world: lots more logging on chunk lighting
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4a6783da8c
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fdbaf68187
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@ -81,6 +81,7 @@ impl LightType {
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}
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}
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fn set_light(self, world: &mut World, pos: Position, light: u8) {
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println!("LightType set_light {}", light);
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match self {
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LightType::Block => world.set_block_light(pos, light),
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LightType::Sky => world.set_sky_light(pos, light),
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@ -161,6 +162,7 @@ impl World {
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if current != new {
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self.set_block_raw(bp, new);
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// Restore old lighting
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println!("update_range current={:?} new={:?} sky_light={:?} block_light={:?}", current, new, sky_light, block_light);
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self.set_sky_light(bp, sky_light);
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self.set_block_light(bp, block_light);
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}
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@ -197,8 +199,19 @@ impl World {
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pub fn get_sky_light(&self, pos: Position) -> u8 {
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match self.chunks.get(&CPos(pos.x >> 4, pos.z >> 4)) {
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Some(chunk) => chunk.get_sky_light(pos.x & 0xF, pos.y, pos.z & 0xF),
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None => 15,
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Some(chunk) => {
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let light = chunk.get_sky_light(pos.x & 0xF, pos.y, pos.z & 0xF);
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if pos.x==142 && pos.y==5 && pos.z==79 {
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println!("World get_sky_light {},{},{} ({},{},{}) = chunk {}", pos.x, pos.y, pos.z, pos.x&0xf, pos.y, pos.z&0xf, light);
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}
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light
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},
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None => {
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if pos.x==142 && pos.y==5 && pos.z==79 {
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println!("World get_sky_light {},{},{} = no chunk {}", pos.x, pos.y, pos.z, 15);
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}
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15
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},
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}
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}
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@ -268,10 +281,12 @@ impl World {
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fn do_light_update(&mut self) {
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use std::cmp;
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if let Some(update) = self.light_updates.pop_front() {
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println!("do_light_update pos={},{}", update.pos.y, update.pos.x);
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if update.pos.y < 0
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|| update.pos.y > 255
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|| !self.is_chunk_loaded(update.pos.x >> 4, update.pos.z >> 4)
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{
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println!("do_light_update returning chunk not loaded");
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return;
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}
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@ -279,18 +294,22 @@ impl World {
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// Find the brightest source of light nearby
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let mut best = update.ty.get_light(self, update.pos);
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let old = best;
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println!("do_light_update update.pos={:?}, old={}", update.pos, old);
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for dir in Direction::all() {
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let light = update.ty.get_light(self, update.pos.shift(dir));
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if light > best {
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best = light;
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}
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}
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println!("best for = {}", best);
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best = best.saturating_sub(cmp::max(1, block.absorbed_light));
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println!("best sat = {}", best);
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// If the light from the block itself is brighter than the light passing through
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// it use that.
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if update.ty == LightType::Block && block.emitted_light != 0 {
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best = cmp::max(best, block.emitted_light);
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}
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println!("best max = {}", best);
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// Sky light doesn't decrease when going down at full brightness
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if update.ty == LightType::Sky
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&& block.absorbed_light == 0
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@ -298,12 +317,14 @@ impl World {
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{
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best = 15;
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}
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println!("best sky = {}", best);
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// Nothing to do, we are already at the right value
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if best == old {
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return;
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}
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// Use our new light value
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println!("update.ty.set_light best={}", best);
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update.ty.set_light(self, update.pos, best);
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// Flag surrounding chunks as dirty
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for yy in -1..2 {
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@ -624,6 +645,7 @@ impl World {
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}
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fn dirty_chunks_by_bitmask(&mut self, x: i32, z: i32, mask: u64, num_sections: usize) {
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println!("dirty_chunks_by_bitmask x={} z={} mask={} num_sections={}", x, z, mask, num_sections);
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for i in 0..num_sections {
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if mask & (1 << i) == 0 {
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continue;
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@ -1288,7 +1310,12 @@ impl Snapshot {
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}
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pub fn get_sky_light(&self, x: i32, y: i32, z: i32) -> u8 {
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self.sky_light.get(self.index(x, y, z))
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let light = self.sky_light.get(self.index(x, y, z));
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if x==14 && y==5 && z==15 {
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println!("Snapshot get_sky_light {},{},{} -> {}", x, y, z, light);
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}
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light
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}
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pub fn set_sky_light(&mut self, x: i32, y: i32, z: i32, l: u8) {
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@ -1442,17 +1469,34 @@ impl Chunk {
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}
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fn get_sky_light(&self, x: i32, y: i32, z: i32) -> u8 {
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if x==14 && y==5 && z==15 {
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println!("chunk get_sky_light {},{},{}", x, y, z);
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}
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let s_idx = y >> 4;
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if !(0..=15).contains(&s_idx) {
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if x==14 && y==5 && z==15 { println!("s_idx = {}, returning 15", s_idx); }
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return 15;
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}
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match self.sections[s_idx as usize].as_ref() {
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Some(sec) => sec.get_sky_light(x, y & 0xF, z),
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None => 15,
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Some(sec) => {
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let light = sec.get_sky_light(x, y & 0xF, z);
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if x==14 && y==5 && z==15 { println!("Chunk get_sky_light from y&0xf {} = {}", y & 0xf, light); }
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light
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},
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None => {
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if x==14 && y==5 && z==15 { println!("Chunk get_sky_light no section returning {}", 15); }
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15
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},
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}
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}
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fn set_sky_light(&mut self, x: i32, y: i32, z: i32, light: u8) {
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println!("set_sky_light {}", light);
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if (x==14 && y==5 && z==15) || (light == 15) {
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panic!("set light {},{},{} = {}", x, y, z, light);
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}
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let s_idx = y >> 4;
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if !(0..=15).contains(&s_idx) {
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return;
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@ -1541,6 +1585,7 @@ impl Section {
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}
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fn set_sky_light(&mut self, x: i32, y: i32, z: i32, l: u8) {
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println!("section set_sky_light {}", l);
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self.sky_light.set(((y << 8) | (z << 4) | x) as usize, l);
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}
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}
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