[REF] initial prototype of owl 2

This commit is contained in:
Géry Debongnie
2020-11-26 16:45:25 +01:00
committed by Aaron Bohy
parent c06049076a
commit e746574a1d
186 changed files with 29153 additions and 33120 deletions
+1 -1
View File
@@ -5,7 +5,7 @@ name: Node.js CI
on: on:
pull_request: pull_request:
branches: [ master ] branches: [ master, owl-next ]
jobs: jobs:
build: build:
+2
View File
@@ -105,6 +105,8 @@ between Owl classes. This is the reason why `QWeb` actually extends [EventBus](e
### Translations ### Translations
take care of this and "cherry-pick" 8464a1b04e7469434f9dcb3d68a543f58cb61b8e
If properly setup, Owl QWeb engine can translate all rendered templates. To do If properly setup, Owl QWeb engine can translate all rendered templates. To do
so, it needs a translate function, which takes a string and returns a string. so, it needs a translate function, which takes a string and returns a string.
+2
View File
@@ -1,5 +1,7 @@
# 🦉 Router 🦉 # 🦉 Router 🦉
Remove?
## Content ## Content
- [Overview](#overview) - [Overview](#overview)
+2 -1
View File
@@ -55,7 +55,7 @@
"sass": "^1.16.1", "sass": "^1.16.1",
"source-map-support": "^0.5.10", "source-map-support": "^0.5.10",
"ts-jest": "^27.0.5", "ts-jest": "^27.0.5",
"typescript": "^3.7.2", "typescript": "3.9.6",
"uglify-es": "^3.3.9" "uglify-es": "^3.3.9"
}, },
"jest": { "jest": {
@@ -64,6 +64,7 @@
"<rootDir>/src", "<rootDir>/src",
"<rootDir>/tests" "<rootDir>/tests"
], ],
"setupFiles": ["./tests/mocks/mockEventTarget.js"],
"transform": { "transform": {
"^.+\\.ts?$": "ts-jest" "^.+\\.ts?$": "ts-jest"
}, },
+1
View File
@@ -40,6 +40,7 @@ function getConfigForFormat(format, generatedFileName, minified = false) {
name: name, name: name,
extend: extend, extend: extend,
outro: outro, outro: outro,
freeze: false,
plugins: minified ? [terser()] : [], plugins: minified ? [terser()] : [],
indent: ' ', // indent with 4 spaces indent: ' ', // indent with 4 spaces
}; };
+45
View File
@@ -0,0 +1,45 @@
import { Component } from "./component/component";
import { ComponentNode } from "./component/component_node";
import { Scheduler } from "./component/scheduler";
import { TemplateSet } from "./qweb/template_helpers";
// reimplement dev mode stuff see last change in 0f7a8289a6fb8387c3c1af41c6664b2a8448758f
export class App<T extends typeof Component = any> extends TemplateSet {
Root: T;
props: any;
env: any = {};
scheduler = new Scheduler(window.requestAnimationFrame.bind(window));
root: ComponentNode | null = null;
dev: boolean = true;
constructor(Root: T, props?: any) {
super();
this.Root = Root;
this.props = props;
}
configure(params: any) {
if (params.env) {
this.env = params.env;
}
}
mount(target: HTMLElement): Promise<InstanceType<T>> {
if (!(target instanceof HTMLElement)) {
throw new Error("Cannot mount component: the target is not a valid DOM element");
}
if (!document.body.contains(target)) {
throw new Error("Cannot mount a component on a detached dom node");
}
const node = new ComponentNode(this.Root, this.props, this);
this.root = node;
return node.mountComponent(target);
}
destroy() {
if (this.root) {
this.root.destroy();
}
}
}
+155
View File
@@ -0,0 +1,155 @@
import type { Setter } from "./block_compiler";
const { setAttribute, removeAttribute } = Element.prototype;
const tokenList = DOMTokenList.prototype;
const tokenListAdd = tokenList.add;
const tokenListRemove = tokenList.remove;
const isArray = Array.isArray;
const { split, trim } = String.prototype;
const wordRegexp = /\s+/;
/**
* We regroup here all code related to updating attributes in a very loose sense:
* attributes, properties and classs are all managed by the functions in this
* file.
*/
export function createAttrUpdater(attr: string): Setter<HTMLElement> {
return function (this: HTMLElement, value: any) {
if (value !== false) {
setAttribute.call(this, attr, value === true ? "" : value);
}
};
}
export function attrsSetter(this: HTMLElement, attrs: any) {
if (isArray(attrs)) {
setAttribute.call(this, attrs[0], attrs[1]);
} else {
for (let k in attrs) {
setAttribute.call(this, k, attrs[k]);
}
}
}
export function attrsUpdater(this: HTMLElement, attrs: any, oldAttrs: any) {
if (isArray(attrs)) {
const name = attrs[0];
const val = attrs[1];
if (name === oldAttrs[0]) {
if (val === oldAttrs[1]) {
return;
}
setAttribute.call(this, name, val);
} else {
removeAttribute.call(this, oldAttrs[0]);
setAttribute.call(this, name, val);
}
} else {
for (let k in oldAttrs) {
if (!(k in attrs)) {
removeAttribute.call(this, k);
}
}
for (let k in attrs) {
const val = attrs[k];
if (val !== oldAttrs[k]) {
setAttribute.call(this, k, val);
}
}
}
}
function toClassObj(expr: string | number | { [c: string]: any }) {
const result: { [c: string]: any } = {};
switch (typeof expr) {
case "string":
// we transform here a list of classes into an object:
// 'hey you' becomes {hey: true, you: true}
const str = trim.call(expr);
if (!str) {
return {};
}
let words = split.call(str, wordRegexp);
for (let i = 0, l = words.length; i < l; i++) {
result[words[i]] = true;
}
return result;
case "object":
// this is already an object but we may need to split keys:
// {'a': true, 'b c': true} should become {a: true, b: true, c: true}
for (let key in expr as any) {
const value = (expr as any)[key];
if (value) {
const words = split.call(key, wordRegexp);
for (let word of words) {
result[word] = value;
}
}
}
return result;
case "undefined":
return {};
case "number":
return { [expr as number]: true };
default:
return { [expr as any]: true };
}
}
export function setClass(this: HTMLElement, val: any) {
val = val === "" ? {} : toClassObj(val);
// add classes
const cl = this.classList;
for (let c in val) {
tokenListAdd.call(cl, c);
}
}
export function updateClass(this: HTMLElement, val: any, oldVal: any) {
oldVal = oldVal === "" ? {} : toClassObj(oldVal);
val = val === "" ? {} : toClassObj(val);
const cl = this.classList;
// remove classes
for (let c in oldVal) {
if (!(c in val)) {
tokenListRemove.call(cl, c);
}
}
// add classes
for (let c in val) {
if (!(c in oldVal)) {
tokenListAdd.call(cl, c);
}
}
}
export function makePropSetter(name: string): Setter<HTMLElement> {
return function setProp(this: HTMLElement, value: any) {
(this as any)[name] = value;
};
}
export function isProp(tag: string, key: string): boolean {
switch (tag) {
case "input":
return (
key === "checked" ||
key === "indeterminate" ||
key === "value" ||
key === "readonly" ||
key === "disabled"
);
case "option":
return key === "selected" || key === "disabled";
case "textarea":
return key === "readonly" || key === "disabled";
break;
case "button":
case "select":
case "optgroup":
return key === "disabled";
}
return false;
}
+602
View File
@@ -0,0 +1,602 @@
import {
attrsSetter,
attrsUpdater,
createAttrUpdater,
isProp,
makePropSetter,
setClass,
updateClass,
} from "./attributes";
import { config } from "./config";
import { createEventHandler } from "./events";
import type { VNode } from "./index";
import { VMulti } from "./multi";
import { toText } from "./text";
const getDescriptor = (o: any, p: any) => Object.getOwnPropertyDescriptor(o, p)!;
const nodeProto = Node.prototype;
const elementProto = Element.prototype;
const characterDataProto = CharacterData.prototype;
const characterDataSetData = getDescriptor(characterDataProto, "data").set!;
const nodeGetFirstChild = getDescriptor(nodeProto, "firstChild").get!;
const nodeGetNextSibling = getDescriptor(nodeProto, "nextSibling").get!;
const NO_OP = () => {};
// -----------------------------------------------------------------------------
// Main compiler code
// -----------------------------------------------------------------------------
type BlockType = (data?: any[], children?: VNode[]) => VNode;
const cache: { [key: string]: BlockType } = {};
/**
* Compiling blocks is a multi-step process:
*
* 1. build an IntermediateTree from the HTML element. This intermediate tree
* is a binary tree structure that encode dynamic info sub nodes, and the
* path required to reach them
* 2. process the tree to build a block context, which is an object that aggregate
* all dynamic info in a list, and also, all ref indexes.
* 3. process the context to build appropriate builder/setter functions
* 4. make a dynamic block class, which will efficiently collect references and
* create/update dynamic locations/children
*
* @param str
* @returns a new block type, that can build concrete blocks
*/
export function createBlock(str: string): BlockType {
if (str in cache) {
return cache[str];
}
// step 0: prepare html base element
const doc = new DOMParser().parseFromString(`<t>${str}</t>`, "text/xml");
const node = doc.firstChild!.firstChild!;
if (config.shouldNormalizeDom) {
normalizeNode(node as any);
}
// step 1: prepare intermediate tree
const tree = buildTree(node);
// step 2: prepare block context
const context = buildContext(tree);
// step 3: build the final block class
const template = tree.el as HTMLElement;
const Block = buildBlock(template, context);
cache[str] = Block;
return Block;
}
// -----------------------------------------------------------------------------
// Helper
// -----------------------------------------------------------------------------
function normalizeNode(node: HTMLElement | Text) {
if (node.nodeType === Node.TEXT_NODE) {
if (!/\S/.test((node as Text).textContent!)) {
(node as Text).remove();
return;
}
}
if (node.nodeType === Node.ELEMENT_NODE) {
if ((node as HTMLElement).tagName === "pre") {
return;
}
}
for (let i = node.childNodes.length - 1; i >= 0; --i) {
normalizeNode(node.childNodes.item(i) as any);
}
}
// -----------------------------------------------------------------------------
// building a intermediate tree
// -----------------------------------------------------------------------------
interface DynamicInfo {
idx: number;
refIdx?: number;
type: "text" | "child" | "handler" | "attribute" | "attributes" | "ref";
isOnlyChild?: boolean;
name?: string;
tag?: string;
event?: string;
}
interface IntermediateTree {
parent: IntermediateTree | null;
firstChild: IntermediateTree | null;
nextSibling: IntermediateTree | null;
el: Node;
info: DynamicInfo[];
forceRef?: boolean;
refIdx?: number;
refN: number;
}
function buildTree(
node: Node,
parent: IntermediateTree | null = null,
domParentTree: IntermediateTree | null = null
): IntermediateTree {
switch (node.nodeType) {
case 1: {
// HTMLElement
let isActive = false;
const tagName = (node as Element).tagName;
let el: Node | undefined = undefined;
const info: DynamicInfo[] = [];
if (tagName.startsWith("block-text-")) {
const index = parseInt(tagName.slice(11), 10);
info.push({ type: "text", idx: index });
el = document.createTextNode("");
isActive = true;
}
if (tagName.startsWith("block-child-")) {
domParentTree!.forceRef = true;
const index = parseInt(tagName.slice(12), 10);
info.push({ type: "child", idx: index });
el = document.createTextNode("");
isActive = true;
}
if (!el) {
el = document.createElement(tagName);
}
if (el instanceof HTMLElement) {
const attrs = (node as Element).attributes;
for (let i = 0; i < attrs.length; i++) {
const attrName = attrs[i].name;
const attrValue = attrs[i].value;
if (attrName.startsWith("block-handler-")) {
isActive = true;
const idx = parseInt(attrName.slice(14), 10);
info.push({
type: "handler",
idx,
event: attrValue,
});
} else if (attrName.startsWith("block-attribute-")) {
isActive = true;
const idx = parseInt(attrName.slice(16), 10);
info.push({
type: "attribute",
idx,
name: attrValue,
tag: tagName,
});
} else if (attrName === "block-attributes") {
isActive = true;
info.push({
type: "attributes",
idx: parseInt(attrValue, 10),
});
} else if (attrName === "block-ref") {
isActive = true;
info.push({
type: "ref",
idx: parseInt(attrValue, 10),
});
} else {
el.setAttribute(attrs[i].name, attrValue);
}
}
}
const tree: IntermediateTree = {
parent,
firstChild: null,
nextSibling: null,
el,
info,
refN: isActive ? 1 : 0,
};
if (node.firstChild) {
const childNode = node.childNodes[0];
if (
node.childNodes.length === 1 &&
childNode.nodeType === 1 &&
(childNode as Element).tagName.startsWith("block-child-")
) {
const tagName = (childNode as Element).tagName;
const index = parseInt(tagName.slice(12), 10);
info.push({ idx: index, type: "child", isOnlyChild: true });
isActive = true;
tree.refN = 1;
} else {
tree.firstChild = buildTree(node.firstChild, tree, tree);
el.appendChild(tree.firstChild.el);
let curNode: Node | null = node.firstChild;
let curTree: IntermediateTree | null = tree.firstChild;
while ((curNode = curNode.nextSibling)) {
curTree.nextSibling = buildTree(curNode, curTree, tree);
el.appendChild(curTree.nextSibling.el);
curTree = curTree.nextSibling;
}
}
}
if (isActive) {
let cur: IntermediateTree | null = tree;
while ((cur = cur.parent)) {
cur.refN++;
}
}
return tree;
}
case 3:
case 8: {
// text node or comment node
const el =
node.nodeType === 3
? document.createTextNode(node.textContent!)
: document.createComment(node.textContent!);
return {
parent: parent,
firstChild: null,
nextSibling: null,
el,
info: [],
refN: 0,
};
}
}
throw new Error("boom");
}
function parentTree(tree: IntermediateTree): IntermediateTree | null {
let parent = tree.parent;
while (parent && parent.nextSibling === tree) {
tree = parent;
parent = parent.parent;
}
return parent;
}
// -----------------------------------------------------------------------------
// Building a block context
// -----------------------------------------------------------------------------
interface RefCollector {
idx: number;
prevIdx: number;
getVal: Function;
}
export type Setter<T = any> = (this: T, value: any) => void;
export type Updater<T = any> = (this: T, value: any, oldVal: any) => void;
interface Location {
refIdx: number;
setData: Setter;
updateData: Updater;
}
interface IndexedLocation extends Location {
idx: number;
}
interface Child {
parentRefIdx: number;
afterRefIdx?: number;
isOnlyChild?: boolean;
}
interface BlockCtx {
refN: number;
collectors: RefCollector[];
locations: IndexedLocation[];
children: Child[];
cbRefs: number[];
}
function buildContext(
tree: IntermediateTree,
ctx?: BlockCtx,
fromIdx?: number,
toIdx?: number
): BlockCtx {
if (!ctx) {
const children = new Array(tree.info.filter((v) => v.type === "child").length);
ctx = { collectors: [], locations: [], children, cbRefs: [], refN: tree.refN };
fromIdx = 0;
toIdx = tree.refN - 1;
}
if (tree.refN) {
const initialIdx = fromIdx!;
const isRef = tree.forceRef || tree.info.length > 0;
const firstChild = tree.firstChild ? tree.firstChild.refN : 0;
const nextSibling = tree.nextSibling ? tree.nextSibling.refN : 0;
//node
if (isRef) {
for (let info of tree.info) {
info.refIdx = initialIdx!;
}
tree.refIdx = initialIdx!;
updateCtx(ctx, tree);
fromIdx!++;
}
// right
if (nextSibling) {
const idx = fromIdx! + firstChild;
ctx.collectors.push({ idx, prevIdx: initialIdx, getVal: nodeGetNextSibling });
buildContext(tree.nextSibling!, ctx, idx, toIdx);
}
// left
if (firstChild) {
ctx.collectors.push({ idx: fromIdx!, prevIdx: initialIdx, getVal: nodeGetFirstChild });
buildContext(tree.firstChild!, ctx, fromIdx!, toIdx! - nextSibling);
}
}
return ctx;
}
function updateCtx(ctx: BlockCtx, tree: IntermediateTree) {
for (let info of tree.info) {
switch (info.type) {
case "text":
ctx.locations.push({
idx: info.idx,
refIdx: info.refIdx!,
setData: setText,
updateData: setText,
});
break;
case "child":
if (info.isOnlyChild) {
// tree is the parentnode here
ctx.children[info.idx] = {
parentRefIdx: info.refIdx!,
isOnlyChild: true,
};
} else {
// tree is the anchor text node
ctx.children[info.idx] = {
parentRefIdx: parentTree(tree)!.refIdx!,
afterRefIdx: info.refIdx!,
};
}
break;
case "attribute": {
const refIdx = info.refIdx!;
let updater: any;
let setter: any;
if (isProp(info.tag!, info.name!)) {
const setProp = makePropSetter(info.name!);
setter = setProp;
updater = setProp;
} else if (info.name === "class") {
setter = setClass;
updater = updateClass;
} else {
setter = createAttrUpdater(info.name!);
updater = setter;
}
ctx.locations.push({
idx: info.idx,
refIdx,
setData: setter,
updateData: updater,
});
break;
}
case "attributes":
ctx.locations.push({
idx: info.idx,
refIdx: info.refIdx!,
setData: attrsSetter,
updateData: attrsUpdater,
});
break;
case "handler": {
const setupHandler = createEventHandler(info.event!);
ctx.locations.push({
idx: info.idx,
refIdx: info.refIdx!,
setData: setupHandler,
updateData: setupHandler,
});
break;
}
case "ref":
ctx.cbRefs.push(info.idx);
ctx.locations.push({
idx: info.idx,
refIdx: info.refIdx!,
setData: setRef,
updateData: NO_OP,
});
}
}
}
// -----------------------------------------------------------------------------
// building the concrete block class
// -----------------------------------------------------------------------------
function buildBlock(template: HTMLElement, ctx: BlockCtx): BlockType {
let B = createBlockClass(template, ctx);
if (ctx.cbRefs.length) {
const refs = ctx.cbRefs;
B = class extends B {
remove() {
super.remove();
for (let ref of refs) {
let fn = (this as any).data[ref];
fn(null);
}
}
};
}
if (ctx.children.length) {
B = class extends B {
children: (VNode | undefined)[] | undefined;
constructor(data?: any[], children?: VNode[]) {
super(data);
this.children = children;
}
};
B.prototype.beforeRemove = VMulti.prototype.beforeRemove;
return (data?: any[], children: (VNode | undefined)[] = []) => new B(data, children);
}
return (data?: any[]) => new B(data);
}
type Constructor<T> = new (...args: any[]) => T;
type BlockClass = Constructor<VNode<any>>;
function createBlockClass(template: HTMLElement, ctx: BlockCtx): BlockClass {
const { refN, collectors, children } = ctx;
const colN = collectors.length;
ctx.locations.sort((a, b) => a.idx - b.idx);
const locations: Location[] = ctx.locations.map((loc) => ({
refIdx: loc.refIdx,
setData: loc.setData,
updateData: loc.updateData,
}));
const locN = locations.length;
const childN = children.length;
const childrenLocs = children;
const isDynamic = refN > 0;
// these values are defined here to make them faster to lookup in the class
// block scope
const nodeCloneNode = nodeProto.cloneNode;
const nodeInsertBefore = nodeProto.insertBefore;
const elementRemove = elementProto.remove;
return class Block {
el: HTMLElement | undefined;
refs: Node[] | undefined;
data: any[] | undefined;
parentEl?: HTMLElement | undefined;
children?: (VNode | undefined)[];
constructor(data?: any[]) {
this.data = data;
}
beforeRemove() {}
remove() {
elementRemove.call(this.el);
}
firstNode(): Node {
return this.el!;
}
moveBefore(other: Block | null, afterNode: Node | null) {
const target = other ? other.el! : afterNode;
nodeInsertBefore.call(this.parentEl, this.el!, target);
}
mount(parent: HTMLElement, afterNode: Node | null) {
const el = nodeCloneNode.call(template, true);
nodeInsertBefore.call(parent, el, afterNode);
if (isDynamic) {
// collecting references
const refs: Node[] = new Array(refN);
this.refs = refs;
refs[0] = el;
for (let i = 0; i < colN; i++) {
const w = collectors[i];
refs[w.idx] = w.getVal.call(refs[w.prevIdx]);
}
// applying data to all update points
if (locN) {
const data = this.data!;
for (let i = 0; i < locN; i++) {
const loc = locations[i];
loc.setData.call(refs[loc.refIdx], data[i]);
}
}
// preparing all children
if (childN) {
const children = this.children;
for (let i = 0; i < childN; i++) {
const child = children![i];
if (child) {
const loc = childrenLocs[i];
const afterNode = loc.afterRefIdx ? refs[loc.afterRefIdx] : null;
child.isOnlyChild = loc.isOnlyChild;
child.mount(refs[loc.parentRefIdx] as any, afterNode);
}
}
}
}
this.el = el as HTMLElement;
this.parentEl = parent;
}
patch(other: Block, withBeforeRemove: boolean) {
if (this === other) {
return;
}
const refs = this.refs!;
// update texts/attributes/
if (locN) {
const data1 = this.data!;
const data2 = other.data!;
for (let i = 0; i < locN; i++) {
const val1 = data1[i];
const val2 = data2[i];
if (val1 !== val2) {
const loc = locations[i];
loc.updateData.call(refs[loc.refIdx], val2, val1);
}
}
this.data = data2;
}
// update children
if (childN) {
let children1 = this.children;
const children2 = other.children;
for (let i = 0; i < childN; i++) {
const child1 = children1![i];
const child2 = children2![i];
if (child1) {
if (child2) {
child1.patch(child2, withBeforeRemove);
} else {
if (withBeforeRemove) {
child1.beforeRemove();
}
child1.remove();
children1![i] = undefined;
}
} else if (child2) {
const loc = childrenLocs[i];
const afterNode = loc.afterRefIdx ? refs[loc.afterRefIdx] : null;
child2.mount(refs[loc.parentRefIdx] as any, afterNode);
children1![i] = child2;
}
}
}
}
toString() {
const div = document.createElement("div");
this.mount(div, null);
return div.innerHTML;
}
};
}
function setText(this: Text, value: any) {
characterDataSetData.call(this, toText(value));
}
function setRef(this: HTMLElement, fn: any) {
fn(this);
}
+16
View File
@@ -0,0 +1,16 @@
export const config = {
// whether or not blockdom should normalize DOM whenever a block is created.
// Normalizing dom mean removing empty text nodes (or containing only spaces)
shouldNormalizeDom: true,
// this is the main event handler. Every event handler registered with blockdom
// will go through this function, giving it the data registered in the block
// and the event
mainEventHandler: (data: any, ev: Event) => {
if (typeof data === "function") {
data(ev);
} else if (Array.isArray(data)) {
data[0](data[1], ev);
}
},
};
+32
View File
@@ -0,0 +1,32 @@
import { config } from "./config";
export function createEventHandler(event: string) {
setupSyntheticEvent(event);
const key = `__event__${event}`;
return function setupHandler(this: HTMLElement, data: any) {
(this as any)[key] = data;
};
}
function nativeToSyntheticEvent(event: Event, name: string) {
const eventKey = `__event__${name}`;
let dom = event.target;
while (dom !== null) {
const data = (dom as any)[eventKey];
if (data) {
config.mainEventHandler(data, event);
return;
}
dom = (dom as any).parentNode;
}
}
const CONFIGURED_SYNTHETIC_EVENTS: { [event: string]: boolean } = {};
function setupSyntheticEvent(name: string) {
if (CONFIGURED_SYNTHETIC_EVENTS[name]) {
return;
}
document.addEventListener(name, (event) => nativeToSyntheticEvent(event, name));
CONFIGURED_SYNTHETIC_EVENTS[name] = true;
}
+87
View File
@@ -0,0 +1,87 @@
import type { VNode } from "./index";
const nodeProto = Node.prototype;
const nodeInsertBefore = nodeProto.insertBefore;
const nodeRemoveChild = nodeProto.removeChild;
class VHtml {
html: string;
parentEl?: HTMLElement | undefined;
content: ChildNode[] = [];
constructor(html: string) {
this.html = html;
}
mount(parent: HTMLElement, afterNode: Node | null) {
this.parentEl = parent;
const template = document.createElement("template");
template.innerHTML = this.html;
this.content = [...(template.content.childNodes as any)];
for (let elem of this.content) {
nodeInsertBefore.call(parent, elem, afterNode);
}
if (!this.content.length) {
const textNode = document.createTextNode("");
this.content.push(textNode);
nodeInsertBefore.call(parent, textNode, afterNode);
}
}
moveBefore(other: VHtml | null, afterNode: Node | null) {
const target = other ? other.content[0] : afterNode;
const parent = this.parentEl;
for (let elem of this.content) {
nodeInsertBefore.call(parent, elem, target);
}
}
patch(other: VHtml) {
if (this === other) {
return;
}
const html2 = other.html;
if (this.html !== html2) {
const parent = this.parentEl;
// insert new html in front of current
const afterNode = this.content[0];
const template = document.createElement("template");
template.innerHTML = html2;
const content = [...(template.content.childNodes as any)];
for (let elem of content) {
nodeInsertBefore.call(parent, elem, afterNode);
}
if (!content.length) {
const textNode = document.createTextNode("");
content.push(textNode);
nodeInsertBefore.call(parent, textNode, afterNode);
}
// remove current content
this.remove();
this.content = content;
}
}
beforeRemove() {}
remove() {
const parent = this.parentEl;
for (let elem of this.content) {
nodeRemoveChild.call(parent, elem);
}
}
firstNode(): Node {
return this.content[0]!;
}
toString() {
return this.html;
}
}
export function html(str: string): VNode<VHtml> {
return new VHtml(str);
}
+44
View File
@@ -0,0 +1,44 @@
export { config } from "./config";
export { toggler } from "./toggler";
export { createBlock } from "./block_compiler";
export { list } from "./list";
export { multi } from "./multi";
export { text } from "./text";
export { html } from "./html";
export interface VNode<T = any> {
mount(parent: HTMLElement, afterNode: Node | null): void;
moveBefore(other: T | null, afterNode: Node | null): void;
patch(other: T, withBeforeRemove: boolean): void;
beforeRemove(): void;
remove(): void;
firstNode(): Node | undefined;
el?: undefined | HTMLElement | Text;
parentEl?: undefined | HTMLElement;
isOnlyChild?: boolean | undefined;
key?: any;
}
export type BDom = VNode<any>;
export function mount(vnode: VNode, fixture: HTMLElement) {
vnode.mount(fixture, null);
}
export function patch(vnode1: VNode, vnode2: VNode, withBeforeRemove: boolean = false) {
vnode1.patch(vnode2, withBeforeRemove);
}
export function remove(vnode: VNode, withBeforeRemove: boolean = false) {
if (withBeforeRemove) {
vnode.beforeRemove();
}
vnode.remove();
}
export function withKey(vnode: VNode, key: any) {
vnode.key = key;
return vnode;
}
+240
View File
@@ -0,0 +1,240 @@
import type { VNode } from "./index";
const getDescriptor = (o: any, p: any) => Object.getOwnPropertyDescriptor(o, p)!;
const nodeProto = Node.prototype;
const nodeInsertBefore = nodeProto.insertBefore;
const nodeAppendChild = nodeProto.appendChild;
const nodeRemoveChild = nodeProto.removeChild;
const nodeSetTextContent = getDescriptor(nodeProto, "textContent").set!;
// -----------------------------------------------------------------------------
// List Node
// -----------------------------------------------------------------------------
class VList {
children: VNode[];
anchor: Node | undefined;
parentEl?: HTMLElement | undefined;
isOnlyChild?: boolean | undefined;
constructor(children: VNode[]) {
this.children = children;
}
mount(parent: HTMLElement, afterNode: Node | null) {
const children = this.children;
const _anchor = document.createTextNode("");
this.anchor = _anchor;
nodeInsertBefore.call(parent, _anchor, afterNode);
const l = children.length;
if (l) {
const mount = children[0].mount;
for (let i = 0; i < l; i++) {
mount.call(children[i], parent, _anchor);
}
}
this.parentEl = parent;
}
moveBefore(other: VList | null, afterNode: Node | null) {
if (other) {
const next = other!.children[0];
afterNode = (next ? next.firstNode() : other!.anchor) || null;
}
const children = this.children;
for (let i = 0, l = children.length; i < l; i++) {
children[i].moveBefore(null, afterNode);
}
this.parentEl!.insertBefore(this.anchor!, afterNode);
}
patch(other: VList, withBeforeRemove: boolean) {
if (this === other) {
return;
}
const ch1 = this.children;
const ch2: VNode[] = other.children;
if (ch2.length === 0 && ch1.length === 0) {
return;
}
this.children = ch2;
const proto = ch2[0] || ch1[0];
const {
mount: cMount,
patch: cPatch,
remove: cRemove,
beforeRemove,
moveBefore: cMoveBefore,
firstNode: cFirstNode,
} = proto;
const _anchor = this.anchor!;
const isOnlyChild = this.isOnlyChild;
const parent = this.parentEl!;
// fast path: no new child => only remove
if (ch2.length === 0 && isOnlyChild) {
if (withBeforeRemove) {
for (let i = 0, l = ch1.length; i < l; i++) {
beforeRemove.call(ch1[i]);
}
}
nodeSetTextContent.call(parent, "");
nodeAppendChild.call(parent, _anchor);
return;
}
let startIdx1 = 0;
let startIdx2 = 0;
let startVn1 = ch1[0];
let startVn2 = ch2[0];
let endIdx1 = ch1.length - 1;
let endIdx2 = ch2.length - 1;
let endVn1 = ch1[endIdx1];
let endVn2 = ch2[endIdx2];
let mapping: any = undefined;
// let noFullRemove = this.hasNoComponent;
while (startIdx1 <= endIdx1 && startIdx2 <= endIdx2) {
// -------------------------------------------------------------------
if (startVn1 === null) {
startVn1 = ch1[++startIdx1];
continue;
}
// -------------------------------------------------------------------
if (endVn1 === null) {
endVn1 = ch1[--endIdx1];
continue;
}
// -------------------------------------------------------------------
let startKey1 = startVn1.key;
let startKey2 = startVn2.key;
if (startKey1 === startKey2) {
cPatch.call(startVn1, startVn2, withBeforeRemove);
ch2[startIdx2] = startVn1;
startVn1 = ch1[++startIdx1];
startVn2 = ch2[++startIdx2];
continue;
}
// -------------------------------------------------------------------
let endKey1 = endVn1.key;
let endKey2 = endVn2.key;
if (endKey1 === endKey2) {
cPatch.call(endVn1, endVn2, withBeforeRemove);
ch2[endIdx2] = endVn1;
endVn1 = ch1[--endIdx1];
endVn2 = ch2[--endIdx2];
continue;
}
// -------------------------------------------------------------------
if (startKey1 === endKey2) {
// bnode moved right
cPatch.call(startVn1, endVn2, withBeforeRemove);
ch2[endIdx2] = startVn1;
const nextChild = ch2[endIdx2 + 1];
cMoveBefore.call(startVn1, nextChild, _anchor);
startVn1 = ch1[++startIdx1];
endVn2 = ch2[--endIdx2];
continue;
}
// -------------------------------------------------------------------
if (endKey1 === startKey2) {
// bnode moved left
cPatch.call(endVn1, startVn2, withBeforeRemove);
ch2[startIdx2] = endVn1;
const nextChild = ch1[startIdx1];
cMoveBefore.call(endVn1, nextChild, _anchor);
endVn1 = ch1[--endIdx1];
startVn2 = ch2[++startIdx2];
continue;
}
// -------------------------------------------------------------------
mapping = mapping || createMapping(ch1, startIdx1, endIdx1);
let idxInOld = mapping[startKey2];
if (idxInOld === undefined) {
cMount.call(startVn2, parent, cFirstNode.call(startVn1) || null);
} else {
const elmToMove = ch1[idxInOld];
cMoveBefore.call(elmToMove, startVn1, null);
cPatch.call(elmToMove, startVn2, withBeforeRemove);
ch2[startIdx2] = elmToMove;
ch1[idxInOld] = null as any;
}
startVn2 = ch2[++startIdx2];
}
// ---------------------------------------------------------------------
if (startIdx1 <= endIdx1 || startIdx2 <= endIdx2) {
if (startIdx1 > endIdx1) {
const nextChild = ch2[endIdx2 + 1];
const anchor = nextChild ? cFirstNode.call(nextChild) || null : _anchor;
for (let i = startIdx2; i <= endIdx2; i++) {
cMount.call(ch2[i], parent, anchor);
}
} else {
for (let i = startIdx1; i <= endIdx1; i++) {
let ch = ch1[i];
if (ch) {
if (withBeforeRemove) {
beforeRemove.call(ch);
}
cRemove.call(ch);
}
}
}
}
}
beforeRemove() {
const children = this.children;
const l = children.length;
if (l) {
const beforeRemove = children[0].beforeRemove;
for (let i = 0; i < l; i++) {
beforeRemove.call(children[i]);
}
}
}
remove() {
const { parentEl, anchor } = this;
if (this.isOnlyChild) {
nodeSetTextContent.call(parentEl, "");
} else {
const children = this.children;
const l = children.length;
if (l) {
const remove = children[0].remove;
for (let i = 0; i < l; i++) {
remove.call(children[i]);
}
}
nodeRemoveChild.call(parentEl, anchor!);
}
}
firstNode(): Node | undefined {
const child = this.children[0];
return child ? child.firstNode() : undefined;
}
toString(): string {
return this.children.map((c) => c!.toString()).join("");
}
}
export function list(children: VNode[]): VNode<VList> {
return new VList(children);
}
function createMapping(ch1: any[], startIdx1: number, endIdx2: number): { [key: string]: any } {
let mapping: any = {};
for (let i = startIdx1; i <= endIdx2; i++) {
mapping[ch1[i].key] = i;
}
return mapping;
}
+134
View File
@@ -0,0 +1,134 @@
import type { VNode } from "./index";
const getDescriptor = (o: any, p: any) => Object.getOwnPropertyDescriptor(o, p)!;
const nodeProto = Node.prototype;
const nodeInsertBefore = nodeProto.insertBefore;
const nodeSetTextContent = getDescriptor(nodeProto, "textContent").set!;
const nodeRemoveChild = nodeProto.removeChild;
// -----------------------------------------------------------------------------
// Multi NODE
// -----------------------------------------------------------------------------
export class VMulti {
children: (VNode | undefined)[];
anchors?: Node[] | undefined;
parentEl?: HTMLElement | undefined;
isOnlyChild?: boolean | undefined;
constructor(children: (VNode | undefined)[]) {
this.children = children;
}
mount(parent: HTMLElement, afterNode: Node | null) {
const children = this.children;
const l = children.length;
const anchors = new Array(l);
for (let i = 0; i < l; i++) {
let child = children[i];
if (child) {
child.mount(parent, afterNode);
} else {
const childAnchor = document.createTextNode("");
anchors[i] = childAnchor;
nodeInsertBefore.call(parent, childAnchor, afterNode);
}
}
this.anchors = anchors;
this.parentEl = parent;
}
moveBefore(other: VMulti | null, afterNode: Node | null) {
if (other) {
const next = other!.children[0];
afterNode = (next ? next.firstNode() : other!.anchors![0]) || null;
}
const children = this.children;
const parent = this.parentEl;
const anchors = this.anchors;
for (let i = 0, l = children.length; i < l; i++) {
let child = children[i];
if (child) {
child.moveBefore(null, afterNode);
} else {
const anchor = anchors![i];
nodeInsertBefore.call(parent, anchor, afterNode);
}
}
}
patch(other: VMulti, withBeforeRemove: boolean) {
if (this === other) {
return;
}
const children1 = this.children;
const children2 = other.children;
const anchors = this.anchors!;
const parentEl = this.parentEl!;
for (let i = 0, l = children1.length; i < l; i++) {
const vn1 = children1[i];
const vn2 = children2[i];
if (vn1) {
if (vn2) {
vn1.patch(vn2, withBeforeRemove);
} else {
const afterNode = vn1.firstNode()!;
const anchor = document.createTextNode("");
anchors[i] = anchor;
nodeInsertBefore.call(parentEl, anchor, afterNode);
if (withBeforeRemove) {
vn1.beforeRemove();
}
vn1.remove();
children1[i] = undefined;
}
} else if (vn2) {
children1[i] = vn2;
const anchor = anchors[i];
vn2.mount(parentEl, anchor);
nodeRemoveChild.call(parentEl, anchor);
}
}
}
beforeRemove() {
const children = this.children;
for (let i = 0, l = children.length; i < l; i++) {
const child = children[i];
if (child) {
child.beforeRemove();
}
}
}
remove() {
const parentEl = this.parentEl;
if (this.isOnlyChild) {
nodeSetTextContent.call(parentEl, "");
} else {
const children = this.children;
const anchors = this.anchors;
for (let i = 0, l = children.length; i < l; i++) {
const child = children[i];
if (child) {
child.remove();
} else {
nodeRemoveChild.call(parentEl, anchors![i]);
}
}
}
}
firstNode(): Node | undefined {
const child = this.children[0];
return child ? child.firstNode() : this.anchors![0];
}
toString(): string {
return this.children.map((c) => c!.toString()).join("");
}
}
export function multi(children: (VNode | undefined)[]): VNode<VMulti> {
return new VMulti(children);
}
+70
View File
@@ -0,0 +1,70 @@
import type { VNode } from "./index";
const getDescriptor = (o: any, p: any) => Object.getOwnPropertyDescriptor(o, p)!;
const nodeProto = Node.prototype;
const characterDataProto = CharacterData.prototype;
const nodeInsertBefore = nodeProto.insertBefore;
const characterDataSetData = getDescriptor(characterDataProto, "data").set!;
const nodeRemoveChild = nodeProto.removeChild;
class VText {
text: string;
parentEl?: HTMLElement | undefined;
el?: Text;
constructor(text: string) {
this.text = text;
}
mount(parent: HTMLElement, afterNode: Node | null) {
this.parentEl = parent;
const node = document.createTextNode(toText(this.text));
nodeInsertBefore.call(parent, node, afterNode);
this.el = node;
}
moveBefore(other: VText | null, afterNode: Node | null) {
const target = other ? other.el! : afterNode;
nodeInsertBefore.call(this.parentEl, this.el!, target);
}
patch(other: VText) {
const text2 = other.text;
if (this.text !== text2) {
characterDataSetData.call(this.el!, toText(text2));
this.text = text2;
}
}
beforeRemove() {}
remove() {
nodeRemoveChild.call(this.parentEl, this.el!);
}
firstNode(): Node {
return this.el!;
}
toString() {
return this.text;
}
}
export function text(str: string): VNode<VText> {
return new VText(str);
}
export function toText(value: any): string {
switch (typeof value) {
case "string":
return value;
case "number":
return String(value);
case "boolean":
return value ? "true" : "false";
default:
return value || "";
}
}
+63
View File
@@ -0,0 +1,63 @@
import type { VNode } from "./index";
// -----------------------------------------------------------------------------
// Toggler node
// -----------------------------------------------------------------------------
class VToggler {
key: string;
child: VNode;
parentEl?: HTMLElement | undefined;
constructor(key: string, child: VNode) {
this.key = key;
this.child = child;
}
mount(parent: HTMLElement, afterNode: Node | null) {
this.parentEl = parent;
this.child.mount(parent, afterNode);
}
moveBefore(other: VToggler | null, afterNode: Node | null) {
this.child.moveBefore(other ? other.child : null, afterNode);
}
patch(other: VToggler, withBeforeRemove: boolean) {
if (this === other) {
return;
}
let child1 = this.child;
let child2 = other.child;
if (this.key === other.key) {
child1.patch(child2, withBeforeRemove);
} else {
child2.mount(this.parentEl!, child1.firstNode()!);
if (withBeforeRemove) {
child1.beforeRemove();
}
child1.remove();
this.child = child2;
this.key = other.key;
}
}
beforeRemove() {}
remove() {
this.child.remove();
}
firstNode(): Node | undefined {
return this.child.firstNode();
}
toString(): string {
return this.child.toString();
}
}
export function toggler(key: string, child: VNode): VNode<VToggler> {
return new VToggler(key, child);
}
-30
View File
@@ -1,30 +0,0 @@
export interface Browser {
setTimeout: Window["setTimeout"];
clearTimeout: Window["clearTimeout"];
setInterval: Window["setInterval"];
clearInterval: Window["clearInterval"];
requestAnimationFrame: Window["requestAnimationFrame"];
random: Math["random"];
Date: typeof Date;
fetch: Window["fetch"];
localStorage: Window["localStorage"];
}
let localStorage: Window["localStorage"] | null = null;
export const browser: Browser = {
setTimeout: window.setTimeout.bind(window),
clearTimeout: window.clearTimeout.bind(window),
setInterval: window.setInterval.bind(window),
clearInterval: window.clearInterval.bind(window),
requestAnimationFrame: window.requestAnimationFrame.bind(window),
random: Math.random,
Date: window.Date,
fetch: (window.fetch || (() => {})).bind(window),
get localStorage() {
return localStorage || window.localStorage;
},
set localStorage(newLocalStorage: Window["localStorage"]) {
localStorage = newLocalStorage;
},
};
+19 -771
View File
@@ -1,781 +1,29 @@
import { Observer } from "../core/observer"; import type { ComponentNode } from "./component_node";
import { OwlEvent } from "../core/owl_event";
import { CompiledTemplate, QWeb } from "../qweb/index";
import { patch, VNode } from "../vdom/index";
import "./directive";
import { Fiber } from "./fiber";
import "./props_validation";
import { Scheduler, scheduler } from "./scheduler";
import { activateSheet } from "./styles";
import { Browser, browser } from "../browser";
/** // -----------------------------------------------------------------------------
* Owl Component System // Component Class
* // -----------------------------------------------------------------------------
* This file introduces a declarative and composable component system. It
* contains:
*
* - the Env interface (generic type for the environment)
* - the Internal interface (the owl specific metadata attached to a component)
* - the Component class
*/
//------------------------------------------------------------------------------ export class Component {
// Types/helpers static template: string = "";
//------------------------------------------------------------------------------
/** props: any;
* An Env (environment) is an object that will be (mostly) shared between all env: any;
* components of an Owl application. It is the location which should contain __owl__: ComponentNode;
* the qweb instance necessary to render all components.
*
* Note that it is totally fine to extend the environment with application
* specific keys/objects/whatever. For example, a key `isMobile` (to declare
* if we are in "mobile" mode), or a shared bus could be useful.
*/
export interface Env {
qweb: QWeb;
browser: Browser;
}
export type MountPosition = "first-child" | "last-child" | "self"; constructor(props: any, env: any, node: ComponentNode) {
this.props = props;
interface MountOptions { this.env = env;
position?: MountPosition; this.__owl__ = node;
} }
get el(): HTMLElement | Text | undefined {
export const enum STATUS { const node = this.__owl__;
CREATED, return node.bdom ? (node.bdom.firstNode() as any) : undefined;
WILLSTARTED, // willstart has been called
RENDERED, // first render is completed (so, vnode is now defined)
MOUNTED, // is ready, and in DOM. It has a valid el
UNMOUNTED, // has a valid el, but is not in DOM
DESTROYED,
}
/**
* This is mostly an internal detail of implementation. The Meta interface is
* useful to typecheck and describe the internal keys used by Owl to manage the
* component tree.
*/
interface Internal<T extends Env> {
// each component has a unique id, useful mostly to handle parent/child
// relationships
readonly id: number;
depth: number;
vnode: VNode | null;
pvnode: VNode | null;
status: STATUS;
// parent and children keys are obviously useful to setup the parent-children
// relationship.
parent: Component<any, T> | null;
children: { [key: number]: Component<any, T> };
// children mapping: from templateID to componentID. templateID identifies a
// place in a template. The t-component directive needs it to be able to get
// the component instance back whenever the template is rerendered.
cmap: { [key: number]: number };
currentFiber: Fiber | null;
// parentLastFiberId is there to help the parent component to detect, among
// its children, those that are not used anymore and thus can be destroyed
parentLastFiberId: number;
// when a rendering is initiated by a parent, it may set variables in 'scope'
// (typically when the component is rendered in a slot). We need to
// store that information in case the component would be re-rendered later on.
scope: any;
boundHandlers: { [key: number]: any };
observer: Observer | null;
renderFn: CompiledTemplate;
mountedCB: Function | null;
willUnmountCB: Function | null;
willPatchCB: Function | null;
patchedCB: Function | null;
willStartCB: Function | null;
willUpdatePropsCB: Function | null;
classObj: { [key: string]: boolean } | null;
refs: { [key: string]: Component<any, T> | HTMLElement | undefined } | null;
}
export const portalSymbol = Symbol("portal"); // FIXME
//------------------------------------------------------------------------------
// Component
//------------------------------------------------------------------------------
let nextId = 1;
export class Component<Props extends {} = any, T extends Env = Env> {
readonly __owl__: Internal<T>;
static template?: string | null = null;
static _template?: string | null = null;
static current: Component | null = null;
static components = {};
static props?: any;
static defaultProps?: any;
static env: any = {};
// expose scheduler s.t. it can be mocked for testing purposes
static scheduler: Scheduler = scheduler;
/**
* The `el` is the root element of the component. Note that it could be null:
* this is the case if the component is not mounted yet, or is destroyed.
*/
get el(): HTMLElement | null {
return this.__owl__.vnode ? (<any>this).__owl__.vnode.elm : null;
} }
env: T;
props: Props;
//--------------------------------------------------------------------------
// Lifecycle
//--------------------------------------------------------------------------
/**
* Creates an instance of Component.
*
* Note that most of the time, only the root component needs to be created by
* hand. Other components should be created automatically by the framework (with
* the t-component directive in a template)
*/
constructor(parent?: Component<any, T> | null, props?: Props) {
Component.current = this;
let constr = this.constructor as any;
const defaultProps = constr.defaultProps;
if (defaultProps) {
props = props || ({} as Props);
this.__applyDefaultProps(props, defaultProps);
}
this.props = <Props>props;
if (QWeb.dev) {
QWeb.utils.validateProps(constr, this.props);
}
const id: number = nextId++;
let depth;
if (parent) {
this.env = parent.env;
const __powl__ = parent.__owl__;
__powl__.children[id] = this;
depth = __powl__.depth + 1;
} else {
// we are the root component
this.env = (this.constructor as any).env;
if (!this.env.qweb) {
this.env.qweb = new QWeb();
}
// TODO: remove this in owl 2.0
if (!this.env.browser) {
this.env.browser = browser;
}
this.env.qweb.on("update", this, () => {
switch (this.__owl__.status) {
case STATUS.MOUNTED:
this.render(true);
break;
case STATUS.DESTROYED:
// this is unlikely to happen, but if a root widget is destroyed,
// we want to remove our subscription. The usual way to do that
// would be to perform some check in the destroy method, but since
// it is very performance sensitive, and since this is a rare event,
// we simply do it lazily
this.env.qweb.off("update", this);
break;
}
});
depth = 0;
}
const qweb = this.env.qweb;
const template = constr.template || this.__getTemplate(qweb);
this.__owl__ = {
id: id,
depth: depth,
vnode: null,
pvnode: null,
status: STATUS.CREATED,
parent: parent || null,
children: {},
cmap: {},
currentFiber: null,
parentLastFiberId: 0,
boundHandlers: {},
mountedCB: null,
willUnmountCB: null,
willPatchCB: null,
patchedCB: null,
willStartCB: null,
willUpdatePropsCB: null,
observer: null,
renderFn: qweb.render.bind(qweb, template),
classObj: null,
refs: null,
scope: null,
};
if (constr.style) {
this.__applyStyles(constr);
}
this.setup();
}
/**
* setup is run just after the component is constructed. This is the standard
* location where the component can setup its hooks. It has some advantages
* over the constructor:
* - it can be patched (useful in odoo ecosystem)
* - it does not need to propagate the arguments to the super call
*
* Note: this method should not be called manually.
*/
setup() {} setup() {}
/** render(): Promise<void> {
* willStart is an asynchronous hook that can be implemented to perform some return this.__owl__.render();
* action before the initial rendering of a component.
*
* It will be called exactly once before the initial rendering. It is useful
* in some cases, for example, to load external assets (such as a JS library)
* before the component is rendered.
*
* Note that a slow willStart method will slow down the rendering of the user
* interface. Therefore, some effort should be made to make this method as
* fast as possible.
*
* Note: this method should not be called manually.
*/
async willStart() {}
/**
* mounted is a hook that is called each time a component is attached to the
* DOM. This is a good place to add some listeners, or to interact with the
* DOM, if the component needs to perform some measure for example.
*
* Note: this method should not be called manually.
*
* @see willUnmount
*/
mounted() {}
/**
* The willUpdateProps is an asynchronous hook, called just before new props
* are set. This is useful if the component needs some asynchronous task
* performed, depending on the props (for example, assuming that the props are
* some record Id, fetching the record data).
*
* This hook is not called during the first render (but willStart is called
* and performs a similar job).
*/
async willUpdateProps(nextProps: Props) {}
/**
* The willPatch hook is called just before the DOM patching process starts.
* It is not called on the initial render. This is useful to get some
* information which are in the DOM. For example, the current position of the
* scrollbar
*/
willPatch(): any {}
/**
* This hook is called whenever a component did actually update its props,
* state or env.
*
* This method is not called on the initial render. It is useful to interact
* with the DOM (for example, through an external library) whenever the
* component was updated.
*
* Updating the component state in this hook is possible, but not encouraged.
* One need to be careful, because updates here will cause rerender, which in
* turn will cause other calls to updated. So, we need to be particularly
* careful at avoiding endless cycles.
*/
patched() {}
/**
* willUnmount is a hook that is called each time just before a component is
* unmounted from the DOM. This is a good place to remove some listeners, for
* example.
*
* Note: this method should not be called manually.
*
* @see mounted
*/
willUnmount() {}
/**
* catchError is a method called whenever some error happens in the rendering or
* lifecycle hooks of a child.
*
* It needs to be implemented by a component that is designed to handle the
* error properly.
*/
catchError?(error?: Error): void;
//--------------------------------------------------------------------------
// Public
//--------------------------------------------------------------------------
/**
* Mount the component to a target element.
*
* This should only be done if the component was created manually. Components
* created declaratively in templates are managed by the Owl system.
*
* Note that a component can be mounted an unmounted several times
*/
async mount(target: HTMLElement | DocumentFragment, options: MountOptions = {}): Promise<void> {
if (!(target instanceof HTMLElement || target instanceof DocumentFragment)) {
let message = `Component '${this.constructor.name}' cannot be mounted: the target is not a valid DOM node.`;
message += `\nMaybe the DOM is not ready yet? (in that case, you can use owl.utils.whenReady)`;
throw new Error(message);
}
const position = options.position || "last-child";
const __owl__ = this.__owl__;
const currentFiber = __owl__.currentFiber;
switch (__owl__.status) {
case STATUS.CREATED: {
const fiber = new Fiber(null, this, true, target, position);
fiber.shouldPatch = false;
this.__prepareAndRender(fiber, () => {});
return scheduler.addFiber(fiber);
}
case STATUS.WILLSTARTED:
case STATUS.RENDERED:
currentFiber.target = target;
currentFiber.position = position;
return scheduler.addFiber(currentFiber);
case STATUS.UNMOUNTED: {
const fiber = new Fiber(null, this, true, target, position);
fiber.shouldPatch = false;
this.__render(fiber);
return scheduler.addFiber(fiber);
}
case STATUS.MOUNTED: {
if (position !== "self" && this.el!.parentNode !== target) {
const fiber = new Fiber(null, this, true, target, position);
fiber.shouldPatch = false;
this.__render(fiber);
return scheduler.addFiber(fiber);
} else {
return Promise.resolve();
}
}
case STATUS.DESTROYED:
throw new Error("Cannot mount a destroyed component");
}
}
/**
* The unmount method is the opposite of the mount method. It is useful
* to call willUnmount calls and remove the component from the DOM.
*/
unmount() {
if (this.__owl__.status === STATUS.MOUNTED) {
this.__callWillUnmount();
this.el!.remove();
}
}
/**
* The render method is the main entry point to render a component (once it
* is ready. This method is not initially called when the component is
* rendered the first time).
*
* This method will cause all its sub components to potentially rerender
* themselves. Note that `render` is not called if a component is updated via
* its props.
*/
async render(force: boolean = false): Promise<void> {
const __owl__ = this.__owl__;
const currentFiber = __owl__.currentFiber;
if (!__owl__.vnode && !currentFiber) {
return;
}
if (currentFiber && !currentFiber.isRendered && !currentFiber.isCompleted) {
return scheduler.addFiber(currentFiber.root);
}
// if we aren't mounted at this point, it implies that there is a
// currentFiber that is already rendered (isRendered is true), so we are
// about to be mounted
const status = __owl__.status;
const fiber = new Fiber(null, this, force, null, null);
Promise.resolve().then(() => {
if (__owl__.status === STATUS.MOUNTED || status !== STATUS.MOUNTED) {
if (fiber.isCompleted || fiber.isRendered) {
return;
}
this.__render(fiber);
} else {
// we were mounted when render was called, but we aren't anymore, so we
// were actually about to be unmounted ; we can thus forget about this
// fiber
fiber.isCompleted = true;
__owl__.currentFiber = null;
}
});
return scheduler.addFiber(fiber);
}
/**
* Destroy the component. This operation is quite complex:
* - it recursively destroy all children
* - call the willUnmount hooks if necessary
* - remove the dom node from the dom
*
* This should only be called manually if you created the component. Most
* components will be automatically destroyed.
*/
destroy() {
const __owl__ = this.__owl__;
if (__owl__.status !== STATUS.DESTROYED) {
const el = this.el;
this.__destroy(__owl__.parent);
if (el) {
el.remove();
}
}
}
/**
* This method is called by the component system whenever its props are
* updated. If it returns true, then the component will be rendered.
* Otherwise, it will skip the rendering (also, its props will not be updated)
*/
shouldUpdate(nextProps: Props): boolean {
return true;
}
/**
* Emit a custom event of type 'eventType' with the given 'payload' on the
* component's el, if it exists. However, note that the event will only bubble
* up to the parent DOM nodes. Thus, it must be called between mounted() and
* willUnmount().
*/
trigger<T = any>(eventType: string, payload?: T) {
this.__trigger<T>(this, eventType, payload);
}
//--------------------------------------------------------------------------
// Private
//--------------------------------------------------------------------------
/**
* Private helper to perform a full destroy, from the point of view of an Owl
* component. It does not remove the el (this is done only once on the top
* level destroyed component, for performance reasons).
*
* The job of this method is mostly to call willUnmount hooks, and to perform
* all necessary internal cleanup.
*
* Note that it does not call the __callWillUnmount method to avoid visiting
* all children many times.
*/
__destroy(parent: Component | null) {
const __owl__ = this.__owl__;
if (__owl__.status === STATUS.MOUNTED) {
if (__owl__.willUnmountCB) {
__owl__.willUnmountCB();
}
this.willUnmount();
__owl__.status = STATUS.UNMOUNTED;
}
const children = __owl__.children;
for (let key in children) {
children[key].__destroy(this);
}
if (parent) {
let id = __owl__.id;
delete parent.__owl__.children[id];
__owl__.parent = null;
}
__owl__.status = STATUS.DESTROYED;
delete __owl__.vnode;
if (__owl__.currentFiber) {
__owl__.currentFiber.isCompleted = true;
}
}
__callMounted() {
const __owl__ = this.__owl__;
__owl__.status = STATUS.MOUNTED;
this.mounted();
if (__owl__.mountedCB) {
__owl__.mountedCB();
}
}
__callWillUnmount() {
const __owl__ = this.__owl__;
if (__owl__.willUnmountCB) {
__owl__.willUnmountCB();
}
this.willUnmount();
__owl__.status = STATUS.UNMOUNTED;
if (__owl__.currentFiber) {
__owl__.currentFiber.isCompleted = true;
__owl__.currentFiber.root.counter = 0;
}
const children = __owl__.children;
for (let id in children) {
const comp = children[id];
if (comp.__owl__.status === STATUS.MOUNTED) {
comp.__callWillUnmount();
}
}
}
/**
* Private trigger method, allows to choose the component which triggered
* the event in the first place
*/
__trigger<T>(component: Component, eventType: string, payload?: T) {
if (this.el) {
const ev = new OwlEvent<T>(component, eventType, {
bubbles: true,
cancelable: true,
detail: payload,
});
const triggerHook = this.env[portalSymbol as any];
if (triggerHook) {
triggerHook(ev);
}
this.el.dispatchEvent(ev);
}
}
/**
* The __updateProps method is called by the t-component directive whenever
* it updates a component (so, when the parent template is rerendered).
*/
async __updateProps(nextProps: Props, parentFiber: Fiber, scope: any): Promise<void> {
this.__owl__.scope = scope;
const shouldUpdate = parentFiber.force || this.shouldUpdate(nextProps);
if (shouldUpdate) {
const __owl__ = this.__owl__;
const fiber = new Fiber(parentFiber, this, parentFiber.force, null, null);
if (!parentFiber.child) {
parentFiber.child = fiber;
} else {
parentFiber.lastChild!.sibling = fiber;
}
parentFiber.lastChild = fiber;
const defaultProps = (<any>this.constructor).defaultProps;
if (defaultProps) {
this.__applyDefaultProps(nextProps, defaultProps);
}
if (QWeb.dev) {
QWeb.utils.validateProps(this.constructor, nextProps);
}
await Promise.all([
this.willUpdateProps(nextProps),
__owl__.willUpdatePropsCB && __owl__.willUpdatePropsCB(nextProps),
]);
if (fiber.isCompleted) {
return;
}
this.props = nextProps;
this.__render(fiber);
}
}
/**
* Main patching method. We call the virtual dom patch method here to convert
* a virtual dom vnode into some actual dom.
*/
__patch(target: HTMLElement | VNode | DocumentFragment, vnode: VNode) {
this.__owl__.vnode = patch(target as any, vnode);
}
/**
* The __prepare method is only called by the t-component directive, when a
* subcomponent is created. It gets its scope, if any, from the
* parent template.
*/
__prepare(parentFiber: Fiber, scope: any, cb: CallableFunction): Fiber {
this.__owl__.scope = scope;
const fiber = new Fiber(parentFiber, this, parentFiber.force, null, null);
fiber.shouldPatch = false;
if (!parentFiber.child) {
parentFiber.child = fiber;
} else {
parentFiber.lastChild!.sibling = fiber;
}
parentFiber.lastChild = fiber;
this.__prepareAndRender(fiber, cb);
return fiber;
}
/**
* Apply the stylesheets defined by the component. Note that we need to make
* sure all inherited stylesheets are applied as well. We then delete the
* `style` key from the constructor to make sure we do not apply it again.
*/
private __applyStyles(constr) {
while (constr && constr.style) {
if (constr.hasOwnProperty("style")) {
activateSheet(constr.style, constr.name);
delete constr.style;
}
constr = constr.__proto__;
}
}
__getTemplate(qweb: QWeb): string {
let p = (<any>this).constructor;
if (!p.hasOwnProperty("_template")) {
// here, the component and none of its superclasses defines a static `template`
// key. So we fall back on looking for a template matching its name (or
// one of its subclass).
let template: string = p.name;
while (!(template in qweb.templates) && p !== Component) {
p = p.__proto__;
template = p.name;
}
if (p === Component) {
throw new Error(`Could not find template for component "${this.constructor.name}"`);
} else {
p._template = template;
}
}
return p._template;
}
async __prepareAndRender(fiber: Fiber, cb: CallableFunction) {
try {
const proms = Promise.all([
this.willStart(),
this.__owl__.willStartCB && this.__owl__.willStartCB(),
]);
this.__owl__.status = STATUS.WILLSTARTED;
await proms;
if (this.__owl__.status === <any>STATUS.DESTROYED) {
return Promise.resolve();
}
} catch (e) {
fiber.handleError(e);
return Promise.resolve();
}
if (!fiber.isCompleted) {
this.__render(fiber);
this.__owl__.status = STATUS.RENDERED;
cb();
}
}
__render(fiber: Fiber) {
const __owl__ = this.__owl__;
if (__owl__.observer) {
__owl__.observer.allowMutations = false;
}
let error;
try {
let vnode = __owl__.renderFn!(this, {
handlers: __owl__.boundHandlers,
fiber: fiber,
});
// we iterate over the children to detect those that no longer belong to the
// current rendering: those ones, if not mounted yet, can (and have to) be
// destroyed right now, because they are not in the DOM, and thus we won't
// be notified later on (when patching), that they are removed from the DOM
for (let childKey in __owl__.children) {
const child = __owl__.children[childKey];
const childOwl = child.__owl__;
if (childOwl.status !== STATUS.MOUNTED && childOwl.parentLastFiberId < fiber.id) {
// we only do here a "soft" destroy, meaning that we leave the child
// dom node alone, without removing it. Most of the time, it does not
// matter, because the child component is already unmounted. However,
// if some of its parent have been unmounted, the child could actually
// still be attached to its parent, and this may be important if we
// want to remount the parent, because the vdom need to match the
// actual DOM
child.__destroy(childOwl.parent);
if (childOwl.pvnode) {
// we remove the key here to make sure that the patching algorithm
// is able to make the difference between this pvnode and an eventual
// other instance of the same component
delete childOwl.pvnode.key;
// Since the component has been unmounted, we do not want to actually
// call a remove hook. This is pretty important, since the t-component
// directive actually disabled it, so the vdom algorithm will just
// not remove the child elm if we don't remove the hook.
delete childOwl.pvnode.data!.hook!.remove;
}
}
}
if (!vnode) {
throw new Error(`Rendering '${this.constructor.name}' did not return anything`);
}
fiber.vnode = vnode;
// we apply here the class information described on the component by the
// template (so, something like <MyComponent class="..."/>) to the actual
// root vnode
if (__owl__.classObj) {
const data = vnode.data!;
data.class = Object.assign(data.class || {}, __owl__.classObj);
}
} catch (e) {
error = e;
}
if (__owl__.observer) {
__owl__.observer.allowMutations = true;
}
fiber.root.counter--;
fiber.isRendered = true;
if (error) {
fiber.handleError(error);
}
}
/**
* Apply default props (only top level).
*
* Note that this method does modify in place the props
*/
__applyDefaultProps(props: Object, defaultProps: Object) {
for (let propName in defaultProps) {
if (props![propName] === undefined) {
props![propName] = defaultProps[propName];
}
}
} }
} }
interface MountParameters {
env?: Env;
target: HTMLElement | DocumentFragment;
props?: any;
position?: MountOptions["position"];
}
interface Type<T> extends Function {
new (...args: any[]): T;
}
export async function mount<T extends Type<Component>>(
C: T,
params: MountParameters
): Promise<InstanceType<T>> {
const { env, props, target } = params;
let origEnv = C.hasOwnProperty("env") ? (C as any).env : null;
if (env) {
(C as any as typeof Component).env = env;
}
const component: Component = new C(null, props);
if (origEnv) {
(C as any).env = origEnv;
} else {
delete (C as any).env;
}
const position = params.position || "last-child";
await component.mount(target, { position });
return component as any;
}
+256
View File
@@ -0,0 +1,256 @@
import type { App } from "../app";
import { BDom, VNode } from "../blockdom";
import { Component } from "./component";
import {
Fiber,
makeChildFiber,
makeRootFiber,
MountFiber,
RootFiber,
__internal__destroyed,
} from "./fibers";
import { STATUS } from "./status";
export function component(
name: string | typeof Component,
props: any,
key: string,
ctx: ComponentNode,
parent: any
): ComponentNode {
let node: any = ctx.children[key];
let isDynamic = typeof name !== "string";
if (node && node.status < STATUS.MOUNTED) {
node.destroy();
node = undefined;
}
if (isDynamic && node && node.component.constructor !== name) {
node = undefined;
}
const parentFiber = ctx.fiber!;
if (node) {
node.updateAndRender(props, parentFiber);
} else {
// new component
const C = isDynamic ? name : parent.constructor.components[name as any];
node = new ComponentNode(C, props, ctx.app);
ctx.children[key] = node;
const fiber = makeChildFiber(node, parentFiber);
node.initiateRender(fiber);
}
return node;
}
// -----------------------------------------------------------------------------
// Component VNode
// -----------------------------------------------------------------------------
let currentNode: ComponentNode | null = null;
export function getCurrent(): ComponentNode | null {
return currentNode;
}
type LifecycleHook = Function;
export class ComponentNode<T extends typeof Component = any> implements VNode<ComponentNode> {
el?: HTMLElement | Text | undefined;
handlers: any = null;
app: App;
fiber: Fiber | null = null;
component: InstanceType<T>;
bdom: BDom | null = null;
status: STATUS = STATUS.NEW;
renderFn: Function;
children: { [key: string]: ComponentNode } = Object.create(null);
slots: any = {};
refs: any = {};
willStart: LifecycleHook[] = [];
willUpdateProps: LifecycleHook[] = [];
willUnmount: LifecycleHook[] = [];
mounted: LifecycleHook[] = [];
willPatch: LifecycleHook[] = [];
patched: LifecycleHook[] = [];
destroyed: LifecycleHook[] = [];
constructor(C: T, props: any, app: App) {
currentNode = this;
this.app = app;
this.component = new C(props, app.env, this) as any;
this.renderFn = app.getTemplate(C.template).bind(null, this.component, this);
this.component.setup();
}
mountComponent(target: any): Promise<InstanceType<T>> {
const fiber = new MountFiber(this, target);
this.app.scheduler.addFiber(fiber);
this.initiateRender(fiber);
return fiber.promise.then(() => this.component);
}
async initiateRender(fiber: Fiber | MountFiber) {
if (this.mounted.length) {
fiber.root.mounted.push(fiber);
}
const component = this.component;
const prom = Promise.all(this.willStart.map((f) => f.call(component)));
await prom;
if (this.status === STATUS.NEW && this.fiber === fiber) {
this._render(fiber);
}
}
async render() {
if (this.fiber && !this.fiber.bdom) {
return this.fiber.root.promise;
}
if (!this.bdom && !this.fiber) {
// should find a way to return the future mounting promise
return;
}
const fiber = makeRootFiber(this);
this.app.scheduler.addFiber(fiber);
await Promise.resolve();
if (this.status === STATUS.DESTROYED) {
return;
}
if (this.fiber === fiber) {
this._render(fiber);
}
return fiber.root.promise;
}
_render(fiber: Fiber | RootFiber) {
try {
fiber.bdom = this.renderFn();
} catch (e) {
fiber.root.error = e;
this.handleError(fiber);
}
fiber.root.counter--;
}
handleError(fiber: Fiber) {
fiber.node.app.destroy();
}
destroy() {
if (this.status === STATUS.MOUNTED) {
callWillUnmount(this);
this.bdom!.remove();
}
callDestroyed(this);
function callWillUnmount(node: ComponentNode) {
const component = node.component;
for (let cb of node.willUnmount) {
cb.call(component);
}
for (let child of Object.values(node.children)) {
if (child.status === STATUS.MOUNTED) {
callWillUnmount(child);
}
}
}
function callDestroyed(node: ComponentNode) {
const component = node.component;
node.status = STATUS.DESTROYED;
for (let child of Object.values(node.children)) {
callDestroyed(child);
}
for (let cb of node.destroyed) {
cb.call(component);
}
}
}
async updateAndRender(props: any, parentFiber: Fiber) {
// update
const fiber = makeChildFiber(this, parentFiber);
if (this.willPatch.length) {
parentFiber.root.willPatch.push(fiber);
}
if (this.patched.length) {
parentFiber.root.patched.push(fiber);
}
const component = this.component;
const prom = Promise.all(this.willUpdateProps.map((f) => f.call(component, props)));
await prom;
if (fiber !== this.fiber) {
return;
}
this.component.props = props;
this._render(fiber);
}
// ---------------------------------------------------------------------------
// Block DOM methods
// ---------------------------------------------------------------------------
firstNode(): Node | undefined {
const bdom = this.bdom;
return bdom ? bdom.firstNode() : undefined;
}
mount(parent: HTMLElement, anchor: ChildNode) {
const bdom = this.fiber!.bdom!;
this.bdom = bdom;
bdom.mount(parent, anchor);
this.status = STATUS.MOUNTED;
this.fiber!.appliedToDom = true;
this.fiber = null;
if (this.handlers) {
for (let i = 0; i < this.handlers.length; i++) {
const handler = this.handlers[i];
const eventType = handler[0];
const el = bdom.el!;
el.addEventListener(eventType, (ev: Event) => {
const info = this.handlers![i];
const [, ctx, method] = info;
(ctx.__owl__.component as any)[method](ev);
});
}
}
}
moveBefore(other: ComponentNode | null, afterNode: Node | null) {
this.bdom!.moveBefore(other ? other.bdom : null, afterNode);
}
patch() {
this.bdom!.patch(this!.fiber!.bdom!, false);
this.fiber!.appliedToDom = true;
this.fiber = null;
}
beforeRemove() {
visitRemovedNodes(this);
}
remove() {
this.bdom!.remove();
}
}
function visitRemovedNodes(node: ComponentNode) {
if (node.status === STATUS.MOUNTED) {
const component = node.component;
for (let cb of node.willUnmount) {
cb.call(component);
}
}
for (let child of Object.values(node.children)) {
visitRemovedNodes(child);
}
node.status = STATUS.DESTROYED;
if (node.destroyed.length) {
__internal__destroyed.push(node);
}
}
-516
View File
@@ -1,516 +0,0 @@
import { QWeb } from "../qweb/index";
import { INTERP_REGEXP } from "../qweb/compilation_context";
import { makeHandlerCode, MODS_CODE } from "../qweb/extensions";
import { STATUS } from "./component";
//------------------------------------------------------------------------------
// t-component
//------------------------------------------------------------------------------
const T_COMPONENT_MODS_CODE = Object.assign({}, MODS_CODE, {
self: "if (e.target !== vn.elm) {return}",
});
QWeb.utils.defineProxy = function defineProxy(target, source) {
for (let k in source) {
Object.defineProperty(target, k, {
get() {
return source[k];
},
set(val) {
source[k] = val;
},
});
}
};
QWeb.utils.assignHooks = function assignHooks(dataObj, hooks) {
if ("hook" in dataObj) {
const hookObject = dataObj.hook;
for (let name in hooks) {
const current = hookObject[name];
const fn = hooks[name];
if (current) {
hookObject[name] = (...args) => {
current(...args);
fn(...args);
};
} else {
hookObject[name] = fn;
}
}
} else {
dataObj.hook = hooks;
}
};
/**
* The t-component directive is certainly a complicated and hard to maintain piece
* of code. To help you, fellow developer, if you have to maintain it, I offer
* you this advice: Good luck...
*
* Since it is not 'direct' code, but rather code that generates other code, it
* is not easy to understand. To help you, here is a detailed and commented
* explanation of the code generated by the t-component directive for the following
* situation:
* ```xml
* <Child
* t-key="'somestring'"
* flag="state.flag"
* t-transition="fade"/>
* ```
*
* ```js
* // we assign utils on top of the function because it will be useful for
* // each components
* let utils = this.utils;
*
* // this is the virtual node representing the parent div
* let c1 = [], p1 = { key: 1 };
* var vn1 = h("div", p1, c1);
*
* // t-component directive: we start by evaluating the expression given by t-key:
* let key5 = "somestring";
*
* // def3 is the promise that will contain later either the new component
* // creation, or the props update...
* let def3;
*
* // this is kind of tricky: we need here to find if the component was already
* // created by a previous rendering. This is done by checking the internal
* // `cmap` (children map) of the parent component: it maps keys to component ids,
* // and, then, if there is an id, we look into the children list to get the
* // instance
* let w4 =
* key5 in context.__owl__.cmap
* ? context.__owl__.children[context.__owl__.cmap[key5]]
* : false;
*
* // We keep the index of the position of the component in the closure. We push
* // null to reserve the slot, and will replace it later by the component vnode,
* // when it will be ready (do not forget that preparing/rendering a component is
* // asynchronous)
* let _2_index = c1.length;
* c1.push(null);
*
* // we evaluate here the props given to the component. It is done here to be
* // able to easily reference it later, and also, it might be an expensive
* // computation, so it is certainly better to do it only once
* let props4 = { flag: context["state"].flag };
*
* // If we have a component, currently rendering, but not ready yet, we do not want
* // to wait for it to be ready if we can avoid it
* if (w4 && w4.__owl__.renderPromise && !w4.__owl__.vnode) {
* // we check if the props are the same. In that case, we can simply reuse
* // the previous rendering and skip all useless work
* if (utils.shallowEqual(props4, w4.__owl__.renderProps)) {
* def3 = w4.__owl__.renderPromise;
* } else {
* // if the props are not the same, we destroy the component and starts anew.
* // this will be faster than waiting for its rendering, then updating it
* w4.destroy();
* w4 = false;
* }
* }
*
* if (!w4) {
* // in this situation, we need to create a new component. First step is
* // to get a reference to the class, then create an instance with
* // current context as parent, and the props.
* let W4 = context.component && context.components[componentKey4] || QWeb.component[componentKey4];
* if (!W4) {
* throw new Error("Cannot find the definition of component 'child'");
* }
* w4 = new W4(owner, props4);
*
* // Whenever we rerender the parent component, we need to be sure that we
* // are able to find the component instance. To do that, we register it to
* // the parent cmap (children map). Note that the 'template' key is
* // used here, since this is what identify the component from the template
* // perspective.
* context.__owl__.cmap[key5] = w4.__owl__.id;
*
* // __prepare is called, to basically call willStart, then render the
* // component
* def3 = w4.__prepare();
*
* def3 = def3.then(vnode => {
* // we create here a virtual node for the parent (NOT the component). This
* // means that the vdom of the parent will be stopped here, and from
* // the parent's perspective, it simply is a vnode with no children.
* // However, it shares the same dom element with the component root
* // vnode.
* let pvnode = h(vnode.sel, { key: key5 });
*
* // we add hooks to the parent vnode so we can interact with the new
* // component at the proper time
* pvnode.data.hook = {
* insert(vn) {
* // the __mount method will patch the component vdom into the elm vn.elm,
* // then call the mounted hooks. However, suprisingly, the snabbdom
* // patch method actually replace the elm by a new elm, so we need
* // to synchronise the pvnode elm with the resulting elm
* let nvn = w4.__mount(vnode, vn.elm);
* pvnode.elm = nvn.elm;
* // what follows is only present if there are animations on the component
* utils.transitionInsert(vn, "fade");
* },
* remove() {
* // override with empty function to prevent from removing the node
* // directly. It will be removed when destroy is called anyway, which
* // delays the removal if there are animations.
* },
* destroy() {
* // if there are animations, we delay the call to destroy on the
* // component, if not, we call it directly.
* let finalize = () => {
* w4.destroy();
* };
* utils.transitionRemove(vn, "fade", finalize);
* }
* };
* // the pvnode is inserted at the correct position in the div's children
* c1[_2_index] = pvnode;
*
* // we keep here a reference to the parent vnode (representing the
* // component, so we can reuse it later whenever we update the component
* w4.__owl__.pvnode = pvnode;
* });
* } else {
* // this is the 'update' path of the directive.
* // the call to __updateProps is the actual component update
* // Note that we only update the props if we cannot reuse the previous
* // rendering work (in the case it was rendered with the same props)
* def3 = def3 || w4.__updateProps(props4, extra.forceUpdate, extra.patchQueue);
* def3 = def3.then(() => {
* // if component was destroyed in the meantime, we do nothing (so, this
* // means that the parent's element children list will have a null in
* // the component's position, which will cause the pvnode to be removed
* // when it is patched.
* if (w4.__owl__.isDestroyed) {
* return;
* }
* // like above, we register the pvnode to the children list, so it
* // will not be patched out of the dom.
* let pvnode = w4.__owl__.pvnode;
* c1[_2_index] = pvnode;
* });
* }
*
* // we register the deferred here so the parent can coordinate its patch operation
* // with all the children.
* extra.promises.push(def3);
* return vn1;
* ```
*/
QWeb.addDirective({
name: "component",
extraNames: ["props"],
priority: 100,
atNodeEncounter({ ctx, value, node, qweb }): boolean {
ctx.addLine(`// Component '${value}'`);
ctx.rootContext.shouldDefineQWeb = true;
ctx.rootContext.shouldDefineParent = true;
ctx.rootContext.shouldDefineUtils = true;
ctx.rootContext.shouldDefineScope = true;
let hasDynamicProps = node.getAttribute("t-props") ? true : false;
// t-on- events and t-transition
const events: [string, string][] = [];
let transition: string = "";
const attributes = (<Element>node).attributes;
const props: { [key: string]: string } = {};
for (let i = 0; i < attributes.length; i++) {
const name = attributes[i].name;
const value = attributes[i].textContent!;
if (name.startsWith("t-on-")) {
events.push([name, value]);
} else if (name === "t-transition") {
if (QWeb.enableTransitions) {
transition = value;
}
} else if (!name.startsWith("t-")) {
if (name !== "class" && name !== "style") {
// this is a prop!
if (value.includes("=>")) {
props[name] = ctx.captureExpression(value);
} else {
props[name] = ctx.formatExpression(value) || "undefined";
}
}
}
}
// computing the props string representing the props object
let propStr = Object.keys(props)
.map((k) => k + ":" + props[k])
.join(",");
let componentID = ctx.generateID();
let hasDefinedKey = false;
let templateKey;
if (node.tagName === "t" && !node.hasAttribute("t-key") && value.match(INTERP_REGEXP)) {
defineComponentKey();
const id = ctx.generateID();
// the ___ is to make sure we have no possible conflict with normal
// template keys
ctx.addLine(`let k${id} = '___' + componentKey${componentID}`);
templateKey = `k${id}`;
} else {
templateKey = ctx.generateTemplateKey();
}
let ref = node.getAttribute("t-ref");
let refExpr = "";
let refKey: string = "";
if (ref) {
ctx.rootContext.shouldDefineRefs = true;
refKey = `ref${ctx.generateID()}`;
ctx.addLine(`const ${refKey} = ${ctx.interpolate(ref)};`);
refExpr = `context.__owl__.refs[${refKey}] = w${componentID};`;
}
let finalizeComponentCode = `w${componentID}.destroy();`;
if (ref) {
finalizeComponentCode += `delete context.__owl__.refs[${refKey}];`;
}
if (transition) {
finalizeComponentCode = `let finalize = () => {
${finalizeComponentCode}
};
delete w${componentID}.__owl__.transitionInserted;
utils.transitionRemove(vn, '${transition}', finalize);`;
}
let createHook = "";
let classAttr = node.getAttribute("class");
let tattClass = node.getAttribute("t-att-class");
let styleAttr = node.getAttribute("style");
let tattStyle = node.getAttribute("t-att-style");
if (tattStyle) {
const attVar = `_${ctx.generateID()}`;
ctx.addLine(`const ${attVar} = ${ctx.formatExpression(tattStyle)};`);
tattStyle = attVar;
}
let classObj = "";
if (classAttr || tattClass || styleAttr || tattStyle || events.length) {
if (classAttr) {
let classDef = classAttr
.trim()
.split(/\s+/)
.map((a) => `'${a}':true`)
.join(",");
classObj = `_${ctx.generateID()}`;
ctx.addLine(`let ${classObj} = {${classDef}};`);
}
if (tattClass) {
let tattExpr = ctx.formatExpression(tattClass);
if (tattExpr[0] !== "{" || tattExpr[tattExpr.length - 1] !== "}") {
tattExpr = `utils.toClassObj(${tattExpr})`;
}
if (classAttr) {
ctx.addLine(`Object.assign(${classObj}, ${tattExpr})`);
} else {
classObj = `_${ctx.generateID()}`;
ctx.addLine(`let ${classObj} = ${tattExpr};`);
}
}
let eventsCode = events
.map(function ([name, value]) {
const capture = name.match(/\.capture/);
name = capture ? name.replace(/\.capture/, "") : name;
const { event, handler } = makeHandlerCode(
ctx,
name,
value,
false,
T_COMPONENT_MODS_CODE
);
if (capture) {
return `vn.elm.addEventListener('${event}', ${handler}, true);`;
}
return `vn.elm.addEventListener('${event}', ${handler});`;
})
.join("");
const styleExpr = tattStyle || (styleAttr ? `'${styleAttr}'` : false);
const styleCode = styleExpr ? `vn.elm.style = ${styleExpr};` : "";
createHook = `utils.assignHooks(vnode.data, {create(_, vn){${styleCode}${eventsCode}}});`;
}
ctx.addLine(
`let w${componentID} = ${templateKey} in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap[${templateKey}]] : false;`
);
let shouldProxy = !ctx.parentNode;
if (shouldProxy) {
let id = ctx.generateID();
ctx.rootContext.rootNode = id;
shouldProxy = true;
ctx.rootContext.shouldDefineResult = true;
ctx.addLine(`let vn${id} = {};`);
ctx.addLine(`result = vn${id};`);
}
if (hasDynamicProps) {
const dynamicProp = ctx.formatExpression(node.getAttribute("t-props")!);
ctx.addLine(`let props${componentID} = Object.assign({}, ${dynamicProp}, {${propStr}});`);
} else {
ctx.addLine(`let props${componentID} = {${propStr}};`);
}
ctx.addIf(
`w${componentID} && w${componentID}.__owl__.currentFiber && !w${componentID}.__owl__.vnode`
);
ctx.addLine(`w${componentID}.destroy();`);
ctx.addLine(`w${componentID} = false;`);
ctx.closeIf();
let registerCode = "";
if (shouldProxy) {
registerCode = `utils.defineProxy(vn${ctx.rootNode}, pvnode);`;
}
// SLOTS
const hasSlots = node.childNodes.length;
let scope = hasSlots ? `utils.combine(context, scope)` : "undefined";
ctx.addIf(`w${componentID}`);
// need to update component
let styleCode = "";
if (tattStyle) {
styleCode = `.then(()=>{if (w${componentID}.__owl__.status === ${STATUS.DESTROYED}) {return};w${componentID}.el.style=${tattStyle};});`;
}
ctx.addLine(
`w${componentID}.__updateProps(props${componentID}, extra.fiber, ${scope})${styleCode};`
);
ctx.addLine(`let pvnode = w${componentID}.__owl__.pvnode;`);
if (registerCode) {
ctx.addLine(registerCode);
}
if (ctx.parentNode) {
ctx.addLine(`c${ctx.parentNode}.push(pvnode);`);
}
ctx.addElse();
// new component
function defineComponentKey() {
if (!hasDefinedKey) {
const interpValue = ctx.interpolate(value);
ctx.addLine(`let componentKey${componentID} = ${interpValue};`);
hasDefinedKey = true;
}
}
defineComponentKey();
const contextualValue = value.match(INTERP_REGEXP) ? "false" : ctx.formatExpression(value);
ctx.addLine(
`let W${componentID} = ${contextualValue} || context.constructor.components[componentKey${componentID}] || QWeb.components[componentKey${componentID}];`
);
// maybe only do this in dev mode...
ctx.addLine(
`if (!W${componentID}) {throw new Error('Cannot find the definition of component "' + componentKey${componentID} + '"')}`
);
ctx.addLine(`w${componentID} = new W${componentID}(parent, props${componentID});`);
if (transition) {
ctx.addLine(`const __patch${componentID} = w${componentID}.__patch;`);
ctx.addLine(
`w${componentID}.__patch = (t, vn) => {__patch${componentID}.call(w${componentID}, t, vn); if(!w${componentID}.__owl__.transitionInserted){w${componentID}.__owl__.transitionInserted = true;utils.transitionInsert(w${componentID}.__owl__.vnode, '${transition}');}};`
);
}
ctx.addLine(`parent.__owl__.cmap[${templateKey}] = w${componentID}.__owl__.id;`);
if (hasSlots) {
const clone = <Element>node.cloneNode(true);
// The next code is a fallback for compatibility reason. It accepts t-set
// elements that are direct children with a non empty body as nodes defining
// the content of a slot.
//
// This is wrong, but is necessary to prevent breaking all existing Owl
// code using slots. This will be removed in v2.0 someday. Meanwhile,
// please use t-set-slot everywhere you need to set the content of a
// slot.
for (let node of clone.children) {
if (node.hasAttribute("t-set") && node.hasChildNodes()) {
node.setAttribute("t-set-slot", node.getAttribute("t-set")!);
node.removeAttribute("t-set");
}
}
const slotNodes = Array.from(clone.querySelectorAll("[t-set-slot]"));
const slotNames = new Set<string>();
const slotId = QWeb.nextSlotId++;
ctx.addLine(`w${componentID}.__owl__.slotId = ${slotId};`);
if (slotNodes.length) {
for (let i = 0, length = slotNodes.length; i < length; i++) {
const slotNode = slotNodes[i];
// check if this is defined in a sub component (in which case it should
// be ignored)
let el = slotNode.parentElement;
let isInSubComponent = false;
while (el !== clone) {
if (
el!.hasAttribute("t-component") ||
el!.tagName[0] === el!.tagName[0].toUpperCase()
) {
isInSubComponent = true;
break;
}
el = el.parentElement;
}
if (isInSubComponent) {
continue;
}
let key = slotNode.getAttribute("t-set-slot")!;
if (slotNames.has(key)) {
continue;
}
slotNames.add(key);
slotNode.removeAttribute("t-set-slot");
slotNode.parentElement!.removeChild(slotNode);
const slotFn = qweb._compile(`slot_${key}_template`, { elem: slotNode, hasParent: true });
QWeb.slots[`${slotId}_${key}`] = slotFn;
}
}
if (clone.childNodes.length) {
let hasContent = false;
const t = clone.ownerDocument!.createElement("t");
for (let child of Object.values(clone.childNodes)) {
hasContent =
hasContent || (child instanceof Text ? Boolean(child.textContent.trim().length) : true);
t.appendChild(child);
}
if (hasContent) {
const slotFn = qweb._compile(`slot_default_template`, { elem: t, hasParent: true });
QWeb.slots[`${slotId}_default`] = slotFn;
}
}
}
ctx.addLine(
`let fiber = w${componentID}.__prepare(extra.fiber, ${scope}, () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; ${createHook}});`
);
// hack: specify empty remove hook to prevent the node from being removed from the DOM
const insertHook = refExpr ? `insert(vn) {${refExpr}},` : "";
ctx.addLine(
`let pvnode = h('dummy', {key: ${templateKey}, hook: {${insertHook}remove() {},destroy(vn) {${finalizeComponentCode}}}});`
);
if (registerCode) {
ctx.addLine(registerCode);
}
if (ctx.parentNode) {
ctx.addLine(`c${ctx.parentNode}.push(pvnode);`);
}
ctx.addLine(`w${componentID}.__owl__.pvnode = pvnode;`);
ctx.closeIf();
if (classObj) {
ctx.addLine(`w${componentID}.__owl__.classObj=${classObj};`);
}
ctx.addLine(`w${componentID}.__owl__.parentLastFiberId = extra.fiber.id;`);
return true;
},
});
-366
View File
@@ -1,366 +0,0 @@
import { h, VNode } from "../vdom/index";
import { Component, MountPosition, STATUS } from "./component";
import { scheduler } from "./scheduler";
/**
* Owl Fiber Class
*
* Fibers are small abstractions designed to contain all the internal state
* associated with a "rendering work unit", relative to a specific component.
*
* A rendering will cause the creation of a fiber for each impacted components.
*
* Fibers capture all that necessary information, which is critical to owl
* asynchronous rendering pipeline. Fibers can be cancelled, can be in different
* states and in general determine the state of the rendering.
*/
export class Fiber {
static nextId: number = 1;
id: number = Fiber.nextId++;
// The force attribute determines if a rendering should bypass the `shouldUpdate`
// method potentially implemented by a component. It is usually set to false.
force: boolean;
// isCompleted means that the rendering corresponding to this fiber's work is
// done, either because the component has been mounted or patched, or because
// fiber has been cancelled.
isCompleted: boolean = false;
// the fibers corresponding to component updates (updateProps) need to call
// the willPatch and patched hooks from the corresponding component. However,
// fibers corresponding to a new component do not need to do that. So, the
// shouldPatch hook is the boolean that we check whenever we need to apply
// a patch.
shouldPatch: boolean = true;
// isRendered is the last state of a fiber. If true, this means that it has
// been rendered and is inert (so, it should not be taken into account when
// counting the number of active fibers).
isRendered: boolean = false;
// the counter number is a critical information. It is only necessary for a
// root fiber. For that fiber, this number counts the number of active sub
// fibers. When that number reaches 0, the fiber can be applied by the
// scheduler.
counter: number = 0;
target: HTMLElement | DocumentFragment | null;
position: MountPosition | null;
scope: any;
component: Component;
vnode: VNode | null = null;
root: Fiber;
child: Fiber | null = null;
sibling: Fiber | null = null;
lastChild: Fiber | null = null;
parent: Fiber | null = null;
error?: Error;
constructor(
parent: Fiber | null,
component: Component,
force: boolean,
target: HTMLElement | DocumentFragment | null,
position: MountPosition | null
) {
this.component = component;
this.force = force;
this.target = target;
this.position = position;
const __owl__ = component.__owl__;
this.scope = __owl__.scope;
this.root = parent ? parent.root : this;
this.parent = parent;
let oldFiber = __owl__.currentFiber;
if (oldFiber && !oldFiber.isCompleted) {
this.force = true;
if (oldFiber.root === oldFiber && !parent) {
// both oldFiber and this fiber are root fibers
this._reuseFiber(oldFiber);
return oldFiber;
} else {
this._remapFiber(oldFiber);
}
}
this.root.counter++;
__owl__.currentFiber = this;
}
/**
* When the oldFiber is not completed yet, and both oldFiber and this fiber
* are root fibers, we want to reuse the oldFiber instead of creating a new
* one. Doing so will guarantee that the initiator(s) of those renderings will
* be notified (the promise will resolve) when the last rendering will be done.
*
* This function thus assumes that oldFiber is a root fiber.
*/
_reuseFiber(oldFiber: Fiber) {
oldFiber.cancel(); // cancel children fibers
oldFiber.target = this.target || oldFiber.target;
oldFiber.position = this.position || oldFiber.position;
oldFiber.isCompleted = false; // keep the root fiber alive
oldFiber.isRendered = false; // the fiber has to be re-rendered
if (oldFiber.child) {
// remove relation to children
oldFiber.child.parent = null;
oldFiber.child = null;
oldFiber.lastChild = null;
}
oldFiber.counter = 1; // re-initialize counter
oldFiber.id = Fiber.nextId++;
}
/**
* In some cases, a rendering initiated at some component can detect that it
* should be part of a larger rendering initiated somewhere up the component
* tree. In that case, it needs to cancel the previous rendering and
* remap itself as a part of the current parent rendering.
*/
_remapFiber(oldFiber: Fiber) {
oldFiber.cancel();
this.shouldPatch = oldFiber.shouldPatch;
if (oldFiber === oldFiber.root) {
oldFiber.counter++;
}
if (oldFiber.parent && !this.parent) {
// re-map links
this.parent = oldFiber.parent;
this.root = this.parent.root;
this.sibling = oldFiber.sibling;
if (this.parent.lastChild === oldFiber) {
this.parent.lastChild = this;
}
if (this.parent.child === oldFiber) {
this.parent.child = this;
} else {
let current = this.parent.child!;
while (true) {
if (current.sibling === oldFiber) {
current.sibling = this;
break;
}
current = current.sibling!;
}
}
}
}
/**
* This function has been taken from
* https://medium.com/react-in-depth/the-how-and-why-on-reacts-usage-of-linked-list-in-fiber-67f1014d0eb7
*/
_walk(doWork: (f: Fiber) => Fiber | null) {
let root = this;
let current: Fiber = this;
while (true) {
const child = doWork(current);
if (child) {
current = child;
continue;
}
if (current === root) {
return;
}
while (!current.sibling) {
if (!current.parent || current.parent === root) {
return;
}
current = current.parent;
}
current = current.sibling;
}
}
/**
* Successfully complete the work of the fiber: call the mount or patch hooks
* and patch the DOM. This function is called once the fiber and its children
* are ready, and the scheduler decides to process it.
*/
complete() {
let component = this.component;
this.isCompleted = true;
const status = component.__owl__.status;
if (status === STATUS.DESTROYED) {
return;
}
// build patchQueue
const patchQueue: Fiber[] = [];
const doWork: (Fiber) => Fiber | null = function (f) {
f.component.__owl__.currentFiber = null;
patchQueue.push(f);
return f.child;
};
this._walk(doWork);
const patchLen = patchQueue.length;
// call willPatch hook on each fiber of patchQueue
if (status === STATUS.MOUNTED) {
for (let i = 0; i < patchLen; i++) {
const fiber = patchQueue[i];
if (fiber.shouldPatch) {
component = fiber.component;
if (component.__owl__.willPatchCB) {
component.__owl__.willPatchCB();
}
component.willPatch();
}
}
}
// call __patch on each fiber of (reversed) patchQueue
for (let i = patchLen - 1; i >= 0; i--) {
const fiber = patchQueue[i];
component = fiber.component;
if (fiber.target && i === 0) {
let target;
if (fiber.position === "self") {
target = fiber.target;
if ((target as HTMLElement).tagName.toLowerCase() !== fiber.vnode!.sel) {
throw new Error(
`Cannot attach '${component.constructor.name}' to target node (not same tag name)`
);
}
// In self mode, we *know* we are to take possession of the target
// Hence we manually create the corresponding VNode and copy the "key" in data
const selfVnodeData = fiber.vnode!.data ? { key: fiber.vnode!.data.key } : {};
const selfVnode = h(fiber.vnode!.sel, selfVnodeData);
selfVnode.elm = target;
target = selfVnode;
} else {
target = component.__owl__.vnode || document.createElement(fiber.vnode!.sel!);
}
component.__patch(target!, fiber.vnode!);
} else {
const vnode = component.__owl__.vnode;
if (fiber.shouldPatch && vnode) {
component.__patch(vnode, fiber.vnode!);
// When updating a Component's props (in directive),
// the component has a pvnode AND should be patched.
// However, its pvnode.elm may have changed if it is a High Order Component
if (component.__owl__.pvnode) {
component.__owl__.pvnode.elm = component.__owl__.vnode!.elm;
}
} else {
component.__patch(document.createElement(fiber.vnode!.sel!), fiber.vnode!);
component.__owl__.pvnode!.elm = component.__owl__.vnode!.elm;
}
}
}
// insert into the DOM (mount case)
let inDOM = false;
if (this.target) {
switch (this.position) {
case "first-child":
this.target.prepend(this.component.el!);
break;
case "last-child":
this.target.appendChild(this.component.el!);
break;
}
inDOM = document.body.contains(this.component.el);
this.component.env.qweb.trigger("dom-appended");
}
// call patched/mounted hook on each fiber of (reversed) patchQueue
if (status === STATUS.MOUNTED || inDOM) {
for (let i = patchLen - 1; i >= 0; i--) {
const fiber = patchQueue[i];
component = fiber.component;
if (fiber.shouldPatch && !this.target) {
component.patched();
if (component.__owl__.patchedCB) {
component.__owl__.patchedCB();
}
} else {
component.__callMounted();
}
}
} else {
for (let i = patchLen - 1; i >= 0; i--) {
const fiber = patchQueue[i];
component = fiber.component;
component.__owl__.status = STATUS.UNMOUNTED;
}
}
}
/**
* Cancel a fiber and all its children.
*/
cancel() {
this._walk((f) => {
if (!f.isRendered) {
f.root.counter--;
}
f.isCompleted = true;
return f.child;
});
}
/**
* This is the global error handler for errors occurring in Owl main lifecycle
* methods. Caught errors are triggered on the QWeb instance, and are
* potentially given to some parent component which implements `catchError`.
*
* If there are no such component, we destroy everything. This is better than
* being in a corrupted state.
*/
handleError(error: Error) {
let component = this.component;
this.vnode = component.__owl__.vnode || h("div");
const qweb = component.env.qweb;
let root = component;
function handle(error) {
let canCatch = false;
qweb.trigger("error", error);
while (component && !(canCatch = !!component.catchError)) {
root = component;
component = component.__owl__.parent!;
}
if (canCatch) {
try {
component.catchError!(error);
} catch (e) {
root = component;
component = component.__owl__.parent!;
return handle(e);
}
return true;
}
return false;
}
let isHandled = handle(error);
if (!isHandled) {
// the 3 next lines aim to mark the root fiber as being in error, and
// to force it to end, without waiting for its children
this.root.counter = 0;
this.root.error = error;
scheduler.flush();
// at this point, the state of the application is corrupted and we could
// have a lot of issues or crashes. So we destroy the application in a try
// catch and swallow these errors because the fiber is already in error,
// and this is the actual issue that needs to be solved, not those followup
// errors.
try {
root.destroy();
} catch (e) {}
}
}
}
+185
View File
@@ -0,0 +1,185 @@
import type { BDom } from "../blockdom";
import { mount } from "../blockdom";
import type { ComponentNode } from "./component_node";
import { STATUS } from "./status";
// import { mountBlock } from "./bdom/block";
export function makeChildFiber(node: ComponentNode, parent: Fiber): Fiber {
let current = node.fiber;
if (current) {
// current is necessarily a rootfiber here
let root = parent.root;
cancelFibers(root, current.children);
current.children = [];
current.parent = parent;
root.counter++;
current.root = root;
return current;
}
return new Fiber(node, parent);
}
export function makeRootFiber(node: ComponentNode): Fiber {
let current = node.fiber;
if (current) {
let root = current.root;
root.counter -= cancelFibers(root, current.children);
current.children = [];
root.counter++;
current.bdom = null;
return current;
}
const fiber = new RootFiber(node);
if (node.willPatch.length) {
fiber.willPatch.push(fiber);
}
if (node.patched.length) {
fiber.patched.push(fiber);
}
return fiber;
}
/**
* @returns number of not-yet rendered fibers cancelled
*/
function cancelFibers(root: any, fibers: Fiber[]): number {
let result = 0;
for (let fiber of fibers) {
fiber.node.fiber = null;
fiber.root = root;
if (!fiber.bdom) {
result++;
}
result += cancelFibers(root, fiber.children);
}
return result;
}
export class Fiber {
node: ComponentNode;
bdom: BDom | null = null;
root: RootFiber;
parent: Fiber | null;
children: Fiber[] = [];
appliedToDom = false;
constructor(node: ComponentNode, parent: Fiber | null) {
this.node = node;
node.fiber = this;
this.parent = parent;
if (parent) {
const root = parent.root;
root.counter++;
this.root = root;
parent.children.push(this);
} else {
this.root = this as any;
}
}
}
export class RootFiber extends Fiber {
counter: number = 1;
error: Error | null = null;
resolve: any;
promise: Promise<any>;
reject: any;
// only add stuff in this if they have registered some hooks
willPatch: Fiber[] = [];
patched: Fiber[] = [];
mounted: Fiber[] = [];
constructor(node: ComponentNode) {
super(node, null);
this.counter = 1;
this.promise = new Promise((resolve, reject) => {
this.resolve = resolve;
this.reject = reject;
});
}
complete() {
const node = this.node;
// Step 1: calling all willPatch lifecycle hooks
for (let fiber of this.willPatch) {
// because of the asynchronous nature of the rendering, some parts of the
// UI may have been rendered, then deleted in a followup rendering, and we
// do not want to call onWillPatch in that case.
let node = fiber.node;
if (node.fiber === fiber) {
const component = node.component;
for (let cb of node.willPatch) {
cb.call(component);
}
}
}
// Step 2: patching the dom
node.bdom!.patch(this.bdom!, Object.keys(node.children).length > 0);
this.appliedToDom = true;
// Step 3: calling all destroyed hooks
for (let node of __internal__destroyed) {
for (let cb of node.destroyed) {
cb();
}
}
__internal__destroyed.length = 0;
// Step 4: calling all mounted lifecycle hooks
let current;
let mountedFibers = this.mounted;
while ((current = mountedFibers.pop())) {
if (current.appliedToDom) {
for (let cb of current.node.mounted) {
cb();
}
}
}
// Step 5: calling all patched hooks
let patchedFibers = this.patched;
while ((current = patchedFibers.pop())) {
if (current.appliedToDom) {
for (let cb of current.node.patched) {
cb();
}
}
}
// unregistering the fiber
node.fiber = null;
}
}
export let __internal__destroyed: ComponentNode[] = [];
export class MountFiber extends RootFiber {
target: HTMLElement;
constructor(node: ComponentNode, target: HTMLElement) {
super(node);
this.target = target;
}
complete() {
const node = this.node;
node.bdom = this.bdom;
mount(node.bdom!, this.target);
node.status = STATUS.MOUNTED;
this.appliedToDom = true;
let current;
let mountedFibers = this.mounted;
while ((current = mountedFibers.pop())) {
if (current.appliedToDom) {
for (let cb of current.node.mounted) {
cb();
}
}
}
node.fiber = null;
}
}
+10
View File
@@ -0,0 +1,10 @@
export function mainEventHandler(data: any, ev: Event) {
if (typeof data === "function") {
data(ev);
} else {
const ctx = data[0];
const method = data[1];
const args = data[2] || [];
ctx.__owl__.component[method](...args, ev);
}
}
-115
View File
@@ -1,115 +0,0 @@
import { QWeb } from "../qweb/index";
//------------------------------------------------------------------------------
// Prop validation helper
//------------------------------------------------------------------------------
/**
* Validate the component props (or next props) against the (static) props
* description. This is potentially an expensive operation: it may needs to
* visit recursively the props and all the children to check if they are valid.
* This is why it is only done in 'dev' mode.
*/
QWeb.utils.validateProps = function (Widget, props: Object) {
const propsDef = (<any>Widget).props;
if (propsDef instanceof Array) {
// list of strings (prop names)
for (let i = 0, l = propsDef.length; i < l; i++) {
const propName = propsDef[i];
if (propName[propName.length - 1] === "?") {
// optional prop
break;
}
if (!(propName in props)) {
throw new Error(`Missing props '${propsDef[i]}' (component '${Widget.name}')`);
}
}
for (let key in props) {
if (!propsDef.includes(key) && !propsDef.includes(key + "?")) {
throw new Error(`Unknown prop '${key}' given to component '${Widget.name}'`);
}
}
} else if (propsDef) {
// propsDef is an object now
for (let propName in propsDef) {
if (props[propName] === undefined) {
if (propsDef[propName] && !propsDef[propName].optional) {
throw new Error(`Missing props '${propName}' (component '${Widget.name}')`);
} else {
continue;
}
}
let isValid;
try {
isValid = isValidProp(props[propName], propsDef[propName]);
} catch (e) {
e.message = `Invalid prop '${propName}' in component ${Widget.name} (${e.message})`;
throw e;
}
if (!isValid) {
throw new Error(`Invalid Prop '${propName}' in component '${Widget.name}'`);
}
}
for (let propName in props) {
if (!(propName in propsDef)) {
throw new Error(`Unknown prop '${propName}' given to component '${Widget.name}'`);
}
}
}
};
/**
* Check if an invidual prop value matches its (static) prop definition
*/
function isValidProp(prop, propDef): boolean {
if (propDef === true) {
return true;
}
if (typeof propDef === "function") {
// Check if a value is constructed by some Constructor. Note that there is a
// slight abuse of language: we want to consider primitive values as well.
//
// So, even though 1 is not an instance of Number, we want to consider that
// it is valid.
if (typeof prop === "object") {
return prop instanceof propDef;
}
return typeof prop === propDef.name.toLowerCase();
} else if (propDef instanceof Array) {
// If this code is executed, this means that we want to check if a prop
// matches at least one of its descriptor.
let result = false;
for (let i = 0, iLen = propDef.length; i < iLen; i++) {
result = result || isValidProp(prop, propDef[i]);
}
return result;
}
// propsDef is an object
if (propDef.optional && prop === undefined) {
return true;
}
let result = propDef.type ? isValidProp(prop, propDef.type) : true;
if (propDef.validate) {
result = result && propDef.validate(prop);
}
if (propDef.type === Array && propDef.element) {
for (let i = 0, iLen = prop.length; i < iLen; i++) {
result = result && isValidProp(prop[i], propDef.element);
}
}
if (propDef.type === Object && propDef.shape) {
const shape = propDef.shape;
for (let key in shape) {
result = result && isValidProp(prop[key], shape[key]);
}
if (result) {
for (let propName in prop) {
if (!(propName in shape)) {
throw new Error(`unknown prop '${propName}'`);
}
}
}
}
return result;
}
+35 -69
View File
@@ -1,24 +1,12 @@
import { Fiber } from "./fiber"; import { Fiber, RootFiber } from "./fibers";
import { browser } from "../browser"; import { STATUS } from "./status";
/** // -----------------------------------------------------------------------------
* Owl Scheduler Class // Scheduler
* // -----------------------------------------------------------------------------
* The scheduler is the part of Owl that will effectively apply a rendering
* whenever a fiber is ready.
*
* Briefly, it can be used to register root fibers. Whenever there is an
* active root fiber, it will poll continuously each animation frame (so, about
* once every 16ms) and whenever a root fiber is ready, it will apply it.
*/
interface Task {
fiber: Fiber;
callback: (err?: Error) => void;
}
export class Scheduler { export class Scheduler {
tasks: Task[] = []; tasks: Set<RootFiber> = new Set();
isRunning: boolean = false; isRunning: boolean = false;
requestAnimationFrame: Window["requestAnimationFrame"]; requestAnimationFrame: Window["requestAnimationFrame"];
@@ -35,37 +23,10 @@ export class Scheduler {
this.isRunning = false; this.isRunning = false;
} }
addFiber(fiber: Fiber): Promise<void> { addFiber(fiber: Fiber) {
// if the fiber was remapped into a larger rendering fiber, it may not be a this.tasks.add(fiber.root);
// root fiber. But we only want to register root fibers if (!this.isRunning) {
fiber = fiber.root; this.start();
return new Promise((resolve, reject) => {
if (fiber.error) {
return reject(fiber.error);
}
this.tasks.push({
fiber,
callback: () => {
if (fiber.error) {
return reject(fiber.error);
}
resolve();
},
});
if (!this.isRunning) {
this.start();
}
});
}
rejectFiber(fiber: Fiber, reason: string) {
fiber = fiber.root;
const index = this.tasks.findIndex((t) => t.fiber === fiber);
if (index >= 0) {
const [task] = this.tasks.splice(index, 1);
fiber.cancel();
fiber.error = new Error(reason);
task.callback();
} }
} }
@@ -74,28 +35,35 @@ export class Scheduler {
* Other tasks are left unchanged. * Other tasks are left unchanged.
*/ */
flush() { flush() {
let tasks = this.tasks; this.tasks.forEach((fiber) => {
this.tasks = []; if (fiber.root !== fiber) {
tasks = tasks.filter((task) => { // this is wrong! should be something like
if (task.fiber.isCompleted) { // if (this.tasks.has(fiber.root)) {
task.callback(); // // parent rendering has completed
return false; // fiber.resolve();
// this.tasks.delete(fiber);
// }
this.tasks.delete(fiber);
return;
} }
if (task.fiber.counter === 0) { if (fiber.error) {
if (!task.fiber.error) { this.tasks.delete(fiber);
try { fiber.reject(fiber.error);
task.fiber.complete(); return;
} catch (e) { }
task.fiber.handleError(e); if (fiber.node.status === STATUS.DESTROYED) {
} this.tasks.delete(fiber);
return;
}
if (fiber.counter === 0) {
if (!fiber.error) {
fiber.complete();
} }
task.callback(); fiber.resolve();
return false; this.tasks.delete(fiber);
} }
return true;
}); });
this.tasks = tasks.concat(this.tasks); if (this.tasks.size === 0) {
if (this.tasks.length === 0) {
this.stop(); this.stop();
} }
} }
@@ -109,5 +77,3 @@ export class Scheduler {
}); });
} }
} }
export const scheduler = new Scheduler(browser.requestAnimationFrame);
+24
View File
@@ -0,0 +1,24 @@
import type { Component } from "./component";
// -----------------------------------------------------------------------------
// Status
// -----------------------------------------------------------------------------
export const enum STATUS {
NEW,
MOUNTED, // is ready, and in DOM. It has a valid el
DESTROYED,
}
type STATUS_DESCR = "new" | "mounted" | "destroyed";
export function status(component: Component): STATUS_DESCR {
switch (component.__owl__.status) {
case STATUS.NEW:
return "new";
case STATUS.MOUNTED:
return "mounted";
case STATUS.DESTROYED:
return "destroyed";
}
}
-70
View File
@@ -1,70 +0,0 @@
/**
* Owl Style System
*
* This files contains the Owl code related to processing (extended) css strings
* and creating/adding <style> tags to the document head.
*/
export const STYLESHEETS: { [id: string]: HTMLStyleElement } = {};
export function processSheet(str: string): string {
const tokens = str.split(/(\{|\}|;)/).map((s) => s.trim());
const selectorStack: string[][] = [];
const parts: string[] = [];
let rules: string[] = [];
function generateSelector(stackIndex: number, parentSelector?: string) {
const parts: string[] = [];
for (const selector of selectorStack[stackIndex]) {
let part = (parentSelector && parentSelector + " " + selector) || selector;
if (part.includes("&")) {
part = selector.replace(/&/g, parentSelector || "");
}
if (stackIndex < selectorStack.length - 1) {
part = generateSelector(stackIndex + 1, part);
}
parts.push(part);
}
return parts.join(", ");
}
function generateRules() {
if (rules.length) {
parts.push(generateSelector(0) + " {");
parts.push(...rules);
parts.push("}");
rules = [];
}
}
while (tokens.length) {
let token = tokens.shift()!;
if (token === "}") {
generateRules();
selectorStack.pop();
} else {
if (tokens[0] === "{") {
generateRules();
selectorStack.push(token.split(/\s*,\s*/));
tokens.shift();
}
if (tokens[0] === ";") {
rules.push(" " + token + ";");
}
}
}
return parts.join("\n");
}
export function registerSheet(id: string, css: string) {
const sheet = document.createElement("style");
sheet.innerHTML = processSheet(css);
STYLESHEETS[id] = sheet;
}
export function activateSheet(id, name) {
const sheet = STYLESHEETS[id];
if (!sheet) {
throw new Error(
`Invalid css stylesheet for component '${name}'. Did you forget to use the 'css' tag helper?`
);
}
sheet.setAttribute("component", name);
document.head.appendChild(sheet);
}
-42
View File
@@ -1,42 +0,0 @@
import { QWeb } from "./qweb/index";
import { TRANSLATABLE_ATTRS } from "./qweb/qweb";
/**
* This file creates and exports the OWL 'config' object, with keys:
* - 'mode': 'prod' or 'dev',
* - 'env': the environment to use in root components.
*/
interface Config {
mode: string;
enableTransitions: boolean;
translatableAttributes: string[];
}
export const config = {
translatableAttributes: TRANSLATABLE_ATTRS,
} as Config;
Object.defineProperty(config, "mode", {
get() {
return QWeb.dev ? "dev" : "prod";
},
set(mode: string) {
QWeb.dev = mode === "dev";
if (QWeb.dev) {
console.info(`Owl is running in 'dev' mode.
This is not suitable for production use.
See https://github.com/odoo/owl/blob/master/doc/reference/config.md#mode for more information.`);
}
},
});
Object.defineProperty(config, "enableTransitions", {
get() {
return QWeb.enableTransitions;
},
set(value: boolean) {
QWeb.enableTransitions = value;
},
});
-138
View File
@@ -1,138 +0,0 @@
import { Component } from "./component/component";
import { scheduler } from "./component/scheduler";
import { EventBus } from "./core/event_bus";
import { Observer } from "./core/observer";
/**
* The `Context` object provides a way to share data between an arbitrary number
* of component. Usually, data is passed from a parent to its children component,
* but when we have to deal with some mostly global information, this can be
* annoying, since each component will need to pass the information to each
* children, even though some or most of them will not use the information.
*
* With a `Context` object, each component can subscribe (with the `useContext`
* hook) to its state, and will be updated whenever the context state is updated.
*/
function partitionBy<T>(arr: T[], fn: (t: T) => boolean) {
let lastGroup: T[] | false = false;
let lastValue;
return arr.reduce((acc: T[][], cur) => {
let curVal = fn(cur);
if (lastGroup) {
if (curVal === lastValue) {
lastGroup.push(cur);
} else {
lastGroup = false;
}
}
if (!lastGroup) {
lastGroup = [cur];
acc.push(lastGroup);
}
lastValue = curVal;
return acc;
}, []);
}
export class Context extends EventBus {
state: any;
observer: Observer;
rev: number = 1;
// mapping from component id to last observed context id
mapping: { [componentId: number]: number } = {};
constructor(state: Object = {}) {
super();
this.observer = new Observer();
this.observer.notifyCB = () => {
// notify components in the next microtask tick to ensure that subscribers
// are notified only once for all changes that occur in the same micro tick
let rev = this.rev;
return Promise.resolve().then(() => {
if (rev === this.rev) {
this.__notifyComponents();
}
});
};
this.state = this.observer.observe(state);
this.subscriptions.update = [];
}
/**
* Instead of using trigger to emit an update event, we actually implement
* our own function to do that. The reason is that we need to be smarter than
* a simple trigger function: we need to wait for parent components to be
* done before doing children components. More precisely, if an update
* as an effect of destroying a children, we do not want to call any code
* from the child, and certainly not render it.
*
* This method implements a simple grouping algorithm by depth. If we have
* connected components of depths [2, 4,4,4,4, 3,8,8], the Context will notify
* them in the following groups: [2], [4,4,4,4], [3], [8,8]. Each group will
* be updated sequentially, but each components in a given group will be done in
* parallel.
*
* This is a very simple algorithm, but it avoids checking if a given
* component is a child of another.
*/
async __notifyComponents() {
const rev = ++this.rev;
const subscriptions = this.subscriptions.update;
const groups = partitionBy(subscriptions, (s) => (s.owner ? s.owner.__owl__.depth : -1));
for (let group of groups) {
const proms = group.map((sub) => sub.callback.call(sub.owner, rev));
// at this point, each component in the current group has registered a
// top level fiber in the scheduler. It could happen that rendering these
// components is done (if they have no children). This is why we manually
// flush the scheduler. This will force the scheduler to check
// immediately if they are done, which will cause their rendering
// promise to resolve earlier, which means that there is a chance of
// processing the next group in the same frame.
scheduler.flush();
await Promise.all(proms);
}
}
}
/**
* The`useContext` hook is the normal way for a component to register themselve
* to context state changes. The `useContext` method returns the context state
*/
export function useContext(ctx: Context): any {
const component: Component = Component.current!;
return useContextWithCB(ctx, component, component.render.bind(component));
}
export function useContextWithCB(ctx: Context, component: Component, method): any {
const __owl__ = component.__owl__;
const id = __owl__.id;
const mapping = ctx.mapping;
if (id in mapping) {
return ctx.state;
}
if (!__owl__.observer) {
__owl__.observer = new Observer();
__owl__.observer.notifyCB = component.render.bind(component);
}
mapping[id] = 0;
const renderFn = __owl__.renderFn;
__owl__.renderFn = function (comp, params) {
mapping[id] = ctx.rev;
return renderFn(comp, params);
};
ctx.on("update", component, async (contextRev) => {
if (mapping[id] < contextRev) {
mapping[id] = contextRev;
await method();
}
});
const __destroy = component.__destroy;
component.__destroy = (parent) => {
ctx.off("update", component);
delete mapping[id];
__destroy.call(component, parent);
};
return ctx.state;
}
-79
View File
@@ -1,79 +0,0 @@
/**
* We define here a simple event bus: it can
* - emit events
* - add/remove listeners.
*
* This is a useful pattern of communication in many cases. For OWL, each
* components and stores are event buses.
*/
//------------------------------------------------------------------------------
// Types
//------------------------------------------------------------------------------
export type Callback = (...args: any[]) => void;
export interface Subscription {
owner: any;
callback: Callback;
}
//------------------------------------------------------------------------------
// EventBus
//------------------------------------------------------------------------------
export class EventBus {
subscriptions: { [eventType: string]: Subscription[] } = {};
/**
* Add a listener for the 'eventType' events.
*
* Note that the 'owner' of this event can be anything, but will more likely
* be a component or a class. The idea is that the callback will be called with
* the proper owner bound.
*
* Also, the owner should be kind of unique. This will be used to remove the
* listener.
*/
on(eventType: string, owner: any, callback: Callback) {
if (!callback) {
throw new Error("Missing callback");
}
if (!this.subscriptions[eventType]) {
this.subscriptions[eventType] = [];
}
this.subscriptions[eventType].push({
owner,
callback,
});
}
/**
* Remove a listener
*/
off(eventType: string, owner: any) {
const subs = this.subscriptions[eventType];
if (subs) {
this.subscriptions[eventType] = subs.filter((s) => s.owner !== owner);
}
}
/**
* Emit an event of type 'eventType'. Any extra arguments will be passed to
* the listeners callback.
*/
trigger(eventType: string, ...args: any[]) {
const subs = this.subscriptions[eventType] || [];
for (let i = 0, iLen = subs.length; i < iLen; i++) {
const sub = subs[i];
sub.callback.call(sub.owner, ...args);
}
}
/**
* Remove all subscriptions.
*/
clear() {
this.subscriptions = {};
}
}
-99
View File
@@ -1,99 +0,0 @@
/**
* Owl Observer
*
* This code contains the logic that allows Owl to observe and react to state
* changes.
*
* This is a Observer class that can observe any JS values. The way it works
* can be summarized thusly:
* - primitive values are not observed at all
* - Objects and arrays are observed by replacing them with a Proxy
* - each object/array metadata are tracked in a weakmap, and keep a revision
* number
*
* Note that this code is loosely inspired by Vue.
*/
//------------------------------------------------------------------------------
// Observer
//------------------------------------------------------------------------------
export class Observer {
rev: number = 1;
allowMutations: boolean = true;
weakMap: WeakMap<any, any> = new WeakMap();
notifyCB() {}
observe<T>(value: T, parent?: any): T {
if (
value === null ||
typeof value !== "object" ||
value instanceof Date ||
value instanceof Promise
) {
// fun fact: typeof null === 'object'
return value;
}
let metadata = this.weakMap.get(value) || this._observe(value, parent);
return metadata.proxy;
}
revNumber(value): number {
const metadata = this.weakMap.get(value);
return metadata ? metadata.rev : 0;
}
_observe(value, parent) {
var self = this;
const proxy = new Proxy(value, {
get(target, k) {
const targetValue = target[k];
return self.observe(targetValue, value);
},
set(target, key: string, newVal): boolean {
const value = target[key];
if (newVal !== value) {
if (!self.allowMutations) {
throw new Error(
`Observed state cannot be changed here! (key: "${key}", val: "${newVal}")`
);
}
self._updateRevNumber(target);
target[key] = newVal;
self.notifyCB();
}
return true;
},
deleteProperty(target, key) {
if (key in target) {
delete target[key];
self._updateRevNumber(target);
self.notifyCB();
}
return true;
},
});
const metadata = {
value,
proxy,
rev: this.rev,
parent,
};
this.weakMap.set(value, metadata);
this.weakMap.set(metadata.proxy, metadata);
return metadata;
}
_updateRevNumber(target: any) {
this.rev++;
let metadata = this.weakMap.get(target);
let parent = target;
do {
metadata = this.weakMap.get(parent);
metadata.rev++;
} while ((parent = metadata.parent) && parent !== target);
}
}
-15
View File
@@ -1,15 +0,0 @@
import { Component } from "../component/component";
/**
* We define here OwlEvent, a subclass of CustomEvent, with an additional
* attribute:
* - originalComponent: the component that triggered the event
*/
export class OwlEvent<T> extends CustomEvent<T> {
originalComponent: Component;
constructor(component, eventType, options) {
super(eventType, options);
this.originalComponent = component;
}
}
+5
View File
@@ -0,0 +1,5 @@
export class EventBus extends EventTarget {
trigger(name: string, payload?: any) {
this.dispatchEvent(new CustomEvent(name, { detail: payload }));
}
}
-182
View File
@@ -1,182 +0,0 @@
import { Component, Env } from "./component/component";
import { Observer } from "./core/observer";
/**
* Owl Hook System
*
* This file introduces the concept of hooks, similar to React or Vue hooks.
* We have currently an implementation of:
* - useState (reactive state)
* - onMounted
* - onWillUnmount
* - useRef
*/
// -----------------------------------------------------------------------------
// useState
// -----------------------------------------------------------------------------
/**
* This is the main way a component can be made reactive. The useState hook
* will return an observed object (or array). Changes to that value will then
* trigger a rerendering of the current component.
*/
export function useState<T>(state: T): T {
const component: Component = Component.current!;
const __owl__ = component.__owl__;
if (!__owl__.observer) {
__owl__.observer = new Observer();
__owl__.observer.notifyCB = component.render.bind(component);
}
return __owl__.observer.observe(state);
}
// -----------------------------------------------------------------------------
// Life cycle hooks
// -----------------------------------------------------------------------------
function makeLifecycleHook(method: string, reverse: boolean = false) {
if (reverse) {
return function (cb) {
const component: Component = Component.current!;
if (component.__owl__[method]) {
const current = component.__owl__[method];
component.__owl__[method] = function () {
current.call(component);
cb.call(component);
};
} else {
component.__owl__[method] = cb;
}
};
} else {
return function (cb) {
const component: Component = Component.current!;
if (component.__owl__[method]) {
const current = component.__owl__[method];
component.__owl__[method] = function () {
cb.call(component);
current.call(component);
};
} else {
component.__owl__[method] = cb;
}
};
}
}
function makeAsyncHook(method: string) {
return function (cb) {
const component: Component = Component.current!;
if (component.__owl__[method]) {
const current = component.__owl__[method];
component.__owl__[method] = function (...args) {
return Promise.all([current.call(component, ...args), cb.call(component, ...args)]);
};
} else {
component.__owl__[method] = cb;
}
};
}
export const onMounted = makeLifecycleHook("mountedCB", true);
export const onWillUnmount = makeLifecycleHook("willUnmountCB");
export const onWillPatch = makeLifecycleHook("willPatchCB");
export const onPatched = makeLifecycleHook("patchedCB", true);
export const onWillStart = makeAsyncHook("willStartCB");
export const onWillUpdateProps = makeAsyncHook("willUpdatePropsCB");
// -----------------------------------------------------------------------------
// useRef
// -----------------------------------------------------------------------------
/**
* The purpose of this hook is to allow components to get a reference to a sub
* html node or component.
*/
interface Ref<C extends Component = Component> {
el: HTMLElement | null;
comp: C | null;
}
export function useRef<C extends Component = Component>(name: string): Ref<C> {
const __owl__ = Component.current!.__owl__;
return {
get el(): HTMLElement | null {
const val = __owl__.refs && __owl__.refs[name];
if (val instanceof HTMLElement) {
return val;
} else if (val instanceof Component) {
return val.el;
}
return null;
},
get comp(): C | null {
const val = __owl__.refs && __owl__.refs[name];
return val instanceof Component ? (val as C) : null;
},
};
}
// -----------------------------------------------------------------------------
// "Builder" hooks
// -----------------------------------------------------------------------------
/**
* This hook is useful as a building block for some customized hooks, that may
* need a reference to the component calling them.
*/
export function useComponent<P, E extends Env>(): Component<P, E> {
return Component.current as any;
}
/**
* This hook is useful as a building block for some customized hooks, that may
* need a reference to the env of the component calling them.
*/
export function useEnv<E extends Env>(): E {
return Component.current.env as any;
}
// -----------------------------------------------------------------------------
// useSubEnv
// -----------------------------------------------------------------------------
/**
* This hook is a simple way to let components use a sub environment. Note that
* like for all hooks, it is important that this is only called in the
* constructor method.
*/
export function useSubEnv(nextEnv) {
const component = Component.current!;
component.env = Object.assign(Object.create(component.env), nextEnv);
}
// -----------------------------------------------------------------------------
// useExternalListener
// -----------------------------------------------------------------------------
/**
* When a component needs to listen to DOM Events on element(s) that are not
* part of his hierarchy, we can use the `useExternalListener` hook.
* It will correctly add and remove the event listener, whenever the
* component is mounted and unmounted.
*
* Example:
* a menu needs to listen to the click on window to be closed automatically
*
* Usage:
* in the constructor of the OWL component that needs to be notified,
* `useExternalListener(window, 'click', this._doSomething);`
* */
export function useExternalListener(
target: HTMLElement | typeof window,
eventName: string,
handler,
eventParams?
) {
const boundHandler = handler.bind(Component.current);
onMounted(() => target.addEventListener(eventName, boundHandler, eventParams));
onWillUnmount(() => target.removeEventListener(eventName, boundHandler, eventParams));
}
+69 -38
View File
@@ -1,42 +1,73 @@
/** import {
* This file is the main file packaged by rollup (see rollup.config.js). From config,
* this file, we export all public owl elements. createBlock,
* html,
* Note that dynamic values, such as a date or a commit hash are added by rollup list,
*/ mount as blockMount,
import { EventBus } from "./core/event_bus"; multi,
import { Observer } from "./core/observer"; patch,
import { QWeb } from "./qweb/index"; remove,
import { config } from "./config"; text,
import * as _store from "./store"; toggler,
import * as _utils from "./utils"; } from "./blockdom";
import * as _tags from "./tags"; import { mainEventHandler } from "./component/handler";
import { AsyncRoot } from "./misc/async_root";
import { Portal } from "./misc/portal";
import * as _hooks from "./hooks";
import * as _context from "./context";
import { Link } from "./router/link";
import { RouteComponent } from "./router/route_component";
import { Router } from "./router/router";
export { Component, mount } from "./component/component"; config.shouldNormalizeDom = false;
export { QWeb }; config.mainEventHandler = mainEventHandler;
export { config };
export { browser } from "./browser";
export const Context = _context.Context; export const blockDom = {
export const useState = _hooks.useState; config,
export const core = { EventBus, Observer }; // bdom entry points
export const router = { Router, RouteComponent, Link }; mount: blockMount,
export const Store = _store.Store; patch,
export const utils = _utils; remove,
export const tags = _tags; // bdom block types
export const misc = { AsyncRoot, Portal }; list,
export const hooks = Object.assign({}, _hooks, { multi,
useContext: _context.useContext, text,
useDispatch: _store.useDispatch, toggler,
useGetters: _store.useGetters, createBlock,
useStore: _store.useStore, html,
}); };
// import { makeBlockClass } from "./_old_bdom/element";
import { App } from "./app";
import { Component } from "./component/component";
import { getCurrent } from "./component/component_node";
// import { getCurrent } from "./b_node";
export { App, Component };
export async function mount<T extends typeof Component>(
C: T,
target: HTMLElement
): Promise<InstanceType<T>> {
const app = new App(C);
return app.mount(target);
}
export function useComponent(): Component {
const current = getCurrent();
return current!.component;
}
export { status } from "./component/status";
export { Portal } from "./misc/portal";
export { Memo } from "./misc/memo";
export { xml } from "./tags";
export { useState } from "./reactivity";
export { useRef } from "./refs";
export { EventBus } from "./event_bus";
export {
onWillStart,
onMounted,
onWillUnmount,
onWillUpdateProps,
onWillPatch,
onPatched,
onRender,
onDestroyed,
} from "./lifecycle_hooks";
export const __info__ = {}; export const __info__ = {};
+49
View File
@@ -0,0 +1,49 @@
import { getCurrent } from "./component/component_node";
// -----------------------------------------------------------------------------
// hooks
// -----------------------------------------------------------------------------
export function onWillStart(fn: () => Promise<void> | void | any) {
const node = getCurrent()!;
node.willStart.push(fn);
}
export function onWillUpdateProps(fn: (nextProps: any) => Promise<void> | void | any) {
const node = getCurrent()!;
node.willUpdateProps.push(fn);
}
export function onMounted(fn: () => void | any) {
const node = getCurrent()!;
node.mounted.push(fn);
}
export function onWillPatch(fn: () => Promise<void> | any | void) {
const node = getCurrent()!;
node.willPatch.push(fn);
}
export function onPatched(fn: () => void | any) {
const node = getCurrent()!;
node.patched.push(fn);
}
export function onWillUnmount(fn: () => Promise<void> | void | any) {
const node = getCurrent()!;
node.willUnmount.push(fn);
}
export function onDestroyed(fn: () => Promise<void> | void | any) {
const node = getCurrent()!;
node.destroyed.push(fn);
}
export function onRender(fn: () => void | any) {
const node = getCurrent()!;
const renderFn = node.renderFn;
node.renderFn = () => {
fn();
return renderFn();
};
}
-19
View File
@@ -1,19 +0,0 @@
import { Component } from "../component/component";
import { xml } from "../tags";
/**
* AsyncRoot
*
* Owl is by default asynchronous, and the user interface will wait for all its
* subcomponents to be rendered before updating the DOM. This is most of the
* time what we want, but in some cases, it makes sense to "detach" a component
* from this coordination. This is the goal of the AsyncRoot component.
*/
export class AsyncRoot extends Component {
static template = xml`<t t-slot="default"/>`;
async __updateProps(nextProps, parentFiber) {
this.render(parentFiber.force);
}
}
+47
View File
@@ -0,0 +1,47 @@
import { Component } from "../component/component";
import type { ComponentNode } from "../component/component_node";
import { xml } from "../tags";
import { Fiber } from "../component/fibers";
export class Memo extends Component {
static template = xml`<t t-slot="default"/>`;
constructor(props: any, env: any, node: ComponentNode) {
super(props, env, node);
// prevent patching process conditionally
let applyPatch = false;
const patchFn = node.patch;
node.patch = () => {
if (applyPatch) {
patchFn.call(node);
applyPatch = false;
}
};
// check props change, and render/apply patch if it changed
let prevProps = props;
const updateAndRender = node.updateAndRender;
node.updateAndRender = function (props: any, parentFiber: Fiber) {
const shouldUpdate = !shallowEqual(prevProps, props);
if (shouldUpdate) {
prevProps = props;
updateAndRender.call(node, props, parentFiber);
applyPatch = true;
}
return Promise.resolve();
};
}
}
/**
* we assume that each object have the same set of keys
*/
function shallowEqual(p1: any, p2: any): boolean {
for (let k in p1) {
if (p1[k] !== p2[k]) {
return false;
}
}
return true;
}
+57 -163
View File
@@ -1,171 +1,65 @@
import { Component, portalSymbol } from "../component/component"; import type { ComponentNode } from "../component/component_node";
import { VNode, patch } from "../vdom/index"; import { Component } from "../component/component";
import { xml } from "../tags"; import { xml } from "../tags";
import { OwlEvent } from "../core/owl_event"; import { BDom, text, VNode } from "../blockdom";
import { useSubEnv } from "../hooks";
/** const VText: any = text("").constructor;
* Portal
*
* The Portal component allows to render a part of a component outside it's DOM.
* It is for example useful for dialogs: for css reasons, dialogs are in general
* placed in a specific spot of the DOM (e.g. directly in the body). With the
* Portal, a component can conditionally specify in its tempate that it contains
* a dialog, and where this dialog should be inserted in the DOM.
*
* The Portal component ensures that the communication between the content of
* the Portal and its parent properly works: business events reaching the Portal
* are re-triggered on an empty <portal> node located in the parent's DOM.
*/
interface Props { class VPortal extends VText implements Partial<VNode<VPortal>> {
target: string; // selector: string;
realBDom: BDom | null;
target: HTMLElement | null = null;
constructor(selector: string, realBDom: BDom) {
super("");
this.selector = selector;
this.realBDom = realBDom;
}
mount(parent: HTMLElement, anchor: ChildNode) {
super.mount(parent, anchor);
this.target = document.querySelector(this.selector) as any;
if (!this.target) {
let el: any = this.el;
while (el && el.parentElement instanceof HTMLElement) {
el = el.parentElement;
}
this.target = el && el.querySelector(this.selector);
if (!this.target) {
throw new Error("invalid portal target");
}
}
this.realBDom!.mount(this.target!, null);
}
beforeRemove() {
this.realBDom!.beforeRemove();
}
remove() {
super.remove();
this.realBDom!.remove();
this.realBDom = null;
}
patch(other: VPortal) {
super.patch(other);
if (this.realBDom) {
this.realBDom.patch(other.realBDom!, true);
} else {
this.realBDom = other.realBDom;
this.realBDom!.mount(this.target!, null);
}
}
} }
export class Portal extends Component<Props> { export class Portal extends Component {
static template = xml`<portal><t t-slot="default"/></portal>`; static template = xml`<t t-slot="default"/>`;
static props = {
target: {
type: String,
},
};
// boolean to indicate whether or not we must listen to 'dom-appended' event constructor(props: any, env: any, node: ComponentNode) {
// to hook on the moment when the target is inserted into the DOM (because it super(props, env, node);
// is not when the portal is rendered) node._render = function (fiber: any) {
doTargetLookUp: boolean = true; const bdom = new VPortal(props.target, this.renderFn());
// set of encountered events that need to be redirected fiber.bdom = bdom;
_handledEvents: Set<string> = new Set(); fiber.root.counter--;
// function that will be the event's tunnel (needs to be an arrow function to };
// avoid having to rebind `this`)
_handlerTunnel: (f: OwlEvent<any>) => void = (ev: OwlEvent<any>) => {
ev.stopPropagation();
this.__trigger(ev.originalComponent, ev.type, ev.detail);
};
// Storing the parent's env
parentEnv: any = null;
// represents the element that is moved somewhere else
portal: VNode | null = null;
// the target where we will move `portal`
target: Element | null = null;
constructor(parent, props) {
super(parent, props);
this.parentEnv = parent ? parent.env : {};
// put a callback in the env that is propagated to children s.t. portal can
// register an handler to those events just before children will trigger them
useSubEnv({
[portalSymbol]: (ev) => {
if (!this._handledEvents.has(ev.type)) {
this.portal!.elm!.addEventListener(ev.type, this._handlerTunnel);
this._handledEvents.add(ev.type);
}
},
});
}
/**
* Override to revert back to a classic Component's structure
*
* @override
*/
__callWillUnmount() {
super.__callWillUnmount();
this.el!.appendChild(this.portal!.elm!);
this.doTargetLookUp = true;
}
/**
* At each DOM change, we must ensure that the portal contains exactly one
* child
*/
__checkVNodeStructure(vnode: VNode) {
const children = vnode.children!;
let countRealNodes = 0;
for (let child of children) {
if ((child as VNode).sel) {
countRealNodes++;
}
}
if (countRealNodes !== 1) {
throw new Error(`Portal must have exactly one non-text child (has ${countRealNodes})`);
}
}
/**
* Ensure the target is still there at whichever time we render
*/
__checkTargetPresence() {
if (!this.target || !document.contains(this.target)) {
throw new Error(`Could not find any match for "${this.props.target}"`);
}
}
/**
* Move the portal's element to the target
*/
__deployPortal() {
this.__checkTargetPresence();
this.target!.appendChild(this.portal!.elm!);
}
/**
* Override to remove from the DOM the element we have teleported
*
* @override
*/
__destroy(parent) {
if (this.portal && this.portal.elm) {
const displacedElm = this.portal.elm!;
const parent = displacedElm.parentNode;
if (parent) {
parent.removeChild(displacedElm);
}
}
super.__destroy(parent);
}
/**
* Override to patch the element that has been teleported
*
* @override
*/
__patch(target, vnode) {
if (this.doTargetLookUp) {
const target = document.querySelector(this.props.target);
if (!target) {
this.env.qweb.on("dom-appended", this, () => {
this.doTargetLookUp = false;
this.env.qweb.off("dom-appended", this);
this.target = document.querySelector(this.props.target);
this.__deployPortal();
});
} else {
this.doTargetLookUp = false;
this.target = target;
}
}
this.__checkVNodeStructure(vnode);
const shouldDeploy =
(!this.portal || this.el!.contains(this.portal.elm!)) && !this.doTargetLookUp;
if (!this.doTargetLookUp && !shouldDeploy) {
// Only on pure patching, provided the
// this.target's parent has not been unmounted
this.__checkTargetPresence();
}
const portalPatch = this.portal ? this.portal : document.createElement(vnode.children[0].sel);
this.portal = patch(portalPatch, vnode.children![0] as VNode);
vnode.children = [];
super.__patch(target, vnode);
if (shouldDeploy) {
this.__deployPortal();
}
}
/**
* Override to set the env
*/
__trigger(component: Component, eventType: string, payload?: any) {
const env = this.env;
this.env = this.parentEnv;
super.__trigger(component, eventType, payload);
this.env = env;
} }
} }
-395
View File
@@ -1,395 +0,0 @@
import { CompilationContext, INTERP_REGEXP } from "./compilation_context";
import { QWeb } from "./qweb";
import { htmlToVDOM } from "../vdom/html_to_vdom";
import { QWebVar } from "./expression_parser";
/**
* Owl QWeb Directives
*
* This file contains the implementation of most standard QWeb directives:
* - t-esc
* - t-raw
* - t-set/t-value
* - t-if/t-elif/t-else
* - t-call
* - t-foreach/t-as
* - t-debug
* - t-log
*/
//------------------------------------------------------------------------------
// t-esc and t-raw
//------------------------------------------------------------------------------
QWeb.utils.htmlToVDOM = htmlToVDOM;
function compileValueNode(value: any, node: Element, qweb: QWeb, ctx: CompilationContext) {
ctx.rootContext.shouldDefineScope = true;
if (value === "0") {
if (ctx.parentNode) {
// the 'zero' magical symbol is where we can find the result of the rendering
// of the body of the t-call.
ctx.rootContext.shouldDefineUtils = true;
const zeroArgs = ctx.escaping
? `{text: utils.vDomToString(scope[utils.zero])}`
: `...scope[utils.zero]`;
ctx.addLine(`c${ctx.parentNode}.push(${zeroArgs});`);
}
return;
}
let exprID: string;
if (typeof value === "string") {
exprID = `_${ctx.generateID()}`;
ctx.addLine(`let ${exprID} = ${ctx.formatExpression(value)};`);
} else {
exprID = `scope.${value.id}`;
}
ctx.addIf(`${exprID} != null`);
if (ctx.escaping) {
let protectID;
if (value.hasBody) {
ctx.rootContext.shouldDefineUtils = true;
protectID = ctx.startProtectScope();
ctx.addLine(
`${exprID} = ${exprID} instanceof utils.VDomArray ? utils.vDomToString(${exprID}) : ${exprID};`
);
}
if (ctx.parentTextNode) {
ctx.addLine(`vn${ctx.parentTextNode}.text += ${exprID};`);
} else if (ctx.parentNode) {
ctx.addLine(`c${ctx.parentNode}.push({text: ${exprID}});`);
} else {
let nodeID = ctx.generateID();
ctx.rootContext.rootNode = nodeID;
ctx.rootContext.parentTextNode = nodeID;
ctx.addLine(`let vn${nodeID} = {text: ${exprID}};`);
if (ctx.rootContext.shouldDefineResult) {
ctx.addLine(`result = vn${nodeID}`);
}
}
if (value.hasBody) {
ctx.stopProtectScope(protectID);
}
} else {
ctx.rootContext.shouldDefineUtils = true;
if (value.hasBody) {
ctx.addLine(
`const vnodeArray = ${exprID} instanceof utils.VDomArray ? ${exprID} : utils.htmlToVDOM(${exprID});`
);
ctx.addLine(`c${ctx.parentNode}.push(...vnodeArray);`);
} else {
ctx.addLine(`c${ctx.parentNode}.push(...utils.htmlToVDOM(${exprID}));`);
}
}
if (node.childNodes.length) {
ctx.addElse();
qweb._compileChildren(node, ctx);
}
ctx.closeIf();
}
QWeb.addDirective({
name: "esc",
priority: 70,
atNodeEncounter({ node, qweb, ctx }): boolean {
let value = ctx.getValue(node.getAttribute("t-esc")!);
compileValueNode(value, node, qweb, ctx.subContext("escaping", true));
return true;
},
});
QWeb.addDirective({
name: "raw",
priority: 80,
atNodeEncounter({ node, qweb, ctx }): boolean {
let value = ctx.getValue(node.getAttribute("t-raw")!);
compileValueNode(value, node, qweb, ctx);
return true;
},
});
//------------------------------------------------------------------------------
// t-set
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "set",
extraNames: ["value"],
priority: 60,
atNodeEncounter({ node, qweb, ctx }): boolean {
ctx.rootContext.shouldDefineScope = true;
const variable = node.getAttribute("t-set")!;
let value = node.getAttribute("t-value")!;
ctx.variables[variable] = ctx.variables[variable] || ({} as QWebVar);
let qwebvar = ctx.variables[variable];
const hasBody = node.hasChildNodes();
qwebvar.id = variable;
qwebvar.expr = `scope.${variable}`;
if (value) {
const formattedValue = ctx.formatExpression(value);
let scopeExpr = `scope`;
if (ctx.protectedScopeNumber) {
ctx.rootContext.shouldDefineUtils = true;
scopeExpr = `utils.getScope(scope, '${variable}')`;
}
ctx.addLine(`${scopeExpr}.${variable} = ${formattedValue};`);
qwebvar.value = formattedValue;
}
if (hasBody) {
ctx.rootContext.shouldDefineUtils = true;
if (value) {
ctx.addIf(`!(${qwebvar.expr})`);
}
const tempParentNodeID = ctx.generateID();
const _parentNode = ctx.parentNode;
ctx.parentNode = tempParentNodeID;
ctx.addLine(`let c${tempParentNodeID} = new utils.VDomArray();`);
const nodeCopy = node.cloneNode(true) as Element;
for (let attr of ["t-set", "t-value", "t-if", "t-else", "t-elif"]) {
nodeCopy.removeAttribute(attr);
}
qweb._compileNode(nodeCopy, ctx);
ctx.addLine(`${qwebvar.expr} = c${tempParentNodeID}`);
qwebvar.value = `c${tempParentNodeID}`;
qwebvar.hasBody = true;
ctx.parentNode = _parentNode;
if (value) {
ctx.closeIf();
}
}
return true;
},
});
//------------------------------------------------------------------------------
// t-if, t-elif, t-else
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "if",
priority: 20,
atNodeEncounter({ node, ctx }): boolean {
let cond = ctx.getValue(node.getAttribute("t-if")!);
ctx.addIf(typeof cond === "string" ? ctx.formatExpression(cond) : `scope.${cond.id!}`);
return false;
},
finalize({ ctx }) {
ctx.closeIf();
},
});
QWeb.addDirective({
name: "elif",
priority: 30,
atNodeEncounter({ node, ctx }): boolean {
let cond = ctx.getValue(node.getAttribute("t-elif")!);
ctx.addLine(
`else if (${typeof cond === "string" ? ctx.formatExpression(cond) : `scope.${cond.id}`}) {`
);
ctx.indent();
return false;
},
finalize({ ctx }) {
ctx.closeIf();
},
});
QWeb.addDirective({
name: "else",
priority: 40,
atNodeEncounter({ ctx }): boolean {
ctx.addLine(`else {`);
ctx.indent();
return false;
},
finalize({ ctx }) {
ctx.closeIf();
},
});
//------------------------------------------------------------------------------
// t-call
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "call",
priority: 50,
atNodeEncounter({ node, qweb, ctx }): boolean {
// Step 1: sanity checks
// ------------------------------------------------
ctx.rootContext.shouldDefineScope = true;
ctx.rootContext.shouldDefineUtils = true;
const subTemplate = node.getAttribute("t-call")!;
const isDynamic = INTERP_REGEXP.test(subTemplate);
const nodeTemplate = qweb.templates[subTemplate];
if (!isDynamic && !nodeTemplate) {
throw new Error(`Cannot find template "${subTemplate}" (t-call)`);
}
// Step 2: compile target template in sub templates
// ------------------------------------------------
let subIdstr: string;
if (isDynamic) {
const _id = ctx.generateID();
ctx.addLine(`let tname${_id} = ${ctx.interpolate(subTemplate)};`);
ctx.addLine(`let tid${_id} = this.subTemplates[tname${_id}];`);
ctx.addIf(`!tid${_id}`);
ctx.addLine(`tid${_id} = this.constructor.nextId++;`);
ctx.addLine(`this.subTemplates[tname${_id}] = tid${_id};`);
ctx.addLine(
`this.constructor.subTemplates[tid${_id}] = this._compile(tname${_id}, {hasParent: true, defineKey: true});`
);
ctx.closeIf();
subIdstr = `tid${_id}`;
} else {
let subId = qweb.subTemplates[subTemplate];
if (!subId) {
subId = QWeb.nextId++;
qweb.subTemplates[subTemplate] = subId;
const subTemplateFn = qweb._compile(subTemplate, { hasParent: true, defineKey: true });
QWeb.subTemplates[subId] = subTemplateFn;
}
subIdstr = `'${subId}'`;
}
// Step 3: compile t-call body if necessary
// ------------------------------------------------
let hasBody = node.hasChildNodes();
const protectID = ctx.startProtectScope();
if (hasBody) {
// we add a sub scope to protect the ambient scope
ctx.addLine(`{`);
ctx.indent();
const nodeCopy = node.cloneNode(true) as Element;
for (let attr of ["t-if", "t-else", "t-elif", "t-call"]) {
nodeCopy.removeAttribute(attr);
}
// this local scope is intended to trap c__0
ctx.addLine(`{`);
ctx.indent();
ctx.addLine("let c__0 = [];");
qweb._compileNode(nodeCopy, ctx.subContext("parentNode", "__0"));
ctx.rootContext.shouldDefineUtils = true;
ctx.addLine("scope[utils.zero] = c__0;");
ctx.dedent();
ctx.addLine(`}`);
}
// Step 4: add the appropriate function call to current component
// ------------------------------------------------
const parentComponent = ctx.rootContext.shouldDefineParent
? `parent`
: `utils.getComponent(context)`;
const key = ctx.generateTemplateKey();
const parentNode = ctx.parentNode ? `c${ctx.parentNode}` : "result";
const extra = `Object.assign({}, extra, {parentNode: ${parentNode}, parent: ${parentComponent}, key: ${key}})`;
if (ctx.parentNode) {
ctx.addLine(`this.constructor.subTemplates[${subIdstr}].call(this, scope, ${extra});`);
} else {
// this is a t-call with no parentnode, we need to extract the result
ctx.rootContext.shouldDefineResult = true;
ctx.addLine(`result = []`);
ctx.addLine(`this.constructor.subTemplates[${subIdstr}].call(this, scope, ${extra});`);
ctx.addLine(`result = result[0]`);
}
// Step 5: restore previous scope
// ------------------------------------------------
if (hasBody) {
ctx.dedent();
ctx.addLine(`}`);
}
ctx.stopProtectScope(protectID);
return true;
},
});
//------------------------------------------------------------------------------
// t-foreach
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "foreach",
extraNames: ["as"],
priority: 10,
atNodeEncounter({ node, qweb, ctx }): boolean {
ctx.rootContext.shouldDefineScope = true;
ctx = ctx.subContext("loopNumber", ctx.loopNumber + 1);
const elems = node.getAttribute("t-foreach")!;
const name = node.getAttribute("t-as")!;
let arrayID = ctx.generateID();
ctx.addLine(`let _${arrayID} = ${ctx.formatExpression(elems)};`);
ctx.addLine(`if (!_${arrayID}) { throw new Error('QWeb error: Invalid loop expression')}`);
let keysID = ctx.generateID();
let valuesID = ctx.generateID();
ctx.addLine(`let _${keysID} = _${arrayID};`);
ctx.addLine(`let _${valuesID} = _${arrayID};`);
ctx.addIf(`!(_${arrayID} instanceof Array)`);
ctx.addLine(`_${keysID} = Object.keys(_${arrayID});`);
ctx.addLine(`_${valuesID} = Object.values(_${arrayID});`);
ctx.closeIf();
ctx.addLine(`let _length${keysID} = _${keysID}.length;`);
let varsID = ctx.startProtectScope(true);
const loopVar = `i${ctx.loopNumber}`;
ctx.addLine(`for (let ${loopVar} = 0; ${loopVar} < _length${keysID}; ${loopVar}++) {`);
ctx.indent();
ctx.addLine(`scope.${name}_first = ${loopVar} === 0`);
ctx.addLine(`scope.${name}_last = ${loopVar} === _length${keysID} - 1`);
ctx.addLine(`scope.${name}_index = ${loopVar}`);
ctx.addLine(`scope.${name} = _${keysID}[${loopVar}]`);
ctx.addLine(`scope.${name}_value = _${valuesID}[${loopVar}]`);
const nodeCopy = <Element>node.cloneNode(true);
let shouldWarn =
!nodeCopy.hasAttribute("t-key") &&
node.children.length === 1 &&
node.children[0].tagName !== "t" &&
!node.children[0].hasAttribute("t-key");
if (shouldWarn) {
console.warn(
`Directive t-foreach should always be used with a t-key! (in template: '${ctx.templateName}')`
);
}
if (nodeCopy.hasAttribute("t-key")) {
const expr = ctx.formatExpression(nodeCopy.getAttribute("t-key")!);
ctx.addLine(`let key${ctx.loopNumber} = ${expr};`);
nodeCopy.removeAttribute("t-key");
} else {
ctx.addLine(`let key${ctx.loopNumber} = i${ctx.loopNumber};`);
}
nodeCopy.removeAttribute("t-foreach");
qweb._compileNode(nodeCopy, ctx);
ctx.dedent();
ctx.addLine("}");
ctx.stopProtectScope(varsID);
return true;
},
});
//------------------------------------------------------------------------------
// t-debug
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "debug",
priority: 1,
atNodeEncounter({ ctx }) {
ctx.addLine("debugger;");
},
});
//------------------------------------------------------------------------------
// t-log
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "log",
priority: 1,
atNodeEncounter({ ctx, value }) {
const expr = ctx.formatExpression(value);
ctx.addLine(`console.log(${expr})`);
},
});
-229
View File
@@ -1,229 +0,0 @@
import { compileExpr, compileExprToArray, QWebVar } from "./expression_parser";
export const INTERP_REGEXP = /\{\{.*?\}\}/g;
//------------------------------------------------------------------------------
// Compilation Context
//------------------------------------------------------------------------------
export class CompilationContext {
static nextID: number = 1;
code: string[] = [];
variables: { [key: string]: QWebVar } = {};
escaping: boolean = false;
parentNode: number | null | string = null;
parentTextNode: number | null = null;
rootNode: number | null = null;
indentLevel: number = 0;
rootContext: CompilationContext;
shouldDefineParent: boolean = false;
shouldDefineScope: boolean = false;
protectedScopeNumber: number = 0;
shouldDefineQWeb: boolean = false;
shouldDefineUtils: boolean = false;
shouldDefineRefs: boolean = false;
shouldDefineResult: boolean = true;
loopNumber: number = 0;
inPreTag: boolean = false;
templateName: string;
allowMultipleRoots: boolean = false;
hasParentWidget: boolean = false;
hasKey0: boolean = false;
keyStack: boolean[] = [];
constructor(name?: string) {
this.rootContext = this;
this.templateName = name || "noname";
this.addLine("let h = this.h;");
}
generateID(): number {
return CompilationContext.nextID++;
}
/**
* This method generates a "template key", which is basically a unique key
* which depends on the currently set keys, and on the iteration numbers (if
* we are in a loop).
*
* Such a key is necessary when we need to associate an id to some element
* generated by a template (for example, a component)
*/
generateTemplateKey(prefix: string = ""): string {
const id = this.generateID();
if (this.loopNumber === 0 && !this.hasKey0) {
return `'${prefix}__${id}__'`;
}
let key = `\`${prefix}__${id}__`;
let start = this.hasKey0 ? 0 : 1;
for (let i = start; i < this.loopNumber + 1; i++) {
key += `\${key${i}}__`;
}
this.addLine(`let k${id} = ${key}\`;`);
return `k${id}`;
}
generateCode(): string[] {
if (this.shouldDefineResult) {
this.code.unshift(" let result;");
}
if (this.shouldDefineScope) {
this.code.unshift(" let scope = Object.create(context);");
}
if (this.shouldDefineRefs) {
this.code.unshift(" context.__owl__.refs = context.__owl__.refs || {};");
}
if (this.shouldDefineParent) {
if (this.hasParentWidget) {
this.code.unshift(" let parent = extra.parent;");
} else {
this.code.unshift(" let parent = context;");
}
}
if (this.shouldDefineQWeb) {
this.code.unshift(" let QWeb = this.constructor;");
}
if (this.shouldDefineUtils) {
this.code.unshift(" let utils = this.constructor.utils;");
}
return this.code;
}
withParent(node: number): CompilationContext {
if (
!this.allowMultipleRoots &&
this === this.rootContext &&
(this.parentNode || this.parentTextNode)
) {
throw new Error("A template should not have more than one root node");
}
if (!this.rootContext.rootNode) {
this.rootContext.rootNode = node;
}
if (!this.parentNode && this.rootContext.shouldDefineResult) {
this.addLine(`result = vn${node};`);
}
return this.subContext("parentNode", node);
}
subContext(key: keyof CompilationContext, value: any): CompilationContext {
const newContext = Object.create(this);
newContext[key] = value;
return newContext;
}
indent() {
this.rootContext.indentLevel++;
}
dedent() {
this.rootContext.indentLevel--;
}
addLine(line: string): number {
const prefix = new Array(this.indentLevel + 2).join(" ");
this.code.push(prefix + line);
return this.code.length - 1;
}
addIf(condition: string) {
this.addLine(`if (${condition}) {`);
this.indent();
}
addElse() {
this.dedent();
this.addLine("} else {");
this.indent();
}
closeIf() {
this.dedent();
this.addLine("}");
}
getValue(val: any): QWebVar | string {
return val in this.variables ? this.getValue(this.variables[val]) : val;
}
/**
* Prepare an expression for being consumed at render time. Its main job
* is to
* - replace unknown variables by a lookup in the context
* - replace already defined variables by their internal name
*/
formatExpression(expr: string): string {
this.rootContext.shouldDefineScope = true;
return compileExpr(expr, this.variables);
}
captureExpression(expr: string): string {
this.rootContext.shouldDefineScope = true;
const argId = this.generateID();
const tokens = compileExprToArray(expr, this.variables);
const done = new Set();
return tokens
.map((tok, i) => {
// "this" in captured expressions should be the current component
if (tok.value === "this") {
if (!done.has("this")) {
done.add("this");
this.addLine(`const this_${argId} = utils.getComponent(context);`);
}
tok.value = `this_${argId}`;
}
// Variables that should be looked up in the scope. isLocal is for arrow
// function arguments that should stay untouched (eg "ev => ev" should
// not become "const ev_1 = scope['ev']; ev_1 => ev_1")
if (
tok.varName &&
!tok.isLocal &&
// HACK: for backwards compatibility, we don't capture bare methods
// this allows them to be called with the rendering context/scope
// as their this value.
(!tokens[i + 1] || tokens[i + 1].type !== "LEFT_PAREN")
) {
if (!done.has(tok.varName)) {
done.add(tok.varName);
this.addLine(`const ${tok.varName}_${argId} = ${tok.value};`);
}
tok.value = `${tok.varName}_${argId}`;
}
return tok.value;
})
.join("");
}
/**
* Perform string interpolation on the given string. Note that if the whole
* string is an expression, it simply returns it (formatted and enclosed in
* parentheses).
* For instance:
* 'Hello {{x}}!' -> `Hello ${x}`
* '{{x ? 'a': 'b'}}' -> (x ? 'a' : 'b')
*/
interpolate(s: string): string {
let matches = s.match(INTERP_REGEXP);
if (matches && matches[0].length === s.length) {
return `(${this.formatExpression(s.slice(2, -2))})`;
}
let r = s.replace(/\{\{.*?\}\}/g, (s) => "${" + this.formatExpression(s.slice(2, -2)) + "}");
return "`" + r + "`";
}
startProtectScope(codeBlock?: boolean): number {
const protectID = this.generateID();
this.rootContext.protectedScopeNumber++;
this.rootContext.shouldDefineScope = true;
const scopeExpr = `Object.create(scope);`;
this.addLine(`let _origScope${protectID} = scope;`);
this.addLine(`scope = ${scopeExpr}`);
if (!codeBlock) {
this.addLine(`scope.__access_mode__ = 'ro';`);
}
return protectID;
}
stopProtectScope(protectID: number) {
this.rootContext.protectedScopeNumber--;
this.addLine(`scope = _origScope${protectID};`);
}
}
+982
View File
@@ -0,0 +1,982 @@
import { BDom } from "../blockdom";
import { Dom, DomNode, domToString, DomType } from "./dom_helpers";
import { compileExpr, compileExprToArray, interpolate, INTERP_REGEXP } from "./inline_expressions";
import {
AST,
ASTComment,
ASTComponent,
ASTDebug,
ASTDomNode,
ASTLog,
ASTMulti,
ASTSlot,
ASTTCall,
ASTTCallBlock,
ASTTEsc,
ASTText,
ASTTForEach,
ASTTif,
ASTTKey,
ASTTRaw,
ASTTSet,
ASTType,
parse,
} from "./parser";
export type Template = (context: any, vnode: any, key?: string) => BDom;
export type TemplateFunction = (blocks: any, utils: any) => Template;
type BlockType = "block" | "text" | "multi" | "list" | "html";
export function compileTemplate(template: string, name?: string): TemplateFunction {
const compiler = new QWebCompiler(template, name);
return compiler.compile();
}
// -----------------------------------------------------------------------------
// BlockDescription
// -----------------------------------------------------------------------------
class BlockDescription {
static nextBlockId = 1;
static nextDataId = 1;
varName: string;
blockName: string;
isRoot: boolean = false;
hasDynamicChildren: boolean = false;
children: BlockDescription[] = [];
data: string[] = [];
dom?: Dom;
currentDom?: DomNode;
childNumber: number = 0;
target: CodeTarget;
type: BlockType;
parentVar: string = "";
id: number;
constructor(target: CodeTarget, type: BlockType) {
this.id = BlockDescription.nextBlockId++;
this.varName = "b" + this.id;
this.blockName = "block" + this.id;
this.target = target;
this.type = type;
}
insertData(str: string): number {
const id = "d" + BlockDescription.nextDataId++;
this.target.addLine(`let ${id} = ${str};`);
return this.data.push(id) - 1;
}
insert(dom: Dom) {
if (this.currentDom) {
this.currentDom.content.push(dom);
} else {
this.dom = dom;
}
}
generateExpr(expr: string): string {
if (this.type === "block") {
const hasChildren = this.children.length;
let params = this.data.length ? `[${this.data.join(", ")}]` : hasChildren ? "[]" : "";
if (hasChildren) {
params += ", [" + this.children.map((c) => c.varName).join(", ") + "]";
}
return `${this.blockName}(${params})`;
} else if (this.type === "list") {
return `list(c${this.id})`;
}
return expr;
}
}
// -----------------------------------------------------------------------------
// Compiler code
// -----------------------------------------------------------------------------
const FNAMEREGEXP = /^[$A-Z_][0-9A-Z_$]*$/i;
interface Context {
block: BlockDescription | null;
index: number | string;
forceNewBlock: boolean;
preventRoot?: boolean;
isLast?: boolean;
}
class CodeTarget {
name: string;
signature: string = "";
indentLevel = 0;
loopLevel = 0;
code: string[] = [];
hasRoot = false;
hasCache = false;
constructor(name: string) {
this.name = name;
}
addLine(line: string, idx?: number) {
const prefix = new Array(this.indentLevel + 2).join(" ");
if (idx === undefined) {
this.code.push(prefix + line);
} else {
this.code.splice(idx, 0, prefix + line);
}
}
}
export class QWebCompiler {
blocks: BlockDescription[] = [];
nextId = 1;
nextBlockId = 1;
shouldProtectScope: boolean = false;
shouldDefineAssign: boolean = false;
shouldDefineKey0: boolean = false;
hasSafeContext: boolean | null = null;
hasRef: boolean = false;
// hasTCall: boolean = false;
isDebug: boolean = false;
functions: CodeTarget[] = [];
target = new CodeTarget("main");
templateName: string;
template: string;
ast: AST;
staticCalls: { id: string; template: string }[] = [];
constructor(template: string, name?: string) {
this.template = template;
this.ast = parse(template);
// console.warn(this.ast);
if (name) {
this.templateName = name;
} else {
if (template.length > 250) {
this.templateName = template.slice(0, 250) + "...";
} else {
this.templateName = template;
}
}
}
compile(): TemplateFunction {
const ast = this.ast;
this.isDebug = ast.type === ASTType.TDebug;
BlockDescription.nextBlockId = 1;
BlockDescription.nextDataId = 1;
this.compileAST(ast, { block: null, index: 0, forceNewBlock: false, isLast: true });
const code = this.generateCode();
// console.warn(code);
return new Function("bdom, helpers", code) as TemplateFunction;
}
addLine(line: string) {
this.target.addLine(line);
}
generateId(prefix: string = ""): string {
return `${prefix}${this.nextId++}`;
}
generateBlockName(): string {
return `block${this.blocks.length + 1}`;
}
insertAnchor(block: BlockDescription) {
const tag = `block-child-${block.children.length}`;
const anchor: Dom = { type: DomType.Node, tag, attrs: {}, content: [] };
block.insert(anchor);
}
createBlock(
parentBlock: BlockDescription | null,
type: BlockType,
ctx: Context
): BlockDescription {
const hasRoot = this.target.hasRoot;
const block = new BlockDescription(this.target, type);
if (!hasRoot && !ctx.preventRoot) {
this.target.hasRoot = true;
block.isRoot = true;
}
if (parentBlock) {
parentBlock.children.push(block);
if (parentBlock.type === "list") {
block.parentVar = `c${parentBlock.id}`;
}
}
return block;
}
insertBlock(expression: string, block: BlockDescription, ctx: Context): string | null {
let id: string | null = null;
const blockExpr = block.generateExpr(expression);
if (block.parentVar) {
this.addLine(
`${block.parentVar}[${ctx.index}] = withKey(${blockExpr}, key${this.target.loopLevel});`
);
} else if (block.isRoot && !ctx.preventRoot) {
this.addLine(`return ${blockExpr};`);
} else {
this.addLine(`let ${block.varName} = ${blockExpr};`);
}
return id;
}
generateCode(): string {
let mainCode = this.target.code;
this.target.code = [];
this.target.indentLevel = 0;
// define blocks and utility functions
this.addLine(`let { text, createBlock, list, multi, html, toggler, component } = bdom;`);
this.addLine(
`let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;`
);
if (this.shouldDefineAssign) {
this.addLine(`let assign = Object.assign;`);
}
for (let { id, template } of this.staticCalls) {
this.addLine(`const ${id} = getTemplate(${template});`);
}
// define all blocks
if (this.blocks.length) {
this.addLine(``);
for (let block of this.blocks) {
if (block.dom) {
this.addLine(`let ${block.blockName} = createBlock(\`${domToString(block.dom)}\`);`);
}
}
}
// define all slots
for (let fn of this.functions) {
this.generateFunctions(fn);
}
// // generate main code
this.target.indentLevel = 0;
this.addLine(``);
this.addLine(`return function template(ctx, node, key = "") {`);
if (this.hasRef) {
this.addLine(` const refs = ctx.__owl__.refs;`);
}
if (this.shouldProtectScope) {
this.addLine(` ctx = Object.create(ctx);`);
}
if (this.target.hasCache) {
this.addLine(` let cache = ctx.cache || {};`);
this.addLine(` let nextCache = ctx.cache = {};`);
}
// if (this.shouldDefineKey0) {
// this.addLine(` let key0;`);
// }
for (let line of mainCode) {
this.addLine(line);
}
// console.warn(this.target.code.join('\n'))
if (!this.target.hasRoot) {
throw new Error("missing root block");
}
this.addLine("}");
const code = this.target.code.join("\n");
if (this.isDebug) {
const msg = `[Owl Debug]\n${code}`;
console.log(msg);
}
return code;
}
generateFunctions(fn: CodeTarget) {
this.addLine("");
this.addLine(`const ${fn.name} = ${fn.signature}`);
if (fn.hasCache) {
this.addLine(`let cache = ctx.cache || {};`);
this.addLine(`let nextCache = ctx.cache = {};`);
}
for (let line of fn.code) {
this.addLine(line);
}
this.addLine(`}`);
}
captureExpression(expr: string): string {
const tokens = compileExprToArray(expr);
const mapping = new Map<string, string>();
return tokens
.map((tok) => {
if (tok.varName) {
if (!mapping.has(tok.varName)) {
const varId = this.generateId("v");
mapping.set(tok.varName, varId);
this.addLine(`const ${varId} = ${tok.value};`);
}
tok.value = mapping.get(tok.varName)!;
}
return tok.value;
})
.join("");
}
compileAST(ast: AST, ctx: Context) {
switch (ast.type) {
case ASTType.Comment:
this.compileComment(ast, ctx);
break;
case ASTType.Text:
this.compileText(ast, ctx);
break;
case ASTType.DomNode:
this.compileTDomNode(ast, ctx);
break;
case ASTType.TEsc:
this.compileTEsc(ast, ctx);
break;
case ASTType.TRaw:
this.compileTRaw(ast, ctx);
break;
case ASTType.TIf:
this.compileTIf(ast, ctx);
break;
case ASTType.TForEach:
this.compileTForeach(ast, ctx);
break;
case ASTType.TKey:
this.compileTKey(ast, ctx);
break;
case ASTType.Multi:
this.compileMulti(ast, ctx);
break;
case ASTType.TCall:
this.compileTCall(ast, ctx);
break;
case ASTType.TCallBlock:
this.compileTCallBlock(ast, ctx);
break;
case ASTType.TSet:
this.compileTSet(ast, ctx);
break;
case ASTType.TComponent:
this.compileComponent(ast, ctx);
break;
case ASTType.TDebug:
this.compileDebug(ast, ctx);
break;
case ASTType.TLog:
this.compileLog(ast, ctx);
break;
case ASTType.TSlot:
this.compileTSlot(ast, ctx);
break;
}
}
compileDebug(ast: ASTDebug, ctx: Context) {
this.addLine(`debugger;`);
if (ast.content) {
this.compileAST(ast.content, ctx);
}
}
compileLog(ast: ASTLog, ctx: Context) {
this.addLine(`console.log(${compileExpr(ast.expr)});`);
if (ast.content) {
this.compileAST(ast.content, ctx);
}
}
compileComment(ast: ASTComment, ctx: Context) {
let { block, forceNewBlock } = ctx;
const isNewBlock = !block || forceNewBlock;
if (isNewBlock) {
block = this.createBlock(block, "block", ctx);
this.blocks.push(block);
}
const text: Dom = { type: DomType.Comment, value: ast.value };
block!.insert(text);
if (isNewBlock) {
this.insertBlock("", block!, ctx);
}
}
compileText(ast: ASTText, ctx: Context) {
let { block, forceNewBlock } = ctx;
if (!block || forceNewBlock) {
block = this.createBlock(block, "text", ctx);
this.insertBlock(`text(\`${ast.value}\`)`, block, {
...ctx,
forceNewBlock: forceNewBlock && !block,
});
} else {
const type = ast.type === ASTType.Text ? DomType.Text : DomType.Comment;
const text: Dom = { type, value: ast.value };
block.insert(text);
}
}
generateHandlerCode(handler: string, event: string = ""): string {
let args: string = "";
const name: string = handler.replace(/\(.*\)/, function (_args) {
args = _args.slice(1, -1);
return "";
});
const isMethodCall = name.match(FNAMEREGEXP);
if (isMethodCall) {
let handlerFn: string;
if (args) {
const argId = this.generateId("arg");
this.addLine(`const ${argId} = [${compileExpr(args)}];`);
handlerFn = `'${name}', ${argId}`;
} else {
handlerFn = `'${name}'`;
}
return `[${event ? `\`${event}\`` + ", " : ""}ctx, ${handlerFn!}]`;
} else {
let code = this.captureExpression(handler);
code = `{const res = (() => { return ${code} })(); if (typeof res === 'function') { res(e) }}`;
let handlerFn = `(e) => ${code}`;
if (event) {
handlerFn = `[\`${event}\`, ${handlerFn}]`;
}
return handlerFn;
}
}
compileTDomNode(ast: ASTDomNode, ctx: Context) {
let { block, forceNewBlock } = ctx;
const isNewBlock = !block || forceNewBlock;
let codeIdx = this.target.code.length;
if (isNewBlock) {
block = this.createBlock(block, "block", ctx);
this.blocks.push(block);
}
// attributes
const attrs: { [key: string]: string } = {};
for (let key in ast.attrs) {
if (key.startsWith("t-attf")) {
let expr = interpolate(ast.attrs[key]);
const idx = block!.insertData(expr);
attrs["block-attribute-" + idx] = key.slice(7);
// console.warn('ccc', staticAttrs)
} else if (key.startsWith("t-att")) {
let expr = compileExpr(ast.attrs[key]);
const idx = block!.insertData(expr);
if (key === "t-att") {
attrs[`block-attributes`] = String(idx);
} else {
attrs[`block-attribute-${idx}`] = key.slice(6);
}
} else {
attrs[key] = ast.attrs[key];
}
}
// event handlers
for (let ev in ast.on) {
const name = this.generateHandlerCode(ast.on[ev]);
const idx = block!.insertData(name);
attrs[`block-handler-${idx}`] = ev;
}
// t-ref
if (ast.ref) {
this.hasRef = true;
const isDynamic = INTERP_REGEXP.test(ast.ref);
if (isDynamic) {
const str = ast.ref.replace(
INTERP_REGEXP,
(expr) => "${" + this.captureExpression(expr.slice(2, -2)) + "}"
);
const idx = block!.insertData(`(el) => refs[\`${str}\`] = el`);
attrs["block-ref"] = String(idx);
} else {
const idx = block!.insertData(`(el) => refs[\`${ast.ref}\`] = el`);
attrs["block-ref"] = String(idx);
}
}
const dom: Dom = { type: DomType.Node, tag: ast.tag, attrs: attrs, content: [] };
block!.insert(dom);
if (ast.content.length) {
const initialDom = block!.currentDom;
block!.currentDom = dom;
const children = ast.content;
for (let i = 0; i < children.length; i++) {
const child = ast.content[i];
const subCtx: Context = {
block: block,
index: block!.childNumber,
forceNewBlock: false,
isLast: ctx.isLast && i === children.length - 1,
};
this.compileAST(child, subCtx);
}
block!.currentDom = initialDom;
}
if (isNewBlock) {
this.insertBlock(`${block!.blockName}(ddd)`, block!, ctx)!;
// may need to rewrite code!
if (block!.children.length && block!.hasDynamicChildren) {
const code = this.target.code;
const children = block!.children.slice();
let current = children.shift();
for (let i = codeIdx; i < code.length; i++) {
if (code[i].trimStart().startsWith(`let ${current!.varName}`)) {
code[i] = code[i].replace(`let ${current!.varName}`, current!.varName);
current = children.shift();
if (!current) break;
}
}
this.target.addLine(`let ${block!.children.map((c) => c.varName)};`, codeIdx);
}
}
}
compileTEsc(ast: ASTTEsc, ctx: Context) {
let { block, forceNewBlock } = ctx;
let expr: string;
if (ast.expr === "0") {
expr = `ctx[zero]`;
} else {
expr = compileExpr(ast.expr);
if (ast.defaultValue) {
expr = `withDefault(${expr}, \`${ast.defaultValue}\`)`;
}
}
if (!block || forceNewBlock) {
block = this.createBlock(block, "text", ctx);
this.insertBlock(`text(${expr})`, block, { ...ctx, forceNewBlock: forceNewBlock && !block });
} else {
const idx = block.insertData(expr);
const text: Dom = { type: DomType.Node, tag: `block-text-${idx}`, attrs: {}, content: [] };
block.insert(text);
}
}
compileTRaw(ast: ASTTRaw, ctx: Context) {
let { block } = ctx;
if (block) {
this.insertAnchor(block);
}
block = this.createBlock(block, "html", ctx);
let expr = ast.expr === "0" ? "ctx[zero]" : compileExpr(ast.expr);
if (ast.body) {
const nextId = BlockDescription.nextBlockId;
const subCtx: Context = { block: null, index: 0, forceNewBlock: true };
this.compileAST({ type: ASTType.Multi, content: ast.body }, subCtx);
expr = `withDefault(${expr}, b${nextId})`;
}
this.insertBlock(`html(${expr})`, block, ctx);
}
compileTIf(ast: ASTTif, ctx: Context, nextNode?: ASTDomNode) {
let { block, forceNewBlock, index } = ctx;
let currentIndex = index;
const codeIdx = this.target.code.length;
const isNewBlock = !block || (block.type !== "multi" && forceNewBlock);
if (block) {
block.hasDynamicChildren = true;
}
if (!block || (block.type !== "multi" && forceNewBlock)) {
block = this.createBlock(block, "multi", ctx);
}
this.addLine(`if (${compileExpr(ast.condition)}) {`);
this.target.indentLevel++;
this.insertAnchor(block!);
const subCtx: Context = { block: block, index: currentIndex, forceNewBlock: true };
this.compileAST(ast.content, subCtx);
this.target.indentLevel--;
if (ast.tElif) {
for (let clause of ast.tElif) {
this.addLine(`} else if (${compileExpr(clause.condition)}) {`);
this.target.indentLevel++;
this.insertAnchor(block);
const subCtx: Context = {
block: block,
index: currentIndex,
forceNewBlock: true,
};
this.compileAST(clause.content, subCtx);
this.target.indentLevel--;
}
}
if (ast.tElse) {
this.addLine(`} else {`);
this.target.indentLevel++;
this.insertAnchor(block);
const subCtx: Context = {
block: block,
index: currentIndex,
forceNewBlock: true,
};
this.compileAST(ast.tElse, subCtx);
this.target.indentLevel--;
}
this.addLine("}");
if (isNewBlock) {
// note: this part is duplicated from end of compiledomnode:
if (block!.children.length) {
const code = this.target.code;
const children = block!.children.slice();
let current = children.shift();
for (let i = codeIdx; i < code.length; i++) {
if (code[i].trimStart().startsWith(`let ${current!.varName}`)) {
code[i] = code[i].replace(`let ${current!.varName}`, current!.varName);
current = children.shift();
if (!current) break;
}
}
this.target.addLine(`let ${block!.children.map((c) => c.varName)};`, codeIdx);
}
// note: this part is duplicated from end of compilemulti:
const args = block!.children.map((c) => c.varName).join(", ");
this.insertBlock(`multi([${args}])`, block!, ctx)!;
}
}
compileTForeach(ast: ASTTForEach, ctx: Context) {
let { block } = ctx;
if (block) {
this.insertAnchor(block);
}
block = this.createBlock(block, "list", ctx);
this.target.loopLevel++;
const loopVar = `i${this.target.loopLevel}`;
this.addLine(`ctx = Object.create(ctx);`);
// const cId = this.generateId();
const vals = `v${block.id}`;
const keys = `k${block.id}`;
const l = `l${block.id}`;
const c = `c${block.id}`;
this.addLine(
`const [${keys}, ${vals}, ${l}, ${c}] = prepareList(${compileExpr(ast.collection)});`
);
this.addLine(`for (let ${loopVar} = 0; ${loopVar} < ${l}; ${loopVar}++) {`);
this.target.indentLevel++;
this.addLine(`ctx[\`${ast.elem}\`] = ${vals}[${loopVar}];`);
if (!ast.hasNoFirst) {
this.addLine(`ctx[\`${ast.elem}_first\`] = ${loopVar} === 0;`);
}
if (!ast.hasNoLast) {
this.addLine(`ctx[\`${ast.elem}_last\`] = ${loopVar} === ${vals}.length - 1;`);
}
if (!ast.hasNoIndex) {
this.addLine(`ctx[\`${ast.elem}_index\`] = ${loopVar};`);
}
if (!ast.hasNoValue) {
this.addLine(`ctx[\`${ast.elem}_value\`] = ${keys}[${loopVar}];`);
}
this.addLine(`let key${this.target.loopLevel} = ${ast.key ? compileExpr(ast.key) : loopVar};`);
let id: string;
if (ast.memo) {
this.target.hasCache = true;
this.shouldDefineAssign = true;
id = this.generateId();
this.addLine(`let memo${id} = ${compileExpr(ast.memo)}`);
this.addLine(`let vnode${id} = cache[key${this.target.loopLevel}];`);
this.addLine(`if (vnode${id}) {`);
this.target.indentLevel++;
this.addLine(`if (shallowEqual(vnode${id}.memo, memo${id})) {`);
this.target.indentLevel++;
this.addLine(`${c}[${loopVar}] = vnode${id};`);
this.addLine(`nextCache[key${this.target.loopLevel}] = vnode${id};`);
this.addLine(`continue;`);
this.target.indentLevel--;
this.addLine("}");
this.target.indentLevel--;
this.addLine("}");
}
const subCtx: Context = {
block: block, //collectionBlock,
index: loopVar,
forceNewBlock: true,
};
this.compileAST(ast.body, subCtx);
if (!ast.key) {
console.warn(
`"Directive t-foreach should always be used with a t-key! (in template: '${this.templateName}')"`
);
}
if (ast.memo) {
this.addLine(
`nextCache[key${this.target.loopLevel}] = assign(${c}[${loopVar}], {memo: memo${id!}});`
);
}
this.target.indentLevel--;
this.target.loopLevel--;
this.addLine(`}`);
if (!ctx.isLast) {
this.addLine(`ctx = ctx.__proto__;`);
}
this.insertBlock("l", block, ctx);
}
compileTKey(ast: ASTTKey, ctx: Context) {
this.compileAST(ast.content, ctx);
}
compileMulti(ast: ASTMulti, ctx: Context) {
let { block, forceNewBlock } = ctx;
const isNewBlock = !block || forceNewBlock;
let codeIdx = this.target.code.length;
if (isNewBlock) {
const n = ast.content.filter((c) => c.type !== ASTType.TSet).length;
if (n <= 1) {
for (let child of ast.content) {
this.compileAST(child, ctx);
}
return;
}
block = this.createBlock(block, "multi", ctx);
}
let index = 0;
for (let i = 0, l = ast.content.length; i < l; i++) {
const child = ast.content[i];
const isTSet = child.type === ASTType.TSet;
const subCtx: Context = {
block: block,
index: index,
forceNewBlock: !isTSet,
preventRoot: ctx.preventRoot,
isLast: ctx.isLast && i === l - 1,
};
this.compileAST(child, subCtx);
if (!isTSet) {
index++;
}
}
if (isNewBlock) {
if (block!.hasDynamicChildren) {
if (block!.children.length) {
const code = this.target.code;
const children = block!.children.slice();
let current = children.shift();
for (let i = codeIdx; i < code.length; i++) {
if (code[i].trimStart().startsWith(`let ${current!.varName}`)) {
code[i] = code[i].replace(`let ${current!.varName}`, current!.varName);
current = children.shift();
if (!current) break;
}
}
this.target.addLine(`let ${block!.children.map((c) => c.varName)};`, codeIdx);
}
}
const args = block!.children.map((c) => c.varName).join(", ");
this.insertBlock(`multi([${args}])`, block!, ctx)!;
}
}
compileTCall(ast: ASTTCall, ctx: Context) {
let { block, forceNewBlock } = ctx;
// this.hasTCall = true;
if (ast.body) {
this.addLine(`ctx = Object.create(ctx);`);
const nextId = BlockDescription.nextBlockId;
const subCtx: Context = { block: null, index: 0, forceNewBlock: true, preventRoot: true };
this.compileAST({ type: ASTType.Multi, content: ast.body }, subCtx);
if (nextId !== BlockDescription.nextBlockId) {
this.addLine(`ctx[zero] = b${nextId};`);
}
}
const isDynamic = INTERP_REGEXP.test(ast.name);
const subTemplate = isDynamic ? interpolate(ast.name) : "`" + ast.name + "`";
if (block) {
if (!forceNewBlock) {
this.insertAnchor(block);
}
}
const key = `key + \`${this.generateComponentKey()}\``;
if (isDynamic) {
const templateVar = this.generateId("template");
this.addLine(`const ${templateVar} = ${subTemplate};`);
block = this.createBlock(block, "multi", ctx);
this.insertBlock(`call(${templateVar}, ctx, node, ${key})`, block!, {
...ctx,
forceNewBlock: !block,
});
} else {
const id = this.generateId(`callTemplate_`);
this.staticCalls.push({ id, template: subTemplate });
// console.warn('coucoup', this.target.hasRoot)
block = this.createBlock(block, "multi", ctx);
this.insertBlock(`${id}(ctx, node, ${key})`, block!, { ...ctx, forceNewBlock: !block });
}
if (ast.body && !ctx.isLast) {
this.addLine(`ctx = ctx.__proto__;`);
}
}
compileTCallBlock(ast: ASTTCallBlock, ctx: Context) {
let { block, forceNewBlock } = ctx;
if (block) {
if (!forceNewBlock) {
this.insertAnchor(block);
}
}
block = this.createBlock(block, "multi", ctx);
this.insertBlock(compileExpr(ast.name), block, { ...ctx, forceNewBlock: !block });
}
compileTSet(ast: ASTTSet, ctx: Context) {
this.shouldProtectScope = true;
const expr = ast.value ? compileExpr(ast.value || "") : "null";
if (ast.body) {
const subCtx: Context = { block: null, index: 0, forceNewBlock: true };
const nextId = `b${BlockDescription.nextBlockId}`;
this.compileAST({ type: ASTType.Multi, content: ast.body }, subCtx);
const value = ast.value ? (nextId ? `withDefault(${expr}, ${nextId})` : expr) : nextId;
this.addLine(`ctx[\`${ast.name}\`] = ${value};`);
} else {
let value: string;
if (ast.defaultValue) {
if (ast.value) {
value = `withDefault(${expr}, \`${ast.defaultValue}\`)`;
} else {
value = `\`${ast.defaultValue}\``;
}
} else {
value = expr;
}
this.addLine(`ctx[\`${ast.name}\`] = ${value};`);
}
}
generateComponentKey() {
const parts = [this.generateId("__")];
for (let i = 0; i < this.target.loopLevel; i++) {
parts.push(`\${key${i + 1}}`);
}
return parts.join("__");
}
compileComponent(ast: ASTComponent, ctx: Context) {
let { block } = ctx;
let extraArgs: { [key: string]: string } = {};
// props
const props: string[] = [];
for (let p in ast.props) {
props.push(`${p}: ${compileExpr(ast.props[p]) || undefined}`);
}
const propString = `{${props.join(",")}}`;
// cmap key
const key = this.generateComponentKey();
let expr: string;
if (ast.isDynamic) {
expr = this.generateId("Comp");
this.addLine(`let ${expr} = ${compileExpr(ast.name)};`);
} else {
expr = `\`${ast.name}\``;
}
let blockArgs = `${expr}, ${propString}, key + \`${key}\`, node, ctx`;
// slots
const hasSlot = !!Object.keys(ast.slots).length;
let slotDef: string;
if (hasSlot) {
if (this.hasSafeContext === null) {
this.hasSafeContext = !this.template.includes("t-set") && !this.template.includes("t-call");
}
let ctxStr = "ctx";
if (this.target.loopLevel || !this.hasSafeContext) {
ctxStr = this.generateId("ctx");
this.addLine(`const ${ctxStr} = capture(ctx);`);
}
let slotStr: string[] = [];
const initialTarget = this.target;
for (let slotName in ast.slots) {
let name = this.generateId("slot");
const slot = new CodeTarget(name);
slot.signature = "ctx => (node, key) => {";
this.functions.push(slot);
this.target = slot;
const subCtx: Context = { block: null, index: 0, forceNewBlock: true };
this.compileAST(ast.slots[slotName], subCtx);
if (this.hasRef) {
slot.signature = "ctx => node => {";
slot.code.unshift(` const refs = ctx.__owl__.refs`);
slotStr.push(`'${slotName}': ${name}(${ctxStr})`);
} else {
slotStr.push(`'${slotName}': ${name}(${ctxStr})`);
}
}
this.target = initialTarget;
slotDef = `{${slotStr.join(", ")}}`;
extraArgs.slots = slotDef;
}
// handlers
const hasHandlers = Object.keys(ast.handlers).length;
if (hasHandlers) {
const vars = Object.keys(ast.handlers).map((ev) => {
let id = this.generateId("h");
this.addLine(`let ${id} = ${this.generateHandlerCode(ast.handlers[ev], ev)};`);
return id;
});
extraArgs.handlers = `[${vars}]`;
}
if (block && ctx.forceNewBlock === false) {
// todo: check the forcenewblock condition
this.insertAnchor(block);
}
let blockExpr = `component(${blockArgs})`;
if (Object.keys(extraArgs).length) {
this.shouldDefineAssign = true;
const content = Object.keys(extraArgs).map((k) => `${k}: ${extraArgs[k]}`);
blockExpr = `assign(${blockExpr}, {${content.join(", ")}})`;
}
if (ast.isDynamic) {
blockExpr = `toggler(${expr}, ${blockExpr})`;
}
block = this.createBlock(block, "multi", ctx);
this.insertBlock(blockExpr, block, ctx);
}
compileTSlot(ast: ASTSlot, ctx: Context) {
let { block } = ctx;
let blockString: string;
let slotName;
let dynamic = false;
if (ast.name.match(INTERP_REGEXP)) {
dynamic = true;
slotName = interpolate(ast.name);
} else {
slotName = "'" + ast.name + "'";
}
if (ast.defaultContent) {
let name = this.generateId("defaultSlot");
const slot = new CodeTarget(name);
slot.signature = "ctx => {";
this.functions.push(slot);
const initialTarget = this.target;
const subCtx: Context = { block: null, index: 0, forceNewBlock: true };
this.target = slot;
this.compileAST(ast.defaultContent, subCtx);
this.target = initialTarget;
blockString = `callSlot(ctx, node, key, ${slotName}, ${name}, ${dynamic})`;
} else {
if (dynamic) {
let name = this.generateId("slot");
this.addLine(`const ${name} = ${slotName};`);
blockString = `toggler(${name}, callSlot(ctx, node, key, ${name}))`;
} else {
blockString = `callSlot(ctx, node, key, ${slotName})`;
}
}
if (block) {
this.insertAnchor(block);
}
block = this.createBlock(block, "multi", ctx);
this.insertBlock(blockString, block, { ...ctx, forceNewBlock: false });
}
}
+74
View File
@@ -0,0 +1,74 @@
export const enum DomType {
Text,
Comment,
Node,
}
export interface DomText {
type: DomType.Text;
value: string;
}
export interface DomComment {
type: DomType.Comment;
value: string;
}
export interface DomNode {
type: DomType.Node;
tag: string;
attrs: { [key: string]: string };
content: Dom[];
}
export type Dom = DomText | DomComment | DomNode;
function escape(str: string): string {
const p = document.createElement("p");
p.textContent = str;
return p.innerHTML;
}
export function domToString(dom: Dom): string {
switch (dom.type) {
case DomType.Text:
return escape(dom.value);
case DomType.Comment:
return `<!--${dom.value}-->`;
case DomType.Node:
const content = dom.content.map(domToString).join("");
const attrs: string[] = [];
for (let [key, value] of Object.entries(dom.attrs)) {
if (!(key === "class" && value === "")) {
attrs.push(`${key}="${escape(value)}"`);
}
}
if (content) {
return `<${dom.tag}${attrs.length ? " " + attrs.join(" ") : ""}>${content}</${dom.tag}>`;
} else {
return `<${dom.tag}${attrs.length ? " " + attrs.join(" ") : ""}/>`;
}
}
}
export function isProp(tag: string, key: string): boolean {
switch (tag) {
case "input":
return (
key === "checked" ||
key === "indeterminate" ||
key === "value" ||
key === "readonly" ||
key === "disabled"
);
case "option":
return key === "selected" || key === "disabled";
case "textarea":
return key === "readonly" || key === "disabled";
break;
case "button":
case "select":
case "optgroup":
return key === "disabled";
}
return false;
}
-377
View File
@@ -1,377 +0,0 @@
import { STATUS } from "../component/component";
import { VNode } from "../vdom/index";
import { INTERP_REGEXP } from "./compilation_context";
import { QWeb } from "./qweb";
import { browser } from "../browser";
/**
* Owl QWeb Extensions
*
* This file contains the implementation of non standard QWeb directives, added
* by Owl and that will only work on Owl projects:
*
* - t-on
* - t-ref
* - t-transition
* - t-mounted
* - t-slot
* - t-model
*/
//------------------------------------------------------------------------------
// t-on
//------------------------------------------------------------------------------
// these are pieces of code that will be injected into the event handler if
// modifiers are specified
export const MODS_CODE = {
prevent: "e.preventDefault();",
self: "if (e.target !== this.elm) {return}",
stop: "e.stopPropagation();",
};
interface HandlerInfo {
event: string;
handler: string;
}
const FNAMEREGEXP = /^[$A-Z_][0-9A-Z_$]*$/i;
export function makeHandlerCode(
ctx,
fullName,
value,
putInCache: boolean,
modcodes = MODS_CODE
): HandlerInfo {
let [event, ...mods] = fullName.slice(5).split(".");
if (mods.includes("capture")) {
event = "!" + event;
}
if (!event) {
throw new Error("Missing event name with t-on directive");
}
let code: string;
// check if it is a method with no args, a method with args or an expression
let args: string = "";
const name: string = value.replace(/\(.*\)/, function (_args) {
args = _args.slice(1, -1);
return "";
});
const isMethodCall = name.match(FNAMEREGEXP);
// then generate code
if (isMethodCall) {
ctx.rootContext.shouldDefineUtils = true;
const comp = `utils.getComponent(context)`;
if (args) {
const argId = ctx.generateID();
ctx.addLine(`let args${argId} = [${ctx.formatExpression(args)}];`);
code = `${comp}['${name}'](...args${argId}, e);`;
putInCache = false;
} else {
code = `${comp}['${name}'](e);`;
}
} else {
// if we get here, then it is an expression
// we need to capture every variable in it
putInCache = false;
code = ctx.captureExpression(value);
code = `const res = (() => { return ${code} })(); if (typeof res === 'function') { res(e) }`;
}
const modCode = mods.map((mod) => modcodes[mod]).join("");
let handler = `function (e) {if (context.__owl__.status === ${STATUS.DESTROYED}){return}${modCode}${code}}`;
if (putInCache) {
const key = ctx.generateTemplateKey(event);
ctx.addLine(`extra.handlers[${key}] = extra.handlers[${key}] || ${handler};`);
handler = `extra.handlers[${key}]`;
}
return { event, handler };
}
QWeb.addDirective({
name: "on",
priority: 90,
atNodeCreation({ ctx, fullName, value, nodeID }) {
const { event, handler } = makeHandlerCode(ctx, fullName, value, true);
ctx.addLine(`p${nodeID}.on['${event}'] = ${handler};`);
},
});
//------------------------------------------------------------------------------
// t-ref
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "ref",
priority: 95,
atNodeCreation({ ctx, value, addNodeHook }) {
ctx.rootContext.shouldDefineRefs = true;
const refKey = `ref${ctx.generateID()}`;
ctx.addLine(`const ${refKey} = ${ctx.interpolate(value)};`);
addNodeHook("create", `context.__owl__.refs[${refKey}] = n.elm;`);
addNodeHook("destroy", `delete context.__owl__.refs[${refKey}];`);
},
});
//------------------------------------------------------------------------------
// t-transition
//------------------------------------------------------------------------------
QWeb.utils.nextFrame = function (cb: () => void) {
requestAnimationFrame(() => requestAnimationFrame(cb));
};
QWeb.utils.transitionInsert = function (vn: VNode, name: string) {
const elm = <HTMLElement>vn.elm;
// remove potential duplicated vnode that is currently being removed, to
// prevent from having twice the same node in the DOM during an animation
const dup = elm.parentElement && elm.parentElement!.querySelector(`*[data-owl-key='${vn.key}']`);
if (dup) {
dup.remove();
}
elm.classList.add(name + "-enter");
elm.classList.add(name + "-enter-active");
elm.classList.remove(name + "-leave-active");
elm.classList.remove(name + "-leave-to");
const finalize = () => {
elm.classList.remove(name + "-enter-active");
elm.classList.remove(name + "-enter-to");
};
this.nextFrame(() => {
elm.classList.remove(name + "-enter");
elm.classList.add(name + "-enter-to");
whenTransitionEnd(elm, finalize);
});
};
QWeb.utils.transitionRemove = function (vn: VNode, name: string, rm: () => void) {
const elm = <HTMLElement>vn.elm;
elm.setAttribute("data-owl-key", vn.key!);
elm.classList.add(name + "-leave");
elm.classList.add(name + "-leave-active");
const finalize = () => {
if (!elm.classList.contains(name + "-leave-active")) {
return;
}
elm.classList.remove(name + "-leave-active");
elm.classList.remove(name + "-leave-to");
rm();
};
this.nextFrame(() => {
elm.classList.remove(name + "-leave");
elm.classList.add(name + "-leave-to");
whenTransitionEnd(elm, finalize);
});
};
function getTimeout(delays: Array<string>, durations: Array<string>): number {
/* istanbul ignore next */
while (delays.length < durations.length) {
delays = delays.concat(delays);
}
return Math.max.apply(
null,
durations.map((d, i) => {
return toMs(d) + toMs(delays[i]);
})
);
}
// Old versions of Chromium (below 61.0.3163.100) formats floating pointer numbers
// in a locale-dependent way, using a comma instead of a dot.
// If comma is not replaced with a dot, the input will be rounded down (i.e. acting
// as a floor function) causing unexpected behaviors
function toMs(s: string): number {
return Number(s.slice(0, -1).replace(",", ".")) * 1000;
}
function whenTransitionEnd(elm: HTMLElement, cb) {
if (!elm.parentNode) {
// if we get here, this means that the element was removed for some other
// reasons, and in that case, we don't want to work on animation since nothing
// will be displayed anyway.
return;
}
const styles = window.getComputedStyle(elm);
const delays: Array<string> = (styles.transitionDelay || "").split(", ");
const durations: Array<string> = (styles.transitionDuration || "").split(", ");
const timeout: number = getTimeout(delays, durations);
if (timeout > 0) {
const transitionEndCB = () => {
if (!elm.parentNode) return;
cb();
browser.clearTimeout(fallbackTimeout);
elm.removeEventListener("transitionend", transitionEndCB);
};
elm.addEventListener("transitionend", transitionEndCB, { once: true });
const fallbackTimeout = browser.setTimeout(transitionEndCB, timeout + 1);
} else {
cb();
}
}
QWeb.addDirective({
name: "transition",
priority: 96,
atNodeCreation({ ctx, value, addNodeHook }) {
if (!QWeb.enableTransitions) {
return;
}
ctx.rootContext.shouldDefineUtils = true;
let name = value;
const hooks = {
insert: `utils.transitionInsert(vn, '${name}');`,
remove: `utils.transitionRemove(vn, '${name}', rm);`,
};
for (let hookName in hooks) {
addNodeHook(hookName, hooks[hookName]);
}
},
});
//------------------------------------------------------------------------------
// t-slot
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "slot",
priority: 80,
atNodeEncounter({ ctx, value, node, qweb }): boolean {
const slotKey = ctx.generateID();
const valueExpr = value.match(INTERP_REGEXP) ? ctx.interpolate(value) : `'${value}'`;
ctx.addLine(
`const slot${slotKey} = this.constructor.slots[context.__owl__.slotId + '_' + ${valueExpr}];`
);
ctx.addIf(`slot${slotKey}`);
let parentNode = `c${ctx.parentNode}`;
if (!ctx.parentNode) {
ctx.rootContext.shouldDefineResult = true;
ctx.rootContext.shouldDefineUtils = true;
parentNode = `children${ctx.generateID()}`;
ctx.addLine(`let ${parentNode}= []`);
ctx.addLine(`result = {}`);
}
ctx.addLine(
`slot${slotKey}.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: ${parentNode}, parent: extra.parent || context}));`
);
if (!ctx.parentNode) {
ctx.addLine(`utils.defineProxy(result, ${parentNode}[0]);`);
}
if (node.hasChildNodes()) {
ctx.addElse();
const nodeCopy = <Element>node.cloneNode(true);
nodeCopy.removeAttribute("t-slot");
qweb._compileNode(nodeCopy, ctx);
}
ctx.closeIf();
return true;
},
});
//------------------------------------------------------------------------------
// t-model
//------------------------------------------------------------------------------
QWeb.utils.toNumber = function (val: string): number | string {
const n = parseFloat(val);
return isNaN(n) ? val : n;
};
const hasDotAtTheEnd = /\.[\w_]+\s*$/;
const hasBracketsAtTheEnd = /\[[^\[]+\]\s*$/;
QWeb.addDirective({
name: "model",
priority: 42,
atNodeCreation({ ctx, nodeID, value, node, fullName, addNodeHook }) {
const type = node.getAttribute("type");
let handler;
let event = fullName.includes(".lazy") ? "change" : "input";
// First step: we need to understand the structure of the expression, and
// from it, extract a base expression (that we can capture, which is
// important because it will be used in a handler later) and a formatted
// expression (which uses the captured base expression)
//
// Also, we support 2 kinds of values: some.expr.value or some.expr[value]
// For the first one, we have:
// - base expression = scope[some].expr
// - expression = exprX.value (where exprX is the var that captures the base expr)
// and for the expression with brackets:
// - base expression = scope[some].expr
// - expression = exprX[keyX] (where exprX is the var that captures the base expr
// and keyX captures scope[value])
let expr: string;
let baseExpr: string;
if (hasDotAtTheEnd.test(value)) {
// we manage the case where the expr has a dot: some.expr.value
const index = value.lastIndexOf(".");
baseExpr = value.slice(0, index);
ctx.addLine(`let expr${nodeID} = ${ctx.formatExpression(baseExpr)};`);
expr = `expr${nodeID}${value.slice(index)}`;
} else if (hasBracketsAtTheEnd.test(value)) {
// we manage here the case where the expr ends in a bracket expression:
// some.expr[value]
const index = value.lastIndexOf("[");
baseExpr = value.slice(0, index);
ctx.addLine(`let expr${nodeID} = ${ctx.formatExpression(baseExpr)};`);
let exprKey = value.trimRight().slice(index + 1, -1);
ctx.addLine(`let exprKey${nodeID} = ${ctx.formatExpression(exprKey)};`);
expr = `expr${nodeID}[exprKey${nodeID}]`;
} else {
throw new Error(`Invalid t-model expression: "${value}" (it should be assignable)`);
}
const key = ctx.generateTemplateKey();
if (node.tagName === "select") {
ctx.addLine(`p${nodeID}.props = {value: ${expr}};`);
addNodeHook("create", `n.elm.value=${expr};`);
event = "change";
handler = `(ev) => {${expr} = ev.target.value}`;
} else if (type === "checkbox") {
ctx.addLine(`p${nodeID}.props = {checked: ${expr}};`);
handler = `(ev) => {${expr} = ev.target.checked}`;
} else if (type === "radio") {
const nodeValue = node.getAttribute("value")!;
ctx.addLine(`p${nodeID}.props = {checked:${expr} === '${nodeValue}'};`);
handler = `(ev) => {${expr} = ev.target.value}`;
event = "click";
} else {
ctx.addLine(`p${nodeID}.props = {value: ${expr}};`);
const trimCode = fullName.includes(".trim") ? ".trim()" : "";
let valueCode = `ev.target.value${trimCode}`;
if (fullName.includes(".number")) {
ctx.rootContext.shouldDefineUtils = true;
valueCode = `utils.toNumber(${valueCode})`;
}
handler = `(ev) => {${expr} = ${valueCode}}`;
}
ctx.addLine(`extra.handlers[${key}] = extra.handlers[${key}] || (${handler});`);
ctx.addLine(`p${nodeID}.on['${event}'] = extra.handlers[${key}];`);
},
});
//------------------------------------------------------------------------------
// t-key
//------------------------------------------------------------------------------
QWeb.addDirective({
name: "key",
priority: 45,
atNodeEncounter({ ctx, value, node }) {
if (ctx.loopNumber === 0) {
ctx.keyStack.push(ctx.rootContext.hasKey0);
ctx.rootContext.hasKey0 = true;
}
ctx.addLine("{");
ctx.indent();
ctx.addLine(`let key${ctx.loopNumber} = ${ctx.formatExpression(value)};`);
},
finalize({ ctx }) {
ctx.dedent();
ctx.addLine("}");
if (ctx.loopNumber === 0) {
ctx.rootContext.hasKey0 = ctx.keyStack.pop() as boolean;
}
},
});
-4
View File
@@ -1,4 +0,0 @@
import "./base_directives";
import "./extensions";
export { CompiledTemplate, QWeb } from "./qweb";
@@ -30,7 +30,7 @@ const RESERVED_WORDS =
"," ","
); );
const WORD_REPLACEMENT = Object.assign(Object.create(null), { const WORD_REPLACEMENT: { [key: string]: string } = Object.assign(Object.create(null), {
and: "&&", and: "&&",
or: "||", or: "||",
gt: ">", gt: ">",
@@ -70,7 +70,6 @@ interface Token {
size?: number; size?: number;
varName?: string; varName?: string;
replace?: Function; replace?: Function;
isLocal?: boolean;
} }
const STATIC_TOKEN_MAP: { [key: string]: TKind } = Object.assign(Object.create(null), { const STATIC_TOKEN_MAP: { [key: string]: TKind } = Object.assign(Object.create(null), {
@@ -119,7 +118,7 @@ let tokenizeString: Tokenizer = function (expr) {
return { return {
type: "TEMPLATE_STRING", type: "TEMPLATE_STRING",
value: s, value: s,
replace(replacer) { replace(replacer: any) {
return s.replace(/\$\{(.*?)\}/g, (match, group) => { return s.replace(/\$\{(.*?)\}/g, (match, group) => {
return "${" + replacer(group) + "}"; return "${" + replacer(group) + "}";
}); });
@@ -225,8 +224,9 @@ export function tokenize(expr: string): Token[] {
// Expression "evaluator" // Expression "evaluator"
//------------------------------------------------------------------------------ //------------------------------------------------------------------------------
const isLeftSeparator = (token) => token && (token.type === "LEFT_BRACE" || token.type === "COMMA"); const isLeftSeparator = (token: Token) =>
const isRightSeparator = (token) => token && (token.type === "LEFT_BRACE" || token.type === "COMMA");
const isRightSeparator = (token: Token) =>
token && (token.type === "RIGHT_BRACE" || token.type === "COMMA"); token && (token.type === "RIGHT_BRACE" || token.type === "COMMA");
/** /**
@@ -254,11 +254,9 @@ const isRightSeparator = (token) =>
* the arrow operator, then we add the current (or some previous tokens) token to * the arrow operator, then we add the current (or some previous tokens) token to
* the list of variables so it does not get replaced by a lookup in the context * the list of variables so it does not get replaced by a lookup in the context
*/ */
export function compileExprToArray(expr: string, scope: { [key: string]: QWebVar }): Token[] { export function compileExprToArray(expr: string): Token[] {
const localVars = new Set<string>(); const localVars = new Set<string>();
scope = Object.create(scope);
const tokens = tokenize(expr); const tokens = tokenize(expr);
let i = 0; let i = 0;
let stack = []; // to track last opening [ or { let stack = []; // to track last opening [ or {
@@ -301,7 +299,7 @@ export function compileExprToArray(expr: string, scope: { [key: string]: QWebVar
} }
} }
if (token.type === "TEMPLATE_STRING") { if (token.type === "TEMPLATE_STRING") {
token.value = token.replace((expr) => compileExpr(expr, scope)); token.value = token.replace!((expr: any) => compileExpr(expr));
} }
if (nextToken && nextToken.type === "OPERATOR" && nextToken.value === "=>") { if (nextToken && nextToken.type === "OPERATOR" && nextToken.value === "=>") {
if (token.type === "RIGHT_PAREN") { if (token.type === "RIGHT_PAREN") {
@@ -309,40 +307,42 @@ export function compileExprToArray(expr: string, scope: { [key: string]: QWebVar
while (j > 0 && tokens[j].type !== "LEFT_PAREN") { while (j > 0 && tokens[j].type !== "LEFT_PAREN") {
if (tokens[j].type === "SYMBOL" && tokens[j].originalValue) { if (tokens[j].type === "SYMBOL" && tokens[j].originalValue) {
tokens[j].value = tokens[j].originalValue!; tokens[j].value = tokens[j].originalValue!;
scope[tokens[j].value] = { id: tokens[j].value, expr: tokens[j].value }; localVars.add(tokens[j].value); //] = { id: tokens[j].value, expr: tokens[j].value };
localVars.add(tokens[j].value);
} }
j--; j--;
} }
} else { } else {
scope[token.value] = { id: token.value, expr: token.value }; localVars.add(token.value); //] = { id: token.value, expr: token.value };
localVars.add(token.value);
} }
} }
if (isVar) { if (isVar) {
token.varName = token.value; token.varName = token.value;
if (token.value in scope && "id" in scope[token.value]) { if (!localVars.has(token.value)) {
token.value = scope[token.value].expr!;
} else {
token.originalValue = token.value; token.originalValue = token.value;
token.value = `scope['${token.value}']`; token.value = `ctx['${token.value}']`;
} }
} }
i++; i++;
} }
// Mark all variables that have been used locally.
// This assumes the expression has only one scope (incorrect but "good enough for now")
for (const token of tokens) {
if (token.type === "SYMBOL" && localVars.has(token.value)) {
token.isLocal = true;
}
}
return tokens; return tokens;
} }
export function compileExpr(expr: string, scope: { [key: string]: QWebVar }): string { export function compileExpr(expr: string): string {
return compileExprToArray(expr, scope) return compileExprToArray(expr)
.map((t) => t.value) .map((t) => t.value)
.join(""); .join("");
} }
export const INTERP_REGEXP = /\{\{.*?\}\}/g;
const INTERP_GROUP_REGEXP = /\{\{.*?\}\}/g;
export function interpolate(s: string): string {
let matches = s.match(INTERP_REGEXP);
if (matches && matches[0].length === s.length) {
return `(${compileExpr(s.slice(2, -2))})`;
}
let r = s.replace(INTERP_GROUP_REGEXP, (s) => "${" + compileExpr(s.slice(2, -2)) + "}");
return "`" + r + "`";
}
+798
View File
@@ -0,0 +1,798 @@
// -----------------------------------------------------------------------------
// AST Type definition
// -----------------------------------------------------------------------------
export const enum ASTType {
Text,
Comment,
DomNode,
Multi,
TEsc,
TIf,
TSet,
TCall,
TRaw,
TForEach,
TKey,
TComponent,
TDebug,
TLog,
TSlot,
TCallBlock,
}
export interface ASTText {
type: ASTType.Text;
value: string;
}
export interface ASTComment {
type: ASTType.Comment;
value: string;
}
export interface ASTDomNode {
type: ASTType.DomNode;
tag: string;
attrs: { [key: string]: string };
content: AST[];
ref: string | null;
on: { [key: string]: string };
}
export interface ASTMulti {
type: ASTType.Multi;
content: AST[];
}
export interface ASTTEsc {
type: ASTType.TEsc;
expr: string;
defaultValue: string;
}
export interface ASTTRaw {
type: ASTType.TRaw;
expr: string;
body: AST[] | null;
}
export interface ASTTif {
type: ASTType.TIf;
condition: string;
content: AST;
tElif: { condition: string; content: AST }[] | null;
tElse: AST | null;
}
export interface ASTTSet {
type: ASTType.TSet;
name: string;
value: string | null; // value defined in attribute
defaultValue: string | null; // value defined in body, if text
body: AST[] | null; // content of body if not text
}
export interface ASTTForEach {
type: ASTType.TForEach;
collection: string;
elem: string;
key: string | null;
body: AST;
memo: string;
isOnlyChild: boolean;
hasNoComponent: boolean;
hasNoFirst: boolean;
hasNoLast: boolean;
hasNoIndex: boolean;
hasNoValue: boolean;
}
export interface ASTTKey {
type: ASTType.TKey;
expr: string;
content: AST;
}
export interface ASTTCall {
type: ASTType.TCall;
name: string;
body: AST[] | null;
}
export interface ASTComponent {
type: ASTType.TComponent;
name: string;
isDynamic: boolean;
props: { [name: string]: string };
handlers: { [event: string]: string };
slots: { [name: string]: AST };
}
export interface ASTSlot {
type: ASTType.TSlot;
name: string;
defaultContent: AST | null;
}
export interface ASTTCallBlock {
type: ASTType.TCallBlock;
name: string;
}
export interface ASTDebug {
type: ASTType.TDebug;
content: AST | null;
}
export interface ASTLog {
type: ASTType.TLog;
expr: string;
content: AST | null;
}
export type AST =
| ASTText
| ASTComment
| ASTDomNode
| ASTMulti
| ASTTEsc
| ASTTif
| ASTTSet
| ASTTCall
| ASTTRaw
| ASTTForEach
| ASTTKey
| ASTComponent
| ASTSlot
| ASTTCallBlock
| ASTLog
| ASTDebug;
// -----------------------------------------------------------------------------
// Parser
// -----------------------------------------------------------------------------
interface ParsingContext {
inPreTag: boolean;
}
export function parse(xml: string): AST {
const template = `<t>${xml}</t>`;
const doc = parseXML(template);
const ctx = { inPreTag: false };
const ast = parseNode(doc.firstChild!, ctx);
if (!ast) {
return { type: ASTType.Text, value: "" };
}
return ast;
}
function parseNode(node: ChildNode, ctx: ParsingContext): AST | null {
if (!(node instanceof Element)) {
return parseTextCommentNode(node, ctx);
}
return (
parseTDebugLog(node, ctx) ||
parseTForEach(node, ctx) ||
parseTIf(node, ctx) ||
parseTCall(node, ctx) ||
parseTCallBlock(node, ctx) ||
parseTEscNode(node, ctx) ||
parseTKey(node, ctx) ||
parseTSlot(node, ctx) ||
parseTRawNode(node, ctx) ||
parseComponent(node, ctx) ||
parseDOMNode(node, ctx) ||
parseTSetNode(node, ctx) ||
parseTNode(node, ctx)
);
}
// -----------------------------------------------------------------------------
// <t /> tag
// -----------------------------------------------------------------------------
function parseTNode(node: Element, ctx: ParsingContext): AST | null {
if (node.tagName !== "t") {
return null;
}
const children: AST[] = [];
for (let child of node.childNodes) {
const ast = parseNode(child, ctx);
if (ast) {
children.push(ast);
}
}
switch (children.length) {
case 0:
return null;
case 1:
return children[0];
default:
return {
type: ASTType.Multi,
content: children,
};
}
}
// -----------------------------------------------------------------------------
// Text and Comment Nodes
// -----------------------------------------------------------------------------
const lineBreakRE = /[\r\n]/;
const whitespaceRE = /\s+/g;
function parseTextCommentNode(node: ChildNode, ctx: ParsingContext): AST | null {
if (node.nodeType === 3) {
let value = node.textContent || "";
if (!ctx.inPreTag) {
if (lineBreakRE.test(value) && !value.trim()) {
return null;
}
value = value.replace(whitespaceRE, " ");
}
return { type: ASTType.Text, value };
} else if (node.nodeType === 8) {
return { type: ASTType.Comment, value: node.textContent || "" };
}
return null;
}
// -----------------------------------------------------------------------------
// debugging
// -----------------------------------------------------------------------------
function parseTDebugLog(node: Element, ctx: ParsingContext): AST | null {
if (node.hasAttribute("t-debug")) {
node.removeAttribute("t-debug");
return {
type: ASTType.TDebug,
content: parseNode(node, ctx),
};
}
if (node.hasAttribute("t-log")) {
const expr = node.getAttribute("t-log")!;
node.removeAttribute("t-log");
return {
type: ASTType.TLog,
expr,
content: parseNode(node, ctx),
};
}
return null;
}
// -----------------------------------------------------------------------------
// Regular dom node
// -----------------------------------------------------------------------------
function parseDOMNode(node: Element, ctx: ParsingContext): AST | null {
if (node.tagName === "t") {
return null;
}
const children: AST[] = [];
if (node.tagName === "pre") {
ctx = { inPreTag: true };
}
let ref = null;
if (node.hasAttribute("t-ref")) {
ref = node.getAttribute("t-ref");
node.removeAttribute("t-ref");
}
for (let child of node.childNodes) {
const ast = parseNode(child, ctx);
if (ast) {
children.push(ast);
}
}
const attrs: ASTDomNode["attrs"] = {};
const on: ASTDomNode["on"] = {};
for (let attr of node.getAttributeNames()) {
const value = node.getAttribute(attr)!;
if (attr.startsWith("t-on")) {
if (attr === "t-on") {
throw new Error("Missing event name with t-on directive");
}
on[attr.slice(5)] = value;
} else {
if (attr.startsWith("t-") && !attr.startsWith("t-att")) {
throw new Error(`Unknown QWeb directive: '${attr}'`);
}
attrs[attr] = value;
}
}
if (children.length === 1 && children[0].type === ASTType.TForEach) {
children[0].isOnlyChild = true;
}
return {
type: ASTType.DomNode,
tag: node.tagName,
attrs,
on,
ref,
content: children,
};
}
// -----------------------------------------------------------------------------
// t-esc
// -----------------------------------------------------------------------------
function parseTEscNode(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-esc")) {
return null;
}
const escValue = node.getAttribute("t-esc")!;
node.removeAttribute("t-esc");
const tesc: AST = {
type: ASTType.TEsc,
expr: escValue,
defaultValue: node.textContent || "",
};
let ref = node.getAttribute("t-ref");
node.removeAttribute("t-ref");
const ast = parseNode(node, ctx);
if (!ast) {
return tesc;
}
if (ast && ast.type === ASTType.DomNode) {
return {
type: ASTType.DomNode,
tag: ast.tag,
attrs: ast.attrs,
on: ast.on,
ref,
content: [tesc],
};
}
if (ast && ast.type === ASTType.TComponent) {
return {
...ast,
slots: { default: tesc },
};
}
return tesc;
}
// -----------------------------------------------------------------------------
// t-raw
// -----------------------------------------------------------------------------
function parseTRawNode(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-raw")) {
return null;
}
const expr = node.getAttribute("t-raw")!;
node.removeAttribute("t-raw");
const tRaw: AST = { type: ASTType.TRaw, expr, body: null };
const ref = node.getAttribute("t-ref");
node.removeAttribute("t-ref");
const ast = parseNode(node, ctx);
if (!ast) {
return tRaw;
}
if (ast && ast.type === ASTType.DomNode) {
tRaw.body = ast.content.length ? ast.content : null;
return {
type: ASTType.DomNode,
tag: ast.tag,
attrs: ast.attrs,
on: ast.on,
ref,
content: [tRaw],
};
}
return tRaw;
}
// -----------------------------------------------------------------------------
// t-foreach and t-key
// -----------------------------------------------------------------------------
function parseTForEach(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-foreach")) {
return null;
}
const html = node.outerHTML;
const collection = node.getAttribute("t-foreach")!;
node.removeAttribute("t-foreach");
const elem = node.getAttribute("t-as") || "";
node.removeAttribute("t-as");
const key = node.getAttribute("t-key");
node.removeAttribute("t-key");
const memo = node.getAttribute("t-memo") || "";
node.removeAttribute("t-memo");
const body = parseNode(node, ctx);
if (!body) {
return null;
}
const hasNoTCall = !html.includes("t-call");
const hasNoFirst = hasNoTCall && !html.includes(`${elem}_first`);
const hasNoLast = hasNoTCall && !html.includes(`${elem}_last`);
const hasNoIndex = hasNoTCall && !html.includes(`${elem}_index`);
const hasNoValue = hasNoTCall && !html.includes(`${elem}_value`);
return {
type: ASTType.TForEach,
collection,
elem,
body,
memo,
key,
isOnlyChild: false,
hasNoComponent: hasNoComponent(body),
hasNoFirst,
hasNoLast,
hasNoIndex,
hasNoValue,
};
}
/**
* @returns true if we are sure the ast does not contain any component
*/
function hasNoComponent(ast: AST): boolean {
switch (ast.type) {
case ASTType.TComponent:
case ASTType.TRaw:
case ASTType.TCall:
case ASTType.TCallBlock:
case ASTType.TSlot:
return false;
case ASTType.TSet:
case ASTType.Text:
case ASTType.Comment:
case ASTType.TEsc:
return true;
case ASTType.TKey:
return hasNoComponent(ast.content);
case ASTType.TDebug:
case ASTType.TLog:
return ast.content ? hasNoComponent(ast.content) : true;
case ASTType.TForEach:
return ast.hasNoComponent;
case ASTType.Multi:
case ASTType.DomNode: {
for (let elem of ast.content) {
if (!hasNoComponent(elem)) {
return false;
}
}
return true;
}
case ASTType.TIf: {
if (!hasNoComponent(ast.content)) {
return false;
}
if (ast.tElif) {
for (let elem of ast.tElif) {
if (!hasNoComponent(elem.content)) {
return false;
}
}
}
if (ast.tElse && !hasNoComponent(ast.tElse)) {
return false;
}
return true;
}
}
}
function parseTKey(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-key")) {
return null;
}
const key = node.getAttribute("t-key")!;
node.removeAttribute("t-key");
const body = parseNode(node, ctx);
if (!body) {
return null;
}
return { type: ASTType.TKey, expr: key, content: body };
}
// -----------------------------------------------------------------------------
// t-call
// -----------------------------------------------------------------------------
function parseTCall(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-call")) {
return null;
}
const subTemplate = node.getAttribute("t-call")!;
node.removeAttribute("t-call");
if (node.tagName !== "t") {
const ast = parseNode(node, ctx);
const tcall: AST = { type: ASTType.TCall, name: subTemplate, body: null };
if (ast && ast.type === ASTType.DomNode) {
ast.content = [tcall];
return ast;
}
if (ast && ast.type === ASTType.TComponent) {
return {
...ast,
slots: { default: tcall },
};
}
}
const body: AST[] = [];
for (let child of node.childNodes) {
const ast = parseNode(child, ctx);
if (ast) {
body.push(ast);
}
}
return {
type: ASTType.TCall,
name: subTemplate,
body: body.length ? body : null,
};
}
// -----------------------------------------------------------------------------
// t-call-block
// -----------------------------------------------------------------------------
function parseTCallBlock(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-call-block")) {
return null;
}
const name = node.getAttribute("t-call-block")!;
return {
type: ASTType.TCallBlock,
name,
};
}
// -----------------------------------------------------------------------------
// t-if
// -----------------------------------------------------------------------------
function parseTIf(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-if")) {
return null;
}
const condition = node.getAttribute("t-if")!;
node.removeAttribute("t-if");
const content = parseNode(node, ctx);
if (!content) {
throw new Error("hmmm");
}
let nextElement = node.nextElementSibling;
// t-elifs
const tElifs: any[] = [];
while (nextElement && nextElement.hasAttribute("t-elif")) {
const condition = nextElement.getAttribute("t-elif");
nextElement.removeAttribute("t-elif");
const tElif = parseNode(nextElement, ctx);
const next = nextElement.nextElementSibling;
nextElement.remove();
nextElement = next;
if (tElif) {
tElifs.push({ condition, content: tElif });
}
}
// t-else
let tElse: AST | null = null;
if (nextElement && nextElement.hasAttribute("t-else")) {
nextElement.removeAttribute("t-else");
tElse = parseNode(nextElement, ctx);
nextElement.remove();
}
return {
type: ASTType.TIf,
condition,
content,
tElif: tElifs.length ? tElifs : null,
tElse,
};
}
// -----------------------------------------------------------------------------
// t-set directive
// -----------------------------------------------------------------------------
function parseTSetNode(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-set")) {
return null;
}
const name = node.getAttribute("t-set")!;
const value = node.getAttribute("t-value") || null;
const defaultValue = node.innerHTML === node.textContent ? node.textContent || null : null;
let body: AST[] | null = null;
if (node.textContent !== node.innerHTML) {
body = [];
for (let child of node.childNodes) {
let childAst = parseNode(child, ctx);
if (childAst) {
body.push(childAst);
}
}
}
return { type: ASTType.TSet, name, value, defaultValue, body };
}
// -----------------------------------------------------------------------------
// Components
// -----------------------------------------------------------------------------
function parseComponent(node: Element, ctx: ParsingContext): AST | null {
let name = node.tagName;
const firstLetter = name[0];
let isDynamic = node.hasAttribute("t-component");
if (!(firstLetter === firstLetter.toUpperCase() || isDynamic)) {
return null;
}
if (isDynamic) {
name = node.getAttribute("t-component")!;
node.removeAttribute("t-component");
}
const props: ASTComponent["props"] = {};
const handlers: ASTComponent["handlers"] = {};
for (let name of node.getAttributeNames()) {
const value = node.getAttribute(name)!;
if (name.startsWith("t-on-")) {
handlers[name.slice(5)] = value;
} else {
props[name] = value;
}
}
const slots: ASTComponent["slots"] = {};
if (node.hasChildNodes()) {
const clone = <Element>node.cloneNode(true);
// named slots
const slotNodes = Array.from(clone.querySelectorAll("[t-set-slot]"));
for (let slotNode of slotNodes) {
const name = slotNode.getAttribute("t-set-slot")!;
// check if this is defined in a sub component (in which case it should
// be ignored)
let el = slotNode.parentElement!;
let isInSubComponent = false;
while (el !== clone) {
if (el!.hasAttribute("t-component") || el!.tagName[0] === el!.tagName[0].toUpperCase()) {
isInSubComponent = true;
break;
}
el = el.parentElement!;
}
if (isInSubComponent) {
continue;
}
slotNode.removeAttribute("t-set-slot");
slotNode.remove();
const slotAst = parseNode(slotNode, ctx);
if (slotAst) {
slots[name] = slotAst;
}
}
// default slot
const defaultContent = parseChildNodes(clone, ctx);
if (defaultContent) {
slots.default = defaultContent;
}
}
return { type: ASTType.TComponent, name, isDynamic, props, handlers, slots };
}
// -----------------------------------------------------------------------------
// Slots
// -----------------------------------------------------------------------------
function parseTSlot(node: Element, ctx: ParsingContext): AST | null {
if (!node.hasAttribute("t-slot")) {
return null;
}
return {
type: ASTType.TSlot,
name: node.getAttribute("t-slot")!,
defaultContent: parseChildNodes(node, ctx),
};
}
// -----------------------------------------------------------------------------
// helpers
// -----------------------------------------------------------------------------
function parseChildNodes(node: Element, ctx: ParsingContext): AST | null {
const children: AST[] = [];
for (let child of node.childNodes) {
const childAst = parseNode(child, ctx);
if (childAst) {
children.push(childAst);
}
}
switch (children.length) {
case 0:
return null;
case 1:
return children[0];
default:
return { type: ASTType.Multi, content: children };
}
}
function parseXML(xml: string): Document {
const parser = new DOMParser();
const doc = parser.parseFromString(xml, "text/xml");
if (doc.getElementsByTagName("parsererror").length) {
let msg = "Invalid XML in template.";
const parsererrorText = doc.getElementsByTagName("parsererror")[0].textContent;
if (parsererrorText) {
msg += "\nThe parser has produced the following error message:\n" + parsererrorText;
const re = /\d+/g;
const firstMatch = re.exec(parsererrorText);
if (firstMatch) {
const lineNumber = Number(firstMatch[0]);
const line = xml.split("\n")[lineNumber - 1];
const secondMatch = re.exec(parsererrorText);
if (line && secondMatch) {
const columnIndex = Number(secondMatch[0]) - 1;
if (line[columnIndex]) {
msg +=
`\nThe error might be located at xml line ${lineNumber} column ${columnIndex}\n` +
`${line}\n${"-".repeat(columnIndex - 1)}^`;
}
}
}
}
throw new Error(msg);
}
let tbranch = doc.querySelectorAll("[t-elif], [t-else]");
for (let i = 0, ilen = tbranch.length; i < ilen; i++) {
let node = tbranch[i];
let prevElem = node.previousElementSibling!;
let pattr = (name: string) => prevElem.getAttribute(name);
let nattr = (name: string) => +!!node.getAttribute(name);
if (prevElem && (pattr("t-if") || pattr("t-elif"))) {
if (pattr("t-foreach")) {
throw new Error(
"t-if cannot stay at the same level as t-foreach when using t-elif or t-else"
);
}
if (
["t-if", "t-elif", "t-else"].map(nattr).reduce(function (a, b) {
return a + b;
}) > 1
) {
throw new Error("Only one conditional branching directive is allowed per node");
}
// All text (with only spaces) and comment nodes (nodeType 8) between
// branch nodes are removed
let textNode;
while ((textNode = node.previousSibling) !== prevElem) {
if (textNode!.nodeValue!.trim().length && textNode!.nodeType !== 8) {
throw new Error("text is not allowed between branching directives");
}
textNode!.remove();
}
} else {
throw new Error(
"t-elif and t-else directives must be preceded by a t-if or t-elif directive"
);
}
}
return doc;
}
-921
View File
@@ -1,921 +0,0 @@
import { EventBus } from "../core/event_bus";
import { h, patch, VNode } from "../vdom/index";
import { CompilationContext } from "./compilation_context";
import { shallowEqual } from "../utils";
import { addNS } from "../vdom/vdom";
/**
* Owl QWeb Engine
*
* In this file, you will find a QWeb engine/template compiler. It is the core
* of how Owl component works.
*
* Briefly, Owl QWeb compiles XML templates into functions that output a virtual
* DOM representation.
*
* We have here:
* - a CompilationContext class, which is an internal object that contains all
* compilation specific information, while a template is being compiled.
* - a QWeb class: this is the code of the QWeb compiler.
*
* Note that this file does not contain the implementation of the QWeb
* directives (see qweb_directives.ts and qweb_extensions.ts).
*/
//------------------------------------------------------------------------------
// Types
//------------------------------------------------------------------------------
export type EvalContext = { [key: string]: any };
export type CompiledTemplate = (context: EvalContext, extra: any) => VNode;
interface Template {
elem: Element;
fn: CompiledTemplate;
}
interface CompilationInfo {
node: Element;
qweb: QWeb;
ctx: CompilationContext;
fullName: string;
value: string;
}
interface NodeCreationCompilationInfo extends CompilationInfo {
nodeID: number;
addNodeHook: Function;
}
export interface Directive {
name: string;
extraNames?: string[];
priority: number;
// if return true, then directive is fully applied and there is no need to
// keep processing node. Otherwise, we keep going.
atNodeEncounter?(info: CompilationInfo): boolean | void;
atNodeCreation?(info: NodeCreationCompilationInfo): void;
finalize?(info: CompilationInfo): void;
}
interface QWebConfig {
templates?: string;
translateFn?(text: string): string;
}
//------------------------------------------------------------------------------
// Const/global stuff/helpers
//------------------------------------------------------------------------------
export const TRANSLATABLE_ATTRS = ["label", "title", "placeholder", "alt"];
const lineBreakRE = /[\r\n]/;
const whitespaceRE = /\s+/g;
const translationRE = /^(\s*)([\s\S]+?)(\s*)$/;
const NODE_HOOKS_PARAMS = {
create: "(_, n)",
insert: "vn",
remove: "(vn, rm)",
destroy: "()",
};
interface Utils {
toClassObj(expr: any): Object;
shallowEqual(p1: Object, p2: Object): boolean;
[key: string]: any;
}
function isComponent(obj): boolean {
return obj && obj.hasOwnProperty("__owl__");
}
class VDomArray extends Array {
toString() {
return vDomToString(this);
}
}
function vDomToString(vdom: VNode[]): string {
return vdom
.map((vnode) => {
if (vnode.sel) {
const node = document.createElement(vnode.sel);
const result = patch(node, vnode);
return (<HTMLElement>result.elm).outerHTML;
} else {
return vnode.text;
}
})
.join("");
}
const UTILS: Utils = {
zero: Symbol("zero"),
toClassObj(expr) {
const result = {};
if (typeof expr === "string") {
// we transform here a list of classes into an object:
// 'hey you' becomes {hey: true, you: true}
expr = expr.trim();
if (!expr) {
return {};
}
let words = expr.split(/\s+/);
for (let i = 0; i < words.length; i++) {
result[words[i]] = true;
}
return result;
}
// this is already an object, but we may need to split keys:
// {'a b': true, 'a c': false} should become {a: true, b: true, c: false}
for (let key in expr) {
const value = expr[key];
const words = key.split(/\s+/);
for (let word of words) {
result[word] = result[word] || value;
}
}
return result;
},
/**
* This method combines the current context with the variables defined in a
* scope for use in a slot.
*
* The implementation is kind of tricky because we want to preserve the
* prototype chain structure of the cloned result. So we need to traverse the
* prototype chain, cloning each level respectively.
*/
combine(context, scope) {
let clone = context;
const scopeStack = [];
while (!isComponent(scope)) {
scopeStack.push(scope);
scope = scope.__proto__;
}
while (scopeStack.length) {
let scope = scopeStack.pop();
clone = Object.create(clone);
Object.assign(clone, scope);
}
return clone;
},
shallowEqual,
addNameSpace(vnode) {
addNS(vnode.data, vnode.children, vnode.sel);
},
VDomArray,
vDomToString,
getComponent(obj) {
while (obj && !isComponent(obj)) {
obj = obj.__proto__;
}
return obj;
},
getScope(obj, property: string) {
const obj0 = obj;
while (
obj &&
!obj.hasOwnProperty(property) &&
!(obj.hasOwnProperty("__access_mode__") && obj.__access_mode__ === "ro")
) {
const newObj = obj.__proto__;
if (!newObj || isComponent(newObj)) {
return obj0;
}
obj = newObj;
}
return obj;
},
};
function parseXML(xml: string): Document {
const parser = new DOMParser();
const doc = parser.parseFromString(xml, "text/xml");
if (doc.getElementsByTagName("parsererror").length) {
let msg = "Invalid XML in template.";
const parsererrorText = doc.getElementsByTagName("parsererror")[0].textContent;
if (parsererrorText) {
msg += "\nThe parser has produced the following error message:\n" + parsererrorText;
const re = /\d+/g;
const firstMatch = re.exec(parsererrorText);
if (firstMatch) {
const lineNumber = Number(firstMatch[0]);
const line = xml.split("\n")[lineNumber - 1];
const secondMatch = re.exec(parsererrorText);
if (line && secondMatch) {
const columnIndex = Number(secondMatch[0]) - 1;
if (line[columnIndex]) {
msg +=
`\nThe error might be located at xml line ${lineNumber} column ${columnIndex}\n` +
`${line}\n${"-".repeat(columnIndex - 1)}^`;
}
}
}
}
throw new Error(msg);
}
return doc;
}
function escapeQuotes(str: string): string {
return str.replace(/\'/g, "\\'");
}
//------------------------------------------------------------------------------
// QWeb rendering engine
//------------------------------------------------------------------------------
export class QWeb extends EventBus {
templates: { [name: string]: Template };
static utils = UTILS;
static components = Object.create(null);
static DIRECTIVE_NAMES: { [key: string]: 1 } = {
name: 1,
att: 1,
attf: 1,
translation: 1,
tag: 1,
};
static DIRECTIVES: Directive[] = [];
static TEMPLATES: { [name: string]: Template } = {};
static nextId: number = 1;
h = h;
// dev mode enables better error messages or more costly validations
static dev: boolean = false;
static enableTransitions: boolean = true;
// slots contains sub templates defined with t-set inside t-component nodes, and
// are meant to be used by the t-slot directive.
static slots = {};
static nextSlotId = 1;
// subTemplates are stored in two objects: a (local) mapping from a name to an
// id, and a (global) mapping from an id to the compiled function. This is
// necessary to ensure that global templates can be called with more than one
// QWeb instance.
subTemplates: { [key: string]: number } = {};
static subTemplates: { [id: number]: Function } = {};
isUpdating: boolean = false;
translateFn?: QWebConfig["translateFn"];
constructor(config: QWebConfig = {}) {
super();
this.templates = Object.create(QWeb.TEMPLATES);
if (config.templates) {
this.addTemplates(config.templates);
}
if (config.translateFn) {
this.translateFn = config.translateFn;
}
}
static addDirective(directive: Directive) {
if (directive.name in QWeb.DIRECTIVE_NAMES) {
throw new Error(`Directive "${directive.name} already registered`);
}
QWeb.DIRECTIVES.push(directive);
QWeb.DIRECTIVE_NAMES[directive.name] = 1;
QWeb.DIRECTIVES.sort((d1, d2) => d1.priority - d2.priority);
if (directive.extraNames) {
directive.extraNames.forEach((n) => (QWeb.DIRECTIVE_NAMES[n] = 1));
}
}
static registerComponent(name: string, Component: any) {
if (QWeb.components[name]) {
throw new Error(`Component '${name}' has already been registered`);
}
QWeb.components[name] = Component;
}
/**
* Register globally a template. All QWeb instances will obtain their
* templates from their own template map, and then, from the global static
* TEMPLATES property.
*/
static registerTemplate(name: string, template: string) {
if (QWeb.TEMPLATES[name]) {
throw new Error(`Template '${name}' has already been registered`);
}
const qweb = new QWeb();
qweb.addTemplate(name, template);
QWeb.TEMPLATES[name] = qweb.templates[name];
}
/**
* Add a template to the internal template map. Note that it is not
* immediately compiled.
*/
addTemplate(name: string, xmlString: string, allowDuplicate?: boolean) {
if (allowDuplicate && name in this.templates) {
return;
}
const doc = parseXML(xmlString);
if (!doc.firstChild) {
throw new Error("Invalid template (should not be empty)");
}
this._addTemplate(name, <Element>doc.firstChild);
}
/**
* Load templates from a xml (as a string or xml document). This will look up
* for the first <templates> tag, and will consider each child of this as a
* template, with the name given by the t-name attribute.
*/
addTemplates(xmlstr: string | Document) {
if (!xmlstr) {
return;
}
const doc = typeof xmlstr === "string" ? parseXML(xmlstr) : xmlstr;
const templates = doc.getElementsByTagName("templates")[0];
if (!templates) {
return;
}
for (let elem of <any>templates.children) {
const name = elem.getAttribute("t-name");
this._addTemplate(name, elem);
}
}
_addTemplate(name: string, elem: Element) {
if (name in this.templates) {
throw new Error(`Template ${name} already defined`);
}
this._processTemplate(elem);
const template = {
elem,
fn: function (this: QWeb, context, extra) {
const compiledFunction = this._compile(name);
template.fn = compiledFunction;
return compiledFunction.call(this, context, extra);
},
};
this.templates[name] = template;
}
_processTemplate(elem: Element) {
let tbranch = elem.querySelectorAll("[t-elif], [t-else]");
for (let i = 0, ilen = tbranch.length; i < ilen; i++) {
let node = tbranch[i];
let prevElem = node.previousElementSibling!;
let pattr = function (name) {
return prevElem.getAttribute(name);
};
let nattr = function (name) {
return +!!node.getAttribute(name);
};
if (prevElem && (pattr("t-if") || pattr("t-elif"))) {
if (pattr("t-foreach")) {
throw new Error(
"t-if cannot stay at the same level as t-foreach when using t-elif or t-else"
);
}
if (
["t-if", "t-elif", "t-else"].map(nattr).reduce(function (a, b) {
return a + b;
}) > 1
) {
throw new Error("Only one conditional branching directive is allowed per node");
}
// All text (with only spaces) and comment nodes (nodeType 8) between
// branch nodes are removed
let textNode;
while ((textNode = node.previousSibling) !== prevElem) {
if (textNode.nodeValue.trim().length && textNode.nodeType !== 8) {
throw new Error("text is not allowed between branching directives");
}
textNode.remove();
}
} else {
throw new Error(
"t-elif and t-else directives must be preceded by a t-if or t-elif directive"
);
}
}
}
/**
* Render a template
*
* @param {string} name the template should already have been added
*/
render(name: string, context: EvalContext = {}, extra: any = null): VNode {
const template = this.templates[name];
if (!template) {
throw new Error(`Template ${name} does not exist`);
}
return template.fn.call(this, context, extra);
}
/**
* Render a template to a html string.
*
* Note that this is more limited than the `render` method: it is not suitable
* to render a full component tree, since this is an asynchronous operation.
* This method can only render templates without components.
*/
renderToString(name: string, context: EvalContext = {}, extra?: any): string {
const vnode = this.render(name, context, extra);
if (vnode.sel === undefined) {
return vnode.text!;
}
const node = document.createElement(vnode.sel);
const result = patch(node, vnode);
return (result.elm as HTMLElement).outerHTML;
}
/**
* Force all widgets connected to this QWeb instance to rerender themselves.
*
* This method is mostly useful for external code that want to modify the
* application in some cases. For example, a router plugin.
*/
forceUpdate() {
this.isUpdating = true;
Promise.resolve().then(() => {
if (this.isUpdating) {
this.isUpdating = false;
this.trigger("update");
}
});
}
_compile(
name: string,
options: {
elem?: Element;
hasParent?: boolean;
defineKey?: boolean;
} = {}
): CompiledTemplate {
const elem = options.elem || this.templates[name].elem;
const isDebug = elem.attributes.hasOwnProperty("t-debug");
const ctx = new CompilationContext(name);
if (elem.tagName !== "t") {
ctx.shouldDefineResult = false;
}
if (options.hasParent) {
ctx.variables = Object.create(null);
ctx.parentNode = ctx.generateID();
ctx.allowMultipleRoots = true;
ctx.shouldDefineParent = true;
ctx.hasParentWidget = true;
ctx.shouldDefineResult = false;
ctx.addLine(`let c${ctx.parentNode} = extra.parentNode;`);
if (options.defineKey) {
ctx.addLine(`let key0 = extra.key || "";`);
ctx.hasKey0 = true;
}
}
this._compileNode(elem, ctx);
if (!options.hasParent) {
if (ctx.shouldDefineResult) {
ctx.addLine(`return result;`);
} else {
if (!ctx.rootNode) {
throw new Error(`A template should have one root node (${ctx.templateName})`);
}
ctx.addLine(`return vn${ctx.rootNode};`);
}
}
let code = ctx.generateCode();
const templateName = ctx.templateName.replace(/`/g, "'").slice(0, 200);
code.unshift(` // Template name: "${templateName}"`);
let template;
try {
template = new Function("context, extra", code.join("\n")) as CompiledTemplate;
} catch (e) {
console.groupCollapsed(`Invalid Code generated by ${templateName}`);
console.warn(code.join("\n"));
console.groupEnd();
throw new Error(
`Invalid generated code while compiling template '${templateName}': ${e.message}`
);
}
if (isDebug) {
const tpl = this.templates[name];
if (tpl) {
const msg = `Template: ${tpl.elem.outerHTML}\nCompiled code:\n${template.toString()}`;
console.log(msg);
}
}
return template;
}
/**
* Generate code from an xml node
*
*/
_compileNode(node: ChildNode, ctx: CompilationContext) {
if (!(node instanceof Element)) {
// this is a text node, there are no directive to apply
let text = node.textContent!;
if (!ctx.inPreTag) {
if (lineBreakRE.test(text) && !text.trim()) {
return;
}
text = text.replace(whitespaceRE, " ");
}
if (this.translateFn) {
if ((node.parentNode as any).getAttribute("t-translation") !== "off") {
const match = translationRE.exec(text);
text = match[1] + this.translateFn(match[2]) + match[3];
}
}
if (ctx.parentNode) {
if (node.nodeType === 3) {
ctx.addLine(`c${ctx.parentNode}.push({text: \`${text}\`});`);
} else if (node.nodeType === 8) {
ctx.addLine(`c${ctx.parentNode}.push(h('!', \`${text}\`));`);
}
} else if (ctx.parentTextNode) {
ctx.addLine(`vn${ctx.parentTextNode}.text += \`${text}\`;`);
} else {
// this is an unusual situation: this text node is the result of the
// template rendering.
let nodeID = ctx.generateID();
ctx.addLine(`let vn${nodeID} = {text: \`${text}\`};`);
ctx.addLine(`result = vn${nodeID};`);
ctx.rootContext.rootNode = nodeID;
ctx.rootContext.parentTextNode = nodeID;
}
return;
}
if (node.tagName !== "t" && node.hasAttribute("t-call")) {
const tCallNode = document.implementation.createDocument(
"http://www.w3.org/1999/xhtml",
"t",
null
).documentElement;
tCallNode.setAttribute("t-call", node.getAttribute("t-call")!);
node.removeAttribute("t-call");
node.prepend(tCallNode);
}
const firstLetter = node.tagName[0];
if (firstLetter === firstLetter.toUpperCase()) {
// this is a component, we modify in place the xml document to change
// <SomeComponent ... /> to <SomeComponent t-component="SomeComponent" ... />
node.setAttribute("t-component", node.tagName);
} else if (node.tagName !== "t" && node.hasAttribute("t-component")) {
throw new Error(
`Directive 't-component' can only be used on <t> nodes (used on a <${node.tagName}>)`
);
}
const attributes = (<Element>node).attributes;
const validDirectives: {
directive: Directive;
value: string;
fullName: string;
}[] = [];
const finalizers: typeof validDirectives = [];
// maybe this is not optimal: we iterate on all attributes here, and again
// just after for each directive.
for (let i = 0; i < attributes.length; i++) {
let attrName = attributes[i].name;
if (attrName.startsWith("t-")) {
let dName = attrName.slice(2).split(/-|\./)[0];
if (!(dName in QWeb.DIRECTIVE_NAMES)) {
throw new Error(`Unknown QWeb directive: '${attrName}'`);
}
if (node.tagName !== "t" && (attrName === "t-esc" || attrName === "t-raw")) {
const tNode = document.implementation.createDocument(
"http://www.w3.org/1999/xhtml",
"t",
null
).documentElement;
tNode.setAttribute(attrName, node.getAttribute(attrName)!);
for (let child of Array.from(node.childNodes)) {
tNode.appendChild(child);
}
node.appendChild(tNode);
node.removeAttribute(attrName);
}
}
}
const DIR_N = QWeb.DIRECTIVES.length;
const ATTR_N = attributes.length;
let withHandlers = false;
for (let i = 0; i < DIR_N; i++) {
let directive = QWeb.DIRECTIVES[i];
let fullName;
let value;
for (let j = 0; j < ATTR_N; j++) {
const name = attributes[j].name;
if (
name === "t-" + directive.name ||
name.startsWith("t-" + directive.name + "-") ||
name.startsWith("t-" + directive.name + ".")
) {
fullName = name;
value = attributes[j].textContent;
validDirectives.push({ directive, value, fullName });
if (directive.name === "on" || directive.name === "model") {
withHandlers = true;
}
}
}
}
for (let { directive, value, fullName } of validDirectives) {
if (directive.finalize) {
finalizers.push({ directive, value, fullName });
}
if (directive.atNodeEncounter) {
const isDone = directive.atNodeEncounter({
node,
qweb: this,
ctx,
fullName,
value,
});
if (isDone) {
for (let { directive, value, fullName } of finalizers) {
directive.finalize!({ node, qweb: this, ctx, fullName, value });
}
return;
}
}
}
if (node.nodeName !== "t" || node.hasAttribute("t-tag")) {
let nodeHooks = {};
let addNodeHook = function (hook, handler) {
nodeHooks[hook] = nodeHooks[hook] || [];
nodeHooks[hook].push(handler);
};
if (node.tagName === "select" && node.hasAttribute("t-att-value")) {
const value = node.getAttribute("t-att-value");
let exprId = ctx.generateID();
ctx.addLine(`let expr${exprId} = ${ctx.formatExpression(value)};`);
let expr = `expr${exprId}`;
node.setAttribute("t-att-value", expr);
addNodeHook("create", `n.elm.value=${expr};`);
}
let nodeID = this._compileGenericNode(node, ctx, withHandlers);
ctx = ctx.withParent(nodeID);
for (let { directive, value, fullName } of validDirectives) {
if (directive.atNodeCreation) {
directive.atNodeCreation({
node,
qweb: this,
ctx,
fullName,
value,
nodeID,
addNodeHook,
});
}
}
if (Object.keys(nodeHooks).length) {
ctx.addLine(`p${nodeID}.hook = {`);
for (let hook in nodeHooks) {
ctx.addLine(` ${hook}: ${NODE_HOOKS_PARAMS[hook]} => {`);
for (let handler of nodeHooks[hook]) {
ctx.addLine(` ${handler}`);
}
ctx.addLine(` },`);
}
ctx.addLine(`};`);
}
}
if (node.nodeName === "pre") {
ctx = ctx.subContext("inPreTag", true);
}
this._compileChildren(node, ctx);
// svg support
// we hadd svg namespace if it is a svg or if it is a g, but only if it is
// the root node. This is the easiest way to support svg sub components:
// they need to have a g tag as root. Otherwise, we would need a complete
// list of allowed svg tags.
const shouldAddNS =
node.nodeName === "svg" || (node.nodeName === "g" && ctx.rootNode === ctx.parentNode);
if (shouldAddNS) {
ctx.rootContext.shouldDefineUtils = true;
ctx.addLine(`utils.addNameSpace(vn${ctx.parentNode});`);
}
for (let { directive, value, fullName } of finalizers) {
directive.finalize!({ node, qweb: this, ctx, fullName, value });
}
}
_compileGenericNode(
node: ChildNode,
ctx: CompilationContext,
withHandlers: boolean = true
): number {
// nodeType 1 is generic tag
if (node.nodeType !== 1) {
throw new Error("unsupported node type");
}
const attributes = (<Element>node).attributes;
const attrs: string[] = [];
const props: string[] = [];
const tattrs: number[] = [];
function handleProperties(key, val) {
let isProp = false;
switch (node.nodeName) {
case "input":
let type = (<Element>node).getAttribute("type");
if (type === "checkbox" || type === "radio") {
if (key === "checked" || key === "indeterminate") {
isProp = true;
}
}
if (key === "value" || key === "readonly" || key === "disabled") {
isProp = true;
}
break;
case "option":
isProp = key === "selected" || key === "disabled";
break;
case "textarea":
isProp = key === "readonly" || key === "disabled" || key === "value";
break;
case "select":
isProp = key === "disabled" || key === "value";
break;
case "button":
case "optgroup":
isProp = key === "disabled";
break;
}
if (isProp) {
props.push(`${key}: ${val}`);
}
}
let classObj = "";
for (let i = 0; i < attributes.length; i++) {
let name = attributes[i].name;
let value = attributes[i].textContent!;
if (this.translateFn && TRANSLATABLE_ATTRS.includes(name)) {
value = this.translateFn(value);
}
// regular attributes
if (!name.startsWith("t-") && !(<Element>node).getAttribute("t-attf-" + name)) {
const attID = ctx.generateID();
if (name === "class") {
if ((value = value.trim())) {
let classDef = value
.split(/\s+/)
.map((a) => `'${escapeQuotes(a)}':true`)
.join(",");
if (classObj) {
ctx.addLine(`Object.assign(${classObj}, {${classDef}})`);
} else {
classObj = `_${ctx.generateID()}`;
ctx.addLine(`let ${classObj} = {${classDef}};`);
}
}
} else {
ctx.addLine(`let _${attID} = '${escapeQuotes(value)}';`);
if (!name.match(/^[a-zA-Z]+$/)) {
// attribute contains 'non letters' => we want to quote it
name = '"' + name + '"';
}
attrs.push(`${name}: _${attID}`);
handleProperties(name, `_${attID}`);
}
}
// dynamic attributes
if (name.startsWith("t-att-")) {
let attName = name.slice(6);
const v = ctx.getValue(value);
let formattedValue = typeof v === "string" ? ctx.formatExpression(v) : `scope.${v.id}`;
if (attName === "class") {
ctx.rootContext.shouldDefineUtils = true;
formattedValue = `utils.toClassObj(${formattedValue})`;
if (classObj) {
ctx.addLine(`Object.assign(${classObj}, ${formattedValue})`);
} else {
classObj = `_${ctx.generateID()}`;
ctx.addLine(`let ${classObj} = ${formattedValue};`);
}
} else {
const attID = ctx.generateID();
if (!attName.match(/^[a-zA-Z]+$/)) {
// attribute contains 'non letters' => we want to quote it
attName = '"' + attName + '"';
}
// we need to combine dynamic with non dynamic attributes:
// class="a" t-att-class="'yop'" should be rendered as class="a yop"
const attValue = (<Element>node).getAttribute(attName);
if (attValue) {
const attValueID = ctx.generateID();
ctx.addLine(`let _${attValueID} = ${formattedValue};`);
formattedValue = `'${attValue}' + (_${attValueID} ? ' ' + _${attValueID} : '')`;
const attrIndex = attrs.findIndex((att) => att.startsWith(attName + ":"));
attrs.splice(attrIndex, 1);
}
if (node.nodeName === "select" && attName === "value") {
attrs.push(`${attName}: ${v}`);
handleProperties(attName, v);
} else {
ctx.addLine(`let _${attID} = ${formattedValue};`);
attrs.push(`${attName}: _${attID}`);
handleProperties(attName, "_" + attID);
}
}
}
if (name.startsWith("t-attf-")) {
let attName = name.slice(7);
if (!attName.match(/^[a-zA-Z]+$/)) {
// attribute contains 'non letters' => we want to quote it
attName = '"' + attName + '"';
}
const formattedExpr = ctx.interpolate(value);
const attID = ctx.generateID();
let staticVal = (<Element>node).getAttribute(attName);
if (staticVal) {
ctx.addLine(`let _${attID} = '${staticVal} ' + ${formattedExpr};`);
} else {
ctx.addLine(`let _${attID} = ${formattedExpr};`);
}
attrs.push(`${attName}: _${attID}`);
}
// t-att= attributes
if (name === "t-att") {
let id = ctx.generateID();
ctx.addLine(`let _${id} = ${ctx.formatExpression(value!)};`);
tattrs.push(id);
}
}
let nodeID = ctx.generateID();
let key = ctx.loopNumber || ctx.hasKey0 ? `\`\${key${ctx.loopNumber}}_${nodeID}\`` : nodeID;
const parts = [`key:${key}`];
if (attrs.length + tattrs.length > 0) {
parts.push(`attrs:{${attrs.join(",")}}`);
}
if (props.length > 0) {
parts.push(`props:{${props.join(",")}}`);
}
if (classObj) {
parts.push(`class:${classObj}`);
}
if (withHandlers) {
parts.push(`on:{}`);
}
ctx.addLine(`let c${nodeID} = [], p${nodeID} = {${parts.join(",")}};`);
for (let id of tattrs) {
ctx.addIf(`_${id} instanceof Array`);
ctx.addLine(`p${nodeID}.attrs[_${id}[0]] = _${id}[1];`);
ctx.addElse();
ctx.addLine(`for (let key in _${id}) {`);
ctx.indent();
ctx.addLine(`p${nodeID}.attrs[key] = _${id}[key];`);
ctx.dedent();
ctx.addLine(`}`);
ctx.closeIf();
}
let nodeName = `'${node.nodeName}'`;
if ((<Element>node).hasAttribute("t-tag")) {
const tagExpr = (<Element>node).getAttribute("t-tag");
(<Element>node).removeAttribute("t-tag");
nodeName = `tag${ctx.generateID()}`;
ctx.addLine(`let ${nodeName} = ${ctx.formatExpression(tagExpr)};`);
}
ctx.addLine(`let vn${nodeID} = h(${nodeName}, p${nodeID}, c${nodeID});`);
if (ctx.parentNode) {
ctx.addLine(`c${ctx.parentNode}.push(vn${nodeID});`);
} else if (ctx.loopNumber || ctx.hasKey0) {
ctx.rootContext.shouldDefineResult = true;
ctx.addLine(`result = vn${nodeID};`);
}
return nodeID;
}
_compileChildren(node: ChildNode, ctx: CompilationContext) {
if (node.childNodes.length > 0) {
for (let child of Array.from(node.childNodes)) {
this._compileNode(child, ctx);
}
}
}
}
+129
View File
@@ -0,0 +1,129 @@
// import { compileTemplate, Template } from "./qweb/index";
import { BDom, createBlock, html, list, multi, text, toggler } from "../blockdom";
import { component } from "../component/component_node";
import { Template, compileTemplate } from "./compiler";
const bdom = { text, createBlock, list, multi, html, toggler, component };
export const globalTemplates: { [key: string]: string } = {};
function withDefault(value: any, defaultValue: any): any {
return value === undefined || value === null || value === false ? defaultValue : value;
}
function callSlot(
ctx: any,
parent: any,
key: string,
name: string,
defaultSlot?: (ctx: any, key: string) => BDom,
dynamic?: boolean
): BDom | null {
const slots = ctx.__owl__.slots;
const slotFn = slots[name];
const slotBDom = slotFn ? slotFn(parent, key) : null;
if (defaultSlot) {
let child1: BDom | undefined = undefined;
let child2: BDom | undefined = undefined;
// const result = new BMulti(2);
if (slotBDom) {
child1 = dynamic ? toggler(name, slotBDom) : slotBDom;
} else {
child2 = defaultSlot(parent, key);
}
return multi([child1, child2]);
}
return slotBDom;
}
function capture(ctx: any): any {
const component = ctx.__owl__.component;
const result = Object.create(component);
for (let k in ctx) {
result[k] = ctx[k];
}
return result;
}
function withKey(elem: any, k: string) {
elem.key = k;
return elem;
}
function prepareList(collection: any): [any[], any[], number, any[]] {
let keys: any[];
let values: any[];
if (Array.isArray(collection)) {
keys = collection;
values = collection;
} else if (collection) {
values = Object.keys(collection);
keys = Object.values(collection);
} else {
throw new Error("Invalid loop expression");
}
const n = values.length;
return [keys, values, n, new Array(n)];
}
export const UTILS = {
// elem,
// setText,
withDefault,
zero: Symbol("zero"),
callSlot,
capture,
// toClassObj,
withKey,
prepareList,
shallowEqual,
};
export class TemplateSet {
rawTemplates: { [name: string]: string } = Object.create(globalTemplates);
templates: { [name: string]: Template } = {};
utils: typeof UTILS;
constructor() {
const call = (subTemplate: string, ctx: any, parent: any) => {
const template = this.getTemplate(subTemplate);
return toggler(subTemplate, template(ctx, parent));
};
const getTemplate = (name: string) => this.getTemplate(name);
this.utils = Object.assign({}, UTILS, { getTemplate, call });
}
addTemplate(name: string, template: string, options: { allowDuplicate?: boolean } = {}) {
if (name in this.rawTemplates && !options.allowDuplicate) {
throw new Error(`Template ${name} already defined`);
}
this.rawTemplates[name] = template;
}
getTemplate(name: string): Template {
if (!(name in this.templates)) {
const rawTemplate = this.rawTemplates[name];
if (rawTemplate === undefined) {
throw new Error(`Missing template: "${name}"`);
}
const templateFn = compileTemplate(rawTemplate, name);
// first add a function to lazily get the template, in case there is a
// recursive call to the template name
this.templates[name] = (context, parent) => this.templates[name](context, parent);
const template = templateFn(bdom, this.utils);
this.templates[name] = template;
}
return this.templates[name];
}
}
function shallowEqual(l1: any[], l2: any[]): boolean {
for (let i = 0, l = l1.length; i < l; i++) {
if (l1[i] !== l2[i]) {
return false;
}
}
return true;
}
+144
View File
@@ -0,0 +1,144 @@
import { getCurrent } from "./component/component_node";
export function useState<T>(state: T): T {
const node = getCurrent()!;
return observe(state, () => node.render());
}
type CB = () => void;
const observers: WeakMap<any, PSet<CB>> = new WeakMap();
/**
* PSet (for Prototypal Set) are sets that can lookup in their "parent sets", if
* any.
*/
class PSet<T> extends Set<T> {
parent?: PSet<T>;
static createChild<T>(parent: PSet<T>): PSet<T> {
const pset: PSet<T> = new PSet();
pset.parent = parent;
return pset;
}
has(key: T): boolean {
if (super.has(key)) {
return true;
}
return this.parent ? this.parent.has(key) : false;
}
*[Symbol.iterator](): Generator<T> {
let iterator = super[Symbol.iterator]();
for (let elem of iterator) {
yield elem;
}
if (this.parent) {
for (let elem of this.parent) {
yield elem;
}
}
}
}
// -----------------------------------------------------------------------------
export function observe<T>(value: T, cb: CB): T {
if (isNotObservable(value)) {
return value;
}
if (observers.has(value)) {
const callbacks = observers.get(value)!;
callbacks.add(cb);
return value;
}
const callbacks: PSet<CB> = new PSet();
callbacks.add(cb);
return observeValue(value, callbacks);
}
export function unobserve<T>(value: T, cb: () => void) {
if (isNotObservable(value)) {
return;
}
if (observers.has(value)) {
const callbacks = observers.get(value)!;
callbacks.delete(cb);
}
}
function isNotObservable(value: any): boolean {
return (
value === null || typeof value !== "object" || value instanceof Date || value instanceof Promise
);
}
/**
* value should
* 1. be observable
* 2. not yet be observed
*/
function observeValue(value: any, callbacks: PSet<CB>): any {
const proxy = new Proxy(value as any, {
get(target: any, key: any): any {
const current = target[key];
if (isNotObservable(current)) {
return current;
}
if (observers.has(current)) {
// this is wrong ?
observers.get(current)!.parent = callbacks;
return current;
}
const subCallbacks = PSet.createChild(callbacks);
const subValue = observeValue(current, subCallbacks);
target[key] = subValue;
return subValue;
},
set(target: any, key: any, value: any): boolean {
// TODO: check if current !== target or proxy ??
const current = target[key];
if (current !== value) {
if (isNotObservable(value)) {
target[key] = value;
} else {
// TODO: test following scenario:
// 1. obj1 = observer({a:1}, somecb);
// 2. unobserve(obj1, somecb)
// 3. obj1.a = {b: 2};
// check that somecb was not called
// obj1.a.b = 3;
// check again that somecb was not called
if (observers.has(value)) {
const pset = observers.get(value)!;
pset.parent = callbacks;
target[key] = value;
} else {
const subCallbacks = PSet.createChild(callbacks);
target[key] = observeValue(value, subCallbacks);
}
}
notify(target);
}
return true;
},
deleteProperty(target: any, key: any) {
if (key in target) {
delete target[key];
notify(target);
}
return true;
},
});
observers.set(value, callbacks);
observers.set(proxy, callbacks);
return proxy;
}
function notify(value: any) {
const cbs = observers.get(value)!;
for (let cb of cbs) {
cb();
}
}
+36
View File
@@ -0,0 +1,36 @@
// -----------------------------------------------------------------------------
// useRef
// -----------------------------------------------------------------------------
import type { Component } from "./component/component";
import { getCurrent } from "./component/component_node";
/**
* The purpose of this hook is to allow components to get a reference to a sub
* html node or component.
*/
interface Ref<C extends Component = Component> {
el: HTMLElement | null;
comp: C | null;
}
export function useRef<C extends Component = Component>(name: string): Ref<C> {
const node = getCurrent()!;
return {
get el(): HTMLElement | null {
const val = node.refs[name];
return val!;
// if (val instanceof HTMLElement) {
// return val;
// } else if (val instanceof Component) {
// return val.el;
// }
// return null;
},
get comp(): C | null {
return null;
// const val = node.refs && node.refs[name];
// return val instanceof Component ? (val as C) : null;
},
};
}
-48
View File
@@ -1,48 +0,0 @@
import { Component } from "../component/component";
import { xml } from "../tags";
import { Destination, RouterEnv } from "./router";
type Props = Destination;
export class Link<Env extends RouterEnv> extends Component<Props, Env> {
static template = xml`
<a t-att-class="{'router-link-active': isActive }"
t-att-href="href"
t-on-click="navigate">
<t t-slot="default"/>
</a>
`;
href: string = this.env.router.destToPath(this.props);
async willUpdateProps(nextProps) {
this.href = this.env.router.destToPath(nextProps);
}
get isActive() {
if (this.env.router.mode === "hash") {
return (<any>document.location).hash === this.href;
}
return (<any>document.location).pathname === this.href;
}
navigate(ev) {
// don't redirect with control keys
if (ev.metaKey || ev.altKey || ev.ctrlKey || ev.shiftKey) {
return;
}
// don't redirect on right click
if (ev.button !== undefined && ev.button !== 0) {
return;
}
// don't redirect if `target="_blank"`
if (ev.currentTarget && ev.currentTarget.getAttribute) {
const target = ev.currentTarget.getAttribute("target");
if (/\b_blank\b/i.test(target)) {
return;
}
}
ev.preventDefault();
this.env.router.navigate(this.props);
}
}
-19
View File
@@ -1,19 +0,0 @@
import { Component } from "../component/component";
import { xml } from "../tags";
import { EnvWithRouter } from "./router";
export class RouteComponent extends Component<{}, EnvWithRouter> {
static template = xml`
<t>
<t
t-if="routeComponent"
t-component="routeComponent"
t-key="env.router.currentRouteName"
t-props="env.router.currentParams" />
</t>
`;
get routeComponent(): any {
return this.env.router.currentRoute && this.env.router.currentRoute.component;
}
}
-294
View File
@@ -1,294 +0,0 @@
import { Env } from "../component/component";
import { QWeb } from "../qweb/index";
import { shallowEqual } from "../utils";
type NavigationGuard = (info: {
env: Env;
to: Route | null;
from: Route | null;
}) => boolean | Destination;
export interface Route {
name: string;
path: string;
extractionRegExp: RegExp;
component?: any;
redirect?: Destination;
params: string[];
beforeRouteEnter?: NavigationGuard;
}
export type RouteParams = { [key: string]: string | number };
export interface RouterEnv extends Env {
router: Router;
}
export interface Destination {
path?: string;
to?: string;
params?: RouteParams;
}
interface PositiveMatchResult {
type: "match";
route: Route;
params: RouteParams;
}
interface NegativeMatchResult {
type: "nomatch";
}
interface CancelledMatch {
type: "cancelled";
}
type MatchResult = PositiveMatchResult | NegativeMatchResult | CancelledMatch;
interface Options {
mode: Router["mode"];
}
export interface EnvWithRouter extends Env {
router: Router;
}
const paramRegexp = /\{\{(.*?)\}\}/;
const globalParamRegexp = new RegExp(paramRegexp.source, "g");
export class Router {
currentRoute: Route | null = null;
currentParams: RouteParams | null = null;
mode: "history" | "hash";
routes: { [id: string]: Route };
routeIds: string[];
env: RouterEnv;
constructor(
env: Partial<EnvWithRouter>,
routes: Partial<Route>[],
options: Options = { mode: "history" }
) {
env.router = this;
this.mode = options.mode;
this.env = env as RouterEnv;
this.routes = {};
this.routeIds = [];
let nextId = 1;
for (let partialRoute of routes) {
if (!partialRoute.name) {
partialRoute.name = "__route__" + nextId++;
}
if (partialRoute.component) {
QWeb.registerComponent("__component__" + partialRoute.name, partialRoute.component);
}
if (partialRoute.redirect) {
this.validateDestination(partialRoute.redirect);
}
partialRoute.params = partialRoute.path ? findParams(partialRoute.path) : [];
partialRoute.extractionRegExp = makeExtractionRegExp(partialRoute.path);
this.routes[partialRoute.name] = partialRoute as Route;
this.routeIds.push(partialRoute.name);
}
}
//--------------------------------------------------------------------------
// Public API
//--------------------------------------------------------------------------
async start() {
(this as any)._listener = (ev) => this._navigate(this.currentPath(), ev);
window.addEventListener("popstate", (this as any)._listener);
if (this.mode === "hash") {
window.addEventListener("hashchange", (this as any)._listener);
}
const result = await this.matchAndApplyRules(this.currentPath());
if (result.type === "match") {
this.currentRoute = result.route;
this.currentParams = result.params;
const currentPath = this.routeToPath(result.route, result.params);
if (currentPath !== this.currentPath()) {
this.setUrlFromPath(currentPath);
}
}
}
async navigate(to: Destination): Promise<boolean> {
const path = this.destToPath(to);
return this._navigate(path);
}
async _navigate(path: string, ev?: any): Promise<boolean> {
const initialName = this.currentRouteName;
const initialParams = this.currentParams;
const result = await this.matchAndApplyRules(path);
if (result.type === "match") {
let finalPath = this.routeToPath(result.route, result.params);
if (path.indexOf("?") > -1) {
finalPath += "?" + path.split("?")[1];
}
const isPopStateEvent = ev && ev instanceof PopStateEvent;
if (!isPopStateEvent) {
this.setUrlFromPath(finalPath);
}
this.currentRoute = result.route;
this.currentParams = result.params;
} else if (result.type === "nomatch") {
this.currentRoute = null;
this.currentParams = null;
}
const didChange =
this.currentRouteName !== initialName || !shallowEqual(this.currentParams, initialParams);
if (didChange) {
this.env.qweb.forceUpdate();
return true;
}
return false;
}
destToPath(dest: Destination): string {
this.validateDestination(dest);
return dest.path || this.routeToPath(this.routes[dest.to!], dest.params!);
}
get currentRouteName(): string | null {
return this.currentRoute && this.currentRoute.name;
}
//--------------------------------------------------------------------------
// Private helpers
//--------------------------------------------------------------------------
private setUrlFromPath(path: string) {
const separator = this.mode === "hash" ? location.pathname : "";
const url = location.origin + separator + path;
if (url !== window.location.href) {
window.history.pushState({}, path, url);
}
}
private validateDestination(dest: Destination) {
if ((!dest.path && !dest.to) || (dest.path && dest.to)) {
throw new Error(`Invalid destination: ${JSON.stringify(dest)}`);
}
}
private routeToPath(route: Route, params: RouteParams): string {
const prefix = this.mode === "hash" ? "#" : "";
return (
prefix +
route.path.replace(globalParamRegexp, (match, param) => {
const [key] = param.split(".");
return <string>params[key];
})
);
}
private currentPath(): string {
let result = this.mode === "history" ? window.location.pathname : window.location.hash.slice(1);
return result || "/";
}
private match(path: string): MatchResult {
for (let routeId of this.routeIds) {
let route = this.routes[routeId];
let params = this.getRouteParams(route, path);
if (params) {
return {
type: "match",
route: route,
params: params,
};
}
}
return { type: "nomatch" };
}
private async matchAndApplyRules(path: string): Promise<MatchResult> {
const result = this.match(path);
if (result.type === "match") {
return this.applyRules(result);
}
return result;
}
private async applyRules(matchResult: PositiveMatchResult): Promise<MatchResult> {
const route = matchResult.route;
if (route.redirect) {
const path = this.destToPath(route.redirect);
return this.matchAndApplyRules(path);
}
if (route.beforeRouteEnter) {
const result = await route.beforeRouteEnter({
env: this.env,
from: this.currentRoute,
to: route,
});
if (result === false) {
return { type: "cancelled" };
} else if (result !== true) {
// we want to navigate to another destination
const path = this.destToPath(result);
return this.matchAndApplyRules(path);
}
}
return matchResult;
}
private getRouteParams(route: Route, path: string): RouteParams | false {
if (route.path === "*") {
return {};
}
if (path.indexOf("?") > -1) {
path = path.split("?")[0];
}
if (path.startsWith("#")) {
path = path.slice(1);
}
const paramsMatch = path.match(route.extractionRegExp);
if (!paramsMatch) {
return false;
}
const result = {};
route.params.forEach((param, index) => {
const [key, suffix] = param.split(".");
const paramValue = paramsMatch[index + 1];
if (suffix === "number") {
return (result[key] = parseInt(paramValue, 10));
}
return (result[key] = paramValue);
});
return result;
}
}
function findParams(str: string): string[] {
const result: string[] = [];
let m;
do {
m = globalParamRegexp.exec(str);
if (m) {
result.push(m[1]);
}
} while (m);
return result;
}
function escapeRegExp(str: string) {
return str.replace(/[-[\]{}()*+?.,\\^$|#\s]/g, "\\$&");
}
function makeExtractionRegExp(path: string) {
// replace param strings with capture groups so that we can build a regex to match over the path
const extractionString = path
.split(paramRegexp)
.map((part, index) => {
return index % 2 ? "(.*)" : escapeRegExp(part);
})
.join("");
// Example: /home/{{param1}}/{{param2}} => ^\/home\/(.*)\/(.*)$
return new RegExp(`^${extractionString}$`);
}
-173
View File
@@ -1,173 +0,0 @@
import { Component, Env } from "./component/component";
import { Context, useContextWithCB } from "./context";
import { onWillUpdateProps } from "./hooks";
/**
* Owl Store
*
* We have here:
* - a Store class
* - useStore hook
* - useDispatch hook
* - useGetters hook
*
* The Owl store is our answer to the problem of managing complex state across
* components. The main idea is that the store owns some state, allow external
* code to modify it through actions, and for each state changes,
* connected component will be notified, and updated if necessary.
*
* Note that this code is partly inspired by VueX and React/Redux
*/
//------------------------------------------------------------------------------
// Store Definition
//------------------------------------------------------------------------------
export interface EnvWithStore extends Env {
store: Store;
}
export type Action = ({ state, dispatch, env, getters }, ...payload: any) => any;
export type Getter = ({ state: any, getters }, payload?) => any;
interface StoreConfig {
env?: Env;
state?: any;
actions?: { [name: string]: Action };
getters?: { [name: string]: Getter };
}
export class Store extends Context {
actions: any;
env: any;
getters: { [name: string]: (payload?) => any };
updateFunctions: { [key: number]: (() => boolean)[] };
constructor(config: StoreConfig) {
super(config.state);
this.actions = config.actions;
this.env = config.env;
this.getters = {};
this.updateFunctions = [];
if (config.getters) {
const firstArg = {
state: this.state,
getters: this.getters,
};
for (let g in config.getters) {
this.getters[g] = config.getters[g].bind(this, firstArg);
}
}
}
dispatch(action: string, ...payload: any): Promise<void> | void {
if (!this.actions[action]) {
throw new Error(`[Error] action ${action} is undefined`);
}
const result = this.actions[action](
{
dispatch: this.dispatch.bind(this),
env: this.env,
state: this.state,
getters: this.getters,
},
...payload
);
return result;
}
__notifyComponents(): Promise<void> {
this.trigger("before-update");
return super.__notifyComponents();
}
}
interface SelectorOptions {
store?: Store;
isEqual?: (a: any, b: any) => boolean;
onUpdate?: (result: any) => any;
}
const isStrictEqual = (a, b) => a === b;
export function useStore(selector, options: SelectorOptions = {}): any {
const component = Component.current as Component<any, EnvWithStore>;
const componentId = component.__owl__.id;
const store = options.store || (component.env.store as Store);
if (!(store instanceof Store)) {
throw new Error(`No store found when connecting '${component.constructor.name}'`);
}
let result = selector(store.state, component.props);
const hashFn = store.observer.revNumber.bind(store.observer);
let revNumber = hashFn(result);
const isEqual = options.isEqual || isStrictEqual;
if (!store.updateFunctions[componentId]) {
store.updateFunctions[componentId] = [];
}
function selectCompareUpdate(state, props): boolean {
const oldResult = result;
result = selector(state, props);
const newRevNumber = hashFn(result);
if ((newRevNumber > 0 && revNumber !== newRevNumber) || !isEqual(oldResult, result)) {
revNumber = newRevNumber;
return true;
}
return false;
}
if (options.onUpdate) {
store.on("before-update", component, () => {
const newValue = selector(store!.state, component.props!);
options.onUpdate(newValue);
});
}
store.updateFunctions[componentId].push(function (): boolean {
return selectCompareUpdate(store!.state, component.props);
});
useContextWithCB(store, component, function (): Promise<void> | void {
let shouldRender = false;
for (let fn of store.updateFunctions[componentId]) {
shouldRender = fn() || shouldRender;
}
if (shouldRender) {
return component.render();
}
});
onWillUpdateProps((props) => {
selectCompareUpdate(store.state, props);
});
const __destroy = component.__destroy;
component.__destroy = (parent) => {
delete store.updateFunctions[componentId];
if (options.onUpdate) {
store.off("before-update", component);
}
__destroy.call(component, parent);
};
if (typeof result !== "object" || result === null) {
return result;
}
return new Proxy(result, {
get(target, k) {
return result[k];
},
set(target, k, v) {
throw new Error("Store state should only be modified through actions");
},
has(target, k) {
return k in result;
},
});
}
export function useDispatch(store?: Store): Store["dispatch"] {
store = store || (Component.current!.env as EnvWithStore).store;
return store.dispatch.bind(store);
}
export function useGetters(store?: Store): Store["getters"] {
store = store || (Component.current!.env as EnvWithStore).store;
return store.getters;
}
+8 -38
View File
@@ -1,44 +1,14 @@
import { QWeb } from "./qweb/index"; import { globalTemplates } from "./qweb/template_helpers";
import { registerSheet } from "./component/styles";
/** // -----------------------------------------------------------------------------
* Owl Tags // Global templates
* // -----------------------------------------------------------------------------
* We have here a (very) small collection of tag functions:
*
* - xml
*
* The plan is to add a few other tags such as css, globalcss.
*/
/** export function xml(strings: TemplateStringsArray, ...args: any[]) {
* XML tag helper for defining templates. With this, one can simply define const name = `__template__${xml.nextId++}`;
* an inline template with just the template xml:
* ```js
* class A extends Component {
* static template = xml`<div>some template</div>`;
* }
* ```
*/
export function xml(strings, ...args) {
const name = `__template__${QWeb.nextId++}`;
const value = String.raw(strings, ...args); const value = String.raw(strings, ...args);
QWeb.registerTemplate(name, value); globalTemplates[name] = value;
return name; return name;
} }
/** xml.nextId = 1;
* CSS tag helper for defining inline stylesheets. With this, one can simply define
* an inline stylesheet with just the following code:
* ```js
* class A extends Component {
* static style = css`.component-a { color: red; }`;
* }
* ```
*/
export function css(strings, ...args) {
const name = `__sheet__${QWeb.nextId++}`;
const value = String.raw(strings, ...args);
registerSheet(name, value);
return name;
}
-103
View File
@@ -1,103 +0,0 @@
/**
* Owl Utils
*
* We have here a small collection of utility functions:
*
* - whenReady
* - loadJS
* - loadFile
* - escape
* - debounce
*/
import { browser } from "./browser";
export function whenReady(fn?: any) {
return new Promise(function (resolve) {
if (document.readyState !== "loading") {
resolve();
} else {
document.addEventListener("DOMContentLoaded", resolve, false);
}
}).then(fn || function () {});
}
const loadedScripts: { [key: string]: Promise<void> } = {};
export function loadJS(url: string): Promise<void> {
if (url in loadedScripts) {
return loadedScripts[url];
}
const promise: Promise<void> = new Promise(function (resolve, reject) {
const script = document.createElement("script");
script.type = "text/javascript";
script.src = url;
script.onload = function () {
resolve();
};
script.onerror = function () {
reject(`Error loading file '${url}'`);
};
const head = document.head || document.getElementsByTagName("head")[0];
head.appendChild(script);
});
loadedScripts[url] = promise;
return promise;
}
export async function loadFile(url: string): Promise<string> {
const result = await browser.fetch(url);
if (!result.ok) {
throw new Error("Error while fetching xml templates");
}
return await result.text();
}
export function escape(str: string | number | undefined): string {
if (str === undefined) {
return "";
}
if (typeof str === "number") {
return String(str);
}
const p = document.createElement("p");
p.textContent = str;
return p.innerHTML;
}
/**
* Returns a function, that, as long as it continues to be invoked, will not
* be triggered. The function will be called after it stops being called for
* N milliseconds. If `immediate` is passed, trigger the function on the
* leading edge, instead of the trailing.
*
* Inspired by https://davidwalsh.name/javascript-debounce-function
*/
export function debounce(func: Function, wait: number, immediate?: boolean): Function {
let timeout;
return function (this: any) {
const context = this;
const args = arguments;
function later() {
timeout = null;
if (!immediate) {
func.apply(context, args);
}
}
const callNow = immediate && !timeout;
browser.clearTimeout(timeout);
timeout = browser.setTimeout(later, wait);
if (callNow) {
func.apply(context, args);
}
};
}
export function shallowEqual(p1, p2): boolean {
for (let k in p1) {
if (p1[k] !== p2[k]) {
return false;
}
}
return true;
}
-34
View File
@@ -1,34 +0,0 @@
import { VNode, h, addNS } from "./vdom";
const parser = new DOMParser();
export function htmlToVDOM(html: string): VNode[] {
const doc = parser.parseFromString(html, "text/html");
const result: VNode[] = [];
for (let child of doc.body.childNodes) {
result.push(htmlToVNode(child));
}
return result;
}
function htmlToVNode(node: ChildNode): VNode {
if (!(node instanceof Element)) {
if (node instanceof Comment) {
return h("!", node.textContent);
}
return { text: node.textContent! } as VNode;
}
const attrs = {};
for (let attr of node.attributes) {
attrs[attr.name] = attr.textContent;
}
const children: VNode[] = [];
for (let c of node.childNodes) {
children.push(htmlToVNode(c));
}
const vnode = h((node as Element).tagName, { attrs }, children);
if (vnode.sel === "svg") {
addNS(vnode.data, (vnode as any).children, vnode.sel);
}
return vnode;
}
-9
View File
@@ -1,9 +0,0 @@
import { attrsModule, classModule, eventListenersModule, propsModule } from "./modules";
import { init } from "./vdom";
//------------------------------------------------------------------------------
// patch
//------------------------------------------------------------------------------
export { h, VNode } from "./vdom";
export const patch = init([eventListenersModule, attrsModule, propsModule, classModule]);
-247
View File
@@ -1,247 +0,0 @@
import { Module, VNode, VNodeData } from "./vdom";
//------------------------------------------------------------------------------
// module/props.ts
//------------------------------------------------------------------------------
function updateProps(oldVnode: VNode, vnode: VNode): void {
var key: string,
cur: any,
old: any,
elm = vnode.elm,
oldProps = (oldVnode.data as VNodeData).props,
props = (vnode.data as VNodeData).props;
if (!oldProps && !props) return;
if (oldProps === props) return;
oldProps = oldProps || {};
props = props || {};
for (key in oldProps) {
if (!props[key]) {
delete (elm as any)[key];
}
}
for (key in props) {
cur = props[key];
old = oldProps[key];
if (old !== cur && (key !== "value" || (elm as any)[key] !== cur)) {
(elm as any)[key] = cur;
}
}
}
export const propsModule = {
create: updateProps,
update: updateProps,
} as Module;
//------------------------------------------------------------------------------
// module/eventlisteners.ts
//------------------------------------------------------------------------------
function invokeHandler(handler: any, vnode?: VNode, event?: Event): void {
if (typeof handler === "function") {
// call function handler
handler.call(vnode, event, vnode);
} else if (typeof handler === "object") {
// call handler with arguments
if (typeof handler[0] === "function") {
// special case for single argument for performance
if (handler.length === 2) {
handler[0].call(vnode, handler[1], event, vnode);
} else {
var args = handler.slice(1);
args.push(event);
args.push(vnode);
handler[0].apply(vnode, args);
}
} else {
// call multiple handlers
for (let i = 0, iLen = handler.length; i < iLen; i++) {
invokeHandler(handler[i], vnode, event);
}
}
}
}
function handleEvent(event: Event, vnode: VNode) {
var name = event.type,
on = (vnode.data as VNodeData).on;
// call event handler(s) if exists
if (on) {
if (on[name]) {
invokeHandler(on[name], vnode, event);
} else if (on["!" + name]) {
invokeHandler(on["!" + name], vnode, event);
}
}
}
function createListener() {
return function handler(event: Event) {
handleEvent(event, (handler as any).vnode);
};
}
function updateEventListeners(oldVnode: VNode, vnode?: VNode): void {
var oldOn = (oldVnode.data as VNodeData).on,
oldListener = (oldVnode as any).listener,
oldElm: Element = oldVnode.elm as Element,
on = vnode && (vnode.data as VNodeData).on,
elm: Element = (vnode && vnode.elm) as Element,
name: string;
// optimization for reused immutable handlers
if (oldOn === on) {
return;
}
// remove existing listeners which no longer used
if (oldOn && oldListener) {
// if element changed or deleted we remove all existing listeners unconditionally
if (!on) {
for (name in oldOn) {
// remove listener if element was changed or existing listeners removed
const capture = name.charAt(0) === "!";
name = capture ? name.slice(1) : name;
oldElm.removeEventListener(name, oldListener, capture);
}
} else {
for (name in oldOn) {
// remove listener if existing listener removed
if (!on[name]) {
const capture = name.charAt(0) === "!";
name = capture ? name.slice(1) : name;
oldElm.removeEventListener(name, oldListener, capture);
}
}
}
}
// add new listeners which has not already attached
if (on) {
// reuse existing listener or create new
var listener = ((vnode as any).listener = (oldVnode as any).listener || createListener());
// update vnode for listener
listener.vnode = vnode;
// if element changed or added we add all needed listeners unconditionally
if (!oldOn) {
for (name in on) {
// add listener if element was changed or new listeners added
const capture = name.charAt(0) === "!";
name = capture ? name.slice(1) : name;
elm.addEventListener(name, listener, capture);
}
} else {
for (name in on) {
// add listener if new listener added
if (!oldOn[name]) {
const capture = name.charAt(0) === "!";
name = capture ? name.slice(1) : name;
elm.addEventListener(name, listener, capture);
}
}
}
}
}
export const eventListenersModule = {
create: updateEventListeners,
update: updateEventListeners,
destroy: updateEventListeners,
} as Module;
//------------------------------------------------------------------------------
// attributes.ts
//------------------------------------------------------------------------------
const xlinkNS = "http://www.w3.org/1999/xlink";
const xmlNS = "http://www.w3.org/XML/1998/namespace";
const colonChar = 58;
const xChar = 120;
function updateAttrs(oldVnode: VNode, vnode: VNode): void {
var key: string,
elm: Element = vnode.elm as Element,
oldAttrs = (oldVnode.data as VNodeData).attrs,
attrs = (vnode.data as VNodeData).attrs;
if (!oldAttrs && !attrs) return;
if (oldAttrs === attrs) return;
oldAttrs = oldAttrs || {};
attrs = attrs || {};
// update modified attributes, add new attributes
for (key in attrs) {
const cur = attrs[key];
const old = oldAttrs[key];
if (old !== cur) {
if (cur === true) {
elm.setAttribute(key, "");
} else if (cur === false) {
elm.removeAttribute(key);
} else {
if (key.charCodeAt(0) !== xChar) {
elm.setAttribute(key, cur);
} else if (key.charCodeAt(3) === colonChar) {
// Assume xml namespace
elm.setAttributeNS(xmlNS, key, cur);
} else if (key.charCodeAt(5) === colonChar) {
// Assume xlink namespace
elm.setAttributeNS(xlinkNS, key, cur);
} else {
elm.setAttribute(key, cur);
}
}
}
}
// remove removed attributes
// use `in` operator since the previous `for` iteration uses it (.i.e. add even attributes with undefined value)
// the other option is to remove all attributes with value == undefined
for (key in oldAttrs) {
if (!(key in attrs)) {
elm.removeAttribute(key);
}
}
}
export const attrsModule = {
create: updateAttrs,
update: updateAttrs,
} as Module;
//------------------------------------------------------------------------------
// class.ts
//------------------------------------------------------------------------------
function updateClass(oldVnode: VNode, vnode: VNode): void {
var cur: any,
name: string,
elm: Element,
oldClass = (oldVnode.data as VNodeData).class,
klass = (vnode.data as VNodeData).class;
if (!oldClass && !klass) return;
if (oldClass === klass) return;
oldClass = oldClass || {};
klass = klass || {};
elm = vnode.elm as Element;
for (name in oldClass) {
if (name && !klass[name] && !Object.prototype.hasOwnProperty.call(klass, name)) {
// was `true` and now not provided
elm.classList.remove(name);
}
}
for (name in klass) {
cur = klass[name];
if (cur !== oldClass[name]) {
(elm.classList as any)[cur ? "add" : "remove"](name);
}
}
}
export const classModule = { create: updateClass, update: updateClass } as Module;
-616
View File
@@ -1,616 +0,0 @@
/**
* Owl VDOM
*
* This file contains an implementation of a virtual DOM, which is a system that
* can generate in-memory representations of a DOM tree, compare them, and
* eventually change a concrete DOM tree to match its representation, in an
* hopefully efficient way.
*
* Note that this code is a fork of Snabbdom, slightly tweaked/optimized for our
* needs (see https://github.com/snabbdom/snabbdom).
*
* The main exported values are:
* - interface VNode
* - h function (a helper function to generate a vnode)
* - patch function (to apply a vnode to an actual DOM node)
*/
// because those in TypeScript are too restrictive: https://github.com/Microsoft/TSJS-lib-generator/pull/237
declare global {
interface Element {
setAttribute(name: string, value: string | number | boolean): void;
setAttributeNS(
namespaceURI: string,
qualifiedName: string,
value: string | number | boolean
): void;
}
}
type Props = Record<string, any>;
type Attrs = Record<string, string | number | boolean>;
type On = { [N in keyof HTMLElementEventMap]?: (ev: HTMLElementEventMap[N]) => void } & {
[event: string]: EventListener;
};
export interface Module {
pre: PreHook;
create: CreateHook;
update: UpdateHook;
destroy: DestroyHook;
remove: RemoveHook;
post: PostHook;
}
//------------------------------------------------------------------------------
// vnode.ts
//------------------------------------------------------------------------------
type Key = string | number;
export interface VNode {
sel: string | undefined;
data: VNodeData | undefined;
children: Array<VNode | string> | undefined;
elm: Node | undefined;
text: string | undefined;
key: Key | undefined;
}
export interface VNodeData {
props?: Props;
attrs?: Attrs;
on?: On;
hook?: Hooks;
key?: Key;
ns?: string; // for SVGs
[key: string]: any; // for any other 3rd party module
}
function vnode(
sel: string | undefined,
data: any | undefined,
children: Array<VNode | string> | undefined,
text: string | undefined,
elm: Element | Text | undefined
): VNode {
let key = data === undefined ? undefined : data.key;
return { sel, data, children, text, elm, key };
}
//------------------------------------------------------------------------------
// snabbdom.ts
//------------------------------------------------------------------------------
function isUndef(s: any): boolean {
return s === undefined;
}
function isDef(s: any): boolean {
return s !== undefined;
}
type VNodeQueue = Array<VNode>;
const emptyNode = vnode("", {}, [], undefined, undefined);
function sameVnode(vnode1: VNode, vnode2: VNode): boolean {
return vnode1.key === vnode2.key && vnode1.sel === vnode2.sel;
}
function isVnode(vnode: any): vnode is VNode {
return vnode.sel !== undefined;
}
type KeyToIndexMap = { [key: string]: number };
type ArraysOf<T> = { [K in keyof T]: T[K][] };
type ModuleHooks = ArraysOf<Module>;
function createKeyToOldIdx(
children: Array<VNode>,
beginIdx: number,
endIdx: number
): KeyToIndexMap {
let i: number,
map: KeyToIndexMap = {},
key: Key | undefined,
ch;
for (i = beginIdx; i <= endIdx; ++i) {
ch = children[i];
if (ch != null) {
key = ch.key;
if (key !== undefined) map[key] = i;
}
}
return map;
}
const hooks: (keyof Module)[] = ["create", "update", "remove", "destroy", "pre", "post"];
export function init(modules: Array<Partial<Module>>, domApi?: DOMAPI) {
let i: number,
j: number,
cbs = {} as ModuleHooks;
const api: DOMAPI = domApi !== undefined ? domApi : htmlDomApi;
for (i = 0; i < hooks.length; ++i) {
cbs[hooks[i]] = [];
for (j = 0; j < modules.length; ++j) {
const hook = modules[j][hooks[i]];
if (hook !== undefined) {
(cbs[hooks[i]] as Array<any>).push(hook);
}
}
}
function emptyNodeAt(elm: Element) {
const id = elm.id ? "#" + elm.id : "";
const c = elm.className ? "." + elm.className.split(" ").join(".") : "";
return vnode(api.tagName(elm).toLowerCase() + id + c, {}, [], undefined, elm);
}
function createRmCb(childElm: Node, listeners: number) {
return function rmCb() {
if (--listeners === 0) {
const parent = api.parentNode(childElm);
api.removeChild(parent, childElm);
}
};
}
function createElm(vnode: VNode, insertedVnodeQueue: VNodeQueue): Node {
let i: any,
iLen: number,
data = vnode.data;
if (data !== undefined) {
if (isDef((i = data.hook)) && isDef((i = i.init))) {
i(vnode);
data = vnode.data;
}
}
let children = vnode.children,
sel = vnode.sel;
if (sel === "!") {
if (isUndef(vnode.text)) {
vnode.text = "";
}
vnode.elm = api.createComment(vnode.text as string);
} else if (sel !== undefined) {
const elm =
vnode.elm ||
(vnode.elm =
isDef(data) && isDef((i = (data as VNodeData).ns))
? api.createElementNS(i, sel)
: api.createElement(sel));
for (i = 0, iLen = cbs.create.length; i < iLen; ++i) cbs.create[i](emptyNode, vnode);
if (array(children)) {
for (i = 0, iLen = children.length; i < iLen; ++i) {
const ch = children[i];
if (ch != null) {
api.appendChild(elm, createElm(ch as VNode, insertedVnodeQueue));
}
}
} else if (primitive(vnode.text)) {
api.appendChild(elm, api.createTextNode(vnode.text));
}
i = (vnode.data as VNodeData).hook; // Reuse variable
if (isDef(i)) {
if (i.create) i.create(emptyNode, vnode);
if (i.insert) insertedVnodeQueue.push(vnode);
}
} else {
vnode.elm = api.createTextNode(vnode.text as string);
}
return vnode.elm;
}
function addVnodes(
parentElm: Node,
before: Node | null,
vnodes: Array<VNode>,
startIdx: number,
endIdx: number,
insertedVnodeQueue: VNodeQueue
) {
for (; startIdx <= endIdx; ++startIdx) {
const ch = vnodes[startIdx];
if (ch != null) {
api.insertBefore(parentElm, createElm(ch, insertedVnodeQueue), before);
}
}
}
function invokeDestroyHook(vnode: VNode) {
let i: any,
iLen: number,
j: number,
jLen: number,
data = vnode.data;
if (data !== undefined) {
if (isDef((i = data.hook)) && isDef((i = i.destroy))) i(vnode);
for (i = 0, iLen = cbs.destroy.length; i < iLen; ++i) cbs.destroy[i](vnode);
if (vnode.children !== undefined) {
for (j = 0, jLen = vnode.children.length; j < jLen; ++j) {
i = vnode.children[j];
if (i != null && typeof i !== "string") {
invokeDestroyHook(i);
}
}
}
}
}
function removeVnodes(
parentElm: Node,
vnodes: Array<VNode>,
startIdx: number,
endIdx: number
): void {
for (; startIdx <= endIdx; ++startIdx) {
let i: any,
iLen: number,
listeners: number,
rm: () => void,
ch = vnodes[startIdx];
if (ch != null) {
if (isDef(ch.sel)) {
invokeDestroyHook(ch);
listeners = cbs.remove.length + 1;
rm = createRmCb(ch.elm as Node, listeners);
for (i = 0, iLen = cbs.remove.length; i < iLen; ++i) cbs.remove[i](ch, rm);
if (isDef((i = ch.data)) && isDef((i = i.hook)) && isDef((i = i.remove))) {
i(ch, rm);
} else {
rm();
}
} else {
// Text node
api.removeChild(parentElm, ch.elm as Node);
}
}
}
}
function updateChildren(
parentElm: Node,
oldCh: Array<VNode>,
newCh: Array<VNode>,
insertedVnodeQueue: VNodeQueue
) {
let oldStartIdx = 0,
newStartIdx = 0;
let oldEndIdx = oldCh.length - 1;
let oldStartVnode = oldCh[0];
let oldEndVnode = oldCh[oldEndIdx];
let newEndIdx = newCh.length - 1;
let newStartVnode = newCh[0];
let newEndVnode = newCh[newEndIdx];
let oldKeyToIdx: any;
let idxInOld: number;
let elmToMove: VNode;
let before: any;
while (oldStartIdx <= oldEndIdx && newStartIdx <= newEndIdx) {
if (oldStartVnode == null) {
oldStartVnode = oldCh[++oldStartIdx]; // Vnode might have been moved left
} else if (oldEndVnode == null) {
oldEndVnode = oldCh[--oldEndIdx];
} else if (newStartVnode == null) {
newStartVnode = newCh[++newStartIdx];
} else if (newEndVnode == null) {
newEndVnode = newCh[--newEndIdx];
} else if (sameVnode(oldStartVnode, newStartVnode)) {
patchVnode(oldStartVnode, newStartVnode, insertedVnodeQueue);
oldStartVnode = oldCh[++oldStartIdx];
newStartVnode = newCh[++newStartIdx];
} else if (sameVnode(oldEndVnode, newEndVnode)) {
patchVnode(oldEndVnode, newEndVnode, insertedVnodeQueue);
oldEndVnode = oldCh[--oldEndIdx];
newEndVnode = newCh[--newEndIdx];
} else if (sameVnode(oldStartVnode, newEndVnode)) {
// Vnode moved right
patchVnode(oldStartVnode, newEndVnode, insertedVnodeQueue);
api.insertBefore(
parentElm,
oldStartVnode.elm as Node,
api.nextSibling(oldEndVnode.elm as Node)
);
oldStartVnode = oldCh[++oldStartIdx];
newEndVnode = newCh[--newEndIdx];
} else if (sameVnode(oldEndVnode, newStartVnode)) {
// Vnode moved left
patchVnode(oldEndVnode, newStartVnode, insertedVnodeQueue);
api.insertBefore(parentElm, oldEndVnode.elm as Node, oldStartVnode.elm as Node);
oldEndVnode = oldCh[--oldEndIdx];
newStartVnode = newCh[++newStartIdx];
} else {
if (oldKeyToIdx === undefined) {
oldKeyToIdx = createKeyToOldIdx(oldCh, oldStartIdx, oldEndIdx);
}
idxInOld = oldKeyToIdx[newStartVnode.key as string];
if (isUndef(idxInOld)) {
// New element
api.insertBefore(
parentElm,
createElm(newStartVnode, insertedVnodeQueue),
oldStartVnode.elm as Node
);
newStartVnode = newCh[++newStartIdx];
} else {
elmToMove = oldCh[idxInOld];
if (elmToMove.sel !== newStartVnode.sel) {
api.insertBefore(
parentElm,
createElm(newStartVnode, insertedVnodeQueue),
oldStartVnode.elm as Node
);
} else {
patchVnode(elmToMove, newStartVnode, insertedVnodeQueue);
oldCh[idxInOld] = undefined as any;
api.insertBefore(parentElm, elmToMove.elm as Node, oldStartVnode.elm as Node);
}
newStartVnode = newCh[++newStartIdx];
}
}
}
if (oldStartIdx <= oldEndIdx || newStartIdx <= newEndIdx) {
if (oldStartIdx > oldEndIdx) {
before = newCh[newEndIdx + 1] == null ? null : newCh[newEndIdx + 1].elm;
addVnodes(parentElm, before, newCh, newStartIdx, newEndIdx, insertedVnodeQueue);
} else {
removeVnodes(parentElm, oldCh, oldStartIdx, oldEndIdx);
}
}
}
function patchVnode(oldVnode: VNode, vnode: VNode, insertedVnodeQueue: VNodeQueue) {
let i: any, iLen: number, hook: any;
if (isDef((i = vnode.data)) && isDef((hook = i.hook)) && isDef((i = hook.prepatch))) {
i(oldVnode, vnode);
}
const elm = (vnode.elm = oldVnode.elm as Node);
let oldCh = oldVnode.children;
let ch = vnode.children;
if (oldVnode === vnode) return;
if (vnode.data !== undefined) {
for (i = 0, iLen = cbs.update.length; i < iLen; ++i) cbs.update[i](oldVnode, vnode);
i = vnode.data.hook;
if (isDef(i) && isDef((i = i.update))) i(oldVnode, vnode);
}
if (isUndef(vnode.text)) {
if (isDef(oldCh) && isDef(ch)) {
if (oldCh !== ch)
updateChildren(elm, oldCh as Array<VNode>, ch as Array<VNode>, insertedVnodeQueue);
} else if (isDef(ch)) {
if (isDef(oldVnode.text)) api.setTextContent(elm, "");
addVnodes(
elm,
null,
ch as Array<VNode>,
0,
(ch as Array<VNode>).length - 1,
insertedVnodeQueue
);
} else if (isDef(oldCh)) {
removeVnodes(elm, oldCh as Array<VNode>, 0, (oldCh as Array<VNode>).length - 1);
} else if (isDef(oldVnode.text)) {
api.setTextContent(elm, "");
}
} else if (oldVnode.text !== vnode.text) {
if (isDef(oldCh)) {
removeVnodes(elm, oldCh as Array<VNode>, 0, (oldCh as Array<VNode>).length - 1);
}
api.setTextContent(elm, vnode.text as string);
}
if (isDef(hook) && isDef((i = hook.postpatch))) {
i(oldVnode, vnode);
}
}
return function patch(oldVnode: VNode | Element, vnode: VNode): VNode {
let i: number, iLen: number, elm: Node, parent: Node;
const insertedVnodeQueue: VNodeQueue = [];
for (i = 0, iLen = cbs.pre.length; i < iLen; ++i) cbs.pre[i]();
if (!isVnode(oldVnode)) {
oldVnode = emptyNodeAt(oldVnode);
}
if (sameVnode(oldVnode, vnode)) {
patchVnode(oldVnode, vnode, insertedVnodeQueue);
} else {
elm = oldVnode.elm as Node;
parent = api.parentNode(elm);
createElm(vnode, insertedVnodeQueue);
if (parent !== null) {
api.insertBefore(parent, vnode.elm as Node, api.nextSibling(elm));
removeVnodes(parent, [oldVnode], 0, 0);
}
}
for (i = 0, iLen = insertedVnodeQueue.length; i < iLen; ++i) {
(((insertedVnodeQueue[i].data as VNodeData).hook as Hooks).insert as any)(
insertedVnodeQueue[i]
);
}
for (i = 0, iLen = cbs.post.length; i < iLen; ++i) cbs.post[i]();
return vnode;
};
}
//------------------------------------------------------------------------------
// is.ts
//------------------------------------------------------------------------------
const array = Array.isArray;
function primitive(s: any): s is string | number {
return typeof s === "string" || typeof s === "number";
}
//------------------------------------------------------------------------------
// htmldomapi.ts
//------------------------------------------------------------------------------
interface DOMAPI {
createElement: (tagName: any) => HTMLElement;
createElementNS: (namespaceURI: string, qualifiedName: string) => Element;
createTextNode: (text: string) => Text;
createComment: (text: string) => Comment;
insertBefore: (parentNode: Node, newNode: Node, referenceNode: Node | null) => void;
removeChild: (node: Node, child: Node) => void;
appendChild: (node: Node, child: Node) => void;
parentNode: (node: Node) => Node;
nextSibling: (node: Node) => Node;
tagName: (elm: Element) => string;
setTextContent: (node: Node, text: string | null) => void;
}
function createElement(tagName: any): HTMLElement {
return document.createElement(tagName);
}
function createElementNS(namespaceURI: string, qualifiedName: string): Element {
return document.createElementNS(namespaceURI, qualifiedName);
}
function createTextNode(text: string): Text {
return document.createTextNode(text);
}
function createComment(text: string): Comment {
return document.createComment(text);
}
function insertBefore(parentNode: Node, newNode: Node, referenceNode: Node | null): void {
parentNode.insertBefore(newNode, referenceNode);
}
function removeChild(node: Node, child: Node): void {
node.removeChild(child);
}
function appendChild(node: Node, child: Node): void {
node.appendChild(child);
}
function parentNode(node: Node): Node | null {
return node.parentNode;
}
function nextSibling(node: Node): Node | null {
return node.nextSibling;
}
function tagName(elm: Element): string {
return elm.tagName;
}
function setTextContent(node: Node, text: string | null): void {
node.textContent = text;
}
const htmlDomApi = {
createElement,
createElementNS,
createTextNode,
createComment,
insertBefore,
removeChild,
appendChild,
parentNode,
nextSibling,
tagName,
setTextContent,
} as DOMAPI;
//------------------------------------------------------------------------------
// hooks.ts
//------------------------------------------------------------------------------
type PreHook = () => any;
type InitHook = (vNode: VNode) => any;
type CreateHook = (emptyVNode: VNode, vNode: VNode) => any;
type InsertHook = (vNode: VNode) => any;
type PrePatchHook = (oldVNode: VNode, vNode: VNode) => any;
type UpdateHook = (oldVNode: VNode, vNode: VNode) => any;
type PostPatchHook = (oldVNode: VNode, vNode: VNode) => any;
type DestroyHook = (vNode: VNode) => any;
type RemoveHook = (vNode: VNode, removeCallback: () => void) => any;
type PostHook = () => any;
interface Hooks {
pre?: PreHook;
init?: InitHook;
create?: CreateHook;
insert?: InsertHook;
prepatch?: PrePatchHook;
update?: UpdateHook;
postpatch?: PostPatchHook;
destroy?: DestroyHook;
remove?: RemoveHook;
post?: PostHook;
}
//------------------------------------------------------------------------------
// h.ts
//------------------------------------------------------------------------------
type VNodes = Array<VNode>;
type VNodeChildElement = VNode | string | number | undefined | null;
type ArrayOrElement<T> = T | T[];
type VNodeChildren = ArrayOrElement<VNodeChildElement>;
export function addNS(data: any, children: VNodes | undefined, sel: string | undefined): void {
if (sel === "dummy") {
// we do not need to add the namespace on dummy elements, they come from a
// subcomponent, which will handle the namespace itself
return;
}
data.ns = "http://www.w3.org/2000/svg";
if (sel !== "foreignObject" && children !== undefined) {
for (let i = 0, iLen = children.length; i < iLen; ++i) {
const child = children[i];
let childData = child.data;
if (childData !== undefined) {
addNS(childData, (child as VNode).children as VNodes, child.sel);
}
}
}
}
export function h(sel: string): VNode;
export function h(sel: string, data: VNodeData): VNode;
export function h(sel: string, children: VNodeChildren): VNode;
export function h(sel: string, data: VNodeData, children: VNodeChildren): VNode;
export function h(sel: any, b?: any, c?: any): VNode {
var data: VNodeData = {},
children: any,
text: any,
i: number,
iLen: number;
if (c !== undefined) {
data = b;
if (array(c)) {
children = c;
} else if (primitive(c)) {
text = c;
} else if (c && c.sel) {
children = [c];
}
} else if (b !== undefined) {
if (array(b)) {
children = b;
} else if (primitive(b)) {
text = b;
} else if (b && b.sel) {
children = [b];
} else {
data = b;
}
}
if (children !== undefined) {
for (i = 0, iLen = children.length; i < iLen; ++i) {
if (primitive(children[i]))
children[i] = vnode(undefined, undefined, undefined, children[i], undefined);
}
}
return vnode(sel, data, children, text, undefined);
}
-200
View File
@@ -1,200 +0,0 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`animations t-transition combined with component 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"Parent\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
// Component 'Child'
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, undefined);
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Child\`;
let W2 = scope['Child'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
const __patch2 = w2.__patch;
w2.__patch = (t, vn) => {__patch2.call(w2, t, vn); if(!w2.__owl__.transitionInserted){w2.__owl__.transitionInserted = true;utils.transitionInsert(w2.__owl__.vnode, 'chimay');}};
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
let fiber = w2.__prepare(extra.fiber, undefined, () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {let finalize = () => {
w2.destroy();
};
delete w2.__owl__.transitionInserted;
utils.transitionRemove(vn, 'chimay', finalize);}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
exports[`animations t-transition combined with t-component and t-if 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"Parent\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
if (scope['state'].display) {
// Component 'Child'
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, undefined);
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Child\`;
let W2 = scope['Child'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
const __patch2 = w2.__patch;
w2.__patch = (t, vn) => {__patch2.call(w2, t, vn); if(!w2.__owl__.transitionInserted){w2.__owl__.transitionInserted = true;utils.transitionInsert(w2.__owl__.vnode, 'chimay');}};
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
let fiber = w2.__prepare(extra.fiber, undefined, () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {let finalize = () => {
w2.destroy();
};
delete w2.__owl__.transitionInserted;
utils.transitionRemove(vn, 'chimay', finalize);}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
}
return vn1;
}"
`;
exports[`animations t-transition combined with t-component, remove and re-add before transitionend 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__2\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
if (scope['state'].flag) {
// Component 'Child'
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, undefined);
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Child\`;
let W2 = scope['Child'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
const __patch2 = w2.__patch;
w2.__patch = (t, vn) => {__patch2.call(w2, t, vn); if(!w2.__owl__.transitionInserted){w2.__owl__.transitionInserted = true;utils.transitionInsert(w2.__owl__.vnode, 'chimay');}};
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
let fiber = w2.__prepare(extra.fiber, undefined, () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {let finalize = () => {
w2.destroy();
};
delete w2.__owl__.transitionInserted;
utils.transitionRemove(vn, 'chimay', finalize);}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
}
return vn1;
}"
`;
exports[`animations t-transition with no delay/duration 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"test\\"
let utils = this.constructor.utils;
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('span', p1, c1);
p1.hook = {
insert: vn => {
utils.transitionInsert(vn, 'jupiler');
},
remove: (vn, rm) => {
utils.transitionRemove(vn, 'jupiler', rm);
},
};
c1.push({text: \`blue\`});
return vn1;
}"
`;
exports[`animations t-transition, on a simple node (insert) 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"test\\"
let utils = this.constructor.utils;
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('span', p1, c1);
p1.hook = {
insert: vn => {
utils.transitionInsert(vn, 'chimay');
},
remove: (vn, rm) => {
utils.transitionRemove(vn, 'chimay', rm);
},
};
c1.push({text: \`blue\`});
return vn1;
}"
`;
exports[`animations t-transition, on a simple node, not in the DOM 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"test\\"
let utils = this.constructor.utils;
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('span', p1, c1);
p1.hook = {
insert: vn => {
utils.transitionInsert(vn, 'chimay');
},
remove: (vn, rm) => {
utils.transitionRemove(vn, 'chimay', rm);
},
};
c1.push({text: \`blue\`});
return vn1;
}"
`;
@@ -1,5 +0,0 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`various scenarios scenarios with async store updates and some components events 1`] = `"<div><button>Do stuff</button><div><span>Attachment 100</span><span>Name: text.txt</span></div></div>"`;
exports[`various scenarios scenarios with async store updates and some components events 2`] = `"<div><button>Do stuff</button></div>"`;
-452
View File
@@ -1,452 +0,0 @@
import { Component, Env } from "../src/component/component";
import { useRef, useState } from "../src/hooks";
import { QWeb } from "../src/qweb/index";
import { xml } from "../src/tags";
import {
makeDeferred,
makeTestEnv,
makeTestFixture,
nextFrame,
patchNextFrame,
renderToDOM,
unpatchNextFrame,
} from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
// We create before each test:
// - fixture: a div, appended to the DOM, intended to be the target of dom
// manipulations. Note that it is removed after each test.
// - qweb: a new QWeb instance
// - env: a WEnv, necessary to create new components
// - cssEl: a stylesheet injected into the dom
let fixture: HTMLElement;
let qweb: QWeb;
let env: Env;
let cssEl: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
env = makeTestEnv();
Component.env = env;
qweb = new QWeb();
});
afterEach(() => {
fixture.remove();
});
class Widget extends Component<any, any> {}
//------------------------------------------------------------------------------
// Tests
//------------------------------------------------------------------------------
describe("animations", () => {
beforeEach(() => {
cssEl = document.createElement("style");
let css = `
.chimay-enter-active, .chimay-leave-active {
transition-property: opacity;
transition-duration: 0.1s;
}
.chimay-enter, .chimay-leave-to {
opacity: 0;
}
`;
cssEl.textContent = css.trim();
document.head.appendChild(cssEl);
});
afterEach(() => {
document.head.removeChild(cssEl);
unpatchNextFrame();
});
test("t-transition, on a simple node (insert)", async () => {
expect.assertions(5);
qweb.addTemplate("test", `<span t-transition="chimay">blue</span>`);
let def = makeDeferred();
patchNextFrame((cb) => {
expect(node.className).toBe("chimay-enter chimay-enter-active");
cb();
expect(node.className).toBe("chimay-enter-active chimay-enter-to");
def.resolve();
});
let node: HTMLElement = <HTMLElement>renderToDOM(qweb, "test");
fixture.appendChild(node);
expect(node.className).toBe("chimay-enter chimay-enter-active");
await def; // wait for the mocked repaint to be done
node.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(node.className).toBe("");
});
test("t-transition, on a simple node, not in the DOM", async () => {
expect.assertions(5);
qweb.addTemplate("test", `<span t-transition="chimay">blue</span>`);
let def = makeDeferred();
patchNextFrame((cb) => {
expect(node.className).toBe("chimay-enter chimay-enter-active");
cb();
expect(node.className).toBe("chimay-enter-active chimay-enter-to");
def.resolve();
});
let node: HTMLElement = <HTMLElement>renderToDOM(qweb, "test");
expect(node.className).toBe("chimay-enter chimay-enter-active");
await def; // wait for the mocked repaint to be done
node.dispatchEvent(new Event("transitionend"));
// we check here that the css classes have not been removed, since the
// element is not in the dom, we actually do not want to do anything.
expect(node.className).toBe("chimay-enter-active chimay-enter-to");
});
test("t-transition with no delay/duration", async () => {
expect.assertions(4);
qweb.addTemplate("test", `<span t-transition="jupiler">blue</span>`);
let def = makeDeferred();
patchNextFrame((cb) => {
expect(node.className).toBe("jupiler-enter jupiler-enter-active");
cb();
expect(node.className).toBe("");
def.resolve();
});
let node: HTMLElement = <HTMLElement>renderToDOM(qweb, "test");
fixture.appendChild(node);
expect(node.className).toBe("jupiler-enter jupiler-enter-active");
await def;
});
test("t-transition on a conditional node", async () => {
expect.assertions(7);
env.qweb.addTemplate(
"TestWidget",
`<div><span t-if="!state.hide" t-transition="chimay">blue</span></div>`
);
class TestWidget extends Widget {
state = useState({ hide: false });
}
const widget = new TestWidget();
// insert widget into the DOM
let def = makeDeferred();
var spanNode;
patchNextFrame((cb) => {
expect(spanNode.className).toBe("chimay-enter chimay-enter-active");
cb();
expect(spanNode.className).toBe("chimay-enter-active chimay-enter-to");
def.resolve();
});
await widget.mount(fixture);
spanNode = widget.el!.children[0];
expect(spanNode.className).toBe("chimay-enter chimay-enter-active");
await def; // wait for the mocked repaint to be done
spanNode.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(spanNode.className).toBe("");
// remove span from the DOM
def = makeDeferred();
widget.state.hide = true;
patchNextFrame((cb) => {
expect(spanNode.className).toBe("chimay-leave chimay-leave-active");
cb();
expect(spanNode.className).toBe("chimay-leave-active chimay-leave-to");
def.resolve();
});
await def; // wait for the mocked repaint to be done
spanNode.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(spanNode.className).toBe("");
});
test("t-transition combined with t-ref", async () => {
expect.assertions(5);
env.qweb.addTemplate(
"TestWidget",
`<div><span t-ref="span" t-transition="chimay">blue</span></div>`
);
class TestWidget extends Widget {
state = useState({ hide: false });
span = useRef("span");
}
const widget = new TestWidget();
// insert widget into the DOM
let def = makeDeferred();
var spanNode;
patchNextFrame((cb) => {
expect(spanNode.className).toBe("chimay-enter chimay-enter-active");
cb();
expect(spanNode.className).toBe("chimay-enter-active chimay-enter-to");
def.resolve();
});
await widget.mount(fixture);
spanNode = widget.el!.children[0];
expect(widget.span.el).toBe(spanNode);
expect(spanNode.className).toBe("chimay-enter chimay-enter-active");
await def; // wait for the mocked repaint to be done
spanNode.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(spanNode.className).toBe("");
});
test("t-transition combined with component", async () => {
expect.assertions(5);
env.qweb.addTemplate("Parent", `<div><Child t-transition="chimay"/></div>`);
env.qweb.addTemplate("Child", `<span>blue</span>`);
class Child extends Widget {}
class Parent extends Widget {
static components = { Child: Child };
}
const widget = new Parent();
let def = makeDeferred();
var spanNode;
patchNextFrame((cb) => {
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-enter chimay-enter-active">blue</span></div>'
);
cb();
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-enter-active chimay-enter-to">blue</span></div>'
);
def.resolve();
});
await widget.mount(fixture);
spanNode = widget.el!.children[0];
expect(env.qweb.templates.Parent.fn.toString()).toMatchSnapshot();
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-enter chimay-enter-active">blue</span></div>'
);
await def; // wait for the mocked repaint to be done
spanNode.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(fixture.innerHTML).toBe('<div><span class="">blue</span></div>');
});
test("t-transition combined with t-component and t-if", async () => {
expect.assertions(8);
env.qweb.addTemplate(
"Parent",
`<div><t t-if="state.display" t-component="Child" t-transition="chimay"/></div>`
);
env.qweb.addTemplate("Child", `<span>blue</span>`);
class Child extends Widget {}
class Parent extends Widget {
static components = { Child: Child };
state = useState({ display: true });
}
const widget = new Parent();
let def = makeDeferred();
var spanNode;
patchNextFrame((cb) => {
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-enter chimay-enter-active">blue</span></div>'
);
cb();
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-enter-active chimay-enter-to">blue</span></div>'
);
def.resolve();
});
await widget.mount(fixture);
spanNode = widget.el!.children[0];
expect(env.qweb.templates.Parent.fn.toString()).toMatchSnapshot();
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-enter chimay-enter-active">blue</span></div>'
);
await def; // wait for the mocked repaint to be done
spanNode.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(fixture.innerHTML).toBe('<div><span class="">blue</span></div>');
// remove span from the DOM
def = makeDeferred();
widget.state.display = false;
patchNextFrame((cb) => {
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-leave chimay-leave-active" data-owl-key="__3__">blue</span></div>'
);
cb();
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-leave-active chimay-leave-to" data-owl-key="__3__">blue</span></div>'
);
def.resolve();
});
await def; // wait for the mocked repaint to be done
spanNode.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(fixture.innerHTML).toBe("<div></div>");
});
test("t-transition, remove and re-add before transitionend", async () => {
expect.assertions(11);
env.qweb.addTemplates(
`<templates>
<div t-name="Parent">
<button t-on-click="toggle">Toggle</button>
<span t-if="state.flag" t-transition="chimay">blue</span>
</div>
</templates>`
);
class Parent extends Widget {
state = useState({ flag: false });
toggle() {
this.state.flag = !this.state.flag;
}
}
const widget = new Parent();
await widget.mount(fixture);
let button = widget.el!.querySelector("button");
let def = makeDeferred();
let phase = "enter";
patchNextFrame((cb) => {
let spans = fixture.querySelectorAll("span");
expect(spans.length).toBe(1);
expect(spans[0].className).toBe(`chimay-${phase} chimay-${phase}-active`);
cb();
expect(spans[0].className).toBe(`chimay-${phase}-active chimay-${phase}-to`);
def.resolve();
});
// click display the span
button!.click();
await def; // wait for the mocked repaint to be done
widget.el!.querySelector("span")!.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(fixture.innerHTML).toBe('<div><button>Toggle</button><span class="">blue</span></div>');
// click to remove the span, and click again to re-add it before transitionend
def = makeDeferred();
phase = "leave";
button!.click();
await def; // wait for the mocked repaint to be done
def = makeDeferred();
phase = "enter";
button!.click();
await def; // wait for the mocked repaint to be done
widget.el!.querySelector("span")!.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(fixture.innerHTML).toBe('<div><button>Toggle</button><span class="">blue</span></div>');
});
test("t-transition combined with t-component, remove and re-add before transitionend", async () => {
expect.assertions(12);
class Child extends Widget {
static template = xml`<span>blue</span>`;
}
class Parent extends Widget {
static template = xml`
<div t-name="Parent">
<t t-if="state.flag" t-component="Child" t-transition="chimay"/>
</div>`;
static components = { Child };
state = useState({ flag: false });
}
const widget = new Parent();
await widget.mount(fixture);
expect(env.qweb.templates[Parent.template].fn.toString()).toMatchSnapshot();
let def = makeDeferred();
let phase = "enter";
patchNextFrame((cb) => {
let spans = fixture.querySelectorAll("span");
expect(spans.length).toBe(1);
expect(spans[0].className).toBe(`chimay-${phase} chimay-${phase}-active`);
cb();
expect(spans[0].className).toBe(`chimay-${phase}-active chimay-${phase}-to`);
def.resolve();
});
// display the span
widget.state.flag = true;
await def; // wait for the mocked repaint to be done
widget.el!.querySelector("span")!.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(fixture.innerHTML).toBe('<div><span class="">blue</span></div>');
// click to remove the span, and click again to re-add it before transitionend
def = makeDeferred();
phase = "leave";
widget.state.flag = false;
await def; // wait for the mocked repaint to be done
def = makeDeferred();
phase = "enter";
widget.state.flag = true;
await def; // wait for the mocked repaint to be done
widget.el!.querySelector("span")!.dispatchEvent(new Event("transitionend")); // mock end of css transition
expect(fixture.innerHTML).toBe('<div><span class="" data-owl-key="__3__">blue</span></div>');
});
test("transitionInsert is called the correct amount of times", async () => {
const oldTransitionInsert = QWeb.utils.transitionInsert;
QWeb.utils.transitionInsert = jest.fn(oldTransitionInsert);
class Child extends Widget {
static template = xml`<span>blue</span>`;
}
class Parent extends Widget {
static template = xml`
<div t-name="Parent">
<Child t-if="state.flag" t-transition="chimay"/>
</div>`;
static components = { Child };
state = useState({ flag: false });
}
patchNextFrame((cb) => cb());
const widget = new Parent();
await widget.mount(fixture);
widget.state.flag = true;
await nextFrame();
widget.el!.querySelector("span")!.dispatchEvent(new Event("transitionend"));
expect(fixture.innerHTML).toBe('<div><span class="">blue</span></div>');
expect(QWeb.utils.transitionInsert).toBeCalledTimes(1);
widget.state.flag = false;
await nextFrame();
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-leave-active chimay-leave-to" data-owl-key="__3__">blue</span></div>'
);
expect(QWeb.utils.transitionInsert).toBeCalledTimes(1);
widget.state.flag = true;
await nextFrame();
expect(fixture.innerHTML).toBe(
'<div><span class="chimay-enter-active chimay-enter-to" data-owl-key="__3__">blue</span></div>'
);
expect(QWeb.utils.transitionInsert).toBeCalledTimes(2);
widget.state.flag = false;
await nextFrame();
widget.state.flag = true;
await nextFrame();
expect(QWeb.utils.transitionInsert).toBeCalledTimes(3);
widget.el!.querySelector("span")!.dispatchEvent(new Event("transitionend"));
expect(fixture.innerHTML).toBe('<div><span class="" data-owl-key="__3__">blue</span></div>');
QWeb.utils.transitionInsert = oldTransitionInsert;
});
});
+265
View File
@@ -0,0 +1,265 @@
import { createBlock, mount, patch, remove, text } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
describe("adding/patching blocks", () => {
test("simple block", async () => {
const block = createBlock("<div>foo</div>");
const tree = block();
expect(tree.el).toBe(undefined);
mount(tree, fixture);
expect(tree.el).not.toBe(undefined);
expect(fixture.innerHTML).toBe("<div>foo</div>");
});
test("block with dynamic content", async () => {
const block = createBlock("<div><p><block-text-0/></p></div>");
const tree = block(["foo"]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>foo</p></div>");
patch(tree, block(["bar"]));
expect(fixture.innerHTML).toBe("<div><p>bar</p></div>");
patch(tree, block(["foo"]));
expect(fixture.innerHTML).toBe("<div><p>foo</p></div>");
});
test("block with 2 dynamic text nodes", async () => {
const block = createBlock("<div><p><block-text-0/></p><span><block-text-1/></span></div>");
const tree = block(["foo", "bar"]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>foo</p><span>bar</span></div>");
patch(tree, block(["appa", "yip yip"]));
expect(fixture.innerHTML).toBe("<div><p>appa</p><span>yip yip</span></div>");
});
test("block with multiple references", async () => {
const block1 = createBlock(
"<div><block-text-0/><p><block-text-1/><block-text-2/></p><block-text-3/></div>"
);
const tree = block1(["1", "2", "3", "4"]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div>1<p>23</p>4</div>");
});
test("falsy values in block nodes", () => {
const cases = [
[false, "false"],
[undefined, ""],
[null, ""],
[0, "0"],
["", ""],
];
const block = createBlock("<p><block-text-0/></p>");
for (let [value, result] of cases) {
const fixture = makeTestFixture();
mount(block([value as any]), fixture);
expect(fixture.innerHTML).toBe(`<p>${result}</p>`);
}
});
});
describe("sub blocks", () => {
test("block with subblock (only child)", async () => {
const block1 = createBlock("<div><block-child-0/></div>");
const block2 = createBlock("<p>yip yip</p>");
const tree = block1([], [block2()]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>yip yip</p></div>");
});
test("block with subblock (first child with sibling)", async () => {
const block1 = createBlock("<div><block-child-0/><span>something</span></div>");
const block2 = createBlock("<p>yip yip</p>");
const tree = block1([], [block2()]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>yip yip</p><span>something</span></div>");
});
test("block with subblock (last child with sibling)", async () => {
const block1 = createBlock("<div><span>something</span><block-child-0/></div>");
const block2 = createBlock("<p>yip yip</p>");
const tree = block1([], [block2()]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><span>something</span><p>yip yip</p></div>");
});
test("block with 2 subblocks", async () => {
const block1 = createBlock("<div><block-child-0/><block-child-1/></div>");
const block2 = createBlock("<p>yip yip</p>");
const tree = block1([], [block2(), text("appa")]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>yip yip</p>appa</div>");
});
test("block with subblock with siblings", async () => {
const block1 = createBlock("<div><p>1</p><block-child-0/><p>2</p></div>");
const block2 = createBlock("<p>yip yip</p>");
const tree = block1([], [block2()]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>1</p><p>yip yip</p><p>2</p></div>");
});
test("block with text, subblock and siblings", async () => {
let block1 = createBlock(`<div><p>before<block-child-0/>after</p><block-child-1/></div>`);
let tree = block1([], [text("water"), text("fire")]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>beforewaterafter</p>fire</div>");
});
test("block with conditional child", async () => {
const block1 = createBlock("<div><p><block-child-0/></p></div>");
const block2 = createBlock("<span>foo</span>");
const tree = block1();
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p></p></div>");
patch(tree, block1([], [block2()]));
expect(fixture.innerHTML).toBe("<div><p><span>foo</span></p></div>");
patch(tree, block1());
expect(fixture.innerHTML).toBe("<div><p></p></div>");
});
test("block with subblock with dynamic content", async () => {
const block1 = createBlock("<div><block-child-0/></div>");
const block2 = createBlock("<p><block-text-0/></p>");
const tree = block1([], [block2(["yip yip"])]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>yip yip</p></div>");
patch(tree, block1([], [block2(["foo"])]));
expect(fixture.innerHTML).toBe("<div><p>foo</p></div>");
});
test("block with dynamic content and subblock", async () => {
const block1 = createBlock("<div><block-child-0/><p><block-text-0/></p></div>");
const block2 = createBlock("<p>sub block</p>");
const tree = block1(["yip yip"], [block2()]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>sub block</p><p>yip yip</p></div>");
patch(tree, block1(["foo"], [block2()]));
expect(fixture.innerHTML).toBe("<div><p>sub block</p><p>foo</p></div>");
});
});
describe("remove elem blocks", () => {
test("elem block can be removed", async () => {
const block = createBlock("<div>foo</div>");
const tree = block();
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div>foo</div>");
remove(tree);
expect(fixture.innerHTML).toBe("");
expect(fixture.childNodes.length).toBe(0);
});
});
describe("misc", () => {
test("constructed block as correct number of refs", () => {
const block = createBlock("<p><p><block-text-0/></p><block-text-1/></p>");
const tree = block(["a", "b"]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p><p>a</p>b</p>");
expect((tree as any).refs.length).toBe(2);
});
test("block vnode can be used as text", () => {
const block = createBlock("<p>a</p>");
mount(text(block() as any), fixture);
expect(fixture.textContent).toBe("<p>a</p>");
});
test("block vnode can be used to represent a <tr>", () => {
const block = createBlock("<tr><td>tomato</td></tr>");
const tree = block();
const fixture = document.createElement("table");
mount(tree, fixture);
expect(fixture.outerHTML).toBe("<table><tr><td>tomato</td></tr></table>");
});
test("block vnode with <tr> can be used as text ", () => {
const block = createBlock("<tr><td>tomato</td></tr>");
mount(text(block() as any), fixture);
expect(fixture.textContent).toBe("<tr><td>tomato</td></tr>");
});
test("call toString for function/objects if used as inline text in block", () => {
const block = createBlock("<p><block-text-0/><block-text-1/></p>");
const f = () => 3;
const g = () => 4;
g.toString = () => "tostring";
mount(block([f, g]), fixture);
expect(fixture.innerHTML).toBe("<p>() =&gt; 3tostring</p>");
});
// test.skip("reusing a block skips patching process", async () => {
// const block = createBlock('<div><block-text-0/></div>');
// const foo = block(["foo"]);
// const bar = block(["bar"]);
// let fooCounter = 0;
// let barCounter = 0;
// let fooValue = "foo";
// let barValue = "bar";
// Object.defineProperty(foo.data, 0, {
// get() {
// fooCounter++;
// return fooValue;
// },
// });
// Object.defineProperty(bar.data, 0, {
// get() {
// barCounter++;
// return barValue;
// },
// set(val) {
// barValue = val;
// },
// });
// const bdom = multi([foo, bar]);
// mount(bdom, fixture);
// expect(fooCounter).toBe(1);
// expect(barCounter).toBe(1);
// expect(fixture.innerHTML).toBe("<div>foo</div><div>bar</div>");
// patch(bdom, multi([foo, block(["otherbar"])]));
// expect(fixture.innerHTML).toBe("foootherbar");
// expect(fooCounter).toBe(1);
// expect(barCounter).toBe(2);
// });
});
+123
View File
@@ -0,0 +1,123 @@
import { mount, patch, createBlock } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
test("simple attribute", async () => {
const block = createBlock('<div block-attribute-0="hello"></div>');
const tree = block(["world"]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe(`<div hello="world"></div>`);
patch(tree, block(["owl"]));
expect(fixture.innerHTML).toBe(`<div hello="owl"></div>`);
});
test("dynamic attribute (pair)", async () => {
const block = createBlock('<div block-attributes="0"></div>');
const tree = block([["hello", "world"]]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe(`<div hello="world"></div>`);
patch(tree, block([["ola", "mundo"]]));
expect(fixture.innerHTML).toBe(`<div ola="mundo"></div>`);
});
test("dynamic attribute (object)", async () => {
const block = createBlock('<div block-attributes="0"></div>');
const tree = block([{ hello: "world" }]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe(`<div hello="world"></div>`);
patch(tree, block([{ ola: "mundo" }]));
expect(fixture.innerHTML).toBe(`<div ola="mundo"></div>`);
});
test("class attribute", async () => {
const block = createBlock('<div block-attribute-0="class"></div>');
const tree = block(["fire"]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe(`<div class="fire"></div>`);
patch(tree, block(["water"]));
expect(fixture.innerHTML).toBe(`<div class="water"></div>`);
patch(tree, block([""]));
expect(fixture.innerHTML).toBe(`<div class=""></div>`);
patch(tree, block([0]));
expect(fixture.innerHTML).toBe(`<div class="0"></div>`);
});
test("class attribute with undefined value", async () => {
const block = createBlock('<div block-attribute-0="class"></div>');
const tree = block([undefined]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe(`<div></div>`);
});
test("class attribute (with a preexisting value", async () => {
const block = createBlock('<div class="tomato" block-attribute-0="class"></div>');
const tree = block(["potato"]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe(`<div class="tomato potato"></div>`);
patch(tree, block(["squash"]));
expect(fixture.innerHTML).toBe(`<div class="tomato squash"></div>`);
patch(tree, block([""]));
expect(fixture.innerHTML).toBe(`<div class="tomato"></div>`);
});
describe("properties", () => {
test("input with value attribute", () => {
// render input with initial value
const block = createBlock(`<input block-attribute-0="value"/>`);
const tree = block(["zucchini"]);
mount(tree, fixture);
// const bnode1 = renderToBdom(template, { v: "zucchini" });
// const fixture = makeTestFixture();
// mount(bnode1, fixture);
const input = fixture.querySelector("input")!;
expect(input.value).toBe("zucchini");
// change value manually in input, to simulate user input
input.value = "tomato";
expect(input.value).toBe("tomato");
// rerender with a different value, and patch actual dom, to check that
// input value was properly reset by owl
patch(tree, block(["potato"]));
expect(input.value).toBe("potato");
});
test("input type=checkbox with checked attribute", () => {
// render input with initial value
const block = createBlock(`<input type="checkbox" block-attribute-0="checked"/>`);
const tree = block([true]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe(`<input type="checkbox">`);
const input = fixture.querySelector("input")!;
expect(input.checked).toBe(true);
});
});
+108
View File
@@ -0,0 +1,108 @@
import { mount, createBlock, multi, config, patch } from "../../src/blockdom";
// import { defaultHandler, setupMainHandler } from "../../src/bdom/block";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
let initialHandler = config.mainEventHandler;
beforeEach(() => {
fixture = makeTestFixture();
config.mainEventHandler = initialHandler;
});
afterEach(() => {
fixture.remove();
});
test("simple event handling, with function", async () => {
const block = createBlock('<div block-handler-0="click"></div>');
let n = 0;
const tree = block([() => n++]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div></div>");
expect(fixture.firstChild).toBeInstanceOf(HTMLDivElement);
expect(n).toBe(0);
(fixture.firstChild as HTMLDivElement).click();
expect(n).toBe(1);
});
test("simple event handling, with function and argument", async () => {
const block = createBlock('<div block-handler-0="click"></div>');
let n = 0;
const onClick = (arg: number) => {
n += arg;
};
const tree = block([[onClick, 3]]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div></div>");
expect(fixture.firstChild).toBeInstanceOf(HTMLDivElement);
expect(n).toBe(0);
(fixture.firstChild as HTMLDivElement).click();
expect(n).toBe(3);
patch(tree, block([[onClick, 5]]));
(fixture.firstChild as HTMLDivElement).click();
expect(n).toBe(8);
});
test("simple event handling ", async () => {
config.mainEventHandler = (data, ev) => {
if (typeof data === "function") {
data();
} else {
const [owner, method] = data;
owner[method]();
}
};
const block = createBlock('<div block-handler-0="click"></div>');
let n = 0;
const obj = { f: () => n++ };
const tree = block([[obj, "f"]]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div></div>");
expect(fixture.firstChild).toBeInstanceOf(HTMLDivElement);
expect(n).toBe(0);
(fixture.firstChild as HTMLDivElement).click();
expect(n).toBe(1);
});
test("can bind two handlers on same node", async () => {
const block = createBlock('<div block-handler-0="click" block-handler-1="dblclick"></div>');
let steps: string[] = [];
let handleClick = () => steps.push("click");
let handleDblClick = () => steps.push("dblclick");
const tree = block([handleClick, handleDblClick]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div></div>");
(fixture.firstChild as HTMLDivElement).click();
(fixture.firstChild as HTMLDivElement).dispatchEvent(new Event("dblclick", { bubbles: true }));
expect(steps).toEqual(["click", "dblclick"]);
});
test("two same block nodes with different handlers", async () => {
const block = createBlock('<div block-handler-0="click"></div>');
let steps: string[] = [];
let handler1 = () => steps.push("1");
let handler2 = () => steps.push("2");
const tree = multi([block([handler1]), block([handler2])]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div></div><div></div>");
(fixture.firstChild as HTMLDivElement).click();
(fixture.firstChild!.nextSibling as HTMLDivElement).click();
expect(steps).toEqual(["1", "2"]);
});
+57
View File
@@ -0,0 +1,57 @@
import { createBlock, mount, patch, remove } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
test("simple callback ref", async () => {
const block = createBlock('<div><span block-ref="0">hey</span></div>');
let arg: any = undefined;
let n = 0;
const refFn = (_arg: any) => {
n++;
arg = _arg;
};
const tree = block([refFn]);
expect(arg).toBeUndefined();
expect(n).toBe(0);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><span>hey</span></div>");
expect(n).toBe(1);
expect(arg).toBeInstanceOf(HTMLSpanElement);
expect(arg!.innerHTML).toBe("hey");
patch(tree, block([refFn]));
expect(n).toBe(1);
remove(tree);
expect(fixture.innerHTML).toBe("");
expect(arg).toBeNull();
expect(n).toBe(2);
});
test("is in dom when callback is called", async () => {
expect.assertions(1);
const block = createBlock('<div><span block-ref="0">hey</span></div>');
const refFn = (span: any) => {
expect(document.body.contains(span)).toBeTruthy();
};
const tree = block([refFn]);
mount(tree, fixture);
});
+11
View File
@@ -0,0 +1,11 @@
let lastFixture: any = null;
export function makeTestFixture() {
let fixture = document.createElement("div");
document.body.appendChild(fixture);
if (lastFixture) {
lastFixture.remove();
}
lastFixture = fixture;
return fixture;
}
+48
View File
@@ -0,0 +1,48 @@
import { html, mount, patch, text } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
//------------------------------------------------------------------------------
// Tests
//------------------------------------------------------------------------------
describe("html block", () => {
test("can be mounted and patched", async () => {
const tree = html("<span>1</span><span>2</span>");
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<span>1</span><span>2</span>");
patch(tree, html("<div>coucou</div>"));
expect(fixture.innerHTML).toBe("<div>coucou</div>");
});
test("html vnode can be used as text", () => {
mount(text(html("<p>a</p>") as any), fixture);
expect(fixture.textContent).toBe("<p>a</p>");
});
test("html vnode can represent <tr>", () => {
const fixture = document.createElement("table");
// const block = createBlock('<table><block-child-0/></table>');
// const tree = block([], [html(`<tr><td>tomato</td></tr>`)]);
const tree = html(`<tr><td>tomato</td></tr>`);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<tr><td>tomato</td></tr>");
patch(tree, html(`<tr><td>potato</td></tr>`));
expect(fixture.innerHTML).toBe("<tr><td>potato</td></tr>");
});
});
+458
View File
@@ -0,0 +1,458 @@
import { list, mount, multi, patch, text, createBlock, VNode, withKey } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
function kText(str: string, key: any): VNode {
return withKey(text(str), key);
}
function n(n: number) {
return kText(String(n), n);
}
const span = createBlock("<span><block-text-0/></span>");
const p = createBlock("<p><block-text-0/></p>");
function kSpan(str: string, key: any): VNode {
return withKey(span([str]), key);
}
function kPair(n: number): VNode {
const bnodes = [p([String(n)]), p([String(n)])];
return withKey(multi(bnodes), n);
}
describe("list node: misc", () => {
test("list node", async () => {
const bnodes = [1, 2, 3].map((key) => kText(`text${key}`, key));
const tree = list(bnodes);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("text1text2text3");
});
test("list vnode can be used as text", () => {
mount(text(list([text("a"), text("b")]) as any), fixture);
expect(fixture.innerHTML).toBe("ab");
});
test("a list block can be removed and leaves nothing", async () => {
const bnodes = [
{ id: 1, name: "sheep" },
{ id: 2, name: "cow" },
].map((elem) => kText(elem.name, elem.id));
const tree = list(bnodes);
expect(fixture.childNodes.length).toBe(0);
mount(tree, fixture);
expect(fixture.childNodes.length).toBe(3);
expect(fixture.innerHTML).toBe("sheepcow");
tree.remove();
expect(fixture.innerHTML).toBe("");
expect(fixture.childNodes.length).toBe(0);
});
test("patching a list block inside an elem block", async () => {
const block = createBlock("<div><block-child-0/></div>");
const tree = block();
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div></div>");
patch(tree, block([], [list([1, 2, 3].map(n))]));
expect(fixture.innerHTML).toBe("<div>123</div>");
patch(tree, block([], [list([])]));
expect(fixture.innerHTML).toBe("<div></div>");
patch(tree, block([], [list([1, 2, 3].map(n))]));
expect(fixture.innerHTML).toBe("<div>123</div>");
});
test("list of lists", async () => {
const tree = list([
withKey(list([kText("a1", "1"), kText("a2", "2")]), "a"),
withKey(list([kText("b1", "1"), kText("b2", "2")]), "b"),
]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("a1a2b1b2");
patch(
tree,
list([
withKey(list([kText("b1", "1"), kText("b2", "2")]), "b"),
withKey(list([kText("a1", "1"), kText("a2", "2")]), "a"),
])
);
expect(fixture.innerHTML).toBe("b1b2a1a2");
patch(
tree,
list([
withKey(list([kText("a2", "2"), kText("a1", "1")]), "a"),
withKey(list([kText("b2", "2"), kText("b1", "1")]), "b"),
])
);
expect(fixture.innerHTML).toBe("a2a1b2b1");
});
});
describe("adding/removing elements", () => {
test("removing elements", () => {
const tree = list([kText("a", "a")]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("a");
patch(tree, list([]));
expect(fixture.innerHTML).toBe("");
});
test("removing 1 elements from 2", () => {
const tree = list([kText("a", "a"), kText("b", "b")]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("ab");
patch(tree, list([kText("a", "a")]));
expect(fixture.innerHTML).toBe("a");
});
test("removing elements", () => {
const tree = list([kSpan("a", "a")]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<span>a</span>");
patch(tree, list([]));
expect(fixture.innerHTML).toBe("");
});
test("removing elements, variation", () => {
const f = (i: number) => {
const b = multi([span([`a${i}`]), span([`b${i}`])]);
b.key = i;
return b;
};
const tree = list([f(1), f(2)]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<span>a1</span><span>b1</span><span>a2</span><span>b2</span>");
patch(tree, list([]));
expect(fixture.innerHTML).toBe("");
});
test("adding one element at the end", () => {
const tree = list([n(1), n(2)]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("12");
patch(tree, list([n(1), n(2), n(3)]));
expect(fixture.innerHTML).toBe("123");
});
test("adding one element at the end", () => {
const tree = list([n(1)]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("1");
patch(tree, list([n(1), n(2), n(3)]));
expect(fixture.innerHTML).toBe("123");
});
test("prepend elements: 4,5 => 1,2,3,4,5", () => {
const tree = list([n(4), n(5)]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("45");
patch(tree, list([n(1), n(2), n(3), n(4), n(5)]));
expect(fixture.innerHTML).toBe("12345");
});
test("prepend elements: 4,5 => 1,2,3,4,5 (with multi)", () => {
const tree = list([kPair(4), kPair(5)]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p>4</p><p>4</p><p>5</p><p>5</p>");
patch(tree, list([1, 2, 3, 4, 5].map(kPair)));
expect(fixture.innerHTML).toBe(
"<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p><p>4</p><p>4</p><p>5</p><p>5</p>"
);
});
test("add element in middle: 1,2,4,5 => 1,2,3,4,5", () => {
const tree = list([1, 2, 4, 5].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("1245");
patch(tree, list([1, 2, 3, 4, 5].map(n)));
expect(fixture.innerHTML).toBe("12345");
});
test("add element in middle: 1,2,4,5 => 1,2,3,4,5 (multi)", () => {
const tree = list([1, 2, 4, 5].map(kPair));
mount(tree, fixture);
expect(fixture.innerHTML).toBe(
"<p>1</p><p>1</p><p>2</p><p>2</p><p>4</p><p>4</p><p>5</p><p>5</p>"
);
patch(tree, list([1, 2, 3, 4, 5].map(kPair)));
expect(fixture.innerHTML).toBe(
"<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p><p>4</p><p>4</p><p>5</p><p>5</p>"
);
});
test("add element at beginning and end: 2,3,4 => 1,2,3,4,5", () => {
const tree = list([2, 3, 4].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("234");
patch(tree, list([1, 2, 3, 4, 5].map(n)));
expect(fixture.innerHTML).toBe("12345");
});
test("add element at beginning and end: 2,3,4 => 1,2,3,4,5 (multi)", () => {
const tree = list([2, 3, 4].map(kPair));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p>2</p><p>2</p><p>3</p><p>3</p><p>4</p><p>4</p>");
patch(tree, list([1, 2, 3, 4, 5].map(kPair)));
expect(fixture.innerHTML).toBe(
"<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p><p>4</p><p>4</p><p>5</p><p>5</p>"
);
});
test("adds children: [] => [1,2,3]", () => {
const tree = list([].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("");
patch(tree, list([1, 2, 3].map(n)));
expect(fixture.innerHTML).toBe("123");
});
test("adds children: [] => [1,2,3] (multi)", () => {
const tree = list([].map(kPair));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("");
patch(tree, list([1, 2, 3].map(kPair)));
expect(fixture.innerHTML).toBe("<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p>");
});
test("adds children: [] => [1,2,3] (inside elem)", () => {
const block = createBlock("<p><block-child-0/></p>");
const tree = block([], []);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p></p>");
patch(tree, block([], [list([1, 2, 3].map(n))]));
expect(fixture.innerHTML).toBe("<p>123</p>");
});
test("adds children: [] => [1,2,3] (inside elem, multi)", () => {
const block = createBlock("<p><block-child-0/></p>");
const tree = block([], []);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p></p>");
patch(tree, block([], [list([1, 2, 3].map(kPair))]));
expect(fixture.innerHTML).toBe("<p><p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p></p>");
});
test("remove children: [1,2,3] => []", () => {
const tree = list([1, 2, 3].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("123");
patch(tree, list([].map(n)));
expect(fixture.innerHTML).toBe("");
});
test("remove children: [1,2,3] => [] (multi)", () => {
const tree = list([1, 2, 3].map(kPair));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p>");
patch(tree, list([].map(kPair)));
expect(fixture.innerHTML).toBe("");
});
test("remove children: [1,2,3] => [] (inside elem)", () => {
const block = createBlock("<p><block-child-0/></p>");
const tree = block([], [list([1, 2, 3].map(n))]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p>123</p>");
patch(tree, block([], [list([])]));
expect(fixture.innerHTML).toBe("<p></p>");
});
test("remove children from the beginning: [1,2,3,4,5] => [3,4,5]", () => {
const tree = list([1, 2, 3, 4, 5].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("12345");
patch(tree, list([3, 4, 5].map(n)));
expect(fixture.innerHTML).toBe("345");
});
test("remove children from the beginning: [1,2,3,4,5] => [3,4,5] (multi)", () => {
const tree = list([1, 2, 3, 4, 5].map(kPair));
mount(tree, fixture);
expect(fixture.innerHTML).toBe(
"<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p><p>4</p><p>4</p><p>5</p><p>5</p>"
);
patch(tree, list([3, 4, 5].map(kPair)));
expect(fixture.innerHTML).toBe("<p>3</p><p>3</p><p>4</p><p>4</p><p>5</p><p>5</p>");
});
test("remove children from the end: [1,2,3,4,5] => [1,2,3]", () => {
const tree = list([1, 2, 3, 4, 5].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("12345");
patch(tree, list([1, 2, 3].map(n)));
expect(fixture.innerHTML).toBe("123");
});
test("remove children from the middle: [1,2,3,4,5] => [1,2,4,5]", () => {
const tree = list([1, 2, 3, 4, 5].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("12345");
patch(tree, list([1, 2, 4, 5].map(n)));
expect(fixture.innerHTML).toBe("1245");
});
});
describe("element reordering", () => {
test("move element forward: [1,2,3,4] => [2,3,1,4]", () => {
const tree = list([1, 2, 3, 4].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("1234");
patch(tree, list([2, 3, 1, 4].map(n)));
expect(fixture.innerHTML).toBe("2314");
});
test("move element forward: [1,2,3,4] => [2,3,1,4] (multi)", () => {
const tree = list([1, 2, 3, 4].map(kPair));
mount(tree, fixture);
expect(fixture.innerHTML).toBe(
"<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p><p>4</p><p>4</p>"
);
patch(tree, list([2, 3, 1, 4].map(kPair)));
expect(fixture.innerHTML).toBe(
"<p>2</p><p>2</p><p>3</p><p>3</p><p>1</p><p>1</p><p>4</p><p>4</p>"
);
});
test("move element to end: [1,2,3] => [2,3,1]", () => {
const tree = list([1, 2, 3].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("123");
patch(tree, list([2, 3, 1].map(n)));
expect(fixture.innerHTML).toBe("231");
});
test("move element to end: [1,2,3] => [2,3,1] (multi)", () => {
const tree = list([1, 2, 3].map(kPair));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p>");
patch(tree, list([2, 3, 1].map(kPair)));
expect(fixture.innerHTML).toBe("<p>2</p><p>2</p><p>3</p><p>3</p><p>1</p><p>1</p>");
});
test("move element backward: [1,2,3,4] => [1,4,2,3]", () => {
const tree = list([1, 2, 3, 4].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("1234");
patch(tree, list([1, 4, 2, 3].map(n)));
expect(fixture.innerHTML).toBe("1423");
});
test("swaps first and last: [1,2,3,4] => [4,3,2,1]", () => {
const tree = list([1, 2, 3, 4].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("1234");
patch(tree, list([4, 3, 2, 1].map(n)));
expect(fixture.innerHTML).toBe("4321");
});
});
describe("miscellaneous operations", () => {
test("move to left and replace: [1,2,3,4,5] => [4,1,2,3,6]", () => {
const tree = list([1, 2, 3, 4, 5].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("12345");
patch(tree, list([4, 1, 2, 3, 6].map(n)));
expect(fixture.innerHTML).toBe("41236");
});
test("move to left and replace: [1,2,3,4,5] => [4,1,2,3,6] (multi)", () => {
const tree = list([1, 2, 3, 4, 5].map(kPair));
mount(tree, fixture);
expect(fixture.innerHTML).toBe(
"<p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p><p>4</p><p>4</p><p>5</p><p>5</p>"
);
patch(tree, list([4, 1, 2, 3, 6].map(kPair)));
expect(fixture.innerHTML).toBe(
"<p>4</p><p>4</p><p>1</p><p>1</p><p>2</p><p>2</p><p>3</p><p>3</p><p>6</p><p>6</p>"
);
});
test("move to left and leave hole: [1,4,5] => [4,6]", () => {
const tree = list([1, 4, 5].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("145");
patch(tree, list([4, 6].map(n)));
expect(fixture.innerHTML).toBe("46");
});
test("[2,4,5] => [4,5,3]", () => {
const tree = list([2, 4, 5].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("245");
patch(tree, list([4, 5, 3].map(n)));
expect(fixture.innerHTML).toBe("453");
});
test("reverse elements [1,2,3,4,5,6,7,8] => [8,7,6,5,4,3,2,1]", () => {
const tree = list([1, 2, 3, 4, 5, 6, 7, 8].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("12345678");
patch(tree, list([8, 7, 6, 5, 4, 3, 2, 1].map(n)));
expect(fixture.innerHTML).toBe("87654321");
});
test("some permutation [0,1,2,3,4,5] => [4,3,2,1,5,0]", () => {
const tree = list([0, 1, 2, 3, 4, 5].map(n));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("012345");
patch(tree, list([4, 3, 2, 1, 5, 0].map(n)));
expect(fixture.innerHTML).toBe("432150");
});
});
+79
View File
@@ -0,0 +1,79 @@
import { mount, multi, patch, text, createBlock } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
describe("multi blocks", () => {
test("multiblock with 2 text blocks", async () => {
const tree = multi([text("foo"), text("bar")]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("foobar");
});
test("a multiblock can be removed and leaves no extra text nodes", async () => {
const block1 = createBlock("<div>foo</div>");
const block2 = createBlock("<span>bar</span>");
const tree = multi([block1(), block2()]);
expect(fixture.childNodes.length).toBe(0);
mount(tree, fixture);
expect(fixture.childNodes.length).toBe(2);
tree.remove();
expect(fixture.childNodes.length).toBe(0);
});
test("multiblock with an empty children", async () => {
const block = createBlock("<div>foo</div>");
const tree = multi([block(), undefined]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div>foo</div>");
});
test("multi block in a regular block", async () => {
const block1 = createBlock("<div><block-child-0/></div>");
const block2 = createBlock("<span>yip yip</span>");
const tree = block1([], [multi([block2()])]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><span>yip yip</span></div>");
});
test("patching a multiblock ", async () => {
const tree = multi([text("foo"), text("bar")]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("foobar");
patch(tree, multi([text("blip"), text("bar")]));
expect(fixture.innerHTML).toBe("blipbar");
});
test("simple multi with multiple roots", async () => {
const block1 = createBlock("<div>foo</div>");
const block2 = createBlock("<span>bar</span>");
const tree = multi([block1(), block2()]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div>foo</div><span>bar</span>");
});
test("multi vnode can be used as text", () => {
mount(text(multi([text("a"), text("b")]) as any), fixture);
expect(fixture.innerHTML).toBe("ab");
});
});
+84
View File
@@ -0,0 +1,84 @@
import { createBlock, mount, multi, patch } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
describe("before remove is called", () => {
test("simple removal", async () => {
const block1 = createBlock("<div><block-child-0/></div>");
const block2 = createBlock("<p>coucou</p>");
const child = block2();
const tree = block1([], [child]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>coucou</p></div>");
let n = 1;
child.beforeRemove = () => n++;
patch(tree, block1([], []), true);
expect(fixture.innerHTML).toBe("<div></div>");
expect(n).toBe(2);
});
test("removal, variation with grandchild", async () => {
const block1 = createBlock("<p><block-child-0/></p>");
const block2 = createBlock("<span>coucou</span>");
const child = block2();
const tree = block1([], [block1([], [child])]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<p><p><span>coucou</span></p></p>");
let n = 1;
child.beforeRemove = () => n++;
patch(tree, block1([], []), true);
expect(fixture.innerHTML).toBe("<p></p>");
expect(n).toBe(2);
});
test("remove a child of a multi", async () => {
const block1 = createBlock("<div><block-child-0/></div>");
const block2 = createBlock("<p>coucou</p>");
const child1 = block2();
const child2 = block2();
const tree = block1([], [multi([child1, child2])]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>coucou</p><p>coucou</p></div>");
let n = 1;
child1.beforeRemove = () => n++;
patch(tree, block1([], [multi([])]), true);
expect(fixture.innerHTML).toBe("<div></div>");
expect(n).toBe(2);
});
test("remove a multi", async () => {
const block1 = createBlock("<div><block-child-0/></div>");
const block2 = createBlock("<p>coucou</p>");
const child1 = block2();
const child2 = block2();
const tree = block1([], [multi([child1, child2])]);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("<div><p>coucou</p><p>coucou</p></div>");
let n = 1;
child1.beforeRemove = () => n++;
patch(tree, block1([], []), true);
expect(fixture.innerHTML).toBe("<div></div>");
expect(n).toBe(2);
});
});
+69
View File
@@ -0,0 +1,69 @@
import { mount, patch, remove, text } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
describe("adding/patching text", () => {
test("simple text node", async () => {
const tree = text("foo");
expect(tree.el).toBe(undefined);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("foo");
expect(tree.el).not.toBe(undefined);
});
test("patching a simple text node", async () => {
const tree = text("foo");
mount(tree, fixture);
expect(fixture.innerHTML).toBe("foo");
patch(tree, text("bar"));
expect(fixture.innerHTML).toBe("bar");
});
test("falsy values in text nodes", () => {
const cases = [
[false, "false"],
[undefined, ""],
[null, ""],
[0, "0"],
["", ""],
];
for (let [value, result] of cases) {
const fixture = makeTestFixture();
mount(text(value as any), fixture);
expect(fixture.innerHTML).toBe(result);
}
});
test("vtext node can be used as text", () => {
const t = text("foo") as any;
mount(text(t), fixture);
expect(fixture.innerHTML).toBe("foo");
});
});
describe("remove text blocks", () => {
test("a text block can be removed", async () => {
const tree = text("cat");
expect(fixture.childNodes.length).toBe(0);
mount(tree, fixture);
expect(fixture.innerHTML).toBe("cat");
expect(fixture.childNodes.length).toBe(1);
remove(tree);
expect(fixture.innerHTML).toBe("");
expect(fixture.childNodes.length).toBe(0);
});
});
+57
View File
@@ -0,0 +1,57 @@
import { createBlock, mount, patch, text, toggler } from "../../src/blockdom";
import { makeTestFixture } from "./helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
beforeEach(() => {
fixture = makeTestFixture();
});
afterEach(() => {
fixture.remove();
});
describe("togglers", () => {
test("can mount and update text nodes", async () => {
const tree = toggler("key", text("foo"));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("foo");
const textnode = fixture.firstChild!;
expect(textnode.textContent).toBe("foo");
patch(tree, toggler("key", text("bar")));
expect(fixture.innerHTML).toBe("bar");
expect(fixture.firstChild).toBe(textnode);
});
test("can toggle between two text nodes (different key)", async () => {
const tree = toggler("key1", text("foo"));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("foo");
const textnode = fixture.firstChild!;
expect(textnode.textContent).toBe("foo");
patch(tree, toggler("key2", text("bar")));
expect(fixture.innerHTML).toBe("bar");
expect(fixture.firstChild).not.toBe(textnode);
// we check here that the key was properly reset
const other = fixture.firstChild;
patch(tree, toggler("key1", text("foo")));
expect(fixture.innerHTML).toBe("foo");
expect(fixture.firstChild).not.toBe(other);
});
test("can toggle between text node and block", async () => {
const block = createBlock("<p>hey</p>");
const tree = toggler("key1", text("foo"));
mount(tree, fixture);
expect(fixture.innerHTML).toBe("foo");
const textnode = fixture.firstChild!;
patch(tree, toggler("key2", block()));
expect(fixture.innerHTML).toBe("<p>hey</p>");
expect(fixture.firstChild).not.toBe(textnode);
});
});
@@ -1,156 +0,0 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`class and style attributes with t-component dynamic t-att-style is properly added and updated on widget root el 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"ParentWidget\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
// Component 'child'
const _4 = scope['state'].style;
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, undefined).then(()=>{if (w2.__owl__.status === 5) {return};w2.el.style=_4;});;
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`child\`;
let W2 = scope['child'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
let fiber = w2.__prepare(extra.fiber, undefined, () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; utils.assignHooks(vnode.data, {create(_, vn){vn.elm.style = _4;}});});
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {w2.destroy();}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
exports[`class and style attributes with t-component t-att-class is properly added/removed on widget root el (v2) 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"ParentWidget\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
context.__owl__.refs = context.__owl__.refs || {};
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
// Component 'Child'
const ref4 = \`child\`;
let _5 = {'a':true};
Object.assign(_5, {b:scope['state'].b})
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, undefined);
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Child\`;
let W2 = scope['Child'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
let fiber = w2.__prepare(extra.fiber, undefined, () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; utils.assignHooks(vnode.data, {create(_, vn){}});});
let pvnode = h('dummy', {key: '__3__', hook: {insert(vn) {context.__owl__.refs[ref4] = w2;},remove() {},destroy(vn) {w2.destroy();delete context.__owl__.refs[ref4];}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.classObj=_5;
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
exports[`class and style attributes with t-component t-att-class is properly added/removed on widget root el (v2) 2`] = `
"function anonymous(context, extra
) {
// Template name: \\"Child\\"
let utils = this.constructor.utils;
let scope = Object.create(context);
let h = this.h;
let _7 = {'c':true};
Object.assign(_7, utils.toClassObj({d:scope['state'].d}))
let c8 = [], p8 = {key:8,class:_7};
let vn8 = h('span', p8, c8);
return vn8;
}"
`;
exports[`class and style attributes with t-component t-att-class is properly added/removed on widget root el (v3) 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"ParentWidget\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
context.__owl__.refs = context.__owl__.refs || {};
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
// Component 'Child'
const ref4 = \`child\`;
let _5 = {'a':true};
Object.assign(_5, utils.toClassObj(scope['state'].b?'b':''))
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, undefined);
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Child\`;
let W2 = scope['Child'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
let fiber = w2.__prepare(extra.fiber, undefined, () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; utils.assignHooks(vnode.data, {create(_, vn){}});});
let pvnode = h('dummy', {key: '__3__', hook: {insert(vn) {context.__owl__.refs[ref4] = w2;},remove() {},destroy(vn) {w2.destroy();delete context.__owl__.refs[ref4];}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.classObj=_5;
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
exports[`class and style attributes with t-component t-att-class is properly added/removed on widget root el (v3) 2`] = `
"function anonymous(context, extra
) {
// Template name: \\"Child\\"
let utils = this.constructor.utils;
let scope = Object.create(context);
let h = this.h;
let _7 = {'c':true};
Object.assign(_7, utils.toClassObj(scope['state'].d?'d':''))
let c8 = [], p8 = {key:8,class:_7};
let vn8 = h('span', p8, c8);
return vn8;
}"
`;
File diff suppressed because it is too large Load Diff
@@ -1,39 +0,0 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`props validation props are validated in dev mode (code snapshot) 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"App\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
// Component 'Child'
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {message:1};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, undefined);
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Child\`;
let W2 = scope['Child'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
let fiber = w2.__prepare(extra.fiber, undefined, () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {w2.destroy();}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
@@ -1,758 +0,0 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`t-slot directive can define and call slots 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"Parent\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
// Component 'Dialog'
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, utils.combine(context, scope));
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Dialog\`;
let W2 = scope['Dialog'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
w2.__owl__.slotId = 1;
let fiber = w2.__prepare(extra.fiber, utils.combine(context, scope), () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {w2.destroy();}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
exports[`t-slot directive can define and call slots 2`] = `
"function anonymous(context, extra
) {
// Template name: \\"Dialog\\"
let h = this.h;
let c8 = [], p8 = {key:8};
let vn8 = h('div', p8, c8);
let c9 = [], p9 = {key:9};
let vn9 = h('div', p9, c9);
c8.push(vn9);
const slot10 = this.constructor.slots[context.__owl__.slotId + '_' + 'header'];
if (slot10) {
slot10.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c9, parent: extra.parent || context}));
}
let c11 = [], p11 = {key:11};
let vn11 = h('div', p11, c11);
c8.push(vn11);
const slot12 = this.constructor.slots[context.__owl__.slotId + '_' + 'footer'];
if (slot12) {
slot12.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c11, parent: extra.parent || context}));
}
return vn8;
}"
`;
exports[`t-slot directive can define and call slots 3`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_header_template\\"
let parent = extra.parent;
let h = this.h;
let c4 = extra.parentNode;
let c5 = [], p5 = {key:5};
let vn5 = h('span', p5, c5);
c4.push(vn5);
c5.push({text: \`header\`});
}"
`;
exports[`t-slot directive can define and call slots 4`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_footer_template\\"
let parent = extra.parent;
let h = this.h;
let c6 = extra.parentNode;
let c7 = [], p7 = {key:7};
let vn7 = h('span', p7, c7);
c6.push(vn7);
c7.push({text: \`footer\`});
}"
`;
exports[`t-slot directive can define and call slots using old t-set keyword 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__2\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
// Component 'Dialog'
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, utils.combine(context, scope));
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Dialog\`;
let W2 = scope['Dialog'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
w2.__owl__.slotId = 1;
let fiber = w2.__prepare(extra.fiber, utils.combine(context, scope), () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {w2.destroy();}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
exports[`t-slot directive can define and call slots using old t-set keyword 2`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__1\\"
let h = this.h;
let c8 = [], p8 = {key:8};
let vn8 = h('div', p8, c8);
let c9 = [], p9 = {key:9};
let vn9 = h('div', p9, c9);
c8.push(vn9);
const slot10 = this.constructor.slots[context.__owl__.slotId + '_' + 'header'];
if (slot10) {
slot10.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c9, parent: extra.parent || context}));
}
let c11 = [], p11 = {key:11};
let vn11 = h('div', p11, c11);
c8.push(vn11);
const slot12 = this.constructor.slots[context.__owl__.slotId + '_' + 'footer'];
if (slot12) {
slot12.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c11, parent: extra.parent || context}));
}
return vn8;
}"
`;
exports[`t-slot directive can define and call slots using old t-set keyword 3`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_header_template\\"
let parent = extra.parent;
let h = this.h;
let c4 = extra.parentNode;
let c5 = [], p5 = {key:5};
let vn5 = h('span', p5, c5);
c4.push(vn5);
c5.push({text: \`header\`});
}"
`;
exports[`t-slot directive can define and call slots using old t-set keyword 4`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_footer_template\\"
let parent = extra.parent;
let h = this.h;
let c6 = extra.parentNode;
let c7 = [], p7 = {key:7};
let vn7 = h('span', p7, c7);
c6.push(vn7);
c7.push({text: \`footer\`});
}"
`;
exports[`t-slot directive content is the default slot 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_default_template\\"
let parent = extra.parent;
let h = this.h;
let c4 = extra.parentNode;
let c5 = [], p5 = {key:5};
let vn5 = h('span', p5, c5);
c4.push(vn5);
c5.push({text: \`sts rocks\`});
}"
`;
exports[`t-slot directive dafault slots can define a default content 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__1\\"
let h = this.h;
let c4 = [], p4 = {key:4};
let vn4 = h('span', p4, c4);
const slot5 = this.constructor.slots[context.__owl__.slotId + '_' + 'default'];
if (slot5) {
slot5.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c4, parent: extra.parent || context}));
} else {
c4.push({text: \`default content\`});
}
return vn4;
}"
`;
exports[`t-slot directive default slot next to named slot, with default content 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__2\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
// Component 'Dialog'
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, utils.combine(context, scope));
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Dialog\`;
let W2 = scope['Dialog'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
w2.__owl__.slotId = 1;
let fiber = w2.__prepare(extra.fiber, utils.combine(context, scope), () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {w2.destroy();}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
exports[`t-slot directive default slot work with text nodes 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_default_template\\"
let parent = extra.parent;
let h = this.h;
let c4 = extra.parentNode;
c4.push({text: \`sts rocks\`});
}"
`;
exports[`t-slot directive dynamic t-slot call 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__1\\"
let utils = this.constructor.utils;
let scope = Object.create(context);
let h = this.h;
let c9 = [], p9 = {key:9,on:{}};
let vn9 = h('button', p9, c9);
extra.handlers['click__10__'] = extra.handlers['click__10__'] || function (e) {if (context.__owl__.status === 5){return}utils.getComponent(context)['toggle'](e);};
p9.on['click'] = extra.handlers['click__10__'];
const slot11 = this.constructor.slots[context.__owl__.slotId + '_' + (scope['current'].slot)];
if (slot11) {
slot11.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c9, parent: extra.parent || context}));
}
return vn9;
}"
`;
exports[`t-slot directive multiple roots are allowed in a default slot 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_default_template\\"
let parent = extra.parent;
let h = this.h;
let c4 = extra.parentNode;
let c5 = [], p5 = {key:5};
let vn5 = h('span', p5, c5);
c4.push(vn5);
c5.push({text: \`sts\`});
let c6 = [], p6 = {key:6};
let vn6 = h('span', p6, c6);
c4.push(vn6);
c6.push({text: \`rocks\`});
}"
`;
exports[`t-slot directive multiple roots are allowed in a named slot 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_content_template\\"
let parent = extra.parent;
let h = this.h;
let c4 = extra.parentNode;
let c5 = [], p5 = {key:5};
let vn5 = h('span', p5, c5);
c4.push(vn5);
c5.push({text: \`sts\`});
let c6 = [], p6 = {key:6};
let vn6 = h('span', p6, c6);
c4.push(vn6);
c6.push({text: \`rocks\`});
}"
`;
exports[`t-slot directive named slots can define a default content 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__1\\"
let h = this.h;
let c4 = [], p4 = {key:4};
let vn4 = h('span', p4, c4);
const slot5 = this.constructor.slots[context.__owl__.slotId + '_' + 'header'];
if (slot5) {
slot5.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c4, parent: extra.parent || context}));
} else {
c4.push({text: \`default content\`});
}
return vn4;
}"
`;
exports[`t-slot directive refs are properly bound in slots 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_footer_template\\"
let utils = this.constructor.utils;
let parent = extra.parent;
context.__owl__.refs = context.__owl__.refs || {};
let h = this.h;
let c8 = extra.parentNode;
let c9 = [], p9 = {key:9,on:{}};
let vn9 = h('button', p9, c9);
c8.push(vn9);
extra.handlers['click__10__'] = extra.handlers['click__10__'] || function (e) {if (context.__owl__.status === 5){return}utils.getComponent(context)['doSomething'](e);};
p9.on['click'] = extra.handlers['click__10__'];
const ref11 = \`myButton\`;
p9.hook = {
create: (_, n) => {
context.__owl__.refs[ref11] = n.elm;
},
destroy: () => {
delete context.__owl__.refs[ref11];
},
};
c9.push({text: \`do something\`});
}"
`;
exports[`t-slot directive slots are rendered with proper context 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_footer_template\\"
let utils = this.constructor.utils;
let parent = extra.parent;
let h = this.h;
let c8 = extra.parentNode;
let c9 = [], p9 = {key:9,on:{}};
let vn9 = h('button', p9, c9);
c8.push(vn9);
extra.handlers['click__10__'] = extra.handlers['click__10__'] || function (e) {if (context.__owl__.status === 5){return}utils.getComponent(context)['doSomething'](e);};
p9.on['click'] = extra.handlers['click__10__'];
c9.push({text: \`do something\`});
}"
`;
exports[`t-slot directive slots are rendered with proper context, part 2 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"Link\\"
let scope = Object.create(context);
let h = this.h;
let _12 = scope['props'].to;
let c13 = [], p13 = {key:13,attrs:{href: _12}};
let vn13 = h('a', p13, c13);
const slot14 = this.constructor.slots[context.__owl__.slotId + '_' + 'default'];
if (slot14) {
slot14.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c13, parent: extra.parent || context}));
}
return vn13;
}"
`;
exports[`t-slot directive slots are rendered with proper context, part 2 2`] = `
"function anonymous(context, extra
) {
// Template name: \\"App\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
let c2 = [], p2 = {key:2};
let vn2 = h('u', p2, c2);
c1.push(vn2);
let _3 = scope['state'].users;
if (!_3) { throw new Error('QWeb error: Invalid loop expression')}
let _4 = _3;
let _5 = _3;
if (!(_3 instanceof Array)) {
_4 = Object.keys(_3);
_5 = Object.values(_3);
}
let _length4 = _4.length;
let _origScope6 = scope;
scope = Object.create(scope);
for (let i1 = 0; i1 < _length4; i1++) {
scope.user_first = i1 === 0
scope.user_last = i1 === _length4 - 1
scope.user_index = i1
scope.user = _4[i1]
scope.user_value = _5[i1]
let key1 = scope['user'].id;
let c7 = [], p7 = {key:\`\${key1}_7\`};
let vn7 = h('li', p7, c7);
c2.push(vn7);
// Component 'Link'
let k9 = \`__9__\${key1}__\`;
let w8 = k9 in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap[k9]] : false;
let props8 = {to:'/user/'+scope['user'].id};
if (w8 && w8.__owl__.currentFiber && !w8.__owl__.vnode) {
w8.destroy();
w8 = false;
}
if (w8) {
w8.__updateProps(props8, extra.fiber, utils.combine(context, scope));
let pvnode = w8.__owl__.pvnode;
c7.push(pvnode);
} else {
let componentKey8 = \`Link\`;
let W8 = scope['Link'] || context.constructor.components[componentKey8] || QWeb.components[componentKey8];
if (!W8) {throw new Error('Cannot find the definition of component \\"' + componentKey8 + '\\"')}
w8 = new W8(parent, props8);
parent.__owl__.cmap[k9] = w8.__owl__.id;
w8.__owl__.slotId = 1;
let fiber = w8.__prepare(extra.fiber, utils.combine(context, scope), () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: k9, hook: {remove() {},destroy(vn) {w8.destroy();}}});
c7.push(pvnode);
w8.__owl__.pvnode = pvnode;
}
w8.__owl__.parentLastFiberId = extra.fiber.id;
}
scope = _origScope6;
return vn1;
}"
`;
exports[`t-slot directive slots are rendered with proper context, part 2 3`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_default_template\\"
let parent = extra.parent;
let scope = Object.create(context);
let h = this.h;
let c10 = extra.parentNode;
c10.push({text: \`User \`});
let _11 = scope['user'].name;
if (_11 != null) {
c10.push({text: _11});
}
}"
`;
exports[`t-slot directive slots are rendered with proper context, part 3 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"Link\\"
let scope = Object.create(context);
let h = this.h;
let _12 = scope['props'].to;
let c13 = [], p13 = {key:13,attrs:{href: _12}};
let vn13 = h('a', p13, c13);
const slot14 = this.constructor.slots[context.__owl__.slotId + '_' + 'default'];
if (slot14) {
slot14.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c13, parent: extra.parent || context}));
}
return vn13;
}"
`;
exports[`t-slot directive slots are rendered with proper context, part 3 2`] = `
"function anonymous(context, extra
) {
// Template name: \\"App\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
let c2 = [], p2 = {key:2};
let vn2 = h('u', p2, c2);
c1.push(vn2);
let _3 = scope['state'].users;
if (!_3) { throw new Error('QWeb error: Invalid loop expression')}
let _4 = _3;
let _5 = _3;
if (!(_3 instanceof Array)) {
_4 = Object.keys(_3);
_5 = Object.values(_3);
}
let _length4 = _4.length;
let _origScope6 = scope;
scope = Object.create(scope);
for (let i1 = 0; i1 < _length4; i1++) {
scope.user_first = i1 === 0
scope.user_last = i1 === _length4 - 1
scope.user_index = i1
scope.user = _4[i1]
scope.user_value = _5[i1]
let key1 = scope['user'].id;
let c7 = [], p7 = {key:\`\${key1}_7\`};
let vn7 = h('li', p7, c7);
c2.push(vn7);
utils.getScope(scope, 'userdescr').userdescr = 'User '+scope['user'].name;
// Component 'Link'
let k9 = \`__9__\${key1}__\`;
let w8 = k9 in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap[k9]] : false;
let props8 = {to:'/user/'+scope['user'].id};
if (w8 && w8.__owl__.currentFiber && !w8.__owl__.vnode) {
w8.destroy();
w8 = false;
}
if (w8) {
w8.__updateProps(props8, extra.fiber, utils.combine(context, scope));
let pvnode = w8.__owl__.pvnode;
c7.push(pvnode);
} else {
let componentKey8 = \`Link\`;
let W8 = scope['Link'] || context.constructor.components[componentKey8] || QWeb.components[componentKey8];
if (!W8) {throw new Error('Cannot find the definition of component \\"' + componentKey8 + '\\"')}
w8 = new W8(parent, props8);
parent.__owl__.cmap[k9] = w8.__owl__.id;
w8.__owl__.slotId = 1;
let fiber = w8.__prepare(extra.fiber, utils.combine(context, scope), () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: k9, hook: {remove() {},destroy(vn) {w8.destroy();}}});
c7.push(pvnode);
w8.__owl__.pvnode = pvnode;
}
w8.__owl__.parentLastFiberId = extra.fiber.id;
}
scope = _origScope6;
return vn1;
}"
`;
exports[`t-slot directive slots are rendered with proper context, part 3 3`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_default_template\\"
let parent = extra.parent;
let scope = Object.create(context);
let h = this.h;
let c10 = extra.parentNode;
let _11 = scope['userdescr'];
if (_11 != null) {
c10.push({text: _11});
}
}"
`;
exports[`t-slot directive slots are rendered with proper context, part 4 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"App\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
scope.userdescr = 'User '+scope['state'].user.name;
// Component 'Link'
let w2 = '__3__' in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap['__3__']] : false;
let props2 = {to:'/user/'+scope['state'].user.id};
if (w2 && w2.__owl__.currentFiber && !w2.__owl__.vnode) {
w2.destroy();
w2 = false;
}
if (w2) {
w2.__updateProps(props2, extra.fiber, utils.combine(context, scope));
let pvnode = w2.__owl__.pvnode;
c1.push(pvnode);
} else {
let componentKey2 = \`Link\`;
let W2 = scope['Link'] || context.constructor.components[componentKey2] || QWeb.components[componentKey2];
if (!W2) {throw new Error('Cannot find the definition of component \\"' + componentKey2 + '\\"')}
w2 = new W2(parent, props2);
parent.__owl__.cmap['__3__'] = w2.__owl__.id;
w2.__owl__.slotId = 1;
let fiber = w2.__prepare(extra.fiber, utils.combine(context, scope), () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: '__3__', hook: {remove() {},destroy(vn) {w2.destroy();}}});
c1.push(pvnode);
w2.__owl__.pvnode = pvnode;
}
w2.__owl__.parentLastFiberId = extra.fiber.id;
return vn1;
}"
`;
exports[`t-slot directive slots are rendered with proper context, part 4 2`] = `
"function anonymous(context, extra
) {
// Template name: \\"slot_default_template\\"
let parent = extra.parent;
let scope = Object.create(context);
let h = this.h;
let c4 = extra.parentNode;
let _5 = scope['userdescr'];
if (_5 != null) {
c4.push({text: _5});
}
}"
`;
exports[`t-slot directive slots in t-foreach in t-foreach 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__2\\"
let utils = this.constructor.utils;
let QWeb = this.constructor;
let parent = context;
let scope = Object.create(context);
let h = this.h;
let c1 = [], p1 = {key:1};
let vn1 = h('div', p1, c1);
let _2 = scope['tree'];
if (!_2) { throw new Error('QWeb error: Invalid loop expression')}
let _3 = _2;
let _4 = _2;
if (!(_2 instanceof Array)) {
_3 = Object.keys(_2);
_4 = Object.values(_2);
}
let _length3 = _3.length;
let _origScope5 = scope;
scope = Object.create(scope);
for (let i1 = 0; i1 < _length3; i1++) {
scope.node1_first = i1 === 0
scope.node1_last = i1 === _length3 - 1
scope.node1_index = i1
scope.node1 = _3[i1]
scope.node1_value = _4[i1]
let key1 = scope['node1'].key;
let c6 = [], p6 = {key:\`\${key1}_6\`};
let vn6 = h('div', p6, c6);
c1.push(vn6);
let _7 = scope['node1'].value;
if (_7 != null) {
c6.push({text: _7});
}
let c8 = [], p8 = {key:\`\${key1}_8\`};
let vn8 = h('ul', p8, c8);
c1.push(vn8);
let _9 = scope['node1'].nodes;
if (!_9) { throw new Error('QWeb error: Invalid loop expression')}
let _10 = _9;
let _11 = _9;
if (!(_9 instanceof Array)) {
_10 = Object.keys(_9);
_11 = Object.values(_9);
}
let _length10 = _10.length;
let _origScope12 = scope;
scope = Object.create(scope);
for (let i2 = 0; i2 < _length10; i2++) {
scope.node2_first = i2 === 0
scope.node2_last = i2 === _length10 - 1
scope.node2_index = i2
scope.node2 = _10[i2]
scope.node2_value = _11[i2]
let key2 = scope['node2'].key;
// Component 'Child'
let k14 = \`__14__\${key1}__\${key2}__\`;
let w13 = k14 in parent.__owl__.cmap ? parent.__owl__.children[parent.__owl__.cmap[k14]] : false;
let props13 = {};
if (w13 && w13.__owl__.currentFiber && !w13.__owl__.vnode) {
w13.destroy();
w13 = false;
}
if (w13) {
w13.__updateProps(props13, extra.fiber, utils.combine(context, scope));
let pvnode = w13.__owl__.pvnode;
c8.push(pvnode);
} else {
let componentKey13 = \`Child\`;
let W13 = scope['Child'] || context.constructor.components[componentKey13] || QWeb.components[componentKey13];
if (!W13) {throw new Error('Cannot find the definition of component \\"' + componentKey13 + '\\"')}
w13 = new W13(parent, props13);
parent.__owl__.cmap[k14] = w13.__owl__.id;
w13.__owl__.slotId = 1;
let fiber = w13.__prepare(extra.fiber, utils.combine(context, scope), () => { const vnode = fiber.vnode; pvnode.sel = vnode.sel; });
let pvnode = h('dummy', {key: k14, hook: {remove() {},destroy(vn) {w13.destroy();}}});
c8.push(pvnode);
w13.__owl__.pvnode = pvnode;
}
w13.__owl__.parentLastFiberId = extra.fiber.id;
}
scope = _origScope12;
}
scope = _origScope5;
return vn1;
}"
`;
exports[`t-slot directive t-set t-value in a slot 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__1\\"
let h = this.h;
let c5 = [], p5 = {key:5};
let vn5 = h('span', p5, c5);
const slot6 = this.constructor.slots[context.__owl__.slotId + '_' + 'default'];
if (slot6) {
slot6.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: c5, parent: extra.parent || context}));
}
return vn5;
}"
`;
exports[`t-slot directive template can just return a slot 1`] = `
"function anonymous(context, extra
) {
// Template name: \\"__template__2\\"
let utils = this.constructor.utils;
let result;
let h = this.h;
const slot7 = this.constructor.slots[context.__owl__.slotId + '_' + 'default'];
if (slot7) {
let children8= []
result = {}
slot7.call(this, context.__owl__.scope, Object.assign({}, extra, {parentNode: children8, parent: extra.parent || context}));
utils.defineProxy(result, children8[0]);
}
return result;
}"
`;
File diff suppressed because it is too large Load Diff
-273
View File
@@ -1,273 +0,0 @@
import { Component, Env } from "../../src/component/component";
import { QWeb } from "../../src/qweb/qweb";
import { xml } from "../../src/tags";
import { useState, useRef } from "../../src/hooks";
import { makeTestFixture, makeTestEnv, nextTick } from "../helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
// We create before each test:
// - fixture: a div, appended to the DOM, intended to be the target of dom
// manipulations. Note that it is removed after each test.
// - env: a WEnv, necessary to create new components
let fixture: HTMLElement;
let env: Env;
beforeEach(() => {
fixture = makeTestFixture();
env = makeTestEnv();
Component.env = env;
});
afterEach(() => {
fixture.remove();
});
describe("class and style attributes with t-component", () => {
test("class is properly added on widget root el", async () => {
class Child extends Component {
static template = xml`<div class="c"/>`;
}
class ParentWidget extends Component {
static template = xml`<div><Child class="a b"/></div>`;
static components = { Child };
}
const widget = new ParentWidget();
await widget.mount(fixture);
expect(fixture.innerHTML).toBe(`<div><div class="c a b"></div></div>`);
});
test("empty class attribute is not added on widget root el", async () => {
class Child extends Component {
static template = xml`<span/>`;
}
class Parent extends Component {
static template = xml`<div><Child class=""/></div>`;
static components = { Child };
}
const widget = new Parent();
await widget.mount(fixture);
expect(fixture.innerHTML).toBe(`<div><span></span></div>`);
});
test("t-att-class is properly added/removed on widget root el", async () => {
class Child extends Component {
static template = xml`<div class="c"/>`;
}
class ParentWidget extends Component {
static template = xml`<div><Child t-att-class="{a:state.a, b:state.b}"/></div>`;
static components = { Child };
state = useState({ a: true, b: false });
}
const widget = new ParentWidget();
await widget.mount(fixture);
expect(fixture.innerHTML).toBe(`<div><div class="c a"></div></div>`);
expect(QWeb.TEMPLATES[ParentWidget.template].fn.toString());
widget.state.a = false;
widget.state.b = true;
await nextTick();
expect(fixture.innerHTML).toBe(`<div><div class="c b"></div></div>`);
});
test("class with extra whitespaces", async () => {
env.qweb.addTemplate(
"ParentWidget",
`<div>
<Child class="a b c d"/>
</div>`
);
class Child extends Component {}
class ParentWidget extends Component {
static components = { Child };
}
env.qweb.addTemplate("Child", `<div/>`);
const widget = new ParentWidget();
await widget.mount(fixture);
expect(fixture.innerHTML).toBe(`<div><div class="a b c d"></div></div>`);
});
test("t-att-class is properly added/removed on widget root el (v2)", async () => {
env.qweb.addTemplates(`
<templates>
<div t-name="ParentWidget">
<Child class="a" t-att-class="{ b: state.b }" t-ref="child"/>
</div>
<span t-name="Child" class="c" t-att-class="{ d: state.d }"/>
</templates>`);
class Child extends Component {
state = useState({ d: true });
}
class ParentWidget extends Component {
static components = { Child };
state = useState({ b: true });
child = useRef("child");
}
const widget = new ParentWidget();
await widget.mount(fixture);
const span = fixture.querySelector("span")!;
expect(span.className).toBe("c d a b");
widget.state.b = false;
await nextTick();
expect(span.className).toBe("c d a");
(widget.child.comp as Child).state.d = false;
await nextTick();
expect(span.className).toBe("c a");
widget.state.b = true;
await nextTick();
expect(span.className).toBe("c a b");
(widget.child.comp as Child).state.d = true;
await nextTick();
expect(span.className).toBe("c a b d");
expect(env.qweb.templates.ParentWidget.fn.toString()).toMatchSnapshot();
expect(env.qweb.templates.Child.fn.toString()).toMatchSnapshot();
});
test("t-att-class is properly added/removed on widget root el (v3)", async () => {
env.qweb.addTemplates(`
<templates>
<div t-name="ParentWidget">
<Child class="a" t-att-class="state.b ? 'b' : ''" t-ref="child"/>
</div>
<span t-name="Child" class="c" t-att-class="state.d ? 'd' : ''"/>
</templates>`);
class Child extends Component {
state = useState({ d: true });
}
class ParentWidget extends Component {
static components = { Child };
state = useState({ b: true });
child = useRef("child");
}
const widget = new ParentWidget();
await widget.mount(fixture);
const span = fixture.querySelector("span")!;
expect(span.className).toBe("c d a b");
widget.state.b = false;
await nextTick();
expect(span.className).toBe("c d a");
(widget.child.comp as Child).state.d = false;
await nextTick();
expect(span.className).toBe("c a");
widget.state.b = true;
await nextTick();
expect(span.className).toBe("c a b");
(widget.child.comp as Child).state.d = true;
await nextTick();
expect(span.className).toBe("c a b d");
expect(env.qweb.templates.ParentWidget.fn.toString()).toMatchSnapshot();
expect(env.qweb.templates.Child.fn.toString()).toMatchSnapshot();
});
test("class on components do not interfere with user defined classes", async () => {
env.qweb.addTemplates(`
<templates>
<div t-name="App" t-att-class="{ c: state.c }" />
</templates>`);
class App extends Component {
state = useState({ c: true });
mounted() {
this.el!.classList.add("user");
}
}
const widget = new App();
await widget.mount(fixture);
expect(fixture.innerHTML).toBe('<div class="c user"></div>');
widget.state.c = false;
await nextTick();
expect(fixture.innerHTML).toBe('<div class="user"></div>');
});
test("style is properly added on widget root el", async () => {
env.qweb.addTemplate(
"ParentWidget",
`
<div>
<t t-component="child" style="font-weight: bold;"/>
</div>`
);
class SomeComponent extends Component {
static template = xml`<div/>`;
}
class ParentWidget extends Component {
static components = { child: SomeComponent };
}
const widget = new ParentWidget();
await widget.mount(fixture);
expect(fixture.innerHTML).toBe(`<div><div style="font-weight: bold;"></div></div>`);
});
test("dynamic t-att-style is properly added and updated on widget root el", async () => {
env.qweb.addTemplate(
"ParentWidget",
`
<div>
<t t-component="child" t-att-style="state.style"/>
</div>`
);
class SomeComponent extends Component {
static template = xml`<div/>`;
}
class ParentWidget extends Component {
static components = { child: SomeComponent };
state = useState({ style: "font-size: 20px" });
}
const widget = new ParentWidget();
await widget.mount(fixture);
expect(env.qweb.templates.ParentWidget.fn.toString()).toMatchSnapshot();
expect(fixture.innerHTML).toBe(`<div><div style="font-size: 20px;"></div></div>`);
widget.state.style = "font-size: 30px";
await nextTick();
expect(fixture.innerHTML).toBe(`<div><div style="font-size: 30px;"></div></div>`);
});
test("error in subcomponent with class", async () => {
class Child extends Component {
static template = xml`<div t-esc="this.will.crash"/>`;
}
class ParentWidget extends Component {
static template = xml`<div><Child class="a"/></div>`;
static components = { Child };
}
const widget = new ParentWidget();
let error;
try {
await widget.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
const regexp =
/Cannot read properties of undefined \(reading 'crash'\)|Cannot read property 'crash' of undefined/g;
expect(error.message).toMatch(regexp);
expect(fixture.innerHTML).toBe("");
});
});
File diff suppressed because it is too large Load Diff
-620
View File
@@ -1,620 +0,0 @@
import { Component, Env, mount, STATUS } from "../../src/component/component";
import { useState } from "../../src/hooks";
import { xml } from "../../src/tags";
import { makeTestEnv, makeTestFixture, nextTick } from "../helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
// We create before each test:
// - fixture: a div, appended to the DOM, intended to be the target of dom
// manipulations. Note that it is removed after each test.
// - env: a WEnv, necessary to create new components
let fixture: HTMLElement;
let env: Env;
beforeEach(() => {
fixture = makeTestFixture();
env = makeTestEnv();
Component.env = env;
});
afterEach(() => {
fixture.remove();
});
describe("component error handling (catchError)", () => {
/**
* This test suite requires often to wait for 3 ticks. Here is why:
* - First tick is to let the app render and crash.
* - When we crash, we call the catchError handler in a setTimeout (because we
* need to wait for the previous rendering to be completely stopped). So, we
* need to wait for the second tick.
* - Then, when the handler changes the state, we need to wait for the interface
* to be rerendered.
* */
test("can catch an error in a component render function", async () => {
const consoleError = console.error;
console.error = jest.fn();
const handler = jest.fn();
env.qweb.on("error", null, handler);
class ErrorComponent extends Component {
static template = xml`<div>hey<t t-esc="props.flag and state.this.will.crash"/></div>`;
}
class ErrorBoundary extends Component {
static template = xml`
<div>
<t t-if="state.error">Error handled</t>
<t t-else=""><t t-slot="default" /></t>
</div>`;
state = useState({ error: false });
catchError() {
this.state.error = true;
}
}
class App extends Component {
static template = xml`
<div>
<ErrorBoundary><ErrorComponent flag="state.flag"/></ErrorBoundary>
</div>`;
state = useState({ flag: false });
static components = { ErrorBoundary, ErrorComponent };
}
const app = new App();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div><div>heyfalse</div></div></div>");
app.state.flag = true;
await nextTick();
expect(fixture.innerHTML).toBe("<div><div>Error handled</div></div>");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
expect(handler).toBeCalledTimes(1);
});
test("no component catching error lead to full app destruction", async () => {
expect.assertions(6);
const handler = jest.fn();
env.qweb.on("error", null, handler);
const consoleError = console.error;
console.error = jest.fn();
class ErrorComponent extends Component {
static template = xml`<div>hey<t t-esc="props.flag and state.this.will.crash"/></div>`;
}
class App extends Component {
static template = xml`<div><ErrorComponent flag="state.flag"/></div>`;
static components = { ErrorComponent };
state = useState({ flag: false });
async render() {
try {
await super.render();
} catch (e) {
expect(e.message).toMatch(
/Cannot read properties of undefined \(reading 'this'\)|Cannot read property 'this' of undefined/
);
}
}
}
const app = new App();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>heyfalse</div></div>");
app.state.flag = true;
await nextTick();
expect(fixture.innerHTML).toBe("");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
expect(app.__owl__.status).toBe(STATUS.DESTROYED);
expect(handler).toBeCalledTimes(1);
});
test("can catch an error in the initial call of a component render function (parent mounted)", async () => {
const handler = jest.fn();
env.qweb.on("error", null, handler);
const consoleError = console.error;
console.error = jest.fn();
class ErrorComponent extends Component {
static template = xml`<div>hey<t t-esc="state.this.will.crash"/></div>`;
}
class ErrorBoundary extends Component {
static template = xml`
<div>
<t t-if="state.error">Error handled</t>
<t t-else=""><t t-slot="default" /></t>
</div>`;
state = useState({ error: false });
catchError() {
this.state.error = true;
}
}
class App extends Component {
static template = xml`
<div>
<ErrorBoundary><ErrorComponent /></ErrorBoundary>
</div>`;
static components = { ErrorBoundary, ErrorComponent };
}
const app = new App();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>Error handled</div></div>");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
expect(handler).toBeCalledTimes(1);
});
test("can catch an error in the initial call of a component render function (parent updated)", async () => {
const handler = jest.fn();
env.qweb.on("error", null, handler);
const consoleError = console.error;
console.error = jest.fn();
class ErrorComponent extends Component {
static template = xml`<div>hey<t t-esc="state.this.will.crash"/></div>`;
}
class ErrorBoundary extends Component {
static template = xml`
<div>
<t t-if="state.error">Error handled</t>
<t t-else=""><t t-slot="default" /></t>
</div>`;
state = useState({ error: false });
catchError() {
this.state.error = true;
}
}
class App extends Component {
static template = xml`
<div>
<ErrorBoundary t-if="state.flag"><ErrorComponent /></ErrorBoundary>
</div>`;
state = useState({ flag: false });
static components = { ErrorBoundary, ErrorComponent };
}
const app = new App();
await app.mount(fixture);
app.state.flag = true;
await nextTick();
expect(fixture.innerHTML).toBe("<div><div>Error handled</div></div>");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
expect(handler).toBeCalledTimes(1);
});
test("can catch an error in the constructor call of a component render function", async () => {
const handler = jest.fn();
env.qweb.on("error", null, handler);
const consoleError = console.error;
console.error = jest.fn();
env.qweb.addTemplates(`
<templates>
<div t-name="ErrorBoundary">
<t t-if="state.error">Error handled</t>
<t t-else=""><t t-slot="default" /></t>
</div>
<div t-name="ErrorComponent">Some text</div>
<div t-name="App">
<ErrorBoundary><ErrorComponent /></ErrorBoundary>
</div>
</templates>`);
class ErrorComponent extends Component {
constructor(parent) {
super(parent);
throw new Error("NOOOOO");
}
}
class ErrorBoundary extends Component {
state = useState({ error: false });
catchError() {
this.state.error = true;
}
}
class App extends Component {
static components = { ErrorBoundary, ErrorComponent };
}
const app = new App();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>Error handled</div></div>");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
expect(handler).toBeCalledTimes(1);
});
test("can catch an error in the willStart call", async () => {
const consoleError = console.error;
console.error = jest.fn();
class ErrorComponent extends Component {
static template = xml`<div t-name="ErrorComponent">Some text</div>`;
async willStart() {
// we wait a little bit to be in a different stack frame
await nextTick();
throw new Error("NOOOOO");
}
}
class ErrorBoundary extends Component {
static template = xml`
<div>
<t t-if="state.error">Error handled</t>
<t t-else=""><t t-slot="default" /></t>
</div>`;
state = useState({ error: false });
catchError() {
this.state.error = true;
}
}
class App extends Component {
static template = xml`<div><ErrorBoundary><ErrorComponent /></ErrorBoundary></div>`;
static components = { ErrorBoundary, ErrorComponent };
}
const app = new App();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>Error handled</div></div>");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
});
test.skip("can catch an error in the mounted call", async () => {
// we do not catch error in mounted anymore
console.error = jest.fn();
env.qweb.addTemplates(`
<templates>
<div t-name="ErrorBoundary">
<t t-if="state.error">Error handled</t>
<t t-else=""><t t-slot="default" /></t>
</div>
<div t-name="ErrorComponent">Some text</div>
<div t-name="App">
<ErrorBoundary><ErrorComponent /></ErrorBoundary>
</div>
</templates>`);
class ErrorComponent extends Component {
mounted() {
throw new Error("NOOOOO");
}
}
class ErrorBoundary extends Component {
state = useState({ error: false });
catchError() {
this.state.error = true;
}
}
class App extends Component {
static components = { ErrorBoundary, ErrorComponent };
}
const app = new App();
await app.mount(fixture);
await nextTick();
await nextTick();
await nextTick();
expect(fixture.innerHTML).toBe("<div><div>Error handled</div></div>");
});
test.skip("can catch an error in the willPatch call", async () => {
// we do not catch error in willPatch anymore
const consoleError = console.error;
console.error = jest.fn();
class ErrorComponent extends Component {
static template = xml`<div><t t-esc="props.message"/></div>`;
willPatch() {
throw new Error("NOOOOO");
}
}
class ErrorBoundary extends Component {
static template = xml`
<div>
<t t-if="state.error">Error handled</t>
<t t-else=""><t t-slot="default" /></t>
</div>`;
state = useState({ error: false });
catchError() {
this.state.error = true;
}
}
class App extends Component {
static template = xml`
<div>
<span><t t-esc="state.message"/></span>
<ErrorBoundary><ErrorComponent message="state.message" /></ErrorBoundary>
</div>`;
state = useState({ message: "abc" });
static components = { ErrorBoundary, ErrorComponent };
}
const app = new App();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div><span>abc</span><div><div>abc</div></div></div>");
app.state.message = "def";
await nextTick();
await nextTick();
await nextTick();
expect(fixture.innerHTML).toBe("<div><span>def</span><div>Error handled</div></div>");
expect(console.error).toHaveBeenCalledTimes(1);
console.error = consoleError;
});
test("a rendering error will reject the mount promise", async () => {
const consoleError = console.error;
console.error = jest.fn(() => {});
// we do not catch error in willPatch anymore
class App extends Component {
static template = xml`<div><t t-esc="this.will.crash"/></div>`;
}
const app = new App();
let error;
try {
await app.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
const regexp =
/Cannot read properties of undefined \(reading 'crash'\)|Cannot read property 'crash' of undefined/g;
expect(error.message).toMatch(regexp);
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
});
test("an error in mounted call will reject the mount promise", async () => {
const consoleError = console.error;
console.error = jest.fn(() => {});
class App extends Component {
static template = xml`<div>abc</div>`;
mounted() {
throw new Error("boom");
}
}
const app = new App();
let error;
try {
await app.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("boom");
expect(fixture.innerHTML).toBe("");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
});
test("an error in willPatch call will reject the render promise", async () => {
const consoleError = console.error;
console.error = jest.fn(() => {});
class App extends Component {
static template = xml`<div><t t-esc="val"/></div>`;
val = 3;
willPatch() {
throw new Error("boom");
}
}
const app = new App();
await app.mount(fixture);
app.val = 4;
let error;
try {
await app.render();
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("boom");
expect(fixture.innerHTML).toBe("");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
});
test("an error in patched call will reject the render promise", async () => {
const consoleError = console.error;
console.error = jest.fn(() => {});
class App extends Component {
static template = xml`<div><t t-esc="val"/></div>`;
val = 3;
patched() {
throw new Error("boom");
}
}
const app = new App();
await app.mount(fixture);
app.val = 4;
let error;
try {
await app.render();
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("boom");
expect(fixture.innerHTML).toBe("");
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
});
test("a rendering error in a sub component will reject the mount promise", async () => {
const consoleError = console.error;
console.error = jest.fn(() => {});
// we do not catch error in willPatch anymore
class Child extends Component {
static template = xml`<div><t t-esc="this.will.crash"/></div>`;
}
class App extends Component {
static template = xml`<div><Child/></div>`;
static components = { Child };
}
const app = new App();
let error;
try {
await app.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
const regexp =
/Cannot read properties of undefined \(reading 'crash'\)|Cannot read property 'crash' of undefined/g;
expect(error.message).toMatch(regexp);
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
});
test("a rendering error will reject the render promise", async () => {
const consoleError = console.error;
console.error = jest.fn(() => {});
// we do not catch error in willPatch anymore
class App extends Component {
static template = xml`<div><t t-if="flag" t-esc="this.will.crash"/></div>`;
flag = false;
}
const app = new App();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div></div>");
app.flag = true;
let error;
try {
await app.render();
} catch (e) {
error = e;
}
expect(error).toBeDefined();
const regexp =
/Cannot read properties of undefined \(reading 'crash'\)|Cannot read property 'crash' of undefined/g;
expect(error.message).toMatch(regexp);
expect(console.error).toBeCalledTimes(0);
console.error = consoleError;
});
test("a rendering error will reject the render promise (with sub components)", async () => {
class Child extends Component {
static template = xml`<span></span>`;
}
class Parent extends Component {
static template = xml`<div><Child/><t t-esc="x.y"/></div>`;
static components = { Child };
}
let error;
try {
const parent = new Parent();
await parent.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
const regexp =
/Cannot read properties of undefined \(reading 'y'\)|Cannot read property 'y' of undefined/g;
expect(error.message).toMatch(regexp);
});
test("simple catchError", async () => {
class Boom extends Component {
static template = xml`<div t-esc="a.b.c"/>`;
}
class Parent extends Component {
static template = xml`
<div>
<t t-if="error">Error</t>
<t t-else="">
<Boom />
</t>
</div>`;
static components = { Boom };
error = false;
catchError(error) {
this.error = error;
this.render();
}
}
await mount(Parent, { target: fixture });
expect(fixture.innerHTML).toBe("<div>Error</div>");
});
test("catchError in catchError", async () => {
class Boom extends Component {
static template = xml`<div t-esc="a.b.c"/>`;
}
class Child extends Component {
static template = xml`
<div>
<Boom />
</div>`;
static components = { Boom };
catchError(error) {
throw error;
}
}
class Parent extends Component {
static template = xml`
<div>
<t t-if="error">Error</t>
<t t-else="">
<Child />
</t>
</div>`;
static components = { Child };
error = false;
catchError(error) {
this.error = error;
this.render();
}
}
await mount(Parent, { target: fixture });
expect(fixture.innerHTML).toBe("<div>Error</div>");
});
test("errors in mounted and in willUnmount", async () => {
expect.assertions(1);
class Example extends Component {
static template = xml`<div/>`;
val;
mounted() {
throw new Error("Error in mounted");
this.val = { foo: "bar" };
}
willUnmount() {
console.log(this.val.foo);
}
}
try {
await mount(Example, { target: fixture });
} catch (e) {
expect(e.message).toBe("Error in mounted");
}
});
});
-868
View File
@@ -1,868 +0,0 @@
import { Component, Env } from "../../src/component/component";
import { makeTestFixture, makeTestEnv, nextTick } from "../helpers";
import { useState } from "../../src/hooks";
import { QWeb } from "../../src/qweb";
import { xml } from "../../src/tags";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
let fixture: HTMLElement;
let env: Env;
let dev: boolean = false;
beforeEach(() => {
fixture = makeTestFixture();
env = makeTestEnv();
Component.env = env;
dev = QWeb.dev;
QWeb.dev = true;
});
afterEach(() => {
fixture.remove();
QWeb.dev = dev;
});
class Widget extends Component {}
//------------------------------------------------------------------------------
// Tests
//------------------------------------------------------------------------------
describe("props validation", () => {
test("validation is only done in dev mode", async () => {
class TestWidget extends Widget {
static props = ["message"];
static template = xml`<div>hey</div>`;
}
class Parent extends Widget {
static components = { TestWidget };
static template = xml`<div><TestWidget /></div>`;
}
let error;
QWeb.dev = true;
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe(`Missing props 'message' (component 'TestWidget')`);
error = undefined;
QWeb.dev = false;
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
});
test("props: list of strings", async () => {
class TestWidget extends Widget {
static props = ["message"];
static template = xml`<div>hey</div>`;
}
class Parent extends Widget {
static components = { TestWidget };
static template = xml`<div><TestWidget /></div>`;
}
let error;
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe(`Missing props 'message' (component 'TestWidget')`);
});
test("validate simple types", async () => {
const Tests = [
{ type: Number, ok: 1, ko: "1" },
{ type: Boolean, ok: true, ko: "1" },
{ type: String, ok: "1", ko: 1 },
{ type: Object, ok: {}, ko: "1" },
{ type: Date, ok: new Date(), ko: "1" },
{ type: Function, ok: () => {}, ko: "1" },
];
let props;
class Parent extends Component {
static template = xml`<div><TestWidget p="p"/></div>`;
get p() {
return props.p;
}
}
for (let test of Tests) {
let TestWidget = class extends Widget {
static template = xml`<div>hey</div>`;
static props = { p: test.type };
};
Parent.components = { TestWidget };
let error;
props = {};
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe(`Missing props 'p' (component '_a')`);
error = undefined;
props = { p: test.ok };
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
props = { p: test.ko };
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'p' in component '_a'");
}
});
test("validate simple types, alternate form", async () => {
const Tests = [
{ type: Number, ok: 1, ko: "1" },
{ type: Boolean, ok: true, ko: "1" },
{ type: String, ok: "1", ko: 1 },
{ type: Object, ok: {}, ko: "1" },
{ type: Date, ok: new Date(), ko: "1" },
{ type: Function, ok: () => {}, ko: "1" },
];
let props;
class Parent extends Component {
static template = xml`<div><TestWidget p="p"/></div>`;
get p() {
return props.p;
}
}
for (let test of Tests) {
let TestWidget = class extends Component {
static props = { p: { type: test.type } };
static template = xml`<div>hey</div>`;
};
Parent.components = { TestWidget };
let error;
props = {};
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe(`Missing props 'p' (component '_a')`);
error = undefined;
props = { p: test.ok };
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
props = { p: test.ko };
try {
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'p' in component '_a'");
}
});
test("can validate a prop with multiple types", async () => {
class TestWidget extends Component {
static template = xml`<div>hey</div>`;
static props = { p: [String, Boolean] };
}
class Parent extends Component {
static template = xml`<div><TestWidget p="p"/></div>`;
static components = { TestWidget };
get p() {
return props.p;
}
}
let error;
let props;
try {
props = { p: "string" };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: true };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: 1 };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'p' in component 'TestWidget'");
});
test("can validate an optional props", async () => {
class TestWidget extends Component {
static template = xml`<div>hey</div>`;
static props = { p: { type: String, optional: true } };
}
class Parent extends Component {
static template = xml`<div><TestWidget p="p"/></div>`;
static components = { TestWidget };
get p() {
return props.p;
}
}
let error;
let props;
try {
props = { p: "key" };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = {};
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: 1 };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'p' in component 'TestWidget'");
});
test("can validate an array with given primitive type", async () => {
class TestWidget extends Component {
static template = xml`<div>hey</div>`;
static props = { p: { type: Array, element: String } };
}
class Parent extends Component {
static template = xml`<div><TestWidget p="p"/></div>`;
static components = { TestWidget };
get p() {
return props.p;
}
}
let error;
let props;
try {
props = { p: [] };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: ["string"] };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: [1] };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
error = undefined;
try {
props = { p: ["string", 1] };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
});
test("can validate an array with multiple sub element types", async () => {
class TestWidget extends Component {
static template = xml`<div>hey</div>`;
static props = { p: { type: Array, element: [String, Boolean] } };
}
class Parent extends Component {
static template = xml`<div><TestWidget p="p"/></div>`;
static components = { TestWidget };
get p() {
return props.p;
}
}
let error;
let props;
try {
props = { p: [] };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: ["string"] };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: [false, true, "string"] };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: [true, 1] };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'p' in component 'TestWidget'");
});
test("can validate an object with simple shape", async () => {
class TestWidget extends Component {
static template = xml`<div>hey</div>`;
static props = {
p: { type: Object, shape: { id: Number, url: String } },
};
}
class Parent extends Component {
static template = xml`<div><TestWidget p="p"/></div>`;
static components = { TestWidget };
get p() {
return props.p;
}
}
let error;
let props;
try {
props = { p: { id: 1, url: "url" } };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: { id: 1, url: "url", extra: true } };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid prop 'p' in component TestWidget (unknown prop 'extra')");
try {
props = { p: { id: "1", url: "url" } };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'p' in component 'TestWidget'");
error = undefined;
try {
props = { p: { id: 1 } };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'p' in component 'TestWidget'");
});
test("can validate recursively complicated prop def", async () => {
class TestWidget extends Component {
static template = xml`<div>hey</div>`;
static props = {
p: {
type: Object,
shape: {
id: Number,
url: [Boolean, { type: Array, element: Number }],
},
},
};
}
class Parent extends Component {
static template = xml`<div><TestWidget p="p"/></div>`;
static components = { TestWidget };
get p() {
return props.p;
}
}
let error;
let props;
try {
props = { p: { id: 1, url: true } };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: { id: 1, url: [12] } };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
props = { p: { id: 1, url: [12, true] } };
const p = new Parent();
await p.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'p' in component 'TestWidget'");
});
test("can validate optional attributes in nested sub props", () => {
class TestComponent extends Component {
static props = {
myprop: {
type: Array,
element: {
type: Object,
shape: {
num: { type: Number, optional: true },
},
},
},
};
}
let error;
try {
QWeb.utils.validateProps(TestComponent, { myprop: [{}] });
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
QWeb.utils.validateProps(TestComponent, { myprop: [{ a: 1 }] });
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe(
"Invalid prop 'myprop' in component TestComponent (unknown prop 'a')"
);
});
test("can validate with a custom validator", () => {
class TestComponent extends Component {
static props = {
size: {
validate: (e) => ["small", "medium", "large"].includes(e),
},
};
}
let error;
try {
QWeb.utils.validateProps(TestComponent, { size: "small" });
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
try {
QWeb.utils.validateProps(TestComponent, { size: "abcdef" });
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'size' in component 'TestComponent'");
});
test("can validate with a custom validator, and a type", () => {
const validator = jest.fn((n) => 0 <= n && n <= 10);
class TestComponent extends Component {
static props = {
n: {
type: Number,
validate: validator,
},
};
}
let error;
try {
QWeb.utils.validateProps(TestComponent, { n: 3 });
} catch (e) {
error = e;
}
expect(error).toBeUndefined();
expect(validator).toBeCalledTimes(1);
try {
QWeb.utils.validateProps(TestComponent, { n: "str" });
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'n' in component 'TestComponent'");
expect(validator).toBeCalledTimes(1);
error = null;
try {
QWeb.utils.validateProps(TestComponent, { n: 100 });
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Invalid Prop 'n' in component 'TestComponent'");
expect(validator).toBeCalledTimes(2);
});
test("props are validated in dev mode (code snapshot)", async () => {
env.qweb.addTemplates(`
<templates>
<div t-name="App">
<Child message="1"/>
</div>
<div t-name="Child"><t t-esc="props.message"/></div>
</templates>`);
class Child extends Widget {
static props = ["message"];
}
class App extends Widget {
static components = { Child };
}
const app = new App();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>1</div></div>");
// need to make sure there are 2 call to update props. one at component
// creation, and one at update time.
expect(env.qweb.templates.App.fn.toString()).toMatchSnapshot();
});
test("props: list of strings with optional props", async () => {
class TestWidget extends Widget {
static props = ["message", "someProp?"];
}
expect(() => {
QWeb.utils.validateProps(TestWidget, { someProp: 1 });
}).toThrow();
expect(() => {
QWeb.utils.validateProps(TestWidget, { message: 1 });
}).not.toThrow();
});
test("props: can be defined with a boolean", async () => {
class TestWidget extends Widget {
static props = { message: true };
}
expect(() => {
QWeb.utils.validateProps(TestWidget, {});
}).toThrow();
});
test("props with type array, and no element", async () => {
class TestWidget extends Widget {
static props = { myprop: { type: Array } };
}
expect(() => {
QWeb.utils.validateProps(TestWidget, { myprop: [1] });
}).not.toThrow();
expect(() => {
QWeb.utils.validateProps(TestWidget, { myprop: 1 });
}).toThrow(`Invalid Prop 'myprop' in component 'TestWidget'`);
});
test("props with type object, and no shape", async () => {
class TestWidget extends Widget {
static props = { myprop: { type: Object } };
}
expect(() => {
QWeb.utils.validateProps(TestWidget, { myprop: { a: 3 } });
}).not.toThrow();
expect(() => {
QWeb.utils.validateProps(TestWidget, { myprop: false });
}).toThrow(`Invalid Prop 'myprop' in component 'TestWidget'`);
});
test("props: extra props cause an error", async () => {
class TestWidget extends Widget {
static props = ["message"];
}
expect(() => {
QWeb.utils.validateProps(TestWidget, { message: 1, flag: true });
}).toThrow();
});
test("props: extra props cause an error, part 2", async () => {
class TestWidget extends Widget {
static props = { message: true };
}
expect(() => {
QWeb.utils.validateProps(TestWidget, { message: 1, flag: true });
}).toThrow();
});
test("props: optional prop do not cause an error", async () => {
class TestWidget extends Widget {
static props = ["message?"];
}
expect(() => {
QWeb.utils.validateProps(TestWidget, { message: 1 });
}).not.toThrow();
});
test("optional prop do not cause an error if value is undefined", async () => {
class TestWidget extends Widget {
static props = { message: { type: String, optional: true } };
}
expect(() => {
QWeb.utils.validateProps(TestWidget, { message: undefined });
}).not.toThrow();
expect(() => {
QWeb.utils.validateProps(TestWidget, { message: null });
}).toThrow();
});
test("missing required boolean prop causes an error", async () => {
class TestWidget extends Widget {
static props = ["p"];
static template = xml`<span><t t-if="props.p">hey</t></span>`;
}
class App extends Widget {
static template = xml`<div><TestWidget/></div>`;
static components = { TestWidget };
}
const w = new App(undefined, {});
let error;
try {
await w.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Missing props 'p' (component 'TestWidget')");
});
test("props are validated whenever component is updated", async () => {
let error;
class TestWidget extends Component {
static props = { p: { type: Number } };
static template = xml`<div><t t-esc="props.p"/></div>`;
async __updateProps() {
try {
await Component.prototype.__updateProps.apply(this, arguments);
} catch (e) {
error = e;
}
}
}
class Parent extends Component {
static template = xml`<div><TestWidget p="state.p"/></div>`;
static components = { TestWidget };
state: any = useState({ p: 1 });
}
const w = new Parent();
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>1</div></div>");
w.state.p = undefined;
await nextTick();
expect(error).toBeDefined();
expect(error.message).toBe("Missing props 'p' (component 'TestWidget')");
});
test("default values are applied before validating props at update", async () => {
class TestWidget extends Component {
static props = { p: { type: Number } };
static template = xml`<div><t t-esc="props.p"/></div>`;
static defaultProps = { p: 4 };
}
class Parent extends Component {
static template = xml`<div><TestWidget p="state.p"/></div>`;
static components = { TestWidget };
state: any = useState({ p: 1 });
}
const w = new Parent();
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>1</div></div>");
w.state.p = undefined;
await nextTick();
expect(fixture.innerHTML).toBe("<div><div>4</div></div>");
});
test("mix of optional and mandatory", async () => {
class Child extends Component {
static props = {
optional: { type: String, optional: true },
mandatory: Number,
};
static template = xml` <div><t t-esc="props.mandatory"/></div>`;
}
class App extends Component {
static components = { Child };
static template = xml`<div><Child/></div>`;
}
const w = new App(undefined, {});
let error;
try {
await w.mount(fixture);
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Missing props 'mandatory' (component 'Child')");
});
});
describe("default props", () => {
test("can set default values", async () => {
class TestWidget extends Component {
static defaultProps = { p: 4 };
static template = xml`<div><t t-esc="props.p"/></div>`;
}
class Parent extends Component {
static template = xml`<div><TestWidget /></div>`;
static components = { TestWidget };
}
const w = new Parent();
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>4</div></div>");
});
test("default values are also set whenever component is updated", async () => {
class TestWidget extends Widget {
static template = xml`<div><t t-esc="props.p"/></div>`;
static defaultProps = { p: 4 };
}
class Parent extends Widget {
static template = xml`<div><TestWidget p="state.p"/></div>`;
static components = { TestWidget };
state: any = useState({ p: 1 });
}
const w = new Parent();
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>1</div></div>");
w.state.p = undefined;
await nextTick();
expect(fixture.innerHTML).toBe("<div><div>4</div></div>");
});
test("can set default required boolean values", async () => {
class TestWidget extends Widget {
static props = ["p", "q"];
static defaultProps = { p: true, q: false };
static template = xml`<span><t t-if="props.p">hey</t><t t-if="!props.q">hey</t></span>`;
}
class App extends Widget {
static template = xml`<div><TestWidget/></div>`;
static components = { TestWidget };
}
const w = new App(undefined, {});
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div><span>heyhey</span></div>");
});
});
-170
View File
@@ -1,170 +0,0 @@
import { Component, Env } from "../../src/component/component";
import { processSheet } from "../../src/component/styles";
import { xml, css } from "../../src/tags";
import { makeTestFixture, makeTestEnv } from "../helpers";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
// We create before each test:
// - fixture: a div, appended to the DOM, intended to be the target of dom
// manipulations. Note that it is removed after each test.
// - env: an Env, necessary to create new components
let fixture: HTMLElement;
let env: Env;
beforeEach(() => {
fixture = makeTestFixture();
env = makeTestEnv();
Component.env = env;
document.head.innerHTML = "";
});
afterEach(() => {
fixture.remove();
});
//------------------------------------------------------------------------------
// Tests
//------------------------------------------------------------------------------
describe("styles and component", () => {
test("can define an inline stylesheet", async () => {
class App extends Component {
static template = xml`<div class="app">text</div>`;
static style = css`
.app {
color: red;
}
`;
}
expect(document.head.innerHTML).toBe("");
const app = new App();
expect(document.head.innerHTML).toBe(`<style component=\"App\">.app {
color: red;
}</style>`);
await app.mount(fixture);
const style = getComputedStyle(app.el!);
expect(style.color).toBe("red");
expect(fixture.innerHTML).toBe('<div class="app">text</div>');
});
test("inherited components properly apply css", async () => {
class App extends Component {
static template = xml`<div class="app">text</div>`;
static style = css`
.app {
color: red;
}
`;
}
class SubApp extends App {
static style = css`
.app {
font-weight: bold;
}
`;
}
expect(document.head.innerHTML).toBe("");
const app = new SubApp();
expect(document.head.innerHTML).toBe(`<style component=\"SubApp\">.app {
font-weight: bold;
}</style><style component=\"App\">.app {
color: red;
}</style>`);
await app.mount(fixture);
const style = getComputedStyle(app.el!);
expect(style.color).toBe("red");
expect(style.fontWeight).toBe("bold");
expect(fixture.innerHTML).toBe('<div class="app">text</div>');
});
test("get a meaningful error message if css helper is missing", async () => {
class App extends Component {
static template = xml`<div class="app">text</div>`;
static style = `.app {color: red;}`;
}
let error;
try {
new App();
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe(
"Invalid css stylesheet for component 'App'. Did you forget to use the 'css' tag helper?"
);
});
test("inline stylesheets are processed", async () => {
class App extends Component {
static template = xml`<div class="app">text</div>`;
static style = css`
.app {
color: red;
.some-class {
font-weight: bold;
width: 40px;
}
display: block;
}
`;
}
new App();
expect(document.head.querySelector("style")!.innerHTML).toBe(`.app {
color: red;
}
.app .some-class {
font-weight: bold;
width: 40px;
}
.app {
display: block;
}`);
});
test("properly handle rules with commas", async () => {
const sheet = processSheet(`.parent-a, .parent-b {
.child-a, .child-b {
color: red;
}
}`);
expect(sheet)
.toBe(`.parent-a .child-a, .parent-a .child-b, .parent-b .child-a, .parent-b .child-b {
color: red;
}`);
});
test("handle & selector", async () => {
let sheet = processSheet(`.btn {
&.danger {
color: red;
}
}`);
expect(sheet).toBe(`.btn.danger {
color: red;
}`);
sheet = processSheet(`.some-class {
&.btn {
.other-class ~ & {
color: red;
}
}
}`);
expect(sheet).toBe(`.other-class ~ .some-class.btn {
color: red;
}`);
});
});
-732
View File
@@ -1,732 +0,0 @@
import { Component, Env, mount } from "../../src/component/component";
import { useState } from "../../src/hooks";
import { xml } from "../../src/tags";
import { makeDeferred, makeTestEnv, makeTestFixture, nextTick, nextMicroTick } from "../helpers";
import { scheduler } from "../../src/component/scheduler";
//------------------------------------------------------------------------------
// Setup and helpers
//------------------------------------------------------------------------------
// We create before each test:
// - fixture: a div, appended to the DOM, intended to be the target of dom
// manipulations. Note that it is removed after each test.
// - env: a WEnv, necessary to create new components
let fixture: HTMLElement;
let env: Env;
beforeEach(() => {
fixture = makeTestFixture();
env = makeTestEnv();
Component.env = env;
});
afterEach(() => {
fixture.remove();
});
describe("mount targets", () => {
test("can attach a component to an existing node (if same tagname)", async () => {
class App extends Component {
static template = xml`<div t-att-class="state.customClass">app<p>another tag</p></div>`;
state = useState({ customClass: "custom" });
}
const div = document.createElement("div");
div.classList.add("arbitrary");
div.innerHTML = `<p>pre-existing</p>`;
fixture.appendChild(div);
const app = await mount(App, { target: div, position: "self" });
expect(fixture.innerHTML).toBe(
`<div class="arbitrary custom"><p>pre-existing</p>app<p>another tag</p></div>`
);
expect(div).toBe(app.el);
app.state.customClass = "custom2";
await nextTick();
expect(fixture.innerHTML).toBe(
`<div class="arbitrary custom2"><p>pre-existing</p>app<p>another tag</p></div>`
);
expect(div).toBe(app.el);
app.unmount();
// This assert is a best guess
// The use case it covers was not really thought through
// and may change in the future
expect(fixture.innerHTML).toBe("");
});
test("cannot attach a component to an existing node (if not same tagname)", async () => {
class App extends Component {
static template = xml`<span>app</span>`;
}
const div = document.createElement("div");
fixture.appendChild(div);
let error;
try {
await mount(App, { target: div, position: "self" });
} catch (e) {
error = e;
}
expect(error).toBeDefined();
expect(error.message).toBe("Cannot attach 'App' to target node (not same tag name)");
});
test("can mount a component (with position='first-child')", async () => {
class App extends Component {
static template = xml`<div>app</div>`;
}
const span = document.createElement("span");
fixture.appendChild(span);
await mount(App, { target: fixture, position: "first-child" });
expect(fixture.innerHTML).toBe("<div>app</div><span></span>");
});
test("can mount a component (with position='last-child')", async () => {
class App extends Component {
static template = xml`<div>app</div>`;
}
const span = document.createElement("span");
fixture.appendChild(span);
await mount(App, { target: fixture, position: "last-child" });
expect(fixture.innerHTML).toBe("<span></span><div>app</div>");
});
test("default mount option is 'last-child'", async () => {
class App extends Component {
static template = xml`<div>app</div>`;
}
const span = document.createElement("span");
fixture.appendChild(span);
await mount(App, { target: fixture });
expect(fixture.innerHTML).toBe("<span></span><div>app</div>");
});
});
describe("unmounting and remounting", () => {
test("widget can be unmounted and remounted", async () => {
const steps: string[] = [];
class MyWidget extends Component {
static template = xml`<div>Hey</div>`;
async willStart() {
steps.push("willstart");
}
mounted() {
steps.push("mounted");
}
willUnmount() {
steps.push("willunmount");
}
patched() {
throw new Error("patched should not be called");
}
}
const w = await mount(MyWidget, { target: fixture });
expect(fixture.innerHTML).toBe("<div>Hey</div>");
expect(steps).toEqual(["willstart", "mounted"]);
w.unmount();
expect(fixture.innerHTML).toBe("");
expect(steps).toEqual(["willstart", "mounted", "willunmount"]);
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div>Hey</div>");
expect(steps).toEqual(["willstart", "mounted", "willunmount", "mounted"]);
});
test("widget can be mounted twice without ill effect", async () => {
const steps: string[] = [];
class MyWidget extends Component {
static template = xml`<div>Hey</div>`;
async willStart() {
steps.push("willstart");
}
mounted() {
steps.push("mounted");
}
willUnmount() {
steps.push("willunmount");
}
}
const w = await mount(MyWidget, { target: fixture });
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div>Hey</div>");
expect(steps).toEqual(["willstart", "mounted"]);
});
test("state changes in willUnmount do not trigger rerender", async () => {
const steps: string[] = [];
class Child extends Component {
static template = xml`
<span><t t-esc="props.val"/><t t-esc="state.n"/></span>
`;
state = useState({ n: 2 });
__render(f) {
steps.push("render");
return super.__render(f);
}
willPatch() {
steps.push("willPatch");
}
patched() {
steps.push("patched");
}
willUnmount() {
steps.push("willUnmount");
this.state.n = 3;
}
}
class Parent extends Component {
static template = xml`
<div>
<Child t-if="state.flag" val="state.val"/>
</div>
`;
static components = { Child };
state = useState({ val: 1, flag: true });
}
const widget = await mount(Parent, { target: fixture });
expect(steps).toEqual(["render"]);
expect(fixture.innerHTML).toBe("<div><span>12</span></div>");
widget.state.flag = false;
await nextTick();
// we make sure here that no call to __render is done
expect(steps).toEqual(["render", "willUnmount"]);
});
test("state changes in willUnmount will be applied on remount", async () => {
class TestWidget extends Component {
static template = xml`
<div><t t-esc="state.val"/></div>
`;
state = useState({ val: 1 });
willUnmount() {
this.state.val = 3;
}
}
const widget = new TestWidget();
await widget.mount(fixture);
expect(fixture.innerHTML).toBe("<div>1</div>");
widget.unmount();
expect(fixture.innerHTML).toBe("");
await nextTick(); // wait for changes to be detected before remounting
await widget.mount(fixture);
expect(fixture.innerHTML).toBe("<div>3</div>");
// we want to make sure that there are no remaining tasks left at this point.
expect(Component.scheduler.tasks.length).toBe(0);
});
test("sub component is still active after being unmounted and remounted", async () => {
class Child extends Component {
static template = xml`
<p t-on-click="state.value++">
<t t-esc="state.value"/>
</p>`;
state = useState({ value: 1 });
}
class Parent extends Component {
static components = { Child };
static template = xml`<div><Child/></div>`;
}
const w = new Parent();
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div><p>1</p></div>");
fixture.querySelector("p")!.click();
await nextTick();
expect(fixture.innerHTML).toBe("<div><p>2</p></div>");
w.unmount();
await nextTick();
await w.mount(fixture);
expect(fixture.innerHTML).toBe("<div><p>2</p></div>");
fixture.querySelector("p")!.click();
await nextTick();
expect(fixture.innerHTML).toBe("<div><p>3</p></div>");
});
test("change state just before mounting component", async () => {
const steps: number[] = [];
class TestWidget extends Component {
static template = xml`
<div><t t-esc="state.val"/></div>
`;
state = useState({ val: 1 });
__render(f) {
steps.push(this.state.val);
return super.__render(f);
}
}
TestWidget.prototype.__render = jest.fn(TestWidget.prototype.__render);
const widget = new TestWidget();
widget.state.val = 2;
await widget.mount(fixture);
expect(fixture.innerHTML).toBe("<div>2</div>");
expect(TestWidget.prototype.__render).toHaveBeenCalledTimes(1);
// unmount and re-mount, as in this case, willStart won't be called, so it's
// slightly different
widget.unmount();
widget.state.val = 3;
await widget.mount(fixture);
expect(fixture.innerHTML).toBe("<div>3</div>");
expect(TestWidget.prototype.__render).toHaveBeenCalledTimes(2);
expect(steps).toEqual([2, 3]);
});
test("change state while mounting component", async () => {
const steps: number[] = [];
class TestWidget extends Component {
static template = xml`
<div><t t-esc="state.val"/></div>
`;
state = useState({ val: 1 });
__render(f) {
steps.push(this.state.val);
return super.__render(f);
}
}
TestWidget.prototype.__render = jest.fn(TestWidget.prototype.__render);
TestWidget.prototype.__patch = jest.fn(TestWidget.prototype.__patch);
const widget = new TestWidget();
let prom = widget.mount(fixture);
widget.state.val = 2;
await prom;
expect(fixture.innerHTML).toBe("<div>2</div>");
expect(TestWidget.prototype.__render).toHaveBeenCalledTimes(1);
// unmount and re-mount, as in this case, willStart won't be called, so it's
// slightly different
widget.unmount();
prom = widget.mount(fixture);
widget.state.val = 3;
await prom;
expect(fixture.innerHTML).toBe("<div>3</div>");
expect(TestWidget.prototype.__render).toHaveBeenCalledTimes(3);
expect(TestWidget.prototype.__patch).toHaveBeenCalledTimes(2);
expect(steps).toEqual([2, 2, 3]);
});
test("change state and render while mounted in detached dom", async () => {
class App extends Component {
static template = xml`<div><t t-esc="state.val"/></div>`;
state = useState({ val: 1 });
}
const detachedDiv = document.createElement("div");
const app = await mount(App, { target: detachedDiv });
expect(detachedDiv.innerHTML).toBe("<div>1</div>");
app.state.val = 2;
await nextTick();
expect(detachedDiv.innerHTML).toBe("<div>2</div>");
});
test("change state and render while not mounted ", async () => {
class App extends Component {
static template = xml`<div><t t-esc="state.val"/></div>`;
state = useState({ val: 1 });
}
const app = new App(null);
app.state.val = 2; // will call the render method (before being mounted)
await nextTick();
await app.mount(fixture);
expect(fixture.innerHTML).toBe("<div>2</div>");
});
test("destroy and change state after mounted in detached dom", async () => {
class App extends Component {
static template = xml`<div><t t-esc="state.val"/></div>`;
state = useState({ val: 1 });
}
const detachedDiv = document.createElement("div");
const app = await mount(App, { target: detachedDiv });
expect(detachedDiv.innerHTML).toBe("<div>1</div>");
app.destroy();
app.state.val = 2;
await nextTick();
expect(detachedDiv.innerHTML).toBe("");
});
test("change state while component is unmounted", async () => {
let child;
class Child extends Component {
static template = xml`<span t-esc="state.val"/>`;
state = useState({
val: "C1",
});
constructor(parent, props) {
super(parent, props);
child = this;
}
}
class Parent extends Component {
static components = { Child };
static template = xml`<div><t t-esc="state.val"/><Child/></div>`;
state = useState({ val: "P1" });
}
const parent = new Parent();
await parent.mount(fixture);
expect(fixture.innerHTML).toBe("<div>P1<span>C1</span></div>");
parent.unmount();
expect(fixture.innerHTML).toBe("");
parent.state.val = "P2";
child.state.val = "C2";
await parent.mount(fixture);
expect(fixture.innerHTML).toBe("<div>P2<span>C2</span></div>");
});
test("change state while component is mounted in a fragment", async () => {
class Child1 extends Component {
static template = xml`<span>C1</span>`;
}
class Child2 extends Component {
static template = xml`<span>C2</span>`;
}
class Parent extends Component {
static components = { Child1, Child2 };
static template = xml`
<div>
<Child1 t-if="child == 'c1'"/>
<Child2 t-if="child == 'c2'"/>
</div>`;
child: string | false = false;
}
const fragment = document.createDocumentFragment();
const parent = new Parent();
await parent.mount(fragment);
expect(parent.el.outerHTML).toBe("<div></div>");
parent.child = "c1";
parent.render();
await Promise.resolve();
parent.child = "c2";
await parent.mount(fixture);
expect(fixture.innerHTML).toBe("<div><span>C2</span></div>");
});
test("unmount component during a re-rendering", async () => {
const def = makeDeferred();
class Child extends Component {
static template = xml`<span><t t-esc="props.val"/></span>`;
willUpdateProps() {
return def;
}
}
Child.prototype.__render = jest.fn(Child.prototype.__render);
class Parent extends Component {
static template = xml`<div><Child val="state.val"/></div>`;
static components = { Child };
state = useState({ val: 1 });
}
const parent = new Parent();
await parent.mount(fixture);
expect(fixture.innerHTML).toBe("<div><span>1</span></div>");
expect(Child.prototype.__render).toBeCalledTimes(1);
parent.state.val = 2;
await nextTick();
expect(fixture.innerHTML).toBe("<div><span>1</span></div>");
parent.unmount();
expect(fixture.innerHTML).toBe("");
def.resolve();
await nextTick();
expect(fixture.innerHTML).toBe("");
expect(Child.prototype.__render).toBeCalledTimes(1);
});
test("widget can be mounted on different target", async () => {
class MyWidget extends Component {
static template = xml`<div>Hey</div>`;
patched() {
throw new Error("patched should not be called");
}
}
const div = document.createElement("div");
const span = document.createElement("span");
fixture.appendChild(div);
fixture.appendChild(span);
const w = new MyWidget();
await w.mount(div);
expect(fixture.innerHTML).toBe("<div><div>Hey</div></div><span></span>");
await w.mount(span);
expect(fixture.innerHTML).toBe("<div></div><span><div>Hey</div></span>");
});
test("widget can be mounted on different target, another situation", async () => {
const def = makeDeferred();
const steps: string[] = [];
class MyWidget extends Component {
static template = xml`<div>Hey</div>`;
async willStart() {
return def;
}
patched() {
throw new Error("patched should not be called");
}
}
const div = document.createElement("div");
const span = document.createElement("span");
fixture.appendChild(div);
fixture.appendChild(span);
const w = new MyWidget();
w.mount(div).catch(() => steps.push("1 catch"));
await nextTick();
expect(fixture.innerHTML).toBe("<div></div><span></span>");
w.mount(span).then(() => steps.push("2 resolved"));
// we wait two microticks because this is the number of internal promises
// that need to be resolved/rejected, and because we want to prove here
// that the first mount operation is cancelled immediately, and not after
// one full tick.
await nextMicroTick();
await nextMicroTick();
expect(steps).toEqual([]);
await nextTick();
expect(fixture.innerHTML).toBe("<div></div><span></span>");
def.resolve();
await nextTick();
expect(steps).toEqual(["2 resolved"]);
expect(fixture.innerHTML).toBe("<div></div><span><div>Hey</div></span>");
});
test("component can be mounted on same target, another situation", async () => {
const def = makeDeferred();
const steps: string[] = [];
class MyWidget extends Component {
static template = xml`<div>Hey</div>`;
async willStart() {
return def;
}
patched() {
throw new Error("patched should not be called");
}
}
const w = new MyWidget();
w.mount(fixture).then(() => steps.push("1 resolved"));
await nextTick();
expect(fixture.innerHTML).toBe("");
w.mount(fixture).then(() => steps.push("2 resolved"));
await nextTick();
expect(steps).toEqual([]);
expect(fixture.innerHTML).toBe("");
def.resolve();
await nextTick();
expect(fixture.innerHTML).toBe("<div>Hey</div>");
expect(steps).toEqual(["1 resolved", "2 resolved"]);
});
test("mounting a destroyed widget", async () => {
class MyWidget extends Component {
static template = xml`<div>Hey</div>`;
}
const w = new MyWidget();
w.destroy(); // because, why not
let error;
try {
await w.mount(fixture);
} catch (e) {
error = e;
}
expect(scheduler.tasks.length).toBe(0);
expect(error).toBeDefined();
expect(error.message).toBe("Cannot mount a destroyed component");
});
test("destroying a sub-component cleans itself from parent's vnode", async () => {
class C1 extends Component {
static template = xml`<div><div><t t-esc="props.a"/></div></div>`;
}
class P extends Component {
static components = { C1 };
static template = xml`<div><div><C1 t-props="state" t-if="state.a"/></div></div>`;
state = {
a: "first",
};
}
const parent = new P();
await parent.mount(fixture);
expect(fixture.textContent).toBe("first");
parent.unmount();
parent.state.a = "";
parent.mount(fixture);
parent.state.a = "fixed";
await parent.render();
expect(fixture.textContent).toBe("fixed");
});
test("destroying a sub-component cleans itself from parent's vnode, part 2", async () => {
class C1 extends Component {
static template = xml`<div><div><t t-esc="props.a"/></div></div>`;
}
class P extends Component {
static components = { C1 };
static template = xml`<div><div><C1 t-props="state" t-if="state.a"/>some text</div></div>`;
state = {
a: "first",
};
}
const parent = new P();
await parent.mount(fixture);
expect(fixture.textContent).toBe("firstsome text");
parent.unmount();
parent.state.a = "";
parent.mount(fixture);
parent.state.a = "fixed";
await parent.render();
expect(fixture.textContent).toBe("fixedsome text");
});
test("destroying a sub-component cleans itself from parent's vnode, part 3", async () => {
class C1 extends Component {
static template = xml`<div><div><t t-esc="props.a"/></div></div>`;
}
class C2 extends Component {
static template = xml`<C1 a="props.a"/>`;
static components = { C1 };
}
class P extends Component {
static components = { C2 };
static template = xml`<div><div><C2 t-props="state" t-if="state.a"/></div></div>`;
state = {
a: "first",
};
}
const parent = new P();
await parent.mount(fixture);
expect(fixture.textContent).toBe("first");
parent.unmount();
parent.state.a = "";
parent.mount(fixture);
parent.state.a = "fixed";
await parent.render();
expect(fixture.textContent).toBe("fixed");
});
test("destroying a sub-component cleans itself from parent's vnode, part 4", async () => {
class C1 extends Component {
static template = xml`<div><div><t t-esc="props.a"/></div></div>`;
}
class C2 extends Component {
static template = xml`<C1 a="props.a"/>`;
static components = { C1 };
}
class P extends Component {
static components = { C2 };
static template = xml`<div><div><C2 t-props="state" t-if="state.a"/>some text</div></div>`;
state = {
a: "first",
};
}
const parent = new P();
await parent.mount(fixture);
expect(fixture.textContent).toBe("firstsome text");
parent.unmount();
parent.state.a = "";
parent.mount(fixture);
parent.state.a = "fixed";
await parent.render();
expect(fixture.textContent).toBe("fixedsome text");
});
test("remounting component tree where a component implement shouldupdate", async () => {
let state: any;
const steps = [];
class Child extends Component {
static template = xml`<div><t t-esc="state.word"/><t t-esc="props.name"/></div>`;
state = useState({ word: "hello" });
constructor(parent, props) {
super(parent, props);
state = this.state;
}
patched() {
steps.push("patched");
}
mounted() {
steps.push("mounted");
}
willUnmount() {
steps.push("willUnmount");
}
shouldUpdate() {
return false;
}
}
class Parent extends Component {
static template = xml`<div><Child name="state.name"/></div>`;
static components = { Child };
state = useState({ name: "World" });
}
const parent = await mount(Parent, { target: fixture });
expect(fixture.innerHTML).toBe("<div><div>helloWorld</div></div>");
parent.unmount();
expect(fixture.innerHTML).toBe("");
await parent.mount(fixture);
expect(fixture.innerHTML).toBe("<div><div>helloWorld</div></div>");
state.word = "test";
await nextTick();
expect(fixture.innerHTML).toBe("<div><div>testWorld</div></div>");
expect(steps).toEqual(["mounted", "willUnmount", "mounted", "patched"]);
});
});
@@ -0,0 +1,15 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`app destroy remove the widget from the DOM 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
@@ -0,0 +1,929 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`basics Multi root component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block2 = createBlock(\`<span>1</span>\`);
let block4 = createBlock(\`<span>2</span>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = block2();
let b3 = text(\`text\`);
let b4 = block4();
return multi([b2, b3, b4]);
}
}"
`;
exports[`basics a class component inside a class component, no external dom 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>simple vnode</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics a class component inside a class component, no external dom 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics a component cannot be mounted in a detached node 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics a component inside a component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>simple vnode</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics a component inside a component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-child-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`basics can be clicked on and updated 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-text-0/><button block-handler-1=\\"click\\">Inc</button></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['state'].counter;
const v1 = ctx['state'];
let d2 = (e) => {const res = (() => { return v1.counter++ })(); if (typeof res === 'function') { res(e) }};
return block1([d1, d2]);
}
}"
`;
exports[`basics can handle empty props 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].val;
return block1([d1]);
}
}"
`;
exports[`basics can handle empty props 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {val: undefined}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`basics can mount a component with just some text 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return text(\`just text\`);
}
}"
`;
exports[`basics can mount a component with no text 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return text(\`\`);
}
}"
`;
exports[`basics can mount a simple component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>simple vnode</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics can mount a simple component with multiple roots 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block2 = createBlock(\`<span/>\`);
let block3 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = block2();
let b3 = block3();
return multi([b2, b3]);
}
}"
`;
exports[`basics can mount a simple component with props 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].value;
return block1([d1]);
}
}"
`;
exports[`basics cannot mount on a documentFragment 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>content</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics child can be updated 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return text(ctx['props'].value);
}
}"
`;
exports[`basics child can be updated 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {value: ctx['state'].counter}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics class component with dynamic text 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>My value: <block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['value'];
return block1([d1]);
}
}"
`;
exports[`basics class parent, class child component with props 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-text-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].value;
return block1([d1]);
}
}"
`;
exports[`basics class parent, class child component with props 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {value: 42}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics component with dynamic content can be updated 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['value'];
return block1([d1]);
}
}"
`;
exports[`basics do not remove previously rendered dom if not necessary 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics do not remove previously rendered dom if not necessary, variation 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><h1>h1</h1><span><block-text-0/></span></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['state'].value;
return block1([d1]);
}
}"
`;
exports[`basics has no el after creation 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>simple</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics higher order components parent and child 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>a</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics higher order components parent and child 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>b</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics higher order components parent and child 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['props'].child==='a') {
b2 = component(\`ChildA\`, {}, key + \`__1\`, node, ctx);
} else {
b3 = component(\`ChildB\`, {}, key + \`__2\`, node, ctx);
}
return multi([b2, b3]);
}
}"
`;
exports[`basics higher order components parent and child 4`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {child: ctx['state'].child}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics parent, child and grandchild 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>hey</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics parent, child and grandchild 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`GrandChild\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics parent, child and grandchild 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics props is set on root component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>simple vnode</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics reconciliation alg is not confused in some specific situation 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>child</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics reconciliation alg is not confused in some specific situation 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/><block-child-1/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
let b3 = component(\`Child\`, {}, key + \`__2\`, node, ctx);
return block1([], [b2, b3]);
}
}"
`;
exports[`basics same t-keys in two different places 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].blip;
return block1([d1]);
}
}"
`;
exports[`basics same t-keys in two different places 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><div><block-child-0/></div><div><block-child-1/></div></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {blip: '1'}, key + \`__1\`, node, ctx);
let b3 = component(\`Child\`, {blip: '2'}, key + \`__2\`, node, ctx);
return block1([], [b2, b3]);
}
}"
`;
exports[`basics simple component with a dynamic text 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-text-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['value'];
return block1([d1]);
}
}"
`;
exports[`basics simple component, useState 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-text-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['state'].value;
return block1([d1]);
}
}"
`;
exports[`basics some simple sanity checks (el/status) 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>simple vnode</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics t-elif works with t-component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>hey</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics t-elif works with t-component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/><block-child-1/></div>\`);
let block2 = createBlock(\`<div>somediv</div>\`);
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['state'].flag) {
b2 = block2();
} else if (!ctx['state'].flag) {
b3 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return block1([], [b2, b3]);
}
}"
`;
exports[`basics t-else with empty string works with t-component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>hey</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics t-else with empty string works with t-component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/><block-child-1/></div>\`);
let block2 = createBlock(\`<div>somediv</div>\`);
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['state'].flag) {
b2 = block2();
} else {
b3 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return block1([], [b2, b3]);
}
}"
`;
exports[`basics t-else works with t-component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>hey</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics t-else works with t-component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/><block-child-1/></div>\`);
let block2 = createBlock(\`<div>somediv</div>\`);
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['state'].flag) {
b2 = block2();
} else {
b3 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return block1([], [b2, b3]);
}
}"
`;
exports[`basics t-if works with t-component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>hey</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics t-if works with t-component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].flag) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return block1([], [b2]);
}
}"
`;
exports[`basics t-key on a component with t-if, and a sibling component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>child</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics t-key on a component with t-if, and a sibling component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/><block-child-1/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (false) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
b3 = component(\`Child\`, {}, key + \`__2\`, node, ctx);
return block1([], [b2, b3]);
}
}"
`;
exports[`basics text after a conditional component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<p>simple vnode</p>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics text after a conditional component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/><span><block-text-0/></span></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].hasChild) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
let d1 = ctx['state'].text;
return block1([d1], [b2]);
}
}"
`;
exports[`basics three level of components with collapsing root nodes 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>2</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics three level of components with collapsing root nodes 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`GrandChild\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics three level of components with collapsing root nodes 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics throws if mounting on target=null 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>simple vnode</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics two child components 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>simple vnode</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics two child components 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
let b3 = component(\`Child\`, {}, key + \`__2\`, node, ctx);
return multi([b2, b3]);
}
}"
`;
exports[`basics updating a component with t-foreach as root 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
ctx = Object.create(ctx);
const [k1, v1, l1, c1] = prepareList(ctx['items']);
for (let i1 = 0; i1 < l1; i1++) {
ctx[\`item\`] = v1[i1];
let key1 = ctx['item'];
c1[i1] = withKey(text(ctx['item']), key1);
}
return list(c1);
}
}"
`;
exports[`basics widget after a t-foreach 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics widget after a t-foreach 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/><block-child-1/></div>\`);
return function template(ctx, node, key = \\"\\") {
ctx = Object.create(ctx);
const [k2, v2, l2, c2] = prepareList(Array(2));
for (let i1 = 0; i1 < l2; i1++) {
ctx[\`elem\`] = v2[i1];
ctx[\`elem_index\`] = i1;
let key1 = ctx['elem_index'];
c2[i1] = withKey(text(\`txt\`), key1);
}
ctx = ctx.__proto__;
let b2 = list(c2);
let b4 = component(\`SomeComponent\`, {}, key + \`__1\`, node, ctx);
return block1([], [b2, b4]);
}
}"
`;
exports[`basics zero or one child components 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>simple vnode</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics zero or one child components 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].hasChild) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return multi([b2]);
}
}"
`;
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,31 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`basics no component catching error lead to full app destruction 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>hey<block-text-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].flag&&ctx['state'].this.will.crash;
return block1([d1]);
}
}"
`;
exports[`basics no component catching error lead to full app destruction 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`ErrorComponent\`, {flag: ctx['state'].flag}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
@@ -0,0 +1,78 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`event handling can set handler on sub component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>simple vnode</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`event handling can set handler on sub component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let assign = Object.assign;
return function template(ctx, node, key = \\"\\") {
let h2 = [\`click\`, ctx, 'inc'];
let b2 = assign(component(\`Child\`, {}, key + \`__1\`, node, ctx), {handlers: [h2]});
let b3 = text(ctx['state'].value);
return multi([b2, b3]);
}
}"
`;
exports[`event handling handler receive the event as argument 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>simple vnode</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`event handling handler receive the event as argument 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let assign = Object.assign;
return function template(ctx, node, key = \\"\\") {
let h2 = [\`click\`, ctx, 'inc'];
let b2 = assign(component(\`Child\`, {}, key + \`__1\`, node, ctx), {handlers: [h2]});
let b3 = text(ctx['state'].value);
return multi([b2, b3]);
}
}"
`;
exports[`event handling support for callable expression in event handler 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-text-0/><input type=\\"text\\" block-handler-1=\\"input\\"/></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['state'].value;
const v1 = ctx['obj'];
let d2 = (e) => {const res = (() => { return v1.onInput })(); if (typeof res === 'function') { res(e) }};
return block1([d1, d2]);
}
}"
`;
@@ -0,0 +1,191 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`basics basic use 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>child<block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].p;
return block1([d1]);
}
}"
`;
exports[`basics basic use 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {p: 1}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics can select a sub widget 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>CHILD 1</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics can select a sub widget 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>CHILD 2</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics can select a sub widget 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['env'].flag) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
if (!ctx['env'].flag) {
b3 = component(\`OtherChild\`, {}, key + \`__2\`, node, ctx);
}
return multi([b2, b3]);
}
}"
`;
exports[`basics can select a sub widget, part 2 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>CHILD 1</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics can select a sub widget, part 2 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>CHILD 2</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics can select a sub widget, part 2 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['state'].flag) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
if (!ctx['state'].flag) {
b3 = component(\`OtherChild\`, {}, key + \`__2\`, node, ctx);
}
return multi([b2, b3]);
}
}"
`;
exports[`basics sub widget is interactive 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><button block-handler-0=\\"click\\">click</button>child<block-text-1/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = [ctx, 'inc'];
let d2 = ctx['state'].val;
return block1([d1, d2]);
}
}"
`;
exports[`basics sub widget is interactive 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {p: 1}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics top level sub widget with a parent 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>Hello</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`basics top level sub widget with a parent 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`ComponentC\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`basics top level sub widget with a parent 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`ComponentB\`, {}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
@@ -0,0 +1,641 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`lifecycle hooks basic checks for a component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>test</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks components are unmounted and destroyed if no longer in DOM 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks components are unmounted and destroyed if no longer in DOM 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].ok) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return multi([b2]);
}
}"
`;
exports[`lifecycle hooks components are unmounted and destroyed if no longer in DOM, even after updateprops 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].n;
return block1([d1]);
}
}"
`;
exports[`lifecycle hooks components are unmounted and destroyed if no longer in DOM, even after updateprops 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block2 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].flag) {
let b3 = component(\`Child\`, {n: ctx['state'].n}, key + \`__1\`, node, ctx);
b2 = block2([], [b3]);
}
return multi([b2]);
}
}"
`;
exports[`lifecycle hooks hooks are called in proper order in widget creation/destruction 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks hooks are called in proper order in widget creation/destruction 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks lifecycle semantics 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {a: ctx['state'].a}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 2 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 2 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`GrandChild\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 2 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].hasChild) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return multi([b2]);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 3 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 3 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`GrandChild\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 3 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].hasChild) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return multi([b2]);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 4 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 4 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`GrandChild\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 4 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].hasChild) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return multi([b2]);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 5 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 5 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].hasChild) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return multi([b2]);
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 6 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks lifecycle semantics, part 6 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {value: ctx['state'].value}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`lifecycle hooks mounted hook is called if mounted in DOM 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks mounted hook is called on subcomponents, in proper order 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks mounted hook is called on subcomponents, in proper order 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`lifecycle hooks mounted hook is called on subsubcomponents, in proper order 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks mounted hook is called on subsubcomponents, in proper order 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`ChildChild\`, {}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`lifecycle hooks mounted hook is called on subsubcomponents, in proper order 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2;
if (ctx['state'].flag) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
return block1([], [b2]);
}
}"
`;
exports[`lifecycle hooks onRender 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<button block-handler-0=\\"click\\"><block-text-1/></button>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = [ctx, 'increment'];
let d2 = ctx['state'].value;
return block1([d1, d2]);
}
}"
`;
exports[`lifecycle hooks onRender 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`lifecycle hooks patched hook is called after updateProps 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks patched hook is called after updateProps 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {a: ctx['state'].a}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`lifecycle hooks patched hook is called after updating State 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks willPatch, patched hook are called on subsubcomponents, in proper order 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-text-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].n;
return block1([d1]);
}
}"
`;
exports[`lifecycle hooks willPatch, patched hook are called on subsubcomponents, in proper order 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`ChildChild\`, {n: ctx['props'].n}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`lifecycle hooks willPatch, patched hook are called on subsubcomponents, in proper order 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {n: ctx['state'].n}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`lifecycle hooks willStart hook is called on sub component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks willStart hook is called on sub component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`lifecycle hooks willStart is called 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>simple vnode</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks willStart is called with component as this 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>simple vnode</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks willStart, mounted on subwidget rendered after main is mounted in some other position 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`lifecycle hooks willStart, mounted on subwidget rendered after main is mounted in some other position 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/><block-child-1/></div>\`);
let block3 = createBlock(\`<div/>\`);
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['state'].ok) {
b2 = component(\`Child\`, {}, key + \`__1\`, node, ctx);
} else {
b3 = block3();
}
return block1([], [b2, b3]);
}
}"
`;
exports[`lifecycle hooks willUpdateProps hook is called 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].n;
return block1([d1]);
}
}"
`;
exports[`lifecycle hooks willUpdateProps hook is called 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {n: ctx['state'].n}, key + \`__1\`, node, ctx);
}
}"
`;
@@ -0,0 +1,160 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`basics accept ES6-like syntax for props (with getters) 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].greetings;
return block1([d1]);
}
}"
`;
exports[`basics accept ES6-like syntax for props (with getters) 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {greetings: ctx['greetings']}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`basics explicit object prop 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['state'].someval;
return block1([d1]);
}
}"
`;
exports[`basics explicit object prop 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {value: ctx['state'].val}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`basics t-set with a body expression can be passed in props, and then t-raw 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/><block-child-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].val;
let b2 = html(ctx['props'].val);
return block1([d1], [b2]);
}
}"
`;
exports[`basics t-set with a body expression can be passed in props, and then t-raw 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
let block2 = createBlock(\`<p>43</p>\`);
return function template(ctx, node, key = \\"\\") {
ctx = Object.create(ctx);
let b2 = block2();
ctx[\`abc\`] = b2;
let b3 = component(\`Child\`, {val: ctx['abc']}, key + \`__1\`, node, ctx);
return block1([], [b3]);
}
}"
`;
exports[`basics t-set with a body expression can be used as textual prop 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].val;
return block1([d1]);
}
}"
`;
exports[`basics t-set with a body expression can be used as textual prop 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
ctx = Object.create(ctx);
ctx[\`abc\`] = \`42\`;
let b2 = component(\`Child\`, {val: ctx['abc']}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`basics t-set works 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].val;
return block1([d1]);
}
}"
`;
exports[`basics t-set works 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
ctx = Object.create(ctx);
ctx[\`val\`] = 42;
let b2 = component(\`Child\`, {val: ctx['val']}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
@@ -0,0 +1,43 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`refs refs are properly bound in slots 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-child-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = callSlot(ctx, node, key, 'footer');
return block1([], [b2]);
}
}"
`;
exports[`refs refs are properly bound in slots 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let assign = Object.assign;
let block1 = createBlock(\`<div><span class=\\"counter\\"><block-text-0/></span><block-child-0/></div>\`);
let block2 = createBlock(\`<button block-handler-0=\\"click\\" block-ref=\\"1\\">do something</button>\`);
const slot3 = ctx => node => {
const refs = ctx.__owl__.refs
let d2 = [ctx, 'doSomething'];
let d3 = (el) => refs[\`myButton\`] = el;
return block2([d2, d3]);
}
return function template(ctx, node, key = \\"\\") {
const refs = ctx.__owl__.refs;
let d1 = ctx['state'].val;
const ctx2 = capture(ctx);
let b3 = assign(component(\`Dialog\`, {}, key + \`__1\`, node, ctx), {slots: {'footer': slot3(ctx2)}});
return block1([d1], [b3]);
}
}"
`;
File diff suppressed because it is too large Load Diff
@@ -0,0 +1,395 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`style and class handling can set class on multi root component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block2 = createBlock(\`<div>a</div>\`);
let block3 = createBlock(\`<span block-attribute-0=\\"class\\">b</span>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = block2();
let d1 = ctx['props'].class;
let b3 = block3([d1]);
return multi([b2, b3]);
}
}"
`;
exports[`style and class handling can set class on multi root component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {class: 'fromparent'}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling can set class on sub component, as prop 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div block-attribute-0=\\"class\\">child</div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling can set class on sub component, as prop 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {class: 'some-class'}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling can set class on sub sub component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div block-attribute-0=\\"class\\">childchild</div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling can set class on sub sub component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`ChildChild\`, {class: (ctx['props'].class||'')+' fromchild'}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling can set class on sub sub component 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {class: 'fromparent'}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling can set more than one class on sub component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div block-attribute-0=\\"class\\">child</div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling can set more than one class on sub component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {class: 'a b'}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling can set style and class inside component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div style=\\"font-weight:bold;\\" class=\\"some-class\\">world</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`style and class handling class on sub component, which is switched to another 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div block-attribute-0=\\"class\\">a</div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling class on sub component, which is switched to another 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span block-attribute-0=\\"class\\">b</span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling class on sub component, which is switched to another 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['props'].child==='a') {
b2 = component(\`ChildA\`, {class: ctx['props'].class}, key + \`__1\`, node, ctx);
} else {
b3 = component(\`ChildB\`, {class: ctx['props'].class}, key + \`__2\`, node, ctx);
}
return multi([b2, b3]);
}
}"
`;
exports[`style and class handling class on sub component, which is switched to another 4`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {class: 'someclass',child: ctx['state'].child}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling class with extra whitespaces (variation) 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div block-attribute-0=\\"class\\"/>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling class with extra whitespaces (variation) 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<p><block-child-0/></p>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {class: 'a b c d'}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`style and class handling class with extra whitespaces 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div block-attribute-0=\\"class\\"/>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling class with extra whitespaces 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {class: 'a b c d'}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling component class and parent class combine together 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div class=\\"child\\" block-attribute-0=\\"class\\">child</div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling component class and parent class combine together 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {class: 'from parent'}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling empty class attribute is not added on widget root el 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span block-attribute-0=\\"class\\"/>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling empty class attribute is not added on widget root el 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {class: undefined}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
exports[`style and class handling no class is set is child ignores it 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>child</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`style and class handling no class is set is child ignores it 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {class: 'hey'}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling no class is set is parent does not give it as prop 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div block-attribute-0=\\"class\\">child</div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].class;
return block1([d1]);
}
}"
`;
exports[`style and class handling no class is set is parent does not give it as prop 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`style and class handling t-att-class is properly added/removed on widget root el (v2) 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span class=\\"c\\" block-attribute-0=\\"class\\"/>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = {d:ctx['state'].d,...ctx['props'].class};
return block1([d1]);
}
}"
`;
exports[`style and class handling t-att-class is properly added/removed on widget root el (v2) 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = component(\`Child\`, {class: {b:ctx['state'].b}}, key + \`__1\`, node, ctx);
return block1([], [b2]);
}
}"
`;
@@ -0,0 +1,292 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`t-call dynamic t-call 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
ctx = Object.create(ctx);
let b1 = text(\` owl \`);
ctx[zero] = b1;
const template2 = (ctx['current'].template);
return call(template2, ctx, node, key + \`__1\`);
}
}"
`;
exports[`t-call dynamic t-call 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>foo</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-call dynamic t-call 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return text(\`bar\`);
}
}"
`;
exports[`t-call handlers are properly bound through a t-call 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<p block-handler-0=\\"click\\">lucas</p>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = [ctx, 'update'];
return block1([d1]);
}
}"
`;
exports[`t-call handlers are properly bound through a t-call 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
const callTemplate_2 = getTemplate(\`__template__9\`);
let block1 = createBlock(\`<div><block-child-0/><block-text-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = callTemplate_2(ctx, node, key + \`__1\`);
let d1 = ctx['counter'];
return block1([d1], [b2]);
}
}"
`;
exports[`t-call handlers with arguments are properly bound through a t-call 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<p block-handler-0=\\"click\\">lucas</p>\`);
return function template(ctx, node, key = \\"\\") {
const arg1 = [ctx['a']];
let d1 = [ctx, 'update', arg1];
return block1([d1]);
}
}"
`;
exports[`t-call handlers with arguments are properly bound through a t-call 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
const callTemplate_2 = getTemplate(\`__template__9\`);
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = callTemplate_2(ctx, node, key + \`__1\`);
return block1([], [b2]);
}
}"
`;
exports[`t-call parent is set within t-call 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`t-call parent is set within t-call 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>lucas</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-call parent is set within t-call 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
const callTemplate_2 = getTemplate(\`__template__9\`);
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = callTemplate_2(ctx, node, key + \`__1\`);
return block1([], [b2]);
}
}"
`;
exports[`t-call parent is set within t-call with no parentNode 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`t-call parent is set within t-call with no parentNode 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>lucas</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-call parent is set within t-call with no parentNode 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
const callTemplate_2 = getTemplate(\`__template__9\`);
return function template(ctx, node, key = \\"\\") {
return callTemplate_2(ctx, node, key + \`__1\`);
}
}"
`;
exports[`t-call sub components in two t-calls 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].val;
return block1([d1]);
}
}"
`;
exports[`t-call sub components in two t-calls 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
const callTemplate_2 = getTemplate(\`sub\`);
const callTemplate_4 = getTemplate(\`sub\`);
let block3 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2,b3;
if (ctx['state'].val===1) {
b2 = callTemplate_2(ctx, node, key + \`__1\`);
} else {
let b4 = callTemplate_4(ctx, node, key + \`__3\`);
b3 = block3([], [b4]);
}
return multi([b2, b3]);
}
}"
`;
exports[`t-call sub components in two t-calls 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {val: ctx['state'].val}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`t-call t-call in t-foreach and children component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return component(\`Child\`, {val: ctx['val']}, key + \`__1\`, node, ctx);
}
}"
`;
exports[`t-call t-call in t-foreach and children component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span><block-text-0/></span>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['props'].val;
return block1([d1]);
}
}"
`;
exports[`t-call t-call in t-foreach and children component 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
const callTemplate_2 = getTemplate(\`__template__9\`);
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
ctx = Object.create(ctx);
const [k2, v2, l2, c2] = prepareList(['a','b','c']);
for (let i1 = 0; i1 < l2; i1++) {
ctx[\`val\`] = v2[i1];
ctx[\`val_first\`] = i1 === 0;
ctx[\`val_last\`] = i1 === v2.length - 1;
ctx[\`val_index\`] = i1;
ctx[\`val_value\`] = k2[i1];
let key1 = ctx['val'];
c2[i1] = withKey(callTemplate_2(ctx, node, key + \`__1__\${key1}\`), key1);
}
let b2 = list(c2);
return block1([], [b2]);
}
}"
`;
@@ -0,0 +1,16 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`t-call-block simple t-call-block with static text 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let b2 = ctx['myBlock']();
return block1([], [b2]);
}
}"
`;
@@ -0,0 +1,226 @@
// Jest Snapshot v1, https://goo.gl/fbAQLP
exports[`t-component can switch between dynamic components without the need for a t-key 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>child a</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-component can switch between dynamic components without the need for a t-key 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>child b</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-component can switch between dynamic components without the need for a t-key 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let Comp2 = ctx['constructor'].components[ctx['state'].child];
let b2 = toggler(Comp2, component(Comp2, {}, key + \`__1\`, node, ctx));
return block1([], [b2]);
}
}"
`;
exports[`t-component can use dynamic components (the class) if given (with different root tagname) 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>child a</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-component can use dynamic components (the class) if given (with different root tagname) 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>child b</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-component can use dynamic components (the class) if given (with different root tagname) 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let Comp2 = ctx['myComponent'];
return toggler(Comp2, component(Comp2, {}, key + \`__1\`, node, ctx));
}
}"
`;
exports[`t-component can use dynamic components (the class) if given 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>child a</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-component can use dynamic components (the class) if given 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<span>child b</span>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-component can use dynamic components (the class) if given 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let Comp2 = ctx['myComponent'];
return toggler(Comp2, component(Comp2, {}, key + \`__1\`, node, ctx));
}
}"
`;
exports[`t-component modifying a sub widget 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-text-0/><button block-handler-1=\\"click\\">Inc</button></div>\`);
return function template(ctx, node, key = \\"\\") {
let d1 = ctx['state'].counter;
const v1 = ctx['state'];
let d2 = (e) => {const res = (() => { return v1.counter++ })(); if (typeof res === 'function') { res(e) }};
return block1([d1, d2]);
}
}"
`;
exports[`t-component modifying a sub widget 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div><block-child-0/></div>\`);
return function template(ctx, node, key = \\"\\") {
let Comp2 = ctx['Counter'];
let b2 = toggler(Comp2, component(Comp2, {}, key + \`__1\`, node, ctx));
return block1([], [b2]);
}
}"
`;
exports[`t-component switching dynamic component 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>child a</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-component switching dynamic component 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
return text(\`child b\`);
}
}"
`;
exports[`t-component switching dynamic component 3`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let Comp2 = ctx['Child'];
return toggler(Comp2, component(Comp2, {}, key + \`__1\`, node, ctx));
}
}"
`;
exports[`t-component t-component works in simple case 1`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
let block1 = createBlock(\`<div>child</div>\`);
return function template(ctx, node, key = \\"\\") {
return block1();
}
}"
`;
exports[`t-component t-component works in simple case 2`] = `
"function anonymous(bdom, helpers
) {
let { text, createBlock, list, multi, html, toggler, component } = bdom;
let { withDefault, getTemplate, prepareList, withKey, zero, call, callSlot, capture, shallowEqual } = helpers;
return function template(ctx, node, key = \\"\\") {
let Comp2 = ctx['Child'];
return toggler(Comp2, component(Comp2, {}, key + \`__1\`, node, ctx));
}
}"
`;

Some files were not shown because too many files have changed in this diff Show More