289b30715d
This commit converts the dependency management from Godeps to the vendor folder, also switching the tool from godep to trash. Since the upstream tool lacks a few features proposed via a few PRs, until those PRs are merged in (if), use github.com/karalabe/trash. You can update dependencies via trash --update. All dependencies have been updated to their latest version. Parts of the build system are reworked to drop old notions of Godeps and invocation of the go vet command so that it doesn't run against the vendor folder, as that will just blow up during vetting. The conversion drops OpenCL (and hence GPU mining support) from ethash and our codebase. The short reasoning is that there's noone to maintain and having opencl libs in our deps messes up builds as go install ./... tries to build them, failing with unsatisfied link errors for the C OpenCL deps. golang.org/x/net/context is not vendored in. We expect it to be fetched by the user (i.e. using go get). To keep ci.go builds reproducible the package is "vendored" in build/_vendor.
184 lines
4.7 KiB
Go
184 lines
4.7 KiB
Go
// Copyright (c) 2012, Suryandaru Triandana <syndtr@gmail.com>
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// All rights reserved.
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//
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// Use of this source code is governed by a BSD-style license that can be
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// found in the LICENSE file.
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package leveldb
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import (
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"container/list"
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"fmt"
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"runtime"
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"sync"
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"sync/atomic"
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"github.com/syndtr/goleveldb/leveldb/iterator"
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"github.com/syndtr/goleveldb/leveldb/opt"
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"github.com/syndtr/goleveldb/leveldb/util"
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)
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type snapshotElement struct {
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seq uint64
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ref int
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e *list.Element
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}
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// Acquires a snapshot, based on latest sequence.
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func (db *DB) acquireSnapshot() *snapshotElement {
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db.snapsMu.Lock()
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defer db.snapsMu.Unlock()
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seq := db.getSeq()
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if e := db.snapsList.Back(); e != nil {
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se := e.Value.(*snapshotElement)
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if se.seq == seq {
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se.ref++
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return se
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} else if seq < se.seq {
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panic("leveldb: sequence number is not increasing")
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}
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}
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se := &snapshotElement{seq: seq, ref: 1}
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se.e = db.snapsList.PushBack(se)
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return se
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}
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// Releases given snapshot element.
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func (db *DB) releaseSnapshot(se *snapshotElement) {
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db.snapsMu.Lock()
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defer db.snapsMu.Unlock()
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se.ref--
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if se.ref == 0 {
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db.snapsList.Remove(se.e)
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se.e = nil
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} else if se.ref < 0 {
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panic("leveldb: Snapshot: negative element reference")
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}
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}
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// Gets minimum sequence that not being snapshotted.
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func (db *DB) minSeq() uint64 {
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db.snapsMu.Lock()
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defer db.snapsMu.Unlock()
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if e := db.snapsList.Front(); e != nil {
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return e.Value.(*snapshotElement).seq
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}
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return db.getSeq()
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}
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// Snapshot is a DB snapshot.
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type Snapshot struct {
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db *DB
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elem *snapshotElement
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mu sync.RWMutex
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released bool
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}
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// Creates new snapshot object.
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func (db *DB) newSnapshot() *Snapshot {
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snap := &Snapshot{
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db: db,
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elem: db.acquireSnapshot(),
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}
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atomic.AddInt32(&db.aliveSnaps, 1)
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runtime.SetFinalizer(snap, (*Snapshot).Release)
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return snap
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}
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func (snap *Snapshot) String() string {
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return fmt.Sprintf("leveldb.Snapshot{%d}", snap.elem.seq)
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}
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// Get gets the value for the given key. It returns ErrNotFound if
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// the DB does not contains the key.
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//
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// The caller should not modify the contents of the returned slice, but
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// it is safe to modify the contents of the argument after Get returns.
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func (snap *Snapshot) Get(key []byte, ro *opt.ReadOptions) (value []byte, err error) {
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err = snap.db.ok()
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if err != nil {
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return
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}
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snap.mu.RLock()
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defer snap.mu.RUnlock()
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if snap.released {
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err = ErrSnapshotReleased
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return
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}
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return snap.db.get(nil, nil, key, snap.elem.seq, ro)
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}
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// Has returns true if the DB does contains the given key.
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//
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// It is safe to modify the contents of the argument after Get returns.
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func (snap *Snapshot) Has(key []byte, ro *opt.ReadOptions) (ret bool, err error) {
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err = snap.db.ok()
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if err != nil {
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return
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}
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snap.mu.RLock()
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defer snap.mu.RUnlock()
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if snap.released {
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err = ErrSnapshotReleased
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return
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}
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return snap.db.has(nil, nil, key, snap.elem.seq, ro)
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}
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// NewIterator returns an iterator for the snapshot of the underlying DB.
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// The returned iterator is not safe for concurrent use, but it is safe to use
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// multiple iterators concurrently, with each in a dedicated goroutine.
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// It is also safe to use an iterator concurrently with modifying its
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// underlying DB. The resultant key/value pairs are guaranteed to be
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// consistent.
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//
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// Slice allows slicing the iterator to only contains keys in the given
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// range. A nil Range.Start is treated as a key before all keys in the
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// DB. And a nil Range.Limit is treated as a key after all keys in
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// the DB.
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//
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// The iterator must be released after use, by calling Release method.
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// Releasing the snapshot doesn't mean releasing the iterator too, the
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// iterator would be still valid until released.
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//
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// Also read Iterator documentation of the leveldb/iterator package.
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func (snap *Snapshot) NewIterator(slice *util.Range, ro *opt.ReadOptions) iterator.Iterator {
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if err := snap.db.ok(); err != nil {
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return iterator.NewEmptyIterator(err)
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}
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snap.mu.Lock()
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defer snap.mu.Unlock()
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if snap.released {
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return iterator.NewEmptyIterator(ErrSnapshotReleased)
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}
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// Since iterator already hold version ref, it doesn't need to
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// hold snapshot ref.
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return snap.db.newIterator(nil, nil, snap.elem.seq, slice, ro)
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}
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// Release releases the snapshot. This will not release any returned
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// iterators, the iterators would still be valid until released or the
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// underlying DB is closed.
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//
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// Other methods should not be called after the snapshot has been released.
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func (snap *Snapshot) Release() {
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snap.mu.Lock()
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defer snap.mu.Unlock()
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if !snap.released {
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// Clear the finalizer.
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runtime.SetFinalizer(snap, nil)
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snap.released = true
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snap.db.releaseSnapshot(snap.elem)
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atomic.AddInt32(&snap.db.aliveSnaps, -1)
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snap.db = nil
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snap.elem = nil
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}
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}
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