table_test.go 12 KB

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  1. package storage
  2. import (
  3. "fmt"
  4. "testing"
  5. "time"
  6. )
  7. // TestSelectWithLimitStopsBeforeAllPages verifies that a limited scan stops
  8. // consuming pages as soon as the limit is satisfied instead of reading the
  9. // whole table.
  10. func TestSelectWithLimitStopsBeforeAllPages(t *testing.T) {
  11. kv := newTestKVServer(t)
  12. defer kv.close()
  13. pool := newTestKVPool(kv, 4, 5*time.Second)
  14. defer pool.Close()
  15. schemas := NewSchemaManager(pool, "testdb")
  16. tables := NewTableManager(pool, schemas, "testdb")
  17. if err := schemas.CreateTable(&Schema{
  18. Name: "t",
  19. Columns: []Column{
  20. {Name: "id", Type: "INTEGER", Nullable: false, PrimaryKey: true},
  21. {Name: "name", Type: "TEXT", Nullable: true},
  22. },
  23. }); err != nil {
  24. t.Fatalf("create table: %v", err)
  25. }
  26. const n = 20
  27. for i := int64(1); i <= n; i++ {
  28. if err := tables.Insert("t", Row{"id": i, "name": fmt.Sprintf("n%d", i)}); err != nil {
  29. t.Fatalf("insert %d: %v", i, err)
  30. }
  31. }
  32. // Force small pages so early termination is observable.
  33. kv.maxScanPage = 2
  34. _, nextsBefore, _ := kv.scanStats()
  35. rows, err := tables.SelectWithLimit("t", nil, 3, 0)
  36. if err != nil {
  37. t.Fatalf("SelectWithLimit: %v", err)
  38. }
  39. _, nextsAfter, _ := kv.scanStats()
  40. if len(rows) != 3 {
  41. t.Fatalf("SelectWithLimit returned %d rows, want 3", len(rows))
  42. }
  43. fullPages := (n + 1) / 2 // ceil(n / pageSize)
  44. if got := nextsAfter - nextsBefore; got >= fullPages {
  45. t.Fatalf("SelectWithLimit consumed %d pages, want < %d (should stop early)", got, fullPages)
  46. }
  47. }
  48. func TestPointUpdateDoesNotBlockPointReadBehindTableWriter(t *testing.T) {
  49. _, _, schemas, tables := newTestSession(t)
  50. createTestTable(t, schemas, "t", []Column{
  51. {Name: "id", Type: "INTEGER", PrimaryKey: true},
  52. {Name: "value", Type: "INTEGER"},
  53. })
  54. if err := tables.Insert("t", Row{"id": int64(1), "value": int64(1)}); err != nil {
  55. t.Fatal(err)
  56. }
  57. gate := tables.tableLock("t")
  58. gate.RLock()
  59. writerDone := make(chan error, 1)
  60. go func() {
  61. _, err := tables.Delete("t", func(Row) bool { return false })
  62. writerDone <- err
  63. }()
  64. deadline := time.Now().Add(time.Second)
  65. for gate.TryRLock() {
  66. gate.RUnlock()
  67. if time.Now().After(deadline) {
  68. gate.RUnlock()
  69. t.Fatal("table writer did not queue")
  70. }
  71. time.Sleep(time.Millisecond)
  72. }
  73. updateDone := make(chan error, 1)
  74. go func() {
  75. _, _, err := tables.UpdateByPK("t", "1", func(Row) (Row, error) {
  76. return Row{"value": int64(2)}, nil
  77. })
  78. updateDone <- err
  79. }()
  80. // Give the update time to reach the queued table gate. It must not hold the
  81. // row stripe while waiting, or this point read completes only after timeout.
  82. time.Sleep(10 * time.Millisecond)
  83. readDone := make(chan error, 1)
  84. go func() {
  85. _, err := tables.GetByPK("t", "1")
  86. readDone <- err
  87. }()
  88. select {
  89. case err := <-readDone:
  90. if err != nil {
  91. gate.RUnlock()
  92. t.Fatalf("point read: %v", err)
  93. }
  94. case <-time.After(250 * time.Millisecond):
  95. gate.RUnlock()
  96. <-writerDone
  97. <-updateDone
  98. <-readDone
  99. t.Fatal("point read deadlocked behind queued table writer")
  100. }
  101. gate.RUnlock()
  102. if err := <-writerDone; err != nil {
  103. t.Fatalf("table writer: %v", err)
  104. }
  105. if err := <-updateDone; err != nil {
  106. t.Fatalf("point update: %v", err)
  107. }
  108. }
  109. // TestDropTableDeletesDurableRows verifies that a direct DropTable removes all
  110. // durable row keys, not just the schema entry.
  111. func TestDropTableDeletesDurableRows(t *testing.T) {
  112. kv := newTestKVServer(t)
  113. defer kv.close()
  114. pool := newTestKVPool(kv, 4, 5*time.Second)
  115. defer pool.Close()
  116. schemas := NewSchemaManager(pool, "testdb")
  117. tables := NewTableManager(pool, schemas, "testdb")
  118. if err := schemas.CreateTable(&Schema{
  119. Name: "t",
  120. Columns: []Column{
  121. {Name: "id", Type: "INTEGER", Nullable: false, PrimaryKey: true},
  122. },
  123. }); err != nil {
  124. t.Fatalf("create table: %v", err)
  125. }
  126. for i := int64(1); i <= 5; i++ {
  127. if err := tables.Insert("t", Row{"id": i}); err != nil {
  128. t.Fatalf("insert %d: %v", i, err)
  129. }
  130. }
  131. if got := kv.countKeys("testdb:_data:t:"); got != 5 {
  132. t.Fatalf("expected 5 durable rows before drop, got %d", got)
  133. }
  134. if err := schemas.DropTable("t"); err != nil {
  135. t.Fatalf("DropTable: %v", err)
  136. }
  137. if got := kv.countKeys("testdb:_data:t:"); got != 0 {
  138. t.Fatalf("expected 0 durable rows after drop, got %d", got)
  139. }
  140. if kv.hasKey("testdb:_schema:t") {
  141. t.Fatalf("schema key still present after drop")
  142. }
  143. if kv.hasKey("testdb:_sys:rowid:t") {
  144. t.Fatalf("rowid counter key still present after drop")
  145. }
  146. }
  147. // TestScanKeysReturnsKeysOnly verifies that the key-only scan constructor
  148. // returns keys with empty values.
  149. func TestScanKeysReturnsKeysOnly(t *testing.T) {
  150. kv := newTestKVServer(t)
  151. defer kv.close()
  152. c := kv.client()
  153. defer c.Close()
  154. if _, err := c.Put([]byte("p:a"), []byte("value-a")); err != nil {
  155. t.Fatalf("put a: %v", err)
  156. }
  157. if _, err := c.Put([]byte("p:b"), []byte("value-b")); err != nil {
  158. t.Fatalf("put b: %v", err)
  159. }
  160. scan, err := c.ScanKeys([]byte("p:"))
  161. if err != nil {
  162. t.Fatalf("ScanKeys: %v", err)
  163. }
  164. defer scan.Close()
  165. entries, done, err := scan.Next()
  166. if err != nil {
  167. t.Fatalf("next: %v", err)
  168. }
  169. if !done || len(entries) != 2 {
  170. t.Fatalf("done=%v len=%d, want done and 2 entries", done, len(entries))
  171. }
  172. for _, e := range entries {
  173. if len(e.Key) == 0 {
  174. t.Fatalf("expected non-empty key")
  175. }
  176. if len(e.Value) != 0 {
  177. t.Fatalf("key-only scan returned a value %q for key %q", e.Value, e.Key)
  178. }
  179. }
  180. }
  181. // TestCountFastFirstDerivationUsesKeyOnlyScan verifies that the first-time
  182. // COUNT(*) derivation issues a key-only scan rather than pulling row values.
  183. func TestCountFastFirstDerivationUsesKeyOnlyScan(t *testing.T) {
  184. kv := newTestKVServer(t)
  185. defer kv.close()
  186. pool := newTestKVPool(kv, 4, 5*time.Second)
  187. defer pool.Close()
  188. schemas := NewSchemaManager(pool, "testdb")
  189. tables := NewTableManager(pool, schemas, "testdb")
  190. if err := schemas.CreateTable(&Schema{
  191. Name: "t",
  192. Columns: []Column{
  193. {Name: "id", Type: "INTEGER", Nullable: false, PrimaryKey: true},
  194. },
  195. }); err != nil {
  196. t.Fatalf("create table: %v", err)
  197. }
  198. for i := int64(1); i <= 5; i++ {
  199. if err := tables.Insert("t", Row{"id": i}); err != nil {
  200. t.Fatalf("insert %d: %v", i, err)
  201. }
  202. }
  203. before := kv.keyOnlyOpenCount()
  204. got, err := tables.CountFast("t")
  205. if err != nil {
  206. t.Fatalf("CountFast: %v", err)
  207. }
  208. after := kv.keyOnlyOpenCount()
  209. if got != 5 {
  210. t.Fatalf("CountFast = %d, want 5", got)
  211. }
  212. if after-before != 1 {
  213. t.Fatalf("expected CountFast first derivation to use one key-only scan, got %d", after-before)
  214. }
  215. }
  216. func TestInsertBulkStringPrimaryKeyCount(t *testing.T) {
  217. kv := newTestKVServer(t)
  218. defer kv.close()
  219. pool := newTestKVPool(kv, 4, 5*time.Second)
  220. defer pool.Close()
  221. schemas := NewSchemaManager(pool, "testdb")
  222. tables := NewTableManager(pool, schemas, "testdb")
  223. if err := schemas.CreateTable(&Schema{
  224. Name: "labels",
  225. Columns: []Column{
  226. {Name: "id", Type: "TEXT", Nullable: false, PrimaryKey: true},
  227. {Name: "value", Type: "BLOB", Nullable: true},
  228. },
  229. }); err != nil {
  230. t.Fatalf("create table: %v", err)
  231. }
  232. n, err := tables.InsertBulk("labels", []Row{
  233. {"id": "a", "value": []byte{0, 1, 2}},
  234. {"id": "b", "value": []byte{'|', '\r', '\n'}},
  235. })
  236. if err != nil {
  237. t.Fatalf("InsertBulk: %v", err)
  238. }
  239. if n != 2 {
  240. t.Fatalf("InsertBulk count = %d, want 2", n)
  241. }
  242. rows, err := tables.Select("labels", nil)
  243. if err != nil {
  244. t.Fatalf("Select: %v", err)
  245. }
  246. if len(rows) != 2 {
  247. t.Fatalf("Select returned %d rows, want 2", len(rows))
  248. }
  249. if n, err := tables.InsertBulk("labels", []Row{{"id": "a", "value": "duplicate"}}); err == nil || n != 0 {
  250. t.Fatalf("existing duplicate: n=%d err=%v", n, err)
  251. }
  252. if n, err := tables.InsertBulk("labels", []Row{{"id": "c"}, {"id": "c"}}); err == nil || n != 0 {
  253. t.Fatalf("batch duplicate: n=%d err=%v", n, err)
  254. }
  255. if _, err := tables.GetByPK("labels", "c"); err == nil {
  256. t.Fatal("duplicate batch persisted a row")
  257. }
  258. }
  259. func TestSelectByIndexUsesPointReadsAfterBuild(t *testing.T) {
  260. kv := newTestKVServer(t)
  261. defer kv.close()
  262. pool := newTestKVPool(kv, 4, 5*time.Second)
  263. defer pool.Close()
  264. schemas := NewSchemaManager(pool, "testdb")
  265. tables := NewTableManager(pool, schemas, "testdb")
  266. if err := schemas.CreateTable(&Schema{
  267. Name: "items",
  268. Columns: []Column{
  269. {Name: "id", Type: "INTEGER", PrimaryKey: true},
  270. {Name: "kind", Type: "TEXT"},
  271. },
  272. }); err != nil {
  273. t.Fatal(err)
  274. }
  275. if err := schemas.CreateIndex(&Index{Name: "idx_kind", Table: "items", Columns: []IndexColumn{{Name: "kind"}}}); err != nil {
  276. t.Fatal(err)
  277. }
  278. for i := int64(1); i <= 20; i++ {
  279. if err := tables.Insert("items", Row{"id": i, "kind": fmt.Sprintf("k%d", i%2)}); err != nil {
  280. t.Fatal(err)
  281. }
  282. }
  283. if rows, err := tables.SelectByIndex("items", "idx_kind", "k1"); err != nil || len(rows) != 10 {
  284. t.Fatalf("initial indexed select: len=%d err=%v", len(rows), err)
  285. }
  286. opensBefore, _, _ := kv.scanStats()
  287. _, multiGetsBefore := kv.readStats()
  288. if rows, err := tables.SelectByIndex("items", "idx_kind", "k1"); err != nil || len(rows) != 10 {
  289. t.Fatalf("cached indexed select: len=%d err=%v", len(rows), err)
  290. }
  291. opensAfter, _, _ := kv.scanStats()
  292. _, multiGetsAfter := kv.readStats()
  293. if opensAfter != opensBefore {
  294. t.Fatalf("indexed select opened %d table scans after index build", opensAfter-opensBefore)
  295. }
  296. if multiGetsAfter-multiGetsBefore != 1 {
  297. t.Fatalf("indexed select issued %d multi-get requests, want 1", multiGetsAfter-multiGetsBefore)
  298. }
  299. }
  300. func TestPrimaryKeyMutationsDoNotScan(t *testing.T) {
  301. kv := newTestKVServer(t)
  302. defer kv.close()
  303. pool := newTestKVPool(kv, 4, 5*time.Second)
  304. defer pool.Close()
  305. schemas := NewSchemaManager(pool, "testdb")
  306. tables := NewTableManager(pool, schemas, "testdb")
  307. if err := schemas.CreateTable(&Schema{
  308. Name: "items",
  309. Columns: []Column{
  310. {Name: "id", Type: "TEXT", PrimaryKey: true},
  311. {Name: "value", Type: "INTEGER"},
  312. },
  313. }); err != nil {
  314. t.Fatal(err)
  315. }
  316. for i := 0; i < 20; i++ {
  317. if err := tables.Insert("items", Row{"id": fmt.Sprintf("item-%d", i), "value": int64(i)}); err != nil {
  318. t.Fatal(err)
  319. }
  320. }
  321. opensBefore, _, _ := kv.scanStats()
  322. oldRow, updated, err := tables.UpdateByPK("items", "item-10", func(Row) (Row, error) {
  323. return Row{"value": int64(99)}, nil
  324. })
  325. if err != nil || !updated || oldRow["value"] != int64(10) {
  326. t.Fatalf("point update: updated=%v old=%v err=%v", updated, oldRow, err)
  327. }
  328. deletedRow, deleted, err := tables.DeleteByPK("items", "item-11")
  329. if err != nil || !deleted || deletedRow["value"] != int64(11) {
  330. t.Fatalf("point delete: deleted=%v old=%v err=%v", deleted, deletedRow, err)
  331. }
  332. opensAfter, _, _ := kv.scanStats()
  333. if opensAfter != opensBefore {
  334. t.Fatalf("primary-key mutations opened %d scans", opensAfter-opensBefore)
  335. }
  336. row, err := tables.GetByPK("items", "item-10")
  337. if err != nil || row["value"] != int64(99) {
  338. t.Fatalf("updated row=%v err=%v", row, err)
  339. }
  340. if _, err := tables.GetByPK("items", "item-11"); err != ErrKeyNotFound {
  341. t.Fatalf("deleted row error=%v, want ErrKeyNotFound", err)
  342. }
  343. }
  344. func TestCountFastResetsAfterDirectDropAndRecreate(t *testing.T) {
  345. kv := newTestKVServer(t)
  346. defer kv.close()
  347. pool := newTestKVPool(kv, 2, 5*time.Second)
  348. defer pool.Close()
  349. schemas := NewSchemaManager(pool, "testdb")
  350. tables := NewTableManager(pool, schemas, "testdb")
  351. create := func() {
  352. if err := schemas.CreateTable(&Schema{Name: "events", Columns: []Column{{Name: "id", Type: "INTEGER", PrimaryKey: true}}}); err != nil {
  353. t.Fatal(err)
  354. }
  355. }
  356. create()
  357. if err := tables.Insert("events", Row{"id": int64(1)}); err != nil {
  358. t.Fatal(err)
  359. }
  360. if count, err := tables.CountFast("events"); err != nil || count != 1 {
  361. t.Fatalf("initial count=%d err=%v", count, err)
  362. }
  363. if err := schemas.DropTable("events"); err != nil {
  364. t.Fatal(err)
  365. }
  366. create()
  367. if count, err := tables.CountFast("events"); err != nil || count != 0 {
  368. t.Fatalf("recreated count=%d err=%v", count, err)
  369. }
  370. }