Files
RustPython/vm/src/obj/objfunction.rs

83 lines
2.1 KiB
Rust

use crate::frame::Scope;
use crate::pyobject::{
IdProtocol, PyContext, PyFuncArgs, PyObjectRef, PyResult, PyValue, TypeProtocol,
};
use crate::vm::VirtualMachine;
#[derive(Debug)]
pub struct PyFunction {
// TODO: these shouldn't be public
pub code: PyObjectRef,
pub scope: Scope,
pub defaults: PyObjectRef,
}
impl PyFunction {
pub fn new(code: PyObjectRef, scope: Scope, defaults: PyObjectRef) -> Self {
PyFunction {
code,
scope,
defaults,
}
}
}
impl PyValue for PyFunction {
fn required_type(ctx: &PyContext) -> PyObjectRef {
ctx.function_type()
}
}
#[derive(Debug)]
pub struct PyMethod {
// TODO: these shouldn't be public
pub object: PyObjectRef,
pub function: PyObjectRef,
}
impl PyMethod {
pub fn new(object: PyObjectRef, function: PyObjectRef) -> Self {
PyMethod { object, function }
}
}
impl PyValue for PyMethod {
fn required_type(ctx: &PyContext) -> PyObjectRef {
ctx.bound_method_type()
}
}
pub fn init(context: &PyContext) {
let function_type = &context.function_type;
extend_class!(context, function_type, {
"__get__" => context.new_rustfunc(bind_method),
"__code__" => context.new_property(function_code)
});
let builtin_function_or_method_type = &context.builtin_function_or_method_type;
extend_class!(context, builtin_function_or_method_type, {
"__get__" => context.new_rustfunc(bind_method)
});
}
fn bind_method(vm: &mut VirtualMachine, args: PyFuncArgs) -> PyResult {
arg_check!(
vm,
args,
required = [(function, None), (obj, None), (cls, None)]
);
if obj.is(&vm.get_none()) && !cls.is(&obj.typ()) {
Ok(function.clone())
} else {
Ok(vm.ctx.new_bound_method(function.clone(), obj.clone()))
}
}
fn function_code(vm: &mut VirtualMachine, args: PyFuncArgs) -> PyResult {
match args.args[0].payload() {
Some(PyFunction { ref code, .. }) => Ok(code.clone()),
None => Err(vm.new_type_error("no code".to_string())),
}
}