Eight byte-identical field stacks from night 6, all one player, all in an
Owens: ParticleEngine::Destroy +0x11, access=0 target=0x0, from the plain
per-frame render path. Nothing in the stack touches weapons or the Owens.
Conn Man's Surface Pro 9 (Iris Xe, 128 MB shared) is simply the only GPU in
the fleet that ever actually LOSES the D3D9 device -- his two-trigger
missile+laser bursts are what provoke the timeout, not what crashes.
What crashed is our device-loss handling, which was wrong three ways at once,
in two inline copies (the scene Present and the wait-screen Present):
1. On D3DERR_DEVICELOST it called Reset() IMMEDIATELY. Reset on a
still-lost device ALWAYS fails, and V() only logs. There was no
TestCooperativeLevel gate at all.
2. It then ran ParticleEngine::Initialize against the lost device. The
creates fail there and NULL their out-params -- proven, not assumed:
the bench repro faults at target=0x0, not at a dangling address.
3. The next lost frame called ParticleEngine::Destroy again, which
Release()d those NULLs blind. Read of vtable at 0x0. Dead.
So: lost frame 1 tears down and leaves NULLs, lost frame 2 crashes. Two
frames, every time, deterministic -- which is exactly why all 8 field stacks
are byte-identical.
Reproduced before fixing. BT_DEVICELOST_TEST=<frame>,crashrepro runs the
field sequence on the bench; on the unfixed build it died at Destroy +0x11,
access=0 target=0x0, and symbolized to the same four frames as the field
logs. Same shape, same offsets-modulo-hook. That run also proved the
out-param-nulling assumption the whole diagnosis rested on.
The fix -- one shared DPLRenderer::BTResetLostDevice() replacing both inline
copies:
- Destroy() is idempotent and null-safe, and nulls after release.
- Reset() is gated on TestCooperativeLevel() != D3DERR_DEVICELOST; while
the driver still says lost, skip the frame and retry.
- The Reset HRESULT is checked; on failure, log and retry next frame
instead of driving on.
- On success, re-create via the new CreateDeviceObjects(), NOT
Initialize(): Initialize memsets the installed-effects table, so every
reset that DID succeed silently killed all particle effects for the rest
of the mission. The quieter sibling bug, fixed by the same split.
- Initialize checks its HRESULTs and defends MAXPARTICLES<=0; the draw
paths guard the NULL buffer, and ExecuteParticles keeps draining
particles while the engine is dormant so they cannot pile up.
Verified: the crashrepro shape now logs SURVIVED and play continues; three
forced full loss/reset cycles each log "[render] device reset OK"; a plain
run is assert-free.
Found while verifying, worth its own line: VIDEO\particles.png has NEVER
existed -- not in the tree, not in BTL4.RES, not anywhere in git history.
The texture load has failed on every machine since the engine was written,
and every billboard particle ever rendered was untextured quads via
SetTexture(0, NULL). RenderParticles deliberately does NOT gate on the
texture -- that would disable all particles everywhere; untextured IS the
shipped look. Filed separately; a real particle sheet is a content task.
The field verification that counts is Conn Man flying his exact crash
loadout on this build: instead of a dead process he should see at worst a
brief hitch and "[render] device reset OK" in his log. #35 stays open until
that happens.
Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
22 KiB
id, title, status, source_sections, related_topics, key_terms
| id | title | status | source_sections | related_topics | key_terms | |||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
| wintesla-port | The WinTesla Windows Port — the base everything builds on | established | PROGRESS_LOG.md §5b, §8 |
|
|
The WinTesla Windows Port
The Elsewhen RP411 archive is a working Windows port of the MUNGA engine (VS2005,
WinTesla.sln). It means the hardest infrastructure is already solved — the bt411 build sits
on top of it. Full detail: docs/PROGRESS_LOG.md §5b, §8.
What WinTesla already did (do NOT rebuild)
- Renderer bypass: DONE —
MUNGA_L4/L4D3D.cpp+DXUtilsreplace libDPL / the IG board with Direct3D9. Nolibdpl.libin the tree. (The early from-scratch D3D9 viewer was retired and removed.) [T1] - Device-loss: the #35 "Owens crash" — ROOT-CAUSED + FIXED 2026-07-29 [T2, bench-reproduced].
8 byte-identical field stacks (one player, Surface Pro 9 / Iris Xe 128 MB — the only GPU in
the fleet that ever actually loses the device):
ParticleEngine::Destroy +0x11,access=0 target=0x0, from the per-frame render path. Not a weapons bug — the Owens two-trigger missile+laser combo is merely what provokes the GPU timeout on that iGPU. The broken protocol (both Present sites, inline copies): onD3DERR_DEVICELOSTthey calledReset()IMMEDIATELY — which always fails while still lost (V()only logged) — thenParticleEngine::Initialize()ran against the lost device, its creates failed and NULLed the out-params (verified: the bench repro faulted attarget=0x0, not a dangling address), and the NEXT lost frame's blindmVertBuffer->Release()read a vtable at 0x0. FIX (L4VIDEO.cpp+L4PARTICLES.cpp): one sharedDPLRenderer::BTResetLostDevice()— release POOL_DEFAULT resources every lost frame (idempotent, null-safeDestroy), gateReset()onTestCooperativeLevel() != D3DERR_DEVICELOST, check the Reset HRESULT, and on success re-create viaCreateDeviceObjects()— NOTInitialize(), whosememset(mInstalledEffects)silently killed every particle effect for the rest of the mission on each reset that DID succeed (the quieter sibling bug). Draw paths guard the NULL buffer (ExecuteParticleskeeps draining particles while dormant). Bench:BT_DEVICELOST_TESTrepro'd the field crash byte-for-byte pre-fix, and post-fix the same shape logsSURVIVED+ 3 forced loss/reset cycles recover ([render] device reset OK). ⚠ Discovery from the verify:VIDEO\particles.pnghas NEVER existed — absent from the tree, the RES, and all of git history — somParticleTexturehas been NULL on every machine since the engine was written and all billboard particles draw as untextured quads (SetTexture(0,NULL)= the shipped look). Deliberately NOT gated on inRenderParticles— that would disable all particles everywhere. Filed on the tracker; a real texture (or the original particle sheet) is a content task. Possibly related to the field "missile artifact looks wrong" observation. - Audio SOURCE BUDGET — the dropout complaint was fixed 2026-07-23; the leftover is NOT the same
bug [T2, 2026-07-28]. The reported bug is closed:
a999e5c(per-source delete instead of the spec-atomic bulkalDeleteSources) stopped the pool leaking, and there have been no field complaints since. Night-5 logs still show 2017ACQUIRE FAILEDlines in a match, all atlive=256— but that is transient exhaustion, not a leak: the census sits at 45-60 live, spikes during firefights, and drains straight back (226→42), i.e. the engine's priority steal loop (AudioSourceStop/SuspendMaintenance→ReleaseChannels→ReleaseSourceSet→alDeleteSources) is working. A dropped voice there competes with ~256 already sounding, so it is very likely sub-perceptual — treat the log noise as a symptom to watch, not as the old bug. Mechanism if it ever does matter:alcCreateContext(device, NULL)passes no attribute list, so OpenAL Soft applies its DEFAULT 256 mono sources (an OpenAL default, unrelated to the 1995 audio hardware), while a busy match logs ~7200 explosions × 3DPLIndependantEffectvoices. ⚠ Raising the cap is deliberately OPT-IN (BT_AUDIO_SOURCES=<n>, no rebuild needed) — the 256 ceiling doubles as a governor. The steal loop only steals when the incoming source outranks a running one, so a higher cap means far more voices mixing at once, and with EFX reverb + lowpass chains live that is real CPU spent exactly during heavy combat. Measure frame time before making it default. Granted values measured: 1024→1024, 2048→2048, 64→240 (OpenAL Soft's own floor, which is also why the NULL default lands on 256) — always read back what was granted, a request is not a promise. - Audio: BACKEND now REAL + soundbank loaded; only game-triggering remains [T2, updated
2026-07-15]. OpenAL replaces the HMI "SOS" engine and the renderer→device→buffer→source→play chain
IS all implemented (
L4AUDRND/L4AUDRES/L4AUDLVL;PatchLevelOfDetail::PlayNotereally callsalSourcePlay). The "no sound, ever" root cause was DEEPER than a gate — both audio backend DLLs shipped inengine/lib/were no-op STUBS: (a)libsndfile-1.dllexports 15 funcs BY ORDINAL ONLY (no names),sf_open()always returns NULL; (b)OpenAL32.dll(72KB) imported only KERNEL32 — no dsound/wasapi/winmm — so it returned fake handles (ctx=0x00000001,alGenSources→0) and never touched the hardware. So the chain ran clean and silent. FIXES (commit5b46655): OpenAL32.dll → real OpenAL Soft 1.25.2 Win32 (drop-in: the exe imports the 25 AL funcs by NAME;alSourcePlaynow reachesAL_PLAYING). libsndfile DROPPED — replaced byLoadWavPCM()inL4AUDRES(a tiny in-tree RIFF/WAVE fmt+data reader, no external dep). Gates fixed earlier: theAWE_FRONT/AWE_REARenv-var gate inMakeAudioRendererwas relaxed to default-on (BT_NO_AUDIO=1disables). Soundbank recovered: 241 samples cracked fromAUDIO1/2.RES(SF2 v1.0) bytools/sf2extract.py→content/AUDIO/*.wav+ theallPresets[2][128]table (audiopresets.cpp, replacing the zero-init btstubs stub); all 241 load (alErr=0). In-game triggering now WORKS (commit7b1e469): enabling audio unlockedL4AudioRenderer::CreateEntityAudioObjects, which bindsAudioStateWatchers to entity/subsystem state attrs BY NAME (the attribute-pointer databinding, same as gauges) and callsAddAudioWatcheron the resolvedStateIndicator. The reconstruction had pointed the Mech's state attrs at the scalar read-padattrPad(fine for a gauge that READs a value, fatal for a state watcher that calls a METHOD → AV inSChainOf::Addon 0xCDCDCDCD). FIXED: the Mech'sAnimationState/ReplicantAnimationState(driven fromSetBodyAnimation) andCollisionState(driven fromProcessCollisionviacollisionTemporaryState) are now realStateIndicatormembers — verified: walking firesSetupPatch+PlayNote/alSourcePlay(footstep/gait patches 78/80/116). So mech movement/animation/collision audio is live. Subsystem STATE audio DONE (commits 5ba541e/0e05a22/dcdd7dd): the audio watcher TYPE per attribute was recovered via aMakeObjectImplementationClassID trace (class 28 =AudioStateTrigger/StateIndicator). KEY: the binary's 0x54-byte subsystem alarm (FUN_0041b9ec, reconstructed asGaugeAlarm54) IS a StateIndicator — its "three sub-indicators" @0x18/0x2c/0x40 are the audio/video/gauge watcher SChains,level@0x14= currentState. The reconstruction had modeled that tail as an opaque_tail(never constructed → AddAudioWatcher AV'd on 0xCDCDCDCD). FIX:GaugeAlarm54now has three REAL constructed sockets +AddAudioWatcher;SetLevelfires them on change (empty sockets = no-op, so other alarms/weapons unaffected;levelB/LevelCountBuntouched; sizeof stays 0x54). Then registered each state attr → its subsystem's own alarm (ownAttributePointers[]chained to the parent):Generator.GeneratorState→stateAlarm,Condenser.CondenserState→condenserAlarm,Reservoir.ReservoirState→reservoirAlarm,AmmoBin.AmmoState→ammoAlarm (+ chained AmmoBin's bare index soSimulationStateresolves too).GeneratorOn→generatorOn. audiostate skips 85 → 0 — every StateIndicator audio attribute across the mech + all subsystems binds to a real indicator, and the alarms are alreadySetLevel'd by the sims, so generator/condenser/reservoir/ammo state sounds fire on transition. Still inert (read 0, silent, non-crashing — no modeled backing member in the size-locked layouts, a polish follow-up):ReportLeak(Logical),Torso.MotionState(Enum),Torso.SpeedOfTorsoHorizontal(Scalar). NOW REAL (fidelity Phase 1, commitfc7f311):ConfigureActivePresspublished at the MechSubsystem BASE (binary attr id 2, descriptor @0x50de5c → member @+0x110 — the field previously misnamedvitalSubsystemIndex; idle −1, driven 0/−1 byMechWeapon::ConfigureMappablesMessageHandler),AmmoBin.FireCountdownStarted→cookOffArmed@0x18C,L4MechControlsMapper.TargetRangeExponent→targetRangeExponent@0x1a4. The bring-up guards [T3, self-clearing] stay: a NULL subsystem attr → inert pad (was a fatalFail); anAudioStateWatcheron an unconstructed indicator (chain@+0x18 null/0xCDCDCDCD) → skip. Both pass automatically once a subsystem is built. Diagnostics:BT_AUDIO_LOG(chain + skips/redirects),BT_ATTRBIND_LOG(every attr bind),BT_AUDIO_TEST(proof-of-life buffer0). - Audio FIDELITY pass (2026-07-16, commits
fc7f311+ 691e885; the full audit ledger isdocs/AUDIO_FIDELITY.md, 37 findings). Settled facts [T1 unless noted]:- Patch numbering = SF2
wPreset. Any tooling must key presets onwPreset, never on phdr record order.AUDIO1/2.RESare SF2 v1.0 (16-byte shdr, NO name/rate/pitch field); pitch metadata rides generators: 55 = SBK samplePitch (root*100+cents, on every zone), 58 = overridingRootKey, 51/52 = coarse/fineTune. EMU8000 v1 base rate = 44100 Hz → a zone's true data rate is baked into its WAV:rate = round(44100·2^(((6000−rootCents)+tune)/1200))(tools/sf2extract.py); the engine's note-60 pitch model (BTNotePitchFactor) then reproduces original playback at every note. SBKinitialAttenuation(48) is INVERTED (127 = full volume; 0.375 dB/step [T3 exact curve], baked into the PCM). - Full-zone table: 603 zones / 241 presets in
audiopresets.cpp; the authored MIDI note SELECTS zones by keyRange inSetupPatch/PlayNote(key-splits: Loaded/Jam family low-36 clunk vs high-84 blip; Warnings01 8-way klaxon split), layers attach together,MAX_PRESET_SAMPLES=25(AllExplosion). Authored loop REGIONS apply viaAL_SOFT_loop_points; authoredreleaseVolEnv(1.1–3.9 s on ~20 looping presets) fades on Stop (PRESET_serviceReleaseFades, serviced fromAudioHead::Execute). - ⚠ THE LOOP FLAG IS NOT THE LOOP DECISION (Gitea #51, 2026-07-25).
SetupPatch(L4AUDLVL.cpp) used to mapAL_LOOPING = (sample != ForceStatic), which armed 224 of the 603 authored samples as OpenAL sources that never end — any whose note-off never arrives plays forever (SAURON: "coolant flush sound glitched and perma"). Three facts say the sample flag only expresses PERMISSION, and the SOURCE decides [T1]: (1) the enum's own comments (L4AUDLVL.h:14-19) —LoopAtWill= "will play once or loop as desired",ForceStatic= "plays only once even if looped" (a veto),LoopAlways= always; (2)LoopAtWillis enum value 0, i.e. the DEFAULT an unauthored sample receives (WTPresets.cpp:37) — it cannot mean "loop forever"; (3)LoopAlways, the real always-loop, is used by zero shipped samples. "As desired" is the source's authoredAudioRenderType(Transient=one-shot vsSustained=held), streamed fromAUDIO*.RES(AUDLVL.cpp:28) and already consulted by the renderer (L4AUDRND.cpp:567). New rule:LoopAlways→1,ForceStatic→0,LoopAtWill→ the source's render type. Measured (BT_LOOP_AUDIT=1,scratchpad/loopaudit.py):LoopAtWill×Transient1946 events flip 1→0,LoopAtWill×Sustained65 events stay 1,ForceStatic×Transient292 unchanged — the engine loops (EngineAccel07_z0-z2/EngineMotor01/EnginePower01) are all Sustained and preserved; all 24 reclassified samples are genuine one-shots (laser charge/fire/explosion, missile loading, coolant pressure inc/dec). A/B proof (scratchpad/loopab.py): under the old ruleCoolantPresInc03_z2+CoolantPresDcr03_z2are still playing withloop=1after every release; under the new rule zero coolant sources survive, engine loop intact.BT_LOOP_LEGACY=1restores the old rule for a field A/B — listen to the beam-sustain layers (LaserA/CSustain*areLoopAtWillon a Transient source, so they now end with the sample). A stuck looping source also holds a pool slot for the rest of the match, so this plausibly contributed to #32's dropouts. - Distance/volume/doppler: OpenAL distance model is
AL_NONE— the AUTHOREDGetDistanceVolumeScale()curve multiplies inCalculateSourceVolumeScale(Dynamic3D + Static3D); per-sourceAL_GAIN = volume_scale²(GM CC7 squared law);alDopplerFactor(0)— the authoredGetDopplerCents()(AUDIO.INI model, consumer decomp part_008.c:7466) adds into the Dynamic3D pitch chain. - Audio clock:
FUN_0044e19cisApplicationManager::GetFrameRate— the original audio "frames" were SYSTEM CLOCK TICKS;MakeAudioRenderercalibrates atSystemClock::GetTicksPerSecond()(fallback 1000), never the old garbagedivisionParameters+0x10read. - Published
localVelocitysmoothing is authentic [T1]:Mech::Execute(FUN_004ab430) runs the localVelocity components throughAverageOfrunning-average filters (part_012.c:15169-15179); the port's ~0.25 s exponential filter inmech4.cppreconstructs it. - Phases 3+4 SHIPPED (2026-07-16, commits 0ca7d26..0e2401f). Phase 3 EFX:
L4AUDEFXbridge — per-source lowpass (Dyn3D = highFreqCutoffScale×brightness UNGATED, Static/Direct = brightness; AWE 100–8000 Hz → 5 kHz-ref gainhf [T3 curve]), one EAXReverb slot at global_reverb_scale 0.3 (3D wet / cockpit Direct dry), Direct position-enum placement. Phase 4 attributes (all [T1] from binary attribute tables, walked as 16-byte {id,name,off+1,pad} rows): HeatSink table @0x50e438 (ids 3..12) confirms every heat binding + adds ReportLeak id 12 @0x138 = coolantActive (serves all 19 leak watchers via PoweredSubsystem⊂HeatSink); Mech table @0x50c0xx (ids 21..56): IncomingLock@0x3fc / DistanceToMissile@0x400 (real members, Missile::MoveAndCollide reports, PerformAndWatch latches; oldmaxSpeed@0x400was a misread of the FLT_MAX far default), CollisionSpeed@0x4B4 (=|impact velocity| at contact-arm), ReduceButton@0x340, FootStep@0x394, RearFiring@0x410 (oldstateFlagsmisread); Torso table (ids 3..15): full publish onto existing members (SpeedOfTorsoHorizontal=twistVelocity@0x1E8 abs'd, MotionState=statusFlags@0x20C, ==2 = limit-hit frame). F5 footStep = CONTACT LEVEL: (jointlocal.y <= *ANI hdr[2] threshold) per frame, states 0/1 retain (SelectSequence now captures hdr[2]; the 150 ms pulse is retired). F19: the authored footstep volume = LocalAcceleration |lin| [0,10]→ctl100 + LocalVelocity |lin| [0,0.6]→ctl101 (ALL motion watchers extract |linearMotion|, motionValue=3); localAcceleration.linear = d(published velocity)/dt (binary part_012.c:15186-15195); the mech2.cpp step broadcast is REMOVED. attrnull count = 0 — every authored audio attribute binds a real member. - Post-Phase-4 closures (2026-07-16): UnstablePercentage is LIVE (the instability model
@0x3F0 byte-decoded + reconstructed — accel-sway² + gun-the-engine + turn-in-place terms,
feeds gyro swayBias + the audio alarm; commit
c51d64a). The F14 per-zone static resonant low-pass is BAKED (RBJ biquad at the AWE 100–8000 Hz curve, float pipeline + peak normalization; 232 zones incl the LaserLoaded charge hum fc=57 Q=87;c581553). The footstep 10–20 s warm-up bug is fixed (a11a697): an idle source's watcher chain executes only at Start attempts and each hop is audio-frame-gated, so the authored fill-0 N=30 smoothers starved behind the 0.3 transient drop gate — fixes: AudioScaleOf sends EVERY poll (the bitwise change-gate froze on our deterministic gait floats), recursive gate-free Component::PrimeWatchers(30) on every transient Start request (AUDREND), and localAcceleration via the binary's exact 15-sample ring buffers. LESSON: trace caps saturate early and fake "per-stride" rates — always timestamp before inferring cadence. - Still deferred: F21 attack velocity/time (all captured events were default 1), F22 HRTF
(user has 2 speakers; enable via alsoft.ini
hrtf=truefor headphones). - Energy-weapon post-beam buzz = AUTHENTIC (Gitea #5 verdict, 2026-07-20) [T2, measured]:
the reported "buzz/electrical sustaining 1–2 s past the beam" is the AUTHORED charge loop
(
LaserACharge01-04, looped, release 1.309 s), started by the WeaponState==3 (Loading) watcher at beam-off, volume authored to track PercentDone (crescendo to ready), stopped on 3→2 with the authored 1.309 s release fade. Measured live (BT_AUD_TAIL=1 + BT_FIRE_PULSE single shots): beam 203–207 ms (authored DischargeTime 0.2 s); sustain loops cut ≤2 ms after leave-Firing (authored release 0); charge StopNote ≤2 ms after Loading→Loaded; fades 1.311–1.326 s vs authored 1.309 s (≤ 1 frame over); laser recharge 2.3–3.8 s, PPC 8.8–16.3 s under multi-weapon generator load (authentic electrical model). NOT the #12 source overflow — no energy preset exceeds 5 zones (max 3; >5 is only the death/UI families: AllExplosion 25, MechExplosion01/ Death01 16, AllButtons 14, AllCoolant/AllProjectile 9, Warnings01/AuxExplosion01/AllHits 8, AllWarning 7). Caveat: the reporter's 2026-07-18 build predated2edde29(Emitter::SetDirty DelayWatchersFlag poison retirement — PerformAndWatch skips ExecuteWatchers while set, SIMULATE.cpp:461; cleared only by the encore path, UPDATE.cpp:215), which made emitter audio watcher timing encore-erratic that session. Harness kept (env-gated, additive):[aud-tail]logging inL4AUDLVL.cpp(PLAY/STOP/fade) +emitter.cpp(state transitions), andBT_FIRE_PULSE="on,off"single-shot trigger pulsing inmech4.cpp.
- Patch numbering = SF2
- Audio-dropout fix (field 2026-07-23: "cutting in and out toward the end of the match") [T2,
code-verified vs the AL spec; awaiting live playtest confirm]: three structural defects in the
port's OpenAL source-pool lifecycle (
L4AUDRND.cpp/L4AUDIO.cpp/L4AUDHDW.h): (1)SourceSet.sources[]was uninitialized heap garbage until first acquisition — AL names are small ints, so a recycled-heap slot could alias a LIVE source owned by another sound;alIsSource()then skipped generation, two sounds shared one source, and whichever released first deleted the other's source mid-play (random sound deaths worsening with heap churn). Fix:SourceSetctor zero-inits (0 is never a valid name). (2)ReleaseSourceSetused bulkalDeleteSources(count, sources), which is ATOMIC on invalid names — one empty/-1 slot (partial set, double release) and NOTHING deleted; after the first pool exhaustion every partial release leaked and the pool never recovered. Fix: per-slot guarded delete, slots parked at 0. (3) Failed acquisitions stranded partial sets forever — dropped transients are never released by anything (the dtor didn't release; maintenance only touches running sources). Fix: handback viaReleaseChannels()at both failure sites (StartRequest + dormant-resume) + a dtor backstop. Context: the port'sRequestAudioChannelshas NO channel budget (the 1995 per-card budget is the commented-out block) — it alGenSources until OpenAL Soft's ~256 cap; on failure a transient is silently dropped (StartRequest early-return), a sustained goes dormant — which is exactly the "cutting in and out" presentation. Priority-steal (RequestAudioResources) only engages at cap. PERMANENT diagnostics: 30 s[audio] source census: live/acquireFails+ an always-on[audio] ACQUIRE FAILEDline. Baseline (2-node soak): live ≈ 21 peak under fire, 0 at mission end; exhaustion needs 7-player scale or the leak spiral, aliasing needs neither. - L4 HAL on Windows + the VS build system: DONE. [T1]
- Red Planet game logic: COMPLETE & buildable —
VTV/VTVMPPR/WEAPSYS/.... RP is at/near playable. [T1] - Multiplayer: the DOS
NETNUBdriver is already replaced by a ~3.5k-line WinSock2 TCP reimplementation (MUNGA_L4/L4NET.CPP) + the master/replicant distributed-sim core. See multiplayer. [T1]
What BT still needs (the only remaining work below the game layer is NONE)
Everything below the game layer — engine, renderer, audio, HAL, build — exists and is shared. The ONLY thing BT needs is its game-logic source, which is gone (see source-completeness) → it must be reconstructed, with the three anchors (BT headers + the WinTesla engine to compile against + RP's parallel code + the binary oracle). [T2]
Build implications
WinTesla.slnis VS2005 and hard-depends on the legacy DirectX SDK (June 2010) (d3dx9,dinput,dxerr— all removed from the modern Windows SDK). The DXSDK is installed atC:\Program Files (x86)\Microsoft DirectX SDK (June 2010)\. [T2]- The shared engine builds GREEN to
munga_engine.libvia CMake/MSVC Win32 (see build-and-run). Recipe gotchas (include-path shadowing, the CAMMGR/time.h fixes, the ATL shim) are indocs/PROGRESS_LOG.md §8. [T2]
Roadmap position
Old plan ("build a libDPL shim + port the engine") is superseded — WinTesla did it. New plan:
reuse the WinTesla engine (shared) + reconstruct the BT game library (BT410_L4 + game logic). The
from-scratch libDPL shim is no longer needed. Phases 4-8 (BT game layer + pod bring-up) still apply.
[T2]
Key Relationships
- Solves: the infrastructure that source-completeness would otherwise require.
- Feeds: build-and-run, rendering, multiplayer.