📄 onestepcoterminalswaps.cpp
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/* -*- mode: c++; tab-width: 4; indent-tabs-mode: nil; c-basic-offset: 4 -*- */
/*
Copyright (C) 2006 Giorgio Facchinetti
This file is part of QuantLib, a free-software/open-source library
for financial quantitative analysts and developers - http://quantlib.org/
QuantLib is free software: you can redistribute it and/or modify it
under the terms of the QuantLib license. You should have received a
copy of the license along with this program; if not, please email
<quantlib-dev@lists.sf.net>. The license is also available online at
<http://quantlib.org/license.shtml>.
This program is distributed in the hope that it will be useful, but WITHOUT
ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or FITNESS
FOR A PARTICULAR PURPOSE. See the license for more details.
*/
#include <ql/models/marketmodels/products/onestep/onestepcoterminalswaps.hpp>
#include <ql/models/marketmodels/curvestate.hpp>
#include <ql/models/marketmodels/utilities.hpp>
namespace QuantLib {
OneStepCoterminalSwaps::OneStepCoterminalSwaps(
const std::vector<Time>& rateTimes,
const std::vector<Real>& fixedAccruals,
const std::vector<Real>& floatingAccruals,
const std::vector<Time>& paymentTimes,
double fixedRate)
: MultiProductOneStep(rateTimes),
fixedAccruals_(fixedAccruals), floatingAccruals_(floatingAccruals),
paymentTimes_(paymentTimes), fixedRate_(fixedRate) {
checkIncreasingTimes(paymentTimes);
lastIndex_ = rateTimes.size()-1;
}
bool OneStepCoterminalSwaps::nextTimeStep(
const CurveState& currentState,
std::vector<Size>& numberCashFlowsThisStep,
std::vector<std::vector<MarketModelMultiProduct::CashFlow> >&
genCashFlows) {
std::fill(numberCashFlowsThisStep.begin(),
numberCashFlowsThisStep.end(),0);
for (Size indexOfTime=0;indexOfTime<lastIndex_;indexOfTime++) {
Rate liborRate = currentState.forwardRate(indexOfTime);
for (Size i=0;i<=indexOfTime;i++) {
genCashFlows[i][(indexOfTime-i)*2].timeIndex = indexOfTime;
genCashFlows[i][(indexOfTime-i)*2].amount =
-fixedRate_*fixedAccruals_[indexOfTime];
genCashFlows[i][(indexOfTime-i)*2+1].timeIndex = indexOfTime;
genCashFlows[i][(indexOfTime-i)*2+1].amount =
liborRate*floatingAccruals_[indexOfTime];
numberCashFlowsThisStep[i] += 2;
}
}
return true ;
}
std::auto_ptr<MarketModelMultiProduct>
OneStepCoterminalSwaps::clone() const {
return std::auto_ptr<MarketModelMultiProduct>(
new OneStepCoterminalSwaps(*this));
}
}
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