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This means crypto designers must choose a data type for each variables consistently in their cryptographic schemes.
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Even with many advantages and usefulness of JS, an annoying fact is that many recent cyberattacks such as drive-by-download attacks exploit vulnerability of JS codes.
In general, malicious JS codes are not easy to detect, because they sneakily exploit vulnerabilities of browsers and plugin software, and attack visitors of a web site unknowingly.
To protect users from such threads, the development of an accurate detection system for malicious JS is soliciting.
Conventional approaches often employ signature and heuristic-based methods, which are prone to suffer from zero-day attacks, i.
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In this paper, we propose an efficient method for secure multiple matrix multiplications over the somewhat homomorphic encryption scheme proposed by Brakerski and Vaikuntanathan CRYPTO 2011.
Our method is a generalization of Duong et al.
Specifically, in order to minimize both the ciphertext size and the computation cost, our method enables us to pack every matrix into a single ciphertext so that it enables efficient matrix multiplications over the packed ciphertexts.
We also propose several modifications to obtain practical performance of secure multiplications among matrices with large size and entries.
Furthermore, we show implementation results of our packing method with modifications for secure multiplications among two and three matrices with 32 x 32 and 64 x 64 sizes and entries from 16-bit to 64-bit.
It is an algebraic surface encryption based on a solution problem of indeterminate equations, and has been considered a candidate for post-quantum cryptosystems.
A public key X for this scheme is a polynomial in two variables over a finite ring.
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Kachigar-Tillich in 2017 improved Shamir-Schroeppel's and May-Meurer-Thomas's information set decoding algorithms by using Grover's quantum search and a quantum walk techniques which were devised for the subset-sum problem by Bernstein's et al.
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Moreover, the overall achievable security is limited by the length of messages, which can only have up to 8 bytes in the case of the CAN network.
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Our construction is an optimized variant of the RLWE key check this out proposed by Ding et al.
Our protocol is a RLWE variant of the classic Diffie-Hellman key exchange protocol, which can be regarded as a direct drop-in replacement for current widely-deployed Diffie-Hellman key exchange protocol and its variants, e.
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Concrete security level analysis on different parameter choices will be given in a companion paper.
Since the number of samples in their scheme is just one, which is different from the case of normal integer LWE or other RLWE instances, we do the security analysis for Ding key exchange by primal attack which is reducing the RLWE to SIS.
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We adopt both the progressive BKZ simulator and the so called 2016 estimation in New Hope paper.
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PAKE protocols can be employed to hand-held devices for access control of sensitive personal data remotely.
For communication with more than one user, the user needs to remember all passwords between other users.
To resolve this problem, a three-party PAKE 3PAKE protocol, where user only shares a password with a server, is introduced.
In this paper, we construct a novel lattice-based three-party PAKE protocol, AtLast, based on the hardness of ring-LWE assumption, with a simple design and extend Ding et al.
Then, we compare our protocol with Xu et al.
They replace the original sampling algorithm SamplePre by Gentry et al.
Thus, this paper revisits the CK17 scheme and makes an advanced definition which is subring-identical linearly homomorphic signature, and suggests a security requirements on it.
Then, we show the correctness and subring-identical linear homomorphism of the proposed scheme.
They described this problem to find the equality of an integer within a set of integers between two parties who do not want to reveal their information if they do not equal.
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IGE mode is not included in standard mode of operation recommended by National Institute of Standards and Technology NIST in 2001.
Block cipher encrypts fixed length of plaintext into the corresponding fixed-length of ciphertext using a secret key shared by two parties and utilizes lots of mode of operation for various length of plaintext.
Thus, we need to verify the security of IGE mode depending on underlying block ciphers.
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As a result of more advanced functionality such as ADAS and autonomous driving being introduced, vehicles contain more software being continue reading and assembled by a number of different parties such as OEMs and tier 1 and tier 2 suppliers.
Moreover, as new use cases for the connected car such as controlling various vehicle functions from mobile apps, the addition of numerous communication interfaces as well as collecting and processing vehicle data in the OEM backend are developed, even more software is needed in the automotive industry.
To ensure software security for above scenario, there is a link to secure the automotive software development lifecycle.
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Many ideas of IDS for vehicles were already proposed so far.
Most of them can only detect anomaly CAN messages, but they cannot detect which ECU is compromised because any ECUs can't identify the ECU who sends illegal messages for the specification of CAN protocol.
Now we propose the smart CAN cable that identifies the ECU who sends malicious messages.
The smart CAN cable has two kinds of functions.
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The This web page IDS identifies an illegal message, and it broadcasts the hash value of the illegal message to CANBUS.
Another is an identifying module.
The identifying module is to memorize hash values of the messages and its sender ECU.
When the identifying module receives the hash value from the CAN IDS, it broadcasts the sender ECU information to CANBUS if it finds the hash value in its own memory.
We can cut the sender ECU from CANBUS, or control the stream of it, or handle other workarounds after we identify the sender ECU who sends illegal messages.
This paper shows how the smart CAN cable works, and its advantages and disadvantages.
These pre-shared keys are assumed to be partially leaked to an eavesdropper, Eve.
Because it seems difficult to resolve the problem comprehensively, we restrict our attention to a limited class of partially leaked key exchange graphs, called uniformly leaked key exchange complete graphs where every pair of players has a pre-shared key and each key has leaked independently with the same fixed probability.
Thus, this paper deals with how any k qualified players can generate a one-bit common key u from a uniformly leaked key exchange complete graph.
Specifically, we propose a one-round protocol that makes the k qualified players generate a common key u using edge disjoint Hamiltonian paths.
All existing FSS schemes are of p,p -threshold type.
In this paper, as in the secret sharing schemes, we consider FSS schemes with any general access structure.
To do this, we observe that Fourier-based FSS schemes by Ohsawa et al.
By incorporating the techniques of linear secret sharing with any general access structure into the Fourier-based FSS schemes, we show Fourier-based FSS schemes with any general access structure.
Private comparison is an import building block for applications such as secure auctions and privacy-preserving decision tree evaluation.
Our approach does not encrypt the inputs bit-wisely and requires only one multiplicative depth, giving about 44?
please click for source, the non-interactive property is useful for securely outsourcing computation to an untrusted server.
As a concrete usecase, we present a single round protocol for privacy preserving decision tree evaluation.
This is particularly useful in psychological researches since the number of available samples in such field is usually too small to support the normal distribution assumption.
Besides, special cares about the data privacy are necessary when to conduct the Mann-Whitney U test in an untrusted environment, such as cloud servers.
In this study, we build a privacy-preserving protocol for outsourcing the U test to an untrusted server.
In our construction, all the private data are encrypted using a fully homomorphic encryption scheme, and only ciphertexts are uploaded to the server, and thus no private information about the data is leaked.
We first design a new equality-to subprotocol which enables us to handle the rank of ties in the U test.
By cooperating with our previous greater-than protocol, we present a private protocol that computes the U statistics from encrypted data.
In many of these applications, a function named trapdoor one-way function plays an important role.
We improve Micciancio Peikert's trappdoor one-way function, which is one of the most efficient trapdoor, in the point of parallelizability and give experimental evaluations.
Therefore, blockchain does not have any central administrator or Certificate Authority CA.
However, Public Key Infrastructure PKI must have CA which issues and signs the digital certificates.
PKI CA must be fully trusted see more all parties in a domain.
Also, current public key cryptosystem can be broken using quantum computing attacks.
The post-quantum cryptography PQC must be secure against the quantum adversary.
We combine blockchain technique with one of post-quantum cryptography lattice-based cryptosystems.
In this paper, we suggest QChain which is quantum-resistant decentralized PKI system using blockchain.
We propose modified lattice-based GLP signature scheme.
QChain uses modified GLP signature which uses Number Theoretic Transformation NTT.
We compare currently used X.
However, the huge volume of the threat intelligence data makes incident responder of some organization difficult to utilize those cyber threat intelligence effectively.
To realize this system, we propose a machine learning and natural language processing techniques to generate actionable threat intelligence using social media and other publicly available information sources.
In this paper, we tried to validate this approach with the prototype of the system.
We extracted 65 keywords from more than 800 CVE descriptions of National Vulnerability Database using TFIDF algorithm.
With the help of these keywords, we have retrieved nearly 230,000 tweets using Twitter API during the period of 4 days, from which we were able to extract actionable intelligence.
Accordingly, new security proof tools and notions in the quantum setting need to be settled in order to prove the security of cryptographic primitives appropriately.
As the random oracle model is accepted as an efficient security proof tool, it has been suggested to extend it from classical to quantum setting by allowing adversary's access to quantum power.
In this paper, we look at the background of classical, quantum-accessible, and quantum random oracle models for classical, post-quantum, and quantum cryptography, respectively, and how they are defined.
Finally, comparison of different cryptography eras are provided.
Uze Trillium Incorporated In-Vehicle Networks IVN were originally designed to be operated in a closed network environment.
However, now they are increasingly connected directly or indirectly to the Internet.
Due to its public access nature, connectivity creates several security vulnerabilities.
In this paper we present a hybrid hardware-software security architecture for protecting in-vehicle communications.
To validate and optimize this solution, an IVN facsimile has been created for extensive real world testing outside of vehicles.
IVN consist of many ECU with different security capabilities.
For this reason, we propose a series of different security strategies for different types of ECU and thus have architected a highly configurable testing platform.
The problem is that to keep Internet resources such as domain name and server in the cloud running, it requires the developer to pay and maintain the resource.
Meanwhile, the trend in current mobile application development is that after the developer published the application, they do not maintain it afterwards.
If the developer does not renew it then this resource will be released and obtainable by others.
The potential victim of hijacking this resource is the remaining user that are still using the app.
In addition to this, depending on the previous owner and how the developer use the resource, the changing ownership on this resource and the prevalence of the effect will vary.
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Using recent advances on cryptocurrencies and blockchain technologies, Andrychowiczet al.
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CCS 2015 and Bentov et al.
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Our security proofs entail a combinatorial analysis of a class of forkable strings representing adversarial behavior tailored to synchronous and semi-synchronous blockchains that may be of independent interest in the context of security analysis of blockchain protocols.
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