EF框架轻松连接Access数据库,一键实现高效数据访问 (ef 连接access数据库连接)

EF框架是一个领先的面向对象的基于.NET平台开发的ORM框架,它为开发 .NET 应用程序提供了强大的支持,可以使开发人员无需过多考虑数据存储细节,从而专注于业务逻辑的实现。在EF的帮助下,我们可以轻松地操作各种数据库,实现高效数据访问,Access数据库也不例外。

作为一款流行的小型数据库,Access在企业级应用中使用的并不多。但考虑到个别小型应用的需求,以及对于Access数据的慕名,一些开发者仍旧需要使用EF框架连接Access数据库,继而实现高效的数据访问。通过本文的学习,你可以了解Access数据库在EF架构中的应用以及一些相应的使用技巧。

一、EF框架是什么

Entity Framework,简称EF,它是一个强大的ORM框架,它帮助程序开发人员在应用程序中与数据库进行交互,从而省去了在代码中编写大量的SQL命令的操作。通过EF框架,程序开发人员可以仅关注应用业务逻辑而不用关注数据库,这也正是EF框架能够为开发人员所推崇的“对象关系映射”(ORM)。

二、Access数据库在EF框架中的使用

1. 设置环境

需要确认Access数据库在计算机中的安装和供应商是否可用。前者是指Access数据库文件的安装问题,用户需要在计算机中安装Access数据库软件,然后在程序中让EF框架引用访问安装的Access数据库文件。后者是指供应商驱动是否可用,这里使用的是OleDbProvider,它已经内置在.NET framework中,直接引用即可。

2. 建立数据模型

数据模型是EF框架的核心部分,它是程序开发人员将数据映射到对象的桥梁。同样地,建立好数据模型也是连接Access数据库的关键步骤。

程序开发人员在设计模型时可以使用以下两种方法:

(1)数据库优先:首先设计数据库架构,然后再将EF模型映射到这个数据库。这种方法对于已有的数据库比较有意义,特别是对于已经存在的复杂数据库环境。

(2)模型优先:开发人员先设计EF模型,然后再通过EF框架生成数据库架构。这种方法对于软件开发人员较为常见。

无论是直接从数据库中跟踪下来还是开发人员自己建立,EF模型的本质目的就是通过代理生成语句,从而实现与数据库的交互实现,如下所示:

“`

public class SchoolContext : DbContext

{

public SchoolContext() : base(“name=SchoolDBConnectionString”)

{

}

public DbSet Students { get; set; }

public DbSet Standards { get; set; }

}

“`

这是EF框架定义一个DbContext 的一个范例,可以看到,在其中定义了DbContext的名称和连接字符串,并给定了包含在DbContext中所需要的两个数据集属性。在这个代码片段中可以看到,内部的DbSet属性定义了Student和Standard两个类,前者表示一名学生的信息,后者表示它所在的班级的相关信息。需要注意的是,Student和Standard这两个类都是继承自DataContext的。

3. 数据库上下文

Access数据库在EF框架中的使用与其他数据库有些不同之处,最主要的就是需要使用元数据,它是EF框架与Office的连接接口,下面给出代码对其进行定义:

“`

using System;

using System.Collections.Generic;

using System.ComponentModel.DataAnnotations.Schema;

using System.Data.Entity;

using System.Data.Entity.Infrastructure.Annotations;

using System.Data.Entity.ModelConfiguration.Conventions;

using System.Linq;

using System.Text;

using System.Threading.Tasks;

using System.Data.OleDb;

namespace AccessDatabaseDemo

{

public class AccessDBContext : DbContext

{

public AccessDBContext() : base(“AccessDBContext”)

{

Database.SetInitializer(null);

}

///

/// 学生表

///

public DbSet Students { get; set; }

///

/// 教师表

///

public DbSet Teachers { get; set; }

///

/// 课程表

///

public DbSet Courses { get; set; }

protected override void OnModelCreating(DbModelBuilder modelBuilder)

{

modelBuilder.Conventions.Remove();

modelBuilder.HasDefaultSchema(“school”);

//定义学生表-与学号(Id)字段自动递增(IDENTITY)

modelBuilder.Entity()

.HasKey(s => s.Id)

.Property(s => s.Id)

.HasColumnAnnotation(“Index”, new IndexAnnotation(new IndexAttribute() { IsClustered = true, IsUnique = true }))

.HasColumnType(“INT”)

.HasDatabaseGeneratedOption(DatabaseGeneratedOption.Identity);

}

public DbSet GetEntitySet()

where TEntity : class

{

var typeName = typeof(TEntity).Name;

var param = new OleDbParameter(“@p0”, typeName);

var context = ((IObjectContextAdapter)this).ObjectContext;

var setMethod = GetType().GetMethod(“Set”);

var generic = setMethod.MakeGenericMethod(typeof(TEntity));

return (DbSet)generic.Invoke(this, null);

}

protected override bool ShouldValidateEntity(DbEntityEntry entityEntry)

{

return !base.ShouldValidateEntity(entityEntry) || entityEntry.State == EntityState.Modified;

}

public bool Save(IEnumerable entitys)

{

using (var db = new AccessDBContext())

{

db.Configuration.AutoDetectChangesEnabled = false;

foreach (var entity in entitys)

db.Entry(entity).State = entity.Id > 0 ? EntityState.Modified : EntityState.Added;

try

{

db.SaveChanges();

return true;

}

catch (Exception ex)

{

throw new Exception(“写入出现错误!”, ex);

}

finally

{

db.Configuration.AutoDetectChangesEnabled = true;

}

}

}

}

}

“`

在上述代码中,AccessDBContext定义了用来访问Access数据库的DbContext。 DbSet, DbSet 和 DbSet 定义了用来访问这三张表的DbSet属性。

定义抽象的Entity基类,不过,它实际上是基于access数据库来定义的,因此有些细微区别。例如,它的ID属性必须是long类型的,并且必须具有自增长(Identity)属性,因为access不支持SEQUENCE。在AccessDBContext类中,定义了GetEntitySet() 方法,用于反射出给定类型的DbSet。 GetEntitySet() 方法获取EntityType的名称,并使用此名称来调用AccessDBContext.Set()方法以返回指定类型的DbSet。

另外,定义了Save(IEnumerable\ entitys) 方法,它包含了foreach循环,遍历实体,将实体的状态设置为修改状态或新增状态。EF框架直到才统一调用SaveChanges() 进行保存更改,同时使用异常来确保数据的完整性。

4. 使用EF框架连接Access数据库

EF框架连接Access数据库的实现通常需要以下几个步骤:

(1)使用OleDbConnection类定义连接字符串,其连接语法与SQL Server的略有不同。以下是一个连接到Access数据库的示例:

“`

private static string connStr = @”Provider=Microsoft.Jet.OLEDB.4.0;Data Source=../Data/Student.mdb”;

“`

通过该连接字符串,程序开发人员可以通过OleDbConnection类来实例化一个OleDbDataAdapter对象,从而继续执行查询等相关的操作。

(2)使用LINQ

使用EF框架连接Access数据库时,开发人员一般使用LINQ语句进行数据访问操作。调用EF框架提供的方法,即可实现用于访问Access数据库的LINQ语句,如下所示:

“`

using (var context = new AccessDBContext())

{

var students = context.Students.Where(x => x.Age > 20).ToList();

foreach (var student in students)

{

Console.WriteLine(student.Id + ” ” +

student.Name + ” ” +

student.Age + ” ” +

student.Description);

}

}

“`

上述代码是使用EF框架向Access数据库查询符合条件的学生信息的代码片段,其中,context是定义的AccessDBContext实例。在LINQ查询中,Where()方法用于指定查询条件,ToList()方法用于将查询结果转化为List对象。查询结果可以使用foreach循环逐条输出。

(3)使用SQL查询

如果开发人员详细了解Access数据库的结构,也可以考虑使用带有SQL查询的方法来连接Access数据库,此时必须用到DbContext.Database.ExecuteSqlCommand() 方法。一个具体的示例脚本如下所示:

“`

using (var db = new AccessDBContext())

{

string sql = “UPDATE students SET name = @p0 where id = @p1”;

if (DbContext.Database.ExecuteSqlCommand(

sql,

new OleDbParameter(“@p0”, “Bart Simpson”),

new OleDbParameter(“@p1”, 7)) > 0)

{

Console.WriteLine(“Student record successfully updated”);

}

}

“`

以上示例中,使用了DbContext.Database.ExecuteSqlCommand()方法,将SQL命令传递到Access数据库服务器,并执行相应的操作。

相关问题拓展阅读:

access数据库问题?

将其读出存在session里,提出长度,然后在你要显示的框里显示同长度的*.

用MD5加密以下为MD5文件内的源代码,然后在别的网页中嵌入,用md5(字段名)就可以实现加密效果了

--------------------

31 Then

Err.Raise 6

End If

If (lValue And m_l2Power(31 – iShiftBits)) Then

LShift = ((lValue And m_lOnBits(31 – (iShiftBits + 1))) * m_l2Power(iShiftBits)) Or &H

Else

LShift = ((lValue And m_lOnBits(31 – iShiftBits)) * m_l2Power(iShiftBits))

End If

End Function

Private Function RShift(lValue, iShiftBits)

If iShiftBits = 0 Then

RShift = lValue

Exit Function

ElseIf iShiftBits = 31 Then

If lValue And &HThen

RShift = 1

Else

RShift = 0

End If

Exit Function

ElseIf iShiftBits 31 Then

Err.Raise 6

End If

RShift = (lValue And &H7FFFFFFE) \ m_l2Power(iShiftBits)

If (lValue And &H) Then

RShift = (RShift Or (&H\ m_l2Power(iShiftBits – 1)))

End If

End Function

Private Function RotateLeft(lValue, iShiftBits)

RotateLeft = LShift(lValue, iShiftBits) Or RShift(lValue, (32 – iShiftBits))

End Function

Private Function AddUnsigned(lX, lY)

Dim lX4

Dim lY4

Dim lX8

Dim lY8

Dim lResult

lX8 = lX And &H

lY8 = lY And &H

lX4 = lX And &H

lY4 = lY And &H

lResult = (lX And &H3FFFFFFF) + (lY And &H3FFFFFFF)

If lX4 And lY4 Then

lResult = lResult Xor &HXor lX8 Xor lY8

ElseIf lX4 Or lY4 Then

If lResult And &HThen

lResult = lResult Xor &HCXor lX8 Xor lY8

Else

lResult = lResult Xor &HXor lX8 Xor lY8

End If

Else

lResult = lResult Xor lX8 Xor lY8

End If

AddUnsigned = lResult

End Function

Private Function md5_F(x, y, z)

md5_F = (x And y) Or ((Not x) And z)

End Function

Private Function md5_G(x, y, z)

md5_G = (x And z) Or (y And (Not z))

End Function

Private Function md5_H(x, y, z)

md5_H = (x Xor y Xor z)

End Function

Private Function md5_I(x, y, z)

md5_I = (y Xor (x Or (Not z)))

End Function

Private Sub md5_FF(a, b, c, d, x, s, ac)

a = AddUnsigned(a, AddUnsigned(AddUnsigned(md5_F(b, c, d), x), ac))

a = RotateLeft(a, s)

a = AddUnsigned(a, b)

End Sub

Private Sub md5_GG(a, b, c, d, x, s, ac)

a = AddUnsigned(a, AddUnsigned(AddUnsigned(md5_G(b, c, d), x), ac))

a = RotateLeft(a, s)

a = AddUnsigned(a, b)

End Sub

Private Sub md5_HH(a, b, c, d, x, s, ac)

a = AddUnsigned(a, AddUnsigned(AddUnsigned(md5_H(b, c, d), x), ac))

a = RotateLeft(a, s)

a = AddUnsigned(a, b)

End Sub

Private Sub md5_II(a, b, c, d, x, s, ac)

a = AddUnsigned(a, AddUnsigned(AddUnsigned(md5_I(b, c, d), x), ac))

a = RotateLeft(a, s)

a = AddUnsigned(a, b)

End Sub

Private Function ConvertToWordArray(sMessage)

Dim lMessageLength

Dim lNumberOfWords

Dim lWordArray()

Dim lBytePosition

Dim lByteCount

Dim lWordCount

Const MODULUS_BITS = 512

Const CONGRUENT_BITS = 448

lMessageLength = Len(sMessage)

lNumberOfWords = (((lMessageLength + ((MODULUS_BITS – CONGRUENT_BITS) \ BITS_TO_A_BYTE)) \ (MODULUS_BITS \ BITS_TO_A_BYTE)) + 1) * (MODULUS_BITS \ BITS_TO_A_WORD)

ReDim lWordArray(lNumberOfWords – 1)

lBytePosition = 0

lByteCount = 0

Do Until lByteCount >= lMessageLength

lWordCount = lByteCount \ BYTES_TO_A_WORD

lBytePosition = (lByteCount Mod BYTES_TO_A_WORD) * BITS_TO_A_BYTE

lWordArray(lWordCount) = lWordArray(lWordCount) Or LShift(Asc(Mid(sMessage, lByteCount + 1, 1)), lBytePosition)

lByteCount = lByteCount + 1

Loop

lWordCount = lByteCount \ BYTES_TO_A_WORD

lBytePosition = (lByteCount Mod BYTES_TO_A_WORD) * BITS_TO_A_BYTE

lWordArray(lWordCount) = lWordArray(lWordCount) Or LShift(&H80, lBytePosition)

lWordArray(lNumberOfWords – 2) = LShift(lMessageLength, 3)

lWordArray(lNumberOfWords – 1) = RShift(lMessageLength, 29)

ConvertToWordArray = lWordArray

End Function

Private Function WordToHex(lValue)

Dim lByte

Dim lCount

For lCount = 0 To 3

lByte = RShift(lValue, lCount * BITS_TO_A_BYTE) And m_lOnBits(BITS_TO_A_BYTE – 1)

WordToHex = WordToHex & Right(“0” & Hex(lByte), 2)

Next

End Function

Public Function MD5(sMessage)

m_lOnBits(0) = CLng(1)

m_lOnBits(1) = CLng(3)

m_lOnBits(2) = CLng(7)

m_lOnBits(3) = CLng(15)

m_lOnBits(4) = CLng(31)

m_lOnBits(5) = CLng(63)

m_lOnBits(6) = CLng(127)

m_lOnBits(7) = CLng(255)

m_lOnBits(8) = CLng(511)

m_lOnBits(9) = CLng(1023)

m_lOnBits(10) = CLng(2023)

m_lOnBits(11) = CLng(4095)

m_lOnBits(12) = CLng(8191)

m_lOnBits(13) = CLng(16383)

m_lOnBits(14) = CLng(32767)

m_lOnBits(15) = CLng(65535)

m_lOnBits(16) = CLng(131071)

m_lOnBits(17) = CLng(262143)

m_lOnBits(18) = CLng(524287)

m_lOnBits(19) = CLng()

m_lOnBits(20) = CLng()

m_lOnBits(21) = CLng()

m_lOnBits(22) = CLng()

m_lOnBits(23) = CLng()

m_lOnBits(24) = CLng()

m_lOnBits(25) = CLng()

m_lOnBits(26) = CLng()

m_lOnBits(27) = CLng()

m_lOnBits(28) = CLng()

m_lOnBits(29) = CLng()

m_lOnBits(30) = CLng()

m_l2Power(0) = CLng(1)

m_l2Power(1) = CLng(2)

m_l2Power(2) = CLng(4)

m_l2Power(3) = CLng(8)

m_l2Power(4) = CLng(16)

m_l2Power(5) = CLng(32)

m_l2Power(6) = CLng(64)

m_l2Power(7) = CLng(128)

m_l2Power(8) = CLng(256)

m_l2Power(9) = CLng(512)

m_l2Power(10) = CLng(1024)

m_l2Power(11) = CLng(2023)

m_l2Power(12) = CLng(4096)

m_l2Power(13) = CLng(8192)

m_l2Power(14) = CLng(16384)

m_l2Power(15) = CLng(32768)

m_l2Power(16) = CLng(65536)

m_l2Power(17) = CLng(131072)

m_l2Power(18) = CLng(262144)

m_l2Power(19) = CLng(524288)

m_l2Power(20) = CLng()

m_l2Power(21) = CLng()

m_l2Power(22) = CLng()

m_l2Power(23) = CLng()

m_l2Power(24) = CLng()

m_l2Power(25) = CLng()

m_l2Power(26) = CLng()

m_l2Power(27) = CLng()

m_l2Power(28) = CLng()

m_l2Power(29) = CLng()

m_l2Power(30) = CLng()

Dim x

Dim k

Dim AA

Dim BB

Dim CC

Dim DD

Dim a

Dim b

Dim c

Dim d

Const S11 = 7

Const S12 = 12

Const S13 = 17

Const S14 = 22

Const S21 = 5

Const S22 = 9

Const S23 = 14

Const S24 = 20

Const S31 = 4

Const S32 = 11

Const S33 = 16

Const S34 = 23

Const S41 = 6

Const S42 = 10

Const S43 = 15

Const S44 = 21

x = ConvertToWordArray(sMessage)

a = &H

b = &HEFCDAB89

c = &H98BADCFE

d = &H

For k = 0 To UBound(x) Step 16

AA = a

BB = b

CC = c

DD = d

md5_FF a, b, c, d, x(k + 0), S11, &HD76AA478

md5_FF d, a, b, c, x(k + 1), S12, &HE8C7B756

md5_FF c, d, a, b, x(k + 2), S13, &H242023DB

md5_FF b, c, d, a, x(k + 3), S14, &HC1BDCEEE

md5_FF a, b, c, d, x(k + 4), S11, &HF57C0FAF

md5_FF d, a, b, c, x(k + 5), S12, &H4787C62A

md5_FF c, d, a, b, x(k + 6), S13, &HA

md5_FF b, c, d, a, x(k + 7), S14, &HFD469501

md5_FF a, b, c, d, x(k + 8), S11, &H698098D8

md5_FF d, a, b, c, x(k + 9), S12, &H8B44F7AF

md5_FF c, d, a, b, x(k + 10), S13, &HFFFF5BB1

md5_FF b, c, d, a, x(k + 11), S14, &H895CD7BE

md5_FF a, b, c, d, x(k + 12), S11, &H6B901122

md5_FF d, a, b, c, x(k + 13), S12, &HFD987193

md5_FF c, d, a, b, x(k + 14), S13, &HA679438E

md5_FF b, c, d, a, x(k + 15), S14, &H49B40821

md5_GG a, b, c, d, x(k + 1), S21, &HF61E2562

md5_GG d, a, b, c, x(k + 6), S22, &HC040B340

md5_GG c, d, a, b, x(k + 11), S23, &H265E5A51

md5_GG b, c, d, a, x(k + 0), S24, &HE9B6C7AA

md5_GG a, b, c, d, x(k + 5), S21, &HD62F105D

md5_GG d, a, b, c, x(k + 10), S22, &H

md5_GG c, d, a, b, x(k + 15), S23, &HD8A1E681

md5_GG b, c, d, a, x(k + 4), S24, &HE7D3FBC8

md5_GG a, b, c, d, x(k + 9), S21, &H21E1CDE6

md5_GG d, a, b, c, x(k + 14), S22, &HC33707D6

md5_GG c, d, a, b, x(k + 3), S23, &HF4D50D87

md5_GG b, c, d, a, x(k + 8), S24, &H455A14ED

md5_GG a, b, c, d, x(k + 13), S21, &HA9E3E905

md5_GG d, a, b, c, x(k + 2), S22, &HFCEFA3F8

md5_GG c, d, a, b, x(k + 7), S23, &H676F02D9

md5_GG b, c, d, a, x(k + 12), S24, &H8D2A4C8A

md5_HH a, b, c, d, x(k + 5), S31, &HFFFA3942

md5_HH d, a, b, c, x(k + 8), S32, &H8771F681

md5_HH c, d, a, b, x(k + 11), S33, &H6D9D6122

md5_HH b, c, d, a, x(k + 14), S34, &HFDE5380C

md5_HH a, b, c, d, x(k + 1), S31, &HA4BEEA44

md5_HH d, a, b, c, x(k + 4), S32, &H4BDECFA9

md5_HH c, d, a, b, x(k + 7), S33, &HF6BB4B60

md5_HH b, c, d, a, x(k + 10), S34, &HBEBFBC70

md5_HH a, b, c, d, x(k + 13), S31, &H289B7EC6

md5_HH d, a, b, c, x(k + 0), S32, &HEAA127FA

md5_HH c, d, a, b, x(k + 3), S33, &HD4EF3085

md5_HH b, c, d, a, x(k + 6), S34, &H4881D05

md5_HH a, b, c, d, x(k + 9), S31, &HD9D4D039

md5_HH d, a, b, c, x(k + 12), S32, &HE6DB99E5

md5_HH c, d, a, b, x(k + 15), S33, &H1FA27CF8

md5_HH b, c, d, a, x(k + 2), S34, &HC4AC5665

md5_II a, b, c, d, x(k + 0), S41, &HF

md5_II d, a, b, c, x(k + 7), S42, &H432AFF97

md5_II c, d, a, b, x(k + 14), S43, &HAB9423A7

md5_II b, c, d, a, x(k + 5), S44, &HFC93A039

md5_II a, b, c, d, x(k + 12), S41, &H655B59C3

md5_II d, a, b, c, x(k + 3), S42, &H8F0CCC92

md5_II c, d, a, b, x(k + 10), S43, &HFFEFF47D

md5_II b, c, d, a, x(k + 1), S44, &H85845DD1

md5_II a, b, c, d, x(k + 8), S41, &H6FA87E4F

md5_II d, a, b, c, x(k + 15), S42, &HFE2CE6E0

md5_II c, d, a, b, x(k + 6), S43, &HA

md5_II b, c, d, a, x(k + 13), S44, &H4E0811A1

md5_II a, b, c, d, x(k + 4), S41, &HF7537E82

md5_II d, a, b, c, x(k + 11), S42, &HBD3AF235

md5_II c, d, a, b, x(k + 2), S43, &H2AD7D2BB

md5_II b, c, d, a, x(k + 9), S44, &HEB86D391

a = AddUnsigned(a, AA)

b = AddUnsigned(b, BB)

c = AddUnsigned(c, CC)

d = AddUnsigned(d, DD)

Next

MD5 = LCase(WordToHex(a) & WordToHex(b) & WordToHex(c) & WordToHex(d))

‘ MD5=LCase(WordToHex(b) & WordToHex(c)) ‘I crop this to fit 16byte database password 😀

End Function

%>

要是读出来的密码是数字的形式那你要读出密码做什么呢?

你的目的是什么呢?

再不你可以把读出的数据放在密码框里就应该可以了显示为星号了。

我的qq群:是讨论asp的,

是讨论 asp.net的。欢迎大家加入啊

ef 连接access数据库连接的介绍就聊到这里吧,感谢你花时间阅读本站内容,更多关于ef 连接access数据库连接,EF框架轻松连接Access数据库,一键实现高效数据访问,access数据库问题?的信息别忘了在本站进行查找喔。


数据运维技术 » EF框架轻松连接Access数据库,一键实现高效数据访问 (ef 连接access数据库连接)