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NEW QUESTION: 1
What is the main focus of the Bell-LaPadula security model?
A. Availability
B. Integrity
C. Confidentiality
D. Accountability
Answer: C
Explanation:
The Bell-LaPadula model is a formal model dealing with confidentiality.
The Bell-LaPadula Model (abbreviated BLP) is a state machine model used for enforcing access control in government and military applications. It was developed by David Elliott
Bell and Leonard J. LaPadula, subsequent to strong guidance from Roger R. Schell to formalize the U.S. Department of Defense (DoD) multilevel security (MLS) policy. The model is a formal state transition model of computer security policy that describes a set of access control rules which use security labels on objects and clearances for subjects.
Security labels range from the most sensitive (e.g."Top Secret"), down to the least sensitive
(e.g., "Unclassified" or "Public").
The Bell-LaPadula model focuses on data confidentiality and controlled access to classified information, in contrast to the Biba Integrity Model which describes rules for the protection of data integrity. In this formal model, the entities in an information system are divided into subjects and objects.
The notion of a "secure state" is defined, and it is proven that each state transition preserves security by moving from secure state to secure state, thereby inductively proving that the system satisfies the security objectives of the model. The Bell-LaPadula model is built on the concept of a state machine with a set of allowable states in a computer network system. The transition from one state to another state is defined by transition functions.
A system state is defined to be "secure" if the only permitted access modes of subjects to objects are in accordance with a security policy. To determine whether a specific access mode is allowed, the clearance of a subject is compared to the classification of the object
(more precisely, to the combination of classification and set of compartments, making up the security level) to determine if the subject is authorized for the specific access mode.
The clearance/classification scheme is expressed in terms of a lattice. The model defines two mandatory access control (MAC) rules and one discretionary access control (DAC) rule with three security properties:
The Simple Security Property - a subject at a given security level may not read an object at a higher security level (no read-up).
The -property (read "star"-property) - a subject at a given security level must not write to any object at a lower security level (no write-down). The -property is also known as the
Confinement property.
The Discretionary Security Property - use of an access matrix to specify the discretionary access control.
The following are incorrect answers:
Accountability is incorrect. Accountability requires that actions be traceable to the user that performed them and is not addressed by the Bell-LaPadula model.
Integrity is incorrect. Integrity is addressed in the Biba model rather than Bell-Lapadula.
Availability is incorrect. Availability is concerned with assuring that data/services are available to authorized users as specified in service level objectives and is not addressed by the Bell-Lapadula model.
References:
CBK, pp. 325-326
AIO3, pp. 279 - 284
AIOv4 Security Architecture and Design (pages 333 - 336)
AIOv5 Security Architecture and Design (pages 336 - 338)
Wikipedia at https://en.wikipedia.org/wiki/Bell-La_Padula_model
NEW QUESTION: 2
What is NOT a major competitive differentiator in the value proposition of SPSS Decision Management?
A. Centralized analytical content repository
B. Web-based framework
C. Real time scoring service
D. Publishing analytical reports
Answer: A
NEW QUESTION: 3
Quality Requirements are generally:
A. Binary (on or off, present or not)
B. None of the above
C. Analogue (a range of acceptable values)
D. Either Analogue or Binary
Answer: C
NEW QUESTION: 4
開発チームがAWSのサーバーレスアプリケーションに取り組んでいます。潜在的な本番環境の問題をすばやく特定して修正するために、チームは、完全リリース前のテストとして、少数のユーザーに変更をロールアウトすることを決定します。 DevOpsエンジニアは、ダウンタイムと影響を最小限に抑えるソリューションを開発する必要があります。
要件を満たすために使用すべきソリューションは次のうちどれですか。 (2つ選択してください。)
A. 2つのターゲットグループを持つApplication Load Balancerを作成します。 Amazon API Gatewayプライベート統合用のApplication Load Balancerをセットアップします。 1つのターゲットグループを現在のバージョンに関連付け、もう1つのターゲットグループを新しいバージョンに関連付けます。着信トラフィックの10%を新しいバージョンにルーティングするようにAPI Gatewayを構成します。新しいバージョンが安定したら、すべてのトラフィックを新しいバージョンに送信し、古いバージョンをロードバランサーから切り離すようにAPI Gatewayを構成します。
B. 古いバージョンと新しいバージョンのAWS LambdaエンドポイントをポイントするフェイルオーバーレコードセットをAWS Route 53に作成します。着信トラフィックの10%を新しいバージョンにルーティングするようにRoute 53を構成します。新しいバージョンが安定したら、DNSレコードを更新して、すべてのトラフィックを新しいバージョンにルーティングします。
C. 2つのターゲットグループを持つELBネットワークロードバランサーを作成します。 Amazon API Gatewayプライベート統合用のネットワークロードバランサーをセットアップする1つのターゲットグループを現在のバージョンに関連付け、もう1つのターゲットグループを新しいバージョンに関連付けます。着信トラフィックの10%を新しいバージョンにルーティングするようにロードバランサーを構成します。新しいバージョンが安定したら、ロードバランサーから古いバージョンを切り離します。
D. Amazon API Gatewayで、カナリア設定を通常のデプロイのステージに追加して、カナリアリリースデプロイを作成します。着信トラフィックの10%をカナリアリリースにルーティングするようにAPI Gatewayを構成します。
カナリアリリースは安定していると見なされるため、本番リリースにプロモートします。
E. 現在のバージョンと新しいバージョンの両方を指すAWS Lambda関数のエイリアスを作成します。着信トラフィックの10%を新しいバージョンにルーティングするようにエイリアスを構成します。新しいバージョンは安定していると見なされるため、すべてのトラフィックを新しいバージョンにルーティングするようにエイリアスを更新します。
Answer: D,E
Explanation:
Explanation
https://docs.aws.amazon.com/lambda/latest/dg/configuration-aliases.html
https://docs.aws.amazon.com/apigateway/latest/developerguide/canary-release.html
https://aws.amazon.com/blogs/compute/implementing-canary-deployments-of-aws-lambda- functions-with-alias-traffic-shifting/