10 #ifndef EIGEN_NULLARY_FUNCTORS_H
11 #define EIGEN_NULLARY_FUNCTORS_H
17 template<
typename Scalar>
20 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
scalar_constant_op(
const Scalar& other) : m_other(other) { }
21 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
const Scalar operator() ()
const {
return m_other; }
22 template<
typename PacketType>
23 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
const PacketType packetOp()
const {
return internal::pset1<PacketType>(m_other); }
26 template<
typename Scalar>
33 template<
typename IndexType>
34 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
const Scalar operator() (IndexType row, IndexType col)
const {
return row==col ? Scalar(1) : Scalar(0); }
36 template<
typename Scalar>
42 template <
typename Scalar>
48 m_low(low), m_high(high), m_size1(num_steps==1 ? 1 : num_steps-1), m_step(num_steps==1 ? Scalar() : Scalar((high-low)/RealScalar(num_steps-1))),
49 m_flip(numext::abs(high)<numext::abs(low))
52 template<
typename IndexType>
53 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
const Scalar operator() (IndexType i)
const {
55 return (i==0)? m_low : Scalar(m_high - RealScalar(m_size1-i)*m_step);
57 return (i==m_size1)? m_high : Scalar(m_low + RealScalar(i)*m_step);
60 template<
typename Packet,
typename IndexType>
61 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
const Packet packetOp(IndexType i)
const
67 Packet pi = plset<Packet>(Scalar(i-m_size1));
68 Packet res = padd(pset1<Packet>(m_high), pmul(pset1<Packet>(m_step), pi));
69 if (EIGEN_PREDICT_TRUE(i != 0))
return res;
70 Packet mask = pcmp_lt(pset1<Packet>(0), plset<Packet>(0));
71 return pselect<Packet>(mask, res, pset1<Packet>(m_low));
75 Packet pi = plset<Packet>(Scalar(i));
76 Packet res = padd(pset1<Packet>(m_low), pmul(pset1<Packet>(m_step), pi));
79 return pselect<Packet>(mask, res, pset1<Packet>(m_high));
90 template <
typename Scalar>
95 m_multiplier((high-low)/convert_index<Scalar>(num_steps<=1 ? 1 : num_steps-1)),
96 m_divisor(convert_index<Scalar>((high>=low?num_steps:-num_steps)+(high-low))/((numext::abs(high-low)+1)==0?1:(numext::abs(high-low)+1))),
97 m_use_divisor(num_steps>1 && (numext::abs(high-low)+1)<num_steps)
100 template<
typename IndexType>
101 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
102 const Scalar operator() (IndexType i)
const
104 if(m_use_divisor)
return m_low + convert_index<Scalar>(i)/m_divisor;
105 else return m_low + convert_index<Scalar>(i)*m_multiplier;
109 const Scalar m_multiplier;
110 const Scalar m_divisor;
111 const bool m_use_divisor;
132 EIGEN_DEVICE_FUNC
linspaced_op(
const Scalar& low,
const Scalar& high,
Index num_steps)
133 : impl((num_steps==1 ? high : low),high,num_steps)
136 template<
typename IndexType>
137 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
const Scalar operator() (IndexType i)
const {
return impl(i); }
139 template<
typename Packet,
typename IndexType>
140 EIGEN_DEVICE_FUNC EIGEN_STRONG_INLINE
const Packet packetOp(IndexType i)
const {
return impl.template packetOp<Packet>(i); }
155 #if !( (EIGEN_COMP_MSVC>1600) || (EIGEN_GNUC_AT_LEAST(4,8)) || (EIGEN_COMP_ICC>=1600))
156 template<
typename Scalar,
typename IndexType>
158 template<
typename Scalar,
typename IndexType>
160 template<
typename Scalar,
typename IndexType>
163 template<
typename Scalar,
typename IndexType>
165 template<
typename Scalar,
typename IndexType>
167 template<
typename Scalar,
typename IndexType>
170 template<
typename Scalar,
typename IndexType>
172 template<
typename Scalar,
typename IndexType>
174 template<
typename Scalar,
typename IndexType>
177 template<
typename Scalar,
typename IndexType>
179 template<
typename Scalar,
typename IndexType>
181 template<
typename Scalar,
typename IndexType>
189 #endif // EIGEN_NULLARY_FUNCTORS_H