* Write state diff to CSV (#2) * port statediff from9b7fd9af80/statediff/statediff.go
; minor fixes * integrating state diff extracting, building, and persisting into geth processes * work towards persisting created statediffs in ipfs; based off github.com/vulcanize/eth-block-extractor * Add a state diff service * Remove diff extractor from blockchain * Update imports * Move statediff on/off check to geth cmd config * Update starting state diff service * Add debugging logs for creating diff * Add statediff extractor and builder tests and small refactoring * Start to write statediff to a CSV * Restructure statediff directory * Pull CSV publishing methods into their own file * Reformatting due to go fmt * Add gomega to vendor dir * Remove testing focuses * Update statediff tests to use golang test pkg instead of ginkgo - builder_test - extractor_test - publisher_test * Use hexutil.Encode instead of deprecated common.ToHex * Remove OldValue from DiffBigInt and DiffUint64 fields * Update builder test * Remove old storage value from updated accounts * Remove old values from created/deleted accounts * Update publisher to account for only storing current account values * Update service loop and fetching previous block * Update testing - remove statediff ginkgo test suite file - move mocks to their own dir * Updates per go fmt * Updates to tests * Pass statediff mode and path in through cli * Return filename from publisher * Remove some duplication in builder * Remove code field from state diff output this is the contract byte code, and it can still be obtained by querying the db by the codeHash * Consolidate acct diff structs for updated & updated/deleted accts * Include block number in csv filename * Clean up error logging * Cleanup formatting, spelling, etc * Address PR comments * Add contract address and storage value to csv * Refactor accumulating account row in csv publisher * Add DiffStorage struct * Add storage key to csv * Address PR comments * Fix publisher to include rows for accounts that don't have store updates * Update builder test after merging in release/1.8 * Update test contract to include storage on contract intialization - so that we're able to test that storage diffing works for created and deleted accounts (not just updated accounts). * Factor out a common trie iterator method in builder * Apply goimports to statediff * Apply gosimple changes to statediff * Gracefully exit geth command(#4) * Statediff for full node (#6) * Open a trie from the in-memory database * Use a node's LeafKey as an identifier instead of the address It was proving difficult to find look the address up from a given path with a full node (sometimes the value wouldn't exist in the disk db). So, instead, for now we are using the node's LeafKey with is a Keccak256 hash of the address, so if we know the address we can figure out which LeafKey it matches up to. * Make sure that statediff has been processed before pruning * Use blockchain stateCache.OpenTrie for storage diffs * Clean up log lines and remove unnecessary fields from builder * Apply go fmt changes * Add a sleep to the blockchain test * refactoring/reorganizing packages * refactoring statediff builder and types and adjusted to relay proofs and paths (still need to make this optional) * refactoring state diff service and adding api which allows for streaming state diff payloads over an rpc websocket subscription * make proofs and paths optional + compress service loop into single for loop (may be missing something here) * option to process intermediate nodes * make state diff rlp serializable * cli parameter to limit statediffing to select account addresses + test * review fixes and fixes for issues ran into in integration * review fixes; proper method signature for api; adjust service so that statediff processing is halted/paused until there is at least one subscriber listening for the results * adjust buffering to improve stability; doc.go; fix notifier err handling * relay receipts with the rest of the data + review fixes/changes * rpc method to get statediff at specific block; requires archival node or the block be within the pruning range * fix linter issues * include total difficulty to the payload * fix state diff builder: emit actual leaf nodes instead of value nodes; diff on the leaf not on the value; emit correct path for intermediate nodes * adjust statediff builder tests to changes and extend to test intermediate nodes; golint * add genesis block to test; handle block 0 in StateDiffAt * rlp files for mainnet blocks 0-3, for tests * builder test on mainnet blocks * common.BytesToHash(path) => crypto.Keaccak256(hash) in builder; BytesToHash produces same hash for e.g. []byte{} and []byte{\x00} - prefix \x00 steps are inconsequential to the hash result * complete tests for early mainnet blocks * diff type for representing deleted accounts * fix builder so that we handle account deletions properly and properly diff storage when an account is moved to a new path; update params * remove cli params; moving them to subscriber defined * remove unneeded bc methods * update service and api; statediffing params are now defined by user through api rather than by service provider by cli * update top level tests * add ability to watch specific storage slots (leaf keys) only * comments; explain logic * update mainnet blocks test * update api_test.go * storage leafkey filter test * cleanup chain maker * adjust chain maker for tests to add an empty account in block1 and switch to EIP-158 afterwards (now we just need to generate enough accounts until one causes the empty account to be touched and removed post-EIP-158 so we can simulate and test that process...); also added 2 new blocks where more contract storage is set and old slots are set to zero so they are removed so we can test that * found an account whose creation causes the empty account to be moved to a new path; this should count as 'touching; the empty account and cause it to be removed according to eip-158... but it doesn't * use new contract in unit tests that has self-destruct ability, so we can test eip-158 since simply moving an account to new path doesn't count as 'touchin' it * handle storage deletions * tests for eip-158 account removal and storage value deletions; there is one edge case left to test where we remove 1 account when only two exist such that the remaining account is moved up and replaces the root branch node * finish testing known edge cases * add endpoint to fetch all state and storage nodes at a given blockheight; useful for generating a recent atate cache/snapshot that we can diff forward from rather than needing to collect all diffs from genesis * test for state trie builder * if statediffing is on, lock tries in triedb until the statediffing service signals they are done using them * fix mock blockchain; golint; bump patch * increase maxRequestContentLength; bump patch * log the sizes of the state objects we are sending * CI build (#20) * CI: run build on PR and on push to master * CI: debug building geth * CI: fix coping file * CI: fix coping file v2 * CI: temporary upload file to release asset * CI: get release upload_url by tag, upload asset to current relase * CI: fix tag name * fix ci build on statediff_at_anyblock-1.9.11 branch * fix publishing assets in release * use context deadline for timeout in eth_call * collect and emit codehash=>code mappings for state objects * subscription endpoint for retrieving all the codehash=>code mappings that exist at provided height * Implement WriteStateDiffAt * Writes state diffs directly to postgres * Adds CLI flags to configure PG * Refactors builder output with callbacks * Copies refactored postgres handling code from ipld-eth-indexer * rename PostgresCIDWriter.{index->upsert}* * rm unused * output code & codehash iteratively * had to rf some types for this * prometheus metrics output * duplicate recent eth-indexer changes * migrations and metrics... * [wip] prom.Init() here? another CLI flag? * tidy & DRY * statediff WriteLoop service + CLI flag * [wip] update test mocks * todo - do something meaningful to test write loop * logging * use geth log * port tests to go testing * drop ginkgo/gomega * fix and cleanup tests * fail before defer statement * delete vendor/ dir * fixes after rebase onto 1.9.23 * fix API registration * use golang 1.15.5 version (#34) * bump version meta; add 0.0.11 branch to actions * bump version meta; update github actions workflows * statediff: refactor metrics * Remove redundant statediff/indexer/prom tooling and use existing prometheus integration. * "indexer" namespace for metrics * add reporting loop for db metrics * doc * metrics for statediff stats * metrics namespace/subsystem = statediff/{indexer,service} * statediff: use a worker pool (for direct writes) * fix test * fix chain event subscription * log tweaks * func name * unused import * intermediate chain event channel for metrics * update github actions; linting * add poststate and status to receipt ipld indexes * stateDiffFor endpoints for fetching or writing statediff object by blockhash; bump statediff version * fixes after rebase on to v1.10.1 * update github actions and version meta; go fmt * add leaf key to removed 'nodes' * include Postgres migrations and schema * service documentation * touching up * update github actions after rebase * fix connection leak (misplaced defer) and perform proper rollback on errs * improve error logging; handle PushBlock internal err * build docker image and publish it to Docker Hub on release * add access list tx to unit tests * MarshalBinary and UnmarshalBinary methods for receipt * fix error caused by 2718 by using MarshalBinary instead of EncodeRLP methods * ipld encoding/decoding tests * update TxModel; add AccessListElementModel * index tx type and access lists * add access list metrics * unit tests for tx_type and access list table * unit tests for receipt marshal/unmarshal binary methods * improve documentation of the encoding methods * fix issue identified in linting * update github actions and version meta after rebase * unit test that fails undeterministically on eip2930 txs, giving same error we are seeing in prod * Include genesis block state diff. * documentation on versioning, rebasing, releasing; bump version meta * Add geth and statediff unit test to CI. * Set pgpassword in env. * Added comments. * Add new major branch to github action. * Add support for Dynamic txn(EIP-1559). * Update version meta to 0.0.24 * Verify block base fee in test. * Fix base_fee type and add backward compatible test. * Remove type definition for AccessListElementModel * Change basefee to int64/bigint. * block and uncle reward in PoA network = 0 (#87) * in PoA networks there is no block and uncle rewards * bump meta version * (cherry picked from commitb64ca14689
) * Use Ropsten to test block reward. * Add Makefile target to build static linux binaries. * Strip symbol tables from static binaries. * Fix block_fee to support NULL values. * bump version meta. * Add new major branch to github action. * rename doc.go to README.md * Create a seperate table for storing logs * Bump statediff version to 0.0.26. * add btree index to state/storage_cids.node_type; updated schema * Dedup receipt data. * Fix linter errors. * Address comments. * Bump statediff version to 0.0.27. * new cli flag for initializing db first time service is ran * only write Removed node ipld block (on db init) and reuse constant cid and mhkey * test new handling of Removed nodes; don't require init flag * log metrics * Add new major branch to github action. * Fix build. * Update golang version in CI. * Use ipld-eth-db in testing. * Remove migration from repo. * Add new major branch to github action. *Use `GetTd` instead of `GetTdByHash`6289137827
* Add new major branch to github action. * Report DB metrics * batch inserts to public.blocks * v2 => v3 major refactor * fixes and cli integration for new options * update example command in readme * ashwin's fix for failing pgx unit test * update to use new schema; fix pgx driver * indexer that writes sql stmts out to a file * cli integration * fix unit tests * use node_id as PK/FK * misc fixes/adjustments * update README * cleanup; more unit tests * basefee is big.Int, it won't always fit in int64 * adjust for schema updates * finish unit tests * test harnest for arbitrary mainnet blocks and receipts * cache problematic block locally for quicker testing/easier CI testing * fix issue with log/logTrie processing * remove some unecessary hashing operations * handle edge case * add more 'bad blocks' to mainnet_tests * increase file write buffer size * increase buffer further * fix rct trie multicodec type * extend testing * log trie fk fix * bump statediff meta version; use db v0.3.0 in compose * skip file writing tests in CI, for now * prevent parallel execution of tests in different pkgs (suspect this is what causes our deadlock to show up only in CI test env) adjust write buffering * fix rct unit tests * fix README formatting * port retry on deadlock detection feature * new workflow on-'master' targets * update version meta * improve test coverage for logs * fix possible race condition * fix CI * check tx pool state at end of unit tests * better logging of rollbacks and dead lock retries
715 lines
20 KiB
Go
715 lines
20 KiB
Go
// Copyright 2014 The go-ethereum Authors
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// This file is part of the go-ethereum library.
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//
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// The go-ethereum library is free software: you can redistribute it and/or modify
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// it under the terms of the GNU Lesser General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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//
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// The go-ethereum library is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU Lesser General Public License for more details.
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//
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// You should have received a copy of the GNU Lesser General Public License
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// along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
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package trie
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import (
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"bytes"
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"container/heap"
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"errors"
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"github.com/ethereum/go-ethereum/common"
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"github.com/ethereum/go-ethereum/ethdb"
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"github.com/ethereum/go-ethereum/rlp"
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)
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// Iterator is a key-value trie iterator that traverses a Trie.
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type Iterator struct {
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nodeIt NodeIterator
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Key []byte // Current data key on which the iterator is positioned on
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Value []byte // Current data value on which the iterator is positioned on
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Err error
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}
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// NewIterator creates a new key-value iterator from a node iterator.
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// Note that the value returned by the iterator is raw. If the content is encoded
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// (e.g. storage value is RLP-encoded), it's caller's duty to decode it.
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func NewIterator(it NodeIterator) *Iterator {
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return &Iterator{
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nodeIt: it,
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}
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}
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// Next moves the iterator forward one key-value entry.
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func (it *Iterator) Next() bool {
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for it.nodeIt.Next(true) {
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if it.nodeIt.Leaf() {
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it.Key = it.nodeIt.LeafKey()
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it.Value = it.nodeIt.LeafBlob()
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return true
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}
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}
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it.Key = nil
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it.Value = nil
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it.Err = it.nodeIt.Error()
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return false
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}
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// Prove generates the Merkle proof for the leaf node the iterator is currently
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// positioned on.
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func (it *Iterator) Prove() [][]byte {
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return it.nodeIt.LeafProof()
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}
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// NodeIterator is an iterator to traverse the trie pre-order.
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type NodeIterator interface {
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// Next moves the iterator to the next node. If the parameter is false, any child
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// nodes will be skipped.
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Next(bool) bool
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// Error returns the error status of the iterator.
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Error() error
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// Hash returns the hash of the current node.
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Hash() common.Hash
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// Parent returns the hash of the parent of the current node. The hash may be the one
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// grandparent if the immediate parent is an internal node with no hash.
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Parent() common.Hash
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// Path returns the hex-encoded path to the current node.
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// Callers must not retain references to the return value after calling Next.
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// For leaf nodes, the last element of the path is the 'terminator symbol' 0x10.
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Path() []byte
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// Leaf returns true iff the current node is a leaf node.
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Leaf() bool
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// LeafKey returns the key of the leaf. The method panics if the iterator is not
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// positioned at a leaf. Callers must not retain references to the value after
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// calling Next.
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LeafKey() []byte
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// LeafBlob returns the content of the leaf. The method panics if the iterator
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// is not positioned at a leaf. Callers must not retain references to the value
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// after calling Next.
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LeafBlob() []byte
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// LeafProof returns the Merkle proof of the leaf. The method panics if the
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// iterator is not positioned at a leaf. Callers must not retain references
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// to the value after calling Next.
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LeafProof() [][]byte
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// AddResolver sets an intermediate database to use for looking up trie nodes
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// before reaching into the real persistent layer.
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//
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// This is not required for normal operation, rather is an optimization for
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// cases where trie nodes can be recovered from some external mechanism without
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// reading from disk. In those cases, this resolver allows short circuiting
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// accesses and returning them from memory.
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//
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// Before adding a similar mechanism to any other place in Geth, consider
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// making trie.Database an interface and wrapping at that level. It's a huge
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// refactor, but it could be worth it if another occurrence arises.
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AddResolver(ethdb.KeyValueReader)
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}
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// nodeIteratorState represents the iteration state at one particular node of the
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// trie, which can be resumed at a later invocation.
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type nodeIteratorState struct {
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hash common.Hash // Hash of the node being iterated (nil if not standalone)
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node node // Trie node being iterated
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parent common.Hash // Hash of the first full ancestor node (nil if current is the root)
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index int // Child to be processed next
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pathlen int // Length of the path to this node
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}
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type nodeIterator struct {
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trie *Trie // Trie being iterated
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stack []*nodeIteratorState // Hierarchy of trie nodes persisting the iteration state
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path []byte // Path to the current node
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err error // Failure set in case of an internal error in the iterator
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resolver ethdb.KeyValueReader // Optional intermediate resolver above the disk layer
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}
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// errIteratorEnd is stored in nodeIterator.err when iteration is done.
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var errIteratorEnd = errors.New("end of iteration")
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// seekError is stored in nodeIterator.err if the initial seek has failed.
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type seekError struct {
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key []byte
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err error
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}
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func (e seekError) Error() string {
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return "seek error: " + e.err.Error()
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}
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func newNodeIterator(trie *Trie, start []byte) NodeIterator {
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if trie.Hash() == emptyState {
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return new(nodeIterator)
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}
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it := &nodeIterator{trie: trie}
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it.err = it.seek(start)
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return it
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}
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func (it *nodeIterator) AddResolver(resolver ethdb.KeyValueReader) {
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it.resolver = resolver
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}
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func (it *nodeIterator) Hash() common.Hash {
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if len(it.stack) == 0 {
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return common.Hash{}
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}
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return it.stack[len(it.stack)-1].hash
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}
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func (it *nodeIterator) Parent() common.Hash {
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if len(it.stack) == 0 {
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return common.Hash{}
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}
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return it.stack[len(it.stack)-1].parent
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}
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func (it *nodeIterator) Leaf() bool {
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return hasTerm(it.path)
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}
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func (it *nodeIterator) LeafKey() []byte {
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if len(it.stack) > 0 {
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if _, ok := it.stack[len(it.stack)-1].node.(valueNode); ok {
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return hexToKeyBytes(it.path)
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}
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}
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panic("not at leaf")
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}
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func (it *nodeIterator) LeafBlob() []byte {
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if len(it.stack) > 0 {
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if node, ok := it.stack[len(it.stack)-1].node.(valueNode); ok {
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return node
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}
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}
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panic("not at leaf")
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}
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func (it *nodeIterator) LeafProof() [][]byte {
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if len(it.stack) > 0 {
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if _, ok := it.stack[len(it.stack)-1].node.(valueNode); ok {
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hasher := newHasher(false)
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defer returnHasherToPool(hasher)
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proofs := make([][]byte, 0, len(it.stack))
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for i, item := range it.stack[:len(it.stack)-1] {
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// Gather nodes that end up as hash nodes (or the root)
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node, hashed := hasher.proofHash(item.node)
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if _, ok := hashed.(hashNode); ok || i == 0 {
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enc, _ := rlp.EncodeToBytes(node)
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proofs = append(proofs, enc)
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}
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}
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return proofs
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}
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}
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panic("not at leaf")
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}
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func (it *nodeIterator) Path() []byte {
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return it.path
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}
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func (it *nodeIterator) Error() error {
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if it.err == errIteratorEnd {
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return nil
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}
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if seek, ok := it.err.(seekError); ok {
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return seek.err
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}
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return it.err
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}
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// Next moves the iterator to the next node, returning whether there are any
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// further nodes. In case of an internal error this method returns false and
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// sets the Error field to the encountered failure. If `descend` is false,
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// skips iterating over any subnodes of the current node.
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func (it *nodeIterator) Next(descend bool) bool {
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if it.err == errIteratorEnd {
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return false
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}
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if seek, ok := it.err.(seekError); ok {
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if it.err = it.seek(seek.key); it.err != nil {
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return false
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}
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}
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// Otherwise step forward with the iterator and report any errors.
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state, parentIndex, path, err := it.peek(descend)
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it.err = err
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if it.err != nil {
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return false
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}
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it.push(state, parentIndex, path)
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return true
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}
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func (it *nodeIterator) seek(prefix []byte) error {
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// The path we're looking for is the hex encoded key without terminator.
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key := keybytesToHex(prefix)
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key = key[:len(key)-1]
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// Move forward until we're just before the closest match to key.
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for {
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state, parentIndex, path, err := it.peekSeek(key)
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if err == errIteratorEnd {
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return errIteratorEnd
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} else if err != nil {
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return seekError{prefix, err}
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} else if bytes.Compare(path, key) >= 0 {
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return nil
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}
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it.push(state, parentIndex, path)
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}
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}
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// init initializes the iterator.
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func (it *nodeIterator) init() (*nodeIteratorState, error) {
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root := it.trie.Hash()
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state := &nodeIteratorState{node: it.trie.root, index: -1}
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if root != emptyRoot {
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state.hash = root
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}
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return state, state.resolve(it, nil)
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}
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// peek creates the next state of the iterator.
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func (it *nodeIterator) peek(descend bool) (*nodeIteratorState, *int, []byte, error) {
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// Initialize the iterator if we've just started.
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if len(it.stack) == 0 {
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state, err := it.init()
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return state, nil, nil, err
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}
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if !descend {
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// If we're skipping children, pop the current node first
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it.pop()
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}
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// Continue iteration to the next child
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for len(it.stack) > 0 {
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parent := it.stack[len(it.stack)-1]
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ancestor := parent.hash
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if (ancestor == common.Hash{}) {
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ancestor = parent.parent
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}
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state, path, ok := it.nextChild(parent, ancestor)
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if ok {
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if err := state.resolve(it, path); err != nil {
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return parent, &parent.index, path, err
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}
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return state, &parent.index, path, nil
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}
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// No more child nodes, move back up.
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it.pop()
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}
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return nil, nil, nil, errIteratorEnd
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}
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// peekSeek is like peek, but it also tries to skip resolving hashes by skipping
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// over the siblings that do not lead towards the desired seek position.
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func (it *nodeIterator) peekSeek(seekKey []byte) (*nodeIteratorState, *int, []byte, error) {
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// Initialize the iterator if we've just started.
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if len(it.stack) == 0 {
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state, err := it.init()
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return state, nil, nil, err
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}
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if !bytes.HasPrefix(seekKey, it.path) {
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// If we're skipping children, pop the current node first
|
|
it.pop()
|
|
}
|
|
|
|
// Continue iteration to the next child
|
|
for len(it.stack) > 0 {
|
|
parent := it.stack[len(it.stack)-1]
|
|
ancestor := parent.hash
|
|
if (ancestor == common.Hash{}) {
|
|
ancestor = parent.parent
|
|
}
|
|
state, path, ok := it.nextChildAt(parent, ancestor, seekKey)
|
|
if ok {
|
|
if err := state.resolve(it, path); err != nil {
|
|
return parent, &parent.index, path, err
|
|
}
|
|
return state, &parent.index, path, nil
|
|
}
|
|
// No more child nodes, move back up.
|
|
it.pop()
|
|
}
|
|
return nil, nil, nil, errIteratorEnd
|
|
}
|
|
|
|
func (it *nodeIterator) resolveHash(hash hashNode, path []byte) (node, error) {
|
|
if it.resolver != nil {
|
|
if blob, err := it.resolver.Get(hash); err == nil && len(blob) > 0 {
|
|
if resolved, err := decodeNode(hash, blob); err == nil {
|
|
return resolved, nil
|
|
}
|
|
}
|
|
}
|
|
resolved, err := it.trie.resolveHash(hash, path)
|
|
return resolved, err
|
|
}
|
|
|
|
func (st *nodeIteratorState) resolve(it *nodeIterator, path []byte) error {
|
|
if hash, ok := st.node.(hashNode); ok {
|
|
resolved, err := it.resolveHash(hash, path)
|
|
if err != nil {
|
|
return err
|
|
}
|
|
st.node = resolved
|
|
st.hash = common.BytesToHash(hash)
|
|
}
|
|
return nil
|
|
}
|
|
|
|
func findChild(n *fullNode, index int, path []byte, ancestor common.Hash) (node, *nodeIteratorState, []byte, int) {
|
|
var (
|
|
child node
|
|
state *nodeIteratorState
|
|
childPath []byte
|
|
)
|
|
for ; index < len(n.Children); index++ {
|
|
if n.Children[index] != nil {
|
|
child = n.Children[index]
|
|
hash, _ := child.cache()
|
|
state = &nodeIteratorState{
|
|
hash: common.BytesToHash(hash),
|
|
node: child,
|
|
parent: ancestor,
|
|
index: -1,
|
|
pathlen: len(path),
|
|
}
|
|
childPath = append(childPath, path...)
|
|
childPath = append(childPath, byte(index))
|
|
return child, state, childPath, index
|
|
}
|
|
}
|
|
return nil, nil, nil, 0
|
|
}
|
|
|
|
func (it *nodeIterator) nextChild(parent *nodeIteratorState, ancestor common.Hash) (*nodeIteratorState, []byte, bool) {
|
|
switch node := parent.node.(type) {
|
|
case *fullNode:
|
|
//Full node, move to the first non-nil child.
|
|
if child, state, path, index := findChild(node, parent.index+1, it.path, ancestor); child != nil {
|
|
parent.index = index - 1
|
|
return state, path, true
|
|
}
|
|
case *shortNode:
|
|
// Short node, return the pointer singleton child
|
|
if parent.index < 0 {
|
|
hash, _ := node.Val.cache()
|
|
state := &nodeIteratorState{
|
|
hash: common.BytesToHash(hash),
|
|
node: node.Val,
|
|
parent: ancestor,
|
|
index: -1,
|
|
pathlen: len(it.path),
|
|
}
|
|
path := append(it.path, node.Key...)
|
|
return state, path, true
|
|
}
|
|
}
|
|
return parent, it.path, false
|
|
}
|
|
|
|
// nextChildAt is similar to nextChild, except that it targets a child as close to the
|
|
// target key as possible, thus skipping siblings.
|
|
func (it *nodeIterator) nextChildAt(parent *nodeIteratorState, ancestor common.Hash, key []byte) (*nodeIteratorState, []byte, bool) {
|
|
switch n := parent.node.(type) {
|
|
case *fullNode:
|
|
// Full node, move to the first non-nil child before the desired key position
|
|
child, state, path, index := findChild(n, parent.index+1, it.path, ancestor)
|
|
if child == nil {
|
|
// No more children in this fullnode
|
|
return parent, it.path, false
|
|
}
|
|
// If the child we found is already past the seek position, just return it.
|
|
if bytes.Compare(path, key) >= 0 {
|
|
parent.index = index - 1
|
|
return state, path, true
|
|
}
|
|
// The child is before the seek position. Try advancing
|
|
for {
|
|
nextChild, nextState, nextPath, nextIndex := findChild(n, index+1, it.path, ancestor)
|
|
// If we run out of children, or skipped past the target, return the
|
|
// previous one
|
|
if nextChild == nil || bytes.Compare(nextPath, key) >= 0 {
|
|
parent.index = index - 1
|
|
return state, path, true
|
|
}
|
|
// We found a better child closer to the target
|
|
state, path, index = nextState, nextPath, nextIndex
|
|
}
|
|
case *shortNode:
|
|
// Short node, return the pointer singleton child
|
|
if parent.index < 0 {
|
|
hash, _ := n.Val.cache()
|
|
state := &nodeIteratorState{
|
|
hash: common.BytesToHash(hash),
|
|
node: n.Val,
|
|
parent: ancestor,
|
|
index: -1,
|
|
pathlen: len(it.path),
|
|
}
|
|
path := append(it.path, n.Key...)
|
|
return state, path, true
|
|
}
|
|
}
|
|
return parent, it.path, false
|
|
}
|
|
|
|
func (it *nodeIterator) push(state *nodeIteratorState, parentIndex *int, path []byte) {
|
|
it.path = path
|
|
it.stack = append(it.stack, state)
|
|
if parentIndex != nil {
|
|
*parentIndex++
|
|
}
|
|
}
|
|
|
|
func (it *nodeIterator) pop() {
|
|
parent := it.stack[len(it.stack)-1]
|
|
it.path = it.path[:parent.pathlen]
|
|
it.stack = it.stack[:len(it.stack)-1]
|
|
}
|
|
|
|
func compareNodes(a, b NodeIterator) int {
|
|
if cmp := bytes.Compare(a.Path(), b.Path()); cmp != 0 {
|
|
return cmp
|
|
}
|
|
if a.Leaf() && !b.Leaf() {
|
|
return -1
|
|
} else if b.Leaf() && !a.Leaf() {
|
|
return 1
|
|
}
|
|
if cmp := bytes.Compare(a.Hash().Bytes(), b.Hash().Bytes()); cmp != 0 {
|
|
return cmp
|
|
}
|
|
if a.Leaf() && b.Leaf() {
|
|
return bytes.Compare(a.LeafBlob(), b.LeafBlob())
|
|
}
|
|
return 0
|
|
}
|
|
|
|
type differenceIterator struct {
|
|
a, b NodeIterator // Nodes returned are those in b - a.
|
|
eof bool // Indicates a has run out of elements
|
|
count int // Number of nodes scanned on either trie
|
|
}
|
|
|
|
// NewDifferenceIterator constructs a NodeIterator that iterates over elements in b that
|
|
// are not in a. Returns the iterator, and a pointer to an integer recording the number
|
|
// of nodes seen.
|
|
func NewDifferenceIterator(a, b NodeIterator) (NodeIterator, *int) {
|
|
a.Next(true)
|
|
it := &differenceIterator{
|
|
a: a,
|
|
b: b,
|
|
}
|
|
return it, &it.count
|
|
}
|
|
|
|
func (it *differenceIterator) Hash() common.Hash {
|
|
return it.b.Hash()
|
|
}
|
|
|
|
func (it *differenceIterator) Parent() common.Hash {
|
|
return it.b.Parent()
|
|
}
|
|
|
|
func (it *differenceIterator) Leaf() bool {
|
|
return it.b.Leaf()
|
|
}
|
|
|
|
func (it *differenceIterator) LeafKey() []byte {
|
|
return it.b.LeafKey()
|
|
}
|
|
|
|
func (it *differenceIterator) LeafBlob() []byte {
|
|
return it.b.LeafBlob()
|
|
}
|
|
|
|
func (it *differenceIterator) LeafProof() [][]byte {
|
|
return it.b.LeafProof()
|
|
}
|
|
|
|
func (it *differenceIterator) Path() []byte {
|
|
return it.b.Path()
|
|
}
|
|
|
|
func (it *differenceIterator) AddResolver(resolver ethdb.KeyValueReader) {
|
|
panic("not implemented")
|
|
}
|
|
|
|
func (it *differenceIterator) Next(bool) bool {
|
|
// Invariants:
|
|
// - We always advance at least one element in b.
|
|
// - At the start of this function, a's path is lexically greater than b's.
|
|
if !it.b.Next(true) {
|
|
return false
|
|
}
|
|
it.count++
|
|
|
|
if it.eof {
|
|
// a has reached eof, so we just return all elements from b
|
|
return true
|
|
}
|
|
|
|
for {
|
|
switch compareNodes(it.a, it.b) {
|
|
case -1:
|
|
// b jumped past a; advance a
|
|
if !it.a.Next(true) {
|
|
it.eof = true
|
|
return true
|
|
}
|
|
it.count++
|
|
case 1:
|
|
// b is before a
|
|
return true
|
|
case 0:
|
|
// a and b are identical; skip this whole subtree if the nodes have hashes
|
|
hasHash := it.a.Hash() == common.Hash{}
|
|
if !it.b.Next(hasHash) {
|
|
return false
|
|
}
|
|
it.count++
|
|
if !it.a.Next(hasHash) {
|
|
it.eof = true
|
|
return true
|
|
}
|
|
it.count++
|
|
}
|
|
}
|
|
}
|
|
|
|
func (it *differenceIterator) Error() error {
|
|
if err := it.a.Error(); err != nil {
|
|
return err
|
|
}
|
|
return it.b.Error()
|
|
}
|
|
|
|
type nodeIteratorHeap []NodeIterator
|
|
|
|
func (h nodeIteratorHeap) Len() int { return len(h) }
|
|
func (h nodeIteratorHeap) Less(i, j int) bool { return compareNodes(h[i], h[j]) < 0 }
|
|
func (h nodeIteratorHeap) Swap(i, j int) { h[i], h[j] = h[j], h[i] }
|
|
func (h *nodeIteratorHeap) Push(x interface{}) { *h = append(*h, x.(NodeIterator)) }
|
|
func (h *nodeIteratorHeap) Pop() interface{} {
|
|
n := len(*h)
|
|
x := (*h)[n-1]
|
|
*h = (*h)[0 : n-1]
|
|
return x
|
|
}
|
|
|
|
type unionIterator struct {
|
|
items *nodeIteratorHeap // Nodes returned are the union of the ones in these iterators
|
|
count int // Number of nodes scanned across all tries
|
|
}
|
|
|
|
// NewUnionIterator constructs a NodeIterator that iterates over elements in the union
|
|
// of the provided NodeIterators. Returns the iterator, and a pointer to an integer
|
|
// recording the number of nodes visited.
|
|
func NewUnionIterator(iters []NodeIterator) (NodeIterator, *int) {
|
|
h := make(nodeIteratorHeap, len(iters))
|
|
copy(h, iters)
|
|
heap.Init(&h)
|
|
|
|
ui := &unionIterator{items: &h}
|
|
return ui, &ui.count
|
|
}
|
|
|
|
func (it *unionIterator) Hash() common.Hash {
|
|
return (*it.items)[0].Hash()
|
|
}
|
|
|
|
func (it *unionIterator) Parent() common.Hash {
|
|
return (*it.items)[0].Parent()
|
|
}
|
|
|
|
func (it *unionIterator) Leaf() bool {
|
|
return (*it.items)[0].Leaf()
|
|
}
|
|
|
|
func (it *unionIterator) LeafKey() []byte {
|
|
return (*it.items)[0].LeafKey()
|
|
}
|
|
|
|
func (it *unionIterator) LeafBlob() []byte {
|
|
return (*it.items)[0].LeafBlob()
|
|
}
|
|
|
|
func (it *unionIterator) LeafProof() [][]byte {
|
|
return (*it.items)[0].LeafProof()
|
|
}
|
|
|
|
func (it *unionIterator) Path() []byte {
|
|
return (*it.items)[0].Path()
|
|
}
|
|
|
|
func (it *unionIterator) AddResolver(resolver ethdb.KeyValueReader) {
|
|
panic("not implemented")
|
|
}
|
|
|
|
// Next returns the next node in the union of tries being iterated over.
|
|
//
|
|
// It does this by maintaining a heap of iterators, sorted by the iteration
|
|
// order of their next elements, with one entry for each source trie. Each
|
|
// time Next() is called, it takes the least element from the heap to return,
|
|
// advancing any other iterators that also point to that same element. These
|
|
// iterators are called with descend=false, since we know that any nodes under
|
|
// these nodes will also be duplicates, found in the currently selected iterator.
|
|
// Whenever an iterator is advanced, it is pushed back into the heap if it still
|
|
// has elements remaining.
|
|
//
|
|
// In the case that descend=false - eg, we're asked to ignore all subnodes of the
|
|
// current node - we also advance any iterators in the heap that have the current
|
|
// path as a prefix.
|
|
func (it *unionIterator) Next(descend bool) bool {
|
|
if len(*it.items) == 0 {
|
|
return false
|
|
}
|
|
|
|
// Get the next key from the union
|
|
least := heap.Pop(it.items).(NodeIterator)
|
|
|
|
// Skip over other nodes as long as they're identical, or, if we're not descending, as
|
|
// long as they have the same prefix as the current node.
|
|
for len(*it.items) > 0 && ((!descend && bytes.HasPrefix((*it.items)[0].Path(), least.Path())) || compareNodes(least, (*it.items)[0]) == 0) {
|
|
skipped := heap.Pop(it.items).(NodeIterator)
|
|
// Skip the whole subtree if the nodes have hashes; otherwise just skip this node
|
|
if skipped.Next(skipped.Hash() == common.Hash{}) {
|
|
it.count++
|
|
// If there are more elements, push the iterator back on the heap
|
|
heap.Push(it.items, skipped)
|
|
}
|
|
}
|
|
if least.Next(descend) {
|
|
it.count++
|
|
heap.Push(it.items, least)
|
|
}
|
|
return len(*it.items) > 0
|
|
}
|
|
|
|
func (it *unionIterator) Error() error {
|
|
for i := 0; i < len(*it.items); i++ {
|
|
if err := (*it.items)[i].Error(); err != nil {
|
|
return err
|
|
}
|
|
}
|
|
return nil
|
|
}
|