mirror of https://github.com/python/cpython
Renamed files bytesobject.[ch] and stringobject.[ch]
Fixed Windows build
This commit is contained in:
parent
72b710a596
commit
2c9c7a5f33
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@ -65,6 +65,7 @@
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#include "pydebug.h"
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#include "bytearrayobject.h"
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#include "bytesobject.h"
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#include "unicodeobject.h"
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#include "longobject.h"
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@ -75,7 +76,6 @@
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#include "complexobject.h"
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#endif
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#include "rangeobject.h"
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#include "stringobject.h"
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#include "memoryobject.h"
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#include "tupleobject.h"
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#include "listobject.h"
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@ -0,0 +1,53 @@
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/* Bytes object interface */
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#ifndef Py_BYTESOBJECT_H
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#define Py_BYTESOBJECT_H
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <stdarg.h>
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/* Type PyByteArrayObject represents a mutable array of bytes.
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* The Python API is that of a sequence;
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* the bytes are mapped to ints in [0, 256).
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* Bytes are not characters; they may be used to encode characters.
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* The only way to go between bytes and str/unicode is via encoding
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* and decoding.
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* For the convenience of C programmers, the bytes type is considered
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* to contain a char pointer, not an unsigned char pointer.
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*/
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/* Object layout */
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typedef struct {
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PyObject_VAR_HEAD
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/* XXX(nnorwitz): should ob_exports be Py_ssize_t? */
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int ob_exports; /* how many buffer exports */
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Py_ssize_t ob_alloc; /* How many bytes allocated */
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char *ob_bytes;
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} PyByteArrayObject;
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/* Type object */
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PyAPI_DATA(PyTypeObject) PyByteArray_Type;
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PyAPI_DATA(PyTypeObject) PyByteArrayIter_Type;
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/* Type check macros */
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#define PyByteArray_Check(self) PyObject_TypeCheck(self, &PyByteArray_Type)
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#define PyByteArray_CheckExact(self) (Py_TYPE(self) == &PyByteArray_Type)
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/* Direct API functions */
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PyAPI_FUNC(PyObject *) PyByteArray_FromObject(PyObject *);
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PyAPI_FUNC(PyObject *) PyByteArray_Concat(PyObject *, PyObject *);
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PyAPI_FUNC(PyObject *) PyByteArray_FromStringAndSize(const char *, Py_ssize_t);
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PyAPI_FUNC(Py_ssize_t) PyByteArray_Size(PyObject *);
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PyAPI_FUNC(char *) PyByteArray_AsString(PyObject *);
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PyAPI_FUNC(int) PyByteArray_Resize(PyObject *, Py_ssize_t);
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/* Macros, trading safety for speed */
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#define PyByteArray_AS_STRING(self) (assert(PyByteArray_Check(self)),((PyByteArrayObject *)(self))->ob_bytes)
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#define PyByteArray_GET_SIZE(self) (assert(PyByteArray_Check(self)),Py_SIZE(self))
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#ifdef __cplusplus
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}
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#endif
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#endif /* !Py_BYTESOBJECT_H */
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@ -1,53 +1,111 @@
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/* Bytes object interface */
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#ifndef Py_BYTESOBJECT_H
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#define Py_BYTESOBJECT_H
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/* String object interface */
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#ifndef Py_STRINGOBJECT_H
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#define Py_STRINGOBJECT_H
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <stdarg.h>
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/* Type PyByteArrayObject represents a mutable array of bytes.
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* The Python API is that of a sequence;
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* the bytes are mapped to ints in [0, 256).
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* Bytes are not characters; they may be used to encode characters.
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* The only way to go between bytes and str/unicode is via encoding
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* and decoding.
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* For the convenience of C programmers, the bytes type is considered
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* to contain a char pointer, not an unsigned char pointer.
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*/
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/*
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Type PyBytesObject represents a character string. An extra zero byte is
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reserved at the end to ensure it is zero-terminated, but a size is
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present so strings with null bytes in them can be represented. This
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is an immutable object type.
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There are functions to create new string objects, to test
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an object for string-ness, and to get the
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string value. The latter function returns a null pointer
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if the object is not of the proper type.
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There is a variant that takes an explicit size as well as a
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variant that assumes a zero-terminated string. Note that none of the
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functions should be applied to nil objects.
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*/
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/* Caching the hash (ob_shash) saves recalculation of a string's hash value.
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This significantly speeds up dict lookups. */
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/* Object layout */
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typedef struct {
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PyObject_VAR_HEAD
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/* XXX(nnorwitz): should ob_exports be Py_ssize_t? */
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int ob_exports; /* how many buffer exports */
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Py_ssize_t ob_alloc; /* How many bytes allocated */
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char *ob_bytes;
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} PyByteArrayObject;
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long ob_shash;
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char ob_sval[1];
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/* Type object */
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PyAPI_DATA(PyTypeObject) PyByteArray_Type;
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PyAPI_DATA(PyTypeObject) PyByteArrayIter_Type;
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/* Invariants:
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* ob_sval contains space for 'ob_size+1' elements.
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* ob_sval[ob_size] == 0.
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* ob_shash is the hash of the string or -1 if not computed yet.
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*/
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} PyBytesObject;
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/* Type check macros */
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#define PyByteArray_Check(self) PyObject_TypeCheck(self, &PyByteArray_Type)
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#define PyByteArray_CheckExact(self) (Py_TYPE(self) == &PyByteArray_Type)
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PyAPI_DATA(PyTypeObject) PyBytes_Type;
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PyAPI_DATA(PyTypeObject) PyBytesIter_Type;
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/* Direct API functions */
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PyAPI_FUNC(PyObject *) PyByteArray_FromObject(PyObject *);
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PyAPI_FUNC(PyObject *) PyByteArray_Concat(PyObject *, PyObject *);
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PyAPI_FUNC(PyObject *) PyByteArray_FromStringAndSize(const char *, Py_ssize_t);
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PyAPI_FUNC(Py_ssize_t) PyByteArray_Size(PyObject *);
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PyAPI_FUNC(char *) PyByteArray_AsString(PyObject *);
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PyAPI_FUNC(int) PyByteArray_Resize(PyObject *, Py_ssize_t);
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#define PyBytes_Check(op) \
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PyType_FastSubclass(Py_TYPE(op), Py_TPFLAGS_BYTES_SUBCLASS)
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#define PyBytes_CheckExact(op) (Py_TYPE(op) == &PyBytes_Type)
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/* Macros, trading safety for speed */
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#define PyByteArray_AS_STRING(self) (assert(PyByteArray_Check(self)),((PyByteArrayObject *)(self))->ob_bytes)
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#define PyByteArray_GET_SIZE(self) (assert(PyByteArray_Check(self)),Py_SIZE(self))
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PyAPI_FUNC(PyObject *) PyBytes_FromStringAndSize(const char *, Py_ssize_t);
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PyAPI_FUNC(PyObject *) PyBytes_FromString(const char *);
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PyAPI_FUNC(PyObject *) PyBytes_FromFormatV(const char*, va_list)
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Py_GCC_ATTRIBUTE((format(printf, 1, 0)));
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PyAPI_FUNC(PyObject *) PyBytes_FromFormat(const char*, ...)
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Py_GCC_ATTRIBUTE((format(printf, 1, 2)));
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PyAPI_FUNC(Py_ssize_t) PyBytes_Size(PyObject *);
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PyAPI_FUNC(char *) PyBytes_AsString(PyObject *);
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PyAPI_FUNC(PyObject *) PyBytes_Repr(PyObject *, int);
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PyAPI_FUNC(void) PyBytes_Concat(PyObject **, PyObject *);
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PyAPI_FUNC(void) PyBytes_ConcatAndDel(PyObject **, PyObject *);
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PyAPI_FUNC(int) _PyBytes_Resize(PyObject **, Py_ssize_t);
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PyAPI_FUNC(PyObject *) PyBytes_Format(PyObject *, PyObject *);
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PyAPI_FUNC(PyObject *) _PyBytes_FormatLong(PyObject*, int, int,
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int, char**, int*);
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PyAPI_FUNC(PyObject *) PyBytes_DecodeEscape(const char *, Py_ssize_t,
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const char *, Py_ssize_t,
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const char *);
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/* Macro, trading safety for speed */
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#define PyBytes_AS_STRING(op) (assert(PyBytes_Check(op)), \
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(((PyBytesObject *)(op))->ob_sval))
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#define PyBytes_GET_SIZE(op) (assert(PyBytes_Check(op)),Py_SIZE(op))
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/* _PyBytes_Join(sep, x) is like sep.join(x). sep must be PyBytesObject*,
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x must be an iterable object. */
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PyAPI_FUNC(PyObject *) _PyBytes_Join(PyObject *sep, PyObject *x);
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/* Provides access to the internal data buffer and size of a string
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object or the default encoded version of an Unicode object. Passing
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NULL as *len parameter will force the string buffer to be
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0-terminated (passing a string with embedded NULL characters will
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cause an exception). */
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PyAPI_FUNC(int) PyBytes_AsStringAndSize(
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register PyObject *obj, /* string or Unicode object */
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register char **s, /* pointer to buffer variable */
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register Py_ssize_t *len /* pointer to length variable or NULL
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(only possible for 0-terminated
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strings) */
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);
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/* Using the current locale, insert the thousands grouping
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into the string pointed to by buffer. For the argument descriptions,
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see Objects/stringlib/localeutil.h */
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PyAPI_FUNC(int) _PyBytes_InsertThousandsGrouping(char *buffer,
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Py_ssize_t len,
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char *plast,
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Py_ssize_t buf_size,
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Py_ssize_t *count,
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int append_zero_char);
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/* Flags used by string formatting */
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#define F_LJUST (1<<0)
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#define F_SIGN (1<<1)
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#define F_BLANK (1<<2)
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#define F_ALT (1<<3)
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#define F_ZERO (1<<4)
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#ifdef __cplusplus
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}
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#endif
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#endif /* !Py_BYTESOBJECT_H */
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#endif /* !Py_STRINGOBJECT_H */
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@ -1,111 +0,0 @@
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/* String object interface */
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#ifndef Py_STRINGOBJECT_H
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#define Py_STRINGOBJECT_H
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#ifdef __cplusplus
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extern "C" {
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#endif
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#include <stdarg.h>
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/*
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Type PyBytesObject represents a character string. An extra zero byte is
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reserved at the end to ensure it is zero-terminated, but a size is
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present so strings with null bytes in them can be represented. This
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is an immutable object type.
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There are functions to create new string objects, to test
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an object for string-ness, and to get the
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string value. The latter function returns a null pointer
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if the object is not of the proper type.
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There is a variant that takes an explicit size as well as a
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variant that assumes a zero-terminated string. Note that none of the
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functions should be applied to nil objects.
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*/
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/* Caching the hash (ob_shash) saves recalculation of a string's hash value.
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This significantly speeds up dict lookups. */
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typedef struct {
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PyObject_VAR_HEAD
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long ob_shash;
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char ob_sval[1];
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/* Invariants:
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* ob_sval contains space for 'ob_size+1' elements.
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* ob_sval[ob_size] == 0.
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* ob_shash is the hash of the string or -1 if not computed yet.
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*/
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} PyBytesObject;
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PyAPI_DATA(PyTypeObject) PyBytes_Type;
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PyAPI_DATA(PyTypeObject) PyBytesIter_Type;
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#define PyBytes_Check(op) \
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PyType_FastSubclass(Py_TYPE(op), Py_TPFLAGS_BYTES_SUBCLASS)
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#define PyBytes_CheckExact(op) (Py_TYPE(op) == &PyBytes_Type)
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PyAPI_FUNC(PyObject *) PyBytes_FromStringAndSize(const char *, Py_ssize_t);
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PyAPI_FUNC(PyObject *) PyBytes_FromString(const char *);
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PyAPI_FUNC(PyObject *) PyBytes_FromFormatV(const char*, va_list)
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Py_GCC_ATTRIBUTE((format(printf, 1, 0)));
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PyAPI_FUNC(PyObject *) PyBytes_FromFormat(const char*, ...)
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Py_GCC_ATTRIBUTE((format(printf, 1, 2)));
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PyAPI_FUNC(Py_ssize_t) PyBytes_Size(PyObject *);
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PyAPI_FUNC(char *) PyBytes_AsString(PyObject *);
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PyAPI_FUNC(PyObject *) PyBytes_Repr(PyObject *, int);
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PyAPI_FUNC(void) PyBytes_Concat(PyObject **, PyObject *);
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PyAPI_FUNC(void) PyBytes_ConcatAndDel(PyObject **, PyObject *);
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PyAPI_FUNC(int) _PyBytes_Resize(PyObject **, Py_ssize_t);
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PyAPI_FUNC(PyObject *) PyBytes_Format(PyObject *, PyObject *);
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PyAPI_FUNC(PyObject *) _PyBytes_FormatLong(PyObject*, int, int,
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int, char**, int*);
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PyAPI_FUNC(PyObject *) PyBytes_DecodeEscape(const char *, Py_ssize_t,
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const char *, Py_ssize_t,
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const char *);
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/* Macro, trading safety for speed */
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#define PyBytes_AS_STRING(op) (assert(PyBytes_Check(op)), \
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(((PyBytesObject *)(op))->ob_sval))
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#define PyBytes_GET_SIZE(op) (assert(PyBytes_Check(op)),Py_SIZE(op))
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/* _PyBytes_Join(sep, x) is like sep.join(x). sep must be PyBytesObject*,
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x must be an iterable object. */
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PyAPI_FUNC(PyObject *) _PyBytes_Join(PyObject *sep, PyObject *x);
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/* Provides access to the internal data buffer and size of a string
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object or the default encoded version of an Unicode object. Passing
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NULL as *len parameter will force the string buffer to be
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0-terminated (passing a string with embedded NULL characters will
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cause an exception). */
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PyAPI_FUNC(int) PyBytes_AsStringAndSize(
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register PyObject *obj, /* string or Unicode object */
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register char **s, /* pointer to buffer variable */
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register Py_ssize_t *len /* pointer to length variable or NULL
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(only possible for 0-terminated
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strings) */
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);
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/* Using the current locale, insert the thousands grouping
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into the string pointed to by buffer. For the argument descriptions,
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see Objects/stringlib/localeutil.h */
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PyAPI_FUNC(int) _PyBytes_InsertThousandsGrouping(char *buffer,
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Py_ssize_t len,
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char *plast,
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Py_ssize_t buf_size,
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Py_ssize_t *count,
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int append_zero_char);
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/* Flags used by string formatting */
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#define F_LJUST (1<<0)
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#define F_SIGN (1<<1)
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#define F_BLANK (1<<2)
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#define F_ALT (1<<3)
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#define F_ZERO (1<<4)
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#ifdef __cplusplus
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}
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#endif
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#endif /* !Py_STRINGOBJECT_H */
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@ -299,6 +299,7 @@ OBJECT_OBJS= \
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Objects/abstract.o \
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Objects/boolobject.o \
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Objects/bytes_methods.o \
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Objects/bytearrayobject.o \
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Objects/bytesobject.o \
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Objects/cellobject.o \
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Objects/classobject.o \
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Objects/rangeobject.o \
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Objects/setobject.o \
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Objects/sliceobject.o \
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Objects/stringobject.o \
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Objects/structseq.o \
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Objects/tupleobject.o \
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Objects/typeobject.o \
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Include/bitset.h \
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Include/boolobject.h \
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Include/bytes_methods.h \
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Include/bytearrayobject.h \
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Include/bytesobject.h \
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Include/cellobject.h \
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Include/ceval.h \
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Include/rangeobject.h \
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Include/setobject.h \
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Include/sliceobject.h \
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Include/stringobject.h \
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Include/structmember.h \
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Include/structseq.h \
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Include/symtable.h \
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File diff suppressed because it is too large
Load Diff
File diff suppressed because it is too large
Load Diff
File diff suppressed because it is too large
Load Diff
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RelativePath="..\Include\bytes_methods.h"
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>
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</File>
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<File
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RelativePath="..\Include\bytearrayobject.h"
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>
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</File>
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<File
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RelativePath="..\Include\bytesobject.h"
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>
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RelativePath="..\Include\sliceobject.h"
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>
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</File>
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<File
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RelativePath="..\Include\stringobject.h"
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>
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</File>
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<File
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RelativePath="..\Include\structmember.h"
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>
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RelativePath="..\Objects\bytes_methods.c"
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>
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</File>
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<File
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RelativePath="..\Objects\bytearrayobject.c"
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>
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</File>
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<File
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RelativePath="..\Objects\bytesobject.c"
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>
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RelativePath="..\Objects\sliceobject.c"
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>
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</File>
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<File
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RelativePath="..\Objects\stringobject.c"
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>
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</File>
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<File
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RelativePath="..\Objects\structseq.c"
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>
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@ -12,7 +12,7 @@
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#ifndef PGEN
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#include "unicodeobject.h"
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#include "stringobject.h"
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#include "bytesobject.h"
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#include "fileobject.h"
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#include "codecs.h"
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#include "abstract.h"
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