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    • 2. 发明授权
    • Database system and method for supporting current of cursor updates and
deletes from a select query from one or more updatable tables in single
node and MPP environments
    • 用于支持单节点和MPP环境中一个或多个可更新表的选择查询中游标更新和删除的数据库系统和方法
    • US6085189A
    • 2000-07-04
    • US304024
    • 1999-05-03
    • Mir Hamid PiraheshDavid E. SimmenTuong Chanh Truong
    • Mir Hamid PiraheshDavid E. SimmenTuong Chanh Truong
    • G06F17/30
    • G06F17/3041G06F17/30365G06F17/30424Y10S707/99931Y10S707/99932Y10S707/99933Y10S707/99935
    • A database system and method provide support for a positioned data set modification operation on a collection of data sets involved in a data set query operation, in which the data set modification operation is based on the position of a query execution iterator. At query compile time, the database system generates an iterator position retrieval function and a data set modification function for each data set involved in the query operation. At query execution time, the database system invokes each of the iterator retrieval functions until the iterator position retrieval function for a current open data set returns the current the position of the query execution iterator on that data set. The database system then invokes each of the data set modification functions until the data set modification function for the current open data set performs a data set modification operation at the current position of the query execution iterator specified by the iterator position retrieval function. The system and method may be implemented on single node systems and on multi-node shared-nothing parallelism architectures.
    • 数据库系统和方法提供了对数据集查询操作中涉及的数据集合的定位数据集修改操作的支持,其中数据集修改操作基于查询执行迭代器的位置。 在查询编译时,数据库系统为查询操作中涉及的每个数据集生成迭代器位置检索功能和数据集修改功能。 在查询执行时,数据库系统调用每个迭代器检索函数,直到当前打开的数据集的迭代器位置检索函数返回当前查询执行迭代器在该数据集上的位置。 数据库系统然后调用每个数据集修改功能,直到当前打开的数据集的数据集修改功能在迭代器位置检索功能指定的查询执行迭代器的当前位置执行数据集修改操作。 系统和方法可以在单节点系统和多节点无共享平行架构上实现。
    • 3. 发明授权
    • Database system and method for supporting current of cursor updates and
deletes from a select query from one or more updatable tables in single
node and mpp environments
    • 用于支持来自单节点和mpp环境中的一个或多个可更新表的选择查询的游标更新和删除的数据库系统和方法
    • US5960426A
    • 1999-09-28
    • US884246
    • 1997-06-30
    • Mir Hamid PiraheshDavid E. SimmenTuong Chanh Truong
    • Mir Hamid PiraheshDavid E. SimmenTuong Chanh Truong
    • G06F17/30G06F17/00
    • G06F17/3041G06F17/30365G06F17/30424Y10S707/99931Y10S707/99932Y10S707/99933Y10S707/99935
    • A database system and method provide support for a positioned data set modification operation on a collection of data sets involved in a data set query operation, in which the data set modification operation is based on the position of a query execution iterator. At query compile time, the database system generates an iterator position retrieval function and a data set modification function for each data set involved in the query operation. At query execution time, the database system invokes each of the iterator retrieval functions until the iterator position retrieval function for a current open data set returns the current the position of the query execution iterator on that data set. The database system then invokes each of the data set modification functions until the data set modification function for the current open data set performs a data set modification operation at the current position of the query execution iterator specified by the iterator position retrieval function. The system and method may be implemented on single node systems and on multi-node shared-nothing parallelism architectures.
    • 数据库系统和方法提供了对数据集查询操作中涉及的数据集合的定位数据集修改操作的支持,其中数据集修改操作基于查询执行迭代器的位置。 在查询编译时,数据库系统为查询操作中涉及的每个数据集生成迭代器位置检索功能和数据集修改功能。 在查询执行时,数据库系统调用每个迭代器检索函数,直到当前打开的数据集的迭代器位置检索函数返回当前查询执行迭代器在该数据集上的位置。 数据库系统然后调用每个数据集修改功能,直到当前打开的数据集的数据集修改功能在迭代器位置检索功能指定的查询执行迭代器的当前位置执行数据集修改操作。 系统和方法可以在单节点系统和多节点无共享平行架构上实现。
    • 5. 发明授权
    • Evaluation of existential and universal subquery in a relational
database management system for increased efficiency
    • 在关系数据库管理系统中评估存在性和通用子查询,以提高效率
    • US6032143A
    • 2000-02-29
    • US206194
    • 1998-12-04
    • Ting Yu LeungAlex Chak-tsang LuiMir Hamid PiraheshTuong Chanh Truong
    • Ting Yu LeungAlex Chak-tsang LuiMir Hamid PiraheshTuong Chanh Truong
    • G06F17/30
    • G06F17/30463G06F17/30451G06F17/30545Y10S707/99932
    • A relational data base management system includes a query processor that permits consideration of alternative query plans by the query optimizer so one table can be sent to a selected network location for subquery evaluation in consideration of maximum processing efficiency. Subqueries are converted from "predicate push-down" form to scalar subqueries, enabling upper tables to be sent to nodes of lower tables and vice versa, thereby permitting selection of the node direction depending on the least cost alternative. The optimizer of the query processor is presented with rewritten query code that permits more than one alternative for sending tables for evaluation. The optimizer evaluates the alternatives permitted by the rewritten code, determines the optimal plan for each alternative, and selects the least-cost plan from among the plans evaluated. Thus, the optimizer can decide to send an outer table to where a subquery table is located, or can decide to send a subquery table to where an outer table is located, depending on which is more efficient.
    • 关系数据库管理系统包括查询处理器,其允许由查询优化器考虑替代查询计划,因此考虑到最大处理效率,可以将一个表发送到所选网络位置进行子查询评估。 子查询从“谓词下推”形式转换为标量子查询,使得上表可以发送到下表的节点,反之亦然,从而允许根据最低成本替代方案选择节点方向。 查询处理器的优化器被呈现为重写的查询代码,其允许用于发送表进行评估的多个替代方案。 优化器评估重写代码允许的替代方案,确定每个替代方案的最佳计划,并从评估的计划中选择最低成本计划。 因此,优化器可以决定将外部表发送到子查询表所在的位置,或者可以决定将子查询表发送到外部表所在的位置,具体取决于哪个更有效。
    • 9. 发明授权
    • Synchronization of SQL actions in a relational database system
    • 在关系数据库系统中同步SQL操作
    • US5873075A
    • 1999-02-16
    • US884832
    • 1997-06-30
    • Roberta Jo CochraneGeorge LapisMir Hamid PiraheshRichard Sefton SidleDavid Everett SimmenTuong Chanh TruongMonica Sachiye Urata
    • Roberta Jo CochraneGeorge LapisMir Hamid PiraheshRichard Sefton SidleDavid Everett SimmenTuong Chanh TruongMonica Sachiye Urata
    • G06F17/30
    • G06F17/30427G06F17/30371G06F17/30436G06F17/30471G06F17/3051Y10S707/99932
    • An automated system for detecting and preventing mutating table violations of database integrity in a SQL query before generation and selection of an optimal query execution plan (QEP). This system modifies the query graph model (QGM) to restrict the choice of execution plans to those that avoid mutating table integrity (MTI) violations, thereby forcing database integrity during table mutation when executing the optimal QEP. Mutating table integrity violations are detected by evaluating the position in the QGM of each write-node referencing a particular base table with respect to each of the positions of all other read- and write-nodes referencing of the same base table. Every common-referencing node pair is tested for sequencing conflicts and a data-flow dam is inserted in the QGM where necessary or a poke query is inserted between the nodes to force the completion of the execution of one node before initiating execution of the other common-referencing node. The system of this invention allows processing of all non-cyclic and most cyclic SQL queries known to cause mutating table integrity violations, such as queries having searched and positioned inserts, deletes and updates, and row-level triggers.
    • 一种用于在生成和选择最优查询执行计划(QEP)之前,在SQL查询中检测和防止突变表违反数据库完整性的自动化系统。 该系统修改查询图模型(QGM),将执行计划的选择限制为避免突变表完整性(MTI)违规的选择,从而在执行最佳QEP时强制表突变期间的数据库完整性。 通过评估参考相同基准表的所有其他读 - 写节点的每个位置的引用特定基表的每个写节点的QGM中的位置来检测突变表完整性违反。 每个公共参考节点对都进行排序冲突测试,并且数据流大坝插入到QGM中,如果需要,或者在节点之间插入一个戳查询,强制完成一个节点的执行,然后再启动另一个常见的执行 - 参考节点。 本发明的系统允许处理已知导致突变表完整性违例的所有非循环和大多数循环SQL查询,例如具有搜索和定位的插入,删除和更新的查询以及行级触发器。
    • 10. 发明授权
    • Method of optimizing a query having an existi subquery and a not-exists subquery
    • 优化具有exists子查询和不存在子查询的查询的方法
    • US06529896B1
    • 2003-03-04
    • US09506471
    • 2000-02-17
    • Ting Yu LeungTuong Chanh TruongMonica Sachiye Urata
    • Ting Yu LeungTuong Chanh TruongMonica Sachiye Urata
    • G06F1730
    • G06F17/30451G06F17/30463Y10S707/99932
    • An optimization technique for SQL queries, a program storage device storing the optimization program, and an apparatus for optimizing a query is provided. A query is analyzed to determine whether it includes the WHERE clause which contains an “EXISTS” subquery and a “NOT EXISTS” subquery, or EXISTS-equivalent subqueries, in Boolean factor. If so, the subsumption test is performed on two subqueries. Then, the compensation predicate is applied to one of them, to perform the QGM transformation of the query. One subquery block is stacked on top of the other subquery block, in order to eliminate one subquery. This procedure allows the transformed query to perform more efficiently than the original query while providing same results. The query is then executed in the computer to efficiently retrieve data from the relational database.
    • 提供了一种用于SQL查询的优化技术,存储优化程序的程序存储设备以及用于优化查询的设备。 分析查询以确定它是否包含WHERE子句,其中包含“EXISTS”子查询和“NOT EXISTS”子查询,或EXISTS等效的子查询(Boolean factor)。 如果是这样,则在两个子查询上执行包含测试。 然后,将补偿谓词应用于其中一个,执行查询的QGM转换。 一个子查询块堆叠在另一个子查询块的顶部,以消除一个子查询。 此过程允许转换的查询执行比原始查询更高效,同时提供相同的结果。 然后在计算机中执行查询以有效地从关系数据库检索数据。