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doc: add more v2 indicator details
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@ -44,7 +44,7 @@ lastClosedPrice := closePrices.Last(0)
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secondClosedPrice := closePrices.Last(1)
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secondClosedPrice := closePrices.Last(1)
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```
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```
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To create a EMA indicator instance, again, simply pass the closePrice indicator to the SMA stream constructor:
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To create an EMA indicator instance, again, simply pass the closePrice indicator to the SMA stream constructor:
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```go
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```go
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ema := indicatorv2.EMA(closePrices, 17)
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ema := indicatorv2.EMA(closePrices, 17)
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@ -70,7 +70,33 @@ returns a float64 number as output.
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[input float64] -> [Calculate] -> [output float64]
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[input float64] -> [Calculate] -> [output float64]
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```
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```
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Since it is a float64 value indicator, we will use `*types.Float64Series` here to store our values:
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Since it will be a float64 value indicator, we will use `*types.Float64Series` here to store our values,
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`types.Float64Series` is a struct that contains a slice to store the float64 values, it is implemented as follows:
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```go
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type Float64Series struct {
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SeriesBase
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Float64Updater
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Slice floats.Slice
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}
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```
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The `Slice` field is a []float64 slice,
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which provides some helper methods that helps you do some calculation on the float64 slice.
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And Float64Updater provides a way to let indicators subscribe to the updated value:
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```go
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u := Float64Updater{}
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u.OnUpdate(func(v float64) { ... })
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u.OnUpdate(func(v float64) { ... })
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// to emit the callbacks
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u.EmitUpdate(10.0)
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```
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Now you have a basic concept about the Float64Series,
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we can now start to implement our first indicator structure:
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```go
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```go
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package indicatorv2
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package indicatorv2
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@ -85,6 +111,8 @@ type EWMAStream struct {
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}
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}
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```
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```
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Again, since it is a float64 value indicator, we use `*types.Float64Series` here to store our values.
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And then, add the constructor of the indicator stream:
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And then, add the constructor of the indicator stream:
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```go
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```go
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