*/}}

la_tns_mesh.c 30 KB

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  1. #include "la_5.h"
  2. #include <math.h>
  3. extern tnsMain *T;
  4. tnsEdgeHash* tnsCreateEdgeHash(int OptionalInitialVertCount){
  5. tnsEdgeHash*eh=memAcquireSimple(sizeof(tnsEdgeHash));
  6. eh->max=OptionalInitialVertCount;
  7. if(eh->max<16) eh->max=16;
  8. arrInitLength(&eh->vl,eh->max,&eh->max, sizeof(tnsEdgeHashVert));
  9. return eh;
  10. }
  11. void tnsDestroyEdgeHash(tnsEdgeHash* eh){
  12. for(int i=0;i<eh->max;i++){
  13. tnsEdgeHashVert* ehv=&eh->vl[i];
  14. if(ehv->e) free(ehv->e);
  15. }
  16. if(eh->vl) free(eh->vl);
  17. memFree(eh);
  18. }
  19. void tnsEdgeHashAddVertPair(tnsEdgeHash* eh, int v1, int v2){
  20. if(v1==v2) return; if(v1>v2) LA_SWAP(int, v1,v2); if(v1>=eh->max) return;
  21. tnsEdgeHashVert* ehv=&eh->vl[v1];
  22. if(!ehv->e) arrInitLength(&ehv->e,1,&ehv->max, sizeof(tnsEdgeHashEdge));
  23. else arrEnsureLength(&ehv->e, ehv->next, &ehv->max, sizeof(tnsEdgeHashEdge));
  24. for(int i=0;i<ehv->next;i++){ if(ehv->e[i].tv==v2) return; }
  25. ehv->e[ehv->next].tv=v2;
  26. ehv->next++;
  27. }
  28. tnsEdgeHashEdge* tnsEdgeHashGetEdge(tnsEdgeHash* eh, int v1, int v2){
  29. if(v1==v2) return 0; if(v1>v2) LA_SWAP(int, v1,v2); if(v1>=eh->max) return 0;
  30. tnsEdgeHashVert* ehv=&eh->vl[v1];
  31. for(int i=0;i<ehv->next;i++){ if(ehv->e[i].tv==v2) return &ehv->e[i]; }
  32. return 0;
  33. }
  34. void tnsInitMesh(tnsMeshObject* mo, int Initialv, int Initiale, int Initialf){
  35. arrInitLength(&mo->v, Initialv, &mo->maxv, sizeof(tnsVert));
  36. arrInitLength(&mo->e, Initiale, &mo->maxe, sizeof(tnsEdge));
  37. arrInitLength(&mo->f, Initialf, &mo->maxf, sizeof(tnsFace));
  38. }
  39. tnsVert* tnsFillVertI(tnsMeshObject* mo, int index, real x, real y, real z){
  40. arrEnsureLength(&mo->v, index, &mo->maxv, sizeof(tnsVert));
  41. mo->v[index].p[0]=x;
  42. mo->v[index].p[1]=y;
  43. mo->v[index].p[2]=z;
  44. return &mo->v[index];
  45. }
  46. tnsVert* tnsFillVert(tnsMeshObject* mo, real x, real y, real z){
  47. int index=mo->totv; mo->totv++;
  48. return tnsFillVertI(mo, index, x,y,z);
  49. }
  50. tnsFace* tnsFillFace(tnsMeshObject* mo, int vertcount, ...){
  51. arrEnsureLength(&mo->f, mo->totf, &mo->maxf, sizeof(tnsFace));
  52. arrInitLength(&mo->f[mo->totf].loop, vertcount, &mo->f[mo->totf].looplen, sizeof(int));
  53. va_list list; va_start(list, vertcount); int id=va_arg(list, int); if(id==-1){ va_end(list); mo->totf++; return &mo->f[mo->totf-1]; }
  54. for(int i=0;i<vertcount;i++){ mo->f[mo->totf].loop[i]=id; id=va_arg(list, int); }
  55. va_end(list);
  56. mo->totf++; return &mo->f[mo->totf-1];
  57. }
  58. void tnsFillFaceLoop(tnsFace* f, int i, int v){ f->loop[i]=v; }
  59. int tnsMergeMeshObjects(tnsMeshObject* into, tnsMeshObject* mo){
  60. if(into->Base.Type!=TNS_OBJECT_MESH||mo->Base.Type!=TNS_OBJECT_MESH) return 0;
  61. if(!mo->totv){ tnsDestroyObject(mo); return 1; }
  62. tnsVector3d v,vf; tnsMatrix44d inv; tnsInverse44d(inv, into->Base.GlobalTransform);
  63. for(int i=0;i<mo->totv;i++){
  64. tnsVectorSet3v(v,mo->v[i].p); tnsApplyTransform43d(vf, mo->Base.GlobalTransform, v);
  65. tnsApplyTransform43d(v, inv, vf); tnsVectorSet3v(mo->v[i].p,v);
  66. }
  67. for(int i=0;i<mo->tote;i++){ mo->e[i].l+=into->totv; mo->e[i].r+=into->totv; }
  68. for(int i=0;i<mo->totf;i++){ for(int l=0;l<mo->f[i].looplen;l++){ mo->f[i].loop[l]+=into->totv; } }
  69. int origv=into->totv, orige=into->tote, origf=into->totf;
  70. into->totv+=mo->totv; into->tote+=mo->tote; into->totf+=mo->totf;
  71. arrEnsureLength(&into->v, into->totv, &into->maxv, sizeof(tnsVert)); if(mo->totv) memcpy(&into->v[origv],mo->v,sizeof(tnsVert)*mo->totv);
  72. arrEnsureLength(&into->e, into->tote, &into->maxe, sizeof(tnsEdge)); if(mo->tote) memcpy(&into->e[orige],mo->e,sizeof(tnsEdge)*mo->tote);
  73. arrEnsureLength(&into->f, into->totf, &into->maxf, sizeof(tnsFace)); if(mo->totf) memcpy(&into->f[origf],mo->f,sizeof(tnsFace)*mo->totf);
  74. tnsDestroyObject(mo); return 1;
  75. }
  76. tnsMeshObject* tnsDuplicateMeshObjects(tnsMeshObject* from){
  77. if(from->Base.Type!=TNS_OBJECT_MESH) return 0;
  78. tnsMeshObject* to = memAcquireHyper(sizeof(tnsMeshObject));
  79. tnsInitObjectBase(to, from->Base.ParentObject?from->Base.ParentObject:from->Base.InRoot, from->Base.Name, TNS_OBJECT_MESH,0,0,0,0,0,0,0,0,1);
  80. tnsCopyObjectTransformationsLocal(to,from);
  81. if(!from->totv){ return to; }
  82. to->totv=from->totv; to->tote=from->tote; to->totf=from->totf;
  83. arrInitLength(&to->v, to->totv, &to->maxv, sizeof(tnsVert)); if(from->totv) memcpy(to->v,from->v,sizeof(tnsVert)*from->totv);
  84. arrInitLength(&to->e, to->tote, &to->maxe, sizeof(tnsEdge)); if(from->tote) memcpy(to->e,from->e,sizeof(tnsEdge)*from->tote);
  85. arrInitLength(&to->f, to->totf, &to->maxf, sizeof(tnsFace)); if(from->totf) memcpy(to->f,from->f,sizeof(tnsFace)*from->totf);
  86. for(int i=0;i<to->totf;i++){ to->f[i].loop=0; arrInitLength(&to->f[i].loop, to->f[i].looplen, &to->f[i].looplen, sizeof(int));
  87. for(int l=0;l<to->f[i].looplen;l++){ to->f[i].loop[l]=from->f[i].loop[l]; }
  88. }
  89. return to;
  90. }
  91. void tnsInitMeshPlane(tnsMeshObject* mo, real size){
  92. tnsInitMesh(mo, 4,0,1);
  93. tnsFillVert(mo, size, size,0); tnsFillVert(mo,-size, size,0);
  94. tnsFillVert(mo,-size,-size,0); tnsFillVert(mo, size,-size,0);
  95. tnsFillFace(mo, 4, 0,1,2,3);
  96. mo->v[0].flags|=TNS_MESH_FLAG_SELECTED;
  97. mo->v[1].flags|=TNS_MESH_FLAG_SELECTED;
  98. mo->v[2].flags|=TNS_MESH_FLAG_SELECTED;
  99. mo->v[3].flags|=TNS_MESH_FLAG_SELECTED;
  100. tnsMMeshEnsureSelectionFromVerts(mo);
  101. }
  102. void tnsAddMMeshPlane(tnsMeshObject* mo, real size){
  103. tnsMVert *mv1,*mv2,*mv3,*mv4;
  104. mv1=tnsMMeshNewVert(mo); mv1->p[0]=size; mv1->p[1]=size; mv1->flags|=TNS_MESH_FLAG_SELECTED;
  105. mv2=tnsMMeshNewVert(mo); mv2->p[0]=-size; mv2->p[1]=size; mv2->flags|=TNS_MESH_FLAG_SELECTED;
  106. mv3=tnsMMeshNewVert(mo); mv3->p[0]=-size; mv3->p[1]=-size; mv3->flags|=TNS_MESH_FLAG_SELECTED;
  107. mv4=tnsMMeshNewVert(mo); mv4->p[0]=size; mv4->p[1]=-size; mv4->flags|=TNS_MESH_FLAG_SELECTED;
  108. tnsMMeshMakeFace4v(mo,mv1,mv2,mv3,mv4);
  109. }
  110. void tnsTrangulateFaceSimple(tnsMeshObject* mo, tnsFace* f, int* ebuf){
  111. for(int i=0;i<f->looplen-2;i++){
  112. ebuf[i*3]=f->loop[0];
  113. ebuf[i*3+1]=f->loop[i+1];
  114. ebuf[i*3+2]=f->loop[i+2];
  115. }
  116. }
  117. void tnsTrangulateFaceSimpleM(tnsMeshObject* mo, tnsMFace* mf, int* ebuf){
  118. tnsMVert* mv=0,*mvs; int i=0;
  119. for(laListItemPointer* lip=mf->l.pFirst;lip;lip=lip->pNext){
  120. laListItemPointer* next=lip->pNext; if(!next) next=mf->l.pFirst; tnsMEdge* me0=lip->p, *me1=next->p;
  121. if(next==mf->l.pLast){ break; }
  122. mvs=tnsMMeshEdgeStartingVert(me0,me1);
  123. if(!mv) mv=mvs;
  124. ebuf[i*3]=mv->i; tnsMVert*mm=tnsMMeshEdgeAnotherVert(me0,mvs);
  125. ebuf[i*3+1]=mm->i;
  126. ebuf[i*3+2]=tnsMMeshEdgeAnotherVert(me1,mm)->i; i++;
  127. }
  128. }
  129. int* tnsGetTriangulatedBatch(tnsMeshObject* mo, int* totelem){
  130. int tottri=0;
  131. if(mo->Mode==TNS_MESH_OBJECT_MODE){ for(int i=0;i<mo->totf;i++){ tottri+=(mo->f[i].looplen-2); } }
  132. else{ for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ tottri+=mf->looplen-2; } }
  133. if(!tottri) return 0;
  134. int* ebuf=calloc(1,sizeof(int)*tottri*3); int* pebuf=ebuf;
  135. if(mo->Mode==TNS_MESH_OBJECT_MODE){ for(int i=0;i<mo->totf;i++){ tnsTrangulateFaceSimple(mo, &mo->f[i], pebuf); pebuf+=(mo->f[i].looplen-2)*3; } }
  136. else{ for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ tnsTrangulateFaceSimpleM(mo, mf, pebuf); pebuf+=(mf->looplen-2)*3; } }
  137. *totelem = tottri;
  138. return ebuf;
  139. }
  140. float* tnsGetDrawingVertArray(tnsMeshObject* mo, int* r_totv, int DoIdColors, float** idcolors, int DoEditModeColors, float** editcolors, int** edgeelems, int* r_tote){
  141. if(!mo->totv&&!mo->totmv) return 0;
  142. int totv=mo->Mode==TNS_MESH_EDIT_MODE?mo->totmv:mo->totv;
  143. int tote=mo->Mode==TNS_MESH_EDIT_MODE?mo->totme:mo->tote; *r_tote=tote;
  144. int extraverts=DoIdColors?mo->totme*2:0;
  145. float* p=calloc(1,(totv+extraverts)*3*sizeof(float)); *r_totv=(totv+extraverts);
  146. if(DoIdColors){ (*idcolors)=calloc(1,(totv+extraverts)*3*sizeof(float)); (*edgeelems)=calloc(1,(extraverts)*2*sizeof(int));}
  147. if(DoEditModeColors){ (*editcolors)=calloc(1,totv*4*sizeof(float)*extraverts); }
  148. if(mo->Mode==TNS_MESH_OBJECT_MODE){ for(int i=0;i<totv;i++){ p[i*3]=mo->v[i].p[0]; p[i*3+1]=mo->v[i].p[1]; p[i*3+2]=mo->v[i].p[2]; } }
  149. else{ for(tnsMVert*mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ int i=mv->i;
  150. p[i*3]=mv->p[0]; p[i*3+1]=mv->p[1]; p[i*3+2]=mv->p[2];
  151. if(DoIdColors){
  152. int id=i+1; real r=(real)((id & 0x000000FF)>>0)/255.0; real g=(real)((id & 0x0000FF00)>>8)/255.0; real b=(real)((id & 0x00FF0000)>>16)/255.0;
  153. (*idcolors)[i*3]=r; (*idcolors)[i*3+1]=g; (*idcolors)[i*3+2]=b;
  154. }
  155. if(DoEditModeColors){
  156. real* c=(mv->flags&TNS_MESH_FLAG_SELECTED)?laAccentColor(LA_BT_SVERTEX):laAccentColor(LA_BT_VERTEX);
  157. (*editcolors)[i*4]=c[0]; (*editcolors)[i*4+1]=c[1]; (*editcolors)[i*4+2]=c[2]; (*editcolors)[i*4+3]=c[3];
  158. }
  159. }
  160. for(tnsMEdge*me=mo->me.pFirst;me;me=me->Item.pNext){ int ei=me->i;
  161. (*edgeelems)[ei*2]=mo->totmv+ei*2; (*edgeelems)[ei*2+1]=mo->totmv+ei*2+1;
  162. float* eidcolor1=&(*idcolors)[(*edgeelems)[ei*2]*3], *eidcolor2=&(*idcolors)[(*edgeelems)[ei*2+1]*3];
  163. int id=ei+1; real r=(real)((id & 0x000000FF)>>0)/255.0; real g=(real)((id & 0x0000FF00)>>8)/255.0; real b=(real)((id & 0x00FF0000)>>16)/255.0;
  164. eidcolor1[0]=r;eidcolor1[1]=g;eidcolor1[2]=b;
  165. eidcolor2[0]=r;eidcolor2[1]=g;eidcolor2[2]=b;
  166. int se1=(*edgeelems)[ei*2]; p[se1*3]=me->vl->p[0]; p[se1*3+1]=me->vl->p[1]; p[se1*3+2]=me->vl->p[2];
  167. int se2=(*edgeelems)[ei*2+1]; p[se2*3]=me->vr->p[0]; p[se2*3+1]=me->vr->p[1]; p[se2*3+2]=me->vr->p[2];
  168. float* eedcolor1=&(*editcolors)[(*edgeelems)[ei*2]*4], *eedcolor2=&(*editcolors)[(*edgeelems)[ei*2+1]*4];
  169. real* c=(me->flags&TNS_MESH_FLAG_SELECTED)?laAccentColor(LA_BT_SEDGE):laAccentColor(LA_BT_EDGE);
  170. eedcolor1[0]=c[0]; eedcolor1[1]=c[1]; eedcolor1[2]=c[2]; eedcolor1[3]=c[3];
  171. eedcolor2[0]=c[0]; eedcolor2[1]=c[1]; eedcolor2[2]=c[2]; eedcolor2[3]=c[3];
  172. }
  173. }
  174. return p;
  175. }
  176. int* tnsGetEdgeBatch(tnsMeshObject* mo){
  177. if(!mo->totme) return 0;
  178. int* ebuf=calloc(1,sizeof(int)*mo->totme*2); int* pebuf=ebuf; int i=0;
  179. for(tnsMEdge* me=mo->me.pFirst;me;me=me->Item.pNext){ ebuf[i*2]=me->vl->i; ebuf[i*2+1]=me->vr->i; i++; }
  180. return ebuf;
  181. }
  182. void tnsInvalidateMeshBatch(tnsMeshObject* mo){
  183. if(mo->Base.Type!=TNS_OBJECT_MESH) return;
  184. if(mo->Batch) tnsDeleteBatch(mo->Batch); mo->Batch=0;
  185. }
  186. void tnsRegenerateMeshBatch(tnsMeshObject* mo){
  187. if(!mo) return;
  188. if(mo->Batch) tnsDeleteBatch(mo->Batch); mo->Batch=0;
  189. real meshcolor[4]={0.8,0.8,0.8,0.6};
  190. int tottri; int* elem = tnsGetTriangulatedBatch(mo, &tottri);
  191. float* idcolors=0,*editcolors=0; int docolors=mo->Mode==TNS_MESH_EDIT_MODE;
  192. int totv,tote; int* eelems=0;
  193. float* v = tnsGetDrawingVertArray(mo,&totv,docolors,&idcolors,docolors,&editcolors,&eelems,&tote);
  194. if(!v){ if(elem){free(elem);} if(eelems){free(eelems);} return; }
  195. mo->Batch = tnsCreateBatch(totv, 3, v, 0, 0, 4, editcolors);
  196. tnsBatchCommand*c=tnsCreateCommand(mo->Batch, "body", tottri, 3, GL_TRIANGLES, elem, 0);
  197. tnsCommandUseUniformColor(c,meshcolor);
  198. free(elem); free(v);
  199. if(mo->Mode==TNS_MESH_EDIT_MODE){
  200. elem=tnsGetEdgeBatch(mo); if(elem) {
  201. c= tnsCreateCommand(mo->Batch, "lines", mo->totme, 2, GL_LINES, elem, 1); free(elem);
  202. //tnsCommandUseUniformColor(c, laAccentColor(LA_BT_EDGE));
  203. }
  204. c= tnsCreateCommand(mo->Batch, "verts", mo->totmv, 3, GL_POINTS, 0, 1);
  205. c= tnsCreateCommand(mo->Batch, "verts_select", mo->totmv, 3, GL_POINTS, 0, 1);
  206. tnsCommandOverrideColorArray(c, mo->Batch->NumVert, 3, idcolors);
  207. c= tnsCreateCommand(mo->Batch, "edges_select", mo->totme, 2, GL_LINES, eelems, 1);
  208. tnsCommandOverrideColorArray(c, mo->Batch->NumVert, 3, idcolors);
  209. c= tnsCreateCommand(mo->Batch, "edges", mo->totme, 2, GL_LINES, eelems, 1);
  210. tnsCommandOverrideColorArray(c, mo->Batch->NumVert, 4, editcolors);
  211. //for(int i=0;i<mo->totme*2;i++){ printf("%d ",eelems[i]); } printf("\n");
  212. }
  213. if(idcolors) free(idcolors); if(editcolors) free(editcolors); if(eelems) free(eelems);
  214. }
  215. void tnsEnsureMeshBatch(tnsMeshObject* mo){
  216. if(mo->Base.Type!=TNS_OBJECT_MESH) return;
  217. if(mo->Batch) return;
  218. tnsRegenerateMeshBatch(mo);
  219. }
  220. void tnsDrawMeshObject(tnsMeshObject* mo, int DrawAsObjectSelection, int MeshSelectionMode, tnsMeshObject* Active){
  221. tnsEnsureMeshBatch(mo);
  222. if(DrawAsObjectSelection){
  223. if(mo->Base.Flags&TNS_OBJECT_FLAGS_SELECTED && mo->Mode!=TNS_MESH_EDIT_MODE){
  224. real* color=(Active==mo)?laAccentColor(LA_BT_TEXT):laAccentColor(LA_BT_NORMAL);
  225. tnsDrawBatch(mo->Batch, "body", color, 0);
  226. }
  227. }else{
  228. if(T->BindedShader==T->SelectionShader){
  229. int i=mo->Base.SelectID; real color[4]={0,0,0,1};
  230. color[0]=(real)((i & 0x000000FF)>>0)/255.0;
  231. color[1]=(real)((i & 0x0000FF00)>>8)/255.0;
  232. color[2]=(real)((i & 0x00FF0000)>>16)/255.0;
  233. tnsDrawBatch(mo->Batch,"body",color,0);
  234. }else{
  235. tnsDrawBatch(mo->Batch,"body",0,0);
  236. if(mo->Mode==TNS_MESH_EDIT_MODE){
  237. if(MeshSelectionMode==LA_CANVAS_SELECT_MODE_VERTS){
  238. tnsDrawBatch(mo->Batch,"verts",0,0); tnsDrawBatch(mo->Batch,"lines",0,0);
  239. }else{
  240. tnsDrawBatch(mo->Batch,"edges",0,0);
  241. }
  242. }
  243. }
  244. }
  245. }
  246. tnsMFace* tnsMMeshNewFace(tnsMeshObject* mo){ tnsMFace* mf=memAcquireSimple(sizeof(tnsMFace)); mf->i=mo->totmf; mo->totmf++; lstAppendItem(&mo->mf,mf); return mf; }
  247. tnsMEdge* tnsMMeshNewEdge(tnsMeshObject* mo){ tnsMEdge* me=memAcquireSimple(sizeof(tnsMEdge)); me->i=mo->totme; mo->totme++; lstAppendItem(&mo->me,me); return me; }
  248. tnsMVert* tnsMMeshNewVert(tnsMeshObject* mo){ tnsMVert* mv=memAcquireSimple(sizeof(tnsMVert)); mv->i=mo->totmv; mo->totmv++; lstAppendItem(&mo->mv,mv); return mv; }
  249. void tnsMMeshEdgeAssignVerts(tnsMEdge* me,tnsMVert* mv1,tnsMVert* mv2){
  250. if(me->vl||me->vr){ return; } //if((me->vl==mv1&&me->vr=mv2) || (me->vl==mv2&&me->vr=mv1))
  251. me->vl=mv1; me->vr=mv2;
  252. lstAppendPointer(&me->vl->elink,me); lstAppendPointer(&me->vr->elink,me);
  253. }
  254. tnsMEdge* tnsMMeshVertShareEdge(tnsMVert* mv0, tnsMVert* mv1){
  255. for(laListItemPointer*lip=mv0->elink.pFirst;lip;lip=lip->pNext){ tnsMEdge* me=lip->p; if(tnsMMeshEdgeAnotherVert(me, mv0)==mv1) return me; } return 0;
  256. }
  257. int tnsMMeshEdgeHasVert(tnsMEdge* me, tnsMVert* mv){
  258. if(me->vl==mv || me->vr==mv) return 1; return 0;
  259. }
  260. tnsMVert* tnsMMeshEdgeShareVert(tnsMEdge* me0, tnsMEdge* me1){
  261. if(me0->vl==me1->vl || me0->vl==me1->vr) return me0->vl;
  262. if(me0->vr==me1->vl || me0->vr==me1->vr) return me0->vr;
  263. return 0;
  264. }
  265. tnsMVert* tnsMMeshEdgeAnotherVert(tnsMEdge* me, tnsVert* v){
  266. if(me->vl==v) return me->vr; if(me->vr==v) return me->vl;
  267. return 0;
  268. }
  269. tnsMVert* tnsMMeshEdgeStartingVert(tnsMEdge* me0, tnsMEdge* me1){
  270. tnsMVert* sv=tnsMMeshEdgeShareVert(me0,me1); if(!sv) return 0;
  271. return tnsMMeshEdgeAnotherVert(me0, sv);
  272. }
  273. void tnsMMeshFaceAddEdge(tnsMFace* mf, tnsMEdge* me){
  274. lstAppendPointer(&mf->l, me); mf->looplen++;
  275. if(!me->fl) me->fl=mf; elif(!me->fr) me->fr=mf;
  276. }
  277. tnsMFace* tnsMMeshFaceHasVert(tnsMFace* mf, tnsMVert* mv){
  278. if(!mf||!mv) return 0; for(laListItemPointer*lip=mf->l.pFirst;lip;lip=lip->pNext){ if(tnsMMeshEdgeAnotherVert(lip->p, mv)) return mf; }
  279. return 0;
  280. }
  281. tnsMFace* tnsMMeshVertsShareFace(tnsMVert* v1, tnsMVert* v2){
  282. tnsMFace* mf=0; for(laListItemPointer*lip=v1->elink.pFirst;lip;lip=lip->pNext){
  283. tnsMEdge* me=lip->p; if((mf=tnsMMeshFaceHasVert(me->fl, v2)) || (mf=tnsMMeshFaceHasVert(me->fr, v2))) return mf;
  284. } return 0;
  285. }
  286. int tnsMMeshSplitFace(tnsMeshObject* mo, tnsMFace* mf, tnsMEdge* me, tnsMFace** r_f1, tnsMFace** r_f2){
  287. tnsMEdge* NextE; laListItemPointer* NextLip, *StartLip=0, *EndLip=0; int guard=0;
  288. for(laListItemPointer*lip=mf->l.pFirst;lip;lip=NextLip){
  289. NextLip=lip->pNext?lip->pNext:mf->l.pFirst; NextE=NextLip->p;
  290. if(tnsMMeshEdgeHasVert(me,tnsMMeshEdgeShareVert(NextE,lip->p))){
  291. if(!StartLip) StartLip=NextLip;
  292. else{EndLip=NextLip; break;} }
  293. guard++; if(guard>mf->looplen) return 0; // me is not across mf.
  294. }
  295. tnsMFace* f1=tnsMMeshNewFace(mo);
  296. for(laListItemPointer*lip=StartLip;lip;lip=NextLip){ NextLip=lip->pNext?lip->pNext:mf->l.pFirst;
  297. if(lip==EndLip){ tnsMMeshFaceAddEdge(f1, me); break; } tnsMMeshFaceAddEdge(f1, lip->p);
  298. }
  299. tnsMFace* f2=tnsMMeshNewFace(mo);
  300. for(laListItemPointer*lip=EndLip;lip;lip=NextLip){ NextLip=lip->pNext?lip->pNext:mf->l.pFirst;
  301. if(lip==StartLip){ tnsMMeshFaceAddEdge(f2, me); break; } tnsMMeshFaceAddEdge(f2, lip->p);
  302. }
  303. tnsMMeshRemoveFaceOnly(mo, mf);
  304. if(r_f1){ *r_f1=f1; } if(r_f2){ *r_f2=f2; }
  305. return 1;
  306. }
  307. tnsMEdge* tnsMMeshMakeEdge(tnsMeshObject* mo, tnsMVert* v1, tnsMVert* v2){
  308. for(laListItemPointer*lip=v1->elink.pFirst;lip;lip=lip->pNext){ if(tnsMMeshEdgeAnotherVert(lip->p, v1)==v2) return lip->p; }
  309. // for(laListItemPointer*lip=v2->elink.pFirst;lip;lip=lip->pNext){ if(tnsMMeshEdgeAnotherVert(lip->p, v2)==v1) return lip->p; } shouldn't need.
  310. tnsMFace* mf=tnsMMeshVertsShareFace(v1,v2);
  311. tnsMEdge* me=tnsMMeshNewEdge(mo); tnsMMeshEdgeAssignVerts(me, v1, v2);
  312. if(mf){ tnsMMeshSplitFace(mo, mf, me, 0,0); }
  313. return me;
  314. }
  315. int tnsMMeshFaceMatchesN(tnsMFace* mf, int ecount, laListHandle* eip){
  316. if(!mf||mf->looplen!=ecount) return 0; laListItemPointer* lipe=eip->pFirst;
  317. for(int i=0;i<ecount;i++){
  318. tnsMEdge* me=lipe->p; int found=0; lipe=lipe->pNext;
  319. for(laListItemPointer* lip=mf->l.pFirst;lip;lip=lip->pNext){
  320. if(lip->p==me){ found=1; break; }
  321. }
  322. if(!found){ return 0; }
  323. }
  324. return 1;
  325. }
  326. int tnsMMeshFaceMatches(tnsMFace* mf, int ecount, ...){
  327. if(!mf||mf->looplen!=ecount) return 0;
  328. va_list list; va_start(list, ecount);
  329. for(int i=0;i<ecount;i++){
  330. tnsMEdge* me=va_arg(list, tnsMEdge*); int found=0;
  331. for(laListItemPointer* lip=mf->l.pFirst;lip;lip=lip->pNext){
  332. if(lip->p==me){ found=1; break; }
  333. }
  334. if(!found){ va_end(list); return 0; }
  335. }
  336. va_end(list); return 1;
  337. }
  338. tnsMFace* tnsMMeshMakeFaceN(tnsMeshObject* mo, int count, laListHandle* vip, tnsMEdge** r_fallback_me){
  339. if(count<2){ return 0; }
  340. if(count==2){ tnsMEdge* me=tnsMMeshMakeEdge(mo,((laListItemPointer*)vip->pFirst)->p,((laListItemPointer*)vip->pLast)->p); if(r_fallback_me)*r_fallback_me=me; return 0; }
  341. laListHandle el={0};
  342. for(laListItemPointer*lip=vip->pFirst;lip;lip=lip->pNext){
  343. tnsMVert* mv=lip->p; laListItemPointer*nlip=lip->pNext?((laListItemPointer*)lip->pNext):vip->pFirst; tnsMVert* nextmv=nlip->p;
  344. lstAppendPointer(&el,tnsMMeshMakeEdge(mo,mv,nextmv));
  345. }
  346. tnsMEdge* e1=((laListItemPointer*)el.pFirst)->p;
  347. if(tnsMMeshFaceMatchesN(e1->fl, count, &el))return e1->fl; if(tnsMMeshFaceMatchesN(e1->fr, count, &el))return e1->fr;
  348. for(laListItemPointer* lip=el.pFirst;lip;lip=lip->pNext){ tnsMEdge*me=lip->p; if(me->fl&&me->fr) return 0; }
  349. tnsMFace* mf=tnsMMeshNewFace(mo);
  350. for(laListItemPointer* lip=el.pFirst;lip;lip=lip->pNext){ tnsMEdge*me=lip->p; tnsMMeshFaceAddEdge(mf, me); }
  351. while(lstPopPointer(&el));
  352. return mf;
  353. }
  354. tnsMFace* tnsMMeshMakeFace4v(tnsMeshObject* mo, tnsVert* v1,tnsVert* v2,tnsVert* v3,tnsVert* v4){
  355. tnsMEdge* e1=tnsMMeshMakeEdge(mo,v1,v2); tnsMEdge* e2=tnsMMeshMakeEdge(mo,v2,v3);
  356. tnsMEdge* e3=tnsMMeshMakeEdge(mo,v3,v4); tnsMEdge* e4=tnsMMeshMakeEdge(mo,v4,v1);
  357. if(tnsMMeshFaceMatches(e1->fl,4,e1,e2,e3,e4)) return e1->fl; if(tnsMMeshFaceMatches(e1->fr,4,e1,e2,e3,e4)) return e1->fr; //should not need more
  358. if((e1->fl&&e1->fr) || (e2->fl&&e2->fr) || (e3->fl&&e3->fr) || (e4->fl&&e4->fr)) return 0;
  359. tnsMFace* mf=tnsMMeshNewFace(mo);
  360. tnsMMeshFaceAddEdge(mf,e1); tnsMMeshFaceAddEdge(mf,e2);
  361. tnsMMeshFaceAddEdge(mf,e3); tnsMMeshFaceAddEdge(mf,e4);
  362. return mf;
  363. }
  364. int tnsMMeshLoopIsInverted(laListItemPointer* l){
  365. tnsMEdge* me=l->p; if(l->pNext){ tnsMEdge*next=((laListItemPointer*)l->pNext)->p; if(me->vr==tnsMMeshEdgeShareVert(me,next))return 0; return 1; }
  366. else{ tnsMEdge*prev=((laListItemPointer*)l->pPrev)->p; if(me->vl==tnsMMeshEdgeShareVert(prev,me))return 0; return 1; }
  367. }
  368. int tnsMMeshEdgeInsertVert(tnsMeshObject* mo, tnsMEdge* me, tnsMVert* mv, tnsMVert* ref_e1v_optional, tnsMEdge** r_e1, tnsMEdge** r_e2){
  369. if(mv->elink.pFirst||mv->elink.pLast||me->vl==mv||me->vl==mv) return 0;
  370. tnsMEdge* me1=tnsMMeshNewEdge(mo),*me2=tnsMMeshNewEdge(mo);
  371. me1->fl=me2->fl=me->fl; me1->fr=me2->fr=me->fr;
  372. tnsMMeshEdgeAssignVerts(me1,me->vl,mv); tnsMMeshEdgeAssignVerts(me2,mv,me->vr);
  373. laListItemPointer* lipa1=memAcquireSimple(sizeof(laListItemPointer)),*lipa2=memAcquireSimple(sizeof(laListItemPointer)); lipa1->p=me1; lipa2->p=me2;
  374. laListItemPointer* lipb1=memAcquireSimple(sizeof(laListItemPointer)),*lipb2=memAcquireSimple(sizeof(laListItemPointer)); lipb1->p=me1; lipb2->p=me2;
  375. if(me->fl) for(laListItemPointer* lip=me->fl->l.pFirst;lip;lip=lip->pNext){
  376. tnsMEdge*ie=lip->p; if(ie!=me) continue; if(tnsMMeshLoopIsInverted(lip)){ LA_SWAP(laListItemPointer*,lipa1,lipa2); }
  377. lstInsertItemBefore(&me->fl->l,lipa1,lip); lstInsertItemBefore(&me->fl->l,lipa2,lip); lstRemoveItem(&me->fl->l, lip); memLeave(lip); me->fl->looplen++;
  378. }
  379. if(me->fr) for(laListItemPointer* lip=me->fr->l.pFirst;lip;lip=lip->pNext){
  380. tnsMEdge*ie=lip->p; if(ie!=me) continue; if(tnsMMeshLoopIsInverted(lip)){ LA_SWAP(laListItemPointer*,lipb1,lipb2); }
  381. lstInsertItemBefore(&me->fr->l,lipb1,lip); lstInsertItemBefore(&me->fr->l,lipb2,lip); lstRemoveItem(&me->fr->l, lip); memLeave(lip); me->fr->looplen++;
  382. }
  383. me->fl=me->fr=0; tnsMMeshRemoveEdgeFace(mo,me);
  384. if(ref_e1v_optional&&tnsMMeshEdgeShareVert(me1, ref_e1v_optional)){ if(r_e1)*r_e1=me1; if(r_e2)*r_e2=me2; }else{ if(r_e1)*r_e1=me2; if(r_e2)*r_e2=me1; }
  385. return 1;
  386. }
  387. tnsMVert* tnsMMeshEdgeInsertVertAt(tnsMeshObject* mo, tnsMEdge* me, real at, tnsMVert* ref_e1v_optional, tnsMEdge** r_e1, tnsMEdge** r_e2){
  388. if(!me||at<=0||at>=1) return 0; tnsMVert* mv=tnsMMeshNewVert(mo);
  389. tnsInterpolate3dv(me->vl->p, me->vr->p, at, mv->p);
  390. if(tnsMMeshEdgeInsertVert(mo,me,mv,ref_e1v_optional,r_e1,r_e2)) return mv; return 0;
  391. }
  392. void tnsMMeshRemoveFaceOnly(tnsMeshObject* mo, tnsMFace* mf){
  393. if(!mf) return; tnsMEdge* me;
  394. while(me=lstPopPointerLeave(&mf->l)){ if(me->fl==mf) me->fl=0; elif(me->fr==mf) me->fr=0; }
  395. lstRemoveItem(&mo->mf,mf); memLeave(mf); mo->totmf--;
  396. }
  397. void tnsMMeshRemoveEdgeFace(tnsMeshObject* mo, tnsMEdge* me){
  398. if(!me) return;
  399. tnsMMeshRemoveFaceOnly(mo, me->fl); tnsMMeshRemoveFaceOnly(mo, me->fr);
  400. lstRemovePointerLeave(&me->vl->elink, me); lstRemovePointerLeave(&me->vr->elink, me);
  401. lstRemoveItem(&mo->me,me); memLeave(me); mo->totme--;
  402. }
  403. void tnsMMeshRemoveVertEdgeFace(tnsMeshObject* mo, tnsMVert* mv){
  404. if(!mv) return; tnsMEdge* me;
  405. while(me=lstPopPointerLeave(&mv->elink)){ tnsMMeshRemoveEdgeFace(mo,me); }
  406. lstRemoveItem(&mo->mv,mv); memLeave(mv); mo->totmv--;
  407. }
  408. void tnsMMeshRefreshIndex(tnsMeshObject* mo){
  409. int i;
  410. i=0; for(tnsMVert* mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ mv->i=i; i++; } mo->totmv=i;
  411. i=0; for(tnsMEdge* me=mo->me.pFirst;me;me=me->Item.pNext){ me->i=i; i++; } mo->totme=i;
  412. i=0; for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ mf->i=i; i++; } mo->totmf=i;
  413. }
  414. void tnsClearMesh(tnsMeshObject* mo){
  415. arrFree(&mo->v, &mo->maxv); mo->totv=0;
  416. arrFree(&mo->e, &mo->maxe); mo->tote=0;
  417. for(int i=0;i<mo->totf;i++){ if(mo->f[i].loop) free(mo->f[i].loop); }
  418. arrFree(&mo->f, &mo->maxf); mo->totf=0;
  419. }
  420. void tnsClearMMesh(tnsMeshObject* mo){
  421. tnsMFace* mf; tnsMEdge* me; tnsMVert* mv;
  422. while(mf=lstPopItem(&mo->mf)){ while(lstPopPointerLeave(&mf->l)); memLeave(mf); }
  423. while(me=lstPopItem(&mo->me)){ memLeave(me); }
  424. while(mv=lstPopItem(&mo->mv)){ while(lstPopPointerLeave(&mv->elink)); memLeave(mv); }
  425. mo->totmv=mo->totme=mo->totmf=0;
  426. }
  427. void tnsMMeshFromMesh(tnsMeshObject* mo){
  428. tnsClearMMesh(mo);
  429. tnsEdgeHash* eh=tnsCreateEdgeHash(mo->totv); //mo->totmv=mo->totv; mo->totme=mo->tote; mo->totmf=mo->totf;
  430. for(int i=0;i<mo->totf;i++){
  431. tnsFace* f=&mo->f[i];
  432. for(int j=0;j<f->looplen-1;j++){ tnsEdgeHashAddVertPair(eh, f->loop[j], f->loop[j+1]); }
  433. tnsEdgeHashAddVertPair(eh, f->loop[f->looplen-1], f->loop[0]);
  434. }
  435. for(int i=0;i<eh->max;i++){
  436. tnsEdgeHashVert* ehv=&eh->vl[i];
  437. for(int j=0;j<ehv->next;j++){ tnsMEdge*me=tnsMMeshNewEdge(mo); ehv->e[j].me=me; }
  438. }
  439. for(int i=0;i<mo->totv;i++){ tnsVert*v=&mo->v[i]; tnsMVert*mv=tnsMMeshNewVert(mo); eh->vl[i].mv=mv;
  440. mv->p[0]=mo->v[i].p[0]; mv->p[1]=mo->v[i].p[1]; mv->p[2]=mo->v[i].p[2]; mv->flags=mo->v[i].flags; }
  441. for(int i=0;i<mo->totf;i++){
  442. tnsFace* f=&mo->f[i]; tnsMFace* mf=tnsMMeshNewFace(mo); mf->flags=f->flags;
  443. for(int j=0;j<f->looplen;j++){ int v2=j+1; if(j==f->looplen-1) v2=0;
  444. tnsEdgeHashEdge* ehe=tnsEdgeHashGetEdge(eh,f->loop[j],f->loop[v2]);
  445. tnsMEdge* me=ehe->me; tnsMMeshEdgeAssignVerts(me,eh->vl[f->loop[j]].mv,eh->vl[f->loop[v2]].mv);
  446. tnsMMeshFaceAddEdge(mf,me);
  447. }
  448. }
  449. tnsMMeshEnsureSelectionFromVerts(mo);
  450. tnsDestroyEdgeHash(eh);
  451. }
  452. void tnsMeshFromMMesh(tnsMeshObject* mo){
  453. tnsClearMesh(mo);
  454. tnsInitMesh(mo, mo->totmv, 0, mo->totmf); int i=0;
  455. /* Vertex index should already correct. */
  456. //for(tnsMVert* mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ mv->i=i; i++; }
  457. for(tnsMVert* mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ tnsVert* v=tnsFillVert(mo, mv->p[0], mv->p[1], mv->p[2]); v->flags=mv->flags; }
  458. for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ tnsFace* f=tnsFillFace(mo, mf->looplen, -1); f->flags=mf->flags;
  459. int j=0; for(laListItemPointer* lip=mf->l.pFirst;lip;lip=lip->pNext){
  460. laListItemPointer* next=lip->pNext; if(!next) next=mf->l.pFirst; tnsMEdge* me0=lip->p, *me1=next->p;
  461. tnsFillFaceLoop(f, j, tnsMMeshEdgeStartingVert(me0,me1)->i); j++;
  462. }
  463. }
  464. mo->totv=mo->totmv; mo->totf=mo->totmf;
  465. mo->maxv=mo->totv; mo->maxe=mo->tote; mo->maxf=mo->totf;
  466. if((!mo->maxv) && mo->v) arrFree(&mo->v, &mo->maxv);
  467. if((!mo->maxe) && mo->e) arrFree(&mo->e, &mo->maxe);
  468. if((!mo->maxf) && mo->f) arrFree(&mo->f, &mo->maxf);
  469. tnsClearMMesh(mo);
  470. }
  471. void tnsMeshEnterEditMode(tnsMeshObject* mo){
  472. if(mo->Mode==TNS_MESH_EDIT_MODE) return;
  473. tnsMMeshFromMesh(mo);
  474. mo->Mode = TNS_MESH_EDIT_MODE;
  475. tnsInvalidateMeshBatch(mo);
  476. }
  477. void tnsMeshLeaveEditMode(tnsMeshObject* mo){
  478. if(mo->Mode==TNS_MESH_OBJECT_MODE) return;
  479. tnsMeshFromMMesh(mo);
  480. mo->Mode = TNS_MESH_OBJECT_MODE;
  481. tnsInvalidateMeshBatch(mo);
  482. }
  483. int tnsMMeshAnySelected(tnsMeshObject* mo){
  484. for(tnsMVert* mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ if(mv->flags&TNS_MESH_FLAG_SELECTED) return 1; }
  485. for(tnsMEdge* me=mo->me.pFirst;me;me=me->Item.pNext){ if(me->flags&TNS_MESH_FLAG_SELECTED) return 1; }
  486. for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ if(mf->flags&TNS_MESH_FLAG_SELECTED) return 1; } return 0;
  487. }
  488. void tnsMMeshClearPickedFlags(tnsMeshObject* mo){
  489. for(tnsMVert* mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ mv->flags&=(~TNS_MESH_FLAG_PICKED); }
  490. for(tnsMEdge* me=mo->me.pFirst;me;me=me->Item.pNext){ me->flags&=(~TNS_MESH_FLAG_PICKED); }
  491. for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ mf->flags&=(~TNS_MESH_FLAG_PICKED); }
  492. }
  493. void tnsMMeshDeselectAll(tnsMeshObject* mo){
  494. for(tnsMVert* mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ mv->flags&=(~TNS_MESH_FLAG_SELECTED); }
  495. for(tnsMEdge* me=mo->me.pFirst;me;me=me->Item.pNext){ me->flags&=(~TNS_MESH_FLAG_SELECTED); }
  496. for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ mf->flags&=(~TNS_MESH_FLAG_SELECTED); }
  497. }
  498. void tnsMMeshSelectAll(tnsMeshObject* mo){
  499. for(tnsMVert* mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ mv->flags|=TNS_MESH_FLAG_SELECTED; }
  500. for(tnsMEdge* me=mo->me.pFirst;me;me=me->Item.pNext){ me->flags|=TNS_MESH_FLAG_SELECTED; }
  501. for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ mf->flags|=TNS_MESH_FLAG_SELECTED; }
  502. }
  503. void tnsMMeshSelectVert(tnsMeshObject* mo, tnsMVert* mv, int select, int toggle){
  504. if(!mo) return;
  505. if(toggle) tnsMMeshSelectVert(mo,mv,(mv->flags&TNS_MESH_FLAG_SELECTED?0:1),0);
  506. elif(select) mv->flags|=TNS_MESH_FLAG_SELECTED; else mv->flags&=(~TNS_MESH_FLAG_SELECTED);
  507. }
  508. void tnsMMeshSelectEdge(tnsMeshObject* mo, tnsMEdge* me, int select, int toggle){
  509. if(!mo) return;
  510. if(toggle) tnsMMeshSelectEdge(mo,me,(me->flags&TNS_MESH_FLAG_SELECTED?0:1),0);
  511. elif(select) me->flags|=TNS_MESH_FLAG_SELECTED; else me->flags&=(~TNS_MESH_FLAG_SELECTED);
  512. }
  513. void tnsMMeshEnsureSelectionFromVerts(tnsMeshObject* mo){
  514. for(tnsMEdge* me=mo->me.pFirst;me;me=me->Item.pNext){ me->flags&=(~TNS_MESH_FLAG_SELECTED);
  515. if(me->vl->flags&me->vr->flags&TNS_MESH_FLAG_SELECTED) me->flags|=TNS_MESH_FLAG_SELECTED;
  516. }
  517. for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ int sel=1; mf->flags&=(~TNS_MESH_FLAG_SELECTED);
  518. for(laListItemPointer* lip=mf->l.pFirst;lip;lip=lip->pNext){ tnsMEdge*me=lip->p; if(!(me->flags&TNS_MESH_FLAG_SELECTED)){ sel=0; break; } }
  519. if(sel){ mf->flags|=TNS_MESH_FLAG_SELECTED; }
  520. }
  521. }
  522. void tnsMMeshEnsureSelectionFromEdges(tnsMeshObject* mo){
  523. for(tnsMVert* mv=mo->mv.pFirst;mv;mv=mv->Item.pNext){ mv->flags&=(~TNS_MESH_FLAG_SELECTED);
  524. for(laListItemPointer* lip=mv->elink.pFirst;lip;lip=lip->pNext){ tnsMEdge*me=lip->p; if(me->flags&TNS_MESH_FLAG_SELECTED){ mv->flags|=TNS_MESH_FLAG_SELECTED; break; } }
  525. }
  526. for(tnsMFace* mf=mo->mf.pFirst;mf;mf=mf->Item.pNext){ int sel=1; mf->flags&=(~TNS_MESH_FLAG_SELECTED);
  527. for(laListItemPointer* lip=mf->l.pFirst;lip;lip=lip->pNext){ tnsMEdge*me=lip->p; if(!(me->flags&TNS_MESH_FLAG_SELECTED)){ sel=0; break; } }
  528. if(sel){ mf->flags|=TNS_MESH_FLAG_SELECTED; }
  529. }
  530. }
  531. void tnsMMeshEnsureSelection(tnsMeshObject* mo, int SelectMode){
  532. if(SelectMode==LA_CANVAS_SELECT_MODE_VERTS){ tnsMMeshEnsureSelectionFromVerts(mo); }
  533. elif(SelectMode==LA_CANVAS_SELECT_MODE_EDGES){ tnsMMeshEnsureSelectionFromEdges(mo); }
  534. }
  535. tnsMeshObject *tnsCreateMeshEmpty(tnsObject *under, char *Name, real AtX, real AtY, real AtZ){
  536. tnsMeshObject *mo = memAcquireHyper(sizeof(tnsMeshObject));
  537. tnsInitObjectBase(&mo->Base, under, Name, TNS_OBJECT_MESH, AtX, AtY, AtZ, 0, 0, 0, 1.0f, TNS_ROTATION_XYZ_EULER, 1.0f);
  538. return mo;
  539. }
  540. tnsMeshObject *tnsCreateMeshPlane(tnsObject *under, char *Name, real AtX, real AtY, real AtZ, real size){
  541. tnsMeshObject *mo=tnsCreateMeshEmpty(under, Name, AtX, AtY, AtZ);
  542. tnsInitMeshPlane(mo, size);
  543. tnsInvalidateMeshBatch(mo);
  544. return mo;
  545. }