mirror of
https://github.com/idanoo/GoScrobble.git
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177 lines
5.0 KiB
JavaScript
177 lines
5.0 KiB
JavaScript
var fs = require('graceful-fs')
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var Writable = require('readable-stream').Writable
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var util = require('util')
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var MurmurHash3 = require('imurmurhash')
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var iferr = require('iferr')
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var crypto = require('crypto')
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function murmurhex () {
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var hash = MurmurHash3('')
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for (var ii = 0; ii < arguments.length; ++ii) {
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hash.hash('' + arguments[ii])
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}
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return hash.result()
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}
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var invocations = 0
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function getTmpname (filename) {
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return filename + '.' + murmurhex(__filename, process.pid, ++invocations)
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}
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var setImmediate = global.setImmediate || setTimeout
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module.exports = WriteStreamAtomic
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// Requirements:
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// 1. Write everything written to the stream to a temp file.
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// 2. If there are no errors:
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// a. moves the temp file into its final destination
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// b. emits `finish` & `closed` ONLY after the file is
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// fully flushed and renamed.
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// 3. If there's an error, removes the temp file.
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util.inherits(WriteStreamAtomic, Writable)
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function WriteStreamAtomic (path, options) {
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if (!(this instanceof WriteStreamAtomic)) {
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return new WriteStreamAtomic(path, options)
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}
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Writable.call(this, options)
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this.__isWin = options && options.hasOwnProperty('isWin') ? options.isWin : process.platform === 'win32'
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this.__atomicTarget = path
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this.__atomicTmp = getTmpname(path)
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this.__atomicChown = options && options.chown
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this.__atomicClosed = false
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this.__atomicStream = fs.WriteStream(this.__atomicTmp, options)
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this.__atomicStream.once('open', handleOpen(this))
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this.__atomicStream.once('close', handleClose(this))
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this.__atomicStream.once('error', handleError(this))
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}
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// We have to suppress default finish emitting, because ordinarily it
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// would happen as soon as `end` is called on us and all of the
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// data has been written to our target stream. So we suppress
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// finish from being emitted here, and only emit it after our
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// target stream is closed and we've moved everything around.
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WriteStreamAtomic.prototype.emit = function (event) {
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if (event === 'finish') return this.__atomicStream.end()
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return Writable.prototype.emit.apply(this, arguments)
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}
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WriteStreamAtomic.prototype._write = function (buffer, encoding, cb) {
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var flushed = this.__atomicStream.write(buffer, encoding)
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if (flushed) return cb()
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this.__atomicStream.once('drain', cb)
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}
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function handleOpen (writeStream) {
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return function (fd) {
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writeStream.emit('open', fd)
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}
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}
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function handleClose (writeStream) {
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return function () {
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if (writeStream.__atomicClosed) return
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writeStream.__atomicClosed = true
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if (writeStream.__atomicChown) {
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var uid = writeStream.__atomicChown.uid
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var gid = writeStream.__atomicChown.gid
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return fs.chown(writeStream.__atomicTmp, uid, gid, iferr(cleanup, moveIntoPlace))
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} else {
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moveIntoPlace()
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}
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}
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function moveIntoPlace () {
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fs.rename(writeStream.__atomicTmp, writeStream.__atomicTarget, iferr(trapWindowsEPERM, end))
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}
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function trapWindowsEPERM (err) {
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if (writeStream.__isWin &&
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err.syscall && err.syscall === 'rename' &&
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err.code && err.code === 'EPERM'
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) {
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checkFileHashes(err)
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} else {
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cleanup(err)
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}
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}
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function checkFileHashes (eperm) {
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var inprocess = 2
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var tmpFileHash = crypto.createHash('sha512')
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var targetFileHash = crypto.createHash('sha512')
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fs.createReadStream(writeStream.__atomicTmp)
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.on('data', function (data, enc) { tmpFileHash.update(data, enc) })
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.on('error', fileHashError)
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.on('end', fileHashComplete)
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fs.createReadStream(writeStream.__atomicTarget)
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.on('data', function (data, enc) { targetFileHash.update(data, enc) })
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.on('error', fileHashError)
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.on('end', fileHashComplete)
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function fileHashError () {
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if (inprocess === 0) return
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inprocess = 0
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cleanup(eperm)
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}
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function fileHashComplete () {
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if (inprocess === 0) return
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if (--inprocess) return
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if (tmpFileHash.digest('hex') === targetFileHash.digest('hex')) {
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return cleanup()
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} else {
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return cleanup(eperm)
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}
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}
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}
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function cleanup (err) {
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fs.unlink(writeStream.__atomicTmp, function () {
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if (err) {
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writeStream.emit('error', err)
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writeStream.emit('close')
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} else {
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end()
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}
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})
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}
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function end () {
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// We have to use our parent class directly because we suppress `finish`
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// events fired via our own emit method.
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Writable.prototype.emit.call(writeStream, 'finish')
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// Delay the close to provide the same temporal separation a physical
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// file operation would have– that is, the close event is emitted only
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// after the async close operation completes.
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setImmediate(function () {
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writeStream.emit('close')
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})
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}
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}
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function handleError (writeStream) {
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return function (er) {
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cleanupSync()
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writeStream.emit('error', er)
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writeStream.__atomicClosed = true
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writeStream.emit('close')
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}
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function cleanupSync () {
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try {
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fs.unlinkSync(writeStream.__atomicTmp)
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} finally {
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return
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}
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}
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}
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