欢迎进入Oracle社区论坛,与200万技术人员互动交流 >>进入 如何使用Oracle的BFILE 1.创建相应的directory 使用具有足够权限的用处创建directory,具体参考:Using Create directory UTL_FILE in Oracle create or replace directory BFILE_DIR as '/home/oracl
欢迎进入Oracle社区论坛,与200万技术人员互动交流 >>进入
如何使用Oracle的BFILE1.创建相应的directory
使用具有足够权限的用处创建directory,具体参考:Using Create directory & UTL_FILE in Oracle
create or replace directory BFILE_DIR as
'/home/oracle/bfiletest';
[oracle@ts01 bfiletest]$ sqlplus '/ as sysdba'
SQL*Plus: Release 9.2.0.6.0 - Production on Mon Jan 23 10:54:17 2006
Copyright (c) 1982, 2002, Oracle Corporation. All rights reserved.
Connected to:
Oracle9i Enterprise Edition Release 9.2.0.6.0 - Production
With the Partitioning, OLAP and Oracle Data Mining options
JServer Release 9.2.0.6.0 - Production
SQL> show parameter utl_file_dir ***************9.2开始,已经废弃了这个参数
NAME TYPE VALUE
------------------------------------ ----------- ------------------------------
utl_file_dir string
SQL>
SQL> create or replace directory BFILE_DIR as
2 '/home/oracle/bfiletest';
Directory created.
Elapsed: 00:00:00.05
SQL>
SQL> col DIRECTORY_PATH for a50
SQL> select * from dba_directories;
OWNER DIRECTORY_NAME DIRECTORY_PATH
------------------------------ ------------------------------ --------------------------------------------------
SYS MEDIA_DIR /oracle/product/920/demo/schema/product_media/
SYS LOG_FILE_DIR /oracle/admin/TSMISC02/create/
SYS DATA_FILE_DIR /oracle/product/920/demo/schema/sales_history/
SYS KU$_STYLESHEET_DIR /oracle/product/920/rdbms/xml/xsl
SYS BFILE_DIR /home/oracle/bfiletest
Elapsed: 00:00:00.01
SQL>
2.给相应的用户授权
grant read on directory BFILE_DIR to lunar;
SQL> grant read on directory BFILE_DIR to lunar;
Grant succeeded.
Elapsed: 00:00:00.04
SQL>
3.检查相应的文件是否存在
host ls -l /home/oracle/bfiletest/bfiletest_file.txt
SQL> host ls -l /home/oracle/bfiletest/bfiletest_file.txt
-rw-r--r-- 1 root root 349 Oct 31 2003 /home/oracle/bfiletest/bfiletest_file.txt
SQL>
4.数据操作
BFILENAME函数的语法如下:BFILENAME('directory','filename')
该函数用以返回一个BFILE文件位置指针,指针和文件系统上的LOB binary文件相关联。
'directory' 是路径名,通过create directory方式创建。 'filename' 是文件系统上的文件名称
在你在SQL,PL/SQL或者DBMS_LOG包,或者OCI中使用BFILENAME函数之前,你必须创建相应的directory并且关联相应的物理文件.
以下是一个示例:
CREATE DIRECTORY media_dir AS '/demo/schema/product_media';
create table lunar_test (product_id number, ad_id number, ad_graphic bfile );
INSERT INTO print_media (product_id, ad_id, ad_graphic)
VALUES (3000, 31001, bfilename('MEDIA_DIR', 'modem_comp_ad.gif'));
参考:Oracle9i SQL Reference Release (9.2) Part Number A96540-02
再例如:
SQL> connect lunar/lunar
create table lunar_test (id number, bfiles bfile );
insert into lunar_test values ( 1, bfilename ( 'BFILE_DIR', 'bfiletest_file.txt' ) );
SQL> connect lunar/lunar
Connected.
SQL> create table lunar_test (id number, bfiles bfile );
Table created.
Elapsed: 00:00:00.03
SQL> insert into lunar_test values ( 1, bfilename ( 'BFILE_DIR', 'bfiletest_file.txt' ) );
1 row created.
Elapsed: 00:00:00.00
SQL> commit;
Commit complete.
Elapsed: 00:00:00.00
SQL>
declare
fhandle utl_file.file_type;
begin
fhandle := utl_file.fopen('BFILE_DIR', 'lunartest1.txt', 'w');
utl_file.put_line(fhandle , 'aaa');
utl_file.put_line(fhandle , 'bbb');
utl_file.fclose(fhandle);
end;
/
declare
fhandle utl_file.file_type;
fp_buffer varchar2(4000);
begin
fhandle := utl_file.fopen ('BFILE_DIR','lunartest1.txt', 'R');
utl_file.get_line (fhandle , fp_buffer );
dbms_output.put_line(fp_buffer );
utl_file.get_line (fhandle , fp_buffer );
dbms_output.put_line(fp_buffer );
utl_file.fclose(fhandle);
end;

MySQL's position in databases and programming is very important. It is an open source relational database management system that is widely used in various application scenarios. 1) MySQL provides efficient data storage, organization and retrieval functions, supporting Web, mobile and enterprise-level systems. 2) It uses a client-server architecture, supports multiple storage engines and index optimization. 3) Basic usages include creating tables and inserting data, and advanced usages involve multi-table JOINs and complex queries. 4) Frequently asked questions such as SQL syntax errors and performance issues can be debugged through the EXPLAIN command and slow query log. 5) Performance optimization methods include rational use of indexes, optimized query and use of caches. Best practices include using transactions and PreparedStatemen

MySQL is suitable for small and large enterprises. 1) Small businesses can use MySQL for basic data management, such as storing customer information. 2) Large enterprises can use MySQL to process massive data and complex business logic to optimize query performance and transaction processing.

InnoDB effectively prevents phantom reading through Next-KeyLocking mechanism. 1) Next-KeyLocking combines row lock and gap lock to lock records and their gaps to prevent new records from being inserted. 2) In practical applications, by optimizing query and adjusting isolation levels, lock competition can be reduced and concurrency performance can be improved.

MySQL is not a programming language, but its query language SQL has the characteristics of a programming language: 1. SQL supports conditional judgment, loops and variable operations; 2. Through stored procedures, triggers and functions, users can perform complex logical operations in the database.

MySQL is an open source relational database management system, mainly used to store and retrieve data quickly and reliably. Its working principle includes client requests, query resolution, execution of queries and return results. Examples of usage include creating tables, inserting and querying data, and advanced features such as JOIN operations. Common errors involve SQL syntax, data types, and permissions, and optimization suggestions include the use of indexes, optimized queries, and partitioning of tables.

MySQL is an open source relational database management system suitable for data storage, management, query and security. 1. It supports a variety of operating systems and is widely used in Web applications and other fields. 2. Through the client-server architecture and different storage engines, MySQL processes data efficiently. 3. Basic usage includes creating databases and tables, inserting, querying and updating data. 4. Advanced usage involves complex queries and stored procedures. 5. Common errors can be debugged through the EXPLAIN statement. 6. Performance optimization includes the rational use of indexes and optimized query statements.

MySQL is chosen for its performance, reliability, ease of use, and community support. 1.MySQL provides efficient data storage and retrieval functions, supporting multiple data types and advanced query operations. 2. Adopt client-server architecture and multiple storage engines to support transaction and query optimization. 3. Easy to use, supports a variety of operating systems and programming languages. 4. Have strong community support and provide rich resources and solutions.

InnoDB's lock mechanisms include shared locks, exclusive locks, intention locks, record locks, gap locks and next key locks. 1. Shared lock allows transactions to read data without preventing other transactions from reading. 2. Exclusive lock prevents other transactions from reading and modifying data. 3. Intention lock optimizes lock efficiency. 4. Record lock lock index record. 5. Gap lock locks index recording gap. 6. The next key lock is a combination of record lock and gap lock to ensure data consistency.


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