go-ethereum/core/txpool/legacypool/legacypool_test.go
David 5c84a20827
feat(repo): geth/v1.14.11 upstream merge (#313)
* params: release Geth v1.14.5

* params: begin v1.14.6 release cycle

* cmd/evm/internal/t8ntool: remove unused parameter (#29930)

* go.mod : tidy

* cmd/clef, cmd/evm: fix markdown issues in README (#29954)

* cmd/geth: remove unused param (#29952)

* p2p/discover: add missing lock when calling tab.handleAddNode (#29960)

* p2p: use package slices to sort in PeersInfo (#29957)

* core: initialize developer genesis beacon root contract with 0 balance (#29963)

* core, rlp: remove duplicated words (#29964)

* cmd, core: prefetch reads too from tries if requested (#29807)

* cmd/utils, consensus/beacon, core/state: when configured via stub  flag: prefetch all reads from account/storage tries, terminate prefetcher synchronously.

* cmd, core/state: fix nil panic, fix error handling, prefetch nosnap too

* core/state: expand prefetcher metrics for reads and writes separately

* cmd/utils, eth: fix noop collect witness flag

---------

Co-authored-by: Péter Szilágyi <peterke@gmail.com>

* core/state: rename all the AccessList receivers to 'al' (#29921)

rename all the receivers to 'al'

* ethconfig: regenerate config (#29970)

* cmd/devp2p: fix log output (#29972)

* .github: disable cache in actions run (#29926)

* p2p/simulations: update doc of HTTP endpoints (#29894)

* all: fix inconsistent receiver name and add lint rule for it (#29974)

* .golangci.yml: enable check for consistent receiver name

* beacon/light/sync: fix receiver name

* core/txpool/blobpool: fix receiver name

* core/types: fix receiver name

* internal/ethapi: use consistent receiver name 'api' for handler object

* signer/core/apitypes: fix receiver name

* signer/core: use consistent receiver name 'api' for handler object

* log: fix receiver name

* accounts: avoid duplicate regex compilation (#29943)

* fix: Optimize regular initialization

* modify var name

* variable change to private types

* core/state, eth/protocols, trie, triedb/pathdb:  remove unused error from trie Commit (#29869)

* core/state, eth/protocols, trie, triedb/pathdb:  remove unused error return from trie Commit

* move set back to account-trie-update block scoping for easier readability

* address review

* undo tests submodule change

* trie:  panic if BatchSerialize returns an error in Verkle trie Commit

* trie: verkle comment nitpicks

---------

Co-authored-by: Péter Szilágyi <peterke@gmail.com>

* beacon/light: fix shutdown issues (#29946)

* beacon/light/request: add server test for event after unsubscribe

* beacon/light/api: fixed double stream.Close()

* beacon/light/request: add checks for nil event callback function

* beacon/light/request: unlock server mutex while unsubscribing from parent

* trie/triedb: add Reader to backend interface (#29988)

* core/state/snapshot: add a missing lock (#30001)

* upgrade lock usage

* revert unnecessary change

* go.mod: update Pebble to sort out a deleted upstream dependency (#30010)

* log: fix some functions comments (#29907)

updates some docstrings
---------

Co-authored-by: rjl493456442 <garyrong0905@gmail.com>

* trie, triedb/pathdb: prealloc capacity for map and slice (#29986)

* triedb/pathdb: use maps.Clone and maps.Keys (#29985)

* common/math: fix out of bounds access in json unmarshalling (#30014)


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

* core/state/snapshot: acquire the lock on Release (#30011)

* core/state/snapshot: acquire the lock on release

* core/state/snapshot: only acquire read-lock when iterating

* cmd/geth, ethdb/pebble: improve database statistic (#29948)

* cmd/geth, ethdb/pebble: polish method naming and code comment

* implement db stat for pebble

* cmd, core, ethdb, internal, trie: remove db property selector

* cmd, core, ethdb: fix function description

---------

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

* trie: don't reset tracer at the end of Commit (#30024)

* trie: don't reset tracer at the end of Commit

* Update trie.go

---------

Co-authored-by: rjl493456442 <garyrong0905@gmail.com>

* common: using `ParseUint` instead of `ParseInt` (#30020)

Since Decimal is defined as unsiged `uint64`, we should use `strconv.ParseUint` instead of `strconv.ParseInt` during unmarshalling.

---------

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

* core/txpool/blobpool: change rw-lock to r-lock (#29989)

* trie/trienode: avoid unnecessary copy (#30019)

* avoid unnecessary copy

* delete the never used function ProofList

* eth/protocols/snap, trie/trienode: polish the code

---------

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

* p2p/rlpx: 2KB maximum size for handshake messages (#30029)


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

* core/state/snapshot: tiny fixes (#29995)

* Revert "core/state/snapshot: tiny fixes" (#30039)

Revert "core/state/snapshot: tiny fixes (#29995)"

This reverts commit e0e45dbc32.

* p2p/discover: improve flaky revalidation tests (#30023)

* cmd/blsync: use debug.Setup for logging configuration (#30065)

* .github: add lightclient as codeowner to relevant packages (#30062)

* accounts/keystore: use t.TempDir in test (#30052)

* internal/debug: remove unnecessary log level assignment (#30044)

Log level is specified in L259 so it's unnecessary to specify it for handlers (L234, L236).

* all: stateless witness builder and (self-)cross validator (#29719)

* all: add stateless verifications

* all: simplify witness and integrate it into live geth

---------

Co-authored-by: Péter Szilágyi <peterke@gmail.com>

* core/txpool/blobpool: avoid use *map as parameter. (#30048)

* trie/trienode: remove unnecessary check in Summary (#30047)

* eth/tracers,trie: remove unnecessary check (#30071)

* trie: relocate state execution logic into pathdb package (#29861)

* triedb/pathdb: fix flaky test in pathdb (#29901)

* core/txpool/blobpool: improve newPriceHeap function (#30050)


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

* cmd/evm/internal/t8ntool: log writeTraceResult error message (#30038)

* all: replace division with right shift if possible (#29911)

* rpc: truncate call error data logs (#30028)


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

* accounts/usbwallet/trezor: upgrade to generate with protoc 27.1 (#30058)

* build:  add check for stale generated files (#30037)


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

* core/state: fix inconsistent verkle test error messages (#29753)

* accounts/abi: embed Go template instead of string literal (#30098)

refactor(accounts/abi): use embed pkg to split default template to file

* params: release Geth v1.14.6

* params: begin v1.14.7 release cycle

* params: release Geth v1.14.6

* build: upgrade -dlgo version to Go 1.22.5 (#30112)

* crypto: remove hardcoded value for secp256k1.N (#30126)

* go.mod: update uint256 to 1.3.0 (#30134)

* eth/catalyst: fix params in failure log (#30131)

* core/txpool/blobpool: revert #29989, WLock on Nonce (#30142)

* params: go-ethereum v1.14.7 stable

* params: begin v1.14.8 release cycle

* core/state: fix prefetcher for verkle (#29760)

* core/txpool/blobpool: use nonce from argument instead of tx.Nonce() (#30148)

This does not change the behavior here as the nonce in the argument is
tx.Nonce(). This commit helps to make the function easier to read and avoid
capturing the tx in the function.

* trie: add RollBackAccount function to verkle trees (#30135)

* p2p: fix ip change log parameter (#30158)

* cmd/utils: fix typo in flag description (#30127)

* core/types: don't modify signature V when reading large chainID (#30157)

* SECURITY.md: correct PGP key block formatting (#30123)

* all: simplify tests using t.TempDir() (#30150)

* eth/catalyst: fix (*SimulatedBeacon).AdjustTime() conversion (#30138)

* trie, triedb: remove unnecessary child resolver interface (#30167)

* core/txpool/legacypool: use maps.Keys and maps.Copy (#30091)

* core/state: don't compute verkle storage tree roots (#30130)

* core/rawdb, triedb, cmd: create an isolated disk namespace for verkle (#30105)

* core, triedb/pathdb, cmd: define verkle state ancient store

* core/rawdb, triedb: add verkle namespace in pathdb

* p2p/discover: remove type encPubkey (#30172)

The pubkey type was moved to package v4wire a long time ago. Remaining uses of
encPubkey were probably left in due to laziness.

* go.mod: upgrade to btcsuite/btcd/btcec v2.3.4 (#30181)

* ethdb: remove snapshot (#30189)

* eth/gasprice: remove default from config (#30080)

* eth/gasprice: remove default from config

* eth/gasprice: sanitize startPrice

* rpc: use stable object in notifier test (#30193)

This makes the test resilient to changes of types.Header -- otherwise the test needs to be
updated each time the header structure is modified.

* core/state: remove useless metrics (#30184)

Originally, these metrics were added to track the largest storage wiping.
Since account self-destruction was deprecated with the Cancun fork,
these metrics have become meaningless.

* rpc: show more error detail for `invalidMessageError` (#30191)

Here we add distinct error messages for network timeouts and JSON parsing errors.
Note this specifically applies to HTTP connections serving a single RPC request.

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

* core/tracing: update latest release version (#30211)

* core/txpool: use the cached address in ValidateTransactionWithState (#30208)

The address recover is executed and cached in ValidateTransaction already. It's
expected that the cached one is returned in ValidateTransaction. However,
currently, we use the wrong function signer.Sender instead of types.Sender which
will do all the address recover again.

* core/state: check db error after intermediate call (#30171)

This pull request adds an additional error check after statedb.IntermediateRoot,
ensuring that no errors occur during this call. This step is essential, as the call might
encounter database errors.

* cmd/utils: allow configurating blob pool from flags (#30203)

Currently, we have 3 flags to configure blob pool. However, we don't
read these flags and set the blob pool configuration in eth config
accordingly. This commit adds a function to check if these flags are
provided and set blob pool configuration based on them.

* core/state: fix SetStorage override behavior (#30185)

This pull request fixes the broken feature where the entire storage set is overridden.

Originally, the storage set override was achieved by marking the associated account
as deleted, preventing access to the storage slot on disk. However, since #29520, this
flag is also checked when accessing the account, rendering the account unreachable.

A fix has been applied in this pull request, which re-creates a new state object with all
account metadata inherited.

* triedb/pathdb: print out all trie owner and hash information (#30200)

This pull request explicitly prints out the full hash for debugging
purpose.

* beacon/types, cmd/devp2p, p2p/enr: clean up uses of fmt.Errorf (#30182)

* eth/tracers, internal/ethapi: remove unnecessary map pointer in state override (#30094)

* internal/ethapi: fix state override test (#30228)

Looks like #30094 became a bit stale after #30185 was merged and now we
have a stale ref to a state override object causing CI to fail on
master.

* p2p/nat: return correct port for ExtIP NAT (#30234)

Return the actually requested external port instead of 0 in the
AddMapping implementation for `--nat extip:<IP>`.

* p2p: fix flaky test TestServerPortMapping (#30241)

The test specifies `ListenAddr: ":0"`, which means a random ephemeral
port will be chosen for the TCP listener by the OS. Additionally, since
no `DiscAddr` was specified, the same port that is chosen automatically
by the OS will also be used for the UDP listener in the discovery UDP
setup. This sometimes leads to test failures if the TCP listener picks a
free TCP port that is already taken for UDP. By specifying `DiscAddr:
":0"`, the UDP port will be chosen independently from the TCP port,
fixing the random failure.

See issue #29830.

Verified using
```
cd p2p
go test -c -race
stress ./p2p.test -test.run=TestServerPortMapping
...
5m0s: 4556 runs so far, 0 failures
```

The issue described above can technically lead to sporadic failures on
systems that specify a listen address via the `--port` flag of 0 while
not setting `--discovery.port`. Since the default is using port `30303`
and using a random ephemeral port is likely not used much to begin with,
not addressing the root cause might be acceptable.

* p2p/discover: schedule revalidation also when all nodes are excluded (#30239)

## Issue

If `nextTime` has passed, but all nodes are excluded, `get` would return
`nil` and `run` would therefore not invoke `schedule`. Then, we schedule
a timer for the past, as neither `nextTime` value has been updated. This
creates a busy loop, as the timer immediately returns.

## Fix

With this PR, revalidation will be also rescheduled when all nodes are
excluded.

---------

Co-authored-by: lightclient <lightclient@protonmail.com>

* miner: remove outdated comment (#30248)

* eth/downloader: correct sync mode logging to show old mode (#30219)

This PR fixes an issue in the setMode method of beaconBackfiller where the
log message was not displaying the previous mode correctly. The log message
now shows both the old and new sync modes.

* all: remove deprecated protobuf dependencies (#30232)

The package `github.com/golang/protobuf/proto` is deprecated in favor
`google.golang.org/protobuf/proto`. We should update the codes to
recommended package.

Signed-off-by: Icarus Wu <icaruswu66@qq.com>

* accounts/abi/bind: add accessList support to base bond contract (#30195)

Adding the correct accessList parameter when calling a contract can
reduce gas consumption. However, the current version only allows adding
the accessList manually when constructing the transaction. This PR can
provide convenience for saving gas.

* internal/debug: remove memsize (#30253)

Removing because memsize will very likely be broken by Go 1.23. See
https://github.com/fjl/memsize/issues/4

* eth/downloader: gofmt (#30261)

Fixes a regression introduced in
https://github.com/ethereum/go-ethereum/pull/30219

* cmd/evm: don't overwrite sender account (#30259)

Fixes #30254 

It seems like the removed CreateAccount call is very old and not needed anymore.
After removing it, setting a sender that does not exist in the state doesn't seem to cause
an issue.

* eth/catalyst: get params.ExcessBlobGas but check with params.BlobGasUsed (#30267)

Seems it is checked with the wrong argument

Signed-off-by: jsvisa <delweng@gmail.com>

* params: remove unused les parameters (#30268)

* core/vm/runtime: ensure tracer benchmark calls `OnTxStart` (#30257)

The struct-based tracing added in #29189 seems to have caused an issue
with the benchmark `BenchmarkTracerStepVsCallFrame`. On master we see
the following panic:

```console
BenchmarkTracerStepVsCallFrame
panic: runtime error: invalid memory address or nil pointer dereference
[signal SIGSEGV: segmentation violation code=0x2 addr=0x40 pc=0x1019782f0]

goroutine 37 [running]:
github.com/ethereum/go-ethereum/eth/tracers/js.(*jsTracer).OnOpcode(0x140004c4000, 0x0, 0x10?, 0x989680, 0x1, {0x101ea2298, 0x1400000e258}, {0x1400000e258?, 0x14000155928?, 0x10173020c?}, ...)
        /Users/matt/dev/go-ethereum/eth/tracers/js/goja.go:328 +0x140
github.com/ethereum/go-ethereum/core/vm.(*EVMInterpreter).Run(0x14000307da0, 0x140003cc0d0, {0x0, 0x0, 0x0}, 0x0)
 ...
FAIL    github.com/ethereum/go-ethereum/core/vm/runtime 0.420s
FAIL
```

The issue seems to be that `OnOpcode` expects that `OnTxStart` has
already been called to initialize the `env` value in the tracer. The JS
tracer uses it in `OnOpcode` for the `GetRefund()` method.

This patch resolves the issue by reusing the `Call` method already
defined in `runtime_test.go` which correctly calls `OnTxStart`.

* ethclient: support networkID in hex format (#30263)

Some chains’ network IDs use hexadecimal such as Optimism ("0xa" instead
of "10"), so when converting the string to big.Int, we cannot specify
base 10; otherwise, it will encounter errors with hexadecimal network
IDs.

* core/vm: improved stack swap performance (#30249)

This PR adds the methods `Stack.swap1..16()` that faster than `Stack.swap(1..16)`. 

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

* signer/core: improve performance of isPrimitiveTypeValid function (#30274) (#30277)

Precomputes valid primitive types into a map to use for validation, thus removing sprintf.

* core/vm: use uint64 in memory for indices everywhere (#30252)

Consistently use `uint64` for indices in `Memory` and drop lots of type
conversions from `uint64` to `int64`.

---------

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

* build: upgrade -dlgo version to Go 1.22.6 (#30273)

* tests: fix TransactionTest to actually run (#30272)

Due to https://github.com/ethereum/tests/releases/tag/v10.1, the format
of the TransactionTest changed, but it was not properly addressed, causing the test
to pass unexpectedly.

---------

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

* eth/downloader, core/types: take withdrawals-size into account in downloader queue (#30276)

Fixes a slight miscalculation in the downloader queue, which was not accurately taking block withdrawals into account when calculating the size of the items in the queue

* cmd/evm: fix evm basefee (#30281)

fixes #30279 -- previously we did not use the basefee from the genesis, and instead the defaults were used from `runtime.go/setDefaults`-function

* go.mod: update uint256 to 1.3.1 (#30280)

Release notes: https://github.com/holiman/uint256/releases/tag/v1.3.1

* beacon/engine, consensus/beacon: use params.MaximumExtraDataSize instead of hard-coded value (#29721)


Co-authored-by: Felix Lange <fjl@twurst.com>
Co-authored-by: Marius van der Wijden <m.vanderwijden@live.de>
Co-authored-by: lightclient <lightclient@protonmail.com>

* p2p/simulations: remove packages (#30250)

Looking at the history of these packages over the past several years, there
haven't been any meaningful contributions or usages:
https://github.com/ethereum/go-ethereum/commits/master/p2p/simulations?before=de6d5976794a9ed3b626d4eba57bf7f0806fb970+35

Almost all of the commits are part of larger refactors or low-hanging-fruit contributions.
Seems like it's not providing much value and taking up team + contributor time.

* eth/protocols/snap: cleanup dangling account trie nodes due to incomplete storage (#30258)

This pull request fixes #30229.
 
During snap sync, large storage will be split into several pieces and
synchronized concurrently. Unfortunately, the tradeoff is that the respective
merkle trie of each storage chunk will be incomplete due to the incomplete
boundaries. The trie nodes on these boundaries will be discarded, and any
dangling nodes on disk will also be removed if they fall on these paths,
ensuring the state healer won't be blocked.

However, the dangling account trie nodes on the path from the root to the
associated account are left untouched. This means the dangling account trie
nodes could potentially stop the state healing and break the assumption that the
entire subtrie should exist if the subtrie root exists. We should consider the
account trie node as the ancestor of the corresponding storage trie node.

In the scenarios described in the above ticket, the state corruption could occur
if there is a dangling account trie node while some storage trie nodes are
removed due to synchronization redo.

The fixing idea is pretty straightforward, the trie nodes on the path from root
to account should all be explicitly removed if an incomplete storage trie
occurs. Therefore, a `delete` operation has been added into `gentrie` to
explicitly clear the account along with all nodes on this path. The special
thing is that it's a cross-trie clearing. In theory, there may be a dangling
node at any position on this account key and we have to clear all of them.

* params: release go-ethereum v1.14.8 stable

* params: begin v1.14.9 release cycle

* go.mod: remove github.com/julienschmidt/httprouter (#30290)

* build: run 'go mod tidy' check as part of lint (#30291)

* core/txpool/blobpool: fix error message (#30247)

the validation process only checks for 'less than', which is
inconsistent with the error output

* go.mod: upgrade to pebble v1.1.2 (#30297)

Includes a fix for MIPS32 support.

Pebble release:
https://github.com/cockroachdb/pebble/releases/tag/v1.1.2
Key fix for mips32:
9f3904a705
(also the only change from v1.1.1.

* core: only compute state root once (#30299)

This PR refactors the genesis initialization a bit, s.th. we only
compute the blockhash once instead of twice as before (during hashAlloc
and flushAlloc)

This will significantly reduce the amount of memory allocated during
genesis init

---------

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

* .golangci.yml: remove lint warning for TxLookupLimit

* eth/fetcher: always expect transaction metadata in announcement (#30288)

This pull request drops the legacy transaction retrieval support from before
eth68, adding the restrictions that transaction metadata must be provided
along with the transaction announment.

* eth/ethconfig: remove LES server config (#30298)

* eth/tracers/js: add coinbase addr to ctx (#30231)

Add coinbase address to javascript tracer context.

This PR adds the `coinbase` address to `jsTracer.ctx`, allowing access
to the coinbase address (fee receipient) in custom JavaScript tracers.

Example usage:

```javascript
result: function(ctx) {
  return toAddress(ctx.coinbase);
}
```

This change enables custom tracers to access coinbase address,
previously unavailable, enhancing their capabilities to match built-in
tracers.

* eth: dial nodes from discv5 (#30302)

Here I am adding a discv5 nodes source into the p2p dial iterator. It's
an improved version of #29533.

Unlike discv4, the discv5 random nodes iterator will always provide full
ENRs. This means we can apply filtering to the results and will only try
dialing nodes which explictly opt into the eth protocol with a matching
chain.

I have also removed the dial iterator from snap. We don't have an
official DNS list for snap anymore, and I doubt anyone else is running
one. While we could potentially filter for snap on discv5, there will be
very few nodes announcing it, and the extra iterator would just stall
the dialer.

---------

Co-authored-by: lightclient <lightclient@protonmail.com>

* beacon/light: handle endpoint URL more gracefully (#30306)

blsync was failing if the light endpoint it was provided ended with a
`/`. This change should handle the joining more gracefully.

* core: remove withdrawal length check for state processor (#30286)

The withdrawal length is already verified by the beacon consensus package, so the check in the state processor is a duplicate.

* vm: simplify error handling in `vm.EVM.create()` (#30292)

To allow all error paths in `vm.EVM.create()` to consume the necessary
gas, there is currently a pattern of gating code on `if err == nil`
instead of returning as soon as the error occurs. The same behaviour can
be achieved by abstracting the gated code into a method that returns
immediately on error, improving readability and thus making it easier to
understand and maintain.

* internal/build: include git-date on detached head (#30320)

When we are building in detached head, we cannot easily obtain the same information as we can if we're in non-detached head.

However, one thing we _can_ obtain is the git-hash and git-date. Currently, we omit to include the git-date into the build-info, which causes problem for reproducable builds which are on a detached head.

This change fixes it to include the date-info always.

* build: remove mantic from ppa builds (#30322)

removes ppa-build for ubuntu `mantic`

* gitignore: ignore upload-artefacts (#30325)

Our `WriteArchive`, used by ci builder, creates files in the repo root,in order to upload. After we've built the amd64-builds, we create the uploads, and cause the repo to be flagged as dirty for the remaining builds.

This change fixes it by adding the artefacts to gitignore. Closes #30324

* eth/catalyst: ensure period zero mode leaves no pending txs in pool (#30264)

closes #29475, replaces #29657, #30104 

Fixes two issues. First is a deadlock where the txpool attempts to reorg, but can't complete because there are no readers left for the new txs subscription. Second, resolves a problem with on demand mode where txs may be left pending when there are more pending txs than block space.

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

* accounts/abi: handle ABIs with contract type parameter (#30315)

convert parameter of type contract to the basic `address` type
---------

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

* core/rawdb: drop MigrateTable (#30331)

These are the leftovers from #24028.

* core/vm: reuse Memory instances (#30137)

This PR adds a sync.Pool to reuse instances of Memory in EVMInterpreter.

* build: attempt at reproducible builds (#30321)

This PR implements the conclusions from
https://github.com/ethereum/go-ethereum/issues/28987#issuecomment-2296075028,
that is:

Building with `--strip-all` as a ld-flag to the cgo linker, to remove
symbols. Without that, some spurious reference to a temporary file is
included into the kzg-related library.

Building with `--build-id=none`, to avoid putting a `build id` into the file.

* all: update to go version 1.23.0 (#30323)

This PR updates the version of go used in builds and docker to
1.23.0. Release notes: https://go.dev/doc/go1.23

More importantly, following our policy of maintaining the last two
versions (which now becomes 1.23 and 1.22), we can now make use of
the things that were introduced in 1.22: https://go.dev/doc/go1.22

Go 1.22 makes two changes to “for” loops.
- each iteration creates new variables, 
- for loops may range over integers

Other than that, some interesting library changes and other stuff.

* rpc: add timeout to rpc client Unsubscribe (#30318)

Fixes #30156

This adds a repro of the linked issue. I fixed it by adding a timeout
when issuing the call to unsubscribe.

* cmd/devp2p: require dns:read, dns:edit permissions for cloudflare deploy  (#30326)

This PR adds the `dns:read` and `dns:edit` permissions to the required
set of permissions checked before deploying an ENR tree to Cloudflare.
These permissions are necessary for a successful publish.

**Background**:
The current logic for `devp2p dns to-cloudflare` checks for `zone:edit`
and `zone:read` permissions. However, when running the command with only
these two permissions, the following error occurs:
```
wrong permissions on zone REMOVED-ZONE: map[#zone:edit:false #zone:read:true]
```

Adding `zone:read` and `zone:edit` to the API token led to a different
error:
```
INFO [08-19|14:06:16.782] Retrieving existing TXT records on pos-nodes.hardfork.dev
Authentication error (10000)
```

This suggested that additional permissions were required. I added
`dns:read`, but encountered another error:
```
INFO [08-19|14:11:42.342] Retrieving existing TXT records on pos-nodes.hardfork.dev
INFO [08-19|14:11:42.851] Updating DNS entries
failed to publish REMOVED.pos-nodes.hardfork.dev: Authentication error (10000)
```

Finally, after adding both `dns:read` and `dns:edit` permissions, the
command executed successfully with the following output:
```
INFO [08-19|14:13:07.677] Checking Permissions on zone REMOVED-ZONE
INFO [08-19|14:13:08.014] Retrieving existing TXT records on pos-nodes.hardfork.dev
INFO [08-19|14:13:08.440] Updating DNS entries
INFO [08-19|14:13:08.440] "Updating pos-nodes.hardfork.dev from \"enrtree-root:v1 e=FSED3EDKEKRDDFMCLP746QY6CY l=FDXN3SN67NA5DKA4J2GOK7BVQI seq=1 sig=Glja2c9RviRqOpaaHR0MnHsQwU76nJXadJwFeiXpp8MRTVIhvL0LIireT0yE3ETZArGEmY5Ywz3FVHZ3LR5JTAE\" to \"enrtree-root:v1 e=AB66M4ULYD5OYN4XFFCPVZRLUM l=FDXN3SN67NA5DKA4J2GOK7BVQI seq=1 sig=H8cqDzu0FAzBplK4g3yudhSaNtszIebc2aj4oDm5a5ZE5PAg-xpCnQgVE_53CsgsqQpalD9byafx_FrUT61sagA\""
INFO [08-19|14:13:16.932] Updated DNS entries                      new=32 updated=1 untouched=100
INFO [08-19|14:13:16.932] Deleting stale DNS entries
INFO [08-19|14:13:24.663] Deleted stale DNS entries                count=31
```

With this PR, the required permissions for deploying an ENR tree to
Cloudflare now include `zone:read`, `zone:edit`, `dns:read`, and
`dns:edit`. The initial check now includes all of the necessary
permissions and indicates in the error message which permissions are
missing:
```
INFO [08-19|14:17:20.339] Checking Permissions on zone REMOVED-ZONE
wrong permissions on zone REMOVED-ZONE: map[#dns_records:edit:false #dns_records:read:false #zone:edit:false #zone:read:true]
```

* all: clean up goerli flag and config (#30289)

Co-authored-by: lightclient <lightclient@protonmail.com>

* cmd/utils,p2p: enable discv5 by default (#30327)

* travis.yml: use focal for builds (#30319)

* trie: use go-verkle helper for speedier (*VerkleTrie).RollBackAccount (#30242)

This is a performance improvement on the account-creation rollback code
required for the archive node to support verkle. It uses the utility
function `DeleteAtStem` to remove code and account data per-group
instead of doing it leaf by leaf.

It also fixes an index bug, as code is chunked in 31-byte chunks, so
comparing with the code size should use 31 as its stride.

---------

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

* eth/protocols/eth: handle zero-count header requests (#30305)

Proper fix for handling `count=0` get header requests. 

https://en.wikipedia.org/wiki/Count_Zero

* eth/tracers: avoid panic in state test runner (#30332)

Make tracers more robust by handling `nil` receipt as input. 
Also pass in a receipt with gas used in the state test runner.
Closes https://github.com/ethereum/go-ethereum/issues/30117.

---------

Co-authored-by: Sina Mahmoodi <itz.s1na@gmail.com>

* build: fix hash for go1.23.0.linux-riscv64.tar.gz (#30335)

build: fix hash for go1.23.0.linux-riscv64.tar.gz

* build: make go buildid static (#30342)

The previous clearing of buildid did fully work, turns out we need to
set it in `ldflags`

The go buildid is the only remaining hurdle for reproducible builds, see
https://github.com/ethereum/go-ethereum/issues/28987#issuecomment-2306412590

This PR changes the go build id application note to say literally `none`

https://github.com/golang/go/issues/33772#issuecomment-528176001:

> This difference is due to the .note.go.buildid section added by the
linker. It can be set to something static e.g. -ldflags=-buildid= (empty
string) to gain reproducibility.

* trie: avoid un-needed map copy (#30343)

This change avoids the an unnecessary map copy if the preimage recording is not enabled.

* beacon/blsync: better error information in test (#30336)

this change reports the error instead of ignoring it

* beacon/light/sync: basic tests for rangeLock (#30269)

adds simple tests for lock and firstUnlocked method from rangeLock
type

---------

Co-authored-by: lightclient <lightclient@protonmail.com>

* build: debug travis build (#30344)

debugging travis build pipeline

* gitignore: ignore build signatures (#30346)

Ignore files are generated during signing of download-binaries, which 'dirty' the vcs for subsequent builds.

* doc: update 2021-08-22-split-postmortem (#30351)

Update 2021-08-22-split-postmortem

* core: implement EIP-2935 (#29465)

https://eips.ethereum.org/EIPS/eip-2935

---------

Co-authored-by: Guillaume Ballet <gballet@gmail.com>
Co-authored-by: Ignacio Hagopian <jsign.uy@gmail.com>
Co-authored-by: Martin HS <martin@swende.se>

* core: add metrics for state access (#30353)

This pull request adds a few more performance metrics, specifically:

- The average time cost of an account read
- The average time cost of a storage read
- The rate of account reads
- The rate of storage reads

* core/state: fix trie prefetcher for verkle (#30354)

This pull request fixes the panic issue in prefetcher once the verkle is
activated.

* p2p/discover: fix Write method in metered connection (#30355)

`WriteToUDP` was never called, since `meteredUdpConn` exposed directly
all the methods from the underlying `UDPConn` interface.

This fixes the `discover/egress` metric never being updated.

* accounts/abi/bind, ethclient/simulated: check SendTransaction error in tests (#30349)

In few tests the returned error from `SendTransaction` is not being
checked. This PR checks the returned err in tests.

Returning errors also revealed tx in `TestCommitReturnValue` is not
actually being sent, and returns err ` only replay-protected (EIP-155)
transactions allowed over RPC`. Fixed the transaction by using the
`testTx` function.

* core/state: semantic journalling (part 1) (#28880)

This is a follow-up to #29520, and a preparatory PR to a more thorough
change in the journalling system.

### API methods instead of `append` operations

This PR hides the journal-implementation details away, so that the
statedb invokes methods like `JournalCreate`, instead of explicitly
appending journal-events in a list. This means that it's up to the
journal whether to implement it as a sequence of events or
aggregate/merge events.

### Snapshot-management inside the journal 

This PR also makes it so that management of valid snapshots is moved
inside the journal, exposed via the methods `Snapshot() int` and
`RevertToSnapshot(revid int, s *StateDB)`.


### SetCode

JournalSetCode journals the setting of code: it is implicit that the
previous values were "no code" and emptyCodeHash. Therefore, we can
simplify the setCode journal.

### Selfdestruct

The self-destruct journalling is a bit strange: we allow the
selfdestruct operation to be journalled several times. This makes it so
that we also are forced to store whether the account was already
destructed.

What we can do instead, is to only journal the first destruction, and
after that only journal balance-changes, but not journal the
selfdestruct itself.

This simplifies the journalling, so that internals about state
management does not leak into the journal-API.

### Preimages

Preimages were, for some reason, integrated into the journal management,
despite not being a consensus-critical data structure. This PR undoes
that.

---------

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

* signer/core/apitypes: support fixed size arrays for EIP-712 typed data (#30175)

When attempting to hash a typed data struct that includes a type
reference with a fixed-size array, the validation process fails.
According to EIP-712, arrays can be either fixed-size or dynamic,
denoted by `Type[n]` or `Type[]` respectively, although it appears this
currently isn't supported.

This change modifies  the validation logic to accommodate types
containing fixed-size arrays.

* consensus/beacon, core/types: add verkle witness builder (#30129)

This PR adds the bulk verkle witness+proof production at the end of block
production. It reads all data from the tree in one swoop and produces
a verkle proof.

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

* trie, core/state: Nyota EIP-6800 & EIP-4762 spec updates (#30357)

This PR implements changes related to
[EIP-6800](https://eips.ethereum.org/EIPS/eip-6800) and
[EIP-4762](https://eips.ethereum.org/EIPS/eip-4762) spec updates.

A TL;DR of the changes is that `Version`, `Balance`, `Nonce` and
`CodeSize` are encoded in a single leaf named `BasicData`. For more
details, see the [_Header Values_ table in
EIP-6800](https://eips.ethereum.org/EIPS/eip-6800#header-values).

The motivation for this was simplifying access event patterns, reducing
code complexity, and, as a side effect, saving gas since fewer leaf
nodes must be accessed.

---------

Co-authored-by: Guillaume Ballet <3272758+gballet@users.noreply.github.com>
Co-authored-by: Felix Lange <fjl@twurst.com>

* Include tracerConfig in created tracing test (#30364)

Fixes the tracer test filler for when there is tracerConfig.

* core/state: pull the verkle trie from prefetcher for empty storage root (#30369)

This pull request fixes a flaw in prefetcher.

In verkle tree world, both accounts and storage slots are committed into
a single tree instance for state hashing. If the prefetcher is activated, we will
try to pull the trie for the prefetcher for performance speedup. 

However, we had a special logic to skip pulling storage trie if the
storage root is empty. While it's true for merkle as we have nothing to
do with an empty storage trie, it's totally wrong for verkle. The consequences
for skipping pulling is the storage changes are committed into trie A, while the
account changes are committed into trie B (pulled from the prefetcher), boom.

* funding.json: add funding information file (#30385)

Adds a list of funding identifiers.

* all: implement EIP-6110, execution layer triggered deposits (#29431)

This PR implements EIP-6110: Supply validator deposits on chain. It also sketches
out the base for Prague in the engine API types.

* all: remove forkchoicer and reorgNeeded (#29179)

This PR changes how sidechains are handled. 

Before the merge, it was possible to import a chain with lower td and not set it as canonical. After the merge, we expect every chain that we get via InsertChain to be canonical. Non-canonical blocks can still be inserted
with InsertBlockWIthoutSetHead.

If during the InsertChain, the existing chain is not canonical anymore, we mark it as a sidechain and send the SideChainEvents normally.

* core: fix compilation error (#30394)

un-borks a compilation error from a recent merge to master

* all: remove funding verifier (#30391)

Now that verification is done, we can remove the funding information.

* node: fix flaky jwt-test (#30388)

This PR fixes a flaky jwt-test. 

The test is a jwt "from one second in the future". The test passes; the
reason for this is that the CI-system is slow, and by the time the jwt
is actually evaluated, that second has passed, and it's no longer
future.

Alternative to #30380

* build: increase go test timeout (#30398)

This increases the timeout for the go tests on ci, this should prevent
travis from erroring.

see:
https://app.travis-ci.com/github/ethereum/go-ethereum/jobs/625803693

* core/state: state reader abstraction (#29761)

This pull request introduces a state.Reader interface for state
accessing.

The interface could be implemented in various ways. It can be pure trie
only reader, or the combination of trie and state snapshot. What's more,
this interface allows us to have more flexibility in the future, e.g.
the
archive reader (for accessing archive state).

Additionally, this pull request removes the following metrics

- `chain/snapshot/account/reads`
- `chain/snapshot/storage/reads`

* core/state: get rid of field pointer in journal (#30361)

This pull request replaces the field pointer in journal entry with the
field itself, specifically the address of mutated account.

While it will introduce the extra allocation cost, but it's easier for
code reading. Let's measure the overhead overall to see if the change is
acceptable or not.

* build: upgrade -dlgo version to Go 1.23.1 (#30404)

New security fix:
https://groups.google.com/g/golang-announce/c/K-cEzDeCtpc

* internal/ethapi: eth_multicall (#27720)

This is a successor PR to #25743. This PR is based on a new iteration of
the spec: https://github.com/ethereum/execution-apis/pull/484.

`eth_multicall` takes in a list of blocks, each optionally overriding
fields like number, timestamp, etc. of a base block. Each block can
include calls. At each block users can override the state. There are
extra features, such as:

- Include ether transfers as part of the logs
- Overriding precompile codes with evm bytecode
- Redirecting accounts to another address

## Breaking changes

This PR includes the following breaking changes:

- Block override fields of eth_call and debug_traceCall have had the
following fields renamed
  - `coinbase` -> `feeRecipient`
  - `random` -> `prevRandao`
  - `baseFee` -> `baseFeePerGas`

---------

Co-authored-by: Gary Rong <garyrong0905@gmail.com>
Co-authored-by: Martin Holst Swende <martin@swende.se>

* eth/fetcher: fix blob transaction propagation (#30125)

This PR fixes an issue with blob transaction propagation due to the blob
transation txpool rejecting transactions with gapped nonces. The
specific changes are:

- fetch transactions from a peer in the order they were announced to
minimize nonce-gaps (which cause blob txs to be rejected

- don't wait on fetching blob transactions after announcement is
received, since they are not broadcast

Testing:
- unit tests updated to reflect that fetch order should always match tx
announcement order
- unit test added to confirm blob transactions are scheduled immediately
for fetching
  - running the PR on an eth mainnet full node without incident so far

---------

Signed-off-by: Roberto Bayardo <bayardo@alum.mit.edu>
Co-authored-by: Gary Rong <garyrong0905@gmail.com>

* core/state/snapshot: port changes from 29995 (#30040)

#29995 has been reverted due to an unexpected flaw in the state snapshot
process.

Specifically, it attempts to stop the state snapshot generation, which
could potentially
cause the system to halt if the generation is not currently running.

This pull request ports the changes made in #29995 and fixes the flaw.

* beacon/engine/types: remove PayloadV4 (#30415)

h/t @MariusVanDerWijden for finding and fixing this on devnet 3.

I made the mistake of thinking `PayloadVersion` was correlated with the
`GetPayloadVX` method, but it actually tracks which version of
`PayloadAttributes` were passed to `forkchoiceUpdated`. So far, Prague
does not necessitate a new version of fcu, so there is no need for
`PayloadV4`.

Co-authored-by: Marius van der Wijden <m.vanderwijden@live.de>

* core/vm: remove panic when address is not present (#30414)

Remove redundant address presence check in `makeGasSStoreFunc`.

This PR simplifies the `makeGasSStoreFunc` function by removing the
redundant check for address presence in the access list. The updated
code now only checks for slot presence, streamlining the logic and
eliminating unnecessary panic conditions.

This change removes the unnecessary address presence check, simplifying
the code and improving maintainability without affecting functionality.
The previous panic condition was intended as a canary during the testing
phases (i.e. _YOLOv2_) and is no longer needed.

* beacon/light/api: fixed blsync update query (#30421)

This PR fixes what https://github.com/ethereum/go-ethereum/pull/30306/
broke. Escaping the `?` in the event sub query was fixed in that PR but
it was still escaped in the `updates` request. This PR adds a URL params
argument to `httpGet` and fixes `updates` query formatting.

* eth/filters: prevent concurrent access in test (#30401)

use a mutex to prevent concurrent access to the api.filters map during `TestPendingTxFilterDeadlock` test

* core/rawdb: more accurate description of freezer in docs (#30393)

fixes https://github.com/ethereum/go-ethereum/issues/29793

* core/state, core/vm: Nyota contract create init simplification (#30409)

Implementation of [this EIP-4762
update](https://github.com/ethereum/EIPs/pull/8867).

---------

Signed-off-by: Guillaume Ballet <3272758+gballet@users.noreply.github.com>
Co-authored-by: Tanishq Jasoria <jasoriatanishq@gmail.com>

* p2p/enode: add quic ENR entry (#30283)

Add `quic` entry to the ENR as proposed in
https://github.com/ethereum/consensus-specs/pull/3644

---------

Co-authored-by: lightclient <lightclient@protonmail.com>

* core/tracing: fix copy/paste error+comments in reason listing (#30431)

Signed-off-by: Guillaume Ballet <3272758+gballet@users.noreply.github.com>

* core/txpool/blobpool: avoid possible zero index panic (#30430)

This situation(`len(txs) == 0`) rarely occurs, but if it does, it will
panic.

---------

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

* core/rawdb: remove unused transition status state accessors (#30433)

* internal: run tests in parallel (#30381)

Continuation of https://github.com/ethereum/go-ethereum/pull/28546

* core/types: more easily extensible tx signing (#30372)

This change makes the code slightly easier for downstream-projects to extend with more signer-types, but if functionalily equivalent to the previous code.

* core, trie: prealloc capacity for maps (#30437)

- preallocate capacity for map
- avoid `reinject` adding empty value
- use `maps.Copy`

* core/tracing: fix typo in comment (#30443)

minor fix

* core/tracing: add verkle gas change reasons to changelog (#30444)

Add changes from #30409 and #29338 to changelog.

---------

Co-authored-by: Martin HS <martin@swende.se>
Co-authored-by: Guillaume Ballet <3272758+gballet@users.noreply.github.com>

* Revert "core/rawdb: remove unused transition status state accessors" (#30449)

Reverts ethereum/go-ethereum#30433

* params: release go-ethereum v1.14.9 stable (#30455)

* params: begin v1.14.10 release cycle (#30457)

* genesis: fix dev mode alloc (#30460)

Balance being null causes `getGenesisState` to fail as the balance field
is required in json marshaling of an account.

* core: minor fix for the log wrapper with debug purpose (#30454)

After this PR, https://github.com/ethereum/go-ethereum/pull/28187, the
way to set the default logger is different. This PR only updates the way
to set logger in some test cases' comments that existed in the codebase
(since this commit
https://github.com/ethereum/go-ethereum/commit/b63e3c37a6). Although I
am not sure if it a good way to leave the code in the comment, it truly
makes me more efficiently to debug and fix the failing test cases.

* ethdb/pebble: handle errors (#30367)

* .github: add release maintainers to params/ CODEOWNERS (#30458)

* build: fix macos builds by working around travis osx flaw (#30479)

This should fix https://github.com/ethereum/go-ethereum/issues/30471.
See investigation in https://github.com/ethereum/go-ethereum/pull/30478
for more background.

* beacon, core, eth, miner: integrate witnesses into production Geth (#30069)

This PR integrates witness-enabled block production, witness-creating
payload execution and stateless cross-validation into the `engine` API.
The purpose of the PR is to enable the following use-cases (for API
details, please see next section):

- Cross validating locally created blocks:
- Call `forkchoiceUpdatedWithWitness` instead of `forkchoiceUpdated` to
trigger witness creation too.
- Call `getPayload` as before to retrieve the new block and also the
above created witness.
- Call `executeStatelessPayload` against another client to
cross-validate the block.

- Cross validating locally processed blocks:
- Call `newPayloadWithWitness` instead of `newPayload` to trigger
witness creation too.
- Call `executeStatelessPayload` against another client to
cross-validate the block.

- Block production for stateless clients (local or MEV builders):
- Call `forkchoiceUpdatedWithWitness` instead of `forkchoiceUpdated` to
trigger witness creation too.
- Call `getPayload` as before to retrieve the new block and also the
above created witness.
- Propagate witnesses across the consensus libp2p network for stateless
Ethereum.

- Stateless validator validation:
- Call `executeStatelessPayload` with the propagated witness to
statelessly validate the block.

*Note, the various `WithWitness` methods could also *just be* an
additional boolean flag on the base methods, but this PR wanted to keep
the methods separate until a final consensus is reached on how to
integrate in production.*

---

The following `engine` API types are introduced:

```go
// StatelessPayloadStatusV1 is the result of a stateless payload execution.
type StatelessPayloadStatusV1 struct {
	Status          string      `json:"status"`
	StateRoot       common.Hash `json:"stateRoot"`
	ReceiptsRoot    common.Hash `json:"receiptsRoot"`
	ValidationError *string     `json:"validationError"`
}
```

- Add `forkchoiceUpdatedWithWitnessV1,2,3` with same params and returns
as `forkchoiceUpdatedV1,2,3`, but triggering a stateless witness
building if block production is requested.
- Extend `getPayloadV2,3` to return `executionPayloadEnvelope` with an
additional `witness` field of type `bytes` iff created via
`forkchoiceUpdatedWithWitnessV2,3`.
- Add `newPayloadWithWitnessV1,2,3,4` with same params and returns as
`newPayloadV1,2,3,4`, but triggering a stateless witness creation during
payload execution to allow cross validating it.
- Extend `payloadStatusV1` with a `witness` field of type `bytes` if
returned by `newPayloadWithWitnessV1,2,3,4`.
- Add `executeStatelessPayloadV1,2,3,4` with same base params as
`newPayloadV1,2,3,4` and one more additional param (`witness`) of type
`bytes`. The method returns `statelessPayloadStatusV1`, which mirrors
`payloadStatusV1` but replaces `latestValidHash` with `stateRoot` and
`receiptRoot`.

* travis: work around travis/osx/go1.23 setup bug (#30491)

This is a work-around for a strange issue with travis, specifically,
`os=osx, go: 1.23.1`. When this is used, the actual go that ends up
being used is `go1.19.4 darwin/amd64 `.

Using `which go`, it told me that the `go` in the path was a softlink at
`/Users/travis/gopath/bin/go1.23.1 `. However, this was not true: using
`command -v go`, it told me that the actual `go` that was used is a
softlink at `/usr/local/bin/go`.

This change rewrites the `/usr/local/bin/go` softlink to point to the
binary at `/Users/travis/gopath/bin/go1.23.1`, so we get the right
go-version.

* cmd/utils: fix `setEtherbase` (#30488)

Make `setEtherbase` fall thorugh and handle `miner.pending.feeRecipient` after showing deprecation-warning for `miner.etherbase`-flag.

* core/state: fix comment of `mode` (#30490)

* core/state: commit snapshot only if the base layer exists (#30493)

This pull request skips the state snapshot update if the base layer is
not existent, eliminating the numerous warning logs after an unclean
shutdown.

Specifically, Geth will rewind its chain head to a historical block
after unclean shutdown and state snapshot will be remained as unchanged
waiting for recovery. During this period of time, the snapshot is unusable
and all state updates should be ignored/skipped for state snapshot update.

* internal/ethapi/api: for simulated calls, set gaspool to max value if global gascap is 0 (#30474)

In #27720, we introduced RPC global gas cap. A value of `0` means an unlimited gas cap. However, this was not the case for simulated calls. This PR fixes the behaviour.

* core/rawdb: make sure specified state scheme is valid (#30499)

This change exits with error if user provided a `--state.scheme` which is neither `hash` nor `path`

* feat(repo): `geth/v1.14.9` upstream merge

* internal/ethapi: fix gascap 0 for eth_simulateV1 (#30496)

Similar to #30474.

* core/tracing, core/vm: add ContractCode to the OpContext (#30466)

Extends the opcontext interface to include accessor for code being executed in current context. While it is possible to get the code via `statedb.GetCode`, that approach doesn't work for initcode.

* core/vm: more benchmarks for bls g1/g2-multiexp precompiles (#30459)

This change adds more comprehensive benchmarks with a wider-variety of input sizes for g1 and g2 multi exponentiation.

* p2p/discover: fix flaky tests writing to test.log after completion (#30506)

This PR fixes two tests, which had a tendency to sometimes write to the `*testing.T` `log` facility after the test function had completed, which is not allowed. This PR fixes it by using waitgroups to ensure that the handler/logwriter terminates before the test exits.

closes #30505

* deps: update supranational/blst (#30504)

This update should only affect the fuzzers, as far as I know. But it
seems like it might also fix some arm/macos compilation issue in
https://github.com/ethereum/go-ethereum/issues/30494

Closes #30494 (I think)

* core/txpool, eth/catalyst: ensure gas tip retains current value upon rollback (#30495)

Here we move the method that drops all transactions by temporarily increasing the fee
into the TxPool itself. It's better to have it there because we can set it back to the
configured value afterwards. This resolves a TODO in the simulated backend.

* feat(repo): Fix bug merge 1.14.9 (#320)

* fix lint

* fix bug

* update generation files

* core/txpool/blobpool: revert part of #30437, return all reinject-addresses

* core/txpool/blobpool: add test to check internal shuffling

* Revert "core/txpool, eth/catalyst:  ensure gas tip retains current value upon rollback" (#30521)

Reverts ethereum/go-ethereum#30495

You are free to create a proper Clear method if that's the best way. But
one that does a proper cleanup, not some hacky call to set gas which
screws up logs, metrics and everything along the way. Also doesn't work
for legacy pool local transactions.

The current code had a hack in the simulated code, now we have a hack in
live txpooling code. No, that's not acceptable. I want the live code to
be proper, meaningful API, meaningful comments, meaningful
implementation.

* params: release Geth v1.14.10

* params: begin v1.14.11 release cycle

* feat: merge 1.14.10

* fix(taiko): Fix bug merge 1.14.9 (#325)

* fix bug

* fix bug

* p2p/discover: add config option for disabling FINDNODE liveness check (#30512)

This is for fixing Prysm integration tests.

* core/txpool/blobpool: use types.Sender instead of signer.Sender (#30473)

Use types.Sender(signer, tx) to utilize the transaction's sender cache
and avoid repeated address recover.

* build: use buildx to build multi-platform docker images (#30530)

* eth/catalyst: use setcanonical instead of sethead in simulated fork (#30465)

Fixes https://github.com/ethereum/go-ethereum/issues/30448

* cmd/geth: remove deprecated lightchaindata db (#30527)

This PR removes the dependencies on `lightchaindata` db as the light
protocol has been deprecated and removed from the codebase.

* fix: fix lint errors

* internal/ethapi: remove td field from block (#30386)

implement https://github.com/ethereum/execution-apis/pull/570

* params: go-ethereum v1.14.11 stable

* feat(repo): `geth/v1.14.11` upstream merge

* feat(repo): `geth/v1.14.11` upstream merge

---------

Signed-off-by: Icarus Wu <icaruswu66@qq.com>
Signed-off-by: jsvisa <delweng@gmail.com>
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2024-10-02 21:06:03 -07:00

2672 lines
97 KiB
Go

// Copyright 2015 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 legacypool
import (
"crypto/ecdsa"
crand "crypto/rand"
"errors"
"fmt"
"math/big"
"math/rand"
"os"
"sync"
"sync/atomic"
"testing"
"time"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/core"
"github.com/ethereum/go-ethereum/core/state"
"github.com/ethereum/go-ethereum/core/tracing"
"github.com/ethereum/go-ethereum/core/txpool"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/event"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/trie"
"github.com/holiman/uint256"
)
var (
// testTxPoolConfig is a transaction pool configuration without stateful disk
// sideeffects used during testing.
testTxPoolConfig Config
// eip1559Config is a chain config with EIP-1559 enabled at block 0.
eip1559Config *params.ChainConfig
)
func init() {
testTxPoolConfig = DefaultConfig
testTxPoolConfig.Journal = ""
cpy := *params.TestChainConfig
eip1559Config = &cpy
eip1559Config.BerlinBlock = common.Big0
eip1559Config.LondonBlock = common.Big0
}
type testBlockChain struct {
config *params.ChainConfig
gasLimit atomic.Uint64
statedb *state.StateDB
chainHeadFeed *event.Feed
}
func newTestBlockChain(config *params.ChainConfig, gasLimit uint64, statedb *state.StateDB, chainHeadFeed *event.Feed) *testBlockChain {
bc := testBlockChain{config: config, statedb: statedb, chainHeadFeed: new(event.Feed)}
bc.gasLimit.Store(gasLimit)
return &bc
}
func (bc *testBlockChain) Config() *params.ChainConfig {
return bc.config
}
func (bc *testBlockChain) CurrentBlock() *types.Header {
return &types.Header{
Number: new(big.Int),
GasLimit: bc.gasLimit.Load(),
}
}
func (bc *testBlockChain) GetBlock(hash common.Hash, number uint64) *types.Block {
return types.NewBlock(bc.CurrentBlock(), nil, nil, trie.NewStackTrie(nil))
}
func (bc *testBlockChain) StateAt(common.Hash) (*state.StateDB, error) {
return bc.statedb, nil
}
func (bc *testBlockChain) SubscribeChainHeadEvent(ch chan<- core.ChainHeadEvent) event.Subscription {
return bc.chainHeadFeed.Subscribe(ch)
}
func transaction(nonce uint64, gaslimit uint64, key *ecdsa.PrivateKey) *types.Transaction {
return pricedTransaction(nonce, gaslimit, big.NewInt(1), key)
}
func pricedTransaction(nonce uint64, gaslimit uint64, gasprice *big.Int, key *ecdsa.PrivateKey) *types.Transaction {
tx, _ := types.SignTx(types.NewTransaction(nonce, common.Address{}, big.NewInt(100), gaslimit, gasprice, nil), types.HomesteadSigner{}, key)
return tx
}
func pricedDataTransaction(nonce uint64, gaslimit uint64, gasprice *big.Int, key *ecdsa.PrivateKey, bytes uint64) *types.Transaction {
data := make([]byte, bytes)
crand.Read(data)
tx, _ := types.SignTx(types.NewTransaction(nonce, common.Address{}, big.NewInt(0), gaslimit, gasprice, data), types.HomesteadSigner{}, key)
return tx
}
func dynamicFeeTx(nonce uint64, gaslimit uint64, gasFee *big.Int, tip *big.Int, key *ecdsa.PrivateKey) *types.Transaction {
tx, _ := types.SignNewTx(key, types.LatestSignerForChainID(params.TestChainConfig.ChainID), &types.DynamicFeeTx{
ChainID: params.TestChainConfig.ChainID,
Nonce: nonce,
GasTipCap: tip,
GasFeeCap: gasFee,
Gas: gaslimit,
To: &common.Address{},
Value: big.NewInt(100),
Data: nil,
AccessList: nil,
})
return tx
}
func makeAddressReserver() txpool.AddressReserver {
var (
reserved = make(map[common.Address]struct{})
lock sync.Mutex
)
return func(addr common.Address, reserve bool) error {
lock.Lock()
defer lock.Unlock()
_, exists := reserved[addr]
if reserve {
if exists {
panic("already reserved")
}
reserved[addr] = struct{}{}
return nil
}
if !exists {
panic("not reserved")
}
delete(reserved, addr)
return nil
}
}
func setupPool() (*LegacyPool, *ecdsa.PrivateKey) {
return setupPoolWithConfig(params.TestChainConfig)
}
func setupPoolWithConfig(config *params.ChainConfig) (*LegacyPool, *ecdsa.PrivateKey) {
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(config, 10000000, statedb, new(event.Feed))
key, _ := crypto.GenerateKey()
pool := New(testTxPoolConfig, blockchain)
if err := pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver()); err != nil {
panic(err)
}
// wait for the pool to initialize
<-pool.initDoneCh
return pool, key
}
// validatePoolInternals checks various consistency invariants within the pool.
func validatePoolInternals(pool *LegacyPool) error {
pool.mu.RLock()
defer pool.mu.RUnlock()
// Ensure the total transaction set is consistent with pending + queued
pending, queued := pool.stats()
if total := pool.all.Count(); total != pending+queued {
return fmt.Errorf("total transaction count %d != %d pending + %d queued", total, pending, queued)
}
pool.priced.Reheap()
priced, remote := pool.priced.urgent.Len()+pool.priced.floating.Len(), pool.all.RemoteCount()
if priced != remote {
return fmt.Errorf("total priced transaction count %d != %d", priced, remote)
}
// Ensure the next nonce to assign is the correct one
for addr, txs := range pool.pending {
// Find the last transaction
var last uint64
for nonce := range txs.txs.items {
if last < nonce {
last = nonce
}
}
if nonce := pool.pendingNonces.get(addr); nonce != last+1 {
return fmt.Errorf("pending nonce mismatch: have %v, want %v", nonce, last+1)
}
}
return nil
}
// validateEvents checks that the correct number of transaction addition events
// were fired on the pool's event feed.
func validateEvents(events chan core.NewTxsEvent, count int) error {
var received []*types.Transaction
for len(received) < count {
select {
case ev := <-events:
received = append(received, ev.Txs...)
case <-time.After(time.Second):
return fmt.Errorf("event #%d not fired", len(received))
}
}
if len(received) > count {
return fmt.Errorf("more than %d events fired: %v", count, received[count:])
}
select {
case ev := <-events:
return fmt.Errorf("more than %d events fired: %v", count, ev.Txs)
case <-time.After(50 * time.Millisecond):
// This branch should be "default", but it's a data race between goroutines,
// reading the event channel and pushing into it, so better wait a bit ensuring
// really nothing gets injected.
}
return nil
}
func deriveSender(tx *types.Transaction) (common.Address, error) {
return types.Sender(types.HomesteadSigner{}, tx)
}
type testChain struct {
*testBlockChain
address common.Address
trigger *bool
}
// testChain.State() is used multiple times to reset the pending state.
// when simulate is true it will create a state that indicates
// that tx0 and tx1 are included in the chain.
func (c *testChain) State() (*state.StateDB, error) {
// delay "state change" by one. The tx pool fetches the
// state multiple times and by delaying it a bit we simulate
// a state change between those fetches.
stdb := c.statedb
if *c.trigger {
c.statedb, _ = state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
// simulate that the new head block included tx0 and tx1
c.statedb.SetNonce(c.address, 2)
c.statedb.SetBalance(c.address, new(uint256.Int).SetUint64(params.Ether), tracing.BalanceChangeUnspecified)
*c.trigger = false
}
return stdb, nil
}
// This test simulates a scenario where a new block is imported during a
// state reset and tests whether the pending state is in sync with the
// block head event that initiated the resetState().
func TestStateChangeDuringReset(t *testing.T) {
t.Parallel()
var (
key, _ = crypto.GenerateKey()
address = crypto.PubkeyToAddress(key.PublicKey)
statedb, _ = state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
trigger = false
)
// setup pool with 2 transaction in it
statedb.SetBalance(address, new(uint256.Int).SetUint64(params.Ether), tracing.BalanceChangeUnspecified)
blockchain := &testChain{newTestBlockChain(params.TestChainConfig, 1000000000, statedb, new(event.Feed)), address, &trigger}
tx0 := transaction(0, 100000, key)
tx1 := transaction(1, 100000, key)
pool := New(testTxPoolConfig, blockchain)
pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
nonce := pool.Nonce(address)
if nonce != 0 {
t.Fatalf("Invalid nonce, want 0, got %d", nonce)
}
pool.addRemotesSync([]*types.Transaction{tx0, tx1})
nonce = pool.Nonce(address)
if nonce != 2 {
t.Fatalf("Invalid nonce, want 2, got %d", nonce)
}
// trigger state change in the background
trigger = true
<-pool.requestReset(nil, nil)
nonce = pool.Nonce(address)
if nonce != 2 {
t.Fatalf("Invalid nonce, want 2, got %d", nonce)
}
}
func testAddBalance(pool *LegacyPool, addr common.Address, amount *big.Int) {
pool.mu.Lock()
pool.currentState.AddBalance(addr, uint256.MustFromBig(amount), tracing.BalanceChangeUnspecified)
pool.mu.Unlock()
}
func testSetNonce(pool *LegacyPool, addr common.Address, nonce uint64) {
pool.mu.Lock()
pool.currentState.SetNonce(addr, nonce)
pool.mu.Unlock()
}
func TestInvalidTransactions(t *testing.T) {
t.Parallel()
pool, key := setupPool()
defer pool.Close()
tx := transaction(0, 100, key)
from, _ := deriveSender(tx)
// Intrinsic gas too low
testAddBalance(pool, from, big.NewInt(1))
if err, want := pool.addRemote(tx), core.ErrIntrinsicGas; !errors.Is(err, want) {
t.Errorf("want %v have %v", want, err)
}
// Insufficient funds
tx = transaction(0, 100000, key)
if err, want := pool.addRemote(tx), core.ErrInsufficientFunds; !errors.Is(err, want) {
t.Errorf("want %v have %v", want, err)
}
testSetNonce(pool, from, 1)
testAddBalance(pool, from, big.NewInt(0xffffffffffffff))
tx = transaction(0, 100000, key)
if err, want := pool.addRemote(tx), core.ErrNonceTooLow; !errors.Is(err, want) {
t.Errorf("want %v have %v", want, err)
}
tx = transaction(1, 100000, key)
pool.gasTip.Store(uint256.NewInt(1000))
if err, want := pool.addRemote(tx), txpool.ErrUnderpriced; !errors.Is(err, want) {
t.Errorf("want %v have %v", want, err)
}
if err := pool.addLocal(tx); err != nil {
t.Error("expected", nil, "got", err)
}
}
func TestQueue(t *testing.T) {
t.Parallel()
pool, key := setupPool()
defer pool.Close()
tx := transaction(0, 100, key)
from, _ := deriveSender(tx)
testAddBalance(pool, from, big.NewInt(1000))
<-pool.requestReset(nil, nil)
pool.enqueueTx(tx.Hash(), tx, false, true)
<-pool.requestPromoteExecutables(newAccountSet(pool.signer, from))
if len(pool.pending) != 1 {
t.Error("expected valid txs to be 1 is", len(pool.pending))
}
tx = transaction(1, 100, key)
from, _ = deriveSender(tx)
testSetNonce(pool, from, 2)
pool.enqueueTx(tx.Hash(), tx, false, true)
<-pool.requestPromoteExecutables(newAccountSet(pool.signer, from))
if _, ok := pool.pending[from].txs.items[tx.Nonce()]; ok {
t.Error("expected transaction to be in tx pool")
}
if len(pool.queue) > 0 {
t.Error("expected transaction queue to be empty. is", len(pool.queue))
}
}
func TestQueue2(t *testing.T) {
t.Parallel()
pool, key := setupPool()
defer pool.Close()
tx1 := transaction(0, 100, key)
tx2 := transaction(10, 100, key)
tx3 := transaction(11, 100, key)
from, _ := deriveSender(tx1)
testAddBalance(pool, from, big.NewInt(1000))
pool.reset(nil, nil)
pool.enqueueTx(tx1.Hash(), tx1, false, true)
pool.enqueueTx(tx2.Hash(), tx2, false, true)
pool.enqueueTx(tx3.Hash(), tx3, false, true)
pool.promoteExecutables([]common.Address{from})
if len(pool.pending) != 1 {
t.Error("expected pending length to be 1, got", len(pool.pending))
}
if pool.queue[from].Len() != 2 {
t.Error("expected len(queue) == 2, got", pool.queue[from].Len())
}
}
func TestNegativeValue(t *testing.T) {
t.Parallel()
pool, key := setupPool()
defer pool.Close()
tx, _ := types.SignTx(types.NewTransaction(0, common.Address{}, big.NewInt(-1), 100, big.NewInt(1), nil), types.HomesteadSigner{}, key)
from, _ := deriveSender(tx)
testAddBalance(pool, from, big.NewInt(1))
if err := pool.addRemote(tx); err != txpool.ErrNegativeValue {
t.Error("expected", txpool.ErrNegativeValue, "got", err)
}
}
func TestTipAboveFeeCap(t *testing.T) {
t.Parallel()
pool, key := setupPoolWithConfig(eip1559Config)
defer pool.Close()
tx := dynamicFeeTx(0, 100, big.NewInt(1), big.NewInt(2), key)
if err := pool.addRemote(tx); err != core.ErrTipAboveFeeCap {
t.Error("expected", core.ErrTipAboveFeeCap, "got", err)
}
}
func TestVeryHighValues(t *testing.T) {
t.Parallel()
pool, key := setupPoolWithConfig(eip1559Config)
defer pool.Close()
veryBigNumber := big.NewInt(1)
veryBigNumber.Lsh(veryBigNumber, 300)
tx := dynamicFeeTx(0, 100, big.NewInt(1), veryBigNumber, key)
if err := pool.addRemote(tx); err != core.ErrTipVeryHigh {
t.Error("expected", core.ErrTipVeryHigh, "got", err)
}
tx2 := dynamicFeeTx(0, 100, veryBigNumber, big.NewInt(1), key)
if err := pool.addRemote(tx2); err != core.ErrFeeCapVeryHigh {
t.Error("expected", core.ErrFeeCapVeryHigh, "got", err)
}
}
func TestChainFork(t *testing.T) {
t.Parallel()
pool, key := setupPool()
defer pool.Close()
addr := crypto.PubkeyToAddress(key.PublicKey)
resetState := func() {
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
statedb.AddBalance(addr, uint256.NewInt(100000000000000), tracing.BalanceChangeUnspecified)
pool.chain = newTestBlockChain(pool.chainconfig, 1000000, statedb, new(event.Feed))
<-pool.requestReset(nil, nil)
}
resetState()
tx := transaction(0, 100000, key)
if _, err := pool.add(tx, false); err != nil {
t.Error("didn't expect error", err)
}
pool.removeTx(tx.Hash(), true, true)
// reset the pool's internal state
resetState()
if _, err := pool.add(tx, false); err != nil {
t.Error("didn't expect error", err)
}
}
func TestDoubleNonce(t *testing.T) {
t.Parallel()
pool, key := setupPool()
defer pool.Close()
addr := crypto.PubkeyToAddress(key.PublicKey)
resetState := func() {
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
statedb.AddBalance(addr, uint256.NewInt(100000000000000), tracing.BalanceChangeUnspecified)
pool.chain = newTestBlockChain(pool.chainconfig, 1000000, statedb, new(event.Feed))
<-pool.requestReset(nil, nil)
}
resetState()
signer := types.HomesteadSigner{}
tx1, _ := types.SignTx(types.NewTransaction(0, common.Address{}, big.NewInt(100), 100000, big.NewInt(1), nil), signer, key)
tx2, _ := types.SignTx(types.NewTransaction(0, common.Address{}, big.NewInt(100), 1000000, big.NewInt(2), nil), signer, key)
tx3, _ := types.SignTx(types.NewTransaction(0, common.Address{}, big.NewInt(100), 1000000, big.NewInt(1), nil), signer, key)
// Add the first two transaction, ensure higher priced stays only
if replace, err := pool.add(tx1, false); err != nil || replace {
t.Errorf("first transaction insert failed (%v) or reported replacement (%v)", err, replace)
}
if replace, err := pool.add(tx2, false); err != nil || !replace {
t.Errorf("second transaction insert failed (%v) or not reported replacement (%v)", err, replace)
}
<-pool.requestPromoteExecutables(newAccountSet(signer, addr))
if pool.pending[addr].Len() != 1 {
t.Error("expected 1 pending transactions, got", pool.pending[addr].Len())
}
if tx := pool.pending[addr].txs.items[0]; tx.Hash() != tx2.Hash() {
t.Errorf("transaction mismatch: have %x, want %x", tx.Hash(), tx2.Hash())
}
// Add the third transaction and ensure it's not saved (smaller price)
pool.add(tx3, false)
<-pool.requestPromoteExecutables(newAccountSet(signer, addr))
if pool.pending[addr].Len() != 1 {
t.Error("expected 1 pending transactions, got", pool.pending[addr].Len())
}
if tx := pool.pending[addr].txs.items[0]; tx.Hash() != tx2.Hash() {
t.Errorf("transaction mismatch: have %x, want %x", tx.Hash(), tx2.Hash())
}
// Ensure the total transaction count is correct
if pool.all.Count() != 1 {
t.Error("expected 1 total transactions, got", pool.all.Count())
}
}
func TestMissingNonce(t *testing.T) {
t.Parallel()
pool, key := setupPool()
defer pool.Close()
addr := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, addr, big.NewInt(100000000000000))
tx := transaction(1, 100000, key)
if _, err := pool.add(tx, false); err != nil {
t.Error("didn't expect error", err)
}
if len(pool.pending) != 0 {
t.Error("expected 0 pending transactions, got", len(pool.pending))
}
if pool.queue[addr].Len() != 1 {
t.Error("expected 1 queued transaction, got", pool.queue[addr].Len())
}
if pool.all.Count() != 1 {
t.Error("expected 1 total transactions, got", pool.all.Count())
}
}
func TestNonceRecovery(t *testing.T) {
t.Parallel()
const n = 10
pool, key := setupPool()
defer pool.Close()
addr := crypto.PubkeyToAddress(key.PublicKey)
testSetNonce(pool, addr, n)
testAddBalance(pool, addr, big.NewInt(100000000000000))
<-pool.requestReset(nil, nil)
tx := transaction(n, 100000, key)
if err := pool.addRemote(tx); err != nil {
t.Error(err)
}
// simulate some weird re-order of transactions and missing nonce(s)
testSetNonce(pool, addr, n-1)
<-pool.requestReset(nil, nil)
if fn := pool.Nonce(addr); fn != n-1 {
t.Errorf("expected nonce to be %d, got %d", n-1, fn)
}
}
// Tests that if an account runs out of funds, any pending and queued transactions
// are dropped.
func TestDropping(t *testing.T) {
t.Parallel()
// Create a test account and fund it
pool, key := setupPool()
defer pool.Close()
account := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, account, big.NewInt(1000))
// Add some pending and some queued transactions
var (
tx0 = transaction(0, 100, key)
tx1 = transaction(1, 200, key)
tx2 = transaction(2, 300, key)
tx10 = transaction(10, 100, key)
tx11 = transaction(11, 200, key)
tx12 = transaction(12, 300, key)
)
pool.all.Add(tx0, false)
pool.priced.Put(tx0, false)
pool.promoteTx(account, tx0.Hash(), tx0)
pool.all.Add(tx1, false)
pool.priced.Put(tx1, false)
pool.promoteTx(account, tx1.Hash(), tx1)
pool.all.Add(tx2, false)
pool.priced.Put(tx2, false)
pool.promoteTx(account, tx2.Hash(), tx2)
pool.enqueueTx(tx10.Hash(), tx10, false, true)
pool.enqueueTx(tx11.Hash(), tx11, false, true)
pool.enqueueTx(tx12.Hash(), tx12, false, true)
// Check that pre and post validations leave the pool as is
if pool.pending[account].Len() != 3 {
t.Errorf("pending transaction mismatch: have %d, want %d", pool.pending[account].Len(), 3)
}
if pool.queue[account].Len() != 3 {
t.Errorf("queued transaction mismatch: have %d, want %d", pool.queue[account].Len(), 3)
}
if pool.all.Count() != 6 {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), 6)
}
<-pool.requestReset(nil, nil)
if pool.pending[account].Len() != 3 {
t.Errorf("pending transaction mismatch: have %d, want %d", pool.pending[account].Len(), 3)
}
if pool.queue[account].Len() != 3 {
t.Errorf("queued transaction mismatch: have %d, want %d", pool.queue[account].Len(), 3)
}
if pool.all.Count() != 6 {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), 6)
}
// Reduce the balance of the account, and check that invalidated transactions are dropped
testAddBalance(pool, account, big.NewInt(-650))
<-pool.requestReset(nil, nil)
if _, ok := pool.pending[account].txs.items[tx0.Nonce()]; !ok {
t.Errorf("funded pending transaction missing: %v", tx0)
}
if _, ok := pool.pending[account].txs.items[tx1.Nonce()]; !ok {
t.Errorf("funded pending transaction missing: %v", tx0)
}
if _, ok := pool.pending[account].txs.items[tx2.Nonce()]; ok {
t.Errorf("out-of-fund pending transaction present: %v", tx1)
}
if _, ok := pool.queue[account].txs.items[tx10.Nonce()]; !ok {
t.Errorf("funded queued transaction missing: %v", tx10)
}
if _, ok := pool.queue[account].txs.items[tx11.Nonce()]; !ok {
t.Errorf("funded queued transaction missing: %v", tx10)
}
if _, ok := pool.queue[account].txs.items[tx12.Nonce()]; ok {
t.Errorf("out-of-fund queued transaction present: %v", tx11)
}
if pool.all.Count() != 4 {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), 4)
}
// Reduce the block gas limit, check that invalidated transactions are dropped
pool.chain.(*testBlockChain).gasLimit.Store(100)
<-pool.requestReset(nil, nil)
if _, ok := pool.pending[account].txs.items[tx0.Nonce()]; !ok {
t.Errorf("funded pending transaction missing: %v", tx0)
}
if _, ok := pool.pending[account].txs.items[tx1.Nonce()]; ok {
t.Errorf("over-gased pending transaction present: %v", tx1)
}
if _, ok := pool.queue[account].txs.items[tx10.Nonce()]; !ok {
t.Errorf("funded queued transaction missing: %v", tx10)
}
if _, ok := pool.queue[account].txs.items[tx11.Nonce()]; ok {
t.Errorf("over-gased queued transaction present: %v", tx11)
}
if pool.all.Count() != 2 {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), 2)
}
}
// Tests that if a transaction is dropped from the current pending pool (e.g. out
// of fund), all consecutive (still valid, but not executable) transactions are
// postponed back into the future queue to prevent broadcasting them.
func TestPostponing(t *testing.T) {
t.Parallel()
// Create the pool to test the postponing with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
pool := New(testTxPoolConfig, blockchain)
pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create two test accounts to produce different gap profiles with
keys := make([]*ecdsa.PrivateKey, 2)
accs := make([]common.Address, len(keys))
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
accs[i] = crypto.PubkeyToAddress(keys[i].PublicKey)
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(50100))
}
// Add a batch consecutive pending transactions for validation
txs := []*types.Transaction{}
for i, key := range keys {
for j := 0; j < 100; j++ {
var tx *types.Transaction
if (i+j)%2 == 0 {
tx = transaction(uint64(j), 25000, key)
} else {
tx = transaction(uint64(j), 50000, key)
}
txs = append(txs, tx)
}
}
for i, err := range pool.addRemotesSync(txs) {
if err != nil {
t.Fatalf("tx %d: failed to add transactions: %v", i, err)
}
}
// Check that pre and post validations leave the pool as is
if pending := pool.pending[accs[0]].Len() + pool.pending[accs[1]].Len(); pending != len(txs) {
t.Errorf("pending transaction mismatch: have %d, want %d", pending, len(txs))
}
if len(pool.queue) != 0 {
t.Errorf("queued accounts mismatch: have %d, want %d", len(pool.queue), 0)
}
if pool.all.Count() != len(txs) {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), len(txs))
}
<-pool.requestReset(nil, nil)
if pending := pool.pending[accs[0]].Len() + pool.pending[accs[1]].Len(); pending != len(txs) {
t.Errorf("pending transaction mismatch: have %d, want %d", pending, len(txs))
}
if len(pool.queue) != 0 {
t.Errorf("queued accounts mismatch: have %d, want %d", len(pool.queue), 0)
}
if pool.all.Count() != len(txs) {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), len(txs))
}
// Reduce the balance of the account, and check that transactions are reorganised
for _, addr := range accs {
testAddBalance(pool, addr, big.NewInt(-1))
}
<-pool.requestReset(nil, nil)
// The first account's first transaction remains valid, check that subsequent
// ones are either filtered out, or queued up for later.
if _, ok := pool.pending[accs[0]].txs.items[txs[0].Nonce()]; !ok {
t.Errorf("tx %d: valid and funded transaction missing from pending pool: %v", 0, txs[0])
}
if _, ok := pool.queue[accs[0]].txs.items[txs[0].Nonce()]; ok {
t.Errorf("tx %d: valid and funded transaction present in future queue: %v", 0, txs[0])
}
for i, tx := range txs[1:100] {
if i%2 == 1 {
if _, ok := pool.pending[accs[0]].txs.items[tx.Nonce()]; ok {
t.Errorf("tx %d: valid but future transaction present in pending pool: %v", i+1, tx)
}
if _, ok := pool.queue[accs[0]].txs.items[tx.Nonce()]; !ok {
t.Errorf("tx %d: valid but future transaction missing from future queue: %v", i+1, tx)
}
} else {
if _, ok := pool.pending[accs[0]].txs.items[tx.Nonce()]; ok {
t.Errorf("tx %d: out-of-fund transaction present in pending pool: %v", i+1, tx)
}
if _, ok := pool.queue[accs[0]].txs.items[tx.Nonce()]; ok {
t.Errorf("tx %d: out-of-fund transaction present in future queue: %v", i+1, tx)
}
}
}
// The second account's first transaction got invalid, check that all transactions
// are either filtered out, or queued up for later.
if pool.pending[accs[1]] != nil {
t.Errorf("invalidated account still has pending transactions")
}
for i, tx := range txs[100:] {
if i%2 == 1 {
if _, ok := pool.queue[accs[1]].txs.items[tx.Nonce()]; !ok {
t.Errorf("tx %d: valid but future transaction missing from future queue: %v", 100+i, tx)
}
} else {
if _, ok := pool.queue[accs[1]].txs.items[tx.Nonce()]; ok {
t.Errorf("tx %d: out-of-fund transaction present in future queue: %v", 100+i, tx)
}
}
}
if pool.all.Count() != len(txs)/2 {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), len(txs)/2)
}
}
// Tests that if the transaction pool has both executable and non-executable
// transactions from an origin account, filling the nonce gap moves all queued
// ones into the pending pool.
func TestGapFilling(t *testing.T) {
t.Parallel()
// Create a test account and fund it
pool, key := setupPool()
defer pool.Close()
account := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, account, big.NewInt(1000000))
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, testTxPoolConfig.AccountQueue+5)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Create a pending and a queued transaction with a nonce-gap in between
pool.addRemotesSync([]*types.Transaction{
transaction(0, 100000, key),
transaction(2, 100000, key),
})
pending, queued := pool.Stats()
if pending != 1 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 1)
}
if queued != 1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 1)
}
if err := validateEvents(events, 1); err != nil {
t.Fatalf("original event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Fill the nonce gap and ensure all transactions become pending
if err := pool.addRemoteSync(transaction(1, 100000, key)); err != nil {
t.Fatalf("failed to add gapped transaction: %v", err)
}
pending, queued = pool.Stats()
if pending != 3 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 3)
}
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
if err := validateEvents(events, 2); err != nil {
t.Fatalf("gap-filling event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that if the transaction count belonging to a single account goes above
// some threshold, the higher transactions are dropped to prevent DOS attacks.
func TestQueueAccountLimiting(t *testing.T) {
t.Parallel()
// Create a test account and fund it
pool, key := setupPool()
defer pool.Close()
account := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, account, big.NewInt(1000000))
// Keep queuing up transactions and make sure all above a limit are dropped
for i := uint64(1); i <= testTxPoolConfig.AccountQueue+5; i++ {
if err := pool.addRemoteSync(transaction(i, 100000, key)); err != nil {
t.Fatalf("tx %d: failed to add transaction: %v", i, err)
}
if len(pool.pending) != 0 {
t.Errorf("tx %d: pending pool size mismatch: have %d, want %d", i, len(pool.pending), 0)
}
if i <= testTxPoolConfig.AccountQueue {
if pool.queue[account].Len() != int(i) {
t.Errorf("tx %d: queue size mismatch: have %d, want %d", i, pool.queue[account].Len(), i)
}
} else {
if pool.queue[account].Len() != int(testTxPoolConfig.AccountQueue) {
t.Errorf("tx %d: queue limit mismatch: have %d, want %d", i, pool.queue[account].Len(), testTxPoolConfig.AccountQueue)
}
}
}
if pool.all.Count() != int(testTxPoolConfig.AccountQueue) {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), testTxPoolConfig.AccountQueue)
}
}
// Tests that if the transaction count belonging to multiple accounts go above
// some threshold, the higher transactions are dropped to prevent DOS attacks.
//
// This logic should not hold for local transactions, unless the local tracking
// mechanism is disabled.
func TestQueueGlobalLimiting(t *testing.T) {
testQueueGlobalLimiting(t, false)
}
func TestQueueGlobalLimitingNoLocals(t *testing.T) {
testQueueGlobalLimiting(t, true)
}
func testQueueGlobalLimiting(t *testing.T, nolocals bool) {
t.Parallel()
// Create the pool to test the limit enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
config := testTxPoolConfig
config.NoLocals = nolocals
config.GlobalQueue = config.AccountQueue*3 - 1 // reduce the queue limits to shorten test time (-1 to make it non divisible)
pool := New(config, blockchain)
pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create a number of test accounts and fund them (last one will be the local)
keys := make([]*ecdsa.PrivateKey, 5)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
local := keys[len(keys)-1]
// Generate and queue a batch of transactions
nonces := make(map[common.Address]uint64)
txs := make(types.Transactions, 0, 3*config.GlobalQueue)
for len(txs) < cap(txs) {
key := keys[rand.Intn(len(keys)-1)] // skip adding transactions with the local account
addr := crypto.PubkeyToAddress(key.PublicKey)
txs = append(txs, transaction(nonces[addr]+1, 100000, key))
nonces[addr]++
}
// Import the batch and verify that limits have been enforced
pool.addRemotesSync(txs)
queued := 0
for addr, list := range pool.queue {
if list.Len() > int(config.AccountQueue) {
t.Errorf("addr %x: queued accounts overflown allowance: %d > %d", addr, list.Len(), config.AccountQueue)
}
queued += list.Len()
}
if queued > int(config.GlobalQueue) {
t.Fatalf("total transactions overflow allowance: %d > %d", queued, config.GlobalQueue)
}
// Generate a batch of transactions from the local account and import them
txs = txs[:0]
for i := uint64(0); i < 3*config.GlobalQueue; i++ {
txs = append(txs, transaction(i+1, 100000, local))
}
pool.addLocals(txs)
// If locals are disabled, the previous eviction algorithm should apply here too
if nolocals {
queued := 0
for addr, list := range pool.queue {
if list.Len() > int(config.AccountQueue) {
t.Errorf("addr %x: queued accounts overflown allowance: %d > %d", addr, list.Len(), config.AccountQueue)
}
queued += list.Len()
}
if queued > int(config.GlobalQueue) {
t.Fatalf("total transactions overflow allowance: %d > %d", queued, config.GlobalQueue)
}
} else {
// Local exemptions are enabled, make sure the local account owned the queue
if len(pool.queue) != 1 {
t.Errorf("multiple accounts in queue: have %v, want %v", len(pool.queue), 1)
}
// Also ensure no local transactions are ever dropped, even if above global limits
if queued := pool.queue[crypto.PubkeyToAddress(local.PublicKey)].Len(); uint64(queued) != 3*config.GlobalQueue {
t.Fatalf("local account queued transaction count mismatch: have %v, want %v", queued, 3*config.GlobalQueue)
}
}
}
// Tests that if an account remains idle for a prolonged amount of time, any
// non-executable transactions queued up are dropped to prevent wasting resources
// on shuffling them around.
//
// This logic should not hold for local transactions, unless the local tracking
// mechanism is disabled.
func TestQueueTimeLimiting(t *testing.T) {
testQueueTimeLimiting(t, false)
}
func TestQueueTimeLimitingNoLocals(t *testing.T) {
testQueueTimeLimiting(t, true)
}
func testQueueTimeLimiting(t *testing.T, nolocals bool) {
// Reduce the eviction interval to a testable amount
defer func(old time.Duration) { evictionInterval = old }(evictionInterval)
evictionInterval = time.Millisecond * 100
// Create the pool to test the non-expiration enforcement
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
config := testTxPoolConfig
config.Lifetime = time.Second
config.NoLocals = nolocals
pool := New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create two test accounts to ensure remotes expire but locals do not
local, _ := crypto.GenerateKey()
remote, _ := crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(local.PublicKey), big.NewInt(1000000000))
testAddBalance(pool, crypto.PubkeyToAddress(remote.PublicKey), big.NewInt(1000000000))
// Add the two transactions and ensure they both are queued up
if err := pool.addLocal(pricedTransaction(1, 100000, big.NewInt(1), local)); err != nil {
t.Fatalf("failed to add local transaction: %v", err)
}
if err := pool.addRemote(pricedTransaction(1, 100000, big.NewInt(1), remote)); err != nil {
t.Fatalf("failed to add remote transaction: %v", err)
}
pending, queued := pool.Stats()
if pending != 0 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 0)
}
if queued != 2 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 2)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Allow the eviction interval to run
time.Sleep(2 * evictionInterval)
// Transactions should not be evicted from the queue yet since lifetime duration has not passed
pending, queued = pool.Stats()
if pending != 0 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 0)
}
if queued != 2 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 2)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Wait a bit for eviction to run and clean up any leftovers, and ensure only the local remains
time.Sleep(2 * config.Lifetime)
pending, queued = pool.Stats()
if pending != 0 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 0)
}
if nolocals {
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
} else {
if queued != 1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 1)
}
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// remove current transactions and increase nonce to prepare for a reset and cleanup
statedb.SetNonce(crypto.PubkeyToAddress(remote.PublicKey), 2)
statedb.SetNonce(crypto.PubkeyToAddress(local.PublicKey), 2)
<-pool.requestReset(nil, nil)
// make sure queue, pending are cleared
pending, queued = pool.Stats()
if pending != 0 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 0)
}
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Queue gapped transactions
if err := pool.addLocal(pricedTransaction(4, 100000, big.NewInt(1), local)); err != nil {
t.Fatalf("failed to add remote transaction: %v", err)
}
if err := pool.addRemoteSync(pricedTransaction(4, 100000, big.NewInt(1), remote)); err != nil {
t.Fatalf("failed to add remote transaction: %v", err)
}
time.Sleep(5 * evictionInterval) // A half lifetime pass
// Queue executable transactions, the life cycle should be restarted.
if err := pool.addLocal(pricedTransaction(2, 100000, big.NewInt(1), local)); err != nil {
t.Fatalf("failed to add remote transaction: %v", err)
}
if err := pool.addRemoteSync(pricedTransaction(2, 100000, big.NewInt(1), remote)); err != nil {
t.Fatalf("failed to add remote transaction: %v", err)
}
time.Sleep(6 * evictionInterval)
// All gapped transactions shouldn't be kicked out
pending, queued = pool.Stats()
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
if queued != 2 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 2)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// The whole life time pass after last promotion, kick out stale transactions
time.Sleep(2 * config.Lifetime)
pending, queued = pool.Stats()
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
if nolocals {
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
} else {
if queued != 1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 1)
}
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that even if the transaction count belonging to a single account goes
// above some threshold, as long as the transactions are executable, they are
// accepted.
func TestPendingLimiting(t *testing.T) {
t.Parallel()
// Create a test account and fund it
pool, key := setupPool()
defer pool.Close()
account := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, account, big.NewInt(1000000000000))
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, testTxPoolConfig.AccountQueue+5)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Keep queuing up transactions and make sure all above a limit are dropped
for i := uint64(0); i < testTxPoolConfig.AccountQueue+5; i++ {
if err := pool.addRemoteSync(transaction(i, 100000, key)); err != nil {
t.Fatalf("tx %d: failed to add transaction: %v", i, err)
}
if pool.pending[account].Len() != int(i)+1 {
t.Errorf("tx %d: pending pool size mismatch: have %d, want %d", i, pool.pending[account].Len(), i+1)
}
if len(pool.queue) != 0 {
t.Errorf("tx %d: queue size mismatch: have %d, want %d", i, pool.queue[account].Len(), 0)
}
}
if pool.all.Count() != int(testTxPoolConfig.AccountQueue+5) {
t.Errorf("total transaction mismatch: have %d, want %d", pool.all.Count(), testTxPoolConfig.AccountQueue+5)
}
if err := validateEvents(events, int(testTxPoolConfig.AccountQueue+5)); err != nil {
t.Fatalf("event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that if the transaction count belonging to multiple accounts go above
// some hard threshold, the higher transactions are dropped to prevent DOS
// attacks.
func TestPendingGlobalLimiting(t *testing.T) {
t.Parallel()
// Create the pool to test the limit enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
config := testTxPoolConfig
config.GlobalSlots = config.AccountSlots * 10
pool := New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create a number of test accounts and fund them
keys := make([]*ecdsa.PrivateKey, 5)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
// Generate and queue a batch of transactions
nonces := make(map[common.Address]uint64)
txs := types.Transactions{}
for _, key := range keys {
addr := crypto.PubkeyToAddress(key.PublicKey)
for j := 0; j < int(config.GlobalSlots)/len(keys)*2; j++ {
txs = append(txs, transaction(nonces[addr], 100000, key))
nonces[addr]++
}
}
// Import the batch and verify that limits have been enforced
pool.addRemotesSync(txs)
pending := 0
for _, list := range pool.pending {
pending += list.Len()
}
if pending > int(config.GlobalSlots) {
t.Fatalf("total pending transactions overflow allowance: %d > %d", pending, config.GlobalSlots)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Test the limit on transaction size is enforced correctly.
// This test verifies every transaction having allowed size
// is added to the pool, and longer transactions are rejected.
func TestAllowedTxSize(t *testing.T) {
t.Parallel()
// Create a test account and fund it
pool, key := setupPool()
defer pool.Close()
account := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, account, big.NewInt(1000000000))
// Compute maximal data size for transactions (lower bound).
//
// It is assumed the fields in the transaction (except of the data) are:
// - nonce <= 32 bytes
// - gasTip <= 32 bytes
// - gasLimit <= 32 bytes
// - recipient == 20 bytes
// - value <= 32 bytes
// - signature == 65 bytes
// All those fields are summed up to at most 213 bytes.
baseSize := uint64(213)
dataSize := txMaxSize - baseSize
// Try adding a transaction with maximal allowed size
tx := pricedDataTransaction(0, pool.currentHead.Load().GasLimit, big.NewInt(1), key, dataSize)
if err := pool.addRemoteSync(tx); err != nil {
t.Fatalf("failed to add transaction of size %d, close to maximal: %v", int(tx.Size()), err)
}
// Try adding a transaction with random allowed size
if err := pool.addRemoteSync(pricedDataTransaction(1, pool.currentHead.Load().GasLimit, big.NewInt(1), key, uint64(rand.Intn(int(dataSize))))); err != nil {
t.Fatalf("failed to add transaction of random allowed size: %v", err)
}
// Try adding a transaction of minimal not allowed size
if err := pool.addRemoteSync(pricedDataTransaction(2, pool.currentHead.Load().GasLimit, big.NewInt(1), key, txMaxSize)); err == nil {
t.Fatalf("expected rejection on slightly oversize transaction")
}
// Try adding a transaction of random not allowed size
if err := pool.addRemoteSync(pricedDataTransaction(2, pool.currentHead.Load().GasLimit, big.NewInt(1), key, dataSize+1+uint64(rand.Intn(10*txMaxSize)))); err == nil {
t.Fatalf("expected rejection on oversize transaction")
}
// Run some sanity checks on the pool internals
pending, queued := pool.Stats()
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that if transactions start being capped, transactions are also removed from 'all'
func TestCapClearsFromAll(t *testing.T) {
t.Parallel()
// Create the pool to test the limit enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
config := testTxPoolConfig
config.AccountSlots = 2
config.AccountQueue = 2
config.GlobalSlots = 8
pool := New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create a number of test accounts and fund them
key, _ := crypto.GenerateKey()
addr := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, addr, big.NewInt(1000000))
txs := types.Transactions{}
for j := 0; j < int(config.GlobalSlots)*2; j++ {
txs = append(txs, transaction(uint64(j), 100000, key))
}
// Import the batch and verify that limits have been enforced
pool.addRemotes(txs)
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that if the transaction count belonging to multiple accounts go above
// some hard threshold, if they are under the minimum guaranteed slot count then
// the transactions are still kept.
func TestPendingMinimumAllowance(t *testing.T) {
t.Parallel()
// Create the pool to test the limit enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
config := testTxPoolConfig
config.GlobalSlots = 1
pool := New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create a number of test accounts and fund them
keys := make([]*ecdsa.PrivateKey, 5)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
// Generate and queue a batch of transactions
nonces := make(map[common.Address]uint64)
txs := types.Transactions{}
for _, key := range keys {
addr := crypto.PubkeyToAddress(key.PublicKey)
for j := 0; j < int(config.AccountSlots)*2; j++ {
txs = append(txs, transaction(nonces[addr], 100000, key))
nonces[addr]++
}
}
// Import the batch and verify that limits have been enforced
pool.addRemotesSync(txs)
for addr, list := range pool.pending {
if list.Len() != int(config.AccountSlots) {
t.Errorf("addr %x: total pending transactions mismatch: have %d, want %d", addr, list.Len(), config.AccountSlots)
}
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that setting the transaction pool gas price to a higher value correctly
// discards everything cheaper than that and moves any gapped transactions back
// from the pending pool to the queue.
//
// Note, local transactions are never allowed to be dropped.
func TestRepricing(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
pool := New(testTxPoolConfig, blockchain)
pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, 32)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Create a number of test accounts and fund them
keys := make([]*ecdsa.PrivateKey, 4)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
// Generate and queue a batch of transactions, both pending and queued
txs := types.Transactions{}
txs = append(txs, pricedTransaction(0, 100000, big.NewInt(2), keys[0]))
txs = append(txs, pricedTransaction(1, 100000, big.NewInt(1), keys[0]))
txs = append(txs, pricedTransaction(2, 100000, big.NewInt(2), keys[0]))
txs = append(txs, pricedTransaction(0, 100000, big.NewInt(1), keys[1]))
txs = append(txs, pricedTransaction(1, 100000, big.NewInt(2), keys[1]))
txs = append(txs, pricedTransaction(2, 100000, big.NewInt(2), keys[1]))
txs = append(txs, pricedTransaction(1, 100000, big.NewInt(2), keys[2]))
txs = append(txs, pricedTransaction(2, 100000, big.NewInt(1), keys[2]))
txs = append(txs, pricedTransaction(3, 100000, big.NewInt(2), keys[2]))
ltx := pricedTransaction(0, 100000, big.NewInt(1), keys[3])
// Import the batch and that both pending and queued transactions match up
pool.addRemotesSync(txs)
pool.addLocal(ltx)
pending, queued := pool.Stats()
if pending != 7 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 7)
}
if queued != 3 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 3)
}
if err := validateEvents(events, 7); err != nil {
t.Fatalf("original event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Reprice the pool and check that underpriced transactions get dropped
pool.SetGasTip(big.NewInt(2))
pending, queued = pool.Stats()
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
if queued != 5 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 5)
}
if err := validateEvents(events, 0); err != nil {
t.Fatalf("reprice event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Check that we can't add the old transactions back
if err := pool.addRemote(pricedTransaction(1, 100000, big.NewInt(1), keys[0])); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("adding underpriced pending transaction error mismatch: have %v, want %v", err, txpool.ErrUnderpriced)
}
if err := pool.addRemote(pricedTransaction(0, 100000, big.NewInt(1), keys[1])); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("adding underpriced pending transaction error mismatch: have %v, want %v", err, txpool.ErrUnderpriced)
}
if err := pool.addRemote(pricedTransaction(2, 100000, big.NewInt(1), keys[2])); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("adding underpriced queued transaction error mismatch: have %v, want %v", err, txpool.ErrUnderpriced)
}
if err := validateEvents(events, 0); err != nil {
t.Fatalf("post-reprice event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// However we can add local underpriced transactions
tx := pricedTransaction(1, 100000, big.NewInt(1), keys[3])
if err := pool.addLocal(tx); err != nil {
t.Fatalf("failed to add underpriced local transaction: %v", err)
}
if pending, _ = pool.Stats(); pending != 3 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 3)
}
if err := validateEvents(events, 1); err != nil {
t.Fatalf("post-reprice local event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// And we can fill gaps with properly priced transactions
if err := pool.addRemote(pricedTransaction(1, 100000, big.NewInt(2), keys[0])); err != nil {
t.Fatalf("failed to add pending transaction: %v", err)
}
if err := pool.addRemote(pricedTransaction(0, 100000, big.NewInt(2), keys[1])); err != nil {
t.Fatalf("failed to add pending transaction: %v", err)
}
if err := pool.addRemoteSync(pricedTransaction(2, 100000, big.NewInt(2), keys[2])); err != nil {
t.Fatalf("failed to add queued transaction: %v", err)
}
if err := validateEvents(events, 5); err != nil {
t.Fatalf("post-reprice event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
func TestMinGasPriceEnforced(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(eip1559Config, 10000000, statedb, new(event.Feed))
txPoolConfig := DefaultConfig
txPoolConfig.NoLocals = true
pool := New(txPoolConfig, blockchain)
pool.Init(txPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
key, _ := crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(key.PublicKey), big.NewInt(1000000))
tx := pricedTransaction(0, 100000, big.NewInt(2), key)
pool.SetGasTip(big.NewInt(tx.GasPrice().Int64() + 1))
if err := pool.addLocal(tx); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("Min tip not enforced")
}
if err := pool.Add([]*types.Transaction{tx}, true, false)[0]; !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("Min tip not enforced")
}
tx = dynamicFeeTx(0, 100000, big.NewInt(3), big.NewInt(2), key)
pool.SetGasTip(big.NewInt(tx.GasTipCap().Int64() + 1))
if err := pool.addLocal(tx); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("Min tip not enforced")
}
if err := pool.Add([]*types.Transaction{tx}, true, false)[0]; !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("Min tip not enforced")
}
// Make sure the tx is accepted if locals are enabled
pool.config.NoLocals = false
if err := pool.Add([]*types.Transaction{tx}, true, false)[0]; err != nil {
t.Fatalf("Min tip enforced with locals enabled, error: %v", err)
}
}
// Tests that setting the transaction pool gas price to a higher value correctly
// discards everything cheaper (legacy & dynamic fee) than that and moves any
// gapped transactions back from the pending pool to the queue.
//
// Note, local transactions are never allowed to be dropped.
func TestRepricingDynamicFee(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
pool, _ := setupPoolWithConfig(eip1559Config)
defer pool.Close()
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, 32)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Create a number of test accounts and fund them
keys := make([]*ecdsa.PrivateKey, 4)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
// Generate and queue a batch of transactions, both pending and queued
txs := types.Transactions{}
txs = append(txs, pricedTransaction(0, 100000, big.NewInt(2), keys[0]))
txs = append(txs, pricedTransaction(1, 100000, big.NewInt(1), keys[0]))
txs = append(txs, pricedTransaction(2, 100000, big.NewInt(2), keys[0]))
txs = append(txs, dynamicFeeTx(0, 100000, big.NewInt(2), big.NewInt(1), keys[1]))
txs = append(txs, dynamicFeeTx(1, 100000, big.NewInt(3), big.NewInt(2), keys[1]))
txs = append(txs, dynamicFeeTx(2, 100000, big.NewInt(3), big.NewInt(2), keys[1]))
txs = append(txs, dynamicFeeTx(1, 100000, big.NewInt(2), big.NewInt(2), keys[2]))
txs = append(txs, dynamicFeeTx(2, 100000, big.NewInt(1), big.NewInt(1), keys[2]))
txs = append(txs, dynamicFeeTx(3, 100000, big.NewInt(2), big.NewInt(2), keys[2]))
ltx := dynamicFeeTx(0, 100000, big.NewInt(2), big.NewInt(1), keys[3])
// Import the batch and that both pending and queued transactions match up
pool.addRemotesSync(txs)
pool.addLocal(ltx)
pending, queued := pool.Stats()
if pending != 7 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 7)
}
if queued != 3 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 3)
}
if err := validateEvents(events, 7); err != nil {
t.Fatalf("original event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Reprice the pool and check that underpriced transactions get dropped
pool.SetGasTip(big.NewInt(2))
pending, queued = pool.Stats()
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
if queued != 5 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 5)
}
if err := validateEvents(events, 0); err != nil {
t.Fatalf("reprice event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Check that we can't add the old transactions back
tx := pricedTransaction(1, 100000, big.NewInt(1), keys[0])
if err := pool.addRemote(tx); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("adding underpriced pending transaction error mismatch: have %v, want %v", err, txpool.ErrUnderpriced)
}
tx = dynamicFeeTx(0, 100000, big.NewInt(2), big.NewInt(1), keys[1])
if err := pool.addRemote(tx); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("adding underpriced pending transaction error mismatch: have %v, want %v", err, txpool.ErrUnderpriced)
}
tx = dynamicFeeTx(2, 100000, big.NewInt(1), big.NewInt(1), keys[2])
if err := pool.addRemote(tx); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("adding underpriced queued transaction error mismatch: have %v, want %v", err, txpool.ErrUnderpriced)
}
if err := validateEvents(events, 0); err != nil {
t.Fatalf("post-reprice event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// However we can add local underpriced transactions
tx = dynamicFeeTx(1, 100000, big.NewInt(1), big.NewInt(1), keys[3])
if err := pool.addLocal(tx); err != nil {
t.Fatalf("failed to add underpriced local transaction: %v", err)
}
if pending, _ = pool.Stats(); pending != 3 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 3)
}
if err := validateEvents(events, 1); err != nil {
t.Fatalf("post-reprice local event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// And we can fill gaps with properly priced transactions
tx = pricedTransaction(1, 100000, big.NewInt(2), keys[0])
if err := pool.addRemote(tx); err != nil {
t.Fatalf("failed to add pending transaction: %v", err)
}
tx = dynamicFeeTx(0, 100000, big.NewInt(3), big.NewInt(2), keys[1])
if err := pool.addRemote(tx); err != nil {
t.Fatalf("failed to add pending transaction: %v", err)
}
tx = dynamicFeeTx(2, 100000, big.NewInt(2), big.NewInt(2), keys[2])
if err := pool.addRemoteSync(tx); err != nil {
t.Fatalf("failed to add queued transaction: %v", err)
}
if err := validateEvents(events, 5); err != nil {
t.Fatalf("post-reprice event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that setting the transaction pool gas price to a higher value does not
// remove local transactions (legacy & dynamic fee).
func TestRepricingKeepsLocals(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(eip1559Config, 1000000, statedb, new(event.Feed))
pool := New(testTxPoolConfig, blockchain)
pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create a number of test accounts and fund them
keys := make([]*ecdsa.PrivateKey, 3)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(100000*1000000))
}
// Create transaction (both pending and queued) with a linearly growing gasprice
for i := uint64(0); i < 500; i++ {
// Add pending transaction.
pendingTx := pricedTransaction(i, 100000, big.NewInt(int64(i)), keys[2])
if err := pool.addLocal(pendingTx); err != nil {
t.Fatal(err)
}
// Add queued transaction.
queuedTx := pricedTransaction(i+501, 100000, big.NewInt(int64(i)), keys[2])
if err := pool.addLocal(queuedTx); err != nil {
t.Fatal(err)
}
// Add pending dynamic fee transaction.
pendingTx = dynamicFeeTx(i, 100000, big.NewInt(int64(i)+1), big.NewInt(int64(i)), keys[1])
if err := pool.addLocal(pendingTx); err != nil {
t.Fatal(err)
}
// Add queued dynamic fee transaction.
queuedTx = dynamicFeeTx(i+501, 100000, big.NewInt(int64(i)+1), big.NewInt(int64(i)), keys[1])
if err := pool.addLocal(queuedTx); err != nil {
t.Fatal(err)
}
}
pending, queued := pool.Stats()
expPending, expQueued := 1000, 1000
validate := func() {
pending, queued = pool.Stats()
if pending != expPending {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, expPending)
}
if queued != expQueued {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, expQueued)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
validate()
// Reprice the pool and check that nothing is dropped
pool.SetGasTip(big.NewInt(2))
validate()
pool.SetGasTip(big.NewInt(2))
pool.SetGasTip(big.NewInt(4))
pool.SetGasTip(big.NewInt(8))
pool.SetGasTip(big.NewInt(100))
validate()
}
// Tests that when the pool reaches its global transaction limit, underpriced
// transactions are gradually shifted out for more expensive ones and any gapped
// pending transactions are moved into the queue.
//
// Note, local transactions are never allowed to be dropped.
func TestUnderpricing(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
config := testTxPoolConfig
config.GlobalSlots = 2
config.GlobalQueue = 2
pool := New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, 32)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Create a number of test accounts and fund them
keys := make([]*ecdsa.PrivateKey, 5)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
// Generate and queue a batch of transactions, both pending and queued
txs := types.Transactions{}
txs = append(txs, pricedTransaction(0, 100000, big.NewInt(1), keys[0]))
txs = append(txs, pricedTransaction(1, 100000, big.NewInt(2), keys[0]))
txs = append(txs, pricedTransaction(1, 100000, big.NewInt(1), keys[1]))
ltx := pricedTransaction(0, 100000, big.NewInt(1), keys[2])
// Import the batch and that both pending and queued transactions match up
pool.addRemotes(txs)
pool.addLocal(ltx)
pending, queued := pool.Stats()
if pending != 3 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 3)
}
if queued != 1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 1)
}
if err := validateEvents(events, 3); err != nil {
t.Fatalf("original event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Ensure that adding an underpriced transaction on block limit fails
if err := pool.addRemoteSync(pricedTransaction(0, 100000, big.NewInt(1), keys[1])); !errors.Is(err, txpool.ErrUnderpriced) {
t.Fatalf("adding underpriced pending transaction error mismatch: have %v, want %v", err, txpool.ErrUnderpriced)
}
// Replace a future transaction with a future transaction
if err := pool.addRemoteSync(pricedTransaction(1, 100000, big.NewInt(2), keys[1])); err != nil { // +K1:1 => -K1:1 => Pend K0:0, K0:1, K2:0; Que K1:1
t.Fatalf("failed to add well priced transaction: %v", err)
}
// Ensure that adding high priced transactions drops cheap ones, but not own
if err := pool.addRemoteSync(pricedTransaction(0, 100000, big.NewInt(3), keys[1])); err != nil { // +K1:0 => -K1:1 => Pend K0:0, K0:1, K1:0, K2:0; Que -
t.Fatalf("failed to add well priced transaction: %v", err)
}
if err := pool.addRemoteSync(pricedTransaction(2, 100000, big.NewInt(4), keys[1])); err != nil { // +K1:2 => -K0:0 => Pend K1:0, K2:0; Que K0:1 K1:2
t.Fatalf("failed to add well priced transaction: %v", err)
}
if err := pool.addRemote(pricedTransaction(3, 100000, big.NewInt(5), keys[1])); err != nil { // +K1:3 => -K0:1 => Pend K1:0, K2:0; Que K1:2 K1:3
t.Fatalf("failed to add well priced transaction: %v", err)
}
// Ensure that replacing a pending transaction with a future transaction fails
if err := pool.addRemote(pricedTransaction(5, 100000, big.NewInt(6), keys[1])); err != txpool.ErrFutureReplacePending {
t.Fatalf("adding future replace transaction error mismatch: have %v, want %v", err, txpool.ErrFutureReplacePending)
}
pending, queued = pool.Stats()
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
if queued != 2 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 2)
}
if err := validateEvents(events, 2); err != nil {
t.Fatalf("additional event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Ensure that adding local transactions can push out even higher priced ones
ltx = pricedTransaction(1, 100000, big.NewInt(0), keys[2])
if err := pool.addLocal(ltx); err != nil {
t.Fatalf("failed to append underpriced local transaction: %v", err)
}
ltx = pricedTransaction(0, 100000, big.NewInt(0), keys[3])
if err := pool.addLocal(ltx); err != nil {
t.Fatalf("failed to add new underpriced local transaction: %v", err)
}
pending, queued = pool.Stats()
if pending != 3 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 3)
}
if queued != 1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 1)
}
if err := validateEvents(events, 2); err != nil {
t.Fatalf("local event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that more expensive transactions push out cheap ones from the pool, but
// without producing instability by creating gaps that start jumping transactions
// back and forth between queued/pending.
func TestStableUnderpricing(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
config := testTxPoolConfig
config.GlobalSlots = 128
config.GlobalQueue = 0
pool := New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, 32)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Create a number of test accounts and fund them
keys := make([]*ecdsa.PrivateKey, 2)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
// Fill up the entire queue with the same transaction price points
txs := types.Transactions{}
for i := uint64(0); i < config.GlobalSlots; i++ {
txs = append(txs, pricedTransaction(i, 100000, big.NewInt(1), keys[0]))
}
pool.addRemotesSync(txs)
pending, queued := pool.Stats()
if pending != int(config.GlobalSlots) {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, config.GlobalSlots)
}
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
if err := validateEvents(events, int(config.GlobalSlots)); err != nil {
t.Fatalf("original event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Ensure that adding high priced transactions drops a cheap, but doesn't produce a gap
if err := pool.addRemoteSync(pricedTransaction(0, 100000, big.NewInt(3), keys[1])); err != nil {
t.Fatalf("failed to add well priced transaction: %v", err)
}
pending, queued = pool.Stats()
if pending != int(config.GlobalSlots) {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, config.GlobalSlots)
}
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
if err := validateEvents(events, 1); err != nil {
t.Fatalf("additional event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that when the pool reaches its global transaction limit, underpriced
// transactions (legacy & dynamic fee) are gradually shifted out for more
// expensive ones and any gapped pending transactions are moved into the queue.
//
// Note, local transactions are never allowed to be dropped.
func TestUnderpricingDynamicFee(t *testing.T) {
t.Parallel()
pool, _ := setupPoolWithConfig(eip1559Config)
defer pool.Close()
pool.config.GlobalSlots = 2
pool.config.GlobalQueue = 2
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, 32)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Create a number of test accounts and fund them
keys := make([]*ecdsa.PrivateKey, 4)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
// Generate and queue a batch of transactions, both pending and queued
txs := types.Transactions{}
txs = append(txs, dynamicFeeTx(0, 100000, big.NewInt(3), big.NewInt(2), keys[0]))
txs = append(txs, pricedTransaction(1, 100000, big.NewInt(2), keys[0]))
txs = append(txs, dynamicFeeTx(1, 100000, big.NewInt(2), big.NewInt(1), keys[1]))
ltx := dynamicFeeTx(0, 100000, big.NewInt(2), big.NewInt(1), keys[2])
// Import the batch and that both pending and queued transactions match up
pool.addRemotes(txs) // Pend K0:0, K0:1; Que K1:1
pool.addLocal(ltx) // +K2:0 => Pend K0:0, K0:1, K2:0; Que K1:1
pending, queued := pool.Stats()
if pending != 3 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 3)
}
if queued != 1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 1)
}
if err := validateEvents(events, 3); err != nil {
t.Fatalf("original event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Ensure that adding an underpriced transaction fails
tx := dynamicFeeTx(0, 100000, big.NewInt(2), big.NewInt(1), keys[1])
if err := pool.addRemote(tx); !errors.Is(err, txpool.ErrUnderpriced) { // Pend K0:0, K0:1, K2:0; Que K1:1
t.Fatalf("adding underpriced pending transaction error mismatch: have %v, want %v", err, txpool.ErrUnderpriced)
}
// Ensure that adding high priced transactions drops cheap ones, but not own
tx = pricedTransaction(0, 100000, big.NewInt(2), keys[1])
if err := pool.addRemote(tx); err != nil { // +K1:0, -K1:1 => Pend K0:0, K0:1, K1:0, K2:0; Que -
t.Fatalf("failed to add well priced transaction: %v", err)
}
tx = pricedTransaction(1, 100000, big.NewInt(3), keys[1])
if err := pool.addRemoteSync(tx); err != nil { // +K1:2, -K0:1 => Pend K0:0 K1:0, K2:0; Que K1:2
t.Fatalf("failed to add well priced transaction: %v", err)
}
tx = dynamicFeeTx(2, 100000, big.NewInt(4), big.NewInt(1), keys[1])
if err := pool.addRemoteSync(tx); err != nil { // +K1:3, -K1:0 => Pend K0:0 K2:0; Que K1:2 K1:3
t.Fatalf("failed to add well priced transaction: %v", err)
}
pending, queued = pool.Stats()
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
if queued != 2 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 2)
}
if err := validateEvents(events, 2); err != nil {
t.Fatalf("additional event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Ensure that adding local transactions can push out even higher priced ones
ltx = dynamicFeeTx(1, 100000, big.NewInt(0), big.NewInt(0), keys[2])
if err := pool.addLocal(ltx); err != nil {
t.Fatalf("failed to append underpriced local transaction: %v", err)
}
ltx = dynamicFeeTx(0, 100000, big.NewInt(0), big.NewInt(0), keys[3])
if err := pool.addLocal(ltx); err != nil {
t.Fatalf("failed to add new underpriced local transaction: %v", err)
}
pending, queued = pool.Stats()
if pending != 3 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 3)
}
if queued != 1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 1)
}
if err := validateEvents(events, 2); err != nil {
t.Fatalf("local event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests whether highest fee cap transaction is retained after a batch of high effective
// tip transactions are added and vice versa
func TestDualHeapEviction(t *testing.T) {
t.Parallel()
pool, _ := setupPoolWithConfig(eip1559Config)
defer pool.Close()
pool.config.GlobalSlots = 10
pool.config.GlobalQueue = 10
var (
highTip, highCap *types.Transaction
baseFee int
)
check := func(tx *types.Transaction, name string) {
if pool.all.GetRemote(tx.Hash()) == nil {
t.Fatalf("highest %s transaction evicted from the pool", name)
}
}
add := func(urgent bool) {
for i := 0; i < 20; i++ {
var tx *types.Transaction
// Create a test accounts and fund it
key, _ := crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(key.PublicKey), big.NewInt(1000000000000))
if urgent {
tx = dynamicFeeTx(0, 100000, big.NewInt(int64(baseFee+1+i)), big.NewInt(int64(1+i)), key)
highTip = tx
} else {
tx = dynamicFeeTx(0, 100000, big.NewInt(int64(baseFee+200+i)), big.NewInt(1), key)
highCap = tx
}
pool.addRemotesSync([]*types.Transaction{tx})
}
pending, queued := pool.Stats()
if pending+queued != 20 {
t.Fatalf("transaction count mismatch: have %d, want %d", pending+queued, 10)
}
}
add(false)
for baseFee = 0; baseFee <= 1000; baseFee += 100 {
pool.priced.SetBaseFee(big.NewInt(int64(baseFee)))
add(true)
check(highCap, "fee cap")
add(false)
check(highTip, "effective tip")
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that the pool rejects duplicate transactions.
func TestDeduplication(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
pool := New(testTxPoolConfig, blockchain)
pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create a test account to add transactions with
key, _ := crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(key.PublicKey), big.NewInt(1000000000))
// Create a batch of transactions and add a few of them
txs := make([]*types.Transaction, 16)
for i := 0; i < len(txs); i++ {
txs[i] = pricedTransaction(uint64(i), 100000, big.NewInt(1), key)
}
var firsts []*types.Transaction
for i := 0; i < len(txs); i += 2 {
firsts = append(firsts, txs[i])
}
errs := pool.addRemotesSync(firsts)
if len(errs) != len(firsts) {
t.Fatalf("first add mismatching result count: have %d, want %d", len(errs), len(firsts))
}
for i, err := range errs {
if err != nil {
t.Errorf("add %d failed: %v", i, err)
}
}
pending, queued := pool.Stats()
if pending != 1 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 1)
}
if queued != len(txs)/2-1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, len(txs)/2-1)
}
// Try to add all of them now and ensure previous ones error out as knowns
errs = pool.addRemotesSync(txs)
if len(errs) != len(txs) {
t.Fatalf("all add mismatching result count: have %d, want %d", len(errs), len(txs))
}
for i, err := range errs {
if i%2 == 0 && err == nil {
t.Errorf("add %d succeeded, should have failed as known", i)
}
if i%2 == 1 && err != nil {
t.Errorf("add %d failed: %v", i, err)
}
}
pending, queued = pool.Stats()
if pending != len(txs) {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, len(txs))
}
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that the pool rejects replacement transactions that don't meet the minimum
// price bump required.
func TestReplacement(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
pool := New(testTxPoolConfig, blockchain)
pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, 32)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Create a test account to add transactions with
key, _ := crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(key.PublicKey), big.NewInt(1000000000))
// Add pending transactions, ensuring the minimum price bump is enforced for replacement (for ultra low prices too)
price := int64(100)
threshold := (price * (100 + int64(testTxPoolConfig.PriceBump))) / 100
if err := pool.addRemoteSync(pricedTransaction(0, 100000, big.NewInt(1), key)); err != nil {
t.Fatalf("failed to add original cheap pending transaction: %v", err)
}
if err := pool.addRemote(pricedTransaction(0, 100001, big.NewInt(1), key)); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original cheap pending transaction replacement error mismatch: have %v, want %v", err, txpool.ErrReplaceUnderpriced)
}
if err := pool.addRemote(pricedTransaction(0, 100000, big.NewInt(2), key)); err != nil {
t.Fatalf("failed to replace original cheap pending transaction: %v", err)
}
if err := validateEvents(events, 2); err != nil {
t.Fatalf("cheap replacement event firing failed: %v", err)
}
if err := pool.addRemoteSync(pricedTransaction(0, 100000, big.NewInt(price), key)); err != nil {
t.Fatalf("failed to add original proper pending transaction: %v", err)
}
if err := pool.addRemote(pricedTransaction(0, 100001, big.NewInt(threshold-1), key)); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original proper pending transaction replacement error mismatch: have %v, want %v", err, txpool.ErrReplaceUnderpriced)
}
if err := pool.addRemote(pricedTransaction(0, 100000, big.NewInt(threshold), key)); err != nil {
t.Fatalf("failed to replace original proper pending transaction: %v", err)
}
if err := validateEvents(events, 2); err != nil {
t.Fatalf("proper replacement event firing failed: %v", err)
}
// Add queued transactions, ensuring the minimum price bump is enforced for replacement (for ultra low prices too)
if err := pool.addRemote(pricedTransaction(2, 100000, big.NewInt(1), key)); err != nil {
t.Fatalf("failed to add original cheap queued transaction: %v", err)
}
if err := pool.addRemote(pricedTransaction(2, 100001, big.NewInt(1), key)); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original cheap queued transaction replacement error mismatch: have %v, want %v", err, txpool.ErrReplaceUnderpriced)
}
if err := pool.addRemote(pricedTransaction(2, 100000, big.NewInt(2), key)); err != nil {
t.Fatalf("failed to replace original cheap queued transaction: %v", err)
}
if err := pool.addRemote(pricedTransaction(2, 100000, big.NewInt(price), key)); err != nil {
t.Fatalf("failed to add original proper queued transaction: %v", err)
}
if err := pool.addRemote(pricedTransaction(2, 100001, big.NewInt(threshold-1), key)); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original proper queued transaction replacement error mismatch: have %v, want %v", err, txpool.ErrReplaceUnderpriced)
}
if err := pool.addRemote(pricedTransaction(2, 100000, big.NewInt(threshold), key)); err != nil {
t.Fatalf("failed to replace original proper queued transaction: %v", err)
}
if err := validateEvents(events, 0); err != nil {
t.Fatalf("queued replacement event firing failed: %v", err)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that the pool rejects replacement dynamic fee transactions that don't
// meet the minimum price bump required.
func TestReplacementDynamicFee(t *testing.T) {
t.Parallel()
// Create the pool to test the pricing enforcement with
pool, key := setupPoolWithConfig(eip1559Config)
defer pool.Close()
testAddBalance(pool, crypto.PubkeyToAddress(key.PublicKey), big.NewInt(1000000000))
// Keep track of transaction events to ensure all executables get announced
events := make(chan core.NewTxsEvent, 32)
sub := pool.txFeed.Subscribe(events)
defer sub.Unsubscribe()
// Add pending transactions, ensuring the minimum price bump is enforced for replacement (for ultra low prices too)
gasFeeCap := int64(100)
feeCapThreshold := (gasFeeCap * (100 + int64(testTxPoolConfig.PriceBump))) / 100
gasTipCap := int64(60)
tipThreshold := (gasTipCap * (100 + int64(testTxPoolConfig.PriceBump))) / 100
// Run the following identical checks for both the pending and queue pools:
// 1. Send initial tx => accept
// 2. Don't bump tip or fee cap => discard
// 3. Bump both more than min => accept
// 4. Check events match expected (2 new executable txs during pending, 0 during queue)
// 5. Send new tx with larger tip and gasFeeCap => accept
// 6. Bump tip max allowed so it's still underpriced => discard
// 7. Bump fee cap max allowed so it's still underpriced => discard
// 8. Bump tip min for acceptance => discard
// 9. Bump feecap min for acceptance => discard
// 10. Bump feecap and tip min for acceptance => accept
// 11. Check events match expected (2 new executable txs during pending, 0 during queue)
stages := []string{"pending", "queued"}
for _, stage := range stages {
// Since state is empty, 0 nonce txs are "executable" and can go
// into pending immediately. 2 nonce txs are "gapped"
nonce := uint64(0)
if stage == "queued" {
nonce = 2
}
// 1. Send initial tx => accept
tx := dynamicFeeTx(nonce, 100000, big.NewInt(2), big.NewInt(1), key)
if err := pool.addRemoteSync(tx); err != nil {
t.Fatalf("failed to add original cheap %s transaction: %v", stage, err)
}
// 2. Don't bump tip or feecap => discard
tx = dynamicFeeTx(nonce, 100001, big.NewInt(2), big.NewInt(1), key)
if err := pool.addRemote(tx); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original cheap %s transaction replacement error mismatch: have %v, want %v", stage, err, txpool.ErrReplaceUnderpriced)
}
// 3. Bump both more than min => accept
tx = dynamicFeeTx(nonce, 100000, big.NewInt(3), big.NewInt(2), key)
if err := pool.addRemote(tx); err != nil {
t.Fatalf("failed to replace original cheap %s transaction: %v", stage, err)
}
// 4. Check events match expected (2 new executable txs during pending, 0 during queue)
count := 2
if stage == "queued" {
count = 0
}
if err := validateEvents(events, count); err != nil {
t.Fatalf("cheap %s replacement event firing failed: %v", stage, err)
}
// 5. Send new tx with larger tip and feeCap => accept
tx = dynamicFeeTx(nonce, 100000, big.NewInt(gasFeeCap), big.NewInt(gasTipCap), key)
if err := pool.addRemoteSync(tx); err != nil {
t.Fatalf("failed to add original proper %s transaction: %v", stage, err)
}
// 6. Bump tip max allowed so it's still underpriced => discard
tx = dynamicFeeTx(nonce, 100000, big.NewInt(gasFeeCap), big.NewInt(tipThreshold-1), key)
if err := pool.addRemote(tx); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original proper %s transaction replacement error mismatch: have %v, want %v", stage, err, txpool.ErrReplaceUnderpriced)
}
// 7. Bump fee cap max allowed so it's still underpriced => discard
tx = dynamicFeeTx(nonce, 100000, big.NewInt(feeCapThreshold-1), big.NewInt(gasTipCap), key)
if err := pool.addRemote(tx); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original proper %s transaction replacement error mismatch: have %v, want %v", stage, err, txpool.ErrReplaceUnderpriced)
}
// 8. Bump tip min for acceptance => accept
tx = dynamicFeeTx(nonce, 100000, big.NewInt(gasFeeCap), big.NewInt(tipThreshold), key)
if err := pool.addRemote(tx); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original proper %s transaction replacement error mismatch: have %v, want %v", stage, err, txpool.ErrReplaceUnderpriced)
}
// 9. Bump fee cap min for acceptance => accept
tx = dynamicFeeTx(nonce, 100000, big.NewInt(feeCapThreshold), big.NewInt(gasTipCap), key)
if err := pool.addRemote(tx); err != txpool.ErrReplaceUnderpriced {
t.Fatalf("original proper %s transaction replacement error mismatch: have %v, want %v", stage, err, txpool.ErrReplaceUnderpriced)
}
// 10. Check events match expected (3 new executable txs during pending, 0 during queue)
tx = dynamicFeeTx(nonce, 100000, big.NewInt(feeCapThreshold), big.NewInt(tipThreshold), key)
if err := pool.addRemote(tx); err != nil {
t.Fatalf("failed to replace original cheap %s transaction: %v", stage, err)
}
// 11. Check events match expected (3 new executable txs during pending, 0 during queue)
count = 2
if stage == "queued" {
count = 0
}
if err := validateEvents(events, count); err != nil {
t.Fatalf("replacement %s event firing failed: %v", stage, err)
}
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
}
// Tests that local transactions are journaled to disk, but remote transactions
// get discarded between restarts.
func TestJournaling(t *testing.T) { testJournaling(t, false) }
func TestJournalingNoLocals(t *testing.T) { testJournaling(t, true) }
func testJournaling(t *testing.T, nolocals bool) {
t.Parallel()
// Create a temporary file for the journal
file, err := os.CreateTemp("", "")
if err != nil {
t.Fatalf("failed to create temporary journal: %v", err)
}
journal := file.Name()
defer os.Remove(journal)
// Clean up the temporary file, we only need the path for now
file.Close()
os.Remove(journal)
// Create the original pool to inject transaction into the journal
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
config := testTxPoolConfig
config.NoLocals = nolocals
config.Journal = journal
config.Rejournal = time.Second
pool := New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
// Create two test accounts to ensure remotes expire but locals do not
local, _ := crypto.GenerateKey()
remote, _ := crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(local.PublicKey), big.NewInt(1000000000))
testAddBalance(pool, crypto.PubkeyToAddress(remote.PublicKey), big.NewInt(1000000000))
// Add three local and a remote transactions and ensure they are queued up
if err := pool.addLocal(pricedTransaction(0, 100000, big.NewInt(1), local)); err != nil {
t.Fatalf("failed to add local transaction: %v", err)
}
if err := pool.addLocal(pricedTransaction(1, 100000, big.NewInt(1), local)); err != nil {
t.Fatalf("failed to add local transaction: %v", err)
}
if err := pool.addLocal(pricedTransaction(2, 100000, big.NewInt(1), local)); err != nil {
t.Fatalf("failed to add local transaction: %v", err)
}
if err := pool.addRemoteSync(pricedTransaction(0, 100000, big.NewInt(1), remote)); err != nil {
t.Fatalf("failed to add remote transaction: %v", err)
}
pending, queued := pool.Stats()
if pending != 4 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 4)
}
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Terminate the old pool, bump the local nonce, create a new pool and ensure relevant transaction survive
pool.Close()
statedb.SetNonce(crypto.PubkeyToAddress(local.PublicKey), 1)
blockchain = newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
pool = New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
pending, queued = pool.Stats()
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
if nolocals {
if pending != 0 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 0)
}
} else {
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Bump the nonce temporarily and ensure the newly invalidated transaction is removed
statedb.SetNonce(crypto.PubkeyToAddress(local.PublicKey), 2)
<-pool.requestReset(nil, nil)
time.Sleep(2 * config.Rejournal)
pool.Close()
statedb.SetNonce(crypto.PubkeyToAddress(local.PublicKey), 1)
blockchain = newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
pool = New(config, blockchain)
pool.Init(config.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
pending, queued = pool.Stats()
if pending != 0 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 0)
}
if nolocals {
if queued != 0 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 0)
}
} else {
if queued != 1 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 1)
}
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
pool.Close()
}
// TestStatusCheck tests that the pool can correctly retrieve the
// pending status of individual transactions.
func TestStatusCheck(t *testing.T) {
t.Parallel()
// Create the pool to test the status retrievals with
statedb, _ := state.New(types.EmptyRootHash, state.NewDatabaseForTesting())
blockchain := newTestBlockChain(params.TestChainConfig, 1000000, statedb, new(event.Feed))
pool := New(testTxPoolConfig, blockchain)
pool.Init(testTxPoolConfig.PriceLimit, blockchain.CurrentBlock(), makeAddressReserver())
defer pool.Close()
// Create the test accounts to check various transaction statuses with
keys := make([]*ecdsa.PrivateKey, 3)
for i := 0; i < len(keys); i++ {
keys[i], _ = crypto.GenerateKey()
testAddBalance(pool, crypto.PubkeyToAddress(keys[i].PublicKey), big.NewInt(1000000))
}
// Generate and queue a batch of transactions, both pending and queued
txs := types.Transactions{}
txs = append(txs, pricedTransaction(0, 100000, big.NewInt(1), keys[0])) // Pending only
txs = append(txs, pricedTransaction(0, 100000, big.NewInt(1), keys[1])) // Pending and queued
txs = append(txs, pricedTransaction(2, 100000, big.NewInt(1), keys[1]))
txs = append(txs, pricedTransaction(2, 100000, big.NewInt(1), keys[2])) // Queued only
// Import the transaction and ensure they are correctly added
pool.addRemotesSync(txs)
pending, queued := pool.Stats()
if pending != 2 {
t.Fatalf("pending transactions mismatched: have %d, want %d", pending, 2)
}
if queued != 2 {
t.Fatalf("queued transactions mismatched: have %d, want %d", queued, 2)
}
if err := validatePoolInternals(pool); err != nil {
t.Fatalf("pool internal state corrupted: %v", err)
}
// Retrieve the status of each transaction and validate them
hashes := make([]common.Hash, len(txs))
for i, tx := range txs {
hashes[i] = tx.Hash()
}
hashes = append(hashes, common.Hash{})
expect := []txpool.TxStatus{txpool.TxStatusPending, txpool.TxStatusPending, txpool.TxStatusQueued, txpool.TxStatusQueued, txpool.TxStatusUnknown}
for i := 0; i < len(hashes); i++ {
if status := pool.Status(hashes[i]); status != expect[i] {
t.Errorf("transaction %d: status mismatch: have %v, want %v", i, status, expect[i])
}
}
}
// Test the transaction slots consumption is computed correctly
func TestSlotCount(t *testing.T) {
t.Parallel()
key, _ := crypto.GenerateKey()
// Check that an empty transaction consumes a single slot
smallTx := pricedDataTransaction(0, 0, big.NewInt(0), key, 0)
if slots := numSlots(smallTx); slots != 1 {
t.Fatalf("small transactions slot count mismatch: have %d want %d", slots, 1)
}
// Check that a large transaction consumes the correct number of slots
bigTx := pricedDataTransaction(0, 0, big.NewInt(0), key, uint64(10*txSlotSize))
if slots := numSlots(bigTx); slots != 11 {
t.Fatalf("big transactions slot count mismatch: have %d want %d", slots, 11)
}
}
// Benchmarks the speed of validating the contents of the pending queue of the
// transaction pool.
func BenchmarkPendingDemotion100(b *testing.B) { benchmarkPendingDemotion(b, 100) }
func BenchmarkPendingDemotion1000(b *testing.B) { benchmarkPendingDemotion(b, 1000) }
func BenchmarkPendingDemotion10000(b *testing.B) { benchmarkPendingDemotion(b, 10000) }
func benchmarkPendingDemotion(b *testing.B, size int) {
// Add a batch of transactions to a pool one by one
pool, key := setupPool()
defer pool.Close()
account := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, account, big.NewInt(1000000))
for i := 0; i < size; i++ {
tx := transaction(uint64(i), 100000, key)
pool.promoteTx(account, tx.Hash(), tx)
}
// Benchmark the speed of pool validation
b.ResetTimer()
for i := 0; i < b.N; i++ {
pool.demoteUnexecutables()
}
}
// Benchmarks the speed of scheduling the contents of the future queue of the
// transaction pool.
func BenchmarkFuturePromotion100(b *testing.B) { benchmarkFuturePromotion(b, 100) }
func BenchmarkFuturePromotion1000(b *testing.B) { benchmarkFuturePromotion(b, 1000) }
func BenchmarkFuturePromotion10000(b *testing.B) { benchmarkFuturePromotion(b, 10000) }
func benchmarkFuturePromotion(b *testing.B, size int) {
// Add a batch of transactions to a pool one by one
pool, key := setupPool()
defer pool.Close()
account := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, account, big.NewInt(1000000))
for i := 0; i < size; i++ {
tx := transaction(uint64(1+i), 100000, key)
pool.enqueueTx(tx.Hash(), tx, false, true)
}
// Benchmark the speed of pool validation
b.ResetTimer()
for i := 0; i < b.N; i++ {
pool.promoteExecutables(nil)
}
}
// Benchmarks the speed of batched transaction insertion.
func BenchmarkBatchInsert100(b *testing.B) { benchmarkBatchInsert(b, 100, false) }
func BenchmarkBatchInsert1000(b *testing.B) { benchmarkBatchInsert(b, 1000, false) }
func BenchmarkBatchInsert10000(b *testing.B) { benchmarkBatchInsert(b, 10000, false) }
func BenchmarkBatchLocalInsert100(b *testing.B) { benchmarkBatchInsert(b, 100, true) }
func BenchmarkBatchLocalInsert1000(b *testing.B) { benchmarkBatchInsert(b, 1000, true) }
func BenchmarkBatchLocalInsert10000(b *testing.B) { benchmarkBatchInsert(b, 10000, true) }
func benchmarkBatchInsert(b *testing.B, size int, local bool) {
// Generate a batch of transactions to enqueue into the pool
pool, key := setupPool()
defer pool.Close()
account := crypto.PubkeyToAddress(key.PublicKey)
testAddBalance(pool, account, big.NewInt(1000000000000000000))
batches := make([]types.Transactions, b.N)
for i := 0; i < b.N; i++ {
batches[i] = make(types.Transactions, size)
for j := 0; j < size; j++ {
batches[i][j] = transaction(uint64(size*i+j), 100000, key)
}
}
// Benchmark importing the transactions into the queue
b.ResetTimer()
for _, batch := range batches {
if local {
pool.addLocals(batch)
} else {
pool.addRemotes(batch)
}
}
}
func BenchmarkInsertRemoteWithAllLocals(b *testing.B) {
// Allocate keys for testing
key, _ := crypto.GenerateKey()
account := crypto.PubkeyToAddress(key.PublicKey)
remoteKey, _ := crypto.GenerateKey()
remoteAddr := crypto.PubkeyToAddress(remoteKey.PublicKey)
locals := make([]*types.Transaction, 4096+1024) // Occupy all slots
for i := 0; i < len(locals); i++ {
locals[i] = transaction(uint64(i), 100000, key)
}
remotes := make([]*types.Transaction, 1000)
for i := 0; i < len(remotes); i++ {
remotes[i] = pricedTransaction(uint64(i), 100000, big.NewInt(2), remoteKey) // Higher gasprice
}
// Benchmark importing the transactions into the queue
b.ResetTimer()
for i := 0; i < b.N; i++ {
b.StopTimer()
pool, _ := setupPool()
testAddBalance(pool, account, big.NewInt(100000000))
for _, local := range locals {
pool.addLocal(local)
}
b.StartTimer()
// Assign a high enough balance for testing
testAddBalance(pool, remoteAddr, big.NewInt(100000000))
for i := 0; i < len(remotes); i++ {
pool.addRemotes([]*types.Transaction{remotes[i]})
}
pool.Close()
}
}
// Benchmarks the speed of batch transaction insertion in case of multiple accounts.
func BenchmarkMultiAccountBatchInsert(b *testing.B) {
// Generate a batch of transactions to enqueue into the pool
pool, _ := setupPool()
defer pool.Close()
b.ReportAllocs()
batches := make(types.Transactions, b.N)
for i := 0; i < b.N; i++ {
key, _ := crypto.GenerateKey()
account := crypto.PubkeyToAddress(key.PublicKey)
pool.currentState.AddBalance(account, uint256.NewInt(1000000), tracing.BalanceChangeUnspecified)
tx := transaction(uint64(0), 100000, key)
batches[i] = tx
}
// Benchmark importing the transactions into the queue
b.ResetTimer()
for _, tx := range batches {
pool.addRemotesSync([]*types.Transaction{tx})
}
}