454 lines
11 KiB
Rust
454 lines
11 KiB
Rust
use pyo3::prelude::*;
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use pyo3::types::{IntoPyDict, PyDict, PyTuple};
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use pyo3::{py_run, wrap_pyfunction};
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mod common;
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#[pyclass]
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struct AnonClass {}
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#[pyclass]
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struct ValueClass {
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value: usize,
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}
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#[pymethods]
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impl ValueClass {
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#[new]
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fn new(value: usize) -> ValueClass {
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ValueClass { value }
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}
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}
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#[pyclass(module = "module")]
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struct LocatedClass {}
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fn sum_as_string(a: i64, b: i64) -> String {
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format!("{}", a + b)
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}
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#[pyfunction]
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/// Doubles the given value
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fn double(x: usize) -> usize {
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x * 2
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}
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/// This module is implemented in Rust.
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#[pymodule]
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fn module_with_functions(_py: Python, m: &PyModule) -> PyResult<()> {
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#![allow(deprecated)]
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#[pyfn(m, "sum_as_string")]
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fn function_with_deprecated_name(_py: Python, a: i64, b: i64) -> String {
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sum_as_string(a, b)
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}
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#[pyfn(m)]
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#[pyo3(name = "no_parameters")]
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fn function_with_name() -> usize {
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42
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}
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#[pyfn(m)]
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#[pyo3(pass_module)]
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fn with_module(module: &PyModule) -> PyResult<&str> {
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module.name()
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}
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#[pyfn(m)]
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fn double_value(v: &ValueClass) -> usize {
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v.value * 2
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}
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m.add_class::<AnonClass>().unwrap();
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m.add_class::<ValueClass>().unwrap();
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m.add_class::<LocatedClass>().unwrap();
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m.add("foo", "bar").unwrap();
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m.add_function(wrap_pyfunction!(double, m)?).unwrap();
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m.add("also_double", wrap_pyfunction!(double, m)?).unwrap();
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Ok(())
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}
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#[test]
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fn test_module_with_functions() {
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use pyo3::wrap_pymodule;
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let gil = Python::acquire_gil();
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let py = gil.python();
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let d = [(
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"module_with_functions",
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wrap_pymodule!(module_with_functions)(py),
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)]
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.into_py_dict(py);
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py_assert!(
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py,
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*d,
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"module_with_functions.__doc__ == 'This module is implemented in Rust.'"
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);
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py_assert!(py, *d, "module_with_functions.sum_as_string(1, 2) == '3'");
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py_assert!(py, *d, "module_with_functions.no_parameters() == 42");
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py_assert!(py, *d, "module_with_functions.foo == 'bar'");
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py_assert!(py, *d, "module_with_functions.AnonClass != None");
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py_assert!(py, *d, "module_with_functions.LocatedClass != None");
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py_assert!(
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py,
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*d,
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"module_with_functions.LocatedClass.__module__ == 'module'"
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);
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py_assert!(py, *d, "module_with_functions.double(3) == 6");
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py_assert!(
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py,
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*d,
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"module_with_functions.double.__doc__ == 'Doubles the given value'"
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);
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py_assert!(py, *d, "module_with_functions.also_double(3) == 6");
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py_assert!(
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py,
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*d,
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"module_with_functions.also_double.__doc__ == 'Doubles the given value'"
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);
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py_assert!(
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py,
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*d,
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"module_with_functions.double_value(module_with_functions.ValueClass(1)) == 2"
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);
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py_assert!(
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py,
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*d,
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"module_with_functions.with_module() == 'module_with_functions'"
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);
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}
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#[pymodule]
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#[pyo3(name = "other_name")]
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fn some_name(_: Python, m: &PyModule) -> PyResult<()> {
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m.add("other_name", "other_name")?;
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Ok(())
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}
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#[test]
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fn test_module_renaming() {
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use pyo3::wrap_pymodule;
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let gil = Python::acquire_gil();
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let py = gil.python();
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let d = [("different_name", wrap_pymodule!(other_name)(py))].into_py_dict(py);
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py_run!(py, *d, "assert different_name.__name__ == 'other_name'");
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}
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#[test]
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fn test_module_from_code() {
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let gil = Python::acquire_gil();
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let py = gil.python();
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let adder_mod = PyModule::from_code(
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py,
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"def add(a,b):\n\treturn a+b",
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"adder_mod.py",
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"adder_mod",
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)
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.expect("Module code should be loaded");
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let add_func = adder_mod
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.getattr("add")
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.expect("Add function should be in the module")
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.to_object(py);
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let ret_value: i32 = add_func
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.call1(py, (1, 2))
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.expect("A value should be returned")
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.extract(py)
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.expect("The value should be able to be converted to an i32");
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assert_eq!(ret_value, 3);
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}
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#[pyfunction]
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fn r#move() -> usize {
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42
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}
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#[pymodule]
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fn raw_ident_module(_py: Python, module: &PyModule) -> PyResult<()> {
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module.add_function(wrap_pyfunction!(r#move, module)?)
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}
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#[test]
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fn test_raw_idents() {
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use pyo3::wrap_pymodule;
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let gil = Python::acquire_gil();
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let py = gil.python();
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let module = wrap_pymodule!(raw_ident_module)(py);
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py_assert!(py, module, "module.move() == 42");
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}
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#[pyfunction]
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#[pyo3(name = "foobar")]
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fn custom_named_fn() -> usize {
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42
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}
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#[pymodule]
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fn foobar_module(_py: Python, m: &PyModule) -> PyResult<()> {
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m.add_function(wrap_pyfunction!(custom_named_fn, m)?)?;
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m.dict().set_item("yay", "me")?;
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Ok(())
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}
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#[test]
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fn test_custom_names() {
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let gil = Python::acquire_gil();
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let py = gil.python();
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let module = pyo3::wrap_pymodule!(foobar_module)(py);
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py_assert!(py, module, "not hasattr(module, 'custom_named_fn')");
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py_assert!(py, module, "module.foobar() == 42");
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}
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#[test]
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fn test_module_dict() {
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let gil = Python::acquire_gil();
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let py = gil.python();
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let module = pyo3::wrap_pymodule!(foobar_module)(py);
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py_assert!(py, module, "module.yay == 'me'");
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}
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#[test]
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fn test_module_dunder_all() {
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let gil = Python::acquire_gil();
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let py = gil.python();
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let module = pyo3::wrap_pymodule!(foobar_module)(py);
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py_assert!(py, module, "module.__all__ == ['foobar']");
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}
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#[pyfunction]
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fn subfunction() -> String {
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"Subfunction".to_string()
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}
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fn submodule(module: &PyModule) -> PyResult<()> {
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module.add_function(wrap_pyfunction!(subfunction, module)?)?;
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Ok(())
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}
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#[pymodule]
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fn submodule_with_init_fn(_py: Python, module: &PyModule) -> PyResult<()> {
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module.add_function(wrap_pyfunction!(subfunction, module)?)?;
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Ok(())
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}
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#[pyfunction]
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fn superfunction() -> String {
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"Superfunction".to_string()
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}
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#[pymodule]
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fn supermodule(py: Python, module: &PyModule) -> PyResult<()> {
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module.add_function(wrap_pyfunction!(superfunction, module)?)?;
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let module_to_add = PyModule::new(py, "submodule")?;
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submodule(module_to_add)?;
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module.add_submodule(module_to_add)?;
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let module_to_add = PyModule::new(py, "submodule_with_init_fn")?;
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submodule_with_init_fn(py, module_to_add)?;
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module.add_submodule(module_to_add)?;
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Ok(())
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}
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#[test]
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fn test_module_nesting() {
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use pyo3::wrap_pymodule;
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let gil = Python::acquire_gil();
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let py = gil.python();
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let supermodule = wrap_pymodule!(supermodule)(py);
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py_assert!(
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py,
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supermodule,
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"supermodule.superfunction() == 'Superfunction'"
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);
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py_assert!(
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py,
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supermodule,
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"supermodule.submodule.subfunction() == 'Subfunction'"
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);
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py_assert!(
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py,
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supermodule,
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"supermodule.submodule_with_init_fn.subfunction() == 'Subfunction'"
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);
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}
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// Test that argument parsing specification works for pyfunctions
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#[pyfunction(a = 5, vararg = "*")]
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fn ext_vararg_fn(py: Python, a: i32, vararg: &PyTuple) -> PyObject {
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[a.to_object(py), vararg.into()].to_object(py)
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}
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#[pymodule]
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fn vararg_module(_py: Python, m: &PyModule) -> PyResult<()> {
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#[pyfn(m, a = 5, vararg = "*")]
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fn int_vararg_fn(py: Python, a: i32, vararg: &PyTuple) -> PyObject {
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ext_vararg_fn(py, a, vararg)
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}
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m.add_function(wrap_pyfunction!(ext_vararg_fn, m)?).unwrap();
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Ok(())
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}
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#[test]
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fn test_vararg_module() {
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let gil = Python::acquire_gil();
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let py = gil.python();
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let m = pyo3::wrap_pymodule!(vararg_module)(py);
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py_assert!(py, m, "m.ext_vararg_fn() == [5, ()]");
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py_assert!(py, m, "m.ext_vararg_fn(1, 2) == [1, (2,)]");
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py_assert!(py, m, "m.int_vararg_fn() == [5, ()]");
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py_assert!(py, m, "m.int_vararg_fn(1, 2) == [1, (2,)]");
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}
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#[test]
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fn test_module_with_constant() {
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// Regression test for #1102
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#[pymodule]
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fn module_with_constant(_py: Python, m: &PyModule) -> PyResult<()> {
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const ANON: AnonClass = AnonClass {};
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m.add("ANON", ANON)?;
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m.add_class::<AnonClass>()?;
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Ok(())
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}
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Python::with_gil(|py| {
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let m = pyo3::wrap_pymodule!(module_with_constant)(py);
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py_assert!(py, m, "isinstance(m.ANON, m.AnonClass)");
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});
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}
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#[pyfunction]
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#[pyo3(pass_module)]
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fn pyfunction_with_module(module: &PyModule) -> PyResult<&str> {
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module.name()
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}
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#[pyfunction]
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#[pyo3(pass_module)]
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fn pyfunction_with_module_and_py<'a>(
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module: &'a PyModule,
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_python: Python<'a>,
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) -> PyResult<&'a str> {
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module.name()
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}
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#[pyfunction]
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#[pyo3(pass_module)]
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fn pyfunction_with_module_and_arg(module: &PyModule, string: String) -> PyResult<(&str, String)> {
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module.name().map(|s| (s, string))
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}
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#[pyfunction(string = "\"foo\"")]
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#[pyo3(pass_module)]
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fn pyfunction_with_module_and_default_arg<'a>(
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module: &'a PyModule,
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string: &str,
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) -> PyResult<(&'a str, String)> {
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module.name().map(|s| (s, string.into()))
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}
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#[pyfunction(args = "*", kwargs = "**")]
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#[pyo3(pass_module)]
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fn pyfunction_with_module_and_args_kwargs<'a>(
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module: &'a PyModule,
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args: &PyTuple,
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kwargs: Option<&PyDict>,
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) -> PyResult<(&'a str, usize, Option<usize>)> {
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module
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.name()
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.map(|s| (s, args.len(), kwargs.map(|d| d.len())))
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}
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#[pyfunction]
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#[pyo3(pass_module)]
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fn pyfunction_with_pass_module_in_attribute(module: &PyModule) -> PyResult<&str> {
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module.name()
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}
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#[pymodule]
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fn module_with_functions_with_module(_py: Python, m: &PyModule) -> PyResult<()> {
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m.add_function(wrap_pyfunction!(pyfunction_with_module, m)?)?;
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m.add_function(wrap_pyfunction!(pyfunction_with_module_and_py, m)?)?;
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m.add_function(wrap_pyfunction!(pyfunction_with_module_and_arg, m)?)?;
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m.add_function(wrap_pyfunction!(pyfunction_with_module_and_default_arg, m)?)?;
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m.add_function(wrap_pyfunction!(pyfunction_with_module_and_args_kwargs, m)?)?;
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m.add_function(wrap_pyfunction!(
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pyfunction_with_pass_module_in_attribute,
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m
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)?)?;
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Ok(())
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}
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#[test]
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fn test_module_functions_with_module() {
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let gil = Python::acquire_gil();
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let py = gil.python();
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let m = pyo3::wrap_pymodule!(module_with_functions_with_module)(py);
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py_assert!(
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py,
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m,
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"m.pyfunction_with_module() == 'module_with_functions_with_module'"
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);
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py_assert!(
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py,
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m,
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"m.pyfunction_with_module_and_py() == 'module_with_functions_with_module'"
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);
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py_assert!(
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py,
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m,
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"m.pyfunction_with_module_and_default_arg() \
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== ('module_with_functions_with_module', 'foo')"
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);
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py_assert!(
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py,
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m,
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"m.pyfunction_with_module_and_args_kwargs(1, x=1, y=2) \
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== ('module_with_functions_with_module', 1, 2)"
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);
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py_assert!(
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py,
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m,
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"m.pyfunction_with_pass_module_in_attribute() == 'module_with_functions_with_module'"
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);
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}
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#[test]
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#[allow(deprecated)]
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fn test_module_with_deprecated_name() {
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#[pymodule(custom_name)]
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fn my_module(_py: Python, _m: &PyModule) -> PyResult<()> {
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Ok(())
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}
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Python::with_gil(|py| {
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let m = pyo3::wrap_pymodule!(custom_name)(py);
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py_assert!(py, m, "m.__name__ == 'custom_name'");
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})
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}
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