Link Types: GitHub Internal (roadmap.vac.dev) External Task ID
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Vac 2024/04/02 §
vac:p2p: §
nimlibp2p:vac:webrtc-transport
Fix the WebRTC CI on Windows/MacOS
Mbed-TLS: improve installation/code generation
Address all the comments on UDP
nimlibp2p:vac:gossipsub-stagger-send
nimlibp2p:vac:maintenance
vac:tke: §
waku:general-incentives
Possibly continuing marketplace discussion with Waku (Martin)
waku:rln-membership:
Working on the proposal for RLN design (Martin)
status:SNT-staking
Supporting the SC team ad hoc (Martin)
Discussing using the staking contract at the org level (Martin)
status:L2-deployment
Further research into airdrop and incentive strategies of existing L2s (Martin)
nomos:mixnet-incentives
adjusted pricing function to account for measurement costs (Frederico)
verified that the modifications of the reward split scheme are correct (Frederico)
nomos:cryptarchia-wealth-concentration-estimated-stake
reviewed blog posts (Frederico)
codex:cdx
reviewed latest marketplace proposal (Fred
vac:dst: §
eng-10ktool:vac:bandwidth-test
eng-10ktool:vac:bandwidth-test
Many many fixes to get Kubernetes with OpenvSwitch + offloading + VMs working
Reinstalled 3 nodes with new Debian + Proxmox flavour
Installed Mellanox OFED drivers
Experimented with VirtIO network, managed to eventually get SR-IOV and Virtual Functions working
Waku - Benchmarked 1-worker (one worker as one eighth of a 64 core node) cluster
Indications are we can scale to ~14k nodes if scaling is linear, vs CPU usage observed on 1-worker
Had 243 Waku nodes, including publishing, running on the worker or 1/8th node with headroom to spare
Network offloading appears to about 2x as efficient CPU wise when running Waku
Further fixes for offloading setup once SR-IOV was working
Waku - Reinstalled 24 workers, then wiped them all and reinstalled 8 of them :(
Diagnosed incredibly complicated packet loss issues (which turned out to be caused by cloned VMs - note to self - clean up /etc/machine-id next time!)
Waku - Benchmarked 8-worker cluster (1 physical 64-core), scaled to 1200 nodes, hit major issue with Calico
Added caching to Harbor, further investigated removing Harbor rate limits
Discovered that adding multiple jobservice workers to Harbor makes rate limits higher
Deployed 6 jobservice workers in Harbor
Removed Vaxis and Nia from Kubernetes to help with CPU accounting since they host worker VMs
vac:qa: §
waku:test-automation-sharding
waku:test-automation-go-waku
waku:test-automation-nwaku
Peer & Communication Management(@Alex)
Continue implementing tests
Found a couple weird behaviours
vac:acz: §
secure-channels:waku:ethereum-chat
Finish the examination DCGKA ref implementation repo
Started to write a report about the examination of vector clocks used in DCGKA ref implementation
Checked that there is the motivation why we chose DCGKA in rfc
zerokit:vac:maintenance
github removed semaphore commit we used, was fixing CI issue
vac:sc:: §
vac:rfc: §
vac:dr: §
unstructured-p2p-improvements-survey
Looked into different aspects of libp2p specifications (including gossipsub versions and corresponding discussions). Also looked into the corresponding nim-libp2p works.
Followed discussions/PRs on libp2p specs and libp2p implementations
vac:nes: §
state-separation:vac:state-separation-doc
Refined the State Separation PDAGs doc and add changes together with Ugur (Moudy + Ugur)
Worked on gathering important components for state separation (Moudy)
Researched and identified accumulators/nullifiers to integrate (Moudy)
Discussed monitoring with Moudy, and continued with monitoring (Marvin + Moudy)
Discussed with Moudy about PDAG report and next version of proposal on state-separation (Ugur + Moudy)
Started to write a draft of the next version of proposal on state-separation (Ugur)
Read about mutator set including Merkle Mountain Range and Bloom filters (Ugur)
proofsystems:vac:research-existing-proof-systems
proofsystems:vac:benchmarks
Kept working on the paper since new findings are arising (i.e. Nova Scotia not using Groth16) (Moudy)
Conducted server testing (Rostyslav)
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