use std::convert::TryFrom;
use std::fmt;
use std::fmt::{Debug, Formatter};
use std::rc::Rc;
use zamm_yin::node_wrappers::{debug_wrapper, CommonNodeTrait, FinalNode};
use zamm_yin::tao::archetype::{Archetype, ArchetypeTrait};
use zamm_yin::tao::{FormTrait, Tao, YIN_MAX_ID};
#[derive(Copy, Clone, Hash, PartialEq, Eq, PartialOrd, Ord)]
pub struct UsesAttributeLogic {
base: FinalNode,
}
impl Debug for UsesAttributeLogic {
fn fmt(&self, f: &mut Formatter) -> fmt::Result {
debug_wrapper("UsesAttributeLogic", self, f)
}
}
impl From<usize> for UsesAttributeLogic {
fn from(id: usize) -> Self {
Self {
base: FinalNode::from(id),
}
}
}
impl From<FinalNode> for UsesAttributeLogic {
fn from(f: FinalNode) -> Self {
Self { base: f }
}
}
impl<'a> TryFrom<&'a str> for UsesAttributeLogic {
type Error = String;
fn try_from(name: &'a str) -> Result<Self, Self::Error> {
FinalNode::try_from(name).map(|f| Self { base: f })
}
}
impl CommonNodeTrait for UsesAttributeLogic {
fn id(&self) -> usize {
self.base.id()
}
fn set_internal_name(&mut self, name: String) {
self.base.set_internal_name(name);
}
fn internal_name(&self) -> Option<Rc<String>> {
self.base.internal_name()
}
}
impl<'a> ArchetypeTrait<'a> for UsesAttributeLogic {
type ArchetypeForm = Archetype;
type Form = UsesAttributeLogic;
const TYPE_ID: usize = YIN_MAX_ID + 4;
const TYPE_NAME: &'static str = "uses-attribute-logic";
const PARENT_TYPE_ID: usize = Tao::TYPE_ID;
}
impl FormTrait for UsesAttributeLogic {
fn essence(&self) -> &FinalNode {
&self.base
}
fn essence_mut(&mut self) -> &mut FinalNode {
&mut self.base
}
}
#[cfg(test)]
mod tests {
use super::*;
use crate::tao::initialize_kb;
use zamm_yin::tao::archetype::ArchetypeFormTrait;
#[test]
fn check_type_created() {
initialize_kb();
#[rustfmt::skip]
assert_eq!(UsesAttributeLogic::archetype().id(), UsesAttributeLogic::TYPE_ID);
assert_eq!(
UsesAttributeLogic::archetype().internal_name(),
Some(Rc::new(UsesAttributeLogic::TYPE_NAME.to_string()))
);
}
#[test]
fn check_type_attributes() {
initialize_kb();
#[rustfmt::skip]
assert_eq!(UsesAttributeLogic::archetype().introduced_attribute_archetypes(), vec![]);
#[rustfmt::skip]
assert_eq!(UsesAttributeLogic::archetype().attribute_archetypes(), vec![]);
}
#[test]
fn from_node_id() {
initialize_kb();
let concept = UsesAttributeLogic::individuate();
let concept_copy = UsesAttributeLogic::from(concept.id());
assert_eq!(concept.id(), concept_copy.id());
}
#[test]
fn from_name() {
initialize_kb();
let mut concept = UsesAttributeLogic::individuate();
concept.set_internal_name("A".to_owned());
assert_eq!(UsesAttributeLogic::try_from("A"), Ok(concept));
assert!(UsesAttributeLogic::try_from("B").is_err());
}
#[test]
fn create_and_retrieve_node_id() {
initialize_kb();
let concept1 = UsesAttributeLogic::individuate();
let concept2 = UsesAttributeLogic::individuate();
assert_eq!(concept1.id() + 1, concept2.id());
}
#[test]
fn create_and_retrieve_node_name() {
initialize_kb();
let mut concept = UsesAttributeLogic::individuate();
concept.set_internal_name("A".to_string());
assert_eq!(concept.internal_name(), Some(Rc::new("A".to_string())));
}
}