Thomas E Lackey
768357293c
* Add a progress counter by checking the distance already traversed from the startPath to endPath in a bounded iterator vs the estimated number of iterations.
167 lines
4.4 KiB
Go
167 lines
4.4 KiB
Go
package snapshot
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import (
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"bytes"
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"context"
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"fmt"
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"github.com/cerc-io/ipld-eth-state-snapshot/pkg/prom"
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file "github.com/cerc-io/ipld-eth-state-snapshot/pkg/snapshot/file"
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"github.com/cerc-io/ipld-eth-state-snapshot/pkg/snapshot/pg"
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snapt "github.com/cerc-io/ipld-eth-state-snapshot/pkg/types"
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"github.com/ethereum/go-ethereum/statediff/indexer/database/sql/postgres"
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)
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func NewPublisher(mode SnapshotMode, config *Config) (snapt.Publisher, error) {
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switch mode {
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case PgSnapshot:
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driver, err := postgres.NewPGXDriver(context.Background(), config.DB.ConnConfig, config.Eth.NodeInfo)
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if err != nil {
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return nil, err
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}
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prom.RegisterDBCollector(config.DB.ConnConfig.DatabaseName, driver)
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return pg.NewPublisher(postgres.NewPostgresDB(driver, false)), nil
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case FileSnapshot:
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return file.NewPublisher(config.File.OutputDir, config.Eth.NodeInfo)
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}
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return nil, fmt.Errorf("invalid snapshot mode: %s", mode)
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}
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// Subtracts 1 from the last byte in a path slice, carrying if needed.
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// Does nothing, returning false, for all-zero inputs.
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func decrementPath(path []byte) bool {
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// check for all zeros
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allzero := true
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for i := 0; i < len(path); i++ {
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allzero = allzero && path[i] == 0
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}
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if allzero {
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return false
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}
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for i := len(path) - 1; i >= 0; i-- {
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val := path[i]
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path[i]--
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if val == 0 {
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path[i] = 0xf
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} else {
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return true
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}
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}
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return true
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}
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// Estimate the number of iterations necessary to step from start to end.
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func estimateSteps(start []byte, end []byte, depth int) uint64 {
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// We see paths in several forms (nil, 0600, 06, etc.). We need to adjust them to a comparable form.
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// For nil, start and end indicate the extremes of 0x0 and 0x10. For differences in depth, we often see a
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// start/end range on a bounded iterator specified like 0500:0600, while the value returned by it.Path() may
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// be shorter, like 06. Since our goal is to estimate how many steps it would take to move from start to end,
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// we want to perform the comparison at a stable depth, since to move from 05 to 06 is only 1 step, but
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// to move from 0500:06 is 16.
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normalizePathRange := func(start []byte, end []byte, depth int) ([]byte, []byte) {
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if 0 == len(start) {
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start = []byte{0x0}
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}
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if 0 == len(end) {
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end = []byte{0x10}
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}
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normalizedStart := make([]byte, depth)
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normalizedEnd := make([]byte, depth)
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for i := 0; i < depth; i++ {
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if i < len(start) {
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normalizedStart[i] = start[i]
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}
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if i < len(end) {
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normalizedEnd[i] = end[i]
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}
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}
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return normalizedStart, normalizedEnd
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}
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// We have no need to handle negative exponents, so uints are fine.
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pow := func(x uint64, y uint) uint64 {
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if 0 == y {
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return 1
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}
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ret := x
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for i := uint(0); i < y; i++ {
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ret *= x
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}
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return x
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}
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// Fix the paths.
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start, end = normalizePathRange(start, end, depth)
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// No negative distances, if the start is already >= end, the distance is 0.
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if bytes.Compare(start, end) >= 0 {
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return 0
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}
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// Subtract each component, right to left, carrying over if necessary.
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difference := make([]byte, len(start))
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var carry byte = 0
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for i := len(start) - 1; i >= 0; i-- {
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result := end[i] - start[i] - carry
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if result > 0xf && i > 0 {
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result &= 0xf
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carry = 1
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} else {
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carry = 0
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}
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difference[i] = result
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}
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// Calculate the result.
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var ret uint64 = 0
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for i := 0; i < len(difference); i++ {
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ret += uint64(difference[i]) * pow(16, uint(len(difference)-i-1))
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}
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return ret
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}
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// https://github.com/ethereum/go-ethereum/blob/master/trie/encoding.go#L97
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func keybytesToHex(str []byte) []byte {
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l := len(str)*2 + 1
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var nibbles = make([]byte, l)
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for i, b := range str {
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nibbles[i*2] = b / 16
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nibbles[i*2+1] = b % 16
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}
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nibbles[l-1] = 16
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return nibbles
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}
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func updateSeekedPath(seekedPath *[]byte, nodePath []byte) {
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// assumes len(nodePath) <= max len(*seekedPath)
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*seekedPath = (*seekedPath)[:len(nodePath)]
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copy(*seekedPath, nodePath)
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}
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// checks that the provided node path is before the end path
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func checkUpperPathBound(nodePath, endPath []byte) bool {
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// every path is before nil endPath
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if endPath == nil {
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return true
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}
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if len(endPath)%2 == 0 {
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// in case of even length endpath
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// apply open interval filter since the node at endpath will be covered by the next iterator
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return bytes.Compare(nodePath, endPath) < 0
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}
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return bytes.Compare(nodePath, endPath) <= 0
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}
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func max(a int, b int) int {
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if a > b {
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return a
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}
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return b
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}
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