# Filling a block from another machine One process fills blocks in a pipeline: it reads the recipe from this repo, claims a block, walks its voxels on the local GPU, packs the shard in a subprocess on the CPU and uploads it in a thread -- while the next block already walks. Machines coordinate through claim files in the repo, nothing else; a claim carries a heartbeat (the walk's progress, ETA and memory, every ten minutes). Every walk is spooled batch by batch into its run record, so a killed worker resumes a block from its finished batches, and `--drain` uploads what an earlier worker on the host left finished. ```bash # 1. dmipy-sim (public, github.com/dmrai-lab/dmipy-sim) at the manifest's commit, with a CUDA jaxlib git clone https://github.com/dmrai-lab/dmipy-sim && cd dmipy-sim && git checkout 64bb9e7 # manifest code.commit python3.11 -m venv ~/dmipy-venv && . ~/dmipy-venv/bin/activate pip install -e ".[cuda12]" huggingface_hub # the CUDA libraries jaxlib loads are in the venv's nvidia/*/lib directories export LD_LIBRARY_PATH=$(ls -d ~/dmipy-venv/lib/python3.11/site-packages/nvidia/*/lib | tr '\n' ':')$LD_LIBRARY_PATH export XLA_PYTHON_CLIENT_PREALLOCATE=false python -c "import jax; print(jax.devices())" # must list the GPU # 2. log in with a token that can write to SubstrateCommons/disco-replay hf auth login # 3. prove the machine on a scaled-down block (a few minutes; a proving run, not part of the pack) python worker/disco_fill.py --block 0 --budget 30000 --smoke # (once per variant, done for ground-truth) the certifying walk: block 0's voxels at 2e5 walkers, the full battery python worker/disco_fill.py --block 0 --budget 200000 --certify # 4. fill blocks until none is open, pipelined (a session with a time limit: --hours H claims nothing new after H hours); # a plan in passes (manifest plan.passes) fills pass 1 of every block before pass 2; --pass K takes only pass K python worker/disco_fill.py --next --loop # after a crash or a kill: upload what was finished here, release the rest, then fill again python worker/disco_fill.py --drain && python worker/disco_fill.py --next --loop ``` `--variant` selects a recipe from `manifest.json` (default `default_variant`); a pass of a block is claimed, walked (from its own seed stream, at its scale of the block's counts) and uploaded like a block, as `block-NNNN.pK.rpk`; the shards are staging: a finished pass is appended to the lossless columnar layout `disco/columns` (`python -m dmipy_sim.fill.consolidate --append`, the union's weights) and its shards removed; `--batch` lowers the walker batch on a small card (a GH200 runs 100k); `--workdir` holds the shard while it is built (5 GB free per block). A worker claims `--claim-batch` blocks (default 3) in one commit and fills them in turn -- the hub allows 128 commits per repository per hour, and a block costs its claim and its upload -- and releases what is left of the batch when it stops. Its claim carries a heartbeat every 15 min; a claim not refreshed for 45 min is a dead worker's, and the next worker that claims releases it (`--drain` on the dead worker's own host does the same at once, and uploads what it had finished). `python -m dmipy_sim.fill.status --repo SubstrateCommons/disco-replay` reads the hub -- every shard's summary, every claim's heartbeat, the plan -- and prints the fill's state per contributor (shards, rate, the block in flight, the heartbeat's age), the time to the end of each pass at the last hour's rate and the commit budget; with `--publish` it commits that as `STATUS.md`. Every shard carries its own per-voxel certificate, a `.json` summary with the timings and the sha256 of the shard, and a `.run/` record of the walk (`python -m dmipy_sim.run