Proving the monotonicity criterion for a plurality vote-counting program as a step towards verified vote-counting

R. Goré, Thomas Meumann
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引用次数: 5

Abstract

We show how modern interactive verification tools can be used to prove complex properties of vote-counting software. Specifically, we give an ML implementation of a votecounting program for plurality voting; we give an encoding of this program into the higher-order logic of the HOL4 theorem prover; we give an encoding of the monotonicity property in the same higher-order logic; we then show how we proved that the encoding of the program satisfies the encoding of the monotonicity property using the interactive theorem prover HOL4. As an aside, we also show how to prove the correctness of the vote-counting program. We then discuss the robustness of our approach.
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证明单调性标准的多数投票计数程序作为一个步骤验证投票计数
我们展示了如何使用现代交互式验证工具来证明计票软件的复杂属性。具体来说,我们给出了一个用于多数投票的选票计数程序的ML实现;将该程序编码为HOL4定理证明器的高阶逻辑;给出了同一高阶逻辑下单调性的一种编码;然后,我们展示了如何使用交互定理证明器HOL4证明程序的编码满足单调性的编码。作为题外话,我们还展示了如何证明计票程序的正确性。然后讨论我们的方法的鲁棒性。
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Proving the monotonicity criterion for a plurality vote-counting program as a step towards verified vote-counting The patchwork of internet voting in Canada Verifiable internet voting in Estonia The Council of Europe and e-voting: history and impact of Rec(2004)11 From piloting to roll-out: voting experience and trust in the first full e-election in Argentina
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