• Title/Summary/Keyword: B tree

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A File/Directory Reconstruction Method of APFS Filesystem for Digital Forensics

  • Cho, Gyu-Sang;Lim, Sooyeon
    • International Journal of Internet, Broadcasting and Communication
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    • v.14 no.3
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    • pp.8-16
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    • 2022
  • In this paper, we propose a method of reconstructing the file system to obtain digital forensics information from the APFS file system when meta information that can know the structure of the file system is deleted due to partial damage to the disk. This method is to reconstruct the tree structure of the file system by only retrieving the B-tree node where file/directory information is stored. This method is not a method of constructing nodes based on structural information such as Container Superblock (NXSB) and Volume Checkpoint Superblock (APSB), and B-tree root and leaf node information. The entire disk cluster is traversed to find scattered B-tree leaf nodes and to gather all the information in the file system to build information. It is a method of reconstructing a tree structure of a file/directory based on refined essential data by removing duplicate data. We demonstrate that the proposed method is valid through the results of applying the proposed method by generating numbers of user files and directories.

Multicast Copy Network with Internet Buffered B-Tree(IBBT) Network (내부버퍼 B-Tree 네트워크를 사용한 멀티캐스트 복사망)

  • 신재구;손유익
    • Proceedings of the Korean Information Science Society Conference
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    • 2001.04a
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    • pp.490-492
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    • 2001
  • 본 논문은 ATM 멀티캐스트 스위치를 위한 새로운 복사망을 제안하였다. Lee의 복사망과 그 이후 제안된 복사망에서 문제가 된 오버플로우와 충돌 문제를 해결하기 위해 다중경로와 다중출력을 갖는 B-tree 네트워크를 사용하였다. 또한 높은 부하에도 충돌을 줄이고 복사망의 성능을 높이기 위해 B-Tree 네트워크의 각 SE에 출력 및 공유 버퍼 성격을 지닌 크로스포인트 버퍼를 추가한 IBBT 네트워크를 제안하였다. 제안된 복사망은 Lee의 복사망의 특성을 유지하며, 이 IBBT 네트워크를 복사망의 BBN에 적용하고, 셀 분할 알고리즘을 사용하여 복사망의 성능을 향상 시켰다.

aCN-RB-tree: Constrained Network-Based Index for Spatio-Temporal Aggregation of Moving Object Trajectory

  • Lee, Dong-Wook;Baek, Sung-Ha;Bae, Hae-Young
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • v.3 no.5
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    • pp.527-547
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    • 2009
  • Moving object management is widely used in traffic, logistic and data mining applications in ubiquitous environments. It is required to analyze spatio-temporal data and trajectories for moving object management. In this paper, we proposed a novel index structure for spatio-temporal aggregation of trajectory in a constrained network, named aCN-RB-tree. It manages aggregation values of trajectories using a constraint network-based index and it also supports direction of trajectory. An aCN-RB-tree consists of an aR-tree in its center and an extended B-tree. In this structure, an aR-tree is similar to a Min/Max R-tree, which stores the child nodes' max aggregation value in the parent node. Also, the proposed index structure is based on a constrained network structure such as a FNR-tree, so that it can decrease the dead space of index nodes. Each leaf node of an aR-tree has an extended B-tree which can store timestamp-based aggregation values. As it considers the direction of trajectory, the extended B-tree has a structure with direction. So this kind of aCN-RB-tree index can support efficient search for trajectory and traffic zone. The aCN-RB-tree can find a moving object trajectory in a given time interval efficiently. It can support traffic management systems and mining systems in ubiquitous environments.

Concurrency Control and Recovery Method of B+-Tree using Bulk Loading and Extended Lazy Deletion (일괄구성과 확장된 지연삭제를 이용한 B+-Tree의 동시성 제어 및 회복)

  • 김대일;김성희;조숙경;배해영
    • Proceedings of the Korean Information Science Society Conference
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    • 2000.04b
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    • pp.128-130
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    • 2000
  • B+-Tree는 데이트베이스 관리 시스템에서 대용량의 데이터를 관리하기 위해 가장 널리 사용되는 인덱스이다. 그런 기존의 B+-Tree는 데이터베이스의 초기 구성 및 재구성시 많은 비용이 들고, 또한 삭제 연산의 빈번한 발생시 색인 구조 변경연산의 발생빈도가 높아져 동시성이 떨어진다는 단점이 있다. 이러한 문제점을 해결하기 위해서 기존 대부분의 데이터베이스 관리시스템에서는 일괄구성과 지연삭제를 이용하고 있으나, 동시성 및 회복에 대한 처리가 미흡하여 실제 시스템에 적용하기에는 문제가 있다. 따라서 본 논문에서는 일괄구성과 지연삭제 방법을 적용한 B+-Tree에서의 동시성 및 회복기법을 제안한다. 제안된 기법은 일괄구성 시에 잠금의 부하와 연속적인 철회(Cascade Rollback)가 없고, 또한 지연 삭제기법을 확장함으로써 빈 페이지 리스트 관리에 대한 부하가 없으며, 삭제 연산에 대한 회복 시 논리적 복귀(Logical Undo)가 빨라지고 구현이 간단해진다는 장점이 있다.

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Relation between crown-length, tree-height, diameter Clear-bale length and the longest branch length in a Pinus densiflora stand (적송림(赤松林)에 있어서의 성장인자간(成長因子間)의 상관(相關))

  • Yim, Kyong Bin;Pack, Myong Kyu
    • Journal of Korean Society of Forest Science
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    • v.5 no.1
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    • pp.27-32
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    • 1966
  • Taking an opportunity of the application of clearcutting method, 140 red pine (Pinus densiflora Sieb. et Zucc.) trees grown at Chon-nam province, the southern part of South Korea, were fellen and the tree height, clear-bole length, D.B.H. diameter at base(0.2m above from the ground line) and the length of the longest branch were measured. The correlation between factors mentioned were analysed. The results are summarized as follows: 1. The correlation between crown length and tree height (r=0.821) was sinificant. 2. The correlation between the diameter at base and D.B.H. was highly significant (r=0.961). D.B.H. can be calculated from multiplying the diameter at base by 0.88. 3. A weak relation between D.B.H and tree height was abserved. 4. The positive correlation between tree height and clear-bole-length was calculated, but it was not sharp between D.B.H. and the length of the longest branch. 5. The height, basal area, D.B.H. and volume increment by tree class calculated from the data of the stem analysis are presented (Tab. 3~10).

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Effect of Node Size on the Performance of the B+-tree on Flash Memory (플래시 메모리 상에서 B+-트리 노드 크기 증가에 따른 성능 평가)

  • Park, Dong-Joo;Choi, Hae-Gi
    • The KIPS Transactions:PartA
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    • v.15A no.6
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    • pp.325-334
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    • 2008
  • Flash memory is widely used as a storage medium for mobile devices such as cell phones, MP3 players, PDA's due to its tiny size, low power consumption and shock resistant characteristics. Additionally, some computer manufacturers try to replace hard-disk drives used in Laptops or personal computers with flash memory. More recently, there are some literatures on developing a flash memory-aware $B^+$-tree index for an efficient key-based search in the flash memory storage system. They focus on minimizing the number of "overwrites" resulting from inserting or deleting a sequence of key values to/from the $B^+$-tree. However, in addition to this factor, the size of a physical page allocated to a node can affect the maintenance cost of the $B^+$-tree. In this paper, with diverse experiments, we compare and analyze the costs of construction and search of the $B^+$-tree and the space requirement on flash memory as the node size increases. We also provide sorting-based or non-sorting-based algorithms to be used when inserting a key value into the node and suggest an header structure of the index node for searching a given key inside it efficiently.

Efficiently Managing the B-tree using Write Pattern Conversion on NAND Flash Memory (낸드 플래시 메모리 상에서 쓰기 패턴 변환을 통한 효율적인 B-트리 관리)

  • Park, Bong-Joo;Choi, Hae-Gi
    • Journal of KIISE:Computer Systems and Theory
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    • v.36 no.6
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    • pp.521-531
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    • 2009
  • Flash memory has physical characteristics different from hard disk where two costs of a read and write operations differ each other and an overwrite on flash memory is impossible to be done. In order to solve these restrictions with software, storage systems equipped with flash memory deploy FTL(Flash Translation Layer) software. Several FTL algorithms have been suggested so far and most of them prefer sequential write pattern to random write pattern. In this paper, we provide a new technique to efficiently store and maintain the B-tree index on flash memory. The operations like inserts, deletes, updates of keys for the B-tree generate random writes rather than sequential writes on flash memory, leading to inefficiency to the B-tree maintenance. In our technique, we convert random writes generated by the B-tree into sequential writes and then store them to the write-buffer on flash memory. If the buffer is full later, some sequential writes in the buffer will be issued to FTL. Our diverse experimental results show that our technique outperforms the existing ones with respect to the I/O cost of flash memory.

AS B-tree: A study on the enhancement of the insertion performance of B-tree on SSD (AS B-트리: SSD를 사용한 B-트리에서 삽입 성능 향상에 관한 연구)

  • Kim, Sung-Ho;Roh, Hong-Chan;Lee, Dae-Wook;Park, Sang-Hyun
    • The KIPS Transactions:PartD
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    • v.18D no.3
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    • pp.157-168
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    • 2011
  • Recently flash memory has been being utilized as a main storage device in mobile devices, and flashSSDs are getting popularity as a major storage device in laptop and desktop computers, and even in enterprise-level server machines. Unlike HDDs, on flash memory, the overwrite operation is not able to be performed unless it is preceded by the erase operation to the same block. To address this, FTL(Flash memory Translation Layer) is employed on flash memory. Even though the modified data block is overwritten to the same logical address, FTL writes the updated data block to the different physical address from the previous one, mapping the logical address to the new physical address. This enables flash memory to avoid the high block-erase cost. A flashSSD has an array of NAND flash memory packages so it can access one or more flash memory packages in parallel at once. To take advantage of the internal parallelism of flashSSDs, it is beneficial for DBMSs to request I/O operations on sequential logical addresses. However, the B-tree structure, which is a representative index scheme of current relational DBMSs, produces excessive I/O operations in random order when its node structures are updated. Therefore, the original b-tree is not favorable to SSD. In this paper, we propose AS(Always Sequential) B-tree that writes the updated node contiguously to the previously written node in the logical address for every update operation. In the experiments, AS B-tree enhanced 21% of B-tree's insertion performance.

An Efficient Flash Memory B-Tree Supporting Very Cheap Node Updates (플래시 메모리 B-트리를 위한 저비용 노드 갱신 기법)

  • Lim, Seong-Chae
    • The Journal of the Korea Contents Association
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    • v.16 no.8
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    • pp.706-716
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    • 2016
  • Because of efficient space utilization and fast key search times, B-trees have been widely accepted for the use of indexes in HDD-based DBMSs. However, when the B-ree is stored in flash memory, its costly operations of node updates may impair the performance of a DBMS. This is because the random updates in B-tree's leaf nodes could tremendously enlarge I/O costs for the garbage collecting actions of flash storage. To solve the problem, we make all the parents of leaf nodes the virtual nodes, which are not stored physically. Rather than, those nodes are dynamically generated and buffered by referring to their child nodes, at their access times during key searching. By performing node updates and tree reconstruction within a single flash block, our proposed B-tree can reduce the I/O costs for garbage collection and update operations in flash. Moreover, our scheme provides the better performance of key searches, compared with earlier flash-based B-trees. Through a mathematical performance model, we verify the performance advantages of the proposed flash B-tree.

A Study on Multimedia Database Transmission Algorithm (멀티미디어 데이터베이스 전송 알고리즘에 관한 연구)

  • 최진탁
    • Journal of the Korea Computer Industry Society
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    • v.3 no.7
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    • pp.921-926
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    • 2002
  • B+-Tree is the most popular indexing method in DBMS to manage large size data in more efficiency. However the existing B+-Tree has shortcomings in there is overhead on DISK/IO when the first time of constructing DB or of making Index, and it lessens the concurrency if there are frequent delete operations so that the index structure also should be changed frequently. To solve these problems almost DBMS is using batch construction method and lazy deletion method. But to apply B+-Tree, which is using batch construction method and lazy deletion method, into DBMS the technique for controlling and recovering concurrency is necessary, but its researching is still unsatisfactory so that there is a problem on applying it into actual systems. On this paper I suggest the technique for controlling and recovering concurrency how to implement the batch construction method and the lazy deletion method in actual DBMS. Through the suggested technique there is no cascade rollback by using Pending list, it enhances the concurrency by enabling insertion and deletion for base table on every reconstruction, and it shortens transaction response time for user by using system queue which makes the batch constructing operation is processed not in user's transaction level but in system transaction level.

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