utfile
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14
README.md
14
README.md
@ -13,8 +13,18 @@ which will place a binary at `build/nstrophy`.
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The syntax for the execution of Nstrophy is
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The syntax for the execution of Nstrophy is
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```bash
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```bash
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./build/nstrophy [-p parameters] [-s savefile] <command>
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./build/nstrophy [-p parameters] [-s savefile] [-u u_outfile] <command>
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```
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```
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* `parameters` is a list of parameters for the computation, see
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[Parameters](#parameters)
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* `savefile` is a file where the last step of the computation is saved in
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binary format so that the computation can be resumed after it has terminated,
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see
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[Interrupting and resuming the computation](#interrupting-and-resuming-the-computation).
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* `u_outfile` is a file to which the final u is written in plain text format,
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which can be used as an initial condition for a future computation.
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Nstrophy is written in C. The Makefile uses the GNU C Compiler.
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Nstrophy is written in C. The Makefile uses the GNU C Compiler.
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@ -114,7 +124,7 @@ should be a `;` sperated list of `key=value` pairs. The possible keys are
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norm.
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norm.
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# Interrupting/resuming the computation
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# Interrupting and resuming the computation
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The computation can be interrupted by sending Nstrophy the `SIGINT` signal
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The computation can be interrupted by sending Nstrophy the `SIGINT` signal
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(e.g. by pressing `Ctrl-C`.) When Nstrophy receives the `SIGINT` signal, it
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(e.g. by pressing `Ctrl-C`.) When Nstrophy receives the `SIGINT` signal, it
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36
src/main.c
36
src/main.c
@ -60,7 +60,7 @@ int print_usage();
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int print_params(nstrophy_parameters parameters, char* initfile_str, char* drivingfile_str, FILE* file);
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int print_params(nstrophy_parameters parameters, char* initfile_str, char* drivingfile_str, FILE* file);
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// read command line arguments
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// read command line arguments
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int read_args(int argc, const char* argv[], char** params, unsigned int* command, unsigned int* nthreads, char** savefile_str);
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int read_args(int argc, const char* argv[], char** params, unsigned int* command, unsigned int* nthreads, char** savefile_str, char** utfile_str);
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int read_params(char* param_str, nstrophy_parameters* parameters, char** initfile_str, char** drivingfile_str);
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int read_params(char* param_str, nstrophy_parameters* parameters, char** initfile_str, char** drivingfile_str);
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int set_parameter(char* lhs, char* rhs, nstrophy_parameters* parameters, bool* setN1, bool* setN2, char** initfile_str, char** drivingfile_str);
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int set_parameter(char* lhs, char* rhs, nstrophy_parameters* parameters, bool* setN1, bool* setN2, char** initfile_str, char** drivingfile_str);
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@ -94,14 +94,16 @@ int main (
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_Complex double* u0;
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_Complex double* u0;
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_Complex double *g;
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_Complex double *g;
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char* savefile_str=NULL;
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char* savefile_str=NULL;
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char* utfile_str=NULL;
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char* initfile_str=NULL;
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char* initfile_str=NULL;
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char* drivingfile_str=NULL;
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char* drivingfile_str=NULL;
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FILE* savefile=NULL;
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FILE* savefile=NULL;
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FILE* utfile=NULL;
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command=0;
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command=0;
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// read command line arguments
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// read command line arguments
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ret=read_args(argc, argv, ¶m_str, &command, &nthreads, &savefile_str);
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ret=read_args(argc, argv, ¶m_str, &command, &nthreads, &savefile_str, &utfile_str);
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if(ret<0){
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if(ret<0){
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return(-1);
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return(-1);
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}
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}
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@ -152,6 +154,15 @@ int main (
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}
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}
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}
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}
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// open utfile (do this after closing init file)
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if(utfile_str!=NULL){
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utfile=fopen(utfile_str,"w");
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if(utfile==NULL){
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fprintf(stderr,"Error opening file '%s' for writing: %s\n", utfile_str, strerror(errno));
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return(-1);
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}
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}
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// print parameters
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// print parameters
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print_params(parameters, initfile_str, drivingfile_str, stderr);
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print_params(parameters, initfile_str, drivingfile_str, stderr);
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print_params(parameters, initfile_str, drivingfile_str, stdout);
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print_params(parameters, initfile_str, drivingfile_str, stdout);
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@ -173,7 +184,7 @@ int main (
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// register signal handler to handle aborts
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// register signal handler to handle aborts
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signal(SIGINT, sig_handler);
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signal(SIGINT, sig_handler);
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signal(SIGTERM, sig_handler);
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signal(SIGTERM, sig_handler);
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enstrophy(parameters.K1, parameters.K2, parameters.N1, parameters.N2, parameters.final_time, parameters.nu, parameters.delta, parameters.L, parameters.adaptive_tolerance, parameters.adaptive_factor, parameters.max_delta, parameters.adaptive_norm, u0, g, parameters.irreversible, parameters.algorithm, parameters.print_freq, parameters.starting_time, nthreads, savefile, (char*)argv[0], param_str, savefile_str);
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enstrophy(parameters.K1, parameters.K2, parameters.N1, parameters.N2, parameters.final_time, parameters.nu, parameters.delta, parameters.L, parameters.adaptive_tolerance, parameters.adaptive_factor, parameters.max_delta, parameters.adaptive_norm, u0, g, parameters.irreversible, parameters.algorithm, parameters.print_freq, parameters.starting_time, nthreads, savefile, utfile, (char*)argv[0], param_str, savefile_str);
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}
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}
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else if(command==COMMAND_QUIET){
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else if(command==COMMAND_QUIET){
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quiet(parameters.K1, parameters.K2, parameters.N1, parameters.N2, parameters.final_time, parameters.nu, parameters.delta, parameters.L, parameters.adaptive_tolerance, parameters.adaptive_factor, parameters.max_delta, parameters.adaptive_norm, parameters.starting_time, u0, g, parameters.irreversible, parameters.algorithm, nthreads, savefile);
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quiet(parameters.K1, parameters.K2, parameters.N1, parameters.N2, parameters.final_time, parameters.nu, parameters.delta, parameters.L, parameters.adaptive_tolerance, parameters.adaptive_factor, parameters.max_delta, parameters.adaptive_norm, parameters.starting_time, u0, g, parameters.irreversible, parameters.algorithm, nthreads, savefile);
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@ -191,12 +202,17 @@ int main (
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fclose(savefile);
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fclose(savefile);
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}
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}
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// close utfile
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if (utfile!=NULL){
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fclose(utfile);
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}
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return(0);
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return(0);
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}
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}
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// usage message
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// usage message
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int print_usage(){
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int print_usage(){
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fprintf(stderr, "usage:\n nstrophy [-t nthreads] [-p parameters] [-s savefile] <command>\n\n");
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fprintf(stderr, "usage:\n nstrophy [-t nthreads] [-p parameters] [-s savefile] [-u u_outfile] <command>\n\n");
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return(0);
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return(0);
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}
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}
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@ -301,13 +317,15 @@ int print_params(
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#define CP_FLAG_PARAMS 1
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#define CP_FLAG_PARAMS 1
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#define CP_FLAG_NTHREADS 2
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#define CP_FLAG_NTHREADS 2
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#define CP_FLAG_SAVEFILE 3
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#define CP_FLAG_SAVEFILE 3
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#define CP_FLAG_UTFILE 4
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int read_args(
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int read_args(
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int argc,
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int argc,
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const char* argv[],
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const char* argv[],
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char** params,
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char** params,
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unsigned int* command,
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unsigned int* command,
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unsigned int* nthreads,
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unsigned int* nthreads,
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char** savefile_str
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char** savefile_str,
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char** utfile_str
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){
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){
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int i;
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int i;
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int ret;
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int ret;
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@ -331,6 +349,9 @@ int read_args(
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case 's':
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case 's':
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flag=CP_FLAG_SAVEFILE;
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flag=CP_FLAG_SAVEFILE;
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break;
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break;
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case 'u':
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flag=CP_FLAG_UTFILE;
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break;
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default:
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default:
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fprintf(stderr, "unrecognized option '-%c'\n", *ptr);
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fprintf(stderr, "unrecognized option '-%c'\n", *ptr);
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print_usage();
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print_usage();
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@ -358,6 +379,11 @@ int read_args(
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*savefile_str=(char*)argv[i];
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*savefile_str=(char*)argv[i];
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flag=0;
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flag=0;
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}
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}
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// savefile
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else if(flag==CP_FLAG_UTFILE){
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*utfile_str=(char*)argv[i];
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flag=0;
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}
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// computation to run
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// computation to run
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else{
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else{
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if(strcmp(argv[i], "uk")==0){
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if(strcmp(argv[i], "uk")==0){
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@ -126,6 +126,7 @@ int uk(
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}
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}
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}
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}
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// TODO: update handling of savefile
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// save final entry to savefile
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// save final entry to savefile
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write_vec_bin(u, K1, K2, savefile);
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write_vec_bin(u, K1, K2, savefile);
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@ -155,6 +156,7 @@ int enstrophy(
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double starting_time,
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double starting_time,
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unsigned int nthreads,
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unsigned int nthreads,
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FILE* savefile,
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FILE* savefile,
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FILE* utfile,
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// for interrupt recovery
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// for interrupt recovery
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char* cmd_string,
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char* cmd_string,
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char* params_string,
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char* params_string,
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@ -307,6 +309,11 @@ int enstrophy(
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}
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}
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}
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}
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// save final u to utfile in txt format
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if(utfile!=NULL){
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write_vec(u, K1, K2, utfile);
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}
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ns_free_tmps(u, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6, tmp7, fft1, fft2, ifft, algorithm);
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ns_free_tmps(u, tmp1, tmp2, tmp3, tmp4, tmp5, tmp6, tmp7, fft1, fft2, ifft, algorithm);
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return(0);
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return(0);
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}
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}
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@ -378,6 +385,7 @@ int quiet(
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step=next_step;
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step=next_step;
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}
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}
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// TODO: update handling of savefile
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// save final entry to savefile
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// save final entry to savefile
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write_vec(u, K1, K2, savefile);
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write_vec(u, K1, K2, savefile);
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@ -36,7 +36,7 @@ typedef struct fft_vects {
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int uk( int K1, int K2, int N1, int N2, double final_time, double nu, double delta, double L, double adaptive_tolerance, double adaptive_factor, double max_delta, unsigned int adaptive_norm, _Complex double* u0, _Complex double* g, bool irreversible, unsigned int algorithm, double print_freq, double starting_time, unsigned int nthreadsl, FILE* savefile);
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int uk( int K1, int K2, int N1, int N2, double final_time, double nu, double delta, double L, double adaptive_tolerance, double adaptive_factor, double max_delta, unsigned int adaptive_norm, _Complex double* u0, _Complex double* g, bool irreversible, unsigned int algorithm, double print_freq, double starting_time, unsigned int nthreadsl, FILE* savefile);
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// compute enstrophy and alpha
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// compute enstrophy and alpha
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int enstrophy( int K1, int K2, int N1, int N2, double final_time, double nu, double delta, double L, double adaptive_tolerance, double adaptive_factor, double max_delta, unsigned int adaptive_norm, _Complex double* u0, _Complex double* g, bool irreversible, unsigned int algorithm, double print_freq, double starting_time, unsigned int nthreads, FILE* savefile, char* cmd_string, char* params_string, char* savefile_string);
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int enstrophy( int K1, int K2, int N1, int N2, double final_time, double nu, double delta, double L, double adaptive_tolerance, double adaptive_factor, double max_delta, unsigned int adaptive_norm, _Complex double* u0, _Complex double* g, bool irreversible, unsigned int algorithm, double print_freq, double starting_time, unsigned int nthreads, FILE* savefile, FILE* utfile, char* cmd_string, char* params_string, char* savefile_string);
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// compute solution as a function of time, but do not print anything (useful for debugging)
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// compute solution as a function of time, but do not print anything (useful for debugging)
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int quiet( int K1, int K2, int N1, int N2, double final_time, double nu, double delta, double L, double adaptive_tolerance, double adaptive_factor, double max_delta, unsigned int adaptive_norm, double starting_time, _Complex double* u0, _Complex double* g, bool irreversible, unsigned int algorithm, unsigned int nthreads, FILE* savefile);
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int quiet( int K1, int K2, int N1, int N2, double final_time, double nu, double delta, double L, double adaptive_tolerance, double adaptive_factor, double max_delta, unsigned int adaptive_norm, double starting_time, _Complex double* u0, _Complex double* g, bool irreversible, unsigned int algorithm, unsigned int nthreads, FILE* savefile);
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