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#define | exmax EXTERN_C_NAME(exmax) |
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#define | FOR_3D(i1, i2, i3, I1, I2, I3) int I1Base =I1.getBase(), I2Base =I2.getBase(), I3Base =I3.getBase(); int I1Bound=I1.getBound(), I2Bound=I2.getBound(), I3Bound=I3.getBound(); for(i3=I3Base; i3<=I3Bound; i3++) for(i2=I2Base; i2<=I2Bound; i2++) for(i1=I1Base; i1<=I1Bound; i1++) |
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#define | FOR_3(i1, i2, i3, I1, I2, I3) I1Base =I1.getBase(), I2Base =I2.getBase(), I3Base =I3.getBase(); I1Bound=I1.getBound(), I2Bound=I2.getBound(), I3Bound=I3.getBound(); for(i3=I3Base; i3<=I3Bound; i3++) for(i2=I2Base; i2<=I2Bound; i2++) for(i1=I1Base; i1<=I1Bound; i1++) |
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#define | exTrue(x, y, t) sin(twoPi*(kx*(x)+ky*(y)-cc*(t)))*pwc[0] |
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#define | eyTrue(x, y, t) sin(twoPi*(kx*(x)+ky*(y)-cc*(t)))*pwc[1] |
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#define | hzTrue(x, y, t) sin(twoPi*(kx*(x)+ky*(y)-cc*(t)))*pwc[5] |
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#define | extTrue(x, y, t) (-twoPi*cc)*cos(twoPi*(kx*(x)+ky*(y)-cc*(t)))*pwc[0] |
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#define | eytTrue(x, y, t) (-twoPi*cc)*cos(twoPi*(kx*(x)+ky*(y)-cc*(t)))*pwc[1] |
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#define | hztTrue(x, y, t) (-twoPi*cc)*cos(twoPi*(kx*(x)+ky*(y)-cc*(t)))*pwc[5] |
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#define | exLaplacianTrue(x, y, t) sin(twoPi*(kx*(x)+ky*(y)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky))*pwc[0]) |
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#define | eyLaplacianTrue(x, y, t) sin(twoPi*(kx*(x)+ky*(y)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky))*pwc[1]) |
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#define | hzLaplacianTrue(x, y, t) sin(twoPi*(kx*(x)+ky*(y)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky))*pwc[5]) |
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#define | hzGaussianPulse(xi) exp(-betaGaussianPlaneWave*((xi)*(xi))) |
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#define | exGaussianPulse(xi) hzGaussianPulse(xi)*(-ky/(eps*cc)) |
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#define | eyGaussianPulse(xi) hzGaussianPulse(xi)*( kx/(eps*cc)) |
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#define | hzLaplacianGaussianPulse(xi) ((4.*betaGaussianPlaneWave*betaGaussianPlaneWave*(kx*kx+ky*ky))*xi*xi-(2.*betaGaussianPlaneWave*(kx*kx+ky*ky)))*exp(-betaGaussianPlaneWave*((xi)*(xi))) |
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#define | exLaplacianGaussianPulse(xi) hzLaplacianGaussianPulse(xi,t)*(-ky/(eps*cc)) |
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#define | eyLaplacianGaussianPulse(xi) hzLaplacianGaussianPulse(xi,t)*( kx/(eps*cc)) |
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#define | exTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[0] |
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#define | eyTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[1] |
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#define | ezTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[2] |
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#define | extTrue3d(x, y, z, t) (-twoPi*cc)*cos(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[0] |
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#define | eytTrue3d(x, y, z, t) (-twoPi*cc)*cos(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[1] |
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#define | eztTrue3d(x, y, z, t) (-twoPi*cc)*cos(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[2] |
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#define | hxTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[3] |
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#define | hyTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[4] |
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#define | hzTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*pwc[5] |
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#define | exLaplacianTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky+kz*kz))*pwc[0]) |
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#define | eyLaplacianTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky+kz*kz))*pwc[1]) |
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#define | ezLaplacianTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky+kz*kz))*pwc[2]) |
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#define | hxLaplacianTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky+kz*kz))*pwc[3]) |
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#define | hyLaplacianTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky+kz*kz))*pwc[4]) |
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#define | hzLaplacianTrue3d(x, y, z, t) sin(twoPi*(kx*(x)+ky*(y)+kz*(z)-cc*(t)))*(-(twoPi*twoPi*(kx*kx+ky*ky+kz*kz))*pwc[5]) |
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#define | EXTGFP_SENTINEL |
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#define | UHX(i0, i1, i2) uhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hx )))] |
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#define | UHY(i0, i1, i2) uhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hy )))] |
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#define | UHZ(i0, i1, i2) uhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hz )))] |
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#define | UMHX(i0, i1, i2) umhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hx )))] |
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#define | UMHY(i0, i1, i2) umhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hy )))] |
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#define | UMHZ(i0, i1, i2) umhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hz )))] |
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#define | UNHX(i0, i1, i2) unhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hx )))] |
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#define | UNHY(i0, i1, i2) unhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hy )))] |
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#define | UNHZ(i0, i1, i2) unhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hz )))] |
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#define | ERRHX(i0, i1, i2) errhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hx )))] |
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#define | ERRHY(i0, i1, i2) errhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hy )))] |
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#define | ERRHZ(i0, i1, i2) errhp[i0+uhDim0*(i1+uhDim1*(i2+uhDim2*( hz )))] |
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#define | XHP(i0, i1, i2, i3) xhp[i0+xhDim0*(i1+xhDim1*(i2+xhDim2*(i3)))] |
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#define | X(i0, i1, i2, i3) xhp[i0+xhDim0*(i1+xhDim1*(i2+xhDim2*(i3)))] |
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#define | UEX(i0, i1, i2) uep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ex )))] |
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#define | UEY(i0, i1, i2) uep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ey )))] |
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#define | UEZ(i0, i1, i2) uep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ez )))] |
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#define | UMEX(i0, i1, i2) umep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ex )))] |
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#define | UMEY(i0, i1, i2) umep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ey )))] |
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#define | UMEZ(i0, i1, i2) umep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ez )))] |
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#define | UNEX(i0, i1, i2) unep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ex )))] |
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#define | UNEY(i0, i1, i2) unep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ey )))] |
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#define | UNEZ(i0, i1, i2) unep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ez )))] |
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#define | ERREX(i0, i1, i2) errep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ex )))] |
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#define | ERREY(i0, i1, i2) errep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ey )))] |
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#define | ERREZ(i0, i1, i2) errep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*( ez )))] |
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#define | MASK(i0, i1, i2) maskp[(i0)+(i1)*md1+(i2)*md2] |
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#define | XEP(i0, i1, i2, i3) xep[i0+xeDim0*(i1+xeDim1*(i2+xeDim2*(i3)))] |
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#define | X0(i0, i1, i2) (xa+dx0*(i0-i0a)) |
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#define | X1(i0, i1, i2) (ya+dy0*(i1-i1a)) |
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#define | X2(i0, i1, i2) (za+dz0*(i2-i2a)) |
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#define | UG(i0, i1, i2, i3) ugp[i0+ugDim0*(i1+ugDim1*(i2+ugDim2*(i3)))] |
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#define | ERR(i0, i1, i2, i3) errep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*(i3)))] |
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#define | U(i0, i1, i2, i3) uep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*(i3)))] |
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#define | ERR(i0, i1, i2, i3) errep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*(i3)))] |
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#define | U(i0, i1, i2, i3) uep[i0+ueDim0*(i1+ueDim1*(i2+ueDim2*(i3)))] |
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