Celluster™
Execution-Native Semantic Compute · Reflex-Native Compute Substrate
← Back to Celluster
Platform & Architecture · Measured Performance

Execution Performance

A Cell can carry many workloads, rich policy, continuity, evidence and Reflex behavior without turning execution into a heavy control-plane operation. The measured software path stays in microseconds and sub-milliseconds.

Rich execution. Small software overhead. Physical truth before Reflex Movement.
At a Glance

Thousands of Cells. Many workloads inside one Cell. Small execution overhead.

~90 µs
Cell-local Reflex handoff

Measured through 4,096 logical Cells in the tested software path.

0.746 µs
exact workload binding

Measured at 64 workloads inside one tested Cell, with zero allocations.

<1 ms
large policy commit + durable proof

Rich execution semantics stay lightweight before Movement.

Cell Density

64× more logical Cells. Cell-local Reflex time stayed ~90 µs.

As the tested logical Cell population grew from 64 to 4,096, the Cell-local Reflex handoff stayed in the same narrow range. More Cells did not turn the local execution path into a growing coordination operation.

89.3 µs64 logical Cells
91.8 µs256 logical Cells
90.3 µs1,024 logical Cells
92.3 µs4,096 logical Cells
This is Cell-local Reflex Movement evidence: the Cell-local software handoff remained small as logical Cell density increased.
Many Workloads Inside One Cell

One Cell carried 64 tested workloads while exact binding stayed below one microsecond.

A Cell is not one Pod, one VM, or one process. One Cell can carry many workloads — processes, containers, VMs, services, or a larger execution environment such as a Kubernetes cluster.

In the measured software path, exact workload binding at 64 workloads inside one Cell took ~0.746 µs and performed zero allocations.

The point is simple: richer execution inside a Cell does not have to make workload selection or binding the bottleneck.

Measured Capability Matrix

Rich execution decisions remain microsecond- and sub-millisecond-scale.

Measured areaTested scaleLinux median / resultPlain-English meaning
Cell-local Reflex handoff4,096 logical Cells~92.3 µsEssentially flat from 64 → 4,096 Cells.
Exact workload binding64 workloads in one tested Cell~0.746 µsSub-microsecond; zero allocations.
Per-workload execution decisionCanonical multi-workload decision~16.3 µsRich execution decision remains microsecond-scale.
Durable resource reservationContended / idempotent~45.3 µsCommitted resource reservation remains lightweight.
ACL policy commit256 rules~0.532 msLarge policy set committed in sub-millisecond time.
FQDN / SNI / ALPN policy commit128 FQDN policies~0.323 msRich DNS/L7 intent remains sub-millisecond to commit.
Durable physical-state proofExact map-entry ownership cycle~0.475 msReceipt-backed physical ownership remains sub-millisecond.
Interrupted Execution RecoveryInterrupted materialization~0.670 msInterrupted execution recovery remains sub-millisecond.
GPU bindingPer-workload physical contractCapability proofWorkload-specific, cgroup-bound and receipt-verified; hardware timing remains a separate certification layer.
Physical Truth Before Reflex Movement

Celluster proves the new execution before reroute or clone.

Performance is not useful if execution moves first and discovers problems later. Celluster prepares the new execution, verifies physical state, preserves continuity, and only then allows Reflex Movement.

ONE CELL

Workloads · Resources · Policy · DNS/L7 · Continuity · Evidence

EXECUTION DECISION

Microsecond-scale software path.

PHYSICAL PROOF

Sub-millisecond durable bookkeeping and receipt-backed ownership.

READY TO ADAPT

New execution is prepared and verified while continuity is preserved.

REROUTE

Movement to a verified execution while preserving the Cell’s authored continuity.

CLONE

A verified new execution instance joins service under the Cell’s lineage and continuity contract.

Reroute and clone remain Reflex Movement outcomes, performed only after the new execution is prepared, verified, and continuity is preserved.
What the Numbers Mean

The software path is small. Real workload readiness remains real.

These measurements cover the Celluster software execution path. The remaining time belongs to actual workload readiness: startup, health, state, dependencies, devices and the physical environment.

Measured here: Reflex handoff, workload binding, execution decision, resource reservation, policy commit, durable proof and recovery bookkeeping.

Separate physical evidence layers: DNS query latency, packet timing, GPU hardware latency, workload startup and device-specific readiness.

Five-run Linux medians on Intel Core i9-9980HK. Software execution path; hardware-specific timings require physical certification.

The Performance Story

Celluster adds execution meaning while keeping software overhead small.

More Cells, more workloads, richer policy and physical proof remain bounded in the measured software path. The architecture stays centered on the Cell: authored intent, evidence, Reflexes, continuity and verified Movement.