blender/source/gameengine/Converter/BL_ArmatureObject.cpp
Campbell Barton 54ed699743 ActionActuator in the game engine working again to display deformed meshes with the new animation system.
Note that the animation conversion from existing 2.4x blend files doesnt yet set the Action pointer in the actuator so the only way to test is to use the python api to set the new converted action active on the actuator because there is no user interface.
2009-06-16 20:38:18 +00:00

213 lines
5.0 KiB
C++

/**
* $Id$
*
* ***** BEGIN GPL LICENSE BLOCK *****
*
* This program is free software; you can redistribute it and/or
* modify it under the terms of the GNU General Public License
* as published by the Free Software Foundation; either version 2
* of the License, or (at your option) any later version.
*
* This program is distributed in the hope that it will be useful,
* but WITHOUT ANY WARRANTY; without even the implied warranty of
* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
* GNU General Public License for more details.
*
* You should have received a copy of the GNU General Public License
* along with this program; if not, write to the Free Software Foundation,
* Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
*
* The Original Code is Copyright (C) 2001-2002 by NaN Holding BV.
* All rights reserved.
*
* The Original Code is: all of this file.
*
* Contributor(s): none yet.
*
* ***** END GPL LICENSE BLOCK *****
*/
#include "BL_ArmatureObject.h"
#include "BL_ActionActuator.h"
#include "BLI_blenlib.h"
#include "BKE_action.h"
#include "BKE_armature.h"
#include "GEN_Map.h"
#include "GEN_HashedPtr.h"
#include "MEM_guardedalloc.h"
#include "DNA_action_types.h"
#include "DNA_armature_types.h"
#include "DNA_object_types.h"
#include "DNA_scene_types.h"
#include "MT_Matrix4x4.h"
#ifdef HAVE_CONFIG_H
#include <config.h>
#endif
BL_ArmatureObject::BL_ArmatureObject(
void* sgReplicationInfo,
SG_Callbacks callbacks,
Object *armature,
Scene *scene)
: KX_GameObject(sgReplicationInfo,callbacks),
m_objArma(armature),
m_scene(scene), // maybe remove later. needed for where_is_pose
m_framePose(NULL),
m_lastframe(0.0),
m_activeAct(NULL),
m_activePriority(999),
m_lastapplyframe(0.0)
{
m_armature = (bArmature *)armature->data;
/* we make a copy of blender object's pose, and then always swap it with
* the original pose before calling into blender functions, to deal with
* replica's or other objects using the same blender object */
m_pose = NULL;
game_copy_pose(&m_pose, m_objArma->pose);
}
CValue* BL_ArmatureObject::GetReplica()
{
BL_ArmatureObject* replica = new BL_ArmatureObject(*this);
replica->ProcessReplica();
return replica;
}
void BL_ArmatureObject::ProcessReplica()
{
bPose *pose= m_pose;
KX_GameObject::ProcessReplica();
m_pose = NULL;
game_copy_pose(&m_pose, pose);
}
BL_ArmatureObject::~BL_ArmatureObject()
{
if (m_pose)
game_free_pose(m_pose);
}
void BL_ArmatureObject::ApplyPose()
{
m_armpose = m_objArma->pose;
m_objArma->pose = m_pose;
//m_scene->r.cfra++;
if(m_lastapplyframe != m_lastframe) {
where_is_pose(m_scene, m_objArma); // XXX
m_lastapplyframe = m_lastframe;
}
}
void BL_ArmatureObject::RestorePose()
{
m_objArma->pose = m_armpose;
m_armpose = NULL;
}
void BL_ArmatureObject::SetPose(bPose *pose)
{
extract_pose_from_pose(m_pose, pose);
m_lastapplyframe = -1.0;
}
bool BL_ArmatureObject::SetActiveAction(BL_ActionActuator *act, short priority, double curtime)
{
if (curtime != m_lastframe){
m_activePriority = 9999;
m_lastframe= curtime;
m_activeAct = NULL;
// remember the pose at the start of the frame
m_framePose = m_pose;
}
if (priority<=m_activePriority)
{
if (priority<m_activePriority)
// this action overwrites the previous ones, start from initial pose to cancel their effects
m_pose = m_framePose;
if (m_activeAct && (m_activeAct!=act))
m_activeAct->SetBlendTime(0.0); /* Reset the blend timer */
m_activeAct = act;
m_activePriority = priority;
m_lastframe = curtime;
return true;
}
else{
act->SetBlendTime(0.0);
return false;
}
}
BL_ActionActuator * BL_ArmatureObject::GetActiveAction()
{
return m_activeAct;
}
void BL_ArmatureObject::GetPose(bPose **pose)
{
/* If the caller supplies a null pose, create a new one. */
/* Otherwise, copy the armature's pose channels into the caller-supplied pose */
if (!*pose) {
/* probably not to good of an idea to
duplicate everying, but it clears up
a crash and memory leakage when
&BL_ActionActuator::m_pose is freed
*/
game_copy_pose(pose, m_pose);
}
else {
if (*pose == m_pose)
// no need to copy if the pointers are the same
return;
extract_pose_from_pose(*pose, m_pose);
}
}
void BL_ArmatureObject::GetMRDPose(bPose **pose)
{
/* If the caller supplies a null pose, create a new one. */
/* Otherwise, copy the armature's pose channels into the caller-supplied pose */
if (!*pose)
game_copy_pose(pose, m_pose);
else
extract_pose_from_pose(*pose, m_pose);
}
short BL_ArmatureObject::GetActivePriority()
{
return m_activePriority;
}
double BL_ArmatureObject::GetLastFrame()
{
return m_lastframe;
}
bool BL_ArmatureObject::GetBoneMatrix(Bone* bone, MT_Matrix4x4& matrix)
{
bPoseChannel *pchan;
ApplyPose();
pchan = get_pose_channel(m_objArma->pose, bone->name);
if(pchan)
matrix.setValue(&pchan->pose_mat[0][0]);
RestorePose();
return (pchan != NULL);
}
float BL_ArmatureObject::GetBoneLength(Bone* bone) const
{
return (float)(MT_Point3(bone->head) - MT_Point3(bone->tail)).length();
}