Add walks to determine symbols used by and defined by various expressions
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pnpm-lock.yaml
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3802
pnpm-lock.yaml
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@ -2,6 +2,8 @@
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// This starter template is using Vue 3 <script setup> SFCs
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// Check out https://v3.vuejs.org/api/sfc-script-setup.html#sfc-script-setup
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import HelloWorld from './components/HelloWorld.vue'
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import { MathStatement } from './support/parse'
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console.log('math statement', MathStatement)
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</script>
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<template>
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@ -11,7 +13,7 @@ import HelloWorld from './components/HelloWorld.vue'
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<div id = "main">
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<img alt="Vue logo" src="./assets/logo.png" />
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<git msg="Hello Vue 3 + TypeScript + Vite" />
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<!-- <git msg="Hello Vue 3 + TypeScript + Vite" />-->
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</div>
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@ -1,4 +1,4 @@
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<script setup></script>
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<script setup lang="ts"></script>
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<template>
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<div
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@ -1,7 +1,44 @@
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import math from 'mathjs'
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import * as math from 'mathjs'
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import {hasOwnProperty} from '../types'
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/** Base class for walks over MathNode trees. */
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export abstract class MathNodeWalk<TReturn> {
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walk(node: math.MathNode): TReturn {
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if ( math.isAccessorNode(node) ) {
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return this.walkAccessorNode(node)
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} else if ( math.isArrayNode(node) ) {
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return this.walkArrayNode(node)
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} else if ( math.isAssignmentNode(node) ) {
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return this.walkAssignmentNode(node)
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} else if ( math.isBlockNode(node) ) {
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return this.walkBlockNode(node)
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} else if ( math.isConditionalNode(node) ) {
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return this.walkConditionalNode(node)
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} else if ( math.isConstantNode(node) ) {
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return this.walkConstantNode(node)
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} else if ( math.isFunctionAssignmentNode(node) ) {
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return this.walkFunctionAssignmentNode(node)
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} else if ( math.isFunctionNode(node) ) {
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return this.walkFunctionNode(node)
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} else if ( math.isIndexNode(node) ) {
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return this.walkIndexNode(node)
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} else if ( math.isObjectNode(node) ) {
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return this.walkObjectNode(node)
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} else if ( math.isOperatorNode(node) ) {
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return this.walkOperatorNode(node)
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} else if ( math.isParenthesisNode(node) ) {
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return this.walkParenthesisNode(node)
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} else if ( math.isRangeNode(node) ) {
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return this.walkRangeNode(node)
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} else if ( (node as unknown as any).isRelationalNode ) {
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return this.walkRelationalNode(node as unknown as any)
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} else if ( math.isSymbolNode(node) ) {
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return this.walkSymbolNode(node)
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}
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throw new TypeError('Invalid MathNode: ' + node)
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}
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abstract walkAccessorNode(node: math.AccessorNode): TReturn
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abstract walkArrayNode(node: math.ArrayNode): TReturn
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@ -33,15 +70,205 @@ export abstract class MathNodeWalk<TReturn> {
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abstract walkSymbolNode(node: math.SymbolNode): TReturn
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}
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export class SymbolWalk extends MathNodeWalk<math.SymbolNode[]> {
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walkAccessorNode(node: math.AccessorNode): math.SymbolNode[] {
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return [
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...this.walk(node.object),
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...this.walk(node.index),
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]
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}
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walkArrayNode(node: math.ArrayNode): math.SymbolNode[] {
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return node.items
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.map(x => this.walk(x))
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.reduce((carry, current) => current.concat(carry), [])
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}
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walkAssignmentNode(node: math.AssignmentNode): math.SymbolNode[] {
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return [
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...this.walk(node.object),
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...this.walk(node.value),
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...(node.index ? this.walk(node.index) : []),
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]
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}
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walkBlockNode(node: math.BlockNode): math.SymbolNode[] {
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return node.blocks
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.map(x => x.node)
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.map(x => this.walk(x))
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.reduce((carry, current) => current.concat(carry), [])
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}
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walkConditionalNode(node: math.ConditionalNode): math.SymbolNode[] {
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return [
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...this.walk(node.condition),
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...this.walk(node.trueExpr),
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...this.walk(node.falseExpr),
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]
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}
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walkConstantNode(): math.SymbolNode[] {
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return []
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}
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walkFunctionAssignmentNode(node: math.FunctionAssignmentNode): math.SymbolNode[] {
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return this.walk(node.expr)
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}
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walkFunctionNode(node: math.FunctionNode): math.SymbolNode[] {
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return [
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...this.walk(node.fn),
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...node.args
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.map(x => this.walk(x))
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.reduce((carry, current) => current.concat(carry), []),
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]
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}
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walkIndexNode(node: math.IndexNode): math.SymbolNode[] {
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return node.dimensions
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.map(x => this.walk(x))
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.reduce((carry, current) => current.concat(carry), [])
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}
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walkObjectNode(node: math.ObjectNode): math.SymbolNode[] {
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return Object.values(node.properties)
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.map(x => this.walk(x))
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.reduce((carry, current) => current.concat(carry), [])
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}
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walkOperatorNode(node: math.OperatorNode): math.SymbolNode[] {
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return node.args
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.map(x => this.walk(x))
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.reduce((carry, current) => carry.concat(current), [])
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}
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walkParenthesisNode(node: math.ParenthesisNode): math.SymbolNode[] {
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return this.walk(node.content)
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}
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walkRangeNode(node: math.RangeNode): math.SymbolNode[] {
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return [
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...this.walk(node.start),
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...this.walk(node.end),
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...(node.step ? this.walk(node.step) : []),
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]
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}
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walkRelationalNode(node: math.RelationalNode): math.SymbolNode[] {
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return node.params
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.map(x => this.walk(x))
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.reduce((carry, current) => carry.concat(current), [])
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}
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walkSymbolNode(node: math.SymbolNode): math.SymbolNode[] {
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return [node]
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}
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}
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export class RValSymbolWalk extends SymbolWalk {
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walkAssignmentNode(node: math.AssignmentNode): math.SymbolNode[] {
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return this.walk(node.value)
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}
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walkFunctionNode(node: math.FunctionNode): math.SymbolNode[] {
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return [
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...this.walk(node.fn), // FIXME should this be removed? Not sure if this is rval or lval
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...node.args
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.map(x => this.walk(x))
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.reduce((carry, current) => current.concat(carry), []),
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]
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}
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}
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export class LValSymbolWalk extends SymbolWalk {
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walkAccessorNode(): math.SymbolNode[] {
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return []
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}
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walkArrayNode(): math.SymbolNode[] {
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return []
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}
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walkAssignmentNode(node: math.AssignmentNode): math.SymbolNode[] {
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if ( math.isSymbolNode(node.object) ) {
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return super.walkSymbolNode(node.object)
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}
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return super.walkAccessorNode(node.object)
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}
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walkBlockNode(node: math.BlockNode): math.SymbolNode[] {
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return node.blocks
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.map(x => this.walk(x.node))
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.reduce((carry, current) => current.concat(carry), [])
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}
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walkConditionalNode(): math.SymbolNode[] {
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return []
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}
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walkConstantNode(): math.SymbolNode[] {
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return []
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}
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walkFunctionAssignmentNode(): math.SymbolNode[] {
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return []
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}
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walkFunctionNode(): math.SymbolNode[] {
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return []
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}
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walkIndexNode(): math.SymbolNode[] {
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return []
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}
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walkObjectNode(): math.SymbolNode[] {
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return []
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}
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walkOperatorNode(): math.SymbolNode[] {
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return []
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}
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walkParenthesisNode(node: math.ParenthesisNode): math.SymbolNode[] {
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return this.walk(node.content)
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}
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walkRangeNode(): math.SymbolNode[] {
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return []
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}
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walkRelationalNode(): math.SymbolNode[] {
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return []
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}
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walkSymbolNode(): math.SymbolNode[] {
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return []
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}
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}
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export class MathStatement {
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constructor(
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public readonly raw: string,
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) {}
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// parse(): MathNode {
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// return parse(this.raw)
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// }
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parse(): math.MathNode {
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return math.parse(this.raw)
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}
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symbols(): math.SymbolNode[] {
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return (new SymbolWalk()).walk(this.parse())
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}
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defines(): math.SymbolNode[] {
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return (new LValSymbolWalk()).walk(this.parse())
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}
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uses(): math.SymbolNode[] {
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return (new RValSymbolWalk()).walk(this.parse())
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}
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}
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export class MathExpression extends MathStatement {}
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