ggml.h 69 KB

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  1. #pragma once
  2. //
  3. // GGML Tensor Library
  4. //
  5. // This documentation is still a work in progress.
  6. // If you wish some specific topics to be covered, feel free to drop a comment:
  7. //
  8. // https://github.com/ggerganov/whisper.cpp/issues/40
  9. //
  10. // ## Overview
  11. //
  12. // This library implements:
  13. //
  14. // - a set of tensor operations
  15. // - automatic differentiation
  16. // - basic optimization algorithms
  17. //
  18. // The aim of this library is to provide a minimalistic approach for various machine learning tasks. This includes,
  19. // but is not limited to, the following:
  20. //
  21. // - linear regression
  22. // - support vector machines
  23. // - neural networks
  24. //
  25. // The library allows the user to define a certain function using the available tensor operations. This function
  26. // definition is represented internally via a computation graph. Each tensor operation in the function definition
  27. // corresponds to a node in the graph. Having the computation graph defined, the user can choose to compute the
  28. // function's value and/or its gradient with respect to the input variables. Optionally, the function can be optimized
  29. // using one of the available optimization algorithms.
  30. //
  31. // For example, here we define the function: f(x) = a*x^2 + b
  32. //
  33. // {
  34. // struct ggml_init_params params = {
  35. // .mem_size = 16*1024*1024,
  36. // .mem_buffer = NULL,
  37. // };
  38. //
  39. // // memory allocation happens here
  40. // struct ggml_context * ctx = ggml_init(params);
  41. //
  42. // struct ggml_tensor * x = ggml_new_tensor_1d(ctx, GGML_TYPE_F32, 1);
  43. //
  44. // ggml_set_param(ctx, x); // x is an input variable
  45. //
  46. // struct ggml_tensor * a = ggml_new_tensor_1d(ctx, GGML_TYPE_F32, 1);
  47. // struct ggml_tensor * b = ggml_new_tensor_1d(ctx, GGML_TYPE_F32, 1);
  48. // struct ggml_tensor * x2 = ggml_mul(ctx, x, x);
  49. // struct ggml_tensor * f = ggml_add(ctx, ggml_mul(ctx, a, x2), b);
  50. //
  51. // ...
  52. // }
  53. //
  54. // Notice that the function definition above does not involve any actual computation. The computation is performed only
  55. // when the user explicitly requests it. For example, to compute the function's value at x = 2.0:
  56. //
  57. // {
  58. // ...
  59. //
  60. // struct ggml_cgraph gf = ggml_build_forward(f);
  61. //
  62. // // set the input variable and parameter values
  63. // ggml_set_f32(x, 2.0f);
  64. // ggml_set_f32(a, 3.0f);
  65. // ggml_set_f32(b, 4.0f);
  66. //
  67. // ggml_graph_compute_with_ctx(ctx, &gf, n_threads);
  68. //
  69. // printf("f = %f\n", ggml_get_f32_1d(f, 0));
  70. //
  71. // ...
  72. // }
  73. //
  74. // The actual computation is performed in the ggml_graph_compute() function.
  75. //
  76. // The ggml_new_tensor_...() functions create new tensors. They are allocated in the memory buffer provided to the
  77. // ggml_init() function. You have to be careful not to exceed the memory buffer size. Therefore, you have to know
  78. // in advance how much memory you need for your computation. Alternatively, you can allocate a large enough memory
  79. // and after defining the computation graph, call the ggml_used_mem() function to find out how much memory was
  80. // actually needed.
  81. //
  82. // The ggml_set_param() function marks a tensor as an input variable. This is used by the automatic
  83. // differentiation and optimization algorithms.
  84. //
  85. // The described approach allows to define the function graph once and then compute its forward or backward graphs
  86. // multiple times. All computations will use the same memory buffer allocated in the ggml_init() function. This way
  87. // the user can avoid the memory allocation overhead at runtime.
  88. //
  89. // The library supports multi-dimensional tensors - up to 4 dimensions. The FP16 and FP32 data types are first class
  90. // citizens, but in theory the library can be extended to support FP8 and integer data types.
  91. //
  92. // Each tensor operation produces a new tensor. Initially the library was envisioned to support only the use of unary
  93. // and binary operations. Most of the available operations fall into one of these two categories. With time, it became
  94. // clear that the library needs to support more complex operations. The way to support these operations is not clear
  95. // yet, but a few examples are demonstrated in the following operations:
  96. //
  97. // - ggml_permute()
  98. // - ggml_conv_1d_1s()
  99. // - ggml_conv_1d_2s()
  100. //
  101. // For each tensor operator, the library implements a forward and backward computation function. The forward function
  102. // computes the output tensor value given the input tensor values. The backward function computes the adjoint of the
  103. // input tensors given the adjoint of the output tensor. For a detailed explanation of what this means, take a
  104. // calculus class, or watch the following video:
  105. //
  106. // What is Automatic Differentiation?
  107. // https://www.youtube.com/watch?v=wG_nF1awSSY
  108. //
  109. //
  110. // ## Tensor data (struct ggml_tensor)
  111. //
  112. // The tensors are stored in memory via the ggml_tensor struct. The structure provides information about the size of
  113. // the tensor, the data type, and the memory buffer where the tensor data is stored. Additionally, it contains
  114. // pointers to the "source" tensors - i.e. the tensors that were used to compute the current tensor. For example:
  115. //
  116. // {
  117. // struct ggml_tensor * c = ggml_add(ctx, a, b);
  118. //
  119. // assert(c->src[0] == a);
  120. // assert(c->src[1] == b);
  121. // }
  122. //
  123. // The multi-dimensional tensors are stored in row-major order. The ggml_tensor struct contains fields for the
  124. // number of elements in each dimension ("ne") as well as the number of bytes ("nb", a.k.a. stride). This allows
  125. // to store tensors that are not contiguous in memory, which is useful for operations such as transposition and
  126. // permutation. All tensor operations have to take the stride into account and not assume that the tensor is
  127. // contiguous in memory.
  128. //
  129. // The data of the tensor is accessed via the "data" pointer. For example:
  130. //
  131. // {
  132. // struct ggml_tensor * a = ggml_new_tensor_2d(ctx, GGML_TYPE_F32, 2, 3);
  133. //
  134. // // a[2, 1] = 1.0f;
  135. // *(float *) ((char *) a->data + 2*a->nb[1] + 1*a->nb[0]) = 1.0f;
  136. //
  137. // // a[0, 2] = 2.0f;
  138. // *(float *) ((char *) a->data + 0*a->nb[1] + 2*a->nb[0]) = 2.0f;
  139. //
  140. // ...
  141. // }
  142. //
  143. // Alternatively, there are helper functions, such as ggml_get_f32_1d() and ggml_set_f32_1d() that can be used.
  144. //
  145. // ## The matrix multiplication operator (ggml_mul_mat)
  146. //
  147. // TODO
  148. //
  149. //
  150. // ## Multi-threading
  151. //
  152. // TODO
  153. //
  154. //
  155. // ## Overview of ggml.c
  156. //
  157. // TODO
  158. //
  159. //
  160. // ## SIMD optimizations
  161. //
  162. // TODO
  163. //
  164. //
  165. // ## Debugging ggml
  166. //
  167. // TODO
  168. //
  169. //
  170. #ifdef GGML_SHARED
  171. # if defined(_WIN32) && !defined(__MINGW32__)
  172. # ifdef GGML_BUILD
  173. # define GGML_API __declspec(dllexport)
  174. # else
  175. # define GGML_API __declspec(dllimport)
  176. # endif
  177. # else
  178. # define GGML_API __attribute__ ((visibility ("default")))
  179. # endif
  180. #else
  181. # define GGML_API
  182. #endif
  183. // TODO: support for clang
  184. #ifdef __GNUC__
  185. # define GGML_DEPRECATED(func, hint) func __attribute__((deprecated(hint)))
  186. #elif defined(_MSC_VER)
  187. # define GGML_DEPRECATED(func, hint) __declspec(deprecated(hint)) func
  188. #else
  189. # define GGML_DEPRECATED(func, hint) func
  190. #endif
  191. #include <stdint.h>
  192. #include <stddef.h>
  193. #include <stdbool.h>
  194. #define GGML_FILE_MAGIC 0x67676d6c // "ggml"
  195. #define GGML_FILE_VERSION 1
  196. #define GGML_QNT_VERSION 2 // bump this on quantization format changes
  197. #define GGML_QNT_VERSION_FACTOR 1000 // do not change this
  198. #define GGML_MAX_DIMS 4
  199. #define GGML_MAX_NODES 4096
  200. #define GGML_MAX_PARAMS 256
  201. #define GGML_MAX_CONTEXTS 64
  202. #define GGML_MAX_SRC 6
  203. #define GGML_MAX_NAME 64
  204. #define GGML_MAX_OP_PARAMS 32
  205. #define GGML_DEFAULT_N_THREADS 4
  206. #define GGML_EXIT_SUCCESS 0
  207. #define GGML_EXIT_ABORTED 1
  208. #define GGUF_MAGIC 0x46554747 // "GGUF"
  209. #define GGUF_VERSION 1
  210. #define GGUF_DEFAULT_ALIGNMENT 32
  211. #define GGML_UNUSED(x) (void)(x)
  212. #define GGML_PAD(x, n) (((x) + (n) - 1) & ~((n) - 1))
  213. #define GGML_ASSERT(x) \
  214. do { \
  215. if (!(x)) { \
  216. fprintf(stderr, "GGML_ASSERT: %s:%d: %s\n", __FILE__, __LINE__, #x); \
  217. abort(); \
  218. } \
  219. } while (0)
  220. // used to copy the number of elements and stride in bytes of tensors into local variables.
  221. // main purpose is to reduce code duplication and improve readability.
  222. //
  223. // example:
  224. //
  225. // GGML_TENSOR_LOCALS(int64_t, ne1, src1, ne);
  226. // GGML_TENSOR_LOCALS(size_t, nb1, src1, nb);
  227. //
  228. #define GGML_TENSOR_LOCALS_1(type, prefix, pointer, array) \
  229. const type prefix##0 = (pointer)->array[0]; \
  230. GGML_UNUSED(prefix##0);
  231. #define GGML_TENSOR_LOCALS_2(type, prefix, pointer, array) \
  232. GGML_TENSOR_LOCALS_1 (type, prefix, pointer, array) \
  233. const type prefix##1 = (pointer)->array[1]; \
  234. GGML_UNUSED(prefix##1);
  235. #define GGML_TENSOR_LOCALS_3(type, prefix, pointer, array) \
  236. GGML_TENSOR_LOCALS_2 (type, prefix, pointer, array) \
  237. const type prefix##2 = (pointer)->array[2]; \
  238. GGML_UNUSED(prefix##2);
  239. #define GGML_TENSOR_LOCALS(type, prefix, pointer, array) \
  240. GGML_TENSOR_LOCALS_3 (type, prefix, pointer, array) \
  241. const type prefix##3 = (pointer)->array[3]; \
  242. GGML_UNUSED(prefix##3);
  243. #ifdef __cplusplus
  244. extern "C" {
  245. #endif
  246. #if defined(__ARM_NEON) && defined(__CUDACC__)
  247. typedef half ggml_fp16_t;
  248. #elif defined(__ARM_NEON)
  249. typedef __fp16 ggml_fp16_t;
  250. #else
  251. typedef uint16_t ggml_fp16_t;
  252. #endif
  253. // convert FP16 <-> FP32
  254. GGML_API float ggml_fp16_to_fp32(ggml_fp16_t x);
  255. GGML_API ggml_fp16_t ggml_fp32_to_fp16(float x);
  256. GGML_API void ggml_fp16_to_fp32_row(const ggml_fp16_t * x, float * y, int n);
  257. GGML_API void ggml_fp32_to_fp16_row(const float * x, ggml_fp16_t * y, int n);
  258. struct ggml_object;
  259. struct ggml_context;
  260. enum ggml_type {
  261. GGML_TYPE_F32 = 0,
  262. GGML_TYPE_F16 = 1,
  263. GGML_TYPE_Q4_0 = 2,
  264. GGML_TYPE_Q4_1 = 3,
  265. // GGML_TYPE_Q4_2 = 4, support has been removed
  266. // GGML_TYPE_Q4_3 (5) support has been removed
  267. GGML_TYPE_Q5_0 = 6,
  268. GGML_TYPE_Q5_1 = 7,
  269. GGML_TYPE_Q8_0 = 8,
  270. GGML_TYPE_Q8_1 = 9,
  271. // k-quantizations
  272. GGML_TYPE_Q2_K = 10,
  273. GGML_TYPE_Q3_K = 11,
  274. GGML_TYPE_Q4_K = 12,
  275. GGML_TYPE_Q5_K = 13,
  276. GGML_TYPE_Q6_K = 14,
  277. GGML_TYPE_Q8_K = 15,
  278. GGML_TYPE_I8,
  279. GGML_TYPE_I16,
  280. GGML_TYPE_I32,
  281. GGML_TYPE_COUNT,
  282. };
  283. enum ggml_backend {
  284. GGML_BACKEND_CPU = 0,
  285. GGML_BACKEND_GPU = 10,
  286. GGML_BACKEND_GPU_SPLIT = 20,
  287. };
  288. // model file types
  289. enum ggml_ftype {
  290. GGML_FTYPE_UNKNOWN = -1,
  291. GGML_FTYPE_ALL_F32 = 0,
  292. GGML_FTYPE_MOSTLY_F16 = 1, // except 1d tensors
  293. GGML_FTYPE_MOSTLY_Q4_0 = 2, // except 1d tensors
  294. GGML_FTYPE_MOSTLY_Q4_1 = 3, // except 1d tensors
  295. GGML_FTYPE_MOSTLY_Q4_1_SOME_F16 = 4, // tok_embeddings.weight and output.weight are F16
  296. GGML_FTYPE_MOSTLY_Q8_0 = 7, // except 1d tensors
  297. GGML_FTYPE_MOSTLY_Q5_0 = 8, // except 1d tensors
  298. GGML_FTYPE_MOSTLY_Q5_1 = 9, // except 1d tensors
  299. GGML_FTYPE_MOSTLY_Q2_K = 10, // except 1d tensors
  300. GGML_FTYPE_MOSTLY_Q3_K = 11, // except 1d tensors
  301. GGML_FTYPE_MOSTLY_Q4_K = 12, // except 1d tensors
  302. GGML_FTYPE_MOSTLY_Q5_K = 13, // except 1d tensors
  303. GGML_FTYPE_MOSTLY_Q6_K = 14, // except 1d tensors
  304. };
  305. // available tensor operations:
  306. enum ggml_op {
  307. GGML_OP_NONE = 0,
  308. GGML_OP_DUP,
  309. GGML_OP_ADD,
  310. GGML_OP_ADD1,
  311. GGML_OP_ACC,
  312. GGML_OP_SUB,
  313. GGML_OP_MUL,
  314. GGML_OP_DIV,
  315. GGML_OP_SQR,
  316. GGML_OP_SQRT,
  317. GGML_OP_LOG,
  318. GGML_OP_SUM,
  319. GGML_OP_SUM_ROWS,
  320. GGML_OP_MEAN,
  321. GGML_OP_ARGMAX,
  322. GGML_OP_REPEAT,
  323. GGML_OP_REPEAT_BACK,
  324. GGML_OP_CONCAT,
  325. GGML_OP_SILU_BACK,
  326. GGML_OP_NORM, // normalize
  327. GGML_OP_RMS_NORM,
  328. GGML_OP_RMS_NORM_BACK,
  329. GGML_OP_GROUP_NORM,
  330. GGML_OP_MUL_MAT,
  331. GGML_OP_OUT_PROD,
  332. GGML_OP_SCALE,
  333. GGML_OP_SET,
  334. GGML_OP_CPY,
  335. GGML_OP_CONT,
  336. GGML_OP_RESHAPE,
  337. GGML_OP_VIEW,
  338. GGML_OP_PERMUTE,
  339. GGML_OP_TRANSPOSE,
  340. GGML_OP_GET_ROWS,
  341. GGML_OP_GET_ROWS_BACK,
  342. GGML_OP_DIAG,
  343. GGML_OP_DIAG_MASK_INF,
  344. GGML_OP_DIAG_MASK_ZERO,
  345. GGML_OP_SOFT_MAX,
  346. GGML_OP_SOFT_MAX_BACK,
  347. GGML_OP_ROPE,
  348. GGML_OP_ROPE_BACK,
  349. GGML_OP_ALIBI,
  350. GGML_OP_CLAMP,
  351. GGML_OP_CONV_1D,
  352. GGML_OP_CONV_2D,
  353. GGML_OP_CONV_TRANSPOSE_2D,
  354. GGML_OP_POOL_1D,
  355. GGML_OP_POOL_2D,
  356. GGML_OP_UPSCALE, // nearest interpolate
  357. GGML_OP_FLASH_ATTN,
  358. GGML_OP_FLASH_FF,
  359. GGML_OP_FLASH_ATTN_BACK,
  360. GGML_OP_WIN_PART,
  361. GGML_OP_WIN_UNPART,
  362. GGML_OP_GET_REL_POS,
  363. GGML_OP_ADD_REL_POS,
  364. GGML_OP_UNARY,
  365. GGML_OP_MAP_UNARY,
  366. GGML_OP_MAP_BINARY,
  367. GGML_OP_MAP_CUSTOM1_F32,
  368. GGML_OP_MAP_CUSTOM2_F32,
  369. GGML_OP_MAP_CUSTOM3_F32,
  370. GGML_OP_MAP_CUSTOM1,
  371. GGML_OP_MAP_CUSTOM2,
  372. GGML_OP_MAP_CUSTOM3,
  373. GGML_OP_CROSS_ENTROPY_LOSS,
  374. GGML_OP_CROSS_ENTROPY_LOSS_BACK,
  375. GGML_OP_COUNT,
  376. };
  377. enum ggml_unary_op {
  378. GGML_UNARY_OP_ABS,
  379. GGML_UNARY_OP_SGN,
  380. GGML_UNARY_OP_NEG,
  381. GGML_UNARY_OP_STEP,
  382. GGML_UNARY_OP_TANH,
  383. GGML_UNARY_OP_ELU,
  384. GGML_UNARY_OP_RELU,
  385. GGML_UNARY_OP_GELU,
  386. GGML_UNARY_OP_GELU_QUICK,
  387. GGML_UNARY_OP_SILU,
  388. };
  389. enum ggml_object_type {
  390. GGML_OBJECT_TENSOR,
  391. GGML_OBJECT_GRAPH,
  392. GGML_OBJECT_WORK_BUFFER
  393. };
  394. // ggml object
  395. struct ggml_object {
  396. size_t offs;
  397. size_t size;
  398. struct ggml_object * next;
  399. enum ggml_object_type type;
  400. char padding[4];
  401. };
  402. static const size_t GGML_OBJECT_SIZE = sizeof(struct ggml_object);
  403. // n-dimensional tensor
  404. struct ggml_tensor {
  405. enum ggml_type type;
  406. enum ggml_backend backend;
  407. int n_dims;
  408. int64_t ne[GGML_MAX_DIMS]; // number of elements
  409. size_t nb[GGML_MAX_DIMS]; // stride in bytes:
  410. // nb[0] = sizeof(type)
  411. // nb[1] = nb[0] * ne[0] + padding
  412. // nb[i] = nb[i-1] * ne[i-1]
  413. // compute data
  414. enum ggml_op op;
  415. // op params - allocated as int32_t for alignment
  416. int32_t op_params[GGML_MAX_OP_PARAMS / sizeof(int32_t)];
  417. bool is_param;
  418. struct ggml_tensor * grad;
  419. struct ggml_tensor * src[GGML_MAX_SRC];
  420. // performance
  421. int perf_runs;
  422. int64_t perf_cycles;
  423. int64_t perf_time_us;
  424. void * data;
  425. char name[GGML_MAX_NAME];
  426. void * extra; // extra things e.g. for ggml-cuda.cu
  427. char padding[4];
  428. };
  429. static const size_t GGML_TENSOR_SIZE = sizeof(struct ggml_tensor);
  430. // the compute plan that needs to be prepared for ggml_graph_compute()
  431. // since https://github.com/ggerganov/ggml/issues/287
  432. struct ggml_cplan {
  433. size_t work_size; // size of work buffer, calculated by `ggml_graph_plan()`
  434. uint8_t * work_data; // work buffer, to be allocated by caller before calling to `ggml_graph_compute()`
  435. int n_threads;
  436. // the `n_tasks` of nodes, 1:1 mapping to cgraph nodes
  437. int n_tasks[GGML_MAX_NODES];
  438. // abort ggml_graph_compute when true
  439. bool (*abort_callback)(void * data);
  440. void * abort_callback_data;
  441. };
  442. // next prime after GGML_MAX_NODES
  443. // #define GGML_GRAPH_HASHTABLE_SIZE 4099
  444. // next prime after GGML_MAX_NODES * 2 (nodes + leafs)
  445. #define GGML_GRAPH_HASHTABLE_SIZE 8273
  446. // computation graph
  447. struct ggml_cgraph {
  448. int n_nodes;
  449. int n_leafs;
  450. struct ggml_tensor * nodes[GGML_MAX_NODES];
  451. struct ggml_tensor * grads[GGML_MAX_NODES];
  452. struct ggml_tensor * leafs[GGML_MAX_NODES];
  453. void * visited_hash_table[GGML_GRAPH_HASHTABLE_SIZE];
  454. // performance
  455. int perf_runs;
  456. int64_t perf_cycles;
  457. int64_t perf_time_us;
  458. };
  459. static const size_t GGML_GRAPH_SIZE = sizeof(struct ggml_cgraph);
  460. // scratch buffer
  461. struct ggml_scratch {
  462. size_t offs;
  463. size_t size;
  464. void * data;
  465. };
  466. struct ggml_init_params {
  467. // memory pool
  468. size_t mem_size; // bytes
  469. void * mem_buffer; // if NULL, memory will be allocated internally
  470. bool no_alloc; // don't allocate memory for the tensor data
  471. };
  472. // compute types
  473. // NOTE: the INIT or FINALIZE pass is not scheduled unless explicitly enabled.
  474. // This behavior was changed since https://github.com/ggerganov/llama.cpp/pull/1995.
  475. enum ggml_task_type {
  476. GGML_TASK_INIT = 0,
  477. GGML_TASK_COMPUTE,
  478. GGML_TASK_FINALIZE,
  479. };
  480. struct ggml_compute_params {
  481. enum ggml_task_type type;
  482. // ith = thread index, nth = number of threads
  483. int ith, nth;
  484. // work buffer for all threads
  485. size_t wsize;
  486. void * wdata;
  487. };
  488. // misc
  489. GGML_API void ggml_time_init(void); // call this once at the beginning of the program
  490. GGML_API int64_t ggml_time_ms(void);
  491. GGML_API int64_t ggml_time_us(void);
  492. GGML_API int64_t ggml_cycles(void);
  493. GGML_API int64_t ggml_cycles_per_ms(void);
  494. GGML_API void ggml_numa_init(void); // call once for better performance on NUMA systems
  495. GGML_API bool ggml_is_numa(void); // true if init detected that system has >1 NUMA node
  496. GGML_API void ggml_print_object (const struct ggml_object * obj);
  497. GGML_API void ggml_print_objects(const struct ggml_context * ctx);
  498. GGML_API int64_t ggml_nelements (const struct ggml_tensor * tensor);
  499. GGML_API int64_t ggml_nrows (const struct ggml_tensor * tensor);
  500. GGML_API size_t ggml_nbytes (const struct ggml_tensor * tensor);
  501. GGML_API size_t ggml_nbytes_pad (const struct ggml_tensor * tensor); // same as ggml_nbytes() but padded to GGML_MEM_ALIGN
  502. GGML_API size_t ggml_nbytes_split(const struct ggml_tensor * tensor, int nrows_split);
  503. GGML_API int ggml_blck_size (enum ggml_type type);
  504. GGML_API size_t ggml_type_size (enum ggml_type type); // size in bytes for all elements in a block
  505. GGML_API float ggml_type_sizef(enum ggml_type type); // ggml_type_size()/ggml_blck_size() as float
  506. GGML_API const char * ggml_type_name(enum ggml_type type);
  507. GGML_API const char * ggml_op_name (enum ggml_op op);
  508. GGML_API const char * ggml_op_symbol(enum ggml_op op);
  509. GGML_API size_t ggml_element_size(const struct ggml_tensor * tensor);
  510. GGML_API bool ggml_is_quantized(enum ggml_type type);
  511. // TODO: temporary until model loading of ggml examples is refactored
  512. GGML_API enum ggml_type ggml_ftype_to_ggml_type(enum ggml_ftype ftype);
  513. GGML_API bool ggml_is_transposed(const struct ggml_tensor * tensor);
  514. GGML_API bool ggml_is_contiguous(const struct ggml_tensor * tensor);
  515. GGML_API bool ggml_is_permuted (const struct ggml_tensor * tensor);
  516. GGML_API bool ggml_are_same_shape(const struct ggml_tensor * t0, const struct ggml_tensor * t1);
  517. // use this to compute the memory overhead of a tensor
  518. GGML_API size_t ggml_tensor_overhead(void);
  519. // main
  520. GGML_API struct ggml_context * ggml_init(struct ggml_init_params params);
  521. GGML_API void ggml_free(struct ggml_context * ctx);
  522. GGML_API size_t ggml_used_mem(const struct ggml_context * ctx);
  523. GGML_API size_t ggml_set_scratch (struct ggml_context * ctx, struct ggml_scratch scratch);
  524. GGML_API bool ggml_get_no_alloc(struct ggml_context * ctx);
  525. GGML_API void ggml_set_no_alloc(struct ggml_context * ctx, bool no_alloc);
  526. GGML_API void * ggml_get_mem_buffer (const struct ggml_context * ctx);
  527. GGML_API size_t ggml_get_mem_size (const struct ggml_context * ctx);
  528. GGML_API size_t ggml_get_max_tensor_size(const struct ggml_context * ctx);
  529. GGML_API struct ggml_tensor * ggml_new_tensor(
  530. struct ggml_context * ctx,
  531. enum ggml_type type,
  532. int n_dims,
  533. const int64_t *ne);
  534. GGML_API struct ggml_tensor * ggml_new_tensor_1d(
  535. struct ggml_context * ctx,
  536. enum ggml_type type,
  537. int64_t ne0);
  538. GGML_API struct ggml_tensor * ggml_new_tensor_2d(
  539. struct ggml_context * ctx,
  540. enum ggml_type type,
  541. int64_t ne0,
  542. int64_t ne1);
  543. GGML_API struct ggml_tensor * ggml_new_tensor_3d(
  544. struct ggml_context * ctx,
  545. enum ggml_type type,
  546. int64_t ne0,
  547. int64_t ne1,
  548. int64_t ne2);
  549. GGML_API struct ggml_tensor * ggml_new_tensor_4d(
  550. struct ggml_context * ctx,
  551. enum ggml_type type,
  552. int64_t ne0,
  553. int64_t ne1,
  554. int64_t ne2,
  555. int64_t ne3);
  556. GGML_API struct ggml_tensor * ggml_new_i32(struct ggml_context * ctx, int32_t value);
  557. GGML_API struct ggml_tensor * ggml_new_f32(struct ggml_context * ctx, float value);
  558. GGML_API struct ggml_tensor * ggml_dup_tensor (struct ggml_context * ctx, const struct ggml_tensor * src);
  559. GGML_API struct ggml_tensor * ggml_view_tensor(struct ggml_context * ctx, const struct ggml_tensor * src);
  560. GGML_API struct ggml_tensor * ggml_get_tensor(struct ggml_context * ctx, const char * name);
  561. GGML_API struct ggml_tensor * ggml_set_zero(struct ggml_tensor * tensor);
  562. GGML_API struct ggml_tensor * ggml_set_i32 (struct ggml_tensor * tensor, int32_t value);
  563. GGML_API struct ggml_tensor * ggml_set_f32 (struct ggml_tensor * tensor, float value);
  564. GGML_API int32_t ggml_get_i32_1d(const struct ggml_tensor * tensor, int i);
  565. GGML_API void ggml_set_i32_1d(const struct ggml_tensor * tensor, int i, int32_t value);
  566. GGML_API float ggml_get_f32_1d(const struct ggml_tensor * tensor, int i);
  567. GGML_API void ggml_set_f32_1d(const struct ggml_tensor * tensor, int i, float value);
  568. GGML_API void * ggml_get_data (const struct ggml_tensor * tensor);
  569. GGML_API float * ggml_get_data_f32(const struct ggml_tensor * tensor);
  570. GGML_API enum ggml_unary_op ggml_get_unary_op(const struct ggml_tensor * tensor);
  571. GGML_API const char * ggml_get_name (const struct ggml_tensor * tensor);
  572. GGML_API struct ggml_tensor * ggml_set_name ( struct ggml_tensor * tensor, const char * name);
  573. GGML_API struct ggml_tensor * ggml_format_name( struct ggml_tensor * tensor, const char * fmt, ...);
  574. //
  575. // operations on tensors with backpropagation
  576. //
  577. GGML_API struct ggml_tensor * ggml_dup(
  578. struct ggml_context * ctx,
  579. struct ggml_tensor * a);
  580. // in-place, returns view(a)
  581. GGML_API struct ggml_tensor * ggml_dup_inplace(
  582. struct ggml_context * ctx,
  583. struct ggml_tensor * a);
  584. GGML_API struct ggml_tensor * ggml_add(
  585. struct ggml_context * ctx,
  586. struct ggml_tensor * a,
  587. struct ggml_tensor * b);
  588. GGML_API struct ggml_tensor * ggml_add_inplace(
  589. struct ggml_context * ctx,
  590. struct ggml_tensor * a,
  591. struct ggml_tensor * b);
  592. GGML_API struct ggml_tensor * ggml_add1(
  593. struct ggml_context * ctx,
  594. struct ggml_tensor * a,
  595. struct ggml_tensor * b);
  596. GGML_API struct ggml_tensor * ggml_add1_inplace(
  597. struct ggml_context * ctx,
  598. struct ggml_tensor * a,
  599. struct ggml_tensor * b);
  600. GGML_API struct ggml_tensor * ggml_acc(
  601. struct ggml_context * ctx,
  602. struct ggml_tensor * a,
  603. struct ggml_tensor * b,
  604. size_t nb1,
  605. size_t nb2,
  606. size_t nb3,
  607. size_t offset);
  608. GGML_API struct ggml_tensor * ggml_acc_inplace(
  609. struct ggml_context * ctx,
  610. struct ggml_tensor * a,
  611. struct ggml_tensor * b,
  612. size_t nb1,
  613. size_t nb2,
  614. size_t nb3,
  615. size_t offset);
  616. GGML_API struct ggml_tensor * ggml_sub(
  617. struct ggml_context * ctx,
  618. struct ggml_tensor * a,
  619. struct ggml_tensor * b);
  620. GGML_API struct ggml_tensor * ggml_sub_inplace(
  621. struct ggml_context * ctx,
  622. struct ggml_tensor * a,
  623. struct ggml_tensor * b);
  624. GGML_API struct ggml_tensor * ggml_mul(
  625. struct ggml_context * ctx,
  626. struct ggml_tensor * a,
  627. struct ggml_tensor * b);
  628. GGML_API struct ggml_tensor * ggml_mul_inplace(
  629. struct ggml_context * ctx,
  630. struct ggml_tensor * a,
  631. struct ggml_tensor * b);
  632. GGML_API struct ggml_tensor * ggml_div(
  633. struct ggml_context * ctx,
  634. struct ggml_tensor * a,
  635. struct ggml_tensor * b);
  636. GGML_API struct ggml_tensor * ggml_div_inplace(
  637. struct ggml_context * ctx,
  638. struct ggml_tensor * a,
  639. struct ggml_tensor * b);
  640. GGML_API struct ggml_tensor * ggml_sqr(
  641. struct ggml_context * ctx,
  642. struct ggml_tensor * a);
  643. GGML_API struct ggml_tensor * ggml_sqr_inplace(
  644. struct ggml_context * ctx,
  645. struct ggml_tensor * a);
  646. GGML_API struct ggml_tensor * ggml_sqrt(
  647. struct ggml_context * ctx,
  648. struct ggml_tensor * a);
  649. GGML_API struct ggml_tensor * ggml_sqrt_inplace(
  650. struct ggml_context * ctx,
  651. struct ggml_tensor * a);
  652. GGML_API struct ggml_tensor * ggml_log(
  653. struct ggml_context * ctx,
  654. struct ggml_tensor * a);
  655. GGML_API struct ggml_tensor * ggml_log_inplace(
  656. struct ggml_context * ctx,
  657. struct ggml_tensor * a);
  658. // return scalar
  659. GGML_API struct ggml_tensor * ggml_sum(
  660. struct ggml_context * ctx,
  661. struct ggml_tensor * a);
  662. // sums along rows, with input shape [a,b,c,d] return shape [1,b,c,d]
  663. GGML_API struct ggml_tensor * ggml_sum_rows(
  664. struct ggml_context * ctx,
  665. struct ggml_tensor * a);
  666. // mean along rows
  667. GGML_API struct ggml_tensor * ggml_mean(
  668. struct ggml_context * ctx,
  669. struct ggml_tensor * a);
  670. // argmax along rows
  671. GGML_API struct ggml_tensor * ggml_argmax(
  672. struct ggml_context * ctx,
  673. struct ggml_tensor * a);
  674. // if a is the same shape as b, and a is not parameter, return a
  675. // otherwise, return a new tensor: repeat(a) to fit in b
  676. GGML_API struct ggml_tensor * ggml_repeat(
  677. struct ggml_context * ctx,
  678. struct ggml_tensor * a,
  679. struct ggml_tensor * b);
  680. GGML_API struct ggml_tensor * ggml_repeat_back(
  681. struct ggml_context * ctx,
  682. struct ggml_tensor * a,
  683. struct ggml_tensor * b);
  684. // concat a and b on dim 2
  685. // used in stable-diffusion
  686. GGML_API struct ggml_tensor * ggml_concat(
  687. struct ggml_context * ctx,
  688. struct ggml_tensor * a,
  689. struct ggml_tensor * b);
  690. GGML_API struct ggml_tensor * ggml_abs(
  691. struct ggml_context * ctx,
  692. struct ggml_tensor * a);
  693. GGML_API struct ggml_tensor * ggml_abs_inplace(
  694. struct ggml_context * ctx,
  695. struct ggml_tensor * a);
  696. GGML_API struct ggml_tensor * ggml_sgn(
  697. struct ggml_context * ctx,
  698. struct ggml_tensor * a);
  699. GGML_API struct ggml_tensor * ggml_sgn_inplace(
  700. struct ggml_context * ctx,
  701. struct ggml_tensor * a);
  702. GGML_API struct ggml_tensor * ggml_neg(
  703. struct ggml_context * ctx,
  704. struct ggml_tensor * a);
  705. GGML_API struct ggml_tensor * ggml_neg_inplace(
  706. struct ggml_context * ctx,
  707. struct ggml_tensor * a);
  708. GGML_API struct ggml_tensor * ggml_step(
  709. struct ggml_context * ctx,
  710. struct ggml_tensor * a);
  711. GGML_API struct ggml_tensor * ggml_step_inplace(
  712. struct ggml_context * ctx,
  713. struct ggml_tensor * a);
  714. GGML_API struct ggml_tensor * ggml_tanh(
  715. struct ggml_context * ctx,
  716. struct ggml_tensor * a);
  717. GGML_API struct ggml_tensor * ggml_tanh_inplace(
  718. struct ggml_context * ctx,
  719. struct ggml_tensor * a);
  720. GGML_API struct ggml_tensor * ggml_elu(
  721. struct ggml_context * ctx,
  722. struct ggml_tensor * a);
  723. GGML_API struct ggml_tensor * ggml_elu_inplace(
  724. struct ggml_context * ctx,
  725. struct ggml_tensor * a);
  726. GGML_API struct ggml_tensor * ggml_relu(
  727. struct ggml_context * ctx,
  728. struct ggml_tensor * a);
  729. GGML_API struct ggml_tensor * ggml_relu_inplace(
  730. struct ggml_context * ctx,
  731. struct ggml_tensor * a);
  732. // TODO: double-check this computation is correct
  733. GGML_API struct ggml_tensor * ggml_gelu(
  734. struct ggml_context * ctx,
  735. struct ggml_tensor * a);
  736. GGML_API struct ggml_tensor * ggml_gelu_inplace(
  737. struct ggml_context * ctx,
  738. struct ggml_tensor * a);
  739. GGML_API struct ggml_tensor * ggml_gelu_quick(
  740. struct ggml_context * ctx,
  741. struct ggml_tensor * a);
  742. GGML_API struct ggml_tensor * ggml_gelu_quick_inplace(
  743. struct ggml_context * ctx,
  744. struct ggml_tensor * a);
  745. GGML_API struct ggml_tensor * ggml_silu(
  746. struct ggml_context * ctx,
  747. struct ggml_tensor * a);
  748. GGML_API struct ggml_tensor * ggml_silu_inplace(
  749. struct ggml_context * ctx,
  750. struct ggml_tensor * a);
  751. // a - x
  752. // b - dy
  753. GGML_API struct ggml_tensor * ggml_silu_back(
  754. struct ggml_context * ctx,
  755. struct ggml_tensor * a,
  756. struct ggml_tensor * b);
  757. // normalize along rows
  758. GGML_API struct ggml_tensor * ggml_norm(
  759. struct ggml_context * ctx,
  760. struct ggml_tensor * a,
  761. float eps);
  762. GGML_API struct ggml_tensor * ggml_norm_inplace(
  763. struct ggml_context * ctx,
  764. struct ggml_tensor * a,
  765. float eps);
  766. GGML_API struct ggml_tensor * ggml_rms_norm(
  767. struct ggml_context * ctx,
  768. struct ggml_tensor * a,
  769. float eps);
  770. GGML_API struct ggml_tensor * ggml_rms_norm_inplace(
  771. struct ggml_context * ctx,
  772. struct ggml_tensor * a,
  773. float eps);
  774. // group normalize along ne0*ne1*n_groups
  775. // used in stable-diffusion
  776. // TODO: eps is hardcoded to 1e-6 for now
  777. GGML_API struct ggml_tensor * ggml_group_norm(
  778. struct ggml_context * ctx,
  779. struct ggml_tensor * a,
  780. int n_groups);
  781. GGML_API struct ggml_tensor * ggml_group_norm_inplace(
  782. struct ggml_context * ctx,
  783. struct ggml_tensor * a,
  784. int n_groups);
  785. // a - x
  786. // b - dy
  787. // TODO: update with configurable eps
  788. GGML_API struct ggml_tensor * ggml_rms_norm_back(
  789. struct ggml_context * ctx,
  790. struct ggml_tensor * a,
  791. struct ggml_tensor * b);
  792. // A: n columns, m rows
  793. // B: n columns, p rows (i.e. we transpose it internally)
  794. // result is m columns, p rows
  795. GGML_API struct ggml_tensor * ggml_mul_mat(
  796. struct ggml_context * ctx,
  797. struct ggml_tensor * a,
  798. struct ggml_tensor * b);
  799. // A: m columns, n rows,
  800. // B: p columns, n rows,
  801. // result is m columns, p rows
  802. GGML_API struct ggml_tensor * ggml_out_prod(
  803. struct ggml_context * ctx,
  804. struct ggml_tensor * a,
  805. struct ggml_tensor * b);
  806. //
  807. // operations on tensors without backpropagation
  808. //
  809. GGML_API struct ggml_tensor * ggml_scale(
  810. struct ggml_context * ctx,
  811. struct ggml_tensor * a,
  812. struct ggml_tensor * b);
  813. // in-place, returns view(a)
  814. GGML_API struct ggml_tensor * ggml_scale_inplace(
  815. struct ggml_context * ctx,
  816. struct ggml_tensor * a,
  817. struct ggml_tensor * b);
  818. // b -> view(a,offset,nb1,nb2,3), return modified a
  819. GGML_API struct ggml_tensor * ggml_set(
  820. struct ggml_context * ctx,
  821. struct ggml_tensor * a,
  822. struct ggml_tensor * b,
  823. size_t nb1,
  824. size_t nb2,
  825. size_t nb3,
  826. size_t offset);
  827. // b -> view(a,offset,nb1,nb2,3), return view(a)
  828. GGML_API struct ggml_tensor * ggml_set_inplace(
  829. struct ggml_context * ctx,
  830. struct ggml_tensor * a,
  831. struct ggml_tensor * b,
  832. size_t nb1,
  833. size_t nb2,
  834. size_t nb3,
  835. size_t offset);
  836. GGML_API struct ggml_tensor * ggml_set_1d(
  837. struct ggml_context * ctx,
  838. struct ggml_tensor * a,
  839. struct ggml_tensor * b,
  840. size_t offset);
  841. GGML_API struct ggml_tensor * ggml_set_1d_inplace(
  842. struct ggml_context * ctx,
  843. struct ggml_tensor * a,
  844. struct ggml_tensor * b,
  845. size_t offset);
  846. // b -> view(a,offset,nb1,nb2,3), return modified a
  847. GGML_API struct ggml_tensor * ggml_set_2d(
  848. struct ggml_context * ctx,
  849. struct ggml_tensor * a,
  850. struct ggml_tensor * b,
  851. size_t nb1,
  852. size_t offset);
  853. // b -> view(a,offset,nb1,nb2,3), return view(a)
  854. GGML_API struct ggml_tensor * ggml_set_2d_inplace(
  855. struct ggml_context * ctx,
  856. struct ggml_tensor * a,
  857. struct ggml_tensor * b,
  858. size_t nb1,
  859. size_t offset);
  860. // a -> b, return view(b)
  861. GGML_API struct ggml_tensor * ggml_cpy(
  862. struct ggml_context * ctx,
  863. struct ggml_tensor * a,
  864. struct ggml_tensor * b);
  865. // a -> b, in-place, return view(b)
  866. GGML_API struct ggml_tensor * ggml_cpy_inplace(
  867. struct ggml_context * ctx,
  868. struct ggml_tensor * a,
  869. struct ggml_tensor * b);
  870. // make contiguous
  871. GGML_API struct ggml_tensor * ggml_cont(
  872. struct ggml_context * ctx,
  873. struct ggml_tensor * a);
  874. // make contiguous, in-place
  875. GGML_API struct ggml_tensor * ggml_cont_inplace(
  876. struct ggml_context * ctx,
  877. struct ggml_tensor * a);
  878. // return view(a), b specifies the new shape
  879. // TODO: when we start computing gradient, make a copy instead of view
  880. GGML_API struct ggml_tensor * ggml_reshape(
  881. struct ggml_context * ctx,
  882. struct ggml_tensor * a,
  883. struct ggml_tensor * b);
  884. // return view(a)
  885. // TODO: when we start computing gradient, make a copy instead of view
  886. GGML_API struct ggml_tensor * ggml_reshape_1d(
  887. struct ggml_context * ctx,
  888. struct ggml_tensor * a,
  889. int64_t ne0);
  890. GGML_API struct ggml_tensor * ggml_reshape_2d(
  891. struct ggml_context * ctx,
  892. struct ggml_tensor * a,
  893. int64_t ne0,
  894. int64_t ne1);
  895. // return view(a)
  896. // TODO: when we start computing gradient, make a copy instead of view
  897. GGML_API struct ggml_tensor * ggml_reshape_3d(
  898. struct ggml_context * ctx,
  899. struct ggml_tensor * a,
  900. int64_t ne0,
  901. int64_t ne1,
  902. int64_t ne2);
  903. GGML_API struct ggml_tensor * ggml_reshape_4d(
  904. struct ggml_context * ctx,
  905. struct ggml_tensor * a,
  906. int64_t ne0,
  907. int64_t ne1,
  908. int64_t ne2,
  909. int64_t ne3);
  910. // offset in bytes
  911. GGML_API struct ggml_tensor * ggml_view_1d(
  912. struct ggml_context * ctx,
  913. struct ggml_tensor * a,
  914. int64_t ne0,
  915. size_t offset);
  916. GGML_API struct ggml_tensor * ggml_view_2d(
  917. struct ggml_context * ctx,
  918. struct ggml_tensor * a,
  919. int64_t ne0,
  920. int64_t ne1,
  921. size_t nb1, // row stride in bytes
  922. size_t offset);
  923. GGML_API struct ggml_tensor * ggml_view_3d(
  924. struct ggml_context * ctx,
  925. struct ggml_tensor * a,
  926. int64_t ne0,
  927. int64_t ne1,
  928. int64_t ne2,
  929. size_t nb1, // row stride in bytes
  930. size_t nb2, // slice stride in bytes
  931. size_t offset);
  932. GGML_API struct ggml_tensor * ggml_view_4d(
  933. struct ggml_context * ctx,
  934. struct ggml_tensor * a,
  935. int64_t ne0,
  936. int64_t ne1,
  937. int64_t ne2,
  938. int64_t ne3,
  939. size_t nb1, // row stride in bytes
  940. size_t nb2, // slice stride in bytes
  941. size_t nb3,
  942. size_t offset);
  943. GGML_API struct ggml_tensor * ggml_permute(
  944. struct ggml_context * ctx,
  945. struct ggml_tensor * a,
  946. int axis0,
  947. int axis1,
  948. int axis2,
  949. int axis3);
  950. // alias for ggml_permute(ctx, a, 1, 0, 2, 3)
  951. GGML_API struct ggml_tensor * ggml_transpose(
  952. struct ggml_context * ctx,
  953. struct ggml_tensor * a);
  954. GGML_API struct ggml_tensor * ggml_get_rows(
  955. struct ggml_context * ctx,
  956. struct ggml_tensor * a,
  957. struct ggml_tensor * b);
  958. GGML_API struct ggml_tensor * ggml_get_rows_back(
  959. struct ggml_context * ctx,
  960. struct ggml_tensor * a,
  961. struct ggml_tensor * b,
  962. struct ggml_tensor * c);
  963. GGML_API struct ggml_tensor * ggml_diag(
  964. struct ggml_context * ctx,
  965. struct ggml_tensor * a);
  966. // set elements above the diagonal to -INF
  967. GGML_API struct ggml_tensor * ggml_diag_mask_inf(
  968. struct ggml_context * ctx,
  969. struct ggml_tensor * a,
  970. int n_past);
  971. // in-place, returns view(a)
  972. GGML_API struct ggml_tensor * ggml_diag_mask_inf_inplace(
  973. struct ggml_context * ctx,
  974. struct ggml_tensor * a,
  975. int n_past);
  976. // set elements above the diagonal to 0
  977. GGML_API struct ggml_tensor * ggml_diag_mask_zero(
  978. struct ggml_context * ctx,
  979. struct ggml_tensor * a,
  980. int n_past);
  981. // in-place, returns view(a)
  982. GGML_API struct ggml_tensor * ggml_diag_mask_zero_inplace(
  983. struct ggml_context * ctx,
  984. struct ggml_tensor * a,
  985. int n_past);
  986. GGML_API struct ggml_tensor * ggml_soft_max(
  987. struct ggml_context * ctx,
  988. struct ggml_tensor * a);
  989. // in-place, returns view(a)
  990. GGML_API struct ggml_tensor * ggml_soft_max_inplace(
  991. struct ggml_context * ctx,
  992. struct ggml_tensor * a);
  993. GGML_API struct ggml_tensor * ggml_soft_max_back(
  994. struct ggml_context * ctx,
  995. struct ggml_tensor * a,
  996. struct ggml_tensor * b);
  997. // in-place, returns view(a)
  998. GGML_API struct ggml_tensor * ggml_soft_max_back_inplace(
  999. struct ggml_context * ctx,
  1000. struct ggml_tensor * a,
  1001. struct ggml_tensor * b);
  1002. // rotary position embedding
  1003. // if mode & 1 == 1, skip n_past elements
  1004. // if mode & 2 == 1, GPT-NeoX style
  1005. // if mode & 4 == 1, ChatGLM style
  1006. // TODO: avoid creating a new tensor every time
  1007. GGML_API struct ggml_tensor * ggml_rope(
  1008. struct ggml_context * ctx,
  1009. struct ggml_tensor * a,
  1010. int n_past,
  1011. int n_dims,
  1012. int mode,
  1013. int n_ctx);
  1014. // in-place, returns view(a)
  1015. GGML_API struct ggml_tensor * ggml_rope_inplace(
  1016. struct ggml_context * ctx,
  1017. struct ggml_tensor * a,
  1018. int n_past,
  1019. int n_dims,
  1020. int mode,
  1021. int n_ctx);
  1022. // custom RoPE
  1023. GGML_API struct ggml_tensor * ggml_rope_custom(
  1024. struct ggml_context * ctx,
  1025. struct ggml_tensor * a,
  1026. int n_past,
  1027. int n_dims,
  1028. int mode,
  1029. int n_ctx,
  1030. float freq_base,
  1031. float freq_scale);
  1032. // in-place, returns view(a)
  1033. GGML_API struct ggml_tensor * ggml_rope_custom_inplace(
  1034. struct ggml_context * ctx,
  1035. struct ggml_tensor * a,
  1036. int n_past,
  1037. int n_dims,
  1038. int mode,
  1039. int n_ctx,
  1040. float freq_base,
  1041. float freq_scale);
  1042. // xPos RoPE, in-place, returns view(a)
  1043. GGML_API struct ggml_tensor * ggml_rope_xpos_inplace(
  1044. struct ggml_context * ctx,
  1045. struct ggml_tensor * a,
  1046. int n_past,
  1047. int n_dims,
  1048. float base,
  1049. bool down);
  1050. // rotary position embedding backward, i.e compute dx from dy
  1051. // a - dy
  1052. GGML_API struct ggml_tensor * ggml_rope_back(
  1053. struct ggml_context * ctx,
  1054. struct ggml_tensor * a,
  1055. int n_past,
  1056. int n_dims,
  1057. int mode,
  1058. int n_ctx,
  1059. float freq_base,
  1060. float freq_scale,
  1061. float xpos_base,
  1062. bool xpos_down);
  1063. // alibi position embedding
  1064. // in-place, returns view(a)
  1065. struct ggml_tensor * ggml_alibi(
  1066. struct ggml_context * ctx,
  1067. struct ggml_tensor * a,
  1068. int n_past,
  1069. int n_head,
  1070. float bias_max);
  1071. // clamp
  1072. // in-place, returns view(a)
  1073. struct ggml_tensor * ggml_clamp(
  1074. struct ggml_context * ctx,
  1075. struct ggml_tensor * a,
  1076. float min,
  1077. float max);
  1078. GGML_API struct ggml_tensor * ggml_conv_1d(
  1079. struct ggml_context * ctx,
  1080. struct ggml_tensor * a,
  1081. struct ggml_tensor * b,
  1082. int s0, // stride
  1083. int p0, // padding
  1084. int d0); // dilation
  1085. // conv_1d with padding = half
  1086. // alias for ggml_conv_1d(a, b, s, a->ne[0]/2, d)
  1087. GGML_API struct ggml_tensor* ggml_conv_1d_ph(
  1088. struct ggml_context * ctx,
  1089. struct ggml_tensor * a,
  1090. struct ggml_tensor * b,
  1091. int s,
  1092. int d);
  1093. GGML_API struct ggml_tensor * ggml_conv_2d(
  1094. struct ggml_context * ctx,
  1095. struct ggml_tensor * a,
  1096. struct ggml_tensor * b,
  1097. int s0,
  1098. int s1,
  1099. int p0,
  1100. int p1,
  1101. int d0,
  1102. int d1);
  1103. // kernel size is a->ne[0] x a->ne[1]
  1104. // stride is equal to kernel size
  1105. // padding is zero
  1106. // example:
  1107. // a: 16 16 3 768
  1108. // b: 1024 1024 3 1
  1109. // res: 64 64 768 1
  1110. // used in sam
  1111. GGML_API struct ggml_tensor * ggml_conv_2d_sk_p0(
  1112. struct ggml_context * ctx,
  1113. struct ggml_tensor * a,
  1114. struct ggml_tensor * b);
  1115. // kernel size is a->ne[0] x a->ne[1]
  1116. // stride is 1
  1117. // padding is half
  1118. // example:
  1119. // a: 3 3 256 256
  1120. // b: 64 64 256 1
  1121. // res: 64 64 256 1
  1122. // used in sam
  1123. GGML_API struct ggml_tensor * ggml_conv_2d_s1_ph(
  1124. struct ggml_context * ctx,
  1125. struct ggml_tensor * a,
  1126. struct ggml_tensor * b);
  1127. GGML_API struct ggml_tensor * ggml_conv_transpose_2d_p0(
  1128. struct ggml_context * ctx,
  1129. struct ggml_tensor * a,
  1130. struct ggml_tensor * b,
  1131. int stride);
  1132. enum ggml_op_pool {
  1133. GGML_OP_POOL_MAX,
  1134. GGML_OP_POOL_AVG,
  1135. GGML_OP_POOL_COUNT,
  1136. };
  1137. GGML_API struct ggml_tensor * ggml_pool_1d(
  1138. struct ggml_context * ctx,
  1139. struct ggml_tensor * a,
  1140. enum ggml_op_pool op,
  1141. int k0, // kernel size
  1142. int s0, // stride
  1143. int p0); // padding
  1144. GGML_API struct ggml_tensor * ggml_pool_2d(
  1145. struct ggml_context * ctx,
  1146. struct ggml_tensor * a,
  1147. enum ggml_op_pool op,
  1148. int k0,
  1149. int k1,
  1150. int s0,
  1151. int s1,
  1152. int p0,
  1153. int p1);
  1154. // nearest interpolate
  1155. // used in stable-diffusion
  1156. GGML_API struct ggml_tensor * ggml_upscale(
  1157. struct ggml_context * ctx,
  1158. struct ggml_tensor * a,
  1159. int scale_factor);
  1160. GGML_API struct ggml_tensor * ggml_flash_attn(
  1161. struct ggml_context * ctx,
  1162. struct ggml_tensor * q,
  1163. struct ggml_tensor * k,
  1164. struct ggml_tensor * v,
  1165. bool masked);
  1166. GGML_API struct ggml_tensor * ggml_flash_attn_back(
  1167. struct ggml_context * ctx,
  1168. struct ggml_tensor * q,
  1169. struct ggml_tensor * k,
  1170. struct ggml_tensor * v,
  1171. struct ggml_tensor * d,
  1172. bool masked);
  1173. GGML_API struct ggml_tensor * ggml_flash_ff(
  1174. struct ggml_context * ctx,
  1175. struct ggml_tensor * a,
  1176. struct ggml_tensor * b0,
  1177. struct ggml_tensor * b1,
  1178. struct ggml_tensor * c0,
  1179. struct ggml_tensor * c1);
  1180. // partition into non-overlapping windows with padding if needed
  1181. // example:
  1182. // a: 768 64 64 1
  1183. // w: 14
  1184. // res: 768 14 14 25
  1185. // used in sam
  1186. GGML_API struct ggml_tensor * ggml_win_part(
  1187. struct ggml_context * ctx,
  1188. struct ggml_tensor * a,
  1189. int w);
  1190. // reverse of ggml_win_part
  1191. // used in sam
  1192. GGML_API struct ggml_tensor * ggml_win_unpart(
  1193. struct ggml_context * ctx,
  1194. struct ggml_tensor * a,
  1195. int w0,
  1196. int h0,
  1197. int w);
  1198. GGML_API struct ggml_tensor * ggml_unary(
  1199. struct ggml_context * ctx,
  1200. struct ggml_tensor * a,
  1201. enum ggml_unary_op op);
  1202. GGML_API struct ggml_tensor * ggml_unary_inplace(
  1203. struct ggml_context * ctx,
  1204. struct ggml_tensor * a,
  1205. enum ggml_unary_op op);
  1206. // used in sam
  1207. GGML_API struct ggml_tensor * ggml_get_rel_pos(
  1208. struct ggml_context * ctx,
  1209. struct ggml_tensor * a,
  1210. int qh,
  1211. int kh);
  1212. // used in sam
  1213. GGML_API struct ggml_tensor * ggml_add_rel_pos(
  1214. struct ggml_context * ctx,
  1215. struct ggml_tensor * a,
  1216. struct ggml_tensor * pw,
  1217. struct ggml_tensor * ph);
  1218. GGML_API struct ggml_tensor * ggml_add_rel_pos_inplace(
  1219. struct ggml_context * ctx,
  1220. struct ggml_tensor * a,
  1221. struct ggml_tensor * pw,
  1222. struct ggml_tensor * ph);
  1223. // custom operators
  1224. typedef void (*ggml_unary_op_f32_t) (const int, float *, const float *);
  1225. typedef void (*ggml_binary_op_f32_t)(const int, float *, const float *, const float *);
  1226. typedef void (*ggml_custom1_op_f32_t)(struct ggml_tensor *, const struct ggml_tensor *);
  1227. typedef void (*ggml_custom2_op_f32_t)(struct ggml_tensor *, const struct ggml_tensor *, const struct ggml_tensor *);
  1228. typedef void (*ggml_custom3_op_f32_t)(struct ggml_tensor *, const struct ggml_tensor *, const struct ggml_tensor *, const struct ggml_tensor *);
  1229. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_unary_f32(
  1230. struct ggml_context * ctx,
  1231. struct ggml_tensor * a,
  1232. ggml_unary_op_f32_t fun),
  1233. "use ggml_map_custom1 instead");
  1234. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_unary_inplace_f32(
  1235. struct ggml_context * ctx,
  1236. struct ggml_tensor * a,
  1237. ggml_unary_op_f32_t fun),
  1238. "use ggml_map_custom1_inplace instead");
  1239. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_binary_f32(
  1240. struct ggml_context * ctx,
  1241. struct ggml_tensor * a,
  1242. struct ggml_tensor * b,
  1243. ggml_binary_op_f32_t fun),
  1244. "use ggml_map_custom2 instead");
  1245. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_binary_inplace_f32(
  1246. struct ggml_context * ctx,
  1247. struct ggml_tensor * a,
  1248. struct ggml_tensor * b,
  1249. ggml_binary_op_f32_t fun),
  1250. "use ggml_map_custom2_inplace instead");
  1251. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_custom1_f32(
  1252. struct ggml_context * ctx,
  1253. struct ggml_tensor * a,
  1254. ggml_custom1_op_f32_t fun),
  1255. "use ggml_map_custom1 instead");
  1256. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_custom1_inplace_f32(
  1257. struct ggml_context * ctx,
  1258. struct ggml_tensor * a,
  1259. ggml_custom1_op_f32_t fun),
  1260. "use ggml_map_custom1_inplace instead");
  1261. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_custom2_f32(
  1262. struct ggml_context * ctx,
  1263. struct ggml_tensor * a,
  1264. struct ggml_tensor * b,
  1265. ggml_custom2_op_f32_t fun),
  1266. "use ggml_map_custom2 instead");
  1267. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_custom2_inplace_f32(
  1268. struct ggml_context * ctx,
  1269. struct ggml_tensor * a,
  1270. struct ggml_tensor * b,
  1271. ggml_custom2_op_f32_t fun),
  1272. "use ggml_map_custom2_inplace instead");
  1273. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_custom3_f32(
  1274. struct ggml_context * ctx,
  1275. struct ggml_tensor * a,
  1276. struct ggml_tensor * b,
  1277. struct ggml_tensor * c,
  1278. ggml_custom3_op_f32_t fun),
  1279. "use ggml_map_custom3 instead");
  1280. GGML_DEPRECATED(GGML_API struct ggml_tensor * ggml_map_custom3_inplace_f32(
  1281. struct ggml_context * ctx,
  1282. struct ggml_tensor * a,
  1283. struct ggml_tensor * b,
  1284. struct ggml_tensor * c,
  1285. ggml_custom3_op_f32_t fun),
  1286. "use ggml_map_custom3_inplace instead");
  1287. // custom operators v2
  1288. typedef void (*ggml_custom1_op_t)(struct ggml_tensor * dst , const struct ggml_tensor * a, int ith, int nth, void * userdata);
  1289. typedef void (*ggml_custom2_op_t)(struct ggml_tensor * dst , const struct ggml_tensor * a, const struct ggml_tensor * b, int ith, int nth, void * userdata);
  1290. typedef void (*ggml_custom3_op_t)(struct ggml_tensor * dst , const struct ggml_tensor * a, const struct ggml_tensor * b, const struct ggml_tensor * c, int ith, int nth, void * userdata);
  1291. #define GGML_N_TASKS_MAX -1
  1292. GGML_API struct ggml_tensor * ggml_map_custom1(
  1293. struct ggml_context * ctx,
  1294. struct ggml_tensor * a,
  1295. ggml_custom1_op_t fun,
  1296. int n_tasks,
  1297. void * userdata);
  1298. GGML_API struct ggml_tensor * ggml_map_custom1_inplace(
  1299. struct ggml_context * ctx,
  1300. struct ggml_tensor * a,
  1301. ggml_custom1_op_t fun,
  1302. int n_tasks,
  1303. void * userdata);
  1304. GGML_API struct ggml_tensor * ggml_map_custom2(
  1305. struct ggml_context * ctx,
  1306. struct ggml_tensor * a,
  1307. struct ggml_tensor * b,
  1308. ggml_custom2_op_t fun,
  1309. int n_tasks,
  1310. void * userdata);
  1311. GGML_API struct ggml_tensor * ggml_map_custom2_inplace(
  1312. struct ggml_context * ctx,
  1313. struct ggml_tensor * a,
  1314. struct ggml_tensor * b,
  1315. ggml_custom2_op_t fun,
  1316. int n_tasks,
  1317. void * userdata);
  1318. GGML_API struct ggml_tensor * ggml_map_custom3(
  1319. struct ggml_context * ctx,
  1320. struct ggml_tensor * a,
  1321. struct ggml_tensor * b,
  1322. struct ggml_tensor * c,
  1323. ggml_custom3_op_t fun,
  1324. int n_tasks,
  1325. void * userdata);
  1326. GGML_API struct ggml_tensor * ggml_map_custom3_inplace(
  1327. struct ggml_context * ctx,
  1328. struct ggml_tensor * a,
  1329. struct ggml_tensor * b,
  1330. struct ggml_tensor * c,
  1331. ggml_custom3_op_t fun,
  1332. int n_tasks,
  1333. void * userdata);
  1334. // loss function
  1335. GGML_API struct ggml_tensor * ggml_cross_entropy_loss(
  1336. struct ggml_context * ctx,
  1337. struct ggml_tensor * a,
  1338. struct ggml_tensor * b);
  1339. GGML_API struct ggml_tensor * ggml_cross_entropy_loss_back(
  1340. struct ggml_context * ctx,
  1341. struct ggml_tensor * a,
  1342. struct ggml_tensor * b,
  1343. struct ggml_tensor * c);
  1344. //
  1345. // automatic differentiation
  1346. //
  1347. GGML_API void ggml_set_param(
  1348. struct ggml_context * ctx,
  1349. struct ggml_tensor * tensor);
  1350. GGML_API void ggml_build_forward_expand(struct ggml_cgraph * cgraph, struct ggml_tensor * tensor);
  1351. GGML_API struct ggml_cgraph ggml_build_forward (struct ggml_tensor * tensor);
  1352. GGML_API struct ggml_cgraph ggml_build_backward(struct ggml_context * ctx, struct ggml_cgraph * gf, bool keep);
  1353. // graph allocation in a context
  1354. GGML_API struct ggml_cgraph * ggml_new_graph (struct ggml_context * ctx);
  1355. GGML_API struct ggml_cgraph * ggml_build_forward_ctx(struct ggml_context * ctx, struct ggml_tensor * tensor);
  1356. GGML_API size_t ggml_graph_overhead(void);
  1357. // ggml_graph_plan() has to be called before ggml_graph_compute()
  1358. // when plan.work_size > 0, caller must allocate memory for plan.work_data
  1359. GGML_API struct ggml_cplan ggml_graph_plan (struct ggml_cgraph * cgraph, int n_threads /*= GGML_DEFAULT_N_THREADS*/);
  1360. GGML_API int ggml_graph_compute(struct ggml_cgraph * cgraph, struct ggml_cplan * cplan);
  1361. GGML_API void ggml_graph_reset (struct ggml_cgraph * cgraph);
  1362. // same as ggml_graph_compute() but the work data is allocated as a part of the context
  1363. // note: the drawback of this API is that you must have ensured that the context has enough memory for the work data
  1364. GGML_API void ggml_graph_compute_with_ctx(struct ggml_context * ctx, struct ggml_cgraph * cgraph, int n_threads);
  1365. GGML_API struct ggml_tensor * ggml_graph_get_tensor(struct ggml_cgraph * cgraph, const char * name);
  1366. GGML_API void ggml_graph_export(const struct ggml_cgraph * cgraph, const char * fname);
  1367. GGML_API struct ggml_cgraph ggml_graph_import(const char * fname, struct ggml_context ** ctx_data, struct ggml_context ** ctx_eval);
  1368. // print info and performance information for the graph
  1369. GGML_API void ggml_graph_print(const struct ggml_cgraph * cgraph);
  1370. // dump the graph into a file using the dot format
  1371. GGML_API void ggml_graph_dump_dot(const struct ggml_cgraph * gb, const struct ggml_cgraph * gf, const char * filename);
  1372. //
  1373. // optimization
  1374. //
  1375. // optimization methods
  1376. enum ggml_opt_type {
  1377. GGML_OPT_ADAM,
  1378. GGML_OPT_LBFGS,
  1379. };
  1380. // linesearch methods
  1381. enum ggml_linesearch {
  1382. GGML_LINESEARCH_DEFAULT = 1,
  1383. GGML_LINESEARCH_BACKTRACKING_ARMIJO = 0,
  1384. GGML_LINESEARCH_BACKTRACKING_WOLFE = 1,
  1385. GGML_LINESEARCH_BACKTRACKING_STRONG_WOLFE = 2,
  1386. };
  1387. // optimization return values
  1388. enum ggml_opt_result {
  1389. GGML_OPT_OK = 0,
  1390. GGML_OPT_DID_NOT_CONVERGE,
  1391. GGML_OPT_NO_CONTEXT,
  1392. GGML_OPT_INVALID_WOLFE,
  1393. GGML_OPT_FAIL,
  1394. GGML_LINESEARCH_FAIL = -128,
  1395. GGML_LINESEARCH_MINIMUM_STEP,
  1396. GGML_LINESEARCH_MAXIMUM_STEP,
  1397. GGML_LINESEARCH_MAXIMUM_ITERATIONS,
  1398. GGML_LINESEARCH_INVALID_PARAMETERS,
  1399. };
  1400. // optimization parameters
  1401. //
  1402. // see ggml.c (ggml_opt_default_params) for default values
  1403. //
  1404. struct ggml_opt_params {
  1405. enum ggml_opt_type type;
  1406. int n_threads;
  1407. // delta-based convergence test
  1408. //
  1409. // if past == 0 - disabled
  1410. // if past > 0:
  1411. // stop if |f(x) - f(x_past)| < delta * max(1, |f(x)|)
  1412. //
  1413. int past;
  1414. float delta;
  1415. // maximum number of iterations without improvement
  1416. //
  1417. // if 0 - disabled
  1418. // if > 0:
  1419. // assume convergence if no cost improvement in this number of iterations
  1420. //
  1421. int max_no_improvement;
  1422. bool print_forward_graph;
  1423. bool print_backward_graph;
  1424. // ADAM parameters
  1425. struct {
  1426. int n_iter;
  1427. float sched; // schedule multiplier (fixed, decay or warmup)
  1428. float decay; // weight decay for AdamW, use 0.0f to disable
  1429. float alpha; // learning rate
  1430. float beta1;
  1431. float beta2;
  1432. float eps; // epsilon for numerical stability
  1433. float eps_f; // epsilon for convergence test
  1434. float eps_g; // epsilon for convergence test
  1435. } adam;
  1436. // LBFGS parameters
  1437. struct {
  1438. int m; // number of corrections to approximate the inv. Hessian
  1439. int n_iter;
  1440. int max_linesearch;
  1441. float eps; // convergence tolerance
  1442. float ftol; // line search tolerance
  1443. float wolfe;
  1444. float min_step;
  1445. float max_step;
  1446. enum ggml_linesearch linesearch;
  1447. } lbfgs;
  1448. };
  1449. struct ggml_opt_context {
  1450. struct ggml_context * ctx;
  1451. struct ggml_opt_params params;
  1452. int iter;
  1453. int64_t nx; // number of parameter elements
  1454. bool just_initialized;
  1455. struct {
  1456. struct ggml_tensor * x; // view of the parameters
  1457. struct ggml_tensor * g1; // gradient
  1458. struct ggml_tensor * g2; // gradient squared
  1459. struct ggml_tensor * m; // first moment
  1460. struct ggml_tensor * v; // second moment
  1461. struct ggml_tensor * mh; // first moment hat
  1462. struct ggml_tensor * vh; // second moment hat
  1463. struct ggml_tensor * pf; // past function values
  1464. float fx_best;
  1465. float fx_prev;
  1466. int n_no_improvement;
  1467. } adam;
  1468. struct {
  1469. struct ggml_tensor * x; // current parameters
  1470. struct ggml_tensor * xp; // previous parameters
  1471. struct ggml_tensor * g; // current gradient
  1472. struct ggml_tensor * gp; // previous gradient
  1473. struct ggml_tensor * d; // search direction
  1474. struct ggml_tensor * pf; // past function values
  1475. struct ggml_tensor * lmal; // the L-BFGS memory alpha
  1476. struct ggml_tensor * lmys; // the L-BFGS memory ys
  1477. struct ggml_tensor * lms; // the L-BFGS memory s
  1478. struct ggml_tensor * lmy; // the L-BFGS memory y
  1479. float fx_best;
  1480. float step;
  1481. int j;
  1482. int k;
  1483. int end;
  1484. int n_no_improvement;
  1485. } lbfgs;
  1486. };
  1487. GGML_API struct ggml_opt_params ggml_opt_default_params(enum ggml_opt_type type);
  1488. // optimize the function defined by the tensor f
  1489. GGML_API enum ggml_opt_result ggml_opt(
  1490. struct ggml_context * ctx,
  1491. struct ggml_opt_params params,
  1492. struct ggml_tensor * f);
  1493. // initialize optimizer context
  1494. GGML_API void ggml_opt_init(
  1495. struct ggml_context * ctx,
  1496. struct ggml_opt_context * opt,
  1497. struct ggml_opt_params params,
  1498. int64_t nx);
  1499. // continue optimizing the function defined by the tensor f
  1500. GGML_API enum ggml_opt_result ggml_opt_resume(
  1501. struct ggml_context * ctx,
  1502. struct ggml_opt_context * opt,
  1503. struct ggml_tensor * f);
  1504. // continue optimizing the function defined by the tensor f
  1505. GGML_API enum ggml_opt_result ggml_opt_resume_g(
  1506. struct ggml_context * ctx,
  1507. struct ggml_opt_context * opt,
  1508. struct ggml_tensor * f,
  1509. struct ggml_cgraph * gf,
  1510. struct ggml_cgraph * gb);
  1511. //
  1512. // quantization
  1513. //
  1514. GGML_API size_t ggml_quantize_q4_0(const float * src, void * dst, int n, int k, int64_t * hist);
  1515. GGML_API size_t ggml_quantize_q4_1(const float * src, void * dst, int n, int k, int64_t * hist);
  1516. GGML_API size_t ggml_quantize_q5_0(const float * src, void * dst, int n, int k, int64_t * hist);
  1517. GGML_API size_t ggml_quantize_q5_1(const float * src, void * dst, int n, int k, int64_t * hist);
  1518. GGML_API size_t ggml_quantize_q8_0(const float * src, void * dst, int n, int k, int64_t * hist);
  1519. GGML_API size_t ggml_quantize_chunk(enum ggml_type type, const float * src, void * dst, int start, int n, int64_t * hist);
  1520. //
  1521. // gguf
  1522. //
  1523. enum gguf_type {
  1524. GGUF_TYPE_UINT8 = 0,
  1525. GGUF_TYPE_INT8 = 1,
  1526. GGUF_TYPE_UINT16 = 2,
  1527. GGUF_TYPE_INT16 = 3,
  1528. GGUF_TYPE_UINT32 = 4,
  1529. GGUF_TYPE_INT32 = 5,
  1530. GGUF_TYPE_FLOAT32 = 6,
  1531. GGUF_TYPE_BOOL = 7,
  1532. GGUF_TYPE_STRING = 8,
  1533. GGUF_TYPE_ARRAY = 9,
  1534. GGUF_TYPE_COUNT, // marks the end of the enum
  1535. };
  1536. struct gguf_context;
  1537. struct gguf_init_params {
  1538. bool no_alloc;
  1539. // if not NULL, create a ggml_context and allocate the tensor data in it
  1540. struct ggml_context ** ctx;
  1541. };
  1542. GGML_API struct gguf_context * gguf_init_empty(void);
  1543. GGML_API struct gguf_context * gguf_init_from_file(const char * fname, struct gguf_init_params params);
  1544. //GGML_API struct gguf_context * gguf_init_from_buffer(..);
  1545. GGML_API void gguf_free(struct gguf_context * ctx);
  1546. GGML_API const char * gguf_type_name(enum gguf_type type);
  1547. GGML_API int gguf_get_version (struct gguf_context * ctx);
  1548. GGML_API size_t gguf_get_alignment (struct gguf_context * ctx);
  1549. GGML_API size_t gguf_get_data_offset(struct gguf_context * ctx);
  1550. GGML_API void * gguf_get_data (struct gguf_context * ctx);
  1551. GGML_API int gguf_get_n_kv(struct gguf_context * ctx);
  1552. GGML_API int gguf_find_key(struct gguf_context * ctx, const char * key);
  1553. GGML_API const char * gguf_get_key (struct gguf_context * ctx, int i);
  1554. GGML_API enum gguf_type gguf_get_kv_type (struct gguf_context * ctx, int i);
  1555. GGML_API enum gguf_type gguf_get_arr_type(struct gguf_context * ctx, int i);
  1556. // results are undefined if the wrong type is used for the key
  1557. GGML_API uint8_t gguf_get_val_u8 (struct gguf_context * ctx, int i);
  1558. GGML_API int8_t gguf_get_val_i8 (struct gguf_context * ctx, int i);
  1559. GGML_API uint16_t gguf_get_val_u16 (struct gguf_context * ctx, int i);
  1560. GGML_API int16_t gguf_get_val_i16 (struct gguf_context * ctx, int i);
  1561. GGML_API uint32_t gguf_get_val_u32 (struct gguf_context * ctx, int i);
  1562. GGML_API int32_t gguf_get_val_i32 (struct gguf_context * ctx, int i);
  1563. GGML_API float gguf_get_val_f32 (struct gguf_context * ctx, int i);
  1564. GGML_API bool gguf_get_val_bool(struct gguf_context * ctx, int i);
  1565. GGML_API const char * gguf_get_val_str (struct gguf_context * ctx, int i);
  1566. GGML_API int gguf_get_arr_n (struct gguf_context * ctx, int i);
  1567. GGML_API const void * gguf_get_arr_data(struct gguf_context * ctx, int i);
  1568. GGML_API const char * gguf_get_arr_str (struct gguf_context * ctx, int key_id, int i);
  1569. GGML_API int gguf_get_n_tensors (struct gguf_context * ctx);
  1570. GGML_API int gguf_find_tensor (struct gguf_context * ctx, const char * name);
  1571. GGML_API size_t gguf_get_tensor_offset(struct gguf_context * ctx, int i);
  1572. GGML_API char * gguf_get_tensor_name (struct gguf_context * ctx, int i);
  1573. // overrides existing values or adds a new one
  1574. GGML_API void gguf_set_val_u8 (struct gguf_context * ctx, const char * key, uint8_t val);
  1575. GGML_API void gguf_set_val_i8 (struct gguf_context * ctx, const char * key, int8_t val);
  1576. GGML_API void gguf_set_val_u16 (struct gguf_context * ctx, const char * key, uint16_t val);
  1577. GGML_API void gguf_set_val_i16 (struct gguf_context * ctx, const char * key, int16_t val);
  1578. GGML_API void gguf_set_val_u32 (struct gguf_context * ctx, const char * key, uint32_t val);
  1579. GGML_API void gguf_set_val_i32 (struct gguf_context * ctx, const char * key, int32_t val);
  1580. GGML_API void gguf_set_val_f32 (struct gguf_context * ctx, const char * key, float val);
  1581. GGML_API void gguf_set_val_bool(struct gguf_context * ctx, const char * key, bool val);
  1582. GGML_API void gguf_set_val_str (struct gguf_context * ctx, const char * key, const char * val);
  1583. GGML_API void gguf_set_arr_data(struct gguf_context * ctx, const char * key, enum gguf_type type, const void * data, int n);
  1584. GGML_API void gguf_set_arr_str (struct gguf_context * ctx, const char * key, const char ** data, int n);
  1585. // set or add KV pairs from another context
  1586. GGML_API void gguf_set_kv(struct gguf_context * ctx, struct gguf_context * src);
  1587. // manage tensor info
  1588. GGML_API void gguf_add_tensor(struct gguf_context * ctx, const struct ggml_tensor * tensor);
  1589. GGML_API void gguf_set_tensor_type(struct gguf_context * ctx, const char * name, enum ggml_type type);
  1590. GGML_API void gguf_set_tensor_data(struct gguf_context * ctx, const char * name, const void * data, size_t size);
  1591. // writing gguf files can be done in 2 ways:
  1592. //
  1593. // - write the entire gguf_context to a binary file in a single pass:
  1594. //
  1595. // gguf_write_to_file(ctx, fname);
  1596. //
  1597. // - first prepare a file with a placeholder for the meta data, write the tensor data, then write the meta data:
  1598. //
  1599. // FILE * f = fopen(fname, "wb");
  1600. // fseek(f, gguf_get_meta_size(ctx), SEEK_SET);
  1601. // fwrite(f, ...);
  1602. // void * data = gguf_meta_get_meta_data(ctx);
  1603. // fseek(f, 0, SEEK_SET);
  1604. // fwrite(f, data, gguf_get_meta_size(ctx));
  1605. // free(data);
  1606. // fclose(f);
  1607. //
  1608. // write the entire context to a binary file
  1609. GGML_API void gguf_write_to_file(struct gguf_context * ctx, const char * fname, bool only_meta);
  1610. // get the size in bytes of the meta data (header, kv pairs, tensor info) including padding
  1611. GGML_API size_t gguf_get_meta_size(struct gguf_context * ctx);
  1612. GGML_API void gguf_get_meta_data(struct gguf_context * ctx, void * data);
  1613. //
  1614. // system info
  1615. //
  1616. GGML_API int ggml_cpu_has_avx (void);
  1617. GGML_API int ggml_cpu_has_avx2 (void);
  1618. GGML_API int ggml_cpu_has_avx512 (void);
  1619. GGML_API int ggml_cpu_has_avx512_vbmi(void);
  1620. GGML_API int ggml_cpu_has_avx512_vnni(void);
  1621. GGML_API int ggml_cpu_has_fma (void);
  1622. GGML_API int ggml_cpu_has_neon (void);
  1623. GGML_API int ggml_cpu_has_arm_fma (void);
  1624. GGML_API int ggml_cpu_has_f16c (void);
  1625. GGML_API int ggml_cpu_has_fp16_va (void);
  1626. GGML_API int ggml_cpu_has_wasm_simd (void);
  1627. GGML_API int ggml_cpu_has_blas (void);
  1628. GGML_API int ggml_cpu_has_cublas (void);
  1629. GGML_API int ggml_cpu_has_clblast (void);
  1630. GGML_API int ggml_cpu_has_gpublas (void);
  1631. GGML_API int ggml_cpu_has_sse3 (void);
  1632. GGML_API int ggml_cpu_has_vsx (void);
  1633. //
  1634. // Internal types and functions exposed for tests and benchmarks
  1635. //
  1636. #ifdef __cplusplus
  1637. // restrict not standard in C++
  1638. #define GGML_RESTRICT
  1639. #else
  1640. #define GGML_RESTRICT restrict
  1641. #endif
  1642. typedef void (*ggml_to_float_t) (const void * GGML_RESTRICT x, float * GGML_RESTRICT y, int k);
  1643. typedef void (*ggml_from_float_t)(const float * GGML_RESTRICT x, void * GGML_RESTRICT y, int k);
  1644. typedef void (*ggml_vec_dot_t) (const int n, float * GGML_RESTRICT s, const void * GGML_RESTRICT x, const void * GGML_RESTRICT y);
  1645. typedef struct {
  1646. const char * type_name;
  1647. int blck_size;
  1648. size_t type_size;
  1649. bool is_quantized;
  1650. ggml_to_float_t to_float;
  1651. ggml_from_float_t from_float;
  1652. ggml_from_float_t from_float_reference;
  1653. ggml_vec_dot_t vec_dot;
  1654. enum ggml_type vec_dot_type;
  1655. } ggml_type_traits_t;
  1656. ggml_type_traits_t ggml_internal_get_type_traits(enum ggml_type type);
  1657. #ifdef __cplusplus
  1658. }
  1659. #endif