Optimal Repair Bandwidth and Repair I/O of (n,n-2,2) MDS Array Codes
Abstract
We give a complete determination of the exact optimal worst-case repair bandwidth and repair I/O for linear exact repair of (n,n-2,2) MDS array codes over every finite field Fq and for every admissible code length 3 n q2+1. For repair bandwidth, we prove that the optimum is governed, up to a short explicit list of small exceptional cases, by the maximum of the sharpened n-only lower bound (5n-8)/4 and the projective counting, equivalently incidence-multiplicity, bound 2n-q-3. For repair I/O, we obtain the analogous exact formula with (4n-6)/3 in place of (5n-8)/4, with the single special value at n=4. Thus, we completely resolve the first non-trivial redundancy and sub-packetization regime (r,)=(2,2) for both repair bandwidth and repair I/O.
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