sched_test.go 17 KB

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  1. package server
  2. import (
  3. "bytes"
  4. "context"
  5. "encoding/binary"
  6. "fmt"
  7. "log/slog"
  8. "os"
  9. "testing"
  10. "time"
  11. "github.com/ollama/ollama/api"
  12. "github.com/ollama/ollama/app/lifecycle"
  13. "github.com/ollama/ollama/format"
  14. "github.com/ollama/ollama/gpu"
  15. "github.com/ollama/ollama/llm"
  16. "github.com/ollama/ollama/server/envconfig"
  17. "github.com/stretchr/testify/assert"
  18. "github.com/stretchr/testify/require"
  19. )
  20. func init() {
  21. os.Setenv("OLLAMA_DEBUG", "1")
  22. lifecycle.InitLogging()
  23. }
  24. func TestInitScheduler(t *testing.T) {
  25. ctx, done := context.WithCancel(context.Background())
  26. defer done()
  27. s := InitScheduler(ctx)
  28. s.loadedMu.Lock()
  29. require.NotNil(t, s.loaded)
  30. s.loadedMu.Unlock()
  31. }
  32. func TestLoad(t *testing.T) {
  33. ctx, done := context.WithTimeout(context.Background(), 20*time.Millisecond)
  34. defer done()
  35. s := InitScheduler(ctx)
  36. var ggml *llm.GGML // value not used in tests
  37. req := &LlmRequest{
  38. ctx: ctx,
  39. model: &Model{ModelPath: "foo"},
  40. opts: api.DefaultOptions(),
  41. successCh: make(chan *runnerRef, 1),
  42. errCh: make(chan error, 1),
  43. sessionDuration: 2,
  44. }
  45. // Fail to load model first
  46. s.newServerFn = func(gpus gpu.GpuInfoList, model string, ggml *llm.GGML, adapters []string, projectors []string, opts api.Options) (llm.LlamaServer, error) {
  47. return nil, fmt.Errorf("something failed to load model blah")
  48. }
  49. gpus := gpu.GpuInfoList{}
  50. s.load(req, ggml, gpus)
  51. require.Len(t, req.successCh, 0)
  52. require.Len(t, req.errCh, 1)
  53. s.loadedMu.Lock()
  54. require.Len(t, s.loaded, 0)
  55. s.loadedMu.Unlock()
  56. err := <-req.errCh
  57. require.Contains(t, err.Error(), "this model may be incompatible")
  58. server := &mockLlm{estimatedVRAM: 10}
  59. s.newServerFn = func(gpus gpu.GpuInfoList, model string, ggml *llm.GGML, adapters []string, projectors []string, opts api.Options) (llm.LlamaServer, error) {
  60. return server, nil
  61. }
  62. s.load(req, ggml, gpus)
  63. select {
  64. case err := <-req.errCh:
  65. require.NoError(t, err)
  66. case resp := <-req.successCh:
  67. require.Equal(t, uint64(10), resp.estimatedVRAM)
  68. require.Equal(t, uint(1), resp.refCount)
  69. s.loadedMu.Lock()
  70. require.Len(t, s.loaded, 1)
  71. s.loadedMu.Unlock()
  72. }
  73. req.model.ModelPath = "dummy_model_path"
  74. server.waitResp = fmt.Errorf("wait failure")
  75. s.load(req, ggml, gpus)
  76. select {
  77. case err := <-req.errCh:
  78. require.Contains(t, err.Error(), "wait failure")
  79. case resp := <-req.successCh:
  80. t.Errorf("unexpected success %v", resp)
  81. }
  82. s.loadedMu.Lock()
  83. runner := s.loaded["dummy_model_path"]
  84. s.loadedMu.Unlock()
  85. require.NotNil(t, runner)
  86. require.Equal(t, uint(0), runner.refCount)
  87. time.Sleep(1 * time.Millisecond)
  88. require.Len(t, s.expiredCh, 1)
  89. }
  90. type bundle struct {
  91. ctx context.Context //nolint:containedctx
  92. ctxDone func()
  93. srv *mockLlm
  94. req *LlmRequest
  95. ggml *llm.GGML
  96. }
  97. func (scenario *bundle) newServer(gpus gpu.GpuInfoList, model string, ggml *llm.GGML, adapters []string, projectors []string, opts api.Options) (llm.LlamaServer, error) {
  98. return scenario.srv, nil
  99. }
  100. func newScenario(t *testing.T, ctx context.Context, modelName string, estimatedVRAM uint64) *bundle {
  101. scenario := &bundle{}
  102. scenario.ctx, scenario.ctxDone = context.WithCancel(ctx)
  103. t.Helper()
  104. f, err := os.CreateTemp(t.TempDir(), modelName)
  105. assert.Nil(t, err)
  106. defer f.Close()
  107. gguf := llm.NewGGUFV3(binary.LittleEndian)
  108. err = gguf.Encode(f, llm.KV{
  109. "general.architecture": "llama",
  110. "general.name": "name",
  111. "llama.context_length": uint32(32),
  112. "llama.embedding_length": uint32(4096),
  113. "llama.block_count": uint32(1),
  114. "llama.attention.head_count": uint32(32),
  115. "llama.attention.head_count_kv": uint32(32),
  116. "tokenizer.ggml.tokens": []string{" "},
  117. "tokenizer.ggml.scores": []float32{0},
  118. "tokenizer.ggml.token_type": []int32{0},
  119. }, []llm.Tensor{
  120. {Name: "blk.0.attn.weight", Kind: uint32(0), Offset: uint64(0), Shape: []uint64{1, 1, 1, 1}, WriterTo: &bytes.Reader{}},
  121. })
  122. assert.Nil(t, err)
  123. fname := f.Name()
  124. model := &Model{Name: modelName, ModelPath: fname}
  125. scenario.ggml, err = llm.LoadModel(model.ModelPath)
  126. require.NoError(t, err)
  127. scenario.req = &LlmRequest{
  128. ctx: scenario.ctx,
  129. model: model,
  130. opts: api.DefaultOptions(),
  131. sessionDuration: 5 * time.Millisecond,
  132. successCh: make(chan *runnerRef, 1),
  133. errCh: make(chan error, 1),
  134. }
  135. scenario.srv = &mockLlm{estimatedVRAM: estimatedVRAM}
  136. return scenario
  137. }
  138. func TestRequests(t *testing.T) {
  139. ctx, done := context.WithTimeout(context.Background(), 500*time.Millisecond)
  140. defer done()
  141. // Same model, same request
  142. scenario1a := newScenario(t, ctx, "ollama-model-1", 10)
  143. scenario1a.req.sessionDuration = 0
  144. scenario1b := newScenario(t, ctx, "ollama-model-1", 11)
  145. scenario1b.req.model = scenario1a.req.model
  146. scenario1b.ggml = scenario1a.ggml
  147. scenario1b.req.sessionDuration = 0
  148. // simple reload of same model
  149. scenario2a := newScenario(t, ctx, "ollama-model-1", 20)
  150. scenario2a.req.model = scenario1a.req.model
  151. scenario2a.ggml = scenario1a.ggml
  152. // Multiple loaded models
  153. scenario3a := newScenario(t, ctx, "ollama-model-3a", 1*format.GigaByte)
  154. scenario3b := newScenario(t, ctx, "ollama-model-3b", 24*format.GigaByte)
  155. scenario3c := newScenario(t, ctx, "ollama-model-4a", 30)
  156. scenario3c.req.opts.NumGPU = 0 // CPU load, will be allowed
  157. scenario3d := newScenario(t, ctx, "ollama-model-3c", 30) // Needs prior unloaded
  158. s := InitScheduler(ctx)
  159. s.getGpuFn = func() gpu.GpuInfoList {
  160. g := gpu.GpuInfo{Library: "metal"}
  161. g.TotalMemory = 24 * format.GigaByte
  162. g.FreeMemory = 12 * format.GigaByte
  163. return []gpu.GpuInfo{g}
  164. }
  165. s.newServerFn = scenario1a.newServer
  166. slog.Info("scenario1a")
  167. s.pendingReqCh <- scenario1a.req
  168. require.Len(t, s.pendingReqCh, 1)
  169. s.Run(ctx)
  170. select {
  171. case resp := <-scenario1a.req.successCh:
  172. require.Equal(t, resp.llama, scenario1a.srv)
  173. require.Len(t, s.pendingReqCh, 0)
  174. require.Len(t, scenario1a.req.errCh, 0)
  175. case <-ctx.Done():
  176. t.Errorf("timeout")
  177. }
  178. // Same runner as first request due to not needing a reload
  179. s.newServerFn = scenario1b.newServer
  180. slog.Info("scenario1b")
  181. s.pendingReqCh <- scenario1b.req
  182. select {
  183. case resp := <-scenario1b.req.successCh:
  184. require.Equal(t, resp.llama, scenario1a.srv)
  185. require.Len(t, s.pendingReqCh, 0)
  186. require.Len(t, scenario1b.req.errCh, 0)
  187. case <-ctx.Done():
  188. t.Errorf("timeout")
  189. }
  190. // Trigger a reload
  191. s.newServerFn = scenario2a.newServer
  192. scenario2a.req.model.AdapterPaths = []string{"new"}
  193. slog.Info("scenario2a")
  194. s.pendingReqCh <- scenario2a.req
  195. // finish first two requests, so model can reload
  196. time.Sleep(1 * time.Millisecond)
  197. scenario1a.ctxDone()
  198. scenario1b.ctxDone()
  199. select {
  200. case resp := <-scenario2a.req.successCh:
  201. require.Equal(t, resp.llama, scenario2a.srv)
  202. require.Len(t, s.pendingReqCh, 0)
  203. require.Len(t, scenario2a.req.errCh, 0)
  204. case <-ctx.Done():
  205. t.Errorf("timeout")
  206. }
  207. envconfig.MaxRunners = 1
  208. s.newServerFn = scenario3a.newServer
  209. slog.Info("scenario3a")
  210. s.pendingReqCh <- scenario3a.req
  211. // finish prior request, so new model can load
  212. time.Sleep(1 * time.Millisecond)
  213. scenario2a.ctxDone()
  214. select {
  215. case resp := <-scenario3a.req.successCh:
  216. require.Equal(t, resp.llama, scenario3a.srv)
  217. require.Len(t, s.pendingReqCh, 0)
  218. require.Len(t, scenario3a.req.errCh, 0)
  219. case <-ctx.Done():
  220. t.Errorf("timeout")
  221. }
  222. s.loadedMu.Lock()
  223. require.Len(t, s.loaded, 1)
  224. s.loadedMu.Unlock()
  225. envconfig.MaxRunners = 0
  226. s.newServerFn = scenario3b.newServer
  227. slog.Info("scenario3b")
  228. s.pendingReqCh <- scenario3b.req
  229. select {
  230. case resp := <-scenario3b.req.successCh:
  231. require.Equal(t, resp.llama, scenario3b.srv)
  232. require.Len(t, s.pendingReqCh, 0)
  233. require.Len(t, scenario3b.req.errCh, 0)
  234. case <-ctx.Done():
  235. t.Errorf("timeout")
  236. }
  237. s.loadedMu.Lock()
  238. require.Len(t, s.loaded, 2)
  239. s.loadedMu.Unlock()
  240. // This is a CPU load with NumGPU = 0 so it should load
  241. s.newServerFn = scenario3c.newServer
  242. slog.Info("scenario3c")
  243. s.pendingReqCh <- scenario3c.req
  244. select {
  245. case resp := <-scenario3c.req.successCh:
  246. require.Equal(t, resp.llama, scenario3c.srv)
  247. require.Len(t, s.pendingReqCh, 0)
  248. require.Len(t, scenario3c.req.errCh, 0)
  249. case <-ctx.Done():
  250. t.Errorf("timeout")
  251. }
  252. s.loadedMu.Lock()
  253. require.Len(t, s.loaded, 3)
  254. s.loadedMu.Unlock()
  255. // Try to load a model that wont fit
  256. s.newServerFn = scenario3d.newServer
  257. slog.Info("scenario3d")
  258. s.loadedMu.Lock()
  259. require.Len(t, s.loaded, 3)
  260. s.loadedMu.Unlock()
  261. scenario3a.ctxDone() // Won't help since this one isn't big enough to make room
  262. time.Sleep(2 * time.Millisecond)
  263. s.pendingReqCh <- scenario3d.req
  264. // finish prior request, so new model can load
  265. time.Sleep(6 * time.Millisecond)
  266. s.loadedMu.Lock()
  267. require.Len(t, s.loaded, 2)
  268. s.loadedMu.Unlock()
  269. scenario3b.ctxDone()
  270. select {
  271. case resp := <-scenario3d.req.successCh:
  272. require.Equal(t, resp.llama, scenario3d.srv)
  273. require.Len(t, s.pendingReqCh, 0)
  274. require.Len(t, scenario3d.req.errCh, 0)
  275. case <-ctx.Done():
  276. t.Errorf("timeout")
  277. }
  278. s.loadedMu.Lock()
  279. require.Len(t, s.loaded, 2)
  280. s.loadedMu.Unlock()
  281. }
  282. func TestGetRunner(t *testing.T) {
  283. ctx, done := context.WithTimeout(context.Background(), 100*time.Millisecond)
  284. defer done()
  285. // Same model, same request
  286. scenario1a := newScenario(t, ctx, "ollama-model-1a", 10)
  287. scenario1a.req.sessionDuration = 0
  288. scenario1b := newScenario(t, ctx, "ollama-model-1b", 10)
  289. scenario1b.req.sessionDuration = 0
  290. scenario1c := newScenario(t, ctx, "ollama-model-1c", 10)
  291. scenario1c.req.sessionDuration = 0
  292. envconfig.MaxQueuedRequests = 1
  293. s := InitScheduler(ctx)
  294. s.getGpuFn = func() gpu.GpuInfoList {
  295. g := gpu.GpuInfo{Library: "metal"}
  296. g.TotalMemory = 24 * format.GigaByte
  297. g.FreeMemory = 12 * format.GigaByte
  298. return []gpu.GpuInfo{g}
  299. }
  300. s.newServerFn = scenario1a.newServer
  301. slog.Info("scenario1a")
  302. successCh1a, errCh1a := s.GetRunner(scenario1a.ctx, scenario1a.req.model, scenario1a.req.opts, scenario1a.req.sessionDuration)
  303. require.Len(t, s.pendingReqCh, 1)
  304. slog.Info("scenario1b")
  305. successCh1b, errCh1b := s.GetRunner(scenario1b.ctx, scenario1b.req.model, scenario1b.req.opts, scenario1b.req.sessionDuration)
  306. require.Len(t, s.pendingReqCh, 1)
  307. require.Len(t, successCh1b, 0)
  308. require.Len(t, errCh1b, 1)
  309. err := <-errCh1b
  310. require.Contains(t, err.Error(), "server busy")
  311. s.Run(ctx)
  312. select {
  313. case resp := <-successCh1a:
  314. require.Equal(t, resp.llama, scenario1a.srv)
  315. require.Len(t, s.pendingReqCh, 0)
  316. require.Len(t, errCh1a, 0)
  317. case <-ctx.Done():
  318. t.Errorf("timeout")
  319. }
  320. scenario1a.ctxDone()
  321. s.loadedMu.Lock()
  322. require.Len(t, s.loaded, 1)
  323. s.loadedMu.Unlock()
  324. scenario1c.req.model.ModelPath = "bad path"
  325. slog.Info("scenario1c")
  326. successCh1c, errCh1c := s.GetRunner(scenario1c.ctx, scenario1c.req.model, scenario1c.req.opts, scenario1c.req.sessionDuration)
  327. require.Len(t, s.pendingReqCh, 0)
  328. require.Len(t, successCh1c, 0)
  329. require.Len(t, errCh1c, 0)
  330. time.Sleep(5 * time.Millisecond)
  331. s.loadedMu.Lock()
  332. require.Len(t, s.loaded, 0)
  333. s.loadedMu.Unlock()
  334. require.Len(t, errCh1c, 1)
  335. err = <-errCh1c
  336. require.Contains(t, err.Error(), "bad path")
  337. scenario1b.ctxDone()
  338. }
  339. // TODO - add one scenario that triggers the bogus finished event with positive ref count
  340. func TestPrematureExpired(t *testing.T) {
  341. ctx, done := context.WithTimeout(context.Background(), 500*time.Millisecond)
  342. defer done()
  343. // Same model, same request
  344. scenario1a := newScenario(t, ctx, "ollama-model-1a", 10)
  345. s := InitScheduler(ctx)
  346. s.getGpuFn = func() gpu.GpuInfoList {
  347. g := gpu.GpuInfo{Library: "metal"}
  348. g.TotalMemory = 24 * format.GigaByte
  349. g.FreeMemory = 12 * format.GigaByte
  350. return []gpu.GpuInfo{g}
  351. }
  352. s.newServerFn = scenario1a.newServer
  353. successCh1a, errCh1a := s.GetRunner(scenario1a.ctx, scenario1a.req.model, scenario1a.req.opts, scenario1a.req.sessionDuration)
  354. require.Len(t, s.pendingReqCh, 1)
  355. s.Run(ctx)
  356. select {
  357. case resp := <-successCh1a:
  358. require.Equal(t, resp.llama, scenario1a.srv)
  359. require.Len(t, s.pendingReqCh, 0)
  360. require.Len(t, errCh1a, 0)
  361. s.loadedMu.Lock()
  362. require.Len(t, s.loaded, 1)
  363. s.loadedMu.Unlock()
  364. slog.Info("sending premature expired event now")
  365. s.expiredCh <- resp // Shouldn't happen in real life, but make sure its safe
  366. case <-ctx.Done():
  367. t.Errorf("timeout")
  368. }
  369. time.Sleep(scenario1a.req.sessionDuration)
  370. scenario1a.ctxDone()
  371. time.Sleep(20 * time.Millisecond)
  372. require.LessOrEqual(t, len(s.finishedReqCh), 1)
  373. time.Sleep(10 * time.Millisecond)
  374. require.Len(t, s.finishedReqCh, 0)
  375. s.loadedMu.Lock()
  376. require.Len(t, s.loaded, 0)
  377. s.loadedMu.Unlock()
  378. // also shouldn't happen in real life
  379. s.finishedReqCh <- scenario1a.req
  380. time.Sleep(5 * time.Millisecond)
  381. }
  382. func TestUseLoadedRunner(t *testing.T) {
  383. ctx, done := context.WithTimeout(context.Background(), 100*time.Millisecond)
  384. req := &LlmRequest{
  385. ctx: ctx,
  386. opts: api.DefaultOptions(),
  387. successCh: make(chan *runnerRef, 1),
  388. sessionDuration: 2,
  389. }
  390. finished := make(chan *LlmRequest)
  391. llm1 := &mockLlm{}
  392. r1 := &runnerRef{llama: llm1, sessionDuration: 1}
  393. req.useLoadedRunner(r1, finished)
  394. require.Equal(t, uint(1), r1.refCount)
  395. require.Equal(t, time.Duration(2), r1.sessionDuration)
  396. select {
  397. case success := <-req.successCh:
  398. require.Equal(t, r1, success)
  399. case <-ctx.Done():
  400. t.Errorf("timeout")
  401. }
  402. done()
  403. fin := <-finished
  404. require.Equal(t, req, fin)
  405. }
  406. func TestUpdateFreeSpace(t *testing.T) {
  407. ctx, done := context.WithTimeout(context.Background(), 100*time.Millisecond)
  408. defer done()
  409. gpus := gpu.GpuInfoList{
  410. {
  411. Library: "a",
  412. ID: "1",
  413. },
  414. {
  415. Library: "a",
  416. ID: "2",
  417. },
  418. }
  419. gpus[0].TotalMemory = 1000
  420. gpus[0].FreeMemory = 900
  421. gpus[1].TotalMemory = 2000
  422. gpus[1].FreeMemory = 1900
  423. llm1 := &mockLlm{estimatedVRAM: 100}
  424. llm2 := &mockLlm{estimatedVRAM: 200}
  425. r1 := &runnerRef{llama: llm1, gpus: gpus}
  426. r2 := &runnerRef{llama: llm2, gpus: gpus}
  427. s := InitScheduler(ctx)
  428. s.loadedMu.Lock()
  429. s.loaded["a"] = r1
  430. s.loaded["b"] = r2
  431. s.loadedMu.Unlock()
  432. s.updateFreeSpace(gpus)
  433. require.Equal(t, uint64(850), gpus[0].FreeMemory)
  434. require.Equal(t, uint64(1850), gpus[1].FreeMemory)
  435. }
  436. func TestFindRunnerToUnload(t *testing.T) {
  437. ctx, done := context.WithTimeout(context.Background(), 100*time.Millisecond)
  438. defer done()
  439. req := &LlmRequest{
  440. ctx: ctx,
  441. opts: api.DefaultOptions(),
  442. }
  443. r1 := &runnerRef{refCount: 1, sessionDuration: 1}
  444. r2 := &runnerRef{sessionDuration: 2}
  445. s := InitScheduler(ctx)
  446. s.loadedMu.Lock()
  447. s.loaded["a"] = r1
  448. s.loaded["b"] = r2
  449. s.loadedMu.Unlock()
  450. resp := s.findRunnerToUnload(req)
  451. require.Equal(t, r2, resp)
  452. r2.refCount = 1
  453. resp = s.findRunnerToUnload(req)
  454. require.Equal(t, r1, resp)
  455. }
  456. func TestNeedsReload(t *testing.T) {
  457. ctx, done := context.WithTimeout(context.Background(), 100*time.Millisecond)
  458. defer done()
  459. llm := &mockLlm{}
  460. do := api.DefaultOptions()
  461. runner := &runnerRef{
  462. adapters: []string{"adapter1"},
  463. projectors: []string{"projector1"},
  464. Options: &do,
  465. llama: llm,
  466. }
  467. req := &LlmRequest{
  468. model: &Model{
  469. AdapterPaths: []string{"adapter2"},
  470. ProjectorPaths: []string{"projector2"},
  471. },
  472. opts: api.DefaultOptions(),
  473. }
  474. resp := runner.needsReload(ctx, req)
  475. require.True(t, resp)
  476. req.model.AdapterPaths = runner.adapters
  477. resp = runner.needsReload(ctx, req)
  478. require.True(t, resp)
  479. req.model.ProjectorPaths = runner.projectors
  480. runner.loading = true
  481. req.opts.NumBatch = 1234
  482. resp = runner.needsReload(ctx, req)
  483. require.True(t, resp)
  484. req.opts.NumBatch = runner.Options.NumBatch
  485. llm.pingResp = fmt.Errorf("foo")
  486. resp = runner.needsReload(ctx, req)
  487. require.True(t, resp)
  488. llm.pingResp = nil
  489. resp = runner.needsReload(ctx, req)
  490. require.False(t, resp)
  491. req.opts.NumGPU = 99
  492. resp = runner.needsReload(ctx, req)
  493. require.True(t, resp)
  494. req.opts.NumGPU = -1
  495. resp = runner.needsReload(ctx, req)
  496. require.False(t, resp)
  497. }
  498. func TestUnloadAllRunners(t *testing.T) {
  499. ctx, done := context.WithTimeout(context.Background(), 100*time.Millisecond)
  500. defer done()
  501. llm1 := &mockLlm{}
  502. llm2 := &mockLlm{}
  503. s := InitScheduler(ctx)
  504. s.unloadAllRunners()
  505. r1 := &runnerRef{llama: llm1}
  506. r2 := &runnerRef{llama: llm2}
  507. s.loadedMu.Lock()
  508. s.loaded["a"] = r1
  509. s.loaded["b"] = r2
  510. s.loadedMu.Unlock()
  511. s.unloadAllRunners()
  512. require.True(t, llm1.closeCalled)
  513. require.True(t, llm2.closeCalled)
  514. }
  515. func TestUnload(t *testing.T) {
  516. llm1 := &mockLlm{}
  517. r1 := &runnerRef{llama: llm1}
  518. r2 := &runnerRef{adapters: []string{"A"}}
  519. r1.unload()
  520. require.True(t, llm1.closeCalled)
  521. r2.unload()
  522. require.Nil(t, r2.adapters)
  523. }
  524. type mockLlm struct {
  525. pingResp error
  526. waitResp error
  527. completionResp error
  528. embeddingResp []float64
  529. embeddingRespErr error
  530. tokenizeResp []int
  531. tokenizeRespErr error
  532. detokenizeResp string
  533. detonekizeRespErr error
  534. closeResp error
  535. closeCalled bool
  536. estimatedVRAM uint64
  537. }
  538. func (s *mockLlm) Ping(ctx context.Context) error { return s.pingResp }
  539. func (s *mockLlm) WaitUntilRunning(ctx context.Context) error { return s.waitResp }
  540. func (s *mockLlm) Completion(ctx context.Context, req llm.CompletionRequest, fn func(llm.CompletionResponse)) error {
  541. return s.completionResp
  542. }
  543. func (s *mockLlm) Embedding(ctx context.Context, prompt string) ([]float64, error) {
  544. return s.embeddingResp, s.embeddingRespErr
  545. }
  546. func (s *mockLlm) Tokenize(ctx context.Context, content string) ([]int, error) {
  547. return s.tokenizeResp, s.tokenizeRespErr
  548. }
  549. func (s *mockLlm) Detokenize(ctx context.Context, tokens []int) (string, error) {
  550. return s.detokenizeResp, s.detonekizeRespErr
  551. }
  552. func (s *mockLlm) Close() error {
  553. s.closeCalled = true
  554. return s.closeResp
  555. }
  556. func (s *mockLlm) EstimatedVRAM() uint64 { return s.estimatedVRAM }