def Start_Iteration(experiment, gn = None):
    """Start an iteration of IPRO"""
    # Do the standard initial checks
    if not isinstance(experiment, EXPERIMENT.Experiment):
        text = "The Start Iteration function requires an Experiment class "
        text += "object as its input."
        raise IPRO_Error(text)
    refinement = refinement_check(experiment, gn)
    if refinement:
        return 0, refinement
    # Start sharing so this processor has exclusive access to the shared files
    SHARING.Start(experiment)
    # Determine what iteration this will be
    iteration = SHARING.iteration_counter(SHARING.get_current(), True) + 1
    # Determine what the expected maximum number of iterations is
    ITERATIONS = max_iterations(experiment)
    # Create a folder
    while iteration <= ITERATIONS:
        folder = "iteration" + str(iteration)
        do = SHARING.claim_calculations(folder)
        if do:
            break
        else:
            iteration += 1
    # If a folder was made
    if iteration <= ITERATIONS:
        # Start a summary
        experiment["Summary"] = "Started" + SHARING.time_stamp()
        # Get the last time structures were updated
        N = SHARING.identify_last_update("./Current/")
        # If necessary, update the structures
        if N > experiment["Last Update"]:
            SHARING.update_Current(experiment, "./Current/", gn)
            experiment["Last Update"] = N
        # Say what structures are being used
        if experiment["Last Update"] == 0:
            experiment["Summary"] += "Using the initial structures\n"
        else:
            experiment["Summary"] += "Using the structures from iteration "
            experiment["Summary"] += str(experiment["Last Update"]) + "\n"
        # Move into the appropriate folder
        os.chdir(folder)
        # Copy in the C++ and force field files
        SHARING.copy_standard_files(experiment)
        # Update the Experiment's structures
        for group in experiment:
            if gn not in [None, group.number]:
                continue
            for molecule in group:
                text =format(experiment["Current"][group.number][molecule.name])
                molecule.load(text)
    # End sharing
    SHARING.End(experiment)
    return iteration, refinement
Beispiel #2
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def mutate_DesignGroups(experiment, mn):
    """Make the initial mutants of the Design Groups"""
    # Move into the folder to do the initial calculations in
    folder = "initial_mutant" + str(mn)
    os.chdir(folder)
    # Loop through the Design Groups
    for group in experiment:
        # The calculations will be stored in this folder
        folder = "Group" + str(group.number)
        # Try to claim the calculations
        do = SHARING.claim_calculations(folder)
        # If this processor is doing those calculations
        if do:
            # Time stamp when this started
            experiment["Summary"] = "Started" + SHARING.time_stamp()
            # Move into the folder
            os.chdir(folder)
            # Copy in the C++ and force field files
            SHARING.copy_standard_files(experiment)
            # Use the Current structures
            for molecule in experiment[group.number]:
                text =format(experiment["Current"][group.number][molecule.name])
                molecule.load(text)
            # Set the permissions for the Molecules
            permission_setter(experiment, group.number, mn)
            # Mutate the Residues
            refinement = IPRO_FUNCTIONS.Optimal_Rotamers(experiment, \
                                                         group.number)
            refinement = IPRO_FUNCTIONS.Relaxation(experiment, group.number, \
                                                   True)
            energies, refinement = IPRO_FUNCTIONS.Calculate_Energy(experiment, \
                                                                   group.number)
            # Start sharing
            SHARING.Start(experiment)
            # Write a brief summary file
            name = SHARING.summary_name(SHARING.get_current())
            f = open(name, "w")
            f.write(experiment["Summary"])
            f.close()
            # Move up a folder
            os.chdir("../")
            # Store the structures in the Current dictionary
            IPRO_FUNCTIONS.store_structures(experiment, group.number)
            IPRO_FUNCTIONS.store_energies(experiment, energies, group.number)
            # Write the structures to the Current folder
            SHARING.output_Current(experiment, "./Current/", group.number)
            SHARING.output_Energies(experiment, "./Current/", group.number)
            # End sharing
            SHARING.End(experiment)
Beispiel #3
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def mutate_DesignGroups(experiment, mn):
    """Make the initial mutants of the Design Groups"""
    # Move into the folder to do the initial calculations in 
    folder = "initial_mutant" + str(mn)
    os.chdir(folder)
    # Loop through the Design Groups
    for group in experiment:
        # The calculations will be stored in this folder
        folder = "Group" + str(group.number)
        # Try to claim the calculations
        do = SHARING.claim_calculations(folder)
        # If this processor is doing those calculations
        if do:
            # Time stamp when this started
            experiment["Summary"] = "Started" + SHARING.time_stamp()
            # Move into the folder
            os.chdir(folder)
            # Copy in the C++ and force field files
            SHARING.copy_standard_files(experiment)
            # Use the Current structures
            for molecule in experiment[group.number]:
                text =format(experiment["Current"][group.number][molecule.name])
                molecule.load(text)
            # Set the permissions for the Molecules
            permission_setter(experiment, group.number, mn)
            # Mutate the Residues
            refinement = IPRO_FUNCTIONS.Optimal_Rotamers(experiment, \
                                                         group.number)
            refinement = IPRO_FUNCTIONS.Relaxation(experiment, group.number, \
                                                   True)
            energies, refinement = IPRO_FUNCTIONS.Calculate_Energy(experiment, \
                                                                   group.number) 
            # Start sharing
            SHARING.Start(experiment)
            # Write a brief summary file
            name = SHARING.summary_name(SHARING.get_current())
            f = open(name, "w")
            f.write(experiment["Summary"])
            f.close()
            # Move up a folder
            os.chdir("../")
            # Store the structures in the Current dictionary
            IPRO_FUNCTIONS.store_structures(experiment, group.number)
            IPRO_FUNCTIONS.store_energies(experiment, energies, group.number)
            # Write the structures to the Current folder
            SHARING.output_Current(experiment, "./Current/", group.number)
            SHARING.output_Energies(experiment, "./Current/", group.number)
            # End sharing
            SHARING.End(experiment)
def initialize_molecule(experiment, mn):
    """Initialize a Molecule"""
    # Create the folder's name
    folder = "Molecule" + mn
    do = SHARING.claim_calculations(folder)
    # If this processor is doing the calculations
    if do:
        # Make a summary
        experiment["Summary"] = "Started" + SHARING.time_stamp()
        # Move into the folder
        os.chdir(folder)
        SHARING.copy_standard_files(experiment)
        # Get a unique copy of the Molecule
        molecule = experiment[0][mn].duplicate()
        for residue in molecule:
            residue.freedom = "FREE"
        # Store the calculated energies here
        energies = {}
        # Do a relaxation and energy calculation
        if experiment["Force Field"] == "CHARMM":
            CHARMM.Relaxation(molecule, experiment)
            energies["Complex"] = CHARMM.Energy(molecule, experiment)
        else:
            text = "The initialize molecule function does not support the "
            text += str(experiment["Force Field"]) + " force field."
            raise IPRO_Error(text)
        # Format the energy
        text = SHARING.format_energies(energies)
        experiment["Summary"] += text
        # Create the summary file for the Molecule
        experiment["Summary"] += "Ended" + SHARING.time_stamp()
        name = SHARING.summary_name(SHARING.get_current())
        f = open(name, "w")
        f.write(experiment["Summary"])
        f.close()
        # Leave this folder, then start sharing
        os.chdir('../')
        SHARING.Start(experiment)
        # Output the Molecule's structure
        name = "./Current/" + molecule.generate_name()
        molecule.output(name, molecule.fileFormat, experiment["User"])
        # Output the Complex energy
        f = open("./Current/Molecule" + mn + "_Energy.txt", "w")
        f.write(text)
        f.close()
        # End sharing
        SHARING.End(experiment)
Beispiel #5
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def first_group_refinement(experiment):
    """Start all ensembles for the Design Groups"""
    # Start sharing (for file creation reasons)
    SHARING.Start(experiment)
    # Loop through the design groups
    print "Check1"
    for group in experiment:
        gn = group.number
        # Generate the name for the Design Group's calculations
        folder = "Group" + str(gn)
        try:
            os.mkdir(folder)
        except OSError:
            pass
        os.chdir(folder)
        # Start each ensemble
        for en in range(1, experiment["Ensemble Number"] + 1):
            eFolder = "Ensemble" + str(en)
            do = SHARING.claim_calculations(eFolder)
            # If this processor has started the calculations for this ensemble
            print en, do
            if do:
                # Make sure the experiment has the right structures and energies
                SHARING.update_Current(experiment, "../Current/", gn)
                SHARING.update_Energies(experiment, "../Current/", gn)
                # Move into the folder
                os.chdir(eFolder)
                # Make a copy of the best structures and energies for the group
                os.mkdir("Current")
                SHARING.output_Current(experiment, "./Current/", gn, 0)
                os.mkdir("Best")
                SHARING.output_Current(experiment, "./Best/", gn)
                SHARING.output_Energies(experiment, "./Best/", gn)
                # Move out of the e Folder
                os.chdir("../")
                SHARING.End(experiment)
                # Do the ensemble refinement
                ensemble_refinement(experiment, gn, en)
                SHARING.Start(experiment)
        # Move out of the folder
        os.chdir("../")
    SHARING.End(experiment)
def initialize_group(experiment, gn):
    """Initialize a Design Group"""
    # Create the folder's name
    folder = "Group" + str(gn)
    # Try to claim it for calculations
    do = SHARING.claim_calculations(folder)
    # If this processor is doing the calculations
    if do:
        # Make a summary
        experiment["Summary"] = "Started" + SHARING.time_stamp()
        # Move into the folder and copy in files
        os.chdir(folder)
        SHARING.copy_standard_files(experiment)
        # Relax everything
        refinement = Relaxation(experiment, gn, True)
        # Assign closest rotamers
        Closest_Rotamers(experiment, gn)
        # Do another relaxation
        refinement = Relaxation(experiment, gn, True)
        # Calculate the initial energies
        energies, refinement = Calculate_Energy(experiment, gn)
        # Store the structures and energies
        store_structures(experiment, gn)
        store_energies(experiment, energies, gn)
        # Create a summary file
        experiment["Summary"] += "Ended" + SHARING.time_stamp()
        name = SHARING.summary_name(SHARING.get_current())
        f = open(name, "w")
        f.write(experiment["Summary"])
        f.close()
        # Move up a folder
        os.chdir("../")
        # Start sharing
        SHARING.Start(experiment)
        # output the structures and energies to the Current folder
        SHARING.output_Current(experiment, "./Current/", gn)
        SHARING.output_Energies(experiment, "./Current/", gn)
        # End sharing
        SHARING.End(experiment)
    return do
Beispiel #7
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def first_group_refinement(experiment):
    """Start all ensembles for the Design Groups"""
    # Start sharing (for file creation reasons)
    SHARING.Start(experiment)
    # Loop through the design groups
    for group in experiment:
        gn = group.number
        # Generate the name for the Design Group's calculations
        folder = "Group" + str(gn)
        try:
            os.mkdir(folder)
        except OSError:
            pass
        os.chdir(folder)
        # Start each ensemble
        for en in range(1, experiment["Ensemble Number"] + 1):
            eFolder = "Ensemble" + str(en)
            do = SHARING.claim_calculations(eFolder)
            # If this processor has started the calculations for this ensemble
            if do:
                # Make sure the experiment has the right structures and energies
                SHARING.update_Current(experiment, "../Current/", gn)
                SHARING.update_Energies(experiment, "../Current/", gn)
                # Move into the folder
                os.chdir(eFolder)
                # Make a copy of the best structures and energies for the group
                os.mkdir("Current")
                SHARING.output_Current(experiment, "./Current/", gn, 0)
                os.mkdir("Best")
                SHARING.output_Current(experiment, "./Best/", gn)
                SHARING.output_Energies(experiment, "./Best/", gn)
                # Move out of the e Folder
                os.chdir("../")
                SHARING.End(experiment)
                # Do the ensemble refinement
                ensemble_refinement(experiment, gn, en)
                SHARING.Start(experiment)
        # Move out of the folder
        os.chdir("../")
    SHARING.End(experiment)