Updated decomp routine to uint64_t for large file support

This commit is contained in:
James E McClure 2017-07-06 23:33:38 -04:00
parent 7502ab69b0
commit bb21dd333a

View File

@ -41,11 +41,11 @@ int main(int argc, char **argv)
//.......................................................................
int nprocs, nprocx, nprocy, nprocz, nx, ny, nz, nspheres;
double Lx, Ly, Lz;
int Nx,Ny,Nz;
int i,j,k,n;
uint64_t Nx,Ny,Nz;
uint64_t i,j,k,n;
int BC=0;
char Filename[40];
int xStart,yStart,zStart;
uint64_t xStart,yStart,zStart;
// char fluidValue,solidValue;
std::vector<char> solidValues;
@ -81,21 +81,22 @@ int main(int argc, char **argv)
// Rank=0 reads the entire segmented data and distributes to worker processes
if (rank==0){
printf("Dimensions of segmented image: %i x %i x %i \n",Nx,Ny,Nz);
SegData = new char[Nx*Ny*Nz];
uint64_t SIZE = Nx*Ny*Nz;
SegData = new char[SIZE];
FILE *SEGDAT = fopen(Filename,"rb");
if (SEGDAT==NULL) ERROR("Error reading segmented data");
size_t ReadSeg;
ReadSeg=fread(SegData,1,Nx*Ny*Nz,SEGDAT);
if (ReadSeg != size_t(Nx*Ny*Nz)) printf("lbpm_segmented_decomp: Error reading segmented data (rank=%i)\n",rank);
ReadSeg=fread(SegData,1,SIZE,SEGDAT);
if (ReadSeg != size_t(SIZE)) printf("lbpm_segmented_decomp: Error reading segmented data (rank=%i)\n",rank);
fclose(SEGDAT);
printf("Read segmented data from %s \n",Filename);
}
// Get the rank info
int N = (nx+2)*(ny+2)*(nz+2);
uint64_t N = (nx+2)*(ny+2)*(nz+2);
// number of sites to use for periodic boundary condition transition zone
int z_transition_size = (nprocz*nz - (Nz - zStart))/2;
uint64_t z_transition_size = (nprocz*nz - (Nz - zStart))/2;
if (z_transition_size < 0) z_transition_size=0;
char LocalRankFilename[40];
@ -119,14 +120,14 @@ int main(int argc, char **argv)
for (k=0;k<nz+2;k++){
for (j=0;j<ny+2;j++){
for (i=0;i<nx+2;i++){
int x = xStart + ip*nx + i-1;
int y = yStart + jp*ny + j-1;
// int z = zStart + kp*nz + k-1;
int z = zStart + kp*nz + k-1 - z_transition_size;
uint64_t x = xStart + ip*nx + i-1;
uint64_t y = yStart + jp*ny + j-1;
// uint64_t z = zStart + kp*nz + k-1;
uint64_t z = zStart + kp*nz + k-1 - z_transition_size;
if (z<zStart) z=zStart;
if (!(z<Nz)) z=Nz-1;
int nlocal = k*(nx+2)*(ny+2) + j*(nx+2) + i;
int nglobal = z*Nx*Ny+y*Nx+x;
uint64_t nlocal = k*(nx+2)*(ny+2) + j*(nx+2) + i;
uint64_t nglobal = z*Nx*Ny+y*Nx+x;
loc_id[nlocal] = SegData[nglobal];
}
}