Files
SVSimServer/SVSim.BattleEngine/Engine/Cute/EventExtension.cs
gamer147 2d9a6eea4b engine cleanup passes 4-7 + multi-instancing ambient rip
Squashes 146 commits from battle-engine-extraction. Net: 2,045 files changed,
+11,896 / -158,687 lines. Ships engine passes 4-7 (dead-code cull, view-layer
stub, receive-path shrink) plus the Phase-5 AsyncLocal ambient deletion that
turns concurrent battles into a type-system property rather than a scope
contract.

## What landed

**Passes 4-7 (chunks 1-34):** Extended the Phase-4 const-false collapse into a
cascading cull across the skill graph, view layer, and receive-path periphery.
Six mode flags (IsWatchBattle/IsReplayBattle/IsAdmin/IsAdminWatch/IsPuzzleQuest/
IsAINetwork) became `const false`, every guarded block deleted. Field*.cs
subclass ctors + BackGroundBase + ObjectChecker culled to no-ops. Mulligan
family reworked to take a mgr param through IMulliganMgr.InitMulligan.
Emotion/Recovery/Resource clusters null-stubbed. Prediction/OperationSimulator/
skill filters converted from static ambient reads to per-mgr reads via
SkillPrm.ownerCard.SelfBattlePlayer.BattleMgr / ins.BattleMgr / this.BattleMgr.

**Phase-5 ambient rip (chunks 35-47):** Deleted BattleAmbient / BattleAmbient-
Context / TestBattleScope in full. Every per-battle mutable slot now lives on
the mgr instance itself:
  mgr.InstanceIsForecast / InstanceIsRandomDraw / InstanceRecoveryInfo /
  InstanceViewerId / InstanceNetworkAgent / GameMgr
BattleManagerBase.GetIns() returns null unconditionally; the residual static
flags + 3 façades (Certification.ViewerId, Data.BattleRecoveryInfo,
ToolboxGame.RealTimeNetworkAgent) are null-tolerant defaults kept for the
handful of engine-internal readers that still reference their types. Zero
BattleAmbient references anywhere in engine + node + tests.

Added pre-seeded GameMgr ctor overload threaded through the mgr chain
(BattleManagerBase → SingleBattleMgr / NetworkBattleManagerBase → NetworkStandard-
BattleMgr → HeadlessBattleMgr / HeadlessNetworkBattleMgr). Fixtures build a
GameMgr, seed it via HeadlessEngineEnv.SeedCharaIds/SeedNetUser, and pass it
to the mgr's ctor — no ambient reach.

Node side (SVSim.BattleNode/SessionBattleEngine): _ctx replaced with a plain
GameMgr field; 34 `using var _ambient = BattleAmbient.Enter(_ctx)` scope wraps
ripped from every accessor and mutator; EngineGlobalInit.WirePerSessionGameMgr
takes GameMgr as a param and runs from SessionBattleEngine.SetupInternal
BEFORE mgr construction.

Test side: TestBattleScope deleted; 18 fixture [SetUp]s migrated to
`HeadlessEngineEnv.EnsureProcessGlobals()`; MultiInstanceEngineTests rewritten
around per-mgr construction (GetIns() → null is the pinned invariant).

## Regression fixes

- **chunk-48** (MulliganCtrl): chunk-35's `= null` stubs on card lookups broke
  the live receive-driven Deal path (BattlePlayerBase.DrawCard NRE'd downstream
  of NetworkPlayerMulliganCtrl.StartMulliganVfx). Restored the three lookups
  via `_battlePlayer.BattleMgr.GetBattleCardIdx`. Engine tests were satisfied
  by the WireMulliganPhase seam; unit tests exposed the live-path gap.

## Ship state

- SVSim.BattleEngine.Tests: 56/56 pass, 2 skip
- SVSim.UnitTests: 1554/1554 pass (was 1523/31-fail before chunk 48)
- Solution build: 0 source warnings (40 pre-existing NU1902 MessagePack CVEs
  in SVSim.EmulatedEntrypoint, unrelated)
- Sequential PVP smoke: verified live (two back-to-back battles, no regression
  on cleanup/spinup)
- Concurrent PVP smoke: verified live

Adds tools/engine-port/ClosureAnalyzer/ — the Roslyn transitive-type-closure
analyzer needed to make future cascade cleanup safe (per feedback memory
"Engine cleanup needs closure tool" from the 2026-06-28 pass-3 failure).

Co-Authored-By: Claude Opus 4.7 <noreply@anthropic.com>
2026-07-03 19:18:54 -04:00

164 lines
4.3 KiB
C#

using System;
// TODO(engine-cleanup-pass2): 20 of 21 methods unrun in baseline
// Type: Cute.EventExtension
// See data_dumps/reports/engine-cleanup/live-methods.baseline.txt
namespace Cute;
public static class EventExtension
{
public static void Call(this Action action)
{
action?.Invoke();
}
public static void Call<T1>(this Action<T1> action, T1 arg1)
{
action?.Invoke(arg1);
}
public static void Call<T1, T2>(this Action<T1, T2> action, T1 arg1, T2 arg2)
{
action?.Invoke(arg1, arg2);
}
public static void Call<T1, T2, T3>(this Action<T1, T2, T3> action, T1 arg1, T2 arg2, T3 arg3)
{
action?.Invoke(arg1, arg2, arg3);
}
public static void Call<T1, T2, T3, T4>(this Action<T1, T2, T3, T4> action, T1 arg1, T2 arg2, T3 arg3, T4 arg4)
{
action?.Invoke(arg1, arg2, arg3, arg4);
}
public static void Call<T1, T2, T3, T4, T5>(this Action<T1, T2, T3, T4, T5> action, T1 arg1, T2 arg2, T3 arg3, T4 arg4, T5 arg5)
{
action?.Invoke(arg1, arg2, arg3, arg4, arg5);
}
public static void Call<T1, T2, T3, T4, T5, T6>(this Action<T1, T2, T3, T4, T5, T6> action, T1 arg1, T2 arg2, T3 arg3, T4 arg4, T5 arg5, T6 arg6)
{
action?.Invoke(arg1, arg2, arg3, arg4, arg5, arg6);
}
public static void Call<T1, T2, T3, T4, T5, T6, T7>(this Action<T1, T2, T3, T4, T5, T6, T7> action, T1 arg1, T2 arg2, T3 arg3, T4 arg4, T5 arg5, T6 arg6, T7 arg7)
{
action?.Invoke(arg1, arg2, arg3, arg4, arg5, arg6, arg7);
}
public static void Call<T1, T2, T3, T4, T5, T6, T7, T8>(this Action<T1, T2, T3, T4, T5, T6, T7, T8> action, T1 arg1, T2 arg2, T3 arg3, T4 arg4, T5 arg5, T6 arg6, T7 arg7, T8 arg8)
{
action?.Invoke(arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8);
}
public static void Call<T1, T2, T3, T4, T5, T6, T7, T8, T9>(this Action<T1, T2, T3, T4, T5, T6, T7, T8, T9> action, T1 arg1, T2 arg2, T3 arg3, T4 arg4, T5 arg5, T6 arg6, T7 arg7, T8 arg8, T9 arg9)
{
action?.Invoke(arg1, arg2, arg3, arg4, arg5, arg6, arg7, arg8, arg9);
}
public static TR Call<TR>(this Func<TR> func)
{
if (func == null)
{
return default(TR);
}
return func();
}
public static TR Call<T1, TR>(this Func<T1, TR> func, T1 arg1)
{
if (func == null)
{
return default(TR);
}
return func(arg1);
}
public static TR Call<T1, T2, TR>(this Func<T1, T2, TR> func, T1 arg1, T2 arg2)
{
if (func == null)
{
return default(TR);
}
return func(arg1, arg2);
}
public static TR Call<T1, T2, T3, TR>(this Func<T1, T2, T3, TR> func, T1 arg1, T2 arg2, T3 arg3)
{
if (func == null)
{
return default(TR);
}
return func(arg1, arg2, arg3);
}
public static TR Call<T1, T2, T3, T4, TR>(this Func<T1, T2, T3, T4, TR> func, T1 arg1, T2 arg2, T3 arg3, T4 arg4)
{
if (func == null)
{
return default(TR);
}
return func(arg1, arg2, arg3, arg4);
}
public static TR Call<T1, T2, T3, T4, T5, TR>(this Func<T1, T2, T3, T4, T5, TR> func, T1 arg1, T2 arg2, T3 arg3, T4 arg4, T5 arg5)
{
if (func == null)
{
return default(TR);
}
return func(arg1, arg2, arg3, arg4, arg5);
}
public static TR[] GetAllFuncCallResults<TR>(this Func<TR> func)
{
if (func == null)
{
return new TR[0];
}
return CallAllFunc(func, (Delegate f) => ((Func<TR>)f)());
}
public static TR[] GetAllFuncCallResults<T1, TR>(this Func<T1, TR> func, T1 arg1)
{
if (func == null)
{
return new TR[0];
}
return CallAllFunc(func, (Delegate f) => ((Func<T1, TR>)f)(arg1));
}
public static TR[] GetAllFuncCallResults<T1, T2, TR>(this Func<T1, T2, TR> func, T1 arg1, T2 arg2)
{
if (func == null)
{
return new TR[0];
}
return CallAllFunc(func, (Delegate f) => ((Func<T1, T2, TR>)f)(arg1, arg2));
}
public static TR[] GetAllFuncCallResults<T1, T2, T3, TR>(this Func<T1, T2, T3, TR> func, T1 arg1, T2 arg2, T3 arg3)
{
if (func == null)
{
return new TR[0];
}
return CallAllFunc(func, (Delegate f) => ((Func<T1, T2, T3, TR>)f)(arg1, arg2, arg3));
}
private static TR[] CallAllFunc<TR>(Delegate func, Func<Delegate, TR> call)
{
Delegate[] invocationList = func.GetInvocationList();
int num = invocationList.Length;
TR[] array = new TR[num];
for (int i = 0; i < num; i++)
{
TR val = call(invocationList[i]);
array[i] = val;
}
return array;
}
}