def test_pycc(): modulename = os.path.join(base_path, "compile_with_pycc") cdll_modulename = modulename + find_shared_ending() if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) main(args=[modulename + ".py"]) lib = CDLL(cdll_modulename) try: lib.mult.argtypes = [c_double, c_double] lib.mult.restype = c_double lib.multf.argtypes = [c_float, c_float] lib.multf.restype = c_float res = lib.mult(123, 321) print("lib.mult(123, 321) = %f", res) assert res == 123 * 321 res = lib.multf(987, 321) print("lib.multf(987, 321) = %f" % res) assert res == 987 * 321 finally: del lib if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) tmpdir = tempfile.gettempdir() print("tmpdir: %s" % tmpdir) out_modulename = os.path.join(tmpdir, "compiled_with_pycc") + find_shared_ending() main(args=["--python", "-o", out_modulename, modulename + ".py"]) sys.path.append(tmpdir) try: import compiled_with_pycc as lib try: res = lib.mult(123, 321) print("lib.mult(123, 321) = %f" % res) assert res == 123 * 321 res = lib.multf(987, 321) print("lib.multf(987, 321) = %f" % res) assert res == 987 * 321 finally: del lib finally: if os.path.exists(out_modulename): os.unlink(out_modulename)
def test_pycc(): modulename = os.path.join(base_path, 'compile_with_pycc') cdll_modulename = modulename + find_shared_ending() if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) main(args=[modulename + '.py']) lib = CDLL(cdll_modulename) try: lib.mult.argtypes = [c_double, c_double] lib.mult.restype = c_double lib.multf.argtypes = [c_float, c_float] lib.multf.restype = c_float res = lib.mult(123, 321) print('lib.mult(123, 321) = %f', res) assert res == 123 * 321 res = lib.multf(987, 321) print('lib.multf(987, 321) = %f' % res) assert res == 987 * 321 finally: del lib if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) tmpdir = tempfile.gettempdir() print('tmpdir: %s' % tmpdir) out_modulename = (os.path.join(tmpdir, 'compiled_with_pycc') + find_shared_ending()) main(args=['--python', '-o', out_modulename, modulename + '.py']) sys.path.append(tmpdir) try: import compiled_with_pycc as lib try: res = lib.mult(123, 321) print('lib.mult(123, 321) = %f' % res) assert res == 123 * 321 res = lib.multf(987, 321) print('lib.multf(987, 321) = %f' % res) assert res == 987 * 321 finally: del lib finally: if os.path.exists(out_modulename): os.unlink(out_modulename)
def test_pycc(): modulename = os.path.join(os.path.dirname(__file__), 'compile_with_pycc') cdll_modulename = modulename + find_shared_ending() if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) pycc.main(args=[modulename + '.py']) lib = CDLL(cdll_modulename) try: lib.mult.argtypes = [c_double, c_double] lib.mult.restype = c_double lib.multf.argtypes = [c_float, c_float] lib.multf.restype = c_float res = lib.mult(123, 321) print 'lib.mult(123, 321) =', res assert res == 123 * 321 res = lib.multf(987, 321) print 'lib.multf(987, 321) =', res assert res == 987 * 321 finally: del lib if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) out_modulename = (os.path.join(os.path.dirname(__file__), 'compiled_with_pycc') + find_shared_ending()) pycc.main(args=['--python', '-o', out_modulename, modulename + '.py']) try: import numba.tests.compiled_with_pycc as lib try: res = lib.mult(123, 321) print 'lib.mult(123, 321) =', res assert res == 123 * 321 res = lib.multf(987, 321) print 'lib.multf(987, 321) =', res assert res == 987 * 321 finally: del lib finally: if os.path.exists(out_modulename): os.unlink(out_modulename)
def test_pycc_pymodule(self): unset_macosx_deployment_target() modulename = os.path.join(base_path, 'compile_with_pycc') tmpdir = tempfile.gettempdir() print('tmpdir: %s' % tmpdir) out_modulename = (os.path.join(tmpdir, 'compiled_with_pycc') + find_shared_ending()) main(args=['--python', '-o', out_modulename, modulename + '.py']) sys.path.append(tmpdir) try: import compiled_with_pycc as lib try: res = lib.mult(123, 321) print('lib.mult(123, 321) = %f' % res) assert res == 123 * 321 res = lib.multf(987, 321) print('lib.multf(987, 321) = %f' % res) assert res == 987 * 321 finally: del lib finally: if os.path.exists(out_modulename): os.unlink(out_modulename)
def test_pycc_ctypes_lib(self): modulename = os.path.join(base_path, "compile_with_pycc") cdll_modulename = modulename + find_shared_ending() if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) main(args=[modulename + ".py"]) lib = CDLL(cdll_modulename) try: lib.mult.argtypes = [POINTER(c_double), c_double, c_double] lib.mult.restype = c_int lib.multf.argtypes = [POINTER(c_float), c_float, c_float] lib.multf.restype = c_int res = c_double() lib.mult(byref(res), 123, 321) print("lib.mult(123, 321) = %f" % res.value) self.assertEqual(res.value, 123 * 321) res = c_float() lib.multf(byref(res), 987, 321) print("lib.multf(987, 321) = %f" % res.value) self.assertEqual(res.value, 987 * 321) finally: del lib if os.path.exists(cdll_modulename): os.unlink(cdll_modulename)
def test_pycc_ctypes_lib(self): modulename = os.path.join(base_path, 'compile_with_pycc') cdll_modulename = modulename + find_shared_ending() if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) main(args=[modulename + '.py']) lib = CDLL(cdll_modulename) try: lib.mult.argtypes = [POINTER(c_double), c_double, c_double] lib.mult.restype = c_int lib.multf.argtypes = [POINTER(c_float), c_float, c_float] lib.multf.restype = c_int res = c_double() lib.mult(byref(res), 123, 321) print('lib.mult(123, 321) = %f' % res.value) self.assertEqual(res.value, 123 * 321) res = c_float() lib.multf(byref(res), 987, 321) print('lib.multf(987, 321) = %f' % res.value) self.assertEqual(res.value, 987 * 321) finally: del lib if os.path.exists(cdll_modulename): os.unlink(cdll_modulename)
def test_pycc_ctypes_lib(self): unset_macosx_deployment_target() modulename = os.path.join(base_path, 'compile_with_pycc') cdll_modulename = modulename + find_shared_ending() if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) main(args=[modulename + '.py']) lib = CDLL(cdll_modulename) try: lib.mult.argtypes = [POINTER(c_double), c_void_p, c_double, c_double] lib.mult.restype = c_int lib.multf.argtypes = [POINTER(c_float), c_void_p, c_float, c_float] lib.multf.restype = c_int res = c_double() lib.mult(byref(res), None, 123, 321) print('lib.mult(123, 321) = %f' % res.value) self.assertEqual(res.value, 123 * 321) res = c_float() lib.multf(byref(res), None, 987, 321) print('lib.multf(987, 321) = %f' % res.value) self.assertEqual(res.value, 987 * 321) finally: del lib if os.path.exists(cdll_modulename): os.unlink(cdll_modulename)
def test_pycc_ctypes_lib(self): """ Test creating a C shared library object using pycc. """ unset_macosx_deployment_target() source = os.path.join(base_path, 'compile_with_pycc.py') cdll_modulename = 'test_dll_legacy' + find_shared_ending() cdll_path = os.path.join(self.tmpdir, cdll_modulename) if os.path.exists(cdll_path): os.unlink(cdll_path) main(args=['--debug', '-o', cdll_path, source]) lib = CDLL(cdll_path) lib.mult.argtypes = [ POINTER(c_double), c_void_p, c_void_p, c_double, c_double ] lib.mult.restype = c_int lib.multf.argtypes = [ POINTER(c_float), c_void_p, c_void_p, c_float, c_float ] lib.multf.restype = c_int res = c_double() lib.mult(byref(res), None, None, 123, 321) self.assertEqual(res.value, 123 * 321) res = c_float() lib.multf(byref(res), None, None, 987, 321) self.assertEqual(res.value, 987 * 321)
def get_ending(args): if args.llvm: return ".bc" if args.olibs: return ".o" else: return pyc.find_shared_ending()
def test_pycc_pymodule(self): """ Test creating a CPython extension module using pycc. """ unset_macosx_deployment_target() modulename = os.path.join(base_path, 'compile_with_pycc') tmpdir = tempfile.gettempdir() out_modulename = (os.path.join(tmpdir, 'compiled_with_pycc') + find_shared_ending()) def _cleanup(): if os.path.exists(out_modulename): os.unlink(out_modulename) _cleanup() self.addCleanup(_cleanup) main(args=['--python', '-o', out_modulename, modulename + '.py']) sys.path.append(tmpdir) try: import compiled_with_pycc as lib try: res = lib.mult(123, 321) assert res == 123 * 321 res = lib.multf(987, 321) assert res == 987 * 321 finally: del lib finally: sys.path.remove(tmpdir)
def test_pycc_ctypes_lib(self): """ Test creating a C shared library object using pycc. """ unset_macosx_deployment_target() modulename = os.path.join(base_path, 'compile_with_pycc') cdll_modulename = modulename + find_shared_ending() def _cleanup(): if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) _cleanup() self.addCleanup(_cleanup) main(args=[modulename + '.py']) lib = CDLL(cdll_modulename) lib.mult.argtypes = [POINTER(c_double), c_void_p, c_void_p, c_double, c_double] lib.mult.restype = c_int lib.multf.argtypes = [POINTER(c_float), c_void_p, c_void_p, c_float, c_float] lib.multf.restype = c_int res = c_double() lib.mult(byref(res), None, None, 123, 321) self.assertEqual(res.value, 123 * 321) res = c_float() lib.multf(byref(res), None, None, 987, 321) self.assertEqual(res.value, 987 * 321)
def test_pycc_ctypes_lib(self): """ Test creating a C shared library object using pycc. """ unset_macosx_deployment_target() source = os.path.join(base_path, 'compile_with_pycc.py') cdll_modulename = 'test_dll_legacy' + find_shared_ending() cdll_path = os.path.join(self.tmpdir, cdll_modulename) if os.path.exists(cdll_path): os.unlink(cdll_path) main(args=['--debug', '-o', cdll_path, source]) lib = CDLL(cdll_path) lib.mult.argtypes = [POINTER(c_double), c_void_p, c_void_p, c_double, c_double] lib.mult.restype = c_int lib.multf.argtypes = [POINTER(c_float), c_void_p, c_void_p, c_float, c_float] lib.multf.restype = c_int res = c_double() lib.mult(byref(res), None, None, 123, 321) self.assertEqual(res.value, 123 * 321) res = c_float() lib.multf(byref(res), None, None, 987, 321) self.assertEqual(res.value, 987 * 321)
def test_pycc_pymodule(self): modulename = os.path.join(base_path, "compile_with_pycc") tmpdir = tempfile.gettempdir() print("tmpdir: %s" % tmpdir) out_modulename = os.path.join(tmpdir, "compiled_with_pycc") + find_shared_ending() main(args=["--python", "-o", out_modulename, modulename + ".py"]) sys.path.append(tmpdir) try: import compiled_with_pycc as lib try: res = lib.mult(123, 321) print("lib.mult(123, 321) = %f" % res) assert res == 123 * 321 res = lib.multf(987, 321) print("lib.multf(987, 321) = %f" % res) assert res == 987 * 321 finally: del lib finally: if os.path.exists(out_modulename): os.unlink(out_modulename)
# -*- coding: utf-8 -*- from __future__ import print_function import os import tempfile import sys from ctypes import * from numba.pycc import find_shared_ending, main is_windows = sys.platform.startswith('win32') if is_windows: raise OSError('Example does not work on Windows platforms yet.') base_path = os.path.dirname(os.path.abspath(__file__)) modulename = os.path.join(base_path, 'compile_with_pycc') cdll_modulename = modulename + find_shared_ending() if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) # Compile python module to library main(args=[modulename + '.py']) lib = CDLL(cdll_modulename) # Load library with ctypes and call mult function try: lib.mult.argtypes = [POINTER(c_double), c_double, c_double] lib.mult.restype = c_int lib.multf.argtypes = [POINTER(c_float), c_float, c_float] lib.multf.restype = c_int
import os from ctypes import * import subprocess from numba.pycc import find_shared_ending from numba.pycc import pycc modulename = os.path.join(os.path.dirname(__file__), 'compile_with_pycc') pycc.main(args=[modulename + '.py']) lib = CDLL(modulename + find_shared_ending()) lib.mult.argtypes = [c_double, c_double] lib.mult.restype = c_double lib.multf.argtypes = [c_float, c_float] lib.multf.restype = c_float res = lib.mult(123, 321) print 'lib.mult(123, 321) =', res assert res == 123 * 321 res = lib.multf(987, 321) print 'lib.multf(987, 321) =', res assert res == 987 * 321
import os from ctypes import * from numba.pycc import find_shared_ending from numba.pycc import pycc modulename = os.path.join(os.path.dirname(__file__), 'compile_with_pycc') cdll_modulename = modulename + find_shared_ending() if os.path.exists(cdll_modulename): os.unlink(cdll_modulename) pycc.main(args=[modulename + '.py']) lib = CDLL(cdll_modulename) try: lib.mult.argtypes = [c_double, c_double] lib.mult.restype = c_double lib.multf.argtypes = [c_float, c_float] lib.multf.restype = c_float res = lib.mult(123, 321) print 'lib.mult(123, 321) =', res assert res == 123 * 321 res = lib.multf(987, 321) print 'lib.multf(987, 321) =', res assert res == 987 * 321 finally: