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setup.py
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"""
hipercam setup file
"""
import os
from setuptools import setup, find_packages
from setuptools.extension import Extension
# To use a consistent encoding
from codecs import open
# need for Cython
import numpy as np
from Cython.Build import cythonize
here = os.path.abspath(os.path.dirname(__file__))
# Get the long description from the README file
with open(os.path.join(here, 'README.rst'), encoding='utf-8') as f:
long_description = f.read()
# cython support routine
extension = [
Extension("hipercam.support",
[os.path.join('hipercam','support.pyx')],
libraries=["m"],
include_dirs=[np.get_include()],
extra_compile_args=["-fno-strict-aliasing"],),
]
setup(
name='hipercam',
# Versions should comply with PEP440. Here we use a version generated
# automatically from git.
use_scm_version=True,
setup_requires=['setuptools_scm'],
description='hipercam',
long_description=long_description,
# The project's main homepage.
url='http://www.astro.warwick.ac.uk',
# Author details
author='Tom Marsh',
author_email='t.r.marsh@warwick.ac.uk',
# Choose your license
license='BSD',
# See https://pypi.python.org/pypi?%3Aaction=list_classifiers
classifiers=[
# How mature is this project? Common values are
# 3 - Alpha
# 4 - Beta
# 5 - Production/Stable
'Development Status :: 3 - Alpha',
# Indicate who your project is intended for
'Intended Audience :: Astronomers',
'Topic :: Astronomy :: Photometric reduction',
# Pick your license as you wish (should match "license" above)
'License :: OSI Approved :: BSD License',
# Specify the Python versions you support here. In particular, ensure
# that you indicate whether you support Python 2, Python 3 or both.
'Programming Language :: Python :: 3',
'Programming Language :: Python :: 3.6',
],
# What does your project relate to?
keywords='astronomy photometry reduction',
# You can just specify the packages manually here if your project is
# simple. Or you can use find_packages().
packages=find_packages(exclude=['contrib', 'docs', 'tests']),
# extension modules
ext_modules = cythonize(extension),
# Alternatively, if you want to distribute just a my_module.py, uncomment
# this:
# py_modules=["my_module"],
# List run-time dependencies here. These will be installed by pip when
# your project is installed. For an analysis of "install_requires" vs pip's
# requirements files see:
# https://packaging.python.org/en/latest/requirements.html
install_requires=[
'sep','numpy','astropy','matplotlib','requests',
'numba','websocket-client', 'fitsio'
],
# Makes significant use of f-strings which came in in 3.6
python_requires='>=3.6',
# need numpy version 1.12
# List additional groups of dependencies here (e.g. development
# dependencies). You can install these using the following syntax,
# for example:
# $ pip install -e .[dev,test]
extras_require={
'dev': ['check-manifest'],
'test': ['coverage'],
},
# If there are data files included in your packages that need to be
# installed, specify them here. If using Python 2.6 or less, then these
# have to be included in MANIFEST.in as well.
#package_data={
# 'sample': ['package_data.dat'],
#},
# Although 'package_data' is the preferred approach, in some case you may
# need to place data files outside of your packages. See:
# http://docs.python.org/3.4/distutils/setupscript.html#installing-additional-files # noqa
# In this case, 'data_file' will be installed into '<sys.prefix>/my_data'
#data_files=[('my_data', ['data/data_file'])],
# To provide executable scripts, use entry points in preference to the
# "scripts" keyword. Entry points provide cross-platform support and allow
# pip to create the appropriate form of executable for the target platform.
entry_points={
'console_scripts' : [
'add=hipercam.scripts.arith:add',
'aligntool=hipercam.scripts.aligntool:aligntool',
'atanalysis=hipercam.scripts.atanalysis:atanalysis',
'atbytes=hipercam.scripts.atbytes:atbytes',
'averun=hipercam.scripts.averun:averun',
'cadd=hipercam.scripts.carith:cadd',
'cdiv=hipercam.scripts.carith:cdiv',
'cmul=hipercam.scripts.carith:cmul',
'combine=hipercam.scripts.combine:combine',
'csub=hipercam.scripts.carith:csub',
'digest=hipercam.scripts.digest:digest',
'div=hipercam.scripts.arith:div',
'fits2hcm=hipercam.scripts.fits2hcm:fits2hcm',
'flagcloud=hipercam.scripts.flagcloud:flagcloud',
'ftargets=hipercam.scripts.ftargets:ftargets',
'genred=hipercam.scripts.genred:genred',
'grab=hipercam.scripts.grab:grab',
'hfilter=hipercam.scripts.hfilter:hfilter',
'hinfo=hipercam.scripts.hinfo:hinfo',
'hist=hipercam.scripts.hist:hist',
'hlogger=hipercam.scripts.hlogger:hlogger',
'hlog2col=hipercam.scripts.hlog2col:hlog2col',
'hlog2fits=hipercam.scripts.hlog2fits:hlog2fits',
'hls=hipercam.scripts.hls:hls',
'hmeta=hipercam.scripts.hmeta:hmeta',
'hplot=hipercam.scripts.hplot:hplot',
'ltimes=hipercam.scripts.ltimes:ltimes',
'ltrans=hipercam.scripts.ltrans:ltrans',
'makebias=hipercam.scripts.makebias:makebias',
'makedark=hipercam.scripts.makedark:makedark',
'makefield=hipercam.scripts.makestuff:makefield',
'makeflat=hipercam.scripts.makeflat:makeflat',
'makemccd=hipercam.scripts.makestuff:makemccd',
'mstats=hipercam.scripts.mstats:mstats',
'mul=hipercam.scripts.arith:mul',
'pfolder=hipercam.scripts.pfolder:pfolder',
'plog=hipercam.scripts.plog:plog',
'psf_reduce=hipercam.scripts.psf_reduce:psf_reduce',
'redanal=hipercam.scripts.redanal:redanal',
'redplt=hipercam.scripts.redplt:redplt',
'reduce=hipercam.scripts.reduce:reduce',
'rtplot=hipercam.scripts.rtplot:rtplot',
'rupdate=hipercam.scripts.rupdate:rupdate',
'setaper=hipercam.scripts.setaper:setaper',
'setdefect=hipercam.scripts.setdefect:setdefect',
'splice=hipercam.scripts.splice:splice',
'stats=hipercam.scripts.stats:stats',
'sub=hipercam.scripts.arith:sub',
'tanalysis=hipercam.scripts.tanalysis:tanalysis',
'tbytes=hipercam.scripts.tbytes:tbytes',
'ulogger=hipercam.scripts.ulogger:ulogger',
'uls=hipercam.scripts.uls:uls',
],
},
# tests
test_suite = 'nose.collector',
tests_require = ['nose','numpy','astropy'],
)