!function(h){"use strict";var i=function(i,o,r){var u,s,v,c,t={},m=0,a=0,l={sensitivity:7,interval:100,timeout:0};function f(e){u=e.clientX,s=e.clientY}function e(e){return a&&(a=clearTimeout(a)),i.removeEventListener("mousemove",f),1!==m&&(v=e.clientX,c=e.clientY,i.addEventListener("mousemove",f),a=setTimeout(function(){!function e(t,n){if(a&&(a=clearTimeout(a)),Math.abs(v-u)+Math.abs(c-s) operation && typeof operation === 'object'); } if (options.operation && typeof options.operation === 'object') { return [ options.operation ]; } return []; } /** * Capture one editor-relative selection snapshot before a batched mutation. * * @param {Object|null} editorHost Active schema editor host. * @param {Object} options Executor options. * @returns {Object|null} Saved cursor/selection snapshot. */ function captureSelectionSnapshot(editorHost, options = {}) { if ( options.restoreCursor === false || !editorHost || typeof editorHost.isSelectionInEditor !== 'function' || typeof editorHost.saveCursorPosition !== 'function' || !editorHost.isSelectionInEditor() ) { return null; } return editorHost.saveCursorPosition(); } /** * Resolve the shared list tracker module. * * @returns {Object|null} List tracker module when loaded. */ function getListTrackerModule() { return SFE.ListBlockTracker || null; } /** * Resolve one live tracker for an editor-bound list root. * * @param {Object|null} editorHost Active schema editor host. * @returns {Object|null} Active list tracker. */ function getTrackerForEditor(editorHost) { const listTracker = getListTrackerModule(); if (!listTracker || !editorHost || !isListElement(editorHost.element)) { return null; } if (editorHost.element._mwpListTracker?.listElement) { return editorHost.element._mwpListTracker; } if (listTracker.active?.listElement === editorHost.element) { return listTracker.active; } if (typeof listTracker.init === 'function') { return listTracker.init(editorHost.element, editorHost.originalBlock || {}); } return null; } /** * Sync one editor instance to the tracker's current root list element. * * Root list type changes replace the editable element. All editor-facing * callers should update their element reference through this helper instead * of assuming the original root still exists. * * @param {Object|null} editorHost Active schema editor host. * @param {Object|null} tracker Active list tracker. * @returns {void} */ function syncEditorRoot(editorHost, tracker) { if (!editorHost || !tracker?.listElement) { return; } if (editorHost.element !== tracker.listElement) { editorHost.element = tracker.listElement; } if (typeof editorHost.syncPlaceholderState === 'function') { editorHost.syncPlaceholderState(); } } /** * Restore one saved editor-relative selection after a batched mutation. * * @param {Object|null} editorHost Active schema editor host. * @param {Object|null} savedSelection Saved cursor/selection snapshot. * @returns {void} */ function restoreSelectionSnapshot(editorHost, savedSelection) { if ( !savedSelection || !editorHost || typeof editorHost.restoreCursorPosition !== 'function' ) { return; } try { if (typeof editorHost.element?.focus === 'function') { editorHost.element.focus(); } } catch (error) { // Focus failures are non-fatal; selection restore below may still work. } editorHost.restoreCursorPosition(savedSelection); } /** * Resolve the current list element targeted by one list-editor selection. * * When the selection is inside a nested list item, the target is that * list item's immediate parent list. If the selection cannot be mapped to * a concrete list item, fall back to the editor root list itself. * * @param {Object|null} editorHost Active schema editor host. * @returns {HTMLElement|null} Target list element. */ function getCurrentListElement(editorHost) { if (!editorHost || !isListElement(editorHost.element)) { return null; } const currentListItem = typeof editorHost.getCurrentListItem === 'function' ? editorHost.getCurrentListItem() : null; if (currentListItem?.parentElement && isListElement(currentListItem.parentElement)) { return currentListItem.parentElement; } const currentList = typeof editorHost.getParentList === 'function' ? editorHost.getParentList() : null; return isListElement(currentList) ? currentList : editorHost.element; } /** * Resolve the schema/public-api list path for one concrete list element. * * @param {Object|null} tracker Active list tracker. * @param {HTMLElement|null} listElement Concrete list element. * @returns {string} Root-relative list path. */ function getListPathForElement(tracker, listElement) { const listTracker = getListTrackerModule(); if (!listTracker || !tracker?.listElement || !isListElement(listElement)) { return ''; } if (typeof listTracker.getPathForList === 'function') { return String(listTracker.getPathForList(tracker, listElement) || ''); } return listElement === tracker.listElement ? '' : ''; } /** * Resolve the schema/public-api item path for one concrete list item. * * @param {Object|null} tracker Active list tracker. * @param {HTMLLIElement|null} listItem Concrete list item. * @returns {string} Root-relative item path. */ function getListItemPathForElement(tracker, listItem) { const listTracker = getListTrackerModule(); if ( !listTracker || !tracker?.listElement || !listItem || listItem.nodeType !== Node.ELEMENT_NODE || listItem.tagName !== 'LI' || typeof listTracker.getPathIndexesForItem !== 'function' ) { return ''; } const pathIndexes = listTracker.getPathIndexesForItem(tracker, listItem); return Array.isArray(pathIndexes) && pathIndexes.length ? pathIndexes.join('_') : ''; } /** * Resolve the current runtime UUID for one concrete list element. * * @param {Object|null} tracker Active list tracker. * @param {HTMLElement|null} listElement Concrete list element. * @returns {string} Session-scoped list UUID. */ function getListRuntimeUuidForElement(tracker, listElement) { const listTracker = getListTrackerModule(); if ( !listTracker || !tracker?.listElement || !isListElement(listElement) || typeof listTracker.getRuntimeUuidForList !== 'function' ) { return ''; } return String(listTracker.getRuntimeUuidForList(tracker, listElement) || ''); } /** * Resolve the current runtime UUID for one concrete list item. * * @param {Object|null} tracker Active list tracker. * @param {HTMLLIElement|null} listItem Concrete list item. * @returns {string} Session-scoped item UUID. */ function getListItemRuntimeUuidForElement(tracker, listItem) { const listTracker = getListTrackerModule(); if ( !listTracker || !tracker?.listElement || !listItem || listItem.nodeType !== Node.ELEMENT_NODE || listItem.tagName !== 'LI' || typeof listTracker.getRuntimeUuidForItem !== 'function' ) { return ''; } return String(listTracker.getRuntimeUuidForItem(tracker, listItem) || ''); } /** * Return the schema-declared editor operations for one active editor. * * @param {Object|null} editorHost Active schema editor host. * @returns {Object[]} Supported schema operation descriptors. */ function getEditorOperations(editorHost) { return Array.isArray(editorHost?.options?.operations) ? editorHost.options.operations.filter(operation => operation && typeof operation === 'object') : []; } /** * Return one component map for the current active editor session. * * @param {Object|null} editorState Active editor state. * @returns {Object} Component metadata keyed by component ID. */ function getActiveEditorComponentMap(editorState) { if (!editorState || !Array.isArray(editorState.editableComponents)) { return {}; } return editorState.editableComponents.reduce((map, component) => { const componentId = String(component?.id || '').trim(); if (!componentId || !component?.element) { return map; } map[componentId] = component; return map; }, {}); } /** * Normalize one candidate string array. * * @param {*} rawValues Candidate values. * @returns {string[]} Trimmed non-empty strings. */ function normalizeStringArray(rawValues) { return Array.isArray(rawValues) ? rawValues .map(value => String(value || '').trim()) .filter(Boolean) : []; } /** * Return one normalized link capability object for the supplied format token. * * @param {Object} inlineCapabilities Available inline format capabilities. * @param {string} formatToken Inline format token. * @returns {Object} Normalized capability data. */ function getInlineLinkCapability(inlineCapabilities, formatToken) { const capability = inlineCapabilities?.[formatToken] && typeof inlineCapabilities[formatToken] === 'object' ? inlineCapabilities[formatToken] : {}; return { ...capability, tag: String(capability.tag || '').trim().toLowerCase(), allowedTargets: normalizeStringArray(capability.allowedTargets), allowedRelTokens: normalizeStringArray(capability.allowedRelTokens).map(value => value.toLowerCase()), allowedProtocols: normalizeStringArray(capability.allowedProtocols).map(value => value.toLowerCase()), autoProtocol: typeof capability.autoProtocol === 'string' ? capability.autoProtocol.trim().toLowerCase() : '', allowsRelativeUrls: capability.allowsRelativeUrls !== false, allowsAnchorLinks: capability.allowsAnchorLinks !== false, preservesUnknownRelTokens: capability.preservesUnknownRelTokens === true, }; } /** * Return whether one candidate attribute payload contains link-like data. * * @param {Object|null} candidateAttributes Candidate link payload. * @returns {boolean} True when link-like keys are present. */ function componentRunAttributesContainLinkData(candidateAttributes) { if (!candidateAttributes || typeof candidateAttributes !== 'object') { return false; } if ( Object.prototype.hasOwnProperty.call(candidateAttributes, 'href') || Object.prototype.hasOwnProperty.call(candidateAttributes, 'url') || Object.prototype.hasOwnProperty.call(candidateAttributes, 'target') || Object.prototype.hasOwnProperty.call(candidateAttributes, 'rel') ) { return true; } return Boolean(candidateAttributes.settings && typeof candidateAttributes.settings === 'object'); } /** * Resolve one raw per-format link attribute payload. * * @param {Object|null} rawFormatAttributes Raw format attribute map. * @param {string} formatToken Current link format token. * @param {string[]} linkFormatTokens Active link format tokens. * @returns {Object} Raw link attribute payload. */ function getComponentRunLinkFormatAttributes(rawFormatAttributes, formatToken, linkFormatTokens) { const source = rawFormatAttributes && typeof rawFormatAttributes === 'object' ? rawFormatAttributes : {}; const directAttributes = source[formatToken]; if (directAttributes && typeof directAttributes === 'object' && !Array.isArray(directAttributes)) { return directAttributes; } if (!Array.isArray(linkFormatTokens) || linkFormatTokens.length !== 1) { return {}; } const misplacedToken = Object.keys(source).find(token => { if (String(token || '').trim() === formatToken) { return false; } return componentRunAttributesContainLinkData(source[token]); }); return misplacedToken ? source[misplacedToken] : {}; } /** * Return whether the supplied rel token is allowed for one link capability. * * @param {string} relToken Candidate rel token. * @param {Object} capability Normalized link capability data. * @returns {boolean} True when the token is allowed. */ function linkCapabilityAllowsRelToken(relToken, capability) { const token = String(relToken || '').trim().toLowerCase(); if (!token) { return false; } return !capability.allowedRelTokens.length || capability.allowedRelTokens.includes(token) || capability.preservesUnknownRelTokens; } /** * Apply one model-facing link settings payload onto raw link attributes. * * @param {Object|null} linkAttributes Current sanitized attributes. * @param {Object|null} settings Model-facing settings payload. * @param {Object} capability Normalized link capability data. * @returns {Object} Merged link attributes. */ function mergeComponentLinkSettingsIntoAttributes(linkAttributes, settings, capability) { const merged = linkAttributes && typeof linkAttributes === 'object' ? { ...linkAttributes } : {}; const source = settings && typeof settings === 'object' ? settings : {}; if (Object.prototype.hasOwnProperty.call(source, 'new_tab')) { if (source.new_tab && capability.allowedTargets.includes('_blank')) { merged.target = '_blank'; } else if (!source.new_tab && merged.target === '_blank') { delete merged.target; } } if (Object.prototype.hasOwnProperty.call(source, 'no_follow')) { const relTokens = Array.from(new Set( String(merged.rel || '') .split(/\s+/) .map(value => String(value || '').trim().toLowerCase()) .filter(Boolean) )); if (source.no_follow && linkCapabilityAllowsRelToken('nofollow', capability)) { relTokens.push('nofollow'); } else if (!source.no_follow) { const nextTokens = relTokens.filter(token => token !== 'nofollow'); relTokens.length = 0; relTokens.push(...nextTokens); } if (relTokens.length) { merged.rel = Array.from(new Set(relTokens)).join(' '); } else { delete merged.rel; } } return merged; } /** * Sanitize one candidate link href against schema capability metadata. * * @param {*} rawHref Candidate raw href or url value. * @param {Object} capability Normalized link capability data. * @returns {string} Sanitized href or an empty string. */ function sanitizeComponentLinkHref(rawHref, capability) { const value = String(rawHref || '').trim(); if (!value) { return ''; } if (value.startsWith('#')) { return capability.allowsAnchorLinks ? value : ''; } if (/^(\/|\.\/|\.\.\/)/.test(value)) { return capability.allowsRelativeUrls ? value : ''; } const protocolMatch = value.match(/^([a-z][a-z0-9+.-]*):/i); if (protocolMatch) { const protocol = String(protocolMatch[1] || '').trim().toLowerCase(); return !capability.allowedProtocols.length || capability.allowedProtocols.includes(protocol) ? value : ''; } if (capability.autoProtocol) { return `${capability.autoProtocol}://${value}`; } return capability.allowsRelativeUrls ? value : ''; } /** * Normalize one raw run format-attribute map into canonical FrontEdit shape. * * @param {Object|null} rawFormatAttributes Raw per-format attribute map. * @param {string[]} formats Active sanitized format tokens. * @param {Object} inlineCapabilities Available inline format capabilities. * @returns {Object} Canonical format-attribute map. */ function normalizeComponentRunFormatAttributes(rawFormatAttributes, formats, inlineCapabilities) { const source = rawFormatAttributes && typeof rawFormatAttributes === 'object' ? rawFormatAttributes : {}; const normalized = {}; const linkFormatTokens = Array.from(new Set( (Array.isArray(formats) ? formats : []) .map(value => String(value || '').trim()) .filter(token => getInlineLinkCapability(inlineCapabilities, token).tag === 'a') )); formats.forEach(formatToken => { const capability = getInlineLinkCapability(inlineCapabilities, formatToken); if (capability.tag !== 'a') { return; } const rawLinkAttributes = getComponentRunLinkFormatAttributes(source, formatToken, linkFormatTokens); if (!rawLinkAttributes || typeof rawLinkAttributes !== 'object') { return; } let linkAttributes = {}; const href = sanitizeComponentLinkHref(rawLinkAttributes.href || rawLinkAttributes.url || '', capability); if (href) { linkAttributes.href = href; } const target = String(rawLinkAttributes.target || '').trim(); if (!capability.allowedTargets.length || capability.allowedTargets.includes(target)) { if (target) { linkAttributes.target = target; } } if (rawLinkAttributes.settings && typeof rawLinkAttributes.settings === 'object') { linkAttributes = mergeComponentLinkSettingsIntoAttributes( linkAttributes, rawLinkAttributes.settings, capability ); } const rel = String(rawLinkAttributes.rel || '').trim(); if (rel) { const normalizedRel = Array.from(new Set( rel .split(/\s+/) .map(value => String(value || '').trim().toLowerCase()) .filter(token => token && linkCapabilityAllowsRelToken(token, capability)) )); if (normalizedRel.length) { linkAttributes.rel = normalizedRel.join(' '); } } if (Object.keys(linkAttributes).length) { normalized[formatToken] = linkAttributes; } }); return normalized; } /** * Normalize one raw structured run list into canonical FrontEdit component runs. * * @param {*} rawRuns Candidate raw run list. * @param {Object} inlineCapabilities Available inline format capabilities. * @returns {Array} Canonical structured runs. */ function normalizeComponentRuns(rawRuns, inlineCapabilities) { if (!Array.isArray(rawRuns)) { return []; } return rawRuns.reduce((runs, run) => { if (!run || typeof run !== 'object' || !Object.prototype.hasOwnProperty.call(run, 'text')) { return runs; } const text = String(run.text || ''); const formats = Array.isArray(run.formats) ? Array.from(new Set( run.formats .map(value => String(value || '').trim()) .filter(token => token && Object.prototype.hasOwnProperty.call(inlineCapabilities || {}, token)) )) : []; const rawFormatAttributes = run.formatAttributes && typeof run.formatAttributes === 'object' ? run.formatAttributes : (run.format_attributes && typeof run.format_attributes === 'object' ? run.format_attributes : {}); runs.push({ text, formats, formatAttributes: normalizeComponentRunFormatAttributes(rawFormatAttributes, formats, inlineCapabilities), }); return runs; }, []); } /** * Read one normalized host-link attribute snapshot from a component element. * * @param {Element|null} element Current host element. * @returns {Object} Existing host link attributes. */ function getExistingComponentHostLinkAttributes(element) { if (!element || element.nodeType !== Node.ELEMENT_NODE) { return {}; } const href = String(element.getAttribute('href') || '').trim(); const target = String(element.getAttribute('target') || '').trim(); const rel = String(element.getAttribute('rel') || '').trim(); const attributes = {}; if (href) { attributes.href = href; } if (target) { attributes.target = target; } if (rel) { attributes.rel = rel; } return attributes; } /** * Build one canonical host-link attribute payload from an operation input. * * @param {Object} operationInput Raw operation payload. * @param {Object} capability Normalized link capability data. * @param {Object} operation Resolved schema operation metadata. * @param {Element} element Host component element. * @returns {Object|null} Canonical link attributes or null when invalid. */ function normalizeComponentHostLinkOperationPayload(operationInput, capability, operation, element) { const payload = operationInput.link && typeof operationInput.link === 'object' ? operationInput.link : (operationInput.attributes && typeof operationInput.attributes === 'object' && !Array.isArray(operationInput.attributes) ? operationInput.attributes : (operationInput.value && typeof operationInput.value === 'object' && !Array.isArray(operationInput.value) ? operationInput.value : operationInput)); let nextAttributes = operation?.preserveUnspecifiedAttributes === false ? {} : getExistingComponentHostLinkAttributes(element); let didReceivePayload = false; if (Object.prototype.hasOwnProperty.call(payload, 'href') || Object.prototype.hasOwnProperty.call(payload, 'url')) { didReceivePayload = true; const href = sanitizeComponentLinkHref(payload.href || payload.url || '', capability); if (href) { nextAttributes.href = href; } else { delete nextAttributes.href; } } if (Object.prototype.hasOwnProperty.call(payload, 'target') || Object.prototype.hasOwnProperty.call(payload, 'linkTarget')) { didReceivePayload = true; const target = String(payload.target || payload.linkTarget || '').trim(); if (!target) { delete nextAttributes.target; } else if (!capability.allowedTargets.length || capability.allowedTargets.includes(target)) { nextAttributes.target = target; } } if (Object.prototype.hasOwnProperty.call(payload, 'rel')) { didReceivePayload = true; const rel = String(payload.rel || '').trim(); if (!rel) { delete nextAttributes.rel; } else { const normalizedRel = Array.from(new Set( rel .split(/\s+/) .map(value => String(value || '').trim().toLowerCase()) .filter(token => token && linkCapabilityAllowsRelToken(token, capability)) )); if (normalizedRel.length) { nextAttributes.rel = normalizedRel.join(' '); } else { delete nextAttributes.rel; } } } const settings = payload.settings && typeof payload.settings === 'object' ? { ...payload.settings } : {}; if (Object.prototype.hasOwnProperty.call(payload, 'new_tab')) { settings.new_tab = payload.new_tab; didReceivePayload = true; } if (Object.prototype.hasOwnProperty.call(payload, 'no_follow')) { settings.no_follow = payload.no_follow; didReceivePayload = true; } if (Object.keys(settings).length) { didReceivePayload = true; nextAttributes = mergeComponentLinkSettingsIntoAttributes(nextAttributes, settings, capability); } return didReceivePayload ? nextAttributes : null; } /** * Apply one normalized host-link attribute payload to a component element. * * @param {Element|null} element Host component element. * @param {Object} linkAttributes Canonical link attributes. * @returns {boolean} True when the mutation applied. */ function applyComponentHostLinkAttributes(element, linkAttributes) { if (!element || element.nodeType !== Node.ELEMENT_NODE || !linkAttributes || typeof linkAttributes !== 'object') { return false; } const href = String(linkAttributes.href || '').trim(); const target = String(linkAttributes.target || '').trim(); const rel = String(linkAttributes.rel || '').trim(); if (href) { element.setAttribute('href', href); if ('href' in element) { element.href = href; } } else { element.removeAttribute('href'); } if (target) { element.setAttribute('target', target); } else { element.removeAttribute('target'); } if (rel) { element.setAttribute('rel', rel); } else { element.removeAttribute('rel'); } return true; } /** * Flatten one line-based rich-text payload into canonical runs. * * This remains an undocumented compatibility input so callers such as ABE * can migrate to direct runs later without FrontEdit reimplementing broker logic * outside the shared executor. * * @param {*} rawLines Candidate raw line list. * @returns {Array} Flat run list with literal newline separators. */ function flattenComponentLineRuns(rawLines) { if (!Array.isArray(rawLines)) { return []; } return rawLines.reduce((runs, line, index) => { if (index > 0) { runs.push({ text: '\n', formats: [], formatAttributes: {}, }); } if (Array.isArray(line?.runs)) { runs.push(...line.runs); } return runs; }, []); } /** * Return the lowercase host tag name for one component element. * * @param {Element|null} hostElement Candidate host element. * @returns {string} Lowercase host tag name. */ function getComponentHostTagName(hostElement) { return hostElement && hostElement.tagName ? String(hostElement.tagName || '').trim().toLowerCase() : ''; } /** * Build one inline format wrapper for a component run token. * * @param {Object} inlineCapabilities Available inline format capabilities. * @param {string} formatToken Format token. * @param {Object|null} formatAttributes Optional format attributes. * @returns {HTMLElement|null} Wrapper element. */ function buildComponentFormatWrapper(inlineCapabilities, formatToken, formatAttributes = null) { const tagName = String(inlineCapabilities?.[formatToken]?.tag || '').trim().toLowerCase(); if (!tagName) { return null; } const element = document.createElement(tagName); if (tagName === 'a' && formatAttributes && typeof formatAttributes === 'object') { const href = String(formatAttributes.href || '').trim(); if (href) { element.setAttribute('href', href); } const target = String(formatAttributes.target || '').trim(); if (target) { element.setAttribute('target', target); } const rel = String(formatAttributes.rel || '').trim(); if (rel) { element.setAttribute('rel', rel); } } return element; } /** * Hoist same-tag inline format attributes onto one host component element. * * @param {Array} runs Structured text runs. * @param {Object} inlineCapabilities Available inline format capabilities. * @param {Element|null} hostElement Live host element. * @returns {{runs:Array,hostAttributes:Object}} Hoisted run data. */ function hoistComponentHostLevelFormats(runs, inlineCapabilities, hostElement = null) { const hostTagName = getComponentHostTagName(hostElement); if (!hostTagName) { return { runs: Array.isArray(runs) ? runs : [], hostAttributes: {}, }; } const hostAttributes = {}; const normalizedRuns = (Array.isArray(runs) ? runs : []).map(run => { const formats = Array.isArray(run?.formats) ? run.formats : []; const formatAttributes = run?.formatAttributes && typeof run.formatAttributes === 'object' ? { ...run.formatAttributes } : {}; const nextFormats = []; formats.forEach(formatToken => { const formatTagName = String(inlineCapabilities?.[formatToken]?.tag || '').trim().toLowerCase(); if (!formatTagName || formatTagName !== hostTagName) { nextFormats.push(formatToken); return; } const attributes = formatAttributes?.[formatToken]; if (attributes && typeof attributes === 'object' && !Array.isArray(attributes)) { Object.assign(hostAttributes, attributes); } delete formatAttributes[formatToken]; }); return { ...run, formats: nextFormats, formatAttributes, }; }); return { runs: normalizedRuns, hostAttributes, }; } /** * Apply hoisted inline-format attributes onto one host element. * * @param {Element|null} hostElement Live host element. * @param {Object|null} hostAttributes Hoisted host attributes. * @returns {void} */ function applyComponentHostLevelFormatAttributes(hostElement, hostAttributes = null) { if (!hostElement || typeof hostElement.setAttribute !== 'function' || typeof hostElement.removeAttribute !== 'function') { return; } const attributes = hostAttributes && typeof hostAttributes === 'object' ? hostAttributes : {}; ['href', 'target', 'rel'].forEach(attributeName => { const value = typeof attributes[attributeName] === 'string' ? attributes[attributeName].trim() : ''; if (value) { hostElement.setAttribute(attributeName, value); return; } hostElement.removeAttribute(attributeName); }); } /** * Build deterministic HTML from one normalized component run sequence. * * @param {Array} runs Structured text runs. * @param {Object} inlineCapabilities Available inline format capabilities. * @param {Object} editorOptions Runtime editor options. * @param {Element|null} hostElement Live host element. * @returns {{html:string,hostAttributes:Object}} Rendered HTML and host attrs. */ function buildComponentHtmlFromRuns(runs, inlineCapabilities, editorOptions = {}, hostElement = null) { const container = document.createElement('div'); const extractionOptions = editorOptions?.options && typeof editorOptions.options === 'object' ? editorOptions.options : {}; const hoisted = hoistComponentHostLevelFormats(runs, inlineCapabilities, hostElement); (Array.isArray(hoisted.runs) ? hoisted.runs : []).forEach(run => { const text = String(run?.text || ''); if (!text) { return; } const segments = extractionOptions.newlinesToBR === true || String(editorOptions?.enterMode || '').trim() === 'linebreak' ? text.split('\n') : [ text ]; segments.forEach((segment, index) => { if (index > 0) { container.appendChild(document.createElement('br')); } if (!segment) { return; } let node = document.createTextNode(segment); (Array.isArray(run.formats) ? run.formats : []).forEach(formatToken => { const wrapper = buildComponentFormatWrapper( inlineCapabilities, formatToken, run.formatAttributes && typeof run.formatAttributes === 'object' ? run.formatAttributes[formatToken] || null : null ); if (!wrapper) { return; } wrapper.appendChild(node); node = wrapper; }); container.appendChild(node); }); }); return { html: container.innerHTML, hostAttributes: hoisted.hostAttributes, }; } /** * Build one plain-text replacement string from normalized runs. * * @param {Array} runs Structured text runs. * @returns {string} Joined plain-text content. */ function buildPlainTextFromComponentRuns(runs) { return (Array.isArray(runs) ? runs : []) .map(run => String(run?.text || '')) .join(''); } /** * Resolve one schema component-content operation from executor options. * * @param {Object|null} editorState Active editor state. * @param {Object} options Executor options. * @returns {Object|null} Matching component operation metadata. */ function resolveComponentOperation(editorState, options = {}) { const operationInput = options.operation && typeof options.operation === 'object' ? options.operation : options; const componentId = String( operationInput.componentId || operationInput.component || operationInput.component_id || '' ).trim(); if (!componentId) { return null; } const component = getActiveEditorComponentMap(editorState)[componentId] || null; const editorOperations = Array.isArray(component?.editorOptions?.operations) ? component.editorOptions.operations.filter(operation => operation && typeof operation === 'object') : []; const suppliedKind = String(operationInput.kind || '').trim(); if (suppliedKind === 'replace_component_content' || suppliedKind === 'text_rewrite') { return { ...operationInput, component: componentId, kind: 'replace_component_content', }; } if (suppliedKind === 'link_change' || suppliedKind === 'inline_link_change') { return { ...operationInput, component: componentId, kind: 'link_change', }; } const suppliedOperationId = String( operationInput.id || operationInput.operationId || '' ).trim(); if (!suppliedOperationId) { return null; } const matched = editorOperations.find(operation => ( String(operation?.id || '').trim() === suppliedOperationId && ( String(operation?.kind || '').trim() === 'text_rewrite' || String(operation?.kind || '').trim() === 'replace_component_content' || String(operation?.kind || '').trim() === 'link_change' ) )) || null; if (!matched) { return null; } return { ...matched, component: componentId, kind: String(matched.kind || '').trim() === 'link_change' ? 'link_change' : 'replace_component_content', }; } /** * Execute one or more schema-backed component-content replacements. * * @param {Object} options Executor options. * @returns {Object|null} Applied-operation summary. */ function executeComponentOperations(options = {}) { const editorState = options.editorState || null; const editorHost = options.editorHost || null; const componentMap = getActiveEditorComponentMap(editorState); const inputOperations = Array.isArray(options.operations) ? options.operations : [ options.operation || options ]; if (!editorState || !editorHost || !Object.keys(componentMap).length || !inputOperations.length) { return null; } const savedSelection = captureSelectionSnapshot(editorHost, options); const results = []; const updatedComponentIds = []; inputOperations.forEach(inputOperation => { const operationInput = inputOperation && typeof inputOperation === 'object' && !Array.isArray(inputOperation) ? inputOperation : {}; const operation = resolveComponentOperation(editorState, operationInput); if (!operation) { return; } const componentId = String(operation.component || '').trim(); const component = componentMap[componentId] || null; if (!component || !component.element) { return; } const inlineCapabilities = ( component.editorOptions?.inlineFormatCapabilities && typeof component.editorOptions.inlineFormatCapabilities === 'object' ) ? component.editorOptions.inlineFormatCapabilities : {}; if (operation.kind === 'link_change') { const formatToken = String(operation.format || operationInput.format || '').trim(); const capability = getInlineLinkCapability(inlineCapabilities, formatToken); const hostTagName = String(component.element?.tagName || '').trim().toLowerCase(); if (capability.tag !== 'a' || hostTagName !== capability.tag) { return; } const linkAttributes = normalizeComponentHostLinkOperationPayload( operationInput, capability, operation, component.element ); if (!linkAttributes || !applyComponentHostLinkAttributes(component.element, linkAttributes)) { return; } } else { const bindingSource = String( operationInput.bindingSource || component?.bindingSource || '' ).trim().toLowerCase(); if (bindingSource !== 'html' && bindingSource !== 'plaintext') { return; } const rawRuns = Array.isArray(operationInput.runs) ? operationInput.runs : flattenComponentLineRuns(operationInput.lines); const hasDirectTextPayload = Object.prototype.hasOwnProperty.call(operationInput, 'text'); const runs = normalizeComponentRuns( hasDirectTextPayload && bindingSource === 'plaintext' && !rawRuns.length ? [ { text: String(operationInput.text || ''), formats: [], formatAttributes: {} } ] : rawRuns, inlineCapabilities ); const hasReplacementPayload = hasDirectTextPayload || Array.isArray(operationInput.runs) || Array.isArray(operationInput.lines); if (!hasReplacementPayload) { return; } if (bindingSource === 'plaintext') { component.element.textContent = hasDirectTextPayload && !rawRuns.length ? String(operationInput.text || '') : buildPlainTextFromComponentRuns(runs); } else { const rendered = buildComponentHtmlFromRuns( runs, inlineCapabilities, component.editorOptions || {}, component.element ); component.element.innerHTML = rendered.html; applyComponentHostLevelFormatAttributes(component.element, rendered.hostAttributes); } } updatedComponentIds.push(componentId); results.push({ id: String(operation.id || '').trim(), kind: operation.kind === 'link_change' ? 'link_change' : 'replace_component_content', componentId, applied: true, }); }); if (!results.length) { return null; } restoreSelectionSnapshot(editorHost, savedSelection); if (typeof options.afterSync === 'function') { options.afterSync({ editorState, editorHost, results, updatedComponentIds: Array.from(new Set(updatedComponentIds)), }); } if (typeof editorHost.updateToolbarState === 'function') { editorHost.updateToolbarState(); } const historyApi = getSessionHistoryApiForHost(editorHost); if (options.saveHistory !== false && typeof historyApi?.saveToHistory === 'function') { historyApi.saveToHistory(); } return { results, updatedComponentIds: Array.from(new Set(updatedComponentIds)), operationsApplied: results .map(result => result.id || result.kind) .filter(Boolean), }; } /** * Resolve one schema component-media operation from executor options. * * @param {Object|null} editorState Active editor state. * @param {Object} options Executor options. * @returns {Object|null} Matching component-media operation metadata. */ function resolveMediaOperation(editorState, options = {}) { const operationInput = options.operation && typeof options.operation === 'object' ? options.operation : options; const componentId = String( operationInput.componentId || operationInput.component || operationInput.component_id || '' ).trim(); if (!componentId) { return null; } const component = getActiveEditorComponentMap(editorState)[componentId] || null; if (!component?.element || !component?.mediaDescriptor) { return null; } const suppliedKind = String(operationInput.kind || '').trim(); if (suppliedKind === 'replace_component_media') { return { ...operationInput, component: componentId, kind: 'replace_component_media', }; } return null; } /** * Execute one or more schema-backed component-media replacements through the * active media-session host. * * @param {Object} options Executor options. * @returns {Object|null} Applied-operation summary. */ function executeMediaOperations(options = {}) { const editorState = options.editorState || null; const editorHost = options.editorHost || null; const componentMap = getActiveEditorComponentMap(editorState); const inputOperations = Array.isArray(options.operations) ? options.operations : [ options.operation || options ]; if ( !editorState || !editorHost || typeof editorHost.applyMediaSelection !== 'function' || !Object.keys(componentMap).length || !inputOperations.length ) { return null; } const activeComponentId = String( editorState.activeComponentId || editorState.activeEditableComponent?.id || '' ).trim(); const results = []; const updatedComponentIds = []; inputOperations.forEach(inputOperation => { const operationInput = inputOperation && typeof inputOperation === 'object' && !Array.isArray(inputOperation) ? inputOperation : {}; const operation = resolveMediaOperation(editorState, operationInput); if (!operation) { return; } const componentId = String(operation.component || '').trim(); const component = componentMap[componentId] || null; if (!component?.element || !component?.mediaDescriptor) { return; } if (activeComponentId && activeComponentId !== componentId) { return; } if (!activeComponentId && editorHost.element && editorHost.element !== component.element) { return; } const payload = operationInput.media && typeof operationInput.media === 'object' ? operationInput.media : (operationInput.value && typeof operationInput.value === 'object' ? operationInput.value : operationInput); const url = String(payload?.url || '').trim(); if (!url) { return; } const attachmentId = Object.prototype.hasOwnProperty.call(payload, 'attachmentId') ? payload.attachmentId : (Object.prototype.hasOwnProperty.call(payload, 'attachment_id') ? payload.attachment_id : null); const source = String( payload?.source || payload?.fromState || '' ).trim().toLowerCase() === 'library' ? 'library' : 'input'; const didApply = editorHost.applyMediaSelection(url, attachmentId, { fromState: source, }); if (didApply === false) { return; } updatedComponentIds.push(componentId); results.push({ id: String(operation.id || '').trim(), kind: 'replace_component_media', componentId, applied: true, }); }); if (!results.length) { return null; } if (typeof options.afterSync === 'function') { options.afterSync({ editorState, editorHost, results, updatedComponentIds: Array.from(new Set(updatedComponentIds)), }); } return { results, updatedComponentIds: Array.from(new Set(updatedComponentIds)), operationsApplied: results .map(result => result.id || result.kind) .filter(Boolean), }; } /** * Normalize one primitive list-operation kind to the canonical * tracker/editor operation kind. * * @param {string} kindRaw Candidate operation kind. * @returns {string} Canonical primitive operation kind or an empty string. */ function normalizePrimitiveListOperationKind(kindRaw) { const kind = String(kindRaw || '').trim().toLowerCase(); const supportedKinds = new Set([ 'insert_list_item', 'remove_list_item', 'move_list_item', 'indent_list_item', 'outdent_list_item', 'update_list_item_text', 'toggle_list_type', ]); return supportedKinds.has(kind) ? kind : ''; } /** * Normalize one public list-operation kind to the documented runtime API * vocabulary. * * Public callers intentionally use a higher-level token family than the * primitive tracker/editor operations so the external contract stays explicit * while FrontEdit keeps the low-level DOM mutation layer internal. * * @param {string} kindRaw Candidate operation kind. * @returns {string} Canonical public operation kind or an empty string. */ function normalizePublicApiListOperationKind(kindRaw) { const kind = String(kindRaw || '').trim().toLowerCase(); const supportedKinds = new Set([ 'update_list_item_text', 'insert_before', 'insert_after', 'insert_child', 'remove_list_item', 'move_before', 'move_after', 'indent_list_item', 'outdent_list_item', 'toggle_list_type', ]); return supportedKinds.has(kind) ? kind : ''; } /** * Normalize one list-operation kind for the current execution surface. * * Public API calls use the higher-level UUID-oriented vocabulary, while * internal editor/schema calls keep the primitive tracker operation kinds. * * @param {string} kindRaw Candidate operation kind. * @param {Object} options Executor options. * @returns {string} Canonical operation kind or an empty string. */ function normalizeListOperationKind(kindRaw, options = {}) { return getListTargetResolutionMode(options) === 'api_uuid' ? normalizePublicApiListOperationKind(kindRaw) : normalizePrimitiveListOperationKind(kindRaw); } /** * Return whether one operation payload explicitly defines a given key. * * @param {Object|null} operation Candidate operation payload. * @param {string} key Key to check. * @returns {boolean} True when the key exists on the payload. */ function hasOwnOperationKey(operation, key) { return !!( operation && typeof operation === 'object' && !Array.isArray(operation) && Object.prototype.hasOwnProperty.call(operation, key) ); } /** * Return the caller target-resolution mode for list operations. * * `selection` allows editor-originated calls to omit the item/list target and * resolve it from the current DOM selection. `explicit` requires path/list * tokens. `api_uuid` requires the public runtime UUID token family. * * @param {Object} options Executor options. * @returns {string} `selection`, `explicit`, or `api_uuid`. */ function getListTargetResolutionMode(options = {}) { const mode = String(options.targetResolutionMode || '').trim().toLowerCase(); if (mode === 'explicit') { return 'explicit'; } if (mode === 'api_uuid') { return 'api_uuid'; } return 'selection'; } /** * Return whether one normalized list operation targets a list item. * * @param {string} kind Canonical list operation kind. * @returns {boolean} True when the operation acts on one item path. */ function isItemTargetListOperation(kind) { return ( kind === 'remove_list_item' || kind === 'indent_list_item' || kind === 'outdent_list_item' || kind === 'update_list_item_text' || kind === 'move_list_item' ); } /** * Return whether one normalized list operation uses structural item-path * anchors without using only one direct `path`. * * @param {string} kind Canonical list operation kind. * @returns {boolean} True when the operation uses before/after/parent paths. */ function isPathAnchoredListOperation(kind) { return ( kind === 'insert_list_item' || kind === 'move_list_item' ); } /** * Return whether one normalized list operation moves an existing item. * * @param {string} kind Canonical list operation kind. * @returns {boolean} True when the operation moves one existing item. */ function isMoveListOperation(kind) { return kind === 'move_list_item'; } /** * Return whether one insert/move operation defines any supported path anchor. * * @param {Object} operationInput Raw operation payload. * @returns {boolean} True when one path anchor exists. */ function hasAnyStructuralPathAnchor(operationInput) { return ( hasOwnOperationKey(operationInput, 'path') || hasOwnOperationKey(operationInput, 'itemPath') || hasOwnOperationKey(operationInput, 'item_path') || hasOwnOperationKey(operationInput, 'beforePath') || hasOwnOperationKey(operationInput, 'before_path') || hasOwnOperationKey(operationInput, 'afterPath') || hasOwnOperationKey(operationInput, 'after_path') || hasOwnOperationKey(operationInput, 'parentPath') || hasOwnOperationKey(operationInput, 'parent_path') ); } /** * Return whether one raw operation includes any public UUID list-item target. * * @param {Object} operationInput Raw operation payload. * @returns {boolean} True when one item UUID token exists. */ function hasAnyUuidItemTarget(operationInput) { return ( hasOwnOperationKey(operationInput, 'itemUuid') || hasOwnOperationKey(operationInput, 'newItemUuid') || hasOwnOperationKey(operationInput, 'targetItemUuid') ); } /** * Return whether one public operation payload contains any path fields. * * @param {Object} operationInput Raw operation payload. * @returns {boolean} True when a path token exists. */ function hasAnyPathTarget(operationInput) { return hasAnyStructuralPathAnchor(operationInput) || hasOwnOperationKey(operationInput, 'listPath') || hasOwnOperationKey(operationInput, 'list_path'); } /** * Return whether one public payload contains only the documented keys for one * public list-operation kind. * * Unknown keys are rejected. The public list API is intentionally strict so * callers must match the documented v1 shape exactly. * * @param {Object} operationInput Raw operation payload. * @param {string} normalizedKind Canonical public operation kind. * @returns {boolean} True when no unsupported keys are present. */ function hasOnlySupportedApiUuidKeys(operationInput, normalizedKind) { const allowedKeys = new Set([ 'kind', 'contentHtml', 'contentText', ]); if ( normalizedKind === 'update_list_item_text' || normalizedKind === 'remove_list_item' || normalizedKind === 'indent_list_item' || normalizedKind === 'outdent_list_item' ) { allowedKeys.add('itemUuid'); } else if (normalizedKind === 'insert_before' || normalizedKind === 'insert_after') { allowedKeys.add('newItemUuid'); allowedKeys.add('targetItemUuid'); } else if (normalizedKind === 'insert_child') { allowedKeys.add('newItemUuid'); allowedKeys.add('targetItemUuid'); } else if (normalizedKind === 'move_before' || normalizedKind === 'move_after') { allowedKeys.add('itemUuid'); allowedKeys.add('targetItemUuid'); } else if (normalizedKind === 'toggle_list_type') { allowedKeys.add('itemUuid'); } return Object.keys(operationInput || {}).every(key => allowedKeys.has(key)); } /** * Validate that one explicit public list operation uses only the documented * target token family for its kind. * * @param {Object} operationInput Raw operation payload. * @param {string} normalizedKind Canonical list operation kind. * @returns {boolean} True when the target token shape is valid. */ function isValidExplicitListOperationTarget(operationInput, normalizedKind) { const hasPath = hasOwnOperationKey(operationInput, 'path') || hasOwnOperationKey(operationInput, 'itemPath') || hasOwnOperationKey(operationInput, 'item_path'); const hasListPath = hasOwnOperationKey(operationInput, 'listPath') || hasOwnOperationKey(operationInput, 'list_path'); if (normalizedKind === 'toggle_list_type') { return hasListPath && !hasPath; } if (isItemTargetListOperation(normalizedKind)) { return hasPath && !hasListPath; } if (isMoveListOperation(normalizedKind)) { return hasPath && !hasListPath; } if (isPathAnchoredListOperation(normalizedKind)) { return hasAnyStructuralPathAnchor(operationInput) && !hasListPath; } return true; } /** * Validate that one public API list operation uses only the UUID token family. * * API callers must treat runtime UUIDs as the external cursor model. Paths * remain internal execution details resolved by FrontEdit immediately before each * operation runs. * * @param {Object} operationInput Raw operation payload. * @param {string} normalizedKind Canonical list operation kind. * @returns {boolean} True when the UUID target shape is valid. */ function isValidApiUuidListOperationTarget(operationInput, normalizedKind) { if (!hasOnlySupportedApiUuidKeys(operationInput, normalizedKind)) { return false; } const hasItemUuid = hasOwnOperationKey(operationInput, 'itemUuid'); const hasNewItemUuid = hasOwnOperationKey(operationInput, 'newItemUuid'); const hasListUuid = hasOwnOperationKey(operationInput, 'listUuid'); const hasTargetItemUuid = hasOwnOperationKey(operationInput, 'targetItemUuid'); if (normalizedKind === 'toggle_list_type') { return hasItemUuid && !hasNewItemUuid && !hasListUuid && !hasTargetItemUuid; } if ( normalizedKind === 'update_list_item_text' || normalizedKind === 'remove_list_item' || normalizedKind === 'indent_list_item' || normalizedKind === 'outdent_list_item' ) { return hasItemUuid && !hasNewItemUuid && !hasListUuid && !hasTargetItemUuid; } if (normalizedKind === 'insert_before' || normalizedKind === 'insert_after') { return !hasItemUuid && hasNewItemUuid && !hasListUuid && hasTargetItemUuid; } if (normalizedKind === 'insert_child') { return !hasItemUuid && hasNewItemUuid && !hasListUuid && hasTargetItemUuid; } if (normalizedKind === 'move_before' || normalizedKind === 'move_after') { return hasItemUuid && !hasNewItemUuid && !hasListUuid && hasTargetItemUuid; } return false; } /** * Expand one public API list operation into one or more public operation * inputs that can be resolved against the live tree one step at a time. * * `insert_child` intentionally fans out into `insert_after` and `indent_list_item` so * the second primitive resolution runs after the new list item exists. * * @param {Object} operationInput Raw public operation payload. * @returns {Object[]} Expanded public operation inputs. */ function expandApiUuidListOperationInputs(operationInput) { const normalizedKind = normalizePublicApiListOperationKind(operationInput?.kind); if (!normalizedKind) { return []; } if (normalizedKind !== 'insert_child') { return [ { ...operationInput, kind: normalizedKind, }, ]; } return [ { ...operationInput, kind: 'insert_after', }, { kind: 'indent_list_item', itemUuid: operationInput.newItemUuid, }, ]; } /** * Resolve one public API UUID-targeted list operation to one internal * primitive operation payload with concrete path tokens. * * This runs against the current live mutated tree so later batched operations * can reuse the same stable runtime UUIDs while FrontEdit recalculates fresh paths * before each mutation. * * @param {Object|null} tracker Active list tracker. * @param {Object} operation Normalized public operation payload. * @returns {Object|null} Path-resolved primitive tracker operation payload. */ function resolveApiUuidListOperationTargets(tracker, operation) { const listTracker = getListTrackerModule(); if (!listTracker || !tracker?.listElement || !operation || typeof operation !== 'object') { return null; } const publicKind = normalizePublicApiListOperationKind(operation.kind); if (!publicKind) { return null; } const resolvedOperation = { ...operation, }; const itemUuid = String(resolvedOperation.itemUuid ?? '').trim(); const newItemUuid = String(resolvedOperation.newItemUuid ?? '').trim(); const listUuid = String(resolvedOperation.listUuid ?? '').trim(); const targetItemUuid = String(resolvedOperation.targetItemUuid ?? '').trim(); let targetItem = null; let currentItem = null; if (itemUuid) { currentItem = typeof listTracker.getItemByRuntimeUuid === 'function' ? listTracker.getItemByRuntimeUuid(tracker, itemUuid) : null; const targetPath = getListItemPathForElement(tracker, currentItem); if (!targetPath) { return null; } resolvedOperation.path = targetPath; } if (targetItemUuid) { targetItem = typeof listTracker.getItemByRuntimeUuid === 'function' ? listTracker.getItemByRuntimeUuid(tracker, targetItemUuid) : null; if (!targetItem) { return null; } } if (listUuid) { const targetList = typeof listTracker.getListByRuntimeUuid === 'function' ? listTracker.getListByRuntimeUuid(tracker, listUuid) : null; if (!targetList) { return null; } resolvedOperation.listPath = getListPathForElement(tracker, targetList); } if (newItemUuid) { resolvedOperation.newItemUuid = newItemUuid; resolvedOperation.itemUuid = newItemUuid; } if ( publicKind === 'update_list_item_text' || publicKind === 'remove_list_item' || publicKind === 'indent_list_item' || publicKind === 'outdent_list_item' ) { resolvedOperation.kind = publicKind; } else if (publicKind === 'insert_before' || publicKind === 'insert_after') { const targetPath = getListItemPathForElement(tracker, targetItem); if (!targetPath) { return null; } resolvedOperation.kind = 'insert_list_item'; if (publicKind === 'insert_before') { resolvedOperation.beforePath = targetPath; } else { resolvedOperation.afterPath = targetPath; } } else if (publicKind === 'move_before' || publicKind === 'move_after') { const targetPath = getListItemPathForElement(tracker, targetItem); if (!targetPath) { return null; } resolvedOperation.kind = 'move_list_item'; if (publicKind === 'move_before') { resolvedOperation.beforePath = targetPath; } else { resolvedOperation.afterPath = targetPath; } } else if (publicKind === 'toggle_list_type') { const containingList = currentItem?.parentElement; const containingListPath = getListPathForElement(tracker, containingList); if (!containingListPath && containingList !== tracker.listElement) { return null; } resolvedOperation.listPath = containingListPath; resolvedOperation.kind = 'toggle_list_type'; } else { return null; } delete resolvedOperation.listUuid; delete resolvedOperation.targetItemUuid; return resolvedOperation; } /** * Resolve one schema list-structure operation from executor options. * * @param {Object|null} editorHost Active schema editor host. * @param {Object} options Executor options. * @returns {Object|null} Matching list operation metadata. */ function resolveListOperation(editorHost, options = {}, executorOptions = {}) { if (options.operation && typeof options.operation === 'object') { const suppliedOperation = options.operation; const suppliedKind = normalizeListOperationKind(suppliedOperation.kind, executorOptions); if (suppliedKind) { return { ...suppliedOperation, kind: suppliedKind, }; } const suppliedOperationId = String( suppliedOperation.id || suppliedOperation.operationId || '' ).trim(); if (suppliedOperationId) { return getEditorOperations(editorHost).find(operation => ( String(operation?.id || '').trim() === suppliedOperationId && !!normalizePrimitiveListOperationKind(operation?.kind) )) || null; } } const operationId = String(options.operationId || options.id || '').trim(); if (!operationId) { return null; } return getEditorOperations(editorHost).find(operation => ( String(operation?.id || '').trim() === operationId && !!normalizePrimitiveListOperationKind(operation?.kind) )) || null; } /** * Resolve one schema block-attribute operation from executor options. * * @param {Object|null} editorHost Active schema editor host. * @param {Object} options Executor options. * @returns {Object|null} Matching block-attribute operation. */ function resolveBlockAttributeOperation(editorHost, options = {}) { if (options.operation && typeof options.operation === 'object') { const suppliedOperation = options.operation; if (String(suppliedOperation.kind || '').trim() === 'block_attribute_change') { return suppliedOperation; } const suppliedOperationId = String( suppliedOperation.id || suppliedOperation.operationId || '' ).trim(); if (suppliedOperationId) { return getEditorOperations(editorHost).find(operation => ( String(operation?.id || '').trim() === suppliedOperationId && String(operation?.kind || '').trim() === 'block_attribute_change' )) || null; } } const operationId = String(options.operationId || options.id || '').trim(); if (!operationId) { return null; } return getEditorOperations(editorHost).find(operation => ( String(operation?.id || '').trim() === operationId && String(operation?.kind || '').trim() === 'block_attribute_change' )) || null; } /** * Build one executable structural list operation for the tracker layer. * * Toolbar actions may provide only a schema operation ID, while public-api * callers generally provide canonical payload kinds. This helper resolves * either shape and fills in the active item/list path when the caller is * targeting the current selection. * * @param {Object|null} editorHost Active schema editor host. * @param {Object|null} tracker Active list tracker. * @param {Object} input Raw executor operation input. * @returns {Object|null} Normalized tracker operation payload. */ function buildExecutableListOperation(editorHost, tracker, input = {}, options = {}) { const operationInput = input && typeof input === 'object' && !Array.isArray(input) ? input : {}; const resolvedOperation = resolveListOperation(editorHost, operationInput, options); const baseOperation = resolvedOperation && typeof resolvedOperation === 'object' ? resolvedOperation : operationInput; const normalizedKind = normalizeListOperationKind(baseOperation.kind || operationInput.kind, options); if (!normalizedKind) { return null; } const targetResolutionMode = getListTargetResolutionMode(options); if ( targetResolutionMode === 'explicit' && !isValidExplicitListOperationTarget(operationInput, normalizedKind) ) { return null; } if ( targetResolutionMode === 'api_uuid' && !isValidApiUuidListOperationTarget(operationInput, normalizedKind) ) { return null; } const mergedOperation = { ...baseOperation, ...operationInput, kind: normalizedKind, }; if (targetResolutionMode === 'api_uuid') { delete mergedOperation.listItem; delete mergedOperation.listElement; return resolveApiUuidListOperationTargets(tracker, mergedOperation); } const explicitListItem = operationInput.listItem instanceof Element && operationInput.listItem.tagName === 'LI' ? operationInput.listItem : null; const currentListItem = explicitListItem || ( typeof editorHost?.getCurrentListItem === 'function' ? editorHost.getCurrentListItem() : null ); const itemPath = String( mergedOperation.path ?? mergedOperation.itemPath ?? mergedOperation.item_path ?? '' ).trim(); if ( !itemPath && normalizedKind !== 'insert_list_item' && normalizedKind !== 'move_list_item' && normalizedKind !== 'toggle_list_type' ) { if (targetResolutionMode === 'explicit') { return null; } const currentItemPath = getListItemPathForElement(tracker, currentListItem); if (!currentItemPath) { return null; } mergedOperation.path = currentItemPath; } if (normalizedKind === 'toggle_list_type') { const targetList = operationInput.listElement || getCurrentListElement(editorHost); const listPath = String( mergedOperation.listPath ?? mergedOperation.list_path ?? '' ).trim(); if (!listPath && targetResolutionMode === 'explicit') { return null; } if (!listPath && targetList) { mergedOperation.listPath = getListPathForElement(tracker, targetList); } } delete mergedOperation.listItem; delete mergedOperation.listElement; return mergedOperation; } /** * Return the explicit current value for one tracked block attribute. * * @param {Object|null} editorHost Active schema editor host. * @param {string} attributePath Canonical block attribute path. * @returns {*} Tracked value when present. */ function getTrackedAttributeValue(editorHost, attributePath) { if (!editorHost || typeof editorHost.getTrackedAttributeValue !== 'function') { return undefined; } return editorHost.getTrackedAttributeValue(attributePath); } /** * Return the current heading level represented by the live editor element. * * @param {Object|null} editorHost Active schema editor host. * @returns {number|null} Current heading level when applicable. */ function getCurrentHeadingLevel(editorHost) { const trackedLevel = getTrackedAttributeValue(editorHost, 'level'); const parsedTrackedLevel = Number.parseInt(trackedLevel, 10); if (Number.isInteger(parsedTrackedLevel) && parsedTrackedLevel >= 1 && parsedTrackedLevel <= 6) { return parsedTrackedLevel; } const tagName = String(editorHost?.element?.tagName || '').trim().toLowerCase(); if (/^h[1-6]$/.test(tagName)) { return Number.parseInt(tagName.slice(1), 10); } return null; } /** * Return the current textAlignment represented by the schema-backed editor state. * * @param {Object|null} editorHost Active schema editor host. * @param {Object|null} operation Schema block-attribute operation metadata. * @returns {string|undefined} Current normalized textAlignment value. */ function getCurrentTextAlignmentValue(editorHost, operation = null) { const textAlignmentCapability = getNormalizedTextAlignmentCapability(editorHost, operation); if (!textAlignmentCapability || !isTextAlignmentOperation(editorHost, operation)) { return undefined; } const isVirtualBindingBackedTextAlignment = isVirtualBindingBackedTextAlignmentCapability(textAlignmentCapability); if ( isVirtualBindingBackedTextAlignment && editorHost && typeof editorHost.getTextAlignmentState === 'function' ) { const domTextAlignment = String(editorHost.getTextAlignmentState() || '').trim().toLowerCase(); if (domTextAlignment) { return domTextAlignment; } return textAlignmentCapability.normalizedUnsetValue; } const trackedTextAlignment = getTrackedAttributeValue(editorHost, textAlignmentCapability.attribute); if (typeof trackedTextAlignment === 'string' && trackedTextAlignment.trim()) { return trackedTextAlignment.trim().toLowerCase(); } if (typeof trackedTextAlignment === 'undefined') { if (editorHost && typeof editorHost.getTextAlignmentState === 'function') { const domTextAlignment = String(editorHost.getTextAlignmentState() || '').trim().toLowerCase(); if (domTextAlignment) { return domTextAlignment; } } return textAlignmentCapability.normalizedUnsetValue; } return textAlignmentCapability.normalizedUnsetValue; } /** * Determines whether the given textAlignment capability relies on a virtual data-binding * (explicitly checking if the attribute is strictly named 'textAlignment'). * * @param {Object|null|undefined} textAlignmentCapability - The textAlignment capability configuration object to evaluate. * @returns {boolean} True if the capability is backed by a virtual binding; otherwise false. */ function isVirtualBindingBackedTextAlignmentCapability(textAlignmentCapability) { return !!( textAlignmentCapability && ( textAlignmentCapability.attribute === 'textAlignment' || textAlignmentCapability.attribute === 'columnAlignment' ) ); } /** * Determine whether one resolved block-attribute operation is the active * schema-backed textAlignment operation for this editor. * * @param {Object|null} editorHost Active schema editor host. * @param {Object|null} operation Schema block-attribute operation metadata. * @returns {boolean} True when this operation targets textAlignment. */ function isTextAlignmentOperation(editorHost, operation = null) { if (!operation || typeof operation !== 'object') { return false; } const textAlignmentCapability = getNormalizedTextAlignmentCapability(editorHost, operation); if (!textAlignmentCapability) { return false; } const operationAttribute = typeof operation.attribute === 'string' ? operation.attribute.trim() : ''; return !!operationAttribute && operationAttribute === textAlignmentCapability.attribute; } /** * Return the normalized schema-backed textAlignment capability for one editor. * * Centralizes the canonical textAlignment attribute lookup so both the executor and * editor mutation helpers read the same normalized shape. * * @param {Object|null} editorHost Active schema editor host. * @returns {Object|null} Normalized textAlignment capability or null. */ function getNormalizedTextAlignmentCapability(editorHost, operation = null) { if (!editorHost || typeof editorHost.getAttributeCapability !== 'function') { return null; } const operationAttribute = typeof operation?.attribute === 'string' ? operation.attribute.trim() : ''; const capabilityKey = operationAttribute === 'columnAlignment' ? 'columnAlignment' : 'textAlignment'; const textAlignmentCapability = editorHost.getAttributeCapability(capabilityKey); if (!textAlignmentCapability || typeof textAlignmentCapability !== 'object') { return null; } const attribute = typeof textAlignmentCapability.attribute === 'string' ? textAlignmentCapability.attribute.trim() : ''; if (!attribute) { return null; } const values = Array.isArray(textAlignmentCapability.values) ? textAlignmentCapability.values .map(value => String(value).trim().toLowerCase()) .filter(Boolean) : []; const hasUnsetValue = Object.prototype.hasOwnProperty.call(textAlignmentCapability, 'unsetValue'); const unsetValue = hasUnsetValue ? textAlignmentCapability.unsetValue : undefined; const normalizedUnsetValue = typeof unsetValue === 'string' ? unsetValue.trim().toLowerCase() : unsetValue; return { ...textAlignmentCapability, attribute, values, unsetValue, normalizedUnsetValue, }; } /** * Normalize one candidate block-attribute value for unset-value comparison. * * String-based schema values such as alignment tokens compare case-insensitively, * while numeric/boolean/null values preserve their original scalar semantics. * * @param {*} value Candidate attribute value. * @returns {*} Normalized comparison value. */ function normalizeBlockAttributeComparisonValue(value) { return typeof value === 'string' ? value.trim().toLowerCase() : value; } /** * Determine whether one requested block-attribute value maps to the schema's * declared unset/default value. * * @param {Object|null} descriptor Operation/capability metadata with optional `unsetValue`. * @param {*} value Candidate attribute value. * @returns {boolean} True when the value represents the unset state. */ function isUnsetBlockAttributeValue(descriptor, value) { if (!descriptor || !Object.prototype.hasOwnProperty.call(descriptor, 'unsetValue')) { return false; } return normalizeBlockAttributeComparisonValue(value) === normalizeBlockAttributeComparisonValue(descriptor.unsetValue); } /** * Normalize one requested block-attribute value for tracked attr storage. * * Schema-declared unset values are converted to `undefined` so the canonical * save path removes the corresponding attribute instead of persisting the * default marker itself. * * @param {Object|null} descriptor Operation/capability metadata with optional `unsetValue`. * @param {*} value Requested attribute value. * @returns {*} Storage-ready tracked value. */ function normalizeBlockAttributeTrackedValue(descriptor, value) { return isUnsetBlockAttributeValue(descriptor, value) ? undefined : value; } /** * Return the current block-attribute value for one schema operation. * * @param {Object|null} editorHost Active schema editor host. * @param {Object|null} operation Schema block-attribute operation metadata. * @returns {*} Current effective attribute value. */ function getCurrentBlockAttributeValue(editorHost, operation = null) { const attributePath = String(operation?.attribute || '').trim(); if (!attributePath) { return undefined; } if (attributePath === 'level') { return getCurrentHeadingLevel(editorHost); } if (operation?.tagChange === true) { return String(editorHost?.element?.tagName || '').trim().toLowerCase() || undefined; } if (attributePath === 'align' && typeof editorHost?.getBlockAlignState === 'function') { return editorHost.getBlockAlignState(); } if (isTextAlignmentOperation(editorHost, operation)) { return getCurrentTextAlignmentValue(editorHost, operation); } const trackedValue = getTrackedAttributeValue(editorHost, attributePath); if (typeof trackedValue !== 'undefined') { return trackedValue; } return Object.prototype.hasOwnProperty.call(operation || {}, 'unsetValue') ? operation.unsetValue : undefined; } /** * Apply one schema-backed block-attribute change to the live editor DOM. * * @param {Object|null} editorHost Active schema editor host. * @param {Object} operation Schema block-attribute operation metadata. * @param {*} value Requested attribute value. * @returns {boolean} True when the mutation was applied. */ function applyBlockAttributeChange(editorHost, operation, value, operationOptions = {}) { if (!editorHost || !operation) { return false; } const attributePath = String(operation.attribute || '').trim(); if (!attributePath) { return false; } if (attributePath === 'level') { const level = Number.parseInt(value, 10); if (!Number.isInteger(level) || level < 1 || level > 6) { return false; } if ( typeof editorHost.changeElementTag !== 'function' || typeof editorHost.setTrackedAttributeValue !== 'function' ) { return false; } // Keep the block attribute as the canonical source of truth, then // project that change into the live DOM tag for immediate feedback. editorHost.setTrackedAttributeValue(attributePath, level); editorHost.changeElementTag(`h${level}`, { validateSelection: false, saveHistory: false, }); return true; } if (operation.tagChange === true) { const tagName = String(value || '').trim().toLowerCase(); const allowedTags = Array.isArray(operation.values) ? operation.values.map(candidate => String(candidate || '').trim().toLowerCase()).filter(Boolean) : []; if (!tagName || !allowedTags.includes(tagName)) { return false; } if ( typeof editorHost.changeElementTag !== 'function' || typeof editorHost.setTrackedAttributeValue !== 'function' ) { return false; } editorHost.setTrackedAttributeValue(attributePath, tagName); editorHost.changeElementTag(tagName, { validateSelection: false, saveHistory: false, }); return true; } if (isTextAlignmentOperation(editorHost, operation)) { if (typeof editorHost.changeTextAlignment !== 'function') { return false; } const targetKey = operation.attribute === 'columnAlignment' ? 'columnAlignment' : 'textAlignment'; const textAlignmentOptions = { operation, targetKey, }; if ( operation.attribute === 'columnAlignment' && Object.prototype.hasOwnProperty.call(operationOptions || {}, 'columns') ) { textAlignmentOptions.columns = operationOptions.columns; } return editorHost.changeTextAlignment( String(value || '').trim().toLowerCase(), textAlignmentOptions ) === true; } if (attributePath === 'align') { if (typeof editorHost.changeBlockAlign !== 'function') { return false; } return editorHost.changeBlockAlign(String(value || '').trim().toLowerCase(), { operation, targetKey: 'align', }) === true; } if (typeof editorHost.setTrackedAttributeValue !== 'function') { return false; } editorHost.setTrackedAttributeValue( attributePath, normalizeBlockAttributeTrackedValue(operation, value) ); return true; } /** * Return whether one public column-alignment target payload matches the * committed runtime contract. * * The public API accepts only a zero-based index array or the `'all'` * shortcut. Scalar values intentionally fail loudly so external callers do * not depend on undocumented coercion. * * @param {*} columns Candidate explicit column target payload. * @returns {boolean} True when the payload matches the committed contract. */ function isValidExplicitColumnTarget(columns) { if (columns === 'all') { return true; } return Array.isArray(columns); } /** * Execute one or more schema-declared block-attribute changes. * * @param {Object} options Executor options. * @returns {Object|null} Applied-operation summary. */ function executeBlockAttributeOperations(options = {}) { const editorHost = options.editorHost || null; const inputOperations = Array.isArray(options.operations) ? options.operations : [ options.operation || options ]; const resolvedOperations = inputOperations .map(inputOperation => { const operationOptions = ( inputOperation && typeof inputOperation === 'object' && !Array.isArray(inputOperation) ) ? inputOperation : {}; const operation = resolveBlockAttributeOperation(editorHost, operationOptions); if (!operation) { return null; } const isExplicitColumnAlignmentOperation = ( String(operation.attribute || '').trim() === 'columnAlignment' ); const isExplicitSetColumnAlign = String(operation.id || '').trim() === 'set_column_align'; const hasColumn = Object.prototype.hasOwnProperty.call(operationOptions, 'column'); const hasColumns = Object.prototype.hasOwnProperty.call(operationOptions, 'columns'); if (isExplicitColumnAlignmentOperation && hasColumn) { return null; } if (isExplicitSetColumnAlign && !hasColumns) { return null; } if ( isExplicitColumnAlignmentOperation && hasColumns && !isValidExplicitColumnTarget(operationOptions.columns) ) { return null; } const operationValue = Object.prototype.hasOwnProperty.call(operationOptions, 'value') ? operationOptions.value : undefined; return operationValue === undefined ? null : { operation, value: operationValue, options: operationOptions, }; }) .filter(Boolean); if (!editorHost || !resolvedOperations.length) { return null; } const savedSelection = captureSelectionSnapshot(editorHost, options); const results = []; resolvedOperations.forEach(({ operation, value, options: operationOptions }) => { const hasExplicitColumnTarget = ( String(operation.attribute || '').trim() === 'columnAlignment' && Object.prototype.hasOwnProperty.call(operationOptions || {}, 'columns') ); const currentValue = hasExplicitColumnTarget ? undefined : getCurrentBlockAttributeValue(editorHost, operation); const normalizedRequestedValue = String(operation.attribute || '').trim() === 'level' ? Number.parseInt(value, 10) : value; const normalizedCurrentValue = String(operation.attribute || '').trim() === 'level' ? Number.parseInt(currentValue, 10) : currentValue; if (normalizedCurrentValue === normalizedRequestedValue) { results.push({ id: String(operation.id || '').trim(), kind: 'block_attribute_change', attribute: String(operation.attribute || '').trim(), value: normalizedRequestedValue, applied: false, }); return; } const didApply = applyBlockAttributeChange( editorHost, operation, normalizedRequestedValue, operationOptions || {} ); if (!didApply) { return; } results.push({ id: String(operation.id || '').trim(), kind: 'block_attribute_change', attribute: String(operation.attribute || '').trim(), value: normalizedRequestedValue, applied: true, }); }); if (!results.length) { return null; } restoreSelectionSnapshot(editorHost, savedSelection); if (typeof options.afterSync === 'function') { options.afterSync({ editorHost, results, operations: resolvedOperations.map(entry => entry.operation), }); } if (typeof editorHost.updateToolbarState === 'function') { editorHost.updateToolbarState(); } const historyApi = getSessionHistoryApiForHost(editorHost); if ( results.some(result => result.applied) && options.saveHistory !== false && typeof historyApi?.saveToHistory === 'function' ) { historyApi.saveToHistory(); } return { results, operationsApplied: results .filter(result => result.applied) .map(result => result.id || result.kind), attributeChanges: editorHost.attributeChanges || {}, }; } /** * Execute one schema-declared block-attribute change. * * @param {Object} options Executor options. * @returns {Object|null} Applied-operation summary. */ function executeBlockAttributeOperation(options = {}) { return executeBlockAttributeOperations({ ...options, operations: undefined, operation: options.operation || options, }); } /** * Resolve the session-owned history API for one active editor host. * * Schema operations should commit through the shared block session directly * instead of depending on MWPEditor's convenience history facade as an * integration boundary. * * @param {Object|null} editorHost Active editor host. * @returns {Object|null} Session history API, or null. */ function getSessionHistoryApiForHost(editorHost) { if (editorHost?.historyApi && typeof editorHost.historyApi === 'object') { return editorHost.historyApi; } if (typeof editorHost?.getSessionHistoryApi === 'function') { return editorHost.getSessionHistoryApi(); } const blockEditSession = editorHost?.blockEditSession || null; if (!blockEditSession || typeof blockEditSession.getHistoryApi !== 'function') { return null; } return blockEditSession.getHistoryApi( String(editorHost?.blockEditSessionScopeId || '').trim() || 'text' ); } /** * Execute one or more list operations through the canonical tracker path. * * This method intentionally disables per-operation history saves and cursor * restores inside the lower-level tracker/editors, then records one history * step after the full batch succeeds. * * @param {Object} options Executor options. * @returns {Object|null} Applied-operation summary. */ function executeListOperations(options = {}) { const listTracker = getListTrackerModule(); const editorHost = options.editorHost || null; const tracker = options.tracker || getTrackerForEditor(editorHost); const inputOperations = normalizeOperations(options); const savedSelection = captureSelectionSnapshot(editorHost, options); if ( !listTracker || typeof listTracker.applyOperation !== 'function' || typeof listTracker.getStructure !== 'function' || !tracker?.listElement || !inputOperations.length ) { return null; } const results = []; const operations = []; const appliedOperationKinds = []; for (let index = 0; index < inputOperations.length; index++) { const rawOperation = inputOperations[index]; const targetResolutionMode = getListTargetResolutionMode(options); const expandedInputs = targetResolutionMode === 'api_uuid' ? expandApiUuidListOperationInputs(rawOperation) : [ rawOperation ]; if (!expandedInputs.length) { return null; } for (let expandedIndex = 0; expandedIndex < expandedInputs.length; expandedIndex++) { const operation = buildExecutableListOperation( editorHost, tracker, expandedInputs[expandedIndex], options ); if (!operation) { return null; } const result = listTracker.applyOperation(tracker, operation, { editorHost, saveHistory: false, restoreCursor: false, }); if (!result) { return null; } operations.push(operation); results.push(result); } const appliedKind = normalizeListOperationKind(rawOperation?.kind, options); if (!appliedKind) { return null; } appliedOperationKinds.push(appliedKind); } syncEditorRoot(editorHost, tracker); restoreSelectionSnapshot(editorHost, savedSelection); if (typeof options.afterSync === 'function') { options.afterSync({ tracker, editorHost, results, operations, }); } if (typeof editorHost?.updateToolbarState === 'function') { editorHost.updateToolbarState(); } const historyApi = getSessionHistoryApiForHost(editorHost); if (options.saveHistory !== false && typeof historyApi?.saveToHistory === 'function') { historyApi.saveToHistory(); } return { results, operationsApplied: appliedOperationKinds, structure: listTracker.getStructure(tracker), }; } /** * Execute one list-type change against the currently selected list. * * @param {Object} options Executor options. * @returns {Object|null} Applied-operation summary. */ function executeCurrentListTypeChange(options = {}) { const editorHost = options.editorHost || null; const tracker = options.tracker || getTrackerForEditor(editorHost); const targetList = options.listElement || getCurrentListElement(editorHost); if (!tracker?.listElement || !targetList) { return null; } return executeListOperations({ tracker, editorHost, saveHistory: options.saveHistory !== false, afterSync: options.afterSync, operations: [ { kind: 'toggle_list_type', listPath: getListPathForElement(tracker, targetList), value: options.value, }, ], }); } SFE.SchemaOperationExecutor = { executeComponentOperation: function executeComponentOperation(options = {}) { return executeComponentOperations({ ...options, operations: undefined, operation: options.operation || options, }); }, executeComponentOperations, executeMediaOperation: function executeMediaOperation(options = {}) { return executeMediaOperations({ ...options, operations: undefined, operation: options.operation || options, }); }, executeMediaOperations, executeBlockAttributeOperation, executeBlockAttributeOperations, executeListOperations, executeCurrentListTypeChange, getTrackerForEditor, getCurrentListElement, getListPathForElement, syncEditorRoot, isUnsetBlockAttributeValue, normalizeBlockAttributeTrackedValue, getTextAlignmentCapability: getNormalizedTextAlignmentCapability, getNormalizedTextAlignmentCapability, isTextAlignmentOperation, }; })(); Die Entwicklung der Rolle des ImmunoCAP Explorers in der Allergiepraxis – BTX Clinical Research

Die Entwicklung der Rolle des ImmunoCAP Explorers in der Allergiepraxis

Die moderne Allergiediagnostik hat in den letzten Jahren erhebliche Fortschritte gemacht, wobei der ImmunoCAP Explorer eine zentrale Rolle spielt. Dieser Artikel untersucht die zunehmende Bedeutung des ImmunoCAP Explorers in Allergiepraktiken und wie er die Diagnosestellung und Behandlung von Allergien verändert hat. Von der verbesserten Genauigkeit bis hin zur effizienten Behandlung – die Technologien hinter dem ImmunoCAP Explorer haben die Allergologie revolutioniert.

Einführung in den ImmunoCAP Explorer

Der ImmunoCAP Explorer ist ein innovatives Werkzeug in der Allergiediagnostik. Er wurde entwickelt, um den Prozess der Allergieprüfung zu vereinfachen und Ärzten eine zuverlässigere Grundlage für Entscheidungen zu bieten. Durch die Verwendung modernster Technologie kann er eine breite Palette von Allergenen testen und genaue Ergebnisse liefern. Diese Entwicklung hat nicht nur die Effektivität der Tests verbessert, sondern auch die Effizienz in der Praxis erhöht.

Vorteile der Nutzung des ImmunoCAP Explorers

Die Einführung des ImmunoCAP Explorers in die Allergologie bietet zahlreiche Vorteile. Zu den bemerkenswertesten gehören:

  1. Präzision: Der ImmunoCAP Explorer liefert äußerst genaue Ergebnisse, was für die Diagnose und Behandlung entscheidend ist.
  2. Schnelligkeit: Tests werden schneller durchgeführt, wodurch Patienten zügigere Antworten auf ihre Gesundheitsfragen erhalten.
  3. Vielseitigkeit: Er ermöglicht das Testen auf eine Vielzahl von Allergenen, was zu umfassenderen Behandlungsplänen führt.

Diese Vorteile haben den Umgang mit allergischen Erkrankungen entscheidend verbessert und die Möglichkeiten für personalisierte Behandlungsansätze erweitert.

Impact auf die Allergiebehandlung

Durch die Integration des ImmunoCAP Explorers in die Praxis hat sich die Behandlung von Allergien grundlegend verändert. Ärzte sind jetzt in der Lage, schnellere und genauere Diagnosen zu stellen. Dies bedeutet, dass Patienten früher mit einer individuell zugeschnittenen Therapie beginnen können, was die Wahrscheinlichkeiten einer erfolgreichen Behandlung erhöht. Auch die Patientenbindung und das Vertrauen in die Behandlungsmethoden haben sich durch diese Innovation verbessert vegas vulkan.

Die Zukunft des ImmunoCAP Explorers

Die Zukunft sieht für den ImmunoCAP Explorer vielversprechend aus. Mit ständiger Weiterentwicklung und Forschung können wir in den kommenden Jahren mit noch präziseren und wirtschaftlicheren Tests rechnen. Dies wird nicht nur die Ausgangslage für medizinische Fachkräfte verbessern, sondern auch die Patientenerfahrung weiter optimieren. Die Bereitschaft, sich weiterzuentwickeln und neue Technologien zu integrieren, wird den ImmunoCAP Explorer zu einem unverzichtbaren Instrument in der Allergiebehandlung machen.

Fazit

Zusammenfassend lässt sich sagen, dass der ImmunoCAP Explorer das Potenzial hat, die Allergiediagnostik grundlegend zu verändern. Mit einer Vielzahl an Vorteilen steht er im Mittelpunkt der modernen Allergiebehandlung und setzt neue Standards in der Praxis. Durch kontinuierliche Innovationen wird er sicherlich weiterhin eine entscheidende Rolle in der Verbesserung der Behandlung von Allergien spielen.

FAQs

  1. Was ist der ImmunoCAP Explorer? Der ImmunoCAP Explorer ist ein diagnostisches Werkzeug, das zur präzisen und schnellen Bestimmung von Allergien eingesetzt wird.
  2. Wie funktioniert der ImmunoCAP Explorer? Er funktioniert durch die Messung von spezifischen IgE-Antikörpern im Blut, um Allergien zu identifizieren.
  3. Welche Vorteile bietet der ImmunoCAP Explorer? Hauptvorteile sind Präzision, Schnelligkeit und Vielseitigkeit bei der Erkennung von Allergenen.
  4. Wie hat der ImmunoCAP Explorer die Allergiebehandlung verändert? Er ermöglicht effektivere Diagnosen und personalisierte Behandlungen, wodurch die Erfolgsraten steigen.
  5. Wird der ImmunoCAP Explorer in Zukunft weiterentwickelt? Ja, kontinuierliche Weiterentwicklungen sind geplant, um noch genauere und effizientere Tests zu bieten.

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