cpython/Modules/clinic/symtablemodule.c.h
Serhiy Storchaka d8e6bdc0d0
gh-135801: Add the module parameter to compile() etc (GH-139652)
Many functions related to compiling or parsing Python code, such as
compile(), ast.parse(), symtable.symtable(),
and importlib.abc.InspectLoader.source_to_code() now allow to pass
the module name used when filtering syntax warnings.
2025-11-13 13:21:32 +02:00

98 lines
3 KiB
C
Generated

/*[clinic input]
preserve
[clinic start generated code]*/
#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
# include "pycore_gc.h" // PyGC_Head
# include "pycore_runtime.h" // _Py_ID()
#endif
#include "pycore_modsupport.h" // _PyArg_UnpackKeywords()
PyDoc_STRVAR(_symtable_symtable__doc__,
"symtable($module, source, filename, startstr, /, *, module=None)\n"
"--\n"
"\n"
"Return symbol and scope dictionaries used internally by compiler.");
#define _SYMTABLE_SYMTABLE_METHODDEF \
{"symtable", _PyCFunction_CAST(_symtable_symtable), METH_FASTCALL|METH_KEYWORDS, _symtable_symtable__doc__},
static PyObject *
_symtable_symtable_impl(PyObject *module, PyObject *source,
PyObject *filename, const char *startstr,
PyObject *modname);
static PyObject *
_symtable_symtable(PyObject *module, PyObject *const *args, Py_ssize_t nargs, PyObject *kwnames)
{
PyObject *return_value = NULL;
#if defined(Py_BUILD_CORE) && !defined(Py_BUILD_CORE_MODULE)
#define NUM_KEYWORDS 1
static struct {
PyGC_Head _this_is_not_used;
PyObject_VAR_HEAD
Py_hash_t ob_hash;
PyObject *ob_item[NUM_KEYWORDS];
} _kwtuple = {
.ob_base = PyVarObject_HEAD_INIT(&PyTuple_Type, NUM_KEYWORDS)
.ob_hash = -1,
.ob_item = { &_Py_ID(module), },
};
#undef NUM_KEYWORDS
#define KWTUPLE (&_kwtuple.ob_base.ob_base)
#else // !Py_BUILD_CORE
# define KWTUPLE NULL
#endif // !Py_BUILD_CORE
static const char * const _keywords[] = {"", "", "", "module", NULL};
static _PyArg_Parser _parser = {
.keywords = _keywords,
.fname = "symtable",
.kwtuple = KWTUPLE,
};
#undef KWTUPLE
PyObject *argsbuf[4];
Py_ssize_t noptargs = nargs + (kwnames ? PyTuple_GET_SIZE(kwnames) : 0) - 3;
PyObject *source;
PyObject *filename = NULL;
const char *startstr;
PyObject *modname = Py_None;
args = _PyArg_UnpackKeywords(args, nargs, NULL, kwnames, &_parser,
/*minpos*/ 3, /*maxpos*/ 3, /*minkw*/ 0, /*varpos*/ 0, argsbuf);
if (!args) {
goto exit;
}
source = args[0];
if (!PyUnicode_FSDecoder(args[1], &filename)) {
goto exit;
}
if (!PyUnicode_Check(args[2])) {
_PyArg_BadArgument("symtable", "argument 3", "str", args[2]);
goto exit;
}
Py_ssize_t startstr_length;
startstr = PyUnicode_AsUTF8AndSize(args[2], &startstr_length);
if (startstr == NULL) {
goto exit;
}
if (strlen(startstr) != (size_t)startstr_length) {
PyErr_SetString(PyExc_ValueError, "embedded null character");
goto exit;
}
if (!noptargs) {
goto skip_optional_kwonly;
}
modname = args[3];
skip_optional_kwonly:
return_value = _symtable_symtable_impl(module, source, filename, startstr, modname);
exit:
/* Cleanup for filename */
Py_XDECREF(filename);
return return_value;
}
/*[clinic end generated code: output=0137be60c487c841 input=a9049054013a1b77]*/