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... ... @@ -1,381 +1,111 @@ 1 -= **1. StepsforImplementingTransparentData Encryption(TDE) FROM SQL Server**=1 += TDE(backup from smss to azure) = 2 2 3 3 4 - Thisdocument outlines the process of **encrypting SQL Server databases**using **TransparentData Encryption(TDE)** and backing them up to **Azure Storage**. TDE ensures data at rest is encrypted,leveraginga**MasterKey (MK)**, **TDE Certificate**, and**DatabaseEncryptionKey (DEK)** for encryption.4 +1 Create master key in master database (set master key) 5 5 6 - Theprocessalso includes creating a **credential**forsecurebackup to **Azure Blob Storage**, providing a scalableand secure solutionfor storing encrypteddatabasesin the cloud.6 +2 Create TDE certificate (encrypted by MK) 7 7 8 +3 Backup the Certificate and private key, By encryption with a password ( did not do it in this case due to storage blog problems) 8 8 9 - [[image:image-20250305152543-1.png]]10 +4 Choose DB to create the DEK ,Create database encryption key (DEK) with algorithm ( AES= 256) and encryption by certificate 10 10 12 +5 Set encryption on for the database 11 11 12 -**~1. Create a Master Key in the master Database** 13 -The first step is to create a **Master Key** in the master database. This key will be used to encrypt other cryptographic objects, such as certificates and symmetric keys, within SQL Server. 14 - 15 - 16 -**2. Create a TDE Certificate (Encrypted by the Master Key)** 17 -Next, generate a **TDE certificate** that will be used to encrypt the **Database Encryption Key (DEK)**. This certificate is encrypted by the **Master Key** created in step 1, providing an additional layer of security. 18 - 19 - 20 -**3. Choose the Database to Create the Database Encryption Key (DEK)** 21 -For the selected database, create the **Database Encryption Key (DEK)**. The DEK will be encrypted by the **TDE certificate** and will use the **AES-256 encryption algorithm** to ensure data is securely encrypted at rest. 22 - 23 - 24 -**4. Enable Encryption for the Database** 25 -Once the **DEK** has been created, enable **TDE** for the database. This ensures that all data written to the database is automatically encrypted at rest, providing full protection for sensitive information. 26 - 27 - 28 -**5. Create a Credential with a SAS Token** 29 -Finally, create a **credential** that allows SQL Server to access Azure Blob Storage. This credential is created using a **Shared Access Signature (SAS) token**, which ensures secure and authenticated access to the storage account for backup purposes. 30 - 31 -{{code language="sql"}} 32 -drop credential [https://zagpebslab.blob.core.windows.net/sql-backups] 14 +-- 6 Create a new credential with the SAS token 33 33 CREATE CREDENTIAL [https://zagpebslab.blob.core.windows.net/sql-backups] 34 -WITH IDENTITY='SHARED ACCESS SIGNATURE' 35 -, SECRET = 'sp=racwdli&st=2025-02-25T13:28:42Z&se=2026-02-25T21:28:42Z&spr=https&sv=2022-11-02&sr=c&sig=kBFwlj5S5eqBEE32LM1EFebBY0W94uEFiwOXo3R0yt4%3D' 36 -GO 37 - 38 -{{/code}} 16 +WITH IDENTITY = 'SHARED ACCESS SIGNATURE', 17 +SECRET = 'sp=racwdli&st=2025-02-25T13:28:42Z&se=2026-02-25T21:28:42Z&spr=https&sv=2022-11-02&sr=c&sig=kBFwlj5S5eqBEE32LM1EFebBY0W94uEFiwOXo3R0yt4%3D'; 18 +Go-- 39 39 20 +--7 -- 40 40 41 -**~ 6. Use a Stored Procedure to Back Up to Azure Storage Account** 42 - 43 43 {{code language="sql"}} 23 +Perform the database backup with the provided parameters 44 44 EXECUTE dba.dbo.DatabaseBackup 45 -@Databases = 'dba', 46 -@URL = 'https://zagpebslab.blob.core.windows.net/sql-backups', 47 -@BackupType = 'Full', 48 -@CopyOnly = 'Y', 49 -@Compress = 'Y', 50 -@Verify = 'N' 25 + @Databases = 'dba', Replace with your database name 26 + @URL = 'https://zagpebslab.blob.core.windows.net/sql-backups', Azure Blob Storage URL 27 + @BackupType = 'Full', Full backup 28 + @CopyOnly = 'Y', Copy-only backup to avoid breaking backup chain 29 + @Compress = 'Y', Compress the backup 30 + @Verify = 'N'; No verification of backup 31 +GO 51 51 {{/code}} 52 52 53 - ======34 +The backup was unable to be done from smss to azure ( the MI does not support encrypted DBs to be backed up from smss to azure) 54 54 55 - ===Conclusion:Backup toAzureStorageAccount with TDE Encrypted Databases===36 +We have unencrypted a database and backed it up from ssms to azure blob successfully 56 56 57 -The attempt to back up an **encrypted database** (with Transparent Data Encryption - TDE) from **SQL Server Management Studio (SSMS)** to an Azure Storage Account was unsuccessful. This issue arises because **Azure does not permit TDE-encrypted databases to be backed up directly to Azure Storage using SSMS**. 58 58 59 - However, after decrypting the database, we were able to successfully backit up tothe Azure Storage AccountviaSSMS. This confirmsthat**backups canbe performedon anunencrypteddatabase**,but**notonanencrypteddatabase**.39 +Conclusion: Can be done with and unencrypted DB but not with an Encrypted one> 60 60 61 61 62 62 63 63 64 64 65 -= ** 2. Enabling TransparentData Encryption(TDE) Using AzureKey Vault** =45 += **Using TDE directly from azure portal** = 66 66 67 67 68 - **Introduction:**Thisdocumentoutlines the processof enabling **Transparent Data Encryption (TDE)** on an **AzureSQL Managed Instance (SQL MI)** using a **Customer-Managed Key(CMK)** stored in **Azure Key Vault**.Theencryption ismanaged using an asymmetric key from **AzureKey Vault**, ensuringthat alldata withintheSQL Managed Instanceis encryptedusingastrongencryptionalgorithm.48 +===== 1 Go to azure key vault ( DemoTestRudi) to generate a key ===== 69 69 70 70 71 - =====**1.Generatea KeyinAzureKey Vault**=====51 +- Go to keys and click generate 72 72 53 +- Name your key (mysqlmikey) 73 73 74 - **-NavigatetoAzureKeyVault:**55 +- Choose a key type (RSA) 75 75 76 - * Gotothe**AzurePortal** andselect**Key Vault**(DemoRudiTest).57 +-Choose RSA key size (2048-bit) 77 77 78 - **- Generatea New Key:**59 +Note: 79 79 80 -* Go to the **Keys** section and click **Generate** to create a new key. 81 - 82 -**- Configure Key Settings:** 83 - 84 -* **Name the Key**: Choose a name for your key, e.g., mysqlmikey. 85 -* **Key Type**: Select **RSA** as the key type. 86 -* **RSA Key Size**: Choose an **RSA key size** of **2048-bit**. (optional) 87 - 88 - Note: 89 - 90 90 * switching from 2048-bit RSA to 4096-bit RSA for TDE will affect performance, but the actual impact might be minor, especially on modern hardware and typical workloads. 91 91 * **It will likely affect CPU usage** more than disk I/O, and the impact might be more noticeable during key management operations (key generation, encryption, etc.). 92 92 * If your database is not under heavy load and your hardware can handle the extra processing, the trade-off for better security may be worth it. 93 93 94 - **- Createthe Key:**65 +- Click create 95 95 96 -* Click **Create** to generate the key. 97 97 68 +[[image:image-20250228120622-1.png||height="236" width="542"]] 98 98 99 -===== **2. Enable TDE on the SQL Managed Instance** ===== 100 100 101 -===== ===== 71 +===== 2 Enable TDE ===== 102 102 103 -**- Navigate to Your Managed Instance:** 104 104 105 - *Go to your**SQLManagedInstance**(sqlmi-ebs-lab).74 +- Go to your Managed instance ( sqlmi-ebs-lab) 106 106 107 - **-Enable TransparentDataEncryption(TDE):**76 +- Click on security and choose Transparent data encryption 108 108 109 - *Under **Security**,select**TransparentData Encryption**.78 +- Select the type of managed key ( Customer-managed key0 110 110 111 - **-ConfigureTDEwithaCustomer-ManagedKey (CMK):**80 +- Select the key from the key vault we generated in the key vault( mysqlmikey) 112 112 113 -* Select **Customer-managed key** as the encryption type. 114 -* Choose the key you created earlier from **Azure Key Vault** (mysqlmikey). 82 +- Make the key the default TDE protector 115 115 116 - **-Set the Key asDefault TDE Protector:**84 +-Click save 117 117 118 -* Make the key the **default TDE protector** for your instance. 119 119 120 - **- SaveConfiguration:**87 +[[image:image-20250228122106-2.png||height="251" width="511"]] 121 121 122 -* Click **Save** to apply the changes. 123 123 124 - ===**Conclusion**===90 +- TDE has now been enabled on the Managed instance 125 125 126 -After following these steps, **TDE** has been successfully enabled on your **SQL Managed Instance** using an **asymmetric key** stored in **Azure Key Vault**. All databases within the instance are now encrypted using the same encryption key (identified by the same encryption thumbprint). You can now securely back up these encrypted databases from **SSMS** to **Azure Storage**. 127 127 128 - This process ensures thatyourdataisprotected bothatrestand during backup,offeringenhancedsecurityforyour manageddatabases in the cloud.93 +Conclusion: All the databases have been encrypted by an asymmetric key. The key is the same for each database ( same encryption thumbprint). 129 129 95 +We are now able to backup databases from SSMS to Azure storage. 130 130 131 131 132 -=== **1. Backup Specific Databases Using SQL Server Agent Jobs** === 133 133 134 -This document describes the process of creating an automated **SQL Server Agent Job** to back up only the **DBA databases** in a SQL Server instance. The backups will occur **daily at 3:00 AM** and will be stored in an **Azure Storage Account** for secure and reliable cloud storage. 135 135 136 ----- 137 137 138 -==== **1. Create the Backup Script** ==== 139 139 140 140 141 -====== **- Declaring Variables** ====== 142 142 143 -{{code language="sql"}} 144 -DECLARE @DatabaseName NVARCHAR(128) 145 -DECLARE @BackupContainerURL NVARCHAR(512) 146 -{{/code}} 147 147 148 -DECLARE @DatabaseName NVARCHAR(128) DECLARE @BackupContainerURL NVARCHAR(512) 149 149 150 -* **@DatabaseName**: A variable to hold the name of the database during each iteration of the loop. 151 -* **@BackupContainerURL**: A variable to store the URL of the Azure Blob Storage container where the database backups will be stored. 152 152 153 ----- 154 154 155 -====== **2. Setting the Azure Blob Storage URL** ====== 156 156 157 -{{code language="sql"}} 158 -SET @BackupContainerURL = 'https://<your_storage_account>.blob.core.windows.net/sql-backups/' 159 -{{/code}} 160 - 161 - 162 ----- 163 - 164 -====== **3. Declaring the Cursor** ====== 165 - 166 - 167 -{{code language="sql"}} 168 -DECLARE db_cursor CURSOR FOR 169 -SELECT name 170 -FROM sys.databases 171 -WHERE name LIKE 'dba%' -- Only pick databases that start with 'dba' 172 -{{/code}} 173 - 174 -* **Cursor Declaration**: 175 -** The cursor db_cursor is declared to loop through the list of databases in the sys.databases system view. 176 -** The **WHERE name LIKE 'dba%'** clause ensures that only databases with names starting with dba will be processed. For example, databases like dbaTest, dbaProd, etc., will be included in the loop. 177 -** **sys.databases**: A system catalog view that contains information about each database in the SQL Server instance. 178 - 179 ----- 180 - 181 -====== **4. Opening the Cursor** ====== 182 - 183 -{{code language="sql"}} 184 -OPEN db_cursor 185 -FETCH NEXT FROM db_cursor INTO @DatabaseName 186 -{{/code}} 187 - 188 -OPEN db_cursor FETCH NEXT FROM db_cursor INTO @DatabaseName 189 - 190 -* **OPEN db_cursor**: This opens the cursor for reading the results. 191 -* **FETCH NEXT**: The FETCH NEXT statement retrieves the first database name that meets the LIKE 'dba%' condition and stores it in the @DatabaseName variable. This will be used in the next step where the backup procedure is executed. 192 - 193 ----- 194 - 195 -====== **5. Looping Through Databases** ====== 196 - 197 -{{code language="sql"}} 198 --- Loop through each database and execute the stored procedure 199 -WHILE @@FETCH_STATUS = 0 200 -BEGIN 201 - -- Print current database for logging/debugging 202 - PRINT 'Backing up database: ' + @DatabaseName 203 - 204 - -- Execute the DatabaseBackup stored procedure for each database 205 - EXECUTE dba.dbo.DatabaseBackup 206 - @Databases = @DatabaseName, -- Specify the current database 207 - @URL = @BackupContainerURL, -- Azure Blob Storage URL 208 - @BackupType = 'Full', -- Full backup type 209 - @CopyOnly = 'Y', -- Use copy-only backup (this doesn’t affect the transaction log chain) 210 - @Compress = 'Y', -- Enable compression 211 - @Verify = 'N'; -- Skip verification after backup 212 - 213 -{{/code}} 214 - 215 - 216 -* **WHILE @@FETCH_STATUS = 0**: The loop will continue as long as the FETCH command successfully retrieves a database name. @@FETCH_STATUS is a system function that returns 0 if the fetch operation is successful. 217 -* **PRINT**: This line prints the name of the database that is currently being backed up. It helps with logging or debugging purposes, as you can track which database is being processed at any given time. 218 -* ((( 219 -**EXECUTE dba.dbo.DatabaseBackup**: 220 - 221 -* This calls a stored procedure named dba.dbo.DatabaseBackup for each database. 222 -* The parameters passed to the stored procedure: 223 -** **@Databases = @DatabaseName**: Specifies which database to back up (the current database being processed). 224 -** **@URL = @BackupContainerURL**: Specifies the destination Azure Blob Storage URL. 225 -** **@BackupType = 'Full'**: Specifies the backup type, which is a **Full** backup (this means all data in the database is backed up). 226 -** **@CopyOnly = 'Y'**: Specifies that this is a **copy-only backup**. This ensures that the backup does not affect the transaction log chain and does not interfere with regular backups. 227 -** **@Compress = 'Y'**: Enables compression of the backup, reducing the size of the backup file. 228 -** **@Verify = 'N'**: Specifies that the backup verification step should be skipped. (Verification can be added if needed for additional safety.) 229 -))) 230 - 231 ----- 232 - 233 -====== **6. Fetch the Next Database** ====== 234 - 235 -{{code language="sql"}} 236 - -- Fetch the next database in the cursor 237 - FETCH NEXT FROM db_cursor INTO @DatabaseName 238 - 239 -{{/code}} 240 - 241 -~-~- Fetch the next database in the cursor FETCH NEXT FROM db_cursor INTO @DatabaseName 242 - 243 -* **FETCH NEXT**: After executing the backup for the current database, this statement retrieves the next database from the cursor and stores it in the @DatabaseName variable. The loop will continue until all matching databases have been processed. 244 - 245 ----- 246 - 247 -====== **7. Closing and Deallocating the Cursor** ====== 248 - 249 -{{code language="sql"}} 250 --- Close and deallocate the cursor to clean up resources 251 -CLOSE db_cursor 252 -DEALLOCATE db_cursor 253 - 254 - 255 -{{/code}} 256 - 257 -* **CLOSE db_cursor**: This closes the cursor once the loop finishes processing all databases. 258 -* **DEALLOCATE db_cursor**: This deallocates the cursor, freeing up any resources used by the cursor. It’s a good practice to always deallocate cursors to avoid resource leaks. 259 - 260 -====== ====== 261 - 262 -====== **8. Full Script** ====== 263 - 264 - 265 -{{code language="sql"}} 266 -DECLARE @DatabaseName NVARCHAR(128) 267 -DECLARE @BackupContainerURL NVARCHAR(512) 268 - 269 -SET @BackupContainerURL = 'https://zagpebslab.blob.core.windows.net/sql-backups' 270 - 271 -DECLARE db_cursor CURSOR FOR 272 -SELECT name 273 -FROM sys.databases 274 -WHERE name LIKE 'dba%' 275 - 276 -OPEN db_cursor 277 -FETCH NEXT FROM db_cursor INTO @DatabaseName 278 - 279 -WHILE @@FETCH_STATUS = 0 280 -BEGIN 281 - 282 -PRINT 'Backing up database: ' + @DatabaseName 283 - 284 -EXECUTE dba.dbo.DatabaseBackup 285 - @Databases = @DatabaseName, 286 - @URL = @BackupContainerURL, 287 - @BackupType = 'Full', 288 - @CopyOnly = 'Y', 289 - @Compress = 'Y', 290 - @Verify = 'N'; 291 - 292 -FETCH NEXT FROM db_cursor INTO @DatabaseName 293 -END 294 - 295 -CLOSE db_cursor 296 -DEALLOCATE db_cursor 297 - 298 -{{/code}} 299 - 300 - 301 - 302 - 303 -=== **2. Set Up a New Job in SQL Server Agent** === 304 - 305 -To automate the backup process of the **DBA databases**, follow the steps below to create a new job in SQL Server Agent. 306 - 307 ----- 308 - 309 -====== **Step 1: Create a New Job** ====== 310 - 311 -1. **Open SQL Server Management Studio (SSMS)**: 312 -1*. In the **Object Explorer**, expand the **SQL Server Agent** node. 313 -1*. Right-click on **Jobs** and select **New Job**. 314 - 315 ----- 316 - 317 -====== **Step 2: Define Job Properties** ====== 318 - 319 -In the **New Job** window, configure the job properties: 320 - 321 -* **General Tab**: 322 -** **Job Name**: Enter a descriptive name for the job, such as DBA Databases Backup. 323 -** **Owner**: Specify the job owner (ebssqladmin). 324 -** **Category**: Select Database Maintenance as the category for the job. 325 -** **Description**: Provide a brief description of the job (Automated backup of DBA databases to Azure Storage"). 326 - 327 ----- 328 - 329 -====== **Step 3: Create the Job Steps** ====== 330 - 331 -The job will perform the backup through **Transact-SQL** (T-SQL) commands. Set up the following steps: 332 - 333 -1. **Step Name**: Enter a descriptive step name, such as Backup Only DBA Databases. 334 -1. **Type**: Select Transact-SQL Script (T-SQL). 335 -1. **Database**: Choose the master database, as the script will be run in the context of the master database. 336 -1. **Command**: Paste the backup script you created earlier, which automates the backup of the DBA databases. 337 - 338 ----- 339 - 340 -====== **Step 4: Set the Job Schedule** ====== 341 - 342 -Now, configure the schedule for the job to run daily at 3:00 AM: 343 - 344 -1. **Schedule Name**: Name the schedule (DBA Database Backup). 345 -1. **Schedule Type**: Choose Recurring for a regular schedule. 346 -1. ((( 347 -**Frequency**: 348 - 349 -* **Occurs**: Select Daily. 350 -* **Recurs Every**: Set it to **1 day** to run the job every day at the same time. 351 -))) 352 -1. ((( 353 -**Daily Frequency**: 354 - 355 -* Set the **time** for the backup to start, such as **3:00 AM**. 356 -))) 357 - 358 ----- 359 - 360 -=== **Conclusion** === 361 - 362 -The SQL Server Agent job is now configured to automatically back up the **DBA databases** daily to an **Azure Storage Account**. The job will only back up databases that start with 'dba', and it handles encrypted databases with **Transparent Data Encryption (TDE)**. This ensures secure, encrypted backups are stored in the cloud without requiring manual intervention. 363 - 364 -=== === 365 - 366 -===== Note: We could use the job activity monitor to see if the job executed successfully. ===== 367 - 368 - 369 - 370 - 371 - 372 - 373 - 374 - 375 - 376 - 377 - 378 - 379 379 1 CREATE MASTER KEY ENCRYPTION BY PASSWORD = 'YourStrongPasswordHere!'; 380 380 GO 381 381 ... ... @@ -672,3 +672,5 @@ 672 672 {{/code}} 673 673 674 674 405 + 406 +
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