Datacenter-inference KV-cache compression engine: 3-tier hot/warm/cold recency policy with a selectable warm-tier format — INT4 or OCP-Microscaling… It is delivered as a licensable soft-IP block engineered as an ASIL-B Safety Element out of Context — not just RTL, but the complete functional-safety work package needed to carry it into an ISO 26262 program:
Datacenter KV-cache compression engine. Extends KVCE-Lite ( AXI engines, page table, bump allocator, BYPASS).
AMBA AXI4, AXI4-Stream, APB4; OCP Microscaling (MX) Formats v1.0 (MXFP4/E2M1+E8M0); ISO 26262 ASIL-B SEooC (SPFM 91.47%, LFM 90.00%, PMHF 1.90×10⁻⁸/h)
ASIL-B (SEooC) · SPFM 91.47% · LFM 90.00% · PASS
ISO 26262:2018 · FMEDA available · Safety Manual included
See datasheet for full register reference.
// Minimal instantiation
kvce_std #(
.ADDR_W(6)
) u_kvce_std (
.clk (clk),
.rst_n (rst_n),
// APB4
.p_paddr (paddr),
.p_psel (psel),
.p_penable (penable),
.p_pwrite (pwrite),
.p_pwdata (pwdata),
.p_prdata (prdata),
.p_pready (pready),
// Safety
.err_clear (1'b0),
.err_valid (err_valid),
.err_code (err_code)
);Configure via the CTRL register after reset to enable the IP and set operating parameters. Monitor err_valid / err_code for any safety faults reported by the built-in safety monitor.
Typically deployed in safety-critical edge inference — ADAS, autonomous robotics, and machine vision.
The architecture, prior-art positioning, and integration story of this engine are set out in the open-access paper “Inline Hardware KV-Cache Compression for Long-Context Transformer Inference” (Zenodo). Detailed microarchitecture and quantitative sign-off data follow under a mutual NDA.
Pricing, the per-IP FMEDA, safety manual, and RTL data room are shared under a mutual NDA.
Figures are pre-silicon engineering-grade estimates for a Safety Element out of Context (SEooC); final ASIL sign-off is the integrator’s, supported under NDA. FMEDA and Safety Manual available under NDA.
circuit-design.space · +1-971-357-1400 · anovickis@circuit-design.space