gguf.go 9.7 KB

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  1. package llm
  2. import (
  3. "bytes"
  4. "encoding/binary"
  5. "fmt"
  6. "io"
  7. "github.com/jmorganca/ollama/format"
  8. )
  9. type containerGGUF struct {
  10. bo binary.ByteOrder
  11. Version uint32
  12. V1 struct {
  13. NumTensor uint32
  14. NumKV uint32
  15. }
  16. V2 struct {
  17. NumTensor uint64
  18. NumKV uint64
  19. }
  20. }
  21. func (c *containerGGUF) Name() string {
  22. return "gguf"
  23. }
  24. func (c *containerGGUF) Decode(rso *readSeekOffset) (model, error) {
  25. binary.Read(rso, c.bo, &c.Version)
  26. switch c.Version {
  27. case 1:
  28. binary.Read(rso, c.bo, &c.V1)
  29. default:
  30. binary.Read(rso, c.bo, &c.V2)
  31. }
  32. model := newGGUFModel(c)
  33. if err := model.Decode(rso); err != nil {
  34. return nil, err
  35. }
  36. return model, nil
  37. }
  38. const (
  39. ggufTypeUint8 uint32 = iota
  40. ggufTypeInt8
  41. ggufTypeUint16
  42. ggufTypeInt16
  43. ggufTypeUint32
  44. ggufTypeInt32
  45. ggufTypeFloat32
  46. ggufTypeBool
  47. ggufTypeString
  48. ggufTypeArray
  49. ggufTypeUint64
  50. ggufTypeInt64
  51. ggufTypeFloat64
  52. )
  53. type kv map[string]any
  54. type tensor struct {
  55. name string
  56. kind uint32
  57. offset uint64
  58. // shape is the number of elements in each dimension
  59. shape [4]uint64
  60. }
  61. func (t tensor) blockSize() uint64 {
  62. switch {
  63. case t.kind < 2:
  64. return 1
  65. case t.kind < 10:
  66. return 32
  67. default:
  68. return 256
  69. }
  70. }
  71. func (t tensor) typeSize() uint64 {
  72. blockSize := t.blockSize()
  73. switch t.kind {
  74. case 0: // FP32
  75. return 4
  76. case 1: // FP16
  77. return 2
  78. case 2: // Q4_0
  79. return 2 + blockSize/2
  80. case 3: // Q4_1
  81. return 2 + 2 + blockSize/2
  82. case 6: // Q5_0
  83. return 2 + 4 + blockSize/2
  84. case 7: // Q5_1
  85. return 2 + 2 + 4 + blockSize/2
  86. case 8: // Q8_0
  87. return 2 + blockSize
  88. case 9: // Q8_1
  89. return 4 + 4 + blockSize
  90. case 10: // Q2_K
  91. return blockSize/16 + blockSize/4 + 2 + 2
  92. case 11: // Q3_K
  93. return blockSize/8 + blockSize/4 + 12 + 2
  94. case 12: // Q4_K
  95. return 2 + 2 + 12 + blockSize/2
  96. case 13: // Q5_K
  97. return 2 + 2 + 12 + blockSize/8 + blockSize/2
  98. case 14: // Q6_K
  99. return blockSize/2 + blockSize/4 + blockSize/16 + 2
  100. case 15: // Q8_K
  101. return 2 + blockSize + 2*blockSize/16
  102. case 16: // IQ2_XXS
  103. return 2 + 2*blockSize/8
  104. case 17: // IQ2_XS
  105. return 2 + 2*blockSize/8 + blockSize/32
  106. case 18: // IQ3_XXS
  107. return 2 + 3*blockSize/8
  108. default:
  109. return 0
  110. }
  111. }
  112. func (t tensor) parameters() uint64 {
  113. return t.shape[0] * t.shape[1] * t.shape[2] * t.shape[3]
  114. }
  115. func (t tensor) size() uint64 {
  116. return t.parameters() * t.typeSize() / t.blockSize()
  117. }
  118. type ggufModel struct {
  119. *containerGGUF
  120. kv
  121. tensors []tensor
  122. parameters uint64
  123. }
  124. func newGGUFModel(container *containerGGUF) *ggufModel {
  125. return &ggufModel{
  126. containerGGUF: container,
  127. kv: make(kv),
  128. }
  129. }
  130. func (llm *ggufModel) NumTensor() uint64 {
  131. if llm.Version == 1 {
  132. return uint64(llm.V1.NumTensor)
  133. }
  134. return llm.V2.NumTensor
  135. }
  136. func (llm *ggufModel) NumKV() uint64 {
  137. if llm.Version == 1 {
  138. return uint64(llm.V1.NumKV)
  139. }
  140. return llm.V2.NumKV
  141. }
  142. func (llm *ggufModel) ModelFamily() string {
  143. if t, ok := llm.kv["general.architecture"].(string); ok {
  144. return t
  145. }
  146. return "unknown"
  147. }
  148. func (llm *ggufModel) ModelType() string {
  149. if llm.parameters > 0 {
  150. return format.HumanNumber(llm.parameters)
  151. }
  152. return "unknown"
  153. }
  154. func (llm *ggufModel) FileType() string {
  155. if t, ok := llm.kv["general.file_type"].(uint32); ok {
  156. return fileType(t)
  157. }
  158. return "unknown"
  159. }
  160. func (llm *ggufModel) Decode(rso *readSeekOffset) error {
  161. // decode key-values
  162. for i := 0; uint64(i) < llm.NumKV(); i++ {
  163. k, err := llm.readString(rso)
  164. if err != nil {
  165. return err
  166. }
  167. vtype := llm.readU32(rso)
  168. var v any
  169. switch vtype {
  170. case ggufTypeUint8:
  171. v = llm.readU8(rso)
  172. case ggufTypeInt8:
  173. v = llm.readI8(rso)
  174. case ggufTypeUint16:
  175. v = llm.readU16(rso)
  176. case ggufTypeInt16:
  177. v = llm.readI16(rso)
  178. case ggufTypeUint32:
  179. v = llm.readU32(rso)
  180. case ggufTypeInt32:
  181. v = llm.readI32(rso)
  182. case ggufTypeUint64:
  183. v = llm.readU64(rso)
  184. case ggufTypeInt64:
  185. v = llm.readI64(rso)
  186. case ggufTypeFloat32:
  187. v = llm.readF32(rso)
  188. case ggufTypeFloat64:
  189. v = llm.readF64(rso)
  190. case ggufTypeBool:
  191. v = llm.readBool(rso)
  192. case ggufTypeString:
  193. s, err := llm.readString(rso)
  194. if err != nil {
  195. return err
  196. }
  197. v = s
  198. case ggufTypeArray:
  199. a, err := llm.readArray(rso)
  200. if err != nil {
  201. return err
  202. }
  203. v = a
  204. default:
  205. return fmt.Errorf("invalid type: %d", vtype)
  206. }
  207. llm.kv[k] = v
  208. }
  209. // decode tensors
  210. for i := 0; uint64(i) < llm.NumTensor(); i++ {
  211. name, err := llm.readString(rso)
  212. if err != nil {
  213. return err
  214. }
  215. // dims is the number of dimensions in the tensor
  216. dims := llm.readU32(rso)
  217. shape := [4]uint64{1, 1, 1, 1}
  218. for i := 0; uint32(i) < dims; i++ {
  219. shape[i] = llm.readU64(rso)
  220. }
  221. tensor := tensor{
  222. name: name,
  223. kind: llm.readU32(rso),
  224. offset: llm.readU64(rso),
  225. shape: shape,
  226. }
  227. llm.tensors = append(llm.tensors, tensor)
  228. llm.parameters += tensor.parameters()
  229. }
  230. alignment, ok := llm.kv["general.alignment"].(uint32)
  231. if !ok {
  232. alignment = 32
  233. }
  234. rso.Seek(int64(alignment)-rso.offset%int64(alignment), io.SeekCurrent)
  235. for _, tensor := range llm.tensors {
  236. padded := (int64(tensor.size()) + int64(alignment) - 1) & ^(int64(alignment) - 1)
  237. rso.Seek(padded, io.SeekCurrent)
  238. }
  239. return nil
  240. }
  241. func (llm *ggufModel) NumLayers() uint32 {
  242. value, exists := llm.kv[fmt.Sprintf("%s.block_count", llm.ModelFamily())]
  243. if !exists {
  244. return 0
  245. }
  246. return value.(uint32)
  247. }
  248. func (llm *ggufModel) NumHead() uint32 {
  249. value, exists := llm.kv[fmt.Sprintf("%s.attention.head_count", llm.ModelFamily())]
  250. if !exists {
  251. return 0
  252. }
  253. return value.(uint32)
  254. }
  255. func (llm *ggufModel) NumEmbed() uint32 {
  256. value, exists := llm.kv[fmt.Sprintf("%s.embedding_length", llm.ModelFamily())]
  257. if !exists {
  258. return 0
  259. }
  260. return value.(uint32)
  261. }
  262. func (llm *ggufModel) NumHeadKv() uint32 {
  263. value, exists := llm.kv[fmt.Sprintf("%s.attention.head_count_kv", llm.ModelFamily())]
  264. if !exists {
  265. return 0
  266. }
  267. return value.(uint32)
  268. }
  269. func (llm *ggufModel) NumCtx() uint32 {
  270. value, exists := llm.kv[fmt.Sprintf("%s.context_length", llm.ModelFamily())]
  271. if !exists {
  272. return 0
  273. }
  274. return value.(uint32)
  275. }
  276. func (llm *ggufModel) NumGQA() uint32 {
  277. numHeadKv := llm.NumHeadKv()
  278. if numHeadKv == 0 {
  279. return 0
  280. }
  281. return llm.NumHead() / numHeadKv
  282. }
  283. func (llm ggufModel) readU8(r io.Reader) uint8 {
  284. var u8 uint8
  285. binary.Read(r, llm.bo, &u8)
  286. return u8
  287. }
  288. func (llm ggufModel) readI8(r io.Reader) int8 {
  289. var i8 int8
  290. binary.Read(r, llm.bo, &i8)
  291. return i8
  292. }
  293. func (llm ggufModel) readU16(r io.Reader) uint16 {
  294. var u16 uint16
  295. binary.Read(r, llm.bo, &u16)
  296. return u16
  297. }
  298. func (llm ggufModel) readI16(r io.Reader) int16 {
  299. var i16 int16
  300. binary.Read(r, llm.bo, &i16)
  301. return i16
  302. }
  303. func (llm ggufModel) readU32(r io.Reader) uint32 {
  304. var u32 uint32
  305. binary.Read(r, llm.bo, &u32)
  306. return u32
  307. }
  308. func (llm ggufModel) readI32(r io.Reader) int32 {
  309. var i32 int32
  310. binary.Read(r, llm.bo, &i32)
  311. return i32
  312. }
  313. func (llm ggufModel) readU64(r io.Reader) uint64 {
  314. var u64 uint64
  315. binary.Read(r, llm.bo, &u64)
  316. return u64
  317. }
  318. func (llm ggufModel) readI64(r io.Reader) int64 {
  319. var i64 int64
  320. binary.Read(r, llm.bo, &i64)
  321. return i64
  322. }
  323. func (llm ggufModel) readF32(r io.Reader) float32 {
  324. var f32 float32
  325. binary.Read(r, llm.bo, &f32)
  326. return f32
  327. }
  328. func (llm ggufModel) readF64(r io.Reader) float64 {
  329. var f64 float64
  330. binary.Read(r, llm.bo, &f64)
  331. return f64
  332. }
  333. func (llm ggufModel) readBool(r io.Reader) bool {
  334. var b bool
  335. binary.Read(r, llm.bo, &b)
  336. return b
  337. }
  338. func (llm ggufModel) readStringV1(r io.Reader) (string, error) {
  339. var nameLength uint32
  340. binary.Read(r, llm.bo, &nameLength)
  341. var b bytes.Buffer
  342. if _, err := io.CopyN(&b, r, int64(nameLength)); err != nil {
  343. return "", err
  344. }
  345. // gguf v1 strings are null-terminated
  346. b.Truncate(b.Len() - 1)
  347. return b.String(), nil
  348. }
  349. func (llm ggufModel) readString(r io.Reader) (string, error) {
  350. if llm.Version == 1 {
  351. return llm.readStringV1(r)
  352. }
  353. var nameLength uint64
  354. binary.Read(r, llm.bo, &nameLength)
  355. var b bytes.Buffer
  356. if _, err := io.CopyN(&b, r, int64(nameLength)); err != nil {
  357. return "", err
  358. }
  359. return b.String(), nil
  360. }
  361. func (llm *ggufModel) readArrayV1(r io.Reader) (arr []any, err error) {
  362. atype := llm.readU32(r)
  363. n := llm.readU32(r)
  364. for i := 0; uint32(i) < n; i++ {
  365. switch atype {
  366. case ggufTypeUint8:
  367. arr = append(arr, llm.readU8(r))
  368. case ggufTypeInt8:
  369. arr = append(arr, llm.readI8(r))
  370. case ggufTypeUint16:
  371. arr = append(arr, llm.readU16(r))
  372. case ggufTypeInt16:
  373. arr = append(arr, llm.readI16(r))
  374. case ggufTypeUint32:
  375. arr = append(arr, llm.readU32(r))
  376. case ggufTypeInt32:
  377. arr = append(arr, llm.readI32(r))
  378. case ggufTypeFloat32:
  379. arr = append(arr, llm.readF32(r))
  380. case ggufTypeBool:
  381. arr = append(arr, llm.readBool(r))
  382. case ggufTypeString:
  383. s, err := llm.readStringV1(r)
  384. if err != nil {
  385. return nil, err
  386. }
  387. arr = append(arr, s)
  388. default:
  389. return nil, fmt.Errorf("invalid array type: %d", atype)
  390. }
  391. }
  392. return
  393. }
  394. func (llm *ggufModel) readArray(r io.Reader) (arr []any, err error) {
  395. if llm.Version == 1 {
  396. return llm.readArrayV1(r)
  397. }
  398. atype := llm.readU32(r)
  399. n := llm.readU64(r)
  400. for i := 0; uint64(i) < n; i++ {
  401. switch atype {
  402. case ggufTypeUint8:
  403. arr = append(arr, llm.readU8(r))
  404. case ggufTypeInt8:
  405. arr = append(arr, llm.readI8(r))
  406. case ggufTypeUint16:
  407. arr = append(arr, llm.readU16(r))
  408. case ggufTypeInt16:
  409. arr = append(arr, llm.readI16(r))
  410. case ggufTypeUint32:
  411. arr = append(arr, llm.readU32(r))
  412. case ggufTypeInt32:
  413. arr = append(arr, llm.readI32(r))
  414. case ggufTypeUint64:
  415. arr = append(arr, llm.readU64(r))
  416. case ggufTypeInt64:
  417. arr = append(arr, llm.readI64(r))
  418. case ggufTypeFloat32:
  419. arr = append(arr, llm.readF32(r))
  420. case ggufTypeFloat64:
  421. arr = append(arr, llm.readF64(r))
  422. case ggufTypeBool:
  423. arr = append(arr, llm.readBool(r))
  424. case ggufTypeString:
  425. s, err := llm.readString(r)
  426. if err != nil {
  427. return nil, err
  428. }
  429. arr = append(arr, s)
  430. default:
  431. return nil, fmt.Errorf("invalid array type: %d", atype)
  432. }
  433. }
  434. return
  435. }