forked from bartvdbraak/blender
455 lines
14 KiB
C++
455 lines
14 KiB
C++
/*
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* ***** BEGIN GPL LICENSE BLOCK *****
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software Foundation,
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* Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
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*
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* The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
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* All rights reserved.
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*
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* The Original Code is: all of this file.
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*
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* Contributor(s): none yet.
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*
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* ***** END GPL LICENSE BLOCK *****
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*/
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/** \file gameengine/Converter/BL_ArmatureConstraint.cpp
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* \ingroup bgeconv
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*/
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#include "DNA_constraint_types.h"
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#include "DNA_action_types.h"
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#include "BL_ArmatureConstraint.h"
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#include "BL_ArmatureObject.h"
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#include "BLI_math.h"
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#include "BLI_string.h"
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#ifdef WITH_PYTHON
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PyTypeObject BL_ArmatureConstraint::Type = {
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PyVarObject_HEAD_INIT(NULL, 0)
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"BL_ArmatureConstraint",
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sizeof(PyObjectPlus_Proxy),
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0,
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py_base_dealloc,
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0,
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0,
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0,
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0,
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py_base_repr,
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0,0,0,0,0,0,0,0,0,
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Py_TPFLAGS_DEFAULT | Py_TPFLAGS_BASETYPE,
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0,0,0,0,0,0,0,
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Methods,
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0,
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0,
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&CValue::Type,
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0,0,0,0,0,0,
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py_base_new
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};
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PyObject* BL_ArmatureConstraint::py_repr(void)
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{
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return PyUnicode_FromString(m_name);
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}
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#endif // WITH_PYTHON
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BL_ArmatureConstraint::BL_ArmatureConstraint(
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BL_ArmatureObject *armature,
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bPoseChannel *posechannel,
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bConstraint *constraint,
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KX_GameObject* target,
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KX_GameObject* subtarget)
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: PyObjectPlus(), m_constraint(constraint), m_posechannel(posechannel), m_armature(armature)
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{
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m_target = target;
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m_blendtarget = (target) ? target->GetBlenderObject() : NULL;
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m_subtarget = subtarget;
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m_blendsubtarget = (subtarget) ? subtarget->GetBlenderObject() : NULL;
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m_pose = m_subpose = NULL;
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if (m_blendtarget) {
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copy_m4_m4(m_blendmat, m_blendtarget->obmat);
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if (m_blendtarget->type == OB_ARMATURE)
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m_pose = m_blendtarget->pose;
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}
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if (m_blendsubtarget) {
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copy_m4_m4(m_blendsubmat, m_blendsubtarget->obmat);
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if (m_blendsubtarget->type == OB_ARMATURE)
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m_subpose = m_blendsubtarget->pose;
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}
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if (m_target)
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m_target->RegisterObject(m_armature);
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if (m_subtarget)
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m_subtarget->RegisterObject(m_armature);
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BLI_snprintf(m_name, sizeof(m_name), "%s:%s", m_posechannel->name, m_constraint->name);
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}
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BL_ArmatureConstraint::~BL_ArmatureConstraint()
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{
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if (m_target)
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m_target->UnregisterObject(m_armature);
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if (m_subtarget)
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m_subtarget->UnregisterObject(m_armature);
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}
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BL_ArmatureConstraint* BL_ArmatureConstraint::GetReplica() const
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{
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BL_ArmatureConstraint* replica = new BL_ArmatureConstraint(*this);
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replica->ProcessReplica();
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return replica;
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}
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void BL_ArmatureConstraint::ReParent(BL_ArmatureObject* armature)
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{
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m_armature = armature;
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if (m_target)
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m_target->RegisterObject(armature);
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if (m_subtarget)
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m_subtarget->RegisterObject(armature);
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// find the corresponding constraint in the new armature object
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if (m_constraint) {
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bPose* newpose = armature->GetOrigPose();
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char* constraint = m_constraint->name;
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char* posechannel = m_posechannel->name;
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bPoseChannel* pchan;
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bConstraint* pcon;
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m_constraint = NULL;
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m_posechannel = NULL;
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// and locate the constraint
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for (pchan = (bPoseChannel*)newpose->chanbase.first; pchan; pchan=(bPoseChannel*)pchan->next) {
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if (!strcmp(pchan->name, posechannel)) {
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// now locate the constraint
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for (pcon = (bConstraint*)pchan->constraints.first; pcon; pcon=(bConstraint*)pcon->next) {
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if (!strcmp(pcon->name, constraint)) {
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m_constraint = pcon;
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m_posechannel = pchan;
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break;
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}
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}
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break;
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}
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}
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}
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}
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void BL_ArmatureConstraint::Relink(CTR_Map<CTR_HashedPtr, void*> *obj_map)
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{
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void **h_obj = (*obj_map)[m_target];
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if (h_obj) {
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m_target->UnregisterObject(m_armature);
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m_target = (KX_GameObject*)(*h_obj);
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m_target->RegisterObject(m_armature);
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}
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h_obj = (*obj_map)[m_subtarget];
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if (h_obj) {
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m_subtarget->UnregisterObject(m_armature);
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m_subtarget = (KX_GameObject*)(*h_obj);
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m_subtarget->RegisterObject(m_armature);
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}
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}
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bool BL_ArmatureConstraint::UnlinkObject(SCA_IObject* clientobj)
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{
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bool res=false;
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if (clientobj == m_target) {
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m_target = NULL;
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res = true;
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}
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if (clientobj == m_subtarget) {
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m_subtarget = NULL;
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res = true;
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}
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return res;
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}
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void BL_ArmatureConstraint::UpdateTarget()
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{
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if (m_constraint && !(m_constraint->flag&CONSTRAINT_OFF) && (!m_blendtarget || m_target)) {
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if (m_blendtarget) {
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// external target, must be updated
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m_target->UpdateBlenderObjectMatrix(m_blendtarget);
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if (m_pose && m_target->GetGameObjectType() == SCA_IObject::OBJ_ARMATURE)
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// update the pose in case a bone is specified in the constraint target
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m_blendtarget->pose = ((BL_ArmatureObject*)m_target)->GetOrigPose();
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}
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if (m_blendsubtarget && m_subtarget) {
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m_subtarget->UpdateBlenderObjectMatrix(m_blendsubtarget);
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if (m_subpose && m_subtarget->GetGameObjectType() == SCA_IObject::OBJ_ARMATURE)
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m_blendsubtarget->pose = ((BL_ArmatureObject*)m_target)->GetOrigPose();
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}
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}
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}
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void BL_ArmatureConstraint::RestoreTarget()
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{
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if (m_constraint && !(m_constraint->flag&CONSTRAINT_OFF) && (!m_blendtarget || m_target)) {
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if (m_blendtarget) {
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copy_m4_m4(m_blendtarget->obmat, m_blendmat);
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if (m_pose)
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m_blendtarget->pose = m_pose;
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}
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if (m_blendsubtarget && m_subtarget) {
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copy_m4_m4(m_blendsubtarget->obmat, m_blendsubmat);
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if (m_subpose)
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m_blendsubtarget->pose = m_subpose;
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}
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}
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}
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bool BL_ArmatureConstraint::Match(const char* posechannel, const char* constraint)
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{
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return (!strcmp(m_posechannel->name, posechannel) && !strcmp(m_constraint->name, constraint));
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}
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void BL_ArmatureConstraint::SetTarget(KX_GameObject* target)
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{
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if (m_blendtarget) {
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if (target != m_target) {
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m_target->UnregisterObject(m_armature);
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m_target = target;
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if (m_target)
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m_target->RegisterObject(m_armature);
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}
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}
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}
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void BL_ArmatureConstraint::SetSubtarget(KX_GameObject* subtarget)
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{
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if (m_blendsubtarget) {
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if (subtarget != m_subtarget) {
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m_subtarget->UnregisterObject(m_armature);
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m_subtarget = subtarget;
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if (m_subtarget)
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m_subtarget->RegisterObject(m_armature);
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}
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}
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}
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#ifdef WITH_PYTHON
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// PYTHON
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PyMethodDef BL_ArmatureConstraint::Methods[] = {
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{NULL,NULL} //Sentinel
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};
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// order of definition of attributes, must match Attributes[] array
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#define BCA_TYPE 0
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#define BCA_NAME 1
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#define BCA_ENFORCE 2
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#define BCA_HEADTAIL 3
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#define BCA_LINERROR 4
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#define BCA_ROTERROR 5
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#define BCA_TARGET 6
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#define BCA_SUBTARGET 7
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#define BCA_ACTIVE 8
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#define BCA_IKWEIGHT 9
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#define BCA_IKTYPE 10
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#define BCA_IKFLAG 11
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#define BCA_IKDIST 12
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#define BCA_IKMODE 13
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PyAttributeDef BL_ArmatureConstraint::Attributes[] = {
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// Keep these attributes in order of BCA_ defines!!! used by py_attr_getattr and py_attr_setattr
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KX_PYATTRIBUTE_RO_FUNCTION("type",BL_ArmatureConstraint,py_attr_getattr),
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KX_PYATTRIBUTE_RO_FUNCTION("name",BL_ArmatureConstraint,py_attr_getattr),
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KX_PYATTRIBUTE_RW_FUNCTION("enforce",BL_ArmatureConstraint,py_attr_getattr,py_attr_setattr),
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KX_PYATTRIBUTE_RW_FUNCTION("headtail",BL_ArmatureConstraint,py_attr_getattr,py_attr_setattr),
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KX_PYATTRIBUTE_RO_FUNCTION("lin_error",BL_ArmatureConstraint,py_attr_getattr),
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KX_PYATTRIBUTE_RO_FUNCTION("rot_error",BL_ArmatureConstraint,py_attr_getattr),
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KX_PYATTRIBUTE_RW_FUNCTION("target",BL_ArmatureConstraint,py_attr_getattr,py_attr_setattr),
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KX_PYATTRIBUTE_RW_FUNCTION("subtarget",BL_ArmatureConstraint,py_attr_getattr,py_attr_setattr),
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KX_PYATTRIBUTE_RW_FUNCTION("active",BL_ArmatureConstraint,py_attr_getattr,py_attr_setattr),
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KX_PYATTRIBUTE_RW_FUNCTION("ik_weight",BL_ArmatureConstraint,py_attr_getattr,py_attr_setattr),
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KX_PYATTRIBUTE_RO_FUNCTION("ik_type",BL_ArmatureConstraint,py_attr_getattr),
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KX_PYATTRIBUTE_RO_FUNCTION("ik_flag",BL_ArmatureConstraint,py_attr_getattr),
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KX_PYATTRIBUTE_RW_FUNCTION("ik_dist",BL_ArmatureConstraint,py_attr_getattr,py_attr_setattr),
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KX_PYATTRIBUTE_RW_FUNCTION("ik_mode",BL_ArmatureConstraint,py_attr_getattr,py_attr_setattr),
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{ NULL } //Sentinel
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};
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PyObject* BL_ArmatureConstraint::py_attr_getattr(void *self_v, const struct KX_PYATTRIBUTE_DEF *attrdef)
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{
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BL_ArmatureConstraint* self= static_cast<BL_ArmatureConstraint*>(self_v);
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bConstraint* constraint = self->m_constraint;
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bKinematicConstraint* ikconstraint = (constraint && constraint->type == CONSTRAINT_TYPE_KINEMATIC) ? (bKinematicConstraint*)constraint->data : NULL;
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int attr_order = attrdef-Attributes;
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if (!constraint) {
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PyErr_SetString(PyExc_AttributeError, "constraint is NULL");
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return NULL;
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}
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switch (attr_order) {
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case BCA_TYPE:
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return PyLong_FromLong(constraint->type);
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case BCA_NAME:
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return PyUnicode_FromString(constraint->name);
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case BCA_ENFORCE:
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return PyFloat_FromDouble(constraint->enforce);
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case BCA_HEADTAIL:
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return PyFloat_FromDouble(constraint->headtail);
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case BCA_LINERROR:
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return PyFloat_FromDouble(constraint->lin_error);
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case BCA_ROTERROR:
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return PyFloat_FromDouble(constraint->rot_error);
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case BCA_TARGET:
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if (!self->m_target)
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Py_RETURN_NONE;
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else
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return self->m_target->GetProxy();
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case BCA_SUBTARGET:
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if (!self->m_subtarget)
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Py_RETURN_NONE;
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else
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return self->m_subtarget->GetProxy();
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case BCA_ACTIVE:
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return PyBool_FromLong(constraint->flag & CONSTRAINT_OFF);
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case BCA_IKWEIGHT:
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case BCA_IKTYPE:
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case BCA_IKFLAG:
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case BCA_IKDIST:
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case BCA_IKMODE:
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if (!ikconstraint) {
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PyErr_SetString(PyExc_AttributeError, "constraint is not of IK type");
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return NULL;
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}
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switch (attr_order) {
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case BCA_IKWEIGHT:
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return PyFloat_FromDouble((ikconstraint)?ikconstraint->weight:0.0);
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case BCA_IKTYPE:
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return PyLong_FromLong(ikconstraint->type);
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case BCA_IKFLAG:
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return PyLong_FromLong(ikconstraint->flag);
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case BCA_IKDIST:
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return PyFloat_FromDouble(ikconstraint->dist);
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case BCA_IKMODE:
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return PyLong_FromLong(ikconstraint->mode);
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}
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// should not come here
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break;
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}
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PyErr_SetString(PyExc_AttributeError, "constraint unknown attribute");
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return NULL;
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}
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int BL_ArmatureConstraint::py_attr_setattr(void *self_v, const struct KX_PYATTRIBUTE_DEF *attrdef, PyObject *value)
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{
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BL_ArmatureConstraint* self= static_cast<BL_ArmatureConstraint*>(self_v);
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bConstraint* constraint = self->m_constraint;
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bKinematicConstraint* ikconstraint = (constraint && constraint->type == CONSTRAINT_TYPE_KINEMATIC) ? (bKinematicConstraint*)constraint->data : NULL;
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int attr_order = attrdef-Attributes;
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int ival;
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double dval;
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// char* sval;
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KX_GameObject *oval;
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if (!constraint) {
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PyErr_SetString(PyExc_AttributeError, "constraint is NULL");
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return PY_SET_ATTR_FAIL;
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}
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switch (attr_order) {
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case BCA_ENFORCE:
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dval = PyFloat_AsDouble(value);
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if (dval < 0.0f || dval > 1.0f) { /* also accounts for non float */
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PyErr_SetString(PyExc_AttributeError, "constraint.enforce = float: BL_ArmatureConstraint, expected a float between 0 and 1");
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return PY_SET_ATTR_FAIL;
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}
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constraint->enforce = dval;
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return PY_SET_ATTR_SUCCESS;
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case BCA_HEADTAIL:
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dval = PyFloat_AsDouble(value);
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if (dval < 0.0f || dval > 1.0f) { /* also accounts for non float */
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PyErr_SetString(PyExc_AttributeError, "constraint.headtail = float: BL_ArmatureConstraint, expected a float between 0 and 1");
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return PY_SET_ATTR_FAIL;
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}
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constraint->headtail = dval;
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return PY_SET_ATTR_SUCCESS;
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case BCA_TARGET:
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if (!ConvertPythonToGameObject(value, &oval, true, "constraint.target = value: BL_ArmatureConstraint"))
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return PY_SET_ATTR_FAIL; // ConvertPythonToGameObject sets the error
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self->SetTarget(oval);
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return PY_SET_ATTR_SUCCESS;
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case BCA_SUBTARGET:
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if (!ConvertPythonToGameObject(value, &oval, true, "constraint.subtarget = value: BL_ArmatureConstraint"))
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return PY_SET_ATTR_FAIL; // ConvertPythonToGameObject sets the error
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self->SetSubtarget(oval);
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return PY_SET_ATTR_SUCCESS;
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case BCA_ACTIVE:
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ival = PyObject_IsTrue( value );
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if (ival == -1) {
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PyErr_SetString(PyExc_AttributeError, "constraint.active = bool: BL_ArmatureConstraint, expected True or False");
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return PY_SET_ATTR_FAIL;
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}
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self->m_constraint->flag = (self->m_constraint->flag & ~CONSTRAINT_OFF) | ((ival)?0:CONSTRAINT_OFF);
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return PY_SET_ATTR_SUCCESS;
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case BCA_IKWEIGHT:
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case BCA_IKDIST:
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case BCA_IKMODE:
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if (!ikconstraint) {
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PyErr_SetString(PyExc_AttributeError, "constraint is not of IK type");
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return PY_SET_ATTR_FAIL;
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}
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switch (attr_order) {
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case BCA_IKWEIGHT:
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dval = PyFloat_AsDouble(value);
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if (dval < 0.0f || dval > 1.0f) { /* also accounts for non float */
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PyErr_SetString(PyExc_AttributeError, "constraint.weight = float: BL_ArmatureConstraint, expected a float between 0 and 1");
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return PY_SET_ATTR_FAIL;
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}
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ikconstraint->weight = dval;
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return PY_SET_ATTR_SUCCESS;
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case BCA_IKDIST:
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dval = PyFloat_AsDouble(value);
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if (dval < 0.0f) { /* also accounts for non float */
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PyErr_SetString(PyExc_AttributeError, "constraint.ik_dist = float: BL_ArmatureConstraint, expected a positive float");
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return PY_SET_ATTR_FAIL;
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}
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ikconstraint->dist = dval;
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return PY_SET_ATTR_SUCCESS;
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case BCA_IKMODE:
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ival = PyLong_AsLong(value);
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if (ival < 0) {
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PyErr_SetString(PyExc_AttributeError, "constraint.ik_mode = integer: BL_ArmatureConstraint, expected a positive integer");
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return PY_SET_ATTR_FAIL;
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}
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ikconstraint->mode = ival;
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return PY_SET_ATTR_SUCCESS;
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}
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// should not come here
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break;
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}
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PyErr_SetString(PyExc_AttributeError, "constraint unknown attribute");
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return PY_SET_ATTR_FAIL;
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}
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#endif // WITH_PYTHON
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