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struct __pyx_obj_5_geod_Geod {
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  Py_INCREF(__pyx_v_lats);
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  Py_INCREF(__pyx_v_dist);
  Py_INCREF(__pyx_v_radians);
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 */
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":41
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 *             raise RuntimeError             # <<<<<<<<<<<<<< 
 *         if PyObject_AsWriteBuffer(lats, &latdata, &buflenlats) <> 0:
 *             raise RuntimeError
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    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 41; goto __pyx_L1;}
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 *         if PyObject_AsWriteBuffer(lons, &londata, &buflenlons) <> 0:
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 *             raise RuntimeError
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":43
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 *         if PyObject_AsWriteBuffer(lats, &latdata, &buflenlats) <> 0:
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(az, &azdat, &buflenaz) <> 0:             # <<<<<<<<<<<<<< 
 *             raise RuntimeError
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":45
 *             raise RuntimeError
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 *             raise RuntimeError             # <<<<<<<<<<<<<< 
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 *             raise RuntimeError
 */
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    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 45; goto __pyx_L1;}
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  __pyx_L4:;
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 *         if PyObject_AsWriteBuffer(az, &azdat, &buflenaz) <> 0:
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(dist, &distdat, &buflend) <> 0:             # <<<<<<<<<<<<<< 
 *             raise RuntimeError
 *         # process data in buffer
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":47
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(dist, &distdat, &buflend) <> 0:
 *             raise RuntimeError             # <<<<<<<<<<<<<< 
 *         # process data in buffer
 *         if not buflenlons == buflenlats == buflenaz == buflend:
 */
    __Pyx_Raise(__pyx_builtin_RuntimeError, 0, 0);
    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 47; goto __pyx_L1;}
    goto __pyx_L5;
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 *             raise RuntimeError("Buffer lengths not the same")             # <<<<<<<<<<<<<< 
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 *         lonsdata = <double *>londata
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    __pyx_3 = PyTuple_New(1); if (unlikely(!__pyx_3)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 50; goto __pyx_L1;}
    Py_INCREF(__pyx_k10p);
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    __pyx_4 = PyObject_CallObject(__pyx_builtin_RuntimeError, __pyx_3); if (unlikely(!__pyx_4)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 50; goto __pyx_L1;}
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    __Pyx_Raise(__pyx_4, 0, 0);
    Py_DECREF(__pyx_4); __pyx_4 = 0;
    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 50; goto __pyx_L1;}
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 *         if not buflenlons == buflenlats == buflenaz == buflend:
 *             raise RuntimeError("Buffer lengths not the same")
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 *             raise RuntimeError("Buffer lengths not the same")
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 *         lonsdata = <double *>londata             # <<<<<<<<<<<<<< 
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 *         latsdata = <double *>latdata             # <<<<<<<<<<<<<< 
 *         azdata = <double *>azdat
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 *         latsdata = <double *>latdata
 *         azdata = <double *>azdat             # <<<<<<<<<<<<<< 
 *         distdata = <double *>distdat
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 *         azdata = <double *>azdat
 *         distdata = <double *>distdat             # <<<<<<<<<<<<<< 
 *         for i from 0 <= i < ndim:
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 *         distdata = <double *>distdat
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":57
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 *         for i from 0 <= i < ndim:
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 *         for i from 0 <= i < ndim:
 *             if radians:
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 *                 self.geodesic_t.p1.u = latsdata[i]
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 */
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 */
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 *                 self.geodesic_t.p1.u = latsdata[i]
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 */
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 *                 self.geodesic_t.p1.u = latsdata[i]
 *                 self.geodesic_t.ALPHA12 = azdata[i]
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      __pyx_4 = PyFloat_FromDouble((__pyx_v_lonsdata[__pyx_v_i])); if (unlikely(!__pyx_4)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 63; goto __pyx_L1;}
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      __pyx_4 = PyFloat_FromDouble((__pyx_v_latsdata[__pyx_v_i])); if (unlikely(!__pyx_4)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 64; goto __pyx_L1;}
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      __pyx_4 = PyFloat_FromDouble((__pyx_v_azdata[__pyx_v_i])); if (unlikely(!__pyx_4)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 65; goto __pyx_L1;}
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 *                 self.geodesic_t.p1.u = _dg2rad*latsdata[i]
 *                 self.geodesic_t.ALPHA12 = _dg2rad*azdata[i]
 *                 self.geodesic_t.DIST = distdata[i]             # <<<<<<<<<<<<<< 
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 *                 self.geodesic_t.ALPHA12 = _dg2rad*azdata[i]
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 *                 self.geodesic_t.DIST = distdata[i]
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 *             if pj_errno != 0:
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 *             if pj_errno != 0:
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 *             geod_for(&self.geodesic_t)             # <<<<<<<<<<<<<< 
 *             if pj_errno != 0:
 *                 raise RuntimeError(pj_strerrno(pj_errno))
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 *                 raise RuntimeError(pj_strerrno(pj_errno))
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 *             if pj_errno != 0:             # <<<<<<<<<<<<<< 
 *                 raise RuntimeError(pj_strerrno(pj_errno))
 *             if isnan(self.geodesic_t.ALPHA21):
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      /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":72
 *             geod_for(&self.geodesic_t)
 *             if pj_errno != 0:
 *                 raise RuntimeError(pj_strerrno(pj_errno))             # <<<<<<<<<<<<<< 
 *             if isnan(self.geodesic_t.ALPHA21):
 *                 raise ValueError('undefined forward geodesic (may be an equatorial arc)')
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      __Pyx_Raise(__pyx_5, 0, 0);
      Py_DECREF(__pyx_5); __pyx_5 = 0;
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      goto __pyx_L11;
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 *             if isnan(self.geodesic_t.ALPHA21):             # <<<<<<<<<<<<<< 
 *                 raise ValueError('undefined forward geodesic (may be an equatorial arc)')
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 */
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 *                 raise RuntimeError(pj_strerrno(pj_errno))
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 *                 raise ValueError('undefined forward geodesic (may be an equatorial arc)')             # <<<<<<<<<<<<<< 
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 */
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      __Pyx_Raise(__pyx_4, 0, 0);
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      goto __pyx_L12;
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    __pyx_L12:;
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 *             if isnan(self.geodesic_t.ALPHA21):
 *                 raise ValueError('undefined forward geodesic (may be an equatorial arc)')
 *             if radians:             # <<<<<<<<<<<<<< 
 *                 lonsdata[i] = self.geodesic_t.p2.v
 *                 latsdata[i] = self.geodesic_t.p2.u
 */
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 *                 raise ValueError('undefined forward geodesic (may be an equatorial arc)')
 *             if radians:
 *                 lonsdata[i] = self.geodesic_t.p2.v             # <<<<<<<<<<<<<< 
 *                 latsdata[i] = self.geodesic_t.p2.u
 *                 azdata[i] = self.geodesic_t.ALPHA21
 */
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 *                 latsdata[i] = self.geodesic_t.p2.u             # <<<<<<<<<<<<<< 
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 */
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 *                 lonsdata[i] = self.geodesic_t.p2.v
 *                 latsdata[i] = self.geodesic_t.p2.u
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 *             else:
 *                 lonsdata[i] = _rad2dg*self.geodesic_t.p2.v             # <<<<<<<<<<<<<< 
 *                 latsdata[i] = _rad2dg*self.geodesic_t.p2.u
 *                 azdata[i] = _rad2dg*self.geodesic_t.ALPHA21
 */
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 *                 latsdata[i] = _rad2dg*self.geodesic_t.p2.u             # <<<<<<<<<<<<<< 
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 */
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      __pyx_3 = PyFloat_FromDouble(((struct __pyx_obj_5_geod_Geod *)__pyx_v_self)->geodesic_t.p2.u); if (unlikely(!__pyx_3)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 81; goto __pyx_L1;}
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 *                 azdata[i] = _rad2dg*self.geodesic_t.ALPHA21             # <<<<<<<<<<<<<< 
 * 
 *     def _inv(self, object lons1, object lats1, object lons2, object lats2, radians=False):
 */
      __pyx_5 = __Pyx_GetName(__pyx_m, __pyx_n__rad2dg); if (unlikely(!__pyx_5)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 82; goto __pyx_L1;}
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      __pyx_4 = PyNumber_Multiply(__pyx_5, __pyx_3); if (unlikely(!__pyx_4)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 82; goto __pyx_L1;}
      Py_DECREF(__pyx_5); __pyx_5 = 0;
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      __pyx_7 = PyFloat_AsDouble(__pyx_4); if (unlikely(PyErr_Occurred())) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 82; goto __pyx_L1;}
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    __pyx_L13:;
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  Py_XDECREF(__pyx_4);
  Py_XDECREF(__pyx_5);
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  __pyx_L0:;
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  Py_DECREF(__pyx_v_lons);
  Py_DECREF(__pyx_v_lats);
  Py_DECREF(__pyx_v_az);
  Py_DECREF(__pyx_v_dist);
  Py_DECREF(__pyx_v_radians);
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}
static PyObject *__pyx_k12p;
static PyObject *__pyx_k13p;
static char (__pyx_k12[]) = "Buffer lengths not the same";
static char (__pyx_k13[]) = "undefined inverse geodesic (may be an antipodal point)";
static PyObject *__pyx_f_py_5_geod_4Geod__inv(PyObject *__pyx_v_self, PyObject *__pyx_args, PyObject *__pyx_kwds); /*proto*/
static char __pyx_doc_5_geod_4Geod__inv[] = "\n inverse transformation - return forward and back azimuths, plus distance\n between an initial and terminus lat/lon pair.\n if radians=True, lons/lats are radians instead of degrees.\n        ";
static PyObject *__pyx_f_py_5_geod_4Geod__inv(PyObject *__pyx_v_self, PyObject *__pyx_args, PyObject *__pyx_kwds) {
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  PyObject *__pyx_v_lats1 = 0;
  PyObject *__pyx_v_lons2 = 0;
  PyObject *__pyx_v_lats2 = 0;
  PyObject *__pyx_v_radians = 0;
  Py_ssize_t __pyx_v_buflenlons;
  Py_ssize_t __pyx_v_buflenlats;
  Py_ssize_t __pyx_v_buflenaz;
  Py_ssize_t __pyx_v_buflend;
  Py_ssize_t __pyx_v_ndim;
  Py_ssize_t __pyx_v_i;
  double (*__pyx_v_lonsdata);
  double (*__pyx_v_latsdata);
  double (*__pyx_v_azdata);
  double (*__pyx_v_distdata);
  void (*__pyx_v_londata);
  void (*__pyx_v_latdata);
  void (*__pyx_v_azdat);
  void (*__pyx_v_distdat);
  PyObject *__pyx_r;
  int __pyx_1;
  int __pyx_2;
  PyObject *__pyx_3 = 0;
  PyObject *__pyx_4 = 0;
  PyObject *__pyx_5 = 0;
  Py_ssize_t __pyx_6;
  double __pyx_7;
  int __pyx_8;
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  Py_INCREF(__pyx_v_lats1);
  Py_INCREF(__pyx_v_lons2);
  Py_INCREF(__pyx_v_lats2);
  Py_INCREF(__pyx_v_radians);
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 *         cdef void *londata, *latdata, *azdat, *distdat
 *         # if buffer api is supported, get pointer to data buffers.
 *         if PyObject_AsWriteBuffer(lons1, &londata, &buflenlons) <> 0:             # <<<<<<<<<<<<<< 
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lats1, &latdata, &buflenlats) <> 0:
 */
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":95
 *         # if buffer api is supported, get pointer to data buffers.
 *         if PyObject_AsWriteBuffer(lons1, &londata, &buflenlons) <> 0:
 *             raise RuntimeError             # <<<<<<<<<<<<<< 
 *         if PyObject_AsWriteBuffer(lats1, &latdata, &buflenlats) <> 0:
 *             raise RuntimeError
 */
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    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 95; goto __pyx_L1;}
    goto __pyx_L2;
  }
  __pyx_L2:;
  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":96
 *         if PyObject_AsWriteBuffer(lons1, &londata, &buflenlons) <> 0:
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lats1, &latdata, &buflenlats) <> 0:             # <<<<<<<<<<<<<< 
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lons2, &azdat, &buflenaz) <> 0:
 */
  __pyx_1 = (PyObject_AsWriteBuffer(__pyx_v_lats1,(&__pyx_v_latdata),(&__pyx_v_buflenlats)) != 0);
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":97
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lats1, &latdata, &buflenlats) <> 0:
 *             raise RuntimeError             # <<<<<<<<<<<<<< 
 *         if PyObject_AsWriteBuffer(lons2, &azdat, &buflenaz) <> 0:
 *             raise RuntimeError
 */
    __Pyx_Raise(__pyx_builtin_RuntimeError, 0, 0);
    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 97; goto __pyx_L1;}
    goto __pyx_L3;
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  __pyx_L3:;
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 *         if PyObject_AsWriteBuffer(lats1, &latdata, &buflenlats) <> 0:
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lons2, &azdat, &buflenaz) <> 0:             # <<<<<<<<<<<<<< 
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lats2, &distdat, &buflend) <> 0:
 */
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  if (__pyx_1) {
    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":99
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lons2, &azdat, &buflenaz) <> 0:
 *             raise RuntimeError             # <<<<<<<<<<<<<< 
 *         if PyObject_AsWriteBuffer(lats2, &distdat, &buflend) <> 0:
 *             raise RuntimeError
 */
    __Pyx_Raise(__pyx_builtin_RuntimeError, 0, 0);
    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 99; goto __pyx_L1;}
    goto __pyx_L4;
  }
  __pyx_L4:;
  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":100
 *         if PyObject_AsWriteBuffer(lons2, &azdat, &buflenaz) <> 0:
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lats2, &distdat, &buflend) <> 0:             # <<<<<<<<<<<<<< 
 *             raise RuntimeError
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 */
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  if (__pyx_1) {
    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":101
 *             raise RuntimeError
 *         if PyObject_AsWriteBuffer(lats2, &distdat, &buflend) <> 0:
 *             raise RuntimeError             # <<<<<<<<<<<<<< 
 *         # process data in buffer
 *         if not buflenlons == buflenlats == buflenaz == buflend:
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    __Pyx_Raise(__pyx_builtin_RuntimeError, 0, 0);
    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 101; goto __pyx_L1;}
    goto __pyx_L5;
  }
  __pyx_L5:;
  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":103
 *             raise RuntimeError
 *         # process data in buffer
 *         if not buflenlons == buflenlats == buflenaz == buflend:             # <<<<<<<<<<<<<< 
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 *         ndim = buflenlons/_doublesize
 */
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  if (__pyx_1) {
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    if (__pyx_1) {
      __pyx_1 = (__pyx_v_buflenaz == __pyx_v_buflend);
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  if (__pyx_2) {
    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":104
 *         # process data in buffer
 *         if not buflenlons == buflenlats == buflenaz == buflend:
 *             raise RuntimeError("Buffer lengths not the same")             # <<<<<<<<<<<<<< 
 *         ndim = buflenlons/_doublesize
 *         lonsdata = <double *>londata
 */
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    Py_INCREF(__pyx_k12p);
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    __Pyx_Raise(__pyx_4, 0, 0);
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    {__pyx_filename = __pyx_f[0]; __pyx_lineno = 104; goto __pyx_L1;}
    goto __pyx_L6;
  }
  __pyx_L6:;
  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":105
 *         if not buflenlons == buflenlats == buflenaz == buflend:
 *             raise RuntimeError("Buffer lengths not the same")
 *         ndim = buflenlons/_doublesize             # <<<<<<<<<<<<<< 
 *         lonsdata = <double *>londata
 *         latsdata = <double *>latdata
 */
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  __pyx_4 = __Pyx_GetName(__pyx_m, __pyx_n__doublesize); if (unlikely(!__pyx_4)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 105; goto __pyx_L1;}
  __pyx_5 = PyNumber_Divide(__pyx_3, __pyx_4); if (unlikely(!__pyx_5)) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 105; goto __pyx_L1;}
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  Py_DECREF(__pyx_4); __pyx_4 = 0;
  __pyx_6 = __pyx_PyIndex_AsSsize_t(__pyx_5); if (unlikely(PyErr_Occurred())) {__pyx_filename = __pyx_f[0]; __pyx_lineno = 105; goto __pyx_L1;}
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  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":106
 *             raise RuntimeError("Buffer lengths not the same")
 *         ndim = buflenlons/_doublesize
 *         lonsdata = <double *>londata             # <<<<<<<<<<<<<< 
 *         latsdata = <double *>latdata
 *         azdata = <double *>azdat
 */
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  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":107
 *         ndim = buflenlons/_doublesize
 *         lonsdata = <double *>londata
 *         latsdata = <double *>latdata             # <<<<<<<<<<<<<< 
 *         azdata = <double *>azdat
 *         distdata = <double *>distdat
 */
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  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":108
 *         lonsdata = <double *>londata
 *         latsdata = <double *>latdata
 *         azdata = <double *>azdat             # <<<<<<<<<<<<<< 
 *         distdata = <double *>distdat
 *         for i from 0 <= i < ndim:
 */
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  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":109
 *         latsdata = <double *>latdata
 *         azdata = <double *>azdat
 *         distdata = <double *>distdat             # <<<<<<<<<<<<<< 
 *         for i from 0 <= i < ndim:
 *             if radians:
 */
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  /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":110
 *         azdata = <double *>azdat
 *         distdata = <double *>distdat
 *         for i from 0 <= i < ndim:             # <<<<<<<<<<<<<< 
 *             if radians:
 *                 self.geodesic_t.p1.v = lonsdata[i]
 */
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":111
 *         distdata = <double *>distdat
 *         for i from 0 <= i < ndim:
 *             if radians:             # <<<<<<<<<<<<<< 
 *                 self.geodesic_t.p1.v = lonsdata[i]
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 *                 self.geodesic_t.p2.v = azdata[i]             # <<<<<<<<<<<<<< 
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 *                 self.geodesic_t.p2.v = azdata[i]
 *                 self.geodesic_t.p2.u = distdata[i]             # <<<<<<<<<<<<<< 
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 *                 self.geodesic_t.p2.u = distdata[i]
 *             else:
 *                 self.geodesic_t.p1.v = _dg2rad*lonsdata[i]             # <<<<<<<<<<<<<< 
 *                 self.geodesic_t.p1.u = _dg2rad*latsdata[i]
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 *                 self.geodesic_t.p2.u = _dg2rad*distdata[i]
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 *                 self.geodesic_t.p1.u = _dg2rad*latsdata[i]
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 *                 self.geodesic_t.p2.u = _dg2rad*distdata[i]
 *             geod_inv(&self.geodesic_t)             # <<<<<<<<<<<<<< 
 *             if isnan(self.geodesic_t.DIST):
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 *                 self.geodesic_t.p2.u = _dg2rad*distdata[i]
 *             geod_inv(&self.geodesic_t)
 *             if isnan(self.geodesic_t.DIST):             # <<<<<<<<<<<<<< 
 *                 raise ValueError('undefined inverse geodesic (may be an antipodal point)')
 *             if pj_errno != 0:
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      /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":123
 *             geod_inv(&self.geodesic_t)
 *             if isnan(self.geodesic_t.DIST):
 *                 raise ValueError('undefined inverse geodesic (may be an antipodal point)')             # <<<<<<<<<<<<<< 
 *             if pj_errno != 0:
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 *             if pj_errno != 0:             # <<<<<<<<<<<<<< 
 *                 raise RuntimeError(pj_strerrno(pj_errno))
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      /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":125
 *                 raise ValueError('undefined inverse geodesic (may be an antipodal point)')
 *             if pj_errno != 0:
 *                 raise RuntimeError(pj_strerrno(pj_errno))             # <<<<<<<<<<<<<< 
 *             if radians:
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 *                 lonsdata[i] = self.geodesic_t.ALPHA12
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      /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":127
 *                 raise RuntimeError(pj_strerrno(pj_errno))
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 *             else:
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 *                 latsdata[i] = self.geodesic_t.ALPHA21
 *             else:
 *                 lonsdata[i] = _rad2dg*self.geodesic_t.ALPHA12             # <<<<<<<<<<<<<< 
 *                 latsdata[i] = _rad2dg*self.geodesic_t.ALPHA21
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 *                 latsdata[i] = _rad2dg*self.geodesic_t.ALPHA21
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 * 
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 */
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}
static PyObject *__pyx_f_py_5_geod_4Geod__npts(PyObject *__pyx_v_self, PyObject *__pyx_args, PyObject *__pyx_kwds); /*proto*/
static char __pyx_doc_5_geod_4Geod__npts[] = "\n given initial and terminus lat/lon, find npts intermediate points.";
static PyObject *__pyx_f_py_5_geod_4Geod__npts(PyObject *__pyx_v_self, PyObject *__pyx_args, PyObject *__pyx_kwds) {
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  double __pyx_v_lat1;
  double __pyx_v_lon2;
  double __pyx_v_lat2;
  int __pyx_v_npts;
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  int __pyx_v_i;
  double __pyx_v_del_s;
  PyObject *__pyx_v_lats;
  PyObject *__pyx_v_lons;
  PyObject *__pyx_r;
  int __pyx_1;
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  PyObject *__pyx_3 = 0;
  PyObject *__pyx_4 = 0;
  double __pyx_5;
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 *         cdef int i
 *         cdef double del_s
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 *             self.geodesic_t.p1.v = lon1
 *             self.geodesic_t.p1.u = lat1
 */
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    /* "/Users/jsw/python/matplotlib/toolkits/basemap/src/_geod.pyx":140
 *         cdef double del_s
 *         if radians:
 *             self.geodesic_t.p1.v = lon1             # <<<<<<<<<<<<<< 
 *             self.geodesic_t.p1.u = lat1
 *             self.geodesic_t.p2.v = lon2
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 *         if radians:
 *             self.geodesic_t.p1.v = lon1
 *             self.geodesic_t.p1.u = lat1             # <<<<<<<<<<<<<< 
 *             self.geodesic_t.p2.v = lon2
 *             self.geodesic_t.p2.u = lat2
 */
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 *             self.geodesic_t.p1.v = lon1
 *             self.geodesic_t.p1.u = lat1
 *             self.geodesic_t.p2.v = lon2             # <<<<<<<<<<<<<< 
 *             self.geodesic_t.p2.u = lat2
 *         else:
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 *             self.geodesic_t.p1.u = lat1
 *             self.geodesic_t.p2.v = lon2
 *             self.geodesic_t.p2.u = lat2             # <<<<<<<<<<<<<< 
 *         else:
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