gguf.cpp 7.8 KB

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  1. #include "ggml.h"
  2. #include <cstdio>
  3. #include <cinttypes>
  4. #include <string>
  5. #include <sstream>
  6. #include <fstream>
  7. #include <vector>
  8. #undef MIN
  9. #undef MAX
  10. #define MIN(a, b) ((a) < (b) ? (a) : (b))
  11. #define MAX(a, b) ((a) > (b) ? (a) : (b))
  12. template <typename T>
  13. static std::string to_string(const T & val) {
  14. std::stringstream ss;
  15. ss << val;
  16. return ss.str();
  17. }
  18. static bool gguf_ex_write(const std::string & fname) {
  19. struct gguf_context * ctx = gguf_init_empty();
  20. gguf_set_val_u8 (ctx, "some.parameter.uint8", 0x12);
  21. gguf_set_val_i8 (ctx, "some.parameter.int8", -0x13);
  22. gguf_set_val_u16 (ctx, "some.parameter.uint16", 0x1234);
  23. gguf_set_val_i16 (ctx, "some.parameter.int16", -0x1235);
  24. gguf_set_val_u32 (ctx, "some.parameter.uint32", 0x12345678);
  25. gguf_set_val_i32 (ctx, "some.parameter.int32", -0x12345679);
  26. gguf_set_val_f32 (ctx, "some.parameter.float32", 0.123456789f);
  27. gguf_set_val_u64 (ctx, "some.parameter.uint64", 0x123456789abcdef0ull);
  28. gguf_set_val_i64 (ctx, "some.parameter.int64", -0x123456789abcdef1ll);
  29. gguf_set_val_f64 (ctx, "some.parameter.float64", 0.1234567890123456789);
  30. gguf_set_val_bool(ctx, "some.parameter.bool", true);
  31. gguf_set_val_str (ctx, "some.parameter.string", "hello world");
  32. gguf_set_arr_data(ctx, "some.parameter.arr.i16", GGUF_TYPE_INT16, std::vector<int16_t>{ 1, 2, 3, 4, }.data(), 4);
  33. gguf_set_arr_data(ctx, "some.parameter.arr.f32", GGUF_TYPE_FLOAT32, std::vector<float>{ 3.145f, 2.718f, 1.414f, }.data(), 3);
  34. gguf_set_arr_str (ctx, "some.parameter.arr.str", std::vector<const char *>{ "hello", "world", "!" }.data(), 3);
  35. struct ggml_init_params params = {
  36. /*.mem_size =*/ 128ull*1024ull*1024ull,
  37. /*.mem_buffer =*/ NULL,
  38. /*.no_alloc =*/ false,
  39. };
  40. struct ggml_context * ctx_data = ggml_init(params);
  41. const int n_tensors = 10;
  42. // tensor infos
  43. for (int i = 0; i < n_tensors; ++i) {
  44. const std::string name = "tensor_" + to_string(i);
  45. int64_t ne[GGML_MAX_DIMS] = { 1 };
  46. int32_t n_dims = rand() % GGML_MAX_DIMS + 1;
  47. for (int j = 0; j < n_dims; ++j) {
  48. ne[j] = rand() % 10 + 1;
  49. }
  50. struct ggml_tensor * cur = ggml_new_tensor(ctx_data, GGML_TYPE_F32, n_dims, ne);
  51. ggml_set_name(cur, name.c_str());
  52. {
  53. float * data = (float *) cur->data;
  54. for (int j = 0; j < ggml_nelements(cur); ++j) {
  55. data[j] = 100 + i;
  56. }
  57. }
  58. gguf_add_tensor(ctx, cur);
  59. }
  60. gguf_write_to_file(ctx, fname.c_str(), false);
  61. printf("%s: wrote file '%s;\n", __func__, fname.c_str());
  62. ggml_free(ctx_data);
  63. gguf_free(ctx);
  64. return true;
  65. }
  66. // just read tensor info
  67. static bool gguf_ex_read_0(const std::string & fname) {
  68. struct gguf_init_params params = {
  69. /*.no_alloc = */ false,
  70. /*.ctx = */ NULL,
  71. };
  72. struct gguf_context * ctx = gguf_init_from_file(fname.c_str(), params);
  73. printf("%s: version: %d\n", __func__, gguf_get_version(ctx));
  74. printf("%s: alignment: %zu\n", __func__, gguf_get_alignment(ctx));
  75. printf("%s: data offset: %zu\n", __func__, gguf_get_data_offset(ctx));
  76. // kv
  77. {
  78. const int n_kv = gguf_get_n_kv(ctx);
  79. printf("%s: n_kv: %d\n", __func__, n_kv);
  80. for (int i = 0; i < n_kv; ++i) {
  81. const char * key = gguf_get_key(ctx, i);
  82. printf("%s: kv[%d]: key = %s\n", __func__, i, key);
  83. }
  84. }
  85. // find kv string
  86. {
  87. const char * findkey = "some.parameter.string";
  88. const int keyidx = gguf_find_key(ctx, findkey);
  89. if (keyidx == -1) {
  90. printf("%s: find key: %s not found.\n", __func__, findkey);
  91. } else {
  92. const char * key_value = gguf_get_val_str(ctx, keyidx);
  93. printf("%s: find key: %s found, kv[%d] value = %s\n", __func__, findkey, keyidx, key_value);
  94. }
  95. }
  96. // tensor info
  97. {
  98. const int n_tensors = gguf_get_n_tensors(ctx);
  99. printf("%s: n_tensors: %d\n", __func__, n_tensors);
  100. for (int i = 0; i < n_tensors; ++i) {
  101. const char * name = gguf_get_tensor_name (ctx, i);
  102. const size_t offset = gguf_get_tensor_offset(ctx, i);
  103. printf("%s: tensor[%d]: name = %s, offset = %zu\n", __func__, i, name, offset);
  104. }
  105. }
  106. gguf_free(ctx);
  107. return true;
  108. }
  109. // read and create ggml_context containing the tensors and their data
  110. static bool gguf_ex_read_1(const std::string & fname, bool check_data) {
  111. struct ggml_context * ctx_data = NULL;
  112. struct gguf_init_params params = {
  113. /*.no_alloc = */ false,
  114. /*.ctx = */ &ctx_data,
  115. };
  116. struct gguf_context * ctx = gguf_init_from_file(fname.c_str(), params);
  117. printf("%s: version: %d\n", __func__, gguf_get_version(ctx));
  118. printf("%s: alignment: %zu\n", __func__, gguf_get_alignment(ctx));
  119. printf("%s: data offset: %zu\n", __func__, gguf_get_data_offset(ctx));
  120. // kv
  121. {
  122. const int n_kv = gguf_get_n_kv(ctx);
  123. printf("%s: n_kv: %d\n", __func__, n_kv);
  124. for (int i = 0; i < n_kv; ++i) {
  125. const char * key = gguf_get_key(ctx, i);
  126. printf("%s: kv[%d]: key = %s\n", __func__, i, key);
  127. }
  128. }
  129. // tensor info
  130. {
  131. const int n_tensors = gguf_get_n_tensors(ctx);
  132. printf("%s: n_tensors: %d\n", __func__, n_tensors);
  133. for (int i = 0; i < n_tensors; ++i) {
  134. const char * name = gguf_get_tensor_name (ctx, i);
  135. const size_t offset = gguf_get_tensor_offset(ctx, i);
  136. printf("%s: tensor[%d]: name = %s, offset = %zu\n", __func__, i, name, offset);
  137. }
  138. }
  139. // data
  140. {
  141. const int n_tensors = gguf_get_n_tensors(ctx);
  142. for (int i = 0; i < n_tensors; ++i) {
  143. printf("%s: reading tensor %d data\n", __func__, i);
  144. const char * name = gguf_get_tensor_name(ctx, i);
  145. struct ggml_tensor * cur = ggml_get_tensor(ctx_data, name);
  146. printf("%s: tensor[%d]: n_dims = %d, name = %s, data = %p\n", __func__, i, ggml_n_dims(cur), cur->name, cur->data);
  147. // print first 10 elements
  148. const float * data = (const float *) cur->data;
  149. printf("%s data[:10] : ", name);
  150. for (int j = 0; j < MIN(10, ggml_nelements(cur)); ++j) {
  151. printf("%f ", data[j]);
  152. }
  153. printf("\n\n");
  154. // check data
  155. if (check_data) {
  156. const float * data = (const float *) cur->data;
  157. for (int j = 0; j < ggml_nelements(cur); ++j) {
  158. if (data[j] != 100 + i) {
  159. fprintf(stderr, "%s: tensor[%d]: data[%d] = %f\n", __func__, i, j, data[j]);
  160. gguf_free(ctx);
  161. return false;
  162. }
  163. }
  164. }
  165. }
  166. }
  167. printf("%s: ctx_data size: %zu\n", __func__, ggml_get_mem_size(ctx_data));
  168. ggml_free(ctx_data);
  169. gguf_free(ctx);
  170. return true;
  171. }
  172. int main(int argc, char ** argv) {
  173. if (argc < 3) {
  174. printf("usage: %s data.gguf r|w [n]\n", argv[0]);
  175. printf("r: read data.gguf file\n");
  176. printf("w: write data.gguf file\n");
  177. printf("n: no check of tensor data\n");
  178. return -1;
  179. }
  180. bool check_data = true;
  181. if (argc == 4) {
  182. check_data = false;
  183. }
  184. const std::string fname(argv[1]);
  185. const std::string mode (argv[2]);
  186. GGML_ASSERT((mode == "r" || mode == "w") && "mode must be r or w");
  187. if (mode == "w") {
  188. GGML_ASSERT(gguf_ex_write(fname) && "failed to write gguf file");
  189. } else if (mode == "r") {
  190. GGML_ASSERT(gguf_ex_read_0(fname) && "failed to read gguf file");
  191. GGML_ASSERT(gguf_ex_read_1(fname, check_data) && "failed to read gguf file");
  192. }
  193. return 0;
  194. }