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Accelerate Cholesky
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@ -81,6 +81,9 @@ subroutine direct_cholesky(L, ndim, rank, tau)
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double precision :: Dmax, Dmin, Qmax, f
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double precision, external :: get_ao_two_e_integral
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logical, external :: ao_two_e_integral_zero
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print *, 'Entering Cholesky'
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allocate( D(ndim), Lset(ndim), Dset(ndim) )
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allocate( addr(2,ndim) )
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@ -139,6 +142,9 @@ subroutine direct_cholesky(L, ndim, rank, tau)
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! d., e.
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allocate(Delta(np,nq), Ltmp_p(max(np,1),max(N,1)), Ltmp_q(max(nq,1),max(N,1)))
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!$OMP PARALLEL DEFAULT(SHARED) PRIVATE(m,k,p,q)
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!$OMP DO
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do k=1,N
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do p=1,np
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Ltmp_p(p,k) = L(Lset(p),k)
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@ -147,10 +153,24 @@ subroutine direct_cholesky(L, ndim, rank, tau)
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Ltmp_q(q,k) = L(Dset(q),k)
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enddo
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enddo
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!$OMP END DO NOWAIT
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!$OMP PARALLEL DO DEFAULT(SHARED) PRIVATE(m,k)
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!$OMP DO
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do m=1,nq
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do k=1,np
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Delta(k,m) = 0.d0
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enddo
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enddo
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!$OMP END DO
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!$OMP DO
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do m=1,nq
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do k=1,np
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if (ao_two_e_integral_zero( &
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addr(1,Lset(k)), &
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addr(1,Dset(m)), &
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addr(2,Lset(k)), &
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addr(2,Dset(m)) ) ) cycle
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Delta(k,m) = get_ao_two_e_integral( &
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addr(1,Lset(k)), &
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addr(1,Dset(m)), &
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@ -159,7 +179,9 @@ subroutine direct_cholesky(L, ndim, rank, tau)
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ao_integrals_map)
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enddo
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enddo
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!$OMP END PARALLEL DO
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!$OMP END DO
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!$OMP END PARALLEL
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call dgemm('N','T',np,nq,N,-1.d0, &
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Ltmp_p, np, Ltmp_q, nq, 1.d0, Delta, np)
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@ -188,28 +210,36 @@ subroutine direct_cholesky(L, ndim, rank, tau)
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! iii.
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f = 1.d0/dsqrt(Qmax)
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!$OMP PARALLEL PRIVATE(m,k)
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!$OMP DO
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do p=1,np
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Ltmp_p(p,1) = Delta(p,dj) * f
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L(Lset(p), rank) = Ltmp_p(p,1)
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enddo
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!$OMP END DO
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!$OMP DO
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do q=1,nq
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Ltmp_q(q,1) = L(Dset(q), rank)
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enddo
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!$OMP END DO
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! iv.
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! call dger(np, nq, -1.d0, Ltmp_p, 1, Ltmp_q, 1, Delta, np)
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!$OMP PARALLEL DO PRIVATE(f,m,k)
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!$OMP DO
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do m=1, nq
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do k=1, np
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Delta(k,m) = Delta(k,m) - Ltmp_p(k,1) * Ltmp_q(m,1)
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enddo
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enddo
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!$OMP END PARALLEL DO
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!$OMP END DO NOWAIT
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! call dger(np, nq, -1.d0, Ltmp_p, 1, Ltmp_q, 1, Delta, np)
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!$OMP DO
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do k=1, np
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D(Lset(k)) = D(Lset(k)) - Ltmp_p(k,1) * Ltmp_p(k,1)
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enddo
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!$OMP END DO
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!$OMP END PARALLEL
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Qmax = D(Dset(1))
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do q=1,np
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