atomic_int_least8_t atomic<int_least8_t> atomic_uint_least8_t atomic<uint_least8_t> atomic_int_least16_t atomic<int_least16_t> atomic_uint_least16_t atomic<uint_least16_t> atomic_int_least32_t atomic<int_least32_t> atomic_uint_least32_t atomic<uint_least32_t> atomic_int_least...
std::atomic_int_least64_t std::atomic<int_least64_t> std::atomic_int_fast8_t std::atomic<int_fast8_t> std::atomic_uint_fast8_t std::atomic<uint_fast8_t> std::atomic_int_fast16_t std::atomic<int_fast16_t> std::atomic_uint_fast16_t std::atomic<uint_fast16_t> std::atomi...
atomic_int_least8_t atomic<int_least8_t> atomic_uint_least8_t atomic<uint_least8_t> atomic_int_least16_t atomic<int_least16_t> atomic_uint_least16_t atomic<uint_least16_t> atomic_int_least32_t atomic<int_least32_t> atomic_uint_least32_t atomic<uint_least32_t> atomic_int_least...
std::atomic_uint_least64_t std::atomic<std::uint_least64_t> std::atomic_int_fast8_t std::atomic<std::int_fast8_t> std::atomic_uint_fast8_t std::atomic<std::uint_fast8_t> std::atomic_int_fast16_t std::atomic<std::int_fast16_t> std::atomic_uint_fast16_t std::ato...
atomic_int_least8_t (C++11) std::atomic<std::int_least8_t> (typedef) atomic_uint_least8_t (C++11) std::atomic<std::uint_least8_t> (typedef) atomic_int_least16_t (C++11) std::atomic<std::int_least16_t> (typedef) atomic_uint_least16_t (C++11) std::atomic<std::...
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1intstateID = StateID[tid]; 2floatres = compute_result(tid); 3intvalueAtState = atomicMin(&(destStateProb[stateID]), res); In the preceding code snippet, each thread computes the likelihood of the transition ending at stateID (line 1) and obtains the stateID of the destination state...
_Atomic(wchar_t)atomic_wchar_t;typedef_Atomic(int_least8_t)atomic_int_least8_t;typedef_Atomic(uint_least8_t)atomic_uint_least8_t;typedef_Atomic(int_least16_t)atomic_int_least16_t;typedef_Atomic(uint_least16_t)atomic_uint_least16_t;typedef_Atomic(int_least32_t)atomic_int_least32_t;...
Taniguchi N, Arakawa C and Kobayashi T 1974 On the basic concept of ‘nano-technology’ Proc. Int. Conf. on Production Engineeringvol 1974-8 18-23 [9] Gordon T E 1990 Circumferential and inner diameter metrology for the advanced x-ray astrophysics facility optics Proc. SPIE1333 239-248 ...
(8) where the PSF \(\xi\) can be calculated from the Dirichlet Green’s function. If the tip–sample junction is approximated by parallel plates (pp), equation (8) becomes $${\Phi }^{\ast }({\vec{r}})=\,{\iint_{{\rm{surface}}}{\xi }_{{\rm{pp}}}\left(|{\vec{r}...