1#ifndef STAN_MATH_PRIM_PROB_GUMBEL_LCCDF_HPP
2#define STAN_MATH_PRIM_PROB_GUMBEL_LCCDF_HPP
36template <
typename T_y,
typename T_loc,
typename T_scale,
38 T_y, T_loc, T_scale>* =
nullptr>
41 const T_scale&
beta) {
46 static constexpr const char* function =
"gumbel_lccdf";
49 T_beta_ref beta_ref =
beta;
65 const auto& scaled_diff = to_ref_if<is_any_autodiff_v<T_y, T_loc, T_scale>>(
66 (y_val - mu_val) / beta_val);
67 const auto& exp_m_scaled_diff
68 = to_ref_if<is_any_autodiff_v<T_y, T_loc, T_scale>>(
exp(-scaled_diff));
69 const auto& cdf_log_n_tmp =
exp(-exp_m_scaled_diff);
71 = to_ref_if<is_any_autodiff_v<T_y, T_loc, T_scale>>(1.0 - cdf_log_n_tmp);
72 T_partials_return ccdf_log =
sum(
log(ccdf_n));
74 if constexpr (is_any_autodiff_v<T_y, T_loc, T_scale>) {
75 const auto& rep_deriv_tmp =
exp(-scaled_diff - exp_m_scaled_diff);
78 T_loc> + is_autodiff_v<T_scale> + is_autodiff_v<T_y> >= 2>(
79 rep_deriv_tmp / (beta_val * ccdf_n));
80 if constexpr (is_autodiff_v<T_y>) {
81 partials<0>(ops_partials) = -rep_deriv;
83 if constexpr (is_autodiff_v<T_loc>) {
84 partials<1>(ops_partials) = rep_deriv;
86 if constexpr (is_autodiff_v<T_scale>) {
87 partials<2>(ops_partials) = rep_deriv * scaled_diff;
90 return ops_partials.build(ccdf_log);
require_all_not_t< is_nonscalar_prim_or_rev_kernel_expression< std::decay_t< Types > >... > require_all_not_nonscalar_prim_or_rev_kernel_expression_t
Require none of the types satisfy is_nonscalar_prim_or_rev_kernel_expression.
return_type_t< T_y_cl, T_loc_cl, T_scale_cl > gumbel_lccdf(const T_y_cl &y, const T_loc_cl &mu, const T_scale_cl &beta)
Returns the Gumbel log complementary cumulative distribution function for the given location,...
typename return_type< Ts... >::type return_type_t
Convenience type for the return type of the specified template parameters.
bool size_zero(const T &x)
Returns 1 if input is of length 0, returns 0 otherwise.
T to_ref_if(T &&a)
No-op that should be optimized away.
fvar< T > log(const fvar< T > &x)
auto as_value_column_array_or_scalar(T &&a)
Extract the value from an object and for eigen vectors and std::vectors convert to an eigen column ar...
void check_finite(const char *function, const char *name, const T_y &y)
Return true if all values in y are finite.
void check_not_nan(const char *function, const char *name, const T_y &y)
Check if y is not NaN.
auto sum(const std::vector< T > &m)
Return the sum of the entries of the specified standard vector.
void check_positive(const char *function, const char *name, const T_y &y)
Check if y is positive.
ref_type_t< T && > to_ref(T &&a)
This evaluates expensive Eigen expressions.
fvar< T > beta(const fvar< T > &x1, const fvar< T > &x2)
Return fvar with the beta function applied to the specified arguments and its gradient.
auto make_partials_propagator(Ops &&... ops)
Construct an partials_propagator.
fvar< T > exp(const fvar< T > &x)
typename ref_type_if< is_autodiff_v< T >, T >::type ref_type_if_not_constant_t
constexpr bool is_autodiff_v
typename partials_return_type< Args... >::type partials_return_t
The lgamma implementation in stan-math is based on either the reentrant safe lgamma_r implementation ...