GeoIP-1.3.2/0000775000175000017500000000000012375655253012371 5ustar greggreg00000000000000GeoIP-1.3.2/setup.py0000664000175000017500000000304212375655171014101 0ustar greggreg00000000000000import sys try: from setuptools import setup, Extension except ImportError: from distutils.core import setup, Extension libs = ['GeoIP'] if sys.platform == 'win32': libs.append('ws2_32') compile_args = [] # http://bugs.python.org/issue969718 if sys.version_info[0] == 2: compile_args.append('-fno-strict-aliasing') module1 = Extension('GeoIP', libraries=libs, sources=['py_GeoIP.c'], extra_compile_args=compile_args) setup( name='GeoIP', version='1.3.2', description='MaxMind GeoIP Legacy Database - Python API', long_description=open('README.rst').read(), author="MaxMind, Inc.", author_email="support@maxmind.com", url='http://www.maxmind.com/', bugtrack_url='https://github.com/maxmind/geoip-api-python/issues', license=open('LICENSE').read(), ext_modules=[module1], tests_require=['nose'], test_suite='nose.collector', classifiers=( 'Development Status :: 6 - Mature', 'Environment :: Web Environment', 'Intended Audience :: Developers', 'Intended Audience :: System Administrators', 'License :: OSI Approved :: GNU Lesser General Public License v2 or later (LGPLv2+)', 'Programming Language :: Python :: 2.6', 'Programming Language :: Python :: 2.7', 'Programming Language :: Python :: 3.3', 'Programming Language :: Python :: 3.4', 'Programming Language :: Python', 'Topic :: Internet :: Proxy Servers', 'Topic :: Internet', ), ) GeoIP-1.3.2/py_GeoIP.c0000664000175000017500000007202112375653201014201 0ustar greggreg00000000000000/* -*- Mode: C; indent-tabs-mode: nil; c-basic-offset: 4 -*- */ /* py_GeoIP.c * * Copyright (C) 2007 MaxMind LLC * * This library is free software; you can redistribute it and/or * modify it under the terms of the GNU Lesser General Public * License as published by the Free Software Foundation; either * version 2.1 of the License, or (at your option) any later version. * * This library is distributed in the hope that it will be useful, * but WITHOUT ANY WARRANTY; without even the implied warranty of * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU * Lesser General Public License for more details. * * You should have received a copy of the GNU Lesser General Public * License along with this library; if not, write to the Free Software * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA */ #include #include "GeoIP.h" #include "GeoIPCity.h" #ifdef __GNUC__ # define UNUSED(x) UNUSED_ ## x __attribute__((__unused__)) #else # define UNUSED(x) UNUSED_ ## x #endif /* Python 2.x compatibility: in all the places PyUnicode_FromString is used, we actually want whatever the default str() for that Python is */ #if PY_MAJOR_VERSION <= 2 # undef PyUnicode_FromString # define PyUnicode_FromString(s) PyString_FromString(s) #endif /* Python 2.5 compatibility */ #ifndef PyVarObject_HEAD_INIT # define PyVarObject_HEAD_INIT(x, y) PyObject_HEAD_INIT(x) y, #endif #ifndef PyModule_AddIntMacro # define PyModule_AddIntMacro(m, c) PyModule_AddIntConstant(m, # c, c) #endif static PyTypeObject GeoIP_GeoIPType; /* Exception object for python */ static PyObject *GeoIP_GeoIPError; typedef struct { PyObject_HEAD GeoIP *gi; } GeoIP_GeoIPObject; static int GeoIP_GeoIP_init(PyObject *self, PyObject *args, PyObject *kwargs) { static char *kwlist[] = { "filename", "flags", NULL }; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; char *filename = NULL; int flags; /* For consistency with the C API, positional arguments are in the order filename, flags; but it is filename that is optional. */ if (PyArg_ParseTupleAndKeywords(args, kwargs, "i", kwlist + 1, &flags)) { GeoIP->gi = GeoIP_new(flags); } else{ PyErr_Clear(); if (PyArg_ParseTupleAndKeywords(args, kwargs, "si", kwlist, &filename, &flags)) { GeoIP->gi = GeoIP_open(filename, flags); } else{ return -1; } } if (!GeoIP->gi) { /* Failure is probably due to a system-call-level failure. */ if (!filename) { filename = GeoIPDBFileName[GEOIP_COUNTRY_EDITION]; } PyErr_SetFromErrnoWithFilename(GeoIP_GeoIPError, filename); return -1; } #if PY_MAJOR_VERSION >= 3 GeoIP_set_charset(GeoIP->gi, GEOIP_CHARSET_UTF8); #endif return 0; } static void GeoIP_GeoIP_dealloc(PyObject *self) { GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; GeoIP_delete(GeoIP->gi); PyObject_Del(self); } static PyObject *GeoIP_country_code_by_name_v6_Py(PyObject * self, PyObject * args) { char *name; const char *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_country_code_by_name_v6(GeoIP->gi, name); return Py_BuildValue("s", retval); } static PyObject *GeoIP_country_name_by_name_v6_Py(PyObject * self, PyObject * args) { char *name; const char *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_country_name_by_name_v6(GeoIP->gi, name); return Py_BuildValue("s", retval); } static PyObject *GeoIP_country_code_by_addr_v6_Py(PyObject * self, PyObject * args) { char *name; const char *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_country_code_by_addr_v6(GeoIP->gi, name); return Py_BuildValue("s", retval); } static PyObject *GeoIP_country_name_by_addr_v6_Py(PyObject * self, PyObject * args) { char *name; const char *retval; PyObject *ret; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_country_name_by_addr_v6(GeoIP->gi, name); ret = Py_BuildValue("s", retval); return ret; } static PyObject *GeoIP_country_code_by_name_Py(PyObject * self, PyObject * args) { char *name; const char *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_country_code_by_name(GeoIP->gi, name); return Py_BuildValue("s", retval); } static PyObject *GeoIP_country_name_by_name_Py(PyObject * self, PyObject * args) { char *name; const char *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_country_name_by_name(GeoIP->gi, name); return Py_BuildValue("s", retval); } static PyObject *GeoIP_country_code_by_addr_Py(PyObject * self, PyObject * args) { char *name; const char *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_country_code_by_addr(GeoIP->gi, name); return Py_BuildValue("s", retval); } static PyObject *GeoIP_country_name_by_addr_Py(PyObject * self, PyObject * args) { char *name; const char *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_country_name_by_addr(GeoIP->gi, name); return Py_BuildValue("s", retval); } static PyObject *GeoIP_name_by_addr_Py(PyObject * self, PyObject * args) { char *name; char *org; PyObject *ret; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } org = GeoIP_name_by_addr(GeoIP->gi, name); ret = Py_BuildValue("s", org); free(org); return ret; } static PyObject *GeoIP_name_by_addr_v6_Py(PyObject * self, PyObject * args) { char *name; char *org; PyObject *ret; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } org = GeoIP_name_by_addr_v6(GeoIP->gi, name); ret = Py_BuildValue("s", org); free(org); return ret; } static PyObject *GeoIP_name_by_name_Py(PyObject * self, PyObject * args) { char *name; char *org; PyObject *ret; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } org = GeoIP_name_by_name(GeoIP->gi, name); ret = Py_BuildValue("s", org); free(org); return ret; } static PyObject *GeoIP_name_by_name_v6_Py(PyObject * self, PyObject * args) { char *name; char *org; PyObject *ret; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } org = GeoIP_name_by_name_v6(GeoIP->gi, name); ret = Py_BuildValue("s", org); free(org); return ret; } static PyObject *GeoIP_id_by_addr_Py(PyObject * self, PyObject * args) { char *name; int i; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } i = GeoIP_id_by_addr(GeoIP->gi, name); return Py_BuildValue("i", i); } static PyObject *GeoIP_id_by_name_Py(PyObject * self, PyObject * args) { char *name; int i; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } i = GeoIP_id_by_name(GeoIP->gi, name); return Py_BuildValue("i", i); } void GeoIP_SetItemString(PyObject * dict, const char *name, const char *value) { PyObject *nameObj; PyObject *valueObj; if ((nameObj = Py_BuildValue("s", name))) { if ((valueObj = Py_BuildValue("s", value))) { PyDict_SetItem(dict, nameObj, valueObj); Py_DECREF(valueObj); } Py_DECREF(nameObj); } } void GeoIP_SetItemFloat(PyObject * dict, const char *name, float value) { PyObject *nameObj; PyObject *valueObj; if ((nameObj = Py_BuildValue("s", name))) { if ((valueObj = Py_BuildValue("f", value))) { PyDict_SetItem(dict, nameObj, valueObj); Py_DECREF(valueObj); } Py_DECREF(nameObj); } } void GeoIP_SetItemInt(PyObject * dict, const char *name, int value) { PyObject *nameObj; PyObject *valueObj; if ((nameObj = Py_BuildValue("s", name))) { if ((valueObj = Py_BuildValue("i", value))) { PyDict_SetItem(dict, nameObj, valueObj); Py_DECREF(valueObj); } Py_DECREF(nameObj); } } static PyObject *GeoIP_region_populate_dict(GeoIPRegion * gir) { PyObject *retval; const char *region_name = NULL; retval = PyDict_New(); GeoIP_SetItemString(retval, "country_code", gir->country_code); GeoIP_SetItemString(retval, "region", gir->region); if (gir->country_code[0]) { region_name = GeoIP_region_name_by_code(gir->country_code, gir->region); } GeoIP_SetItemString(retval, "region_name", region_name); GeoIPRegion_delete(gir); return retval; } static PyObject *GeoIP_populate_dict(GeoIP * gi, GeoIPRecord * gir) { PyObject *retval; retval = PyDict_New(); GeoIP_SetItemString(retval, "country_code", gir->country_code); GeoIP_SetItemString(retval, "country_code3", gir->country_code3); GeoIP_SetItemString(retval, "country_name", gir->country_name); GeoIP_SetItemString(retval, "region", gir->region); GeoIP_SetItemString(retval, "city", gir->city); GeoIP_SetItemString(retval, "postal_code", gir->postal_code); GeoIP_SetItemFloat(retval, "latitude", gir->latitude); GeoIP_SetItemFloat(retval, "longitude", gir->longitude); GeoIP_SetItemString(retval, "region_name", GeoIP_region_name_by_code(gir->country_code, gir->region)); GeoIP_SetItemString(retval, "time_zone", GeoIP_time_zone_by_country_and_region(gir->country_code, gir->region)); if (gi->databaseType != GEOIP_CITY_EDITION_REV0) { /* * metro_code is a alias for the depreciated dma_code. * we use the depreciated gir->dma_code since the CAPI * wrapper might be outdated and does not supply metro_code */ GeoIP_SetItemInt(retval, "dma_code", gir->dma_code); /* we did __NOT__ use gir->metro_code here, since metro_code is * somewhat new */ GeoIP_SetItemInt(retval, "metro_code", gir->dma_code); GeoIP_SetItemInt(retval, "area_code", gir->area_code); } GeoIPRecord_delete(gir); return retval; } static PyObject *GeoIP_record_by_addr_v6_Py(PyObject * self, PyObject * args) { char *addr; GeoIPRecord *gir; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &addr)) { return NULL; } gir = GeoIP_record_by_addr_v6(GeoIP->gi, addr); if (gir == NULL) { Py_INCREF(Py_None); return Py_None; } return GeoIP_populate_dict(GeoIP->gi, gir); } static PyObject *GeoIP_record_by_name_v6_Py(PyObject * self, PyObject * args) { char *name; GeoIPRecord *gir; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } gir = GeoIP_record_by_name_v6(GeoIP->gi, name); if (gir == NULL) { Py_INCREF(Py_None); return Py_None; } return GeoIP_populate_dict(GeoIP->gi, gir); } static PyObject *GeoIP_record_by_addr_Py(PyObject * self, PyObject * args) { char *addr; GeoIPRecord *gir; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &addr)) { return NULL; } gir = GeoIP_record_by_addr(GeoIP->gi, addr); if (gir == NULL) { Py_INCREF(Py_None); return Py_None; } return GeoIP_populate_dict(GeoIP->gi, gir); } static PyObject *GeoIP_record_by_name_Py(PyObject * self, PyObject * args) { char *name; GeoIPRecord *gir; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } gir = GeoIP_record_by_name(GeoIP->gi, name); if (gir == NULL) { Py_INCREF(Py_None); return Py_None; } return GeoIP_populate_dict(GeoIP->gi, gir); } static PyObject *GeoIP_region_by_name_Py(PyObject * self, PyObject * args) { char *name; GeoIPRegion *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_region_by_name(GeoIP->gi, name); if (retval == NULL) { Py_INCREF(Py_None); return Py_None; } return GeoIP_region_populate_dict(retval); } static PyObject *GeoIP_region_by_addr_Py(PyObject * self, PyObject * args) { char *name; GeoIPRegion *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } retval = GeoIP_region_by_addr(GeoIP->gi, name); if (retval == NULL) { Py_INCREF(Py_None); return Py_None; } return GeoIP_region_populate_dict(retval); } static PyObject *GeoIP_range_by_ip_Py(PyObject * self, PyObject * args) { char *name; char **start_stop_ptr; PyObject *retval; GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; if (!PyArg_ParseTuple(args, "s", &name)) { return NULL; } start_stop_ptr = GeoIP_range_by_ip(GeoIP->gi, name); if (!start_stop_ptr) { return NULL; } retval = Py_BuildValue("ss", start_stop_ptr[0], start_stop_ptr[1]); /* relplace this code with GeoIP_range_by_ip_delete in the next version * otherwise the users need 1.4.5 instead of 1.4.4 */ if (retval) { if (start_stop_ptr[0]) { free(start_stop_ptr[0]); } if (start_stop_ptr[1]) { free(start_stop_ptr[1]); } free(start_stop_ptr); } return retval; } static PyObject *GeoIP_charset_Py(PyObject *self, PyObject *UNUSED(args)) { GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; return Py_BuildValue("i", GeoIP_charset(GeoIP->gi)); } static PyObject *GeoIP_set_charset_Py(PyObject * self, PyObject * args) { GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; int charset; if (!PyArg_ParseTuple(args, "i", &charset)) { return NULL; } #if PY_MAJOR_VERSION >= 3 if (charset != GEOIP_CHARSET_UTF8) { PyErr_SetString(PyExc_ValueError, "Only UTF-8 is supported for Python 3+."); return NULL; } #endif return Py_BuildValue("i", GeoIP_set_charset(GeoIP->gi, charset)); } static PyObject *GeoIP_last_netmask_Py(PyObject * self, PyObject *UNUSED(args)) { GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; return Py_BuildValue("i", GeoIP_last_netmask(GeoIP->gi)); } static PyObject *GeoIP_teredo_Py(PyObject * self, PyObject *UNUSED(args)) { GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; return Py_BuildValue("i", GeoIP_teredo(GeoIP->gi)); } static PyObject *GeoIP_enable_teredo_Py(PyObject * self, PyObject * args) { GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; int teredo; if (!PyArg_ParseTuple(args, "i", &teredo)) { return NULL; } return Py_BuildValue("i", GeoIP_enable_teredo(GeoIP->gi, teredo)); } static PyObject *GeoIP_new_Py(PyObject *UNUSED(self), PyObject * args) { int dummy; /* enforce calling convention */ if (!PyArg_ParseTuple(args, "i", &dummy)) { return NULL; } return PyObject_Call((PyObject *)&GeoIP_GeoIPType, args, NULL); } static PyObject *GeoIP_open_Py(PyObject *UNUSED(self), PyObject * args) { char *dummy1; int dummy2; /* enforce calling convention */ if (!PyArg_ParseTuple(args, "si", &dummy1, &dummy2)) { return NULL; } return PyObject_Call((PyObject *)&GeoIP_GeoIPType, args, NULL); } static PyObject *GeoIP_lib_version_Py(PyObject *UNUSED(self), PyObject *UNUSED(args)) { return Py_BuildValue("s", GeoIP_lib_version()); } static PyObject *GeoIP_time_zone_by_country_and_region_Py(PyObject *UNUSED(self), PyObject * args) { char *country_code, *region; if (!PyArg_ParseTuple(args, "ss", &country_code, ®ion)) { return NULL; } return Py_BuildValue("s", GeoIP_time_zone_by_country_and_region(country_code, region)); } static PyMethodDef GeoIP_GeoIP_methods[] = { { "country_code_by_name", GeoIP_country_code_by_name_Py, METH_VARARGS, "Lookup Country Code By Name" }, { "country_name_by_name", GeoIP_country_name_by_name_Py, METH_VARARGS, "Lookup Country Name By Name" }, { "country_code_by_addr", GeoIP_country_code_by_addr_Py, METH_VARARGS, "Lookup Country Code By IP Address" }, { "country_name_by_addr", GeoIP_country_name_by_addr_Py, METH_VARARGS, "Lookup Country Name By IP Address" }, { "name_by_addr", GeoIP_name_by_addr_Py, METH_VARARGS, "Lookup ASN, Domain, ISP and Organisation By IP Address" }, { "name_by_name", GeoIP_name_by_name_Py, METH_VARARGS, "Lookup ASN, Domain, ISP and Organisation By Name" }, { "org_by_addr", GeoIP_name_by_addr_Py, METH_VARARGS, "Lookup ASN, Domain, ISP and Organisation By IP Address ( deprecated use name_by_addr instead )" }, { "org_by_name", GeoIP_name_by_name_Py, METH_VARARGS, "Lookup ASN, Domain, ISP and Organisation By Name ( deprecated use name_by_name instead )" }, { "region_by_addr", GeoIP_region_by_addr_Py, METH_VARARGS, "Lookup Region By IP Address" }, { "region_by_name", GeoIP_region_by_name_Py, METH_VARARGS, "Lookup Region By Name" }, { "record_by_addr", GeoIP_record_by_addr_Py, METH_VARARGS, "Lookup City Region By IP Address" }, { "record_by_name", GeoIP_record_by_name_Py, METH_VARARGS, "Lookup City Region By Name" }, { "range_by_ip", GeoIP_range_by_ip_Py, METH_VARARGS, "Lookup start and end IP's for a given IP" }, { "charset", GeoIP_charset_Py, METH_NOARGS, "Return the current charset ( either GEOIP_CHARSET_ISO_8859_1 or GEOIP_CHARSET_UTF8 )" }, { "set_charset", GeoIP_set_charset_Py, METH_VARARGS, "Set the charset for city records" }, { "last_netmask", GeoIP_last_netmask_Py, METH_NOARGS, "Return the netmask depth of the last lookup" }, { "country_code_by_name_v6", GeoIP_country_code_by_name_v6_Py, METH_VARARGS, "Lookup IPv6 Country Code By Name" }, { "country_name_by_name_v6", GeoIP_country_name_by_name_v6_Py, METH_VARARGS, "Lookup IPv6 Country Name By Name" }, { "country_code_by_addr_v6", GeoIP_country_code_by_addr_v6_Py, METH_VARARGS, "Lookup IPv6 Country Code By IP Address" }, { "country_name_by_addr_v6", GeoIP_country_name_by_addr_v6_Py, METH_VARARGS, "Lookup IPv6 Country Name By IP Address" }, { "enable_teredo", GeoIP_enable_teredo_Py, METH_VARARGS, "Enable / disable teredo" }, { "teredo", GeoIP_teredo_Py, METH_NOARGS, "Returns true if teredo is enabled" }, { "id_by_addr", GeoIP_id_by_addr_Py, METH_VARARGS, "Lookup Netspeed By IP Address" }, { "id_by_name", GeoIP_id_by_name_Py, METH_VARARGS, "Lookup Netspeed By Name" }, { "record_by_addr_v6", GeoIP_record_by_addr_v6_Py, METH_VARARGS, "Lookup City Region By IP Address" }, { "record_by_name_v6", GeoIP_record_by_name_v6_Py, METH_VARARGS, "Lookup City Region By Name" }, { "name_by_addr_v6", GeoIP_name_by_addr_v6_Py, METH_VARARGS, "Lookup IPv6 ASN, Domain, ISP and Organisation By IP Address" }, { "name_by_name_v6", GeoIP_name_by_name_v6_Py, METH_VARARGS, "Lookup IPv6 ASN, Domain, ISP and Organisation By Name" }, { NULL, NULL, 0, NULL } }; static PyObject *GeoIP_get_GEOIP_STANDARD(PyObject *UNUSED(self), void *UNUSED(closure)) { return Py_BuildValue("i", GEOIP_STANDARD); } static PyObject *GeoIP_get_database_info(PyObject *self, void *UNUSED(closure)) { GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; char *database_info = GeoIP_database_info(GeoIP->gi); PyObject *ret = Py_BuildValue("z", database_info); free(database_info); return ret; } static PyObject *GeoIP_get_database_edition(PyObject *self, void *UNUSED(closure)) { GeoIP_GeoIPObject *GeoIP = (GeoIP_GeoIPObject *)self; return Py_BuildValue("z", GeoIPDBDescription[GeoIP_database_edition (GeoIP->gi)]); } static PyGetSetDef GeoIP_GeoIP_getsets[] = { { "database_edition", GeoIP_get_database_edition, NULL, "Edition of the database ( country, city, ISP, etc )", NULL }, { "database_info", GeoIP_get_database_info, NULL, "Information about the database", NULL }, { "GEOIP_STANDARD", GeoIP_get_GEOIP_STANDARD, NULL, "Same as module-level GEOIP_STANDARD constant ( deprecated )", NULL }, { NULL, NULL, NULL,NULL,NULL } }; static PyTypeObject GeoIP_GeoIPType = { PyVarObject_HEAD_INIT(NULL, 0) "GeoIP.GeoIP", /*tp_name*/ sizeof(GeoIP_GeoIPObject), /*tp_basicsize*/ 0, /*tp_itemsize*/ GeoIP_GeoIP_dealloc, /*tp_dealloc*/ 0, /*tp_print*/ 0, /*tp_getattr*/ 0, /*tp_setattr*/ 0, /*tp_compare*/ 0, /*tp_repr*/ 0, /*tp_as_number*/ 0, /*tp_as_sequence*/ 0, /*tp_as_mapping */ 0, /*tp_hash*/ 0, /*tp_call*/ 0, /*tp_str*/ 0, /*tp_getattro*/ 0, /*tp_setattro*/ 0, /*tp_as_buffer*/ Py_TPFLAGS_DEFAULT, /*tp_flags*/ "GeoIP database object", /*tp_doc*/ 0, /*tp_traverse*/ 0, /*tp_clear*/ 0, /*tp_richcompare*/ 0, /*tp_weaklistoffset*/ 0, /*tp_iter*/ 0, /*tp_iternext*/ GeoIP_GeoIP_methods, /*tp_methods*/ 0, /*tp_members*/ GeoIP_GeoIP_getsets, /*tp_getset*/ 0, /*tp_base*/ 0, /*tp_dict*/ 0, /*tp_descr_get*/ 0, /*tp_descr_set*/ 0, /*tp_dictoffset*/ GeoIP_GeoIP_init, /*tp_init*/ 0, /*tp_alloc*/ 0, /*tp_new*/ 0, /*tp_free*/ 0, /*tp_is_gc*/ 0, /*tp_bases*/ 0, /*tp_mro*/ 0, /*tp_cache*/ 0, /*tp_subclasses*/ 0, /*tp_weaklist*/ 0, /*tp_del*/ #if PY_MAJOR_VERSION >= 3 || (PY_MAJOR_VERSION == 2 && PY_MINOR_VERSION >= 6) 0, /*tp_version_tag*/ #if PY_MAJOR_VERSION >= 4 || (PY_MAJOR_VERSION == 3 && PY_MINOR_VERSION >= 4) 0, /*tp_finalize*/ #endif #endif /* More fields are present #ifdef COUNT_ALLOCS, but object.h specifically says not to explicitly initialize them. */ }; static PyMethodDef GeoIP_module_methods[] = { { "new", GeoIP_new_Py, METH_VARARGS, "GeoIP Constructor" }, { "open", GeoIP_open_Py, METH_VARARGS, "GeoIP Constructor with database filename argument" }, { "lib_version", GeoIP_lib_version_Py, METH_NOARGS, "Returns the CAPI version" }, { "time_zone_by_country_and_region", GeoIP_time_zone_by_country_and_region_Py, METH_VARARGS, "Returns time_zone for country, region" }, { NULL, NULL, 0,NULL } }; /* Code shared between 2.x and 3.x module initialization. */ static int GeoIP_populate_module(PyObject *m) { PyObject *tmp = NULL; PyObject *ccode = NULL; PyObject *cname = NULL; PyObject *ccont = NULL; size_t i; const size_t total_ccodes = sizeof(GeoIP_country_code) / sizeof(GeoIP_country_code[0]); #define CHECK(expr) do { if (expr) { goto fail; } } while (0) #define CHECK_NULL(expr) do { if (!(expr)) { goto fail; } } while (0) GeoIP_GeoIPType.tp_new = PyType_GenericNew; CHECK(PyType_Ready(&GeoIP_GeoIPType)); Py_INCREF(&GeoIP_GeoIPType); CHECK(PyModule_AddObject(m, "GeoIP", (PyObject *)&GeoIP_GeoIPType)); GeoIP_GeoIPError = PyErr_NewException("GeoIP.error", PyExc_OSError, NULL); Py_INCREF(GeoIP_GeoIPError); CHECK(PyModule_AddObject(m, "error", GeoIP_GeoIPError)); CHECK_NULL(ccode = PyTuple_New(total_ccodes)); CHECK_NULL(cname = PyDict_New()); CHECK_NULL(ccont = PyDict_New()); for (i = 0; i < total_ccodes; i++) { CHECK_NULL(tmp = PyUnicode_FromString(GeoIP_country_code[i])); PyTuple_SET_ITEM(ccode, i, tmp); #if PY_MAJOR_VERSION >= 3 CHECK_NULL(tmp = PyUnicode_FromString(GeoIP_utf8_country_name[i])); #else CHECK_NULL(tmp = PyUnicode_FromString(GeoIP_country_name[i])); #endif CHECK(PyDict_SetItemString(cname, GeoIP_country_code[i], tmp)); Py_DECREF(tmp); CHECK_NULL(tmp = PyUnicode_FromString(GeoIP_country_continent[i])); CHECK(PyDict_SetItemString(ccont, GeoIP_country_code[i], tmp)); Py_DECREF(tmp); } tmp = NULL; CHECK(PyModule_AddObject(m, "country_codes", ccode)); CHECK(PyModule_AddObject(m, "country_names", cname)); CHECK(PyModule_AddObject(m, "country_continents", ccont)); CHECK(PyModule_AddIntMacro(m, GEOIP_STANDARD)); CHECK(PyModule_AddIntMacro(m, GEOIP_MEMORY_CACHE)); CHECK(PyModule_AddIntMacro(m, GEOIP_MMAP_CACHE)); CHECK(PyModule_AddIntMacro(m, GEOIP_CHECK_CACHE)); CHECK(PyModule_AddIntMacro(m, GEOIP_INDEX_CACHE)); CHECK(PyModule_AddIntMacro(m, GEOIP_CHARSET_ISO_8859_1)); CHECK(PyModule_AddIntMacro(m, GEOIP_CHARSET_UTF8)); CHECK(PyModule_AddIntMacro(m, GEOIP_UNKNOWN_SPEED)); CHECK(PyModule_AddIntMacro(m, GEOIP_DIALUP_SPEED)); CHECK(PyModule_AddIntMacro(m, GEOIP_CABLEDSL_SPEED)); CHECK(PyModule_AddIntMacro(m, GEOIP_CORPORATE_SPEED)); return 0; #undef CHECK #undef CHECK_NULL fail: Py_XDECREF(ccode); Py_XDECREF(cname); Py_XDECREF(ccont); Py_XDECREF(tmp); Py_XDECREF(m); Py_XDECREF(GeoIP_GeoIPError); GeoIP_GeoIPError = NULL; return -1; } #if PY_MAJOR_VERSION < 3 PyMODINIT_FUNC initGeoIP(void) { PyObject *m = Py_InitModule3("GeoIP", GeoIP_module_methods, "MaxMind GeoIP databases - Python API."); if (m) { GeoIP_populate_module(m); } } #else static PyModuleDef GeoIP_module = { PyModuleDef_HEAD_INIT, /*m_base*/ "GeoIP", /*m_name*/ "MaxMind GeoIP databases - Python API", /*m_doc*/ -1, /*m_size*/ GeoIP_module_methods, /*m_methods*/ 0, /*m_reload*/ 0, /*m_traverse*/ 0, /*m_clear*/ 0, /*m_free*/ }; PyMODINIT_FUNC PyInit_GeoIP(void) { PyObject *m = PyModule_Create(&GeoIP_module); if (!m) { return NULL; } if (GeoIP_populate_module(m)) { return NULL; } return m; } #endif GeoIP-1.3.2/examples/0000775000175000017500000000000012375655253014207 5ustar greggreg00000000000000GeoIP-1.3.2/examples/org.py0000644000175000017500000000040612313121340015317 0ustar greggreg00000000000000#!/usr/bin/python from __future__ import print_function import GeoIP gi = GeoIP.open("/usr/local/share/GeoIP/GeoIPOrg.dat", GeoIP.GEOIP_STANDARD) print(gi.org_by_name("yahoo.com")) print(gi.org_by_name("www.google.com")) print(gi.org_by_addr("24.24.24.24")) GeoIP-1.3.2/examples/country.py0000644000175000017500000000100612313121452016234 0ustar greggreg00000000000000#!/usr/bin/python from __future__ import print_function import GeoIP #gi = GeoIP.new(GeoIP.GEOIP_STANDARD) #gi = GeoIP.new(GeoIP.GEOIP_MMAP_CACHE) gi = GeoIP.new(GeoIP.GEOIP_MEMORY_CACHE) #gi = GeoIP.open("/usr/local/share/GeoIP/GeoIP.dat",GeoIP.GEOIP_STANDARD) print(gi.country_code_by_name("yahoo.com")) print(gi.last_netmask()) print(gi.country_name_by_name("www.bundestag.de")) print(gi.country_code_by_addr("24.24.24.24")) print(gi.country_name_by_addr("24.24.24.24")) print(gi.range_by_ip("68.180.206.184")) GeoIP-1.3.2/examples/netspeed.py0000644000175000017500000000061012313121363016341 0ustar greggreg00000000000000#!/usr/bin/python from __future__ import print_function import GeoIP gi = GeoIP.open( "/usr/local/share/GeoIP/GeoIPNetspeed.dat", GeoIP.GEOIP_STANDARD) # GEOIP_UNKNOWN_SPEED, GEOIP_DIALUP_SPEED, GEOIP_CABLEDSL_SPEED or # GEOIP_CORPORATE_SPEED print(gi.id_by_name("yahoo.com")) print(gi.id_by_name("www.maxmind.com") == GeoIP.GEOIP_UNKNOWN_SPEED) print(gi.id_by_addr("203.195.93.0")) GeoIP-1.3.2/examples/domain.py0000644000175000017500000000027612313121432016006 0ustar greggreg00000000000000#!/usr/bin/python from __future__ import print_function import GeoIP gi = GeoIP.open("/usr/local/share/GeoIP/GeoIPDomain.dat", GeoIP.GEOIP_STANDARD) print(gi.org_by_addr("24.24.24.24")) GeoIP-1.3.2/examples/city_charset.py0000644000175000017500000000211112313142473017216 0ustar greggreg00000000000000#!/usr/bin/python # This example is only for Python 2. In Python 3, all returned strings are # unicode. import GeoIP # open the citydatabase. All cities return in iso-8859-1 by default gi = GeoIP.open("/usr/local/share/GeoIP/GeoIPCity.dat", GeoIP.GEOIP_STANDARD) # lookup a record, where cityname contains chars > 127 ( eg != ascii ) gir = gi.record_by_name("www.osnabrueck.de") # print the cityname with iso-8859-1 charset print gir['city'] # print the cityname transformed to utf8 print unicode(gir['city'], 'iso-8859-1') # however, at your option GeoIP can return the cityname in utf8 # just put GeoIP into utf8 mode # # from now on all records returns in UTF8 until you change the charset again # Notice, that all previous records return in the previous charset gi.set_charset(GeoIP.GEOIP_CHARSET_UTF8) # get a new record, now in utf8 gir2 = gi.record_by_name("www.osnabrueck.de") # and print it ( should be the same output as on line 2 ) print gir2['city'] # Some more charset examples # current_charset = gi.charset() # old_charset = gi.set_charset(GeoIP.GEOIP_CHARSET_ISO_8859_1); GeoIP-1.3.2/examples/region.py0000644000175000017500000000075712313121324016026 0ustar greggreg00000000000000#!/usr/bin/python from __future__ import print_function import GeoIP gi = GeoIP.open("/usr/local/share/GeoIP/GeoIPRegion.dat", GeoIP.GEOIP_STANDARD) gir = gi.region_by_name("www.google.com") if gir is not None: print(gir['country_code']) print(gir['region']) print(gir['region_name']) gir = gi.region_by_addr("24.24.24.24") if gir is not None: print(gir['country_code']) print(gir['region']) print(gir['region_name']) GeoIP-1.3.2/examples/v6.py0000644000175000017500000000070312313121135015065 0ustar greggreg00000000000000#!/usr/bin/python from __future__ import print_function import GeoIP #gi = GeoIP.new(GeoIP.GEOIP_STANDARD) #gi = GeoIP.new(GeoIP.GEOIP_MEMORY_CACHE) gi = GeoIP.open("/usr/local/share/GeoIP/GeoIPv6.dat", GeoIP.GEOIP_STANDARD) print(gi.country_code_by_name_v6("ipv6.google.com")) print(gi.country_name_by_name_v6("ipv6.google.com")) print(gi.country_code_by_addr_v6("2001:4860:0:1001::68")) print(gi.country_name_by_addr_v6("2001:4860:0:1001::68")) GeoIP-1.3.2/examples/netspeedcell.py0000644000175000017500000000042412313121414017201 0ustar greggreg00000000000000#!/usr/bin/python from __future__ import print_function import GeoIP gi = GeoIP.open( "/usr/local/share/GeoIP/GeoIPNetSpeedCell.dat", GeoIP.GEOIP_STANDARD) print(gi.org_by_name("yahoo.com")) print(gi.org_by_name("www.google.com")) print(gi.org_by_addr("24.24.24.24")) GeoIP-1.3.2/examples/t.py0000644000175000017500000000162412313122064015002 0ustar greggreg00000000000000#!/usr/bin/python import GeoIP # open the citydatabase. All cities return in iso-8859-1 by default gi = GeoIP.open("/usr/local/share/GeoIP/GeoIPCity.dat", GeoIP.GEOIP_STANDARD) # lookup a record, where cityname contains chars > 127 ( eg != ascii ) gir = gi.record_by_name("www.osnabrueck.de") # print(the cityname with iso-8859-1 charset) print(gir) # however, at your option GeoIP can return the cityname in utf8 # just put GeoIP into utf8 mode # # from now on all records returns in UTF8 until you change the charset again # Notice, that all previous records return in the previous charset gi.set_charset(GeoIP.GEOIP_CHARSET_UTF8) # get a new record, now in utf8 gir2 = gi.record_by_name("www.osnabrueck.de") # and print(it ( should be the same output as on line 2 )) print(gir2) # Some more charset examples # current_charset = gi.charset() # old_charset = gi.set_charset(GeoIP.GEOIP_CHARSET_ISO_8859_1); GeoIP-1.3.2/examples/city.py0000644000175000017500000000115012313121506015501 0ustar greggreg00000000000000#!/usr/bin/python from __future__ import print_function import GeoIP gi = GeoIP.open("/usr/local/share/GeoIP/GeoIPCity.dat", GeoIP.GEOIP_STANDARD) gir = gi.record_by_name("www.google.com") #gir = gi.record_by_addr("24.24.24.24") if gir is not None: print(gir['country_code']) print(gir['country_code3']) print(gir['country_name']) print(gir['city']) print(gir['region']) print(gir['region_name']) print(gir['postal_code']) print(gir['latitude']) print(gir['longitude']) print(gir['area_code']) print(gir['time_zone']) print(gir['metro_code']) print(str(gir)) GeoIP-1.3.2/LICENSE0000664000175000017500000006350411740567624013405 0ustar greggreg00000000000000 GNU LESSER GENERAL PUBLIC LICENSE Version 2.1, February 1999 Copyright (C) 1991, 1999 Free Software Foundation, Inc. 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA Everyone is permitted to copy and distribute verbatim copies of this license document, but changing it is not allowed. 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GeoIP-1.3.2/README.rst0000644000175000017500000000144312313117703014041 0ustar greggreg00000000000000========================================= MaxMind GeoIP Legacy Python Extension API ========================================= Requirements ------------ * Python 2.5+ or 3.3+ * GeoIP C Library 1.4.7 or greater Installation ------------ With `pip`: .. code-block:: bash $ pip install GeoIP From source: .. code-block:: bash $ python setup.py build $ python setup.py install Usage ----- See the examples in the ``examples`` folder. Troubleshooting --------------- If you get a "libGeoIP.so.1: cannot open shared object No such file or directory" error, add /usr/local/lib to /etc/ld.so.conf then run /sbin/ldconfig /etc/ld.so.conf License ------- Copyright (c) 2014 MaxMind LLC All rights reserved. This package is free software; it is licensed under the LGPL 2.1 or greater. 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Description: ========================================= MaxMind GeoIP Legacy Python Extension API ========================================= Requirements ------------ * Python 2.5+ or 3.3+ * GeoIP C Library 1.4.7 or greater Installation ------------ With `pip`: .. code-block:: bash $ pip install GeoIP From source: .. code-block:: bash $ python setup.py build $ python setup.py install Usage ----- See the examples in the ``examples`` folder. Troubleshooting --------------- If you get a "libGeoIP.so.1: cannot open shared object No such file or directory" error, add /usr/local/lib to /etc/ld.so.conf then run /sbin/ldconfig /etc/ld.so.conf License ------- Copyright (c) 2014 MaxMind LLC All rights reserved. This package is free software; it is licensed under the LGPL 2.1 or greater. Platform: UNKNOWN Classifier: Development Status :: 6 - Mature Classifier: Environment :: Web Environment Classifier: Intended Audience :: Developers Classifier: Intended Audience :: System Administrators Classifier: License :: OSI Approved :: GNU Lesser General Public License v2 or later (LGPLv2+) Classifier: Programming Language :: Python :: 2.6 Classifier: Programming Language :: Python :: 2.7 Classifier: Programming Language :: Python :: 3.3 Classifier: Programming Language :: Python :: 3.4 Classifier: Programming Language :: Python Classifier: Topic :: Internet :: Proxy Servers Classifier: Topic :: Internet GeoIP-1.3.2/GeoIP.egg-info/SOURCES.txt0000644000175000017500000000104112375655253016704 0ustar greggreg00000000000000LICENSE MANIFEST.in README.rst py_GeoIP.c setup.py GeoIP.egg-info/PKG-INFO GeoIP.egg-info/SOURCES.txt GeoIP.egg-info/dependency_links.txt GeoIP.egg-info/top_level.txt examples/city.py examples/city_charset.py examples/country.py examples/domain.py examples/netspeed.py examples/netspeedcell.py examples/org.py examples/region.py examples/t.py examples/v6.py tests/test_charset.py tests/test_city.py tests/test_country.py tests/test_domain.py tests/test_errors.py tests/test_netspeedcell.py tests/test_org.py tests/test_region.py tests/test_v6.pyGeoIP-1.3.2/GeoIP.egg-info/dependency_links.txt0000644000175000017500000000000112375655253021072 0ustar greggreg00000000000000 GeoIP-1.3.2/PKG-INFO0000664000175000017500000006742312375655253013502 0ustar greggreg00000000000000Metadata-Version: 1.1 Name: GeoIP Version: 1.3.2 Summary: MaxMind GeoIP Legacy Database - Python API Home-page: http://www.maxmind.com/ Author: MaxMind, Inc. 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Description: ========================================= MaxMind GeoIP Legacy Python Extension API ========================================= Requirements ------------ * Python 2.5+ or 3.3+ * GeoIP C Library 1.4.7 or greater Installation ------------ With `pip`: .. code-block:: bash $ pip install GeoIP From source: .. code-block:: bash $ python setup.py build $ python setup.py install Usage ----- See the examples in the ``examples`` folder. Troubleshooting --------------- If you get a "libGeoIP.so.1: cannot open shared object No such file or directory" error, add /usr/local/lib to /etc/ld.so.conf then run /sbin/ldconfig /etc/ld.so.conf License ------- Copyright (c) 2014 MaxMind LLC All rights reserved. This package is free software; it is licensed under the LGPL 2.1 or greater. Platform: UNKNOWN Classifier: Development Status :: 6 - Mature Classifier: Environment :: Web Environment Classifier: Intended Audience :: Developers Classifier: Intended Audience :: System Administrators Classifier: License :: OSI Approved :: GNU Lesser General Public License v2 or later (LGPLv2+) Classifier: Programming Language :: Python :: 2.6 Classifier: Programming Language :: Python :: 2.7 Classifier: Programming Language :: Python :: 3.3 Classifier: Programming Language :: Python :: 3.4 Classifier: Programming Language :: Python Classifier: Topic :: Internet :: Proxy Servers Classifier: Topic :: Internet GeoIP-1.3.2/setup.cfg0000664000175000017500000000007312375655253014212 0ustar greggreg00000000000000[egg_info] tag_build = tag_date = 0 tag_svn_revision = 0 GeoIP-1.3.2/MANIFEST.in0000644000175000017500000000015512245135564014120 0ustar greggreg00000000000000include ChangeLog LICENSE README.rst py_GeoIP.c recursive-include examples *.py recursive-include tests *.py GeoIP-1.3.2/tests/0000775000175000017500000000000012375655253013533 5ustar greggreg00000000000000GeoIP-1.3.2/tests/test_v6.py0000644000175000017500000000031212313115634015453 0ustar greggreg00000000000000import GeoIP from nose.tools import assert_equal def test_ipv6(): gi = GeoIP.open("tests/data/GeoIPv6.dat", GeoIP.GEOIP_STANDARD) assert_equal(gi.country_code_by_addr_v6('2001:200::'), 'JP') GeoIP-1.3.2/tests/test_errors.py0000644000175000017500000000317712313142473016451 0ustar greggreg00000000000000import GeoIP from nose.tools import assert_equal def test_errors(): # The intent of these tests is to make sure there are no segfaults. # Most of the lookups are invalid. Unfortunately the API rarely throws # exceptions. gi = GeoIP.open("tests/data/GeoIP.dat", GeoIP.GEOIP_STANDARD) assert_equal(gi.org_by_addr('1.1.1.1'), None) assert_equal(gi.country_code_by_name('1.1.1.1'), None) assert_equal(gi.country_name_by_name('1.1.1.1'), None) assert_equal(gi.country_code_by_addr('1.1.1.1'), None) assert_equal(gi.country_name_by_addr('1.1.1.1'), None) assert_equal(gi.name_by_addr('1.1.1.1'), None) assert_equal(gi.name_by_name('1.1.1.1'), None) assert_equal(gi.org_by_addr('1.1.1.1'), None) assert_equal(gi.org_by_name('1.1.1.1'), None) assert_equal(gi.region_by_addr('1.1.1.1'), None) assert_equal(gi.region_by_name('1.1.1.1'), None) assert_equal(gi.record_by_addr('1.1.1.1'), None) assert_equal(gi.record_by_name('1.1.1.1'), None) assert_equal(gi.range_by_ip('1.1.1.1'), ('0.0.0.0', '12.87.117.255')) assert_equal(gi.last_netmask(), 5) assert_equal(gi.country_code_by_name_v6('1.1.1.1'), None) assert_equal(gi.country_name_by_name_v6('1.1.1.1'), None) assert_equal(gi.country_code_by_addr_v6('1.1.1.1'), None) assert_equal(gi.country_name_by_addr_v6('1.1.1.1'), None) assert_equal(gi.enable_teredo(-100), 1) assert_equal(gi.teredo(), 0) assert_equal(gi.id_by_addr('1.1.1.1'), 0) assert_equal(gi.id_by_name('1.1.1.1'), 0) assert_equal(gi.record_by_addr_v6('1.1.1.1'), None) assert_equal(gi.record_by_name_v6('1.1.1.1'), None) GeoIP-1.3.2/tests/test_domain.py0000644000175000017500000000031712313115634016374 0ustar greggreg00000000000000import GeoIP from nose.tools import assert_equal def test_domain(): gi = GeoIP.open("tests/data/GeoIPDomain.dat", GeoIP.GEOIP_STANDARD) assert_equal(gi.org_by_addr("67.43.156.0"), 'shoesfin.NET') GeoIP-1.3.2/tests/test_org.py0000644000175000017500000000032312313115634015711 0ustar greggreg00000000000000import GeoIP from nose.tools import assert_equal def test_org(): gi = GeoIP.open("tests/data/GeoIPOrg.dat", GeoIP.GEOIP_STANDARD) assert_equal(gi.org_by_addr("12.87.118.0"), 'AT&T Worldnet Services') GeoIP-1.3.2/tests/test_country.py0000644000175000017500000000112012313115634016621 0ustar greggreg00000000000000import GeoIP from nose.tools import assert_equal def test_country(): for mode in [GeoIP.GEOIP_STANDARD, GeoIP.GEOIP_MEMORY_CACHE, GeoIP.GEOIP_MMAP_CACHE, GeoIP.GEOIP_INDEX_CACHE]: gi = GeoIP.open("tests/data/GeoIP.dat", GeoIP.GEOIP_STANDARD) assert_equal(gi.country_code_by_addr('64.17.254.216'), 'US') assert_equal(gi.last_netmask(), 29) assert_equal( gi.country_name_by_addr('64.17.254.216'), 'United States') assert_equal(gi.range_by_ip('64.17.254.216'), ('64.17.254.216', '64.17.254.223')) GeoIP-1.3.2/tests/test_charset.py0000644000175000017500000000057112313142473016561 0ustar greggreg00000000000000# -*- coding: utf-8 -*- import GeoIP from nose.tools import assert_equal def test_charset(): gi = GeoIP.open("tests/data/GeoIPOrg.dat", GeoIP.GEOIP_STANDARD) gi.set_charset(GeoIP.GEOIP_CHARSET_UTF8) assert_equal(gi.charset(), GeoIP.GEOIP_CHARSET_UTF8) assert_equal(gi.name_by_addr("142.217.214.0"), 'LINO Solutions Internet de Télébec') GeoIP-1.3.2/tests/test_region.py0000644000175000017500000000051212313115634016405 0ustar greggreg00000000000000import GeoIP from nose.tools import assert_equal def test_region(): gi = GeoIP.open("tests/data/GeoIPRegion.dat", GeoIP.GEOIP_STANDARD) gir = gi.region_by_addr('64.17.254.223') region = { 'region': 'CA', 'region_name': 'California', 'country_code': 'US' } assert_equal(gir, region) GeoIP-1.3.2/tests/test_city.py0000644000175000017500000000237212313142473016101 0ustar greggreg00000000000000import GeoIP from nose.tools import assert_equal def test_city(): gi = GeoIP.open("tests/data/GeoIPCity.dat", GeoIP.GEOIP_STANDARD) gir = gi.record_by_addr("64.17.254.216") record = { 'area_code': 310, 'city': 'El Segundo', 'country_code': 'US', 'country_code3': 'USA', 'country_name': 'United States', 'dma_code': 803, 'latitude': 33.91640090942383, 'longitude': -118.40399932861328, 'metro_code': 803, 'postal_code': '90245', 'region': 'CA', 'region_name': 'California', 'time_zone': 'America/Los_Angeles' } assert_equal(gir, record) def test_non_ascii_city(): gi = GeoIP.open("tests/data/GeoIPCity.dat", GeoIP.GEOIP_STANDARD) gir = gi.record_by_addr("89.92.212.80") record = { 'city': 'F\xe2ches-thumesnil', 'region_name': 'Nord-Pas-de-Calais', 'region': 'B4', 'area_code': 0, 'time_zone': 'Europe/Paris', 'longitude': 3.0808000564575195, 'metro_code': 0, 'country_code3': 'FRA', 'latitude': 50.5906982421875, 'postal_code': None, 'dma_code': 0, 'country_code': 'FR', 'country_name': 'France' } assert_equal(gir, record) GeoIP-1.3.2/tests/test_netspeedcell.py0000644000175000017500000000032612313115634017574 0ustar greggreg00000000000000import GeoIP from nose.tools import assert_equal def test_netspeed_cell(): gi = GeoIP.open("tests/data/GeoIPNetSpeedCell.dat", GeoIP.GEOIP_STANDARD) assert_equal(gi.org_by_addr("2.125.160.1"), 'Dialup')