CUDA result returns garbage using very large array, but reports no error

亡梦爱人 提交于 2019-12-01 17:45:07

As you've discovered, your error handling method is not working. Below I have pasted a version of your code with an error checking method that I use frequently. The reason things are not working at your failure point is that your gridsize (you are launching a 1D grid) is exceeding the maximum grid size in the X dimension (65535 by default, ie. for compute capability up to 2.x). If you want to take advantage of a larger gridsize dimension (2^31 -1 is limit with compute capability 3.0), you need to compile with the -arch=sm_30 switch.

Just for reference here is a version of your code which shows an error-checking method that I use frequently.

#include <stdio.h>
#include <fstream>


#define cudaCheckErrors(msg) \
    do { \
        cudaError_t __err = cudaGetLastError(); \
        if (__err != cudaSuccess) { \
            fprintf(stderr, "Fatal error: %s (%s at %s:%d)\n", \
                msg, cudaGetErrorString(__err), \
                __FILE__, __LINE__); \
            fprintf(stderr, "*** FAILED - ABORTING\n"); \
            exit(1); \
        } \
    } while (0)

__global__ void addKernel(float* _Results, int _TotalCombinations)
{
    // Get thread Id
    unsigned int Id = (blockDim.x * blockDim.y * blockIdx.x) + (blockDim.x * threadIdx.y) + threadIdx.x;

    //If the Id is within simulation range, log it
    if(Id < _TotalCombinations)
    {
        _Results[Id] = 0.95f;
    }
}

#define BLOCK_DIM_X 32
#define BLOCK_DIM_Y 32
#define BLOCK_SIZE BLOCK_DIM_X * BLOCK_DIM_Y // Statc block size of 32*32 (1024)

int main()
{
    // The number of simulations to run
    unsigned int totalCombinations = 65000000;

    int gridsize = 1;

    // Work out how many blocks of size 1024 are required to perform all of totalCombinations
    for(unsigned int totalsize = gridsize * BLOCK_SIZE; totalsize < totalCombinations;
        gridsize++, totalsize = gridsize * BLOCK_SIZE)
        ;
    printf("gridsize = %d, blocksize = %d\n", gridsize, BLOCK_SIZE);
    // Allocate host memory
    float* host_results = new float[totalCombinations];
    memset(host_results, 0, sizeof(float) * totalCombinations);
    float *dev_results = 0;

    cudaSetDevice(0);

    // Allocate device memory
    cudaMalloc((void**)&dev_results, totalCombinations * sizeof(float));
    cudaCheckErrors("cudaMalloc fail");

    dim3 grid, block;

    block = dim3(BLOCK_DIM_X, BLOCK_DIM_Y);

    grid = dim3(gridsize);

    // Launch kernel
    addKernel<<<gridsize, block>>>(dev_results, totalCombinations);
    cudaCheckErrors("kernel fail");
    // Wait for synchronize
    cudaDeviceSynchronize();
    cudaCheckErrors("sync fail");

    // Copy device data back to host
    cudaMemcpy(host_results, dev_results, totalCombinations * sizeof(float), cudaMemcpyDeviceToHost);
    cudaCheckErrors("cudaMemcpy 2 fail");

    double total = 0.0;

    // Total the results in the host array
    for(unsigned int i = 0; i < totalCombinations; i++)
        total+=host_results[i];

    // Print results to screen
    printf("Total %f\n", total);

    delete[] host_results;

    return 0;
}
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