Generated Code
The following is c code generated by the CellML API from this CellML file. (Back to language selection)
The raw code is available.
/*
There are a total of 8 entries in the algebraic variable array.
There are a total of 3 entries in each of the rate and state variable arrays.
There are a total of 8 entries in the constant variable array.
*/
/*
* VOI is t in component environment (second).
* CONSTANTS[0] is C_m in component environment (fF).
* STATES[0] is q_Ca_o in component environment (fmol).
* STATES[1] is q_Ca_i in component environment (fmol).
* STATES[2] is q_mem in component environment (fC).
* CONSTANTS[1] is R in component environment (J_per_K_per_mol).
* CONSTANTS[2] is T in component environment (kelvin).
* CONSTANTS[3] is F in component environment (C_per_mol).
* ALGEBRAIC[6] is v_CaB in component CaB (fmol_per_sec).
* ALGEBRAIC[0] is V_mem in component environment (J_per_C).
* ALGEBRAIC[7] is I_mem_CaB in component CaB (fA).
* CONSTANTS[4] is kappa_CaB in component CaB_parameters (fmol_per_sec).
* CONSTANTS[5] is K_Ca_i in component CaB_parameters (per_fmol).
* CONSTANTS[6] is K_Ca_o in component CaB_parameters (per_fmol).
* CONSTANTS[7] is zCa in component CaB_parameters (dimensionless).
* ALGEBRAIC[1] is mu_Ca_i in component CaB (J_per_mol).
* ALGEBRAIC[2] is mu_Ca_o in component CaB (J_per_mol).
* ALGEBRAIC[3] is Af_CaB in component CaB (J_per_mol).
* ALGEBRAIC[4] is Ar_CaB in component CaB (J_per_mol).
* ALGEBRAIC[5] is Am_CaB in component CaB (J_per_mol).
* RATES[1] is d/dt q_Ca_i in component environment (fmol).
* RATES[0] is d/dt q_Ca_o in component environment (fmol).
* RATES[2] is d/dt q_mem in component environment (fC).
*/
void
initConsts(double* CONSTANTS, double* RATES, double *STATES)
{
CONSTANTS[0] = 153400;
STATES[0] = 9.3276;
STATES[1] = 0.00456;
STATES[2] = -13039;
CONSTANTS[1] = 8.31;
CONSTANTS[2] = 310;
CONSTANTS[3] = 96500;
CONSTANTS[4] = 2.73233e-05;
CONSTANTS[5] = 0.000151953;
CONSTANTS[6] = 0.00100872;
CONSTANTS[7] = 2;
}
void
computeRates(double VOI, double* CONSTANTS, double* RATES, double* STATES, double* ALGEBRAIC)
{
ALGEBRAIC[0] = STATES[2]/CONSTANTS[0];
ALGEBRAIC[1] = CONSTANTS[1]*CONSTANTS[2]*log( CONSTANTS[5]*STATES[1]);
ALGEBRAIC[3] = ALGEBRAIC[1]+ CONSTANTS[7]*CONSTANTS[3]*ALGEBRAIC[0];
ALGEBRAIC[2] = CONSTANTS[1]*CONSTANTS[2]*log( CONSTANTS[6]*STATES[0]);
ALGEBRAIC[4] = ALGEBRAIC[2];
ALGEBRAIC[5] = CONSTANTS[7]*CONSTANTS[3]*ALGEBRAIC[0];
ALGEBRAIC[6] = (ALGEBRAIC[5]==0.00000 ? CONSTANTS[4]*(exp(ALGEBRAIC[3]/( CONSTANTS[1]*CONSTANTS[2])) - exp(ALGEBRAIC[4]/( CONSTANTS[1]*CONSTANTS[2]))) : ((( CONSTANTS[4]*ALGEBRAIC[5])/( CONSTANTS[1]*CONSTANTS[2]))/(exp(ALGEBRAIC[5]/( CONSTANTS[1]*CONSTANTS[2])) - 1.00000))*(exp(ALGEBRAIC[3]/( CONSTANTS[1]*CONSTANTS[2])) - exp(ALGEBRAIC[4]/( CONSTANTS[1]*CONSTANTS[2]))));
RATES[1] = - ALGEBRAIC[6];
RATES[0] = ALGEBRAIC[6];
ALGEBRAIC[7] = - CONSTANTS[7]*CONSTANTS[3]*ALGEBRAIC[6];
RATES[2] = ALGEBRAIC[7];
}
void
computeVariables(double VOI, double* CONSTANTS, double* RATES, double* STATES, double* ALGEBRAIC)
{
ALGEBRAIC[0] = STATES[2]/CONSTANTS[0];
ALGEBRAIC[1] = CONSTANTS[1]*CONSTANTS[2]*log( CONSTANTS[5]*STATES[1]);
ALGEBRAIC[3] = ALGEBRAIC[1]+ CONSTANTS[7]*CONSTANTS[3]*ALGEBRAIC[0];
ALGEBRAIC[2] = CONSTANTS[1]*CONSTANTS[2]*log( CONSTANTS[6]*STATES[0]);
ALGEBRAIC[4] = ALGEBRAIC[2];
ALGEBRAIC[5] = CONSTANTS[7]*CONSTANTS[3]*ALGEBRAIC[0];
ALGEBRAIC[6] = (ALGEBRAIC[5]==0.00000 ? CONSTANTS[4]*(exp(ALGEBRAIC[3]/( CONSTANTS[1]*CONSTANTS[2])) - exp(ALGEBRAIC[4]/( CONSTANTS[1]*CONSTANTS[2]))) : ((( CONSTANTS[4]*ALGEBRAIC[5])/( CONSTANTS[1]*CONSTANTS[2]))/(exp(ALGEBRAIC[5]/( CONSTANTS[1]*CONSTANTS[2])) - 1.00000))*(exp(ALGEBRAIC[3]/( CONSTANTS[1]*CONSTANTS[2])) - exp(ALGEBRAIC[4]/( CONSTANTS[1]*CONSTANTS[2]))));
ALGEBRAIC[7] = - CONSTANTS[7]*CONSTANTS[3]*ALGEBRAIC[6];
}
