go-ethereum/p2p/discover/v5_udp.go
Jerry 7e2be02c26
Merge upstream_merge branch to develop (#1229)
* cmd, core, trie: verkle-capable `geth init` (#28270)

This change allows the creation of a genesis block for verkle testnets. This makes for a chunk of code that is easier to review and still touches many discussion points.

* eth/tracers/js: fix isPush for push0 (#28520)

Fixes so that `push0` opcode is correctly reported as `true` by the `IsPush` function

---------

Co-authored-by: Martin Holst Swende <martin@swende.se>

* trie: spelling - fix comments in hasher (#28507)

Co-authored-by: VM <arimas@foxmail.com>

* tests/fuzzers: move fuzzers into native packages (#28467)

This PR moves our fuzzers from tests/fuzzers into whatever their respective 'native' package is.

The historical reason why they were placed in an external location, is that when they were based on go-fuzz, they could not be "hidden" via the _test.go prefix. So in order to shove them away from the go-ethereum "production code", they were put aside.

But now we've rewritten them to be based on golang testing, and thus can be brought back. I've left (in tests/) the ones that are not production (bls128381), require non-standard imports (secp requires btcec, bn256 requires gnark/google/cloudflare deps).

This PR also adds a fuzzer for precompiled contracts, because why not.

This PR utilizes a newly rewritten replacement for go-118-fuzz-build, namely gofuzz-shim, which utilises the inputs from the fuzzing engine better.

* tests: skip tests on windows 32bit CI (#28521)

tests: skip half the blockchain- and state-tests on windows 32bit CI-tests

* cmd/geth: more special cases logging tests (#28527)

adds logging tests for errors and custom fmt.Stringer-types which output strings that needs to be quoted/escaped.

* accounts,cmd,console,les,metrics:  refactor some errors checked by (ST1005) go-staticcheck (#28532)

fix: fix some (ST1005)go-staticcheck

* miner: run tests in parallel (#28506)

Changes many of the tests in the miner package to run in parallel

* internal/jsre/deps: fix typo in jsdoc (#28511)

minor typo fix

* accounts/abi: improve readability of method-to-string conversion  (#28530)

refactor: improve readability of NewMethod print

* all: replace some cases of strings.SplitN with strings.Cut (#28446)

* ethdb/memorydb, trie: reduced allocations (#28473)

* trie: use pooling of iterator states in iterator

The node iterator burns through a lot of memory while iterating a trie, and a lot of
that can be avoided by using a fairly small pool (max 40 items).

name        old time/op    new time/op    delta
Iterator-8    6.22ms ± 3%    5.40ms ± 6%  -13.18%  (p=0.008 n=5+5)

name        old alloc/op   new alloc/op   delta
Iterator-8    2.36MB ± 0%    1.67MB ± 0%  -29.23%  (p=0.008 n=5+5)

name        old allocs/op  new allocs/op  delta
Iterator-8     37.0k ± 0%     29.8k ± 0%     ~     (p=0.079 n=4+5)

* ethdb/memorydb: avoid one copying of key

By making the transformation from []byte to string at an earlier point,
we save an allocation which otherwise happens later on.

name           old time/op    new time/op    delta
BatchAllocs-8     412µs ± 6%     382µs ± 2%   -7.18%  (p=0.016 n=5+4)

name           old alloc/op   new alloc/op   delta
BatchAllocs-8     480kB ± 0%     490kB ± 0%   +1.93%  (p=0.008 n=5+5)

name           old allocs/op  new allocs/op  delta
BatchAllocs-8     3.03k ± 0%     2.03k ± 0%  -32.98%  (p=0.008 n=5+5)

* Dockerfile: update Go to 1.21 (#28538)

* cmd/evm: validate blockchain tests poststate account storage (#28443)

This PR verifies the accounts' storage as specified in a blockchain test's postState field

The expect-section, it does really only check that the test works. It's meant for the test-author to verify that "If the test does what it's supposed to, then the nonce of X should be 2, and the slot Y at Z should be 0x123.

    This expect-section is not exhaustive (not full post-state)
    It is also not auto-generated, but put there manually by the author.

We can still check it, as a test-sanity-check, in geth

* signer: run tests in parallel (#28536)

marks tests as parallel-safe in package signer

* accounts, cmd: fix typos (#28526)

* core/txpool/legacypool: respect nolocals-setting (#28435)

This change adds a check to ensure that transactions added to the legacy pool are not treated as 'locals' if the global locals-management has been disabled. 

This change makes the pool enforce the --txpool.pricelimit setting.

* cmd: run tests in parallel (#28546)

* core/state/snapshot: print correct error from trie iterator (#28560)

* cmd/evm: capitalize evm commands (#28569)

* standard:fix for a unified standard

* standard:fix more as a complements

---------

Co-authored-by: haotian <haotian@haotiandeMacBook-Air.local>

* accounts/abi: context info on unpack-errors (#28529)

adds contextual information to errors returned by unpack

* core, trie, rpc: speed up tests (#28461)

* rpc: make subscription test faster

reduces time for TestClientSubscriptionChannelClose
from 25 sec to < 1 sec.

* trie: cache trie nodes for faster sanity check

This reduces the time spent on TestIncompleteSyncHash
from ~25s to ~16s.

* core/forkid: speed up validation test

This takes the validation test from > 5s to sub 1 sec

* core/state: improve snapshot test run
brings the time for TestSnapshotRandom from 13s down to 6s

* accounts/keystore: improve keyfile test

This removes some unnecessary waits and reduces the
runtime of TestUpdatedKeyfileContents from 5 to 3 seconds

* trie: remove resolver
* trie: only check ~5% of all trie nodes

* ethdb/pebble: don't double-close iterator inside pebbleIterator (#28566)

Adds 'released' flag to pebbleIterator to avoid double closing cockroachdb/pebble.Iterator as it is an invalid operation.

Fixes #28565

* eth/filters: reuse error msg for invalid block range (#28479)

* core/types: make 'v' optional for DynamicFeeTx and BlobTx (#28564)

This fixes an issue where transactions would not be accepted when they have only
'yParity' and not 'v'.

* rpc: improve performance of subscription notification encoding (#28328)

It turns out that encoding json.RawMessage is slow because
package json basically parses the message again to ensure it is valid.
We can avoid the slowdown by encoding the entire RPC notification once,
which yields a 30% speedup.

* cmd/utils: validate pre-existing genesis in --dev mode (#28468)

geth --dev can be used with an existing data directory and genesis block. Since
dev mode only works with PoS, we need to verify that the merge has happened.

Co-authored-by: Felix Lange <fjl@twurst.com>

* cmd/geth: add support for --dev flag in dumpgenesis (#28463)


Co-authored-by: Felix Lange <fjl@twurst.com>
Co-authored-by: lightclient <lightclient@protonmail.com>

* les/vflux: run tests in parallel (#28524)

* cmd/{geth,utils}: add cmd to export preimages in snap enumeration order (#28256)

Adds a subcommand: `geth snapshot export-preimages`, to export preimages of every hash found during a snapshot enumeration: that is, it exports _only the active state_, and not _all_ preimages that have been used but are no longer part of the state. 

This tool is needed for the verkle transition, in order to distribute the preimages needed for the conversion. Since only the 'active' preimages are exported, the output is shrunk from ~70GB to ~4GB.

The order of the output is the order used by the snapshot enumeration, which avoids database thrashing. However, it also means that storage-slot preimages are not deduplicated.

* cmd/geth: fix build error (#28585)

* cmd/devp2p/internal/ethtest: undo debug-hack (#28588)

cmd/devp2p/internal/ethtest: remove a debug-hack flaw which prevented certain tests from running

* params: update discV5 bootnodes (#28562)

update discV5 bootnodes from https://github.com/eth-clients/eth2-networks/blob/master/shared/mainnet/bootstrap_nodes.txt

* cmd, les, tests: remove light client code (#28586)

* cmd, les, tests: remove light client code

This commit removes the light client (LES) code.
Since the merge the light client has been broken and
it is hard to maintain it alongside the normal client.
We decided it would be best to remove it for now and
maybe rework and reintroduce it in the future.

* cmd, eth: remove some more mentions of light mode

* cmd: re-add flags and mark as deprecated

* cmd: warn the user about deprecated flags

* eth: better error message

* eth, internal/ethapi: drop some weird indirection (#28597)

* trie: fix random test generator early terminate (#28590)

This change fixes a minor bug in the `randTest.Generate` function, which caused the `quick.Check` to be a no-op.

* eth/gasestimator, internal/ethapi: move gas estimator out of rpc (#28600)

* go.mod: update uint256 to v1.2.4 (#28612)

* eth/catalyst, eth/downloader: expose more sync information (#28584)

This change exposes more information from sync module internally

* light: remove package light(#28614)

This changes removes the package 'light', which is currently unused.

* cmd/evm, core/state: fix post-exec dump of state (statetests, blockchaintests) (#28504)

There were several problems related to dumping state. 

- If a preimage was missing, even if we had set the `OnlyWithAddresses` to `false`, to export them anyway, the way the mapping was constructed (using `common.Address` as key) made the entries get lost anyway. Concerns both state- and blockchain tests. 
- Blockchain test execution was not configured to store preimages.

This changes makes it so that the block test executor takes a callback, just like the state test executor already does. This callback can be used to examine the post-execution state, e.g. to aid debugging of test failures.

* ethereum: remove TODO comment about subscription (#28609)

* eth/tracers/js: fix type inconsistencies (#28488)

This change fixes two type-inconsistencies in the JS tracer:

- In most places we return byte arrays as a `Uint8Array` to the tracer. However it seems we missed doing the conversion for `ctx` fields which are passed to the tracer during `result`. They are passed as simple arrays. I think Uint8Arrays are more suitable and we should change this inconsistency. Note: this will be a breaking-change. But I believe the effect is small. If we look at our tracers we see that these fields (`ctx.from`, `ctx.to`, etc.) are used in 2 ways. Passed to `toHex` which takes both array or buffer. Or the length was measured which is the same for both types.
- The `slice` taking in `int, int` params versus `memory.slice` taking `int64, int64` params. I suggest changing `slice` types to `int64`. This should have no effect almost in any case.

* crypto/secp256k1: fix 32-bit tests when CGO_ENABLED=0 (#28602)

* consensus: verify the nonexistence of shanghai- and cancun-specific header fields (#28605)

* eth/gasestimator: allow slight estimation error in favor of less iterations (#28618)

* eth/gasestimator: early exit for plain transfer and error allowance

* core, eth/gasestimator: hard guess at a possible required gas

* internal/ethapi: update estimation tests with the error ratio

* eth/gasestimator: I hate you linter

* graphql: fix gas estimation test

---------

Co-authored-by: Oren <orenyomtov@users.noreply.github.com>

* all: replace log15 with slog (#28187)

This PR replaces Geth's logger package (a fork of [log15](https://github.com/inconshreveable/log15)) with an implementation using slog, a logging library included as part of the Go standard library as of Go1.21.

Main changes are as follows:
* removes any log handlers that were unused in the Geth codebase.
* Json, logfmt, and terminal formatters are now slog handlers.
* Verbosity level constants are changed to match slog constant values.  Internal translation is done to make this opaque to the user and backwards compatible with existing `--verbosity` and `--vmodule` options.
* `--log.backtraceat` and `--log.debug` are removed.

The external-facing API is largely the same as the existing Geth logger.  Logger method signatures remain unchanged.

A small semantic difference is that a `Handler` can only be set once per `Logger` and not changed dynamically.  This just means that a new logger must be instantiated every time the handler of the root logger is changed.

----
For users of the `go-ethereum/log` module. If you were using this module for your own project, you will need to change the initialization. If you previously did 
```golang
log.Root().SetHandler(log.LvlFilterHandler(log.LvlInfo, log.StreamHandler(os.Stderr, log.TerminalFormat(true))))
```
You now instead need to do 
```golang
log.SetDefault(log.NewLogger(log.NewTerminalHandlerWithLevel(os.Stderr, log.LevelInfo, true)))
```
See more about reasoning here: https://github.com/ethereum/go-ethereum/issues/28558#issuecomment-1820606613

* core/state: make stateobject.create selfcontain (#28459)

* trie/triedb/hashdb: take lock around access to dirties cache (#28542)

Add read locking of db lock around access to dirties cache in hashdb.Database to prevent
data race versus hashdb.Database.dereference which can modify the dirities map by deleting
an item.

Fixes #28541

---------

Co-authored-by: Gary Rong <garyrong0905@gmail.com>

* accounts/abi/bind: fix typo (#28630)

* slog: faster and less memory-consumption (#28621)

These changes improves the performance of the non-coloured terminal formatting, _quite a lot_. 

```
name               old time/op    new time/op    delta
TerminalHandler-8    10.2µs ±15%     5.4µs ± 9%  -47.02%  (p=0.008 n=5+5)

name               old alloc/op   new alloc/op   delta
TerminalHandler-8    2.17kB ± 0%    0.40kB ± 0%  -81.46%  (p=0.008 n=5+5)

name               old allocs/op  new allocs/op  delta
TerminalHandler-8      33.0 ± 0%       5.0 ± 0%  -84.85%  (p=0.008 n=5+5)
```

I tried to _somewhat_ organize the commits, but the it might still be a bit chaotic. Some core insights: 

- The function `terminalHandler.Handl` uses a mutex, and writes all output immediately to 'upstream'. Thus, it can reuse a scratch-buffer every time. 
- This buffer can be propagated internally, making all the internal formatters either write directly to it,
- OR, make  use of the `tmp := buf.AvailableBuffer()` in some cases, where a byte buffer "extra capacity" can be temporarily used. 
- The `slog` package  uses `Attr` by value. It makes sense to minimize operating on them, since iterating / collecting into a new slice, iterating again etc causes copy-on-heap. Better to operate on them only once. 
- If we want to do padding, it's better to copy from a constant `space`-buffer than to invoke `bytes.Repeat` every single time.

* eth/tracers: tx-level state in debug_traceCall (#28460)

* cmd/evm: fix Env struct json tag (#28635)

* accounts/abi/bind: fixed typos (#28634)

* Update auth.go

* Update backend.go

* Update bind.go

* Update bind_test.go

* eth/fetcher: fix invalid tracking of received at time for block (#28637)

eth/fetcher: fix invalid tracking of received at time

* accounts: run tests in parallel (#28544)

* eth/tracers/logger: make structlog/json-log stack hex again (#28628)

* common/hexutil: define hex wrappers for uint256.Int

* eth/tracers/logger: make structlog/json-log stack hex again

* common/hexutil: goimports

* log: remove lazy, remove unused interfaces, unexport methods (#28622)

This change 

- Removes interface `log.Format`, 
- Removes method `log.FormatFunc`, 
- unexports `TerminalHandler.TerminalFormat` formatting methods (renamed to `TerminalHandler.format`)
- removes the notion of `log.Lazy` values


The lazy handler was useful in the old log package, since it
could defer the evaluation of costly attributes until later in the
log pipeline: thus, if the logging was done at 'Trace', we could
skip evaluation if logging only was set to 'Info'.

With the move to slog, this way of deferring evaluation is no longer
needed, since slog introduced 'Enabled': the caller can thus do
the evaluate-or-not decision at the callsite, which is much more
straight-forward than dealing with lazy reflect-based evaluation.

Also, lazy evaluation would not work with 'native' slog, as in, these
two statements would be evaluated differently:

```golang
  log.Info("foo", "my lazy", lazyObj)
  slog.Info("foo", "my lazy", lazyObj)
```

* .github: use github actions to run 32-bit linux tests (#28549)

use github actions to run 32-bit linux tests

* ethdb/pebble: remove a dependency (#28627)

The dependency was not really used anyway, so we can get rid of it.

Co-authored-by: Felix Lange <fjl@twurst.com>

* tests/fuzzers/bls12381: deactivate BLS fuzzer when CGO_ENABLED=0 (#28653)

tests/fuzzers/bls12381: deactivate fuzzer when CGO_ENABLED=0

* build: upgrade -dlgo version to Go 1.21.5 (#28648)

* rpc: fix ns/µs mismatch in metrics (#28649)

The rpc/duration/all meter was in nanoseconds, the individual meter in microseconds.
This PR changes it so both of them use nanoseconds.

* cmd/evm: fix dump after state-test exec (#28650)

The dump after state-test didn't work, the problem was an error, "Already committed", which was silently ignored. 

This change re-initialises the state, so the dumping works again.

* beacon/light: add CommitteeChain (#27766)

This change implements CommitteeChain which is a key component of the beacon light client. It is a passive data structure that can validate, hold and update a chain of beacon light sync committees and updates, starting from a checkpoint that proves the starting committee through a beacon block hash, header and corresponding state. Once synced to the current sync period, CommitteeChain can also validate signed beacon headers.

* cmd/utils, eth: disallow invalid snap sync / snapshot flag combos (#28657)

* eth: prevent startup in snap mode without snapshots

* cmd/utils: try to fix bad flag combos wrt snap sync and snapshot generation

* trie: remove inconsistent trie nodes during sync in path mode (#28595)

This fixes a database corruption issue that could occur during state healing.
When sync is aborted while certain modifications were already committed, and a
reorg occurs, the database would contain incorrect trie nodes stored by path.
These nodes need to detected/deleted in order to obtain a complete and fully correct state
after state healing.

---------

Co-authored-by: Felix Lange <fjl@twurst.com>

* cmd/utils: fix HTTPHost, WSHost flag priority (#28669)


Co-authored-by: Felix Lange <fjl@twurst.com>

* eth/protocols/eth: fix typos in comments (#28652)

* core/txpool : small cleanup refactors (#28654)

* eth/fetcher, eth/gasestimator: fix typos in comments (#28675)

* all: fix typos in comments (#28662)


Co-authored-by: Felix Lange <fjl@twurst.com>

* miner: eliminate the dead loop possibility for `newWorkLoop` and `mainLoop` (#28677)

discard the intervalAdjust message if the channel is full

* all: fix typos in comments (#28682)

chore(core,eth):fix a couple of typos

* p2p/discover: add liveness check in collectTableNodes (#28686)

* p2p/discover: add liveness check in collectTableNodes

* p2p/discover: fix test

* p2p/discover: rename to appendLiveNodes

* p2p/discover: add dedup logic back

* p2p/discover: simplify

* p2p/discover: fix issue found by test

* internal/flags: add missing flag types for auto-env-var generation (#28692)

Certain flags, such as `--rpc.txfeecap` currently do not have an env-var auto-generated for them. This change adds three missing cli flag types to the auto env-var helper function to fix this.

* cmd/evm:  default to mirror mainnet forks enabled (#28691)

cmd/evm:  default to using dev chain config (all mainnet HFs activated at block/timestamp 0

* cmd/evm, cmd/clef, cmd/bootnode: fix / unify logging (#28696)

This change fixes a problem with our non-core binaries: evm, clef, bootnode.

First of all, they failed to convert from legacy loglevels 1 to 5, to the new slog loglevels -4 to 4.

Secondly, the logging was actually setup in the init phase, and then overridden in the main. This is not needed for evm, since it used the same flag name as the main geth verbosity. Better to let the flags/internal handle the logging init.

* cmd/evm: t8n support custom tracers (#28557)

This change implements ability for the `evm t8n` tool to use custom tracers; either 'native' golang tracers or javascript tracers.

* params: release go-ethereum v1.13.6 stable

* Fix build errors

* Fix test-integration

---------

Co-authored-by: Guillaume Ballet <3272758+gballet@users.noreply.github.com>
Co-authored-by: Sina Mahmoodi <1591639+s1na@users.noreply.github.com>
Co-authored-by: Martin Holst Swende <martin@swende.se>
Co-authored-by: VM <112189277+sysvm@users.noreply.github.com>
Co-authored-by: VM <arimas@foxmail.com>
Co-authored-by: jwasinger <j-wasinger@hotmail.com>
Co-authored-by: Zoro <40222601+BabyHalimao@users.noreply.github.com>
Co-authored-by: Håvard Anda Estensen <haavard.ae@gmail.com>
Co-authored-by: aliening <128203330+aliening@users.noreply.github.com>
Co-authored-by: Halimao <1065621723@qq.com>
Co-authored-by: danceratopz <danceratopz@gmail.com>
Co-authored-by: levisyin <150114626+levisyin@users.noreply.github.com>
Co-authored-by: jp-imx <109574657+jp-imx@users.noreply.github.com>
Co-authored-by: rjl493456442 <garyrong0905@gmail.com>
Co-authored-by: Haotian <51777534+tmelhao@users.noreply.github.com>
Co-authored-by: haotian <haotian@haotiandeMacBook-Air.local>
Co-authored-by: Marius van der Wijden <m.vanderwijden@live.de>
Co-authored-by: Maciej Kulawik <10907694+magicxyyz@users.noreply.github.com>
Co-authored-by: ucwong <ucwong@126.com>
Co-authored-by: Mario Vega <marioevz@gmail.com>
Co-authored-by: Delweng <delweng@gmail.com>
Co-authored-by: Felix Lange <fjl@twurst.com>
Co-authored-by: lightclient <lightclient@protonmail.com>
Co-authored-by: Mikel Cortes <45786396+cortze@users.noreply.github.com>
Co-authored-by: Péter Szilágyi <peterke@gmail.com>
Co-authored-by: Ng Wei Han <47109095+weiihann@users.noreply.github.com>
Co-authored-by: lightclient <14004106+lightclient@users.noreply.github.com>
Co-authored-by: Shivam Sandbhor <shivam.sandbhor@gmail.com>
Co-authored-by: Jakub Freebit <49676311+jakub-freebit@users.noreply.github.com>
Co-authored-by: Oren <orenyomtov@users.noreply.github.com>
Co-authored-by: BorkBorked <107079055+BorkBorked@users.noreply.github.com>
Co-authored-by: ddl <dengdiliang@gmail.com>
Co-authored-by: Manav Darji <manavdarji.india@gmail.com>
Co-authored-by: Marius Kjærstad <sandakersmann@users.noreply.github.com>
Co-authored-by: Felföldi Zsolt <zsfelfoldi@gmail.com>
Co-authored-by: Ford <153042616+guerrierindien@users.noreply.github.com>
Co-authored-by: Ursulafe <152976968+Ursulafe@users.noreply.github.com>
Co-authored-by: Elias Rad <146735585+nnsW3@users.noreply.github.com>
Co-authored-by: FletcherMan <fanciture@163.com>
Co-authored-by: alex <152680487+bodhi-crypo@users.noreply.github.com>
Co-authored-by: Sebastian Stammler <seb@oplabs.co>
2024-04-29 12:21:11 +02:00

982 lines
27 KiB
Go

// Copyright 2020 The go-ethereum Authors
// This file is part of the go-ethereum library.
//
// The go-ethereum library is free software: you can redistribute it and/or modify
// it under the terms of the GNU Lesser General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
//
// The go-ethereum library is distributed in the hope that it will be useful,
// but WITHOUT ANY WARRANTY; without even the implied warranty of
// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
// GNU Lesser General Public License for more details.
//
// You should have received a copy of the GNU Lesser General Public License
// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
package discover
import (
"bytes"
"context"
"crypto/ecdsa"
crand "crypto/rand"
"errors"
"fmt"
"io"
"net"
"sync"
"time"
"github.com/ethereum/go-ethereum/common/mclock"
"github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/p2p/discover/v5wire"
"github.com/ethereum/go-ethereum/p2p/enode"
"github.com/ethereum/go-ethereum/p2p/enr"
"github.com/ethereum/go-ethereum/p2p/netutil"
)
const (
lookupRequestLimit = 3 // max requests against a single node during lookup
findnodeResultLimit = 16 // applies in FINDNODE handler
totalNodesResponseLimit = 5 // applies in waitForNodes
respTimeoutV5 = 700 * time.Millisecond
)
// codecV5 is implemented by v5wire.Codec (and testCodec).
//
// The UDPv5 transport is split into two objects: the codec object deals with
// encoding/decoding and with the handshake; the UDPv5 object handles higher-level concerns.
type codecV5 interface {
// Encode encodes a packet.
Encode(enode.ID, string, v5wire.Packet, *v5wire.Whoareyou) ([]byte, v5wire.Nonce, error)
// Decode decodes a packet. It returns a *v5wire.Unknown packet if decryption fails.
// The *enode.Node return value is non-nil when the input contains a handshake response.
Decode([]byte, string) (enode.ID, *enode.Node, v5wire.Packet, error)
}
// UDPv5 is the implementation of protocol version 5.
type UDPv5 struct {
// static fields
conn UDPConn
tab *Table
netrestrict *netutil.Netlist
priv *ecdsa.PrivateKey
localNode *enode.LocalNode
db *enode.DB
log log.Logger
clock mclock.Clock
validSchemes enr.IdentityScheme
// misc buffers used during message handling
logcontext []interface{}
// talkreq handler registry
talk *talkSystem
// channels into dispatch
packetInCh chan ReadPacket
readNextCh chan struct{}
callCh chan *callV5
callDoneCh chan *callV5
respTimeoutCh chan *callTimeout
sendCh chan sendRequest
unhandled chan<- ReadPacket
// state of dispatch
codec codecV5
activeCallByNode map[enode.ID]*callV5
activeCallByAuth map[v5wire.Nonce]*callV5
callQueue map[enode.ID][]*callV5
// shutdown stuff
closeOnce sync.Once
closeCtx context.Context
cancelCloseCtx context.CancelFunc
wg sync.WaitGroup
}
type sendRequest struct {
destID enode.ID
destAddr *net.UDPAddr
msg v5wire.Packet
}
// callV5 represents a remote procedure call against another node.
type callV5 struct {
id enode.ID
addr *net.UDPAddr
node *enode.Node // This is required to perform handshakes.
packet v5wire.Packet
responseType byte // expected packet type of response
reqid []byte
ch chan v5wire.Packet // responses sent here
err chan error // errors sent here
// Valid for active calls only:
nonce v5wire.Nonce // nonce of request packet
handshakeCount int // # times we attempted handshake for this call
challenge *v5wire.Whoareyou // last sent handshake challenge
timeout mclock.Timer
}
// callTimeout is the response timeout event of a call.
type callTimeout struct {
c *callV5
timer mclock.Timer
}
// ListenV5 listens on the given connection.
func ListenV5(conn UDPConn, ln *enode.LocalNode, cfg Config) (*UDPv5, error) {
t, err := newUDPv5(conn, ln, cfg)
if err != nil {
return nil, err
}
go t.tab.loop()
t.wg.Add(2)
go t.readLoop()
go t.dispatch()
return t, nil
}
// newUDPv5 creates a UDPv5 transport, but doesn't start any goroutines.
func newUDPv5(conn UDPConn, ln *enode.LocalNode, cfg Config) (*UDPv5, error) {
closeCtx, cancelCloseCtx := context.WithCancel(context.Background())
cfg = cfg.withDefaults()
t := &UDPv5{
// static fields
conn: newMeteredConn(conn),
localNode: ln,
db: ln.Database(),
netrestrict: cfg.NetRestrict,
priv: cfg.PrivateKey,
log: cfg.Log,
validSchemes: cfg.ValidSchemes,
clock: cfg.Clock,
// channels into dispatch
packetInCh: make(chan ReadPacket, 1),
readNextCh: make(chan struct{}, 1),
callCh: make(chan *callV5),
callDoneCh: make(chan *callV5),
sendCh: make(chan sendRequest),
respTimeoutCh: make(chan *callTimeout),
unhandled: cfg.Unhandled,
// state of dispatch
codec: v5wire.NewCodec(ln, cfg.PrivateKey, cfg.Clock, cfg.V5ProtocolID),
activeCallByNode: make(map[enode.ID]*callV5),
activeCallByAuth: make(map[v5wire.Nonce]*callV5),
callQueue: make(map[enode.ID][]*callV5),
// shutdown
closeCtx: closeCtx,
cancelCloseCtx: cancelCloseCtx,
}
t.talk = newTalkSystem(t)
tab, err := newMeteredTable(t, t.db, cfg)
if err != nil {
return nil, err
}
t.tab = tab
return t, nil
}
// Self returns the local node record.
func (t *UDPv5) Self() *enode.Node {
return t.localNode.Node()
}
// Close shuts down packet processing.
func (t *UDPv5) Close() {
t.closeOnce.Do(func() {
t.cancelCloseCtx()
t.conn.Close()
t.talk.wait()
t.wg.Wait()
t.tab.close()
})
}
// Ping sends a ping message to the given node.
func (t *UDPv5) Ping(n *enode.Node) error {
_, err := t.ping(n)
return err
}
// Resolve searches for a specific node with the given ID and tries to get the most recent
// version of the node record for it. It returns n if the node could not be resolved.
func (t *UDPv5) Resolve(n *enode.Node) *enode.Node {
if intable := t.tab.getNode(n.ID()); intable != nil && intable.Seq() > n.Seq() {
n = intable
}
// Try asking directly. This works if the node is still responding on the endpoint we have.
if resp, err := t.RequestENR(n); err == nil {
return resp
}
// Otherwise do a network lookup.
result := t.Lookup(n.ID())
for _, rn := range result {
if rn.ID() == n.ID() && rn.Seq() > n.Seq() {
return rn
}
}
return n
}
// AllNodes returns all the nodes stored in the local table.
func (t *UDPv5) AllNodes() []*enode.Node {
t.tab.mutex.Lock()
defer t.tab.mutex.Unlock()
nodes := make([]*enode.Node, 0)
for _, b := range &t.tab.buckets {
for _, n := range b.entries {
nodes = append(nodes, unwrapNode(n))
}
}
return nodes
}
// LocalNode returns the current local node running the
// protocol.
func (t *UDPv5) LocalNode() *enode.LocalNode {
return t.localNode
}
// RegisterTalkHandler adds a handler for 'talk requests'. The handler function is called
// whenever a request for the given protocol is received and should return the response
// data or nil.
func (t *UDPv5) RegisterTalkHandler(protocol string, handler TalkRequestHandler) {
t.talk.register(protocol, handler)
}
// TalkRequest sends a talk request to a node and waits for a response.
func (t *UDPv5) TalkRequest(n *enode.Node, protocol string, request []byte) ([]byte, error) {
req := &v5wire.TalkRequest{Protocol: protocol, Message: request}
resp := t.callToNode(n, v5wire.TalkResponseMsg, req)
defer t.callDone(resp)
select {
case respMsg := <-resp.ch:
return respMsg.(*v5wire.TalkResponse).Message, nil
case err := <-resp.err:
return nil, err
}
}
// TalkRequestToID sends a talk request to a node and waits for a response.
func (t *UDPv5) TalkRequestToID(id enode.ID, addr *net.UDPAddr, protocol string, request []byte) ([]byte, error) {
req := &v5wire.TalkRequest{Protocol: protocol, Message: request}
resp := t.callToID(id, addr, v5wire.TalkResponseMsg, req)
defer t.callDone(resp)
select {
case respMsg := <-resp.ch:
return respMsg.(*v5wire.TalkResponse).Message, nil
case err := <-resp.err:
return nil, err
}
}
// RandomNodes returns an iterator that finds random nodes in the DHT.
func (t *UDPv5) RandomNodes() enode.Iterator {
if t.tab.len() == 0 {
// All nodes were dropped, refresh. The very first query will hit this
// case and run the bootstrapping logic.
<-t.tab.refresh()
}
return newLookupIterator(t.closeCtx, t.newRandomLookup)
}
// Lookup performs a recursive lookup for the given target.
// It returns the closest nodes to target.
func (t *UDPv5) Lookup(target enode.ID) []*enode.Node {
return t.newLookup(t.closeCtx, target).run()
}
// lookupRandom looks up a random target.
// This is needed to satisfy the transport interface.
func (t *UDPv5) lookupRandom() []*enode.Node {
return t.newRandomLookup(t.closeCtx).run()
}
// lookupSelf looks up our own node ID.
// This is needed to satisfy the transport interface.
func (t *UDPv5) lookupSelf() []*enode.Node {
return t.newLookup(t.closeCtx, t.Self().ID()).run()
}
func (t *UDPv5) newRandomLookup(ctx context.Context) *lookup {
var target enode.ID
crand.Read(target[:])
return t.newLookup(ctx, target)
}
func (t *UDPv5) newLookup(ctx context.Context, target enode.ID) *lookup {
return newLookup(ctx, t.tab, target, func(n *node) ([]*node, error) {
return t.lookupWorker(n, target)
})
}
// lookupWorker performs FINDNODE calls against a single node during lookup.
func (t *UDPv5) lookupWorker(destNode *node, target enode.ID) ([]*node, error) {
var (
dists = lookupDistances(target, destNode.ID())
nodes = nodesByDistance{target: target}
err error
)
var r []*enode.Node
r, err = t.findnode(unwrapNode(destNode), dists)
if errors.Is(err, errClosed) {
return nil, err
}
for _, n := range r {
if n.ID() != t.Self().ID() {
nodes.push(wrapNode(n), findnodeResultLimit)
}
}
return nodes.entries, err
}
// lookupDistances computes the distance parameter for FINDNODE calls to dest.
// It chooses distances adjacent to logdist(target, dest), e.g. for a target
// with logdist(target, dest) = 255 the result is [255, 256, 254].
func lookupDistances(target, dest enode.ID) (dists []uint) {
td := enode.LogDist(target, dest)
dists = append(dists, uint(td))
for i := 1; len(dists) < lookupRequestLimit; i++ {
if td+i <= 256 {
dists = append(dists, uint(td+i))
}
if td-i > 0 {
dists = append(dists, uint(td-i))
}
}
return dists
}
// ping calls PING on a node and waits for a PONG response.
func (t *UDPv5) ping(n *enode.Node) (uint64, error) {
req := &v5wire.Ping{ENRSeq: t.localNode.Node().Seq()}
resp := t.callToNode(n, v5wire.PongMsg, req)
defer t.callDone(resp)
select {
case pong := <-resp.ch:
return pong.(*v5wire.Pong).ENRSeq, nil
case err := <-resp.err:
return 0, err
}
}
// RequestENR requests n's record.
func (t *UDPv5) RequestENR(n *enode.Node) (*enode.Node, error) {
nodes, err := t.findnode(n, []uint{0})
if err != nil {
return nil, err
}
if len(nodes) != 1 {
return nil, fmt.Errorf("%d nodes in response for distance zero", len(nodes))
}
return nodes[0], nil
}
// findnode calls FINDNODE on a node and waits for responses.
func (t *UDPv5) findnode(n *enode.Node, distances []uint) ([]*enode.Node, error) {
resp := t.callToNode(n, v5wire.NodesMsg, &v5wire.Findnode{Distances: distances})
return t.waitForNodes(resp, distances)
}
// waitForNodes waits for NODES responses to the given call.
func (t *UDPv5) waitForNodes(c *callV5, distances []uint) ([]*enode.Node, error) {
defer t.callDone(c)
var (
nodes []*enode.Node
seen = make(map[enode.ID]struct{})
received, total = 0, -1
)
for {
select {
case responseP := <-c.ch:
response := responseP.(*v5wire.Nodes)
for _, record := range response.Nodes {
node, err := t.verifyResponseNode(c, record, distances, seen)
if err != nil {
t.log.Debug("Invalid record in "+response.Name(), "id", c.node.ID(), "err", err)
continue
}
nodes = append(nodes, node)
}
if total == -1 {
total = min(int(response.RespCount), totalNodesResponseLimit)
}
if received++; received == total {
return nodes, nil
}
case err := <-c.err:
return nodes, err
}
}
}
// verifyResponseNode checks validity of a record in a NODES response.
func (t *UDPv5) verifyResponseNode(c *callV5, r *enr.Record, distances []uint, seen map[enode.ID]struct{}) (*enode.Node, error) {
node, err := enode.New(t.validSchemes, r)
if err != nil {
return nil, err
}
if err := netutil.CheckRelayIP(c.addr.IP, node.IP()); err != nil {
return nil, err
}
if t.netrestrict != nil && !t.netrestrict.Contains(node.IP()) {
return nil, errors.New("not contained in netrestrict list")
}
if node.UDP() <= 1024 {
return nil, errLowPort
}
if distances != nil {
nd := enode.LogDist(c.id, node.ID())
if !containsUint(uint(nd), distances) {
return nil, errors.New("does not match any requested distance")
}
}
if _, ok := seen[node.ID()]; ok {
return nil, fmt.Errorf("duplicate record")
}
seen[node.ID()] = struct{}{}
return node, nil
}
func containsUint(x uint, xs []uint) bool {
for _, v := range xs {
if x == v {
return true
}
}
return false
}
// callToNode sends the given call and sets up a handler for response packets (of message
// type responseType). Responses are dispatched to the call's response channel.
func (t *UDPv5) callToNode(n *enode.Node, responseType byte, req v5wire.Packet) *callV5 {
addr := &net.UDPAddr{IP: n.IP(), Port: n.UDP()}
c := &callV5{id: n.ID(), addr: addr, node: n}
t.initCall(c, responseType, req)
return c
}
// callToID is like callToNode, but for cases where the node record is not available.
func (t *UDPv5) callToID(id enode.ID, addr *net.UDPAddr, responseType byte, req v5wire.Packet) *callV5 {
c := &callV5{id: id, addr: addr}
t.initCall(c, responseType, req)
return c
}
func (t *UDPv5) initCall(c *callV5, responseType byte, packet v5wire.Packet) {
c.packet = packet
c.responseType = responseType
c.reqid = make([]byte, 8)
c.ch = make(chan v5wire.Packet, 1)
c.err = make(chan error, 1)
// Assign request ID.
crand.Read(c.reqid)
packet.SetRequestID(c.reqid)
// Send call to dispatch.
select {
case t.callCh <- c:
case <-t.closeCtx.Done():
c.err <- errClosed
}
}
// callDone tells dispatch that the active call is done.
func (t *UDPv5) callDone(c *callV5) {
// This needs a loop because further responses may be incoming until the
// send to callDoneCh has completed. Such responses need to be discarded
// in order to avoid blocking the dispatch loop.
for {
select {
case <-c.ch:
// late response, discard.
case <-c.err:
// late error, discard.
case t.callDoneCh <- c:
return
case <-t.closeCtx.Done():
return
}
}
}
// dispatch runs in its own goroutine, handles incoming packets and deals with calls.
//
// For any destination node there is at most one 'active call', stored in the t.activeCall*
// maps. A call is made active when it is sent. The active call can be answered by a
// matching response, in which case c.ch receives the response; or by timing out, in which case
// c.err receives the error. When the function that created the call signals the active
// call is done through callDone, the next call from the call queue is started.
//
// Calls may also be answered by a WHOAREYOU packet referencing the call packet's authTag.
// When that happens the call is simply re-sent to complete the handshake. We allow one
// handshake attempt per call.
func (t *UDPv5) dispatch() {
defer t.wg.Done()
// Arm first read.
t.readNextCh <- struct{}{}
for {
select {
case c := <-t.callCh:
t.callQueue[c.id] = append(t.callQueue[c.id], c)
t.sendNextCall(c.id)
case ct := <-t.respTimeoutCh:
active := t.activeCallByNode[ct.c.id]
if ct.c == active && ct.timer == active.timeout {
ct.c.err <- errTimeout
}
case c := <-t.callDoneCh:
active := t.activeCallByNode[c.id]
if active != c {
panic("BUG: callDone for inactive call")
}
c.timeout.Stop()
delete(t.activeCallByAuth, c.nonce)
delete(t.activeCallByNode, c.id)
t.sendNextCall(c.id)
case r := <-t.sendCh:
t.send(r.destID, r.destAddr, r.msg, nil)
case p := <-t.packetInCh:
t.handlePacket(p.Data, p.Addr)
// Arm next read.
t.readNextCh <- struct{}{}
case <-t.closeCtx.Done():
close(t.readNextCh)
for id, queue := range t.callQueue {
for _, c := range queue {
c.err <- errClosed
}
delete(t.callQueue, id)
}
for id, c := range t.activeCallByNode {
c.err <- errClosed
delete(t.activeCallByNode, id)
delete(t.activeCallByAuth, c.nonce)
}
return
}
}
}
// startResponseTimeout sets the response timer for a call.
func (t *UDPv5) startResponseTimeout(c *callV5) {
if c.timeout != nil {
c.timeout.Stop()
}
var (
timer mclock.Timer
done = make(chan struct{})
)
timer = t.clock.AfterFunc(respTimeoutV5, func() {
<-done
select {
case t.respTimeoutCh <- &callTimeout{c, timer}:
case <-t.closeCtx.Done():
}
})
c.timeout = timer
close(done)
}
// sendNextCall sends the next call in the call queue if there is no active call.
func (t *UDPv5) sendNextCall(id enode.ID) {
queue := t.callQueue[id]
if len(queue) == 0 || t.activeCallByNode[id] != nil {
return
}
t.activeCallByNode[id] = queue[0]
t.sendCall(t.activeCallByNode[id])
if len(queue) == 1 {
delete(t.callQueue, id)
} else {
copy(queue, queue[1:])
t.callQueue[id] = queue[:len(queue)-1]
}
}
// sendCall encodes and sends a request packet to the call's recipient node.
// This performs a handshake if needed.
func (t *UDPv5) sendCall(c *callV5) {
// The call might have a nonce from a previous handshake attempt. Remove the entry for
// the old nonce because we're about to generate a new nonce for this call.
if c.nonce != (v5wire.Nonce{}) {
delete(t.activeCallByAuth, c.nonce)
}
newNonce, _ := t.send(c.id, c.addr, c.packet, c.challenge)
c.nonce = newNonce
t.activeCallByAuth[newNonce] = c
t.startResponseTimeout(c)
}
// sendResponse sends a response packet to the given node.
// This doesn't trigger a handshake even if no keys are available.
func (t *UDPv5) sendResponse(toID enode.ID, toAddr *net.UDPAddr, packet v5wire.Packet) error {
_, err := t.send(toID, toAddr, packet, nil)
return err
}
func (t *UDPv5) sendFromAnotherThread(toID enode.ID, toAddr *net.UDPAddr, packet v5wire.Packet) {
select {
case t.sendCh <- sendRequest{toID, toAddr, packet}:
case <-t.closeCtx.Done():
}
}
// send sends a packet to the given node.
func (t *UDPv5) send(toID enode.ID, toAddr *net.UDPAddr, packet v5wire.Packet, c *v5wire.Whoareyou) (v5wire.Nonce, error) {
addr := toAddr.String()
t.logcontext = append(t.logcontext[:0], "id", toID, "addr", addr)
t.logcontext = packet.AppendLogInfo(t.logcontext)
enc, nonce, err := t.codec.Encode(toID, addr, packet, c)
if err != nil {
t.logcontext = append(t.logcontext, "err", err)
t.log.Warn(">> "+packet.Name(), t.logcontext...)
return nonce, err
}
_, err = t.conn.WriteToUDP(enc, toAddr)
t.log.Trace(">> "+packet.Name(), t.logcontext...)
return nonce, err
}
// readLoop runs in its own goroutine and reads packets from the network.
func (t *UDPv5) readLoop() {
defer t.wg.Done()
buf := make([]byte, maxPacketSize)
for range t.readNextCh {
nbytes, from, err := t.conn.ReadFromUDP(buf)
if netutil.IsTemporaryError(err) {
// Ignore temporary read errors.
t.log.Debug("Temporary UDP read error", "err", err)
continue
} else if err != nil {
// Shut down the loop for permanent errors.
if !errors.Is(err, io.EOF) {
t.log.Debug("UDP read error", "err", err)
}
return
}
t.dispatchReadPacket(from, buf[:nbytes])
}
}
// dispatchReadPacket sends a packet into the dispatch loop.
func (t *UDPv5) dispatchReadPacket(from *net.UDPAddr, content []byte) bool {
select {
case t.packetInCh <- ReadPacket{content, from}:
return true
case <-t.closeCtx.Done():
return false
}
}
// handlePacket decodes and processes an incoming packet from the network.
func (t *UDPv5) handlePacket(rawpacket []byte, fromAddr *net.UDPAddr) error {
addr := fromAddr.String()
fromID, fromNode, packet, err := t.codec.Decode(rawpacket, addr)
if err != nil {
if t.unhandled != nil && v5wire.IsInvalidHeader(err) {
// The packet seems unrelated to discv5, send it to the next protocol.
// t.log.Trace("Unhandled discv5 packet", "id", fromID, "addr", addr, "err", err)
up := ReadPacket{Data: make([]byte, len(rawpacket)), Addr: fromAddr}
copy(up.Data, rawpacket)
t.unhandled <- up
return nil
}
t.log.Debug("Bad discv5 packet", "id", fromID, "addr", addr, "err", err)
return err
}
if fromNode != nil {
// Handshake succeeded, add to table.
t.tab.addSeenNode(wrapNode(fromNode))
}
if packet.Kind() != v5wire.WhoareyouPacket {
// WHOAREYOU logged separately to report errors.
t.logcontext = append(t.logcontext[:0], "id", fromID, "addr", addr)
t.logcontext = packet.AppendLogInfo(t.logcontext)
t.log.Trace("<< "+packet.Name(), t.logcontext...)
}
t.handle(packet, fromID, fromAddr)
return nil
}
// handleCallResponse dispatches a response packet to the call waiting for it.
func (t *UDPv5) handleCallResponse(fromID enode.ID, fromAddr *net.UDPAddr, p v5wire.Packet) bool {
ac := t.activeCallByNode[fromID]
if ac == nil || !bytes.Equal(p.RequestID(), ac.reqid) {
t.log.Debug(fmt.Sprintf("Unsolicited/late %s response", p.Name()), "id", fromID, "addr", fromAddr)
return false
}
if !fromAddr.IP.Equal(ac.addr.IP) || fromAddr.Port != ac.addr.Port {
t.log.Debug(fmt.Sprintf("%s from wrong endpoint", p.Name()), "id", fromID, "addr", fromAddr)
return false
}
if p.Kind() != ac.responseType {
t.log.Debug(fmt.Sprintf("Wrong discv5 response type %s", p.Name()), "id", fromID, "addr", fromAddr)
return false
}
t.startResponseTimeout(ac)
ac.ch <- p
return true
}
// getNode looks for a node record in table and database.
func (t *UDPv5) getNode(id enode.ID) *enode.Node {
if n := t.tab.getNode(id); n != nil {
return n
}
if n := t.localNode.Database().Node(id); n != nil {
return n
}
return nil
}
// handle processes incoming packets according to their message type.
func (t *UDPv5) handle(p v5wire.Packet, fromID enode.ID, fromAddr *net.UDPAddr) {
switch p := p.(type) {
case *v5wire.Unknown:
t.handleUnknown(p, fromID, fromAddr)
case *v5wire.Whoareyou:
t.handleWhoareyou(p, fromID, fromAddr)
case *v5wire.Ping:
t.handlePing(p, fromID, fromAddr)
case *v5wire.Pong:
if t.handleCallResponse(fromID, fromAddr, p) {
t.localNode.UDPEndpointStatement(fromAddr, &net.UDPAddr{IP: p.ToIP, Port: int(p.ToPort)})
}
case *v5wire.Findnode:
t.handleFindnode(p, fromID, fromAddr)
case *v5wire.Nodes:
t.handleCallResponse(fromID, fromAddr, p)
case *v5wire.TalkRequest:
t.talk.handleRequest(fromID, fromAddr, p)
case *v5wire.TalkResponse:
t.handleCallResponse(fromID, fromAddr, p)
}
}
// handleUnknown initiates a handshake by responding with WHOAREYOU.
func (t *UDPv5) handleUnknown(p *v5wire.Unknown, fromID enode.ID, fromAddr *net.UDPAddr) {
challenge := &v5wire.Whoareyou{Nonce: p.Nonce}
crand.Read(challenge.IDNonce[:])
if n := t.getNode(fromID); n != nil {
challenge.Node = n
challenge.RecordSeq = n.Seq()
}
t.sendResponse(fromID, fromAddr, challenge)
}
var (
errChallengeNoCall = errors.New("no matching call")
errChallengeTwice = errors.New("second handshake")
)
// handleWhoareyou resends the active call as a handshake packet.
func (t *UDPv5) handleWhoareyou(p *v5wire.Whoareyou, fromID enode.ID, fromAddr *net.UDPAddr) {
c, err := t.matchWithCall(fromID, p.Nonce)
if err != nil {
t.log.Debug("Invalid "+p.Name(), "addr", fromAddr, "err", err)
return
}
if c.node == nil {
// Can't perform handshake because we don't have the ENR.
t.log.Debug("Can't handle "+p.Name(), "addr", fromAddr, "err", "call has no ENR")
c.err <- errors.New("remote wants handshake, but call has no ENR")
return
}
// Resend the call that was answered by WHOAREYOU.
t.log.Trace("<< "+p.Name(), "id", c.node.ID(), "addr", fromAddr)
c.handshakeCount++
c.challenge = p
p.Node = c.node
t.sendCall(c)
}
// matchWithCall checks whether a handshake attempt matches the active call.
func (t *UDPv5) matchWithCall(fromID enode.ID, nonce v5wire.Nonce) (*callV5, error) {
c := t.activeCallByAuth[nonce]
if c == nil {
return nil, errChallengeNoCall
}
if c.handshakeCount > 0 {
return nil, errChallengeTwice
}
return c, nil
}
// handlePing sends a PONG response.
func (t *UDPv5) handlePing(p *v5wire.Ping, fromID enode.ID, fromAddr *net.UDPAddr) {
remoteIP := fromAddr.IP
// Handle IPv4 mapped IPv6 addresses in the
// event the local node is binded to an
// ipv6 interface.
if remoteIP.To4() != nil {
remoteIP = remoteIP.To4()
}
t.sendResponse(fromID, fromAddr, &v5wire.Pong{
ReqID: p.ReqID,
ToIP: remoteIP,
ToPort: uint16(fromAddr.Port),
ENRSeq: t.localNode.Node().Seq(),
})
}
// handleFindnode returns nodes to the requester.
func (t *UDPv5) handleFindnode(p *v5wire.Findnode, fromID enode.ID, fromAddr *net.UDPAddr) {
nodes := t.collectTableNodes(fromAddr.IP, p.Distances, findnodeResultLimit)
for _, resp := range packNodes(p.ReqID, nodes) {
t.sendResponse(fromID, fromAddr, resp)
}
}
// collectTableNodes creates a FINDNODE result set for the given distances.
func (t *UDPv5) collectTableNodes(rip net.IP, distances []uint, limit int) []*enode.Node {
var bn []*enode.Node
var nodes []*enode.Node
var processed = make(map[uint]struct{})
for _, dist := range distances {
// Reject duplicate / invalid distances.
_, seen := processed[dist]
if seen || dist > 256 {
continue
}
processed[dist] = struct{}{}
for _, n := range t.tab.appendLiveNodes(dist, bn[:0]) {
// Apply some pre-checks to avoid sending invalid nodes.
// Note liveness is checked by appendLiveNodes.
if netutil.CheckRelayIP(rip, n.IP()) != nil {
continue
}
nodes = append(nodes, n)
if len(nodes) >= limit {
return nodes
}
}
}
return nodes
}
// packNodes creates NODES response packets for the given node list.
func packNodes(reqid []byte, nodes []*enode.Node) []*v5wire.Nodes {
if len(nodes) == 0 {
return []*v5wire.Nodes{{ReqID: reqid, RespCount: 1}}
}
// This limit represents the available space for nodes in output packets. Maximum
// packet size is 1280, and out of this ~80 bytes will be taken up by the packet
// frame. So limiting to 1000 bytes here leaves 200 bytes for other fields of the
// NODES message, which is a lot.
const sizeLimit = 1000
var resp []*v5wire.Nodes
for len(nodes) > 0 {
p := &v5wire.Nodes{ReqID: reqid}
size := uint64(0)
for len(nodes) > 0 {
r := nodes[0].Record()
if size += r.Size(); size > sizeLimit {
break
}
p.Nodes = append(p.Nodes, r)
nodes = nodes[1:]
}
resp = append(resp, p)
}
for _, msg := range resp {
msg.RespCount = uint8(len(resp))
}
return resp
}