Merge branch 'ternary' into Umur-reducer-dev
This commit is contained in:
commit
355266f6ae
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@ -66,4 +66,9 @@ describe("MathJs parse", () => {
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describe("comments", () => {
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describe("comments", () => {
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testDescriptionParse("define", "1 # This is a comment", "1")
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testDescriptionParse("define", "1 # This is a comment", "1")
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})
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})
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describe("ternary operator", () => {
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testParse("1 ? 2 : 3", "ternary(1, 2, 3)")
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testParse("1 ? 2 : 3 ? 4 : 5", "ternary(1, 2, ternary(3, 4, 5))")
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})
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})
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})
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@ -62,7 +62,7 @@ describe("call and bindings", () => {
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testEvalToBe("f(x)=x+1; g(x)=f(x)+1; g(2)", "Ok(4)")
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testEvalToBe("f(x)=x+1; g(x)=f(x)+1; g(2)", "Ok(4)")
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})
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})
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describe("function trics", () => {
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describe("function tricks", () => {
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testParseToBe(
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testParseToBe(
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"f(x)=f(y)=2; f(2)",
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"f(x)=f(y)=2; f(2)",
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"Ok((:$$block (:$$block (:$let :f (:$$lambda [x] (:$$block (:$let :f (:$$lambda [y] (:$$block 2)))))) (:f 2))))",
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"Ok((:$$block (:$$block (:$let :f (:$$lambda [x] (:$$block (:$let :f (:$$lambda [y] (:$$block 2)))))) (:f 2))))",
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@ -1,12 +1,14 @@
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open Jest
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open Jest
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open Reducer_TestHelpers
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open Reducer_TestHelpers
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Skip.describe("Parse ternary operator", () => {
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describe("Parse ternary operator", () => {
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testParseToBe("true ? 'YES' : 'NO'", "Ok('YES')")
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testParseToBe("true ? 'YES' : 'NO'", "Ok((:$$block (:$$ternary true 'YES' 'NO')))")
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testParseToBe("false ? 'YES' : 'NO'", "Ok('NO')")
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})
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})
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Skip.describe("Evaluate ternary operator", () => {
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describe("Evaluate ternary operator", () => {
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testEvalToBe("true ? 'YES' : 'NO'", "Ok('YES')")
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testEvalToBe("true ? 'YES' : 'NO'", "Ok('YES')")
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testEvalToBe("false ? 'YES' : 'NO'", "Ok('NO')")
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testEvalToBe("false ? 'YES' : 'NO'", "Ok('NO')")
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testEvalToBe("2 > 1 ? 'YES' : 'NO'", "Ok('YES')")
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testEvalToBe("2 <= 1 ? 'YES' : 'NO'", "Ok('NO')")
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testEvalToBe("1+1 ? 'YES' : 'NO'", "Error(Expected type: Boolean)")
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})
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})
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@ -132,6 +132,23 @@ let dispatchMacroCall = (
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eLambda(parameters, bindings->Bindings.toExternalBindings, lambdaDefinition),
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eLambda(parameters, bindings->Bindings.toExternalBindings, lambdaDefinition),
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)->Ok
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)->Ok
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let doTernary = (
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condition: expression,
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ifTrue: expression,
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ifFalse: expression,
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bindings: ExpressionT.bindings,
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environment,
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): result<expressionWithContext, errorValue> => {
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let rCondition = reduceExpression(condition, bindings, environment)
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rCondition->Result.flatMap(conditionValue =>
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switch conditionValue {
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| ExpressionValue.EvBool(false) => ExpressionWithContext.noContext(ifFalse)->Ok
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| ExpressionValue.EvBool(true) => ExpressionWithContext.noContext(ifTrue)->Ok
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| _ => REExpectedType("Boolean")->Error
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}
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)
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}
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let expandExpressionList = (aList, bindings: ExpressionT.bindings, environment): result<
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let expandExpressionList = (aList, bindings: ExpressionT.bindings, environment): result<
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expressionWithContext,
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expressionWithContext,
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errorValue,
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errorValue,
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@ -162,6 +179,8 @@ let dispatchMacroCall = (
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lambdaDefinition,
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lambdaDefinition,
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} =>
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} =>
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doLambdaDefinition(bindings, parameters, lambdaDefinition)
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doLambdaDefinition(bindings, parameters, lambdaDefinition)
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| list{ExpressionT.EValue(EvCall("$$ternary")), condition, ifTrue, ifFalse} =>
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doTernary(condition, ifTrue, ifFalse, bindings, environment)
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| _ => ExpressionWithContext.noContext(ExpressionT.EList(aList))->Ok
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| _ => ExpressionWithContext.noContext(ExpressionT.EList(aList))->Ok
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}
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}
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@ -13,6 +13,7 @@ type errorValue =
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| RESymbolNotFound(string)
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| RESymbolNotFound(string)
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| RESyntaxError(string)
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| RESyntaxError(string)
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| RETodo(string) // To do
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| RETodo(string) // To do
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| REExpectedType(string)
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type t = errorValue
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type t = errorValue
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@ -46,4 +47,5 @@ let errorToString = err =>
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| RESymbolNotFound(symbolName) => `${symbolName} is not defined`
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| RESymbolNotFound(symbolName) => `${symbolName} is not defined`
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| RESyntaxError(desc) => `Syntax Error: ${desc}`
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| RESyntaxError(desc) => `Syntax Error: ${desc}`
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| RETodo(msg) => `TODO: ${msg}`
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| RETodo(msg) => `TODO: ${msg}`
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| REExpectedType(typeName) => `Expected type: ${typeName}`
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}
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}
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@ -9,7 +9,7 @@ type node = {"type": string, "isNode": bool, "comment": string}
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type arrayNode = {...node, "items": array<node>}
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type arrayNode = {...node, "items": array<node>}
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type block = {"node": node}
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type block = {"node": node}
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type blockNode = {...node, "blocks": array<block>}
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type blockNode = {...node, "blocks": array<block>}
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//conditionalNode
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type conditionalNode = {...node, "condition": node, "trueExpr": node, "falseExpr": node}
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type constantNode = {...node, "value": unit}
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type constantNode = {...node, "value": unit}
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type functionAssignmentNode = {...node, "name": string, "params": array<string>, "expr": node}
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type functionAssignmentNode = {...node, "name": string, "params": array<string>, "expr": node}
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type indexNode = {...node, "dimensions": array<node>}
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type indexNode = {...node, "dimensions": array<node>}
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@ -31,6 +31,7 @@ external castAssignmentNode: node => assignmentNode = "%identity"
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external castAssignmentNodeWAccessor: node => assignmentNodeWAccessor = "%identity"
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external castAssignmentNodeWAccessor: node => assignmentNodeWAccessor = "%identity"
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external castAssignmentNodeWIndex: node => assignmentNodeWIndex = "%identity"
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external castAssignmentNodeWIndex: node => assignmentNodeWIndex = "%identity"
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external castBlockNode: node => blockNode = "%identity"
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external castBlockNode: node => blockNode = "%identity"
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external castConditionalNode: node => conditionalNode = "%identity"
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external castConstantNode: node => constantNode = "%identity"
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external castConstantNode: node => constantNode = "%identity"
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external castFunctionAssignmentNode: node => functionAssignmentNode = "%identity"
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external castFunctionAssignmentNode: node => functionAssignmentNode = "%identity"
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external castFunctionNode: node => functionNode = "%identity"
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external castFunctionNode: node => functionNode = "%identity"
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@ -58,6 +59,7 @@ type mathJsNode =
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| MjArrayNode(arrayNode)
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| MjArrayNode(arrayNode)
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| MjAssignmentNode(assignmentNode)
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| MjAssignmentNode(assignmentNode)
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| MjBlockNode(blockNode)
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| MjBlockNode(blockNode)
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| MjConditionalNode(conditionalNode)
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| MjConstantNode(constantNode)
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| MjConstantNode(constantNode)
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| MjFunctionAssignmentNode(functionAssignmentNode)
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| MjFunctionAssignmentNode(functionAssignmentNode)
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| MjFunctionNode(functionNode)
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| MjFunctionNode(functionNode)
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@ -82,6 +84,7 @@ let castNodeType = (node: node) => {
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| "ArrayNode" => node->castArrayNode->MjArrayNode->Ok
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| "ArrayNode" => node->castArrayNode->MjArrayNode->Ok
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| "AssignmentNode" => node->decideAssignmentNode
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| "AssignmentNode" => node->decideAssignmentNode
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| "BlockNode" => node->castBlockNode->MjBlockNode->Ok
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| "BlockNode" => node->castBlockNode->MjBlockNode->Ok
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| "ConditionalNode" => node->castConditionalNode->MjConditionalNode->Ok
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| "ConstantNode" => node->castConstantNode->MjConstantNode->Ok
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| "ConstantNode" => node->castConstantNode->MjConstantNode->Ok
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| "FunctionAssignmentNode" => node->castFunctionAssignmentNode->MjFunctionAssignmentNode->Ok
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| "FunctionAssignmentNode" => node->castFunctionAssignmentNode->MjFunctionAssignmentNode->Ok
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| "FunctionNode" => node->castFunctionNode->MjFunctionNode->Ok
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| "FunctionNode" => node->castFunctionNode->MjFunctionNode->Ok
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@ -157,6 +160,10 @@ let rec toString = (mathJsNode: mathJsNode): string => {
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| MjAssignmentNode(aNode) =>
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| MjAssignmentNode(aNode) =>
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`${aNode["object"]->toStringSymbolNode} = ${aNode["value"]->toStringMathJsNode}`
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`${aNode["object"]->toStringSymbolNode} = ${aNode["value"]->toStringMathJsNode}`
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| MjBlockNode(bNode) => `{${bNode["blocks"]->toStringBlocks}}`
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| MjBlockNode(bNode) => `{${bNode["blocks"]->toStringBlocks}}`
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| MjConditionalNode(cNode) =>
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`ternary(${toStringMathJsNode(cNode["condition"])}, ${toStringMathJsNode(
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cNode["trueExpr"],
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)}, ${toStringMathJsNode(cNode["falseExpr"])})`
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| MjConstantNode(cNode) => cNode["value"]->toStringValue
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| MjConstantNode(cNode) => cNode["value"]->toStringValue
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| MjFunctionAssignmentNode(faNode) => faNode->toStringFunctionAssignmentNode
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| MjFunctionAssignmentNode(faNode) => faNode->toStringFunctionAssignmentNode
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| MjFunctionNode(fNode) => fNode->toStringFunctionNode
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| MjFunctionNode(fNode) => fNode->toStringFunctionNode
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@ -113,6 +113,20 @@ let rec fromInnerNode = (mathJsNode: Parse.node): result<expression, errorValue>
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aNode["items"]->Belt.List.fromArray->fromNodeList->Result.map(list => ExpressionT.EList(list))
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aNode["items"]->Belt.List.fromArray->fromNodeList->Result.map(list => ExpressionT.EList(list))
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}
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}
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let caseConditionalNode = cndNode => {
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let rCondition = fromInnerNode(cndNode["condition"])
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let rTrueExpr = fromInnerNode(cndNode["trueExpr"])
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let rFalse = fromInnerNode(cndNode["falseExpr"])
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rCondition->Result.flatMap(condition =>
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rTrueExpr->Result.flatMap(trueExpr =>
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rFalse->Result.flatMap(falseExpr =>
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ExpressionBuilder.eFunction("$$ternary", list{condition, trueExpr, falseExpr})->Ok
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)
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)
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)
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}
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let rFinalExpression: result<expression, errorValue> = switch typedMathJsNode {
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let rFinalExpression: result<expression, errorValue> = switch typedMathJsNode {
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| MjAccessorNode(aNode) => caseAccessorNode(aNode["object"], aNode["index"])
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| MjAccessorNode(aNode) => caseAccessorNode(aNode["object"], aNode["index"])
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| MjArrayNode(aNode) => caseArrayNode(aNode)
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| MjArrayNode(aNode) => caseArrayNode(aNode)
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@ -123,6 +137,7 @@ let rec fromInnerNode = (mathJsNode: Parse.node): result<expression, errorValue>
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rExpr
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rExpr
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}
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}
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| MjBlockNode(bNode) => bNode["blocks"]->Js.Array2.map(blockToNode)->caseBlock
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| MjBlockNode(bNode) => bNode["blocks"]->Js.Array2.map(blockToNode)->caseBlock
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| MjConditionalNode(cndNode) => caseConditionalNode(cndNode)
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| MjConstantNode(cNode) =>
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| MjConstantNode(cNode) =>
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cNode["value"]->JavaScript.Gate.jsToEv->Result.flatMap(v => v->ExpressionT.EValue->Ok)
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cNode["value"]->JavaScript.Gate.jsToEv->Result.flatMap(v => v->ExpressionT.EValue->Ok)
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| MjFunctionAssignmentNode(faNode) => caseFunctionAssignmentNode(faNode)
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| MjFunctionAssignmentNode(faNode) => caseFunctionAssignmentNode(faNode)
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