fuzzing.rs 13 KB

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  1. use dioxus::prelude::Props;
  2. use dioxus_core::*;
  3. use dioxus_native_core::prelude::*;
  4. use dioxus_native_core_macro::partial_derive_state;
  5. use shipyard::Component;
  6. use std::cell::Cell;
  7. fn random_ns() -> Option<&'static str> {
  8. let namespace = rand::random::<u8>() % 2;
  9. match namespace {
  10. 0 => None,
  11. 1 => Some(Box::leak(
  12. format!("ns{}", rand::random::<usize>()).into_boxed_str(),
  13. )),
  14. _ => unreachable!(),
  15. }
  16. }
  17. fn create_random_attribute(attr_idx: &mut usize) -> TemplateAttribute<'static> {
  18. match rand::random::<u8>() % 2 {
  19. 0 => TemplateAttribute::Static {
  20. name: Box::leak(format!("attr{}", rand::random::<usize>()).into_boxed_str()),
  21. value: Box::leak(format!("value{}", rand::random::<usize>()).into_boxed_str()),
  22. namespace: random_ns(),
  23. },
  24. 1 => TemplateAttribute::Dynamic {
  25. id: {
  26. let old_idx = *attr_idx;
  27. *attr_idx += 1;
  28. old_idx
  29. },
  30. },
  31. _ => unreachable!(),
  32. }
  33. }
  34. fn create_random_template_node(
  35. dynamic_node_types: &mut Vec<DynamicNodeType>,
  36. template_idx: &mut usize,
  37. attr_idx: &mut usize,
  38. depth: usize,
  39. ) -> TemplateNode<'static> {
  40. match rand::random::<u8>() % 4 {
  41. 0 => {
  42. let attrs = {
  43. let attrs: Vec<_> = (0..(rand::random::<usize>() % 10))
  44. .map(|_| create_random_attribute(attr_idx))
  45. .collect();
  46. Box::leak(attrs.into_boxed_slice())
  47. };
  48. TemplateNode::Element {
  49. tag: Box::leak(format!("tag{}", rand::random::<usize>()).into_boxed_str()),
  50. namespace: random_ns(),
  51. attrs,
  52. children: {
  53. if depth > 4 {
  54. &[]
  55. } else {
  56. let children: Vec<_> = (0..(rand::random::<usize>() % 3))
  57. .map(|_| {
  58. create_random_template_node(
  59. dynamic_node_types,
  60. template_idx,
  61. attr_idx,
  62. depth + 1,
  63. )
  64. })
  65. .collect();
  66. Box::leak(children.into_boxed_slice())
  67. }
  68. },
  69. }
  70. }
  71. 1 => TemplateNode::Text {
  72. text: Box::leak(format!("{}", rand::random::<usize>()).into_boxed_str()),
  73. },
  74. 2 => TemplateNode::DynamicText {
  75. id: {
  76. let old_idx = *template_idx;
  77. *template_idx += 1;
  78. dynamic_node_types.push(DynamicNodeType::Text);
  79. old_idx
  80. },
  81. },
  82. 3 => TemplateNode::Dynamic {
  83. id: {
  84. let old_idx = *template_idx;
  85. *template_idx += 1;
  86. dynamic_node_types.push(DynamicNodeType::Other);
  87. old_idx
  88. },
  89. },
  90. _ => unreachable!(),
  91. }
  92. }
  93. fn generate_paths(
  94. node: &TemplateNode<'static>,
  95. current_path: &[u8],
  96. node_paths: &mut Vec<Vec<u8>>,
  97. attr_paths: &mut Vec<Vec<u8>>,
  98. ) {
  99. match node {
  100. TemplateNode::Element {
  101. children, attrs, ..
  102. } => {
  103. for attr in *attrs {
  104. match attr {
  105. TemplateAttribute::Static { .. } => {}
  106. TemplateAttribute::Dynamic { .. } => {
  107. attr_paths.push(current_path.to_vec());
  108. }
  109. }
  110. }
  111. for (i, child) in children.iter().enumerate() {
  112. let mut current_path = current_path.to_vec();
  113. current_path.push(i as u8);
  114. generate_paths(child, &current_path, node_paths, attr_paths);
  115. }
  116. }
  117. TemplateNode::Text { .. } => {}
  118. TemplateNode::DynamicText { .. } => {
  119. node_paths.push(current_path.to_vec());
  120. }
  121. TemplateNode::Dynamic { .. } => {
  122. node_paths.push(current_path.to_vec());
  123. }
  124. }
  125. }
  126. enum DynamicNodeType {
  127. Text,
  128. Other,
  129. }
  130. fn create_random_template(name: &'static str) -> (Template<'static>, Vec<DynamicNodeType>) {
  131. let mut dynamic_node_type = Vec::new();
  132. let mut template_idx = 0;
  133. let mut attr_idx = 0;
  134. let roots = (0..(1 + rand::random::<usize>() % 5))
  135. .map(|_| {
  136. create_random_template_node(&mut dynamic_node_type, &mut template_idx, &mut attr_idx, 0)
  137. })
  138. .collect::<Vec<_>>();
  139. assert!(!roots.is_empty());
  140. let roots = Box::leak(roots.into_boxed_slice());
  141. let mut node_paths = Vec::new();
  142. let mut attr_paths = Vec::new();
  143. for (i, root) in roots.iter().enumerate() {
  144. generate_paths(root, &[i as u8], &mut node_paths, &mut attr_paths);
  145. }
  146. let node_paths = Box::leak(
  147. node_paths
  148. .into_iter()
  149. .map(|v| &*Box::leak(v.into_boxed_slice()))
  150. .collect::<Vec<_>>()
  151. .into_boxed_slice(),
  152. );
  153. let attr_paths = Box::leak(
  154. attr_paths
  155. .into_iter()
  156. .map(|v| &*Box::leak(v.into_boxed_slice()))
  157. .collect::<Vec<_>>()
  158. .into_boxed_slice(),
  159. );
  160. (
  161. Template {
  162. name,
  163. roots,
  164. node_paths,
  165. attr_paths,
  166. },
  167. dynamic_node_type,
  168. )
  169. }
  170. fn create_random_dynamic_node(cx: &ScopeState, depth: usize) -> DynamicNode {
  171. let range = if depth > 3 { 1 } else { 3 };
  172. match rand::random::<u8>() % range {
  173. 0 => DynamicNode::Placeholder(Default::default()),
  174. 1 => cx.make_node((0..(rand::random::<u8>() % 5)).map(|_| VNode {
  175. key: None,
  176. parent: Default::default(),
  177. template: Cell::new(Template {
  178. name: concat!(file!(), ":", line!(), ":", column!(), ":0"),
  179. roots: &[TemplateNode::Dynamic { id: 0 }],
  180. node_paths: &[&[0]],
  181. attr_paths: &[],
  182. }),
  183. root_ids: dioxus::core::exports::bumpalo::collections::Vec::new_in(cx.bump()).into(),
  184. dynamic_nodes: cx.bump().alloc([cx.component(
  185. create_random_element,
  186. DepthProps { depth, root: false },
  187. "create_random_element",
  188. )]),
  189. dynamic_attrs: &[],
  190. })),
  191. 2 => cx.component(
  192. create_random_element,
  193. DepthProps { depth, root: false },
  194. "create_random_element",
  195. ),
  196. _ => unreachable!(),
  197. }
  198. }
  199. fn create_random_dynamic_mounted_attr(cx: &ScopeState) -> MountedAttribute {
  200. match rand::random::<u8>() % 2 {
  201. 0 => MountedAttribute::from(
  202. &*cx.bump().alloc(
  203. (0..(rand::random::<u8>() % 3) as usize)
  204. .map(|_| create_random_dynamic_attr(cx))
  205. .collect::<Vec<_>>(),
  206. ),
  207. ),
  208. 1 => MountedAttribute::from(create_random_dynamic_attr(cx)),
  209. _ => unreachable!(),
  210. }
  211. }
  212. fn create_random_dynamic_attr(cx: &ScopeState) -> Attribute {
  213. let value = match rand::random::<u8>() % 6 {
  214. 0 => AttributeValue::Text(Box::leak(
  215. format!("{}", rand::random::<usize>()).into_boxed_str(),
  216. )),
  217. 1 => AttributeValue::Float(rand::random()),
  218. 2 => AttributeValue::Int(rand::random()),
  219. 3 => AttributeValue::Bool(rand::random()),
  220. 4 => cx.any_value(rand::random::<usize>()),
  221. 5 => AttributeValue::None,
  222. _ => unreachable!(),
  223. };
  224. Attribute::new(
  225. Box::leak(format!("attr{}", rand::random::<usize>()).into_boxed_str()),
  226. value,
  227. random_ns(),
  228. rand::random(),
  229. )
  230. }
  231. static mut TEMPLATE_COUNT: usize = 0;
  232. #[derive(PartialEq, Props, Component)]
  233. struct DepthProps {
  234. depth: usize,
  235. root: bool,
  236. }
  237. fn create_random_element(cx: Scope<DepthProps>) -> Element {
  238. cx.needs_update();
  239. let range = if cx.props.root { 2 } else { 3 };
  240. let node = match rand::random::<usize>() % range {
  241. 0 | 1 => {
  242. let (template, dynamic_node_types) = create_random_template(Box::leak(
  243. format!(
  244. "{}{}",
  245. concat!(file!(), ":", line!(), ":", column!(), ":"),
  246. {
  247. unsafe {
  248. let old = TEMPLATE_COUNT;
  249. TEMPLATE_COUNT += 1;
  250. old
  251. }
  252. }
  253. )
  254. .into_boxed_str(),
  255. ));
  256. println!("{template:#?}");
  257. let node = VNode {
  258. key: None,
  259. parent: None,
  260. template: Cell::new(template),
  261. root_ids: dioxus::core::exports::bumpalo::collections::Vec::new_in(cx.bump())
  262. .into(),
  263. dynamic_nodes: {
  264. let dynamic_nodes: Vec<_> = dynamic_node_types
  265. .iter()
  266. .map(|ty| match ty {
  267. DynamicNodeType::Text => DynamicNode::Text(VText::new(Box::leak(
  268. format!("{}", rand::random::<usize>()).into_boxed_str(),
  269. ))),
  270. DynamicNodeType::Other => {
  271. create_random_dynamic_node(cx, cx.props.depth + 1)
  272. }
  273. })
  274. .collect();
  275. cx.bump().alloc(dynamic_nodes)
  276. },
  277. dynamic_attrs: cx
  278. .bump()
  279. .alloc(
  280. (0..template.attr_paths.len())
  281. .map(|_| create_random_dynamic_mounted_attr(cx))
  282. .collect::<Vec<_>>(),
  283. )
  284. .as_slice(),
  285. };
  286. Some(node)
  287. }
  288. _ => None,
  289. };
  290. println!("{node:#?}");
  291. node
  292. }
  293. #[derive(Debug, Clone, PartialEq, Eq, Default, Component)]
  294. pub struct BlablaState {
  295. count: usize,
  296. }
  297. #[partial_derive_state]
  298. impl State for BlablaState {
  299. type ParentDependencies = (Self,);
  300. type ChildDependencies = ();
  301. type NodeDependencies = ();
  302. const NODE_MASK: NodeMaskBuilder<'static> = NodeMaskBuilder::new()
  303. .with_attrs(AttributeMaskBuilder::Some(&["blabla"]))
  304. .with_element();
  305. fn update<'a>(
  306. &mut self,
  307. _: NodeView,
  308. _: <Self::NodeDependencies as Dependancy>::ElementBorrowed<'a>,
  309. parent: Option<<Self::ParentDependencies as Dependancy>::ElementBorrowed<'a>>,
  310. _: Vec<<Self::ChildDependencies as Dependancy>::ElementBorrowed<'a>>,
  311. _: &SendAnyMap,
  312. ) -> bool {
  313. if let Some((parent,)) = parent {
  314. if parent.count != 0 {
  315. self.count += 1;
  316. }
  317. }
  318. true
  319. }
  320. fn create<'a>(
  321. node_view: NodeView<()>,
  322. node: <Self::NodeDependencies as Dependancy>::ElementBorrowed<'a>,
  323. parent: Option<<Self::ParentDependencies as Dependancy>::ElementBorrowed<'a>>,
  324. children: Vec<<Self::ChildDependencies as Dependancy>::ElementBorrowed<'a>>,
  325. context: &SendAnyMap,
  326. ) -> Self {
  327. let mut myself = Self::default();
  328. myself.update(node_view, node, parent, children, context);
  329. myself
  330. }
  331. }
  332. // test for panics when creating random nodes and templates
  333. #[test]
  334. fn create() {
  335. for _ in 0..100 {
  336. let mut vdom = VirtualDom::new_with_props(
  337. create_random_element,
  338. DepthProps {
  339. depth: 0,
  340. root: true,
  341. },
  342. );
  343. let mutations = vdom.rebuild();
  344. let mut rdom: RealDom = RealDom::new([BlablaState::to_type_erased()]);
  345. let mut dioxus_state = DioxusState::create(&mut rdom);
  346. dioxus_state.apply_mutations(&mut rdom, mutations);
  347. let ctx = SendAnyMap::new();
  348. rdom.update_state(ctx);
  349. }
  350. }
  351. // test for panics when diffing random nodes
  352. // This test will change the template every render which is not very realistic, but it helps stress the system
  353. #[test]
  354. fn diff() {
  355. for _ in 0..10 {
  356. let mut vdom = VirtualDom::new_with_props(
  357. create_random_element,
  358. DepthProps {
  359. depth: 0,
  360. root: true,
  361. },
  362. );
  363. let mutations = vdom.rebuild();
  364. let mut rdom: RealDom = RealDom::new([BlablaState::to_type_erased()]);
  365. let mut dioxus_state = DioxusState::create(&mut rdom);
  366. dioxus_state.apply_mutations(&mut rdom, mutations);
  367. let ctx = SendAnyMap::new();
  368. rdom.update_state(ctx);
  369. for _ in 0..10 {
  370. let mutations = vdom.render_immediate();
  371. dioxus_state.apply_mutations(&mut rdom, mutations);
  372. let ctx = SendAnyMap::new();
  373. rdom.update_state(ctx);
  374. }
  375. }
  376. }