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  • 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
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  • 原文地址:https://www.cnblogs.com/white-small/p/7372793.html
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