519 lines
21 KiB
PHP
519 lines
21 KiB
PHP
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<?php
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// Connect and clear the procedure cache
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function connect($server, $attestation_info)
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{
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include("MsSetup.inc");
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$options = array('database'=>$database,
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'uid'=>$userName,
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'pwd'=>$userPassword,
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'CharacterSet'=>'UTF-8',
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'ColumnEncryption'=>$attestation_info,
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);
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if ($keystore == 'akv') {
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if ($AKVKeyStoreAuthentication == 'KeyVaultPassword') {
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$security_info = array('KeyStoreAuthentication'=>$AKVKeyStoreAuthentication,
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'KeyStorePrincipalId'=>$AKVPrincipalName,
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'KeyStoreSecret'=>$AKVPassword,
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);
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} elseif ($AKVKeyStoreAuthentication == 'KeyVaultClientSecret') {
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$security_info = array('KeyStoreAuthentication'=>$AKVKeyStoreAuthentication,
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'KeyStorePrincipalId'=>$AKVClientID,
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'KeyStoreSecret'=>$AKVSecret,
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);
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} else {
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die("Incorrect value for KeyStoreAuthentication keyword!\n");
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}
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$options = array_merge($options, $security_info);
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}
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$conn = sqlsrv_connect($server, $options);
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if (!$conn) {
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echo "Connection failed\n";
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print_r(sqlsrv_errors());
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}
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// Check that enclave computations are enabled
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// See https://docs.microsoft.com/en-us/sql/relational-databases/security/encryption/configure-always-encrypted-enclaves?view=sqlallproducts-allversions#configure-a-secure-enclave
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$query = "SELECT [name], [value], [value_in_use] FROM sys.configurations WHERE [name] = 'column encryption enclave type';";
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$stmt = sqlsrv_query($conn, $query);
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$info = sqlsrv_fetch_array($stmt);
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if ($info['value'] != 1 or $info['value_in_use'] != 1) {
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die("Error: enclave computations are not enabled on the server!");
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}
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// Enable rich computations
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sqlsrv_query($conn, "DBCC traceon(127,-1);");
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// Free the encryption cache to avoid spurious 'operand type clash' errors
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sqlsrv_query($conn, "DBCC FREEPROCCACHE");
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return $conn;
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}
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// This CREATE TABLE query simply creates a non-encrypted table with
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// two columns for each data type side by side
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// This produces a query that looks like
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// CREATE TABLE aev2test2 (
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// c_integer integer,
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// c_integer_AE integer
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// )
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function constructCreateQuery($tableName, $dataTypes, $colNames, $colNamesAE, $slength)
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{
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$query = "CREATE TABLE ".$tableName." (\n ";
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foreach ($dataTypes as $type) {
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if (dataTypeIsString($type)) {
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$query = $query.$colNames[$type]." ".$type."(".$slength."), \n ";
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$query = $query.$colNamesAE[$type]." ".$type."(".$slength."), \n ";
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} else {
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$query = $query.$colNames[$type]." ".$type.", \n ";
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$query = $query.$colNamesAE[$type]." ".$type.", \n ";
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}
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}
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// Remove the ", \n " from the end of the query or the comma will cause a syntax error
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$query = substr($query, 0, -7)."\n)";
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return $query;
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}
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// The ALTER TABLE query encrypts columns. Each ALTER COLUMN directive must
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// be preceded by ALTER TABLE
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// This produces a query that looks like
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// ALTER TABLE [dbo].[aev2test2]
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// ALTER COLUMN [c_integer_AE] integer
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// ENCRYPTED WITH (COLUMN_ENCRYPTION_KEY = [CEK-win-enclave], ENCRYPTION_TYPE = Randomized, ALGORITHM = 'AEAD_AES_256_CBC_HMAC_SHA_256') NOT NULL
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// WITH
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// (ONLINE = ON); ALTER TABLE [dbo].[aev2test2]
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// ALTER COLUMN [c_bigint_AE] bigint
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// ENCRYPTED WITH (COLUMN_ENCRYPTION_KEY = [CEK-win-enclave], ENCRYPTION_TYPE = Randomized, ALGORITHM = 'AEAD_AES_256_CBC_HMAC_SHA_256') NOT NULL
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// WITH
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// (ONLINE = ON); ALTER DATABASE SCOPED CONFIGURATION CLEAR PROCEDURE_CACHE;
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function constructAlterQuery($tableName, $colNames, $dataTypes, $key, $encryptionType, $slength)
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{
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$query = '';
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foreach ($dataTypes as $dataType) {
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$plength = dataTypeIsString($dataType) ? "(".$slength.")" : "";
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$collate = dataTypeNeedsCollate($dataType) ? " COLLATE Latin1_General_BIN2" : "";
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$query = $query." ALTER TABLE [dbo].[".$tableName."]
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ALTER COLUMN [".$colNames[$dataType]."] ".$dataType.$plength." ".$collate."
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ENCRYPTED WITH (COLUMN_ENCRYPTION_KEY = [".$key."], ENCRYPTION_TYPE = ".$encryptionType.", ALGORITHM = 'AEAD_AES_256_CBC_HMAC_SHA_256') NOT NULL
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WITH
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(ONLINE = ON);";
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}
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$query = $query." ALTER DATABASE SCOPED CONFIGURATION CLEAR PROCEDURE_CACHE;";
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return $query;
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}
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// This CREATE TABLE query creates a table with two columns for
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// each data type side by side, one plaintext and one encrypted
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// This produces a query that looks like
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// CREATE TABLE aev2test2 (
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// c_integer integer NULL,
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// c_integer_AE integer
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// COLLATE Latin1_General_BIN2 ENCRYPTED WITH (COLUMN_ENCRYPTION_KEY = [CEK-win-enclave], ENCRYPTION_TYPE = Randomized, ALGORITHM = 'AEAD_AES_256_CBC_HMAC_SHA_256') NULL
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// )
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function constructAECreateQuery($tableName, $dataTypes, $colNames, $colNamesAE, $slength, $key, $encryptionType)
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{
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$query = "CREATE TABLE ".$tableName." (\n ";
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foreach ($dataTypes as $type) {
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$collate = dataTypeNeedsCollate($type) ? " COLLATE Latin1_General_BIN2" : "";
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if (dataTypeIsString($type)) {
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$query = $query.$colNames[$type]." ".$type."(".$slength.") NULL, \n ";
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$query = $query.$colNamesAE[$type]." ".$type."(".$slength.") \n ";
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$query = $query." ".$collate." ENCRYPTED WITH (COLUMN_ENCRYPTION_KEY = [".$key."], ENCRYPTION_TYPE = ".$encryptionType.", ALGORITHM = 'AEAD_AES_256_CBC_HMAC_SHA_256') NULL,\n ";
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} else {
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$query = $query.$colNames[$type]." ".$type." NULL, \n ";
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$query = $query.$colNamesAE[$type]." ".$type." \n ";
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$query = $query." ".$collate." ENCRYPTED WITH (COLUMN_ENCRYPTION_KEY = [".$key."], ENCRYPTION_TYPE = ".$encryptionType.", ALGORITHM = 'AEAD_AES_256_CBC_HMAC_SHA_256') NULL,\n ";
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}
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}
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// Remove the ",\n " from the end of the query or the comma will cause a syntax error
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$query = substr($query, 0, -6)."\n)";
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return $query;
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}
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// The INSERT query for the table
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function constructInsertQuery($tableName, &$dataTypes, &$colNames, &$colNamesAE)
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{
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$queryTypes = "(";
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$valuesString = "VALUES (";
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foreach ($dataTypes as $type) {
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$colName1 = $colNames[$type].", ";
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$colName2 = $colNamesAE[$type].", ";
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$queryTypes .= $colName1;
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$queryTypes .= $colName2;
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$valuesString .= "?, ?, ";
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}
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// Remove the ", " from the end of the query or the comma will cause a syntax error
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$queryTypes = substr($queryTypes, 0, -2).")";
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$valuesString = substr($valuesString, 0, -2).")";
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$insertQuery = "INSERT INTO $tableName ".$queryTypes." ".$valuesString;
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return $insertQuery;
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}
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function insertValues($conn, $insertQuery, $dataTypes, $testValues)
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{
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for ($v = 0; $v < sizeof($testValues['bigint']); ++$v) {
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$insertValues = array();
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// two copies of each value for the two columns for each data type
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foreach ($dataTypes as $type) {
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$insertValues[] = $testValues[$type][$v];
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$insertValues[] = $testValues[$type][$v];
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}
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// Insert the data using sqlsrv_prepare()
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$stmt = sqlsrv_prepare($conn, $insertQuery, $insertValues);
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if ($stmt == false) {
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print_r(sqlsrv_errors());
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die("Inserting values in encrypted table failed at prepare\n");
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}
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if (sqlsrv_execute($stmt) == false) {
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print_r(sqlsrv_errors());
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die("Inserting values in encrypted table failed at execute\n");
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}
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}
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}
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// compareResults checks that the results between the encrypted and non-encrypted
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// columns are identical if statement execution succeeds. If statement execution
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// fails, this function checks for the correct error.
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// Arguments:
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// statement $AEstmt: Prepared statement fetching encrypted data
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// statement $nonAEstmt: Prepared statement fetching non-encrypted data
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// string $key: Name of the encryption key
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// string $encryptionType: Type of encryption, randomized or deterministic
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// string $attestation: Type of attestation - 'correct', 'enabled', or 'wrongurl'
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// string $comparison: Comparison operator
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// string $type: Data type the comparison is operating on
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function compareResults($AEstmt, $nonAEstmt, $key, $encryptionType, $attestation, $comparison='', $type='')
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{
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if (!sqlsrv_execute($nonAEstmt)) {
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print_r(sqlsrv_errors());
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die("Executing non-AE statement failed!\n");
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}
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if(!sqlsrv_execute($AEstmt)) {
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if ($attestation == 'enabled') {
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if ($encryptionType == 'Deterministic') {
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if ($comparison == '=') {
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print_r(sqlsrv_errors());
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die("Equality comparison failed for deterministic encryption!\n");
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} else {
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$e = sqlsrv_errors();
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checkErrors($e, array('42000', '33277'));
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}
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} elseif (isEnclaveEnabled($key)) {
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$e = sqlsrv_errors();
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checkErrors($e, array('42000', '33546'));
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} elseif (!isEnclaveEnabled($key)) {
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$e = sqlsrv_errors();
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checkErrors($e, array('42000', '33277'));
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}
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} elseif ($attestation == 'wrongurl') {
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if ($encryptionType == 'Deterministic') {
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if ($comparison == '=') {
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print_r(sqlsrv_errors());
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die("Equality comparison failed for deterministic encryption!\n");
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} else {
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$e = sqlsrv_errors();
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checkErrors($e, array('42000', '33277'));
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}
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} elseif (isEnclaveEnabled($key)) {
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$e = sqlsrv_errors();
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checkErrors($e, array('CE405', '0'));
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} elseif (!isEnclaveEnabled($key)) {
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$e = sqlsrv_errors();
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checkErrors($e, array('42000', '33277'));
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}
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} elseif ($attestation == 'correct') {
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if (!isEnclaveEnabled($key) and $encryptionType == 'Randomized') {
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$e = sqlsrv_errors();
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checkErrors($e, array('42000', '33277'));
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} elseif ($encryptionType == 'Deterministic') {
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if ($comparison == '=') {
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print_r(sqlsrv_errors());
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die("Equality comparison failed for deterministic encryption!\n");
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} else {
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$e = sqlsrv_errors();
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checkErrors($e, array('42000', '33277'));
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}
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} else {
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print_r(sqlsrv_errors());
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die("Comparison failed for correct attestation when it shouldn't have!\n");
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}
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} else {
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print_r(sqlsrv_errors());
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die("Unexpected error occurred in compareResults!\n");
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}
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} else {
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// char and nchar may not return the same results - at this point
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// we've verified that statement execution works so just return
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// TODO: Check if this bug is fixed and if so, remove this if block
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if ($type == 'char' or $type == 'nchar') {
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return;
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}
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while($AEres = sqlsrv_fetch_array($AEstmt, SQLSRV_FETCH_NUMERIC)) {
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$nonAEres = sqlsrv_fetch_array($nonAEstmt, SQLSRV_FETCH_NUMERIC);
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if (!$nonAEres) {
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print_r($AEres);
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print_r(sqlsrv_errors());
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print_r("Too many AE results for operation $comparison and data type $type!\n");
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} else {
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$i = 0;
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foreach ($AEres as $AEr) {
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if ($AEr != $nonAEres[$i]) {
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print_r("AE and non-AE results are different for operation $comparison and data type $type! For field $i, got AE result ".$AEres[$i]." and non-AE result ".$nonAEres[$i]."\n");
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print_r(sqlsrv_errors());
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}
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++$i;
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}
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}
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}
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if ($rr = sqlsrv_fetch_array($nonAEstmt)) {
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print_r($rr);
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print_r(sqlsrv_errors());
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print_r("Too many non-AE results for operation $comparison and data type $type!\n");
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}
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}
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}
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// testCompare selects based on a comparison in the WHERE clause and compares
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// the results between encrypted and non-encrypted columns, checking that the
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// results are identical
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// Arguments:
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// resource $conn: The connection
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// string $tableName: Thable name
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// array $comparisons: Comparison operations from AE_v2_values.inc
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// array $dataTypes: Data types from AE_v2_values.inc
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// array $colNames: Column names
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// array $thresholds: Values to use comparison operators against, from AE_v2_values.inc
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// string $key: Name of the encryption key
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// integer $length: Length of the string types, from AE_v2_values.inc
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// string $encryptionType: Type of encryption, randomized or deterministic
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// string $attestation: Type of attestation - 'correct', 'enabled', or 'wrongurl'
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function testCompare($conn, $tableName, $comparisons, $dataTypes, $colNames, $thresholds, $length, $key, $encryptionType, $attestation)
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{
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foreach ($comparisons as $comparison) {
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foreach ($dataTypes as $type) {
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// Unicode operations with AE require the PHPTYPE to be specified to
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// UTF-8 and the Latin1_General_BIN2 collation. If the COLLATE
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// clause is left out, we get different results between the
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// encrypted and non-encrypted columns (probably because the
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// collation was only changed in the encryption query).
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$string = dataTypeIsStringMax($type);
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$unicode = dataTypeIsUnicode($type);
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$collate = $string ? " COLLATE Latin1_General_BIN2" : "";
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$phptype = $unicode ? SQLSRV_PHPTYPE_STRING('UTF-8') : null;
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$param = array(array($thresholds[$type], SQLSRV_PARAM_IN, $phptype, getSQLType($type, $length)));
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$AEQuery = "SELECT ".$colNames[$type]."_AE FROM $tableName WHERE ".$colNames[$type]."_AE ".$comparison." ?".$collate;
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$nonAEQuery = "SELECT ".$colNames[$type]." FROM $tableName WHERE ".$colNames[$type]." ".$comparison." ?".$collate;
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$AEstmt = sqlsrv_prepare($conn, $AEQuery, $param);
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if (!$AEstmt) {
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print_r(sqlsrv_errors());
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die("Preparing AE statement for comparison failed! Comparison $comparison, type $type\n");
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}
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$nonAEstmt = sqlsrv_prepare($conn, $nonAEQuery, $param);
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if (!$nonAEstmt) {
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print_r(sqlsrv_errors());
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die("Preparing non-AE statement for comparison failed! Comparison $comparison, type $type\n");
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}
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compareResults($AEstmt, $nonAEstmt, $key, $encryptionType, $attestation, $comparison, $type);
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}
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}
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}
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// testPatternMatch selects based on a pattern in the WHERE clause and compares
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// the results between encrypted and non-encrypted columns, checking that the
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// results are identical
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function testPatternMatch($conn, $tableName, $patterns, $dataTypes, $colNames, $key, $encryptionType, $attestation)
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{
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// TODO: Pattern matching doesn't work in AE for non-string types
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// without an explicit cast
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foreach ($dataTypes as $type) {
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if (!dataTypeIsStringMax($type)) {
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continue;
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}
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foreach ($patterns[$type] as $pattern) {
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$patternarray = array($pattern,
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$pattern."%",
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"%".$pattern,
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"%".$pattern."%",
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);
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foreach ($patternarray as $spattern) {
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// Unicode operations with AE require the PHPTYPE to be specified as
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// UTF-8 and the Latin1_General_BIN2 collation. If the COLLATE
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// clause is left out, we get different results between the
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// encrypted and non-encrypted columns (probably because the
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// collation was only changed in the encryption query).
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// We must pass the length of the pattern matching string
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// to the SQLTYPE instead of the field size, as we usually would,
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// because otherwise we would get an empty result set.
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// We need iconv_strlen to return the number of characters
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// for unicode strings, since strlen returns the number of bytes.
|
||
|
$unicode = dataTypeIsUnicode($type);
|
||
|
$slength = $unicode ? iconv_strlen($spattern) : strlen($spattern);
|
||
|
$collate = $unicode ? " COLLATE Latin1_General_BIN2" : "";
|
||
|
$phptype = $unicode ? SQLSRV_PHPTYPE_STRING('UTF-8') : null;
|
||
|
$sqltype = $unicode ? SQLSRV_SQLTYPE_NCHAR($slength) : SQLSRV_SQLTYPE_CHAR($slength);
|
||
|
|
||
|
$param = array(array($spattern, SQLSRV_PARAM_IN, $phptype, $sqltype));
|
||
|
$AEQuery = "SELECT ".$colNames[$type]."_AE FROM $tableName WHERE ".$colNames[$type]."_AE LIKE ?".$collate;
|
||
|
$nonAEQuery = "SELECT ".$colNames[$type]." FROM $tableName WHERE ".$colNames[$type]." LIKE ?".$collate;
|
||
|
|
||
|
$AEstmt = sqlsrv_prepare($conn, $AEQuery, $param);
|
||
|
if (!$AEstmt) {
|
||
|
print_r(sqlsrv_errors());
|
||
|
die("Preparing AE statement for comparison failed! Comparison $comparison, type $type\n");
|
||
|
}
|
||
|
|
||
|
$nonAEstmt = sqlsrv_prepare($conn, $nonAEQuery, $param);
|
||
|
if (!$nonAEstmt) {
|
||
|
print_r(sqlsrv_errors());
|
||
|
die("Preparing non-AE statement for comparison failed! Comparison $comparison, type $type\n");
|
||
|
}
|
||
|
|
||
|
compareResults($AEstmt, $nonAEstmt, $key, $encryptionType, $attestation, $pattern, $type);
|
||
|
}
|
||
|
}
|
||
|
}
|
||
|
}
|
||
|
|
||
|
// Check that the expected errors ($codes) is found in the output of sqlsrv_errors() ($errors)
|
||
|
function checkErrors($errors, ...$codes)
|
||
|
{
|
||
|
$codeFound = false;
|
||
|
|
||
|
foreach ($codes as $code) {
|
||
|
if ($code[0]==$errors[0][0] and $code[1]==$errors[0][1]) {
|
||
|
$codeFound = true;
|
||
|
break;
|
||
|
}
|
||
|
}
|
||
|
|
||
|
if ($codeFound == false) {
|
||
|
echo "Error: ";
|
||
|
print_r($errors);
|
||
|
echo "\nExpected: ";
|
||
|
print_r($codes);
|
||
|
echo "\n";
|
||
|
die("Error code not found.\n");
|
||
|
}
|
||
|
}
|
||
|
|
||
|
function isEnclaveEnabled($key)
|
||
|
{
|
||
|
return (strpos($key, '-enclave') !== false);
|
||
|
}
|
||
|
|
||
|
function dataTypeIsString($dataType)
|
||
|
{
|
||
|
return (in_array($dataType, ["binary", "varbinary", "char", "nchar", "varchar", "nvarchar"]));
|
||
|
}
|
||
|
|
||
|
function dataTypeIsStringMax($dataType)
|
||
|
{
|
||
|
return (in_array($dataType, ["binary", "varbinary", "char", "nchar", "varchar", "nvarchar", "varchar(max)", "nvarchar(max)"]));
|
||
|
}
|
||
|
|
||
|
function dataTypeNeedsCollate($dataType)
|
||
|
{
|
||
|
return (in_array($dataType, ["char", "nchar", "varchar", "nvarchar", "varchar(max)", "nvarchar(max)"]));
|
||
|
}
|
||
|
|
||
|
function dataTypeIsUnicode($dataType)
|
||
|
{
|
||
|
return (in_array($dataType, ["nchar", "nvarchar", "nvarchar(max)"]));
|
||
|
}
|
||
|
|
||
|
function getSQLType($type, $length)
|
||
|
{
|
||
|
switch($type)
|
||
|
{
|
||
|
case "bigint":
|
||
|
return SQLSRV_SQLTYPE_BIGINT;
|
||
|
case "integer":
|
||
|
return SQLSRV_SQLTYPE_INT;
|
||
|
case "smallint":
|
||
|
return SQLSRV_SQLTYPE_SMALLINT;
|
||
|
case "tinyint":
|
||
|
return SQLSRV_SQLTYPE_TINYINT;
|
||
|
case "bit":
|
||
|
return SQLSRV_SQLTYPE_BIT;
|
||
|
case "real":
|
||
|
return SQLSRV_SQLTYPE_REAL;
|
||
|
case "float":
|
||
|
case "double":
|
||
|
return SQLSRV_SQLTYPE_FLOAT;
|
||
|
case "numeric":
|
||
|
return SQLSRV_SQLTYPE_NUMERIC(18,0);
|
||
|
case "time":
|
||
|
return SQLSRV_SQLTYPE_TIME;
|
||
|
case "date":
|
||
|
return SQLSRV_SQLTYPE_DATE;
|
||
|
case "datetime":
|
||
|
return SQLSRV_SQLTYPE_DATETIME;
|
||
|
case "datetime2":
|
||
|
return SQLSRV_SQLTYPE_DATETIME2;
|
||
|
case "datetimeoffset":
|
||
|
return SQLSRV_SQLTYPE_DATETIMEOFFSET;
|
||
|
case "smalldatetime":
|
||
|
return SQLSRV_SQLTYPE_SMALLDATETIME;
|
||
|
case "money":
|
||
|
return SQLSRV_SQLTYPE_MONEY;
|
||
|
case "smallmoney":
|
||
|
return SQLSRV_SQLTYPE_SMALLMONEY;
|
||
|
case "xml":
|
||
|
return SQLSRV_SQLTYPE_XML;
|
||
|
case "uniqueidentifier":
|
||
|
return SQLSRV_SQLTYPE_UNIQUEIDENTIFIER;
|
||
|
case "char":
|
||
|
return SQLSRV_SQLTYPE_CHAR($length);
|
||
|
case "varchar":
|
||
|
return SQLSRV_SQLTYPE_VARCHAR($length);
|
||
|
case "varchar(max)":
|
||
|
return SQLSRV_SQLTYPE_VARCHAR('max');
|
||
|
case "nchar":
|
||
|
return SQLSRV_SQLTYPE_NCHAR($length);
|
||
|
case "nvarchar":
|
||
|
return SQLSRV_SQLTYPE_NVARCHAR($length);
|
||
|
case "nvarchar(max)":
|
||
|
return SQLSRV_SQLTYPE_NVARCHAR('max');
|
||
|
case "binary":
|
||
|
case "varbinary":
|
||
|
case "varbinary(max)":
|
||
|
// Using a binary type here produces a 'Restricted data type attribute violation'
|
||
|
return SQLSRV_SQLTYPE_BIGINT;
|
||
|
default:
|
||
|
die("Case is missing for $type type in getSQLType.\n");
|
||
|
}
|
||
|
}
|
||
|
|
||
|
?>
|