ggml-backend.h 17 KB

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  1. #pragma once
  2. #include "ggml.h"
  3. #include "ggml-alloc.h"
  4. #ifdef __cplusplus
  5. extern "C" {
  6. #endif
  7. typedef struct ggml_backend_buffer_type * ggml_backend_buffer_type_t;
  8. typedef struct ggml_backend_buffer * ggml_backend_buffer_t;
  9. typedef struct ggml_backend_event * ggml_backend_event_t;
  10. typedef struct ggml_backend * ggml_backend_t;
  11. typedef void * ggml_backend_graph_plan_t;
  12. typedef struct ggml_backend_reg * ggml_backend_reg_t;
  13. typedef struct ggml_backend_device * ggml_backend_dev_t;
  14. //
  15. // Backend buffer type
  16. //
  17. GGML_API const char * ggml_backend_buft_name (ggml_backend_buffer_type_t buft);
  18. GGML_API ggml_backend_buffer_t ggml_backend_buft_alloc_buffer (ggml_backend_buffer_type_t buft, size_t size);
  19. GGML_API size_t ggml_backend_buft_get_alignment (ggml_backend_buffer_type_t buft);
  20. GGML_API size_t ggml_backend_buft_get_max_size (ggml_backend_buffer_type_t buft);
  21. GGML_API size_t ggml_backend_buft_get_alloc_size(ggml_backend_buffer_type_t buft, struct ggml_tensor * tensor);
  22. GGML_API bool ggml_backend_buft_is_host (ggml_backend_buffer_type_t buft);
  23. GGML_API ggml_backend_dev_t ggml_backend_buft_get_device (ggml_backend_buffer_type_t buft);
  24. //
  25. // Backend buffer
  26. //
  27. enum ggml_backend_buffer_usage {
  28. GGML_BACKEND_BUFFER_USAGE_ANY = 0,
  29. GGML_BACKEND_BUFFER_USAGE_WEIGHTS = 1,
  30. GGML_BACKEND_BUFFER_USAGE_COMPUTE = 2,
  31. };
  32. GGML_API const char * ggml_backend_buffer_name (ggml_backend_buffer_t buffer);
  33. GGML_API void ggml_backend_buffer_free (ggml_backend_buffer_t buffer);
  34. GGML_API void * ggml_backend_buffer_get_base (ggml_backend_buffer_t buffer);
  35. GGML_API size_t ggml_backend_buffer_get_size (ggml_backend_buffer_t buffer);
  36. GGML_API void ggml_backend_buffer_init_tensor (ggml_backend_buffer_t buffer, struct ggml_tensor * tensor);
  37. GGML_API size_t ggml_backend_buffer_get_alignment (ggml_backend_buffer_t buffer);
  38. GGML_API size_t ggml_backend_buffer_get_max_size (ggml_backend_buffer_t buffer);
  39. GGML_API size_t ggml_backend_buffer_get_alloc_size(ggml_backend_buffer_t buffer, struct ggml_tensor * tensor);
  40. GGML_API void ggml_backend_buffer_clear (ggml_backend_buffer_t buffer, uint8_t value);
  41. GGML_API bool ggml_backend_buffer_is_host (ggml_backend_buffer_t buffer);
  42. GGML_API void ggml_backend_buffer_set_usage (ggml_backend_buffer_t buffer, enum ggml_backend_buffer_usage usage);
  43. GGML_API enum ggml_backend_buffer_usage ggml_backend_buffer_get_usage (ggml_backend_buffer_t buffer);
  44. GGML_API ggml_backend_buffer_type_t ggml_backend_buffer_get_type (ggml_backend_buffer_t buffer);
  45. GGML_API void ggml_backend_buffer_reset (ggml_backend_buffer_t buffer);
  46. // tensor copy between different backends
  47. GGML_API void ggml_backend_tensor_copy(struct ggml_tensor * src, struct ggml_tensor * dst);
  48. //
  49. // Backend (stream)
  50. //
  51. GGML_API ggml_guid_t ggml_backend_guid(ggml_backend_t backend);
  52. GGML_API const char * ggml_backend_name(ggml_backend_t backend);
  53. GGML_API void ggml_backend_free(ggml_backend_t backend);
  54. GGML_API ggml_backend_buffer_type_t ggml_backend_get_default_buffer_type(ggml_backend_t backend);
  55. GGML_API ggml_backend_buffer_t ggml_backend_alloc_buffer(ggml_backend_t backend, size_t size);
  56. GGML_API size_t ggml_backend_get_alignment(ggml_backend_t backend);
  57. GGML_API size_t ggml_backend_get_max_size(ggml_backend_t backend);
  58. GGML_API void ggml_backend_tensor_set_async(ggml_backend_t backend, struct ggml_tensor * tensor, const void * data, size_t offset, size_t size);
  59. GGML_API void ggml_backend_tensor_get_async(ggml_backend_t backend, const struct ggml_tensor * tensor, void * data, size_t offset, size_t size);
  60. // "offset" refers to the offset of the tensor data for setting/getting data
  61. GGML_API void ggml_backend_tensor_set( struct ggml_tensor * tensor, const void * data, size_t offset, size_t size);
  62. GGML_API void ggml_backend_tensor_get(const struct ggml_tensor * tensor, void * data, size_t offset, size_t size);
  63. GGML_API void ggml_backend_tensor_memset( struct ggml_tensor * tensor, uint8_t value, size_t offset, size_t size);
  64. GGML_API void ggml_backend_synchronize(ggml_backend_t backend);
  65. GGML_API ggml_backend_graph_plan_t ggml_backend_graph_plan_create(ggml_backend_t backend, struct ggml_cgraph * cgraph);
  66. GGML_API void ggml_backend_graph_plan_free (ggml_backend_t backend, ggml_backend_graph_plan_t plan);
  67. GGML_API enum ggml_status ggml_backend_graph_plan_compute (ggml_backend_t backend, ggml_backend_graph_plan_t plan);
  68. GGML_API enum ggml_status ggml_backend_graph_compute (ggml_backend_t backend, struct ggml_cgraph * cgraph);
  69. GGML_API enum ggml_status ggml_backend_graph_compute_async(ggml_backend_t backend, struct ggml_cgraph * cgraph);
  70. // NOTE: will be removed, use device version instead
  71. GGML_API bool ggml_backend_supports_op(ggml_backend_t backend, const struct ggml_tensor * op);
  72. GGML_API bool ggml_backend_supports_buft(ggml_backend_t backend, ggml_backend_buffer_type_t buft);
  73. GGML_API bool ggml_backend_offload_op(ggml_backend_t backend, const struct ggml_tensor * op);
  74. // asynchronous copy
  75. // the copy is performed after all the currently queued operations in backend_src
  76. // backend_dst will wait for the copy to complete before performing other operations
  77. // automatic fallback to sync copy if async is not supported
  78. GGML_API void ggml_backend_tensor_copy_async(ggml_backend_t backend_src, ggml_backend_t backend_dst, struct ggml_tensor * src, struct ggml_tensor * dst);
  79. GGML_API ggml_backend_dev_t ggml_backend_get_device(ggml_backend_t backend);
  80. //
  81. // Events
  82. //
  83. GGML_API ggml_backend_event_t ggml_backend_event_new(ggml_backend_dev_t device);
  84. GGML_API void ggml_backend_event_free(ggml_backend_event_t event);
  85. GGML_API void ggml_backend_event_record(ggml_backend_event_t event, ggml_backend_t backend);
  86. GGML_API void ggml_backend_event_synchronize(ggml_backend_event_t event);
  87. GGML_API void ggml_backend_event_wait(ggml_backend_t backend, ggml_backend_event_t event);
  88. //
  89. // Backend device
  90. //
  91. enum ggml_backend_dev_type {
  92. // CPU device using system memory
  93. GGML_BACKEND_DEVICE_TYPE_CPU,
  94. // GPU device using dedicated memory
  95. GGML_BACKEND_DEVICE_TYPE_GPU,
  96. // accelerator devices intended to be used together with the CPU backend (e.g. BLAS or AMX)
  97. GGML_BACKEND_DEVICE_TYPE_ACCEL
  98. };
  99. // functionality supported by the device
  100. struct ggml_backend_dev_caps {
  101. // asynchronous operations
  102. bool async;
  103. // pinned host buffer
  104. bool host_buffer;
  105. // creating buffers from host ptr
  106. bool buffer_from_host_ptr;
  107. // event synchronization
  108. bool events;
  109. };
  110. // all the device properties
  111. struct ggml_backend_dev_props {
  112. const char * name;
  113. const char * description;
  114. size_t memory_free;
  115. size_t memory_total;
  116. enum ggml_backend_dev_type type;
  117. struct ggml_backend_dev_caps caps;
  118. };
  119. GGML_API const char * ggml_backend_dev_name(ggml_backend_dev_t device);
  120. GGML_API const char * ggml_backend_dev_description(ggml_backend_dev_t device);
  121. GGML_API void ggml_backend_dev_memory(ggml_backend_dev_t device, size_t * free, size_t * total);
  122. GGML_API enum ggml_backend_dev_type ggml_backend_dev_type(ggml_backend_dev_t device);
  123. GGML_API void ggml_backend_dev_get_props(ggml_backend_dev_t device, struct ggml_backend_dev_props * props);
  124. GGML_API ggml_backend_reg_t ggml_backend_dev_backend_reg(ggml_backend_dev_t device);
  125. GGML_API ggml_backend_t ggml_backend_dev_init(ggml_backend_dev_t device, const char * params);
  126. GGML_API ggml_backend_buffer_type_t ggml_backend_dev_buffer_type(ggml_backend_dev_t device);
  127. GGML_API ggml_backend_buffer_type_t ggml_backend_dev_host_buffer_type(ggml_backend_dev_t device);
  128. GGML_API ggml_backend_buffer_t ggml_backend_dev_buffer_from_host_ptr(ggml_backend_dev_t device, void * ptr, size_t size, size_t max_tensor_size);
  129. GGML_API bool ggml_backend_dev_supports_op(ggml_backend_dev_t device, const struct ggml_tensor * op);
  130. GGML_API bool ggml_backend_dev_supports_buft(ggml_backend_dev_t device, ggml_backend_buffer_type_t buft);
  131. GGML_API bool ggml_backend_dev_offload_op(ggml_backend_dev_t device, const struct ggml_tensor * op);
  132. //
  133. // Backend (reg)
  134. //
  135. GGML_API const char * ggml_backend_reg_name(ggml_backend_reg_t reg);
  136. GGML_API size_t ggml_backend_reg_dev_count(ggml_backend_reg_t reg);
  137. GGML_API ggml_backend_dev_t ggml_backend_reg_dev_get(ggml_backend_reg_t reg, size_t index);
  138. GGML_API void * ggml_backend_reg_get_proc_address(ggml_backend_reg_t reg, const char * name);
  139. // Common functions that may be obtained using ggml_backend_reg_get_proc_address
  140. // Split buffer type for tensor parallelism
  141. typedef ggml_backend_buffer_type_t (*ggml_backend_split_buffer_type_t)(int main_device, const float * tensor_split);
  142. // Set the number of threads for the backend
  143. typedef void (*ggml_backend_set_n_threads_t)(ggml_backend_t backend, int n_threads);
  144. // Get additional buffer types provided by the device (returns a NULL-terminated array)
  145. typedef ggml_backend_buffer_type_t * (*ggml_backend_dev_get_extra_bufts_t)(ggml_backend_dev_t device);
  146. //
  147. // Backend registry
  148. //
  149. // Backend (reg) enumeration
  150. GGML_API size_t ggml_backend_reg_count(void);
  151. GGML_API ggml_backend_reg_t ggml_backend_reg_get(size_t index);
  152. GGML_API ggml_backend_reg_t ggml_backend_reg_by_name(const char * name);
  153. // Device enumeration
  154. GGML_API size_t ggml_backend_dev_count(void);
  155. GGML_API ggml_backend_dev_t ggml_backend_dev_get(size_t index);
  156. GGML_API ggml_backend_dev_t ggml_backend_dev_by_name(const char * name);
  157. GGML_API ggml_backend_dev_t ggml_backend_dev_by_type(enum ggml_backend_dev_type type);
  158. // Direct backend (stream) initialization
  159. // = ggml_backend_dev_init(ggml_backend_dev_by_name(name), params)
  160. GGML_API ggml_backend_t ggml_backend_init_by_name(const char * name, const char * params);
  161. // = ggml_backend_dev_init(ggml_backend_dev_by_type(type), params)
  162. GGML_API ggml_backend_t ggml_backend_init_by_type(enum ggml_backend_dev_type type, const char * params);
  163. // = ggml_backend_dev_init(ggml_backend_dev_by_type(GPU) OR ggml_backend_dev_by_type(CPU), NULL)
  164. GGML_API ggml_backend_t ggml_backend_init_best(void);
  165. //
  166. // Backend scheduler
  167. //
  168. // The backend scheduler allows for multiple backend devices to be used together
  169. // Handles compute buffer allocation, assignment of tensors to backends, and copying of tensors between backends
  170. // The backends are selected based on:
  171. // - the backend that supports the operation
  172. // - the location of the pre-allocated tensors (e.g. the weights)
  173. /*
  174. Example usage:
  175. // operations that use tensors allocated in a buffer with USAGE_WEIGHTS will be assigned
  176. // preferrably to run on the same backend as the buffer
  177. ggml_backend_buffer_set_usage(buf_weights, GGML_BACKEND_BUFFER_USAGE_WEIGHTS);
  178. sched = ggml_backend_sched_new({backend_gpu, backend_gpu2, backend_cpu}, NULL, num_backends, GGML_DEFAULT_GRAPH_SIZE, false);
  179. // initialize buffers from a max size graph (optional)
  180. reserve_graph = build_graph(sched, max_batch_size);
  181. // manually assign nodes to a backend (optional, should not be needed in most cases)
  182. struct ggml_tensor * node = ggml_mul_mat(ctx, ...);
  183. ggml_backend_sched_set_tensor_backend(sched, node, backend_gpu);
  184. ggml_backend_sched_reserve(sched, reserve_graph);
  185. // compute
  186. graph = build_graph(sched);
  187. ggml_backend_sched_graph_compute(sched, graph);
  188. // if there are graph inputs:
  189. ggml_backend_sched_reset(sched);
  190. ggml_backend_sched_alloc_graph(sched, graph);
  191. ggml_backend_tensor_set(input_tensor, ...);
  192. ggml_backend_sched_graph_compute(sched, graph);
  193. }
  194. */
  195. typedef struct ggml_backend_sched * ggml_backend_sched_t;
  196. // Evaluation callback for each node in the graph (set with ggml_backend_sched_set_eval_callback)
  197. // when ask == true, the scheduler wants to know if the user wants to observe this node
  198. // this allows the scheduler to batch nodes together in order to evaluate them in a single call
  199. //
  200. // when ask == false, the scheduler is passing the node tensor to the user for observation
  201. // if the user returns false, the scheduler will cancel the graph compute
  202. //
  203. typedef bool (*ggml_backend_sched_eval_callback)(struct ggml_tensor * t, bool ask, void * user_data);
  204. // Initialize a backend scheduler
  205. GGML_API ggml_backend_sched_t ggml_backend_sched_new(ggml_backend_t * backends, ggml_backend_buffer_type_t * bufts, int n_backends, size_t graph_size, bool parallel);
  206. GGML_API void ggml_backend_sched_free(ggml_backend_sched_t sched);
  207. // Initialize backend buffers from a measure graph
  208. GGML_API bool ggml_backend_sched_reserve(ggml_backend_sched_t sched, struct ggml_cgraph * measure_graph); // returns success
  209. GGML_API int ggml_backend_sched_get_n_backends(ggml_backend_sched_t sched);
  210. GGML_API ggml_backend_t ggml_backend_sched_get_backend(ggml_backend_sched_t sched, int i);
  211. // Get the number of splits of the last graph
  212. GGML_API int ggml_backend_sched_get_n_splits(ggml_backend_sched_t sched);
  213. GGML_API int ggml_backend_sched_get_n_copies(ggml_backend_sched_t sched);
  214. GGML_API size_t ggml_backend_sched_get_buffer_size(ggml_backend_sched_t sched, ggml_backend_t backend);
  215. GGML_API void ggml_backend_sched_set_tensor_backend(ggml_backend_sched_t sched, struct ggml_tensor * node, ggml_backend_t backend);
  216. GGML_API ggml_backend_t ggml_backend_sched_get_tensor_backend(ggml_backend_sched_t sched, struct ggml_tensor * node);
  217. // Allocate and compute graph on the backend scheduler
  218. GGML_API bool ggml_backend_sched_alloc_graph(ggml_backend_sched_t sched, struct ggml_cgraph * graph); // returns success
  219. GGML_API enum ggml_status ggml_backend_sched_graph_compute(ggml_backend_sched_t sched, struct ggml_cgraph * graph);
  220. GGML_API enum ggml_status ggml_backend_sched_graph_compute_async(ggml_backend_sched_t sched, struct ggml_cgraph * graph);
  221. GGML_API void ggml_backend_sched_synchronize(ggml_backend_sched_t sched);
  222. // Reset all assignments and allocators - must be called before changing the node backends
  223. GGML_API void ggml_backend_sched_reset(ggml_backend_sched_t sched);
  224. // Set a callback to be called for each resulting node during graph compute
  225. GGML_API void ggml_backend_sched_set_eval_callback(ggml_backend_sched_t sched, ggml_backend_sched_eval_callback callback, void * user_data);
  226. //
  227. // Utils
  228. //
  229. struct ggml_backend_graph_copy {
  230. ggml_backend_buffer_t buffer;
  231. struct ggml_context * ctx_allocated;
  232. struct ggml_context * ctx_unallocated;
  233. struct ggml_cgraph * graph;
  234. };
  235. // Copy a graph to a different backend
  236. GGML_API struct ggml_backend_graph_copy ggml_backend_graph_copy(ggml_backend_t backend, struct ggml_cgraph * graph);
  237. GGML_API void ggml_backend_graph_copy_free(struct ggml_backend_graph_copy copy);
  238. typedef bool (*ggml_backend_eval_callback)(int node_index, struct ggml_tensor * t1, struct ggml_tensor * t2, void * user_data);
  239. // Compare the output of two backends
  240. GGML_API bool ggml_backend_compare_graph_backend(ggml_backend_t backend1, ggml_backend_t backend2, struct ggml_cgraph * graph, ggml_backend_eval_callback callback, void * user_data);
  241. // Tensor initialization
  242. GGML_API void ggml_backend_tensor_alloc(ggml_backend_buffer_t buffer, struct ggml_tensor * tensor, void * addr);
  243. GGML_API void ggml_backend_view_init(struct ggml_tensor * tensor);
  244. // CPU buffer types are always available
  245. GGML_API ggml_backend_buffer_t ggml_backend_cpu_buffer_from_ptr(void * ptr, size_t size);
  246. GGML_API ggml_backend_buffer_type_t ggml_backend_cpu_buffer_type(void);
  247. #ifdef __cplusplus
  248. }
  249. #endif