- fbx: read deformers (Skin and Cluster).

pull/14/head
Alexander Gessler 2012-07-26 18:05:24 +02:00
parent 8d1db6229c
commit 06acead438
7 changed files with 302 additions and 2 deletions

View File

@ -416,6 +416,7 @@ SET(FBX_SRCS
FBXModel.cpp
FBXAnimation.cpp
FBXNodeAttribute.cpp
FBXDeformer.cpp
)
SOURCE_GROUP( FBX FILES ${FBX_SRCS})

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@ -0,0 +1,156 @@
/*
Open Asset Import Library (assimp)
----------------------------------------------------------------------
Copyright (c) 2006-2012, assimp team
All rights reserved.
Redistribution and use of this software in source and binary forms,
with or without modification, are permitted provided that the
following conditions are met:
* Redistributions of source code must retain the above
copyright notice, this list of conditions and the
following disclaimer.
* Redistributions in binary form must reproduce the above
copyright notice, this list of conditions and the
following disclaimer in the documentation and/or other
materials provided with the distribution.
* Neither the name of the assimp team, nor the names of its
contributors may be used to endorse or promote products
derived from this software without specific prior
written permission of the assimp team.
THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR
A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT
OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
----------------------------------------------------------------------
*/
/** @file FBXNoteAttribute.cpp
* @brief Assimp::FBX::NodeAttribute (and subclasses) implementation
*/
#include "AssimpPCH.h"
#ifndef ASSIMP_BUILD_NO_FBX_IMPORTER
#include "FBXParser.h"
#include "FBXDocument.h"
#include "FBXImporter.h"
#include "FBXImportSettings.h"
#include "FBXDocumentUtil.h"
#include "FBXProperties.h"
namespace Assimp {
namespace FBX {
using namespace Util;
// ------------------------------------------------------------------------------------------------
Deformer::Deformer(uint64_t id, const Element& element, const Document& doc, const std::string& name)
: Object(id,element,name)
{
const Scope& sc = GetRequiredScope(element);
const std::string& classname = ParseTokenAsString(GetRequiredToken(element,2));
props = GetPropertyTable(doc,"Deformer.Fbx" + classname,element,sc);
}
// ------------------------------------------------------------------------------------------------
Deformer::~Deformer()
{
}
// ------------------------------------------------------------------------------------------------
Cluster::Cluster(uint64_t id, const Element& element, const Document& doc, const std::string& name)
: Deformer(id,element,doc,name)
{
const Scope& sc = GetRequiredScope(element);
const Element& Indexes = GetRequiredElement(sc,"Indexes",&element);
const Element& Weights = GetRequiredElement(sc,"Weights",&element);
const Element& Transform = GetRequiredElement(sc,"Transform",&element);
const Element& TransformLink = GetRequiredElement(sc,"TransformLink",&element);
transform = ReadMatrix(Transform);
transformLink = ReadMatrix(TransformLink);
ReadVectorDataArray(indices,Indexes);
ReadVectorDataArray(weights,Weights);
}
// ------------------------------------------------------------------------------------------------
Cluster::~Cluster()
{
}
// ------------------------------------------------------------------------------------------------
Skin::Skin(uint64_t id, const Element& element, const Document& doc, const std::string& name)
: Deformer(id,element,doc,name)
{
const Scope& sc = GetRequiredScope(element);
const Element* const Link_DeformAcuracy = sc["Link_DeformAcuracy"];
if(Link_DeformAcuracy) {
accuracy = ParseTokenAsFloat(GetRequiredToken(*Link_DeformAcuracy,0));
}
const char* const arr[] = {"Deformer"};
// resolve assigned clusters
const std::vector<const Connection*>& conns = doc.GetConnectionsByDestinationSequenced(ID(),arr, 1);
clusters.reserve(conns.size());
BOOST_FOREACH(const Connection* con, conns) {
// Cluster -> Skin links should be object-object connections
if (con->PropertyName().length()) {
continue;
}
const Object* const ob = con->SourceObject();
if(!ob) {
DOMWarning("failed to read source object for incoming Skin link, ignoring",&element);
continue;
}
const Cluster* const cluster = dynamic_cast<const Cluster*>(ob);
if(cluster) {
clusters.push_back(cluster);
continue;
}
}
}
// ------------------------------------------------------------------------------------------------
Skin::~Skin()
{
}
}
}
#endif

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@ -376,6 +376,43 @@ void ReadVectorDataArray(std::vector<uint64_t>& out, const Element& el)
}
// ------------------------------------------------------------------------------------------------
aiMatrix4x4 ReadMatrix(const Element& element)
{
std::vector<float> values;
ReadVectorDataArray(values,element);
if(values.size() != 16) {
DOMError("expected 16 matrix elements");
}
aiMatrix4x4 result;
// XXX transposed or not, this is the question :-)
result.a1 = values[0];
result.a2 = values[1];
result.a3 = values[2];
result.a4 = values[3];
result.b1 = values[4];
result.b2 = values[5];
result.b3 = values[6];
result.b4 = values[7];
result.c1 = values[8];
result.c2 = values[9];
result.c3 = values[10];
result.c4 = values[11];
result.d1 = values[12];
result.d2 = values[13];
result.d3 = values[14];
result.d4 = values[15];
return result;
}
// ------------------------------------------------------------------------------------------------
// fetch a property table and the corresponding property template
boost::shared_ptr<const PropertyTable> GetPropertyTable(const Document& doc,
@ -472,6 +509,14 @@ const Object* LazyObject::Get(bool dieOnError)
object.reset(new CameraSwitcher(id,element,doc,name));
}
}
else if (!strncmp(obtype,"Deformer",length)) {
if (!strcmp(classtag.c_str(),"Cluster")) {
object.reset(new Cluster(id,element,doc,name));
}
else if (!strcmp(classtag.c_str(),"Skin")) {
object.reset(new Skin(id,element,doc,name));
}
}
else if (!strncmp(obtype,"Model",length)) {
object.reset(new Model(id,element,doc,name));
}

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@ -641,6 +641,96 @@ private:
};
/** DOM class for deformers */
class Deformer : public Object
{
public:
Deformer(uint64_t id, const Element& element, const Document& doc, const std::string& name);
~Deformer();
public:
const PropertyTable& Props() const {
ai_assert(props.get());
return *props.get();
}
private:
boost::shared_ptr<const PropertyTable> props;
};
typedef std::vector<float> WeightList;
typedef std::vector<unsigned int> WeightIndexArray;
/** DOM class for skin deformer clusters (aka subdeformers) */
class Cluster : public Deformer
{
public:
Cluster(uint64_t id, const Element& element, const Document& doc, const std::string& name);
~Cluster();
public:
/** get the list of deformer weights associated with this cluster */
const WeightList& GetWeights() const {
return weights;
}
/** get indices into the vertex data of the geometry associated
* with this cluster.*/
const WeightIndexArray& GetIndices() const {
return indices;
}
/** */
const aiMatrix4x4& Transform() const {
return transform;
}
const aiMatrix4x4& TransformLink() const {
return transformLink;
}
private:
WeightList weights;
WeightIndexArray indices;
aiMatrix4x4 transform;
aiMatrix4x4 transformLink;
};
/** DOM class for skin deformers */
class Skin : public Deformer
{
public:
Skin(uint64_t id, const Element& element, const Document& doc, const std::string& name);
~Skin();
public:
float DeformAccuracy() const {
return accuracy;
}
const std::vector<const Cluster*>& Clusters() const {
return clusters;
}
private:
float accuracy;
std::vector<const Cluster*> clusters;
};
/** Represents a link between two FBX objects. */

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@ -98,6 +98,9 @@ void ReadVectorDataArray(std::vector<unsigned int>& out, const Element& el);
void ReadVectorDataArray(std::vector<uint64_t>& out, const Element& el);
// read a 4x4 matrix from an array of 16 floats
aiMatrix4x4 ReadMatrix(const Element& element);
// fetch a property table and the corresponding property template
boost::shared_ptr<const PropertyTable> GetPropertyTable(const Document& doc,

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@ -96,6 +96,7 @@ void Model::ResolveLinks(const Element& element, const Document& doc)
materials.reserve(conns.size());
geometry.reserve(conns.size());
attributes.reserve(conns.size());
BOOST_FOREACH(const Connection* con, conns) {
// material and geometry links should be Object-Object connections
@ -105,7 +106,7 @@ void Model::ResolveLinks(const Element& element, const Document& doc)
const Object* const ob = con->SourceObject();
if(!ob) {
DOMWarning("failed to read source object for incoming model link, ignoring",&element);
DOMWarning("failed to read source object for incoming Model link, ignoring",&element);
continue;
}
@ -127,7 +128,7 @@ void Model::ResolveLinks(const Element& element, const Document& doc)
continue;
}
DOMWarning("source object for model link is neither Material or Geometry, ignoring",&element);
DOMWarning("source object for model link is neither Material, NodeAttribute nor Geometry, ignoring",&element);
continue;
}
}

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@ -2071,6 +2071,10 @@
RelativePath="..\..\code\FBXConverter.h"
>
</File>
<File
RelativePath="..\..\code\FBXDeformer.cpp"
>
</File>
<File
RelativePath="..\..\code\FBXDocument.cpp"
>