Team Fortress 2 Source Code as on 22/4/2020
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  1. #ifdef __cplusplus
  2. extern "C" {
  3. #endif
  4. /* Remove global namespace pollution */
  5. #if !defined(SWIG_NO_R_NO_REMAP)
  6. # define R_NO_REMAP
  7. #endif
  8. #if !defined(SWIG_NO_STRICT_R_HEADERS)
  9. # define STRICT_R_HEADERS
  10. #endif
  11. #include <Rdefines.h>
  12. #include <Rversion.h>
  13. #include <stdlib.h>
  14. #include <assert.h>
  15. #define SWIGR 1
  16. #if R_VERSION >= R_Version(2,6,0)
  17. #define VMAXTYPE void *
  18. #define RVERSION26(x) x
  19. #define RVERSIONPRE26(x)
  20. #else
  21. #define VMAXTYPE char *
  22. #define RVERSION26(x)
  23. #define RVERSIONPRE26(x) x
  24. #endif
  25. /*
  26. This is mainly a way to avoid having lots of local variables that may
  27. conflict with those in the routine.
  28. Change name to R_SWIG_Callb....
  29. */
  30. typedef struct RCallbackFunctionData {
  31. SEXP fun;
  32. SEXP userData;
  33. SEXP expr;
  34. SEXP retValue;
  35. int errorOccurred;
  36. SEXP el; /* Temporary pointer used in the construction of the expression to call the R function. */
  37. struct RCallbackFunctionData *previous; /* Stack */
  38. } RCallbackFunctionData;
  39. static RCallbackFunctionData *callbackFunctionDataStack;
  40. SWIGRUNTIME SEXP
  41. R_SWIG_debug_getCallbackFunctionData()
  42. {
  43. int n, i;
  44. SEXP ans;
  45. RCallbackFunctionData *p = callbackFunctionDataStack;
  46. n = 0;
  47. while(p) {
  48. n++;
  49. p = p->previous;
  50. }
  51. Rf_protect(ans = Rf_allocVector(VECSXP, n));
  52. for(p = callbackFunctionDataStack, i = 0; i < n; p = p->previous, i++)
  53. SET_VECTOR_ELT(ans, i, p->fun);
  54. Rf_unprotect(1);
  55. return(ans);
  56. }
  57. SWIGRUNTIME RCallbackFunctionData *
  58. R_SWIG_pushCallbackFunctionData(SEXP fun, SEXP userData)
  59. {
  60. RCallbackFunctionData *el;
  61. el = (RCallbackFunctionData *) calloc(1, sizeof(RCallbackFunctionData));
  62. el->fun = fun;
  63. el->userData = userData;
  64. el->previous = callbackFunctionDataStack;
  65. callbackFunctionDataStack = el;
  66. return(el);
  67. }
  68. SWIGRUNTIME SEXP
  69. R_SWIG_R_pushCallbackFunctionData(SEXP fun, SEXP userData)
  70. {
  71. R_SWIG_pushCallbackFunctionData(fun, userData);
  72. return R_NilValue;
  73. }
  74. SWIGRUNTIME RCallbackFunctionData *
  75. R_SWIG_getCallbackFunctionData()
  76. {
  77. if(!callbackFunctionDataStack) {
  78. Rf_error("Supposedly impossible error occurred in the SWIG callback mechanism."
  79. " No callback function data set.");
  80. }
  81. return callbackFunctionDataStack;
  82. }
  83. SWIGRUNTIME void
  84. R_SWIG_popCallbackFunctionData(int doFree)
  85. {
  86. RCallbackFunctionData *el = NULL;
  87. if(!callbackFunctionDataStack)
  88. return ; /* Error !!! */
  89. el = callbackFunctionDataStack ;
  90. callbackFunctionDataStack = callbackFunctionDataStack->previous;
  91. if(doFree)
  92. free(el);
  93. }
  94. /*
  95. Interface to S function
  96. is(obj, type)
  97. which is to be used to determine if an
  98. external pointer inherits from the right class.
  99. Ideally, we would like to be able to do this without an explicit call to the is() function.
  100. When the S4 class system uses its own SEXP types, then we will hopefully be able to do this
  101. in the C code.
  102. Should we make the expression static and preserve it to avoid the overhead of
  103. allocating each time.
  104. */
  105. SWIGRUNTIME int
  106. R_SWIG_checkInherits(SEXP obj, SEXP tag, const char *type)
  107. {
  108. SEXP e, val;
  109. int check_err = 0;
  110. Rf_protect(e = Rf_allocVector(LANGSXP, 3));
  111. SETCAR(e, Rf_install("extends"));
  112. SETCAR(CDR(e), Rf_mkString(CHAR(PRINTNAME(tag))));
  113. SETCAR(CDR(CDR(e)), Rf_mkString(type));
  114. val = R_tryEval(e, R_GlobalEnv, &check_err);
  115. Rf_unprotect(1);
  116. if(check_err)
  117. return(0);
  118. return(LOGICAL(val)[0]);
  119. }
  120. SWIGRUNTIME void *
  121. R_SWIG_resolveExternalRef(SEXP arg, const char * const type, const char * const argName, Rboolean nullOk)
  122. {
  123. void *ptr;
  124. SEXP orig = arg;
  125. if(TYPEOF(arg) != EXTPTRSXP)
  126. arg = GET_SLOT(arg, Rf_mkString("ref"));
  127. if(TYPEOF(arg) != EXTPTRSXP) {
  128. Rf_error("argument %s must be an external pointer (from an ExternalReference)", argName);
  129. }
  130. ptr = R_ExternalPtrAddr(arg);
  131. if(ptr == NULL && nullOk == (Rboolean) FALSE) {
  132. Rf_error("the external pointer (of type %s) for argument %s has value NULL", argName, type);
  133. }
  134. if(type[0] && R_ExternalPtrTag(arg) != Rf_install(type) && strcmp(type, "voidRef")
  135. && !R_SWIG_checkInherits(orig, R_ExternalPtrTag(arg), type)) {
  136. Rf_error("the external pointer for argument %s has tag %s, not the expected value %s",
  137. argName, CHAR(PRINTNAME(R_ExternalPtrTag(arg))), type);
  138. }
  139. return(ptr);
  140. }
  141. SWIGRUNTIME void
  142. R_SWIG_ReferenceFinalizer(SEXP el)
  143. {
  144. void *ptr = R_SWIG_resolveExternalRef(el, "", "<finalizer>", (Rboolean) 1);
  145. fprintf(stderr, "In R_SWIG_ReferenceFinalizer for %p\n", ptr);
  146. Rf_PrintValue(el);
  147. if(ptr) {
  148. if(TYPEOF(el) != EXTPTRSXP)
  149. el = GET_SLOT(el, Rf_mkString("ref"));
  150. if(TYPEOF(el) == EXTPTRSXP)
  151. R_ClearExternalPtr(el);
  152. free(ptr);
  153. }
  154. return;
  155. }
  156. typedef enum {R_SWIG_EXTERNAL, R_SWIG_OWNER } R_SWIG_Owner;
  157. SWIGRUNTIME SEXP
  158. SWIG_MakePtr(void *ptr, const char *typeName, R_SWIG_Owner owner)
  159. {
  160. SEXP external, r_obj;
  161. const char *p = typeName;
  162. if(typeName[0] == '_')
  163. p = typeName + 1;
  164. Rf_protect(external = R_MakeExternalPtr(ptr, Rf_install(typeName), R_NilValue));
  165. Rf_protect(r_obj = NEW_OBJECT(MAKE_CLASS((char *) typeName)));
  166. if(owner)
  167. R_RegisterCFinalizer(external, R_SWIG_ReferenceFinalizer);
  168. r_obj = SET_SLOT(r_obj, Rf_mkString((char *) "ref"), external);
  169. SET_S4_OBJECT(r_obj);
  170. Rf_unprotect(2);
  171. return(r_obj);
  172. }
  173. SWIGRUNTIME SEXP
  174. R_SWIG_create_SWIG_R_Array(const char *typeName, SEXP ref, int len)
  175. {
  176. SEXP arr;
  177. /*XXX remove the char * cast when we can. MAKE_CLASS should be declared appropriately. */
  178. Rf_protect(arr = NEW_OBJECT(MAKE_CLASS((char *) typeName)));
  179. Rf_protect(arr = R_do_slot_assign(arr, Rf_mkString("ref"), ref));
  180. Rf_protect(arr = R_do_slot_assign(arr, Rf_mkString("dims"), Rf_ScalarInteger(len)));
  181. Rf_unprotect(3);
  182. SET_S4_OBJECT(arr);
  183. return arr;
  184. }
  185. #define ADD_OUTPUT_ARG(result, pos, value, name) r_ans = AddOutputArgToReturn(pos, value, name, OutputValues);
  186. SWIGRUNTIME SEXP
  187. AddOutputArgToReturn(int pos, SEXP value, const char *name, SEXP output)
  188. {
  189. SET_VECTOR_ELT(output, pos, value);
  190. return(output);
  191. }
  192. /* Create a new pointer object */
  193. SWIGRUNTIMEINLINE SEXP
  194. SWIG_R_NewPointerObj(void *ptr, swig_type_info *type, int flags) {
  195. SEXP rptr = R_MakeExternalPtr(ptr,
  196. R_MakeExternalPtr(type, R_NilValue, R_NilValue), R_NilValue);
  197. SET_S4_OBJECT(rptr);
  198. // rptr = Rf_setAttrib(rptr, R_ClassSymbol, mkChar(SWIG_TypeName(type)));
  199. return rptr;
  200. }
  201. /* Convert a pointer value */
  202. SWIGRUNTIMEINLINE int
  203. SWIG_R_ConvertPtr(SEXP obj, void **ptr, swig_type_info *ty, int flags) {
  204. void *vptr;
  205. if (!obj) return SWIG_ERROR;
  206. if (obj == R_NilValue) {
  207. if (ptr) *ptr = NULL;
  208. return SWIG_OK;
  209. }
  210. vptr = R_ExternalPtrAddr(obj);
  211. if (ty) {
  212. swig_type_info *to = (swig_type_info*)
  213. R_ExternalPtrAddr(R_ExternalPtrTag(obj));
  214. if (to == ty) {
  215. if (ptr) *ptr = vptr;
  216. } else {
  217. swig_cast_info *tc = SWIG_TypeCheck(to->name,ty);
  218. int newmemory = 0;
  219. if (ptr) *ptr = SWIG_TypeCast(tc,vptr,&newmemory);
  220. assert(!newmemory); /* newmemory handling not yet implemented */
  221. }
  222. } else {
  223. if (ptr) *ptr = vptr;
  224. }
  225. return SWIG_OK;
  226. }
  227. SWIGRUNTIME swig_module_info *
  228. SWIG_GetModule(void *v) {
  229. static void *type_pointer = (void *)0;
  230. return (swig_module_info *) type_pointer;
  231. }
  232. SWIGRUNTIME void
  233. SWIG_SetModule(void *v, swig_module_info *swig_module) {
  234. }
  235. typedef struct {
  236. void *pack;
  237. swig_type_info *ty;
  238. size_t size;
  239. } RSwigPacked;
  240. /* Create a new packed object */
  241. SWIGRUNTIMEINLINE SEXP RSwigPacked_New(void *ptr, size_t sz,
  242. swig_type_info *ty) {
  243. SEXP rptr;
  244. RSwigPacked *sobj =
  245. (RSwigPacked*) malloc(sizeof(RSwigPacked));
  246. if (sobj) {
  247. void *pack = malloc(sz);
  248. if (pack) {
  249. memcpy(pack, ptr, sz);
  250. sobj->pack = pack;
  251. sobj->ty = ty;
  252. sobj->size = sz;
  253. } else {
  254. sobj = 0;
  255. }
  256. }
  257. rptr = R_MakeExternalPtr(sobj, R_NilValue, R_NilValue);
  258. return rptr;
  259. }
  260. SWIGRUNTIME swig_type_info *
  261. RSwigPacked_UnpackData(SEXP obj, void *ptr, size_t size)
  262. {
  263. RSwigPacked *sobj =
  264. (RSwigPacked *)R_ExternalPtrAddr(obj);
  265. if (sobj->size != size) return 0;
  266. memcpy(ptr, sobj->pack, size);
  267. return sobj->ty;
  268. }
  269. SWIGRUNTIMEINLINE SEXP
  270. SWIG_R_NewPackedObj(void *ptr, size_t sz, swig_type_info *type) {
  271. return ptr ? RSwigPacked_New((void *) ptr, sz, type) : R_NilValue;
  272. }
  273. /* Convert a packed value value */
  274. SWIGRUNTIME int
  275. SWIG_R_ConvertPacked(SEXP obj, void *ptr, size_t sz, swig_type_info *ty) {
  276. swig_type_info *to = RSwigPacked_UnpackData(obj, ptr, sz);
  277. if (!to) return SWIG_ERROR;
  278. if (ty) {
  279. if (to != ty) {
  280. /* check type cast? */
  281. swig_cast_info *tc = SWIG_TypeCheck(to->name,ty);
  282. if (!tc) return SWIG_ERROR;
  283. }
  284. }
  285. return SWIG_OK;
  286. }
  287. #ifdef __cplusplus
  288. }
  289. #endif