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1 /*
2 Minetest
3 Copyright (C) 2010-2014 celeron55, Perttu Ahola <celeron55@gmail.com>
4
5 This program is free software; you can redistribute it and/or modify
6 it under the terms of the GNU Lesser General Public License as published by
7 the Free Software Foundation; either version 2.1 of the License, or
8 (at your option) any later version.
9
10 This program is distributed in the hope that it will be useful,
11 but WITHOUT ANY WARRANTY; without even the implied warranty of
12 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
13 GNU Lesser General Public License for more details.
14
15 You should have received a copy of the GNU Lesser General Public License along
16 with this program; if not, write to the Free Software Foundation, Inc.,
17 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
18 */
19
20 #include "main.h"
21 #include "settings.h"
22 #include "wieldmesh.h"
23 #include "inventory.h"
24 #include "gamedef.h"
25 #include "itemdef.h"
26 #include "nodedef.h"
27 #include "mesh.h"
28 #include "mapblock_mesh.h"
29 #include "tile.h"
30 #include "log.h"
31 #include "util/numeric.h"
32 #include <map>
33 #include <IMeshManipulator.h>
34
35 #define WIELD_SCALE_FACTOR 30.0
36 #define WIELD_SCALE_FACTOR_EXTRUDED 40.0
37
38 #define MIN_EXTRUSION_MESH_RESOLUTION 32   // not 16: causes too many "holes"
39 #define MAX_EXTRUSION_MESH_RESOLUTION 512
40
41 static scene::IMesh* createExtrusionMesh(int resolution_x, int resolution_y)
42 {
43         const f32 r = 0.5;
44
45         scene::IMeshBuffer *buf = new scene::SMeshBuffer();
46         video::SColor c(255,255,255,255);
47         v3f scale(1.0, 1.0, 0.1);
48
49         // Front and back
50         {
51                 video::S3DVertex vertices[8] = {
52                         // z-
53                         video::S3DVertex(-r,+r,-r, 0,0,-1, c, 0,0),
54                         video::S3DVertex(+r,+r,-r, 0,0,-1, c, 1,0),
55                         video::S3DVertex(+r,-r,-r, 0,0,-1, c, 1,1),
56                         video::S3DVertex(-r,-r,-r, 0,0,-1, c, 0,1),
57                         // z+
58                         video::S3DVertex(-r,+r,+r, 0,0,+1, c, 0,0),
59                         video::S3DVertex(-r,-r,+r, 0,0,+1, c, 0,1),
60                         video::S3DVertex(+r,-r,+r, 0,0,+1, c, 1,1),
61                         video::S3DVertex(+r,+r,+r, 0,0,+1, c, 1,0),
62                 };
63                 u16 indices[12] = {0,1,2,2,3,0,4,5,6,6,7,4};
64                 buf->append(vertices, 8, indices, 12);
65         }
66
67         f32 pixelsize_x = 1 / (f32) resolution_x;
68         f32 pixelsize_y = 1 / (f32) resolution_y;
69
70         for (int i = 0; i < resolution_x; ++i) {
71                 f32 pixelpos_x = i * pixelsize_x - 0.5;
72                 f32 x0 = pixelpos_x;
73                 f32 x1 = pixelpos_x + pixelsize_x;
74                 f32 tex0 = (i + 0.1) * pixelsize_x;
75                 f32 tex1 = (i + 0.9) * pixelsize_x;
76                 video::S3DVertex vertices[8] = {
77                         // x-
78                         video::S3DVertex(x0,-r,-r, -1,0,0, c, tex0,1),
79                         video::S3DVertex(x0,-r,+r, -1,0,0, c, tex1,1),
80                         video::S3DVertex(x0,+r,+r, -1,0,0, c, tex1,0),
81                         video::S3DVertex(x0,+r,-r, -1,0,0, c, tex0,0),
82                         // x+
83                         video::S3DVertex(x1,-r,-r, +1,0,0, c, tex0,1),
84                         video::S3DVertex(x1,+r,-r, +1,0,0, c, tex0,0),
85                         video::S3DVertex(x1,+r,+r, +1,0,0, c, tex1,0),
86                         video::S3DVertex(x1,-r,+r, +1,0,0, c, tex1,1),
87                 };
88                 u16 indices[12] = {0,1,2,2,3,0,4,5,6,6,7,4};
89                 buf->append(vertices, 8, indices, 12);
90         }
91         for (int i = 0; i < resolution_y; ++i) {
92                 f32 pixelpos_y = i * pixelsize_y - 0.5;
93                 f32 y0 = -pixelpos_y - pixelsize_y;
94                 f32 y1 = -pixelpos_y;
95                 f32 tex0 = (i + 0.1) * pixelsize_y;
96                 f32 tex1 = (i + 0.9) * pixelsize_y;
97                 video::S3DVertex vertices[8] = {
98                         // y-
99                         video::S3DVertex(-r,y0,-r, 0,-1,0, c, 0,tex0),
100                         video::S3DVertex(+r,y0,-r, 0,-1,0, c, 1,tex0),
101                         video::S3DVertex(+r,y0,+r, 0,-1,0, c, 1,tex1),
102                         video::S3DVertex(-r,y0,+r, 0,-1,0, c, 0,tex1),
103                         // y+
104                         video::S3DVertex(-r,y1,-r, 0,+1,0, c, 0,tex0),
105                         video::S3DVertex(-r,y1,+r, 0,+1,0, c, 0,tex1),
106                         video::S3DVertex(+r,y1,+r, 0,+1,0, c, 1,tex1),
107                         video::S3DVertex(+r,y1,-r, 0,+1,0, c, 1,tex0),
108                 };
109                 u16 indices[12] = {0,1,2,2,3,0,4,5,6,6,7,4};
110                 buf->append(vertices, 8, indices, 12);
111         }
112
113         // Create mesh object
114         scene::SMesh *mesh = new scene::SMesh();
115         mesh->addMeshBuffer(buf);
116         buf->drop();
117         scaleMesh(mesh, scale);  // also recalculates bounding box
118         return mesh;
119 }
120
121 /*
122         Caches extrusion meshes so that only one of them per resolution
123         is needed. Also caches one cube (for convenience).
124
125         E.g. there is a single extrusion mesh that is used for all
126         16x16 px images, another for all 256x256 px images, and so on.
127
128         WARNING: Not thread safe. This should not be a problem since
129         rendering related classes (such as WieldMeshSceneNode) will be
130         used from the rendering thread only.
131 */
132 class ExtrusionMeshCache: public IReferenceCounted
133 {
134 public:
135         // Constructor
136         ExtrusionMeshCache()
137         {
138                 for (int resolution = MIN_EXTRUSION_MESH_RESOLUTION;
139                                 resolution <= MAX_EXTRUSION_MESH_RESOLUTION;
140                                 resolution *= 2) {
141                         m_extrusion_meshes[resolution] =
142                                 createExtrusionMesh(resolution, resolution);
143                 }
144                 m_cube = createCubeMesh(v3f(1.0, 1.0, 1.0));
145         }
146         // Destructor
147         virtual ~ExtrusionMeshCache()
148         {
149                 for (std::map<int, scene::IMesh*>::iterator
150                                 it = m_extrusion_meshes.begin();
151                                 it != m_extrusion_meshes.end(); ++it) {
152                         it->second->drop();
153                 }
154                 m_cube->drop();
155         }
156         // Get closest extrusion mesh for given image dimensions
157         // Caller must drop the returned pointer
158         scene::IMesh* create(core::dimension2d<u32> dim)
159         {
160                 // handle non-power of two textures inefficiently without cache
161                 if (!is_power_of_two(dim.Width) || !is_power_of_two(dim.Height)) {
162                         return createExtrusionMesh(dim.Width, dim.Height);
163                 }
164
165                 int maxdim = MYMAX(dim.Width, dim.Height);
166
167                 std::map<int, scene::IMesh*>::iterator
168                         it = m_extrusion_meshes.lower_bound(maxdim);
169
170                 if (it == m_extrusion_meshes.end()) {
171                         // no viable resolution found; use largest one
172                         it = m_extrusion_meshes.find(MAX_EXTRUSION_MESH_RESOLUTION);
173                         assert(it != m_extrusion_meshes.end());
174                 }
175
176                 scene::IMesh *mesh = it->second;
177                 mesh->grab();
178                 return mesh;
179         }
180         // Returns a 1x1x1 cube mesh with one meshbuffer (material) per face
181         // Caller must drop the returned pointer
182         scene::IMesh* createCube()
183         {
184                 m_cube->grab();
185                 return m_cube;
186         }
187
188 private:
189         std::map<int, scene::IMesh*> m_extrusion_meshes;
190         scene::IMesh *m_cube;
191 };
192
193 ExtrusionMeshCache *g_extrusion_mesh_cache = NULL;
194
195
196 WieldMeshSceneNode::WieldMeshSceneNode(
197                 scene::ISceneNode *parent,
198                 scene::ISceneManager *mgr,
199                 s32 id,
200                 bool lighting
201 ):
202         scene::ISceneNode(parent, mgr, id),
203         m_meshnode(NULL),
204         m_material_type(video::EMT_TRANSPARENT_ALPHA_CHANNEL_REF),
205         m_lighting(lighting),
206         m_bounding_box(0.0, 0.0, 0.0, 0.0, 0.0, 0.0)
207 {
208         m_enable_shaders = g_settings->getBool("enable_shaders");
209         m_anisotropic_filter = g_settings->getBool("anisotropic_filter");
210         m_bilinear_filter = g_settings->getBool("bilinear_filter");
211         m_trilinear_filter = g_settings->getBool("trilinear_filter");
212
213         // If this is the first wield mesh scene node, create a cache
214         // for extrusion meshes (and a cube mesh), otherwise reuse it
215         if (g_extrusion_mesh_cache == NULL)
216                 g_extrusion_mesh_cache = new ExtrusionMeshCache();
217         else
218                 g_extrusion_mesh_cache->grab();
219
220         // Disable bounding box culling for this scene node
221         // since we won't calculate the bounding box.
222         setAutomaticCulling(scene::EAC_OFF);
223
224         // Create the child scene node
225         scene::IMesh *dummymesh = g_extrusion_mesh_cache->createCube();
226         m_meshnode = SceneManager->addMeshSceneNode(dummymesh, this, -1);
227         m_meshnode->setReadOnlyMaterials(false);
228         m_meshnode->setVisible(false);
229         dummymesh->drop(); // m_meshnode grabbed it
230 }
231
232 WieldMeshSceneNode::~WieldMeshSceneNode()
233 {
234         assert(g_extrusion_mesh_cache);
235         if (g_extrusion_mesh_cache->drop())
236                 g_extrusion_mesh_cache = NULL;
237 }
238
239 void WieldMeshSceneNode::setCube(const TileSpec tiles[6],
240                         v3f wield_scale, ITextureSource *tsrc)
241 {
242         scene::IMesh *cubemesh = g_extrusion_mesh_cache->createCube();
243         changeToMesh(cubemesh);
244         cubemesh->drop();
245
246         m_meshnode->setScale(wield_scale * WIELD_SCALE_FACTOR);
247
248         // Customize materials
249         for (u32 i = 0; i < m_meshnode->getMaterialCount(); ++i) {
250                 assert(i < 6);
251                 video::SMaterial &material = m_meshnode->getMaterial(i);
252                 if (tiles[i].animation_frame_count == 1) {
253                         material.setTexture(0, tiles[i].texture);
254                 } else {
255                         FrameSpec animation_frame = tiles[i].frames.find(0)->second;
256                         material.setTexture(0, animation_frame.texture);
257                 }
258                 tiles[i].applyMaterialOptions(material);
259         }
260 }
261
262 void WieldMeshSceneNode::setExtruded(const std::string &imagename,
263                 v3f wield_scale, ITextureSource *tsrc)
264 {
265         video::ITexture *texture = tsrc->getTexture(imagename);
266         if (!texture) {
267                 changeToMesh(NULL);
268                 return;
269         }
270         core::dimension2d<u32> dim = texture->getSize();
271         scene::IMesh *mesh = g_extrusion_mesh_cache->create(dim);
272         changeToMesh(mesh);
273         mesh->drop();
274
275         m_meshnode->setScale(wield_scale * WIELD_SCALE_FACTOR_EXTRUDED);
276
277         // Customize material
278         video::SMaterial &material = m_meshnode->getMaterial(0);
279         material.setTexture(0, texture);
280         material.MaterialType = m_material_type;
281         material.setFlag(video::EMF_BACK_FACE_CULLING, true);
282         // Enable filtering only for high resolution texures
283         if (dim.Width > 32) {
284                 material.setFlag(video::EMF_ANISOTROPIC_FILTER, m_anisotropic_filter);
285                 material.setFlag(video::EMF_BILINEAR_FILTER, m_bilinear_filter);
286                 material.setFlag(video::EMF_TRILINEAR_FILTER, m_trilinear_filter);
287         } else {
288                 material.setFlag(video::EMF_ANISOTROPIC_FILTER, false);
289                 material.setFlag(video::EMF_BILINEAR_FILTER, false);
290                 material.setFlag(video::EMF_TRILINEAR_FILTER, false);
291         }
292         // mipmaps cause "thin black line" artifacts
293 #if (IRRLICHT_VERSION_MAJOR >= 1 && IRRLICHT_VERSION_MINOR >= 8) || IRRLICHT_VERSION_MAJOR >= 2
294         material.setFlag(video::EMF_USE_MIP_MAPS, false);
295 #endif
296         if (m_enable_shaders) 
297                 material.setTexture(2, tsrc->getTexture("disable_img.png"));
298 }
299
300 void WieldMeshSceneNode::setItem(const ItemStack &item, IGameDef *gamedef)
301 {
302         ITextureSource *tsrc = gamedef->getTextureSource();
303         IItemDefManager *idef = gamedef->getItemDefManager();
304         IShaderSource *shdrsrc = gamedef->getShaderSource();
305         INodeDefManager *ndef = gamedef->getNodeDefManager();
306         const ItemDefinition &def = item.getDefinition(idef);
307         const ContentFeatures &f = ndef->get(def.name);
308         content_t id = ndef->getId(def.name);
309
310         if (m_enable_shaders) {
311                 u32 shader_id = shdrsrc->getShader("nodes_shader", TILE_MATERIAL_BASIC, NDT_NORMAL);
312                 m_material_type = shdrsrc->getShaderInfo(shader_id).material;
313         }
314
315         // If wield_image is defined, it overrides everything else
316         if (def.wield_image != "") {
317                 setExtruded(def.wield_image, def.wield_scale, tsrc);
318                 return;
319         }
320         // Handle nodes
321         // See also CItemDefManager::createClientCached()
322         else if (def.type == ITEM_NODE) {
323                 if (f.mesh_ptr[0]) {
324                         // e.g. mesh nodes and nodeboxes
325                         changeToMesh(f.mesh_ptr[0]);
326                         // mesh_ptr[0] is pre-scaled by BS * f->visual_scale
327                         m_meshnode->setScale(
328                                         def.wield_scale * WIELD_SCALE_FACTOR
329                                         / (BS * f.visual_scale));
330                 } else if (f.drawtype == NDT_AIRLIKE) {
331                         changeToMesh(NULL);
332                 } else if (f.drawtype == NDT_PLANTLIKE) {
333                         setExtruded(tsrc->getTextureName(f.tiles[0].texture_id), def.wield_scale, tsrc);
334                 } else if (f.drawtype == NDT_NORMAL || f.drawtype == NDT_ALLFACES) {
335                         setCube(f.tiles, def.wield_scale, tsrc);
336                 } else {
337                         MeshMakeData mesh_make_data(gamedef);
338                         MapNode mesh_make_node(id, 255, 0);
339                         mesh_make_data.fillSingleNode(&mesh_make_node);
340                         MapBlockMesh mapblock_mesh(&mesh_make_data, v3s16(0, 0, 0));
341                         changeToMesh(mapblock_mesh.getMesh());
342                         translateMesh(m_meshnode->getMesh(), v3f(-BS, -BS, -BS));
343                         m_meshnode->setScale(
344                                         def.wield_scale * WIELD_SCALE_FACTOR
345                                         / (BS * f.visual_scale));       
346                 }
347                 for (u32 i = 0; i < m_meshnode->getMaterialCount(); ++i) {
348                         assert(i < 6);
349                         video::SMaterial &material = m_meshnode->getMaterial(i);
350                         material.setFlag(video::EMF_BACK_FACE_CULLING, true);
351                         material.setFlag(video::EMF_BILINEAR_FILTER, m_bilinear_filter);
352                         material.setFlag(video::EMF_TRILINEAR_FILTER, m_trilinear_filter);
353                         bool animated = (f.tiles[i].animation_frame_count > 1);
354                         if (animated) {
355                                 FrameSpec animation_frame = f.tiles[i].frames.find(0)->second;
356                                 material.setTexture(0, animation_frame.texture);
357                         } else {
358                                 material.setTexture(0, f.tiles[i].texture);
359                         }
360                         material.MaterialType = m_material_type;
361                         if (m_enable_shaders) {
362                                 if (f.tiles[i].normal_texture) {
363                                         if (animated) {
364                                                 FrameSpec animation_frame = f.tiles[i].frames.find(0)->second;
365                                                 material.setTexture(1, animation_frame.normal_texture);
366                                         } else {
367                                                 material.setTexture(1, f.tiles[i].normal_texture);
368                                         }
369                                         material.setTexture(2, tsrc->getTexture("enable_img.png"));
370                                 } else {
371                                         material.setTexture(2, tsrc->getTexture("disable_img.png"));
372                                 }
373                         }
374                 }
375                 return;
376         }
377         else if (def.inventory_image != "") {
378                 setExtruded(def.inventory_image, def.wield_scale, tsrc);
379                 return;
380         }
381
382         // no wield mesh found
383         changeToMesh(NULL);
384 }
385
386 void WieldMeshSceneNode::setColor(video::SColor color)
387 {
388         assert(!m_lighting);
389         setMeshColor(m_meshnode->getMesh(), color);
390 }
391
392 void WieldMeshSceneNode::render()
393 {
394         // note: if this method is changed to actually do something,
395         // you probably should implement OnRegisterSceneNode as well
396 }
397
398 void WieldMeshSceneNode::changeToMesh(scene::IMesh *mesh)
399 {
400         if (mesh == NULL) {
401                 scene::IMesh *dummymesh = g_extrusion_mesh_cache->createCube();
402                 m_meshnode->setVisible(false);
403                 m_meshnode->setMesh(dummymesh);
404                 dummymesh->drop();  // m_meshnode grabbed it
405         }
406
407         if (m_lighting) {
408                 m_meshnode->setMesh(mesh);
409         } else {
410                 /*
411                         Lighting is disabled, this means the caller can (and probably will)
412                         call setColor later. We therefore need to clone the mesh so that
413                         setColor will only modify this scene node's mesh, not others'.
414                 */
415                 scene::IMeshManipulator *meshmanip = SceneManager->getMeshManipulator();
416                 scene::IMesh *new_mesh = meshmanip->createMeshCopy(mesh);
417                 m_meshnode->setMesh(new_mesh);
418                 new_mesh->drop();  // m_meshnode grabbed it
419         }
420
421         m_meshnode->setMaterialFlag(video::EMF_LIGHTING, m_lighting);
422         // need to normalize normals when lighting is enabled (because of setScale())
423         m_meshnode->setMaterialFlag(video::EMF_NORMALIZE_NORMALS, m_lighting);
424         m_meshnode->setVisible(true);
425 }