imaginary_part.cpp
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#include <poincare/imaginary_part.h>
#include <poincare/complex.h>
#include <poincare/simplification_engine.h>
#include <poincare/rational.h>
#include <cmath>
extern "C" {
#include <assert.h>
}
namespace Poincare {
Expression::Type ImaginaryPart::type() const {
return Type::ImaginaryPart;
}
Expression * ImaginaryPart::clone() const {
ImaginaryPart * a = new ImaginaryPart(m_operands, true);
return a;
}
Expression * ImaginaryPart::shallowReduce(Context& context, AngleUnit angleUnit) {
Expression * e = Expression::shallowReduce(context, angleUnit);
if (e != this) {
return e;
}
Expression * op = editableOperand(0);
#if MATRIX_EXACT_REDUCING
if (op->type() == Type::Matrix) {
return SimplificationEngine::map(this, context, angleUnit);
}
#endif
if (op->type() == Type::Rational) {
return replaceWith(new Rational(0), true);
}
return this;
}
template<typename T>
Complex<T> ImaginaryPart::computeOnComplex(const Complex<T> c, AngleUnit angleUnit) {
return Complex<T>::Float(c.b());
}
}