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@ -54,18 +54,16 @@ OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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#include <assimp/ByteSwapper.h>
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#include <assimp/ParsingUtils.h>
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#include <algorithm> // std::transform
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#include "FBXUtil.h"
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namespace Assimp {
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namespace FBX {
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using namespace Util;
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using namespace Util;
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// ------------------------------------------------------------------------------------------------
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Material::Material(uint64_t id, const Element& element, const Document& doc, const std::string& name)
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: Object(id,element,name)
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{
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Material::Material(uint64_t id, const Element& element, const Document& doc, const std::string& name) :
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Object(id,element,name) {
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const Scope& sc = GetRequiredScope(element);
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const Element* const ShadingModel = sc["ShadingModel"];
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@ -77,23 +75,21 @@ Material::Material(uint64_t id, const Element& element, const Document& doc, con
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if(ShadingModel) {
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shading = ParseTokenAsString(GetRequiredToken(*ShadingModel,0));
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}
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else {
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} else {
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DOMWarning("shading mode not specified, assuming phong",&element);
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shading = "phong";
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}
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std::string templateName;
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// lower-case shading because Blender (for example) writes "Phong"
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std::transform(shading.data(), shading.data() + shading.size(), std::addressof(shading[0]), Assimp::ToLower<char>);
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for (size_t i = 0; i < shading.length(); ++i) {
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shading[i] = static_cast<char>(tolower(shading[i]));
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}
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std::string templateName;
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if(shading == "phong") {
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templateName = "Material.FbxSurfacePhong";
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}
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else if(shading == "lambert") {
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} else if(shading == "lambert") {
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templateName = "Material.FbxSurfaceLambert";
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}
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else {
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} else {
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DOMWarning("shading mode not recognized: " + shading,&element);
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}
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@ -102,20 +98,19 @@ Material::Material(uint64_t id, const Element& element, const Document& doc, con
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// resolve texture links
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const std::vector<const Connection*>& conns = doc.GetConnectionsByDestinationSequenced(ID());
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for(const Connection* con : conns) {
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// texture link to properties, not objects
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if (!con->PropertyName().length()) {
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if ( 0 == con->PropertyName().length()) {
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continue;
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}
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const Object* const ob = con->SourceObject();
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if(!ob) {
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if(nullptr == ob) {
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DOMWarning("failed to read source object for texture link, ignoring",&element);
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continue;
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}
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const Texture* const tex = dynamic_cast<const Texture*>(ob);
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if(!tex) {
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if(nullptr == tex) {
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const LayeredTexture* const layeredTexture = dynamic_cast<const LayeredTexture*>(ob);
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if(!layeredTexture) {
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DOMWarning("source object for texture link is not a texture or layered texture, ignoring",&element);
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@ -128,9 +123,7 @@ Material::Material(uint64_t id, const Element& element, const Document& doc, con
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layeredTextures[prop] = layeredTexture;
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((LayeredTexture*)layeredTexture)->fillTexture(doc);
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}
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else
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{
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} else {
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const std::string& prop = con->PropertyName();
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if (textures.find(prop) != textures.end()) {
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DOMWarning("duplicate texture link: " + prop,&element);
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@ -138,23 +131,20 @@ Material::Material(uint64_t id, const Element& element, const Document& doc, con
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textures[prop] = tex;
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}
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}
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}
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// ------------------------------------------------------------------------------------------------
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Material::~Material()
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{
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Material::~Material() {
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// empty
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}
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// ------------------------------------------------------------------------------------------------
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Texture::Texture(uint64_t id, const Element& element, const Document& doc, const std::string& name)
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: Object(id,element,name)
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, uvScaling(1.0f,1.0f)
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, media(0)
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{
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Texture::Texture(uint64_t id, const Element& element, const Document& doc, const std::string& name) :
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Object(id,element,name),
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uvScaling(1.0f,1.0f),
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media(0) {
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const Scope& sc = GetRequiredScope(element);
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const Element* const Type = sc["Type"];
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@ -194,8 +184,7 @@ Texture::Texture(uint64_t id, const Element& element, const Document& doc, const
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crop[1] = ParseTokenAsInt(GetRequiredToken(*Cropping,1));
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crop[2] = ParseTokenAsInt(GetRequiredToken(*Cropping,2));
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crop[3] = ParseTokenAsInt(GetRequiredToken(*Cropping,3));
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}
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else {
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} else {
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// vc8 doesn't support the crop() syntax in initialization lists
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// (and vc9 WARNS about the new (i.e. compliant) behaviour).
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crop[0] = crop[1] = crop[2] = crop[3] = 0;
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@ -226,7 +215,7 @@ Texture::Texture(uint64_t id, const Element& element, const Document& doc, const
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const std::vector<const Connection*>& conns = doc.GetConnectionsByDestinationSequenced(ID());
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for(const Connection* con : conns) {
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const Object* const ob = con->SourceObject();
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if(!ob) {
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if (nullptr == ob) {
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DOMWarning("failed to read source object for texture link, ignoring",&element);
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continue;
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}
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@ -240,46 +229,38 @@ Texture::Texture(uint64_t id, const Element& element, const Document& doc, const
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}
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Texture::~Texture()
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{
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Texture::~Texture() {
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// empty
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}
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LayeredTexture::LayeredTexture(uint64_t id, const Element& element, const Document& /*doc*/, const std::string& name)
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: Object(id,element,name)
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,blendMode(BlendMode_Modulate)
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,alpha(1)
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{
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LayeredTexture::LayeredTexture(uint64_t id, const Element& element, const Document& /*doc*/, const std::string& name) :
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Object(id,element,name),
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blendMode(BlendMode_Modulate),
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alpha(1) {
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const Scope& sc = GetRequiredScope(element);
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const Element* const BlendModes = sc["BlendModes"];
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const Element* const Alphas = sc["Alphas"];
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if(BlendModes!=0)
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{
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if (nullptr != BlendModes) {
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blendMode = (BlendMode)ParseTokenAsInt(GetRequiredToken(*BlendModes,0));
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}
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if(Alphas!=0)
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{
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if (nullptr != Alphas) {
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alpha = ParseTokenAsFloat(GetRequiredToken(*Alphas,0));
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}
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}
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LayeredTexture::~LayeredTexture()
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{
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LayeredTexture::~LayeredTexture() {
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// empty
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}
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void LayeredTexture::fillTexture(const Document& doc)
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{
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void LayeredTexture::fillTexture(const Document& doc) {
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const std::vector<const Connection*>& conns = doc.GetConnectionsByDestinationSequenced(ID());
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for(size_t i = 0; i < conns.size();++i)
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{
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for(size_t i = 0; i < conns.size();++i) {
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const Connection* con = conns.at(i);
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const Object* const ob = con->SourceObject();
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if(!ob) {
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if (nullptr == ob) {
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DOMWarning("failed to read source object for texture link, ignoring",&element);
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continue;
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}
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@ -290,13 +271,11 @@ void LayeredTexture::fillTexture(const Document& doc)
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}
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}
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// ------------------------------------------------------------------------------------------------
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Video::Video(uint64_t id, const Element& element, const Document& doc, const std::string& name)
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: Object(id,element,name)
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, contentLength(0)
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, content(0)
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{
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Video::Video(uint64_t id, const Element& element, const Document& doc, const std::string& name) :
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Object(id,element,name),
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contentLength(0),
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content(0) {
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const Scope& sc = GetRequiredScope(element);
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const Element* const Type = sc["Type"];
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@ -324,52 +303,43 @@ Video::Video(uint64_t id, const Element& element, const Document& doc, const std
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if (!token.IsBinary()) {
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if (*data != '"') {
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DOMError("embedded content is not surrounded by quotation marks", &element);
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}
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else {
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} else {
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size_t targetLength = 0;
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auto numTokens = Content->Tokens().size();
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// First time compute size (it could be large like 64Gb and it is good to allocate it once)
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for (uint32_t tokenIdx = 0; tokenIdx < numTokens; ++tokenIdx)
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{
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for (uint32_t tokenIdx = 0; tokenIdx < numTokens; ++tokenIdx) {
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const Token& dataToken = GetRequiredToken(*Content, tokenIdx);
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size_t tokenLength = dataToken.end() - dataToken.begin() - 2; // ignore double quotes
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const char* base64data = dataToken.begin() + 1;
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const size_t outLength = Util::ComputeDecodedSizeBase64(base64data, tokenLength);
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if (outLength == 0)
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{
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if (outLength == 0) {
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DOMError("Corrupted embedded content found", &element);
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}
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targetLength += outLength;
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}
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if (targetLength == 0)
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{
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if (targetLength == 0) {
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DOMError("Corrupted embedded content found", &element);
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}
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content = new uint8_t[targetLength];
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contentLength = static_cast<uint64_t>(targetLength);
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size_t dst_offset = 0;
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for (uint32_t tokenIdx = 0; tokenIdx < numTokens; ++tokenIdx)
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{
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for (uint32_t tokenIdx = 0; tokenIdx < numTokens; ++tokenIdx) {
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const Token& dataToken = GetRequiredToken(*Content, tokenIdx);
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size_t tokenLength = dataToken.end() - dataToken.begin() - 2; // ignore double quotes
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const char* base64data = dataToken.begin() + 1;
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dst_offset += Util::DecodeBase64(base64data, tokenLength, content + dst_offset, targetLength - dst_offset);
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}
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if (targetLength != dst_offset)
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{
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if (targetLength != dst_offset) {
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delete[] content;
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contentLength = 0;
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DOMError("Corrupted embedded content found", &element);
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}
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}
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}
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else if (static_cast<size_t>(token.end() - data) < 5) {
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} else if (static_cast<size_t>(token.end() - data) < 5) {
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DOMError("binary data array is too short, need five (5) bytes for type signature and element count", &element);
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}
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else if (*data != 'R') {
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} else if (*data != 'R') {
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DOMWarning("video content is not raw binary data, ignoring", &element);
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}
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else {
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} else {
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// read number of elements
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uint32_t len = 0;
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::memcpy(&len, data + 1, sizeof(len));
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@ -380,8 +350,7 @@ Video::Video(uint64_t id, const Element& element, const Document& doc, const std
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content = new uint8_t[len];
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::memcpy(content, data + 5, len);
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}
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} catch (const runtime_error& runtimeError)
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{
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} catch (const runtime_error& runtimeError) {
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//we don't need the content data for contents that has already been loaded
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ASSIMP_LOG_VERBOSE_DEBUG_F("Caught exception in FBXMaterial (likely because content was already loaded): ",
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runtimeError.what());
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@ -392,14 +361,11 @@ Video::Video(uint64_t id, const Element& element, const Document& doc, const std
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}
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Video::~Video()
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{
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if(content) {
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delete[] content;
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}
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Video::~Video() {
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delete[] content;
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}
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} //!FBX
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} //!Assimp
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#endif
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#endif // ASSIMP_BUILD_NO_FBX_IMPORTER
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