Files
TeslaRel410/restoration/source410/BT/MECHWEAP.HPP
T
CydandClaude Fable 5 896bbbed4d BT410 Phase 5.3.8: weapon fire path -- authentic attribute table + fire state machine
The energy weapons now run a live fire cycle, and the REAL trigger wiring is in
place: the 1995 MechWeapon attribute table (binary @0x511890) is published with
PINNED IDs, so the streamed per-mech fire-button mappings bind TriggerState
(0x13) -> fireImpulse and the controls push writes the trigger into the weapon.

- MECHWEAP: attribute enum + table (PercentDone 0x12, TriggerState 0x13,
  DistanceToTarget 0x14, TargetWithinRange 0x15, WeaponRange 0x16,
  EstimatedReadyTime 0x1A, RearFiring 0x1B, WeaponState 0x1C). Pads bridge the
  chain gap 2..0x11 -- LOAD-BEARING: AttributeIndexSet::Build leaves uncovered
  gap slots as uninitialized garbage, so every ID up to the max must be covered
  (they shrink to the authentic 0x0F..0x11 when the parent attribute waves land;
  SENSOR.HPP pins PoweredSubsystem::NextAttributeID at 0x0F).
- MECHWEAP: fire-machine members (fireImpulse/previousFireImpulse,
  rechargeLevel, rangeToTarget, effectiveRange, estimatedReadyTime, recoil,
  weaponAlarm 0/2/3/4); CheckFireEdge (@004b9608, BIT-PATTERN int compare --
  TriggerState carries raw ControlsButton ints whose release value is a float
  NaN; IEEE compare would latch the detector shut); ComputeOutputVoltage
  (@004b9c9c recharge dial).
- EMITTER: EmitterSimulation (PARTIAL @004baa88) -- Firing/Loaded/Loading FSM
  on the weapon alarm, viewFireEnable gate at Loaded->Firing, recoil-decay
  recharge over the authored RechargeRate seconds; FireWeapon (PARTIAL
  @004bace8) discharge bookkeeping; ChargeLevel re-pinned to the authentic
  0x1D; index re-chained to MechWeapon's. Deferred: electrical charge model
  (TrackSeekVoltage), heat dump, HasActiveTarget gate, beam/damage submission.
- BT_FORCE_FIRE dev hook: trigger pulse whenever Loaded (auto-fire cadence).

VERIFIED headlessly: forward view -- PPC_1/2 + ERMLaser_1 cycle FIRED->LOADED
at the authored 0.6s/1s cadence, rear lasers silent; BT_FORCE_LOOK=3 -- ONLY
the rear lasers (ERMLaser_2/3) fire. The view-fire x fire-FSM interlock holds
both directions. Zero Fail. (SRM6 ballistic FSM = a later increment.)

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-21 23:01:57 -05:00

214 lines
6.9 KiB
C++

//===========================================================================//
// File: mechweap.hpp //
// Project: BattleTech //
// Contents: Implementation details for mech weapons //
//---------------------------------------------------------------------------//
// Date Who Modification //
// -------- --- ---------------------------------------------------------- //
// //
//---------------------------------------------------------------------------//
// Copyright (C) 1995, Virtual World Entertainment, Inc. //
// All Rights reserved worldwide //
// This unpublished sourcecode is PROPRIETARY and CONFIDENTIAL //
//===========================================================================//
#if !defined(MECHWEAP_HPP)
# define MECHWEAP_HPP
# if !defined(POWERSUB_HPP)
# include <powersub.hpp>
# endif
# if !defined(DAMAGE_HPP)
# include <damage.hpp>
# endif
# if !defined(ALARM_HPP)
# include <alarm.hpp>
# endif
//##################### Forward Class Declarations #######################
class Mech;
//###########################################################################
//###################### MechWeapon Model Resource ######################
//###########################################################################
struct MechWeapon__SubsystemResource:
public PoweredSubsystem::SubsystemResource
{
Scalar rechargeRate;
Scalar weaponRange;
ResourceDescription::ResourceID
explosionModelFile;
Scalar damageAmount;
int damageType;
Scalar heatCostToFire;
Scalar pipPositionX;
Scalar pipPositionY;
int rearFiring;
};
//###########################################################################
//############################ MechWeapon ###############################
//###########################################################################
class MechWeapon:
public PoweredSubsystem
{
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Shared Data Support
//
public:
static Derivation ClassDerivations;
static SharedData DefaultData;
static MessageHandlerSet MessageHandlers;
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Attribute Support. The real IDs are PINNED to the 1995 binary numbering
// (table @0x511890, ids 0x12..0x1C): the streamed per-mech control mappings
// reference them by NUMBER -- TriggerState (0x13) is the fire-button binding.
// Our parent chain publishes nothing past Subsystem::NextAttributeID (2)
// yet, so pads bridge the gap 2..0x11 (they shrink to the authentic
// 0x0F..0x11 once the mechsub/heat/powersub attribute waves publish --
// SENSOR.HPP pins PoweredSubsystem::NextAttributeID at 0x0F). The pads are
// LOAD-BEARING: AttributeIndexSet::Build leaves unlisted gap slots as
// uninitialized garbage, so every ID up to the max must be covered.
//
public:
enum {
MechWeaponPadFirstAttributeID = Subsystem::NextAttributeID, // 2
PercentDoneAttributeID = 0x12,
TriggerStateAttributeID, // 0x13 -- the streamed fire-button binding
DistanceToTargetAttributeID, // 0x14
TargetWithinRangeAttributeID, // 0x15
WeaponRangeAttributeID, // 0x16
PipPositionAttributeID, // 0x17
PipColorAttributeID, // 0x18
PipExtendedRangeAttributeID, // 0x19
EstimatedReadyTimeAttributeID, // 0x1A
RearFiringAttributeID, // 0x1B
WeaponStateAttributeID, // 0x1C (binary table end)
NextAttributeID // 0x1D (the Emitter family starts here)
};
static const IndexEntry AttributePointers[];
static AttributeIndexSet AttributeIndex;
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Test Class Support
//
public:
static Logical
TestClass(Mech &);
Logical
TestInstance() const;
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Construction and Destruction
//
public:
typedef MechWeapon__SubsystemResource SubsystemResource;
MechWeapon(
Mech *owner,
int subsystem_ID,
SubsystemResource *subsystem_resource,
SharedData &shared_data = DefaultData
);
~MechWeapon();
static int
CreateStreamedSubsystem(
ResourceFile *resource_file,
NotationFile *model_file,
const char *model_name,
const char *subsystem_name,
SubsystemResource *subsystem_resource,
NotationFile *subsystem_file,
const ResourceDirectories *directories,
int passes = 1
);
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Weapon interface
//
public:
virtual void
FireWeapon();
void
SendDamage(
Entity *target,
Damage &damage
);
//
// View-fire gating (the look-state commit re-arms these): a weapon
// mounted on a back gun port (rearFiring) fires only into the LOOK-BACK
// view; the rest fire only in the forward view.
//
Logical
IsRearFiring() const { Check(this); return rearFiring; }
Logical
GetViewFireEnable() const { Check(this); return viewFireEnable; }
void
SetViewFireEnable(Logical enable){ Check(this); viewFireEnable = enable; }
//
// Fire state machine. The weapon state is carried in the weapon alarm
// level: 0 = Firing, 2 = Loaded (ready), 3 = Loading, 4 = the
// trigger-during-load blip. CheckFireEdge is the rising-edge detector
// on fireImpulse (binary @004b9608): TriggerState carries the raw
// ControlsButton INT bit-copied by the streamed direct mapping, so the
// compare works on the BIT PATTERNS as signed ints (sign-correct for
// the button ints AND genuine floats), reproducing the binary's x87
// semantics. ComputeOutputVoltage (@004b9c9c) is the recharge-dial
// writer.
//
enum {
FiringState = 0,
LoadedState = 2,
LoadingState = 3,
TriggerDuringLoadState = 4,
WeaponStateCount = 5
};
unsigned
GetWeaponState() { Check(this); return weaponAlarm.GetLevel(); }
Logical
CheckFireEdge();
void
ComputeOutputVoltage();
//~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~~
// Local Data
//
protected:
Scalar rechargeRate;
Scalar weaponRange;
Scalar damageAmount;
int damageType;
Scalar heatCostToFire;
int targetWithinRange;
Damage damageData;
Logical rearFiring;
Logical viewFireEnable;
//
// Fire-machine state (binary @0x31C/0x320/0x324/0x328/0x330/0x350/
// 0x3A4/0x3E8): the trigger sample pair, the recharge dial, targeting
// ranges, and the weapon-state alarm.
//
Scalar fireImpulse;
Scalar previousFireImpulse;
Scalar rechargeLevel;
Scalar rangeToTarget;
Scalar effectiveRange;
int estimatedReadyTime;
Scalar recoil;
AlarmIndicator weaponAlarm;
};
#endif