228 lines
4.7 KiB
Go
228 lines
4.7 KiB
Go
package controller
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import (
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"cmp"
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"fmt"
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"maps"
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"math/big"
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"slices"
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"github.com/google/uuid"
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"github.com/iliadenisov/galaxy/internal/model/game"
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)
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type VoteGroup struct {
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RaceIndex []int
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Sum float64
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}
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type VoteNode struct {
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ID int
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Ally bool
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Next *VoteNode
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}
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func (n VoteNode) String() string {
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lh, rh := " ", "."
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if n.Ally {
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lh, rh = "{", "}"
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}
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return fmt.Sprintf("%s%d%s", lh, n.ID, rh)
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}
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func (c *Cache) TurnAcceptWinners(v []int) {
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if c.g.Finished() {
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panic("game is already has its winner(s)")
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}
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if len(v) == 0 {
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return
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}
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for _, ri := range v {
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c.g.Winner = append(c.g.Winner, c.g.Race[ri].ID)
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}
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}
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func (c *Cache) TurnCalculateVotes() []int {
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raceVotes := c.votesByRace()
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calc := GroupVotes(raceVotes, VotingGraph(c.g.Race, c.RaceIndex))
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c.g.Votes = 0
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for ri, votes := range raceVotes {
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v := game.F(votes)
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c.g.Race[ri].Votes = v
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c.g.Votes += v
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}
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return votingWinners(calc, c.g.Votes.F())
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}
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func VotingGraph(races []game.Race, raceIndex func(uuid.UUID) int) []*VoteNode {
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nodes := make([]*VoteNode, len(races))
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for ri := range races {
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// TODO: filter inactive (RIP) races
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r := &races[ri]
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if nodes[ri] == nil {
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nodes[ri] = &VoteNode{
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ID: ri,
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}
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}
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if r.VoteFor != r.ID {
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vid := raceIndex(r.VoteFor)
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if nodes[vid] == nil {
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nodes[vid] = &VoteNode{
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ID: vid,
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}
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}
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nodes[ri].Next = nodes[vid]
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}
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}
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return nodes
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}
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func (c *Cache) votesByRace() map[int]float64 {
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result := make(map[int]float64)
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for i := range c.g.Map.Planet {
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p := &c.g.Map.Planet[i]
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if p.Owner == uuid.Nil {
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continue
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}
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ri := c.RaceIndex(p.Owner)
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planetVotes := p.Votes()
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result[ri] += planetVotes
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}
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return result
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}
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func GroupVotes(raceVotes map[int]float64, nodes []*VoteNode) []*VoteGroup {
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votes := maps.Clone(raceVotes)
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result := make([]*VoteGroup, 0)
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chains := VotingChains(nodes)
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chainingRaces := make(map[int]bool)
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for i := range chains {
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chain := chains[i]
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if len(chain) == 0 {
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panic("voters chain is empty")
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}
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vg := &VoteGroup{}
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for j := range chain {
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node := &chain[j]
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if node.Ally || j == len(chain)-1 {
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vg.RaceIndex = append(vg.RaceIndex, node.ID)
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}
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vg.Sum += votes[node.ID]
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votes[node.ID] = 0
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chainingRaces[node.ID] = true
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}
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// find a non-ally group (single race) which already have its votes and merge with a new VoteGroup instead of adding to result
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if i := slices.IndexFunc(result, func(v *VoteGroup) bool { return len(v.RaceIndex) == 1 && v.RaceIndex[0] == vg.RaceIndex[0] }); i >= 0 && len(vg.RaceIndex) == 1 {
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result[i].Sum += vg.Sum
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} else {
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result = append(result, vg)
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}
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}
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for ri, votes := range votes {
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if _, ok := chainingRaces[ri]; !ok && votes > 0 {
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result = append(result, &VoteGroup{RaceIndex: []int{ri}, Sum: votes})
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}
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}
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return result
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}
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func VotingChains(nodes []*VoteNode) [][]VoteNode {
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visited := make(map[int]bool)
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result := make([][]VoteNode, 0)
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for i := range nodes {
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n := nodes[i]
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if v, ok := visited[n.ID]; (ok && v) || n.Next == nil {
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continue
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}
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slow, fast := n, n
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cycled := false
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var cycleBound *VoteNode
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for slow != nil && fast != nil && fast.Next != nil {
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slow = slow.Next
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fast = fast.Next.Next
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if slow == fast {
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slow = n
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for slow != fast {
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slow = slow.Next
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fast = fast.Next
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}
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cycled = true
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cycleBound = slow
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break
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}
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}
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var current *VoteNode
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if cycled && !visited[slow.ID] {
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result = append(result, make([]VoteNode, 0))
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result[len(result)-1] = append(result[len(result)-1], VoteNode{ID: slow.ID, Ally: true})
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visited[slow.ID] = true
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current = slow.Next
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for current != slow {
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visited[current.ID] = true
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result[len(result)-1] = append(result[len(result)-1], VoteNode{ID: current.ID, Ally: true})
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current = current.Next
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}
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if n == slow {
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continue
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}
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}
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current = n
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var finish *VoteNode
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if cycleBound != nil {
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if cycleBound == current.Next {
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finish = current
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} else {
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finish = cycleBound
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}
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} else {
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finish = nil
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}
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if finish != current {
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result = append(result, make([]VoteNode, 0))
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}
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for current != finish {
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visited[current.ID] = current.ID != n.ID && current.Next != nil
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result[len(result)-1] = append(result[len(result)-1], VoteNode{ID: current.ID, Ally: false})
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current = current.Next
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}
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}
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return result
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}
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func votingWinners(calc []*VoteGroup, sumVotes float64) []int {
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slices.SortFunc(calc, func(a, b *VoteGroup) int { return cmp.Compare(b.Sum, a.Sum) })
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topVoter := calc[0]
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maxVotes := &big.Rat{}
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maxVotes.SetFloat64(topVoter.Sum)
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winVotes := &big.Rat{}
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winVotes.SetFloat64(sumVotes)
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winVotes = winVotes.Mul(winVotes, big.NewRat(2, 3))
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if maxVotes.Cmp(winVotes) >= 0 {
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return topVoter.RaceIndex
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}
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return nil
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}
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