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Merged latest updates from trunk
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@@ -62,6 +62,7 @@ struct default_packet_traits
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HasRsqrt = 0,
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HasExp = 0,
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HasLog = 0,
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HasLog1p = 0,
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HasLog10 = 0,
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HasPow = 0,
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@@ -82,6 +83,7 @@ struct default_packet_traits
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HasErfc = 0,
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HasIGamma = 0,
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HasIGammac = 0,
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HasBetaInc = 0,
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HasRound = 0,
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HasFloor = 0,
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@@ -304,7 +306,7 @@ template<typename Scalar> EIGEN_DEVICE_FUNC inline void prefetch(const Scalar* a
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// 32-bit pointer operand constraint for inlined asm
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asm(" prefetch.L1 [ %1 ];" : "=r"(addr) : "r"(addr));
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#endif
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#elif !EIGEN_COMP_MSVC
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#elif (!EIGEN_COMP_MSVC) && (EIGEN_COMP_GNUC || EIGEN_COMP_CLANG || EIGEN_COMP_ICC)
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__builtin_prefetch(addr);
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#endif
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}
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@@ -346,22 +348,6 @@ template<typename Packet> EIGEN_DEVICE_FUNC inline typename unpacket_traits<Pack
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template<typename Packet> EIGEN_DEVICE_FUNC inline Packet preverse(const Packet& a)
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{ return a; }
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template<size_t offset, typename Packet>
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struct protate_impl
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{
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// Empty so attempts to use this unimplemented path will fail to compile.
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// Only specializations of this template should be used.
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};
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/** \internal \returns a packet with the coefficients rotated to the right in little-endian convention,
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* by the given offset, e.g. for offset == 1:
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* (packet[3], packet[2], packet[1], packet[0]) becomes (packet[0], packet[3], packet[2], packet[1])
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*/
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template<size_t offset, typename Packet> EIGEN_DEVICE_FUNC inline Packet protate(const Packet& a)
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{
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return offset ? protate_impl<offset, Packet>::run(a) : a;
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}
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/** \internal \returns \a a with real and imaginary part flipped (for complex type only) */
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template<typename Packet> EIGEN_DEVICE_FUNC inline Packet pcplxflip(const Packet& a)
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{
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@@ -419,6 +405,10 @@ Packet pexp(const Packet& a) { using std::exp; return exp(a); }
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet plog(const Packet& a) { using std::log; return log(a); }
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/** \internal \returns the log1p of \a a (coeff-wise) */
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet plog1p(const Packet& a) { return numext::log1p(a); }
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/** \internal \returns the log10 of \a a (coeff-wise) */
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet plog10(const Packet& a) { using std::log10; return log10(a); }
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@@ -445,38 +435,6 @@ Packet pfloor(const Packet& a) { using numext::floor; return floor(a); }
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet pceil(const Packet& a) { using numext::ceil; return ceil(a); }
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/** \internal \returns the ln(|gamma(\a a)|) (coeff-wise) */
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet plgamma(const Packet& a) { using numext::lgamma; return lgamma(a); }
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/** \internal \returns the derivative of lgamma, psi(\a a) (coeff-wise) */
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet pdigamma(const Packet& a) { using numext::digamma; return digamma(a); }
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/** \internal \returns the zeta function of two arguments (coeff-wise) */
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet pzeta(const Packet& x, const Packet& q) { using numext::zeta; return zeta(x, q); }
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/** \internal \returns the polygamma function (coeff-wise) */
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet ppolygamma(const Packet& n, const Packet& x) { using numext::polygamma; return polygamma(n, x); }
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/** \internal \returns the erf(\a a) (coeff-wise) */
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet perf(const Packet& a) { using numext::erf; return erf(a); }
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/** \internal \returns the erfc(\a a) (coeff-wise) */
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template<typename Packet> EIGEN_DECLARE_FUNCTION_ALLOWING_MULTIPLE_DEFINITIONS
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Packet perfc(const Packet& a) { using numext::erfc; return erfc(a); }
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/** \internal \returns the incomplete gamma function igamma(\a a, \a x) */
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template<typename Packet> EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
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Packet pigamma(const Packet& a, const Packet& x) { using numext::igamma; return igamma(a, x); }
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/** \internal \returns the complementary incomplete gamma function igammac(\a a, \a x) */
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template<typename Packet> EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
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Packet pigammac(const Packet& a, const Packet& x) { using numext::igammac; return igammac(a, x); }
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/***************************************************************************
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* The following functions might not have to be overwritten for vectorized types
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***************************************************************************/
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