Files
Data-Coupler/DataConnection/DB/EF/EFCoreDatabaseManager.cs
T
Alessio 7346db3b63 feat: Implement ExistingDatabaseContext for managing existing databases with customizable naming strategies and auto-discovery of entities
feat: Add SqlServerSchemaProvider for extracting database schema information from SQL Server

feat: Introduce DatabaseType and NamingStrategy enums for better database management and naming conventions

feat: Create IDatabaseDiscovery and IDatabaseManager interfaces for database operations and metadata retrieval

feat: Develop REST service client architecture with BaseRestServiceClient and SAP Business One specific implementation

feat: Implement REST service discovery page with UI for connecting to SAP Business One Service Layer and displaying discovered entities
2025-04-29 00:16:03 +02:00

132 lines
3.8 KiB
C#

using System;
using System.Collections.Generic;
using System.Data;
using System.Linq;
using System.Linq.Expressions;
using System.Threading.Tasks;
using DataConnection.Interfaces;
using Microsoft.EntityFrameworkCore;
using Microsoft.EntityFrameworkCore.Infrastructure;
using Microsoft.EntityFrameworkCore.Metadata;
namespace DataConnection.EF;
/// <summary>
/// Implementazione di IExistingDatabaseManager basata su Entity Framework Core
/// </summary>
public class EFCoreDatabaseManager : IDatabaseManager
{
private readonly DbManagerOptions _options;
private ExistingDatabaseContext _context;
public EFCoreDatabaseManager(DbManagerOptions options)
{
_options = options ?? throw new ArgumentNullException(nameof(options));
InitializeContext();
}
private void InitializeContext()
{
var optionsBuilder = new DbContextOptionsBuilder<ExistingDatabaseContext>();
_options.DbContextConfigurator(optionsBuilder);
_context = new ExistingDatabaseContext(
optionsBuilder.Options,
_options.ModelConfigurator,
_options.EnableAutoDiscovery,
_options.EntityAssembly,
_options.EntityNamespace,
_options.NamingStrategy);
}
public async Task<bool> TestConnectionAsync()
{
try
{
return await _context.Database.CanConnectAsync();
}
catch
{
return false;
}
}
public async Task<IEnumerable<T>> GetAsync<T>(
Expression<Func<T, bool>> filter = null,
Func<IQueryable<T>, IOrderedQueryable<T>> orderBy = null,
string includeProperties = "",
int? skip = null,
int? take = null) where T : class
{
IQueryable<T> query = _context.Set<T>();
if (filter != null)
{
query = query.Where(filter);
}
foreach (var includeProperty in includeProperties.Split
(new char[] { ',' }, StringSplitOptions.RemoveEmptyEntries))
{
query = query.Include(includeProperty);
}
if (orderBy != null)
{
query = orderBy(query);
}
if (skip.HasValue)
{
query = query.Skip(skip.Value);
}
if (take.HasValue)
{
query = query.Take(take.Value);
}
return await query.ToListAsync();
}
public async Task<T> GetByIdAsync<T>(object id) where T : class
{
return await _context.Set<T>().FindAsync(id);
}
public async Task<IEnumerable<T>> ExecuteQueryAsync<T>(string sql, params object[] parameters) where T : class
{
return await _context.Set<T>().FromSqlRaw(sql, parameters).ToListAsync();
}
public async Task<int> ExecuteCommandAsync(string sql, params object[] parameters)
{
return await _context.Database.ExecuteSqlRawAsync(sql, parameters);
}
public async Task<IDictionary<string, IEnumerable<DbColumnInfo>>> GetDatabaseSchemaAsync()
{
try
{
// Assicurarsi che il contesto sia connesso
await _context.Database.OpenConnectionAsync();
// Usa la factory per ottenere il provider appropriato in base al tipo di database
var schemaProvider = DatabaseSchemaProviderFactory.CreateProvider(_options.DatabaseType);
// Usa il provider per ottenere lo schema
return await schemaProvider.GetDatabaseSchemaAsync(_context.Database.GetConnectionString());
}
catch (Exception ex)
{
Console.WriteLine($"Errore nel recupero dello schema del database: {ex.Message}");
throw;
}
}
public void Dispose()
{
_context?.Dispose();
}
}