gzdoom-gles/src/p_saveg.cpp

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/*
** p_saveg.cpp
** Code for serializing the world state in an archive
**
**---------------------------------------------------------------------------
** Copyright 1998-2005 Randy Heit
** All rights reserved.
**
** Redistribution and use in source and binary forms, with or without
** modification, are permitted provided that the following conditions
** are met:
**
** 1. Redistributions of source code must retain the above copyright
** notice, this list of conditions and the following disclaimer.
** 2. Redistributions in binary form must reproduce the above copyright
** notice, this list of conditions and the following disclaimer in the
** documentation and/or other materials provided with the distribution.
** 3. The name of the author may not be used to endorse or promote products
** derived from this software without specific prior written permission.
**
** THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
** IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
** OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
** IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
** INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
** NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
** DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
** THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
** (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
** THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
**---------------------------------------------------------------------------
**
*/
#include "i_system.h"
#include "p_local.h"
// State.
#include "dobject.h"
#include "doomstat.h"
#include "r_state.h"
#include "m_random.h"
#include "p_saveg.h"
#include "p_acs.h"
#include "s_sndseq.h"
#include "v_palette.h"
#include "a_sharedglobal.h"
//
// P_ArchivePlayers
//
void P_SerializePlayers (FArchive &arc)
{
int i;
for (i = 0; i < MAXPLAYERS; i++)
{
arc << playeringame[i];
if (playeringame[i])
{
players[i].Serialize (arc);
}
}
}
//
// P_ArchiveWorld
//
void P_SerializeWorld (FArchive &arc)
{
int i, j;
sector_t *sec;
line_t *li;
zone_t *zn;
// do sectors
for (i = 0, sec = sectors; i < numsectors; i++, sec++)
{
arc << sec->floorplane
<< sec->ceilingplane
<< sec->floortexz
<< sec->ceilingtexz;
if (arc.IsStoring ())
{
TexMan.WriteTexture (arc, sec->floorpic);
TexMan.WriteTexture (arc, sec->ceilingpic);
}
else
{
sec->floorpic = TexMan.ReadTexture (arc);
sec->ceilingpic = TexMan.ReadTexture (arc);
}
arc << sec->lightlevel
<< sec->special
<< sec->tag
<< sec->soundtraversed
<< sec->seqType
<< sec->friction
<< sec->movefactor
<< sec->floordata
<< sec->ceilingdata
<< sec->lightingdata
<< sec->stairlock
<< sec->prevsec
<< sec->nextsec
<< sec->floor_xoffs << sec->floor_yoffs
<< sec->ceiling_xoffs << sec->ceiling_yoffs
<< sec->floor_xscale << sec->floor_yscale
<< sec->ceiling_xscale << sec->ceiling_yscale
<< sec->floor_angle << sec->ceiling_angle
<< sec->base_ceiling_angle << sec->base_ceiling_yoffs
<< sec->base_floor_angle << sec->base_floor_yoffs
<< sec->heightsec
<< sec->bottommap << sec->midmap << sec->topmap
<< sec->gravity
<< sec->damage
<< sec->mod
<< sec->SoundTarget
<< sec->SecActTarget
<< sec->FloorLight
<< sec->CeilingLight
<< sec->FloorFlags
<< sec->CeilingFlags
<< sec->sky
<< sec->MoreFlags
<< sec->FloorSkyBox << sec->CeilingSkyBox
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<< sec->ZoneNumber
<< sec->oldspecial;
if (arc.IsStoring ())
{
arc << sec->ColorMap->Color
<< sec->ColorMap->Fade;
BYTE sat = sec->ColorMap->Desaturate;
arc << sat;
}
else
{
PalEntry color, fade;
BYTE desaturate;
arc << color << fade
<< desaturate;
sec->ColorMap = GetSpecialLights (color, fade, desaturate);
}
}
// do lines
for (i = 0, li = lines; i < numlines; i++, li++)
{
arc << li->flags
<< li->special
<< li->alpha
<< li->id
<< li->args[0] << li->args[1] << li->args[2] << li->args[3] << li->args[4];
for (j = 0; j < 2; j++)
{
if (li->sidenum[j] == NO_SIDE)
continue;
side_t *si = &sides[li->sidenum[j]];
arc << si->textureoffset
<< si->rowoffset;
if (arc.IsStoring ())
{
TexMan.WriteTexture (arc, si->toptexture);
TexMan.WriteTexture (arc, si->bottomtexture);
TexMan.WriteTexture (arc, si->midtexture);
}
else
{
si->toptexture = TexMan.ReadTexture (arc);
si->bottomtexture = TexMan.ReadTexture (arc);
si->midtexture = TexMan.ReadTexture (arc);
}
arc << si->Light
<< si->Flags
<< si->LeftSide
<< si->RightSide;
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DBaseDecal::SerializeChain (arc, &si->AttachedDecals);
}
}
// do zones
arc << numzones;
if (arc.IsLoading())
{
if (zones != NULL)
{
delete[] zones;
}
zones = new zone_t[numzones];
}
for (i = 0, zn = zones; i < numzones; ++i, ++zn)
{
arc << zn->Environment;
}
}
//
// Thinkers
//
//
// P_ArchiveThinkers
//
void P_SerializeThinkers (FArchive &arc, bool hubLoad)
{
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DImpactDecal::SerializeTime (arc);
DThinker::SerializeAll (arc, hubLoad);
}
//==========================================================================
//
// ArchiveSounds
//
//==========================================================================
void P_SerializeSounds (FArchive &arc)
{
DSeqNode::SerializeSequences (arc);
char *name = NULL;
BYTE order;
if (arc.IsStoring ())
{
order = S_GetMusic (&name);
}
arc << name << order;
if (arc.IsLoading ())
{
if (!S_ChangeMusic (name, order))
if (level.cdtrack == 0 || !S_ChangeCDMusic (level.cdtrack, level.cdid))
S_ChangeMusic (level.music, level.musicorder);
}
delete[] name;
}
//==========================================================================
//
// ArchivePolyobjs
//
//==========================================================================
#define ASEG_POLYOBJS 104
void P_SerializePolyobjs (FArchive &arc)
{
int i;
polyobj_t *po;
if (arc.IsStoring ())
{
int seg = ASEG_POLYOBJS;
arc << seg << po_NumPolyobjs;
for(i = 0, po = polyobjs; i < po_NumPolyobjs; i++, po++)
{
arc << po->tag << po->angle << po->startSpot[0] <<
po->startSpot[1] << po->startSpot[2];
}
}
else
{
int data;
angle_t angle;
fixed_t deltaX, deltaY, deltaZ;
arc << data;
if (data != ASEG_POLYOBJS)
I_Error ("Polyobject marker missing");
arc << data;
if (data != po_NumPolyobjs)
{
I_Error ("UnarchivePolyobjs: Bad polyobj count");
}
for (i = 0, po = polyobjs; i < po_NumPolyobjs; i++, po++)
{
arc << data;
if (data != po->tag)
{
I_Error ("UnarchivePolyobjs: Invalid polyobj tag");
}
arc << angle;
PO_RotatePolyobj (po->tag, angle);
arc << deltaX << deltaY << deltaZ;
deltaX -= po->startSpot[0];
deltaY -= po->startSpot[1];
deltaZ -= po->startSpot[2];
PO_MovePolyobj (po->tag, deltaX, deltaY);
}
}
}