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https://github.com/ioquake/jedi-academy.git
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428 lines
12 KiB
C++
428 lines
12 KiB
C++
// leave this as first line for PCH reasons...
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//
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#include "../server/exe_headers.h"
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#ifndef __Q_SHARED_H
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#include "../game/q_shared.h"
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#endif
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#if !defined(TR_LOCAL_H)
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#include "../renderer/tr_local.h"
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#endif
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#if !defined(G2_H_INC)
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#include "G2.h"
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#endif
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#define G2_MODEL_OK(g) ((g)&&(g)->mValid&&(g)->aHeader&&(g)->currentModel&&(g)->animModel)
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#pragma warning(disable : 4512) //assignment op could not be genereated
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class CQuickOverride
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{
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int mOverride[512];
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int mAt[512];
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int mCurrentTouch;
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public:
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CQuickOverride()
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{
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mCurrentTouch=1;
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int i;
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for (i=0;i<512;i++)
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{
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mOverride[i]=0;
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}
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}
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void Invalidate()
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{
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mCurrentTouch++;
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}
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void Set(int index,int pos)
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{
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if (index==10000)
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{
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return;
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}
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assert(index>=0&&index<512);
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mOverride[index]=mCurrentTouch;
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mAt[index]=pos;
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}
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int Test(int index)
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{
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assert(index>=0&&index<512);
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if (mOverride[index]!=mCurrentTouch)
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{
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return -1;
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}
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else
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{
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return mAt[index];
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}
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}
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};
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static CQuickOverride QuickOverride;
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// find a particular surface in the surface override list
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const surfaceInfo_t *G2_FindOverrideSurface(int surfaceNum,const surfaceInfo_v &surfaceList)
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{
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if (surfaceNum<0)
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{
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// starting a new lookup
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QuickOverride.Invalidate();
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int i;
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for(i=0; i<surfaceList.size(); i++)
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{
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if (surfaceList[i].surface>=0)
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{
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QuickOverride.Set(surfaceList[i].surface,i);
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}
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}
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return NULL;
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}
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int idx=QuickOverride.Test(surfaceNum);
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if (idx<0)
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{
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unsigned int i;
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if (surfaceNum==10000)
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{
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for(i=0; i<surfaceList.size(); i++)
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{
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if (surfaceList[i].surface == surfaceNum)
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{
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return &surfaceList[i];
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}
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}
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}
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#if _DEBUG
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// look through entire list
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for(i=0; i<surfaceList.size(); i++)
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{
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if (surfaceList[i].surface == surfaceNum)
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{
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break;
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}
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}
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// didn't find it.
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assert(i==surfaceList.size()); // our quickoverride is not working right
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#endif
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return NULL;
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}
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assert(idx>=0&&idx<surfaceList.size());
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assert(surfaceList[idx].surface == surfaceNum);
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return &surfaceList[idx];
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}
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// given a surface name, lets see if it's legal in the model
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int G2_IsSurfaceLegal(const model_s *mod_m, const char *surfaceName, int *flags)
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{
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assert(mod_m);
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assert(mod_m->mdxm);
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// damn include file dependancies
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mdxmSurfHierarchy_t *surf;
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surf = (mdxmSurfHierarchy_t *) ( (byte *)mod_m->mdxm + mod_m->mdxm->ofsSurfHierarchy );
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for ( int i = 0 ; i < mod_m->mdxm->numSurfaces ; i++)
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{
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if (!Q_stricmp(surfaceName, surf->name))
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{
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*flags = surf->flags;
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return i;
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}
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// find the next surface
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surf = (mdxmSurfHierarchy_t *)( (byte *)surf + (int)( &((mdxmSurfHierarchy_t *)0)->childIndexes[ surf->numChildren ] ));
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}
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return -1;
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}
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/************************************************************************************************
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* G2_FindSurface
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* find a surface in a ghoul2 surface override list based on it's name
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*
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* Input
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* filename of model, surface list of model instance, name of surface, int to be filled in
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* with the index of this surface (defaults to NULL)
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*
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* Output
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* pointer to surface if successful, false otherwise
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*
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************************************************************************************************/
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const mdxmSurface_t *G2_FindSurface(CGhoul2Info *ghlInfo, surfaceInfo_v &slist, const char *surfaceName,
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int *surfIndex/*NULL*/)
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{
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int i = 0;
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// find the model we want
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assert(G2_MODEL_OK(ghlInfo));
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const mdxmHierarchyOffsets_t *surfIndexes = (mdxmHierarchyOffsets_t *)((byte *)ghlInfo->currentModel->mdxm + sizeof(mdxmHeader_t));
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// first find if we already have this surface in the list
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for (i = slist.size() - 1; i >= 0; i--)
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{
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if ((slist[i].surface != 10000) && (slist[i].surface != -1))
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{
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const mdxmSurface_t *surf = (mdxmSurface_t *)G2_FindSurface(ghlInfo->currentModel, slist[i].surface, 0);
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// back track and get the surfinfo struct for this surface
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const mdxmSurfHierarchy_t *surfInfo = (mdxmSurfHierarchy_t *)((byte *)surfIndexes + surfIndexes->offsets[surf->thisSurfaceIndex]);
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// are these the droids we're looking for?
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if (!Q_stricmp (surfInfo->name, surfaceName))
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{
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// yup
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if (surfIndex)
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{
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*surfIndex = i;
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}
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return surf;
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}
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}
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}
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// didn't find it
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if (surfIndex)
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{
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*surfIndex = -1;
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}
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return 0;
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}
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// set a named surface offFlags - if it doesn't find a surface with this name in the list then it will add one.
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qboolean G2_SetSurfaceOnOff (CGhoul2Info *ghlInfo, const char *surfaceName, const int offFlags)
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{
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int surfIndex = -1;
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surfaceInfo_t temp_slist_entry;
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// find the model we want
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// first find if we already have this surface in the list
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const mdxmSurface_t *surf = G2_FindSurface(ghlInfo, ghlInfo->mSlist, surfaceName, &surfIndex);
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if (surf)
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{
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// set descendants value
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// slist[surfIndex].offFlags = offFlags;
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// seems to me that we shouldn't overwrite the other flags.
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// the only bit we really care about in the incoming flags is the off bit
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ghlInfo->mSlist[surfIndex].offFlags &= ~(G2SURFACEFLAG_OFF | G2SURFACEFLAG_NODESCENDANTS);
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ghlInfo->mSlist[surfIndex].offFlags |= offFlags & (G2SURFACEFLAG_OFF | G2SURFACEFLAG_NODESCENDANTS);
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return qtrue;
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}
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else
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{
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// ok, not in the list already - in that case, lets verify this surface exists in the model mesh
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int flags;
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int surfaceNum = G2_IsSurfaceLegal(ghlInfo->currentModel, surfaceName, &flags);
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if (surfaceNum != -1)
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{
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int newflags = flags;
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// the only bit we really care about in the incoming flags is the off bit
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newflags &= ~(G2SURFACEFLAG_OFF | G2SURFACEFLAG_NODESCENDANTS);
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newflags |= offFlags & (G2SURFACEFLAG_OFF | G2SURFACEFLAG_NODESCENDANTS);
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if (newflags != flags)
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{ // insert here then because it changed, no need to add an override otherwise
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temp_slist_entry.offFlags = newflags;
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temp_slist_entry.surface = surfaceNum;
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ghlInfo->mSlist.push_back(temp_slist_entry);
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}
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return qtrue;
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}
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}
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return qfalse;
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}
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void G2_FindRecursiveSurface(const model_t *currentModel, int surfaceNum, surfaceInfo_v &rootList, int *activeSurfaces)
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{
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assert(currentModel);
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assert(currentModel->mdxm);
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int i;
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const mdxmSurface_t *surface = (mdxmSurface_t *)G2_FindSurface(currentModel, surfaceNum, 0);
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const mdxmHierarchyOffsets_t *surfIndexes = (mdxmHierarchyOffsets_t *)((byte *)currentModel->mdxm + sizeof(mdxmHeader_t));
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const mdxmSurfHierarchy_t *surfInfo = (mdxmSurfHierarchy_t *)((byte *)surfIndexes + surfIndexes->offsets[surface->thisSurfaceIndex]);
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// see if we have an override surface in the surface list
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const surfaceInfo_t *surfOverride = G2_FindOverrideSurface(surfaceNum, rootList);
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// really, we should use the default flags for this surface unless it's been overriden
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int offFlags = surfInfo->flags;
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// set the off flags if we have some
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if (surfOverride)
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{
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offFlags = surfOverride->offFlags;
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}
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// if this surface is not off, indicate as such in the active surface list
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if (!(offFlags & G2SURFACEFLAG_OFF))
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{
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activeSurfaces[surfaceNum] = 1;
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}
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else
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// if we are turning off all descendants, then stop this recursion now
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if (offFlags & G2SURFACEFLAG_NODESCENDANTS)
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{
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return;
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}
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// now recursively call for the children
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for (i=0; i< surfInfo->numChildren; i++)
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{
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surfaceNum = surfInfo->childIndexes[i];
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G2_FindRecursiveSurface(currentModel, surfaceNum, rootList, activeSurfaces);
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}
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}
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qboolean G2_SetRootSurface( CGhoul2Info_v &ghoul2, const int modelIndex, const char *surfaceName)
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{
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int surf;
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int flags;
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assert(modelIndex>=0&&modelIndex<ghoul2.size());
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assert(ghoul2[modelIndex].currentModel);
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assert(ghoul2[modelIndex].currentModel->mdxm);
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// first find if we already have this surface in the list
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surf = G2_IsSurfaceLegal(ghoul2[modelIndex].currentModel, surfaceName, &flags);
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if (surf != -1)
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{
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ghoul2[modelIndex].mSurfaceRoot = surf;
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return qtrue;
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}
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assert(0);
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return qfalse;
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}
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extern int G2_DecideTraceLod(CGhoul2Info &ghoul2, int useLod);
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int G2_AddSurface(CGhoul2Info *ghoul2, int surfaceNumber, int polyNumber, float BarycentricI, float BarycentricJ, int lod )
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{
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lod = G2_DecideTraceLod(*ghoul2, lod);
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// first up, see if we have a free one already set up - look only from the end of the constant surfaces onwards
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unsigned int i;
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for (i=0; i<ghoul2->mSlist.size(); i++)
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{
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// is the surface count -1? That would indicate it's free
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if (ghoul2->mSlist[i].surface == -1)
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{
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break;
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}
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}
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if (i==ghoul2->mSlist.size())
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{
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ghoul2->mSlist.push_back(surfaceInfo_t());
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}
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ghoul2->mSlist[i].offFlags = G2SURFACEFLAG_GENERATED;
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ghoul2->mSlist[i].surface = 10000; // no model will ever have 10000 surfaces
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ghoul2->mSlist[i].genBarycentricI = BarycentricI;
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ghoul2->mSlist[i].genBarycentricJ = BarycentricJ;
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ghoul2->mSlist[i].genPolySurfaceIndex = ((polyNumber & 0xffff) << 16) | (surfaceNumber & 0xffff);
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ghoul2->mSlist[i].genLod = lod;
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return i;
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}
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qboolean G2_RemoveSurface(surfaceInfo_v &slist, const int index)
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{
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if (index != -1)
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{
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slist[index].surface = -1;
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return qtrue;
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}
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assert(0);
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return qfalse;
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}
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int G2_GetParentSurface(CGhoul2Info *ghlInfo, const int index)
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{
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assert(ghlInfo->currentModel);
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assert(ghlInfo->currentModel->mdxm);
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const mdxmHierarchyOffsets_t *surfIndexes = (mdxmHierarchyOffsets_t *)((byte *)ghlInfo->currentModel->mdxm + sizeof(mdxmHeader_t));
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// walk each surface and see if this index is listed in it's children
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const mdxmSurface_t *surf = (mdxmSurface_t *)G2_FindSurface(ghlInfo->currentModel, index, 0);
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const mdxmSurfHierarchy_t *surfInfo = (mdxmSurfHierarchy_t *)((byte *)surfIndexes + surfIndexes->offsets[surf->thisSurfaceIndex]);
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return surfInfo->parentIndex;
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}
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int G2_GetSurfaceIndex(CGhoul2Info *ghlInfo, const char *surfaceName)
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{
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int flags;
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assert(ghlInfo->currentModel);
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return G2_IsSurfaceLegal(ghlInfo->currentModel, surfaceName, &flags);
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}
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int G2_IsSurfaceRendered(CGhoul2Info *ghlInfo, const char *surfaceName, surfaceInfo_v &slist)
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{
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int flags = 0;//, surfFlags = 0;
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int surfIndex = 0;
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assert(ghlInfo->currentModel);
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assert(ghlInfo->currentModel->mdxm);
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if (!ghlInfo->currentModel->mdxm)
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{
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return -1;
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}
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// now travel up the skeleton to see if any of it's ancestors have a 'no descendants' turned on
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// find the original surface in the surface list
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int surfNum = G2_IsSurfaceLegal(ghlInfo->currentModel, surfaceName, &flags);
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if ( surfNum != -1 )
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{//must be legal
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const mdxmHierarchyOffsets_t *surfIndexes = (mdxmHierarchyOffsets_t *)((byte *)ghlInfo->currentModel->mdxm + sizeof(mdxmHeader_t));
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const mdxmSurfHierarchy_t *surfInfo = (mdxmSurfHierarchy_t *)((byte *)surfIndexes + surfIndexes->offsets[surfNum]);
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surfNum = surfInfo->parentIndex;
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// walk the surface hierarchy up until we hit the root
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while (surfNum != -1)
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{
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const mdxmSurface_t *parentSurf;
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int parentFlags;
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const mdxmSurfHierarchy_t *parentSurfInfo;
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parentSurfInfo = (mdxmSurfHierarchy_t *)((byte *)surfIndexes + surfIndexes->offsets[surfNum]);
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// find the original surface in the surface list
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//G2 was bug, above comment was accurate, but we don't want the original flags, we want the parent flags
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G2_IsSurfaceLegal(ghlInfo->currentModel, parentSurfInfo->name, &parentFlags);
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// now see if we already have overriden this surface in the slist
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parentSurf = G2_FindSurface(ghlInfo, slist, parentSurfInfo->name, &surfIndex);
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if (parentSurf)
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{
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// set descendants value
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parentFlags = slist[surfIndex].offFlags;
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}
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// now we have the parent flags, lets see if any have the 'no descendants' flag set
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if (parentFlags & G2SURFACEFLAG_NODESCENDANTS)
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{
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flags |= G2SURFACEFLAG_OFF;
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break;
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}
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// set up scan of next parent
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surfNum = parentSurfInfo->parentIndex;
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}
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}
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else
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{
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return -1;
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}
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if ( flags == 0 )
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{//it's not being overridden by a parent
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// now see if we already have overriden this surface in the slist
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const mdxmSurface_t *surf = G2_FindSurface(ghlInfo, slist, surfaceName, &surfIndex);
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if (surf)
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{
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// set descendants value
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flags = slist[surfIndex].offFlags;
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}
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// ok, at this point in flags we have what this surface is set to, and the index of the surface itself
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}
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return flags;
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}
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