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conv_segfault.cpp
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conv_segfault.cpp
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#include <hip/hip_runtime_api.h>
#include <miopen/miopen.h>
#include <stdio.h>
#include <iostream>
#define CHECK_HIP(cmd) \
{\
hipError_t hip_error = cmd;\
if (hip_error != hipSuccess) { \
fprintf(stderr, "error: '%s'(%d) at %s:%d\n", hipGetErrorString(hip_error), hip_error,__FILE__, __LINE__); \
exit(EXIT_FAILURE);\
}\
}
#define CHECK_MIO(cmd) \
{\
miopenStatus_t miostat = cmd;\
if (miostat != miopenStatusSuccess) { \
fprintf(stderr, " MIOpen error (%d) at %s:%d\n", miostat,__FILE__, __LINE__); \
exit(EXIT_FAILURE);\
}\
}
struct Tensor {
miopenTensorDescriptor_t desc;
void* data;
size_t data_size;
Tensor(int n, int c, int h, int w) {
CHECK_MIO(miopenCreateTensorDescriptor(&desc));
CHECK_MIO(miopenSet4dTensorDescriptor(desc, miopenFloat, n, c, h, w));
data_size = n*c*h*w*sizeof(float);
CHECK_HIP(hipMalloc(&data, data_size));
}
};
int main(int argc, char *argv[])
{
int devcount;
CHECK_HIP(hipGetDeviceCount(&devcount));
std::cout << "Number of HIP devices found: " << devcount << std::endl;
if (devcount <= 0)
exit(EXIT_FAILURE);
miopenHandle_t mio_handle;
CHECK_MIO(miopenCreate(&mio_handle));
/* create conv desc */
miopenConvolutionDescriptor_t convdesc;
CHECK_MIO(miopenCreateConvolutionDescriptor(&convdesc));
CHECK_MIO(miopenInitConvolutionDescriptor(convdesc, miopenConvolution, 1, 1, 1, 1, 1, 1));
// create input, output and weights tensors
Tensor input(128, 3, 32, 32);
Tensor output(128, 64, 32, 32);
Tensor weights(64, 3, 3, 3);
// create workspace
size_t workspace_size;
void* workspace;
CHECK_MIO(miopenConvolutionForwardGetWorkSpaceSize(mio_handle, weights.desc, input.desc, convdesc, output.desc, &workspace_size));
CHECK_HIP(hipMalloc(&workspace, workspace_size));
// find best algo, and benchmark!
miopenConvAlgoPerf_t perfs[4];
int returned_algos;
CHECK_MIO(miopenFindConvolutionForwardAlgorithm(mio_handle, input.desc, input.data, weights.desc, weights.data, convdesc, output.desc, output.data, 4, &returned_algos, perfs, workspace, workspace_size, false));
return 0;
}