Introduction to Database Management Systems. Jeffrey D. Ullman Jean-Michel Busca
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1 Introduction to Database Management Systems Jeffrey D. Ullman Jean-Michel Busca V /09/09
2 Interesting Stuff About Databases It used to be about boring stuff: employee records, bank records, etc. Today, the field covers all the largest sources of data, with many new ideas. Web search. Scientific and medical databases. Data mining. Integrating information. 2
3 More Interesting Stuff Database programming centers around limited programming languages. Only area where non-turing-complete languages make sense. Leads to very succinct programming, but also to unique query-optimization problems. 3
4 Still More You may not notice it, but databases are behind almost everything you do on the Web. Google searches. Queries at Amazon, ebay, etc. 4
5 And More Databases often have unique concurrency-control problems Many activities (transactions) at the database at all times. Must not confuse actions, e.g., two withdrawals from the same account must each debit the account. 5
6 Why Use a Database Management System? 6
7 A Simplistic "Database" Assume you want to store your address book on your computer: Name, Telephone, Address John Smith, , 10 bank street NY, NY You don't need a DBMS for this, a plain CSV file or Excel file will do. Why? 7
8 A Simplistic "Database" (2) The structure of data is simple one relation, represented by lines no strong consistency constraints The set of data is small no performance issues a simple, linear search will do 8
9 A Simplistic "Database" (3) You are the only user: one update at a time you have access to every data item 9
10 Why use a DBMS? In contrast, a DBMS is designed to support very large data sets, with complex structure, accessed by many users. Let's see what issues are raised and how DBMSs address them. 10
11 Large Data Sets A DBMS implements sophisticated techniques to store and retrieve data efficiently (indexes, caching of data, of temporary results, etc.). It also allows to compile and store the code of the most common queries in order to execute them efficiently. 11
12 Complex Data Structures A DBMS defines some data model that allows to describe complex data structures and relationships among data provides an abstract view of the data that hides how data is actually stored It provides some Data Manipulation Language (DML) that allows to express complex queries / updates over data. 12
13 Complex Data Structures (2) It also provides a Data Definition Language (DDL) that allows to describe the data and their integrity constraints. It enforces integrity constraints on every update, thus preserving database consistency. 13
14 Many Users Concurrent access: a DBMS schedules concurrent accesses to the data so that users always get consistent results database consistency is always preserved Crash recovery: the database is a critical resource; a DBMS protects users from the effect of system failures. 14
15 Many Users (2) Access control: a DBMS manages privileges and roles that governs what data can be accessed by different classes of users. A DBMS also implements views that restrict the part of the database that specific classes of users can see. 15
16 A Bit of History 16
17 The Network Model First DBMSs implemented rudimentary data models. Early 60s: network data model data arranged in graphs standardized by CODASYL ex: Integrated Data Store (General Electric) 17
18 The Hierarchical Model Late 60s: hierarchical data model data arranged in trees ex: Information Management System (IBM) Those models were close to the actual implementation of data: queries were difficult to program and to maintain. 18
19 The Relational Model 1970: E. Codd defined the relational data model, still widely used today: data arranged in logical tables linked by (foreign) keys. Today, DBMS are evolving toward XMLor object-based data models to handle more complex structures or data types. 19
20 The Relational Model (2) The relational model is very popular because it has a strong mathematical background. Every query translates to one or more operations (selection, intersection, ) on sets (tables): relational algebra 20
21 The Relational Model (3) As a result: the semantics of queries is clear and nonambiguous, queries can be optimized using well-known mathematical transformations (query rewritting). 21
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