Generated Code
The following is f77 code generated by the CellML API from this CellML file. (Back to language selection)
The raw code is available.
C
C There are a total of 48 entries in the algebraic variable array.
C There are a total of 9 entries in each of the rate and state variable arrays.
C There are a total of 58 entries in the constant variable array.
C
C
C VOI is t in component params_BG (second).
C CONSTS(1) is R in component params_BG (J_per_K_mol).
C CONSTS(2) is T in component params_BG (kelvin).
C CONSTS(3) is F in component params_BG (C_per_mol).
C CONSTS(4) is K_Nai in component params_BG (per_fmol).
C CONSTS(46) is q_Nai in component params_BG (fmol).
C CONSTS(5) is K_Nao in component params_BG (per_fmol).
C CONSTS(48) is q_Nao in component params_BG (fmol).
C CONSTS(6) is K_Cli in component params_BG (per_fmol).
C CONSTS(50) is q_Cli in component params_BG (fmol).
C CONSTS(7) is K_Clo in component params_BG (per_fmol).
C CONSTS(52) is q_Clo in component params_BG (fmol).
C CONSTS(8) is K_HCO3i in component params_BG (per_fmol).
C CONSTS(54) is q_HCO3i in component params_BG (fmol).
C CONSTS(9) is K_HCO3o in component params_BG (per_fmol).
C CONSTS(56) is q_HCO3o in component params_BG (fmol).
C CONSTS(10) is K_1 in component params_BG (per_fmol).
C CONSTS(11) is q_init_1 in component params_BG (fmol).
C CONSTS(12) is K_2 in component params_BG (per_fmol).
C CONSTS(13) is q_init_2 in component params_BG (fmol).
C CONSTS(14) is K_3 in component params_BG (per_fmol).
C CONSTS(15) is q_init_3 in component params_BG (fmol).
C CONSTS(16) is K_4 in component params_BG (per_fmol).
C CONSTS(17) is q_init_4 in component params_BG (fmol).
C CONSTS(18) is K_5 in component params_BG (per_fmol).
C CONSTS(19) is q_init_5 in component params_BG (fmol).
C CONSTS(20) is K_6 in component params_BG (per_fmol).
C CONSTS(21) is q_init_6 in component params_BG (fmol).
C CONSTS(22) is K_7 in component params_BG (per_fmol).
C CONSTS(23) is q_init_7 in component params_BG (fmol).
C CONSTS(24) is K_8 in component params_BG (per_fmol).
C CONSTS(25) is q_init_8 in component params_BG (fmol).
C CONSTS(26) is kappa_r1 in component params_BG (fmol_per_s).
C CONSTS(27) is kappa_r2 in component params_BG (fmol_per_s).
C CONSTS(28) is kappa_r3 in component params_BG (fmol_per_s).
C CONSTS(29) is kappa_r4 in component params_BG (fmol_per_s).
C CONSTS(30) is kappa_r5 in component params_BG (fmol_per_s).
C CONSTS(31) is kappa_r6 in component params_BG (fmol_per_s).
C CONSTS(32) is kappa_r7 in component params_BG (fmol_per_s).
C CONSTS(33) is kappa_r8 in component params_BG (fmol_per_s).
C CONSTS(34) is kappa_r9 in component params_BG (fmol_per_s).
C CONSTS(35) is kappa_r10 in component params_BG (fmol_per_s).
C CONSTS(47) is mu_Nai in component BG_NDCBE (J_per_mol).
C CONSTS(49) is mu_Nao in component BG_NDCBE (J_per_mol).
C CONSTS(51) is mu_Cli in component BG_NDCBE (J_per_mol).
C CONSTS(53) is mu_Clo in component BG_NDCBE (J_per_mol).
C CONSTS(55) is mu_HCO3i in component BG_NDCBE (J_per_mol).
C CONSTS(57) is mu_HCO3o in component BG_NDCBE (J_per_mol).
C ALGBRC(1) is mu_1 in component BG_NDCBE (J_per_mol).
C ALGBRC(47) is v_1 in component BG_NDCBE (fmol_per_s).
C ALGBRC(3) is mu_2 in component BG_NDCBE (J_per_mol).
C ALGBRC(41) is v_2 in component BG_NDCBE (fmol_per_s).
C ALGBRC(5) is mu_3 in component BG_NDCBE (J_per_mol).
C ALGBRC(34) is v_3 in component BG_NDCBE (fmol_per_s).
C ALGBRC(6) is mu_4 in component BG_NDCBE (J_per_mol).
C ALGBRC(37) is v_4 in component BG_NDCBE (fmol_per_s).
C ALGBRC(7) is mu_5 in component BG_NDCBE (J_per_mol).
C ALGBRC(42) is v_5 in component BG_NDCBE (fmol_per_s).
C ALGBRC(8) is mu_6 in component BG_NDCBE (J_per_mol).
C ALGBRC(48) is v_6 in component BG_NDCBE (fmol_per_s).
C ALGBRC(9) is mu_7 in component BG_NDCBE (J_per_mol).
C ALGBRC(44) is v_7 in component BG_NDCBE (fmol_per_s).
C ALGBRC(10) is mu_8 in component BG_NDCBE (J_per_mol).
C ALGBRC(46) is v_8 in component BG_NDCBE (fmol_per_s).
C ALGBRC(4) is V_Vm in component BG_NDCBE (volt).
C ALGBRC(2) is V0_Vm in component params_BG (volt).
C ALGBRC(11) is A_f_r1 in component BG_NDCBE (J_per_mol).
C ALGBRC(31) is v_r1 in component BG_NDCBE (fmol_per_s).
C ALGBRC(12) is A_r_r1 in component BG_NDCBE (J_per_mol).
C ALGBRC(13) is A_f_r2 in component BG_NDCBE (J_per_mol).
C ALGBRC(32) is v_r2 in component BG_NDCBE (fmol_per_s).
C ALGBRC(14) is A_r_r2 in component BG_NDCBE (J_per_mol).
C ALGBRC(15) is A_f_r3 in component BG_NDCBE (J_per_mol).
C ALGBRC(33) is v_r3 in component BG_NDCBE (fmol_per_s).
C ALGBRC(16) is A_r_r3 in component BG_NDCBE (J_per_mol).
C ALGBRC(17) is A_f_r4 in component BG_NDCBE (J_per_mol).
C ALGBRC(35) is v_r4 in component BG_NDCBE (fmol_per_s).
C ALGBRC(18) is A_r_r4 in component BG_NDCBE (J_per_mol).
C ALGBRC(19) is A_f_r5 in component BG_NDCBE (J_per_mol).
C ALGBRC(36) is v_r5 in component BG_NDCBE (fmol_per_s).
C ALGBRC(20) is A_r_r5 in component BG_NDCBE (J_per_mol).
C ALGBRC(21) is A_f_r6 in component BG_NDCBE (J_per_mol).
C ALGBRC(38) is v_r6 in component BG_NDCBE (fmol_per_s).
C ALGBRC(22) is A_r_r6 in component BG_NDCBE (J_per_mol).
C ALGBRC(23) is A_f_r7 in component BG_NDCBE (J_per_mol).
C ALGBRC(40) is v_r7 in component BG_NDCBE (fmol_per_s).
C ALGBRC(24) is A_r_r7 in component BG_NDCBE (J_per_mol).
C ALGBRC(25) is A_f_r8 in component BG_NDCBE (J_per_mol).
C ALGBRC(43) is v_r8 in component BG_NDCBE (fmol_per_s).
C ALGBRC(26) is A_r_r8 in component BG_NDCBE (J_per_mol).
C ALGBRC(27) is A_f_r9 in component BG_NDCBE (J_per_mol).
C ALGBRC(45) is v_r9 in component BG_NDCBE (fmol_per_s).
C ALGBRC(28) is A_r_r9 in component BG_NDCBE (J_per_mol).
C ALGBRC(29) is A_f_r10 in component BG_NDCBE (J_per_mol).
C ALGBRC(39) is v_r10 in component BG_NDCBE (fmol_per_s).
C ALGBRC(30) is A_r_r10 in component BG_NDCBE (J_per_mol).
C STATES(1) is q_1 in component BG_NDCBE (fmol).
C STATES(2) is q_2 in component BG_NDCBE (fmol).
C STATES(3) is q_3 in component BG_NDCBE (fmol).
C STATES(4) is q_4 in component BG_NDCBE (fmol).
C STATES(5) is q_5 in component BG_NDCBE (fmol).
C STATES(6) is q_6 in component BG_NDCBE (fmol).
C STATES(7) is q_7 in component BG_NDCBE (fmol).
C STATES(8) is q_8 in component BG_NDCBE (fmol).
C CONSTS(36) is nHCO3 in component BG_NDCBE (dimensionless).
C CONSTS(37) is Nai in component params_BG (mM).
C CONSTS(38) is Nao in component params_BG (mM).
C CONSTS(39) is Cli in component params_BG (mM).
C CONSTS(40) is Clo in component params_BG (mM).
C CONSTS(41) is HCO3i in component params_BG (mM).
C CONSTS(42) is HCO3o in component params_BG (mM).
C CONSTS(43) is V_i in component params_BG (pL).
C CONSTS(44) is V_o in component params_BG (pL).
C STATES(9) is V_E in component params_BG (volt).
C CONSTS(45) is dt in component params_BG (second).
C RATES(1) is d/dt q_1 in component BG_NDCBE (fmol).
C RATES(2) is d/dt q_2 in component BG_NDCBE (fmol).
C RATES(3) is d/dt q_3 in component BG_NDCBE (fmol).
C RATES(4) is d/dt q_4 in component BG_NDCBE (fmol).
C RATES(5) is d/dt q_5 in component BG_NDCBE (fmol).
C RATES(6) is d/dt q_6 in component BG_NDCBE (fmol).
C RATES(7) is d/dt q_7 in component BG_NDCBE (fmol).
C RATES(8) is d/dt q_8 in component BG_NDCBE (fmol).
C RATES(9) is d/dt V_E in component params_BG (volt).
C
SUBROUTINE initConsts(CONSTS, RATES, STATES)
REAL CONSTS(*), RATES(*), STATES(*)
CONSTS(1) = 8.31
CONSTS(2) = 293
CONSTS(3) = 96485
CONSTS(4) = 1e-08
CONSTS(5) = 1e-08
CONSTS(6) = 1e-08
CONSTS(7) = 1e-08
CONSTS(8) = 1e-06
CONSTS(9) = 1e-06
CONSTS(10) = 1
CONSTS(11) = 1
CONSTS(12) = 1
CONSTS(13) = 1
CONSTS(14) = 1
CONSTS(15) = 1
CONSTS(16) = 1
CONSTS(17) = 1
CONSTS(18) = 1
CONSTS(19) = 1
CONSTS(20) = 1
CONSTS(21) = 1
CONSTS(22) = 1
CONSTS(23) = 1
CONSTS(24) = 1
CONSTS(25) = 1
CONSTS(26) = 1
CONSTS(27) = 1
CONSTS(28) = 1
CONSTS(29) = 1
CONSTS(30) = 1
CONSTS(31) = 1
CONSTS(32) = 1
CONSTS(33) = 1
CONSTS(34) = 1
CONSTS(35) = 1
CONSTS(36) = 2
CONSTS(37) = 20
CONSTS(38) = 100
CONSTS(39) = 20
CONSTS(40) = 100
CONSTS(41) = 10e-3
CONSTS(42) = 1e-12
CONSTS(43) = 8.5e5
CONSTS(44) = 8.5e5
STATES(9) = -0.05
CONSTS(45) = 1e-3
CONSTS(46) = CONSTS(37)*CONSTS(43)
CONSTS(57) = 0.00000
CONSTS(47) = CONSTS(1)*CONSTS(2)*log( CONSTS(4)*CONSTS(46))
CONSTS(48) = CONSTS(38)*CONSTS(44)
CONSTS(49) = CONSTS(1)*CONSTS(2)*log( CONSTS(5)*CONSTS(48))
CONSTS(50) = CONSTS(39)*CONSTS(43)
CONSTS(51) = CONSTS(1)*CONSTS(2)*log( CONSTS(6)*CONSTS(50))
CONSTS(52) = CONSTS(40)*CONSTS(44)
CONSTS(53) = CONSTS(1)*CONSTS(2)*log( CONSTS(7)*CONSTS(52))
CONSTS(54) = CONSTS(41)*CONSTS(43)
CONSTS(55) = CONSTS(1)*CONSTS(2)*log( CONSTS(8)*CONSTS(54))
CONSTS(56) = CONSTS(42)*CONSTS(44)
CONSTS(57) = CONSTS(1)*CONSTS(2)*log( CONSTS(9)*CONSTS(56))
STATES(1) = CONSTS(11)
STATES(2) = CONSTS(13)
STATES(3) = CONSTS(15)
STATES(4) = CONSTS(17)
STATES(5) = CONSTS(19)
STATES(6) = CONSTS(21)
STATES(7) = CONSTS(21)
STATES(8) = CONSTS(21)
RETURN
END
SUBROUTINE computeRates(VOI, CONSTS, RATES, STATES, ALGBRC)
REAL VOI, CONSTS(*), RATES(*), STATES(*), ALGBRC(*)
RATES(9) = CONSTS(57)
ALGBRC(3) = CONSTS(1)*CONSTS(2)*log( CONSTS(12)*STATES(2))
ALGBRC(13) = CONSTS(36)*CONSTS(57)+ALGBRC(3)
ALGBRC(5) = CONSTS(1)*CONSTS(2)*log( CONSTS(14)*STATES(3))
ALGBRC(14) = ALGBRC(5)
ALGBRC(32) = CONSTS(27)*(EXP(ALGBRC(13)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(14)/( CONSTS(1)*CONSTS(2))))
ALGBRC(15) = ALGBRC(5)
ALGBRC(6) = CONSTS(1)*CONSTS(2)*log( CONSTS(16)*STATES(4))
ALGBRC(16) = ALGBRC(6)
ALGBRC(33) = CONSTS(28)*(EXP(ALGBRC(15)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(16)/( CONSTS(1)*CONSTS(2))))
ALGBRC(34) = ALGBRC(32) - ALGBRC(33)
RATES(3) = ALGBRC(34)
ALGBRC(17) = ALGBRC(6)
ALGBRC(7) = CONSTS(1)*CONSTS(2)*log( CONSTS(18)*STATES(5))
ALGBRC(18) = ALGBRC(7)+ CONSTS(36)*CONSTS(55)
ALGBRC(35) = CONSTS(29)*(EXP(ALGBRC(17)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(18)/( CONSTS(1)*CONSTS(2))))
ALGBRC(37) = ALGBRC(33) - ALGBRC(35)
RATES(4) = ALGBRC(37)
ALGBRC(1) = CONSTS(1)*CONSTS(2)*log( CONSTS(10)*STATES(1))
ALGBRC(11) = CONSTS(49)+ALGBRC(1)
ALGBRC(12) = ALGBRC(3)
ALGBRC(31) = CONSTS(26)*(EXP(ALGBRC(11)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(12)/( CONSTS(1)*CONSTS(2))))
ALGBRC(29) = ALGBRC(3)
ALGBRC(30) = ALGBRC(7)
ALGBRC(39) = CONSTS(35)*(EXP(ALGBRC(29)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(30)/( CONSTS(1)*CONSTS(2))))
ALGBRC(41) = (ALGBRC(31) - ALGBRC(32)) - ALGBRC(39)
RATES(2) = ALGBRC(41)
ALGBRC(19) = ALGBRC(7)
ALGBRC(8) = CONSTS(1)*CONSTS(2)*log( CONSTS(20)*STATES(6))
ALGBRC(20) = CONSTS(47)+ALGBRC(8)
ALGBRC(36) = CONSTS(30)*(EXP(ALGBRC(19)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(20)/( CONSTS(1)*CONSTS(2))))
ALGBRC(42) = (ALGBRC(35)+ALGBRC(39)) - ALGBRC(36)
RATES(5) = ALGBRC(42)
ALGBRC(21) = CONSTS(51)+ALGBRC(8)
ALGBRC(9) = CONSTS(1)*CONSTS(2)*log( CONSTS(22)*STATES(7))
ALGBRC(22) = ALGBRC(9)
ALGBRC(38) = CONSTS(31)*(EXP(ALGBRC(21)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(22)/( CONSTS(1)*CONSTS(2))))
ALGBRC(23) = ALGBRC(9)
ALGBRC(10) = CONSTS(1)*CONSTS(2)*log( CONSTS(24)*STATES(8))
ALGBRC(24) = ALGBRC(10)
ALGBRC(40) = CONSTS(32)*(EXP(ALGBRC(23)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(24)/( CONSTS(1)*CONSTS(2))))
ALGBRC(44) = ALGBRC(38) - ALGBRC(40)
RATES(7) = ALGBRC(44)
ALGBRC(25) = ALGBRC(10)
ALGBRC(26) = CONSTS(53)+ALGBRC(1)
ALGBRC(43) = CONSTS(33)*(EXP(ALGBRC(25)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(26)/( CONSTS(1)*CONSTS(2))))
ALGBRC(46) = ALGBRC(40) - ALGBRC(43)
RATES(8) = ALGBRC(46)
ALGBRC(27) = ALGBRC(1)
ALGBRC(28) = ALGBRC(8)
ALGBRC(45) = CONSTS(34)*(EXP(ALGBRC(27)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(28)/( CONSTS(1)*CONSTS(2))))
ALGBRC(47) = (ALGBRC(43) - ALGBRC(31)) - ALGBRC(45)
RATES(1) = ALGBRC(47)
ALGBRC(48) = (ALGBRC(36)+ALGBRC(45)) - ALGBRC(38)
RATES(6) = ALGBRC(48)
RETURN
END
SUBROUTINE computeVariables(VOI, CONSTS, RATES, STATES, ALGBRC)
REAL VOI, CONSTS(*), RATES(*), STATES(*), ALGBRC(*)
ALGBRC(3) = CONSTS(1)*CONSTS(2)*log( CONSTS(12)*STATES(2))
ALGBRC(13) = CONSTS(36)*CONSTS(57)+ALGBRC(3)
ALGBRC(5) = CONSTS(1)*CONSTS(2)*log( CONSTS(14)*STATES(3))
ALGBRC(14) = ALGBRC(5)
ALGBRC(32) = CONSTS(27)*(EXP(ALGBRC(13)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(14)/( CONSTS(1)*CONSTS(2))))
ALGBRC(15) = ALGBRC(5)
ALGBRC(6) = CONSTS(1)*CONSTS(2)*log( CONSTS(16)*STATES(4))
ALGBRC(16) = ALGBRC(6)
ALGBRC(33) = CONSTS(28)*(EXP(ALGBRC(15)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(16)/( CONSTS(1)*CONSTS(2))))
ALGBRC(34) = ALGBRC(32) - ALGBRC(33)
ALGBRC(17) = ALGBRC(6)
ALGBRC(7) = CONSTS(1)*CONSTS(2)*log( CONSTS(18)*STATES(5))
ALGBRC(18) = ALGBRC(7)+ CONSTS(36)*CONSTS(55)
ALGBRC(35) = CONSTS(29)*(EXP(ALGBRC(17)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(18)/( CONSTS(1)*CONSTS(2))))
ALGBRC(37) = ALGBRC(33) - ALGBRC(35)
ALGBRC(1) = CONSTS(1)*CONSTS(2)*log( CONSTS(10)*STATES(1))
ALGBRC(11) = CONSTS(49)+ALGBRC(1)
ALGBRC(12) = ALGBRC(3)
ALGBRC(31) = CONSTS(26)*(EXP(ALGBRC(11)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(12)/( CONSTS(1)*CONSTS(2))))
ALGBRC(29) = ALGBRC(3)
ALGBRC(30) = ALGBRC(7)
ALGBRC(39) = CONSTS(35)*(EXP(ALGBRC(29)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(30)/( CONSTS(1)*CONSTS(2))))
ALGBRC(41) = (ALGBRC(31) - ALGBRC(32)) - ALGBRC(39)
ALGBRC(19) = ALGBRC(7)
ALGBRC(8) = CONSTS(1)*CONSTS(2)*log( CONSTS(20)*STATES(6))
ALGBRC(20) = CONSTS(47)+ALGBRC(8)
ALGBRC(36) = CONSTS(30)*(EXP(ALGBRC(19)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(20)/( CONSTS(1)*CONSTS(2))))
ALGBRC(42) = (ALGBRC(35)+ALGBRC(39)) - ALGBRC(36)
ALGBRC(21) = CONSTS(51)+ALGBRC(8)
ALGBRC(9) = CONSTS(1)*CONSTS(2)*log( CONSTS(22)*STATES(7))
ALGBRC(22) = ALGBRC(9)
ALGBRC(38) = CONSTS(31)*(EXP(ALGBRC(21)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(22)/( CONSTS(1)*CONSTS(2))))
ALGBRC(23) = ALGBRC(9)
ALGBRC(10) = CONSTS(1)*CONSTS(2)*log( CONSTS(24)*STATES(8))
ALGBRC(24) = ALGBRC(10)
ALGBRC(40) = CONSTS(32)*(EXP(ALGBRC(23)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(24)/( CONSTS(1)*CONSTS(2))))
ALGBRC(44) = ALGBRC(38) - ALGBRC(40)
ALGBRC(25) = ALGBRC(10)
ALGBRC(26) = CONSTS(53)+ALGBRC(1)
ALGBRC(43) = CONSTS(33)*(EXP(ALGBRC(25)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(26)/( CONSTS(1)*CONSTS(2))))
ALGBRC(46) = ALGBRC(40) - ALGBRC(43)
ALGBRC(27) = ALGBRC(1)
ALGBRC(28) = ALGBRC(8)
ALGBRC(45) = CONSTS(34)*(EXP(ALGBRC(27)/( CONSTS(1)*CONSTS(2))) - EXP(ALGBRC(28)/( CONSTS(1)*CONSTS(2))))
ALGBRC(47) = (ALGBRC(43) - ALGBRC(31)) - ALGBRC(45)
ALGBRC(48) = (ALGBRC(36)+ALGBRC(45)) - ALGBRC(38)
ALGBRC(2) = STATES(9)
ALGBRC(4) = ALGBRC(2)
RETURN
END
