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// VulcanizeDB
// Copyright © 2019 Vulcanize
// This program is free software: you can redistribute it and/or modify
// it under the terms of the GNU Affero General Public License as published by
// the Free Software Foundation, either version 3 of the License, or
// (at your option) any later version.
// This program 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 Affero General Public License for more details.
// You should have received a copy of the GNU Affero General Public License
// along with this program. If not, see <http://www.gnu.org/licenses/>.
package eth
import (
"fmt"
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"github.com/ethereum/go-ethereum/statediff/trie"
sdtypes "github.com/ethereum/go-ethereum/statediff/types"
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"github.com/ethereum/go-ethereum/common"
"github.com/ethereum/go-ethereum/crypto"
"github.com/ethereum/go-ethereum/rlp"
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"github.com/ethereum/go-ethereum/statediff/indexer/postgres"
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"github.com/lib/pq"
)
const (
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// node type removed value.
// https://github.com/vulcanize/go-ethereum/blob/271f4d01e7e2767ffd8e0cd469bf545be96f2a84/statediff/indexer/helpers.go#L34
removedNode = 3
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RetrieveHeadersByHashesPgStr = ` SELECT cid , data
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FROM eth . header_cids
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INNER JOIN public . blocks ON ( header_cids . mh_key = blocks . key )
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WHERE block_hash = ANY ( $ 1 : : VARCHAR ( 66 ) [ ] ) `
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RetrieveHeadersByBlockNumberPgStr = ` SELECT cid , data
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FROM eth . header_cids
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INNER JOIN public . blocks ON ( header_cids . mh_key = blocks . key )
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WHERE block_number = $ 1 `
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RetrieveHeaderByHashPgStr = ` SELECT cid , data
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FROM eth . header_cids
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INNER JOIN public . blocks ON ( header_cids . mh_key = blocks . key )
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WHERE block_hash = $ 1 `
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RetrieveUnclesByHashesPgStr = ` SELECT cid , data
FROM eth . uncle_cids
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INNER JOIN public . blocks ON ( uncle_cids . mh_key = blocks . key )
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WHERE block_hash = ANY ( $ 1 : : VARCHAR ( 66 ) [ ] ) `
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RetrieveUnclesByBlockHashPgStr = ` SELECT uncle_cids . cid , data
FROM eth . uncle_cids
INNER JOIN eth . header_cids ON ( uncle_cids . header_id = header_cids . id )
INNER JOIN public . blocks ON ( uncle_cids . mh_key = blocks . key )
WHERE block_hash = $ 1 `
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RetrieveUnclesByBlockNumberPgStr = ` SELECT uncle_cids . cid , data
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FROM eth . uncle_cids
INNER JOIN eth . header_cids ON ( uncle_cids . header_id = header_cids . id )
INNER JOIN public . blocks ON ( uncle_cids . mh_key = blocks . key )
WHERE block_number = $ 1 `
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RetrieveUncleByHashPgStr = ` SELECT cid , data
FROM eth . uncle_cids
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INNER JOIN public . blocks ON ( uncle_cids . mh_key = blocks . key )
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WHERE block_hash = $ 1 `
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RetrieveTransactionsByHashesPgStr = ` SELECT cid , data
FROM eth . transaction_cids
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INNER JOIN public . blocks ON ( transaction_cids . mh_key = blocks . key )
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WHERE tx_hash = ANY ( $ 1 : : VARCHAR ( 66 ) [ ] ) `
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RetrieveTransactionsByBlockHashPgStr = ` SELECT transaction_cids . cid , data
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FROM eth . transaction_cids
INNER JOIN eth . header_cids ON ( transaction_cids . header_id = header_cids . id )
INNER JOIN public . blocks ON ( transaction_cids . mh_key = blocks . key )
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WHERE block_hash = $ 1
ORDER BY eth . transaction_cids . index ASC `
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RetrieveTransactionsByBlockNumberPgStr = ` SELECT transaction_cids . cid , data
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FROM eth . transaction_cids
INNER JOIN eth . header_cids ON ( transaction_cids . header_id = header_cids . id )
INNER JOIN public . blocks ON ( transaction_cids . mh_key = blocks . key )
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WHERE block_number = $ 1
ORDER BY eth . transaction_cids . index ASC `
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RetrieveTransactionByHashPgStr = ` SELECT cid , data
FROM eth . transaction_cids
INNER JOIN public . blocks ON ( transaction_cids . mh_key = blocks . key )
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WHERE tx_hash = $ 1 `
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RetrieveReceiptsByTxHashesPgStr = ` SELECT receipt_cids . leaf_cid , data
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FROM eth . receipt_cids
INNER JOIN eth . transaction_cids ON ( receipt_cids . tx_id = transaction_cids . id )
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INNER JOIN public . blocks ON ( receipt_cids . leaf_mh_key = blocks . key )
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WHERE tx_hash = ANY ( $ 1 : : VARCHAR ( 66 ) [ ] ) `
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RetrieveReceiptsByBlockHashPgStr = ` SELECT receipt_cids . leaf_cid , data , eth . transaction_cids . tx_hash
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FROM eth . receipt_cids
INNER JOIN eth . transaction_cids ON ( receipt_cids . tx_id = transaction_cids . id )
INNER JOIN eth . header_cids ON ( transaction_cids . header_id = header_cids . id )
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INNER JOIN public . blocks ON ( receipt_cids . leaf_mh_key = blocks . key )
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WHERE block_hash = $ 1
ORDER BY eth . transaction_cids . index ASC `
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RetrieveReceiptsByBlockNumberPgStr = ` SELECT receipt_cids . leaf_cid , data
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FROM eth . receipt_cids
INNER JOIN eth . transaction_cids ON ( receipt_cids . tx_id = transaction_cids . id )
INNER JOIN eth . header_cids ON ( transaction_cids . header_id = header_cids . id )
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INNER JOIN public . blocks ON ( receipt_cids . leaf_mh_key = blocks . key )
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WHERE block_number = $ 1
ORDER BY eth . transaction_cids . index ASC `
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RetrieveReceiptByTxHashPgStr = ` SELECT receipt_cids . leaf_cid , data
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FROM eth . receipt_cids
INNER JOIN eth . transaction_cids ON ( receipt_cids . tx_id = transaction_cids . id )
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INNER JOIN public . blocks ON ( receipt_cids . leaf_mh_key = blocks . key )
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WHERE tx_hash = $ 1 `
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RetrieveAccountByLeafKeyAndBlockHashPgStr = ` SELECT state_cids . cid , data , state_cids . node_type
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FROM eth . state_cids
INNER JOIN eth . header_cids ON ( state_cids . header_id = header_cids . id )
INNER JOIN public . blocks ON ( state_cids . mh_key = blocks . key )
WHERE state_leaf_key = $ 1
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AND block_number <= ( SELECT block_number
FROM eth . header_cids
WHERE block_hash = $ 2 )
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AND header_cids . id = ( SELECT canonical_header_id ( block_number ) )
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ORDER BY block_number DESC
LIMIT 1 `
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RetrieveAccountByLeafKeyAndBlockNumberPgStr = ` SELECT state_cids . cid , data , state_cids . node_type
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FROM eth . state_cids
INNER JOIN eth . header_cids ON ( state_cids . header_id = header_cids . id )
INNER JOIN public . blocks ON ( state_cids . mh_key = blocks . key )
WHERE state_leaf_key = $ 1
AND block_number <= $ 2
ORDER BY block_number DESC
LIMIT 1 `
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RetrieveStorageLeafByAddressHashAndLeafKeyAndBlockNumberPgStr = ` SELECT storage_cids . cid , data , storage_cids . node_type
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FROM eth . storage_cids
INNER JOIN eth . state_cids ON ( storage_cids . state_id = state_cids . id )
INNER JOIN eth . header_cids ON ( state_cids . header_id = header_cids . id )
INNER JOIN public . blocks ON ( storage_cids . mh_key = blocks . key )
WHERE state_leaf_key = $ 1
AND storage_leaf_key = $ 2
AND block_number <= $ 3
ORDER BY block_number DESC
LIMIT 1 `
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RetrieveStorageLeafByAddressHashAndLeafKeyAndBlockHashPgStr = ` SELECT storage_cids . cid , data , storage_cids . node_type
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FROM eth . storage_cids
INNER JOIN eth . state_cids ON ( storage_cids . state_id = state_cids . id )
INNER JOIN eth . header_cids ON ( state_cids . header_id = header_cids . id )
INNER JOIN public . blocks ON ( storage_cids . mh_key = blocks . key )
WHERE state_leaf_key = $ 1
AND storage_leaf_key = $ 2
AND block_number <= ( SELECT block_number
FROM eth . header_cids
WHERE block_hash = $ 3 )
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AND header_cids . id = ( SELECT canonical_header_id ( block_number ) )
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ORDER BY block_number DESC
LIMIT 1 `
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)
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type rctIpldResult struct {
LeafCID string ` db:"leaf_cid" `
Data [ ] byte ` db:"data" `
TxHash string ` db:"tx_hash" `
}
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type ipldResult struct {
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CID string ` db:"cid" `
Data [ ] byte ` db:"data" `
TxHash string ` db:"tx_hash" `
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}
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type IPLDRetriever struct {
db * postgres . DB
}
func NewIPLDRetriever ( db * postgres . DB ) * IPLDRetriever {
return & IPLDRetriever {
db : db ,
}
}
// RetrieveHeadersByHashes returns the cids and rlp bytes for the headers corresponding to the provided block hashes
func ( r * IPLDRetriever ) RetrieveHeadersByHashes ( hashes [ ] common . Hash ) ( [ ] string , [ ] [ ] byte , error ) {
headerResults := make ( [ ] ipldResult , 0 )
hashStrs := make ( [ ] string , len ( hashes ) )
for i , hash := range hashes {
hashStrs [ i ] = hash . Hex ( )
}
if err := r . db . Select ( & headerResults , RetrieveHeadersByHashesPgStr , pq . Array ( hashStrs ) ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( headerResults ) )
headers := make ( [ ] [ ] byte , len ( headerResults ) )
for i , res := range headerResults {
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cids [ i ] = res . CID
headers [ i ] = res . Data
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}
return cids , headers , nil
}
// RetrieveHeadersByBlockNumber returns the cids and rlp bytes for the headers corresponding to the provided block number
// This can return more than one result since there can be more than one header (non-canonical headers)
func ( r * IPLDRetriever ) RetrieveHeadersByBlockNumber ( number uint64 ) ( [ ] string , [ ] [ ] byte , error ) {
headerResults := make ( [ ] ipldResult , 0 )
if err := r . db . Select ( & headerResults , RetrieveHeadersByBlockNumberPgStr , number ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( headerResults ) )
headers := make ( [ ] [ ] byte , len ( headerResults ) )
for i , res := range headerResults {
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cids [ i ] = res . CID
headers [ i ] = res . Data
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}
return cids , headers , nil
}
// RetrieveHeaderByHash returns the cid and rlp bytes for the header corresponding to the provided block hash
func ( r * IPLDRetriever ) RetrieveHeaderByHash ( hash common . Hash ) ( string , [ ] byte , error ) {
headerResult := new ( ipldResult )
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return headerResult . CID , headerResult . Data , r . db . Get ( headerResult , RetrieveHeaderByHashPgStr , hash . Hex ( ) )
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}
// RetrieveUnclesByHashes returns the cids and rlp bytes for the uncles corresponding to the provided uncle hashes
func ( r * IPLDRetriever ) RetrieveUnclesByHashes ( hashes [ ] common . Hash ) ( [ ] string , [ ] [ ] byte , error ) {
uncleResults := make ( [ ] ipldResult , 0 )
hashStrs := make ( [ ] string , len ( hashes ) )
for i , hash := range hashes {
hashStrs [ i ] = hash . Hex ( )
}
if err := r . db . Select ( & uncleResults , RetrieveUnclesByHashesPgStr , pq . Array ( hashStrs ) ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( uncleResults ) )
uncles := make ( [ ] [ ] byte , len ( uncleResults ) )
for i , res := range uncleResults {
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cids [ i ] = res . CID
uncles [ i ] = res . Data
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}
return cids , uncles , nil
}
// RetrieveUnclesByBlockHash returns the cids and rlp bytes for the uncles corresponding to the provided block hash (of non-omner root block)
func ( r * IPLDRetriever ) RetrieveUnclesByBlockHash ( hash common . Hash ) ( [ ] string , [ ] [ ] byte , error ) {
uncleResults := make ( [ ] ipldResult , 0 )
if err := r . db . Select ( & uncleResults , RetrieveUnclesByBlockHashPgStr , hash . Hex ( ) ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( uncleResults ) )
uncles := make ( [ ] [ ] byte , len ( uncleResults ) )
for i , res := range uncleResults {
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cids [ i ] = res . CID
uncles [ i ] = res . Data
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}
return cids , uncles , nil
}
// RetrieveUnclesByBlockNumber returns the cids and rlp bytes for the uncles corresponding to the provided block number (of non-omner root block)
func ( r * IPLDRetriever ) RetrieveUnclesByBlockNumber ( number uint64 ) ( [ ] string , [ ] [ ] byte , error ) {
uncleResults := make ( [ ] ipldResult , 0 )
if err := r . db . Select ( & uncleResults , RetrieveUnclesByBlockNumberPgStr , number ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( uncleResults ) )
uncles := make ( [ ] [ ] byte , len ( uncleResults ) )
for i , res := range uncleResults {
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cids [ i ] = res . CID
uncles [ i ] = res . Data
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}
return cids , uncles , nil
}
// RetrieveUncleByHash returns the cid and rlp bytes for the uncle corresponding to the provided uncle hash
func ( r * IPLDRetriever ) RetrieveUncleByHash ( hash common . Hash ) ( string , [ ] byte , error ) {
uncleResult := new ( ipldResult )
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return uncleResult . CID , uncleResult . Data , r . db . Get ( uncleResult , RetrieveUncleByHashPgStr , hash . Hex ( ) )
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}
// RetrieveTransactionsByHashes returns the cids and rlp bytes for the transactions corresponding to the provided tx hashes
func ( r * IPLDRetriever ) RetrieveTransactionsByHashes ( hashes [ ] common . Hash ) ( [ ] string , [ ] [ ] byte , error ) {
txResults := make ( [ ] ipldResult , 0 )
hashStrs := make ( [ ] string , len ( hashes ) )
for i , hash := range hashes {
hashStrs [ i ] = hash . Hex ( )
}
if err := r . db . Select ( & txResults , RetrieveTransactionsByHashesPgStr , pq . Array ( hashStrs ) ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( txResults ) )
txs := make ( [ ] [ ] byte , len ( txResults ) )
for i , res := range txResults {
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cids [ i ] = res . CID
txs [ i ] = res . Data
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}
return cids , txs , nil
}
// RetrieveTransactionsByBlockHash returns the cids and rlp bytes for the transactions corresponding to the provided block hash
func ( r * IPLDRetriever ) RetrieveTransactionsByBlockHash ( hash common . Hash ) ( [ ] string , [ ] [ ] byte , error ) {
txResults := make ( [ ] ipldResult , 0 )
if err := r . db . Select ( & txResults , RetrieveTransactionsByBlockHashPgStr , hash . Hex ( ) ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( txResults ) )
txs := make ( [ ] [ ] byte , len ( txResults ) )
for i , res := range txResults {
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cids [ i ] = res . CID
txs [ i ] = res . Data
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}
return cids , txs , nil
}
// RetrieveTransactionsByBlockNumber returns the cids and rlp bytes for the transactions corresponding to the provided block number
func ( r * IPLDRetriever ) RetrieveTransactionsByBlockNumber ( number uint64 ) ( [ ] string , [ ] [ ] byte , error ) {
txResults := make ( [ ] ipldResult , 0 )
if err := r . db . Select ( & txResults , RetrieveTransactionsByBlockNumberPgStr , number ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( txResults ) )
txs := make ( [ ] [ ] byte , len ( txResults ) )
for i , res := range txResults {
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cids [ i ] = res . CID
txs [ i ] = res . Data
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}
return cids , txs , nil
}
// RetrieveTransactionByTxHash returns the cid and rlp bytes for the transaction corresponding to the provided tx hash
func ( r * IPLDRetriever ) RetrieveTransactionByTxHash ( hash common . Hash ) ( string , [ ] byte , error ) {
txResult := new ( ipldResult )
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return txResult . CID , txResult . Data , r . db . Get ( txResult , RetrieveTransactionByHashPgStr , hash . Hex ( ) )
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}
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// DecodeLeafNode decodes the leaf node data
func DecodeLeafNode ( node [ ] byte ) ( [ ] byte , error ) {
var nodeElements [ ] interface { }
if err := rlp . DecodeBytes ( node , & nodeElements ) ; err != nil {
return nil , err
}
ty , err := trie . CheckKeyType ( nodeElements )
if err != nil {
return nil , err
}
if ty != sdtypes . Leaf {
return nil , fmt . Errorf ( "expected leaf node but found %s" , ty )
}
return nodeElements [ 1 ] . ( [ ] byte ) , nil
}
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// RetrieveReceiptsByTxHashes returns the cids and rlp bytes for the receipts corresponding to the provided tx hashes
func ( r * IPLDRetriever ) RetrieveReceiptsByTxHashes ( hashes [ ] common . Hash ) ( [ ] string , [ ] [ ] byte , error ) {
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rctResults := make ( [ ] rctIpldResult , 0 )
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hashStrs := make ( [ ] string , len ( hashes ) )
for i , hash := range hashes {
hashStrs [ i ] = hash . Hex ( )
}
if err := r . db . Select ( & rctResults , RetrieveReceiptsByTxHashesPgStr , pq . Array ( hashStrs ) ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( rctResults ) )
rcts := make ( [ ] [ ] byte , len ( rctResults ) )
for i , res := range rctResults {
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cids [ i ] = res . LeafCID
nodeVal , err := DecodeLeafNode ( res . Data )
if err != nil {
return nil , nil , err
}
rcts [ i ] = nodeVal
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}
return cids , rcts , nil
}
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// RetrieveReceiptsByBlockHash returns the cids and rlp bytes for the receipts corresponding to the provided block hash.
// cid returned corresponds to the leaf node data which contains the receipt.
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func ( r * IPLDRetriever ) RetrieveReceiptsByBlockHash ( hash common . Hash ) ( [ ] string , [ ] [ ] byte , [ ] common . Hash , error ) {
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rctResults := make ( [ ] rctIpldResult , 0 )
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if err := r . db . Select ( & rctResults , RetrieveReceiptsByBlockHashPgStr , hash . Hex ( ) ) ; err != nil {
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return nil , nil , nil , err
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}
cids := make ( [ ] string , len ( rctResults ) )
rcts := make ( [ ] [ ] byte , len ( rctResults ) )
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txs := make ( [ ] common . Hash , len ( rctResults ) )
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for i , res := range rctResults {
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cids [ i ] = res . LeafCID
nodeVal , err := DecodeLeafNode ( res . Data )
if err != nil {
return nil , nil , nil , err
}
rcts [ i ] = nodeVal
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txs [ i ] = common . HexToHash ( res . TxHash )
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}
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return cids , rcts , txs , nil
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}
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// RetrieveReceiptsByBlockNumber returns the cids and rlp bytes for the receipts corresponding to the provided block hash.
// cid returned corresponds to the leaf node data which contains the receipt.
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func ( r * IPLDRetriever ) RetrieveReceiptsByBlockNumber ( number uint64 ) ( [ ] string , [ ] [ ] byte , error ) {
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rctResults := make ( [ ] rctIpldResult , 0 )
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if err := r . db . Select ( & rctResults , RetrieveReceiptsByBlockNumberPgStr , number ) ; err != nil {
return nil , nil , err
}
cids := make ( [ ] string , len ( rctResults ) )
rcts := make ( [ ] [ ] byte , len ( rctResults ) )
for i , res := range rctResults {
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cids [ i ] = res . LeafCID
nodeVal , err := DecodeLeafNode ( res . Data )
if err != nil {
return nil , nil , err
}
rcts [ i ] = nodeVal
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}
return cids , rcts , nil
}
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// RetrieveReceiptByHash returns the cid and rlp bytes for the receipt corresponding to the provided tx hash.
// cid returned corresponds to the leaf node data which contains the receipt.
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func ( r * IPLDRetriever ) RetrieveReceiptByHash ( hash common . Hash ) ( string , [ ] byte , error ) {
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rctResult := new ( rctIpldResult )
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if err := r . db . Select ( & rctResult , RetrieveReceiptByTxHashPgStr , hash . Hex ( ) ) ; err != nil {
return "" , nil , err
}
nodeVal , err := DecodeLeafNode ( rctResult . Data )
if err != nil {
return "" , nil , err
}
return rctResult . LeafCID , nodeVal , nil
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}
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type nodeInfo struct {
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CID string ` db:"cid" `
Data [ ] byte ` db:"data" `
NodeType int ` db:"node_type" `
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}
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// RetrieveAccountByAddressAndBlockHash returns the cid and rlp bytes for the account corresponding to the provided address and block hash
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// TODO: ensure this handles deleted accounts appropriately
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func ( r * IPLDRetriever ) RetrieveAccountByAddressAndBlockHash ( address common . Address , hash common . Hash ) ( string , [ ] byte , error ) {
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accountResult := new ( nodeInfo )
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leafKey := crypto . Keccak256Hash ( address . Bytes ( ) )
if err := r . db . Get ( accountResult , RetrieveAccountByLeafKeyAndBlockHashPgStr , leafKey . Hex ( ) , hash . Hex ( ) ) ; err != nil {
return "" , nil , err
}
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if accountResult . NodeType == removedNode {
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return "" , [ ] byte { } , nil
}
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var i [ ] interface { }
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if err := rlp . DecodeBytes ( accountResult . Data , & i ) ; err != nil {
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return "" , nil , fmt . Errorf ( "error decoding state leaf node rlp: %s" , err . Error ( ) )
}
if len ( i ) != 2 {
return "" , nil , fmt . Errorf ( "eth IPLDRetriever expected state leaf node rlp to decode into two elements" )
}
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return accountResult . CID , i [ 1 ] . ( [ ] byte ) , nil
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}
// RetrieveAccountByAddressAndBlockNumber returns the cid and rlp bytes for the account corresponding to the provided address and block number
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// This can return a non-canonical account
func ( r * IPLDRetriever ) RetrieveAccountByAddressAndBlockNumber ( address common . Address , number uint64 ) ( string , [ ] byte , error ) {
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accountResult := new ( nodeInfo )
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leafKey := crypto . Keccak256Hash ( address . Bytes ( ) )
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if err := r . db . Get ( accountResult , RetrieveAccountByLeafKeyAndBlockNumberPgStr , leafKey . Hex ( ) , number ) ; err != nil {
return "" , nil , err
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}
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if accountResult . NodeType == removedNode {
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return "" , [ ] byte { } , nil
}
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var i [ ] interface { }
if err := rlp . DecodeBytes ( accountResult . Data , & i ) ; err != nil {
return "" , nil , fmt . Errorf ( "error decoding state leaf node rlp: %s" , err . Error ( ) )
}
if len ( i ) != 2 {
return "" , nil , fmt . Errorf ( "eth IPLDRetriever expected state leaf node rlp to decode into two elements" )
}
return accountResult . CID , i [ 1 ] . ( [ ] byte ) , nil
}
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// RetrieveStorageAtByAddressAndStorageSlotAndBlockHash returns the cid and rlp bytes for the storage value corresponding to the provided address, storage slot, and block hash
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func ( r * IPLDRetriever ) RetrieveStorageAtByAddressAndStorageSlotAndBlockHash ( address common . Address , key , hash common . Hash ) ( string , [ ] byte , [ ] byte , error ) {
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storageResult := new ( nodeInfo )
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stateLeafKey := crypto . Keccak256Hash ( address . Bytes ( ) )
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storageHash := crypto . Keccak256Hash ( key . Bytes ( ) )
if err := r . db . Get ( storageResult , RetrieveStorageLeafByAddressHashAndLeafKeyAndBlockHashPgStr , stateLeafKey . Hex ( ) , storageHash . Hex ( ) , hash . Hex ( ) ) ; err != nil {
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return "" , nil , nil , err
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}
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if storageResult . NodeType == removedNode {
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return "" , [ ] byte { } , [ ] byte { } , nil
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}
var i [ ] interface { }
if err := rlp . DecodeBytes ( storageResult . Data , & i ) ; err != nil {
err = fmt . Errorf ( "error decoding storage leaf node rlp: %s" , err . Error ( ) )
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return "" , nil , nil , err
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}
if len ( i ) != 2 {
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return "" , nil , nil , fmt . Errorf ( "eth IPLDRetriever expected storage leaf node rlp to decode into two elements" )
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}
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return storageResult . CID , storageResult . Data , i [ 1 ] . ( [ ] byte ) , nil
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}
// RetrieveStorageAtByAddressAndStorageKeyAndBlockNumber returns the cid and rlp bytes for the storage value corresponding to the provided address, storage key, and block number
// This can retrun a non-canonical value
func ( r * IPLDRetriever ) RetrieveStorageAtByAddressAndStorageKeyAndBlockNumber ( address common . Address , storageLeafKey common . Hash , number uint64 ) ( string , [ ] byte , error ) {
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storageResult := new ( nodeInfo )
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stateLeafKey := crypto . Keccak256Hash ( address . Bytes ( ) )
if err := r . db . Get ( storageResult , RetrieveStorageLeafByAddressHashAndLeafKeyAndBlockNumberPgStr , stateLeafKey . Hex ( ) , storageLeafKey . Hex ( ) , number ) ; err != nil {
return "" , nil , err
}
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if storageResult . NodeType == removedNode {
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return "" , [ ] byte { } , nil
}
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var i [ ] interface { }
if err := rlp . DecodeBytes ( storageResult . Data , & i ) ; err != nil {
return "" , nil , fmt . Errorf ( "error decoding storage leaf node rlp: %s" , err . Error ( ) )
}
if len ( i ) != 2 {
return "" , nil , fmt . Errorf ( "eth IPLDRetriever expected storage leaf node rlp to decode into two elements" )
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}
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return storageResult . CID , i [ 1 ] . ( [ ] byte ) , nil
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}