mirror of
https://github.com/LCPQ/quantum_package
synced 2025-04-18 14:30:26 +02:00
MPI test is OK
This commit is contained in:
parent
334f165ff1
commit
e55a1565e8
@ -10,7 +10,7 @@
|
|||||||
#
|
#
|
||||||
#
|
#
|
||||||
[COMMON]
|
[COMMON]
|
||||||
FC : mpif90 -ffree-line-length-none -I .
|
FC : mpif90 -ffree-line-length-none -I . -g
|
||||||
LAPACK_LIB : -lblas -llapack
|
LAPACK_LIB : -lblas -llapack
|
||||||
IRPF90 : irpf90
|
IRPF90 : irpf90
|
||||||
IRPF90_FLAGS : --ninja --align=32 -DMPI
|
IRPF90_FLAGS : --ninja --align=32 -DMPI
|
||||||
|
@ -646,7 +646,7 @@ subroutine fill_buffer_double(i_generator, sp, h1, h2, bannedOrb, banned, fock_d
|
|||||||
do p2=ib,mo_tot_num
|
do p2=ib,mo_tot_num
|
||||||
if(bannedOrb(p2, s2)) cycle
|
if(bannedOrb(p2, s2)) cycle
|
||||||
if(banned(p1,p2)) cycle
|
if(banned(p1,p2)) cycle
|
||||||
if(mat(1, p1, p2) == 0d0) cycle
|
if(sum(dabs(mat(:, p1, p2))) == 0d0) cycle
|
||||||
call apply_particles(mask, s1, p1, s2, p2, det, ok, N_int)
|
call apply_particles(mask, s1, p1, s2, p2, det, ok, N_int)
|
||||||
logical, external :: is_in_wavefunction
|
logical, external :: is_in_wavefunction
|
||||||
|
|
||||||
|
@ -1 +1 @@
|
|||||||
Perturbation Selectors_full Generators_full ZMQ FourIdx
|
Perturbation Selectors_full Generators_full ZMQ FourIdx MPI
|
||||||
|
@ -81,40 +81,41 @@ program fci_zmq
|
|||||||
(CI_energy(1) + pt2(1) - hf_energy_ref)
|
(CI_energy(1) + pt2(1) - hf_energy_ref)
|
||||||
correlation_energy_ratio = min(1.d0,correlation_energy_ratio)
|
correlation_energy_ratio = min(1.d0,correlation_energy_ratio)
|
||||||
|
|
||||||
! print *, ''
|
N_states_p = min(N_det,N_states)
|
||||||
! print '(A,I12)', 'Summary at N_det = ', N_det
|
|
||||||
! print '(A)', '-----------------------------------'
|
print *, ''
|
||||||
! print *, ''
|
print '(A,I12)', 'Summary at N_det = ', N_det
|
||||||
! call write_double(6,correlation_energy_ratio, 'Correlation ratio')
|
print '(A)', '-----------------------------------'
|
||||||
! print *, ''
|
print *, ''
|
||||||
!
|
call write_double(6,correlation_energy_ratio, 'Correlation ratio')
|
||||||
! N_states_p = min(N_det,N_states)
|
print *, ''
|
||||||
! print *, ''
|
|
||||||
! write(fmt,*) '(''# ============'',', N_states_p, '(1X,''=========================''))'
|
print *, ''
|
||||||
! write(*,fmt)
|
write(fmt,*) '(''# ============'',', N_states_p, '(1X,''=========================''))'
|
||||||
! write(fmt,*) '(12X,', N_states_p, '(6X,A5,1X,I6,8X))'
|
write(*,fmt)
|
||||||
! write(*,fmt) ('State',k, k=1,N_states_p)
|
write(fmt,*) '(12X,', N_states_p, '(6X,A5,1X,I6,8X))'
|
||||||
! write(fmt,*) '(''# ============'',', N_states_p, '(1X,''=========================''))'
|
write(*,fmt) ('State',k, k=1,N_states_p)
|
||||||
! write(*,fmt)
|
write(fmt,*) '(''# ============'',', N_states_p, '(1X,''=========================''))'
|
||||||
! write(fmt,*) '(A12,', N_states_p, '(1X,F12.8,13X))'
|
write(*,fmt)
|
||||||
! write(*,fmt) '# E ', CI_energy(1:N_states_p)
|
write(fmt,*) '(A12,', N_states_p, '(1X,F12.8,13X))'
|
||||||
! if (N_states_p > 1) then
|
write(*,fmt) '# E ', CI_energy(1:N_states_p)
|
||||||
! write(*,fmt) '# Excit. (au)', CI_energy(1:N_states_p)-CI_energy(1)
|
if (N_states_p > 1) then
|
||||||
! write(*,fmt) '# Excit. (eV)', (CI_energy(1:N_states_p)-CI_energy(1))*27.211396641308d0
|
write(*,fmt) '# Excit. (au)', CI_energy(1:N_states_p)-CI_energy(1)
|
||||||
! endif
|
write(*,fmt) '# Excit. (eV)', (CI_energy(1:N_states_p)-CI_energy(1))*27.211396641308d0
|
||||||
! write(fmt,*) '(A12,', 2*N_states_p, '(1X,F12.8))'
|
endif
|
||||||
! write(*,fmt) '# PT2'//pt2_string, (pt2(k), error(k), k=1,N_states_p)
|
write(fmt,*) '(A12,', 2*N_states_p, '(1X,F12.8))'
|
||||||
! write(*,*) '#'
|
write(*,fmt) '# PT2'//pt2_string, (pt2(k), error(k), k=1,N_states_p)
|
||||||
! write(*,fmt) '# E+PT2 ', (CI_energy(k)+pt2(k),error(k), k=1,N_states_p)
|
write(*,'(A)') '#'
|
||||||
! if (N_states_p > 1) then
|
write(*,fmt) '# E+PT2 ', (CI_energy(k)+pt2(k),error(k), k=1,N_states_p)
|
||||||
! write(*,fmt) '# Excit. (au)', ( (CI_energy(k)+pt2(k)-CI_energy(1)-pt2(1)), &
|
if (N_states_p > 1) then
|
||||||
! dsqrt(error(k)*error(k)+error(1)*error(1)), k=1,N_states_p)
|
write(*,fmt) '# Excit. (au)', ( (CI_energy(k)+pt2(k)-CI_energy(1)-pt2(1)), &
|
||||||
! write(*,fmt) '# Excit. (eV)', ( (CI_energy(k)+pt2(k)-CI_energy(1)-pt2(1))*27.211396641308d0, &
|
dsqrt(error(k)*error(k)+error(1)*error(1)), k=1,N_states_p)
|
||||||
! dsqrt(error(k)*error(k)+error(1)*error(1))*27.211396641308d0, k=1,N_states_p)
|
write(*,fmt) '# Excit. (eV)', ( (CI_energy(k)+pt2(k)-CI_energy(1)-pt2(1))*27.211396641308d0, &
|
||||||
! endif
|
dsqrt(error(k)*error(k)+error(1)*error(1))*27.211396641308d0, k=1,N_states_p)
|
||||||
! write(fmt,*) '(''# ============'',', N_states_p, '(1X,''=========================''))'
|
endif
|
||||||
! write(*,fmt)
|
write(fmt,*) '(''# ============'',', N_states_p, '(1X,''=========================''))'
|
||||||
! print *, ''
|
write(*,fmt)
|
||||||
|
print *, ''
|
||||||
|
|
||||||
print *, 'N_det = ', N_det
|
print *, 'N_det = ', N_det
|
||||||
print *, 'N_states = ', N_states
|
print *, 'N_states = ', N_states
|
||||||
@ -220,7 +221,7 @@ program fci_zmq
|
|||||||
endif
|
endif
|
||||||
write(fmt,*) '(A12,', 2*N_states_p, '(1X,F12.8))'
|
write(fmt,*) '(A12,', 2*N_states_p, '(1X,F12.8))'
|
||||||
write(*,fmt) '# PT2'//pt2_string, (pt2(k), error(k), k=1,N_states_p)
|
write(*,fmt) '# PT2'//pt2_string, (pt2(k), error(k), k=1,N_states_p)
|
||||||
write(*,*) '#'
|
write(*,'(A)') '#'
|
||||||
write(*,fmt) '# E+PT2 ', (CI_energy(k)+pt2(k),error(k), k=1,N_states_p)
|
write(*,fmt) '# E+PT2 ', (CI_energy(k)+pt2(k),error(k), k=1,N_states_p)
|
||||||
if (N_states_p > 1) then
|
if (N_states_p > 1) then
|
||||||
write(*,fmt) '# Excit. (au)', ( (CI_energy(k)+pt2(k)-CI_energy(1)-pt2(1)), &
|
write(*,fmt) '# Excit. (au)', ( (CI_energy(k)+pt2(k)-CI_energy(1)-pt2(1)), &
|
||||||
|
@ -119,8 +119,8 @@ subroutine ZMQ_pt2(E, pt2,relative_error, absolute_error, error)
|
|||||||
call update_psi_average_norm_contrib(w)
|
call update_psi_average_norm_contrib(w)
|
||||||
SOFT_TOUCH psi_average_norm_contrib
|
SOFT_TOUCH psi_average_norm_contrib
|
||||||
endif
|
endif
|
||||||
do i=N_det+1,N_states
|
do k=N_det+1,N_states
|
||||||
pt2(i) = 0.d0
|
pt2(k) = 0.d0
|
||||||
enddo
|
enddo
|
||||||
|
|
||||||
end subroutine
|
end subroutine
|
||||||
|
@ -36,7 +36,7 @@ subroutine run_selection_slave(thread,iproc,energy)
|
|||||||
end if
|
end if
|
||||||
buf%N = 0
|
buf%N = 0
|
||||||
ctask = 1
|
ctask = 1
|
||||||
pt2 = 0d0
|
pt2(:) = 0d0
|
||||||
|
|
||||||
do
|
do
|
||||||
call get_task_from_taskserver(zmq_to_qp_run_socket,worker_id, task_id(ctask), task)
|
call get_task_from_taskserver(zmq_to_qp_run_socket,worker_id, task_id(ctask), task)
|
||||||
@ -65,7 +65,7 @@ subroutine run_selection_slave(thread,iproc,energy)
|
|||||||
call merge_selection_buffers(buf,buf2)
|
call merge_selection_buffers(buf,buf2)
|
||||||
call push_selection_results(zmq_socket_push, pt2, buf, task_id(1), ctask)
|
call push_selection_results(zmq_socket_push, pt2, buf, task_id(1), ctask)
|
||||||
buf%mini = buf2%mini
|
buf%mini = buf2%mini
|
||||||
pt2 = 0d0
|
pt2(:) = 0d0
|
||||||
buf%cur = 0
|
buf%cur = 0
|
||||||
end if
|
end if
|
||||||
ctask = 0
|
ctask = 0
|
||||||
|
@ -563,7 +563,6 @@ subroutine select_singles_and_doubles(i_generator,hole_mask,particle_mask,fock_d
|
|||||||
call spot_isinwf(mask, fullminilist, i_generator, fullinteresting(0), banned, fullMatch, fullinteresting)
|
call spot_isinwf(mask, fullminilist, i_generator, fullinteresting(0), banned, fullMatch, fullinteresting)
|
||||||
if(fullMatch) cycle
|
if(fullMatch) cycle
|
||||||
|
|
||||||
mat = 0d0
|
|
||||||
call splash_pq(mask, sp, minilist, i_generator, interesting(0), bannedOrb, banned, mat, interesting)
|
call splash_pq(mask, sp, minilist, i_generator, interesting(0), bannedOrb, banned, mat, interesting)
|
||||||
|
|
||||||
call fill_buffer_double(i_generator, sp, h1, h2, bannedOrb, banned, fock_diag_tmp, E0, pt2, mat, buf)
|
call fill_buffer_double(i_generator, sp, h1, h2, bannedOrb, banned, fock_diag_tmp, E0, pt2, mat, buf)
|
||||||
@ -617,7 +616,7 @@ subroutine fill_buffer_double(i_generator, sp, h1, h2, bannedOrb, banned, fock_d
|
|||||||
do p2=ib,mo_tot_num
|
do p2=ib,mo_tot_num
|
||||||
if(bannedOrb(p2, s2)) cycle
|
if(bannedOrb(p2, s2)) cycle
|
||||||
if(banned(p1,p2)) cycle
|
if(banned(p1,p2)) cycle
|
||||||
if(mat(1, p1, p2) == 0d0) cycle
|
if( sum(abs(mat(1:N_states, p1, p2))) == 0d0) cycle
|
||||||
call apply_particles(mask, s1, p1, s2, p2, det, ok, N_int)
|
call apply_particles(mask, s1, p1, s2, p2, det, ok, N_int)
|
||||||
|
|
||||||
Hii = diag_H_mat_elem_fock(psi_det_generators(1,1,i_generator),det,fock_diag_tmp,N_int)
|
Hii = diag_H_mat_elem_fock(psi_det_generators(1,1,i_generator),det,fock_diag_tmp,N_int)
|
||||||
@ -783,9 +782,9 @@ subroutine get_d2(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
|
|
||||||
hij = (mo_bielec_integral(p1, p2, h1, h2) - mo_bielec_integral(p2,p1, h1, h2)) * get_phase_bi(phasemask, ma, ma, h1, p1, h2, p2)
|
hij = (mo_bielec_integral(p1, p2, h1, h2) - mo_bielec_integral(p2,p1, h1, h2)) * get_phase_bi(phasemask, ma, ma, h1, p1, h2, p2)
|
||||||
if(ma == 1) then
|
if(ma == 1) then
|
||||||
mat(:, putj, puti) += coefs * hij
|
mat(:, putj, puti) += coefs(:) * hij
|
||||||
else
|
else
|
||||||
mat(:, puti, putj) += coefs * hij
|
mat(:, puti, putj) += coefs(:) * hij
|
||||||
end if
|
end if
|
||||||
end do
|
end do
|
||||||
else
|
else
|
||||||
@ -801,7 +800,7 @@ subroutine get_d2(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
p1 = p(turn2(i), 1)
|
p1 = p(turn2(i), 1)
|
||||||
|
|
||||||
hij = mo_bielec_integral(p1, p2, h1, h2) * get_phase_bi(phasemask, 1, 2, h1, p1, h2, p2)
|
hij = mo_bielec_integral(p1, p2, h1, h2) * get_phase_bi(phasemask, 1, 2, h1, p1, h2, p2)
|
||||||
mat(:, puti, putj) += coefs * hij
|
mat(:, puti, putj) += coefs(:) * hij
|
||||||
end do
|
end do
|
||||||
end do
|
end do
|
||||||
end if
|
end if
|
||||||
@ -821,7 +820,7 @@ subroutine get_d2(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
p1 = p(i1, ma)
|
p1 = p(i1, ma)
|
||||||
p2 = p(i2, ma)
|
p2 = p(i2, ma)
|
||||||
hij = (mo_bielec_integral(p1, p2, h1, h2) - mo_bielec_integral(p2,p1, h1, h2)) * get_phase_bi(phasemask, ma, ma, h1, p1, h2, p2)
|
hij = (mo_bielec_integral(p1, p2, h1, h2) - mo_bielec_integral(p2,p1, h1, h2)) * get_phase_bi(phasemask, ma, ma, h1, p1, h2, p2)
|
||||||
mat(:, puti, putj) += coefs * hij
|
mat(:, puti, putj) += coefs(:) * hij
|
||||||
end do
|
end do
|
||||||
end do
|
end do
|
||||||
else if(tip == 3) then
|
else if(tip == 3) then
|
||||||
@ -835,7 +834,7 @@ subroutine get_d2(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
p2 = p(i, ma)
|
p2 = p(i, ma)
|
||||||
|
|
||||||
hij = mo_bielec_integral(p1, p2, h1, h2) * get_phase_bi(phasemask, mi, ma, h1, p1, h2, p2)
|
hij = mo_bielec_integral(p1, p2, h1, h2) * get_phase_bi(phasemask, mi, ma, h1, p1, h2, p2)
|
||||||
mat(:, min(puti, putj), max(puti, putj)) += coefs * hij
|
mat(:, min(puti, putj), max(puti, putj)) += coefs(:) * hij
|
||||||
end do
|
end do
|
||||||
else ! tip == 4
|
else ! tip == 4
|
||||||
puti = p(1, sp)
|
puti = p(1, sp)
|
||||||
@ -846,7 +845,7 @@ subroutine get_d2(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
h1 = h(1, mi)
|
h1 = h(1, mi)
|
||||||
h2 = h(2, mi)
|
h2 = h(2, mi)
|
||||||
hij = (mo_bielec_integral(p1, p2, h1, h2) - mo_bielec_integral(p2,p1, h1, h2)) * get_phase_bi(phasemask, mi, mi, h1, p1, h2, p2)
|
hij = (mo_bielec_integral(p1, p2, h1, h2) - mo_bielec_integral(p2,p1, h1, h2)) * get_phase_bi(phasemask, mi, mi, h1, p1, h2, p2)
|
||||||
mat(:, puti, putj) += coefs * hij
|
mat(:, puti, putj) += coefs(:) * hij
|
||||||
end if
|
end if
|
||||||
end if
|
end if
|
||||||
end if
|
end if
|
||||||
@ -931,13 +930,13 @@ subroutine get_d1(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
putj = p1
|
putj = p1
|
||||||
if(.not. banned(putj,puti,bant)) then
|
if(.not. banned(putj,puti,bant)) then
|
||||||
hij = mo_bielec_integral(p2,pfix,hfix,puti) * get_phase_bi(phasemask, ma, mi, hfix, p2, puti, pfix)
|
hij = mo_bielec_integral(p2,pfix,hfix,puti) * get_phase_bi(phasemask, ma, mi, hfix, p2, puti, pfix)
|
||||||
tmp_row(:,puti) += hij * coefs
|
tmp_row(:,puti) += hij * coefs(:)
|
||||||
end if
|
end if
|
||||||
|
|
||||||
putj = p2
|
putj = p2
|
||||||
if(.not. banned(putj,puti,bant)) then
|
if(.not. banned(putj,puti,bant)) then
|
||||||
hij = mo_bielec_integral(p1,pfix,hfix,puti) * get_phase_bi(phasemask, ma, mi, hfix, p1, puti, pfix)
|
hij = mo_bielec_integral(p1,pfix,hfix,puti) * get_phase_bi(phasemask, ma, mi, hfix, p1, puti, pfix)
|
||||||
tmp_row2(:,puti) += hij * coefs
|
tmp_row2(:,puti) += hij * coefs(:)
|
||||||
end if
|
end if
|
||||||
end do
|
end do
|
||||||
|
|
||||||
@ -959,12 +958,12 @@ subroutine get_d1(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
do putj=1,hfix-1
|
do putj=1,hfix-1
|
||||||
if(lbanned(putj,ma) .or. banned(puti,putj,1)) cycle
|
if(lbanned(putj,ma) .or. banned(puti,putj,1)) cycle
|
||||||
hij = (mo_bielec_integral(p1, p2, putj, hfix)-mo_bielec_integral(p2,p1,putj,hfix)) * get_phase_bi(phasemask, ma, ma, putj, p1, hfix, p2)
|
hij = (mo_bielec_integral(p1, p2, putj, hfix)-mo_bielec_integral(p2,p1,putj,hfix)) * get_phase_bi(phasemask, ma, ma, putj, p1, hfix, p2)
|
||||||
tmp_row(:,putj) += hij * coefs
|
tmp_row(:,putj) += hij * coefs(:)
|
||||||
end do
|
end do
|
||||||
do putj=hfix+1,mo_tot_num
|
do putj=hfix+1,mo_tot_num
|
||||||
if(lbanned(putj,ma) .or. banned(puti,putj,1)) cycle
|
if(lbanned(putj,ma) .or. banned(puti,putj,1)) cycle
|
||||||
hij = (mo_bielec_integral(p1, p2, hfix, putj)-mo_bielec_integral(p2,p1,hfix,putj)) * get_phase_bi(phasemask, ma, ma, hfix, p1, putj, p2)
|
hij = (mo_bielec_integral(p1, p2, hfix, putj)-mo_bielec_integral(p2,p1,hfix,putj)) * get_phase_bi(phasemask, ma, ma, hfix, p1, putj, p2)
|
||||||
tmp_row(:,putj) += hij * coefs
|
tmp_row(:,putj) += hij * coefs(:)
|
||||||
end do
|
end do
|
||||||
|
|
||||||
mat(:, :puti-1, puti) += tmp_row(:,:puti-1)
|
mat(:, :puti-1, puti) += tmp_row(:,:puti-1)
|
||||||
@ -982,13 +981,13 @@ subroutine get_d1(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
putj = p2
|
putj = p2
|
||||||
if(.not. banned(puti,putj,1)) then
|
if(.not. banned(puti,putj,1)) then
|
||||||
hij = mo_bielec_integral(pfix, p1, hfix, puti) * get_phase_bi(phasemask, mi, ma, hfix, pfix, puti, p1)
|
hij = mo_bielec_integral(pfix, p1, hfix, puti) * get_phase_bi(phasemask, mi, ma, hfix, pfix, puti, p1)
|
||||||
tmp_row(:,puti) += hij * coefs
|
tmp_row(:,puti) += hij * coefs(:)
|
||||||
end if
|
end if
|
||||||
|
|
||||||
putj = p1
|
putj = p1
|
||||||
if(.not. banned(puti,putj,1)) then
|
if(.not. banned(puti,putj,1)) then
|
||||||
hij = mo_bielec_integral(pfix, p2, hfix, puti) * get_phase_bi(phasemask, mi, ma, hfix, pfix, puti, p2)
|
hij = mo_bielec_integral(pfix, p2, hfix, puti) * get_phase_bi(phasemask, mi, ma, hfix, pfix, puti, p2)
|
||||||
tmp_row2(:,puti) += hij * coefs
|
tmp_row2(:,puti) += hij * coefs(:)
|
||||||
end if
|
end if
|
||||||
end do
|
end do
|
||||||
mat(:,:p2-1,p2) += tmp_row(:,:p2-1)
|
mat(:,:p2-1,p2) += tmp_row(:,:p2-1)
|
||||||
@ -1017,7 +1016,7 @@ subroutine get_d1(gen, phasemask, bannedOrb, banned, mat, mask, h, p, sp, coefs)
|
|||||||
if(bannedOrb(p1, s1) .or. bannedOrb(p2, s2) .or. banned(p1, p2, 1)) cycle
|
if(bannedOrb(p1, s1) .or. bannedOrb(p2, s2) .or. banned(p1, p2, 1)) cycle
|
||||||
call apply_particles(mask, s1, p1, s2, p2, det, ok, N_int)
|
call apply_particles(mask, s1, p1, s2, p2, det, ok, N_int)
|
||||||
call i_h_j(gen, det, N_int, hij)
|
call i_h_j(gen, det, N_int, hij)
|
||||||
mat(:, p1, p2) += coefs * hij
|
mat(:, p1, p2) += coefs(:) * hij
|
||||||
end do
|
end do
|
||||||
end do
|
end do
|
||||||
end
|
end
|
||||||
|
@ -8,8 +8,8 @@ subroutine create_selection_buffer(N, siz, res)
|
|||||||
|
|
||||||
allocate(res%det(N_int, 2, siz), res%val(siz))
|
allocate(res%det(N_int, 2, siz), res%val(siz))
|
||||||
|
|
||||||
res%val = 0d0
|
res%val(:) = 0d0
|
||||||
res%det = 0_8
|
res%det(:,:,:) = 0_8
|
||||||
res%N = N
|
res%N = N
|
||||||
res%mini = 0d0
|
res%mini = 0d0
|
||||||
res%cur = 0
|
res%cur = 0
|
||||||
|
@ -51,7 +51,10 @@ subroutine run_wf
|
|||||||
! ---------
|
! ---------
|
||||||
|
|
||||||
print *, 'Selection'
|
print *, 'Selection'
|
||||||
call zmq_get_psi(zmq_to_qp_run_socket,1,energy,N_states)
|
if (mpi_master) then
|
||||||
|
call zmq_get_psi(zmq_to_qp_run_socket,1,energy,N_states)
|
||||||
|
endif
|
||||||
|
call mpi_bcast_psi(energy,N_states)
|
||||||
|
|
||||||
!$OMP PARALLEL PRIVATE(i)
|
!$OMP PARALLEL PRIVATE(i)
|
||||||
i = omp_get_thread_num()
|
i = omp_get_thread_num()
|
||||||
@ -65,7 +68,11 @@ subroutine run_wf
|
|||||||
! --------
|
! --------
|
||||||
|
|
||||||
print *, 'Davidson'
|
print *, 'Davidson'
|
||||||
call zmq_get_psi(zmq_to_qp_run_socket,1,energy,N_states)
|
print *, 'PT2'
|
||||||
|
if (mpi_master) then
|
||||||
|
call zmq_get_psi(zmq_to_qp_run_socket,1,energy,N_states)
|
||||||
|
endif
|
||||||
|
call mpi_bcast_psi(energy,N_states)
|
||||||
call omp_set_nested(.True.)
|
call omp_set_nested(.True.)
|
||||||
call davidson_slave_tcp(0)
|
call davidson_slave_tcp(0)
|
||||||
call omp_set_nested(.False.)
|
call omp_set_nested(.False.)
|
||||||
@ -77,7 +84,10 @@ subroutine run_wf
|
|||||||
! ---
|
! ---
|
||||||
|
|
||||||
print *, 'PT2'
|
print *, 'PT2'
|
||||||
call zmq_get_psi(zmq_to_qp_run_socket,1,energy,N_states)
|
if (mpi_master) then
|
||||||
|
call zmq_get_psi(zmq_to_qp_run_socket,1,energy,N_states)
|
||||||
|
endif
|
||||||
|
call mpi_bcast_psi(energy,N_states)
|
||||||
|
|
||||||
logical :: lstop
|
logical :: lstop
|
||||||
lstop = .False.
|
lstop = .False.
|
||||||
|
@ -100,7 +100,6 @@ subroutine selection_collector(b, N, pt2)
|
|||||||
double precision, pointer :: val(:)
|
double precision, pointer :: val(:)
|
||||||
integer(bit_kind), pointer :: det(:,:,:)
|
integer(bit_kind), pointer :: det(:,:,:)
|
||||||
integer, allocatable :: task_id(:)
|
integer, allocatable :: task_id(:)
|
||||||
real :: time, time0
|
|
||||||
type(selection_buffer) :: b2
|
type(selection_buffer) :: b2
|
||||||
|
|
||||||
zmq_to_qp_run_socket = new_zmq_to_qp_run_socket()
|
zmq_to_qp_run_socket = new_zmq_to_qp_run_socket()
|
||||||
@ -109,11 +108,11 @@ subroutine selection_collector(b, N, pt2)
|
|||||||
allocate(task_id(N_det_generators))
|
allocate(task_id(N_det_generators))
|
||||||
more = 1
|
more = 1
|
||||||
pt2(:) = 0d0
|
pt2(:) = 0d0
|
||||||
call CPU_TIME(time0)
|
pt2_mwen(:) = 0.d0
|
||||||
do while (more == 1)
|
do while (more == 1)
|
||||||
call pull_selection_results(zmq_socket_pull, pt2_mwen, b2%val(1), b2%det(1,1,1), b2%cur, task_id, ntask)
|
call pull_selection_results(zmq_socket_pull, pt2_mwen, b2%val(1), b2%det(1,1,1), b2%cur, task_id, ntask)
|
||||||
|
|
||||||
pt2 += pt2_mwen
|
pt2(:) += pt2_mwen(:)
|
||||||
do i=1, b2%cur
|
do i=1, b2%cur
|
||||||
call add_to_selection_buffer(b, b2%det(1,1,i), b2%val(i))
|
call add_to_selection_buffer(b, b2%det(1,1,i), b2%val(i))
|
||||||
if (b2%val(i) > b%mini) exit
|
if (b2%val(i) > b%mini) exit
|
||||||
@ -125,7 +124,6 @@ subroutine selection_collector(b, N, pt2)
|
|||||||
endif
|
endif
|
||||||
call zmq_delete_task(zmq_to_qp_run_socket,zmq_socket_pull,task_id(i),more)
|
call zmq_delete_task(zmq_to_qp_run_socket,zmq_socket_pull,task_id(i),more)
|
||||||
end do
|
end do
|
||||||
call CPU_TIME(time)
|
|
||||||
end do
|
end do
|
||||||
|
|
||||||
|
|
||||||
|
@ -1 +1 @@
|
|||||||
Utils
|
Determinants Utils
|
||||||
|
@ -1,12 +0,0 @@
|
|||||||
program MPI
|
|
||||||
implicit none
|
|
||||||
BEGIN_DOC
|
|
||||||
! MPI test program
|
|
||||||
END_DOC
|
|
||||||
print *, 'hello world'
|
|
||||||
print *, 'rank, size, master = ', mpi_rank, mpi_size, mpi_master
|
|
||||||
|
|
||||||
integer :: ierr
|
|
||||||
call MPI_FINALIZE(ierr)
|
|
||||||
print *, ierr
|
|
||||||
end
|
|
@ -1,7 +1,8 @@
|
|||||||
module bitmasks
|
module bitmasks
|
||||||
integer, parameter :: bit_kind_shift = 6 ! 5: 32 bits, 6: 64 bits
|
integer, parameter :: bit_kind_shift = 6 ! 5: 32 bits, 6: 64 bits
|
||||||
integer, parameter :: bit_kind_size = 64
|
integer, parameter :: bit_kind_size = 64
|
||||||
integer, parameter :: bit_kind = 64/8
|
integer, parameter :: bit_kind = 8
|
||||||
|
integer, parameter :: mpi_bit_kind = 8
|
||||||
integer, parameter :: d_hole1 = 1
|
integer, parameter :: d_hole1 = 1
|
||||||
integer, parameter :: d_part1 = 2
|
integer, parameter :: d_part1 = 2
|
||||||
integer, parameter :: d_hole2 = 3
|
integer, parameter :: d_hole2 = 3
|
||||||
|
@ -4,6 +4,10 @@ BEGIN_PROVIDER [ double precision, psi_energy, (N_states) ]
|
|||||||
! Energy of the current wave function
|
! Energy of the current wave function
|
||||||
END_DOC
|
END_DOC
|
||||||
call u_0_H_u_0(psi_energy,psi_coef,N_det,psi_det,N_int,N_states,psi_det_size)
|
call u_0_H_u_0(psi_energy,psi_coef,N_det,psi_det,N_int,N_states,psi_det_size)
|
||||||
|
integer :: i
|
||||||
|
do i=N_det+1,N_states
|
||||||
|
psi_energy(i) = 0.d0
|
||||||
|
enddo
|
||||||
END_PROVIDER
|
END_PROVIDER
|
||||||
|
|
||||||
|
|
||||||
|
Loading…
x
Reference in New Issue
Block a user