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scrabble-game/backend/internal/notify/encode.go
T
Ilia Denisov d7337d24ea
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feat(rules): forbid repeating a word already on the board in Erudit
Russian "Эрудит" treats a word laid on the board as belonging to the
game: it cannot be laid again. Neither the solver, the backend nor the
offline JS port knew the rule, so a player (and the robot) could replay a
word freely. Official Scrabble places no such restriction, so both
Scrabble variants keep playing unrestricted.

The rule applies in two ways. A play whose main word is already on the
board is illegal, and is neither accepted nor generated. A play whose
perpendicular cross-word is already there stands — that word is
incidental to laying the main word — but scores nothing. The set of
played words is the game's own move journal, main words and cross-words
alike, compared decoded, so a word spelled with a blank is the same word.

It lives in the game layer, not the solver: only a game knows its
history, and the solver stays stateless and standard-rules. The backend
applies it at submit, at the move preview and over generated moves
(filtering and re-ranking them, so neither the robot nor the hint can
offer a play the engine would then refuse); the client port does the same
for the offline engine and for the on-device preview of an online game.

The rule is pinned per game (games.no_repeat_words, set from the variant
at creation) rather than keyed on the variant, because a game is replayed
from its journal on every open. Applied retroactively it would make an
already-played repeat illegal — closing that game as a draw — and would
rescore a play whose cross-word repeats an earlier word, shifting a live
game's totals. Games created before the rule keep playing without it. The
flag rides the wire as a trailing field because the client's preview must
score the way the server does, and offline games pin the same answer in
their own record.
2026-07-27 18:33:56 +02:00

123 lines
4.3 KiB
Go

package notify
import (
flatbuffers "github.com/google/flatbuffers/go"
"scrabble/backend/internal/engine"
"scrabble/pkg/wire"
)
// The builders below encode the nested wire tables embedded in enriched event
// payloads. They map the domain's already-resolved values (notify.* payload structs
// and the decoded engine.MoveRecord) to the neutral scrabble/pkg/wire structs and
// delegate the FlatBuffers construction to package wire — the single definition of the
// nested-table layout shared with the gateway transcoder. Each returns the offset of
// the table it built; callers must build every nested table before opening the parent.
// toWireGame maps a GameSummary to the shared wire.GameView.
func toWireGame(g GameSummary) wire.GameView {
seats := make([]wire.SeatView, len(g.Seats))
for i, s := range g.Seats {
seats[i] = wire.SeatView{
Seat: s.Seat,
AccountID: s.AccountID,
Score: s.Score,
HintsUsed: s.HintsUsed,
IsWinner: s.IsWinner,
DisplayName: s.DisplayName,
}
}
return wire.GameView{
ID: g.ID,
Variant: g.Variant,
DictVersion: g.DictVersion,
Status: g.Status,
Players: g.Players,
ToMove: g.ToMove,
TurnTimeoutSecs: g.TurnTimeoutSecs,
MultipleWordsPerTurn: g.MultipleWordsPerTurn,
VsAI: g.VsAI,
Kind: g.Kind,
MoveCount: g.MoveCount,
EndReason: g.EndReason,
Seats: seats,
LastActivityUnix: g.LastActivityUnix,
NoRepeatWords: g.NoRepeatWords,
}
}
// buildGameView builds a GameView table from a GameSummary and returns its offset.
func buildGameView(b *flatbuffers.Builder, g GameSummary) flatbuffers.UOffsetT {
return wire.BuildGameView(b, toWireGame(g))
}
// buildMoveRecord builds a MoveRecord table from a decoded engine move and returns its
// offset (Count is the engine count: the number of tiles swapped on an exchange, zero
// otherwise).
func buildMoveRecord(b *flatbuffers.Builder, m engine.MoveRecord) flatbuffers.UOffsetT {
tiles := make([]wire.TileRecord, len(m.Tiles))
for i, t := range m.Tiles {
tiles[i] = wire.TileRecord{Row: t.Row, Col: t.Col, Letter: t.Letter, Blank: t.Blank}
}
return wire.BuildMoveRecord(b, wire.MoveRecord{
Player: m.Player,
Action: m.Action.String(),
Dir: m.Dir.String(),
MainRow: m.MainRow,
MainCol: m.MainCol,
Tiles: tiles,
Words: m.Words,
Count: m.Count,
Score: m.Score,
Total: m.Total,
})
}
// buildStateView builds a StateView table from a PlayerState and returns its offset.
func buildStateView(b *flatbuffers.Builder, s PlayerState) flatbuffers.UOffsetT {
alphabet := make([]wire.AlphabetEntry, len(s.Alphabet))
for i, e := range s.Alphabet {
alphabet[i] = wire.AlphabetEntry{Index: e.Index, Letter: e.Letter, Value: e.Value}
}
return wire.BuildStateView(b, wire.StateView{
Game: toWireGame(s.Game),
Seat: s.Seat,
Rack: s.Rack,
BagLen: s.BagLen,
HintsRemaining: s.HintsRemaining,
Alphabet: alphabet,
})
}
// buildAccountRef builds an AccountRef table and returns its offset.
func buildAccountRef(b *flatbuffers.Builder, a AccountRef) flatbuffers.UOffsetT {
return wire.BuildAccountRef(b, wire.AccountRef{AccountID: a.AccountID, DisplayName: a.DisplayName})
}
// buildInvitation builds an Invitation table from an InvitationSummary and returns its offset.
func buildInvitation(b *flatbuffers.Builder, inv InvitationSummary) flatbuffers.UOffsetT {
invitees := make([]wire.InvitationInvitee, len(inv.Invitees))
for i, iv := range inv.Invitees {
invitees[i] = wire.InvitationInvitee{
AccountID: iv.AccountID,
DisplayName: iv.DisplayName,
Seat: iv.Seat,
Response: iv.Response,
}
}
return wire.BuildInvitation(b, wire.Invitation{
ID: inv.ID,
Inviter: wire.AccountRef{AccountID: inv.Inviter.AccountID, DisplayName: inv.Inviter.DisplayName},
Invitees: invitees,
Variant: inv.Variant,
TurnTimeoutSecs: inv.TurnTimeoutSecs,
HintsAllowed: inv.HintsAllowed,
HintsPerPlayer: inv.HintsPerPlayer,
MultipleWordsPerTurn: inv.MultipleWordsPerTurn,
DropoutTiles: inv.DropoutTiles,
Status: inv.Status,
GameID: inv.GameID,
ExpiresAtUnix: inv.ExpiresAtUnix,
})
}