go-ethereum/core/blockchain.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

3132 lines
110 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 implements the Ethereum consensus protocol.
package core
import (
"compress/gzip"
"context"
"errors"
"fmt"
"io"
"math/big"
"os"
"path/filepath"
"runtime"
"sort"
"strings"
"sync"
"sync/atomic"
"time"
"go.opentelemetry.io/otel/attribute"
"go.opentelemetry.io/otel/trace"
"github.com/ethereum/go-ethereum"
"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/common/lru"
"github.com/ethereum/go-ethereum/common/mclock"
"github.com/ethereum/go-ethereum/common/prque"
"github.com/ethereum/go-ethereum/common/tracing"
"github.com/ethereum/go-ethereum/consensus"
"github.com/ethereum/go-ethereum/core/blockstm"
"github.com/ethereum/go-ethereum/core/rawdb"
"github.com/ethereum/go-ethereum/core/state"
"github.com/ethereum/go-ethereum/core/state/snapshot"
"github.com/ethereum/go-ethereum/core/types"
"github.com/ethereum/go-ethereum/core/vm"
"github.com/ethereum/go-ethereum/eth/downloader/whitelist"
"github.com/ethereum/go-ethereum/ethdb"
"github.com/ethereum/go-ethereum/event"
"github.com/ethereum/go-ethereum/internal/syncx"
"github.com/ethereum/go-ethereum/internal/version"
"github.com/ethereum/go-ethereum/log"
"github.com/ethereum/go-ethereum/metrics"
"github.com/ethereum/go-ethereum/params"
"github.com/ethereum/go-ethereum/rlp"
"github.com/ethereum/go-ethereum/trie"
)
var (
headBlockGauge = metrics.NewRegisteredGauge("chain/head/block", nil)
headHeaderGauge = metrics.NewRegisteredGauge("chain/head/header", nil)
headFastBlockGauge = metrics.NewRegisteredGauge("chain/head/receipt", nil)
headFinalizedBlockGauge = metrics.NewRegisteredGauge("chain/head/finalized", nil)
headSafeBlockGauge = metrics.NewRegisteredGauge("chain/head/safe", nil)
accountReadTimer = metrics.NewRegisteredTimer("chain/account/reads", nil)
accountHashTimer = metrics.NewRegisteredTimer("chain/account/hashes", nil)
accountUpdateTimer = metrics.NewRegisteredTimer("chain/account/updates", nil)
accountCommitTimer = metrics.NewRegisteredTimer("chain/account/commits", nil)
storageReadTimer = metrics.NewRegisteredTimer("chain/storage/reads", nil)
storageHashTimer = metrics.NewRegisteredTimer("chain/storage/hashes", nil)
storageUpdateTimer = metrics.NewRegisteredTimer("chain/storage/updates", nil)
storageCommitTimer = metrics.NewRegisteredTimer("chain/storage/commits", nil)
snapshotAccountReadTimer = metrics.NewRegisteredTimer("chain/snapshot/account/reads", nil)
snapshotStorageReadTimer = metrics.NewRegisteredTimer("chain/snapshot/storage/reads", nil)
snapshotCommitTimer = metrics.NewRegisteredTimer("chain/snapshot/commits", nil)
blockImportTimer = metrics.NewRegisteredMeter("chain/imports", nil)
triedbCommitTimer = metrics.NewRegisteredTimer("chain/triedb/commits", nil)
blockInsertTimer = metrics.NewRegisteredTimer("chain/inserts", nil)
blockValidationTimer = metrics.NewRegisteredTimer("chain/validation", nil)
blockExecutionTimer = metrics.NewRegisteredTimer("chain/execution", nil)
blockWriteTimer = metrics.NewRegisteredTimer("chain/write", nil)
blockExecutionParallelCounter = metrics.NewRegisteredCounter("chain/execution/parallel", nil)
blockExecutionSerialCounter = metrics.NewRegisteredCounter("chain/execution/serial", nil)
blockReorgMeter = metrics.NewRegisteredMeter("chain/reorg/executes", nil)
blockReorgAddMeter = metrics.NewRegisteredMeter("chain/reorg/add", nil)
blockReorgDropMeter = metrics.NewRegisteredMeter("chain/reorg/drop", nil)
blockPrefetchExecuteTimer = metrics.NewRegisteredTimer("chain/prefetch/executes", nil)
blockPrefetchInterruptMeter = metrics.NewRegisteredMeter("chain/prefetch/interrupts", nil)
errInsertionInterrupted = errors.New("insertion is interrupted")
errChainStopped = errors.New("blockchain is stopped")
)
const (
bodyCacheLimit = 256
blockCacheLimit = 256
receiptsCacheLimit = 1024
txLookupCacheLimit = 1024
maxFutureBlocks = 256
maxTimeFutureBlocks = 30
// BlockChainVersion ensures that an incompatible database forces a resync from scratch.
//
// Changelog:
//
// - Version 4
// The following incompatible database changes were added:
// * the `BlockNumber`, `TxHash`, `TxIndex`, `BlockHash` and `Index` fields of log are deleted
// * the `Bloom` field of receipt is deleted
// * the `BlockIndex` and `TxIndex` fields of txlookup are deleted
// - Version 5
// The following incompatible database changes were added:
// * the `TxHash`, `GasCost`, and `ContractAddress` fields are no longer stored for a receipt
// * the `TxHash`, `GasCost`, and `ContractAddress` fields are computed by looking up the
// receipts' corresponding block
// - Version 6
// The following incompatible database changes were added:
// * Transaction lookup information stores the corresponding block number instead of block hash
// - Version 7
// The following incompatible database changes were added:
// * Use freezer as the ancient database to maintain all ancient data
// - Version 8
// The following incompatible database changes were added:
// * New scheme for contract code in order to separate the codes and trie nodes
BlockChainVersion uint64 = 8
)
// CacheConfig contains the configuration values for the trie database
// that's resident in a blockchain.
type CacheConfig struct {
TrieCleanLimit int // Memory allowance (MB) to use for caching trie nodes in memory
TrieCleanJournal string // Disk journal for saving clean cache entries.
TrieCleanRejournal time.Duration // Time interval to dump clean cache to disk periodically
TrieCleanNoPrefetch bool // Whether to disable heuristic state prefetching for followup blocks
TrieDirtyLimit int // Memory limit (MB) at which to start flushing dirty trie nodes to disk
TrieDirtyDisabled bool // Whether to disable trie write caching and GC altogether (archive node)
TrieTimeLimit time.Duration // Time limit after which to flush the current in-memory trie to disk
SnapshotLimit int // Memory allowance (MB) to use for caching snapshot entries in memory
Preimages bool // Whether to store preimage of trie key to the disk
TriesInMemory uint64 // Number of recent tries to keep in memory
SnapshotNoBuild bool // Whether the background generation is allowed
SnapshotWait bool // Wait for snapshot construction on startup. TODO(karalabe): This is a dirty hack for testing, nuke it
}
// DefaultCacheConfig are the default caching values if none are specified by the
// user (also used during testing).
var DefaultCacheConfig = &CacheConfig{
TrieCleanLimit: 256,
TrieDirtyLimit: 256,
TrieTimeLimit: 5 * time.Minute,
SnapshotLimit: 256,
SnapshotWait: true,
TriesInMemory: 128,
}
// BlockChain represents the canonical chain given a database with a genesis
// block. The Blockchain manages chain imports, reverts, chain reorganisations.
//
// Importing blocks in to the block chain happens according to the set of rules
// defined by the two stage Validator. Processing of blocks is done using the
// Processor which processes the included transaction. The validation of the state
// is done in the second part of the Validator. Failing results in aborting of
// the import.
//
// The BlockChain also helps in returning blocks from **any** chain included
// in the database as well as blocks that represents the canonical chain. It's
// important to note that GetBlock can return any block and does not need to be
// included in the canonical one where as GetBlockByNumber always represents the
// canonical chain.
type BlockChain struct {
chainConfig *params.ChainConfig // Chain & network configuration
cacheConfig *CacheConfig // Cache configuration for pruning
db ethdb.Database // Low level persistent database to store final content in
snaps *snapshot.Tree // Snapshot tree for fast trie leaf access
triegc *prque.Prque[int64, common.Hash] // Priority queue mapping block numbers to tries to gc
gcproc time.Duration // Accumulates canonical block processing for trie dumping
lastWrite uint64 // Last block when the state was flushed
flushInterval atomic.Int64 // Time interval (processing time) after which to flush a state
triedb *trie.Database // The database handler for maintaining trie nodes.
stateCache state.Database // State database to reuse between imports (contains state cache)
// txLookupLimit is the maximum number of blocks from head whose tx indices
// are reserved:
// * 0: means no limit and regenerate any missing indexes
// * N: means N block limit [HEAD-N+1, HEAD] and delete extra indexes
// * nil: disable tx reindexer/deleter, but still index new blocks
txLookupLimit uint64
hc *HeaderChain
rmLogsFeed event.Feed
chainFeed event.Feed
chainSideFeed event.Feed
chainHeadFeed event.Feed
logsFeed event.Feed
blockProcFeed event.Feed
scope event.SubscriptionScope
genesisBlock *types.Block
// This mutex synchronizes chain write operations.
// Readers don't need to take it, they can just read the database.
chainmu *syncx.ClosableMutex
currentBlock atomic.Pointer[types.Header] // Current head of the chain
currentSnapBlock atomic.Pointer[types.Header] // Current head of snap-sync
currentFinalBlock atomic.Pointer[types.Header] // Latest (consensus) finalized block
currentSafeBlock atomic.Pointer[types.Header] // Latest (consensus) safe block
bodyCache *lru.Cache[common.Hash, *types.Body]
bodyRLPCache *lru.Cache[common.Hash, rlp.RawValue]
receiptsCache *lru.Cache[common.Hash, []*types.Receipt]
blockCache *lru.Cache[common.Hash, *types.Block]
txLookupCache *lru.Cache[common.Hash, *rawdb.LegacyTxLookupEntry]
// future blocks are blocks added for later processing
futureBlocks *lru.Cache[common.Hash, *types.Block]
wg sync.WaitGroup //
quit chan struct{} // shutdown signal, closed in Stop.
stopping atomic.Bool // false if chain is running, true when stopped
procInterrupt atomic.Bool // interrupt signaler for block processing
engine consensus.Engine
validator Validator // Block and state validator interface
prefetcher Prefetcher
processor Processor // Block transaction processor interface
parallelProcessor Processor // Parallel block transaction processor interface
forker *ForkChoice
vmConfig vm.Config
// Bor related changes
borReceiptsCache *lru.Cache[common.Hash, *types.Receipt] // Cache for the most recent bor receipt receipts per block
stateSyncData []*types.StateSyncData // State sync data
stateSyncFeed event.Feed // State sync feed
chain2HeadFeed event.Feed // Reorg/NewHead/Fork data feed
}
// NewBlockChain returns a fully initialised block chain using information
// available in the database. It initialises the default Ethereum Validator
// and Processor.
//
//nolint:gocognit
func NewBlockChain(db ethdb.Database, cacheConfig *CacheConfig, genesis *Genesis, overrides *ChainOverrides, engine consensus.Engine, vmConfig vm.Config, shouldPreserve func(header *types.Header) bool, txLookupLimit *uint64, checker ethereum.ChainValidator) (*BlockChain, error) {
if cacheConfig == nil {
cacheConfig = DefaultCacheConfig
}
if cacheConfig.TriesInMemory <= 0 {
cacheConfig.TriesInMemory = DefaultCacheConfig.TriesInMemory
}
// Open trie database with provided config
triedb := trie.NewDatabaseWithConfig(db, &trie.Config{
Cache: cacheConfig.TrieCleanLimit,
Journal: cacheConfig.TrieCleanJournal,
Preimages: cacheConfig.Preimages,
})
// Setup the genesis block, commit the provided genesis specification
// to database if the genesis block is not present yet, or load the
// stored one from database.
chainConfig, genesisHash, genesisErr := SetupGenesisBlockWithOverride(db, triedb, genesis, overrides)
if _, ok := genesisErr.(*params.ConfigCompatError); genesisErr != nil && !ok {
return nil, genesisErr
}
log.Info("")
log.Info(strings.Repeat("-", 153))
for _, line := range strings.Split(chainConfig.Description(), "\n") {
log.Info(line)
}
log.Info(strings.Repeat("-", 153))
log.Info("")
bc := &BlockChain{
chainConfig: chainConfig,
cacheConfig: cacheConfig,
db: db,
triedb: triedb,
triegc: prque.New[int64, common.Hash](nil),
quit: make(chan struct{}),
chainmu: syncx.NewClosableMutex(),
bodyCache: lru.NewCache[common.Hash, *types.Body](bodyCacheLimit),
bodyRLPCache: lru.NewCache[common.Hash, rlp.RawValue](bodyCacheLimit),
receiptsCache: lru.NewCache[common.Hash, []*types.Receipt](receiptsCacheLimit),
blockCache: lru.NewCache[common.Hash, *types.Block](blockCacheLimit),
txLookupCache: lru.NewCache[common.Hash, *rawdb.LegacyTxLookupEntry](txLookupCacheLimit),
futureBlocks: lru.NewCache[common.Hash, *types.Block](maxFutureBlocks),
engine: engine,
vmConfig: vmConfig,
borReceiptsCache: lru.NewCache[common.Hash, *types.Receipt](receiptsCacheLimit),
}
bc.flushInterval.Store(int64(cacheConfig.TrieTimeLimit))
bc.forker = NewForkChoice(bc, shouldPreserve, checker)
bc.stateCache = state.NewDatabaseWithNodeDB(bc.db, bc.triedb)
bc.validator = NewBlockValidator(chainConfig, bc, engine)
bc.prefetcher = newStatePrefetcher(chainConfig, bc, engine)
bc.processor = NewStateProcessor(chainConfig, bc, engine)
var err error
bc.hc, err = NewHeaderChain(db, chainConfig, engine, bc.insertStopped)
if err != nil {
return nil, err
}
bc.genesisBlock = bc.GetBlockByNumber(0)
if bc.genesisBlock == nil {
return nil, ErrNoGenesis
}
bc.currentBlock.Store(nil)
bc.currentSnapBlock.Store(nil)
bc.currentFinalBlock.Store(nil)
bc.currentSafeBlock.Store(nil)
// If Geth is initialized with an external ancient store, re-initialize the
// missing chain indexes and chain flags. This procedure can survive crash
// and can be resumed in next restart since chain flags are updated in last step.
if bc.empty() {
rawdb.InitDatabaseFromFreezer(bc.db)
}
// Load blockchain states from disk
if err := bc.loadLastState(); err != nil {
return nil, err
}
// Make sure the state associated with the block is available
head := bc.CurrentBlock()
// nolint:nestif
if !bc.HasState(head.Root) {
// Head state is missing, before the state recovery, find out the
// disk layer point of snapshot(if it's enabled). Make sure the
// rewound point is lower than disk layer.
var diskRoot common.Hash
if bc.cacheConfig.SnapshotLimit > 0 {
diskRoot = rawdb.ReadSnapshotRoot(bc.db)
}
if diskRoot != (common.Hash{}) {
log.Warn("Head state missing, repairing", "number", head.Number, "hash", head.Hash(), "snaproot", diskRoot)
snapDisk, err := bc.setHeadBeyondRoot(head.Number.Uint64(), 0, diskRoot, true)
if err != nil {
return nil, err
}
// Chain rewound, persist old snapshot number to indicate recovery procedure
if snapDisk != 0 {
rawdb.WriteSnapshotRecoveryNumber(bc.db, snapDisk)
}
} else {
log.Warn("Head state missing, repairing", "number", head.Number, "hash", head.Hash())
if _, err := bc.setHeadBeyondRoot(head.Number.Uint64(), 0, common.Hash{}, true); err != nil {
return nil, err
}
}
}
// Ensure that a previous crash in SetHead doesn't leave extra ancients
if frozen, err := bc.db.Ancients(); err == nil && frozen > 0 {
var (
needRewind bool
low uint64
)
// The head full block may be rolled back to a very low height due to
// blockchain repair. If the head full block is even lower than the ancient
// chain, truncate the ancient store.
fullBlock := bc.CurrentBlock()
if fullBlock != nil && fullBlock.Hash() != bc.genesisBlock.Hash() && fullBlock.Number.Uint64() < frozen-1 {
needRewind = true
low = fullBlock.Number.Uint64()
}
// In fast sync, it may happen that ancient data has been written to the
// ancient store, but the LastFastBlock has not been updated, truncate the
// extra data here.
snapBlock := bc.CurrentSnapBlock()
if snapBlock != nil && snapBlock.Number.Uint64() < frozen-1 {
needRewind = true
if snapBlock.Number.Uint64() < low || low == 0 {
low = snapBlock.Number.Uint64()
}
}
if needRewind {
log.Error("Truncating ancient chain", "from", bc.CurrentHeader().Number.Uint64(), "to", low)
if err := bc.SetHead(low); err != nil {
return nil, err
}
}
}
// The first thing the node will do is reconstruct the verification data for
// the head block (ethash cache or clique voting snapshot). Might as well do
// it in advance.
// bc.engine.VerifyHeader(bc, bc.CurrentHeader(), true)
// Check the current state of the block hashes and make sure that we do not have any of the bad blocks in our chain
for hash := range BadHashes {
if header := bc.GetHeaderByHash(hash); header != nil {
// get the canonical block corresponding to the offending header's number
headerByNumber := bc.GetHeaderByNumber(header.Number.Uint64())
// make sure the headerByNumber (if present) is in our current canonical chain
if headerByNumber != nil && headerByNumber.Hash() == header.Hash() {
log.Error("Found bad hash, rewinding chain", "number", header.Number, "hash", header.ParentHash)
if err := bc.SetHead(header.Number.Uint64() - 1); err != nil {
return nil, err
}
log.Error("Chain rewind was successful, resuming normal operation")
}
}
}
// Load any existing snapshot, regenerating it if loading failed
if bc.cacheConfig.SnapshotLimit > 0 {
// If the chain was rewound past the snapshot persistent layer (causing
// a recovery block number to be persisted to disk), check if we're still
// in recovery mode and in that case, don't invalidate the snapshot on a
// head mismatch.
var recover bool
head := bc.CurrentBlock()
if layer := rawdb.ReadSnapshotRecoveryNumber(bc.db); layer != nil && *layer >= head.Number.Uint64() {
log.Warn("Enabling snapshot recovery", "chainhead", head.Number, "diskbase", *layer)
recover = true
}
snapconfig := snapshot.Config{
CacheSize: bc.cacheConfig.SnapshotLimit,
Recovery: recover,
NoBuild: bc.cacheConfig.SnapshotNoBuild,
AsyncBuild: !bc.cacheConfig.SnapshotWait,
}
bc.snaps, _ = snapshot.New(snapconfig, bc.db, bc.triedb, head.Root)
}
// Start future block processor.
bc.wg.Add(1)
go bc.updateFutureBlocks()
// If periodic cache journal is required, spin it up.
if bc.cacheConfig.TrieCleanRejournal > 0 {
if bc.cacheConfig.TrieCleanRejournal < time.Minute {
log.Warn("Sanitizing invalid trie cache journal time", "provided", bc.cacheConfig.TrieCleanRejournal, "updated", time.Minute)
bc.cacheConfig.TrieCleanRejournal = time.Minute
}
bc.wg.Add(1)
go func() {
defer bc.wg.Done()
bc.triedb.SaveCachePeriodically(bc.cacheConfig.TrieCleanJournal, bc.cacheConfig.TrieCleanRejournal, bc.quit)
}()
}
// Rewind the chain in case of an incompatible config upgrade.
if compat, ok := genesisErr.(*params.ConfigCompatError); ok {
log.Warn("Rewinding chain to upgrade configuration", "err", compat)
if compat.RewindToTime > 0 {
_ = bc.SetHeadWithTimestamp(compat.RewindToTime)
} else {
_ = bc.SetHead(compat.RewindToBlock)
}
rawdb.WriteChainConfig(db, genesisHash, chainConfig)
}
// Start tx indexer/unindexer if required.
if txLookupLimit != nil {
bc.txLookupLimit = *txLookupLimit
bc.wg.Add(1)
go bc.maintainTxIndex()
}
return bc, nil
}
// NewParallelBlockChain , similar to NewBlockChain, creates a new blockchain object, but with a parallel state processor
func NewParallelBlockChain(db ethdb.Database, cacheConfig *CacheConfig, genesis *Genesis, overrides *ChainOverrides, engine consensus.Engine, vmConfig vm.Config, shouldPreserve func(header *types.Header) bool, txLookupLimit *uint64, checker ethereum.ChainValidator) (*BlockChain, error) {
bc, err := NewBlockChain(db, cacheConfig, genesis, overrides, engine, vmConfig, shouldPreserve, txLookupLimit, checker)
if err != nil {
return nil, err
}
// Open trie database with provided config
triedb := trie.NewDatabaseWithConfig(db, &trie.Config{
Cache: cacheConfig.TrieCleanLimit,
Journal: cacheConfig.TrieCleanJournal,
Preimages: cacheConfig.Preimages,
})
chainConfig, _, genesisErr := SetupGenesisBlockWithOverride(db, triedb, genesis, overrides)
if _, ok := genesisErr.(*params.ConfigCompatError); genesisErr != nil && !ok {
return nil, genesisErr
}
bc.parallelProcessor = NewParallelStateProcessor(chainConfig, bc, engine)
return bc, nil
}
func (bc *BlockChain) ProcessBlock(block *types.Block, parent *types.Header) (types.Receipts, []*types.Log, uint64, *state.StateDB, error) {
// Process the block using processor and parallelProcessor at the same time, take the one which finishes first, cancel the other, and return the result
ctx, cancel := context.WithCancel(context.Background())
defer cancel()
type Result struct {
receipts types.Receipts
logs []*types.Log
usedGas uint64
err error
statedb *state.StateDB
counter metrics.Counter
}
resultChan := make(chan Result, 2)
processorCount := 0
if bc.parallelProcessor != nil {
parallelStatedb, err := state.New(parent.Root, bc.stateCache, bc.snaps)
if err != nil {
return nil, nil, 0, nil, err
}
processorCount++
go func() {
parallelStatedb.StartPrefetcher("chain")
receipts, logs, usedGas, err := bc.parallelProcessor.Process(block, parallelStatedb, bc.vmConfig, ctx)
resultChan <- Result{receipts, logs, usedGas, err, parallelStatedb, blockExecutionParallelCounter}
}()
}
if bc.processor != nil {
statedb, err := state.New(parent.Root, bc.stateCache, bc.snaps)
if err != nil {
return nil, nil, 0, nil, err
}
processorCount++
go func() {
statedb.StartPrefetcher("chain")
receipts, logs, usedGas, err := bc.processor.Process(block, statedb, bc.vmConfig, ctx)
resultChan <- Result{receipts, logs, usedGas, err, statedb, blockExecutionSerialCounter}
}()
}
result := <-resultChan
if _, ok := result.err.(blockstm.ParallelExecFailedError); ok {
log.Warn("Parallel state processor failed", "err", result.err)
// If the parallel processor failed, we will fallback to the serial processor if enabled
if processorCount == 2 {
result.statedb.StopPrefetcher()
result = <-resultChan
processorCount--
}
}
result.counter.Inc(1)
// Make sure we are not leaking any prefetchers
if processorCount == 2 {
go func() {
second_result := <-resultChan
second_result.statedb.StopPrefetcher()
}()
}
return result.receipts, result.logs, result.usedGas, result.statedb, result.err
}
// empty returns an indicator whether the blockchain is empty.
// Note, it's a special case that we connect a non-empty ancient
// database with an empty node, so that we can plugin the ancient
// into node seamlessly.
func (bc *BlockChain) empty() bool {
genesis := bc.genesisBlock.Hash()
for _, hash := range []common.Hash{rawdb.ReadHeadBlockHash(bc.db), rawdb.ReadHeadHeaderHash(bc.db), rawdb.ReadHeadFastBlockHash(bc.db)} {
if hash != genesis {
return false
}
}
return true
}
// loadLastState loads the last known chain state from the database. This method
// assumes that the chain manager mutex is held.
func (bc *BlockChain) loadLastState() error {
// Restore the last known head block
head := rawdb.ReadHeadBlockHash(bc.db)
if head == (common.Hash{}) {
// Corrupt or empty database, init from scratch
log.Warn("Empty database, resetting chain")
return bc.Reset()
}
// Make sure the entire head block is available
headBlock := bc.GetBlockByHash(head)
if headBlock == nil {
// Corrupt or empty database, init from scratch
log.Warn("Head block missing, resetting chain", "hash", head)
return bc.Reset()
}
// Everything seems to be fine, set as the head block
bc.currentBlock.Store(headBlock.Header())
headBlockGauge.Update(int64(headBlock.NumberU64()))
// Restore the last known head header
headHeader := headBlock.Header()
if head := rawdb.ReadHeadHeaderHash(bc.db); head != (common.Hash{}) {
if header := bc.GetHeaderByHash(head); header != nil {
headHeader = header
}
}
bc.hc.SetCurrentHeader(headHeader)
// Restore the last known head fast block
bc.currentSnapBlock.Store(headBlock.Header())
headFastBlockGauge.Update(int64(headBlock.NumberU64()))
if head := rawdb.ReadHeadFastBlockHash(bc.db); head != (common.Hash{}) {
if block := bc.GetBlockByHash(head); block != nil {
bc.currentSnapBlock.Store(block.Header())
headFastBlockGauge.Update(int64(block.NumberU64()))
}
}
// Restore the last known finalized block and safe block
// Note: the safe block is not stored on disk and it is set to the last
// known finalized block on startup
if head := rawdb.ReadFinalizedBlockHash(bc.db); head != (common.Hash{}) {
if block := bc.GetBlockByHash(head); block != nil {
bc.currentFinalBlock.Store(block.Header())
headFinalizedBlockGauge.Update(int64(block.NumberU64()))
bc.currentSafeBlock.Store(block.Header())
headSafeBlockGauge.Update(int64(block.NumberU64()))
}
}
// Issue a status log for the user
var (
currentSnapBlock = bc.CurrentSnapBlock()
currentFinalBlock = bc.CurrentFinalBlock()
headerTd = bc.GetTd(headHeader.Hash(), headHeader.Number.Uint64())
blockTd = bc.GetTd(headBlock.Hash(), headBlock.NumberU64())
)
if headHeader.Hash() != headBlock.Hash() {
log.Info("Loaded most recent local header", "number", headHeader.Number, "hash", headHeader.Hash(), "td", headerTd, "age", common.PrettyAge(time.Unix(int64(headHeader.Time), 0)))
}
log.Info("Loaded most recent local block", "number", headBlock.Number(), "hash", headBlock.Hash(), "td", blockTd, "age", common.PrettyAge(time.Unix(int64(headBlock.Time()), 0)))
if headBlock.Hash() != currentSnapBlock.Hash() {
fastTd := bc.GetTd(currentSnapBlock.Hash(), currentSnapBlock.Number.Uint64())
log.Info("Loaded most recent local snap block", "number", currentSnapBlock.Number, "hash", currentSnapBlock.Hash(), "td", fastTd, "age", common.PrettyAge(time.Unix(int64(currentSnapBlock.Time), 0)))
}
if currentFinalBlock != nil {
finalTd := bc.GetTd(currentFinalBlock.Hash(), currentFinalBlock.Number.Uint64())
log.Info("Loaded most recent local finalized block", "number", currentFinalBlock.Number, "hash", currentFinalBlock.Hash(), "td", finalTd, "age", common.PrettyAge(time.Unix(int64(currentFinalBlock.Time), 0)))
}
if pivot := rawdb.ReadLastPivotNumber(bc.db); pivot != nil {
log.Info("Loaded last fast-sync pivot marker", "number", *pivot)
}
return nil
}
// SetHead rewinds the local chain to a new head. Depending on whether the node
// was fast synced or full synced and in which state, the method will try to
// delete minimal data from disk whilst retaining chain consistency.
func (bc *BlockChain) SetHead(head uint64) error {
if _, err := bc.setHeadBeyondRoot(head, 0, common.Hash{}, false); err != nil {
return err
}
// Send chain head event to update the transaction pool
header := bc.CurrentBlock()
block := bc.GetBlock(header.Hash(), header.Number.Uint64())
if block == nil {
// This should never happen. In practice, previsouly currentBlock
// contained the entire block whereas now only a "marker", so there
// is an ever so slight chance for a race we should handle.
log.Error("Current block not found in database", "block", header.Number, "hash", header.Hash())
return fmt.Errorf("current block missing: #%d [%x..]", header.Number, header.Hash().Bytes()[:4])
}
bc.chainHeadFeed.Send(ChainHeadEvent{Block: block})
return nil
}
// SetHeadWithTimestamp rewinds the local chain to a new head that has at max
// the given timestamp. Depending on whether the node was fast synced or full
// synced and in which state, the method will try to delete minimal data from
// disk whilst retaining chain consistency.
func (bc *BlockChain) SetHeadWithTimestamp(timestamp uint64) error {
if _, err := bc.setHeadBeyondRoot(0, timestamp, common.Hash{}, false); err != nil {
return err
}
// Send chain head event to update the transaction pool
header := bc.CurrentBlock()
block := bc.GetBlock(header.Hash(), header.Number.Uint64())
if block == nil {
// This should never happen. In practice, previsouly currentBlock
// contained the entire block whereas now only a "marker", so there
// is an ever so slight chance for a race we should handle.
log.Error("Current block not found in database", "block", header.Number, "hash", header.Hash())
return fmt.Errorf("current block missing: #%d [%x..]", header.Number, header.Hash().Bytes()[:4])
}
bc.chainHeadFeed.Send(ChainHeadEvent{Block: block})
return nil
}
// SetFinalized sets the finalized block.
func (bc *BlockChain) SetFinalized(header *types.Header) {
bc.currentFinalBlock.Store(header)
if header != nil {
rawdb.WriteFinalizedBlockHash(bc.db, header.Hash())
headFinalizedBlockGauge.Update(int64(header.Number.Uint64()))
} else {
rawdb.WriteFinalizedBlockHash(bc.db, common.Hash{})
headFinalizedBlockGauge.Update(0)
}
}
// SetSafe sets the safe block.
func (bc *BlockChain) SetSafe(header *types.Header) {
bc.currentSafeBlock.Store(header)
if header != nil {
headSafeBlockGauge.Update(int64(header.Number.Uint64()))
} else {
headSafeBlockGauge.Update(0)
}
}
// setHeadBeyondRoot rewinds the local chain to a new head with the extra condition
// that the rewind must pass the specified state root. This method is meant to be
// used when rewinding with snapshots enabled to ensure that we go back further than
// persistent disk layer. Depending on whether the node was fast synced or full, and
// in which state, the method will try to delete minimal data from disk whilst
// retaining chain consistency.
//
// The method also works in timestamp mode if `head == 0` but `time != 0`. In that
// case blocks are rolled back until the new head becomes older or equal to the
// requested time. If both `head` and `time` is 0, the chain is rewound to genesis.
//
// The method returns the block number where the requested root cap was found.
// nolint:gocognit
func (bc *BlockChain) setHeadBeyondRoot(head uint64, time uint64, root common.Hash, repair bool) (uint64, error) {
if !bc.chainmu.TryLock() {
return 0, errChainStopped
}
defer bc.chainmu.Unlock()
// Track the block number of the requested root hash
var rootNumber uint64 // (no root == always 0)
// Retrieve the last pivot block to short circuit rollbacks beyond it and the
// current freezer limit to start nuking id underflown
pivot := rawdb.ReadLastPivotNumber(bc.db)
frozen, _ := bc.db.Ancients()
updateFn := func(db ethdb.KeyValueWriter, header *types.Header) (*types.Header, bool) {
// Rewind the blockchain, ensuring we don't end up with a stateless head
// block. Note, depth equality is permitted to allow using SetHead as a
// chain reparation mechanism without deleting any data!
// nolint:nestif
if currentBlock := bc.CurrentBlock(); currentBlock != nil && header.Number.Uint64() <= currentBlock.Number.Uint64() {
newHeadBlock := bc.GetBlock(header.Hash(), header.Number.Uint64())
if newHeadBlock == nil {
log.Error("Gap in the chain, rewinding to genesis", "number", header.Number, "hash", header.Hash())
newHeadBlock = bc.genesisBlock
} else {
// Block exists, keep rewinding until we find one with state,
// keeping rewinding until we exceed the optional threshold
// root hash
beyondRoot := (root == common.Hash{}) // Flag whether we're beyond the requested root (no root, always true)
for {
// If a root threshold was requested but not yet crossed, check
if root != (common.Hash{}) && !beyondRoot && newHeadBlock.Root() == root {
beyondRoot, rootNumber = true, newHeadBlock.NumberU64()
}
if !bc.HasState(newHeadBlock.Root()) {
log.Trace("Block state missing, rewinding further", "number", newHeadBlock.NumberU64(), "hash", newHeadBlock.Hash())
if pivot == nil || newHeadBlock.NumberU64() > *pivot {
parent := bc.GetBlock(newHeadBlock.ParentHash(), newHeadBlock.NumberU64()-1)
if parent != nil {
newHeadBlock = parent
continue
}
log.Error("Missing block in the middle, aiming genesis", "number", newHeadBlock.NumberU64()-1, "hash", newHeadBlock.ParentHash())
newHeadBlock = bc.genesisBlock
} else {
log.Trace("Rewind passed pivot, aiming genesis", "number", newHeadBlock.NumberU64(), "hash", newHeadBlock.Hash(), "pivot", *pivot)
newHeadBlock = bc.genesisBlock
}
}
if beyondRoot || newHeadBlock.NumberU64() == 0 {
if newHeadBlock.NumberU64() == 0 {
// Recommit the genesis state into disk in case the rewinding destination
// is genesis block and the relevant state is gone. In the future this
// rewinding destination can be the earliest block stored in the chain
// if the historical chain pruning is enabled. In that case the logic
// needs to be improved here.
if !bc.HasState(bc.genesisBlock.Root()) {
if err := CommitGenesisState(bc.db, bc.triedb, bc.genesisBlock.Hash()); err != nil {
log.Crit("Failed to commit genesis state", "err", err)
}
log.Debug("Recommitted genesis state to disk")
}
}
log.Debug("Rewound to block with state", "number", newHeadBlock.NumberU64(), "hash", newHeadBlock.Hash())
break
}
log.Debug("Skipping block with threshold state", "number", newHeadBlock.NumberU64(), "hash", newHeadBlock.Hash(), "root", newHeadBlock.Root())
newHeadBlock = bc.GetBlock(newHeadBlock.ParentHash(), newHeadBlock.NumberU64()-1) // Keep rewinding
}
}
rawdb.WriteHeadBlockHash(db, newHeadBlock.Hash())
// Degrade the chain markers if they are explicitly reverted.
// In theory we should update all in-memory markers in the
// last step, however the direction of SetHead is from high
// to low, so it's safe to update in-memory markers directly.
bc.currentBlock.Store(newHeadBlock.Header())
headBlockGauge.Update(int64(newHeadBlock.NumberU64()))
}
// Rewind the fast block in a simpleton way to the target head
if currentSnapBlock := bc.CurrentSnapBlock(); currentSnapBlock != nil && header.Number.Uint64() < currentSnapBlock.Number.Uint64() {
newHeadSnapBlock := bc.GetBlock(header.Hash(), header.Number.Uint64())
// If either blocks reached nil, reset to the genesis state
if newHeadSnapBlock == nil {
newHeadSnapBlock = bc.genesisBlock
}
rawdb.WriteHeadFastBlockHash(db, newHeadSnapBlock.Hash())
// Degrade the chain markers if they are explicitly reverted.
// In theory, we should update all in-memory markers in the
// last step, however the direction of SetHead is from high
// to low, so it's safe the update in-memory markers directly.
bc.currentSnapBlock.Store(newHeadSnapBlock.Header())
headFastBlockGauge.Update(int64(newHeadSnapBlock.NumberU64()))
}
var (
headHeader = bc.CurrentBlock()
headNumber = headHeader.Number.Uint64()
)
// If setHead underflown the freezer threshold and the block processing
// intent afterwards is full block importing, delete the chain segment
// between the stateful-block and the sethead target.
var wipe bool
if headNumber+1 < frozen {
wipe = pivot == nil || headNumber >= *pivot
}
return headHeader, wipe // Only force wipe if full synced
}
// Rewind the header chain, deleting all block bodies until then
delFn := func(db ethdb.KeyValueWriter, hash common.Hash, num uint64) {
// Ignore the error here since light client won't hit this path
frozen, _ := bc.db.Ancients()
if num+1 <= frozen {
// Truncate all relative data(header, total difficulty, body, receipt
// and canonical hash) from ancient store.
if err := bc.db.TruncateHead(num); err != nil {
log.Crit("Failed to truncate ancient data", "number", num, "err", err)
}
// Remove the hash <-> number mapping from the active store.
rawdb.DeleteHeaderNumber(db, hash)
} else {
// Remove relative body and receipts from the active store.
// The header, total difficulty and canonical hash will be
// removed in the hc.SetHead function.
rawdb.DeleteBody(db, hash, num)
rawdb.DeleteReceipts(db, hash, num)
rawdb.DeleteBorReceipt(db, hash, num)
rawdb.DeleteBorTxLookupEntry(db, hash, num)
}
// Todo(rjl493456442) txlookup, bloombits, etc
}
// If SetHead was only called as a chain reparation method, try to skip
// touching the header chain altogether, unless the freezer is broken
if repair {
if target, force := updateFn(bc.db, bc.CurrentBlock()); force {
bc.hc.SetHead(target.Number.Uint64(), updateFn, delFn)
}
} else {
// Rewind the chain to the requested head and keep going backwards until a
// block with a state is found or fast sync pivot is passed
if time > 0 {
log.Warn("Rewinding blockchain to timestamp", "target", time)
bc.hc.SetHeadWithTimestamp(time, updateFn, delFn)
} else {
log.Warn("Rewinding blockchain to block", "target", head)
bc.hc.SetHead(head, updateFn, delFn)
}
}
// Clear out any stale content from the caches
bc.bodyCache.Purge()
bc.bodyRLPCache.Purge()
bc.receiptsCache.Purge()
bc.blockCache.Purge()
bc.txLookupCache.Purge()
bc.futureBlocks.Purge()
bc.borReceiptsCache.Purge()
// Clear safe block, finalized block if needed
if safe := bc.CurrentSafeBlock(); safe != nil && head < safe.Number.Uint64() {
log.Warn("SetHead invalidated safe block")
bc.SetSafe(nil)
}
if finalized := bc.CurrentFinalBlock(); finalized != nil && head < finalized.Number.Uint64() {
log.Error("SetHead invalidated finalized block")
bc.SetFinalized(nil)
}
return rootNumber, bc.loadLastState()
}
// SnapSyncCommitHead sets the current head block to the one defined by the hash
// irrelevant what the chain contents were prior.
func (bc *BlockChain) SnapSyncCommitHead(hash common.Hash) error {
// Make sure that both the block as well at its state trie exists
block := bc.GetBlockByHash(hash)
if block == nil {
return fmt.Errorf("non existent block [%x..]", hash[:4])
}
root := block.Root()
if !bc.HasState(root) {
return fmt.Errorf("non existent state [%x..]", root[:4])
}
// If all checks out, manually set the head block.
if !bc.chainmu.TryLock() {
return errChainStopped
}
bc.currentBlock.Store(block.Header())
headBlockGauge.Update(int64(block.NumberU64()))
bc.chainmu.Unlock()
// Destroy any existing state snapshot and regenerate it in the background,
// also resuming the normal maintenance of any previously paused snapshot.
if bc.snaps != nil {
bc.snaps.Rebuild(root)
}
log.Info("Committed new head block", "number", block.Number(), "hash", hash)
return nil
}
// Reset purges the entire blockchain, restoring it to its genesis state.
func (bc *BlockChain) Reset() error {
return bc.ResetWithGenesisBlock(bc.genesisBlock)
}
// ResetWithGenesisBlock purges the entire blockchain, restoring it to the
// specified genesis state.
func (bc *BlockChain) ResetWithGenesisBlock(genesis *types.Block) error {
// Dump the entire block chain and purge the caches
if err := bc.SetHead(0); err != nil {
return err
}
if !bc.chainmu.TryLock() {
return errChainStopped
}
defer bc.chainmu.Unlock()
// Prepare the genesis block and reinitialise the chain
batch := bc.db.NewBatch()
rawdb.WriteTd(batch, genesis.Hash(), genesis.NumberU64(), genesis.Difficulty())
rawdb.WriteBlock(batch, genesis)
if err := batch.Write(); err != nil {
log.Crit("Failed to write genesis block", "err", err)
}
bc.writeHeadBlock(genesis)
// Last update all in-memory chain markers
bc.genesisBlock = genesis
bc.currentBlock.Store(bc.genesisBlock.Header())
headBlockGauge.Update(int64(bc.genesisBlock.NumberU64()))
bc.hc.SetGenesis(bc.genesisBlock.Header())
bc.hc.SetCurrentHeader(bc.genesisBlock.Header())
bc.currentSnapBlock.Store(bc.genesisBlock.Header())
headFastBlockGauge.Update(int64(bc.genesisBlock.NumberU64()))
return nil
}
// Export writes the active chain to the given writer.
func (bc *BlockChain) Export(w io.Writer) error {
return bc.ExportN(w, uint64(0), bc.CurrentBlock().Number.Uint64())
}
// ExportN writes a subset of the active chain to the given writer.
func (bc *BlockChain) ExportN(w io.Writer, first uint64, last uint64) error {
if first > last {
return fmt.Errorf("export failed: first (%d) is greater than last (%d)", first, last)
}
log.Info("Exporting batch of blocks", "count", last-first+1)
var (
parentHash common.Hash
start = time.Now()
reported = time.Now()
)
for nr := first; nr <= last; nr++ {
block := bc.GetBlockByNumber(nr)
if block == nil {
return fmt.Errorf("export failed on #%d: not found", nr)
}
if nr > first && block.ParentHash() != parentHash {
return fmt.Errorf("export failed: chain reorg during export")
}
parentHash = block.Hash()
if err := block.EncodeRLP(w); err != nil {
return err
}
if time.Since(reported) >= statsReportLimit {
log.Info("Exporting blocks", "exported", block.NumberU64()-first, "elapsed", common.PrettyDuration(time.Since(start)))
reported = time.Now()
}
}
return nil
}
// writeHeadBlock injects a new head block into the current block chain. This method
// assumes that the block is indeed a true head. It will also reset the head
// header and the head fast sync block to this very same block if they are older
// or if they are on a different side chain.
//
// Note, this function assumes that the `mu` mutex is held!
func (bc *BlockChain) writeHeadBlock(block *types.Block) {
// Add the block to the canonical chain number scheme and mark as the head
batch := bc.db.NewBatch()
rawdb.WriteHeadHeaderHash(batch, block.Hash())
rawdb.WriteHeadFastBlockHash(batch, block.Hash())
rawdb.WriteCanonicalHash(batch, block.Hash(), block.NumberU64())
rawdb.WriteTxLookupEntriesByBlock(batch, block)
rawdb.WriteHeadBlockHash(batch, block.Hash())
// Flush the whole batch into the disk, exit the node if failed
if err := batch.Write(); err != nil {
log.Crit("Failed to update chain indexes and markers", "err", err)
}
// Update all in-memory chain markers in the last step
bc.hc.SetCurrentHeader(block.Header())
bc.currentSnapBlock.Store(block.Header())
headFastBlockGauge.Update(int64(block.NumberU64()))
bc.currentBlock.Store(block.Header())
headBlockGauge.Update(int64(block.NumberU64()))
}
// stopWithoutSaving stops the blockchain service. If any imports are currently in progress
// it will abort them using the procInterrupt. This method stops all running
// goroutines, but does not do all the post-stop work of persisting data.
// OBS! It is generally recommended to use the Stop method!
// This method has been exposed to allow tests to stop the blockchain while simulating
// a crash.
func (bc *BlockChain) stopWithoutSaving() {
if !bc.stopping.CompareAndSwap(false, true) {
return
}
// Unsubscribe all subscriptions registered from blockchain.
bc.scope.Close()
// Signal shutdown to all goroutines.
close(bc.quit)
bc.StopInsert()
// Now wait for all chain modifications to end and persistent goroutines to exit.
//
// Note: Close waits for the mutex to become available, i.e. any running chain
// modification will have exited when Close returns. Since we also called StopInsert,
// the mutex should become available quickly. It cannot be taken again after Close has
// returned.
bc.chainmu.Close()
bc.wg.Wait()
}
// Stop stops the blockchain service. If any imports are currently in progress
// it will abort them using the procInterrupt.
func (bc *BlockChain) Stop() {
bc.stopWithoutSaving()
// Ensure that the entirety of the state snapshot is journalled to disk.
var snapBase common.Hash
if bc.snaps != nil {
var err error
if snapBase, err = bc.snaps.Journal(bc.CurrentBlock().Root); err != nil {
log.Error("Failed to journal state snapshot", "err", err)
}
}
// Ensure the state of a recent block is also stored to disk before exiting.
// We're writing three different states to catch different restart scenarios:
// - HEAD: So we don't need to reprocess any blocks in the general case
// - HEAD-1: So we don't do large reorgs if our HEAD becomes an uncle
// - HEAD-127: So we have a hard limit on the number of blocks reexecuted
if !bc.cacheConfig.TrieDirtyDisabled {
triedb := bc.triedb
for _, offset := range []uint64{0, 1, bc.cacheConfig.TriesInMemory - 1} {
if number := bc.CurrentBlock().Number.Uint64(); number > offset {
recent := bc.GetBlockByNumber(number - offset)
log.Info("Writing cached state to disk", "block", recent.Number(), "hash", recent.Hash(), "root", recent.Root())
if err := triedb.Commit(recent.Root(), true); err != nil {
log.Error("Failed to commit recent state trie", "err", err)
}
}
}
if snapBase != (common.Hash{}) {
log.Info("Writing snapshot state to disk", "root", snapBase)
if err := triedb.Commit(snapBase, true); err != nil {
log.Error("Failed to commit recent state trie", "err", err)
}
}
for !bc.triegc.Empty() {
triedb.Dereference(bc.triegc.PopItem())
}
if size, _ := triedb.Size(); size != 0 {
log.Error("Dangling trie nodes after full cleanup")
}
}
// Flush the collected preimages to disk
if err := bc.stateCache.TrieDB().CommitPreimages(); err != nil {
log.Error("Failed to commit trie preimages", "err", err)
}
// Ensure all live cached entries be saved into disk, so that we can skip
// cache warmup when node restarts.
if bc.cacheConfig.TrieCleanJournal != "" {
_ = bc.triedb.SaveCache(bc.cacheConfig.TrieCleanJournal)
}
log.Info("Blockchain stopped")
}
// StopInsert interrupts all insertion methods, causing them to return
// errInsertionInterrupted as soon as possible. Insertion is permanently disabled after
// calling this method.
func (bc *BlockChain) StopInsert() {
bc.procInterrupt.Store(true)
}
// insertStopped returns true after StopInsert has been called.
func (bc *BlockChain) insertStopped() bool {
return bc.procInterrupt.Load()
}
func (bc *BlockChain) procFutureBlocks() {
blocks := make([]*types.Block, 0, bc.futureBlocks.Len())
for _, hash := range bc.futureBlocks.Keys() {
if block, exist := bc.futureBlocks.Peek(hash); exist {
blocks = append(blocks, block)
}
}
if len(blocks) > 0 {
sort.Slice(blocks, func(i, j int) bool {
return blocks[i].NumberU64() < blocks[j].NumberU64()
})
// Insert one by one as chain insertion needs contiguous ancestry between blocks
for i := range blocks {
bc.InsertChain(blocks[i : i+1])
}
}
}
// WriteStatus status of write
type WriteStatus byte
const (
NonStatTy WriteStatus = iota
CanonStatTy
SideStatTy
)
// InsertReceiptChain attempts to complete an already existing header chain with
// transaction and receipt data.
func (bc *BlockChain) InsertReceiptChain(blockChain types.Blocks, receiptChain []types.Receipts, ancientLimit uint64) (int, error) {
// We don't require the chainMu here since we want to maximize the
// concurrency of header insertion and receipt insertion.
bc.wg.Add(1)
defer bc.wg.Done()
var (
ancientBlocks, liveBlocks types.Blocks
ancientReceipts, liveReceipts []types.Receipts
)
// Do a sanity check that the provided chain is actually ordered and linked
for i := 0; i < len(blockChain); i++ {
if i != 0 {
if blockChain[i].NumberU64() != blockChain[i-1].NumberU64()+1 || blockChain[i].ParentHash() != blockChain[i-1].Hash() {
log.Error("Non contiguous receipt insert", "number", blockChain[i].Number(), "hash", blockChain[i].Hash(), "parent", blockChain[i].ParentHash(),
"prevnumber", blockChain[i-1].Number(), "prevhash", blockChain[i-1].Hash())
return 0, fmt.Errorf("non contiguous insert: item %d is #%d [%x..], item %d is #%d [%x..] (parent [%x..])", i-1, blockChain[i-1].NumberU64(),
blockChain[i-1].Hash().Bytes()[:4], i, blockChain[i].NumberU64(), blockChain[i].Hash().Bytes()[:4], blockChain[i].ParentHash().Bytes()[:4])
}
}
if blockChain[i].NumberU64() <= ancientLimit {
ancientBlocks, ancientReceipts = append(ancientBlocks, blockChain[i]), append(ancientReceipts, receiptChain[i])
} else {
liveBlocks, liveReceipts = append(liveBlocks, blockChain[i]), append(liveReceipts, receiptChain[i])
}
}
var (
stats = struct{ processed, ignored int32 }{}
start = time.Now()
size = int64(0)
)
// updateHead updates the head fast sync block if the inserted blocks are better
// and returns an indicator whether the inserted blocks are canonical.
updateHead := func(head *types.Block, headers []*types.Header) bool {
if !bc.chainmu.TryLock() {
return false
}
defer bc.chainmu.Unlock()
// Rewind may have occurred, skip in that case.
if bc.CurrentHeader().Number.Cmp(head.Number()) >= 0 {
reorg, err := bc.forker.ReorgNeeded(bc.CurrentSnapBlock(), head.Header())
if err != nil {
log.Warn("Reorg failed", "err", err)
return false
} else if !reorg {
return false
}
isValid, err := bc.forker.ValidateReorg(bc.CurrentSnapBlock(), headers)
if err != nil {
log.Warn("Reorg failed", "err", err)
return false
} else if !isValid {
return false
}
rawdb.WriteHeadFastBlockHash(bc.db, head.Hash())
bc.currentSnapBlock.Store(head.Header())
headFastBlockGauge.Update(int64(head.NumberU64()))
return true
}
return false
}
// writeAncient writes blockchain and corresponding receipt chain into ancient store.
//
// this function only accepts canonical chain data. All side chain will be reverted
// eventually.
writeAncient := func(blockChain types.Blocks, receiptChain []types.Receipts) (int, error) {
first := blockChain[0]
last := blockChain[len(blockChain)-1]
// Ensure genesis is in ancients.
if first.NumberU64() == 1 {
if frozen, _ := bc.db.Ancients(); frozen == 0 {
b := bc.genesisBlock
td := bc.genesisBlock.Difficulty()
writeSize, err := rawdb.WriteAncientBlocks(bc.db, []*types.Block{b}, []types.Receipts{nil}, []types.Receipts{nil}, td)
size += writeSize
if err != nil {
log.Error("Error writing genesis to ancients", "err", err)
return 0, err
}
log.Info("Wrote genesis to ancients")
}
}
// Before writing the blocks to the ancients, we need to ensure that
// they correspond to the what the headerchain 'expects'.
// We only check the last block/header, since it's a contiguous chain.
if !bc.HasHeader(last.Hash(), last.NumberU64()) {
return 0, fmt.Errorf("containing header #%d [%x..] unknown", last.Number(), last.Hash().Bytes()[:4])
}
// BOR: Retrieve all the bor receipts and also maintain the array of headers
// for bor specific reorg check.
borReceipts := []types.Receipts{}
var headers []*types.Header
for _, block := range blockChain {
borReceipts = append(borReceipts, []*types.Receipt{bc.GetBorReceiptByHash(block.Hash())})
headers = append(headers, block.Header())
}
// Write all chain data to ancients.
td := bc.GetTd(first.Hash(), first.NumberU64())
writeSize, err := rawdb.WriteAncientBlocks(bc.db, blockChain, receiptChain, borReceipts, td)
size += writeSize
if err != nil {
log.Error("Error importing chain data to ancients", "err", err)
return 0, err
}
// Write tx indices if any condition is satisfied:
// * If user requires to reserve all tx indices(txlookuplimit=0)
// * If all ancient tx indices are required to be reserved(txlookuplimit is even higher than ancientlimit)
// * If block number is large enough to be regarded as a recent block
// It means blocks below the ancientLimit-txlookupLimit won't be indexed.
//
// But if the `TxIndexTail` is not nil, e.g. Geth is initialized with
// an external ancient database, during the setup, blockchain will start
// a background routine to re-indexed all indices in [ancients - txlookupLimit, ancients)
// range. In this case, all tx indices of newly imported blocks should be
// generated.
var batch = bc.db.NewBatch()
for i, block := range blockChain {
if bc.txLookupLimit == 0 || ancientLimit <= bc.txLookupLimit || block.NumberU64() >= ancientLimit-bc.txLookupLimit {
rawdb.WriteTxLookupEntriesByBlock(batch, block)
} else if rawdb.ReadTxIndexTail(bc.db) != nil {
rawdb.WriteTxLookupEntriesByBlock(batch, block)
}
stats.processed++
if batch.ValueSize() > ethdb.IdealBatchSize || i == len(blockChain)-1 {
size += int64(batch.ValueSize())
if err = batch.Write(); err != nil {
snapBlock := bc.CurrentSnapBlock().Number.Uint64()
if err := bc.db.TruncateHead(snapBlock + 1); err != nil {
log.Error("Can't truncate ancient store after failed insert", "err", err)
}
return 0, err
}
batch.Reset()
}
}
// Sync the ancient store explicitly to ensure all data has been flushed to disk.
if err := bc.db.Sync(); err != nil {
return 0, err
}
// Update the current fast block because all block data is now present in DB.
previousSnapBlock := bc.CurrentSnapBlock().Number.Uint64()
if !updateHead(blockChain[len(blockChain)-1], headers) {
// We end up here if the header chain has reorg'ed, and the blocks/receipts
// don't match the canonical chain.
if err := bc.db.TruncateHead(previousSnapBlock + 1); err != nil {
log.Error("Can't truncate ancient store after failed insert", "err", err)
}
return 0, errSideChainReceipts
}
// Delete block data from the main database.
batch.Reset()
canonHashes := make(map[common.Hash]struct{})
for _, block := range blockChain {
canonHashes[block.Hash()] = struct{}{}
if block.NumberU64() == 0 {
continue
}
rawdb.DeleteCanonicalHash(batch, block.NumberU64())
rawdb.DeleteBlockWithoutNumber(batch, block.Hash(), block.NumberU64())
}
// Delete side chain hash-to-number mappings.
for _, nh := range rawdb.ReadAllHashesInRange(bc.db, first.NumberU64(), last.NumberU64()) {
if _, canon := canonHashes[nh.Hash]; !canon {
rawdb.DeleteHeader(batch, nh.Hash, nh.Number)
}
}
if err := batch.Write(); err != nil {
return 0, err
}
return 0, nil
}
// writeLive writes blockchain and corresponding receipt chain into active store.
writeLive := func(blockChain types.Blocks, receiptChain []types.Receipts) (int, error) {
skipPresenceCheck := false
batch := bc.db.NewBatch()
headers := make([]*types.Header, 0, len(blockChain))
for i, block := range blockChain {
// Update the headers for bor specific reorg check
headers = append(headers, block.Header())
// Short circuit insertion if shutting down or processing failed
if bc.insertStopped() {
return 0, errInsertionInterrupted
}
// Short circuit if the owner header is unknown
if !bc.HasHeader(block.Hash(), block.NumberU64()) {
return i, fmt.Errorf("containing header #%d [%x..] unknown", block.Number(), block.Hash().Bytes()[:4])
}
if !skipPresenceCheck {
// Ignore if the entire data is already known
if bc.HasBlock(block.Hash(), block.NumberU64()) {
stats.ignored++
continue
} else {
// If block N is not present, neither are the later blocks.
// This should be true, but if we are mistaken, the shortcut
// here will only cause overwriting of some existing data
skipPresenceCheck = true
}
}
// Write all the data out into the database
rawdb.WriteBody(batch, block.Hash(), block.NumberU64(), block.Body())
rawdb.WriteReceipts(batch, block.Hash(), block.NumberU64(), receiptChain[i])
rawdb.WriteTxLookupEntriesByBlock(batch, block) // Always write tx indices for live blocks, we assume they are needed
// Write everything belongs to the blocks into the database. So that
// we can ensure all components of body is completed(body, receipts,
// tx indexes)
if batch.ValueSize() >= ethdb.IdealBatchSize {
if err := batch.Write(); err != nil {
return 0, err
}
size += int64(batch.ValueSize())
batch.Reset()
}
stats.processed++
}
// Write everything belongs to the blocks into the database. So that
// we can ensure all components of body is completed(body, receipts,
// tx indexes)
if batch.ValueSize() > 0 {
size += int64(batch.ValueSize())
if err := batch.Write(); err != nil {
return 0, err
}
}
updateHead(blockChain[len(blockChain)-1], headers)
return 0, nil
}
// Write downloaded chain data and corresponding receipt chain data
if len(ancientBlocks) > 0 {
if n, err := writeAncient(ancientBlocks, ancientReceipts); err != nil {
if err == errInsertionInterrupted {
return 0, nil
}
return n, err
}
}
// Write the tx index tail (block number from where we index) before write any live blocks
if len(liveBlocks) > 0 && liveBlocks[0].NumberU64() == ancientLimit+1 {
// The tx index tail can only be one of the following two options:
// * 0: all ancient blocks have been indexed
// * ancient-limit: the indices of blocks before ancient-limit are ignored
if tail := rawdb.ReadTxIndexTail(bc.db); tail == nil {
if bc.txLookupLimit == 0 || ancientLimit <= bc.txLookupLimit {
rawdb.WriteTxIndexTail(bc.db, 0)
} else {
rawdb.WriteTxIndexTail(bc.db, ancientLimit-bc.txLookupLimit)
}
}
}
if len(liveBlocks) > 0 {
if n, err := writeLive(liveBlocks, liveReceipts); err != nil {
if err == errInsertionInterrupted {
return 0, nil
}
return n, err
}
}
head := blockChain[len(blockChain)-1]
context := []interface{}{
"count", stats.processed, "elapsed", common.PrettyDuration(time.Since(start)),
"number", head.Number(), "hash", head.Hash(), "age", common.PrettyAge(time.Unix(int64(head.Time()), 0)),
"size", common.StorageSize(size),
}
if stats.ignored > 0 {
context = append(context, []interface{}{"ignored", stats.ignored}...)
}
log.Debug("Imported new block receipts", context...)
return 0, nil
}
// writeBlockWithoutState writes only the block and its metadata to the database,
// but does not write any state. This is used to construct competing side forks
// up to the point where they exceed the canonical total difficulty.
func (bc *BlockChain) writeBlockWithoutState(block *types.Block, td *big.Int) (err error) {
if bc.insertStopped() {
return errInsertionInterrupted
}
batch := bc.db.NewBatch()
rawdb.WriteTd(batch, block.Hash(), block.NumberU64(), td)
rawdb.WriteBlock(batch, block)
if err := batch.Write(); err != nil {
log.Crit("Failed to write block into disk", "err", err)
}
return nil
}
// writeKnownBlock updates the head block flag with a known block
// and introduces chain reorg if necessary.
func (bc *BlockChain) writeKnownBlock(block *types.Block) error {
current := bc.CurrentBlock()
if block.ParentHash() != current.Hash() {
if err := bc.reorg(current, block); err != nil {
return err
}
}
bc.writeHeadBlock(block)
return nil
}
// writeBlockWithState writes block, metadata and corresponding state data to the
// database.
func (bc *BlockChain) writeBlockWithState(block *types.Block, receipts []*types.Receipt, logs []*types.Log, state *state.StateDB) ([]*types.Log, error) {
// Calculate the total difficulty of the block
ptd := bc.GetTd(block.ParentHash(), block.NumberU64()-1)
if ptd == nil {
return []*types.Log{}, consensus.ErrUnknownAncestor
}
// Make sure no inconsistent state is leaked during insertion
externTd := new(big.Int).Add(block.Difficulty(), ptd)
// Irrelevant of the canonical status, write the block itself to the database.
//
// Note all the components of block(td, hash->number map, header, body, receipts)
// should be written atomically. BlockBatch is used for containing all components.
blockBatch := bc.db.NewBatch()
rawdb.WriteTd(blockBatch, block.Hash(), block.NumberU64(), externTd)
rawdb.WriteBlock(blockBatch, block)
rawdb.WriteReceipts(blockBatch, block.Hash(), block.NumberU64(), receipts)
// System call appends state-sync logs into state. So, `state.Logs()` contains
// all logs including system-call logs (state sync logs) while `logs` contains
// only logs generated by transactions (receipts).
//
// That means that state.Logs() can have more logs than receipt logs.
// In that case, we can safely assume that extra logs are from state sync logs.
//
// block logs = receipt logs + state sync logs = `state.Logs()`
blockLogs := state.Logs()
var stateSyncLogs []*types.Log
if len(blockLogs) > 0 {
sort.SliceStable(blockLogs, func(i, j int) bool {
return blockLogs[i].Index < blockLogs[j].Index
})
if len(blockLogs) > len(logs) {
stateSyncLogs = blockLogs[len(logs):] // get state-sync logs from `state.Logs()`
// State sync logs don't have tx index, tx hash and other necessary fields
// DeriveFieldsForBorLogs will fill those fields for websocket subscriptions
types.DeriveFieldsForBorLogs(stateSyncLogs, block.Hash(), block.NumberU64(), uint(len(receipts)), uint(len(logs)))
// Write bor receipt
rawdb.WriteBorReceipt(blockBatch, block.Hash(), block.NumberU64(), &types.ReceiptForStorage{
Status: types.ReceiptStatusSuccessful, // make receipt status successful
Logs: stateSyncLogs,
})
// Write bor tx reverse lookup
rawdb.WriteBorTxLookupEntry(blockBatch, block.Hash(), block.NumberU64())
}
}
rawdb.WritePreimages(blockBatch, state.Preimages())
if err := blockBatch.Write(); err != nil {
log.Crit("Failed to write block into disk", "err", err)
}
// Commit all cached state changes into underlying memory database.
root, err := state.Commit(bc.chainConfig.IsEIP158(block.Number()))
if err != nil {
return []*types.Log{}, err
}
// If we're running an archive node, always flush
if bc.cacheConfig.TrieDirtyDisabled {
return []*types.Log{}, bc.triedb.Commit(root, false)
}
// Full but not archive node, do proper garbage collection
bc.triedb.Reference(root, common.Hash{}) // metadata reference to keep trie alive
bc.triegc.Push(root, -int64(block.NumberU64()))
current := block.NumberU64()
// Flush limits are not considered for the first TriesInMemory blocks.
if current <= bc.cacheConfig.TriesInMemory {
return []*types.Log{}, nil
}
// If we exceeded our memory allowance, flush matured singleton nodes to disk
var (
nodes, imgs = bc.triedb.Size()
limit = common.StorageSize(bc.cacheConfig.TrieDirtyLimit) * 1024 * 1024
)
if nodes > limit || imgs > 4*1024*1024 {
_ = bc.triedb.Cap(limit - ethdb.IdealBatchSize)
}
// Find the next state trie we need to commit
chosen := current - bc.cacheConfig.TriesInMemory
flushInterval := time.Duration(bc.flushInterval.Load())
// If we exceeded time allowance, flush an entire trie to disk
if bc.gcproc > flushInterval {
// If the header is missing (canonical chain behind), we're reorging a low
// diff sidechain. Suspend committing until this operation is completed.
header := bc.GetHeaderByNumber(chosen)
if header == nil {
log.Warn("Reorg in progress, trie commit postponed", "number", chosen)
} else {
// If we're exceeding limits but haven't reached a large enough memory gap,
// warn the user that the system is becoming unstable.
if chosen < bc.lastWrite+bc.cacheConfig.TriesInMemory && bc.gcproc >= 2*flushInterval {
log.Info("State in memory for too long, committing", "time", bc.gcproc, "allowance", flushInterval, "optimum", float64(chosen-bc.lastWrite)/float64(bc.cacheConfig.TriesInMemory))
}
// Flush an entire trie and restart the counters
_ = bc.triedb.Commit(header.Root, true)
bc.lastWrite = chosen
bc.gcproc = 0
}
}
// Garbage collect anything below our required write retention
for !bc.triegc.Empty() {
root, number := bc.triegc.Pop()
if uint64(-number) > chosen {
bc.triegc.Push(root, number)
break
}
bc.triedb.Dereference(root)
}
return stateSyncLogs, nil
}
// WriteBlockAndSetHead writes the given block and all associated state to the database,
// and applies the block as the new chain head.
func (bc *BlockChain) WriteBlockAndSetHead(ctx context.Context, block *types.Block, receipts []*types.Receipt, logs []*types.Log, state *state.StateDB, emitHeadEvent bool) (status WriteStatus, err error) {
if !bc.chainmu.TryLock() {
return NonStatTy, errChainStopped
}
defer bc.chainmu.Unlock()
return bc.writeBlockAndSetHead(ctx, block, receipts, logs, state, emitHeadEvent)
}
// writeBlockAndSetHead is the internal implementation of WriteBlockAndSetHead.
// This function expects the chain mutex to be held.
func (bc *BlockChain) writeBlockAndSetHead(ctx context.Context, block *types.Block, receipts []*types.Receipt, logs []*types.Log, state *state.StateDB, emitHeadEvent bool) (status WriteStatus, err error) {
writeBlockAndSetHeadCtx, span := tracing.StartSpan(ctx, "blockchain.writeBlockAndSetHead")
defer tracing.EndSpan(span)
var stateSyncLogs []*types.Log
tracing.Exec(writeBlockAndSetHeadCtx, "", "blockchain.writeBlockWithState", func(_ context.Context, span trace.Span) {
stateSyncLogs, err = bc.writeBlockWithState(block, receipts, logs, state)
tracing.SetAttributes(
span,
attribute.Int("number", int(block.Number().Uint64())),
attribute.Bool("error", err != nil),
)
})
if err != nil {
return NonStatTy, err
}
currentBlock := bc.CurrentBlock()
var reorg bool
tracing.Exec(writeBlockAndSetHeadCtx, "", "blockchain.ReorgNeeded", func(_ context.Context, span trace.Span) {
reorg, err = bc.forker.ReorgNeeded(currentBlock, block.Header())
tracing.SetAttributes(
span,
attribute.Int("number", int(block.Number().Uint64())),
attribute.Int("current block", int(currentBlock.Number.Uint64())),
attribute.Bool("reorg needed", reorg),
attribute.Bool("error", err != nil),
)
})
if err != nil {
return NonStatTy, err
}
tracing.Exec(writeBlockAndSetHeadCtx, "", "blockchain.reorg", func(_ context.Context, span trace.Span) {
if reorg {
// Reorganise the chain if the parent is not the head block
if block.ParentHash() != currentBlock.Hash() {
if err = bc.reorg(currentBlock, block); err != nil {
status = NonStatTy
}
}
status = CanonStatTy
} else {
status = SideStatTy
}
tracing.SetAttributes(
span,
attribute.Int("number", int(block.Number().Uint64())),
attribute.Int("current block", int(currentBlock.Number.Uint64())),
attribute.Bool("reorg needed", reorg),
attribute.Bool("error", err != nil),
attribute.String("status", string(status)),
)
})
if status == NonStatTy {
return
}
// Set new head.
if status == CanonStatTy {
tracing.Exec(writeBlockAndSetHeadCtx, "", "blockchain.writeHeadBlock", func(_ context.Context, _ trace.Span) {
bc.writeHeadBlock(block)
})
}
bc.futureBlocks.Remove(block.Hash())
if status == CanonStatTy {
bc.chainFeed.Send(ChainEvent{Block: block, Hash: block.Hash(), Logs: logs})
if len(logs) > 0 {
bc.logsFeed.Send(logs)
}
// send state sync logs into logs feed
if len(stateSyncLogs) > 0 {
bc.logsFeed.Send(stateSyncLogs)
}
// In theory, we should fire a ChainHeadEvent when we inject
// a canonical block, but sometimes we can insert a batch of
// canonical blocks. Avoid firing too many ChainHeadEvents,
// we will fire an accumulated ChainHeadEvent and disable fire
// event here.
if emitHeadEvent {
bc.chainHeadFeed.Send(ChainHeadEvent{Block: block})
// BOR state sync feed related changes
for _, data := range bc.stateSyncData {
bc.stateSyncFeed.Send(StateSyncEvent{Data: data})
}
// BOR
}
} else {
bc.chainSideFeed.Send(ChainSideEvent{Block: block})
bc.chain2HeadFeed.Send(Chain2HeadEvent{
Type: Chain2HeadForkEvent,
NewChain: []*types.Block{block},
})
}
return status, nil
}
// addFutureBlock checks if the block is within the max allowed window to get
// accepted for future processing, and returns an error if the block is too far
// ahead and was not added.
//
// TODO after the transition, the future block shouldn't be kept. Because
// it's not checked in the Geth side anymore.
func (bc *BlockChain) addFutureBlock(block *types.Block) error {
max := uint64(time.Now().Unix() + maxTimeFutureBlocks)
if block.Time() > max {
return fmt.Errorf("future block timestamp %v > allowed %v", block.Time(), max)
}
if block.Difficulty().Cmp(common.Big0) == 0 {
// Never add PoS blocks into the future queue
return nil
}
bc.futureBlocks.Add(block.Hash(), block)
return nil
}
// InsertChain attempts to insert the given batch of blocks in to the canonical
// chain or, otherwise, create a fork. If an error is returned it will return
// the index number of the failing block as well an error describing what went
// wrong. After insertion is done, all accumulated events will be fired.
func (bc *BlockChain) InsertChain(chain types.Blocks) (int, error) {
// Sanity check that we have something meaningful to import
if len(chain) == 0 {
return 0, nil
}
bc.blockProcFeed.Send(true)
defer bc.blockProcFeed.Send(false)
// Do a sanity check that the provided chain is actually ordered and linked.
for i := 1; i < len(chain); i++ {
block, prev := chain[i], chain[i-1]
if block.NumberU64() != prev.NumberU64()+1 || block.ParentHash() != prev.Hash() {
log.Error("Non contiguous block insert",
"number", block.Number(),
"hash", block.Hash(),
"parent", block.ParentHash(),
"prevnumber", prev.Number(),
"prevhash", prev.Hash(),
)
return 0, fmt.Errorf("non contiguous insert: item %d is #%d [%x..], item %d is #%d [%x..] (parent [%x..])", i-1, prev.NumberU64(),
prev.Hash().Bytes()[:4], i, block.NumberU64(), block.Hash().Bytes()[:4], block.ParentHash().Bytes()[:4])
}
}
// Pre-checks passed, start the full block imports
if !bc.chainmu.TryLock() {
return 0, errChainStopped
}
defer bc.chainmu.Unlock()
return bc.insertChain(chain, true, true)
}
// insertChain is the internal implementation of InsertChain, which assumes that
// 1) chains are contiguous, and 2) The chain mutex is held.
//
// This method is split out so that import batches that require re-injecting
// historical blocks can do so without releasing the lock, which could lead to
// racey behaviour. If a sidechain import is in progress, and the historic state
// is imported, but then new canon-head is added before the actual sidechain
// completes, then the historic state could be pruned again
func (bc *BlockChain) insertChain(chain types.Blocks, verifySeals, setHead bool) (int, error) {
// If the chain is terminating, don't even bother starting up.
if bc.insertStopped() {
return 0, nil
}
// Start a parallel signature recovery (signer will fluke on fork transition, minimal perf loss)
SenderCacher.RecoverFromBlocks(types.MakeSigner(bc.chainConfig, chain[0].Number()), chain)
var (
stats = insertStats{startTime: mclock.Now()}
lastCanon *types.Block
)
// Fire a single chain head event if we've progressed the chain
defer func() {
if lastCanon != nil && bc.CurrentBlock().Hash() == lastCanon.Hash() {
bc.chainHeadFeed.Send(ChainHeadEvent{lastCanon})
}
}()
// Start the parallel header verifier
headers := make([]*types.Header, len(chain))
seals := make([]bool, len(chain))
for i, block := range chain {
headers[i] = block.Header()
seals[i] = verifySeals
}
abort, results := bc.engine.VerifyHeaders(bc, headers, seals)
defer close(abort)
// Peek the error for the first block to decide the directing import logic
it := newInsertIterator(chain, results, bc.validator)
block, err := it.next()
// Update the block import meter; it will just record chains we've received
// from other peers. (Note that the actual chain which gets imported would be
// quite low).
blockImportTimer.Mark(int64(len(headers)))
// Check the validity of incoming chain
isValid, err1 := bc.forker.ValidateReorg(bc.CurrentBlock(), headers)
if err1 != nil {
return it.index, err1
}
if !isValid {
// The chain to be imported is invalid as the blocks doesn't match with
// the whitelisted checkpoints.
return it.index, whitelist.ErrCheckpointMismatch
}
// Left-trim all the known blocks that don't need to build snapshot
if bc.skipBlock(err, it) {
// First block (and state) is known
// 1. We did a roll-back, and should now do a re-import
// 2. The block is stored as a sidechain, and is lying about it's stateroot, and passes a stateroot
// from the canonical chain, which has not been verified.
// Skip all known blocks that are behind us.
var (
reorg bool
current = bc.CurrentBlock()
)
for block != nil && bc.skipBlock(err, it) {
reorg, err = bc.forker.ReorgNeeded(current, block.Header())
if err != nil {
return it.index, err
}
if reorg {
// Switch to import mode if the forker says the reorg is necessary
// and also the block is not on the canonical chain.
// In eth2 the forker always returns true for reorg decision (blindly trusting
// the external consensus engine), but in order to prevent the unnecessary
// reorgs when importing known blocks, the special case is handled here.
if block.NumberU64() > current.Number.Uint64() || bc.GetCanonicalHash(block.NumberU64()) != block.Hash() {
break
}
}
log.Debug("Ignoring already known block", "number", block.Number(), "hash", block.Hash())
stats.ignored++
block, err = it.next()
}
// The remaining blocks are still known blocks, the only scenario here is:
// During the fast sync, the pivot point is already submitted but rollback
// happens. Then node resets the head full block to a lower height via `rollback`
// and leaves a few known blocks in the database.
//
// When node runs a fast sync again, it can re-import a batch of known blocks via
// `insertChain` while a part of them have higher total difficulty than current
// head full block(new pivot point).
for block != nil && bc.skipBlock(err, it) {
log.Debug("Writing previously known block", "number", block.Number(), "hash", block.Hash())
if err := bc.writeKnownBlock(block); err != nil {
return it.index, err
}
lastCanon = block
block, err = it.next()
}
// Falls through to the block import
}
switch {
// First block is pruned
case errors.Is(err, consensus.ErrPrunedAncestor):
if setHead {
// First block is pruned, insert as sidechain and reorg only if TD grows enough
log.Debug("Pruned ancestor, inserting as sidechain", "number", block.Number(), "hash", block.Hash())
return bc.insertSideChain(block, it)
} else {
// We're post-merge and the parent is pruned, try to recover the parent state
log.Debug("Pruned ancestor", "number", block.Number(), "hash", block.Hash())
_, err := bc.recoverAncestors(block)
return it.index, err
}
// First block is future, shove it (and all children) to the future queue (unknown ancestor)
case errors.Is(err, consensus.ErrFutureBlock) || (errors.Is(err, consensus.ErrUnknownAncestor) && bc.futureBlocks.Contains(it.first().ParentHash())):
for block != nil && (it.index == 0 || errors.Is(err, consensus.ErrUnknownAncestor)) {
log.Debug("Future block, postponing import", "number", block.Number(), "hash", block.Hash())
if err := bc.addFutureBlock(block); err != nil {
return it.index, err
}
block, err = it.next()
}
stats.queued += it.processed()
stats.ignored += it.remaining()
// If there are any still remaining, mark as ignored
return it.index, err
// Some other error(except ErrKnownBlock) occurred, abort.
// ErrKnownBlock is allowed here since some known blocks
// still need re-execution to generate snapshots that are missing
case err != nil && !errors.Is(err, ErrKnownBlock):
bc.futureBlocks.Remove(block.Hash())
stats.ignored += len(it.chain)
bc.reportBlock(block, nil, err)
return it.index, err
}
// No validation errors for the first block (or chain prefix skipped)
var activeState *state.StateDB
defer func() {
// The chain importer is starting and stopping trie prefetchers. If a bad
// block or other error is hit however, an early return may not properly
// terminate the background threads. This defer ensures that we clean up
// and dangling prefetcher, without defering each and holding on live refs.
if activeState != nil {
activeState.StopPrefetcher()
}
}()
// accumulator for canonical blocks
var canonAccum []*types.Block
emitAccum := func() {
size := len(canonAccum)
if size == 0 || size > 5 {
// avoid reporting events for large sync events
return
}
bc.chain2HeadFeed.Send(Chain2HeadEvent{
Type: Chain2HeadCanonicalEvent,
NewChain: canonAccum,
})
canonAccum = canonAccum[:0]
}
for ; block != nil && err == nil || errors.Is(err, ErrKnownBlock); block, err = it.next() {
// If the chain is terminating, stop processing blocks
if bc.insertStopped() {
log.Debug("Abort during block processing")
break
}
// If the header is a banned one, straight out abort
if BadHashes[block.Hash()] {
bc.reportBlock(block, nil, ErrBannedHash)
return it.index, ErrBannedHash
}
// If the block is known (in the middle of the chain), it's a special case for
// Clique blocks where they can share state among each other, so importing an
// older block might complete the state of the subsequent one. In this case,
// just skip the block (we already validated it once fully (and crashed), since
// its header and body was already in the database). But if the corresponding
// snapshot layer is missing, forcibly rerun the execution to build it.
if bc.skipBlock(err, it) {
logger := log.Debug
if bc.chainConfig.Clique == nil {
logger = log.Warn
}
logger("Inserted known block", "number", block.Number(), "hash", block.Hash(),
"uncles", len(block.Uncles()), "txs", len(block.Transactions()), "gas", block.GasUsed(),
"root", block.Root())
// Special case. Commit the empty receipt slice if we meet the known
// block in the middle. It can only happen in the clique chain. Whenever
// we insert blocks via `insertSideChain`, we only commit `td`, `header`
// and `body` if it's non-existent. Since we don't have receipts without
// reexecution, so nothing to commit. But if the sidechain will be adopted
// as the canonical chain eventually, it needs to be reexecuted for missing
// state, but if it's this special case here(skip reexecution) we will lose
// the empty receipt entry.
if len(block.Transactions()) == 0 {
rawdb.WriteReceipts(bc.db, block.Hash(), block.NumberU64(), nil)
} else {
log.Error("Please file an issue, skip known block execution without receipt",
"hash", block.Hash(), "number", block.NumberU64())
}
if err := bc.writeKnownBlock(block); err != nil {
return it.index, err
}
stats.processed++
// We can assume that logs are empty here, since the only way for consecutive
// Clique blocks to have the same state is if there are no transactions.
lastCanon = block
continue
}
// Retrieve the parent block and it's state to execute on top
start := time.Now()
parent := it.previous()
if parent == nil {
parent = bc.GetHeader(block.ParentHash(), block.NumberU64()-1)
}
statedb, err := state.New(parent.Root, bc.stateCache, bc.snaps)
if err != nil {
return it.index, err
}
// Enable prefetching to pull in trie node paths while processing transactions
statedb.StartPrefetcher("chain")
activeState = statedb
// If we have a followup block, run that against the current state to pre-cache
// transactions and probabilistically some of the account/storage trie nodes.
var followupInterrupt atomic.Bool
if !bc.cacheConfig.TrieCleanNoPrefetch {
if followup, err := it.peek(); followup != nil && err == nil {
throwaway, _ := state.New(parent.Root, bc.stateCache, bc.snaps)
go func(start time.Time, followup *types.Block, throwaway *state.StateDB) {
bc.prefetcher.Prefetch(followup, throwaway, bc.vmConfig, &followupInterrupt)
blockPrefetchExecuteTimer.Update(time.Since(start))
if followupInterrupt.Load() {
blockPrefetchInterruptMeter.Mark(1)
}
}(time.Now(), followup, throwaway)
}
}
// Process block using the parent state as reference point
pstart := time.Now()
receipts, logs, usedGas, statedb, err := bc.ProcessBlock(block, parent)
activeState = statedb
if err != nil {
bc.reportBlock(block, receipts, err)
followupInterrupt.Store(true)
return it.index, err
}
// BOR state sync feed related changes
for _, data := range bc.stateSyncData {
bc.stateSyncFeed.Send(StateSyncEvent{Data: data})
}
// BOR
ptime := time.Since(pstart)
vstart := time.Now()
if err := bc.validator.ValidateState(block, statedb, receipts, usedGas); err != nil {
bc.reportBlock(block, receipts, err)
followupInterrupt.Store(true)
return it.index, err
}
vtime := time.Since(vstart)
proctime := time.Since(start) // processing + validation
// Update the metrics touched during block processing and validation
accountReadTimer.Update(statedb.AccountReads) // Account reads are complete(in processing)
storageReadTimer.Update(statedb.StorageReads) // Storage reads are complete(in processing)
snapshotAccountReadTimer.Update(statedb.SnapshotAccountReads) // Account reads are complete(in processing)
snapshotStorageReadTimer.Update(statedb.SnapshotStorageReads) // Storage reads are complete(in processing)
accountUpdateTimer.Update(statedb.AccountUpdates) // Account updates are complete(in validation)
storageUpdateTimer.Update(statedb.StorageUpdates) // Storage updates are complete(in validation)
accountHashTimer.Update(statedb.AccountHashes) // Account hashes are complete(in validation)
storageHashTimer.Update(statedb.StorageHashes) // Storage hashes are complete(in validation)
triehash := statedb.AccountHashes + statedb.StorageHashes // The time spent on tries hashing
trieUpdate := statedb.AccountUpdates + statedb.StorageUpdates // The time spent on tries update
trieRead := statedb.SnapshotAccountReads + statedb.AccountReads // The time spent on account read
trieRead += statedb.SnapshotStorageReads + statedb.StorageReads // The time spent on storage read
blockExecutionTimer.Update(ptime - trieRead) // The time spent on EVM processing
blockValidationTimer.Update(vtime - (triehash + trieUpdate)) // The time spent on block validation
// Write the block to the chain and get the status.
var (
wstart = time.Now()
status WriteStatus
)
if !setHead {
// Don't set the head, only insert the block
_, err = bc.writeBlockWithState(block, receipts, logs, statedb)
} else {
status, err = bc.writeBlockAndSetHead(context.Background(), block, receipts, logs, statedb, false)
}
followupInterrupt.Store(true)
if err != nil {
return it.index, err
}
// Update the metrics touched during block commit
accountCommitTimer.Update(statedb.AccountCommits) // Account commits are complete, we can mark them
storageCommitTimer.Update(statedb.StorageCommits) // Storage commits are complete, we can mark them
snapshotCommitTimer.Update(statedb.SnapshotCommits) // Snapshot commits are complete, we can mark them
triedbCommitTimer.Update(statedb.TrieDBCommits) // Trie database commits are complete, we can mark them
blockWriteTimer.Update(time.Since(wstart) - statedb.AccountCommits - statedb.StorageCommits - statedb.SnapshotCommits - statedb.TrieDBCommits)
blockInsertTimer.UpdateSince(start)
// Report the import stats before returning the various results
stats.processed++
stats.usedGas += usedGas
dirty, _ := bc.triedb.Size()
stats.report(chain, it.index, dirty, setHead)
if !setHead {
// After merge we expect few side chains. Simply count
// all blocks the CL gives us for GC processing time
bc.gcproc += proctime
return it.index, nil // Direct block insertion of a single block
}
// BOR
if status == CanonStatTy {
canonAccum = append(canonAccum, block)
} else {
emitAccum()
}
// BOR
switch status {
case CanonStatTy:
log.Debug("Inserted new block", "number", block.Number(), "hash", block.Hash(),
"uncles", len(block.Uncles()), "txs", len(block.Transactions()), "gas", block.GasUsed(),
"elapsed", common.PrettyDuration(time.Since(start)),
"root", block.Root())
lastCanon = block
// Only count canonical blocks for GC processing time
bc.gcproc += proctime
case SideStatTy:
log.Debug("Inserted forked block", "number", block.Number(), "hash", block.Hash(),
"diff", block.Difficulty(), "elapsed", common.PrettyDuration(time.Since(start)),
"txs", len(block.Transactions()), "gas", block.GasUsed(), "uncles", len(block.Uncles()),
"root", block.Root())
default:
// This in theory is impossible, but lets be nice to our future selves and leave
// a log, instead of trying to track down blocks imports that don't emit logs.
log.Warn("Inserted block with unknown status", "number", block.Number(), "hash", block.Hash(),
"diff", block.Difficulty(), "elapsed", common.PrettyDuration(time.Since(start)),
"txs", len(block.Transactions()), "gas", block.GasUsed(), "uncles", len(block.Uncles()),
"root", block.Root())
}
}
// BOR
emitAccum()
// BOR
// Any blocks remaining here? The only ones we care about are the future ones
if block != nil && errors.Is(err, consensus.ErrFutureBlock) {
if err := bc.addFutureBlock(block); err != nil {
return it.index, err
}
block, err = it.next()
for ; block != nil && errors.Is(err, consensus.ErrUnknownAncestor); block, err = it.next() {
if err := bc.addFutureBlock(block); err != nil {
return it.index, err
}
stats.queued++
}
}
stats.ignored += it.remaining()
return it.index, err
}
// insertSideChain is called when an import batch hits upon a pruned ancestor
// error, which happens when a sidechain with a sufficiently old fork-block is
// found.
//
// The method writes all (header-and-body-valid) blocks to disk, then tries to
// switch over to the new chain if the TD exceeded the current chain.
// insertSideChain is only used pre-merge.
func (bc *BlockChain) insertSideChain(block *types.Block, it *insertIterator) (int, error) {
var (
externTd *big.Int
lastBlock = block
current = bc.CurrentBlock()
headers []*types.Header
)
// The first sidechain block error is already verified to be ErrPrunedAncestor.
// Since we don't import them here, we expect ErrUnknownAncestor for the remaining
// ones. Any other errors means that the block is invalid, and should not be written
// to disk.
err := consensus.ErrPrunedAncestor
for ; block != nil && errors.Is(err, consensus.ErrPrunedAncestor); block, err = it.next() {
headers = append(headers, block.Header())
// Check the canonical state root for that number
if number := block.NumberU64(); current.Number.Uint64() >= number {
canonical := bc.GetBlockByNumber(number)
if canonical != nil && canonical.Hash() == block.Hash() {
// Not a sidechain block, this is a re-import of a canon block which has it's state pruned
// Collect the TD of the block. Since we know it's a canon one,
// we can get it directly, and not (like further below) use
// the parent and then add the block on top
externTd = bc.GetTd(block.Hash(), block.NumberU64())
continue
}
if canonical != nil && canonical.Root() == block.Root() {
// This is most likely a shadow-state attack. When a fork is imported into the
// database, and it eventually reaches a block height which is not pruned, we
// just found that the state already exist! This means that the sidechain block
// refers to a state which already exists in our canon chain.
//
// If left unchecked, we would now proceed importing the blocks, without actually
// having verified the state of the previous blocks.
log.Warn("Sidechain ghost-state attack detected", "number", block.NumberU64(), "sideroot", block.Root(), "canonroot", canonical.Root())
// If someone legitimately side-mines blocks, they would still be imported as usual. However,
// we cannot risk writing unverified blocks to disk when they obviously target the pruning
// mechanism.
return it.index, errors.New("sidechain ghost-state attack")
}
}
if externTd == nil {
externTd = bc.GetTd(block.ParentHash(), block.NumberU64()-1)
}
externTd = new(big.Int).Add(externTd, block.Difficulty())
if !bc.HasBlock(block.Hash(), block.NumberU64()) {
start := time.Now()
if err := bc.writeBlockWithoutState(block, externTd); err != nil {
return it.index, err
}
log.Debug("Injected sidechain block", "number", block.Number(), "hash", block.Hash(),
"diff", block.Difficulty(), "elapsed", common.PrettyDuration(time.Since(start)),
"txs", len(block.Transactions()), "gas", block.GasUsed(), "uncles", len(block.Uncles()),
"root", block.Root())
}
lastBlock = block
}
// At this point, we've written all sidechain blocks to database. Loop ended
// either on some other error or all were processed. If there was some other
// error, we can ignore the rest of those blocks.
//
// If the externTd was larger than our local TD, we now need to reimport the previous
// blocks to regenerate the required state
reorg, err := bc.forker.ReorgNeeded(current, lastBlock.Header())
if err != nil {
return it.index, err
}
isValid, err := bc.forker.ValidateReorg(current, headers)
if err != nil {
return it.index, err
}
if !reorg || !isValid {
localTd := bc.GetTd(current.Hash(), current.Number.Uint64())
log.Info("Sidechain written to disk", "start", it.first().NumberU64(), "end", it.previous().Number, "sidetd", externTd, "localtd", localTd)
return it.index, err
}
// Gather all the sidechain hashes (full blocks may be memory heavy)
var (
hashes []common.Hash
numbers []uint64
)
parent := it.previous()
for parent != nil && !bc.HasState(parent.Root) {
hashes = append(hashes, parent.Hash())
numbers = append(numbers, parent.Number.Uint64())
parent = bc.GetHeader(parent.ParentHash, parent.Number.Uint64()-1)
}
if parent == nil {
return it.index, errors.New("missing parent")
}
// Import all the pruned blocks to make the state available
var (
blocks []*types.Block
memory uint64
)
for i := len(hashes) - 1; i >= 0; i-- {
// Append the next block to our batch
block := bc.GetBlock(hashes[i], numbers[i])
blocks = append(blocks, block)
memory += block.Size()
// If memory use grew too large, import and continue. Sadly we need to discard
// all raised events and logs from notifications since we're too heavy on the
// memory here.
if len(blocks) >= 2048 || memory > 64*1024*1024 {
log.Info("Importing heavy sidechain segment", "blocks", len(blocks), "start", blocks[0].NumberU64(), "end", block.NumberU64())
if _, err := bc.insertChain(blocks, false, true); err != nil {
return 0, err
}
blocks, memory = blocks[:0], 0
// If the chain is terminating, stop processing blocks
if bc.insertStopped() {
log.Debug("Abort during blocks processing")
return 0, nil
}
}
}
if len(blocks) > 0 {
log.Info("Importing sidechain segment", "start", blocks[0].NumberU64(), "end", blocks[len(blocks)-1].NumberU64())
return bc.insertChain(blocks, false, true)
}
return 0, nil
}
// recoverAncestors finds the closest ancestor with available state and re-execute
// all the ancestor blocks since that.
// recoverAncestors is only used post-merge.
// We return the hash of the latest block that we could correctly validate.
func (bc *BlockChain) recoverAncestors(block *types.Block) (common.Hash, error) {
// Gather all the sidechain hashes (full blocks may be memory heavy)
var (
hashes []common.Hash
numbers []uint64
parent = block
)
for parent != nil && !bc.HasState(parent.Root()) {
hashes = append(hashes, parent.Hash())
numbers = append(numbers, parent.NumberU64())
parent = bc.GetBlock(parent.ParentHash(), parent.NumberU64()-1)
// If the chain is terminating, stop iteration
if bc.insertStopped() {
log.Debug("Abort during blocks iteration")
return common.Hash{}, errInsertionInterrupted
}
}
if parent == nil {
return common.Hash{}, errors.New("missing parent")
}
// Import all the pruned blocks to make the state available
for i := len(hashes) - 1; i >= 0; i-- {
// If the chain is terminating, stop processing blocks
if bc.insertStopped() {
log.Debug("Abort during blocks processing")
return common.Hash{}, errInsertionInterrupted
}
var b *types.Block
if i == 0 {
b = block
} else {
b = bc.GetBlock(hashes[i], numbers[i])
}
if _, err := bc.insertChain(types.Blocks{b}, false, false); err != nil {
return b.ParentHash(), err
}
}
return block.Hash(), nil
}
// collectLogs collects the logs that were generated or removed during
// the processing of a block. These logs are later announced as deleted or reborn.
func (bc *BlockChain) collectLogs(b *types.Block, removed bool) []*types.Log {
receipts := rawdb.ReadRawReceipts(bc.db, b.Hash(), b.NumberU64())
// Append bor receipt
borReceipt := rawdb.ReadBorReceipt(bc.db, b.Hash(), b.NumberU64(), bc.chainConfig)
if borReceipt != nil {
receipts = append(receipts, borReceipt)
}
_ = receipts.DeriveFields(bc.chainConfig, b.Hash(), b.NumberU64(), b.BaseFee(), b.Transactions())
var logs []*types.Log
for _, receipt := range receipts {
for _, log := range receipt.Logs {
l := *log
if removed {
l.Removed = true
}
logs = append(logs, &l)
}
}
return logs
}
// reorg takes two blocks, an old chain and a new chain and will reconstruct the
// blocks and inserts them to be part of the new canonical chain and accumulates
// potential missing transactions and post an event about them.
// Note the new head block won't be processed here, callers need to handle it
// externally.
// nolint:gocognit
func (bc *BlockChain) reorg(oldHead *types.Header, newHead *types.Block) error {
var (
newChain types.Blocks
oldChain types.Blocks
commonBlock *types.Block
deletedTxs []common.Hash
addedTxs []common.Hash
)
oldBlock := bc.GetBlock(oldHead.Hash(), oldHead.Number.Uint64())
if oldBlock == nil {
return errors.New("current head block missing")
}
newBlock := newHead
// Reduce the longer chain to the same number as the shorter one
if oldBlock.NumberU64() > newBlock.NumberU64() {
// Old chain is longer, gather all transactions and logs as deleted ones
for ; oldBlock != nil && oldBlock.NumberU64() != newBlock.NumberU64(); oldBlock = bc.GetBlock(oldBlock.ParentHash(), oldBlock.NumberU64()-1) {
oldChain = append(oldChain, oldBlock)
for _, tx := range oldBlock.Transactions() {
deletedTxs = append(deletedTxs, tx.Hash())
}
}
} else {
// New chain is longer, stash all blocks away for subsequent insertion
for ; newBlock != nil && newBlock.NumberU64() != oldBlock.NumberU64(); newBlock = bc.GetBlock(newBlock.ParentHash(), newBlock.NumberU64()-1) {
newChain = append(newChain, newBlock)
}
}
if oldBlock == nil {
return errors.New("invalid old chain")
}
if newBlock == nil {
return errors.New("invalid new chain")
}
// Both sides of the reorg are at the same number, reduce both until the common
// ancestor is found
for {
// If the common ancestor was found, bail out
if oldBlock.Hash() == newBlock.Hash() {
commonBlock = oldBlock
break
}
// Remove an old block as well as stash away a new block
oldChain = append(oldChain, oldBlock)
for _, tx := range oldBlock.Transactions() {
deletedTxs = append(deletedTxs, tx.Hash())
}
newChain = append(newChain, newBlock)
// Step back with both chains
oldBlock = bc.GetBlock(oldBlock.ParentHash(), oldBlock.NumberU64()-1)
if oldBlock == nil {
return fmt.Errorf("invalid old chain")
}
newBlock = bc.GetBlock(newBlock.ParentHash(), newBlock.NumberU64()-1)
if newBlock == nil {
return fmt.Errorf("invalid new chain")
}
}
// Ensure the user sees large reorgs
if len(oldChain) > 0 && len(newChain) > 0 {
bc.chain2HeadFeed.Send(Chain2HeadEvent{
Type: Chain2HeadReorgEvent,
NewChain: newChain,
OldChain: oldChain,
})
logFn := log.Info
msg := "Chain reorg detected"
if len(oldChain) > 63 {
msg = "Large chain reorg detected"
logFn = log.Warn
}
logFn(msg, "number", commonBlock.Number(), "hash", commonBlock.Hash(),
"drop", len(oldChain), "dropfrom", oldChain[0].Hash(), "add", len(newChain), "addfrom", newChain[0].Hash())
blockReorgAddMeter.Mark(int64(len(newChain)))
blockReorgDropMeter.Mark(int64(len(oldChain)))
blockReorgMeter.Mark(1)
} else if len(newChain) > 0 {
// Special case happens in the post merge stage that current head is
// the ancestor of new head while these two blocks are not consecutive
log.Info("Extend chain", "add", len(newChain), "number", newChain[0].Number(), "hash", newChain[0].Hash())
blockReorgAddMeter.Mark(int64(len(newChain)))
} else {
// len(newChain) == 0 && len(oldChain) > 0
// rewind the canonical chain to a lower point.
home, err := os.UserHomeDir()
if err != nil {
fmt.Println("Impossible reorg : Unable to get user home dir", "Error", err)
}
outPath := filepath.Join(home, "impossible-reorgs", fmt.Sprintf("%v-impossibleReorg", time.Now().Format(time.RFC3339)))
if _, err := os.Stat(outPath); errors.Is(err, os.ErrNotExist) {
err := os.MkdirAll(outPath, os.ModePerm)
if err != nil {
log.Error("Impossible reorg : Unable to create Dir", "Error", err)
}
} else {
err = ExportBlocks(oldChain, filepath.Join(outPath, "oldChain.gz"))
if err != nil {
log.Error("Impossible reorg : Unable to export oldChain", "Error", err)
}
err = ExportBlocks([]*types.Block{oldBlock}, filepath.Join(outPath, "oldBlock.gz"))
if err != nil {
log.Error("Impossible reorg : Unable to export oldBlock", "Error", err)
}
err = ExportBlocks([]*types.Block{newBlock}, filepath.Join(outPath, "newBlock.gz"))
if err != nil {
log.Error("Impossible reorg : Unable to export newBlock", "Error", err)
}
}
log.Error("Impossible reorg, please file an issue", "oldnum", oldBlock.Number(), "oldhash", oldBlock.Hash(), "oldblocks", len(oldChain), "newnum", newBlock.Number(), "newhash", newBlock.Hash(), "newblocks", len(newChain))
}
// Insert the new chain(except the head block(reverse order)),
// taking care of the proper incremental order.
for i := len(newChain) - 1; i >= 1; i-- {
// Insert the block in the canonical way, re-writing history
bc.writeHeadBlock(newChain[i])
// Collect the new added transactions.
for _, tx := range newChain[i].Transactions() {
addedTxs = append(addedTxs, tx.Hash())
}
}
// Delete useless indexes right now which includes the non-canonical
// transaction indexes, canonical chain indexes which above the head.
indexesBatch := bc.db.NewBatch()
for _, tx := range types.HashDifference(deletedTxs, addedTxs) {
rawdb.DeleteTxLookupEntry(indexesBatch, tx)
}
// Delete all hash markers that are not part of the new canonical chain.
// Because the reorg function does not handle new chain head, all hash
// markers greater than or equal to new chain head should be deleted.
number := commonBlock.NumberU64()
if len(newChain) > 1 {
number = newChain[1].NumberU64()
}
for i := number + 1; ; i++ {
hash := rawdb.ReadCanonicalHash(bc.db, i)
if hash == (common.Hash{}) {
break
}
rawdb.DeleteCanonicalHash(indexesBatch, i)
}
if err := indexesBatch.Write(); err != nil {
log.Crit("Failed to delete useless indexes", "err", err)
}
// Send out events for logs from the old canon chain, and 'reborn'
// logs from the new canon chain. The number of logs can be very
// high, so the events are sent in batches of size around 512.
// Deleted logs + blocks:
var deletedLogs []*types.Log
for i := len(oldChain) - 1; i >= 0; i-- {
// Also send event for blocks removed from the canon chain.
bc.chainSideFeed.Send(ChainSideEvent{Block: oldChain[i]})
// Collect deleted logs for notification
if logs := bc.collectLogs(oldChain[i], true); len(logs) > 0 {
deletedLogs = append(deletedLogs, logs...)
}
if len(deletedLogs) > 512 {
bc.rmLogsFeed.Send(RemovedLogsEvent{deletedLogs})
deletedLogs = nil
}
}
if len(deletedLogs) > 0 {
bc.rmLogsFeed.Send(RemovedLogsEvent{deletedLogs})
}
// New logs:
var rebirthLogs []*types.Log
for i := len(newChain) - 1; i >= 1; i-- {
if logs := bc.collectLogs(newChain[i], false); len(logs) > 0 {
rebirthLogs = append(rebirthLogs, logs...)
}
if len(rebirthLogs) > 512 {
bc.logsFeed.Send(rebirthLogs)
rebirthLogs = nil
}
}
if len(rebirthLogs) > 0 {
bc.logsFeed.Send(rebirthLogs)
}
return nil
}
// ExportBlocks exports blocks into the specified file, truncating any data
// already present in the file.
func ExportBlocks(blocks []*types.Block, fn string) error {
log.Info("Exporting blockchain", "file", fn)
// Open the file handle and potentially wrap with a gzip stream
fh, err := os.OpenFile(fn, os.O_CREATE|os.O_WRONLY|os.O_TRUNC, os.ModePerm)
if err != nil {
return err
}
defer fh.Close()
var writer io.Writer = fh
if strings.HasSuffix(fn, ".gz") {
writer = gzip.NewWriter(writer)
defer writer.(*gzip.Writer).Close()
}
// Iterate over the blocks and export them
if err := ExportN(writer, blocks); err != nil {
return err
}
log.Info("Exported blocks", "file", fn)
return nil
}
// ExportBlock writes a block to the given writer.
func ExportN(w io.Writer, blocks []*types.Block) error {
for _, block := range blocks {
if err := block.EncodeRLP(w); err != nil {
return err
}
}
return nil
}
// InsertBlockWithoutSetHead executes the block, runs the necessary verification
// upon it and then persist the block and the associate state into the database.
// The key difference between the InsertChain is it won't do the canonical chain
// updating. It relies on the additional SetCanonical call to finalize the entire
// procedure.
func (bc *BlockChain) InsertBlockWithoutSetHead(block *types.Block) error {
if !bc.chainmu.TryLock() {
return errChainStopped
}
defer bc.chainmu.Unlock()
_, err := bc.insertChain(types.Blocks{block}, true, false)
return err
}
// SetCanonical rewinds the chain to set the new head block as the specified
// block. It's possible that the state of the new head is missing, and it will
// be recovered in this function as well.
func (bc *BlockChain) SetCanonical(head *types.Block) (common.Hash, error) {
if !bc.chainmu.TryLock() {
return common.Hash{}, errChainStopped
}
defer bc.chainmu.Unlock()
// Re-execute the reorged chain in case the head state is missing.
if !bc.HasState(head.Root()) {
if latestValidHash, err := bc.recoverAncestors(head); err != nil {
return latestValidHash, err
}
log.Info("Recovered head state", "number", head.Number(), "hash", head.Hash())
}
// Run the reorg if necessary and set the given block as new head.
start := time.Now()
if head.ParentHash() != bc.CurrentBlock().Hash() {
if err := bc.reorg(bc.CurrentBlock(), head); err != nil {
return common.Hash{}, err
}
}
bc.writeHeadBlock(head)
// Emit events
logs := bc.collectLogs(head, false)
bc.chainFeed.Send(ChainEvent{Block: head, Hash: head.Hash(), Logs: logs})
if len(logs) > 0 {
bc.logsFeed.Send(logs)
}
bc.chainHeadFeed.Send(ChainHeadEvent{Block: head})
context := []interface{}{
"number", head.Number(),
"hash", head.Hash(),
"root", head.Root(),
"elapsed", time.Since(start),
}
if timestamp := time.Unix(int64(head.Time()), 0); time.Since(timestamp) > time.Minute {
context = append(context, []interface{}{"age", common.PrettyAge(timestamp)}...)
}
log.Info("Chain head was updated", context...)
return head.Hash(), nil
}
func (bc *BlockChain) updateFutureBlocks() {
futureTimer := time.NewTicker(5 * time.Second)
defer futureTimer.Stop()
defer bc.wg.Done()
for {
select {
case <-futureTimer.C:
bc.procFutureBlocks()
case <-bc.quit:
return
}
}
}
// skipBlock returns 'true', if the block being imported can be skipped over, meaning
// that the block does not need to be processed but can be considered already fully 'done'.
func (bc *BlockChain) skipBlock(err error, it *insertIterator) bool {
// We can only ever bypass processing if the only error returned by the validator
// is ErrKnownBlock, which means all checks passed, but we already have the block
// and state.
if !errors.Is(err, ErrKnownBlock) {
return false
}
// If we're not using snapshots, we can skip this, since we have both block
// and (trie-) state
if bc.snaps == nil {
return true
}
var (
header = it.current() // header can't be nil
parentRoot common.Hash
)
// If we also have the snapshot-state, we can skip the processing.
if bc.snaps.Snapshot(header.Root) != nil {
return true
}
// In this case, we have the trie-state but not snapshot-state. If the parent
// snapshot-state exists, we need to process this in order to not get a gap
// in the snapshot layers.
// Resolve parent block
if parent := it.previous(); parent != nil {
parentRoot = parent.Root
} else if parent = bc.GetHeaderByHash(header.ParentHash); parent != nil {
parentRoot = parent.Root
}
if parentRoot == (common.Hash{}) {
return false // Theoretically impossible case
}
// Parent is also missing snapshot: we can skip this. Otherwise process.
if bc.snaps.Snapshot(parentRoot) == nil {
return true
}
return false
}
// indexBlocks reindexes or unindexes transactions depending on user configuration
func (bc *BlockChain) indexBlocks(tail *uint64, head uint64, done chan struct{}) {
defer func() { close(done) }()
// The tail flag is not existent, it means the node is just initialized
// and all blocks(may from ancient store) are not indexed yet.
if tail == nil {
from := uint64(0)
if bc.txLookupLimit != 0 && head >= bc.txLookupLimit {
from = head - bc.txLookupLimit + 1
}
rawdb.IndexTransactions(bc.db, from, head+1, bc.quit)
return
}
// The tail flag is existent, but the whole chain is required to be indexed.
if bc.txLookupLimit == 0 || head < bc.txLookupLimit {
if *tail > 0 {
// It can happen when chain is rewound to a historical point which
// is even lower than the indexes tail, recap the indexing target
// to new head to avoid reading non-existent block bodies.
end := *tail
if end > head+1 {
end = head + 1
}
rawdb.IndexTransactions(bc.db, 0, end, bc.quit)
}
return
}
// Update the transaction index to the new chain state
if head-bc.txLookupLimit+1 < *tail {
// Reindex a part of missing indices and rewind index tail to HEAD-limit
rawdb.IndexTransactions(bc.db, head-bc.txLookupLimit+1, *tail, bc.quit)
} else {
// Unindex a part of stale indices and forward index tail to HEAD-limit
rawdb.UnindexTransactions(bc.db, *tail, head-bc.txLookupLimit+1, bc.quit)
}
}
// maintainTxIndex is responsible for the construction and deletion of the
// transaction index.
//
// User can use flag `txlookuplimit` to specify a "recentness" block, below
// which ancient tx indices get deleted. If `txlookuplimit` is 0, it means
// all tx indices will be reserved.
//
// The user can adjust the txlookuplimit value for each launch after sync,
// Geth will automatically construct the missing indices or delete the extra
// indices.
func (bc *BlockChain) maintainTxIndex() {
defer bc.wg.Done()
// Listening to chain events and manipulate the transaction indexes.
var (
done chan struct{} // Non-nil if background unindexing or reindexing routine is active.
headCh = make(chan ChainHeadEvent, 1) // Buffered to avoid locking up the event feed
)
sub := bc.SubscribeChainHeadEvent(headCh)
if sub == nil {
return
}
defer sub.Unsubscribe()
for {
select {
case head := <-headCh:
if done == nil {
done = make(chan struct{})
go bc.indexBlocks(rawdb.ReadTxIndexTail(bc.db), head.Block.NumberU64(), done)
}
case <-done:
done = nil
case <-bc.quit:
if done != nil {
log.Info("Waiting background transaction indexer to exit")
<-done
}
return
}
}
}
// reportBlock logs a bad block error.
func (bc *BlockChain) reportBlock(block *types.Block, receipts types.Receipts, err error) {
rawdb.WriteBadBlock(bc.db, block)
log.Error(summarizeBadBlock(block, receipts, bc.Config(), err))
}
// summarizeBadBlock returns a string summarizing the bad block and other
// relevant information.
func summarizeBadBlock(block *types.Block, receipts []*types.Receipt, config *params.ChainConfig, err error) string {
var receiptString string
for i, receipt := range receipts {
receiptString += fmt.Sprintf("\n %d: cumulative: %v gas: %v contract: %v status: %v tx: %v logs: %v bloom: %x state: %x",
i, receipt.CumulativeGasUsed, receipt.GasUsed, receipt.ContractAddress.Hex(),
receipt.Status, receipt.TxHash.Hex(), receipt.Logs, receipt.Bloom, receipt.PostState)
}
version, vcs := version.Info()
platform := fmt.Sprintf("%s %s %s %s", version, runtime.Version(), runtime.GOARCH, runtime.GOOS)
if vcs != "" {
vcs = fmt.Sprintf("\nVCS: %s", vcs)
}
return fmt.Sprintf(`
########## BAD BLOCK #########
Block: %v (%#x)
Error: %v
Platform: %v%v
Chain config: %#v
Receipts: %v
##############################
`, block.Number(), block.Hash(), err, platform, vcs, config, receiptString)
}
// InsertHeaderChain attempts to insert the given header chain in to the local
// chain, possibly creating a reorg. If an error is returned, it will return the
// index number of the failing header as well an error describing what went wrong.
//
// The verify parameter can be used to fine tune whether nonce verification
// should be done or not. The reason behind the optional check is because some
// of the header retrieval mechanisms already need to verify nonces, as well as
// because nonces can be verified sparsely, not needing to check each.
func (bc *BlockChain) InsertHeaderChain(chain []*types.Header, checkFreq int) (int, error) {
if len(chain) == 0 {
return 0, nil
}
start := time.Now()
if i, err := bc.hc.ValidateHeaderChain(chain, checkFreq); err != nil {
return i, err
}
if !bc.chainmu.TryLock() {
return 0, errChainStopped
}
defer bc.chainmu.Unlock()
_, err := bc.hc.InsertHeaderChain(chain, start, bc.forker)
return 0, err
}
// SetBlockValidatorAndProcessorForTesting sets the current validator and processor.
// This method can be used to force an invalid blockchain to be verified for tests.
// This method is unsafe and should only be used before block import starts.
func (bc *BlockChain) SetBlockValidatorAndProcessorForTesting(v Validator, p Processor) {
bc.validator = v
bc.processor = p
}
// SetTrieFlushInterval configures how often in-memory tries are persisted to disk.
// The interval is in terms of block processing time, not wall clock.
// It is thread-safe and can be called repeatedly without side effects.
func (bc *BlockChain) SetTrieFlushInterval(interval time.Duration) {
bc.flushInterval.Store(int64(interval))
}
func (bc *BlockChain) SubscribeChain2HeadEvent(ch chan<- Chain2HeadEvent) event.Subscription {
return bc.scope.Track(bc.chain2HeadFeed.Subscribe(ch))
}