allow simulating more than 2 legs ahead
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parent
2aa0e63987
commit
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39
main.nim
39
main.nim
@ -1,4 +1,4 @@
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import math, hashes, options, tables, sequtils, sets
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import math, hashes, options, tables, sequtils, sets, sugar
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import combinators
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import combinators
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@ -23,6 +23,7 @@ type
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Board = object
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Board = object
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squares: array[1..16, Square]
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squares: array[1..16, Square]
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camels: array[Color, range[1..16]]
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camels: array[Color, range[1..16]]
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diceRolled: array[Color, bool]
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leader: Option[Color]
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leader: Option[Color]
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gameOver: bool
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gameOver: bool
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@ -110,11 +111,17 @@ proc advance(b: var Board, die: Die) =
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if endPos >= b.camels[b.leader.get]:
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if endPos >= b.camels[b.leader.get]:
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b.leader = some(b[endPos].camels[^1])
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b.leader = some(b[endPos].camels[^1])
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break # breaking the outer loop here, not the inner - but only conditionally! gah!
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break # breaking the outer loop here, not the inner - but only conditionally! gah!
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b.diceRolled[color] = true
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proc simulateLeg(b: Board, diceRemaining: seq[Color]): LegResults =
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proc projectLeg(b: Board): LegResults =
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var scores: ScoreSet
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var scores: ScoreSet
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var endStates: HashSet[Board]
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var endStates: HashSet[Board]
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let diceRemaining = collect(newSeq):
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for i, c in b.diceRolled:
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if not c: i
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for future in possibleFutures(diceRemaining):
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for future in possibleFutures(diceRemaining):
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var prediction = b # make a copy
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var prediction = b # make a copy
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for dieRoll in future:
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for dieRoll in future:
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@ -125,31 +132,27 @@ proc simulateLeg(b: Board, diceRemaining: seq[Color]): LegResults =
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result = (scores, endStates)
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result = (scores, endStates)
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proc simulateGame(b: Board, diceRemaining: seq[Color]): ScoreSet =
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proc projectOutcomes(b: Board, maxDepth = 1): ScoreSet =
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# currently just simulates two legs, not a full game
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var outcomeStack = @[ [b].toHashSet ]
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var (scores, startStates) = b.simulateLeg(diceRemaining)
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for depth in 1..maxDepth:
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var endStates: HashSet[Board]
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var endStates: HashSet[Board]
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for o in outcomeStack[^1]:
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let projection = o.projectLeg
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result.update(projection[0])
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endStates.incl(projection[1])
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stdout.write("simulated: " & $result.sum & "\r")
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for s in startStates:
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outcomeStack.add(endStates)
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let (nextScores, nextStates) = s.simulateLeg(@[cRed, cGreen, cBlue, cYellow, cPurple])
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echo "\nDistinct end states: ", outcomeStack.mapIt(it.len).sum
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scores.update(nextScores)
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endStates.incl(nextStates)
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stdout.write("simulated: " & $scores.sum & "\r")
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echo "\nDistinct end states: ", endStates.len
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result = scores
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var b: Board
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var b: Board
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b.display(1, 5)
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b.display(1, 5)
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b.setState({cGreen: 4, cYellow: 3, cPurple: 4, cBlue: 3, cRed: 2}, @[])
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b.setState({cGreen: 4, cYellow: 3, cPurple: 4, cBlue: 3, cRed: 4}, @[])
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b.display(1, 5)
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b.display(1, 5)
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b.advance((cRed, 2))
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let r = b.projectOutcomes(2)
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b.display(1, 5)
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let r = b.simulateGame(allDice)
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let total = r.sum
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let total = r.sum
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for i, c in r:
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for i, c in r:
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echo Color(i), ": ", (100 * c / total).round(2), "% (", c, " / ", total, ")"
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echo Color(i), ": ", (100 * c / total).round(2), "% (", c, " / ", total, ")"
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