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9756872 | 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24 25 26 27 28 29 30 31 32 33 34 35 36 37 38 39 40 41 42 43 44 45 46 47 48 49 50 51 52 53 54 55 56 57 58 59 60 61 62 63 64 65 66 67 68 69 70 71 72 73 74 75 76 77 78 79 80 81 82 83 84 85 86 87 88 89 90 91 92 93 94 95 96 97 98 99 100 101 102 103 104 105 106 107 108 109 110 111 112 113 114 115 116 117 118 119 120 121 122 123 124 125 126 127 128 129 130 131 132 133 134 135 136 137 138 139 140 141 142 143 144 145 146 147 148 149 150 151 152 153 154 155 156 157 158 159 160 161 162 163 164 165 166 167 168 169 170 171 172 173 174 175 176 177 178 179 180 181 182 183 184 185 186 187 188 189 190 191 192 193 194 195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 | import type { Document } from '../bson';
import { type CursorResponse } from '../cmap/wire_protocol/responses';
import {
isRetryableReadError,
isRetryableWriteError,
MongoCompatibilityError,
MONGODB_ERROR_CODES,
MongoError,
MongoErrorLabel,
MongoExpiredSessionError,
MongoInvalidArgumentError,
MongoNetworkError,
MongoNotConnectedError,
MongoRuntimeError,
MongoServerError,
MongoTransactionError,
MongoUnexpectedServerResponseError
} from '../error';
import type { MongoClient } from '../mongo_client';
import { ReadPreference } from '../read_preference';
import type { Server } from '../sdam/server';
import type { ServerDescription } from '../sdam/server_description';
import {
sameServerSelector,
secondaryWritableServerSelector,
type ServerSelector
} from '../sdam/server_selection';
import type { Topology } from '../sdam/topology';
import type { ClientSession } from '../sessions';
import { squashError, supportsRetryableWrites } from '../utils';
import { AbstractOperation, Aspect } from './operation';
const MMAPv1_RETRY_WRITES_ERROR_CODE = MONGODB_ERROR_CODES.IllegalOperation;
const MMAPv1_RETRY_WRITES_ERROR_MESSAGE =
'This MongoDB deployment does not support retryable writes. Please add retryWrites=false to your connection string.';
type ResultTypeFromOperation<TOperation> = TOperation extends AbstractOperation<infer K>
? K
: never;
/** @internal */
export interface ExecutionResult {
/** The server selected for the operation */
server: Server;
/** The session used for this operation, may be implicitly created */
session?: ClientSession;
/** The raw server response for the operation */
response: Document | CursorResponse;
}
/**
* Executes the given operation with provided arguments.
* @internal
*
* @remarks
* Allows for a single point of entry to provide features such as implicit sessions, which
* are required by the Driver Sessions specification in the event that a ClientSession is
* not provided.
*
* The expectation is that this function:
* - Connects the MongoClient if it has not already been connected
* - Creates a session if none is provided and cleans up the session it creates
* - Selects a server based on readPreference or various factors
* - Retries an operation if it fails for certain errors, see {@link retryOperation}
*
* @typeParam T - The operation's type
* @typeParam TResult - The type of the operation's result, calculated from T
*
* @param client - The MongoClient to execute this operation with
* @param operation - The operation to execute
*/
export async function executeOperation<
T extends AbstractOperation<TResult>,
TResult = ResultTypeFromOperation<T>
>(client: MongoClient, operation: T): Promise<TResult> {
if (!(operation instanceof AbstractOperation)) {
// TODO(NODE-3483): Extend MongoRuntimeError
throw new MongoRuntimeError('This method requires a valid operation instance');
}
if (client.topology == null) {
// Auto connect on operation
if (client.s.hasBeenClosed) {
throw new MongoNotConnectedError('Client must be connected before running operations');
}
client.s.options[Symbol.for('@@mdb.skipPingOnConnect')] = true;
try {
await client.connect();
} finally {
delete client.s.options[Symbol.for('@@mdb.skipPingOnConnect')];
}
}
const { topology } = client;
if (topology == null) {
throw new MongoRuntimeError('client.connect did not create a topology but also did not throw');
}
// The driver sessions spec mandates that we implicitly create sessions for operations
// that are not explicitly provided with a session.
let session = operation.session;
let owner: symbol | undefined;
if (session == null) {
owner = Symbol();
session = client.startSession({ owner, explicit: false });
} else if (session.hasEnded) {
throw new MongoExpiredSessionError('Use of expired sessions is not permitted');
} else if (session.snapshotEnabled && !topology.capabilities.supportsSnapshotReads) {
throw new MongoCompatibilityError('Snapshot reads require MongoDB 5.0 or later');
} else if (session.client !== client) {
throw new MongoInvalidArgumentError('ClientSession must be from the same MongoClient');
}
if (session.explicit && session?.timeoutMS != null && operation.options.timeoutMS != null) {
throw new MongoInvalidArgumentError(
'Do not specify timeoutMS on operation if already specified on an explicit session'
);
}
const readPreference = operation.readPreference ?? ReadPreference.primary;
const inTransaction = !!session?.inTransaction();
const hasReadAspect = operation.hasAspect(Aspect.READ_OPERATION);
const hasWriteAspect = operation.hasAspect(Aspect.WRITE_OPERATION);
if (
inTransaction &&
!readPreference.equals(ReadPreference.primary) &&
(hasReadAspect || operation.commandName === 'runCommand')
) {
throw new MongoTransactionError(
`Read preference in a transaction must be primary, not: ${readPreference.mode}`
);
}
if (session?.isPinned && session.transaction.isCommitted && !operation.bypassPinningCheck) {
session.unpin();
}
let selector: ReadPreference | ServerSelector;
if (operation.hasAspect(Aspect.MUST_SELECT_SAME_SERVER)) {
// GetMore and KillCursor operations must always select the same server, but run through
// server selection to potentially force monitor checks if the server is
// in an unknown state.
selector = sameServerSelector(operation.server?.description);
} else if (operation.trySecondaryWrite) {
// If operation should try to write to secondary use the custom server selector
// otherwise provide the read preference.
selector = secondaryWritableServerSelector(topology.commonWireVersion, readPreference);
} else {
selector = readPreference;
}
const server = await topology.selectServer(selector, {
session,
operationName: operation.commandName
});
if (session == null) {
// No session also means it is not retryable, early exit
return await operation.execute(server, undefined);
}
if (!operation.hasAspect(Aspect.RETRYABLE)) {
// non-retryable operation, early exit
try {
return await operation.execute(server, session);
} finally {
if (session?.owner != null && session.owner === owner) {
try {
await session.endSession();
} catch (error) {
squashError(error);
}
}
}
}
const willRetryRead = topology.s.options.retryReads && !inTransaction && operation.canRetryRead;
const willRetryWrite =
topology.s.options.retryWrites &&
!inTransaction &&
supportsRetryableWrites(server) &&
operation.canRetryWrite;
const willRetry = (hasReadAspect && willRetryRead) || (hasWriteAspect && willRetryWrite);
if (hasWriteAspect && willRetryWrite) {
operation.options.willRetryWrite = true;
session.incrementTransactionNumber();
}
try {
return await operation.execute(server, session);
} catch (operationError) {
if (willRetry && operationError instanceof MongoError) {
return await retryOperation(operation, operationError, {
session,
topology,
selector,
previousServer: server.description
});
}
throw operationError;
} finally {
if (session?.owner != null && session.owner === owner) {
try {
await session.endSession();
} catch (error) {
squashError(error);
}
}
}
}
/** @internal */
type RetryOptions = {
session: ClientSession;
topology: Topology;
selector: ReadPreference | ServerSelector;
previousServer: ServerDescription;
};
async function retryOperation<
T extends AbstractOperation<TResult>,
TResult = ResultTypeFromOperation<T>
>(
operation: T,
originalError: MongoError,
{ session, topology, selector, previousServer }: RetryOptions
): Promise<TResult> {
const isWriteOperation = operation.hasAspect(Aspect.WRITE_OPERATION);
const isReadOperation = operation.hasAspect(Aspect.READ_OPERATION);
if (isWriteOperation && originalError.code === MMAPv1_RETRY_WRITES_ERROR_CODE) {
throw new MongoServerError({
message: MMAPv1_RETRY_WRITES_ERROR_MESSAGE,
errmsg: MMAPv1_RETRY_WRITES_ERROR_MESSAGE,
originalError
});
}
if (isWriteOperation && !isRetryableWriteError(originalError)) {
throw originalError;
}
if (isReadOperation && !isRetryableReadError(originalError)) {
throw originalError;
}
if (
originalError instanceof MongoNetworkError &&
session.isPinned &&
!session.inTransaction() &&
operation.hasAspect(Aspect.CURSOR_CREATING)
) {
// If we have a cursor and the initial command fails with a network error,
// we can retry it on another connection. So we need to check it back in, clear the
// pool for the service id, and retry again.
session.unpin({ force: true, forceClear: true });
}
// select a new server, and attempt to retry the operation
const server = await topology.selectServer(selector, {
session,
operationName: operation.commandName,
previousServer
});
if (isWriteOperation && !supportsRetryableWrites(server)) {
throw new MongoUnexpectedServerResponseError(
'Selected server does not support retryable writes'
);
}
try {
return await operation.execute(server, session);
} catch (retryError) {
if (
retryError instanceof MongoError &&
retryError.hasErrorLabel(MongoErrorLabel.NoWritesPerformed)
) {
throw originalError;
}
throw retryError;
}
}
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