Files
TeslaRel410/BORLAND/BC45/SOURCE/OWL/DECMDIFR.CPP
T
CydandClaude Fable 5 63312e07f9 source410: literal 4.10 source reconstruction + BC++ 4.52 fleet toolchain archived
- BORLAND/: Borland C++ 4.52 (chosen over 4.5 by byte-match: CODE/RP/CW32.LIB
  is identical to 4.52's install lib). BCC32/TLINK32/TLIB/MAKE run natively on
  Win11; CODE/BT/OPT.MAK is the shipped BTL4OPT.EXE's exact flag recipe
  (extender = Borland PowerPack DPMI32, not Phar Lap TNT).
- restoration/source410/: the literal 1995-form reconstruction of the missing
  BT game source (never mixed into CODE/). Round 1-3 state:
  * 6 of 10 surviving original TUs COMPILE CLEAN under the period toolchain
    (BTMSSN, BTCNSL, BTSCNRL, BTTEAM, BTL4MODE, BTL4ARND) - first builds
    since 1996.
  * BT_L4/BTL4APP.CPP pilot reconstruction: 12/12 functions, Fail() lands on
    its binary-recorded line 400 exactly.
  * BT/BTCNSL.HPP: console wire IDs recovered from the binary's ctors
    (Killed=9, Damaged=10, ScoreUpdate=13, DeathWithoutHonor=15 [T1];
    TeamScore=12 flagged [T4]).
  * MUNGA/: 8 engine-header backfills back-dated from the BT412 WinTesla tree
    (VDATA numbering decomp-verified; AUDREND's OpenAL-era virtual removed -
    the period compiler is the drift detector).
  * Tooling: backdate.py (WinTesla->1995 header transform), compile410.sh
    (per-TU verification sweep under authentic OPT.MAK flags).
  * README: corrected roadmap - MECH.HPP is the capstone grown with the mech
    TU reconstructions; BTREG.CPP green = the header-family milestone.

Co-Authored-By: Claude Fable 5 <noreply@anthropic.com>
2026-07-19 07:33:26 -05:00

68 lines
2.1 KiB
C++

//----------------------------------------------------------------------------
// ObjectWindows
// (C) Copyright 1992, 1994 by Borland International, All Rights Reserved
//
// Implementation of class TDecoratedMDIFrame
//----------------------------------------------------------------------------
#pragma hdrignore SECTION
#include <owl/owlpch.h>
#include <owl/decmdifr.h>
#if !defined(SECTION) || SECTION == 1
//
// make sure that TDecoratedFrame is first in the list so we find its
// WM_SIZE handler
//
DEFINE_RESPONSE_TABLE2(TDecoratedMDIFrame, TDecoratedFrame, TMDIFrame)
END_RESPONSE_TABLE;
TDecoratedMDIFrame::TDecoratedMDIFrame(const char far* title,
TResId menuResId,
TMDIClient& clientWnd,
bool trackMenuSelection,
TModule* module)
:
TMDIFrame(title, menuResId, clientWnd, module),
TDecoratedFrame(0, title, &clientWnd, trackMenuSelection, module),
TFrameWindow(0, title, &clientWnd, false, module),
TWindow(0, title, module)
{
}
LRESULT
TDecoratedMDIFrame::DefWindowProc(uint message, WPARAM wParam, LPARAM lParam)
{
//
// ::DefFrameProc() will response to WM_SIZE by making the MDI client the
// same size as the client rectangle; this conflicts with what TLayoutWindow
// has done
//
return message == WM_SIZE ?
0 :
TMDIFrame::DefWindowProc(message, wParam, lParam);
}
#endif
#if !defined(SECTION) || SECTION == 2
IMPLEMENT_STREAMABLE4(TDecoratedMDIFrame, TMDIFrame, TDecoratedFrame,
TFrameWindow, TWindow);
void*
TDecoratedMDIFrame::Streamer::Read(ipstream& is, uint32 /*version*/) const
{
ReadBaseObject((TMDIFrame*)GetObject(), is);
ReadBaseObject((TDecoratedFrame*)GetObject(), is);
return GetObject();
}
void
TDecoratedMDIFrame::Streamer::Write(opstream& os) const
{
WriteBaseObject((TMDIFrame*)GetObject(), os);
WriteBaseObject((TDecoratedFrame*)GetObject(), os);
}
#endif