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mirror of https://github.com/QuantumPackage/qp2.git synced 2024-06-22 05:02:22 +02:00
This commit is contained in:
Anthony Scemama 2019-07-03 20:03:44 +02:00
parent 21dc0f5380
commit 1018c686a9

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@ -155,7 +155,6 @@ BEGIN_PROVIDER [real*8, bielec_PxxQ_no, (mo_num,n_core_inact_act_orb,n_core_inac
allocate (f(n_act_orb,mo_num,n_core_inact_act_orb), &
d(n_act_orb,mo_num,n_core_inact_act_orb))
! 3rd quarter
do k=1,mo_num
do l=1,n_core_inact_act_orb
do j=1,mo_num
@ -179,40 +178,53 @@ BEGIN_PROVIDER [real*8, bielec_PxxQ_no, (mo_num,n_core_inact_act_orb,n_core_inac
end do
end do
! 4th quarter
deallocate(f,d)
allocate(f(mo_num,n_core_inact_act_orb,n_act_orb), &
d(mo_num,n_core_inact_act_orb,n_act_orb) )
do k=1,mo_num
do l=1,n_core_inact_act_orb
do j=1,mo_num
do p=1,n_act_orb
d(p,1,1)=0.D0
do p=1,n_act_orb
do l=1,n_core_inact_act_orb
do j=1,mo_num
f(j,l,p) = bielec_PxxQ_no(j,l,n_core_inact_orb+p,k)
end do
do p=1,n_act_orb
do q=1,n_act_orb
d(p,1,1)+=bielec_PxxQ_no(j,l,n_core_inact_orb+q,k)*natorbsCI(q,p)
end do
end do
do p=1,n_act_orb
pp=n_act_orb-p+1
bielec_PxxQ_no(j,l,n_core_inact_orb+p,k)=d(pp,1,1)
end do
end do
call dgemm('N','N',mo_num*n_core_inact_act_orb,n_act_orb,n_act_orb,1.d0, &
f, mo_num*n_core_inact_act_orb, &
natorbsCI, size(natorbsCI,1), &
0.d0, &
d, mo_num*n_core_inact_act_orb)
do p=1,n_act_orb
pp=n_act_orb-p+1
do l=1,n_core_inact_act_orb
do j=1,mo_num
bielec_PxxQ_no(j,l,n_core_inact_orb+p,k)=d(j,l,pp)
end do
end do
end do
end do
! 2nd quarter
do k=1,n_core_inact_act_orb
do l=1,n_core_inact_act_orb
do j=1,mo_num
do p=1,n_act_orb
d(p,1,1)=0.D0
do l=1,n_core_inact_act_orb
do p=1,n_act_orb
do k=1,n_core_inact_act_orb
do j=1,mo_num
f(j,k,p) = bielec_PxxQ_no(j,k,l,n_core_inact_orb+p)
end do
do p=1,n_act_orb
do q=1,n_act_orb
d(p,1,1)+=bielec_PxxQ_no(j,k,l,list_act(q))*natorbsCI(q,p)
end do
end do
do p=1,n_act_orb
pp=n_act_orb-p+1
bielec_PxxQ_no(j,k,l,list_act(p))=d(pp,1,1)
end do
end do
call dgemm('N','N',mo_num*n_core_inact_act_orb,n_act_orb,n_act_orb,1.d0, &
f, mo_num*n_core_inact_act_orb, &
natorbsCI, size(natorbsCI,1), &
0.d0, &
d, mo_num*n_core_inact_act_orb)
do p=1,n_act_orb
pp=n_act_orb-p+1
do k=1,n_core_inact_act_orb
do j=1,mo_num
bielec_PxxQ_no(j,k,l,n_core_inact_orb+p)=d(j,k,pp)
end do
end do
end do
@ -232,28 +244,32 @@ BEGIN_PROVIDER [real*8, bielecCI_no, (n_act_orb,n_act_orb,n_act_orb, mo_num)]
bielecCI_no(:,:,:,:) = bielecCI(:,:,:,:)
allocate (f(n_act_orb,mo_num,n_act_orb), &
d(n_act_orb,mo_num,n_act_orb))
allocate (f(n_act_orb,n_act_orb,mo_num), &
d(n_act_orb,n_act_orb,mo_num))
do j=1,n_act_orb
do l=1,mo_num
do k=1,n_act_orb
do l=1,mo_num
do j=1,n_act_orb
do p=1,n_act_orb
d(p,1,1)=0.D0
end do
do p=1,n_act_orb
do q=1,n_act_orb
d(p,1,1)+=bielecCI_no(q,j,k,l)*natorbsCI(q,p)
end do
f(p,j,k)=bielecCI_no(p,j,k,l)
end do
end do
end do
call dgemm('T','N',n_act_orb,n_act_orb*n_act_orb,n_act_orb,1.d0, &
natorbsCI, size(natorbsCI,1), &
f, n_act_orb, &
0.d0, &
d, n_act_orb)
do k=1,n_act_orb
do j=1,n_act_orb
do p=1,n_act_orb
pp=n_act_orb-p+1
bielecCI_no(p,j,k,l)=d(pp,1,1)
bielecCI_no(p,j,k,l)=d(pp,j,k)
end do
end do
end do
end do
! 2nd quarter
do j=1,n_act_orb
do k=1,n_act_orb
do l=1,mo_num
@ -291,10 +307,55 @@ BEGIN_PROVIDER [real*8, bielecCI_no, (n_act_orb,n_act_orb,n_act_orb, mo_num)]
end do
end do
end do
! 4th quarter
do j=1,n_act_orb
! do l=1,mo_num
! do k=1,n_act_orb
! do p=1,n_act_orb
! do j=1,n_act_orb
! f(j,p,k)=bielecCI_no(j,p,k,l)
! end do
! end do
! end do
! call dgemm('T','N',n_act_orb,n_act_orb*n_act_orb,n_act_orb,1.d0, &
! natorbsCI, n_act_orb, &
! f, n_act_orb, &
! 0.d0, &
! d, n_act_orb)
! do k=1,n_act_orb
! do p=1,n_act_orb
! pp=n_act_orb-p+1
! do j=1,n_act_orb
! bielecCI_no(j,p,k,l)=d(j,pp,k)
! end do
! end do
! end do
!
! do p=1,n_act_orb
! do k=1,n_act_orb
! do j=1,n_act_orb
! f(j,k,p)=bielecCI_no(j,k,p,l)
! end do
! end do
! end do
! call dgemm('N','N',n_act_orb*n_act_orb,n_act_orb,n_act_orb,1.d0, &
! f, n_act_orb*n_act_orb, &
! natorbsCI, n_act_orb, &
! 0.d0, &
! d, n_act_orb*n_act_orb)
!
! do p=1,n_act_orb
! pp=n_act_orb-p+1
! do k=1,n_act_orb
! do j=1,n_act_orb
! bielecCI_no(j,k,p,l)=d(j,k,pp)
! end do
! end do
! end do
! end do
!
do l=1,n_act_orb
do k=1,n_act_orb
do l=1,n_act_orb
do j=1,n_act_orb
do p=1,n_act_orb
d(p,1,1)=0.D0
end do