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@ -248,6 +248,7 @@ var tokenPriority = map[string]int{
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// COLUMNS
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// COMBIN
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// COMBINA
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// COMPLEX
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// CONCAT
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// CONCATENATE
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// COS
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@ -1449,6 +1450,35 @@ func (fn *formulaFuncs) bitwise(name string, argsList *list.List) formulaArg {
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return newNumberFormulaArg(float64(bitwiseFunc(int(num1.Number), int(num2.Number))))
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}
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// COMPLEX function takes two arguments, representing the real and the
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// imaginary coefficients of a complex number, and from these, creates a
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// complex number. The syntax of the function is:
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//
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// COMPLEX(real_num,i_num,[suffix])
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//
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func (fn *formulaFuncs) COMPLEX(argsList *list.List) formulaArg {
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if argsList.Len() < 2 {
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return newErrorFormulaArg(formulaErrorVALUE, "COMPLEX requires at least 2 arguments")
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}
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if argsList.Len() > 3 {
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return newErrorFormulaArg(formulaErrorVALUE, "COMPLEX allows at most 3 arguments")
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}
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real, i, suffix := argsList.Front().Value.(formulaArg).ToNumber(), argsList.Front().Next().Value.(formulaArg).ToNumber(), "i"
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if real.Type != ArgNumber {
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return real
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}
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if i.Type != ArgNumber {
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return i
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}
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if argsList.Len() == 3 {
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if suffix = strings.ToLower(argsList.Back().Value.(formulaArg).Value()); suffix != "i" && suffix != "j" {
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return newErrorFormulaArg(formulaErrorVALUE, formulaErrorVALUE)
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}
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}
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r := strings.NewReplacer("(", "", ")", "", "0+", "", "+0i", "", "0+0i", "0", "i", suffix)
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return newStringFormulaArg(r.Replace(fmt.Sprint(complex(real.Number, i.Number))))
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}
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// DEC2BIN function converts a decimal number into a Binary (Base 2) number.
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// The syntax of the function is:
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//
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