Dynamic loading, saving, generating chunks works

This commit is contained in:
Piotrek
2021-05-13 09:13:43 +02:00
parent ab9f4c83d0
commit 57782a88ab
7 changed files with 73 additions and 55 deletions
+7 -7
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@@ -2,7 +2,7 @@ mod camera_controller;
mod player; mod player;
pub mod world; pub mod world;
use crate::renderer::renderer_view::RendererView; use crate::renderer::renderer_view::RendererView;
use cgmath::Point3; use cgmath::Vector3;
use winit::event::Event; use winit::event::Event;
use player::Player; use player::Player;
use world::World; use world::World;
@@ -19,7 +19,7 @@ pub struct Game {
#[allow(unused)] #[allow(unused)]
world: World, world: World,
prev_pos: Option<Point3<i32>> prev_pos: Option<Vector3<i32>>
} }
impl Game { impl Game {
@@ -64,16 +64,16 @@ impl Game {
// Update chunks // Update chunks
let pos = camera.get_position(); let pos = camera.get_position();
let pos = Point3{x: pos.x as i32, y: pos.y as i32, z: pos.z as i32}; let pos = Vector3{x: pos.x as i32, y: pos.y as i32, z: pos.z as i32};
if self.prev_pos == None || self.prev_pos != Some(pos) { if self.prev_pos == None || self.prev_pos != Some(pos) {
self.prev_pos = Some(pos); self.prev_pos = Some(pos);
renderer.get_ui().set_text("World", 0, format!("Position: {}, {}, {}", pos.x, pos.y, pos.z)); renderer.get_ui().set_text("World", 0, format!("Position: {}, {}, {}", pos.x, pos.y, pos.z));
// Load sphere of chunks around player (TODO) // Load sphere of chunks around player
let chunk_pos = Point3{x: pos.x / 32, y: pos.y / 32, z: pos.z / 32}; let chunk_pos = pos / 32;//Vector3{x: pos.x / 32, y: pos.y / 32, z: pos.z / 32};
if self.world.load_chunk(chunk_pos) { if self.world.load_chunk(chunk_pos) {
let chunk = self.world.get_chunk(&chunk_pos).unwrap();
renderer.write(, block: &WorldBlock) chunk.write_to(renderer, chunk_pos * 32);
} }
} }
} }
+2 -2
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@@ -1,4 +1,4 @@
use cgmath::Point3; use cgmath::Vector3;
pub const SIZE: usize = 32; pub const SIZE: usize = 32;
pub const SIZE_QB: usize = SIZE*SIZE*SIZE; pub const SIZE_QB: usize = SIZE*SIZE*SIZE;
@@ -16,7 +16,7 @@ impl WorldBlock {
} }
} }
pub fn set(&mut self, voxel_pos: Point3<usize>, value: u8) { pub fn set(&mut self, voxel_pos: Vector3<usize>, value: u8) {
self.materials[voxel_pos.x + SIZE * (voxel_pos.y + SIZE * voxel_pos.z)] = value; self.materials[voxel_pos.x + SIZE * (voxel_pos.y + SIZE * voxel_pos.z)] = value;
} }
} }
+15 -9
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@@ -1,6 +1,7 @@
use crate::game::RendererView;
use byteorder::LittleEndian; use byteorder::LittleEndian;
use byteorder::ByteOrder; use byteorder::ByteOrder;
use cgmath::Point3; use cgmath::Vector3;
use lzzzz::lz4; use lzzzz::lz4;
use crate::game::world::{WorldBlock, block}; use crate::game::world::{WorldBlock, block};
@@ -23,7 +24,7 @@ pub struct WorldChunk {
impl WorldChunk { impl WorldChunk {
pub fn new() -> Self { pub fn new() -> Self {
Self { Self {
nodes: vec![0_u32; SIZE_QB as usize].into_boxed_slice(), nodes: vec![0_u32; SIZE_QB].into_boxed_slice(),
blocks: Vec::new() blocks: Vec::new()
} }
} }
@@ -85,7 +86,7 @@ impl WorldChunk {
} }
#[allow(unused)] #[allow(unused)]
pub fn all_blocks(&self) -> Vec<(Point3<u32>, &WorldBlock)> { pub fn all_blocks(&self) -> Vec<(Vector3<i32>, &WorldBlock)> {
self.nodes.iter().enumerate() self.nodes.iter().enumerate()
.filter(|(_, n)| **n != 0) .filter(|(_, n)| **n != 0)
.map(|(index, node)| { .map(|(index, node)| {
@@ -96,17 +97,16 @@ impl WorldChunk {
let y = idx / SIZE; let y = idx / SIZE;
let x = idx % SIZE; let x = idx % SIZE;
let pos = Point3{x: x as u32, y: y as u32, z: z as u32}; let pos = Vector3{x: x as i32, y: y as i32, z: z as i32};
let block = &self.blocks[(*node-1) as usize]; let block = &self.blocks[(*node-1) as usize];
(pos, block) (pos, block)
}) })
.collect() .collect()
} }
pub fn get_block_mut(&mut self, block_pos: &Point3<u32>) -> &mut WorldBlock { pub fn get_block_mut(&mut self, block_pos: &Vector3<i32>) -> &mut WorldBlock {
// Get block index // Get block index
let index = (block_pos.x + SIZE as u32 * (block_pos.y + SIZE as u32 * block_pos.z)) as usize; let index = (block_pos.x + SIZE as i32 * (block_pos.y + SIZE as i32 * block_pos.z)) as usize;
let mut value = self.nodes[index]; let mut value = self.nodes[index];
// Allocate new block // Allocate new block
if value == 0 { if value == 0 {
@@ -118,11 +118,17 @@ impl WorldChunk {
&mut self.blocks[(value-1) as usize] &mut self.blocks[(value-1) as usize]
} }
pub fn get_block(&self, block_pos: &Point3<u32>) -> &WorldBlock { pub fn get_block(&self, block_pos: &Vector3<i32>) -> &WorldBlock {
// Get block index // Get block index
let index = (block_pos.x + SIZE as u32 * (block_pos.y + SIZE as u32 * block_pos.z)) as usize; let index = (block_pos.x + SIZE as i32 * (block_pos.y + SIZE as i32 * block_pos.z)) as usize;
let value = self.nodes[index]; let value = self.nodes[index];
// Return block reference // Return block reference
&self.blocks[(value-1) as usize] &self.blocks[(value-1) as usize]
} }
pub fn write_to(&self, renderer: &mut dyn RendererView, offset: Vector3<i32>) {
for (blpos, block) in self.all_blocks() {
renderer.write(&(offset + blpos), block);
}
}
} }
+3 -3
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@@ -1,4 +1,4 @@
use cgmath::Point3; use cgmath::Vector3;
use noise::{Perlin, NoiseFn}; use noise::{Perlin, NoiseFn};
use rand::{Rng, prelude::ThreadRng}; use rand::{Rng, prelude::ThreadRng};
@@ -39,7 +39,7 @@ impl WorldGen {
/* /*
* Generate block * Generate block
*/ */
pub fn generate(block_pos: &Point3<i32>, block: &mut WorldBlock) { pub fn generate(block_pos: &Vector3<i32>, block: &mut WorldBlock) {
let mut rng = rand::thread_rng(); let mut rng = rand::thread_rng();
let noise = Perlin::new(); let noise = Perlin::new();
@@ -52,7 +52,7 @@ impl WorldGen {
let h = map[x][z]; let h = map[x][z];
//let h = 16; // testing //let h = 16; // testing
for y in 0..h { for y in 0..h {
block.set(Point3{x, y, z}, 2); block.set(Vector3{x, y, z}, 2);
} }
} }
} }
+40 -28
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@@ -1,11 +1,12 @@
mod generator; mod generator;
pub mod chunk; pub mod chunk;
pub mod block; pub mod block;
use std::time::Instant;
use std::path::PathBuf; use std::path::PathBuf;
use std::io::Write; use std::io::Write;
use std::io::Read; use std::io::Read;
use std::fs; use std::fs;
use cgmath::Point3; use cgmath::{Point3, Vector3};
use std::collections::HashMap; use std::collections::HashMap;
use generator::WorldGen; use generator::WorldGen;
use chunk::WorldChunk; use chunk::WorldChunk;
@@ -19,11 +20,7 @@ struct WorldData {
pub struct World { pub struct World {
data: WorldData, data: WorldData,
chunks: HashMap<Point3<i32>, WorldChunk>, chunks: HashMap<Vector3<i32>, WorldChunk>,
}
fn point_abs(p: &Point3<i32>) -> Point3<u32> {
Point3 {x: p.x.abs() as u32, y: p.y.abs() as u32, z: p.z.abs() as u32 }
} }
impl World { impl World {
@@ -35,12 +32,12 @@ impl World {
} }
} }
pub fn all_blocks(&self) -> Vec<(Point3<i32>, &WorldBlock)> { pub fn all_blocks(&self) -> Vec<(Vector3<i32>, &WorldBlock)> {
self.chunks.iter().map(|(chunk_pos, chunk)| { self.chunks.iter().map(|(chunk_pos, chunk)| {
let off = chunk_pos * chunk::SIZE as i32; let off = chunk_pos * chunk::SIZE as i32;
let result: Vec<(Point3<i32>, &WorldBlock)> = chunk.all_blocks().iter().map(|(pos, block)| { let result: Vec<(Vector3<i32>, &WorldBlock)> = chunk.all_blocks().iter().map(|(pos, block)| {
( (
Point3{x: off.x+pos.x as i32, y: off.y+pos.y as i32, z: off.z+pos.z as i32}, Vector3{x: off.x+pos.x as i32, y: off.y+pos.y as i32, z: off.z+pos.z as i32},
*block *block
) )
}).collect(); }).collect();
@@ -50,18 +47,14 @@ impl World {
pub fn save(&self) { pub fn save(&self) {
// Get directory // Get directory
let mut dir = dirs::data_local_dir().unwrap(); let dir = dirs::data_local_dir().unwrap().join("Voxelgame");
dir.push("Voxelgame");
fs::create_dir_all(&dir).expect("Failed to create directory"); fs::create_dir_all(&dir).expect("Failed to create directory");
// Save all chunks // Save all chunks
for (pos, chunk) in self.chunks.iter() { for (pos, chunk) in self.chunks.iter() {
let bytes = chunk.to_bytes(); let path = dir.with_file_name(format!("chunk_{}_{}_{}.dat", pos.x, pos.y, pos.z));
let filename = format!("chunk_{}_{}_{}.dat", pos.x, pos.y, pos.z);
let path: PathBuf = [dir.to_str().unwrap(), &filename].iter().collect();
let mut file = fs::File::create(path).expect("Failed to create file"); let mut file = fs::File::create(path).expect("Failed to create file");
file.write(&bytes).unwrap(); file.write(&chunk.to_bytes()).unwrap();
} }
// Save metadata // Save metadata
@@ -72,41 +65,56 @@ impl World {
} }
/* /*
* Loads chunk and displays it in the world. * Loads chunk into memory
* It will try to load the chunk from file, and if that fails it will generate the chunk and save it. * It will try to load the chunk from file, and if that fails it will generate the chunk and save it.
*/ */
pub fn load_chunk(&mut self, pos: Point3<i32>) -> Option<&WorldChunk> { pub fn load_chunk(&mut self, pos: Vector3<i32>) ->bool {
// Abort if chunk is already loaded // Abort if chunk is already loaded
if let Some(_) = self.chunks.get(&pos) { if let Some(_) = self.chunks.get(&pos) {
return None; return false;
} }
// Try loading chunk from file // Try loading chunk from file
let filename = format!("chunk_{}_{}_{}.dat", pos.x, pos.y, pos.z); let filename = format!("chunk_{}_{}_{}.dat", pos.x, pos.y, pos.z);
let filepath = dirs::data_local_dir().unwrap().join("Voxelgame").with_file_name(filename); let filepath = dirs::data_local_dir().unwrap().join("Voxelgame").with_file_name(filename);
if filepath.is_file() { if filepath.is_file() {
let timer = Instant::now();
let mut buff = Vec::new(); let mut buff = Vec::new();
let mut file = fs::File::open(filepath).expect("Failed to open file"); let mut file = fs::File::open(filepath).expect("Failed to open file");
file.read_to_end(&mut buff).expect("Failed to read file"); file.read_to_end(&mut buff).expect("Failed to read file");
let chunk = WorldChunk::from_bytes(buff); let chunk = WorldChunk::from_bytes(buff);
self.chunks.insert(pos, chunk); self.chunks.insert(pos, chunk);
println!("Chunk at {:?} loaded", pos); println!("Chunk at {:?} loaded ({} ms)", pos, timer.elapsed().as_millis());
return Some(&chunk); return true;
} }
// Try generating chunk // Try generating chunk
let timer0 = Instant::now();
let mut chunk = WorldChunk::new(); let mut chunk = WorldChunk::new();
for x in 0..32 { for x in 0..32 {
for z in 0..32 { for z in 0..32 {
let bpos = &Point3::<u32>{x,y:0,z}; let bpos = Vector3::<i32>{x,y:0,z};
let block = chunk.get_block_mut(&bpos); let block = chunk.get_block_mut(&bpos);
let wpos = &Point3::<i32>{ x: pos.x+bpos.x as i32, y: pos.y+bpos.y as i32, z: pos.z+bpos.z as i32}; WorldGen::generate(&(pos*32 + bpos), block);
WorldGen::generate(wpos, block);
} }
} }
// Save
let timer1 = Instant::now();
let dir = dirs::data_local_dir().unwrap().join("Voxelgame");
fs::create_dir_all(&dir).expect("Failed to create directory");
let path = dir.with_file_name(format!("chunk_{}_{}_{}.dat", pos.x, pos.y, pos.z));
let mut file = fs::File::create(path).expect("Failed to create file");
file.write(&chunk.to_bytes()).unwrap();
// Add to list
self.chunks.insert(pos, chunk); self.chunks.insert(pos, chunk);
println!("Chunk at {:?} generated", pos);
Some(&chunk) // Stats
let t1 = timer1.elapsed().as_millis();
let t0 = timer0.elapsed().as_millis() - t1;
println!("Chunk at {:?} generated ({} ms) and saved ({} ms)", pos, t0, t1);
true
} }
pub fn load(&mut self) -> bool { pub fn load(&mut self) -> bool {
@@ -124,14 +132,18 @@ impl World {
} }
#[allow(unused)] #[allow(unused)]
pub fn get_block(&mut self, block_wpos: &Point3<i32>) -> Option<&WorldBlock> { pub fn get_block(&mut self, block_wpos: &Vector3<i32>) -> Option<&WorldBlock> {
// Split world space to chunk and block space // Split world space to chunk and block space
let ch_pos = block_wpos / chunk::SIZE as i32; let ch_pos = block_wpos / chunk::SIZE as i32;
let bl_pos = point_abs(block_wpos) % chunk::SIZE as u32; let bl_pos = block_wpos % chunk::SIZE as i32;
// Return block if exists // Return block if exists
if let Some(chunk) = self.chunks.get_mut(&ch_pos) { if let Some(chunk) = self.chunks.get_mut(&ch_pos) {
return Some(chunk.get_block(&bl_pos)); return Some(chunk.get_block(&bl_pos));
} }
None None
} }
pub fn get_chunk(&mut self, chunk_wpos: &Vector3<i32>) -> Option<&mut WorldChunk> {
self.chunks.get_mut(chunk_wpos)
}
} }
+3 -3
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@@ -1,7 +1,7 @@
use std::time::Instant; use std::time::Instant;
use byteorder::{ByteOrder, LittleEndian}; use byteorder::{ByteOrder, LittleEndian};
use std::convert::TryInto; use std::convert::TryInto;
use cgmath::Point3; use cgmath::Vector3;
use crate::game::world::block::WorldBlock; use crate::game::world::block::WorldBlock;
//note: remember to update in main.frag //note: remember to update in main.frag
@@ -102,10 +102,10 @@ impl Content {
} }
#[allow(unused)] #[allow(unused)]
pub fn write(&mut self, queue: &wgpu::Queue, block_pos: &Point3<u32>, block: &WorldBlock) { pub fn write(&mut self, queue: &wgpu::Queue, block_pos: &Vector3<i32>, block: &WorldBlock) {
// Get node // Get node
let index = (block_pos.x + NODE_TEX_SIZE as u32 * (block_pos.y + NODE_TEX_SIZE as u32 * block_pos.z)) as usize; let index = (block_pos.x + NODE_TEX_SIZE as i32 * (block_pos.y + NODE_TEX_SIZE as i32 * block_pos.z)) as usize;
let mut value = self.node_buffer[index] as usize; let mut value = self.node_buffer[index] as usize;
// Allocate new block // Allocate new block
+3 -3
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@@ -2,17 +2,17 @@ use crate::renderer::UserInterface;
use crate::renderer::camera::CameraTransform; use crate::renderer::camera::CameraTransform;
use crate::Renderer; use crate::Renderer;
use crate::game::world::block::WorldBlock; use crate::game::world::block::WorldBlock;
use cgmath::Point3; use cgmath::Vector3;
pub trait RendererView { pub trait RendererView {
fn write(&mut self, block_pos: &Point3<u32>, block: &WorldBlock); fn write(&mut self, block_pos: &Vector3<i32>, block: &WorldBlock);
fn get_camera_transform(&mut self) -> &mut dyn CameraTransform; fn get_camera_transform(&mut self) -> &mut dyn CameraTransform;
fn get_ui(&mut self) -> &mut UserInterface; fn get_ui(&mut self) -> &mut UserInterface;
} }
impl RendererView for Renderer { impl RendererView for Renderer {
fn write(&mut self, block_pos: &Point3<u32>, block: &WorldBlock) { fn write(&mut self, block_pos: &Vector3<i32>, block: &WorldBlock) {
self.buffers.content.write(&self.queue, block_pos, block) self.buffers.content.write(&self.queue, block_pos, block)
} }