Tab/space alignment consistency from running gofmt on all packages. Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
259 lines
7.1 KiB
Go
259 lines
7.1 KiB
Go
package engine
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import (
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"encoding/json"
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"math"
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"net/http"
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"net/http/httptest"
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"testing"
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"time"
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"math/rand"
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)
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// TestIntegration_HTTPMatch runs a complete match between two HTTP bots.
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func TestIntegration_HTTPMatch(t *testing.T) {
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secret := "test-integration-secret"
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// Create mock bot servers for two players
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server0 := createMockBotServer(t, secret, 0)
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server1 := createMockBotServer(t, secret, 1)
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defer server0.Close()
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defer server1.Close()
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// Create HTTP bots
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auth0 := AuthConfig{BotID: "b_0", Secret: secret, MatchID: "m_integration"}
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auth1 := AuthConfig{BotID: "b_1", Secret: secret, MatchID: "m_integration"}
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bot0 := NewHTTPBot(server0.URL, auth0, WithHTTPTimeout(5*time.Second))
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bot1 := NewHTTPBot(server1.URL, auth1, WithHTTPTimeout(5*time.Second))
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// Create match runner with small config for fast test
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config := DefaultConfig()
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config.Rows = 20
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config.Cols = 20
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config.MaxTurns = 100
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runner := NewMatchRunner(config,
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WithRNG(rand.New(rand.NewSource(12345))),
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WithTimeout(5*time.Second),
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)
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runner.AddBot(bot0, "HTTPBot0")
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runner.AddBot(bot1, "HTTPBot1")
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// Run the match
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result, replay, err := runner.Run()
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if err != nil {
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t.Fatalf("Match failed: %v", err)
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}
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if result == nil {
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t.Fatal("Match result is nil")
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}
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if replay == nil {
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t.Fatal("Replay is nil")
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}
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if replay.MatchID == "" {
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t.Error("Replay has empty MatchID")
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}
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if len(replay.Players) != 2 {
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t.Errorf("Replay has %d players, want 2", len(replay.Players))
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}
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if len(replay.Turns) == 0 {
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t.Error("Replay has no turns")
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}
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t.Logf("Match completed: Winner=%d, Turns=%d", result.Winner, result.Turns)
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// Verify win_prob array is populated (task: bf-qps)
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if len(replay.WinProb) == 0 {
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t.Error("Replay WinProb array is empty - ComputeWinProbability was not called")
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}
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// Verify WinProb entries have correct length (should equal number of players)
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if len(replay.WinProb) > 0 && len(replay.WinProb[0]) != len(replay.Players) {
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t.Errorf("WinProb entries have %d values, want %d (number of players)", len(replay.WinProb[0]), len(replay.Players))
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}
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// Verify WinProb values are in valid range [0, 1]
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for i, entry := range replay.WinProb {
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for j, prob := range entry {
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if prob < 0 || prob > 1 {
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t.Errorf("WinProb entry %d player %d has invalid probability %.2f (want 0-1)", i, j, prob)
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}
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}
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}
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// Verify critical moments are populated
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t.Logf("Critical moments detected: %d", len(replay.CriticalMoments))
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for _, m := range replay.CriticalMoments {
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t.Logf(" Turn %d: delta=%.2f, player=%d, desc=%s", m.Turn, m.Delta, m.Player, m.Description)
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}
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}
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// TestIntegration_HMACAuthentication verifies HMAC signing works end-to-end.
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func TestIntegration_HMACAuthentication(t *testing.T) {
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secret := "hmac-test-secret"
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matchID := "m_hmac_test"
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turn := 42
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timestamp := time.Now().Unix()
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requestBody := []byte(`{"match_id":"m_hmac_test","turn":42}`)
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signature := SignRequest(secret, matchID, turn, timestamp, requestBody)
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auth := RequestAuth{
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MatchID: matchID,
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Turn: turn,
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Timestamp: timestamp,
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BotID: "b_test",
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Signature: signature,
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}
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if err := VerifyRequest(secret, auth, requestBody); err != nil {
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t.Errorf("Signature verification failed: %v", err)
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}
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if err := VerifyRequest("wrong-secret", auth, requestBody); err == nil {
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t.Error("Verification should fail with wrong secret")
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}
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if err := VerifyRequest(secret, auth, []byte("wrong body")); err == nil {
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t.Error("Verification should fail with wrong body")
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}
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}
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// TestIntegration_ResponseSigning verifies response signing works.
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func TestIntegration_ResponseSigning(t *testing.T) {
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secret := "response-test-secret"
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matchID := "m_response_test"
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turn := 10
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responseBody := []byte(`{"moves":[{"position":{"row":5,"col":5},"direction":"N"}]}`)
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signature := SignResponse(secret, matchID, turn, responseBody)
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if err := VerifyResponse(secret, matchID, turn, signature, responseBody); err != nil {
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t.Errorf("Response verification failed: %v", err)
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}
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if err := VerifyResponse("wrong-secret", matchID, turn, signature, responseBody); err == nil {
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t.Error("Verification should fail with wrong secret")
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}
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}
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// createMockBotServer creates a test HTTP server that acts as a bot.
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func createMockBotServer(t *testing.T, secret string, playerID int) *httptest.Server {
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return httptest.NewServer(http.HandlerFunc(func(w http.ResponseWriter, r *http.Request) {
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if r.URL.Path == "/health" {
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w.WriteHeader(http.StatusOK)
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return
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}
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if r.URL.Path != "/turn" {
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http.NotFound(w, r)
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return
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}
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var state VisibleState
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if err := json.NewDecoder(r.Body).Decode(&state); err != nil {
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http.Error(w, err.Error(), http.StatusBadRequest)
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return
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}
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moves := make([]Move, 0)
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for _, bot := range state.Bots {
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if bot.Owner == state.You.ID {
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dir := DirN
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if playerID == 1 {
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dir = DirE
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}
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moves = append(moves, Move{
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Position: bot.Position,
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Direction: dir,
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})
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}
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}
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resp := MoveResponse{Moves: moves}
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body, _ := json.Marshal(resp)
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matchID := r.Header.Get("X-ACB-Match-Id")
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turnStr := r.Header.Get("X-ACB-Turn")
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turn := 0
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for _, c := range turnStr {
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if c >= '0' && c <= '9' {
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turn = turn*10 + int(c-'0')
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}
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}
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sig := SignResponse(secret, matchID, turn, body)
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w.Header().Set("X-ACB-Signature", sig)
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w.Header().Set("Content-Type", "application/json")
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w.Write(body)
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}))
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}
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// TestIntegration_CenterWeightedEnergy verifies that energy nodes are biased
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// toward the map center to force contested energy collection.
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func TestIntegration_CenterWeightedEnergy(t *testing.T) {
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secret := "test-energy-secret"
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server := createMockBotServer(t, secret, 0)
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defer server.Close()
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auth := AuthConfig{BotID: "b_test", Secret: secret, MatchID: "m_energy_test"}
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bot := NewHTTPBot(server.URL, auth, WithHTTPTimeout(5*time.Second))
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config := DefaultConfig()
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config.Rows = 60
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config.Cols = 60
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config.MaxTurns = 10 // Short match for fast test
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runner := NewMatchRunner(config,
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WithRNG(rand.New(rand.NewSource(42))),
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WithTimeout(5*time.Second),
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)
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runner.AddBot(bot, "TestBot")
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runner.AddBot(bot, "TestBot2")
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result, replay, err := runner.Run()
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if err != nil {
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t.Fatalf("Match failed: %v", err)
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}
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if result == nil {
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t.Fatal("Match result is nil")
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}
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if replay == nil {
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t.Fatal("Replay is nil")
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}
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// Count energy nodes in central zone (20% of map radius)
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centerRow, centerCol := config.Rows/2, config.Cols/2
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maxRadius := float64(centerRow) * 0.20 // 20% of center distance = central zone
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centralCount := 0
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for _, en := range replay.Map.EnergyNodes {
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dr := float64(en.Row) - float64(centerRow)
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dc := float64(en.Col) - float64(centerCol)
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dist := math.Sqrt(dr*dr + dc*dc)
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if dist <= maxRadius {
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centralCount++
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}
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}
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// Expect at least 20% in central zone (allowing some variance for randomness)
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minCentral := int(float64(len(replay.Map.EnergyNodes)) * 0.20)
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if centralCount < minCentral {
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t.Errorf("expected at least %d energy nodes in central zone, got %d (total nodes: %d)",
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minCentral, centralCount, len(replay.Map.EnergyNodes))
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}
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t.Logf("Center-weighted energy: %d/%d nodes in central zone (%.1f%%)",
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centralCount, len(replay.Map.EnergyNodes),
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100.0*float64(centralCount)/float64(len(replay.Map.EnergyNodes)))
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}
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