While no quantum computer capable of breaking Bitcoin’s elliptic-curve signatures exists today, research into long-term protection is accelerating. A primary focus is SHRINCS, a draft proposal utilizing hash-based signatures. Unlike current 64-byte Schnorr signatures, SHRINCS signatures range from 548 to 5,777 bytes. This increase in size could strain block space and transaction throughput, forcing developers to balance cryptographic strength with network efficiency.
The Risks of Stateful Signatures
The SHRINCS proposal introduces a stateful signing mechanism that requires wallets to track usage counters to prevent key reuse. If a wallet loses its state—perhaps through a backup restoration or hardware rollback—and attempts to reuse a signing slot, the resulting exposure could allow an attacker to forge signatures and steal funds. While a stateless fallback exists, it relies on significantly larger signatures, creating a trade-off between performance and security.

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