Commit Graph
7 Commits
Author SHA1 Message Date
arcattackandClaude Fable 5 6783619069 Gitea #9: the upper-MFD PRESET pages (3 MFDs x 5) live -- SetPresetMode
table re-decoded to the ModeMFD bits + desktop J/K/L page cycle

The preset system was unwired by ONE defect in the message layer: the
SetPresetMode @004d1b24 table @0051dbf0 had been transcribed from the
section dump as BIG-endian dwords ({0x1e,0x01000000} instead of
{0x1e,0x01}), so a preset press set a garbage high bit -- and for group 1
items 3-4 / group 2 items 0-2 stomped the LIVE NonMapping / Intercom /
ModeSecondary* bits -- while the real page bits never moved.  Ground
truth (section_dump.txt:72901-72908, little-endian + BTL4MODE.HPP [T0]):
set = ModeMFD{1,2,3}{Quad,Eng1-4} = 1<<(group*5+item), bits 0-14, fully
disjoint from the #6 secondary trio (bits 18-20); group 2 is MFD3, NOT a
duplicate of the secondary views.

What the 15 presets show (l4gauge.cfg): group = the MFD (Mfd1 lower left
/ Mfd2 upper center / Mfd3 lower right), item 0 = the btquad.pcx Quad
overview (up to 4 vehicleSubSystems cluster panels), items 1-4 = the
full-screen engineering-detail pages (bteng.pcx + prepEngr screens
group*4+1..4 + the cluster eng children: GENERATOR SELECT A-D, POWER
graph, COOLING loop, DAMAGE, ammo).  Empty screens are authored per mech
(Blackhawk: 3/11/12 empty).

Authentic dispatch (streamed "L4" .CTL EventMappings, BT_CTRLMAP_LOG
dump): each MFD owns the 8-button RIO bank around it, MODE-MASK-gated --
Mfd1 = 0x08-0x0F, Mfd2 = 0x20-0x27, Mfd3 = 0x00-0x07.  Quad page ->
direct-select buttons for the POPULATED eng pages (mapper msgs
Aux1Eng1-4 0x4-0x7 / Aux2* 0x9-0xC / Aux3* 0xE-0x11); eng page -> one
back-to-Quad button (0x3/0x8/0xD) + per-subsystem controls.  These
records already install and fire on desktop (btinput passes the live
manager mask), so the NUMPAD profile's 0x20-0x27 keys page MFD2
authentically.

Port wiring (the #6 pattern): keys J/K/L -> actions Mfd1/2/3Cycle ->
gBTPresetCycle -> L4MechControlsMapper::CyclePresetModeNow(group) -- a
documented desktop shim (24 mode-dependent pod buttons don't fit a
keyboard) that cycles Quad -> populated Eng pages -> Quad, visiting
exactly the pod-reachable set; the body is the authentic SetPresetMode.

Dev-composite: BTDrawGaugeSurfaces now draws the Eng1-3 planes at their
sibling cells and skips any mono plane whose channel is BlankColor,
honoring the mode-driven reconfigure (RemapGraphicsPort) -- each dev
cell shows the ACTIVE page like the pod monitor.  This supersedes and
removes the 2026-07-12 GAUGREND "frozen-dial" scaffold (forced all 15
page bits active under BT_DEV_GAUGES; it pinned the shared Eng plane on
the highest screen and ate the page flips).

Pixel-verified (BT_PRESET_TEST + BT_DEV_GAUGES_DOCK + BT_SHOT,
Blackhawk): all three MFDs page Quad -> SYSTEM NN eng details -> back to
Quad in lockstep with the [mode] preset mask log; group 0 skips the
authored-empty screen 3, group 2 skips 11/12.  Un-regressed: N display
cycle (0x450421->0x490421->0x510421, page bits intact), M control mode,
CONTROLS.MAP 52 bindings parse clean.

Diags: BT_MODE_LOG ([mode] preset), BT_PRESET_TEST=<frame>.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-19 17:30:35 -05:00
arcattackandClaude Fable 5 1d6339b226 Gitea #6: secondary MFD Damage/Critical/Heat cycling -- reconstruct the
NotifyOfDisplayModeChange override (vtbl+0x4C @4d1ae4) + wire desktop 'N'

The secondary screen's schematic selector was mislabeled: @004d1ae4 (the
bits-18..20 ModeSecondary* mask swap) was reconstructed as a non-virtual
"SetControlMode" that nothing called, so the desktop stayed pinned on the
Damage view.  The binary's L4 vtable @0051e440 pins the truth:

  +0x48 = @004d1acc  <- CycleControlModeMessageHandler (FUN_004afbe0):
          forwards to the base RET no-op @004b048c.  A BAS/MID/ADV
          control-mode change never touches the secondary view
          (empirically confirmed: BT_MODECYCLE_TEST cycles the CONTROL
          MODE lamp, mask bits 18-20 unchanged, schematic stays ARMOR).
  +0x4C = @004d1ae4  <- CycleDisplayModeMessageHandler (FUN_004afcac):
          THE Damage/Critical/Heat selector, indexed by displayMode
          (table @0051dbe4 = ModeSecondaryDamage/Critical/Heat).

Authentic pod inputs (streamed type-6 .CTL EventMappings, dumped via the
new BT_CTRLMAP_LOG EVENT records): secondary-panel button 0x15 -> msg
0x15 CycleDisplayMode (manual p13, the "'Mech status Info center" bottom
left of the secondary screen), button 0x18 -> msg 0x14 CycleControlMode
(manual p6, top right), 0x10/0x11 -> ZoomIn/Out.  The DOS keyboard
fallbacks (Keypress 0x13d/0x13e = extended F3/F4) are dead under the
WinTesla VK map, hence the desktop pin.

Port wiring (the M/ModeCycle pattern): key N / pad RightThumb -> action
DisplayCycle -> gBTDisplayCycle -> CycleDisplayModeNow() -- the same body
the pod console button message drives.  Both .MAP profiles + the
compiled-in default updated.

Verified live (docked gauges + BT_SHOT, BT_VIEWCYCLE_TEST): the sec
panel cycles ARMOR DAMAGE silhouette -> CRITICAL DAMAGE subsystem list
-> HEAT DAMAGE colored list, mask 0x450421 -> 0x490421 -> 0x510421; M
control-mode cycling un-regressed (BAS/MID/ADV lamp cycles, view pinned).

Diags: BT_MODE_LOG, BT_VIEWCYCLE_TEST=<frame>, BT_MODECYCLE_TEST=<frame>,
BT_CTRLMAP_LOG now dumps EVENT records.  KB: gauges-hud secondary-view
section rewritten, CLASSMAP +0x48/+0x4C slots, decomp-reference env
gates, GAUGE_COMPOSITE phase-4 entry resolved.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-19 16:28:38 -05:00
arcattackandClaude Fable 5 2ae9bd43ae Coolant Flush end-to-end (Gitea #7): InjectCoolant id-4 handler + drain + FLUSH.PFX cloud + 'H' key
The playtest report (sound plays, no gauge drop, no cloud) traced to the
Reservoir's InjectCoolant chain being dead in three places:

- The handler was never REGISTERED: the binary's Reservoir handler table
  @0x50e680 has one entry {4, "InjectCoolant", @4aee70}; added
  Reservoir::GetMessageHandlers + the press/release handler (press starts
  the flush gated on coolantLevel@0x12C > 0 -- the old body misread +0x12C
  as currentTemperature; release stops it; novice lockout via FUN_004ac9c8).

- Reservoir::InjectCoolant (@4aefa4, 1019 bytes) was an empty stub -- the
  drain the coolant gauge reads.  Reconstructed in full: work list =
  condenser/weapon/heatable chains (+0x7cc/+0x7bc/+0x7ac, roster-walk
  emulation with the binary's duplicate-visit weighting; HeatSink-filtered
  [T2 guarded]) + the linked master sink; per sink with flowScale != 0 move
  squirtMass x flowScale x dt (clamped to the tank / sink capacity) and
  credit pendingHeat with the negative carried-heat delta capped at
  sinkMass x reservoir startingTemperature -- the set%-biased flush of the
  manual (p24), riding the existing heat model.

- Two latent ctor decode bugs surfaced and fixed: the master gate @4af408
  (and @4aeb40 HeatWatcher, swept) reads the OWNER MECH's simulationFlags
  (*(param_2+0x28)), not the resource's subsystemFlags (the misread left
  the CoolantSimulation Performance unregistered); and the capacity scale
  FILDs the bank's INTEGER HeatSinkCount ((float10)*(int*)(link+0x1d0)) --
  the float reinterpret gave ~1e-44 -> a permanently empty tank.
  Capacity = 0.05 x heatSinkCount x streamed CoolantCapacity (BLH: 6.0).

Visual: the binary's mode-1 coolant-effect renderable (FUN_00456a68, built
for classID 0xBC0 on "ReservoirState", part_014.c:5439; tick @part_007.c:
8780) starts psfx 19 = FLUSH.PFX ("Coolant flush", BTDPL.INI) when the
state changes to 1 -- BTSpawnFlushCloud (mech4.cpp) spawns it on the same
alarm edge as an attached emitter at torso height.

Input: new CONTROLS.MAP action "Flush" on 'H' (HELD; press+release both
dispatch, the held-button payload).  Diags: BT_FLUSH_LOG, BT_FLUSH_TEST.

Verified live (FOGDAY): [flush] Reservoir level 6 -> 0.13 -> 0 over ~0.6 s
held (= the manual's 3-4 punches to empty), the coolant vertBar source
Reservoir/CoolantMass drains, and the bluish condensation cloud rises from
the mech (scratchpad/flush_cloud.png vs flush_before.png).

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-19 15:15:44 -05:00
CydandClaude Fable 5 122fb7bccb Fix the backtick crash (a /FORCE-hidden linkage bug) + backtick = view toggle
The crash (any typed key in a glass session; found via the backtick report):
the merge-reconciliation stand-down declared extern BTRIODevicePresent at
BLOCK scope inside the extern-C BTInputSuppressKey -- the declaration
inherited C linkage, _BTRIODevicePresent went UNRESOLVED, and /FORCE bound
the call to garbage (cdb: wild call into Sensor::DefaultData from
LBE4ControlsManager::Execute's suppression check).  The tolerated-LNK2019
batch hid the new unresolved external -- the exact CLAUDE.md /FORCE trap.
Fix: the extern moved to file scope (C++ linkage); link verified clean of
_BTRIODevicePresent.

Backtick feature (per Cyd: backtick = 1st/3rd person): PadRIO edge-detects
VK_OEM_3 in its poll (focus-guarded, message-path-free) and the mech4 view
block consumes it beside the V action (which stands down with the binding
engine in glass mode).  Verified live: two real presses -> [view] COCKPIT
eyepoint -> [view] external chase, game alive.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-18 19:52:36 -05:00
CydandClaude Fable 5 f889e24ce0 Merge origin/master: the D1 relay/operator line + input remap meet the glass layer
33 master commits in (relay TCP/UDP + PySide6 operator console, CONTROLS.MAP
+XInput binding engine, camera seats, torso pitch aim, sign fixes, the 1995
manual, version stamping, 18-mech certification).  Conflicts: .gitignore +
CLAUDE.md router rows (combined).

SEMANTIC RECONCILIATION (the one real overlap): masters btinput binding
engine (ungated, CONTROLS.MAP) and the glass PadRIO (gated, bindings.txt)
would both read the keyboard/pad in a glass+PAD session.  btinput now joins
the stand-down convention: BTInputPoll yields (and BTInputSuppressKey claims
NOTHING, so authentic hotkeys flow) when an operational cockpit device owns
the input path -- BTRIODevicePresent, BT_KEY_BRIDGE force-override honored,
forced harness exempt.  One input system per mode: btinput on pod/dev
desktops, PadRIO on glass.  The mechmppr/mech4 bridge merges composed clean
(masters negate-once sign fix inside our device-gated bridge).  The D1 relay
keeps its own raw sockets by design (an alternative LAN wire; Steam and
relay are separate modes).

Verified post-merge: all 3 configs build; glass boots with [input] binding
engine standing down + PadRIO owning input (30 ticks); pod forced-walk
speedDemand=61.501 with btinput ACTIVE; 2-node loopback MP full 31/31
mission, 76/76 ticks.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-18 17:46:41 -05:00
arcattackandClaude Fable 5 1271d3bc76 Torso elevation (pitch aim) wired: the pod stick's Y axis lives
The mechs could always tilt their aim up/down -- Torso models the full
vertical axis (currentElevation, rate, VerticalLimitTop/Bottom,
recenter) and EVERY 1995 control mode routes stickPosition.y into
Torso::SetAnalogElevationAxis -- but the desktop bridge hard-zeroed
stick Y, so the axis was dead on a keyboard rig.  The one pod control
the remap left unwired.

- btinput: JoystickY axis -> elevTarget/elevActive/elevAbsolute
- mech4 shim: sElev integrator (same walk/spring model as the twist;
  X recenters pitch too via gBTElevRecenter)
- mechmppr bridge: feeds stickPosition.y every bridged frame (the old
  unconditional zero removed); both mode branches covered
- CONTROLS.MAP (+ numpad profile + compiled default): R/F = aim
  up/down, pad LeftStickY = elevation (was unused)
- torso.hpp: CurrentElevation()/ElevationVelocity() accessors (diag)
- [mppr] trace gains stickY (note: the trace reads AFTER the next
  frame's device push re-zeroes the stick -- input flows regardless)

Verified live: R held -> torso elevation climbs at the authored rate
and clamps at 0.349066 rad = exactly 20.0 deg (the Blackhawk's
VerticalLimitTop); release holds the aim.  The eyepoint correctly
stays level -- pitch aims the GUNS and reads on the HUD's vertical
elevation tape, as in the pod.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-18 16:44:22 -05:00
arcattackandClaude Fable 5 980c9cd7e5 Input remap: CONTROLS.MAP binding engine + XInput gamepad support
The pod's controls reach the game through the RIO serial board; on a
desktop that hardware is a keyboard shim of hardcoded GetAsyncKeyState
reads.  New binding engine (game/reconstructed/btinput.cpp) maps PC keys
and an XInput pad onto the authentic channels through a user-editable
file (content/CONTROLS.MAP, community-suggested grammar, corrected):

  key/pad -> button <addr>   real buttonGroup emissions, mirroring the
                             RIO convention exactly (press a+1 w/ mode
                             mask saved, release -a-1 w/ saved mask;
                             L4CTRL.cpp:2470-2520) -- aux/preset banks,
                             hotbox, panic, reverse thrust all reachable
  key/pad -> axis            Throttle rate (lever), pedals/JoystickX
                             deflect (turn/twist) into the existing
                             virtual-controls integrators (feel, gait
                             detent, spring-centering all unchanged)
  keypad pilot|external <n>  keyboardGroup key values ('0'-'F')
  pckey <char>               any authentic 1995 typed hotkey
  action <name>              port dev controls (view, all-stop, ...)

Keys claimed by a binding are SUPPRESSED from the legacy WM_CHAR/KEYUP
feed -- ends the historic double-dispatch ('w' drove AND selected pilot
0; F5's key-up value 0x74 aliased to the 't' hotkey; letter key-ups fed
the developer fake-event dispatcher).  Unbound keys keep their authentic
meaning.  The dual-use 'V' is split: V = view toggle, B = look behind.

Default profile = WASD classic (compiled-in twin; delete the file to
restore).  CONTROLS_NUMPAD.MAP ships the corrected community layout
(keypads are NOT buttons 0x50-0x6F -- that space doesn't exist; no
clickable cockpit exists so everything needs a binding; keyboard fire
buttons added; 0x36/0x37 are hotbox not 'config'; missiles moved off
Ctrl).  XInput loads dynamically (1_4 -> 9_1_0), disconnected-pad
probing rate-limited; pad sticks write the axes as absolute positions
(the spring is physical), triggers/buttons per the file.

Verified live: bindings load (43), W and NumPad8 drive (speedDemand 0 ->
61.5), X all-stop (spd -> 0), aux-bank emission (D1 -> [input] 0x2f
PRESS/release under the numpad profile), suppression both directions
(posted 'r' reaches [keych], posted 'w' swallowed), full-keyspace
WM_CHAR+WM_KEYUP fuzz x3 survived with sim advancing, XInput graceful
with no pad, 2-node relay session un-regressed (full ladder + UDP).
Pad-in-hand testing still needs a physical controller.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-18 13:09:36 -05:00