mirror of
https://github.com/jart/cosmopolitan.git
synced 2025-02-07 15:03:34 +00:00
This change gets the Python codebase into a state where it conforms to the conventions of this codebase. It's now possible to include headers from Python, without worrying about ordering. Python has traditionally solved that problem by "diamonding" everything in Python.h, but that's problematic since it means any change to any Python header invalidates all the build artifacts. Lastly it makes tooling not work. Since it is hard to explain to Emacs when I press C-c C-h to add an import line it shouldn't add the header that actually defines the symbol, and instead do follow the nonstandard Python convention. Progress has been made on letting Python load source code from the zip executable structure via the standard C library APIs. System calss now recognizes zip!FILENAME alternative URIs as equivalent to zip:FILENAME since Python uses colon as its delimiter. Some progress has been made on embedding the notice license terms into the Python object code. This is easier said than done since Python has an extremely complicated ownership story. - Some termios APIs have been added - Implement rewinddir() dirstream API - GetCpuCount() API added to Cosmopolitan Libc - More bugs in Cosmopolitan Libc have been fixed - zipobj.com now has flags for mangling the path - Fixed bug a priori with sendfile() on certain BSDs - Polyfill F_DUPFD and F_DUPFD_CLOEXEC across platforms - FIOCLEX / FIONCLEX now polyfilled for fast O_CLOEXEC changes - APE now supports a hybrid solution to no-self-modify for builds - Many BSD-only magnums added, e.g. O_SEARCH, O_SHLOCK, SF_NODISKIO
311 lines
7.3 KiB
C
311 lines
7.3 KiB
C
#include "third_party/python/Include/dictobject.h"
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#include "third_party/python/Include/longobject.h"
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#include "third_party/python/Include/methodobject.h"
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#include "third_party/python/Include/modsupport.h"
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#include "third_party/python/Include/object.h"
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#include "third_party/python/Include/objimpl.h"
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#include "third_party/python/Include/typeslots.h"
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#include "third_party/python/Include/unicodeobject.h"
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/* clang-format off */
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/* Use this file as a template to start implementing a module that
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also declares object types. All occurrences of 'Xxo' should be changed
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to something reasonable for your objects. After that, all other
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occurrences of 'xx' should be changed to something reasonable for your
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module. If your module is named foo your sourcefile should be named
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foomodule.c.
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You will probably want to delete all references to 'x_attr' and add
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your own types of attributes instead. Maybe you want to name your
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local variables other than 'self'. If your object type is needed in
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other files, you'll have to create a file "foobarobject.h"; see
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floatobject.h for an example. */
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/* Xxo objects */
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static PyObject *ErrorObject;
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typedef struct {
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PyObject_HEAD
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PyObject *x_attr; /* Attributes dictionary */
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} XxoObject;
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static PyObject *Xxo_Type;
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#define XxoObject_Check(v) (Py_TYPE(v) == Xxo_Type)
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static XxoObject *
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newXxoObject(PyObject *arg)
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{
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XxoObject *self;
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self = PyObject_GC_New(XxoObject, (PyTypeObject*)Xxo_Type);
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if (self == NULL)
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return NULL;
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self->x_attr = NULL;
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return self;
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}
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/* Xxo methods */
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static int
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Xxo_traverse(XxoObject *self, visitproc visit, void *arg)
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{
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Py_VISIT(self->x_attr);
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return 0;
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}
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static void
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Xxo_finalize(XxoObject *self)
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{
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Py_CLEAR(self->x_attr);
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}
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static PyObject *
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Xxo_demo(XxoObject *self, PyObject *args)
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{
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PyObject *o = NULL;
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if (!PyArg_ParseTuple(args, "|O:demo", &o))
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return NULL;
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/* Test availability of fast type checks */
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if (o != NULL && PyUnicode_Check(o)) {
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Py_INCREF(o);
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return o;
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}
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Py_INCREF(Py_None);
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return Py_None;
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}
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static PyMethodDef Xxo_methods[] = {
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{"demo", (PyCFunction)Xxo_demo, METH_VARARGS,
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PyDoc_STR("demo() -> None")},
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{NULL, NULL} /* sentinel */
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};
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static PyObject *
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Xxo_getattro(XxoObject *self, PyObject *name)
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{
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if (self->x_attr != NULL) {
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PyObject *v = PyDict_GetItem(self->x_attr, name);
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if (v != NULL) {
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Py_INCREF(v);
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return v;
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}
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}
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return PyObject_GenericGetAttr((PyObject *)self, name);
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}
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static int
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Xxo_setattr(XxoObject *self, const char *name, PyObject *v)
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{
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if (self->x_attr == NULL) {
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self->x_attr = PyDict_New();
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if (self->x_attr == NULL)
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return -1;
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}
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if (v == NULL) {
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int rv = PyDict_DelItemString(self->x_attr, name);
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if (rv < 0)
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PyErr_SetString(PyExc_AttributeError,
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"delete non-existing Xxo attribute");
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return rv;
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}
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else
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return PyDict_SetItemString(self->x_attr, name, v);
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}
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static PyType_Slot Xxo_Type_slots[] = {
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{Py_tp_doc, "The Xxo type"},
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{Py_tp_traverse, Xxo_traverse},
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{Py_tp_finalize, Xxo_finalize},
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{Py_tp_getattro, Xxo_getattro},
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{Py_tp_setattr, Xxo_setattr},
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{Py_tp_methods, Xxo_methods},
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{0, 0},
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};
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static PyType_Spec Xxo_Type_spec = {
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"xxlimited.Xxo",
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sizeof(XxoObject),
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0,
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Py_TPFLAGS_DEFAULT | Py_TPFLAGS_HAVE_GC | Py_TPFLAGS_HAVE_FINALIZE,
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Xxo_Type_slots
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};
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/* --------------------------------------------------------------------- */
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/* Function of two integers returning integer */
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PyDoc_STRVAR(xx_foo_doc,
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"foo(i,j)\n\
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\n\
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Return the sum of i and j.");
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static PyObject *
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xx_foo(PyObject *self, PyObject *args)
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{
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long i, j;
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long res;
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if (!PyArg_ParseTuple(args, "ll:foo", &i, &j))
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return NULL;
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res = i+j; /* XXX Do something here */
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return PyLong_FromLong(res);
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}
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/* Function of no arguments returning new Xxo object */
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static PyObject *
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xx_new(PyObject *self, PyObject *args)
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{
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XxoObject *rv;
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if (!PyArg_ParseTuple(args, ":new"))
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return NULL;
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rv = newXxoObject(args);
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if (rv == NULL)
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return NULL;
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return (PyObject *)rv;
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}
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/* Test bad format character */
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static PyObject *
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xx_roj(PyObject *self, PyObject *args)
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{
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PyObject *a;
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long b;
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if (!PyArg_ParseTuple(args, "O#:roj", &a, &b))
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return NULL;
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Py_INCREF(Py_None);
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return Py_None;
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}
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/* ---------- */
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static PyType_Slot Str_Type_slots[] = {
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{Py_tp_base, NULL}, /* filled out in module init function */
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{0, 0},
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};
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static PyType_Spec Str_Type_spec = {
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"xxlimited.Str",
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0,
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0,
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Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE,
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Str_Type_slots
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};
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/* ---------- */
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static PyObject *
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null_richcompare(PyObject *self, PyObject *other, int op)
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{
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Py_RETURN_NOTIMPLEMENTED;
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}
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static PyType_Slot Null_Type_slots[] = {
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{Py_tp_base, NULL}, /* filled out in module init */
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{Py_tp_new, NULL},
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{Py_tp_richcompare, null_richcompare},
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{0, 0}
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};
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static PyType_Spec Null_Type_spec = {
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"xxlimited.Null",
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0, /* basicsize */
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0, /* itemsize */
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Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE,
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Null_Type_slots
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};
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/* ---------- */
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/* List of functions defined in the module */
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static PyMethodDef xx_methods[] = {
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{"roj", xx_roj, METH_VARARGS,
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PyDoc_STR("roj(a,b) -> None")},
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{"foo", xx_foo, METH_VARARGS,
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xx_foo_doc},
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{"new", xx_new, METH_VARARGS,
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PyDoc_STR("new() -> new Xx object")},
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{NULL, NULL} /* sentinel */
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};
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PyDoc_STRVAR(module_doc,
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"This is a template module just for instruction.");
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static int
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xx_modexec(PyObject *m)
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{
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PyObject *o;
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/* Due to cross platform compiler issues the slots must be filled
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* here. It's required for portability to Windows without requiring
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* C++. */
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Null_Type_slots[0].pfunc = &PyBaseObject_Type;
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Null_Type_slots[1].pfunc = PyType_GenericNew;
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Str_Type_slots[0].pfunc = &PyUnicode_Type;
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Xxo_Type = PyType_FromSpec(&Xxo_Type_spec);
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if (Xxo_Type == NULL)
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goto fail;
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/* Add some symbolic constants to the module */
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if (ErrorObject == NULL) {
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ErrorObject = PyErr_NewException("xxlimited.error", NULL, NULL);
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if (ErrorObject == NULL)
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goto fail;
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}
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Py_INCREF(ErrorObject);
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PyModule_AddObject(m, "error", ErrorObject);
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/* Add Xxo */
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o = PyType_FromSpec(&Xxo_Type_spec);
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if (o == NULL)
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goto fail;
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PyModule_AddObject(m, "Xxo", o);
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/* Add Str */
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o = PyType_FromSpec(&Str_Type_spec);
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if (o == NULL)
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goto fail;
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PyModule_AddObject(m, "Str", o);
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/* Add Null */
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o = PyType_FromSpec(&Null_Type_spec);
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if (o == NULL)
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goto fail;
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PyModule_AddObject(m, "Null", o);
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return 0;
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fail:
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Py_XDECREF(m);
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return -1;
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}
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static PyModuleDef_Slot xx_slots[] = {
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{Py_mod_exec, xx_modexec},
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{0, NULL}
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};
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static struct PyModuleDef xxmodule = {
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PyModuleDef_HEAD_INIT,
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"xxlimited",
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module_doc,
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0,
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xx_methods,
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xx_slots,
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NULL,
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NULL,
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NULL
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};
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/* Export function for the module (*must* be called PyInit_xx) */
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PyMODINIT_FUNC
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PyInit_xxlimited(void)
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{
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return PyModuleDef_Init(&xxmodule);
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}
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