npm run testnpm run build_allInstall prosemirror-utils package from npm:
npm install prosemirror-utils- 
findParentNode(predicate: fn(node: ProseMirrorNode) → boolean) → fn(selection: Selection) → ?{pos: number, start: number, depth: number, node: ProseMirrorNode}
 Iterates over parent nodes, returning the closest node and its start positionpredicatereturns truthy for.startpoints to the start position of the node,pospoints directly before the node.const predicate = node => node.type === schema.nodes.blockquote; const parent = findParentNode(predicate)(selection); 
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findParentNodeClosestToPos($pos: ResolvedPos, predicate: fn(node: ProseMirrorNode) → boolean) → ?{pos: number, start: number, depth: number, node: ProseMirrorNode}
 Iterates over parent nodes starting from the given$pos, returning the closest node and its start positionpredicatereturns truthy for.startpoints to the start position of the node,pospoints directly before the node.const predicate = node => node.type === schema.nodes.blockquote; const parent = findParentNodeClosestToPos(state.doc.resolve(5), predicate); 
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findParentDomRef(predicate: fn(node: ProseMirrorNode) → boolean, domAtPos: fn(pos: number) → {node: dom.Node, offset: number}) → fn(selection: Selection) → ?dom.Node
 Iterates over parent nodes, returning DOM reference of the closest nodepredicatereturns truthy for.const domAtPos = view.domAtPos.bind(view); const predicate = node => node.type === schema.nodes.table; const parent = findParentDomRef(predicate, domAtPos)(selection); // <table> 
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hasParentNode(predicate: fn(node: ProseMirrorNode) → boolean) → fn(selection: Selection) → boolean
 Checks if there's a parent nodepredicatereturns truthy for.if (hasParentNode(node => node.type === schema.nodes.table)(selection)) { // .... } 
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findParentNodeOfType(nodeType: NodeType | [NodeType]) → fn(selection: Selection) → ?{pos: number, start: number, depth: number, node: ProseMirrorNode}
 Iterates over parent nodes, returning closest node of a givennodeType.startpoints to the start position of the node,pospoints directly before the node.const parent = findParentNodeOfType(schema.nodes.paragraph)(selection); 
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findParentNodeOfTypeClosestToPos($pos: ResolvedPos, nodeType: NodeType | [NodeType]) → ?{pos: number, start: number, depth: number, node: ProseMirrorNode}
 Iterates over parent nodes starting from the given$pos, returning closest node of a givennodeType.startpoints to the start position of the node,pospoints directly before the node.const parent = findParentNodeOfTypeClosestToPos(state.doc.resolve(10), schema.nodes.paragraph); 
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hasParentNodeOfType(nodeType: NodeType | [NodeType]) → fn(selection: Selection) → boolean
 Checks if there's a parent node of a givennodeType.if (hasParentNodeOfType(schema.nodes.table)(selection)) { // .... } 
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findParentDomRefOfType(nodeType: NodeType | [NodeType], domAtPos: fn(pos: number) → {node: dom.Node, offset: number}) → fn(selection: Selection) → ?dom.Node
 Iterates over parent nodes, returning DOM reference of the closest node of a givennodeType.const domAtPos = view.domAtPos.bind(view); const parent = findParentDomRefOfType(schema.nodes.codeBlock, domAtPos)(selection); // <pre> 
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findSelectedNodeOfType(nodeType: NodeType | [NodeType]) → fn(selection: Selection) → ?{pos: number, start: number, depth: number, node: ProseMirrorNode}
 Returns a node of a givennodeTypeif it is selected.startpoints to the start position of the node,pospoints directly before the node.const { extension, inlineExtension, bodiedExtension } = schema.nodes; const selectedNode = findSelectedNodeOfType([ extension, inlineExtension, bodiedExtension, ])(selection); 
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isNodeSelection(selection: Selection) → boolean
 Checks if current selection is aNodeSelection.if (isNodeSelection(tr.selection)) { // ... } 
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findPositionOfNodeBefore(selection: Selection) → ?number
 Returns position of the previous node.const pos = findPositionOfNodeBefore(tr.selection); 
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findDomRefAtPos(position: number, domAtPos: fn(pos: number) → {node: dom.Node, offset: number}) → dom.Node
 Returns DOM reference of a node at a givenposition. If the node type is of typeTEXT_NODEit will return the reference of the parent node.const domAtPos = view.domAtPos.bind(view); const ref = findDomRefAtPos($from.pos, domAtPos); 
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flatten(node: ProseMirrorNode, descend: ?boolean = true) → [{node: ProseMirrorNode, pos: number}]
 Flattens descendants of a givennode. It doesn't descend into a node when descend argument isfalse(defaults totrue).const children = flatten(node); 
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findChildren(node: ProseMirrorNode, predicate: fn(node: ProseMirrorNode) → boolean, descend: ?boolean) → [{node: ProseMirrorNode, pos: number}]
 Iterates over descendants of a givennode, returning child nodes predicate returns truthy for. It doesn't descend into a node when descend argument isfalse(defaults totrue).const textNodes = findChildren(node, child => child.isText, false); 
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findTextNodes(node: ProseMirrorNode, descend: ?boolean) → [{node: ProseMirrorNode, pos: number}]
 Returns text nodes of a givennode. It doesn't descend into a node when descend argument isfalse(defaults totrue).const textNodes = findTextNodes(node); 
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findInlineNodes(node: ProseMirrorNode, descend: ?boolean) → [{node: ProseMirrorNode, pos: number}]
 Returns inline nodes of a givennode. It doesn't descend into a node when descend argument isfalse(defaults totrue).const inlineNodes = findInlineNodes(node); 
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findBlockNodes(node: ProseMirrorNode, descend: ?boolean) → [{node: ProseMirrorNode, pos: number}]
 Returns block descendants of a givennode. It doesn't descend into a node when descend argument isfalse(defaults totrue).const blockNodes = findBlockNodes(node); 
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findChildrenByAttr(node: ProseMirrorNode, predicate: fn(attrs: ?Object) → boolean, descend: ?boolean) → [{node: ProseMirrorNode, pos: number}]
 Iterates over descendants of a givennode, returning child nodes predicate returns truthy for. It doesn't descend into a node when descend argument isfalse(defaults totrue).const mergedCells = findChildrenByAttr(table, attrs => attrs.colspan === 2); 
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findChildrenByType(node: ProseMirrorNode, nodeType: NodeType, descend: ?boolean) → [{node: ProseMirrorNode, pos: number}]
 Iterates over descendants of a givennode, returning child nodes of a given nodeType. It doesn't descend into a node when descend argument isfalse(defaults totrue).const cells = findChildrenByType(table, schema.nodes.tableCell); 
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findChildrenByMark(node: ProseMirrorNode, markType: markType, descend: ?boolean) → [{node: ProseMirrorNode, pos: number}]
 Iterates over descendants of a givennode, returning child nodes that have a mark of a given markType. It doesn't descend into anodewhen descend argument isfalse(defaults totrue).const nodes = findChildrenByMark(state.doc, schema.marks.strong); 
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contains(node: ProseMirrorNode, nodeType: NodeType) → boolean
 Returnstrueif a given node contains nodes of a givennodeTypeif (contains(panel, schema.nodes.listItem)) { // ... } 
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removeParentNodeOfType(nodeType: NodeType | [NodeType]) → fn(tr: Transaction) → Transaction
 Returns a new transaction that removes a node of a givennodeType. It will return an original transaction if parent node hasn't been found.dispatch( removeParentNodeOfType(schema.nodes.table)(tr) ); 
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replaceParentNodeOfType(nodeType: NodeType | [NodeType], content: ProseMirrorNode | Fragment) → fn(tr: Transaction) → Transaction
 Returns a new transaction that replaces parent node of a givennodeTypewith the givencontent. It will return an original transaction if either parent node hasn't been found or replacing is not possible.const node = schema.nodes.paragraph.createChecked({}, schema.text('new')); dispatch( replaceParentNodeOfType(schema.nodes.table, node)(tr) ); 
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removeSelectedNode(tr: Transaction) → Transaction
 Returns a new transaction that removes selected node. It will return an original transaction if current selection is not aNodeSelection.dispatch( removeSelectedNode(tr) ); 
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replaceSelectedNode(content: ProseMirrorNode | ProseMirrorFragment) → fn(tr: Transaction) → Transaction
 Returns a new transaction that replaces selected node with a givennode, keeping NodeSelection on the newnode. It will return the original transaction if either current selection is not a NodeSelection or replacing is not possible.const node = schema.nodes.paragraph.createChecked({}, schema.text('new')); dispatch( replaceSelectedNode(node)(tr) ); 
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canInsert($pos: ResolvedPos, content: ProseMirrorNode | Fragment) → boolean
 Checks if a givencontentcan be inserted at the given$posconst { selection: { $from } } = state; const node = state.schema.nodes.atom.createChecked(); if (canInsert($from, node)) { // ... } 
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safeInsert(content: ProseMirrorNode | Fragment, position: ?number, tryToReplace: ?boolean) → fn(tr: Transaction) → Transaction
 Returns a new transaction that inserts a givencontentat the current cursor position, or at a givenposition, if it is allowed by schema. If schema restricts such nesting, it will try to find an appropriate place for a given node in the document, looping through parent nodes up until the root document node. IftryToReplaceis true and current selection is a NodeSelection, it will replace selected node with inserted content if its allowed by schema. If cursor is inside of an empty paragraph, it will try to replace that paragraph with the given content. If insertion is successful and inserted node has content, it will set cursor inside of that content. It will return an original transaction if the place for insertion hasn't been found.const node = schema.nodes.extension.createChecked({}); dispatch( safeInsert(node)(tr) ); 
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setParentNodeMarkup(nodeType: NodeType | [NodeType], type: ?NodeType | null, attrs: ?Object | null, marks: ?[Mark]) → fn(tr: Transaction) → Transaction
 Returns a transaction that changes the type, attributes, and/or marks of the parent node of a givennodeType.const node = schema.nodes.extension.createChecked({}); dispatch( setParentNodeMarkup(schema.nodes.panel, null, { panelType })(tr); ); 
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selectParentNodeOfType(nodeType: NodeType | [NodeType]) → fn(tr: Transaction) → Transaction
 Returns a new transaction that sets aNodeSelectionon a parent node of agiven nodeType.dispatch( selectParentNodeOfType([tableCell, tableHeader])(state.tr) ); 
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removeNodeBefore(tr: Transaction) → Transaction
 Returns a new transaction that deletes previous node.dispatch( removeNodeBefore(state.tr) ); 
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setTextSelection(position: number, dir: ?number = 1) → fn(tr: Transaction) → Transaction
 Returns a new transaction that tries to find a valid cursor selection starting at the givenpositionand searching back ifdiris negative, and forward if positive. If a valid cursor position hasn't been found, it will return the original transaction.dispatch( setTextSelection(5)(tr) ); 
- Apache 2.0 : http://www.apache.org/licenses/LICENSE-2.0