sxtwl_cpp/export/php7/sxtwl_wrap.cxx

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/* ----------------------------------------------------------------------------
* This file was automatically generated by SWIG (https://www.swig.org).
* Version 4.1.1
*
* Do not make changes to this file unless you know what you are doing - modify
* the SWIG interface file instead.
* ----------------------------------------------------------------------------- */
#define SWIG_VERSION 0x040101
#define SWIGPHP
#if defined __GNUC__ && !defined __cplusplus
# if __GNUC__ >= 4
# pragma GCC diagnostic push
# pragma GCC diagnostic ignored "-Wdeclaration-after-statement"
# endif
#endif
#include "php.h"
#if defined __GNUC__ && !defined __cplusplus
# if __GNUC__ >= 4
# pragma GCC diagnostic pop
# endif
#endif
/* -----------------------------------------------------------------------------
* This section contains generic SWIG labels for method/variable
* declarations/attributes, and other compiler dependent labels.
* ----------------------------------------------------------------------------- */
/* template workaround for compilers that cannot correctly implement the C++ standard */
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# if defined(__SUNPRO_CC) && (__SUNPRO_CC <= 0x560)
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# elif defined(__HP_aCC)
/* Needed even with `aCC -AA' when `aCC -V' reports HP ANSI C++ B3910B A.03.55 */
/* If we find a maximum version that requires this, the test would be __HP_aCC <= 35500 for A.03.55 */
# define SWIGTEMPLATEDISAMBIGUATOR template
# else
# define SWIGTEMPLATEDISAMBIGUATOR
# endif
#endif
/* inline attribute */
#ifndef SWIGINLINE
# if defined(__cplusplus) || (defined(__GNUC__) && !defined(__STRICT_ANSI__))
# define SWIGINLINE inline
# else
# define SWIGINLINE
# endif
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/* attribute recognised by some compilers to avoid 'unused' warnings */
#ifndef SWIGUNUSED
# if defined(__GNUC__)
# if !(defined(__cplusplus)) || (__GNUC__ > 3 || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4))
# define SWIGUNUSED __attribute__ ((__unused__))
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# define SWIGUNUSED
# endif
# elif defined(__ICC)
# define SWIGUNUSED __attribute__ ((__unused__))
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# define SWIGUNUSED
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# if defined(_MSC_VER)
# pragma warning(disable : 4505) /* unreferenced local function has been removed */
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#ifndef SWIGUNUSEDPARM
# ifdef __cplusplus
# define SWIGUNUSEDPARM(p)
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/* internal SWIG method */
#ifndef SWIGINTERN
# define SWIGINTERN static SWIGUNUSED
#endif
/* internal inline SWIG method */
#ifndef SWIGINTERNINLINE
# define SWIGINTERNINLINE SWIGINTERN SWIGINLINE
#endif
/* exporting methods */
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# ifndef GCC_HASCLASSVISIBILITY
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# endif
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#ifndef SWIGEXPORT
# if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__)
# if defined(STATIC_LINKED)
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# else
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# define SWIGEXPORT __attribute__ ((visibility("default")))
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/* calling conventions for Windows */
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# if defined(_WIN32) || defined(__WIN32__) || defined(__CYGWIN__)
# define SWIGSTDCALL __stdcall
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/* Deal with Microsoft's attempt at deprecating C standard runtime functions */
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/* Intel's compiler complains if a variable which was never initialised is
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* See: https://github.com/swig/swig/issues/192 for more discussion.
*/
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# pragma warning disable 592
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/* -----------------------------------------------------------------------------
* swigrun.swg
*
* This file contains generic C API SWIG runtime support for pointer
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* ----------------------------------------------------------------------------- */
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or for whatever reason, the runtime changes incompatibly */
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/*
You can use the SWIGRUNTIME and SWIGRUNTIMEINLINE macros for
creating a static or dynamic library from the SWIG runtime code.
In 99.9% of the cases, SWIG just needs to declare them as 'static'.
But only do this if strictly necessary, ie, if you have problems
with your compiler or suchlike.
*/
#ifndef SWIGRUNTIME
# define SWIGRUNTIME SWIGINTERN
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#ifndef SWIGRUNTIMEINLINE
# define SWIGRUNTIMEINLINE SWIGRUNTIME SWIGINLINE
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/* Generic buffer size */
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/* Flags for pointer conversions */
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#define SWIG_POINTER_CLEAR 0x8
#define SWIG_POINTER_RELEASE (SWIG_POINTER_CLEAR | SWIG_POINTER_DISOWN)
/* Flags for new pointer objects */
#define SWIG_POINTER_OWN 0x1
/*
Flags/methods for returning states.
The SWIG conversion methods, as ConvertPtr, return an integer
that tells if the conversion was successful or not. And if not,
an error code can be returned (see swigerrors.swg for the codes).
Use the following macros/flags to set or process the returning
states.
In old versions of SWIG, code such as the following was usually written:
if (SWIG_ConvertPtr(obj,vptr,ty.flags) != -1) {
// success code
} else {
//fail code
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Now you can be more explicit:
int res = SWIG_ConvertPtr(obj,vptr,ty.flags);
if (SWIG_IsOK(res)) {
// success code
} else {
// fail code
}
which is the same really, but now you can also do
Type *ptr;
int res = SWIG_ConvertPtr(obj,(void **)(&ptr),ty.flags);
if (SWIG_IsOK(res)) {
// success code
if (SWIG_IsNewObj(res) {
...
delete *ptr;
} else {
...
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} else {
// fail code
}
I.e., now SWIG_ConvertPtr can return new objects and you can
identify the case and take care of the deallocation. Of course that
also requires SWIG_ConvertPtr to return new result values, such as
int SWIG_ConvertPtr(obj, ptr,...) {
if (<obj is ok>) {
if (<need new object>) {
*ptr = <ptr to new allocated object>;
return SWIG_NEWOBJ;
} else {
*ptr = <ptr to old object>;
return SWIG_OLDOBJ;
}
} else {
return SWIG_BADOBJ;
}
}
Of course, returning the plain '0(success)/-1(fail)' still works, but you can be
more explicit by returning SWIG_BADOBJ, SWIG_ERROR or any of the
SWIG errors code.
Finally, if the SWIG_CASTRANK_MODE is enabled, the result code
allows returning the 'cast rank', for example, if you have this
int food(double)
int fooi(int);
and you call
food(1) // cast rank '1' (1 -> 1.0)
fooi(1) // cast rank '0'
just use the SWIG_AddCast()/SWIG_CheckState()
*/
#define SWIG_OK (0)
/* Runtime errors are < 0 */
#define SWIG_ERROR (-1)
/* Errors in range -1 to -99 are in swigerrors.swg (errors for all languages including those not using the runtime) */
/* Errors in range -100 to -199 are language specific errors defined in *errors.swg */
/* Errors < -200 are generic runtime specific errors */
#define SWIG_ERROR_RELEASE_NOT_OWNED (-200)
#define SWIG_IsOK(r) (r >= 0)
#define SWIG_ArgError(r) ((r != SWIG_ERROR) ? r : SWIG_TypeError)
/* The CastRankLimit says how many bits are used for the cast rank */
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/* The NewMask denotes the object was created (using new/malloc) */
#define SWIG_NEWOBJMASK (SWIG_CASTRANKLIMIT << 1)
/* The TmpMask is for in/out typemaps that use temporal objects */
#define SWIG_TMPOBJMASK (SWIG_NEWOBJMASK << 1)
/* Simple returning values */
#define SWIG_BADOBJ (SWIG_ERROR)
#define SWIG_OLDOBJ (SWIG_OK)
#define SWIG_NEWOBJ (SWIG_OK | SWIG_NEWOBJMASK)
#define SWIG_TMPOBJ (SWIG_OK | SWIG_TMPOBJMASK)
/* Check, add and del object mask methods */
#define SWIG_AddNewMask(r) (SWIG_IsOK(r) ? (r | SWIG_NEWOBJMASK) : r)
#define SWIG_DelNewMask(r) (SWIG_IsOK(r) ? (r & ~SWIG_NEWOBJMASK) : r)
#define SWIG_IsNewObj(r) (SWIG_IsOK(r) && (r & SWIG_NEWOBJMASK))
#define SWIG_AddTmpMask(r) (SWIG_IsOK(r) ? (r | SWIG_TMPOBJMASK) : r)
#define SWIG_DelTmpMask(r) (SWIG_IsOK(r) ? (r & ~SWIG_TMPOBJMASK) : r)
#define SWIG_IsTmpObj(r) (SWIG_IsOK(r) && (r & SWIG_TMPOBJMASK))
/* Cast-Rank Mode */
#if defined(SWIG_CASTRANK_MODE)
# ifndef SWIG_TypeRank
# define SWIG_TypeRank unsigned long
# endif
# ifndef SWIG_MAXCASTRANK /* Default cast allowed */
# define SWIG_MAXCASTRANK (2)
# endif
# define SWIG_CASTRANKMASK ((SWIG_CASTRANKLIMIT) -1)
# define SWIG_CastRank(r) (r & SWIG_CASTRANKMASK)
SWIGINTERNINLINE int SWIG_AddCast(int r) {
return SWIG_IsOK(r) ? ((SWIG_CastRank(r) < SWIG_MAXCASTRANK) ? (r + 1) : SWIG_ERROR) : r;
}
SWIGINTERNINLINE int SWIG_CheckState(int r) {
return SWIG_IsOK(r) ? SWIG_CastRank(r) + 1 : 0;
}
#else /* no cast-rank mode */
# define SWIG_AddCast(r) (r)
# define SWIG_CheckState(r) (SWIG_IsOK(r) ? 1 : 0)
#endif
#include <string.h>
#ifdef __cplusplus
extern "C" {
#endif
typedef void *(*swig_converter_func)(void *, int *);
typedef struct swig_type_info *(*swig_dycast_func)(void **);
/* Structure to store information on one type */
typedef struct swig_type_info {
const char *name; /* mangled name of this type */
const char *str; /* human readable name of this type */
swig_dycast_func dcast; /* dynamic cast function down a hierarchy */
struct swig_cast_info *cast; /* linked list of types that can cast into this type */
void *clientdata; /* language specific type data */
int owndata; /* flag if the structure owns the clientdata */
} swig_type_info;
/* Structure to store a type and conversion function used for casting */
typedef struct swig_cast_info {
swig_type_info *type; /* pointer to type that is equivalent to this type */
swig_converter_func converter; /* function to cast the void pointers */
struct swig_cast_info *next; /* pointer to next cast in linked list */
struct swig_cast_info *prev; /* pointer to the previous cast */
} swig_cast_info;
/* Structure used to store module information
* Each module generates one structure like this, and the runtime collects
* all of these structures and stores them in a circularly linked list.*/
typedef struct swig_module_info {
swig_type_info **types; /* Array of pointers to swig_type_info structures that are in this module */
size_t size; /* Number of types in this module */
struct swig_module_info *next; /* Pointer to next element in circularly linked list */
swig_type_info **type_initial; /* Array of initially generated type structures */
swig_cast_info **cast_initial; /* Array of initially generated casting structures */
void *clientdata; /* Language specific module data */
} swig_module_info;
/*
Compare two type names skipping the space characters, therefore
"char*" == "char *" and "Class<int>" == "Class<int >", etc.
Return 0 when the two name types are equivalent, as in
strncmp, but skipping ' '.
*/
SWIGRUNTIME int
SWIG_TypeNameComp(const char *f1, const char *l1,
const char *f2, const char *l2) {
for (;(f1 != l1) && (f2 != l2); ++f1, ++f2) {
while ((*f1 == ' ') && (f1 != l1)) ++f1;
while ((*f2 == ' ') && (f2 != l2)) ++f2;
if (*f1 != *f2) return (*f1 > *f2) ? 1 : -1;
}
return (int)((l1 - f1) - (l2 - f2));
}
/*
Check type equivalence in a name list like <name1>|<name2>|...
Return 0 if equal, -1 if nb < tb, 1 if nb > tb
*/
SWIGRUNTIME int
SWIG_TypeCmp(const char *nb, const char *tb) {
int equiv = 1;
const char* te = tb + strlen(tb);
const char* ne = nb;
while (equiv != 0 && *ne) {
for (nb = ne; *ne; ++ne) {
if (*ne == '|') break;
}
equiv = SWIG_TypeNameComp(nb, ne, tb, te);
if (*ne) ++ne;
}
return equiv;
}
/*
Check type equivalence in a name list like <name1>|<name2>|...
Return 0 if not equal, 1 if equal
*/
SWIGRUNTIME int
SWIG_TypeEquiv(const char *nb, const char *tb) {
return SWIG_TypeCmp(nb, tb) == 0 ? 1 : 0;
}
/*
Check the typename
*/
SWIGRUNTIME swig_cast_info *
SWIG_TypeCheck(const char *c, swig_type_info *ty) {
if (ty) {
swig_cast_info *iter = ty->cast;
while (iter) {
if (strcmp(iter->type->name, c) == 0) {
if (iter == ty->cast)
return iter;
/* Move iter to the top of the linked list */
iter->prev->next = iter->next;
if (iter->next)
iter->next->prev = iter->prev;
iter->next = ty->cast;
iter->prev = 0;
if (ty->cast) ty->cast->prev = iter;
ty->cast = iter;
return iter;
}
iter = iter->next;
}
}
return 0;
}
/*
Identical to SWIG_TypeCheck, except strcmp is replaced with a pointer comparison
*/
SWIGRUNTIME swig_cast_info *
SWIG_TypeCheckStruct(const swig_type_info *from, swig_type_info *ty) {
if (ty) {
swig_cast_info *iter = ty->cast;
while (iter) {
if (iter->type == from) {
if (iter == ty->cast)
return iter;
/* Move iter to the top of the linked list */
iter->prev->next = iter->next;
if (iter->next)
iter->next->prev = iter->prev;
iter->next = ty->cast;
iter->prev = 0;
if (ty->cast) ty->cast->prev = iter;
ty->cast = iter;
return iter;
}
iter = iter->next;
}
}
return 0;
}
/*
Cast a pointer up an inheritance hierarchy
*/
SWIGRUNTIMEINLINE void *
SWIG_TypeCast(swig_cast_info *ty, void *ptr, int *newmemory) {
return ((!ty) || (!ty->converter)) ? ptr : (*ty->converter)(ptr, newmemory);
}
/*
Dynamic pointer casting. Down an inheritance hierarchy
*/
SWIGRUNTIME swig_type_info *
SWIG_TypeDynamicCast(swig_type_info *ty, void **ptr) {
swig_type_info *lastty = ty;
if (!ty || !ty->dcast) return ty;
while (ty && (ty->dcast)) {
ty = (*ty->dcast)(ptr);
if (ty) lastty = ty;
}
return lastty;
}
/*
Return the name associated with this type
*/
SWIGRUNTIMEINLINE const char *
SWIG_TypeName(const swig_type_info *ty) {
return ty->name;
}
/*
Return the pretty name associated with this type,
that is an unmangled type name in a form presentable to the user.
*/
SWIGRUNTIME const char *
SWIG_TypePrettyName(const swig_type_info *type) {
/* The "str" field contains the equivalent pretty names of the
type, separated by vertical-bar characters. Choose the last
name. It should be the most specific; a fully resolved name
but not necessarily with default template parameters expanded. */
if (!type) return NULL;
if (type->str != NULL) {
const char *last_name = type->str;
const char *s;
for (s = type->str; *s; s++)
if (*s == '|') last_name = s+1;
return last_name;
}
else
return type->name;
}
/*
Set the clientdata field for a type
*/
SWIGRUNTIME void
SWIG_TypeClientData(swig_type_info *ti, void *clientdata) {
swig_cast_info *cast = ti->cast;
/* if (ti->clientdata == clientdata) return; */
ti->clientdata = clientdata;
while (cast) {
if (!cast->converter) {
swig_type_info *tc = cast->type;
if (!tc->clientdata) {
SWIG_TypeClientData(tc, clientdata);
}
}
cast = cast->next;
}
}
SWIGRUNTIME void
SWIG_TypeNewClientData(swig_type_info *ti, void *clientdata) {
SWIG_TypeClientData(ti, clientdata);
ti->owndata = 1;
}
/*
Search for a swig_type_info structure only by mangled name
Search is a O(log #types)
We start searching at module start, and finish searching when start == end.
Note: if start == end at the beginning of the function, we go all the way around
the circular list.
*/
SWIGRUNTIME swig_type_info *
SWIG_MangledTypeQueryModule(swig_module_info *start,
swig_module_info *end,
const char *name) {
swig_module_info *iter = start;
do {
if (iter->size) {
size_t l = 0;
size_t r = iter->size - 1;
do {
/* since l+r >= 0, we can (>> 1) instead (/ 2) */
size_t i = (l + r) >> 1;
const char *iname = iter->types[i]->name;
if (iname) {
int compare = strcmp(name, iname);
if (compare == 0) {
return iter->types[i];
} else if (compare < 0) {
if (i) {
r = i - 1;
} else {
break;
}
} else if (compare > 0) {
l = i + 1;
}
} else {
break; /* should never happen */
}
} while (l <= r);
}
iter = iter->next;
} while (iter != end);
return 0;
}
/*
Search for a swig_type_info structure for either a mangled name or a human readable name.
It first searches the mangled names of the types, which is a O(log #types)
If a type is not found it then searches the human readable names, which is O(#types).
We start searching at module start, and finish searching when start == end.
Note: if start == end at the beginning of the function, we go all the way around
the circular list.
*/
SWIGRUNTIME swig_type_info *
SWIG_TypeQueryModule(swig_module_info *start,
swig_module_info *end,
const char *name) {
/* STEP 1: Search the name field using binary search */
swig_type_info *ret = SWIG_MangledTypeQueryModule(start, end, name);
if (ret) {
return ret;
} else {
/* STEP 2: If the type hasn't been found, do a complete search
of the str field (the human readable name) */
swig_module_info *iter = start;
do {
size_t i = 0;
for (; i < iter->size; ++i) {
if (iter->types[i]->str && (SWIG_TypeEquiv(iter->types[i]->str, name)))
return iter->types[i];
}
iter = iter->next;
} while (iter != end);
}
/* neither found a match */
return 0;
}
/*
Pack binary data into a string
*/
SWIGRUNTIME char *
SWIG_PackData(char *c, void *ptr, size_t sz) {
static const char hex[17] = "0123456789abcdef";
const unsigned char *u = (unsigned char *) ptr;
const unsigned char *eu = u + sz;
for (; u != eu; ++u) {
unsigned char uu = *u;
*(c++) = hex[(uu & 0xf0) >> 4];
*(c++) = hex[uu & 0xf];
}
return c;
}
/*
Unpack binary data from a string
*/
SWIGRUNTIME const char *
SWIG_UnpackData(const char *c, void *ptr, size_t sz) {
unsigned char *u = (unsigned char *) ptr;
const unsigned char *eu = u + sz;
for (; u != eu; ++u) {
char d = *(c++);
unsigned char uu;
if ((d >= '0') && (d <= '9'))
uu = (unsigned char)((d - '0') << 4);
else if ((d >= 'a') && (d <= 'f'))
uu = (unsigned char)((d - ('a'-10)) << 4);
else
return (char *) 0;
d = *(c++);
if ((d >= '0') && (d <= '9'))
uu |= (unsigned char)(d - '0');
else if ((d >= 'a') && (d <= 'f'))
uu |= (unsigned char)(d - ('a'-10));
else
return (char *) 0;
*u = uu;
}
return c;
}
/*
Pack 'void *' into a string buffer.
*/
SWIGRUNTIME char *
SWIG_PackVoidPtr(char *buff, void *ptr, const char *name, size_t bsz) {
char *r = buff;
if ((2*sizeof(void *) + 2) > bsz) return 0;
*(r++) = '_';
r = SWIG_PackData(r,&ptr,sizeof(void *));
if (strlen(name) + 1 > (bsz - (r - buff))) return 0;
strcpy(r,name);
return buff;
}
SWIGRUNTIME const char *
SWIG_UnpackVoidPtr(const char *c, void **ptr, const char *name) {
if (*c != '_') {
if (strcmp(c,"NULL") == 0) {
*ptr = (void *) 0;
return name;
} else {
return 0;
}
}
return SWIG_UnpackData(++c,ptr,sizeof(void *));
}
SWIGRUNTIME char *
SWIG_PackDataName(char *buff, void *ptr, size_t sz, const char *name, size_t bsz) {
char *r = buff;
size_t lname = (name ? strlen(name) : 0);
if ((2*sz + 2 + lname) > bsz) return 0;
*(r++) = '_';
r = SWIG_PackData(r,ptr,sz);
if (lname) {
strncpy(r,name,lname+1);
} else {
*r = 0;
}
return buff;
}
SWIGRUNTIME const char *
SWIG_UnpackDataName(const char *c, void *ptr, size_t sz, const char *name) {
if (*c != '_') {
if (strcmp(c,"NULL") == 0) {
memset(ptr,0,sz);
return name;
} else {
return 0;
}
}
return SWIG_UnpackData(++c,ptr,sz);
}
#ifdef __cplusplus
}
#endif
/* SWIG Errors applicable to all language modules, values are reserved from -1 to -99 */
#define SWIG_UnknownError -1
#define SWIG_IOError -2
#define SWIG_RuntimeError -3
#define SWIG_IndexError -4
#define SWIG_TypeError -5
#define SWIG_DivisionByZero -6
#define SWIG_OverflowError -7
#define SWIG_SyntaxError -8
#define SWIG_ValueError -9
#define SWIG_SystemError -10
#define SWIG_AttributeError -11
#define SWIG_MemoryError -12
#define SWIG_NullReferenceError -13
/* -----------------------------------------------------------------------------
* phprun.swg
*
* PHP runtime library
* ----------------------------------------------------------------------------- */
#define swig_owntype int
#ifdef __cplusplus
extern "C" {
#endif
#if PHP_MAJOR_VERSION < 7
# error These bindings need PHP 7 or later - to generate PHP5 bindings use: SWIG < 4.0.0 and swig -php5
#endif
#include "zend_inheritance.h"
#include "zend_exceptions.h"
#include "zend_inheritance.h"
#if PHP_MAJOR_VERSION == 7
/* These macros were new in PHP 8.0. For PHP 7.x we define them to give the
* same result except without any type declarations. PHP 7.x supports type
* declarations, but not for the return type, and alternate types aren't
* supported, so we don't try to support these.
*/
# define ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(name, byref, num_req, classes, types) \
ZEND_BEGIN_ARG_INFO_EX(name, 0, byref, num_req)
# define ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(name, byref, num_req, types) \
ZEND_BEGIN_ARG_INFO_EX(name, 0, byref, num_req)
/* NB We can just ignore `default` here we currently always pass NULL for it
* (this mechanism for specifying default parameter values was new in PHP 8.0
* so it's not useful while we still want to support PHP7 too).
*/
# define ZEND_ARG_OBJ_TYPE_MASK(byref, name, classes, types, default) \
ZEND_ARG_INFO(byref, name)
# define ZEND_ARG_TYPE_MASK(byref, name, types, default) \
ZEND_ARG_INFO(byref, name)
#endif
#include <stdlib.h> /* for abort(), used in generated code. */
#define SWIG_BOOL_CONSTANT(N, V) REGISTER_BOOL_CONSTANT(#N, V, CONST_CS | CONST_PERSISTENT)
#define SWIG_LONG_CONSTANT(N, V) REGISTER_LONG_CONSTANT(#N, V, CONST_CS | CONST_PERSISTENT)
#define SWIG_DOUBLE_CONSTANT(N, V) REGISTER_DOUBLE_CONSTANT(#N, V, CONST_CS | CONST_PERSISTENT)
#define SWIG_STRING_CONSTANT(N, V) REGISTER_STRING_CONSTANT(#N, (char*)V, CONST_CS | CONST_PERSISTENT)
#define SWIG_CHAR_CONSTANT(N, V) do {\
char swig_char = (V);\
REGISTER_STRINGL_CONSTANT(#N, &swig_char, 1, CONST_CS | CONST_PERSISTENT);\
} while (0)
/* ZEND_CONSTANT_SET_FLAGS was new in PHP 7.3. */
#ifdef ZEND_CONSTANT_SET_FLAGS
# define SWIG_ZEND_CONSTANT_SET_FLAGS ZEND_CONSTANT_SET_FLAGS
#else
# define SWIG_ZEND_CONSTANT_SET_FLAGS(C, F, N) do { (C)->flags = (F); (C)->module_number = (N); } while (0)
#endif
/* zend_object_alloc was new in PHP 7.3. */
#if PHP_MAJOR_VERSION == 7 && PHP_MINOR_VERSION < 3
static zend_always_inline void *zend_object_alloc(size_t obj_size, zend_class_entry *ce) {
void *obj = emalloc(obj_size + zend_object_properties_size(ce));
memset(obj, 0, obj_size - sizeof(zval));
return obj;
}
#endif
/* ZEND_THIS was new in PHP 7.4. */
#ifndef ZEND_THIS
# define ZEND_THIS &EX(This)
#endif
#ifdef __cplusplus
}
#endif
#define SWIG_fail goto fail
static const char *default_error_msg = "Unknown error occurred";
static int default_error_code = E_ERROR;
#define SWIG_PHP_Arg_Error_Msg(argnum,extramsg) "Error in argument " #argnum " "#extramsg
#define SWIG_PHP_Error(code,msg) do { zend_throw_exception(NULL, msg, code); SWIG_fail; } while (0)
#define SWIG_contract_assert(expr,msg) \
do { if (!(expr)) zend_printf("Contract Assert Failed %s\n", msg); } while (0)
/* Standard SWIG API */
#define SWIG_GetModule(clientdata) SWIG_Php_GetModule()
#define SWIG_SetModule(clientdata, pointer) SWIG_Php_SetModule(pointer, *(int*)clientdata)
static zend_class_entry SWIG_Php_swig_wrapped_interface_ce;
#if PHP_MAJOR_VERSION == 7
/* zend_class_implements_interface() was new in PHP 8.0.
*
* We could use instanceof_function_ex(C, I, 1) here for 7.4, but for 7.3
* and earlier that doesn't work, so instead we just provide a compatibility
* implementation which does what zend_class_implements_interface() does in 8.x
* and use that for all 7.x so there are fewer variants to worry about testing.
*/
static int zend_class_implements_interface(const zend_class_entry *class_ce, const zend_class_entry *interface_ce) {
uint32_t i;
if (class_ce->num_interfaces) {
for (i = 0; i < class_ce->num_interfaces; i++) {
if (class_ce->interfaces[i] == interface_ce) {
return 1;
}
}
}
return 0;
}
#endif
/* used to wrap returned objects in so we know whether they are newobject
and need freeing, or not */
typedef struct {
void * ptr;
int newobject;
const swig_type_info * type;
zend_object std;
} swig_object_wrapper;
#define SWIG_Z_FETCH_OBJ_P(zv) swig_php_fetch_object(Z_OBJ_P(zv))
static inline
swig_object_wrapper * swig_php_fetch_object(zend_object *obj) {
return (swig_object_wrapper *)((char *)obj - XtOffsetOf(swig_object_wrapper, std));
}
#define SWIG_as_voidptr(a) const_cast< void * >(static_cast< const void * >(a))
static void
SWIG_SetPointerZval(zval *z, void *ptr, swig_type_info *type, int newobject) {
// Return PHP NULL for a C/C++ NULL pointer.
if (!ptr) {
ZVAL_NULL(z);
return;
}
if (!type->clientdata) {
zend_type_error("Type: %s not registered with zend", type->name);
return;
}
{
zend_object *obj;
swig_object_wrapper *value;
if (Z_TYPE_P(z) == IS_OBJECT) {
/* The PHP object is already initialised - this is the case when wrapping
* the return value from a PHP constructor. */
obj = Z_OBJ_P(z);
} else {
zend_class_entry *ce = (zend_class_entry*)(type->clientdata);
obj = ce->create_object(ce);
ZVAL_OBJ(z, obj);
}
value = swig_php_fetch_object(obj);
value->ptr = ptr;
value->newobject = (newobject & 1);
value->type = type;
}
}
/* We wrap C/C++ pointers as PHP objects. */
static int
SWIG_ConvertPtrAndOwn(zval *z, void **ptr, swig_type_info *ty, int flags, swig_owntype *own) {
if (own)
*own = 0;
if (z == NULL) {
*ptr = 0;
return (flags & SWIG_POINTER_NO_NULL) ? SWIG_NullReferenceError : SWIG_OK;
}
switch (Z_TYPE_P(z)) {
case IS_OBJECT: {
zend_object *obj = Z_OBJ_P(z);
swig_object_wrapper *value;
if (ty && ty->clientdata == (void*)obj->ce) {
// Object is exactly the class asked for - this handles common cases cheaply,
// and in particular the PHP classes we use to wrap a pointer to a non-class.
} else if (!zend_class_implements_interface(obj->ce, &SWIG_Php_swig_wrapped_interface_ce)) {
// Not an object we've wrapped.
return -1;
}
/* convert and cast value->ptr from value->type to ptr as ty. */
value = swig_php_fetch_object(obj);
if (!ty) {
/* They don't care about the target type, so just pass on the pointer! */
*ptr = value->ptr;
} else {
swig_cast_info *tc = SWIG_TypeCheck(value->type->name, ty);
if (tc) {
int newmemory = 0;
*ptr = SWIG_TypeCast(tc, value->ptr, &newmemory);
if (newmemory == SWIG_CAST_NEW_MEMORY) {
assert(own); /* badly formed typemap which will lead to a memory leak - it must set and use own to delete *ptr */
if (own)
*own |= SWIG_CAST_NEW_MEMORY;
}
} else {
*ptr = NULL;
}
}
if (((flags & SWIG_POINTER_RELEASE) == SWIG_POINTER_RELEASE) && !value->newobject) {
return SWIG_ERROR_RELEASE_NOT_OWNED;
} else {
if (*ptr == NULL)
return SWIG_ERROR; /* should be SWIG_NullReferenceError?? */
if (flags & SWIG_POINTER_DISOWN) {
value->newobject = 0;
}
if (flags & SWIG_POINTER_CLEAR) {
value->ptr = 0;
}
}
return SWIG_OK;
}
case IS_NULL:
*ptr = 0;
return (flags & SWIG_POINTER_NO_NULL) ? SWIG_NullReferenceError : SWIG_OK;
}
return -1;
}
static int
SWIG_ConvertPtr(zval *z, void **ptr, swig_type_info *ty, int flags) {
return SWIG_ConvertPtrAndOwn(z, ptr, ty, flags, 0);
}
static const char const_name[] = "swig_runtime_data_type_pointer";
static swig_module_info *SWIG_Php_GetModule(void) {
zval *pointer = zend_get_constant_str(const_name, sizeof(const_name) - 1);
if (pointer) {
if (Z_TYPE_P(pointer) == IS_LONG) {
return (swig_module_info *) pointer->value.lval;
}
}
return NULL;
}
static void SWIG_Php_SetModule(swig_module_info *pointer, int module_number) {
REGISTER_LONG_CONSTANT(const_name, (long) pointer, CONST_CS | CONST_PERSISTENT);
}
/* Common parts of the "create_object" object handler. */
static zend_object *SWIG_Php_do_create_object(zend_class_entry *ce, zend_object_handlers *handlers) {
swig_object_wrapper *obj = (swig_object_wrapper*)zend_object_alloc(sizeof(swig_object_wrapper), ce);
zend_object_std_init(&obj->std, ce);
object_properties_init(&obj->std, ce);
obj->std.handlers = handlers;
obj->newobject = 1;
return &obj->std;
}
/* Common parts of the "free_obj" object handler.
Returns void* pointer if the C/C++ object should be destroyed. */
static void* SWIG_Php_free_obj(zend_object *object) {
if (object) {
swig_object_wrapper *obj = swig_php_fetch_object(object);
zend_object_std_dtor(&obj->std);
if (obj->newobject) return obj->ptr;
}
return NULL;
}
/* SWIG Errors applicable to all language modules, values are reserved from -1 to -99 */
#define SWIG_UnknownError -1
#define SWIG_IOError -2
#define SWIG_RuntimeError -3
#define SWIG_IndexError -4
#define SWIG_TypeError -5
#define SWIG_DivisionByZero -6
#define SWIG_OverflowError -7
#define SWIG_SyntaxError -8
#define SWIG_ValueError -9
#define SWIG_SystemError -10
#define SWIG_AttributeError -11
#define SWIG_MemoryError -12
#define SWIG_NullReferenceError -13
/* -------- TYPES TABLE (BEGIN) -------- */
#define SWIGTYPE_int swig_types[0]
#define SWIGTYPE_p_Day swig_types[1]
#define SWIGTYPE_p_GZ swig_types[2]
#define SWIGTYPE_p_Time swig_types[3]
#define SWIGTYPE_p_difference_type swig_types[4]
#define SWIGTYPE_p_int swig_types[5]
#define SWIGTYPE_p_long_long swig_types[6]
#define SWIGTYPE_p_short swig_types[7]
#define SWIGTYPE_p_signed_char swig_types[8]
#define SWIGTYPE_p_size_type swig_types[9]
#define SWIGTYPE_p_std__vectorT_double_t swig_types[10]
#define SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t swig_types[11]
#define SWIGTYPE_p_sxtwl__JieQiInfo swig_types[12]
#define SWIGTYPE_p_unsigned_char swig_types[13]
#define SWIGTYPE_p_unsigned_int swig_types[14]
#define SWIGTYPE_p_unsigned_long_long swig_types[15]
#define SWIGTYPE_p_unsigned_short swig_types[16]
#define SWIGTYPE_p_value_type swig_types[17]
static swig_type_info *swig_types[19];
static swig_module_info swig_module = {swig_types, 18, 0, 0, 0, 0};
#define SWIG_TypeQuery(name) SWIG_TypeQueryModule(&swig_module, &swig_module, name)
#define SWIG_MangledTypeQuery(name) SWIG_MangledTypeQueryModule(&swig_module, &swig_module, name)
/* -------- TYPES TABLE (END) -------- */
/* header section */
#define SWIG_name "sxtwl"
#ifdef __cplusplus
extern "C" {
#endif
#include "php_ini.h"
#include "ext/standard/info.h"
#include "php_sxtwl.h"
#ifdef __cplusplus
}
#endif
#ifdef __cplusplus
#include <utility>
/* SwigValueWrapper is described in swig.swg */
template<typename T> class SwigValueWrapper {
struct SwigSmartPointer {
T *ptr;
SwigSmartPointer(T *p) : ptr(p) { }
~SwigSmartPointer() { delete ptr; }
SwigSmartPointer& operator=(SwigSmartPointer& rhs) { T* oldptr = ptr; ptr = 0; delete oldptr; ptr = rhs.ptr; rhs.ptr = 0; return *this; }
void reset(T *p) { T* oldptr = ptr; ptr = 0; delete oldptr; ptr = p; }
} pointer;
SwigValueWrapper& operator=(const SwigValueWrapper<T>& rhs);
SwigValueWrapper(const SwigValueWrapper<T>& rhs);
public:
SwigValueWrapper() : pointer(0) { }
SwigValueWrapper& operator=(const T& t) { SwigSmartPointer tmp(new T(t)); pointer = tmp; return *this; }
#if __cplusplus >=201103L
SwigValueWrapper& operator=(T&& t) { SwigSmartPointer tmp(new T(std::move(t))); pointer = tmp; return *this; }
operator T&&() const { return std::move(*pointer.ptr); }
#else
operator T&() const { return *pointer.ptr; }
#endif
T *operator&() const { return pointer.ptr; }
static void reset(SwigValueWrapper& t, T *p) { t.pointer.reset(p); }
};
/*
* SwigValueInit() is a generic initialisation solution as the following approach:
*
* T c_result = T();
*
* doesn't compile for all types for example:
*
* unsigned int c_result = unsigned int();
*/
template <typename T> T SwigValueInit() {
return T();
}
#if __cplusplus >=201103L
# define SWIG_STD_MOVE(OBJ) std::move(OBJ)
#else
# define SWIG_STD_MOVE(OBJ) OBJ
#endif
#endif
#define SWIG_PHP_INTERFACE_Iterator_CE zend_ce_iterator
#define SWIG_PHP_INTERFACE_Iterator_HEADER "zend_interfaces.h"
#define SWIG_PHP_INTERFACE_IteratorAggregate_CE zend_ce_aggregate
#define SWIG_PHP_INTERFACE_IteratorAggregate_HEADER "zend_interfaces.h"
#define SWIG_PHP_INTERFACE_ArrayAccess_CE zend_ce_arrayaccess
#define SWIG_PHP_INTERFACE_ArrayAccess_HEADER "zend_interfaces.h"
#define SWIG_PHP_INTERFACE_Serializable_CE zend_ce_serializable
#define SWIG_PHP_INTERFACE_Serializable_HEADER "zend_interfaces.h"
#define SWIG_PHP_INTERFACE_Countable_CE zend_ce_countable
#define SWIG_PHP_INTERFACE_Countable_HEADER "zend_interfaces.h"
#define SWIG_PHP_INTERFACE_OuterIterator_CE spl_ce_OuterIterator
#define SWIG_PHP_INTERFACE_OuterIterator_HEADER "ext/spl/spl_iterators.h"
#define SWIG_PHP_INTERFACE_RecursiveIterator_CE spl_ce_RecursiveIterator
#define SWIG_PHP_INTERFACE_RecursiveIterator_HEADER "ext/spl/spl_iterators.h"
#define SWIG_PHP_INTERFACE_SeekableIterator_CE spl_ce_SeekableIterator
#define SWIG_PHP_INTERFACE_SeekableIterator_HEADER "ext/spl/spl_iterators.h"
#define SWIG_PHP_INTERFACE_SplObserver_CE spl_ce_SplObserver
#define SWIG_PHP_INTERFACE_SplObserver_HEADER "ext/spl/spl_observer.h"
#define SWIG_PHP_INTERFACE_SplSubject_CE spl_ce_SplSubject
#define SWIG_PHP_INTERFACE_SplSubject_HEADER "ext/spl/spl_observer.h"
#define SWIG_PHP_INTERFACE_DateTimeInterface_CE php_date_get_interface_ce()
#define SWIG_PHP_INTERFACE_DateTimeInterface_HEADER "ext/date/php_date.h"
// The "json" extension needs to be loaded earlier that us for this to work.
#define SWIG_PHP_INTERFACE_JsonSerializable_CE php_json_serializable_ce
#define SWIG_PHP_INTERFACE_JsonSerializable_HEADER "ext/json/php_json.h"
// New in PHP 8.0.
#if PHP_MAJOR_VERSION >= 8
# define SWIG_PHP_INTERFACE_Stringable_CE zend_ce_stringable
# define SWIG_PHP_INTERFACE_Stringable_HEADER "zend_interfaces.h"
#endif
#include "const.h"
#include "sxtwl.h"
#include <stdint.h> // Use the C99 official header
#include <typeinfo>
#include <stdexcept>
#include <vector>
#include <stdexcept>
#if PHP_MAJOR_VERSION >= 8
# define SWIG_HANDLE_VALUE_ERROR_FOR_PHP8(code) code == SWIG_ValueError ? zend_ce_value_error :
#else
# define SWIG_HANDLE_VALUE_ERROR_FOR_PHP8(code)
#endif
#define SWIG_exception(code, msg) do { zend_throw_exception( \
code == SWIG_TypeError ? zend_ce_type_error : \
SWIG_HANDLE_VALUE_ERROR_FOR_PHP8(code) \
code == SWIG_DivisionByZero ? zend_ce_division_by_zero_error : \
code == SWIG_SyntaxError ? zend_ce_parse_error : \
code == SWIG_OverflowError ? zend_ce_arithmetic_error : \
NULL, msg, code); SWIG_fail; } while (0)
#include <typeinfo>
#include <stdexcept>
#include <string>
SWIGINTERN bool std_vector_Sl_double_Sg__is_empty(std::vector< double > const *self){
return self->empty();
}
SWIGINTERN double std_vector_Sl_double_Sg__pop(std::vector< double > *self){
if (self->size() == 0)
throw std::out_of_range("pop from empty vector");
double x = self->back();
self->pop_back();
return x;
}
SWIGINTERN std::vector< double >::const_reference std_vector_Sl_double_Sg__get(std::vector< double > *self,int i){
int size = int(self->size());
if (i>=0 && i<size)
return (*self)[i];
else
throw std::out_of_range("vector index out of range");
}
SWIGINTERN void std_vector_Sl_double_Sg__set(std::vector< double > *self,int i,std::vector< double >::value_type const &val){
int size = int(self->size());
if (i>=0 && i<size)
(*self)[i] = val;
else
throw std::out_of_range("vector index out of range");
}
SWIGINTERN bool std_vector_Sl_sxtwl_JieQiInfo_Sg__is_empty(std::vector< sxtwl::JieQiInfo > const *self){
return self->empty();
}
SWIGINTERN sxtwl::JieQiInfo std_vector_Sl_sxtwl_JieQiInfo_Sg__pop(std::vector< sxtwl::JieQiInfo > *self){
if (self->size() == 0)
throw std::out_of_range("pop from empty vector");
sxtwl::JieQiInfo x = self->back();
self->pop_back();
return x;
}
SWIGINTERN std::vector< sxtwl::JieQiInfo >::const_reference std_vector_Sl_sxtwl_JieQiInfo_Sg__get(std::vector< sxtwl::JieQiInfo > *self,int i){
int size = int(self->size());
if (i>=0 && i<size)
return (*self)[i];
else
throw std::out_of_range("vector index out of range");
}
SWIGINTERN void std_vector_Sl_sxtwl_JieQiInfo_Sg__set(std::vector< sxtwl::JieQiInfo > *self,int i,std::vector< sxtwl::JieQiInfo >::value_type const &val){
int size = int(self->size());
if (i>=0 && i<size)
(*self)[i] = val;
else
throw std::out_of_range("vector index out of range");
}
static zend_object_handlers Swig_Php_base_object_handlers;
static zend_class_entry *SWIG_Php_ce_JDList;
static zend_object_handlers JDList_object_handlers;
static zend_object *SWIG_Php_create_object_JDList(zend_class_entry *ce) {return SWIG_Php_do_create_object(ce, &JDList_object_handlers);}
static void SWIG_Php_free_obj_JDList(zend_object *object) {delete (std::vector< double > *)SWIG_Php_free_obj(object);}
static zend_class_entry *SWIG_Php_ce_JQList;
static zend_object_handlers JQList_object_handlers;
static zend_object *SWIG_Php_create_object_JQList(zend_class_entry *ce) {return SWIG_Php_do_create_object(ce, &JQList_object_handlers);}
static void SWIG_Php_free_obj_JQList(zend_object *object) {delete (std::vector< sxtwl::JieQiInfo > *)SWIG_Php_free_obj(object);}
static zend_class_entry *SWIG_Php_ce_sxtwl;
static zend_class_entry *SWIG_Php_ce_Time;
static zend_object_handlers Time_object_handlers;
static zend_object *SWIG_Php_create_object_Time(zend_class_entry *ce) {return SWIG_Php_do_create_object(ce, &Time_object_handlers);}
static void SWIG_Php_free_obj_Time(zend_object *object) {delete (Time *)SWIG_Php_free_obj(object);}
static zend_class_entry *SWIG_Php_ce_GZ;
static zend_object_handlers GZ_object_handlers;
static zend_object *SWIG_Php_create_object_GZ(zend_class_entry *ce) {return SWIG_Php_do_create_object(ce, &GZ_object_handlers);}
static void SWIG_Php_free_obj_GZ(zend_object *object) {delete (GZ *)SWIG_Php_free_obj(object);}
static zend_class_entry *SWIG_Php_ce_Day;
static zend_object_handlers Day_object_handlers;
static zend_object *SWIG_Php_create_object_Day(zend_class_entry *ce) {return SWIG_Php_do_create_object(ce, &Day_object_handlers);}
static void SWIG_Php_free_obj_Day(zend_object *object) {delete (Day *)SWIG_Php_free_obj(object);}
static zend_class_entry *SWIG_Php_ce_JieQiInfo;
static zend_object_handlers JieQiInfo_object_handlers;
static zend_object *SWIG_Php_create_object_JieQiInfo(zend_class_entry *ce) {return SWIG_Php_do_create_object(ce, &JieQiInfo_object_handlers);}
static void SWIG_Php_free_obj_JieQiInfo(zend_object *object) {delete (sxtwl::JieQiInfo *)SWIG_Php_free_obj(object);}
/* class entry for pointer to _p_int */
static zend_class_entry *SWIG_Php_ce__p_int;
/* class entry for pointer to _p_size_type */
static zend_class_entry *SWIG_Php_ce__p_size_type;
/* class entry for pointer to _p_value_type */
static zend_class_entry *SWIG_Php_ce__p_value_type;
/* class entry for pointer to _p_unsigned_char */
static zend_class_entry *SWIG_Php_ce__p_unsigned_char;
/* class entry for pointer to _p_unsigned_short */
static zend_class_entry *SWIG_Php_ce__p_unsigned_short;
/* class entry for pointer to _p_signed_char */
static zend_class_entry *SWIG_Php_ce__p_signed_char;
/* class entry for pointer to _p_long_long */
static zend_class_entry *SWIG_Php_ce__p_long_long;
/* class entry for pointer to _p_unsigned_int */
static zend_class_entry *SWIG_Php_ce__p_unsigned_int;
/* class entry for pointer to _p_unsigned_long_long */
static zend_class_entry *SWIG_Php_ce__p_unsigned_long_long;
/* class entry for pointer to _int */
static zend_class_entry *SWIG_Php_ce__int;
/* class entry for pointer to _p_short */
static zend_class_entry *SWIG_Php_ce__p_short;
/* class entry for pointer to _p_difference_type */
static zend_class_entry *SWIG_Php_ce__p_difference_type;
/* -------- TYPE CONVERSION AND EQUIVALENCE RULES (BEGIN) -------- */
static swig_type_info _swigt__int = {"_int", "int", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_Day = {"_p_Day", "Day *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_GZ = {"_p_GZ", "GZ *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_Time = {"_p_Time", "Time *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_difference_type = {"_p_difference_type", "difference_type *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_int = {"_p_int", "int32_t *|int_fast16_t *|int_fast32_t *|int_least32_t *|intptr_t *|int *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_long_long = {"_p_long_long", "int64_t *|int_fast64_t *|int_least64_t *|intmax_t *|long long *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_short = {"_p_short", "int16_t *|int_least16_t *|short *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_signed_char = {"_p_signed_char", "int8_t *|int_fast8_t *|int_least8_t *|signed char *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_size_type = {"_p_size_type", "size_type *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_std__vectorT_double_t = {"_p_std__vectorT_double_t", "std::vector< double > *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_std__vectorT_sxtwl__JieQiInfo_t = {"_p_std__vectorT_sxtwl__JieQiInfo_t", "std::vector< sxtwl::JieQiInfo > *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_sxtwl__JieQiInfo = {"_p_sxtwl__JieQiInfo", "std::vector< sxtwl::JieQiInfo >::value_type *|sxtwl::JieQiInfo *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_unsigned_char = {"_p_unsigned_char", "uint8_t *|uint_fast8_t *|uint_least8_t *|unsigned char *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_unsigned_int = {"_p_unsigned_int", "uint32_t *|uint_fast16_t *|uint_fast32_t *|uint_least32_t *|uintptr_t *|unsigned int *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_unsigned_long_long = {"_p_unsigned_long_long", "uint64_t *|uint_fast64_t *|uint_least64_t *|uintmax_t *|unsigned long long *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_unsigned_short = {"_p_unsigned_short", "uint16_t *|uint_least16_t *|unsigned short *", 0, 0, (void*)0, 0};
static swig_type_info _swigt__p_value_type = {"_p_value_type", "value_type *", 0, 0, (void*)0, 0};
static swig_type_info *swig_type_initial[] = {
&_swigt__int,
&_swigt__p_Day,
&_swigt__p_GZ,
&_swigt__p_Time,
&_swigt__p_difference_type,
&_swigt__p_int,
&_swigt__p_long_long,
&_swigt__p_short,
&_swigt__p_signed_char,
&_swigt__p_size_type,
&_swigt__p_std__vectorT_double_t,
&_swigt__p_std__vectorT_sxtwl__JieQiInfo_t,
&_swigt__p_sxtwl__JieQiInfo,
&_swigt__p_unsigned_char,
&_swigt__p_unsigned_int,
&_swigt__p_unsigned_long_long,
&_swigt__p_unsigned_short,
&_swigt__p_value_type,
};
static swig_cast_info _swigc__int[] = { {&_swigt__int, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_Day[] = { {&_swigt__p_Day, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_GZ[] = { {&_swigt__p_GZ, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_Time[] = { {&_swigt__p_Time, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_difference_type[] = { {&_swigt__p_difference_type, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_int[] = { {&_swigt__p_int, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_long_long[] = { {&_swigt__p_long_long, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_short[] = { {&_swigt__p_short, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_signed_char[] = { {&_swigt__p_signed_char, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_size_type[] = { {&_swigt__p_size_type, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_std__vectorT_double_t[] = { {&_swigt__p_std__vectorT_double_t, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_std__vectorT_sxtwl__JieQiInfo_t[] = { {&_swigt__p_std__vectorT_sxtwl__JieQiInfo_t, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_sxtwl__JieQiInfo[] = { {&_swigt__p_sxtwl__JieQiInfo, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_unsigned_char[] = { {&_swigt__p_unsigned_char, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_unsigned_int[] = { {&_swigt__p_unsigned_int, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_unsigned_long_long[] = { {&_swigt__p_unsigned_long_long, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_unsigned_short[] = { {&_swigt__p_unsigned_short, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info _swigc__p_value_type[] = { {&_swigt__p_value_type, 0, 0, 0},{0, 0, 0, 0}};
static swig_cast_info *swig_cast_initial[] = {
_swigc__int,
_swigc__p_Day,
_swigc__p_GZ,
_swigc__p_Time,
_swigc__p_difference_type,
_swigc__p_int,
_swigc__p_long_long,
_swigc__p_short,
_swigc__p_signed_char,
_swigc__p_size_type,
_swigc__p_std__vectorT_double_t,
_swigc__p_std__vectorT_sxtwl__JieQiInfo_t,
_swigc__p_sxtwl__JieQiInfo,
_swigc__p_unsigned_char,
_swigc__p_unsigned_int,
_swigc__p_unsigned_long_long,
_swigc__p_unsigned_short,
_swigc__p_value_type,
};
/* -------- TYPE CONVERSION AND EQUIVALENCE RULES (END) -------- */
/* end header section */
/* vdecl subsection */
/* end vdecl subsection */
/* wrapper section */
static ZEND_NAMED_FUNCTION(_wrap_new_JDList__SWIG_0) {
std::vector< double > *result = 0 ;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (std::vector< double > *)new std::vector< double >();
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_std__vectorT_double_t, 1);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_JDList__SWIG_1) {
std::vector< double >::size_type arg1 ;
zval args[1];
std::vector< double > *result = 0 ;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (std::vector< double >::size_type) zval_get_long(&args[0]);
/*@SWIG@*/;
result = (std::vector< double > *)new std::vector< double >(arg1);
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_std__vectorT_double_t, 1);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_JDList__SWIG_2) {
std::vector< double > *arg1 = 0 ;
zval args[1];
std::vector< double > *result = 0 ;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (SWIG_ConvertPtr(&args[0], (void **) &arg1, SWIGTYPE_p_std__vectorT_double_t, 0) < 0 || arg1 == NULL) {
zend_type_error("Expected SWIGTYPE_p_std__vectorT_double_t for argument 1 of new_JDList");
return;
}
result = (std::vector< double > *)new std::vector< double >((std::vector< double > const &)*arg1);
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_std__vectorT_double_t, 1);
fail:
return;
}
static PHP_METHOD(JDList,__construct) {
int argc;
zval argv[1];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 0) {
_wrap_new_JDList__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
if (argc == 1) {
int _v = 0;
{
void *tmp;
_v = (SWIG_ConvertPtr(&argv[0], (void**)&tmp, SWIGTYPE_p_std__vectorT_double_t, SWIG_POINTER_NO_NULL) >= 0);
}
if (_v) {
_wrap_new_JDList__SWIG_2(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
if (argc == 1) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_wrap_new_JDList__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'new_JDList'", 0);
fail:
return;
}
static PHP_METHOD(JDList,size) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
std::vector< double >::size_type result;
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = ((std::vector< double > const *)arg1)->size();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(JDList,capacity) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
std::vector< double >::size_type result;
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = ((std::vector< double > const *)arg1)->capacity();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(JDList,reserve) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
std::vector< double >::size_type arg2 ;
zval args[1];
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (std::vector< double >::size_type) zval_get_long(&args[0]);
/*@SWIG@*/;
(arg1)->reserve(arg2);
fail:
return;
}
static PHP_METHOD(JDList,clear) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
(arg1)->clear();
fail:
return;
}
static PHP_METHOD(JDList,push) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
std::vector< double >::value_type *arg2 = 0 ;
std::vector< double >::value_type temp2 ;
zval args[1];
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
temp2 = (std::vector< double >::value_type) zval_get_double(&args[0]);
/*@SWIG@*/;
arg2 = &temp2;
(arg1)->push_back((std::vector< double >::value_type const &)*arg2);
fail:
return;
}
static PHP_METHOD(JDList,is_empty) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
bool result;
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (bool)std_vector_Sl_double_Sg__is_empty((std::vector< double > const *)arg1);
RETVAL_BOOL((result) ? 1 : 0);
fail:
return;
}
static PHP_METHOD(JDList,pop) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
double result;
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
try {
result = (double)std_vector_Sl_double_Sg__pop(arg1);
} catch(std::out_of_range &_e) {
(void)_e;
zend_throw_exception(NULL, "C++ std::out_of_range exception thrown", 0);
goto fail;
}
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(JDList,get) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
int arg2 ;
zval args[1];
std::vector< double >::value_type *result = 0 ;
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
try {
result = (std::vector< double >::value_type *) &std_vector_Sl_double_Sg__get(arg1,arg2);
} catch(std::out_of_range &_e) {
(void)_e;
zend_throw_exception(NULL, "C++ std::out_of_range exception thrown", 0);
goto fail;
}
RETVAL_DOUBLE(*result);
fail:
return;
}
static PHP_METHOD(JDList,set) {
std::vector< double > *arg1 = (std::vector< double > *) 0 ;
int arg2 ;
std::vector< double >::value_type *arg3 = 0 ;
std::vector< double >::value_type temp3 ;
zval args[2];
arg1 = (std::vector< double > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
temp3 = (std::vector< double >::value_type) zval_get_double(&args[1]);
/*@SWIG@*/;
arg3 = &temp3;
try {
std_vector_Sl_double_Sg__set(arg1,arg2,(double const &)*arg3);
} catch(std::out_of_range &_e) {
(void)_e;
zend_throw_exception(NULL, "C++ std::out_of_range exception thrown", 0);
goto fail;
}
fail:
return;
}
PHP_METHOD(JDList,__set) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[2];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
arg->newobject = zval_get_long(&args[1]);
}
fail:
return;
}
PHP_METHOD(JDList,__get) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
if(arg->newobject) {
RETVAL_LONG(1);
}
else {
RETVAL_LONG(0);
}
}
else {
RETVAL_NULL();
}
fail:
return;
}
PHP_METHOD(JDList,__isset) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if(!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_FALSE;
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
RETVAL_TRUE;
}
else {
RETVAL_FALSE;
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_JQList__SWIG_0) {
std::vector< sxtwl::JieQiInfo > *result = 0 ;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (std::vector< sxtwl::JieQiInfo > *)new std::vector< sxtwl::JieQiInfo >();
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t, 1);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_JQList__SWIG_1) {
std::vector< sxtwl::JieQiInfo >::size_type arg1 ;
zval args[1];
std::vector< sxtwl::JieQiInfo > *result = 0 ;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (std::vector< sxtwl::JieQiInfo >::size_type) zval_get_long(&args[0]);
/*@SWIG@*/;
result = (std::vector< sxtwl::JieQiInfo > *)new std::vector< sxtwl::JieQiInfo >(arg1);
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t, 1);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_JQList__SWIG_2) {
std::vector< sxtwl::JieQiInfo > *arg1 = 0 ;
zval args[1];
std::vector< sxtwl::JieQiInfo > *result = 0 ;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (SWIG_ConvertPtr(&args[0], (void **) &arg1, SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t, 0) < 0 || arg1 == NULL) {
zend_type_error("Expected SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t for argument 1 of new_JQList");
return;
}
result = (std::vector< sxtwl::JieQiInfo > *)new std::vector< sxtwl::JieQiInfo >((std::vector< sxtwl::JieQiInfo > const &)*arg1);
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t, 1);
fail:
return;
}
static PHP_METHOD(JQList,__construct) {
int argc;
zval argv[1];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 0) {
_wrap_new_JQList__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
if (argc == 1) {
int _v = 0;
{
void *tmp;
_v = (SWIG_ConvertPtr(&argv[0], (void**)&tmp, SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t, SWIG_POINTER_NO_NULL) >= 0);
}
if (_v) {
_wrap_new_JQList__SWIG_2(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
if (argc == 1) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_wrap_new_JQList__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'new_JQList'", 0);
fail:
return;
}
static PHP_METHOD(JQList,size) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
std::vector< sxtwl::JieQiInfo >::size_type result;
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = ((std::vector< sxtwl::JieQiInfo > const *)arg1)->size();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(JQList,capacity) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
std::vector< sxtwl::JieQiInfo >::size_type result;
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = ((std::vector< sxtwl::JieQiInfo > const *)arg1)->capacity();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(JQList,reserve) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
std::vector< sxtwl::JieQiInfo >::size_type arg2 ;
zval args[1];
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (std::vector< sxtwl::JieQiInfo >::size_type) zval_get_long(&args[0]);
/*@SWIG@*/;
(arg1)->reserve(arg2);
fail:
return;
}
static PHP_METHOD(JQList,clear) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
(arg1)->clear();
fail:
return;
}
static PHP_METHOD(JQList,push) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
std::vector< sxtwl::JieQiInfo >::value_type *arg2 = 0 ;
zval args[1];
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (SWIG_ConvertPtr(&args[0], (void **) &arg2, SWIGTYPE_p_sxtwl__JieQiInfo, 0) < 0 || arg2 == NULL) {
zend_type_error("Expected SWIGTYPE_p_sxtwl__JieQiInfo for argument 2 of JQList_push");
return;
}
(arg1)->push_back((std::vector< sxtwl::JieQiInfo >::value_type const &)*arg2);
fail:
return;
}
static PHP_METHOD(JQList,is_empty) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
bool result;
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (bool)std_vector_Sl_sxtwl_JieQiInfo_Sg__is_empty((std::vector< sxtwl::JieQiInfo > const *)arg1);
RETVAL_BOOL((result) ? 1 : 0);
fail:
return;
}
static PHP_METHOD(JQList,pop) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
sxtwl::JieQiInfo result;
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
try {
result = std_vector_Sl_sxtwl_JieQiInfo_Sg__pop(arg1);
} catch(std::out_of_range &_e) {
(void)_e;
zend_throw_exception(NULL, "C++ std::out_of_range exception thrown", 0);
goto fail;
}
{
sxtwl::JieQiInfo * resultobj = new sxtwl::JieQiInfo(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_sxtwl__JieQiInfo, 1);
}
fail:
return;
}
static PHP_METHOD(JQList,get) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
int arg2 ;
zval args[1];
std::vector< sxtwl::JieQiInfo >::value_type *result = 0 ;
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
try {
result = (std::vector< sxtwl::JieQiInfo >::value_type *) &std_vector_Sl_sxtwl_JieQiInfo_Sg__get(arg1,arg2);
} catch(std::out_of_range &_e) {
(void)_e;
zend_throw_exception(NULL, "C++ std::out_of_range exception thrown", 0);
goto fail;
}
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_sxtwl__JieQiInfo, 0);
fail:
return;
}
static PHP_METHOD(JQList,set) {
std::vector< sxtwl::JieQiInfo > *arg1 = (std::vector< sxtwl::JieQiInfo > *) 0 ;
int arg2 ;
std::vector< sxtwl::JieQiInfo >::value_type *arg3 = 0 ;
zval args[2];
arg1 = (std::vector< sxtwl::JieQiInfo > *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
if (SWIG_ConvertPtr(&args[1], (void **) &arg3, SWIGTYPE_p_sxtwl__JieQiInfo, 0) < 0 || arg3 == NULL) {
zend_type_error("Expected SWIGTYPE_p_sxtwl__JieQiInfo for argument 3 of JQList_set");
return;
}
try {
std_vector_Sl_sxtwl_JieQiInfo_Sg__set(arg1,arg2,(sxtwl::JieQiInfo const &)*arg3);
} catch(std::out_of_range &_e) {
(void)_e;
zend_throw_exception(NULL, "C++ std::out_of_range exception thrown", 0);
goto fail;
}
fail:
return;
}
PHP_METHOD(JQList,__set) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[2];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
arg->newobject = zval_get_long(&args[1]);
}
fail:
return;
}
PHP_METHOD(JQList,__get) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
if(arg->newobject) {
RETVAL_LONG(1);
}
else {
RETVAL_LONG(0);
}
}
else {
RETVAL_NULL();
}
fail:
return;
}
PHP_METHOD(JQList,__isset) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if(!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_FALSE;
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
RETVAL_TRUE;
}
else {
RETVAL_FALSE;
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_Time__SWIG_0) {
Time *result = 0 ;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (Time *)new Time();
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_Time, 1);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_Time__SWIG_1) {
int arg1 ;
int arg2 ;
int arg3 ;
double arg4 ;
double arg5 ;
double arg6 ;
zval args[6];
Time *result = 0 ;
if(ZEND_NUM_ARGS() != 6 || zend_get_parameters_array_ex(6, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg3 = (int) zval_get_long(&args[2]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg4 = (double) zval_get_double(&args[3]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg5 = (double) zval_get_double(&args[4]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg6 = (double) zval_get_double(&args[5]);
/*@SWIG@*/;
result = (Time *)new Time(arg1,arg2,arg3,arg4,arg5,arg6);
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_Time, 1);
fail:
return;
}
static PHP_METHOD(Time,__construct) {
int argc;
zval argv[6];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 0) {
_wrap_new_Time__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
if (argc == 6) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[2]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[3]) == IS_DOUBLE);
if (_v) {
_v = (Z_TYPE(argv[4]) == IS_DOUBLE);
if (_v) {
_v = (Z_TYPE(argv[5]) == IS_DOUBLE);
if (_v) {
_wrap_new_Time__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
}
}
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'new_Time'", 0);
fail:
return;
}
static PHP_METHOD(Time,Y_set) {
Time *arg1 = (Time *) 0 ;
int arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->Y = arg2;
fail:
return;
}
static PHP_METHOD(Time,Y_get) {
Time *arg1 = (Time *) 0 ;
int result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int) ((arg1)->Y);
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Time,M_set) {
Time *arg1 = (Time *) 0 ;
int arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->M = arg2;
fail:
return;
}
static PHP_METHOD(Time,M_get) {
Time *arg1 = (Time *) 0 ;
int result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int) ((arg1)->M);
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Time,D_set) {
Time *arg1 = (Time *) 0 ;
int arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->D = arg2;
fail:
return;
}
static PHP_METHOD(Time,D_get) {
Time *arg1 = (Time *) 0 ;
int result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int) ((arg1)->D);
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Time,h_set) {
Time *arg1 = (Time *) 0 ;
double arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg2 = (double) zval_get_double(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->h = arg2;
fail:
return;
}
static PHP_METHOD(Time,h_get) {
Time *arg1 = (Time *) 0 ;
double result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (double) ((arg1)->h);
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(Time,m_set) {
Time *arg1 = (Time *) 0 ;
double arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg2 = (double) zval_get_double(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->m = arg2;
fail:
return;
}
static PHP_METHOD(Time,m_get) {
Time *arg1 = (Time *) 0 ;
double result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (double) ((arg1)->m);
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(Time,s_set) {
Time *arg1 = (Time *) 0 ;
double arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg2 = (double) zval_get_double(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->s = arg2;
fail:
return;
}
static PHP_METHOD(Time,s_get) {
Time *arg1 = (Time *) 0 ;
double result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (double) ((arg1)->s);
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(Time,getYear) {
Time *arg1 = (Time *) 0 ;
int result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int)(arg1)->getYear();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Time,setYear) {
Time *arg1 = (Time *) 0 ;
int arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
(arg1)->setYear(arg2);
fail:
return;
}
static PHP_METHOD(Time,setMonth) {
Time *arg1 = (Time *) 0 ;
int arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
(arg1)->setMonth(arg2);
fail:
return;
}
static PHP_METHOD(Time,getMonth) {
Time *arg1 = (Time *) 0 ;
int result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int)(arg1)->getMonth();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Time,getDay) {
Time *arg1 = (Time *) 0 ;
int result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int)(arg1)->getDay();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Time,setDay) {
Time *arg1 = (Time *) 0 ;
int arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
(arg1)->setDay(arg2);
fail:
return;
}
static PHP_METHOD(Time,getHour) {
Time *arg1 = (Time *) 0 ;
double result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (double)(arg1)->getHour();
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(Time,setHour) {
Time *arg1 = (Time *) 0 ;
double arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg2 = (double) zval_get_double(&args[0]);
/*@SWIG@*/;
(arg1)->setHour(arg2);
fail:
return;
}
static PHP_METHOD(Time,getMin) {
Time *arg1 = (Time *) 0 ;
double result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (double)(arg1)->getMin();
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(Time,setMour) {
Time *arg1 = (Time *) 0 ;
double arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg2 = (double) zval_get_double(&args[0]);
/*@SWIG@*/;
(arg1)->setMour(arg2);
fail:
return;
}
static PHP_METHOD(Time,getSec) {
Time *arg1 = (Time *) 0 ;
double result;
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (double)(arg1)->getSec();
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(Time,setSec) {
Time *arg1 = (Time *) 0 ;
double arg2 ;
zval args[1];
arg1 = (Time *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg2 = (double) zval_get_double(&args[0]);
/*@SWIG@*/;
(arg1)->setSec(arg2);
fail:
return;
}
PHP_METHOD(Time,__set) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[2];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"Y") == 0) {
ZVAL_STRING(&tempZval, "Y_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"M") == 0) {
ZVAL_STRING(&tempZval, "M_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"D") == 0) {
ZVAL_STRING(&tempZval, "D_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"h") == 0) {
ZVAL_STRING(&tempZval, "h_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"m") == 0) {
ZVAL_STRING(&tempZval, "m_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"s") == 0) {
ZVAL_STRING(&tempZval, "s_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
arg->newobject = zval_get_long(&args[1]);
}
fail:
return;
}
PHP_METHOD(Time,__get) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"Y") == 0) {
ZVAL_STRING(&tempZval, "Y_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"M") == 0) {
ZVAL_STRING(&tempZval, "M_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"D") == 0) {
ZVAL_STRING(&tempZval, "D_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"h") == 0) {
ZVAL_STRING(&tempZval, "h_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"m") == 0) {
ZVAL_STRING(&tempZval, "m_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"s") == 0) {
ZVAL_STRING(&tempZval, "s_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
if(arg->newobject) {
RETVAL_LONG(1);
}
else {
RETVAL_LONG(0);
}
}
else {
RETVAL_NULL();
}
fail:
return;
}
PHP_METHOD(Time,__isset) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if(!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_FALSE;
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"Y") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"M") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"D") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"h") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"m") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"s") == 0) {
RETVAL_TRUE;
}
else {
RETVAL_FALSE;
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_GZ__SWIG_0) {
GZ *result = 0 ;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (GZ *)new GZ();
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_GZ, 1);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_new_GZ__SWIG_1) {
uint8_t arg1 ;
uint8_t arg2 ;
zval args[2];
GZ *result = 0 ;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (uint8_t) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
result = (GZ *)new GZ(arg1,arg2);
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_GZ, 1);
fail:
return;
}
static PHP_METHOD(GZ,__construct) {
int argc;
zval argv[2];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 0) {
_wrap_new_GZ__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
if (argc == 2) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_wrap_new_GZ__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'new_GZ'", 0);
fail:
return;
}
static PHP_METHOD(GZ,tg_set) {
GZ *arg1 = (GZ *) 0 ;
uint8_t arg2 ;
zval args[1];
arg1 = (GZ *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->tg = arg2;
fail:
return;
}
static PHP_METHOD(GZ,tg_get) {
GZ *arg1 = (GZ *) 0 ;
uint8_t result;
arg1 = (GZ *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t) ((arg1)->tg);
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(GZ,dz_set) {
GZ *arg1 = (GZ *) 0 ;
uint8_t arg2 ;
zval args[1];
arg1 = (GZ *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->dz = arg2;
fail:
return;
}
static PHP_METHOD(GZ,dz_get) {
GZ *arg1 = (GZ *) 0 ;
uint8_t result;
arg1 = (GZ *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t) ((arg1)->dz);
RETVAL_LONG(result);
fail:
return;
}
PHP_METHOD(GZ,__set) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[2];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"tg") == 0) {
ZVAL_STRING(&tempZval, "tg_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"dz") == 0) {
ZVAL_STRING(&tempZval, "dz_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
arg->newobject = zval_get_long(&args[1]);
}
fail:
return;
}
PHP_METHOD(GZ,__get) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"tg") == 0) {
ZVAL_STRING(&tempZval, "tg_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"dz") == 0) {
ZVAL_STRING(&tempZval, "dz_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
if(arg->newobject) {
RETVAL_LONG(1);
}
else {
RETVAL_LONG(0);
}
}
else {
RETVAL_NULL();
}
fail:
return;
}
PHP_METHOD(GZ,__isset) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if(!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_FALSE;
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"tg") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"dz") == 0) {
RETVAL_TRUE;
}
else {
RETVAL_FALSE;
}
fail:
return;
}
static PHP_METHOD(Day,fromSolar) {
int arg1 ;
uint8_t arg2 ;
int arg3 ;
zval args[3];
Day *result = 0 ;
if(ZEND_NUM_ARGS() != 3 || zend_get_parameters_array_ex(3, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg3 = (int) zval_get_long(&args[2]);
/*@SWIG@*/;
result = (Day *)Day::fromSolar(arg1,arg2,arg3);
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_Day, 0);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_Day_fromLunar__SWIG_0) {
int arg1 ;
uint8_t arg2 ;
int arg3 ;
bool arg4 ;
zval args[4];
Day *result = 0 ;
if(ZEND_NUM_ARGS() != 4 || zend_get_parameters_array_ex(4, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg3 = (int) zval_get_long(&args[2]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,2,CONVERT_BOOL_IN@*/
arg4 = (bool) zval_is_true(&args[3]);
/*@SWIG@*/;
result = (Day *)Day::fromLunar(arg1,arg2,arg3,arg4);
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_Day, 0);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_Day_fromLunar__SWIG_1) {
int arg1 ;
uint8_t arg2 ;
int arg3 ;
zval args[3];
Day *result = 0 ;
if(ZEND_NUM_ARGS() != 3 || zend_get_parameters_array_ex(3, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg3 = (int) zval_get_long(&args[2]);
/*@SWIG@*/;
result = (Day *)Day::fromLunar(arg1,arg2,arg3);
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_Day, 0);
fail:
return;
}
static PHP_METHOD(Day,fromLunar) {
int argc;
zval argv[4];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 3) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[2]) == IS_LONG);
if (_v) {
_wrap_Day_fromLunar__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
}
if (argc == 4) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[2]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[3]) == IS_TRUE || Z_TYPE(argv[3]) == IS_FALSE);
if (_v) {
_wrap_Day_fromLunar__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'Day_fromLunar'", 0);
fail:
return;
}
static PHP_METHOD(Day,after) {
Day *arg1 = (Day *) 0 ;
int arg2 ;
zval args[1];
Day *result = 0 ;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
result = (Day *)(arg1)->after(arg2);
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_Day, 0);
fail:
return;
}
static PHP_METHOD(Day,before) {
Day *arg1 = (Day *) 0 ;
int arg2 ;
zval args[1];
Day *result = 0 ;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
result = (Day *)(arg1)->before(arg2);
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_Day, 0);
fail:
return;
}
static PHP_METHOD(Day,getLunarDay) {
Day *arg1 = (Day *) 0 ;
int result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int)(arg1)->getLunarDay();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Day,getLunarMonth) {
Day *arg1 = (Day *) 0 ;
uint8_t result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t)(arg1)->getLunarMonth();
RETVAL_LONG(result);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_Day_getLunarYear__SWIG_0) {
Day *arg1 = (Day *) 0 ;
bool arg2 ;
zval args[1];
int result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,2,CONVERT_BOOL_IN@*/
arg2 = (bool) zval_is_true(&args[0]);
/*@SWIG@*/;
result = (int)(arg1)->getLunarYear(arg2);
RETVAL_LONG(result);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_Day_getLunarYear__SWIG_1) {
Day *arg1 = (Day *) 0 ;
int result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int)(arg1)->getLunarYear();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Day,getLunarYear) {
int argc;
zval argv[1];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 0) {
_wrap_Day_getLunarYear__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
if (argc == 1) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_TRUE || Z_TYPE(argv[0]) == IS_FALSE);
if (_v) {
_wrap_Day_getLunarYear__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'Day_getLunarYear'", 0);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_Day_getYearGZ__SWIG_0) {
Day *arg1 = (Day *) 0 ;
bool arg2 ;
zval args[1];
GZ result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,2,CONVERT_BOOL_IN@*/
arg2 = (bool) zval_is_true(&args[0]);
/*@SWIG@*/;
result = (arg1)->getYearGZ(arg2);
{
GZ * resultobj = new GZ(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_GZ, 1);
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_Day_getYearGZ__SWIG_1) {
Day *arg1 = (Day *) 0 ;
GZ result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (arg1)->getYearGZ();
{
GZ * resultobj = new GZ(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_GZ, 1);
}
fail:
return;
}
static PHP_METHOD(Day,getYearGZ) {
int argc;
zval argv[1];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 0) {
_wrap_Day_getYearGZ__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
if (argc == 1) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_TRUE || Z_TYPE(argv[0]) == IS_FALSE);
if (_v) {
_wrap_Day_getYearGZ__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'Day_getYearGZ'", 0);
fail:
return;
}
static PHP_METHOD(Day,getMonthGZ) {
Day *arg1 = (Day *) 0 ;
GZ result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (arg1)->getMonthGZ();
{
GZ * resultobj = new GZ(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_GZ, 1);
}
fail:
return;
}
static PHP_METHOD(Day,getDayGZ) {
Day *arg1 = (Day *) 0 ;
GZ result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (arg1)->getDayGZ();
{
GZ * resultobj = new GZ(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_GZ, 1);
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_Day_getHourGZ__SWIG_0) {
Day *arg1 = (Day *) 0 ;
uint8_t arg2 ;
bool arg3 ;
zval args[2];
GZ result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,2,CONVERT_BOOL_IN@*/
arg3 = (bool) zval_is_true(&args[1]);
/*@SWIG@*/;
result = (arg1)->getHourGZ(arg2,arg3);
{
GZ * resultobj = new GZ(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_GZ, 1);
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_Day_getHourGZ__SWIG_1) {
Day *arg1 = (Day *) 0 ;
uint8_t arg2 ;
zval args[1];
GZ result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[0]);
/*@SWIG@*/;
result = (arg1)->getHourGZ(arg2);
{
GZ * resultobj = new GZ(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_GZ, 1);
}
fail:
return;
}
static PHP_METHOD(Day,getHourGZ) {
int argc;
zval argv[2];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 1) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_wrap_Day_getHourGZ__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
if (argc == 2) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_TRUE || Z_TYPE(argv[1]) == IS_FALSE);
if (_v) {
_wrap_Day_getHourGZ__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'Day_getHourGZ'", 0);
fail:
return;
}
static PHP_METHOD(Day,isLunarLeap) {
Day *arg1 = (Day *) 0 ;
bool result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (bool)(arg1)->isLunarLeap();
RETVAL_BOOL((result) ? 1 : 0);
fail:
return;
}
static PHP_METHOD(Day,getSolarYear) {
Day *arg1 = (Day *) 0 ;
int result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int)(arg1)->getSolarYear();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Day,getSolarMonth) {
Day *arg1 = (Day *) 0 ;
uint8_t result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t)(arg1)->getSolarMonth();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Day,getSolarDay) {
Day *arg1 = (Day *) 0 ;
int result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (int)(arg1)->getSolarDay();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Day,getWeek) {
Day *arg1 = (Day *) 0 ;
uint8_t result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t)(arg1)->getWeek();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Day,getWeekIndex) {
Day *arg1 = (Day *) 0 ;
uint8_t result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t)(arg1)->getWeekIndex();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Day,hasJieQi) {
Day *arg1 = (Day *) 0 ;
bool result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (bool)(arg1)->hasJieQi();
RETVAL_BOOL((result) ? 1 : 0);
fail:
return;
}
static PHP_METHOD(Day,getJieQi) {
Day *arg1 = (Day *) 0 ;
uint8_t result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t)(arg1)->getJieQi();
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(Day,getJieQiJD) {
Day *arg1 = (Day *) 0 ;
double result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (double)(arg1)->getJieQiJD();
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(Day,getConstellation) {
Day *arg1 = (Day *) 0 ;
uint8_t result;
arg1 = (Day *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t)(arg1)->getConstellation();
RETVAL_LONG(result);
fail:
return;
}
PHP_METHOD(Day,__set) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[2];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
arg->newobject = zval_get_long(&args[1]);
}
fail:
return;
}
PHP_METHOD(Day,__get) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
if(arg->newobject) {
RETVAL_LONG(1);
}
else {
RETVAL_LONG(0);
}
}
else {
RETVAL_NULL();
}
fail:
return;
}
PHP_METHOD(Day,__isset) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if(!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_FALSE;
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
RETVAL_TRUE;
}
else {
RETVAL_FALSE;
}
fail:
return;
}
static PHP_METHOD(JieQiInfo,jd_set) {
sxtwl::JieQiInfo *arg1 = (sxtwl::JieQiInfo *) 0 ;
double arg2 ;
zval args[1];
arg1 = (sxtwl::JieQiInfo *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg2 = (double) zval_get_double(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->jd = arg2;
fail:
return;
}
static PHP_METHOD(JieQiInfo,jd_get) {
sxtwl::JieQiInfo *arg1 = (sxtwl::JieQiInfo *) 0 ;
double result;
arg1 = (sxtwl::JieQiInfo *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (double) ((arg1)->jd);
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(JieQiInfo,jqIndex_set) {
sxtwl::JieQiInfo *arg1 = (sxtwl::JieQiInfo *) 0 ;
uint8_t arg2 ;
zval args[1];
arg1 = (sxtwl::JieQiInfo *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[0]);
/*@SWIG@*/;
if (arg1) (arg1)->jqIndex = arg2;
fail:
return;
}
static PHP_METHOD(JieQiInfo,jqIndex_get) {
sxtwl::JieQiInfo *arg1 = (sxtwl::JieQiInfo *) 0 ;
uint8_t result;
arg1 = (sxtwl::JieQiInfo *)SWIG_Z_FETCH_OBJ_P(ZEND_THIS)->ptr;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (uint8_t) ((arg1)->jqIndex);
RETVAL_LONG(result);
fail:
return;
}
static PHP_METHOD(JieQiInfo,__construct) {
sxtwl::JieQiInfo *result = 0 ;
if(ZEND_NUM_ARGS() != 0) {
WRONG_PARAM_COUNT;
}
result = (sxtwl::JieQiInfo *)new sxtwl::JieQiInfo();
SWIG_SetPointerZval(ZEND_THIS, (void *)result, SWIGTYPE_p_sxtwl__JieQiInfo, 1);
fail:
return;
}
PHP_METHOD(JieQiInfo,__set) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[2];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"jd") == 0) {
ZVAL_STRING(&tempZval, "jd_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"jqIndex") == 0) {
ZVAL_STRING(&tempZval, "jqIndex_set");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,1,&args[1]);
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
arg->newobject = zval_get_long(&args[1]);
}
fail:
return;
}
PHP_METHOD(JieQiInfo,__get) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zval tempZval;
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_NULL();
}
else if (strcmp(ZSTR_VAL(arg2),"jd") == 0) {
ZVAL_STRING(&tempZval, "jd_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"jqIndex") == 0) {
ZVAL_STRING(&tempZval, "jqIndex_get");
call_user_function(EG(function_table),ZEND_THIS,&tempZval,return_value,0,NULL);
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
if(arg->newobject) {
RETVAL_LONG(1);
}
else {
RETVAL_LONG(0);
}
}
else {
RETVAL_NULL();
}
fail:
return;
}
PHP_METHOD(JieQiInfo,__isset) {
swig_object_wrapper *arg = SWIG_Z_FETCH_OBJ_P(ZEND_THIS);
zval args[1];
zend_string *arg2 = 0;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if(!arg) {
zend_throw_exception(zend_ce_type_error, "this pointer is NULL", 0);
return;
}
arg2 = Z_STR(args[0]);
if (!arg2) {
RETVAL_FALSE;
}
else if (strcmp(ZSTR_VAL(arg2),"thisown") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"jd") == 0) {
RETVAL_TRUE;
}
else if (strcmp(ZSTR_VAL(arg2),"jqIndex") == 0) {
RETVAL_TRUE;
}
else {
RETVAL_FALSE;
}
fail:
return;
}
static PHP_METHOD(sxtwl,fromSolar) {
PHP_FN(fromSolar)(INTERNAL_FUNCTION_PARAM_PASSTHRU);
}
static PHP_FUNCTION(fromSolar) {
int arg1 ;
uint8_t arg2 ;
int arg3 ;
zval args[3];
Day *result = 0 ;
if(ZEND_NUM_ARGS() != 3 || zend_get_parameters_array_ex(3, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg3 = (int) zval_get_long(&args[2]);
/*@SWIG@*/;
result = (Day *)sxtwl::fromSolar(arg1,arg2,arg3);
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_Day, 0);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_fromLunar__SWIG_0) {
int arg1 ;
uint8_t arg2 ;
int arg3 ;
bool arg4 ;
zval args[4];
Day *result = 0 ;
if(ZEND_NUM_ARGS() != 4 || zend_get_parameters_array_ex(4, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg3 = (int) zval_get_long(&args[2]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,2,CONVERT_BOOL_IN@*/
arg4 = (bool) zval_is_true(&args[3]);
/*@SWIG@*/;
result = (Day *)sxtwl::fromLunar(arg1,arg2,arg3,arg4);
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_Day, 0);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_fromLunar__SWIG_1) {
int arg1 ;
uint8_t arg2 ;
int arg3 ;
zval args[3];
Day *result = 0 ;
if(ZEND_NUM_ARGS() != 3 || zend_get_parameters_array_ex(3, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg3 = (int) zval_get_long(&args[2]);
/*@SWIG@*/;
result = (Day *)sxtwl::fromLunar(arg1,arg2,arg3);
SWIG_SetPointerZval(return_value, (void *)result, SWIGTYPE_p_Day, 0);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_fromLunar) {
int argc;
zval argv[4];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 3) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[2]) == IS_LONG);
if (_v) {
_wrap_fromLunar__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
}
if (argc == 4) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[2]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[3]) == IS_TRUE || Z_TYPE(argv[3]) == IS_FALSE);
if (_v) {
_wrap_fromLunar__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'fromLunar'", 0);
fail:
return;
}
static PHP_METHOD(sxtwl,siZhu2Year) {
PHP_FN(siZhu2Year)(INTERNAL_FUNCTION_PARAM_PASSTHRU);
}
static PHP_FUNCTION(siZhu2Year) {
GZ arg1 ;
GZ arg2 ;
GZ arg3 ;
GZ arg4 ;
int arg5 ;
int arg6 ;
GZ *tmp1 ;
GZ *tmp2 ;
GZ *tmp3 ;
GZ *tmp4 ;
zval args[6];
std::vector< double > result;
if(ZEND_NUM_ARGS() != 6 || zend_get_parameters_array_ex(6, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (SWIG_ConvertPtr(&args[0], (void **) &tmp1, SWIGTYPE_p_GZ, 0) < 0 || tmp1 == NULL) {
zend_type_error("Expected SWIGTYPE_p_GZ for argument 1 of siZhu2Year");
return;
}
arg1 = *tmp1;
if (SWIG_ConvertPtr(&args[1], (void **) &tmp2, SWIGTYPE_p_GZ, 0) < 0 || tmp2 == NULL) {
zend_type_error("Expected SWIGTYPE_p_GZ for argument 2 of siZhu2Year");
return;
}
arg2 = *tmp2;
if (SWIG_ConvertPtr(&args[2], (void **) &tmp3, SWIGTYPE_p_GZ, 0) < 0 || tmp3 == NULL) {
zend_type_error("Expected SWIGTYPE_p_GZ for argument 3 of siZhu2Year");
return;
}
arg3 = *tmp3;
if (SWIG_ConvertPtr(&args[3], (void **) &tmp4, SWIGTYPE_p_GZ, 0) < 0 || tmp4 == NULL) {
zend_type_error("Expected SWIGTYPE_p_GZ for argument 4 of siZhu2Year");
return;
}
arg4 = *tmp4;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg5 = (int) zval_get_long(&args[4]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg6 = (int) zval_get_long(&args[5]);
/*@SWIG@*/;
result = sxtwl::siZhu2Year(SWIG_STD_MOVE(arg1),SWIG_STD_MOVE(arg2),SWIG_STD_MOVE(arg3),SWIG_STD_MOVE(arg4),arg5,arg6);
{
std::vector< double > * resultobj = new std::vector< double >(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_std__vectorT_double_t, 1);
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_getShiGz__SWIG_0) {
uint8_t arg1 ;
uint8_t arg2 ;
bool arg3 ;
zval args[3];
GZ result;
if(ZEND_NUM_ARGS() != 3 || zend_get_parameters_array_ex(3, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (uint8_t) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,2,CONVERT_BOOL_IN@*/
arg3 = (bool) zval_is_true(&args[2]);
/*@SWIG@*/;
result = sxtwl::getShiGz(arg1,arg2,arg3);
{
GZ * resultobj = new GZ(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_GZ, 1);
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_getShiGz__SWIG_1) {
uint8_t arg1 ;
uint8_t arg2 ;
zval args[2];
GZ result;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (uint8_t) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
result = sxtwl::getShiGz(arg1,arg2);
{
GZ * resultobj = new GZ(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_GZ, 1);
}
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_getShiGz) {
int argc;
zval argv[3];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 2) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_wrap_getShiGz__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
if (argc == 3) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[2]) == IS_TRUE || Z_TYPE(argv[2]) == IS_FALSE);
if (_v) {
_wrap_getShiGz__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'getShiGz'", 0);
fail:
return;
}
static PHP_METHOD(sxtwl,getRunMonth) {
PHP_FN(getRunMonth)(INTERNAL_FUNCTION_PARAM_PASSTHRU);
}
static PHP_FUNCTION(getRunMonth) {
int arg1 ;
zval args[1];
uint8_t result;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
result = (uint8_t)sxtwl::getRunMonth(arg1);
RETVAL_LONG(result);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_getLunarMonthNum__SWIG_0) {
int arg1 ;
uint8_t arg2 ;
bool arg3 ;
zval args[3];
uint8_t result;
if(ZEND_NUM_ARGS() != 3 || zend_get_parameters_array_ex(3, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,2,CONVERT_BOOL_IN@*/
arg3 = (bool) zval_is_true(&args[2]);
/*@SWIG@*/;
result = (uint8_t)sxtwl::getLunarMonthNum(arg1,arg2,arg3);
RETVAL_LONG(result);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_getLunarMonthNum__SWIG_1) {
int arg1 ;
uint8_t arg2 ;
zval args[2];
uint8_t result;
if(ZEND_NUM_ARGS() != 2 || zend_get_parameters_array_ex(2, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg2 = (uint8_t) zval_get_long(&args[1]);
/*@SWIG@*/;
result = (uint8_t)sxtwl::getLunarMonthNum(arg1,arg2);
RETVAL_LONG(result);
fail:
return;
}
static ZEND_NAMED_FUNCTION(_wrap_getLunarMonthNum) {
int argc;
zval argv[3];
argc = ZEND_NUM_ARGS();
zend_get_parameters_array_ex(argc, argv);
if (argc == 2) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_wrap_getLunarMonthNum__SWIG_1(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
if (argc == 3) {
int _v = 0;
_v = (Z_TYPE(argv[0]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[1]) == IS_LONG);
if (_v) {
_v = (Z_TYPE(argv[2]) == IS_TRUE || Z_TYPE(argv[2]) == IS_FALSE);
if (_v) {
_wrap_getLunarMonthNum__SWIG_0(INTERNAL_FUNCTION_PARAM_PASSTHRU); return;
}
}
}
}
zend_throw_exception(zend_ce_type_error, "No matching function for overloaded 'getLunarMonthNum'", 0);
fail:
return;
}
static PHP_METHOD(sxtwl,JD2DD) {
PHP_FN(JD2DD)(INTERNAL_FUNCTION_PARAM_PASSTHRU);
}
static PHP_FUNCTION(JD2DD) {
double arg1 ;
zval args[1];
Time result;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,48,CONVERT_FLOAT_IN@*/
arg1 = (double) zval_get_double(&args[0]);
/*@SWIG@*/;
result = sxtwl::JD2DD(arg1);
{
Time * resultobj = new Time(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_Time, 1);
}
fail:
return;
}
static PHP_METHOD(sxtwl,toJD) {
PHP_FN(toJD)(INTERNAL_FUNCTION_PARAM_PASSTHRU);
}
static PHP_FUNCTION(toJD) {
Time *arg1 = 0 ;
zval args[1];
double result;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
if (SWIG_ConvertPtr(&args[0], (void **) &arg1, SWIGTYPE_p_Time, 0) < 0 || arg1 == NULL) {
zend_type_error("Expected SWIGTYPE_p_Time for argument 1 of toJD");
return;
}
result = (double)sxtwl::toJD(*arg1);
RETVAL_DOUBLE(result);
fail:
return;
}
static PHP_METHOD(sxtwl,getJieQiByYear) {
PHP_FN(getJieQiByYear)(INTERNAL_FUNCTION_PARAM_PASSTHRU);
}
static PHP_FUNCTION(getJieQiByYear) {
int arg1 ;
zval args[1];
std::vector< sxtwl::JieQiInfo > result;
if(ZEND_NUM_ARGS() != 1 || zend_get_parameters_array_ex(1, args) != SUCCESS) {
WRONG_PARAM_COUNT;
}
/*@SWIG:D:\swigwin-4.1.1\Lib\php\utils.i,6,CONVERT_INT_IN@*/
arg1 = (int) zval_get_long(&args[0]);
/*@SWIG@*/;
result = sxtwl::getJieQiByYear(arg1);
{
std::vector< sxtwl::JieQiInfo > * resultobj = new std::vector< sxtwl::JieQiInfo >(result);
SWIG_SetPointerZval(return_value, (void *)resultobj, SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t, 1);
}
fail:
return;
}
/* class object handlers for pointer wrappers */
static zend_object_handlers swig_ptr_object_handlers;
/* Object Creation Method for pointer wrapping class */
static zend_object *swig_ptr_object_new(zend_class_entry *ce) {
swig_object_wrapper *obj = (swig_object_wrapper*)zend_object_alloc(sizeof(swig_object_wrapper), ce);
zend_object_std_init(&obj->std, ce);
object_properties_init(&obj->std, ce);
obj->std.handlers = &swig_ptr_object_handlers;
obj->newobject = 0;
return &obj->std;
}
/* Implement __toString equivalent, since that worked for the old-style resource wrapped pointers. */
#if PHP_MAJOR_VERSION < 8
static int swig_ptr_cast_object(zval *z, zval *retval, int type) {
#elif PHP_MAJOR_VERSION > 8 || PHP_MINOR_VERSION >= 2
static ZEND_RESULT_CODE swig_ptr_cast_object(zend_object *zobj, zval *retval, int type) {
#else
static int swig_ptr_cast_object(zend_object *zobj, zval *retval, int type) {
#endif
if (type == IS_STRING) {
#if PHP_MAJOR_VERSION < 8
swig_object_wrapper *obj = SWIG_Z_FETCH_OBJ_P(z);
#else
swig_object_wrapper *obj = swig_php_fetch_object(zobj);
#endif
ZVAL_NEW_STR(retval, zend_strpprintf(0, "SWIGPointer(%p,owned=%d)", obj->ptr, obj->newobject));
return SUCCESS;
}
return FAILURE;
}
/* end wrapper section */
/* arginfo subsection */
ZEND_BEGIN_ARG_INFO_EX(swig_magic_arginfo_get, 0, 0, 1)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_STRING,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_magic_arginfo_set, 0, 1, MAY_BE_VOID)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_STRING,NULL)
ZEND_ARG_INFO(0,arg2)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_magic_arginfo_isset, 0, 1, MAY_BE_BOOL)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_STRING,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_JD2DD, 0, 1, Time, 0)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_DOUBLE,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_fromLunar, 0, 3, Day, MAY_BE_NULL)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg2,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg3,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg4,MAY_BE_BOOL,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_fromSolar, 0, 3, Day, MAY_BE_NULL)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg2,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg3,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_getJieQiByYear, 0, 1, JQList, 0)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_getLunarMonthNum, 0, 2, MAY_BE_LONG)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg2,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg3,MAY_BE_BOOL,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_getRunMonth, 0, 1, MAY_BE_LONG)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_getShiGz, 0, 2, GZ, 0)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg2,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg3,MAY_BE_BOOL,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_siZhu2Year, 0, 6, JDList, 0)
ZEND_ARG_OBJ_TYPE_MASK(0,arg1,GZ,0,NULL)
ZEND_ARG_OBJ_TYPE_MASK(0,arg2,GZ,0,NULL)
ZEND_ARG_OBJ_TYPE_MASK(0,arg3,GZ,0,NULL)
ZEND_ARG_OBJ_TYPE_MASK(0,arg4,GZ,0,NULL)
ZEND_ARG_TYPE_MASK(0,arg5,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg6,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_toJD, 0, 1, MAY_BE_DOUBLE)
ZEND_ARG_OBJ_TYPE_MASK(0,arg1,Time,0,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_Day_after, 0, 1, Day, MAY_BE_NULL)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_Day_before swig_arginfo_Day_after
#define swig_arginfo_Day_fromLunar swig_arginfo_fromLunar
#define swig_arginfo_Day_fromSolar swig_arginfo_fromSolar
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_Day_getConstellation, 0, 0, MAY_BE_LONG)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_Day_getDayGZ, 0, 0, GZ, 0)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_Day_getHourGZ, 0, 1, GZ, 0)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg2,MAY_BE_BOOL,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_Day_getJieQi swig_arginfo_Day_getConstellation
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_Day_getJieQiJD, 0, 0, MAY_BE_DOUBLE)
ZEND_END_ARG_INFO()
#define swig_arginfo_Day_getLunarDay swig_arginfo_Day_getConstellation
#define swig_arginfo_Day_getLunarMonth swig_arginfo_Day_getConstellation
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_Day_getLunarYear, 0, 0, MAY_BE_LONG)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_BOOL,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_Day_getMonthGZ swig_arginfo_Day_getDayGZ
#define swig_arginfo_Day_getSolarDay swig_arginfo_Day_getConstellation
#define swig_arginfo_Day_getSolarMonth swig_arginfo_Day_getConstellation
#define swig_arginfo_Day_getSolarYear swig_arginfo_Day_getConstellation
#define swig_arginfo_Day_getWeek swig_arginfo_Day_getConstellation
#define swig_arginfo_Day_getWeekIndex swig_arginfo_Day_getConstellation
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_Day_getYearGZ, 0, 0, GZ, 0)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_BOOL,NULL)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_Day_hasJieQi, 0, 0, MAY_BE_BOOL)
ZEND_END_ARG_INFO()
#define swig_arginfo_Day_isLunarLeap swig_arginfo_Day_hasJieQi
ZEND_BEGIN_ARG_INFO_EX(swig_arginfo_new_GZ, 0, 0, 2)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg2,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_GZ_dz_get swig_arginfo_Day_getConstellation
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_GZ_dz_set, 0, 1, MAY_BE_VOID)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_GZ_tg_get swig_arginfo_Day_getConstellation
#define swig_arginfo_GZ_tg_set swig_arginfo_GZ_dz_set
ZEND_BEGIN_ARG_INFO_EX(swig_arginfo_new_JDList, 0, 0, 1)
ZEND_ARG_OBJ_TYPE_MASK(0,arg1,JDList,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_JDList_capacity swig_arginfo_Day_getConstellation
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_JDList_clear, 0, 0, MAY_BE_VOID)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_JDList_get, 0, 1, MAY_BE_DOUBLE)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_JDList_is_empty swig_arginfo_Day_hasJieQi
#define swig_arginfo_JDList_pop swig_arginfo_Day_getJieQiJD
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_JDList_push, 0, 1, MAY_BE_VOID)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_DOUBLE,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_JDList_reserve swig_arginfo_GZ_dz_set
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_JDList_set, 0, 2, MAY_BE_VOID)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg2,MAY_BE_DOUBLE,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_JDList_size swig_arginfo_Day_getConstellation
ZEND_BEGIN_ARG_INFO_EX(swig_arginfo_new_JQList, 0, 0, 1)
ZEND_ARG_OBJ_TYPE_MASK(0,arg1,JQList,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_JQList_capacity swig_arginfo_Day_getConstellation
#define swig_arginfo_JQList_clear swig_arginfo_JDList_clear
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_JQList_get, 0, 1, JieQiInfo, 0)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_JQList_is_empty swig_arginfo_Day_hasJieQi
ZEND_BEGIN_ARG_WITH_RETURN_OBJ_TYPE_MASK_EX(swig_arginfo_JQList_pop, 0, 0, JieQiInfo, 0)
ZEND_END_ARG_INFO()
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_JQList_push, 0, 1, MAY_BE_VOID)
ZEND_ARG_OBJ_TYPE_MASK(0,arg1,JieQiInfo,0,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_JQList_reserve swig_arginfo_GZ_dz_set
ZEND_BEGIN_ARG_WITH_RETURN_TYPE_MASK_EX(swig_arginfo_JQList_set, 0, 2, MAY_BE_VOID)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_OBJ_TYPE_MASK(0,arg2,JieQiInfo,0,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_JQList_size swig_arginfo_Day_getConstellation
ZEND_BEGIN_ARG_INFO_EX(swig_arginfo_new_JieQiInfo, 0, 0, 0)
ZEND_END_ARG_INFO()
#define swig_arginfo_JieQiInfo_jd_get swig_arginfo_Day_getJieQiJD
#define swig_arginfo_JieQiInfo_jd_set swig_arginfo_JDList_push
#define swig_arginfo_JieQiInfo_jqIndex_get swig_arginfo_Day_getConstellation
#define swig_arginfo_JieQiInfo_jqIndex_set swig_arginfo_GZ_dz_set
#define swig_arginfo_Time_D_get swig_arginfo_Day_getConstellation
#define swig_arginfo_Time_D_set swig_arginfo_GZ_dz_set
#define swig_arginfo_Time_M_get swig_arginfo_Day_getConstellation
#define swig_arginfo_Time_M_set swig_arginfo_GZ_dz_set
#define swig_arginfo_Time_Y_get swig_arginfo_Day_getConstellation
#define swig_arginfo_Time_Y_set swig_arginfo_GZ_dz_set
ZEND_BEGIN_ARG_INFO_EX(swig_arginfo_new_Time, 0, 0, 6)
ZEND_ARG_TYPE_MASK(0,arg1,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg2,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg3,MAY_BE_LONG,NULL)
ZEND_ARG_TYPE_MASK(0,arg4,MAY_BE_DOUBLE,NULL)
ZEND_ARG_TYPE_MASK(0,arg5,MAY_BE_DOUBLE,NULL)
ZEND_ARG_TYPE_MASK(0,arg6,MAY_BE_DOUBLE,NULL)
ZEND_END_ARG_INFO()
#define swig_arginfo_Time_getDay swig_arginfo_Day_getConstellation
#define swig_arginfo_Time_getHour swig_arginfo_Day_getJieQiJD
#define swig_arginfo_Time_getMin swig_arginfo_Day_getJieQiJD
#define swig_arginfo_Time_getMonth swig_arginfo_Day_getConstellation
#define swig_arginfo_Time_getSec swig_arginfo_Day_getJieQiJD
#define swig_arginfo_Time_getYear swig_arginfo_Day_getConstellation
#define swig_arginfo_Time_h_get swig_arginfo_Day_getJieQiJD
#define swig_arginfo_Time_h_set swig_arginfo_JDList_push
#define swig_arginfo_Time_m_get swig_arginfo_Day_getJieQiJD
#define swig_arginfo_Time_m_set swig_arginfo_JDList_push
#define swig_arginfo_Time_s_get swig_arginfo_Day_getJieQiJD
#define swig_arginfo_Time_s_set swig_arginfo_JDList_push
#define swig_arginfo_Time_setDay swig_arginfo_GZ_dz_set
#define swig_arginfo_Time_setHour swig_arginfo_JDList_push
#define swig_arginfo_Time_setMonth swig_arginfo_GZ_dz_set
#define swig_arginfo_Time_setMour swig_arginfo_JDList_push
#define swig_arginfo_Time_setSec swig_arginfo_JDList_push
#define swig_arginfo_Time_setYear swig_arginfo_GZ_dz_set
/* class entry subsection */
static const zend_function_entry class_JDList_functions[] = {
PHP_ME(JDList,__construct,swig_arginfo_new_JDList,ZEND_ACC_PUBLIC | ZEND_ACC_CTOR)
PHP_ME(JDList,size,swig_arginfo_JDList_size,ZEND_ACC_PUBLIC)
PHP_ME(JDList,capacity,swig_arginfo_JDList_capacity,ZEND_ACC_PUBLIC)
PHP_ME(JDList,reserve,swig_arginfo_JDList_reserve,ZEND_ACC_PUBLIC)
PHP_ME(JDList,clear,swig_arginfo_JDList_clear,ZEND_ACC_PUBLIC)
PHP_ME(JDList,push,swig_arginfo_JDList_push,ZEND_ACC_PUBLIC)
PHP_ME(JDList,is_empty,swig_arginfo_JDList_is_empty,ZEND_ACC_PUBLIC)
PHP_ME(JDList,pop,swig_arginfo_JDList_pop,ZEND_ACC_PUBLIC)
PHP_ME(JDList,get,swig_arginfo_JDList_get,ZEND_ACC_PUBLIC)
PHP_ME(JDList,set,swig_arginfo_JDList_set,ZEND_ACC_PUBLIC)
PHP_ME(JDList,__set,swig_magic_arginfo_set,ZEND_ACC_PUBLIC)
PHP_ME(JDList,__get,swig_magic_arginfo_get,ZEND_ACC_PUBLIC)
PHP_ME(JDList,__isset,swig_magic_arginfo_isset,ZEND_ACC_PUBLIC)
ZEND_FE_END
};
static const zend_function_entry class_JQList_functions[] = {
PHP_ME(JQList,__construct,swig_arginfo_new_JQList,ZEND_ACC_PUBLIC | ZEND_ACC_CTOR)
PHP_ME(JQList,size,swig_arginfo_JQList_size,ZEND_ACC_PUBLIC)
PHP_ME(JQList,capacity,swig_arginfo_JQList_capacity,ZEND_ACC_PUBLIC)
PHP_ME(JQList,reserve,swig_arginfo_JQList_reserve,ZEND_ACC_PUBLIC)
PHP_ME(JQList,clear,swig_arginfo_JQList_clear,ZEND_ACC_PUBLIC)
PHP_ME(JQList,push,swig_arginfo_JQList_push,ZEND_ACC_PUBLIC)
PHP_ME(JQList,is_empty,swig_arginfo_JQList_is_empty,ZEND_ACC_PUBLIC)
PHP_ME(JQList,pop,swig_arginfo_JQList_pop,ZEND_ACC_PUBLIC)
PHP_ME(JQList,get,swig_arginfo_JQList_get,ZEND_ACC_PUBLIC)
PHP_ME(JQList,set,swig_arginfo_JQList_set,ZEND_ACC_PUBLIC)
PHP_ME(JQList,__set,swig_magic_arginfo_set,ZEND_ACC_PUBLIC)
PHP_ME(JQList,__get,swig_magic_arginfo_get,ZEND_ACC_PUBLIC)
PHP_ME(JQList,__isset,swig_magic_arginfo_isset,ZEND_ACC_PUBLIC)
ZEND_FE_END
};
static const zend_function_entry class_Time_functions[] = {
PHP_ME(Time,__construct,swig_arginfo_new_Time,ZEND_ACC_PUBLIC | ZEND_ACC_CTOR)
PHP_ME(Time,Y_set,swig_arginfo_Time_Y_set,ZEND_ACC_PUBLIC)
PHP_ME(Time,Y_get,swig_arginfo_Time_Y_get,ZEND_ACC_PUBLIC)
PHP_ME(Time,M_set,swig_arginfo_Time_M_set,ZEND_ACC_PUBLIC)
PHP_ME(Time,M_get,swig_arginfo_Time_M_get,ZEND_ACC_PUBLIC)
PHP_ME(Time,D_set,swig_arginfo_Time_D_set,ZEND_ACC_PUBLIC)
PHP_ME(Time,D_get,swig_arginfo_Time_D_get,ZEND_ACC_PUBLIC)
PHP_ME(Time,h_set,swig_arginfo_Time_h_set,ZEND_ACC_PUBLIC)
PHP_ME(Time,h_get,swig_arginfo_Time_h_get,ZEND_ACC_PUBLIC)
PHP_ME(Time,m_set,swig_arginfo_Time_m_set,ZEND_ACC_PUBLIC)
PHP_ME(Time,m_get,swig_arginfo_Time_m_get,ZEND_ACC_PUBLIC)
PHP_ME(Time,s_set,swig_arginfo_Time_s_set,ZEND_ACC_PUBLIC)
PHP_ME(Time,s_get,swig_arginfo_Time_s_get,ZEND_ACC_PUBLIC)
PHP_ME(Time,getYear,swig_arginfo_Time_getYear,ZEND_ACC_PUBLIC)
PHP_ME(Time,setYear,swig_arginfo_Time_setYear,ZEND_ACC_PUBLIC)
PHP_ME(Time,setMonth,swig_arginfo_Time_setMonth,ZEND_ACC_PUBLIC)
PHP_ME(Time,getMonth,swig_arginfo_Time_getMonth,ZEND_ACC_PUBLIC)
PHP_ME(Time,getDay,swig_arginfo_Time_getDay,ZEND_ACC_PUBLIC)
PHP_ME(Time,setDay,swig_arginfo_Time_setDay,ZEND_ACC_PUBLIC)
PHP_ME(Time,getHour,swig_arginfo_Time_getHour,ZEND_ACC_PUBLIC)
PHP_ME(Time,setHour,swig_arginfo_Time_setHour,ZEND_ACC_PUBLIC)
PHP_ME(Time,getMin,swig_arginfo_Time_getMin,ZEND_ACC_PUBLIC)
PHP_ME(Time,setMour,swig_arginfo_Time_setMour,ZEND_ACC_PUBLIC)
PHP_ME(Time,getSec,swig_arginfo_Time_getSec,ZEND_ACC_PUBLIC)
PHP_ME(Time,setSec,swig_arginfo_Time_setSec,ZEND_ACC_PUBLIC)
PHP_ME(Time,__set,swig_magic_arginfo_set,ZEND_ACC_PUBLIC)
PHP_ME(Time,__get,swig_magic_arginfo_get,ZEND_ACC_PUBLIC)
PHP_ME(Time,__isset,swig_magic_arginfo_isset,ZEND_ACC_PUBLIC)
ZEND_FE_END
};
static const zend_function_entry class_GZ_functions[] = {
PHP_ME(GZ,__construct,swig_arginfo_new_GZ,ZEND_ACC_PUBLIC | ZEND_ACC_CTOR)
PHP_ME(GZ,tg_set,swig_arginfo_GZ_tg_set,ZEND_ACC_PUBLIC)
PHP_ME(GZ,tg_get,swig_arginfo_GZ_tg_get,ZEND_ACC_PUBLIC)
PHP_ME(GZ,dz_set,swig_arginfo_GZ_dz_set,ZEND_ACC_PUBLIC)
PHP_ME(GZ,dz_get,swig_arginfo_GZ_dz_get,ZEND_ACC_PUBLIC)
PHP_ME(GZ,__set,swig_magic_arginfo_set,ZEND_ACC_PUBLIC)
PHP_ME(GZ,__get,swig_magic_arginfo_get,ZEND_ACC_PUBLIC)
PHP_ME(GZ,__isset,swig_magic_arginfo_isset,ZEND_ACC_PUBLIC)
ZEND_FE_END
};
static const zend_function_entry class_Day_functions[] = {
PHP_ME(Day,fromSolar,swig_arginfo_Day_fromSolar,ZEND_ACC_PUBLIC | ZEND_ACC_STATIC)
PHP_ME(Day,fromLunar,swig_arginfo_Day_fromLunar,ZEND_ACC_PUBLIC | ZEND_ACC_STATIC)
PHP_ME(Day,after,swig_arginfo_Day_after,ZEND_ACC_PUBLIC)
PHP_ME(Day,before,swig_arginfo_Day_before,ZEND_ACC_PUBLIC)
PHP_ME(Day,getLunarDay,swig_arginfo_Day_getLunarDay,ZEND_ACC_PUBLIC)
PHP_ME(Day,getLunarMonth,swig_arginfo_Day_getLunarMonth,ZEND_ACC_PUBLIC)
PHP_ME(Day,getLunarYear,swig_arginfo_Day_getLunarYear,ZEND_ACC_PUBLIC)
PHP_ME(Day,getYearGZ,swig_arginfo_Day_getYearGZ,ZEND_ACC_PUBLIC)
PHP_ME(Day,getMonthGZ,swig_arginfo_Day_getMonthGZ,ZEND_ACC_PUBLIC)
PHP_ME(Day,getDayGZ,swig_arginfo_Day_getDayGZ,ZEND_ACC_PUBLIC)
PHP_ME(Day,getHourGZ,swig_arginfo_Day_getHourGZ,ZEND_ACC_PUBLIC)
PHP_ME(Day,isLunarLeap,swig_arginfo_Day_isLunarLeap,ZEND_ACC_PUBLIC)
PHP_ME(Day,getSolarYear,swig_arginfo_Day_getSolarYear,ZEND_ACC_PUBLIC)
PHP_ME(Day,getSolarMonth,swig_arginfo_Day_getSolarMonth,ZEND_ACC_PUBLIC)
PHP_ME(Day,getSolarDay,swig_arginfo_Day_getSolarDay,ZEND_ACC_PUBLIC)
PHP_ME(Day,getWeek,swig_arginfo_Day_getWeek,ZEND_ACC_PUBLIC)
PHP_ME(Day,getWeekIndex,swig_arginfo_Day_getWeekIndex,ZEND_ACC_PUBLIC)
PHP_ME(Day,hasJieQi,swig_arginfo_Day_hasJieQi,ZEND_ACC_PUBLIC)
PHP_ME(Day,getJieQi,swig_arginfo_Day_getJieQi,ZEND_ACC_PUBLIC)
PHP_ME(Day,getJieQiJD,swig_arginfo_Day_getJieQiJD,ZEND_ACC_PUBLIC)
PHP_ME(Day,getConstellation,swig_arginfo_Day_getConstellation,ZEND_ACC_PUBLIC)
PHP_ME(Day,__set,swig_magic_arginfo_set,ZEND_ACC_PUBLIC)
PHP_ME(Day,__get,swig_magic_arginfo_get,ZEND_ACC_PUBLIC)
PHP_ME(Day,__isset,swig_magic_arginfo_isset,ZEND_ACC_PUBLIC)
ZEND_FE_END
};
static const zend_function_entry class_JieQiInfo_functions[] = {
PHP_ME(JieQiInfo,jd_set,swig_arginfo_JieQiInfo_jd_set,ZEND_ACC_PUBLIC)
PHP_ME(JieQiInfo,jd_get,swig_arginfo_JieQiInfo_jd_get,ZEND_ACC_PUBLIC)
PHP_ME(JieQiInfo,jqIndex_set,swig_arginfo_JieQiInfo_jqIndex_set,ZEND_ACC_PUBLIC)
PHP_ME(JieQiInfo,jqIndex_get,swig_arginfo_JieQiInfo_jqIndex_get,ZEND_ACC_PUBLIC)
PHP_ME(JieQiInfo,__construct,swig_arginfo_new_JieQiInfo,ZEND_ACC_PUBLIC | ZEND_ACC_CTOR)
PHP_ME(JieQiInfo,__set,swig_magic_arginfo_set,ZEND_ACC_PUBLIC)
PHP_ME(JieQiInfo,__get,swig_magic_arginfo_get,ZEND_ACC_PUBLIC)
PHP_ME(JieQiInfo,__isset,swig_magic_arginfo_isset,ZEND_ACC_PUBLIC)
ZEND_FE_END
};
/* entry subsection */
/* Every non-class user visible function must have an entry here */
static const zend_function_entry module_sxtwl_functions[] = {
PHP_FE(fromSolar,swig_arginfo_fromSolar)
ZEND_NAMED_FE(fromlunar,_wrap_fromLunar,swig_arginfo_fromLunar)
PHP_FE(siZhu2Year,swig_arginfo_siZhu2Year)
ZEND_NAMED_FE(getshigz,_wrap_getShiGz,swig_arginfo_getShiGz)
PHP_FE(getRunMonth,swig_arginfo_getRunMonth)
ZEND_NAMED_FE(getlunarmonthnum,_wrap_getLunarMonthNum,swig_arginfo_getLunarMonthNum)
PHP_FE(JD2DD,swig_arginfo_JD2DD)
PHP_FE(toJD,swig_arginfo_toJD)
PHP_FE(getJieQiByYear,swig_arginfo_getJieQiByYear)
ZEND_FE_END
};
static const zend_function_entry class_sxtwl_functions[] = {
PHP_ME(sxtwl,fromSolar,swig_arginfo_fromSolar,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
ZEND_NAMED_ME(fromlunar,_wrap_fromLunar,swig_arginfo_fromLunar,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
PHP_ME(sxtwl,siZhu2Year,swig_arginfo_siZhu2Year,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
ZEND_NAMED_ME(getshigz,_wrap_getShiGz,swig_arginfo_getShiGz,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
PHP_ME(sxtwl,getRunMonth,swig_arginfo_getRunMonth,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
ZEND_NAMED_ME(getlunarmonthnum,_wrap_getLunarMonthNum,swig_arginfo_getLunarMonthNum,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
PHP_ME(sxtwl,JD2DD,swig_arginfo_JD2DD,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
PHP_ME(sxtwl,toJD,swig_arginfo_toJD,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
PHP_ME(sxtwl,getJieQiByYear,swig_arginfo_getJieQiByYear,ZEND_ACC_PUBLIC|ZEND_ACC_STATIC)
ZEND_FE_END
};
/* init section */
zend_module_entry sxtwl_module_entry = {
STANDARD_MODULE_HEADER,
"sxtwl",
module_sxtwl_functions,
PHP_MINIT(sxtwl),
NULL, /* No MSHUTDOWN code */
NULL, /* No RINIT code */
NULL, /* No RSHUTDOWN code */
NULL, /* No MINFO code */
NO_VERSION_YET,
STANDARD_MODULE_PROPERTIES
};
#ifdef __cplusplus
extern "C" {
#endif
SWIGEXPORT zend_module_entry *get_module(void) { return &sxtwl_module_entry; }
#ifdef __cplusplus
}
#endif
#define SWIG_php_minit PHP_MINIT_FUNCTION(sxtwl)
/* -----------------------------------------------------------------------------
* Type initialization:
* This problem is tough by the requirement that no dynamic
* memory is used. Also, since swig_type_info structures store pointers to
* swig_cast_info structures and swig_cast_info structures store pointers back
* to swig_type_info structures, we need some lookup code at initialization.
* The idea is that swig generates all the structures that are needed.
* The runtime then collects these partially filled structures.
* The SWIG_InitializeModule function takes these initial arrays out of
* swig_module, and does all the lookup, filling in the swig_module.types
* array with the correct data and linking the correct swig_cast_info
* structures together.
*
* The generated swig_type_info structures are assigned statically to an initial
* array. We just loop through that array, and handle each type individually.
* First we lookup if this type has been already loaded, and if so, use the
* loaded structure instead of the generated one. Then we have to fill in the
* cast linked list. The cast data is initially stored in something like a
* two-dimensional array. Each row corresponds to a type (there are the same
* number of rows as there are in the swig_type_initial array). Each entry in
* a column is one of the swig_cast_info structures for that type.
* The cast_initial array is actually an array of arrays, because each row has
* a variable number of columns. So to actually build the cast linked list,
* we find the array of casts associated with the type, and loop through it
* adding the casts to the list. The one last trick we need to do is making
* sure the type pointer in the swig_cast_info struct is correct.
*
* First off, we lookup the cast->type name to see if it is already loaded.
* There are three cases to handle:
* 1) If the cast->type has already been loaded AND the type we are adding
* casting info to has not been loaded (it is in this module), THEN we
* replace the cast->type pointer with the type pointer that has already
* been loaded.
* 2) If BOTH types (the one we are adding casting info to, and the
* cast->type) are loaded, THEN the cast info has already been loaded by
* the previous module so we just ignore it.
* 3) Finally, if cast->type has not already been loaded, then we add that
* swig_cast_info to the linked list (because the cast->type) pointer will
* be correct.
* ----------------------------------------------------------------------------- */
#ifdef __cplusplus
extern "C" {
#if 0
} /* c-mode */
#endif
#endif
#if 0
#define SWIGRUNTIME_DEBUG
#endif
#ifndef SWIG_INIT_CLIENT_DATA_TYPE
#define SWIG_INIT_CLIENT_DATA_TYPE void *
#endif
SWIGRUNTIME void
SWIG_InitializeModule(SWIG_INIT_CLIENT_DATA_TYPE clientdata) {
size_t i;
swig_module_info *module_head, *iter;
int init;
/* check to see if the circular list has been setup, if not, set it up */
if (swig_module.next==0) {
/* Initialize the swig_module */
swig_module.type_initial = swig_type_initial;
swig_module.cast_initial = swig_cast_initial;
swig_module.next = &swig_module;
init = 1;
} else {
init = 0;
}
/* Try and load any already created modules */
module_head = SWIG_GetModule(clientdata);
if (!module_head) {
/* This is the first module loaded for this interpreter */
/* so set the swig module into the interpreter */
SWIG_SetModule(clientdata, &swig_module);
} else {
/* the interpreter has loaded a SWIG module, but has it loaded this one? */
iter=module_head;
do {
if (iter==&swig_module) {
/* Our module is already in the list, so there's nothing more to do. */
return;
}
iter=iter->next;
} while (iter!= module_head);
/* otherwise we must add our module into the list */
swig_module.next = module_head->next;
module_head->next = &swig_module;
}
/* When multiple interpreters are used, a module could have already been initialized in
a different interpreter, but not yet have a pointer in this interpreter.
In this case, we do not want to continue adding types... everything should be
set up already */
if (init == 0) return;
/* Now work on filling in swig_module.types */
#ifdef SWIGRUNTIME_DEBUG
printf("SWIG_InitializeModule: size %lu\n", (unsigned long)swig_module.size);
#endif
for (i = 0; i < swig_module.size; ++i) {
swig_type_info *type = 0;
swig_type_info *ret;
swig_cast_info *cast;
#ifdef SWIGRUNTIME_DEBUG
printf("SWIG_InitializeModule: type %lu %s\n", (unsigned long)i, swig_module.type_initial[i]->name);
#endif
/* if there is another module already loaded */
if (swig_module.next != &swig_module) {
type = SWIG_MangledTypeQueryModule(swig_module.next, &swig_module, swig_module.type_initial[i]->name);
}
if (type) {
/* Overwrite clientdata field */
#ifdef SWIGRUNTIME_DEBUG
printf("SWIG_InitializeModule: found type %s\n", type->name);
#endif
if (swig_module.type_initial[i]->clientdata) {
type->clientdata = swig_module.type_initial[i]->clientdata;
#ifdef SWIGRUNTIME_DEBUG
printf("SWIG_InitializeModule: found and overwrite type %s \n", type->name);
#endif
}
} else {
type = swig_module.type_initial[i];
}
/* Insert casting types */
cast = swig_module.cast_initial[i];
while (cast->type) {
/* Don't need to add information already in the list */
ret = 0;
#ifdef SWIGRUNTIME_DEBUG
printf("SWIG_InitializeModule: look cast %s\n", cast->type->name);
#endif
if (swig_module.next != &swig_module) {
ret = SWIG_MangledTypeQueryModule(swig_module.next, &swig_module, cast->type->name);
#ifdef SWIGRUNTIME_DEBUG
if (ret) printf("SWIG_InitializeModule: found cast %s\n", ret->name);
#endif
}
if (ret) {
if (type == swig_module.type_initial[i]) {
#ifdef SWIGRUNTIME_DEBUG
printf("SWIG_InitializeModule: skip old type %s\n", ret->name);
#endif
cast->type = ret;
ret = 0;
} else {
/* Check for casting already in the list */
swig_cast_info *ocast = SWIG_TypeCheck(ret->name, type);
#ifdef SWIGRUNTIME_DEBUG
if (ocast) printf("SWIG_InitializeModule: skip old cast %s\n", ret->name);
#endif
if (!ocast) ret = 0;
}
}
if (!ret) {
#ifdef SWIGRUNTIME_DEBUG
printf("SWIG_InitializeModule: adding cast %s\n", cast->type->name);
#endif
if (type->cast) {
type->cast->prev = cast;
cast->next = type->cast;
}
type->cast = cast;
}
cast++;
}
/* Set entry in modules->types array equal to the type */
swig_module.types[i] = type;
}
swig_module.types[i] = 0;
#ifdef SWIGRUNTIME_DEBUG
printf("**** SWIG_InitializeModule: Cast List ******\n");
for (i = 0; i < swig_module.size; ++i) {
int j = 0;
swig_cast_info *cast = swig_module.cast_initial[i];
printf("SWIG_InitializeModule: type %lu %s\n", (unsigned long)i, swig_module.type_initial[i]->name);
while (cast->type) {
printf("SWIG_InitializeModule: cast type %s\n", cast->type->name);
cast++;
++j;
}
printf("---- Total casts: %d\n",j);
}
printf("**** SWIG_InitializeModule: Cast List ******\n");
#endif
}
/* This function will propagate the clientdata field of type to
* any new swig_type_info structures that have been added into the list
* of equivalent types. It is like calling
* SWIG_TypeClientData(type, clientdata) a second time.
*/
SWIGRUNTIME void
SWIG_PropagateClientData(void) {
size_t i;
swig_cast_info *equiv;
static int init_run = 0;
if (init_run) return;
init_run = 1;
for (i = 0; i < swig_module.size; i++) {
if (swig_module.types[i]->clientdata) {
equiv = swig_module.types[i]->cast;
while (equiv) {
if (!equiv->converter) {
if (equiv->type && !equiv->type->clientdata)
SWIG_TypeClientData(equiv->type, swig_module.types[i]->clientdata);
}
equiv = equiv->next;
}
}
}
}
#ifdef __cplusplus
#if 0
{ /* c-mode */
#endif
}
#endif
SWIG_php_minit {
zend_class_entry SWIGUNUSED internal_ce;
SWIG_InitializeModule((void*)&module_number);
#if PHP_MAJOR_VERSION == 8 && PHP_MINOR_VERSION == 0
/* This hack is needed to avoid segfaults. */
EG(class_table) = CG(class_table);
#endif
/* oinit subsection */
INIT_CLASS_ENTRY(internal_ce, "JDList", class_JDList_functions);
SWIG_Php_ce_JDList = zend_register_internal_class(&internal_ce);
#ifdef ZEND_ACC_NO_DYNAMIC_PROPERTIES
SWIG_Php_ce_JDList->ce_flags |= ZEND_ACC_NO_DYNAMIC_PROPERTIES;
#endif
INIT_CLASS_ENTRY(SWIG_Php_swig_wrapped_interface_ce, "SWIG\\wrapped", NULL);
zend_do_implement_interface(SWIG_Php_ce_JDList, &SWIG_Php_swig_wrapped_interface_ce);
Swig_Php_base_object_handlers = *zend_get_std_object_handlers();
Swig_Php_base_object_handlers.offset = XtOffsetOf(swig_object_wrapper, std);
Swig_Php_base_object_handlers.clone_obj = NULL;
SWIG_Php_ce_JDList->create_object = SWIG_Php_create_object_JDList;
JDList_object_handlers = Swig_Php_base_object_handlers;
JDList_object_handlers.free_obj = SWIG_Php_free_obj_JDList;
#ifdef SWIGTYPE_p_std__vectorT_double_t
SWIG_TypeClientData(SWIGTYPE_p_std__vectorT_double_t,SWIG_Php_ce_JDList);
#endif
INIT_CLASS_ENTRY(internal_ce, "JQList", class_JQList_functions);
SWIG_Php_ce_JQList = zend_register_internal_class(&internal_ce);
#ifdef ZEND_ACC_NO_DYNAMIC_PROPERTIES
SWIG_Php_ce_JQList->ce_flags |= ZEND_ACC_NO_DYNAMIC_PROPERTIES;
#endif
zend_do_implement_interface(SWIG_Php_ce_JQList, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_Php_ce_JQList->create_object = SWIG_Php_create_object_JQList;
JQList_object_handlers = Swig_Php_base_object_handlers;
JQList_object_handlers.free_obj = SWIG_Php_free_obj_JQList;
#ifdef SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t
SWIG_TypeClientData(SWIGTYPE_p_std__vectorT_sxtwl__JieQiInfo_t,SWIG_Php_ce_JQList);
#endif
INIT_CLASS_ENTRY(internal_ce, "sxtwl", class_sxtwl_functions);
SWIG_Php_ce_sxtwl = zend_register_internal_class(&internal_ce);
INIT_CLASS_ENTRY(internal_ce, "Time", class_Time_functions);
SWIG_Php_ce_Time = zend_register_internal_class(&internal_ce);
#ifdef ZEND_ACC_NO_DYNAMIC_PROPERTIES
SWIG_Php_ce_Time->ce_flags |= ZEND_ACC_NO_DYNAMIC_PROPERTIES;
#endif
zend_do_implement_interface(SWIG_Php_ce_Time, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_Php_ce_Time->create_object = SWIG_Php_create_object_Time;
Time_object_handlers = Swig_Php_base_object_handlers;
Time_object_handlers.free_obj = SWIG_Php_free_obj_Time;
#ifdef SWIGTYPE_p_Time
SWIG_TypeClientData(SWIGTYPE_p_Time,SWIG_Php_ce_Time);
#endif
INIT_CLASS_ENTRY(internal_ce, "GZ", class_GZ_functions);
SWIG_Php_ce_GZ = zend_register_internal_class(&internal_ce);
#ifdef ZEND_ACC_NO_DYNAMIC_PROPERTIES
SWIG_Php_ce_GZ->ce_flags |= ZEND_ACC_NO_DYNAMIC_PROPERTIES;
#endif
zend_do_implement_interface(SWIG_Php_ce_GZ, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_Php_ce_GZ->create_object = SWIG_Php_create_object_GZ;
GZ_object_handlers = Swig_Php_base_object_handlers;
GZ_object_handlers.free_obj = SWIG_Php_free_obj_GZ;
#ifdef SWIGTYPE_p_GZ
SWIG_TypeClientData(SWIGTYPE_p_GZ,SWIG_Php_ce_GZ);
#endif
INIT_CLASS_ENTRY(internal_ce, "Day", class_Day_functions);
SWIG_Php_ce_Day = zend_register_internal_class(&internal_ce);
#ifdef ZEND_ACC_NO_DYNAMIC_PROPERTIES
SWIG_Php_ce_Day->ce_flags |= ZEND_ACC_NO_DYNAMIC_PROPERTIES;
#endif
zend_do_implement_interface(SWIG_Php_ce_Day, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_Php_ce_Day->create_object = SWIG_Php_create_object_Day;
Day_object_handlers = Swig_Php_base_object_handlers;
Day_object_handlers.free_obj = SWIG_Php_free_obj_Day;
#ifdef SWIGTYPE_p_Day
SWIG_TypeClientData(SWIGTYPE_p_Day,SWIG_Php_ce_Day);
#endif
INIT_CLASS_ENTRY(internal_ce, "JieQiInfo", class_JieQiInfo_functions);
SWIG_Php_ce_JieQiInfo = zend_register_internal_class(&internal_ce);
#ifdef ZEND_ACC_NO_DYNAMIC_PROPERTIES
SWIG_Php_ce_JieQiInfo->ce_flags |= ZEND_ACC_NO_DYNAMIC_PROPERTIES;
#endif
zend_do_implement_interface(SWIG_Php_ce_JieQiInfo, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_Php_ce_JieQiInfo->create_object = SWIG_Php_create_object_JieQiInfo;
JieQiInfo_object_handlers = Swig_Php_base_object_handlers;
JieQiInfo_object_handlers.free_obj = SWIG_Php_free_obj_JieQiInfo;
#ifdef SWIGTYPE_p_sxtwl__JieQiInfo
SWIG_TypeClientData(SWIGTYPE_p_sxtwl__JieQiInfo,SWIG_Php_ce_JieQiInfo);
#endif
/* Register classes to represent non-class pointer types */
swig_ptr_object_handlers = *zend_get_std_object_handlers();
swig_ptr_object_handlers.offset = XtOffsetOf(swig_object_wrapper, std);
swig_ptr_object_handlers.cast_object = swig_ptr_cast_object;
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_int", NULL);
SWIG_Php_ce__p_int = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_int->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_int, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_int,SWIG_Php_ce__p_int);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_size_type", NULL);
SWIG_Php_ce__p_size_type = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_size_type->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_size_type, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_size_type,SWIG_Php_ce__p_size_type);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_value_type", NULL);
SWIG_Php_ce__p_value_type = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_value_type->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_value_type, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_value_type,SWIG_Php_ce__p_value_type);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_unsigned_char", NULL);
SWIG_Php_ce__p_unsigned_char = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_unsigned_char->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_unsigned_char, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_unsigned_char,SWIG_Php_ce__p_unsigned_char);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_unsigned_short", NULL);
SWIG_Php_ce__p_unsigned_short = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_unsigned_short->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_unsigned_short, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_unsigned_short,SWIG_Php_ce__p_unsigned_short);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_signed_char", NULL);
SWIG_Php_ce__p_signed_char = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_signed_char->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_signed_char, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_signed_char,SWIG_Php_ce__p_signed_char);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_long_long", NULL);
SWIG_Php_ce__p_long_long = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_long_long->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_long_long, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_long_long,SWIG_Php_ce__p_long_long);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_unsigned_int", NULL);
SWIG_Php_ce__p_unsigned_int = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_unsigned_int->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_unsigned_int, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_unsigned_int,SWIG_Php_ce__p_unsigned_int);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_unsigned_long_long", NULL);
SWIG_Php_ce__p_unsigned_long_long = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_unsigned_long_long->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_unsigned_long_long, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_unsigned_long_long,SWIG_Php_ce__p_unsigned_long_long);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_int", NULL);
SWIG_Php_ce__int = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__int->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__int, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_int,SWIG_Php_ce__int);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_short", NULL);
SWIG_Php_ce__p_short = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_short->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_short, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_short,SWIG_Php_ce__p_short);
INIT_CLASS_ENTRY(internal_ce, "SWIG\\_p_difference_type", NULL);
SWIG_Php_ce__p_difference_type = zend_register_internal_class(&internal_ce);
SWIG_Php_ce__p_difference_type->create_object = swig_ptr_object_new;
zend_do_implement_interface(SWIG_Php_ce__p_difference_type, &SWIG_Php_swig_wrapped_interface_ce);
SWIG_TypeClientData(SWIGTYPE_p_difference_type,SWIG_Php_ce__p_difference_type);
/* end oinit subsection */
/* cinit subsection */
SWIG_LONG_CONSTANT(J2000, (int)(2451545));
zend_declare_class_constant_long(SWIG_Php_ce_sxtwl, "J2000", sizeof("J2000") - 1, (int)(2451545));
/* end cinit subsection */
return SUCCESS;
}
/* end init section */