/* String object interface */ #ifndef Py_STRINGOBJECT_H #define Py_STRINGOBJECT_H #ifdef __cplusplus extern "C" { #endif /* Type PyStringObject represents a character string. An extra zero byte is reserved at the end to ensure it is zero-terminated, but a size is present so strings with null bytes in them can be represented. This is an immutable object type. There are functions to create new string objects, to test an object for string-ness, and to get the string value. The latter function returns a null pointer if the object is not of the proper type. There is a variant that takes an explicit size as well as a variant that assumes a zero-terminated string. Note that none of the functions should be applied to nil objects. */ /* Two speedup hacks. Caching the hash saves recalculation of a string's hash value. Interning strings (which requires hash caching) tries to ensure that only one string object with a given value exists, so equality tests are one pointer comparison. Together, these can speed the interpreter up by as much as 20%. Each costs the size of a long or pointer per string object. In addition, interned strings live until the end of times. If you are concerned about memory footprint, simply comment the #define out here (and rebuild everything!). */ #define CACHE_HASH #ifdef CACHE_HASH #define INTERN_STRINGS #endif typedef struct { PyObject_VAR_HEAD #ifdef CACHE_HASH long ob_shash; #endif #ifdef INTERN_STRINGS PyObject *ob_sinterned; #endif char ob_sval[1]; } PyStringObject; extern DL_IMPORT(PyTypeObject) PyString_Type; #define PyString_Check(op) ((op)->ob_type == &PyString_Type) extern DL_IMPORT(PyObject *) PyString_FromStringAndSize(const char *, int); extern DL_IMPORT(PyObject *) PyString_FromString(const char *); extern DL_IMPORT(int) PyString_Size(PyObject *); extern DL_IMPORT(char *) PyString_AsString(PyObject *); extern DL_IMPORT(void) PyString_Concat(PyObject **, PyObject *); extern DL_IMPORT(void) PyString_ConcatAndDel(PyObject **, PyObject *); extern DL_IMPORT(int) _PyString_Resize(PyObject **, int); extern DL_IMPORT(PyObject *) PyString_Format(PyObject *, PyObject *); #ifdef INTERN_STRINGS extern DL_IMPORT(void) PyString_InternInPlace(PyObject **); extern DL_IMPORT(PyObject *) PyString_InternFromString(const char *); #else #define PyString_InternInPlace(p) #define PyString_InternFromString(cp) PyString_FromString(cp) #endif /* Macro, trading safety for speed */ #define PyString_AS_STRING(op) (((PyStringObject *)(op))->ob_sval) #define PyString_GET_SIZE(op) (((PyStringObject *)(op))->ob_size) /* --- Generic Codecs ----------------------------------------------------- */ /* Create a string object by decoding the encoded string s of the given size. */ extern DL_IMPORT(PyObject*) PyString_Decode( const char *s, /* encoded string */ int size, /* size of buffer */ const char *encoding, /* encoding */ const char *errors /* error handling */ ); /* Encodes a char buffer of the given size and returns a Python string object. */ extern DL_IMPORT(PyObject*) PyString_Encode( const char *s, /* string char buffer */ int size, /* number of chars to encode */ const char *encoding, /* encoding */ const char *errors /* error handling */ ); /* Encodes a string object and returns the result as Python string object. */ extern DL_IMPORT(PyObject*) PyString_AsEncodedString( PyObject *str, /* string object */ const char *encoding, /* encoding */ const char *errors /* error handling */ ); #ifdef __cplusplus } #endif #endif /* !Py_STRINGOBJECT_H */