llama.go 6.7 KB

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  1. // MIT License
  2. // Copyright (c) 2023 go-skynet authors
  3. // Permission is hereby granted, free of charge, to any person obtaining a copy
  4. // of this software and associated documentation files (the "Software"), to deal
  5. // in the Software without restriction, including without limitation the rights
  6. // to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
  7. // copies of the Software, and to permit persons to whom the Software is
  8. // furnished to do so, subject to the following conditions:
  9. // The above copyright notice and this permission notice shall be included in all
  10. // copies or substantial portions of the Software.
  11. // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
  12. // IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
  13. // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
  14. // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
  15. // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
  16. // OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
  17. // SOFTWARE.
  18. //go:generate cmake -S . -B build
  19. //go:generate cmake --build build
  20. package llama
  21. // #cgo LDFLAGS: -Lbuild -lbinding -lllama -lm -lggml_static -lstdc++
  22. // #cgo CXXFLAGS: -std=c++11
  23. // #cgo darwin LDFLAGS: -framework Accelerate -framework Foundation -framework Metal -framework MetalKit -framework MetalPerformanceShaders
  24. // #include "binding/binding.h"
  25. import "C"
  26. import (
  27. "fmt"
  28. "strings"
  29. "sync"
  30. "unsafe"
  31. )
  32. type LLama struct {
  33. ctx unsafe.Pointer
  34. embeddings bool
  35. contextSize int
  36. }
  37. func New(model string, opts ...ModelOption) (*LLama, error) {
  38. mo := NewModelOptions(opts...)
  39. // TODO: free this pointer
  40. modelPath := C.CString(model)
  41. ctx := C.load_model(modelPath, C.int(mo.ContextSize), C.int(mo.Seed), C.bool(mo.F16Memory), C.bool(mo.MLock), C.bool(mo.Embeddings), C.bool(mo.MMap), C.bool(mo.LowVRAM), C.bool(mo.VocabOnly), C.int(mo.NGPULayers), C.int(mo.NBatch), C.CString(mo.MainGPU), C.CString(mo.TensorSplit), C.bool(mo.NUMA))
  42. if ctx == nil {
  43. return nil, fmt.Errorf("failed loading model")
  44. }
  45. ll := &LLama{ctx: ctx, contextSize: mo.ContextSize, embeddings: mo.Embeddings}
  46. return ll, nil
  47. }
  48. func (l *LLama) Free() {
  49. C.llama_binding_free_model(l.ctx)
  50. }
  51. func (l *LLama) Eval(text string, opts ...PredictOption) error {
  52. po := NewPredictOptions(opts...)
  53. input := C.CString(text)
  54. if po.Tokens == 0 {
  55. po.Tokens = 99999999
  56. }
  57. reverseCount := len(po.StopPrompts)
  58. reversePrompt := make([]*C.char, reverseCount)
  59. var pass **C.char
  60. for i, s := range po.StopPrompts {
  61. cs := C.CString(s)
  62. reversePrompt[i] = cs
  63. pass = &reversePrompt[0]
  64. }
  65. params := C.llama_allocate_params(input, C.int(po.Seed), C.int(po.Threads), C.int(po.Tokens), C.int(po.TopK),
  66. C.float(po.TopP), C.float(po.Temperature), C.float(po.Penalty), C.int(po.Repeat),
  67. C.bool(po.IgnoreEOS), C.bool(po.F16KV),
  68. C.int(po.Batch), C.int(po.NKeep), pass, C.int(reverseCount),
  69. C.float(po.TailFreeSamplingZ), C.float(po.TypicalP), C.float(po.FrequencyPenalty), C.float(po.PresencePenalty),
  70. C.int(po.Mirostat), C.float(po.MirostatETA), C.float(po.MirostatTAU), C.bool(po.PenalizeNL), C.CString(po.LogitBias),
  71. C.CString(po.PathPromptCache), C.bool(po.PromptCacheAll), C.bool(po.MLock), C.bool(po.MMap),
  72. C.CString(po.MainGPU), C.CString(po.TensorSplit),
  73. C.bool(po.PromptCacheRO),
  74. )
  75. ret := C.eval(params, l.ctx, input)
  76. if ret != 0 {
  77. return fmt.Errorf("inference failed")
  78. }
  79. C.llama_free_params(params)
  80. return nil
  81. }
  82. func (l *LLama) Predict(text string, opts ...PredictOption) (string, error) {
  83. po := NewPredictOptions(opts...)
  84. if po.TokenCallback != nil {
  85. setCallback(l.ctx, po.TokenCallback)
  86. }
  87. input := C.CString(text)
  88. if po.Tokens == 0 {
  89. po.Tokens = 99999999
  90. }
  91. out := make([]byte, po.Tokens)
  92. reverseCount := len(po.StopPrompts)
  93. reversePrompt := make([]*C.char, reverseCount)
  94. var pass **C.char
  95. for i, s := range po.StopPrompts {
  96. cs := C.CString(s)
  97. reversePrompt[i] = cs
  98. pass = &reversePrompt[0]
  99. }
  100. params := C.llama_allocate_params(input, C.int(po.Seed), C.int(po.Threads), C.int(po.Tokens), C.int(po.TopK),
  101. C.float(po.TopP), C.float(po.Temperature), C.float(po.Penalty), C.int(po.Repeat),
  102. C.bool(po.IgnoreEOS), C.bool(po.F16KV),
  103. C.int(po.Batch), C.int(po.NKeep), pass, C.int(reverseCount),
  104. C.float(po.TailFreeSamplingZ), C.float(po.TypicalP), C.float(po.FrequencyPenalty), C.float(po.PresencePenalty),
  105. C.int(po.Mirostat), C.float(po.MirostatETA), C.float(po.MirostatTAU), C.bool(po.PenalizeNL), C.CString(po.LogitBias),
  106. C.CString(po.PathPromptCache), C.bool(po.PromptCacheAll), C.bool(po.MLock), C.bool(po.MMap),
  107. C.CString(po.MainGPU), C.CString(po.TensorSplit),
  108. C.bool(po.PromptCacheRO),
  109. )
  110. ret := C.llama_predict(params, l.ctx, (*C.char)(unsafe.Pointer(&out[0])), C.bool(po.DebugMode))
  111. if ret != 0 {
  112. return "", fmt.Errorf("inference failed")
  113. }
  114. res := C.GoString((*C.char)(unsafe.Pointer(&out[0])))
  115. res = strings.TrimPrefix(res, " ")
  116. res = strings.TrimPrefix(res, text)
  117. res = strings.TrimPrefix(res, "\n")
  118. for _, s := range po.StopPrompts {
  119. res = strings.TrimRight(res, s)
  120. }
  121. C.llama_free_params(params)
  122. if po.TokenCallback != nil {
  123. setCallback(l.ctx, nil)
  124. }
  125. return res, nil
  126. }
  127. // CGo only allows us to use static calls from C to Go, we can't just dynamically pass in func's.
  128. // This is the next best thing, we register the callbacks in this map and call tokenCallback from
  129. // the C code. We also attach a finalizer to LLama, so it will unregister the callback when the
  130. // garbage collection frees it.
  131. // SetTokenCallback registers a callback for the individual tokens created when running Predict. It
  132. // will be called once for each token. The callback shall return true as long as the model should
  133. // continue predicting the next token. When the callback returns false the predictor will return.
  134. // The tokens are just converted into Go strings, they are not trimmed or otherwise changed. Also
  135. // the tokens may not be valid UTF-8.
  136. // Pass in nil to remove a callback.
  137. //
  138. // It is save to call this method while a prediction is running.
  139. func (l *LLama) SetTokenCallback(callback func(token string) bool) {
  140. setCallback(l.ctx, callback)
  141. }
  142. var (
  143. m sync.Mutex
  144. callbacks = map[uintptr]func(string) bool{}
  145. )
  146. //export tokenCallback
  147. func tokenCallback(statePtr unsafe.Pointer, token *C.char) bool {
  148. m.Lock()
  149. defer m.Unlock()
  150. if callback, ok := callbacks[uintptr(statePtr)]; ok {
  151. return callback(C.GoString(token))
  152. }
  153. return true
  154. }
  155. // setCallback can be used to register a token callback for LLama. Pass in a nil callback to
  156. // remove the callback.
  157. func setCallback(statePtr unsafe.Pointer, callback func(string) bool) {
  158. m.Lock()
  159. defer m.Unlock()
  160. if callback == nil {
  161. delete(callbacks, uintptr(statePtr))
  162. } else {
  163. callbacks[uintptr(statePtr)] = callback
  164. }
  165. }