FunASR/funasr/runtime/onnxruntime/tester/tester.cpp
2023-03-16 11:44:13 +08:00

118 lines
2.9 KiB
C++

#ifndef _WIN32
#include <sys/time.h>
#else
#include <win_func.h>
#endif
#include "librapidasrapi.h"
#include <iostream>
#include <fstream>
using namespace std;
int main(int argc, char *argv[])
{
if (argc < 2)
{
printf("Usage: %s /path/to/model_dir /path/to/wav/file", argv[0]);
exit(-1);
}
struct timeval start, end;
gettimeofday(&start, NULL);
int nThreadNum = 4;
RPASR_HANDLE AsrHanlde=RapidAsrInit(argv[1], nThreadNum);
if (!AsrHanlde)
{
printf("Cannot load ASR Model from: %s, there must be files model.onnx and vocab.txt", argv[1]);
exit(-1);
}
gettimeofday(&end, NULL);
long seconds = (end.tv_sec - start.tv_sec);
long modle_init_micros = ((seconds * 1000000) + end.tv_usec) - (start.tv_usec);
printf("Model initialization takes %lfs.\n", (double)modle_init_micros / 1000000);
gettimeofday(&start, NULL);
float snippet_time = 0.0f;
RPASR_RESULT Result=RapidAsrRecogFile(AsrHanlde, argv[2], RASR_NONE, NULL);
gettimeofday(&end, NULL);
if (Result)
{
string msg = RapidAsrGetResult(Result, 0);
setbuf(stdout, NULL);
cout << "Result: \"";
cout << msg << endl;
cout << "\"." << endl;
snippet_time = RapidAsrGetRetSnippetTime(Result);
RapidAsrFreeResult(Result);
}
else
{
cout <<"no return data!";
}
//char* buff = nullptr;
//int len = 0;
//ifstream ifs(argv[2], std::ios::binary | std::ios::in);
//if (ifs.is_open())
//{
// ifs.seekg(0, std::ios::end);
// len = ifs.tellg();
// ifs.seekg(0, std::ios::beg);
// buff = new char[len];
// ifs.read(buff, len);
// //RPASR_RESULT Result = RapidAsrRecogPCMFile(AsrHanlde, argv[2], RASR_NONE, NULL);
// RPASR_RESULT Result=RapidAsrRecogPCMBuffer(AsrHanlde, buff,len, RASR_NONE, NULL);
// //RPASR_RESULT Result = RapidAsrRecogPCMFile(AsrHanlde, argv[2], RASR_NONE, NULL);
// gettimeofday(&end, NULL);
//
// if (Result)
// {
// string msg = RapidAsrGetResult(Result, 0);
// setbuf(stdout, NULL);
// cout << "Result: \"";
// cout << msg << endl;
// cout << "\"." << endl;
// snippet_time = RapidAsrGetRetSnippetTime(Result);
// RapidAsrFreeResult(Result);
// }
// else
// {
// cout <<"no return data!";
// }
//
//delete[]buff;
//}
printf("Audio length %lfs.\n", (double)snippet_time);
seconds = (end.tv_sec - start.tv_sec);
long taking_micros = ((seconds * 1000000) + end.tv_usec) - (start.tv_usec);
printf("Model inference takes %lfs.\n", (double)taking_micros / 1000000);
printf("Model inference RTF: %04lf.\n", (double)taking_micros/ (snippet_time*1000000));
RapidAsrUninit(AsrHanlde);
return 0;
}