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Improve native object initialization #4798
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Original file line number | Diff line number | Diff line change |
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@@ -0,0 +1,2 @@ | ||
fixes several limitations with base native type initialization. Required for extending native base types | ||
with the limited API and extending base native types that require arguments passed to `__new__`. |
Original file line number | Diff line number | Diff line change |
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@@ -1,11 +1,14 @@ | ||
//! Contains initialization utilities for `#[pyclass]`. | ||
use crate::exceptions::PyTypeError; | ||
use crate::ffi_ptr_ext::FfiPtrExt; | ||
use crate::internal::get_slot::TP_ALLOC; | ||
use crate::types::PyType; | ||
use crate::{ffi, Borrowed, PyErr, PyResult, Python}; | ||
use crate::internal::get_slot::TP_NEW; | ||
use crate::types::{PyDict, PyTuple, PyType}; | ||
use crate::{ffi, Bound, PyErr, PyResult, Python}; | ||
use crate::{ffi::PyTypeObject, sealed::Sealed, type_object::PyTypeInfo}; | ||
use std::marker::PhantomData; | ||
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use super::pyclass::PyClassBaseType; | ||
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/// Initializer for Python types. | ||
/// | ||
/// This trait is intended to use internally for distinguishing `#[pyclass]` and | ||
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@@ -17,69 +20,70 @@ pub trait PyObjectInit<T>: Sized + Sealed { | |
self, | ||
py: Python<'_>, | ||
subtype: *mut PyTypeObject, | ||
args: &Bound<'_, PyTuple>, | ||
kwargs: Option<&Bound<'_, PyDict>>, | ||
) -> PyResult<*mut ffi::PyObject>; | ||
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#[doc(hidden)] | ||
fn can_be_subclassed(&self) -> bool; | ||
} | ||
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/// Initializer for Python native types, like `PyDict`. | ||
pub struct PyNativeTypeInitializer<T: PyTypeInfo>(pub PhantomData<T>); | ||
/// Initializer for Python native types, like [PyDict]. | ||
pub struct PyNativeTypeInitializer<T: PyTypeInfo + PyClassBaseType>(pub PhantomData<T>); | ||
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impl<T: PyTypeInfo> PyObjectInit<T> for PyNativeTypeInitializer<T> { | ||
impl<T: PyTypeInfo + PyClassBaseType> PyObjectInit<T> for PyNativeTypeInitializer<T> { | ||
/// call `__new__` ([ffi::PyTypeObject::tp_new]) for the native base type. | ||
/// This will allocate a new python object and initialize the part relating to the native base type. | ||
unsafe fn into_new_object( | ||
self, | ||
py: Python<'_>, | ||
subtype: *mut PyTypeObject, | ||
args: &Bound<'_, PyTuple>, | ||
kwargs: Option<&Bound<'_, PyDict>>, | ||
) -> PyResult<*mut ffi::PyObject> { | ||
unsafe fn inner( | ||
py: Python<'_>, | ||
type_object: *mut PyTypeObject, | ||
native_base_type: *mut PyTypeObject, | ||
subtype: *mut PyTypeObject, | ||
args: &Bound<'_, PyTuple>, | ||
kwargs: Option<&Bound<'_, PyDict>>, | ||
override_tp_new: Option<ffi::newfunc>, | ||
) -> PyResult<*mut ffi::PyObject> { | ||
// HACK (due to FIXME below): PyBaseObject_Type's tp_new isn't happy with NULL arguments | ||
There was a problem hiding this comment. Choose a reason for hiding this commentThe reason will be displayed to describe this comment to others. Learn more. I think there was a misunderstanding here, calling |
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let is_base_object = type_object == std::ptr::addr_of_mut!(ffi::PyBaseObject_Type); | ||
let subtype_borrowed: Borrowed<'_, '_, PyType> = subtype | ||
.cast::<ffi::PyObject>() | ||
.assume_borrowed_unchecked(py) | ||
.downcast_unchecked(); | ||
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if is_base_object { | ||
let alloc = subtype_borrowed | ||
.get_slot(TP_ALLOC) | ||
.unwrap_or(ffi::PyType_GenericAlloc); | ||
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let obj = alloc(subtype, 0); | ||
return if obj.is_null() { | ||
Err(PyErr::fetch(py)) | ||
} else { | ||
Ok(obj) | ||
}; | ||
} | ||
let tp_new = if let Some(tp_new) = override_tp_new { | ||
tp_new | ||
} else { | ||
native_base_type | ||
.cast::<ffi::PyObject>() | ||
.assume_borrowed_unchecked(py) | ||
.downcast_unchecked::<PyType>() | ||
.get_slot(TP_NEW) | ||
.ok_or_else(|| { | ||
PyTypeError::new_err("cannot construct type that does not define __new__") | ||
})? | ||
}; | ||
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#[cfg(Py_LIMITED_API)] | ||
unreachable!("subclassing native types is not possible with the `abi3` feature"); | ||
let obj = tp_new( | ||
subtype, | ||
args.as_ptr(), | ||
kwargs | ||
.map(|obj| obj.as_ptr()) | ||
.unwrap_or(std::ptr::null_mut()), | ||
); | ||
Comment on lines
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There was a problem hiding this comment. Choose a reason for hiding this commentThe reason will be displayed to describe this comment to others. Learn more. there is a limitation here, where in python a class has to call |
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#[cfg(not(Py_LIMITED_API))] | ||
{ | ||
match (*type_object).tp_new { | ||
// FIXME: Call __new__ with actual arguments | ||
Some(newfunc) => { | ||
let obj = newfunc(subtype, std::ptr::null_mut(), std::ptr::null_mut()); | ||
if obj.is_null() { | ||
Err(PyErr::fetch(py)) | ||
} else { | ||
Ok(obj) | ||
} | ||
} | ||
None => Err(crate::exceptions::PyTypeError::new_err( | ||
"base type without tp_new", | ||
)), | ||
} | ||
if obj.is_null() { | ||
Err(PyErr::fetch(py)) | ||
} else { | ||
Ok(obj) | ||
} | ||
} | ||
let type_object = T::type_object_raw(py); | ||
inner(py, type_object, subtype) | ||
inner( | ||
py, | ||
T::type_object_raw(py), | ||
subtype, | ||
args, | ||
kwargs, | ||
T::OVERRIDE_TP_NEW, | ||
) | ||
} | ||
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#[inline] | ||
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I assume these are named with underscores because sometimes the generated code uses them and sometimes it doesn't?