sync_cache.go 13 KB

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  1. // Copyright 2022 EMQ Technologies Co., Ltd.
  2. //
  3. // Licensed under the Apache License, Version 2.0 (the "License");
  4. // you may not use this file except in compliance with the License.
  5. // You may obtain a copy of the License at
  6. //
  7. // http://www.apache.org/licenses/LICENSE-2.0
  8. //
  9. // Unless required by applicable law or agreed to in writing, software
  10. // distributed under the License is distributed on an "AS IS" BASIS,
  11. // WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  12. // See the License for the specific language governing permissions and
  13. // limitations under the License.
  14. package cache
  15. import (
  16. "github.com/lf-edge/ekuiper/internal/conf"
  17. "github.com/lf-edge/ekuiper/internal/pkg/store"
  18. "github.com/lf-edge/ekuiper/internal/topo/node/metric"
  19. "github.com/lf-edge/ekuiper/pkg/api"
  20. "github.com/lf-edge/ekuiper/pkg/infra"
  21. "github.com/lf-edge/ekuiper/pkg/kv"
  22. "path"
  23. "strconv"
  24. "time"
  25. )
  26. type AckResult bool
  27. // page Rotate storage for in memory cache
  28. // Not thread safe!
  29. type page struct {
  30. Data [][]map[string]interface{}
  31. H int
  32. T int
  33. L int
  34. Size int
  35. }
  36. // newPage create a new cache page
  37. // TODO the page is created even not used, need dynamic?
  38. func newPage(size int) *page {
  39. return &page{
  40. Data: make([][]map[string]interface{}, size),
  41. H: 0, // When deleting, head++, if tail == head, it is empty
  42. T: 0, // When append, tail++, if tail== head, it is full
  43. Size: size,
  44. }
  45. }
  46. // append item if list is not full and return true; otherwise return false
  47. func (p *page) append(item []map[string]interface{}) bool {
  48. if p.L == p.Size { // full
  49. return false
  50. }
  51. p.Data[p.T] = item
  52. p.T++
  53. if p.T == p.Size {
  54. p.T = 0
  55. }
  56. p.L++
  57. return true
  58. }
  59. // peak get the first item in the cache
  60. func (p *page) peak() ([]map[string]interface{}, bool) {
  61. if p.L == 0 {
  62. return nil, false
  63. }
  64. return p.Data[p.H], true
  65. }
  66. func (p *page) delete() bool {
  67. if p.L == 0 {
  68. return false
  69. }
  70. p.H++
  71. if p.H == p.Size {
  72. p.H = 0
  73. }
  74. p.L--
  75. return true
  76. }
  77. func (p *page) isEmpty() bool {
  78. return p.L == 0
  79. }
  80. func (p *page) reset() {
  81. p.H = 0
  82. p.T = 0
  83. p.L = 0
  84. }
  85. type SyncCache struct {
  86. // The input data to the cache
  87. in <-chan []map[string]interface{}
  88. Out chan []map[string]interface{}
  89. Ack chan bool
  90. cacheCtrl chan interface{} // CacheCtrl is the only place to control the cache; sync in and ack result
  91. errorCh chan<- error
  92. stats metric.StatManager
  93. // cache config
  94. cacheConf *conf.SinkConf
  95. maxDiskPage int
  96. maxMemPage int
  97. // cache storage
  98. memCache []*page
  99. diskBufferPage *page
  100. // status
  101. diskSize int // how many pages has been saved
  102. cacheLength int //readonly, for metrics only to save calculation
  103. diskPageTail int // init from the database
  104. diskPageHead int
  105. sendStatus int // 0: idle, 1: sending and waiting for ack, 2: stopped for error
  106. //serialize
  107. store kv.KeyValue
  108. }
  109. func NewSyncCache(ctx api.StreamContext, in <-chan []map[string]interface{}, errCh chan<- error, stats metric.StatManager, cacheConf *conf.SinkConf, bufferLength int) *SyncCache {
  110. c := &SyncCache{
  111. cacheConf: cacheConf,
  112. in: in,
  113. Out: make(chan []map[string]interface{}, bufferLength),
  114. Ack: make(chan bool, 10),
  115. cacheCtrl: make(chan interface{}, 10),
  116. errorCh: errCh,
  117. maxMemPage: cacheConf.MemoryCacheThreshold / cacheConf.BufferPageSize,
  118. memCache: make([]*page, 0),
  119. // add one more slot so that there will be at least one slot between head and tail to find out the head/tail id
  120. maxDiskPage: (cacheConf.MaxDiskCache / cacheConf.BufferPageSize) + 1,
  121. stats: stats,
  122. }
  123. go func() {
  124. err := infra.SafeRun(func() error {
  125. c.run(ctx)
  126. return nil
  127. })
  128. if err != nil {
  129. infra.DrainError(ctx, err, errCh)
  130. }
  131. }()
  132. return c
  133. }
  134. func (c *SyncCache) run(ctx api.StreamContext) {
  135. c.initStore(ctx)
  136. defer c.onClose(ctx)
  137. if c.cacheLength > 0 { // start to send the cache
  138. c.send(ctx)
  139. }
  140. for {
  141. select {
  142. case item := <-c.in:
  143. ctx.GetLogger().Debugf("send to cache")
  144. go func() { // avoid deadlock when cacheCtrl is full
  145. c.cacheCtrl <- item
  146. }()
  147. case isSuccess := <-c.Ack:
  148. // only send the next sink after receiving an ack
  149. ctx.GetLogger().Debugf("cache ack")
  150. go func() {
  151. c.cacheCtrl <- AckResult(isSuccess)
  152. }()
  153. case data := <-c.cacheCtrl: // The only place to manipulate cache
  154. switch r := data.(type) {
  155. case AckResult:
  156. if r {
  157. ctx.GetLogger().Debugf("deleting cache")
  158. c.deleteCache(ctx)
  159. c.sendStatus = 0
  160. ctx.GetLogger().Debug("send status to 0 after true ack")
  161. } else {
  162. c.sendStatus = 2
  163. ctx.GetLogger().Debug("send status to 2 after false ack")
  164. }
  165. case []map[string]interface{}:
  166. ctx.GetLogger().Debugf("adding cache %v", data)
  167. c.addCache(ctx, r)
  168. if c.sendStatus == 2 {
  169. c.sendStatus = 0
  170. ctx.GetLogger().Debug("send status to 0 after adding cache in error state")
  171. }
  172. default:
  173. ctx.GetLogger().Errorf("unknown cache control command %v", data)
  174. }
  175. c.stats.SetBufferLength(int64(len(c.in) + c.cacheLength))
  176. if c.sendStatus == 0 {
  177. c.send(ctx)
  178. }
  179. case <-ctx.Done():
  180. ctx.GetLogger().Infof("sink node %s instance cache %d done", ctx.GetOpId(), ctx.GetInstanceId())
  181. return
  182. }
  183. }
  184. }
  185. func (c *SyncCache) send(ctx api.StreamContext) {
  186. if c.cacheLength > 1 && c.cacheConf.ResendInterval > 0 {
  187. time.Sleep(time.Duration(c.cacheConf.ResendInterval) * time.Millisecond)
  188. }
  189. d, ok := c.peakMemCache(ctx)
  190. if ok {
  191. ctx.GetLogger().Debugf("sending cache item %v", d)
  192. c.sendStatus = 1
  193. ctx.GetLogger().Debug("send status to 0 after sending tuple")
  194. select {
  195. case c.Out <- d:
  196. ctx.GetLogger().Debugf("sink cache send out %v", d)
  197. case <-ctx.Done():
  198. ctx.GetLogger().Debugf("stop sink cache send")
  199. }
  200. } else {
  201. ctx.GetLogger().Debug("no cache to send")
  202. }
  203. }
  204. // addCache not thread safe!
  205. func (c *SyncCache) addCache(ctx api.StreamContext, item []map[string]interface{}) {
  206. isNotFull := c.appendMemCache(item)
  207. if !isNotFull {
  208. if c.diskBufferPage == nil {
  209. c.diskBufferPage = newPage(c.cacheConf.BufferPageSize)
  210. }
  211. isBufferNotFull := c.diskBufferPage.append(item)
  212. if !isBufferNotFull { // cool page full, save to disk
  213. if c.diskSize == c.maxDiskPage {
  214. // disk full, read the oldest page to the hot page
  215. c.loadFromDisk(ctx)
  216. ctx.GetLogger().Debug("disk full, remove the last page")
  217. }
  218. err := c.store.Set(strconv.Itoa(c.diskPageTail), c.diskBufferPage)
  219. if err != nil {
  220. ctx.GetLogger().Errorf("fail to store disk cache %v", err)
  221. return
  222. } else {
  223. ctx.GetLogger().Debug("add cache to disk. the new disk buffer page is %v", c.diskBufferPage)
  224. c.diskPageTail++
  225. c.diskSize++
  226. err := c.store.Set("size", c.diskSize)
  227. if err != nil {
  228. ctx.GetLogger().Warnf("fail to store disk cache size %v", err)
  229. }
  230. // rotate
  231. if c.diskPageTail == c.maxDiskPage {
  232. c.diskPageTail = 0
  233. }
  234. }
  235. c.diskBufferPage.reset()
  236. c.diskBufferPage.append(item)
  237. } else {
  238. ctx.GetLogger().Debugf("added cache to disk buffer page %v", c.diskBufferPage)
  239. }
  240. } else {
  241. ctx.GetLogger().Debugf("added cache to mem cache %v", c.memCache)
  242. }
  243. c.cacheLength++
  244. ctx.GetLogger().Debugf("added cache %d", c.cacheLength)
  245. }
  246. // deleteCache not thread safe!
  247. func (c *SyncCache) deleteCache(ctx api.StreamContext) {
  248. ctx.GetLogger().Debugf("deleting cache. cacheLength: %d, diskSize: %d", c.cacheLength, c.diskSize)
  249. if len(c.memCache) == 0 {
  250. ctx.GetLogger().Debug("mem cache is empty")
  251. return
  252. }
  253. isNotEmpty := c.memCache[0].delete()
  254. if isNotEmpty {
  255. c.cacheLength--
  256. ctx.GetLogger().Debugf("deleted cache: %d", c.cacheLength)
  257. }
  258. if c.memCache[0].isEmpty() { // read from disk or cool list
  259. c.memCache = c.memCache[1:]
  260. if c.diskSize > 0 {
  261. c.loadFromDisk(ctx)
  262. } else if c.diskBufferPage != nil { // use cool page as the new page
  263. ctx.GetLogger().Debugf("reading from diskBufferPage: %d", c.cacheLength)
  264. c.memCache = append(c.memCache, c.diskBufferPage)
  265. c.diskBufferPage = nil
  266. }
  267. }
  268. ctx.GetLogger().Debugf("deleted cache. cacheLength: %d, diskSize: %d, memCache: %v", c.cacheLength, c.diskSize, c.memCache)
  269. }
  270. func (c *SyncCache) loadFromDisk(ctx api.StreamContext) {
  271. // load page from the disk
  272. ctx.GetLogger().Debugf("loading from disk %d. cacheLength: %d, diskSize: %d", c.diskPageTail, c.cacheLength, c.diskSize)
  273. hotPage := newPage(c.cacheConf.BufferPageSize)
  274. ok, err := c.store.Get(strconv.Itoa(c.diskPageHead), hotPage)
  275. if err != nil {
  276. ctx.GetLogger().Errorf("fail to load disk cache %v", err)
  277. } else if !ok {
  278. ctx.GetLogger().Errorf("nothing in the disk, should not happen")
  279. } else {
  280. _ = c.store.Delete(strconv.Itoa(c.diskPageHead))
  281. if len(c.memCache) >= c.maxMemPage {
  282. ctx.GetLogger().Warnf("drop a page of %d items in memory", c.memCache[0].L)
  283. c.cacheLength -= c.memCache[0].L
  284. c.memCache = c.memCache[1:]
  285. }
  286. c.memCache = append(c.memCache, hotPage)
  287. c.diskPageHead++
  288. c.diskSize--
  289. err := c.store.Set("size", c.diskSize)
  290. if err != nil {
  291. ctx.GetLogger().Warnf("fail to store disk cache size %v", err)
  292. }
  293. if c.diskPageHead == c.maxDiskPage {
  294. c.diskPageHead = 0
  295. }
  296. err = c.store.Set("head", c.diskPageHead)
  297. if err != nil {
  298. ctx.GetLogger().Warnf("fail to store disk cache size %v", err)
  299. }
  300. }
  301. ctx.GetLogger().Debugf("loaded from disk %d. cacheLength: %d, diskSize: %d", c.diskPageTail, c.cacheLength, c.diskSize)
  302. }
  303. func (c *SyncCache) appendMemCache(item []map[string]interface{}) bool {
  304. if len(c.memCache) > c.maxMemPage {
  305. return false
  306. }
  307. if len(c.memCache) == 0 {
  308. c.memCache = append(c.memCache, newPage(c.cacheConf.BufferPageSize))
  309. }
  310. isNotFull := c.memCache[len(c.memCache)-1].append(item)
  311. if !isNotFull {
  312. if len(c.memCache) == c.maxMemPage {
  313. return false
  314. }
  315. c.memCache = append(c.memCache, newPage(c.cacheConf.BufferPageSize))
  316. return c.memCache[len(c.memCache)-1].append(item)
  317. }
  318. return true
  319. }
  320. func (c *SyncCache) peakMemCache(_ api.StreamContext) ([]map[string]interface{}, bool) {
  321. if len(c.memCache) == 0 {
  322. return nil, false
  323. }
  324. return c.memCache[0].peak()
  325. }
  326. func (c *SyncCache) initStore(ctx api.StreamContext) {
  327. kvTable := path.Join("sink", ctx.GetRuleId()+ctx.GetOpId()+strconv.Itoa(ctx.GetInstanceId()))
  328. if c.cacheConf.CleanCacheAtStop {
  329. ctx.GetLogger().Infof("creating cache store %s", kvTable)
  330. store.DropCacheKV(kvTable)
  331. }
  332. var err error
  333. c.store, err = store.GetCacheKV(kvTable)
  334. if err != nil {
  335. infra.DrainError(ctx, err, c.errorCh)
  336. }
  337. // restore the sink cache from disk
  338. if !c.cacheConf.CleanCacheAtStop {
  339. // Save 0 when init and save 1 when close. Wait for close for newly started sink node
  340. var set int
  341. ok, err := c.store.Get("storeSig", &set)
  342. if ok && set == 0 { // may be saving
  343. var i = 0
  344. for ; i < 100; i++ {
  345. time.Sleep(time.Millisecond * 10)
  346. _, err = c.store.Get("storeSig", &set)
  347. if set == 1 {
  348. ctx.GetLogger().Infof("waiting for previous cache for %d times", i)
  349. break
  350. }
  351. }
  352. if i == 100 {
  353. ctx.GetLogger().Errorf("waiting for previous cache for %d times, exit and drop", i)
  354. }
  355. }
  356. c.store.Set("storeSig", 0)
  357. ctx.GetLogger().Infof("start to restore cache from disk")
  358. // restore the memCache
  359. _, err = c.store.Get("memcache", &c.memCache)
  360. if err != nil {
  361. ctx.GetLogger().Errorf("fail to restore mem cache %v", err)
  362. }
  363. for _, p := range c.memCache {
  364. c.cacheLength += p.L
  365. }
  366. err = c.store.Delete("memcache")
  367. if err != nil {
  368. ctx.GetLogger().Errorf("fail to delete mem cache %v", err)
  369. }
  370. ctx.GetLogger().Infof("restored mem cache %d", c.cacheLength)
  371. // restore the disk cache
  372. var size int
  373. ok, _ = c.store.Get("size", &size)
  374. if !ok || size == 0 { // no disk cache
  375. return
  376. }
  377. c.diskSize = size
  378. var head int
  379. ok, _ = c.store.Get("head", &head)
  380. if ok {
  381. c.diskPageHead = head
  382. }
  383. c.cacheLength += (c.diskSize - 1) * c.cacheConf.BufferPageSize
  384. c.diskPageTail = (c.diskPageHead + c.diskSize - 1) % c.maxDiskPage
  385. // load buffer page
  386. hotPage := newPage(c.cacheConf.BufferPageSize)
  387. ok, err = c.store.Get(strconv.Itoa(c.diskPageTail), hotPage)
  388. if err != nil {
  389. ctx.GetLogger().Errorf("fail to load disk cache to buffer %v", err)
  390. } else if !ok {
  391. ctx.GetLogger().Errorf("nothing in the disk, should not happen")
  392. } else {
  393. c.diskBufferPage = hotPage
  394. c.cacheLength += c.diskBufferPage.L
  395. c.diskSize--
  396. }
  397. ctx.GetLogger().Infof("restored all cache %d. diskSize %d", c.cacheLength, c.diskSize)
  398. }
  399. }
  400. // save memory states to disk
  401. func (c *SyncCache) onClose(ctx api.StreamContext) {
  402. ctx.GetLogger().Infof("sink node %s instance cache %d closing", ctx.GetOpId(), ctx.GetInstanceId())
  403. if c.cacheConf.CleanCacheAtStop {
  404. kvTable := path.Join("sink", ctx.GetRuleId()+ctx.GetOpId()+strconv.Itoa(ctx.GetInstanceId()))
  405. ctx.GetLogger().Infof("cleaning cache store %s", kvTable)
  406. store.DropCacheKV(kvTable)
  407. } else {
  408. if c.diskBufferPage != nil {
  409. err := c.store.Set(strconv.Itoa(c.diskPageTail), c.diskBufferPage)
  410. if err != nil {
  411. ctx.GetLogger().Errorf("fail to store disk cache %v", err)
  412. }
  413. err = c.store.Set("size", c.diskSize+1)
  414. if err != nil {
  415. ctx.GetLogger().Errorf("fail to store disk size %v", err)
  416. }
  417. ctx.GetLogger().Debug("store disk cache")
  418. }
  419. // store the memory states
  420. if len(c.memCache) > 0 {
  421. err := c.store.Set("memcache", c.memCache)
  422. if err != nil {
  423. ctx.GetLogger().Errorf("fail to store memory cache to disk %v", err)
  424. }
  425. ctx.GetLogger().Debugf("store memory cache %d", len(c.memCache))
  426. }
  427. c.store.Set("storeSig", 1)
  428. }
  429. }