mirror of
https://gitlab.com/veloren/veloren.git
synced 2024-08-30 18:12:32 +00:00
283 lines
8.1 KiB
Rust
283 lines
8.1 KiB
Rust
use super::{block::Block, TerrainChunkMeta, TerrainChunkSize};
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use crate::{
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vol::{BaseVol, ReadVol, VolSize, WriteVol},
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volumes::chunk::{Chunk, ChunkErr},
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};
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use fxhash::FxHashMap;
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use serde_derive::{Deserialize, Serialize};
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use std::ops::Add;
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use vek::*;
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#[derive(Debug)]
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pub enum ChonkError {
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ChunkError(ChunkErr),
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OutOfBounds,
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}
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const SUB_CHUNK_HEIGHT: u32 = 16;
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#[derive(Debug, Clone, Serialize, Deserialize)]
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pub struct Chonk {
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z_offset: i32,
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sub_chunks: Vec<SubChunk>,
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below: Block,
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above: Block,
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meta: TerrainChunkMeta,
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}
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impl Chonk {
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pub fn new(z_offset: i32, below: Block, above: Block, meta: TerrainChunkMeta) -> Self {
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Self {
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z_offset,
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sub_chunks: Vec::new(),
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below,
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above,
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meta,
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}
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}
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pub fn meta(&self) -> &TerrainChunkMeta {
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&self.meta
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}
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pub fn get_min_z(&self) -> i32 {
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self.z_offset
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}
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pub fn get_max_z(&self) -> i32 {
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self.z_offset + (self.sub_chunks.len() as u32 * SUB_CHUNK_HEIGHT) as i32
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}
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pub fn get_metrics(&self) -> ChonkMetrics {
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ChonkMetrics {
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chonks: 1,
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homogeneous: self
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.sub_chunks
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.iter()
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.filter(|s| match s {
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SubChunk::Homogeneous(_) => true,
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_ => false,
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})
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.count(),
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hash: self
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.sub_chunks
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.iter()
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.filter(|s| match s {
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SubChunk::Hash(_, _) => true,
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_ => false,
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})
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.count(),
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heterogeneous: self
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.sub_chunks
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.iter()
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.filter(|s| match s {
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SubChunk::Heterogeneous(_) => true,
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_ => false,
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})
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.count(),
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}
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}
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fn sub_chunk_idx(&self, z: i32) -> usize {
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((z - self.z_offset) as u32 / SUB_CHUNK_HEIGHT as u32) as usize
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}
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}
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impl BaseVol for Chonk {
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type Vox = Block;
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type Err = ChonkError;
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}
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impl ReadVol for Chonk {
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#[inline(always)]
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fn get(&self, pos: Vec3<i32>) -> Result<&Block, ChonkError> {
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if pos.z < self.z_offset {
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// Below the terrain
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Ok(&self.below)
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} else if pos.z >= self.z_offset + SUB_CHUNK_HEIGHT as i32 * self.sub_chunks.len() as i32 {
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// Above the terrain
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Ok(&self.above)
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} else {
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// Within the terrain
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let sub_chunk_idx = self.sub_chunk_idx(pos.z);
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match &self.sub_chunks[sub_chunk_idx] {
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// Can't fail
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SubChunk::Homogeneous(block) => Ok(block),
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SubChunk::Hash(cblock, map) => {
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let rpos = pos
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- Vec3::unit_z()
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* (self.z_offset + sub_chunk_idx as i32 * SUB_CHUNK_HEIGHT as i32);
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Ok(map.get(&rpos.map(|e| e as u8)).unwrap_or(cblock))
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}
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SubChunk::Heterogeneous(chunk) => {
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let rpos = pos
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- Vec3::unit_z()
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* (self.z_offset + sub_chunk_idx as i32 * SUB_CHUNK_HEIGHT as i32);
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chunk.get(rpos).map_err(|err| ChonkError::ChunkError(err))
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}
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}
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}
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}
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#[inline(always)]
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unsafe fn get_unchecked(&self, pos: Vec3<i32>) -> &Block {
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if pos.z < self.z_offset {
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// Below the terrain
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&self.below
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} else if pos.z >= self.z_offset + SUB_CHUNK_HEIGHT as i32 * self.sub_chunks.len() as i32 {
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// Above the terrain
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&self.above
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} else {
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// Within the terrain
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let sub_chunk_idx = self.sub_chunk_idx(pos.z);
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match &self.sub_chunks[sub_chunk_idx] {
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// Can't fail
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SubChunk::Homogeneous(block) => block,
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SubChunk::Hash(cblock, map) => {
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let rpos = pos
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- Vec3::unit_z()
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* (self.z_offset + sub_chunk_idx as i32 * SUB_CHUNK_HEIGHT as i32);
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map.get(&rpos.map(|e| e as u8)).unwrap_or(cblock)
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}
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SubChunk::Heterogeneous(chunk) => {
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let rpos = pos
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- Vec3::unit_z()
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* (self.z_offset + sub_chunk_idx as i32 * SUB_CHUNK_HEIGHT as i32);
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chunk.get_unchecked(rpos)
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}
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}
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}
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}
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}
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impl WriteVol for Chonk {
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#[inline(always)]
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fn set(&mut self, pos: Vec3<i32>, block: Block) -> Result<(), ChonkError> {
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while pos.z < self.z_offset {
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self.sub_chunks.insert(0, SubChunk::Homogeneous(self.below));
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self.z_offset -= SUB_CHUNK_HEIGHT as i32;
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}
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let sub_chunk_idx = self.sub_chunk_idx(pos.z);
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while self.sub_chunks.get(sub_chunk_idx).is_none() {
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self.sub_chunks.push(SubChunk::Homogeneous(self.above));
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}
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let rpos =
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pos - Vec3::unit_z() * (self.z_offset + sub_chunk_idx as i32 * SUB_CHUNK_HEIGHT as i32);
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match &mut self.sub_chunks[sub_chunk_idx] {
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// Can't fail
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SubChunk::Homogeneous(cblock) if block == *cblock => Ok(()),
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SubChunk::Homogeneous(cblock) => {
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let mut map = FxHashMap::default();
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map.insert(rpos.map(|e| e as u8), block);
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self.sub_chunks[sub_chunk_idx] = SubChunk::Hash(*cblock, map);
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Ok(())
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}
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SubChunk::Hash(cblock, map) if block == *cblock => {
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map.remove(&rpos.map(|e| e as u8));
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Ok(())
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}
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SubChunk::Hash(_cblock, map) if map.len() <= 4096 => {
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map.insert(rpos.map(|e| e as u8), block);
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Ok(())
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}
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SubChunk::Hash(cblock, map) => {
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let mut new_chunk = Chunk::filled(*cblock, ());
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for (map_pos, map_block) in map {
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new_chunk
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.set(map_pos.map(|e| e as i32), *map_block)
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.unwrap(); // Can't fail (I hope!)
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}
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new_chunk.set(rpos, block).unwrap(); // Can't fail (I hope)
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self.sub_chunks[sub_chunk_idx] = SubChunk::Heterogeneous(new_chunk);
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Ok(())
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}
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/*
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SubChunk::Homogeneous(cblock) => {
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let mut new_chunk = Chunk::filled(*cblock, ());
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new_chunk.set(rpos, block).unwrap(); // Can't fail (I hope!)
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self.sub_chunks[sub_chunk_idx] = SubChunk::Heterogeneous(new_chunk);
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Ok(())
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}
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*/
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SubChunk::Heterogeneous(chunk) => chunk
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.set(rpos, block)
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.map_err(|err| ChonkError::ChunkError(err)),
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//_ => unimplemented!(),
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}
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}
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}
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#[derive(Debug, Clone, Serialize, Deserialize)]
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pub struct SubChunkSize;
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impl VolSize for SubChunkSize {
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const SIZE: Vec3<u32> = Vec3 {
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x: TerrainChunkSize::SIZE.x,
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y: TerrainChunkSize::SIZE.y,
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z: SUB_CHUNK_HEIGHT,
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};
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}
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#[derive(Debug, Clone, Serialize, Deserialize)]
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pub enum SubChunk {
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Homogeneous(Block),
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Hash(Block, FxHashMap<Vec3<u8>, Block>),
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Heterogeneous(Chunk<Block, SubChunkSize, ()>),
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}
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impl SubChunk {
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pub fn filled(block: Block) -> Self {
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SubChunk::Homogeneous(block)
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}
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}
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#[derive(Debug)]
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pub struct ChonkMetrics {
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chonks: usize,
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homogeneous: usize,
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hash: usize,
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heterogeneous: usize,
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}
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impl Default for ChonkMetrics {
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fn default() -> Self {
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ChonkMetrics {
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chonks: 0,
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homogeneous: 0,
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hash: 0,
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heterogeneous: 0,
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}
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}
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}
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impl Add for ChonkMetrics {
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type Output = Self;
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fn add(self, other: Self::Output) -> Self {
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Self::Output {
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chonks: self.chonks + other.chonks,
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homogeneous: self.homogeneous + other.homogeneous,
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hash: self.hash + other.hash,
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heterogeneous: self.heterogeneous + other.heterogeneous,
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}
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}
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}
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