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					125 lines
				
				4.3 KiB
			
		
		
			
		
	
	
					125 lines
				
				4.3 KiB
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											4 years ago
										 
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								#
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								# Copyright 2019 Gianluca Frison, Dimitris Kouzoupis, Robin Verschueren,
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								# Andrea Zanelli, Niels van Duijkeren, Jonathan Frey, Tommaso Sartor,
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								# Branimir Novoselnik, Rien Quirynen, Rezart Qelibari, Dang Doan,
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								# Jonas Koenemann, Yutao Chen, Tobias Schöls, Jonas Schlagenhauf, Moritz Diehl
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								#
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								# This file is part of acados.
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								#
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								# The 2-Clause BSD License
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								#
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								# Redistribution and use in source and binary forms, with or without
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								# modification, are permitted provided that the following conditions are met:
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								#
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								# 1. Redistributions of source code must retain the above copyright notice,
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								# this list of conditions and the following disclaimer.
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								#
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								# 2. Redistributions in binary form must reproduce the above copyright notice,
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								# this list of conditions and the following disclaimer in the documentation
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								# and/or other materials provided with the distribution.
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								#
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								# THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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								# AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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								# IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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								# ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
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								# LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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								# CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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								# SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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								# INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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								# CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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								# ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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								# POSSIBILITY OF SUCH DAMAGE.;
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								#
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								import os
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								from casadi import *
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								from .utils import ALLOWED_CASADI_VERSIONS, is_empty, casadi_version_warning
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								def generate_c_code_explicit_ode( model, opts ):
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								    casadi_version = CasadiMeta.version()
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								    casadi_opts = dict(mex=False, casadi_int='int', casadi_real='double')
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								    if casadi_version not in (ALLOWED_CASADI_VERSIONS):
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								        casadi_version_warning(casadi_version)
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								    generate_hess = opts["generate_hess"]
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								    code_export_dir = opts["code_export_directory"]
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								    # load model
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								    x = model.x
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								    u = model.u
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								    p = model.p
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								    f_expl = model.f_expl_expr
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								    model_name = model.name
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								    ## get model dimensions
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								    nx = x.size()[0]
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								    nu = u.size()[0]
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								    if isinstance(f_expl, casadi.MX):
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								        symbol = MX.sym
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								    elif isinstance(f_expl, casadi.SX):
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								        symbol = SX.sym
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								    else:
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								        raise Exception("Invalid type for f_expl! Possible types are 'SX' and 'MX'. Exiting.")
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								    ## set up functions to be exported
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								    Sx = symbol('Sx', nx, nx)
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								    Sp = symbol('Sp', nx, nu)
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								    lambdaX = symbol('lambdaX', nx, 1)
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								    fun_name = model_name + '_expl_ode_fun'
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								    ## Set up functions
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								    expl_ode_fun = Function(fun_name, [x, u, p], [f_expl])
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								    vdeX = jtimes(f_expl,x,Sx)
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								    vdeP = jacobian(f_expl,u) + jtimes(f_expl,x,Sp)
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								    fun_name = model_name + '_expl_vde_forw'
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								    expl_vde_forw = Function(fun_name, [x, Sx, Sp, u, p], [f_expl, vdeX, vdeP])
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								    adj = jtimes(f_expl, vertcat(x, u), lambdaX, True)
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								    fun_name = model_name + '_expl_vde_adj'
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								    expl_vde_adj = Function(fun_name, [x, lambdaX, u, p], [adj])
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								    if generate_hess:
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								        S_forw = vertcat(horzcat(Sx, Sp), horzcat(DM.zeros(nu,nx), DM.eye(nu)))
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								        hess = mtimes(transpose(S_forw),jtimes(adj, vertcat(x,u), S_forw))
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								        hess2 = []
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								        for j in range(nx+nu):
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								            for i in range(j,nx+nu):
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								                hess2 = vertcat(hess2, hess[i,j])
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								        fun_name = model_name + '_expl_ode_hess'
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								        expl_ode_hess = Function(fun_name, [x, Sx, Sp, lambdaX, u, p], [adj, hess2])
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								    ## generate C code
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								    if not os.path.exists(code_export_dir):
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								        os.makedirs(code_export_dir)
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								    cwd = os.getcwd()
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								    os.chdir(code_export_dir)
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								    model_dir = model_name + '_model'
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								    if not os.path.exists(model_dir):
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								        os.mkdir(model_dir)
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								    model_dir_location = './' + model_dir
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								    os.chdir(model_dir_location)
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								    fun_name = model_name + '_expl_ode_fun'
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								    expl_ode_fun.generate(fun_name, casadi_opts)
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								    fun_name = model_name + '_expl_vde_forw'
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								    expl_vde_forw.generate(fun_name, casadi_opts)
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								    fun_name = model_name + '_expl_vde_adj'
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								    expl_vde_adj.generate(fun_name, casadi_opts)
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								    if generate_hess:
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								        fun_name = model_name + '_expl_ode_hess'
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								        expl_ode_hess.generate(fun_name, casadi_opts)
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								    os.chdir(cwd)
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								    return
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