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I'm new in Cuda. I'm trying to add the float elements of an array in the kernel, but the final result is wrong. because I need to do it atomic, but in the other hand atomicAdd is only used for integers...any ideas?

__global__ void add_element(float *my_array, float *result_sum){

    int tid = blockIdx.x * blockDim.x + threadIdx.x;
    *result_sum += my_array[tid];

int main(int argc, char** argv){

    float   my_array[10];   
    float   result_sum = 0;
    float   *device_array, *device_sum;

    cudaMalloc((void**)&device_array, 10*sizeof(float) );
    cudaMalloc((void**)&device_sum, sizeof(float) );

    //  fill the array
    for (int i=0; i<10; i++){
        my_array[i] = (float)i/2;

    cudaMemcpy(device_array, my_array, 10*sizeof(float),cudaMemcpyHostToDevice);
    cudaMemcpy(device_sum, &result_sum, sizeof(float),cudaMemcpyHostToDevice);

    add_element<<<1,10>>>(device_array, device_sum);

    cudaMemcpy(&result_sum, device_sum, sizeof(float), cudaMemcpyDeviceToHost);

    for(int i=0; i<10; i++){
        printf(" %f \n", my_array[i]);
    printf("+\n----------\n %f\n", result_sum);


    return 0;
share|improve this question

You can use atomicAdd for float and double as well. as follow:

__device__ float atomicAdd(float *address, float val) { return 0; }

__device__ __forceinline__ float atomicAdd(float *address, float val)
// Doing it all as longlongs cuts one __longlong_as_double from the inner loop
unsigned int *ptr = (unsigned int *)address;
unsigned int old, newint, ret = *ptr;
do {
    old = ret;
    newint = __float_as_int(__int_as_float(old)+val);
} while((ret = atomicCAS(ptr, old, newint)) != old);

return __int_as_float(ret);

or find the file "derived_atomic_functions.h" and add in your project as your header file.

share|improve this answer
Thanks, I did it. – Reza Sep 24 '13 at 10:27

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