| [3ff27cf] | 1 | #ifdef _CIVL
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| 2 | #include <civlc.cvh>
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| 3 | #endif
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| [0966332] | 4 | /* FEVS: A Functional Equivalence Verification Suite for High-Performance
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| 5 | * Scientific Computing
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| 6 | *
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| 7 | * Copyright (C) 2009-2010, Stephen F. Siegel, Timothy K. Zirkel,
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| 8 | * University of Delaware
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| 9 | *
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| 10 | * This program is free software; you can redistribute it and/or
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| 11 | * modify it under the terms of the GNU General Public License as
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| 12 | * published by the Free Software Foundation; either version 3 of the
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| 13 | * License, or (at your option) any later version.
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| 14 | *
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| 15 | * This program is distributed in the hope that it will be useful, but
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| 16 | * WITHOUT ANY WARRANTY; without even the implied warranty of
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| 17 | * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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| 18 | * General Public License for more details.
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| 19 | *
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| 20 | * You should have received a copy of the GNU General Public License
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| 21 | * along with this program; if not, write to the Free Software
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| 22 | * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA
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| 23 | * 02110-1301 USA.
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| 24 | */
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| 25 |
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| 26 |
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| 27 | /* diffusion1d_seq.c: sequential version of 1d diffusion.
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| 28 | * The length of the rod is 1. The endpoints are frozen at the input
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| 29 | * temperature.
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| 30 | *
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| 31 | */
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| 32 | #include <stdlib.h>
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| 33 | #include <stdio.h>
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| 34 | #include <assert.h>
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| 35 | #include <math.h>
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| 36 | #include <string.h>
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| 37 | #pragma CIVL $input int NX;
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| 38 | #pragma CIVL $input int NXB;
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| 39 | #pragma CIVL $input double K;
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| 40 | #pragma CIVL $input int NSTEPS;
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| 41 | #pragma CIVL $input int NSTEPSB;
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| 42 | #pragma CIVL $input int WSTEP;
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| 43 | #pragma CIVL $output double u_output[NX];
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| [3ff27cf] | 44 | #pragma CIVL $assume(2 < NX && NX <= NXB);
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| 45 | #pragma CIVL $assume(0 < NSTEPS && NSTEPS <= NSTEPSB);
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| [0966332] | 46 |
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| 47 | /* Parameters: These are defined at the beginning of the input file:
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| 48 | *
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| 49 | * nx = number of points in x direction, including endpoints
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| 50 | * k = D*dt/(dx*dx)
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| 51 | * nsteps = number of time steps
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| 52 | * wstep = write frame every this many steps
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| 53 | *
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| 54 | * Compiling with the flag -DDEBUG will also cause the data to be written
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| 55 | * to a sequence of plain text files.
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| 56 | */
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| 57 |
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| 58 | /* Global variables */
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| 59 | int nx = -1; /* number of discrete points including endpoints */
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| 60 | double k = -1; /* D*dt/(dx*dx) */
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| 61 | int nsteps = -1; /* number of time steps */
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| 62 | int wstep = -1; /* write frame every this many time steps */
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| [aca79e0] | 63 | double *u = NULL; /* temperature function */
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| [0966332] | 64 |
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| 65 | void quit(FILE * file) {
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| 66 | printf("Input file must have format:\n\n");
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| 67 | printf("nx = <INTEGER>\n");
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| 68 | printf("k = <DOUBLE>\n");
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| 69 | printf("nsteps = <INTEGER>\n");
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| 70 | printf("wstep = <INTEGER>\n");
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| 71 | printf("<DOUBLE> <DOUBLE> ...\n\n");
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| 72 | printf("where there are nx doubles at the end.\n");
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| 73 | fflush(stdout);
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| 74 | // Missing free(u) and fclose(file) probably is a bug
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| [aca79e0] | 75 | if(u != NULL)
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| 76 | free(u);
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| [0966332] | 77 | fclose(file);
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| 78 | // Following statements should be added in $exit() or added by CIVL automatically
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| [aca79e0] | 79 | exit(0);
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| [0966332] | 80 | }
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| 81 |
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| 82 | void readint(FILE *file, char *keyword, int *ptr) {
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| 83 | char buf[101];
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| 84 | int value;
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| 85 | int returnval;
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| 86 |
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| 87 | returnval = fscanf(file, "%100s", buf);
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| 88 | if (returnval != 1) quit(file);
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| 89 | // fscanf can only make the output argument symbolic, so the
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| 90 | // following comparison will always enable 2 transitions.
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| 91 | // Trivially, for verification of the computing results of sequential program,
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| 92 | // we can ignore the transition of executing "quit()". For concurrent programs,
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| 93 | // ,especially for mpi programs, any one of processes terminated exceptionally
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| 94 | // will make the some rest processes go into a dead lock (e.g.MPI_Recv forever).
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| [3ff27cf] | 95 | #pragma CIVL $assume(strcmp(keyword, buf) == 0);
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| [0966332] | 96 | if (strcmp(keyword, buf) != 0) quit(file);
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| 97 | returnval = fscanf(file, "%10s", buf);
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| 98 | if (returnval != 1) quit(file);
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| [3ff27cf] | 99 | #pragma CIVL $assume(strcmp("=", buf) == 0);
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| [0966332] | 100 | if (strcmp("=", buf) != 0) quit(file);
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| 101 | returnval = fscanf(file, "%d", ptr);
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| 102 | if (returnval != 1) quit(file);
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| 103 | }
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| 104 |
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| 105 | void readdouble(FILE *file, char *keyword, double *ptr) {
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| 106 | char buf[101];
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| 107 | int value;
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| 108 | int returnval;
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| 109 |
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| 110 | returnval = fscanf(file, "%100s", buf);
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| 111 | if (returnval != 1) quit(file);
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| [3ff27cf] | 112 | #pragma CIVL $assume(strcmp(keyword, buf) == 0);
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| [0966332] | 113 | if (strcmp(keyword, buf) != 0) quit(file);
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| 114 | returnval = fscanf(file, "%10s", buf);
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| 115 | if (returnval != 1) quit(file);
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| [3ff27cf] | 116 | #pragma CIVL $assume(strcmp("=", buf) == 0);
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| [0966332] | 117 | if (strcmp("=", buf) != 0) quit(file);
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| 118 | returnval = fscanf(file, "%lf", ptr);
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| 119 | if (returnval != 1) quit(file);
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| 120 | }
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| 121 |
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| 122 |
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| 123 | /* init: initializes global variables. read nx, k, nsteps, u,
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| 124 | * from infile. Open GIF output file. */
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| 125 | void init(char* infilename) {
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| 126 | char keyword[101];
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| 127 | FILE *infile = fopen(infilename, "r");
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| 128 | int i;
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| 129 |
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| 130 | assert(infile);
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| 131 | readint(infile, "nx", &nx);
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| 132 | readdouble(infile, "k", &k);
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| 133 | readint(infile, "nsteps", &nsteps);
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| 134 | readint(infile, "wstep", &wstep);
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| [3ff27cf] | 135 | #pragma CIVL $assume(nx == NX);
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| 136 | #pragma CIVL $assume(nsteps == NSTEPS);
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| 137 | #pragma CIVL $assume(wstep == WSTEP);
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| 138 | #pragma CIVL $assume(0.0 < k && k < 0.5);
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| [0966332] | 139 | printf("Diffusion1d with nx=%d, k=%f, nsteps=%d, wstep=%d\n",
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| 140 | nx, k, nsteps, wstep);
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| 141 | fflush(stdout);
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| 142 | assert(nx>=2);
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| 143 | assert(k>0 && k<.5);
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| 144 | assert(nsteps >= 1);
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| 145 | assert(wstep >= 1 && wstep <=nsteps);
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| 146 | u = (double*)malloc(nx*sizeof(double));
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| 147 | assert(u);
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| 148 | for (i = 0; i < nx; i++) {
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| 149 | if (fscanf(infile, "%lf", u+i) != 1) quit(infile);
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| 150 | }
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| 151 | // Missing fclose for FILE * infile
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| 152 | fclose(infile);
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| 153 | }
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| 154 |
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| 155 | /* write_plain: write current data to plain text file and stdout */
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| 156 | /* currently I ignore sprintf stuff and let write_palin only do assignment to ouput
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| 157 | arguments(which is the only meaningful thing this function does in a verification
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| 158 | view)*/
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| 159 | void write_plain(int time) {
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| 160 | for (int i = 0; i < nx; i++)
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| 161 | u_output[i] = u[i];
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| 162 |
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| 163 | return;
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| 164 | }
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| 165 |
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| 166 | /* updates u for next time step. */
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| 167 | void update() {
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| 168 | int i;
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| 169 | double u_new[nx];
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| 170 |
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| 171 | for (i = 1; i < nx-1; i++)
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| 172 | u_new[i] = u[i] + k*(u[i+1] + u[i-1] -2*u[i]);
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| 173 | for (i = 1; i < nx-1; i++)
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| 174 | u[i] = u_new[i];
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| 175 | }
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| 176 |
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| 177 | /* main: executes simulation, creates one output file for each time
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| 178 | * step */
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| 179 | int main(int argc, char *argv[]) {
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| 180 | int iter;
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| 181 |
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| [3ff27cf] | 182 | #pragma CIVL $assume((argc == 2));
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| [0966332] | 183 | assert(argc==2);
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| 184 | init(argv[1]);
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| 185 | write_plain(0);
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| 186 | for (iter = 1; iter <= nsteps; iter++) {
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| 187 | update();
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| 188 | if (iter%wstep==0) write_plain(iter);
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| 189 | }
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| 190 | free(u);
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| 191 | return 0;
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| 192 | }
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