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quantum_package/plugins/MRCC_Utils/H_apply.irp.f

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Fortran
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use bitmasks
BEGIN_SHELL [ /usr/bin/env python ]
from generate_h_apply import *
s = H_apply("mrcc")
s.data["parameters"] = ", delta_ij_, Nstates, Ndet_non_ref, Ndet_ref"
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s.data["declarations"] += """
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integer, intent(in) :: Nstates, Ndet_ref, Ndet_non_ref
double precision, intent(in) :: delta_ij_(Nstates, Ndet_non_ref, Ndet_ref)
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"""
s.data["keys_work"] = "call mrcc_dress(delta_ij_,Nstates,Ndet_non_ref,Ndet_ref,i_generator,key_idx,keys_out,N_int,iproc,key_mask)"
s.data["params_post"] += ", delta_ij_, Nstates, Ndet_non_ref, Ndet_ref"
s.data["params_main"] += "delta_ij_, Nstates, Ndet_non_ref, Ndet_ref"
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s.data["decls_main"] += """
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integer, intent(in) :: Ndet_ref, Ndet_non_ref, Nstates
double precision, intent(in) :: delta_ij_(Nstates,Ndet_non_ref,Ndet_ref)
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"""
s.data["finalization"] = ""
s.data["copy_buffer"] = ""
s.data["generate_psi_guess"] = ""
s.data["size_max"] = "3072"
print s
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s = H_apply("mrcc_PT2")
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s.energy = "ci_electronic_energy_dressed"
s.set_perturbation("epstein_nesbet_2x2")
s.unset_openmp()
print s
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s = H_apply("mrcepa_PT2")
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s.energy = "psi_energy"
s.set_perturbation("epstein_nesbet_2x2")
s.unset_openmp()
print s
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END_SHELL