Generated Code
The following is matlab code generated by the CellML API from this CellML file. (Back to language selection)
The raw code is available.
function [VOI, STATES, ALGEBRAIC, CONSTANTS] = mainFunction()
% This is the "main function". In Matlab, things work best if you rename this function to match the filename.
[VOI, STATES, ALGEBRAIC, CONSTANTS] = solveModel();
end
function [algebraicVariableCount] = getAlgebraicVariableCount()
% Used later when setting a global variable with the number of algebraic variables.
% Note: This is not the "main method".
algebraicVariableCount =3;
end
% There are a total of 4 entries in each of the rate and state variable arrays.
% There are a total of 12 entries in the constant variable array.
%
function [VOI, STATES, ALGEBRAIC, CONSTANTS] = solveModel()
% Create ALGEBRAIC of correct size
global algebraicVariableCount; algebraicVariableCount = getAlgebraicVariableCount();
% Initialise constants and state variables
[INIT_STATES, CONSTANTS] = initConsts;
% Set timespan to solve over
tspan = [0, 10];
% Set numerical accuracy options for ODE solver
options = odeset('RelTol', 1e-06, 'AbsTol', 1e-06, 'MaxStep', 1);
% Solve model with ODE solver
[VOI, STATES] = ode15s(@(VOI, STATES)computeRates(VOI, STATES, CONSTANTS), tspan, INIT_STATES, options);
% Compute algebraic variables
[RATES, ALGEBRAIC] = computeRates(VOI, STATES, CONSTANTS);
ALGEBRAIC = computeAlgebraic(ALGEBRAIC, CONSTANTS, STATES, VOI);
% Plot state variables against variable of integration
[LEGEND_STATES, LEGEND_ALGEBRAIC, LEGEND_VOI, LEGEND_CONSTANTS] = createLegends();
figure();
plot(VOI, STATES);
xlabel(LEGEND_VOI);
l = legend(LEGEND_STATES);
set(l,'Interpreter','none');
end
function [LEGEND_STATES, LEGEND_ALGEBRAIC, LEGEND_VOI, LEGEND_CONSTANTS] = createLegends()
LEGEND_STATES = ''; LEGEND_ALGEBRAIC = ''; LEGEND_VOI = ''; LEGEND_CONSTANTS = '';
LEGEND_VOI = strpad('time in component environment (day)');
LEGEND_CONSTANTS(:,1) = strpad('s in component uninfected (per_day_mm3)');
LEGEND_CONSTANTS(:,2) = strpad('r in component uninfected (per_day)');
LEGEND_CONSTANTS(:,3) = strpad('T_max in component uninfected (per_mm3)');
LEGEND_CONSTANTS(:,4) = strpad('mu_T in component uninfected (per_day)');
LEGEND_CONSTANTS(:,5) = strpad('theta in component uninfected (per_mm3)');
LEGEND_CONSTANTS(:,6) = strpad('k_1 in component latently_infected (mm3_per_day)');
LEGEND_STATES(:,1) = strpad('T_1 in component latently_infected (per_mm3)');
LEGEND_STATES(:,2) = strpad('T_2 in component actively_infected (per_mm3)');
LEGEND_STATES(:,3) = strpad('V in component free_virus_particle (per_mm3)');
LEGEND_ALGEBRAIC(:,1) = strpad('s_V in component uninfected (per_day_mm3)');
LEGEND_STATES(:,4) = strpad('T in component uninfected (per_mm3)');
LEGEND_CONSTANTS(:,7) = strpad('k_2 in component actively_infected (per_day)');
LEGEND_CONSTANTS(:,8) = strpad('mu_b in component actively_infected (per_day)');
LEGEND_CONSTANTS(:,9) = strpad('mu_V in component free_virus_particle (per_day)');
LEGEND_ALGEBRAIC(:,2) = strpad('N in component AZT (dimensionless)');
LEGEND_ALGEBRAIC(:,3) = strpad('T_tot in component T_cell_population (per_mm3)');
LEGEND_CONSTANTS(:,10) = strpad('tau in component AZT (day)');
LEGEND_CONSTANTS(:,11) = strpad('N_initial in component AZT (dimensionless)');
LEGEND_CONSTANTS(:,12) = strpad('N_AZT in component AZT (dimensionless)');
LEGEND_RATES(:,4) = strpad('d/dt T in component uninfected (per_mm3)');
LEGEND_RATES(:,1) = strpad('d/dt T_1 in component latently_infected (per_mm3)');
LEGEND_RATES(:,2) = strpad('d/dt T_2 in component actively_infected (per_mm3)');
LEGEND_RATES(:,3) = strpad('d/dt V in component free_virus_particle (per_mm3)');
LEGEND_STATES = LEGEND_STATES';
LEGEND_ALGEBRAIC = LEGEND_ALGEBRAIC';
LEGEND_RATES = LEGEND_RATES';
LEGEND_CONSTANTS = LEGEND_CONSTANTS';
end
function [STATES, CONSTANTS] = initConsts()
VOI = 0; CONSTANTS = []; STATES = []; ALGEBRAIC = [];
CONSTANTS(:,1) = 10;
CONSTANTS(:,2) = 0.03;
CONSTANTS(:,3) = 1500;
CONSTANTS(:,4) = 0.02;
CONSTANTS(:,5) = 1;
CONSTANTS(:,6) = 2.4E-5;
STATES(:,1) = 0;
STATES(:,2) = 0;
STATES(:,3) = 1.0E-3;
STATES(:,4) = 1000;
CONSTANTS(:,7) = 3E-3;
CONSTANTS(:,8) = 0.24;
CONSTANTS(:,9) = 2.4;
CONSTANTS(:,10) = 1096;
CONSTANTS(:,11) = 1400;
CONSTANTS(:,12) = 1050;
if (isempty(STATES)), warning('Initial values for states not set');, end
end
function [RATES, ALGEBRAIC] = computeRates(VOI, STATES, CONSTANTS)
global algebraicVariableCount;
statesSize = size(STATES);
statesColumnCount = statesSize(2);
if ( statesColumnCount == 1)
STATES = STATES';
ALGEBRAIC = zeros(1, algebraicVariableCount);
utilOnes = 1;
else
statesRowCount = statesSize(1);
ALGEBRAIC = zeros(statesRowCount, algebraicVariableCount);
RATES = zeros(statesRowCount, statesColumnCount);
utilOnes = ones(statesRowCount, 1);
end
RATES(:,1) = ( CONSTANTS(:,6).*STATES(:,3).*STATES(:,4) - CONSTANTS(:,4).*STATES(:,1)) - CONSTANTS(:,7).*STATES(:,1);
RATES(:,2) = CONSTANTS(:,7).*STATES(:,1) - CONSTANTS(:,8).*STATES(:,2);
ALGEBRAIC(:,1) = ( CONSTANTS(:,5).*CONSTANTS(:,1))./(CONSTANTS(:,5)+STATES(:,3));
RATES(:,4) = ((ALGEBRAIC(:,1) - CONSTANTS(:,4).*STATES(:,4))+ CONSTANTS(:,2).*STATES(:,4).*(1.00000 - (STATES(:,4)+STATES(:,1)+STATES(:,2))./CONSTANTS(:,3))) - CONSTANTS(:,6).*STATES(:,3).*STATES(:,4);
ALGEBRAIC(:,2) = piecewise({VOI<CONSTANTS(:,10), CONSTANTS(:,11) , VOI>=CONSTANTS(:,10), CONSTANTS(:,12) }, NaN);
RATES(:,3) = ( ALGEBRAIC(:,2).*CONSTANTS(:,8).*STATES(:,2) - CONSTANTS(:,6).*STATES(:,3).*STATES(:,4)) - CONSTANTS(:,9).*STATES(:,3);
RATES = RATES';
end
% Calculate algebraic variables
function ALGEBRAIC = computeAlgebraic(ALGEBRAIC, CONSTANTS, STATES, VOI)
statesSize = size(STATES);
statesColumnCount = statesSize(2);
if ( statesColumnCount == 1)
STATES = STATES';
utilOnes = 1;
else
statesRowCount = statesSize(1);
utilOnes = ones(statesRowCount, 1);
end
ALGEBRAIC(:,1) = ( CONSTANTS(:,5).*CONSTANTS(:,1))./(CONSTANTS(:,5)+STATES(:,3));
ALGEBRAIC(:,2) = piecewise({VOI<CONSTANTS(:,10), CONSTANTS(:,11) , VOI>=CONSTANTS(:,10), CONSTANTS(:,12) }, NaN);
ALGEBRAIC(:,3) = STATES(:,4)+STATES(:,1)+STATES(:,2);
end
% Compute result of a piecewise function
function x = piecewise(cases, default)
set = [0];
for i = 1:2:length(cases)
if (length(cases{i+1}) == 1)
x(cases{i} & ~set,:) = cases{i+1};
else
x(cases{i} & ~set,:) = cases{i+1}(cases{i} & ~set);
end
set = set | cases{i};
if(set), break, end
end
if (length(default) == 1)
x(~set,:) = default;
else
x(~set,:) = default(~set);
end
end
% Pad out or shorten strings to a set length
function strout = strpad(strin)
req_length = 160;
insize = size(strin,2);
if insize > req_length
strout = strin(1:req_length);
else
strout = [strin, blanks(req_length - insize)];
end
end
