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Implement GridMap support for navigation meshes
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@@ -35,6 +35,7 @@
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#include "io/marshalls.h"
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#include "scene/scene_string_names.h"
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#include "os/os.h"
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#include "scene/resources/mesh_library.h"
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bool GridMap::_set(const StringName& p_name, const Variant& p_value) {
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@@ -450,6 +451,7 @@ void GridMap::set_cell_item(int p_x,int p_y,int p_z, int p_item,int p_rot){
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if (theme.is_valid() && theme->has_item(p_item)) {
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ii.mesh=theme->get_item_mesh(p_item);
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ii.shape=theme->get_item_shape(p_item);
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ii.navmesh=theme->get_item_navmesh(p_item);
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}
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ii.multimesh = Ref<MultiMesh>( memnew( MultiMesh ) );
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ii.multimesh->set_mesh(ii.mesh);
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@@ -521,6 +523,52 @@ int GridMap::get_cell_item_orientation(int p_x,int p_y,int p_z) const{
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}
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void GridMap::_octant_enter_tree(const OctantKey &p_key){
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ERR_FAIL_COND(!octant_map.has(p_key));
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if(navigation){
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Octant&g = *octant_map[p_key];
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Vector3 ofs(cell_size*0.5*int(center_x),cell_size*0.5*int(center_y),cell_size*0.5*int(center_z));
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_octant_clear_navmesh(p_key);
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for(Map<int,Octant::ItemInstances>::Element *E=g.items.front();E;E=E->next()) {
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Octant::ItemInstances &ii=E->get();
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for(Set<IndexKey>::Element *F=ii.cells.front();F;F=F->next()) {
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IndexKey ik=F->get();
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Map<IndexKey,Cell>::Element *C=cell_map.find(ik);
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ERR_CONTINUE(!C);
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Vector3 cellpos = Vector3(ik.x,ik.y,ik.z );
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Transform xform;
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if (clip && ( (clip_above && cellpos[clip_axis]>clip_floor) || (!clip_above && cellpos[clip_axis]<clip_floor))) {
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xform.basis.set_zero();
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} else {
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xform.basis.set_orthogonal_index(C->get().rot);
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}
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xform.set_origin( cellpos*cell_size+ofs);
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xform.basis.scale(Vector3(cell_scale,cell_scale,cell_scale));
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// add the item's navmesh at given xform to GridMap's Navigation ancestor
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if(ii.navmesh.is_valid()){
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int nm_id = navigation->navmesh_create(ii.navmesh,xform,this);
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Octant::NavMesh nm;
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nm.id=nm_id;
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nm.xform=xform;
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g.navmesh_ids[ik]=nm;
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}
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}
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}
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}
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}
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void GridMap::_octant_enter_world(const OctantKey &p_key) {
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ERR_FAIL_COND(!octant_map.has(p_key));
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@@ -560,7 +608,6 @@ void GridMap::_octant_enter_world(const OctantKey &p_key) {
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}
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}
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}
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}
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@@ -589,9 +636,20 @@ void GridMap::_octant_transform(const OctantKey &p_key) {
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}
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void GridMap::_octant_clear_navmesh(const OctantKey &p_key){
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Octant&g = *octant_map[p_key];
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if (navigation) {
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for(Map<IndexKey,Octant::NavMesh>::Element *E=g.navmesh_ids.front();E;E=E->next()) {
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Octant::NavMesh *nvm = &E->get();
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if(nvm && nvm->id){
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navigation->navmesh_remove(E->get().id);
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}
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}
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g.navmesh_ids.clear();
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}
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}
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void GridMap::_octant_update(const OctantKey &p_key) {
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ERR_FAIL_COND(!octant_map.has(p_key));
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Octant&g = *octant_map[p_key];
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if (!g.dirty)
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@@ -599,6 +657,7 @@ void GridMap::_octant_update(const OctantKey &p_key) {
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Ref<Mesh> mesh;
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_octant_clear_navmesh(p_key);
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PhysicsServer::get_singleton()->body_clear_shapes(g.static_body);
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if (g.collision_debug.is_valid()) {
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@@ -608,11 +667,16 @@ void GridMap::_octant_update(const OctantKey &p_key) {
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DVector<Vector3> col_debug;
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/*
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* foreach item in this octant,
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* set item's multimesh's instance count to number of cells which have this item
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* and set said multimesh bounding box to one containing all cells which have this item
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*/
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for(Map<int,Octant::ItemInstances>::Element *E=g.items.front();E;E=E->next()) {
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Octant::ItemInstances &ii=E->get();
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ii.multimesh->set_instance_count(ii.cells.size());
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ii.multimesh->set_instance_count(ii.cells.size());
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AABB aabb;
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AABB mesh_aabb = ii.mesh.is_null()?AABB():ii.mesh->get_aabb();
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@@ -622,6 +686,7 @@ void GridMap::_octant_update(const OctantKey &p_key) {
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//print_line("OCTANT, CELLS: "+itos(ii.cells.size()));
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int idx=0;
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// foreach cell containing this item type
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for(Set<IndexKey>::Element *F=ii.cells.front();F;F=F->next()) {
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IndexKey ik=F->get();
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Map<IndexKey,Cell>::Element *C=cell_map.find(ik);
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@@ -658,8 +723,9 @@ void GridMap::_octant_update(const OctantKey &p_key) {
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aabb.merge_with(xform.xform(mesh_aabb));
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}
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// add the item's shape at given xform to octant's static_body
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if (ii.shape.is_valid()) {
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// add the item's shape
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PhysicsServer::get_singleton()->body_add_shape(g.static_body,ii.shape->get_rid(),xform);
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if (g.collision_debug.is_valid()) {
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ii.shape->add_vertices_to_array(col_debug,xform);
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@@ -668,6 +734,17 @@ void GridMap::_octant_update(const OctantKey &p_key) {
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// print_line("PHIS x: "+xform);
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}
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// add the item's navmesh at given xform to GridMap's Navigation ancestor
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if(navigation){
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if(ii.navmesh.is_valid()){
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int nm_id = navigation->navmesh_create(ii.navmesh,xform,this);
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Octant::NavMesh nm;
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nm.id=nm_id;
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nm.xform=xform;
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g.navmesh_ids[ik]=nm;
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}
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}
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idx++;
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}
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@@ -970,12 +1047,43 @@ void GridMap::_notification(int p_what) {
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}
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//_queue_dirty_map(MAP_DIRTY_INSTANCES|MAP_DIRTY_TRANSFORMS);
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//_update_dirty_map_callback();
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//_update_area_instances();
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} break;
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case NOTIFICATION_ENTER_TREE: {
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Spatial *c=this;
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while(c) {
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navigation=c->cast_to<Navigation>();
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if (navigation) {
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break;
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}
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c=c->get_parent()->cast_to<Spatial>();
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}
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if(navigation){
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for(Map<OctantKey,Octant*>::Element *E=octant_map.front();E;E=E->next()) {
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if (navigation) {
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_octant_enter_tree(E->key());
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}
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}
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}
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_queue_dirty_map();
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} break;
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case NOTIFICATION_EXIT_TREE: {
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for(Map<OctantKey,Octant*>::Element *E=octant_map.front();E;E=E->next()) {
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if (navigation) {
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_octant_clear_navmesh(E->key());
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}
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}
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navigation=NULL;
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} break;
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}
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}
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@@ -1734,3 +1842,4 @@ GridMap::~GridMap() {
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clear();
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}
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