Newer
Older
clone(IAxis self) -> IAxis
virtual IAxis* IAxis::clone() const =0
"""
return _libBornAgainBase.IAxis_clone(self)
def setName(self, name):
r"""
setName(IAxis self, std::string name)
void IAxis::setName(std::string name)
Sets the axis label.
"""
return _libBornAgainBase.IAxis_setName(self, name)
size(IAxis self) -> size_t
virtual size_t IAxis::size() const =0
def lowerBound(self):
lowerBound(IAxis self) -> double
virtual double IAxis::lowerBound() const =0
Returns value of first point of axis.
"""
return _libBornAgainBase.IAxis_lowerBound(self)
def upperBound(self):
upperBound(IAxis self) -> double
virtual double IAxis::upperBound() const =0
Returns value of last point of axis.
"""
return _libBornAgainBase.IAxis_upperBound(self)
r"""
bounds(IAxis self) -> pvacuum_double_t
std::pair< double, double > IAxis::bounds() const
Returns lower and upper bound in a pair. first is lower, second is upper.
"""
def span(self):
r"""
span(IAxis self) -> double
double IAxis::span() const
Returns distance from first to last point.
"""
return _libBornAgainBase.IAxis_span(self)
def center(self):
r"""
center(IAxis self) -> double
double IAxis::center() const
Returns midpoint of axis.
"""
return _libBornAgainBase.IAxis_center(self)
getName(IAxis self) -> std::string
std::string IAxis::getName() const
binCenters(IAxis self) -> vdouble1d_t
std::vector< double > IAxis::binCenters() const
return _libBornAgainBase.IAxis_binCenters(self)
binBoundaries(IAxis self) -> vdouble1d_t
std::vector< double > IAxis::binBoundaries() const
return _libBornAgainBase.IAxis_binBoundaries(self)
bin(IAxis self, size_t index) -> Bin1D
virtual Bin1D IAxis::bin(size_t index) const =0
return _libBornAgainBase.IAxis_bin(self, index)
def binCenter(self, index):
r"""
binCenter(IAxis self, size_t index) -> double
virtual double IAxis::binCenter(size_t index) const =0
"""
return _libBornAgainBase.IAxis_binCenter(self, index)
def findClosestIndex(self, value):
r"""
findClosestIndex(IAxis self, double value) -> size_t
virtual size_t IAxis::findClosestIndex(double value) const =0
find bin index which is best match for given value
"""
return _libBornAgainBase.IAxis_findClosestIndex(self, value)
def contains(self, value):
r"""
contains(IAxis self, double value) -> bool
bool IAxis::contains(double value) const
Returns true if axis contains given point.
"""
return _libBornAgainBase.IAxis_contains(self, value)
createClippedAxis(IAxis self, double lower, double upper) -> IAxis
IAxis * IAxis::createClippedAxis(double lower, double upper) const
return _libBornAgainBase.IAxis_createClippedAxis(self, lower, upper)
def clip(self, *args):
r"""
clip(IAxis self, double lower, double upper)
clip(IAxis self, pvacuum_double_t bounds)
void IAxis::clip(const std::pair< double, double > bounds)
Convenience overload to clip this axis to the given values. bounds.first is lower, bounds.second is upper value.
"""
return _libBornAgainBase.IAxis_clip(self, *args)
def __eq__(self, right):
r"""__eq__(IAxis self, IAxis right) -> bool"""
return _libBornAgainBase.IAxis___eq__(self, right)
def __ne__(self, right):
r"""__ne__(IAxis self, IAxis right) -> bool"""
return _libBornAgainBase.IAxis___ne__(self, right)
2170
2171
2172
2173
2174
2175
2176
2177
2178
2179
2180
2181
2182
2183
2184
2185
2186
2187
2188
2189
2190
2191
2192
2193
2194
2195
2196
2197
2198
2199
2200
2201
2202
2203
2204
2205
2206
2207
2208
2209
2210
2211
# Register IAxis in _libBornAgainBase:
_libBornAgainBase.IAxis_swigregister(IAxis)
class VariableBinAxis(IAxis):
r"""
Axis with variable bin size.
C++ includes: VariableBinAxis.h
"""
thisown = property(lambda x: x.this.own(), lambda x, v: x.this.own(v), doc="The membership flag")
__repr__ = _swig_repr
def __init__(self, name, nbins, bin_boundaries):
r"""
__init__(VariableBinAxis self, std::string const & name, size_t nbins, vdouble1d_t bin_boundaries) -> VariableBinAxis
VariableBinAxis::VariableBinAxis(const std::string &name, size_t nbins, const std::vector< double > &bin_boundaries)
VariableBinAxis constructor.
Parameters:
-----------
name:
Axis name
nbins:
number of bins
bin_boundaries:
Array of size nbins+1 containing low-edges for each bin and upper edge of last bin.
"""
_libBornAgainBase.VariableBinAxis_swiginit(self, _libBornAgainBase.new_VariableBinAxis(name, nbins, bin_boundaries))
__swig_destroy__ = _libBornAgainBase.delete_VariableBinAxis
def clone(self):
r"""
clone(VariableBinAxis self) -> VariableBinAxis
VariableBinAxis * VariableBinAxis::clone() const override
"""
return _libBornAgainBase.VariableBinAxis_clone(self)
def size(self):
r"""
size(VariableBinAxis self) -> size_t
size_t VariableBinAxis::size() const override
"""
return _libBornAgainBase.VariableBinAxis_size(self)
bin(VariableBinAxis self, size_t index) -> Bin1D
Bin1D VariableBinAxis::bin(size_t index) const override
retrieve a 1d bin for the given index
"""
return _libBornAgainBase.VariableBinAxis_bin(self, index)
def lowerBound(self):
lowerBound(VariableBinAxis self) -> double
double VariableBinAxis::lowerBound() const override
Returns value of first point of axis.
"""
return _libBornAgainBase.VariableBinAxis_lowerBound(self)
def upperBound(self):
upperBound(VariableBinAxis self) -> double
double VariableBinAxis::upperBound() const override
Returns value of last point of axis.
"""
return _libBornAgainBase.VariableBinAxis_upperBound(self)
binCenter(VariableBinAxis self, size_t index) -> double
double VariableBinAxis::binCenter(size_t index) const override
return _libBornAgainBase.VariableBinAxis_binCenter(self, index)
def findClosestIndex(self, value):
r"""
findClosestIndex(VariableBinAxis self, double value) -> size_t
size_t VariableBinAxis::findClosestIndex(double value) const override
find bin index which is best match for given value
"""
return _libBornAgainBase.VariableBinAxis_findClosestIndex(self, value)
binCenters(VariableBinAxis self) -> vdouble1d_t
std::vector< double > VariableBinAxis::binCenters() const override
return _libBornAgainBase.VariableBinAxis_binCenters(self)
binBoundaries(VariableBinAxis self) -> vdouble1d_t
std::vector<double> VariableBinAxis::binBoundaries() const override
return _libBornAgainBase.VariableBinAxis_binBoundaries(self)
createClippedAxis(VariableBinAxis self, double lower, double upper) -> VariableBinAxis
VariableBinAxis * VariableBinAxis::createClippedAxis(double lower, double upper) const override
Creates a new clipped axis.
"""
return _libBornAgainBase.VariableBinAxis_createClippedAxis(self, lower, upper)
def clip(self, lower, upper):
r"""
clip(VariableBinAxis self, double lower, double upper)
void VariableBinAxis::clip(double lower, double upper) override
Clips this axis to the given values.
"""
return _libBornAgainBase.VariableBinAxis_clip(self, lower, upper)
2310
2311
2312
2313
2314
2315
2316
2317
2318
2319
2320
2321
2322
2323
2324
2325
2326
2327
2328
2329
2330
2331
2332
2333
2334
2335
2336
2337
2338
2339
2340
2341
2342
2343
2344
2345
2346
2347
2348
2349
2350
2351
2352
2353
2354
2355
2356
2357
2358
2359
def __getitem__(self, i):
r"""__getitem__(VariableBinAxis self, unsigned int i) -> double"""
return _libBornAgainBase.VariableBinAxis___getitem__(self, i)
# Register VariableBinAxis in _libBornAgainBase:
_libBornAgainBase.VariableBinAxis_swigregister(VariableBinAxis)
class ConstKBinAxis(VariableBinAxis):
r"""
Axis with fixed bin size in sin(angle) space.
C++ includes: ConstKBinAxis.h
"""
thisown = property(lambda x: x.this.own(), lambda x, v: x.this.own(v), doc="The membership flag")
__repr__ = _swig_repr
def __init__(self, name, nbins, start, end):
r"""
__init__(ConstKBinAxis self, std::string const & name, size_t nbins, double start, double end) -> ConstKBinAxis
ConstKBinAxis::ConstKBinAxis(const std::string &name, size_t nbins, double start, double end)
ConstKBinAxis constructor.
Parameters:
-----------
name:
Axis name
nbins:
number of bins
start:
low edge of first bin
end:
upper edge of last bin
"""
_libBornAgainBase.ConstKBinAxis_swiginit(self, _libBornAgainBase.new_ConstKBinAxis(name, nbins, start, end))
__swig_destroy__ = _libBornAgainBase.delete_ConstKBinAxis
def clone(self):
r"""
clone(ConstKBinAxis self) -> ConstKBinAxis
ConstKBinAxis * ConstKBinAxis::clone() const override
"""
return _libBornAgainBase.ConstKBinAxis_clone(self)
createClippedAxis(ConstKBinAxis self, double lower, double upper) -> ConstKBinAxis
ConstKBinAxis * ConstKBinAxis::createClippedAxis(double lower, double upper) const override
Creates a new clipped axis.
"""
return _libBornAgainBase.ConstKBinAxis_createClippedAxis(self, lower, upper)
def clip(self, lower, upper):
r"""
clip(ConstKBinAxis self, double lower, double upper)
void ConstKBinAxis::clip(double lower, double upper) override
Clips this axis to the given values.
"""
return _libBornAgainBase.ConstKBinAxis_clip(self, lower, upper)
2384
2385
2386
2387
2388
2389
2390
2391
2392
2393
2394
2395
2396
2397
2398
2399
2400
2401
2402
2403
2404
2405
2406
2407
2408
2409
2410
2411
2412
2413
2414
2415
2416
2417
2418
2419
2420
2421
2422
2423
2424
2425
2426
2427
2428
2429
# Register ConstKBinAxis in _libBornAgainBase:
_libBornAgainBase.ConstKBinAxis_swigregister(ConstKBinAxis)
class CustomBinAxis(VariableBinAxis):
r"""
Axis with fixed bin size in sin(angle) space used for numerical comparison with IsGisaxs. The main feature of the axis is that it produces zero bin sizes.
C++ includes: CustomBinAxis.h
"""
thisown = property(lambda x: x.this.own(), lambda x, v: x.this.own(v), doc="The membership flag")
__repr__ = _swig_repr
def __init__(self, name, nbins, start, end):
r"""
__init__(CustomBinAxis self, std::string const & name, size_t nbins, double start, double end) -> CustomBinAxis
CustomBinAxis::CustomBinAxis(const std::string &name, size_t nbins, double start, double end)
CustomBinAxis constructor.
Parameters:
-----------
name:
Axis name
nbins:
number of bins
start:
center of first bin (IsGisaxs convention)
end:
center of last bin (IsGisaxs convention)
"""
_libBornAgainBase.CustomBinAxis_swiginit(self, _libBornAgainBase.new_CustomBinAxis(name, nbins, start, end))
__swig_destroy__ = _libBornAgainBase.delete_CustomBinAxis
def clone(self):
r"""
clone(CustomBinAxis self) -> CustomBinAxis
CustomBinAxis * CustomBinAxis::clone() const override
"""
return _libBornAgainBase.CustomBinAxis_clone(self)
bin(CustomBinAxis self, size_t index) -> Bin1D
Bin1D CustomBinAxis::bin(size_t index) const override
retrieve a 1d bin for the given index
"""
return _libBornAgainBase.CustomBinAxis_bin(self, index)
binCenters(CustomBinAxis self) -> vdouble1d_t
std::vector< double > CustomBinAxis::binCenters() const override
return _libBornAgainBase.CustomBinAxis_binCenters(self)
createClippedAxis(CustomBinAxis self, double lower, double upper) -> CustomBinAxis
CustomBinAxis * CustomBinAxis::createClippedAxis(double lower, double upper) const override
Creates a new clipped axis.
"""
return _libBornAgainBase.CustomBinAxis_createClippedAxis(self, lower, upper)
def clip(self, lower, upper):
r"""
clip(CustomBinAxis self, double lower, double upper)
void CustomBinAxis::clip(double lower, double upper) override
Clips this axis to the given values.
"""
return _libBornAgainBase.CustomBinAxis_clip(self, lower, upper)
2472
2473
2474
2475
2476
2477
2478
2479
2480
2481
2482
2483
2484
2485
2486
2487
2488
2489
2490
2491
2492
2493
2494
2495
2496
2497
2498
2499
2500
2501
2502
2503
2504
2505
2506
2507
2508
2509
2510
2511
2512
2513
2514
2515
2516
2517
# Register CustomBinAxis in _libBornAgainBase:
_libBornAgainBase.CustomBinAxis_swigregister(CustomBinAxis)
class FixedBinAxis(IAxis):
r"""
Axis with fixed bin size.
C++ includes: FixedBinAxis.h
"""
thisown = property(lambda x: x.this.own(), lambda x, v: x.this.own(v), doc="The membership flag")
__repr__ = _swig_repr
def __init__(self, name, nbins, start, end):
r"""
__init__(FixedBinAxis self, std::string const & name, size_t nbins, double start, double end) -> FixedBinAxis
FixedBinAxis::FixedBinAxis(const std::string &name, size_t nbins, double start, double end)
FixedBinAxis constructor.
Parameters:
-----------
name:
Axis name
nbins:
number of bins
start:
low edge of first bin
end:
upper edge of last bin
"""
_libBornAgainBase.FixedBinAxis_swiginit(self, _libBornAgainBase.new_FixedBinAxis(name, nbins, start, end))
__swig_destroy__ = _libBornAgainBase.delete_FixedBinAxis
def clone(self):
r"""
clone(FixedBinAxis self) -> FixedBinAxis
FixedBinAxis * FixedBinAxis::clone() const override
"""
return _libBornAgainBase.FixedBinAxis_clone(self)
def size(self):
r"""
size(FixedBinAxis self) -> size_t
size_t FixedBinAxis::size() const override
"""
return _libBornAgainBase.FixedBinAxis_size(self)
bin(FixedBinAxis self, size_t index) -> Bin1D
Bin1D FixedBinAxis::bin(size_t index) const override
retrieve a 1d bin for the given index
"""
return _libBornAgainBase.FixedBinAxis_bin(self, index)
def lowerBound(self):
lowerBound(FixedBinAxis self) -> double
double FixedBinAxis::lowerBound() const override
Returns value of first point of axis.
"""
return _libBornAgainBase.FixedBinAxis_lowerBound(self)
def upperBound(self):
upperBound(FixedBinAxis self) -> double
double FixedBinAxis::upperBound() const override
Returns value of last point of axis.
"""
return _libBornAgainBase.FixedBinAxis_upperBound(self)
binCenter(FixedBinAxis self, size_t index) -> double
double FixedBinAxis::binCenter(size_t index) const override
return _libBornAgainBase.FixedBinAxis_binCenter(self, index)
def findClosestIndex(self, value):
r"""
findClosestIndex(FixedBinAxis self, double value) -> size_t
size_t FixedBinAxis::findClosestIndex(double value) const override
find bin index which is best match for given value
"""
return _libBornAgainBase.FixedBinAxis_findClosestIndex(self, value)
binCenters(FixedBinAxis self) -> vdouble1d_t
std::vector< double > FixedBinAxis::binCenters() const override
return _libBornAgainBase.FixedBinAxis_binCenters(self)
binBoundaries(FixedBinAxis self) -> vdouble1d_t
std::vector< double > FixedBinAxis::binBoundaries() const override
return _libBornAgainBase.FixedBinAxis_binBoundaries(self)
createClippedAxis(FixedBinAxis self, double lower, double upper) -> FixedBinAxis
FixedBinAxis * FixedBinAxis::createClippedAxis(double lower, double upper) const override
Creates a new clipped axis.
"""
return _libBornAgainBase.FixedBinAxis_createClippedAxis(self, lower, upper)
def clip(self, lower, upper):
r"""
clip(FixedBinAxis self, double lower, double upper)
void FixedBinAxis::clip(double lower, double upper) override
Clips this axis to the given values.
"""
return _libBornAgainBase.FixedBinAxis_clip(self, lower, upper)
def __getitem__(self, i):
r"""__getitem__(FixedBinAxis self, unsigned int i) -> double"""
return _libBornAgainBase.FixedBinAxis___getitem__(self, i)
# Register FixedBinAxis in _libBornAgainBase:
_libBornAgainBase.FixedBinAxis_swigregister(FixedBinAxis)
Interface for a function that maps [0,1]x[0,1] to the kvectors in a pixel. Abstract base class for SphericalPixel and RectangularPixel.
2629
2630
2631
2632
2633
2634
2635
2636
2637
2638
2639
2640
2641
2642
2643
2644
2645
2646
2647
2648
2649
2650
2651
2652
2653
2654
2655
2656
2657
2658
2659
2660
2661
2662
2663
2664
C++ includes: IPixel.h
"""
thisown = property(lambda x: x.this.own(), lambda x, v: x.this.own(v), doc="The membership flag")
def __init__(self, *args, **kwargs):
raise AttributeError("No constructor defined - class is abstract")
__repr__ = _swig_repr
__swig_destroy__ = _libBornAgainBase.delete_IPixel
def clone(self):
r"""
clone(IPixel self) -> IPixel
virtual IPixel* IPixel::clone() const =0
"""
return _libBornAgainBase.IPixel_clone(self)
def createZeroSizePixel(self, x, y):
r"""
createZeroSizePixel(IPixel self, double x, double y) -> IPixel
virtual IPixel* IPixel::createZeroSizePixel(double x, double y) const =0
"""
return _libBornAgainBase.IPixel_createZeroSizePixel(self, x, y)
def getK(self, x, y, wavelength):
r"""
getK(IPixel self, double x, double y, double wavelength) -> kvector_t
virtual kvector_t IPixel::getK(double x, double y, double wavelength) const =0
"""
return _libBornAgainBase.IPixel_getK(self, x, y, wavelength)
integrationFactor(IPixel self, double x, double y) -> double
virtual double IPixel::integrationFactor(double x, double y) const =0
return _libBornAgainBase.IPixel_integrationFactor(self, x, y)
solidAngle(IPixel self) -> double
virtual double IPixel::solidAngle() const =0
return _libBornAgainBase.IPixel_solidAngle(self)
# Register IPixel in _libBornAgainBase:
_libBornAgainBase.IPixel_swigregister(IPixel)
class kvector_t(object):
r"""
Three-dimensional vector template, for use with integer, double, or complex components.
C++ includes: BasicVector3D.h
"""
thisown = property(lambda x: x.this.own(), lambda x, v: x.this.own(v), doc="The membership flag")
__repr__ = _swig_repr
def __init__(self, *args):
r"""
__init__(kvector_t self) -> kvector_t
__init__(kvector_t self, double const x1, double const y1, double const z1) -> kvector_t
BasicVector3D< T >::BasicVector3D(const T x1, const T y1, const T z1)
Constructs a vector from cartesian components.
2704
2705
2706
2707
2708
2709
2710
2711
2712
2713
2714
2715
2716
2717
2718
2719
2720
2721
2722
2723
2724
2725
2726
2727
2728
2729
2730
2731
2732
2733
2734
2735
2736
2737
2738
2739
2740
2741
2742
2743
2744
2745
2746
2747
2748
2749
2750
2751
2752
2753
2754
2755
2756
2757
2758
2759
2760
2761
2762
2763
2764
2765
2766
2767
2768
2769
2770
2771
2772
2773
2774
"""
_libBornAgainBase.kvector_t_swiginit(self, _libBornAgainBase.new_kvector_t(*args))
def x(self):
r"""
x(kvector_t self) -> double
T BasicVector3D< T >::x() const
Returns x-component in cartesian coordinate system.
"""
return _libBornAgainBase.kvector_t_x(self)
def y(self):
r"""
y(kvector_t self) -> double
T BasicVector3D< T >::y() const
Returns y-component in cartesian coordinate system.
"""
return _libBornAgainBase.kvector_t_y(self)
def z(self):
r"""
z(kvector_t self) -> double
T BasicVector3D< T >::z() const
Returns z-component in cartesian coordinate system.
"""
return _libBornAgainBase.kvector_t_z(self)
def setX(self, a):
r"""
setX(kvector_t self, double const & a)
void BasicVector3D< T >::setX(const T &a)
Sets x-component in cartesian coordinate system.
"""
return _libBornAgainBase.kvector_t_setX(self, a)
def setY(self, a):
r"""
setY(kvector_t self, double const & a)
void BasicVector3D< T >::setY(const T &a)
Sets y-component in cartesian coordinate system.
"""
return _libBornAgainBase.kvector_t_setY(self, a)
def setZ(self, a):
r"""
setZ(kvector_t self, double const & a)
void BasicVector3D< T >::setZ(const T &a)
Sets z-component in cartesian coordinate system.
"""
return _libBornAgainBase.kvector_t_setZ(self, a)
def __iadd__(self, v):
r"""__iadd__(kvector_t self, kvector_t v) -> kvector_t"""
return _libBornAgainBase.kvector_t___iadd__(self, v)
def __isub__(self, v):
r"""__isub__(kvector_t self, kvector_t v) -> kvector_t"""
return _libBornAgainBase.kvector_t___isub__(self, v)
def conj(self):
r"""
conj(kvector_t self) -> kvector_t
BasicVector3D<T> BasicVector3D< T >::conj() const
Returns complex conjugate vector.
2782
2783
2784
2785
2786
2787
2788
2789
2790
2791
2792
2793
2794
2795
2796
2797
2798
2799
2800
2801
2802
2803
2804
2805
2806
2807
2808
2809
2810
2811
2812
2813
2814
2815
2816
2817
2818
2819
2820
2821
2822
2823
2824
2825
2826
2827
2828
"""
return _libBornAgainBase.kvector_t_conj(self)
def mag2(self):
r"""
mag2(kvector_t self) -> double
double BasicVector3D< T >::mag2() const
Returns magnitude squared of the vector.
"""
return _libBornAgainBase.kvector_t_mag2(self)
def mag(self):
r"""
mag(kvector_t self) -> double
double BasicVector3D< T >::mag() const
Returns magnitude of the vector.
"""
return _libBornAgainBase.kvector_t_mag(self)
def magxy2(self):
r"""
magxy2(kvector_t self) -> double
double BasicVector3D< T >::magxy2() const
Returns squared distance from z axis.
"""
return _libBornAgainBase.kvector_t_magxy2(self)
def magxy(self):
r"""
magxy(kvector_t self) -> double
double BasicVector3D< T >::magxy() const
Returns distance from z axis.
"""
return _libBornAgainBase.kvector_t_magxy(self)
def phi(self):
r"""
phi(kvector_t self) -> double
double BasicVector3D< T >::phi() const
Returns azimuth angle.
"""
return _libBornAgainBase.kvector_t_phi(self)
def theta(self):
r"""
theta(kvector_t self) -> double
double BasicVector3D< T >::theta() const
Returns polar angle.
"""
return _libBornAgainBase.kvector_t_theta(self)
def cosTheta(self):
r"""
cosTheta(kvector_t self) -> double
double BasicVector3D< T >::cosTheta() const
Returns cosine of polar angle.
"""
return _libBornAgainBase.kvector_t_cosTheta(self)
def sin2Theta(self):
r"""
sin2Theta(kvector_t self) -> double
double BasicVector3D< T >::sin2Theta() const
Returns squared sine of polar angle.
"""
return _libBornAgainBase.kvector_t_sin2Theta(self)
def unit(self):
r"""
unit(kvector_t self) -> kvector_t
BasicVector3D<T> BasicVector3D< T >::unit() const
Returns unit vector in direction of this. Throws for null vector.
"""
return _libBornAgainBase.kvector_t_unit(self)
def complex(self):
r"""
complex(kvector_t self) -> cvector_t
BasicVector3D<complex_t> BasicVector3D< T >::complex() const
Returns this, trivially converted to complex type.
"""
return _libBornAgainBase.kvector_t_complex(self)
def real(self):
r"""
real(kvector_t self) -> kvector_t
BasicVector3D<double> BasicVector3D< T >::real() const
Returns real parts.
"""
return _libBornAgainBase.kvector_t_real(self)
def angle(self, v):
r"""
angle(kvector_t self, kvector_t v) -> double
double BasicVector3D< T >::angle(const BasicVector3D< T > &v) const
Returns angle with respect to another vector.
2902
2903
2904
2905
2906
2907
2908
2909
2910
2911
2912
2913
2914
2915
2916
2917
2918
2919
2920
2921
2922
2923
2924
2925
2926
2927
2928
2929
2930
2931
2932
2933
2934
2935
2936
2937
2938
2939
2940
2941
2942
2943
2944
2945
2946
2947
2948
2949
2950
2951
2952
2953
2954
2955
2956
2957
2958
2959
2960
2961
2962
2963
2964
2965
2966
2967
2968
2969
2970
2971
2972
2973
2974
2975
2976
2977
2978
2979
2980
2981
2982
2983
2984
2985
2986
2987
2988
2989
2990
2991
2992
2993
2994
2995
2996
2997
2998
2999
3000
"""
return _libBornAgainBase.kvector_t_angle(self, v)
def project(self, v):
r"""
project(kvector_t self, kvector_t v) -> kvector_t
BasicVector3D<T> BasicVector3D< T >::project(const BasicVector3D< T > &v) const
Returns projection of this onto other vector: (this*v)*v/|v|^2.
"""
return _libBornAgainBase.kvector_t_project(self, v)
__swig_destroy__ = _libBornAgainBase.delete_kvector_t
# Register kvector_t in _libBornAgainBase:
_libBornAgainBase.kvector_t_swigregister(kvector_t)
class vector_kvector_t(object):
r"""Proxy of C++ std::vector< BasicVector3D< double > > class."""
thisown = property(lambda x: x.this.own(), lambda x, v: x.this.own(v), doc="The membership flag")
__repr__ = _swig_repr
def iterator(self):
r"""iterator(vector_kvector_t self) -> SwigPyIterator"""
return _libBornAgainBase.vector_kvector_t_iterator(self)
def __iter__(self):
return self.iterator()
def __nonzero__(self):
r"""__nonzero__(vector_kvector_t self) -> bool"""
return _libBornAgainBase.vector_kvector_t___nonzero__(self)
def __bool__(self):
r"""__bool__(vector_kvector_t self) -> bool"""
return _libBornAgainBase.vector_kvector_t___bool__(self)
def __len__(self):
r"""__len__(vector_kvector_t self) -> std::vector< BasicVector3D< double > >::size_type"""
return _libBornAgainBase.vector_kvector_t___len__(self)
def __getslice__(self, i, j):
r"""__getslice__(vector_kvector_t self, std::vector< BasicVector3D< double > >::difference_type i, std::vector< BasicVector3D< double > >::difference_type j) -> vector_kvector_t"""
return _libBornAgainBase.vector_kvector_t___getslice__(self, i, j)
def __setslice__(self, *args):
r"""
__setslice__(vector_kvector_t self, std::vector< BasicVector3D< double > >::difference_type i, std::vector< BasicVector3D< double > >::difference_type j)
__setslice__(vector_kvector_t self, std::vector< BasicVector3D< double > >::difference_type i, std::vector< BasicVector3D< double > >::difference_type j, vector_kvector_t v)
"""
return _libBornAgainBase.vector_kvector_t___setslice__(self, *args)
def __delslice__(self, i, j):
r"""__delslice__(vector_kvector_t self, std::vector< BasicVector3D< double > >::difference_type i, std::vector< BasicVector3D< double > >::difference_type j)"""
return _libBornAgainBase.vector_kvector_t___delslice__(self, i, j)
def __delitem__(self, *args):
r"""
__delitem__(vector_kvector_t self, std::vector< BasicVector3D< double > >::difference_type i)
__delitem__(vector_kvector_t self, PySliceObject * slice)
"""
return _libBornAgainBase.vector_kvector_t___delitem__(self, *args)
def __getitem__(self, *args):
r"""
__getitem__(vector_kvector_t self, PySliceObject * slice) -> vector_kvector_t
__getitem__(vector_kvector_t self, std::vector< BasicVector3D< double > >::difference_type i) -> kvector_t
"""
return _libBornAgainBase.vector_kvector_t___getitem__(self, *args)
def __setitem__(self, *args):
r"""
__setitem__(vector_kvector_t self, PySliceObject * slice, vector_kvector_t v)
__setitem__(vector_kvector_t self, PySliceObject * slice)
__setitem__(vector_kvector_t self, std::vector< BasicVector3D< double > >::difference_type i, kvector_t x)
"""
return _libBornAgainBase.vector_kvector_t___setitem__(self, *args)
def pop(self):
r"""pop(vector_kvector_t self) -> kvector_t"""
return _libBornAgainBase.vector_kvector_t_pop(self)
def append(self, x):
r"""append(vector_kvector_t self, kvector_t x)"""
return _libBornAgainBase.vector_kvector_t_append(self, x)
def empty(self):
r"""empty(vector_kvector_t self) -> bool"""
return _libBornAgainBase.vector_kvector_t_empty(self)
def size(self):
r"""size(vector_kvector_t self) -> std::vector< BasicVector3D< double > >::size_type"""
return _libBornAgainBase.vector_kvector_t_size(self)
def swap(self, v):
r"""swap(vector_kvector_t self, vector_kvector_t v)"""
return _libBornAgainBase.vector_kvector_t_swap(self, v)