package main import ( "fmt" "math" ) var PIFloatInaccuracy number = newNumber() func init() { PIFloatInaccuracy.SetFloat64(math.Asin(1) * 2) } var ArSin = builtinFunc{"sin", func(args ...any) (any, ArErr) { if len(args) != 1 { return nil, ArErr{TYPE: "Runtime Error", message: fmt.Sprintf("sin expected 1 argument, got %d", len(args)), EXISTS: true, } } if typeof(args[0]) != "number" { return nil, ArErr{TYPE: "Runtime Error", message: fmt.Sprintf("sin expected number, got %s", typeof(args[0])), EXISTS: true, } } num := newNumber().Set(args[0].(number)) num.Quo(num, PI) num.Mul(num, PIFloatInaccuracy) n, _ := num.Float64() outputnum := newNumber().SetFloat64(math.Sin(n)) return outputnum, ArErr{} }} var ArArcsin = builtinFunc{"arcsin", func(args ...any) (any, ArErr) { if len(args) != 1 { return nil, ArErr{TYPE: "Runtime Error", message: fmt.Sprintf("arcsin expected 1 argument, got %d", len(args)), EXISTS: true, } } if typeof(args[0]) != "number" { return nil, ArErr{TYPE: "Runtime Error", message: fmt.Sprintf("arcsin expected number, got %s", typeof(args[0])), EXISTS: true, } } num := args[0].(number) n, _ := num.Float64() if n < -1 || n > 1 { return nil, ArErr{TYPE: "Runtime Error", message: fmt.Sprintf("arcsin expected number between -1 and 1, got %s", anyToArgon(n, true, true, 3, 0, false, 0)), EXISTS: true, } } outputnum := newNumber().SetFloat64(math.Asin(n)) outputnum.Quo(outputnum, PIFloatInaccuracy) outputnum.Mul(outputnum, PI) return outputnum, ArErr{} }}