feat(ModularBot): acceleration predictor gun, 9 guns total
- Accel gun: tracks velocity+heading changes, extrapolates with acceleration - Handles speed-up, slow-down, and combined accel+turn - Battle-tested vs Crazy, RandomMover, Walls
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@@ -1,5 +1,5 @@
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## ModularBot — plugin gun architecture tracer bullet.
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## Guns: HeadOnGun (0), LinearGun (1), TsetlinGun (2), CircularGun (3), GFGun (4), PatternMatcherGun (5), AntiSurferGun (6) via GunHarness.
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## Guns: HeadOnGun (0), LinearGun (1), TsetlinGun (2), CircularGun (3), GFGun (4), PatternMatcherGun (5), AntiSurferGun (6), WallBounceGun (7), AccelGun (8) via GunHarness.
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## Radar: RadarLockModule via radar harness.
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## Movement: OscillatorModule (perpendicular strafing).
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@@ -18,12 +18,13 @@ import guns/guess_factor
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import guns/pattern_matcher
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import guns/anti_surfer
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import guns/wall_bounce
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import guns/accel_predictor
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import movements/phantom_meteor
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const botJsonPath = currentSourcePath().parentDir / "ModularBot.json"
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const DebugVBullets = false
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const DebugCircular = false
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const GunNames = ["HeadOn", "Linear", "Tsetlin", "Circular", "GuessFactor", "Pattern", "AntiSurf", "WallBounce"]
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const GunNames = ["HeadOn", "Linear", "Tsetlin", "Circular", "GuessFactor", "Pattern", "AntiSurf", "WallBounce", "Accel"]
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type
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ModularBot = ref object of Bot
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@@ -40,6 +41,7 @@ type
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patternMatcher: PatternMatcherGun
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antiSurfer: AntiSurferGun
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wallBounce: WallBounceGun
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accelGun: AccelGun
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mover: PhantomMeteorModule
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virtualHits: int
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virtualMiss: int
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@@ -78,6 +80,7 @@ method onScannedBot*(bot: ModularBot, e: ScannedBotEvent) =
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var pmPreds: array[len(PowerBins), GunPrediction]
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var asPreds: array[len(PowerBins), GunPrediction]
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var wbPreds: array[len(PowerBins), GunPrediction]
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var acPreds: array[len(PowerBins), GunPrediction]
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for i in 0..<len(PowerBins):
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headsUp[i] = bot.headOn.predict(bot.lastState, bulletSpeed(PowerBins[i]))
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linPreds[i] = bot.linear.predict(bot.lastState, bulletSpeed(PowerBins[i]))
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@@ -87,6 +90,7 @@ method onScannedBot*(bot: ModularBot, e: ScannedBotEvent) =
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pmPreds[i] = bot.patternMatcher.predict(bot.lastState, bulletSpeed(PowerBins[i]))
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asPreds[i] = bot.antiSurfer.predict(bot.lastState, bulletSpeed(PowerBins[i]))
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wbPreds[i] = bot.wallBounce.predict(bot.lastState, bulletSpeed(PowerBins[i]))
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acPreds[i] = bot.accelGun.predict(bot.lastState, bulletSpeed(PowerBins[i]))
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bot.tracker.spawnBullets(0, headsUp, bot.lastState)
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bot.tracker.spawnBullets(1, linPreds, bot.lastState)
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@@ -98,6 +102,7 @@ method onScannedBot*(bot: ModularBot, e: ScannedBotEvent) =
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bot.tracker.spawnBullets(5, pmPreds, bot.lastState)
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bot.tracker.spawnBullets(6, asPreds, bot.lastState)
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bot.tracker.spawnBullets(7, wbPreds, bot.lastState)
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bot.tracker.spawnBullets(8, acPreds, bot.lastState)
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# Resolve bullets that have travelled far enough
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let st = bot.lastState
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@@ -116,6 +121,7 @@ method onScannedBot*(bot: ModularBot, e: ScannedBotEvent) =
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of 5: bot.patternMatcher.onResult(fe)
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of 6: bot.antiSurfer.onResult(fe)
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of 7: bot.wallBounce.onResult(fe)
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of 8: bot.accelGun.onResult(fe)
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else: discard
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if fe.hit: inc bot.virtualHits else: inc bot.virtualMiss
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when DebugVBullets:
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@@ -140,6 +146,7 @@ method onScannedBot*(bot: ModularBot, e: ScannedBotEvent) =
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of 5: setTurretColor("#FF6600"); setBulletColor("#FF9944") # Pattern: orange
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of 6: setTurretColor("#00CCFF"); setBulletColor("#66DDFF") # AntiSurf: cyan
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of 7: setTurretColor("#CCCCCC"); setBulletColor("#EEEEEE") # WallBounce: silver/white
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of 8: setTurretColor("#FF00FF"); setBulletColor("#FF66FF") # Accel: magenta
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else: discard
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let pred = case selectedGun
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@@ -150,6 +157,7 @@ method onScannedBot*(bot: ModularBot, e: ScannedBotEvent) =
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of 5: bot.patternMatcher.predict(bot.lastState, bulletSpeed(power))
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of 6: bot.antiSurfer.predict(bot.lastState, bulletSpeed(power))
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of 7: bot.wallBounce.predict(bot.lastState, bulletSpeed(power))
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of 8: bot.accelGun.predict(bot.lastState, bulletSpeed(power))
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else: bot.headOn.predict(bot.lastState, bulletSpeed(power))
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let target = aimAngle(getX(), getY(), pred.x, pred.y)
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@@ -209,7 +217,7 @@ method run*(bot: ModularBot) =
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when isMainModule:
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var bot = ModularBot(
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tracker: vb.initTracker(8), # 0: HeadOn, 1: Linear, 2: Tsetlin, 3: Circular, 4: GuessFactor, 5: Pattern, 6: AntiSurf, 7: WallBounce
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tracker: vb.initTracker(9), # 0: HeadOn, 1: Linear, 2: Tsetlin, 3: Circular, 4: GuessFactor, 5: Pattern, 6: AntiSurf, 7: WallBounce, 8: Accel
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headOn: HeadOnGun(),
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linear: LinearGun(),
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circular: CircularGun(),
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@@ -218,6 +226,7 @@ when isMainModule:
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patternMatcher: PatternMatcherGun(),
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antiSurfer: initAntiSurferGun(),
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wallBounce: initWallBounceGun(),
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accelGun: initAccelGun(),
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radar: RadarLockModule(),
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mover: initPhantomMeteor(),
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currentGun: -1,
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@@ -0,0 +1,34 @@
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## Test AccelGun: 3 battles vs Crazy, RandomMover, Walls — 10 rounds each.
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## Run with: nim c -r --path:../../common_libs tests/test_accel_gun.nim
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import std/[os, strformat]
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import test_framework/test_framework
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const
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modularBotDir = currentSourcePath().parentDir.parentDir
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samplesDir = "/home/davide/Downloads/robocode-tankroyale/sample-bots-nim-linux-1.0.7"
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crazyDir = samplesDir / "Crazy"
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wallsDir = samplesDir / "Walls"
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randomMoverDir = "/home/davide/Projects/SirRoboGarage/RandomMover_garage"
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if not fileExists("/home/davide/Projects/tank-royale/server/build/libs/robocode-tankroyale-server-0.35.5-all.jar") or
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not fileExists("/home/davide/Projects/tank-royale/runner/examples/lib/robocode-tankroyale-runner.jar"):
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echo "Skipping: Tank Royale JARs not found"
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quit(0)
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proc runAndReport(label, enemyName, enemyDir: string) =
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echo fmt"\n=== {label} ==="
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let r = runBattle(@[modularBotDir, enemyDir], rounds = 10, timeout = 180000)
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var mbScore = 0
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var enScore = 0
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for b in r.results:
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if b.name == "ModularBot": mbScore = b.totalScore
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if b.name == enemyName: enScore = b.totalScore
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let winner = if mbScore > enScore: "ModularBot" else: enemyName
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echo fmt" ModularBot: {mbScore} {enemyName}: {enScore} → {winner} wins"
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echo fmt" Rounds: {r.rounds.len}"
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runAndReport("Battle 1/3: vs Crazy", "Crazy", crazyDir)
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runAndReport("Battle 2/3: vs RandomMover", "RandomMover", randomMoverDir)
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runAndReport("Battle 3/3: vs Walls", "Walls", wallsDir)
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echo "\nAccelGun gauntlet complete."
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@@ -0,0 +1,92 @@
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## Acceleration predictor gun: tracks velocity and heading changes across frames,
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## extrapolates with accel+turn for bots that speed up/slow down.
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## Needs 3+ frames for stable accel; falls back to linear (2 frames) or head-on (1 frame).
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## Coordinate system: 0° = East, CCW positive (Tank Royale standard).
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import std/math
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import gun_harness/gun_interface
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const MaxSpeed = 8.0 ## TR bot max speed (px/tick)
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type AccelGun* = object
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prevSpeed: float
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prevHeading: float
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prevPrevSpeed: float
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prevTick: int
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frames: int ## how many observations we have
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cachedAccel: float ## accel (px/tick²) cached per tick
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cachedTurnRate: float ## turn rate (deg/tick) cached per tick
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cachedTick: int
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proc initAccelGun*(): AccelGun =
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AccelGun()
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proc predict*(g: var AccelGun, state: WorldState, bulletSpeed: float): GunPrediction =
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if bulletSpeed <= 0.0:
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return GunPrediction(x: state.enemyX, y: state.enemyY)
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# Update observation window on new tick
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if state.tick > g.cachedTick:
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if g.frames >= 1:
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# Compute turn rate (normalised to [-180, 180])
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var tr = state.enemyHeading - g.prevHeading
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if tr > 180.0: tr -= 360.0
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elif tr < -180.0: tr += 360.0
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let tickDelta = max(1, state.tick - g.prevTick).float
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g.cachedTurnRate = tr / tickDelta
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if g.frames >= 2:
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# Compute acceleration
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g.cachedAccel = (state.enemySpeed - g.prevSpeed) / tickDelta
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else:
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g.cachedAccel = 0.0
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else:
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g.cachedTurnRate = 0.0
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g.cachedAccel = 0.0
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# Advance window
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g.prevPrevSpeed = g.prevSpeed
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g.prevSpeed = state.enemySpeed
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g.prevHeading = state.enemyHeading
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g.prevTick = state.tick
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g.cachedTick = state.tick
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inc g.frames
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# fallback: not enough history
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if g.frames < 2:
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return GunPrediction(x: state.enemyX, y: state.enemyY)
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let dx = state.enemyX - state.selfX
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let dy = state.enemyY - state.selfY
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let dist = sqrt(dx*dx + dy*dy)
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var t = dist / bulletSpeed # initial ticks estimate
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let accel = g.cachedAccel
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let turnRate = g.cachedTurnRate # deg/tick
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# Iterative convergence (same pattern as circular gun)
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var ex = state.enemyX
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var ey = state.enemyY
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for _ in 0..4:
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var vx = state.enemySpeed
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var hd = state.enemyHeading # degrees
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var px = state.enemyX
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var py = state.enemyY
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let iters = int(t + 0.5)
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for _ in 0..<iters:
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vx = clamp(vx + accel, -MaxSpeed, MaxSpeed)
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hd += turnRate
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let hr = degToRad(hd)
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px += vx * cos(hr)
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py += vx * sin(hr)
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# Clamp to arena
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ex = clamp(px, BotRadius, state.arenaWidth - BotRadius)
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ey = clamp(py, BotRadius, state.arenaHeight - BotRadius)
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let ndx = ex - state.selfX
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let ndy = ey - state.selfY
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t = sqrt(ndx*ndx + ndy*ndy) / bulletSpeed
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GunPrediction(x: ex, y: ey)
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proc onResult*(g: var AccelGun, e: FeedbackEvent) =
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discard # analytical gun — no learning
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