package nx
sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>
N-dimensional arrays for OCaml
Install
dune-project
Dependency
Authors
Maintainers
Sources
raven-1.0.0.alpha3.tbz
sha256=96d35ce03dfbebd2313657273e24c2e2d20f9e6c7825b8518b69bd1d6ed5870f
sha512=90c5053731d4108f37c19430e45456063e872b04b8a1bbad064c356e1b18e69222de8bfcf4ec14757e71f18164ec6e4630ba770dbcb1291665de5418827d1465
doc/nx.pocketfft/Pocketfft/index.html
Module PocketfftSource
PocketFFT bindings
Source
val c2c_f32 :
shape:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
forward:bool ->
fct:float ->
data_in:
(Complex.t, Bigarray.complex32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:
(Complex.t, Bigarray.complex32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val r2c_f32 :
shape_in:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
forward:bool ->
fct:float ->
data_in:(float, Bigarray.float32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:
(Complex.t, Bigarray.complex32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val c2r_f32 :
shape_out:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
forward:bool ->
fct:float ->
data_in:
(Complex.t, Bigarray.complex32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:(float, Bigarray.float32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val dct_f32 :
shape:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
dct_type:int ->
ortho:bool ->
fct:float ->
data_in:(float, Bigarray.float32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:(float, Bigarray.float32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val dst_f32 :
shape:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
dct_type:int ->
ortho:bool ->
fct:float ->
data_in:(float, Bigarray.float32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:(float, Bigarray.float32_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val c2c_f64 :
shape:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
forward:bool ->
fct:float ->
data_in:
(Complex.t, Bigarray.complex64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:
(Complex.t, Bigarray.complex64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val r2c_f64 :
shape_in:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
forward:bool ->
fct:float ->
data_in:(float, Bigarray.float64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:
(Complex.t, Bigarray.complex64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val c2r_f64 :
shape_out:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
forward:bool ->
fct:float ->
data_in:
(Complex.t, Bigarray.complex64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:(float, Bigarray.float64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val dct_f64 :
shape:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
dct_type:int ->
ortho:bool ->
fct:float ->
data_in:(float, Bigarray.float64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:(float, Bigarray.float64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unitSource
val dst_f64 :
shape:int array ->
stride_in:int array ->
stride_out:int array ->
axes:int array ->
dct_type:int ->
ortho:bool ->
fct:float ->
data_in:(float, Bigarray.float64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
data_out:(float, Bigarray.float64_elt, Bigarray.c_layout) Bigarray.Array1.t ->
nthreads:int ->
unit sectionYPositions = computeSectionYPositions($el), 10)"
x-init="setTimeout(() => sectionYPositions = computeSectionYPositions($el), 10)"
>