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catima/tests/test_generated.cpp

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#define DOCTEST_CONFIG_IMPLEMENT_WITH_MAIN
#define DOCTEST_CONFIG_SUPER_FAST_ASSERTS
#include "doctest.h"
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#include <math.h>
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#include "testutils.h"
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#include "catima/catima.h"
//#include "nucdata.h"
using namespace std;
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TEST_CASE("LS generated is equal to calculated"){
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catima::Projectile p;
double a,b;
p.A = 238;
p.Z = 92;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard(p);
b = catima::precalculated_lindhard(p);
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CHECK(a==approx(b).epsilon(0.001));
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}
p.A = 220;
p.Z = 92;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard(p);
b = catima::precalculated_lindhard(p);
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CHECK(a==approx(b).epsilon(0.01));
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}
p.A = 250;
p.Z = 92;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard(p);
b = catima::precalculated_lindhard(p);
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CHECK(a==approx(b).epsilon(0.01));
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}
p.A = 200;
p.Z = 76;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard(p);
b = catima::precalculated_lindhard(p);
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CHECK(a==approx(b).epsilon(0.01));
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}
p.A = 100;
p.Z = 50;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard(p);
b = catima::precalculated_lindhard(p);
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CHECK(a==approx(b).epsilon(0.01));
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}
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}
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TEST_CASE("LS X generated is equal to calculated"){
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catima::Projectile p;
double a,b;
p.A = 238;
p.Z = 92;
for(double e:{90.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard_X(p);
b = catima::precalculated_lindhard_X(p);
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CHECK(a==approx(b).epsilon(0.001));
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}
p.A = 220;
p.Z = 92;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard_X(p);
b = catima::precalculated_lindhard_X(p);
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CHECK(a==approx(b).epsilon(0.02));
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}
p.A = 250;
p.Z = 92;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard_X(p);
b = catima::precalculated_lindhard_X(p);
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CHECK(a==approx(b).epsilon(0.03));
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}
p.A = 200;
p.Z = 76;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard_X(p);
b = catima::precalculated_lindhard_X(p);
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CHECK(a==approx(b).epsilon(0.03));
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}
p.A = 100;
p.Z = 50;
for(double e:{100.0,1000.0,5000.0,30000.0}){
p.T = e;
a = catima::bethek_lindhard_X(p);
b = catima::precalculated_lindhard_X(p);
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CHECK(a==approx(b).epsilon(0.03));
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}
}