[med-svn] r964 - in trunk/packages/mgltools/qslimlib/trunk: . QSlimLib debian
smoe-guest at alioth.debian.org
smoe-guest at alioth.debian.org
Fri Dec 21 23:32:38 UTC 2007
Author: smoe-guest
Date: 2007-12-21 23:32:37 +0000 (Fri, 21 Dec 2007)
New Revision: 964
Added:
trunk/packages/mgltools/qslimlib/trunk/QSlimLib/
trunk/packages/mgltools/qslimlib/trunk/QSlimLib/qslimlib.py
trunk/packages/mgltools/qslimlib/trunk/QSlimLib/qslimlib_wrap.cpp
trunk/packages/mgltools/qslimlib/trunk/debian/
trunk/packages/mgltools/qslimlib/trunk/debian/changelog
trunk/packages/mgltools/qslimlib/trunk/debian/compat
trunk/packages/mgltools/qslimlib/trunk/debian/control
trunk/packages/mgltools/qslimlib/trunk/debian/copyright
trunk/packages/mgltools/qslimlib/trunk/debian/pycompat
trunk/packages/mgltools/qslimlib/trunk/debian/rules
Log:
[svn-inject] Applying Debian modifications to trunk
Added: trunk/packages/mgltools/qslimlib/trunk/QSlimLib/qslimlib.py
===================================================================
--- trunk/packages/mgltools/qslimlib/trunk/QSlimLib/qslimlib.py (rev 0)
+++ trunk/packages/mgltools/qslimlib/trunk/QSlimLib/qslimlib.py 2007-12-21 23:32:37 UTC (rev 964)
@@ -0,0 +1,162 @@
+# This file was automatically generated by SWIG (http://www.swig.org).
+# Version 1.3.33
+#
+# Don't modify this file, modify the SWIG interface instead.
+# This file is compatible with both classic and new-style classes.
+
+import _qslimlib
+import new
+new_instancemethod = new.instancemethod
+try:
+ _swig_property = property
+except NameError:
+ pass # Python < 2.2 doesn't have 'property'.
+def _swig_setattr_nondynamic(self,class_type,name,value,static=1):
+ if (name == "thisown"): return self.this.own(value)
+ if (name == "this"):
+ if type(value).__name__ == 'PySwigObject':
+ self.__dict__[name] = value
+ return
+ method = class_type.__swig_setmethods__.get(name,None)
+ if method: return method(self,value)
+ if (not static) or hasattr(self,name):
+ self.__dict__[name] = value
+ else:
+ raise AttributeError("You cannot add attributes to %s" % self)
+
+def _swig_setattr(self,class_type,name,value):
+ return _swig_setattr_nondynamic(self,class_type,name,value,0)
+
+def _swig_getattr(self,class_type,name):
+ if (name == "thisown"): return self.this.own()
+ method = class_type.__swig_getmethods__.get(name,None)
+ if method: return method(self)
+ raise AttributeError,name
+
+def _swig_repr(self):
+ try: strthis = "proxy of " + self.this.__repr__()
+ except: strthis = ""
+ return "<%s.%s; %s >" % (self.__class__.__module__, self.__class__.__name__, strthis,)
+
+import types
+try:
+ _object = types.ObjectType
+ _newclass = 1
+except AttributeError:
+ class _object : pass
+ _newclass = 0
+del types
+
+
+init_slim = _qslimlib.init_slim
+cleanup_for_output = _qslimlib.cleanup_for_output
+class MxSMFReader(_object):
+ __swig_setmethods__ = {}
+ __setattr__ = lambda self, name, value: _swig_setattr(self, MxSMFReader, name, value)
+ __swig_getmethods__ = {}
+ __getattr__ = lambda self, name: _swig_getattr(self, MxSMFReader, name)
+ __repr__ = _swig_repr
+ def __init__(self, *args, **kwargs):
+ this = _qslimlib.new_MxSMFReader(*args, **kwargs)
+ try: self.this.append(this)
+ except: self.this = this
+ __swig_destroy__ = _qslimlib.delete_MxSMFReader
+ __del__ = lambda self : None;
+ __swig_setmethods__["unparsed_hook"] = _qslimlib.MxSMFReader_unparsed_hook_set
+ __swig_getmethods__["unparsed_hook"] = _qslimlib.MxSMFReader_unparsed_hook_get
+ if _newclass:unparsed_hook = _swig_property(_qslimlib.MxSMFReader_unparsed_hook_get, _qslimlib.MxSMFReader_unparsed_hook_set)
+ def asp_store(*args, **kwargs): return _qslimlib.MxSMFReader_asp_store(*args, **kwargs)
+ def read(*args, **kwargs): return _qslimlib.MxSMFReader_read(*args, **kwargs)
+ def parse_line(*args, **kwargs): return _qslimlib.MxSMFReader_parse_line(*args, **kwargs)
+ def createModel(*args, **kwargs): return _qslimlib.MxSMFReader_createModel(*args, **kwargs)
+ def bind_normals(*args, **kwargs): return _qslimlib.MxSMFReader_bind_normals(*args, **kwargs)
+ def bind_colors(*args, **kwargs): return _qslimlib.MxSMFReader_bind_colors(*args, **kwargs)
+ def bind_texcoord(*args, **kwargs): return _qslimlib.MxSMFReader_bind_texcoord(*args, **kwargs)
+MxSMFReader_swigregister = _qslimlib.MxSMFReader_swigregister
+MxSMFReader_swigregister(MxSMFReader)
+
+class MxSMFWriter(_object):
+ __swig_setmethods__ = {}
+ __setattr__ = lambda self, name, value: _swig_setattr(self, MxSMFWriter, name, value)
+ __swig_getmethods__ = {}
+ __getattr__ = lambda self, name: _swig_getattr(self, MxSMFWriter, name)
+ __repr__ = _swig_repr
+ def __init__(self, *args, **kwargs):
+ this = _qslimlib.new_MxSMFWriter(*args, **kwargs)
+ try: self.this.append(this)
+ except: self.this = this
+ __swig_setmethods__["vertex_annotate"] = _qslimlib.MxSMFWriter_vertex_annotate_set
+ __swig_getmethods__["vertex_annotate"] = _qslimlib.MxSMFWriter_vertex_annotate_get
+ if _newclass:vertex_annotate = _swig_property(_qslimlib.MxSMFWriter_vertex_annotate_get, _qslimlib.MxSMFWriter_vertex_annotate_set)
+ __swig_setmethods__["face_annotate"] = _qslimlib.MxSMFWriter_face_annotate_set
+ __swig_getmethods__["face_annotate"] = _qslimlib.MxSMFWriter_face_annotate_get
+ if _newclass:face_annotate = _swig_property(_qslimlib.MxSMFWriter_face_annotate_get, _qslimlib.MxSMFWriter_face_annotate_set)
+ def write(*args, **kwargs): return _qslimlib.MxSMFWriter_write(*args, **kwargs)
+ def writeSMF(*args, **kwargs): return _qslimlib.MxSMFWriter_writeSMF(*args, **kwargs)
+ __swig_destroy__ = _qslimlib.delete_MxSMFWriter
+ __del__ = lambda self : None;
+MxSMFWriter_swigregister = _qslimlib.MxSMFWriter_swigregister
+MxSMFWriter_swigregister(MxSMFWriter)
+
+class ContractionCallback(_object):
+ __swig_setmethods__ = {}
+ __setattr__ = lambda self, name, value: _swig_setattr(self, ContractionCallback, name, value)
+ __swig_getmethods__ = {}
+ __getattr__ = lambda self, name: _swig_getattr(self, ContractionCallback, name)
+ __repr__ = _swig_repr
+ def __init__(self, *args, **kwargs):
+ this = _qslimlib.new_ContractionCallback(*args, **kwargs)
+ try: self.this.append(this)
+ except: self.this = this
+ __swig_destroy__ = _qslimlib.delete_ContractionCallback
+ __del__ = lambda self : None;
+ContractionCallback_swigregister = _qslimlib.ContractionCallback_swigregister
+ContractionCallback_swigregister(ContractionCallback)
+
+class QSlimModel(ContractionCallback):
+ __swig_setmethods__ = {}
+ for _s in [ContractionCallback]: __swig_setmethods__.update(getattr(_s,'__swig_setmethods__',{}))
+ __setattr__ = lambda self, name, value: _swig_setattr(self, QSlimModel, name, value)
+ __swig_getmethods__ = {}
+ for _s in [ContractionCallback]: __swig_getmethods__.update(getattr(_s,'__swig_getmethods__',{}))
+ __getattr__ = lambda self, name: _swig_getattr(self, QSlimModel, name)
+ __repr__ = _swig_repr
+ __swig_setmethods__["history"] = _qslimlib.QSlimModel_history_set
+ __swig_getmethods__["history"] = _qslimlib.QSlimModel_history_get
+ if _newclass:history = _swig_property(_qslimlib.QSlimModel_history_get, _qslimlib.QSlimModel_history_set)
+ __swig_setmethods__["smfReader"] = _qslimlib.QSlimModel_smfReader_set
+ __swig_getmethods__["smfReader"] = _qslimlib.QSlimModel_smfReader_get
+ if _newclass:smfReader = _swig_property(_qslimlib.QSlimModel_smfReader_get, _qslimlib.QSlimModel_smfReader_set)
+ __swig_setmethods__["model"] = _qslimlib.QSlimModel_model_set
+ __swig_getmethods__["model"] = _qslimlib.QSlimModel_model_get
+ if _newclass:model = _swig_property(_qslimlib.QSlimModel_model_get, _qslimlib.QSlimModel_model_set)
+ __swig_setmethods__["slim"] = _qslimlib.QSlimModel_slim_set
+ __swig_getmethods__["slim"] = _qslimlib.QSlimModel_slim_get
+ if _newclass:slim = _swig_property(_qslimlib.QSlimModel_slim_get, _qslimlib.QSlimModel_slim_set)
+ def __init__(self, *args, **kwargs):
+ this = _qslimlib.new_QSlimModel(*args, **kwargs)
+ try: self.this.append(this)
+ except: self.this = this
+ __swig_destroy__ = _qslimlib.delete_QSlimModel
+ __del__ = lambda self : None;
+ def clean_history(*args, **kwargs): return _qslimlib.QSlimModel_clean_history(*args, **kwargs)
+ def bind_normals(*args, **kwargs): return _qslimlib.QSlimModel_bind_normals(*args, **kwargs)
+ def bind_colors(*args, **kwargs): return _qslimlib.QSlimModel_bind_colors(*args, **kwargs)
+ def bind_texcoord(*args, **kwargs): return _qslimlib.QSlimModel_bind_texcoord(*args, **kwargs)
+ def get_color_binding(*args, **kwargs): return _qslimlib.QSlimModel_get_color_binding(*args, **kwargs)
+ def get_texcoord_binding(*args, **kwargs): return _qslimlib.QSlimModel_get_texcoord_binding(*args, **kwargs)
+ def get_normal_binding(*args, **kwargs): return _qslimlib.QSlimModel_get_normal_binding(*args, **kwargs)
+ def get_vert_count(*args, **kwargs): return _qslimlib.QSlimModel_get_vert_count(*args, **kwargs)
+ def get_face_count(*args, **kwargs): return _qslimlib.QSlimModel_get_face_count(*args, **kwargs)
+ def num_valid_faces(*args, **kwargs): return _qslimlib.QSlimModel_num_valid_faces(*args, **kwargs)
+ def num_valid_verts(*args, **kwargs): return _qslimlib.QSlimModel_num_valid_verts(*args, **kwargs)
+ def slim_to_target(*args, **kwargs): return _qslimlib.QSlimModel_slim_to_target(*args, **kwargs)
+ def contraction_callback(*args, **kwargs): return _qslimlib.QSlimModel_contraction_callback(*args, **kwargs)
+ def cleanup_for_output(*args, **kwargs): return _qslimlib.QSlimModel_cleanup_for_output(*args, **kwargs)
+ def outmodel(*args, **kwargs): return _qslimlib.QSlimModel_outmodel(*args, **kwargs)
+ def writeSMF(*args, **kwargs): return _qslimlib.QSlimModel_writeSMF(*args, **kwargs)
+QSlimModel_swigregister = _qslimlib.QSlimModel_swigregister
+QSlimModel_swigregister(QSlimModel)
+
+
+
Added: trunk/packages/mgltools/qslimlib/trunk/QSlimLib/qslimlib_wrap.cpp
===================================================================
--- trunk/packages/mgltools/qslimlib/trunk/QSlimLib/qslimlib_wrap.cpp (rev 0)
+++ trunk/packages/mgltools/qslimlib/trunk/QSlimLib/qslimlib_wrap.cpp 2007-12-21 23:32:37 UTC (rev 964)
@@ -0,0 +1,5837 @@
+/* ----------------------------------------------------------------------------
+ * This file was automatically generated by SWIG (http://www.swig.org).
+ * Version 1.3.33
+ *
+ * This file is not intended to be easily readable and contains a number of
+ * coding conventions designed to improve portability and efficiency. Do not make
+ * changes to this file unless you know what you are doing--modify the SWIG
+ * interface file instead.
+ * ----------------------------------------------------------------------------- */
+
+#define SWIGPYTHON
+#define SWIG_PYTHON_DIRECTOR_NO_VTABLE
+
+#ifdef __cplusplus
+template<typename T> class SwigValueWrapper {
+ T *tt;
+public:
+ SwigValueWrapper() : tt(0) { }
+ SwigValueWrapper(const SwigValueWrapper<T>& rhs) : tt(new T(*rhs.tt)) { }
+ SwigValueWrapper(const T& t) : tt(new T(t)) { }
+ ~SwigValueWrapper() { delete tt; }
+ SwigValueWrapper& operator=(const T& t) { delete tt; tt = new T(t); return *this; }
+ operator T&() const { return *tt; }
+ T *operator&() { return tt; }
+private:
+ SwigValueWrapper& operator=(const SwigValueWrapper<T>& rhs);
+};
+
+template <typename T> T SwigValueInit() {
+ return T();
+}
+#endif
+
+/* -----------------------------------------------------------------------------
+ * This section contains generic SWIG labels for method/variable
+ * declarations/attributes, and other compiler dependent labels.
+ * ----------------------------------------------------------------------------- */
+
+/* template workaround for compilers that cannot correctly implement the C++ standard */
+#ifndef SWIGTEMPLATEDISAMBIGUATOR
+# if defined(__SUNPRO_CC) && (__SUNPRO_CC <= 0x560)
+# define SWIGTEMPLATEDISAMBIGUATOR template
+# elif defined(__HP_aCC)
+/* Needed even with `aCC -AA' when `aCC -V' reports HP ANSI C++ B3910B A.03.55 */
+/* If we find a maximum version that requires this, the test would be __HP_aCC <= 35500 for A.03.55 */
+# define SWIGTEMPLATEDISAMBIGUATOR template
+# else
+# define SWIGTEMPLATEDISAMBIGUATOR
+# endif
+#endif
+
+/* inline attribute */
+#ifndef SWIGINLINE
+# if defined(__cplusplus) || (defined(__GNUC__) && !defined(__STRICT_ANSI__))
+# define SWIGINLINE inline
+# else
+# define SWIGINLINE
+# endif
+#endif
+
+/* attribute recognised by some compilers to avoid 'unused' warnings */
+#ifndef SWIGUNUSED
+# if defined(__GNUC__)
+# if !(defined(__cplusplus)) || (__GNUC__ > 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4))
+# define SWIGUNUSED __attribute__ ((__unused__))
+# else
+# define SWIGUNUSED
+# endif
+# elif defined(__ICC)
+# define SWIGUNUSED __attribute__ ((__unused__))
+# else
+# define SWIGUNUSED
+# endif
+#endif
+
+#ifndef SWIGUNUSEDPARM
+# ifdef __cplusplus
+# define SWIGUNUSEDPARM(p)
+# else
+# define SWIGUNUSEDPARM(p) p SWIGUNUSED
+# endif
+#endif
+
+/* internal SWIG method */
+#ifndef SWIGINTERN
+# define SWIGINTERN static SWIGUNUSED
+#endif
+
+/* internal inline SWIG method */
+#ifndef SWIGINTERNINLINE
+# define SWIGINTERNINLINE SWIGINTERN SWIGINLINE
+#endif
+
+/* exporting methods */
+#if (__GNUC__ >= 4) || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4)
+# ifndef GCC_HASCLASSVISIBILITY
+# define GCC_HASCLASSVISIBILITY
+# endif
+#endif
+
+#ifndef SWIGEXPORT
+# if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__)
+# if defined(STATIC_LINKED)
+# define SWIGEXPORT
+# else
+# define SWIGEXPORT __declspec(dllexport)
+# endif
+# else
+# if defined(__GNUC__) && defined(GCC_HASCLASSVISIBILITY)
+# define SWIGEXPORT __attribute__ ((visibility("default")))
+# else
+# define SWIGEXPORT
+# endif
+# endif
+#endif
+
+/* calling conventions for Windows */
+#ifndef SWIGSTDCALL
+# if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__)
+# define SWIGSTDCALL __stdcall
+# else
+# define SWIGSTDCALL
+# endif
+#endif
+
+/* Deal with Microsoft's attempt at deprecating C standard runtime functions */
+#if !defined(SWIG_NO_CRT_SECURE_NO_DEPRECATE) && defined(_MSC_VER) && !defined(_CRT_SECURE_NO_DEPRECATE)
+# define _CRT_SECURE_NO_DEPRECATE
+#endif
+
+/* Deal with Microsoft's attempt at deprecating methods in the standard C++ library */
+#if !defined(SWIG_NO_SCL_SECURE_NO_DEPRECATE) && defined(_MSC_VER) && !defined(_SCL_SECURE_NO_DEPRECATE)
+# define _SCL_SECURE_NO_DEPRECATE
+#endif
+
+
+
+/* Python.h has to appear first */
+#include <Python.h>
+
+/* -----------------------------------------------------------------------------
+ * swigrun.swg
+ *
+ * This file contains generic CAPI SWIG runtime support for pointer
+ * type checking.
+ * ----------------------------------------------------------------------------- */
+
+/* This should only be incremented when either the layout of swig_type_info changes,
+ or for whatever reason, the runtime changes incompatibly */
+#define SWIG_RUNTIME_VERSION "3"
+
+/* define SWIG_TYPE_TABLE_NAME as "SWIG_TYPE_TABLE" */
+#ifdef SWIG_TYPE_TABLE
+# define SWIG_QUOTE_STRING(x) #x
+# define SWIG_EXPAND_AND_QUOTE_STRING(x) SWIG_QUOTE_STRING(x)
+# define SWIG_TYPE_TABLE_NAME SWIG_EXPAND_AND_QUOTE_STRING(SWIG_TYPE_TABLE)
+#else
+# define SWIG_TYPE_TABLE_NAME
+#endif
+
+/*
+ You can use the SWIGRUNTIME and SWIGRUNTIMEINLINE macros for
+ creating a static or dynamic library from the swig runtime code.
+ In 99.9% of the cases, swig just needs to declare them as 'static'.
+
+ But only do this if is strictly necessary, ie, if you have problems
+ with your compiler or so.
+*/
+
+#ifndef SWIGRUNTIME
+# define SWIGRUNTIME SWIGINTERN
+#endif
+
+#ifndef SWIGRUNTIMEINLINE
+# define SWIGRUNTIMEINLINE SWIGRUNTIME SWIGINLINE
+#endif
+
+/* Generic buffer size */
+#ifndef SWIG_BUFFER_SIZE
+# define SWIG_BUFFER_SIZE 1024
+#endif
+
+/* Flags for pointer conversions */
+#define SWIG_POINTER_DISOWN 0x1
+
+/* Flags for new pointer objects */
+#define SWIG_POINTER_OWN 0x1
+
+
+/*
+ Flags/methods for returning states.
+
+ The swig conversion methods, as ConvertPtr, return and integer
+ that tells if the conversion was successful or not. And if not,
+ an error code can be returned (see swigerrors.swg for the codes).
+
+ Use the following macros/flags to set or process the returning
+ states.
+
+ In old swig versions, you usually write code as:
+
+ if (SWIG_ConvertPtr(obj,vptr,ty.flags) != -1) {
+ // success code
+ } else {
+ //fail code
+ }
+
+ Now you can be more explicit as:
+
+ int res = SWIG_ConvertPtr(obj,vptr,ty.flags);
+ if (SWIG_IsOK(res)) {
+ // success code
+ } else {
+ // fail code
+ }
+
+ that seems to be the same, but now you can also do
+
+ Type *ptr;
+ int res = SWIG_ConvertPtr(obj,(void **)(&ptr),ty.flags);
+ if (SWIG_IsOK(res)) {
+ // success code
+ if (SWIG_IsNewObj(res) {
+ ...
+ delete *ptr;
+ } else {
+ ...
+ }
+ } else {
+ // fail code
+ }
+
+ I.e., now SWIG_ConvertPtr can return new objects and you can
+ identify the case and take care of the deallocation. Of course that
+ requires also to SWIG_ConvertPtr to return new result values, as
+
+ int SWIG_ConvertPtr(obj, ptr,...) {
+ if (<obj is ok>) {
+ if (<need new object>) {
+ *ptr = <ptr to new allocated object>;
+ return SWIG_NEWOBJ;
+ } else {
+ *ptr = <ptr to old object>;
+ return SWIG_OLDOBJ;
+ }
+ } else {
+ return SWIG_BADOBJ;
+ }
+ }
+
+ Of course, returning the plain '0(success)/-1(fail)' still works, but you can be
+ more explicit by returning SWIG_BADOBJ, SWIG_ERROR or any of the
+ swig errors code.
+
+ Finally, if the SWIG_CASTRANK_MODE is enabled, the result code
+ allows to return the 'cast rank', for example, if you have this
+
+ int food(double)
+ int fooi(int);
+
+ and you call
+
+ food(1) // cast rank '1' (1 -> 1.0)
+ fooi(1) // cast rank '0'
+
+ just use the SWIG_AddCast()/SWIG_CheckState()
+
+
+ */
+#define SWIG_OK (0)
+#define SWIG_ERROR (-1)
+#define SWIG_IsOK(r) (r >= 0)
+#define SWIG_ArgError(r) ((r != SWIG_ERROR) ? r : SWIG_TypeError)
+
+/* The CastRankLimit says how many bits are used for the cast rank */
+#define SWIG_CASTRANKLIMIT (1 << 8)
+/* The NewMask denotes the object was created (using new/malloc) */
+#define SWIG_NEWOBJMASK (SWIG_CASTRANKLIMIT << 1)
+/* The TmpMask is for in/out typemaps that use temporal objects */
+#define SWIG_TMPOBJMASK (SWIG_NEWOBJMASK << 1)
+/* Simple returning values */
+#define SWIG_BADOBJ (SWIG_ERROR)
+#define SWIG_OLDOBJ (SWIG_OK)
+#define SWIG_NEWOBJ (SWIG_OK | SWIG_NEWOBJMASK)
+#define SWIG_TMPOBJ (SWIG_OK | SWIG_TMPOBJMASK)
+/* Check, add and del mask methods */
+#define SWIG_AddNewMask(r) (SWIG_IsOK(r) ? (r | SWIG_NEWOBJMASK) : r)
+#define SWIG_DelNewMask(r) (SWIG_IsOK(r) ? (r & ~SWIG_NEWOBJMASK) : r)
+#define SWIG_IsNewObj(r) (SWIG_IsOK(r) && (r & SWIG_NEWOBJMASK))
+#define SWIG_AddTmpMask(r) (SWIG_IsOK(r) ? (r | SWIG_TMPOBJMASK) : r)
+#define SWIG_DelTmpMask(r) (SWIG_IsOK(r) ? (r & ~SWIG_TMPOBJMASK) : r)
+#define SWIG_IsTmpObj(r) (SWIG_IsOK(r) && (r & SWIG_TMPOBJMASK))
+
+
+/* Cast-Rank Mode */
+#if defined(SWIG_CASTRANK_MODE)
+# ifndef SWIG_TypeRank
+# define SWIG_TypeRank unsigned long
+# endif
+# ifndef SWIG_MAXCASTRANK /* Default cast allowed */
+# define SWIG_MAXCASTRANK (2)
+# endif
+# define SWIG_CASTRANKMASK ((SWIG_CASTRANKLIMIT) -1)
+# define SWIG_CastRank(r) (r & SWIG_CASTRANKMASK)
+SWIGINTERNINLINE int SWIG_AddCast(int r) {
+ return SWIG_IsOK(r) ? ((SWIG_CastRank(r) < SWIG_MAXCASTRANK) ? (r + 1) : SWIG_ERROR) : r;
+}
+SWIGINTERNINLINE int SWIG_CheckState(int r) {
+ return SWIG_IsOK(r) ? SWIG_CastRank(r) + 1 : 0;
+}
+#else /* no cast-rank mode */
+# define SWIG_AddCast
+# define SWIG_CheckState(r) (SWIG_IsOK(r) ? 1 : 0)
+#endif
+
+
+
+
+#include <string.h>
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+typedef void *(*swig_converter_func)(void *);
+typedef struct swig_type_info *(*swig_dycast_func)(void **);
+
+/* Structure to store inforomation on one type */
+typedef struct swig_type_info {
+ const char *name; /* mangled name of this type */
+ const char *str; /* human readable name of this type */
+ swig_dycast_func dcast; /* dynamic cast function down a hierarchy */
+ struct swig_cast_info *cast; /* linked list of types that can cast into this type */
+ void *clientdata; /* language specific type data */
+ int owndata; /* flag if the structure owns the clientdata */
+} swig_type_info;
+
+/* Structure to store a type and conversion function used for casting */
+typedef struct swig_cast_info {
+ swig_type_info *type; /* pointer to type that is equivalent to this type */
+ swig_converter_func converter; /* function to cast the void pointers */
+ struct swig_cast_info *next; /* pointer to next cast in linked list */
+ struct swig_cast_info *prev; /* pointer to the previous cast */
+} swig_cast_info;
+
+/* Structure used to store module information
+ * Each module generates one structure like this, and the runtime collects
+ * all of these structures and stores them in a circularly linked list.*/
+typedef struct swig_module_info {
+ swig_type_info **types; /* Array of pointers to swig_type_info structures that are in this module */
+ size_t size; /* Number of types in this module */
+ struct swig_module_info *next; /* Pointer to next element in circularly linked list */
+ swig_type_info **type_initial; /* Array of initially generated type structures */
+ swig_cast_info **cast_initial; /* Array of initially generated casting structures */
+ void *clientdata; /* Language specific module data */
+} swig_module_info;
+
+/*
+ Compare two type names skipping the space characters, therefore
+ "char*" == "char *" and "Class<int>" == "Class<int >", etc.
+
+ Return 0 when the two name types are equivalent, as in
+ strncmp, but skipping ' '.
+*/
+SWIGRUNTIME int
+SWIG_TypeNameComp(const char *f1, const char *l1,
+ const char *f2, const char *l2) {
+ for (;(f1 != l1) && (f2 != l2); ++f1, ++f2) {
+ while ((*f1 == ' ') && (f1 != l1)) ++f1;
+ while ((*f2 == ' ') && (f2 != l2)) ++f2;
+ if (*f1 != *f2) return (*f1 > *f2) ? 1 : -1;
+ }
+ return (int)((l1 - f1) - (l2 - f2));
+}
+
+/*
+ Check type equivalence in a name list like <name1>|<name2>|...
+ Return 0 if not equal, 1 if equal
+*/
+SWIGRUNTIME int
+SWIG_TypeEquiv(const char *nb, const char *tb) {
+ int equiv = 0;
+ const char* te = tb + strlen(tb);
+ const char* ne = nb;
+ while (!equiv && *ne) {
+ for (nb = ne; *ne; ++ne) {
+ if (*ne == '|') break;
+ }
+ equiv = (SWIG_TypeNameComp(nb, ne, tb, te) == 0) ? 1 : 0;
+ if (*ne) ++ne;
+ }
+ return equiv;
+}
+
+/*
+ Check type equivalence in a name list like <name1>|<name2>|...
+ Return 0 if equal, -1 if nb < tb, 1 if nb > tb
+*/
+SWIGRUNTIME int
+SWIG_TypeCompare(const char *nb, const char *tb) {
+ int equiv = 0;
+ const char* te = tb + strlen(tb);
+ const char* ne = nb;
+ while (!equiv && *ne) {
+ for (nb = ne; *ne; ++ne) {
+ if (*ne == '|') break;
+ }
+ equiv = (SWIG_TypeNameComp(nb, ne, tb, te) == 0) ? 1 : 0;
+ if (*ne) ++ne;
+ }
+ return equiv;
+}
+
+
+/* think of this as a c++ template<> or a scheme macro */
+#define SWIG_TypeCheck_Template(comparison, ty) \
+ if (ty) { \
+ swig_cast_info *iter = ty->cast; \
+ while (iter) { \
+ if (comparison) { \
+ if (iter == ty->cast) return iter; \
+ /* Move iter to the top of the linked list */ \
+ iter->prev->next = iter->next; \
+ if (iter->next) \
+ iter->next->prev = iter->prev; \
+ iter->next = ty->cast; \
+ iter->prev = 0; \
+ if (ty->cast) ty->cast->prev = iter; \
+ ty->cast = iter; \
+ return iter; \
+ } \
+ iter = iter->next; \
+ } \
+ } \
+ return 0
+
+/*
+ Check the typename
+*/
+SWIGRUNTIME swig_cast_info *
+SWIG_TypeCheck(const char *c, swig_type_info *ty) {
+ SWIG_TypeCheck_Template(strcmp(iter->type->name, c) == 0, ty);
+}
+
+/* Same as previous function, except strcmp is replaced with a pointer comparison */
+SWIGRUNTIME swig_cast_info *
+SWIG_TypeCheckStruct(swig_type_info *from, swig_type_info *into) {
+ SWIG_TypeCheck_Template(iter->type == from, into);
+}
+
+/*
+ Cast a pointer up an inheritance hierarchy
+*/
+SWIGRUNTIMEINLINE void *
+SWIG_TypeCast(swig_cast_info *ty, void *ptr) {
+ return ((!ty) || (!ty->converter)) ? ptr : (*ty->converter)(ptr);
+}
+
+/*
+ Dynamic pointer casting. Down an inheritance hierarchy
+*/
+SWIGRUNTIME swig_type_info *
+SWIG_TypeDynamicCast(swig_type_info *ty, void **ptr) {
+ swig_type_info *lastty = ty;
+ if (!ty || !ty->dcast) return ty;
+ while (ty && (ty->dcast)) {
+ ty = (*ty->dcast)(ptr);
+ if (ty) lastty = ty;
+ }
+ return lastty;
+}
+
+/*
+ Return the name associated with this type
+*/
+SWIGRUNTIMEINLINE const char *
+SWIG_TypeName(const swig_type_info *ty) {
+ return ty->name;
+}
+
+/*
+ Return the pretty name associated with this type,
+ that is an unmangled type name in a form presentable to the user.
+*/
+SWIGRUNTIME const char *
+SWIG_TypePrettyName(const swig_type_info *type) {
+ /* The "str" field contains the equivalent pretty names of the
+ type, separated by vertical-bar characters. We choose
+ to print the last name, as it is often (?) the most
+ specific. */
+ if (!type) return NULL;
+ if (type->str != NULL) {
+ const char *last_name = type->str;
+ const char *s;
+ for (s = type->str; *s; s++)
+ if (*s == '|') last_name = s+1;
+ return last_name;
+ }
+ else
+ return type->name;
+}
+
+/*
+ Set the clientdata field for a type
+*/
+SWIGRUNTIME void
+SWIG_TypeClientData(swig_type_info *ti, void *clientdata) {
+ swig_cast_info *cast = ti->cast;
+ /* if (ti->clientdata == clientdata) return; */
+ ti->clientdata = clientdata;
+
+ while (cast) {
+ if (!cast->converter) {
+ swig_type_info *tc = cast->type;
+ if (!tc->clientdata) {
+ SWIG_TypeClientData(tc, clientdata);
+ }
+ }
+ cast = cast->next;
+ }
+}
+SWIGRUNTIME void
+SWIG_TypeNewClientData(swig_type_info *ti, void *clientdata) {
+ SWIG_TypeClientData(ti, clientdata);
+ ti->owndata = 1;
+}
+
+/*
+ Search for a swig_type_info structure only by mangled name
+ Search is a O(log #types)
+
+ We start searching at module start, and finish searching when start == end.
+ Note: if start == end at the beginning of the function, we go all the way around
+ the circular list.
+*/
+SWIGRUNTIME swig_type_info *
+SWIG_MangledTypeQueryModule(swig_module_info *start,
+ swig_module_info *end,
+ const char *name) {
+ swig_module_info *iter = start;
+ do {
+ if (iter->size) {
+ register size_t l = 0;
+ register size_t r = iter->size - 1;
+ do {
+ /* since l+r >= 0, we can (>> 1) instead (/ 2) */
+ register size_t i = (l + r) >> 1;
+ const char *iname = iter->types[i]->name;
+ if (iname) {
+ register int compare = strcmp(name, iname);
+ if (compare == 0) {
+ return iter->types[i];
+ } else if (compare < 0) {
+ if (i) {
+ r = i - 1;
+ } else {
+ break;
+ }
+ } else if (compare > 0) {
+ l = i + 1;
+ }
+ } else {
+ break; /* should never happen */
+ }
+ } while (l <= r);
+ }
+ iter = iter->next;
+ } while (iter != end);
+ return 0;
+}
+
+/*
+ Search for a swig_type_info structure for either a mangled name or a human readable name.
+ It first searches the mangled names of the types, which is a O(log #types)
+ If a type is not found it then searches the human readable names, which is O(#types).
+
+ We start searching at module start, and finish searching when start == end.
+ Note: if start == end at the beginning of the function, we go all the way around
+ the circular list.
+*/
+SWIGRUNTIME swig_type_info *
+SWIG_TypeQueryModule(swig_module_info *start,
+ swig_module_info *end,
+ const char *name) {
+ /* STEP 1: Search the name field using binary search */
+ swig_type_info *ret = SWIG_MangledTypeQueryModule(start, end, name);
+ if (ret) {
+ return ret;
+ } else {
+ /* STEP 2: If the type hasn't been found, do a complete search
+ of the str field (the human readable name) */
+ swig_module_info *iter = start;
+ do {
+ register size_t i = 0;
+ for (; i < iter->size; ++i) {
+ if (iter->types[i]->str && (SWIG_TypeEquiv(iter->types[i]->str, name)))
+ return iter->types[i];
+ }
+ iter = iter->next;
+ } while (iter != end);
+ }
+
+ /* neither found a match */
+ return 0;
+}
+
+/*
+ Pack binary data into a string
+*/
+SWIGRUNTIME char *
+SWIG_PackData(char *c, void *ptr, size_t sz) {
+ static const char hex[17] = "0123456789abcdef";
+ register const unsigned char *u = (unsigned char *) ptr;
+ register const unsigned char *eu = u + sz;
+ for (; u != eu; ++u) {
+ register unsigned char uu = *u;
+ *(c++) = hex[(uu & 0xf0) >> 4];
+ *(c++) = hex[uu & 0xf];
+ }
+ return c;
+}
+
+/*
+ Unpack binary data from a string
+*/
+SWIGRUNTIME const char *
+SWIG_UnpackData(const char *c, void *ptr, size_t sz) {
+ register unsigned char *u = (unsigned char *) ptr;
+ register const unsigned char *eu = u + sz;
+ for (; u != eu; ++u) {
+ register char d = *(c++);
+ register unsigned char uu;
+ if ((d >= '0') && (d <= '9'))
+ uu = ((d - '0') << 4);
+ else if ((d >= 'a') && (d <= 'f'))
+ uu = ((d - ('a'-10)) << 4);
+ else
+ return (char *) 0;
+ d = *(c++);
+ if ((d >= '0') && (d <= '9'))
+ uu |= (d - '0');
+ else if ((d >= 'a') && (d <= 'f'))
+ uu |= (d - ('a'-10));
+ else
+ return (char *) 0;
+ *u = uu;
+ }
+ return c;
+}
+
+/*
+ Pack 'void *' into a string buffer.
+*/
+SWIGRUNTIME char *
+SWIG_PackVoidPtr(char *buff, void *ptr, const char *name, size_t bsz) {
+ char *r = buff;
+ if ((2*sizeof(void *) + 2) > bsz) return 0;
+ *(r++) = '_';
+ r = SWIG_PackData(r,&ptr,sizeof(void *));
+ if (strlen(name) + 1 > (bsz - (r - buff))) return 0;
+ strcpy(r,name);
+ return buff;
+}
+
+SWIGRUNTIME const char *
+SWIG_UnpackVoidPtr(const char *c, void **ptr, const char *name) {
+ if (*c != '_') {
+ if (strcmp(c,"NULL") == 0) {
+ *ptr = (void *) 0;
+ return name;
+ } else {
+ return 0;
+ }
+ }
+ return SWIG_UnpackData(++c,ptr,sizeof(void *));
+}
+
+SWIGRUNTIME char *
+SWIG_PackDataName(char *buff, void *ptr, size_t sz, const char *name, size_t bsz) {
+ char *r = buff;
+ size_t lname = (name ? strlen(name) : 0);
+ if ((2*sz + 2 + lname) > bsz) return 0;
+ *(r++) = '_';
+ r = SWIG_PackData(r,ptr,sz);
+ if (lname) {
+ strncpy(r,name,lname+1);
+ } else {
+ *r = 0;
+ }
+ return buff;
+}
+
+SWIGRUNTIME const char *
+SWIG_UnpackDataName(const char *c, void *ptr, size_t sz, const char *name) {
+ if (*c != '_') {
+ if (strcmp(c,"NULL") == 0) {
+ memset(ptr,0,sz);
+ return name;
+ } else {
+ return 0;
+ }
+ }
+ return SWIG_UnpackData(++c,ptr,sz);
+}
+
+#ifdef __cplusplus
+}
+#endif
+
+/* Errors in SWIG */
+#define SWIG_UnknownError -1
+#define SWIG_IOError -2
+#define SWIG_RuntimeError -3
+#define SWIG_IndexError -4
+#define SWIG_TypeError -5
+#define SWIG_DivisionByZero -6
+#define SWIG_OverflowError -7
+#define SWIG_SyntaxError -8
+#define SWIG_ValueError -9
+#define SWIG_SystemError -10
+#define SWIG_AttributeError -11
+#define SWIG_MemoryError -12
+#define SWIG_NullReferenceError -13
+
+
+
+
+/* Add PyOS_snprintf for old Pythons */
+#if PY_VERSION_HEX < 0x02020000
+# if defined(_MSC_VER) || defined(__BORLANDC__) || defined(_WATCOM)
+# define PyOS_snprintf _snprintf
+# else
+# define PyOS_snprintf snprintf
+# endif
+#endif
+
+/* A crude PyString_FromFormat implementation for old Pythons */
+#if PY_VERSION_HEX < 0x02020000
+
+#ifndef SWIG_PYBUFFER_SIZE
+# define SWIG_PYBUFFER_SIZE 1024
+#endif
+
+static PyObject *
+PyString_FromFormat(const char *fmt, ...) {
+ va_list ap;
+ char buf[SWIG_PYBUFFER_SIZE * 2];
+ int res;
+ va_start(ap, fmt);
+ res = vsnprintf(buf, sizeof(buf), fmt, ap);
+ va_end(ap);
+ return (res < 0 || res >= (int)sizeof(buf)) ? 0 : PyString_FromString(buf);
+}
+#endif
+
+/* Add PyObject_Del for old Pythons */
+#if PY_VERSION_HEX < 0x01060000
+# define PyObject_Del(op) PyMem_DEL((op))
+#endif
+#ifndef PyObject_DEL
+# define PyObject_DEL PyObject_Del
+#endif
+
+/* A crude PyExc_StopIteration exception for old Pythons */
+#if PY_VERSION_HEX < 0x02020000
+# ifndef PyExc_StopIteration
+# define PyExc_StopIteration PyExc_RuntimeError
+# endif
+# ifndef PyObject_GenericGetAttr
+# define PyObject_GenericGetAttr 0
+# endif
+#endif
+/* Py_NotImplemented is defined in 2.1 and up. */
+#if PY_VERSION_HEX < 0x02010000
+# ifndef Py_NotImplemented
+# define Py_NotImplemented PyExc_RuntimeError
+# endif
+#endif
+
+
+/* A crude PyString_AsStringAndSize implementation for old Pythons */
+#if PY_VERSION_HEX < 0x02010000
+# ifndef PyString_AsStringAndSize
+# define PyString_AsStringAndSize(obj, s, len) {*s = PyString_AsString(obj); *len = *s ? strlen(*s) : 0;}
+# endif
+#endif
+
+/* PySequence_Size for old Pythons */
+#if PY_VERSION_HEX < 0x02000000
+# ifndef PySequence_Size
+# define PySequence_Size PySequence_Length
+# endif
+#endif
+
+
+/* PyBool_FromLong for old Pythons */
+#if PY_VERSION_HEX < 0x02030000
+static
+PyObject *PyBool_FromLong(long ok)
+{
+ PyObject *result = ok ? Py_True : Py_False;
+ Py_INCREF(result);
+ return result;
+}
+#endif
+
+/* Py_ssize_t for old Pythons */
+/* This code is as recommended by: */
+/* http://www.python.org/dev/peps/pep-0353/#conversion-guidelines */
+#if PY_VERSION_HEX < 0x02050000 && !defined(PY_SSIZE_T_MIN)
+typedef int Py_ssize_t;
+# define PY_SSIZE_T_MAX INT_MAX
+# define PY_SSIZE_T_MIN INT_MIN
+#endif
+
+/* -----------------------------------------------------------------------------
+ * error manipulation
+ * ----------------------------------------------------------------------------- */
+
+SWIGRUNTIME PyObject*
+SWIG_Python_ErrorType(int code) {
+ PyObject* type = 0;
+ switch(code) {
+ case SWIG_MemoryError:
+ type = PyExc_MemoryError;
+ break;
+ case SWIG_IOError:
+ type = PyExc_IOError;
+ break;
+ case SWIG_RuntimeError:
+ type = PyExc_RuntimeError;
+ break;
+ case SWIG_IndexError:
+ type = PyExc_IndexError;
+ break;
+ case SWIG_TypeError:
+ type = PyExc_TypeError;
+ break;
+ case SWIG_DivisionByZero:
+ type = PyExc_ZeroDivisionError;
+ break;
+ case SWIG_OverflowError:
+ type = PyExc_OverflowError;
+ break;
+ case SWIG_SyntaxError:
+ type = PyExc_SyntaxError;
+ break;
+ case SWIG_ValueError:
+ type = PyExc_ValueError;
+ break;
+ case SWIG_SystemError:
+ type = PyExc_SystemError;
+ break;
+ case SWIG_AttributeError:
+ type = PyExc_AttributeError;
+ break;
+ default:
+ type = PyExc_RuntimeError;
+ }
+ return type;
+}
+
+
+SWIGRUNTIME void
+SWIG_Python_AddErrorMsg(const char* mesg)
+{
+ PyObject *type = 0;
+ PyObject *value = 0;
+ PyObject *traceback = 0;
+
+ if (PyErr_Occurred()) PyErr_Fetch(&type, &value, &traceback);
+ if (value) {
+ PyObject *old_str = PyObject_Str(value);
+ PyErr_Clear();
+ Py_XINCREF(type);
+ PyErr_Format(type, "%s %s", PyString_AsString(old_str), mesg);
+ Py_DECREF(old_str);
+ Py_DECREF(value);
+ } else {
+ PyErr_Format(PyExc_RuntimeError, mesg);
+ }
+}
+
+
+
+#if defined(SWIG_PYTHON_NO_THREADS)
+# if defined(SWIG_PYTHON_THREADS)
+# undef SWIG_PYTHON_THREADS
+# endif
+#endif
+#if defined(SWIG_PYTHON_THREADS) /* Threading support is enabled */
+# if !defined(SWIG_PYTHON_USE_GIL) && !defined(SWIG_PYTHON_NO_USE_GIL)
+# if (PY_VERSION_HEX >= 0x02030000) /* For 2.3 or later, use the PyGILState calls */
+# define SWIG_PYTHON_USE_GIL
+# endif
+# endif
+# if defined(SWIG_PYTHON_USE_GIL) /* Use PyGILState threads calls */
+# ifndef SWIG_PYTHON_INITIALIZE_THREADS
+# define SWIG_PYTHON_INITIALIZE_THREADS PyEval_InitThreads()
+# endif
+# ifdef __cplusplus /* C++ code */
+ class SWIG_Python_Thread_Block {
+ bool status;
+ PyGILState_STATE state;
+ public:
+ void end() { if (status) { PyGILState_Release(state); status = false;} }
+ SWIG_Python_Thread_Block() : status(true), state(PyGILState_Ensure()) {}
+ ~SWIG_Python_Thread_Block() { end(); }
+ };
+ class SWIG_Python_Thread_Allow {
+ bool status;
+ PyThreadState *save;
+ public:
+ void end() { if (status) { PyEval_RestoreThread(save); status = false; }}
+ SWIG_Python_Thread_Allow() : status(true), save(PyEval_SaveThread()) {}
+ ~SWIG_Python_Thread_Allow() { end(); }
+ };
+# define SWIG_PYTHON_THREAD_BEGIN_BLOCK SWIG_Python_Thread_Block _swig_thread_block
+# define SWIG_PYTHON_THREAD_END_BLOCK _swig_thread_block.end()
+# define SWIG_PYTHON_THREAD_BEGIN_ALLOW SWIG_Python_Thread_Allow _swig_thread_allow
+# define SWIG_PYTHON_THREAD_END_ALLOW _swig_thread_allow.end()
+# else /* C code */
+# define SWIG_PYTHON_THREAD_BEGIN_BLOCK PyGILState_STATE _swig_thread_block = PyGILState_Ensure()
+# define SWIG_PYTHON_THREAD_END_BLOCK PyGILState_Release(_swig_thread_block)
+# define SWIG_PYTHON_THREAD_BEGIN_ALLOW PyThreadState *_swig_thread_allow = PyEval_SaveThread()
+# define SWIG_PYTHON_THREAD_END_ALLOW PyEval_RestoreThread(_swig_thread_allow)
+# endif
+# else /* Old thread way, not implemented, user must provide it */
+# if !defined(SWIG_PYTHON_INITIALIZE_THREADS)
+# define SWIG_PYTHON_INITIALIZE_THREADS
+# endif
+# if !defined(SWIG_PYTHON_THREAD_BEGIN_BLOCK)
+# define SWIG_PYTHON_THREAD_BEGIN_BLOCK
+# endif
+# if !defined(SWIG_PYTHON_THREAD_END_BLOCK)
+# define SWIG_PYTHON_THREAD_END_BLOCK
+# endif
+# if !defined(SWIG_PYTHON_THREAD_BEGIN_ALLOW)
+# define SWIG_PYTHON_THREAD_BEGIN_ALLOW
+# endif
+# if !defined(SWIG_PYTHON_THREAD_END_ALLOW)
+# define SWIG_PYTHON_THREAD_END_ALLOW
+# endif
+# endif
+#else /* No thread support */
+# define SWIG_PYTHON_INITIALIZE_THREADS
+# define SWIG_PYTHON_THREAD_BEGIN_BLOCK
+# define SWIG_PYTHON_THREAD_END_BLOCK
+# define SWIG_PYTHON_THREAD_BEGIN_ALLOW
+# define SWIG_PYTHON_THREAD_END_ALLOW
+#endif
+
+/* -----------------------------------------------------------------------------
+ * Python API portion that goes into the runtime
+ * ----------------------------------------------------------------------------- */
+
+#ifdef __cplusplus
+extern "C" {
+#if 0
+} /* cc-mode */
+#endif
+#endif
+
+/* -----------------------------------------------------------------------------
+ * Constant declarations
+ * ----------------------------------------------------------------------------- */
+
+/* Constant Types */
+#define SWIG_PY_POINTER 4
+#define SWIG_PY_BINARY 5
+
+/* Constant information structure */
+typedef struct swig_const_info {
+ int type;
+ char *name;
+ long lvalue;
+ double dvalue;
+ void *pvalue;
+ swig_type_info **ptype;
+} swig_const_info;
+
+#ifdef __cplusplus
+#if 0
+{ /* cc-mode */
+#endif
+}
+#endif
+
+
+/* -----------------------------------------------------------------------------
+ * See the LICENSE file for information on copyright, usage and redistribution
+ * of SWIG, and the README file for authors - http://www.swig.org/release.html.
+ *
+ * pyrun.swg
+ *
+ * This file contains the runtime support for Python modules
+ * and includes code for managing global variables and pointer
+ * type checking.
+ *
+ * ----------------------------------------------------------------------------- */
+
+/* Common SWIG API */
+
+/* for raw pointers */
+#define SWIG_Python_ConvertPtr(obj, pptr, type, flags) SWIG_Python_ConvertPtrAndOwn(obj, pptr, type, flags, 0)
+#define SWIG_ConvertPtr(obj, pptr, type, flags) SWIG_Python_ConvertPtr(obj, pptr, type, flags)
+#define SWIG_ConvertPtrAndOwn(obj,pptr,type,flags,own) SWIG_Python_ConvertPtrAndOwn(obj, pptr, type, flags, own)
+#define SWIG_NewPointerObj(ptr, type, flags) SWIG_Python_NewPointerObj(ptr, type, flags)
+#define SWIG_CheckImplicit(ty) SWIG_Python_CheckImplicit(ty)
+#define SWIG_AcquirePtr(ptr, src) SWIG_Python_AcquirePtr(ptr, src)
+#define swig_owntype int
+
+/* for raw packed data */
+#define SWIG_ConvertPacked(obj, ptr, sz, ty) SWIG_Python_ConvertPacked(obj, ptr, sz, ty)
+#define SWIG_NewPackedObj(ptr, sz, type) SWIG_Python_NewPackedObj(ptr, sz, type)
+
+/* for class or struct pointers */
+#define SWIG_ConvertInstance(obj, pptr, type, flags) SWIG_ConvertPtr(obj, pptr, type, flags)
+#define SWIG_NewInstanceObj(ptr, type, flags) SWIG_NewPointerObj(ptr, type, flags)
+
+/* for C or C++ function pointers */
+#define SWIG_ConvertFunctionPtr(obj, pptr, type) SWIG_Python_ConvertFunctionPtr(obj, pptr, type)
+#define SWIG_NewFunctionPtrObj(ptr, type) SWIG_Python_NewPointerObj(ptr, type, 0)
+
+/* for C++ member pointers, ie, member methods */
+#define SWIG_ConvertMember(obj, ptr, sz, ty) SWIG_Python_ConvertPacked(obj, ptr, sz, ty)
+#define SWIG_NewMemberObj(ptr, sz, type) SWIG_Python_NewPackedObj(ptr, sz, type)
+
+
+/* Runtime API */
+
+#define SWIG_GetModule(clientdata) SWIG_Python_GetModule()
+#define SWIG_SetModule(clientdata, pointer) SWIG_Python_SetModule(pointer)
+#define SWIG_NewClientData(obj) PySwigClientData_New(obj)
+
+#define SWIG_SetErrorObj SWIG_Python_SetErrorObj
+#define SWIG_SetErrorMsg SWIG_Python_SetErrorMsg
+#define SWIG_ErrorType(code) SWIG_Python_ErrorType(code)
+#define SWIG_Error(code, msg) SWIG_Python_SetErrorMsg(SWIG_ErrorType(code), msg)
+#define SWIG_fail goto fail
+
+
+/* Runtime API implementation */
+
+/* Error manipulation */
+
+SWIGINTERN void
+SWIG_Python_SetErrorObj(PyObject *errtype, PyObject *obj) {
+ SWIG_PYTHON_THREAD_BEGIN_BLOCK;
+ PyErr_SetObject(errtype, obj);
+ Py_DECREF(obj);
+ SWIG_PYTHON_THREAD_END_BLOCK;
+}
+
+SWIGINTERN void
+SWIG_Python_SetErrorMsg(PyObject *errtype, const char *msg) {
+ SWIG_PYTHON_THREAD_BEGIN_BLOCK;
+ PyErr_SetString(errtype, (char *) msg);
+ SWIG_PYTHON_THREAD_END_BLOCK;
+}
+
+#define SWIG_Python_Raise(obj, type, desc) SWIG_Python_SetErrorObj(SWIG_Python_ExceptionType(desc), obj)
+
+/* Set a constant value */
+
+SWIGINTERN void
+SWIG_Python_SetConstant(PyObject *d, const char *name, PyObject *obj) {
+ PyDict_SetItemString(d, (char*) name, obj);
+ Py_DECREF(obj);
+}
+
+/* Append a value to the result obj */
+
+SWIGINTERN PyObject*
+SWIG_Python_AppendOutput(PyObject* result, PyObject* obj) {
+#if !defined(SWIG_PYTHON_OUTPUT_TUPLE)
+ if (!result) {
+ result = obj;
+ } else if (result == Py_None) {
+ Py_DECREF(result);
+ result = obj;
+ } else {
+ if (!PyList_Check(result)) {
+ PyObject *o2 = result;
+ result = PyList_New(1);
+ PyList_SetItem(result, 0, o2);
+ }
+ PyList_Append(result,obj);
+ Py_DECREF(obj);
+ }
+ return result;
+#else
+ PyObject* o2;
+ PyObject* o3;
+ if (!result) {
+ result = obj;
+ } else if (result == Py_None) {
+ Py_DECREF(result);
+ result = obj;
+ } else {
+ if (!PyTuple_Check(result)) {
+ o2 = result;
+ result = PyTuple_New(1);
+ PyTuple_SET_ITEM(result, 0, o2);
+ }
+ o3 = PyTuple_New(1);
+ PyTuple_SET_ITEM(o3, 0, obj);
+ o2 = result;
+ result = PySequence_Concat(o2, o3);
+ Py_DECREF(o2);
+ Py_DECREF(o3);
+ }
+ return result;
+#endif
+}
+
+/* Unpack the argument tuple */
+
+SWIGINTERN int
+SWIG_Python_UnpackTuple(PyObject *args, const char *name, Py_ssize_t min, Py_ssize_t max, PyObject **objs)
+{
+ if (!args) {
+ if (!min && !max) {
+ return 1;
+ } else {
+ PyErr_Format(PyExc_TypeError, "%s expected %s%d arguments, got none",
+ name, (min == max ? "" : "at least "), (int)min);
+ return 0;
+ }
+ }
+ if (!PyTuple_Check(args)) {
+ PyErr_SetString(PyExc_SystemError, "UnpackTuple() argument list is not a tuple");
+ return 0;
+ } else {
+ register Py_ssize_t l = PyTuple_GET_SIZE(args);
+ if (l < min) {
+ PyErr_Format(PyExc_TypeError, "%s expected %s%d arguments, got %d",
+ name, (min == max ? "" : "at least "), (int)min, (int)l);
+ return 0;
+ } else if (l > max) {
+ PyErr_Format(PyExc_TypeError, "%s expected %s%d arguments, got %d",
+ name, (min == max ? "" : "at most "), (int)max, (int)l);
+ return 0;
+ } else {
+ register int i;
+ for (i = 0; i < l; ++i) {
+ objs[i] = PyTuple_GET_ITEM(args, i);
+ }
+ for (; l < max; ++l) {
+ objs[l] = 0;
+ }
+ return i + 1;
+ }
+ }
+}
+
+/* A functor is a function object with one single object argument */
+#if PY_VERSION_HEX >= 0x02020000
+#define SWIG_Python_CallFunctor(functor, obj) PyObject_CallFunctionObjArgs(functor, obj, NULL);
+#else
+#define SWIG_Python_CallFunctor(functor, obj) PyObject_CallFunction(functor, "O", obj);
+#endif
+
+/*
+ Helper for static pointer initialization for both C and C++ code, for example
+ static PyObject *SWIG_STATIC_POINTER(MyVar) = NewSomething(...);
+*/
+#ifdef __cplusplus
+#define SWIG_STATIC_POINTER(var) var
+#else
+#define SWIG_STATIC_POINTER(var) var = 0; if (!var) var
+#endif
+
+/* -----------------------------------------------------------------------------
+ * Pointer declarations
+ * ----------------------------------------------------------------------------- */
+
+/* Flags for new pointer objects */
+#define SWIG_POINTER_NOSHADOW (SWIG_POINTER_OWN << 1)
+#define SWIG_POINTER_NEW (SWIG_POINTER_NOSHADOW | SWIG_POINTER_OWN)
+
+#define SWIG_POINTER_IMPLICIT_CONV (SWIG_POINTER_DISOWN << 1)
+
+#ifdef __cplusplus
+extern "C" {
+#if 0
+} /* cc-mode */
+#endif
+#endif
+
+/* How to access Py_None */
+#if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__)
+# ifndef SWIG_PYTHON_NO_BUILD_NONE
+# ifndef SWIG_PYTHON_BUILD_NONE
+# define SWIG_PYTHON_BUILD_NONE
+# endif
+# endif
+#endif
+
+#ifdef SWIG_PYTHON_BUILD_NONE
+# ifdef Py_None
+# undef Py_None
+# define Py_None SWIG_Py_None()
+# endif
+SWIGRUNTIMEINLINE PyObject *
+_SWIG_Py_None(void)
+{
+ PyObject *none = Py_BuildValue((char*)"");
+ Py_DECREF(none);
+ return none;
+}
+SWIGRUNTIME PyObject *
+SWIG_Py_None(void)
+{
+ static PyObject *SWIG_STATIC_POINTER(none) = _SWIG_Py_None();
+ return none;
+}
+#endif
+
+/* The python void return value */
+
+SWIGRUNTIMEINLINE PyObject *
+SWIG_Py_Void(void)
+{
+ PyObject *none = Py_None;
+ Py_INCREF(none);
+ return none;
+}
+
+/* PySwigClientData */
+
+typedef struct {
+ PyObject *klass;
+ PyObject *newraw;
+ PyObject *newargs;
+ PyObject *destroy;
+ int delargs;
+ int implicitconv;
+} PySwigClientData;
+
+SWIGRUNTIMEINLINE int
+SWIG_Python_CheckImplicit(swig_type_info *ty)
+{
+ PySwigClientData *data = (PySwigClientData *)ty->clientdata;
+ return data ? data->implicitconv : 0;
+}
+
+SWIGRUNTIMEINLINE PyObject *
+SWIG_Python_ExceptionType(swig_type_info *desc) {
+ PySwigClientData *data = desc ? (PySwigClientData *) desc->clientdata : 0;
+ PyObject *klass = data ? data->klass : 0;
+ return (klass ? klass : PyExc_RuntimeError);
+}
+
+
+SWIGRUNTIME PySwigClientData *
+PySwigClientData_New(PyObject* obj)
+{
+ if (!obj) {
+ return 0;
+ } else {
+ PySwigClientData *data = (PySwigClientData *)malloc(sizeof(PySwigClientData));
+ /* the klass element */
+ data->klass = obj;
+ Py_INCREF(data->klass);
+ /* the newraw method and newargs arguments used to create a new raw instance */
+ if (PyClass_Check(obj)) {
+ data->newraw = 0;
+ data->newargs = obj;
+ Py_INCREF(obj);
+ } else {
+#if (PY_VERSION_HEX < 0x02020000)
+ data->newraw = 0;
+#else
+ data->newraw = PyObject_GetAttrString(data->klass, (char *)"__new__");
+#endif
+ if (data->newraw) {
+ Py_INCREF(data->newraw);
+ data->newargs = PyTuple_New(1);
+ PyTuple_SetItem(data->newargs, 0, obj);
+ } else {
+ data->newargs = obj;
+ }
+ Py_INCREF(data->newargs);
+ }
+ /* the destroy method, aka as the C++ delete method */
+ data->destroy = PyObject_GetAttrString(data->klass, (char *)"__swig_destroy__");
+ if (PyErr_Occurred()) {
+ PyErr_Clear();
+ data->destroy = 0;
+ }
+ if (data->destroy) {
+ int flags;
+ Py_INCREF(data->destroy);
+ flags = PyCFunction_GET_FLAGS(data->destroy);
+#ifdef METH_O
+ data->delargs = !(flags & (METH_O));
+#else
+ data->delargs = 0;
+#endif
+ } else {
+ data->delargs = 0;
+ }
+ data->implicitconv = 0;
+ return data;
+ }
+}
+
+SWIGRUNTIME void
+PySwigClientData_Del(PySwigClientData* data)
+{
+ Py_XDECREF(data->newraw);
+ Py_XDECREF(data->newargs);
+ Py_XDECREF(data->destroy);
+}
+
+/* =============== PySwigObject =====================*/
+
+typedef struct {
+ PyObject_HEAD
+ void *ptr;
+ swig_type_info *ty;
+ int own;
+ PyObject *next;
+} PySwigObject;
+
+SWIGRUNTIME PyObject *
+PySwigObject_long(PySwigObject *v)
+{
+ return PyLong_FromVoidPtr(v->ptr);
+}
+
+SWIGRUNTIME PyObject *
+PySwigObject_format(const char* fmt, PySwigObject *v)
+{
+ PyObject *res = NULL;
+ PyObject *args = PyTuple_New(1);
+ if (args) {
+ if (PyTuple_SetItem(args, 0, PySwigObject_long(v)) == 0) {
+ PyObject *ofmt = PyString_FromString(fmt);
+ if (ofmt) {
+ res = PyString_Format(ofmt,args);
+ Py_DECREF(ofmt);
+ }
+ Py_DECREF(args);
+ }
+ }
+ return res;
+}
+
+SWIGRUNTIME PyObject *
+PySwigObject_oct(PySwigObject *v)
+{
+ return PySwigObject_format("%o",v);
+}
+
+SWIGRUNTIME PyObject *
+PySwigObject_hex(PySwigObject *v)
+{
+ return PySwigObject_format("%x",v);
+}
+
+SWIGRUNTIME PyObject *
+#ifdef METH_NOARGS
+PySwigObject_repr(PySwigObject *v)
+#else
+PySwigObject_repr(PySwigObject *v, PyObject *args)
+#endif
+{
+ const char *name = SWIG_TypePrettyName(v->ty);
+ PyObject *hex = PySwigObject_hex(v);
+ PyObject *repr = PyString_FromFormat("<Swig Object of type '%s' at 0x%s>", name, PyString_AsString(hex));
+ Py_DECREF(hex);
+ if (v->next) {
+#ifdef METH_NOARGS
+ PyObject *nrep = PySwigObject_repr((PySwigObject *)v->next);
+#else
+ PyObject *nrep = PySwigObject_repr((PySwigObject *)v->next, args);
+#endif
+ PyString_ConcatAndDel(&repr,nrep);
+ }
+ return repr;
+}
+
+SWIGRUNTIME int
+PySwigObject_print(PySwigObject *v, FILE *fp, int SWIGUNUSEDPARM(flags))
+{
+#ifdef METH_NOARGS
+ PyObject *repr = PySwigObject_repr(v);
+#else
+ PyObject *repr = PySwigObject_repr(v, NULL);
+#endif
+ if (repr) {
+ fputs(PyString_AsString(repr), fp);
+ Py_DECREF(repr);
+ return 0;
+ } else {
+ return 1;
+ }
+}
+
+SWIGRUNTIME PyObject *
+PySwigObject_str(PySwigObject *v)
+{
+ char result[SWIG_BUFFER_SIZE];
+ return SWIG_PackVoidPtr(result, v->ptr, v->ty->name, sizeof(result)) ?
+ PyString_FromString(result) : 0;
+}
+
+SWIGRUNTIME int
+PySwigObject_compare(PySwigObject *v, PySwigObject *w)
+{
+ void *i = v->ptr;
+ void *j = w->ptr;
+ return (i < j) ? -1 : ((i > j) ? 1 : 0);
+}
+
+SWIGRUNTIME PyTypeObject* _PySwigObject_type(void);
+
+SWIGRUNTIME PyTypeObject*
+PySwigObject_type(void) {
+ static PyTypeObject *SWIG_STATIC_POINTER(type) = _PySwigObject_type();
+ return type;
+}
+
+SWIGRUNTIMEINLINE int
+PySwigObject_Check(PyObject *op) {
+ return ((op)->ob_type == PySwigObject_type())
+ || (strcmp((op)->ob_type->tp_name,"PySwigObject") == 0);
+}
+
+SWIGRUNTIME PyObject *
+PySwigObject_New(void *ptr, swig_type_info *ty, int own);
+
+SWIGRUNTIME void
+PySwigObject_dealloc(PyObject *v)
+{
+ PySwigObject *sobj = (PySwigObject *) v;
+ PyObject *next = sobj->next;
+ if (sobj->own) {
+ swig_type_info *ty = sobj->ty;
+ PySwigClientData *data = ty ? (PySwigClientData *) ty->clientdata : 0;
+ PyObject *destroy = data ? data->destroy : 0;
+ if (destroy) {
+ /* destroy is always a VARARGS method */
+ PyObject *res;
+ if (data->delargs) {
+ /* we need to create a temporal object to carry the destroy operation */
+ PyObject *tmp = PySwigObject_New(sobj->ptr, ty, 0);
+ res = SWIG_Python_CallFunctor(destroy, tmp);
+ Py_DECREF(tmp);
+ } else {
+ PyCFunction meth = PyCFunction_GET_FUNCTION(destroy);
+ PyObject *mself = PyCFunction_GET_SELF(destroy);
+ res = ((*meth)(mself, v));
+ }
+ Py_XDECREF(res);
+ } else {
+ const char *name = SWIG_TypePrettyName(ty);
+#if !defined(SWIG_PYTHON_SILENT_MEMLEAK)
+ printf("swig/python detected a memory leak of type '%s', no destructor found.\n", name);
+#endif
+ }
+ }
+ Py_XDECREF(next);
+ PyObject_DEL(v);
+}
+
+SWIGRUNTIME PyObject*
+PySwigObject_append(PyObject* v, PyObject* next)
+{
+ PySwigObject *sobj = (PySwigObject *) v;
+#ifndef METH_O
+ PyObject *tmp = 0;
+ if (!PyArg_ParseTuple(next,(char *)"O:append", &tmp)) return NULL;
+ next = tmp;
+#endif
+ if (!PySwigObject_Check(next)) {
+ return NULL;
+ }
+ sobj->next = next;
+ Py_INCREF(next);
+ return SWIG_Py_Void();
+}
+
+SWIGRUNTIME PyObject*
+#ifdef METH_NOARGS
+PySwigObject_next(PyObject* v)
+#else
+PySwigObject_next(PyObject* v, PyObject *SWIGUNUSEDPARM(args))
+#endif
+{
+ PySwigObject *sobj = (PySwigObject *) v;
+ if (sobj->next) {
+ Py_INCREF(sobj->next);
+ return sobj->next;
+ } else {
+ return SWIG_Py_Void();
+ }
+}
+
+SWIGINTERN PyObject*
+#ifdef METH_NOARGS
+PySwigObject_disown(PyObject *v)
+#else
+PySwigObject_disown(PyObject* v, PyObject *SWIGUNUSEDPARM(args))
+#endif
+{
+ PySwigObject *sobj = (PySwigObject *)v;
+ sobj->own = 0;
+ return SWIG_Py_Void();
+}
+
+SWIGINTERN PyObject*
+#ifdef METH_NOARGS
+PySwigObject_acquire(PyObject *v)
+#else
+PySwigObject_acquire(PyObject* v, PyObject *SWIGUNUSEDPARM(args))
+#endif
+{
+ PySwigObject *sobj = (PySwigObject *)v;
+ sobj->own = SWIG_POINTER_OWN;
+ return SWIG_Py_Void();
+}
+
+SWIGINTERN PyObject*
+PySwigObject_own(PyObject *v, PyObject *args)
+{
+ PyObject *val = 0;
+#if (PY_VERSION_HEX < 0x02020000)
+ if (!PyArg_ParseTuple(args,(char *)"|O:own",&val))
+#else
+ if (!PyArg_UnpackTuple(args, (char *)"own", 0, 1, &val))
+#endif
+ {
+ return NULL;
+ }
+ else
+ {
+ PySwigObject *sobj = (PySwigObject *)v;
+ PyObject *obj = PyBool_FromLong(sobj->own);
+ if (val) {
+#ifdef METH_NOARGS
+ if (PyObject_IsTrue(val)) {
+ PySwigObject_acquire(v);
+ } else {
+ PySwigObject_disown(v);
+ }
+#else
+ if (PyObject_IsTrue(val)) {
+ PySwigObject_acquire(v,args);
+ } else {
+ PySwigObject_disown(v,args);
+ }
+#endif
+ }
+ return obj;
+ }
+}
+
+#ifdef METH_O
+static PyMethodDef
+swigobject_methods[] = {
+ {(char *)"disown", (PyCFunction)PySwigObject_disown, METH_NOARGS, (char *)"releases ownership of the pointer"},
+ {(char *)"acquire", (PyCFunction)PySwigObject_acquire, METH_NOARGS, (char *)"aquires ownership of the pointer"},
+ {(char *)"own", (PyCFunction)PySwigObject_own, METH_VARARGS, (char *)"returns/sets ownership of the pointer"},
+ {(char *)"append", (PyCFunction)PySwigObject_append, METH_O, (char *)"appends another 'this' object"},
+ {(char *)"next", (PyCFunction)PySwigObject_next, METH_NOARGS, (char *)"returns the next 'this' object"},
+ {(char *)"__repr__",(PyCFunction)PySwigObject_repr, METH_NOARGS, (char *)"returns object representation"},
+ {0, 0, 0, 0}
+};
+#else
+static PyMethodDef
+swigobject_methods[] = {
+ {(char *)"disown", (PyCFunction)PySwigObject_disown, METH_VARARGS, (char *)"releases ownership of the pointer"},
+ {(char *)"acquire", (PyCFunction)PySwigObject_acquire, METH_VARARGS, (char *)"aquires ownership of the pointer"},
+ {(char *)"own", (PyCFunction)PySwigObject_own, METH_VARARGS, (char *)"returns/sets ownership of the pointer"},
+ {(char *)"append", (PyCFunction)PySwigObject_append, METH_VARARGS, (char *)"appends another 'this' object"},
+ {(char *)"next", (PyCFunction)PySwigObject_next, METH_VARARGS, (char *)"returns the next 'this' object"},
+ {(char *)"__repr__",(PyCFunction)PySwigObject_repr, METH_VARARGS, (char *)"returns object representation"},
+ {0, 0, 0, 0}
+};
+#endif
+
+#if PY_VERSION_HEX < 0x02020000
+SWIGINTERN PyObject *
+PySwigObject_getattr(PySwigObject *sobj,char *name)
+{
+ return Py_FindMethod(swigobject_methods, (PyObject *)sobj, name);
+}
+#endif
+
+SWIGRUNTIME PyTypeObject*
+_PySwigObject_type(void) {
+ static char swigobject_doc[] = "Swig object carries a C/C++ instance pointer";
+
+ static PyNumberMethods PySwigObject_as_number = {
+ (binaryfunc)0, /*nb_add*/
+ (binaryfunc)0, /*nb_subtract*/
+ (binaryfunc)0, /*nb_multiply*/
+ (binaryfunc)0, /*nb_divide*/
+ (binaryfunc)0, /*nb_remainder*/
+ (binaryfunc)0, /*nb_divmod*/
+ (ternaryfunc)0,/*nb_power*/
+ (unaryfunc)0, /*nb_negative*/
+ (unaryfunc)0, /*nb_positive*/
+ (unaryfunc)0, /*nb_absolute*/
+ (inquiry)0, /*nb_nonzero*/
+ 0, /*nb_invert*/
+ 0, /*nb_lshift*/
+ 0, /*nb_rshift*/
+ 0, /*nb_and*/
+ 0, /*nb_xor*/
+ 0, /*nb_or*/
+ (coercion)0, /*nb_coerce*/
+ (unaryfunc)PySwigObject_long, /*nb_int*/
+ (unaryfunc)PySwigObject_long, /*nb_long*/
+ (unaryfunc)0, /*nb_float*/
+ (unaryfunc)PySwigObject_oct, /*nb_oct*/
+ (unaryfunc)PySwigObject_hex, /*nb_hex*/
+#if PY_VERSION_HEX >= 0x02050000 /* 2.5.0 */
+ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 /* nb_inplace_add -> nb_index */
+#elif PY_VERSION_HEX >= 0x02020000 /* 2.2.0 */
+ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 /* nb_inplace_add -> nb_inplace_true_divide */
+#elif PY_VERSION_HEX >= 0x02000000 /* 2.0.0 */
+ 0,0,0,0,0,0,0,0,0,0,0 /* nb_inplace_add -> nb_inplace_or */
+#endif
+ };
+
+ static PyTypeObject pyswigobject_type;
+ static int type_init = 0;
+ if (!type_init) {
+ const PyTypeObject tmp
+ = {
+ PyObject_HEAD_INIT(NULL)
+ 0, /* ob_size */
+ (char *)"PySwigObject", /* tp_name */
+ sizeof(PySwigObject), /* tp_basicsize */
+ 0, /* tp_itemsize */
+ (destructor)PySwigObject_dealloc, /* tp_dealloc */
+ (printfunc)PySwigObject_print, /* tp_print */
+#if PY_VERSION_HEX < 0x02020000
+ (getattrfunc)PySwigObject_getattr, /* tp_getattr */
+#else
+ (getattrfunc)0, /* tp_getattr */
+#endif
+ (setattrfunc)0, /* tp_setattr */
+ (cmpfunc)PySwigObject_compare, /* tp_compare */
+ (reprfunc)PySwigObject_repr, /* tp_repr */
+ &PySwigObject_as_number, /* tp_as_number */
+ 0, /* tp_as_sequence */
+ 0, /* tp_as_mapping */
+ (hashfunc)0, /* tp_hash */
+ (ternaryfunc)0, /* tp_call */
+ (reprfunc)PySwigObject_str, /* tp_str */
+ PyObject_GenericGetAttr, /* tp_getattro */
+ 0, /* tp_setattro */
+ 0, /* tp_as_buffer */
+ Py_TPFLAGS_DEFAULT, /* tp_flags */
+ swigobject_doc, /* tp_doc */
+ 0, /* tp_traverse */
+ 0, /* tp_clear */
+ 0, /* tp_richcompare */
+ 0, /* tp_weaklistoffset */
+#if PY_VERSION_HEX >= 0x02020000
+ 0, /* tp_iter */
+ 0, /* tp_iternext */
+ swigobject_methods, /* tp_methods */
+ 0, /* tp_members */
+ 0, /* tp_getset */
+ 0, /* tp_base */
+ 0, /* tp_dict */
+ 0, /* tp_descr_get */
+ 0, /* tp_descr_set */
+ 0, /* tp_dictoffset */
+ 0, /* 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 */
+#endif
+#if PY_VERSION_HEX >= 0x02030000
+ 0, /* tp_del */
+#endif
+#ifdef COUNT_ALLOCS
+ 0,0,0,0 /* tp_alloc -> tp_next */
+#endif
+ };
+ pyswigobject_type = tmp;
+ pyswigobject_type.ob_type = &PyType_Type;
+ type_init = 1;
+ }
+ return &pyswigobject_type;
+}
+
+SWIGRUNTIME PyObject *
+PySwigObject_New(void *ptr, swig_type_info *ty, int own)
+{
+ PySwigObject *sobj = PyObject_NEW(PySwigObject, PySwigObject_type());
+ if (sobj) {
+ sobj->ptr = ptr;
+ sobj->ty = ty;
+ sobj->own = own;
+ sobj->next = 0;
+ }
+ return (PyObject *)sobj;
+}
+
+/* -----------------------------------------------------------------------------
+ * Implements a simple Swig Packed type, and use it instead of string
+ * ----------------------------------------------------------------------------- */
+
+typedef struct {
+ PyObject_HEAD
+ void *pack;
+ swig_type_info *ty;
+ size_t size;
+} PySwigPacked;
+
+SWIGRUNTIME int
+PySwigPacked_print(PySwigPacked *v, FILE *fp, int SWIGUNUSEDPARM(flags))
+{
+ char result[SWIG_BUFFER_SIZE];
+ fputs("<Swig Packed ", fp);
+ if (SWIG_PackDataName(result, v->pack, v->size, 0, sizeof(result))) {
+ fputs("at ", fp);
+ fputs(result, fp);
+ }
+ fputs(v->ty->name,fp);
+ fputs(">", fp);
+ return 0;
+}
+
+SWIGRUNTIME PyObject *
+PySwigPacked_repr(PySwigPacked *v)
+{
+ char result[SWIG_BUFFER_SIZE];
+ if (SWIG_PackDataName(result, v->pack, v->size, 0, sizeof(result))) {
+ return PyString_FromFormat("<Swig Packed at %s%s>", result, v->ty->name);
+ } else {
+ return PyString_FromFormat("<Swig Packed %s>", v->ty->name);
+ }
+}
+
+SWIGRUNTIME PyObject *
+PySwigPacked_str(PySwigPacked *v)
+{
+ char result[SWIG_BUFFER_SIZE];
+ if (SWIG_PackDataName(result, v->pack, v->size, 0, sizeof(result))){
+ return PyString_FromFormat("%s%s", result, v->ty->name);
+ } else {
+ return PyString_FromString(v->ty->name);
+ }
+}
+
+SWIGRUNTIME int
+PySwigPacked_compare(PySwigPacked *v, PySwigPacked *w)
+{
+ size_t i = v->size;
+ size_t j = w->size;
+ int s = (i < j) ? -1 : ((i > j) ? 1 : 0);
+ return s ? s : strncmp((char *)v->pack, (char *)w->pack, 2*v->size);
+}
+
+SWIGRUNTIME PyTypeObject* _PySwigPacked_type(void);
+
+SWIGRUNTIME PyTypeObject*
+PySwigPacked_type(void) {
+ static PyTypeObject *SWIG_STATIC_POINTER(type) = _PySwigPacked_type();
+ return type;
+}
+
+SWIGRUNTIMEINLINE int
+PySwigPacked_Check(PyObject *op) {
+ return ((op)->ob_type == _PySwigPacked_type())
+ || (strcmp((op)->ob_type->tp_name,"PySwigPacked") == 0);
+}
+
+SWIGRUNTIME void
+PySwigPacked_dealloc(PyObject *v)
+{
+ if (PySwigPacked_Check(v)) {
+ PySwigPacked *sobj = (PySwigPacked *) v;
+ free(sobj->pack);
+ }
+ PyObject_DEL(v);
+}
+
+SWIGRUNTIME PyTypeObject*
+_PySwigPacked_type(void) {
+ static char swigpacked_doc[] = "Swig object carries a C/C++ instance pointer";
+ static PyTypeObject pyswigpacked_type;
+ static int type_init = 0;
+ if (!type_init) {
+ const PyTypeObject tmp
+ = {
+ PyObject_HEAD_INIT(NULL)
+ 0, /* ob_size */
+ (char *)"PySwigPacked", /* tp_name */
+ sizeof(PySwigPacked), /* tp_basicsize */
+ 0, /* tp_itemsize */
+ (destructor)PySwigPacked_dealloc, /* tp_dealloc */
+ (printfunc)PySwigPacked_print, /* tp_print */
+ (getattrfunc)0, /* tp_getattr */
+ (setattrfunc)0, /* tp_setattr */
+ (cmpfunc)PySwigPacked_compare, /* tp_compare */
+ (reprfunc)PySwigPacked_repr, /* tp_repr */
+ 0, /* tp_as_number */
+ 0, /* tp_as_sequence */
+ 0, /* tp_as_mapping */
+ (hashfunc)0, /* tp_hash */
+ (ternaryfunc)0, /* tp_call */
+ (reprfunc)PySwigPacked_str, /* tp_str */
+ PyObject_GenericGetAttr, /* tp_getattro */
+ 0, /* tp_setattro */
+ 0, /* tp_as_buffer */
+ Py_TPFLAGS_DEFAULT, /* tp_flags */
+ swigpacked_doc, /* tp_doc */
+ 0, /* tp_traverse */
+ 0, /* tp_clear */
+ 0, /* tp_richcompare */
+ 0, /* tp_weaklistoffset */
+#if PY_VERSION_HEX >= 0x02020000
+ 0, /* tp_iter */
+ 0, /* tp_iternext */
+ 0, /* tp_methods */
+ 0, /* tp_members */
+ 0, /* tp_getset */
+ 0, /* tp_base */
+ 0, /* tp_dict */
+ 0, /* tp_descr_get */
+ 0, /* tp_descr_set */
+ 0, /* tp_dictoffset */
+ 0, /* 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 */
+#endif
+#if PY_VERSION_HEX >= 0x02030000
+ 0, /* tp_del */
+#endif
+#ifdef COUNT_ALLOCS
+ 0,0,0,0 /* tp_alloc -> tp_next */
+#endif
+ };
+ pyswigpacked_type = tmp;
+ pyswigpacked_type.ob_type = &PyType_Type;
+ type_init = 1;
+ }
+ return &pyswigpacked_type;
+}
+
+SWIGRUNTIME PyObject *
+PySwigPacked_New(void *ptr, size_t size, swig_type_info *ty)
+{
+ PySwigPacked *sobj = PyObject_NEW(PySwigPacked, PySwigPacked_type());
+ if (sobj) {
+ void *pack = malloc(size);
+ if (pack) {
+ memcpy(pack, ptr, size);
+ sobj->pack = pack;
+ sobj->ty = ty;
+ sobj->size = size;
+ } else {
+ PyObject_DEL((PyObject *) sobj);
+ sobj = 0;
+ }
+ }
+ return (PyObject *) sobj;
+}
+
+SWIGRUNTIME swig_type_info *
+PySwigPacked_UnpackData(PyObject *obj, void *ptr, size_t size)
+{
+ if (PySwigPacked_Check(obj)) {
+ PySwigPacked *sobj = (PySwigPacked *)obj;
+ if (sobj->size != size) return 0;
+ memcpy(ptr, sobj->pack, size);
+ return sobj->ty;
+ } else {
+ return 0;
+ }
+}
+
+/* -----------------------------------------------------------------------------
+ * pointers/data manipulation
+ * ----------------------------------------------------------------------------- */
+
+SWIGRUNTIMEINLINE PyObject *
+_SWIG_This(void)
+{
+ return PyString_FromString("this");
+}
+
+SWIGRUNTIME PyObject *
+SWIG_This(void)
+{
+ static PyObject *SWIG_STATIC_POINTER(swig_this) = _SWIG_This();
+ return swig_this;
+}
+
+/* #define SWIG_PYTHON_SLOW_GETSET_THIS */
+
+SWIGRUNTIME PySwigObject *
+SWIG_Python_GetSwigThis(PyObject *pyobj)
+{
+ if (PySwigObject_Check(pyobj)) {
+ return (PySwigObject *) pyobj;
+ } else {
+ PyObject *obj = 0;
+#if (!defined(SWIG_PYTHON_SLOW_GETSET_THIS) && (PY_VERSION_HEX >= 0x02030000))
+ if (PyInstance_Check(pyobj)) {
+ obj = _PyInstance_Lookup(pyobj, SWIG_This());
+ } else {
+ PyObject **dictptr = _PyObject_GetDictPtr(pyobj);
+ if (dictptr != NULL) {
+ PyObject *dict = *dictptr;
+ obj = dict ? PyDict_GetItem(dict, SWIG_This()) : 0;
+ } else {
+#ifdef PyWeakref_CheckProxy
+ if (PyWeakref_CheckProxy(pyobj)) {
+ PyObject *wobj = PyWeakref_GET_OBJECT(pyobj);
+ return wobj ? SWIG_Python_GetSwigThis(wobj) : 0;
+ }
+#endif
+ obj = PyObject_GetAttr(pyobj,SWIG_This());
+ if (obj) {
+ Py_DECREF(obj);
+ } else {
+ if (PyErr_Occurred()) PyErr_Clear();
+ return 0;
+ }
+ }
+ }
+#else
+ obj = PyObject_GetAttr(pyobj,SWIG_This());
+ if (obj) {
+ Py_DECREF(obj);
+ } else {
+ if (PyErr_Occurred()) PyErr_Clear();
+ return 0;
+ }
+#endif
+ if (obj && !PySwigObject_Check(obj)) {
+ /* a PyObject is called 'this', try to get the 'real this'
+ PySwigObject from it */
+ return SWIG_Python_GetSwigThis(obj);
+ }
+ return (PySwigObject *)obj;
+ }
+}
+
+/* Acquire a pointer value */
+
+SWIGRUNTIME int
+SWIG_Python_AcquirePtr(PyObject *obj, int own) {
+ if (own) {
+ PySwigObject *sobj = SWIG_Python_GetSwigThis(obj);
+ if (sobj) {
+ int oldown = sobj->own;
+ sobj->own = own;
+ return oldown;
+ }
+ }
+ return 0;
+}
+
+/* Convert a pointer value */
+
+SWIGRUNTIME int
+SWIG_Python_ConvertPtrAndOwn(PyObject *obj, void **ptr, swig_type_info *ty, int flags, int *own) {
+ if (!obj) return SWIG_ERROR;
+ if (obj == Py_None) {
+ if (ptr) *ptr = 0;
+ return SWIG_OK;
+ } else {
+ PySwigObject *sobj = SWIG_Python_GetSwigThis(obj);
+ while (sobj) {
+ void *vptr = sobj->ptr;
+ if (ty) {
+ swig_type_info *to = sobj->ty;
+ if (to == ty) {
+ /* no type cast needed */
+ if (ptr) *ptr = vptr;
+ break;
+ } else {
+ swig_cast_info *tc = SWIG_TypeCheck(to->name,ty);
+ if (!tc) {
+ sobj = (PySwigObject *)sobj->next;
+ } else {
+ if (ptr) *ptr = SWIG_TypeCast(tc,vptr);
+ break;
+ }
+ }
+ } else {
+ if (ptr) *ptr = vptr;
+ break;
+ }
+ }
+ if (sobj) {
+ if (own) *own = sobj->own;
+ if (flags & SWIG_POINTER_DISOWN) {
+ sobj->own = 0;
+ }
+ return SWIG_OK;
+ } else {
+ int res = SWIG_ERROR;
+ if (flags & SWIG_POINTER_IMPLICIT_CONV) {
+ PySwigClientData *data = ty ? (PySwigClientData *) ty->clientdata : 0;
+ if (data && !data->implicitconv) {
+ PyObject *klass = data->klass;
+ if (klass) {
+ PyObject *impconv;
+ data->implicitconv = 1; /* avoid recursion and call 'explicit' constructors*/
+ impconv = SWIG_Python_CallFunctor(klass, obj);
+ data->implicitconv = 0;
+ if (PyErr_Occurred()) {
+ PyErr_Clear();
+ impconv = 0;
+ }
+ if (impconv) {
+ PySwigObject *iobj = SWIG_Python_GetSwigThis(impconv);
+ if (iobj) {
+ void *vptr;
+ res = SWIG_Python_ConvertPtrAndOwn((PyObject*)iobj, &vptr, ty, 0, 0);
+ if (SWIG_IsOK(res)) {
+ if (ptr) {
+ *ptr = vptr;
+ /* transfer the ownership to 'ptr' */
+ iobj->own = 0;
+ res = SWIG_AddCast(res);
+ res = SWIG_AddNewMask(res);
+ } else {
+ res = SWIG_AddCast(res);
+ }
+ }
+ }
+ Py_DECREF(impconv);
+ }
+ }
+ }
+ }
+ return res;
+ }
+ }
+}
+
+/* Convert a function ptr value */
+
+SWIGRUNTIME int
+SWIG_Python_ConvertFunctionPtr(PyObject *obj, void **ptr, swig_type_info *ty) {
+ if (!PyCFunction_Check(obj)) {
+ return SWIG_ConvertPtr(obj, ptr, ty, 0);
+ } else {
+ void *vptr = 0;
+
+ /* here we get the method pointer for callbacks */
+ const char *doc = (((PyCFunctionObject *)obj) -> m_ml -> ml_doc);
+ const char *desc = doc ? strstr(doc, "swig_ptr: ") : 0;
+ if (desc) {
+ desc = ty ? SWIG_UnpackVoidPtr(desc + 10, &vptr, ty->name) : 0;
+ if (!desc) return SWIG_ERROR;
+ }
+ if (ty) {
+ swig_cast_info *tc = SWIG_TypeCheck(desc,ty);
+ if (!tc) return SWIG_ERROR;
+ *ptr = SWIG_TypeCast(tc,vptr);
+ } else {
+ *ptr = vptr;
+ }
+ return SWIG_OK;
+ }
+}
+
+/* Convert a packed value value */
+
+SWIGRUNTIME int
+SWIG_Python_ConvertPacked(PyObject *obj, void *ptr, size_t sz, swig_type_info *ty) {
+ swig_type_info *to = PySwigPacked_UnpackData(obj, ptr, sz);
+ if (!to) return SWIG_ERROR;
+ if (ty) {
+ if (to != ty) {
+ /* check type cast? */
+ swig_cast_info *tc = SWIG_TypeCheck(to->name,ty);
+ if (!tc) return SWIG_ERROR;
+ }
+ }
+ return SWIG_OK;
+}
+
+/* -----------------------------------------------------------------------------
+ * Create a new pointer object
+ * ----------------------------------------------------------------------------- */
+
+/*
+ Create a new instance object, whitout calling __init__, and set the
+ 'this' attribute.
+*/
+
+SWIGRUNTIME PyObject*
+SWIG_Python_NewShadowInstance(PySwigClientData *data, PyObject *swig_this)
+{
+#if (PY_VERSION_HEX >= 0x02020000)
+ PyObject *inst = 0;
+ PyObject *newraw = data->newraw;
+ if (newraw) {
+ inst = PyObject_Call(newraw, data->newargs, NULL);
+ if (inst) {
+#if !defined(SWIG_PYTHON_SLOW_GETSET_THIS)
+ PyObject **dictptr = _PyObject_GetDictPtr(inst);
+ if (dictptr != NULL) {
+ PyObject *dict = *dictptr;
+ if (dict == NULL) {
+ dict = PyDict_New();
+ *dictptr = dict;
+ PyDict_SetItem(dict, SWIG_This(), swig_this);
+ }
+ }
+#else
+ PyObject *key = SWIG_This();
+ PyObject_SetAttr(inst, key, swig_this);
+#endif
+ }
+ } else {
+ PyObject *dict = PyDict_New();
+ PyDict_SetItem(dict, SWIG_This(), swig_this);
+ inst = PyInstance_NewRaw(data->newargs, dict);
+ Py_DECREF(dict);
+ }
+ return inst;
+#else
+#if (PY_VERSION_HEX >= 0x02010000)
+ PyObject *inst;
+ PyObject *dict = PyDict_New();
+ PyDict_SetItem(dict, SWIG_This(), swig_this);
+ inst = PyInstance_NewRaw(data->newargs, dict);
+ Py_DECREF(dict);
+ return (PyObject *) inst;
+#else
+ PyInstanceObject *inst = PyObject_NEW(PyInstanceObject, &PyInstance_Type);
+ if (inst == NULL) {
+ return NULL;
+ }
+ inst->in_class = (PyClassObject *)data->newargs;
+ Py_INCREF(inst->in_class);
+ inst->in_dict = PyDict_New();
+ if (inst->in_dict == NULL) {
+ Py_DECREF(inst);
+ return NULL;
+ }
+#ifdef Py_TPFLAGS_HAVE_WEAKREFS
+ inst->in_weakreflist = NULL;
+#endif
+#ifdef Py_TPFLAGS_GC
+ PyObject_GC_Init(inst);
+#endif
+ PyDict_SetItem(inst->in_dict, SWIG_This(), swig_this);
+ return (PyObject *) inst;
+#endif
+#endif
+}
+
+SWIGRUNTIME void
+SWIG_Python_SetSwigThis(PyObject *inst, PyObject *swig_this)
+{
+ PyObject *dict;
+#if (PY_VERSION_HEX >= 0x02020000) && !defined(SWIG_PYTHON_SLOW_GETSET_THIS)
+ PyObject **dictptr = _PyObject_GetDictPtr(inst);
+ if (dictptr != NULL) {
+ dict = *dictptr;
+ if (dict == NULL) {
+ dict = PyDict_New();
+ *dictptr = dict;
+ }
+ PyDict_SetItem(dict, SWIG_This(), swig_this);
+ return;
+ }
+#endif
+ dict = PyObject_GetAttrString(inst, (char*)"__dict__");
+ PyDict_SetItem(dict, SWIG_This(), swig_this);
+ Py_DECREF(dict);
+}
+
+
+SWIGINTERN PyObject *
+SWIG_Python_InitShadowInstance(PyObject *args) {
+ PyObject *obj[2];
+ if (!SWIG_Python_UnpackTuple(args,(char*)"swiginit", 2, 2, obj)) {
+ return NULL;
+ } else {
+ PySwigObject *sthis = SWIG_Python_GetSwigThis(obj[0]);
+ if (sthis) {
+ PySwigObject_append((PyObject*) sthis, obj[1]);
+ } else {
+ SWIG_Python_SetSwigThis(obj[0], obj[1]);
+ }
+ return SWIG_Py_Void();
+ }
+}
+
+/* Create a new pointer object */
+
+SWIGRUNTIME PyObject *
+SWIG_Python_NewPointerObj(void *ptr, swig_type_info *type, int flags) {
+ if (!ptr) {
+ return SWIG_Py_Void();
+ } else {
+ int own = (flags & SWIG_POINTER_OWN) ? SWIG_POINTER_OWN : 0;
+ PyObject *robj = PySwigObject_New(ptr, type, own);
+ PySwigClientData *clientdata = type ? (PySwigClientData *)(type->clientdata) : 0;
+ if (clientdata && !(flags & SWIG_POINTER_NOSHADOW)) {
+ PyObject *inst = SWIG_Python_NewShadowInstance(clientdata, robj);
+ if (inst) {
+ Py_DECREF(robj);
+ robj = inst;
+ }
+ }
+ return robj;
+ }
+}
+
+/* Create a new packed object */
+
+SWIGRUNTIMEINLINE PyObject *
+SWIG_Python_NewPackedObj(void *ptr, size_t sz, swig_type_info *type) {
+ return ptr ? PySwigPacked_New((void *) ptr, sz, type) : SWIG_Py_Void();
+}
+
+/* -----------------------------------------------------------------------------*
+ * Get type list
+ * -----------------------------------------------------------------------------*/
+
+#ifdef SWIG_LINK_RUNTIME
+void *SWIG_ReturnGlobalTypeList(void *);
+#endif
+
+SWIGRUNTIME swig_module_info *
+SWIG_Python_GetModule(void) {
+ static void *type_pointer = (void *)0;
+ /* first check if module already created */
+ if (!type_pointer) {
+#ifdef SWIG_LINK_RUNTIME
+ type_pointer = SWIG_ReturnGlobalTypeList((void *)0);
+#else
+ type_pointer = PyCObject_Import((char*)"swig_runtime_data" SWIG_RUNTIME_VERSION,
+ (char*)"type_pointer" SWIG_TYPE_TABLE_NAME);
+ if (PyErr_Occurred()) {
+ PyErr_Clear();
+ type_pointer = (void *)0;
+ }
+#endif
+ }
+ return (swig_module_info *) type_pointer;
+}
+
+#if PY_MAJOR_VERSION < 2
+/* PyModule_AddObject function was introduced in Python 2.0. The following function
+ is copied out of Python/modsupport.c in python version 2.3.4 */
+SWIGINTERN int
+PyModule_AddObject(PyObject *m, char *name, PyObject *o)
+{
+ PyObject *dict;
+ if (!PyModule_Check(m)) {
+ PyErr_SetString(PyExc_TypeError,
+ "PyModule_AddObject() needs module as first arg");
+ return SWIG_ERROR;
+ }
+ if (!o) {
+ PyErr_SetString(PyExc_TypeError,
+ "PyModule_AddObject() needs non-NULL value");
+ return SWIG_ERROR;
+ }
+
+ dict = PyModule_GetDict(m);
+ if (dict == NULL) {
+ /* Internal error -- modules must have a dict! */
+ PyErr_Format(PyExc_SystemError, "module '%s' has no __dict__",
+ PyModule_GetName(m));
+ return SWIG_ERROR;
+ }
+ if (PyDict_SetItemString(dict, name, o))
+ return SWIG_ERROR;
+ Py_DECREF(o);
+ return SWIG_OK;
+}
+#endif
+
+SWIGRUNTIME void
+SWIG_Python_DestroyModule(void *vptr)
+{
+ swig_module_info *swig_module = (swig_module_info *) vptr;
+ swig_type_info **types = swig_module->types;
+ size_t i;
+ for (i =0; i < swig_module->size; ++i) {
+ swig_type_info *ty = types[i];
+ if (ty->owndata) {
+ PySwigClientData *data = (PySwigClientData *) ty->clientdata;
+ if (data) PySwigClientData_Del(data);
+ }
+ }
+ Py_DECREF(SWIG_This());
+}
+
+SWIGRUNTIME void
+SWIG_Python_SetModule(swig_module_info *swig_module) {
+ static PyMethodDef swig_empty_runtime_method_table[] = { {NULL, NULL, 0, NULL} };/* Sentinel */
+
+ PyObject *module = Py_InitModule((char*)"swig_runtime_data" SWIG_RUNTIME_VERSION,
+ swig_empty_runtime_method_table);
+ PyObject *pointer = PyCObject_FromVoidPtr((void *) swig_module, SWIG_Python_DestroyModule);
+ if (pointer && module) {
+ PyModule_AddObject(module, (char*)"type_pointer" SWIG_TYPE_TABLE_NAME, pointer);
+ } else {
+ Py_XDECREF(pointer);
+ }
+}
+
+/* The python cached type query */
+SWIGRUNTIME PyObject *
+SWIG_Python_TypeCache(void) {
+ static PyObject *SWIG_STATIC_POINTER(cache) = PyDict_New();
+ return cache;
+}
+
+SWIGRUNTIME swig_type_info *
+SWIG_Python_TypeQuery(const char *type)
+{
+ PyObject *cache = SWIG_Python_TypeCache();
+ PyObject *key = PyString_FromString(type);
+ PyObject *obj = PyDict_GetItem(cache, key);
+ swig_type_info *descriptor;
+ if (obj) {
+ descriptor = (swig_type_info *) PyCObject_AsVoidPtr(obj);
+ } else {
+ swig_module_info *swig_module = SWIG_Python_GetModule();
+ descriptor = SWIG_TypeQueryModule(swig_module, swig_module, type);
+ if (descriptor) {
+ obj = PyCObject_FromVoidPtr(descriptor, NULL);
+ PyDict_SetItem(cache, key, obj);
+ Py_DECREF(obj);
+ }
+ }
+ Py_DECREF(key);
+ return descriptor;
+}
+
+/*
+ For backward compatibility only
+*/
+#define SWIG_POINTER_EXCEPTION 0
+#define SWIG_arg_fail(arg) SWIG_Python_ArgFail(arg)
+#define SWIG_MustGetPtr(p, type, argnum, flags) SWIG_Python_MustGetPtr(p, type, argnum, flags)
+
+SWIGRUNTIME int
+SWIG_Python_AddErrMesg(const char* mesg, int infront)
+{
+ if (PyErr_Occurred()) {
+ PyObject *type = 0;
+ PyObject *value = 0;
+ PyObject *traceback = 0;
+ PyErr_Fetch(&type, &value, &traceback);
+ if (value) {
+ PyObject *old_str = PyObject_Str(value);
+ Py_XINCREF(type);
+ PyErr_Clear();
+ if (infront) {
+ PyErr_Format(type, "%s %s", mesg, PyString_AsString(old_str));
+ } else {
+ PyErr_Format(type, "%s %s", PyString_AsString(old_str), mesg);
+ }
+ Py_DECREF(old_str);
+ }
+ return 1;
+ } else {
+ return 0;
+ }
+}
+
+SWIGRUNTIME int
+SWIG_Python_ArgFail(int argnum)
+{
+ if (PyErr_Occurred()) {
+ /* add information about failing argument */
+ char mesg[256];
+ PyOS_snprintf(mesg, sizeof(mesg), "argument number %d:", argnum);
+ return SWIG_Python_AddErrMesg(mesg, 1);
+ } else {
+ return 0;
+ }
+}
+
+SWIGRUNTIMEINLINE const char *
+PySwigObject_GetDesc(PyObject *self)
+{
+ PySwigObject *v = (PySwigObject *)self;
+ swig_type_info *ty = v ? v->ty : 0;
+ return ty ? ty->str : (char*)"";
+}
+
+SWIGRUNTIME void
+SWIG_Python_TypeError(const char *type, PyObject *obj)
+{
+ if (type) {
+#if defined(SWIG_COBJECT_TYPES)
+ if (obj && PySwigObject_Check(obj)) {
+ const char *otype = (const char *) PySwigObject_GetDesc(obj);
+ if (otype) {
+ PyErr_Format(PyExc_TypeError, "a '%s' is expected, 'PySwigObject(%s)' is received",
+ type, otype);
+ return;
+ }
+ } else
+#endif
+ {
+ const char *otype = (obj ? obj->ob_type->tp_name : 0);
+ if (otype) {
+ PyObject *str = PyObject_Str(obj);
+ const char *cstr = str ? PyString_AsString(str) : 0;
+ if (cstr) {
+ PyErr_Format(PyExc_TypeError, "a '%s' is expected, '%s(%s)' is received",
+ type, otype, cstr);
+ } else {
+ PyErr_Format(PyExc_TypeError, "a '%s' is expected, '%s' is received",
+ type, otype);
+ }
+ Py_XDECREF(str);
+ return;
+ }
+ }
+ PyErr_Format(PyExc_TypeError, "a '%s' is expected", type);
+ } else {
+ PyErr_Format(PyExc_TypeError, "unexpected type is received");
+ }
+}
+
+
+/* Convert a pointer value, signal an exception on a type mismatch */
+SWIGRUNTIME void *
+SWIG_Python_MustGetPtr(PyObject *obj, swig_type_info *ty, int argnum, int flags) {
+ void *result;
+ if (SWIG_Python_ConvertPtr(obj, &result, ty, flags) == -1) {
+ PyErr_Clear();
+ if (flags & SWIG_POINTER_EXCEPTION) {
+ SWIG_Python_TypeError(SWIG_TypePrettyName(ty), obj);
+ SWIG_Python_ArgFail(argnum);
+ }
+ }
+ return result;
+}
+
+
+#ifdef __cplusplus
+#if 0
+{ /* cc-mode */
+#endif
+}
+#endif
+
+
+
+#define SWIG_exception_fail(code, msg) do { SWIG_Error(code, msg); SWIG_fail; } while(0)
+
+#define SWIG_contract_assert(expr, msg) if (!(expr)) { SWIG_Error(SWIG_RuntimeError, msg); SWIG_fail; } else
+
+
+
+/* -------- TYPES TABLE (BEGIN) -------- */
+
+#define SWIGTYPE_p_ContractionCallback swig_types[0]
+#define SWIGTYPE_p_MxAspStore swig_types[1]
+#define SWIGTYPE_p_MxEdgeQSlim swig_types[2]
+#define SWIGTYPE_p_MxPairContraction swig_types[3]
+#define SWIGTYPE_p_MxSMFReader swig_types[4]
+#define SWIGTYPE_p_MxSMFWriter swig_types[5]
+#define SWIGTYPE_p_MxStdModel swig_types[6]
+#define SWIGTYPE_p_QSlimLog swig_types[7]
+#define SWIGTYPE_p_QSlimModel swig_types[8]
+#define SWIGTYPE_p_a_2__float swig_types[9]
+#define SWIGTYPE_p_a_3__float swig_types[10]
+#define SWIGTYPE_p_a_3__int swig_types[11]
+#define SWIGTYPE_p_char swig_types[12]
+#define SWIGTYPE_p_f_p_char_int_a___p_char_r_MxStdModel__bool swig_types[13]
+#define SWIGTYPE_p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void swig_types[14]
+#define SWIGTYPE_p_int swig_types[15]
+#define SWIGTYPE_p_istream swig_types[16]
+#define SWIGTYPE_p_ostream swig_types[17]
+#define SWIGTYPE_p_read_cmd swig_types[18]
+#define SWIGTYPE_p_unsigned_int swig_types[19]
+static swig_type_info *swig_types[21];
+static swig_module_info swig_module = {swig_types, 20, 0, 0, 0, 0};
+#define SWIG_TypeQuery(name) SWIG_TypeQueryModule(&swig_module, &swig_module, name)
+#define SWIG_MangledTypeQuery(name) SWIG_MangledTypeQueryModule(&swig_module, &swig_module, name)
+
+/* -------- TYPES TABLE (END) -------- */
+
+#if (PY_VERSION_HEX <= 0x02000000)
+# if !defined(SWIG_PYTHON_CLASSIC)
+# error "This python version requires swig to be run with the '-classic' option"
+# endif
+#endif
+
+/*-----------------------------------------------
+ @(target):= _qslimlib.so
+ ------------------------------------------------*/
+#define SWIG_init init_qslimlib
+
+#define SWIG_name "_qslimlib"
+
+#define SWIGVERSION 0x010333
+#define SWIG_VERSION SWIGVERSION
+
+
+#define SWIG_as_voidptr(a) const_cast< void * >(static_cast< const void * >(a))
+#define SWIG_as_voidptrptr(a) ((void)SWIG_as_voidptr(*a),reinterpret_cast< void** >(a))
+
+
+#include <stdexcept>
+
+
+namespace swig {
+ class PyObject_ptr {
+ protected:
+ PyObject *_obj;
+
+ public:
+ PyObject_ptr() :_obj(0)
+ {
+ }
+
+ PyObject_ptr(const PyObject_ptr& item) : _obj(item._obj)
+ {
+ Py_XINCREF(_obj);
+ }
+
+ PyObject_ptr(PyObject *obj, bool initial_ref = true) :_obj(obj)
+ {
+ if (initial_ref) Py_XINCREF(_obj);
+ }
+
+ PyObject_ptr & operator=(const PyObject_ptr& item)
+ {
+ Py_XINCREF(item._obj);
+ Py_XDECREF(_obj);
+ _obj = item._obj;
+ return *this;
+ }
+
+ ~PyObject_ptr()
+ {
+ Py_XDECREF(_obj);
+ }
+
+ operator PyObject *() const
+ {
+ return _obj;
+ }
+
+ PyObject *operator->() const
+ {
+ return _obj;
+ }
+ };
+}
+
+
+namespace swig {
+ struct PyObject_var : PyObject_ptr {
+ PyObject_var(PyObject* obj = 0) : PyObject_ptr(obj, false) { }
+
+ PyObject_var & operator = (PyObject* obj)
+ {
+ Py_XDECREF(_obj);
+ _obj = obj;
+ return *this;
+ }
+ };
+}
+
+
+#include <stdmix.h>
+#include <mixio.h>
+#include <MxSMF.h>
+//#include <MxAsp.h>
+#include <MxPropSlim.h>
+#include <MxQSlim.h>
+
+int placement_policy = MX_PLACE_OPTIMAL;
+double boundary_weight = 1000.0;
+int weighting_policy = MX_WEIGHT_AREA;
+double compactness_ratio = 0.0;
+double meshing_penalty = 1.0;
+bool will_join_only = false;
+typedef MxDynBlock<MxPairContraction> QSlimLog;
+
+ class QSlimModel : public ContractionCallback
+{
+
+public:
+ QSlimLog *history;
+ MxSMFReader smfReader;
+ MxStdModel *model;
+ MxEdgeQSlim *slim;
+ //MxPropSlim *slim;
+ QSlimModel( float verts[1][3], int *len1,
+ int *faces , int len2[2], bool bindtoface = true,
+ bool correctverts = true,
+ float norms[1][3] = NULL, int *len3 = NULL,
+ float colors[1][3] = NULL, int *len4 = NULL,
+ float texcoords[1][2] = NULL, int *len5 = NULL)
+ {
+ model = new MxStdModel(8,16);
+ history = new QSlimLog(100);
+ if (norms)
+ {
+ if (len3[0] == len2[0])
+ bind_normals(1);
+ else
+ if (len3[0] == len1[0])
+ bind_normals(0);
+ }
+ if (colors)
+ bind_colors(bindtoface);
+ if (texcoords)
+ bind_texcoord(0);
+ smfReader.createModel(verts, len1, faces , len2, correctverts,
+ norms, len3, colors, len4, texcoords, len5, model);
+ //slim = new MxPropSlim(model);
+ slim = new MxEdgeQSlim(*model);
+ slim_init();
+ slim->cbptr = this;
+
+ }
+
+ ~QSlimModel()
+ {
+ clean_history();
+ delete slim;
+ delete model;
+ }
+
+ void clean_history()
+ {
+ delete history;
+ history = NULL;
+ }
+
+ void contraction_callback(const MxPairContraction& conx, float cost)
+ {
+ history->add(conx);
+ }
+
+ void slim_init()
+ {
+ slim->placement_policy = placement_policy;
+ slim->boundary_weight = boundary_weight;
+ slim->weighting_policy = weighting_policy;
+ slim->compactness_ratio = compactness_ratio;
+ slim->meshing_penalty = meshing_penalty;
+ slim->will_join_only = will_join_only;
+
+ slim->initialize();
+ }
+ void bind_normals (bool face)
+ {
+ if (face)
+ model->normal_binding(model->parse_binding("face"));
+ else
+ model->normal_binding(model->parse_binding("vertex"));
+ }
+ void bind_colors (bool face)
+ {
+ if (face)
+ model->color_binding(model->parse_binding("face"));
+ else
+ model->color_binding(model->parse_binding("vertex"));
+ }
+ void bind_texcoord (bool face)
+ {
+ if (face)
+ model->texcoord_binding(model->parse_binding("face"));
+ else
+ model->texcoord_binding(model->parse_binding("vertex"));
+ }
+
+ int get_color_binding() {return model->color_binding();}
+ int get_texcoord_binding() {return model->texcoord_binding();}
+ int get_normal_binding() {return model->normal_binding();}
+ int get_vert_count() {return model->vert_count();}
+ int get_face_count() {return model->face_count();}
+ int num_valid_faces() {return slim->valid_faces;}
+ int num_valid_verts() {return slim->valid_verts;}
+ void slim_to_target(uint target)
+ {
+ unsigned int status;
+ if(target > model->face_count()) target = model->face_count();
+
+ if( target < slim->valid_faces )
+ {
+ status = slim->decimate(target);
+ if (!status)
+ cerr << "WARNING: decimate to " << target << " faces failed" << endl;
+ }
+ else if( target > slim->valid_faces && history )
+ {
+ while( slim->valid_faces < target && history->length() > 0 )
+ {
+ MxPairContraction& conx = history->drop();
+ slim->apply_expansion(conx);
+ }
+ }
+ }
+
+
+ // This function was copied from tools/qslim/main.xx
+ void cleanup_for_output()
+
+ {
+ // First, mark stray vertices for removal
+ //
+ for(uint i=0; i<model->vert_count(); i++)
+ if( model->vertex_is_valid(i) && model->neighbors(i).length() == 0 )
+ model->vertex_mark_invalid(i);
+
+ // Compact vertex array so only valid vertices remain
+ model->compact_vertices();
+ }
+
+ void outmodel(float outverts[1][3], int outfaces[1][3],
+ float outnorms[1][3] = NULL, float outcolors[1][3] = NULL,
+ float outtexcoords[1][2] = NULL)
+ {
+ unsigned int v, f, i, j = 0;
+ for(v=0; v<model->vert_count(); v++)
+ {
+ // We must output all vertices since numbering is implicit
+ MxVertex &vert = model->vertex(v);
+ //cout << model->vertex(v) << endl;
+ for (i = 0; i<3; i++)
+ outverts[v][i] = vert(i);
+ if( model->normal_binding()== MX_PERVERTEX && outnorms )
+ {
+ MxNormal & norm = model->normal(v);
+ outnorms[v][0] = norm[0];
+ outnorms[v][1] = norm[1];
+ outnorms[v][2] = norm[2];
+ }
+ if ( model->color_binding()== MX_PERVERTEX && outcolors )
+ {
+ MxColor &col = model->color(v);
+ outcolors[v][0] = col.R();
+ outcolors[v][1] = col.G();
+ outcolors[v][2] = col.B();
+ }
+ if( model->texcoord_binding() == MX_PERVERTEX && outtexcoords )
+ {
+ MxTexCoord& tex = model->texcoord(v);
+ outtexcoords[v][0] = tex[0];
+ outtexcoords[v][1] = tex[1];
+ }
+ }
+
+ for(f=0; f<model->face_count(); f++)
+ {
+ if( model->face_is_valid(f) )
+ {
+ //cout << model->face(f) << endl;
+ //MxFace &fs = model->face(f);
+ for(i = 0; i<3; i++)
+ //outfaces[j][i] = fs[i];
+ outfaces[j][i] = model->face(f)(i);
+ if( model->normal_binding()== MX_PERFACE && outnorms )
+ {
+ MxNormal & norm = model->normal(f);
+ outnorms[j][0] = norm[0];
+ outnorms[j][1] = norm[1];
+ outnorms[j][2] = norm[2];
+ }
+ if ( model->color_binding()== MX_PERFACE && outcolors )
+ {
+ MxColor &col = model->color(f);
+ outcolors[j][0] = col.R();
+ outcolors[j][1] = col.B();
+ outcolors[j][2] = col.G();
+ }
+ if( model->texcoord_binding() == MX_PERFACE && outtexcoords )
+ {
+ MxTexCoord& tex = model->texcoord(f);
+ outtexcoords[j][0] = tex[0];
+ outtexcoords[j][1] = tex[1];
+ }
+ j++;
+ }
+ }
+ }
+
+
+void writeSMF(const char* filename)
+ {
+ MxSMFWriter writer;
+ static ostream *output_stream;
+ if( filename )
+ output_stream = new ofstream(filename);
+ else
+ output_stream = &cout;
+ writer.write(*output_stream, *model);
+ }
+};
+
+// this function is used to correct the numbering of vertices
+// when vertices are numbered starting from 0.
+void init_slim(MxSMFReader *smf)
+{
+ MxAspVar *avar = smf->asp_store()->lookup("vertex_correction");
+ if( avar )
+ {
+ avar->read_from("+1", 0);
+ }
+}
+
+
+
+// This function was copied from tools/qslim/main.xx
+void cleanup_for_output(MxStdModel *model)
+
+{
+ // First, mark stray vertices for removal
+ //
+ for(uint i=0; i<model->vert_count(); i++)
+ if( model->vertex_is_valid(i) && model->neighbors(i).length() == 0 )
+ model->vertex_mark_invalid(i);
+
+ // Compact vertex array so only valid vertices remain
+ model->compact_vertices();
+}
+
+
+
+
+
+#include "numpy/arrayobject.h"
+static PyArrayObject *contiguous_typed_array(PyObject *obj, int typecode,
+ int expectnd, int *expectdims)
+{
+ PyArrayObject *arr;
+ int i, numitems, itemsize;
+ char buf[255];
+
+ /* if the shape and type are OK, this function increments the reference
+ count and arr points to obj */
+ if((arr = (PyArrayObject *)PyArray_ContiguousFromObject(obj,
+ typecode, 0,
+ 10)) == NULL)
+ {
+ sprintf(buf,"Failed to make a contiguous array of type %d\n", typecode);
+ PyErr_SetString(PyExc_ValueError, buf);
+ return NULL;
+ }
+
+ if(expectnd>0)
+ {
+ if(arr->nd > expectnd + 1 || arr->nd < expectnd)
+ {
+ Py_DECREF((PyObject *)arr);
+ PyErr_SetString(PyExc_ValueError,
+ "Array has wrong number of dimensions");
+ return NULL;
+ }
+ if(arr->nd == expectnd + 1)
+ {
+ if(arr->dimensions[arr->nd - 1] != 1)
+ {
+ Py_DECREF((PyObject *)arr);
+ PyErr_SetString(PyExc_ValueError,
+ "Array has wrong number of dimensions");
+ return NULL;
+ }
+ }
+ if(expectdims)
+ {
+ for(i = 0; i < expectnd; i++)
+ if(expectdims[i]>0)
+ if(expectdims[i] != arr->dimensions[i])
+ {
+ Py_DECREF((PyObject *)arr);
+ sprintf(buf,"The extent of dimension %d is %d while %d was expected\n",
+ i, arr->dimensions[i], expectdims[i]);
+ PyErr_SetString(PyExc_ValueError, buf);
+ return NULL;
+ }
+
+ }
+ }
+
+ return arr;
+}
+
+
+
+static PyObject* l_output_helper2(PyObject* target, PyObject* o) {
+ PyObject* o2;
+ PyObject* o3;
+ if (!target) {
+ target = o;
+ } else if (target == Py_None) {
+ Py_DECREF(Py_None);
+ target = o;
+ } else {
+ if (!PyList_Check(target)) {
+ o2 = target;
+ target = PyList_New(0);
+ PyList_Append(target, o2);
+ Py_XDECREF(o2);
+ }
+ PyList_Append(target,o);
+ Py_XDECREF(o);
+ }
+ return target;
+}
+
+
+SWIGINTERN swig_type_info*
+SWIG_pchar_descriptor(void)
+{
+ static int init = 0;
+ static swig_type_info* info = 0;
+ if (!init) {
+ info = SWIG_TypeQuery("_p_char");
+ init = 1;
+ }
+ return info;
+}
+
+
+SWIGINTERN int
+SWIG_AsCharPtrAndSize(PyObject *obj, char** cptr, size_t* psize, int *alloc)
+{
+ if (PyString_Check(obj)) {
+ char *cstr; Py_ssize_t len;
+ PyString_AsStringAndSize(obj, &cstr, &len);
+ if (cptr) {
+ if (alloc) {
+ /*
+ In python the user should not be able to modify the inner
+ string representation. To warranty that, if you define
+ SWIG_PYTHON_SAFE_CSTRINGS, a new/copy of the python string
+ buffer is always returned.
+
+ The default behavior is just to return the pointer value,
+ so, be careful.
+ */
+#if defined(SWIG_PYTHON_SAFE_CSTRINGS)
+ if (*alloc != SWIG_OLDOBJ)
+#else
+ if (*alloc == SWIG_NEWOBJ)
+#endif
+ {
+ *cptr = reinterpret_cast< char* >(memcpy((new char[len + 1]), cstr, sizeof(char)*(len + 1)));
+ *alloc = SWIG_NEWOBJ;
+ }
+ else {
+ *cptr = cstr;
+ *alloc = SWIG_OLDOBJ;
+ }
+ } else {
+ *cptr = PyString_AsString(obj);
+ }
+ }
+ if (psize) *psize = len + 1;
+ return SWIG_OK;
+ } else {
+ swig_type_info* pchar_descriptor = SWIG_pchar_descriptor();
+ if (pchar_descriptor) {
+ void* vptr = 0;
+ if (SWIG_ConvertPtr(obj, &vptr, pchar_descriptor, 0) == SWIG_OK) {
+ if (cptr) *cptr = (char *) vptr;
+ if (psize) *psize = vptr ? (strlen((char *)vptr) + 1) : 0;
+ if (alloc) *alloc = SWIG_OLDOBJ;
+ return SWIG_OK;
+ }
+ }
+ }
+ return SWIG_TypeError;
+}
+
+
+
+
+
+SWIGINTERN int
+SWIG_AsVal_double (PyObject *obj, double *val)
+{
+ int res = SWIG_TypeError;
+ if (PyFloat_Check(obj)) {
+ if (val) *val = PyFloat_AsDouble(obj);
+ return SWIG_OK;
+ } else if (PyInt_Check(obj)) {
+ if (val) *val = PyInt_AsLong(obj);
+ return SWIG_OK;
+ } else if (PyLong_Check(obj)) {
+ double v = PyLong_AsDouble(obj);
+ if (!PyErr_Occurred()) {
+ if (val) *val = v;
+ return SWIG_OK;
+ } else {
+ PyErr_Clear();
+ }
+ }
+#ifdef SWIG_PYTHON_CAST_MODE
+ {
+ int dispatch = 0;
+ double d = PyFloat_AsDouble(obj);
+ if (!PyErr_Occurred()) {
+ if (val) *val = d;
+ return SWIG_AddCast(SWIG_OK);
+ } else {
+ PyErr_Clear();
+ }
+ if (!dispatch) {
+ long v = PyLong_AsLong(obj);
+ if (!PyErr_Occurred()) {
+ if (val) *val = v;
+ return SWIG_AddCast(SWIG_AddCast(SWIG_OK));
+ } else {
+ PyErr_Clear();
+ }
+ }
+ }
+#endif
+ return res;
+}
+
+
+#include <float.h>
+
+
+#include <math.h>
+
+
+SWIGINTERNINLINE int
+SWIG_CanCastAsInteger(double *d, double min, double max) {
+ double x = *d;
+ if ((min <= x && x <= max)) {
+ double fx = floor(x);
+ double cx = ceil(x);
+ double rd = ((x - fx) < 0.5) ? fx : cx; /* simple rint */
+ if ((errno == EDOM) || (errno == ERANGE)) {
+ errno = 0;
+ } else {
+ double summ, reps, diff;
+ if (rd < x) {
+ diff = x - rd;
+ } else if (rd > x) {
+ diff = rd - x;
+ } else {
+ return 1;
+ }
+ summ = rd + x;
+ reps = diff/summ;
+ if (reps < 8*DBL_EPSILON) {
+ *d = rd;
+ return 1;
+ }
+ }
+ }
+ return 0;
+}
+
+
+SWIGINTERN int
+SWIG_AsVal_long (PyObject *obj, long* val)
+{
+ if (PyInt_Check(obj)) {
+ if (val) *val = PyInt_AsLong(obj);
+ return SWIG_OK;
+ } else if (PyLong_Check(obj)) {
+ long v = PyLong_AsLong(obj);
+ if (!PyErr_Occurred()) {
+ if (val) *val = v;
+ return SWIG_OK;
+ } else {
+ PyErr_Clear();
+ }
+ }
+#ifdef SWIG_PYTHON_CAST_MODE
+ {
+ int dispatch = 0;
+ long v = PyInt_AsLong(obj);
+ if (!PyErr_Occurred()) {
+ if (val) *val = v;
+ return SWIG_AddCast(SWIG_OK);
+ } else {
+ PyErr_Clear();
+ }
+ if (!dispatch) {
+ double d;
+ int res = SWIG_AddCast(SWIG_AsVal_double (obj,&d));
+ if (SWIG_IsOK(res) && SWIG_CanCastAsInteger(&d, LONG_MIN, LONG_MAX)) {
+ if (val) *val = (long)(d);
+ return res;
+ }
+ }
+ }
+#endif
+ return SWIG_TypeError;
+}
+
+
+SWIGINTERN int
+SWIG_AsVal_bool (PyObject *obj, bool *val)
+{
+ int r = PyObject_IsTrue(obj);
+ if (r == -1)
+ return SWIG_ERROR;
+ if (val) *val = r ? true : false;
+ return SWIG_OK;
+}
+
+SWIGINTERN void MxSMFReader_bind_normals(MxSMFReader *self,MxStdModel *m,bool face=true){
+ if (face)
+ m->normal_binding(m->parse_binding("face"));
+ else
+ m->normal_binding(m->parse_binding("vertex"));
+ }
+SWIGINTERN void MxSMFReader_bind_colors(MxSMFReader *self,MxStdModel *m,bool face=true){
+ if (face)
+ m->color_binding(m->parse_binding("face"));
+ else
+ m->color_binding(m->parse_binding("vertex"));
+ }
+SWIGINTERN void MxSMFReader_bind_texcoord(MxSMFReader *self,MxStdModel *m,bool face=true){
+ if (face)
+ m->texcoord_binding(m->parse_binding("face"));
+ else
+ m->texcoord_binding(m->parse_binding("vertex"));
+ }
+SWIGINTERN void MxSMFWriter_writeSMF(MxSMFWriter *self,char const *filename,MxStdModel *m){
+ static ostream *output_stream;
+ if( filename )
+ output_stream = new ofstream(filename);
+ else
+ output_stream = &cout;
+ self->write(*output_stream, *m);
+ }
+
+ #define SWIG_From_long PyInt_FromLong
+
+
+SWIGINTERNINLINE PyObject *
+SWIG_From_int (int value)
+{
+ return SWIG_From_long (value);
+}
+
+
+#include <limits.h>
+#if !defined(SWIG_NO_LLONG_MAX)
+# if !defined(LLONG_MAX) && defined(__GNUC__) && defined (__LONG_LONG_MAX__)
+# define LLONG_MAX __LONG_LONG_MAX__
+# define LLONG_MIN (-LLONG_MAX - 1LL)
+# define ULLONG_MAX (LLONG_MAX * 2ULL + 1ULL)
+# endif
+#endif
+
+
+SWIGINTERN int
+SWIG_AsVal_unsigned_SS_long (PyObject *obj, unsigned long *val)
+{
+ if (PyInt_Check(obj)) {
+ long v = PyInt_AsLong(obj);
+ if (v >= 0) {
+ if (val) *val = v;
+ return SWIG_OK;
+ } else {
+ return SWIG_OverflowError;
+ }
+ } else if (PyLong_Check(obj)) {
+ unsigned long v = PyLong_AsUnsignedLong(obj);
+ if (!PyErr_Occurred()) {
+ if (val) *val = v;
+ return SWIG_OK;
+ } else {
+ PyErr_Clear();
+ }
+ }
+#ifdef SWIG_PYTHON_CAST_MODE
+ {
+ int dispatch = 0;
+ unsigned long v = PyLong_AsUnsignedLong(obj);
+ if (!PyErr_Occurred()) {
+ if (val) *val = v;
+ return SWIG_AddCast(SWIG_OK);
+ } else {
+ PyErr_Clear();
+ }
+ if (!dispatch) {
+ double d;
+ int res = SWIG_AddCast(SWIG_AsVal_double (obj,&d));
+ if (SWIG_IsOK(res) && SWIG_CanCastAsInteger(&d, 0, ULONG_MAX)) {
+ if (val) *val = (unsigned long)(d);
+ return res;
+ }
+ }
+ }
+#endif
+ return SWIG_TypeError;
+}
+
+
+SWIGINTERN int
+SWIG_AsVal_unsigned_SS_int (PyObject * obj, unsigned int *val)
+{
+ unsigned long v;
+ int res = SWIG_AsVal_unsigned_SS_long (obj, &v);
+ if (SWIG_IsOK(res)) {
+ if ((v > UINT_MAX)) {
+ return SWIG_OverflowError;
+ } else {
+ if (val) *val = static_cast< unsigned int >(v);
+ }
+ }
+ return res;
+}
+
+
+SWIGINTERN int
+SWIG_AsVal_float (PyObject * obj, float *val)
+{
+ double v;
+ int res = SWIG_AsVal_double (obj, &v);
+ if (SWIG_IsOK(res)) {
+ if ((v < -FLT_MAX || v > FLT_MAX)) {
+ return SWIG_OverflowError;
+ } else {
+ if (val) *val = static_cast< float >(v);
+ }
+ }
+ return res;
+}
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+SWIGINTERN PyObject *_wrap_init_slim(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+ char * kwnames[] = {
+ (char *) "smf", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"O:init_slim",kwnames,&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "init_slim" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ init_slim(arg1);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_cleanup_for_output(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxStdModel *arg1 = (MxStdModel *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+ char * kwnames[] = {
+ (char *) "m", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"O:cleanup_for_output",kwnames,&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxStdModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "cleanup_for_output" "', argument " "1"" of type '" "MxStdModel *""'");
+ }
+ arg1 = reinterpret_cast< MxStdModel * >(argp1);
+ cleanup_for_output(arg1);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_new_MxSMFReader(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFReader *result = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)":new_MxSMFReader")) SWIG_fail;
+ result = (MxSMFReader *)new MxSMFReader();
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_MxSMFReader, SWIG_POINTER_NEW | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_delete_MxSMFReader(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:delete_MxSMFReader",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, SWIG_POINTER_DISOWN | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "delete_MxSMFReader" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ delete arg1;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_unparsed_hook_set(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ bool (*arg2)(char *,int,char *[],MxStdModel &) = (bool (*)(char *,int,char *[],MxStdModel &)) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"OO:MxSMFReader_unparsed_hook_set",&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_unparsed_hook_set" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ {
+ int res = SWIG_ConvertFunctionPtr(obj1, (void**)(&arg2), SWIGTYPE_p_f_p_char_int_a___p_char_r_MxStdModel__bool);
+ if (!SWIG_IsOK(res)) {
+ SWIG_exception_fail(SWIG_ArgError(res), "in method '" "MxSMFReader_unparsed_hook_set" "', argument " "2"" of type '" "bool (*)(char *,int,char *[],MxStdModel &)""'");
+ }
+ }
+ if (arg1) (arg1)->unparsed_hook = arg2;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_unparsed_hook_get(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ bool (*result)(char *,int,char *[],MxStdModel &) = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:MxSMFReader_unparsed_hook_get",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_unparsed_hook_get" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ result = (bool (*)(char *,int,char *[],MxStdModel &)) ((arg1)->unparsed_hook);
+ resultobj = SWIG_NewFunctionPtrObj((void *)(result), SWIGTYPE_p_f_p_char_int_a___p_char_r_MxStdModel__bool);
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_asp_store(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ MxAspStore *result = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:MxSMFReader_asp_store",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_asp_store" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ result = (MxAspStore *)(arg1)->asp_store();
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_MxAspStore, 0 | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_read(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ istream *arg2 = 0 ;
+ MxStdModel *arg3 = (MxStdModel *) NULL ;
+ MxStdModel *result = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ void *argp3 = 0 ;
+ int res3 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "_in",(char *) "model", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO|O:MxSMFReader_read",kwnames,&obj0,&obj1,&obj2)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_read" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2, SWIGTYPE_p_istream, 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "MxSMFReader_read" "', argument " "2"" of type '" "istream &""'");
+ }
+ if (!argp2) {
+ SWIG_exception_fail(SWIG_ValueError, "invalid null reference " "in method '" "MxSMFReader_read" "', argument " "2"" of type '" "istream &""'");
+ }
+ arg2 = reinterpret_cast< istream * >(argp2);
+ if (obj2) {
+ res3 = SWIG_ConvertPtr(obj2, &argp3,SWIGTYPE_p_MxStdModel, 0 | 0 );
+ if (!SWIG_IsOK(res3)) {
+ SWIG_exception_fail(SWIG_ArgError(res3), "in method '" "MxSMFReader_read" "', argument " "3"" of type '" "MxStdModel *""'");
+ }
+ arg3 = reinterpret_cast< MxStdModel * >(argp3);
+ }
+ result = (MxStdModel *)(arg1)->read(*arg2,arg3);
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_MxStdModel, 0 | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_parse_line(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ char *arg2 = (char *) 0 ;
+ MxStdModel *arg3 = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ int res2 ;
+ char *buf2 = 0 ;
+ int alloc2 = 0 ;
+ void *argp3 = 0 ;
+ int res3 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *)"arg2",(char *)"arg3", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OOO:MxSMFReader_parse_line",kwnames,&obj0,&obj1,&obj2)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_parse_line" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ res2 = SWIG_AsCharPtrAndSize(obj1, &buf2, NULL, &alloc2);
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "MxSMFReader_parse_line" "', argument " "2"" of type '" "char *""'");
+ }
+ arg2 = reinterpret_cast< char * >(buf2);
+ res3 = SWIG_ConvertPtr(obj2, &argp3, SWIGTYPE_p_MxStdModel, 0 );
+ if (!SWIG_IsOK(res3)) {
+ SWIG_exception_fail(SWIG_ArgError(res3), "in method '" "MxSMFReader_parse_line" "', argument " "3"" of type '" "MxStdModel &""'");
+ }
+ if (!argp3) {
+ SWIG_exception_fail(SWIG_ValueError, "invalid null reference " "in method '" "MxSMFReader_parse_line" "', argument " "3"" of type '" "MxStdModel &""'");
+ }
+ arg3 = reinterpret_cast< MxStdModel * >(argp3);
+ (arg1)->parse_line(arg2,*arg3);
+ resultobj = SWIG_Py_Void();
+ if (alloc2 == SWIG_NEWOBJ) delete[] buf2;
+ return resultobj;
+fail:
+ if (alloc2 == SWIG_NEWOBJ) delete[] buf2;
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_createModel(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ float (*arg2)[3] ;
+ int *arg3 = (int *) 0 ;
+ int *arg4 = (int *) 0 ;
+ int *arg5 ;
+ bool arg6 = (bool) true ;
+ float (*arg7)[3] = (float (*)[3]) (float (*)[3])NULL ;
+ int *arg8 = (int *) NULL ;
+ float (*arg9)[3] = (float (*)[3]) (float (*)[3])NULL ;
+ int *arg10 = (int *) NULL ;
+ float (*arg11)[2] = (float (*)[2]) (float (*)[2])NULL ;
+ int *arg12 = (int *) NULL ;
+ MxStdModel *arg13 = (MxStdModel *) NULL ;
+ MxStdModel *result = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyArrayObject *array2 = NULL ;
+ int expected_dims2[2] ;
+ int intdims2[2] ;
+ PyArrayObject *array4 = NULL ;
+ int intdims4[2] ;
+ bool val6 ;
+ int ecode6 = 0 ;
+ PyArrayObject *array7 = NULL ;
+ int expected_dims7[2] ;
+ int intdims7[2] ;
+ PyArrayObject *array9 = NULL ;
+ int expected_dims9[2] ;
+ int intdims9[2] ;
+ PyArrayObject *array11 = NULL ;
+ int expected_dims11[2] ;
+ int intdims11[2] ;
+ void *argp13 = 0 ;
+ int res13 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ PyObject * obj3 = 0 ;
+ PyObject * obj4 = 0 ;
+ PyObject * obj5 = 0 ;
+ PyObject * obj6 = 0 ;
+ PyObject * obj7 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "verts",(char *) "faces",(char *) "correctverts",(char *) "norms",(char *) "colors",(char *) "texcoords",(char *) "model", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OOO|OOOOO:MxSMFReader_createModel",kwnames,&obj0,&obj1,&obj2,&obj3,&obj4,&obj5,&obj6,&obj7)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_createModel" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+
+ if (obj1 != Py_None)
+ {
+ expected_dims2[0] = 1;
+ expected_dims2[1] = 3;
+ if (expected_dims2[0]==1) expected_dims2[0]=0;
+ if (expected_dims2[1]==1) expected_dims2[1]=0;
+ array2 = contiguous_typed_array(obj1, PyArray_FLOAT, 2, expected_dims2);
+ if (! array2) return NULL;
+ arg2 = (float (*)[3])array2->data;
+ intdims2[0] = ((PyArrayObject *)(array2))->dimensions[0];
+ intdims2[1] = ((PyArrayObject *)(array2))->dimensions[1];
+ arg3 = intdims2;
+ }
+ else
+ {
+ array2 = NULL;
+ arg2 = NULL;
+ arg3 = 0;
+ }
+
+
+ array4 = contiguous_typed_array(obj2, PyArray_INT, 2, NULL);
+ if (! array4) return NULL;
+ arg4 = (int *)array4->data;
+ intdims4[0] = ((PyArrayObject *)(array4))->dimensions[0];
+ intdims4[1] = ((PyArrayObject *)(array4))->dimensions[1];
+ arg5 = intdims4;
+
+ if (obj3) {
+ ecode6 = SWIG_AsVal_bool(obj3, &val6);
+ if (!SWIG_IsOK(ecode6)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode6), "in method '" "MxSMFReader_createModel" "', argument " "6"" of type '" "bool""'");
+ }
+ arg6 = static_cast< bool >(val6);
+ }
+ if (obj4) {
+ if (obj4 != Py_None)
+ {
+ expected_dims7[0] = 1;
+ expected_dims7[1] = 3;
+ if (expected_dims7[0]==1) expected_dims7[0]=0;
+ if (expected_dims7[1]==1) expected_dims7[1]=0;
+ array7 = contiguous_typed_array(obj4, PyArray_FLOAT, 2, expected_dims7);
+ if (! array7) return NULL;
+ arg7 = (float (*)[3])array7->data;
+ intdims7[0] = ((PyArrayObject *)(array7))->dimensions[0];
+ intdims7[1] = ((PyArrayObject *)(array7))->dimensions[1];
+ arg8 = intdims7;
+ }
+ else
+ {
+ array7 = NULL;
+ arg7 = NULL;
+ arg8 = 0;
+ }
+
+ }
+ if (obj5) {
+ if (obj5 != Py_None)
+ {
+ expected_dims9[0] = 1;
+ expected_dims9[1] = 3;
+ if (expected_dims9[0]==1) expected_dims9[0]=0;
+ if (expected_dims9[1]==1) expected_dims9[1]=0;
+ array9 = contiguous_typed_array(obj5, PyArray_FLOAT, 2, expected_dims9);
+ if (! array9) return NULL;
+ arg9 = (float (*)[3])array9->data;
+ intdims9[0] = ((PyArrayObject *)(array9))->dimensions[0];
+ intdims9[1] = ((PyArrayObject *)(array9))->dimensions[1];
+ arg10 = intdims9;
+ }
+ else
+ {
+ array9 = NULL;
+ arg9 = NULL;
+ arg10 = 0;
+ }
+
+ }
+ if (obj6) {
+ if (obj6 != Py_None)
+ {
+ expected_dims11[0] = 1;
+ expected_dims11[1] = 2;
+ if (expected_dims11[0]==1) expected_dims11[0]=0;
+ if (expected_dims11[1]==1) expected_dims11[1]=0;
+ array11 = contiguous_typed_array(obj6, PyArray_FLOAT, 2, expected_dims11);
+ if (! array11) return NULL;
+ arg11 = (float (*)[2])array11->data;
+ intdims11[0] = ((PyArrayObject *)(array11))->dimensions[0];
+ intdims11[1] = ((PyArrayObject *)(array11))->dimensions[1];
+ arg12 = intdims11;
+ }
+ else
+ {
+ array11 = NULL;
+ arg11 = NULL;
+ arg12 = 0;
+ }
+
+ }
+ if (obj7) {
+ res13 = SWIG_ConvertPtr(obj7, &argp13,SWIGTYPE_p_MxStdModel, 0 | 0 );
+ if (!SWIG_IsOK(res13)) {
+ SWIG_exception_fail(SWIG_ArgError(res13), "in method '" "MxSMFReader_createModel" "', argument " "13"" of type '" "MxStdModel *""'");
+ }
+ arg13 = reinterpret_cast< MxStdModel * >(argp13);
+ }
+ result = (MxStdModel *)(arg1)->createModel((float (*)[3])arg2,arg3,arg4,arg5,arg6,(float (*)[3])arg7,arg8,(float (*)[3])arg9,arg10,(float (*)[2])arg11,arg12,arg13);
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_MxStdModel, 0 | 0 );
+
+ if (array2 )
+ Py_DECREF((PyObject *)array2);
+
+
+ if (array4 )
+ Py_DECREF((PyObject *)array4);
+
+
+ if (array7 )
+ Py_DECREF((PyObject *)array7);
+
+
+ if (array9 )
+ Py_DECREF((PyObject *)array9);
+
+
+ if (array11 )
+ Py_DECREF((PyObject *)array11);
+
+ return resultobj;
+fail:
+
+ if (array2 )
+ Py_DECREF((PyObject *)array2);
+
+
+ if (array4 )
+ Py_DECREF((PyObject *)array4);
+
+
+ if (array7 )
+ Py_DECREF((PyObject *)array7);
+
+
+ if (array9 )
+ Py_DECREF((PyObject *)array9);
+
+
+ if (array11 )
+ Py_DECREF((PyObject *)array11);
+
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_bind_normals(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ MxStdModel *arg2 = (MxStdModel *) 0 ;
+ bool arg3 = (bool) true ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ bool val3 ;
+ int ecode3 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "m",(char *) "face", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO|O:MxSMFReader_bind_normals",kwnames,&obj0,&obj1,&obj2)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_bind_normals" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2,SWIGTYPE_p_MxStdModel, 0 | 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "MxSMFReader_bind_normals" "', argument " "2"" of type '" "MxStdModel *""'");
+ }
+ arg2 = reinterpret_cast< MxStdModel * >(argp2);
+ if (obj2) {
+ ecode3 = SWIG_AsVal_bool(obj2, &val3);
+ if (!SWIG_IsOK(ecode3)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "MxSMFReader_bind_normals" "', argument " "3"" of type '" "bool""'");
+ }
+ arg3 = static_cast< bool >(val3);
+ }
+ MxSMFReader_bind_normals(arg1,arg2,arg3);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_bind_colors(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ MxStdModel *arg2 = (MxStdModel *) 0 ;
+ bool arg3 = (bool) true ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ bool val3 ;
+ int ecode3 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "m",(char *) "face", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO|O:MxSMFReader_bind_colors",kwnames,&obj0,&obj1,&obj2)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_bind_colors" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2,SWIGTYPE_p_MxStdModel, 0 | 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "MxSMFReader_bind_colors" "', argument " "2"" of type '" "MxStdModel *""'");
+ }
+ arg2 = reinterpret_cast< MxStdModel * >(argp2);
+ if (obj2) {
+ ecode3 = SWIG_AsVal_bool(obj2, &val3);
+ if (!SWIG_IsOK(ecode3)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "MxSMFReader_bind_colors" "', argument " "3"" of type '" "bool""'");
+ }
+ arg3 = static_cast< bool >(val3);
+ }
+ MxSMFReader_bind_colors(arg1,arg2,arg3);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFReader_bind_texcoord(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFReader *arg1 = (MxSMFReader *) 0 ;
+ MxStdModel *arg2 = (MxStdModel *) 0 ;
+ bool arg3 = (bool) true ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ bool val3 ;
+ int ecode3 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "m",(char *) "face", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO|O:MxSMFReader_bind_texcoord",kwnames,&obj0,&obj1,&obj2)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFReader_bind_texcoord" "', argument " "1"" of type '" "MxSMFReader *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFReader * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2,SWIGTYPE_p_MxStdModel, 0 | 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "MxSMFReader_bind_texcoord" "', argument " "2"" of type '" "MxStdModel *""'");
+ }
+ arg2 = reinterpret_cast< MxStdModel * >(argp2);
+ if (obj2) {
+ ecode3 = SWIG_AsVal_bool(obj2, &val3);
+ if (!SWIG_IsOK(ecode3)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "MxSMFReader_bind_texcoord" "', argument " "3"" of type '" "bool""'");
+ }
+ arg3 = static_cast< bool >(val3);
+ }
+ MxSMFReader_bind_texcoord(arg1,arg2,arg3);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *MxSMFReader_swigregister(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *obj;
+ if (!PyArg_ParseTuple(args,(char*)"O|swigregister", &obj)) return NULL;
+ SWIG_TypeNewClientData(SWIGTYPE_p_MxSMFReader, SWIG_NewClientData(obj));
+ return SWIG_Py_Void();
+}
+
+SWIGINTERN PyObject *_wrap_new_MxSMFWriter(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFWriter *result = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)":new_MxSMFWriter")) SWIG_fail;
+ result = (MxSMFWriter *)new MxSMFWriter();
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_MxSMFWriter, SWIG_POINTER_NEW | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFWriter_vertex_annotate_set(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFWriter *arg1 = (MxSMFWriter *) 0 ;
+ void (*arg2)(ostream &,MxStdModel const &,MxVertexID) = (void (*)(ostream &,MxStdModel const &,MxVertexID)) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"OO:MxSMFWriter_vertex_annotate_set",&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFWriter, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFWriter_vertex_annotate_set" "', argument " "1"" of type '" "MxSMFWriter *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFWriter * >(argp1);
+ {
+ int res = SWIG_ConvertFunctionPtr(obj1, (void**)(&arg2), SWIGTYPE_p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void);
+ if (!SWIG_IsOK(res)) {
+ SWIG_exception_fail(SWIG_ArgError(res), "in method '" "MxSMFWriter_vertex_annotate_set" "', argument " "2"" of type '" "void (*)(ostream &,MxStdModel const &,MxVertexID)""'");
+ }
+ }
+ if (arg1) (arg1)->vertex_annotate = arg2;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFWriter_vertex_annotate_get(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFWriter *arg1 = (MxSMFWriter *) 0 ;
+ void (*result)(ostream &,MxStdModel const &,MxVertexID) = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:MxSMFWriter_vertex_annotate_get",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFWriter, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFWriter_vertex_annotate_get" "', argument " "1"" of type '" "MxSMFWriter *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFWriter * >(argp1);
+ result = (void (*)(ostream &,MxStdModel const &,MxVertexID)) ((arg1)->vertex_annotate);
+ resultobj = SWIG_NewFunctionPtrObj((void *)(result), SWIGTYPE_p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void);
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFWriter_face_annotate_set(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFWriter *arg1 = (MxSMFWriter *) 0 ;
+ void (*arg2)(ostream &,MxStdModel const &,MxVertexID) = (void (*)(ostream &,MxStdModel const &,MxVertexID)) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"OO:MxSMFWriter_face_annotate_set",&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFWriter, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFWriter_face_annotate_set" "', argument " "1"" of type '" "MxSMFWriter *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFWriter * >(argp1);
+ {
+ int res = SWIG_ConvertFunctionPtr(obj1, (void**)(&arg2), SWIGTYPE_p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void);
+ if (!SWIG_IsOK(res)) {
+ SWIG_exception_fail(SWIG_ArgError(res), "in method '" "MxSMFWriter_face_annotate_set" "', argument " "2"" of type '" "void (*)(ostream &,MxStdModel const &,MxVertexID)""'");
+ }
+ }
+ if (arg1) (arg1)->face_annotate = arg2;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFWriter_face_annotate_get(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFWriter *arg1 = (MxSMFWriter *) 0 ;
+ void (*result)(ostream &,MxStdModel const &,MxVertexID) = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:MxSMFWriter_face_annotate_get",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFWriter, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFWriter_face_annotate_get" "', argument " "1"" of type '" "MxSMFWriter *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFWriter * >(argp1);
+ result = (void (*)(ostream &,MxStdModel const &,MxVertexID)) ((arg1)->face_annotate);
+ resultobj = SWIG_NewFunctionPtrObj((void *)(result), SWIGTYPE_p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void);
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFWriter_write(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFWriter *arg1 = (MxSMFWriter *) 0 ;
+ ostream *arg2 = 0 ;
+ MxStdModel *arg3 = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ void *argp3 = 0 ;
+ int res3 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "out",(char *) "m", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OOO:MxSMFWriter_write",kwnames,&obj0,&obj1,&obj2)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFWriter, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFWriter_write" "', argument " "1"" of type '" "MxSMFWriter *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFWriter * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2, SWIGTYPE_p_ostream, 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "MxSMFWriter_write" "', argument " "2"" of type '" "ostream &""'");
+ }
+ if (!argp2) {
+ SWIG_exception_fail(SWIG_ValueError, "invalid null reference " "in method '" "MxSMFWriter_write" "', argument " "2"" of type '" "ostream &""'");
+ }
+ arg2 = reinterpret_cast< ostream * >(argp2);
+ res3 = SWIG_ConvertPtr(obj2, &argp3, SWIGTYPE_p_MxStdModel, 0 );
+ if (!SWIG_IsOK(res3)) {
+ SWIG_exception_fail(SWIG_ArgError(res3), "in method '" "MxSMFWriter_write" "', argument " "3"" of type '" "MxStdModel &""'");
+ }
+ if (!argp3) {
+ SWIG_exception_fail(SWIG_ValueError, "invalid null reference " "in method '" "MxSMFWriter_write" "', argument " "3"" of type '" "MxStdModel &""'");
+ }
+ arg3 = reinterpret_cast< MxStdModel * >(argp3);
+ (arg1)->write(*arg2,*arg3);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_MxSMFWriter_writeSMF(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ MxSMFWriter *arg1 = (MxSMFWriter *) 0 ;
+ char *arg2 = (char *) 0 ;
+ MxStdModel *arg3 = (MxStdModel *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ int res2 ;
+ char *buf2 = 0 ;
+ int alloc2 = 0 ;
+ void *argp3 = 0 ;
+ int res3 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "filename",(char *) "m", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OOO:MxSMFWriter_writeSMF",kwnames,&obj0,&obj1,&obj2)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFWriter, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "MxSMFWriter_writeSMF" "', argument " "1"" of type '" "MxSMFWriter *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFWriter * >(argp1);
+ res2 = SWIG_AsCharPtrAndSize(obj1, &buf2, NULL, &alloc2);
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "MxSMFWriter_writeSMF" "', argument " "2"" of type '" "char const *""'");
+ }
+ arg2 = reinterpret_cast< char * >(buf2);
+ res3 = SWIG_ConvertPtr(obj2, &argp3,SWIGTYPE_p_MxStdModel, 0 | 0 );
+ if (!SWIG_IsOK(res3)) {
+ SWIG_exception_fail(SWIG_ArgError(res3), "in method '" "MxSMFWriter_writeSMF" "', argument " "3"" of type '" "MxStdModel *""'");
+ }
+ arg3 = reinterpret_cast< MxStdModel * >(argp3);
+ MxSMFWriter_writeSMF(arg1,(char const *)arg2,arg3);
+ resultobj = SWIG_Py_Void();
+ if (alloc2 == SWIG_NEWOBJ) delete[] buf2;
+ return resultobj;
+fail:
+ if (alloc2 == SWIG_NEWOBJ) delete[] buf2;
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_delete_MxSMFWriter(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ MxSMFWriter *arg1 = (MxSMFWriter *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:delete_MxSMFWriter",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_MxSMFWriter, SWIG_POINTER_DISOWN | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "delete_MxSMFWriter" "', argument " "1"" of type '" "MxSMFWriter *""'");
+ }
+ arg1 = reinterpret_cast< MxSMFWriter * >(argp1);
+ delete arg1;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *MxSMFWriter_swigregister(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *obj;
+ if (!PyArg_ParseTuple(args,(char*)"O|swigregister", &obj)) return NULL;
+ SWIG_TypeNewClientData(SWIGTYPE_p_MxSMFWriter, SWIG_NewClientData(obj));
+ return SWIG_Py_Void();
+}
+
+SWIGINTERN PyObject *_wrap_new_ContractionCallback(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ ContractionCallback *result = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)":new_ContractionCallback")) SWIG_fail;
+ result = (ContractionCallback *)new ContractionCallback();
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_ContractionCallback, SWIG_POINTER_NEW | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_delete_ContractionCallback(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ ContractionCallback *arg1 = (ContractionCallback *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:delete_ContractionCallback",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_ContractionCallback, SWIG_POINTER_DISOWN | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "delete_ContractionCallback" "', argument " "1"" of type '" "ContractionCallback *""'");
+ }
+ arg1 = reinterpret_cast< ContractionCallback * >(argp1);
+ delete arg1;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *ContractionCallback_swigregister(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *obj;
+ if (!PyArg_ParseTuple(args,(char*)"O|swigregister", &obj)) return NULL;
+ SWIG_TypeNewClientData(SWIGTYPE_p_ContractionCallback, SWIG_NewClientData(obj));
+ return SWIG_Py_Void();
+}
+
+SWIGINTERN PyObject *_wrap_QSlimModel_history_set(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ QSlimLog *arg2 = (QSlimLog *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"OO:QSlimModel_history_set",&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_history_set" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2,SWIGTYPE_p_QSlimLog, SWIG_POINTER_DISOWN | 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "QSlimModel_history_set" "', argument " "2"" of type '" "QSlimLog *""'");
+ }
+ arg2 = reinterpret_cast< QSlimLog * >(argp2);
+ if (arg1) (arg1)->history = arg2;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_history_get(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ QSlimLog *result = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_history_get",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_history_get" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (QSlimLog *) ((arg1)->history);
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_QSlimLog, 0 | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_smfReader_set(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ MxSMFReader *arg2 = (MxSMFReader *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"OO:QSlimModel_smfReader_set",&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_smfReader_set" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2,SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "QSlimModel_smfReader_set" "', argument " "2"" of type '" "MxSMFReader *""'");
+ }
+ arg2 = reinterpret_cast< MxSMFReader * >(argp2);
+ if (arg1) (arg1)->smfReader = *arg2;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_smfReader_get(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ MxSMFReader *result = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_smfReader_get",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_smfReader_get" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (MxSMFReader *)& ((arg1)->smfReader);
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_MxSMFReader, 0 | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_model_set(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ MxStdModel *arg2 = (MxStdModel *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"OO:QSlimModel_model_set",&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_model_set" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2,SWIGTYPE_p_MxStdModel, SWIG_POINTER_DISOWN | 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "QSlimModel_model_set" "', argument " "2"" of type '" "MxStdModel *""'");
+ }
+ arg2 = reinterpret_cast< MxStdModel * >(argp2);
+ if (arg1) (arg1)->model = arg2;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_model_get(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ MxStdModel *result = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_model_get",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_model_get" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (MxStdModel *) ((arg1)->model);
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_MxStdModel, 0 | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_slim_set(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ MxEdgeQSlim *arg2 = (MxEdgeQSlim *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"OO:QSlimModel_slim_set",&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_slim_set" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2,SWIGTYPE_p_MxEdgeQSlim, SWIG_POINTER_DISOWN | 0 );
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "QSlimModel_slim_set" "', argument " "2"" of type '" "MxEdgeQSlim *""'");
+ }
+ arg2 = reinterpret_cast< MxEdgeQSlim * >(argp2);
+ if (arg1) (arg1)->slim = arg2;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_slim_get(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ MxEdgeQSlim *result = 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_slim_get",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_slim_get" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (MxEdgeQSlim *) ((arg1)->slim);
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_MxEdgeQSlim, 0 | 0 );
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_new_QSlimModel(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ float (*arg1)[3] ;
+ int *arg2 = (int *) 0 ;
+ int *arg3 = (int *) 0 ;
+ int *arg4 ;
+ bool arg5 = (bool) true ;
+ bool arg6 = (bool) true ;
+ float (*arg7)[3] = (float (*)[3]) (float (*)[3])NULL ;
+ int *arg8 = (int *) NULL ;
+ float (*arg9)[3] = (float (*)[3]) (float (*)[3])NULL ;
+ int *arg10 = (int *) NULL ;
+ float (*arg11)[2] = (float (*)[2]) (float (*)[2])NULL ;
+ int *arg12 = (int *) NULL ;
+ QSlimModel *result = 0 ;
+ PyArrayObject *array1 = NULL ;
+ int expected_dims1[2] ;
+ int intdims1[2] ;
+ PyArrayObject *array3 = NULL ;
+ int intdims3[2] ;
+ bool val5 ;
+ int ecode5 = 0 ;
+ bool val6 ;
+ int ecode6 = 0 ;
+ PyArrayObject *array7 = NULL ;
+ int expected_dims7[2] ;
+ int intdims7[2] ;
+ PyArrayObject *array9 = NULL ;
+ int expected_dims9[2] ;
+ int intdims9[2] ;
+ PyArrayObject *array11 = NULL ;
+ int expected_dims11[2] ;
+ int intdims11[2] ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ PyObject * obj3 = 0 ;
+ PyObject * obj4 = 0 ;
+ PyObject * obj5 = 0 ;
+ PyObject * obj6 = 0 ;
+ char * kwnames[] = {
+ (char *) "verts",(char *) "faces",(char *) "bindtoface",(char *) "correctverts",(char *) "norms",(char *) "colors",(char *) "texcoords", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO|OOOOO:new_QSlimModel",kwnames,&obj0,&obj1,&obj2,&obj3,&obj4,&obj5,&obj6)) SWIG_fail;
+
+ if (obj0 != Py_None)
+ {
+ expected_dims1[0] = 1;
+ expected_dims1[1] = 3;
+ if (expected_dims1[0]==1) expected_dims1[0]=0;
+ if (expected_dims1[1]==1) expected_dims1[1]=0;
+ array1 = contiguous_typed_array(obj0, PyArray_FLOAT, 2, expected_dims1);
+ if (! array1) return NULL;
+ arg1 = (float (*)[3])array1->data;
+ intdims1[0] = ((PyArrayObject *)(array1))->dimensions[0];
+ intdims1[1] = ((PyArrayObject *)(array1))->dimensions[1];
+ arg2 = intdims1;
+ }
+ else
+ {
+ array1 = NULL;
+ arg1 = NULL;
+ arg2 = 0;
+ }
+
+
+ array3 = contiguous_typed_array(obj1, PyArray_INT, 2, NULL);
+ if (! array3) return NULL;
+ arg3 = (int *)array3->data;
+ intdims3[0] = ((PyArrayObject *)(array3))->dimensions[0];
+ intdims3[1] = ((PyArrayObject *)(array3))->dimensions[1];
+ arg4 = intdims3;
+
+ if (obj2) {
+ ecode5 = SWIG_AsVal_bool(obj2, &val5);
+ if (!SWIG_IsOK(ecode5)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode5), "in method '" "new_QSlimModel" "', argument " "5"" of type '" "bool""'");
+ }
+ arg5 = static_cast< bool >(val5);
+ }
+ if (obj3) {
+ ecode6 = SWIG_AsVal_bool(obj3, &val6);
+ if (!SWIG_IsOK(ecode6)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode6), "in method '" "new_QSlimModel" "', argument " "6"" of type '" "bool""'");
+ }
+ arg6 = static_cast< bool >(val6);
+ }
+ if (obj4) {
+ if (obj4 != Py_None)
+ {
+ expected_dims7[0] = 1;
+ expected_dims7[1] = 3;
+ if (expected_dims7[0]==1) expected_dims7[0]=0;
+ if (expected_dims7[1]==1) expected_dims7[1]=0;
+ array7 = contiguous_typed_array(obj4, PyArray_FLOAT, 2, expected_dims7);
+ if (! array7) return NULL;
+ arg7 = (float (*)[3])array7->data;
+ intdims7[0] = ((PyArrayObject *)(array7))->dimensions[0];
+ intdims7[1] = ((PyArrayObject *)(array7))->dimensions[1];
+ arg8 = intdims7;
+ }
+ else
+ {
+ array7 = NULL;
+ arg7 = NULL;
+ arg8 = 0;
+ }
+
+ }
+ if (obj5) {
+ if (obj5 != Py_None)
+ {
+ expected_dims9[0] = 1;
+ expected_dims9[1] = 3;
+ if (expected_dims9[0]==1) expected_dims9[0]=0;
+ if (expected_dims9[1]==1) expected_dims9[1]=0;
+ array9 = contiguous_typed_array(obj5, PyArray_FLOAT, 2, expected_dims9);
+ if (! array9) return NULL;
+ arg9 = (float (*)[3])array9->data;
+ intdims9[0] = ((PyArrayObject *)(array9))->dimensions[0];
+ intdims9[1] = ((PyArrayObject *)(array9))->dimensions[1];
+ arg10 = intdims9;
+ }
+ else
+ {
+ array9 = NULL;
+ arg9 = NULL;
+ arg10 = 0;
+ }
+
+ }
+ if (obj6) {
+ if (obj6 != Py_None)
+ {
+ expected_dims11[0] = 1;
+ expected_dims11[1] = 2;
+ if (expected_dims11[0]==1) expected_dims11[0]=0;
+ if (expected_dims11[1]==1) expected_dims11[1]=0;
+ array11 = contiguous_typed_array(obj6, PyArray_FLOAT, 2, expected_dims11);
+ if (! array11) return NULL;
+ arg11 = (float (*)[2])array11->data;
+ intdims11[0] = ((PyArrayObject *)(array11))->dimensions[0];
+ intdims11[1] = ((PyArrayObject *)(array11))->dimensions[1];
+ arg12 = intdims11;
+ }
+ else
+ {
+ array11 = NULL;
+ arg11 = NULL;
+ arg12 = 0;
+ }
+
+ }
+ result = (QSlimModel *)new QSlimModel((float (*)[3])arg1,arg2,arg3,arg4,arg5,arg6,(float (*)[3])arg7,arg8,(float (*)[3])arg9,arg10,(float (*)[2])arg11,arg12);
+ resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_QSlimModel, SWIG_POINTER_NEW | 0 );
+
+ if (array1 )
+ Py_DECREF((PyObject *)array1);
+
+
+ if (array3 )
+ Py_DECREF((PyObject *)array3);
+
+
+ if (array7 )
+ Py_DECREF((PyObject *)array7);
+
+
+ if (array9 )
+ Py_DECREF((PyObject *)array9);
+
+
+ if (array11 )
+ Py_DECREF((PyObject *)array11);
+
+ return resultobj;
+fail:
+
+ if (array1 )
+ Py_DECREF((PyObject *)array1);
+
+
+ if (array3 )
+ Py_DECREF((PyObject *)array3);
+
+
+ if (array7 )
+ Py_DECREF((PyObject *)array7);
+
+
+ if (array9 )
+ Py_DECREF((PyObject *)array9);
+
+
+ if (array11 )
+ Py_DECREF((PyObject *)array11);
+
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_delete_QSlimModel(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:delete_QSlimModel",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, SWIG_POINTER_DISOWN | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "delete_QSlimModel" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ delete arg1;
+
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_clean_history(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_clean_history",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_clean_history" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ (arg1)->clean_history();
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_bind_normals(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ bool arg2 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ bool val2 ;
+ int ecode2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "face", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO:QSlimModel_bind_normals",kwnames,&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_bind_normals" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ ecode2 = SWIG_AsVal_bool(obj1, &val2);
+ if (!SWIG_IsOK(ecode2)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "QSlimModel_bind_normals" "', argument " "2"" of type '" "bool""'");
+ }
+ arg2 = static_cast< bool >(val2);
+ (arg1)->bind_normals(arg2);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_bind_colors(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ bool arg2 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ bool val2 ;
+ int ecode2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "face", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO:QSlimModel_bind_colors",kwnames,&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_bind_colors" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ ecode2 = SWIG_AsVal_bool(obj1, &val2);
+ if (!SWIG_IsOK(ecode2)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "QSlimModel_bind_colors" "', argument " "2"" of type '" "bool""'");
+ }
+ arg2 = static_cast< bool >(val2);
+ (arg1)->bind_colors(arg2);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_bind_texcoord(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ bool arg2 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ bool val2 ;
+ int ecode2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "face", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO:QSlimModel_bind_texcoord",kwnames,&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_bind_texcoord" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ ecode2 = SWIG_AsVal_bool(obj1, &val2);
+ if (!SWIG_IsOK(ecode2)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "QSlimModel_bind_texcoord" "', argument " "2"" of type '" "bool""'");
+ }
+ arg2 = static_cast< bool >(val2);
+ (arg1)->bind_texcoord(arg2);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_get_color_binding(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ int result;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_get_color_binding",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_get_color_binding" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (int)(arg1)->get_color_binding();
+ resultobj = SWIG_From_int(static_cast< int >(result));
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_get_texcoord_binding(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ int result;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_get_texcoord_binding",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_get_texcoord_binding" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (int)(arg1)->get_texcoord_binding();
+ resultobj = SWIG_From_int(static_cast< int >(result));
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_get_normal_binding(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ int result;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_get_normal_binding",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_get_normal_binding" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (int)(arg1)->get_normal_binding();
+ resultobj = SWIG_From_int(static_cast< int >(result));
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_get_vert_count(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ int result;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_get_vert_count",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_get_vert_count" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (int)(arg1)->get_vert_count();
+ resultobj = SWIG_From_int(static_cast< int >(result));
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_get_face_count(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ int result;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_get_face_count",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_get_face_count" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (int)(arg1)->get_face_count();
+ resultobj = SWIG_From_int(static_cast< int >(result));
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_num_valid_faces(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ int result;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_num_valid_faces",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_num_valid_faces" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (int)(arg1)->num_valid_faces();
+ resultobj = SWIG_From_int(static_cast< int >(result));
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_num_valid_verts(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ int result;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_num_valid_verts",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_num_valid_verts" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ result = (int)(arg1)->num_valid_verts();
+ resultobj = SWIG_From_int(static_cast< int >(result));
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_slim_to_target(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ uint arg2 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ unsigned int val2 ;
+ int ecode2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "target", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OO:QSlimModel_slim_to_target",kwnames,&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_slim_to_target" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ ecode2 = SWIG_AsVal_unsigned_SS_int(obj1, &val2);
+ if (!SWIG_IsOK(ecode2)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "QSlimModel_slim_to_target" "', argument " "2"" of type '" "uint""'");
+ }
+ arg2 = static_cast< uint >(val2);
+ (arg1)->slim_to_target(arg2);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_contraction_callback(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ MxPairContraction *arg2 = 0 ;
+ float arg3 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ void *argp2 = 0 ;
+ int res2 = 0 ;
+ float val3 ;
+ int ecode3 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "conx",(char *) "cost", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OOO:QSlimModel_contraction_callback",kwnames,&obj0,&obj1,&obj2)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_contraction_callback" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ res2 = SWIG_ConvertPtr(obj1, &argp2, SWIGTYPE_p_MxPairContraction, 0 | 0);
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "QSlimModel_contraction_callback" "', argument " "2"" of type '" "MxPairContraction const &""'");
+ }
+ if (!argp2) {
+ SWIG_exception_fail(SWIG_ValueError, "invalid null reference " "in method '" "QSlimModel_contraction_callback" "', argument " "2"" of type '" "MxPairContraction const &""'");
+ }
+ arg2 = reinterpret_cast< MxPairContraction * >(argp2);
+ ecode3 = SWIG_AsVal_float(obj2, &val3);
+ if (!SWIG_IsOK(ecode3)) {
+ SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "QSlimModel_contraction_callback" "', argument " "3"" of type '" "float""'");
+ }
+ arg3 = static_cast< float >(val3);
+ (arg1)->contraction_callback((MxPairContraction const &)*arg2,arg3);
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_cleanup_for_output(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyObject * obj0 = 0 ;
+
+ if (!PyArg_ParseTuple(args,(char *)"O:QSlimModel_cleanup_for_output",&obj0)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_cleanup_for_output" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ (arg1)->cleanup_for_output();
+ resultobj = SWIG_Py_Void();
+ return resultobj;
+fail:
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_outmodel(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ float (*arg2)[3] ;
+ int (*arg3)[3] ;
+ float (*arg4)[3] = (float (*)[3]) (float (*)[3])NULL ;
+ float (*arg5)[3] = (float (*)[3]) (float (*)[3])NULL ;
+ float (*arg6)[2] = (float (*)[2]) (float (*)[2])NULL ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ PyArrayObject *array2 = NULL ;
+ int expected_dims2[2] ;
+ PyArrayObject *array3 = NULL ;
+ int expected_dims3[2] ;
+ PyArrayObject *array4 = NULL ;
+ int expected_dims4[2] ;
+ PyArrayObject *array5 = NULL ;
+ int expected_dims5[2] ;
+ PyArrayObject *array6 = NULL ;
+ int expected_dims6[2] ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ PyObject * obj2 = 0 ;
+ PyObject * obj3 = 0 ;
+ PyObject * obj4 = 0 ;
+ PyObject * obj5 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "outverts",(char *) "outfaces",(char *) "outnorms",(char *) "outcolors",(char *) "outtexcoords", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"OOO|OOO:QSlimModel_outmodel",kwnames,&obj0,&obj1,&obj2,&obj3,&obj4,&obj5)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_outmodel" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+
+ if (obj1 != Py_None)
+ {
+ expected_dims2[0] = 1;
+ expected_dims2[1] = 3;
+ if (expected_dims2[0]==1) expected_dims2[0]=0;
+ if (expected_dims2[1]==1) expected_dims2[1]=0;
+ array2 = contiguous_typed_array(obj1, PyArray_FLOAT, 2, expected_dims2);
+ if (! array2) return NULL;
+ arg2 = (float (*)[3])array2->data;
+ }
+ else
+ {
+ array2 = NULL;
+ arg2 = NULL;
+ }
+
+
+ if (obj2 != Py_None)
+ {
+ expected_dims3[0] = 1;
+ expected_dims3[1] = 3;
+ if (expected_dims3[0]==1) expected_dims3[0]=0;
+ if (expected_dims3[1]==1) expected_dims3[1]=0;
+ array3 = contiguous_typed_array(obj2, PyArray_INT, 2, expected_dims3);
+ if (! array3) return NULL;
+ arg3 = (int (*)[3])array3->data;
+ }
+ else
+ {
+ array3 = NULL;
+ arg3 = NULL;
+ }
+
+ if (obj3) {
+ if (obj3 != Py_None)
+ {
+ expected_dims4[0] = 1;
+ expected_dims4[1] = 3;
+ if (expected_dims4[0]==1) expected_dims4[0]=0;
+ if (expected_dims4[1]==1) expected_dims4[1]=0;
+ array4 = contiguous_typed_array(obj3, PyArray_FLOAT, 2, expected_dims4);
+ if (! array4) return NULL;
+ arg4 = (float (*)[3])array4->data;
+ }
+ else
+ {
+ array4 = NULL;
+ arg4 = NULL;
+ }
+
+ }
+ if (obj4) {
+ if (obj4 != Py_None)
+ {
+ expected_dims5[0] = 1;
+ expected_dims5[1] = 3;
+ if (expected_dims5[0]==1) expected_dims5[0]=0;
+ if (expected_dims5[1]==1) expected_dims5[1]=0;
+ array5 = contiguous_typed_array(obj4, PyArray_FLOAT, 2, expected_dims5);
+ if (! array5) return NULL;
+ arg5 = (float (*)[3])array5->data;
+ }
+ else
+ {
+ array5 = NULL;
+ arg5 = NULL;
+ }
+
+ }
+ if (obj5) {
+ if (obj5 != Py_None)
+ {
+ expected_dims6[0] = 1;
+ expected_dims6[1] = 2;
+ if (expected_dims6[0]==1) expected_dims6[0]=0;
+ if (expected_dims6[1]==1) expected_dims6[1]=0;
+ array6 = contiguous_typed_array(obj5, PyArray_FLOAT, 2, expected_dims6);
+ if (! array6) return NULL;
+ arg6 = (float (*)[2])array6->data;
+ }
+ else
+ {
+ array6 = NULL;
+ arg6 = NULL;
+ }
+
+ }
+ (arg1)->outmodel((float (*)[3])arg2,(int (*)[3])arg3,(float (*)[3])arg4,(float (*)[3])arg5,(float (*)[2])arg6);
+ resultobj = SWIG_Py_Void();
+
+ if ( array2 )
+ Py_DECREF((PyObject *)array2);
+
+
+ if ( array3 )
+ Py_DECREF((PyObject *)array3);
+
+
+ if ( array4 )
+ Py_DECREF((PyObject *)array4);
+
+
+ if ( array5 )
+ Py_DECREF((PyObject *)array5);
+
+
+ if ( array6 )
+ Py_DECREF((PyObject *)array6);
+
+ return resultobj;
+fail:
+
+ if ( array2 )
+ Py_DECREF((PyObject *)array2);
+
+
+ if ( array3 )
+ Py_DECREF((PyObject *)array3);
+
+
+ if ( array4 )
+ Py_DECREF((PyObject *)array4);
+
+
+ if ( array5 )
+ Py_DECREF((PyObject *)array5);
+
+
+ if ( array6 )
+ Py_DECREF((PyObject *)array6);
+
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *_wrap_QSlimModel_writeSMF(PyObject *SWIGUNUSEDPARM(self), PyObject *args, PyObject *kwargs) {
+ PyObject *resultobj = 0;
+ QSlimModel *arg1 = (QSlimModel *) 0 ;
+ char *arg2 = (char *) NULL ;
+ void *argp1 = 0 ;
+ int res1 = 0 ;
+ int res2 ;
+ char *buf2 = 0 ;
+ int alloc2 = 0 ;
+ PyObject * obj0 = 0 ;
+ PyObject * obj1 = 0 ;
+ char * kwnames[] = {
+ (char *) "self",(char *) "filename", NULL
+ };
+
+ if (!PyArg_ParseTupleAndKeywords(args,kwargs,(char *)"O|O:QSlimModel_writeSMF",kwnames,&obj0,&obj1)) SWIG_fail;
+ res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_QSlimModel, 0 | 0 );
+ if (!SWIG_IsOK(res1)) {
+ SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "QSlimModel_writeSMF" "', argument " "1"" of type '" "QSlimModel *""'");
+ }
+ arg1 = reinterpret_cast< QSlimModel * >(argp1);
+ if (obj1) {
+ res2 = SWIG_AsCharPtrAndSize(obj1, &buf2, NULL, &alloc2);
+ if (!SWIG_IsOK(res2)) {
+ SWIG_exception_fail(SWIG_ArgError(res2), "in method '" "QSlimModel_writeSMF" "', argument " "2"" of type '" "char const *""'");
+ }
+ arg2 = reinterpret_cast< char * >(buf2);
+ }
+ (arg1)->writeSMF((char const *)arg2);
+ resultobj = SWIG_Py_Void();
+ if (alloc2 == SWIG_NEWOBJ) delete[] buf2;
+ return resultobj;
+fail:
+ if (alloc2 == SWIG_NEWOBJ) delete[] buf2;
+ return NULL;
+}
+
+
+SWIGINTERN PyObject *QSlimModel_swigregister(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
+ PyObject *obj;
+ if (!PyArg_ParseTuple(args,(char*)"O|swigregister", &obj)) return NULL;
+ SWIG_TypeNewClientData(SWIGTYPE_p_QSlimModel, SWIG_NewClientData(obj));
+ return SWIG_Py_Void();
+}
+
+static PyMethodDef SwigMethods[] = {
+ { (char *)"init_slim", (PyCFunction) _wrap_init_slim, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"cleanup_for_output", (PyCFunction) _wrap_cleanup_for_output, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"new_MxSMFReader", _wrap_new_MxSMFReader, METH_VARARGS, NULL},
+ { (char *)"delete_MxSMFReader", _wrap_delete_MxSMFReader, METH_VARARGS, NULL},
+ { (char *)"MxSMFReader_unparsed_hook_set", _wrap_MxSMFReader_unparsed_hook_set, METH_VARARGS, NULL},
+ { (char *)"MxSMFReader_unparsed_hook_get", _wrap_MxSMFReader_unparsed_hook_get, METH_VARARGS, NULL},
+ { (char *)"MxSMFReader_asp_store", _wrap_MxSMFReader_asp_store, METH_VARARGS, NULL},
+ { (char *)"MxSMFReader_read", (PyCFunction) _wrap_MxSMFReader_read, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"MxSMFReader_parse_line", (PyCFunction) _wrap_MxSMFReader_parse_line, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"MxSMFReader_createModel", (PyCFunction) _wrap_MxSMFReader_createModel, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"MxSMFReader_bind_normals", (PyCFunction) _wrap_MxSMFReader_bind_normals, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"MxSMFReader_bind_colors", (PyCFunction) _wrap_MxSMFReader_bind_colors, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"MxSMFReader_bind_texcoord", (PyCFunction) _wrap_MxSMFReader_bind_texcoord, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"MxSMFReader_swigregister", MxSMFReader_swigregister, METH_VARARGS, NULL},
+ { (char *)"new_MxSMFWriter", _wrap_new_MxSMFWriter, METH_VARARGS, NULL},
+ { (char *)"MxSMFWriter_vertex_annotate_set", _wrap_MxSMFWriter_vertex_annotate_set, METH_VARARGS, NULL},
+ { (char *)"MxSMFWriter_vertex_annotate_get", _wrap_MxSMFWriter_vertex_annotate_get, METH_VARARGS, NULL},
+ { (char *)"MxSMFWriter_face_annotate_set", _wrap_MxSMFWriter_face_annotate_set, METH_VARARGS, NULL},
+ { (char *)"MxSMFWriter_face_annotate_get", _wrap_MxSMFWriter_face_annotate_get, METH_VARARGS, NULL},
+ { (char *)"MxSMFWriter_write", (PyCFunction) _wrap_MxSMFWriter_write, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"MxSMFWriter_writeSMF", (PyCFunction) _wrap_MxSMFWriter_writeSMF, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"delete_MxSMFWriter", _wrap_delete_MxSMFWriter, METH_VARARGS, NULL},
+ { (char *)"MxSMFWriter_swigregister", MxSMFWriter_swigregister, METH_VARARGS, NULL},
+ { (char *)"new_ContractionCallback", _wrap_new_ContractionCallback, METH_VARARGS, NULL},
+ { (char *)"delete_ContractionCallback", _wrap_delete_ContractionCallback, METH_VARARGS, NULL},
+ { (char *)"ContractionCallback_swigregister", ContractionCallback_swigregister, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_history_set", _wrap_QSlimModel_history_set, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_history_get", _wrap_QSlimModel_history_get, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_smfReader_set", _wrap_QSlimModel_smfReader_set, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_smfReader_get", _wrap_QSlimModel_smfReader_get, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_model_set", _wrap_QSlimModel_model_set, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_model_get", _wrap_QSlimModel_model_get, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_slim_set", _wrap_QSlimModel_slim_set, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_slim_get", _wrap_QSlimModel_slim_get, METH_VARARGS, NULL},
+ { (char *)"new_QSlimModel", (PyCFunction) _wrap_new_QSlimModel, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"delete_QSlimModel", _wrap_delete_QSlimModel, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_clean_history", _wrap_QSlimModel_clean_history, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_bind_normals", (PyCFunction) _wrap_QSlimModel_bind_normals, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"QSlimModel_bind_colors", (PyCFunction) _wrap_QSlimModel_bind_colors, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"QSlimModel_bind_texcoord", (PyCFunction) _wrap_QSlimModel_bind_texcoord, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"QSlimModel_get_color_binding", _wrap_QSlimModel_get_color_binding, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_get_texcoord_binding", _wrap_QSlimModel_get_texcoord_binding, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_get_normal_binding", _wrap_QSlimModel_get_normal_binding, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_get_vert_count", _wrap_QSlimModel_get_vert_count, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_get_face_count", _wrap_QSlimModel_get_face_count, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_num_valid_faces", _wrap_QSlimModel_num_valid_faces, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_num_valid_verts", _wrap_QSlimModel_num_valid_verts, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_slim_to_target", (PyCFunction) _wrap_QSlimModel_slim_to_target, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"QSlimModel_contraction_callback", (PyCFunction) _wrap_QSlimModel_contraction_callback, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"QSlimModel_cleanup_for_output", _wrap_QSlimModel_cleanup_for_output, METH_VARARGS, NULL},
+ { (char *)"QSlimModel_outmodel", (PyCFunction) _wrap_QSlimModel_outmodel, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"QSlimModel_writeSMF", (PyCFunction) _wrap_QSlimModel_writeSMF, METH_VARARGS | METH_KEYWORDS, NULL},
+ { (char *)"QSlimModel_swigregister", QSlimModel_swigregister, METH_VARARGS, NULL},
+ { NULL, NULL, 0, NULL }
+};
+
+
+/* -------- TYPE CONVERSION AND EQUIVALENCE RULES (BEGIN) -------- */
+
+static void *_p_QSlimModelTo_p_ContractionCallback(void *x) {
+ return (void *)((ContractionCallback *) ((QSlimModel *) x));
+}
+static swig_type_info _swigt__p_ContractionCallback = {"_p_ContractionCallback", "ContractionCallback *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_MxAspStore = {"_p_MxAspStore", "MxAspStore *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_MxEdgeQSlim = {"_p_MxEdgeQSlim", "MxEdgeQSlim *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_MxPairContraction = {"_p_MxPairContraction", "MxPairContraction *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_MxSMFReader = {"_p_MxSMFReader", "MxSMFReader *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_MxSMFWriter = {"_p_MxSMFWriter", "MxSMFWriter *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_MxStdModel = {"_p_MxStdModel", "MxStdModel *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_QSlimLog = {"_p_QSlimLog", "QSlimLog *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_QSlimModel = {"_p_QSlimModel", "QSlimModel *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_a_2__float = {"_p_a_2__float", "float (*)[2]", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_a_3__float = {"_p_a_3__float", "float (*)[3]", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_a_3__int = {"_p_a_3__int", "int (*)[3]", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_char = {"_p_char", "char *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_f_p_char_int_a___p_char_r_MxStdModel__bool = {"_p_f_p_char_int_a___p_char_r_MxStdModel__bool", "bool (*)(char *,int,char *[],MxStdModel &)", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void = {"_p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void", "void (*)(ostream &,MxStdModel const &,MxVertexID)", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_int = {"_p_int", "int *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_istream = {"_p_istream", "istream *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_ostream = {"_p_ostream", "ostream *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_read_cmd = {"_p_read_cmd", "read_cmd *", 0, 0, (void*)0, 0};
+static swig_type_info _swigt__p_unsigned_int = {"_p_unsigned_int", "unsigned int *|uint *", 0, 0, (void*)0, 0};
+
+static swig_type_info *swig_type_initial[] = {
+ &_swigt__p_ContractionCallback,
+ &_swigt__p_MxAspStore,
+ &_swigt__p_MxEdgeQSlim,
+ &_swigt__p_MxPairContraction,
+ &_swigt__p_MxSMFReader,
+ &_swigt__p_MxSMFWriter,
+ &_swigt__p_MxStdModel,
+ &_swigt__p_QSlimLog,
+ &_swigt__p_QSlimModel,
+ &_swigt__p_a_2__float,
+ &_swigt__p_a_3__float,
+ &_swigt__p_a_3__int,
+ &_swigt__p_char,
+ &_swigt__p_f_p_char_int_a___p_char_r_MxStdModel__bool,
+ &_swigt__p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void,
+ &_swigt__p_int,
+ &_swigt__p_istream,
+ &_swigt__p_ostream,
+ &_swigt__p_read_cmd,
+ &_swigt__p_unsigned_int,
+};
+
+static swig_cast_info _swigc__p_ContractionCallback[] = { {&_swigt__p_QSlimModel, _p_QSlimModelTo_p_ContractionCallback, 0, 0}, {&_swigt__p_ContractionCallback, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_MxAspStore[] = { {&_swigt__p_MxAspStore, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_MxEdgeQSlim[] = { {&_swigt__p_MxEdgeQSlim, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_MxPairContraction[] = { {&_swigt__p_MxPairContraction, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_MxSMFReader[] = { {&_swigt__p_MxSMFReader, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_MxSMFWriter[] = { {&_swigt__p_MxSMFWriter, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_MxStdModel[] = { {&_swigt__p_MxStdModel, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_QSlimLog[] = { {&_swigt__p_QSlimLog, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_QSlimModel[] = { {&_swigt__p_QSlimModel, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_a_2__float[] = { {&_swigt__p_a_2__float, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_a_3__float[] = { {&_swigt__p_a_3__float, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_a_3__int[] = { {&_swigt__p_a_3__int, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_char[] = { {&_swigt__p_char, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_f_p_char_int_a___p_char_r_MxStdModel__bool[] = { {&_swigt__p_f_p_char_int_a___p_char_r_MxStdModel__bool, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void[] = { {&_swigt__p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_int[] = { {&_swigt__p_int, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_istream[] = { {&_swigt__p_istream, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_ostream[] = { {&_swigt__p_ostream, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_read_cmd[] = { {&_swigt__p_read_cmd, 0, 0, 0},{0, 0, 0, 0}};
+static swig_cast_info _swigc__p_unsigned_int[] = { {&_swigt__p_unsigned_int, 0, 0, 0},{0, 0, 0, 0}};
+
+static swig_cast_info *swig_cast_initial[] = {
+ _swigc__p_ContractionCallback,
+ _swigc__p_MxAspStore,
+ _swigc__p_MxEdgeQSlim,
+ _swigc__p_MxPairContraction,
+ _swigc__p_MxSMFReader,
+ _swigc__p_MxSMFWriter,
+ _swigc__p_MxStdModel,
+ _swigc__p_QSlimLog,
+ _swigc__p_QSlimModel,
+ _swigc__p_a_2__float,
+ _swigc__p_a_3__float,
+ _swigc__p_a_3__int,
+ _swigc__p_char,
+ _swigc__p_f_p_char_int_a___p_char_r_MxStdModel__bool,
+ _swigc__p_f_r_ostream_r_q_const__MxStdModel_MxVertexID__void,
+ _swigc__p_int,
+ _swigc__p_istream,
+ _swigc__p_ostream,
+ _swigc__p_read_cmd,
+ _swigc__p_unsigned_int,
+};
+
+
+/* -------- TYPE CONVERSION AND EQUIVALENCE RULES (END) -------- */
+
+static swig_const_info swig_const_table[] = {
+{0, 0, 0, 0.0, 0, 0}};
+
+#ifdef __cplusplus
+}
+#endif
+/* -----------------------------------------------------------------------------
+ * Type initialization:
+ * This problem is tough by the requirement that no dynamic
+ * memory is used. Also, since swig_type_info structures store pointers to
+ * swig_cast_info structures and swig_cast_info structures store pointers back
+ * to swig_type_info structures, we need some lookup code at initialization.
+ * The idea is that swig generates all the structures that are needed.
+ * The runtime then collects these partially filled structures.
+ * The SWIG_InitializeModule function takes these initial arrays out of
+ * swig_module, and does all the lookup, filling in the swig_module.types
+ * array with the correct data and linking the correct swig_cast_info
+ * structures together.
+ *
+ * The generated swig_type_info structures are assigned staticly to an initial
+ * array. We just loop through that array, and handle each type individually.
+ * First we lookup if this type has been already loaded, and if so, use the
+ * loaded structure instead of the generated one. Then we have to fill in the
+ * cast linked list. The cast data is initially stored in something like a
+ * two-dimensional array. Each row corresponds to a type (there are the same
+ * number of rows as there are in the swig_type_initial array). Each entry in
+ * a column is one of the swig_cast_info structures for that type.
+ * The cast_initial array is actually an array of arrays, because each row has
+ * a variable number of columns. So to actually build the cast linked list,
+ * we find the array of casts associated with the type, and loop through it
+ * adding the casts to the list. The one last trick we need to do is making
+ * sure the type pointer in the swig_cast_info struct is correct.
+ *
+ * First off, we lookup the cast->type name to see if it is already loaded.
+ * There are three cases to handle:
+ * 1) If the cast->type has already been loaded AND the type we are adding
+ * casting info to has not been loaded (it is in this module), THEN we
+ * replace the cast->type pointer with the type pointer that has already
+ * been loaded.
+ * 2) If BOTH types (the one we are adding casting info to, and the
+ * cast->type) are loaded, THEN the cast info has already been loaded by
+ * the previous module so we just ignore it.
+ * 3) Finally, if cast->type has not already been loaded, then we add that
+ * swig_cast_info to the linked list (because the cast->type) pointer will
+ * be correct.
+ * ----------------------------------------------------------------------------- */
+
+#ifdef __cplusplus
+extern "C" {
+#if 0
+} /* c-mode */
+#endif
+#endif
+
+#if 0
+#define SWIGRUNTIME_DEBUG
+#endif
+
+
+SWIGRUNTIME void
+SWIG_InitializeModule(void *clientdata) {
+ size_t i;
+ swig_module_info *module_head, *iter;
+ int found;
+
+ clientdata = clientdata;
+
+ /* check to see if the circular list has been setup, if not, set it up */
+ if (swig_module.next==0) {
+ /* Initialize the swig_module */
+ swig_module.type_initial = swig_type_initial;
+ swig_module.cast_initial = swig_cast_initial;
+ swig_module.next = &swig_module;
+ }
+
+ /* Try and load any already created modules */
+ module_head = SWIG_GetModule(clientdata);
+ if (!module_head) {
+ /* This is the first module loaded for this interpreter */
+ /* so set the swig module into the interpreter */
+ SWIG_SetModule(clientdata, &swig_module);
+ module_head = &swig_module;
+ } else {
+ /* the interpreter has loaded a SWIG module, but has it loaded this one? */
+ found=0;
+ iter=module_head;
+ do {
+ if (iter==&swig_module) {
+ found=1;
+ break;
+ }
+ iter=iter->next;
+ } while (iter!= module_head);
+
+ /* if the is found in the list, then all is done and we may leave */
+ if (found) return;
+ /* otherwise we must add out module into the list */
+ swig_module.next = module_head->next;
+ module_head->next = &swig_module;
+ }
+
+ /* Now work on filling in swig_module.types */
+#ifdef SWIGRUNTIME_DEBUG
+ printf("SWIG_InitializeModule: size %d\n", swig_module.size);
+#endif
+ for (i = 0; i < swig_module.size; ++i) {
+ swig_type_info *type = 0;
+ swig_type_info *ret;
+ swig_cast_info *cast;
+
+#ifdef SWIGRUNTIME_DEBUG
+ printf("SWIG_InitializeModule: type %d %s\n", i, swig_module.type_initial[i]->name);
+#endif
+
+ /* if there is another module already loaded */
+ if (swig_module.next != &swig_module) {
+ type = SWIG_MangledTypeQueryModule(swig_module.next, &swig_module, swig_module.type_initial[i]->name);
+ }
+ if (type) {
+ /* Overwrite clientdata field */
+#ifdef SWIGRUNTIME_DEBUG
+ printf("SWIG_InitializeModule: found type %s\n", type->name);
+#endif
+ if (swig_module.type_initial[i]->clientdata) {
+ type->clientdata = swig_module.type_initial[i]->clientdata;
+#ifdef SWIGRUNTIME_DEBUG
+ printf("SWIG_InitializeModule: found and overwrite type %s \n", type->name);
+#endif
+ }
+ } else {
+ type = swig_module.type_initial[i];
+ }
+
+ /* Insert casting types */
+ cast = swig_module.cast_initial[i];
+ while (cast->type) {
+ /* Don't need to add information already in the list */
+ ret = 0;
+#ifdef SWIGRUNTIME_DEBUG
+ printf("SWIG_InitializeModule: look cast %s\n", cast->type->name);
+#endif
+ if (swig_module.next != &swig_module) {
+ ret = SWIG_MangledTypeQueryModule(swig_module.next, &swig_module, cast->type->name);
+#ifdef SWIGRUNTIME_DEBUG
+ if (ret) printf("SWIG_InitializeModule: found cast %s\n", ret->name);
+#endif
+ }
+ if (ret) {
+ if (type == swig_module.type_initial[i]) {
+#ifdef SWIGRUNTIME_DEBUG
+ printf("SWIG_InitializeModule: skip old type %s\n", ret->name);
+#endif
+ cast->type = ret;
+ ret = 0;
+ } else {
+ /* Check for casting already in the list */
+ swig_cast_info *ocast = SWIG_TypeCheck(ret->name, type);
+#ifdef SWIGRUNTIME_DEBUG
+ if (ocast) printf("SWIG_InitializeModule: skip old cast %s\n", ret->name);
+#endif
+ if (!ocast) ret = 0;
+ }
+ }
+
+ if (!ret) {
+#ifdef SWIGRUNTIME_DEBUG
+ printf("SWIG_InitializeModule: adding cast %s\n", cast->type->name);
+#endif
+ if (type->cast) {
+ type->cast->prev = cast;
+ cast->next = type->cast;
+ }
+ type->cast = cast;
+ }
+ cast++;
+ }
+ /* Set entry in modules->types array equal to the type */
+ swig_module.types[i] = type;
+ }
+ swig_module.types[i] = 0;
+
+#ifdef SWIGRUNTIME_DEBUG
+ printf("**** SWIG_InitializeModule: Cast List ******\n");
+ for (i = 0; i < swig_module.size; ++i) {
+ int j = 0;
+ swig_cast_info *cast = swig_module.cast_initial[i];
+ printf("SWIG_InitializeModule: type %d %s\n", i, swig_module.type_initial[i]->name);
+ while (cast->type) {
+ printf("SWIG_InitializeModule: cast type %s\n", cast->type->name);
+ cast++;
+ ++j;
+ }
+ printf("---- Total casts: %d\n",j);
+ }
+ printf("**** SWIG_InitializeModule: Cast List ******\n");
+#endif
+}
+
+/* This function will propagate the clientdata field of type to
+* any new swig_type_info structures that have been added into the list
+* of equivalent types. It is like calling
+* SWIG_TypeClientData(type, clientdata) a second time.
+*/
+SWIGRUNTIME void
+SWIG_PropagateClientData(void) {
+ size_t i;
+ swig_cast_info *equiv;
+ static int init_run = 0;
+
+ if (init_run) return;
+ init_run = 1;
+
+ for (i = 0; i < swig_module.size; i++) {
+ if (swig_module.types[i]->clientdata) {
+ equiv = swig_module.types[i]->cast;
+ while (equiv) {
+ if (!equiv->converter) {
+ if (equiv->type && !equiv->type->clientdata)
+ SWIG_TypeClientData(equiv->type, swig_module.types[i]->clientdata);
+ }
+ equiv = equiv->next;
+ }
+ }
+ }
+}
+
+#ifdef __cplusplus
+#if 0
+{
+ /* c-mode */
+#endif
+}
+#endif
+
+
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+ /* Python-specific SWIG API */
+#define SWIG_newvarlink() SWIG_Python_newvarlink()
+#define SWIG_addvarlink(p, name, get_attr, set_attr) SWIG_Python_addvarlink(p, name, get_attr, set_attr)
+#define SWIG_InstallConstants(d, constants) SWIG_Python_InstallConstants(d, constants)
+
+ /* -----------------------------------------------------------------------------
+ * global variable support code.
+ * ----------------------------------------------------------------------------- */
+
+ typedef struct swig_globalvar {
+ char *name; /* Name of global variable */
+ PyObject *(*get_attr)(void); /* Return the current value */
+ int (*set_attr)(PyObject *); /* Set the value */
+ struct swig_globalvar *next;
+ } swig_globalvar;
+
+ typedef struct swig_varlinkobject {
+ PyObject_HEAD
+ swig_globalvar *vars;
+ } swig_varlinkobject;
+
+ SWIGINTERN PyObject *
+ swig_varlink_repr(swig_varlinkobject *SWIGUNUSEDPARM(v)) {
+ return PyString_FromString("<Swig global variables>");
+ }
+
+ SWIGINTERN PyObject *
+ swig_varlink_str(swig_varlinkobject *v) {
+ PyObject *str = PyString_FromString("(");
+ swig_globalvar *var;
+ for (var = v->vars; var; var=var->next) {
+ PyString_ConcatAndDel(&str,PyString_FromString(var->name));
+ if (var->next) PyString_ConcatAndDel(&str,PyString_FromString(", "));
+ }
+ PyString_ConcatAndDel(&str,PyString_FromString(")"));
+ return str;
+ }
+
+ SWIGINTERN int
+ swig_varlink_print(swig_varlinkobject *v, FILE *fp, int SWIGUNUSEDPARM(flags)) {
+ PyObject *str = swig_varlink_str(v);
+ fprintf(fp,"Swig global variables ");
+ fprintf(fp,"%s\n", PyString_AsString(str));
+ Py_DECREF(str);
+ return 0;
+ }
+
+ SWIGINTERN void
+ swig_varlink_dealloc(swig_varlinkobject *v) {
+ swig_globalvar *var = v->vars;
+ while (var) {
+ swig_globalvar *n = var->next;
+ free(var->name);
+ free(var);
+ var = n;
+ }
+ }
+
+ SWIGINTERN PyObject *
+ swig_varlink_getattr(swig_varlinkobject *v, char *n) {
+ PyObject *res = NULL;
+ swig_globalvar *var = v->vars;
+ while (var) {
+ if (strcmp(var->name,n) == 0) {
+ res = (*var->get_attr)();
+ break;
+ }
+ var = var->next;
+ }
+ if (res == NULL && !PyErr_Occurred()) {
+ PyErr_SetString(PyExc_NameError,"Unknown C global variable");
+ }
+ return res;
+ }
+
+ SWIGINTERN int
+ swig_varlink_setattr(swig_varlinkobject *v, char *n, PyObject *p) {
+ int res = 1;
+ swig_globalvar *var = v->vars;
+ while (var) {
+ if (strcmp(var->name,n) == 0) {
+ res = (*var->set_attr)(p);
+ break;
+ }
+ var = var->next;
+ }
+ if (res == 1 && !PyErr_Occurred()) {
+ PyErr_SetString(PyExc_NameError,"Unknown C global variable");
+ }
+ return res;
+ }
+
+ SWIGINTERN PyTypeObject*
+ swig_varlink_type(void) {
+ static char varlink__doc__[] = "Swig var link object";
+ static PyTypeObject varlink_type;
+ static int type_init = 0;
+ if (!type_init) {
+ const PyTypeObject tmp
+ = {
+ PyObject_HEAD_INIT(NULL)
+ 0, /* Number of items in variable part (ob_size) */
+ (char *)"swigvarlink", /* Type name (tp_name) */
+ sizeof(swig_varlinkobject), /* Basic size (tp_basicsize) */
+ 0, /* Itemsize (tp_itemsize) */
+ (destructor) swig_varlink_dealloc, /* Deallocator (tp_dealloc) */
+ (printfunc) swig_varlink_print, /* Print (tp_print) */
+ (getattrfunc) swig_varlink_getattr, /* get attr (tp_getattr) */
+ (setattrfunc) swig_varlink_setattr, /* Set attr (tp_setattr) */
+ 0, /* tp_compare */
+ (reprfunc) swig_varlink_repr, /* tp_repr */
+ 0, /* tp_as_number */
+ 0, /* tp_as_sequence */
+ 0, /* tp_as_mapping */
+ 0, /* tp_hash */
+ 0, /* tp_call */
+ (reprfunc)swig_varlink_str, /* tp_str */
+ 0, /* tp_getattro */
+ 0, /* tp_setattro */
+ 0, /* tp_as_buffer */
+ 0, /* tp_flags */
+ varlink__doc__, /* tp_doc */
+ 0, /* tp_traverse */
+ 0, /* tp_clear */
+ 0, /* tp_richcompare */
+ 0, /* tp_weaklistoffset */
+#if PY_VERSION_HEX >= 0x02020000
+ 0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* tp_iter -> tp_weaklist */
+#endif
+#if PY_VERSION_HEX >= 0x02030000
+ 0, /* tp_del */
+#endif
+#ifdef COUNT_ALLOCS
+ 0,0,0,0 /* tp_alloc -> tp_next */
+#endif
+ };
+ varlink_type = tmp;
+ varlink_type.ob_type = &PyType_Type;
+ type_init = 1;
+ }
+ return &varlink_type;
+ }
+
+ /* Create a variable linking object for use later */
+ SWIGINTERN PyObject *
+ SWIG_Python_newvarlink(void) {
+ swig_varlinkobject *result = PyObject_NEW(swig_varlinkobject, swig_varlink_type());
+ if (result) {
+ result->vars = 0;
+ }
+ return ((PyObject*) result);
+ }
+
+ SWIGINTERN void
+ SWIG_Python_addvarlink(PyObject *p, char *name, PyObject *(*get_attr)(void), int (*set_attr)(PyObject *p)) {
+ swig_varlinkobject *v = (swig_varlinkobject *) p;
+ swig_globalvar *gv = (swig_globalvar *) malloc(sizeof(swig_globalvar));
+ if (gv) {
+ size_t size = strlen(name)+1;
+ gv->name = (char *)malloc(size);
+ if (gv->name) {
+ strncpy(gv->name,name,size);
+ gv->get_attr = get_attr;
+ gv->set_attr = set_attr;
+ gv->next = v->vars;
+ }
+ }
+ v->vars = gv;
+ }
+
+ SWIGINTERN PyObject *
+ SWIG_globals(void) {
+ static PyObject *_SWIG_globals = 0;
+ if (!_SWIG_globals) _SWIG_globals = SWIG_newvarlink();
+ return _SWIG_globals;
+ }
+
+ /* -----------------------------------------------------------------------------
+ * constants/methods manipulation
+ * ----------------------------------------------------------------------------- */
+
+ /* Install Constants */
+ SWIGINTERN void
+ SWIG_Python_InstallConstants(PyObject *d, swig_const_info constants[]) {
+ PyObject *obj = 0;
+ size_t i;
+ for (i = 0; constants[i].type; ++i) {
+ switch(constants[i].type) {
+ case SWIG_PY_POINTER:
+ obj = SWIG_NewPointerObj(constants[i].pvalue, *(constants[i]).ptype,0);
+ break;
+ case SWIG_PY_BINARY:
+ obj = SWIG_NewPackedObj(constants[i].pvalue, constants[i].lvalue, *(constants[i].ptype));
+ break;
+ default:
+ obj = 0;
+ break;
+ }
+ if (obj) {
+ PyDict_SetItemString(d, constants[i].name, obj);
+ Py_DECREF(obj);
+ }
+ }
+ }
+
+ /* -----------------------------------------------------------------------------*/
+ /* Fix SwigMethods to carry the callback ptrs when needed */
+ /* -----------------------------------------------------------------------------*/
+
+ SWIGINTERN void
+ SWIG_Python_FixMethods(PyMethodDef *methods,
+ swig_const_info *const_table,
+ swig_type_info **types,
+ swig_type_info **types_initial) {
+ size_t i;
+ for (i = 0; methods[i].ml_name; ++i) {
+ const char *c = methods[i].ml_doc;
+ if (c && (c = strstr(c, "swig_ptr: "))) {
+ int j;
+ swig_const_info *ci = 0;
+ const char *name = c + 10;
+ for (j = 0; const_table[j].type; ++j) {
+ if (strncmp(const_table[j].name, name,
+ strlen(const_table[j].name)) == 0) {
+ ci = &(const_table[j]);
+ break;
+ }
+ }
+ if (ci) {
+ size_t shift = (ci->ptype) - types;
+ swig_type_info *ty = types_initial[shift];
+ size_t ldoc = (c - methods[i].ml_doc);
+ size_t lptr = strlen(ty->name)+2*sizeof(void*)+2;
+ char *ndoc = (char*)malloc(ldoc + lptr + 10);
+ if (ndoc) {
+ char *buff = ndoc;
+ void *ptr = (ci->type == SWIG_PY_POINTER) ? ci->pvalue : 0;
+ if (ptr) {
+ strncpy(buff, methods[i].ml_doc, ldoc);
+ buff += ldoc;
+ strncpy(buff, "swig_ptr: ", 10);
+ buff += 10;
+ SWIG_PackVoidPtr(buff, ptr, ty->name, lptr);
+ methods[i].ml_doc = ndoc;
+ }
+ }
+ }
+ }
+ }
+ }
+
+#ifdef __cplusplus
+}
+#endif
+
+/* -----------------------------------------------------------------------------*
+ * Partial Init method
+ * -----------------------------------------------------------------------------*/
+
+#ifdef __cplusplus
+extern "C"
+#endif
+SWIGEXPORT void SWIG_init(void) {
+ PyObject *m, *d;
+
+ /* Fix SwigMethods to carry the callback ptrs when needed */
+ SWIG_Python_FixMethods(SwigMethods, swig_const_table, swig_types, swig_type_initial);
+
+ m = Py_InitModule((char *) SWIG_name, SwigMethods);
+ d = PyModule_GetDict(m);
+
+ SWIG_InitializeModule(0);
+ SWIG_InstallConstants(d,swig_const_table);
+
+
+
+ import_array(); /* load the Numeric PyCObjects */
+
+}
+
Property changes on: trunk/packages/mgltools/qslimlib/trunk/debian
___________________________________________________________________
Name: mergeWithUpstream
+ 1
Added: trunk/packages/mgltools/qslimlib/trunk/debian/changelog
===================================================================
--- trunk/packages/mgltools/qslimlib/trunk/debian/changelog (rev 0)
+++ trunk/packages/mgltools/qslimlib/trunk/debian/changelog 2007-12-21 23:32:37 UTC (rev 964)
@@ -0,0 +1,6 @@
+qslimlib (1.5.0-1) unstable; urgency=low
+
+ * Initial release.
+
+ -- Steffen Moeller <moeller at debian.org> Thu, 20 Dec 2007 16:27:31 +0100
+
Added: trunk/packages/mgltools/qslimlib/trunk/debian/compat
===================================================================
--- trunk/packages/mgltools/qslimlib/trunk/debian/compat (rev 0)
+++ trunk/packages/mgltools/qslimlib/trunk/debian/compat 2007-12-21 23:32:37 UTC (rev 964)
@@ -0,0 +1 @@
+5
Added: trunk/packages/mgltools/qslimlib/trunk/debian/control
===================================================================
--- trunk/packages/mgltools/qslimlib/trunk/debian/control (rev 0)
+++ trunk/packages/mgltools/qslimlib/trunk/debian/control 2007-12-21 23:32:37 UTC (rev 964)
@@ -0,0 +1,15 @@
+Source: qslimlib
+Section: non-free/science
+Priority: optional
+Maintainer: Steffen Moeller <moeller at debian.org>
+Build-Depends: debhelper (>= 5.0.38), python-central (>= 0.5.6), cdbs (>= 0.4.49), python-all-dev (>= 2.3.5-11), swig (>= 1.3.20)
+Standards-Version: 3.7.2
+XS-Python-Version: 2.4,2.5
+Homepage: http://mgltools.scripps.edu/
+
+Package: mgltools-qslimlib
+XB-Python-Version: ${python:Versions}
+Architecture: all
+Depends: ${shlibs:Depends}, ${misc:Depends}, ${python:Depends}
+Description: QSlim library extension module
+ The library is needed by mgltools-autodocktools at runtime.
Added: trunk/packages/mgltools/qslimlib/trunk/debian/copyright
===================================================================
--- trunk/packages/mgltools/qslimlib/trunk/debian/copyright (rev 0)
+++ trunk/packages/mgltools/qslimlib/trunk/debian/copyright 2007-12-21 23:32:37 UTC (rev 964)
@@ -0,0 +1,46 @@
+This package was debianized by Steffen Moeller <moeller at debian.org> on
+Thu, 20 Dec 2007 16:27:31 +0100.
+
+It was downloaded from http://mdltools.scripps.edu
+
+Upstream Authors:
+
+ Molecular Graphics Laboratory <mgltools at scripps.edu>
+
+Copyright:
+
+ THE SCRIPPS RESEARCH INSTITUTE, <sanner at scripps.edu>
+
+License:
+
+ PLEASE READ THIS DOCUMENT CAREFULLY. IF YOU AGREE WITH THE TERMS
+ AND CONDITIONS OF THIS LICENSE AGREEMENT, AND WISH TO RECEIVE AND
+ USE THIS SOFTWARE.
+
+ 1. Grant Of Limited License; Software Use Restrictions. The programs
+ received by you will be used only for NON COMMERCIAL SCIENTIFIC
+ RESEARCH. This license is issued to you as an individual. For
+ institution wide use or commercial use of the software you will
+ have to follow the official registration procedure. To do so you can
+ contact us by e-mail (sanner at scripps.edu), by mail (Michel Sanner,
+ TSRI, Molecular Biology Department, MB5, 10666 North Torrey Pines
+ Road, 92037 La Jolla) or by fax (858) 784-2860.
+
+ Some of the components have their own licensing specificities
+ that are described in the README file that is generated when you
+ download the software. We request that you read the content of
+ this file and comply to the requirements.
+ 2. Copying Restrictions. You will not sell or otherwise transfer these
+ programs or derivatives to any other party, whether with or
+ without consideration, for any purpose.
+ 3. Ownership of Software. You will not obtain, and will not attempt to
+ obtain copyright coverage thereon without the express purpose
+ written consent of The Scripps Research Institute.
+ 4. Limitation Of Liability. You will hold harmless from all or any expenses
+ you may incur as a result of or arising from your use, direct or indirect,
+ of these materials. You understand that no other right or license
+ to this program or its derivatives is granted or implied as a
+ result of our transmission of same to you.
+
+The Debian packaging is (C) 2007, Steffen Moeller <moeller at debian.org> and
+is licensed under the GPL, see `/usr/share/common-licenses/GPL'.
Added: trunk/packages/mgltools/qslimlib/trunk/debian/pycompat
===================================================================
--- trunk/packages/mgltools/qslimlib/trunk/debian/pycompat (rev 0)
+++ trunk/packages/mgltools/qslimlib/trunk/debian/pycompat 2007-12-21 23:32:37 UTC (rev 964)
@@ -0,0 +1 @@
+2
Added: trunk/packages/mgltools/qslimlib/trunk/debian/rules
===================================================================
--- trunk/packages/mgltools/qslimlib/trunk/debian/rules (rev 0)
+++ trunk/packages/mgltools/qslimlib/trunk/debian/rules 2007-12-21 23:32:37 UTC (rev 964)
@@ -0,0 +1,20 @@
+#!/usr/bin/make -f
+# -*- makefile -*-
+# Sample debian/rules that uses debhelper.
+# This file was originally written by Joey Hess and Craig Small.
+# As a special exception, when this file is copied by dh-make into a
+# dh-make output file, you may use that output file without restriction.
+# This special exception was added by Craig Small in version 0.37 of dh-make.
+
+# Uncomment this to turn on verbose mode.
+#export DH_VERBOSE=1
+
+export DEB_PYTHON_SYSTEM=pycentral
+
+include /usr/share/cdbs/1/rules/debhelper.mk
+include /usr/share/cdbs/1/class/python-distutils.mk
+#include /usr/share/cdbs/1/rules/simple-patchsys.mk
+
+clean::
+ find . -name CVS -a -type d| xargs -r rm -r
+ rm -rf build build-stamp debian/Pmv
Property changes on: trunk/packages/mgltools/qslimlib/trunk/debian/rules
___________________________________________________________________
Name: svn:executable
+ *
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