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Better handling of pt2 tasks
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@ -10,13 +10,20 @@ END_PROVIDER
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&BEGIN_PROVIDER [ integer, pt2_n_tasks_max ]
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&BEGIN_PROVIDER [ integer, pt2_n_tasks_max ]
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implicit none
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implicit none
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logical, external :: testTeethBuilding
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logical, external :: testTeethBuilding
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integer :: i
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integer :: i,j
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integer :: e
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pt2_n_tasks_max = elec_beta_num*elec_beta_num + elec_alpha_num*elec_beta_num - n_core_orb*2
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e = elec_num - n_core_orb * 2
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pt2_n_tasks_max = min(pt2_n_tasks_max,1+N_det_generators/10000)
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pt2_n_tasks_max = 1+min((e*(e-1)), int(dsqrt(dble(N_det_selectors)))/10)
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call write_int(6,pt2_n_tasks_max,'pt2_n_tasks_max')
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do i=1,N_det_generators
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pt2_F(i) = 1 + int(dble(pt2_n_tasks_max)*dabs(maxval(psi_coef_sorted_gen(i,:)))**(0.75d0))
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pt2_F(:) = int(sqrt(float(pt2_n_tasks_max)))
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do i=1,pt2_n_0(pt2_N_teeth/4)
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pt2_F(i) = pt2_n_tasks_max
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enddo
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enddo
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do i=pt2_n_0(pt2_N_teeth-pt2_N_teeth/4), N_det_generators
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pt2_F(i) = 1
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enddo
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END_PROVIDER
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END_PROVIDER
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BEGIN_PROVIDER [ integer, pt2_N_teeth ]
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BEGIN_PROVIDER [ integer, pt2_N_teeth ]
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@ -29,7 +36,7 @@ END_PROVIDER
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pt2_N_teeth = 1
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pt2_N_teeth = 1
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else
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else
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pt2_minDetInFirstTeeth = min(5, N_det_generators)
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pt2_minDetInFirstTeeth = min(5, N_det_generators)
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do pt2_N_teeth=100,2,-1
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do pt2_N_teeth=400,2,-1
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if(testTeethBuilding(pt2_minDetInFirstTeeth, pt2_N_teeth)) exit
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if(testTeethBuilding(pt2_minDetInFirstTeeth, pt2_N_teeth)) exit
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end do
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end do
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end if
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end if
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@ -74,10 +81,14 @@ logical function testTeethBuilding(minF, N)
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n0 = 0
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n0 = 0
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testTeethBuilding = .false.
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testTeethBuilding = .false.
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double precision :: f
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integer :: minFN
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minFN = N_det_generators - minF * N
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f = 1.d0/dble(N)
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do
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do
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u0 = tilde_cW(n0)
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u0 = tilde_cW(n0)
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r = tilde_cW(n0 + minF)
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r = tilde_cW(n0 + minF)
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Wt = (1d0 - u0) / dble(N)
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Wt = (1d0 - u0) * f
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if (dabs(Wt) <= 1.d-3) then
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if (dabs(Wt) <= 1.d-3) then
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return
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return
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endif
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endif
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@ -86,7 +97,8 @@ logical function testTeethBuilding(minF, N)
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return
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return
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end if
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end if
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n0 += 1
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n0 += 1
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if(N_det_generators - n0 < minF * N) then
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! if(N_det_generators - n0 < minF * N) then
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if(n0 > minFN) then
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return
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return
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end if
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end if
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end do
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end do
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@ -54,7 +54,6 @@ subroutine run_pt2_slave(thread,iproc,energy)
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sending = .False.
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sending = .False.
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done = .False.
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done = .False.
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n_tasks = 1
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do while (.not.done)
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do while (.not.done)
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n_tasks = max(1,n_tasks)
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n_tasks = max(1,n_tasks)
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@ -108,7 +107,8 @@ subroutine run_pt2_slave(thread,iproc,energy)
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b%cur=0
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b%cur=0
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! Try to adjust n_tasks around nproc/2 seconds per job
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! Try to adjust n_tasks around nproc/2 seconds per job
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n_tasks = min(2*n_tasks,int( dble(n_tasks * nproc/2) / (time1 - time0 + 1.d0)))
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! n_tasks = min(2*n_tasks,int( dble(n_tasks * nproc/2) / (time1 - time0 + 1.d0)))
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n_tasks = 1
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end do
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end do
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call push_pt2_results_async_recv(zmq_socket_push,b%mini,sending)
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call push_pt2_results_async_recv(zmq_socket_push,b%mini,sending)
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@ -202,6 +202,8 @@ subroutine diagonalize_CI
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psi_coef(i,j) = CI_eigenvectors(i,j)
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psi_coef(i,j) = CI_eigenvectors(i,j)
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enddo
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enddo
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enddo
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enddo
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psi_energy(1:N_states) = CI_electronic_energy(1:N_states)
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psi_s2(1:N_states) = CI_s2(1:N_states)
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SOFT_TOUCH psi_coef CI_electronic_energy CI_energy CI_eigenvectors CI_s2
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SOFT_TOUCH psi_coef CI_electronic_energy CI_energy CI_eigenvectors CI_s2 psi_energy psi_s2
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end
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end
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