client.go 19 KB

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  1. // Copyright 2016 The go-ethereum Authors
  2. // This file is part of the go-ethereum library.
  3. //
  4. // The go-ethereum library is free software: you can redistribute it and/or modify
  5. // it under the terms of the GNU Lesser General Public License as published by
  6. // the Free Software Foundation, either version 3 of the License, or
  7. // (at your option) any later version.
  8. //
  9. // The go-ethereum library is distributed in the hope that it will be useful,
  10. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. // GNU Lesser General Public License for more details.
  13. //
  14. // You should have received a copy of the GNU Lesser General Public License
  15. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
  16. package rpc
  17. import (
  18. "bytes"
  19. "context"
  20. "encoding/json"
  21. "errors"
  22. "fmt"
  23. "net/url"
  24. "reflect"
  25. "strconv"
  26. "sync/atomic"
  27. "time"
  28. "github.com/ethereum/go-ethereum/log"
  29. )
  30. var (
  31. ErrClientQuit = errors.New("client is closed")
  32. ErrNoResult = errors.New("no result in JSON-RPC response")
  33. ErrSubscriptionQueueOverflow = errors.New("subscription queue overflow")
  34. errClientReconnected = errors.New("client reconnected")
  35. errDead = errors.New("connection lost")
  36. )
  37. const (
  38. // Timeouts
  39. defaultDialTimeout = 10 * time.Second // used if context has no deadline
  40. subscribeTimeout = 5 * time.Second // overall timeout eth_subscribe, rpc_modules calls
  41. )
  42. const (
  43. // Subscriptions are removed when the subscriber cannot keep up.
  44. //
  45. // This can be worked around by supplying a channel with sufficiently sized buffer,
  46. // but this can be inconvenient and hard to explain in the docs. Another issue with
  47. // buffered channels is that the buffer is static even though it might not be needed
  48. // most of the time.
  49. //
  50. // The approach taken here is to maintain a per-subscription linked list buffer
  51. // shrinks on demand. If the buffer reaches the size below, the subscription is
  52. // dropped.
  53. maxClientSubscriptionBuffer = 20000
  54. )
  55. // BatchElem is an element in a batch request.
  56. type BatchElem struct {
  57. Method string
  58. Args []interface{}
  59. // The result is unmarshaled into this field. Result must be set to a
  60. // non-nil pointer value of the desired type, otherwise the response will be
  61. // discarded.
  62. Result interface{}
  63. // Error is set if the server returns an error for this request, or if
  64. // unmarshaling into Result fails. It is not set for I/O errors.
  65. Error error
  66. }
  67. // Client represents a connection to an RPC server.
  68. type Client struct {
  69. idgen func() ID // for subscriptions
  70. isHTTP bool
  71. services *serviceRegistry
  72. idCounter uint32
  73. // This function, if non-nil, is called when the connection is lost.
  74. reconnectFunc reconnectFunc
  75. // writeConn is used for writing to the connection on the caller's goroutine. It should
  76. // only be accessed outside of dispatch, with the write lock held. The write lock is
  77. // taken by sending on requestOp and released by sending on sendDone.
  78. writeConn jsonWriter
  79. // for dispatch
  80. close chan struct{}
  81. closing chan struct{} // closed when client is quitting
  82. didClose chan struct{} // closed when client quits
  83. reconnected chan ServerCodec // where write/reconnect sends the new connection
  84. readOp chan readOp // read messages
  85. readErr chan error // errors from read
  86. reqInit chan *requestOp // register response IDs, takes write lock
  87. reqSent chan error // signals write completion, releases write lock
  88. reqTimeout chan *requestOp // removes response IDs when call timeout expires
  89. }
  90. type reconnectFunc func(ctx context.Context) (ServerCodec, error)
  91. type clientContextKey struct{}
  92. type clientConn struct {
  93. codec ServerCodec
  94. handler *handler
  95. }
  96. func (c *Client) newClientConn(conn ServerCodec) *clientConn {
  97. ctx := context.WithValue(context.Background(), clientContextKey{}, c)
  98. handler := newHandler(ctx, conn, c.idgen, c.services)
  99. return &clientConn{conn, handler}
  100. }
  101. func (cc *clientConn) close(err error, inflightReq *requestOp) {
  102. cc.handler.close(err, inflightReq)
  103. cc.codec.close()
  104. }
  105. type readOp struct {
  106. msgs []*jsonrpcMessage
  107. batch bool
  108. }
  109. type requestOp struct {
  110. ids []json.RawMessage
  111. err error
  112. resp chan *jsonrpcMessage // receives up to len(ids) responses
  113. sub *ClientSubscription // only set for EthSubscribe requests
  114. }
  115. func (op *requestOp) wait(ctx context.Context, c *Client) (*jsonrpcMessage, error) {
  116. select {
  117. case <-ctx.Done():
  118. // Send the timeout to dispatch so it can remove the request IDs.
  119. if !c.isHTTP {
  120. select {
  121. case c.reqTimeout <- op:
  122. case <-c.closing:
  123. }
  124. }
  125. return nil, ctx.Err()
  126. case resp := <-op.resp:
  127. return resp, op.err
  128. }
  129. }
  130. // Dial creates a new client for the given URL.
  131. //
  132. // The currently supported URL schemes are "http", "https", "ws" and "wss". If rawurl is a
  133. // file name with no URL scheme, a local socket connection is established using UNIX
  134. // domain sockets on supported platforms and named pipes on Windows. If you want to
  135. // configure transport options, use DialHTTP, DialWebsocket or DialIPC instead.
  136. //
  137. // For websocket connections, the origin is set to the local host name.
  138. //
  139. // The client reconnects automatically if the connection is lost.
  140. func Dial(rawurl string) (*Client, error) {
  141. return DialContext(context.Background(), rawurl)
  142. }
  143. // DialContext creates a new RPC client, just like Dial.
  144. //
  145. // The context is used to cancel or time out the initial connection establishment. It does
  146. // not affect subsequent interactions with the client.
  147. func DialContext(ctx context.Context, rawurl string) (*Client, error) {
  148. u, err := url.Parse(rawurl)
  149. if err != nil {
  150. return nil, err
  151. }
  152. switch u.Scheme {
  153. case "http", "https":
  154. return DialHTTP(rawurl)
  155. case "ws", "wss":
  156. return DialWebsocket(ctx, rawurl, "")
  157. case "stdio":
  158. return DialStdIO(ctx)
  159. case "":
  160. return DialIPC(ctx, rawurl)
  161. default:
  162. return nil, fmt.Errorf("no known transport for URL scheme %q", u.Scheme)
  163. }
  164. }
  165. // Client retrieves the client from the context, if any. This can be used to perform
  166. // 'reverse calls' in a handler method.
  167. func ClientFromContext(ctx context.Context) (*Client, bool) {
  168. client, ok := ctx.Value(clientContextKey{}).(*Client)
  169. return client, ok
  170. }
  171. func newClient(initctx context.Context, connect reconnectFunc) (*Client, error) {
  172. conn, err := connect(initctx)
  173. if err != nil {
  174. return nil, err
  175. }
  176. c := initClient(conn, randomIDGenerator(), new(serviceRegistry))
  177. c.reconnectFunc = connect
  178. return c, nil
  179. }
  180. func initClient(conn ServerCodec, idgen func() ID, services *serviceRegistry) *Client {
  181. _, isHTTP := conn.(*httpConn)
  182. c := &Client{
  183. idgen: idgen,
  184. isHTTP: isHTTP,
  185. services: services,
  186. writeConn: conn,
  187. close: make(chan struct{}),
  188. closing: make(chan struct{}),
  189. didClose: make(chan struct{}),
  190. reconnected: make(chan ServerCodec),
  191. readOp: make(chan readOp),
  192. readErr: make(chan error),
  193. reqInit: make(chan *requestOp),
  194. reqSent: make(chan error, 1),
  195. reqTimeout: make(chan *requestOp),
  196. }
  197. if !isHTTP {
  198. go c.dispatch(conn)
  199. }
  200. return c
  201. }
  202. // RegisterName creates a service for the given receiver type under the given name. When no
  203. // methods on the given receiver match the criteria to be either a RPC method or a
  204. // subscription an error is returned. Otherwise a new service is created and added to the
  205. // service collection this client provides to the server.
  206. func (c *Client) RegisterName(name string, receiver interface{}) error {
  207. return c.services.registerName(name, receiver)
  208. }
  209. func (c *Client) nextID() json.RawMessage {
  210. id := atomic.AddUint32(&c.idCounter, 1)
  211. return strconv.AppendUint(nil, uint64(id), 10)
  212. }
  213. // SupportedModules calls the rpc_modules method, retrieving the list of
  214. // APIs that are available on the server.
  215. func (c *Client) SupportedModules() (map[string]string, error) {
  216. var result map[string]string
  217. ctx, cancel := context.WithTimeout(context.Background(), subscribeTimeout)
  218. defer cancel()
  219. err := c.CallContext(ctx, &result, "rpc_modules")
  220. return result, err
  221. }
  222. // Close closes the client, aborting any in-flight requests.
  223. func (c *Client) Close() {
  224. if c.isHTTP {
  225. return
  226. }
  227. select {
  228. case c.close <- struct{}{}:
  229. <-c.didClose
  230. case <-c.didClose:
  231. }
  232. }
  233. // Call performs a JSON-RPC call with the given arguments and unmarshals into
  234. // result if no error occurred.
  235. //
  236. // The result must be a pointer so that package json can unmarshal into it. You
  237. // can also pass nil, in which case the result is ignored.
  238. func (c *Client) Call(result interface{}, method string, args ...interface{}) error {
  239. ctx := context.Background()
  240. return c.CallContext(ctx, result, method, args...)
  241. }
  242. // CallContext performs a JSON-RPC call with the given arguments. If the context is
  243. // canceled before the call has successfully returned, CallContext returns immediately.
  244. //
  245. // The result must be a pointer so that package json can unmarshal into it. You
  246. // can also pass nil, in which case the result is ignored.
  247. func (c *Client) CallContext(ctx context.Context, result interface{}, method string, args ...interface{}) error {
  248. if result != nil && reflect.TypeOf(result).Kind() != reflect.Ptr {
  249. return fmt.Errorf("call result parameter must be pointer or nil interface: %v", result)
  250. }
  251. msg, err := c.newMessage(method, args...)
  252. if err != nil {
  253. return err
  254. }
  255. op := &requestOp{ids: []json.RawMessage{msg.ID}, resp: make(chan *jsonrpcMessage, 1)}
  256. if c.isHTTP {
  257. err = c.sendHTTP(ctx, op, msg)
  258. } else {
  259. err = c.send(ctx, op, msg)
  260. }
  261. if err != nil {
  262. return err
  263. }
  264. // dispatch has accepted the request and will close the channel when it quits.
  265. switch resp, err := op.wait(ctx, c); {
  266. case err != nil:
  267. return err
  268. case resp.Error != nil:
  269. return resp.Error
  270. case len(resp.Result) == 0:
  271. return ErrNoResult
  272. default:
  273. return json.Unmarshal(resp.Result, &result)
  274. }
  275. }
  276. // BatchCall sends all given requests as a single batch and waits for the server
  277. // to return a response for all of them.
  278. //
  279. // In contrast to Call, BatchCall only returns I/O errors. Any error specific to
  280. // a request is reported through the Error field of the corresponding BatchElem.
  281. //
  282. // Note that batch calls may not be executed atomically on the server side.
  283. func (c *Client) BatchCall(b []BatchElem) error {
  284. ctx := context.Background()
  285. return c.BatchCallContext(ctx, b)
  286. }
  287. // BatchCall sends all given requests as a single batch and waits for the server
  288. // to return a response for all of them. The wait duration is bounded by the
  289. // context's deadline.
  290. //
  291. // In contrast to CallContext, BatchCallContext only returns errors that have occurred
  292. // while sending the request. Any error specific to a request is reported through the
  293. // Error field of the corresponding BatchElem.
  294. //
  295. // Note that batch calls may not be executed atomically on the server side.
  296. func (c *Client) BatchCallContext(ctx context.Context, b []BatchElem) error {
  297. msgs := make([]*jsonrpcMessage, len(b))
  298. op := &requestOp{
  299. ids: make([]json.RawMessage, len(b)),
  300. resp: make(chan *jsonrpcMessage, len(b)),
  301. }
  302. for i, elem := range b {
  303. msg, err := c.newMessage(elem.Method, elem.Args...)
  304. if err != nil {
  305. return err
  306. }
  307. msgs[i] = msg
  308. op.ids[i] = msg.ID
  309. }
  310. var err error
  311. if c.isHTTP {
  312. err = c.sendBatchHTTP(ctx, op, msgs)
  313. } else {
  314. err = c.send(ctx, op, msgs)
  315. }
  316. // Wait for all responses to come back.
  317. for n := 0; n < len(b) && err == nil; n++ {
  318. var resp *jsonrpcMessage
  319. resp, err = op.wait(ctx, c)
  320. if err != nil {
  321. break
  322. }
  323. // Find the element corresponding to this response.
  324. // The element is guaranteed to be present because dispatch
  325. // only sends valid IDs to our channel.
  326. var elem *BatchElem
  327. for i := range msgs {
  328. if bytes.Equal(msgs[i].ID, resp.ID) {
  329. elem = &b[i]
  330. break
  331. }
  332. }
  333. if resp.Error != nil {
  334. elem.Error = resp.Error
  335. continue
  336. }
  337. if len(resp.Result) == 0 {
  338. elem.Error = ErrNoResult
  339. continue
  340. }
  341. elem.Error = json.Unmarshal(resp.Result, elem.Result)
  342. }
  343. return err
  344. }
  345. // Notify sends a notification, i.e. a method call that doesn't expect a response.
  346. func (c *Client) Notify(ctx context.Context, method string, args ...interface{}) error {
  347. op := new(requestOp)
  348. msg, err := c.newMessage(method, args...)
  349. if err != nil {
  350. return err
  351. }
  352. msg.ID = nil
  353. if c.isHTTP {
  354. return c.sendHTTP(ctx, op, msg)
  355. } else {
  356. return c.send(ctx, op, msg)
  357. }
  358. }
  359. // EthSubscribe registers a subscripion under the "eth" namespace.
  360. func (c *Client) EthSubscribe(ctx context.Context, channel interface{}, args ...interface{}) (*ClientSubscription, error) {
  361. return c.Subscribe(ctx, "eth", channel, args...)
  362. }
  363. // ShhSubscribe registers a subscripion under the "shh" namespace.
  364. func (c *Client) ShhSubscribe(ctx context.Context, channel interface{}, args ...interface{}) (*ClientSubscription, error) {
  365. return c.Subscribe(ctx, "shh", channel, args...)
  366. }
  367. // Subscribe calls the "<namespace>_subscribe" method with the given arguments,
  368. // registering a subscription. Server notifications for the subscription are
  369. // sent to the given channel. The element type of the channel must match the
  370. // expected type of content returned by the subscription.
  371. //
  372. // The context argument cancels the RPC request that sets up the subscription but has no
  373. // effect on the subscription after Subscribe has returned.
  374. //
  375. // Slow subscribers will be dropped eventually. Client buffers up to 20000 notifications
  376. // before considering the subscriber dead. The subscription Err channel will receive
  377. // ErrSubscriptionQueueOverflow. Use a sufficiently large buffer on the channel or ensure
  378. // that the channel usually has at least one reader to prevent this issue.
  379. func (c *Client) Subscribe(ctx context.Context, namespace string, channel interface{}, args ...interface{}) (*ClientSubscription, error) {
  380. // Check type of channel first.
  381. chanVal := reflect.ValueOf(channel)
  382. if chanVal.Kind() != reflect.Chan || chanVal.Type().ChanDir()&reflect.SendDir == 0 {
  383. panic("first argument to Subscribe must be a writable channel")
  384. }
  385. if chanVal.IsNil() {
  386. panic("channel given to Subscribe must not be nil")
  387. }
  388. if c.isHTTP {
  389. return nil, ErrNotificationsUnsupported
  390. }
  391. msg, err := c.newMessage(namespace+subscribeMethodSuffix, args...)
  392. if err != nil {
  393. return nil, err
  394. }
  395. op := &requestOp{
  396. ids: []json.RawMessage{msg.ID},
  397. resp: make(chan *jsonrpcMessage),
  398. sub: newClientSubscription(c, namespace, chanVal),
  399. }
  400. // Send the subscription request.
  401. // The arrival and validity of the response is signaled on sub.quit.
  402. if err := c.send(ctx, op, msg); err != nil {
  403. return nil, err
  404. }
  405. if _, err := op.wait(ctx, c); err != nil {
  406. return nil, err
  407. }
  408. return op.sub, nil
  409. }
  410. func (c *Client) newMessage(method string, paramsIn ...interface{}) (*jsonrpcMessage, error) {
  411. msg := &jsonrpcMessage{Version: vsn, ID: c.nextID(), Method: method}
  412. if paramsIn != nil { // prevent sending "params":null
  413. var err error
  414. if msg.Params, err = json.Marshal(paramsIn); err != nil {
  415. return nil, err
  416. }
  417. }
  418. return msg, nil
  419. }
  420. // send registers op with the dispatch loop, then sends msg on the connection.
  421. // if sending fails, op is deregistered.
  422. func (c *Client) send(ctx context.Context, op *requestOp, msg interface{}) error {
  423. select {
  424. case c.reqInit <- op:
  425. err := c.write(ctx, msg, false)
  426. c.reqSent <- err
  427. return err
  428. case <-ctx.Done():
  429. // This can happen if the client is overloaded or unable to keep up with
  430. // subscription notifications.
  431. return ctx.Err()
  432. case <-c.closing:
  433. return ErrClientQuit
  434. }
  435. }
  436. func (c *Client) write(ctx context.Context, msg interface{}, retry bool) error {
  437. // The previous write failed. Try to establish a new connection.
  438. if c.writeConn == nil {
  439. if err := c.reconnect(ctx); err != nil {
  440. return err
  441. }
  442. }
  443. err := c.writeConn.writeJSON(ctx, msg)
  444. if err != nil {
  445. c.writeConn = nil
  446. if !retry {
  447. return c.write(ctx, msg, true)
  448. }
  449. }
  450. return err
  451. }
  452. func (c *Client) reconnect(ctx context.Context) error {
  453. if c.reconnectFunc == nil {
  454. return errDead
  455. }
  456. if _, ok := ctx.Deadline(); !ok {
  457. var cancel func()
  458. ctx, cancel = context.WithTimeout(ctx, defaultDialTimeout)
  459. defer cancel()
  460. }
  461. newconn, err := c.reconnectFunc(ctx)
  462. if err != nil {
  463. log.Trace("RPC client reconnect failed", "err", err)
  464. return err
  465. }
  466. select {
  467. case c.reconnected <- newconn:
  468. c.writeConn = newconn
  469. return nil
  470. case <-c.didClose:
  471. newconn.close()
  472. return ErrClientQuit
  473. }
  474. }
  475. // dispatch is the main loop of the client.
  476. // It sends read messages to waiting calls to Call and BatchCall
  477. // and subscription notifications to registered subscriptions.
  478. func (c *Client) dispatch(codec ServerCodec) {
  479. var (
  480. lastOp *requestOp // tracks last send operation
  481. reqInitLock = c.reqInit // nil while the send lock is held
  482. conn = c.newClientConn(codec)
  483. reading = true
  484. )
  485. defer func() {
  486. close(c.closing)
  487. if reading {
  488. conn.close(ErrClientQuit, nil)
  489. c.drainRead()
  490. }
  491. close(c.didClose)
  492. }()
  493. // Spawn the initial read loop.
  494. go c.read(codec)
  495. for {
  496. select {
  497. case <-c.close:
  498. return
  499. // Read path:
  500. case op := <-c.readOp:
  501. if op.batch {
  502. conn.handler.handleBatch(op.msgs)
  503. } else {
  504. conn.handler.handleMsg(op.msgs[0])
  505. }
  506. case err := <-c.readErr:
  507. conn.handler.log.Debug("RPC connection read error", "err", err)
  508. conn.close(err, lastOp)
  509. reading = false
  510. // Reconnect:
  511. case newcodec := <-c.reconnected:
  512. log.Debug("RPC client reconnected", "reading", reading, "conn", newcodec.remoteAddr())
  513. if reading {
  514. // Wait for the previous read loop to exit. This is a rare case which
  515. // happens if this loop isn't notified in time after the connection breaks.
  516. // In those cases the caller will notice first and reconnect. Closing the
  517. // handler terminates all waiting requests (closing op.resp) except for
  518. // lastOp, which will be transferred to the new handler.
  519. conn.close(errClientReconnected, lastOp)
  520. c.drainRead()
  521. }
  522. go c.read(newcodec)
  523. reading = true
  524. conn = c.newClientConn(newcodec)
  525. // Re-register the in-flight request on the new handler
  526. // because that's where it will be sent.
  527. conn.handler.addRequestOp(lastOp)
  528. // Send path:
  529. case op := <-reqInitLock:
  530. // Stop listening for further requests until the current one has been sent.
  531. reqInitLock = nil
  532. lastOp = op
  533. conn.handler.addRequestOp(op)
  534. case err := <-c.reqSent:
  535. if err != nil {
  536. // Remove response handlers for the last send. When the read loop
  537. // goes down, it will signal all other current operations.
  538. conn.handler.removeRequestOp(lastOp)
  539. }
  540. // Let the next request in.
  541. reqInitLock = c.reqInit
  542. lastOp = nil
  543. case op := <-c.reqTimeout:
  544. conn.handler.removeRequestOp(op)
  545. }
  546. }
  547. }
  548. // drainRead drops read messages until an error occurs.
  549. func (c *Client) drainRead() {
  550. for {
  551. select {
  552. case <-c.readOp:
  553. case <-c.readErr:
  554. return
  555. }
  556. }
  557. }
  558. // read decodes RPC messages from a codec, feeding them into dispatch.
  559. func (c *Client) read(codec ServerCodec) {
  560. for {
  561. msgs, batch, err := codec.readBatch()
  562. if _, ok := err.(*json.SyntaxError); ok {
  563. codec.writeJSON(context.Background(), errorMessage(&parseError{err.Error()}))
  564. }
  565. if err != nil {
  566. c.readErr <- err
  567. return
  568. }
  569. c.readOp <- readOp{msgs, batch}
  570. }
  571. }