mirror of https://github.com/hak5/bolt.git
654 lines
16 KiB
Go
654 lines
16 KiB
Go
package bolt
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import (
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"errors"
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"fmt"
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"hash/fnv"
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"os"
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"sync"
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"unsafe"
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)
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// The smallest size that the mmap can be.
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const minMmapSize = 1 << 22 // 4MB
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// The largest step that can be taken when remapping the mmap.
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const maxMmapStep = 1 << 30 // 1GB
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// The data file format version.
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const version = 2
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// Represents a marker value to indicate that a file is a Bolt DB.
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const magic uint32 = 0xED0CDAED
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const (
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minFillPercent = 0.1
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maxFillPercent = 1.0
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)
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// DefaultFillPercent is the percentage that split pages are filled.
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// This value can be changed by setting DB.FillPercent.
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const DefaultFillPercent = 0.5
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var (
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// ErrDatabaseNotOpen is returned when a DB instance is accessed before it
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// is opened or after it is closed.
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ErrDatabaseNotOpen = errors.New("database not open")
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// ErrDatabaseOpen is returned when opening a database that is
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// already open.
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ErrDatabaseOpen = errors.New("database already open")
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// ErrInvalid is returned when a data file is not a Bolt-formatted database.
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ErrInvalid = errors.New("invalid database")
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// ErrVersionMismatch is returned when the data file was created with a
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// different version of Bolt.
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ErrVersionMismatch = errors.New("version mismatch")
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// ErrChecksum is returned when either meta page checksum does not match.
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ErrChecksum = errors.New("checksum error")
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)
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// DB represents a collection of buckets persisted to a file on disk.
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// All data access is performed through transactions which can be obtained through the DB.
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// All the functions on DB will return a ErrDatabaseNotOpen if accessed before Open() is called.
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type DB struct {
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// When enabled, the database will perform a Check() after every commit.
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// A panic is issued if the database is in an inconsistent state. This
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// flag has a large performance impact so it should only be used for
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// debugging purposes.
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StrictMode bool
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// Sets the threshold for filling nodes when they split. By default,
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// the database will fill to 50% but it can be useful to increase this
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// amount if you know that your write workloads are mostly append-only.
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FillPercent float64
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path string
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file *os.File
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dataref []byte
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data *[maxMapSize]byte
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datasz int
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meta0 *meta
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meta1 *meta
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pageSize int
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opened bool
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rwtx *Tx
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txs []*Tx
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freelist *freelist
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stats Stats
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rwlock sync.Mutex // Allows only one writer at a time.
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metalock sync.Mutex // Protects meta page access.
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mmaplock sync.RWMutex // Protects mmap access during remapping.
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statlock sync.RWMutex // Protects stats access.
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ops struct {
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writeAt func(b []byte, off int64) (n int, err error)
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}
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}
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// Path returns the path to currently open database file.
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func (db *DB) Path() string {
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return db.path
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}
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// GoString returns the Go string representation of the database.
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func (db *DB) GoString() string {
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return fmt.Sprintf("bolt.DB{path:%q}", db.path)
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}
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// String returns the string representation of the database.
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func (db *DB) String() string {
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return fmt.Sprintf("DB<%q>", db.path)
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}
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// Open creates and opens a database at the given path.
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// If the file does not exist then it will be created automatically.
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func Open(path string, mode os.FileMode) (*DB, error) {
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var db = &DB{opened: true, FillPercent: DefaultFillPercent}
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// Open data file and separate sync handler for metadata writes.
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db.path = path
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var err error
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if db.file, err = os.OpenFile(db.path, os.O_RDWR|os.O_CREATE, mode); err != nil {
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_ = db.close()
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return nil, err
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}
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// Lock file so that other processes using Bolt cannot use the database
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// at the same time. This would cause corruption since the two processes
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// would write meta pages and free pages separately.
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if err := flock(db.file); err != nil {
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_ = db.close()
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return nil, err
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}
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// Default values for test hooks
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db.ops.writeAt = db.file.WriteAt
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// Initialize the database if it doesn't exist.
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if info, err := db.file.Stat(); err != nil {
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return nil, fmt.Errorf("stat error: %s", err)
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} else if info.Size() == 0 {
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// Initialize new files with meta pages.
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if err := db.init(); err != nil {
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return nil, err
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}
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} else {
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// Read the first meta page to determine the page size.
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var buf [0x1000]byte
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if _, err := db.file.ReadAt(buf[:], 0); err == nil {
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m := db.pageInBuffer(buf[:], 0).meta()
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if err := m.validate(); err != nil {
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return nil, fmt.Errorf("meta0 error: %s", err)
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}
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db.pageSize = int(m.pageSize)
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}
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}
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// Memory map the data file.
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if err := db.mmap(0); err != nil {
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_ = db.close()
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return nil, err
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}
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// Read in the freelist.
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db.freelist = &freelist{pending: make(map[txid][]pgid)}
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db.freelist.read(db.page(db.meta().freelist))
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// Mark the database as opened and return.
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return db, nil
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}
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// mmap opens the underlying memory-mapped file and initializes the meta references.
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// minsz is the minimum size that the new mmap can be.
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func (db *DB) mmap(minsz int) error {
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db.mmaplock.Lock()
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defer db.mmaplock.Unlock()
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// Dereference all mmap references before unmapping.
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if db.rwtx != nil {
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db.rwtx.root.dereference()
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}
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// Unmap existing data before continuing.
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if err := db.munmap(); err != nil {
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return err
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}
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info, err := db.file.Stat()
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if err != nil {
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return fmt.Errorf("mmap stat error: %s", err)
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} else if int(info.Size()) < db.pageSize*2 {
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return fmt.Errorf("file size too small")
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}
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// Ensure the size is at least the minimum size.
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var size = int(info.Size())
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if size < minsz {
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size = minsz
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}
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size = db.mmapSize(size)
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// Memory-map the data file as a byte slice.
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if err := mmap(db, size); err != nil {
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return err
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}
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// Save references to the meta pages.
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db.meta0 = db.page(0).meta()
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db.meta1 = db.page(1).meta()
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// Validate the meta pages.
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if err := db.meta0.validate(); err != nil {
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return fmt.Errorf("meta0 error: %s", err)
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}
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if err := db.meta1.validate(); err != nil {
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return fmt.Errorf("meta1 error: %s", err)
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}
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return nil
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}
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// munmap unmaps the data file from memory.
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func (db *DB) munmap() error {
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if err := munmap(db); err != nil {
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return fmt.Errorf("unmap error: " + err.Error())
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}
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return nil
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}
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// mmapSize determines the appropriate size for the mmap given the current size
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// of the database. The minimum size is 4MB and doubles until it reaches 1GB.
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func (db *DB) mmapSize(size int) int {
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if size < minMmapSize {
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return minMmapSize
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} else if size < maxMmapStep {
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size *= 2
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} else {
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size += maxMmapStep
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}
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// Ensure that the mmap size is a multiple of the page size.
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if (size % db.pageSize) != 0 {
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size = ((size / db.pageSize) + 1) * db.pageSize
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}
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return size
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}
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// init creates a new database file and initializes its meta pages.
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func (db *DB) init() error {
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// Set the page size to the OS page size.
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db.pageSize = os.Getpagesize()
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// Create two meta pages on a buffer.
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buf := make([]byte, db.pageSize*4)
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for i := 0; i < 2; i++ {
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p := db.pageInBuffer(buf[:], pgid(i))
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p.id = pgid(i)
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p.flags = metaPageFlag
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// Initialize the meta page.
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m := p.meta()
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m.magic = magic
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m.version = version
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m.pageSize = uint32(db.pageSize)
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m.version = version
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m.freelist = 2
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m.root = bucket{root: 3}
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m.pgid = 4
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m.txid = txid(i)
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}
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// Write an empty freelist at page 3.
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p := db.pageInBuffer(buf[:], pgid(2))
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p.id = pgid(2)
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p.flags = freelistPageFlag
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p.count = 0
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// Write an empty leaf page at page 4.
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p = db.pageInBuffer(buf[:], pgid(3))
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p.id = pgid(3)
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p.flags = leafPageFlag
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p.count = 0
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// Write the buffer to our data file.
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if _, err := db.ops.writeAt(buf, 0); err != nil {
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return err
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}
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if err := fdatasync(db.file); err != nil {
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return err
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}
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return nil
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}
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// Close releases all database resources.
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// All transactions must be closed before closing the database.
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func (db *DB) Close() error {
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db.metalock.Lock()
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defer db.metalock.Unlock()
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return db.close()
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}
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func (db *DB) close() error {
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db.opened = false
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db.freelist = nil
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db.path = ""
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// Clear ops.
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db.ops.writeAt = nil
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// Close the mmap.
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if err := db.munmap(); err != nil {
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return err
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}
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// Close file handles.
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if db.file != nil {
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// Unlock the file.
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_ = funlock(db.file)
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// Close the file descriptor.
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if err := db.file.Close(); err != nil {
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return fmt.Errorf("db file close: %s", err)
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}
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db.file = nil
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}
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return nil
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}
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// Begin starts a new transaction.
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// Multiple read-only transactions can be used concurrently but only one
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// write transaction can be used at a time. Starting multiple write transactions
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// will cause the calls to block and be serialized until the current write
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// transaction finishes.
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//
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// IMPORTANT: You must close read-only transactions after you are finished or
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// else the database will not reclaim old pages.
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func (db *DB) Begin(writable bool) (*Tx, error) {
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if writable {
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return db.beginRWTx()
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}
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return db.beginTx()
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}
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func (db *DB) beginTx() (*Tx, error) {
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// Lock the meta pages while we initialize the transaction. We obtain
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// the meta lock before the mmap lock because that's the order that the
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// write transaction will obtain them.
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db.metalock.Lock()
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// Obtain a read-only lock on the mmap. When the mmap is remapped it will
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// obtain a write lock so all transactions must finish before it can be
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// remapped.
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db.mmaplock.RLock()
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// Exit if the database is not open yet.
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if !db.opened {
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db.mmaplock.RUnlock()
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db.metalock.Unlock()
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return nil, ErrDatabaseNotOpen
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}
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// Create a transaction associated with the database.
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t := &Tx{}
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t.init(db)
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// Keep track of transaction until it closes.
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db.txs = append(db.txs, t)
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n := len(db.txs)
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// Unlock the meta pages.
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db.metalock.Unlock()
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// Update the transaction stats.
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db.statlock.Lock()
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db.stats.TxN++
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db.stats.OpenTxN = n
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db.statlock.Unlock()
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return t, nil
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}
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func (db *DB) beginRWTx() (*Tx, error) {
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// Obtain writer lock. This is released by the transaction when it closes.
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// This enforces only one writer transaction at a time.
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db.rwlock.Lock()
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// Once we have the writer lock then we can lock the meta pages so that
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// we can set up the transaction.
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db.metalock.Lock()
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defer db.metalock.Unlock()
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// Exit if the database is not open yet.
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if !db.opened {
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db.rwlock.Unlock()
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return nil, ErrDatabaseNotOpen
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}
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// Create a transaction associated with the database.
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t := &Tx{writable: true}
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t.init(db)
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db.rwtx = t
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// Free any pages associated with closed read-only transactions.
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var minid txid = 0xFFFFFFFFFFFFFFFF
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for _, t := range db.txs {
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if t.id() < minid {
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minid = t.id()
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}
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}
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if minid > 0 {
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db.freelist.release(minid - 1)
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}
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return t, nil
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}
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// removeTx removes a transaction from the database.
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func (db *DB) removeTx(tx *Tx) {
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// Release the read lock on the mmap.
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db.mmaplock.RUnlock()
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// Use the meta lock to restrict access to the DB object.
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db.metalock.Lock()
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// Remove the transaction.
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for i, t := range db.txs {
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if t == tx {
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db.txs = append(db.txs[:i], db.txs[i+1:]...)
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break
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}
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}
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n := len(db.txs)
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// Unlock the meta pages.
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db.metalock.Unlock()
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// Merge statistics.
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db.statlock.Lock()
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db.stats.OpenTxN = n
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db.stats.TxStats.add(&tx.stats)
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db.statlock.Unlock()
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}
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// Update executes a function within the context of a read-write managed transaction.
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// If no error is returned from the function then the transaction is committed.
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// If an error is returned then the entire transaction is rolled back.
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// Any error that is returned from the function or returned from the commit is
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// returned from the Update() method.
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//
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// Attempting to manually commit or rollback within the function will cause a panic.
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func (db *DB) Update(fn func(*Tx) error) error {
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t, err := db.Begin(true)
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if err != nil {
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return err
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}
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// Mark as a managed tx so that the inner function cannot manually commit.
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t.managed = true
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// If an error is returned from the function then rollback and return error.
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err = fn(t)
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t.managed = false
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if err != nil {
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_ = t.Rollback()
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return err
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}
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return t.Commit()
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}
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// View executes a function within the context of a managed read-only transaction.
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// Any error that is returned from the function is returned from the View() method.
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//
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// Attempting to manually rollback within the function will cause a panic.
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func (db *DB) View(fn func(*Tx) error) error {
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t, err := db.Begin(false)
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if err != nil {
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return err
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}
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// Mark as a managed tx so that the inner function cannot manually rollback.
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t.managed = true
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// If an error is returned from the function then pass it through.
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err = fn(t)
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t.managed = false
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if err != nil {
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_ = t.Rollback()
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return err
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}
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if err := t.Rollback(); err != nil {
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return err
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}
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return nil
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}
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// Stats retrieves ongoing performance stats for the database.
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// This is only updated when a transaction closes.
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func (db *DB) Stats() Stats {
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db.statlock.RLock()
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defer db.statlock.RUnlock()
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return db.stats
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}
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// This is for internal access to the raw data bytes from the C cursor, use
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// carefully, or not at all.
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func (db *DB) Info() *Info {
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return &Info{uintptr(unsafe.Pointer(&db.data[0])), db.pageSize}
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}
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// page retrieves a page reference from the mmap based on the current page size.
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func (db *DB) page(id pgid) *page {
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pos := id * pgid(db.pageSize)
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return (*page)(unsafe.Pointer(&db.data[pos]))
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}
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// pageInBuffer retrieves a page reference from a given byte array based on the current page size.
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func (db *DB) pageInBuffer(b []byte, id pgid) *page {
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return (*page)(unsafe.Pointer(&b[id*pgid(db.pageSize)]))
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}
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// meta retrieves the current meta page reference.
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func (db *DB) meta() *meta {
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if db.meta0.txid > db.meta1.txid {
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return db.meta0
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}
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return db.meta1
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}
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// allocate returns a contiguous block of memory starting at a given page.
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func (db *DB) allocate(count int) (*page, error) {
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// Allocate a temporary buffer for the page.
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buf := make([]byte, count*db.pageSize)
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p := (*page)(unsafe.Pointer(&buf[0]))
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p.overflow = uint32(count - 1)
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// Use pages from the freelist if they are available.
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if p.id = db.freelist.allocate(count); p.id != 0 {
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return p, nil
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}
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// Resize mmap() if we're at the end.
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p.id = db.rwtx.meta.pgid
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var minsz = int((p.id+pgid(count))+1) * db.pageSize
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if minsz >= db.datasz {
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if err := db.mmap(minsz); err != nil {
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return nil, fmt.Errorf("mmap allocate error: %s", err)
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}
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}
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// Move the page id high water mark.
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db.rwtx.meta.pgid += pgid(count)
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return p, nil
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}
|
|
|
|
// Stats represents statistics about the database.
|
|
type Stats struct {
|
|
// Freelist stats
|
|
FreelistN int // total number of pages on the freelist
|
|
FreelistAlloc int // total bytes used by the freelist and the pages on it
|
|
|
|
// Transaction stats
|
|
TxN int // total number of started read transactions
|
|
OpenTxN int // number of currently open read transactions
|
|
|
|
TxStats TxStats // global, ongoing stats.
|
|
}
|
|
|
|
// Sub calculates and returns the difference between two sets of database stats.
|
|
// This is useful when obtaining stats at two different points and time and
|
|
// you need the performance counters that occurred within that time span.
|
|
func (s *Stats) Sub(other *Stats) Stats {
|
|
var diff Stats
|
|
diff.TxStats = s.TxStats.Sub(&other.TxStats)
|
|
return diff
|
|
}
|
|
|
|
func (s *Stats) add(other *Stats) {
|
|
s.TxStats.add(&other.TxStats)
|
|
}
|
|
|
|
type Info struct {
|
|
Data uintptr
|
|
PageSize int
|
|
}
|
|
|
|
type meta struct {
|
|
magic uint32
|
|
version uint32
|
|
pageSize uint32
|
|
flags uint32
|
|
root bucket
|
|
freelist pgid
|
|
pgid pgid
|
|
txid txid
|
|
checksum uint64
|
|
}
|
|
|
|
// validate checks the marker bytes and version of the meta page to ensure it matches this binary.
|
|
func (m *meta) validate() error {
|
|
if m.checksum != 0 && m.checksum != m.sum64() {
|
|
return ErrChecksum
|
|
} else if m.magic != magic {
|
|
return ErrInvalid
|
|
} else if m.version != version {
|
|
return ErrVersionMismatch
|
|
}
|
|
return nil
|
|
}
|
|
|
|
// copy copies one meta object to another.
|
|
func (m *meta) copy(dest *meta) {
|
|
*dest = *m
|
|
}
|
|
|
|
// write writes the meta onto a page.
|
|
func (m *meta) write(p *page) {
|
|
|
|
_assert(m.root.root < m.pgid, "root bucket pgid (%d) above high water mark (%d)", m.root.root, m.pgid)
|
|
_assert(m.freelist < m.pgid, "freelist pgid (%d) above high water mark (%d)", m.freelist, m.pgid)
|
|
|
|
// Page id is either going to be 0 or 1 which we can determine by the transaction ID.
|
|
p.id = pgid(m.txid % 2)
|
|
p.flags |= metaPageFlag
|
|
|
|
// Calculate the checksum.
|
|
m.checksum = m.sum64()
|
|
|
|
m.copy(p.meta())
|
|
}
|
|
|
|
// generates the checksum for the meta.
|
|
func (m *meta) sum64() uint64 {
|
|
var h = fnv.New64a()
|
|
_, _ = h.Write((*[unsafe.Offsetof(meta{}.checksum)]byte)(unsafe.Pointer(m))[:])
|
|
return h.Sum64()
|
|
}
|
|
|
|
// _assert will panic with a given formatted message if the given condition is false.
|
|
func _assert(condition bool, msg string, v ...interface{}) {
|
|
if !condition {
|
|
panic(fmt.Sprintf("assertion failed: "+msg, v...))
|
|
}
|
|
}
|
|
|
|
func warn(v ...interface{}) {
|
|
fmt.Fprintln(os.Stderr, v...)
|
|
}
|
|
|
|
func warnf(msg string, v ...interface{}) {
|
|
fmt.Fprintf(os.Stderr, msg+"\n", v...)
|
|
}
|