dashboard.go 12 KB

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  1. // Copyright 2017 The go-ethereum Authors
  2. // This file is part of the go-ethereum library.
  3. //
  4. // The go-ethereum library is free software: you can redistribute it and/or modify
  5. // it under the terms of the GNU Lesser General Public License as published by
  6. // the Free Software Foundation, either version 3 of the License, or
  7. // (at your option) any later version.
  8. //
  9. // The go-ethereum library is distributed in the hope that it will be useful,
  10. // but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  12. // GNU Lesser General Public License for more details.
  13. //
  14. // You should have received a copy of the GNU Lesser General Public License
  15. // along with the go-ethereum library. If not, see <http://www.gnu.org/licenses/>.
  16. package dashboard
  17. //go:generate yarn --cwd ./assets install
  18. //go:generate yarn --cwd ./assets build
  19. //go:generate go-bindata -nometadata -o assets.go -prefix assets -nocompress -pkg dashboard assets/index.html assets/bundle.js
  20. //go:generate sh -c "sed 's#var _bundleJs#//nolint:misspell\\\n&#' assets.go > assets.go.tmp && mv assets.go.tmp assets.go"
  21. //go:generate sh -c "sed 's#var _indexHtml#//nolint:misspell\\\n&#' assets.go > assets.go.tmp && mv assets.go.tmp assets.go"
  22. //go:generate gofmt -w -s assets.go
  23. import (
  24. "fmt"
  25. "net"
  26. "net/http"
  27. "runtime"
  28. "sync"
  29. "sync/atomic"
  30. "time"
  31. "io"
  32. "github.com/elastic/gosigar"
  33. "github.com/ethereum/go-ethereum/log"
  34. "github.com/ethereum/go-ethereum/metrics"
  35. "github.com/ethereum/go-ethereum/p2p"
  36. "github.com/ethereum/go-ethereum/params"
  37. "github.com/ethereum/go-ethereum/rpc"
  38. "github.com/mohae/deepcopy"
  39. "golang.org/x/net/websocket"
  40. )
  41. const (
  42. activeMemorySampleLimit = 200 // Maximum number of active memory data samples
  43. virtualMemorySampleLimit = 200 // Maximum number of virtual memory data samples
  44. networkIngressSampleLimit = 200 // Maximum number of network ingress data samples
  45. networkEgressSampleLimit = 200 // Maximum number of network egress data samples
  46. processCPUSampleLimit = 200 // Maximum number of process cpu data samples
  47. systemCPUSampleLimit = 200 // Maximum number of system cpu data samples
  48. diskReadSampleLimit = 200 // Maximum number of disk read data samples
  49. diskWriteSampleLimit = 200 // Maximum number of disk write data samples
  50. )
  51. var nextID uint32 // Next connection id
  52. // Dashboard contains the dashboard internals.
  53. type Dashboard struct {
  54. config *Config
  55. listener net.Listener
  56. conns map[uint32]*client // Currently live websocket connections
  57. history *Message
  58. lock sync.RWMutex // Lock protecting the dashboard's internals
  59. logdir string
  60. quit chan chan error // Channel used for graceful exit
  61. wg sync.WaitGroup
  62. }
  63. // client represents active websocket connection with a remote browser.
  64. type client struct {
  65. conn *websocket.Conn // Particular live websocket connection
  66. msg chan *Message // Message queue for the update messages
  67. logger log.Logger // Logger for the particular live websocket connection
  68. }
  69. // New creates a new dashboard instance with the given configuration.
  70. func New(config *Config, commit string, logdir string) *Dashboard {
  71. now := time.Now()
  72. versionMeta := ""
  73. if len(params.VersionMeta) > 0 {
  74. versionMeta = fmt.Sprintf(" (%s)", params.VersionMeta)
  75. }
  76. return &Dashboard{
  77. conns: make(map[uint32]*client),
  78. config: config,
  79. quit: make(chan chan error),
  80. history: &Message{
  81. General: &GeneralMessage{
  82. Commit: commit,
  83. Version: fmt.Sprintf("v%d.%d.%d%s", params.VersionMajor, params.VersionMinor, params.VersionPatch, versionMeta),
  84. },
  85. System: &SystemMessage{
  86. ActiveMemory: emptyChartEntries(now, activeMemorySampleLimit, config.Refresh),
  87. VirtualMemory: emptyChartEntries(now, virtualMemorySampleLimit, config.Refresh),
  88. NetworkIngress: emptyChartEntries(now, networkIngressSampleLimit, config.Refresh),
  89. NetworkEgress: emptyChartEntries(now, networkEgressSampleLimit, config.Refresh),
  90. ProcessCPU: emptyChartEntries(now, processCPUSampleLimit, config.Refresh),
  91. SystemCPU: emptyChartEntries(now, systemCPUSampleLimit, config.Refresh),
  92. DiskRead: emptyChartEntries(now, diskReadSampleLimit, config.Refresh),
  93. DiskWrite: emptyChartEntries(now, diskWriteSampleLimit, config.Refresh),
  94. },
  95. },
  96. logdir: logdir,
  97. }
  98. }
  99. // emptyChartEntries returns a ChartEntry array containing limit number of empty samples.
  100. func emptyChartEntries(t time.Time, limit int, refresh time.Duration) ChartEntries {
  101. ce := make(ChartEntries, limit)
  102. for i := 0; i < limit; i++ {
  103. ce[i] = &ChartEntry{
  104. Time: t.Add(-time.Duration(i) * refresh),
  105. }
  106. }
  107. return ce
  108. }
  109. // Protocols implements the node.Service interface.
  110. func (db *Dashboard) Protocols() []p2p.Protocol { return nil }
  111. // APIs implements the node.Service interface.
  112. func (db *Dashboard) APIs() []rpc.API { return nil }
  113. // Start starts the data collection thread and the listening server of the dashboard.
  114. // Implements the node.Service interface.
  115. func (db *Dashboard) Start(server *p2p.Server) error {
  116. log.Info("Starting dashboard")
  117. db.wg.Add(2)
  118. go db.collectData()
  119. go db.streamLogs()
  120. http.HandleFunc("/", db.webHandler)
  121. http.Handle("/api", websocket.Handler(db.apiHandler))
  122. listener, err := net.Listen("tcp", fmt.Sprintf("%s:%d", db.config.Host, db.config.Port))
  123. if err != nil {
  124. return err
  125. }
  126. db.listener = listener
  127. go http.Serve(listener, nil)
  128. return nil
  129. }
  130. // Stop stops the data collection thread and the connection listener of the dashboard.
  131. // Implements the node.Service interface.
  132. func (db *Dashboard) Stop() error {
  133. // Close the connection listener.
  134. var errs []error
  135. if err := db.listener.Close(); err != nil {
  136. errs = append(errs, err)
  137. }
  138. // Close the collectors.
  139. errc := make(chan error, 1)
  140. for i := 0; i < 2; i++ {
  141. db.quit <- errc
  142. if err := <-errc; err != nil {
  143. errs = append(errs, err)
  144. }
  145. }
  146. // Close the connections.
  147. db.lock.Lock()
  148. for _, c := range db.conns {
  149. if err := c.conn.Close(); err != nil {
  150. c.logger.Warn("Failed to close connection", "err", err)
  151. }
  152. }
  153. db.lock.Unlock()
  154. // Wait until every goroutine terminates.
  155. db.wg.Wait()
  156. log.Info("Dashboard stopped")
  157. var err error
  158. if len(errs) > 0 {
  159. err = fmt.Errorf("%v", errs)
  160. }
  161. return err
  162. }
  163. // webHandler handles all non-api requests, simply flattening and returning the dashboard website.
  164. func (db *Dashboard) webHandler(w http.ResponseWriter, r *http.Request) {
  165. log.Debug("Request", "URL", r.URL)
  166. path := r.URL.String()
  167. if path == "/" {
  168. path = "/index.html"
  169. }
  170. blob, err := Asset(path[1:])
  171. if err != nil {
  172. log.Warn("Failed to load the asset", "path", path, "err", err)
  173. http.Error(w, "not found", http.StatusNotFound)
  174. return
  175. }
  176. w.Write(blob)
  177. }
  178. // apiHandler handles requests for the dashboard.
  179. func (db *Dashboard) apiHandler(conn *websocket.Conn) {
  180. id := atomic.AddUint32(&nextID, 1)
  181. client := &client{
  182. conn: conn,
  183. msg: make(chan *Message, 128),
  184. logger: log.New("id", id),
  185. }
  186. done := make(chan struct{})
  187. // Start listening for messages to send.
  188. db.wg.Add(1)
  189. go func() {
  190. defer db.wg.Done()
  191. for {
  192. select {
  193. case <-done:
  194. return
  195. case msg := <-client.msg:
  196. if err := websocket.JSON.Send(client.conn, msg); err != nil {
  197. client.logger.Warn("Failed to send the message", "msg", msg, "err", err)
  198. client.conn.Close()
  199. return
  200. }
  201. }
  202. }
  203. }()
  204. db.lock.Lock()
  205. // Send the past data.
  206. client.msg <- deepcopy.Copy(db.history).(*Message)
  207. // Start tracking the connection and drop at connection loss.
  208. db.conns[id] = client
  209. db.lock.Unlock()
  210. defer func() {
  211. db.lock.Lock()
  212. delete(db.conns, id)
  213. db.lock.Unlock()
  214. }()
  215. for {
  216. r := new(Request)
  217. if err := websocket.JSON.Receive(conn, r); err != nil {
  218. if err != io.EOF {
  219. client.logger.Warn("Failed to receive request", "err", err)
  220. }
  221. close(done)
  222. return
  223. }
  224. if r.Logs != nil {
  225. db.handleLogRequest(r.Logs, client)
  226. }
  227. }
  228. }
  229. // meterCollector returns a function, which retrieves a specific meter.
  230. func meterCollector(name string) func() int64 {
  231. if metric := metrics.DefaultRegistry.Get(name); metric != nil {
  232. m := metric.(metrics.Meter)
  233. return func() int64 {
  234. return m.Count()
  235. }
  236. }
  237. return func() int64 {
  238. return 0
  239. }
  240. }
  241. // collectData collects the required data to plot on the dashboard.
  242. func (db *Dashboard) collectData() {
  243. defer db.wg.Done()
  244. systemCPUUsage := gosigar.Cpu{}
  245. systemCPUUsage.Get()
  246. var (
  247. mem runtime.MemStats
  248. collectNetworkIngress = meterCollector("p2p/InboundTraffic")
  249. collectNetworkEgress = meterCollector("p2p/OutboundTraffic")
  250. collectDiskRead = meterCollector("eth/db/chaindata/disk/read")
  251. collectDiskWrite = meterCollector("eth/db/chaindata/disk/write")
  252. prevNetworkIngress = collectNetworkIngress()
  253. prevNetworkEgress = collectNetworkEgress()
  254. prevProcessCPUTime = getProcessCPUTime()
  255. prevSystemCPUUsage = systemCPUUsage
  256. prevDiskRead = collectDiskRead()
  257. prevDiskWrite = collectDiskWrite()
  258. frequency = float64(db.config.Refresh / time.Second)
  259. numCPU = float64(runtime.NumCPU())
  260. )
  261. for {
  262. select {
  263. case errc := <-db.quit:
  264. errc <- nil
  265. return
  266. case <-time.After(db.config.Refresh):
  267. systemCPUUsage.Get()
  268. var (
  269. curNetworkIngress = collectNetworkIngress()
  270. curNetworkEgress = collectNetworkEgress()
  271. curProcessCPUTime = getProcessCPUTime()
  272. curSystemCPUUsage = systemCPUUsage
  273. curDiskRead = collectDiskRead()
  274. curDiskWrite = collectDiskWrite()
  275. deltaNetworkIngress = float64(curNetworkIngress - prevNetworkIngress)
  276. deltaNetworkEgress = float64(curNetworkEgress - prevNetworkEgress)
  277. deltaProcessCPUTime = curProcessCPUTime - prevProcessCPUTime
  278. deltaSystemCPUUsage = curSystemCPUUsage.Delta(prevSystemCPUUsage)
  279. deltaDiskRead = curDiskRead - prevDiskRead
  280. deltaDiskWrite = curDiskWrite - prevDiskWrite
  281. )
  282. prevNetworkIngress = curNetworkIngress
  283. prevNetworkEgress = curNetworkEgress
  284. prevProcessCPUTime = curProcessCPUTime
  285. prevSystemCPUUsage = curSystemCPUUsage
  286. prevDiskRead = curDiskRead
  287. prevDiskWrite = curDiskWrite
  288. now := time.Now()
  289. runtime.ReadMemStats(&mem)
  290. activeMemory := &ChartEntry{
  291. Time: now,
  292. Value: float64(mem.Alloc) / frequency,
  293. }
  294. virtualMemory := &ChartEntry{
  295. Time: now,
  296. Value: float64(mem.Sys) / frequency,
  297. }
  298. networkIngress := &ChartEntry{
  299. Time: now,
  300. Value: deltaNetworkIngress / frequency,
  301. }
  302. networkEgress := &ChartEntry{
  303. Time: now,
  304. Value: deltaNetworkEgress / frequency,
  305. }
  306. processCPU := &ChartEntry{
  307. Time: now,
  308. Value: deltaProcessCPUTime / frequency / numCPU * 100,
  309. }
  310. systemCPU := &ChartEntry{
  311. Time: now,
  312. Value: float64(deltaSystemCPUUsage.Sys+deltaSystemCPUUsage.User) / frequency / numCPU,
  313. }
  314. diskRead := &ChartEntry{
  315. Time: now,
  316. Value: float64(deltaDiskRead) / frequency,
  317. }
  318. diskWrite := &ChartEntry{
  319. Time: now,
  320. Value: float64(deltaDiskWrite) / frequency,
  321. }
  322. sys := db.history.System
  323. db.lock.Lock()
  324. sys.ActiveMemory = append(sys.ActiveMemory[1:], activeMemory)
  325. sys.VirtualMemory = append(sys.VirtualMemory[1:], virtualMemory)
  326. sys.NetworkIngress = append(sys.NetworkIngress[1:], networkIngress)
  327. sys.NetworkEgress = append(sys.NetworkEgress[1:], networkEgress)
  328. sys.ProcessCPU = append(sys.ProcessCPU[1:], processCPU)
  329. sys.SystemCPU = append(sys.SystemCPU[1:], systemCPU)
  330. sys.DiskRead = append(sys.DiskRead[1:], diskRead)
  331. sys.DiskWrite = append(sys.DiskRead[1:], diskWrite)
  332. db.lock.Unlock()
  333. db.sendToAll(&Message{
  334. System: &SystemMessage{
  335. ActiveMemory: ChartEntries{activeMemory},
  336. VirtualMemory: ChartEntries{virtualMemory},
  337. NetworkIngress: ChartEntries{networkIngress},
  338. NetworkEgress: ChartEntries{networkEgress},
  339. ProcessCPU: ChartEntries{processCPU},
  340. SystemCPU: ChartEntries{systemCPU},
  341. DiskRead: ChartEntries{diskRead},
  342. DiskWrite: ChartEntries{diskWrite},
  343. },
  344. })
  345. }
  346. }
  347. }
  348. // sendToAll sends the given message to the active dashboards.
  349. func (db *Dashboard) sendToAll(msg *Message) {
  350. db.lock.Lock()
  351. for _, c := range db.conns {
  352. select {
  353. case c.msg <- msg:
  354. default:
  355. c.conn.Close()
  356. }
  357. }
  358. db.lock.Unlock()
  359. }