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#include "llama-impl.h" |
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#include "gguf.h" |
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#include "llama.h" |
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#include <cinttypes> |
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#include <climits> |
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#include <cstdarg> |
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#include <cstring> |
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#include <vector> |
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#include <sstream> |
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struct llama_logger_state { |
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ggml_log_callback log_callback = llama_log_callback_default; |
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void * log_callback_user_data = nullptr; |
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}; |
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static llama_logger_state g_logger_state; |
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time_meas::time_meas(int64_t & t_acc, bool disable) : t_start_us(disable ? -1 : ggml_time_us()), t_acc(t_acc) {} |
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time_meas::~time_meas() { |
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if (t_start_us >= 0) { |
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t_acc += ggml_time_us() - t_start_us; |
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} |
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} |
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void llama_log_set(ggml_log_callback log_callback, void * user_data) { |
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ggml_log_set(log_callback, user_data); |
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g_logger_state.log_callback = log_callback ? log_callback : llama_log_callback_default; |
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g_logger_state.log_callback_user_data = user_data; |
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} |
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static void llama_log_internal_v(ggml_log_level level, const char * format, va_list args) { |
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va_list args_copy; |
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va_copy(args_copy, args); |
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char buffer[128]; |
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int len = vsnprintf(buffer, 128, format, args); |
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if (len < 128) { |
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g_logger_state.log_callback(level, buffer, g_logger_state.log_callback_user_data); |
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} else { |
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char * buffer2 = new char[len + 1]; |
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vsnprintf(buffer2, len + 1, format, args_copy); |
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buffer2[len] = 0; |
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g_logger_state.log_callback(level, buffer2, g_logger_state.log_callback_user_data); |
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delete[] buffer2; |
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} |
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va_end(args_copy); |
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} |
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void llama_log_internal(ggml_log_level level, const char * format, ...) { |
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va_list args; |
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va_start(args, format); |
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llama_log_internal_v(level, format, args); |
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va_end(args); |
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} |
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void llama_log_callback_default(ggml_log_level level, const char * text, void * user_data) { |
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(void) level; |
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(void) user_data; |
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fputs(text, stderr); |
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fflush(stderr); |
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} |
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void replace_all(std::string & s, const std::string & search, const std::string & replace) { |
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if (search.empty()) { |
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return; |
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} |
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std::string builder; |
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builder.reserve(s.length()); |
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size_t pos = 0; |
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size_t last_pos = 0; |
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while ((pos = s.find(search, last_pos)) != std::string::npos) { |
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builder.append(s, last_pos, pos - last_pos); |
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builder.append(replace); |
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last_pos = pos + search.length(); |
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} |
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builder.append(s, last_pos, std::string::npos); |
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s = std::move(builder); |
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} |
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std::string format(const char * fmt, ...) { |
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va_list ap; |
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va_list ap2; |
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va_start(ap, fmt); |
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va_copy(ap2, ap); |
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int size = vsnprintf(NULL, 0, fmt, ap); |
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GGML_ASSERT(size >= 0 && size < INT_MAX); |
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std::vector<char> buf(size + 1); |
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int size2 = vsnprintf(buf.data(), size + 1, fmt, ap2); |
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GGML_ASSERT(size2 == size); |
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va_end(ap2); |
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va_end(ap); |
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return std::string(buf.data(), size); |
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} |
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std::string llama_format_tensor_shape(const std::vector<int64_t> & ne) { |
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char buf[256]; |
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snprintf(buf, sizeof(buf), "%5" PRId64, ne.at(0)); |
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for (size_t i = 1; i < ne.size(); i++) { |
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), ", %5" PRId64, ne.at(i)); |
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} |
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return buf; |
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} |
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std::string llama_format_tensor_shape(const struct ggml_tensor * t) { |
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char buf[256]; |
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snprintf(buf, sizeof(buf), "%5" PRId64, t->ne[0]); |
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for (int i = 1; i < GGML_MAX_DIMS; i++) { |
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snprintf(buf + strlen(buf), sizeof(buf) - strlen(buf), ", %5" PRId64, t->ne[i]); |
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} |
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return buf; |
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} |
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static std::string gguf_data_to_str(enum gguf_type type, const void * data, int i) { |
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switch (type) { |
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case GGUF_TYPE_UINT8: return std::to_string(((const uint8_t *)data)[i]); |
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case GGUF_TYPE_INT8: return std::to_string(((const int8_t *)data)[i]); |
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case GGUF_TYPE_UINT16: return std::to_string(((const uint16_t *)data)[i]); |
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case GGUF_TYPE_INT16: return std::to_string(((const int16_t *)data)[i]); |
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case GGUF_TYPE_UINT32: return std::to_string(((const uint32_t *)data)[i]); |
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case GGUF_TYPE_INT32: return std::to_string(((const int32_t *)data)[i]); |
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case GGUF_TYPE_UINT64: return std::to_string(((const uint64_t *)data)[i]); |
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case GGUF_TYPE_INT64: return std::to_string(((const int64_t *)data)[i]); |
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case GGUF_TYPE_FLOAT32: return std::to_string(((const float *)data)[i]); |
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case GGUF_TYPE_FLOAT64: return std::to_string(((const double *)data)[i]); |
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case GGUF_TYPE_BOOL: return ((const bool *)data)[i] ? "true" : "false"; |
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default: return format("unknown type %d", type); |
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} |
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} |
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std::string gguf_kv_to_str(const struct gguf_context * ctx_gguf, int i) { |
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const enum gguf_type type = gguf_get_kv_type(ctx_gguf, i); |
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switch (type) { |
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case GGUF_TYPE_STRING: |
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return gguf_get_val_str(ctx_gguf, i); |
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case GGUF_TYPE_ARRAY: |
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{ |
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const enum gguf_type arr_type = gguf_get_arr_type(ctx_gguf, i); |
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int arr_n = gguf_get_arr_n(ctx_gguf, i); |
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const void * data = arr_type == GGUF_TYPE_STRING ? nullptr : gguf_get_arr_data(ctx_gguf, i); |
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std::stringstream ss; |
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ss << "["; |
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for (int j = 0; j < arr_n; j++) { |
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if (arr_type == GGUF_TYPE_STRING) { |
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std::string val = gguf_get_arr_str(ctx_gguf, i, j); |
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replace_all(val, "\\", "\\\\"); |
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replace_all(val, "\"", "\\\""); |
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ss << '"' << val << '"'; |
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} else if (arr_type == GGUF_TYPE_ARRAY) { |
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ss << "???"; |
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} else { |
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ss << gguf_data_to_str(arr_type, data, j); |
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} |
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if (j < arr_n - 1) { |
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ss << ", "; |
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} |
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} |
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ss << "]"; |
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return ss.str(); |
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} |
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default: |
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return gguf_data_to_str(type, gguf_get_val_data(ctx_gguf, i), 0); |
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} |
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} |
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