llama.go 11 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379
  1. package llama
  2. // #cgo CFLAGS: -std=c11 -DNDEBUG -DLOG_DISABLE_LOGS
  3. // #cgo CXXFLAGS: -std=c++11 -DNDEBUG -DLOG_DISABLE_LOGS
  4. // #cgo darwin,arm64 CFLAGS: -DGGML_USE_METAL -DGGML_METAL_EMBED_LIBRARY -DGGML_USE_ACCELERATE -DACCELERATE_NEW_LAPACK -DACCELERATE_LAPACK_ILP64
  5. // #cgo darwin,arm64 CXXFLAGS: -DGGML_USE_METAL -DGGML_METAL_EMBED_LIBRARY -DGGML_USE_ACCELERATE -DACCELERATE_NEW_LAPACK -DACCELERATE_LAPACK_ILP64
  6. // #cgo darwin,arm64 LDFLAGS: -ld_classic ${SRCDIR}/ggml-metal.o -framework Foundation -framework Metal -framework MetalKit -framework Accelerate
  7. // #cgo darwin,amd64 CFLAGS: -Wno-incompatible-pointer-types-discards-qualifiers
  8. // #cgo darwin,amd64 CXXFLAGS: -Wno-incompatible-pointer-types-discards-qualifiers
  9. // #cgo darwin,amd64 LDFLAGS: -ld_classic -framework Foundation -framework Accelerate
  10. // #cgo linux CFLAGS: -D_GNU_SOURCE
  11. // #cgo linux CXXFLAGS: -D_GNU_SOURCE
  12. // #cgo windows LDFLAGS: -lmsvcrt
  13. // #cgo avx CFLAGS: -mavx
  14. // #cgo avx CXXFLAGS: -mavx
  15. // #cgo avx2 CFLAGS: -mavx2 -mfma
  16. // #cgo avx2 CXXFLAGS: -mavx2 -mfma
  17. // #cgo cuda CFLAGS: -DGGML_USE_CUDA -DGGML_CUDA_DMMV_X=32 -DGGML_CUDA_PEER_MAX_BATCH_SIZE=128 -DGGML_CUDA_MMV_Y=1 -DGGML_BUILD=1
  18. // #cgo cuda CXXFLAGS: -DGGML_USE_CUDA -DGGML_CUDA_DMMV_X=32 -DGGML_CUDA_PEER_MAX_BATCH_SIZE=128 -DGGML_CUDA_MMV_Y=1 -DGGML_BUILD=1
  19. // #cgo rocm CFLAGS: -DGGML_USE_CUDA -DGGML_USE_HIPBLAS -DGGML_CUDA_DMMV_X=32 -DGGML_CUDA_PEER_MAX_BATCH_SIZE=128 -DGGML_CUDA_MMV_Y=1 -DGGML_BUILD=1
  20. // #cgo rocm CXXFLAGS: -DGGML_USE_CUDA -DGGML_USE_HIPBLAS -DGGML_CUDA_DMMV_X=32 -DGGML_CUDA_PEER_MAX_BATCH_SIZE=128 -DGGML_CUDA_MMV_Y=1 -DGGML_BUILD=1
  21. // #cgo rocm LDFLAGS: -L${SRCDIR} -lggml-hipblas -lhipblas -lamdhip64 -lrocblas
  22. // #cgo windows,cuda LDFLAGS: -L. -L"C:/Program Files/NVIDIA GPU Computing Toolkit/CUDA/v11.3/lib/x64" -lggml-cuda -lcuda -lcudart -lcublas -lcublasLt
  23. // #cgo windows,rocm LDFLAGS: -L. -L"C:/Program Files/AMD/ROCm/5.7/lib"
  24. // #cgo linux,cuda LDFLAGS: -L${SRCDIR} -L/usr/local/cuda/lib64 -lggml-cuda -lcuda -lcudart -lcublas -lcublasLt -lpthread -ldl -lrt
  25. // #cgo linux,rocm LDFLAGS: -L/opt/rocm/lib
  26. // #include <stdlib.h>
  27. // #include "llama.h"
  28. // #include "clip.h"
  29. // #include "llava.h"
  30. // #include "sampling_ext.h"
  31. import "C"
  32. import (
  33. "errors"
  34. "fmt"
  35. "runtime"
  36. "strings"
  37. "unsafe"
  38. )
  39. func BackendInit() {
  40. C.llama_backend_init()
  41. }
  42. func PrintSystemInfo() string {
  43. return C.GoString(C.llama_print_system_info())
  44. }
  45. type ContextParams struct {
  46. c C.struct_llama_context_params
  47. }
  48. func NewContextParams(numCtx int, threads int, flashAttention bool) ContextParams {
  49. params := C.llama_context_default_params()
  50. params.n_ctx = C.uint(numCtx)
  51. params.n_threads = C.uint(runtime.NumCPU())
  52. params.n_threads_batch = params.n_threads
  53. params.embeddings = C.bool(true)
  54. params.flash_attn = C.bool(flashAttention)
  55. params.n_threads = C.uint(threads)
  56. return ContextParams{c: params}
  57. }
  58. type ModelParams struct {
  59. c C.struct_llama_model_params
  60. }
  61. func NewModelParams(numGpuLayers int, mainGpu int) ModelParams {
  62. params := C.llama_model_default_params()
  63. params.n_gpu_layers = C.int(numGpuLayers)
  64. params.main_gpu = C.int32_t(mainGpu)
  65. return ModelParams{c: params}
  66. }
  67. type Context struct {
  68. c *C.struct_llama_context
  69. }
  70. func (c *Context) KvCacheClear() {
  71. C.llama_kv_cache_clear(c.c)
  72. }
  73. func (c *Context) Decode(batch Batch) error {
  74. // Positive return values does not mean a fatal error, but rather a warning.
  75. // 0 - success
  76. // 1 - could not find a KV slot for the batch (try reducing the size of the batch or increase the context)
  77. // < 0 - error
  78. code := int(C.llama_decode(c.c, batch.c))
  79. if code < 0 {
  80. return fmt.Errorf("llama_decode failed with code %d", code)
  81. }
  82. if code > 0 {
  83. return fmt.Errorf("could not find a KV slot for the batch - try reducing the size of the batch or increase the context. code: %d", code)
  84. }
  85. return nil
  86. }
  87. func (c *Context) Model() *Model {
  88. return &Model{c: C.llama_get_model(c.c)}
  89. }
  90. func (c *Context) GetLogitsIth(i int) []float32 {
  91. return unsafe.Slice((*float32)(unsafe.Pointer(C.llama_get_logits_ith(c.c, C.int(i)))), c.Model().NumVocab())
  92. }
  93. func (c *Context) SampleTokenGreedy(logits []float32) int {
  94. candidates := (*C.struct_llama_token_data)(C.malloc(C.size_t(len(logits)) * C.size_t(unsafe.Sizeof(C.struct_llama_token_data{}))))
  95. defer C.free(unsafe.Pointer(candidates))
  96. for i, logit := range logits {
  97. ptr := (*C.struct_llama_token_data)(unsafe.Pointer(uintptr(unsafe.Pointer(candidates)) + uintptr(i)*unsafe.Sizeof(C.struct_llama_token_data{})))
  98. ptr.id = C.int(i)
  99. ptr.logit = C.float(logit)
  100. ptr.p = 0.0
  101. }
  102. return int(C.llama_sample_token_greedy(c.c, &C.llama_token_data_array{
  103. data: candidates,
  104. size: C.size_t(len(logits)),
  105. sorted: C.bool(false),
  106. }))
  107. }
  108. func (c *Context) KvCacheSeqRm(seqId int, p0 int, p1 int) bool {
  109. return bool(C.llama_kv_cache_seq_rm(c.c, C.int(seqId), C.int(p0), C.int(p1)))
  110. }
  111. // Get the embeddings for a sequence id
  112. func (c *Context) GetEmbeddingsSeq(seqId int) []float32 {
  113. embeddings := unsafe.Pointer(C.llama_get_embeddings_seq(c.c, C.int(seqId)))
  114. if embeddings == nil {
  115. return nil
  116. }
  117. return unsafe.Slice((*float32)(embeddings), c.Model().NEmbd())
  118. }
  119. func (c *Context) GetEmbeddingsIth(i int) []float32 {
  120. return unsafe.Slice((*float32)(unsafe.Pointer(C.llama_get_embeddings_ith(c.c, C.int32_t(i)))), c.Model().NEmbd())
  121. }
  122. func LoadModelFromFile(modelPath string, params ModelParams) *Model {
  123. return &Model{c: C.llama_load_model_from_file(C.CString(modelPath), params.c)}
  124. }
  125. func NewContextWithModel(model *Model, params ContextParams) *Context {
  126. return &Context{c: C.llama_new_context_with_model(model.c, params.c)}
  127. }
  128. func (m *Model) NumVocab() int {
  129. return int(C.llama_n_vocab(m.c))
  130. }
  131. func (m *Model) TokenIsEog(token int) bool {
  132. return bool(C.llama_token_is_eog(m.c, C.llama_token(token)))
  133. }
  134. func (m *Model) ApplyLoraFromFile(loraPath string, scale float32, baseModelPath string, threads int) error {
  135. cLoraPath := C.CString(loraPath)
  136. defer C.free(unsafe.Pointer(cLoraPath))
  137. var cBaseModelPath *C.char
  138. if baseModelPath != "" {
  139. cBaseModelPath = C.CString(baseModelPath)
  140. }
  141. code := int(C.llama_model_apply_lora_from_file(m.c, cLoraPath, C.float(scale), cBaseModelPath, C.int32_t(threads)))
  142. if code != 0 {
  143. return errors.New("error applying lora from file")
  144. }
  145. return nil
  146. }
  147. type Batch struct {
  148. c C.struct_llama_batch
  149. }
  150. func NewBatch(nTokens int, embd int, maxSeq int) Batch {
  151. return Batch{c: C.llama_batch_init(C.int(nTokens), C.int(embd), C.int(maxSeq))}
  152. }
  153. func (b *Batch) NumTokens() int {
  154. return int(b.c.n_tokens)
  155. }
  156. // Add adds a token to the batch with the given position for the given
  157. // sequence ids, and optionally instructs to include logits.
  158. func (b *Batch) Add(token int, pos int, seqIds []int, logits bool) {
  159. unsafe.Slice(b.c.token, 512)[b.c.n_tokens] = C.llama_token(token)
  160. unsafe.Slice(b.c.pos, 512)[b.c.n_tokens] = C.llama_pos(pos)
  161. unsafe.Slice(b.c.n_seq_id, 512)[b.c.n_tokens] = C.int(len(seqIds))
  162. for i, s := range seqIds {
  163. unsafe.Slice((unsafe.Slice(b.c.seq_id, 512)[b.c.n_tokens]), C.int(len(seqIds)))[i] = C.int32_t(s)
  164. }
  165. if logits {
  166. unsafe.Slice(b.c.logits, 512)[b.c.n_tokens] = 1
  167. }
  168. b.c.n_tokens += 1
  169. }
  170. func (b *Batch) Clear() {
  171. b.c.n_tokens = 0
  172. }
  173. func (b *Batch) Free() {
  174. C.llama_batch_free(b.c)
  175. }
  176. func BatchGetOne(tokens []int, pos0 int, seqId int) Batch {
  177. return Batch{c: C.llama_batch_get_one((*C.int)(unsafe.Pointer(&tokens[0])), C.int32_t(len(tokens)), C.int(pos0), C.int(seqId))}
  178. }
  179. type Model struct {
  180. c *C.struct_llama_model
  181. }
  182. func (m *Model) TokenToPiece(token int) string {
  183. buf := make([]byte, 12)
  184. C.llama_token_to_piece(
  185. m.c,
  186. C.int32_t(token),
  187. (*C.char)(unsafe.Pointer(&buf[0])),
  188. C.int32_t(12),
  189. C.bool(true),
  190. )
  191. return strings.TrimRight(string(buf), "\x00")
  192. }
  193. func (m *Model) Tokenize(text string, maxTokens int, addSpecial bool, parseSpecial bool) ([]int, error) {
  194. cTokens := make([]C.llama_token, maxTokens)
  195. cText := C.CString(text)
  196. defer C.free(unsafe.Pointer(cText))
  197. result := C.llama_tokenize(
  198. m.c,
  199. cText,
  200. C.int32_t(len(text)),
  201. &cTokens[0],
  202. C.int32_t(maxTokens),
  203. C.bool(addSpecial),
  204. C.bool(parseSpecial),
  205. )
  206. if result < 0 {
  207. return nil, fmt.Errorf("tokenization failed, required %d tokens", -result)
  208. }
  209. tokens := make([]int, result)
  210. for i := 0; i < int(result); i++ {
  211. tokens[i] = int(cTokens[i])
  212. }
  213. return tokens, nil
  214. }
  215. func (m *Model) NEmbd() int {
  216. return int(C.llama_n_embd(m.c))
  217. }
  218. func Quantize(infile, outfile string, ftype uint32) error {
  219. cinfile := C.CString(infile)
  220. defer C.free(unsafe.Pointer(cinfile))
  221. coutfile := C.CString(outfile)
  222. defer C.free(unsafe.Pointer(coutfile))
  223. params := C.llama_model_quantize_default_params()
  224. params.nthread = -1
  225. params.ftype = ftype
  226. if rc := C.llama_model_quantize(cinfile, coutfile, &params); rc != 0 {
  227. return fmt.Errorf("llama_model_quantize: %d", rc)
  228. }
  229. return nil
  230. }
  231. // llava
  232. type ClipContext struct {
  233. c *C.struct_clip_ctx
  234. }
  235. func NewClipContext(modelPath string) *ClipContext {
  236. mp := C.CString(modelPath)
  237. defer C.free(unsafe.Pointer(mp))
  238. cc := C.clip_model_load(mp, 1)
  239. return &ClipContext{c: cc}
  240. }
  241. type LlavaContext struct {
  242. c *C.struct_llava_context
  243. }
  244. type LlavaImageEmbed struct {
  245. c *C.struct_llava_image_embed
  246. }
  247. func NewLlavaImageEmbed(clipContext *ClipContext, data []byte) *LlavaImageEmbed {
  248. return &LlavaImageEmbed{c: C.llava_image_embed_make_with_bytes(clipContext.c, C.int(runtime.NumCPU()), (*C.uchar)(unsafe.Pointer(&data[0])), C.int(len(data)))}
  249. }
  250. func LlavaEvalImageEmbed(llamaContext *Context, embed *LlavaImageEmbed, nBatch int, nPast *int) {
  251. C.llava_eval_image_embed(llamaContext.c, embed.c, C.int(nBatch), (*C.int)(unsafe.Pointer(nPast)))
  252. }
  253. // sampling
  254. // TODO: this is a temporary wrapper to allow calling C++ code from CGo
  255. type SamplingContext struct {
  256. c *C.struct_llama_sampling_context
  257. }
  258. type SamplingParams struct {
  259. TopK int
  260. TopP float32
  261. TfsZ float32
  262. TypicalP float32
  263. Temp float32
  264. PenaltyRepeat float32
  265. PenaltyFreq float32
  266. PenaltyPresent float32
  267. Mirostat int
  268. MirostatTau float32
  269. MirostatEta float32
  270. PenalizeNl bool
  271. Seed uint32
  272. Grammar string
  273. }
  274. func NewSamplingContext(params SamplingParams) *SamplingContext {
  275. var cparams C.struct_llama_sampling_cparams
  276. cparams.top_k = C.int32_t(params.TopK)
  277. cparams.top_p = C.float(params.TopP)
  278. cparams.tfs_z = C.float(params.TfsZ)
  279. cparams.typical_p = C.float(params.TypicalP)
  280. cparams.temp = C.float(params.Temp)
  281. cparams.penalty_repeat = C.float(params.PenaltyRepeat)
  282. cparams.penalty_freq = C.float(params.PenaltyFreq)
  283. cparams.penalty_present = C.float(params.PenaltyFreq)
  284. cparams.mirostat = C.int32_t(params.Mirostat)
  285. cparams.mirostat_tau = C.float(params.MirostatTau)
  286. cparams.mirostat_eta = C.float(params.MirostatEta)
  287. cparams.penalize_nl = C.bool(params.PenalizeNl)
  288. cparams.seed = C.uint32_t(params.Seed)
  289. grammar := C.CString(params.Grammar)
  290. defer C.free(unsafe.Pointer(grammar))
  291. cparams.grammar = grammar
  292. return &SamplingContext{c: C.llama_sampling_cinit(&cparams)}
  293. }
  294. func (s *SamplingContext) Free() {
  295. C.llama_sampling_cfree(s.c)
  296. }
  297. func (s *SamplingContext) Reset() {
  298. C.llama_sampling_creset(s.c)
  299. }
  300. func (s *SamplingContext) Sample(ctxMain *Context, ctxConfig *Context, idx int) int {
  301. // TODO (jmorganca): handle nil for all args
  302. if ctxConfig == nil {
  303. return int(C.llama_sampling_csample(s.c, ctxMain.c, nil, C.int(idx)))
  304. }
  305. return int(C.llama_sampling_csample(s.c, ctxMain.c, ctxConfig.c, C.int(idx)))
  306. }
  307. func (s *SamplingContext) Accept(ctxMain *Context, id int, applyGrammar bool) {
  308. C.llama_sampling_caccept(s.c, ctxMain.c, C.llama_token(id), C.bool(applyGrammar))
  309. }