Addded intial region caching.
Loads all the offsets & timestamps @ start to share to worker proceses. From 14609247 function calls (14608852 primitive calls) in 118.278 CPU seconds to 12232301 function calls (12231906 primitive calls) in 75.825 CPU seconds
This commit is contained in:
18
chunk.py
18
chunk.py
@@ -46,12 +46,12 @@ image
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# alpha_over extension, BUT this extension may fall back to PIL's
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# paste(), which DOES need the workaround.)
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def get_lvldata(filename, x, y):
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def get_lvldata(world,filename, x, y):
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"""Takes a filename and chunkcoords and returns the Level struct, which contains all the
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level info"""
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try:
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d = nbt.load_from_region(filename, x, y)
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d = world.load_from_region(filename, x, y)
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except Exception, e:
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logging.warning("Error opening chunk (%i, %i) in %s. It may be corrupt. %s", x, y, filename, e)
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raise ChunkCorrupt(str(e))
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@@ -64,10 +64,10 @@ def get_blockarray(level):
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Block array, which just contains all the block ids"""
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return numpy.frombuffer(level['Blocks'], dtype=numpy.uint8).reshape((16,16,128))
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def get_blockarray_fromfile(filename):
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def get_blockarray_fromfile(world,filename):
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"""Same as get_blockarray except takes a filename and uses get_lvldata to
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open it. This is a shortcut"""
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level = get_lvldata(filename)
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level = get_lvldata(world,filename)
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return get_blockarray(level)
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def get_skylight_array(level):
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@@ -196,7 +196,7 @@ class ChunkRenderer(object):
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"""Loads and returns the level structure"""
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if not hasattr(self, "_level"):
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try:
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self._level = get_lvldata(self.regionfile, self.chunkX, self.chunkY)
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self._level = get_lvldata(self.world,self.regionfile, self.chunkX, self.chunkY)
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except NoSuchChunk, e:
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logging.debug("Skipping non-existant chunk")
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raise
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@@ -228,7 +228,7 @@ class ChunkRenderer(object):
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"""Loads and sets data from lower-left chunk"""
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chunk_path = self.world.get_region_path(self.chunkX - 1, self.chunkY)
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try:
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chunk_data = get_lvldata(chunk_path, self.chunkX - 1, self.chunkY)
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chunk_data = get_lvldata(self.world,chunk_path, self.chunkX - 1, self.chunkY)
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self._left_skylight = get_skylight_array(chunk_data)
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self._left_blocklight = get_blocklight_array(chunk_data)
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self._left_blocks = get_blockarray(chunk_data)
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@@ -262,7 +262,7 @@ class ChunkRenderer(object):
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"""Loads and sets data from lower-right chunk"""
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chunk_path = self.world.get_region_path(self.chunkX, self.chunkY + 1)
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try:
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chunk_data = get_lvldata(chunk_path, self.chunkX, self.chunkY + 1)
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chunk_data = get_lvldata(self.world,chunk_path, self.chunkX, self.chunkY + 1)
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self._right_skylight = get_skylight_array(chunk_data)
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self._right_blocklight = get_blocklight_array(chunk_data)
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self._right_blocks = get_blockarray(chunk_data)
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@@ -296,7 +296,7 @@ class ChunkRenderer(object):
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"""Loads and sets data from upper-right chunk"""
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chunk_path = self.world.get_region_path(self.chunkX + 1, self.chunkY)
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try:
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chunk_data = get_lvldata(chunk_path, self.chunkX + 1, self.chunkY)
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chunk_data = get_lvldata(self.world,chunk_path, self.chunkX + 1, self.chunkY)
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self._up_right_skylight = get_skylight_array(chunk_data)
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self._up_right_blocklight = get_blocklight_array(chunk_data)
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self._up_right_blocks = get_blockarray(chunk_data)
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@@ -316,7 +316,7 @@ class ChunkRenderer(object):
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"""Loads and sets data from upper-left chunk"""
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chunk_path = self.world.get_region_path(self.chunkX, self.chunkY - 1)
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try:
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chunk_data = get_lvldata(chunk_path, self.chunkX, self.chunkY - 1)
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chunk_data = get_lvldata(self.world,chunk_path, self.chunkX, self.chunkY - 1)
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self._up_left_skylight = get_skylight_array(chunk_data)
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self._up_left_blocklight = get_blocklight_array(chunk_data)
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self._up_left_blocks = get_blockarray(chunk_data)
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40
nbt.py
40
nbt.py
@@ -34,14 +34,16 @@ def _file_loader(func):
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def load(fileobj):
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return NBTFileReader(fileobj).read_all()
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@_file_loader
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def load_from_region(fileobj, x, y):
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nbt = MCRFileReader(fileobj).load_chunk(x, y)
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if not nbt:
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def load_from_region(filename, x, y):
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nbt = load_region(filename).load_chunk(x, y)
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if nbt is None:
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return None ## return none. I think this is who we should indicate missing chunks
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#raise IOError("No such chunk in region: (%i, %i)" % (x, y))
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return nbt.read_all()
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def load_region(filename):
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return MCRFileReader(filename)
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class NBTFileReader(object):
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def __init__(self, fileobj, is_gzip=True):
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if is_gzip:
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@@ -178,9 +180,9 @@ class MCRFileReader(object):
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chunks (as instances of NBTFileReader), getting chunk timestamps,
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and for listing chunks contained in the file."""
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def __init__(self, fileobj):
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self._file = fileobj
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def __init__(self, filename):
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self._file = None
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self._filename = filename
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# cache used when the entire header tables are read in get_chunks()
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self._locations = None
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self._timestamps = None
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@@ -250,7 +252,7 @@ class MCRFileReader(object):
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return timestamp
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def get_chunks(self):
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def get_chunk_info(self,closeFile = True):
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"""Return a list of all chunks contained in this region file,
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as a list of (x, y) coordinate tuples. To load these chunks,
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provide these coordinates to load_chunk()."""
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@@ -258,6 +260,9 @@ class MCRFileReader(object):
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if self._chunks:
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return self._chunks
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if self._file is None:
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self._file = open(self._filename,'rb');
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self._chunks = []
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self._locations = []
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self._timestamps = []
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@@ -279,6 +284,10 @@ class MCRFileReader(object):
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timestamp = self._read_chunk_timestamp()
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self._timestamps.append(timestamp)
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if closeFile:
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#free the file object since it isn't safe to be reused in child processes (seek point goes wonky!)
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self._file.close()
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self._file = None
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return self._chunks
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def get_chunk_timestamp(self, x, y):
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@@ -289,9 +298,7 @@ class MCRFileReader(object):
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x = x % 32
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y = y % 32
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if self._timestamps is None:
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#self.get_chunks()
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return self._read_chunk_timestamp(x, y)
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else:
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self.get_chunk_info()
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return self._timestamps[x + y * 32]
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def chunkExists(self, x, y):
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@@ -299,9 +306,7 @@ class MCRFileReader(object):
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x = x % 32
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y = y % 32
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if self._locations is None:
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#self.get_chunks()
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location = self._read_chunk_location(x, y)
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else:
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self.get_chunk_info()
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location = self._locations[x + y * 32]
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return location is not None
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@@ -315,13 +320,14 @@ class MCRFileReader(object):
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x = x % 32
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y = y % 32
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if self._locations is None:
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#self.get_chunks()
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location = self._read_chunk_location(x % 32, y % 32)
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else:
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self.get_chunk_info()
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location = self._locations[x + y * 32]
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if location is None:
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return None
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if self._file is None:
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self._file = open(self._filename,'rb');
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# seek to the data
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self._file.seek(location[0])
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@@ -556,12 +556,12 @@ def render_worldtile(quadtree, chunks, colstart, colend, rowstart, rowend, path)
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imgpath = path + "." + quadtree.imgformat
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world = quadtree.world
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# first, remove chunks from `chunks` that don't actually exist in
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# their region files
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def chunk_exists(chunk):
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_, _, chunkx, chunky, region = chunk
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with open(region, 'rb') as region:
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r = nbt.MCRFileReader(region)
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r = world.load_region(region)
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return r.chunkExists(chunkx, chunky)
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chunks = filter(chunk_exists, chunks)
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@@ -607,11 +607,9 @@ def render_worldtile(quadtree, chunks, colstart, colend, rowstart, rowend, path)
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continue
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# checking chunk mtime
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with open(regionfile, 'rb') as regionfile:
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region = nbt.MCRFileReader(regionfile)
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region = world.load_region(regionfile)
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if region.get_chunk_timestamp(chunkx, chunky) > tile_mtime:
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needs_rerender = True
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if needs_rerender:
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break
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# if after all that, we don't need a rerender, return
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24
world.py
24
world.py
@@ -11,7 +11,7 @@
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# Public License for more details.
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#
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# You should have received a copy of the GNU General Public License along
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# with the Overviewer. If not, see <http://www.gnu.org/licenses/>.
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# with the Overviewer. If not, see <http://wfww.gnu.org/licenses/>.
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import functools
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import os
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@@ -72,10 +72,16 @@ class World(object):
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self.useBiomeData = useBiomeData
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#find region files, or load the region list
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#this also caches all the region file header info
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regionfiles = {}
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regions = {}
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for x, y, regionfile in self._iterate_regionfiles():
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mcr = nbt.MCRFileReader(regionfile)
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mcr.get_chunk_info()
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regions[regionfile] = mcr
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regionfiles[(x,y)] = (x,y,regionfile)
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self.regionfiles = regionfiles
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self.regions = regions
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# figure out chunk format is in use
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# if not mcregion, error out early
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@@ -111,6 +117,22 @@ class World(object):
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_, _, regionfile = self.regionfiles.get((chunkX//32, chunkY//32),(None,None,None));
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return regionfile
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def load_from_region(self,filename, x, y):
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nbt = self.load_region(filename).load_chunk(x, y)
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if nbt is None:
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return None ## return none. I think this is who we should indicate missing chunks
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#raise IOError("No such chunk in region: (%i, %i)" % (x, y))
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return nbt.read_all()
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#filo region cache
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def load_region(self,filename):
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#return nbt.MCRFileReader(filename)
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return self.regions[filename]
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def convert_coords(self, chunkx, chunky):
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"""Takes a coordinate (chunkx, chunky) where chunkx and chunky are
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in the chunk coordinate system, and figures out the row and column
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