]> de.git.xonotic.org Git - xonotic/darkplaces.git/blobdiff - model_brush.c
q3bsp loader no longer generates a fake lightgrid when one is missing, this saves...
[xonotic/darkplaces.git] / model_brush.c
index 443bb23c03ece6f70569194b408daf953826a052..795742544cc4da77c4e10c6480767d8830505045 100644 (file)
@@ -773,7 +773,7 @@ void Collision_ClipTrace_Box(trace_t *trace, const vec3_t cmins, const vec3_t cm
 #endif
 }
 
-static int Mod_Q1BSP_LightPoint_RecursiveBSPNode(vec3_t ambientcolor, vec3_t diffusecolor, vec3_t diffusenormal, const mnode_t *node, float x, float y, float startz, float endz)
+static int Mod_Q1BSP_LightPoint_RecursiveBSPNode(model_t *model, vec3_t ambientcolor, vec3_t diffusecolor, vec3_t diffusenormal, const mnode_t *node, float x, float y, float startz, float endz)
 {
        int side, distz = endz - startz;
        float front, back;
@@ -817,7 +817,7 @@ loc0:
        }
 
        // go down front side
-       if (node->children[side]->plane && Mod_Q1BSP_LightPoint_RecursiveBSPNode(ambientcolor, diffusecolor, diffusenormal, node->children[side], x, y, startz, mid))
+       if (node->children[side]->plane && Mod_Q1BSP_LightPoint_RecursiveBSPNode(model, ambientcolor, diffusecolor, diffusenormal, node->children[side], x, y, startz, mid))
                return true;    // hit something
        else
        {
@@ -827,7 +827,7 @@ loc0:
                        int i, ds, dt;
                        msurface_t *surface;
 
-                       surface = r_refdef.worldmodel->data_surfaces + node->firstsurface;
+                       surface = model->data_surfaces + node->firstsurface;
                        for (i = 0;i < node->numsurfaces;i++, surface++)
                        {
                                if (!(surface->texture->basematerialflags & MATERIALFLAG_WALL) || !surface->lightmapinfo->samples)
@@ -908,7 +908,7 @@ middle sample (the one which was requested)
 
 void Mod_Q1BSP_LightPoint(model_t *model, const vec3_t p, vec3_t ambientcolor, vec3_t diffusecolor, vec3_t diffusenormal)
 {
-       Mod_Q1BSP_LightPoint_RecursiveBSPNode(ambientcolor, diffusecolor, diffusenormal, model->brush.data_nodes + model->brushq1.hulls[0].firstclipnode, p[0], p[1], p[2], p[2] - 65536);
+       Mod_Q1BSP_LightPoint_RecursiveBSPNode(model, ambientcolor, diffusecolor, diffusenormal, model->brush.data_nodes + model->brushq1.hulls[0].firstclipnode, p[0], p[1], p[2], p[2] - 65536);
 }
 
 static void Mod_Q1BSP_DecompressVis(const qbyte *in, const qbyte *inend, qbyte *out, qbyte *outend)
@@ -1337,7 +1337,7 @@ static void Mod_Q1BSP_LoadLighting(lump_t *l)
                data = (qbyte*) FS_LoadFile(litfilename, tempmempool, false);
                if (data)
                {
-                       if (fs_filesize == 8 + l->filelen * 3 && data[0] == 'Q' && data[1] == 'L' && data[2] == 'I' && data[3] == 'T')
+                       if (fs_filesize == (fs_offset_t)(8 + l->filelen * 3) && data[0] == 'Q' && data[1] == 'L' && data[2] == 'I' && data[3] == 'T')
                        {
                                i = LittleLong(((int *)data)[1]);
                                if (i == 1)
@@ -1895,7 +1895,7 @@ static void Mod_Q1BSP_LoadFaces(lump_t *l)
                }
 
                // compile additional data about the surface geometry
-               Mod_BuildTextureVectorsAndNormals(surface->num_firstvertex, surface->num_vertices, surface->num_triangles, surface->groupmesh->data_vertex3f, surface->groupmesh->data_texcoordtexture2f, (surface->groupmesh->data_element3i + 3 * surface->num_firsttriangle), surface->groupmesh->data_svector3f, surface->groupmesh->data_tvector3f, surface->groupmesh->data_normal3f);
+               Mod_BuildTextureVectorsAndNormals(surface->num_firstvertex, surface->num_vertices, surface->num_triangles, surface->groupmesh->data_vertex3f, surface->groupmesh->data_texcoordtexture2f, (surface->groupmesh->data_element3i + 3 * surface->num_firsttriangle), surface->groupmesh->data_svector3f, surface->groupmesh->data_tvector3f, surface->groupmesh->data_normal3f, true);
                BoxFromPoints(surface->mins, surface->maxs, surface->num_vertices, (surface->groupmesh->data_vertex3f + 3 * surface->num_firstvertex));
 
                // generate surface extents information
@@ -3158,7 +3158,7 @@ void Mod_Q1BSP_Load(model_t *mod, void *buffer)
        //Mod_Q1BSP_ProcessLightList();
 
        if (developer.integer)
-               Con_Printf("Some stats for q1bsp model \"%s\": %i faces, %i nodes, %i leafs, %i visleafs, %i visleafportals\n", loadmodel->name, loadmodel->num_surfaces, loadmodel->brush.num_nodes, loadmodel->brush.num_leafs, mod->brushq1.submodels[i].visleafs, loadmodel->brush.num_portals);
+               Con_Printf("Some stats for q1bsp model \"%s\": %i faces, %i nodes, %i leafs, %i visleafs, %i visleafportals\n", loadmodel->name, loadmodel->num_surfaces, loadmodel->brush.num_nodes, loadmodel->brush.num_leafs, mod->brush.num_pvsclusters, loadmodel->brush.num_portals);
 }
 
 static void Mod_Q2BSP_LoadEntities(lump_t *l)
@@ -3861,7 +3861,12 @@ static void Mod_Q3BSP_LoadTextures(lump_t *l)
                                                                        out->basematerialflags |= MATERIALFLAG_WATER | MATERIALFLAG_WATERALPHA;
                                                                else
                                                                        out->basematerialflags |= MATERIALFLAG_WALL;
-                                                               if (out->surfaceparms & Q3SURFACEPARM_TRANS)
+                                                               if (out->textureflags & Q3TEXTUREFLAG_ALPHATEST)
+                                                               {
+                                                                       // FIXME: support alpha test?
+                                                                       out->basematerialflags |= MATERIALFLAG_ALPHA | MATERIALFLAG_TRANSPARENT;
+                                                               }
+                                                               else if (out->surfaceparms & Q3SURFACEPARM_TRANS)
                                                                {
                                                                        if (out->textureflags & Q3TEXTUREFLAG_ADDITIVE)
                                                                                out->basematerialflags |= MATERIALFLAG_ADD | MATERIALFLAG_TRANSPARENT;
@@ -3940,10 +3945,10 @@ static void Mod_Q3BSP_LoadPlanes(lump_t *l)
 
        for (i = 0;i < count;i++, in++, out++)
        {
-               out->normal[0] = LittleLong(in->normal[0]);
-               out->normal[1] = LittleLong(in->normal[1]);
-               out->normal[2] = LittleLong(in->normal[2]);
-               out->dist = LittleLong(in->dist);
+               out->normal[0] = LittleFloat(in->normal[0]);
+               out->normal[1] = LittleFloat(in->normal[1]);
+               out->normal[2] = LittleFloat(in->normal[2]);
+               out->dist = LittleFloat(in->dist);
                PlaneClassify(out);
        }
 }
@@ -4422,7 +4427,7 @@ static void Mod_Q3BSP_LoadFaces(lump_t *l)
                                Con_Print("\n");
                        }
                        // for per pixel lighting
-                       Mod_BuildTextureVectorsAndNormals(out->num_firstvertex, out->num_vertices, out->num_triangles, out->groupmesh->data_vertex3f, out->groupmesh->data_texcoordtexture2f, (out->groupmesh->data_element3i + 3 * out->num_firsttriangle), out->groupmesh->data_svector3f, out->groupmesh->data_tvector3f, out->groupmesh->data_normal3f);
+                       Mod_BuildTextureVectorsAndNormals(out->num_firstvertex, out->num_vertices, out->num_triangles, out->groupmesh->data_vertex3f, out->groupmesh->data_texcoordtexture2f, (out->groupmesh->data_element3i + 3 * out->num_firsttriangle), out->groupmesh->data_svector3f, out->groupmesh->data_tvector3f, out->groupmesh->data_normal3f, true);
                        // calculate a bounding box
                        VectorClear(out->mins);
                        VectorClear(out->maxs);
@@ -4675,40 +4680,22 @@ static void Mod_Q3BSP_LoadLightGrid(lump_t *l)
        loadmodel->brushq3.num_lightgrid_isize[1] = loadmodel->brushq3.num_lightgrid_imaxs[1] - loadmodel->brushq3.num_lightgrid_imins[1] + 1;
        loadmodel->brushq3.num_lightgrid_isize[2] = loadmodel->brushq3.num_lightgrid_imaxs[2] - loadmodel->brushq3.num_lightgrid_imins[2] + 1;
        count = loadmodel->brushq3.num_lightgrid_isize[0] * loadmodel->brushq3.num_lightgrid_isize[1] * loadmodel->brushq3.num_lightgrid_isize[2];
+       Matrix4x4_CreateScale3(&loadmodel->brushq3.num_lightgrid_indexfromworld, loadmodel->brushq3.num_lightgrid_scale[0], loadmodel->brushq3.num_lightgrid_scale[1], loadmodel->brushq3.num_lightgrid_scale[2]);
+       Matrix4x4_ConcatTranslate(&loadmodel->brushq3.num_lightgrid_indexfromworld, -loadmodel->brushq3.num_lightgrid_imins[0] * loadmodel->brushq3.num_lightgrid_cellsize[0], -loadmodel->brushq3.num_lightgrid_imins[1] * loadmodel->brushq3.num_lightgrid_cellsize[1], -loadmodel->brushq3.num_lightgrid_imins[2] * loadmodel->brushq3.num_lightgrid_cellsize[2]);
+
+       // if lump is empty there is nothing to load, we can deal with that in the LightPoint code
        if (l->filelen)
        {
                if (l->filelen < count * (int)sizeof(*in))
                        Host_Error("Mod_Q3BSP_LoadLightGrid: invalid lightgrid lump size %i bytes, should be %i bytes (%ix%ix%i)\n", l->filelen, count * sizeof(*in), loadmodel->brushq3.num_lightgrid_dimensions[0], loadmodel->brushq3.num_lightgrid_dimensions[1], loadmodel->brushq3.num_lightgrid_dimensions[2]);
                if (l->filelen != count * (int)sizeof(*in))
                        Con_Printf("Mod_Q3BSP_LoadLightGrid: Warning: calculated lightgrid size %i bytes does not match lump size %i\n", count * sizeof(*in), l->filelen);
-       }
-
-       out = Mem_Alloc(loadmodel->mempool, count * sizeof(*out));
-       loadmodel->brushq3.data_lightgrid = out;
-       loadmodel->brushq3.num_lightgrid = count;
-
-       // no swapping or validation necessary
-       if (l->filelen)
+               out = Mem_Alloc(loadmodel->mempool, count * sizeof(*out));
+               loadmodel->brushq3.data_lightgrid = out;
+               loadmodel->brushq3.num_lightgrid = count;
+               // no swapping or validation necessary
                memcpy(out, in, count * (int)sizeof(*out));
-       else
-       {
-               // no data, fill with white
-               int i;
-               for (i = 0;i < count;i++)
-               {
-                       out[i].ambientrgb[0] = 128;
-                       out[i].ambientrgb[1] = 128;
-                       out[i].ambientrgb[2] = 128;
-                       out[i].diffusergb[0] = 0;
-                       out[i].diffusergb[1] = 0;
-                       out[i].diffusergb[2] = 0;
-                       out[i].diffusepitch = 0;
-                       out[i].diffuseyaw = 0;
-               }
        }
-
-       Matrix4x4_CreateScale3(&loadmodel->brushq3.num_lightgrid_indexfromworld, loadmodel->brushq3.num_lightgrid_scale[0], loadmodel->brushq3.num_lightgrid_scale[1], loadmodel->brushq3.num_lightgrid_scale[2]);
-       Matrix4x4_ConcatTranslate(&loadmodel->brushq3.num_lightgrid_indexfromworld, -loadmodel->brushq3.num_lightgrid_imins[0] * loadmodel->brushq3.num_lightgrid_cellsize[0], -loadmodel->brushq3.num_lightgrid_imins[1] * loadmodel->brushq3.num_lightgrid_cellsize[1], -loadmodel->brushq3.num_lightgrid_imins[2] * loadmodel->brushq3.num_lightgrid_cellsize[2]);
 }
 
 static void Mod_Q3BSP_LoadPVS(lump_t *l)
@@ -4754,7 +4741,6 @@ static void Mod_Q3BSP_LightPoint(model_t *model, const vec3_t p, vec3_t ambientc
        int i, j, k, index[3];
        float transformed[3], blend1, blend2, blend, yaw, pitch, sinpitch;
        q3dlightgrid_t *a, *s;
-       // FIXME: write this
        if (!model->brushq3.num_lightgrid)
        {
                ambientcolor[0] = 1;