go-ethereum/core/blockchain_test.go
marcello33 bbfb2016fa
Upstream merge from go-ethereum/v1.11.6 (#901)
* ethdb/pebble: fix nil callbacks (#26650)

* eth/downloader: fix timeout resurrection panic (#26652)

* common/prque, eth/downloader: fix timeout resurrection panic

* common/prque: revert -1 hack for les, temporaryly!

* core/state, trie: remove unused error-return from trie Commit operation (#26641)

* go.mod: update pebble to latest master (#26654)

* core/vm: set tracer-observable `value` of a delegatecall to match parent `value` (#26632)

This is a breaking change in the tracing hooks API as well as semantics of the callTracer:

- CaptureEnter hook provided a nil value argument in case of DELEGATECALL. However to stay consistent with how delegate calls behave in EVM this hook is changed to pass in the value of the parent call.
- callTracer will return parent call's value for DELEGATECALL frames.

---------

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

* ethdb: add benchmark test suite (#26659)

* params: schedule shanghai fork on sepolia (#26662)

* params: schedule shanghai fork on sepolia

* params: u64 -> newUint64

* eth/filters: avoid block body retrieval when no matching logs (#25199)

Logs stored on disk have minimal information. Contextual information such as block
number, index of log in block, index of transaction in block are filled in upon request.
We can fill in all these fields only having the block header and list of receipts.
But determining the transaction hash of a log requires the block body.

The goal of this PR is postponing this retrieval until we are sure we the transaction hash.
It happens often that the header bloom filter signals there might be matches in a block,
but after actually checking them reveals the logs do not match. We want to avoid fetching
the body in this case.

Note that this changes the semantics of Backend.GetLogs. Downstream callers of
GetLogs now assume log context fields have not been derived, and need to call
DeriveFields on the logs if necessary.

* eth/tracers: more fork overrides in traceBlockToFile (#26655)

This change allows all post-Berlin forks to be specified as overrides for futureForkBlock in the config parameter for traceBlockToFile.

* tests/fuzzers: supply gnark multiexp config, fixes #26669 (#26670)

This change fixes a fuzzer which broke when we updated the gnark dependency earlier.

* cmd/devp2p: reduce output of node crawler (#26674)

Our discovery crawler spits out a huge amount of logs, most of which is pretty non-interesting. This change moves the very verbose output to Debug, and adds a 8-second status log message giving the general idea about what's going on.

* params: update mainnet + rinkeby CHT (#26677)

This change updates the CHT entries for mainnet and rinkeby

* eth/filters: replace atomic pointer with value (#26689)

* eth/filters: replace atomic.Pointer

* fix

* improve

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

---------

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

* p2p/dnsdisc: fix tests with Go 1.20 (#26690)

* eth/catalyst: return error if withdrawals are nil post-shanghai (#26691)

Spec: https://github.com/ethereum/execution-apis/blob/main/src/engine/shanghai.md#request

* ethdb/pebble: Fix `MemTableStopWritesThreshold` (#26692)

MemTableStopWritesThreshold was set to the max size of all memtables before blocking writing but should be set to the max number of memtables. This is documented [here](https://github.com/cockroachdb/pebble/blob/master/options.go#L738-L742).

* eth/downloader: handle missing withdrawals if empty list is expected (#26675)

This PR relaxes the block body ingress handling a bit: if block body withdrawals are missing (but expected to be empty), the body withdrawals are set to 'empty list' before being passed to upper layers. 

This fixes an issue where a block passed from EthereumJS to geth was deemed invalid.

* params: go-ethereum v1.11.0 stable

* params: begin v1.11.1 release cycle

* travis, build: update Go to 1.20.1 (#26653)

travis, build: update Go to 1.20

* core: check genesis state presence by disk read (#26703)

* core, eth/downloader: make body validation more strict (#26704)

* eth/downloader: fix empty-body case in queue fetchresult (#26707)

* eth/downloader: fix typo (#26716)

* all: remove deprecated uses of math.rand (#26710)

This PR is a (superior) alternative to https://github.com/ethereum/go-ethereum/pull/26708, it handles deprecation, primarily two specific cases. 

`rand.Seed` is typically used in two ways
- `rand.Seed(time.Now().UnixNano())` -- we seed it, just to be sure to get some random, and not always get the same thing on every run. This is not needed, with global seeding, so those are just removed. 
- `rand.Seed(1)` this is typically done to ensure we have a stable test. If we rely on this, we need to fix up the tests to use a deterministic prng-source. A few occurrences like this has been replaced with a proper custom source. 

`rand.Read` has been replaced by `crypto/rand`.`Read` in this PR.

* params: go-ethereum v1.11.1 stable

* params: begin v1.11.2 release cycle

* eth/catalyst: send INVALID instead of INVALID_BLOCK_HASH (#26696)

This change will break one hive test, but pass another and it will be the better way going forward

* ci: disable coverage reporting in appveyor and travis

* eth/catalyst: request too large error (#26722)

The method `GetPayloadBodiesByRangeV1` now returns "-38004: Too large request" error if the requested range is too large, according to spec

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

* core/trie: remove trie tracer (#26665)

This PR contains a small portion of the full pbss PR, namely

    Remove the tracer from trie (and comitter), and instead using an accessList.
    Related changes to the Nodeset.


---------

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

* rpc: fix unmarshaling of null result in CallContext (#26723)

The change fixes unmarshaling of JSON null results into json.RawMessage.

---------

Co-authored-by: Jason Yuan <jason.yuan@curvegrid.com>
Co-authored-by: Jason Yuan <jason.yuan869@gmail.com>

* build: ship bootstrapper Go along with builder for PPA (#26731)

* build: fix setting env var, temp early exit

* build: fix gobootstrap path for the PPA

* build: add some PPA debug logs, sigh

* internal/build: revert raising the chunk size for PPA

* build: yet another weird PPA fix

* build: fix (finaly?) the PPA env vars for Go bootstrapping

* build: fix Go 1.19.0 bootstrapper issues on 386 PPA

* build: enable Lunar Lobster PPA builds

* Revert "core/trie: remove trie tracer (#26665)" (#26732)

This reverts commit 7c749c947a.

* cmd/geth: clarify dumpconfig options (#26729)

Clarifies the documentation around dumpconfi

Signed-off-by: Sungwoo Kim <git@sung-woo.kim>

* core, eth: merge snap-sync chain download progress logs (#26676)

* core: fix accessor mismatch for genesis state (#26747)

* core/rawdb: expose chain freezer constructor without internals (#26748)

* all: use unified emptyRootHash and emptyCodeHash (#26718)

The EmptyRootHash and EmptyCodeHash are defined everywhere in the codebase, this PR replaces all of them with unified one defined in core/types package, and also defines constants for TxRoot, WithdrawalsRoot and UncleRoot

* eth/filters: fix a breaking change and return rpctransaction (#26757)

* eth/filters: fix a breaking change and return rpctransaction

* eth/filters: fix test cases

---------

Co-authored-by: Catror <me@catror.com>

* common/math: allow HexOrDecimal to accept unquoted decimals too (#26758)

* params: release Geth v1.11.2

* params: begin v.1.11.3 release cycle

* log: improve documentation (#26753)

Add usage examples

* core/rawdb, node: use standalone flock dependency (#26633)

* eth: use the last announced finalized block as the sync ancient limit (#26685)

* cmd/devp2p: faster crawling + less verbose dns updates (#26697)

This improves the speed of DHT crawling by using concurrent requests.
It also removes logging of individual DNS updates.

* eth/tracers: add native flatCallTracer (aka parity style tracer) (#26377)

Adds support for a native call tracer with the Parity format, which outputs call frames
in a flat array. This tracer accepts the following options:

- `convertParityErrors: true` will convert error messages to match those of Parity
- `includePrecompiles: true` will report all calls to precompiles. The default
  matches Parity's behavior where CALL and STATICCALLs to precompiles are excluded

Incompatibilities with Parity include:

- Parity removes the result object in case of failure. This behavior is maintained
  with the exception of reverts. Revert output usually contains useful information,
  i.e. Solidity revert reason.
- The `gasUsed` field accounts for intrinsic gas (e.g. 21000 for simple transfers)
  and refunds unlike Parity
- Block rewards are not reported

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

* core: improve withdrawal index assignment in GenerateChain (#26756)

This fixes an issue where the withdrawal index was not calculated correctly
for multiple withdrawals in a single block.

Co-authored-by: Gary Rong <garyrong0905@gmail.com>
Co-authored-by: Felix Lange <fjl@twurst.com>

* ethdb/pebble: fix range compaction (#26771)

* ethdb/pebble: fix range compaction

* ethdb/pebble: add comment

* ethdb/pebble: fix max memorytable size (#26776)

* ethclient: include withdrawals in ethclient block responses (#26778)

* include withdrawals in ethclient responses

* omit empty withdrawals array in json serialization

* all: change chain head markers from block to header (#26777)

* core/rawdb, ethdb/pebble: disable pebble on openbsd (#26801)

* core: fix a merge fault (#26802)

* README, go.mod, event, internal/version: bump min Go to 1.19 (#26803)

* travi: remove strange leftover Go version

* core, params: schedule Shanghai on goerli (#26795)

* core: params: schedule Shanghai on goerli

* core/forkid: fix comment

* eth: remove admin.peers[i].eth.head and difficulty (#26804)

* core/types: add EffectiveGasPrice in Receipt (#26713)

This change adds a struct field EffectiveGasPrice in types.Receipt. The field is present
in RPC responses, but not in the Go struct, and thus can't easily be accessed via ethclient.

Co-authored-by: PulsarAI <dev@pulsar-systems.fi>

* core, eth/catalyst: fix race conditions in tests (#26790)

Fixes a race in TestNewPayloadOnInvalidTerminalBlock where setting the TTD raced with
the miner. Solution: set the TTD on the blockchain config not the genesis config.

Also fixes a race in CopyHeader which resulted in race reports all over the place.

* metrics: improve accuracy of CPU gauges (#26793)

This PR changes metrics collection to actually measure the time interval between collections, rather
than assume 3 seconds. I did some ad hoc profiling, and on slower hardware (eg, my Raspberry Pi 4)
I routinely saw intervals between 3.3 - 3.5 seconds, with some being as high as 4.5 seconds. This
will generally cause the CPU gauge readings to be too high, and in some cases can cause impossibly
large values for the CPU load metrics (eg. greater than 400 for a 4 core CPU).

---------

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

* ethclient: fix panic when requesting missing blocks (#26817)

This fixes a regression introduced by #26723.
Fixes #26816.

* core, miner: revert block gas counter in case of invalid transaction (#26799)

This change fixes a flaw where, in certain scenarios, the block sealer did not accurately reset the remaining gas after failing to include an invalid transaction. Fixes #26791

* internal/ethapi: add tests for transaction types JSON marshal/unmarshal (#26667)

Checks that Transaction.MarshalJSON and newRPCTransaction JSON output can be parsed by Transaction.UnmarshalJSON

---------

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

* cmd/evm: correct `alloc` for `t8n` testdata (#26822)

Fixes a minor error in the testdata

* eth/tracers/native: set created address to nil in case of failure (#26779)

Fixes #26073

* accounts/usbwallet: mitigate ledger app chunking issue (#26773)

This PR mitigates an issue with Ledger's on-device RLP deserialization, see
https://github.com/LedgerHQ/app-ethereum/issues/409

Ledger's RLP deserialization code does not validate the length of the RLP list received,
and it may prematurely enter the signing flow when a APDU chunk boundary falls immediately
before the EIP-155 chain_id when deserializing a transaction. Since the chain_id is
uninitialized, it is 0 during this signing flow. This may cause the user to accidentally
sign the transaction with chain_id = 0. That signature would be returned from the device 1
packet earlier than expected by the communication loop. The device blocks the
second-to-last packet waiting for the signer flow, and then errors on the successive
packet (which contains the chain_id, zeroed r, and zeroed s)

Since the signature's early arrival causes successive errors during the communication
process, geth does not parse the improper signature produced by the device, and therefore
no improperly-signed transaction can be created. User funds are not at risk.

We mitigate by selecting the highest chunk size that leaves at least 4 bytes in the
final chunk.

* beacon/engine: don't omit empty withdrawals in ExecutionPayloadBodies (#26698)

This ensures the "withdrawals" field will always be present in responses
to getPayloadBodiesByRangeV1 and getPayloadBodiesByHashV1.

---------

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

* build: update to go 1.20.2 (#26824)

* params: go-ethereum v1.11.3 stable

* params: begin v1.11.4 release cycle

* core/rawdb: find smallest block stored in key-value store when chain gapped (#26719)

This change prints out more information about the problem, in the case where geth detects a gap between leveldb and ancients, so we can determine more exactly where the gap is (what the first missing is). Also prints out more metadata. 

---------

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

* signer/core: accept all solidity primitive types for EIP-712 signing  (#26770)

Accept all primitive types in Solidity for EIP-712 from intN, uintN, intN[], uintN[] for N as 0 to 256 in multiples of 8

---------

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

* params: remove EF azure bootnodes (#26828)

* core/vm: use golang native big.Int (#26834)

reverts #26021, to use the upstream bigint instead.

* core/vm: fix typo in comment (#26838)

fixes eip 220 ->  2200

* core/forkid: fix issue in validation test (#26544)

This changes the test to match the comment description. Using timestampedConfig in this test case is incorrect, the comment says 'local is at Gray Glacier' and isn't aware of more forks.

* cmd/evm: update readmes for the tests (#26841)

* core, core/types: plain Message struct (#25977)

Here, the core.Message interface turns into a plain struct and
types.Message gets removed.

This is a breaking change to packages core and core/types. While we do
not promise API stability for package core, we do for core/types. An
exception can be made for types.Message, since it doesn't have any
purpose apart from invoking the state transition in package core.
types.Message was also marked deprecated by the same commit it
got added in, 4dca5d4db7 (November 2016).

The core.Message interface was added in December 2014, in commit
db494170dc, for the purpose of 'testing' state transitions. It's the
same change that made transaction struct fields private. Before that,
the state transition used *types.Transaction directly.

Over time, multiple implementations of the interface accrued across
different packages, since constructing a Message is required whenever
one wants to invoke the state transition. These implementations all
looked very similar, a struct with private fields exposing the fields
as accessor methods.

By changing Message into a struct with public fields we can remove all
these useless interface implementations. It will also hopefully
simplify future changes to the type with less updates to apply across
all of go-ethereum when a field is added to Message.

---------

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

* travis: only build PPAs nightly, not on every push, too heavy (#26846)

* p2p: small comment typo (#26850)

Update server.go

* core: add Timestamp method in BlockGen (#26844)

Since forks are now scheduled by block time, it can be necessary
to check the timestamp of a block while generating transactions.

* core/txpool: implement additional DoS defenses (#26648)

This adds two new rules to the transaction pool:

- A future transaction can not evict a pending transaction.
- A transaction can not overspend available funds of a sender.

---

Co-authored-by: dwn1998 <42262393+dwn1998@users.noreply.github.com>
Co-authored-by: Martin Holst Swende <martin@swende.se>

* params: go-ethereum v1.11.4 stable

* params: begin v1.11.5 release cycle

* tests: define `MuirGlacier` fork (#26856)

add muir glacier to t8n

* code/vm: fix comment typo (#26865)

it should be constantinople rather than contantinople

* core: minor code refactor (#26852)

* core: refactor code

* core: drop it from this anonymous goroutine func

* core/txpool: use priceList.Put instead of heap.Push (#26863)

Minor refactor to use the 'intended' accessor

* eth: return error if 'safe' or 'finalized' tag used pre-merge (#26862)


Co-authored-by: Martin Holst Swende <martin@swende.se>
Co-authored-by: Felix Lange <fjl@twurst.com>

* .travis.yml: reenable PPA build on tag push (#26873)

* core/state, trie: port changes from PBSS (#26763)

* p2p/discover: pass invalid discv5 packets to Unhandled channel (#26699)

This makes it possible to run another protocol alongside discv5, by reading 
unhandled packets from the channel.

* all: update links in documentation (#26882)


Co-authored-by: Stephen Flynn <stephen.flynn@gapac.com>

* Increase websocket frame size (from erigon rpc client) (#26883)

This increases the maximum allowed message size to 32MB.

Originally submitted at https://github.com/ledgerwatch/erigon/pull/2739

example block failure: https://etherscan.io/tx/0x1317d973a55cedf9b0f2df6ea48e8077dd176f5444a3423368a46d6e4db89982#internal

* cmd/devp2p, cmd/geth: add version in --help output (#26895)

Not sure why this was removed, it's pretty useful to see the version
also in --help.

* core: show db error-info in case of mismatched hash root (#26870)

When a database failure occurs, bubble it up a into statedb, and report it in suitable places, such as during a 'bad block' report.

* consensus: improve consensus engine definition (#26871)

Makes clear the distinction between Finalize and FinalizedAndAssemble:

- In Finalize function, a series of state operations are applied according to consensus rules. The statedb is mutated and the root hash can be checked and compared afterwards.

This function should be used in block processing(receive afrom network and apply it locally) but not block generation.

- In FinalizeAndAssemble function, after applying state mutations, the block is also to be assembled with the latest
  state root computed, updating the header. 

 This function should be used in block generation only.

* eth/catalyst: increase update consensus timeout (#26840)

 Increases the time between consensus updates that we give the CL before we start warning the user.

* internal/ethapi: avoid int overflow in GetTransactionReceipt (#26911)

* trie, accounts/abi: add error-checks (#26914)

* rlp: support for uint256 (#26898)

This adds built-in support in package rlp for encoding, decoding and generating code dealing with uint256.Int.

---------

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

* eth: fix output file permissions in admin_exportChain (#26912)

* api: Use 0700 file permissions for ExportChain

* change perm to 0644

* Update api.go

---------

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

* trie: reduce unit test time (#26918)

* core/txpool: use atomic int added in go1.19 (#26913)

Makes use of atomic.Uint64 instead of atomic by pointer

* params: schedule shanghai fork on mainnet (#26908)

Schedules the shanghai hardfork on timestamp 1681338455 as discussed on ACDE 157: https://github.com/ethereum/execution-specs/pull/727

* core/txpool: allow future local transactions  (#26930)

Local transactions should not be subject to the "future shouldn't churn pending txs" rule

* params: go-ethereum v1.11.5 stable

* params: begin v1.11.6 release cycle

* build: allow building nightly archives via cron jobs (#26938)

* log: add special casing of uint256 into the logger (#26936)

* core/rawdb: use atomic int added in go1.19 (#26935)

* core/vm: expose jumptable constructors (#26880)

When interacting with geth as a library to e.g. produce state tests, it is desirable to obtain the consensus-correct jumptable definition for a given fork. This changes adds accessors so the instructionset can be obtained and characteristics about opcodes can be inspected.

* eth/catalyst: fix races (#26950)

* core/rawdb: update freezertable read meter (#26946)

The meter for "for measuring the effective amount of data read" within the freezertable was never updated. This change remedies that. 
---------

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

* cmd/evm, tests: record preimages if dump is expected (#26955)

With #25287 we made it so that preimages were not recorded by default. This had the side effect that the evm command is no longer able to dump state since it does a preimage lookup to determine the address represented by a key.

This change enables the recording of preimages when the dump command is given.

* core/state: add account address to Trie slot accessors (#26934)

This changes the Trie interface to add the plain account address as a
parameter to all storage-related methods.

After the introduction of the TryAccount* functions, TryGet, TryUpdate and
TryDelete are now only meant to read an account's storage. In their current
form, they assume that an account storage is stored in a separate trie, and
that the hashing of the slot is independent of its account's address.

The proposed structure for a stateless storage breaks these two
assumptions: the hashing of a slot key requires the address and all slots
and accounts are stored in a single trie.

This PR therefore adds an address parameter to the interface. It is ignored
in the MPT version, so this change has no functional impact, however it
will reduce the diff size when merging verkle trees.

* metrics: add cpu counters (#26796)

This PR adds counter metrics for the CPU system and the Geth process.
Currently the only metrics available for these items are gauges. Gauges are
fine when the consumer scrapes metrics data at the same interval as Geth
produces new values (every 3 seconds), but it is likely that most consumers
will not scrape that often. Intervals of 10, 15, or maybe even 30 seconds
are probably more common.

So the problem is, how does the consumer estimate what the CPU was doing in
between scrapes. With a counter, it's easy ... you just subtract two
successive values and divide by the time to get a nice, accurate average.
But with a gauge, you can't do that. A gauge reading is an instantaneous
picture of what was happening at that moment, but it gives you no idea
about what was going on between scrapes. Taking an average of values is
meaningless.

* metrics/influxdb: use smaller dependency and reuse code between v1 and v2 reporters  (#26963)

This change switches to use the smaller influxdata/influxdb1-client package instead of depending on the whole infuxdb package. The new smaller client is very similar to the influxdb-v2 client, which made it possible to refactor the two reporters to reuse code a lot more.

* eth/gasprice: change feehistory input type from int to uint64 (#26922)

Change input param type from int to uint64

* go.mod: update golang.org/x/tools (#26960)

* rlp/rlpgen: print want/expect output string if mismatch (#26932)


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

* ethclient: ensure returned subscription is nil on error (#26976)

* core/state, trie: remove Try prefix in Trie accessors (#26975)

This change renames StateTrie methods to remove the Try* prefix. 

We added the Trie methods with prefix 'Try' a long time ago, working
around the problem that most existing methods of Trie did not return the
database error. This weird naming convention has persisted until now.

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

* metrics/librato: ensure resp.body closed (#26969)

This change ensures that we call Close on a http response body, in various places in the source code (mostly tests)

* core/vm: use atomic.Bool (#26951)

Make use of new atomic types
---------

Co-authored-by: Felix Lange <fjl@twurst.com>
Co-authored-by: Martin Holst Swende <martin@swende.se>

* core/bloombits: use atomic type (#26993)

* core/state: use atomic.Bool (#26992)

* graphql: fix data races (#26965)

Fixes multiple data races caused by the fact that resolving fields are done concurrently by the graphql library. It also enforces caching at the stateobject level for account fields.

* eth/tracers/native: prevent panic for LOG edge-cases (#26848)

This PR fixes OOM panic in the callTracer as well as panicing on
opcode validation errors (e.g. stack underflow) in callTracer and
prestateTracer.

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

* internal/debug: add log.logfmt flag to set logging to use logfmt (#26970)

* docs: update outdated DeriveSha docs comment (#26968)

* remove @gballet as a GraphQL codeowner (#27012)

* core: use atomic type (#27011)

* graphql: revert storage access regression (#27007)

* cmd/geth: Add `--log.format` cli param (#27001)

Removes the new --log.logfmt directive and hides --log.json, replacing both with log.format=(json|logfmt|terminal). The hidden log.json option is still respected if log.format is not specified for backwards compatibility.

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

* ethdb/pebble: use atomic type (#27014)

* common: fix json marshaller MixedcaseAddress (#26998)

Fix the json marshaller of MixedcaseAddress

* eth/catalyst: improve consensus heartbeat (#26896)

improve the heartbeat function that is no longer suitable in the current situation

Co-authored-by: “openex27” <“openexkevin@gmail.com”>

* miner: use atomic type (#27013)

Use the new typed atomics in the miner package

* accounts/abi/bind: handle UnpackLog with zero topics (#26920)

Adds error handling for the case that UnpackLog or UnpackLogIntoMap is called with a log that has zero topics.

---------

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

* cmd/evm: use correct parent number for t8n base fee calculation (#27032)

Currently the t8n tool uses the same block number for the current block and its parent while calculating the base fee. This causes incorrect base fee calculation for the london fork block. This commit sets the parent block number to be one less than the current block number

* go.mod : update snappy (#27027)

* common: delete MakeName (#27023)

common,p2p: remove unused function MakeName

* cmd/geth: enable log rotation (#26843)

This change enables log rotation, which can be activated using the flag --log.rotate. Additional parameters that can be given are: 

  - log.maxsize to set maximum size before files are rotated,
  - log.maxbackups to set how many files are retailed, 
  - log.maxage to configure max age of rotated files, 
  - log.compress whether to compress rotated files

The way to configure location of the logfile(s) is left unchanged, via the `log.logfile` parameter.  

---------

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

* cmd, miner, signer: avoid panic if keystore is not available (#27039)

* cmd, miner, singer: avoid panic if keystore is not available

* cmd/geth: print warning instead of panic

* test/fuzzers: fuzz rlp handling of big.Int and uint256.Int (#26917)

test/fuzzers: fuzz rlp handling of big.Lnt and uint256.Int

* core/txpool: move some validation to outside of mutex (#27006)

Currently, most of transaction validation while holding the txpool mutex: one exception being an early-on signature check. 

This PR changes that, so that we do all non-stateful checks before we entering the mutex area. This means they can be performed in parallel, and to enable that, certain fields have been made atomic bools and uint64.

* eth/downloader: use atomic types (#27030)

* eth/downloader: use atomic type

* Update eth/downloader/downloader_test.go

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

* Update eth/downloader/downloader_test.go

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

---------

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

* core/vm: clarify comment (#27045)

* consensus, core/typer: add 4844 excessDataGas to header, tie it to Cancun (#27046)

* consensus/misc, params: add EIP-4844 blobfee conversions (#27041)

* consensus/misc, params: add EIP-4844 blobfee conversions

* consensus/misc: pull in fakeExponential test cases

* consensus/misc: reuse bigints

* consensus/misc: nit renames, additional larger testcase

---------

Co-authored-by: Roberto Bayardo <bayardo@alum.mit.edu>
Co-authored-by: Martin Holst Swende <martin@swende.se>

* eth/tracers: report correct gasLimit in call tracers (#27029)

This includes a semantic change to the `callTracer` as well as `flatCallTracer`.
The value of field `gas` in the **first** call frame will change as follows:

- It previously contained gas available after initial deductions (i.e. tx costs)
- It will now contain the full tx gasLimit value

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

* all: remove debug-field from vm config (#27048)

This PR removes the Debug field from vmconfig, making it so that if a tracer is set, debug=true is implied.

---------

Co-authored-by: 0xTylerHolmes <tyler@ethereum.org>
Co-authored-by: Sina Mahmoodi <1591639+s1na@users.noreply.github.com>

* metrics: make gauge_float64 and counter_float64 lock free (#27025)

Makes the float-gauges lock-free

name                      old time/op  new time/op  delta
CounterFloat64Parallel-8  1.45µs ±10%  0.85µs ± 6%  -41.65%  (p=0.008 n=5+5)

---------

Co-authored-by: Exca-DK <dev@DESKTOP-RI45P4J.localdomain>
Co-authored-by: Martin Holst Swende <martin@swende.se>

* eth/tracers: use atomic type (#27031)

Use the new atomic types in package eth/tracers

---------

Co-authored-by: Martin Holst Swende <martin@swende.se>
Co-authored-by: Sina Mahmoodi <itz.s1na@gmail.com>

* build: upgrade -dlgo version to Go 1.20.3

* core/txpool: disallow future churn by remote txs (#26907)

Prior to this change, it was possible that transactions are erroneously deemed as 'future' although they are in fact 'pending', causing them to be dropped due to 'future' not being allowed to replace 'pending'. 

This change fixes that, by doing a more in-depth inspection of the queue.

* core, miner: drop transactions from the same sender when error occurs (#27038)

This PR unifies the error handling in miner. 

Whenever an error occur while applying a transaction, the transaction should be regarded as invalid and all following transactions from the same sender not executable because of the nonce restriction. The only exception is the `nonceTooLow` error which is handled separately.

* params: new sepolia bootnodes (#27099)

New sepolia bootnodes managed by EF devops

* cmd/devp2p: fix erroneous log output in crawler (#27089)

cmd/devp2p: fix log of ignored recent nodes counter

* signer/core: rename testdata files (#27063)

Sets a meaningful name on test-files

* core: fix comment to reflect function name (#27070)

* params: remove `EIP150Hash` from chainconfig (#27087)

The EIP150Hash was an idea where, after the fork, we hardcoded the forked hash as an extra defensive mechanism. It wasn't really used, since forks weren't contentious and for all the various testnets and private networks it's been a hassle to have around. 

This change removes that config field. 

---------

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

* p2p: access embedded fields of Server directly (#27078)

* consensus/ethash: use atomic type (#27068)

* cmd/devp2p: make crawler-route53-updater less verbose (#27116)

Follow-up to #26697, makes the crawler less verbose on route53-based scenarios.

It also changes the loglevel from debug to info on Updates, which are typically the root, and can be interesting to see.

* cmd/geth: rename --vmodule to --log.vmodule (#27071)

renames `--vmodule` to `--log.vmodule`, and prints a warning if the old form is used.

* core/vm: order opcodes properly (#27113)

* metrics: use atomic type (#27121)

* all: refactor trie API (#26995)

In this PR, all TryXXX(e.g. TryGet) APIs of trie are renamed to XXX(e.g. Get) with an error returned.

The original XXX(e.g. Get) APIs are renamed to MustXXX(e.g. MustGet) and does not return any error -- they print a log output. A future PR will change the behaviour to panic on errorrs.

* params: go-ethereum v1.11.6 stable

* dev: chg: regression changes for bor after merge

* dev: chg: more regression changes for bor after merge

* dev: chg: txpool_test regression changes after merge

* dev: chg: gomock re-generate mocks for backend interface

* dev: chg: regression changes after develop is merged into upstream-merge

* dev: chg: further fixes merging develop into upstream-merge

* dev: chg: apply changes to NewParallelBlockChain

* dev: chg: solve some TODOs

* dev: fix: CreateConsensusEngine for new ethereum objects

* dev: fix: NewParallelBlockChain using Genesis

* dev: fix: build ci.go

* dev: fix: thelper and tparallel lint

* dev: fix: http related and nilnil lint errors

* dev: fix: ineffassign lint errors

* dev: chg: comment position fix

* dev: fix: govet lint errors

* dev: fix: error related lint issues

* dev: fix: bodyclose lint issues

* dev: fix: some wsl lint issues

* dev: fix: more wsl lint issues

* dev: fix: errorcheck lint issues

* dev: fix: solve more lint issues

* dev: fix: more wsl lint issues

* dev: fix: more errcheck lint issues

* dev: fix: most of wsl lint issues

* dev: fix: all remaining  lint issues

* dev: fix: t.Parallel called multiple times

* dev: fix: tests failing due to t.Parallel

* fix : runtime testcases

* fix : testcase : config, addTxWithChain, burnAmount

* fix : ethhash bor burn contract

* fix : genspec config

* fix : freezer, TestStateProcessorErrors

* core,eth,miner: fix initial test cases (#922)

* fix : TestTransactionIndices, testBeaconSync

* fix : TestBeaconSync66

* core,eth: fix TestDeduplication, TestSyncAccountPerformance, TestTraceTransaction

* fix : TestTxIndexer

* rm : multiple coinbase balance

* fix : testCommitInterruptExperimentBor

* adding balance send to burntcontract back

* Fix header encoding test

* core,eth/tracers: fix TestPrestateWithDiffModeTracer

* consensus/bor,eth/filters,miner,params,tests: fix mocks

* fix : TestGraphQLConcurrentResolvers

* fix : TestBuildPayload

* common,core,miner: fix goleaks,duplicate init and inconsistent mutex (un)locks

* fix : lint

* fix : lint

* fix : test-integration

* fix : test-integration

* core: restore AddFeeTransferLog post miner tipping

* fix : TestGraphQLConcurrentResolvers

* fix : deadlocks

* rm: t.parallel from testQueueTimeLimiting tests

* Merge branch 'develop' into mardizzone/upstream-merge

* fix : lint

* fix : test-integration

* fix : TxDependency

* add rpc.enabledeprecatedpersonal flag

---------

Signed-off-by: Sungwoo Kim <git@sung-woo.kim>
Signed-off-by: jsvisa <delweng@gmail.com>
Co-authored-by: Péter Szilágyi <peterke@gmail.com>
Co-authored-by: Martin Holst Swende <martin@swende.se>
Co-authored-by: Chris Ziogas <ziogaschr@gmail.com>
Co-authored-by: Sina Mahmoodi <itz.s1na@gmail.com>
Co-authored-by: rjl493456442 <garyrong0905@gmail.com>
Co-authored-by: Marius van der Wijden <m.vanderwijden@live.de>
Co-authored-by: Sina Mahmoodi <1591639+s1na@users.noreply.github.com>
Co-authored-by: Darioush Jalali <darioush.jalali@avalabs.org>
Co-authored-by: Felix Lange <fjl@twurst.com>
Co-authored-by: Patrick O'Grady <prohb125@gmail.com>
Co-authored-by: ucwong <ucwong@126.com>
Co-authored-by: Roman Krasiuk <rokrassyuk@gmail.com>
Co-authored-by: Jason Yuan <jason.yuan@curvegrid.com>
Co-authored-by: Jason Yuan <jason.yuan869@gmail.com>
Co-authored-by: Sungwoo Kim <git@sung-woo.kim>
Co-authored-by: Yier <90763233+yierx@users.noreply.github.com>
Co-authored-by: Catror <me@catror.com>
Co-authored-by: Nate Armstrong <naterarmstrong@gmail.com>
Co-authored-by: Dan Cline <6798349+Rjected@users.noreply.github.com>
Co-authored-by: Peter (bitfly) <1674920+peterbitfly@users.noreply.github.com>
Co-authored-by: PulsarAI <dev@pulsar-systems.fi>
Co-authored-by: turboboost55 <7891737+turboboost55@users.noreply.github.com>
Co-authored-by: Adrian Sutton <adrian@symphonious.net>
Co-authored-by: Guruprasad Kamath <48196632+gurukamath@users.noreply.github.com>
Co-authored-by: James Prestwich <10149425+prestwich@users.noreply.github.com>
Co-authored-by: Daniel Fernandes <711733+daferna@users.noreply.github.com>
Co-authored-by: Rafael Matias <rafael@skyle.net>
Co-authored-by: xiyang <90125263+JBossBC@users.noreply.github.com>
Co-authored-by: Roberto Bayardo <bayardo@alum.mit.edu>
Co-authored-by: panicalways <113693386+panicalways@users.noreply.github.com>
Co-authored-by: dwn1998 <42262393+dwn1998@users.noreply.github.com>
Co-authored-by: s7v7nislands <s7v7nislands@gmail.com>
Co-authored-by: lightclient <14004106+lightclient@users.noreply.github.com>
Co-authored-by: Stephen Flynn <ssflynn@gmail.com>
Co-authored-by: Stephen Flynn <stephen.flynn@gapac.com>
Co-authored-by: Jonathan Otto <jonathan.otto@gmail.com>
Co-authored-by: Delweng <delweng@gmail.com>
Co-authored-by: Guillaume Ballet <3272758+gballet@users.noreply.github.com>
Co-authored-by: aaronbuchwald <aaron.buchwald56@gmail.com>
Co-authored-by: ucwong <ethereum2k@gmail.com>
Co-authored-by: norwnd <112318969+norwnd@users.noreply.github.com>
Co-authored-by: jwasinger <j-wasinger@hotmail.com>
Co-authored-by: Adrian Sutton <adrian@oplabs.co>
Co-authored-by: David Murdoch <187813+davidmurdoch@users.noreply.github.com>
Co-authored-by: openex <openexkevin@gmail.com>
Co-authored-by: “openex27” <“openexkevin@gmail.com”>
Co-authored-by: sudeep <sudeepdino008@gmail.com>
Co-authored-by: joohhnnn <68833933+joohhnnn@users.noreply.github.com>
Co-authored-by: 0xTylerHolmes <tyler@ethereum.org>
Co-authored-by: Exca-DK <85954505+Exca-DK@users.noreply.github.com>
Co-authored-by: Exca-DK <dev@DESKTOP-RI45P4J.localdomain>
Co-authored-by: Marius Kjærstad <mkjaerstad@protonmail.com>
Co-authored-by: Parithosh Jayanthi <parithosh@indenwolken.xyz>
Co-authored-by: noel <72006780+0x00Duke@users.noreply.github.com>
Co-authored-by: Taeguk Kwon <xornrbboy@gmail.com>
Co-authored-by: Anusha <63559942+anusha-ctrl@users.noreply.github.com>
Co-authored-by: Alex Beregszaszi <alex@rtfs.hu>
Co-authored-by: Shivam Sharma <shivam691999@gmail.com>
Co-authored-by: Raneet Debnath <35629432+Raneet10@users.noreply.github.com>
Co-authored-by: Raneet Debnath <raneetdebnath10@gmail.com>
Co-authored-by: Jerry <jerrycgh@gmail.com>
Co-authored-by: Manav Darji <manavdarji.india@gmail.com>
2023-08-01 16:56:27 +05:30

4741 lines
155 KiB
Go

// Copyright 2014 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 core
import (
"errors"
"fmt"
"math/big"
"math/rand"
"os"
"sync"
"testing"
"time"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/common/math"
"github.com/ethereum/go-ethereum/consensus"
"github.com/ethereum/go-ethereum/consensus/beacon"
"github.com/ethereum/go-ethereum/consensus/ethash"
"github.com/ethereum/go-ethereum/core/rawdb"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/core/vm"
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/eth/tracers/logger"
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/trie"
)
// So we can deterministically seed different blockchains
var (
canonicalSeed = 1
forkSeed = 2
)
// newCanonical creates a chain database, and injects a deterministic canonical
// chain. Depending on the full flag, if creates either a full block chain or a
// header only chain. The database and genesis specification for block generation
// are also returned in case more test blocks are needed later.
func newCanonical(engine consensus.Engine, n int, full bool) (ethdb.Database, *Genesis, *BlockChain, error) {
var (
genesis = &Genesis{
BaseFee: big.NewInt(params.InitialBaseFee),
Config: params.AllEthashProtocolChanges,
}
)
// Initialize a fresh chain with only a genesis block
blockchain, _ := NewBlockChain(rawdb.NewMemoryDatabase(), nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
// Create and inject the requested chain
if n == 0 {
return rawdb.NewMemoryDatabase(), genesis, blockchain, nil
}
if full {
// Full block-chain requested
genDb, blocks := makeBlockChainWithGenesis(genesis, n, engine, canonicalSeed)
_, err := blockchain.InsertChain(blocks)
return genDb, genesis, blockchain, err
}
// Header-only chain requested
genDb, headers := makeHeaderChainWithGenesis(genesis, n, engine, canonicalSeed)
_, err := blockchain.InsertHeaderChain(headers, 1)
return genDb, genesis, blockchain, err
}
func newGwei(n int64) *big.Int {
return new(big.Int).Mul(big.NewInt(n), big.NewInt(params.GWei))
}
// Test fork of length N starting from block i
func testFork(t *testing.T, blockchain *BlockChain, i, n int, full bool, comparator func(td1, td2 *big.Int)) {
// Copy old chain up to #i into a new db
genDb, _, blockchain2, err := newCanonical(ethash.NewFaker(), i, full)
if err != nil {
t.Fatal("could not make new canonical in testFork", err)
}
defer blockchain2.Stop()
// Assert the chains have the same header/block at #i
var hash1, hash2 common.Hash
if full {
hash1 = blockchain.GetBlockByNumber(uint64(i)).Hash()
hash2 = blockchain2.GetBlockByNumber(uint64(i)).Hash()
} else {
hash1 = blockchain.GetHeaderByNumber(uint64(i)).Hash()
hash2 = blockchain2.GetHeaderByNumber(uint64(i)).Hash()
}
if hash1 != hash2 {
t.Errorf("chain content mismatch at %d: have hash %v, want hash %v", i, hash2, hash1)
}
// Extend the newly created chain
var (
blockChainB []*types.Block
headerChainB []*types.Header
)
if full {
blockChainB = makeBlockChain(blockchain2.chainConfig, blockchain2.GetBlockByHash(blockchain2.CurrentBlock().Hash()), n, ethash.NewFaker(), genDb, forkSeed)
if _, err := blockchain2.InsertChain(blockChainB); err != nil {
t.Fatalf("failed to insert forking chain: %v", err)
}
} else {
headerChainB = makeHeaderChain(blockchain2.chainConfig, blockchain2.CurrentHeader(), n, ethash.NewFaker(), genDb, forkSeed)
if _, err := blockchain2.InsertHeaderChain(headerChainB, 1); err != nil {
t.Fatalf("failed to insert forking chain: %v", err)
}
}
// Sanity check that the forked chain can be imported into the original
var tdPre, tdPost *big.Int
if full {
cur := blockchain.CurrentBlock()
tdPre = blockchain.GetTd(cur.Hash(), cur.Number.Uint64())
if err := testBlockChainImport(blockChainB, blockchain); err != nil {
t.Fatalf("failed to import forked block chain: %v", err)
}
last := blockChainB[len(blockChainB)-1]
tdPost = blockchain.GetTd(last.Hash(), last.NumberU64())
} else {
cur := blockchain.CurrentHeader()
tdPre = blockchain.GetTd(cur.Hash(), cur.Number.Uint64())
if err := testHeaderChainImport(headerChainB, blockchain); err != nil {
t.Fatalf("failed to import forked header chain: %v", err)
}
last := headerChainB[len(headerChainB)-1]
tdPost = blockchain.GetTd(last.Hash(), last.Number.Uint64())
}
// Compare the total difficulties of the chains
comparator(tdPre, tdPost)
}
// testBlockChainImport tries to process a chain of blocks, writing them into
// the database if successful.
func testBlockChainImport(chain types.Blocks, blockchain *BlockChain) error {
for _, block := range chain {
// Try and process the block
err := blockchain.engine.VerifyHeader(blockchain, block.Header(), true)
if err == nil {
err = blockchain.validator.ValidateBody(block)
}
if err != nil {
if err == ErrKnownBlock {
continue
}
return err
}
receipts, _, usedGas, statedb, err := blockchain.ProcessBlock(block, blockchain.GetBlockByHash(block.ParentHash()).Header())
if err != nil {
blockchain.reportBlock(block, receipts, err)
return err
}
err = blockchain.validator.ValidateState(block, statedb, receipts, usedGas)
if err != nil {
blockchain.reportBlock(block, receipts, err)
return err
}
blockchain.chainmu.MustLock()
rawdb.WriteTd(blockchain.db, block.Hash(), block.NumberU64(), new(big.Int).Add(block.Difficulty(), blockchain.GetTd(block.ParentHash(), block.NumberU64()-1)))
rawdb.WriteBlock(blockchain.db, block)
statedb.Commit(false)
blockchain.chainmu.Unlock()
}
return nil
}
func TestParallelBlockChainImport(t *testing.T) {
t.Parallel()
db, _, blockchain, err := newCanonical(ethash.NewFaker(), 10, true)
blockchain.parallelProcessor = NewParallelStateProcessor(blockchain.chainConfig, blockchain, blockchain.engine)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer blockchain.Stop()
block := blockchain.GetBlockByHash(blockchain.CurrentBlock().Hash())
blockChainB := makeFakeNonEmptyBlockChain(block, 5, ethash.NewFaker(), db, forkSeed, 5)
if err := testBlockChainImport(blockChainB, blockchain); err == nil {
t.Fatalf("expected error for bad tx")
}
}
// testHeaderChainImport tries to process a chain of header, writing them into
// the database if successful.
func testHeaderChainImport(chain []*types.Header, blockchain *BlockChain) error {
for _, header := range chain {
// Try and validate the header
if err := blockchain.engine.VerifyHeader(blockchain, header, false); err != nil {
return err
}
// Manually insert the header into the database, but don't reorganise (allows subsequent testing)
blockchain.chainmu.MustLock()
rawdb.WriteTd(blockchain.db, header.Hash(), header.Number.Uint64(), new(big.Int).Add(header.Difficulty, blockchain.GetTd(header.ParentHash, header.Number.Uint64()-1)))
rawdb.WriteHeader(blockchain.db, header)
blockchain.chainmu.Unlock()
}
return nil
}
func TestLastBlock(t *testing.T) {
genDb, _, blockchain, err := newCanonical(ethash.NewFaker(), 0, true)
if err != nil {
t.Fatalf("failed to create pristine chain: %v", err)
}
defer blockchain.Stop()
blocks := makeBlockChain(blockchain.chainConfig, blockchain.GetBlockByHash(blockchain.CurrentBlock().Hash()), 1, ethash.NewFullFaker(), genDb, 0)
if _, err := blockchain.InsertChain(blocks); err != nil {
t.Fatalf("Failed to insert block: %v", err)
}
if blocks[len(blocks)-1].Hash() != rawdb.ReadHeadBlockHash(blockchain.db) {
t.Fatalf("Write/Get HeadBlockHash failed")
}
}
// Test inserts the blocks/headers after the fork choice rule is changed.
// The chain is reorged to whatever specified.
func testInsertAfterMerge(t *testing.T, blockchain *BlockChain, i, n int, full bool) {
// Copy old chain up to #i into a new db
genDb, _, blockchain2, err := newCanonical(ethash.NewFaker(), i, full)
if err != nil {
t.Fatal("could not make new canonical in testFork", err)
}
defer blockchain2.Stop()
// Assert the chains have the same header/block at #i
var hash1, hash2 common.Hash
if full {
hash1 = blockchain.GetBlockByNumber(uint64(i)).Hash()
hash2 = blockchain2.GetBlockByNumber(uint64(i)).Hash()
} else {
hash1 = blockchain.GetHeaderByNumber(uint64(i)).Hash()
hash2 = blockchain2.GetHeaderByNumber(uint64(i)).Hash()
}
if hash1 != hash2 {
t.Errorf("chain content mismatch at %d: have hash %v, want hash %v", i, hash2, hash1)
}
// Extend the newly created chain
if full {
blockChainB := makeBlockChain(blockchain2.chainConfig, blockchain2.GetBlockByHash(blockchain2.CurrentBlock().Hash()), n, ethash.NewFaker(), genDb, forkSeed)
if _, err := blockchain2.InsertChain(blockChainB); err != nil {
t.Fatalf("failed to insert forking chain: %v", err)
}
if blockchain2.CurrentBlock().Number.Uint64() != blockChainB[len(blockChainB)-1].NumberU64() {
t.Fatalf("failed to reorg to the given chain")
}
if blockchain2.CurrentBlock().Hash() != blockChainB[len(blockChainB)-1].Hash() {
t.Fatalf("failed to reorg to the given chain")
}
} else {
headerChainB := makeHeaderChain(blockchain2.chainConfig, blockchain2.CurrentHeader(), n, ethash.NewFaker(), genDb, forkSeed)
if _, err := blockchain2.InsertHeaderChain(headerChainB, 1); err != nil {
t.Fatalf("failed to insert forking chain: %v", err)
}
if blockchain2.CurrentHeader().Number.Uint64() != headerChainB[len(headerChainB)-1].Number.Uint64() {
t.Fatalf("failed to reorg to the given chain")
}
if blockchain2.CurrentHeader().Hash() != headerChainB[len(headerChainB)-1].Hash() {
t.Fatalf("failed to reorg to the given chain")
}
}
}
// Tests that given a starting canonical chain of a given size, it can be extended
// with various length chains.
func TestExtendCanonicalHeaders(t *testing.T) { testExtendCanonical(t, false) }
func TestExtendCanonicalBlocks(t *testing.T) { testExtendCanonical(t, true) }
func testExtendCanonical(t *testing.T, full bool) {
length := 5
// Make first chain starting from genesis
_, _, processor, err := newCanonical(ethash.NewFaker(), length, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer processor.Stop()
// Define the difficulty comparator
better := func(td1, td2 *big.Int) {
if td2.Cmp(td1) <= 0 {
t.Errorf("total difficulty mismatch: have %v, expected more than %v", td2, td1)
}
}
// Start fork from current height
testFork(t, processor, length, 1, full, better)
testFork(t, processor, length, 2, full, better)
testFork(t, processor, length, 5, full, better)
testFork(t, processor, length, 10, full, better)
}
// Tests that given a starting canonical chain of a given size, it can be extended
// with various length chains.
func TestExtendCanonicalHeadersAfterMerge(t *testing.T) { testExtendCanonicalAfterMerge(t, false) }
func TestExtendCanonicalBlocksAfterMerge(t *testing.T) { testExtendCanonicalAfterMerge(t, true) }
func testExtendCanonicalAfterMerge(t *testing.T, full bool) {
length := 5
// Make first chain starting from genesis
_, _, processor, err := newCanonical(ethash.NewFaker(), length, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer processor.Stop()
testInsertAfterMerge(t, processor, length, 1, full)
testInsertAfterMerge(t, processor, length, 10, full)
}
// Tests that given a starting canonical chain of a given size, creating shorter
// forks do not take canonical ownership.
func TestShorterForkHeaders(t *testing.T) { testShorterFork(t, false) }
func TestShorterForkBlocks(t *testing.T) { testShorterFork(t, true) }
func testShorterFork(t *testing.T, full bool) {
length := 10
// Make first chain starting from genesis
_, _, processor, err := newCanonical(ethash.NewFaker(), length, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer processor.Stop()
// Define the difficulty comparator
worse := func(td1, td2 *big.Int) {
if td2.Cmp(td1) >= 0 {
t.Errorf("total difficulty mismatch: have %v, expected less than %v", td2, td1)
}
}
// Sum of numbers must be less than `length` for this to be a shorter fork
testFork(t, processor, 0, 3, full, worse)
testFork(t, processor, 0, 7, full, worse)
testFork(t, processor, 1, 1, full, worse)
testFork(t, processor, 1, 7, full, worse)
testFork(t, processor, 5, 3, full, worse)
testFork(t, processor, 5, 4, full, worse)
}
// Tests that given a starting canonical chain of a given size, creating shorter
// forks do not take canonical ownership.
func TestShorterForkHeadersAfterMerge(t *testing.T) { testShorterForkAfterMerge(t, false) }
func TestShorterForkBlocksAfterMerge(t *testing.T) { testShorterForkAfterMerge(t, true) }
func testShorterForkAfterMerge(t *testing.T, full bool) {
length := 10
// Make first chain starting from genesis
_, _, processor, err := newCanonical(ethash.NewFaker(), length, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer processor.Stop()
testInsertAfterMerge(t, processor, 0, 3, full)
testInsertAfterMerge(t, processor, 0, 7, full)
testInsertAfterMerge(t, processor, 1, 1, full)
testInsertAfterMerge(t, processor, 1, 7, full)
testInsertAfterMerge(t, processor, 5, 3, full)
testInsertAfterMerge(t, processor, 5, 4, full)
}
// Tests that given a starting canonical chain of a given size, creating longer
// forks do take canonical ownership.
func TestLongerForkHeaders(t *testing.T) { testLongerFork(t, false) }
func TestLongerForkBlocks(t *testing.T) { testLongerFork(t, true) }
func testLongerFork(t *testing.T, full bool) {
length := 10
// Make first chain starting from genesis
_, _, processor, err := newCanonical(ethash.NewFaker(), length, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer processor.Stop()
testInsertAfterMerge(t, processor, 0, 11, full)
testInsertAfterMerge(t, processor, 0, 15, full)
testInsertAfterMerge(t, processor, 1, 10, full)
testInsertAfterMerge(t, processor, 1, 12, full)
testInsertAfterMerge(t, processor, 5, 6, full)
testInsertAfterMerge(t, processor, 5, 8, full)
}
// Tests that given a starting canonical chain of a given size, creating longer
// forks do take canonical ownership.
func TestLongerForkHeadersAfterMerge(t *testing.T) { testLongerForkAfterMerge(t, false) }
func TestLongerForkBlocksAfterMerge(t *testing.T) { testLongerForkAfterMerge(t, true) }
func testLongerForkAfterMerge(t *testing.T, full bool) {
length := 10
// Make first chain starting from genesis
_, _, processor, err := newCanonical(ethash.NewFaker(), length, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer processor.Stop()
testInsertAfterMerge(t, processor, 0, 11, full)
testInsertAfterMerge(t, processor, 0, 15, full)
testInsertAfterMerge(t, processor, 1, 10, full)
testInsertAfterMerge(t, processor, 1, 12, full)
testInsertAfterMerge(t, processor, 5, 6, full)
testInsertAfterMerge(t, processor, 5, 8, full)
}
// Tests that given a starting canonical chain of a given size, creating equal
// forks do take canonical ownership.
func TestEqualForkHeaders(t *testing.T) { testEqualFork(t, false) }
func TestEqualForkBlocks(t *testing.T) { testEqualFork(t, true) }
func testEqualFork(t *testing.T, full bool) {
length := 10
// Make first chain starting from genesis
_, _, processor, err := newCanonical(ethash.NewFaker(), length, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer processor.Stop()
// Define the difficulty comparator
equal := func(td1, td2 *big.Int) {
if td2.Cmp(td1) != 0 {
t.Errorf("total difficulty mismatch: have %v, want %v", td2, td1)
}
}
// Sum of numbers must be equal to `length` for this to be an equal fork
testFork(t, processor, 0, 10, full, equal)
testFork(t, processor, 1, 9, full, equal)
testFork(t, processor, 2, 8, full, equal)
testFork(t, processor, 5, 5, full, equal)
testFork(t, processor, 6, 4, full, equal)
testFork(t, processor, 9, 1, full, equal)
}
// Tests that given a starting canonical chain of a given size, creating equal
// forks do take canonical ownership.
func TestEqualForkHeadersAfterMerge(t *testing.T) { testEqualForkAfterMerge(t, false) }
func TestEqualForkBlocksAfterMerge(t *testing.T) { testEqualForkAfterMerge(t, true) }
func testEqualForkAfterMerge(t *testing.T, full bool) {
length := 10
// Make first chain starting from genesis
_, _, processor, err := newCanonical(ethash.NewFaker(), length, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer processor.Stop()
testInsertAfterMerge(t, processor, 0, 10, full)
testInsertAfterMerge(t, processor, 1, 9, full)
testInsertAfterMerge(t, processor, 2, 8, full)
testInsertAfterMerge(t, processor, 5, 5, full)
testInsertAfterMerge(t, processor, 6, 4, full)
testInsertAfterMerge(t, processor, 9, 1, full)
}
// Tests that chains missing links do not get accepted by the processor.
func TestBrokenHeaderChain(t *testing.T) { testBrokenChain(t, false) }
func TestBrokenBlockChain(t *testing.T) { testBrokenChain(t, true) }
func testBrokenChain(t *testing.T, full bool) {
// Make chain starting from genesis
genDb, _, blockchain, err := newCanonical(ethash.NewFaker(), 10, full)
if err != nil {
t.Fatalf("failed to make new canonical chain: %v", err)
}
defer blockchain.Stop()
// Create a forked chain, and try to insert with a missing link
if full {
chain := makeBlockChain(blockchain.chainConfig, blockchain.GetBlockByHash(blockchain.CurrentBlock().Hash()), 5, ethash.NewFaker(), genDb, forkSeed)[1:]
if err := testBlockChainImport(chain, blockchain); err == nil {
t.Errorf("broken block chain not reported")
}
} else {
chain := makeHeaderChain(blockchain.chainConfig, blockchain.CurrentHeader(), 5, ethash.NewFaker(), genDb, forkSeed)[1:]
if err := testHeaderChainImport(chain, blockchain); err == nil {
t.Errorf("broken header chain not reported")
}
}
}
// Tests that reorganising a long difficult chain after a short easy one
// overwrites the canonical numbers and links in the database.
func TestReorgLongHeaders(t *testing.T) { testReorgLong(t, false) }
func TestReorgLongBlocks(t *testing.T) { testReorgLong(t, true) }
func testReorgLong(t *testing.T, full bool) {
testReorg(t, []int64{0, 0, -9}, []int64{0, 0, 0, -9}, 393280+params.GenesisDifficulty.Int64(), full)
}
// Tests that reorganising a short difficult chain after a long easy one
// overwrites the canonical numbers and links in the database.
func TestReorgShortHeaders(t *testing.T) { testReorgShort(t, false) }
func TestReorgShortBlocks(t *testing.T) { testReorgShort(t, true) }
func testReorgShort(t *testing.T, full bool) {
// Create a long easy chain vs. a short heavy one. Due to difficulty adjustment
// we need a fairly long chain of blocks with different difficulties for a short
// one to become heavier than a long one. The 96 is an empirical value.
easy := make([]int64, 96)
for i := 0; i < len(easy); i++ {
easy[i] = 60
}
diff := make([]int64, len(easy)-1)
for i := 0; i < len(diff); i++ {
diff[i] = -9
}
testReorg(t, easy, diff, 12615120+params.GenesisDifficulty.Int64(), full)
}
func testReorg(t *testing.T, first, second []int64, td int64, full bool) {
// Create a pristine chain and database
genDb, _, blockchain, err := newCanonical(ethash.NewFaker(), 0, full)
if err != nil {
t.Fatalf("failed to create pristine chain: %v", err)
}
defer blockchain.Stop()
// Insert an easy and a difficult chain afterwards
easyBlocks, _ := GenerateChain(params.TestChainConfig, blockchain.GetBlockByHash(blockchain.CurrentBlock().Hash()), ethash.NewFaker(), genDb, len(first), func(i int, b *BlockGen) {
b.OffsetTime(first[i])
})
diffBlocks, _ := GenerateChain(params.TestChainConfig, blockchain.GetBlockByHash(blockchain.CurrentBlock().Hash()), ethash.NewFaker(), genDb, len(second), func(i int, b *BlockGen) {
b.OffsetTime(second[i])
})
if full {
if _, err := blockchain.InsertChain(easyBlocks); err != nil {
t.Fatalf("failed to insert easy chain: %v", err)
}
if _, err := blockchain.InsertChain(diffBlocks); err != nil {
t.Fatalf("failed to insert difficult chain: %v", err)
}
} else {
easyHeaders := make([]*types.Header, len(easyBlocks))
for i, block := range easyBlocks {
easyHeaders[i] = block.Header()
}
diffHeaders := make([]*types.Header, len(diffBlocks))
for i, block := range diffBlocks {
diffHeaders[i] = block.Header()
}
if _, err := blockchain.InsertHeaderChain(easyHeaders, 1); err != nil {
t.Fatalf("failed to insert easy chain: %v", err)
}
if _, err := blockchain.InsertHeaderChain(diffHeaders, 1); err != nil {
t.Fatalf("failed to insert difficult chain: %v", err)
}
}
// Check that the chain is valid number and link wise
if full {
prev := blockchain.CurrentBlock()
for block := blockchain.GetBlockByNumber(blockchain.CurrentBlock().Number.Uint64() - 1); block.NumberU64() != 0; prev, block = block.Header(), blockchain.GetBlockByNumber(block.NumberU64()-1) {
if prev.ParentHash != block.Hash() {
t.Errorf("parent block hash mismatch: have %x, want %x", prev.ParentHash, block.Hash())
}
}
} else {
prev := blockchain.CurrentHeader()
for header := blockchain.GetHeaderByNumber(blockchain.CurrentHeader().Number.Uint64() - 1); header.Number.Uint64() != 0; prev, header = header, blockchain.GetHeaderByNumber(header.Number.Uint64()-1) {
if prev.ParentHash != header.Hash() {
t.Errorf("parent header hash mismatch: have %x, want %x", prev.ParentHash, header.Hash())
}
}
}
// Make sure the chain total difficulty is the correct one
want := new(big.Int).Add(blockchain.genesisBlock.Difficulty(), big.NewInt(td))
if full {
cur := blockchain.CurrentBlock()
if have := blockchain.GetTd(cur.Hash(), cur.Number.Uint64()); have.Cmp(want) != 0 {
t.Errorf("total difficulty mismatch: have %v, want %v", have, want)
}
} else {
cur := blockchain.CurrentHeader()
if have := blockchain.GetTd(cur.Hash(), cur.Number.Uint64()); have.Cmp(want) != 0 {
t.Errorf("total difficulty mismatch: have %v, want %v", have, want)
}
}
}
// Tests that the insertion functions detect banned hashes.
func TestBadHeaderHashes(t *testing.T) { testBadHashes(t, false) }
func TestBadBlockHashes(t *testing.T) { testBadHashes(t, true) }
func testBadHashes(t *testing.T, full bool) {
// Create a pristine chain and database
genDb, _, blockchain, err := newCanonical(ethash.NewFaker(), 0, full)
if err != nil {
t.Fatalf("failed to create pristine chain: %v", err)
}
defer blockchain.Stop()
// Create a chain, ban a hash and try to import
if full {
blocks := makeBlockChain(blockchain.chainConfig, blockchain.GetBlockByHash(blockchain.CurrentBlock().Hash()), 3, ethash.NewFaker(), genDb, 10)
BadHashes[blocks[2].Header().Hash()] = true
defer func() { delete(BadHashes, blocks[2].Header().Hash()) }()
_, err = blockchain.InsertChain(blocks)
} else {
headers := makeHeaderChain(blockchain.chainConfig, blockchain.CurrentHeader(), 3, ethash.NewFaker(), genDb, 10)
BadHashes[headers[2].Hash()] = true
defer func() { delete(BadHashes, headers[2].Hash()) }()
_, err = blockchain.InsertHeaderChain(headers, 1)
}
if !errors.Is(err, ErrBannedHash) {
t.Errorf("error mismatch: have: %v, want: %v", err, ErrBannedHash)
}
}
// Tests that bad hashes are detected on boot, and the chain rolled back to a
// good state prior to the bad hash.
func TestReorgBadHeaderHashes(t *testing.T) { testReorgBadHashes(t, false) }
func TestReorgBadBlockHashes(t *testing.T) { testReorgBadHashes(t, true) }
func testReorgBadHashes(t *testing.T, full bool) {
// Create a pristine chain and database
genDb, gspec, blockchain, err := newCanonical(ethash.NewFaker(), 0, full)
if err != nil {
t.Fatalf("failed to create pristine chain: %v", err)
}
// Create a chain, import and ban afterwards
headers := makeHeaderChain(blockchain.chainConfig, blockchain.CurrentHeader(), 4, ethash.NewFaker(), genDb, 10)
blocks := makeBlockChain(blockchain.chainConfig, blockchain.GetBlockByHash(blockchain.CurrentBlock().Hash()), 4, ethash.NewFaker(), genDb, 10)
if full {
if _, err = blockchain.InsertChain(blocks); err != nil {
t.Errorf("failed to import blocks: %v", err)
}
if blockchain.CurrentBlock().Hash() != blocks[3].Hash() {
t.Errorf("last block hash mismatch: have: %x, want %x", blockchain.CurrentBlock().Hash(), blocks[3].Header().Hash())
}
BadHashes[blocks[3].Header().Hash()] = true
defer func() { delete(BadHashes, blocks[3].Header().Hash()) }()
} else {
if _, err = blockchain.InsertHeaderChain(headers, 1); err != nil {
t.Errorf("failed to import headers: %v", err)
}
if blockchain.CurrentHeader().Hash() != headers[3].Hash() {
t.Errorf("last header hash mismatch: have: %x, want %x", blockchain.CurrentHeader().Hash(), headers[3].Hash())
}
BadHashes[headers[3].Hash()] = true
defer func() { delete(BadHashes, headers[3].Hash()) }()
}
blockchain.Stop()
// Create a new BlockChain and check that it rolled back the state.
ncm, err := NewBlockChain(blockchain.db, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create new chain manager: %v", err)
}
if full {
if ncm.CurrentBlock().Hash() != blocks[2].Header().Hash() {
t.Errorf("last block hash mismatch: have: %x, want %x", ncm.CurrentBlock().Hash(), blocks[2].Header().Hash())
}
if blocks[2].Header().GasLimit != ncm.GasLimit() {
t.Errorf("last block gasLimit mismatch: have: %d, want %d", ncm.GasLimit(), blocks[2].Header().GasLimit)
}
} else {
if ncm.CurrentHeader().Hash() != headers[2].Hash() {
t.Errorf("last header hash mismatch: have: %x, want %x", ncm.CurrentHeader().Hash(), headers[2].Hash())
}
}
ncm.Stop()
}
// Tests chain insertions in the face of one entity containing an invalid nonce.
func TestHeadersInsertNonceError(t *testing.T) { testInsertNonceError(t, false) }
func TestBlocksInsertNonceError(t *testing.T) { testInsertNonceError(t, true) }
func testInsertNonceError(t *testing.T, full bool) {
doTest := func(i int) {
// Create a pristine chain and database
genDb, _, blockchain, err := newCanonical(ethash.NewFaker(), 0, full)
if err != nil {
t.Fatalf("failed to create pristine chain: %v", err)
}
defer blockchain.Stop()
// Create and insert a chain with a failing nonce
var (
failAt int
failRes int
failNum uint64
)
if full {
blocks := makeBlockChain(blockchain.chainConfig, blockchain.GetBlockByHash(blockchain.CurrentBlock().Hash()), i, ethash.NewFaker(), genDb, 0)
failAt = rand.Int() % len(blocks)
failNum = blocks[failAt].NumberU64()
blockchain.engine = ethash.NewFakeFailer(failNum)
failRes, err = blockchain.InsertChain(blocks)
} else {
headers := makeHeaderChain(blockchain.chainConfig, blockchain.CurrentHeader(), i, ethash.NewFaker(), genDb, 0)
failAt = rand.Int() % len(headers)
failNum = headers[failAt].Number.Uint64()
blockchain.engine = ethash.NewFakeFailer(failNum)
blockchain.hc.engine = blockchain.engine
failRes, err = blockchain.InsertHeaderChain(headers, 1)
}
// Check that the returned error indicates the failure
if failRes != failAt {
t.Errorf("test %d: failure (%v) index mismatch: have %d, want %d", i, err, failRes, failAt)
}
// Check that all blocks after the failing block have been inserted
for j := 0; j < i-failAt; j++ {
if full {
if block := blockchain.GetBlockByNumber(failNum + uint64(j)); block != nil {
t.Errorf("test %d: invalid block in chain: %v", i, block)
}
} else {
if header := blockchain.GetHeaderByNumber(failNum + uint64(j)); header != nil {
t.Errorf("test %d: invalid header in chain: %v", i, header)
}
}
}
}
for i := 1; i < 25 && !t.Failed(); i++ {
doTest(i)
}
}
// Tests that fast importing a block chain produces the same chain data as the
// classical full block processing.
func TestFastVsFullChains(t *testing.T) {
// Configure and generate a sample block chain
var (
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000000000)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{address: {Balance: funds}},
BaseFee: big.NewInt(params.InitialBaseFee),
}
signer = types.LatestSigner(gspec.Config)
)
_, blocks, receipts := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 1024, func(i int, block *BlockGen) {
block.SetCoinbase(common.Address{0x00})
// If the block number is multiple of 3, send a few bonus transactions to the miner
if i%3 == 2 {
for j := 0; j < i%4+1; j++ {
tx, err := types.SignTx(types.NewTransaction(block.TxNonce(address), common.Address{0x00}, big.NewInt(1000), params.TxGas, block.header.BaseFee, nil), signer, key)
if err != nil {
panic(err)
}
block.AddTx(tx)
}
}
// If the block number is a multiple of 5, add an uncle to the block
if i%5 == 4 {
block.AddUncle(&types.Header{ParentHash: block.PrevBlock(i - 2).Hash(), Number: big.NewInt(int64(i))})
}
})
// Import the chain as an archive node for the comparison baseline
archiveDb := rawdb.NewMemoryDatabase()
archive, _ := NewBlockChain(archiveDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer archive.Stop()
if n, err := archive.InsertChain(blocks); err != nil {
t.Fatalf("failed to process block %d: %v", n, err)
}
// Fast import the chain as a non-archive node to test
fastDb := rawdb.NewMemoryDatabase()
fast, _ := NewBlockChain(fastDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer fast.Stop()
headers := make([]*types.Header, len(blocks))
for i, block := range blocks {
headers[i] = block.Header()
}
if n, err := fast.InsertHeaderChain(headers, 1); err != nil {
t.Fatalf("failed to insert header %d: %v", n, err)
}
if n, err := fast.InsertReceiptChain(blocks, receipts, 0); err != nil {
t.Fatalf("failed to insert receipt %d: %v", n, err)
}
// Freezer style fast import the chain.
ancientDb, err := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), t.TempDir(), "", false)
if err != nil {
t.Fatalf("failed to create temp freezer db: %v", err)
}
defer ancientDb.Close()
ancient, _ := NewBlockChain(ancientDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer ancient.Stop()
if n, err := ancient.InsertHeaderChain(headers, 1); err != nil {
t.Fatalf("failed to insert header %d: %v", n, err)
}
if n, err := ancient.InsertReceiptChain(blocks, receipts, uint64(len(blocks)/2)); err != nil {
t.Fatalf("failed to insert receipt %d: %v", n, err)
}
// Iterate over all chain data components, and cross reference
for i := 0; i < len(blocks); i++ {
num, hash := blocks[i].NumberU64(), blocks[i].Hash()
if ftd, atd := fast.GetTd(hash, num), archive.GetTd(hash, num); ftd.Cmp(atd) != 0 {
t.Errorf("block #%d [%x]: td mismatch: fastdb %v, archivedb %v", num, hash, ftd, atd)
}
if antd, artd := ancient.GetTd(hash, num), archive.GetTd(hash, num); antd.Cmp(artd) != 0 {
t.Errorf("block #%d [%x]: td mismatch: ancientdb %v, archivedb %v", num, hash, antd, artd)
}
if fheader, aheader := fast.GetHeaderByHash(hash), archive.GetHeaderByHash(hash); fheader.Hash() != aheader.Hash() {
t.Errorf("block #%d [%x]: header mismatch: fastdb %v, archivedb %v", num, hash, fheader, aheader)
}
if anheader, arheader := ancient.GetHeaderByHash(hash), archive.GetHeaderByHash(hash); anheader.Hash() != arheader.Hash() {
t.Errorf("block #%d [%x]: header mismatch: ancientdb %v, archivedb %v", num, hash, anheader, arheader)
}
if fblock, arblock, anblock := fast.GetBlockByHash(hash), archive.GetBlockByHash(hash), ancient.GetBlockByHash(hash); fblock.Hash() != arblock.Hash() || anblock.Hash() != arblock.Hash() {
t.Errorf("block #%d [%x]: block mismatch: fastdb %v, ancientdb %v, archivedb %v", num, hash, fblock, anblock, arblock)
} else if types.DeriveSha(fblock.Transactions(), trie.NewStackTrie(nil)) != types.DeriveSha(arblock.Transactions(), trie.NewStackTrie(nil)) || types.DeriveSha(anblock.Transactions(), trie.NewStackTrie(nil)) != types.DeriveSha(arblock.Transactions(), trie.NewStackTrie(nil)) {
t.Errorf("block #%d [%x]: transactions mismatch: fastdb %v, ancientdb %v, archivedb %v", num, hash, fblock.Transactions(), anblock.Transactions(), arblock.Transactions())
} else if types.CalcUncleHash(fblock.Uncles()) != types.CalcUncleHash(arblock.Uncles()) || types.CalcUncleHash(anblock.Uncles()) != types.CalcUncleHash(arblock.Uncles()) {
t.Errorf("block #%d [%x]: uncles mismatch: fastdb %v, ancientdb %v, archivedb %v", num, hash, fblock.Uncles(), anblock, arblock.Uncles())
}
// Check receipts.
freceipts := rawdb.ReadReceipts(fastDb, hash, num, fast.Config())
anreceipts := rawdb.ReadReceipts(ancientDb, hash, num, fast.Config())
areceipts := rawdb.ReadReceipts(archiveDb, hash, num, fast.Config())
if types.DeriveSha(freceipts, trie.NewStackTrie(nil)) != types.DeriveSha(areceipts, trie.NewStackTrie(nil)) {
t.Errorf("block #%d [%x]: receipts mismatch: fastdb %v, ancientdb %v, archivedb %v", num, hash, freceipts, anreceipts, areceipts)
}
// Check that hash-to-number mappings are present in all databases.
if m := rawdb.ReadHeaderNumber(fastDb, hash); m == nil || *m != num {
t.Errorf("block #%d [%x]: wrong hash-to-number mapping in fastdb: %v", num, hash, m)
}
if m := rawdb.ReadHeaderNumber(ancientDb, hash); m == nil || *m != num {
t.Errorf("block #%d [%x]: wrong hash-to-number mapping in ancientdb: %v", num, hash, m)
}
if m := rawdb.ReadHeaderNumber(archiveDb, hash); m == nil || *m != num {
t.Errorf("block #%d [%x]: wrong hash-to-number mapping in archivedb: %v", num, hash, m)
}
}
// Check that the canonical chains are the same between the databases
for i := 0; i < len(blocks)+1; i++ {
if fhash, ahash := rawdb.ReadCanonicalHash(fastDb, uint64(i)), rawdb.ReadCanonicalHash(archiveDb, uint64(i)); fhash != ahash {
t.Errorf("block #%d: canonical hash mismatch: fastdb %v, archivedb %v", i, fhash, ahash)
}
if anhash, arhash := rawdb.ReadCanonicalHash(ancientDb, uint64(i)), rawdb.ReadCanonicalHash(archiveDb, uint64(i)); anhash != arhash {
t.Errorf("block #%d: canonical hash mismatch: ancientdb %v, archivedb %v", i, anhash, arhash)
}
}
}
// Tests that various import methods move the chain head pointers to the correct
// positions.
func TestLightVsFastVsFullChainHeads(t *testing.T) {
// Configure and generate a sample block chain
var (
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000000000)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{address: {Balance: funds}},
BaseFee: big.NewInt(params.InitialBaseFee),
}
)
height := uint64(1024)
_, blocks, receipts := GenerateChainWithGenesis(gspec, ethash.NewFaker(), int(height), nil)
// makeDb creates a db instance for testing.
makeDb := func() ethdb.Database {
db, err := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), t.TempDir(), "", false)
if err != nil {
t.Fatalf("failed to create temp freezer db: %v", err)
}
return db
}
// Configure a subchain to roll back
remove := blocks[height/2].NumberU64()
// Create a small assertion method to check the three heads
assert := func(t *testing.T, kind string, chain *BlockChain, header uint64, fast uint64, block uint64) {
t.Helper()
if num := chain.CurrentBlock().Number.Uint64(); num != block {
t.Errorf("%s head block mismatch: have #%v, want #%v", kind, num, block)
}
if num := chain.CurrentSnapBlock().Number.Uint64(); num != fast {
t.Errorf("%s head snap-block mismatch: have #%v, want #%v", kind, num, fast)
}
if num := chain.CurrentHeader().Number.Uint64(); num != header {
t.Errorf("%s head header mismatch: have #%v, want #%v", kind, num, header)
}
}
// Import the chain as an archive node and ensure all pointers are updated
archiveDb := makeDb()
defer archiveDb.Close()
archiveCaching := *DefaultCacheConfig
archiveCaching.TrieDirtyDisabled = true
archive, _ := NewBlockChain(archiveDb, &archiveCaching, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
if n, err := archive.InsertChain(blocks); err != nil {
t.Fatalf("failed to process block %d: %v", n, err)
}
defer archive.Stop()
assert(t, "archive", archive, height, height, height)
archive.SetHead(remove - 1)
assert(t, "archive", archive, height/2, height/2, height/2)
// Import the chain as a non-archive node and ensure all pointers are updated
fastDb := makeDb()
defer fastDb.Close()
fast, _ := NewBlockChain(fastDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer fast.Stop()
headers := make([]*types.Header, len(blocks))
for i, block := range blocks {
headers[i] = block.Header()
}
if n, err := fast.InsertHeaderChain(headers, 1); err != nil {
t.Fatalf("failed to insert header %d: %v", n, err)
}
if n, err := fast.InsertReceiptChain(blocks, receipts, 0); err != nil {
t.Fatalf("failed to insert receipt %d: %v", n, err)
}
assert(t, "fast", fast, height, height, 0)
fast.SetHead(remove - 1)
assert(t, "fast", fast, height/2, height/2, 0)
// Import the chain as a ancient-first node and ensure all pointers are updated
ancientDb := makeDb()
defer ancientDb.Close()
ancient, _ := NewBlockChain(ancientDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer ancient.Stop()
if n, err := ancient.InsertHeaderChain(headers, 1); err != nil {
t.Fatalf("failed to insert header %d: %v", n, err)
}
if n, err := ancient.InsertReceiptChain(blocks, receipts, uint64(3*len(blocks)/4)); err != nil {
t.Fatalf("failed to insert receipt %d: %v", n, err)
}
assert(t, "ancient", ancient, height, height, 0)
ancient.SetHead(remove - 1)
assert(t, "ancient", ancient, 0, 0, 0)
if frozen, err := ancientDb.Ancients(); err != nil || frozen != 1 {
t.Fatalf("failed to truncate ancient store, want %v, have %v", 1, frozen)
}
// Import the chain as a light node and ensure all pointers are updated
lightDb := makeDb()
defer lightDb.Close()
light, _ := NewBlockChain(lightDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
if n, err := light.InsertHeaderChain(headers, 1); err != nil {
t.Fatalf("failed to insert header %d: %v", n, err)
}
defer light.Stop()
assert(t, "light", light, height, 0, 0)
light.SetHead(remove - 1)
assert(t, "light", light, height/2, 0, 0)
}
// Tests that chain reorganisations handle transaction removals and reinsertions.
func TestChainTxReorgs(t *testing.T) {
var (
key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
key2, _ = crypto.HexToECDSA("8a1f9a8f95be41cd7ccb6168179afb4504aefe388d1e14474d32c45c72ce7b7a")
key3, _ = crypto.HexToECDSA("49a7b37aa6f6645917e7b807e9d1c00d4fa71f18343b0d4122a4d2df64dd6fee")
addr1 = crypto.PubkeyToAddress(key1.PublicKey)
addr2 = crypto.PubkeyToAddress(key2.PublicKey)
addr3 = crypto.PubkeyToAddress(key3.PublicKey)
gspec = &Genesis{
Config: params.TestChainConfig,
GasLimit: 3141592,
Alloc: GenesisAlloc{
addr1: {Balance: big.NewInt(1000000000000000)},
addr2: {Balance: big.NewInt(1000000000000000)},
addr3: {Balance: big.NewInt(1000000000000000)},
},
}
signer = types.LatestSigner(gspec.Config)
)
// Create two transactions shared between the chains:
// - postponed: transaction included at a later block in the forked chain
// - swapped: transaction included at the same block number in the forked chain
postponed, _ := types.SignTx(types.NewTransaction(0, addr1, big.NewInt(1000), params.TxGas, big.NewInt(params.InitialBaseFee), nil), signer, key1)
swapped, _ := types.SignTx(types.NewTransaction(1, addr1, big.NewInt(1000), params.TxGas, big.NewInt(params.InitialBaseFee), nil), signer, key1)
// Create two transactions that will be dropped by the forked chain:
// - pastDrop: transaction dropped retroactively from a past block
// - freshDrop: transaction dropped exactly at the block where the reorg is detected
var pastDrop, freshDrop *types.Transaction
// Create three transactions that will be added in the forked chain:
// - pastAdd: transaction added before the reorganization is detected
// - freshAdd: transaction added at the exact block the reorg is detected
// - futureAdd: transaction added after the reorg has already finished
var pastAdd, freshAdd, futureAdd *types.Transaction
_, chain, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 3, func(i int, gen *BlockGen) {
switch i {
case 0:
pastDrop, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr2), addr2, big.NewInt(1000), params.TxGas, gen.header.BaseFee, nil), signer, key2)
gen.AddTx(pastDrop) // This transaction will be dropped in the fork from below the split point
gen.AddTx(postponed) // This transaction will be postponed till block #3 in the fork
case 2:
freshDrop, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr2), addr2, big.NewInt(1000), params.TxGas, gen.header.BaseFee, nil), signer, key2)
gen.AddTx(freshDrop) // This transaction will be dropped in the fork from exactly at the split point
gen.AddTx(swapped) // This transaction will be swapped out at the exact height
gen.OffsetTime(9) // Lower the block difficulty to simulate a weaker chain
}
})
// Import the chain. This runs all block validation rules.
db := rawdb.NewMemoryDatabase()
blockchain, _ := NewBlockChain(db, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
if i, err := blockchain.InsertChain(chain); err != nil {
t.Fatalf("failed to insert original chain[%d]: %v", i, err)
}
defer blockchain.Stop()
// overwrite the old chain
_, chain, _ = GenerateChainWithGenesis(gspec, ethash.NewFaker(), 5, func(i int, gen *BlockGen) {
switch i {
case 0:
pastAdd, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr3), addr3, big.NewInt(1000), params.TxGas, gen.header.BaseFee, nil), signer, key3)
gen.AddTx(pastAdd) // This transaction needs to be injected during reorg
case 2:
gen.AddTx(postponed) // This transaction was postponed from block #1 in the original chain
gen.AddTx(swapped) // This transaction was swapped from the exact current spot in the original chain
freshAdd, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr3), addr3, big.NewInt(1000), params.TxGas, gen.header.BaseFee, nil), signer, key3)
gen.AddTx(freshAdd) // This transaction will be added exactly at reorg time
case 3:
futureAdd, _ = types.SignTx(types.NewTransaction(gen.TxNonce(addr3), addr3, big.NewInt(1000), params.TxGas, gen.header.BaseFee, nil), signer, key3)
gen.AddTx(futureAdd) // This transaction will be added after a full reorg
}
})
if _, err := blockchain.InsertChain(chain); err != nil {
t.Fatalf("failed to insert forked chain: %v", err)
}
// removed tx
for i, tx := range (types.Transactions{pastDrop, freshDrop}) {
if txn, _, _, _ := rawdb.ReadTransaction(db, tx.Hash()); txn != nil {
t.Errorf("drop %d: tx %v found while shouldn't have been", i, txn)
}
if rcpt, _, _, _ := rawdb.ReadReceipt(db, tx.Hash(), blockchain.Config()); rcpt != nil {
t.Errorf("drop %d: receipt %v found while shouldn't have been", i, rcpt)
}
}
// added tx
for i, tx := range (types.Transactions{pastAdd, freshAdd, futureAdd}) {
if txn, _, _, _ := rawdb.ReadTransaction(db, tx.Hash()); txn == nil {
t.Errorf("add %d: expected tx to be found", i)
}
if rcpt, _, _, _ := rawdb.ReadReceipt(db, tx.Hash(), blockchain.Config()); rcpt == nil {
t.Errorf("add %d: expected receipt to be found", i)
}
}
// shared tx
for i, tx := range (types.Transactions{postponed, swapped}) {
if txn, _, _, _ := rawdb.ReadTransaction(db, tx.Hash()); txn == nil {
t.Errorf("share %d: expected tx to be found", i)
}
if rcpt, _, _, _ := rawdb.ReadReceipt(db, tx.Hash(), blockchain.Config()); rcpt == nil {
t.Errorf("share %d: expected receipt to be found", i)
}
}
}
func TestLogReorgs(t *testing.T) {
var (
key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
addr1 = crypto.PubkeyToAddress(key1.PublicKey)
// this code generates a log
code = common.Hex2Bytes("60606040525b7f24ec1d3ff24c2f6ff210738839dbc339cd45a5294d85c79361016243157aae7b60405180905060405180910390a15b600a8060416000396000f360606040526008565b00")
gspec = &Genesis{Config: params.TestChainConfig, Alloc: GenesisAlloc{addr1: {Balance: big.NewInt(10000000000000000)}}}
signer = types.LatestSigner(gspec.Config)
)
blockchain, _ := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer blockchain.Stop()
rmLogsCh := make(chan RemovedLogsEvent)
blockchain.SubscribeRemovedLogsEvent(rmLogsCh)
_, chain, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 2, func(i int, gen *BlockGen) {
if i == 1 {
tx, err := types.SignTx(types.NewContractCreation(gen.TxNonce(addr1), new(big.Int), 1000000, gen.header.BaseFee, code), signer, key1)
if err != nil {
t.Fatalf("failed to create tx: %v", err)
}
gen.AddTx(tx)
}
})
if _, err := blockchain.InsertChain(chain); err != nil {
t.Fatalf("failed to insert chain: %v", err)
}
_, chain, _ = GenerateChainWithGenesis(gspec, ethash.NewFaker(), 3, func(i int, gen *BlockGen) {})
done := make(chan struct{})
go func() {
ev := <-rmLogsCh
if len(ev.Logs) == 0 {
t.Error("expected logs")
}
close(done)
}()
if _, err := blockchain.InsertChain(chain); err != nil {
t.Fatalf("failed to insert forked chain: %v", err)
}
timeout := time.NewTimer(1 * time.Second)
defer timeout.Stop()
select {
case <-done:
case <-timeout.C:
t.Fatal("Timeout. There is no RemovedLogsEvent has been sent.")
}
}
// This EVM code generates a log when the contract is created.
var logCode = common.Hex2Bytes("60606040525b7f24ec1d3ff24c2f6ff210738839dbc339cd45a5294d85c79361016243157aae7b60405180905060405180910390a15b600a8060416000396000f360606040526008565b00")
// This test checks that log events and RemovedLogsEvent are sent
// when the chain reorganizes.
func TestLogRebirth(t *testing.T) {
var (
key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
addr1 = crypto.PubkeyToAddress(key1.PublicKey)
gspec = &Genesis{Config: params.TestChainConfig, Alloc: GenesisAlloc{addr1: {Balance: big.NewInt(10000000000000000)}}}
signer = types.LatestSigner(gspec.Config)
engine = ethash.NewFaker()
blockchain, _ = NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{}, nil, nil, nil)
)
defer blockchain.Stop()
// The event channels.
newLogCh := make(chan []*types.Log, 10)
rmLogsCh := make(chan RemovedLogsEvent, 10)
blockchain.SubscribeLogsEvent(newLogCh)
blockchain.SubscribeRemovedLogsEvent(rmLogsCh)
// This chain contains 10 logs.
genDb, chain, _ := GenerateChainWithGenesis(gspec, engine, 3, func(i int, gen *BlockGen) {
if i < 2 {
for ii := 0; ii < 5; ii++ {
tx, err := types.SignNewTx(key1, signer, &types.LegacyTx{
Nonce: gen.TxNonce(addr1),
GasPrice: gen.header.BaseFee,
Gas: uint64(1000001),
Data: logCode,
})
if err != nil {
t.Fatalf("failed to create tx: %v", err)
}
gen.AddTx(tx)
}
}
})
if _, err := blockchain.InsertChain(chain); err != nil {
t.Fatalf("failed to insert chain: %v", err)
}
checkLogEvents(t, newLogCh, rmLogsCh, 10, 0)
// Generate long reorg chain containing more logs. Inserting the
// chain removes one log and adds four.
_, forkChain, _ := GenerateChainWithGenesis(gspec, engine, 3, func(i int, gen *BlockGen) {
if i == 2 {
// The last (head) block is not part of the reorg-chain, we can ignore it
return
}
for ii := 0; ii < 5; ii++ {
tx, err := types.SignNewTx(key1, signer, &types.LegacyTx{
Nonce: gen.TxNonce(addr1),
GasPrice: gen.header.BaseFee,
Gas: uint64(1000000),
Data: logCode,
})
if err != nil {
t.Fatalf("failed to create tx: %v", err)
}
gen.AddTx(tx)
}
gen.OffsetTime(-9) // higher block difficulty
})
if _, err := blockchain.InsertChain(forkChain); err != nil {
t.Fatalf("failed to insert forked chain: %v", err)
}
checkLogEvents(t, newLogCh, rmLogsCh, 10, 10)
// This chain segment is rooted in the original chain, but doesn't contain any logs.
// When inserting it, the canonical chain switches away from forkChain and re-emits
// the log event for the old chain, as well as a RemovedLogsEvent for forkChain.
newBlocks, _ := GenerateChain(gspec.Config, chain[len(chain)-1], engine, genDb, 1, func(i int, gen *BlockGen) {})
if _, err := blockchain.InsertChain(newBlocks); err != nil {
t.Fatalf("failed to insert forked chain: %v", err)
}
checkLogEvents(t, newLogCh, rmLogsCh, 10, 10)
}
// This test is a variation of TestLogRebirth. It verifies that log events are emitted
// when a side chain containing log events overtakes the canonical chain.
func TestSideLogRebirth(t *testing.T) {
var (
key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
addr1 = crypto.PubkeyToAddress(key1.PublicKey)
gspec = &Genesis{Config: params.TestChainConfig, Alloc: GenesisAlloc{addr1: {Balance: big.NewInt(10000000000000000)}}}
signer = types.LatestSigner(gspec.Config)
blockchain, _ = NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
)
defer blockchain.Stop()
newLogCh := make(chan []*types.Log, 10)
rmLogsCh := make(chan RemovedLogsEvent, 10)
blockchain.SubscribeLogsEvent(newLogCh)
blockchain.SubscribeRemovedLogsEvent(rmLogsCh)
_, chain, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 2, func(i int, gen *BlockGen) {
if i == 1 {
gen.OffsetTime(-9) // higher block difficulty
}
})
if _, err := blockchain.InsertChain(chain); err != nil {
t.Fatalf("failed to insert forked chain: %v", err)
}
checkLogEvents(t, newLogCh, rmLogsCh, 0, 0)
// Generate side chain with lower difficulty
genDb, sideChain, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 2, func(i int, gen *BlockGen) {
if i == 1 {
tx, err := types.SignTx(types.NewContractCreation(gen.TxNonce(addr1), new(big.Int), 1000000, gen.header.BaseFee, logCode), signer, key1)
if err != nil {
t.Fatalf("failed to create tx: %v", err)
}
gen.AddTx(tx)
}
})
if _, err := blockchain.InsertChain(sideChain); err != nil {
t.Fatalf("failed to insert forked chain: %v", err)
}
checkLogEvents(t, newLogCh, rmLogsCh, 0, 0)
// Generate a new block based on side chain.
newBlocks, _ := GenerateChain(gspec.Config, sideChain[len(sideChain)-1], ethash.NewFaker(), genDb, 1, func(i int, gen *BlockGen) {})
if _, err := blockchain.InsertChain(newBlocks); err != nil {
t.Fatalf("failed to insert forked chain: %v", err)
}
checkLogEvents(t, newLogCh, rmLogsCh, 1, 0)
}
func checkLogEvents(t *testing.T, logsCh <-chan []*types.Log, rmLogsCh <-chan RemovedLogsEvent, wantNew, wantRemoved int) {
t.Helper()
var (
countNew int
countRm int
prev int
)
// Drain events.
for len(logsCh) > 0 {
x := <-logsCh
countNew += len(x)
for _, log := range x {
// We expect added logs to be in ascending order: 0:0, 0:1, 1:0 ...
have := 100*int(log.BlockNumber) + int(log.TxIndex)
if have < prev {
t.Fatalf("Expected new logs to arrive in ascending order (%d < %d)", have, prev)
}
prev = have
}
}
prev = 0
for len(rmLogsCh) > 0 {
x := <-rmLogsCh
countRm += len(x.Logs)
for _, log := range x.Logs {
// We expect removed logs to be in ascending order: 0:0, 0:1, 1:0 ...
have := 100*int(log.BlockNumber) + int(log.TxIndex)
if have < prev {
t.Fatalf("Expected removed logs to arrive in ascending order (%d < %d)", have, prev)
}
prev = have
}
}
if countNew != wantNew {
t.Fatalf("wrong number of log events: got %d, want %d", countNew, wantNew)
}
if countRm != wantRemoved {
t.Fatalf("wrong number of removed log events: got %d, want %d", countRm, wantRemoved)
}
}
func TestReorgSideEvent(t *testing.T) {
var (
key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
addr1 = crypto.PubkeyToAddress(key1.PublicKey)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{addr1: {Balance: big.NewInt(10000000000000000)}},
}
signer = types.LatestSigner(gspec.Config)
)
blockchain, _ := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer blockchain.Stop()
_, chain, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 3, func(i int, gen *BlockGen) {})
if _, err := blockchain.InsertChain(chain); err != nil {
t.Fatalf("failed to insert chain: %v", err)
}
_, replacementBlocks, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 4, func(i int, gen *BlockGen) {
tx, err := types.SignTx(types.NewContractCreation(gen.TxNonce(addr1), new(big.Int), 1000000, gen.header.BaseFee, nil), signer, key1)
if i == 2 {
gen.OffsetTime(-9)
}
if err != nil {
t.Fatalf("failed to create tx: %v", err)
}
gen.AddTx(tx)
})
chainSideCh := make(chan ChainSideEvent, 64)
blockchain.SubscribeChainSideEvent(chainSideCh)
if _, err := blockchain.InsertChain(replacementBlocks); err != nil {
t.Fatalf("failed to insert chain: %v", err)
}
// first two block of the secondary chain are for a brief moment considered
// side chains because up to that point the first one is considered the
// heavier chain.
expectedSideHashes := map[common.Hash]bool{
replacementBlocks[0].Hash(): true,
replacementBlocks[1].Hash(): true,
chain[0].Hash(): true,
chain[1].Hash(): true,
chain[2].Hash(): true,
}
i := 0
const timeoutDura = 10 * time.Second
timeout := time.NewTimer(timeoutDura)
done:
for {
select {
case ev := <-chainSideCh:
block := ev.Block
if _, ok := expectedSideHashes[block.Hash()]; !ok {
t.Errorf("%d: didn't expect %x to be in side chain", i, block.Hash())
}
i++
if i == len(expectedSideHashes) {
timeout.Stop()
break done
}
timeout.Reset(timeoutDura)
case <-timeout.C:
t.Fatal("Timeout. Possibly not all blocks were triggered for sideevent")
}
}
// make sure no more events are fired
select {
case e := <-chainSideCh:
t.Errorf("unexpected event fired: %v", e)
case <-time.After(250 * time.Millisecond):
}
}
// Tests if the canonical block can be fetched from the database during chain insertion.
func TestCanonicalBlockRetrieval(t *testing.T) {
_, gspec, blockchain, err := newCanonical(ethash.NewFaker(), 0, true)
if err != nil {
t.Fatalf("failed to create pristine chain: %v", err)
}
defer blockchain.Stop()
_, chain, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 10, func(i int, gen *BlockGen) {})
var pend sync.WaitGroup
pend.Add(len(chain))
for i := range chain {
go func(block *types.Block) {
defer pend.Done()
// try to retrieve a block by its canonical hash and see if the block data can be retrieved.
for {
ch := rawdb.ReadCanonicalHash(blockchain.db, block.NumberU64())
if ch == (common.Hash{}) {
continue // busy wait for canonical hash to be written
}
if ch != block.Hash() {
t.Errorf("unknown canonical hash, want %s, got %s", block.Hash().Hex(), ch.Hex())
return
}
fb := rawdb.ReadBlock(blockchain.db, ch, block.NumberU64())
if fb == nil {
t.Errorf("unable to retrieve block %d for canonical hash: %s", block.NumberU64(), ch.Hex())
return
}
if fb.Hash() != block.Hash() {
t.Errorf("invalid block hash for block %d, want %s, got %s", block.NumberU64(), block.Hash().Hex(), fb.Hash().Hex())
return
}
return
}
}(chain[i])
if _, err := blockchain.InsertChain(types.Blocks{chain[i]}); err != nil {
t.Fatalf("failed to insert block %d: %v", i, err)
}
}
pend.Wait()
}
func TestEIP155Transition(t *testing.T) {
// Configure and generate a sample block chain
var (
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000)
deleteAddr = common.Address{1}
gspec = &Genesis{
Config: &params.ChainConfig{
ChainID: big.NewInt(1),
EIP150Block: big.NewInt(0),
EIP155Block: big.NewInt(2),
HomesteadBlock: new(big.Int),
},
Alloc: GenesisAlloc{address: {Balance: funds}, deleteAddr: {Balance: new(big.Int)}},
}
)
genDb, blocks, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 4, func(i int, block *BlockGen) {
var (
tx *types.Transaction
err error
basicTx = func(signer types.Signer) (*types.Transaction, error) {
return types.SignTx(types.NewTransaction(block.TxNonce(address), common.Address{}, new(big.Int), 21000, new(big.Int), nil), signer, key)
}
)
switch i {
case 0:
tx, err = basicTx(types.HomesteadSigner{})
if err != nil {
t.Fatal(err)
}
block.AddTx(tx)
case 2:
tx, err = basicTx(types.HomesteadSigner{})
if err != nil {
t.Fatal(err)
}
block.AddTx(tx)
tx, err = basicTx(types.LatestSigner(gspec.Config))
if err != nil {
t.Fatal(err)
}
block.AddTx(tx)
case 3:
tx, err = basicTx(types.HomesteadSigner{})
if err != nil {
t.Fatal(err)
}
block.AddTx(tx)
tx, err = basicTx(types.LatestSigner(gspec.Config))
if err != nil {
t.Fatal(err)
}
block.AddTx(tx)
}
})
blockchain, _ := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer blockchain.Stop()
if _, err := blockchain.InsertChain(blocks); err != nil {
t.Fatal(err)
}
block := blockchain.GetBlockByNumber(1)
if block.Transactions()[0].Protected() {
t.Error("Expected block[0].txs[0] to not be replay protected")
}
block = blockchain.GetBlockByNumber(3)
if block.Transactions()[0].Protected() {
t.Error("Expected block[3].txs[0] to not be replay protected")
}
if !block.Transactions()[1].Protected() {
t.Error("Expected block[3].txs[1] to be replay protected")
}
if _, err := blockchain.InsertChain(blocks[4:]); err != nil {
t.Fatal(err)
}
// generate an invalid chain id transaction
config := &params.ChainConfig{
ChainID: big.NewInt(2),
EIP150Block: big.NewInt(0),
EIP155Block: big.NewInt(2),
HomesteadBlock: new(big.Int),
}
blocks, _ = GenerateChain(config, blocks[len(blocks)-1], ethash.NewFaker(), genDb, 4, func(i int, block *BlockGen) {
var (
tx *types.Transaction
err error
basicTx = func(signer types.Signer) (*types.Transaction, error) {
return types.SignTx(types.NewTransaction(block.TxNonce(address), common.Address{}, new(big.Int), 21000, new(big.Int), nil), signer, key)
}
)
if i == 0 {
tx, err = basicTx(types.LatestSigner(config))
if err != nil {
t.Fatal(err)
}
block.AddTx(tx)
}
})
_, err := blockchain.InsertChain(blocks)
if have, want := err, types.ErrInvalidChainId; !errors.Is(have, want) {
t.Errorf("have %v, want %v", have, want)
}
}
func TestEIP161AccountRemoval(t *testing.T) {
// Configure and generate a sample block chain
var (
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000)
theAddr = common.Address{1}
gspec = &Genesis{
Config: &params.ChainConfig{
ChainID: big.NewInt(1),
HomesteadBlock: new(big.Int),
EIP155Block: new(big.Int),
EIP150Block: new(big.Int),
EIP158Block: big.NewInt(2),
},
Alloc: GenesisAlloc{address: {Balance: funds}},
}
)
_, blocks, _ := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 3, func(i int, block *BlockGen) {
var (
tx *types.Transaction
err error
signer = types.LatestSigner(gspec.Config)
)
switch i {
case 0:
tx, err = types.SignTx(types.NewTransaction(block.TxNonce(address), theAddr, new(big.Int), 21000, new(big.Int), nil), signer, key)
case 1:
tx, err = types.SignTx(types.NewTransaction(block.TxNonce(address), theAddr, new(big.Int), 21000, new(big.Int), nil), signer, key)
case 2:
tx, err = types.SignTx(types.NewTransaction(block.TxNonce(address), theAddr, new(big.Int), 21000, new(big.Int), nil), signer, key)
}
if err != nil {
t.Fatal(err)
}
block.AddTx(tx)
})
// account must exist pre eip 161
blockchain, _ := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer blockchain.Stop()
if _, err := blockchain.InsertChain(types.Blocks{blocks[0]}); err != nil {
t.Fatal(err)
}
if st, _ := blockchain.State(); !st.Exist(theAddr) {
t.Error("expected account to exist")
}
// account needs to be deleted post eip 161
if _, err := blockchain.InsertChain(types.Blocks{blocks[1]}); err != nil {
t.Fatal(err)
}
if st, _ := blockchain.State(); st.Exist(theAddr) {
t.Error("account should not exist")
}
// account mustn't be created post eip 161
if _, err := blockchain.InsertChain(types.Blocks{blocks[2]}); err != nil {
t.Fatal(err)
}
if st, _ := blockchain.State(); st.Exist(theAddr) {
t.Error("account should not exist")
}
}
// This is a regression test (i.e. as weird as it is, don't delete it ever), which
// tests that under weird reorg conditions the blockchain and its internal header-
// chain return the same latest block/header.
//
// https://github.com/ethereum/go-ethereum/pull/15941
func TestBlockchainHeaderchainReorgConsistency(t *testing.T) {
// Generate a canonical chain to act as the main dataset
engine := ethash.NewFaker()
genesis := &Genesis{
Config: params.TestChainConfig,
BaseFee: big.NewInt(params.InitialBaseFee),
}
genDb, blocks, _ := GenerateChainWithGenesis(genesis, engine, 64, func(i int, b *BlockGen) { b.SetCoinbase(common.Address{1}) })
// Generate a bunch of fork blocks, each side forking from the canonical chain
forks := make([]*types.Block, len(blocks))
for i := 0; i < len(forks); i++ {
parent := genesis.ToBlock()
if i > 0 {
parent = blocks[i-1]
}
fork, _ := GenerateChain(genesis.Config, parent, engine, genDb, 1, func(i int, b *BlockGen) { b.SetCoinbase(common.Address{2}) })
forks[i] = fork[0]
}
// Import the canonical and fork chain side by side, verifying the current block
// and current header consistency
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
for i := 0; i < len(blocks); i++ {
if _, err := chain.InsertChain(blocks[i : i+1]); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", i, err)
}
if chain.CurrentBlock().Hash() != chain.CurrentHeader().Hash() {
t.Errorf("block %d: current block/header mismatch: block #%d [%x..], header #%d [%x..]", i, chain.CurrentBlock().Number, chain.CurrentBlock().Hash().Bytes()[:4], chain.CurrentHeader().Number, chain.CurrentHeader().Hash().Bytes()[:4])
}
if _, err := chain.InsertChain(forks[i : i+1]); err != nil {
t.Fatalf(" fork %d: failed to insert into chain: %v", i, err)
}
if chain.CurrentBlock().Hash() != chain.CurrentHeader().Hash() {
t.Errorf(" fork %d: current block/header mismatch: block #%d [%x..], header #%d [%x..]", i, chain.CurrentBlock().Number, chain.CurrentBlock().Hash().Bytes()[:4], chain.CurrentHeader().Number, chain.CurrentHeader().Hash().Bytes()[:4])
}
}
}
// Tests that importing small side forks doesn't leave junk in the trie database
// cache (which would eventually cause memory issues).
func TestTrieForkGC(t *testing.T) {
// Generate a canonical chain to act as the main dataset
engine := ethash.NewFaker()
genesis := &Genesis{
Config: params.TestChainConfig,
BaseFee: big.NewInt(params.InitialBaseFee),
}
genDb, blocks, _ := GenerateChainWithGenesis(genesis, engine, 2*int(DefaultCacheConfig.TriesInMemory), func(i int, b *BlockGen) { b.SetCoinbase(common.Address{1}) })
// Generate a bunch of fork blocks, each side forking from the canonical chain
forks := make([]*types.Block, len(blocks))
for i := 0; i < len(forks); i++ {
parent := genesis.ToBlock()
if i > 0 {
parent = blocks[i-1]
}
fork, _ := GenerateChain(genesis.Config, parent, engine, genDb, 1, func(i int, b *BlockGen) { b.SetCoinbase(common.Address{2}) })
forks[i] = fork[0]
}
// Import the canonical and fork chain side by side, forcing the trie cache to cache both
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
for i := 0; i < len(blocks); i++ {
if _, err := chain.InsertChain(blocks[i : i+1]); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", i, err)
}
if _, err := chain.InsertChain(forks[i : i+1]); err != nil {
t.Fatalf("fork %d: failed to insert into chain: %v", i, err)
}
}
// Dereference all the recent tries and ensure no past trie is left in
for i := 0; i < int(chain.cacheConfig.TriesInMemory); i++ {
chain.stateCache.TrieDB().Dereference(blocks[len(blocks)-1-i].Root())
chain.stateCache.TrieDB().Dereference(forks[len(blocks)-1-i].Root())
}
if len(chain.stateCache.TrieDB().Nodes()) > 0 {
t.Fatalf("stale tries still alive after garbase collection")
}
}
// Tests that doing large reorgs works even if the state associated with the
// forking point is not available any more.
func TestLargeReorgTrieGC(t *testing.T) {
// Generate the original common chain segment and the two competing forks
engine := ethash.NewFaker()
genesis := &Genesis{
Config: params.TestChainConfig,
BaseFee: big.NewInt(params.InitialBaseFee),
}
genDb, shared, _ := GenerateChainWithGenesis(genesis, engine, 64, func(i int, b *BlockGen) { b.SetCoinbase(common.Address{1}) })
original, _ := GenerateChain(genesis.Config, shared[len(shared)-1], engine, genDb, 2*int(DefaultCacheConfig.TriesInMemory), func(i int, b *BlockGen) { b.SetCoinbase(common.Address{2}) })
competitor, _ := GenerateChain(genesis.Config, shared[len(shared)-1], engine, genDb, 2*int(DefaultCacheConfig.TriesInMemory)+1, func(i int, b *BlockGen) { b.SetCoinbase(common.Address{3}) })
// Import the shared chain and the original canonical one
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
if _, err := chain.InsertChain(shared); err != nil {
t.Fatalf("failed to insert shared chain: %v", err)
}
if _, err := chain.InsertChain(original); err != nil {
t.Fatalf("failed to insert original chain: %v", err)
}
// Ensure that the state associated with the forking point is pruned away
if node, _ := chain.stateCache.TrieDB().Node(shared[len(shared)-1].Root()); node != nil {
t.Fatalf("common-but-old ancestor still cache")
}
// Import the competitor chain without exceeding the canonical's TD and ensure
// we have not processed any of the blocks (protection against malicious blocks)
if _, err := chain.InsertChain(competitor[:len(competitor)-2]); err != nil {
t.Fatalf("failed to insert competitor chain: %v", err)
}
for i, block := range competitor[:len(competitor)-2] {
if node, _ := chain.stateCache.TrieDB().Node(block.Root()); node != nil {
t.Fatalf("competitor %d: low TD chain became processed", i)
}
}
// Import the head of the competitor chain, triggering the reorg and ensure we
// successfully reprocess all the stashed away blocks.
if _, err := chain.InsertChain(competitor[len(competitor)-2:]); err != nil {
t.Fatalf("failed to finalize competitor chain: %v", err)
}
for i, block := range competitor[:len(competitor)-int(chain.cacheConfig.TriesInMemory)] {
if node, _ := chain.stateCache.TrieDB().Node(block.Root()); node != nil {
t.Fatalf("competitor %d: competing chain state missing", i)
}
}
}
func TestBlockchainRecovery(t *testing.T) {
// Configure and generate a sample block chain
var (
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000)
gspec = &Genesis{Config: params.TestChainConfig, Alloc: GenesisAlloc{address: {Balance: funds}}}
)
height := uint64(1024)
_, blocks, receipts := GenerateChainWithGenesis(gspec, ethash.NewFaker(), int(height), nil)
// Import the chain as a ancient-first node and ensure all pointers are updated
ancientDb, err := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), t.TempDir(), "", false)
if err != nil {
t.Fatalf("failed to create temp freezer db: %v", err)
}
defer ancientDb.Close()
ancient, _ := NewBlockChain(ancientDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
headers := make([]*types.Header, len(blocks))
for i, block := range blocks {
headers[i] = block.Header()
}
if n, err := ancient.InsertHeaderChain(headers, 1); err != nil {
t.Fatalf("failed to insert header %d: %v", n, err)
}
if n, err := ancient.InsertReceiptChain(blocks, receipts, uint64(3*len(blocks)/4)); err != nil {
t.Fatalf("failed to insert receipt %d: %v", n, err)
}
rawdb.WriteLastPivotNumber(ancientDb, blocks[len(blocks)-1].NumberU64()) // Force fast sync behavior
ancient.Stop()
// Destroy head fast block manually
midBlock := blocks[len(blocks)/2]
rawdb.WriteHeadFastBlockHash(ancientDb, midBlock.Hash())
// Reopen broken blockchain again
ancient, _ = NewBlockChain(ancientDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer ancient.Stop()
if num := ancient.CurrentBlock().Number.Uint64(); num != 0 {
t.Errorf("head block mismatch: have #%v, want #%v", num, 0)
}
if num := ancient.CurrentSnapBlock().Number.Uint64(); num != midBlock.NumberU64() {
t.Errorf("head snap-block mismatch: have #%v, want #%v", num, midBlock.NumberU64())
}
if num := ancient.CurrentHeader().Number.Uint64(); num != midBlock.NumberU64() {
t.Errorf("head header mismatch: have #%v, want #%v", num, midBlock.NumberU64())
}
}
// This test checks that InsertReceiptChain will roll back correctly when attempting to insert a side chain.
func TestInsertReceiptChainRollback(t *testing.T) {
// Generate forked chain. The returned BlockChain object is used to process the side chain blocks.
tmpChain, sideblocks, canonblocks, gspec, err := getLongAndShortChains()
if err != nil {
t.Fatal(err)
}
defer tmpChain.Stop()
// Get the side chain receipts.
if _, err := tmpChain.InsertChain(sideblocks); err != nil {
t.Fatal("processing side chain failed:", err)
}
t.Log("sidechain head:", tmpChain.CurrentBlock().Number, tmpChain.CurrentBlock().Hash())
sidechainReceipts := make([]types.Receipts, len(sideblocks))
for i, block := range sideblocks {
sidechainReceipts[i] = tmpChain.GetReceiptsByHash(block.Hash())
}
// Get the canon chain receipts.
if _, err := tmpChain.InsertChain(canonblocks); err != nil {
t.Fatal("processing canon chain failed:", err)
}
t.Log("canon head:", tmpChain.CurrentBlock().Number, tmpChain.CurrentBlock().Hash())
canonReceipts := make([]types.Receipts, len(canonblocks))
for i, block := range canonblocks {
canonReceipts[i] = tmpChain.GetReceiptsByHash(block.Hash())
}
// Set up a BlockChain that uses the ancient store.
ancientDb, err := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), t.TempDir(), "", false)
if err != nil {
t.Fatalf("failed to create temp freezer db: %v", err)
}
defer ancientDb.Close()
ancientChain, _ := NewBlockChain(ancientDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, nil, nil)
defer ancientChain.Stop()
// Import the canonical header chain.
canonHeaders := make([]*types.Header, len(canonblocks))
for i, block := range canonblocks {
canonHeaders[i] = block.Header()
}
if _, err = ancientChain.InsertHeaderChain(canonHeaders, 1); err != nil {
t.Fatal("can't import canon headers:", err)
}
// Try to insert blocks/receipts of the side chain.
_, err = ancientChain.InsertReceiptChain(sideblocks, sidechainReceipts, uint64(len(sideblocks)))
if err == nil {
t.Fatal("expected error from InsertReceiptChain.")
}
if ancientChain.CurrentSnapBlock().Number.Uint64() != 0 {
t.Fatalf("failed to rollback ancient data, want %d, have %d", 0, ancientChain.CurrentSnapBlock().Number)
}
if frozen, err := ancientChain.db.Ancients(); err != nil || frozen != 1 {
t.Fatalf("failed to truncate ancient data, frozen index is %d", frozen)
}
// Insert blocks/receipts of the canonical chain.
_, err = ancientChain.InsertReceiptChain(canonblocks, canonReceipts, uint64(len(canonblocks)))
if err != nil {
t.Fatalf("can't import canon chain receipts: %v", err)
}
if ancientChain.CurrentSnapBlock().Number.Uint64() != canonblocks[len(canonblocks)-1].NumberU64() {
t.Fatalf("failed to insert ancient recept chain after rollback")
}
if frozen, _ := ancientChain.db.Ancients(); frozen != uint64(len(canonblocks))+1 {
t.Fatalf("wrong ancients count %d", frozen)
}
}
// Tests that importing a very large side fork, which is larger than the canon chain,
// but where the difficulty per block is kept low: this means that it will not
// overtake the 'canon' chain until after it's passed canon by about 200 blocks.
//
// Details at:
// - https://github.com/ethereum/go-ethereum/issues/18977
// - https://github.com/ethereum/go-ethereum/pull/18988
func TestLowDiffLongChain(t *testing.T) {
// Generate a canonical chain to act as the main dataset
engine := ethash.NewFaker()
genesis := &Genesis{
Config: params.TestChainConfig,
BaseFee: big.NewInt(params.InitialBaseFee),
}
// We must use a pretty long chain to ensure that the fork doesn't overtake us
// until after at least 128 blocks post tip
genDb, blocks, _ := GenerateChainWithGenesis(genesis, engine, 6*int(DefaultCacheConfig.TriesInMemory), func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
b.OffsetTime(-9)
})
// Import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.stopWithoutSaving()
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
// Generate fork chain, starting from an early block
parent := blocks[10]
fork, _ := GenerateChain(genesis.Config, parent, engine, genDb, 8*int(DefaultCacheConfig.TriesInMemory), func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{2})
})
// And now import the fork
if i, err := chain.InsertChain(fork); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", i, err)
}
head := chain.CurrentBlock()
if got := fork[len(fork)-1].Hash(); got != head.Hash() {
t.Fatalf("head wrong, expected %x got %x", head.Hash(), got)
}
// Sanity check that all the canonical numbers are present
header := chain.CurrentHeader()
for number := head.Number.Uint64(); number > 0; number-- {
if hash := chain.GetHeaderByNumber(number).Hash(); hash != header.Hash() {
t.Fatalf("header %d: canonical hash mismatch: have %x, want %x", number, hash, header.Hash())
}
header = chain.GetHeader(header.ParentHash, number-1)
}
}
// Tests that importing a sidechain (S), where
// - S is sidechain, containing blocks [Sn...Sm]
// - C is canon chain, containing blocks [G..Cn..Cm]
// - A common ancestor is placed at prune-point + blocksBetweenCommonAncestorAndPruneblock
// - The sidechain S is prepended with numCanonBlocksInSidechain blocks from the canon chain
//
// The mergePoint can be these values:
// -1: the transition won't happen
// 0: the transition happens since genesis
// 1: the transition happens after some chain segments
func testSideImport(t *testing.T, numCanonBlocksInSidechain, blocksBetweenCommonAncestorAndPruneblock int, mergePoint int) {
// Generate a canonical chain to act as the main dataset
chainConfig := *params.TestChainConfig
var (
merger = consensus.NewMerger(rawdb.NewMemoryDatabase())
engine = beacon.New(ethash.NewFaker())
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
addr = crypto.PubkeyToAddress(key.PublicKey)
nonce = uint64(0)
gspec = &Genesis{
Config: &chainConfig,
Alloc: GenesisAlloc{addr: {Balance: big.NewInt(math.MaxInt64)}},
BaseFee: big.NewInt(params.InitialBaseFee),
}
signer = types.LatestSigner(gspec.Config)
mergeBlock = math.MaxInt32
)
// Generate and import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
// Activate the transition since genesis if required
if mergePoint == 0 {
mergeBlock = 0
merger.ReachTTD()
merger.FinalizePoS()
// Set the terminal total difficulty in the config
gspec.Config.TerminalTotalDifficulty = big.NewInt(0)
}
genDb, blocks, _ := GenerateChainWithGenesis(gspec, engine, 2*int(DefaultCacheConfig.TriesInMemory), func(i int, gen *BlockGen) {
tx, err := types.SignTx(types.NewTransaction(nonce, common.HexToAddress("deadbeef"), big.NewInt(100), 21000, big.NewInt(int64(i+1)*params.GWei), nil), signer, key)
if err != nil {
t.Fatalf("failed to create tx: %v", err)
}
gen.AddTx(tx)
if int(gen.header.Number.Uint64()) >= mergeBlock {
gen.SetPoS()
}
nonce++
})
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
lastPrunedIndex := len(blocks) - int(chain.cacheConfig.TriesInMemory) - 1
lastPrunedBlock := blocks[lastPrunedIndex]
firstNonPrunedBlock := blocks[len(blocks)-int(chain.cacheConfig.TriesInMemory)]
// Verify pruning of lastPrunedBlock
if chain.HasBlockAndState(lastPrunedBlock.Hash(), lastPrunedBlock.NumberU64()) {
t.Errorf("Block %d not pruned", lastPrunedBlock.NumberU64())
}
// Verify firstNonPrunedBlock is not pruned
if !chain.HasBlockAndState(firstNonPrunedBlock.Hash(), firstNonPrunedBlock.NumberU64()) {
t.Errorf("Block %d pruned", firstNonPrunedBlock.NumberU64())
}
// Activate the transition in the middle of the chain
if mergePoint == 1 {
merger.ReachTTD()
merger.FinalizePoS()
// Set the terminal total difficulty in the config
ttd := big.NewInt(int64(len(blocks)))
ttd.Mul(ttd, params.GenesisDifficulty)
gspec.Config.TerminalTotalDifficulty = ttd
mergeBlock = len(blocks)
}
// Generate the sidechain
// First block should be a known block, block after should be a pruned block. So
// canon(pruned), side, side...
// Generate fork chain, make it longer than canon
parentIndex := lastPrunedIndex + blocksBetweenCommonAncestorAndPruneblock
parent := blocks[parentIndex]
fork, _ := GenerateChain(gspec.Config, parent, engine, genDb, 2*int(DefaultCacheConfig.TriesInMemory), func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{2})
if int(b.header.Number.Uint64()) >= mergeBlock {
b.SetPoS()
}
})
// Prepend the parent(s)
var sidechain []*types.Block
for i := numCanonBlocksInSidechain; i > 0; i-- {
sidechain = append(sidechain, blocks[parentIndex+1-i])
}
sidechain = append(sidechain, fork...)
n, err := chain.InsertChain(sidechain)
if err != nil {
t.Errorf("Got error, %v number %d - %d", err, sidechain[n].NumberU64(), n)
}
head := chain.CurrentBlock()
if got := fork[len(fork)-1].Hash(); got != head.Hash() {
t.Fatalf("head wrong, expected %x got %x", head.Hash(), got)
}
}
// Tests that importing a sidechain (S), where
// - S is sidechain, containing blocks [Sn...Sm]
// - C is canon chain, containing blocks [G..Cn..Cm]
// - The common ancestor Cc is pruned
// - The first block in S: Sn, is == Cn
//
// That is: the sidechain for import contains some blocks already present in canon chain.
// So the blocks are:
//
// [ Cn, Cn+1, Cc, Sn+3 ... Sm]
// ^ ^ ^ pruned
func TestPrunedImportSide(t *testing.T) {
//glogger := log.NewGlogHandler(log.StreamHandler(os.Stdout, log.TerminalFormat(false)))
//glogger.Verbosity(3)
//log.Root().SetHandler(log.Handler(glogger))
testSideImport(t, 3, 3, -1)
testSideImport(t, 3, -3, -1)
testSideImport(t, 10, 0, -1)
testSideImport(t, 1, 10, -1)
testSideImport(t, 1, -10, -1)
}
func TestPrunedImportSideWithMerging(t *testing.T) {
//glogger := log.NewGlogHandler(log.StreamHandler(os.Stdout, log.TerminalFormat(false)))
//glogger.Verbosity(3)
//log.Root().SetHandler(log.Handler(glogger))
testSideImport(t, 3, 3, 0)
testSideImport(t, 3, -3, 0)
testSideImport(t, 10, 0, 0)
testSideImport(t, 1, 10, 0)
testSideImport(t, 1, -10, 0)
testSideImport(t, 3, 3, 1)
testSideImport(t, 3, -3, 1)
testSideImport(t, 10, 0, 1)
testSideImport(t, 1, 10, 1)
testSideImport(t, 1, -10, 1)
}
func TestInsertKnownHeaders(t *testing.T) { testInsertKnownChainData(t, "headers") }
func TestInsertKnownReceiptChain(t *testing.T) { testInsertKnownChainData(t, "receipts") }
func TestInsertKnownBlocks(t *testing.T) { testInsertKnownChainData(t, "blocks") }
func testInsertKnownChainData(t *testing.T, typ string) {
engine := ethash.NewFaker()
genesis := &Genesis{
Config: params.TestChainConfig,
BaseFee: big.NewInt(params.InitialBaseFee),
}
genDb, blocks, receipts := GenerateChainWithGenesis(genesis, engine, 32, func(i int, b *BlockGen) { b.SetCoinbase(common.Address{1}) })
// A longer chain but total difficulty is lower.
blocks2, receipts2 := GenerateChain(genesis.Config, blocks[len(blocks)-1], engine, genDb, 65, func(i int, b *BlockGen) { b.SetCoinbase(common.Address{1}) })
// A shorter chain but total difficulty is higher.
blocks3, receipts3 := GenerateChain(genesis.Config, blocks[len(blocks)-1], engine, genDb, 64, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
b.OffsetTime(-9) // A higher difficulty
})
// Import the shared chain and the original canonical one
chaindb, err := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), t.TempDir(), "", false)
if err != nil {
t.Fatalf("failed to create temp freezer db: %v", err)
}
defer chaindb.Close()
chain, err := NewBlockChain(chaindb, nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
var (
inserter func(blocks []*types.Block, receipts []types.Receipts) error
asserter func(t *testing.T, block *types.Block)
)
if typ == "headers" {
inserter = func(blocks []*types.Block, receipts []types.Receipts) error {
headers := make([]*types.Header, 0, len(blocks))
for _, block := range blocks {
headers = append(headers, block.Header())
}
_, err := chain.InsertHeaderChain(headers, 1)
return err
}
asserter = func(t *testing.T, block *types.Block) {
if chain.CurrentHeader().Hash() != block.Hash() {
t.Fatalf("current head header mismatch, have %v, want %v", chain.CurrentHeader().Hash().Hex(), block.Hash().Hex())
}
}
} else if typ == "receipts" {
inserter = func(blocks []*types.Block, receipts []types.Receipts) error {
headers := make([]*types.Header, 0, len(blocks))
for _, block := range blocks {
headers = append(headers, block.Header())
}
_, err := chain.InsertHeaderChain(headers, 1)
if err != nil {
return err
}
_, err = chain.InsertReceiptChain(blocks, receipts, 0)
return err
}
asserter = func(t *testing.T, block *types.Block) {
if chain.CurrentSnapBlock().Hash() != block.Hash() {
t.Fatalf("current head fast block mismatch, have %v, want %v", chain.CurrentSnapBlock().Hash().Hex(), block.Hash().Hex())
}
}
} else {
inserter = func(blocks []*types.Block, receipts []types.Receipts) error {
_, err := chain.InsertChain(blocks)
return err
}
asserter = func(t *testing.T, block *types.Block) {
if chain.CurrentBlock().Hash() != block.Hash() {
t.Fatalf("current head block mismatch, have %v, want %v", chain.CurrentBlock().Hash().Hex(), block.Hash().Hex())
}
}
}
if err := inserter(blocks, receipts); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
// Reimport the chain data again. All the imported
// chain data are regarded "known" data.
if err := inserter(blocks, receipts); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
asserter(t, blocks[len(blocks)-1])
// Import a long canonical chain with some known data as prefix.
rollback := blocks[len(blocks)/2].NumberU64()
chain.SetHead(rollback - 1)
if err := inserter(append(blocks, blocks2...), append(receipts, receipts2...)); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
asserter(t, blocks2[len(blocks2)-1])
// Import a heavier shorter but higher total difficulty chain with some known data as prefix.
if err := inserter(append(blocks, blocks3...), append(receipts, receipts3...)); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
asserter(t, blocks3[len(blocks3)-1])
// Import a longer but lower total difficulty chain with some known data as prefix.
if err := inserter(append(blocks, blocks2...), append(receipts, receipts2...)); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
// The head shouldn't change.
asserter(t, blocks3[len(blocks3)-1])
// Rollback the heavier chain and re-insert the longer chain again
chain.SetHead(rollback - 1)
if err := inserter(append(blocks, blocks2...), append(receipts, receipts2...)); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
asserter(t, blocks2[len(blocks2)-1])
}
func TestInsertKnownHeadersWithMerging(t *testing.T) {
testInsertKnownChainDataWithMerging(t, "headers", 0)
}
func TestInsertKnownReceiptChainWithMerging(t *testing.T) {
testInsertKnownChainDataWithMerging(t, "receipts", 0)
}
func TestInsertKnownBlocksWithMerging(t *testing.T) {
testInsertKnownChainDataWithMerging(t, "blocks", 0)
}
func TestInsertKnownHeadersAfterMerging(t *testing.T) {
testInsertKnownChainDataWithMerging(t, "headers", 1)
}
func TestInsertKnownReceiptChainAfterMerging(t *testing.T) {
testInsertKnownChainDataWithMerging(t, "receipts", 1)
}
func TestInsertKnownBlocksAfterMerging(t *testing.T) {
testInsertKnownChainDataWithMerging(t, "blocks", 1)
}
// mergeHeight can be assigned in these values:
// 0: means the merging is applied since genesis
// 1: means the merging is applied after the first segment
func testInsertKnownChainDataWithMerging(t *testing.T, typ string, mergeHeight int) {
// Copy the TestChainConfig so we can modify it during tests
chainConfig := *params.TestChainConfig
var (
genesis = &Genesis{
BaseFee: big.NewInt(params.InitialBaseFee),
Config: &chainConfig,
}
engine = beacon.New(ethash.NewFaker())
mergeBlock = uint64(math.MaxUint64)
)
// Apply merging since genesis
if mergeHeight == 0 {
genesis.Config.TerminalTotalDifficulty = big.NewInt(0)
mergeBlock = uint64(0)
}
genDb, blocks, receipts := GenerateChainWithGenesis(genesis, engine, 32,
func(i int, b *BlockGen) {
if b.header.Number.Uint64() >= mergeBlock {
b.SetPoS()
}
b.SetCoinbase(common.Address{1})
})
// Apply merging after the first segment
if mergeHeight == 1 {
// TTD is genesis diff + blocks
ttd := big.NewInt(1 + int64(len(blocks)))
ttd.Mul(ttd, params.GenesisDifficulty)
genesis.Config.TerminalTotalDifficulty = ttd
mergeBlock = uint64(len(blocks))
}
// Longer chain and shorter chain
blocks2, receipts2 := GenerateChain(genesis.Config, blocks[len(blocks)-1], engine, genDb, 65, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
if b.header.Number.Uint64() >= mergeBlock {
b.SetPoS()
}
})
blocks3, receipts3 := GenerateChain(genesis.Config, blocks[len(blocks)-1], engine, genDb, 64, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
b.OffsetTime(-9) // Time shifted, difficulty shouldn't be changed
if b.header.Number.Uint64() >= mergeBlock {
b.SetPoS()
}
})
// Import the shared chain and the original canonical one
chaindb, err := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), t.TempDir(), "", false)
if err != nil {
t.Fatalf("failed to create temp freezer db: %v", err)
}
defer chaindb.Close()
chain, err := NewBlockChain(chaindb, nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
var (
inserter func(blocks []*types.Block, receipts []types.Receipts) error
asserter func(t *testing.T, block *types.Block)
)
if typ == "headers" {
inserter = func(blocks []*types.Block, receipts []types.Receipts) error {
headers := make([]*types.Header, 0, len(blocks))
for _, block := range blocks {
headers = append(headers, block.Header())
}
i, err := chain.InsertHeaderChain(headers, 1)
if err != nil {
return fmt.Errorf("index %d, number %d: %w", i, headers[i].Number, err)
}
return err
}
asserter = func(t *testing.T, block *types.Block) {
if chain.CurrentHeader().Hash() != block.Hash() {
t.Fatalf("current head header mismatch, have %v, want %v", chain.CurrentHeader().Hash().Hex(), block.Hash().Hex())
}
}
} else if typ == "receipts" {
inserter = func(blocks []*types.Block, receipts []types.Receipts) error {
headers := make([]*types.Header, 0, len(blocks))
for _, block := range blocks {
headers = append(headers, block.Header())
}
i, err := chain.InsertHeaderChain(headers, 1)
if err != nil {
return fmt.Errorf("index %d: %w", i, err)
}
_, err = chain.InsertReceiptChain(blocks, receipts, 0)
return err
}
asserter = func(t *testing.T, block *types.Block) {
if chain.CurrentSnapBlock().Hash() != block.Hash() {
t.Fatalf("current head fast block mismatch, have %v, want %v", chain.CurrentSnapBlock().Hash().Hex(), block.Hash().Hex())
}
}
} else {
inserter = func(blocks []*types.Block, receipts []types.Receipts) error {
i, err := chain.InsertChain(blocks)
if err != nil {
return fmt.Errorf("index %d: %w", i, err)
}
return nil
}
asserter = func(t *testing.T, block *types.Block) {
if chain.CurrentBlock().Hash() != block.Hash() {
t.Fatalf("current head block mismatch, have %v, want %v", chain.CurrentBlock().Hash().Hex(), block.Hash().Hex())
}
}
}
if err := inserter(blocks, receipts); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
// Reimport the chain data again. All the imported
// chain data are regarded "known" data.
if err := inserter(blocks, receipts); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
asserter(t, blocks[len(blocks)-1])
// Import a long canonical chain with some known data as prefix.
rollback := blocks[len(blocks)/2].NumberU64()
chain.SetHead(rollback - 1)
if err := inserter(blocks, receipts); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
asserter(t, blocks[len(blocks)-1])
// Import a longer chain with some known data as prefix.
if err := inserter(append(blocks, blocks2...), append(receipts, receipts2...)); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
asserter(t, blocks2[len(blocks2)-1])
// Import a shorter chain with some known data as prefix.
// The reorg is expected since the fork choice rule is
// already changed.
if err := inserter(append(blocks, blocks3...), append(receipts, receipts3...)); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
// The head shouldn't change.
asserter(t, blocks3[len(blocks3)-1])
// Reimport the longer chain again, the reorg is still expected
chain.SetHead(rollback - 1)
if err := inserter(append(blocks, blocks2...), append(receipts, receipts2...)); err != nil {
t.Fatalf("failed to insert chain data: %v", err)
}
asserter(t, blocks2[len(blocks2)-1])
}
// getLongAndShortChains returns two chains: A is longer, B is heavier.
func getLongAndShortChains() (*BlockChain, []*types.Block, []*types.Block, *Genesis, error) {
// Generate a canonical chain to act as the main dataset
engine := ethash.NewFaker()
genesis := &Genesis{
Config: params.TestChainConfig,
BaseFee: big.NewInt(params.InitialBaseFee),
}
// Generate and import the canonical chain,
// Offset the time, to keep the difficulty low
genDb, longChain, _ := GenerateChainWithGenesis(genesis, engine, 80, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
})
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
return nil, nil, nil, nil, fmt.Errorf("failed to create tester chain: %v", err)
}
// Generate fork chain, make it shorter than canon, with common ancestor pretty early
parentIndex := 3
parent := longChain[parentIndex]
heavyChainExt, _ := GenerateChain(genesis.Config, parent, engine, genDb, 75, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{2})
b.OffsetTime(-9)
})
var heavyChain []*types.Block
heavyChain = append(heavyChain, longChain[:parentIndex+1]...)
heavyChain = append(heavyChain, heavyChainExt...)
// Verify that the test is sane
var (
longerTd = new(big.Int)
shorterTd = new(big.Int)
)
for index, b := range longChain {
longerTd.Add(longerTd, b.Difficulty())
if index <= parentIndex {
shorterTd.Add(shorterTd, b.Difficulty())
}
}
for _, b := range heavyChain {
shorterTd.Add(shorterTd, b.Difficulty())
}
if shorterTd.Cmp(longerTd) <= 0 {
return nil, nil, nil, nil, fmt.Errorf("test is moot, heavyChain td (%v) must be larger than canon td (%v)", shorterTd, longerTd)
}
longerNum := longChain[len(longChain)-1].NumberU64()
shorterNum := heavyChain[len(heavyChain)-1].NumberU64()
if shorterNum >= longerNum {
return nil, nil, nil, nil, fmt.Errorf("test is moot, heavyChain num (%v) must be lower than canon num (%v)", shorterNum, longerNum)
}
return chain, longChain, heavyChain, genesis, nil
}
// TestReorgToShorterRemovesCanonMapping tests that if we
// 1. Have a chain [0 ... N .. X]
// 2. Reorg to shorter but heavier chain [0 ... N ... Y]
// 3. Then there should be no canon mapping for the block at height X
// 4. The forked block should still be retrievable by hash
func TestReorgToShorterRemovesCanonMapping(t *testing.T) {
chain, canonblocks, sideblocks, _, err := getLongAndShortChains()
if err != nil {
t.Fatal(err)
}
defer chain.Stop()
if n, err := chain.InsertChain(canonblocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
canonNum := chain.CurrentBlock().Number.Uint64()
canonHash := chain.CurrentBlock().Hash()
_, err = chain.InsertChain(sideblocks)
if err != nil {
t.Errorf("Got error, %v", err)
}
head := chain.CurrentBlock()
if got := sideblocks[len(sideblocks)-1].Hash(); got != head.Hash() {
t.Fatalf("head wrong, expected %x got %x", head.Hash(), got)
}
// We have now inserted a sidechain.
if blockByNum := chain.GetBlockByNumber(canonNum); blockByNum != nil {
t.Errorf("expected block to be gone: %v", blockByNum.NumberU64())
}
if headerByNum := chain.GetHeaderByNumber(canonNum); headerByNum != nil {
t.Errorf("expected header to be gone: %v", headerByNum.Number)
}
if blockByHash := chain.GetBlockByHash(canonHash); blockByHash == nil {
t.Errorf("expected block to be present: %x", blockByHash.Hash())
}
if headerByHash := chain.GetHeaderByHash(canonHash); headerByHash == nil {
t.Errorf("expected header to be present: %x", headerByHash.Hash())
}
}
// TestReorgToShorterRemovesCanonMappingHeaderChain is the same scenario
// as TestReorgToShorterRemovesCanonMapping, but applied on headerchain
// imports -- that is, for fast sync
func TestReorgToShorterRemovesCanonMappingHeaderChain(t *testing.T) {
chain, canonblocks, sideblocks, _, err := getLongAndShortChains()
if err != nil {
t.Fatal(err)
}
defer chain.Stop()
// Convert into headers
canonHeaders := make([]*types.Header, len(canonblocks))
for i, block := range canonblocks {
canonHeaders[i] = block.Header()
}
if n, err := chain.InsertHeaderChain(canonHeaders, 0); err != nil {
t.Fatalf("header %d: failed to insert into chain: %v", n, err)
}
canonNum := chain.CurrentHeader().Number.Uint64()
canonHash := chain.CurrentBlock().Hash()
sideHeaders := make([]*types.Header, len(sideblocks))
for i, block := range sideblocks {
sideHeaders[i] = block.Header()
}
if n, err := chain.InsertHeaderChain(sideHeaders, 0); err != nil {
t.Fatalf("header %d: failed to insert into chain: %v", n, err)
}
head := chain.CurrentHeader()
if got := sideblocks[len(sideblocks)-1].Hash(); got != head.Hash() {
t.Fatalf("head wrong, expected %x got %x", head.Hash(), got)
}
// We have now inserted a sidechain.
if blockByNum := chain.GetBlockByNumber(canonNum); blockByNum != nil {
t.Errorf("expected block to be gone: %v", blockByNum.NumberU64())
}
if headerByNum := chain.GetHeaderByNumber(canonNum); headerByNum != nil {
t.Errorf("expected header to be gone: %v", headerByNum.Number.Uint64())
}
if blockByHash := chain.GetBlockByHash(canonHash); blockByHash == nil {
t.Errorf("expected block to be present: %x", blockByHash.Hash())
}
if headerByHash := chain.GetHeaderByHash(canonHash); headerByHash == nil {
t.Errorf("expected header to be present: %x", headerByHash.Hash())
}
}
func TestTransactionIndices(t *testing.T) {
// Configure and generate a sample block chain
var (
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(100000000000000000)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{address: {Balance: funds}},
BaseFee: big.NewInt(params.InitialBaseFee),
}
signer = types.LatestSigner(gspec.Config)
)
_, blocks, receipts := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 128, func(i int, block *BlockGen) {
tx, err := types.SignTx(types.NewTransaction(block.TxNonce(address), common.Address{0x00}, big.NewInt(1000), params.TxGas, block.header.BaseFee, nil), signer, key)
if err != nil {
panic(err)
}
block.AddTx(tx)
})
borReceipts := make([]types.Receipts, len(receipts))
check := func(tail *uint64, chain *BlockChain) {
stored := rawdb.ReadTxIndexTail(chain.db)
if tail == nil && stored != nil {
t.Fatalf("Oldest indexded block mismatch, want nil, have %d", *stored)
}
if tail != nil && *stored != *tail {
t.Fatalf("Oldest indexded block mismatch, want %d, have %d", *tail, *stored)
}
if tail != nil {
for i := *tail; i <= chain.CurrentBlock().Number.Uint64(); i++ {
block := rawdb.ReadBlock(chain.db, rawdb.ReadCanonicalHash(chain.db, i), i)
if block.Transactions().Len() == 0 {
continue
}
for _, tx := range block.Transactions() {
if index := rawdb.ReadTxLookupEntry(chain.db, tx.Hash()); index == nil {
t.Fatalf("Miss transaction indice, number %d hash %s", i, tx.Hash().Hex())
}
}
}
for i := uint64(0); i < *tail; i++ {
block := rawdb.ReadBlock(chain.db, rawdb.ReadCanonicalHash(chain.db, i), i)
if block.Transactions().Len() == 0 {
continue
}
for _, tx := range block.Transactions() {
if index := rawdb.ReadTxLookupEntry(chain.db, tx.Hash()); index != nil {
t.Fatalf("Transaction indice should be deleted, number %d hash %s", i, tx.Hash().Hex())
}
}
}
}
}
// Init block chain with external ancients, check all needed indices has been indexed.
limit := []uint64{0, 32, 64, 128}
for _, l := range limit {
frdir := t.TempDir()
ancientDb, _ := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), frdir, "", false)
_, _ = rawdb.WriteAncientBlocks(ancientDb, append([]*types.Block{gspec.ToBlock()}, blocks...), append([]types.Receipts{{}}, receipts...), append([]types.Receipts{{}}, borReceipts...), big.NewInt(0))
l := l
chain, err := NewBlockChain(ancientDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, &l, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
chain.indexBlocks(rawdb.ReadTxIndexTail(ancientDb), 128, make(chan struct{}))
var tail uint64
if l != 0 {
tail = uint64(128) - l + 1
}
check(&tail, chain)
chain.Stop()
ancientDb.Close()
os.RemoveAll(frdir)
}
// Reconstruct a block chain which only reserves HEAD-64 tx indices
ancientDb, _ := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), t.TempDir(), "", false)
defer ancientDb.Close()
_, _ = rawdb.WriteAncientBlocks(ancientDb, append([]*types.Block{gspec.ToBlock()}, blocks...), append([]types.Receipts{{}}, receipts...), append([]types.Receipts{{}}, borReceipts...), big.NewInt(0))
limit = []uint64{0, 64 /* drop stale */, 32 /* shorten history */, 64 /* extend history */, 0 /* restore all */}
for _, l := range limit {
l := l
chain, err := NewBlockChain(ancientDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, &l, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
var tail uint64
if l != 0 {
tail = uint64(128) - l + 1
}
chain.indexBlocks(rawdb.ReadTxIndexTail(ancientDb), 128, make(chan struct{}))
check(&tail, chain)
chain.Stop()
}
}
func TestSkipStaleTxIndicesInSnapSync(t *testing.T) {
// Configure and generate a sample block chain
var (
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(100000000000000000)
gspec = &Genesis{Config: params.TestChainConfig, Alloc: GenesisAlloc{address: {Balance: funds}}}
signer = types.LatestSigner(gspec.Config)
)
_, blocks, receipts := GenerateChainWithGenesis(gspec, ethash.NewFaker(), 128, func(i int, block *BlockGen) {
tx, err := types.SignTx(types.NewTransaction(block.TxNonce(address), common.Address{0x00}, big.NewInt(1000), params.TxGas, block.header.BaseFee, nil), signer, key)
if err != nil {
panic(err)
}
block.AddTx(tx)
})
check := func(tail *uint64, chain *BlockChain) {
stored := rawdb.ReadTxIndexTail(chain.db)
if tail == nil && stored != nil {
t.Fatalf("Oldest indexded block mismatch, want nil, have %d", *stored)
}
if tail != nil && *stored != *tail {
t.Fatalf("Oldest indexded block mismatch, want %d, have %d", *tail, *stored)
}
if tail != nil {
for i := *tail; i <= chain.CurrentBlock().Number.Uint64(); i++ {
block := rawdb.ReadBlock(chain.db, rawdb.ReadCanonicalHash(chain.db, i), i)
if block.Transactions().Len() == 0 {
continue
}
for _, tx := range block.Transactions() {
if index := rawdb.ReadTxLookupEntry(chain.db, tx.Hash()); index == nil {
t.Fatalf("Miss transaction indice, number %d hash %s", i, tx.Hash().Hex())
}
}
}
for i := uint64(0); i < *tail; i++ {
block := rawdb.ReadBlock(chain.db, rawdb.ReadCanonicalHash(chain.db, i), i)
if block.Transactions().Len() == 0 {
continue
}
for _, tx := range block.Transactions() {
if index := rawdb.ReadTxLookupEntry(chain.db, tx.Hash()); index != nil {
t.Fatalf("Transaction indice should be deleted, number %d hash %s", i, tx.Hash().Hex())
}
}
}
}
}
ancientDb, err := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), t.TempDir(), "", false)
if err != nil {
t.Fatalf("failed to create temp freezer db: %v", err)
}
defer ancientDb.Close()
// Import all blocks into ancient db, only HEAD-32 indices are kept.
l := uint64(32)
chain, err := NewBlockChain(ancientDb, nil, gspec, nil, ethash.NewFaker(), vm.Config{}, nil, &l, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
headers := make([]*types.Header, len(blocks))
for i, block := range blocks {
headers[i] = block.Header()
}
if n, err := chain.InsertHeaderChain(headers, 0); err != nil {
t.Fatalf("failed to insert header %d: %v", n, err)
}
// The indices before ancient-N(32) should be ignored. After that all blocks should be indexed.
if n, err := chain.InsertReceiptChain(blocks, receipts, 64); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
tail := uint64(32)
check(&tail, chain)
}
// Benchmarks large blocks with value transfers to non-existing accounts
func benchmarkLargeNumberOfValueToNonexisting(b *testing.B, numTxs, numBlocks int, recipientFn func(uint64) common.Address, dataFn func(uint64) []byte) {
var (
signer = types.HomesteadSigner{}
testBankKey, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
testBankAddress = crypto.PubkeyToAddress(testBankKey.PublicKey)
bankFunds = big.NewInt(100000000000000000)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{
testBankAddress: {Balance: bankFunds},
common.HexToAddress("0xc0de"): {
Code: []byte{0x60, 0x01, 0x50},
Balance: big.NewInt(0),
}, // push 1, pop
},
GasLimit: 100e6, // 100 M
}
)
// Generate the original common chain segment and the two competing forks
engine := ethash.NewFaker()
blockGenerator := func(i int, block *BlockGen) {
block.SetCoinbase(common.Address{1})
for txi := 0; txi < numTxs; txi++ {
uniq := uint64(i*numTxs + txi)
recipient := recipientFn(uniq)
tx, err := types.SignTx(types.NewTransaction(uniq, recipient, big.NewInt(1), params.TxGas, block.header.BaseFee, nil), signer, testBankKey)
if err != nil {
b.Error(err)
}
block.AddTx(tx)
}
}
_, shared, _ := GenerateChainWithGenesis(gspec, engine, numBlocks, blockGenerator)
b.StopTimer()
b.ResetTimer()
for i := 0; i < b.N; i++ {
// Import the shared chain and the original canonical one
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
b.Fatalf("failed to create tester chain: %v", err)
}
b.StartTimer()
if _, err := chain.InsertChain(shared); err != nil {
b.Fatalf("failed to insert shared chain: %v", err)
}
b.StopTimer()
block := chain.GetBlockByHash(chain.CurrentBlock().Hash())
if got := block.Transactions().Len(); got != numTxs*numBlocks {
b.Fatalf("Transactions were not included, expected %d, got %d", numTxs*numBlocks, got)
}
}
}
func BenchmarkBlockChain_1x1000ValueTransferToNonexisting(b *testing.B) {
var (
numTxs = 1000
numBlocks = 1
)
recipientFn := func(nonce uint64) common.Address {
return common.BigToAddress(new(big.Int).SetUint64(1337 + nonce))
}
dataFn := func(nonce uint64) []byte {
return nil
}
benchmarkLargeNumberOfValueToNonexisting(b, numTxs, numBlocks, recipientFn, dataFn)
}
func BenchmarkBlockChain_1x1000ValueTransferToExisting(b *testing.B) {
var (
numTxs = 1000
numBlocks = 1
)
b.StopTimer()
b.ResetTimer()
recipientFn := func(nonce uint64) common.Address {
return common.BigToAddress(new(big.Int).SetUint64(1337))
}
dataFn := func(nonce uint64) []byte {
return nil
}
benchmarkLargeNumberOfValueToNonexisting(b, numTxs, numBlocks, recipientFn, dataFn)
}
func BenchmarkBlockChain_1x1000Executions(b *testing.B) {
var (
numTxs = 1000
numBlocks = 1
)
b.StopTimer()
b.ResetTimer()
recipientFn := func(nonce uint64) common.Address {
return common.BigToAddress(new(big.Int).SetUint64(0xc0de))
}
dataFn := func(nonce uint64) []byte {
return nil
}
benchmarkLargeNumberOfValueToNonexisting(b, numTxs, numBlocks, recipientFn, dataFn)
}
// Tests that importing a some old blocks, where all blocks are before the
// pruning point.
// This internally leads to a sidechain import, since the blocks trigger an
// ErrPrunedAncestor error.
// This may e.g. happen if
// 1. Downloader rollbacks a batch of inserted blocks and exits
// 2. Downloader starts to sync again
// 3. The blocks fetched are all known and canonical blocks
func TestSideImportPrunedBlocks(t *testing.T) {
// Generate a canonical chain to act as the main dataset
engine := ethash.NewFaker()
genesis := &Genesis{
Config: params.TestChainConfig,
BaseFee: big.NewInt(params.InitialBaseFee),
}
// Generate and import the canonical chain
_, blocks, _ := GenerateChainWithGenesis(genesis, engine, 2*int(DefaultCacheConfig.TriesInMemory), nil)
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, genesis, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
lastPrunedIndex := len(blocks) - int(chain.cacheConfig.TriesInMemory) - 1
lastPrunedBlock := blocks[lastPrunedIndex]
// Verify pruning of lastPrunedBlock
if chain.HasBlockAndState(lastPrunedBlock.Hash(), lastPrunedBlock.NumberU64()) {
t.Errorf("Block %d not pruned", lastPrunedBlock.NumberU64())
}
firstNonPrunedBlock := blocks[len(blocks)-int(chain.cacheConfig.TriesInMemory)]
// Verify firstNonPrunedBlock is not pruned
if !chain.HasBlockAndState(firstNonPrunedBlock.Hash(), firstNonPrunedBlock.NumberU64()) {
t.Errorf("Block %d pruned", firstNonPrunedBlock.NumberU64())
}
// Now re-import some old blocks
blockToReimport := blocks[5:8]
_, err = chain.InsertChain(blockToReimport)
if err != nil {
t.Errorf("Got error, %v", err)
}
}
// TestDeleteCreateRevert tests a weird state transition corner case that we hit
// while changing the internals of statedb. The workflow is that a contract is
// self destructed, then in a followup transaction (but same block) it's created
// again and the transaction reverted.
//
// The original statedb implementation flushed dirty objects to the tries after
// each transaction, so this works ok. The rework accumulated writes in memory
// first, but the journal wiped the entire state object on create-revert.
func TestDeleteCreateRevert(t *testing.T) {
var (
aa = common.HexToAddress("0x000000000000000000000000000000000000aaaa")
bb = common.HexToAddress("0x000000000000000000000000000000000000bbbb")
engine = ethash.NewFaker()
// A sender who makes transactions, has some funds
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(100000000000000000)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{
address: {Balance: funds},
// The address 0xAAAAA selfdestructs if called
aa: {
// Code needs to just selfdestruct
Code: []byte{byte(vm.PC), byte(vm.SELFDESTRUCT)},
Nonce: 1,
Balance: big.NewInt(0),
},
// The address 0xBBBB send 1 wei to 0xAAAA, then reverts
bb: {
Code: []byte{
byte(vm.PC), // [0]
byte(vm.DUP1), // [0,0]
byte(vm.DUP1), // [0,0,0]
byte(vm.DUP1), // [0,0,0,0]
byte(vm.PUSH1), 0x01, // [0,0,0,0,1] (value)
byte(vm.PUSH2), 0xaa, 0xaa, // [0,0,0,0,1, 0xaaaa]
byte(vm.GAS),
byte(vm.CALL),
byte(vm.REVERT),
},
Balance: big.NewInt(1),
},
},
}
)
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 1, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
// One transaction to AAAA
tx, _ := types.SignTx(types.NewTransaction(0, aa,
big.NewInt(0), 50000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
b.AddTx(tx)
// One transaction to BBBB
tx, _ = types.SignTx(types.NewTransaction(1, bb,
big.NewInt(0), 100000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
b.AddTx(tx)
})
// Import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
}
// TestDeleteRecreateSlots tests a state-transition that contains both deletion
// and recreation of contract state.
// Contract A exists, has slots 1 and 2 set
// Tx 1: Selfdestruct A
// Tx 2: Re-create A, set slots 3 and 4
// Expected outcome is that _all_ slots are cleared from A, due to the selfdestruct,
// and then the new slots exist
func TestDeleteRecreateSlots(t *testing.T) {
var (
engine = ethash.NewFaker()
// A sender who makes transactions, has some funds
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000000000)
bb = common.HexToAddress("0x000000000000000000000000000000000000bbbb")
aaStorage = make(map[common.Hash]common.Hash) // Initial storage in AA
aaCode = []byte{byte(vm.PC), byte(vm.SELFDESTRUCT)} // Code for AA (simple selfdestruct)
)
// Populate two slots
aaStorage[common.HexToHash("01")] = common.HexToHash("01")
aaStorage[common.HexToHash("02")] = common.HexToHash("02")
// The bb-code needs to CREATE2 the aa contract. It consists of
// both initcode and deployment code
// initcode:
// 1. Set slots 3=3, 4=4,
// 2. Return aaCode
initCode := []byte{
byte(vm.PUSH1), 0x3, // value
byte(vm.PUSH1), 0x3, // location
byte(vm.SSTORE), // Set slot[3] = 3
byte(vm.PUSH1), 0x4, // value
byte(vm.PUSH1), 0x4, // location
byte(vm.SSTORE), // Set slot[4] = 4
// Slots are set, now return the code
byte(vm.PUSH2), byte(vm.PC), byte(vm.SELFDESTRUCT), // Push code on stack
byte(vm.PUSH1), 0x0, // memory start on stack
byte(vm.MSTORE),
// Code is now in memory.
byte(vm.PUSH1), 0x2, // size
byte(vm.PUSH1), byte(32 - 2), // offset
byte(vm.RETURN),
}
if l := len(initCode); l > 32 {
t.Fatalf("init code is too long for a pushx, need a more elaborate deployer")
}
bbCode := []byte{
// Push initcode onto stack
byte(vm.PUSH1) + byte(len(initCode)-1)}
bbCode = append(bbCode, initCode...)
bbCode = append(bbCode, []byte{
byte(vm.PUSH1), 0x0, // memory start on stack
byte(vm.MSTORE),
byte(vm.PUSH1), 0x00, // salt
byte(vm.PUSH1), byte(len(initCode)), // size
byte(vm.PUSH1), byte(32 - len(initCode)), // offset
byte(vm.PUSH1), 0x00, // endowment
byte(vm.CREATE2),
}...)
initHash := crypto.Keccak256Hash(initCode)
aa := crypto.CreateAddress2(bb, [32]byte{}, initHash[:])
t.Logf("Destination address: %x\n", aa)
gspec := &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{
address: {Balance: funds},
// The address 0xAAAAA selfdestructs if called
aa: {
// Code needs to just selfdestruct
Code: aaCode,
Nonce: 1,
Balance: big.NewInt(0),
Storage: aaStorage,
},
// The contract BB recreates AA
bb: {
Code: bbCode,
Balance: big.NewInt(1),
},
},
}
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 1, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
// One transaction to AA, to kill it
tx, _ := types.SignTx(types.NewTransaction(0, aa,
big.NewInt(0), 50000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
b.AddTx(tx)
// One transaction to BB, to recreate AA
tx, _ = types.SignTx(types.NewTransaction(1, bb,
big.NewInt(0), 100000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
b.AddTx(tx)
})
// Import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{
Tracer: logger.NewJSONLogger(nil, os.Stdout),
}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
statedb, _ := chain.State()
// If all is correct, then slot 1 and 2 are zero
if got, exp := statedb.GetState(aa, common.HexToHash("01")), (common.Hash{}); got != exp {
t.Errorf("got %x exp %x", got, exp)
}
if got, exp := statedb.GetState(aa, common.HexToHash("02")), (common.Hash{}); got != exp {
t.Errorf("got %x exp %x", got, exp)
}
// Also, 3 and 4 should be set
if got, exp := statedb.GetState(aa, common.HexToHash("03")), common.HexToHash("03"); got != exp {
t.Fatalf("got %x exp %x", got, exp)
}
if got, exp := statedb.GetState(aa, common.HexToHash("04")), common.HexToHash("04"); got != exp {
t.Fatalf("got %x exp %x", got, exp)
}
}
// TestDeleteRecreateAccount tests a state-transition that contains deletion of a
// contract with storage, and a recreate of the same contract via a
// regular value-transfer
// Expected outcome is that _all_ slots are cleared from A
func TestDeleteRecreateAccount(t *testing.T) {
var (
engine = ethash.NewFaker()
// A sender who makes transactions, has some funds
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000000000)
aa = common.HexToAddress("0x7217d81b76bdd8707601e959454e3d776aee5f43")
aaStorage = make(map[common.Hash]common.Hash) // Initial storage in AA
aaCode = []byte{byte(vm.PC), byte(vm.SELFDESTRUCT)} // Code for AA (simple selfdestruct)
)
// Populate two slots
aaStorage[common.HexToHash("01")] = common.HexToHash("01")
aaStorage[common.HexToHash("02")] = common.HexToHash("02")
gspec := &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{
address: {Balance: funds},
// The address 0xAAAAA selfdestructs if called
aa: {
// Code needs to just selfdestruct
Code: aaCode,
Nonce: 1,
Balance: big.NewInt(0),
Storage: aaStorage,
},
},
}
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 1, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
// One transaction to AA, to kill it
tx, _ := types.SignTx(types.NewTransaction(0, aa,
big.NewInt(0), 50000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
b.AddTx(tx)
// One transaction to AA, to recreate it (but without storage
tx, _ = types.SignTx(types.NewTransaction(1, aa,
big.NewInt(1), 100000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
b.AddTx(tx)
})
// Import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{
Tracer: logger.NewJSONLogger(nil, os.Stdout),
}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
statedb, _ := chain.State()
// If all is correct, then both slots are zero
if got, exp := statedb.GetState(aa, common.HexToHash("01")), (common.Hash{}); got != exp {
t.Errorf("got %x exp %x", got, exp)
}
if got, exp := statedb.GetState(aa, common.HexToHash("02")), (common.Hash{}); got != exp {
t.Errorf("got %x exp %x", got, exp)
}
}
// TestDeleteRecreateSlotsAcrossManyBlocks tests multiple state-transition that contains both deletion
// and recreation of contract state.
// Contract A exists, has slots 1 and 2 set
// Tx 1: Selfdestruct A
// Tx 2: Re-create A, set slots 3 and 4
// Expected outcome is that _all_ slots are cleared from A, due to the selfdestruct,
// and then the new slots exist
func TestDeleteRecreateSlotsAcrossManyBlocks(t *testing.T) {
var (
engine = ethash.NewFaker()
// A sender who makes transactions, has some funds
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000000000)
bb = common.HexToAddress("0x000000000000000000000000000000000000bbbb")
aaStorage = make(map[common.Hash]common.Hash) // Initial storage in AA
aaCode = []byte{byte(vm.PC), byte(vm.SELFDESTRUCT)} // Code for AA (simple selfdestruct)
)
// Populate two slots
aaStorage[common.HexToHash("01")] = common.HexToHash("01")
aaStorage[common.HexToHash("02")] = common.HexToHash("02")
// The bb-code needs to CREATE2 the aa contract. It consists of
// both initcode and deployment code
// initcode:
// 1. Set slots 3=blocknum+1, 4=4,
// 2. Return aaCode
initCode := []byte{
byte(vm.PUSH1), 0x1, //
byte(vm.NUMBER), // value = number + 1
byte(vm.ADD), //
byte(vm.PUSH1), 0x3, // location
byte(vm.SSTORE), // Set slot[3] = number + 1
byte(vm.PUSH1), 0x4, // value
byte(vm.PUSH1), 0x4, // location
byte(vm.SSTORE), // Set slot[4] = 4
// Slots are set, now return the code
byte(vm.PUSH2), byte(vm.PC), byte(vm.SELFDESTRUCT), // Push code on stack
byte(vm.PUSH1), 0x0, // memory start on stack
byte(vm.MSTORE),
// Code is now in memory.
byte(vm.PUSH1), 0x2, // size
byte(vm.PUSH1), byte(32 - 2), // offset
byte(vm.RETURN),
}
if l := len(initCode); l > 32 {
t.Fatalf("init code is too long for a pushx, need a more elaborate deployer")
}
bbCode := []byte{
// Push initcode onto stack
byte(vm.PUSH1) + byte(len(initCode)-1)}
bbCode = append(bbCode, initCode...)
bbCode = append(bbCode, []byte{
byte(vm.PUSH1), 0x0, // memory start on stack
byte(vm.MSTORE),
byte(vm.PUSH1), 0x00, // salt
byte(vm.PUSH1), byte(len(initCode)), // size
byte(vm.PUSH1), byte(32 - len(initCode)), // offset
byte(vm.PUSH1), 0x00, // endowment
byte(vm.CREATE2),
}...)
initHash := crypto.Keccak256Hash(initCode)
aa := crypto.CreateAddress2(bb, [32]byte{}, initHash[:])
t.Logf("Destination address: %x\n", aa)
gspec := &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{
address: {Balance: funds},
// The address 0xAAAAA selfdestructs if called
aa: {
// Code needs to just selfdestruct
Code: aaCode,
Nonce: 1,
Balance: big.NewInt(0),
Storage: aaStorage,
},
// The contract BB recreates AA
bb: {
Code: bbCode,
Balance: big.NewInt(1),
},
},
}
var nonce uint64
type expectation struct {
exist bool
blocknum int
values map[int]int
}
var current = &expectation{
exist: true, // exists in genesis
blocknum: 0,
values: map[int]int{1: 1, 2: 2},
}
var expectations []*expectation
var newDestruct = func(e *expectation, b *BlockGen) *types.Transaction {
tx, _ := types.SignTx(types.NewTransaction(nonce, aa,
big.NewInt(0), 50000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
nonce++
if e.exist {
e.exist = false
e.values = nil
}
//t.Logf("block %d; adding destruct\n", e.blocknum)
return tx
}
var newResurrect = func(e *expectation, b *BlockGen) *types.Transaction {
tx, _ := types.SignTx(types.NewTransaction(nonce, bb,
big.NewInt(0), 100000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
nonce++
if !e.exist {
e.exist = true
e.values = map[int]int{3: e.blocknum + 1, 4: 4}
}
//t.Logf("block %d; adding resurrect\n", e.blocknum)
return tx
}
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 150, func(i int, b *BlockGen) {
var exp = new(expectation)
exp.blocknum = i + 1
exp.values = make(map[int]int)
for k, v := range current.values {
exp.values[k] = v
}
exp.exist = current.exist
b.SetCoinbase(common.Address{1})
if i%2 == 0 {
b.AddTx(newDestruct(exp, b))
}
if i%3 == 0 {
b.AddTx(newResurrect(exp, b))
}
if i%5 == 0 {
b.AddTx(newDestruct(exp, b))
}
if i%7 == 0 {
b.AddTx(newResurrect(exp, b))
}
expectations = append(expectations, exp)
current = exp
})
// Import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{
//Debug: true,
//Tracer: vm.NewJSONLogger(nil, os.Stdout),
}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
var asHash = func(num int) common.Hash {
return common.BytesToHash([]byte{byte(num)})
}
for i, block := range blocks {
blockNum := i + 1
if n, err := chain.InsertChain([]*types.Block{block}); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
statedb, _ := chain.State()
// If all is correct, then slot 1 and 2 are zero
if got, exp := statedb.GetState(aa, common.HexToHash("01")), (common.Hash{}); got != exp {
t.Errorf("block %d, got %x exp %x", blockNum, got, exp)
}
if got, exp := statedb.GetState(aa, common.HexToHash("02")), (common.Hash{}); got != exp {
t.Errorf("block %d, got %x exp %x", blockNum, got, exp)
}
exp := expectations[i]
if exp.exist {
if !statedb.Exist(aa) {
t.Fatalf("block %d, expected %v to exist, it did not", blockNum, aa)
}
for slot, val := range exp.values {
if gotValue, expValue := statedb.GetState(aa, asHash(slot)), asHash(val); gotValue != expValue {
t.Fatalf("block %d, slot %d, got %x exp %x", blockNum, slot, gotValue, expValue)
}
}
} else {
if statedb.Exist(aa) {
t.Fatalf("block %d, expected %v to not exist, it did", blockNum, aa)
}
}
}
}
// TestInitThenFailCreateContract tests a pretty notorious case that happened
// on mainnet over blocks 7338108, 7338110 and 7338115.
// - Block 7338108: address e771789f5cccac282f23bb7add5690e1f6ca467c is initiated
// with 0.001 ether (thus created but no code)
// - Block 7338110: a CREATE2 is attempted. The CREATE2 would deploy code on
// the same address e771789f5cccac282f23bb7add5690e1f6ca467c. However, the
// deployment fails due to OOG during initcode execution
// - Block 7338115: another tx checks the balance of
// e771789f5cccac282f23bb7add5690e1f6ca467c, and the snapshotter returned it as
// zero.
//
// The problem being that the snapshotter maintains a destructset, and adds items
// to the destructset in case something is created "onto" an existing item.
// We need to either roll back the snapDestructs, or not place it into snapDestructs
// in the first place.
func TestInitThenFailCreateContract(t *testing.T) {
var (
engine = ethash.NewFaker()
// A sender who makes transactions, has some funds
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000000000)
bb = common.HexToAddress("0x000000000000000000000000000000000000bbbb")
)
// The bb-code needs to CREATE2 the aa contract. It consists of
// both initcode and deployment code
// initcode:
// 1. If blocknum < 1, error out (e.g invalid opcode)
// 2. else, return a snippet of code
initCode := []byte{
byte(vm.PUSH1), 0x1, // y (2)
byte(vm.NUMBER), // x (number)
byte(vm.GT), // x > y?
byte(vm.PUSH1), byte(0x8),
byte(vm.JUMPI), // jump to label if number > 2
byte(0xFE), // illegal opcode
byte(vm.JUMPDEST),
byte(vm.PUSH1), 0x2, // size
byte(vm.PUSH1), 0x0, // offset
byte(vm.RETURN), // return 2 bytes of zero-code
}
if l := len(initCode); l > 32 {
t.Fatalf("init code is too long for a pushx, need a more elaborate deployer")
}
bbCode := []byte{
// Push initcode onto stack
byte(vm.PUSH1) + byte(len(initCode)-1)}
bbCode = append(bbCode, initCode...)
bbCode = append(bbCode, []byte{
byte(vm.PUSH1), 0x0, // memory start on stack
byte(vm.MSTORE),
byte(vm.PUSH1), 0x00, // salt
byte(vm.PUSH1), byte(len(initCode)), // size
byte(vm.PUSH1), byte(32 - len(initCode)), // offset
byte(vm.PUSH1), 0x00, // endowment
byte(vm.CREATE2),
}...)
initHash := crypto.Keccak256Hash(initCode)
aa := crypto.CreateAddress2(bb, [32]byte{}, initHash[:])
t.Logf("Destination address: %x\n", aa)
gspec := &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{
address: {Balance: funds},
// The address aa has some funds
aa: {Balance: big.NewInt(100000)},
// The contract BB tries to create code onto AA
bb: {
Code: bbCode,
Balance: big.NewInt(1),
},
},
}
nonce := uint64(0)
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 4, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
// One transaction to BB
tx, _ := types.SignTx(types.NewTransaction(nonce, bb,
big.NewInt(0), 100000, b.header.BaseFee, nil), types.HomesteadSigner{}, key)
b.AddTx(tx)
nonce++
})
// Import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{
//Debug: true,
//Tracer: vm.NewJSONLogger(nil, os.Stdout),
}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
statedb, _ := chain.State()
if got, exp := statedb.GetBalance(aa), big.NewInt(100000); got.Cmp(exp) != 0 {
t.Fatalf("Genesis err, got %v exp %v", got, exp)
}
// First block tries to create, but fails
{
block := blocks[0]
if _, err := chain.InsertChain([]*types.Block{blocks[0]}); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", block.NumberU64(), err)
}
statedb, _ = chain.State()
if got, exp := statedb.GetBalance(aa), big.NewInt(100000); got.Cmp(exp) != 0 {
t.Fatalf("block %d: got %v exp %v", block.NumberU64(), got, exp)
}
}
// Import the rest of the blocks
for _, block := range blocks[1:] {
if _, err := chain.InsertChain([]*types.Block{block}); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", block.NumberU64(), err)
}
}
}
// TestEIP2718Transition tests that an EIP-2718 transaction will be accepted
// after the fork block has passed. This is verified by sending an EIP-2930
// access list transaction, which specifies a single slot access, and then
// checking that the gas usage of a hot SLOAD and a cold SLOAD are calculated
// correctly.
func TestEIP2718Transition(t *testing.T) {
var (
aa = common.HexToAddress("0x000000000000000000000000000000000000aaaa")
engine = ethash.NewFaker()
// A sender who makes transactions, has some funds
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(1000000000000000)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{
address: {Balance: funds},
// The address 0xAAAA sloads 0x00 and 0x01
aa: {
Code: []byte{
byte(vm.PC),
byte(vm.PC),
byte(vm.SLOAD),
byte(vm.SLOAD),
},
Nonce: 0,
Balance: big.NewInt(0),
},
},
}
)
// Generate blocks
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 1, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
// One transaction to 0xAAAA
signer := types.LatestSigner(gspec.Config)
tx, _ := types.SignNewTx(key, signer, &types.AccessListTx{
ChainID: gspec.Config.ChainID,
Nonce: 0,
To: &aa,
Gas: 30000,
GasPrice: b.header.BaseFee,
AccessList: types.AccessList{{
Address: aa,
StorageKeys: []common.Hash{{0}},
}},
})
b.AddTx(tx)
})
// Import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
block := chain.GetBlockByNumber(1)
// Expected gas is intrinsic + 2 * pc + hot load + cold load, since only one load is in the access list
expected := params.TxGas + params.TxAccessListAddressGas + params.TxAccessListStorageKeyGas +
vm.GasQuickStep*2 + params.WarmStorageReadCostEIP2929 + params.ColdSloadCostEIP2929
if block.GasUsed() != expected {
t.Fatalf("incorrect amount of gas spent: expected %d, got %d", expected, block.GasUsed())
}
}
// TestEIP1559Transition tests the following:
//
// 1. A transaction whose gasFeeCap is greater than the baseFee is valid.
// 2. Gas accounting for access lists on EIP-1559 transactions is correct.
// 3. Only the transaction's tip will be received by the coinbase.
// 4. The transaction sender pays for both the tip and baseFee.
// 5. The coinbase receives only the partially realized tip when
// gasFeeCap - gasTipCap < baseFee.
// 6. Legacy transaction behave as expected (e.g. gasPrice = gasFeeCap = gasTipCap).
func TestEIP1559Transition(t *testing.T) {
var (
aa = common.HexToAddress("0x000000000000000000000000000000000000aaaa")
engine = ethash.NewFaker()
// A sender who makes transactions, has some funds
key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
key2, _ = crypto.HexToECDSA("8a1f9a8f95be41cd7ccb6168179afb4504aefe388d1e14474d32c45c72ce7b7a")
addr1 = crypto.PubkeyToAddress(key1.PublicKey)
addr2 = crypto.PubkeyToAddress(key2.PublicKey)
funds = new(big.Int).Mul(common.Big1, big.NewInt(params.Ether))
gspec = &Genesis{
Config: params.AllEthashProtocolChanges,
Alloc: GenesisAlloc{
addr1: {Balance: funds},
addr2: {Balance: funds},
// The address 0xAAAA sloads 0x00 and 0x01
aa: {
Code: []byte{
byte(vm.PC),
byte(vm.PC),
byte(vm.SLOAD),
byte(vm.SLOAD),
},
Nonce: 0,
Balance: big.NewInt(0),
},
},
}
)
gspec.Config.BerlinBlock = common.Big0
gspec.Config.LondonBlock = common.Big0
signer := types.LatestSigner(gspec.Config)
genDb, blocks, _ := GenerateChainWithGenesis(gspec, engine, 1, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{1})
// One transaction to 0xAAAA
accesses := types.AccessList{types.AccessTuple{
Address: aa,
StorageKeys: []common.Hash{{0}},
}}
txdata := &types.DynamicFeeTx{
ChainID: gspec.Config.ChainID,
Nonce: 0,
To: &aa,
Gas: 30000,
GasFeeCap: newGwei(5),
GasTipCap: big.NewInt(2),
AccessList: accesses,
Data: []byte{},
}
tx := types.NewTx(txdata)
tx, _ = types.SignTx(tx, signer, key1)
b.AddTx(tx)
})
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
block := chain.GetBlockByNumber(1)
// 1+2: Ensure EIP-1559 access lists are accounted for via gas usage.
expectedGas := params.TxGas + params.TxAccessListAddressGas + params.TxAccessListStorageKeyGas +
vm.GasQuickStep*2 + params.WarmStorageReadCostEIP2929 + params.ColdSloadCostEIP2929
if block.GasUsed() != expectedGas {
t.Fatalf("incorrect amount of gas spent: expected %d, got %d", expectedGas, block.GasUsed())
}
state, _ := chain.State()
// 3: Ensure that miner received only the tx's tip.
actual := state.GetBalance(block.Coinbase())
expected := new(big.Int).Add(
new(big.Int).SetUint64(block.GasUsed()*block.Transactions()[0].GasTipCap().Uint64()),
ethash.ConstantinopleBlockReward,
)
if actual.Cmp(expected) != 0 {
t.Fatalf("miner balance incorrect: expected %d, got %d", expected, actual)
}
// 4: Ensure the tx sender paid for the gasUsed * (tip + block baseFee).
actual = new(big.Int).Sub(funds, state.GetBalance(addr1))
expected = new(big.Int).SetUint64(block.GasUsed() * (block.Transactions()[0].GasTipCap().Uint64() + block.BaseFee().Uint64()))
if actual.Cmp(expected) != 0 {
t.Fatalf("sender balance incorrect: expected %d, got %d", expected, actual)
}
blocks, _ = GenerateChain(gspec.Config, block, engine, genDb, 1, func(i int, b *BlockGen) {
b.SetCoinbase(common.Address{2})
txdata := &types.LegacyTx{
Nonce: 0,
To: &aa,
Gas: 30000,
GasPrice: newGwei(5),
}
tx := types.NewTx(txdata)
tx, _ = types.SignTx(tx, signer, key2)
b.AddTx(tx)
})
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
block = chain.GetBlockByNumber(2)
state, _ = chain.State()
effectiveTip := block.Transactions()[0].GasTipCap().Uint64() - block.BaseFee().Uint64()
// 6+5: Ensure that miner received only the tx's effective tip.
actual = state.GetBalance(block.Coinbase())
expected = new(big.Int).Add(
new(big.Int).SetUint64(block.GasUsed()*effectiveTip),
ethash.ConstantinopleBlockReward,
)
if actual.Cmp(expected) != 0 {
t.Fatalf("miner balance incorrect: expected %d, got %d", expected, actual)
}
// 4: Ensure the tx sender paid for the gasUsed * (effectiveTip + block baseFee).
actual = new(big.Int).Sub(funds, state.GetBalance(addr2))
expected = new(big.Int).SetUint64(block.GasUsed() * (effectiveTip + block.BaseFee().Uint64()))
if actual.Cmp(expected) != 0 {
t.Fatalf("sender balance incorrect: expected %d, got %d", expected, actual)
}
}
// Tests the scenario the chain is requested to another point with the missing state.
// It expects the state is recovered and all relevant chain markers are set correctly.
func TestSetCanonical(t *testing.T) {
t.Parallel()
var (
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
funds = big.NewInt(100000000000000000)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{address: {Balance: funds}},
BaseFee: big.NewInt(params.InitialBaseFee),
}
signer = types.LatestSigner(gspec.Config)
engine = ethash.NewFaker()
)
//log.Root().SetHandler(log.LvlFilterHandler(log.LvlDebug, log.StreamHandler(os.Stderr, log.TerminalFormat(true))))
// Generate and import the canonical chain
_, canon, _ := GenerateChainWithGenesis(gspec, engine, 2*int(DefaultCacheConfig.TriesInMemory), func(i int, gen *BlockGen) {
tx, err := types.SignTx(types.NewTransaction(gen.TxNonce(address), common.Address{0x00}, big.NewInt(1000), params.TxGas, gen.header.BaseFee, nil), signer, key)
if err != nil {
panic(err)
}
gen.AddTx(tx)
})
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
defer chain.Stop()
if n, err := chain.InsertChain(canon); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
// Generate the side chain and import them
_, side, _ := GenerateChainWithGenesis(gspec, engine, 2*int(DefaultCacheConfig.TriesInMemory), func(i int, gen *BlockGen) {
tx, err := types.SignTx(types.NewTransaction(gen.TxNonce(address), common.Address{0x00}, big.NewInt(1), params.TxGas, gen.header.BaseFee, nil), signer, key)
if err != nil {
panic(err)
}
gen.AddTx(tx)
})
for _, block := range side {
err := chain.InsertBlockWithoutSetHead(block)
if err != nil {
t.Fatalf("Failed to insert into chain: %v", err)
}
}
for _, block := range side {
got := chain.GetBlockByHash(block.Hash())
if got == nil {
t.Fatalf("Lost the inserted block")
}
}
// Set the chain head to the side chain, ensure all the relevant markers are updated.
verify := func(head *types.Block) {
if chain.CurrentBlock().Hash() != head.Hash() {
t.Fatalf("Unexpected block hash, want %x, got %x", head.Hash(), chain.CurrentBlock().Hash())
}
if chain.CurrentSnapBlock().Hash() != head.Hash() {
t.Fatalf("Unexpected fast block hash, want %x, got %x", head.Hash(), chain.CurrentSnapBlock().Hash())
}
if chain.CurrentHeader().Hash() != head.Hash() {
t.Fatalf("Unexpected head header, want %x, got %x", head.Hash(), chain.CurrentHeader().Hash())
}
if !chain.HasState(head.Root()) {
t.Fatalf("Lost block state %v %x", head.Number(), head.Hash())
}
}
_, _ = chain.SetCanonical(side[len(side)-1])
verify(side[len(side)-1])
// Reset the chain head to original chain
_, _ = chain.SetCanonical(canon[int(DefaultCacheConfig.TriesInMemory)-1])
verify(canon[int(DefaultCacheConfig.TriesInMemory)-1])
}
// TestCanonicalHashMarker tests all the canonical hash markers are updated/deleted
// correctly in case reorg is called.
// nolint:gocognit
func TestCanonicalHashMarker(t *testing.T) {
t.Parallel()
var cases = []struct {
forkA int
forkB int
}{
// ForkA: 10 blocks
// ForkB: 1 blocks
//
// reorged:
// markers [2, 10] should be deleted
// markers [1] should be updated
{10, 1},
// ForkA: 10 blocks
// ForkB: 2 blocks
//
// reorged:
// markers [3, 10] should be deleted
// markers [1, 2] should be updated
{10, 2},
// ForkA: 10 blocks
// ForkB: 10 blocks
//
// reorged:
// markers [1, 10] should be updated
{10, 10},
// ForkA: 10 blocks
// ForkB: 11 blocks
//
// reorged:
// markers [1, 11] should be updated
{10, 11},
}
for _, c := range cases {
var (
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{},
BaseFee: big.NewInt(params.InitialBaseFee),
}
engine = ethash.NewFaker()
)
_, forkA, _ := GenerateChainWithGenesis(gspec, engine, c.forkA, func(i int, gen *BlockGen) {})
_, forkB, _ := GenerateChainWithGenesis(gspec, engine, c.forkB, func(i int, gen *BlockGen) {})
// Initialize test chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
// Insert forkA and forkB, the canonical should on forkA still
if n, err := chain.InsertChain(forkA); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
if n, err := chain.InsertChain(forkB); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
verify := func(head *types.Block) {
if chain.CurrentBlock().Hash() != head.Hash() {
t.Fatalf("Unexpected block hash, want %x, got %x", head.Hash(), chain.CurrentBlock().Hash())
}
if chain.CurrentSnapBlock().Hash() != head.Hash() {
t.Fatalf("Unexpected fast block hash, want %x, got %x", head.Hash(), chain.CurrentSnapBlock().Hash())
}
if chain.CurrentHeader().Hash() != head.Hash() {
t.Fatalf("Unexpected head header, want %x, got %x", head.Hash(), chain.CurrentHeader().Hash())
}
if !chain.HasState(head.Root()) {
t.Fatalf("Lost block state %v %x", head.Number(), head.Hash())
}
}
// Switch canonical chain to forkB if necessary
if len(forkA) < len(forkB) {
verify(forkB[len(forkB)-1])
} else {
verify(forkA[len(forkA)-1])
_, _ = chain.SetCanonical(forkB[len(forkB)-1])
verify(forkB[len(forkB)-1])
}
// Ensure all hash markers are updated correctly
for i := 0; i < len(forkB); i++ {
block := forkB[i]
hash := chain.GetCanonicalHash(block.NumberU64())
if hash != block.Hash() {
t.Fatalf("Unexpected canonical hash %d", block.NumberU64())
}
}
if c.forkA > c.forkB {
for i := uint64(c.forkB) + 1; i <= uint64(c.forkA); i++ {
hash := chain.GetCanonicalHash(i)
if hash != (common.Hash{}) {
t.Fatalf("Unexpected canonical hash %d", i)
}
}
}
chain.Stop()
}
}
// TestTxIndexer tests the tx indexes are updated correctly.
func TestTxIndexer(t *testing.T) {
t.Parallel()
var (
testBankKey, _ = crypto.GenerateKey()
testBankAddress = crypto.PubkeyToAddress(testBankKey.PublicKey)
testBankFunds = big.NewInt(1000000000000000000)
gspec = &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{testBankAddress: {Balance: testBankFunds}},
BaseFee: big.NewInt(params.InitialBaseFee),
}
engine = ethash.NewFaker()
nonce = uint64(0)
)
_, blocks, receipts := GenerateChainWithGenesis(gspec, engine, 128, func(i int, gen *BlockGen) {
tx, _ := types.SignTx(types.NewTransaction(nonce, common.HexToAddress("0xdeadbeef"), big.NewInt(1000), params.TxGas, big.NewInt(10*params.InitialBaseFee), nil), types.HomesteadSigner{}, testBankKey)
gen.AddTx(tx)
nonce += 1
})
// verifyIndexes checks if the transaction indexes are present or not
// of the specified block.
verifyIndexes := func(db ethdb.Database, number uint64, exist bool) {
if number == 0 {
return
}
block := blocks[number-1]
for _, tx := range block.Transactions() {
lookup := rawdb.ReadTxLookupEntry(db, tx.Hash())
if exist && lookup == nil {
t.Fatalf("missing %d %x", number, tx.Hash().Hex())
}
if !exist && lookup != nil {
t.Fatalf("unexpected %d %x", number, tx.Hash().Hex())
}
}
}
// verifyRange runs verifyIndexes for a range of blocks, from and to are included.
verifyRange := func(db ethdb.Database, from, to uint64, exist bool) {
for number := from; number <= to; number += 1 {
verifyIndexes(db, number, exist)
}
}
verify := func(db ethdb.Database, expTail uint64) {
tail := rawdb.ReadTxIndexTail(db)
if tail == nil {
t.Fatal("Failed to write tx index tail")
}
if *tail != expTail {
t.Fatalf("Unexpected tx index tail, want %v, got %d", expTail, *tail)
}
if *tail != 0 {
verifyRange(db, 0, *tail-1, false)
}
verifyRange(db, *tail, 128, true)
}
var cases = []struct {
limitA uint64
tailA uint64
limitB uint64
tailB uint64
limitC uint64
tailC uint64
}{
{
// LimitA: 0
// TailA: 0
//
// all blocks are indexed
limitA: 0,
tailA: 0,
// LimitB: 1
// TailB: 128
//
// block-128 is indexed
limitB: 1,
tailB: 128,
// LimitB: 64
// TailB: 65
//
// block [65, 128] are indexed
limitC: 64,
tailC: 65,
},
{
// LimitA: 64
// TailA: 65
//
// block [65, 128] are indexed
limitA: 64,
tailA: 65,
// LimitB: 1
// TailB: 128
//
// block-128 is indexed
limitB: 1,
tailB: 128,
// LimitB: 64
// TailB: 65
//
// block [65, 128] are indexed
limitC: 64,
tailC: 65,
},
{
// LimitA: 127
// TailA: 2
//
// block [2, 128] are indexed
limitA: 127,
tailA: 2,
// LimitB: 1
// TailB: 128
//
// block-128 is indexed
limitB: 1,
tailB: 128,
// LimitB: 64
// TailB: 65
//
// block [65, 128] are indexed
limitC: 64,
tailC: 65,
},
{
// LimitA: 128
// TailA: 1
//
// block [2, 128] are indexed
limitA: 128,
tailA: 1,
// LimitB: 1
// TailB: 128
//
// block-128 is indexed
limitB: 1,
tailB: 128,
// LimitB: 64
// TailB: 65
//
// block [65, 128] are indexed
limitC: 64,
tailC: 65,
},
{
// LimitA: 129
// TailA: 0
//
// block [0, 128] are indexed
limitA: 129,
tailA: 0,
// LimitB: 1
// TailB: 128
//
// block-128 is indexed
limitB: 1,
tailB: 128,
// LimitB: 64
// TailB: 65
//
// block [65, 128] are indexed
limitC: 64,
tailC: 65,
},
}
borReceipts := make([]types.Receipts, len(receipts))
for _, c := range cases {
frdir := t.TempDir()
db, _ := rawdb.NewDatabaseWithFreezer(rawdb.NewMemoryDatabase(), frdir, "", false)
_, _ = rawdb.WriteAncientBlocks(db, append([]*types.Block{gspec.ToBlock()}, blocks...), append([]types.Receipts{{}}, receipts...), append([]types.Receipts{{}}, borReceipts...), big.NewInt(0))
// Index the initial blocks from ancient store
chain, _ := NewBlockChain(db, nil, gspec, nil, engine, vm.Config{}, nil, &c.limitA, nil)
chain.indexBlocks(nil, 128, make(chan struct{}))
verify(db, c.tailA)
chain.SetTxLookupLimit(c.limitB)
chain.indexBlocks(rawdb.ReadTxIndexTail(db), 128, make(chan struct{}))
verify(db, c.tailB)
chain.SetTxLookupLimit(c.limitC)
chain.indexBlocks(rawdb.ReadTxIndexTail(db), 128, make(chan struct{}))
verify(db, c.tailC)
// Recover all indexes
chain.SetTxLookupLimit(0)
chain.indexBlocks(rawdb.ReadTxIndexTail(db), 128, make(chan struct{}))
verify(db, 0)
chain.Stop()
db.Close()
os.RemoveAll(frdir)
}
}
func TestCreateThenDeletePreByzantium(t *testing.T) {
t.Parallel()
// We use Ropsten chain config instead of Testchain config, this is
// deliberate: we want to use pre-byz rules where we have intermediate state roots
// between transactions.
testCreateThenDelete(t, &params.ChainConfig{
ChainID: big.NewInt(3),
HomesteadBlock: big.NewInt(0),
EIP150Block: big.NewInt(0),
EIP155Block: big.NewInt(10),
EIP158Block: big.NewInt(10),
ByzantiumBlock: big.NewInt(1_700_000),
})
}
func TestCreateThenDeletePostByzantium(t *testing.T) {
t.Parallel()
testCreateThenDelete(t, params.TestChainConfig)
}
// testCreateThenDelete tests a creation and subsequent deletion of a contract, happening
// within the same block.
func testCreateThenDelete(t *testing.T, config *params.ChainConfig) {
t.Helper()
var (
engine = ethash.NewFaker()
// A sender who makes transactions, has some funds
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
destAddress = crypto.CreateAddress(address, 0)
funds = big.NewInt(1000000000000000)
)
// runtime code is 0x60ffff : PUSH1 0xFF SELFDESTRUCT, a.k.a SELFDESTRUCT(0xFF)
code := append([]byte{0x60, 0xff, 0xff}, make([]byte, 32-3)...)
initCode := []byte{
// SSTORE 1:1
byte(vm.PUSH1), 0x1,
byte(vm.PUSH1), 0x1,
byte(vm.SSTORE),
// Get the runtime-code on the stack
byte(vm.PUSH32)}
initCode = append(initCode, code...)
initCode = append(initCode, []byte{
byte(vm.PUSH1), 0x0, // offset
byte(vm.MSTORE),
byte(vm.PUSH1), 0x3, // size
byte(vm.PUSH1), 0x0, // offset
byte(vm.RETURN), // return 3 bytes of zero-code
}...)
gspec := &Genesis{
Config: config,
Alloc: GenesisAlloc{
address: {Balance: funds},
},
}
nonce := uint64(0)
signer := types.HomesteadSigner{}
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 2, func(i int, b *BlockGen) {
fee := big.NewInt(1)
if b.header.BaseFee != nil {
fee = b.header.BaseFee
}
b.SetCoinbase(common.Address{1})
tx, _ := types.SignNewTx(key, signer, &types.LegacyTx{
Nonce: nonce,
GasPrice: new(big.Int).Set(fee),
Gas: 100000,
Data: initCode,
})
nonce++
b.AddTx(tx)
tx, _ = types.SignNewTx(key, signer, &types.LegacyTx{
Nonce: nonce,
GasPrice: new(big.Int).Set(fee),
Gas: 100000,
To: &destAddress,
})
b.AddTx(tx)
nonce++
})
// Import the canonical chain
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{
//Debug: true,
//Tracer: logger.NewJSONLogger(nil, os.Stdout),
}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
// Import the blocks
for _, block := range blocks {
if _, err := chain.InsertChain([]*types.Block{block}); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", block.NumberU64(), err)
}
}
}
// TestTransientStorageReset ensures the transient storage is wiped correctly
// between transactions.
func TestTransientStorageReset(t *testing.T) {
t.Parallel()
var (
engine = ethash.NewFaker()
key, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
address = crypto.PubkeyToAddress(key.PublicKey)
destAddress = crypto.CreateAddress(address, 0)
funds = big.NewInt(1000000000000000)
vmConfig = vm.Config{
ExtraEips: []int{1153}, // Enable transient storage EIP
}
)
code := append([]byte{
// TLoad value with location 1
byte(vm.PUSH1), 0x1,
byte(vm.TLOAD),
// PUSH location
byte(vm.PUSH1), 0x1,
// SStore location:value
byte(vm.SSTORE),
}, make([]byte, 32-6)...)
initCode := []byte{
// TSTORE 1:1
byte(vm.PUSH1), 0x1,
byte(vm.PUSH1), 0x1,
byte(vm.TSTORE),
// Get the runtime-code on the stack
byte(vm.PUSH32)}
initCode = append(initCode, code...)
initCode = append(initCode, []byte{
byte(vm.PUSH1), 0x0, // offset
byte(vm.MSTORE),
byte(vm.PUSH1), 0x6, // size
byte(vm.PUSH1), 0x0, // offset
byte(vm.RETURN), // return 6 bytes of zero-code
}...)
gspec := &Genesis{
Config: params.TestChainConfig,
Alloc: GenesisAlloc{
address: {Balance: funds},
},
}
nonce := uint64(0)
signer := types.HomesteadSigner{}
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 1, func(i int, b *BlockGen) {
fee := big.NewInt(1)
if b.header.BaseFee != nil {
fee = b.header.BaseFee
}
b.SetCoinbase(common.Address{1})
tx, _ := types.SignNewTx(key, signer, &types.LegacyTx{
Nonce: nonce,
GasPrice: new(big.Int).Set(fee),
Gas: 100000,
Data: initCode,
})
nonce++
b.AddTxWithVMConfig(tx, vmConfig)
tx, _ = types.SignNewTx(key, signer, &types.LegacyTx{
Nonce: nonce,
GasPrice: new(big.Int).Set(fee),
Gas: 100000,
To: &destAddress,
})
b.AddTxWithVMConfig(tx, vmConfig)
nonce++
})
// Initialize the blockchain with 1153 enabled.
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vmConfig, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
// Import the blocks
if _, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("failed to insert into chain: %v", err)
}
// Check the storage
state, err := chain.StateAt(chain.CurrentHeader().Root)
if err != nil {
t.Fatalf("Failed to load state %v", err)
}
loc := common.BytesToHash([]byte{1})
slot := state.GetState(destAddress, loc)
if slot != (common.Hash{}) {
t.Fatalf("Unexpected dirty storage slot")
}
}
func TestEIP3651(t *testing.T) {
t.Parallel()
var (
aa = common.HexToAddress("0x000000000000000000000000000000000000aaaa")
bb = common.HexToAddress("0x000000000000000000000000000000000000bbbb")
engine = beacon.NewFaker()
// A sender who makes transactions, has some funds
key1, _ = crypto.HexToECDSA("b71c71a67e1177ad4e901695e1b4b9ee17ae16c6668d313eac2f96dbcda3f291")
key2, _ = crypto.HexToECDSA("8a1f9a8f95be41cd7ccb6168179afb4504aefe388d1e14474d32c45c72ce7b7a")
addr1 = crypto.PubkeyToAddress(key1.PublicKey)
addr2 = crypto.PubkeyToAddress(key2.PublicKey)
funds = new(big.Int).Mul(common.Big1, big.NewInt(params.Ether))
config = *params.AllEthashProtocolChanges
gspec = &Genesis{
Config: &config,
Alloc: GenesisAlloc{
addr1: {Balance: funds},
addr2: {Balance: funds},
// The address 0xAAAA sloads 0x00 and 0x01
aa: {
Code: []byte{
byte(vm.PC),
byte(vm.PC),
byte(vm.SLOAD),
byte(vm.SLOAD),
},
Nonce: 0,
Balance: big.NewInt(0),
},
// The address 0xBBBB calls 0xAAAA
bb: {
Code: []byte{
byte(vm.PUSH1), 0, // out size
byte(vm.DUP1), // out offset
byte(vm.DUP1), // out insize
byte(vm.DUP1), // in offset
byte(vm.PUSH2), // address
byte(0xaa),
byte(0xaa),
byte(vm.GAS), // gas
byte(vm.DELEGATECALL),
},
Nonce: 0,
Balance: big.NewInt(0),
},
},
}
)
gspec.Config.BerlinBlock = common.Big0
gspec.Config.LondonBlock = common.Big0
gspec.Config.TerminalTotalDifficulty = common.Big0
gspec.Config.TerminalTotalDifficultyPassed = true
gspec.Config.ShanghaiTime = u64(0)
signer := types.LatestSigner(gspec.Config)
_, blocks, _ := GenerateChainWithGenesis(gspec, engine, 1, func(i int, b *BlockGen) {
b.SetCoinbase(aa)
// One transaction to Coinbase
txdata := &types.DynamicFeeTx{
ChainID: gspec.Config.ChainID,
Nonce: 0,
To: &bb,
Gas: 500000,
GasFeeCap: newGwei(5),
GasTipCap: big.NewInt(2),
AccessList: nil,
Data: []byte{},
}
tx := types.NewTx(txdata)
tx, _ = types.SignTx(tx, signer, key1)
b.AddTx(tx)
})
chain, err := NewBlockChain(rawdb.NewMemoryDatabase(), nil, gspec, nil, engine, vm.Config{Tracer: logger.NewMarkdownLogger(&logger.Config{}, os.Stderr)}, nil, nil, nil)
if err != nil {
t.Fatalf("failed to create tester chain: %v", err)
}
if n, err := chain.InsertChain(blocks); err != nil {
t.Fatalf("block %d: failed to insert into chain: %v", n, err)
}
block := chain.GetBlockByNumber(1)
// 1+2: Ensure EIP-1559 access lists are accounted for via gas usage.
innerGas := vm.GasQuickStep*2 + params.ColdSloadCostEIP2929*2
expectedGas := params.TxGas + 5*vm.GasFastestStep + vm.GasQuickStep + 100 + innerGas // 100 because 0xaaaa is in access list
if block.GasUsed() != expectedGas {
t.Fatalf("incorrect amount of gas spent: expected %d, got %d", expectedGas, block.GasUsed())
}
state, _ := chain.State()
// 3: Ensure that miner received only the tx's tip.
actual := state.GetBalance(block.Coinbase())
expected := new(big.Int).SetUint64(block.GasUsed() * block.Transactions()[0].GasTipCap().Uint64())
if actual.Cmp(expected) != 0 {
t.Fatalf("miner balance incorrect: expected %d, got %d", expected, actual)
}
// 4: Ensure the tx sender paid for the gasUsed * (tip + block baseFee).
actual = new(big.Int).Sub(funds, state.GetBalance(addr1))
expected = new(big.Int).SetUint64(block.GasUsed() * (block.Transactions()[0].GasTipCap().Uint64() + block.BaseFee().Uint64()))
if actual.Cmp(expected) != 0 {
t.Fatalf("sender balance incorrect: expected %d, got %d", expected, actual)
}
}