i2c  1.4.2
RoadNarrows Robotics I2C Package
i2ccore_wrap.c
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1 /* ----------------------------------------------------------------------------
2  * This file was automatically generated by SWIG (http://www.swig.org).
3  * Version 3.0.8
4  *
5  * This file is not intended to be easily readable and contains a number of
6  * coding conventions designed to improve portability and efficiency. Do not make
7  * changes to this file unless you know what you are doing--modify the SWIG
8  * interface file instead.
9  * ----------------------------------------------------------------------------- */
10 
11 /*! \file
12  * \brief Swig generated core wrapper c file.
13  */
14 
15 
16 
17 #ifndef SWIGPYTHON
18 #define SWIGPYTHON
19 #endif
20 
21 #define SWIG_PYTHON_DIRECTOR_NO_VTABLE
22 
23 /* -----------------------------------------------------------------------------
24  * This section contains generic SWIG labels for method/variable
25  * declarations/attributes, and other compiler dependent labels.
26  * ----------------------------------------------------------------------------- */
27 
28 /* template workaround for compilers that cannot correctly implement the C++ standard */
29 #ifndef SWIGTEMPLATEDISAMBIGUATOR
30 # if defined(__SUNPRO_CC) && (__SUNPRO_CC <= 0x560)
31 # define SWIGTEMPLATEDISAMBIGUATOR template
32 # elif defined(__HP_aCC)
33 /* Needed even with `aCC -AA' when `aCC -V' reports HP ANSI C++ B3910B A.03.55 */
34 /* If we find a maximum version that requires this, the test would be __HP_aCC <= 35500 for A.03.55 */
35 # define SWIGTEMPLATEDISAMBIGUATOR template
36 # else
37 # define SWIGTEMPLATEDISAMBIGUATOR
38 # endif
39 #endif
40 
41 /* inline attribute */
42 #ifndef SWIGINLINE
43 # if defined(__cplusplus) || (defined(__GNUC__) && !defined(__STRICT_ANSI__))
44 # define SWIGINLINE inline
45 # else
46 # define SWIGINLINE
47 # endif
48 #endif
49 
50 /* attribute recognised by some compilers to avoid 'unused' warnings */
51 #ifndef SWIGUNUSED
52 # if defined(__GNUC__)
53 # if !(defined(__cplusplus)) || (__GNUC__ > 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4))
54 # define SWIGUNUSED __attribute__ ((__unused__))
55 # else
56 # define SWIGUNUSED
57 # endif
58 # elif defined(__ICC)
59 # define SWIGUNUSED __attribute__ ((__unused__))
60 # else
61 # define SWIGUNUSED
62 # endif
63 #endif
64 
65 #ifndef SWIG_MSC_UNSUPPRESS_4505
66 # if defined(_MSC_VER)
67 # pragma warning(disable : 4505) /* unreferenced local function has been removed */
68 # endif
69 #endif
70 
71 #ifndef SWIGUNUSEDPARM
72 # ifdef __cplusplus
73 # define SWIGUNUSEDPARM(p)
74 # else
75 # define SWIGUNUSEDPARM(p) p SWIGUNUSED
76 # endif
77 #endif
78 
79 /* internal SWIG method */
80 #ifndef SWIGINTERN
81 # define SWIGINTERN static SWIGUNUSED
82 #endif
83 
84 /* internal inline SWIG method */
85 #ifndef SWIGINTERNINLINE
86 # define SWIGINTERNINLINE SWIGINTERN SWIGINLINE
87 #endif
88 
89 /* exporting methods */
90 #if (__GNUC__ >= 4) || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4)
91 # ifndef GCC_HASCLASSVISIBILITY
92 # define GCC_HASCLASSVISIBILITY
93 # endif
94 #endif
95 
96 #ifndef SWIGEXPORT
97 # if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__)
98 # if defined(STATIC_LINKED)
99 # define SWIGEXPORT
100 # else
101 # define SWIGEXPORT __declspec(dllexport)
102 # endif
103 # else
104 # if defined(__GNUC__) && defined(GCC_HASCLASSVISIBILITY)
105 # define SWIGEXPORT __attribute__ ((visibility("default")))
106 # else
107 # define SWIGEXPORT
108 # endif
109 # endif
110 #endif
111 
112 /* calling conventions for Windows */
113 #ifndef SWIGSTDCALL
114 # if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__)
115 # define SWIGSTDCALL __stdcall
116 # else
117 # define SWIGSTDCALL
118 # endif
119 #endif
120 
121 /* Deal with Microsoft's attempt at deprecating C standard runtime functions */
122 #if !defined(SWIG_NO_CRT_SECURE_NO_DEPRECATE) && defined(_MSC_VER) && !defined(_CRT_SECURE_NO_DEPRECATE)
123 # define _CRT_SECURE_NO_DEPRECATE
124 #endif
125 
126 /* Deal with Microsoft's attempt at deprecating methods in the standard C++ library */
127 #if !defined(SWIG_NO_SCL_SECURE_NO_DEPRECATE) && defined(_MSC_VER) && !defined(_SCL_SECURE_NO_DEPRECATE)
128 # define _SCL_SECURE_NO_DEPRECATE
129 #endif
130 
131 /* Deal with Apple's deprecated 'AssertMacros.h' from Carbon-framework */
132 #if defined(__APPLE__) && !defined(__ASSERT_MACROS_DEFINE_VERSIONS_WITHOUT_UNDERSCORES)
133 # define __ASSERT_MACROS_DEFINE_VERSIONS_WITHOUT_UNDERSCORES 0
134 #endif
135 
136 /* Intel's compiler complains if a variable which was never initialised is
137  * cast to void, which is a common idiom which we use to indicate that we
138  * are aware a variable isn't used. So we just silence that warning.
139  * See: https://github.com/swig/swig/issues/192 for more discussion.
140  */
141 #ifdef __INTEL_COMPILER
142 # pragma warning disable 592
143 #endif
144 
145 
146 #if defined(_DEBUG) && defined(SWIG_PYTHON_INTERPRETER_NO_DEBUG)
147 /* Use debug wrappers with the Python release dll */
148 # undef _DEBUG
149 # include <Python.h>
150 # define _DEBUG
151 #else
152 # include <Python.h>
153 #endif
154 
155 /* -----------------------------------------------------------------------------
156  * swigrun.swg
157  *
158  * This file contains generic C API SWIG runtime support for pointer
159  * type checking.
160  * ----------------------------------------------------------------------------- */
161 
162 /* This should only be incremented when either the layout of swig_type_info changes,
163  or for whatever reason, the runtime changes incompatibly */
164 #define SWIG_RUNTIME_VERSION "4"
165 
166 /* define SWIG_TYPE_TABLE_NAME as "SWIG_TYPE_TABLE" */
167 #ifdef SWIG_TYPE_TABLE
168 # define SWIG_QUOTE_STRING(x) #x
169 # define SWIG_EXPAND_AND_QUOTE_STRING(x) SWIG_QUOTE_STRING(x)
170 # define SWIG_TYPE_TABLE_NAME SWIG_EXPAND_AND_QUOTE_STRING(SWIG_TYPE_TABLE)
171 #else
172 # define SWIG_TYPE_TABLE_NAME
173 #endif
174 
175 /*
176  You can use the SWIGRUNTIME and SWIGRUNTIMEINLINE macros for
177  creating a static or dynamic library from the SWIG runtime code.
178  In 99.9% of the cases, SWIG just needs to declare them as 'static'.
179 
180  But only do this if strictly necessary, ie, if you have problems
181  with your compiler or suchlike.
182 */
183 
184 #ifndef SWIGRUNTIME
185 # define SWIGRUNTIME SWIGINTERN
186 #endif
187 
188 #ifndef SWIGRUNTIMEINLINE
189 # define SWIGRUNTIMEINLINE SWIGRUNTIME SWIGINLINE
190 #endif
191 
192 /* Generic buffer size */
193 #ifndef SWIG_BUFFER_SIZE
194 # define SWIG_BUFFER_SIZE 1024
195 #endif
196 
197 /* Flags for pointer conversions */
198 #define SWIG_POINTER_DISOWN 0x1
199 #define SWIG_CAST_NEW_MEMORY 0x2
200 
201 /* Flags for new pointer objects */
202 #define SWIG_POINTER_OWN 0x1
203 
204 
205 /*
206  Flags/methods for returning states.
207 
208  The SWIG conversion methods, as ConvertPtr, return an integer
209  that tells if the conversion was successful or not. And if not,
210  an error code can be returned (see swigerrors.swg for the codes).
211 
212  Use the following macros/flags to set or process the returning
213  states.
214 
215  In old versions of SWIG, code such as the following was usually written:
216 
217  if (SWIG_ConvertPtr(obj,vptr,ty.flags) != -1) {
218  // success code
219  } else {
220  //fail code
221  }
222 
223  Now you can be more explicit:
224 
225  int res = SWIG_ConvertPtr(obj,vptr,ty.flags);
226  if (SWIG_IsOK(res)) {
227  // success code
228  } else {
229  // fail code
230  }
231 
232  which is the same really, but now you can also do
233 
234  Type *ptr;
235  int res = SWIG_ConvertPtr(obj,(void **)(&ptr),ty.flags);
236  if (SWIG_IsOK(res)) {
237  // success code
238  if (SWIG_IsNewObj(res) {
239  ...
240  delete *ptr;
241  } else {
242  ...
243  }
244  } else {
245  // fail code
246  }
247 
248  I.e., now SWIG_ConvertPtr can return new objects and you can
249  identify the case and take care of the deallocation. Of course that
250  also requires SWIG_ConvertPtr to return new result values, such as
251 
252  int SWIG_ConvertPtr(obj, ptr,...) {
253  if (<obj is ok>) {
254  if (<need new object>) {
255  *ptr = <ptr to new allocated object>;
256  return SWIG_NEWOBJ;
257  } else {
258  *ptr = <ptr to old object>;
259  return SWIG_OLDOBJ;
260  }
261  } else {
262  return SWIG_BADOBJ;
263  }
264  }
265 
266  Of course, returning the plain '0(success)/-1(fail)' still works, but you can be
267  more explicit by returning SWIG_BADOBJ, SWIG_ERROR or any of the
268  SWIG errors code.
269 
270  Finally, if the SWIG_CASTRANK_MODE is enabled, the result code
271  allows to return the 'cast rank', for example, if you have this
272 
273  int food(double)
274  int fooi(int);
275 
276  and you call
277 
278  food(1) // cast rank '1' (1 -> 1.0)
279  fooi(1) // cast rank '0'
280 
281  just use the SWIG_AddCast()/SWIG_CheckState()
282 */
283 
284 #define SWIG_OK (0)
285 #define SWIG_ERROR (-1)
286 #define SWIG_IsOK(r) (r >= 0)
287 #define SWIG_ArgError(r) ((r != SWIG_ERROR) ? r : SWIG_TypeError)
288 
289 /* The CastRankLimit says how many bits are used for the cast rank */
290 #define SWIG_CASTRANKLIMIT (1 << 8)
291 /* The NewMask denotes the object was created (using new/malloc) */
292 #define SWIG_NEWOBJMASK (SWIG_CASTRANKLIMIT << 1)
293 /* The TmpMask is for in/out typemaps that use temporal objects */
294 #define SWIG_TMPOBJMASK (SWIG_NEWOBJMASK << 1)
295 /* Simple returning values */
296 #define SWIG_BADOBJ (SWIG_ERROR)
297 #define SWIG_OLDOBJ (SWIG_OK)
298 #define SWIG_NEWOBJ (SWIG_OK | SWIG_NEWOBJMASK)
299 #define SWIG_TMPOBJ (SWIG_OK | SWIG_TMPOBJMASK)
300 /* Check, add and del mask methods */
301 #define SWIG_AddNewMask(r) (SWIG_IsOK(r) ? (r | SWIG_NEWOBJMASK) : r)
302 #define SWIG_DelNewMask(r) (SWIG_IsOK(r) ? (r & ~SWIG_NEWOBJMASK) : r)
303 #define SWIG_IsNewObj(r) (SWIG_IsOK(r) && (r & SWIG_NEWOBJMASK))
304 #define SWIG_AddTmpMask(r) (SWIG_IsOK(r) ? (r | SWIG_TMPOBJMASK) : r)
305 #define SWIG_DelTmpMask(r) (SWIG_IsOK(r) ? (r & ~SWIG_TMPOBJMASK) : r)
306 #define SWIG_IsTmpObj(r) (SWIG_IsOK(r) && (r & SWIG_TMPOBJMASK))
307 
308 /* Cast-Rank Mode */
309 #if defined(SWIG_CASTRANK_MODE)
310 # ifndef SWIG_TypeRank
311 # define SWIG_TypeRank unsigned long
312 # endif
313 # ifndef SWIG_MAXCASTRANK /* Default cast allowed */
314 # define SWIG_MAXCASTRANK (2)
315 # endif
316 # define SWIG_CASTRANKMASK ((SWIG_CASTRANKLIMIT) -1)
317 # define SWIG_CastRank(r) (r & SWIG_CASTRANKMASK)
318 SWIGINTERNINLINE int SWIG_AddCast(int r) {
319  return SWIG_IsOK(r) ? ((SWIG_CastRank(r) < SWIG_MAXCASTRANK) ? (r + 1) : SWIG_ERROR) : r;
320 }
321 SWIGINTERNINLINE int SWIG_CheckState(int r) {
322  return SWIG_IsOK(r) ? SWIG_CastRank(r) + 1 : 0;
323 }
324 #else /* no cast-rank mode */
325 # define SWIG_AddCast(r) (r)
326 # define SWIG_CheckState(r) (SWIG_IsOK(r) ? 1 : 0)
327 #endif
328 
329 
330 #include <string.h>
331 
332 #ifdef __cplusplus
333 extern "C" {
334 #endif
335 
336 typedef void *(*swig_converter_func)(void *, int *);
337 typedef struct swig_type_info *(*swig_dycast_func)(void **);
338 
339 /* Structure to store information on one type */
340 typedef struct swig_type_info {
341  const char *name; /* mangled name of this type */
342  const char *str; /* human readable name of this type */
343  swig_dycast_func dcast; /* dynamic cast function down a hierarchy */
344  struct swig_cast_info *cast; /* linked list of types that can cast into this type */
345  void *clientdata; /* language specific type data */
346  int owndata; /* flag if the structure owns the clientdata */
348 
349 /* Structure to store a type and conversion function used for casting */
350 typedef struct swig_cast_info {
351  swig_type_info *type; /* pointer to type that is equivalent to this type */
352  swig_converter_func converter; /* function to cast the void pointers */
353  struct swig_cast_info *next; /* pointer to next cast in linked list */
354  struct swig_cast_info *prev; /* pointer to the previous cast */
356 
357 /* Structure used to store module information
358  * Each module generates one structure like this, and the runtime collects
359  * all of these structures and stores them in a circularly linked list.*/
360 typedef struct swig_module_info {
361  swig_type_info **types; /* Array of pointers to swig_type_info structures that are in this module */
362  size_t size; /* Number of types in this module */
363  struct swig_module_info *next; /* Pointer to next element in circularly linked list */
364  swig_type_info **type_initial; /* Array of initially generated type structures */
365  swig_cast_info **cast_initial; /* Array of initially generated casting structures */
366  void *clientdata; /* Language specific module data */
368 
369 /*
370  Compare two type names skipping the space characters, therefore
371  "char*" == "char *" and "Class<int>" == "Class<int >", etc.
372 
373  Return 0 when the two name types are equivalent, as in
374  strncmp, but skipping ' '.
375 */
376 SWIGRUNTIME int
377 SWIG_TypeNameComp(const char *f1, const char *l1,
378  const char *f2, const char *l2) {
379  for (;(f1 != l1) && (f2 != l2); ++f1, ++f2) {
380  while ((*f1 == ' ') && (f1 != l1)) ++f1;
381  while ((*f2 == ' ') && (f2 != l2)) ++f2;
382  if (*f1 != *f2) return (*f1 > *f2) ? 1 : -1;
383  }
384  return (int)((l1 - f1) - (l2 - f2));
385 }
386 
387 /*
388  Check type equivalence in a name list like <name1>|<name2>|...
389  Return 0 if equal, -1 if nb < tb, 1 if nb > tb
390 */
391 SWIGRUNTIME int
392 SWIG_TypeCmp(const char *nb, const char *tb) {
393  int equiv = 1;
394  const char* te = tb + strlen(tb);
395  const char* ne = nb;
396  while (equiv != 0 && *ne) {
397  for (nb = ne; *ne; ++ne) {
398  if (*ne == '|') break;
399  }
400  equiv = SWIG_TypeNameComp(nb, ne, tb, te);
401  if (*ne) ++ne;
402  }
403  return equiv;
404 }
405 
406 /*
407  Check type equivalence in a name list like <name1>|<name2>|...
408  Return 0 if not equal, 1 if equal
409 */
410 SWIGRUNTIME int
411 SWIG_TypeEquiv(const char *nb, const char *tb) {
412  return SWIG_TypeCmp(nb, tb) == 0 ? 1 : 0;
413 }
414 
415 /*
416  Check the typename
417 */
418 SWIGRUNTIME swig_cast_info *
419 SWIG_TypeCheck(const char *c, swig_type_info *ty) {
420  if (ty) {
421  swig_cast_info *iter = ty->cast;
422  while (iter) {
423  if (strcmp(iter->type->name, c) == 0) {
424  if (iter == ty->cast)
425  return iter;
426  /* Move iter to the top of the linked list */
427  iter->prev->next = iter->next;
428  if (iter->next)
429  iter->next->prev = iter->prev;
430  iter->next = ty->cast;
431  iter->prev = 0;
432  if (ty->cast) ty->cast->prev = iter;
433  ty->cast = iter;
434  return iter;
435  }
436  iter = iter->next;
437  }
438  }
439  return 0;
440 }
441 
442 /*
443  Identical to SWIG_TypeCheck, except strcmp is replaced with a pointer comparison
444 */
445 SWIGRUNTIME swig_cast_info *
446 SWIG_TypeCheckStruct(swig_type_info *from, swig_type_info *ty) {
447  if (ty) {
448  swig_cast_info *iter = ty->cast;
449  while (iter) {
450  if (iter->type == from) {
451  if (iter == ty->cast)
452  return iter;
453  /* Move iter to the top of the linked list */
454  iter->prev->next = iter->next;
455  if (iter->next)
456  iter->next->prev = iter->prev;
457  iter->next = ty->cast;
458  iter->prev = 0;
459  if (ty->cast) ty->cast->prev = iter;
460  ty->cast = iter;
461  return iter;
462  }
463  iter = iter->next;
464  }
465  }
466  return 0;
467 }
468 
469 /*
470  Cast a pointer up an inheritance hierarchy
471 */
472 SWIGRUNTIMEINLINE void *
473 SWIG_TypeCast(swig_cast_info *ty, void *ptr, int *newmemory) {
474  return ((!ty) || (!ty->converter)) ? ptr : (*ty->converter)(ptr, newmemory);
475 }
476 
477 /*
478  Dynamic pointer casting. Down an inheritance hierarchy
479 */
480 SWIGRUNTIME swig_type_info *
481 SWIG_TypeDynamicCast(swig_type_info *ty, void **ptr) {
482  swig_type_info *lastty = ty;
483  if (!ty || !ty->dcast) return ty;
484  while (ty && (ty->dcast)) {
485  ty = (*ty->dcast)(ptr);
486  if (ty) lastty = ty;
487  }
488  return lastty;
489 }
490 
491 /*
492  Return the name associated with this type
493 */
494 SWIGRUNTIMEINLINE const char *
495 SWIG_TypeName(const swig_type_info *ty) {
496  return ty->name;
497 }
498 
499 /*
500  Return the pretty name associated with this type,
501  that is an unmangled type name in a form presentable to the user.
502 */
503 SWIGRUNTIME const char *
504 SWIG_TypePrettyName(const swig_type_info *type) {
505  /* The "str" field contains the equivalent pretty names of the
506  type, separated by vertical-bar characters. We choose
507  to print the last name, as it is often (?) the most
508  specific. */
509  if (!type) return NULL;
510  if (type->str != NULL) {
511  const char *last_name = type->str;
512  const char *s;
513  for (s = type->str; *s; s++)
514  if (*s == '|') last_name = s+1;
515  return last_name;
516  }
517  else
518  return type->name;
519 }
520 
521 /*
522  Set the clientdata field for a type
523 */
524 SWIGRUNTIME void
525 SWIG_TypeClientData(swig_type_info *ti, void *clientdata) {
526  swig_cast_info *cast = ti->cast;
527  /* if (ti->clientdata == clientdata) return; */
528  ti->clientdata = clientdata;
529 
530  while (cast) {
531  if (!cast->converter) {
532  swig_type_info *tc = cast->type;
533  if (!tc->clientdata) {
534  SWIG_TypeClientData(tc, clientdata);
535  }
536  }
537  cast = cast->next;
538  }
539 }
540 SWIGRUNTIME void
541 SWIG_TypeNewClientData(swig_type_info *ti, void *clientdata) {
542  SWIG_TypeClientData(ti, clientdata);
543  ti->owndata = 1;
544 }
545 
546 /*
547  Search for a swig_type_info structure only by mangled name
548  Search is a O(log #types)
549 
550  We start searching at module start, and finish searching when start == end.
551  Note: if start == end at the beginning of the function, we go all the way around
552  the circular list.
553 */
554 SWIGRUNTIME swig_type_info *
555 SWIG_MangledTypeQueryModule(swig_module_info *start,
556  swig_module_info *end,
557  const char *name) {
558  swig_module_info *iter = start;
559  do {
560  if (iter->size) {
561  size_t l = 0;
562  size_t r = iter->size - 1;
563  do {
564  /* since l+r >= 0, we can (>> 1) instead (/ 2) */
565  size_t i = (l + r) >> 1;
566  const char *iname = iter->types[i]->name;
567  if (iname) {
568  int compare = strcmp(name, iname);
569  if (compare == 0) {
570  return iter->types[i];
571  } else if (compare < 0) {
572  if (i) {
573  r = i - 1;
574  } else {
575  break;
576  }
577  } else if (compare > 0) {
578  l = i + 1;
579  }
580  } else {
581  break; /* should never happen */
582  }
583  } while (l <= r);
584  }
585  iter = iter->next;
586  } while (iter != end);
587  return 0;
588 }
589 
590 /*
591  Search for a swig_type_info structure for either a mangled name or a human readable name.
592  It first searches the mangled names of the types, which is a O(log #types)
593  If a type is not found it then searches the human readable names, which is O(#types).
594 
595  We start searching at module start, and finish searching when start == end.
596  Note: if start == end at the beginning of the function, we go all the way around
597  the circular list.
598 */
599 SWIGRUNTIME swig_type_info *
600 SWIG_TypeQueryModule(swig_module_info *start,
601  swig_module_info *end,
602  const char *name) {
603  /* STEP 1: Search the name field using binary search */
604  swig_type_info *ret = SWIG_MangledTypeQueryModule(start, end, name);
605  if (ret) {
606  return ret;
607  } else {
608  /* STEP 2: If the type hasn't been found, do a complete search
609  of the str field (the human readable name) */
610  swig_module_info *iter = start;
611  do {
612  size_t i = 0;
613  for (; i < iter->size; ++i) {
614  if (iter->types[i]->str && (SWIG_TypeEquiv(iter->types[i]->str, name)))
615  return iter->types[i];
616  }
617  iter = iter->next;
618  } while (iter != end);
619  }
620 
621  /* neither found a match */
622  return 0;
623 }
624 
625 /*
626  Pack binary data into a string
627 */
628 SWIGRUNTIME char *
629 SWIG_PackData(char *c, void *ptr, size_t sz) {
630  static const char hex[17] = "0123456789abcdef";
631  const unsigned char *u = (unsigned char *) ptr;
632  const unsigned char *eu = u + sz;
633  for (; u != eu; ++u) {
634  unsigned char uu = *u;
635  *(c++) = hex[(uu & 0xf0) >> 4];
636  *(c++) = hex[uu & 0xf];
637  }
638  return c;
639 }
640 
641 /*
642  Unpack binary data from a string
643 */
644 SWIGRUNTIME const char *
645 SWIG_UnpackData(const char *c, void *ptr, size_t sz) {
646  unsigned char *u = (unsigned char *) ptr;
647  const unsigned char *eu = u + sz;
648  for (; u != eu; ++u) {
649  char d = *(c++);
650  unsigned char uu;
651  if ((d >= '0') && (d <= '9'))
652  uu = ((d - '0') << 4);
653  else if ((d >= 'a') && (d <= 'f'))
654  uu = ((d - ('a'-10)) << 4);
655  else
656  return (char *) 0;
657  d = *(c++);
658  if ((d >= '0') && (d <= '9'))
659  uu |= (d - '0');
660  else if ((d >= 'a') && (d <= 'f'))
661  uu |= (d - ('a'-10));
662  else
663  return (char *) 0;
664  *u = uu;
665  }
666  return c;
667 }
668 
669 /*
670  Pack 'void *' into a string buffer.
671 */
672 SWIGRUNTIME char *
673 SWIG_PackVoidPtr(char *buff, void *ptr, const char *name, size_t bsz) {
674  char *r = buff;
675  if ((2*sizeof(void *) + 2) > bsz) return 0;
676  *(r++) = '_';
677  r = SWIG_PackData(r,&ptr,sizeof(void *));
678  if (strlen(name) + 1 > (bsz - (r - buff))) return 0;
679  strcpy(r,name);
680  return buff;
681 }
682 
683 SWIGRUNTIME const char *
684 SWIG_UnpackVoidPtr(const char *c, void **ptr, const char *name) {
685  if (*c != '_') {
686  if (strcmp(c,"NULL") == 0) {
687  *ptr = (void *) 0;
688  return name;
689  } else {
690  return 0;
691  }
692  }
693  return SWIG_UnpackData(++c,ptr,sizeof(void *));
694 }
695 
696 SWIGRUNTIME char *
697 SWIG_PackDataName(char *buff, void *ptr, size_t sz, const char *name, size_t bsz) {
698  char *r = buff;
699  size_t lname = (name ? strlen(name) : 0);
700  if ((2*sz + 2 + lname) > bsz) return 0;
701  *(r++) = '_';
702  r = SWIG_PackData(r,ptr,sz);
703  if (lname) {
704  strncpy(r,name,lname+1);
705  } else {
706  *r = 0;
707  }
708  return buff;
709 }
710 
711 SWIGRUNTIME const char *
712 SWIG_UnpackDataName(const char *c, void *ptr, size_t sz, const char *name) {
713  if (*c != '_') {
714  if (strcmp(c,"NULL") == 0) {
715  memset(ptr,0,sz);
716  return name;
717  } else {
718  return 0;
719  }
720  }
721  return SWIG_UnpackData(++c,ptr,sz);
722 }
723 
724 #ifdef __cplusplus
725 }
726 #endif
727 
728 /* Errors in SWIG */
729 #define SWIG_UnknownError -1
730 #define SWIG_IOError -2
731 #define SWIG_RuntimeError -3
732 #define SWIG_IndexError -4
733 #define SWIG_TypeError -5
734 #define SWIG_DivisionByZero -6
735 #define SWIG_OverflowError -7
736 #define SWIG_SyntaxError -8
737 #define SWIG_ValueError -9
738 #define SWIG_SystemError -10
739 #define SWIG_AttributeError -11
740 #define SWIG_MemoryError -12
741 #define SWIG_NullReferenceError -13
742 
743 
744 
745 /* Compatibility macros for Python 3 */
746 #if PY_VERSION_HEX >= 0x03000000
747 
748 #define PyClass_Check(obj) PyObject_IsInstance(obj, (PyObject *)&PyType_Type)
749 #define PyInt_Check(x) PyLong_Check(x)
750 #define PyInt_AsLong(x) PyLong_AsLong(x)
751 #define PyInt_FromLong(x) PyLong_FromLong(x)
752 #define PyInt_FromSize_t(x) PyLong_FromSize_t(x)
753 #define PyString_Check(name) PyBytes_Check(name)
754 #define PyString_FromString(x) PyUnicode_FromString(x)
755 #define PyString_Format(fmt, args) PyUnicode_Format(fmt, args)
756 #define PyString_AsString(str) PyBytes_AsString(str)
757 #define PyString_Size(str) PyBytes_Size(str)
758 #define PyString_InternFromString(key) PyUnicode_InternFromString(key)
759 #define Py_TPFLAGS_HAVE_CLASS Py_TPFLAGS_BASETYPE
760 #define PyString_AS_STRING(x) PyUnicode_AS_STRING(x)
761 #define _PyLong_FromSsize_t(x) PyLong_FromSsize_t(x)
762 
763 #endif
764 
765 #ifndef Py_TYPE
766 # define Py_TYPE(op) ((op)->ob_type)
767 #endif
768 
769 /* SWIG APIs for compatibility of both Python 2 & 3 */
770 
771 #if PY_VERSION_HEX >= 0x03000000
772 # define SWIG_Python_str_FromFormat PyUnicode_FromFormat
773 #else
774 # define SWIG_Python_str_FromFormat PyString_FromFormat
775 #endif
776 
777 
778 /* Warning: This function will allocate a new string in Python 3,
779  * so please call SWIG_Python_str_DelForPy3(x) to free the space.
780  */
781 SWIGINTERN char*
782 SWIG_Python_str_AsChar(PyObject *str)
783 {
784 #if PY_VERSION_HEX >= 0x03000000
785  char *cstr;
786  char *newstr;
787  Py_ssize_t len;
788  str = PyUnicode_AsUTF8String(str);
789  PyBytes_AsStringAndSize(str, &cstr, &len);
790  newstr = (char *) malloc(len+1);
791  memcpy(newstr, cstr, len+1);
792  Py_XDECREF(str);
793  return newstr;
794 #else
795  return PyString_AsString(str);
796 #endif
797 }
798 
799 #if PY_VERSION_HEX >= 0x03000000
800 # define SWIG_Python_str_DelForPy3(x) free( (void*) (x) )
801 #else
802 # define SWIG_Python_str_DelForPy3(x)
803 #endif
804 
805 
806 SWIGINTERN PyObject*
807 SWIG_Python_str_FromChar(const char *c)
808 {
809 #if PY_VERSION_HEX >= 0x03000000
810  return PyUnicode_FromString(c);
811 #else
812  return PyString_FromString(c);
813 #endif
814 }
815 
816 /* Add PyOS_snprintf for old Pythons */
817 #if PY_VERSION_HEX < 0x02020000
818 # if defined(_MSC_VER) || defined(__BORLANDC__) || defined(_WATCOM)
819 # define PyOS_snprintf _snprintf
820 # else
821 # define PyOS_snprintf snprintf
822 # endif
823 #endif
824 
825 /* A crude PyString_FromFormat implementation for old Pythons */
826 #if PY_VERSION_HEX < 0x02020000
827 
828 #ifndef SWIG_PYBUFFER_SIZE
829 # define SWIG_PYBUFFER_SIZE 1024
830 #endif
831 
832 static PyObject *
833 PyString_FromFormat(const char *fmt, ...) {
834  va_list ap;
835  char buf[SWIG_PYBUFFER_SIZE * 2];
836  int res;
837  va_start(ap, fmt);
838  res = vsnprintf(buf, sizeof(buf), fmt, ap);
839  va_end(ap);
840  return (res < 0 || res >= (int)sizeof(buf)) ? 0 : PyString_FromString(buf);
841 }
842 #endif
843 
844 /* Add PyObject_Del for old Pythons */
845 #if PY_VERSION_HEX < 0x01060000
846 # define PyObject_Del(op) PyMem_DEL((op))
847 #endif
848 #ifndef PyObject_DEL
849 # define PyObject_DEL PyObject_Del
850 #endif
851 
852 /* A crude PyExc_StopIteration exception for old Pythons */
853 #if PY_VERSION_HEX < 0x02020000
854 # ifndef PyExc_StopIteration
855 # define PyExc_StopIteration PyExc_RuntimeError
856 # endif
857 # ifndef PyObject_GenericGetAttr
858 # define PyObject_GenericGetAttr 0
859 # endif
860 #endif
861 
862 /* Py_NotImplemented is defined in 2.1 and up. */
863 #if PY_VERSION_HEX < 0x02010000
864 # ifndef Py_NotImplemented
865 # define Py_NotImplemented PyExc_RuntimeError
866 # endif
867 #endif
868 
869 /* A crude PyString_AsStringAndSize implementation for old Pythons */
870 #if PY_VERSION_HEX < 0x02010000
871 # ifndef PyString_AsStringAndSize
872 # define PyString_AsStringAndSize(obj, s, len) {*s = PyString_AsString(obj); *len = *s ? strlen(*s) : 0;}
873 # endif
874 #endif
875 
876 /* PySequence_Size for old Pythons */
877 #if PY_VERSION_HEX < 0x02000000
878 # ifndef PySequence_Size
879 # define PySequence_Size PySequence_Length
880 # endif
881 #endif
882 
883 /* PyBool_FromLong for old Pythons */
884 #if PY_VERSION_HEX < 0x02030000
885 static
886 PyObject *PyBool_FromLong(long ok)
887 {
888  PyObject *result = ok ? Py_True : Py_False;
889  Py_INCREF(result);
890  return result;
891 }
892 #endif
893 
894 /* Py_ssize_t for old Pythons */
895 /* This code is as recommended by: */
896 /* http://www.python.org/dev/peps/pep-0353/#conversion-guidelines */
897 #if PY_VERSION_HEX < 0x02050000 && !defined(PY_SSIZE_T_MIN)
898 typedef int Py_ssize_t;
899 # define PY_SSIZE_T_MAX INT_MAX
900 # define PY_SSIZE_T_MIN INT_MIN
901 typedef inquiry lenfunc;
902 typedef intargfunc ssizeargfunc;
903 typedef intintargfunc ssizessizeargfunc;
904 typedef intobjargproc ssizeobjargproc;
905 typedef intintobjargproc ssizessizeobjargproc;
906 typedef getreadbufferproc readbufferproc;
907 typedef getwritebufferproc writebufferproc;
908 typedef getsegcountproc segcountproc;
909 typedef getcharbufferproc charbufferproc;
910 static long PyNumber_AsSsize_t (PyObject *x, void *SWIGUNUSEDPARM(exc))
911 {
912  long result = 0;
913  PyObject *i = PyNumber_Int(x);
914  if (i) {
915  result = PyInt_AsLong(i);
916  Py_DECREF(i);
917  }
918  return result;
919 }
920 #endif
921 
922 #if PY_VERSION_HEX < 0x02050000
923 #define PyInt_FromSize_t(x) PyInt_FromLong((long)x)
924 #endif
925 
926 #if PY_VERSION_HEX < 0x02040000
927 #define Py_VISIT(op) \
928  do { \
929  if (op) { \
930  int vret = visit((op), arg); \
931  if (vret) \
932  return vret; \
933  } \
934  } while (0)
935 #endif
936 
937 #if PY_VERSION_HEX < 0x02030000
938 typedef struct {
939  PyTypeObject type;
940  PyNumberMethods as_number;
941  PyMappingMethods as_mapping;
942  PySequenceMethods as_sequence;
943  PyBufferProcs as_buffer;
944  PyObject *name, *slots;
946 #endif
947 
948 #if PY_VERSION_HEX < 0x02030000
949 typedef destructor freefunc;
950 #endif
951 
952 #if ((PY_MAJOR_VERSION == 2 && PY_MINOR_VERSION > 6) || \
953  (PY_MAJOR_VERSION == 3 && PY_MINOR_VERSION > 0) || \
954  (PY_MAJOR_VERSION > 3))
955 # define SWIGPY_USE_CAPSULE
956 # define SWIGPY_CAPSULE_NAME ((char*)"swig_runtime_data" SWIG_RUNTIME_VERSION ".type_pointer_capsule" SWIG_TYPE_TABLE_NAME)
957 #endif
958 
959 #if PY_VERSION_HEX < 0x03020000
960 #define PyDescr_TYPE(x) (((PyDescrObject *)(x))->d_type)
961 #define PyDescr_NAME(x) (((PyDescrObject *)(x))->d_name)
962 #endif
963 
964 /* -----------------------------------------------------------------------------
965  * error manipulation
966  * ----------------------------------------------------------------------------- */
967 
968 SWIGRUNTIME PyObject*
969 SWIG_Python_ErrorType(int code) {
970  PyObject* type = 0;
971  switch(code) {
972  case SWIG_MemoryError:
973  type = PyExc_MemoryError;
974  break;
975  case SWIG_IOError:
976  type = PyExc_IOError;
977  break;
978  case SWIG_RuntimeError:
979  type = PyExc_RuntimeError;
980  break;
981  case SWIG_IndexError:
982  type = PyExc_IndexError;
983  break;
984  case SWIG_TypeError:
985  type = PyExc_TypeError;
986  break;
987  case SWIG_DivisionByZero:
988  type = PyExc_ZeroDivisionError;
989  break;
990  case SWIG_OverflowError:
991  type = PyExc_OverflowError;
992  break;
993  case SWIG_SyntaxError:
994  type = PyExc_SyntaxError;
995  break;
996  case SWIG_ValueError:
997  type = PyExc_ValueError;
998  break;
999  case SWIG_SystemError:
1000  type = PyExc_SystemError;
1001  break;
1002  case SWIG_AttributeError:
1003  type = PyExc_AttributeError;
1004  break;
1005  default:
1006  type = PyExc_RuntimeError;
1007  }
1008  return type;
1009 }
1010 
1011 
1012 SWIGRUNTIME void
1013 SWIG_Python_AddErrorMsg(const char* mesg)
1014 {
1015  PyObject *type = 0;
1016  PyObject *value = 0;
1017  PyObject *traceback = 0;
1018 
1019  if (PyErr_Occurred()) PyErr_Fetch(&type, &value, &traceback);
1020  if (value) {
1021  char *tmp;
1022  PyObject *old_str = PyObject_Str(value);
1023  PyErr_Clear();
1024  Py_XINCREF(type);
1025 
1026  PyErr_Format(type, "%s %s", tmp = SWIG_Python_str_AsChar(old_str), mesg);
1027  SWIG_Python_str_DelForPy3(tmp);
1028  Py_DECREF(old_str);
1029  Py_DECREF(value);
1030  } else {
1031  PyErr_SetString(PyExc_RuntimeError, mesg);
1032  }
1033 }
1034 
1035 #if defined(SWIG_PYTHON_NO_THREADS)
1036 # if defined(SWIG_PYTHON_THREADS)
1037 # undef SWIG_PYTHON_THREADS
1038 # endif
1039 #endif
1040 #if defined(SWIG_PYTHON_THREADS) /* Threading support is enabled */
1041 # if !defined(SWIG_PYTHON_USE_GIL) && !defined(SWIG_PYTHON_NO_USE_GIL)
1042 # if (PY_VERSION_HEX >= 0x02030000) /* For 2.3 or later, use the PyGILState calls */
1043 # define SWIG_PYTHON_USE_GIL
1044 # endif
1045 # endif
1046 # if defined(SWIG_PYTHON_USE_GIL) /* Use PyGILState threads calls */
1047 # ifndef SWIG_PYTHON_INITIALIZE_THREADS
1048 # define SWIG_PYTHON_INITIALIZE_THREADS PyEval_InitThreads()
1049 # endif
1050 # ifdef __cplusplus /* C++ code */
1051  class SWIG_Python_Thread_Block {
1052  bool status;
1053  PyGILState_STATE state;
1054  public:
1055  void end() { if (status) { PyGILState_Release(state); status = false;} }
1056  SWIG_Python_Thread_Block() : status(true), state(PyGILState_Ensure()) {}
1057  ~SWIG_Python_Thread_Block() { end(); }
1058  };
1059  class SWIG_Python_Thread_Allow {
1060  bool status;
1061  PyThreadState *save;
1062  public:
1063  void end() { if (status) { PyEval_RestoreThread(save); status = false; }}
1064  SWIG_Python_Thread_Allow() : status(true), save(PyEval_SaveThread()) {}
1065  ~SWIG_Python_Thread_Allow() { end(); }
1066  };
1067 # define SWIG_PYTHON_THREAD_BEGIN_BLOCK SWIG_Python_Thread_Block _swig_thread_block
1068 # define SWIG_PYTHON_THREAD_END_BLOCK _swig_thread_block.end()
1069 # define SWIG_PYTHON_THREAD_BEGIN_ALLOW SWIG_Python_Thread_Allow _swig_thread_allow
1070 # define SWIG_PYTHON_THREAD_END_ALLOW _swig_thread_allow.end()
1071 # else /* C code */
1072 # define SWIG_PYTHON_THREAD_BEGIN_BLOCK PyGILState_STATE _swig_thread_block = PyGILState_Ensure()
1073 # define SWIG_PYTHON_THREAD_END_BLOCK PyGILState_Release(_swig_thread_block)
1074 # define SWIG_PYTHON_THREAD_BEGIN_ALLOW PyThreadState *_swig_thread_allow = PyEval_SaveThread()
1075 # define SWIG_PYTHON_THREAD_END_ALLOW PyEval_RestoreThread(_swig_thread_allow)
1076 # endif
1077 # else /* Old thread way, not implemented, user must provide it */
1078 # if !defined(SWIG_PYTHON_INITIALIZE_THREADS)
1079 # define SWIG_PYTHON_INITIALIZE_THREADS
1080 # endif
1081 # if !defined(SWIG_PYTHON_THREAD_BEGIN_BLOCK)
1082 # define SWIG_PYTHON_THREAD_BEGIN_BLOCK
1083 # endif
1084 # if !defined(SWIG_PYTHON_THREAD_END_BLOCK)
1085 # define SWIG_PYTHON_THREAD_END_BLOCK
1086 # endif
1087 # if !defined(SWIG_PYTHON_THREAD_BEGIN_ALLOW)
1088 # define SWIG_PYTHON_THREAD_BEGIN_ALLOW
1089 # endif
1090 # if !defined(SWIG_PYTHON_THREAD_END_ALLOW)
1091 # define SWIG_PYTHON_THREAD_END_ALLOW
1092 # endif
1093 # endif
1094 #else /* No thread support */
1095 # define SWIG_PYTHON_INITIALIZE_THREADS
1096 # define SWIG_PYTHON_THREAD_BEGIN_BLOCK
1097 # define SWIG_PYTHON_THREAD_END_BLOCK
1098 # define SWIG_PYTHON_THREAD_BEGIN_ALLOW
1099 # define SWIG_PYTHON_THREAD_END_ALLOW
1100 #endif
1101 
1102 /* -----------------------------------------------------------------------------
1103  * Python API portion that goes into the runtime
1104  * ----------------------------------------------------------------------------- */
1105 
1106 #ifdef __cplusplus
1107 extern "C" {
1108 #endif
1109 
1110 /* -----------------------------------------------------------------------------
1111  * Constant declarations
1112  * ----------------------------------------------------------------------------- */
1113 
1114 /* Constant Types */
1115 #define SWIG_PY_POINTER 4
1116 #define SWIG_PY_BINARY 5
1117 
1118 /* Constant information structure */
1119 typedef struct swig_const_info {
1120  int type;
1121  char *name;
1122  long lvalue;
1123  double dvalue;
1124  void *pvalue;
1125  swig_type_info **ptype;
1126 } swig_const_info;
1127 
1128 
1129 /* -----------------------------------------------------------------------------
1130  * Wrapper of PyInstanceMethod_New() used in Python 3
1131  * It is exported to the generated module, used for -fastproxy
1132  * ----------------------------------------------------------------------------- */
1133 #if PY_VERSION_HEX >= 0x03000000
1134 SWIGRUNTIME PyObject* SWIG_PyInstanceMethod_New(PyObject *SWIGUNUSEDPARM(self), PyObject *func)
1135 {
1136  return PyInstanceMethod_New(func);
1137 }
1138 #else
1139 SWIGRUNTIME PyObject* SWIG_PyInstanceMethod_New(PyObject *SWIGUNUSEDPARM(self), PyObject *SWIGUNUSEDPARM(func))
1140 {
1141  return NULL;
1142 }
1143 #endif
1144 
1145 #ifdef __cplusplus
1146 }
1147 #endif
1148 
1149 
1150 /* -----------------------------------------------------------------------------
1151  * pyrun.swg
1152  *
1153  * This file contains the runtime support for Python modules
1154  * and includes code for managing global variables and pointer
1155  * type checking.
1156  *
1157  * ----------------------------------------------------------------------------- */
1158 
1159 /* Common SWIG API */
1160 
1161 /* for raw pointers */
1162 #define SWIG_Python_ConvertPtr(obj, pptr, type, flags) SWIG_Python_ConvertPtrAndOwn(obj, pptr, type, flags, 0)
1163 #define SWIG_ConvertPtr(obj, pptr, type, flags) SWIG_Python_ConvertPtr(obj, pptr, type, flags)
1164 #define SWIG_ConvertPtrAndOwn(obj,pptr,type,flags,own) SWIG_Python_ConvertPtrAndOwn(obj, pptr, type, flags, own)
1165 
1166 #ifdef SWIGPYTHON_BUILTIN
1167 #define SWIG_NewPointerObj(ptr, type, flags) SWIG_Python_NewPointerObj(self, ptr, type, flags)
1168 #else
1169 #define SWIG_NewPointerObj(ptr, type, flags) SWIG_Python_NewPointerObj(NULL, ptr, type, flags)
1170 #endif
1171 
1172 #define SWIG_InternalNewPointerObj(ptr, type, flags) SWIG_Python_NewPointerObj(NULL, ptr, type, flags)
1173 
1174 #define SWIG_CheckImplicit(ty) SWIG_Python_CheckImplicit(ty)
1175 #define SWIG_AcquirePtr(ptr, src) SWIG_Python_AcquirePtr(ptr, src)
1176 #define swig_owntype int
1177 
1178 /* for raw packed data */
1179 #define SWIG_ConvertPacked(obj, ptr, sz, ty) SWIG_Python_ConvertPacked(obj, ptr, sz, ty)
1180 #define SWIG_NewPackedObj(ptr, sz, type) SWIG_Python_NewPackedObj(ptr, sz, type)
1181 
1182 /* for class or struct pointers */
1183 #define SWIG_ConvertInstance(obj, pptr, type, flags) SWIG_ConvertPtr(obj, pptr, type, flags)
1184 #define SWIG_NewInstanceObj(ptr, type, flags) SWIG_NewPointerObj(ptr, type, flags)
1185 
1186 /* for C or C++ function pointers */
1187 #define SWIG_ConvertFunctionPtr(obj, pptr, type) SWIG_Python_ConvertFunctionPtr(obj, pptr, type)
1188 #define SWIG_NewFunctionPtrObj(ptr, type) SWIG_Python_NewPointerObj(NULL, ptr, type, 0)
1189 
1190 /* for C++ member pointers, ie, member methods */
1191 #define SWIG_ConvertMember(obj, ptr, sz, ty) SWIG_Python_ConvertPacked(obj, ptr, sz, ty)
1192 #define SWIG_NewMemberObj(ptr, sz, type) SWIG_Python_NewPackedObj(ptr, sz, type)
1193 
1194 
1195 /* Runtime API */
1196 
1197 #define SWIG_GetModule(clientdata) SWIG_Python_GetModule(clientdata)
1198 #define SWIG_SetModule(clientdata, pointer) SWIG_Python_SetModule(pointer)
1199 #define SWIG_NewClientData(obj) SwigPyClientData_New(obj)
1200 
1201 #define SWIG_SetErrorObj SWIG_Python_SetErrorObj
1202 #define SWIG_SetErrorMsg SWIG_Python_SetErrorMsg
1203 #define SWIG_ErrorType(code) SWIG_Python_ErrorType(code)
1204 #define SWIG_Error(code, msg) SWIG_Python_SetErrorMsg(SWIG_ErrorType(code), msg)
1205 #define SWIG_fail goto fail
1206 
1207 
1208 /* Runtime API implementation */
1209 
1210 /* Error manipulation */
1211 
1212 SWIGINTERN void
1213 SWIG_Python_SetErrorObj(PyObject *errtype, PyObject *obj) {
1214  SWIG_PYTHON_THREAD_BEGIN_BLOCK;
1215  PyErr_SetObject(errtype, obj);
1216  Py_DECREF(obj);
1217  SWIG_PYTHON_THREAD_END_BLOCK;
1218 }
1219 
1220 SWIGINTERN void
1221 SWIG_Python_SetErrorMsg(PyObject *errtype, const char *msg) {
1222  SWIG_PYTHON_THREAD_BEGIN_BLOCK;
1223  PyErr_SetString(errtype, msg);
1224  SWIG_PYTHON_THREAD_END_BLOCK;
1225 }
1226 
1227 #define SWIG_Python_Raise(obj, type, desc) SWIG_Python_SetErrorObj(SWIG_Python_ExceptionType(desc), obj)
1228 
1229 /* Set a constant value */
1230 
1231 #if defined(SWIGPYTHON_BUILTIN)
1232 
1233 SWIGINTERN void
1234 SwigPyBuiltin_AddPublicSymbol(PyObject *seq, const char *key) {
1235  PyObject *s = PyString_InternFromString(key);
1236  PyList_Append(seq, s);
1237  Py_DECREF(s);
1238 }
1239 
1240 SWIGINTERN void
1241 SWIG_Python_SetConstant(PyObject *d, PyObject *public_interface, const char *name, PyObject *obj) {
1242 #if PY_VERSION_HEX < 0x02030000
1243  PyDict_SetItemString(d, (char *)name, obj);
1244 #else
1245  PyDict_SetItemString(d, name, obj);
1246 #endif
1247  Py_DECREF(obj);
1248  if (public_interface)
1249  SwigPyBuiltin_AddPublicSymbol(public_interface, name);
1250 }
1251 
1252 #else
1253 
1254 SWIGINTERN void
1255 SWIG_Python_SetConstant(PyObject *d, const char *name, PyObject *obj) {
1256 #if PY_VERSION_HEX < 0x02030000
1257  PyDict_SetItemString(d, (char *)name, obj);
1258 #else
1259  PyDict_SetItemString(d, name, obj);
1260 #endif
1261  Py_DECREF(obj);
1262 }
1263 
1264 #endif
1265 
1266 /* Append a value to the result obj */
1267 
1268 SWIGINTERN PyObject*
1269 SWIG_Python_AppendOutput(PyObject* result, PyObject* obj) {
1270 #if !defined(SWIG_PYTHON_OUTPUT_TUPLE)
1271  if (!result) {
1272  result = obj;
1273  } else if (result == Py_None) {
1274  Py_DECREF(result);
1275  result = obj;
1276  } else {
1277  if (!PyList_Check(result)) {
1278  PyObject *o2 = result;
1279  result = PyList_New(1);
1280  PyList_SetItem(result, 0, o2);
1281  }
1282  PyList_Append(result,obj);
1283  Py_DECREF(obj);
1284  }
1285  return result;
1286 #else
1287  PyObject* o2;
1288  PyObject* o3;
1289  if (!result) {
1290  result = obj;
1291  } else if (result == Py_None) {
1292  Py_DECREF(result);
1293  result = obj;
1294  } else {
1295  if (!PyTuple_Check(result)) {
1296  o2 = result;
1297  result = PyTuple_New(1);
1298  PyTuple_SET_ITEM(result, 0, o2);
1299  }
1300  o3 = PyTuple_New(1);
1301  PyTuple_SET_ITEM(o3, 0, obj);
1302  o2 = result;
1303  result = PySequence_Concat(o2, o3);
1304  Py_DECREF(o2);
1305  Py_DECREF(o3);
1306  }
1307  return result;
1308 #endif
1309 }
1310 
1311 /* Unpack the argument tuple */
1312 
1313 SWIGINTERN Py_ssize_t
1314 SWIG_Python_UnpackTuple(PyObject *args, const char *name, Py_ssize_t min, Py_ssize_t max, PyObject **objs)
1315 {
1316  if (!args) {
1317  if (!min && !max) {
1318  return 1;
1319  } else {
1320  PyErr_Format(PyExc_TypeError, "%s expected %s%d arguments, got none",
1321  name, (min == max ? "" : "at least "), (int)min);
1322  return 0;
1323  }
1324  }
1325  if (!PyTuple_Check(args)) {
1326  if (min <= 1 && max >= 1) {
1327  Py_ssize_t i;
1328  objs[0] = args;
1329  for (i = 1; i < max; ++i) {
1330  objs[i] = 0;
1331  }
1332  return 2;
1333  }
1334  PyErr_SetString(PyExc_SystemError, "UnpackTuple() argument list is not a tuple");
1335  return 0;
1336  } else {
1337  Py_ssize_t l = PyTuple_GET_SIZE(args);
1338  if (l < min) {
1339  PyErr_Format(PyExc_TypeError, "%s expected %s%d arguments, got %d",
1340  name, (min == max ? "" : "at least "), (int)min, (int)l);
1341  return 0;
1342  } else if (l > max) {
1343  PyErr_Format(PyExc_TypeError, "%s expected %s%d arguments, got %d",
1344  name, (min == max ? "" : "at most "), (int)max, (int)l);
1345  return 0;
1346  } else {
1347  Py_ssize_t i;
1348  for (i = 0; i < l; ++i) {
1349  objs[i] = PyTuple_GET_ITEM(args, i);
1350  }
1351  for (; l < max; ++l) {
1352  objs[l] = 0;
1353  }
1354  return i + 1;
1355  }
1356  }
1357 }
1358 
1359 /* A functor is a function object with one single object argument */
1360 #if PY_VERSION_HEX >= 0x02020000
1361 #define SWIG_Python_CallFunctor(functor, obj) PyObject_CallFunctionObjArgs(functor, obj, NULL);
1362 #else
1363 #define SWIG_Python_CallFunctor(functor, obj) PyObject_CallFunction(functor, "O", obj);
1364 #endif
1365 
1366 /*
1367  Helper for static pointer initialization for both C and C++ code, for example
1368  static PyObject *SWIG_STATIC_POINTER(MyVar) = NewSomething(...);
1369 */
1370 #ifdef __cplusplus
1371 #define SWIG_STATIC_POINTER(var) var
1372 #else
1373 #define SWIG_STATIC_POINTER(var) var = 0; if (!var) var
1374 #endif
1375 
1376 /* -----------------------------------------------------------------------------
1377  * Pointer declarations
1378  * ----------------------------------------------------------------------------- */
1379 
1380 /* Flags for new pointer objects */
1381 #define SWIG_POINTER_NOSHADOW (SWIG_POINTER_OWN << 1)
1382 #define SWIG_POINTER_NEW (SWIG_POINTER_NOSHADOW | SWIG_POINTER_OWN)
1383 
1384 #define SWIG_POINTER_IMPLICIT_CONV (SWIG_POINTER_DISOWN << 1)
1385 
1386 #define SWIG_BUILTIN_TP_INIT (SWIG_POINTER_OWN << 2)
1387 #define SWIG_BUILTIN_INIT (SWIG_BUILTIN_TP_INIT | SWIG_POINTER_OWN)
1388 
1389 #ifdef __cplusplus
1390 extern "C" {
1391 #endif
1392 
1393 /* How to access Py_None */
1394 #if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__)
1395 # ifndef SWIG_PYTHON_NO_BUILD_NONE
1396 # ifndef SWIG_PYTHON_BUILD_NONE
1397 # define SWIG_PYTHON_BUILD_NONE
1398 # endif
1399 # endif
1400 #endif
1401 
1402 #ifdef SWIG_PYTHON_BUILD_NONE
1403 # ifdef Py_None
1404 # undef Py_None
1405 # define Py_None SWIG_Py_None()
1406 # endif
1407 SWIGRUNTIMEINLINE PyObject *
1408 _SWIG_Py_None(void)
1409 {
1410  PyObject *none = Py_BuildValue((char*)"");
1411  Py_DECREF(none);
1412  return none;
1413 }
1414 SWIGRUNTIME PyObject *
1415 SWIG_Py_None(void)
1416 {
1417  static PyObject *SWIG_STATIC_POINTER(none) = _SWIG_Py_None();
1418  return none;
1419 }
1420 #endif
1421 
1422 /* The python void return value */
1423 
1424 SWIGRUNTIMEINLINE PyObject *
1425 SWIG_Py_Void(void)
1426 {
1427  PyObject *none = Py_None;
1428  Py_INCREF(none);
1429  return none;
1430 }
1431 
1432 /* SwigPyClientData */
1433 
1434 typedef struct {
1435  PyObject *klass;
1436  PyObject *newraw;
1437  PyObject *newargs;
1438  PyObject *destroy;
1439  int delargs;
1440  int implicitconv;
1441  PyTypeObject *pytype;
1443 
1444 SWIGRUNTIMEINLINE int
1445 SWIG_Python_CheckImplicit(swig_type_info *ty)
1446 {
1447  SwigPyClientData *data = (SwigPyClientData *)ty->clientdata;
1448  return data ? data->implicitconv : 0;
1449 }
1450 
1451 SWIGRUNTIMEINLINE PyObject *
1452 SWIG_Python_ExceptionType(swig_type_info *desc) {
1453  SwigPyClientData *data = desc ? (SwigPyClientData *) desc->clientdata : 0;
1454  PyObject *klass = data ? data->klass : 0;
1455  return (klass ? klass : PyExc_RuntimeError);
1456 }
1457 
1458 
1459 SWIGRUNTIME SwigPyClientData *
1460 SwigPyClientData_New(PyObject* obj)
1461 {
1462  if (!obj) {
1463  return 0;
1464  } else {
1465  SwigPyClientData *data = (SwigPyClientData *)malloc(sizeof(SwigPyClientData));
1466  /* the klass element */
1467  data->klass = obj;
1468  Py_INCREF(data->klass);
1469  /* the newraw method and newargs arguments used to create a new raw instance */
1470  if (PyClass_Check(obj)) {
1471  data->newraw = 0;
1472  data->newargs = obj;
1473  Py_INCREF(obj);
1474  } else {
1475 #if (PY_VERSION_HEX < 0x02020000)
1476  data->newraw = 0;
1477 #else
1478  data->newraw = PyObject_GetAttrString(data->klass, (char *)"__new__");
1479 #endif
1480  if (data->newraw) {
1481  Py_INCREF(data->newraw);
1482  data->newargs = PyTuple_New(1);
1483  PyTuple_SetItem(data->newargs, 0, obj);
1484  } else {
1485  data->newargs = obj;
1486  }
1487  Py_INCREF(data->newargs);
1488  }
1489  /* the destroy method, aka as the C++ delete method */
1490  data->destroy = PyObject_GetAttrString(data->klass, (char *)"__swig_destroy__");
1491  if (PyErr_Occurred()) {
1492  PyErr_Clear();
1493  data->destroy = 0;
1494  }
1495  if (data->destroy) {
1496  int flags;
1497  Py_INCREF(data->destroy);
1498  flags = PyCFunction_GET_FLAGS(data->destroy);
1499 #ifdef METH_O
1500  data->delargs = !(flags & (METH_O));
1501 #else
1502  data->delargs = 0;
1503 #endif
1504  } else {
1505  data->delargs = 0;
1506  }
1507  data->implicitconv = 0;
1508  data->pytype = 0;
1509  return data;
1510  }
1511 }
1512 
1513 SWIGRUNTIME void
1514 SwigPyClientData_Del(SwigPyClientData *data) {
1515  Py_XDECREF(data->newraw);
1516  Py_XDECREF(data->newargs);
1517  Py_XDECREF(data->destroy);
1518 }
1519 
1520 /* =============== SwigPyObject =====================*/
1521 
1522 typedef struct {
1523  PyObject_HEAD
1524  void *ptr;
1525  swig_type_info *ty;
1526  int own;
1527  PyObject *next;
1528 #ifdef SWIGPYTHON_BUILTIN
1529  PyObject *dict;
1530 #endif
1531 } SwigPyObject;
1532 
1533 
1534 #ifdef SWIGPYTHON_BUILTIN
1535 
1536 SWIGRUNTIME PyObject *
1537 SwigPyObject_get___dict__(PyObject *v, PyObject *SWIGUNUSEDPARM(args))
1538 {
1539  SwigPyObject *sobj = (SwigPyObject *)v;
1540 
1541  if (!sobj->dict)
1542  sobj->dict = PyDict_New();
1543 
1544  Py_INCREF(sobj->dict);
1545  return sobj->dict;
1546 }
1547 
1548 #endif
1549 
1550 SWIGRUNTIME PyObject *
1551 SwigPyObject_long(SwigPyObject *v)
1552 {
1553  return PyLong_FromVoidPtr(v->ptr);
1554 }
1555 
1556 SWIGRUNTIME PyObject *
1557 SwigPyObject_format(const char* fmt, SwigPyObject *v)
1558 {
1559  PyObject *res = NULL;
1560  PyObject *args = PyTuple_New(1);
1561  if (args) {
1562  if (PyTuple_SetItem(args, 0, SwigPyObject_long(v)) == 0) {
1563  PyObject *ofmt = SWIG_Python_str_FromChar(fmt);
1564  if (ofmt) {
1565 #if PY_VERSION_HEX >= 0x03000000
1566  res = PyUnicode_Format(ofmt,args);
1567 #else
1568  res = PyString_Format(ofmt,args);
1569 #endif
1570  Py_DECREF(ofmt);
1571  }
1572  Py_DECREF(args);
1573  }
1574  }
1575  return res;
1576 }
1577 
1578 SWIGRUNTIME PyObject *
1579 SwigPyObject_oct(SwigPyObject *v)
1580 {
1581  return SwigPyObject_format("%o",v);
1582 }
1583 
1584 SWIGRUNTIME PyObject *
1585 SwigPyObject_hex(SwigPyObject *v)
1586 {
1587  return SwigPyObject_format("%x",v);
1588 }
1589 
1590 SWIGRUNTIME PyObject *
1591 #ifdef METH_NOARGS
1592 SwigPyObject_repr(SwigPyObject *v)
1593 #else
1594 SwigPyObject_repr(SwigPyObject *v, PyObject *args)
1595 #endif
1596 {
1597  const char *name = SWIG_TypePrettyName(v->ty);
1598  PyObject *repr = SWIG_Python_str_FromFormat("<Swig Object of type '%s' at %p>", (name ? name : "unknown"), (void *)v);
1599  if (v->next) {
1600 # ifdef METH_NOARGS
1601  PyObject *nrep = SwigPyObject_repr((SwigPyObject *)v->next);
1602 # else
1603  PyObject *nrep = SwigPyObject_repr((SwigPyObject *)v->next, args);
1604 # endif
1605 # if PY_VERSION_HEX >= 0x03000000
1606  PyObject *joined = PyUnicode_Concat(repr, nrep);
1607  Py_DecRef(repr);
1608  Py_DecRef(nrep);
1609  repr = joined;
1610 # else
1611  PyString_ConcatAndDel(&repr,nrep);
1612 # endif
1613  }
1614  return repr;
1615 }
1616 
1617 SWIGRUNTIME int
1618 SwigPyObject_compare(SwigPyObject *v, SwigPyObject *w)
1619 {
1620  void *i = v->ptr;
1621  void *j = w->ptr;
1622  return (i < j) ? -1 : ((i > j) ? 1 : 0);
1623 }
1624 
1625 /* Added for Python 3.x, would it also be useful for Python 2.x? */
1626 SWIGRUNTIME PyObject*
1627 SwigPyObject_richcompare(SwigPyObject *v, SwigPyObject *w, int op)
1628 {
1629  PyObject* res;
1630  if( op != Py_EQ && op != Py_NE ) {
1631  Py_INCREF(Py_NotImplemented);
1632  return Py_NotImplemented;
1633  }
1634  res = PyBool_FromLong( (SwigPyObject_compare(v, w)==0) == (op == Py_EQ) ? 1 : 0);
1635  return res;
1636 }
1637 
1638 
1639 SWIGRUNTIME PyTypeObject* SwigPyObject_TypeOnce(void);
1640 
1641 #ifdef SWIGPYTHON_BUILTIN
1642 static swig_type_info *SwigPyObject_stype = 0;
1643 SWIGRUNTIME PyTypeObject*
1644 SwigPyObject_type(void) {
1645  SwigPyClientData *cd;
1646  assert(SwigPyObject_stype);
1647  cd = (SwigPyClientData*) SwigPyObject_stype->clientdata;
1648  assert(cd);
1649  assert(cd->pytype);
1650  return cd->pytype;
1651 }
1652 #else
1653 SWIGRUNTIME PyTypeObject*
1654 SwigPyObject_type(void) {
1655  static PyTypeObject *SWIG_STATIC_POINTER(type) = SwigPyObject_TypeOnce();
1656  return type;
1657 }
1658 #endif
1659 
1660 SWIGRUNTIMEINLINE int
1661 SwigPyObject_Check(PyObject *op) {
1662 #ifdef SWIGPYTHON_BUILTIN
1663  PyTypeObject *target_tp = SwigPyObject_type();
1664  if (PyType_IsSubtype(op->ob_type, target_tp))
1665  return 1;
1666  return (strcmp(op->ob_type->tp_name, "SwigPyObject") == 0);
1667 #else
1668  return (Py_TYPE(op) == SwigPyObject_type())
1669  || (strcmp(Py_TYPE(op)->tp_name,"SwigPyObject") == 0);
1670 #endif
1671 }
1672 
1673 SWIGRUNTIME PyObject *
1674 SwigPyObject_New(void *ptr, swig_type_info *ty, int own);
1675 
1676 SWIGRUNTIME void
1677 SwigPyObject_dealloc(PyObject *v)
1678 {
1679  SwigPyObject *sobj = (SwigPyObject *) v;
1680  PyObject *next = sobj->next;
1681  if (sobj->own == SWIG_POINTER_OWN) {
1682  swig_type_info *ty = sobj->ty;
1683  SwigPyClientData *data = ty ? (SwigPyClientData *) ty->clientdata : 0;
1684  PyObject *destroy = data ? data->destroy : 0;
1685  if (destroy) {
1686  /* destroy is always a VARARGS method */
1687  PyObject *res;
1688 
1689  /* PyObject_CallFunction() has the potential to silently drop
1690  the active active exception. In cases of unnamed temporary
1691  variable or where we just finished iterating over a generator
1692  StopIteration will be active right now, and this needs to
1693  remain true upon return from SwigPyObject_dealloc. So save
1694  and restore. */
1695 
1696  PyObject *val = NULL, *type = NULL, *tb = NULL;
1697  PyErr_Fetch(&val, &type, &tb);
1698 
1699  if (data->delargs) {
1700  /* we need to create a temporary object to carry the destroy operation */
1701  PyObject *tmp = SwigPyObject_New(sobj->ptr, ty, 0);
1702  res = SWIG_Python_CallFunctor(destroy, tmp);
1703  Py_DECREF(tmp);
1704  } else {
1705  PyCFunction meth = PyCFunction_GET_FUNCTION(destroy);
1706  PyObject *mself = PyCFunction_GET_SELF(destroy);
1707  res = ((*meth)(mself, v));
1708  }
1709  if (!res)
1710  PyErr_WriteUnraisable(destroy);
1711 
1712  PyErr_Restore(val, type, tb);
1713 
1714  Py_XDECREF(res);
1715  }
1716 #if !defined(SWIG_PYTHON_SILENT_MEMLEAK)
1717  else {
1718  const char *name = SWIG_TypePrettyName(ty);
1719  printf("swig/python detected a memory leak of type '%s', no destructor found.\n", (name ? name : "unknown"));
1720  }
1721 #endif
1722  }
1723  Py_XDECREF(next);
1724  PyObject_DEL(v);
1725 }
1726 
1727 SWIGRUNTIME PyObject*
1728 SwigPyObject_append(PyObject* v, PyObject* next)
1729 {
1730  SwigPyObject *sobj = (SwigPyObject *) v;
1731 #ifndef METH_O
1732  PyObject *tmp = 0;
1733  if (!PyArg_ParseTuple(next,(char *)"O:append", &tmp)) return NULL;
1734  next = tmp;
1735 #endif
1736  if (!SwigPyObject_Check(next)) {
1737  PyErr_SetString(PyExc_TypeError, "Attempt to append a non SwigPyObject");
1738  return NULL;
1739  }
1740  sobj->next = next;
1741  Py_INCREF(next);
1742  return SWIG_Py_Void();
1743 }
1744 
1745 SWIGRUNTIME PyObject*
1746 #ifdef METH_NOARGS
1747 SwigPyObject_next(PyObject* v)
1748 #else
1749 SwigPyObject_next(PyObject* v, PyObject *SWIGUNUSEDPARM(args))
1750 #endif
1751 {
1752  SwigPyObject *sobj = (SwigPyObject *) v;
1753  if (sobj->next) {
1754  Py_INCREF(sobj->next);
1755  return sobj->next;
1756  } else {
1757  return SWIG_Py_Void();
1758  }
1759 }
1760 
1761 SWIGINTERN PyObject*
1762 #ifdef METH_NOARGS
1763 SwigPyObject_disown(PyObject *v)
1764 #else
1765 SwigPyObject_disown(PyObject* v, PyObject *SWIGUNUSEDPARM(args))
1766 #endif
1767 {
1768  SwigPyObject *sobj = (SwigPyObject *)v;
1769  sobj->own = 0;
1770  return SWIG_Py_Void();
1771 }
1772 
1773 SWIGINTERN PyObject*
1774 #ifdef METH_NOARGS
1775 SwigPyObject_acquire(PyObject *v)
1776 #else
1777 SwigPyObject_acquire(PyObject* v, PyObject *SWIGUNUSEDPARM(args))
1778 #endif
1779 {
1780  SwigPyObject *sobj = (SwigPyObject *)v;
1781  sobj->own = SWIG_POINTER_OWN;
1782  return SWIG_Py_Void();
1783 }
1784 
1785 SWIGINTERN PyObject*
1786 SwigPyObject_own(PyObject *v, PyObject *args)
1787 {
1788  PyObject *val = 0;
1789 #if (PY_VERSION_HEX < 0x02020000)
1790  if (!PyArg_ParseTuple(args,(char *)"|O:own",&val))
1791 #elif (PY_VERSION_HEX < 0x02050000)
1792  if (!PyArg_UnpackTuple(args, (char *)"own", 0, 1, &val))
1793 #else
1794  if (!PyArg_UnpackTuple(args, "own", 0, 1, &val))
1795 #endif
1796  {
1797  return NULL;
1798  }
1799  else
1800  {
1801  SwigPyObject *sobj = (SwigPyObject *)v;
1802  PyObject *obj = PyBool_FromLong(sobj->own);
1803  if (val) {
1804 #ifdef METH_NOARGS
1805  if (PyObject_IsTrue(val)) {
1806  SwigPyObject_acquire(v);
1807  } else {
1808  SwigPyObject_disown(v);
1809  }
1810 #else
1811  if (PyObject_IsTrue(val)) {
1812  SwigPyObject_acquire(v,args);
1813  } else {
1814  SwigPyObject_disown(v,args);
1815  }
1816 #endif
1817  }
1818  return obj;
1819  }
1820 }
1821 
1822 #ifdef METH_O
1823 static PyMethodDef
1824 swigobject_methods[] = {
1825  {(char *)"disown", (PyCFunction)SwigPyObject_disown, METH_NOARGS, (char *)"releases ownership of the pointer"},
1826  {(char *)"acquire", (PyCFunction)SwigPyObject_acquire, METH_NOARGS, (char *)"acquires ownership of the pointer"},
1827  {(char *)"own", (PyCFunction)SwigPyObject_own, METH_VARARGS, (char *)"returns/sets ownership of the pointer"},
1828  {(char *)"append", (PyCFunction)SwigPyObject_append, METH_O, (char *)"appends another 'this' object"},
1829  {(char *)"next", (PyCFunction)SwigPyObject_next, METH_NOARGS, (char *)"returns the next 'this' object"},
1830  {(char *)"__repr__",(PyCFunction)SwigPyObject_repr, METH_NOARGS, (char *)"returns object representation"},
1831  {0, 0, 0, 0}
1832 };
1833 #else
1834 static PyMethodDef
1835 swigobject_methods[] = {
1836  {(char *)"disown", (PyCFunction)SwigPyObject_disown, METH_VARARGS, (char *)"releases ownership of the pointer"},
1837  {(char *)"acquire", (PyCFunction)SwigPyObject_acquire, METH_VARARGS, (char *)"acquires ownership of the pointer"},
1838  {(char *)"own", (PyCFunction)SwigPyObject_own, METH_VARARGS, (char *)"returns/sets ownership of the pointer"},
1839  {(char *)"append", (PyCFunction)SwigPyObject_append, METH_VARARGS, (char *)"appends another 'this' object"},
1840  {(char *)"next", (PyCFunction)SwigPyObject_next, METH_VARARGS, (char *)"returns the next 'this' object"},
1841  {(char *)"__repr__",(PyCFunction)SwigPyObject_repr, METH_VARARGS, (char *)"returns object representation"},
1842  {0, 0, 0, 0}
1843 };
1844 #endif
1845 
1846 #if PY_VERSION_HEX < 0x02020000
1847 SWIGINTERN PyObject *
1848 SwigPyObject_getattr(SwigPyObject *sobj,char *name)
1849 {
1850  return Py_FindMethod(swigobject_methods, (PyObject *)sobj, name);
1851 }
1852 #endif
1853 
1854 SWIGRUNTIME PyTypeObject*
1855 SwigPyObject_TypeOnce(void) {
1856  static char swigobject_doc[] = "Swig object carries a C/C++ instance pointer";
1857 
1858  static PyNumberMethods SwigPyObject_as_number = {
1859  (binaryfunc)0, /*nb_add*/
1860  (binaryfunc)0, /*nb_subtract*/
1861  (binaryfunc)0, /*nb_multiply*/
1862  /* nb_divide removed in Python 3 */
1863 #if PY_VERSION_HEX < 0x03000000
1864  (binaryfunc)0, /*nb_divide*/
1865 #endif
1866  (binaryfunc)0, /*nb_remainder*/
1867  (binaryfunc)0, /*nb_divmod*/
1868  (ternaryfunc)0,/*nb_power*/
1869  (unaryfunc)0, /*nb_negative*/
1870  (unaryfunc)0, /*nb_positive*/
1871  (unaryfunc)0, /*nb_absolute*/
1872  (inquiry)0, /*nb_nonzero*/
1873  0, /*nb_invert*/
1874  0, /*nb_lshift*/
1875  0, /*nb_rshift*/
1876  0, /*nb_and*/
1877  0, /*nb_xor*/
1878  0, /*nb_or*/
1879 #if PY_VERSION_HEX < 0x03000000
1880  0, /*nb_coerce*/
1881 #endif
1882  (unaryfunc)SwigPyObject_long, /*nb_int*/
1883 #if PY_VERSION_HEX < 0x03000000
1884  (unaryfunc)SwigPyObject_long, /*nb_long*/
1885 #else
1886  0, /*nb_reserved*/
1887 #endif
1888  (unaryfunc)0, /*nb_float*/
1889 #if PY_VERSION_HEX < 0x03000000
1890  (unaryfunc)SwigPyObject_oct, /*nb_oct*/
1891  (unaryfunc)SwigPyObject_hex, /*nb_hex*/
1892 #endif
1893 #if PY_VERSION_HEX >= 0x03050000 /* 3.5 */
1894  0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 /* nb_inplace_add -> nb_inplace_matrix_multiply */
1895 #elif PY_VERSION_HEX >= 0x03000000 /* 3.0 */
1896  0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 /* nb_inplace_add -> nb_index, nb_inplace_divide removed */
1897 #elif PY_VERSION_HEX >= 0x02050000 /* 2.5.0 */
1898  0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 /* nb_inplace_add -> nb_index */
1899 #elif PY_VERSION_HEX >= 0x02020000 /* 2.2.0 */
1900  0,0,0,0,0,0,0,0,0,0,0,0,0,0,0 /* nb_inplace_add -> nb_inplace_true_divide */
1901 #elif PY_VERSION_HEX >= 0x02000000 /* 2.0.0 */
1902  0,0,0,0,0,0,0,0,0,0,0 /* nb_inplace_add -> nb_inplace_or */
1903 #endif
1904  };
1905 
1906  static PyTypeObject swigpyobject_type;
1907  static int type_init = 0;
1908  if (!type_init) {
1909  const PyTypeObject tmp = {
1910  /* PyObject header changed in Python 3 */
1911 #if PY_VERSION_HEX >= 0x03000000
1912  PyVarObject_HEAD_INIT(NULL, 0)
1913 #else
1914  PyObject_HEAD_INIT(NULL)
1915  0, /* ob_size */
1916 #endif
1917  (char *)"SwigPyObject", /* tp_name */
1918  sizeof(SwigPyObject), /* tp_basicsize */
1919  0, /* tp_itemsize */
1920  (destructor)SwigPyObject_dealloc, /* tp_dealloc */
1921  0, /* tp_print */
1922 #if PY_VERSION_HEX < 0x02020000
1923  (getattrfunc)SwigPyObject_getattr, /* tp_getattr */
1924 #else
1925  (getattrfunc)0, /* tp_getattr */
1926 #endif
1927  (setattrfunc)0, /* tp_setattr */
1928 #if PY_VERSION_HEX >= 0x03000000
1929  0, /* tp_reserved in 3.0.1, tp_compare in 3.0.0 but not used */
1930 #else
1931  (cmpfunc)SwigPyObject_compare, /* tp_compare */
1932 #endif
1933  (reprfunc)SwigPyObject_repr, /* tp_repr */
1934  &SwigPyObject_as_number, /* tp_as_number */
1935  0, /* tp_as_sequence */
1936  0, /* tp_as_mapping */
1937  (hashfunc)0, /* tp_hash */
1938  (ternaryfunc)0, /* tp_call */
1939  0, /* tp_str */
1940  PyObject_GenericGetAttr, /* tp_getattro */
1941  0, /* tp_setattro */
1942  0, /* tp_as_buffer */
1943  Py_TPFLAGS_DEFAULT, /* tp_flags */
1944  swigobject_doc, /* tp_doc */
1945  0, /* tp_traverse */
1946  0, /* tp_clear */
1947  (richcmpfunc)SwigPyObject_richcompare,/* tp_richcompare */
1948  0, /* tp_weaklistoffset */
1949 #if PY_VERSION_HEX >= 0x02020000
1950  0, /* tp_iter */
1951  0, /* tp_iternext */
1952  swigobject_methods, /* tp_methods */
1953  0, /* tp_members */
1954  0, /* tp_getset */
1955  0, /* tp_base */
1956  0, /* tp_dict */
1957  0, /* tp_descr_get */
1958  0, /* tp_descr_set */
1959  0, /* tp_dictoffset */
1960  0, /* tp_init */
1961  0, /* tp_alloc */
1962  0, /* tp_new */
1963  0, /* tp_free */
1964  0, /* tp_is_gc */
1965  0, /* tp_bases */
1966  0, /* tp_mro */
1967  0, /* tp_cache */
1968  0, /* tp_subclasses */
1969  0, /* tp_weaklist */
1970 #endif
1971 #if PY_VERSION_HEX >= 0x02030000
1972  0, /* tp_del */
1973 #endif
1974 #if PY_VERSION_HEX >= 0x02060000
1975  0, /* tp_version_tag */
1976 #endif
1977 #if PY_VERSION_HEX >= 0x03040000
1978  0, /* tp_finalize */
1979 #endif
1980 #ifdef COUNT_ALLOCS
1981  0, /* tp_allocs */
1982  0, /* tp_frees */
1983  0, /* tp_maxalloc */
1984 #if PY_VERSION_HEX >= 0x02050000
1985  0, /* tp_prev */
1986 #endif
1987  0 /* tp_next */
1988 #endif
1989  };
1990  swigpyobject_type = tmp;
1991  type_init = 1;
1992 #if PY_VERSION_HEX < 0x02020000
1993  swigpyobject_type.ob_type = &PyType_Type;
1994 #else
1995  if (PyType_Ready(&swigpyobject_type) < 0)
1996  return NULL;
1997 #endif
1998  }
1999  return &swigpyobject_type;
2000 }
2001 
2002 SWIGRUNTIME PyObject *
2003 SwigPyObject_New(void *ptr, swig_type_info *ty, int own)
2004 {
2005  SwigPyObject *sobj = PyObject_NEW(SwigPyObject, SwigPyObject_type());
2006  if (sobj) {
2007  sobj->ptr = ptr;
2008  sobj->ty = ty;
2009  sobj->own = own;
2010  sobj->next = 0;
2011  }
2012  return (PyObject *)sobj;
2013 }
2014 
2015 /* -----------------------------------------------------------------------------
2016  * Implements a simple Swig Packed type, and use it instead of string
2017  * ----------------------------------------------------------------------------- */
2018 
2019 typedef struct {
2020  PyObject_HEAD
2021  void *pack;
2022  swig_type_info *ty;
2023  size_t size;
2024 } SwigPyPacked;
2025 
2026 SWIGRUNTIME int
2027 SwigPyPacked_print(SwigPyPacked *v, FILE *fp, int SWIGUNUSEDPARM(flags))
2028 {
2029  char result[SWIG_BUFFER_SIZE];
2030  fputs("<Swig Packed ", fp);
2031  if (SWIG_PackDataName(result, v->pack, v->size, 0, sizeof(result))) {
2032  fputs("at ", fp);
2033  fputs(result, fp);
2034  }
2035  fputs(v->ty->name,fp);
2036  fputs(">", fp);
2037  return 0;
2038 }
2039 
2040 SWIGRUNTIME PyObject *
2041 SwigPyPacked_repr(SwigPyPacked *v)
2042 {
2043  char result[SWIG_BUFFER_SIZE];
2044  if (SWIG_PackDataName(result, v->pack, v->size, 0, sizeof(result))) {
2045  return SWIG_Python_str_FromFormat("<Swig Packed at %s%s>", result, v->ty->name);
2046  } else {
2047  return SWIG_Python_str_FromFormat("<Swig Packed %s>", v->ty->name);
2048  }
2049 }
2050 
2051 SWIGRUNTIME PyObject *
2052 SwigPyPacked_str(SwigPyPacked *v)
2053 {
2054  char result[SWIG_BUFFER_SIZE];
2055  if (SWIG_PackDataName(result, v->pack, v->size, 0, sizeof(result))){
2056  return SWIG_Python_str_FromFormat("%s%s", result, v->ty->name);
2057  } else {
2058  return SWIG_Python_str_FromChar(v->ty->name);
2059  }
2060 }
2061 
2062 SWIGRUNTIME int
2063 SwigPyPacked_compare(SwigPyPacked *v, SwigPyPacked *w)
2064 {
2065  size_t i = v->size;
2066  size_t j = w->size;
2067  int s = (i < j) ? -1 : ((i > j) ? 1 : 0);
2068  return s ? s : strncmp((char *)v->pack, (char *)w->pack, 2*v->size);
2069 }
2070 
2071 SWIGRUNTIME PyTypeObject* SwigPyPacked_TypeOnce(void);
2072 
2073 SWIGRUNTIME PyTypeObject*
2074 SwigPyPacked_type(void) {
2075  static PyTypeObject *SWIG_STATIC_POINTER(type) = SwigPyPacked_TypeOnce();
2076  return type;
2077 }
2078 
2079 SWIGRUNTIMEINLINE int
2080 SwigPyPacked_Check(PyObject *op) {
2081  return ((op)->ob_type == SwigPyPacked_TypeOnce())
2082  || (strcmp((op)->ob_type->tp_name,"SwigPyPacked") == 0);
2083 }
2084 
2085 SWIGRUNTIME void
2086 SwigPyPacked_dealloc(PyObject *v)
2087 {
2088  if (SwigPyPacked_Check(v)) {
2089  SwigPyPacked *sobj = (SwigPyPacked *) v;
2090  free(sobj->pack);
2091  }
2092  PyObject_DEL(v);
2093 }
2094 
2095 SWIGRUNTIME PyTypeObject*
2096 SwigPyPacked_TypeOnce(void) {
2097  static char swigpacked_doc[] = "Swig object carries a C/C++ instance pointer";
2098  static PyTypeObject swigpypacked_type;
2099  static int type_init = 0;
2100  if (!type_init) {
2101  const PyTypeObject tmp = {
2102  /* PyObject header changed in Python 3 */
2103 #if PY_VERSION_HEX>=0x03000000
2104  PyVarObject_HEAD_INIT(NULL, 0)
2105 #else
2106  PyObject_HEAD_INIT(NULL)
2107  0, /* ob_size */
2108 #endif
2109  (char *)"SwigPyPacked", /* tp_name */
2110  sizeof(SwigPyPacked), /* tp_basicsize */
2111  0, /* tp_itemsize */
2112  (destructor)SwigPyPacked_dealloc, /* tp_dealloc */
2113  (printfunc)SwigPyPacked_print, /* tp_print */
2114  (getattrfunc)0, /* tp_getattr */
2115  (setattrfunc)0, /* tp_setattr */
2116 #if PY_VERSION_HEX>=0x03000000
2117  0, /* tp_reserved in 3.0.1 */
2118 #else
2119  (cmpfunc)SwigPyPacked_compare, /* tp_compare */
2120 #endif
2121  (reprfunc)SwigPyPacked_repr, /* tp_repr */
2122  0, /* tp_as_number */
2123  0, /* tp_as_sequence */
2124  0, /* tp_as_mapping */
2125  (hashfunc)0, /* tp_hash */
2126  (ternaryfunc)0, /* tp_call */
2127  (reprfunc)SwigPyPacked_str, /* tp_str */
2128  PyObject_GenericGetAttr, /* tp_getattro */
2129  0, /* tp_setattro */
2130  0, /* tp_as_buffer */
2131  Py_TPFLAGS_DEFAULT, /* tp_flags */
2132  swigpacked_doc, /* tp_doc */
2133  0, /* tp_traverse */
2134  0, /* tp_clear */
2135  0, /* tp_richcompare */
2136  0, /* tp_weaklistoffset */
2137 #if PY_VERSION_HEX >= 0x02020000
2138  0, /* tp_iter */
2139  0, /* tp_iternext */
2140  0, /* tp_methods */
2141  0, /* tp_members */
2142  0, /* tp_getset */
2143  0, /* tp_base */
2144  0, /* tp_dict */
2145  0, /* tp_descr_get */
2146  0, /* tp_descr_set */
2147  0, /* tp_dictoffset */
2148  0, /* tp_init */
2149  0, /* tp_alloc */
2150  0, /* tp_new */
2151  0, /* tp_free */
2152  0, /* tp_is_gc */
2153  0, /* tp_bases */
2154  0, /* tp_mro */
2155  0, /* tp_cache */
2156  0, /* tp_subclasses */
2157  0, /* tp_weaklist */
2158 #endif
2159 #if PY_VERSION_HEX >= 0x02030000
2160  0, /* tp_del */
2161 #endif
2162 #if PY_VERSION_HEX >= 0x02060000
2163  0, /* tp_version_tag */
2164 #endif
2165 #if PY_VERSION_HEX >= 0x03040000
2166  0, /* tp_finalize */
2167 #endif
2168 #ifdef COUNT_ALLOCS
2169  0, /* tp_allocs */
2170  0, /* tp_frees */
2171  0, /* tp_maxalloc */
2172 #if PY_VERSION_HEX >= 0x02050000
2173  0, /* tp_prev */
2174 #endif
2175  0 /* tp_next */
2176 #endif
2177  };
2178  swigpypacked_type = tmp;
2179  type_init = 1;
2180 #if PY_VERSION_HEX < 0x02020000
2181  swigpypacked_type.ob_type = &PyType_Type;
2182 #else
2183  if (PyType_Ready(&swigpypacked_type) < 0)
2184  return NULL;
2185 #endif
2186  }
2187  return &swigpypacked_type;
2188 }
2189 
2190 SWIGRUNTIME PyObject *
2191 SwigPyPacked_New(void *ptr, size_t size, swig_type_info *ty)
2192 {
2193  SwigPyPacked *sobj = PyObject_NEW(SwigPyPacked, SwigPyPacked_type());
2194  if (sobj) {
2195  void *pack = malloc(size);
2196  if (pack) {
2197  memcpy(pack, ptr, size);
2198  sobj->pack = pack;
2199  sobj->ty = ty;
2200  sobj->size = size;
2201  } else {
2202  PyObject_DEL((PyObject *) sobj);
2203  sobj = 0;
2204  }
2205  }
2206  return (PyObject *) sobj;
2207 }
2208 
2209 SWIGRUNTIME swig_type_info *
2210 SwigPyPacked_UnpackData(PyObject *obj, void *ptr, size_t size)
2211 {
2212  if (SwigPyPacked_Check(obj)) {
2213  SwigPyPacked *sobj = (SwigPyPacked *)obj;
2214  if (sobj->size != size) return 0;
2215  memcpy(ptr, sobj->pack, size);
2216  return sobj->ty;
2217  } else {
2218  return 0;
2219  }
2220 }
2221 
2222 /* -----------------------------------------------------------------------------
2223  * pointers/data manipulation
2224  * ----------------------------------------------------------------------------- */
2225 
2226 SWIGRUNTIMEINLINE PyObject *
2227 _SWIG_This(void)
2228 {
2229  return SWIG_Python_str_FromChar("this");
2230 }
2231 
2232 static PyObject *swig_this = NULL;
2233 
2234 SWIGRUNTIME PyObject *
2235 SWIG_This(void)
2236 {
2237  if (swig_this == NULL)
2238  swig_this = _SWIG_This();
2239  return swig_this;
2240 }
2241 
2242 /* #define SWIG_PYTHON_SLOW_GETSET_THIS */
2243 
2244 /* TODO: I don't know how to implement the fast getset in Python 3 right now */
2245 #if PY_VERSION_HEX>=0x03000000
2246 #define SWIG_PYTHON_SLOW_GETSET_THIS
2247 #endif
2248 
2249 SWIGRUNTIME SwigPyObject *
2250 SWIG_Python_GetSwigThis(PyObject *pyobj)
2251 {
2252  PyObject *obj;
2253 
2254  if (SwigPyObject_Check(pyobj))
2255  return (SwigPyObject *) pyobj;
2256 
2257 #ifdef SWIGPYTHON_BUILTIN
2258  (void)obj;
2259 # ifdef PyWeakref_CheckProxy
2260  if (PyWeakref_CheckProxy(pyobj)) {
2261  pyobj = PyWeakref_GET_OBJECT(pyobj);
2262  if (pyobj && SwigPyObject_Check(pyobj))
2263  return (SwigPyObject*) pyobj;
2264  }
2265 # endif
2266  return NULL;
2267 #else
2268 
2269  obj = 0;
2270 
2271 #if (!defined(SWIG_PYTHON_SLOW_GETSET_THIS) && (PY_VERSION_HEX >= 0x02030000))
2272  if (PyInstance_Check(pyobj)) {
2273  obj = _PyInstance_Lookup(pyobj, SWIG_This());
2274  } else {
2275  PyObject **dictptr = _PyObject_GetDictPtr(pyobj);
2276  if (dictptr != NULL) {
2277  PyObject *dict = *dictptr;
2278  obj = dict ? PyDict_GetItem(dict, SWIG_This()) : 0;
2279  } else {
2280 #ifdef PyWeakref_CheckProxy
2281  if (PyWeakref_CheckProxy(pyobj)) {
2282  PyObject *wobj = PyWeakref_GET_OBJECT(pyobj);
2283  return wobj ? SWIG_Python_GetSwigThis(wobj) : 0;
2284  }
2285 #endif
2286  obj = PyObject_GetAttr(pyobj,SWIG_This());
2287  if (obj) {
2288  Py_DECREF(obj);
2289  } else {
2290  if (PyErr_Occurred()) PyErr_Clear();
2291  return 0;
2292  }
2293  }
2294  }
2295 #else
2296  obj = PyObject_GetAttr(pyobj,SWIG_This());
2297  if (obj) {
2298  Py_DECREF(obj);
2299  } else {
2300  if (PyErr_Occurred()) PyErr_Clear();
2301  return 0;
2302  }
2303 #endif
2304  if (obj && !SwigPyObject_Check(obj)) {
2305  /* a PyObject is called 'this', try to get the 'real this'
2306  SwigPyObject from it */
2307  return SWIG_Python_GetSwigThis(obj);
2308  }
2309  return (SwigPyObject *)obj;
2310 #endif
2311 }
2312 
2313 /* Acquire a pointer value */
2314 
2315 SWIGRUNTIME int
2316 SWIG_Python_AcquirePtr(PyObject *obj, int own) {
2317  if (own == SWIG_POINTER_OWN) {
2318  SwigPyObject *sobj = SWIG_Python_GetSwigThis(obj);
2319  if (sobj) {
2320  int oldown = sobj->own;
2321  sobj->own = own;
2322  return oldown;
2323  }
2324  }
2325  return 0;
2326 }
2327 
2328 /* Convert a pointer value */
2329 
2330 SWIGRUNTIME int
2331 SWIG_Python_ConvertPtrAndOwn(PyObject *obj, void **ptr, swig_type_info *ty, int flags, int *own) {
2332  int res;
2333  SwigPyObject *sobj;
2334  int implicit_conv = (flags & SWIG_POINTER_IMPLICIT_CONV) != 0;
2335 
2336  if (!obj)
2337  return SWIG_ERROR;
2338  if (obj == Py_None && !implicit_conv) {
2339  if (ptr)
2340  *ptr = 0;
2341  return SWIG_OK;
2342  }
2343 
2344  res = SWIG_ERROR;
2345 
2346  sobj = SWIG_Python_GetSwigThis(obj);
2347  if (own)
2348  *own = 0;
2349  while (sobj) {
2350  void *vptr = sobj->ptr;
2351  if (ty) {
2352  swig_type_info *to = sobj->ty;
2353  if (to == ty) {
2354  /* no type cast needed */
2355  if (ptr) *ptr = vptr;
2356  break;
2357  } else {
2358  swig_cast_info *tc = SWIG_TypeCheck(to->name,ty);
2359  if (!tc) {
2360  sobj = (SwigPyObject *)sobj->next;
2361  } else {
2362  if (ptr) {
2363  int newmemory = 0;
2364  *ptr = SWIG_TypeCast(tc,vptr,&newmemory);
2365  if (newmemory == SWIG_CAST_NEW_MEMORY) {
2366  assert(own); /* badly formed typemap which will lead to a memory leak - it must set and use own to delete *ptr */
2367  if (own)
2368  *own = *own | SWIG_CAST_NEW_MEMORY;
2369  }
2370  }
2371  break;
2372  }
2373  }
2374  } else {
2375  if (ptr) *ptr = vptr;
2376  break;
2377  }
2378  }
2379  if (sobj) {
2380  if (own)
2381  *own = *own | sobj->own;
2382  if (flags & SWIG_POINTER_DISOWN) {
2383  sobj->own = 0;
2384  }
2385  res = SWIG_OK;
2386  } else {
2387  if (implicit_conv) {
2388  SwigPyClientData *data = ty ? (SwigPyClientData *) ty->clientdata : 0;
2389  if (data && !data->implicitconv) {
2390  PyObject *klass = data->klass;
2391  if (klass) {
2392  PyObject *impconv;
2393  data->implicitconv = 1; /* avoid recursion and call 'explicit' constructors*/
2394  impconv = SWIG_Python_CallFunctor(klass, obj);
2395  data->implicitconv = 0;
2396  if (PyErr_Occurred()) {
2397  PyErr_Clear();
2398  impconv = 0;
2399  }
2400  if (impconv) {
2401  SwigPyObject *iobj = SWIG_Python_GetSwigThis(impconv);
2402  if (iobj) {
2403  void *vptr;
2404  res = SWIG_Python_ConvertPtrAndOwn((PyObject*)iobj, &vptr, ty, 0, 0);
2405  if (SWIG_IsOK(res)) {
2406  if (ptr) {
2407  *ptr = vptr;
2408  /* transfer the ownership to 'ptr' */
2409  iobj->own = 0;
2410  res = SWIG_AddCast(res);
2411  res = SWIG_AddNewMask(res);
2412  } else {
2413  res = SWIG_AddCast(res);
2414  }
2415  }
2416  }
2417  Py_DECREF(impconv);
2418  }
2419  }
2420  }
2421  }
2422  if (!SWIG_IsOK(res) && obj == Py_None) {
2423  if (ptr)
2424  *ptr = 0;
2425  if (PyErr_Occurred())
2426  PyErr_Clear();
2427  res = SWIG_OK;
2428  }
2429  }
2430  return res;
2431 }
2432 
2433 /* Convert a function ptr value */
2434 
2435 SWIGRUNTIME int
2436 SWIG_Python_ConvertFunctionPtr(PyObject *obj, void **ptr, swig_type_info *ty) {
2437  if (!PyCFunction_Check(obj)) {
2438  return SWIG_ConvertPtr(obj, ptr, ty, 0);
2439  } else {
2440  void *vptr = 0;
2441 
2442  /* here we get the method pointer for callbacks */
2443  const char *doc = (((PyCFunctionObject *)obj) -> m_ml -> ml_doc);
2444  const char *desc = doc ? strstr(doc, "swig_ptr: ") : 0;
2445  if (desc)
2446  desc = ty ? SWIG_UnpackVoidPtr(desc + 10, &vptr, ty->name) : 0;
2447  if (!desc)
2448  return SWIG_ERROR;
2449  if (ty) {
2450  swig_cast_info *tc = SWIG_TypeCheck(desc,ty);
2451  if (tc) {
2452  int newmemory = 0;
2453  *ptr = SWIG_TypeCast(tc,vptr,&newmemory);
2454  assert(!newmemory); /* newmemory handling not yet implemented */
2455  } else {
2456  return SWIG_ERROR;
2457  }
2458  } else {
2459  *ptr = vptr;
2460  }
2461  return SWIG_OK;
2462  }
2463 }
2464 
2465 /* Convert a packed value value */
2466 
2467 SWIGRUNTIME int
2468 SWIG_Python_ConvertPacked(PyObject *obj, void *ptr, size_t sz, swig_type_info *ty) {
2469  swig_type_info *to = SwigPyPacked_UnpackData(obj, ptr, sz);
2470  if (!to) return SWIG_ERROR;
2471  if (ty) {
2472  if (to != ty) {
2473  /* check type cast? */
2474  swig_cast_info *tc = SWIG_TypeCheck(to->name,ty);
2475  if (!tc) return SWIG_ERROR;
2476  }
2477  }
2478  return SWIG_OK;
2479 }
2480 
2481 /* -----------------------------------------------------------------------------
2482  * Create a new pointer object
2483  * ----------------------------------------------------------------------------- */
2484 
2485 /*
2486  Create a new instance object, without calling __init__, and set the
2487  'this' attribute.
2488 */
2489 
2490 SWIGRUNTIME PyObject*
2491 SWIG_Python_NewShadowInstance(SwigPyClientData *data, PyObject *swig_this)
2492 {
2493 #if (PY_VERSION_HEX >= 0x02020000)
2494  PyObject *inst = 0;
2495  PyObject *newraw = data->newraw;
2496  if (newraw) {
2497  inst = PyObject_Call(newraw, data->newargs, NULL);
2498  if (inst) {
2499 #if !defined(SWIG_PYTHON_SLOW_GETSET_THIS)
2500  PyObject **dictptr = _PyObject_GetDictPtr(inst);
2501  if (dictptr != NULL) {
2502  PyObject *dict = *dictptr;
2503  if (dict == NULL) {
2504  dict = PyDict_New();
2505  *dictptr = dict;
2506  PyDict_SetItem(dict, SWIG_This(), swig_this);
2507  }
2508  }
2509 #else
2510  PyObject *key = SWIG_This();
2511  PyObject_SetAttr(inst, key, swig_this);
2512 #endif
2513  }
2514  } else {
2515 #if PY_VERSION_HEX >= 0x03000000
2516  inst = ((PyTypeObject*) data->newargs)->tp_new((PyTypeObject*) data->newargs, Py_None, Py_None);
2517  if (inst) {
2518  PyObject_SetAttr(inst, SWIG_This(), swig_this);
2519  Py_TYPE(inst)->tp_flags &= ~Py_TPFLAGS_VALID_VERSION_TAG;
2520  }
2521 #else
2522  PyObject *dict = PyDict_New();
2523  if (dict) {
2524  PyDict_SetItem(dict, SWIG_This(), swig_this);
2525  inst = PyInstance_NewRaw(data->newargs, dict);
2526  Py_DECREF(dict);
2527  }
2528 #endif
2529  }
2530  return inst;
2531 #else
2532 #if (PY_VERSION_HEX >= 0x02010000)
2533  PyObject *inst = 0;
2534  PyObject *dict = PyDict_New();
2535  if (dict) {
2536  PyDict_SetItem(dict, SWIG_This(), swig_this);
2537  inst = PyInstance_NewRaw(data->newargs, dict);
2538  Py_DECREF(dict);
2539  }
2540  return (PyObject *) inst;
2541 #else
2542  PyInstanceObject *inst = PyObject_NEW(PyInstanceObject, &PyInstance_Type);
2543  if (inst == NULL) {
2544  return NULL;
2545  }
2546  inst->in_class = (PyClassObject *)data->newargs;
2547  Py_INCREF(inst->in_class);
2548  inst->in_dict = PyDict_New();
2549  if (inst->in_dict == NULL) {
2550  Py_DECREF(inst);
2551  return NULL;
2552  }
2553 #ifdef Py_TPFLAGS_HAVE_WEAKREFS
2554  inst->in_weakreflist = NULL;
2555 #endif
2556 #ifdef Py_TPFLAGS_GC
2557  PyObject_GC_Init(inst);
2558 #endif
2559  PyDict_SetItem(inst->in_dict, SWIG_This(), swig_this);
2560  return (PyObject *) inst;
2561 #endif
2562 #endif
2563 }
2564 
2565 SWIGRUNTIME void
2566 SWIG_Python_SetSwigThis(PyObject *inst, PyObject *swig_this)
2567 {
2568  PyObject *dict;
2569 #if (PY_VERSION_HEX >= 0x02020000) && !defined(SWIG_PYTHON_SLOW_GETSET_THIS)
2570  PyObject **dictptr = _PyObject_GetDictPtr(inst);
2571  if (dictptr != NULL) {
2572  dict = *dictptr;
2573  if (dict == NULL) {
2574  dict = PyDict_New();
2575  *dictptr = dict;
2576  }
2577  PyDict_SetItem(dict, SWIG_This(), swig_this);
2578  return;
2579  }
2580 #endif
2581  dict = PyObject_GetAttrString(inst, (char*)"__dict__");
2582  PyDict_SetItem(dict, SWIG_This(), swig_this);
2583  Py_DECREF(dict);
2584 }
2585 
2586 
2587 SWIGINTERN PyObject *
2588 SWIG_Python_InitShadowInstance(PyObject *args) {
2589  PyObject *obj[2];
2590  if (!SWIG_Python_UnpackTuple(args, "swiginit", 2, 2, obj)) {
2591  return NULL;
2592  } else {
2593  SwigPyObject *sthis = SWIG_Python_GetSwigThis(obj[0]);
2594  if (sthis) {
2595  SwigPyObject_append((PyObject*) sthis, obj[1]);
2596  } else {
2597  SWIG_Python_SetSwigThis(obj[0], obj[1]);
2598  }
2599  return SWIG_Py_Void();
2600  }
2601 }
2602 
2603 /* Create a new pointer object */
2604 
2605 SWIGRUNTIME PyObject *
2606 SWIG_Python_NewPointerObj(PyObject *self, void *ptr, swig_type_info *type, int flags) {
2607  SwigPyClientData *clientdata;
2608  PyObject * robj;
2609  int own;
2610 
2611  if (!ptr)
2612  return SWIG_Py_Void();
2613 
2614  clientdata = type ? (SwigPyClientData *)(type->clientdata) : 0;
2615  own = (flags & SWIG_POINTER_OWN) ? SWIG_POINTER_OWN : 0;
2616  if (clientdata && clientdata->pytype) {
2617  SwigPyObject *newobj;
2618  if (flags & SWIG_BUILTIN_TP_INIT) {
2619  newobj = (SwigPyObject*) self;
2620  if (newobj->ptr) {
2621  PyObject *next_self = clientdata->pytype->tp_alloc(clientdata->pytype, 0);
2622  while (newobj->next)
2623  newobj = (SwigPyObject *) newobj->next;
2624  newobj->next = next_self;
2625  newobj = (SwigPyObject *)next_self;
2626 #ifdef SWIGPYTHON_BUILTIN
2627  newobj->dict = 0;
2628 #endif
2629  }
2630  } else {
2631  newobj = PyObject_New(SwigPyObject, clientdata->pytype);
2632 #ifdef SWIGPYTHON_BUILTIN
2633  newobj->dict = 0;
2634 #endif
2635  }
2636  if (newobj) {
2637  newobj->ptr = ptr;
2638  newobj->ty = type;
2639  newobj->own = own;
2640  newobj->next = 0;
2641  return (PyObject*) newobj;
2642  }
2643  return SWIG_Py_Void();
2644  }
2645 
2646  assert(!(flags & SWIG_BUILTIN_TP_INIT));
2647 
2648  robj = SwigPyObject_New(ptr, type, own);
2649  if (robj && clientdata && !(flags & SWIG_POINTER_NOSHADOW)) {
2650  PyObject *inst = SWIG_Python_NewShadowInstance(clientdata, robj);
2651  Py_DECREF(robj);
2652  robj = inst;
2653  }
2654  return robj;
2655 }
2656 
2657 /* Create a new packed object */
2658 
2659 SWIGRUNTIMEINLINE PyObject *
2660 SWIG_Python_NewPackedObj(void *ptr, size_t sz, swig_type_info *type) {
2661  return ptr ? SwigPyPacked_New((void *) ptr, sz, type) : SWIG_Py_Void();
2662 }
2663 
2664 /* -----------------------------------------------------------------------------*
2665  * Get type list
2666  * -----------------------------------------------------------------------------*/
2667 
2668 #ifdef SWIG_LINK_RUNTIME
2669 void *SWIG_ReturnGlobalTypeList(void *);
2670 #endif
2671 
2672 SWIGRUNTIME swig_module_info *
2673 SWIG_Python_GetModule(void *SWIGUNUSEDPARM(clientdata)) {
2674  static void *type_pointer = (void *)0;
2675  /* first check if module already created */
2676  if (!type_pointer) {
2677 #ifdef SWIG_LINK_RUNTIME
2678  type_pointer = SWIG_ReturnGlobalTypeList((void *)0);
2679 #else
2680 # ifdef SWIGPY_USE_CAPSULE
2681  type_pointer = PyCapsule_Import(SWIGPY_CAPSULE_NAME, 0);
2682 # else
2683  type_pointer = PyCObject_Import((char*)"swig_runtime_data" SWIG_RUNTIME_VERSION,
2684  (char*)"type_pointer" SWIG_TYPE_TABLE_NAME);
2685 # endif
2686  if (PyErr_Occurred()) {
2687  PyErr_Clear();
2688  type_pointer = (void *)0;
2689  }
2690 #endif
2691  }
2692  return (swig_module_info *) type_pointer;
2693 }
2694 
2695 #if PY_MAJOR_VERSION < 2
2696 /* PyModule_AddObject function was introduced in Python 2.0. The following function
2697  is copied out of Python/modsupport.c in python version 2.3.4 */
2698 SWIGINTERN int
2699 PyModule_AddObject(PyObject *m, char *name, PyObject *o)
2700 {
2701  PyObject *dict;
2702  if (!PyModule_Check(m)) {
2703  PyErr_SetString(PyExc_TypeError, "PyModule_AddObject() needs module as first arg");
2704  return SWIG_ERROR;
2705  }
2706  if (!o) {
2707  PyErr_SetString(PyExc_TypeError, "PyModule_AddObject() needs non-NULL value");
2708  return SWIG_ERROR;
2709  }
2710 
2711  dict = PyModule_GetDict(m);
2712  if (dict == NULL) {
2713  /* Internal error -- modules must have a dict! */
2714  PyErr_Format(PyExc_SystemError, "module '%s' has no __dict__",
2715  PyModule_GetName(m));
2716  return SWIG_ERROR;
2717  }
2718  if (PyDict_SetItemString(dict, name, o))
2719  return SWIG_ERROR;
2720  Py_DECREF(o);
2721  return SWIG_OK;
2722 }
2723 #endif
2724 
2725 SWIGRUNTIME void
2726 #ifdef SWIGPY_USE_CAPSULE
2727 SWIG_Python_DestroyModule(PyObject *obj)
2728 #else
2729 SWIG_Python_DestroyModule(void *vptr)
2730 #endif
2731 {
2732 #ifdef SWIGPY_USE_CAPSULE
2733  swig_module_info *swig_module = (swig_module_info *) PyCapsule_GetPointer(obj, SWIGPY_CAPSULE_NAME);
2734 #else
2735  swig_module_info *swig_module = (swig_module_info *) vptr;
2736 #endif
2737  swig_type_info **types = swig_module->types;
2738  size_t i;
2739  for (i =0; i < swig_module->size; ++i) {
2740  swig_type_info *ty = types[i];
2741  if (ty->owndata) {
2742  SwigPyClientData *data = (SwigPyClientData *) ty->clientdata;
2743  if (data) SwigPyClientData_Del(data);
2744  }
2745  }
2746  Py_DECREF(SWIG_This());
2747  swig_this = NULL;
2748 }
2749 
2750 SWIGRUNTIME void
2751 SWIG_Python_SetModule(swig_module_info *swig_module) {
2752 #if PY_VERSION_HEX >= 0x03000000
2753  /* Add a dummy module object into sys.modules */
2754  PyObject *module = PyImport_AddModule((char*)"swig_runtime_data" SWIG_RUNTIME_VERSION);
2755 #else
2756  static PyMethodDef swig_empty_runtime_method_table[] = { {NULL, NULL, 0, NULL} }; /* Sentinel */
2757  PyObject *module = Py_InitModule((char*)"swig_runtime_data" SWIG_RUNTIME_VERSION, swig_empty_runtime_method_table);
2758 #endif
2759 #ifdef SWIGPY_USE_CAPSULE
2760  PyObject *pointer = PyCapsule_New((void *) swig_module, SWIGPY_CAPSULE_NAME, SWIG_Python_DestroyModule);
2761  if (pointer && module) {
2762  PyModule_AddObject(module, (char*)"type_pointer_capsule" SWIG_TYPE_TABLE_NAME, pointer);
2763  } else {
2764  Py_XDECREF(pointer);
2765  }
2766 #else
2767  PyObject *pointer = PyCObject_FromVoidPtr((void *) swig_module, SWIG_Python_DestroyModule);
2768  if (pointer && module) {
2769  PyModule_AddObject(module, (char*)"type_pointer" SWIG_TYPE_TABLE_NAME, pointer);
2770  } else {
2771  Py_XDECREF(pointer);
2772  }
2773 #endif
2774 }
2775 
2776 /* The python cached type query */
2777 SWIGRUNTIME PyObject *
2778 SWIG_Python_TypeCache(void) {
2779  static PyObject *SWIG_STATIC_POINTER(cache) = PyDict_New();
2780  return cache;
2781 }
2782 
2783 SWIGRUNTIME swig_type_info *
2784 SWIG_Python_TypeQuery(const char *type)
2785 {
2786  PyObject *cache = SWIG_Python_TypeCache();
2787  PyObject *key = SWIG_Python_str_FromChar(type);
2788  PyObject *obj = PyDict_GetItem(cache, key);
2789  swig_type_info *descriptor;
2790  if (obj) {
2791 #ifdef SWIGPY_USE_CAPSULE
2792  descriptor = (swig_type_info *) PyCapsule_GetPointer(obj, NULL);
2793 #else
2794  descriptor = (swig_type_info *) PyCObject_AsVoidPtr(obj);
2795 #endif
2796  } else {
2797  swig_module_info *swig_module = SWIG_GetModule(0);
2798  descriptor = SWIG_TypeQueryModule(swig_module, swig_module, type);
2799  if (descriptor) {
2800 #ifdef SWIGPY_USE_CAPSULE
2801  obj = PyCapsule_New((void*) descriptor, NULL, NULL);
2802 #else
2803  obj = PyCObject_FromVoidPtr(descriptor, NULL);
2804 #endif
2805  PyDict_SetItem(cache, key, obj);
2806  Py_DECREF(obj);
2807  }
2808  }
2809  Py_DECREF(key);
2810  return descriptor;
2811 }
2812 
2813 /*
2814  For backward compatibility only
2815 */
2816 #define SWIG_POINTER_EXCEPTION 0
2817 #define SWIG_arg_fail(arg) SWIG_Python_ArgFail(arg)
2818 #define SWIG_MustGetPtr(p, type, argnum, flags) SWIG_Python_MustGetPtr(p, type, argnum, flags)
2819 
2820 SWIGRUNTIME int
2821 SWIG_Python_AddErrMesg(const char* mesg, int infront)
2822 {
2823  if (PyErr_Occurred()) {
2824  PyObject *type = 0;
2825  PyObject *value = 0;
2826  PyObject *traceback = 0;
2827  PyErr_Fetch(&type, &value, &traceback);
2828  if (value) {
2829  char *tmp;
2830  PyObject *old_str = PyObject_Str(value);
2831  Py_XINCREF(type);
2832  PyErr_Clear();
2833  if (infront) {
2834  PyErr_Format(type, "%s %s", mesg, tmp = SWIG_Python_str_AsChar(old_str));
2835  } else {
2836  PyErr_Format(type, "%s %s", tmp = SWIG_Python_str_AsChar(old_str), mesg);
2837  }
2838  SWIG_Python_str_DelForPy3(tmp);
2839  Py_DECREF(old_str);
2840  }
2841  return 1;
2842  } else {
2843  return 0;
2844  }
2845 }
2846 
2847 SWIGRUNTIME int
2848 SWIG_Python_ArgFail(int argnum)
2849 {
2850  if (PyErr_Occurred()) {
2851  /* add information about failing argument */
2852  char mesg[256];
2853  PyOS_snprintf(mesg, sizeof(mesg), "argument number %d:", argnum);
2854  return SWIG_Python_AddErrMesg(mesg, 1);
2855  } else {
2856  return 0;
2857  }
2858 }
2859 
2860 SWIGRUNTIMEINLINE const char *
2861 SwigPyObject_GetDesc(PyObject *self)
2862 {
2863  SwigPyObject *v = (SwigPyObject *)self;
2864  swig_type_info *ty = v ? v->ty : 0;
2865  return ty ? ty->str : "";
2866 }
2867 
2868 SWIGRUNTIME void
2869 SWIG_Python_TypeError(const char *type, PyObject *obj)
2870 {
2871  if (type) {
2872 #if defined(SWIG_COBJECT_TYPES)
2873  if (obj && SwigPyObject_Check(obj)) {
2874  const char *otype = (const char *) SwigPyObject_GetDesc(obj);
2875  if (otype) {
2876  PyErr_Format(PyExc_TypeError, "a '%s' is expected, 'SwigPyObject(%s)' is received",
2877  type, otype);
2878  return;
2879  }
2880  } else
2881 #endif
2882  {
2883  const char *otype = (obj ? obj->ob_type->tp_name : 0);
2884  if (otype) {
2885  PyObject *str = PyObject_Str(obj);
2886  const char *cstr = str ? SWIG_Python_str_AsChar(str) : 0;
2887  if (cstr) {
2888  PyErr_Format(PyExc_TypeError, "a '%s' is expected, '%s(%s)' is received",
2889  type, otype, cstr);
2890  SWIG_Python_str_DelForPy3(cstr);
2891  } else {
2892  PyErr_Format(PyExc_TypeError, "a '%s' is expected, '%s' is received",
2893  type, otype);
2894  }
2895  Py_XDECREF(str);
2896  return;
2897  }
2898  }
2899  PyErr_Format(PyExc_TypeError, "a '%s' is expected", type);
2900  } else {
2901  PyErr_Format(PyExc_TypeError, "unexpected type is received");
2902  }
2903 }
2904 
2905 
2906 /* Convert a pointer value, signal an exception on a type mismatch */
2907 SWIGRUNTIME void *
2908 SWIG_Python_MustGetPtr(PyObject *obj, swig_type_info *ty, int SWIGUNUSEDPARM(argnum), int flags) {
2909  void *result;
2910  if (SWIG_Python_ConvertPtr(obj, &result, ty, flags) == -1) {
2911  PyErr_Clear();
2912 #if SWIG_POINTER_EXCEPTION
2913  if (flags) {
2914  SWIG_Python_TypeError(SWIG_TypePrettyName(ty), obj);
2915  SWIG_Python_ArgFail(argnum);
2916  }
2917 #endif
2918  }
2919  return result;
2920 }
2921 
2922 #ifdef SWIGPYTHON_BUILTIN
2923 SWIGRUNTIME int
2924 SWIG_Python_NonDynamicSetAttr(PyObject *obj, PyObject *name, PyObject *value) {
2925  PyTypeObject *tp = obj->ob_type;
2926  PyObject *descr;
2927  PyObject *encoded_name;
2928  descrsetfunc f;
2929  int res = -1;
2930 
2931 # ifdef Py_USING_UNICODE
2932  if (PyString_Check(name)) {
2933  name = PyUnicode_Decode(PyString_AsString(name), PyString_Size(name), NULL, NULL);
2934  if (!name)
2935  return -1;
2936  } else if (!PyUnicode_Check(name))
2937 # else
2938  if (!PyString_Check(name))
2939 # endif
2940  {
2941  PyErr_Format(PyExc_TypeError, "attribute name must be string, not '%.200s'", name->ob_type->tp_name);
2942  return -1;
2943  } else {
2944  Py_INCREF(name);
2945  }
2946 
2947  if (!tp->tp_dict) {
2948  if (PyType_Ready(tp) < 0)
2949  goto done;
2950  }
2951 
2952  descr = _PyType_Lookup(tp, name);
2953  f = NULL;
2954  if (descr != NULL)
2955  f = descr->ob_type->tp_descr_set;
2956  if (!f) {
2957  if (PyString_Check(name)) {
2958  encoded_name = name;
2959  Py_INCREF(name);
2960  } else {
2961  encoded_name = PyUnicode_AsUTF8String(name);
2962  }
2963  PyErr_Format(PyExc_AttributeError, "'%.100s' object has no attribute '%.200s'", tp->tp_name, PyString_AsString(encoded_name));
2964  Py_DECREF(encoded_name);
2965  } else {
2966  res = f(descr, obj, value);
2967  }
2968 
2969  done:
2970  Py_DECREF(name);
2971  return res;
2972 }
2973 #endif
2974 
2975 
2976 #ifdef __cplusplus
2977 }
2978 #endif
2979 
2980 
2981 
2982 #define SWIG_exception_fail(code, msg) do { SWIG_Error(code, msg); SWIG_fail; } while(0)
2983 
2984 #define SWIG_contract_assert(expr, msg) if (!(expr)) { SWIG_Error(SWIG_RuntimeError, msg); SWIG_fail; } else
2985 
2986 
2987 
2988 /* -------- TYPES TABLE (BEGIN) -------- */
2989 
2990 #define SWIGTYPE_p_char swig_types[0]
2991 #define SWIGTYPE_p_int swig_types[1]
2992 #define SWIGTYPE_p_unsigned_char swig_types[2]
2993 #define SWIGTYPE_p_unsigned_int swig_types[3]
2994 #define SWIGTYPE_p_unsigned_long swig_types[4]
2995 #define SWIGTYPE_p_unsigned_short swig_types[5]
2996 static swig_type_info *swig_types[7];
2997 static swig_module_info swig_module = {swig_types, 6, 0, 0, 0, 0};
2998 #define SWIG_TypeQuery(name) SWIG_TypeQueryModule(&swig_module, &swig_module, name)
2999 #define SWIG_MangledTypeQuery(name) SWIG_MangledTypeQueryModule(&swig_module, &swig_module, name)
3000 
3001 /* -------- TYPES TABLE (END) -------- */
3002 
3003 #if (PY_VERSION_HEX <= 0x02000000)
3004 # if !defined(SWIG_PYTHON_CLASSIC)
3005 # error "This python version requires swig to be run with the '-classic' option"
3006 # endif
3007 #endif
3008 
3009 /*-----------------------------------------------
3010  @(target):= _i2ccore.so
3011  ------------------------------------------------*/
3012 #if PY_VERSION_HEX >= 0x03000000
3013 # define SWIG_init PyInit__i2ccore
3014 
3015 #else
3016 # define SWIG_init init_i2ccore
3017 
3018 #endif
3019 #define SWIG_name "_i2ccore"
3020 
3021 #define SWIGVERSION 0x030008
3022 #define SWIG_VERSION SWIGVERSION
3023 
3024 
3025 #define SWIG_as_voidptr(a) (void *)((const void *)(a))
3026 #define SWIG_as_voidptrptr(a) ((void)SWIG_as_voidptr(*a),(void**)(a))
3027 
3028 
3029 #include "rnr/rnrconfig.h"
3030 
3031 
3032  static byte_t *new_byteArray(size_t nelements) {
3033  return (byte_t *)malloc((nelements)*sizeof(byte_t));
3034  }
3035 
3036  static void delete_byteArray(byte_t *ary) {
3037  free((char*)ary);
3038  }
3039 
3040  static byte_t byteArray_getitem(byte_t *ary, size_t index) {
3041  return ary[index];
3042  }
3043  static void byteArray_setitem(byte_t *ary, size_t index, byte_t value) {
3044  ary[index] = value;
3045  }
3046 
3047 
3048 SWIGINTERN int
3049 SWIG_AsVal_double (PyObject *obj, double *val)
3050 {
3051  int res = SWIG_TypeError;
3052  if (PyFloat_Check(obj)) {
3053  if (val) *val = PyFloat_AsDouble(obj);
3054  return SWIG_OK;
3055 #if PY_VERSION_HEX < 0x03000000
3056  } else if (PyInt_Check(obj)) {
3057  if (val) *val = PyInt_AsLong(obj);
3058  return SWIG_OK;
3059 #endif
3060  } else if (PyLong_Check(obj)) {
3061  double v = PyLong_AsDouble(obj);
3062  if (!PyErr_Occurred()) {
3063  if (val) *val = v;
3064  return SWIG_OK;
3065  } else {
3066  PyErr_Clear();
3067  }
3068  }
3069 #ifdef SWIG_PYTHON_CAST_MODE
3070  {
3071  int dispatch = 0;
3072  double d = PyFloat_AsDouble(obj);
3073  if (!PyErr_Occurred()) {
3074  if (val) *val = d;
3075  return SWIG_AddCast(SWIG_OK);
3076  } else {
3077  PyErr_Clear();
3078  }
3079  if (!dispatch) {
3080  long v = PyLong_AsLong(obj);
3081  if (!PyErr_Occurred()) {
3082  if (val) *val = v;
3083  return SWIG_AddCast(SWIG_AddCast(SWIG_OK));
3084  } else {
3085  PyErr_Clear();
3086  }
3087  }
3088  }
3089 #endif
3090  return res;
3091 }
3092 
3093 
3094 #include <float.h>
3095 
3096 
3097 #include <math.h>
3098 
3099 
3100 SWIGINTERNINLINE int
3101 SWIG_CanCastAsInteger(double *d, double min, double max) {
3102  double x = *d;
3103  if ((min <= x && x <= max)) {
3104  double fx = floor(x);
3105  double cx = ceil(x);
3106  double rd = ((x - fx) < 0.5) ? fx : cx; /* simple rint */
3107  if ((errno == EDOM) || (errno == ERANGE)) {
3108  errno = 0;
3109  } else {
3110  double summ, reps, diff;
3111  if (rd < x) {
3112  diff = x - rd;
3113  } else if (rd > x) {
3114  diff = rd - x;
3115  } else {
3116  return 1;
3117  }
3118  summ = rd + x;
3119  reps = diff/summ;
3120  if (reps < 8*DBL_EPSILON) {
3121  *d = rd;
3122  return 1;
3123  }
3124  }
3125  }
3126  return 0;
3127 }
3128 
3129 
3130 SWIGINTERN int
3131 SWIG_AsVal_unsigned_SS_long (PyObject *obj, unsigned long *val)
3132 {
3133 #if PY_VERSION_HEX < 0x03000000
3134  if (PyInt_Check(obj)) {
3135  long v = PyInt_AsLong(obj);
3136  if (v >= 0) {
3137  if (val) *val = v;
3138  return SWIG_OK;
3139  } else {
3140  return SWIG_OverflowError;
3141  }
3142  } else
3143 #endif
3144  if (PyLong_Check(obj)) {
3145  unsigned long v = PyLong_AsUnsignedLong(obj);
3146  if (!PyErr_Occurred()) {
3147  if (val) *val = v;
3148  return SWIG_OK;
3149  } else {
3150  PyErr_Clear();
3151  return SWIG_OverflowError;
3152  }
3153  }
3154 #ifdef SWIG_PYTHON_CAST_MODE
3155  {
3156  int dispatch = 0;
3157  unsigned long v = PyLong_AsUnsignedLong(obj);
3158  if (!PyErr_Occurred()) {
3159  if (val) *val = v;
3160  return SWIG_AddCast(SWIG_OK);
3161  } else {
3162  PyErr_Clear();
3163  }
3164  if (!dispatch) {
3165  double d;
3166  int res = SWIG_AddCast(SWIG_AsVal_double (obj,&d));
3167  if (SWIG_IsOK(res) && SWIG_CanCastAsInteger(&d, 0, ULONG_MAX)) {
3168  if (val) *val = (unsigned long)(d);
3169  return res;
3170  }
3171  }
3172  }
3173 #endif
3174  return SWIG_TypeError;
3175 }
3176 
3177 
3178 SWIGINTERNINLINE int
3179 SWIG_AsVal_size_t (PyObject * obj, size_t *val)
3180 {
3181  unsigned long v;
3182  int res = SWIG_AsVal_unsigned_SS_long (obj, val ? &v : 0);
3183  if (SWIG_IsOK(res) && val) *val = (size_t)(v);
3184  return res;
3185 }
3186 
3187 
3188  #define SWIG_From_long PyLong_FromLong
3189 
3190 
3191 SWIGINTERNINLINE PyObject*
3192 SWIG_From_unsigned_SS_long (unsigned long value)
3193 {
3194  return (value > LONG_MAX) ?
3195  PyLong_FromUnsignedLong(value) : PyLong_FromLong((long)(value));
3196 }
3197 
3198 
3199 SWIGINTERNINLINE PyObject *
3200 SWIG_From_unsigned_SS_char (unsigned char value)
3201 {
3202  return SWIG_From_unsigned_SS_long (value);
3203 }
3204 
3205 
3206 #include <limits.h>
3207 #if !defined(SWIG_NO_LLONG_MAX)
3208 # if !defined(LLONG_MAX) && defined(__GNUC__) && defined (__LONG_LONG_MAX__)
3209 # define LLONG_MAX __LONG_LONG_MAX__
3210 # define LLONG_MIN (-LLONG_MAX - 1LL)
3211 # define ULLONG_MAX (LLONG_MAX * 2ULL + 1ULL)
3212 # endif
3213 #endif
3214 
3215 
3216 SWIGINTERN int
3217 SWIG_AsVal_unsigned_SS_char (PyObject * obj, unsigned char *val)
3218 {
3219  unsigned long v;
3220  int res = SWIG_AsVal_unsigned_SS_long (obj, &v);
3221  if (SWIG_IsOK(res)) {
3222  if ((v > UCHAR_MAX)) {
3223  return SWIG_OverflowError;
3224  } else {
3225  if (val) *val = (unsigned char)(v);
3226  }
3227  }
3228  return res;
3229 }
3230 
3231 
3232  static uint_t *new_uintp() {
3233  return (uint_t *)malloc(sizeof(uint_t));
3234  }
3235 
3236  static uint_t *copy_uintp(uint_t value) {
3237  return (uint_t *)memcpy((uint_t *)malloc(sizeof(uint_t)),&value,sizeof(uint_t));
3238  }
3239 
3240  static void delete_uintp(uint_t *obj) {
3241  if (obj) free((char*)obj);
3242  }
3243 
3244  static void uintp_assign(uint_t *obj, uint_t value) {
3245  *obj = value;
3246  }
3247 
3248  static uint_t uintp_value(uint_t *obj) {
3249  return *obj;
3250  }
3251 
3252 
3253 SWIGINTERN int
3254 SWIG_AsVal_unsigned_SS_int (PyObject * obj, unsigned int *val)
3255 {
3256  unsigned long v;
3257  int res = SWIG_AsVal_unsigned_SS_long (obj, &v);
3258  if (SWIG_IsOK(res)) {
3259  if ((v > UINT_MAX)) {
3260  return SWIG_OverflowError;
3261  } else {
3262  if (val) *val = (unsigned int)(v);
3263  }
3264  }
3265  return res;
3266 }
3267 
3268 
3269 SWIGINTERNINLINE PyObject*
3270  SWIG_From_unsigned_SS_int (unsigned int value)
3271 {
3272  return PyInt_FromSize_t((size_t) value);
3273 }
3274 
3275 
3276 #include <errno.h>
3277 
3278 #include "rnr/rnrconfig.h"
3279 #include "rnr/i2c.h"
3280 
3281 #include "i2ccore.h"
3282 
3283 /*!
3284  * \brief Open a I2C bus device.
3285  *
3286  * \param device Device name.
3287  *
3288  * \return
3289  * On success, returns open file descriptor.
3290  * On failure, returns -errno.
3291  */
3292 int i2ccore_open(const char *device)
3293 {
3294  i2c_t i2c;
3295  int rc;
3296 
3297  rc = i2c_open(&i2c, device);
3298 
3299  return rc < 0? -errno: i2c.fd;
3300 }
3301 
3302 /*!
3303  * \brief Close an open I2C bus device.
3304  *
3305  * \return
3306  * On success, returns 0.
3307  * On failure, returns -errno.
3308  */
3309 int i2ccore_close(int fd)
3310 {
3311  i2c_t i2c;
3312 
3313  i2c.fd = fd;
3314 
3315  i2c_close(&i2c);
3316 
3317  return OK;
3318 }
3319 
3320 /*!
3321  * \brief Read data from an attached device connected to the open I2C bus.
3322  *
3323  * \param fd File descriptor.
3324  * \param cur_addr I2C address of last I/O operation.
3325  * \param addr I2C device address to read.
3326  * \param [out] buf Output buffer.
3327  * \param count Number of byte to read.
3328  *
3329  * \return
3330  * On success, returns number of bytes read.
3331  * On failure, returns -errno.
3332  */
3333 int i2ccore_read(int fd, unsigned short cur_addr, unsigned short addr,
3334  byte_t buf[], unsigned int count)
3335 {
3336  i2c_t i2c;
3337  int n;
3338 
3339  i2c.fd = fd;
3340  i2c.addr = cur_addr;
3341 
3342  n = i2c_read(&i2c, addr, buf, count);
3343 
3344  return n < 0? -errno: n;
3345 }
3346 
3347 /*!
3348  * \brief Write data to an attached device connected to the open I2C bus.
3349  *
3350  * \param fd File descriptor.
3351  * \param cur_addr I2C address of last I/O operation.
3352  * \param addr I2C device address to read.
3353  * \param [in] buf Input buffer.
3354  * \param count Number of byte to write.
3355  *
3356  * \return
3357  * On success, returns number of bytes written.
3358  * On failure, returns -errno.
3359  */
3360 int i2ccore_write(int fd, unsigned short cur_addr, unsigned short addr,
3361  byte_t buf[], unsigned int count)
3362 {
3363  i2c_t i2c;
3364  int n;
3365 
3366  i2c.fd = fd;
3367  i2c.addr = cur_addr;
3368 
3369  n = i2c_write(&i2c, addr, buf, count);
3370 
3371  return n < 0? -errno: n;
3372 }
3373 
3374 /*!
3375  * \brief Transfer data to an attached device connected to the open I2C bus
3376  * reead back.
3377  *
3378  * \param fd File descriptor.
3379  * \param cur_addr I2C address of last I/O operation.
3380  * \param addr I2C device address to read.
3381  * \param [in] wbuf Input buffer.
3382  * \param wcount Number of byte to write.
3383  * \param [out] rbuf Output buffer.
3384  * \param rcount Number of byte to read.
3385  *
3386  * \return
3387  * On success, returns 0.
3388  * On failure, returns -errno.
3389  */
3390 int i2ccore_transfer(int fd, unsigned short cur_addr, unsigned short addr,
3391  byte_t wbuf[], unsigned int wcount,
3392  byte_t rbuf[], unsigned int rcount)
3393 {
3394  i2c_t i2c;
3395  int rc;
3396 
3397  i2c.fd = fd;
3398  i2c.addr = cur_addr;
3399 
3400  rc = i2c_transfer(&i2c, addr, wbuf, wcount, rbuf, rcount);
3401 
3402  return rc < 0? -errno: rc;
3403 }
3404 
3405 /*!
3406  * \brief Test for the existence of a device with the given address.
3407  *
3408  * \param fd File descriptor.
3409  * \param cur_addr I2C address of last I/O operation.
3410  * \param addr I2C device address to read.
3411  *
3412  * \return If device is found, returns 1, else returns 0.
3413  */
3414 int i2ccore_check(int fd, unsigned short cur_addr, unsigned short addr)
3415 {
3416  i2c_t i2c;
3417 
3418  i2c.fd = fd;
3419  i2c.addr = cur_addr;
3420 
3421  return i2c_exists(&i2c, addr);
3422 }
3423 
3424 
3425 
3426 SWIGINTERN swig_type_info*
3427 SWIG_pchar_descriptor(void)
3428 {
3429  static int init = 0;
3430  static swig_type_info* info = 0;
3431  if (!init) {
3432  info = SWIG_TypeQuery("_p_char");
3433  init = 1;
3434  }
3435  return info;
3436 }
3437 
3438 
3439 SWIGINTERN int
3440 SWIG_AsCharPtrAndSize(PyObject *obj, char** cptr, size_t* psize, int *alloc)
3441 {
3442 #if PY_VERSION_HEX>=0x03000000
3443  if (PyUnicode_Check(obj))
3444 #else
3445  if (PyString_Check(obj))
3446 #endif
3447  {
3448  char *cstr; Py_ssize_t len;
3449 #if PY_VERSION_HEX>=0x03000000
3450  if (!alloc && cptr) {
3451  /* We can't allow converting without allocation, since the internal
3452  representation of string in Python 3 is UCS-2/UCS-4 but we require
3453  a UTF-8 representation.
3454  TODO(bhy) More detailed explanation */
3455  return SWIG_RuntimeError;
3456  }
3457  obj = PyUnicode_AsUTF8String(obj);
3458  PyBytes_AsStringAndSize(obj, &cstr, &len);
3459  if(alloc) *alloc = SWIG_NEWOBJ;
3460 #else
3461  PyString_AsStringAndSize(obj, &cstr, &len);
3462 #endif
3463  if (cptr) {
3464  if (alloc) {
3465  /*
3466  In python the user should not be able to modify the inner
3467  string representation. To warranty that, if you define
3468  SWIG_PYTHON_SAFE_CSTRINGS, a new/copy of the python string
3469  buffer is always returned.
3470 
3471  The default behavior is just to return the pointer value,
3472  so, be careful.
3473  */
3474 #if defined(SWIG_PYTHON_SAFE_CSTRINGS)
3475  if (*alloc != SWIG_OLDOBJ)
3476 #else
3477  if (*alloc == SWIG_NEWOBJ)
3478 #endif
3479  {
3480  *cptr = (char *)memcpy((char *)malloc((len + 1)*sizeof(char)), cstr, sizeof(char)*(len + 1));
3481  *alloc = SWIG_NEWOBJ;
3482  } else {
3483  *cptr = cstr;
3484  *alloc = SWIG_OLDOBJ;
3485  }
3486  } else {
3487  #if PY_VERSION_HEX>=0x03000000
3488  assert(0); /* Should never reach here in Python 3 */
3489  #endif
3490  *cptr = SWIG_Python_str_AsChar(obj);
3491  }
3492  }
3493  if (psize) *psize = len + 1;
3494 #if PY_VERSION_HEX>=0x03000000
3495  Py_XDECREF(obj);
3496 #endif
3497  return SWIG_OK;
3498  } else {
3499 #if defined(SWIG_PYTHON_2_UNICODE)
3500 #if PY_VERSION_HEX<0x03000000
3501  if (PyUnicode_Check(obj)) {
3502  char *cstr; Py_ssize_t len;
3503  if (!alloc && cptr) {
3504  return SWIG_RuntimeError;
3505  }
3506  obj = PyUnicode_AsUTF8String(obj);
3507  if (PyString_AsStringAndSize(obj, &cstr, &len) != -1) {
3508  if (cptr) {
3509  if (alloc) *alloc = SWIG_NEWOBJ;
3510  *cptr = (char *)memcpy((char *)malloc((len + 1)*sizeof(char)), cstr, sizeof(char)*(len + 1));
3511  }
3512  if (psize) *psize = len + 1;
3513 
3514  Py_XDECREF(obj);
3515  return SWIG_OK;
3516  } else {
3517  Py_XDECREF(obj);
3518  }
3519  }
3520 #endif
3521 #endif
3522 
3523  swig_type_info* pchar_descriptor = SWIG_pchar_descriptor();
3524  if (pchar_descriptor) {
3525  void* vptr = 0;
3526  if (SWIG_ConvertPtr(obj, &vptr, pchar_descriptor, 0) == SWIG_OK) {
3527  if (cptr) *cptr = (char *) vptr;
3528  if (psize) *psize = vptr ? (strlen((char *)vptr) + 1) : 0;
3529  if (alloc) *alloc = SWIG_OLDOBJ;
3530  return SWIG_OK;
3531  }
3532  }
3533  }
3534  return SWIG_TypeError;
3535 }
3536 
3537 
3538 
3539 
3540 
3541 SWIGINTERNINLINE PyObject*
3542  SWIG_From_int (int value)
3543 {
3544  return PyInt_FromLong((long) value);
3545 }
3546 
3547 
3548 SWIGINTERN int
3549 SWIG_AsVal_long (PyObject *obj, long* val)
3550 {
3551 #if PY_VERSION_HEX < 0x03000000
3552  if (PyInt_Check(obj)) {
3553  if (val) *val = PyInt_AsLong(obj);
3554  return SWIG_OK;
3555  } else
3556 #endif
3557  if (PyLong_Check(obj)) {
3558  long v = PyLong_AsLong(obj);
3559  if (!PyErr_Occurred()) {
3560  if (val) *val = v;
3561  return SWIG_OK;
3562  } else {
3563  PyErr_Clear();
3564  return SWIG_OverflowError;
3565  }
3566  }
3567 #ifdef SWIG_PYTHON_CAST_MODE
3568  {
3569  int dispatch = 0;
3570  long v = PyInt_AsLong(obj);
3571  if (!PyErr_Occurred()) {
3572  if (val) *val = v;
3573  return SWIG_AddCast(SWIG_OK);
3574  } else {
3575  PyErr_Clear();
3576  }
3577  if (!dispatch) {
3578  double d;
3579  int res = SWIG_AddCast(SWIG_AsVal_double (obj,&d));
3580  if (SWIG_IsOK(res) && SWIG_CanCastAsInteger(&d, LONG_MIN, LONG_MAX)) {
3581  if (val) *val = (long)(d);
3582  return res;
3583  }
3584  }
3585  }
3586 #endif
3587  return SWIG_TypeError;
3588 }
3589 
3590 
3591 SWIGINTERN int
3592 SWIG_AsVal_int (PyObject * obj, int *val)
3593 {
3594  long v;
3595  int res = SWIG_AsVal_long (obj, &v);
3596  if (SWIG_IsOK(res)) {
3597  if ((v < INT_MIN || v > INT_MAX)) {
3598  return SWIG_OverflowError;
3599  } else {
3600  if (val) *val = (int)(v);
3601  }
3602  }
3603  return res;
3604 }
3605 
3606 
3607 SWIGINTERN int
3608 SWIG_AsVal_unsigned_SS_short (PyObject * obj, unsigned short *val)
3609 {
3610  unsigned long v;
3611  int res = SWIG_AsVal_unsigned_SS_long (obj, &v);
3612  if (SWIG_IsOK(res)) {
3613  if ((v > USHRT_MAX)) {
3614  return SWIG_OverflowError;
3615  } else {
3616  if (val) *val = (unsigned short)(v);
3617  }
3618  }
3619  return res;
3620 }
3621 
3622 #ifdef __cplusplus
3623 extern "C" {
3624 #endif
3625 SWIGINTERN PyObject *_wrap_new_byteArray(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3626  PyObject *resultobj = 0;
3627  size_t arg1 ;
3628  size_t val1 ;
3629  int ecode1 = 0 ;
3630  PyObject * obj0 = 0 ;
3631  byte_t *result = 0 ;
3632 
3633  if (!PyArg_ParseTuple(args,(char *)"O:new_byteArray",&obj0)) SWIG_fail;
3634  ecode1 = SWIG_AsVal_size_t(obj0, &val1);
3635  if (!SWIG_IsOK(ecode1)) {
3636  SWIG_exception_fail(SWIG_ArgError(ecode1), "in method '" "new_byteArray" "', argument " "1"" of type '" "size_t""'");
3637  }
3638  arg1 = (size_t)(val1);
3639  result = (byte_t *)new_byteArray(arg1);
3640  resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_unsigned_char, 0 | 0 );
3641  return resultobj;
3642 fail:
3643  return NULL;
3644 }
3645 
3646 
3647 SWIGINTERN PyObject *_wrap_delete_byteArray(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3648  PyObject *resultobj = 0;
3649  byte_t *arg1 = (byte_t *) 0 ;
3650  void *argp1 = 0 ;
3651  int res1 = 0 ;
3652  PyObject * obj0 = 0 ;
3653 
3654  if (!PyArg_ParseTuple(args,(char *)"O:delete_byteArray",&obj0)) SWIG_fail;
3655  res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_unsigned_char, 0 | 0 );
3656  if (!SWIG_IsOK(res1)) {
3657  SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "delete_byteArray" "', argument " "1"" of type '" "byte_t *""'");
3658  }
3659  arg1 = (byte_t *)(argp1);
3660  delete_byteArray(arg1);
3661  resultobj = SWIG_Py_Void();
3662  return resultobj;
3663 fail:
3664  return NULL;
3665 }
3666 
3667 
3668 SWIGINTERN PyObject *_wrap_byteArray_getitem(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3669  PyObject *resultobj = 0;
3670  byte_t *arg1 = (byte_t *) 0 ;
3671  size_t arg2 ;
3672  void *argp1 = 0 ;
3673  int res1 = 0 ;
3674  size_t val2 ;
3675  int ecode2 = 0 ;
3676  PyObject * obj0 = 0 ;
3677  PyObject * obj1 = 0 ;
3678  byte_t result;
3679 
3680  if (!PyArg_ParseTuple(args,(char *)"OO:byteArray_getitem",&obj0,&obj1)) SWIG_fail;
3681  res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_unsigned_char, 0 | 0 );
3682  if (!SWIG_IsOK(res1)) {
3683  SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "byteArray_getitem" "', argument " "1"" of type '" "byte_t *""'");
3684  }
3685  arg1 = (byte_t *)(argp1);
3686  ecode2 = SWIG_AsVal_size_t(obj1, &val2);
3687  if (!SWIG_IsOK(ecode2)) {
3688  SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "byteArray_getitem" "', argument " "2"" of type '" "size_t""'");
3689  }
3690  arg2 = (size_t)(val2);
3691  result = (byte_t)byteArray_getitem(arg1,arg2);
3692  resultobj = SWIG_From_unsigned_SS_char((unsigned char)(result));
3693  return resultobj;
3694 fail:
3695  return NULL;
3696 }
3697 
3698 
3699 SWIGINTERN PyObject *_wrap_byteArray_setitem(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3700  PyObject *resultobj = 0;
3701  byte_t *arg1 = (byte_t *) 0 ;
3702  size_t arg2 ;
3703  byte_t arg3 ;
3704  void *argp1 = 0 ;
3705  int res1 = 0 ;
3706  size_t val2 ;
3707  int ecode2 = 0 ;
3708  unsigned char val3 ;
3709  int ecode3 = 0 ;
3710  PyObject * obj0 = 0 ;
3711  PyObject * obj1 = 0 ;
3712  PyObject * obj2 = 0 ;
3713 
3714  if (!PyArg_ParseTuple(args,(char *)"OOO:byteArray_setitem",&obj0,&obj1,&obj2)) SWIG_fail;
3715  res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_unsigned_char, 0 | 0 );
3716  if (!SWIG_IsOK(res1)) {
3717  SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "byteArray_setitem" "', argument " "1"" of type '" "byte_t *""'");
3718  }
3719  arg1 = (byte_t *)(argp1);
3720  ecode2 = SWIG_AsVal_size_t(obj1, &val2);
3721  if (!SWIG_IsOK(ecode2)) {
3722  SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "byteArray_setitem" "', argument " "2"" of type '" "size_t""'");
3723  }
3724  arg2 = (size_t)(val2);
3725  ecode3 = SWIG_AsVal_unsigned_SS_char(obj2, &val3);
3726  if (!SWIG_IsOK(ecode3)) {
3727  SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "byteArray_setitem" "', argument " "3"" of type '" "byte_t""'");
3728  }
3729  arg3 = (byte_t)(val3);
3730  byteArray_setitem(arg1,arg2,arg3);
3731  resultobj = SWIG_Py_Void();
3732  return resultobj;
3733 fail:
3734  return NULL;
3735 }
3736 
3737 
3738 SWIGINTERN PyObject *_wrap_new_uintp(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3739  PyObject *resultobj = 0;
3740  uint_t *result = 0 ;
3741 
3742  if (!PyArg_ParseTuple(args,(char *)":new_uintp")) SWIG_fail;
3743  result = (uint_t *)new_uintp();
3744  resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_unsigned_int, 0 | 0 );
3745  return resultobj;
3746 fail:
3747  return NULL;
3748 }
3749 
3750 
3751 SWIGINTERN PyObject *_wrap_copy_uintp(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3752  PyObject *resultobj = 0;
3753  uint_t arg1 ;
3754  unsigned int val1 ;
3755  int ecode1 = 0 ;
3756  PyObject * obj0 = 0 ;
3757  uint_t *result = 0 ;
3758 
3759  if (!PyArg_ParseTuple(args,(char *)"O:copy_uintp",&obj0)) SWIG_fail;
3760  ecode1 = SWIG_AsVal_unsigned_SS_int(obj0, &val1);
3761  if (!SWIG_IsOK(ecode1)) {
3762  SWIG_exception_fail(SWIG_ArgError(ecode1), "in method '" "copy_uintp" "', argument " "1"" of type '" "uint_t""'");
3763  }
3764  arg1 = (uint_t)(val1);
3765  result = (uint_t *)copy_uintp(arg1);
3766  resultobj = SWIG_NewPointerObj(SWIG_as_voidptr(result), SWIGTYPE_p_unsigned_int, 0 | 0 );
3767  return resultobj;
3768 fail:
3769  return NULL;
3770 }
3771 
3772 
3773 SWIGINTERN PyObject *_wrap_delete_uintp(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3774  PyObject *resultobj = 0;
3775  uint_t *arg1 = (uint_t *) 0 ;
3776  void *argp1 = 0 ;
3777  int res1 = 0 ;
3778  PyObject * obj0 = 0 ;
3779 
3780  if (!PyArg_ParseTuple(args,(char *)"O:delete_uintp",&obj0)) SWIG_fail;
3781  res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_unsigned_int, 0 | 0 );
3782  if (!SWIG_IsOK(res1)) {
3783  SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "delete_uintp" "', argument " "1"" of type '" "uint_t *""'");
3784  }
3785  arg1 = (uint_t *)(argp1);
3786  delete_uintp(arg1);
3787  resultobj = SWIG_Py_Void();
3788  return resultobj;
3789 fail:
3790  return NULL;
3791 }
3792 
3793 
3794 SWIGINTERN PyObject *_wrap_uintp_assign(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3795  PyObject *resultobj = 0;
3796  uint_t *arg1 = (uint_t *) 0 ;
3797  uint_t arg2 ;
3798  void *argp1 = 0 ;
3799  int res1 = 0 ;
3800  unsigned int val2 ;
3801  int ecode2 = 0 ;
3802  PyObject * obj0 = 0 ;
3803  PyObject * obj1 = 0 ;
3804 
3805  if (!PyArg_ParseTuple(args,(char *)"OO:uintp_assign",&obj0,&obj1)) SWIG_fail;
3806  res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_unsigned_int, 0 | 0 );
3807  if (!SWIG_IsOK(res1)) {
3808  SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "uintp_assign" "', argument " "1"" of type '" "uint_t *""'");
3809  }
3810  arg1 = (uint_t *)(argp1);
3811  ecode2 = SWIG_AsVal_unsigned_SS_int(obj1, &val2);
3812  if (!SWIG_IsOK(ecode2)) {
3813  SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "uintp_assign" "', argument " "2"" of type '" "uint_t""'");
3814  }
3815  arg2 = (uint_t)(val2);
3816  uintp_assign(arg1,arg2);
3817  resultobj = SWIG_Py_Void();
3818  return resultobj;
3819 fail:
3820  return NULL;
3821 }
3822 
3823 
3824 SWIGINTERN PyObject *_wrap_uintp_value(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3825  PyObject *resultobj = 0;
3826  uint_t *arg1 = (uint_t *) 0 ;
3827  void *argp1 = 0 ;
3828  int res1 = 0 ;
3829  PyObject * obj0 = 0 ;
3830  uint_t result;
3831 
3832  if (!PyArg_ParseTuple(args,(char *)"O:uintp_value",&obj0)) SWIG_fail;
3833  res1 = SWIG_ConvertPtr(obj0, &argp1,SWIGTYPE_p_unsigned_int, 0 | 0 );
3834  if (!SWIG_IsOK(res1)) {
3835  SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "uintp_value" "', argument " "1"" of type '" "uint_t *""'");
3836  }
3837  arg1 = (uint_t *)(argp1);
3838  result = (uint_t)uintp_value(arg1);
3839  resultobj = SWIG_From_unsigned_SS_int((unsigned int)(result));
3840  return resultobj;
3841 fail:
3842  return NULL;
3843 }
3844 
3845 
3846 SWIGINTERN PyObject *_wrap_i2ccore_open(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3847  PyObject *resultobj = 0;
3848  char *arg1 = (char *) 0 ;
3849  int res1 ;
3850  char *buf1 = 0 ;
3851  int alloc1 = 0 ;
3852  PyObject * obj0 = 0 ;
3853  int result;
3854 
3855  if (!PyArg_ParseTuple(args,(char *)"O:i2ccore_open",&obj0)) SWIG_fail;
3856  res1 = SWIG_AsCharPtrAndSize(obj0, &buf1, NULL, &alloc1);
3857  if (!SWIG_IsOK(res1)) {
3858  SWIG_exception_fail(SWIG_ArgError(res1), "in method '" "i2ccore_open" "', argument " "1"" of type '" "char const *""'");
3859  }
3860  arg1 = (char *)(buf1);
3861  result = (int)i2ccore_open((char const *)arg1);
3862  resultobj = SWIG_From_int((int)(result));
3863  if (alloc1 == SWIG_NEWOBJ) free((char*)buf1);
3864  return resultobj;
3865 fail:
3866  if (alloc1 == SWIG_NEWOBJ) free((char*)buf1);
3867  return NULL;
3868 }
3869 
3870 
3871 SWIGINTERN PyObject *_wrap_i2ccore_close(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3872  PyObject *resultobj = 0;
3873  int arg1 ;
3874  int val1 ;
3875  int ecode1 = 0 ;
3876  PyObject * obj0 = 0 ;
3877  int result;
3878 
3879  if (!PyArg_ParseTuple(args,(char *)"O:i2ccore_close",&obj0)) SWIG_fail;
3880  ecode1 = SWIG_AsVal_int(obj0, &val1);
3881  if (!SWIG_IsOK(ecode1)) {
3882  SWIG_exception_fail(SWIG_ArgError(ecode1), "in method '" "i2ccore_close" "', argument " "1"" of type '" "int""'");
3883  }
3884  arg1 = (int)(val1);
3885  result = (int)i2ccore_close(arg1);
3886  resultobj = SWIG_From_int((int)(result));
3887  return resultobj;
3888 fail:
3889  return NULL;
3890 }
3891 
3892 
3893 SWIGINTERN PyObject *_wrap_i2ccore_read(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3894  PyObject *resultobj = 0;
3895  int arg1 ;
3896  unsigned short arg2 ;
3897  unsigned short arg3 ;
3898  byte_t *arg4 ;
3899  unsigned int arg5 ;
3900  int val1 ;
3901  int ecode1 = 0 ;
3902  unsigned short val2 ;
3903  int ecode2 = 0 ;
3904  unsigned short val3 ;
3905  int ecode3 = 0 ;
3906  void *argp4 = 0 ;
3907  int res4 = 0 ;
3908  unsigned int val5 ;
3909  int ecode5 = 0 ;
3910  PyObject * obj0 = 0 ;
3911  PyObject * obj1 = 0 ;
3912  PyObject * obj2 = 0 ;
3913  PyObject * obj3 = 0 ;
3914  PyObject * obj4 = 0 ;
3915  int result;
3916 
3917  if (!PyArg_ParseTuple(args,(char *)"OOOOO:i2ccore_read",&obj0,&obj1,&obj2,&obj3,&obj4)) SWIG_fail;
3918  ecode1 = SWIG_AsVal_int(obj0, &val1);
3919  if (!SWIG_IsOK(ecode1)) {
3920  SWIG_exception_fail(SWIG_ArgError(ecode1), "in method '" "i2ccore_read" "', argument " "1"" of type '" "int""'");
3921  }
3922  arg1 = (int)(val1);
3923  ecode2 = SWIG_AsVal_unsigned_SS_short(obj1, &val2);
3924  if (!SWIG_IsOK(ecode2)) {
3925  SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "i2ccore_read" "', argument " "2"" of type '" "unsigned short""'");
3926  }
3927  arg2 = (unsigned short)(val2);
3928  ecode3 = SWIG_AsVal_unsigned_SS_short(obj2, &val3);
3929  if (!SWIG_IsOK(ecode3)) {
3930  SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "i2ccore_read" "', argument " "3"" of type '" "unsigned short""'");
3931  }
3932  arg3 = (unsigned short)(val3);
3933  res4 = SWIG_ConvertPtr(obj3, &argp4,SWIGTYPE_p_unsigned_char, 0 | 0 );
3934  if (!SWIG_IsOK(res4)) {
3935  SWIG_exception_fail(SWIG_ArgError(res4), "in method '" "i2ccore_read" "', argument " "4"" of type '" "byte_t []""'");
3936  }
3937  arg4 = (byte_t *)(argp4);
3938  ecode5 = SWIG_AsVal_unsigned_SS_int(obj4, &val5);
3939  if (!SWIG_IsOK(ecode5)) {
3940  SWIG_exception_fail(SWIG_ArgError(ecode5), "in method '" "i2ccore_read" "', argument " "5"" of type '" "unsigned int""'");
3941  }
3942  arg5 = (unsigned int)(val5);
3943  result = (int)i2ccore_read(arg1,arg2,arg3,arg4,arg5);
3944  resultobj = SWIG_From_int((int)(result));
3945  return resultobj;
3946 fail:
3947  return NULL;
3948 }
3949 
3950 
3951 SWIGINTERN PyObject *_wrap_i2ccore_write(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
3952  PyObject *resultobj = 0;
3953  int arg1 ;
3954  unsigned short arg2 ;
3955  unsigned short arg3 ;
3956  byte_t *arg4 ;
3957  unsigned int arg5 ;
3958  int val1 ;
3959  int ecode1 = 0 ;
3960  unsigned short val2 ;
3961  int ecode2 = 0 ;
3962  unsigned short val3 ;
3963  int ecode3 = 0 ;
3964  void *argp4 = 0 ;
3965  int res4 = 0 ;
3966  unsigned int val5 ;
3967  int ecode5 = 0 ;
3968  PyObject * obj0 = 0 ;
3969  PyObject * obj1 = 0 ;
3970  PyObject * obj2 = 0 ;
3971  PyObject * obj3 = 0 ;
3972  PyObject * obj4 = 0 ;
3973  int result;
3974 
3975  if (!PyArg_ParseTuple(args,(char *)"OOOOO:i2ccore_write",&obj0,&obj1,&obj2,&obj3,&obj4)) SWIG_fail;
3976  ecode1 = SWIG_AsVal_int(obj0, &val1);
3977  if (!SWIG_IsOK(ecode1)) {
3978  SWIG_exception_fail(SWIG_ArgError(ecode1), "in method '" "i2ccore_write" "', argument " "1"" of type '" "int""'");
3979  }
3980  arg1 = (int)(val1);
3981  ecode2 = SWIG_AsVal_unsigned_SS_short(obj1, &val2);
3982  if (!SWIG_IsOK(ecode2)) {
3983  SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "i2ccore_write" "', argument " "2"" of type '" "unsigned short""'");
3984  }
3985  arg2 = (unsigned short)(val2);
3986  ecode3 = SWIG_AsVal_unsigned_SS_short(obj2, &val3);
3987  if (!SWIG_IsOK(ecode3)) {
3988  SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "i2ccore_write" "', argument " "3"" of type '" "unsigned short""'");
3989  }
3990  arg3 = (unsigned short)(val3);
3991  res4 = SWIG_ConvertPtr(obj3, &argp4,SWIGTYPE_p_unsigned_char, 0 | 0 );
3992  if (!SWIG_IsOK(res4)) {
3993  SWIG_exception_fail(SWIG_ArgError(res4), "in method '" "i2ccore_write" "', argument " "4"" of type '" "byte_t []""'");
3994  }
3995  arg4 = (byte_t *)(argp4);
3996  ecode5 = SWIG_AsVal_unsigned_SS_int(obj4, &val5);
3997  if (!SWIG_IsOK(ecode5)) {
3998  SWIG_exception_fail(SWIG_ArgError(ecode5), "in method '" "i2ccore_write" "', argument " "5"" of type '" "unsigned int""'");
3999  }
4000  arg5 = (unsigned int)(val5);
4001  result = (int)i2ccore_write(arg1,arg2,arg3,arg4,arg5);
4002  resultobj = SWIG_From_int((int)(result));
4003  return resultobj;
4004 fail:
4005  return NULL;
4006 }
4007 
4008 
4009 SWIGINTERN PyObject *_wrap_i2ccore_transfer(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
4010  PyObject *resultobj = 0;
4011  int arg1 ;
4012  unsigned short arg2 ;
4013  unsigned short arg3 ;
4014  byte_t *arg4 ;
4015  unsigned int arg5 ;
4016  byte_t *arg6 ;
4017  unsigned int arg7 ;
4018  int val1 ;
4019  int ecode1 = 0 ;
4020  unsigned short val2 ;
4021  int ecode2 = 0 ;
4022  unsigned short val3 ;
4023  int ecode3 = 0 ;
4024  void *argp4 = 0 ;
4025  int res4 = 0 ;
4026  unsigned int val5 ;
4027  int ecode5 = 0 ;
4028  void *argp6 = 0 ;
4029  int res6 = 0 ;
4030  unsigned int val7 ;
4031  int ecode7 = 0 ;
4032  PyObject * obj0 = 0 ;
4033  PyObject * obj1 = 0 ;
4034  PyObject * obj2 = 0 ;
4035  PyObject * obj3 = 0 ;
4036  PyObject * obj4 = 0 ;
4037  PyObject * obj5 = 0 ;
4038  PyObject * obj6 = 0 ;
4039  int result;
4040 
4041  if (!PyArg_ParseTuple(args,(char *)"OOOOOOO:i2ccore_transfer",&obj0,&obj1,&obj2,&obj3,&obj4,&obj5,&obj6)) SWIG_fail;
4042  ecode1 = SWIG_AsVal_int(obj0, &val1);
4043  if (!SWIG_IsOK(ecode1)) {
4044  SWIG_exception_fail(SWIG_ArgError(ecode1), "in method '" "i2ccore_transfer" "', argument " "1"" of type '" "int""'");
4045  }
4046  arg1 = (int)(val1);
4047  ecode2 = SWIG_AsVal_unsigned_SS_short(obj1, &val2);
4048  if (!SWIG_IsOK(ecode2)) {
4049  SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "i2ccore_transfer" "', argument " "2"" of type '" "unsigned short""'");
4050  }
4051  arg2 = (unsigned short)(val2);
4052  ecode3 = SWIG_AsVal_unsigned_SS_short(obj2, &val3);
4053  if (!SWIG_IsOK(ecode3)) {
4054  SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "i2ccore_transfer" "', argument " "3"" of type '" "unsigned short""'");
4055  }
4056  arg3 = (unsigned short)(val3);
4057  res4 = SWIG_ConvertPtr(obj3, &argp4,SWIGTYPE_p_unsigned_char, 0 | 0 );
4058  if (!SWIG_IsOK(res4)) {
4059  SWIG_exception_fail(SWIG_ArgError(res4), "in method '" "i2ccore_transfer" "', argument " "4"" of type '" "byte_t []""'");
4060  }
4061  arg4 = (byte_t *)(argp4);
4062  ecode5 = SWIG_AsVal_unsigned_SS_int(obj4, &val5);
4063  if (!SWIG_IsOK(ecode5)) {
4064  SWIG_exception_fail(SWIG_ArgError(ecode5), "in method '" "i2ccore_transfer" "', argument " "5"" of type '" "unsigned int""'");
4065  }
4066  arg5 = (unsigned int)(val5);
4067  res6 = SWIG_ConvertPtr(obj5, &argp6,SWIGTYPE_p_unsigned_char, 0 | 0 );
4068  if (!SWIG_IsOK(res6)) {
4069  SWIG_exception_fail(SWIG_ArgError(res6), "in method '" "i2ccore_transfer" "', argument " "6"" of type '" "byte_t []""'");
4070  }
4071  arg6 = (byte_t *)(argp6);
4072  ecode7 = SWIG_AsVal_unsigned_SS_int(obj6, &val7);
4073  if (!SWIG_IsOK(ecode7)) {
4074  SWIG_exception_fail(SWIG_ArgError(ecode7), "in method '" "i2ccore_transfer" "', argument " "7"" of type '" "unsigned int""'");
4075  }
4076  arg7 = (unsigned int)(val7);
4077  result = (int)i2ccore_transfer(arg1,arg2,arg3,arg4,arg5,arg6,arg7);
4078  resultobj = SWIG_From_int((int)(result));
4079  return resultobj;
4080 fail:
4081  return NULL;
4082 }
4083 
4084 
4085 SWIGINTERN PyObject *_wrap_i2ccore_check(PyObject *SWIGUNUSEDPARM(self), PyObject *args) {
4086  PyObject *resultobj = 0;
4087  int arg1 ;
4088  unsigned short arg2 ;
4089  unsigned short arg3 ;
4090  int val1 ;
4091  int ecode1 = 0 ;
4092  unsigned short val2 ;
4093  int ecode2 = 0 ;
4094  unsigned short val3 ;
4095  int ecode3 = 0 ;
4096  PyObject * obj0 = 0 ;
4097  PyObject * obj1 = 0 ;
4098  PyObject * obj2 = 0 ;
4099  int result;
4100 
4101  if (!PyArg_ParseTuple(args,(char *)"OOO:i2ccore_check",&obj0,&obj1,&obj2)) SWIG_fail;
4102  ecode1 = SWIG_AsVal_int(obj0, &val1);
4103  if (!SWIG_IsOK(ecode1)) {
4104  SWIG_exception_fail(SWIG_ArgError(ecode1), "in method '" "i2ccore_check" "', argument " "1"" of type '" "int""'");
4105  }
4106  arg1 = (int)(val1);
4107  ecode2 = SWIG_AsVal_unsigned_SS_short(obj1, &val2);
4108  if (!SWIG_IsOK(ecode2)) {
4109  SWIG_exception_fail(SWIG_ArgError(ecode2), "in method '" "i2ccore_check" "', argument " "2"" of type '" "unsigned short""'");
4110  }
4111  arg2 = (unsigned short)(val2);
4112  ecode3 = SWIG_AsVal_unsigned_SS_short(obj2, &val3);
4113  if (!SWIG_IsOK(ecode3)) {
4114  SWIG_exception_fail(SWIG_ArgError(ecode3), "in method '" "i2ccore_check" "', argument " "3"" of type '" "unsigned short""'");
4115  }
4116  arg3 = (unsigned short)(val3);
4117  result = (int)i2ccore_check(arg1,arg2,arg3);
4118  resultobj = SWIG_From_int((int)(result));
4119  return resultobj;
4120 fail:
4121  return NULL;
4122 }
4123 
4124 
4125 static PyMethodDef SwigMethods[] = {
4126  { (char *)"SWIG_PyInstanceMethod_New", (PyCFunction)SWIG_PyInstanceMethod_New, METH_O, NULL},
4127  { (char *)"new_byteArray", _wrap_new_byteArray, METH_VARARGS, NULL},
4128  { (char *)"delete_byteArray", _wrap_delete_byteArray, METH_VARARGS, NULL},
4129  { (char *)"byteArray_getitem", _wrap_byteArray_getitem, METH_VARARGS, NULL},
4130  { (char *)"byteArray_setitem", _wrap_byteArray_setitem, METH_VARARGS, NULL},
4131  { (char *)"new_uintp", _wrap_new_uintp, METH_VARARGS, NULL},
4132  { (char *)"copy_uintp", _wrap_copy_uintp, METH_VARARGS, NULL},
4133  { (char *)"delete_uintp", _wrap_delete_uintp, METH_VARARGS, NULL},
4134  { (char *)"uintp_assign", _wrap_uintp_assign, METH_VARARGS, NULL},
4135  { (char *)"uintp_value", _wrap_uintp_value, METH_VARARGS, NULL},
4136  { (char *)"i2ccore_open", _wrap_i2ccore_open, METH_VARARGS, NULL},
4137  { (char *)"i2ccore_close", _wrap_i2ccore_close, METH_VARARGS, NULL},
4138  { (char *)"i2ccore_read", _wrap_i2ccore_read, METH_VARARGS, NULL},
4139  { (char *)"i2ccore_write", _wrap_i2ccore_write, METH_VARARGS, NULL},
4140  { (char *)"i2ccore_transfer", _wrap_i2ccore_transfer, METH_VARARGS, NULL},
4141  { (char *)"i2ccore_check", _wrap_i2ccore_check, METH_VARARGS, NULL},
4142  { NULL, NULL, 0, NULL }
4143 };
4144 
4145 
4146 /* -------- TYPE CONVERSION AND EQUIVALENCE RULES (BEGIN) -------- */
4147 
4148 static swig_type_info _swigt__p_char = {"_p_char", "char *", 0, 0, (void*)0, 0};
4149 static swig_type_info _swigt__p_int = {"_p_int", "bool_t *|int *", 0, 0, (void*)0, 0};
4150 static swig_type_info _swigt__p_unsigned_char = {"_p_unsigned_char", "unsigned char *|byte_t *", 0, 0, (void*)0, 0};
4151 static swig_type_info _swigt__p_unsigned_int = {"_p_unsigned_int", "unsigned int *|uint_t *", 0, 0, (void*)0, 0};
4152 static swig_type_info _swigt__p_unsigned_long = {"_p_unsigned_long", "unsigned long *|ulong_t *", 0, 0, (void*)0, 0};
4153 static swig_type_info _swigt__p_unsigned_short = {"_p_unsigned_short", "unsigned short *|ushort_t *", 0, 0, (void*)0, 0};
4154 
4155 static swig_type_info *swig_type_initial[] = {
4156  &_swigt__p_char,
4157  &_swigt__p_int,
4158  &_swigt__p_unsigned_char,
4159  &_swigt__p_unsigned_int,
4160  &_swigt__p_unsigned_long,
4161  &_swigt__p_unsigned_short,
4162 };
4163 
4164 static swig_cast_info _swigc__p_char[] = { {&_swigt__p_char, 0, 0, 0},{0, 0, 0, 0}};
4165 static swig_cast_info _swigc__p_int[] = { {&_swigt__p_int, 0, 0, 0},{0, 0, 0, 0}};
4166 static swig_cast_info _swigc__p_unsigned_char[] = { {&_swigt__p_unsigned_char, 0, 0, 0},{0, 0, 0, 0}};
4167 static swig_cast_info _swigc__p_unsigned_int[] = { {&_swigt__p_unsigned_int, 0, 0, 0},{0, 0, 0, 0}};
4168 static swig_cast_info _swigc__p_unsigned_long[] = { {&_swigt__p_unsigned_long, 0, 0, 0},{0, 0, 0, 0}};
4169 static swig_cast_info _swigc__p_unsigned_short[] = { {&_swigt__p_unsigned_short, 0, 0, 0},{0, 0, 0, 0}};
4170 
4171 static swig_cast_info *swig_cast_initial[] = {
4172  _swigc__p_char,
4173  _swigc__p_int,
4174  _swigc__p_unsigned_char,
4175  _swigc__p_unsigned_int,
4176  _swigc__p_unsigned_long,
4177  _swigc__p_unsigned_short,
4178 };
4179 
4180 
4181 /* -------- TYPE CONVERSION AND EQUIVALENCE RULES (END) -------- */
4182 
4183 static swig_const_info swig_const_table[] = {
4184 {0, 0, 0, 0.0, 0, 0}};
4185 
4186 #ifdef __cplusplus
4187 }
4188 #endif
4189 /* -----------------------------------------------------------------------------
4190  * Type initialization:
4191  * This problem is tough by the requirement that no dynamic
4192  * memory is used. Also, since swig_type_info structures store pointers to
4193  * swig_cast_info structures and swig_cast_info structures store pointers back
4194  * to swig_type_info structures, we need some lookup code at initialization.
4195  * The idea is that swig generates all the structures that are needed.
4196  * The runtime then collects these partially filled structures.
4197  * The SWIG_InitializeModule function takes these initial arrays out of
4198  * swig_module, and does all the lookup, filling in the swig_module.types
4199  * array with the correct data and linking the correct swig_cast_info
4200  * structures together.
4201  *
4202  * The generated swig_type_info structures are assigned statically to an initial
4203  * array. We just loop through that array, and handle each type individually.
4204  * First we lookup if this type has been already loaded, and if so, use the
4205  * loaded structure instead of the generated one. Then we have to fill in the
4206  * cast linked list. The cast data is initially stored in something like a
4207  * two-dimensional array. Each row corresponds to a type (there are the same
4208  * number of rows as there are in the swig_type_initial array). Each entry in
4209  * a column is one of the swig_cast_info structures for that type.
4210  * The cast_initial array is actually an array of arrays, because each row has
4211  * a variable number of columns. So to actually build the cast linked list,
4212  * we find the array of casts associated with the type, and loop through it
4213  * adding the casts to the list. The one last trick we need to do is making
4214  * sure the type pointer in the swig_cast_info struct is correct.
4215  *
4216  * First off, we lookup the cast->type name to see if it is already loaded.
4217  * There are three cases to handle:
4218  * 1) If the cast->type has already been loaded AND the type we are adding
4219  * casting info to has not been loaded (it is in this module), THEN we
4220  * replace the cast->type pointer with the type pointer that has already
4221  * been loaded.
4222  * 2) If BOTH types (the one we are adding casting info to, and the
4223  * cast->type) are loaded, THEN the cast info has already been loaded by
4224  * the previous module so we just ignore it.
4225  * 3) Finally, if cast->type has not already been loaded, then we add that
4226  * swig_cast_info to the linked list (because the cast->type) pointer will
4227  * be correct.
4228  * ----------------------------------------------------------------------------- */
4229 
4230 #ifdef __cplusplus
4231 extern "C" {
4232 #if 0
4233 } /* c-mode */
4234 #endif
4235 #endif
4236 
4237 #if 0
4238 #define SWIGRUNTIME_DEBUG
4239 #endif
4240 
4241 
4242 SWIGRUNTIME void
4243 SWIG_InitializeModule(void *clientdata) {
4244  size_t i;
4245  swig_module_info *module_head, *iter;
4246  int init;
4247 
4248  /* check to see if the circular list has been setup, if not, set it up */
4249  if (swig_module.next==0) {
4250  /* Initialize the swig_module */
4251  swig_module.type_initial = swig_type_initial;
4252  swig_module.cast_initial = swig_cast_initial;
4253  swig_module.next = &swig_module;
4254  init = 1;
4255  } else {
4256  init = 0;
4257  }
4258 
4259  /* Try and load any already created modules */
4260  module_head = SWIG_GetModule(clientdata);
4261  if (!module_head) {
4262  /* This is the first module loaded for this interpreter */
4263  /* so set the swig module into the interpreter */
4264  SWIG_SetModule(clientdata, &swig_module);
4265  } else {
4266  /* the interpreter has loaded a SWIG module, but has it loaded this one? */
4267  iter=module_head;
4268  do {
4269  if (iter==&swig_module) {
4270  /* Our module is already in the list, so there's nothing more to do. */
4271  return;
4272  }
4273  iter=iter->next;
4274  } while (iter!= module_head);
4275 
4276  /* otherwise we must add our module into the list */
4277  swig_module.next = module_head->next;
4278  module_head->next = &swig_module;
4279  }
4280 
4281  /* When multiple interpreters are used, a module could have already been initialized in
4282  a different interpreter, but not yet have a pointer in this interpreter.
4283  In this case, we do not want to continue adding types... everything should be
4284  set up already */
4285  if (init == 0) return;
4286 
4287  /* Now work on filling in swig_module.types */
4288 #ifdef SWIGRUNTIME_DEBUG
4289  printf("SWIG_InitializeModule: size %d\n", swig_module.size);
4290 #endif
4291  for (i = 0; i < swig_module.size; ++i) {
4292  swig_type_info *type = 0;
4293  swig_type_info *ret;
4294  swig_cast_info *cast;
4295 
4296 #ifdef SWIGRUNTIME_DEBUG
4297  printf("SWIG_InitializeModule: type %d %s\n", i, swig_module.type_initial[i]->name);
4298 #endif
4299 
4300  /* if there is another module already loaded */
4301  if (swig_module.next != &swig_module) {
4302  type = SWIG_MangledTypeQueryModule(swig_module.next, &swig_module, swig_module.type_initial[i]->name);
4303  }
4304  if (type) {
4305  /* Overwrite clientdata field */
4306 #ifdef SWIGRUNTIME_DEBUG
4307  printf("SWIG_InitializeModule: found type %s\n", type->name);
4308 #endif
4309  if (swig_module.type_initial[i]->clientdata) {
4310  type->clientdata = swig_module.type_initial[i]->clientdata;
4311 #ifdef SWIGRUNTIME_DEBUG
4312  printf("SWIG_InitializeModule: found and overwrite type %s \n", type->name);
4313 #endif
4314  }
4315  } else {
4316  type = swig_module.type_initial[i];
4317  }
4318 
4319  /* Insert casting types */
4320  cast = swig_module.cast_initial[i];
4321  while (cast->type) {
4322  /* Don't need to add information already in the list */
4323  ret = 0;
4324 #ifdef SWIGRUNTIME_DEBUG
4325  printf("SWIG_InitializeModule: look cast %s\n", cast->type->name);
4326 #endif
4327  if (swig_module.next != &swig_module) {
4328  ret = SWIG_MangledTypeQueryModule(swig_module.next, &swig_module, cast->type->name);
4329 #ifdef SWIGRUNTIME_DEBUG
4330  if (ret) printf("SWIG_InitializeModule: found cast %s\n", ret->name);
4331 #endif
4332  }
4333  if (ret) {
4334  if (type == swig_module.type_initial[i]) {
4335 #ifdef SWIGRUNTIME_DEBUG
4336  printf("SWIG_InitializeModule: skip old type %s\n", ret->name);
4337 #endif
4338  cast->type = ret;
4339  ret = 0;
4340  } else {
4341  /* Check for casting already in the list */
4342  swig_cast_info *ocast = SWIG_TypeCheck(ret->name, type);
4343 #ifdef SWIGRUNTIME_DEBUG
4344  if (ocast) printf("SWIG_InitializeModule: skip old cast %s\n", ret->name);
4345 #endif
4346  if (!ocast) ret = 0;
4347  }
4348  }
4349 
4350  if (!ret) {
4351 #ifdef SWIGRUNTIME_DEBUG
4352  printf("SWIG_InitializeModule: adding cast %s\n", cast->type->name);
4353 #endif
4354  if (type->cast) {
4355  type->cast->prev = cast;
4356  cast->next = type->cast;
4357  }
4358  type->cast = cast;
4359  }
4360  cast++;
4361  }
4362  /* Set entry in modules->types array equal to the type */
4363  swig_module.types[i] = type;
4364  }
4365  swig_module.types[i] = 0;
4366 
4367 #ifdef SWIGRUNTIME_DEBUG
4368  printf("**** SWIG_InitializeModule: Cast List ******\n");
4369  for (i = 0; i < swig_module.size; ++i) {
4370  int j = 0;
4371  swig_cast_info *cast = swig_module.cast_initial[i];
4372  printf("SWIG_InitializeModule: type %d %s\n", i, swig_module.type_initial[i]->name);
4373  while (cast->type) {
4374  printf("SWIG_InitializeModule: cast type %s\n", cast->type->name);
4375  cast++;
4376  ++j;
4377  }
4378  printf("---- Total casts: %d\n",j);
4379  }
4380  printf("**** SWIG_InitializeModule: Cast List ******\n");
4381 #endif
4382 }
4383 
4384 /* This function will propagate the clientdata field of type to
4385 * any new swig_type_info structures that have been added into the list
4386 * of equivalent types. It is like calling
4387 * SWIG_TypeClientData(type, clientdata) a second time.
4388 */
4389 SWIGRUNTIME void
4390 SWIG_PropagateClientData(void) {
4391  size_t i;
4392  swig_cast_info *equiv;
4393  static int init_run = 0;
4394 
4395  if (init_run) return;
4396  init_run = 1;
4397 
4398  for (i = 0; i < swig_module.size; i++) {
4399  if (swig_module.types[i]->clientdata) {
4400  equiv = swig_module.types[i]->cast;
4401  while (equiv) {
4402  if (!equiv->converter) {
4403  if (equiv->type && !equiv->type->clientdata)
4404  SWIG_TypeClientData(equiv->type, swig_module.types[i]->clientdata);
4405  }
4406  equiv = equiv->next;
4407  }
4408  }
4409  }
4410 }
4411 
4412 #ifdef __cplusplus
4413 #if 0
4414 {
4415  /* c-mode */
4416 #endif
4417 }
4418 #endif
4419 
4420 
4421 
4422 #ifdef __cplusplus
4423 extern "C" {
4424 #endif
4425 
4426  /* Python-specific SWIG API */
4427 #define SWIG_newvarlink() SWIG_Python_newvarlink()
4428 #define SWIG_addvarlink(p, name, get_attr, set_attr) SWIG_Python_addvarlink(p, name, get_attr, set_attr)
4429 #define SWIG_InstallConstants(d, constants) SWIG_Python_InstallConstants(d, constants)
4430 
4431  /* -----------------------------------------------------------------------------
4432  * global variable support code.
4433  * ----------------------------------------------------------------------------- */
4434 
4435  typedef struct swig_globalvar {
4436  char *name; /* Name of global variable */
4437  PyObject *(*get_attr)(void); /* Return the current value */
4438  int (*set_attr)(PyObject *); /* Set the value */
4439  struct swig_globalvar *next;
4440  } swig_globalvar;
4441 
4442  typedef struct swig_varlinkobject {
4443  PyObject_HEAD
4444  swig_globalvar *vars;
4446 
4447  SWIGINTERN PyObject *
4448  swig_varlink_repr(swig_varlinkobject *SWIGUNUSEDPARM(v)) {
4449 #if PY_VERSION_HEX >= 0x03000000
4450  return PyUnicode_InternFromString("<Swig global variables>");
4451 #else
4452  return PyString_FromString("<Swig global variables>");
4453 #endif
4454  }
4455 
4456  SWIGINTERN PyObject *
4457  swig_varlink_str(swig_varlinkobject *v) {
4458 #if PY_VERSION_HEX >= 0x03000000
4459  PyObject *str = PyUnicode_InternFromString("(");
4460  PyObject *tail;
4461  PyObject *joined;
4462  swig_globalvar *var;
4463  for (var = v->vars; var; var=var->next) {
4464  tail = PyUnicode_FromString(var->name);
4465  joined = PyUnicode_Concat(str, tail);
4466  Py_DecRef(str);
4467  Py_DecRef(tail);
4468  str = joined;
4469  if (var->next) {
4470  tail = PyUnicode_InternFromString(", ");
4471  joined = PyUnicode_Concat(str, tail);
4472  Py_DecRef(str);
4473  Py_DecRef(tail);
4474  str = joined;
4475  }
4476  }
4477  tail = PyUnicode_InternFromString(")");
4478  joined = PyUnicode_Concat(str, tail);
4479  Py_DecRef(str);
4480  Py_DecRef(tail);
4481  str = joined;
4482 #else
4483  PyObject *str = PyString_FromString("(");
4484  swig_globalvar *var;
4485  for (var = v->vars; var; var=var->next) {
4486  PyString_ConcatAndDel(&str,PyString_FromString(var->name));
4487  if (var->next) PyString_ConcatAndDel(&str,PyString_FromString(", "));
4488  }
4489  PyString_ConcatAndDel(&str,PyString_FromString(")"));
4490 #endif
4491  return str;
4492  }
4493 
4494  SWIGINTERN int
4495  swig_varlink_print(swig_varlinkobject *v, FILE *fp, int SWIGUNUSEDPARM(flags)) {
4496  char *tmp;
4497  PyObject *str = swig_varlink_str(v);
4498  fprintf(fp,"Swig global variables ");
4499  fprintf(fp,"%s\n", tmp = SWIG_Python_str_AsChar(str));
4500  SWIG_Python_str_DelForPy3(tmp);
4501  Py_DECREF(str);
4502  return 0;
4503  }
4504 
4505  SWIGINTERN void
4506  swig_varlink_dealloc(swig_varlinkobject *v) {
4507  swig_globalvar *var = v->vars;
4508  while (var) {
4509  swig_globalvar *n = var->next;
4510  free(var->name);
4511  free(var);
4512  var = n;
4513  }
4514  }
4515 
4516  SWIGINTERN PyObject *
4517  swig_varlink_getattr(swig_varlinkobject *v, char *n) {
4518  PyObject *res = NULL;
4519  swig_globalvar *var = v->vars;
4520  while (var) {
4521  if (strcmp(var->name,n) == 0) {
4522  res = (*var->get_attr)();
4523  break;
4524  }
4525  var = var->next;
4526  }
4527  if (res == NULL && !PyErr_Occurred()) {
4528  PyErr_Format(PyExc_AttributeError, "Unknown C global variable '%s'", n);
4529  }
4530  return res;
4531  }
4532 
4533  SWIGINTERN int
4534  swig_varlink_setattr(swig_varlinkobject *v, char *n, PyObject *p) {
4535  int res = 1;
4536  swig_globalvar *var = v->vars;
4537  while (var) {
4538  if (strcmp(var->name,n) == 0) {
4539  res = (*var->set_attr)(p);
4540  break;
4541  }
4542  var = var->next;
4543  }
4544  if (res == 1 && !PyErr_Occurred()) {
4545  PyErr_Format(PyExc_AttributeError, "Unknown C global variable '%s'", n);
4546  }
4547  return res;
4548  }
4549 
4550  SWIGINTERN PyTypeObject*
4551  swig_varlink_type(void) {
4552  static char varlink__doc__[] = "Swig var link object";
4553  static PyTypeObject varlink_type;
4554  static int type_init = 0;
4555  if (!type_init) {
4556  const PyTypeObject tmp = {
4557  /* PyObject header changed in Python 3 */
4558 #if PY_VERSION_HEX >= 0x03000000
4559  PyVarObject_HEAD_INIT(NULL, 0)
4560 #else
4561  PyObject_HEAD_INIT(NULL)
4562  0, /* ob_size */
4563 #endif
4564  (char *)"swigvarlink", /* tp_name */
4565  sizeof(swig_varlinkobject), /* tp_basicsize */
4566  0, /* tp_itemsize */
4567  (destructor) swig_varlink_dealloc, /* tp_dealloc */
4568  (printfunc) swig_varlink_print, /* tp_print */
4569  (getattrfunc) swig_varlink_getattr, /* tp_getattr */
4570  (setattrfunc) swig_varlink_setattr, /* tp_setattr */
4571  0, /* tp_compare */
4572  (reprfunc) swig_varlink_repr, /* tp_repr */
4573  0, /* tp_as_number */
4574  0, /* tp_as_sequence */
4575  0, /* tp_as_mapping */
4576  0, /* tp_hash */
4577  0, /* tp_call */
4578  (reprfunc) swig_varlink_str, /* tp_str */
4579  0, /* tp_getattro */
4580  0, /* tp_setattro */
4581  0, /* tp_as_buffer */
4582  0, /* tp_flags */
4583  varlink__doc__, /* tp_doc */
4584  0, /* tp_traverse */
4585  0, /* tp_clear */
4586  0, /* tp_richcompare */
4587  0, /* tp_weaklistoffset */
4588 #if PY_VERSION_HEX >= 0x02020000
4589  0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0,0, /* tp_iter -> tp_weaklist */
4590 #endif
4591 #if PY_VERSION_HEX >= 0x02030000
4592  0, /* tp_del */
4593 #endif
4594 #if PY_VERSION_HEX >= 0x02060000
4595  0, /* tp_version_tag */
4596 #endif
4597 #if PY_VERSION_HEX >= 0x03040000
4598  0, /* tp_finalize */
4599 #endif
4600 #ifdef COUNT_ALLOCS
4601  0, /* tp_allocs */
4602  0, /* tp_frees */
4603  0, /* tp_maxalloc */
4604 #if PY_VERSION_HEX >= 0x02050000
4605  0, /* tp_prev */
4606 #endif
4607  0 /* tp_next */
4608 #endif
4609  };
4610  varlink_type = tmp;
4611  type_init = 1;
4612 #if PY_VERSION_HEX < 0x02020000
4613  varlink_type.ob_type = &PyType_Type;
4614 #else
4615  if (PyType_Ready(&varlink_type) < 0)
4616  return NULL;
4617 #endif
4618  }
4619  return &varlink_type;
4620  }
4621 
4622  /* Create a variable linking object for use later */
4623  SWIGINTERN PyObject *
4624  SWIG_Python_newvarlink(void) {
4625  swig_varlinkobject *result = PyObject_NEW(swig_varlinkobject, swig_varlink_type());
4626  if (result) {
4627  result->vars = 0;
4628  }
4629  return ((PyObject*) result);
4630  }
4631 
4632  SWIGINTERN void
4633  SWIG_Python_addvarlink(PyObject *p, char *name, PyObject *(*get_attr)(void), int (*set_attr)(PyObject *p)) {
4635  swig_globalvar *gv = (swig_globalvar *) malloc(sizeof(swig_globalvar));
4636  if (gv) {
4637  size_t size = strlen(name)+1;
4638  gv->name = (char *)malloc(size);
4639  if (gv->name) {
4640  strncpy(gv->name,name,size);
4641  gv->get_attr = get_attr;
4642  gv->set_attr = set_attr;
4643  gv->next = v->vars;
4644  }
4645  }
4646  v->vars = gv;
4647  }
4648 
4649  SWIGINTERN PyObject *
4650  SWIG_globals(void) {
4651  static PyObject *_SWIG_globals = 0;
4652  if (!_SWIG_globals) _SWIG_globals = SWIG_newvarlink();
4653  return _SWIG_globals;
4654  }
4655 
4656  /* -----------------------------------------------------------------------------
4657  * constants/methods manipulation
4658  * ----------------------------------------------------------------------------- */
4659 
4660  /* Install Constants */
4661  SWIGINTERN void
4662  SWIG_Python_InstallConstants(PyObject *d, swig_const_info constants[]) {
4663  PyObject *obj = 0;
4664  size_t i;
4665  for (i = 0; constants[i].type; ++i) {
4666  switch(constants[i].type) {
4667  case SWIG_PY_POINTER:
4668  obj = SWIG_InternalNewPointerObj(constants[i].pvalue, *(constants[i]).ptype,0);
4669  break;
4670  case SWIG_PY_BINARY:
4671  obj = SWIG_NewPackedObj(constants[i].pvalue, constants[i].lvalue, *(constants[i].ptype));
4672  break;
4673  default:
4674  obj = 0;
4675  break;
4676  }
4677  if (obj) {
4678  PyDict_SetItemString(d, constants[i].name, obj);
4679  Py_DECREF(obj);
4680  }
4681  }
4682  }
4683 
4684  /* -----------------------------------------------------------------------------*/
4685  /* Fix SwigMethods to carry the callback ptrs when needed */
4686  /* -----------------------------------------------------------------------------*/
4687 
4688  SWIGINTERN void
4689  SWIG_Python_FixMethods(PyMethodDef *methods,
4690  swig_const_info *const_table,
4691  swig_type_info **types,
4692  swig_type_info **types_initial) {
4693  size_t i;
4694  for (i = 0; methods[i].ml_name; ++i) {
4695  const char *c = methods[i].ml_doc;
4696  if (!c) continue;
4697  c = strstr(c, "swig_ptr: ");
4698  if (c) {
4699  int j;
4700  swig_const_info *ci = 0;
4701  const char *name = c + 10;
4702  for (j = 0; const_table[j].type; ++j) {
4703  if (strncmp(const_table[j].name, name,
4704  strlen(const_table[j].name)) == 0) {
4705  ci = &(const_table[j]);
4706  break;
4707  }
4708  }
4709  if (ci) {
4710  void *ptr = (ci->type == SWIG_PY_POINTER) ? ci->pvalue : 0;
4711  if (ptr) {
4712  size_t shift = (ci->ptype) - types;
4713  swig_type_info *ty = types_initial[shift];
4714  size_t ldoc = (c - methods[i].ml_doc);
4715  size_t lptr = strlen(ty->name)+2*sizeof(void*)+2;
4716  char *ndoc = (char*)malloc(ldoc + lptr + 10);
4717  if (ndoc) {
4718  char *buff = ndoc;
4719  strncpy(buff, methods[i].ml_doc, ldoc);
4720  buff += ldoc;
4721  strncpy(buff, "swig_ptr: ", 10);
4722  buff += 10;
4723  SWIG_PackVoidPtr(buff, ptr, ty->name, lptr);
4724  methods[i].ml_doc = ndoc;
4725  }
4726  }
4727  }
4728  }
4729  }
4730  }
4731 
4732 #ifdef __cplusplus
4733 }
4734 #endif
4735 
4736 /* -----------------------------------------------------------------------------*
4737  * Partial Init method
4738  * -----------------------------------------------------------------------------*/
4739 
4740 #ifdef __cplusplus
4741 extern "C"
4742 #endif
4743 
4744 SWIGEXPORT
4745 #if PY_VERSION_HEX >= 0x03000000
4746 PyObject*
4747 #else
4748 void
4749 #endif
4750 SWIG_init(void) {
4751  PyObject *m, *d, *md;
4752 #if PY_VERSION_HEX >= 0x03000000
4753  static struct PyModuleDef SWIG_module = {
4754 # if PY_VERSION_HEX >= 0x03020000
4755  PyModuleDef_HEAD_INIT,
4756 # else
4757  {
4758  PyObject_HEAD_INIT(NULL)
4759  NULL, /* m_init */
4760  0, /* m_index */
4761  NULL, /* m_copy */
4762  },
4763 # endif
4764  (char *) SWIG_name,
4765  NULL,
4766  -1,
4767  SwigMethods,
4768  NULL,
4769  NULL,
4770  NULL,
4771  NULL
4772  };
4773 #endif
4774 
4775 #if defined(SWIGPYTHON_BUILTIN)
4776  static SwigPyClientData SwigPyObject_clientdata = {
4777  0, 0, 0, 0, 0, 0, 0
4778  };
4779  static PyGetSetDef this_getset_def = {
4780  (char *)"this", &SwigPyBuiltin_ThisClosure, NULL, NULL, NULL
4781  };
4782  static SwigPyGetSet thisown_getset_closure = {
4783  (PyCFunction) SwigPyObject_own,
4784  (PyCFunction) SwigPyObject_own
4785  };
4786  static PyGetSetDef thisown_getset_def = {
4787  (char *)"thisown", SwigPyBuiltin_GetterClosure, SwigPyBuiltin_SetterClosure, NULL, &thisown_getset_closure
4788  };
4789  PyObject *metatype_args;
4790  PyTypeObject *builtin_pytype;
4791  int builtin_base_count;
4792  swig_type_info *builtin_basetype;
4793  PyObject *tuple;
4794  PyGetSetDescrObject *static_getset;
4795  PyTypeObject *metatype;
4796  SwigPyClientData *cd;
4797  PyObject *public_interface, *public_symbol;
4798  PyObject *this_descr;
4799  PyObject *thisown_descr;
4800  PyObject *self = 0;
4801  int i;
4802 
4803  (void)builtin_pytype;
4804  (void)builtin_base_count;
4805  (void)builtin_basetype;
4806  (void)tuple;
4807  (void)static_getset;
4808  (void)self;
4809 
4810  /* metatype is used to implement static member variables. */
4811  metatype_args = Py_BuildValue("(s(O){})", "SwigPyObjectType", &PyType_Type);
4812  assert(metatype_args);
4813  metatype = (PyTypeObject *) PyType_Type.tp_call((PyObject *) &PyType_Type, metatype_args, NULL);
4814  assert(metatype);
4815  Py_DECREF(metatype_args);
4816  metatype->tp_setattro = (setattrofunc) &SwigPyObjectType_setattro;
4817  assert(PyType_Ready(metatype) >= 0);
4818 #endif
4819 
4820  /* Fix SwigMethods to carry the callback ptrs when needed */
4821  SWIG_Python_FixMethods(SwigMethods, swig_const_table, swig_types, swig_type_initial);
4822 
4823 #if PY_VERSION_HEX >= 0x03000000
4824  m = PyModule_Create(&SWIG_module);
4825 #else
4826  m = Py_InitModule((char *) SWIG_name, SwigMethods);
4827 #endif
4828 
4829  md = d = PyModule_GetDict(m);
4830  (void)md;
4831 
4832  SWIG_InitializeModule(0);
4833 
4834 #ifdef SWIGPYTHON_BUILTIN
4835  SwigPyObject_stype = SWIG_MangledTypeQuery("_p_SwigPyObject");
4836  assert(SwigPyObject_stype);
4837  cd = (SwigPyClientData*) SwigPyObject_stype->clientdata;
4838  if (!cd) {
4839  SwigPyObject_stype->clientdata = &SwigPyObject_clientdata;
4840  SwigPyObject_clientdata.pytype = SwigPyObject_TypeOnce();
4841  } else if (SwigPyObject_TypeOnce()->tp_basicsize != cd->pytype->tp_basicsize) {
4842  PyErr_SetString(PyExc_RuntimeError, "Import error: attempted to load two incompatible swig-generated modules.");
4843 # if PY_VERSION_HEX >= 0x03000000
4844  return NULL;
4845 # else
4846  return;
4847 # endif
4848  }
4849 
4850  /* All objects have a 'this' attribute */
4851  this_descr = PyDescr_NewGetSet(SwigPyObject_type(), &this_getset_def);
4852  (void)this_descr;
4853 
4854  /* All objects have a 'thisown' attribute */
4855  thisown_descr = PyDescr_NewGetSet(SwigPyObject_type(), &thisown_getset_def);
4856  (void)thisown_descr;
4857 
4858  public_interface = PyList_New(0);
4859  public_symbol = 0;
4860  (void)public_symbol;
4861 
4862  PyDict_SetItemString(md, "__all__", public_interface);
4863  Py_DECREF(public_interface);
4864  for (i = 0; SwigMethods[i].ml_name != NULL; ++i)
4865  SwigPyBuiltin_AddPublicSymbol(public_interface, SwigMethods[i].ml_name);
4866  for (i = 0; swig_const_table[i].name != 0; ++i)
4867  SwigPyBuiltin_AddPublicSymbol(public_interface, swig_const_table[i].name);
4868 #endif
4869 
4870  SWIG_InstallConstants(d,swig_const_table);
4871 
4872 #if PY_VERSION_HEX >= 0x03000000
4873  return m;
4874 #else
4875  return;
4876 #endif
4877 }
4878 
i2c_addr_t addr
address of the currently selected attached I2C device
Definition: i2c.h:82
int i2c_write(i2c_t *i2c, i2c_addr_t addr, const byte_t *buf, uint_t len)
Write to an I2C device.
Definition: i2ccom.c:159
I2C python modules.
int fd
opened file descriptor of the I2C bus device
Definition: i2c.h:81
void i2c_close(i2c_t *i2c)
Closes an I2C Bus.
Definition: i2ccom.c:137
I2C Bus Handle Type.
Definition: i2c.h:79
int i2ccore_close(int fd)
Close an open I2C bus device.
int i2ccore_check(int fd, unsigned short cur_addr, unsigned short addr)
Test for the existence of a device with the given address.
int i2ccore_open(const char *device)
Open a I2C bus device.
int i2c_transfer(i2c_t *i2c, i2c_addr_t addr, const byte_t *write_buf, uint_t write_len, byte_t *read_buf, uint_t read_len)
Perform a transfer with an I2C device.
Definition: i2ccom.c:171
int i2ccore_read(int fd, unsigned short cur_addr, unsigned short addr, byte_t buf[], unsigned int count)
Read data from an attached device connected to the open I2C bus.
I2C python C interface header.
int i2c_open(i2c_t *i2c, const char *device)
Open the host I2C Bus device.
Definition: i2ccom.c:118
int i2c_read(i2c_t *i2c, i2c_addr_t addr, byte_t *buf, uint_t len)
Read from an I2C device.
Definition: i2ccom.c:147
int i2ccore_transfer(int fd, unsigned short cur_addr, unsigned short addr, byte_t wbuf[], unsigned int wcount, byte_t rbuf[], unsigned int rcount)
Transfer data to an attached device connected to the open I2C bus reead back.
int i2ccore_write(int fd, unsigned short cur_addr, unsigned short addr, byte_t buf[], unsigned int count)
Write data to an attached device connected to the open I2C bus.
int i2c_exists(i2c_t *i2c, i2c_addr_t addr)
Test the existance of a device at the given address on the given I2C Bus.
Definition: i2ccom.c:199
Low-level I2C communication level.