Dendro  5.01
Dendro in Greek language means tree. The Dendro library is a large scale (262K cores on ORNL's Titan) distributed memory adaptive octree framework. The main goal of Dendro is to perform large scale multiphysics simulations efficeiently in mordern supercomputers. Dendro consists of efficient parallel data structures and algorithms to perform variational ( finite element) methods and finite difference mthods on 2:1 balanced arbitary adaptive octrees which enables the users to perform simulations raning from black holes (binary black hole mergers) to blood flow in human body, where applications ranging from relativity, astrophysics to biomedical engineering.
nlohmann::detail::dtoa_impl::diyfp Member List

This is the complete list of members for nlohmann::detail::dtoa_impl::diyfp, including all inherited members.

diyfp() noexcept (defined in nlohmann::detail::dtoa_impl::diyfp)nlohmann::detail::dtoa_impl::diyfpinline
diyfp(uint64_t f_, int e_) noexcept (defined in nlohmann::detail::dtoa_impl::diyfp)nlohmann::detail::dtoa_impl::diyfpinline
e (defined in nlohmann::detail::dtoa_impl::diyfp)nlohmann::detail::dtoa_impl::diyfp
f (defined in nlohmann::detail::dtoa_impl::diyfp)nlohmann::detail::dtoa_impl::diyfp
kPrecision (defined in nlohmann::detail::dtoa_impl::diyfp)nlohmann::detail::dtoa_impl::diyfpstatic
mul(const diyfp &x, const diyfp &y) noexceptnlohmann::detail::dtoa_impl::diyfpinlinestatic
normalize(diyfp x) noexceptnlohmann::detail::dtoa_impl::diyfpinlinestatic
normalize_to(const diyfp &x, const int target_exponent) noexceptnlohmann::detail::dtoa_impl::diyfpinlinestatic
sub(const diyfp &x, const diyfp &y) noexceptnlohmann::detail::dtoa_impl::diyfpinlinestatic