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In several different places in my application, I need to take a Seq[SalesRow] and return a Map[String,SalesRow], where the string is the name of a country.

I need to use this in several places. For example, I take a list of all SalesRows and get a global breakdown of sales by country. But in other places, I want to break down my sales by month and then by country (so Map[Month,Seq[SalesRow]] becomes Map[Month,Map[String,Seq[SalesRow]]]) - in still other places, I want to break down by day and then by country.

My question is: where do I put the (small) amount of logic that takes a Seq[SalesRow] and returns a map of countries to rows? Right now, I'm putting it in a companion object method, SalesRow.byCountry(rows : Seq[SalesReport]. Is that optimal?

A slightly crazier idea occurred to me, which is to create an implicit conversion from Seq[SalesRow] to EnhancedSalesRowSeq, which has a byCountry instance method. This appeals to me, because the operation is applicable to any sequence of SalesRows.

Is this a good idea?

Is adding the logic to the companion object my best choice, or are there better options?


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3 Answers 3

up vote 2 down vote accepted

In case you are not aware the library comes with a groupBy function. Basically given a Seq[SalesRow] it will give you a Map[T, Seq[SalesRow]] based on a function from SalesRow to T.

So if your function is easy you can easily get a map. I do like your idea of the enhanced seq in conjunction with putting the implicit in the SalesRow companion:

case class SalesRow(val month:Int, val country:String, 
  val person:String, val amount:Float)

class EnhancedRow(rows: Seq[SalesRow]) {
  def byCountry: Map[String, Seq[SalesRow]] = 
  def byMonth: Map[Int, Seq[SalesRow]] = 
  def byCountryByMonth: Map[String, Map[Int, Seq[SalesRow]]] = byCountry.mapValues(r => new EnhancedRow(rows).byMonth)

object SalesRow {
  implicit def toEnhanced(rows: Seq[SalesRow]) = new EnhancedRow(rows) 

object Test {
  def main(args:Array[String] = null) {
    val seq: Seq[SalesRow] = // ... fill this
    // same as:
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If performance isn´t your main concern, you can put the logic at:

class RichTraversable[A](t: Traversable[A]) {
  def toMapBy[B](f: A => B): Map[B,A] = t.map{ e => (f(e),e) }.toMap

So if an implicit conversion you can turn every Seq into a Map with a member being the key.

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Right, that's what I'm proposing in the second-to-last paragraph. My question is: is this a really weird or unexpected thing to do? –  Bill May 1 '11 at 1:20
This is more or less equivalent to groupBy which is a library defined method. –  huynhjl May 1 '11 at 2:06
It isn´t unexpected as you can infer from @huynhjl comment, that it is an oversight of me reimplmenting a library method. –  Peter Schmitz May 1 '11 at 8:19
Ok, my method implies uniqueness by key, so the values are one B element and not a Seq[B] compared to the library method –  Peter Schmitz May 1 '11 at 16:02
Yeah, I'm already using groupBy in my implementation. –  Bill May 1 '11 at 17:16

I suggest you make encapsulating classes:

case class AllSalesTable(rows: Seq[SalesRow]) {
  def toSalesByCountry: SalesByCountry

case class ContrySalesTable(rows: Seq[SalesRow])

case class SalesByCountry(map: Map[String, CountrySalesTable])

Having someplace to put the method is one benefit, but another benefit is that you'll have greater type safety at the cost of a simple ".rows" here and there.

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I agree with Daniel! My experience is that having classes or type defs even for simple data structures gives clearer code and the compiler often can help. –  Peter Schmitz May 1 '11 at 17:55

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