Files
mtgodot-poc/extension/third_party/cpython-2.7.18/Modules/symtablemodule.c
T
shenleiandClaude Opus 5 5fad769ee8 port 2P step 1: vendor CPython 2.7.18 as the mtpython static library
The embedded 40250 script layer needs its own interpreter on five platforms.
2.7 is end-of-life, so nothing can be fetched from the target SDKs and the
source is vendored (official 2.7.18 tarball, trimmed to 25MB; Lib/ stays for
step 3's python27.zip).

cpython-2.7.18/CMakeLists.txt builds one `mtpython` static library from exactly
the 133 objects the reference libpython2.7.a contains, off by default behind
-DMTGODOT_EMBED_PYTHON=ON. The source list and the built-in module table
(config/config.c, 39 entries) are shared; pyconfig.h is a probe result and is
not, so each platform keeps its own under config/<platform>/, regenerated by
tools/py_embed/gen_pyconfig.sh and checked against the shared table.

Three vendor patches, documented in docs/THIRD-PARTY.md: configure/configure.ac
learn arm64 on macOS, and posixmodule.c undefines the process-control calls it
hard-defines past pyconfig.h when building for iOS.

macOS (ctest python.embed: every builtin imports, codecs and pickle work off the
vendored Lib/), Android arm64 and iOS arm64 build. Linux needs a Linux host and
Windows needs a MinGW-vs-MSVC decision; both are noted for step 4.

Co-Authored-By: Claude Opus 5 <noreply@anthropic.com>
2026-09-23 08:27:35 +09:00

87 lines
2.6 KiB
C

#include "Python.h"
#include "code.h"
#include "compile.h"
#include "Python-ast.h"
#include "symtable.h"
static PyObject *
symtable_symtable(PyObject *self, PyObject *args)
{
struct symtable *st;
PyObject *t;
char *str;
char *filename;
char *startstr;
int start;
if (!PyArg_ParseTuple(args, "sss:symtable", &str, &filename,
&startstr))
return NULL;
if (strcmp(startstr, "exec") == 0)
start = Py_file_input;
else if (strcmp(startstr, "eval") == 0)
start = Py_eval_input;
else if (strcmp(startstr, "single") == 0)
start = Py_single_input;
else {
PyErr_SetString(PyExc_ValueError,
"symtable() arg 3 must be 'exec' or 'eval' or 'single'");
return NULL;
}
st = Py_SymtableString(str, filename, start);
if (st == NULL)
return NULL;
t = (PyObject *)st->st_top;
Py_INCREF(t);
PyMem_Free((void *)st->st_future);
PySymtable_Free(st);
return t;
}
static PyMethodDef symtable_methods[] = {
{"symtable", symtable_symtable, METH_VARARGS,
PyDoc_STR("Return symbol and scope dictionaries"
" used internally by compiler.")},
{NULL, NULL} /* sentinel */
};
PyMODINIT_FUNC
init_symtable(void)
{
PyObject *m;
if (PyType_Ready(&PySTEntry_Type) < 0)
return;
m = Py_InitModule("_symtable", symtable_methods);
if (m == NULL)
return;
PyModule_AddIntConstant(m, "USE", USE);
PyModule_AddIntConstant(m, "DEF_GLOBAL", DEF_GLOBAL);
PyModule_AddIntConstant(m, "DEF_LOCAL", DEF_LOCAL);
PyModule_AddIntConstant(m, "DEF_PARAM", DEF_PARAM);
PyModule_AddIntConstant(m, "DEF_FREE", DEF_FREE);
PyModule_AddIntConstant(m, "DEF_FREE_CLASS", DEF_FREE_CLASS);
PyModule_AddIntConstant(m, "DEF_IMPORT", DEF_IMPORT);
PyModule_AddIntConstant(m, "DEF_BOUND", DEF_BOUND);
PyModule_AddIntConstant(m, "TYPE_FUNCTION", FunctionBlock);
PyModule_AddIntConstant(m, "TYPE_CLASS", ClassBlock);
PyModule_AddIntConstant(m, "TYPE_MODULE", ModuleBlock);
PyModule_AddIntConstant(m, "OPT_IMPORT_STAR", OPT_IMPORT_STAR);
PyModule_AddIntConstant(m, "OPT_EXEC", OPT_EXEC);
PyModule_AddIntConstant(m, "OPT_BARE_EXEC", OPT_BARE_EXEC);
PyModule_AddIntConstant(m, "LOCAL", LOCAL);
PyModule_AddIntConstant(m, "GLOBAL_EXPLICIT", GLOBAL_EXPLICIT);
PyModule_AddIntConstant(m, "GLOBAL_IMPLICIT", GLOBAL_IMPLICIT);
PyModule_AddIntConstant(m, "FREE", FREE);
PyModule_AddIntConstant(m, "CELL", CELL);
PyModule_AddIntConstant(m, "SCOPE_OFF", SCOPE_OFF);
PyModule_AddIntConstant(m, "SCOPE_MASK", SCOPE_MASK);
}