zoukankan      html  css  js  c++  java
  • python之路-----python操作 mysql

    ========================pymysql============================

    一.pymysql 基础

      安装命令:pip3 install pymysql -i https://pypi.douban.com/simple

    二.pymysql命令

     1.链接数据库

    conn = pymysql.connect(host='127.0.0.1', port=3306, user='school_spt', passwd='123456', db='school_info')   #返回个链接对象

     2.创建游标

    cursor = conn.cursor()

     3.sql拼接命令

    1.字符串拼接(不推荐使用该方式,容易被sql注入)
    user='root'
    pwd='123456'
    sql='select * from userinfo where password=%s and username=%s'%(pwd,user)
    
    2.pymysql命令自带拼接
    executsql命令, args)    #args可以是列表,元组或者字典
    
    列表:
    
    user='root'
    pwd='123456'
    sql='select * from userinfo where password=%s and username=%s'
    cursor.execute(sql,[pwd,user]) 
    元组
    user='root'
    pwd='123456'
    sql='select * from userinfo where password=%s and username=%s'
    cursor.execute(sql,(pwd,user)) 
    
    字典
    sql='select * from userinfo where password=%(password)s and username=%(username)s'
    cursor.execute(sql,({'password':pwd,'username':user}))

      4.查

    sql='select * from userinfo'
    res=cursor.execute(sql)   #返回受影响的行数
    #获取返回的数据
    cursor.fetchone()      #获取返回的第一行内容
    cursor.fetchmany(n)    #获取返回的前n行内容
    cursor.fetchall()          #获取返回的全部内容
    
    #返回的数据默认是元组形式,如果要以字典形式显示
    cursor = conn.cursor(cursor=pymysql.cursors.DictCursor)

      5.改(改,删,增)

    1.增
        sql=‘insert into userinfo(username,password) values(%s,%s)’
        cursor.execute(sql,('root','123'));   #单条插入
        也可以使用批量插入数据
        cursor.executemany(sql,[('root','123'),('root1','1234'),('root2','123')]);
    2.改,删没有批量执行命令,批量一般都使用单条执行
    3.增,删,改操作后,都需要使用 conn.commit()来确认提交数据

      6.execute会返回受影响的行数。一般不适用

      7.scroll 

      在fetch数据时按照顺序进行(类似生成器),可以使用cursor.scroll(num,mode)来移动游标位置,如:

    • cursor.scroll(1,mode='relative')  # 相对当前位置移动
    • cursor.scroll(2,mode='absolute') # 相对绝对位置移动

      8.获取最后的自增id值(lastrowid)

    id=cursor.lastrowid

      9.关闭游标和链接

    cursor.close()  #先关闭游标
    conn.close()    #再关闭连接 

     =====================================================================================================================

    ==============================SQLAchemy=========================================

    一.ORM框架

      ORM(Object Relational Mapping)对象关系映射,用于实现面向对象编程语言里不同类型系统的数据之间的转换。从效果上说,它其实是创建了一个可在编程语言里使用的--“虚拟对象数据库”。

      简单来说,ORM的作用是:

        1.提供简单的规则

        2.自动转换为sql语句

      ORM分为两类:

        1.code first :手动创建类和数据库  ----------->orm-------->表(根据代码生成对应的数据表)

        2.db first  :手动创建数据库以及表----------->orm框架------->自动生成类(根据表来生成对应的代码)

      ORM框架只是负责将代码转换为对应的sql语句,而链接数据库执行这些语句则需要其他的模块,如pymysql。

    二.SQLAchemy

      SQLAlchemy是Python编程语言下的一款ORM框架,该框架建立在数据库API之上,使用关系对象映射进行数据库操作,简言之便是:将对象转换成SQL,然后使用数据API执行SQL并获取执行结果。

      1.安装

    pip3 install SQLAlchemy

      2.SQLAchemy 结构

     SQLAlchemy本身无法操作数据库,其必须以来pymsql等第三方插件,Dialect用于和数据API进行交流,根据配置文件的不同调用不同的数据库API,从而实现对数据库的操作,如:

    MySQL-Python
        mysql+mysqldb://<user>:<password>@<host>[:<port>]/<dbname>
       
    pymysql
        mysql+pymysql://<username>:<password>@<host>/<dbname>[?<options>]
       
    MySQL-Connector
        mysql+mysqlconnector://<user>:<password>@<host>[:<port>]/<dbname>
       
    cx_Oracle
        oracle+cx_oracle://user:pass@host:port/dbname[?key=value&key=value...]
       
    更多详见:http://docs.sqlalchemy.org/en/latest/dialects/index.html

      3.SQLAchemy使用

      3.1 使用 Engine/ConnectionPooling/Dialect 进行数据库操作,Engine使用ConnectionPooling连接数据库,然后再通过Dialect执行SQL语句。

    from sqlalchemy import create_engine
      
      
    engine = create_engine("mysql+pymysql://root:123@127.0.0.1:3306/t1", max_overflow=5)
      
    # 执行SQL
    # cur = engine.execute(
    #     "INSERT INTO hosts (host, color_id) VALUES ('1.1.1.22', 3)"
    # )
      
    # 新插入行自增ID
    # cur.lastrowid
      
    # 执行SQL
    # cur = engine.execute(
    #     "INSERT INTO hosts (host, color_id) VALUES(%s, %s)",[('1.1.1.22', 3),('1.1.1.221', 3),]
    # )
      
      
    # 执行SQL
    # cur = engine.execute(
    #     "INSERT INTO hosts (host, color_id) VALUES (%(host)s, %(color_id)s)",
    #     host='1.1.1.99', color_id=3
    # )
      
    # 执行SQL
    # cur = engine.execute('select * from hosts')
    # 获取第一行数据
    # cur.fetchone()
    # 获取第n行数据
    # cur.fetchmany(3)
    # 获取所有数据
    # cur.fetchall()
    链接数据库,执行命令

      3.2 ORM功能使用

        使用 ORM/Schema Type/SQL Expression Language/Engine/ConnectionPooling/Dialect 所有组件对数据进行操作。根据类创建对象,对象转换成SQL,执行SQL。

    from sqlalchemy.ext.declarative import declarative_base
    from sqlalchemy import Column, Integer, String, ForeignKey, UniqueConstraint, Index
    from sqlalchemy.orm import sessionmaker, relationship
    from sqlalchemy import create_engine
     
    engine = create_engine("mysql+pymysql://root:123@127.0.0.1:3306/t1", max_overflow=5)
     
    Base = declarative_base()
     
    # 创建单表
    class Users(Base):
        __tablename__ = 'users'
        id = Column(Integer, primary_key=True)
        name = Column(String(32))
        extra = Column(String(16))
     
        __table_args__ = (
        UniqueConstraint('id', 'name', name='uix_id_name'),
            Index('ix_id_name', 'name', 'extra'),
        )
     
     
    # 一对多
    class Favor(Base):
        __tablename__ = 'favor'
        nid = Column(Integer, primary_key=True)
        caption = Column(String(50), default='red', unique=True)
     
     
    class Person(Base):
        __tablename__ = 'person'
        nid = Column(Integer, primary_key=True)
        name = Column(String(32), index=True, nullable=True)
        favor_id = Column(Integer, ForeignKey("favor.nid"))
     
     
    # 多对多
    class Group(Base):
        __tablename__ = 'group'
        id = Column(Integer, primary_key=True)
        name = Column(String(64), unique=True, nullable=False)
        port = Column(Integer, default=22)
     
     
    class Server(Base):
        __tablename__ = 'server'
     
        id = Column(Integer, primary_key=True, autoincrement=True)
        hostname = Column(String(64), unique=True, nullable=False)
     
     
    class ServerToGroup(Base):
        __tablename__ = 'servertogroup'
        nid = Column(Integer, primary_key=True, autoincrement=True)
        server_id = Column(Integer, ForeignKey('server.id'))
        group_id = Column(Integer, ForeignKey('group.id'))
     
     
    def init_db():
        Base.metadata.create_all(engine)
     
     
    def drop_db():
        Base.metadata.drop_all(engine)
    创建表

    注:设置外检的另一种方式 ForeignKeyConstraint(['other_id'], ['othertable.other_id'])

      3.2.2 操作表

    from sqlalchemy.ext.declarative import declarative_base
    from sqlalchemy import Column, Integer, String, ForeignKey, UniqueConstraint, Index
    from sqlalchemy.orm import sessionmaker, relationship
    from sqlalchemy import create_engine
    
    engine = create_engine("mysql+pymysql://root:123@127.0.0.1:3306/t1", max_overflow=5)
    
    Base = declarative_base()
    
    # 创建单表
    class Users(Base):
        __tablename__ = 'users'
        id = Column(Integer, primary_key=True)
        name = Column(String(32))
        extra = Column(String(16))
    
        __table_args__ = (
        UniqueConstraint('id', 'name', name='uix_id_name'),
            Index('ix_id_name', 'name', 'extra'),
        )
    
        def __repr__(self):
            return "%s-%s" %(self.id, self.name)
    
    # 一对多
    class Favor(Base):
        __tablename__ = 'favor'
        nid = Column(Integer, primary_key=True)
        caption = Column(String(50), default='red', unique=True)
    
        def __repr__(self):
            return "%s-%s" %(self.nid, self.caption)
    
    class Person(Base):
        __tablename__ = 'person'
        nid = Column(Integer, primary_key=True)
        name = Column(String(32), index=True, nullable=True)
        favor_id = Column(Integer, ForeignKey("favor.nid"))
        # 与生成表结构无关,仅用于查询方便
        favor = relationship("Favor", backref='pers')
    
    # 多对多
    class ServerToGroup(Base):
        __tablename__ = 'servertogroup'
        nid = Column(Integer, primary_key=True, autoincrement=True)
        server_id = Column(Integer, ForeignKey('server.id'))
        group_id = Column(Integer, ForeignKey('group.id'))
        group = relationship("Group", backref='s2g')
        server = relationship("Server", backref='s2g')
    
    class Group(Base):
        __tablename__ = 'group'
        id = Column(Integer, primary_key=True)
        name = Column(String(64), unique=True, nullable=False)
        port = Column(Integer, default=22)
        # group = relationship('Group',secondary=ServerToGroup,backref='host_list')
    
    
    class Server(Base):
        __tablename__ = 'server'
    
        id = Column(Integer, primary_key=True, autoincrement=True)
        hostname = Column(String(64), unique=True, nullable=False)
    
    
    
    
    def init_db():
        Base.metadata.create_all(engine)
    
    
    def drop_db():
        Base.metadata.drop_all(engine)
    
    
    Session = sessionmaker(bind=engine)
    session = Session()
    表结构 + 数据库连接
    obj = Users(name="alex0", extra='sb')
    session.add(obj)
    session.add_all([
        Users(name="alex1", extra='sb'),
        Users(name="alex2", extra='sb'),
    ])
    session.commit()
    session.query(Users).filter(Users.id > 2).delete()
    session.commit()
    session.query(Users).filter(Users.id > 2).update({"name" : "099"})
    session.query(Users).filter(Users.id > 2).update({Users.name: Users.name + "099"}, synchronize_session=False)
    session.query(Users).filter(Users.id > 2).update({"num": Users.num + 1}, synchronize_session="evaluate")
    session.commit()
    ret = session.query(Users).all()
    ret = session.query(Users.name, Users.extra).all()
    ret = session.query(Users).filter_by(name='alex').all()
    ret = session.query(Users).filter_by(name='alex').first()
    
    ret = session.query(Users).filter(text("id<:value and name=:name")).params(value=224, name='fred').order_by(User.id).all()
    
    ret = session.query(Users).from_statement(text("SELECT * FROM users where name=:name")).params(name='ed').all()
    # 条件
    ret = session.query(Users).filter_by(name='alex').all()
    ret = session.query(Users).filter(Users.id > 1, Users.name == 'eric').all()
    ret = session.query(Users).filter(Users.id.between(1, 3), Users.name == 'eric').all()
    ret = session.query(Users).filter(Users.id.in_([1,3,4])).all()
    ret = session.query(Users).filter(~Users.id.in_([1,3,4])).all()
    ret = session.query(Users).filter(Users.id.in_(session.query(Users.id).filter_by(name='eric'))).all()
    from sqlalchemy import and_, or_
    ret = session.query(Users).filter(and_(Users.id > 3, Users.name == 'eric')).all()
    ret = session.query(Users).filter(or_(Users.id < 2, Users.name == 'eric')).all()
    ret = session.query(Users).filter(
        or_(
            Users.id < 2,
            and_(Users.name == 'eric', Users.id > 3),
            Users.extra != ""
        )).all()
    
    
    # 通配符
    ret = session.query(Users).filter(Users.name.like('e%')).all()
    ret = session.query(Users).filter(~Users.name.like('e%')).all()
    
    # 限制
    ret = session.query(Users)[1:2]
    
    # 排序
    ret = session.query(Users).order_by(Users.name.desc()).all()
    ret = session.query(Users).order_by(Users.name.desc(), Users.id.asc()).all()
    
    # 分组
    from sqlalchemy.sql import func
    
    ret = session.query(Users).group_by(Users.extra).all()
    ret = session.query(
        func.max(Users.id),
        func.sum(Users.id),
        func.min(Users.id)).group_by(Users.name).all()
    
    ret = session.query(
        func.max(Users.id),
        func.sum(Users.id),
        func.min(Users.id)).group_by(Users.name).having(func.min(Users.id) >2).all()
    
    # 连表
    
    ret = session.query(Users, Favor).filter(Users.id == Favor.nid).all()
    
    ret = session.query(Person).join(Favor).all()
    
    ret = session.query(Person).join(Favor, isouter=True).all()
    
    
    # 组合
    q1 = session.query(Users.name).filter(Users.id > 2)
    q2 = session.query(Favor.caption).filter(Favor.nid < 2)
    ret = q1.union(q2).all()
    
    q1 = session.query(Users.name).filter(Users.id > 2)
    q2 = session.query(Favor.caption).filter(Favor.nid < 2)
    ret = q1.union_all(q2).all()
    补充
  • 相关阅读:
    Ubuntu配置sublime text 3的c编译环境
    ORA-01078错误举例:SID的大写和小写错误
    linux下多进程的文件拷贝与进程相关的一些基础知识
    ASM(四) 利用Method 组件动态注入方法逻辑
    基于Redis的三种分布式爬虫策略
    Go语言并发编程总结
    POJ2406 Power Strings 【KMP】
    nyoj 会场安排问题
    Server Tomcat v7.0 Server at localhost was unable to start within 45 seconds. If the server requires more time, try increasing the timeout in the server editor.
    Java的String、StringBuffer和StringBuilder的区别
  • 原文地址:https://www.cnblogs.com/white-small/p/7372793.html
Copyright © 2011-2022 走看看