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 40 entries in the algebraic variable array.
   There are a total of 6 entries in each of the rate and state variable arrays.
   There are a total of 57 entries in the constant variable array.
 */
/*
 * VOI is t in component environment (second).
 * CONSTANTS[0] is R in component environment (J_per_K_per_mol).
 * CONSTANTS[1] is T in component environment (kelvin).
 * CONSTANTS[2] is F in component environment (C_per_mol).
 * CONSTANTS[3] is C_m in component environment (fF).
 * CONSTANTS[4] is K_1 in component environment (per_fmol).
 * CONSTANTS[5] is K_13 in component environment (per_fmol).
 * CONSTANTS[6] is K_14 in component environment (per_fmol).
 * CONSTANTS[7] is K_3 in component environment (per_fmol).
 * CONSTANTS[8] is K_6 in component environment (per_fmol).
 * CONSTANTS[9] is K_7 in component environment (per_fmol).
 * CONSTANTS[10] is K_H in component environment (per_fmol).
 * CONSTANTS[11] is K_Ke in component environment (per_fmol).
 * CONSTANTS[12] is K_Ki in component environment (per_fmol).
 * CONSTANTS[13] is K_MgADP in component environment (per_fmol).
 * CONSTANTS[14] is K_MgATP in component environment (per_fmol).
 * CONSTANTS[15] is K_Nae in component environment (per_fmol).
 * CONSTANTS[16] is K_Nai in component environment (per_fmol).
 * CONSTANTS[17] is K_P in component environment (per_fmol).
 * CONSTANTS[18] is kappa_1 in component environment (fmol_per_sec).
 * CONSTANTS[19] is kappa_13 in component environment (fmol_per_sec).
 * CONSTANTS[20] is kappa_15 in component environment (fmol_per_sec).
 * CONSTANTS[21] is kappa_3 in component environment (fmol_per_sec).
 * CONSTANTS[22] is kappa_6 in component environment (fmol_per_sec).
 * CONSTANTS[23] is kappa_8 in component environment (fmol_per_sec).
 * CONSTANTS[24] is z_5 in component environment (dimensionless).
 * CONSTANTS[25] is z_8 in component environment (dimensionless).
 * CONSTANTS[40] is zF_5 in component environment (C_per_mol).
 * CONSTANTS[41] is zF_8 in component environment (C_per_mol).
 * CONSTANTS[39] is x_H in component environment (fmol).
 * CONSTANTS[37] is x_Ke in component environment (fmol).
 * CONSTANTS[49] is x_Ki in component environment (fmol).
 * CONSTANTS[52] is x_MgADP in component environment (fmol).
 * CONSTANTS[38] is x_MgATP in component environment (fmol).
 * CONSTANTS[35] is x_Nae in component environment (fmol).
 * CONSTANTS[36] is x_Nai in component environment (fmol).
 * STATES[0] is x_P7 in component environment (fmol).
 * CONSTANTS[55] is x_P_i in component environment (fmol).
 * CONSTANTS[26] is q_mem in component environment (fC).
 * STATES[1] is x_P14 in component environment (fmol).
 * STATES[2] is x_P1 in component environment (fmol).
 * STATES[3] is x_P3 in component environment (fmol).
 * STATES[4] is x_P6 in component environment (fmol).
 * STATES[5] is x_P13 in component environment (fmol).
 * ALGEBRAIC[0] is x_tot in component environment (fmol).
 * CONSTANTS[27] is small_C in component environment (mM).
 * CONSTANTS[28] is W_i in component environment (pL).
 * CONSTANTS[29] is W_e in component environment (pL).
 * CONSTANTS[30] is c_Ke in component environment (mM).
 * CONSTANTS[48] is c_Ki in component environment (mM).
 * CONSTANTS[51] is c_MgADP in component environment (mM).
 * CONSTANTS[31] is c_MgATP in component environment (mM).
 * CONSTANTS[32] is c_Nae in component environment (mM).
 * CONSTANTS[33] is c_Nai in component environment (mM).
 * CONSTANTS[54] is c_P_i in component environment (mM).
 * CONSTANTS[34] is pH in component environment (dimensionless).
 * CONSTANTS[42] is mu_H in component environment (J_per_mol).
 * ALGEBRAIC[29] is v_H in component environment (fmol_per_sec).
 * CONSTANTS[43] is mu_Ke in component environment (J_per_mol).
 * ALGEBRAIC[35] is v_Ke in component environment (fmol_per_sec).
 * CONSTANTS[50] is mu_Ki in component environment (J_per_mol).
 * ALGEBRAIC[18] is v_Ki in component environment (fmol_per_sec).
 * CONSTANTS[53] is mu_MgADP in component environment (J_per_mol).
 * ALGEBRAIC[14] is v_MgADP in component environment (fmol_per_sec).
 * CONSTANTS[44] is mu_MgATP in component environment (J_per_mol).
 * ALGEBRAIC[9] is v_MgATP in component environment (fmol_per_sec).
 * CONSTANTS[45] is mu_Nae in component environment (J_per_mol).
 * ALGEBRAIC[36] is v_Nae in component environment (fmol_per_sec).
 * CONSTANTS[46] is mu_Nai in component environment (J_per_mol).
 * ALGEBRAIC[23] is v_Nai in component environment (fmol_per_sec).
 * ALGEBRAIC[1] is mu_P7 in component environment (J_per_mol).
 * ALGEBRAIC[37] is v_P7 in component environment (fmol_per_sec).
 * CONSTANTS[56] is mu_P_i in component environment (J_per_mol).
 * ALGEBRAIC[30] is v_P_i in component environment (fmol_per_sec).
 * CONSTANTS[47] is V_mem in component environment (volt).
 * ALGEBRAIC[38] is I_mem in component environment (fA).
 * ALGEBRAIC[27] is Af_R13 in component environment (J_per_mol).
 * ALGEBRAIC[4] is Ar_R13 in component environment (J_per_mol).
 * ALGEBRAIC[28] is v_R13 in component environment (fmol_per_sec).
 * ALGEBRAIC[5] is Af_R15 in component environment (J_per_mol).
 * ALGEBRAIC[7] is Ar_R15 in component environment (J_per_mol).
 * ALGEBRAIC[8] is v_R15 in component environment (fmol_per_sec).
 * ALGEBRAIC[12] is Af_R6 in component environment (J_per_mol).
 * ALGEBRAIC[2] is Ar_R6 in component environment (J_per_mol).
 * ALGEBRAIC[13] is v_R6 in component environment (fmol_per_sec).
 * ALGEBRAIC[3] is mu_P14 in component environment (J_per_mol).
 * ALGEBRAIC[31] is v_P14 in component environment (fmol_per_sec).
 * ALGEBRAIC[6] is mu_P1 in component environment (J_per_mol).
 * ALGEBRAIC[19] is v_P1 in component environment (fmol_per_sec).
 * ALGEBRAIC[10] is mu_P3 in component environment (J_per_mol).
 * ALGEBRAIC[24] is v_P3 in component environment (fmol_per_sec).
 * ALGEBRAIC[11] is mu_P6 in component environment (J_per_mol).
 * ALGEBRAIC[25] is v_P6 in component environment (fmol_per_sec).
 * ALGEBRAIC[15] is Af_R1 in component environment (J_per_mol).
 * ALGEBRAIC[16] is Ar_R1 in component environment (J_per_mol).
 * ALGEBRAIC[17] is v_R1 in component environment (fmol_per_sec).
 * ALGEBRAIC[20] is Af_R3 in component environment (J_per_mol).
 * ALGEBRAIC[21] is Ar_R3 in component environment (J_per_mol).
 * ALGEBRAIC[22] is v_R3 in component environment (fmol_per_sec).
 * ALGEBRAIC[26] is mu_P13 in component environment (J_per_mol).
 * ALGEBRAIC[39] is v_P13 in component environment (fmol_per_sec).
 * ALGEBRAIC[32] is Af_R8 in component environment (J_per_mol).
 * ALGEBRAIC[33] is Ar_R8 in component environment (J_per_mol).
 * ALGEBRAIC[34] is v_R8 in component environment (fmol_per_sec).
 * RATES[0] is d/dt x_P7 in component environment (fmol).
 * RATES[1] is d/dt x_P14 in component environment (fmol).
 * RATES[2] is d/dt x_P1 in component environment (fmol).
 * RATES[3] is d/dt x_P3 in component environment (fmol).
 * RATES[4] is d/dt x_P6 in component environment (fmol).
 * RATES[5] is d/dt x_P13 in component environment (fmol).
 */
void
initConsts(double* CONSTANTS, double* RATES, double *STATES)
{
CONSTANTS[0] = 8.314;
CONSTANTS[1] = 310;
CONSTANTS[2] = 96485;
CONSTANTS[3] = 153400;
CONSTANTS[4] = 13085378.038167767;
CONSTANTS[5] = 0.6020622798357556;
CONSTANTS[6] = 69.38568269665376;
CONSTANTS[7] = 46.24091666474313;
CONSTANTS[8] = 79.09015560598799;
CONSTANTS[9] = 4239.416835123694;
CONSTANTS[10] = 0.04565;
CONSTANTS[11] = 0.009236;
CONSTANTS[12] = 0.0012595;
CONSTANTS[13] = 7.976e-05;
CONSTANTS[14] = 2.3715;
CONSTANTS[15] = 0.0061242;
CONSTANTS[16] = 0.00083514;
CONSTANTS[17] = 0.04565;
CONSTANTS[18] = 6.973455976480863;
CONSTANTS[19] = 475.81557480252013;
CONSTANTS[20] = 0.035418056157766185;
CONSTANTS[21] = 861399.5138047301;
CONSTANTS[22] = 1.4100547742408052;
CONSTANTS[23] = 2.2855;
CONSTANTS[24] = -0.054951;
CONSTANTS[25] = -0.94505;
STATES[0] = 0.8590;
CONSTANTS[26] = -18408;
STATES[1] = 0.0100192141898171;
STATES[2] = 6.50836196830909e-10;
STATES[3] = 0.00292644413780957;
STATES[4] = 0.0154965229998754;
STATES[5] = 0.112426414453276;
CONSTANTS[27] = 1e-3;
CONSTANTS[28] = 38;
CONSTANTS[29] = 5.182;
CONSTANTS[30] = 5.4;
CONSTANTS[31] = 10;
CONSTANTS[32] = 150;
CONSTANTS[33] = 50;
CONSTANTS[34] = 7.4;
CONSTANTS[35] =  CONSTANTS[32]*CONSTANTS[29];
CONSTANTS[36] =  CONSTANTS[33]*CONSTANTS[28];
CONSTANTS[37] =  CONSTANTS[30]*CONSTANTS[29];
CONSTANTS[38] =  CONSTANTS[31]*CONSTANTS[28];
CONSTANTS[39] =  pow(10.0000, - CONSTANTS[34])*1000.00*CONSTANTS[28];
CONSTANTS[40] =  CONSTANTS[24]*CONSTANTS[2];
CONSTANTS[41] =  CONSTANTS[25]*CONSTANTS[2];
CONSTANTS[42] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[10]*CONSTANTS[39]);
CONSTANTS[43] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[11]*CONSTANTS[37]);
CONSTANTS[44] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[14]*CONSTANTS[38]);
CONSTANTS[45] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[15]*CONSTANTS[35]);
CONSTANTS[46] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[16]*CONSTANTS[36]);
CONSTANTS[47] = CONSTANTS[26]/CONSTANTS[3];
CONSTANTS[48] = CONSTANTS[27];
CONSTANTS[49] =  CONSTANTS[48]*CONSTANTS[28];
CONSTANTS[50] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[12]*CONSTANTS[49]);
CONSTANTS[51] = CONSTANTS[27];
CONSTANTS[52] =  CONSTANTS[51]*CONSTANTS[28];
CONSTANTS[53] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[13]*CONSTANTS[52]);
CONSTANTS[54] = CONSTANTS[27];
CONSTANTS[55] =  CONSTANTS[54]*CONSTANTS[28];
CONSTANTS[56] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[17]*CONSTANTS[55]);
}
void
computeRates(double VOI, double* CONSTANTS, double* RATES, double* STATES, double* ALGEBRAIC)
{
ALGEBRAIC[3] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[6]*STATES[1]);
ALGEBRAIC[5] = ALGEBRAIC[3]+CONSTANTS[44];
ALGEBRAIC[6] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[4]*STATES[2]);
ALGEBRAIC[7] = ALGEBRAIC[6];
ALGEBRAIC[8] =  CONSTANTS[20]*(exp(ALGEBRAIC[5]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[7]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[15] = ALGEBRAIC[6];
ALGEBRAIC[10] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[7]*STATES[3]);
ALGEBRAIC[16] = ALGEBRAIC[10]+ 2.00000*CONSTANTS[50];
ALGEBRAIC[17] =  CONSTANTS[18]*(exp(ALGEBRAIC[15]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[16]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[19] = ALGEBRAIC[8] - ALGEBRAIC[17];
RATES[2] = ALGEBRAIC[19];
ALGEBRAIC[20] = ALGEBRAIC[10]+ 3.00000*CONSTANTS[46];
ALGEBRAIC[11] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[8]*STATES[4]);
ALGEBRAIC[21] =  CONSTANTS[40]*CONSTANTS[47]+ALGEBRAIC[11];
ALGEBRAIC[22] =  CONSTANTS[21]*(exp(ALGEBRAIC[20]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[21]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[24] = ALGEBRAIC[17] - ALGEBRAIC[22];
RATES[3] = ALGEBRAIC[24];
ALGEBRAIC[12] = ALGEBRAIC[11];
ALGEBRAIC[1] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[9]*STATES[0]);
ALGEBRAIC[2] = ALGEBRAIC[1]+CONSTANTS[53];
ALGEBRAIC[13] =  CONSTANTS[22]*(exp(ALGEBRAIC[12]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[2]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[25] = ALGEBRAIC[22] - ALGEBRAIC[13];
RATES[4] = ALGEBRAIC[25];
ALGEBRAIC[26] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[5]*STATES[5]);
ALGEBRAIC[27] = ALGEBRAIC[26];
ALGEBRAIC[4] = ALGEBRAIC[3]+CONSTANTS[56]+CONSTANTS[42];
ALGEBRAIC[28] =  CONSTANTS[19]*(exp(ALGEBRAIC[27]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[4]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[31] = ALGEBRAIC[28] - ALGEBRAIC[8];
RATES[1] = ALGEBRAIC[31];
ALGEBRAIC[32] = ALGEBRAIC[1]+ 2.00000*CONSTANTS[43];
ALGEBRAIC[33] = ALGEBRAIC[26]+ 3.00000*CONSTANTS[45]+ CONSTANTS[41]*CONSTANTS[47];
ALGEBRAIC[34] =  CONSTANTS[23]*(exp(ALGEBRAIC[32]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[33]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[37] = ALGEBRAIC[13] - ALGEBRAIC[34];
RATES[0] = ALGEBRAIC[37];
ALGEBRAIC[39] = ALGEBRAIC[34] - ALGEBRAIC[28];
RATES[5] = ALGEBRAIC[39];
}
void
computeVariables(double VOI, double* CONSTANTS, double* RATES, double* STATES, double* ALGEBRAIC)
{
ALGEBRAIC[3] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[6]*STATES[1]);
ALGEBRAIC[5] = ALGEBRAIC[3]+CONSTANTS[44];
ALGEBRAIC[6] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[4]*STATES[2]);
ALGEBRAIC[7] = ALGEBRAIC[6];
ALGEBRAIC[8] =  CONSTANTS[20]*(exp(ALGEBRAIC[5]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[7]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[15] = ALGEBRAIC[6];
ALGEBRAIC[10] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[7]*STATES[3]);
ALGEBRAIC[16] = ALGEBRAIC[10]+ 2.00000*CONSTANTS[50];
ALGEBRAIC[17] =  CONSTANTS[18]*(exp(ALGEBRAIC[15]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[16]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[19] = ALGEBRAIC[8] - ALGEBRAIC[17];
ALGEBRAIC[20] = ALGEBRAIC[10]+ 3.00000*CONSTANTS[46];
ALGEBRAIC[11] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[8]*STATES[4]);
ALGEBRAIC[21] =  CONSTANTS[40]*CONSTANTS[47]+ALGEBRAIC[11];
ALGEBRAIC[22] =  CONSTANTS[21]*(exp(ALGEBRAIC[20]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[21]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[24] = ALGEBRAIC[17] - ALGEBRAIC[22];
ALGEBRAIC[12] = ALGEBRAIC[11];
ALGEBRAIC[1] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[9]*STATES[0]);
ALGEBRAIC[2] = ALGEBRAIC[1]+CONSTANTS[53];
ALGEBRAIC[13] =  CONSTANTS[22]*(exp(ALGEBRAIC[12]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[2]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[25] = ALGEBRAIC[22] - ALGEBRAIC[13];
ALGEBRAIC[26] =  CONSTANTS[0]*CONSTANTS[1]*log( CONSTANTS[5]*STATES[5]);
ALGEBRAIC[27] = ALGEBRAIC[26];
ALGEBRAIC[4] = ALGEBRAIC[3]+CONSTANTS[56]+CONSTANTS[42];
ALGEBRAIC[28] =  CONSTANTS[19]*(exp(ALGEBRAIC[27]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[4]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[31] = ALGEBRAIC[28] - ALGEBRAIC[8];
ALGEBRAIC[32] = ALGEBRAIC[1]+ 2.00000*CONSTANTS[43];
ALGEBRAIC[33] = ALGEBRAIC[26]+ 3.00000*CONSTANTS[45]+ CONSTANTS[41]*CONSTANTS[47];
ALGEBRAIC[34] =  CONSTANTS[23]*(exp(ALGEBRAIC[32]/( CONSTANTS[0]*CONSTANTS[1])) - exp(ALGEBRAIC[33]/( CONSTANTS[0]*CONSTANTS[1])));
ALGEBRAIC[37] = ALGEBRAIC[13] - ALGEBRAIC[34];
ALGEBRAIC[39] = ALGEBRAIC[34] - ALGEBRAIC[28];
ALGEBRAIC[0] = STATES[2]+STATES[3]+STATES[4]+STATES[5]+STATES[0]+STATES[1];
ALGEBRAIC[9] = - ALGEBRAIC[8];
ALGEBRAIC[14] = ALGEBRAIC[13];
ALGEBRAIC[18] =  2.00000*ALGEBRAIC[17];
ALGEBRAIC[23] =  - 3.00000*ALGEBRAIC[22];
ALGEBRAIC[29] = ALGEBRAIC[28];
ALGEBRAIC[30] = ALGEBRAIC[28];
ALGEBRAIC[35] =  - 2.00000*ALGEBRAIC[34];
ALGEBRAIC[36] =  3.00000*ALGEBRAIC[34];
ALGEBRAIC[38] =  CONSTANTS[40]*ALGEBRAIC[22]+ CONSTANTS[41]*ALGEBRAIC[34];
}