blocks.json lists a block's states in getPossibleStates() order -- the property
cartesian product -- and separately marks which one is the default. The parser
declared only id and properties, so the default flag was dropped on the floor
and nameToStateID returned states[0]. Those differ for 642 of the 1168 blocks.
What that produced, measured rather than guessed: every redstone vein in the
world was lit=true and glowing, every sunflower was placed as its own top half
with nothing under it, and oak stairs came out upside down and waterlogged. It
also quietly disagreed with the StateGrass, StateOakLog and StateOakLeaf
constants next door in encode.go, which are the real defaults.
Now it starts from the default state and applies the properties it recognises,
keeping the default's value for an unknown key or an illegal value -- which is
what vanilla does when it reads a palette entry. That matters on the disk path:
a chunk written with a property we no longer know used to decode to a random
corner state instead of something sane.
The signature grows an ok result, because air was doing double duty as both a
real block and "no such name".
Separately, blockPaletteEntry filled the Properties compound by ranging a Go
map. nbt.Compound preserves insertion order precisely so encoding is
deterministic, so saving one chunk twice produced different region-file bytes
for every multi-property block. Keys are sorted now.
- Chunk stores per-section biome arrays (64 cells/section); flat generators
keep the uniform single-valued fallback.
- New writeBiomePalette uses min 1 bpe and direct at registry width (65 biomes).
- Climate sampler splits 2D axes (sampled once per column) from 3D depth
(per cell), keeping per-cell cost to a single density-function compute.
- Full biome parameter table (surface + underground twins + lush/dripstone/
deep_dark caves) with depth as a true range, not a binary layer.
- fillBiomes3D fills the 1536 cells/chunk in parallel; <0.3ms overhead vs
baseline chunk gen (benchmark-verified).
- Tests: cave-biome resolution, per-cell variation, flat-world regression,
registry-range validity, plus chunk-gen and per-cell benchmarks.