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approximation encouters a complex value All approximation methods take the complex format into account.
52 lines
1.3 KiB
C++
52 lines
1.3 KiB
C++
#include "function.h"
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#include "poincare_helpers.h"
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#include <string.h>
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#include <cmath>
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#include <assert.h>
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using namespace Poincare;
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namespace Shared {
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Function::Function(const char * name, KDColor color) :
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ExpressionModel(),
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m_name(name),
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m_color(color),
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m_active(true)
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{
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}
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uint32_t Function::checksum() {
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char data[k_dataLengthInBytes/sizeof(char)] = {};
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strlcpy(data, text(), TextField::maxBufferSize());
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data[k_dataLengthInBytes-2] = m_name != nullptr ? m_name[0] : 0;
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data[k_dataLengthInBytes-1] = m_active ? 1 : 0;
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return Ion::crc32((uint32_t *)data, k_dataLengthInBytes/sizeof(uint32_t));
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}
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void Function::setColor(KDColor color) {
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m_color = color;
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}
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const char * Function::name() const {
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return m_name;
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}
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bool Function::isActive() {
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return m_active;
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}
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void Function::setActive(bool active) {
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m_active = active;
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}
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template<typename T>
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T Function::templatedApproximateAtAbscissa(T x, Poincare::Context * context) const {
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return PoincareHelpers::ApproximateWithValueForSymbol(expression(context), symbol(), x, *context);
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}
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}
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template float Shared::Function::templatedApproximateAtAbscissa<float>(float, Poincare::Context*) const;
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template double Shared::Function::templatedApproximateAtAbscissa<double>(double, Poincare::Context*) const;
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