llama.go 10 KB

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  1. package llama
  2. /*
  3. #cgo CPPFLAGS: -O3 -Wall -Wextra -Werror -Wno-unused-function -Wno-unused-variable -DNDEBUG -DGGML_USE_K_QUANTS
  4. #cgo CXXFLAGS: -std=gnu++11
  5. #cgo darwin CPPFLAGS: -DGGML_USE_ACCELERATE -DGGML_USE_METAL -DGGML_METAL_NDEBUG
  6. #cgo darwin LDFLAGS: -framework Accelerate -framework Foundation -framework Metal -framework MetalKit -framework MetalPerformanceShaders
  7. #include <stdlib.h>
  8. #include "llama.h"
  9. struct llama_sample_options
  10. {
  11. float repeat_penalty;
  12. float frequency_penalty;
  13. float presence_penalty;
  14. float temperature;
  15. int32_t top_k;
  16. float top_p;
  17. float tfs_z;
  18. float typical_p;
  19. int mirostat;
  20. float mirostat_tau;
  21. float mirostat_eta;
  22. bool penalize_newline;
  23. };
  24. llama_token llama_sample(
  25. struct llama_context *ctx,
  26. struct llama_token_data *candidates,
  27. size_t n_candidates,
  28. const llama_token *last_tokens,
  29. size_t n_last_tokens,
  30. struct llama_sample_options *opts)
  31. {
  32. llama_token_data_array candidates_p = {
  33. candidates,
  34. n_candidates,
  35. false,
  36. };
  37. struct llama_token_data newline = candidates_p.data[llama_token_nl()];
  38. llama_sample_repetition_penalty(
  39. ctx, &candidates_p,
  40. last_tokens, n_last_tokens,
  41. opts->repeat_penalty);
  42. llama_sample_frequency_and_presence_penalties(
  43. ctx, &candidates_p,
  44. last_tokens, n_last_tokens,
  45. opts->frequency_penalty, opts->presence_penalty);
  46. if (!opts->penalize_newline) {
  47. candidates_p.data[llama_token_nl()] = newline;
  48. }
  49. if (opts->temperature <= 0) {
  50. return llama_sample_token_greedy(ctx, &candidates_p);
  51. }
  52. if (opts->mirostat == 1) {
  53. int mirostat_m = 100;
  54. float mirostat_mu = 2.0f * opts->mirostat_tau;
  55. llama_sample_temperature(ctx, &candidates_p, opts->temperature);
  56. return llama_sample_token_mirostat(
  57. ctx, &candidates_p,
  58. opts->mirostat_tau, opts->mirostat_eta,
  59. mirostat_m, &mirostat_mu);
  60. } else if (opts->mirostat == 2) {
  61. float mirostat_mu = 2.0f * opts->mirostat_tau;
  62. llama_sample_temperature(ctx, &candidates_p, opts->temperature);
  63. return llama_sample_token_mirostat_v2(
  64. ctx, &candidates_p,
  65. opts->mirostat_tau, opts->mirostat_eta,
  66. &mirostat_mu);
  67. } else {
  68. llama_sample_top_k(ctx, &candidates_p, opts->top_k, 1);
  69. llama_sample_tail_free(ctx, &candidates_p, opts->tfs_z, 1);
  70. llama_sample_typical(ctx, &candidates_p, opts->typical_p, 1);
  71. llama_sample_top_p(ctx, &candidates_p, opts->top_p, 1);
  72. llama_sample_temperature(ctx, &candidates_p, opts->temperature);
  73. return llama_sample_token(ctx, &candidates_p);
  74. }
  75. }
  76. */
  77. import "C"
  78. import (
  79. "bytes"
  80. "embed"
  81. "errors"
  82. "fmt"
  83. "io"
  84. "log"
  85. "os"
  86. "strings"
  87. "sync"
  88. "unicode/utf8"
  89. "unsafe"
  90. "github.com/jmorganca/ollama/api"
  91. )
  92. //go:embed ggml-metal.metal
  93. var fs embed.FS
  94. type LLM struct {
  95. params *C.struct_llama_context_params
  96. model *C.struct_llama_model
  97. ctx *C.struct_llama_context
  98. last []C.llama_token
  99. embd []C.llama_token
  100. cursor int
  101. mu sync.Mutex
  102. gc bool
  103. api.Options
  104. }
  105. func New(model string, opts api.Options) (*LLM, error) {
  106. if _, err := os.Stat(model); err != nil {
  107. return nil, err
  108. }
  109. llm := LLM{Options: opts}
  110. C.llama_backend_init(C.bool(llm.UseNUMA))
  111. params := C.llama_context_default_params()
  112. params.seed = C.uint(llm.Seed)
  113. params.n_ctx = C.int(llm.NumCtx)
  114. params.n_batch = C.int(llm.NumBatch)
  115. params.n_gqa = C.int(llm.NumGQA)
  116. params.n_gpu_layers = C.int(llm.NumGPU)
  117. params.main_gpu = C.int(llm.MainGPU)
  118. params.low_vram = C.bool(llm.LowVRAM)
  119. params.f16_kv = C.bool(llm.F16KV)
  120. params.logits_all = C.bool(llm.LogitsAll)
  121. params.vocab_only = C.bool(llm.VocabOnly)
  122. params.use_mmap = C.bool(llm.UseMMap)
  123. params.use_mlock = C.bool(llm.UseMLock)
  124. params.embedding = C.bool(llm.EmbeddingOnly)
  125. llm.params = &params
  126. cModel := C.CString(model)
  127. defer C.free(unsafe.Pointer(cModel))
  128. llm.model = C.llama_load_model_from_file(cModel, params)
  129. if llm.model == nil {
  130. return nil, errors.New("failed to load model")
  131. }
  132. llm.ctx = C.llama_new_context_with_model(llm.model, params)
  133. if llm.ctx == nil {
  134. return nil, errors.New("failed to create context")
  135. }
  136. // warm up the model
  137. bos := []C.llama_token{C.llama_token_bos()}
  138. C.llama_eval(llm.ctx, unsafe.SliceData(bos), C.int(len(bos)), 0, C.int(opts.NumThread))
  139. C.llama_reset_timings(llm.ctx)
  140. return &llm, nil
  141. }
  142. func (llm *LLM) Close() {
  143. llm.gc = true
  144. llm.mu.Lock()
  145. defer llm.mu.Unlock()
  146. defer C.llama_free_model(llm.model)
  147. defer C.llama_free(llm.ctx)
  148. C.llama_print_timings(llm.ctx)
  149. }
  150. var errNeedMoreData = errors.New("need more data")
  151. func (llm *LLM) Predict(ctx []int, prompt string, fn func(api.GenerateResponse)) error {
  152. C.llama_reset_timings(llm.ctx)
  153. tokens := make([]C.llama_token, len(ctx))
  154. for i := range tokens {
  155. tokens[i] = C.llama_token(ctx[i])
  156. }
  157. if len(tokens) == 0 {
  158. tokens = llm.tokenize(" ")
  159. }
  160. llm.marshalPrompt(tokens, prompt)
  161. C.llama_set_rng_seed(llm.ctx, C.uint(llm.Seed))
  162. var b bytes.Buffer
  163. for {
  164. token, err := llm.next()
  165. if llm.gc {
  166. return nil
  167. } else if errors.Is(err, io.EOF) {
  168. break
  169. } else if err != nil {
  170. return err
  171. }
  172. b.WriteString(llm.detokenize(token))
  173. if err := llm.checkStopConditions(b); err != nil {
  174. if errors.Is(err, io.EOF) {
  175. break
  176. } else if errors.Is(err, errNeedMoreData) {
  177. continue
  178. }
  179. return err
  180. }
  181. if utf8.Valid(b.Bytes()) || b.Len() >= utf8.UTFMax {
  182. fn(api.GenerateResponse{Response: b.String()})
  183. b.Reset()
  184. }
  185. }
  186. last := make([]int, 0, len(llm.last))
  187. for _, i := range llm.last {
  188. if i != 0 {
  189. last = append(last, int(i))
  190. }
  191. }
  192. timings := C.llama_get_timings(llm.ctx)
  193. fn(api.GenerateResponse{
  194. Done: true,
  195. Context: last,
  196. SampleCount: int(timings.n_sample),
  197. SampleDuration: parseDurationMs(float64(timings.t_sample_ms)),
  198. PromptEvalCount: int(timings.n_p_eval),
  199. PromptEvalDuration: parseDurationMs(float64(timings.t_p_eval_ms)),
  200. EvalCount: int(timings.n_eval),
  201. EvalDuration: parseDurationMs(float64(timings.t_eval_ms)),
  202. })
  203. return nil
  204. }
  205. func (llm *LLM) checkStopConditions(b bytes.Buffer) error {
  206. for _, stopCondition := range llm.StopConditions {
  207. if stopCondition == b.String() {
  208. return io.EOF
  209. } else if strings.HasPrefix(stopCondition, b.String()) {
  210. return errNeedMoreData
  211. }
  212. }
  213. return nil
  214. }
  215. func (llm *LLM) marshalPrompt(ctx []C.llama_token, prompt string) []C.llama_token {
  216. tokens := append(ctx, llm.tokenize(prompt)...)
  217. if llm.NumKeep < 0 {
  218. llm.NumKeep = len(tokens)
  219. }
  220. // min(llm.NumCtx - 4, llm.NumKeep)
  221. if llm.NumCtx-4 < llm.NumKeep {
  222. llm.NumKeep = llm.NumCtx - 4
  223. }
  224. if len(tokens) >= llm.NumCtx {
  225. // truncate input
  226. numLeft := (llm.NumCtx - llm.NumKeep) / 2
  227. truncated := tokens[:llm.NumKeep]
  228. erasedBlocks := (len(tokens) - llm.NumKeep - numLeft - 1) / numLeft
  229. truncated = append(truncated, tokens[llm.NumKeep+erasedBlocks*numLeft:]...)
  230. copy(llm.last, tokens[len(tokens)-llm.NumCtx:])
  231. tokens = truncated
  232. log.Printf("input truncated: num_ctx=%d num_keep=%d num_left=%d num_tokens=%d", llm.NumCtx, llm.NumKeep, numLeft, len(truncated))
  233. } else {
  234. llm.last = make([]C.llama_token, llm.NumCtx-len(tokens))
  235. llm.last = append(llm.last, tokens...)
  236. }
  237. var i int
  238. for i = 0; i < len(llm.embd) && i < len(tokens) && llm.embd[i] == tokens[i]; i++ {
  239. // noop
  240. }
  241. llm.embd = tokens
  242. if i == len(tokens) {
  243. // evaluate at least one token to generate logits
  244. i--
  245. }
  246. llm.cursor = i
  247. log.Printf("prompt: num_past=%d cached=%v eval=%v", i, len(llm.embd[:i]), len(llm.embd[i:]))
  248. return tokens
  249. }
  250. func (llm *LLM) tokenize(prompt string) []C.llama_token {
  251. cPrompt := C.CString(prompt)
  252. defer C.free(unsafe.Pointer(cPrompt))
  253. tokens := make([]C.llama_token, len(prompt)+1)
  254. if n := C.llama_tokenize(llm.ctx, cPrompt, unsafe.SliceData(tokens), C.int(len(tokens)), true); n > 0 {
  255. return tokens[:n]
  256. }
  257. return nil
  258. }
  259. func (llm *LLM) detokenize(tokens ...C.llama_token) string {
  260. var sb strings.Builder
  261. for _, token := range tokens {
  262. sb.WriteString(C.GoString(C.llama_token_to_str(llm.ctx, token)))
  263. }
  264. return sb.String()
  265. }
  266. func (llm *LLM) next() (C.llama_token, error) {
  267. llm.mu.Lock()
  268. defer llm.mu.Unlock()
  269. if len(llm.embd) >= llm.NumCtx {
  270. numLeft := (llm.NumCtx - llm.NumKeep) / 2
  271. truncated := llm.embd[:llm.NumKeep]
  272. truncated = append(truncated, llm.embd[len(llm.embd)-numLeft:]...)
  273. llm.embd = truncated
  274. llm.cursor = llm.NumKeep
  275. log.Printf("input truncated: num_ctx=%d num_keep=%d num_left=%d num_tokens=%d cursor=%d", llm.NumCtx, llm.NumKeep, numLeft, len(truncated), llm.cursor)
  276. }
  277. for {
  278. if llm.gc {
  279. return 0, io.EOF
  280. }
  281. if llm.cursor >= len(llm.embd) {
  282. break
  283. }
  284. numEval := len(llm.embd) - llm.cursor
  285. if numEval > llm.NumBatch {
  286. numEval = llm.NumBatch
  287. }
  288. if retval := C.llama_eval(llm.ctx, unsafe.SliceData(llm.embd[llm.cursor:]), C.int(numEval), C.int(llm.cursor), C.int(llm.NumThread)); retval != 0 {
  289. return 0, fmt.Errorf("llama_eval: %d", retval)
  290. }
  291. llm.cursor += numEval
  292. }
  293. var sampleOpts C.struct_llama_sample_options
  294. sampleOpts.repeat_penalty = C.float(llm.RepeatPenalty)
  295. sampleOpts.frequency_penalty = C.float(llm.FrequencyPenalty)
  296. sampleOpts.presence_penalty = C.float(llm.PresencePenalty)
  297. sampleOpts.temperature = C.float(llm.Temperature)
  298. sampleOpts.top_k = C.int(llm.TopK)
  299. sampleOpts.top_p = C.float(llm.TopP)
  300. sampleOpts.tfs_z = C.float(llm.TFSZ)
  301. sampleOpts.typical_p = C.float(llm.TypicalP)
  302. sampleOpts.mirostat = C.int(llm.Mirostat)
  303. sampleOpts.mirostat_tau = C.float(llm.MirostatTau)
  304. sampleOpts.mirostat_eta = C.float(llm.MirostatEta)
  305. sampleOpts.penalize_newline = C.bool(llm.PenalizeNewline)
  306. numVocab := C.llama_n_vocab(llm.ctx)
  307. logits := unsafe.Slice(C.llama_get_logits(llm.ctx), numVocab)
  308. // TODO: logit bias
  309. candidates := make([]C.llama_token_data, numVocab)
  310. for i := range logits {
  311. candidates[i] = C.llama_token_data{
  312. id: C.int(i),
  313. logit: logits[i],
  314. p: 0,
  315. }
  316. }
  317. repeatLastN := llm.RepeatLastN
  318. if len(llm.last) < repeatLastN {
  319. repeatLastN = len(llm.last)
  320. }
  321. if llm.NumCtx < repeatLastN {
  322. repeatLastN = llm.NumCtx
  323. }
  324. lastN := llm.last[len(llm.last)-repeatLastN:]
  325. token := C.llama_sample(
  326. llm.ctx,
  327. unsafe.SliceData(candidates), C.size_t(len(candidates)),
  328. unsafe.SliceData(lastN), C.size_t(len(lastN)),
  329. &sampleOpts,
  330. )
  331. llm.last = append(llm.last, token)
  332. llm.embd = append(llm.embd, token)
  333. if token == C.llama_token_eos() {
  334. return 0, io.EOF
  335. }
  336. return token, nil
  337. }