1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
84
85
86
87
88
89
90
91
92
93
94
95
96
97
98
99
100
101
102
103
104
105
106
107
108
109
110
111
112
113
114
115
116
117
118
119
120
121
122
123
|
# This file is part of the Gudhi Library - https://gudhi.inria.fr/ -
# which is released under MIT.
# See file LICENSE or go to https://gudhi.inria.fr/licensing/ for full
# license details.
# Author(s): Vincent Rouvreau
#
# Copyright (C) 2016 Inria
#
# Modification(s):
# - YYYY/MM Author: Description of the modification
from __future__ import print_function
from cython cimport numeric
from libcpp.vector cimport vector
from libcpp.utility cimport pair
from libcpp.string cimport string
from libcpp cimport bool
from libc.stdint cimport intptr_t
import os
from gudhi.simplex_tree cimport *
from gudhi.simplex_tree import SimplexTree
__author__ = "Vincent Rouvreau"
__copyright__ = "Copyright (C) 2016 Inria"
__license__ = "GPL v3"
cdef extern from "Alpha_complex_interface.h" namespace "Gudhi":
cdef cppclass Alpha_complex_interface "Gudhi::alpha_complex::Alpha_complex_interface":
Alpha_complex_interface(vector[vector[double]] points) nogil except +
# bool from_file is a workaround for cython to find the correct signature
Alpha_complex_interface(string off_file, bool from_file) nogil except +
vector[double] get_point(int vertex) nogil except +
void create_simplex_tree(Simplex_tree_interface_full_featured* simplex_tree, double max_alpha_square) nogil except +
# AlphaComplex python interface
cdef class AlphaComplex:
"""AlphaComplex is a simplicial complex constructed from the finite cells
of a Delaunay Triangulation.
The filtration value of each simplex is computed as the square of the
circumradius of the simplex if the circumsphere is empty (the simplex is
then said to be Gabriel), and as the minimum of the filtration values of
the codimension 1 cofaces that make it not Gabriel otherwise.
All simplices that have a filtration value strictly greater than a given
alpha squared value are not inserted into the complex.
.. note::
When Alpha_complex is constructed with an infinite value of alpha, the
complex is a Delaunay complex.
"""
cdef Alpha_complex_interface * thisptr
# Fake constructor that does nothing but documenting the constructor
def __init__(self, points=None, off_file=''):
"""AlphaComplex constructor.
:param points: A list of points in d-Dimension.
:type points: list of list of double
Or
:param off_file: An OFF file style name.
:type off_file: string
"""
# The real cython constructor
def __cinit__(self, points = None, off_file = ''):
cdef vector[vector[double]] pts
if off_file:
if os.path.isfile(off_file):
self.thisptr = new Alpha_complex_interface(
off_file.encode('utf-8'), True)
else:
print("file " + off_file + " not found.")
else:
if points is None:
# Empty Alpha construction
points=[]
pts = points
with nogil:
self.thisptr = new Alpha_complex_interface(pts)
def __dealloc__(self):
if self.thisptr != NULL:
del self.thisptr
def __is_defined(self):
"""Returns true if AlphaComplex pointer is not NULL.
"""
return self.thisptr != NULL
def get_point(self, vertex):
"""This function returns the point corresponding to a given vertex.
:param vertex: The vertex.
:type vertex: int
:rtype: list of float
:returns: the point.
"""
return self.thisptr.get_point(vertex)
def create_simplex_tree(self, max_alpha_square = float('inf')):
"""
:param max_alpha_square: The maximum alpha square threshold the
simplices shall not exceed. Default is set to infinity, and
there is very little point using anything else since it does
not save time.
:type max_alpha_square: float
:returns: A simplex tree created from the Delaunay Triangulation.
:rtype: SimplexTree
"""
stree = SimplexTree()
cdef double mas = max_alpha_square
cdef intptr_t stree_int_ptr=stree.thisptr
with nogil:
self.thisptr.create_simplex_tree(<Simplex_tree_interface_full_featured*>stree_int_ptr, mas)
return stree
|