Added one test case and three api functions. The test will run but WQ result is not accurate.
This commit is contained in:
116
src/lemontiger.c
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116
src/lemontiger.c
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#include "types.h"
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#include "vars.h"
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#include "funcs.h"
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#include "toolkit.h"
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#include "lemontiger.h"
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extern char OutOfMemory;
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int ENopeninitHQ() {
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int errcode = 0;
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Statflag = FALSE; //disable status report
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if (errcode = ENopenH()) return errcode;
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// Open WQ solver, but don't check SaveHflag as in ENopenQ()
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ERRCODE(openqual());
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if (!errcode) OpenQflag = TRUE;
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else {
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errmsg(errcode);
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return errcode;
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}
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if (errcode = ENinitH(1)) return errcode;
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if (errcode = ENinitQ(0)) return errcode;
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Rtime = Rstep; //use ENinitH()'s setup
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return errcode;
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}
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int ENrunstepHQ(long* pstime /* Simulation time pointer */
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, long* ptleft /* Time left in the simulation*/) {
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long hydtime; /* Hydraulic solution time */
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long hydstep; /* Hydraulic time step */
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int errcode = 0;
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long dt, hstep, tstep;
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/* Update reported simulation time */
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*pstime = Qtime;
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/* if needed, push forward hydraulic simulation */
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if (Qtime == Htime)
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{
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if ( (errcode = runhyd(&hydtime)) ||
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(errcode = nexthyd(&hydstep))
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) return errcode;
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/* If simulating WQ: */
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if (Qualflag != NONE && Qtime < Dur) {
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/* Compute reaction rate coeffs. */
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if (Reactflag && Qualflag != AGE) ratecoeffs();
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/* Initialize pipe segments (at time 0) or */
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/* else re-orient segments if flow reverses.*/
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if (Qtime == 0) initsegs();
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else reorientsegs();
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}
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Htime = hydtime + hydstep;
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}
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/* run WQ simulation similar to stepqual() */
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tstep = Qstep;
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do
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{
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dt = tstep;
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hstep = Htime - Qtime;
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if (hstep < dt)
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{
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dt = hstep;
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if (Qualflag != NONE) transport(dt);
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Qtime += dt;
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/* if needed, push forward hydraulic simulation */
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if ( (errcode = runhyd(&hydtime)) ||
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(errcode = nexthyd(&hydstep))
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) return errcode;
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if (Qualflag != NONE && Qtime < Dur) {
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/* Compute reaction rate coeffs. */
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if (Reactflag && Qualflag != AGE) ratecoeffs();
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/* Initialize pipe segments (at time 0) or */
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/* else re-orient segments if flow reverses.*/
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if (Qtime == 0) initsegs();
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else reorientsegs();
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}
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Htime = hydtime + hydstep;
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Qtime = hydtime;
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}
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else
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{
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if (Qualflag != NONE) transport(dt);
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Qtime += dt;
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}
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tstep -= dt;
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if (OutOfMemory) errcode = 101;
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} while (!errcode && tstep > 0);
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*ptleft = Dur - Qtime;
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if (!errcode && Saveflag && *ptleft == 0) errcode = savefinaloutput();
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return(errcode);
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}
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int ENcloseHQ() {
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int errcode = 0;
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if ( (errcode = ENcloseQ()) || (errcode = ENcloseH()) )
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return errcode;
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return errcode;
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}
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11
src/lemontiger.h
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11
src/lemontiger.h
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@@ -0,0 +1,11 @@
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#ifndef LEMONTIGER_H
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#define LEMONTIGER_H
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int ENopeninitHQ();
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int ENrunstepHQ(long*, long*);
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int ENcloseHQ();
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#endif
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82
src/testLT.c
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82
src/testLT.c
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@@ -0,0 +1,82 @@
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/* Test file for epanet LemonTiger - Jinduan's version
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The extension enables syncronized computation of hydraulics
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and water quality */
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#include <stdio.h>
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#include "types.h"
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#include "vars.h"
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#include "toolkit.h"
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#include "lemontiger.h"
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#ifdef CLE_LT
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int main(int argc, char* argv[]) {
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int err = 0; //error code
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long stime = 0; //simulation time point, = t = Htime
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long step = 1; //time to next time point, = tstep = hydstep
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long tleft = 0; //time left in the simulation
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int id; // some node id
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float value; // some node/link value
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int TIME_A = 3600*10;
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int TIME_B = 3600*20; //two time points for testing
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/* Asychronous solver (old epanet) */
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if (err=ENopen(argv[1], argv[2], "")) return err;
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ENgetnodeindex("184", &id);
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for (ENopenH(), ENinitH(1), step=1;
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// must save intermediate results to disk (initH(1)), otherwise WQ solver won't execute
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step>0; ) {
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ENrunH(&stime); ENnextH(&step);
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printf("stime = %d sec, step = %d sec.\n", stime, step);
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if (stime == TIME_A || stime == TIME_B) { // grab some results
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ENgetnodevalue(id, EN_HEAD, &value);
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printf("Node 184's head = %f.\n", value);
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}
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}
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ENcloseH();
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printf("Reset time pointer and run WQ.\n");
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for (ENopenQ(), ENinitQ(0), step=1; step>0; ) {
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/* this operation resets the internal time pointer (back to 0)*/
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ENrunQ(&stime); ENnextQ(&step);
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printf("stime = %d sec, step = %d sec.\n", stime, step);
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// grab some results
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if (stime == TIME_A || stime == TIME_B) {
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ENgetnodevalue(id, EN_QUALITY, &value);
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printf("Node 184's quality = %f.\n", value);
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}
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}
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ENcloseQ();
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ENclose();
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/* Sychronous solver (LemonTiger) */
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if (err=ENopen(argv[1], argv[2], "")) return err;
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for (ENopeninitHQ(), tleft=Dur; tleft>0; ) {
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ENrunstepHQ(&stime, &tleft);
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printf("stime = %d sec, time left = %d sec.\n", stime, tleft);
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if (stime == TIME_A || stime == TIME_B) {
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ENgetnodevalue(id, EN_HEAD, &value);
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printf("Node 184's head = %f.\n", value);
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ENgetnodevalue(id, EN_QUALITY, &value);
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printf("Node 184's quality = %f.\n", value);
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}
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}
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ENcloseHQ();
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ENclose();
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}
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#endif
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