dyn_ext_server.go 11 KB

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  1. package llm
  2. /*
  3. #cgo CFLAGS: -I${SRCDIR}/ext_server -I${SRCDIR}/llama.cpp -I${SRCDIR}/llama.cpp/common -I${SRCDIR}/llama.cpp/examples/server
  4. #cgo CFLAGS: -DNDEBUG -DLLAMA_SERVER_LIBRARY=1 -D_XOPEN_SOURCE=600 -DACCELERATE_NEW_LAPACK -DACCELERATE_LAPACK_ILP64
  5. #cgo CFLAGS: -Wmissing-noreturn -Wextra -Wcast-qual -Wno-unused-function -Wno-array-bounds
  6. #cgo CPPFLAGS: -Ofast -Wextra -Wno-unused-function -Wno-unused-variable -Wno-deprecated-declarations -Wno-unused-but-set-variable
  7. #cgo darwin CFLAGS: -D_DARWIN_C_SOURCE
  8. #cgo darwin CPPFLAGS: -DGGML_USE_ACCELERATE
  9. #cgo darwin CPPFLAGS: -DGGML_USE_METAL -DGGML_METAL_NDEBUG
  10. #cgo darwin LDFLAGS: -lc++ -framework Accelerate
  11. #cgo darwin LDFLAGS: -framework Foundation -framework Metal -framework MetalKit -framework MetalPerformanceShaders
  12. #cgo linux CFLAGS: -D_GNU_SOURCE
  13. #cgo linux LDFLAGS: -lrt -ldl -lstdc++ -lm
  14. #cgo linux windows LDFLAGS: -lpthread
  15. #include <stdlib.h>
  16. #include "dyn_ext_server.h"
  17. */
  18. import "C"
  19. import (
  20. "bytes"
  21. "context"
  22. "encoding/json"
  23. "fmt"
  24. "log"
  25. "os"
  26. "path/filepath"
  27. "runtime"
  28. "strings"
  29. "sync"
  30. "time"
  31. "unsafe"
  32. "github.com/jmorganca/ollama/api"
  33. )
  34. type dynExtServer struct {
  35. s C.struct_dynamic_llama_server
  36. options api.Options
  37. }
  38. // Note: current implementation does not support concurrent instantiations
  39. var mutex sync.Mutex
  40. func newExtServerResp(len C.size_t) C.ext_server_resp_t {
  41. var resp C.ext_server_resp_t
  42. resp.msg_len = len
  43. bytes := make([]byte, len)
  44. resp.msg = (*C.char)(C.CBytes(bytes))
  45. return resp
  46. }
  47. func freeExtServerResp(resp C.ext_server_resp_t) {
  48. if resp.msg_len == 0 {
  49. return
  50. }
  51. C.free(unsafe.Pointer(resp.msg))
  52. }
  53. func extServerResponseToErr(resp C.ext_server_resp_t) error {
  54. return fmt.Errorf(C.GoString(resp.msg))
  55. }
  56. // Note: current implementation does not support concurrent instantiations
  57. var llm *dynExtServer
  58. func newDynExtServer(library, model string, adapters, projectors []string, opts api.Options) (LLM, error) {
  59. if !mutex.TryLock() {
  60. log.Printf("concurrent llm servers not yet supported, waiting for prior server to complete")
  61. mutex.Lock()
  62. }
  63. updatePath(filepath.Dir(library))
  64. libPath := C.CString(library)
  65. defer C.free(unsafe.Pointer(libPath))
  66. resp := newExtServerResp(128)
  67. defer freeExtServerResp(resp)
  68. var srv C.struct_dynamic_llama_server
  69. C.dyn_init(libPath, &srv, &resp)
  70. if resp.id < 0 {
  71. mutex.Unlock()
  72. return nil, fmt.Errorf("Unable to load dynamic library: %s", C.GoString(resp.msg))
  73. }
  74. llm = &dynExtServer{
  75. s: srv,
  76. options: opts,
  77. }
  78. log.Printf("Loading Dynamic llm server: %s", library)
  79. var sparams C.ext_server_params_t
  80. sparams.model = C.CString(model)
  81. defer C.free(unsafe.Pointer(sparams.model))
  82. sparams.embedding = true
  83. sparams.n_ctx = C.uint(opts.NumCtx)
  84. sparams.n_batch = C.uint(opts.NumBatch)
  85. sparams.n_gpu_layers = C.int(opts.NumGPU)
  86. sparams.main_gpu = C.int(opts.MainGPU)
  87. sparams.n_parallel = 1 // TODO - wire up concurrency
  88. // Always use the value encoded in the model
  89. sparams.rope_freq_base = 0.0
  90. sparams.rope_freq_scale = 0.0
  91. sparams.memory_f16 = C.bool(opts.F16KV)
  92. sparams.use_mlock = C.bool(opts.UseMLock)
  93. sparams.use_mmap = C.bool(opts.UseMMap)
  94. sparams.numa = C.bool(opts.UseNUMA)
  95. sparams.lora_adapters = nil
  96. for i := 0; i < len(adapters); i++ {
  97. la := (*C.ext_server_lora_adapter_t)(C.malloc(C.sizeof_ext_server_lora_adapter_t))
  98. defer C.free(unsafe.Pointer(la))
  99. la.adapter = C.CString(adapters[i])
  100. defer C.free(unsafe.Pointer(la.adapter))
  101. la.scale = C.float(1.0) // TODO expose scale/weights up through ollama UX
  102. la.next = nil
  103. if i == 0 {
  104. sparams.lora_adapters = la
  105. } else {
  106. tmp := sparams.lora_adapters
  107. for ; tmp.next != nil; tmp = tmp.next {
  108. }
  109. tmp.next = la
  110. }
  111. }
  112. if len(projectors) > 0 {
  113. // TODO: applying multiple projectors is not supported by the llama.cpp server yet
  114. sparams.mmproj = C.CString(projectors[0])
  115. defer C.free(unsafe.Pointer(sparams.mmproj))
  116. } else {
  117. sparams.mmproj = nil
  118. }
  119. sparams.n_threads = C.uint(opts.NumThread)
  120. log.Printf("Initializing llama server")
  121. initResp := newExtServerResp(128)
  122. defer freeExtServerResp(initResp)
  123. C.dyn_llama_server_init(llm.s, &sparams, &initResp)
  124. if initResp.id < 0 {
  125. return nil, extServerResponseToErr(initResp)
  126. }
  127. log.Printf("Starting llama main loop")
  128. C.dyn_llama_server_start(llm.s)
  129. return llm, nil
  130. }
  131. func (llm *dynExtServer) Predict(ctx context.Context, predict PredictOpts, fn func(PredictResult)) error {
  132. resp := newExtServerResp(128)
  133. defer freeExtServerResp(resp)
  134. var imageData []ImageData
  135. if len(predict.Images) > 0 {
  136. for cnt, i := range predict.Images {
  137. imageData = append(imageData, ImageData{Data: i, ID: cnt})
  138. }
  139. }
  140. log.Printf("loaded %d images", len(imageData))
  141. request := map[string]any{
  142. "prompt": predict.Prompt,
  143. "stream": true,
  144. "n_predict": predict.Options.NumPredict,
  145. "n_keep": predict.Options.NumKeep,
  146. "temperature": predict.Options.Temperature,
  147. "top_k": predict.Options.TopK,
  148. "top_p": predict.Options.TopP,
  149. "tfs_z": predict.Options.TFSZ,
  150. "typical_p": predict.Options.TypicalP,
  151. "repeat_last_n": predict.Options.RepeatLastN,
  152. "repeat_penalty": predict.Options.RepeatPenalty,
  153. "presence_penalty": predict.Options.PresencePenalty,
  154. "frequency_penalty": predict.Options.FrequencyPenalty,
  155. "mirostat": predict.Options.Mirostat,
  156. "mirostat_tau": predict.Options.MirostatTau,
  157. "mirostat_eta": predict.Options.MirostatEta,
  158. "penalize_nl": predict.Options.PenalizeNewline,
  159. "seed": predict.Options.Seed,
  160. "stop": predict.Options.Stop,
  161. "image_data": imageData,
  162. "cache_prompt": true,
  163. }
  164. if predict.Format == "json" {
  165. request["grammar"] = jsonGrammar
  166. }
  167. retryDelay := 100 * time.Microsecond
  168. for retries := 0; retries < maxRetries; retries++ {
  169. if retries > 0 {
  170. time.Sleep(retryDelay) // wait before retrying
  171. retryDelay *= 2 // exponential backoff
  172. }
  173. // Handling JSON marshaling with special characters unescaped.
  174. buffer := &bytes.Buffer{}
  175. enc := json.NewEncoder(buffer)
  176. enc.SetEscapeHTML(false)
  177. if err := enc.Encode(request); err != nil {
  178. return fmt.Errorf("failed to marshal data: %w", err)
  179. }
  180. req := C.CString(buffer.String())
  181. defer C.free(unsafe.Pointer(req))
  182. C.dyn_llama_server_completion(llm.s, req, &resp)
  183. if resp.id < 0 {
  184. return extServerResponseToErr(resp)
  185. }
  186. retryNeeded := false
  187. out:
  188. for {
  189. select {
  190. case <-ctx.Done():
  191. // This handles the request cancellation
  192. C.dyn_llama_server_completion_cancel(llm.s, resp.id, &resp)
  193. if resp.id < 0 {
  194. return extServerResponseToErr(resp)
  195. } else {
  196. return nil
  197. }
  198. default:
  199. var result C.ext_server_task_result_t
  200. C.dyn_llama_server_completion_next_result(llm.s, resp.id, &result)
  201. json_resp := C.GoString(result.json_resp)
  202. C.dyn_llama_server_release_task_result(llm.s, &result)
  203. var p prediction
  204. if err := json.Unmarshal([]byte(json_resp), &p); err != nil {
  205. C.dyn_llama_server_completion_cancel(llm.s, resp.id, &resp)
  206. if resp.id < 0 {
  207. return fmt.Errorf("error unmarshaling llm prediction response: %w and cancel %s", err, C.GoString(resp.msg))
  208. } else {
  209. return fmt.Errorf("error unmarshaling llm prediction response: %w", err)
  210. }
  211. }
  212. if bool(result.error) && strings.Contains(json_resp, "slot unavailable") {
  213. retryNeeded = true
  214. // task will already be canceled
  215. break out
  216. }
  217. if p.Content != "" {
  218. fn(PredictResult{
  219. Content: p.Content,
  220. })
  221. }
  222. if p.Stop {
  223. fn(PredictResult{
  224. Done: true,
  225. PromptEvalCount: p.Timings.PromptN,
  226. PromptEvalDuration: parseDurationMs(p.Timings.PromptMS),
  227. EvalCount: p.Timings.PredictedN,
  228. EvalDuration: parseDurationMs(p.Timings.PredictedMS),
  229. })
  230. return nil
  231. }
  232. }
  233. }
  234. if !retryNeeded {
  235. return nil // success
  236. }
  237. }
  238. // should never reach here ideally
  239. return fmt.Errorf("max retries exceeded")
  240. }
  241. func (llm *dynExtServer) Encode(ctx context.Context, prompt string) ([]int, error) {
  242. data, err := json.Marshal(TokenizeRequest{Content: prompt})
  243. if err != nil {
  244. return nil, fmt.Errorf("marshaling encode data: %w", err)
  245. }
  246. req := C.CString(string(data))
  247. defer C.free(unsafe.Pointer(req))
  248. var json_resp *C.char
  249. resp := newExtServerResp(128)
  250. defer freeExtServerResp(resp)
  251. C.dyn_llama_server_tokenize(llm.s, req, &json_resp, &resp)
  252. if resp.id < 0 {
  253. return nil, extServerResponseToErr(resp)
  254. }
  255. defer C.dyn_llama_server_release_json_resp(llm.s, &json_resp)
  256. var encoded TokenizeResponse
  257. if err2 := json.Unmarshal([]byte(C.GoString(json_resp)), &encoded); err2 != nil {
  258. return nil, fmt.Errorf("unmarshal encode response: %w", err2)
  259. }
  260. return encoded.Tokens, err
  261. }
  262. func (llm *dynExtServer) Decode(ctx context.Context, tokens []int) (string, error) {
  263. if len(tokens) == 0 {
  264. return "", nil
  265. }
  266. data, err := json.Marshal(DetokenizeRequest{Tokens: tokens})
  267. if err != nil {
  268. return "", fmt.Errorf("marshaling decode data: %w", err)
  269. }
  270. req := C.CString(string(data))
  271. defer C.free(unsafe.Pointer(req))
  272. var json_resp *C.char
  273. resp := newExtServerResp(128)
  274. defer freeExtServerResp(resp)
  275. C.dyn_llama_server_detokenize(llm.s, req, &json_resp, &resp)
  276. if resp.id < 0 {
  277. return "", extServerResponseToErr(resp)
  278. }
  279. defer C.dyn_llama_server_release_json_resp(llm.s, &json_resp)
  280. var decoded DetokenizeResponse
  281. if err2 := json.Unmarshal([]byte(C.GoString(json_resp)), &decoded); err2 != nil {
  282. return "", fmt.Errorf("unmarshal encode response: %w", err2)
  283. }
  284. return decoded.Content, err
  285. }
  286. func (llm *dynExtServer) Embedding(ctx context.Context, input string) ([]float64, error) {
  287. data, err := json.Marshal(TokenizeRequest{Content: input})
  288. if err != nil {
  289. return nil, fmt.Errorf("error marshaling embed data: %w", err)
  290. }
  291. req := C.CString(string(data))
  292. defer C.free(unsafe.Pointer(req))
  293. var json_resp *C.char
  294. resp := newExtServerResp(128)
  295. defer freeExtServerResp(resp)
  296. C.dyn_llama_server_embedding(llm.s, req, &json_resp, &resp)
  297. if resp.id < 0 {
  298. return nil, extServerResponseToErr(resp)
  299. }
  300. defer C.dyn_llama_server_release_json_resp(llm.s, &json_resp)
  301. var embedding EmbeddingResponse
  302. if err := json.Unmarshal([]byte(C.GoString(json_resp)), &embedding); err != nil {
  303. return nil, fmt.Errorf("unmarshal tokenize response: %w", err)
  304. }
  305. return embedding.Embedding, nil
  306. }
  307. func (llm *dynExtServer) Close() {
  308. C.dyn_llama_server_stop(llm.s)
  309. mutex.Unlock()
  310. }
  311. func updatePath(dir string) {
  312. if runtime.GOOS == "windows" {
  313. tmpDir := filepath.Dir(dir)
  314. pathComponents := strings.Split(os.Getenv("PATH"), ";")
  315. i := 0
  316. for _, comp := range pathComponents {
  317. if strings.EqualFold(comp, dir) {
  318. return
  319. }
  320. // Remove any other prior paths to our temp dir
  321. if !strings.HasPrefix(strings.ToLower(comp), strings.ToLower(tmpDir)) {
  322. pathComponents[i] = comp
  323. i++
  324. }
  325. }
  326. newPath := strings.Join(append([]string{dir}, pathComponents...), ";")
  327. log.Printf("Updating PATH to %s", newPath)
  328. os.Setenv("PATH", newPath)
  329. } else {
  330. pathComponents := strings.Split(os.Getenv("LD_LIBRARY_PATH"), ":")
  331. for _, comp := range pathComponents {
  332. if comp == dir {
  333. return
  334. }
  335. }
  336. newPath := strings.Join(append([]string{dir}, pathComponents...), ":")
  337. log.Printf("Updating LD_LIBRARY_PATH to %s", newPath)
  338. os.Setenv("LD_LIBRARY_PATH", newPath)
  339. }
  340. }