fn pareto_P(x: f64, a: f64, b: f64) -> f64 { unsafe { ffi::gsl_cdf_pareto_P(x, a, b) } } /// This function computes the cumulative distribution functions P(x), Q(x) and their inverses for the Pareto distribution with exponent a and scale b. pub fn pareto_Q(x: f64, a: f64, b: f64) -> f64 { unsafe { ffi::gsl_cdf_pareto_Q(x, a, b) } } /// This function computes the cumulative distribution functions P(x), Q(x) and their inverses for the Pareto distribution with exponent a and scale b. pub fn pareto_Pinv(P: f64, a: f64, b: f64) -> f64 { unsafe { ffi::gsl_cdf_pareto_Pinv(P, a, b) } } /// This function computes the cumulative distribution functions P(x), Q(x) and their inverses for the Pareto distribution with exponent a and scale b. pub fn pareto_Qinv(Q: f64, a: f64, b: f64) -> f64 { unsafe { ffi::gsl_cdf_pareto_Qinv(Q, a, b) } }