package scrabble import ( "testing" "gitea.iliadenisov.ru/developer/scrabble-solver/board" ) // singleWord is the PlayOptions for the "single word per turn" rule: only the main word is // validated and scored, perpendicular cross-words are ignored. var singleWord = PlayOptions{IgnoreCrossWords: true} // TestValidatePlayOptsIgnoresCrossWords is the core of the single-word rule: a play whose // main word is valid but which forms an invalid cross-word is rejected under the standard // rules yet accepted, and scored by its main word only, under IgnoreCrossWords. The play is // also the connectivity regression case — "art" is all-new tiles that touch the board only // perpendicular to the main word, so it exercises connected() without a recorded cross-word. func TestValidatePlayOptsIgnoresCrossWords(t *testing.T) { s := newTestSolver(t) b := board.New(s.rules.Rows, s.rules.Cols) placeWord(b, 3, 1, Horizontal, "cat") // "art" on the row below "cat": the main word "art" is valid, but the columns spell // the non-words "ca", "ar" and "tt". art := []Placement{{Row: 4, Col: 1, Letter: 0}, {Row: 4, Col: 2, Letter: 17}, {Row: 4, Col: 3, Letter: 19}} if _, err := s.ValidatePlay(b, Horizontal, art); err == nil { t.Fatal("standard rules accepted a play forming the invalid cross-word \"ca\"") } m, err := s.ValidatePlayOpts(b, Horizontal, art, singleWord) if err != nil { t.Fatalf("single-word rule rejected a valid main word: %v", err) } if len(m.Cross) != 0 { t.Errorf("single-word move carries %d cross-words, want 0", len(m.Cross)) } if m.Score != 3 { // a1 r1 t1, no premiums on the plain board, no cross-words t.Errorf("single-word score = %d, want 3", m.Score) } // The same placement scores 11 under standard geometry (main 3 + crosses "ca" 4, // "ar" 2, "tt" 2), so the 8 dropped points are exactly the cross-words. if std, _ := s.ScorePlay(b, Horizontal, art); std.Main.Score != 3 || std.Score != 11 { t.Errorf("standard score: main %d total %d, want main 3 total 11", std.Main.Score, std.Score) } } // TestScorePlayOptsExcludesValidCrossWords checks that even valid cross-words are dropped // from the score under the single-word rule, and that a play connecting to the board purely // through a (valid) perpendicular contact is still accepted under the standard rules — the // other half of the connected() regression. func TestScorePlayOptsExcludesValidCrossWords(t *testing.T) { s := newTestSolver(t) b := board.New(s.rules.Rows, s.rules.Cols) placeWord(b, 3, 1, Horizontal, "cat") // "ta" above the "at" of "cat": main "ta" plus the valid cross-words "ta" (col 2) and // "at" (col 3). Both modes accept it; only the score differs. ta := []Placement{{Row: 2, Col: 2, Letter: 19}, {Row: 2, Col: 3, Letter: 0}} std, err := s.ValidatePlay(b, Horizontal, ta) if err != nil { t.Fatalf("standard rules rejected a play with valid cross-words: %v", err) } if std.Score != 6 { // main "ta" 2 + cross "ta" 2 + cross "at" 2 t.Errorf("standard score = %d, want 6", std.Score) } m, err := s.ValidatePlayOpts(b, Horizontal, ta, singleWord) if err != nil { t.Fatalf("single-word rule rejected the play: %v", err) } if m.Score != 2 || len(m.Cross) != 0 { // main "ta" only t.Errorf("single-word score = %d with %d cross-words, want 2 and 0", m.Score, len(m.Cross)) } } // TestValidatePlayOptsStillEnforcesMainAndCentre confirms the single-word rule relaxes only // cross-words: the main word is still checked against the dictionary and the first move must // still cover the centre. func TestValidatePlayOptsStillEnforcesMainAndCentre(t *testing.T) { s := newTestSolver(t) empty := func() *board.Board { return board.New(s.rules.Rows, s.rules.Cols) } // A valid first move through the centre (3,3) is accepted under the single-word rule. cat := []Placement{{Row: 3, Col: 2, Letter: 2}, {Row: 3, Col: 3, Letter: 0}, {Row: 3, Col: 4, Letter: 19}} if _, err := s.ValidatePlayOpts(empty(), Horizontal, cat, singleWord); err != nil { t.Errorf("single-word rule rejected the valid first move \"cat\": %v", err) } // The main word is still validated: "caz" is rejected even though cross-words are ignored. caz := []Placement{{Row: 3, Col: 2, Letter: 2}, {Row: 3, Col: 3, Letter: 0}, {Row: 3, Col: 4, Letter: 25}} if _, err := s.ValidatePlayOpts(empty(), Horizontal, caz, singleWord); err == nil { t.Error("single-word rule accepted the non-word main \"caz\"") } // An off-centre first move is still rejected under the single-word rule. off := []Placement{{Row: 0, Col: 0, Letter: 2}, {Row: 0, Col: 1, Letter: 0}, {Row: 0, Col: 2, Letter: 19}} if _, err := s.ValidatePlayOpts(empty(), Horizontal, off, singleWord); err == nil { t.Error("single-word rule accepted a first move that misses the centre") } } // TestGenerateMovesOptsRelaxesCrossChecks confirms relaxed generation is a superset of // standard generation (it never drops a move and never scores a shared move higher), and // that it produces a play standard generation cannot — one that forms an invalid cross-word // — scored by its main word only. func TestGenerateMovesOptsRelaxesCrossChecks(t *testing.T) { s := newTestSolver(t) b := board.New(s.rules.Rows, s.rules.Cols) placeWord(b, 3, 1, Horizontal, "cat") std := genMoves(s.GenerateMoves(b, makeRack("art", 0), Both)) rel := genMoves(s.GenerateMovesOpts(b, makeRack("art", 0), Both, singleWord)) for k, sm := range std { rm, ok := rel[k] if !ok { t.Errorf("relaxed generation dropped the standard move %s", k) continue } if rm.Score > sm.Score { t.Errorf("relaxed move %s scored %d > standard %d", k, rm.Score, sm.Score) } } // "art" on the row below "cat" forms the invalid cross-word "ca", so standard // generation cannot produce it, but relaxed generation does — scored by its main word. art := []Placement{{Row: 4, Col: 1, Letter: 0}, {Row: 4, Col: 2, Letter: 17}, {Row: 4, Col: 3, Letter: 19}} key := moveKey(Horizontal, art) if _, ok := std[key]; ok { t.Error("standard generation unexpectedly produced \"art\" beside \"cat\"") } rm, ok := rel[key] if !ok { t.Fatal("relaxed generation did not produce \"art\" beside \"cat\"") } if rm.Score != 3 { t.Errorf("relaxed \"art\" scored %d, want 3", rm.Score) } }