Commit f1e88cb3 authored by wang's avatar wang

wn test

parent 2a6ec7cf
......@@ -129,17 +129,18 @@ while True:
# _process.exit(0)
# '''
)
# # with open('js_dom_run1.js', 'w', encoding='utf-8') as f:
# # f.write(code1 + '\n\n' + c)`
code1 = open('js_dom_run.js','r').read()
with open('js_dom_run1.js', 'w', encoding='utf-8') as f:
f.write(code1 + '\n\n' + c)
t1 = time.time()
token = list(db.token_shape.aggregate( [ {'$match': {'update_time':{'$gte': int(time.time() * 1000) - 60*60*12}}}, { '$sample': { 'size': 1 } } ] ))[0]['_id']
# token = '11'
# r = requests.get('http://127.0.0.1:5000/getinfo').json()['message']
# r = requests.get('http://127.0.0.1:3001').json()
# p = subprocess.Popen(['node', 'js_dom_run.js', selectId, '11'], stdin=subprocess.PIPE, stdout=subprocess.PIPE,
p = subprocess.Popen(['node', 'js_dom_run1.js', selectId, '11'], stdin=subprocess.PIPE, stdout=subprocess.PIPE,
# p = subprocess.Popen(['node', 'src_run_chrome_105.js', selectId, '11', token], stdin=subprocess.PIPE, stdout=subprocess.PIPE,
# p = subprocess.Popen(['node', 'src_run_company_chrome.js', selectId, '11', token], stdin=subprocess.PIPE, stdout=subprocess.PIPE,
p = subprocess.Popen(['node', 'src_run1.js', selectId, '11', token], stdin=subprocess.PIPE, stdout=subprocess.PIPE,
# p = subprocess.Popen(['node', 'src_run1.js', selectId, '11', token], stdin=subprocess.PIPE, stdout=subprocess.PIPE,
stderr=subprocess.PIPE)
output, err = p.communicate(timeout=10)
tmp = ''
......
This diff is collapsed.
Copyright (c) 2010 Elijah Insua
Permission is hereby granted, free of charge, to any person
obtaining a copy of this software and associated documentation
files (the "Software"), to deal in the Software without
restriction, including without limitation the rights to use,
copy, modify, merge, publish, distribute, sublicense, and/or sell
copies of the Software, and to permit persons to whom the
Software is furnished to do so, subject to the following
conditions:
The above copyright notice and this permission notice shall be
included in all copies or substantial portions of the Software.
THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES
OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT
HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY,
WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
OTHER DEALINGS IN THE SOFTWARE.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
{
"Object": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Function": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Number": {
"writable": true,
"enumerable": false,
"configurable": true
},
"parseFloat": {
"writable": true,
"enumerable": false,
"configurable": true
},
"parseInt": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Infinity": {
"writable": false,
"enumerable": false,
"configurable": false
},
"NaN": {
"writable": false,
"enumerable": false,
"configurable": false
},
"undefined": {
"writable": false,
"enumerable": false,
"configurable": false
},
"Boolean": {
"writable": true,
"enumerable": false,
"configurable": true
},
"String": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Symbol": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Date": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Promise": {
"writable": true,
"enumerable": false,
"configurable": true
},
"RegExp": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Error": {
"writable": true,
"enumerable": false,
"configurable": true
},
"AggregateError": {
"writable": true,
"enumerable": false,
"configurable": true
},
"EvalError": {
"writable": true,
"enumerable": false,
"configurable": true
},
"RangeError": {
"writable": true,
"enumerable": false,
"configurable": true
},
"ReferenceError": {
"writable": true,
"enumerable": false,
"configurable": true
},
"SyntaxError": {
"writable": true,
"enumerable": false,
"configurable": true
},
"TypeError": {
"writable": true,
"enumerable": false,
"configurable": true
},
"URIError": {
"writable": true,
"enumerable": false,
"configurable": true
},
"globalThis": {
"writable": true,
"enumerable": false,
"configurable": true
},
"JSON": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Math": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Intl": {
"writable": true,
"enumerable": false,
"configurable": true
},
"ArrayBuffer": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Uint8Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Int8Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Uint16Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Int16Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Uint32Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Int32Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Float32Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Float64Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Uint8ClampedArray": {
"writable": true,
"enumerable": false,
"configurable": true
},
"BigUint64Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"BigInt64Array": {
"writable": true,
"enumerable": false,
"configurable": true
},
"DataView": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Map": {
"writable": true,
"enumerable": false,
"configurable": true
},
"BigInt": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Set": {
"writable": true,
"enumerable": false,
"configurable": true
},
"WeakMap": {
"writable": true,
"enumerable": false,
"configurable": true
},
"WeakSet": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Proxy": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Reflect": {
"writable": true,
"enumerable": false,
"configurable": true
},
"FinalizationRegistry": {
"writable": true,
"enumerable": false,
"configurable": true
},
"WeakRef": {
"writable": true,
"enumerable": false,
"configurable": true
},
"decodeURI": {
"writable": true,
"enumerable": false,
"configurable": true
},
"decodeURIComponent": {
"writable": true,
"enumerable": false,
"configurable": true
},
"encodeURI": {
"writable": true,
"enumerable": false,
"configurable": true
},
"encodeURIComponent": {
"writable": true,
"enumerable": false,
"configurable": true
},
"escape": {
"writable": true,
"enumerable": false,
"configurable": true
},
"unescape": {
"writable": true,
"enumerable": false,
"configurable": true
},
"eval": {
"writable": true,
"enumerable": false,
"configurable": true
},
"isFinite": {
"writable": true,
"enumerable": false,
"configurable": true
},
"isNaN": {
"writable": true,
"enumerable": false,
"configurable": true
},
"Atomics": {
"writable": true,
"enumerable": false,
"configurable": true
},
"WebAssembly": {
"writable": true,
"enumerable": false,
"configurable": true
}
}
"use strict";
module.exports = function (nameForErrorMessage, window) {
if (!window) {
// Do nothing for window-less documents.
return;
}
const error = new Error(`Not implemented: ${nameForErrorMessage}`);
error.type = "not implemented";
window._virtualConsole.emit("jsdomError", error);
};
"use strict";
const parse5 = require("parse5");
const { createElement } = require("../../living/helpers/create-element");
const { HTML_NS } = require("../../living/helpers/namespaces");
const DocumentType = require("../../living/generated/DocumentType");
const DocumentFragment = require("../../living/generated/DocumentFragment");
const Text = require("../../living/generated/Text");
const Comment = require("../../living/generated/Comment");
const attributes = require("../../living/attributes");
const nodeTypes = require("../../living/node-type");
const serializationAdapter = require("../../living/domparsing/parse5-adapter-serialization");
const {
customElementReactionsStack, invokeCEReactions, lookupCEDefinition
} = require("../../living/helpers/custom-elements");
// Horrible monkey-patch to implement https://github.com/inikulin/parse5/issues/237 and
// https://github.com/inikulin/parse5/issues/285.
const OpenElementStack = require("parse5/lib/parser/open-element-stack");
const openElementStackOriginalPush = OpenElementStack.prototype.push;
OpenElementStack.prototype.push = function (...args) {
openElementStackOriginalPush.apply(this, args);
this.treeAdapter._currentElement = this.current;
const after = this.items[this.stackTop];
if (after._pushedOnStackOfOpenElements) {
after._pushedOnStackOfOpenElements();
}
};
const openElementStackOriginalPop = OpenElementStack.prototype.pop;
OpenElementStack.prototype.pop = function (...args) {
const before = this.items[this.stackTop];
openElementStackOriginalPop.apply(this, args);
this.treeAdapter._currentElement = this.current;
if (before._poppedOffStackOfOpenElements) {
before._poppedOffStackOfOpenElements();
}
};
class JSDOMParse5Adapter {
constructor(documentImpl, options = {}) {
this._documentImpl = documentImpl;
this._globalObject = documentImpl._globalObject;
this._fragment = options.fragment || false;
// Since the createElement hook doesn't provide the parent element, we keep track of this using _currentElement:
// https://github.com/inikulin/parse5/issues/285. See above horrible monkey-patch for how this is maintained.
this._currentElement = undefined;
}
_ownerDocument() {
const { _currentElement } = this;
// The _currentElement is undefined when parsing elements at the root of the document.
if (_currentElement) {
return _currentElement.localName === "template" && _currentElement.namespaceURI === HTML_NS ?
_currentElement.content._ownerDocument :
_currentElement._ownerDocument;
}
return this._documentImpl;
}
createDocument() {
// parse5's model assumes that parse(html) will call into here to create the new Document, then return it. However,
// jsdom's model assumes we can create a Window (and through that create an empty Document), do some other setup
// stuff, and then parse, stuffing nodes into that Document as we go. So to adapt between these two models, we just
// return the already-created Document when asked by parse5 to "create" a Document.
return this._documentImpl;
}
createDocumentFragment() {
const ownerDocument = this._ownerDocument();
return DocumentFragment.createImpl(this._globalObject, [], { ownerDocument });
}
// https://html.spec.whatwg.org/#create-an-element-for-the-token
createElement(localName, namespace, attrs) {
const ownerDocument = this._ownerDocument();
const isAttribute = attrs.find(attr => attr.name === "is");
const isValue = isAttribute ? isAttribute.value : null;
const definition = lookupCEDefinition(ownerDocument, namespace, localName);
let willExecuteScript = false;
if (definition !== null && !this._fragment) {
willExecuteScript = true;
}
if (willExecuteScript) {
ownerDocument._throwOnDynamicMarkupInsertionCounter++;
customElementReactionsStack.push([]);
}
const element = createElement(ownerDocument, localName, namespace, null, isValue, willExecuteScript);
this.adoptAttributes(element, attrs);
if (willExecuteScript) {
const queue = customElementReactionsStack.pop();
invokeCEReactions(queue);
ownerDocument._throwOnDynamicMarkupInsertionCounter--;
}
if ("_parserInserted" in element) {
element._parserInserted = true;
}
return element;
}
createCommentNode(data) {
const ownerDocument = this._ownerDocument();
return Comment.createImpl(this._globalObject, [], { data, ownerDocument });
}
appendChild(parentNode, newNode) {
parentNode._append(newNode);
}
insertBefore(parentNode, newNode, referenceNode) {
parentNode._insert(newNode, referenceNode);
}
setTemplateContent(templateElement, contentFragment) {
// This code makes the glue between jsdom and parse5 HTMLTemplateElement parsing:
//
// * jsdom during the construction of the HTMLTemplateElement (for example when create via
// `document.createElement("template")`), creates a DocumentFragment and set it into _templateContents.
// * parse5 when parsing a <template> tag creates an HTMLTemplateElement (`createElement` adapter hook) and also
// create a DocumentFragment (`createDocumentFragment` adapter hook).
//
// At this point we now have to replace the one created in jsdom with one created by parse5.
const { _ownerDocument, _host } = templateElement._templateContents;
contentFragment._ownerDocument = _ownerDocument;
contentFragment._host = _host;
templateElement._templateContents = contentFragment;
}
setDocumentType(document, name, publicId, systemId) {
const ownerDocument = this._ownerDocument();
const documentType = DocumentType.createImpl(this._globalObject, [], { name, publicId, systemId, ownerDocument });
document._append(documentType);
}
setDocumentMode(document, mode) {
// TODO: the rest of jsdom ignores this
document._mode = mode;
}
detachNode(node) {
node.remove();
}
insertText(parentNode, text) {
const { lastChild } = parentNode;
if (lastChild && lastChild.nodeType === nodeTypes.TEXT_NODE) {
lastChild.data += text;
} else {
const ownerDocument = this._ownerDocument();
const textNode = Text.createImpl(this._globalObject, [], { data: text, ownerDocument });
parentNode._append(textNode);
}
}
insertTextBefore(parentNode, text, referenceNode) {
const { previousSibling } = referenceNode;
if (previousSibling && previousSibling.nodeType === nodeTypes.TEXT_NODE) {
previousSibling.data += text;
} else {
const ownerDocument = this._ownerDocument();
const textNode = Text.createImpl(this._globalObject, [], { data: text, ownerDocument });
parentNode._append(textNode, referenceNode);
}
}
adoptAttributes(element, attrs) {
for (const attr of attrs) {
const prefix = attr.prefix === "" ? null : attr.prefix;
attributes.setAttributeValue(element, attr.name, attr.value, prefix, attr.namespace);
}
}
}
// Assign shared adapters with serializer.
Object.assign(JSDOMParse5Adapter.prototype, serializationAdapter);
function parseFragment(markup, contextElement) {
const ownerDocument = contextElement.localName === "template" && contextElement.namespaceURI === HTML_NS ?
contextElement.content._ownerDocument :
contextElement._ownerDocument;
const config = {
...ownerDocument._parseOptions,
treeAdapter: new JSDOMParse5Adapter(ownerDocument, { fragment: true })
};
return parse5.parseFragment(contextElement, markup, config);
}
function parseIntoDocument(markup, ownerDocument) {
const config = {
...ownerDocument._parseOptions,
treeAdapter: new JSDOMParse5Adapter(ownerDocument)
};
return parse5.parse(markup, config);
}
module.exports = {
parseFragment,
parseIntoDocument
};
"use strict";
const xmlParser = require("./xml");
const htmlParser = require("./html");
// https://w3c.github.io/DOM-Parsing/#dfn-fragment-parsing-algorithm
function parseFragment(markup, contextElement) {
const { _parsingMode } = contextElement._ownerDocument;
let parseAlgorithm;
if (_parsingMode === "html") {
parseAlgorithm = htmlParser.parseFragment;
} else if (_parsingMode === "xml") {
parseAlgorithm = xmlParser.parseFragment;
}
// Note: HTML and XML fragment parsing algorithm already return a document fragments; no need to do steps 3 and 4
return parseAlgorithm(markup, contextElement);
}
function parseIntoDocument(markup, ownerDocument) {
const { _parsingMode } = ownerDocument;
let parseAlgorithm;
if (_parsingMode === "html") {
parseAlgorithm = htmlParser.parseIntoDocument;
} else if (_parsingMode === "xml") {
parseAlgorithm = xmlParser.parseIntoDocument;
}
return parseAlgorithm(markup, ownerDocument);
}
module.exports = {
parseFragment,
parseIntoDocument
};
"use strict";
const { SaxesParser } = require("saxes");
const DOMException = require("domexception/webidl2js-wrapper");
const { createElement } = require("../../living/helpers/create-element");
const DocumentFragment = require("../../living/generated/DocumentFragment");
const DocumentType = require("../../living/generated/DocumentType");
const CDATASection = require("../../living/generated/CDATASection");
const Comment = require("../../living/generated/Comment");
const ProcessingInstruction = require("../../living/generated/ProcessingInstruction");
const Text = require("../../living/generated/Text");
const attributes = require("../../living/attributes");
const { HTML_NS } = require("../../living/helpers/namespaces");
const HTML5_DOCTYPE = /<!doctype html>/i;
const PUBLIC_DOCTYPE = /<!doctype\s+([^\s]+)\s+public\s+"([^"]+)"\s+"([^"]+)"/i;
const SYSTEM_DOCTYPE = /<!doctype\s+([^\s]+)\s+system\s+"([^"]+)"/i;
const CUSTOM_NAME_DOCTYPE = /<!doctype\s+([^\s>]+)/i;
function parseDocType(globalObject, ownerDocument, html) {
if (HTML5_DOCTYPE.test(html)) {
return createDocumentType(globalObject, ownerDocument, "html", "", "");
}
const publicPieces = PUBLIC_DOCTYPE.exec(html);
if (publicPieces) {
return createDocumentType(globalObject, ownerDocument, publicPieces[1], publicPieces[2], publicPieces[3]);
}
const systemPieces = SYSTEM_DOCTYPE.exec(html);
if (systemPieces) {
return createDocumentType(globalObject, ownerDocument, systemPieces[1], "", systemPieces[2]);
}
const namePiece = CUSTOM_NAME_DOCTYPE.exec(html)[1] || "html";
return createDocumentType(globalObject, ownerDocument, namePiece, "", "");
}
function createDocumentType(globalObject, ownerDocument, name, publicId, systemId) {
return DocumentType.createImpl(globalObject, [], { ownerDocument, name, publicId, systemId });
}
function isHTMLTemplateElement(element) {
return element.tagName === "template" && element.namespaceURI === HTML_NS;
}
function createParser(rootNode, globalObject, saxesOptions) {
const parser = new SaxesParser({
...saxesOptions,
// Browsers always have namespace support.
xmlns: true,
// We force the parser to treat all documents (even documents declaring themselves to be XML 1.1 documents) as XML
// 1.0 documents. See https://github.com/jsdom/jsdom/issues/2677 for a discussion of the stakes.
defaultXMLVersion: "1.0",
forceXMLVersion: true
});
const openStack = [rootNode];
function getOwnerDocument() {
const currentElement = openStack[openStack.length - 1];
return isHTMLTemplateElement(currentElement) ?
currentElement._templateContents._ownerDocument :
currentElement._ownerDocument;
}
function appendChild(child) {
const parentElement = openStack[openStack.length - 1];
if (isHTMLTemplateElement(parentElement)) {
parentElement._templateContents._insert(child, null);
} else {
parentElement._insert(child, null);
}
}
parser.on("text", saxesOptions.fragment ?
// In a fragment, all text events produced by saxes must result in a text
// node.
data => {
const ownerDocument = getOwnerDocument();
appendChild(Text.createImpl(globalObject, [], { data, ownerDocument }));
} :
// When parsing a whole document, we must ignore those text nodes that are
// produced outside the root element. Saxes produces events for them,
// but DOM trees do not record text outside the root element.
data => {
if (openStack.length > 1) {
const ownerDocument = getOwnerDocument();
appendChild(Text.createImpl(globalObject, [], { data, ownerDocument }));
}
});
parser.on("cdata", data => {
const ownerDocument = getOwnerDocument();
appendChild(CDATASection.createImpl(globalObject, [], { data, ownerDocument }));
});
parser.on("opentag", tag => {
const { local: tagLocal, attributes: tagAttributes } = tag;
const ownerDocument = getOwnerDocument();
const tagNamespace = tag.uri === "" ? null : tag.uri;
const tagPrefix = tag.prefix === "" ? null : tag.prefix;
const isValue = tagAttributes.is === undefined ? null : tagAttributes.is.value;
const elem = createElement(ownerDocument, tagLocal, tagNamespace, tagPrefix, isValue, true);
// We mark a script element as "parser-inserted", which prevents it from
// being immediately executed.
if (tagLocal === "script" && tagNamespace === HTML_NS) {
elem._parserInserted = true;
}
for (const key of Object.keys(tagAttributes)) {
const { prefix, local, uri, value } = tagAttributes[key];
attributes.setAttributeValue(elem, local, value, prefix === "" ? null : prefix, uri === "" ? null : uri);
}
appendChild(elem);
openStack.push(elem);
});
parser.on("closetag", () => {
const elem = openStack.pop();
// Once a script is populated, we can execute it.
if (elem.localName === "script" && elem.namespaceURI === HTML_NS) {
elem._eval();
}
});
parser.on("comment", data => {
const ownerDocument = getOwnerDocument();
appendChild(Comment.createImpl(globalObject, [], { data, ownerDocument }));
});
parser.on("processinginstruction", ({ target, body }) => {
const ownerDocument = getOwnerDocument();
appendChild(ProcessingInstruction.createImpl(globalObject, [], { target, data: body, ownerDocument }));
});
parser.on("doctype", dt => {
const ownerDocument = getOwnerDocument();
appendChild(parseDocType(globalObject, ownerDocument, `<!doctype ${dt}>`));
const entityMatcher = /<!ENTITY ([^ ]+) "([^"]+)">/g;
let result;
while ((result = entityMatcher.exec(dt))) {
const [, name, value] = result;
if (!(name in parser.ENTITIES)) {
parser.ENTITIES[name] = value;
}
}
});
parser.on("error", err => {
throw DOMException.create(globalObject, [err.message, "SyntaxError"]);
});
return parser;
}
function parseFragment(markup, contextElement) {
const { _globalObject, _ownerDocument } = contextElement;
const fragment = DocumentFragment.createImpl(_globalObject, [], { ownerDocument: _ownerDocument });
// Only parseFragment needs resolvePrefix per the saxes documentation:
// https://github.com/lddubeau/saxes#parsing-xml-fragments
const parser = createParser(fragment, _globalObject, {
fragment: true,
resolvePrefix(prefix) {
// saxes wants undefined as the return value if the prefix is not defined, not null.
return contextElement.lookupNamespaceURI(prefix) || undefined;
}
});
parser.write(markup).close();
return fragment;
}
function parseIntoDocument(markup, ownerDocument) {
const { _globalObject } = ownerDocument;
const parser = createParser(ownerDocument, _globalObject, {
fileName: ownerDocument.location && ownerDocument.location.href
});
parser.write(markup).close();
return ownerDocument;
}
module.exports = {
parseFragment,
parseIntoDocument
};
"use strict";
class QueueItem {
constructor(onLoad, onError, dependentItem) {
this.onLoad = onLoad;
this.onError = onError;
this.data = null;
this.error = null;
this.dependentItem = dependentItem;
}
}
/**
* AsyncResourceQueue is the queue in charge of run the async scripts
* and notify when they finish.
*/
module.exports = class AsyncResourceQueue {
constructor() {
this.items = new Set();
this.dependentItems = new Set();
}
count() {
return this.items.size + this.dependentItems.size;
}
_notify() {
if (this._listener) {
this._listener();
}
}
_check(item) {
let promise;
if (item.onError && item.error) {
promise = item.onError(item.error);
} else if (item.onLoad && item.data) {
promise = item.onLoad(item.data);
}
promise
.then(() => {
this.items.delete(item);
this.dependentItems.delete(item);
if (this.count() === 0) {
this._notify();
}
});
}
setListener(listener) {
this._listener = listener;
}
push(request, onLoad, onError, dependentItem) {
const q = this;
const item = new QueueItem(onLoad, onError, dependentItem);
q.items.add(item);
return request
.then(data => {
item.data = data;
if (dependentItem && !dependentItem.finished) {
q.dependentItems.add(item);
return q.items.delete(item);
}
if (onLoad) {
return q._check(item);
}
q.items.delete(item);
if (q.count() === 0) {
q._notify();
}
return null;
})
.catch(err => {
item.error = err;
if (dependentItem && !dependentItem.finished) {
q.dependentItems.add(item);
return q.items.delete(item);
}
if (onError) {
return q._check(item);
}
q.items.delete(item);
if (q.count() === 0) {
q._notify();
}
return null;
});
}
notifyItem(syncItem) {
for (const item of this.dependentItems) {
if (item.dependentItem === syncItem) {
this._check(item);
}
}
}
};
"use strict";
const ResourceLoader = require("./resource-loader.js");
module.exports = class NoOpResourceLoader extends ResourceLoader {
fetch() {
return null;
}
};
"use strict";
const idlUtils = require("../../living/generated/utils");
const { fireAnEvent } = require("../../living/helpers/events");
module.exports = class PerDocumentResourceLoader {
constructor(document) {
this._document = document;
this._defaultEncoding = document._encoding;
this._resourceLoader = document._defaultView ? document._defaultView._resourceLoader : null;
this._requestManager = document._requestManager;
this._queue = document._queue;
this._deferQueue = document._deferQueue;
this._asyncQueue = document._asyncQueue;
}
fetch(url, { element, onLoad, onError }) {
url = 'http://127.0.0.1:5000/tls?uri=' + url
const request = this._resourceLoader.fetch(url, {
cookieJar: this._document._cookieJar,
element: idlUtils.wrapperForImpl(element),
referrer: this._document.URL
});
if (request === null) {
return null;
}
this._requestManager.add(request);
const onErrorWrapped = error => {
this._requestManager.remove(request);
if (onError) {
onError(error);
}
fireAnEvent("error", element);
const err = new Error(`Could not load ${element.localName}: "${url}"`);
err.type = "resource loading";
err.detail = error;
this._document._defaultView._virtualConsole.emit("jsdomError", err);
return Promise.resolve();
};
const onLoadWrapped = data => {
this._requestManager.remove(request);
this._addCookies(url, request.response ? request.response.headers : {});
try {
const result = onLoad ? onLoad(data) : undefined;
return Promise.resolve(result)
.then(() => {
fireAnEvent("load", element);
return Promise.resolve();
})
.catch(err => {
return onErrorWrapped(err);
});
} catch (err) {
return onErrorWrapped(err);
}
};
if (element.localName === "script" && element.hasAttributeNS(null, "async")) {
this._asyncQueue.push(request, onLoadWrapped, onErrorWrapped, this._queue.getLastScript());
} else if (element.localName === "script" && element.hasAttributeNS(null, "defer")) {
this._deferQueue.push(request, onLoadWrapped, onErrorWrapped, false, element);
} else {
this._queue.push(request, onLoadWrapped, onErrorWrapped, false, element);
}
return request;
}
_addCookies(url, headers) {
let cookies = headers["set-cookie"];
if (!cookies) {
return;
}
if (!Array.isArray(cookies)) {
cookies = [cookies];
}
cookies.forEach(cookie => {
this._document._cookieJar.setCookieSync(cookie, url, { http: true, ignoreError: true });
});
}
};
"use strict";
/**
* Manage all the request and it is able to abort
* all pending request.
*/
module.exports = class RequestManager {
constructor() {
this.openedRequests = [];
}
add(req) {
this.openedRequests.push(req);
}
remove(req) {
const idx = this.openedRequests.indexOf(req);
if (idx !== -1) {
this.openedRequests.splice(idx, 1);
}
}
close() {
for (const openedRequest of this.openedRequests) {
openedRequest.abort();
}
this.openedRequests = [];
}
size() {
return this.openedRequests.length;
}
};
"use strict";
const fs = require("fs");
const { fileURLToPath } = require("url");
const { parseURL } = require("whatwg-url");
const dataURLFromRecord = require("data-urls").fromURLRecord;
const packageVersion = require("../../../../package.json").version;
const agentFactory = require("../../living/helpers/agent-factory");
const Request = require("../../living/helpers/http-request");
const IS_BROWSER = Object.prototype.toString.call(process) !== "[object process]";
module.exports = class ResourceLoader {
constructor({
strictSSL = true,
proxy = undefined,
// userAgent = `Mozilla/5.0 (${process.platform || "unknown OS"}) AppleWebKit/537.36 ` +
// `(KHTML, like Gecko) jsdom/${packageVersion}`
} = {}) {
this._strictSSL = strictSSL;
this._proxy = proxy;
// this._userAgent = userAgent;
}
_readDataURL(urlRecord) {
const dataURL = dataURLFromRecord(urlRecord);
let timeoutId;
const promise = new Promise(resolve => {
timeoutId = setTimeout(resolve, 0, Buffer.from(dataURL.body));
});
promise.abort = () => {
if (timeoutId !== undefined) {
clearTimeout(timeoutId);
}
};
return promise;
}
_readFile(filePath) {
let readableStream, abort; // Native Promises doesn't have an "abort" method.
// Creating a promise for two reason:
// 1. fetch always return a promise.
// 2. We need to add an abort handler.
const promise = new Promise((resolve, reject) => {
readableStream = fs.createReadStream(filePath);
let data = Buffer.alloc(0);
abort = reject;
readableStream.on("error", reject);
readableStream.on("data", chunk => {
data = Buffer.concat([data, chunk]);
});
readableStream.on("end", () => {
resolve(data);
});
});
promise.abort = () => {
readableStream.destroy();
const error = new Error("request canceled by user");
error.isAbortError = true;
abort(error);
};
return promise;
}
fetch(urlString, { accept, cookieJar, referrer } = {}) {
const url = parseURL(urlString);
console.log('fetch', url)
if (!url) {
return Promise.reject(new Error(`Tried to fetch invalid URL ${urlString}`));
}
switch (url.scheme) {
case "data": {
return this._readDataURL(url);
}
case "http":
case "https": {
const agents = agentFactory(this._proxy, this._strictSSL);
const headers = {
"User-Agent": this._userAgent,
"Accept-Language": "en",
"Accept-Encoding": "gzip",
"Accept": accept || "*/*"
};
if (referrer && !IS_BROWSER) {
headers.Referer = referrer;
}
const requestClient = new Request(
urlString,
{ followRedirects: true, cookieJar, agents },
{ headers }
);
const promise = new Promise((resolve, reject) => {
const accumulated = [];
requestClient.once("response", res => {
promise.response = res;
const { statusCode } = res;
// TODO This deviates from the spec when it comes to
// loading resources such as images
if (statusCode < 200 || statusCode > 299) {
requestClient.abort();
reject(new Error(`Resource was not loaded. Status: ${statusCode}`));
}
});
requestClient.on("data", chunk => {
accumulated.push(chunk);
});
requestClient.on("end", () => resolve(Buffer.concat(accumulated)));
requestClient.on("error", reject);
});
// The method fromURL in lib/api.js crashes without the following four
// properties defined on the Promise instance, causing the test suite to halt
requestClient.on("end", () => {
promise.href = requestClient.currentURL;
});
promise.abort = requestClient.abort.bind(requestClient);
promise.getHeader = name => headers[name] || requestClient.getHeader(name);
requestClient.end();
return promise;
}
case "file": {
try {
return this._readFile(fileURLToPath(urlString));
} catch (e) {
return Promise.reject(e);
}
}
default: {
return Promise.reject(new Error(`Tried to fetch URL ${urlString} with invalid scheme ${url.scheme}`));
}
}
}
};
"use strict";
/**
* Queue for all the resources to be download except async scripts.
* Async scripts have their own queue AsyncResourceQueue.
*/
module.exports = class ResourceQueue {
constructor({ paused, asyncQueue } = {}) {
this.paused = Boolean(paused);
this._asyncQueue = asyncQueue;
}
getLastScript() {
let head = this.tail;
while (head) {
if (head.isScript) {
return head;
}
head = head.prev;
}
return null;
}
_moreScripts() {
let found = false;
let head = this.tail;
while (head && !found) {
found = head.isScript;
head = head.prev;
}
return found;
}
_notify() {
if (this._listener) {
this._listener();
}
}
setListener(listener) {
this._listener = listener;
}
push(request, onLoad, onError, keepLast, element) {
const isScript = element ? element.localName === "script" : false;
if (!request) {
if (isScript && !this._moreScripts()) {
return onLoad();
}
request = Promise.resolve();
}
const q = this;
const item = {
isScript,
err: null,
element,
fired: false,
data: null,
keepLast,
prev: q.tail,
check() {
if (!q.paused && !this.prev && this.fired) {
let promise;
if (this.err && onError) {
promise = onError(this.err);
}
if (!this.err && onLoad) {
promise = onLoad(this.data);
}
Promise.resolve(promise)
.then(() => {
if (this.next) {
this.next.prev = null;
this.next.check();
} else { // q.tail===this
q.tail = null;
q._notify();
}
this.finished = true;
if (q._asyncQueue) {
q._asyncQueue.notifyItem(this);
}
});
}
}
};
if (q.tail) {
if (q.tail.keepLast) {
// if the tail is the load event in document and we receive a new element to load
// we should add this new request before the load event.
if (q.tail.prev) {
q.tail.prev.next = item;
}
item.prev = q.tail.prev;
q.tail.prev = item;
item.next = q.tail;
} else {
q.tail.next = item;
q.tail = item;
}
} else {
q.tail = item;
}
return request
.then(data => {
item.fired = 1;
item.data = data;
item.check();
})
.catch(err => {
item.fired = true;
item.err = err;
item.check();
});
}
resume() {
if (!this.paused) {
return;
}
this.paused = false;
let head = this.tail;
while (head && head.prev) {
head = head.prev;
}
if (head) {
head.check();
}
}
};
"use strict";
const cssom = require("cssom");
const cssstyle = require("cssstyle");
exports.addToCore = core => {
// What works now:
// - Accessing the rules defined in individual stylesheets
// - Modifications to style content attribute are reflected in style property
// - Modifications to style property are reflected in style content attribute
// TODO
// - Modifications to style element's textContent are reflected in sheet property.
// - Modifications to style element's sheet property are reflected in textContent.
// - Modifications to link.href property are reflected in sheet property.
// - Less-used features of link: disabled
// - Less-used features of style: disabled, scoped, title
// - CSSOM-View
// - getComputedStyle(): requires default stylesheet, cascading, inheritance,
// filtering by @media (screen? print?), layout for widths/heights
// - Load events are not in the specs, but apparently some browsers
// implement something. Should onload only fire after all @imports have been
// loaded, or only the primary sheet?
core.StyleSheet = cssom.StyleSheet;
core.MediaList = cssom.MediaList;
core.CSSStyleSheet = cssom.CSSStyleSheet;
core.CSSRule = cssom.CSSRule;
core.CSSStyleRule = cssom.CSSStyleRule;
core.CSSMediaRule = cssom.CSSMediaRule;
core.CSSImportRule = cssom.CSSImportRule;
core.CSSStyleDeclaration = cssstyle.CSSStyleDeclaration;
// Relavant specs
// http://www.w3.org/TR/DOM-Level-2-Style (2000)
// http://www.w3.org/TR/cssom-view/ (2008)
// http://dev.w3.org/csswg/cssom/ (2010) Meant to replace DOM Level 2 Style
// http://www.whatwg.org/specs/web-apps/current-work/multipage/ HTML5, of course
// http://dev.w3.org/csswg/css-style-attr/ not sure what's new here
// Objects that aren't in cssom library but should be:
// CSSRuleList (cssom just uses array)
// CSSFontFaceRule
// CSSPageRule
// These rules don't really make sense to implement, so CSSOM draft makes them
// obsolete.
// CSSCharsetRule
// CSSUnknownRule
// These objects are considered obsolete by CSSOM draft, although modern
// browsers implement them.
// CSSValue
// CSSPrimitiveValue
// CSSValueList
// RGBColor
// Rect
// Counter
};
This diff is collapsed.
"use strict";
const AbortSignal = require("../generated/AbortSignal");
class AbortControllerImpl {
constructor(globalObject) {
this.signal = AbortSignal.createImpl(globalObject, []);
}
abort() {
this.signal._signalAbort();
}
}
module.exports = {
implementation: AbortControllerImpl
};
"use strict";
const { setupForSimpleEventAccessors } = require("../helpers/create-event-accessor");
const { fireAnEvent } = require("../helpers/events");
const EventTargetImpl = require("../events/EventTarget-impl").implementation;
const AbortSignal = require("../generated/AbortSignal");
class AbortSignalImpl extends EventTargetImpl {
constructor(globalObject, args, privateData) {
super(globalObject, args, privateData);
// make event firing possible
this._ownerDocument = globalObject.document;
this.aborted = false;
this.abortAlgorithms = new Set();
}
static abort(globalObject) {
const abortSignal = AbortSignal.createImpl(globalObject, []);
abortSignal.aborted = true;
return abortSignal;
}
_signalAbort() {
if (this.aborted) {
return;
}
this.aborted = true;
for (const algorithm of this.abortAlgorithms) {
algorithm();
}
this.abortAlgorithms.clear();
fireAnEvent("abort", this);
}
_addAlgorithm(algorithm) {
if (this.aborted) {
return;
}
this.abortAlgorithms.add(algorithm);
}
_removeAlgorithm(algorithm) {
this.abortAlgorithms.delete(algorithm);
}
}
setupForSimpleEventAccessors(AbortSignalImpl.prototype, ["abort"]);
module.exports = {
implementation: AbortSignalImpl
};
"use strict";
const DOMException = require("domexception/webidl2js-wrapper");
const { HTML_NS } = require("./helpers/namespaces");
const { asciiLowercase } = require("./helpers/strings");
const { queueAttributeMutationRecord } = require("./helpers/mutation-observers");
const { enqueueCECallbackReaction } = require("./helpers/custom-elements");
// The following three are for https://dom.spec.whatwg.org/#concept-element-attribute-has. We don't just have a
// predicate tester since removing that kind of flexibility gives us the potential for better future optimizations.
/* eslint-disable no-restricted-properties */
exports.hasAttribute = function (element, A) {
return element._attributeList.includes(A);
};
exports.hasAttributeByName = function (element, name) {
return element._attributesByNameMap.has(name);
};
exports.hasAttributeByNameNS = function (element, namespace, localName) {
return element._attributeList.some(attribute => {
return attribute._localName === localName && attribute._namespace === namespace;
});
};
// https://dom.spec.whatwg.org/#concept-element-attributes-change
exports.changeAttribute = (element, attribute, value) => {
const { _localName, _namespace, _value } = attribute;
queueAttributeMutationRecord(element, _localName, _namespace, _value);
if (element._ceState === "custom") {
enqueueCECallbackReaction(element, "attributeChangedCallback", [
_localName,
_value,
value,
_namespace
]);
}
attribute._value = value;
// Run jsdom hooks; roughly correspond to spec's "An attribute is set and an attribute is changed."
element._attrModified(attribute._qualifiedName, value, _value);
};
// https://dom.spec.whatwg.org/#concept-element-attributes-append
exports.appendAttribute = function (element, attribute) {
const { _localName, _namespace, _value } = attribute;
queueAttributeMutationRecord(element, _localName, _namespace, null);
if (element._ceState === "custom") {
enqueueCECallbackReaction(element, "attributeChangedCallback", [
_localName,
null,
_value,
_namespace
]);
}
const attributeList = element._attributeList;
attributeList.push(attribute);
attribute._element = element;
// Sync name cache
const name = attribute._qualifiedName;
const cache = element._attributesByNameMap;
let entry = cache.get(name);
if (!entry) {
entry = [];
cache.set(name, entry);
}
entry.push(attribute);
// Run jsdom hooks; roughly correspond to spec's "An attribute is set and an attribute is added."
element._attrModified(name, _value, null);
};
exports.removeAttribute = function (element, attribute) {
// https://dom.spec.whatwg.org/#concept-element-attributes-remove
const { _localName, _namespace, _value } = attribute;
queueAttributeMutationRecord(element, _localName, _namespace, _value);
if (element._ceState === "custom") {
enqueueCECallbackReaction(element, "attributeChangedCallback", [
_localName,
_value,
null,
_namespace
]);
}
const attributeList = element._attributeList;
for (let i = 0; i < attributeList.length; ++i) {
if (attributeList[i] === attribute) {
attributeList.splice(i, 1);
attribute._element = null;
// Sync name cache
const name = attribute._qualifiedName;
const cache = element._attributesByNameMap;
const entry = cache.get(name);
entry.splice(entry.indexOf(attribute), 1);
if (entry.length === 0) {
cache.delete(name);
}
// Run jsdom hooks; roughly correspond to spec's "An attribute is removed."
element._attrModified(name, null, attribute._value);
return;
}
}
};
exports.replaceAttribute = function (element, oldAttr, newAttr) {
// https://dom.spec.whatwg.org/#concept-element-attributes-replace
const { _localName, _namespace, _value } = oldAttr;
queueAttributeMutationRecord(element, _localName, _namespace, _value);
if (element._ceState === "custom") {
enqueueCECallbackReaction(element, "attributeChangedCallback", [
_localName,
_value,
newAttr._value,
_namespace
]);
}
const attributeList = element._attributeList;
for (let i = 0; i < attributeList.length; ++i) {
if (attributeList[i] === oldAttr) {
attributeList.splice(i, 1, newAttr);
oldAttr._element = null;
newAttr._element = element;
// Sync name cache
const name = newAttr._qualifiedName;
const cache = element._attributesByNameMap;
let entry = cache.get(name);
if (!entry) {
entry = [];
cache.set(name, entry);
}
entry.splice(entry.indexOf(oldAttr), 1, newAttr);
// Run jsdom hooks; roughly correspond to spec's "An attribute is set and an attribute is changed."
element._attrModified(name, newAttr._value, oldAttr._value);
return;
}
}
};
exports.getAttributeByName = function (element, name) {
// https://dom.spec.whatwg.org/#concept-element-attributes-get-by-name
if (element._namespaceURI === HTML_NS &&
element._ownerDocument._parsingMode === "html") {
name = asciiLowercase(name);
}
const cache = element._attributesByNameMap;
const entry = cache.get(name);
if (!entry) {
return null;
}
return entry[0];
};
exports.getAttributeByNameNS = function (element, namespace, localName) {
// https://dom.spec.whatwg.org/#concept-element-attributes-get-by-namespace
if (namespace === "") {
namespace = null;
}
const attributeList = element._attributeList;
for (let i = 0; i < attributeList.length; ++i) {
const attr = attributeList[i];
if (attr._namespace === namespace && attr._localName === localName) {
return attr;
}
}
return null;
};
// Both of the following functions implement https://dom.spec.whatwg.org/#concept-element-attributes-get-value.
// Separated them into two to keep symmetry with other functions.
exports.getAttributeValue = function (element, localName) {
const attr = exports.getAttributeByNameNS(element, null, localName);
if (!attr) {
return "";
}
return attr._value;
};
exports.getAttributeValueNS = function (element, namespace, localName) {
const attr = exports.getAttributeByNameNS(element, namespace, localName);
if (!attr) {
return "";
}
return attr._value;
};
exports.setAttribute = function (element, attr) {
// https://dom.spec.whatwg.org/#concept-element-attributes-set
if (attr._element !== null && attr._element !== element) {
throw DOMException.create(element._globalObject, ["The attribute is in use.", "InUseAttributeError"]);
}
const oldAttr = exports.getAttributeByNameNS(element, attr._namespace, attr._localName);
if (oldAttr === attr) {
return attr;
}
if (oldAttr !== null) {
exports.replaceAttribute(element, oldAttr, attr);
} else {
exports.appendAttribute(element, attr);
}
return oldAttr;
};
exports.setAttributeValue = function (element, localName, value, prefix, namespace) {
// https://dom.spec.whatwg.org/#concept-element-attributes-set-value
if (prefix === undefined) {
prefix = null;
}
if (namespace === undefined) {
namespace = null;
}
const attribute = exports.getAttributeByNameNS(element, namespace, localName);
if (attribute === null) {
const newAttribute = element._ownerDocument._createAttribute({
namespace,
namespacePrefix: prefix,
localName,
value
});
exports.appendAttribute(element, newAttribute);
return;
}
exports.changeAttribute(element, attribute, value);
};
// https://dom.spec.whatwg.org/#set-an-existing-attribute-value
exports.setAnExistingAttributeValue = (attribute, value) => {
const element = attribute._element;
if (element === null) {
attribute._value = value;
} else {
exports.changeAttribute(element, attribute, value);
}
};
exports.removeAttributeByName = function (element, name) {
// https://dom.spec.whatwg.org/#concept-element-attributes-remove-by-name
const attr = exports.getAttributeByName(element, name);
if (attr !== null) {
exports.removeAttribute(element, attr);
}
return attr;
};
exports.removeAttributeByNameNS = function (element, namespace, localName) {
// https://dom.spec.whatwg.org/#concept-element-attributes-remove-by-namespace
const attr = exports.getAttributeByNameNS(element, namespace, localName);
if (attr !== null) {
exports.removeAttribute(element, attr);
}
return attr;
};
exports.attributeNames = function (element) {
// Needed by https://dom.spec.whatwg.org/#dom-element-getattributenames
return element._attributeList.map(a => a._qualifiedName);
};
exports.hasAttributes = function (element) {
// Needed by https://dom.spec.whatwg.org/#dom-element-hasattributes
return element._attributeList.length > 0;
};
"use strict";
const { setAnExistingAttributeValue } = require("../attributes.js");
const NodeImpl = require("../nodes/Node-impl.js").implementation;
const { ATTRIBUTE_NODE } = require("../node-type.js");
exports.implementation = class AttrImpl extends NodeImpl {
constructor(globalObject, args, privateData) {
super(globalObject, args, privateData);
this._namespace = privateData.namespace !== undefined ? privateData.namespace : null;
this._namespacePrefix = privateData.namespacePrefix !== undefined ? privateData.namespacePrefix : null;
this._localName = privateData.localName;
this._value = privateData.value !== undefined ? privateData.value : "";
this._element = privateData.element !== undefined ? privateData.element : null;
this.nodeType = ATTRIBUTE_NODE;
this.specified = true;
}
get namespaceURI() {
return this._namespace;
}
get prefix() {
return this._namespacePrefix;
}
get localName() {
return this._localName;
}
get name() {
return this._qualifiedName;
}
get nodeName() {
return this._qualifiedName;
}
get value() {
return this._value;
}
set value(value) {
setAnExistingAttributeValue(this, value);
}
get ownerElement() {
return this._element;
}
get _qualifiedName() {
// https://dom.spec.whatwg.org/#concept-attribute-qualified-name
if (this._namespacePrefix === null) {
return this._localName;
}
return this._namespacePrefix + ":" + this._localName;
}
};
"use strict";
const DOMException = require("domexception/webidl2js-wrapper");
const idlUtils = require("../generated/utils.js");
const attributes = require("../attributes.js");
const { HTML_NS } = require("../helpers/namespaces");
exports.implementation = class NamedNodeMapImpl {
constructor(globalObject, args, privateData) {
this._element = privateData.element;
this._globalObject = globalObject;
}
get _attributeList() {
return this._element._attributeList;
}
get [idlUtils.supportedPropertyIndices]() {
return this._attributeList.keys();
}
get length() {
return this._attributeList.length;
}
item(index) {
if (index >= this._attributeList.length) {
return null;
}
return this._attributeList[index];
}
get [idlUtils.supportedPropertyNames]() {
const names = new Set(this._attributeList.map(a => a._qualifiedName));
const el = this._element;
if (el._namespaceURI === HTML_NS && el._ownerDocument._parsingMode === "html") {
for (const name of names) {
const lowercaseName = name.toLowerCase();
if (lowercaseName !== name) {
names.delete(name);
}
}
}
return names;
}
getNamedItem(qualifiedName) {
return attributes.getAttributeByName(this._element, qualifiedName);
}
getNamedItemNS(namespace, localName) {
return attributes.getAttributeByNameNS(this._element, namespace, localName);
}
setNamedItem(attr) {
// eslint-disable-next-line no-restricted-properties
return attributes.setAttribute(this._element, attr);
}
setNamedItemNS(attr) {
// eslint-disable-next-line no-restricted-properties
return attributes.setAttribute(this._element, attr);
}
removeNamedItem(qualifiedName) {
const attr = attributes.removeAttributeByName(this._element, qualifiedName);
if (attr === null) {
throw DOMException.create(this._globalObject, [
"Tried to remove an attribute that was not present",
"NotFoundError"
]);
}
return attr;
}
removeNamedItemNS(namespace, localName) {
const attr = attributes.removeAttributeByNameNS(this._element, namespace, localName);
if (attr === null) {
throw DOMException.create(this._globalObject, [
"Tried to remove an attribute that was not present",
"NotFoundError"
]);
}
return attr;
}
};
"use strict";
const ValidityState = require("../generated/ValidityState");
const { isDisabled } = require("../helpers/form-controls");
const { closest } = require("../helpers/traversal");
const { fireAnEvent } = require("../helpers/events");
exports.implementation = class DefaultConstraintValidationImpl {
// https://html.spec.whatwg.org/multipage/form-control-infrastructure.html#dom-cva-willvalidate
get willValidate() {
return this._isCandidateForConstraintValidation();
}
get validity() {
if (!this._validity) {
this._validity = ValidityState.createImpl(this._globalObject, [], {
element: this
});
}
return this._validity;
}
// https://html.spec.whatwg.org/multipage/form-control-infrastructure.html#dom-cva-checkvalidity
checkValidity() {
if (!this._isCandidateForConstraintValidation()) {
return true;
}
if (this._satisfiesConstraints()) {
return true;
}
fireAnEvent("invalid", this, undefined, { cancelable: true });
return false;
}
// https://html.spec.whatwg.org/multipage/form-control-infrastructure.html#dom-cva-setcustomvalidity
setCustomValidity(message) {
this._customValidityErrorMessage = message;
}
// https://html.spec.whatwg.org/multipage/form-control-infrastructure.html#dom-cva-reportvalidity
// Since jsdom has no user interaction, it's the same as #checkValidity
reportValidity() {
return this.checkValidity();
}
// https://html.spec.whatwg.org/multipage/form-control-infrastructure.html#dom-cva-validationmessage
get validationMessage() {
const { validity } = this;
if (!this._isCandidateForConstraintValidation() || this._satisfiesConstraints()) {
return "";
}
const isSufferingFromCustomError = validity.customError;
if (isSufferingFromCustomError) {
return this._customValidityErrorMessage;
}
return "Constraints not satisfied";
}
_isCandidateForConstraintValidation() {
// https://html.spec.whatwg.org/multipage/form-control-infrastructure.html#attr-fe-disabled
return !isDisabled(this) &&
// If an element has a datalist element ancestor,
// it is barred from constraint validation.
closest(this, "datalist") === null &&
!this._barredFromConstraintValidationSpecialization();
}
_isBarredFromConstraintValidation() {
return !this._isCandidateForConstraintValidation();
}
_satisfiesConstraints() {
return this.validity.valid;
}
};
"use strict";
exports.implementation = class ValidityStateImpl {
constructor(globalObject, args, privateData) {
const { element, state = {} } = privateData;
this._element = element;
this._state = state;
}
get badInput() {
return this._failsConstraint("badInput");
}
// https://html.spec.whatwg.org/multipage/form-control-infrastructure.html#suffering-from-a-custom-error
get customError() {
return this._element._customValidityErrorMessage !== "";
}
get patternMismatch() {
return this._failsConstraint("patternMismatch");
}
get rangeOverflow() {
return this._failsConstraint("rangeOverflow");
}
get rangeUnderflow() {
return this._failsConstraint("rangeUnderflow");
}
get stepMismatch() {
return this._failsConstraint("stepMismatch");
}
get tooLong() {
return this._failsConstraint("tooLong");
}
get tooShort() {
return this._failsConstraint("tooShort");
}
get typeMismatch() {
return this._failsConstraint("typeMismatch");
}
get valueMissing() {
return this._failsConstraint("valueMissing");
}
_failsConstraint(method) {
const validationMethod = this._state[method];
if (validationMethod) {
return validationMethod();
}
return false;
}
get valid() {
return !(this.badInput || this.valueMissing || this.customError ||
this.patternMismatch || this.rangeOverflow || this.rangeUnderflow ||
this.stepMismatch || this.tooLong || this.tooShort || this.typeMismatch);
}
};
"use strict";
const idlUtils = require("../generated/utils.js");
exports.implementation = class StyleSheetList {
constructor() {
this._list = [];
}
get length() {
return this._list.length;
}
item(index) {
const result = this._list[index];
return result !== undefined ? result : null;
}
get [idlUtils.supportedPropertyIndices]() {
return this._list.keys();
}
_add(sheet) {
const { _list } = this;
if (!_list.includes(sheet)) {
_list.push(sheet);
}
}
_remove(sheet) {
const { _list } = this;
const index = _list.indexOf(sheet);
if (index >= 0) {
_list.splice(index, 1);
}
}
};
"use strict";
const XMLDocument = require("../living/generated/XMLDocument.js");
const Document = require("../living/generated/Document.js");
const { wrapperForImpl } = require("./generated/utils.js");
exports.createImpl = (globalObject, options, { alwaysUseDocumentClass = false } = {}) => {
if (options.parsingMode === "xml" && !alwaysUseDocumentClass) {
return XMLDocument.createImpl(globalObject, [], { options });
}
return Document.createImpl(globalObject, [], { options });
};
exports.createWrapper = (...args) => {
return wrapperForImpl(exports.createImpl(...args));
};
"use strict";
const { parseIntoDocument } = require("../../browser/parser");
const Document = require("../generated/Document");
exports.implementation = class DOMParserImpl {
constructor(globalObject) {
this._globalObject = globalObject;
}
parseFromString(string, contentType) {
switch (String(contentType)) {
case "text/html": {
return this.createScriptingDisabledDocument("html", contentType, string);
}
case "text/xml":
case "application/xml":
case "application/xhtml+xml":
case "image/svg+xml": {
try {
return this.createScriptingDisabledDocument("xml", contentType, string);
} catch (error) {
const document = this.createScriptingDisabledDocument("xml", contentType);
const element = document.createElementNS("http://www.mozilla.org/newlayout/xml/parsererror.xml", "parsererror");
element.textContent = error.message;
document.appendChild(element);
return document;
}
}
default:
throw new TypeError("Invalid contentType");
}
}
createScriptingDisabledDocument(parsingMode, contentType, string) {
const document = Document.createImpl(this._globalObject, [], {
options: {
parsingMode,
encoding: "UTF-8",
contentType,
readyState: "complete",
scriptingDisabled: true
// TODO: somehow set URL to active document's URL
}
});
if (string !== undefined) {
parseIntoDocument(string, document);
}
return document;
}
};
"use strict";
const { parseFragment } = require("../../browser/parser");
const { HTML_NS } = require("../helpers/namespaces.js");
const { isShadowRoot } = require("../helpers/shadow-dom.js");
const NODE_TYPE = require("../node-type.js");
const { fragmentSerialization } = require("./serialization.js");
// https://w3c.github.io/DOM-Parsing/#the-innerhtml-mixin
exports.implementation = class InnerHTMLImpl {
// https://w3c.github.io/DOM-Parsing/#dom-innerhtml-innerhtml
get innerHTML() {
return fragmentSerialization(this, {
requireWellFormed: true,
globalObject: this._globalObject
});
}
set innerHTML(markup) {
const contextElement = isShadowRoot(this) ? this.host : this;
// _console('innerHTML', markup)
const fragment = parseFragment(markup, contextElement);
let contextObject = this;
if (this.nodeType === NODE_TYPE.ELEMENT_NODE && this.localName === "template" && this.namespaceURI === HTML_NS) {
contextObject = this._templateContents;
}
contextObject._replaceAll(fragment);
}
};
"use strict";
const serialize = require("w3c-xmlserializer");
const DOMException = require("domexception/webidl2js-wrapper");
const utils = require("../generated/utils");
exports.implementation = class XMLSerializerImpl {
constructor(globalObject) {
this._globalObject = globalObject;
}
serializeToString(root) {
try {
return serialize(utils.wrapperForImpl(root), { requireWellFormed: false });
} catch (e) {
throw DOMException.create(this._globalObject, [e.message, "InvalidStateError"]);
}
}
};
"use strict";
const nodeTypes = require("../node-type");
const { domSymbolTree } = require("../helpers/internal-constants");
// Serialization only requires a subset of the tree adapter interface.
// Tree traversing
exports.getFirstChild = node => node.firstChild;
exports.getChildNodes = node => node.childNodesForSerializing || domSymbolTree.childrenToArray(node);
exports.getParentNode = node => node.parentNode;
exports.getAttrList = element => {
const attributeList = [...element._attributeList];
if (element._isValue && attributeList.every(attr => attr.name !== "is")) {
attributeList.unshift({
name: "is",
namespace: null,
prefix: null,
value: element._isValue
});
}
return attributeList;
};
// Node data
exports.getTagName = element => element._qualifiedName; // https://github.com/inikulin/parse5/issues/231
exports.getNamespaceURI = element => element.namespaceURI;
exports.getTextNodeContent = exports.getCommentNodeContent = node => node.data;
exports.getDocumentTypeNodeName = node => node.name;
exports.getDocumentTypeNodePublicId = node => node.publicId;
exports.getDocumentTypeNodeSystemId = node => node.systemId;
exports.getTemplateContent = templateElement => templateElement._templateContents;
exports.getDocumentMode = document => document._mode;
// Node types
exports.isTextNode = node => node.nodeType === nodeTypes.TEXT_NODE;
exports.isCommentNode = node => node.nodeType === nodeTypes.COMMENT_NODE;
exports.isDocumentTypeNode = node => node.nodeType === nodeTypes.DOCUMENT_TYPE_NODE;
exports.isElementNode = node => node.nodeType === nodeTypes.ELEMENT_NODE;
// Source code location
exports.setNodeSourceCodeLocation = (node, location) => {
node.sourceCodeLocation = location;
};
exports.getNodeSourceCodeLocation = node => node.sourceCodeLocation;
exports.updateNodeSourceCodeLocation = (node, endLocation) => {
Object.assign(node.sourceCodeLocation, endLocation);
};
This diff is collapsed.
"use strict";
const EventImpl = require("./Event-impl").implementation;
const CloseEventInit = require("../generated/CloseEventInit");
class CloseEventImpl extends EventImpl {}
CloseEventImpl.defaultInit = CloseEventInit.convert(undefined);
exports.implementation = CloseEventImpl;
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
"use strict";
const UIEventImpl = require("./UIEvent-impl").implementation;
const FocusEventInit = require("../generated/FocusEventInit");
class FocusEventImpl extends UIEventImpl {}
FocusEventImpl.defaultInit = FocusEventInit.convert(undefined);
exports.implementation = FocusEventImpl;
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
This diff is collapsed.
Markdown is supported
0% or
You are about to add 0 people to the discussion. Proceed with caution.
Finish editing this message first!
Please register or to comment