use crate::lang::adapter::Adapter;
use crate::lang::args::eval_unary_arg;
use crate::lang::args::take_thunk_arg;
use crate::lang::args::thunk_as_pipe;
use crate::lang::arity::Arity;
use crate::lang::arity::assert_func_arity;
use crate::lang::error::Error;
use crate::lang::eval::eval_node_list;
use crate::lang::machine::Machine;
use crate::lang::node::Node;
use crate::value::Value;
pub(crate) fn all(
adapter: &impl Adapter,
machine: &mut Machine<'_>,
stdin: Option<&Value>,
mut node: Node,
) -> Result<Value, Error> {
assert_func_arity(adapter, machine, stdin, &node, &Arity::new(2))?;
let thunk = take_thunk_arg(adapter, machine, &mut node)?;
let thunk = thunk_as_pipe(adapter, machine, thunk)?;
let value = eval_unary_arg(adapter, machine, stdin, node)?;
let value = value.unwrap_or_default();
let mut call = |v: &Value| eval_node_list(adapter, machine, Some(v), thunk.clone());
let values = match value {
v @ Value::Bytes(_) => vec![call(&v)?],
Value::List(v) => v
.into_iter()
.map(|v| call(&v))
.collect::<Result<Vec<_>, _>>()?,
Value::Map(v) => v
.into_iter()
.map(|(_, v)| call(&v))
.collect::<Result<Vec<_>, _>>()?,
};
Ok(values
.into_iter()
.all(|v| v.is_some_and(|v| !v.is_empty()))
.into())
}