Initial version of C lighting code
Needs *lots* of performance work
This commit is contained in:
3
chunk.py
3
chunk.py
@@ -545,6 +545,9 @@ class ChunkRenderer(object):
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if not img:
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if not img:
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img = Image.new("RGBA", (384, 1728), (38,92,255,0))
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img = Image.new("RGBA", (384, 1728), (38,92,255,0))
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if self.world.lighting:
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c_overviewer.render_loop_lighting(self, img, xoff, yoff, blockData_expanded)
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else:
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c_overviewer.render_loop(self, img, xoff, yoff, blockData_expanded)
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c_overviewer.render_loop(self, img, xoff, yoff, blockData_expanded)
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for entity in tileEntities:
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for entity in tileEntities:
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2
gmap.py
2
gmap.py
@@ -140,7 +140,7 @@ def main():
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logging.info("Notice: Not using biome data for tinting")
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logging.info("Notice: Not using biome data for tinting")
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# First do world-level preprocessing
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# First do world-level preprocessing
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w = world.World(worlddir, useBiomeData=useBiomeData)
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w = world.World(worlddir, useBiomeData=useBiomeData, lighting=options.lighting)
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w.go(options.procs)
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w.go(options.procs)
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# Now generate the tiles
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# Now generate the tiles
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BIN
src/.composite.c.swp
Normal file
BIN
src/.composite.c.swp
Normal file
Binary file not shown.
BIN
src/.iterate.c.swp
Normal file
BIN
src/.iterate.c.swp
Normal file
Binary file not shown.
@@ -58,6 +58,36 @@ imaging_python_to_c(PyObject *obj)
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return image;
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return image;
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}
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}
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/**
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* img should be an Image object, type 'L'
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* factor should be between 0 and 1, inclusive
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*/
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PyObject *brightness(PyObject *img, double factor) {
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Imaging imDest;
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imDest = imaging_python_to_c(img);
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assert(imDest);
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int x, y;
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int xsize = imDest->xsize;
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int ysize = imDest->ysize;
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for (y = 0; y < ysize; y++) {
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UINT8 *out = (UINT8 *)imDest->image[y];
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//UINT8 *outmask = (UINT8 *)imDest->image[y] + 3;
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for (x = 0; x < xsize; x++) {
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//printf("old out: %d\n", *out);
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*out *= factor;
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//printf("new out: %d\n", *out);
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out++;
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}
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}
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return NULL;
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}
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/* the alpha_over function, in a form that can be called from C */
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/* the alpha_over function, in a form that can be called from C */
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/* if xsize, ysize are negative, they are instead set to the size of the image in src */
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/* if xsize, ysize are negative, they are instead set to the size of the image in src */
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/* returns NULL on error, dest on success. You do NOT need to decref the return! */
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/* returns NULL on error, dest on success. You do NOT need to decref the return! */
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243
src/iterate.c
243
src/iterate.c
@@ -45,6 +45,249 @@ texture_alpha_over(PyObject *dest, PyObject *t, int imgx, int imgy)
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return alpha_over(dest, src, mask, imgx, imgy, 0, 0);
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return alpha_over(dest, src, mask, imgx, imgy, 0, 0);
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}
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}
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PyObject*
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chunk_render_lighting(PyObject *self, PyObject *args) {
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PyObject *chunk;
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PyObject *blockdata_expanded;
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int xoff, yoff;
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PyObject *img;
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PyObject *imgsize, *imgsize0_py, *imgsize1_py;
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int imgsize0, imgsize1;
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PyObject *blocks_py;
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PyObject *textures, *blockmap, *special_blocks, *specialblockmap, *chunk_mod, *transparent_blocks;
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int imgx, imgy;
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int x, y, z;
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if (!PyArg_ParseTuple(args, "OOiiO", &chunk, &img, &xoff, &yoff, &blockdata_expanded))
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return Py_BuildValue("i", "-1");
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/* tuple */
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imgsize = PyObject_GetAttrString(img, "size");
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imgsize0_py = PySequence_GetItem(imgsize, 0);
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imgsize1_py = PySequence_GetItem(imgsize, 1);
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Py_DECREF(imgsize);
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imgsize0 = PyInt_AsLong(imgsize0_py);
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imgsize1 = PyInt_AsLong(imgsize1_py);
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Py_DECREF(imgsize0_py);
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Py_DECREF(imgsize1_py);
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/* get the block data directly from numpy: */
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blocks_py = PyObject_GetAttrString(chunk, "blocks");
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/*
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PyObject *left_blocks = PyObject_GetAttrString(chunk, "left_blocks");
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PyObject *right_blocks = PyObject_GetAttrString(chunk, "right_blocks");
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*/
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textures = PyImport_ImportModule("textures");
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chunk_mod = PyImport_ImportModule("chunk");
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/* TODO can these be global static? these don't change during program execution */
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blockmap = PyObject_GetAttrString(textures, "blockmap");
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special_blocks = PyObject_GetAttrString(textures, "special_blocks");
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specialblockmap = PyObject_GetAttrString(textures, "specialblockmap");
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transparent_blocks = PyObject_GetAttrString(chunk_mod, "transparent_blocks");
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if (transparent_blocks == NULL) {
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PyErr_SetString(PyExc_ValueError,
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"transparent_blocks is NULL");
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return NULL;
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}
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PyObject *black_color = PyObject_GetAttrString(chunk_mod, "black_color");
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PyObject *facemasks_py = PyObject_GetAttrString(chunk_mod, "facemasks");
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PyObject *facemasks[3];
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//assert(PyTuple_Check(facemasks_py));
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facemasks[0] = PyTuple_GetItem(facemasks_py, 0);
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facemasks[1] = PyTuple_GetItem(facemasks_py, 1);
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facemasks[2] = PyTuple_GetItem(facemasks_py, 2);
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Py_DECREF(textures);
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Py_DECREF(chunk_mod);
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for (x = 15; x > -1; x--) {
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for (y = 0; y < 16; y++) {
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imgx = xoff + x*12 + y*12;
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/* 128*12 -- offset for z direction, 15*6 -- offset for x */
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imgy = yoff - x*6 + y*6 + 128*12 + 15*6;
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for (z = 0; z < 128; z++) {
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unsigned char block;
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PyObject *blockid;
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imgy -= 12;
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if ((imgx >= imgsize0 + 24) || (imgx <= -24)) {
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continue;
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}
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if ((imgy >= imgsize1 + 24) || (imgy <= -24)) {
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continue;
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}
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/* get blockid
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note the order: x, z, y */
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block = getBlock(blocks_py, x, y, z);
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if (block == 0) {
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continue;
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}
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/* TODO figure out how to DECREF this easily, instead of at
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every continue */
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blockid = PyInt_FromLong(block);
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if ( (x != 0) && (y != 15) && (z != 127) &&
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!isTransparent(transparent_blocks, getBlock(blocks_py, x-1, y, z)) &&
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!isTransparent(transparent_blocks, getBlock(blocks_py, x, y, z+1)) &&
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!isTransparent(transparent_blocks, getBlock(blocks_py, x, y+1, z))) {
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continue;
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}
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//# top face
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//black_coeff, face_occlude = self.get_lighting_coefficient(x, y, z + 1)
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PyObject *t = NULL;
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if (!PySequence_Contains(special_blocks, blockid)) {
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/* t = textures.blockmap[blockid] */
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PyObject *t = PyList_GetItem(blockmap, block);
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/* PyList_GetItem returns borrowed ref */
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/* note that this version of alpha_over has a different signature than the
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version in _composite.c */
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texture_alpha_over(img, t, imgx, imgy );
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} else {
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PyObject *tmp;
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/* this should be a pointer to a unsigned char */
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void* ancilData_p = PyArray_GETPTR3(blockdata_expanded, x, y, z);
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unsigned char ancilData = *((unsigned char*)ancilData_p);
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if (block == 85) {
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/* fence. skip the generate_pseudo_ancildata for now */
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continue;
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}
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tmp = PyTuple_New(2);
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Py_INCREF(blockid); /* because SetItem steals */
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PyTuple_SetItem(tmp, 0, blockid);
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PyTuple_SetItem(tmp, 1, PyInt_FromLong(ancilData));
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/* this is a borrowed reference. no need to decref */
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t = PyDict_GetItem(specialblockmap, tmp);
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Py_DECREF(tmp);
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}
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if ((t != NULL) && (t != Py_None))
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texture_alpha_over(img, t, imgx, imgy );
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{
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// returns new references
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PyObject* light_tup = PyObject_CallMethod(chunk, "get_lighting_coefficient", "iii", x, y, z+1);
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PyObject *black_coeff_py = PySequence_GetItem(light_tup, 0);
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double black_coeff = PyFloat_AsDouble(black_coeff_py);
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Py_DECREF(black_coeff_py);
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PyObject *face_occlude_py = PySequence_GetItem(light_tup, 1);
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int face_occlude = PyInt_AsLong(face_occlude_py);
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Py_DECREF(face_occlude_py);
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if (!face_occlude) {
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//#composite.alpha_over(img, over_color, (imgx, imgy), ImageEnhance.Brightness(facemasks[0]).enhance(black_coeff))
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PyObject *mask = PyObject_CallMethod(facemasks[0], "copy", NULL); // new ref
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//printf("black_coeff: %f\n", black_coeff);
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brightness(mask, black_coeff);
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//printf("done with brightness\n");
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alpha_over(img, black_color, mask, imgx, imgy, 0, 0);
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//printf("done with alpha_over\n");
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Py_DECREF(mask);
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}
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}
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{
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// returns new references
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PyObject* light_tup = PyObject_CallMethod(chunk, "get_lighting_coefficient", "iii", x-1, y, z);
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PyObject *black_coeff_py = PySequence_GetItem(light_tup, 0);
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double black_coeff = PyFloat_AsDouble(black_coeff_py);
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Py_DECREF(black_coeff_py);
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PyObject *face_occlude_py = PySequence_GetItem(light_tup, 1);
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int face_occlude = PyInt_AsLong(face_occlude_py);
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Py_DECREF(face_occlude_py);
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if (!face_occlude) {
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//#composite.alpha_over(img, over_color, (imgx, imgy), ImageEnhance.Brightness(facemasks[0]).enhance(black_coeff))
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/* for now, we are lazy and call Image.blend to change the brightness of facemask
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* TODO find some faster way?
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*/
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PyObject *mask = PyObject_CallMethod(facemasks[1], "copy", NULL); // new ref
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//printf("black_coeff: %f\n", black_coeff);
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brightness(mask, black_coeff);
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//printf("done with brightness\n");
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alpha_over(img, black_color, mask, imgx, imgy, 0, 0);
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//printf("done with alpha_over\n");
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Py_DECREF(mask);
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}
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}
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{
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// returns new references
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PyObject* light_tup = PyObject_CallMethod(chunk, "get_lighting_coefficient", "iii", x, y+1, z);
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PyObject *black_coeff_py = PySequence_GetItem(light_tup, 0);
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double black_coeff = PyFloat_AsDouble(black_coeff_py);
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Py_DECREF(black_coeff_py);
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PyObject *face_occlude_py = PySequence_GetItem(light_tup, 1);
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int face_occlude = PyInt_AsLong(face_occlude_py);
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Py_DECREF(face_occlude_py);
|
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if (!face_occlude) {
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//#composite.alpha_over(img, over_color, (imgx, imgy), ImageEnhance.Brightness(facemasks[0]).enhance(black_coeff))
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PyObject *mask = PyObject_CallMethod(facemasks[2], "copy", NULL); // new ref
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//printf("black_coeff: %f\n", black_coeff);
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brightness(mask, black_coeff);
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//printf("done with brightness\n");
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alpha_over(img, black_color, mask, imgx, imgy, 0, 0);
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//printf("done with alpha_over\n");
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Py_DECREF(mask);
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|
}
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|
}
|
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|
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|
||||||
|
|
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|
}
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|
}
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|
}
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Py_DECREF(facemasks_py);
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Py_DECREF(blocks_py);
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Py_DECREF(blockmap);
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Py_DECREF(special_blocks);
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Py_DECREF(specialblockmap);
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|
return Py_BuildValue("i",2);
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|
|
||||||
|
}
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|
|
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/* TODO triple check this to make sure reference counting is correct */
|
/* TODO triple check this to make sure reference counting is correct */
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PyObject*
|
PyObject*
|
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chunk_render(PyObject *self, PyObject *args) {
|
chunk_render(PyObject *self, PyObject *args) {
|
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|
|||||||
@@ -24,6 +24,8 @@ static PyMethodDef COverviewerMethods[] = {
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"alpha over composite function"},
|
"alpha over composite function"},
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{"render_loop", chunk_render, METH_VARARGS,
|
{"render_loop", chunk_render, METH_VARARGS,
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"Renders stuffs"},
|
"Renders stuffs"},
|
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|
{"render_loop_lighting", chunk_render_lighting, METH_VARARGS,
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|
"Renders stuffs, lighting"},
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{NULL, NULL, 0, NULL} /* Sentinel */
|
{NULL, NULL, 0, NULL} /* Sentinel */
|
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};
|
};
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|
|
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|
|||||||
@@ -33,8 +33,10 @@ Imaging imaging_python_to_c(PyObject *obj);
|
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PyObject *alpha_over(PyObject *dest, PyObject *src, PyObject *mask, int dx,
|
PyObject *alpha_over(PyObject *dest, PyObject *src, PyObject *mask, int dx,
|
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int dy, int xsize, int ysize);
|
int dy, int xsize, int ysize);
|
||||||
PyObject *alpha_over_wrap(PyObject *self, PyObject *args);
|
PyObject *alpha_over_wrap(PyObject *self, PyObject *args);
|
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|
PyObject *brightness(PyObject *img, double factor);
|
||||||
|
|
||||||
/* in iterate.c */
|
/* in iterate.c */
|
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PyObject *chunk_render(PyObject *self, PyObject *args);
|
PyObject *chunk_render(PyObject *self, PyObject *args);
|
||||||
|
PyObject *chunk_render_lighting(PyObject *self, PyObject *args);
|
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|
|
||||||
#endif /* __OVERVIEWER_H_INCLUDED__ */
|
#endif /* __OVERVIEWER_H_INCLUDED__ */
|
||||||
|
|||||||
3
world.py
3
world.py
@@ -67,9 +67,10 @@ class World(object):
|
|||||||
|
|
||||||
mincol = maxcol = minrow = maxrow = 0
|
mincol = maxcol = minrow = maxrow = 0
|
||||||
|
|
||||||
def __init__(self, worlddir, useBiomeData=False,regionlist=None):
|
def __init__(self, worlddir, useBiomeData=False,regionlist=None, lighting=False):
|
||||||
self.worlddir = worlddir
|
self.worlddir = worlddir
|
||||||
self.useBiomeData = useBiomeData
|
self.useBiomeData = useBiomeData
|
||||||
|
self.lighting = lighting
|
||||||
|
|
||||||
#find region files, or load the region list
|
#find region files, or load the region list
|
||||||
#this also caches all the region file header info
|
#this also caches all the region file header info
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Reference in New Issue
Block a user