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@ -1690,6 +1690,19 @@ subroutine restore_symmetry(m,n,A,LDA,thresh)
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thresh2 = dsqrt(thresh)
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call nullify_small_elements(m,n,A,LDA,thresh)
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! Debug
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!double precision, allocatable :: B(:,:)
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!double precision :: max_diff, ti,tf
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!allocate(B(m,n))
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!B = A
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!call wall_time(ti)
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!call restore_symmetry_fast(m,n,B,LDA,thresh)
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!call wall_time(tf)
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!print*,''
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!print*,'Restore_symmetry'
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!print*,'Fast version:',tf-ti,'s'
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!call wall_time(ti)
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! if (.not.restore_symm) then
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! return
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! endif
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@ -1749,23 +1762,136 @@ subroutine restore_symmetry(m,n,A,LDA,thresh)
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enddo
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enddo
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! Debug
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!call wall_time(tf)
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!print*,'Old version:',tf-ti,'s'
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!max_diff = 0d0
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!do j = 1, n
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! do i = 1, n
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! if (dabs(A(i,j)-B(i,j)) > max_diff) then
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! max_diff = dabs(A(i,j)-B(i,j))
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! endif
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! enddo
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!enddo
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!print*,'Max diff:', max_diff
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!deallocate(B)
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end
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subroutine restore_symmetry_fast(m,n,A,LDA,thresh)
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implicit none
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BEGIN_DOC
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! Tries to find the matrix elements that are the same, and sets them
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! to the average value.
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! If restore_symm is False, only nullify small elements
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END_DOC
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integer, intent(in) :: m,n,LDA
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double precision, intent(inout) :: A(LDA,n)
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double precision, intent(in) :: thresh
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double precision, allocatable :: copy(:), copy_sign(:)
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integer, allocatable :: key(:)
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integer :: sze, pi, pf, idx, i,j,k
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double precision :: average, val, thresh2
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thresh2 = dsqrt(thresh)
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call nullify_small_elements(m,n,A,LDA,thresh)
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sze = m * n
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allocate(copy(sze),copy_sign(sze),key(sze))
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! Copy to 1D
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!$OMP PARALLEL &
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!$OMP SHARED(A,m,n,sze,copy_sign,copy,key) &
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!$OMP PRIVATE(i,j,k) &
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!$OMP DEFAULT(NONE)
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!$OMP DO
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do j = 1, n
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do i = 1, m
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copy(i+(j-1)*m) = A(i,j)
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enddo
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enddo
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!$OMP END DO
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! Copy sign
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!$OMP DO
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do i = 1,sze
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copy_sign(i) = sign(1d0,copy(i))
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copy(i) = dabs(copy(i))
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enddo
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!$OMP END DO NOWAIT
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! Keys
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!$OMP DO
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do i = 1, sze
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key(i) = i
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enddo
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!$OMP END DO
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!$OMP END PARALLEL
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! Sort
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call dsort(copy,key,sze)
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!TODO
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! Parallelization with OMP
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! Jump all the elements below thresh
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i = 1
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do while (copy(i) <= thresh)
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i = i + 1
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enddo
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! Symmetrize
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do while(i < sze)
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pi = i
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pf = i
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val = 1d0/copy(i)
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do while (dabs(val * copy(pf+1) - 1d0) < thresh2)
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pf = pf + 1
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! if pf == sze, copy(pf+1) will not be valid
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if (pf == sze) then
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exit
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endif
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enddo
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! if pi and pf are different do the average from pi to pf
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if (pf - pi > 0) then
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average = 0d0
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do j = pi, pf
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average = average + copy(j)
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enddo
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average = average / (pf-pi+1)
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do j = pi, pf
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copy(j) = average
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enddo
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! Update i
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i = pf
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endif
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! Update i
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i = i + 1
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enddo
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!$OMP PARALLEL &
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!$OMP SHARED(m,sze,copy_sign,copy,key,A) &
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!$OMP PRIVATE(i,j,k,idx) &
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!$OMP DEFAULT(NONE)
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! copy -> A
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!$OMP DO
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do k = 1, sze
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idx = key(k)
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i = mod(idx-1,m) + 1
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j = (idx-1) / m + 1
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! New value with the right sign
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A(i,j) = sign(copy(k),copy_sign(idx))
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enddo
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!$OMP END DO
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!$OMP END PARALLEL
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deallocate(copy,copy_sign,key)
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end
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!subroutine svd_s(A, LDA, U, LDU, D, Vt, LDVt, m, n)
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! implicit none
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